#!/usr/bin/env node // WRN editor language server source hash: 5258b3e76cec47df752d4bb886fbd57a3f3c4af9ca9b6b2bf6742c8d78025ff1 // WRN editor language server generator hash: f593a44aaf05495b789ce7a3086bee1eebb951b884d41c0e017bbcfe5f547e72 // @bun @bun-cjs (function(exports, require, module, __filename, __dirname) {var __create = Object.create; var __getProtoOf = Object.getPrototypeOf; var __defProp = Object.defineProperty; var __getOwnPropNames = Object.getOwnPropertyNames; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __hasOwnProp = Object.prototype.hasOwnProperty; function __accessProp(key) { return this[key]; } var __toESMCache_node; var __toESMCache_esm; var __toESM = (mod, isNodeMode, target) => { var canCache = mod != null && typeof mod === "object"; if (canCache) { var cache = isNodeMode ? __toESMCache_node ??= new WeakMap : __toESMCache_esm ??= new WeakMap; var cached = cache.get(mod); if (cached) return cached; } target = mod != null ? __create(__getProtoOf(mod)) : {}; const to = isNodeMode || !mod || !mod.__esModule ? __defProp(target, "default", { value: mod, enumerable: true }) : target; if (mod && typeof mod === "object" || typeof mod === "function") { for (let key of __getOwnPropNames(mod)) if (!__hasOwnProp.call(to, key)) __defProp(to, key, { get: __accessProp.bind(mod, key), enumerable: true }); } if (canCache) cache.set(mod, to); return to; }; var __toCommonJS = (from) => { var entry = (__moduleCache ??= new WeakMap).get(from), desc; if (entry) return entry; entry = __defProp({}, "__esModule", { value: true }); if (from && typeof from === "object" || typeof from === "function") { for (var key of __getOwnPropNames(from)) if (!__hasOwnProp.call(entry, key)) __defProp(entry, key, { get: __accessProp.bind(from, key), enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } __moduleCache.set(from, entry); return entry; }; var __moduleCache; var __commonJS = (cb, mod) => () => (mod || cb((mod = { exports: {} }).exports, mod), mod.exports); var __returnValue = (v) => v; function __exportSetter(name, newValue) { this[name] = __returnValue.bind(null, newValue); } var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true, configurable: true, set: __exportSetter.bind(all, name) }); }; // node_modules/.bun/typescript@6.0.3/node_modules/typescript/lib/typescript.js var require_typescript = __commonJS(function(exports2, module2) { var __dirname = "E:\\WireJS\\node_modules\\.bun\\typescript@6.0.3\\node_modules\\typescript\\lib", __filename = "E:\\WireJS\\node_modules\\.bun\\typescript@6.0.3\\node_modules\\typescript\\lib\\typescript.js"; /*! ***************************************************************************** Copyright (c) Microsoft Corporation. All rights reserved. Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 THIS CODE IS PROVIDED ON AN *AS IS* BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED, INCLUDING WITHOUT LIMITATION ANY IMPLIED WARRANTIES OR CONDITIONS OF TITLE, FITNESS FOR A PARTICULAR PURPOSE, MERCHANTABILITY OR NON-INFRINGEMENT. See the Apache Version 2.0 License for specific language governing permissions and limitations under the License. ***************************************************************************** */ var ts = {}; ((module3) => { var __defProp2 = Object.defineProperty; var __getOwnPropDesc2 = Object.getOwnPropertyDescriptor; var __getOwnPropNames2 = Object.getOwnPropertyNames; var __hasOwnProp2 = Object.prototype.hasOwnProperty; var __export2 = (target, all) => { for (var name in all) __defProp2(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames2(from)) if (!__hasOwnProp2.call(to, key) && key !== except) __defProp2(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc2(from, key)) || desc.enumerable }); } return to; }; var __toCommonJS2 = (mod) => (__copyProps, mod); var typescript_exports = {}; __export2(typescript_exports, { ANONYMOUS: () => ANONYMOUS, AccessFlags: () => AccessFlags, AssertionLevel: () => AssertionLevel, AssignmentDeclarationKind: () => AssignmentDeclarationKind, AssignmentKind: () => AssignmentKind, Associativity: () => Associativity, BreakpointResolver: () => ts_BreakpointResolver_exports, BuilderFileEmit: () => BuilderFileEmit, BuilderProgramKind: () => BuilderProgramKind, BuilderState: () => BuilderState, CallHierarchy: () => ts_CallHierarchy_exports, CharacterCodes: () => CharacterCodes, CheckFlags: () => CheckFlags, CheckMode: () => CheckMode, ClassificationType: () => ClassificationType, ClassificationTypeNames: () => ClassificationTypeNames, CommentDirectiveType: () => CommentDirectiveType, Comparison: () => Comparison, CompletionInfoFlags: () => CompletionInfoFlags, CompletionTriggerKind: () => CompletionTriggerKind, Completions: () => ts_Completions_exports, ContainerFlags: () => ContainerFlags, ContextFlags: () => ContextFlags, Debug: () => Debug, DiagnosticCategory: () => DiagnosticCategory, Diagnostics: () => Diagnostics, DocumentHighlights: () => DocumentHighlights, ElementFlags: () => ElementFlags, EmitFlags: () => EmitFlags, EmitHint: () => EmitHint, EmitOnly: () => EmitOnly, EndOfLineState: () => EndOfLineState, ExitStatus: () => ExitStatus, ExportKind: () => ExportKind, Extension: () => Extension, ExternalEmitHelpers: () => ExternalEmitHelpers, FileIncludeKind: () => FileIncludeKind, FilePreprocessingDiagnosticsKind: () => FilePreprocessingDiagnosticsKind, FileSystemEntryKind: () => FileSystemEntryKind, FileWatcherEventKind: () => FileWatcherEventKind, FindAllReferences: () => ts_FindAllReferences_exports, FlattenLevel: () => FlattenLevel, FlowFlags: () => FlowFlags, ForegroundColorEscapeSequences: () => ForegroundColorEscapeSequences, FunctionFlags: () => FunctionFlags, GeneratedIdentifierFlags: () => GeneratedIdentifierFlags, GetLiteralTextFlags: () => GetLiteralTextFlags, GoToDefinition: () => ts_GoToDefinition_exports, HighlightSpanKind: () => HighlightSpanKind, IdentifierNameMap: () => IdentifierNameMap, ImportKind: () => ImportKind, ImportsNotUsedAsValues: () => ImportsNotUsedAsValues, IndentStyle: () => IndentStyle, IndexFlags: () => IndexFlags, IndexKind: () => IndexKind, InferenceFlags: () => InferenceFlags, InferencePriority: () => InferencePriority, InlayHintKind: () => InlayHintKind2, InlayHints: () => ts_InlayHints_exports, InternalEmitFlags: () => InternalEmitFlags, InternalNodeBuilderFlags: () => InternalNodeBuilderFlags, InternalSymbolName: () => InternalSymbolName, IntersectionFlags: () => IntersectionFlags, InvalidatedProjectKind: () => InvalidatedProjectKind, JSDocParsingMode: () => JSDocParsingMode, JsDoc: () => ts_JsDoc_exports, JsTyping: () => ts_JsTyping_exports, JsxEmit: () => JsxEmit, JsxFlags: () => JsxFlags, JsxReferenceKind: () => JsxReferenceKind, LanguageFeatureMinimumTarget: () => LanguageFeatureMinimumTarget, LanguageServiceMode: () => LanguageServiceMode, LanguageVariant: () => LanguageVariant, LexicalEnvironmentFlags: () => LexicalEnvironmentFlags, ListFormat: () => ListFormat, LogLevel: () => LogLevel, MapCode: () => ts_MapCode_exports, MemberOverrideStatus: () => MemberOverrideStatus, ModifierFlags: () => ModifierFlags, ModuleDetectionKind: () => ModuleDetectionKind, ModuleInstanceState: () => ModuleInstanceState, ModuleKind: () => ModuleKind, ModuleResolutionKind: () => ModuleResolutionKind, ModuleSpecifierEnding: () => ModuleSpecifierEnding, NavigateTo: () => ts_NavigateTo_exports, NavigationBar: () => ts_NavigationBar_exports, NewLineKind: () => NewLineKind, NodeBuilderFlags: () => NodeBuilderFlags, NodeCheckFlags: () => NodeCheckFlags, NodeFactoryFlags: () => NodeFactoryFlags, NodeFlags: () => NodeFlags, NodeResolutionFeatures: () => NodeResolutionFeatures, ObjectFlags: () => ObjectFlags, OperationCanceledException: () => OperationCanceledException, OperatorPrecedence: () => OperatorPrecedence, OrganizeImports: () => ts_OrganizeImports_exports, OrganizeImportsMode: () => OrganizeImportsMode, OuterExpressionKinds: () => OuterExpressionKinds, OutliningElementsCollector: () => ts_OutliningElementsCollector_exports, OutliningSpanKind: () => OutliningSpanKind, OutputFileType: () => OutputFileType, PackageJsonAutoImportPreference: () => PackageJsonAutoImportPreference, PackageJsonDependencyGroup: () => PackageJsonDependencyGroup, PatternMatchKind: () => PatternMatchKind, PollingInterval: () => PollingInterval, PollingWatchKind: () => PollingWatchKind, PragmaKindFlags: () => PragmaKindFlags, PredicateSemantics: () => PredicateSemantics, PreparePasteEdits: () => ts_preparePasteEdits_exports, PrivateIdentifierKind: () => PrivateIdentifierKind, ProcessLevel: () => ProcessLevel, ProgramUpdateLevel: () => ProgramUpdateLevel, QuotePreference: () => QuotePreference, RegularExpressionFlags: () => RegularExpressionFlags, RelationComparisonResult: () => RelationComparisonResult, Rename: () => ts_Rename_exports, ScriptElementKind: () => ScriptElementKind, ScriptElementKindModifier: () => ScriptElementKindModifier, ScriptKind: () => ScriptKind, ScriptSnapshot: () => ScriptSnapshot, ScriptTarget: () => ScriptTarget, SemanticClassificationFormat: () => SemanticClassificationFormat, SemanticMeaning: () => SemanticMeaning, SemicolonPreference: () => SemicolonPreference, SignatureCheckMode: () => SignatureCheckMode, SignatureFlags: () => SignatureFlags, SignatureHelp: () => ts_SignatureHelp_exports, SignatureInfo: () => SignatureInfo, SignatureKind: () => SignatureKind, SmartSelectionRange: () => ts_SmartSelectionRange_exports, SnippetKind: () => SnippetKind, StatisticType: () => StatisticType, StructureIsReused: () => StructureIsReused, SymbolAccessibility: () => SymbolAccessibility, SymbolDisplay: () => ts_SymbolDisplay_exports, SymbolDisplayPartKind: () => SymbolDisplayPartKind, SymbolFlags: () => SymbolFlags, SymbolFormatFlags: () => SymbolFormatFlags, SyntaxKind: () => SyntaxKind, Ternary: () => Ternary, ThrottledCancellationToken: () => ThrottledCancellationToken, TokenClass: () => TokenClass, TokenFlags: () => TokenFlags, TransformFlags: () => TransformFlags, TypeFacts: () => TypeFacts, TypeFlags: () => TypeFlags, TypeFormatFlags: () => TypeFormatFlags, TypeMapKind: () => TypeMapKind, TypePredicateKind: () => TypePredicateKind, TypeReferenceSerializationKind: () => TypeReferenceSerializationKind, UnionReduction: () => UnionReduction, UpToDateStatusType: () => UpToDateStatusType, VarianceFlags: () => VarianceFlags, Version: () => Version, VersionRange: () => VersionRange, WatchDirectoryFlags: () => WatchDirectoryFlags, WatchDirectoryKind: () => WatchDirectoryKind, WatchFileKind: () => WatchFileKind, WatchLogLevel: () => WatchLogLevel, WatchType: () => WatchType, accessPrivateIdentifier: () => accessPrivateIdentifier, addEmitFlags: () => addEmitFlags, addEmitHelper: () => addEmitHelper, addEmitHelpers: () => addEmitHelpers, addInternalEmitFlags: () => addInternalEmitFlags, addNodeFactoryPatcher: () => addNodeFactoryPatcher, addObjectAllocatorPatcher: () => addObjectAllocatorPatcher, addRange: () => addRange, addRelatedInfo: () => addRelatedInfo, addSyntheticLeadingComment: () => addSyntheticLeadingComment, addSyntheticTrailingComment: () => addSyntheticTrailingComment, addToSeen: () => addToSeen, advancedAsyncSuperHelper: () => advancedAsyncSuperHelper, affectsDeclarationPathOptionDeclarations: () => affectsDeclarationPathOptionDeclarations, affectsEmitOptionDeclarations: () => affectsEmitOptionDeclarations, allKeysStartWithDot: () => allKeysStartWithDot, altDirectorySeparator: () => altDirectorySeparator, and: () => and, append: () => append, appendIfUnique: () => appendIfUnique, arrayFrom: () => arrayFrom, arrayIsEqualTo: () => arrayIsEqualTo, arrayIsHomogeneous: () => arrayIsHomogeneous, arrayOf: () => arrayOf, arrayReverseIterator: () => arrayReverseIterator, arrayToMap: () => arrayToMap, arrayToMultiMap: () => arrayToMultiMap, arrayToNumericMap: () => arrayToNumericMap, assertType: () => assertType, assign: () => assign, asyncSuperHelper: () => asyncSuperHelper, attachFileToDiagnostics: () => attachFileToDiagnostics, base64decode: () => base64decode, base64encode: () => base64encode, binarySearch: () => binarySearch, binarySearchKey: () => binarySearchKey, bindSourceFile: () => bindSourceFile, breakIntoCharacterSpans: () => breakIntoCharacterSpans, breakIntoWordSpans: () => breakIntoWordSpans, buildLinkParts: () => buildLinkParts, buildOpts: () => buildOpts, buildOverload: () => buildOverload, bundlerModuleNameResolver: () => bundlerModuleNameResolver, canBeConvertedToAsync: () => canBeConvertedToAsync, canHaveDecorators: () => canHaveDecorators, canHaveExportModifier: () => canHaveExportModifier, canHaveFlowNode: () => canHaveFlowNode, canHaveIllegalDecorators: () => canHaveIllegalDecorators, canHaveIllegalModifiers: () => canHaveIllegalModifiers, canHaveIllegalType: () => canHaveIllegalType, canHaveIllegalTypeParameters: () => canHaveIllegalTypeParameters, canHaveJSDoc: () => canHaveJSDoc, canHaveLocals: () => canHaveLocals, canHaveModifiers: () => canHaveModifiers, canHaveModuleSpecifier: () => canHaveModuleSpecifier, canHaveStatements: () => canHaveStatements, canHaveSymbol: () => canHaveSymbol, canIncludeBindAndCheckDiagnostics: () => canIncludeBindAndCheckDiagnostics, canJsonReportNoInputFiles: () => canJsonReportNoInputFiles, canProduceDiagnostics: () => canProduceDiagnostics, canUsePropertyAccess: () => canUsePropertyAccess, canWatchAffectingLocation: () => canWatchAffectingLocation, canWatchAtTypes: () => canWatchAtTypes, canWatchDirectoryOrFile: () => canWatchDirectoryOrFile, canWatchDirectoryOrFilePath: () => canWatchDirectoryOrFilePath, cartesianProduct: () => cartesianProduct, cast: () => cast, chainBundle: () => chainBundle, chainDiagnosticMessages: () => chainDiagnosticMessages, changeAnyExtension: () => changeAnyExtension, changeCompilerHostLikeToUseCache: () => changeCompilerHostLikeToUseCache, changeExtension: () => changeExtension, changeFullExtension: () => changeFullExtension, changesAffectModuleResolution: () => changesAffectModuleResolution, changesAffectingProgramStructure: () => changesAffectingProgramStructure, characterCodeToRegularExpressionFlag: () => characterCodeToRegularExpressionFlag, childIsDecorated: () => childIsDecorated, classElementOrClassElementParameterIsDecorated: () => classElementOrClassElementParameterIsDecorated, classHasClassThisAssignment: () => classHasClassThisAssignment, classHasDeclaredOrExplicitlyAssignedName: () => classHasDeclaredOrExplicitlyAssignedName, classHasExplicitlyAssignedName: () => classHasExplicitlyAssignedName, classOrConstructorParameterIsDecorated: () => classOrConstructorParameterIsDecorated, classicNameResolver: () => classicNameResolver, classifier: () => ts_classifier_exports, cleanExtendedConfigCache: () => cleanExtendedConfigCache, clear: () => clear, clearMap: () => clearMap, clearSharedExtendedConfigFileWatcher: () => clearSharedExtendedConfigFileWatcher, climbPastPropertyAccess: () => climbPastPropertyAccess, clone: () => clone, cloneCompilerOptions: () => cloneCompilerOptions, closeFileWatcher: () => closeFileWatcher, closeFileWatcherOf: () => closeFileWatcherOf, codefix: () => ts_codefix_exports, collapseTextChangeRangesAcrossMultipleVersions: () => collapseTextChangeRangesAcrossMultipleVersions, collectExternalModuleInfo: () => collectExternalModuleInfo, combine: () => combine, combinePaths: () => combinePaths, commandLineOptionOfCustomType: () => commandLineOptionOfCustomType, commentPragmas: () => commentPragmas, commonOptionsWithBuild: () => commonOptionsWithBuild, compact: () => compact, compareBooleans: () => compareBooleans, compareComparableValues: () => compareComparableValues, compareDataObjects: () => compareDataObjects, compareDiagnostics: () => compareDiagnostics, compareEmitHelpers: () => compareEmitHelpers, compareNumberOfDirectorySeparators: () => compareNumberOfDirectorySeparators, comparePaths: () => comparePaths, comparePathsCaseInsensitive: () => comparePathsCaseInsensitive, comparePathsCaseSensitive: () => comparePathsCaseSensitive, comparePatternKeys: () => comparePatternKeys, compareProperties: () => compareProperties, compareStringsCaseInsensitive: () => compareStringsCaseInsensitive, compareStringsCaseInsensitiveEslintCompatible: () => compareStringsCaseInsensitiveEslintCompatible, compareStringsCaseSensitive: () => compareStringsCaseSensitive, compareStringsCaseSensitiveUI: () => compareStringsCaseSensitiveUI, compareTextSpans: () => compareTextSpans, compareValues: () => compareValues, compilerOptionsAffectDeclarationPath: () => compilerOptionsAffectDeclarationPath, compilerOptionsAffectEmit: () => compilerOptionsAffectEmit, compilerOptionsAffectSemanticDiagnostics: () => compilerOptionsAffectSemanticDiagnostics, compilerOptionsDidYouMeanDiagnostics: () => compilerOptionsDidYouMeanDiagnostics, compilerOptionsIndicateEsModules: () => compilerOptionsIndicateEsModules, computeCommonSourceDirectoryOfFilenames: () => computeCommonSourceDirectoryOfFilenames, computeLineAndCharacterOfPosition: () => computeLineAndCharacterOfPosition, computeLineOfPosition: () => computeLineOfPosition, computeLineStarts: () => computeLineStarts, computePositionOfLineAndCharacter: () => computePositionOfLineAndCharacter, computeSignatureWithDiagnostics: () => computeSignatureWithDiagnostics, computeSuggestionDiagnostics: () => computeSuggestionDiagnostics, computedOptions: () => computedOptions, concatenate: () => concatenate, concatenateDiagnosticMessageChains: () => concatenateDiagnosticMessageChains, consumesNodeCoreModules: () => consumesNodeCoreModules, contains: () => contains, containsIgnoredPath: () => containsIgnoredPath, containsObjectRestOrSpread: () => containsObjectRestOrSpread, containsParseError: () => containsParseError, containsPath: () => containsPath, convertCompilerOptionsForTelemetry: () => convertCompilerOptionsForTelemetry, convertCompilerOptionsFromJson: () => convertCompilerOptionsFromJson, convertJsonOption: () => convertJsonOption, convertToBase64: () => convertToBase64, convertToJson: () => convertToJson, convertToObject: () => convertToObject, convertToOptionsWithAbsolutePaths: () => convertToOptionsWithAbsolutePaths, convertToRelativePath: () => convertToRelativePath, convertToTSConfig: () => convertToTSConfig, convertTypeAcquisitionFromJson: () => convertTypeAcquisitionFromJson, copyComments: () => copyComments, copyEntries: () => copyEntries, copyLeadingComments: () => copyLeadingComments, copyProperties: () => copyProperties, copyTrailingAsLeadingComments: () => copyTrailingAsLeadingComments, copyTrailingComments: () => copyTrailingComments, couldStartTrivia: () => couldStartTrivia, countWhere: () => countWhere, createAbstractBuilder: () => createAbstractBuilder, createAccessorPropertyBackingField: () => createAccessorPropertyBackingField, createAccessorPropertyGetRedirector: () => createAccessorPropertyGetRedirector, createAccessorPropertySetRedirector: () => createAccessorPropertySetRedirector, createBaseNodeFactory: () => createBaseNodeFactory, createBinaryExpressionTrampoline: () => createBinaryExpressionTrampoline, createBuilderProgram: () => createBuilderProgram, createBuilderProgramUsingIncrementalBuildInfo: () => createBuilderProgramUsingIncrementalBuildInfo, createBuilderStatusReporter: () => createBuilderStatusReporter, createCacheableExportInfoMap: () => createCacheableExportInfoMap, createCachedDirectoryStructureHost: () => createCachedDirectoryStructureHost, createClassifier: () => createClassifier, createCommentDirectivesMap: () => createCommentDirectivesMap, createCompilerDiagnostic: () => createCompilerDiagnostic, createCompilerDiagnosticForInvalidCustomType: () => createCompilerDiagnosticForInvalidCustomType, createCompilerDiagnosticFromMessageChain: () => createCompilerDiagnosticFromMessageChain, createCompilerHost: () => createCompilerHost, createCompilerHostFromProgramHost: () => createCompilerHostFromProgramHost, createCompilerHostWorker: () => createCompilerHostWorker, createDetachedDiagnostic: () => createDetachedDiagnostic, createDiagnosticCollection: () => createDiagnosticCollection, createDiagnosticForFileFromMessageChain: () => createDiagnosticForFileFromMessageChain, createDiagnosticForNode: () => createDiagnosticForNode, createDiagnosticForNodeArray: () => createDiagnosticForNodeArray, createDiagnosticForNodeArrayFromMessageChain: () => createDiagnosticForNodeArrayFromMessageChain, createDiagnosticForNodeFromMessageChain: () => createDiagnosticForNodeFromMessageChain, createDiagnosticForNodeInSourceFile: () => createDiagnosticForNodeInSourceFile, createDiagnosticForRange: () => createDiagnosticForRange, createDiagnosticMessageChainFromDiagnostic: () => createDiagnosticMessageChainFromDiagnostic, createDiagnosticReporter: () => createDiagnosticReporter, createDocumentPositionMapper: () => createDocumentPositionMapper, createDocumentRegistry: () => createDocumentRegistry, createDocumentRegistryInternal: () => createDocumentRegistryInternal, createEmitAndSemanticDiagnosticsBuilderProgram: () => createEmitAndSemanticDiagnosticsBuilderProgram, createEmitHelperFactory: () => createEmitHelperFactory, createEmptyExports: () => createEmptyExports, createEvaluator: () => createEvaluator, createExpressionForJsxElement: () => createExpressionForJsxElement, createExpressionForJsxFragment: () => createExpressionForJsxFragment, createExpressionForObjectLiteralElementLike: () => createExpressionForObjectLiteralElementLike, createExpressionForPropertyName: () => createExpressionForPropertyName, createExpressionFromEntityName: () => createExpressionFromEntityName, createExternalHelpersImportDeclarationIfNeeded: () => createExternalHelpersImportDeclarationIfNeeded, createFileDiagnostic: () => createFileDiagnostic, createFileDiagnosticFromMessageChain: () => createFileDiagnosticFromMessageChain, createFlowNode: () => createFlowNode, createForOfBindingStatement: () => createForOfBindingStatement, createFutureSourceFile: () => createFutureSourceFile, createGetCanonicalFileName: () => createGetCanonicalFileName, createGetIsolatedDeclarationErrors: () => createGetIsolatedDeclarationErrors, createGetSourceFile: () => createGetSourceFile, createGetSymbolAccessibilityDiagnosticForNode: () => createGetSymbolAccessibilityDiagnosticForNode, createGetSymbolAccessibilityDiagnosticForNodeName: () => createGetSymbolAccessibilityDiagnosticForNodeName, createGetSymbolWalker: () => createGetSymbolWalker, createIncrementalCompilerHost: () => createIncrementalCompilerHost, createIncrementalProgram: () => createIncrementalProgram, createJsxFactoryExpression: () => createJsxFactoryExpression, createLanguageService: () => createLanguageService, createLanguageServiceSourceFile: () => createLanguageServiceSourceFile, createMemberAccessForPropertyName: () => createMemberAccessForPropertyName, createModeAwareCache: () => createModeAwareCache, createModeAwareCacheKey: () => createModeAwareCacheKey, createModeMismatchDetails: () => createModeMismatchDetails, createModuleNotFoundChain: () => createModuleNotFoundChain, createModuleResolutionCache: () => createModuleResolutionCache, createModuleResolutionLoader: () => createModuleResolutionLoader, createModuleResolutionLoaderUsingGlobalCache: () => createModuleResolutionLoaderUsingGlobalCache, createModuleSpecifierResolutionHost: () => createModuleSpecifierResolutionHost, createMultiMap: () => createMultiMap, createNameResolver: () => createNameResolver, createNodeConverters: () => createNodeConverters, createNodeFactory: () => createNodeFactory, createOptionNameMap: () => createOptionNameMap, createOverload: () => createOverload, createPackageJsonImportFilter: () => createPackageJsonImportFilter, createPackageJsonInfo: () => createPackageJsonInfo, createParenthesizerRules: () => createParenthesizerRules, createPatternMatcher: () => createPatternMatcher, createPrinter: () => createPrinter, createPrinterWithDefaults: () => createPrinterWithDefaults, createPrinterWithRemoveComments: () => createPrinterWithRemoveComments, createPrinterWithRemoveCommentsNeverAsciiEscape: () => createPrinterWithRemoveCommentsNeverAsciiEscape, createPrinterWithRemoveCommentsOmitTrailingSemicolon: () => createPrinterWithRemoveCommentsOmitTrailingSemicolon, createProgram: () => createProgram, createProgramDiagnostics: () => createProgramDiagnostics, createProgramHost: () => createProgramHost, createPropertyNameNodeForIdentifierOrLiteral: () => createPropertyNameNodeForIdentifierOrLiteral, createQueue: () => createQueue, createRange: () => createRange, createRedirectedBuilderProgram: () => createRedirectedBuilderProgram, createResolutionCache: () => createResolutionCache, createRuntimeTypeSerializer: () => createRuntimeTypeSerializer, createScanner: () => createScanner, createSemanticDiagnosticsBuilderProgram: () => createSemanticDiagnosticsBuilderProgram, createSet: () => createSet, createSolutionBuilder: () => createSolutionBuilder, createSolutionBuilderHost: () => createSolutionBuilderHost, createSolutionBuilderWithWatch: () => createSolutionBuilderWithWatch, createSolutionBuilderWithWatchHost: () => createSolutionBuilderWithWatchHost, createSortedArray: () => createSortedArray, createSourceFile: () => createSourceFile, createSourceMapGenerator: () => createSourceMapGenerator, createSourceMapSource: () => createSourceMapSource, createSuperAccessVariableStatement: () => createSuperAccessVariableStatement, createSymbolTable: () => createSymbolTable, createSymlinkCache: () => createSymlinkCache, createSyntacticTypeNodeBuilder: () => createSyntacticTypeNodeBuilder, createSystemWatchFunctions: () => createSystemWatchFunctions, createTextChange: () => createTextChange, createTextChangeFromStartLength: () => createTextChangeFromStartLength, createTextChangeRange: () => createTextChangeRange, createTextRangeFromNode: () => createTextRangeFromNode, createTextRangeFromSpan: () => createTextRangeFromSpan, createTextSpan: () => createTextSpan, createTextSpanFromBounds: () => createTextSpanFromBounds, createTextSpanFromNode: () => createTextSpanFromNode, createTextSpanFromRange: () => createTextSpanFromRange, createTextSpanFromStringLiteralLikeContent: () => createTextSpanFromStringLiteralLikeContent, createTextWriter: () => createTextWriter, createTokenRange: () => createTokenRange, createTypeChecker: () => createTypeChecker, createTypeReferenceDirectiveResolutionCache: () => createTypeReferenceDirectiveResolutionCache, createTypeReferenceResolutionLoader: () => createTypeReferenceResolutionLoader, createWatchCompilerHost: () => createWatchCompilerHost2, createWatchCompilerHostOfConfigFile: () => createWatchCompilerHostOfConfigFile, createWatchCompilerHostOfFilesAndCompilerOptions: () => createWatchCompilerHostOfFilesAndCompilerOptions, createWatchFactory: () => createWatchFactory, createWatchHost: () => createWatchHost, createWatchProgram: () => createWatchProgram, createWatchStatusReporter: () => createWatchStatusReporter, createWriteFileMeasuringIO: () => createWriteFileMeasuringIO, declarationNameToString: () => declarationNameToString, decodeMappings: () => decodeMappings, decodedTextSpanIntersectsWith: () => decodedTextSpanIntersectsWith, deduplicate: () => deduplicate, defaultHoverMaximumTruncationLength: () => defaultHoverMaximumTruncationLength, defaultInitCompilerOptions: () => defaultInitCompilerOptions, defaultMaximumTruncationLength: () => defaultMaximumTruncationLength, diagnosticCategoryName: () => diagnosticCategoryName, diagnosticToString: () => diagnosticToString, diagnosticsEqualityComparer: () => diagnosticsEqualityComparer, directoryProbablyExists: () => directoryProbablyExists, directorySeparator: () => directorySeparator, displayPart: () => displayPart, displayPartsToString: () => displayPartsToString, disposeEmitNodes: () => disposeEmitNodes, documentSpansEqual: () => documentSpansEqual, dumpTracingLegend: () => dumpTracingLegend, elementAt: () => elementAt, elideNodes: () => elideNodes, emitDetachedComments: () => emitDetachedComments, emitFiles: () => emitFiles, emitFilesAndReportErrors: () => emitFilesAndReportErrors, emitFilesAndReportErrorsAndGetExitStatus: () => emitFilesAndReportErrorsAndGetExitStatus, emitModuleKindIsNonNodeESM: () => emitModuleKindIsNonNodeESM, emitNewLineBeforeLeadingCommentOfPosition: () => emitNewLineBeforeLeadingCommentOfPosition, emitResolverSkipsTypeChecking: () => emitResolverSkipsTypeChecking, emitSkippedWithNoDiagnostics: () => emitSkippedWithNoDiagnostics, emptyArray: () => emptyArray, emptyFileSystemEntries: () => emptyFileSystemEntries, emptyMap: () => emptyMap, emptyOptions: () => emptyOptions, endsWith: () => endsWith, ensurePathIsNonModuleName: () => ensurePathIsNonModuleName, ensureScriptKind: () => ensureScriptKind, ensureTrailingDirectorySeparator: () => ensureTrailingDirectorySeparator, entityNameToString: () => entityNameToString, enumerateInsertsAndDeletes: () => enumerateInsertsAndDeletes, equalOwnProperties: () => equalOwnProperties, equateStringsCaseInsensitive: () => equateStringsCaseInsensitive, equateStringsCaseSensitive: () => equateStringsCaseSensitive, equateValues: () => equateValues, escapeJsxAttributeString: () => escapeJsxAttributeString, escapeLeadingUnderscores: () => escapeLeadingUnderscores, escapeNonAsciiString: () => escapeNonAsciiString, escapeSnippetText: () => escapeSnippetText, escapeString: () => escapeString, escapeTemplateSubstitution: () => escapeTemplateSubstitution, evaluatorResult: () => evaluatorResult, every: () => every, exclusivelyPrefixedNodeCoreModules: () => exclusivelyPrefixedNodeCoreModules, executeCommandLine: () => executeCommandLine, expandPreOrPostfixIncrementOrDecrementExpression: () => expandPreOrPostfixIncrementOrDecrementExpression, explainFiles: () => explainFiles, explainIfFileIsRedirectAndImpliedFormat: () => explainIfFileIsRedirectAndImpliedFormat, exportAssignmentIsAlias: () => exportAssignmentIsAlias, expressionResultIsUnused: () => expressionResultIsUnused, extend: () => extend, extensionFromPath: () => extensionFromPath, extensionIsTS: () => extensionIsTS, extensionsNotSupportingExtensionlessResolution: () => extensionsNotSupportingExtensionlessResolution, externalHelpersModuleNameText: () => externalHelpersModuleNameText, factory: () => factory, fileExtensionIs: () => fileExtensionIs, fileExtensionIsOneOf: () => fileExtensionIsOneOf, fileIncludeReasonToDiagnostics: () => fileIncludeReasonToDiagnostics, fileShouldUseJavaScriptRequire: () => fileShouldUseJavaScriptRequire, filter: () => filter, filterMutate: () => filterMutate, filterSemanticDiagnostics: () => filterSemanticDiagnostics, find: () => find, findAncestor: () => findAncestor, findBestPatternMatch: () => findBestPatternMatch, findChildOfKind: () => findChildOfKind, findComputedPropertyNameCacheAssignment: () => findComputedPropertyNameCacheAssignment, findConfigFile: () => findConfigFile, findConstructorDeclaration: () => findConstructorDeclaration, findContainingList: () => findContainingList, findDiagnosticForNode: () => findDiagnosticForNode, findFirstNonJsxWhitespaceToken: () => findFirstNonJsxWhitespaceToken, findIndex: () => findIndex, findLast: () => findLast, findLastIndex: () => findLastIndex, findListItemInfo: () => findListItemInfo, findModifier: () => findModifier, findNextToken: () => findNextToken, findPackageJson: () => findPackageJson, findPackageJsons: () => findPackageJsons, findPrecedingMatchingToken: () => findPrecedingMatchingToken, findPrecedingToken: () => findPrecedingToken, findSuperStatementIndexPath: () => findSuperStatementIndexPath, findTokenOnLeftOfPosition: () => findTokenOnLeftOfPosition, findUseStrictPrologue: () => findUseStrictPrologue, first: () => first, firstDefined: () => firstDefined, firstDefinedIterator: () => firstDefinedIterator, firstIterator: () => firstIterator, firstOrOnly: () => firstOrOnly, firstOrUndefined: () => firstOrUndefined, firstOrUndefinedIterator: () => firstOrUndefinedIterator, fixupCompilerOptions: () => fixupCompilerOptions, flatMap: () => flatMap, flatMapIterator: () => flatMapIterator, flatMapToMutable: () => flatMapToMutable, flatten: () => flatten, flattenCommaList: () => flattenCommaList, flattenDestructuringAssignment: () => flattenDestructuringAssignment, flattenDestructuringBinding: () => flattenDestructuringBinding, flattenDiagnosticMessageText: () => flattenDiagnosticMessageText, forEach: () => forEach, forEachAncestor: () => forEachAncestor, forEachAncestorDirectory: () => forEachAncestorDirectory, forEachAncestorDirectoryStoppingAtGlobalCache: () => forEachAncestorDirectoryStoppingAtGlobalCache, forEachChild: () => forEachChild, forEachChildRecursively: () => forEachChildRecursively, forEachDynamicImportOrRequireCall: () => forEachDynamicImportOrRequireCall, forEachEmittedFile: () => forEachEmittedFile, forEachEnclosingBlockScopeContainer: () => forEachEnclosingBlockScopeContainer, forEachEntry: () => forEachEntry, forEachExternalModuleToImportFrom: () => forEachExternalModuleToImportFrom, forEachImportClauseDeclaration: () => forEachImportClauseDeclaration, forEachKey: () => forEachKey, forEachLeadingCommentRange: () => forEachLeadingCommentRange, forEachNameInAccessChainWalkingLeft: () => forEachNameInAccessChainWalkingLeft, forEachNameOfDefaultExport: () => forEachNameOfDefaultExport, forEachOptionsSyntaxByName: () => forEachOptionsSyntaxByName, forEachProjectReference: () => forEachProjectReference, forEachPropertyAssignment: () => forEachPropertyAssignment, forEachResolvedProjectReference: () => forEachResolvedProjectReference, forEachReturnStatement: () => forEachReturnStatement, forEachRight: () => forEachRight, forEachTrailingCommentRange: () => forEachTrailingCommentRange, forEachTsConfigPropArray: () => forEachTsConfigPropArray, forEachUnique: () => forEachUnique, forEachYieldExpression: () => forEachYieldExpression, formatColorAndReset: () => formatColorAndReset, formatDiagnostic: () => formatDiagnostic2, formatDiagnostics: () => formatDiagnostics, formatDiagnosticsWithColorAndContext: () => formatDiagnosticsWithColorAndContext, formatGeneratedName: () => formatGeneratedName, formatGeneratedNamePart: () => formatGeneratedNamePart, formatLocation: () => formatLocation, formatMessage: () => formatMessage, formatStringFromArgs: () => formatStringFromArgs, formatting: () => ts_formatting_exports, generateDjb2Hash: () => generateDjb2Hash, generateTSConfig: () => generateTSConfig, getAdjustedReferenceLocation: () => getAdjustedReferenceLocation, getAdjustedRenameLocation: () => getAdjustedRenameLocation, getAliasDeclarationFromName: () => getAliasDeclarationFromName, getAllAccessorDeclarations: () => getAllAccessorDeclarations, getAllDecoratorsOfClass: () => getAllDecoratorsOfClass, getAllDecoratorsOfClassElement: () => getAllDecoratorsOfClassElement, getAllJSDocTags: () => getAllJSDocTags, getAllJSDocTagsOfKind: () => getAllJSDocTagsOfKind, getAllKeys: () => getAllKeys, getAllProjectOutputs: () => getAllProjectOutputs, getAllSuperTypeNodes: () => getAllSuperTypeNodes, getAllowImportingTsExtensions: () => getAllowImportingTsExtensions, getAllowJSCompilerOption: () => getAllowJSCompilerOption, getAllowSyntheticDefaultImports: () => getAllowSyntheticDefaultImports, getAlwaysStrict: () => getAlwaysStrict, getAncestor: () => getAncestor, getAnyExtensionFromPath: () => getAnyExtensionFromPath, getAreDeclarationMapsEnabled: () => getAreDeclarationMapsEnabled, getAssignedExpandoInitializer: () => getAssignedExpandoInitializer, getAssignedName: () => getAssignedName, getAssignmentDeclarationKind: () => getAssignmentDeclarationKind, getAssignmentDeclarationPropertyAccessKind: () => getAssignmentDeclarationPropertyAccessKind, getAssignmentTargetKind: () => getAssignmentTargetKind, getAutomaticTypeDirectiveNames: () => getAutomaticTypeDirectiveNames, getBaseFileName: () => getBaseFileName, getBinaryOperatorPrecedence: () => getBinaryOperatorPrecedence, getBuildInfo: () => getBuildInfo, getBuildInfoFileVersionMap: () => getBuildInfoFileVersionMap, getBuildInfoText: () => getBuildInfoText, getBuildOrderFromAnyBuildOrder: () => getBuildOrderFromAnyBuildOrder, getBuilderCreationParameters: () => getBuilderCreationParameters, getBuilderFileEmit: () => getBuilderFileEmit, getCanonicalDiagnostic: () => getCanonicalDiagnostic, getCheckFlags: () => getCheckFlags, getClassExtendsHeritageElement: () => getClassExtendsHeritageElement, getClassLikeDeclarationOfSymbol: () => getClassLikeDeclarationOfSymbol, getCombinedLocalAndExportSymbolFlags: () => getCombinedLocalAndExportSymbolFlags, getCombinedModifierFlags: () => getCombinedModifierFlags, getCombinedNodeFlags: () => getCombinedNodeFlags, getCombinedNodeFlagsAlwaysIncludeJSDoc: () => getCombinedNodeFlagsAlwaysIncludeJSDoc, getCommentRange: () => getCommentRange, getCommonSourceDirectory: () => getCommonSourceDirectory, getCommonSourceDirectoryOfConfig: () => getCommonSourceDirectoryOfConfig, getCompilerOptionValue: () => getCompilerOptionValue, getComputedCommonSourceDirectory: () => getComputedCommonSourceDirectory, getConditions: () => getConditions, getConfigFileParsingDiagnostics: () => getConfigFileParsingDiagnostics, getConstantValue: () => getConstantValue, getContainerFlags: () => getContainerFlags, getContainerNode: () => getContainerNode, getContainingClass: () => getContainingClass, getContainingClassExcludingClassDecorators: () => getContainingClassExcludingClassDecorators, getContainingClassStaticBlock: () => getContainingClassStaticBlock, getContainingFunction: () => getContainingFunction, getContainingFunctionDeclaration: () => getContainingFunctionDeclaration, getContainingFunctionOrClassStaticBlock: () => getContainingFunctionOrClassStaticBlock, getContainingNodeArray: () => getContainingNodeArray, getContainingObjectLiteralElement: () => getContainingObjectLiteralElement, getContextualTypeFromParent: () => getContextualTypeFromParent, getContextualTypeFromParentOrAncestorTypeNode: () => getContextualTypeFromParentOrAncestorTypeNode, getDeclarationDiagnostics: () => getDeclarationDiagnostics, getDeclarationEmitExtensionForPath: () => getDeclarationEmitExtensionForPath, getDeclarationEmitOutputFilePath: () => getDeclarationEmitOutputFilePath, getDeclarationEmitOutputFilePathWorker: () => getDeclarationEmitOutputFilePathWorker, getDeclarationFileExtension: () => getDeclarationFileExtension, getDeclarationFromName: () => getDeclarationFromName, getDeclarationModifierFlagsFromSymbol: () => getDeclarationModifierFlagsFromSymbol, getDeclarationOfKind: () => getDeclarationOfKind, getDeclarationsOfKind: () => getDeclarationsOfKind, getDeclaredExpandoInitializer: () => getDeclaredExpandoInitializer, getDecorators: () => getDecorators, getDefaultCompilerOptions: () => getDefaultCompilerOptions2, getDefaultFormatCodeSettings: () => getDefaultFormatCodeSettings, getDefaultLibFileName: () => getDefaultLibFileName, getDefaultLibFilePath: () => getDefaultLibFilePath, getDefaultLikeExportInfo: () => getDefaultLikeExportInfo, getDefaultLikeExportNameFromDeclaration: () => getDefaultLikeExportNameFromDeclaration, getDefaultResolutionModeForFileWorker: () => getDefaultResolutionModeForFileWorker, getDiagnosticText: () => getDiagnosticText, getDiagnosticsWithinSpan: () => getDiagnosticsWithinSpan, getDirectoryPath: () => getDirectoryPath, getDirectoryToWatchFailedLookupLocation: () => getDirectoryToWatchFailedLookupLocation, getDirectoryToWatchFailedLookupLocationFromTypeRoot: () => getDirectoryToWatchFailedLookupLocationFromTypeRoot, getDocumentPositionMapper: () => getDocumentPositionMapper, getDocumentSpansEqualityComparer: () => getDocumentSpansEqualityComparer, getESModuleInterop: () => getESModuleInterop, getEditsForFileRename: () => getEditsForFileRename, getEffectiveBaseTypeNode: () => getEffectiveBaseTypeNode, getEffectiveConstraintOfTypeParameter: () => getEffectiveConstraintOfTypeParameter, getEffectiveContainerForJSDocTemplateTag: () => getEffectiveContainerForJSDocTemplateTag, getEffectiveImplementsTypeNodes: () => getEffectiveImplementsTypeNodes, getEffectiveInitializer: () => getEffectiveInitializer, getEffectiveJSDocHost: () => getEffectiveJSDocHost, getEffectiveModifierFlags: () => getEffectiveModifierFlags, getEffectiveModifierFlagsAlwaysIncludeJSDoc: () => getEffectiveModifierFlagsAlwaysIncludeJSDoc, getEffectiveModifierFlagsNoCache: () => getEffectiveModifierFlagsNoCache, getEffectiveReturnTypeNode: () => getEffectiveReturnTypeNode, getEffectiveSetAccessorTypeAnnotationNode: () => getEffectiveSetAccessorTypeAnnotationNode, getEffectiveTypeAnnotationNode: () => getEffectiveTypeAnnotationNode, getEffectiveTypeParameterDeclarations: () => getEffectiveTypeParameterDeclarations, getEffectiveTypeRoots: () => getEffectiveTypeRoots, getElementOrPropertyAccessArgumentExpressionOrName: () => getElementOrPropertyAccessArgumentExpressionOrName, getElementOrPropertyAccessName: () => getElementOrPropertyAccessName, getElementsOfBindingOrAssignmentPattern: () => getElementsOfBindingOrAssignmentPattern, getEmitDeclarations: () => getEmitDeclarations, getEmitFlags: () => getEmitFlags, getEmitHelpers: () => getEmitHelpers, getEmitModuleDetectionKind: () => getEmitModuleDetectionKind, getEmitModuleFormatOfFileWorker: () => getEmitModuleFormatOfFileWorker, getEmitModuleKind: () => getEmitModuleKind, getEmitModuleResolutionKind: () => getEmitModuleResolutionKind, getEmitScriptTarget: () => getEmitScriptTarget, getEmitStandardClassFields: () => getEmitStandardClassFields, getEnclosingBlockScopeContainer: () => getEnclosingBlockScopeContainer, getEnclosingContainer: () => getEnclosingContainer, getEncodedSemanticClassifications: () => getEncodedSemanticClassifications, getEncodedSyntacticClassifications: () => getEncodedSyntacticClassifications, getEndLinePosition: () => getEndLinePosition, getEntityNameFromTypeNode: () => getEntityNameFromTypeNode, getEntrypointsFromPackageJsonInfo: () => getEntrypointsFromPackageJsonInfo, getErrorCountForSummary: () => getErrorCountForSummary, getErrorSpanForNode: () => getErrorSpanForNode, getErrorSummaryText: () => getErrorSummaryText, getEscapedTextOfIdentifierOrLiteral: () => getEscapedTextOfIdentifierOrLiteral, getEscapedTextOfJsxAttributeName: () => getEscapedTextOfJsxAttributeName, getEscapedTextOfJsxNamespacedName: () => getEscapedTextOfJsxNamespacedName, getExpandoInitializer: () => getExpandoInitializer, getExportAssignmentExpression: () => getExportAssignmentExpression, getExportInfoMap: () => getExportInfoMap, getExportNeedsImportStarHelper: () => getExportNeedsImportStarHelper, getExpressionAssociativity: () => getExpressionAssociativity, getExpressionPrecedence: () => getExpressionPrecedence, getExternalHelpersModuleName: () => getExternalHelpersModuleName, getExternalModuleImportEqualsDeclarationExpression: () => getExternalModuleImportEqualsDeclarationExpression, getExternalModuleName: () => getExternalModuleName, getExternalModuleNameFromDeclaration: () => getExternalModuleNameFromDeclaration, getExternalModuleNameFromPath: () => getExternalModuleNameFromPath, getExternalModuleNameLiteral: () => getExternalModuleNameLiteral, getExternalModuleRequireArgument: () => getExternalModuleRequireArgument, getFallbackOptions: () => getFallbackOptions, getFileEmitOutput: () => getFileEmitOutput, getFileMatcherPatterns: () => getFileMatcherPatterns, getFileNamesFromConfigSpecs: () => getFileNamesFromConfigSpecs, getFileWatcherEventKind: () => getFileWatcherEventKind, getFilesInErrorForSummary: () => getFilesInErrorForSummary, getFirstConstructorWithBody: () => getFirstConstructorWithBody, getFirstIdentifier: () => getFirstIdentifier, getFirstNonSpaceCharacterPosition: () => getFirstNonSpaceCharacterPosition, getFirstProjectOutput: () => getFirstProjectOutput, getFixableErrorSpanExpression: () => getFixableErrorSpanExpression, getFormatCodeSettingsForWriting: () => getFormatCodeSettingsForWriting, getFullWidth: () => getFullWidth, getFunctionFlags: () => getFunctionFlags, getHeritageClause: () => getHeritageClause, getHostSignatureFromJSDoc: () => getHostSignatureFromJSDoc, getIdentifierAutoGenerate: () => getIdentifierAutoGenerate, getIdentifierGeneratedImportReference: () => getIdentifierGeneratedImportReference, getIdentifierTypeArguments: () => getIdentifierTypeArguments, getImmediatelyInvokedFunctionExpression: () => getImmediatelyInvokedFunctionExpression, getImpliedNodeFormatForEmitWorker: () => getImpliedNodeFormatForEmitWorker, getImpliedNodeFormatForFile: () => getImpliedNodeFormatForFile, getImpliedNodeFormatForFileWorker: () => getImpliedNodeFormatForFileWorker, getImportNeedsImportDefaultHelper: () => getImportNeedsImportDefaultHelper, getImportNeedsImportStarHelper: () => getImportNeedsImportStarHelper, getIndentString: () => getIndentString, getInferredLibraryNameResolveFrom: () => getInferredLibraryNameResolveFrom, getInitializedVariables: () => getInitializedVariables, getInitializerOfBinaryExpression: () => getInitializerOfBinaryExpression, getInitializerOfBindingOrAssignmentElement: () => getInitializerOfBindingOrAssignmentElement, getInterfaceBaseTypeNodes: () => getInterfaceBaseTypeNodes, getInternalEmitFlags: () => getInternalEmitFlags, getInvokedExpression: () => getInvokedExpression, getIsFileExcluded: () => getIsFileExcluded, getIsolatedModules: () => getIsolatedModules, getJSDocAugmentsTag: () => getJSDocAugmentsTag, getJSDocClassTag: () => getJSDocClassTag, getJSDocCommentRanges: () => getJSDocCommentRanges, getJSDocCommentsAndTags: () => getJSDocCommentsAndTags, getJSDocDeprecatedTag: () => getJSDocDeprecatedTag, getJSDocDeprecatedTagNoCache: () => getJSDocDeprecatedTagNoCache, getJSDocEnumTag: () => getJSDocEnumTag, getJSDocHost: () => getJSDocHost, getJSDocImplementsTags: () => getJSDocImplementsTags, getJSDocOverloadTags: () => getJSDocOverloadTags, getJSDocOverrideTagNoCache: () => getJSDocOverrideTagNoCache, getJSDocParameterTags: () => getJSDocParameterTags, getJSDocParameterTagsNoCache: () => getJSDocParameterTagsNoCache, getJSDocPrivateTag: () => getJSDocPrivateTag, getJSDocPrivateTagNoCache: () => getJSDocPrivateTagNoCache, getJSDocProtectedTag: () => getJSDocProtectedTag, getJSDocProtectedTagNoCache: () => getJSDocProtectedTagNoCache, getJSDocPublicTag: () => getJSDocPublicTag, getJSDocPublicTagNoCache: () => getJSDocPublicTagNoCache, getJSDocReadonlyTag: () => getJSDocReadonlyTag, getJSDocReadonlyTagNoCache: () => getJSDocReadonlyTagNoCache, getJSDocReturnTag: () => getJSDocReturnTag, getJSDocReturnType: () => getJSDocReturnType, getJSDocRoot: () => getJSDocRoot, getJSDocSatisfiesExpressionType: () => getJSDocSatisfiesExpressionType, getJSDocSatisfiesTag: () => getJSDocSatisfiesTag, getJSDocTags: () => getJSDocTags, getJSDocTemplateTag: () => getJSDocTemplateTag, getJSDocThisTag: () => getJSDocThisTag, getJSDocType: () => getJSDocType, getJSDocTypeAliasName: () => getJSDocTypeAliasName, getJSDocTypeAssertionType: () => getJSDocTypeAssertionType, getJSDocTypeParameterDeclarations: () => getJSDocTypeParameterDeclarations, getJSDocTypeParameterTags: () => getJSDocTypeParameterTags, getJSDocTypeParameterTagsNoCache: () => getJSDocTypeParameterTagsNoCache, getJSDocTypeTag: () => getJSDocTypeTag, getJSXImplicitImportBase: () => getJSXImplicitImportBase, getJSXRuntimeImport: () => getJSXRuntimeImport, getJSXTransformEnabled: () => getJSXTransformEnabled, getKeyForCompilerOptions: () => getKeyForCompilerOptions, getLanguageVariant: () => getLanguageVariant, getLastChild: () => getLastChild, getLeadingCommentRanges: () => getLeadingCommentRanges, getLeadingCommentRangesOfNode: () => getLeadingCommentRangesOfNode, getLeftmostAccessExpression: () => getLeftmostAccessExpression, getLeftmostExpression: () => getLeftmostExpression, getLibFileNameFromLibReference: () => getLibFileNameFromLibReference, getLibNameFromLibReference: () => getLibNameFromLibReference, getLibraryNameFromLibFileName: () => getLibraryNameFromLibFileName, getLineAndCharacterOfPosition: () => getLineAndCharacterOfPosition, getLineInfo: () => getLineInfo, getLineOfLocalPosition: () => getLineOfLocalPosition, getLineStartPositionForPosition: () => getLineStartPositionForPosition, getLineStarts: () => getLineStarts, getLinesBetweenPositionAndNextNonWhitespaceCharacter: () => getLinesBetweenPositionAndNextNonWhitespaceCharacter, getLinesBetweenPositionAndPrecedingNonWhitespaceCharacter: () => getLinesBetweenPositionAndPrecedingNonWhitespaceCharacter, getLinesBetweenPositions: () => getLinesBetweenPositions, getLinesBetweenRangeEndAndRangeStart: () => getLinesBetweenRangeEndAndRangeStart, getLinesBetweenRangeEndPositions: () => getLinesBetweenRangeEndPositions, getLiteralText: () => getLiteralText, getLocalNameForExternalImport: () => getLocalNameForExternalImport, getLocalSymbolForExportDefault: () => getLocalSymbolForExportDefault, getLocaleSpecificMessage: () => getLocaleSpecificMessage, getLocaleTimeString: () => getLocaleTimeString, getMappedContextSpan: () => getMappedContextSpan, getMappedDocumentSpan: () => getMappedDocumentSpan, getMappedLocation: () => getMappedLocation, getMatchedFileSpec: () => getMatchedFileSpec, getMatchedIncludeSpec: () => getMatchedIncludeSpec, getMeaningFromDeclaration: () => getMeaningFromDeclaration, getMeaningFromLocation: () => getMeaningFromLocation, getMembersOfDeclaration: () => getMembersOfDeclaration, getModeForFileReference: () => getModeForFileReference, getModeForResolutionAtIndex: () => getModeForResolutionAtIndex, getModeForUsageLocation: () => getModeForUsageLocation, getModifiedTime: () => getModifiedTime, getModifiers: () => getModifiers, getModuleInstanceState: () => getModuleInstanceState, getModuleNameStringLiteralAt: () => getModuleNameStringLiteralAt, getModuleSpecifierEndingPreference: () => getModuleSpecifierEndingPreference, getModuleSpecifierOfBareOrAccessedRequire: () => getModuleSpecifierOfBareOrAccessedRequire, getModuleSpecifierResolverHost: () => getModuleSpecifierResolverHost, getNameForExportedSymbol: () => getNameForExportedSymbol, getNameFromImportAttribute: () => getNameFromImportAttribute, getNameFromIndexInfo: () => getNameFromIndexInfo, getNameFromPropertyName: () => getNameFromPropertyName, getNameOfAccessExpression: () => getNameOfAccessExpression, getNameOfCompilerOptionValue: () => getNameOfCompilerOptionValue, getNameOfDeclaration: () => getNameOfDeclaration, getNameOfExpando: () => getNameOfExpando, getNameOfJSDocTypedef: () => getNameOfJSDocTypedef, getNameOfScriptTarget: () => getNameOfScriptTarget, getNameOrArgument: () => getNameOrArgument, getNameTable: () => getNameTable, getNamespaceDeclarationNode: () => getNamespaceDeclarationNode, getNewLineCharacter: () => getNewLineCharacter, getNewLineKind: () => getNewLineKind, getNewLineOrDefaultFromHost: () => getNewLineOrDefaultFromHost, getNewTargetContainer: () => getNewTargetContainer, getNextJSDocCommentLocation: () => getNextJSDocCommentLocation, getNodeChildren: () => getNodeChildren, getNodeForGeneratedName: () => getNodeForGeneratedName, getNodeId: () => getNodeId, getNodeKind: () => getNodeKind, getNodeModifiers: () => getNodeModifiers, getNodeModulePathParts: () => getNodeModulePathParts, getNonAssignedNameOfDeclaration: () => getNonAssignedNameOfDeclaration, getNonAssignmentOperatorForCompoundAssignment: () => getNonAssignmentOperatorForCompoundAssignment, getNonAugmentationDeclaration: () => getNonAugmentationDeclaration, getNonDecoratorTokenPosOfNode: () => getNonDecoratorTokenPosOfNode, getNonIncrementalBuildInfoRoots: () => getNonIncrementalBuildInfoRoots, getNormalizedAbsolutePath: () => getNormalizedAbsolutePath, getNormalizedAbsolutePathWithoutRoot: () => getNormalizedAbsolutePathWithoutRoot, getNormalizedPathComponents: () => getNormalizedPathComponents, getObjectFlags: () => getObjectFlags, getOperatorAssociativity: () => getOperatorAssociativity, getOperatorPrecedence: () => getOperatorPrecedence, getOptionFromName: () => getOptionFromName, getOptionsForLibraryResolution: () => getOptionsForLibraryResolution, getOptionsNameMap: () => getOptionsNameMap, getOptionsSyntaxByArrayElementValue: () => getOptionsSyntaxByArrayElementValue, getOptionsSyntaxByValue: () => getOptionsSyntaxByValue, getOrCreateEmitNode: () => getOrCreateEmitNode, getOrUpdate: () => getOrUpdate, getOriginalNode: () => getOriginalNode, getOriginalNodeId: () => getOriginalNodeId, getOutputDeclarationFileName: () => getOutputDeclarationFileName, getOutputDeclarationFileNameWorker: () => getOutputDeclarationFileNameWorker, getOutputExtension: () => getOutputExtension, getOutputFileNames: () => getOutputFileNames, getOutputJSFileNameWorker: () => getOutputJSFileNameWorker, getOutputPathsFor: () => getOutputPathsFor, getOwnEmitOutputFilePath: () => getOwnEmitOutputFilePath, getOwnKeys: () => getOwnKeys, getOwnValues: () => getOwnValues, getPackageJsonTypesVersionsPaths: () => getPackageJsonTypesVersionsPaths, getPackageNameFromTypesPackageName: () => getPackageNameFromTypesPackageName, getPackageScopeForPath: () => getPackageScopeForPath, getParameterSymbolFromJSDoc: () => getParameterSymbolFromJSDoc, getParentNodeInSpan: () => getParentNodeInSpan, getParseTreeNode: () => getParseTreeNode, getParsedCommandLineOfConfigFile: () => getParsedCommandLineOfConfigFile, getPathComponents: () => getPathComponents, getPathFromPathComponents: () => getPathFromPathComponents, getPathUpdater: () => getPathUpdater, getPathsBasePath: () => getPathsBasePath, getPatternFromSpec: () => getPatternFromSpec, getPendingEmitKindWithSeen: () => getPendingEmitKindWithSeen, getPositionOfLineAndCharacter: () => getPositionOfLineAndCharacter, getPossibleGenericSignatures: () => getPossibleGenericSignatures, getPossibleOriginalInputExtensionForExtension: () => getPossibleOriginalInputExtensionForExtension, getPossibleOriginalInputPathWithoutChangingExt: () => getPossibleOriginalInputPathWithoutChangingExt, getPossibleTypeArgumentsInfo: () => getPossibleTypeArgumentsInfo, getPreEmitDiagnostics: () => getPreEmitDiagnostics, getPrecedingNonSpaceCharacterPosition: () => getPrecedingNonSpaceCharacterPosition, getPrivateIdentifier: () => getPrivateIdentifier, getProperties: () => getProperties, getProperty: () => getProperty, getPropertyAssignmentAliasLikeExpression: () => getPropertyAssignmentAliasLikeExpression, getPropertyNameForPropertyNameNode: () => getPropertyNameForPropertyNameNode, getPropertyNameFromType: () => getPropertyNameFromType, getPropertyNameOfBindingOrAssignmentElement: () => getPropertyNameOfBindingOrAssignmentElement, getPropertySymbolFromBindingElement: () => getPropertySymbolFromBindingElement, getPropertySymbolsFromContextualType: () => getPropertySymbolsFromContextualType, getQuoteFromPreference: () => getQuoteFromPreference, getQuotePreference: () => getQuotePreference, getRangesWhere: () => getRangesWhere, getRefactorContextSpan: () => getRefactorContextSpan, getReferencedFileLocation: () => getReferencedFileLocation, getRegexFromPattern: () => getRegexFromPattern, getRegularExpressionForWildcard: () => getRegularExpressionForWildcard, getRegularExpressionsForWildcards: () => getRegularExpressionsForWildcards, getRelativePathFromDirectory: () => getRelativePathFromDirectory, getRelativePathFromFile: () => getRelativePathFromFile, getRelativePathToDirectoryOrUrl: () => getRelativePathToDirectoryOrUrl, getRenameLocation: () => getRenameLocation, getReplacementSpanForContextToken: () => getReplacementSpanForContextToken, getResolutionDiagnostic: () => getResolutionDiagnostic, getResolutionModeOverride: () => getResolutionModeOverride, getResolveJsonModule: () => getResolveJsonModule, getResolvePackageJsonExports: () => getResolvePackageJsonExports, getResolvePackageJsonImports: () => getResolvePackageJsonImports, getResolvedExternalModuleName: () => getResolvedExternalModuleName, getResolvedModuleFromResolution: () => getResolvedModuleFromResolution, getResolvedTypeReferenceDirectiveFromResolution: () => getResolvedTypeReferenceDirectiveFromResolution, getRestIndicatorOfBindingOrAssignmentElement: () => getRestIndicatorOfBindingOrAssignmentElement, getRestParameterElementType: () => getRestParameterElementType, getRightMostAssignedExpression: () => getRightMostAssignedExpression, getRootDeclaration: () => getRootDeclaration, getRootDirectoryOfResolutionCache: () => getRootDirectoryOfResolutionCache, getRootLength: () => getRootLength, getScriptKind: () => getScriptKind, getScriptKindFromFileName: () => getScriptKindFromFileName, getScriptTargetFeatures: () => getScriptTargetFeatures, getSelectedEffectiveModifierFlags: () => getSelectedEffectiveModifierFlags, getSelectedSyntacticModifierFlags: () => getSelectedSyntacticModifierFlags, getSemanticClassifications: () => getSemanticClassifications, getSemanticJsxChildren: () => getSemanticJsxChildren, getSetAccessorTypeAnnotationNode: () => getSetAccessorTypeAnnotationNode, getSetAccessorValueParameter: () => getSetAccessorValueParameter, getSetExternalModuleIndicator: () => getSetExternalModuleIndicator, getShebang: () => getShebang, getSingleVariableOfVariableStatement: () => getSingleVariableOfVariableStatement, getSnapshotText: () => getSnapshotText, getSnippetElement: () => getSnippetElement, getSourceFileOfModule: () => getSourceFileOfModule, getSourceFileOfNode: () => getSourceFileOfNode, getSourceFilePathInNewDir: () => getSourceFilePathInNewDir, getSourceFileVersionAsHashFromText: () => getSourceFileVersionAsHashFromText, getSourceFilesToEmit: () => getSourceFilesToEmit, getSourceMapRange: () => getSourceMapRange, getSourceMapper: () => getSourceMapper, getSourceTextOfNodeFromSourceFile: () => getSourceTextOfNodeFromSourceFile, getSpanOfTokenAtPosition: () => getSpanOfTokenAtPosition, getSpellingSuggestion: () => getSpellingSuggestion, getStartPositionOfLine: () => getStartPositionOfLine, getStartPositionOfRange: () => getStartPositionOfRange, getStartsOnNewLine: () => getStartsOnNewLine, getStaticPropertiesAndClassStaticBlock: () => getStaticPropertiesAndClassStaticBlock, getStrictOptionValue: () => getStrictOptionValue, getStringComparer: () => getStringComparer, getSubPatternFromSpec: () => getSubPatternFromSpec, getSuperCallFromStatement: () => getSuperCallFromStatement, getSuperContainer: () => getSuperContainer, getSupportedCodeFixes: () => getSupportedCodeFixes, getSupportedExtensions: () => getSupportedExtensions, getSupportedExtensionsWithJsonIfResolveJsonModule: () => getSupportedExtensionsWithJsonIfResolveJsonModule, getSwitchedType: () => getSwitchedType, getSymbolId: () => getSymbolId, getSymbolNameForPrivateIdentifier: () => getSymbolNameForPrivateIdentifier, getSymbolTarget: () => getSymbolTarget, getSyntacticClassifications: () => getSyntacticClassifications, getSyntacticModifierFlags: () => getSyntacticModifierFlags, getSyntacticModifierFlagsNoCache: () => getSyntacticModifierFlagsNoCache, getSynthesizedDeepClone: () => getSynthesizedDeepClone, getSynthesizedDeepCloneWithReplacements: () => getSynthesizedDeepCloneWithReplacements, getSynthesizedDeepClones: () => getSynthesizedDeepClones, getSynthesizedDeepClonesWithReplacements: () => getSynthesizedDeepClonesWithReplacements, getSyntheticLeadingComments: () => getSyntheticLeadingComments, getSyntheticTrailingComments: () => getSyntheticTrailingComments, getTargetLabel: () => getTargetLabel, getTargetOfBindingOrAssignmentElement: () => getTargetOfBindingOrAssignmentElement, getTemporaryModuleResolutionState: () => getTemporaryModuleResolutionState, getTextOfConstantValue: () => getTextOfConstantValue, getTextOfIdentifierOrLiteral: () => getTextOfIdentifierOrLiteral, getTextOfJSDocComment: () => getTextOfJSDocComment, getTextOfJsxAttributeName: () => getTextOfJsxAttributeName, getTextOfJsxNamespacedName: () => getTextOfJsxNamespacedName, getTextOfNode: () => getTextOfNode, getTextOfNodeFromSourceText: () => getTextOfNodeFromSourceText, getTextOfPropertyName: () => getTextOfPropertyName, getThisContainer: () => getThisContainer, getThisParameter: () => getThisParameter, getTokenAtPosition: () => getTokenAtPosition, getTokenPosOfNode: () => getTokenPosOfNode, getTokenSourceMapRange: () => getTokenSourceMapRange, getTouchingPropertyName: () => getTouchingPropertyName, getTouchingToken: () => getTouchingToken, getTrailingCommentRanges: () => getTrailingCommentRanges, getTrailingSemicolonDeferringWriter: () => getTrailingSemicolonDeferringWriter, getTransformers: () => getTransformers, getTsBuildInfoEmitOutputFilePath: () => getTsBuildInfoEmitOutputFilePath, getTsConfigObjectLiteralExpression: () => getTsConfigObjectLiteralExpression, getTsConfigPropArrayElementValue: () => getTsConfigPropArrayElementValue, getTypeAnnotationNode: () => getTypeAnnotationNode, getTypeArgumentOrTypeParameterList: () => getTypeArgumentOrTypeParameterList, getTypeKeywordOfTypeOnlyImport: () => getTypeKeywordOfTypeOnlyImport, getTypeNode: () => getTypeNode, getTypeNodeIfAccessible: () => getTypeNodeIfAccessible, getTypeParameterFromJsDoc: () => getTypeParameterFromJsDoc, getTypeParameterOwner: () => getTypeParameterOwner, getTypesPackageName: () => getTypesPackageName, getUILocale: () => getUILocale, getUniqueName: () => getUniqueName, getUniqueSymbolId: () => getUniqueSymbolId, getUseDefineForClassFields: () => getUseDefineForClassFields, getWatchErrorSummaryDiagnosticMessage: () => getWatchErrorSummaryDiagnosticMessage, getWatchFactory: () => getWatchFactory, group: () => group, groupBy: () => groupBy, guessIndentation: () => guessIndentation, handleNoEmitOptions: () => handleNoEmitOptions, handleWatchOptionsConfigDirTemplateSubstitution: () => handleWatchOptionsConfigDirTemplateSubstitution, hasAbstractModifier: () => hasAbstractModifier, hasAccessorModifier: () => hasAccessorModifier, hasAmbientModifier: () => hasAmbientModifier, hasChangesInResolutions: () => hasChangesInResolutions, hasContextSensitiveParameters: () => hasContextSensitiveParameters, hasDecorators: () => hasDecorators, hasDocComment: () => hasDocComment, hasDynamicName: () => hasDynamicName, hasEffectiveModifier: () => hasEffectiveModifier, hasEffectiveModifiers: () => hasEffectiveModifiers, hasEffectiveReadonlyModifier: () => hasEffectiveReadonlyModifier, hasExtension: () => hasExtension, hasImplementationTSFileExtension: () => hasImplementationTSFileExtension, hasIndexSignature: () => hasIndexSignature, hasInferredType: () => hasInferredType, hasInitializer: () => hasInitializer, hasInvalidEscape: () => hasInvalidEscape, hasJSDocNodes: () => hasJSDocNodes, hasJSDocParameterTags: () => hasJSDocParameterTags, hasJSFileExtension: () => hasJSFileExtension, hasJsonModuleEmitEnabled: () => hasJsonModuleEmitEnabled, hasOnlyExpressionInitializer: () => hasOnlyExpressionInitializer, hasOverrideModifier: () => hasOverrideModifier, hasPossibleExternalModuleReference: () => hasPossibleExternalModuleReference, hasProperty: () => hasProperty, hasPropertyAccessExpressionWithName: () => hasPropertyAccessExpressionWithName, hasQuestionToken: () => hasQuestionToken, hasRecordedExternalHelpers: () => hasRecordedExternalHelpers, hasResolutionModeOverride: () => hasResolutionModeOverride, hasRestParameter: () => hasRestParameter, hasScopeMarker: () => hasScopeMarker, hasStaticModifier: () => hasStaticModifier, hasSyntacticModifier: () => hasSyntacticModifier, hasSyntacticModifiers: () => hasSyntacticModifiers, hasTSFileExtension: () => hasTSFileExtension, hasTabstop: () => hasTabstop, hasTrailingDirectorySeparator: () => hasTrailingDirectorySeparator, hasType: () => hasType, hasTypeArguments: () => hasTypeArguments, hasZeroOrOneAsteriskCharacter: () => hasZeroOrOneAsteriskCharacter, hostGetCanonicalFileName: () => hostGetCanonicalFileName, hostUsesCaseSensitiveFileNames: () => hostUsesCaseSensitiveFileNames, idText: () => idText, identifierIsThisKeyword: () => identifierIsThisKeyword, identifierToKeywordKind: () => identifierToKeywordKind, identity: () => identity, identitySourceMapConsumer: () => identitySourceMapConsumer, ignoreSourceNewlines: () => ignoreSourceNewlines, ignoredPaths: () => ignoredPaths, importFromModuleSpecifier: () => importFromModuleSpecifier, importSyntaxAffectsModuleResolution: () => importSyntaxAffectsModuleResolution, indexOfAnyCharCode: () => indexOfAnyCharCode, indexOfNode: () => indexOfNode, indicesOf: () => indicesOf, inferredTypesContainingFile: () => inferredTypesContainingFile, injectClassNamedEvaluationHelperBlockIfMissing: () => injectClassNamedEvaluationHelperBlockIfMissing, injectClassThisAssignmentIfMissing: () => injectClassThisAssignmentIfMissing, insertImports: () => insertImports, insertSorted: () => insertSorted, insertStatementAfterCustomPrologue: () => insertStatementAfterCustomPrologue, insertStatementAfterStandardPrologue: () => insertStatementAfterStandardPrologue, insertStatementsAfterCustomPrologue: () => insertStatementsAfterCustomPrologue, insertStatementsAfterStandardPrologue: () => insertStatementsAfterStandardPrologue, intersperse: () => intersperse, intrinsicTagNameToString: () => intrinsicTagNameToString, introducesArgumentsExoticObject: () => introducesArgumentsExoticObject, inverseJsxOptionMap: () => inverseJsxOptionMap, isAbstractConstructorSymbol: () => isAbstractConstructorSymbol, isAbstractModifier: () => isAbstractModifier, isAccessExpression: () => isAccessExpression, isAccessibilityModifier: () => isAccessibilityModifier, isAccessor: () => isAccessor, isAccessorModifier: () => isAccessorModifier, isAliasableExpression: () => isAliasableExpression, isAmbientModule: () => isAmbientModule, isAmbientPropertyDeclaration: () => isAmbientPropertyDeclaration, isAnyDirectorySeparator: () => isAnyDirectorySeparator, isAnyImportOrBareOrAccessedRequire: () => isAnyImportOrBareOrAccessedRequire, isAnyImportOrReExport: () => isAnyImportOrReExport, isAnyImportOrRequireStatement: () => isAnyImportOrRequireStatement, isAnyImportSyntax: () => isAnyImportSyntax, isAnySupportedFileExtension: () => isAnySupportedFileExtension, isApplicableVersionedTypesKey: () => isApplicableVersionedTypesKey, isArgumentExpressionOfElementAccess: () => isArgumentExpressionOfElementAccess, isArray: () => isArray, isArrayBindingElement: () => isArrayBindingElement, isArrayBindingOrAssignmentElement: () => isArrayBindingOrAssignmentElement, isArrayBindingOrAssignmentPattern: () => isArrayBindingOrAssignmentPattern, isArrayBindingPattern: () => isArrayBindingPattern, isArrayLiteralExpression: () => isArrayLiteralExpression, isArrayLiteralOrObjectLiteralDestructuringPattern: () => isArrayLiteralOrObjectLiteralDestructuringPattern, isArrayTypeNode: () => isArrayTypeNode, isArrowFunction: () => isArrowFunction, isAsExpression: () => isAsExpression, isAssertClause: () => isAssertClause, isAssertEntry: () => isAssertEntry, isAssertionExpression: () => isAssertionExpression, isAssertsKeyword: () => isAssertsKeyword, isAssignmentDeclaration: () => isAssignmentDeclaration, isAssignmentExpression: () => isAssignmentExpression, isAssignmentOperator: () => isAssignmentOperator, isAssignmentPattern: () => isAssignmentPattern, isAssignmentTarget: () => isAssignmentTarget, isAsteriskToken: () => isAsteriskToken, isAsyncFunction: () => isAsyncFunction, isAsyncModifier: () => isAsyncModifier, isAutoAccessorPropertyDeclaration: () => isAutoAccessorPropertyDeclaration, isAwaitExpression: () => isAwaitExpression, isAwaitKeyword: () => isAwaitKeyword, isBigIntLiteral: () => isBigIntLiteral, isBinaryExpression: () => isBinaryExpression, isBinaryLogicalOperator: () => isBinaryLogicalOperator, isBinaryOperatorToken: () => isBinaryOperatorToken, isBindableObjectDefinePropertyCall: () => isBindableObjectDefinePropertyCall, isBindableStaticAccessExpression: () => isBindableStaticAccessExpression, isBindableStaticElementAccessExpression: () => isBindableStaticElementAccessExpression, isBindableStaticNameExpression: () => isBindableStaticNameExpression, isBindingElement: () => isBindingElement, isBindingElementOfBareOrAccessedRequire: () => isBindingElementOfBareOrAccessedRequire, isBindingName: () => isBindingName, isBindingOrAssignmentElement: () => isBindingOrAssignmentElement, isBindingOrAssignmentPattern: () => isBindingOrAssignmentPattern, isBindingPattern: () => isBindingPattern, isBlock: () => isBlock, isBlockLike: () => isBlockLike, isBlockOrCatchScoped: () => isBlockOrCatchScoped, isBlockScope: () => isBlockScope, isBlockScopedContainerTopLevel: () => isBlockScopedContainerTopLevel, isBooleanLiteral: () => isBooleanLiteral, isBreakOrContinueStatement: () => isBreakOrContinueStatement, isBreakStatement: () => isBreakStatement, isBuildCommand: () => isBuildCommand, isBuildInfoFile: () => isBuildInfoFile, isBuilderProgram: () => isBuilderProgram, isBundle: () => isBundle, isCallChain: () => isCallChain, isCallExpression: () => isCallExpression, isCallExpressionTarget: () => isCallExpressionTarget, isCallLikeExpression: () => isCallLikeExpression, isCallLikeOrFunctionLikeExpression: () => isCallLikeOrFunctionLikeExpression, isCallOrNewExpression: () => isCallOrNewExpression, isCallOrNewExpressionTarget: () => isCallOrNewExpressionTarget, isCallSignatureDeclaration: () => isCallSignatureDeclaration, isCallToHelper: () => isCallToHelper, isCaseBlock: () => isCaseBlock, isCaseClause: () => isCaseClause, isCaseKeyword: () => isCaseKeyword, isCaseOrDefaultClause: () => isCaseOrDefaultClause, isCatchClause: () => isCatchClause, isCatchClauseVariableDeclaration: () => isCatchClauseVariableDeclaration, isCatchClauseVariableDeclarationOrBindingElement: () => isCatchClauseVariableDeclarationOrBindingElement, isCheckJsEnabledForFile: () => isCheckJsEnabledForFile, isCircularBuildOrder: () => isCircularBuildOrder, isClassDeclaration: () => isClassDeclaration, isClassElement: () => isClassElement, isClassExpression: () => isClassExpression, isClassInstanceProperty: () => isClassInstanceProperty, isClassLike: () => isClassLike, isClassMemberModifier: () => isClassMemberModifier, isClassNamedEvaluationHelperBlock: () => isClassNamedEvaluationHelperBlock, isClassOrTypeElement: () => isClassOrTypeElement, isClassStaticBlockDeclaration: () => isClassStaticBlockDeclaration, isClassThisAssignmentBlock: () => isClassThisAssignmentBlock, isColonToken: () => isColonToken, isCommaExpression: () => isCommaExpression, isCommaListExpression: () => isCommaListExpression, isCommaSequence: () => isCommaSequence, isCommaToken: () => isCommaToken, isComment: () => isComment, isCommonJsExportPropertyAssignment: () => isCommonJsExportPropertyAssignment, isCommonJsExportedExpression: () => isCommonJsExportedExpression, isCompoundAssignment: () => isCompoundAssignment, isComputedNonLiteralName: () => isComputedNonLiteralName, isComputedPropertyName: () => isComputedPropertyName, isConciseBody: () => isConciseBody, isConditionalExpression: () => isConditionalExpression, isConditionalTypeNode: () => isConditionalTypeNode, isConstAssertion: () => isConstAssertion, isConstTypeReference: () => isConstTypeReference, isConstructSignatureDeclaration: () => isConstructSignatureDeclaration, isConstructorDeclaration: () => isConstructorDeclaration, isConstructorTypeNode: () => isConstructorTypeNode, isContextualKeyword: () => isContextualKeyword, isContinueStatement: () => isContinueStatement, isCustomPrologue: () => isCustomPrologue, isDebuggerStatement: () => isDebuggerStatement, isDeclaration: () => isDeclaration, isDeclarationBindingElement: () => isDeclarationBindingElement, isDeclarationFileName: () => isDeclarationFileName, isDeclarationName: () => isDeclarationName, isDeclarationNameOfEnumOrNamespace: () => isDeclarationNameOfEnumOrNamespace, isDeclarationReadonly: () => isDeclarationReadonly, isDeclarationStatement: () => isDeclarationStatement, isDeclarationWithTypeParameterChildren: () => isDeclarationWithTypeParameterChildren, isDeclarationWithTypeParameters: () => isDeclarationWithTypeParameters, isDecorator: () => isDecorator, isDecoratorTarget: () => isDecoratorTarget, isDefaultClause: () => isDefaultClause, isDefaultImport: () => isDefaultImport, isDefaultModifier: () => isDefaultModifier, isDefaultedExpandoInitializer: () => isDefaultedExpandoInitializer, isDeleteExpression: () => isDeleteExpression, isDeleteTarget: () => isDeleteTarget, isDeprecatedDeclaration: () => isDeprecatedDeclaration, isDestructuringAssignment: () => isDestructuringAssignment, isDiskPathRoot: () => isDiskPathRoot, isDoStatement: () => isDoStatement, isDocumentRegistryEntry: () => isDocumentRegistryEntry, isDotDotDotToken: () => isDotDotDotToken, isDottedName: () => isDottedName, isDynamicName: () => isDynamicName, isEffectiveExternalModule: () => isEffectiveExternalModule, isEffectiveStrictModeSourceFile: () => isEffectiveStrictModeSourceFile, isElementAccessChain: () => isElementAccessChain, isElementAccessExpression: () => isElementAccessExpression, isEmittedFileOfProgram: () => isEmittedFileOfProgram, isEmptyArrayLiteral: () => isEmptyArrayLiteral, isEmptyBindingElement: () => isEmptyBindingElement, isEmptyBindingPattern: () => isEmptyBindingPattern, isEmptyObjectLiteral: () => isEmptyObjectLiteral, isEmptyStatement: () => isEmptyStatement, isEmptyStringLiteral: () => isEmptyStringLiteral, isEntityName: () => isEntityName, isEntityNameExpression: () => isEntityNameExpression, isEnumConst: () => isEnumConst, isEnumDeclaration: () => isEnumDeclaration, isEnumMember: () => isEnumMember, isEqualityOperatorKind: () => isEqualityOperatorKind, isEqualsGreaterThanToken: () => isEqualsGreaterThanToken, isExclamationToken: () => isExclamationToken, isExcludedFile: () => isExcludedFile, isExclusivelyTypeOnlyImportOrExport: () => isExclusivelyTypeOnlyImportOrExport, isExpandoPropertyDeclaration: () => isExpandoPropertyDeclaration, isExportAssignment: () => isExportAssignment, isExportDeclaration: () => isExportDeclaration, isExportModifier: () => isExportModifier, isExportName: () => isExportName, isExportNamespaceAsDefaultDeclaration: () => isExportNamespaceAsDefaultDeclaration, isExportOrDefaultModifier: () => isExportOrDefaultModifier, isExportSpecifier: () => isExportSpecifier, isExportsIdentifier: () => isExportsIdentifier, isExportsOrModuleExportsOrAlias: () => isExportsOrModuleExportsOrAlias, isExpression: () => isExpression, isExpressionNode: () => isExpressionNode, isExpressionOfExternalModuleImportEqualsDeclaration: () => isExpressionOfExternalModuleImportEqualsDeclaration, isExpressionOfOptionalChainRoot: () => isExpressionOfOptionalChainRoot, isExpressionStatement: () => isExpressionStatement, isExpressionWithTypeArguments: () => isExpressionWithTypeArguments, isExpressionWithTypeArgumentsInClassExtendsClause: () => isExpressionWithTypeArgumentsInClassExtendsClause, isExternalModule: () => isExternalModule, isExternalModuleAugmentation: () => isExternalModuleAugmentation, isExternalModuleImportEqualsDeclaration: () => isExternalModuleImportEqualsDeclaration, isExternalModuleIndicator: () => isExternalModuleIndicator, isExternalModuleNameRelative: () => isExternalModuleNameRelative, isExternalModuleReference: () => isExternalModuleReference, isExternalModuleSymbol: () => isExternalModuleSymbol, isExternalOrCommonJsModule: () => isExternalOrCommonJsModule, isFileLevelReservedGeneratedIdentifier: () => isFileLevelReservedGeneratedIdentifier, isFileLevelUniqueName: () => isFileLevelUniqueName, isFileProbablyExternalModule: () => isFileProbablyExternalModule, isFirstDeclarationOfSymbolParameter: () => isFirstDeclarationOfSymbolParameter, isFixablePromiseHandler: () => isFixablePromiseHandler, isForInOrOfStatement: () => isForInOrOfStatement, isForInStatement: () => isForInStatement, isForInitializer: () => isForInitializer, isForOfStatement: () => isForOfStatement, isForStatement: () => isForStatement, isFullSourceFile: () => isFullSourceFile, isFunctionBlock: () => isFunctionBlock, isFunctionBody: () => isFunctionBody, isFunctionDeclaration: () => isFunctionDeclaration, isFunctionExpression: () => isFunctionExpression, isFunctionExpressionOrArrowFunction: () => isFunctionExpressionOrArrowFunction, isFunctionLike: () => isFunctionLike, isFunctionLikeDeclaration: () => isFunctionLikeDeclaration, isFunctionLikeKind: () => isFunctionLikeKind, isFunctionLikeOrClassStaticBlockDeclaration: () => isFunctionLikeOrClassStaticBlockDeclaration, isFunctionOrConstructorTypeNode: () => isFunctionOrConstructorTypeNode, isFunctionOrModuleBlock: () => isFunctionOrModuleBlock, isFunctionSymbol: () => isFunctionSymbol, isFunctionTypeNode: () => isFunctionTypeNode, isGeneratedIdentifier: () => isGeneratedIdentifier, isGeneratedPrivateIdentifier: () => isGeneratedPrivateIdentifier, isGetAccessor: () => isGetAccessor, isGetAccessorDeclaration: () => isGetAccessorDeclaration, isGetOrSetAccessorDeclaration: () => isGetOrSetAccessorDeclaration, isGlobalScopeAugmentation: () => isGlobalScopeAugmentation, isGlobalSourceFile: () => isGlobalSourceFile, isGrammarError: () => isGrammarError, isHeritageClause: () => isHeritageClause, isHoistedFunction: () => isHoistedFunction, isHoistedVariableStatement: () => isHoistedVariableStatement, isIdentifier: () => isIdentifier, isIdentifierANonContextualKeyword: () => isIdentifierANonContextualKeyword, isIdentifierName: () => isIdentifierName, isIdentifierOrThisTypeNode: () => isIdentifierOrThisTypeNode, isIdentifierPart: () => isIdentifierPart, isIdentifierStart: () => isIdentifierStart, isIdentifierText: () => isIdentifierText, isIdentifierTypePredicate: () => isIdentifierTypePredicate, isIdentifierTypeReference: () => isIdentifierTypeReference, isIfStatement: () => isIfStatement, isIgnoredFileFromWildCardWatching: () => isIgnoredFileFromWildCardWatching, isImplicitGlob: () => isImplicitGlob, isImportAttribute: () => isImportAttribute, isImportAttributeName: () => isImportAttributeName, isImportAttributes: () => isImportAttributes, isImportCall: () => isImportCall, isImportClause: () => isImportClause, isImportDeclaration: () => isImportDeclaration, isImportEqualsDeclaration: () => isImportEqualsDeclaration, isImportKeyword: () => isImportKeyword, isImportMeta: () => isImportMeta, isImportOrExportSpecifier: () => isImportOrExportSpecifier, isImportOrExportSpecifierName: () => isImportOrExportSpecifierName, isImportSpecifier: () => isImportSpecifier, isImportTypeAssertionContainer: () => isImportTypeAssertionContainer, isImportTypeNode: () => isImportTypeNode, isImportable: () => isImportable, isInComment: () => isInComment, isInCompoundLikeAssignment: () => isInCompoundLikeAssignment, isInExpressionContext: () => isInExpressionContext, isInJSDoc: () => isInJSDoc, isInJSFile: () => isInJSFile, isInJSXText: () => isInJSXText, isInJsonFile: () => isInJsonFile, isInNonReferenceComment: () => isInNonReferenceComment, isInReferenceComment: () => isInReferenceComment, isInRightSideOfInternalImportEqualsDeclaration: () => isInRightSideOfInternalImportEqualsDeclaration, isInString: () => isInString, isInTemplateString: () => isInTemplateString, isInTopLevelContext: () => isInTopLevelContext, isInTypeQuery: () => isInTypeQuery, isIncrementalBuildInfo: () => isIncrementalBuildInfo, isIncrementalBundleEmitBuildInfo: () => isIncrementalBundleEmitBuildInfo, isIncrementalCompilation: () => isIncrementalCompilation, isIndexSignatureDeclaration: () => isIndexSignatureDeclaration, isIndexedAccessTypeNode: () => isIndexedAccessTypeNode, isInferTypeNode: () => isInferTypeNode, isInfinityOrNaNString: () => isInfinityOrNaNString, isInitializedProperty: () => isInitializedProperty, isInitializedVariable: () => isInitializedVariable, isInsideJsxElement: () => isInsideJsxElement, isInsideJsxElementOrAttribute: () => isInsideJsxElementOrAttribute, isInsideNodeModules: () => isInsideNodeModules, isInsideTemplateLiteral: () => isInsideTemplateLiteral, isInstanceOfExpression: () => isInstanceOfExpression, isInstantiatedModule: () => isInstantiatedModule, isInterfaceDeclaration: () => isInterfaceDeclaration, isInternalDeclaration: () => isInternalDeclaration, isInternalModuleImportEqualsDeclaration: () => isInternalModuleImportEqualsDeclaration, isInternalName: () => isInternalName, isIntersectionTypeNode: () => isIntersectionTypeNode, isIntrinsicJsxName: () => isIntrinsicJsxName, isIterationStatement: () => isIterationStatement, isJSDoc: () => isJSDoc, isJSDocAllType: () => isJSDocAllType, isJSDocAugmentsTag: () => isJSDocAugmentsTag, isJSDocAuthorTag: () => isJSDocAuthorTag, isJSDocCallbackTag: () => isJSDocCallbackTag, isJSDocClassTag: () => isJSDocClassTag, isJSDocCommentContainingNode: () => isJSDocCommentContainingNode, isJSDocConstructSignature: () => isJSDocConstructSignature, isJSDocDeprecatedTag: () => isJSDocDeprecatedTag, isJSDocEnumTag: () => isJSDocEnumTag, isJSDocFunctionType: () => isJSDocFunctionType, isJSDocImplementsTag: () => isJSDocImplementsTag, isJSDocImportTag: () => isJSDocImportTag, isJSDocIndexSignature: () => isJSDocIndexSignature, isJSDocLikeText: () => isJSDocLikeText, isJSDocLink: () => isJSDocLink, isJSDocLinkCode: () => isJSDocLinkCode, isJSDocLinkLike: () => isJSDocLinkLike, isJSDocLinkPlain: () => isJSDocLinkPlain, isJSDocMemberName: () => isJSDocMemberName, isJSDocNameReference: () => isJSDocNameReference, isJSDocNamepathType: () => isJSDocNamepathType, isJSDocNamespaceBody: () => isJSDocNamespaceBody, isJSDocNode: () => isJSDocNode, isJSDocNonNullableType: () => isJSDocNonNullableType, isJSDocNullableType: () => isJSDocNullableType, isJSDocOptionalParameter: () => isJSDocOptionalParameter, isJSDocOptionalType: () => isJSDocOptionalType, isJSDocOverloadTag: () => isJSDocOverloadTag, isJSDocOverrideTag: () => isJSDocOverrideTag, isJSDocParameterTag: () => isJSDocParameterTag, isJSDocPrivateTag: () => isJSDocPrivateTag, isJSDocPropertyLikeTag: () => isJSDocPropertyLikeTag, isJSDocPropertyTag: () => isJSDocPropertyTag, isJSDocProtectedTag: () => isJSDocProtectedTag, isJSDocPublicTag: () => isJSDocPublicTag, isJSDocReadonlyTag: () => isJSDocReadonlyTag, isJSDocReturnTag: () => isJSDocReturnTag, isJSDocSatisfiesExpression: () => isJSDocSatisfiesExpression, isJSDocSatisfiesTag: () => isJSDocSatisfiesTag, isJSDocSeeTag: () => isJSDocSeeTag, isJSDocSignature: () => isJSDocSignature, isJSDocTag: () => isJSDocTag, isJSDocTemplateTag: () => isJSDocTemplateTag, isJSDocThisTag: () => isJSDocThisTag, isJSDocThrowsTag: () => isJSDocThrowsTag, isJSDocTypeAlias: () => isJSDocTypeAlias, isJSDocTypeAssertion: () => isJSDocTypeAssertion, isJSDocTypeExpression: () => isJSDocTypeExpression, isJSDocTypeLiteral: () => isJSDocTypeLiteral, isJSDocTypeTag: () => isJSDocTypeTag, isJSDocTypedefTag: () => isJSDocTypedefTag, isJSDocUnknownTag: () => isJSDocUnknownTag, isJSDocUnknownType: () => isJSDocUnknownType, isJSDocVariadicType: () => isJSDocVariadicType, isJSXTagName: () => isJSXTagName, isJsonEqual: () => isJsonEqual, isJsonSourceFile: () => isJsonSourceFile, isJsxAttribute: () => isJsxAttribute, isJsxAttributeLike: () => isJsxAttributeLike, isJsxAttributeName: () => isJsxAttributeName, isJsxAttributes: () => isJsxAttributes, isJsxCallLike: () => isJsxCallLike, isJsxChild: () => isJsxChild, isJsxClosingElement: () => isJsxClosingElement, isJsxClosingFragment: () => isJsxClosingFragment, isJsxElement: () => isJsxElement, isJsxExpression: () => isJsxExpression, isJsxFragment: () => isJsxFragment, isJsxNamespacedName: () => isJsxNamespacedName, isJsxOpeningElement: () => isJsxOpeningElement, isJsxOpeningFragment: () => isJsxOpeningFragment, isJsxOpeningLikeElement: () => isJsxOpeningLikeElement, isJsxOpeningLikeElementTagName: () => isJsxOpeningLikeElementTagName, isJsxSelfClosingElement: () => isJsxSelfClosingElement, isJsxSpreadAttribute: () => isJsxSpreadAttribute, isJsxTagNameExpression: () => isJsxTagNameExpression, isJsxText: () => isJsxText, isJumpStatementTarget: () => isJumpStatementTarget, isKeyword: () => isKeyword, isKeywordOrPunctuation: () => isKeywordOrPunctuation, isKnownSymbol: () => isKnownSymbol, isLabelName: () => isLabelName, isLabelOfLabeledStatement: () => isLabelOfLabeledStatement, isLabeledStatement: () => isLabeledStatement, isLateVisibilityPaintedStatement: () => isLateVisibilityPaintedStatement, isLeftHandSideExpression: () => isLeftHandSideExpression, isLet: () => isLet, isLineBreak: () => isLineBreak, isLiteralComputedPropertyDeclarationName: () => isLiteralComputedPropertyDeclarationName, isLiteralExpression: () => isLiteralExpression, isLiteralExpressionOfObject: () => isLiteralExpressionOfObject, isLiteralImportTypeNode: () => isLiteralImportTypeNode, isLiteralKind: () => isLiteralKind, isLiteralNameOfPropertyDeclarationOrIndexAccess: () => isLiteralNameOfPropertyDeclarationOrIndexAccess, isLiteralTypeLiteral: () => isLiteralTypeLiteral, isLiteralTypeNode: () => isLiteralTypeNode, isLocalName: () => isLocalName, isLogicalOperator: () => isLogicalOperator, isLogicalOrCoalescingAssignmentExpression: () => isLogicalOrCoalescingAssignmentExpression, isLogicalOrCoalescingAssignmentOperator: () => isLogicalOrCoalescingAssignmentOperator, isLogicalOrCoalescingBinaryExpression: () => isLogicalOrCoalescingBinaryExpression, isLogicalOrCoalescingBinaryOperator: () => isLogicalOrCoalescingBinaryOperator, isMappedTypeNode: () => isMappedTypeNode, isMemberName: () => isMemberName, isMetaProperty: () => isMetaProperty, isMethodDeclaration: () => isMethodDeclaration, isMethodOrAccessor: () => isMethodOrAccessor, isMethodSignature: () => isMethodSignature, isMinusToken: () => isMinusToken, isMissingDeclaration: () => isMissingDeclaration, isMissingPackageJsonInfo: () => isMissingPackageJsonInfo, isModifier: () => isModifier, isModifierKind: () => isModifierKind, isModifierLike: () => isModifierLike, isModuleAugmentationExternal: () => isModuleAugmentationExternal, isModuleBlock: () => isModuleBlock, isModuleBody: () => isModuleBody, isModuleDeclaration: () => isModuleDeclaration, isModuleExportName: () => isModuleExportName, isModuleExportsAccessExpression: () => isModuleExportsAccessExpression, isModuleIdentifier: () => isModuleIdentifier, isModuleName: () => isModuleName, isModuleOrEnumDeclaration: () => isModuleOrEnumDeclaration, isModuleReference: () => isModuleReference, isModuleSpecifierLike: () => isModuleSpecifierLike, isModuleWithStringLiteralName: () => isModuleWithStringLiteralName, isNameOfFunctionDeclaration: () => isNameOfFunctionDeclaration, isNameOfModuleDeclaration: () => isNameOfModuleDeclaration, isNamedDeclaration: () => isNamedDeclaration, isNamedEvaluation: () => isNamedEvaluation, isNamedEvaluationSource: () => isNamedEvaluationSource, isNamedExportBindings: () => isNamedExportBindings, isNamedExports: () => isNamedExports, isNamedImportBindings: () => isNamedImportBindings, isNamedImports: () => isNamedImports, isNamedImportsOrExports: () => isNamedImportsOrExports, isNamedTupleMember: () => isNamedTupleMember, isNamespaceBody: () => isNamespaceBody, isNamespaceExport: () => isNamespaceExport, isNamespaceExportDeclaration: () => isNamespaceExportDeclaration, isNamespaceImport: () => isNamespaceImport, isNamespaceReexportDeclaration: () => isNamespaceReexportDeclaration, isNewExpression: () => isNewExpression, isNewExpressionTarget: () => isNewExpressionTarget, isNewScopeNode: () => isNewScopeNode, isNoSubstitutionTemplateLiteral: () => isNoSubstitutionTemplateLiteral, isNodeArray: () => isNodeArray, isNodeArrayMultiLine: () => isNodeArrayMultiLine, isNodeDescendantOf: () => isNodeDescendantOf, isNodeKind: () => isNodeKind, isNodeLikeSystem: () => isNodeLikeSystem, isNodeModulesDirectory: () => isNodeModulesDirectory, isNodeWithPossibleHoistedDeclaration: () => isNodeWithPossibleHoistedDeclaration, isNonContextualKeyword: () => isNonContextualKeyword, isNonGlobalAmbientModule: () => isNonGlobalAmbientModule, isNonNullAccess: () => isNonNullAccess, isNonNullChain: () => isNonNullChain, isNonNullExpression: () => isNonNullExpression, isNonStaticMethodOrAccessorWithPrivateName: () => isNonStaticMethodOrAccessorWithPrivateName, isNotEmittedStatement: () => isNotEmittedStatement, isNullishCoalesce: () => isNullishCoalesce, isNumber: () => isNumber, isNumericLiteral: () => isNumericLiteral, isNumericLiteralName: () => isNumericLiteralName, isObjectBindingElementWithoutPropertyName: () => isObjectBindingElementWithoutPropertyName, isObjectBindingOrAssignmentElement: () => isObjectBindingOrAssignmentElement, isObjectBindingOrAssignmentPattern: () => isObjectBindingOrAssignmentPattern, isObjectBindingPattern: () => isObjectBindingPattern, isObjectLiteralElement: () => isObjectLiteralElement, isObjectLiteralElementLike: () => isObjectLiteralElementLike, isObjectLiteralExpression: () => isObjectLiteralExpression, isObjectLiteralMethod: () => isObjectLiteralMethod, isObjectLiteralOrClassExpressionMethodOrAccessor: () => isObjectLiteralOrClassExpressionMethodOrAccessor, isObjectTypeDeclaration: () => isObjectTypeDeclaration, isOmittedExpression: () => isOmittedExpression, isOptionalChain: () => isOptionalChain, isOptionalChainRoot: () => isOptionalChainRoot, isOptionalDeclaration: () => isOptionalDeclaration, isOptionalJSDocPropertyLikeTag: () => isOptionalJSDocPropertyLikeTag, isOptionalTypeNode: () => isOptionalTypeNode, isOuterExpression: () => isOuterExpression, isOutermostOptionalChain: () => isOutermostOptionalChain, isOverrideModifier: () => isOverrideModifier, isPackageJsonInfo: () => isPackageJsonInfo, isPackedArrayLiteral: () => isPackedArrayLiteral, isParameter: () => isParameter, isParameterPropertyDeclaration: () => isParameterPropertyDeclaration, isParameterPropertyModifier: () => isParameterPropertyModifier, isParenthesizedExpression: () => isParenthesizedExpression, isParenthesizedTypeNode: () => isParenthesizedTypeNode, isParseTreeNode: () => isParseTreeNode, isPartOfParameterDeclaration: () => isPartOfParameterDeclaration, isPartOfTypeNode: () => isPartOfTypeNode, isPartOfTypeOnlyImportOrExportDeclaration: () => isPartOfTypeOnlyImportOrExportDeclaration, isPartOfTypeQuery: () => isPartOfTypeQuery, isPartiallyEmittedExpression: () => isPartiallyEmittedExpression, isPatternMatch: () => isPatternMatch, isPinnedComment: () => isPinnedComment, isPlainJsFile: () => isPlainJsFile, isPlusToken: () => isPlusToken, isPossiblyTypeArgumentPosition: () => isPossiblyTypeArgumentPosition, isPostfixUnaryExpression: () => isPostfixUnaryExpression, isPotentiallyExecutableNode: () => isPotentiallyExecutableNode, isPrefixUnaryExpression: () => isPrefixUnaryExpression, isPrimitiveLiteralValue: () => isPrimitiveLiteralValue, isPrivateIdentifier: () => isPrivateIdentifier, isPrivateIdentifierClassElementDeclaration: () => isPrivateIdentifierClassElementDeclaration, isPrivateIdentifierPropertyAccessExpression: () => isPrivateIdentifierPropertyAccessExpression, isPrivateIdentifierSymbol: () => isPrivateIdentifierSymbol, isProgramUptoDate: () => isProgramUptoDate, isPrologueDirective: () => isPrologueDirective, isPropertyAccessChain: () => isPropertyAccessChain, isPropertyAccessEntityNameExpression: () => isPropertyAccessEntityNameExpression, isPropertyAccessExpression: () => isPropertyAccessExpression, isPropertyAccessOrQualifiedName: () => isPropertyAccessOrQualifiedName, isPropertyAccessOrQualifiedNameOrImportTypeNode: () => isPropertyAccessOrQualifiedNameOrImportTypeNode, isPropertyAssignment: () => isPropertyAssignment, isPropertyDeclaration: () => isPropertyDeclaration, isPropertyName: () => isPropertyName, isPropertyNameLiteral: () => isPropertyNameLiteral, isPropertySignature: () => isPropertySignature, isPrototypeAccess: () => isPrototypeAccess, isPrototypePropertyAssignment: () => isPrototypePropertyAssignment, isPunctuation: () => isPunctuation, isPushOrUnshiftIdentifier: () => isPushOrUnshiftIdentifier, isQualifiedName: () => isQualifiedName, isQuestionDotToken: () => isQuestionDotToken, isQuestionOrExclamationToken: () => isQuestionOrExclamationToken, isQuestionOrPlusOrMinusToken: () => isQuestionOrPlusOrMinusToken, isQuestionToken: () => isQuestionToken, isReadonlyKeyword: () => isReadonlyKeyword, isReadonlyKeywordOrPlusOrMinusToken: () => isReadonlyKeywordOrPlusOrMinusToken, isRecognizedTripleSlashComment: () => isRecognizedTripleSlashComment, isReferenceFileLocation: () => isReferenceFileLocation, isReferencedFile: () => isReferencedFile, isRegularExpressionLiteral: () => isRegularExpressionLiteral, isRequireCall: () => isRequireCall, isRequireVariableStatement: () => isRequireVariableStatement, isRestParameter: () => isRestParameter, isRestTypeNode: () => isRestTypeNode, isReturnStatement: () => isReturnStatement, isReturnStatementWithFixablePromiseHandler: () => isReturnStatementWithFixablePromiseHandler, isRightSideOfAccessExpression: () => isRightSideOfAccessExpression, isRightSideOfInstanceofExpression: () => isRightSideOfInstanceofExpression, isRightSideOfPropertyAccess: () => isRightSideOfPropertyAccess, isRightSideOfQualifiedName: () => isRightSideOfQualifiedName, isRightSideOfQualifiedNameOrPropertyAccess: () => isRightSideOfQualifiedNameOrPropertyAccess, isRightSideOfQualifiedNameOrPropertyAccessOrJSDocMemberName: () => isRightSideOfQualifiedNameOrPropertyAccessOrJSDocMemberName, isRootedDiskPath: () => isRootedDiskPath, isSameEntityName: () => isSameEntityName, isSatisfiesExpression: () => isSatisfiesExpression, isSemicolonClassElement: () => isSemicolonClassElement, isSetAccessor: () => isSetAccessor, isSetAccessorDeclaration: () => isSetAccessorDeclaration, isShiftOperatorOrHigher: () => isShiftOperatorOrHigher, isShorthandAmbientModuleSymbol: () => isShorthandAmbientModuleSymbol, isShorthandPropertyAssignment: () => isShorthandPropertyAssignment, isSideEffectImport: () => isSideEffectImport, isSignedNumericLiteral: () => isSignedNumericLiteral, isSimpleCopiableExpression: () => isSimpleCopiableExpression, isSimpleInlineableExpression: () => isSimpleInlineableExpression, isSimpleParameterList: () => isSimpleParameterList, isSingleOrDoubleQuote: () => isSingleOrDoubleQuote, isSolutionConfig: () => isSolutionConfig, isSourceElement: () => isSourceElement, isSourceFile: () => isSourceFile, isSourceFileFromLibrary: () => isSourceFileFromLibrary, isSourceFileJS: () => isSourceFileJS, isSourceFileNotJson: () => isSourceFileNotJson, isSourceMapping: () => isSourceMapping, isSpecialPropertyDeclaration: () => isSpecialPropertyDeclaration, isSpreadAssignment: () => isSpreadAssignment, isSpreadElement: () => isSpreadElement, isStatement: () => isStatement, isStatementButNotDeclaration: () => isStatementButNotDeclaration, isStatementOrBlock: () => isStatementOrBlock, isStatementWithLocals: () => isStatementWithLocals, isStatic: () => isStatic, isStaticModifier: () => isStaticModifier, isString: () => isString, isStringANonContextualKeyword: () => isStringANonContextualKeyword, isStringAndEmptyAnonymousObjectIntersection: () => isStringAndEmptyAnonymousObjectIntersection, isStringDoubleQuoted: () => isStringDoubleQuoted, isStringLiteral: () => isStringLiteral, isStringLiteralLike: () => isStringLiteralLike, isStringLiteralOrJsxExpression: () => isStringLiteralOrJsxExpression, isStringLiteralOrTemplate: () => isStringLiteralOrTemplate, isStringOrNumericLiteralLike: () => isStringOrNumericLiteralLike, isStringOrRegularExpressionOrTemplateLiteral: () => isStringOrRegularExpressionOrTemplateLiteral, isStringTextContainingNode: () => isStringTextContainingNode, isSuperCall: () => isSuperCall, isSuperKeyword: () => isSuperKeyword, isSuperProperty: () => isSuperProperty, isSupportedSourceFileName: () => isSupportedSourceFileName, isSwitchStatement: () => isSwitchStatement, isSyntaxList: () => isSyntaxList, isSyntheticExpression: () => isSyntheticExpression, isSyntheticReference: () => isSyntheticReference, isTagName: () => isTagName, isTaggedTemplateExpression: () => isTaggedTemplateExpression, isTaggedTemplateTag: () => isTaggedTemplateTag, isTemplateExpression: () => isTemplateExpression, isTemplateHead: () => isTemplateHead, isTemplateLiteral: () => isTemplateLiteral, isTemplateLiteralKind: () => isTemplateLiteralKind, isTemplateLiteralToken: () => isTemplateLiteralToken, isTemplateLiteralTypeNode: () => isTemplateLiteralTypeNode, isTemplateLiteralTypeSpan: () => isTemplateLiteralTypeSpan, isTemplateMiddle: () => isTemplateMiddle, isTemplateMiddleOrTemplateTail: () => isTemplateMiddleOrTemplateTail, isTemplateSpan: () => isTemplateSpan, isTemplateTail: () => isTemplateTail, isTextWhiteSpaceLike: () => isTextWhiteSpaceLike, isThis: () => isThis, isThisContainerOrFunctionBlock: () => isThisContainerOrFunctionBlock, isThisIdentifier: () => isThisIdentifier, isThisInTypeQuery: () => isThisInTypeQuery, isThisInitializedDeclaration: () => isThisInitializedDeclaration, isThisInitializedObjectBindingExpression: () => isThisInitializedObjectBindingExpression, isThisProperty: () => isThisProperty, isThisTypeNode: () => isThisTypeNode, isThisTypeParameter: () => isThisTypeParameter, isThisTypePredicate: () => isThisTypePredicate, isThrowStatement: () => isThrowStatement, isToken: () => isToken, isTokenKind: () => isTokenKind, isTraceEnabled: () => isTraceEnabled, isTransientSymbol: () => isTransientSymbol, isTrivia: () => isTrivia, isTryStatement: () => isTryStatement, isTupleTypeNode: () => isTupleTypeNode, isTypeAlias: () => isTypeAlias, isTypeAliasDeclaration: () => isTypeAliasDeclaration, isTypeAssertionExpression: () => isTypeAssertionExpression, isTypeDeclaration: () => isTypeDeclaration, isTypeElement: () => isTypeElement, isTypeKeyword: () => isTypeKeyword, isTypeKeywordTokenOrIdentifier: () => isTypeKeywordTokenOrIdentifier, isTypeLiteralNode: () => isTypeLiteralNode, isTypeNode: () => isTypeNode, isTypeNodeKind: () => isTypeNodeKind, isTypeOfExpression: () => isTypeOfExpression, isTypeOnlyExportDeclaration: () => isTypeOnlyExportDeclaration, isTypeOnlyImportDeclaration: () => isTypeOnlyImportDeclaration, isTypeOnlyImportOrExportDeclaration: () => isTypeOnlyImportOrExportDeclaration, isTypeOperatorNode: () => isTypeOperatorNode, isTypeParameterDeclaration: () => isTypeParameterDeclaration, isTypePredicateNode: () => isTypePredicateNode, isTypeQueryNode: () => isTypeQueryNode, isTypeReferenceNode: () => isTypeReferenceNode, isTypeReferenceType: () => isTypeReferenceType, isTypeUsableAsPropertyName: () => isTypeUsableAsPropertyName, isUMDExportSymbol: () => isUMDExportSymbol, isUnaryExpression: () => isUnaryExpression, isUnaryExpressionWithWrite: () => isUnaryExpressionWithWrite, isUnicodeIdentifierStart: () => isUnicodeIdentifierStart, isUnionTypeNode: () => isUnionTypeNode, isUrl: () => isUrl, isValidBigIntString: () => isValidBigIntString, isValidESSymbolDeclaration: () => isValidESSymbolDeclaration, isValidTypeOnlyAliasUseSite: () => isValidTypeOnlyAliasUseSite, isValueSignatureDeclaration: () => isValueSignatureDeclaration, isVarAwaitUsing: () => isVarAwaitUsing, isVarConst: () => isVarConst, isVarConstLike: () => isVarConstLike, isVarUsing: () => isVarUsing, isVariableDeclaration: () => isVariableDeclaration, isVariableDeclarationInVariableStatement: () => isVariableDeclarationInVariableStatement, isVariableDeclarationInitializedToBareOrAccessedRequire: () => isVariableDeclarationInitializedToBareOrAccessedRequire, isVariableDeclarationInitializedToRequire: () => isVariableDeclarationInitializedToRequire, isVariableDeclarationList: () => isVariableDeclarationList, isVariableLike: () => isVariableLike, isVariableStatement: () => isVariableStatement, isVoidExpression: () => isVoidExpression, isWatchSet: () => isWatchSet, isWhileStatement: () => isWhileStatement, isWhiteSpaceLike: () => isWhiteSpaceLike, isWhiteSpaceSingleLine: () => isWhiteSpaceSingleLine, isWithStatement: () => isWithStatement, isWriteAccess: () => isWriteAccess, isWriteOnlyAccess: () => isWriteOnlyAccess, isYieldExpression: () => isYieldExpression, jsxModeNeedsExplicitImport: () => jsxModeNeedsExplicitImport, keywordPart: () => keywordPart, last: () => last, lastOrUndefined: () => lastOrUndefined, length: () => length, libMap: () => libMap, libs: () => libs, lineBreakPart: () => lineBreakPart, loadModuleFromGlobalCache: () => loadModuleFromGlobalCache, loadWithModeAwareCache: () => loadWithModeAwareCache, makeIdentifierFromModuleName: () => makeIdentifierFromModuleName, makeImport: () => makeImport, makeStringLiteral: () => makeStringLiteral, mangleScopedPackageName: () => mangleScopedPackageName, map: () => map, mapAllOrFail: () => mapAllOrFail, mapDefined: () => mapDefined, mapDefinedIterator: () => mapDefinedIterator, mapEntries: () => mapEntries, mapIterator: () => mapIterator, mapOneOrMany: () => mapOneOrMany, mapToDisplayParts: () => mapToDisplayParts, matchFiles: () => matchFiles, matchPatternOrExact: () => matchPatternOrExact, matchedText: () => matchedText, matchesExclude: () => matchesExclude, matchesExcludeWorker: () => matchesExcludeWorker, maxBy: () => maxBy, maybeBind: () => maybeBind, maybeSetLocalizedDiagnosticMessages: () => maybeSetLocalizedDiagnosticMessages, memoize: () => memoize, memoizeOne: () => memoizeOne, min: () => min, minAndMax: () => minAndMax, missingFileModifiedTime: () => missingFileModifiedTime, modifierToFlag: () => modifierToFlag, modifiersToFlags: () => modifiersToFlags, moduleExportNameIsDefault: () => moduleExportNameIsDefault, moduleExportNameTextEscaped: () => moduleExportNameTextEscaped, moduleExportNameTextUnescaped: () => moduleExportNameTextUnescaped, moduleOptionDeclaration: () => moduleOptionDeclaration, moduleResolutionIsEqualTo: () => moduleResolutionIsEqualTo, moduleResolutionNameAndModeGetter: () => moduleResolutionNameAndModeGetter, moduleResolutionOptionDeclarations: () => moduleResolutionOptionDeclarations, moduleResolutionSupportsPackageJsonExportsAndImports: () => moduleResolutionSupportsPackageJsonExportsAndImports, moduleResolutionUsesNodeModules: () => moduleResolutionUsesNodeModules, moduleSpecifierToValidIdentifier: () => moduleSpecifierToValidIdentifier, moduleSpecifiers: () => ts_moduleSpecifiers_exports, moduleSupportsImportAttributes: () => moduleSupportsImportAttributes, moduleSymbolToValidIdentifier: () => moduleSymbolToValidIdentifier, moveEmitHelpers: () => moveEmitHelpers, moveRangeEnd: () => moveRangeEnd, moveRangePastDecorators: () => moveRangePastDecorators, moveRangePastModifiers: () => moveRangePastModifiers, moveRangePos: () => moveRangePos, moveSyntheticComments: () => moveSyntheticComments, mutateMap: () => mutateMap, mutateMapSkippingNewValues: () => mutateMapSkippingNewValues, needsParentheses: () => needsParentheses, needsScopeMarker: () => needsScopeMarker, newCaseClauseTracker: () => newCaseClauseTracker, newPrivateEnvironment: () => newPrivateEnvironment, noEmitNotification: () => noEmitNotification, noEmitSubstitution: () => noEmitSubstitution, noTransformers: () => noTransformers, noTruncationMaximumTruncationLength: () => noTruncationMaximumTruncationLength, nodeCanBeDecorated: () => nodeCanBeDecorated, nodeCoreModules: () => nodeCoreModules, nodeHasName: () => nodeHasName, nodeIsDecorated: () => nodeIsDecorated, nodeIsMissing: () => nodeIsMissing, nodeIsPresent: () => nodeIsPresent, nodeIsSynthesized: () => nodeIsSynthesized, nodeModuleNameResolver: () => nodeModuleNameResolver, nodeModulesPathPart: () => nodeModulesPathPart, nodeNextJsonConfigResolver: () => nodeNextJsonConfigResolver, nodeOrChildIsDecorated: () => nodeOrChildIsDecorated, nodeOverlapsWithStartEnd: () => nodeOverlapsWithStartEnd, nodePosToString: () => nodePosToString, nodeSeenTracker: () => nodeSeenTracker, nodeStartsNewLexicalEnvironment: () => nodeStartsNewLexicalEnvironment, noop: () => noop, noopFileWatcher: () => noopFileWatcher, normalizePath: () => normalizePath, normalizeSlashes: () => normalizeSlashes, normalizeSpans: () => normalizeSpans, not: () => not, notImplemented: () => notImplemented, notImplementedResolver: () => notImplementedResolver, nullNodeConverters: () => nullNodeConverters, nullParenthesizerRules: () => nullParenthesizerRules, nullTransformationContext: () => nullTransformationContext, objectAllocator: () => objectAllocator, operatorPart: () => operatorPart, optionDeclarations: () => optionDeclarations, optionMapToObject: () => optionMapToObject, optionsAffectingProgramStructure: () => optionsAffectingProgramStructure, optionsForBuild: () => optionsForBuild, optionsForWatch: () => optionsForWatch, optionsHaveChanges: () => optionsHaveChanges, or: () => or, orderedRemoveItem: () => orderedRemoveItem, orderedRemoveItemAt: () => orderedRemoveItemAt, packageIdToPackageName: () => packageIdToPackageName, packageIdToString: () => packageIdToString, parameterIsThisKeyword: () => parameterIsThisKeyword, parameterNamePart: () => parameterNamePart, parseBaseNodeFactory: () => parseBaseNodeFactory, parseBigInt: () => parseBigInt, parseBuildCommand: () => parseBuildCommand, parseCommandLine: () => parseCommandLine, parseCommandLineWorker: () => parseCommandLineWorker, parseConfigFileTextToJson: () => parseConfigFileTextToJson, parseConfigFileWithSystem: () => parseConfigFileWithSystem, parseConfigHostFromCompilerHostLike: () => parseConfigHostFromCompilerHostLike, parseCustomTypeOption: () => parseCustomTypeOption, parseIsolatedEntityName: () => parseIsolatedEntityName, parseIsolatedJSDocComment: () => parseIsolatedJSDocComment, parseJSDocTypeExpressionForTests: () => parseJSDocTypeExpressionForTests, parseJsonConfigFileContent: () => parseJsonConfigFileContent, parseJsonSourceFileConfigFileContent: () => parseJsonSourceFileConfigFileContent, parseJsonText: () => parseJsonText, parseListTypeOption: () => parseListTypeOption, parseNodeFactory: () => parseNodeFactory, parseNodeModuleFromPath: () => parseNodeModuleFromPath, parsePackageName: () => parsePackageName, parsePseudoBigInt: () => parsePseudoBigInt, parseValidBigInt: () => parseValidBigInt, pasteEdits: () => ts_PasteEdits_exports, patchWriteFileEnsuringDirectory: () => patchWriteFileEnsuringDirectory, pathContainsNodeModules: () => pathContainsNodeModules, pathIsAbsolute: () => pathIsAbsolute, pathIsBareSpecifier: () => pathIsBareSpecifier, pathIsRelative: () => pathIsRelative, patternText: () => patternText, performIncrementalCompilation: () => performIncrementalCompilation, performance: () => ts_performance_exports, positionBelongsToNode: () => positionBelongsToNode, positionIsASICandidate: () => positionIsASICandidate, positionIsSynthesized: () => positionIsSynthesized, positionsAreOnSameLine: () => positionsAreOnSameLine, preProcessFile: () => preProcessFile, probablyUsesSemicolons: () => probablyUsesSemicolons, processCommentPragmas: () => processCommentPragmas, processPragmasIntoFields: () => processPragmasIntoFields, processTaggedTemplateExpression: () => processTaggedTemplateExpression, programContainsEsModules: () => programContainsEsModules, programContainsModules: () => programContainsModules, projectReferenceIsEqualTo: () => projectReferenceIsEqualTo, propertyNamePart: () => propertyNamePart, pseudoBigIntToString: () => pseudoBigIntToString, punctuationPart: () => punctuationPart, pushIfUnique: () => pushIfUnique, quote: () => quote, quotePreferenceFromString: () => quotePreferenceFromString, rangeContainsPosition: () => rangeContainsPosition, rangeContainsPositionExclusive: () => rangeContainsPositionExclusive, rangeContainsRange: () => rangeContainsRange, rangeContainsRangeExclusive: () => rangeContainsRangeExclusive, rangeContainsStartEnd: () => rangeContainsStartEnd, rangeEndIsOnSameLineAsRangeStart: () => rangeEndIsOnSameLineAsRangeStart, rangeEndPositionsAreOnSameLine: () => rangeEndPositionsAreOnSameLine, rangeEquals: () => rangeEquals, rangeIsOnSingleLine: () => rangeIsOnSingleLine, rangeOfNode: () => rangeOfNode, rangeOfTypeParameters: () => rangeOfTypeParameters, rangeOverlapsWithStartEnd: () => rangeOverlapsWithStartEnd, rangeStartIsOnSameLineAsRangeEnd: () => rangeStartIsOnSameLineAsRangeEnd, rangeStartPositionsAreOnSameLine: () => rangeStartPositionsAreOnSameLine, readBuilderProgram: () => readBuilderProgram, readConfigFile: () => readConfigFile, readJson: () => readJson, readJsonConfigFile: () => readJsonConfigFile, readJsonOrUndefined: () => readJsonOrUndefined, reduceEachLeadingCommentRange: () => reduceEachLeadingCommentRange, reduceEachTrailingCommentRange: () => reduceEachTrailingCommentRange, reduceLeft: () => reduceLeft, reduceLeftIterator: () => reduceLeftIterator, reducePathComponents: () => reducePathComponents, refactor: () => ts_refactor_exports, regExpEscape: () => regExpEscape, regularExpressionFlagToCharacterCode: () => regularExpressionFlagToCharacterCode, relativeComplement: () => relativeComplement, removeAllComments: () => removeAllComments, removeEmitHelper: () => removeEmitHelper, removeExtension: () => removeExtension, removeFileExtension: () => removeFileExtension, removeIgnoredPath: () => removeIgnoredPath, removeMinAndVersionNumbers: () => removeMinAndVersionNumbers, removePrefix: () => removePrefix, removeSuffix: () => removeSuffix, removeTrailingDirectorySeparator: () => removeTrailingDirectorySeparator, repeatString: () => repeatString, replaceElement: () => replaceElement, replaceFirstStar: () => replaceFirstStar, resolutionExtensionIsTSOrJson: () => resolutionExtensionIsTSOrJson, resolveConfigFileProjectName: () => resolveConfigFileProjectName, resolveJSModule: () => resolveJSModule, resolveLibrary: () => resolveLibrary, resolveModuleName: () => resolveModuleName, resolveModuleNameFromCache: () => resolveModuleNameFromCache, resolvePackageNameToPackageJson: () => resolvePackageNameToPackageJson, resolvePath: () => resolvePath, resolveProjectReferencePath: () => resolveProjectReferencePath, resolveTripleslashReference: () => resolveTripleslashReference, resolveTypeReferenceDirective: () => resolveTypeReferenceDirective, resolvingEmptyArray: () => resolvingEmptyArray, returnFalse: () => returnFalse, returnNoopFileWatcher: () => returnNoopFileWatcher, returnTrue: () => returnTrue, returnUndefined: () => returnUndefined, returnsPromise: () => returnsPromise, rewriteModuleSpecifier: () => rewriteModuleSpecifier, sameFlatMap: () => sameFlatMap, sameMap: () => sameMap, sameMapping: () => sameMapping, scanTokenAtPosition: () => scanTokenAtPosition, scanner: () => scanner, semanticDiagnosticsOptionDeclarations: () => semanticDiagnosticsOptionDeclarations, serializeCompilerOptions: () => serializeCompilerOptions, server: () => ts_server_exports4, servicesVersion: () => servicesVersion, setCommentRange: () => setCommentRange, setConfigFileInOptions: () => setConfigFileInOptions, setConstantValue: () => setConstantValue, setEmitFlags: () => setEmitFlags, setGetSourceFileAsHashVersioned: () => setGetSourceFileAsHashVersioned, setIdentifierAutoGenerate: () => setIdentifierAutoGenerate, setIdentifierGeneratedImportReference: () => setIdentifierGeneratedImportReference, setIdentifierTypeArguments: () => setIdentifierTypeArguments, setInternalEmitFlags: () => setInternalEmitFlags, setLocalizedDiagnosticMessages: () => setLocalizedDiagnosticMessages, setNodeChildren: () => setNodeChildren, setNodeFlags: () => setNodeFlags, setObjectAllocator: () => setObjectAllocator, setOriginalNode: () => setOriginalNode, setParent: () => setParent, setParentRecursive: () => setParentRecursive, setPrivateIdentifier: () => setPrivateIdentifier, setSnippetElement: () => setSnippetElement, setSourceMapRange: () => setSourceMapRange, setStackTraceLimit: () => setStackTraceLimit, setStartsOnNewLine: () => setStartsOnNewLine, setSyntheticLeadingComments: () => setSyntheticLeadingComments, setSyntheticTrailingComments: () => setSyntheticTrailingComments, setSys: () => setSys, setSysLog: () => setSysLog, setTextRange: () => setTextRange, setTextRangeEnd: () => setTextRangeEnd, setTextRangePos: () => setTextRangePos, setTextRangePosEnd: () => setTextRangePosEnd, setTextRangePosWidth: () => setTextRangePosWidth, setTokenSourceMapRange: () => setTokenSourceMapRange, setTypeNode: () => setTypeNode, setUILocale: () => setUILocale, setValueDeclaration: () => setValueDeclaration, shouldAllowImportingTsExtension: () => shouldAllowImportingTsExtension, shouldPreserveConstEnums: () => shouldPreserveConstEnums, shouldRewriteModuleSpecifier: () => shouldRewriteModuleSpecifier, shouldUseUriStyleNodeCoreModules: () => shouldUseUriStyleNodeCoreModules, showModuleSpecifier: () => showModuleSpecifier, signatureHasRestParameter: () => signatureHasRestParameter, signatureToDisplayParts: () => signatureToDisplayParts, single: () => single, singleElementArray: () => singleElementArray, singleIterator: () => singleIterator, singleOrMany: () => singleOrMany, singleOrUndefined: () => singleOrUndefined, skipAlias: () => skipAlias, skipConstraint: () => skipConstraint, skipOuterExpressions: () => skipOuterExpressions, skipParentheses: () => skipParentheses, skipPartiallyEmittedExpressions: () => skipPartiallyEmittedExpressions, skipTrivia: () => skipTrivia2, skipTypeChecking: () => skipTypeChecking, skipTypeCheckingIgnoringNoCheck: () => skipTypeCheckingIgnoringNoCheck, skipTypeParentheses: () => skipTypeParentheses, skipWhile: () => skipWhile, sliceAfter: () => sliceAfter, some: () => some, sortAndDeduplicate: () => sortAndDeduplicate, sortAndDeduplicateDiagnostics: () => sortAndDeduplicateDiagnostics, sourceFileAffectingCompilerOptions: () => sourceFileAffectingCompilerOptions, sourceFileMayBeEmitted: () => sourceFileMayBeEmitted, sourceMapCommentRegExp: () => sourceMapCommentRegExp, sourceMapCommentRegExpDontCareLineStart: () => sourceMapCommentRegExpDontCareLineStart, spacePart: () => spacePart, spanMap: () => spanMap, startEndContainsRange: () => startEndContainsRange, startEndOverlapsWithStartEnd: () => startEndOverlapsWithStartEnd, startOnNewLine: () => startOnNewLine, startTracing: () => startTracing, startsWith: () => startsWith, startsWithDirectory: () => startsWithDirectory, startsWithUnderscore: () => startsWithUnderscore, startsWithUseStrict: () => startsWithUseStrict, stringContainsAt: () => stringContainsAt, stringToToken: () => stringToToken, stripQuotes: () => stripQuotes, supportedDeclarationExtensions: () => supportedDeclarationExtensions, supportedJSExtensionsFlat: () => supportedJSExtensionsFlat, supportedLocaleDirectories: () => supportedLocaleDirectories, supportedTSExtensionsFlat: () => supportedTSExtensionsFlat, supportedTSImplementationExtensions: () => supportedTSImplementationExtensions, suppressLeadingAndTrailingTrivia: () => suppressLeadingAndTrailingTrivia, suppressLeadingTrivia: () => suppressLeadingTrivia, suppressTrailingTrivia: () => suppressTrailingTrivia, symbolEscapedNameNoDefault: () => symbolEscapedNameNoDefault, symbolName: () => symbolName, symbolNameNoDefault: () => symbolNameNoDefault, symbolToDisplayParts: () => symbolToDisplayParts, sys: () => sys, sysLog: () => sysLog, tagNamesAreEquivalent: () => tagNamesAreEquivalent, takeWhile: () => takeWhile, targetOptionDeclaration: () => targetOptionDeclaration, targetToLibMap: () => targetToLibMap, testFormatSettings: () => testFormatSettings, textChangeRangeIsUnchanged: () => textChangeRangeIsUnchanged, textChangeRangeNewSpan: () => textChangeRangeNewSpan, textChanges: () => ts_textChanges_exports, textOrKeywordPart: () => textOrKeywordPart, textPart: () => textPart, textRangeContainsPositionInclusive: () => textRangeContainsPositionInclusive, textRangeContainsTextSpan: () => textRangeContainsTextSpan, textRangeIntersectsWithTextSpan: () => textRangeIntersectsWithTextSpan, textSpanContainsPosition: () => textSpanContainsPosition, textSpanContainsTextRange: () => textSpanContainsTextRange, textSpanContainsTextSpan: () => textSpanContainsTextSpan, textSpanEnd: () => textSpanEnd, textSpanIntersection: () => textSpanIntersection, textSpanIntersectsWith: () => textSpanIntersectsWith, textSpanIntersectsWithPosition: () => textSpanIntersectsWithPosition, textSpanIntersectsWithTextSpan: () => textSpanIntersectsWithTextSpan, textSpanIsEmpty: () => textSpanIsEmpty, textSpanOverlap: () => textSpanOverlap, textSpanOverlapsWith: () => textSpanOverlapsWith, textSpansEqual: () => textSpansEqual, textToKeywordObj: () => textToKeywordObj, timestamp: () => timestamp, toArray: () => toArray, toBuilderFileEmit: () => toBuilderFileEmit, toBuilderStateFileInfoForMultiEmit: () => toBuilderStateFileInfoForMultiEmit, toEditorSettings: () => toEditorSettings, toFileNameLowerCase: () => toFileNameLowerCase, toPath: () => toPath, toProgramEmitPending: () => toProgramEmitPending, toSorted: () => toSorted, tokenIsIdentifierOrKeyword: () => tokenIsIdentifierOrKeyword, tokenIsIdentifierOrKeywordOrGreaterThan: () => tokenIsIdentifierOrKeywordOrGreaterThan, tokenToString: () => tokenToString, trace: () => trace, tracing: () => tracing, tracingEnabled: () => tracingEnabled, transferSourceFileChildren: () => transferSourceFileChildren, transform: () => transform, transformClassFields: () => transformClassFields, transformDeclarations: () => transformDeclarations, transformECMAScriptModule: () => transformECMAScriptModule, transformES2015: () => transformES2015, transformES2016: () => transformES2016, transformES2017: () => transformES2017, transformES2018: () => transformES2018, transformES2019: () => transformES2019, transformES2020: () => transformES2020, transformES2021: () => transformES2021, transformESDecorators: () => transformESDecorators, transformESNext: () => transformESNext, transformGenerators: () => transformGenerators, transformImpliedNodeFormatDependentModule: () => transformImpliedNodeFormatDependentModule, transformJsx: () => transformJsx, transformLegacyDecorators: () => transformLegacyDecorators, transformModule: () => transformModule, transformNamedEvaluation: () => transformNamedEvaluation, transformNodes: () => transformNodes, transformSystemModule: () => transformSystemModule, transformTypeScript: () => transformTypeScript, transpile: () => transpile, transpileDeclaration: () => transpileDeclaration, transpileModule: () => transpileModule, transpileOptionValueCompilerOptions: () => transpileOptionValueCompilerOptions, tryAddToSet: () => tryAddToSet, tryAndIgnoreErrors: () => tryAndIgnoreErrors, tryCast: () => tryCast, tryDirectoryExists: () => tryDirectoryExists, tryExtractTSExtension: () => tryExtractTSExtension, tryFileExists: () => tryFileExists, tryGetClassExtendingExpressionWithTypeArguments: () => tryGetClassExtendingExpressionWithTypeArguments, tryGetClassImplementingOrExtendingExpressionWithTypeArguments: () => tryGetClassImplementingOrExtendingExpressionWithTypeArguments, tryGetDirectories: () => tryGetDirectories, tryGetExtensionFromPath: () => tryGetExtensionFromPath2, tryGetImportFromModuleSpecifier: () => tryGetImportFromModuleSpecifier, tryGetJSDocSatisfiesTypeNode: () => tryGetJSDocSatisfiesTypeNode, tryGetModuleNameFromFile: () => tryGetModuleNameFromFile, tryGetModuleSpecifierFromDeclaration: () => tryGetModuleSpecifierFromDeclaration, tryGetNativePerformanceHooks: () => tryGetNativePerformanceHooks, tryGetPropertyAccessOrIdentifierToString: () => tryGetPropertyAccessOrIdentifierToString, tryGetPropertyNameOfBindingOrAssignmentElement: () => tryGetPropertyNameOfBindingOrAssignmentElement, tryGetSourceMappingURL: () => tryGetSourceMappingURL, tryGetTextOfPropertyName: () => tryGetTextOfPropertyName, tryParseJson: () => tryParseJson, tryParsePattern: () => tryParsePattern, tryParsePatterns: () => tryParsePatterns, tryParseRawSourceMap: () => tryParseRawSourceMap, tryReadDirectory: () => tryReadDirectory, tryReadFile: () => tryReadFile, tryRemoveDirectoryPrefix: () => tryRemoveDirectoryPrefix, tryRemoveExtension: () => tryRemoveExtension, tryRemovePrefix: () => tryRemovePrefix, tryRemoveSuffix: () => tryRemoveSuffix, tscBuildOption: () => tscBuildOption, typeAcquisitionDeclarations: () => typeAcquisitionDeclarations, typeAliasNamePart: () => typeAliasNamePart, typeDirectiveIsEqualTo: () => typeDirectiveIsEqualTo, typeKeywords: () => typeKeywords, typeParameterNamePart: () => typeParameterNamePart, typeToDisplayParts: () => typeToDisplayParts, unchangedPollThresholds: () => unchangedPollThresholds, unchangedTextChangeRange: () => unchangedTextChangeRange, unescapeLeadingUnderscores: () => unescapeLeadingUnderscores, unmangleScopedPackageName: () => unmangleScopedPackageName, unorderedRemoveItem: () => unorderedRemoveItem, unprefixedNodeCoreModules: () => unprefixedNodeCoreModules, unsetNodeChildren: () => unsetNodeChildren, unwrapInnermostStatementOfLabel: () => unwrapInnermostStatementOfLabel, unwrapParenthesizedExpression: () => unwrapParenthesizedExpression, updateErrorForNoInputFiles: () => updateErrorForNoInputFiles, updateLanguageServiceSourceFile: () => updateLanguageServiceSourceFile, updateMissingFilePathsWatch: () => updateMissingFilePathsWatch, updateResolutionField: () => updateResolutionField, updateSharedExtendedConfigFileWatcher: () => updateSharedExtendedConfigFileWatcher, updateSourceFile: () => updateSourceFile, updateWatchingWildcardDirectories: () => updateWatchingWildcardDirectories, usesWildcardTypes: () => usesWildcardTypes, usingSingleLineStringWriter: () => usingSingleLineStringWriter, utf16EncodeAsString: () => utf16EncodeAsString, validateLocaleAndSetLanguage: () => validateLocaleAndSetLanguage, version: () => version, versionMajorMinor: () => versionMajorMinor, visitArray: () => visitArray, visitCommaListElements: () => visitCommaListElements, visitEachChild: () => visitEachChild, visitFunctionBody: () => visitFunctionBody, visitIterationBody: () => visitIterationBody, visitLexicalEnvironment: () => visitLexicalEnvironment, visitNode: () => visitNode, visitNodes: () => visitNodes2, visitParameterList: () => visitParameterList, walkUpBindingElementsAndPatterns: () => walkUpBindingElementsAndPatterns, walkUpOuterExpressions: () => walkUpOuterExpressions, walkUpParenthesizedExpressions: () => walkUpParenthesizedExpressions, walkUpParenthesizedTypes: () => walkUpParenthesizedTypes, walkUpParenthesizedTypesAndGetParentAndChild: () => walkUpParenthesizedTypesAndGetParentAndChild, whitespaceOrMapCommentRegExp: () => whitespaceOrMapCommentRegExp, writeCommentRange: () => writeCommentRange, writeFile: () => writeFile, writeFileEnsuringDirectories: () => writeFileEnsuringDirectories, zipWith: () => zipWith }); module3.exports = __toCommonJS2(typescript_exports); var versionMajorMinor = "6.0"; var version = "6.0.3"; var Comparison = /* @__PURE__ */ ((Comparison3) => { Comparison3[Comparison3["LessThan"] = -1] = "LessThan"; Comparison3[Comparison3["EqualTo"] = 0] = "EqualTo"; Comparison3[Comparison3["GreaterThan"] = 1] = "GreaterThan"; return Comparison3; })(Comparison || {}); var emptyArray = []; var emptyMap = /* @__PURE__ */ new Map; function length(array) { return array !== undefined ? array.length : 0; } function forEach(array, callback) { if (array !== undefined) { for (let i = 0;i < array.length; i++) { const result = callback(array[i], i); if (result) { return result; } } } return; } function forEachRight(array, callback) { if (array !== undefined) { for (let i = array.length - 1;i >= 0; i--) { const result = callback(array[i], i); if (result) { return result; } } } return; } function firstDefined(array, callback) { if (array === undefined) { return; } for (let i = 0;i < array.length; i++) { const result = callback(array[i], i); if (result !== undefined) { return result; } } return; } function firstDefinedIterator(iter, callback) { for (const value of iter) { const result = callback(value); if (result !== undefined) { return result; } } return; } function reduceLeftIterator(iterator, f, initial) { let result = initial; if (iterator) { let pos = 0; for (const value of iterator) { result = f(result, value, pos); pos++; } } return result; } function zipWith(arrayA, arrayB, callback) { const result = []; Debug.assertEqual(arrayA.length, arrayB.length); for (let i = 0;i < arrayA.length; i++) { result.push(callback(arrayA[i], arrayB[i], i)); } return result; } function intersperse(input, element) { if (input.length <= 1) { return input; } const result = []; for (let i = 0, n = input.length;i < n; i++) { if (i !== 0) result.push(element); result.push(input[i]); } return result; } function every(array, callback) { if (array !== undefined) { for (let i = 0;i < array.length; i++) { if (!callback(array[i], i)) { return false; } } } return true; } function find(array, predicate, startIndex) { if (array === undefined) return; for (let i = startIndex ?? 0;i < array.length; i++) { const value = array[i]; if (predicate(value, i)) { return value; } } return; } function findLast(array, predicate, startIndex) { if (array === undefined) return; for (let i = startIndex ?? array.length - 1;i >= 0; i--) { const value = array[i]; if (predicate(value, i)) { return value; } } return; } function findIndex(array, predicate, startIndex) { if (array === undefined) return -1; for (let i = startIndex ?? 0;i < array.length; i++) { if (predicate(array[i], i)) { return i; } } return -1; } function findLastIndex(array, predicate, startIndex) { if (array === undefined) return -1; for (let i = startIndex ?? array.length - 1;i >= 0; i--) { if (predicate(array[i], i)) { return i; } } return -1; } function contains(array, value, equalityComparer = equateValues) { if (array !== undefined) { for (let i = 0;i < array.length; i++) { if (equalityComparer(array[i], value)) { return true; } } } return false; } function indexOfAnyCharCode(text, charCodes, start) { for (let i = start ?? 0;i < text.length; i++) { if (contains(charCodes, text.charCodeAt(i))) { return i; } } return -1; } function countWhere(array, predicate) { let count = 0; if (array !== undefined) { for (let i = 0;i < array.length; i++) { const v = array[i]; if (predicate(v, i)) { count++; } } } return count; } function filter(array, f) { if (array !== undefined) { const len = array.length; let i = 0; while (i < len && f(array[i])) i++; if (i < len) { const result = array.slice(0, i); i++; while (i < len) { const item = array[i]; if (f(item)) { result.push(item); } i++; } return result; } } return array; } function filterMutate(array, f) { let outIndex = 0; for (let i = 0;i < array.length; i++) { if (f(array[i], i, array)) { array[outIndex] = array[i]; outIndex++; } } array.length = outIndex; } function clear(array) { array.length = 0; } function map(array, f) { let result; if (array !== undefined) { result = []; for (let i = 0;i < array.length; i++) { result.push(f(array[i], i)); } } return result; } function* mapIterator(iter, mapFn) { for (const x of iter) { yield mapFn(x); } } function sameMap(array, f) { if (array !== undefined) { for (let i = 0;i < array.length; i++) { const item = array[i]; const mapped = f(item, i); if (item !== mapped) { const result = array.slice(0, i); result.push(mapped); for (i++;i < array.length; i++) { result.push(f(array[i], i)); } return result; } } } return array; } function flatten(array) { const result = []; for (let i = 0;i < array.length; i++) { const v = array[i]; if (v) { if (isArray(v)) { addRange(result, v); } else { result.push(v); } } } return result; } function flatMap(array, mapfn) { let result; if (array !== undefined) { for (let i = 0;i < array.length; i++) { const v = mapfn(array[i], i); if (v) { if (isArray(v)) { result = addRange(result, v); } else { result = append(result, v); } } } } return result ?? emptyArray; } function flatMapToMutable(array, mapfn) { const result = []; if (array !== undefined) { for (let i = 0;i < array.length; i++) { const v = mapfn(array[i], i); if (v) { if (isArray(v)) { addRange(result, v); } else { result.push(v); } } } } return result; } function* flatMapIterator(iter, mapfn) { for (const x of iter) { const iter2 = mapfn(x); if (!iter2) continue; yield* iter2; } } function sameFlatMap(array, mapfn) { let result; if (array !== undefined) { for (let i = 0;i < array.length; i++) { const item = array[i]; const mapped = mapfn(item, i); if (result || item !== mapped || isArray(mapped)) { if (!result) { result = array.slice(0, i); } if (isArray(mapped)) { addRange(result, mapped); } else { result.push(mapped); } } } } return result ?? array; } function mapAllOrFail(array, mapFn) { const result = []; for (let i = 0;i < array.length; i++) { const mapped = mapFn(array[i], i); if (mapped === undefined) { return; } result.push(mapped); } return result; } function mapDefined(array, mapFn) { const result = []; if (array !== undefined) { for (let i = 0;i < array.length; i++) { const mapped = mapFn(array[i], i); if (mapped !== undefined) { result.push(mapped); } } } return result; } function* mapDefinedIterator(iter, mapFn) { for (const x of iter) { const value = mapFn(x); if (value !== undefined) { yield value; } } } function getOrUpdate(map2, key, callback) { if (map2.has(key)) { return map2.get(key); } const value = callback(); map2.set(key, value); return value; } function tryAddToSet(set, value) { if (!set.has(value)) { set.add(value); return true; } return false; } function* singleIterator(value) { yield value; } function spanMap(array, keyfn, mapfn) { let result; if (array !== undefined) { result = []; const len = array.length; let previousKey; let key; let start = 0; let pos = 0; while (start < len) { while (pos < len) { const value = array[pos]; key = keyfn(value, pos); if (pos === 0) { previousKey = key; } else if (key !== previousKey) { break; } pos++; } if (start < pos) { const v = mapfn(array.slice(start, pos), previousKey, start, pos); if (v) { result.push(v); } start = pos; } previousKey = key; pos++; } } return result; } function mapEntries(map2, f) { if (map2 === undefined) { return; } const result = /* @__PURE__ */ new Map; map2.forEach((value, key) => { const [newKey, newValue] = f(key, value); result.set(newKey, newValue); }); return result; } function some(array, predicate) { if (array !== undefined) { if (predicate !== undefined) { for (let i = 0;i < array.length; i++) { if (predicate(array[i])) { return true; } } } else { return array.length > 0; } } return false; } function getRangesWhere(arr, pred, cb) { let start; for (let i = 0;i < arr.length; i++) { if (pred(arr[i])) { start = start === undefined ? i : start; } else { if (start !== undefined) { cb(start, i); start = undefined; } } } if (start !== undefined) cb(start, arr.length); } function concatenate(array1, array2) { if (array2 === undefined || array2.length === 0) return array1; if (array1 === undefined || array1.length === 0) return array2; return [...array1, ...array2]; } function selectIndex(_, i) { return i; } function indicesOf(array) { return array.map(selectIndex); } function deduplicateRelational(array, equalityComparer, comparer) { const indices = indicesOf(array); stableSortIndices(array, indices, comparer); let last2 = array[indices[0]]; const deduplicated = [indices[0]]; for (let i = 1;i < indices.length; i++) { const index = indices[i]; const item = array[index]; if (!equalityComparer(last2, item)) { deduplicated.push(index); last2 = item; } } deduplicated.sort(); return deduplicated.map((i) => array[i]); } function deduplicateEquality(array, equalityComparer) { const result = []; for (let i = 0;i < array.length; i++) { pushIfUnique(result, array[i], equalityComparer); } return result; } function deduplicate(array, equalityComparer, comparer) { return array.length === 0 ? [] : array.length === 1 ? array.slice() : comparer ? deduplicateRelational(array, equalityComparer, comparer) : deduplicateEquality(array, equalityComparer); } function deduplicateSorted(array, comparer) { if (array.length === 0) return emptyArray; let last2 = array[0]; const deduplicated = [last2]; for (let i = 1;i < array.length; i++) { const next = array[i]; switch (comparer(next, last2)) { case true: case 0: continue; case -1: return Debug.fail("Array is unsorted."); } deduplicated.push(last2 = next); } return deduplicated; } function createSortedArray() { return []; } function insertSorted(array, insert, compare, equalityComparer, allowDuplicates) { if (array.length === 0) { array.push(insert); return true; } const insertIndex = binarySearch(array, insert, identity, compare); if (insertIndex < 0) { if (equalityComparer && !allowDuplicates) { const idx = ~insertIndex; if (idx > 0 && equalityComparer(insert, array[idx - 1])) { return false; } if (idx < array.length && equalityComparer(insert, array[idx])) { array.splice(idx, 1, insert); return true; } } array.splice(~insertIndex, 0, insert); return true; } if (allowDuplicates) { array.splice(insertIndex, 0, insert); return true; } return false; } function sortAndDeduplicate(array, comparer, equalityComparer) { return deduplicateSorted(toSorted(array, comparer), equalityComparer ?? comparer ?? compareStringsCaseSensitive); } function arrayIsEqualTo(array1, array2, equalityComparer = equateValues) { if (array1 === undefined || array2 === undefined) { return array1 === array2; } if (array1.length !== array2.length) { return false; } for (let i = 0;i < array1.length; i++) { if (!equalityComparer(array1[i], array2[i], i)) { return false; } } return true; } function compact(array) { let result; if (array !== undefined) { for (let i = 0;i < array.length; i++) { const v = array[i]; if (result ?? !v) { result ?? (result = array.slice(0, i)); if (v) { result.push(v); } } } } return result ?? array; } function relativeComplement(arrayA, arrayB, comparer) { if (!arrayB || !arrayA || arrayB.length === 0 || arrayA.length === 0) return arrayB; const result = []; loopB: for (let offsetA = 0, offsetB = 0;offsetB < arrayB.length; offsetB++) { if (offsetB > 0) { Debug.assertGreaterThanOrEqual(comparer(arrayB[offsetB], arrayB[offsetB - 1]), 0); } loopA: for (const startA = offsetA;offsetA < arrayA.length; offsetA++) { if (offsetA > startA) { Debug.assertGreaterThanOrEqual(comparer(arrayA[offsetA], arrayA[offsetA - 1]), 0); } switch (comparer(arrayB[offsetB], arrayA[offsetA])) { case -1: result.push(arrayB[offsetB]); continue loopB; case 0: continue loopB; case 1: continue loopA; } } } return result; } function append(to, value) { if (value === undefined) return to; if (to === undefined) return [value]; to.push(value); return to; } function combine(xs, ys) { if (xs === undefined) return ys; if (ys === undefined) return xs; if (isArray(xs)) return isArray(ys) ? concatenate(xs, ys) : append(xs, ys); if (isArray(ys)) return append(ys, xs); return [xs, ys]; } function toOffset(array, offset) { return offset < 0 ? array.length + offset : offset; } function addRange(to, from, start, end) { if (from === undefined || from.length === 0) return to; if (to === undefined) return from.slice(start, end); start = start === undefined ? 0 : toOffset(from, start); end = end === undefined ? from.length : toOffset(from, end); for (let i = start;i < end && i < from.length; i++) { if (from[i] !== undefined) { to.push(from[i]); } } return to; } function pushIfUnique(array, toAdd, equalityComparer) { if (contains(array, toAdd, equalityComparer)) { return false; } else { array.push(toAdd); return true; } } function appendIfUnique(array, toAdd, equalityComparer) { if (array !== undefined) { pushIfUnique(array, toAdd, equalityComparer); return array; } else { return [toAdd]; } } function stableSortIndices(array, indices, comparer) { indices.sort((x, y) => comparer(array[x], array[y]) || compareValues(x, y)); } function toSorted(array, comparer) { return array.length === 0 ? emptyArray : array.slice().sort(comparer); } function* arrayReverseIterator(array) { for (let i = array.length - 1;i >= 0; i--) { yield array[i]; } } function rangeEquals(array1, array2, pos, end) { while (pos < end) { if (array1[pos] !== array2[pos]) { return false; } pos++; } return true; } var elementAt = Array.prototype.at ? (array, offset) => array == null ? undefined : array.at(offset) : (array, offset) => { if (array !== undefined) { offset = toOffset(array, offset); if (offset < array.length) { return array[offset]; } } return; }; function firstOrUndefined(array) { return array === undefined || array.length === 0 ? undefined : array[0]; } function firstOrUndefinedIterator(iter) { if (iter !== undefined) { for (const value of iter) { return value; } } return; } function first(array) { Debug.assert(array.length !== 0); return array[0]; } function firstIterator(iter) { for (const value of iter) { return value; } Debug.fail("iterator is empty"); } function lastOrUndefined(array) { return array === undefined || array.length === 0 ? undefined : array[array.length - 1]; } function last(array) { Debug.assert(array.length !== 0); return array[array.length - 1]; } function singleOrUndefined(array) { return array !== undefined && array.length === 1 ? array[0] : undefined; } function single(array) { return Debug.checkDefined(singleOrUndefined(array)); } function singleOrMany(array) { return array !== undefined && array.length === 1 ? array[0] : array; } function replaceElement(array, index, value) { const result = array.slice(0); result[index] = value; return result; } function binarySearch(array, value, keySelector, keyComparer, offset) { return binarySearchKey(array, keySelector(value), keySelector, keyComparer, offset); } function binarySearchKey(array, key, keySelector, keyComparer, offset) { if (!some(array)) { return -1; } let low = offset ?? 0; let high = array.length - 1; while (low <= high) { const middle = low + (high - low >> 1); const midKey = keySelector(array[middle], middle); switch (Math.sign(keyComparer(midKey, key))) { case -1: low = middle + 1; break; case 0: return middle; case 1: high = middle - 1; break; } } return ~low; } function reduceLeft(array, f, initial, start, count) { if (array && array.length > 0) { const size = array.length; if (size > 0) { let pos = start === undefined || start < 0 ? 0 : start; const end = count === undefined || pos + count > size - 1 ? size - 1 : pos + count; let result; if (arguments.length <= 2) { result = array[pos]; pos++; } else { result = initial; } while (pos <= end) { result = f(result, array[pos], pos); pos++; } return result; } } return initial; } var hasOwnProperty = Object.prototype.hasOwnProperty; function hasProperty(map2, key) { return hasOwnProperty.call(map2, key); } function getProperty(map2, key) { return hasOwnProperty.call(map2, key) ? map2[key] : undefined; } function getOwnKeys(map2) { const keys = []; for (const key in map2) { if (hasOwnProperty.call(map2, key)) { keys.push(key); } } return keys; } function getAllKeys(obj) { const result = []; do { const names = Object.getOwnPropertyNames(obj); for (const name of names) { pushIfUnique(result, name); } } while (obj = Object.getPrototypeOf(obj)); return result; } function getOwnValues(collection) { const values = []; for (const key in collection) { if (hasOwnProperty.call(collection, key)) { values.push(collection[key]); } } return values; } function arrayOf(count, f) { const result = new Array(count); for (let i = 0;i < count; i++) { result[i] = f(i); } return result; } function arrayFrom(iterator, map2) { const result = []; for (const value of iterator) { result.push(map2 ? map2(value) : value); } return result; } function assign(t, ...args) { for (const arg of args) { if (arg === undefined) continue; for (const p in arg) { if (hasProperty(arg, p)) { t[p] = arg[p]; } } } return t; } function equalOwnProperties(left, right, equalityComparer = equateValues) { if (left === right) return true; if (!left || !right) return false; for (const key in left) { if (hasOwnProperty.call(left, key)) { if (!hasOwnProperty.call(right, key)) return false; if (!equalityComparer(left[key], right[key])) return false; } } for (const key in right) { if (hasOwnProperty.call(right, key)) { if (!hasOwnProperty.call(left, key)) return false; } } return true; } function arrayToMap(array, makeKey, makeValue = identity) { const result = /* @__PURE__ */ new Map; for (let i = 0;i < array.length; i++) { const value = array[i]; const key = makeKey(value); if (key !== undefined) result.set(key, makeValue(value)); } return result; } function arrayToNumericMap(array, makeKey, makeValue = identity) { const result = []; for (let i = 0;i < array.length; i++) { const value = array[i]; result[makeKey(value)] = makeValue(value); } return result; } function arrayToMultiMap(values, makeKey, makeValue = identity) { const result = createMultiMap(); for (let i = 0;i < values.length; i++) { const value = values[i]; result.add(makeKey(value), makeValue(value)); } return result; } function group(values, getGroupId, resultSelector = identity) { return arrayFrom(arrayToMultiMap(values, getGroupId).values(), resultSelector); } function groupBy(values, keySelector) { const result = {}; if (values !== undefined) { for (let i = 0;i < values.length; i++) { const value = values[i]; const key = `${keySelector(value)}`; const array = result[key] ?? (result[key] = []); array.push(value); } } return result; } function clone(object) { const result = {}; for (const id in object) { if (hasOwnProperty.call(object, id)) { result[id] = object[id]; } } return result; } function extend(first2, second) { const result = {}; for (const id in second) { if (hasOwnProperty.call(second, id)) { result[id] = second[id]; } } for (const id in first2) { if (hasOwnProperty.call(first2, id)) { result[id] = first2[id]; } } return result; } function copyProperties(first2, second) { for (const id in second) { if (hasOwnProperty.call(second, id)) { first2[id] = second[id]; } } } function maybeBind(obj, fn) { return fn == null ? undefined : fn.bind(obj); } function createMultiMap() { const map2 = /* @__PURE__ */ new Map; map2.add = multiMapAdd; map2.remove = multiMapRemove; return map2; } function multiMapAdd(key, value) { let values = this.get(key); if (values !== undefined) { values.push(value); } else { this.set(key, values = [value]); } return values; } function multiMapRemove(key, value) { const values = this.get(key); if (values !== undefined) { unorderedRemoveItem(values, value); if (!values.length) { this.delete(key); } } } function createQueue(items) { const elements = (items == null ? undefined : items.slice()) ?? []; let headIndex = 0; function isEmpty() { return headIndex === elements.length; } function enqueue(...items2) { elements.push(...items2); } function dequeue() { if (isEmpty()) { throw new Error("Queue is empty"); } const result = elements[headIndex]; elements[headIndex] = undefined; headIndex++; if (headIndex > 100 && headIndex > elements.length >> 1) { const newLength = elements.length - headIndex; elements.copyWithin(0, headIndex); elements.length = newLength; headIndex = 0; } return result; } return { enqueue, dequeue, isEmpty }; } function createSet(getHashCode, equals) { const multiMap = /* @__PURE__ */ new Map; let size = 0; function* getElementIterator() { for (const value of multiMap.values()) { if (isArray(value)) { yield* value; } else { yield value; } } } const set = { has(element) { const hash = getHashCode(element); if (!multiMap.has(hash)) return false; const candidates = multiMap.get(hash); if (isArray(candidates)) return contains(candidates, element, equals); return equals(candidates, element); }, add(element) { const hash = getHashCode(element); if (multiMap.has(hash)) { const values = multiMap.get(hash); if (isArray(values)) { if (!contains(values, element, equals)) { values.push(element); size++; } } else { const value = values; if (!equals(value, element)) { multiMap.set(hash, [value, element]); size++; } } } else { multiMap.set(hash, element); size++; } return this; }, delete(element) { const hash = getHashCode(element); if (!multiMap.has(hash)) return false; const candidates = multiMap.get(hash); if (isArray(candidates)) { for (let i = 0;i < candidates.length; i++) { if (equals(candidates[i], element)) { if (candidates.length === 1) { multiMap.delete(hash); } else if (candidates.length === 2) { multiMap.set(hash, candidates[1 - i]); } else { unorderedRemoveItemAt(candidates, i); } size--; return true; } } } else { const candidate = candidates; if (equals(candidate, element)) { multiMap.delete(hash); size--; return true; } } return false; }, clear() { multiMap.clear(); size = 0; }, get size() { return size; }, forEach(action) { for (const elements of arrayFrom(multiMap.values())) { if (isArray(elements)) { for (const element of elements) { action(element, element, set); } } else { const element = elements; action(element, element, set); } } }, keys() { return getElementIterator(); }, values() { return getElementIterator(); }, *entries() { for (const value of getElementIterator()) { yield [value, value]; } }, [Symbol.iterator]: () => { return getElementIterator(); }, [Symbol.toStringTag]: multiMap[Symbol.toStringTag] }; return set; } function isArray(value) { return Array.isArray(value); } function toArray(value) { return isArray(value) ? value : [value]; } function isString(text) { return typeof text === "string"; } function isNumber(x) { return typeof x === "number"; } function tryCast(value, test) { return value !== undefined && test(value) ? value : undefined; } function cast(value, test) { if (value !== undefined && test(value)) return value; return Debug.fail(`Invalid cast. The supplied value ${value} did not pass the test '${Debug.getFunctionName(test)}'.`); } function noop(_) {} function returnFalse() { return false; } function returnTrue() { return true; } function returnUndefined() { return; } function identity(x) { return x; } function toLowerCase(x) { return x.toLowerCase(); } var fileNameLowerCaseRegExp = /[^\u0130\u0131\u00DFa-z0-9\\/:\-_. ]+/g; function toFileNameLowerCase(x) { return fileNameLowerCaseRegExp.test(x) ? x.replace(fileNameLowerCaseRegExp, toLowerCase) : x; } function notImplemented() { throw new Error("Not implemented"); } function memoize(callback) { let value; return () => { if (callback) { value = callback(); callback = undefined; } return value; }; } function memoizeOne(callback) { const map2 = /* @__PURE__ */ new Map; return (arg) => { const key = `${typeof arg}:${arg}`; let value = map2.get(key); if (value === undefined && !map2.has(key)) { value = callback(arg); map2.set(key, value); } return value; }; } var AssertionLevel = /* @__PURE__ */ ((AssertionLevel2) => { AssertionLevel2[AssertionLevel2["None"] = 0] = "None"; AssertionLevel2[AssertionLevel2["Normal"] = 1] = "Normal"; AssertionLevel2[AssertionLevel2["Aggressive"] = 2] = "Aggressive"; AssertionLevel2[AssertionLevel2["VeryAggressive"] = 3] = "VeryAggressive"; return AssertionLevel2; })(AssertionLevel || {}); function equateValues(a, b) { return a === b; } function equateStringsCaseInsensitive(a, b) { return a === b || a !== undefined && b !== undefined && a.toUpperCase() === b.toUpperCase(); } function equateStringsCaseSensitive(a, b) { return equateValues(a, b); } function compareComparableValues(a, b) { return a === b ? 0 : a === undefined ? -1 : b === undefined ? 1 : a < b ? -1 : 1; } function compareValues(a, b) { return compareComparableValues(a, b); } function compareTextSpans(a, b) { return compareValues(a == null ? undefined : a.start, b == null ? undefined : b.start) || compareValues(a == null ? undefined : a.length, b == null ? undefined : b.length); } function maxBy(arr, init, mapper) { for (let i = 0;i < arr.length; i++) { init = Math.max(init, mapper(arr[i])); } return init; } function min(items, compare) { return reduceLeft(items, (x, y) => compare(x, y) === -1 ? x : y); } function compareStringsCaseInsensitive(a, b) { if (a === b) return 0; if (a === undefined) return -1; if (b === undefined) return 1; a = a.toUpperCase(); b = b.toUpperCase(); return a < b ? -1 : a > b ? 1 : 0; } function compareStringsCaseInsensitiveEslintCompatible(a, b) { if (a === b) return 0; if (a === undefined) return -1; if (b === undefined) return 1; a = a.toLowerCase(); b = b.toLowerCase(); return a < b ? -1 : a > b ? 1 : 0; } function compareStringsCaseSensitive(a, b) { return compareComparableValues(a, b); } function getStringComparer(ignoreCase) { return ignoreCase ? compareStringsCaseInsensitive : compareStringsCaseSensitive; } var createUIStringComparer = /* @__PURE__ */ (() => { return createIntlCollatorStringComparer; function compareWithCallback(a, b, comparer) { if (a === b) return 0; if (a === undefined) return -1; if (b === undefined) return 1; const value = comparer(a, b); return value < 0 ? -1 : value > 0 ? 1 : 0; } function createIntlCollatorStringComparer(locale) { const comparer = new Intl.Collator(locale, { usage: "sort", sensitivity: "variant", numeric: true }).compare; return (a, b) => compareWithCallback(a, b, comparer); } })(); var uiComparerCaseSensitive; var uiLocale; function getUILocale() { return uiLocale; } function setUILocale(value) { if (uiLocale !== value) { uiLocale = value; uiComparerCaseSensitive = undefined; } } function compareStringsCaseSensitiveUI(a, b) { uiComparerCaseSensitive ?? (uiComparerCaseSensitive = createUIStringComparer(uiLocale)); return uiComparerCaseSensitive(a, b); } function compareProperties(a, b, key, comparer) { return a === b ? 0 : a === undefined ? -1 : b === undefined ? 1 : comparer(a[key], b[key]); } function compareBooleans(a, b) { return compareValues(a ? 1 : 0, b ? 1 : 0); } function getSpellingSuggestion(name, candidates, getName) { const maximumLengthDifference = Math.max(2, Math.floor(name.length * 0.34)); let bestDistance = Math.floor(name.length * 0.4) + 1; let bestCandidate; for (const candidate of candidates) { const candidateName = getName(candidate); if (candidateName !== undefined && Math.abs(candidateName.length - name.length) <= maximumLengthDifference) { if (candidateName === name) { continue; } if (candidateName.length < 3 && candidateName.toLowerCase() !== name.toLowerCase()) { continue; } const distance = levenshteinWithMax(name, candidateName, bestDistance - 0.1); if (distance === undefined) { continue; } Debug.assert(distance < bestDistance); bestDistance = distance; bestCandidate = candidate; } } return bestCandidate; } function levenshteinWithMax(s1, s2, max) { let previous = new Array(s2.length + 1); let current = new Array(s2.length + 1); const big = max + 0.01; for (let i = 0;i <= s2.length; i++) { previous[i] = i; } for (let i = 1;i <= s1.length; i++) { const c1 = s1.charCodeAt(i - 1); const minJ = Math.ceil(i > max ? i - max : 1); const maxJ = Math.floor(s2.length > max + i ? max + i : s2.length); current[0] = i; let colMin = i; for (let j = 1;j < minJ; j++) { current[j] = big; } for (let j = minJ;j <= maxJ; j++) { const substitutionDistance = s1[i - 1].toLowerCase() === s2[j - 1].toLowerCase() ? previous[j - 1] + 0.1 : previous[j - 1] + 2; const dist = c1 === s2.charCodeAt(j - 1) ? previous[j - 1] : Math.min(previous[j] + 1, current[j - 1] + 1, substitutionDistance); current[j] = dist; colMin = Math.min(colMin, dist); } for (let j = maxJ + 1;j <= s2.length; j++) { current[j] = big; } if (colMin > max) { return; } const temp = previous; previous = current; current = temp; } const res = previous[s2.length]; return res > max ? undefined : res; } function endsWith(str, suffix, ignoreCase) { const expectedPos = str.length - suffix.length; return expectedPos >= 0 && (ignoreCase ? equateStringsCaseInsensitive(str.slice(expectedPos), suffix) : str.indexOf(suffix, expectedPos) === expectedPos); } function removeSuffix(str, suffix) { return endsWith(str, suffix) ? str.slice(0, str.length - suffix.length) : str; } function tryRemoveSuffix(str, suffix) { return endsWith(str, suffix) ? str.slice(0, str.length - suffix.length) : undefined; } function removeMinAndVersionNumbers(fileName) { let end = fileName.length; for (let pos = end - 1;pos > 0; pos--) { let ch = fileName.charCodeAt(pos); if (ch >= 48 && ch <= 57) { do { --pos; ch = fileName.charCodeAt(pos); } while (pos > 0 && ch >= 48 && ch <= 57); } else if (pos > 4 && (ch === 110 || ch === 78)) { --pos; ch = fileName.charCodeAt(pos); if (ch !== 105 && ch !== 73) { break; } --pos; ch = fileName.charCodeAt(pos); if (ch !== 109 && ch !== 77) { break; } --pos; ch = fileName.charCodeAt(pos); } else { break; } if (ch !== 45 && ch !== 46) { break; } end = pos; } return end === fileName.length ? fileName : fileName.slice(0, end); } function orderedRemoveItem(array, item) { for (let i = 0;i < array.length; i++) { if (array[i] === item) { orderedRemoveItemAt(array, i); return true; } } return false; } function orderedRemoveItemAt(array, index) { for (let i = index;i < array.length - 1; i++) { array[i] = array[i + 1]; } array.pop(); } function unorderedRemoveItemAt(array, index) { array[index] = array[array.length - 1]; array.pop(); } function unorderedRemoveItem(array, item) { return unorderedRemoveFirstItemWhere(array, (element) => element === item); } function unorderedRemoveFirstItemWhere(array, predicate) { for (let i = 0;i < array.length; i++) { if (predicate(array[i])) { unorderedRemoveItemAt(array, i); return true; } } return false; } function createGetCanonicalFileName(useCaseSensitiveFileNames2) { return useCaseSensitiveFileNames2 ? identity : toFileNameLowerCase; } function patternText({ prefix, suffix }) { return `${prefix}*${suffix}`; } function matchedText(pattern, candidate) { Debug.assert(isPatternMatch(pattern, candidate)); return candidate.substring(pattern.prefix.length, candidate.length - pattern.suffix.length); } function findBestPatternMatch(values, getPattern, candidate) { let matchedValue; let longestMatchPrefixLength = -1; for (let i = 0;i < values.length; i++) { const v = values[i]; const pattern = getPattern(v); if (pattern.prefix.length > longestMatchPrefixLength && isPatternMatch(pattern, candidate)) { longestMatchPrefixLength = pattern.prefix.length; matchedValue = v; } } return matchedValue; } function startsWith(str, prefix, ignoreCase) { return ignoreCase ? equateStringsCaseInsensitive(str.slice(0, prefix.length), prefix) : str.lastIndexOf(prefix, 0) === 0; } function removePrefix(str, prefix) { return startsWith(str, prefix) ? str.substr(prefix.length) : str; } function tryRemovePrefix(str, prefix, getCanonicalFileName = identity) { return startsWith(getCanonicalFileName(str), getCanonicalFileName(prefix)) ? str.substring(prefix.length) : undefined; } function isPatternMatch({ prefix, suffix }, candidate) { return candidate.length >= prefix.length + suffix.length && startsWith(candidate, prefix) && endsWith(candidate, suffix); } function and(f, g) { return (arg) => f(arg) && g(arg); } function or(...fs) { return (...args) => { let lastResult; for (const f of fs) { lastResult = f(...args); if (lastResult) { return lastResult; } } return lastResult; }; } function not(fn) { return (...args) => !fn(...args); } function assertType(_) {} function singleElementArray(t) { return t === undefined ? undefined : [t]; } function enumerateInsertsAndDeletes(newItems, oldItems, comparer, inserted, deleted, unchanged) { unchanged ?? (unchanged = noop); let newIndex = 0; let oldIndex = 0; const newLen = newItems.length; const oldLen = oldItems.length; let hasChanges = false; while (newIndex < newLen && oldIndex < oldLen) { const newItem = newItems[newIndex]; const oldItem = oldItems[oldIndex]; const compareResult = comparer(newItem, oldItem); if (compareResult === -1) { inserted(newItem); newIndex++; hasChanges = true; } else if (compareResult === 1) { deleted(oldItem); oldIndex++; hasChanges = true; } else { unchanged(oldItem, newItem); newIndex++; oldIndex++; } } while (newIndex < newLen) { inserted(newItems[newIndex++]); hasChanges = true; } while (oldIndex < oldLen) { deleted(oldItems[oldIndex++]); hasChanges = true; } return hasChanges; } function cartesianProduct(arrays) { const result = []; cartesianProductWorker(arrays, result, undefined, 0); return result; } function cartesianProductWorker(arrays, result, outer, index) { for (const element of arrays[index]) { let inner; if (outer) { inner = outer.slice(); inner.push(element); } else { inner = [element]; } if (index === arrays.length - 1) { result.push(inner); } else { cartesianProductWorker(arrays, result, inner, index + 1); } } } function takeWhile(array, predicate) { if (array !== undefined) { const len = array.length; let index = 0; while (index < len && predicate(array[index])) { index++; } return array.slice(0, index); } } function skipWhile(array, predicate) { if (array !== undefined) { const len = array.length; let index = 0; while (index < len && predicate(array[index])) { index++; } return array.slice(index); } } function isNodeLikeSystem() { return typeof process !== "undefined" && !!process.nextTick && true && true; } var LogLevel = /* @__PURE__ */ ((LogLevel3) => { LogLevel3[LogLevel3["Off"] = 0] = "Off"; LogLevel3[LogLevel3["Error"] = 1] = "Error"; LogLevel3[LogLevel3["Warning"] = 2] = "Warning"; LogLevel3[LogLevel3["Info"] = 3] = "Info"; LogLevel3[LogLevel3["Verbose"] = 4] = "Verbose"; return LogLevel3; })(LogLevel || {}); var Debug; ((Debug2) => { let currentAssertionLevel = 0; Debug2.currentLogLevel = 2; Debug2.isDebugging = false; function shouldLog(level) { return Debug2.currentLogLevel <= level; } Debug2.shouldLog = shouldLog; function logMessage(level, s) { if (Debug2.loggingHost && shouldLog(level)) { Debug2.loggingHost.log(level, s); } } function log(s) { logMessage(3, s); } Debug2.log = log; ((_log) => { function error2(s) { logMessage(1, s); } _log.error = error2; function warn(s) { logMessage(2, s); } _log.warn = warn; function log2(s) { logMessage(3, s); } _log.log = log2; function trace2(s) { logMessage(4, s); } _log.trace = trace2; })(log = Debug2.log || (Debug2.log = {})); const assertionCache = {}; function getAssertionLevel() { return currentAssertionLevel; } Debug2.getAssertionLevel = getAssertionLevel; function setAssertionLevel(level) { const prevAssertionLevel = currentAssertionLevel; currentAssertionLevel = level; if (level > prevAssertionLevel) { for (const key of getOwnKeys(assertionCache)) { const cachedFunc = assertionCache[key]; if (cachedFunc !== undefined && Debug2[key] !== cachedFunc.assertion && level >= cachedFunc.level) { Debug2[key] = cachedFunc; assertionCache[key] = undefined; } } } } Debug2.setAssertionLevel = setAssertionLevel; function shouldAssert(level) { return currentAssertionLevel >= level; } Debug2.shouldAssert = shouldAssert; function shouldAssertFunction(level, name) { if (!shouldAssert(level)) { assertionCache[name] = { level, assertion: Debug2[name] }; Debug2[name] = noop; return false; } return true; } function fail(message, stackCrawlMark) { debugger; const e = new Error(message ? `Debug Failure. ${message}` : "Debug Failure."); if (Error.captureStackTrace) { Error.captureStackTrace(e, stackCrawlMark || fail); } throw e; } Debug2.fail = fail; function failBadSyntaxKind(node, message, stackCrawlMark) { return fail(`${message || "Unexpected node."}\r Node ${formatSyntaxKind(node.kind)} was unexpected.`, stackCrawlMark || failBadSyntaxKind); } Debug2.failBadSyntaxKind = failBadSyntaxKind; function assert(expression, message, verboseDebugInfo, stackCrawlMark) { if (!expression) { message = message ? `False expression: ${message}` : "False expression."; if (verboseDebugInfo) { message += `\r Verbose Debug Information: ` + (typeof verboseDebugInfo === "string" ? verboseDebugInfo : verboseDebugInfo()); } fail(message, stackCrawlMark || assert); } } Debug2.assert = assert; function assertEqual(a, b, msg, msg2, stackCrawlMark) { if (a !== b) { const message = msg ? msg2 ? `${msg} ${msg2}` : msg : ""; fail(`Expected ${a} === ${b}. ${message}`, stackCrawlMark || assertEqual); } } Debug2.assertEqual = assertEqual; function assertLessThan(a, b, msg, stackCrawlMark) { if (a >= b) { fail(`Expected ${a} < ${b}. ${msg || ""}`, stackCrawlMark || assertLessThan); } } Debug2.assertLessThan = assertLessThan; function assertLessThanOrEqual(a, b, stackCrawlMark) { if (a > b) { fail(`Expected ${a} <= ${b}`, stackCrawlMark || assertLessThanOrEqual); } } Debug2.assertLessThanOrEqual = assertLessThanOrEqual; function assertGreaterThanOrEqual(a, b, stackCrawlMark) { if (a < b) { fail(`Expected ${a} >= ${b}`, stackCrawlMark || assertGreaterThanOrEqual); } } Debug2.assertGreaterThanOrEqual = assertGreaterThanOrEqual; function assertIsDefined(value, message, stackCrawlMark) { if (value === undefined || value === null) { fail(message, stackCrawlMark || assertIsDefined); } } Debug2.assertIsDefined = assertIsDefined; function checkDefined(value, message, stackCrawlMark) { assertIsDefined(value, message, stackCrawlMark || checkDefined); return value; } Debug2.checkDefined = checkDefined; function assertEachIsDefined(value, message, stackCrawlMark) { for (const v of value) { assertIsDefined(v, message, stackCrawlMark || assertEachIsDefined); } } Debug2.assertEachIsDefined = assertEachIsDefined; function checkEachDefined(value, message, stackCrawlMark) { assertEachIsDefined(value, message, stackCrawlMark || checkEachDefined); return value; } Debug2.checkEachDefined = checkEachDefined; function assertNever(member, message = "Illegal value:", stackCrawlMark) { const detail = typeof member === "object" && hasProperty(member, "kind") && hasProperty(member, "pos") ? "SyntaxKind: " + formatSyntaxKind(member.kind) : JSON.stringify(member); return fail(`${message} ${detail}`, stackCrawlMark || assertNever); } Debug2.assertNever = assertNever; function assertEachNode(nodes, test, message, stackCrawlMark) { if (shouldAssertFunction(1, "assertEachNode")) { assert(test === undefined || every(nodes, test), message || "Unexpected node.", () => `Node array did not pass test '${getFunctionName(test)}'.`, stackCrawlMark || assertEachNode); } } Debug2.assertEachNode = assertEachNode; function assertNode(node, test, message, stackCrawlMark) { if (shouldAssertFunction(1, "assertNode")) { assert(node !== undefined && (test === undefined || test(node)), message || "Unexpected node.", () => `Node ${formatSyntaxKind(node == null ? undefined : node.kind)} did not pass test '${getFunctionName(test)}'.`, stackCrawlMark || assertNode); } } Debug2.assertNode = assertNode; function assertNotNode(node, test, message, stackCrawlMark) { if (shouldAssertFunction(1, "assertNotNode")) { assert(node === undefined || test === undefined || !test(node), message || "Unexpected node.", () => `Node ${formatSyntaxKind(node.kind)} should not have passed test '${getFunctionName(test)}'.`, stackCrawlMark || assertNotNode); } } Debug2.assertNotNode = assertNotNode; function assertOptionalNode(node, test, message, stackCrawlMark) { if (shouldAssertFunction(1, "assertOptionalNode")) { assert(test === undefined || node === undefined || test(node), message || "Unexpected node.", () => `Node ${formatSyntaxKind(node == null ? undefined : node.kind)} did not pass test '${getFunctionName(test)}'.`, stackCrawlMark || assertOptionalNode); } } Debug2.assertOptionalNode = assertOptionalNode; function assertOptionalToken(node, kind, message, stackCrawlMark) { if (shouldAssertFunction(1, "assertOptionalToken")) { assert(kind === undefined || node === undefined || node.kind === kind, message || "Unexpected node.", () => `Node ${formatSyntaxKind(node == null ? undefined : node.kind)} was not a '${formatSyntaxKind(kind)}' token.`, stackCrawlMark || assertOptionalToken); } } Debug2.assertOptionalToken = assertOptionalToken; function assertMissingNode(node, message, stackCrawlMark) { if (shouldAssertFunction(1, "assertMissingNode")) { assert(node === undefined, message || "Unexpected node.", () => `Node ${formatSyntaxKind(node.kind)} was unexpected'.`, stackCrawlMark || assertMissingNode); } } Debug2.assertMissingNode = assertMissingNode; function type(_value) {} Debug2.type = type; function getFunctionName(func) { if (typeof func !== "function") { return ""; } else if (hasProperty(func, "name")) { return func.name; } else { const text = Function.prototype.toString.call(func); const match = /^function\s+([\w$]+)\s*\(/.exec(text); return match ? match[1] : ""; } } Debug2.getFunctionName = getFunctionName; function formatSymbol(symbol) { return `{ name: ${unescapeLeadingUnderscores(symbol.escapedName)}; flags: ${formatSymbolFlags(symbol.flags)}; declarations: ${map(symbol.declarations, (node) => formatSyntaxKind(node.kind))} }`; } Debug2.formatSymbol = formatSymbol; function formatEnum(value = 0, enumObject, isFlags) { const members = getEnumMembers(enumObject); if (value === 0) { return members.length > 0 && members[0][0] === 0 ? members[0][1] : "0"; } if (isFlags) { const result = []; let remainingFlags = value; for (const [enumValue, enumName] of members) { if (enumValue > value) { break; } if (enumValue !== 0 && enumValue & value) { result.push(enumName); remainingFlags &= ~enumValue; } } if (remainingFlags === 0) { return result.join("|"); } } else { for (const [enumValue, enumName] of members) { if (enumValue === value) { return enumName; } } } return value.toString(); } Debug2.formatEnum = formatEnum; const enumMemberCache = /* @__PURE__ */ new Map; function getEnumMembers(enumObject) { const existing = enumMemberCache.get(enumObject); if (existing) { return existing; } const result = []; for (const name in enumObject) { const value = enumObject[name]; if (typeof value === "number") { result.push([value, name]); } } const sorted = toSorted(result, (x, y) => compareValues(x[0], y[0])); enumMemberCache.set(enumObject, sorted); return sorted; } function formatSyntaxKind(kind) { return formatEnum(kind, SyntaxKind, false); } Debug2.formatSyntaxKind = formatSyntaxKind; function formatSnippetKind(kind) { return formatEnum(kind, SnippetKind, false); } Debug2.formatSnippetKind = formatSnippetKind; function formatScriptKind(kind) { return formatEnum(kind, ScriptKind, false); } Debug2.formatScriptKind = formatScriptKind; function formatNodeFlags(flags) { return formatEnum(flags, NodeFlags, true); } Debug2.formatNodeFlags = formatNodeFlags; function formatNodeCheckFlags(flags) { return formatEnum(flags, NodeCheckFlags, true); } Debug2.formatNodeCheckFlags = formatNodeCheckFlags; function formatModifierFlags(flags) { return formatEnum(flags, ModifierFlags, true); } Debug2.formatModifierFlags = formatModifierFlags; function formatTransformFlags(flags) { return formatEnum(flags, TransformFlags, true); } Debug2.formatTransformFlags = formatTransformFlags; function formatEmitFlags(flags) { return formatEnum(flags, EmitFlags, true); } Debug2.formatEmitFlags = formatEmitFlags; function formatSymbolFlags(flags) { return formatEnum(flags, SymbolFlags, true); } Debug2.formatSymbolFlags = formatSymbolFlags; function formatTypeFlags(flags) { return formatEnum(flags, TypeFlags, true); } Debug2.formatTypeFlags = formatTypeFlags; function formatSignatureFlags(flags) { return formatEnum(flags, SignatureFlags, true); } Debug2.formatSignatureFlags = formatSignatureFlags; function formatObjectFlags(flags) { return formatEnum(flags, ObjectFlags, true); } Debug2.formatObjectFlags = formatObjectFlags; function formatFlowFlags(flags) { return formatEnum(flags, FlowFlags, true); } Debug2.formatFlowFlags = formatFlowFlags; function formatRelationComparisonResult(result) { return formatEnum(result, RelationComparisonResult, true); } Debug2.formatRelationComparisonResult = formatRelationComparisonResult; function formatCheckMode(mode) { return formatEnum(mode, CheckMode, true); } Debug2.formatCheckMode = formatCheckMode; function formatSignatureCheckMode(mode) { return formatEnum(mode, SignatureCheckMode, true); } Debug2.formatSignatureCheckMode = formatSignatureCheckMode; function formatTypeFacts(facts) { return formatEnum(facts, TypeFacts, true); } Debug2.formatTypeFacts = formatTypeFacts; let isDebugInfoEnabled = false; let flowNodeProto; function attachFlowNodeDebugInfoWorker(flowNode) { if (!("__debugFlowFlags" in flowNode)) { Object.defineProperties(flowNode, { __tsDebuggerDisplay: { value() { const flowHeader = this.flags & 2 ? "FlowStart" : this.flags & 4 ? "FlowBranchLabel" : this.flags & 8 ? "FlowLoopLabel" : this.flags & 16 ? "FlowAssignment" : this.flags & 32 ? "FlowTrueCondition" : this.flags & 64 ? "FlowFalseCondition" : this.flags & 128 ? "FlowSwitchClause" : this.flags & 256 ? "FlowArrayMutation" : this.flags & 512 ? "FlowCall" : this.flags & 1024 ? "FlowReduceLabel" : this.flags & 1 ? "FlowUnreachable" : "UnknownFlow"; const remainingFlags = this.flags & ~(2048 - 1); return `${flowHeader}${remainingFlags ? ` (${formatFlowFlags(remainingFlags)})` : ""}`; } }, __debugFlowFlags: { get() { return formatEnum(this.flags, FlowFlags, true); } }, __debugToString: { value() { return formatControlFlowGraph(this); } } }); } } function attachFlowNodeDebugInfo(flowNode) { if (isDebugInfoEnabled) { if (typeof Object.setPrototypeOf === "function") { if (!flowNodeProto) { flowNodeProto = Object.create(Object.prototype); attachFlowNodeDebugInfoWorker(flowNodeProto); } Object.setPrototypeOf(flowNode, flowNodeProto); } else { attachFlowNodeDebugInfoWorker(flowNode); } } return flowNode; } Debug2.attachFlowNodeDebugInfo = attachFlowNodeDebugInfo; let nodeArrayProto; function attachNodeArrayDebugInfoWorker(array) { if (!("__tsDebuggerDisplay" in array)) { Object.defineProperties(array, { __tsDebuggerDisplay: { value(defaultValue) { defaultValue = String(defaultValue).replace(/(?:,[\s\w]+:[^,]+)+\]$/, "]"); return `NodeArray ${defaultValue}`; } } }); } } function attachNodeArrayDebugInfo(array) { if (isDebugInfoEnabled) { if (typeof Object.setPrototypeOf === "function") { if (!nodeArrayProto) { nodeArrayProto = Object.create(Array.prototype); attachNodeArrayDebugInfoWorker(nodeArrayProto); } Object.setPrototypeOf(array, nodeArrayProto); } else { attachNodeArrayDebugInfoWorker(array); } } } Debug2.attachNodeArrayDebugInfo = attachNodeArrayDebugInfo; function enableDebugInfo() { if (isDebugInfoEnabled) return; const weakTypeTextMap = /* @__PURE__ */ new WeakMap; const weakNodeTextMap = /* @__PURE__ */ new WeakMap; Object.defineProperties(objectAllocator.getSymbolConstructor().prototype, { __tsDebuggerDisplay: { value() { const symbolHeader = this.flags & 33554432 ? "TransientSymbol" : "Symbol"; const remainingSymbolFlags = this.flags & ~33554432; return `${symbolHeader} '${symbolName(this)}'${remainingSymbolFlags ? ` (${formatSymbolFlags(remainingSymbolFlags)})` : ""}`; } }, __debugFlags: { get() { return formatSymbolFlags(this.flags); } } }); Object.defineProperties(objectAllocator.getTypeConstructor().prototype, { __tsDebuggerDisplay: { value() { const typeHeader = this.flags & 402431 ? `IntrinsicType ${this.intrinsicName}${this.debugIntrinsicName ? ` (${this.debugIntrinsicName})` : ""}` : this.flags & 12 ? "NullableType" : this.flags & 3072 ? `LiteralType ${JSON.stringify(this.value)}` : this.flags & 4096 ? `LiteralType ${this.value.negative ? "-" : ""}${this.value.base10Value}n` : this.flags & 16384 ? "UniqueESSymbolType" : this.flags & 65536 ? "EnumType" : this.flags & 134217728 ? "UnionType" : this.flags & 268435456 ? "IntersectionType" : this.flags & 2097152 ? "IndexType" : this.flags & 33554432 ? "IndexedAccessType" : this.flags & 67108864 ? "ConditionalType" : this.flags & 16777216 ? "SubstitutionType" : this.flags & 524288 ? "TypeParameter" : this.flags & 1048576 ? this.objectFlags & 3 ? "InterfaceType" : this.objectFlags & 4 ? "TypeReference" : this.objectFlags & 8 ? "TupleType" : this.objectFlags & 16 ? "AnonymousType" : this.objectFlags & 32 ? "MappedType" : this.objectFlags & 1024 ? "ReverseMappedType" : this.objectFlags & 256 ? "EvolvingArrayType" : "ObjectType" : "Type"; const remainingObjectFlags = this.flags & 1048576 ? this.objectFlags & ~142607679 : 0; return `${typeHeader}${this.symbol ? ` '${symbolName(this.symbol)}'` : ""}${remainingObjectFlags ? ` (${formatObjectFlags(remainingObjectFlags)})` : ""}`; } }, __debugFlags: { get() { return formatTypeFlags(this.flags); } }, __debugObjectFlags: { get() { return this.flags & 1048576 ? formatObjectFlags(this.objectFlags) : ""; } }, __debugTypeToString: { value() { let text = weakTypeTextMap.get(this); if (text === undefined) { text = this.checker.typeToString(this); weakTypeTextMap.set(this, text); } return text; } } }); Object.defineProperties(objectAllocator.getSignatureConstructor().prototype, { __debugFlags: { get() { return formatSignatureFlags(this.flags); } }, __debugSignatureToString: { value() { var _a; return (_a = this.checker) == null ? undefined : _a.signatureToString(this); } } }); const nodeConstructors = [ objectAllocator.getNodeConstructor(), objectAllocator.getIdentifierConstructor(), objectAllocator.getTokenConstructor(), objectAllocator.getSourceFileConstructor() ]; for (const ctor of nodeConstructors) { if (!hasProperty(ctor.prototype, "__debugKind")) { Object.defineProperties(ctor.prototype, { __tsDebuggerDisplay: { value() { const nodeHeader = isGeneratedIdentifier(this) ? "GeneratedIdentifier" : isIdentifier(this) ? `Identifier '${idText(this)}'` : isPrivateIdentifier(this) ? `PrivateIdentifier '${idText(this)}'` : isStringLiteral(this) ? `StringLiteral ${JSON.stringify(this.text.length < 10 ? this.text : this.text.slice(10) + "...")}` : isNumericLiteral(this) ? `NumericLiteral ${this.text}` : isBigIntLiteral(this) ? `BigIntLiteral ${this.text}n` : isTypeParameterDeclaration(this) ? "TypeParameterDeclaration" : isParameter(this) ? "ParameterDeclaration" : isConstructorDeclaration(this) ? "ConstructorDeclaration" : isGetAccessorDeclaration(this) ? "GetAccessorDeclaration" : isSetAccessorDeclaration(this) ? "SetAccessorDeclaration" : isCallSignatureDeclaration(this) ? "CallSignatureDeclaration" : isConstructSignatureDeclaration(this) ? "ConstructSignatureDeclaration" : isIndexSignatureDeclaration(this) ? "IndexSignatureDeclaration" : isTypePredicateNode(this) ? "TypePredicateNode" : isTypeReferenceNode(this) ? "TypeReferenceNode" : isFunctionTypeNode(this) ? "FunctionTypeNode" : isConstructorTypeNode(this) ? "ConstructorTypeNode" : isTypeQueryNode(this) ? "TypeQueryNode" : isTypeLiteralNode(this) ? "TypeLiteralNode" : isArrayTypeNode(this) ? "ArrayTypeNode" : isTupleTypeNode(this) ? "TupleTypeNode" : isOptionalTypeNode(this) ? "OptionalTypeNode" : isRestTypeNode(this) ? "RestTypeNode" : isUnionTypeNode(this) ? "UnionTypeNode" : isIntersectionTypeNode(this) ? "IntersectionTypeNode" : isConditionalTypeNode(this) ? "ConditionalTypeNode" : isInferTypeNode(this) ? "InferTypeNode" : isParenthesizedTypeNode(this) ? "ParenthesizedTypeNode" : isThisTypeNode(this) ? "ThisTypeNode" : isTypeOperatorNode(this) ? "TypeOperatorNode" : isIndexedAccessTypeNode(this) ? "IndexedAccessTypeNode" : isMappedTypeNode(this) ? "MappedTypeNode" : isLiteralTypeNode(this) ? "LiteralTypeNode" : isNamedTupleMember(this) ? "NamedTupleMember" : isImportTypeNode(this) ? "ImportTypeNode" : formatSyntaxKind(this.kind); return `${nodeHeader}${this.flags ? ` (${formatNodeFlags(this.flags)})` : ""}`; } }, __debugKind: { get() { return formatSyntaxKind(this.kind); } }, __debugNodeFlags: { get() { return formatNodeFlags(this.flags); } }, __debugModifierFlags: { get() { return formatModifierFlags(getEffectiveModifierFlagsNoCache(this)); } }, __debugTransformFlags: { get() { return formatTransformFlags(this.transformFlags); } }, __debugIsParseTreeNode: { get() { return isParseTreeNode(this); } }, __debugEmitFlags: { get() { return formatEmitFlags(getEmitFlags(this)); } }, __debugGetText: { value(includeTrivia) { if (nodeIsSynthesized(this)) return ""; let text = weakNodeTextMap.get(this); if (text === undefined) { const parseNode = getParseTreeNode(this); const sourceFile = parseNode && getSourceFileOfNode(parseNode); text = sourceFile ? getSourceTextOfNodeFromSourceFile(sourceFile, parseNode, includeTrivia) : ""; weakNodeTextMap.set(this, text); } return text; } } }); } } isDebugInfoEnabled = true; } Debug2.enableDebugInfo = enableDebugInfo; function formatVariance(varianceFlags) { const variance = varianceFlags & 7; let result = variance === 0 ? "in out" : variance === 3 ? "[bivariant]" : variance === 2 ? "in" : variance === 1 ? "out" : variance === 4 ? "[independent]" : ""; if (varianceFlags & 8) { result += " (unmeasurable)"; } else if (varianceFlags & 16) { result += " (unreliable)"; } return result; } Debug2.formatVariance = formatVariance; class DebugTypeMapper { __debugToString() { var _a; type(this); switch (this.kind) { case 3: return ((_a = this.debugInfo) == null ? undefined : _a.call(this)) || "(function mapper)"; case 0: return `${this.source.__debugTypeToString()} -> ${this.target.__debugTypeToString()}`; case 1: return zipWith(this.sources, this.targets || map(this.sources, () => "any"), (s, t) => `${s.__debugTypeToString()} -> ${typeof t === "string" ? t : t.__debugTypeToString()}`).join(", "); case 2: return zipWith(this.sources, this.targets, (s, t) => `${s.__debugTypeToString()} -> ${t().__debugTypeToString()}`).join(", "); case 5: case 4: return `m1: ${this.mapper1.__debugToString().split(` `).join(` `)} m2: ${this.mapper2.__debugToString().split(` `).join(` `)}`; default: return assertNever(this); } } } Debug2.DebugTypeMapper = DebugTypeMapper; function attachDebugPrototypeIfDebug(mapper) { if (Debug2.isDebugging) { return Object.setPrototypeOf(mapper, DebugTypeMapper.prototype); } return mapper; } Debug2.attachDebugPrototypeIfDebug = attachDebugPrototypeIfDebug; function printControlFlowGraph(flowNode) { return console.log(formatControlFlowGraph(flowNode)); } Debug2.printControlFlowGraph = printControlFlowGraph; function formatControlFlowGraph(flowNode) { let nextDebugFlowId = -1; function getDebugFlowNodeId(f) { if (!f.id) { f.id = nextDebugFlowId; nextDebugFlowId--; } return f.id; } let BoxCharacter; ((BoxCharacter2) => { BoxCharacter2["lr"] = "─"; BoxCharacter2["ud"] = "│"; BoxCharacter2["dr"] = "╭"; BoxCharacter2["dl"] = "╮"; BoxCharacter2["ul"] = "╯"; BoxCharacter2["ur"] = "╰"; BoxCharacter2["udr"] = "├"; BoxCharacter2["udl"] = "┤"; BoxCharacter2["dlr"] = "┬"; BoxCharacter2["ulr"] = "┴"; BoxCharacter2["udlr"] = "╫"; })(BoxCharacter || (BoxCharacter = {})); let Connection; ((Connection2) => { Connection2[Connection2["None"] = 0] = "None"; Connection2[Connection2["Up"] = 1] = "Up"; Connection2[Connection2["Down"] = 2] = "Down"; Connection2[Connection2["Left"] = 4] = "Left"; Connection2[Connection2["Right"] = 8] = "Right"; Connection2[Connection2["UpDown"] = 3] = "UpDown"; Connection2[Connection2["LeftRight"] = 12] = "LeftRight"; Connection2[Connection2["UpLeft"] = 5] = "UpLeft"; Connection2[Connection2["UpRight"] = 9] = "UpRight"; Connection2[Connection2["DownLeft"] = 6] = "DownLeft"; Connection2[Connection2["DownRight"] = 10] = "DownRight"; Connection2[Connection2["UpDownLeft"] = 7] = "UpDownLeft"; Connection2[Connection2["UpDownRight"] = 11] = "UpDownRight"; Connection2[Connection2["UpLeftRight"] = 13] = "UpLeftRight"; Connection2[Connection2["DownLeftRight"] = 14] = "DownLeftRight"; Connection2[Connection2["UpDownLeftRight"] = 15] = "UpDownLeftRight"; Connection2[Connection2["NoChildren"] = 16] = "NoChildren"; })(Connection || (Connection = {})); const hasAntecedentFlags = 16 | 96 | 128 | 256 | 512 | 1024; const hasNodeFlags = 2 | 16 | 512 | 96 | 256; const links = /* @__PURE__ */ Object.create(null); const nodes = []; const edges = []; const root = buildGraphNode(flowNode, /* @__PURE__ */ new Set); for (const node of nodes) { node.text = renderFlowNode(node.flowNode, node.circular); computeLevel(node); } const height = computeHeight(root); const columnWidths = computeColumnWidths(height); computeLanes(root, 0); return renderGraph(); function isFlowSwitchClause(f) { return !!(f.flags & 128); } function hasAntecedents(f) { return !!(f.flags & 12) && !!f.antecedent; } function hasAntecedent(f) { return !!(f.flags & hasAntecedentFlags); } function hasNode(f) { return !!(f.flags & hasNodeFlags); } function getChildren(node) { const children = []; for (const edge of node.edges) { if (edge.source === node) { children.push(edge.target); } } return children; } function getParents(node) { const parents = []; for (const edge of node.edges) { if (edge.target === node) { parents.push(edge.source); } } return parents; } function buildGraphNode(flowNode2, seen) { const id = getDebugFlowNodeId(flowNode2); let graphNode = links[id]; if (graphNode && seen.has(flowNode2)) { graphNode.circular = true; graphNode = { id: -1, flowNode: flowNode2, edges: [], text: "", lane: -1, endLane: -1, level: -1, circular: "circularity" }; nodes.push(graphNode); return graphNode; } seen.add(flowNode2); if (!graphNode) { links[id] = graphNode = { id, flowNode: flowNode2, edges: [], text: "", lane: -1, endLane: -1, level: -1, circular: false }; nodes.push(graphNode); if (hasAntecedents(flowNode2)) { for (const antecedent of flowNode2.antecedent) { buildGraphEdge(graphNode, antecedent, seen); } } else if (hasAntecedent(flowNode2)) { buildGraphEdge(graphNode, flowNode2.antecedent, seen); } } seen.delete(flowNode2); return graphNode; } function buildGraphEdge(source, antecedent, seen) { const target = buildGraphNode(antecedent, seen); const edge = { source, target }; edges.push(edge); source.edges.push(edge); target.edges.push(edge); } function computeLevel(node) { if (node.level !== -1) { return node.level; } let level = 0; for (const parent2 of getParents(node)) { level = Math.max(level, computeLevel(parent2) + 1); } return node.level = level; } function computeHeight(node) { let height2 = 0; for (const child of getChildren(node)) { height2 = Math.max(height2, computeHeight(child)); } return height2 + 1; } function computeColumnWidths(height2) { const columns = fill(Array(height2), 0); for (const node of nodes) { columns[node.level] = Math.max(columns[node.level], node.text.length); } return columns; } function computeLanes(node, lane) { if (node.lane === -1) { node.lane = lane; node.endLane = lane; const children = getChildren(node); for (let i = 0;i < children.length; i++) { if (i > 0) lane++; const child = children[i]; computeLanes(child, lane); if (child.endLane > node.endLane) { lane = child.endLane; } } node.endLane = lane; } } function getHeader2(flags) { if (flags & 2) return "Start"; if (flags & 4) return "Branch"; if (flags & 8) return "Loop"; if (flags & 16) return "Assignment"; if (flags & 32) return "True"; if (flags & 64) return "False"; if (flags & 128) return "SwitchClause"; if (flags & 256) return "ArrayMutation"; if (flags & 512) return "Call"; if (flags & 1024) return "ReduceLabel"; if (flags & 1) return "Unreachable"; throw new Error; } function getNodeText(node) { const sourceFile = getSourceFileOfNode(node); return getSourceTextOfNodeFromSourceFile(sourceFile, node, false); } function renderFlowNode(flowNode2, circular) { let text = getHeader2(flowNode2.flags); if (circular) { text = `${text}#${getDebugFlowNodeId(flowNode2)}`; } if (isFlowSwitchClause(flowNode2)) { const clauses = []; const { switchStatement, clauseStart, clauseEnd } = flowNode2.node; for (let i = clauseStart;i < clauseEnd; i++) { const clause = switchStatement.caseBlock.clauses[i]; if (isDefaultClause(clause)) { clauses.push("default"); } else { clauses.push(getNodeText(clause.expression)); } } text += ` (${clauses.join(", ")})`; } else if (hasNode(flowNode2)) { if (flowNode2.node) { text += ` (${getNodeText(flowNode2.node)})`; } } return circular === "circularity" ? `Circular(${text})` : text; } function renderGraph() { const columnCount = columnWidths.length; const laneCount = maxBy(nodes, 0, (n) => n.lane) + 1; const lanes = fill(Array(laneCount), ""); const grid = columnWidths.map(() => Array(laneCount)); const connectors = columnWidths.map(() => fill(Array(laneCount), 0)); for (const node of nodes) { grid[node.level][node.lane] = node; const children = getChildren(node); for (let i = 0;i < children.length; i++) { const child = children[i]; let connector = 8; if (child.lane === node.lane) connector |= 4; if (i > 0) connector |= 1; if (i < children.length - 1) connector |= 2; connectors[node.level][child.lane] |= connector; } if (children.length === 0) { connectors[node.level][node.lane] |= 16; } const parents = getParents(node); for (let i = 0;i < parents.length; i++) { const parent2 = parents[i]; let connector = 4; if (i > 0) connector |= 1; if (i < parents.length - 1) connector |= 2; connectors[node.level - 1][parent2.lane] |= connector; } } for (let column = 0;column < columnCount; column++) { for (let lane = 0;lane < laneCount; lane++) { const left = column > 0 ? connectors[column - 1][lane] : 0; const above = lane > 0 ? connectors[column][lane - 1] : 0; let connector = connectors[column][lane]; if (!connector) { if (left & 8) connector |= 12; if (above & 2) connector |= 3; connectors[column][lane] = connector; } } } for (let column = 0;column < columnCount; column++) { for (let lane = 0;lane < lanes.length; lane++) { const connector = connectors[column][lane]; const fill2 = connector & 4 ? "─" : " "; const node = grid[column][lane]; if (!node) { if (column < columnCount - 1) { writeLane(lane, repeat(fill2, columnWidths[column] + 1)); } } else { writeLane(lane, node.text); if (column < columnCount - 1) { writeLane(lane, " "); writeLane(lane, repeat(fill2, columnWidths[column] - node.text.length)); } } writeLane(lane, getBoxCharacter(connector)); writeLane(lane, connector & 8 && column < columnCount - 1 && !grid[column + 1][lane] ? "─" : " "); } } return ` ${lanes.join(` `)} `; function writeLane(lane, text) { lanes[lane] += text; } } function getBoxCharacter(connector) { switch (connector) { case 3: return "│"; case 12: return "─"; case 5: return "╯"; case 9: return "╰"; case 6: return "╮"; case 10: return "╭"; case 7: return "┤"; case 11: return "├"; case 13: return "┴"; case 14: return "┬"; case 15: return "╫"; } return " "; } function fill(array, value) { if (array.fill) { array.fill(value); } else { for (let i = 0;i < array.length; i++) { array[i] = value; } } return array; } function repeat(ch, length2) { if (ch.repeat) { return length2 > 0 ? ch.repeat(length2) : ""; } let s = ""; while (s.length < length2) { s += ch; } return s; } } Debug2.formatControlFlowGraph = formatControlFlowGraph; })(Debug || (Debug = {})); var versionRegExp = /^(0|[1-9]\d*)(?:\.(0|[1-9]\d*)(?:\.(0|[1-9]\d*)(?:-([a-z0-9-.]+))?(?:\+([a-z0-9-.]+))?)?)?$/i; var prereleaseRegExp = /^(?:0|[1-9]\d*|[a-z-][a-z0-9-]*)(?:\.(?:0|[1-9]\d*|[a-z-][a-z0-9-]*))*$/i; var prereleasePartRegExp = /^(?:0|[1-9]\d*|[a-z-][a-z0-9-]*)$/i; var buildRegExp = /^[a-z0-9-]+(?:\.[a-z0-9-]+)*$/i; var buildPartRegExp = /^[a-z0-9-]+$/i; var numericIdentifierRegExp = /^(?:0|[1-9]\d*)$/; var _Version = class _Version2 { constructor(major, minor = 0, patch = 0, prerelease = "", build2 = "") { if (typeof major === "string") { const result = Debug.checkDefined(tryParseComponents(major), "Invalid version"); ({ major, minor, patch, prerelease, build: build2 } = result); } Debug.assert(major >= 0, "Invalid argument: major"); Debug.assert(minor >= 0, "Invalid argument: minor"); Debug.assert(patch >= 0, "Invalid argument: patch"); const prereleaseArray = prerelease ? isArray(prerelease) ? prerelease : prerelease.split(".") : emptyArray; const buildArray = build2 ? isArray(build2) ? build2 : build2.split(".") : emptyArray; Debug.assert(every(prereleaseArray, (s) => prereleasePartRegExp.test(s)), "Invalid argument: prerelease"); Debug.assert(every(buildArray, (s) => buildPartRegExp.test(s)), "Invalid argument: build"); this.major = major; this.minor = minor; this.patch = patch; this.prerelease = prereleaseArray; this.build = buildArray; } static tryParse(text) { const result = tryParseComponents(text); if (!result) return; const { major, minor, patch, prerelease, build: build2 } = result; return new _Version2(major, minor, patch, prerelease, build2); } compareTo(other) { if (this === other) return 0; if (other === undefined) return 1; return compareValues(this.major, other.major) || compareValues(this.minor, other.minor) || compareValues(this.patch, other.patch) || comparePrereleaseIdentifiers(this.prerelease, other.prerelease); } increment(field) { switch (field) { case "major": return new _Version2(this.major + 1, 0, 0); case "minor": return new _Version2(this.major, this.minor + 1, 0); case "patch": return new _Version2(this.major, this.minor, this.patch + 1); default: return Debug.assertNever(field); } } with(fields) { const { major = this.major, minor = this.minor, patch = this.patch, prerelease = this.prerelease, build: build2 = this.build } = fields; return new _Version2(major, minor, patch, prerelease, build2); } toString() { let result = `${this.major}.${this.minor}.${this.patch}`; if (some(this.prerelease)) result += `-${this.prerelease.join(".")}`; if (some(this.build)) result += `+${this.build.join(".")}`; return result; } }; _Version.zero = new _Version(0, 0, 0, ["0"]); var Version = _Version; function tryParseComponents(text) { const match = versionRegExp.exec(text); if (!match) return; const [, major, minor = "0", patch = "0", prerelease = "", build2 = ""] = match; if (prerelease && !prereleaseRegExp.test(prerelease)) return; if (build2 && !buildRegExp.test(build2)) return; return { major: parseInt(major, 10), minor: parseInt(minor, 10), patch: parseInt(patch, 10), prerelease, build: build2 }; } function comparePrereleaseIdentifiers(left, right) { if (left === right) return 0; if (left.length === 0) return right.length === 0 ? 0 : 1; if (right.length === 0) return -1; const length2 = Math.min(left.length, right.length); for (let i = 0;i < length2; i++) { const leftIdentifier = left[i]; const rightIdentifier = right[i]; if (leftIdentifier === rightIdentifier) continue; const leftIsNumeric = numericIdentifierRegExp.test(leftIdentifier); const rightIsNumeric = numericIdentifierRegExp.test(rightIdentifier); if (leftIsNumeric || rightIsNumeric) { if (leftIsNumeric !== rightIsNumeric) return leftIsNumeric ? -1 : 1; const result = compareValues(+leftIdentifier, +rightIdentifier); if (result) return result; } else { const result = compareStringsCaseSensitive(leftIdentifier, rightIdentifier); if (result) return result; } } return compareValues(left.length, right.length); } var VersionRange = class _VersionRange { constructor(spec3) { this._alternatives = spec3 ? Debug.checkDefined(parseRange(spec3), "Invalid range spec.") : emptyArray; } static tryParse(text) { const sets = parseRange(text); if (sets) { const range = new _VersionRange(""); range._alternatives = sets; return range; } return; } test(version2) { if (typeof version2 === "string") version2 = new Version(version2); return testDisjunction(version2, this._alternatives); } toString() { return formatDisjunction(this._alternatives); } }; var logicalOrRegExp = /\|\|/; var whitespaceRegExp = /\s+/; var partialRegExp = /^([x*0]|[1-9]\d*)(?:\.([x*0]|[1-9]\d*)(?:\.([x*0]|[1-9]\d*)(?:-([a-z0-9-.]+))?(?:\+([a-z0-9-.]+))?)?)?$/i; var hyphenRegExp = /^\s*([a-z0-9-+.*]+)\s+-\s+([a-z0-9-+.*]+)\s*$/i; var rangeRegExp = /^([~^<>=]|<=|>=)?\s*([a-z0-9-+.*]+)$/i; function parseRange(text) { const alternatives = []; for (let range of text.trim().split(logicalOrRegExp)) { if (!range) continue; const comparators = []; range = range.trim(); const match = hyphenRegExp.exec(range); if (match) { if (!parseHyphen(match[1], match[2], comparators)) return; } else { for (const simple of range.split(whitespaceRegExp)) { const match2 = rangeRegExp.exec(simple.trim()); if (!match2 || !parseComparator(match2[1], match2[2], comparators)) return; } } alternatives.push(comparators); } return alternatives; } function parsePartial(text) { const match = partialRegExp.exec(text); if (!match) return; const [, major, minor = "*", patch = "*", prerelease, build2] = match; const version2 = new Version(isWildcard(major) ? 0 : parseInt(major, 10), isWildcard(major) || isWildcard(minor) ? 0 : parseInt(minor, 10), isWildcard(major) || isWildcard(minor) || isWildcard(patch) ? 0 : parseInt(patch, 10), prerelease, build2); return { version: version2, major, minor, patch }; } function parseHyphen(left, right, comparators) { const leftResult = parsePartial(left); if (!leftResult) return false; const rightResult = parsePartial(right); if (!rightResult) return false; if (!isWildcard(leftResult.major)) { comparators.push(createComparator(">=", leftResult.version)); } if (!isWildcard(rightResult.major)) { comparators.push(isWildcard(rightResult.minor) ? createComparator("<", rightResult.version.increment("major")) : isWildcard(rightResult.patch) ? createComparator("<", rightResult.version.increment("minor")) : createComparator("<=", rightResult.version)); } return true; } function parseComparator(operator, text, comparators) { const result = parsePartial(text); if (!result) return false; const { version: version2, major, minor, patch } = result; if (!isWildcard(major)) { switch (operator) { case "~": comparators.push(createComparator(">=", version2)); comparators.push(createComparator("<", version2.increment(isWildcard(minor) ? "major" : "minor"))); break; case "^": comparators.push(createComparator(">=", version2)); comparators.push(createComparator("<", version2.increment(version2.major > 0 || isWildcard(minor) ? "major" : version2.minor > 0 || isWildcard(patch) ? "minor" : "patch"))); break; case "<": case ">=": comparators.push(isWildcard(minor) || isWildcard(patch) ? createComparator(operator, version2.with({ prerelease: "0" })) : createComparator(operator, version2)); break; case "<=": case ">": comparators.push(isWildcard(minor) ? createComparator(operator === "<=" ? "<" : ">=", version2.increment("major").with({ prerelease: "0" })) : isWildcard(patch) ? createComparator(operator === "<=" ? "<" : ">=", version2.increment("minor").with({ prerelease: "0" })) : createComparator(operator, version2)); break; case "=": case undefined: if (isWildcard(minor) || isWildcard(patch)) { comparators.push(createComparator(">=", version2.with({ prerelease: "0" }))); comparators.push(createComparator("<", version2.increment(isWildcard(minor) ? "major" : "minor").with({ prerelease: "0" }))); } else { comparators.push(createComparator("=", version2)); } break; default: return false; } } else if (operator === "<" || operator === ">") { comparators.push(createComparator("<", Version.zero)); } return true; } function isWildcard(part) { return part === "*" || part === "x" || part === "X"; } function createComparator(operator, operand) { return { operator, operand }; } function testDisjunction(version2, alternatives) { if (alternatives.length === 0) return true; for (const alternative of alternatives) { if (testAlternative(version2, alternative)) return true; } return false; } function testAlternative(version2, comparators) { for (const comparator of comparators) { if (!testComparator(version2, comparator.operator, comparator.operand)) return false; } return true; } function testComparator(version2, operator, operand) { const cmp = version2.compareTo(operand); switch (operator) { case "<": return cmp < 0; case "<=": return cmp <= 0; case ">": return cmp > 0; case ">=": return cmp >= 0; case "=": return cmp === 0; default: return Debug.assertNever(operator); } } function formatDisjunction(alternatives) { return map(alternatives, formatAlternative).join(" || ") || "*"; } function formatAlternative(comparators) { return map(comparators, formatComparator).join(" "); } function formatComparator(comparator) { return `${comparator.operator}${comparator.operand}`; } function tryGetPerformance() { if (isNodeLikeSystem()) { try { const { performance: performance2 } = require("perf_hooks"); if (performance2) { return { shouldWriteNativeEvents: false, performance: performance2 }; } } catch {} } if (typeof performance === "object") { return { shouldWriteNativeEvents: true, performance }; } return; } function tryGetPerformanceHooks() { const p = tryGetPerformance(); if (!p) return; const { shouldWriteNativeEvents, performance: performance2 } = p; const hooks = { shouldWriteNativeEvents, performance: undefined, performanceTime: undefined }; if (typeof performance2.timeOrigin === "number" && typeof performance2.now === "function") { hooks.performanceTime = performance2; } if (hooks.performanceTime && typeof performance2.mark === "function" && typeof performance2.measure === "function" && typeof performance2.clearMarks === "function" && typeof performance2.clearMeasures === "function") { hooks.performance = performance2; } return hooks; } var nativePerformanceHooks = tryGetPerformanceHooks(); var nativePerformanceTime = nativePerformanceHooks == null ? undefined : nativePerformanceHooks.performanceTime; function tryGetNativePerformanceHooks() { return nativePerformanceHooks; } var timestamp = nativePerformanceTime ? () => nativePerformanceTime.now() : Date.now; var ts_performance_exports = {}; __export2(ts_performance_exports, { clearMarks: () => clearMarks, clearMeasures: () => clearMeasures, createTimer: () => createTimer, createTimerIf: () => createTimerIf, disable: () => disable, enable: () => enable, forEachMark: () => forEachMark, forEachMeasure: () => forEachMeasure, getCount: () => getCount, getDuration: () => getDuration, isEnabled: () => isEnabled, mark: () => mark, measure: () => measure, nullTimer: () => nullTimer }); var perfHooks; var performanceImpl; function createTimerIf(condition, measureName, startMarkName, endMarkName) { return condition ? createTimer(measureName, startMarkName, endMarkName) : nullTimer; } function createTimer(measureName, startMarkName, endMarkName) { let enterCount = 0; return { enter, exit }; function enter() { if (++enterCount === 1) { mark(startMarkName); } } function exit() { if (--enterCount === 0) { mark(endMarkName); measure(measureName, startMarkName, endMarkName); } else if (enterCount < 0) { Debug.fail("enter/exit count does not match."); } } } var nullTimer = { enter: noop, exit: noop }; var enabled = false; var timeorigin = timestamp(); var marks = /* @__PURE__ */ new Map; var counts = /* @__PURE__ */ new Map; var durations = /* @__PURE__ */ new Map; function mark(markName) { if (enabled) { const count = counts.get(markName) ?? 0; counts.set(markName, count + 1); marks.set(markName, timestamp()); performanceImpl == null || performanceImpl.mark(markName); if (typeof onProfilerEvent === "function") { onProfilerEvent(markName); } } } function measure(measureName, startMarkName, endMarkName) { if (enabled) { const end = (endMarkName !== undefined ? marks.get(endMarkName) : undefined) ?? timestamp(); const start = (startMarkName !== undefined ? marks.get(startMarkName) : undefined) ?? timeorigin; const previousDuration = durations.get(measureName) || 0; durations.set(measureName, previousDuration + (end - start)); performanceImpl == null || performanceImpl.measure(measureName, startMarkName, endMarkName); } } function getCount(markName) { return counts.get(markName) || 0; } function getDuration(measureName) { return durations.get(measureName) || 0; } function forEachMeasure(cb) { durations.forEach((duration, measureName) => cb(measureName, duration)); } function forEachMark(cb) { marks.forEach((_time, markName) => cb(markName)); } function clearMeasures(name) { if (name !== undefined) durations.delete(name); else durations.clear(); performanceImpl == null || performanceImpl.clearMeasures(name); } function clearMarks(name) { if (name !== undefined) { counts.delete(name); marks.delete(name); } else { counts.clear(); marks.clear(); } performanceImpl == null || performanceImpl.clearMarks(name); } function isEnabled() { return enabled; } function enable(system = sys) { var _a; if (!enabled) { enabled = true; perfHooks || (perfHooks = tryGetNativePerformanceHooks()); if (perfHooks == null ? undefined : perfHooks.performance) { timeorigin = perfHooks.performance.timeOrigin; if (perfHooks.shouldWriteNativeEvents || ((_a = system == null ? undefined : system.cpuProfilingEnabled) == null ? undefined : _a.call(system)) || (system == null ? undefined : system.debugMode)) { performanceImpl = perfHooks.performance; } } } return true; } function disable() { if (enabled) { marks.clear(); counts.clear(); durations.clear(); performanceImpl = undefined; enabled = false; } } var tracing; var tracingEnabled; ((tracingEnabled2) => { let fs; let traceCount = 0; let traceFd = 0; let mode; const typeCatalog = []; let legendPath; const legend = []; function startTracing2(tracingMode, traceDir, configFilePath) { Debug.assert(!tracing, "Tracing already started"); if (fs === undefined) { try { fs = require("fs"); } catch (e) { throw new Error(`tracing requires having fs (original error: ${e.message || e})`); } } mode = tracingMode; typeCatalog.length = 0; if (legendPath === undefined) { legendPath = combinePaths(traceDir, "legend.json"); } if (!fs.existsSync(traceDir)) { fs.mkdirSync(traceDir, { recursive: true }); } const countPart = mode === "build" ? `.${process.pid}-${++traceCount}` : mode === "server" ? `.${process.pid}` : ``; const tracePath = combinePaths(traceDir, `trace${countPart}.json`); const typesPath = combinePaths(traceDir, `types${countPart}.json`); legend.push({ configFilePath, tracePath, typesPath }); traceFd = fs.openSync(tracePath, "w"); tracing = tracingEnabled2; const meta = { cat: "__metadata", ph: "M", ts: 1000 * timestamp(), pid: 1, tid: 1 }; fs.writeSync(traceFd, `[ ` + [{ name: "process_name", args: { name: "tsc" }, ...meta }, { name: "thread_name", args: { name: "Main" }, ...meta }, { name: "TracingStartedInBrowser", ...meta, cat: "disabled-by-default-devtools.timeline" }].map((v) => JSON.stringify(v)).join(`, `)); } tracingEnabled2.startTracing = startTracing2; function stopTracing() { Debug.assert(tracing, "Tracing is not in progress"); Debug.assert(!!typeCatalog.length === (mode !== "server")); fs.writeSync(traceFd, ` ] `); fs.closeSync(traceFd); tracing = undefined; if (typeCatalog.length) { dumpTypes(typeCatalog); } else { legend[legend.length - 1].typesPath = undefined; } } tracingEnabled2.stopTracing = stopTracing; function recordType(type) { if (mode !== "server") { typeCatalog.push(type); } } tracingEnabled2.recordType = recordType; let Phase; ((Phase2) => { Phase2["Parse"] = "parse"; Phase2["Program"] = "program"; Phase2["Bind"] = "bind"; Phase2["Check"] = "check"; Phase2["CheckTypes"] = "checkTypes"; Phase2["Emit"] = "emit"; Phase2["Session"] = "session"; })(Phase = tracingEnabled2.Phase || (tracingEnabled2.Phase = {})); function instant(phase, name, args) { writeEvent("I", phase, name, args, `"s":"g"`); } tracingEnabled2.instant = instant; const eventStack = []; function push(phase, name, args, separateBeginAndEnd = false) { if (separateBeginAndEnd) { writeEvent("B", phase, name, args); } eventStack.push({ phase, name, args, time: 1000 * timestamp(), separateBeginAndEnd }); } tracingEnabled2.push = push; function pop(results) { Debug.assert(eventStack.length > 0); writeStackEvent(eventStack.length - 1, 1000 * timestamp(), results); eventStack.length--; } tracingEnabled2.pop = pop; function popAll() { const endTime = 1000 * timestamp(); for (let i = eventStack.length - 1;i >= 0; i--) { writeStackEvent(i, endTime); } eventStack.length = 0; } tracingEnabled2.popAll = popAll; const sampleInterval = 1000 * 10; function writeStackEvent(index, endTime, results) { const { phase, name, args, time, separateBeginAndEnd } = eventStack[index]; if (separateBeginAndEnd) { Debug.assert(!results, "`results` are not supported for events with `separateBeginAndEnd`"); writeEvent("E", phase, name, args, undefined, endTime); } else if (sampleInterval - time % sampleInterval <= endTime - time) { writeEvent("X", phase, name, { ...args, results }, `"dur":${endTime - time}`, time); } } function writeEvent(eventType, phase, name, args, extras, time = 1000 * timestamp()) { if (mode === "server" && phase === "checkTypes") return; mark("beginTracing"); fs.writeSync(traceFd, `, {"pid":1,"tid":1,"ph":"${eventType}","cat":"${phase}","ts":${time},"name":"${name}"`); if (extras) fs.writeSync(traceFd, `,${extras}`); if (args) fs.writeSync(traceFd, `,"args":${JSON.stringify(args)}`); fs.writeSync(traceFd, `}`); mark("endTracing"); measure("Tracing", "beginTracing", "endTracing"); } function getLocation(node) { const file = getSourceFileOfNode(node); return !file ? undefined : { path: file.path, start: indexFromOne(getLineAndCharacterOfPosition(file, node.pos)), end: indexFromOne(getLineAndCharacterOfPosition(file, node.end)) }; function indexFromOne(lc) { return { line: lc.line + 1, character: lc.character + 1 }; } } function dumpTypes(types) { var _a, _b, _c, _d, _e, _f, _g, _h, _i, _j, _k, _l, _m, _n, _o, _p, _q, _r, _s; mark("beginDumpTypes"); const typesPath = legend[legend.length - 1].typesPath; const typesFd = fs.openSync(typesPath, "w"); const recursionIdentityMap = /* @__PURE__ */ new Map; fs.writeSync(typesFd, "["); const numTypes = types.length; for (let i = 0;i < numTypes; i++) { const type = types[i]; const objectFlags = type.objectFlags; const symbol = type.aliasSymbol ?? type.symbol; let display; if (objectFlags & 16 | type.flags & 15360) { try { display = (_a = type.checker) == null ? undefined : _a.typeToString(type); } catch { display = undefined; } } let indexedAccessProperties = {}; if (type.flags & 33554432) { const indexedAccessType = type; indexedAccessProperties = { indexedAccessObjectType: (_b = indexedAccessType.objectType) == null ? undefined : _b.id, indexedAccessIndexType: (_c = indexedAccessType.indexType) == null ? undefined : _c.id }; } let referenceProperties = {}; if (objectFlags & 4) { const referenceType = type; referenceProperties = { instantiatedType: (_d = referenceType.target) == null ? undefined : _d.id, typeArguments: (_e = referenceType.resolvedTypeArguments) == null ? undefined : _e.map((t) => t.id), referenceLocation: getLocation(referenceType.node) }; } let conditionalProperties = {}; if (type.flags & 67108864) { const conditionalType = type; conditionalProperties = { conditionalCheckType: (_f = conditionalType.checkType) == null ? undefined : _f.id, conditionalExtendsType: (_g = conditionalType.extendsType) == null ? undefined : _g.id, conditionalTrueType: ((_h = conditionalType.resolvedTrueType) == null ? undefined : _h.id) ?? -1, conditionalFalseType: ((_i = conditionalType.resolvedFalseType) == null ? undefined : _i.id) ?? -1 }; } let substitutionProperties = {}; if (type.flags & 16777216) { const substitutionType = type; substitutionProperties = { substitutionBaseType: (_j = substitutionType.baseType) == null ? undefined : _j.id, constraintType: (_k = substitutionType.constraint) == null ? undefined : _k.id }; } let reverseMappedProperties = {}; if (objectFlags & 1024) { const reverseMappedType = type; reverseMappedProperties = { reverseMappedSourceType: (_l = reverseMappedType.source) == null ? undefined : _l.id, reverseMappedMappedType: (_m = reverseMappedType.mappedType) == null ? undefined : _m.id, reverseMappedConstraintType: (_n = reverseMappedType.constraintType) == null ? undefined : _n.id }; } let evolvingArrayProperties = {}; if (objectFlags & 256) { const evolvingArrayType = type; evolvingArrayProperties = { evolvingArrayElementType: evolvingArrayType.elementType.id, evolvingArrayFinalType: (_o = evolvingArrayType.finalArrayType) == null ? undefined : _o.id }; } let recursionToken; const recursionIdentity = type.checker.getRecursionIdentity(type); if (recursionIdentity) { recursionToken = recursionIdentityMap.get(recursionIdentity); if (!recursionToken) { recursionToken = recursionIdentityMap.size; recursionIdentityMap.set(recursionIdentity, recursionToken); } } const descriptor = { id: type.id, intrinsicName: type.intrinsicName, symbolName: (symbol == null ? undefined : symbol.escapedName) && unescapeLeadingUnderscores(symbol.escapedName), recursionId: recursionToken, isTuple: objectFlags & 8 ? true : undefined, unionTypes: type.flags & 134217728 ? (_p = type.types) == null ? undefined : _p.map((t) => t.id) : undefined, intersectionTypes: type.flags & 268435456 ? type.types.map((t) => t.id) : undefined, aliasTypeArguments: (_q = type.aliasTypeArguments) == null ? undefined : _q.map((t) => t.id), keyofType: type.flags & 2097152 ? (_r = type.type) == null ? undefined : _r.id : undefined, ...indexedAccessProperties, ...referenceProperties, ...conditionalProperties, ...substitutionProperties, ...reverseMappedProperties, ...evolvingArrayProperties, destructuringPattern: getLocation(type.pattern), firstDeclaration: getLocation((_s = symbol == null ? undefined : symbol.declarations) == null ? undefined : _s[0]), flags: Debug.formatTypeFlags(type.flags).split("|"), display }; fs.writeSync(typesFd, JSON.stringify(descriptor)); if (i < numTypes - 1) { fs.writeSync(typesFd, `, `); } } fs.writeSync(typesFd, `] `); fs.closeSync(typesFd); mark("endDumpTypes"); measure("Dump types", "beginDumpTypes", "endDumpTypes"); } function dumpLegend() { if (!legendPath) { return; } fs.writeFileSync(legendPath, JSON.stringify(legend)); } tracingEnabled2.dumpLegend = dumpLegend; })(tracingEnabled || (tracingEnabled = {})); var startTracing = tracingEnabled.startTracing; var dumpTracingLegend = tracingEnabled.dumpLegend; var SyntaxKind = /* @__PURE__ */ ((SyntaxKind5) => { SyntaxKind5[SyntaxKind5["Unknown"] = 0] = "Unknown"; SyntaxKind5[SyntaxKind5["EndOfFileToken"] = 1] = "EndOfFileToken"; SyntaxKind5[SyntaxKind5["SingleLineCommentTrivia"] = 2] = "SingleLineCommentTrivia"; SyntaxKind5[SyntaxKind5["MultiLineCommentTrivia"] = 3] = "MultiLineCommentTrivia"; SyntaxKind5[SyntaxKind5["NewLineTrivia"] = 4] = "NewLineTrivia"; SyntaxKind5[SyntaxKind5["WhitespaceTrivia"] = 5] = "WhitespaceTrivia"; SyntaxKind5[SyntaxKind5["ShebangTrivia"] = 6] = "ShebangTrivia"; SyntaxKind5[SyntaxKind5["ConflictMarkerTrivia"] = 7] = "ConflictMarkerTrivia"; SyntaxKind5[SyntaxKind5["NonTextFileMarkerTrivia"] = 8] = "NonTextFileMarkerTrivia"; SyntaxKind5[SyntaxKind5["NumericLiteral"] = 9] = "NumericLiteral"; SyntaxKind5[SyntaxKind5["BigIntLiteral"] = 10] = "BigIntLiteral"; SyntaxKind5[SyntaxKind5["StringLiteral"] = 11] = "StringLiteral"; SyntaxKind5[SyntaxKind5["JsxText"] = 12] = "JsxText"; SyntaxKind5[SyntaxKind5["JsxTextAllWhiteSpaces"] = 13] = "JsxTextAllWhiteSpaces"; SyntaxKind5[SyntaxKind5["RegularExpressionLiteral"] = 14] = "RegularExpressionLiteral"; SyntaxKind5[SyntaxKind5["NoSubstitutionTemplateLiteral"] = 15] = "NoSubstitutionTemplateLiteral"; SyntaxKind5[SyntaxKind5["TemplateHead"] = 16] = "TemplateHead"; SyntaxKind5[SyntaxKind5["TemplateMiddle"] = 17] = "TemplateMiddle"; SyntaxKind5[SyntaxKind5["TemplateTail"] = 18] = "TemplateTail"; SyntaxKind5[SyntaxKind5["OpenBraceToken"] = 19] = "OpenBraceToken"; SyntaxKind5[SyntaxKind5["CloseBraceToken"] = 20] = "CloseBraceToken"; SyntaxKind5[SyntaxKind5["OpenParenToken"] = 21] = "OpenParenToken"; SyntaxKind5[SyntaxKind5["CloseParenToken"] = 22] = "CloseParenToken"; SyntaxKind5[SyntaxKind5["OpenBracketToken"] = 23] = "OpenBracketToken"; SyntaxKind5[SyntaxKind5["CloseBracketToken"] = 24] = "CloseBracketToken"; SyntaxKind5[SyntaxKind5["DotToken"] = 25] = "DotToken"; SyntaxKind5[SyntaxKind5["DotDotDotToken"] = 26] = "DotDotDotToken"; SyntaxKind5[SyntaxKind5["SemicolonToken"] = 27] = "SemicolonToken"; SyntaxKind5[SyntaxKind5["CommaToken"] = 28] = "CommaToken"; SyntaxKind5[SyntaxKind5["QuestionDotToken"] = 29] = "QuestionDotToken"; SyntaxKind5[SyntaxKind5["LessThanToken"] = 30] = "LessThanToken"; SyntaxKind5[SyntaxKind5["LessThanSlashToken"] = 31] = "LessThanSlashToken"; SyntaxKind5[SyntaxKind5["GreaterThanToken"] = 32] = "GreaterThanToken"; SyntaxKind5[SyntaxKind5["LessThanEqualsToken"] = 33] = "LessThanEqualsToken"; SyntaxKind5[SyntaxKind5["GreaterThanEqualsToken"] = 34] = "GreaterThanEqualsToken"; SyntaxKind5[SyntaxKind5["EqualsEqualsToken"] = 35] = "EqualsEqualsToken"; SyntaxKind5[SyntaxKind5["ExclamationEqualsToken"] = 36] = "ExclamationEqualsToken"; SyntaxKind5[SyntaxKind5["EqualsEqualsEqualsToken"] = 37] = "EqualsEqualsEqualsToken"; SyntaxKind5[SyntaxKind5["ExclamationEqualsEqualsToken"] = 38] = "ExclamationEqualsEqualsToken"; SyntaxKind5[SyntaxKind5["EqualsGreaterThanToken"] = 39] = "EqualsGreaterThanToken"; SyntaxKind5[SyntaxKind5["PlusToken"] = 40] = "PlusToken"; SyntaxKind5[SyntaxKind5["MinusToken"] = 41] = "MinusToken"; SyntaxKind5[SyntaxKind5["AsteriskToken"] = 42] = "AsteriskToken"; SyntaxKind5[SyntaxKind5["AsteriskAsteriskToken"] = 43] = "AsteriskAsteriskToken"; SyntaxKind5[SyntaxKind5["SlashToken"] = 44] = "SlashToken"; SyntaxKind5[SyntaxKind5["PercentToken"] = 45] = "PercentToken"; SyntaxKind5[SyntaxKind5["PlusPlusToken"] = 46] = "PlusPlusToken"; SyntaxKind5[SyntaxKind5["MinusMinusToken"] = 47] = "MinusMinusToken"; SyntaxKind5[SyntaxKind5["LessThanLessThanToken"] = 48] = "LessThanLessThanToken"; SyntaxKind5[SyntaxKind5["GreaterThanGreaterThanToken"] = 49] = "GreaterThanGreaterThanToken"; SyntaxKind5[SyntaxKind5["GreaterThanGreaterThanGreaterThanToken"] = 50] = "GreaterThanGreaterThanGreaterThanToken"; SyntaxKind5[SyntaxKind5["AmpersandToken"] = 51] = "AmpersandToken"; SyntaxKind5[SyntaxKind5["BarToken"] = 52] = "BarToken"; SyntaxKind5[SyntaxKind5["CaretToken"] = 53] = "CaretToken"; SyntaxKind5[SyntaxKind5["ExclamationToken"] = 54] = "ExclamationToken"; SyntaxKind5[SyntaxKind5["TildeToken"] = 55] = "TildeToken"; SyntaxKind5[SyntaxKind5["AmpersandAmpersandToken"] = 56] = "AmpersandAmpersandToken"; SyntaxKind5[SyntaxKind5["BarBarToken"] = 57] = "BarBarToken"; SyntaxKind5[SyntaxKind5["QuestionToken"] = 58] = "QuestionToken"; SyntaxKind5[SyntaxKind5["ColonToken"] = 59] = "ColonToken"; SyntaxKind5[SyntaxKind5["AtToken"] = 60] = "AtToken"; SyntaxKind5[SyntaxKind5["QuestionQuestionToken"] = 61] = "QuestionQuestionToken"; SyntaxKind5[SyntaxKind5["BacktickToken"] = 62] = "BacktickToken"; SyntaxKind5[SyntaxKind5["HashToken"] = 63] = "HashToken"; SyntaxKind5[SyntaxKind5["EqualsToken"] = 64] = "EqualsToken"; SyntaxKind5[SyntaxKind5["PlusEqualsToken"] = 65] = "PlusEqualsToken"; SyntaxKind5[SyntaxKind5["MinusEqualsToken"] = 66] = "MinusEqualsToken"; SyntaxKind5[SyntaxKind5["AsteriskEqualsToken"] = 67] = "AsteriskEqualsToken"; SyntaxKind5[SyntaxKind5["AsteriskAsteriskEqualsToken"] = 68] = "AsteriskAsteriskEqualsToken"; SyntaxKind5[SyntaxKind5["SlashEqualsToken"] = 69] = "SlashEqualsToken"; SyntaxKind5[SyntaxKind5["PercentEqualsToken"] = 70] = "PercentEqualsToken"; SyntaxKind5[SyntaxKind5["LessThanLessThanEqualsToken"] = 71] = "LessThanLessThanEqualsToken"; SyntaxKind5[SyntaxKind5["GreaterThanGreaterThanEqualsToken"] = 72] = "GreaterThanGreaterThanEqualsToken"; SyntaxKind5[SyntaxKind5["GreaterThanGreaterThanGreaterThanEqualsToken"] = 73] = "GreaterThanGreaterThanGreaterThanEqualsToken"; SyntaxKind5[SyntaxKind5["AmpersandEqualsToken"] = 74] = "AmpersandEqualsToken"; SyntaxKind5[SyntaxKind5["BarEqualsToken"] = 75] = "BarEqualsToken"; SyntaxKind5[SyntaxKind5["BarBarEqualsToken"] = 76] = "BarBarEqualsToken"; SyntaxKind5[SyntaxKind5["AmpersandAmpersandEqualsToken"] = 77] = "AmpersandAmpersandEqualsToken"; SyntaxKind5[SyntaxKind5["QuestionQuestionEqualsToken"] = 78] = "QuestionQuestionEqualsToken"; SyntaxKind5[SyntaxKind5["CaretEqualsToken"] = 79] = "CaretEqualsToken"; SyntaxKind5[SyntaxKind5["Identifier"] = 80] = "Identifier"; SyntaxKind5[SyntaxKind5["PrivateIdentifier"] = 81] = "PrivateIdentifier"; SyntaxKind5[SyntaxKind5["JSDocCommentTextToken"] = 82] = "JSDocCommentTextToken"; SyntaxKind5[SyntaxKind5["BreakKeyword"] = 83] = "BreakKeyword"; SyntaxKind5[SyntaxKind5["CaseKeyword"] = 84] = "CaseKeyword"; SyntaxKind5[SyntaxKind5["CatchKeyword"] = 85] = "CatchKeyword"; SyntaxKind5[SyntaxKind5["ClassKeyword"] = 86] = "ClassKeyword"; SyntaxKind5[SyntaxKind5["ConstKeyword"] = 87] = "ConstKeyword"; SyntaxKind5[SyntaxKind5["ContinueKeyword"] = 88] = "ContinueKeyword"; SyntaxKind5[SyntaxKind5["DebuggerKeyword"] = 89] = "DebuggerKeyword"; SyntaxKind5[SyntaxKind5["DefaultKeyword"] = 90] = "DefaultKeyword"; SyntaxKind5[SyntaxKind5["DeleteKeyword"] = 91] = "DeleteKeyword"; SyntaxKind5[SyntaxKind5["DoKeyword"] = 92] = "DoKeyword"; SyntaxKind5[SyntaxKind5["ElseKeyword"] = 93] = "ElseKeyword"; SyntaxKind5[SyntaxKind5["EnumKeyword"] = 94] = "EnumKeyword"; SyntaxKind5[SyntaxKind5["ExportKeyword"] = 95] = "ExportKeyword"; SyntaxKind5[SyntaxKind5["ExtendsKeyword"] = 96] = "ExtendsKeyword"; SyntaxKind5[SyntaxKind5["FalseKeyword"] = 97] = "FalseKeyword"; SyntaxKind5[SyntaxKind5["FinallyKeyword"] = 98] = "FinallyKeyword"; SyntaxKind5[SyntaxKind5["ForKeyword"] = 99] = "ForKeyword"; SyntaxKind5[SyntaxKind5["FunctionKeyword"] = 100] = "FunctionKeyword"; SyntaxKind5[SyntaxKind5["IfKeyword"] = 101] = "IfKeyword"; SyntaxKind5[SyntaxKind5["ImportKeyword"] = 102] = "ImportKeyword"; SyntaxKind5[SyntaxKind5["InKeyword"] = 103] = "InKeyword"; SyntaxKind5[SyntaxKind5["InstanceOfKeyword"] = 104] = "InstanceOfKeyword"; SyntaxKind5[SyntaxKind5["NewKeyword"] = 105] = "NewKeyword"; SyntaxKind5[SyntaxKind5["NullKeyword"] = 106] = "NullKeyword"; SyntaxKind5[SyntaxKind5["ReturnKeyword"] = 107] = "ReturnKeyword"; SyntaxKind5[SyntaxKind5["SuperKeyword"] = 108] = "SuperKeyword"; SyntaxKind5[SyntaxKind5["SwitchKeyword"] = 109] = "SwitchKeyword"; SyntaxKind5[SyntaxKind5["ThisKeyword"] = 110] = "ThisKeyword"; SyntaxKind5[SyntaxKind5["ThrowKeyword"] = 111] = "ThrowKeyword"; SyntaxKind5[SyntaxKind5["TrueKeyword"] = 112] = "TrueKeyword"; SyntaxKind5[SyntaxKind5["TryKeyword"] = 113] = "TryKeyword"; SyntaxKind5[SyntaxKind5["TypeOfKeyword"] = 114] = "TypeOfKeyword"; SyntaxKind5[SyntaxKind5["VarKeyword"] = 115] = "VarKeyword"; SyntaxKind5[SyntaxKind5["VoidKeyword"] = 116] = "VoidKeyword"; SyntaxKind5[SyntaxKind5["WhileKeyword"] = 117] = "WhileKeyword"; SyntaxKind5[SyntaxKind5["WithKeyword"] = 118] = "WithKeyword"; SyntaxKind5[SyntaxKind5["ImplementsKeyword"] = 119] = "ImplementsKeyword"; SyntaxKind5[SyntaxKind5["InterfaceKeyword"] = 120] = "InterfaceKeyword"; SyntaxKind5[SyntaxKind5["LetKeyword"] = 121] = "LetKeyword"; SyntaxKind5[SyntaxKind5["PackageKeyword"] = 122] = "PackageKeyword"; SyntaxKind5[SyntaxKind5["PrivateKeyword"] = 123] = "PrivateKeyword"; SyntaxKind5[SyntaxKind5["ProtectedKeyword"] = 124] = "ProtectedKeyword"; SyntaxKind5[SyntaxKind5["PublicKeyword"] = 125] = "PublicKeyword"; SyntaxKind5[SyntaxKind5["StaticKeyword"] = 126] = "StaticKeyword"; SyntaxKind5[SyntaxKind5["YieldKeyword"] = 127] = "YieldKeyword"; SyntaxKind5[SyntaxKind5["AbstractKeyword"] = 128] = "AbstractKeyword"; SyntaxKind5[SyntaxKind5["AccessorKeyword"] = 129] = "AccessorKeyword"; SyntaxKind5[SyntaxKind5["AsKeyword"] = 130] = "AsKeyword"; SyntaxKind5[SyntaxKind5["AssertsKeyword"] = 131] = "AssertsKeyword"; SyntaxKind5[SyntaxKind5["AssertKeyword"] = 132] = "AssertKeyword"; SyntaxKind5[SyntaxKind5["AnyKeyword"] = 133] = "AnyKeyword"; SyntaxKind5[SyntaxKind5["AsyncKeyword"] = 134] = "AsyncKeyword"; SyntaxKind5[SyntaxKind5["AwaitKeyword"] = 135] = "AwaitKeyword"; SyntaxKind5[SyntaxKind5["BooleanKeyword"] = 136] = "BooleanKeyword"; SyntaxKind5[SyntaxKind5["ConstructorKeyword"] = 137] = "ConstructorKeyword"; SyntaxKind5[SyntaxKind5["DeclareKeyword"] = 138] = "DeclareKeyword"; SyntaxKind5[SyntaxKind5["GetKeyword"] = 139] = "GetKeyword"; SyntaxKind5[SyntaxKind5["InferKeyword"] = 140] = "InferKeyword"; SyntaxKind5[SyntaxKind5["IntrinsicKeyword"] = 141] = "IntrinsicKeyword"; SyntaxKind5[SyntaxKind5["IsKeyword"] = 142] = "IsKeyword"; SyntaxKind5[SyntaxKind5["KeyOfKeyword"] = 143] = "KeyOfKeyword"; SyntaxKind5[SyntaxKind5["ModuleKeyword"] = 144] = "ModuleKeyword"; SyntaxKind5[SyntaxKind5["NamespaceKeyword"] = 145] = "NamespaceKeyword"; SyntaxKind5[SyntaxKind5["NeverKeyword"] = 146] = "NeverKeyword"; SyntaxKind5[SyntaxKind5["OutKeyword"] = 147] = "OutKeyword"; SyntaxKind5[SyntaxKind5["ReadonlyKeyword"] = 148] = "ReadonlyKeyword"; SyntaxKind5[SyntaxKind5["RequireKeyword"] = 149] = "RequireKeyword"; SyntaxKind5[SyntaxKind5["NumberKeyword"] = 150] = "NumberKeyword"; SyntaxKind5[SyntaxKind5["ObjectKeyword"] = 151] = "ObjectKeyword"; SyntaxKind5[SyntaxKind5["SatisfiesKeyword"] = 152] = "SatisfiesKeyword"; SyntaxKind5[SyntaxKind5["SetKeyword"] = 153] = "SetKeyword"; SyntaxKind5[SyntaxKind5["StringKeyword"] = 154] = "StringKeyword"; SyntaxKind5[SyntaxKind5["SymbolKeyword"] = 155] = "SymbolKeyword"; SyntaxKind5[SyntaxKind5["TypeKeyword"] = 156] = "TypeKeyword"; SyntaxKind5[SyntaxKind5["UndefinedKeyword"] = 157] = "UndefinedKeyword"; SyntaxKind5[SyntaxKind5["UniqueKeyword"] = 158] = "UniqueKeyword"; SyntaxKind5[SyntaxKind5["UnknownKeyword"] = 159] = "UnknownKeyword"; SyntaxKind5[SyntaxKind5["UsingKeyword"] = 160] = "UsingKeyword"; SyntaxKind5[SyntaxKind5["FromKeyword"] = 161] = "FromKeyword"; SyntaxKind5[SyntaxKind5["GlobalKeyword"] = 162] = "GlobalKeyword"; SyntaxKind5[SyntaxKind5["BigIntKeyword"] = 163] = "BigIntKeyword"; SyntaxKind5[SyntaxKind5["OverrideKeyword"] = 164] = "OverrideKeyword"; SyntaxKind5[SyntaxKind5["OfKeyword"] = 165] = "OfKeyword"; SyntaxKind5[SyntaxKind5["DeferKeyword"] = 166] = "DeferKeyword"; SyntaxKind5[SyntaxKind5["QualifiedName"] = 167] = "QualifiedName"; SyntaxKind5[SyntaxKind5["ComputedPropertyName"] = 168] = "ComputedPropertyName"; SyntaxKind5[SyntaxKind5["TypeParameter"] = 169] = "TypeParameter"; SyntaxKind5[SyntaxKind5["Parameter"] = 170] = "Parameter"; SyntaxKind5[SyntaxKind5["Decorator"] = 171] = "Decorator"; SyntaxKind5[SyntaxKind5["PropertySignature"] = 172] = "PropertySignature"; SyntaxKind5[SyntaxKind5["PropertyDeclaration"] = 173] = "PropertyDeclaration"; SyntaxKind5[SyntaxKind5["MethodSignature"] = 174] = "MethodSignature"; SyntaxKind5[SyntaxKind5["MethodDeclaration"] = 175] = "MethodDeclaration"; SyntaxKind5[SyntaxKind5["ClassStaticBlockDeclaration"] = 176] = "ClassStaticBlockDeclaration"; SyntaxKind5[SyntaxKind5["Constructor"] = 177] = "Constructor"; SyntaxKind5[SyntaxKind5["GetAccessor"] = 178] = "GetAccessor"; SyntaxKind5[SyntaxKind5["SetAccessor"] = 179] = "SetAccessor"; SyntaxKind5[SyntaxKind5["CallSignature"] = 180] = "CallSignature"; SyntaxKind5[SyntaxKind5["ConstructSignature"] = 181] = "ConstructSignature"; SyntaxKind5[SyntaxKind5["IndexSignature"] = 182] = "IndexSignature"; SyntaxKind5[SyntaxKind5["TypePredicate"] = 183] = "TypePredicate"; SyntaxKind5[SyntaxKind5["TypeReference"] = 184] = "TypeReference"; SyntaxKind5[SyntaxKind5["FunctionType"] = 185] = "FunctionType"; SyntaxKind5[SyntaxKind5["ConstructorType"] = 186] = "ConstructorType"; SyntaxKind5[SyntaxKind5["TypeQuery"] = 187] = "TypeQuery"; SyntaxKind5[SyntaxKind5["TypeLiteral"] = 188] = "TypeLiteral"; SyntaxKind5[SyntaxKind5["ArrayType"] = 189] = "ArrayType"; SyntaxKind5[SyntaxKind5["TupleType"] = 190] = "TupleType"; SyntaxKind5[SyntaxKind5["OptionalType"] = 191] = "OptionalType"; SyntaxKind5[SyntaxKind5["RestType"] = 192] = "RestType"; SyntaxKind5[SyntaxKind5["UnionType"] = 193] = "UnionType"; SyntaxKind5[SyntaxKind5["IntersectionType"] = 194] = "IntersectionType"; SyntaxKind5[SyntaxKind5["ConditionalType"] = 195] = "ConditionalType"; SyntaxKind5[SyntaxKind5["InferType"] = 196] = "InferType"; SyntaxKind5[SyntaxKind5["ParenthesizedType"] = 197] = "ParenthesizedType"; SyntaxKind5[SyntaxKind5["ThisType"] = 198] = "ThisType"; SyntaxKind5[SyntaxKind5["TypeOperator"] = 199] = "TypeOperator"; SyntaxKind5[SyntaxKind5["IndexedAccessType"] = 200] = "IndexedAccessType"; SyntaxKind5[SyntaxKind5["MappedType"] = 201] = "MappedType"; SyntaxKind5[SyntaxKind5["LiteralType"] = 202] = "LiteralType"; SyntaxKind5[SyntaxKind5["NamedTupleMember"] = 203] = "NamedTupleMember"; SyntaxKind5[SyntaxKind5["TemplateLiteralType"] = 204] = "TemplateLiteralType"; SyntaxKind5[SyntaxKind5["TemplateLiteralTypeSpan"] = 205] = "TemplateLiteralTypeSpan"; SyntaxKind5[SyntaxKind5["ImportType"] = 206] = "ImportType"; SyntaxKind5[SyntaxKind5["ObjectBindingPattern"] = 207] = "ObjectBindingPattern"; SyntaxKind5[SyntaxKind5["ArrayBindingPattern"] = 208] = "ArrayBindingPattern"; SyntaxKind5[SyntaxKind5["BindingElement"] = 209] = "BindingElement"; SyntaxKind5[SyntaxKind5["ArrayLiteralExpression"] = 210] = "ArrayLiteralExpression"; SyntaxKind5[SyntaxKind5["ObjectLiteralExpression"] = 211] = "ObjectLiteralExpression"; SyntaxKind5[SyntaxKind5["PropertyAccessExpression"] = 212] = "PropertyAccessExpression"; SyntaxKind5[SyntaxKind5["ElementAccessExpression"] = 213] = "ElementAccessExpression"; SyntaxKind5[SyntaxKind5["CallExpression"] = 214] = "CallExpression"; SyntaxKind5[SyntaxKind5["NewExpression"] = 215] = "NewExpression"; SyntaxKind5[SyntaxKind5["TaggedTemplateExpression"] = 216] = "TaggedTemplateExpression"; SyntaxKind5[SyntaxKind5["TypeAssertionExpression"] = 217] = "TypeAssertionExpression"; SyntaxKind5[SyntaxKind5["ParenthesizedExpression"] = 218] = "ParenthesizedExpression"; SyntaxKind5[SyntaxKind5["FunctionExpression"] = 219] = "FunctionExpression"; SyntaxKind5[SyntaxKind5["ArrowFunction"] = 220] = "ArrowFunction"; SyntaxKind5[SyntaxKind5["DeleteExpression"] = 221] = "DeleteExpression"; SyntaxKind5[SyntaxKind5["TypeOfExpression"] = 222] = "TypeOfExpression"; SyntaxKind5[SyntaxKind5["VoidExpression"] = 223] = "VoidExpression"; SyntaxKind5[SyntaxKind5["AwaitExpression"] = 224] = "AwaitExpression"; SyntaxKind5[SyntaxKind5["PrefixUnaryExpression"] = 225] = "PrefixUnaryExpression"; SyntaxKind5[SyntaxKind5["PostfixUnaryExpression"] = 226] = "PostfixUnaryExpression"; SyntaxKind5[SyntaxKind5["BinaryExpression"] = 227] = "BinaryExpression"; SyntaxKind5[SyntaxKind5["ConditionalExpression"] = 228] = "ConditionalExpression"; SyntaxKind5[SyntaxKind5["TemplateExpression"] = 229] = "TemplateExpression"; SyntaxKind5[SyntaxKind5["YieldExpression"] = 230] = "YieldExpression"; SyntaxKind5[SyntaxKind5["SpreadElement"] = 231] = "SpreadElement"; SyntaxKind5[SyntaxKind5["ClassExpression"] = 232] = "ClassExpression"; SyntaxKind5[SyntaxKind5["OmittedExpression"] = 233] = "OmittedExpression"; SyntaxKind5[SyntaxKind5["ExpressionWithTypeArguments"] = 234] = "ExpressionWithTypeArguments"; SyntaxKind5[SyntaxKind5["AsExpression"] = 235] = "AsExpression"; SyntaxKind5[SyntaxKind5["NonNullExpression"] = 236] = "NonNullExpression"; SyntaxKind5[SyntaxKind5["MetaProperty"] = 237] = "MetaProperty"; SyntaxKind5[SyntaxKind5["SyntheticExpression"] = 238] = "SyntheticExpression"; SyntaxKind5[SyntaxKind5["SatisfiesExpression"] = 239] = "SatisfiesExpression"; SyntaxKind5[SyntaxKind5["TemplateSpan"] = 240] = "TemplateSpan"; SyntaxKind5[SyntaxKind5["SemicolonClassElement"] = 241] = "SemicolonClassElement"; SyntaxKind5[SyntaxKind5["Block"] = 242] = "Block"; SyntaxKind5[SyntaxKind5["EmptyStatement"] = 243] = "EmptyStatement"; SyntaxKind5[SyntaxKind5["VariableStatement"] = 244] = "VariableStatement"; SyntaxKind5[SyntaxKind5["ExpressionStatement"] = 245] = "ExpressionStatement"; SyntaxKind5[SyntaxKind5["IfStatement"] = 246] = "IfStatement"; SyntaxKind5[SyntaxKind5["DoStatement"] = 247] = "DoStatement"; SyntaxKind5[SyntaxKind5["WhileStatement"] = 248] = "WhileStatement"; SyntaxKind5[SyntaxKind5["ForStatement"] = 249] = "ForStatement"; SyntaxKind5[SyntaxKind5["ForInStatement"] = 250] = "ForInStatement"; SyntaxKind5[SyntaxKind5["ForOfStatement"] = 251] = "ForOfStatement"; SyntaxKind5[SyntaxKind5["ContinueStatement"] = 252] = "ContinueStatement"; SyntaxKind5[SyntaxKind5["BreakStatement"] = 253] = "BreakStatement"; SyntaxKind5[SyntaxKind5["ReturnStatement"] = 254] = "ReturnStatement"; SyntaxKind5[SyntaxKind5["WithStatement"] = 255] = "WithStatement"; SyntaxKind5[SyntaxKind5["SwitchStatement"] = 256] = "SwitchStatement"; SyntaxKind5[SyntaxKind5["LabeledStatement"] = 257] = "LabeledStatement"; SyntaxKind5[SyntaxKind5["ThrowStatement"] = 258] = "ThrowStatement"; SyntaxKind5[SyntaxKind5["TryStatement"] = 259] = "TryStatement"; SyntaxKind5[SyntaxKind5["DebuggerStatement"] = 260] = "DebuggerStatement"; SyntaxKind5[SyntaxKind5["VariableDeclaration"] = 261] = "VariableDeclaration"; SyntaxKind5[SyntaxKind5["VariableDeclarationList"] = 262] = "VariableDeclarationList"; SyntaxKind5[SyntaxKind5["FunctionDeclaration"] = 263] = "FunctionDeclaration"; SyntaxKind5[SyntaxKind5["ClassDeclaration"] = 264] = "ClassDeclaration"; SyntaxKind5[SyntaxKind5["InterfaceDeclaration"] = 265] = "InterfaceDeclaration"; SyntaxKind5[SyntaxKind5["TypeAliasDeclaration"] = 266] = "TypeAliasDeclaration"; SyntaxKind5[SyntaxKind5["EnumDeclaration"] = 267] = "EnumDeclaration"; SyntaxKind5[SyntaxKind5["ModuleDeclaration"] = 268] = "ModuleDeclaration"; SyntaxKind5[SyntaxKind5["ModuleBlock"] = 269] = "ModuleBlock"; SyntaxKind5[SyntaxKind5["CaseBlock"] = 270] = "CaseBlock"; SyntaxKind5[SyntaxKind5["NamespaceExportDeclaration"] = 271] = "NamespaceExportDeclaration"; SyntaxKind5[SyntaxKind5["ImportEqualsDeclaration"] = 272] = "ImportEqualsDeclaration"; SyntaxKind5[SyntaxKind5["ImportDeclaration"] = 273] = "ImportDeclaration"; SyntaxKind5[SyntaxKind5["ImportClause"] = 274] = "ImportClause"; SyntaxKind5[SyntaxKind5["NamespaceImport"] = 275] = "NamespaceImport"; SyntaxKind5[SyntaxKind5["NamedImports"] = 276] = "NamedImports"; SyntaxKind5[SyntaxKind5["ImportSpecifier"] = 277] = "ImportSpecifier"; SyntaxKind5[SyntaxKind5["ExportAssignment"] = 278] = "ExportAssignment"; SyntaxKind5[SyntaxKind5["ExportDeclaration"] = 279] = "ExportDeclaration"; SyntaxKind5[SyntaxKind5["NamedExports"] = 280] = "NamedExports"; SyntaxKind5[SyntaxKind5["NamespaceExport"] = 281] = "NamespaceExport"; SyntaxKind5[SyntaxKind5["ExportSpecifier"] = 282] = "ExportSpecifier"; SyntaxKind5[SyntaxKind5["MissingDeclaration"] = 283] = "MissingDeclaration"; SyntaxKind5[SyntaxKind5["ExternalModuleReference"] = 284] = "ExternalModuleReference"; SyntaxKind5[SyntaxKind5["JsxElement"] = 285] = "JsxElement"; SyntaxKind5[SyntaxKind5["JsxSelfClosingElement"] = 286] = "JsxSelfClosingElement"; SyntaxKind5[SyntaxKind5["JsxOpeningElement"] = 287] = "JsxOpeningElement"; SyntaxKind5[SyntaxKind5["JsxClosingElement"] = 288] = "JsxClosingElement"; SyntaxKind5[SyntaxKind5["JsxFragment"] = 289] = "JsxFragment"; SyntaxKind5[SyntaxKind5["JsxOpeningFragment"] = 290] = "JsxOpeningFragment"; SyntaxKind5[SyntaxKind5["JsxClosingFragment"] = 291] = "JsxClosingFragment"; SyntaxKind5[SyntaxKind5["JsxAttribute"] = 292] = "JsxAttribute"; SyntaxKind5[SyntaxKind5["JsxAttributes"] = 293] = "JsxAttributes"; SyntaxKind5[SyntaxKind5["JsxSpreadAttribute"] = 294] = "JsxSpreadAttribute"; SyntaxKind5[SyntaxKind5["JsxExpression"] = 295] = "JsxExpression"; SyntaxKind5[SyntaxKind5["JsxNamespacedName"] = 296] = "JsxNamespacedName"; SyntaxKind5[SyntaxKind5["CaseClause"] = 297] = "CaseClause"; SyntaxKind5[SyntaxKind5["DefaultClause"] = 298] = "DefaultClause"; SyntaxKind5[SyntaxKind5["HeritageClause"] = 299] = "HeritageClause"; SyntaxKind5[SyntaxKind5["CatchClause"] = 300] = "CatchClause"; SyntaxKind5[SyntaxKind5["ImportAttributes"] = 301] = "ImportAttributes"; SyntaxKind5[SyntaxKind5["ImportAttribute"] = 302] = "ImportAttribute"; SyntaxKind5[SyntaxKind5["AssertClause"] = 301] = "AssertClause"; SyntaxKind5[SyntaxKind5["AssertEntry"] = 302] = "AssertEntry"; SyntaxKind5[SyntaxKind5["ImportTypeAssertionContainer"] = 303] = "ImportTypeAssertionContainer"; SyntaxKind5[SyntaxKind5["PropertyAssignment"] = 304] = "PropertyAssignment"; SyntaxKind5[SyntaxKind5["ShorthandPropertyAssignment"] = 305] = "ShorthandPropertyAssignment"; SyntaxKind5[SyntaxKind5["SpreadAssignment"] = 306] = "SpreadAssignment"; SyntaxKind5[SyntaxKind5["EnumMember"] = 307] = "EnumMember"; SyntaxKind5[SyntaxKind5["SourceFile"] = 308] = "SourceFile"; SyntaxKind5[SyntaxKind5["Bundle"] = 309] = "Bundle"; SyntaxKind5[SyntaxKind5["JSDocTypeExpression"] = 310] = "JSDocTypeExpression"; SyntaxKind5[SyntaxKind5["JSDocNameReference"] = 311] = "JSDocNameReference"; SyntaxKind5[SyntaxKind5["JSDocMemberName"] = 312] = "JSDocMemberName"; SyntaxKind5[SyntaxKind5["JSDocAllType"] = 313] = "JSDocAllType"; SyntaxKind5[SyntaxKind5["JSDocUnknownType"] = 314] = "JSDocUnknownType"; SyntaxKind5[SyntaxKind5["JSDocNullableType"] = 315] = "JSDocNullableType"; SyntaxKind5[SyntaxKind5["JSDocNonNullableType"] = 316] = "JSDocNonNullableType"; SyntaxKind5[SyntaxKind5["JSDocOptionalType"] = 317] = "JSDocOptionalType"; SyntaxKind5[SyntaxKind5["JSDocFunctionType"] = 318] = "JSDocFunctionType"; SyntaxKind5[SyntaxKind5["JSDocVariadicType"] = 319] = "JSDocVariadicType"; SyntaxKind5[SyntaxKind5["JSDocNamepathType"] = 320] = "JSDocNamepathType"; SyntaxKind5[SyntaxKind5["JSDoc"] = 321] = "JSDoc"; SyntaxKind5[SyntaxKind5["JSDocComment"] = 321] = "JSDocComment"; SyntaxKind5[SyntaxKind5["JSDocText"] = 322] = "JSDocText"; SyntaxKind5[SyntaxKind5["JSDocTypeLiteral"] = 323] = "JSDocTypeLiteral"; SyntaxKind5[SyntaxKind5["JSDocSignature"] = 324] = "JSDocSignature"; SyntaxKind5[SyntaxKind5["JSDocLink"] = 325] = "JSDocLink"; SyntaxKind5[SyntaxKind5["JSDocLinkCode"] = 326] = "JSDocLinkCode"; SyntaxKind5[SyntaxKind5["JSDocLinkPlain"] = 327] = "JSDocLinkPlain"; SyntaxKind5[SyntaxKind5["JSDocTag"] = 328] = "JSDocTag"; SyntaxKind5[SyntaxKind5["JSDocAugmentsTag"] = 329] = "JSDocAugmentsTag"; SyntaxKind5[SyntaxKind5["JSDocImplementsTag"] = 330] = "JSDocImplementsTag"; SyntaxKind5[SyntaxKind5["JSDocAuthorTag"] = 331] = "JSDocAuthorTag"; SyntaxKind5[SyntaxKind5["JSDocDeprecatedTag"] = 332] = "JSDocDeprecatedTag"; SyntaxKind5[SyntaxKind5["JSDocClassTag"] = 333] = "JSDocClassTag"; SyntaxKind5[SyntaxKind5["JSDocPublicTag"] = 334] = "JSDocPublicTag"; SyntaxKind5[SyntaxKind5["JSDocPrivateTag"] = 335] = "JSDocPrivateTag"; SyntaxKind5[SyntaxKind5["JSDocProtectedTag"] = 336] = "JSDocProtectedTag"; SyntaxKind5[SyntaxKind5["JSDocReadonlyTag"] = 337] = "JSDocReadonlyTag"; SyntaxKind5[SyntaxKind5["JSDocOverrideTag"] = 338] = "JSDocOverrideTag"; SyntaxKind5[SyntaxKind5["JSDocCallbackTag"] = 339] = "JSDocCallbackTag"; SyntaxKind5[SyntaxKind5["JSDocOverloadTag"] = 340] = "JSDocOverloadTag"; SyntaxKind5[SyntaxKind5["JSDocEnumTag"] = 341] = "JSDocEnumTag"; SyntaxKind5[SyntaxKind5["JSDocParameterTag"] = 342] = "JSDocParameterTag"; SyntaxKind5[SyntaxKind5["JSDocReturnTag"] = 343] = "JSDocReturnTag"; SyntaxKind5[SyntaxKind5["JSDocThisTag"] = 344] = "JSDocThisTag"; SyntaxKind5[SyntaxKind5["JSDocTypeTag"] = 345] = "JSDocTypeTag"; SyntaxKind5[SyntaxKind5["JSDocTemplateTag"] = 346] = "JSDocTemplateTag"; SyntaxKind5[SyntaxKind5["JSDocTypedefTag"] = 347] = "JSDocTypedefTag"; SyntaxKind5[SyntaxKind5["JSDocSeeTag"] = 348] = "JSDocSeeTag"; SyntaxKind5[SyntaxKind5["JSDocPropertyTag"] = 349] = "JSDocPropertyTag"; SyntaxKind5[SyntaxKind5["JSDocThrowsTag"] = 350] = "JSDocThrowsTag"; SyntaxKind5[SyntaxKind5["JSDocSatisfiesTag"] = 351] = "JSDocSatisfiesTag"; SyntaxKind5[SyntaxKind5["JSDocImportTag"] = 352] = "JSDocImportTag"; SyntaxKind5[SyntaxKind5["SyntaxList"] = 353] = "SyntaxList"; SyntaxKind5[SyntaxKind5["NotEmittedStatement"] = 354] = "NotEmittedStatement"; SyntaxKind5[SyntaxKind5["NotEmittedTypeElement"] = 355] = "NotEmittedTypeElement"; SyntaxKind5[SyntaxKind5["PartiallyEmittedExpression"] = 356] = "PartiallyEmittedExpression"; SyntaxKind5[SyntaxKind5["CommaListExpression"] = 357] = "CommaListExpression"; SyntaxKind5[SyntaxKind5["SyntheticReferenceExpression"] = 358] = "SyntheticReferenceExpression"; SyntaxKind5[SyntaxKind5["Count"] = 359] = "Count"; SyntaxKind5[SyntaxKind5["FirstAssignment"] = 64] = "FirstAssignment"; SyntaxKind5[SyntaxKind5["LastAssignment"] = 79] = "LastAssignment"; SyntaxKind5[SyntaxKind5["FirstCompoundAssignment"] = 65] = "FirstCompoundAssignment"; SyntaxKind5[SyntaxKind5["LastCompoundAssignment"] = 79] = "LastCompoundAssignment"; SyntaxKind5[SyntaxKind5["FirstReservedWord"] = 83] = "FirstReservedWord"; SyntaxKind5[SyntaxKind5["LastReservedWord"] = 118] = "LastReservedWord"; SyntaxKind5[SyntaxKind5["FirstKeyword"] = 83] = "FirstKeyword"; SyntaxKind5[SyntaxKind5["LastKeyword"] = 166] = "LastKeyword"; SyntaxKind5[SyntaxKind5["FirstFutureReservedWord"] = 119] = "FirstFutureReservedWord"; SyntaxKind5[SyntaxKind5["LastFutureReservedWord"] = 127] = "LastFutureReservedWord"; SyntaxKind5[SyntaxKind5["FirstTypeNode"] = 183] = "FirstTypeNode"; SyntaxKind5[SyntaxKind5["LastTypeNode"] = 206] = "LastTypeNode"; SyntaxKind5[SyntaxKind5["FirstPunctuation"] = 19] = "FirstPunctuation"; SyntaxKind5[SyntaxKind5["LastPunctuation"] = 79] = "LastPunctuation"; SyntaxKind5[SyntaxKind5["FirstToken"] = 0] = "FirstToken"; SyntaxKind5[SyntaxKind5["LastToken"] = 166] = "LastToken"; SyntaxKind5[SyntaxKind5["FirstTriviaToken"] = 2] = "FirstTriviaToken"; SyntaxKind5[SyntaxKind5["LastTriviaToken"] = 7] = "LastTriviaToken"; SyntaxKind5[SyntaxKind5["FirstLiteralToken"] = 9] = "FirstLiteralToken"; SyntaxKind5[SyntaxKind5["LastLiteralToken"] = 15] = "LastLiteralToken"; SyntaxKind5[SyntaxKind5["FirstTemplateToken"] = 15] = "FirstTemplateToken"; SyntaxKind5[SyntaxKind5["LastTemplateToken"] = 18] = "LastTemplateToken"; SyntaxKind5[SyntaxKind5["FirstBinaryOperator"] = 30] = "FirstBinaryOperator"; SyntaxKind5[SyntaxKind5["LastBinaryOperator"] = 79] = "LastBinaryOperator"; SyntaxKind5[SyntaxKind5["FirstStatement"] = 244] = "FirstStatement"; SyntaxKind5[SyntaxKind5["LastStatement"] = 260] = "LastStatement"; SyntaxKind5[SyntaxKind5["FirstNode"] = 167] = "FirstNode"; SyntaxKind5[SyntaxKind5["FirstJSDocNode"] = 310] = "FirstJSDocNode"; SyntaxKind5[SyntaxKind5["LastJSDocNode"] = 352] = "LastJSDocNode"; SyntaxKind5[SyntaxKind5["FirstJSDocTagNode"] = 328] = "FirstJSDocTagNode"; SyntaxKind5[SyntaxKind5["LastJSDocTagNode"] = 352] = "LastJSDocTagNode"; SyntaxKind5[SyntaxKind5["FirstContextualKeyword"] = 128] = "FirstContextualKeyword"; SyntaxKind5[SyntaxKind5["LastContextualKeyword"] = 166] = "LastContextualKeyword"; return SyntaxKind5; })(SyntaxKind || {}); var NodeFlags = /* @__PURE__ */ ((NodeFlags3) => { NodeFlags3[NodeFlags3["None"] = 0] = "None"; NodeFlags3[NodeFlags3["Let"] = 1] = "Let"; NodeFlags3[NodeFlags3["Const"] = 2] = "Const"; NodeFlags3[NodeFlags3["Using"] = 4] = "Using"; NodeFlags3[NodeFlags3["AwaitUsing"] = 6] = "AwaitUsing"; NodeFlags3[NodeFlags3["NestedNamespace"] = 8] = "NestedNamespace"; NodeFlags3[NodeFlags3["Synthesized"] = 16] = "Synthesized"; NodeFlags3[NodeFlags3["Namespace"] = 32] = "Namespace"; NodeFlags3[NodeFlags3["OptionalChain"] = 64] = "OptionalChain"; NodeFlags3[NodeFlags3["ExportContext"] = 128] = "ExportContext"; NodeFlags3[NodeFlags3["ContainsThis"] = 256] = "ContainsThis"; NodeFlags3[NodeFlags3["HasImplicitReturn"] = 512] = "HasImplicitReturn"; NodeFlags3[NodeFlags3["HasExplicitReturn"] = 1024] = "HasExplicitReturn"; NodeFlags3[NodeFlags3["GlobalAugmentation"] = 2048] = "GlobalAugmentation"; NodeFlags3[NodeFlags3["HasAsyncFunctions"] = 4096] = "HasAsyncFunctions"; NodeFlags3[NodeFlags3["DisallowInContext"] = 8192] = "DisallowInContext"; NodeFlags3[NodeFlags3["YieldContext"] = 16384] = "YieldContext"; NodeFlags3[NodeFlags3["DecoratorContext"] = 32768] = "DecoratorContext"; NodeFlags3[NodeFlags3["AwaitContext"] = 65536] = "AwaitContext"; NodeFlags3[NodeFlags3["DisallowConditionalTypesContext"] = 131072] = "DisallowConditionalTypesContext"; NodeFlags3[NodeFlags3["ThisNodeHasError"] = 262144] = "ThisNodeHasError"; NodeFlags3[NodeFlags3["JavaScriptFile"] = 524288] = "JavaScriptFile"; NodeFlags3[NodeFlags3["ThisNodeOrAnySubNodesHasError"] = 1048576] = "ThisNodeOrAnySubNodesHasError"; NodeFlags3[NodeFlags3["HasAggregatedChildData"] = 2097152] = "HasAggregatedChildData"; NodeFlags3[NodeFlags3["PossiblyContainsDynamicImport"] = 4194304] = "PossiblyContainsDynamicImport"; NodeFlags3[NodeFlags3["PossiblyContainsImportMeta"] = 8388608] = "PossiblyContainsImportMeta"; NodeFlags3[NodeFlags3["JSDoc"] = 16777216] = "JSDoc"; NodeFlags3[NodeFlags3["Ambient"] = 33554432] = "Ambient"; NodeFlags3[NodeFlags3["InWithStatement"] = 67108864] = "InWithStatement"; NodeFlags3[NodeFlags3["JsonFile"] = 134217728] = "JsonFile"; NodeFlags3[NodeFlags3["TypeCached"] = 268435456] = "TypeCached"; NodeFlags3[NodeFlags3["Deprecated"] = 536870912] = "Deprecated"; NodeFlags3[NodeFlags3["Unreachable"] = 1073741824] = "Unreachable"; NodeFlags3[NodeFlags3["BlockScoped"] = 7] = "BlockScoped"; NodeFlags3[NodeFlags3["Constant"] = 6] = "Constant"; NodeFlags3[NodeFlags3["ReachabilityCheckFlags"] = 1536] = "ReachabilityCheckFlags"; NodeFlags3[NodeFlags3["ReachabilityAndEmitFlags"] = 5632] = "ReachabilityAndEmitFlags"; NodeFlags3[NodeFlags3["ContextFlags"] = 101441536] = "ContextFlags"; NodeFlags3[NodeFlags3["TypeExcludesFlags"] = 81920] = "TypeExcludesFlags"; NodeFlags3[NodeFlags3["PermanentlySetIncrementalFlags"] = 12582912] = "PermanentlySetIncrementalFlags"; NodeFlags3[NodeFlags3["IdentifierHasExtendedUnicodeEscape"] = 256] = "IdentifierHasExtendedUnicodeEscape"; NodeFlags3[NodeFlags3["IdentifierIsInJSDocNamespace"] = 4096] = "IdentifierIsInJSDocNamespace"; return NodeFlags3; })(NodeFlags || {}); var ModifierFlags = /* @__PURE__ */ ((ModifierFlags3) => { ModifierFlags3[ModifierFlags3["None"] = 0] = "None"; ModifierFlags3[ModifierFlags3["Public"] = 1] = "Public"; ModifierFlags3[ModifierFlags3["Private"] = 2] = "Private"; ModifierFlags3[ModifierFlags3["Protected"] = 4] = "Protected"; ModifierFlags3[ModifierFlags3["Readonly"] = 8] = "Readonly"; ModifierFlags3[ModifierFlags3["Override"] = 16] = "Override"; ModifierFlags3[ModifierFlags3["Export"] = 32] = "Export"; ModifierFlags3[ModifierFlags3["Abstract"] = 64] = "Abstract"; ModifierFlags3[ModifierFlags3["Ambient"] = 128] = "Ambient"; ModifierFlags3[ModifierFlags3["Static"] = 256] = "Static"; ModifierFlags3[ModifierFlags3["Accessor"] = 512] = "Accessor"; ModifierFlags3[ModifierFlags3["Async"] = 1024] = "Async"; ModifierFlags3[ModifierFlags3["Default"] = 2048] = "Default"; ModifierFlags3[ModifierFlags3["Const"] = 4096] = "Const"; ModifierFlags3[ModifierFlags3["In"] = 8192] = "In"; ModifierFlags3[ModifierFlags3["Out"] = 16384] = "Out"; ModifierFlags3[ModifierFlags3["Decorator"] = 32768] = "Decorator"; ModifierFlags3[ModifierFlags3["Deprecated"] = 65536] = "Deprecated"; ModifierFlags3[ModifierFlags3["JSDocPublic"] = 8388608] = "JSDocPublic"; ModifierFlags3[ModifierFlags3["JSDocPrivate"] = 16777216] = "JSDocPrivate"; ModifierFlags3[ModifierFlags3["JSDocProtected"] = 33554432] = "JSDocProtected"; ModifierFlags3[ModifierFlags3["JSDocReadonly"] = 67108864] = "JSDocReadonly"; ModifierFlags3[ModifierFlags3["JSDocOverride"] = 134217728] = "JSDocOverride"; ModifierFlags3[ModifierFlags3["SyntacticOrJSDocModifiers"] = 31] = "SyntacticOrJSDocModifiers"; ModifierFlags3[ModifierFlags3["SyntacticOnlyModifiers"] = 65504] = "SyntacticOnlyModifiers"; ModifierFlags3[ModifierFlags3["SyntacticModifiers"] = 65535] = "SyntacticModifiers"; ModifierFlags3[ModifierFlags3["JSDocCacheOnlyModifiers"] = 260046848] = "JSDocCacheOnlyModifiers"; ModifierFlags3[ModifierFlags3["JSDocOnlyModifiers"] = 65536] = "JSDocOnlyModifiers"; ModifierFlags3[ModifierFlags3["NonCacheOnlyModifiers"] = 131071] = "NonCacheOnlyModifiers"; ModifierFlags3[ModifierFlags3["HasComputedJSDocModifiers"] = 268435456] = "HasComputedJSDocModifiers"; ModifierFlags3[ModifierFlags3["HasComputedFlags"] = 536870912] = "HasComputedFlags"; ModifierFlags3[ModifierFlags3["AccessibilityModifier"] = 7] = "AccessibilityModifier"; ModifierFlags3[ModifierFlags3["ParameterPropertyModifier"] = 31] = "ParameterPropertyModifier"; ModifierFlags3[ModifierFlags3["NonPublicAccessibilityModifier"] = 6] = "NonPublicAccessibilityModifier"; ModifierFlags3[ModifierFlags3["TypeScriptModifier"] = 28895] = "TypeScriptModifier"; ModifierFlags3[ModifierFlags3["ExportDefault"] = 2080] = "ExportDefault"; ModifierFlags3[ModifierFlags3["All"] = 131071] = "All"; ModifierFlags3[ModifierFlags3["Modifier"] = 98303] = "Modifier"; return ModifierFlags3; })(ModifierFlags || {}); var JsxFlags = /* @__PURE__ */ ((JsxFlags2) => { JsxFlags2[JsxFlags2["None"] = 0] = "None"; JsxFlags2[JsxFlags2["IntrinsicNamedElement"] = 1] = "IntrinsicNamedElement"; JsxFlags2[JsxFlags2["IntrinsicIndexedElement"] = 2] = "IntrinsicIndexedElement"; JsxFlags2[JsxFlags2["IntrinsicElement"] = 3] = "IntrinsicElement"; return JsxFlags2; })(JsxFlags || {}); var RelationComparisonResult = /* @__PURE__ */ ((RelationComparisonResult3) => { RelationComparisonResult3[RelationComparisonResult3["None"] = 0] = "None"; RelationComparisonResult3[RelationComparisonResult3["Succeeded"] = 1] = "Succeeded"; RelationComparisonResult3[RelationComparisonResult3["Failed"] = 2] = "Failed"; RelationComparisonResult3[RelationComparisonResult3["ReportsUnmeasurable"] = 8] = "ReportsUnmeasurable"; RelationComparisonResult3[RelationComparisonResult3["ReportsUnreliable"] = 16] = "ReportsUnreliable"; RelationComparisonResult3[RelationComparisonResult3["ReportsMask"] = 24] = "ReportsMask"; RelationComparisonResult3[RelationComparisonResult3["ComplexityOverflow"] = 32] = "ComplexityOverflow"; RelationComparisonResult3[RelationComparisonResult3["StackDepthOverflow"] = 64] = "StackDepthOverflow"; RelationComparisonResult3[RelationComparisonResult3["Overflow"] = 96] = "Overflow"; return RelationComparisonResult3; })(RelationComparisonResult || {}); var PredicateSemantics = /* @__PURE__ */ ((PredicateSemantics2) => { PredicateSemantics2[PredicateSemantics2["None"] = 0] = "None"; PredicateSemantics2[PredicateSemantics2["Always"] = 1] = "Always"; PredicateSemantics2[PredicateSemantics2["Never"] = 2] = "Never"; PredicateSemantics2[PredicateSemantics2["Sometimes"] = 3] = "Sometimes"; return PredicateSemantics2; })(PredicateSemantics || {}); var GeneratedIdentifierFlags = /* @__PURE__ */ ((GeneratedIdentifierFlags2) => { GeneratedIdentifierFlags2[GeneratedIdentifierFlags2["None"] = 0] = "None"; GeneratedIdentifierFlags2[GeneratedIdentifierFlags2["Auto"] = 1] = "Auto"; GeneratedIdentifierFlags2[GeneratedIdentifierFlags2["Loop"] = 2] = "Loop"; GeneratedIdentifierFlags2[GeneratedIdentifierFlags2["Unique"] = 3] = "Unique"; GeneratedIdentifierFlags2[GeneratedIdentifierFlags2["Node"] = 4] = "Node"; GeneratedIdentifierFlags2[GeneratedIdentifierFlags2["KindMask"] = 7] = "KindMask"; GeneratedIdentifierFlags2[GeneratedIdentifierFlags2["ReservedInNestedScopes"] = 8] = "ReservedInNestedScopes"; GeneratedIdentifierFlags2[GeneratedIdentifierFlags2["Optimistic"] = 16] = "Optimistic"; GeneratedIdentifierFlags2[GeneratedIdentifierFlags2["FileLevel"] = 32] = "FileLevel"; GeneratedIdentifierFlags2[GeneratedIdentifierFlags2["AllowNameSubstitution"] = 64] = "AllowNameSubstitution"; return GeneratedIdentifierFlags2; })(GeneratedIdentifierFlags || {}); var RegularExpressionFlags = /* @__PURE__ */ ((RegularExpressionFlags2) => { RegularExpressionFlags2[RegularExpressionFlags2["None"] = 0] = "None"; RegularExpressionFlags2[RegularExpressionFlags2["HasIndices"] = 1] = "HasIndices"; RegularExpressionFlags2[RegularExpressionFlags2["Global"] = 2] = "Global"; RegularExpressionFlags2[RegularExpressionFlags2["IgnoreCase"] = 4] = "IgnoreCase"; RegularExpressionFlags2[RegularExpressionFlags2["Multiline"] = 8] = "Multiline"; RegularExpressionFlags2[RegularExpressionFlags2["DotAll"] = 16] = "DotAll"; RegularExpressionFlags2[RegularExpressionFlags2["Unicode"] = 32] = "Unicode"; RegularExpressionFlags2[RegularExpressionFlags2["UnicodeSets"] = 64] = "UnicodeSets"; RegularExpressionFlags2[RegularExpressionFlags2["Sticky"] = 128] = "Sticky"; RegularExpressionFlags2[RegularExpressionFlags2["AnyUnicodeMode"] = 96] = "AnyUnicodeMode"; RegularExpressionFlags2[RegularExpressionFlags2["Modifiers"] = 28] = "Modifiers"; return RegularExpressionFlags2; })(RegularExpressionFlags || {}); var TokenFlags = /* @__PURE__ */ ((TokenFlags2) => { TokenFlags2[TokenFlags2["None"] = 0] = "None"; TokenFlags2[TokenFlags2["PrecedingLineBreak"] = 1] = "PrecedingLineBreak"; TokenFlags2[TokenFlags2["PrecedingJSDocComment"] = 2] = "PrecedingJSDocComment"; TokenFlags2[TokenFlags2["Unterminated"] = 4] = "Unterminated"; TokenFlags2[TokenFlags2["ExtendedUnicodeEscape"] = 8] = "ExtendedUnicodeEscape"; TokenFlags2[TokenFlags2["Scientific"] = 16] = "Scientific"; TokenFlags2[TokenFlags2["Octal"] = 32] = "Octal"; TokenFlags2[TokenFlags2["HexSpecifier"] = 64] = "HexSpecifier"; TokenFlags2[TokenFlags2["BinarySpecifier"] = 128] = "BinarySpecifier"; TokenFlags2[TokenFlags2["OctalSpecifier"] = 256] = "OctalSpecifier"; TokenFlags2[TokenFlags2["ContainsSeparator"] = 512] = "ContainsSeparator"; TokenFlags2[TokenFlags2["UnicodeEscape"] = 1024] = "UnicodeEscape"; TokenFlags2[TokenFlags2["ContainsInvalidEscape"] = 2048] = "ContainsInvalidEscape"; TokenFlags2[TokenFlags2["HexEscape"] = 4096] = "HexEscape"; TokenFlags2[TokenFlags2["ContainsLeadingZero"] = 8192] = "ContainsLeadingZero"; TokenFlags2[TokenFlags2["ContainsInvalidSeparator"] = 16384] = "ContainsInvalidSeparator"; TokenFlags2[TokenFlags2["PrecedingJSDocLeadingAsterisks"] = 32768] = "PrecedingJSDocLeadingAsterisks"; TokenFlags2[TokenFlags2["BinaryOrOctalSpecifier"] = 384] = "BinaryOrOctalSpecifier"; TokenFlags2[TokenFlags2["WithSpecifier"] = 448] = "WithSpecifier"; TokenFlags2[TokenFlags2["StringLiteralFlags"] = 7176] = "StringLiteralFlags"; TokenFlags2[TokenFlags2["NumericLiteralFlags"] = 25584] = "NumericLiteralFlags"; TokenFlags2[TokenFlags2["TemplateLiteralLikeFlags"] = 7176] = "TemplateLiteralLikeFlags"; TokenFlags2[TokenFlags2["IsInvalid"] = 26656] = "IsInvalid"; return TokenFlags2; })(TokenFlags || {}); var FlowFlags = /* @__PURE__ */ ((FlowFlags2) => { FlowFlags2[FlowFlags2["Unreachable"] = 1] = "Unreachable"; FlowFlags2[FlowFlags2["Start"] = 2] = "Start"; FlowFlags2[FlowFlags2["BranchLabel"] = 4] = "BranchLabel"; FlowFlags2[FlowFlags2["LoopLabel"] = 8] = "LoopLabel"; FlowFlags2[FlowFlags2["Assignment"] = 16] = "Assignment"; FlowFlags2[FlowFlags2["TrueCondition"] = 32] = "TrueCondition"; FlowFlags2[FlowFlags2["FalseCondition"] = 64] = "FalseCondition"; FlowFlags2[FlowFlags2["SwitchClause"] = 128] = "SwitchClause"; FlowFlags2[FlowFlags2["ArrayMutation"] = 256] = "ArrayMutation"; FlowFlags2[FlowFlags2["Call"] = 512] = "Call"; FlowFlags2[FlowFlags2["ReduceLabel"] = 1024] = "ReduceLabel"; FlowFlags2[FlowFlags2["Referenced"] = 2048] = "Referenced"; FlowFlags2[FlowFlags2["Shared"] = 4096] = "Shared"; FlowFlags2[FlowFlags2["Label"] = 12] = "Label"; FlowFlags2[FlowFlags2["Condition"] = 96] = "Condition"; return FlowFlags2; })(FlowFlags || {}); var CommentDirectiveType = /* @__PURE__ */ ((CommentDirectiveType2) => { CommentDirectiveType2[CommentDirectiveType2["ExpectError"] = 0] = "ExpectError"; CommentDirectiveType2[CommentDirectiveType2["Ignore"] = 1] = "Ignore"; return CommentDirectiveType2; })(CommentDirectiveType || {}); var OperationCanceledException = class { }; var FileIncludeKind = /* @__PURE__ */ ((FileIncludeKind2) => { FileIncludeKind2[FileIncludeKind2["RootFile"] = 0] = "RootFile"; FileIncludeKind2[FileIncludeKind2["SourceFromProjectReference"] = 1] = "SourceFromProjectReference"; FileIncludeKind2[FileIncludeKind2["OutputFromProjectReference"] = 2] = "OutputFromProjectReference"; FileIncludeKind2[FileIncludeKind2["Import"] = 3] = "Import"; FileIncludeKind2[FileIncludeKind2["ReferenceFile"] = 4] = "ReferenceFile"; FileIncludeKind2[FileIncludeKind2["TypeReferenceDirective"] = 5] = "TypeReferenceDirective"; FileIncludeKind2[FileIncludeKind2["LibFile"] = 6] = "LibFile"; FileIncludeKind2[FileIncludeKind2["LibReferenceDirective"] = 7] = "LibReferenceDirective"; FileIncludeKind2[FileIncludeKind2["AutomaticTypeDirectiveFile"] = 8] = "AutomaticTypeDirectiveFile"; return FileIncludeKind2; })(FileIncludeKind || {}); var FilePreprocessingDiagnosticsKind = /* @__PURE__ */ ((FilePreprocessingDiagnosticsKind2) => { FilePreprocessingDiagnosticsKind2[FilePreprocessingDiagnosticsKind2["FilePreprocessingLibReferenceDiagnostic"] = 0] = "FilePreprocessingLibReferenceDiagnostic"; FilePreprocessingDiagnosticsKind2[FilePreprocessingDiagnosticsKind2["FilePreprocessingFileExplainingDiagnostic"] = 1] = "FilePreprocessingFileExplainingDiagnostic"; FilePreprocessingDiagnosticsKind2[FilePreprocessingDiagnosticsKind2["ResolutionDiagnostics"] = 2] = "ResolutionDiagnostics"; return FilePreprocessingDiagnosticsKind2; })(FilePreprocessingDiagnosticsKind || {}); var EmitOnly = /* @__PURE__ */ ((EmitOnly4) => { EmitOnly4[EmitOnly4["Js"] = 0] = "Js"; EmitOnly4[EmitOnly4["Dts"] = 1] = "Dts"; EmitOnly4[EmitOnly4["BuilderSignature"] = 2] = "BuilderSignature"; return EmitOnly4; })(EmitOnly || {}); var StructureIsReused = /* @__PURE__ */ ((StructureIsReused2) => { StructureIsReused2[StructureIsReused2["Not"] = 0] = "Not"; StructureIsReused2[StructureIsReused2["SafeModules"] = 1] = "SafeModules"; StructureIsReused2[StructureIsReused2["Completely"] = 2] = "Completely"; return StructureIsReused2; })(StructureIsReused || {}); var ExitStatus = /* @__PURE__ */ ((ExitStatus2) => { ExitStatus2[ExitStatus2["Success"] = 0] = "Success"; ExitStatus2[ExitStatus2["DiagnosticsPresent_OutputsSkipped"] = 1] = "DiagnosticsPresent_OutputsSkipped"; ExitStatus2[ExitStatus2["DiagnosticsPresent_OutputsGenerated"] = 2] = "DiagnosticsPresent_OutputsGenerated"; ExitStatus2[ExitStatus2["InvalidProject_OutputsSkipped"] = 3] = "InvalidProject_OutputsSkipped"; ExitStatus2[ExitStatus2["ProjectReferenceCycle_OutputsSkipped"] = 4] = "ProjectReferenceCycle_OutputsSkipped"; return ExitStatus2; })(ExitStatus || {}); var MemberOverrideStatus = /* @__PURE__ */ ((MemberOverrideStatus2) => { MemberOverrideStatus2[MemberOverrideStatus2["Ok"] = 0] = "Ok"; MemberOverrideStatus2[MemberOverrideStatus2["NeedsOverride"] = 1] = "NeedsOverride"; MemberOverrideStatus2[MemberOverrideStatus2["HasInvalidOverride"] = 2] = "HasInvalidOverride"; return MemberOverrideStatus2; })(MemberOverrideStatus || {}); var UnionReduction = /* @__PURE__ */ ((UnionReduction2) => { UnionReduction2[UnionReduction2["None"] = 0] = "None"; UnionReduction2[UnionReduction2["Literal"] = 1] = "Literal"; UnionReduction2[UnionReduction2["Subtype"] = 2] = "Subtype"; return UnionReduction2; })(UnionReduction || {}); var IntersectionFlags = /* @__PURE__ */ ((IntersectionFlags2) => { IntersectionFlags2[IntersectionFlags2["None"] = 0] = "None"; IntersectionFlags2[IntersectionFlags2["NoSupertypeReduction"] = 1] = "NoSupertypeReduction"; IntersectionFlags2[IntersectionFlags2["NoConstraintReduction"] = 2] = "NoConstraintReduction"; return IntersectionFlags2; })(IntersectionFlags || {}); var ContextFlags = /* @__PURE__ */ ((ContextFlags3) => { ContextFlags3[ContextFlags3["None"] = 0] = "None"; ContextFlags3[ContextFlags3["Signature"] = 1] = "Signature"; ContextFlags3[ContextFlags3["NoConstraints"] = 2] = "NoConstraints"; ContextFlags3[ContextFlags3["IgnoreNodeInferences"] = 4] = "IgnoreNodeInferences"; ContextFlags3[ContextFlags3["SkipBindingPatterns"] = 8] = "SkipBindingPatterns"; return ContextFlags3; })(ContextFlags || {}); var NodeBuilderFlags = /* @__PURE__ */ ((NodeBuilderFlags2) => { NodeBuilderFlags2[NodeBuilderFlags2["None"] = 0] = "None"; NodeBuilderFlags2[NodeBuilderFlags2["NoTruncation"] = 1] = "NoTruncation"; NodeBuilderFlags2[NodeBuilderFlags2["WriteArrayAsGenericType"] = 2] = "WriteArrayAsGenericType"; NodeBuilderFlags2[NodeBuilderFlags2["GenerateNamesForShadowedTypeParams"] = 4] = "GenerateNamesForShadowedTypeParams"; NodeBuilderFlags2[NodeBuilderFlags2["UseStructuralFallback"] = 8] = "UseStructuralFallback"; NodeBuilderFlags2[NodeBuilderFlags2["ForbidIndexedAccessSymbolReferences"] = 16] = "ForbidIndexedAccessSymbolReferences"; NodeBuilderFlags2[NodeBuilderFlags2["WriteTypeArgumentsOfSignature"] = 32] = "WriteTypeArgumentsOfSignature"; NodeBuilderFlags2[NodeBuilderFlags2["UseFullyQualifiedType"] = 64] = "UseFullyQualifiedType"; NodeBuilderFlags2[NodeBuilderFlags2["UseOnlyExternalAliasing"] = 128] = "UseOnlyExternalAliasing"; NodeBuilderFlags2[NodeBuilderFlags2["SuppressAnyReturnType"] = 256] = "SuppressAnyReturnType"; NodeBuilderFlags2[NodeBuilderFlags2["WriteTypeParametersInQualifiedName"] = 512] = "WriteTypeParametersInQualifiedName"; NodeBuilderFlags2[NodeBuilderFlags2["MultilineObjectLiterals"] = 1024] = "MultilineObjectLiterals"; NodeBuilderFlags2[NodeBuilderFlags2["WriteClassExpressionAsTypeLiteral"] = 2048] = "WriteClassExpressionAsTypeLiteral"; NodeBuilderFlags2[NodeBuilderFlags2["UseTypeOfFunction"] = 4096] = "UseTypeOfFunction"; NodeBuilderFlags2[NodeBuilderFlags2["OmitParameterModifiers"] = 8192] = "OmitParameterModifiers"; NodeBuilderFlags2[NodeBuilderFlags2["UseAliasDefinedOutsideCurrentScope"] = 16384] = "UseAliasDefinedOutsideCurrentScope"; NodeBuilderFlags2[NodeBuilderFlags2["UseSingleQuotesForStringLiteralType"] = 268435456] = "UseSingleQuotesForStringLiteralType"; NodeBuilderFlags2[NodeBuilderFlags2["NoTypeReduction"] = 536870912] = "NoTypeReduction"; NodeBuilderFlags2[NodeBuilderFlags2["OmitThisParameter"] = 33554432] = "OmitThisParameter"; NodeBuilderFlags2[NodeBuilderFlags2["AllowThisInObjectLiteral"] = 32768] = "AllowThisInObjectLiteral"; NodeBuilderFlags2[NodeBuilderFlags2["AllowQualifiedNameInPlaceOfIdentifier"] = 65536] = "AllowQualifiedNameInPlaceOfIdentifier"; NodeBuilderFlags2[NodeBuilderFlags2["AllowAnonymousIdentifier"] = 131072] = "AllowAnonymousIdentifier"; NodeBuilderFlags2[NodeBuilderFlags2["AllowEmptyUnionOrIntersection"] = 262144] = "AllowEmptyUnionOrIntersection"; NodeBuilderFlags2[NodeBuilderFlags2["AllowEmptyTuple"] = 524288] = "AllowEmptyTuple"; NodeBuilderFlags2[NodeBuilderFlags2["AllowUniqueESSymbolType"] = 1048576] = "AllowUniqueESSymbolType"; NodeBuilderFlags2[NodeBuilderFlags2["AllowEmptyIndexInfoType"] = 2097152] = "AllowEmptyIndexInfoType"; NodeBuilderFlags2[NodeBuilderFlags2["AllowNodeModulesRelativePaths"] = 67108864] = "AllowNodeModulesRelativePaths"; NodeBuilderFlags2[NodeBuilderFlags2["IgnoreErrors"] = 70221824] = "IgnoreErrors"; NodeBuilderFlags2[NodeBuilderFlags2["InObjectTypeLiteral"] = 4194304] = "InObjectTypeLiteral"; NodeBuilderFlags2[NodeBuilderFlags2["InTypeAlias"] = 8388608] = "InTypeAlias"; NodeBuilderFlags2[NodeBuilderFlags2["InInitialEntityName"] = 16777216] = "InInitialEntityName"; return NodeBuilderFlags2; })(NodeBuilderFlags || {}); var InternalNodeBuilderFlags = /* @__PURE__ */ ((InternalNodeBuilderFlags2) => { InternalNodeBuilderFlags2[InternalNodeBuilderFlags2["None"] = 0] = "None"; InternalNodeBuilderFlags2[InternalNodeBuilderFlags2["WriteComputedProps"] = 1] = "WriteComputedProps"; InternalNodeBuilderFlags2[InternalNodeBuilderFlags2["NoSyntacticPrinter"] = 2] = "NoSyntacticPrinter"; InternalNodeBuilderFlags2[InternalNodeBuilderFlags2["DoNotIncludeSymbolChain"] = 4] = "DoNotIncludeSymbolChain"; InternalNodeBuilderFlags2[InternalNodeBuilderFlags2["AllowUnresolvedNames"] = 8] = "AllowUnresolvedNames"; return InternalNodeBuilderFlags2; })(InternalNodeBuilderFlags || {}); var TypeFormatFlags = /* @__PURE__ */ ((TypeFormatFlags2) => { TypeFormatFlags2[TypeFormatFlags2["None"] = 0] = "None"; TypeFormatFlags2[TypeFormatFlags2["NoTruncation"] = 1] = "NoTruncation"; TypeFormatFlags2[TypeFormatFlags2["WriteArrayAsGenericType"] = 2] = "WriteArrayAsGenericType"; TypeFormatFlags2[TypeFormatFlags2["GenerateNamesForShadowedTypeParams"] = 4] = "GenerateNamesForShadowedTypeParams"; TypeFormatFlags2[TypeFormatFlags2["UseStructuralFallback"] = 8] = "UseStructuralFallback"; TypeFormatFlags2[TypeFormatFlags2["WriteTypeArgumentsOfSignature"] = 32] = "WriteTypeArgumentsOfSignature"; TypeFormatFlags2[TypeFormatFlags2["UseFullyQualifiedType"] = 64] = "UseFullyQualifiedType"; TypeFormatFlags2[TypeFormatFlags2["SuppressAnyReturnType"] = 256] = "SuppressAnyReturnType"; TypeFormatFlags2[TypeFormatFlags2["MultilineObjectLiterals"] = 1024] = "MultilineObjectLiterals"; TypeFormatFlags2[TypeFormatFlags2["WriteClassExpressionAsTypeLiteral"] = 2048] = "WriteClassExpressionAsTypeLiteral"; TypeFormatFlags2[TypeFormatFlags2["UseTypeOfFunction"] = 4096] = "UseTypeOfFunction"; TypeFormatFlags2[TypeFormatFlags2["OmitParameterModifiers"] = 8192] = "OmitParameterModifiers"; TypeFormatFlags2[TypeFormatFlags2["UseAliasDefinedOutsideCurrentScope"] = 16384] = "UseAliasDefinedOutsideCurrentScope"; TypeFormatFlags2[TypeFormatFlags2["UseSingleQuotesForStringLiteralType"] = 268435456] = "UseSingleQuotesForStringLiteralType"; TypeFormatFlags2[TypeFormatFlags2["NoTypeReduction"] = 536870912] = "NoTypeReduction"; TypeFormatFlags2[TypeFormatFlags2["OmitThisParameter"] = 33554432] = "OmitThisParameter"; TypeFormatFlags2[TypeFormatFlags2["AllowUniqueESSymbolType"] = 1048576] = "AllowUniqueESSymbolType"; TypeFormatFlags2[TypeFormatFlags2["AddUndefined"] = 131072] = "AddUndefined"; TypeFormatFlags2[TypeFormatFlags2["WriteArrowStyleSignature"] = 262144] = "WriteArrowStyleSignature"; TypeFormatFlags2[TypeFormatFlags2["InArrayType"] = 524288] = "InArrayType"; TypeFormatFlags2[TypeFormatFlags2["InElementType"] = 2097152] = "InElementType"; TypeFormatFlags2[TypeFormatFlags2["InFirstTypeArgument"] = 4194304] = "InFirstTypeArgument"; TypeFormatFlags2[TypeFormatFlags2["InTypeAlias"] = 8388608] = "InTypeAlias"; TypeFormatFlags2[TypeFormatFlags2["NodeBuilderFlagsMask"] = 848330095] = "NodeBuilderFlagsMask"; return TypeFormatFlags2; })(TypeFormatFlags || {}); var SymbolFormatFlags = /* @__PURE__ */ ((SymbolFormatFlags2) => { SymbolFormatFlags2[SymbolFormatFlags2["None"] = 0] = "None"; SymbolFormatFlags2[SymbolFormatFlags2["WriteTypeParametersOrArguments"] = 1] = "WriteTypeParametersOrArguments"; SymbolFormatFlags2[SymbolFormatFlags2["UseOnlyExternalAliasing"] = 2] = "UseOnlyExternalAliasing"; SymbolFormatFlags2[SymbolFormatFlags2["AllowAnyNodeKind"] = 4] = "AllowAnyNodeKind"; SymbolFormatFlags2[SymbolFormatFlags2["UseAliasDefinedOutsideCurrentScope"] = 8] = "UseAliasDefinedOutsideCurrentScope"; SymbolFormatFlags2[SymbolFormatFlags2["WriteComputedProps"] = 16] = "WriteComputedProps"; SymbolFormatFlags2[SymbolFormatFlags2["DoNotIncludeSymbolChain"] = 32] = "DoNotIncludeSymbolChain"; return SymbolFormatFlags2; })(SymbolFormatFlags || {}); var SymbolAccessibility = /* @__PURE__ */ ((SymbolAccessibility2) => { SymbolAccessibility2[SymbolAccessibility2["Accessible"] = 0] = "Accessible"; SymbolAccessibility2[SymbolAccessibility2["NotAccessible"] = 1] = "NotAccessible"; SymbolAccessibility2[SymbolAccessibility2["CannotBeNamed"] = 2] = "CannotBeNamed"; SymbolAccessibility2[SymbolAccessibility2["NotResolved"] = 3] = "NotResolved"; return SymbolAccessibility2; })(SymbolAccessibility || {}); var TypePredicateKind = /* @__PURE__ */ ((TypePredicateKind2) => { TypePredicateKind2[TypePredicateKind2["This"] = 0] = "This"; TypePredicateKind2[TypePredicateKind2["Identifier"] = 1] = "Identifier"; TypePredicateKind2[TypePredicateKind2["AssertsThis"] = 2] = "AssertsThis"; TypePredicateKind2[TypePredicateKind2["AssertsIdentifier"] = 3] = "AssertsIdentifier"; return TypePredicateKind2; })(TypePredicateKind || {}); var TypeReferenceSerializationKind = /* @__PURE__ */ ((TypeReferenceSerializationKind2) => { TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["Unknown"] = 0] = "Unknown"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["TypeWithConstructSignatureAndValue"] = 1] = "TypeWithConstructSignatureAndValue"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["VoidNullableOrNeverType"] = 2] = "VoidNullableOrNeverType"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["NumberLikeType"] = 3] = "NumberLikeType"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["BigIntLikeType"] = 4] = "BigIntLikeType"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["StringLikeType"] = 5] = "StringLikeType"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["BooleanType"] = 6] = "BooleanType"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["ArrayLikeType"] = 7] = "ArrayLikeType"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["ESSymbolType"] = 8] = "ESSymbolType"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["Promise"] = 9] = "Promise"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["TypeWithCallSignature"] = 10] = "TypeWithCallSignature"; TypeReferenceSerializationKind2[TypeReferenceSerializationKind2["ObjectType"] = 11] = "ObjectType"; return TypeReferenceSerializationKind2; })(TypeReferenceSerializationKind || {}); var SymbolFlags = /* @__PURE__ */ ((SymbolFlags3) => { SymbolFlags3[SymbolFlags3["None"] = 0] = "None"; SymbolFlags3[SymbolFlags3["FunctionScopedVariable"] = 1] = "FunctionScopedVariable"; SymbolFlags3[SymbolFlags3["BlockScopedVariable"] = 2] = "BlockScopedVariable"; SymbolFlags3[SymbolFlags3["Property"] = 4] = "Property"; SymbolFlags3[SymbolFlags3["EnumMember"] = 8] = "EnumMember"; SymbolFlags3[SymbolFlags3["Function"] = 16] = "Function"; SymbolFlags3[SymbolFlags3["Class"] = 32] = "Class"; SymbolFlags3[SymbolFlags3["Interface"] = 64] = "Interface"; SymbolFlags3[SymbolFlags3["ConstEnum"] = 128] = "ConstEnum"; SymbolFlags3[SymbolFlags3["RegularEnum"] = 256] = "RegularEnum"; SymbolFlags3[SymbolFlags3["ValueModule"] = 512] = "ValueModule"; SymbolFlags3[SymbolFlags3["NamespaceModule"] = 1024] = "NamespaceModule"; SymbolFlags3[SymbolFlags3["TypeLiteral"] = 2048] = "TypeLiteral"; SymbolFlags3[SymbolFlags3["ObjectLiteral"] = 4096] = "ObjectLiteral"; SymbolFlags3[SymbolFlags3["Method"] = 8192] = "Method"; SymbolFlags3[SymbolFlags3["Constructor"] = 16384] = "Constructor"; SymbolFlags3[SymbolFlags3["GetAccessor"] = 32768] = "GetAccessor"; SymbolFlags3[SymbolFlags3["SetAccessor"] = 65536] = "SetAccessor"; SymbolFlags3[SymbolFlags3["Signature"] = 131072] = "Signature"; SymbolFlags3[SymbolFlags3["TypeParameter"] = 262144] = "TypeParameter"; SymbolFlags3[SymbolFlags3["TypeAlias"] = 524288] = "TypeAlias"; SymbolFlags3[SymbolFlags3["ExportValue"] = 1048576] = "ExportValue"; SymbolFlags3[SymbolFlags3["Alias"] = 2097152] = "Alias"; SymbolFlags3[SymbolFlags3["Prototype"] = 4194304] = "Prototype"; SymbolFlags3[SymbolFlags3["ExportStar"] = 8388608] = "ExportStar"; SymbolFlags3[SymbolFlags3["Optional"] = 16777216] = "Optional"; SymbolFlags3[SymbolFlags3["Transient"] = 33554432] = "Transient"; SymbolFlags3[SymbolFlags3["Assignment"] = 67108864] = "Assignment"; SymbolFlags3[SymbolFlags3["ModuleExports"] = 134217728] = "ModuleExports"; SymbolFlags3[SymbolFlags3["All"] = -1] = "All"; SymbolFlags3[SymbolFlags3["Enum"] = 384] = "Enum"; SymbolFlags3[SymbolFlags3["Variable"] = 3] = "Variable"; SymbolFlags3[SymbolFlags3["Value"] = 111551] = "Value"; SymbolFlags3[SymbolFlags3["Type"] = 788968] = "Type"; SymbolFlags3[SymbolFlags3["Namespace"] = 1920] = "Namespace"; SymbolFlags3[SymbolFlags3["Module"] = 1536] = "Module"; SymbolFlags3[SymbolFlags3["Accessor"] = 98304] = "Accessor"; SymbolFlags3[SymbolFlags3["FunctionScopedVariableExcludes"] = 111550] = "FunctionScopedVariableExcludes"; SymbolFlags3[SymbolFlags3["BlockScopedVariableExcludes"] = 111551] = "BlockScopedVariableExcludes"; SymbolFlags3[SymbolFlags3["ParameterExcludes"] = 111551] = "ParameterExcludes"; SymbolFlags3[SymbolFlags3["PropertyExcludes"] = 0] = "PropertyExcludes"; SymbolFlags3[SymbolFlags3["EnumMemberExcludes"] = 900095] = "EnumMemberExcludes"; SymbolFlags3[SymbolFlags3["FunctionExcludes"] = 110991] = "FunctionExcludes"; SymbolFlags3[SymbolFlags3["ClassExcludes"] = 899503] = "ClassExcludes"; SymbolFlags3[SymbolFlags3["InterfaceExcludes"] = 788872] = "InterfaceExcludes"; SymbolFlags3[SymbolFlags3["RegularEnumExcludes"] = 899327] = "RegularEnumExcludes"; SymbolFlags3[SymbolFlags3["ConstEnumExcludes"] = 899967] = "ConstEnumExcludes"; SymbolFlags3[SymbolFlags3["ValueModuleExcludes"] = 110735] = "ValueModuleExcludes"; SymbolFlags3[SymbolFlags3["NamespaceModuleExcludes"] = 0] = "NamespaceModuleExcludes"; SymbolFlags3[SymbolFlags3["MethodExcludes"] = 103359] = "MethodExcludes"; SymbolFlags3[SymbolFlags3["GetAccessorExcludes"] = 46015] = "GetAccessorExcludes"; SymbolFlags3[SymbolFlags3["SetAccessorExcludes"] = 78783] = "SetAccessorExcludes"; SymbolFlags3[SymbolFlags3["AccessorExcludes"] = 13247] = "AccessorExcludes"; SymbolFlags3[SymbolFlags3["TypeParameterExcludes"] = 526824] = "TypeParameterExcludes"; SymbolFlags3[SymbolFlags3["TypeAliasExcludes"] = 788968] = "TypeAliasExcludes"; SymbolFlags3[SymbolFlags3["AliasExcludes"] = 2097152] = "AliasExcludes"; SymbolFlags3[SymbolFlags3["ModuleMember"] = 2623475] = "ModuleMember"; SymbolFlags3[SymbolFlags3["ExportHasLocal"] = 944] = "ExportHasLocal"; SymbolFlags3[SymbolFlags3["BlockScoped"] = 418] = "BlockScoped"; SymbolFlags3[SymbolFlags3["PropertyOrAccessor"] = 98308] = "PropertyOrAccessor"; SymbolFlags3[SymbolFlags3["ClassMember"] = 106500] = "ClassMember"; SymbolFlags3[SymbolFlags3["ExportSupportsDefaultModifier"] = 112] = "ExportSupportsDefaultModifier"; SymbolFlags3[SymbolFlags3["ExportDoesNotSupportDefaultModifier"] = -113] = "ExportDoesNotSupportDefaultModifier"; SymbolFlags3[SymbolFlags3["Classifiable"] = 2885600] = "Classifiable"; SymbolFlags3[SymbolFlags3["LateBindingContainer"] = 6256] = "LateBindingContainer"; return SymbolFlags3; })(SymbolFlags || {}); var CheckFlags = /* @__PURE__ */ ((CheckFlags2) => { CheckFlags2[CheckFlags2["None"] = 0] = "None"; CheckFlags2[CheckFlags2["Instantiated"] = 1] = "Instantiated"; CheckFlags2[CheckFlags2["SyntheticProperty"] = 2] = "SyntheticProperty"; CheckFlags2[CheckFlags2["SyntheticMethod"] = 4] = "SyntheticMethod"; CheckFlags2[CheckFlags2["Readonly"] = 8] = "Readonly"; CheckFlags2[CheckFlags2["ReadPartial"] = 16] = "ReadPartial"; CheckFlags2[CheckFlags2["WritePartial"] = 32] = "WritePartial"; CheckFlags2[CheckFlags2["HasNonUniformType"] = 64] = "HasNonUniformType"; CheckFlags2[CheckFlags2["HasLiteralType"] = 128] = "HasLiteralType"; CheckFlags2[CheckFlags2["ContainsPublic"] = 256] = "ContainsPublic"; CheckFlags2[CheckFlags2["ContainsProtected"] = 512] = "ContainsProtected"; CheckFlags2[CheckFlags2["ContainsPrivate"] = 1024] = "ContainsPrivate"; CheckFlags2[CheckFlags2["ContainsStatic"] = 2048] = "ContainsStatic"; CheckFlags2[CheckFlags2["Late"] = 4096] = "Late"; CheckFlags2[CheckFlags2["ReverseMapped"] = 8192] = "ReverseMapped"; CheckFlags2[CheckFlags2["OptionalParameter"] = 16384] = "OptionalParameter"; CheckFlags2[CheckFlags2["RestParameter"] = 32768] = "RestParameter"; CheckFlags2[CheckFlags2["DeferredType"] = 65536] = "DeferredType"; CheckFlags2[CheckFlags2["HasNeverType"] = 131072] = "HasNeverType"; CheckFlags2[CheckFlags2["Mapped"] = 262144] = "Mapped"; CheckFlags2[CheckFlags2["StripOptional"] = 524288] = "StripOptional"; CheckFlags2[CheckFlags2["Unresolved"] = 1048576] = "Unresolved"; CheckFlags2[CheckFlags2["Synthetic"] = 6] = "Synthetic"; CheckFlags2[CheckFlags2["Discriminant"] = 192] = "Discriminant"; CheckFlags2[CheckFlags2["Partial"] = 48] = "Partial"; return CheckFlags2; })(CheckFlags || {}); var InternalSymbolName = /* @__PURE__ */ ((InternalSymbolName2) => { InternalSymbolName2["Call"] = "__call"; InternalSymbolName2["Constructor"] = "__constructor"; InternalSymbolName2["New"] = "__new"; InternalSymbolName2["Index"] = "__index"; InternalSymbolName2["ExportStar"] = "__export"; InternalSymbolName2["Global"] = "__global"; InternalSymbolName2["Missing"] = "__missing"; InternalSymbolName2["Type"] = "__type"; InternalSymbolName2["Object"] = "__object"; InternalSymbolName2["JSXAttributes"] = "__jsxAttributes"; InternalSymbolName2["Class"] = "__class"; InternalSymbolName2["Function"] = "__function"; InternalSymbolName2["Computed"] = "__computed"; InternalSymbolName2["Resolving"] = "__resolving__"; InternalSymbolName2["ExportEquals"] = "export="; InternalSymbolName2["Default"] = "default"; InternalSymbolName2["This"] = "this"; InternalSymbolName2["InstantiationExpression"] = "__instantiationExpression"; InternalSymbolName2["ImportAttributes"] = "__importAttributes"; return InternalSymbolName2; })(InternalSymbolName || {}); var NodeCheckFlags = /* @__PURE__ */ ((NodeCheckFlags3) => { NodeCheckFlags3[NodeCheckFlags3["None"] = 0] = "None"; NodeCheckFlags3[NodeCheckFlags3["TypeChecked"] = 1] = "TypeChecked"; NodeCheckFlags3[NodeCheckFlags3["LexicalThis"] = 2] = "LexicalThis"; NodeCheckFlags3[NodeCheckFlags3["CaptureThis"] = 4] = "CaptureThis"; NodeCheckFlags3[NodeCheckFlags3["CaptureNewTarget"] = 8] = "CaptureNewTarget"; NodeCheckFlags3[NodeCheckFlags3["SuperInstance"] = 16] = "SuperInstance"; NodeCheckFlags3[NodeCheckFlags3["SuperStatic"] = 32] = "SuperStatic"; NodeCheckFlags3[NodeCheckFlags3["ContextChecked"] = 64] = "ContextChecked"; NodeCheckFlags3[NodeCheckFlags3["MethodWithSuperPropertyAccessInAsync"] = 128] = "MethodWithSuperPropertyAccessInAsync"; NodeCheckFlags3[NodeCheckFlags3["MethodWithSuperPropertyAssignmentInAsync"] = 256] = "MethodWithSuperPropertyAssignmentInAsync"; NodeCheckFlags3[NodeCheckFlags3["CaptureArguments"] = 512] = "CaptureArguments"; NodeCheckFlags3[NodeCheckFlags3["EnumValuesComputed"] = 1024] = "EnumValuesComputed"; NodeCheckFlags3[NodeCheckFlags3["LexicalModuleMergesWithClass"] = 2048] = "LexicalModuleMergesWithClass"; NodeCheckFlags3[NodeCheckFlags3["LoopWithCapturedBlockScopedBinding"] = 4096] = "LoopWithCapturedBlockScopedBinding"; NodeCheckFlags3[NodeCheckFlags3["ContainsCapturedBlockScopeBinding"] = 8192] = "ContainsCapturedBlockScopeBinding"; NodeCheckFlags3[NodeCheckFlags3["CapturedBlockScopedBinding"] = 16384] = "CapturedBlockScopedBinding"; NodeCheckFlags3[NodeCheckFlags3["BlockScopedBindingInLoop"] = 32768] = "BlockScopedBindingInLoop"; NodeCheckFlags3[NodeCheckFlags3["NeedsLoopOutParameter"] = 65536] = "NeedsLoopOutParameter"; NodeCheckFlags3[NodeCheckFlags3["AssignmentsMarked"] = 131072] = "AssignmentsMarked"; NodeCheckFlags3[NodeCheckFlags3["ContainsConstructorReference"] = 262144] = "ContainsConstructorReference"; NodeCheckFlags3[NodeCheckFlags3["ConstructorReference"] = 536870912] = "ConstructorReference"; NodeCheckFlags3[NodeCheckFlags3["ContainsClassWithPrivateIdentifiers"] = 1048576] = "ContainsClassWithPrivateIdentifiers"; NodeCheckFlags3[NodeCheckFlags3["ContainsSuperPropertyInStaticInitializer"] = 2097152] = "ContainsSuperPropertyInStaticInitializer"; NodeCheckFlags3[NodeCheckFlags3["InCheckIdentifier"] = 4194304] = "InCheckIdentifier"; NodeCheckFlags3[NodeCheckFlags3["PartiallyTypeChecked"] = 8388608] = "PartiallyTypeChecked"; NodeCheckFlags3[NodeCheckFlags3["LazyFlags"] = 539358128] = "LazyFlags"; return NodeCheckFlags3; })(NodeCheckFlags || {}); var TypeFlags = /* @__PURE__ */ ((TypeFlags2) => { TypeFlags2[TypeFlags2["Any"] = 1] = "Any"; TypeFlags2[TypeFlags2["Unknown"] = 2] = "Unknown"; TypeFlags2[TypeFlags2["Undefined"] = 4] = "Undefined"; TypeFlags2[TypeFlags2["Null"] = 8] = "Null"; TypeFlags2[TypeFlags2["Void"] = 16] = "Void"; TypeFlags2[TypeFlags2["String"] = 32] = "String"; TypeFlags2[TypeFlags2["Number"] = 64] = "Number"; TypeFlags2[TypeFlags2["BigInt"] = 128] = "BigInt"; TypeFlags2[TypeFlags2["Boolean"] = 256] = "Boolean"; TypeFlags2[TypeFlags2["ESSymbol"] = 512] = "ESSymbol"; TypeFlags2[TypeFlags2["StringLiteral"] = 1024] = "StringLiteral"; TypeFlags2[TypeFlags2["NumberLiteral"] = 2048] = "NumberLiteral"; TypeFlags2[TypeFlags2["BigIntLiteral"] = 4096] = "BigIntLiteral"; TypeFlags2[TypeFlags2["BooleanLiteral"] = 8192] = "BooleanLiteral"; TypeFlags2[TypeFlags2["UniqueESSymbol"] = 16384] = "UniqueESSymbol"; TypeFlags2[TypeFlags2["EnumLiteral"] = 32768] = "EnumLiteral"; TypeFlags2[TypeFlags2["Enum"] = 65536] = "Enum"; TypeFlags2[TypeFlags2["NonPrimitive"] = 131072] = "NonPrimitive"; TypeFlags2[TypeFlags2["Never"] = 262144] = "Never"; TypeFlags2[TypeFlags2["TypeParameter"] = 524288] = "TypeParameter"; TypeFlags2[TypeFlags2["Object"] = 1048576] = "Object"; TypeFlags2[TypeFlags2["Index"] = 2097152] = "Index"; TypeFlags2[TypeFlags2["TemplateLiteral"] = 4194304] = "TemplateLiteral"; TypeFlags2[TypeFlags2["StringMapping"] = 8388608] = "StringMapping"; TypeFlags2[TypeFlags2["Substitution"] = 16777216] = "Substitution"; TypeFlags2[TypeFlags2["IndexedAccess"] = 33554432] = "IndexedAccess"; TypeFlags2[TypeFlags2["Conditional"] = 67108864] = "Conditional"; TypeFlags2[TypeFlags2["Union"] = 134217728] = "Union"; TypeFlags2[TypeFlags2["Intersection"] = 268435456] = "Intersection"; TypeFlags2[TypeFlags2["Reserved1"] = 536870912] = "Reserved1"; TypeFlags2[TypeFlags2["Reserved2"] = 1073741824] = "Reserved2"; TypeFlags2[TypeFlags2["Reserved3"] = -2147483648] = "Reserved3"; TypeFlags2[TypeFlags2["AnyOrUnknown"] = 3] = "AnyOrUnknown"; TypeFlags2[TypeFlags2["Nullable"] = 12] = "Nullable"; TypeFlags2[TypeFlags2["Literal"] = 15360] = "Literal"; TypeFlags2[TypeFlags2["Unit"] = 97292] = "Unit"; TypeFlags2[TypeFlags2["Freshable"] = 80896] = "Freshable"; TypeFlags2[TypeFlags2["StringOrNumberLiteral"] = 3072] = "StringOrNumberLiteral"; TypeFlags2[TypeFlags2["StringOrNumberLiteralOrUnique"] = 19456] = "StringOrNumberLiteralOrUnique"; TypeFlags2[TypeFlags2["DefinitelyFalsy"] = 15388] = "DefinitelyFalsy"; TypeFlags2[TypeFlags2["PossiblyFalsy"] = 15868] = "PossiblyFalsy"; TypeFlags2[TypeFlags2["Intrinsic"] = 402431] = "Intrinsic"; TypeFlags2[TypeFlags2["StringLike"] = 12583968] = "StringLike"; TypeFlags2[TypeFlags2["NumberLike"] = 67648] = "NumberLike"; TypeFlags2[TypeFlags2["BigIntLike"] = 4224] = "BigIntLike"; TypeFlags2[TypeFlags2["BooleanLike"] = 8448] = "BooleanLike"; TypeFlags2[TypeFlags2["EnumLike"] = 98304] = "EnumLike"; TypeFlags2[TypeFlags2["ESSymbolLike"] = 16896] = "ESSymbolLike"; TypeFlags2[TypeFlags2["VoidLike"] = 20] = "VoidLike"; TypeFlags2[TypeFlags2["Primitive"] = 12713980] = "Primitive"; TypeFlags2[TypeFlags2["DefinitelyNonNullable"] = 13893600] = "DefinitelyNonNullable"; TypeFlags2[TypeFlags2["DisjointDomains"] = 12812284] = "DisjointDomains"; TypeFlags2[TypeFlags2["UnionOrIntersection"] = 402653184] = "UnionOrIntersection"; TypeFlags2[TypeFlags2["StructuredType"] = 403701760] = "StructuredType"; TypeFlags2[TypeFlags2["TypeVariable"] = 34078720] = "TypeVariable"; TypeFlags2[TypeFlags2["InstantiableNonPrimitive"] = 117964800] = "InstantiableNonPrimitive"; TypeFlags2[TypeFlags2["InstantiablePrimitive"] = 14680064] = "InstantiablePrimitive"; TypeFlags2[TypeFlags2["Instantiable"] = 132644864] = "Instantiable"; TypeFlags2[TypeFlags2["StructuredOrInstantiable"] = 536346624] = "StructuredOrInstantiable"; TypeFlags2[TypeFlags2["ObjectFlagsType"] = 403963917] = "ObjectFlagsType"; TypeFlags2[TypeFlags2["Simplifiable"] = 102760448] = "Simplifiable"; TypeFlags2[TypeFlags2["Singleton"] = 394239] = "Singleton"; TypeFlags2[TypeFlags2["Narrowable"] = 536575971] = "Narrowable"; TypeFlags2[TypeFlags2["IncludesMask"] = 416808959] = "IncludesMask"; TypeFlags2[TypeFlags2["IncludesMissingType"] = 524288] = "IncludesMissingType"; TypeFlags2[TypeFlags2["IncludesNonWideningType"] = 2097152] = "IncludesNonWideningType"; TypeFlags2[TypeFlags2["IncludesWildcard"] = 33554432] = "IncludesWildcard"; TypeFlags2[TypeFlags2["IncludesEmptyObject"] = 67108864] = "IncludesEmptyObject"; TypeFlags2[TypeFlags2["IncludesInstantiable"] = 16777216] = "IncludesInstantiable"; TypeFlags2[TypeFlags2["IncludesConstrainedTypeVariable"] = 536870912] = "IncludesConstrainedTypeVariable"; TypeFlags2[TypeFlags2["IncludesError"] = 1073741824] = "IncludesError"; TypeFlags2[TypeFlags2["NotPrimitiveUnion"] = 286523411] = "NotPrimitiveUnion"; return TypeFlags2; })(TypeFlags || {}); var ObjectFlags = /* @__PURE__ */ ((ObjectFlags3) => { ObjectFlags3[ObjectFlags3["None"] = 0] = "None"; ObjectFlags3[ObjectFlags3["Class"] = 1] = "Class"; ObjectFlags3[ObjectFlags3["Interface"] = 2] = "Interface"; ObjectFlags3[ObjectFlags3["Reference"] = 4] = "Reference"; ObjectFlags3[ObjectFlags3["Tuple"] = 8] = "Tuple"; ObjectFlags3[ObjectFlags3["Anonymous"] = 16] = "Anonymous"; ObjectFlags3[ObjectFlags3["Mapped"] = 32] = "Mapped"; ObjectFlags3[ObjectFlags3["Instantiated"] = 64] = "Instantiated"; ObjectFlags3[ObjectFlags3["ObjectLiteral"] = 128] = "ObjectLiteral"; ObjectFlags3[ObjectFlags3["EvolvingArray"] = 256] = "EvolvingArray"; ObjectFlags3[ObjectFlags3["ObjectLiteralPatternWithComputedProperties"] = 512] = "ObjectLiteralPatternWithComputedProperties"; ObjectFlags3[ObjectFlags3["ReverseMapped"] = 1024] = "ReverseMapped"; ObjectFlags3[ObjectFlags3["JsxAttributes"] = 2048] = "JsxAttributes"; ObjectFlags3[ObjectFlags3["JSLiteral"] = 4096] = "JSLiteral"; ObjectFlags3[ObjectFlags3["FreshLiteral"] = 8192] = "FreshLiteral"; ObjectFlags3[ObjectFlags3["ArrayLiteral"] = 16384] = "ArrayLiteral"; ObjectFlags3[ObjectFlags3["PrimitiveUnion"] = 32768] = "PrimitiveUnion"; ObjectFlags3[ObjectFlags3["ContainsWideningType"] = 65536] = "ContainsWideningType"; ObjectFlags3[ObjectFlags3["ContainsObjectOrArrayLiteral"] = 131072] = "ContainsObjectOrArrayLiteral"; ObjectFlags3[ObjectFlags3["NonInferrableType"] = 262144] = "NonInferrableType"; ObjectFlags3[ObjectFlags3["CouldContainTypeVariablesComputed"] = 524288] = "CouldContainTypeVariablesComputed"; ObjectFlags3[ObjectFlags3["CouldContainTypeVariables"] = 1048576] = "CouldContainTypeVariables"; ObjectFlags3[ObjectFlags3["SingleSignatureType"] = 134217728] = "SingleSignatureType"; ObjectFlags3[ObjectFlags3["ClassOrInterface"] = 3] = "ClassOrInterface"; ObjectFlags3[ObjectFlags3["RequiresWidening"] = 196608] = "RequiresWidening"; ObjectFlags3[ObjectFlags3["PropagatingFlags"] = 458752] = "PropagatingFlags"; ObjectFlags3[ObjectFlags3["InstantiatedMapped"] = 96] = "InstantiatedMapped"; ObjectFlags3[ObjectFlags3["ContainsSpread"] = 2097152] = "ContainsSpread"; ObjectFlags3[ObjectFlags3["ObjectRestType"] = 4194304] = "ObjectRestType"; ObjectFlags3[ObjectFlags3["InstantiationExpressionType"] = 8388608] = "InstantiationExpressionType"; ObjectFlags3[ObjectFlags3["ObjectTypeKindMask"] = 142607679] = "ObjectTypeKindMask"; ObjectFlags3[ObjectFlags3["IsClassInstanceClone"] = 16777216] = "IsClassInstanceClone"; ObjectFlags3[ObjectFlags3["IdenticalBaseTypeCalculated"] = 33554432] = "IdenticalBaseTypeCalculated"; ObjectFlags3[ObjectFlags3["IdenticalBaseTypeExists"] = 67108864] = "IdenticalBaseTypeExists"; ObjectFlags3[ObjectFlags3["IsGenericTypeComputed"] = 2097152] = "IsGenericTypeComputed"; ObjectFlags3[ObjectFlags3["IsGenericObjectType"] = 4194304] = "IsGenericObjectType"; ObjectFlags3[ObjectFlags3["IsGenericIndexType"] = 8388608] = "IsGenericIndexType"; ObjectFlags3[ObjectFlags3["IsGenericType"] = 12582912] = "IsGenericType"; ObjectFlags3[ObjectFlags3["ContainsIntersections"] = 16777216] = "ContainsIntersections"; ObjectFlags3[ObjectFlags3["IsUnknownLikeUnionComputed"] = 33554432] = "IsUnknownLikeUnionComputed"; ObjectFlags3[ObjectFlags3["IsUnknownLikeUnion"] = 67108864] = "IsUnknownLikeUnion"; ObjectFlags3[ObjectFlags3["IsNeverIntersectionComputed"] = 16777216] = "IsNeverIntersectionComputed"; ObjectFlags3[ObjectFlags3["IsNeverIntersection"] = 33554432] = "IsNeverIntersection"; ObjectFlags3[ObjectFlags3["IsConstrainedTypeVariable"] = 67108864] = "IsConstrainedTypeVariable"; return ObjectFlags3; })(ObjectFlags || {}); var VarianceFlags = /* @__PURE__ */ ((VarianceFlags2) => { VarianceFlags2[VarianceFlags2["Invariant"] = 0] = "Invariant"; VarianceFlags2[VarianceFlags2["Covariant"] = 1] = "Covariant"; VarianceFlags2[VarianceFlags2["Contravariant"] = 2] = "Contravariant"; VarianceFlags2[VarianceFlags2["Bivariant"] = 3] = "Bivariant"; VarianceFlags2[VarianceFlags2["Independent"] = 4] = "Independent"; VarianceFlags2[VarianceFlags2["VarianceMask"] = 7] = "VarianceMask"; VarianceFlags2[VarianceFlags2["Unmeasurable"] = 8] = "Unmeasurable"; VarianceFlags2[VarianceFlags2["Unreliable"] = 16] = "Unreliable"; VarianceFlags2[VarianceFlags2["AllowsStructuralFallback"] = 24] = "AllowsStructuralFallback"; return VarianceFlags2; })(VarianceFlags || {}); var ElementFlags = /* @__PURE__ */ ((ElementFlags2) => { ElementFlags2[ElementFlags2["Required"] = 1] = "Required"; ElementFlags2[ElementFlags2["Optional"] = 2] = "Optional"; ElementFlags2[ElementFlags2["Rest"] = 4] = "Rest"; ElementFlags2[ElementFlags2["Variadic"] = 8] = "Variadic"; ElementFlags2[ElementFlags2["Fixed"] = 3] = "Fixed"; ElementFlags2[ElementFlags2["Variable"] = 12] = "Variable"; ElementFlags2[ElementFlags2["NonRequired"] = 14] = "NonRequired"; ElementFlags2[ElementFlags2["NonRest"] = 11] = "NonRest"; return ElementFlags2; })(ElementFlags || {}); var AccessFlags = /* @__PURE__ */ ((AccessFlags2) => { AccessFlags2[AccessFlags2["None"] = 0] = "None"; AccessFlags2[AccessFlags2["IncludeUndefined"] = 1] = "IncludeUndefined"; AccessFlags2[AccessFlags2["NoIndexSignatures"] = 2] = "NoIndexSignatures"; AccessFlags2[AccessFlags2["Writing"] = 4] = "Writing"; AccessFlags2[AccessFlags2["CacheSymbol"] = 8] = "CacheSymbol"; AccessFlags2[AccessFlags2["AllowMissing"] = 16] = "AllowMissing"; AccessFlags2[AccessFlags2["ExpressionPosition"] = 32] = "ExpressionPosition"; AccessFlags2[AccessFlags2["ReportDeprecated"] = 64] = "ReportDeprecated"; AccessFlags2[AccessFlags2["SuppressNoImplicitAnyError"] = 128] = "SuppressNoImplicitAnyError"; AccessFlags2[AccessFlags2["Contextual"] = 256] = "Contextual"; AccessFlags2[AccessFlags2["Persistent"] = 1] = "Persistent"; return AccessFlags2; })(AccessFlags || {}); var IndexFlags = /* @__PURE__ */ ((IndexFlags2) => { IndexFlags2[IndexFlags2["None"] = 0] = "None"; IndexFlags2[IndexFlags2["StringsOnly"] = 1] = "StringsOnly"; IndexFlags2[IndexFlags2["NoIndexSignatures"] = 2] = "NoIndexSignatures"; IndexFlags2[IndexFlags2["NoReducibleCheck"] = 4] = "NoReducibleCheck"; return IndexFlags2; })(IndexFlags || {}); var JsxReferenceKind = /* @__PURE__ */ ((JsxReferenceKind2) => { JsxReferenceKind2[JsxReferenceKind2["Component"] = 0] = "Component"; JsxReferenceKind2[JsxReferenceKind2["Function"] = 1] = "Function"; JsxReferenceKind2[JsxReferenceKind2["Mixed"] = 2] = "Mixed"; return JsxReferenceKind2; })(JsxReferenceKind || {}); var SignatureKind = /* @__PURE__ */ ((SignatureKind2) => { SignatureKind2[SignatureKind2["Call"] = 0] = "Call"; SignatureKind2[SignatureKind2["Construct"] = 1] = "Construct"; return SignatureKind2; })(SignatureKind || {}); var SignatureFlags = /* @__PURE__ */ ((SignatureFlags5) => { SignatureFlags5[SignatureFlags5["None"] = 0] = "None"; SignatureFlags5[SignatureFlags5["HasRestParameter"] = 1] = "HasRestParameter"; SignatureFlags5[SignatureFlags5["HasLiteralTypes"] = 2] = "HasLiteralTypes"; SignatureFlags5[SignatureFlags5["Abstract"] = 4] = "Abstract"; SignatureFlags5[SignatureFlags5["IsInnerCallChain"] = 8] = "IsInnerCallChain"; SignatureFlags5[SignatureFlags5["IsOuterCallChain"] = 16] = "IsOuterCallChain"; SignatureFlags5[SignatureFlags5["IsUntypedSignatureInJSFile"] = 32] = "IsUntypedSignatureInJSFile"; SignatureFlags5[SignatureFlags5["IsNonInferrable"] = 64] = "IsNonInferrable"; SignatureFlags5[SignatureFlags5["IsSignatureCandidateForOverloadFailure"] = 128] = "IsSignatureCandidateForOverloadFailure"; SignatureFlags5[SignatureFlags5["PropagatingFlags"] = 167] = "PropagatingFlags"; SignatureFlags5[SignatureFlags5["CallChainFlags"] = 24] = "CallChainFlags"; return SignatureFlags5; })(SignatureFlags || {}); var IndexKind = /* @__PURE__ */ ((IndexKind2) => { IndexKind2[IndexKind2["String"] = 0] = "String"; IndexKind2[IndexKind2["Number"] = 1] = "Number"; return IndexKind2; })(IndexKind || {}); var TypeMapKind = /* @__PURE__ */ ((TypeMapKind2) => { TypeMapKind2[TypeMapKind2["Simple"] = 0] = "Simple"; TypeMapKind2[TypeMapKind2["Array"] = 1] = "Array"; TypeMapKind2[TypeMapKind2["Deferred"] = 2] = "Deferred"; TypeMapKind2[TypeMapKind2["Function"] = 3] = "Function"; TypeMapKind2[TypeMapKind2["Composite"] = 4] = "Composite"; TypeMapKind2[TypeMapKind2["Merged"] = 5] = "Merged"; return TypeMapKind2; })(TypeMapKind || {}); var InferencePriority = /* @__PURE__ */ ((InferencePriority2) => { InferencePriority2[InferencePriority2["None"] = 0] = "None"; InferencePriority2[InferencePriority2["NakedTypeVariable"] = 1] = "NakedTypeVariable"; InferencePriority2[InferencePriority2["SpeculativeTuple"] = 2] = "SpeculativeTuple"; InferencePriority2[InferencePriority2["SubstituteSource"] = 4] = "SubstituteSource"; InferencePriority2[InferencePriority2["HomomorphicMappedType"] = 8] = "HomomorphicMappedType"; InferencePriority2[InferencePriority2["PartialHomomorphicMappedType"] = 16] = "PartialHomomorphicMappedType"; InferencePriority2[InferencePriority2["MappedTypeConstraint"] = 32] = "MappedTypeConstraint"; InferencePriority2[InferencePriority2["ContravariantConditional"] = 64] = "ContravariantConditional"; InferencePriority2[InferencePriority2["ReturnType"] = 128] = "ReturnType"; InferencePriority2[InferencePriority2["LiteralKeyof"] = 256] = "LiteralKeyof"; InferencePriority2[InferencePriority2["NoConstraints"] = 512] = "NoConstraints"; InferencePriority2[InferencePriority2["AlwaysStrict"] = 1024] = "AlwaysStrict"; InferencePriority2[InferencePriority2["MaxValue"] = 2048] = "MaxValue"; InferencePriority2[InferencePriority2["PriorityImpliesCombination"] = 416] = "PriorityImpliesCombination"; InferencePriority2[InferencePriority2["Circularity"] = -1] = "Circularity"; return InferencePriority2; })(InferencePriority || {}); var InferenceFlags = /* @__PURE__ */ ((InferenceFlags2) => { InferenceFlags2[InferenceFlags2["None"] = 0] = "None"; InferenceFlags2[InferenceFlags2["NoDefault"] = 1] = "NoDefault"; InferenceFlags2[InferenceFlags2["AnyDefault"] = 2] = "AnyDefault"; InferenceFlags2[InferenceFlags2["SkippedGenericFunction"] = 4] = "SkippedGenericFunction"; return InferenceFlags2; })(InferenceFlags || {}); var Ternary = /* @__PURE__ */ ((Ternary2) => { Ternary2[Ternary2["False"] = 0] = "False"; Ternary2[Ternary2["Unknown"] = 1] = "Unknown"; Ternary2[Ternary2["Maybe"] = 3] = "Maybe"; Ternary2[Ternary2["True"] = -1] = "True"; return Ternary2; })(Ternary || {}); var AssignmentDeclarationKind = /* @__PURE__ */ ((AssignmentDeclarationKind2) => { AssignmentDeclarationKind2[AssignmentDeclarationKind2["None"] = 0] = "None"; AssignmentDeclarationKind2[AssignmentDeclarationKind2["ExportsProperty"] = 1] = "ExportsProperty"; AssignmentDeclarationKind2[AssignmentDeclarationKind2["ModuleExports"] = 2] = "ModuleExports"; AssignmentDeclarationKind2[AssignmentDeclarationKind2["PrototypeProperty"] = 3] = "PrototypeProperty"; AssignmentDeclarationKind2[AssignmentDeclarationKind2["ThisProperty"] = 4] = "ThisProperty"; AssignmentDeclarationKind2[AssignmentDeclarationKind2["Property"] = 5] = "Property"; AssignmentDeclarationKind2[AssignmentDeclarationKind2["Prototype"] = 6] = "Prototype"; AssignmentDeclarationKind2[AssignmentDeclarationKind2["ObjectDefinePropertyValue"] = 7] = "ObjectDefinePropertyValue"; AssignmentDeclarationKind2[AssignmentDeclarationKind2["ObjectDefinePropertyExports"] = 8] = "ObjectDefinePropertyExports"; AssignmentDeclarationKind2[AssignmentDeclarationKind2["ObjectDefinePrototypeProperty"] = 9] = "ObjectDefinePrototypeProperty"; return AssignmentDeclarationKind2; })(AssignmentDeclarationKind || {}); var DiagnosticCategory = /* @__PURE__ */ ((DiagnosticCategory2) => { DiagnosticCategory2[DiagnosticCategory2["Warning"] = 0] = "Warning"; DiagnosticCategory2[DiagnosticCategory2["Error"] = 1] = "Error"; DiagnosticCategory2[DiagnosticCategory2["Suggestion"] = 2] = "Suggestion"; DiagnosticCategory2[DiagnosticCategory2["Message"] = 3] = "Message"; return DiagnosticCategory2; })(DiagnosticCategory || {}); function diagnosticCategoryName(d, lowerCase = true) { const name = DiagnosticCategory[d.category]; return lowerCase ? name.toLowerCase() : name; } var ModuleResolutionKind = /* @__PURE__ */ ((ModuleResolutionKind3) => { ModuleResolutionKind3[ModuleResolutionKind3["Classic"] = 1] = "Classic"; ModuleResolutionKind3[ModuleResolutionKind3["NodeJs"] = 2] = "NodeJs"; ModuleResolutionKind3[ModuleResolutionKind3["Node10"] = 2] = "Node10"; ModuleResolutionKind3[ModuleResolutionKind3["Node16"] = 3] = "Node16"; ModuleResolutionKind3[ModuleResolutionKind3["NodeNext"] = 99] = "NodeNext"; ModuleResolutionKind3[ModuleResolutionKind3["Bundler"] = 100] = "Bundler"; return ModuleResolutionKind3; })(ModuleResolutionKind || {}); var ModuleDetectionKind = /* @__PURE__ */ ((ModuleDetectionKind2) => { ModuleDetectionKind2[ModuleDetectionKind2["Legacy"] = 1] = "Legacy"; ModuleDetectionKind2[ModuleDetectionKind2["Auto"] = 2] = "Auto"; ModuleDetectionKind2[ModuleDetectionKind2["Force"] = 3] = "Force"; return ModuleDetectionKind2; })(ModuleDetectionKind || {}); var WatchFileKind = /* @__PURE__ */ ((WatchFileKind3) => { WatchFileKind3[WatchFileKind3["FixedPollingInterval"] = 0] = "FixedPollingInterval"; WatchFileKind3[WatchFileKind3["PriorityPollingInterval"] = 1] = "PriorityPollingInterval"; WatchFileKind3[WatchFileKind3["DynamicPriorityPolling"] = 2] = "DynamicPriorityPolling"; WatchFileKind3[WatchFileKind3["FixedChunkSizePolling"] = 3] = "FixedChunkSizePolling"; WatchFileKind3[WatchFileKind3["UseFsEvents"] = 4] = "UseFsEvents"; WatchFileKind3[WatchFileKind3["UseFsEventsOnParentDirectory"] = 5] = "UseFsEventsOnParentDirectory"; return WatchFileKind3; })(WatchFileKind || {}); var WatchDirectoryKind = /* @__PURE__ */ ((WatchDirectoryKind3) => { WatchDirectoryKind3[WatchDirectoryKind3["UseFsEvents"] = 0] = "UseFsEvents"; WatchDirectoryKind3[WatchDirectoryKind3["FixedPollingInterval"] = 1] = "FixedPollingInterval"; WatchDirectoryKind3[WatchDirectoryKind3["DynamicPriorityPolling"] = 2] = "DynamicPriorityPolling"; WatchDirectoryKind3[WatchDirectoryKind3["FixedChunkSizePolling"] = 3] = "FixedChunkSizePolling"; return WatchDirectoryKind3; })(WatchDirectoryKind || {}); var PollingWatchKind = /* @__PURE__ */ ((PollingWatchKind3) => { PollingWatchKind3[PollingWatchKind3["FixedInterval"] = 0] = "FixedInterval"; PollingWatchKind3[PollingWatchKind3["PriorityInterval"] = 1] = "PriorityInterval"; PollingWatchKind3[PollingWatchKind3["DynamicPriority"] = 2] = "DynamicPriority"; PollingWatchKind3[PollingWatchKind3["FixedChunkSize"] = 3] = "FixedChunkSize"; return PollingWatchKind3; })(PollingWatchKind || {}); var ModuleKind = /* @__PURE__ */ ((ModuleKind3) => { ModuleKind3[ModuleKind3["None"] = 0] = "None"; ModuleKind3[ModuleKind3["CommonJS"] = 1] = "CommonJS"; ModuleKind3[ModuleKind3["AMD"] = 2] = "AMD"; ModuleKind3[ModuleKind3["UMD"] = 3] = "UMD"; ModuleKind3[ModuleKind3["System"] = 4] = "System"; ModuleKind3[ModuleKind3["ES2015"] = 5] = "ES2015"; ModuleKind3[ModuleKind3["ES2020"] = 6] = "ES2020"; ModuleKind3[ModuleKind3["ES2022"] = 7] = "ES2022"; ModuleKind3[ModuleKind3["ESNext"] = 99] = "ESNext"; ModuleKind3[ModuleKind3["Node16"] = 100] = "Node16"; ModuleKind3[ModuleKind3["Node18"] = 101] = "Node18"; ModuleKind3[ModuleKind3["Node20"] = 102] = "Node20"; ModuleKind3[ModuleKind3["NodeNext"] = 199] = "NodeNext"; ModuleKind3[ModuleKind3["Preserve"] = 200] = "Preserve"; return ModuleKind3; })(ModuleKind || {}); var JsxEmit = /* @__PURE__ */ ((JsxEmit3) => { JsxEmit3[JsxEmit3["None"] = 0] = "None"; JsxEmit3[JsxEmit3["Preserve"] = 1] = "Preserve"; JsxEmit3[JsxEmit3["React"] = 2] = "React"; JsxEmit3[JsxEmit3["ReactNative"] = 3] = "ReactNative"; JsxEmit3[JsxEmit3["ReactJSX"] = 4] = "ReactJSX"; JsxEmit3[JsxEmit3["ReactJSXDev"] = 5] = "ReactJSXDev"; return JsxEmit3; })(JsxEmit || {}); var ImportsNotUsedAsValues = /* @__PURE__ */ ((ImportsNotUsedAsValues2) => { ImportsNotUsedAsValues2[ImportsNotUsedAsValues2["Remove"] = 0] = "Remove"; ImportsNotUsedAsValues2[ImportsNotUsedAsValues2["Preserve"] = 1] = "Preserve"; ImportsNotUsedAsValues2[ImportsNotUsedAsValues2["Error"] = 2] = "Error"; return ImportsNotUsedAsValues2; })(ImportsNotUsedAsValues || {}); var NewLineKind = /* @__PURE__ */ ((NewLineKind3) => { NewLineKind3[NewLineKind3["CarriageReturnLineFeed"] = 0] = "CarriageReturnLineFeed"; NewLineKind3[NewLineKind3["LineFeed"] = 1] = "LineFeed"; return NewLineKind3; })(NewLineKind || {}); var ScriptKind = /* @__PURE__ */ ((ScriptKind7) => { ScriptKind7[ScriptKind7["Unknown"] = 0] = "Unknown"; ScriptKind7[ScriptKind7["JS"] = 1] = "JS"; ScriptKind7[ScriptKind7["JSX"] = 2] = "JSX"; ScriptKind7[ScriptKind7["TS"] = 3] = "TS"; ScriptKind7[ScriptKind7["TSX"] = 4] = "TSX"; ScriptKind7[ScriptKind7["External"] = 5] = "External"; ScriptKind7[ScriptKind7["JSON"] = 6] = "JSON"; ScriptKind7[ScriptKind7["Deferred"] = 7] = "Deferred"; return ScriptKind7; })(ScriptKind || {}); var ScriptTarget = /* @__PURE__ */ ((ScriptTarget12) => { ScriptTarget12[ScriptTarget12["ES3"] = 0] = "ES3"; ScriptTarget12[ScriptTarget12["ES5"] = 1] = "ES5"; ScriptTarget12[ScriptTarget12["ES2015"] = 2] = "ES2015"; ScriptTarget12[ScriptTarget12["ES2016"] = 3] = "ES2016"; ScriptTarget12[ScriptTarget12["ES2017"] = 4] = "ES2017"; ScriptTarget12[ScriptTarget12["ES2018"] = 5] = "ES2018"; ScriptTarget12[ScriptTarget12["ES2019"] = 6] = "ES2019"; ScriptTarget12[ScriptTarget12["ES2020"] = 7] = "ES2020"; ScriptTarget12[ScriptTarget12["ES2021"] = 8] = "ES2021"; ScriptTarget12[ScriptTarget12["ES2022"] = 9] = "ES2022"; ScriptTarget12[ScriptTarget12["ES2023"] = 10] = "ES2023"; ScriptTarget12[ScriptTarget12["ES2024"] = 11] = "ES2024"; ScriptTarget12[ScriptTarget12["ES2025"] = 12] = "ES2025"; ScriptTarget12[ScriptTarget12["ESNext"] = 99] = "ESNext"; ScriptTarget12[ScriptTarget12["JSON"] = 100] = "JSON"; ScriptTarget12[ScriptTarget12["Latest"] = 99] = "Latest"; ScriptTarget12[ScriptTarget12["LatestStandard"] = 12] = "LatestStandard"; return ScriptTarget12; })(ScriptTarget || {}); var LanguageVariant = /* @__PURE__ */ ((LanguageVariant4) => { LanguageVariant4[LanguageVariant4["Standard"] = 0] = "Standard"; LanguageVariant4[LanguageVariant4["JSX"] = 1] = "JSX"; return LanguageVariant4; })(LanguageVariant || {}); var WatchDirectoryFlags = /* @__PURE__ */ ((WatchDirectoryFlags3) => { WatchDirectoryFlags3[WatchDirectoryFlags3["None"] = 0] = "None"; WatchDirectoryFlags3[WatchDirectoryFlags3["Recursive"] = 1] = "Recursive"; return WatchDirectoryFlags3; })(WatchDirectoryFlags || {}); var CharacterCodes = /* @__PURE__ */ ((CharacterCodes2) => { CharacterCodes2[CharacterCodes2["EOF"] = -1] = "EOF"; CharacterCodes2[CharacterCodes2["nullCharacter"] = 0] = "nullCharacter"; CharacterCodes2[CharacterCodes2["maxAsciiCharacter"] = 127] = "maxAsciiCharacter"; CharacterCodes2[CharacterCodes2["lineFeed"] = 10] = "lineFeed"; CharacterCodes2[CharacterCodes2["carriageReturn"] = 13] = "carriageReturn"; CharacterCodes2[CharacterCodes2["lineSeparator"] = 8232] = "lineSeparator"; CharacterCodes2[CharacterCodes2["paragraphSeparator"] = 8233] = "paragraphSeparator"; CharacterCodes2[CharacterCodes2["nextLine"] = 133] = "nextLine"; CharacterCodes2[CharacterCodes2["space"] = 32] = "space"; CharacterCodes2[CharacterCodes2["nonBreakingSpace"] = 160] = "nonBreakingSpace"; CharacterCodes2[CharacterCodes2["enQuad"] = 8192] = "enQuad"; CharacterCodes2[CharacterCodes2["emQuad"] = 8193] = "emQuad"; CharacterCodes2[CharacterCodes2["enSpace"] = 8194] = "enSpace"; CharacterCodes2[CharacterCodes2["emSpace"] = 8195] = "emSpace"; CharacterCodes2[CharacterCodes2["threePerEmSpace"] = 8196] = "threePerEmSpace"; CharacterCodes2[CharacterCodes2["fourPerEmSpace"] = 8197] = "fourPerEmSpace"; CharacterCodes2[CharacterCodes2["sixPerEmSpace"] = 8198] = "sixPerEmSpace"; CharacterCodes2[CharacterCodes2["figureSpace"] = 8199] = "figureSpace"; CharacterCodes2[CharacterCodes2["punctuationSpace"] = 8200] = "punctuationSpace"; CharacterCodes2[CharacterCodes2["thinSpace"] = 8201] = "thinSpace"; CharacterCodes2[CharacterCodes2["hairSpace"] = 8202] = "hairSpace"; CharacterCodes2[CharacterCodes2["zeroWidthSpace"] = 8203] = "zeroWidthSpace"; CharacterCodes2[CharacterCodes2["narrowNoBreakSpace"] = 8239] = "narrowNoBreakSpace"; CharacterCodes2[CharacterCodes2["ideographicSpace"] = 12288] = "ideographicSpace"; CharacterCodes2[CharacterCodes2["mathematicalSpace"] = 8287] = "mathematicalSpace"; CharacterCodes2[CharacterCodes2["ogham"] = 5760] = "ogham"; CharacterCodes2[CharacterCodes2["replacementCharacter"] = 65533] = "replacementCharacter"; CharacterCodes2[CharacterCodes2["_"] = 95] = "_"; CharacterCodes2[CharacterCodes2["$"] = 36] = "$"; CharacterCodes2[CharacterCodes2["_0"] = 48] = "_0"; CharacterCodes2[CharacterCodes2["_1"] = 49] = "_1"; CharacterCodes2[CharacterCodes2["_2"] = 50] = "_2"; CharacterCodes2[CharacterCodes2["_3"] = 51] = "_3"; CharacterCodes2[CharacterCodes2["_4"] = 52] = "_4"; CharacterCodes2[CharacterCodes2["_5"] = 53] = "_5"; CharacterCodes2[CharacterCodes2["_6"] = 54] = "_6"; CharacterCodes2[CharacterCodes2["_7"] = 55] = "_7"; CharacterCodes2[CharacterCodes2["_8"] = 56] = "_8"; CharacterCodes2[CharacterCodes2["_9"] = 57] = "_9"; CharacterCodes2[CharacterCodes2["a"] = 97] = "a"; CharacterCodes2[CharacterCodes2["b"] = 98] = "b"; CharacterCodes2[CharacterCodes2["c"] = 99] = "c"; CharacterCodes2[CharacterCodes2["d"] = 100] = "d"; CharacterCodes2[CharacterCodes2["e"] = 101] = "e"; CharacterCodes2[CharacterCodes2["f"] = 102] = "f"; CharacterCodes2[CharacterCodes2["g"] = 103] = "g"; CharacterCodes2[CharacterCodes2["h"] = 104] = "h"; CharacterCodes2[CharacterCodes2["i"] = 105] = "i"; CharacterCodes2[CharacterCodes2["j"] = 106] = "j"; CharacterCodes2[CharacterCodes2["k"] = 107] = "k"; CharacterCodes2[CharacterCodes2["l"] = 108] = "l"; CharacterCodes2[CharacterCodes2["m"] = 109] = "m"; CharacterCodes2[CharacterCodes2["n"] = 110] = "n"; CharacterCodes2[CharacterCodes2["o"] = 111] = "o"; CharacterCodes2[CharacterCodes2["p"] = 112] = "p"; CharacterCodes2[CharacterCodes2["q"] = 113] = "q"; CharacterCodes2[CharacterCodes2["r"] = 114] = "r"; CharacterCodes2[CharacterCodes2["s"] = 115] = "s"; CharacterCodes2[CharacterCodes2["t"] = 116] = "t"; CharacterCodes2[CharacterCodes2["u"] = 117] = "u"; CharacterCodes2[CharacterCodes2["v"] = 118] = "v"; CharacterCodes2[CharacterCodes2["w"] = 119] = "w"; CharacterCodes2[CharacterCodes2["x"] = 120] = "x"; CharacterCodes2[CharacterCodes2["y"] = 121] = "y"; CharacterCodes2[CharacterCodes2["z"] = 122] = "z"; CharacterCodes2[CharacterCodes2["A"] = 65] = "A"; CharacterCodes2[CharacterCodes2["B"] = 66] = "B"; CharacterCodes2[CharacterCodes2["C"] = 67] = "C"; CharacterCodes2[CharacterCodes2["D"] = 68] = "D"; CharacterCodes2[CharacterCodes2["E"] = 69] = "E"; CharacterCodes2[CharacterCodes2["F"] = 70] = "F"; CharacterCodes2[CharacterCodes2["G"] = 71] = "G"; CharacterCodes2[CharacterCodes2["H"] = 72] = "H"; CharacterCodes2[CharacterCodes2["I"] = 73] = "I"; CharacterCodes2[CharacterCodes2["J"] = 74] = "J"; CharacterCodes2[CharacterCodes2["K"] = 75] = "K"; CharacterCodes2[CharacterCodes2["L"] = 76] = "L"; CharacterCodes2[CharacterCodes2["M"] = 77] = "M"; CharacterCodes2[CharacterCodes2["N"] = 78] = "N"; CharacterCodes2[CharacterCodes2["O"] = 79] = "O"; CharacterCodes2[CharacterCodes2["P"] = 80] = "P"; CharacterCodes2[CharacterCodes2["Q"] = 81] = "Q"; CharacterCodes2[CharacterCodes2["R"] = 82] = "R"; CharacterCodes2[CharacterCodes2["S"] = 83] = "S"; CharacterCodes2[CharacterCodes2["T"] = 84] = "T"; CharacterCodes2[CharacterCodes2["U"] = 85] = "U"; CharacterCodes2[CharacterCodes2["V"] = 86] = "V"; CharacterCodes2[CharacterCodes2["W"] = 87] = "W"; CharacterCodes2[CharacterCodes2["X"] = 88] = "X"; CharacterCodes2[CharacterCodes2["Y"] = 89] = "Y"; CharacterCodes2[CharacterCodes2["Z"] = 90] = "Z"; CharacterCodes2[CharacterCodes2["ampersand"] = 38] = "ampersand"; CharacterCodes2[CharacterCodes2["asterisk"] = 42] = "asterisk"; CharacterCodes2[CharacterCodes2["at"] = 64] = "at"; CharacterCodes2[CharacterCodes2["backslash"] = 92] = "backslash"; CharacterCodes2[CharacterCodes2["backtick"] = 96] = "backtick"; CharacterCodes2[CharacterCodes2["bar"] = 124] = "bar"; CharacterCodes2[CharacterCodes2["caret"] = 94] = "caret"; CharacterCodes2[CharacterCodes2["closeBrace"] = 125] = "closeBrace"; CharacterCodes2[CharacterCodes2["closeBracket"] = 93] = "closeBracket"; CharacterCodes2[CharacterCodes2["closeParen"] = 41] = "closeParen"; CharacterCodes2[CharacterCodes2["colon"] = 58] = "colon"; CharacterCodes2[CharacterCodes2["comma"] = 44] = "comma"; CharacterCodes2[CharacterCodes2["dot"] = 46] = "dot"; CharacterCodes2[CharacterCodes2["doubleQuote"] = 34] = "doubleQuote"; CharacterCodes2[CharacterCodes2["equals"] = 61] = "equals"; CharacterCodes2[CharacterCodes2["exclamation"] = 33] = "exclamation"; CharacterCodes2[CharacterCodes2["greaterThan"] = 62] = "greaterThan"; CharacterCodes2[CharacterCodes2["hash"] = 35] = "hash"; CharacterCodes2[CharacterCodes2["lessThan"] = 60] = "lessThan"; CharacterCodes2[CharacterCodes2["minus"] = 45] = "minus"; CharacterCodes2[CharacterCodes2["openBrace"] = 123] = "openBrace"; CharacterCodes2[CharacterCodes2["openBracket"] = 91] = "openBracket"; CharacterCodes2[CharacterCodes2["openParen"] = 40] = "openParen"; CharacterCodes2[CharacterCodes2["percent"] = 37] = "percent"; CharacterCodes2[CharacterCodes2["plus"] = 43] = "plus"; CharacterCodes2[CharacterCodes2["question"] = 63] = "question"; CharacterCodes2[CharacterCodes2["semicolon"] = 59] = "semicolon"; CharacterCodes2[CharacterCodes2["singleQuote"] = 39] = "singleQuote"; CharacterCodes2[CharacterCodes2["slash"] = 47] = "slash"; CharacterCodes2[CharacterCodes2["tilde"] = 126] = "tilde"; CharacterCodes2[CharacterCodes2["backspace"] = 8] = "backspace"; CharacterCodes2[CharacterCodes2["formFeed"] = 12] = "formFeed"; CharacterCodes2[CharacterCodes2["byteOrderMark"] = 65279] = "byteOrderMark"; CharacterCodes2[CharacterCodes2["tab"] = 9] = "tab"; CharacterCodes2[CharacterCodes2["verticalTab"] = 11] = "verticalTab"; return CharacterCodes2; })(CharacterCodes || {}); var Extension = /* @__PURE__ */ ((Extension2) => { Extension2["Ts"] = ".ts"; Extension2["Tsx"] = ".tsx"; Extension2["Dts"] = ".d.ts"; Extension2["Js"] = ".js"; Extension2["Jsx"] = ".jsx"; Extension2["Json"] = ".json"; Extension2["TsBuildInfo"] = ".tsbuildinfo"; Extension2["Mjs"] = ".mjs"; Extension2["Mts"] = ".mts"; Extension2["Dmts"] = ".d.mts"; Extension2["Cjs"] = ".cjs"; Extension2["Cts"] = ".cts"; Extension2["Dcts"] = ".d.cts"; return Extension2; })(Extension || {}); var TransformFlags = /* @__PURE__ */ ((TransformFlags3) => { TransformFlags3[TransformFlags3["None"] = 0] = "None"; TransformFlags3[TransformFlags3["ContainsTypeScript"] = 1] = "ContainsTypeScript"; TransformFlags3[TransformFlags3["ContainsJsx"] = 2] = "ContainsJsx"; TransformFlags3[TransformFlags3["ContainsESNext"] = 4] = "ContainsESNext"; TransformFlags3[TransformFlags3["ContainsES2022"] = 8] = "ContainsES2022"; TransformFlags3[TransformFlags3["ContainsES2021"] = 16] = "ContainsES2021"; TransformFlags3[TransformFlags3["ContainsES2020"] = 32] = "ContainsES2020"; TransformFlags3[TransformFlags3["ContainsES2019"] = 64] = "ContainsES2019"; TransformFlags3[TransformFlags3["ContainsES2018"] = 128] = "ContainsES2018"; TransformFlags3[TransformFlags3["ContainsES2017"] = 256] = "ContainsES2017"; TransformFlags3[TransformFlags3["ContainsES2016"] = 512] = "ContainsES2016"; TransformFlags3[TransformFlags3["ContainsES2015"] = 1024] = "ContainsES2015"; TransformFlags3[TransformFlags3["ContainsGenerator"] = 2048] = "ContainsGenerator"; TransformFlags3[TransformFlags3["ContainsDestructuringAssignment"] = 4096] = "ContainsDestructuringAssignment"; TransformFlags3[TransformFlags3["ContainsTypeScriptClassSyntax"] = 8192] = "ContainsTypeScriptClassSyntax"; TransformFlags3[TransformFlags3["ContainsLexicalThis"] = 16384] = "ContainsLexicalThis"; TransformFlags3[TransformFlags3["ContainsRestOrSpread"] = 32768] = "ContainsRestOrSpread"; TransformFlags3[TransformFlags3["ContainsObjectRestOrSpread"] = 65536] = "ContainsObjectRestOrSpread"; TransformFlags3[TransformFlags3["ContainsComputedPropertyName"] = 131072] = "ContainsComputedPropertyName"; TransformFlags3[TransformFlags3["ContainsBlockScopedBinding"] = 262144] = "ContainsBlockScopedBinding"; TransformFlags3[TransformFlags3["ContainsBindingPattern"] = 524288] = "ContainsBindingPattern"; TransformFlags3[TransformFlags3["ContainsYield"] = 1048576] = "ContainsYield"; TransformFlags3[TransformFlags3["ContainsAwait"] = 2097152] = "ContainsAwait"; TransformFlags3[TransformFlags3["ContainsHoistedDeclarationOrCompletion"] = 4194304] = "ContainsHoistedDeclarationOrCompletion"; TransformFlags3[TransformFlags3["ContainsDynamicImport"] = 8388608] = "ContainsDynamicImport"; TransformFlags3[TransformFlags3["ContainsClassFields"] = 16777216] = "ContainsClassFields"; TransformFlags3[TransformFlags3["ContainsDecorators"] = 33554432] = "ContainsDecorators"; TransformFlags3[TransformFlags3["ContainsPossibleTopLevelAwait"] = 67108864] = "ContainsPossibleTopLevelAwait"; TransformFlags3[TransformFlags3["ContainsLexicalSuper"] = 134217728] = "ContainsLexicalSuper"; TransformFlags3[TransformFlags3["ContainsUpdateExpressionForIdentifier"] = 268435456] = "ContainsUpdateExpressionForIdentifier"; TransformFlags3[TransformFlags3["ContainsPrivateIdentifierInExpression"] = 536870912] = "ContainsPrivateIdentifierInExpression"; TransformFlags3[TransformFlags3["HasComputedFlags"] = -2147483648] = "HasComputedFlags"; TransformFlags3[TransformFlags3["AssertTypeScript"] = 1] = "AssertTypeScript"; TransformFlags3[TransformFlags3["AssertJsx"] = 2] = "AssertJsx"; TransformFlags3[TransformFlags3["AssertESNext"] = 4] = "AssertESNext"; TransformFlags3[TransformFlags3["AssertES2022"] = 8] = "AssertES2022"; TransformFlags3[TransformFlags3["AssertES2021"] = 16] = "AssertES2021"; TransformFlags3[TransformFlags3["AssertES2020"] = 32] = "AssertES2020"; TransformFlags3[TransformFlags3["AssertES2019"] = 64] = "AssertES2019"; TransformFlags3[TransformFlags3["AssertES2018"] = 128] = "AssertES2018"; TransformFlags3[TransformFlags3["AssertES2017"] = 256] = "AssertES2017"; TransformFlags3[TransformFlags3["AssertES2016"] = 512] = "AssertES2016"; TransformFlags3[TransformFlags3["AssertES2015"] = 1024] = "AssertES2015"; TransformFlags3[TransformFlags3["AssertGenerator"] = 2048] = "AssertGenerator"; TransformFlags3[TransformFlags3["AssertDestructuringAssignment"] = 4096] = "AssertDestructuringAssignment"; TransformFlags3[TransformFlags3["OuterExpressionExcludes"] = -2147483648] = "OuterExpressionExcludes"; TransformFlags3[TransformFlags3["PropertyAccessExcludes"] = -2147483648] = "PropertyAccessExcludes"; TransformFlags3[TransformFlags3["NodeExcludes"] = -2147483648] = "NodeExcludes"; TransformFlags3[TransformFlags3["ArrowFunctionExcludes"] = -2072174592] = "ArrowFunctionExcludes"; TransformFlags3[TransformFlags3["FunctionExcludes"] = -1937940480] = "FunctionExcludes"; TransformFlags3[TransformFlags3["ConstructorExcludes"] = -1937948672] = "ConstructorExcludes"; TransformFlags3[TransformFlags3["MethodOrAccessorExcludes"] = -2005057536] = "MethodOrAccessorExcludes"; TransformFlags3[TransformFlags3["PropertyExcludes"] = -2013249536] = "PropertyExcludes"; TransformFlags3[TransformFlags3["ClassExcludes"] = -2147344384] = "ClassExcludes"; TransformFlags3[TransformFlags3["ModuleExcludes"] = -1941676032] = "ModuleExcludes"; TransformFlags3[TransformFlags3["TypeExcludes"] = -2] = "TypeExcludes"; TransformFlags3[TransformFlags3["ObjectLiteralExcludes"] = -2147278848] = "ObjectLiteralExcludes"; TransformFlags3[TransformFlags3["ArrayLiteralOrCallOrNewExcludes"] = -2147450880] = "ArrayLiteralOrCallOrNewExcludes"; TransformFlags3[TransformFlags3["VariableDeclarationListExcludes"] = -2146893824] = "VariableDeclarationListExcludes"; TransformFlags3[TransformFlags3["ParameterExcludes"] = -2147483648] = "ParameterExcludes"; TransformFlags3[TransformFlags3["CatchClauseExcludes"] = -2147418112] = "CatchClauseExcludes"; TransformFlags3[TransformFlags3["BindingPatternExcludes"] = -2147450880] = "BindingPatternExcludes"; TransformFlags3[TransformFlags3["ContainsLexicalThisOrSuper"] = 134234112] = "ContainsLexicalThisOrSuper"; TransformFlags3[TransformFlags3["PropertyNamePropagatingFlags"] = 134234112] = "PropertyNamePropagatingFlags"; return TransformFlags3; })(TransformFlags || {}); var SnippetKind = /* @__PURE__ */ ((SnippetKind3) => { SnippetKind3[SnippetKind3["TabStop"] = 0] = "TabStop"; SnippetKind3[SnippetKind3["Placeholder"] = 1] = "Placeholder"; SnippetKind3[SnippetKind3["Choice"] = 2] = "Choice"; SnippetKind3[SnippetKind3["Variable"] = 3] = "Variable"; return SnippetKind3; })(SnippetKind || {}); var EmitFlags = /* @__PURE__ */ ((EmitFlags3) => { EmitFlags3[EmitFlags3["None"] = 0] = "None"; EmitFlags3[EmitFlags3["SingleLine"] = 1] = "SingleLine"; EmitFlags3[EmitFlags3["MultiLine"] = 2] = "MultiLine"; EmitFlags3[EmitFlags3["AdviseOnEmitNode"] = 4] = "AdviseOnEmitNode"; EmitFlags3[EmitFlags3["NoSubstitution"] = 8] = "NoSubstitution"; EmitFlags3[EmitFlags3["CapturesThis"] = 16] = "CapturesThis"; EmitFlags3[EmitFlags3["NoLeadingSourceMap"] = 32] = "NoLeadingSourceMap"; EmitFlags3[EmitFlags3["NoTrailingSourceMap"] = 64] = "NoTrailingSourceMap"; EmitFlags3[EmitFlags3["NoSourceMap"] = 96] = "NoSourceMap"; EmitFlags3[EmitFlags3["NoNestedSourceMaps"] = 128] = "NoNestedSourceMaps"; EmitFlags3[EmitFlags3["NoTokenLeadingSourceMaps"] = 256] = "NoTokenLeadingSourceMaps"; EmitFlags3[EmitFlags3["NoTokenTrailingSourceMaps"] = 512] = "NoTokenTrailingSourceMaps"; EmitFlags3[EmitFlags3["NoTokenSourceMaps"] = 768] = "NoTokenSourceMaps"; EmitFlags3[EmitFlags3["NoLeadingComments"] = 1024] = "NoLeadingComments"; EmitFlags3[EmitFlags3["NoTrailingComments"] = 2048] = "NoTrailingComments"; EmitFlags3[EmitFlags3["NoComments"] = 3072] = "NoComments"; EmitFlags3[EmitFlags3["NoNestedComments"] = 4096] = "NoNestedComments"; EmitFlags3[EmitFlags3["HelperName"] = 8192] = "HelperName"; EmitFlags3[EmitFlags3["ExportName"] = 16384] = "ExportName"; EmitFlags3[EmitFlags3["LocalName"] = 32768] = "LocalName"; EmitFlags3[EmitFlags3["InternalName"] = 65536] = "InternalName"; EmitFlags3[EmitFlags3["Indented"] = 131072] = "Indented"; EmitFlags3[EmitFlags3["NoIndentation"] = 262144] = "NoIndentation"; EmitFlags3[EmitFlags3["AsyncFunctionBody"] = 524288] = "AsyncFunctionBody"; EmitFlags3[EmitFlags3["ReuseTempVariableScope"] = 1048576] = "ReuseTempVariableScope"; EmitFlags3[EmitFlags3["CustomPrologue"] = 2097152] = "CustomPrologue"; EmitFlags3[EmitFlags3["NoHoisting"] = 4194304] = "NoHoisting"; EmitFlags3[EmitFlags3["Iterator"] = 8388608] = "Iterator"; EmitFlags3[EmitFlags3["NoAsciiEscaping"] = 16777216] = "NoAsciiEscaping"; return EmitFlags3; })(EmitFlags || {}); var InternalEmitFlags = /* @__PURE__ */ ((InternalEmitFlags3) => { InternalEmitFlags3[InternalEmitFlags3["None"] = 0] = "None"; InternalEmitFlags3[InternalEmitFlags3["TypeScriptClassWrapper"] = 1] = "TypeScriptClassWrapper"; InternalEmitFlags3[InternalEmitFlags3["NeverApplyImportHelper"] = 2] = "NeverApplyImportHelper"; InternalEmitFlags3[InternalEmitFlags3["IgnoreSourceNewlines"] = 4] = "IgnoreSourceNewlines"; InternalEmitFlags3[InternalEmitFlags3["Immutable"] = 8] = "Immutable"; InternalEmitFlags3[InternalEmitFlags3["IndirectCall"] = 16] = "IndirectCall"; InternalEmitFlags3[InternalEmitFlags3["TransformPrivateStaticElements"] = 32] = "TransformPrivateStaticElements"; return InternalEmitFlags3; })(InternalEmitFlags || {}); var LanguageFeatureMinimumTarget = { Classes: 2, ForOf: 2, Generators: 2, Iteration: 2, SpreadElements: 2, RestElements: 2, TaggedTemplates: 2, DestructuringAssignment: 2, BindingPatterns: 2, ArrowFunctions: 2, BlockScopedVariables: 2, ObjectAssign: 2, RegularExpressionFlagsUnicode: 2, RegularExpressionFlagsSticky: 2, Exponentiation: 3, AsyncFunctions: 4, ForAwaitOf: 5, AsyncGenerators: 5, AsyncIteration: 5, ObjectSpreadRest: 5, RegularExpressionFlagsDotAll: 5, BindinglessCatch: 6, BigInt: 7, NullishCoalesce: 7, OptionalChaining: 7, LogicalAssignment: 8, TopLevelAwait: 9, ClassFields: 9, PrivateNamesAndClassStaticBlocks: 9, RegularExpressionFlagsHasIndices: 9, ShebangComments: 10, RegularExpressionFlagsUnicodeSets: 11, UsingAndAwaitUsing: 99, ClassAndClassElementDecorators: 99 }; var ExternalEmitHelpers = /* @__PURE__ */ ((ExternalEmitHelpers2) => { ExternalEmitHelpers2[ExternalEmitHelpers2["Extends"] = 1] = "Extends"; ExternalEmitHelpers2[ExternalEmitHelpers2["Assign"] = 2] = "Assign"; ExternalEmitHelpers2[ExternalEmitHelpers2["Rest"] = 4] = "Rest"; ExternalEmitHelpers2[ExternalEmitHelpers2["Decorate"] = 8] = "Decorate"; ExternalEmitHelpers2[ExternalEmitHelpers2["ESDecorateAndRunInitializers"] = 8] = "ESDecorateAndRunInitializers"; ExternalEmitHelpers2[ExternalEmitHelpers2["Metadata"] = 16] = "Metadata"; ExternalEmitHelpers2[ExternalEmitHelpers2["Param"] = 32] = "Param"; ExternalEmitHelpers2[ExternalEmitHelpers2["Awaiter"] = 64] = "Awaiter"; ExternalEmitHelpers2[ExternalEmitHelpers2["Generator"] = 128] = "Generator"; ExternalEmitHelpers2[ExternalEmitHelpers2["Values"] = 256] = "Values"; ExternalEmitHelpers2[ExternalEmitHelpers2["Read"] = 512] = "Read"; ExternalEmitHelpers2[ExternalEmitHelpers2["SpreadArray"] = 1024] = "SpreadArray"; ExternalEmitHelpers2[ExternalEmitHelpers2["Await"] = 2048] = "Await"; ExternalEmitHelpers2[ExternalEmitHelpers2["AsyncGenerator"] = 4096] = "AsyncGenerator"; ExternalEmitHelpers2[ExternalEmitHelpers2["AsyncDelegator"] = 8192] = "AsyncDelegator"; ExternalEmitHelpers2[ExternalEmitHelpers2["AsyncValues"] = 16384] = "AsyncValues"; ExternalEmitHelpers2[ExternalEmitHelpers2["ExportStar"] = 32768] = "ExportStar"; ExternalEmitHelpers2[ExternalEmitHelpers2["ImportStar"] = 65536] = "ImportStar"; ExternalEmitHelpers2[ExternalEmitHelpers2["ImportDefault"] = 131072] = "ImportDefault"; ExternalEmitHelpers2[ExternalEmitHelpers2["MakeTemplateObject"] = 262144] = "MakeTemplateObject"; ExternalEmitHelpers2[ExternalEmitHelpers2["ClassPrivateFieldGet"] = 524288] = "ClassPrivateFieldGet"; ExternalEmitHelpers2[ExternalEmitHelpers2["ClassPrivateFieldSet"] = 1048576] = "ClassPrivateFieldSet"; ExternalEmitHelpers2[ExternalEmitHelpers2["ClassPrivateFieldIn"] = 2097152] = "ClassPrivateFieldIn"; ExternalEmitHelpers2[ExternalEmitHelpers2["SetFunctionName"] = 4194304] = "SetFunctionName"; ExternalEmitHelpers2[ExternalEmitHelpers2["PropKey"] = 8388608] = "PropKey"; ExternalEmitHelpers2[ExternalEmitHelpers2["AddDisposableResourceAndDisposeResources"] = 16777216] = "AddDisposableResourceAndDisposeResources"; ExternalEmitHelpers2[ExternalEmitHelpers2["RewriteRelativeImportExtension"] = 33554432] = "RewriteRelativeImportExtension"; ExternalEmitHelpers2[ExternalEmitHelpers2["FirstEmitHelper"] = 1] = "FirstEmitHelper"; ExternalEmitHelpers2[ExternalEmitHelpers2["LastEmitHelper"] = 16777216] = "LastEmitHelper"; ExternalEmitHelpers2[ExternalEmitHelpers2["ForOfIncludes"] = 256] = "ForOfIncludes"; ExternalEmitHelpers2[ExternalEmitHelpers2["ForAwaitOfIncludes"] = 16384] = "ForAwaitOfIncludes"; ExternalEmitHelpers2[ExternalEmitHelpers2["AsyncGeneratorIncludes"] = 6144] = "AsyncGeneratorIncludes"; ExternalEmitHelpers2[ExternalEmitHelpers2["AsyncDelegatorIncludes"] = 26624] = "AsyncDelegatorIncludes"; ExternalEmitHelpers2[ExternalEmitHelpers2["SpreadIncludes"] = 1536] = "SpreadIncludes"; return ExternalEmitHelpers2; })(ExternalEmitHelpers || {}); var EmitHint = /* @__PURE__ */ ((EmitHint5) => { EmitHint5[EmitHint5["SourceFile"] = 0] = "SourceFile"; EmitHint5[EmitHint5["Expression"] = 1] = "Expression"; EmitHint5[EmitHint5["IdentifierName"] = 2] = "IdentifierName"; EmitHint5[EmitHint5["MappedTypeParameter"] = 3] = "MappedTypeParameter"; EmitHint5[EmitHint5["Unspecified"] = 4] = "Unspecified"; EmitHint5[EmitHint5["EmbeddedStatement"] = 5] = "EmbeddedStatement"; EmitHint5[EmitHint5["JsxAttributeValue"] = 6] = "JsxAttributeValue"; EmitHint5[EmitHint5["ImportTypeNodeAttributes"] = 7] = "ImportTypeNodeAttributes"; return EmitHint5; })(EmitHint || {}); var OuterExpressionKinds = /* @__PURE__ */ ((OuterExpressionKinds2) => { OuterExpressionKinds2[OuterExpressionKinds2["Parentheses"] = 1] = "Parentheses"; OuterExpressionKinds2[OuterExpressionKinds2["TypeAssertions"] = 2] = "TypeAssertions"; OuterExpressionKinds2[OuterExpressionKinds2["NonNullAssertions"] = 4] = "NonNullAssertions"; OuterExpressionKinds2[OuterExpressionKinds2["PartiallyEmittedExpressions"] = 8] = "PartiallyEmittedExpressions"; OuterExpressionKinds2[OuterExpressionKinds2["ExpressionsWithTypeArguments"] = 16] = "ExpressionsWithTypeArguments"; OuterExpressionKinds2[OuterExpressionKinds2["Satisfies"] = 32] = "Satisfies"; OuterExpressionKinds2[OuterExpressionKinds2["Assertions"] = 38] = "Assertions"; OuterExpressionKinds2[OuterExpressionKinds2["All"] = 63] = "All"; OuterExpressionKinds2[OuterExpressionKinds2["ExcludeJSDocTypeAssertion"] = -2147483648] = "ExcludeJSDocTypeAssertion"; return OuterExpressionKinds2; })(OuterExpressionKinds || {}); var LexicalEnvironmentFlags = /* @__PURE__ */ ((LexicalEnvironmentFlags2) => { LexicalEnvironmentFlags2[LexicalEnvironmentFlags2["None"] = 0] = "None"; LexicalEnvironmentFlags2[LexicalEnvironmentFlags2["InParameters"] = 1] = "InParameters"; LexicalEnvironmentFlags2[LexicalEnvironmentFlags2["VariablesHoistedInParameters"] = 2] = "VariablesHoistedInParameters"; return LexicalEnvironmentFlags2; })(LexicalEnvironmentFlags || {}); var ListFormat = /* @__PURE__ */ ((ListFormat2) => { ListFormat2[ListFormat2["None"] = 0] = "None"; ListFormat2[ListFormat2["SingleLine"] = 0] = "SingleLine"; ListFormat2[ListFormat2["MultiLine"] = 1] = "MultiLine"; ListFormat2[ListFormat2["PreserveLines"] = 2] = "PreserveLines"; ListFormat2[ListFormat2["LinesMask"] = 3] = "LinesMask"; ListFormat2[ListFormat2["NotDelimited"] = 0] = "NotDelimited"; ListFormat2[ListFormat2["BarDelimited"] = 4] = "BarDelimited"; ListFormat2[ListFormat2["AmpersandDelimited"] = 8] = "AmpersandDelimited"; ListFormat2[ListFormat2["CommaDelimited"] = 16] = "CommaDelimited"; ListFormat2[ListFormat2["AsteriskDelimited"] = 32] = "AsteriskDelimited"; ListFormat2[ListFormat2["DelimitersMask"] = 60] = "DelimitersMask"; ListFormat2[ListFormat2["AllowTrailingComma"] = 64] = "AllowTrailingComma"; ListFormat2[ListFormat2["Indented"] = 128] = "Indented"; ListFormat2[ListFormat2["SpaceBetweenBraces"] = 256] = "SpaceBetweenBraces"; ListFormat2[ListFormat2["SpaceBetweenSiblings"] = 512] = "SpaceBetweenSiblings"; ListFormat2[ListFormat2["Braces"] = 1024] = "Braces"; ListFormat2[ListFormat2["Parenthesis"] = 2048] = "Parenthesis"; ListFormat2[ListFormat2["AngleBrackets"] = 4096] = "AngleBrackets"; ListFormat2[ListFormat2["SquareBrackets"] = 8192] = "SquareBrackets"; ListFormat2[ListFormat2["BracketsMask"] = 15360] = "BracketsMask"; ListFormat2[ListFormat2["OptionalIfUndefined"] = 16384] = "OptionalIfUndefined"; ListFormat2[ListFormat2["OptionalIfEmpty"] = 32768] = "OptionalIfEmpty"; ListFormat2[ListFormat2["Optional"] = 49152] = "Optional"; ListFormat2[ListFormat2["PreferNewLine"] = 65536] = "PreferNewLine"; ListFormat2[ListFormat2["NoTrailingNewLine"] = 131072] = "NoTrailingNewLine"; ListFormat2[ListFormat2["NoInterveningComments"] = 262144] = "NoInterveningComments"; ListFormat2[ListFormat2["NoSpaceIfEmpty"] = 524288] = "NoSpaceIfEmpty"; ListFormat2[ListFormat2["SingleElement"] = 1048576] = "SingleElement"; ListFormat2[ListFormat2["SpaceAfterList"] = 2097152] = "SpaceAfterList"; ListFormat2[ListFormat2["Modifiers"] = 2359808] = "Modifiers"; ListFormat2[ListFormat2["HeritageClauses"] = 512] = "HeritageClauses"; ListFormat2[ListFormat2["SingleLineTypeLiteralMembers"] = 768] = "SingleLineTypeLiteralMembers"; ListFormat2[ListFormat2["MultiLineTypeLiteralMembers"] = 32897] = "MultiLineTypeLiteralMembers"; ListFormat2[ListFormat2["SingleLineTupleTypeElements"] = 528] = "SingleLineTupleTypeElements"; ListFormat2[ListFormat2["MultiLineTupleTypeElements"] = 657] = "MultiLineTupleTypeElements"; ListFormat2[ListFormat2["UnionTypeConstituents"] = 516] = "UnionTypeConstituents"; ListFormat2[ListFormat2["IntersectionTypeConstituents"] = 520] = "IntersectionTypeConstituents"; ListFormat2[ListFormat2["ObjectBindingPatternElements"] = 525136] = "ObjectBindingPatternElements"; ListFormat2[ListFormat2["ArrayBindingPatternElements"] = 524880] = "ArrayBindingPatternElements"; ListFormat2[ListFormat2["ObjectLiteralExpressionProperties"] = 526226] = "ObjectLiteralExpressionProperties"; ListFormat2[ListFormat2["ImportAttributes"] = 526226] = "ImportAttributes"; ListFormat2[ListFormat2["ImportClauseEntries"] = 526226] = "ImportClauseEntries"; ListFormat2[ListFormat2["ArrayLiteralExpressionElements"] = 8914] = "ArrayLiteralExpressionElements"; ListFormat2[ListFormat2["CommaListElements"] = 528] = "CommaListElements"; ListFormat2[ListFormat2["CallExpressionArguments"] = 2576] = "CallExpressionArguments"; ListFormat2[ListFormat2["NewExpressionArguments"] = 18960] = "NewExpressionArguments"; ListFormat2[ListFormat2["TemplateExpressionSpans"] = 262144] = "TemplateExpressionSpans"; ListFormat2[ListFormat2["SingleLineBlockStatements"] = 768] = "SingleLineBlockStatements"; ListFormat2[ListFormat2["MultiLineBlockStatements"] = 129] = "MultiLineBlockStatements"; ListFormat2[ListFormat2["VariableDeclarationList"] = 528] = "VariableDeclarationList"; ListFormat2[ListFormat2["SingleLineFunctionBodyStatements"] = 768] = "SingleLineFunctionBodyStatements"; ListFormat2[ListFormat2["MultiLineFunctionBodyStatements"] = 1] = "MultiLineFunctionBodyStatements"; ListFormat2[ListFormat2["ClassHeritageClauses"] = 0] = "ClassHeritageClauses"; ListFormat2[ListFormat2["ClassMembers"] = 129] = "ClassMembers"; ListFormat2[ListFormat2["InterfaceMembers"] = 129] = "InterfaceMembers"; ListFormat2[ListFormat2["EnumMembers"] = 145] = "EnumMembers"; ListFormat2[ListFormat2["CaseBlockClauses"] = 129] = "CaseBlockClauses"; ListFormat2[ListFormat2["NamedImportsOrExportsElements"] = 525136] = "NamedImportsOrExportsElements"; ListFormat2[ListFormat2["JsxElementOrFragmentChildren"] = 262144] = "JsxElementOrFragmentChildren"; ListFormat2[ListFormat2["JsxElementAttributes"] = 262656] = "JsxElementAttributes"; ListFormat2[ListFormat2["CaseOrDefaultClauseStatements"] = 163969] = "CaseOrDefaultClauseStatements"; ListFormat2[ListFormat2["HeritageClauseTypes"] = 528] = "HeritageClauseTypes"; ListFormat2[ListFormat2["SourceFileStatements"] = 131073] = "SourceFileStatements"; ListFormat2[ListFormat2["Decorators"] = 2146305] = "Decorators"; ListFormat2[ListFormat2["TypeArguments"] = 53776] = "TypeArguments"; ListFormat2[ListFormat2["TypeParameters"] = 53776] = "TypeParameters"; ListFormat2[ListFormat2["Parameters"] = 2576] = "Parameters"; ListFormat2[ListFormat2["IndexSignatureParameters"] = 8848] = "IndexSignatureParameters"; ListFormat2[ListFormat2["JSDocComment"] = 33] = "JSDocComment"; return ListFormat2; })(ListFormat || {}); var PragmaKindFlags = /* @__PURE__ */ ((PragmaKindFlags2) => { PragmaKindFlags2[PragmaKindFlags2["None"] = 0] = "None"; PragmaKindFlags2[PragmaKindFlags2["TripleSlashXML"] = 1] = "TripleSlashXML"; PragmaKindFlags2[PragmaKindFlags2["SingleLine"] = 2] = "SingleLine"; PragmaKindFlags2[PragmaKindFlags2["MultiLine"] = 4] = "MultiLine"; PragmaKindFlags2[PragmaKindFlags2["All"] = 7] = "All"; PragmaKindFlags2[PragmaKindFlags2["Default"] = 7] = "Default"; return PragmaKindFlags2; })(PragmaKindFlags || {}); var commentPragmas = { reference: { args: [ { name: "types", optional: true, captureSpan: true }, { name: "lib", optional: true, captureSpan: true }, { name: "path", optional: true, captureSpan: true }, { name: "no-default-lib", optional: true }, { name: "resolution-mode", optional: true }, { name: "preserve", optional: true } ], kind: 1 }, "amd-dependency": { args: [{ name: "path" }, { name: "name", optional: true }], kind: 1 }, "amd-module": { args: [{ name: "name" }], kind: 1 }, "ts-check": { kind: 2 }, "ts-nocheck": { kind: 2 }, jsx: { args: [{ name: "factory" }], kind: 4 }, jsxfrag: { args: [{ name: "factory" }], kind: 4 }, jsximportsource: { args: [{ name: "factory" }], kind: 4 }, jsxruntime: { args: [{ name: "factory" }], kind: 4 } }; var JSDocParsingMode = /* @__PURE__ */ ((JSDocParsingMode6) => { JSDocParsingMode6[JSDocParsingMode6["ParseAll"] = 0] = "ParseAll"; JSDocParsingMode6[JSDocParsingMode6["ParseNone"] = 1] = "ParseNone"; JSDocParsingMode6[JSDocParsingMode6["ParseForTypeErrors"] = 2] = "ParseForTypeErrors"; JSDocParsingMode6[JSDocParsingMode6["ParseForTypeInfo"] = 3] = "ParseForTypeInfo"; return JSDocParsingMode6; })(JSDocParsingMode || {}); function generateDjb2Hash(data) { let acc = 5381; for (let i = 0;i < data.length; i++) { acc = (acc << 5) + acc + data.charCodeAt(i); } return acc.toString(); } function setStackTraceLimit() { if (Error.stackTraceLimit < 100) { Error.stackTraceLimit = 100; } } var FileWatcherEventKind = /* @__PURE__ */ ((FileWatcherEventKind2) => { FileWatcherEventKind2[FileWatcherEventKind2["Created"] = 0] = "Created"; FileWatcherEventKind2[FileWatcherEventKind2["Changed"] = 1] = "Changed"; FileWatcherEventKind2[FileWatcherEventKind2["Deleted"] = 2] = "Deleted"; return FileWatcherEventKind2; })(FileWatcherEventKind || {}); var PollingInterval = /* @__PURE__ */ ((PollingInterval3) => { PollingInterval3[PollingInterval3["High"] = 2000] = "High"; PollingInterval3[PollingInterval3["Medium"] = 500] = "Medium"; PollingInterval3[PollingInterval3["Low"] = 250] = "Low"; return PollingInterval3; })(PollingInterval || {}); var missingFileModifiedTime = /* @__PURE__ */ new Date(0); function getModifiedTime(host, fileName) { return host.getModifiedTime(fileName) || missingFileModifiedTime; } function createPollingIntervalBasedLevels(levels) { return { [250]: levels.Low, [500]: levels.Medium, [2000]: levels.High }; } var defaultChunkLevels = { Low: 32, Medium: 64, High: 256 }; var pollingChunkSize = createPollingIntervalBasedLevels(defaultChunkLevels); var unchangedPollThresholds = createPollingIntervalBasedLevels(defaultChunkLevels); function setCustomPollingValues(system) { if (!system.getEnvironmentVariable) { return; } const pollingIntervalChanged = setCustomLevels("TSC_WATCH_POLLINGINTERVAL", PollingInterval); pollingChunkSize = getCustomPollingBasedLevels("TSC_WATCH_POLLINGCHUNKSIZE", defaultChunkLevels) || pollingChunkSize; unchangedPollThresholds = getCustomPollingBasedLevels("TSC_WATCH_UNCHANGEDPOLLTHRESHOLDS", defaultChunkLevels) || unchangedPollThresholds; function getLevel(envVar, level) { return system.getEnvironmentVariable(`${envVar}_${level.toUpperCase()}`); } function getCustomLevels(baseVariable) { let customLevels; setCustomLevel("Low"); setCustomLevel("Medium"); setCustomLevel("High"); return customLevels; function setCustomLevel(level) { const customLevel = getLevel(baseVariable, level); if (customLevel) { (customLevels || (customLevels = {}))[level] = Number(customLevel); } } } function setCustomLevels(baseVariable, levels) { const customLevels = getCustomLevels(baseVariable); if (customLevels) { setLevel("Low"); setLevel("Medium"); setLevel("High"); return true; } return false; function setLevel(level) { levels[level] = customLevels[level] || levels[level]; } } function getCustomPollingBasedLevels(baseVariable, defaultLevels) { const customLevels = getCustomLevels(baseVariable); return (pollingIntervalChanged || customLevels) && createPollingIntervalBasedLevels(customLevels ? { ...defaultLevels, ...customLevels } : defaultLevels); } } function pollWatchedFileQueue(host, queue, pollIndex, chunkSize, callbackOnWatchFileStat) { let definedValueCopyToIndex = pollIndex; for (let canVisit = queue.length;chunkSize && canVisit; nextPollIndex(), canVisit--) { const watchedFile = queue[pollIndex]; if (!watchedFile) { continue; } else if (watchedFile.isClosed) { queue[pollIndex] = undefined; continue; } chunkSize--; const fileChanged = onWatchedFileStat(watchedFile, getModifiedTime(host, watchedFile.fileName)); if (watchedFile.isClosed) { queue[pollIndex] = undefined; continue; } callbackOnWatchFileStat == null || callbackOnWatchFileStat(watchedFile, pollIndex, fileChanged); if (queue[pollIndex]) { if (definedValueCopyToIndex < pollIndex) { queue[definedValueCopyToIndex] = watchedFile; queue[pollIndex] = undefined; } definedValueCopyToIndex++; } } return pollIndex; function nextPollIndex() { pollIndex++; if (pollIndex === queue.length) { if (definedValueCopyToIndex < pollIndex) { queue.length = definedValueCopyToIndex; } pollIndex = 0; definedValueCopyToIndex = 0; } } } function createDynamicPriorityPollingWatchFile(host) { const watchedFiles = []; const changedFilesInLastPoll = []; const lowPollingIntervalQueue = createPollingIntervalQueue(250); const mediumPollingIntervalQueue = createPollingIntervalQueue(500); const highPollingIntervalQueue = createPollingIntervalQueue(2000); return watchFile2; function watchFile2(fileName, callback, defaultPollingInterval) { const file = { fileName, callback, unchangedPolls: 0, mtime: getModifiedTime(host, fileName) }; watchedFiles.push(file); addToPollingIntervalQueue(file, defaultPollingInterval); return { close: () => { file.isClosed = true; unorderedRemoveItem(watchedFiles, file); } }; } function createPollingIntervalQueue(pollingInterval) { const queue = []; queue.pollingInterval = pollingInterval; queue.pollIndex = 0; queue.pollScheduled = false; return queue; } function pollPollingIntervalQueue(_timeoutType, queue) { queue.pollIndex = pollQueue(queue, queue.pollingInterval, queue.pollIndex, pollingChunkSize[queue.pollingInterval]); if (queue.length) { scheduleNextPoll(queue.pollingInterval); } else { Debug.assert(queue.pollIndex === 0); queue.pollScheduled = false; } } function pollLowPollingIntervalQueue(_timeoutType, queue) { pollQueue(changedFilesInLastPoll, 250, 0, changedFilesInLastPoll.length); pollPollingIntervalQueue(_timeoutType, queue); if (!queue.pollScheduled && changedFilesInLastPoll.length) { scheduleNextPoll(250); } } function pollQueue(queue, pollingInterval, pollIndex, chunkSize) { return pollWatchedFileQueue(host, queue, pollIndex, chunkSize, onWatchFileStat); function onWatchFileStat(watchedFile, pollIndex2, fileChanged) { if (fileChanged) { watchedFile.unchangedPolls = 0; if (queue !== changedFilesInLastPoll) { queue[pollIndex2] = undefined; addChangedFileToLowPollingIntervalQueue(watchedFile); } } else if (watchedFile.unchangedPolls !== unchangedPollThresholds[pollingInterval]) { watchedFile.unchangedPolls++; } else if (queue === changedFilesInLastPoll) { watchedFile.unchangedPolls = 1; queue[pollIndex2] = undefined; addToPollingIntervalQueue(watchedFile, 250); } else if (pollingInterval !== 2000) { watchedFile.unchangedPolls++; queue[pollIndex2] = undefined; addToPollingIntervalQueue(watchedFile, pollingInterval === 250 ? 500 : 2000); } } } function pollingIntervalQueue(pollingInterval) { switch (pollingInterval) { case 250: return lowPollingIntervalQueue; case 500: return mediumPollingIntervalQueue; case 2000: return highPollingIntervalQueue; } } function addToPollingIntervalQueue(file, pollingInterval) { pollingIntervalQueue(pollingInterval).push(file); scheduleNextPollIfNotAlreadyScheduled(pollingInterval); } function addChangedFileToLowPollingIntervalQueue(file) { changedFilesInLastPoll.push(file); scheduleNextPollIfNotAlreadyScheduled(250); } function scheduleNextPollIfNotAlreadyScheduled(pollingInterval) { if (!pollingIntervalQueue(pollingInterval).pollScheduled) { scheduleNextPoll(pollingInterval); } } function scheduleNextPoll(pollingInterval) { pollingIntervalQueue(pollingInterval).pollScheduled = host.setTimeout(pollingInterval === 250 ? pollLowPollingIntervalQueue : pollPollingIntervalQueue, pollingInterval, pollingInterval === 250 ? "pollLowPollingIntervalQueue" : "pollPollingIntervalQueue", pollingIntervalQueue(pollingInterval)); } } function createUseFsEventsOnParentDirectoryWatchFile(fsWatch, useCaseSensitiveFileNames2, getModifiedTime3, fsWatchWithTimestamp) { const fileWatcherCallbacks = createMultiMap(); const fileTimestamps = fsWatchWithTimestamp ? /* @__PURE__ */ new Map : undefined; const dirWatchers = /* @__PURE__ */ new Map; const toCanonicalName = createGetCanonicalFileName(useCaseSensitiveFileNames2); return nonPollingWatchFile; function nonPollingWatchFile(fileName, callback, _pollingInterval, fallbackOptions) { const filePath = toCanonicalName(fileName); if (fileWatcherCallbacks.add(filePath, callback).length === 1 && fileTimestamps) { fileTimestamps.set(filePath, getModifiedTime3(fileName) || missingFileModifiedTime); } const dirPath = getDirectoryPath(filePath) || "."; const watcher = dirWatchers.get(dirPath) || createDirectoryWatcher(getDirectoryPath(fileName) || ".", dirPath, fallbackOptions); watcher.referenceCount++; return { close: () => { if (watcher.referenceCount === 1) { watcher.close(); dirWatchers.delete(dirPath); } else { watcher.referenceCount--; } fileWatcherCallbacks.remove(filePath, callback); } }; } function createDirectoryWatcher(dirName, dirPath, fallbackOptions) { const watcher = fsWatch(dirName, 1, (eventName, relativeFileName) => { if (!isString(relativeFileName)) return; const fileName = getNormalizedAbsolutePath(relativeFileName, dirName); const filePath = toCanonicalName(fileName); const callbacks = fileName && fileWatcherCallbacks.get(filePath); if (callbacks) { let currentModifiedTime; let eventKind = 1; if (fileTimestamps) { const existingTime = fileTimestamps.get(filePath); if (eventName === "change") { currentModifiedTime = getModifiedTime3(fileName) || missingFileModifiedTime; if (currentModifiedTime.getTime() === existingTime.getTime()) return; } currentModifiedTime || (currentModifiedTime = getModifiedTime3(fileName) || missingFileModifiedTime); fileTimestamps.set(filePath, currentModifiedTime); if (existingTime === missingFileModifiedTime) eventKind = 0; else if (currentModifiedTime === missingFileModifiedTime) eventKind = 2; } for (const fileCallback of callbacks) { fileCallback(fileName, eventKind, currentModifiedTime); } } }, false, 500, fallbackOptions); watcher.referenceCount = 0; dirWatchers.set(dirPath, watcher); return watcher; } } function createFixedChunkSizePollingWatchFile(host) { const watchedFiles = []; let pollIndex = 0; let pollScheduled; return watchFile2; function watchFile2(fileName, callback) { const file = { fileName, callback, mtime: getModifiedTime(host, fileName) }; watchedFiles.push(file); scheduleNextPoll(); return { close: () => { file.isClosed = true; unorderedRemoveItem(watchedFiles, file); } }; } function pollQueue() { pollScheduled = undefined; pollIndex = pollWatchedFileQueue(host, watchedFiles, pollIndex, pollingChunkSize[250]); scheduleNextPoll(); } function scheduleNextPoll() { if (!watchedFiles.length || pollScheduled) return; pollScheduled = host.setTimeout(pollQueue, 2000, "pollQueue"); } } function createSingleWatcherPerName(cache, useCaseSensitiveFileNames2, name, callback, createWatcher) { const toCanonicalFileName = createGetCanonicalFileName(useCaseSensitiveFileNames2); const path = toCanonicalFileName(name); const existing = cache.get(path); if (existing) { existing.callbacks.push(callback); } else { cache.set(path, { watcher: createWatcher((param1, param2, param3) => { var _a; return (_a = cache.get(path)) == null ? undefined : _a.callbacks.slice().forEach((cb) => cb(param1, param2, param3)); }), callbacks: [callback] }); } return { close: () => { const watcher = cache.get(path); if (!watcher) return; if (!orderedRemoveItem(watcher.callbacks, callback) || watcher.callbacks.length) return; cache.delete(path); closeFileWatcherOf(watcher); } }; } function onWatchedFileStat(watchedFile, modifiedTime) { const oldTime = watchedFile.mtime.getTime(); const newTime = modifiedTime.getTime(); if (oldTime !== newTime) { watchedFile.mtime = modifiedTime; watchedFile.callback(watchedFile.fileName, getFileWatcherEventKind(oldTime, newTime), modifiedTime); return true; } return false; } function getFileWatcherEventKind(oldTime, newTime) { return oldTime === 0 ? 0 : newTime === 0 ? 2 : 1; } var ignoredPaths = ["/node_modules/.", "/.git", "/.#"]; var curSysLog = noop; function sysLog(s) { return curSysLog(s); } function setSysLog(logger) { curSysLog = logger; } function createDirectoryWatcherSupportingRecursive({ watchDirectory, useCaseSensitiveFileNames: useCaseSensitiveFileNames2, getCurrentDirectory, getAccessibleSortedChildDirectories, fileSystemEntryExists, realpath, setTimeout: setTimeout2, clearTimeout: clearTimeout2 }) { const cache = /* @__PURE__ */ new Map; const callbackCache = createMultiMap(); const cacheToUpdateChildWatches = /* @__PURE__ */ new Map; let timerToUpdateChildWatches; const filePathComparer = getStringComparer(!useCaseSensitiveFileNames2); const toCanonicalFilePath = createGetCanonicalFileName(useCaseSensitiveFileNames2); return (dirName, callback, recursive, options) => recursive ? createDirectoryWatcher(dirName, options, callback) : watchDirectory(dirName, callback, recursive, options); function createDirectoryWatcher(dirName, options, callback, link) { const dirPath = toCanonicalFilePath(dirName); let directoryWatcher = cache.get(dirPath); if (directoryWatcher) { directoryWatcher.refCount++; } else { directoryWatcher = { watcher: watchDirectory(dirName, (fileName) => { var _a; if (isIgnoredPath(fileName, options)) return; if (options == null ? undefined : options.synchronousWatchDirectory) { if (!((_a = cache.get(dirPath)) == null ? undefined : _a.targetWatcher)) invokeCallbacks(dirName, dirPath, fileName); updateChildWatches(dirName, dirPath, options); } else { nonSyncUpdateChildWatches(dirName, dirPath, fileName, options); } }, false, options), refCount: 1, childWatches: emptyArray, targetWatcher: undefined, links: undefined }; cache.set(dirPath, directoryWatcher); updateChildWatches(dirName, dirPath, options); } if (link) (directoryWatcher.links ?? (directoryWatcher.links = /* @__PURE__ */ new Set)).add(link); const callbackToAdd = callback && { dirName, callback }; if (callbackToAdd) { callbackCache.add(dirPath, callbackToAdd); } return { dirName, close: () => { var _a; const directoryWatcher2 = Debug.checkDefined(cache.get(dirPath)); if (callbackToAdd) callbackCache.remove(dirPath, callbackToAdd); if (link) (_a = directoryWatcher2.links) == null || _a.delete(link); directoryWatcher2.refCount--; if (directoryWatcher2.refCount) return; cache.delete(dirPath); directoryWatcher2.links = undefined; closeFileWatcherOf(directoryWatcher2); closeTargetWatcher(directoryWatcher2); directoryWatcher2.childWatches.forEach(closeFileWatcher); } }; } function invokeCallbacks(dirName, dirPath, fileNameOrInvokeMap, fileNames) { var _a, _b; let fileName; let invokeMap; if (isString(fileNameOrInvokeMap)) { fileName = fileNameOrInvokeMap; } else { invokeMap = fileNameOrInvokeMap; } callbackCache.forEach((callbacks, rootDirName) => { if (invokeMap && invokeMap.get(rootDirName) === true) return; if (rootDirName === dirPath || startsWith(dirPath, rootDirName) && dirPath[rootDirName.length] === directorySeparator) { if (invokeMap) { if (fileNames) { const existing = invokeMap.get(rootDirName); if (existing) { existing.push(...fileNames); } else { invokeMap.set(rootDirName, fileNames.slice()); } } else { invokeMap.set(rootDirName, true); } } else { callbacks.forEach(({ callback }) => callback(fileName)); } } }); (_b = (_a = cache.get(dirPath)) == null ? undefined : _a.links) == null || _b.forEach((link) => { const toPathInLink = (fileName2) => combinePaths(link, getRelativePathFromDirectory(dirName, fileName2, toCanonicalFilePath)); if (invokeMap) { invokeCallbacks(link, toCanonicalFilePath(link), invokeMap, fileNames == null ? undefined : fileNames.map(toPathInLink)); } else { invokeCallbacks(link, toCanonicalFilePath(link), toPathInLink(fileName)); } }); } function nonSyncUpdateChildWatches(dirName, dirPath, fileName, options) { const parentWatcher = cache.get(dirPath); if (parentWatcher && fileSystemEntryExists(dirName, 1)) { scheduleUpdateChildWatches(dirName, dirPath, fileName, options); return; } invokeCallbacks(dirName, dirPath, fileName); closeTargetWatcher(parentWatcher); removeChildWatches(parentWatcher); } function scheduleUpdateChildWatches(dirName, dirPath, fileName, options) { const existing = cacheToUpdateChildWatches.get(dirPath); if (existing) { existing.fileNames.push(fileName); } else { cacheToUpdateChildWatches.set(dirPath, { dirName, options, fileNames: [fileName] }); } if (timerToUpdateChildWatches) { clearTimeout2(timerToUpdateChildWatches); timerToUpdateChildWatches = undefined; } timerToUpdateChildWatches = setTimeout2(onTimerToUpdateChildWatches, 1000, "timerToUpdateChildWatches"); } function onTimerToUpdateChildWatches() { var _a; timerToUpdateChildWatches = undefined; sysLog(`sysLog:: onTimerToUpdateChildWatches:: ${cacheToUpdateChildWatches.size}`); const start = timestamp(); const invokeMap = /* @__PURE__ */ new Map; while (!timerToUpdateChildWatches && cacheToUpdateChildWatches.size) { const result = cacheToUpdateChildWatches.entries().next(); Debug.assert(!result.done); const { value: [dirPath, { dirName, options, fileNames }] } = result; cacheToUpdateChildWatches.delete(dirPath); const hasChanges = updateChildWatches(dirName, dirPath, options); if (!((_a = cache.get(dirPath)) == null ? undefined : _a.targetWatcher)) invokeCallbacks(dirName, dirPath, invokeMap, hasChanges ? undefined : fileNames); } sysLog(`sysLog:: invokingWatchers:: Elapsed:: ${timestamp() - start}ms:: ${cacheToUpdateChildWatches.size}`); callbackCache.forEach((callbacks, rootDirName) => { const existing = invokeMap.get(rootDirName); if (existing) { callbacks.forEach(({ callback, dirName }) => { if (isArray(existing)) { existing.forEach(callback); } else { callback(dirName); } }); } }); const elapsed = timestamp() - start; sysLog(`sysLog:: Elapsed:: ${elapsed}ms:: onTimerToUpdateChildWatches:: ${cacheToUpdateChildWatches.size} ${timerToUpdateChildWatches}`); } function removeChildWatches(parentWatcher) { if (!parentWatcher) return; const existingChildWatches = parentWatcher.childWatches; parentWatcher.childWatches = emptyArray; for (const childWatcher of existingChildWatches) { childWatcher.close(); removeChildWatches(cache.get(toCanonicalFilePath(childWatcher.dirName))); } } function closeTargetWatcher(watcher) { if (watcher == null ? undefined : watcher.targetWatcher) { watcher.targetWatcher.close(); watcher.targetWatcher = undefined; } } function updateChildWatches(parentDir, parentDirPath, options) { const parentWatcher = cache.get(parentDirPath); if (!parentWatcher) return false; const target = normalizePath(realpath(parentDir)); let hasChanges; let newChildWatches; if (filePathComparer(target, parentDir) === 0) { hasChanges = enumerateInsertsAndDeletes(fileSystemEntryExists(parentDir, 1) ? mapDefined(getAccessibleSortedChildDirectories(parentDir), (child) => { const childFullName = getNormalizedAbsolutePath(child, parentDir); return !isIgnoredPath(childFullName, options) && filePathComparer(childFullName, normalizePath(realpath(childFullName))) === 0 ? childFullName : undefined; }) : emptyArray, parentWatcher.childWatches, (child, childWatcher) => filePathComparer(child, childWatcher.dirName), createAndAddChildDirectoryWatcher, closeFileWatcher, addChildDirectoryWatcher); } else if (parentWatcher.targetWatcher && filePathComparer(target, parentWatcher.targetWatcher.dirName) === 0) { hasChanges = false; Debug.assert(parentWatcher.childWatches === emptyArray); } else { closeTargetWatcher(parentWatcher); parentWatcher.targetWatcher = createDirectoryWatcher(target, options, undefined, parentDir); parentWatcher.childWatches.forEach(closeFileWatcher); hasChanges = true; } parentWatcher.childWatches = newChildWatches || emptyArray; return hasChanges; function createAndAddChildDirectoryWatcher(childName) { const result = createDirectoryWatcher(childName, options); addChildDirectoryWatcher(result); } function addChildDirectoryWatcher(childWatcher) { (newChildWatches || (newChildWatches = [])).push(childWatcher); } } function isIgnoredPath(path, options) { return some(ignoredPaths, (searchPath) => isInPath(path, searchPath)) || isIgnoredByWatchOptions(path, options, useCaseSensitiveFileNames2, getCurrentDirectory); } function isInPath(path, searchPath) { if (path.includes(searchPath)) return true; if (useCaseSensitiveFileNames2) return false; return toCanonicalFilePath(path).includes(searchPath); } } var FileSystemEntryKind = /* @__PURE__ */ ((FileSystemEntryKind2) => { FileSystemEntryKind2[FileSystemEntryKind2["File"] = 0] = "File"; FileSystemEntryKind2[FileSystemEntryKind2["Directory"] = 1] = "Directory"; return FileSystemEntryKind2; })(FileSystemEntryKind || {}); function createFileWatcherCallback(callback) { return (_fileName, eventKind, modifiedTime) => callback(eventKind === 1 ? "change" : "rename", "", modifiedTime); } function createFsWatchCallbackForFileWatcherCallback(fileName, callback, getModifiedTime3) { return (eventName, _relativeFileName, modifiedTime) => { if (eventName === "rename") { modifiedTime || (modifiedTime = getModifiedTime3(fileName) || missingFileModifiedTime); callback(fileName, modifiedTime !== missingFileModifiedTime ? 0 : 2, modifiedTime); } else { callback(fileName, 1, modifiedTime); } }; } function isIgnoredByWatchOptions(pathToCheck, options, useCaseSensitiveFileNames2, getCurrentDirectory) { return ((options == null ? undefined : options.excludeDirectories) || (options == null ? undefined : options.excludeFiles)) && (matchesExclude(pathToCheck, options == null ? undefined : options.excludeFiles, useCaseSensitiveFileNames2, getCurrentDirectory()) || matchesExclude(pathToCheck, options == null ? undefined : options.excludeDirectories, useCaseSensitiveFileNames2, getCurrentDirectory())); } function createFsWatchCallbackForDirectoryWatcherCallback(directoryName, callback, options, useCaseSensitiveFileNames2, getCurrentDirectory) { return (eventName, relativeFileName) => { if (eventName === "rename") { const fileName = !relativeFileName ? directoryName : normalizePath(combinePaths(directoryName, relativeFileName)); if (!relativeFileName || !isIgnoredByWatchOptions(fileName, options, useCaseSensitiveFileNames2, getCurrentDirectory)) { callback(fileName); } } }; } function createSystemWatchFunctions({ pollingWatchFileWorker, getModifiedTime: getModifiedTime3, setTimeout: setTimeout2, clearTimeout: clearTimeout2, fsWatchWorker, fileSystemEntryExists, useCaseSensitiveFileNames: useCaseSensitiveFileNames2, getCurrentDirectory, fsSupportsRecursiveFsWatch, getAccessibleSortedChildDirectories, realpath, tscWatchFile, useNonPollingWatchers, tscWatchDirectory, inodeWatching, fsWatchWithTimestamp, sysLog: sysLog2 }) { const pollingWatches = /* @__PURE__ */ new Map; const fsWatches = /* @__PURE__ */ new Map; const fsWatchesRecursive = /* @__PURE__ */ new Map; let dynamicPollingWatchFile; let fixedChunkSizePollingWatchFile; let nonPollingWatchFile; let hostRecursiveDirectoryWatcher; let hitSystemWatcherLimit = false; return { watchFile: watchFile2, watchDirectory }; function watchFile2(fileName, callback, pollingInterval, options) { options = updateOptionsForWatchFile(options, useNonPollingWatchers); const watchFileKind = Debug.checkDefined(options.watchFile); switch (watchFileKind) { case 0: return pollingWatchFile(fileName, callback, 250, undefined); case 1: return pollingWatchFile(fileName, callback, pollingInterval, undefined); case 2: return ensureDynamicPollingWatchFile()(fileName, callback, pollingInterval, undefined); case 3: return ensureFixedChunkSizePollingWatchFile()(fileName, callback, undefined, undefined); case 4: return fsWatch(fileName, 0, createFsWatchCallbackForFileWatcherCallback(fileName, callback, getModifiedTime3), false, pollingInterval, getFallbackOptions(options)); case 5: if (!nonPollingWatchFile) { nonPollingWatchFile = createUseFsEventsOnParentDirectoryWatchFile(fsWatch, useCaseSensitiveFileNames2, getModifiedTime3, fsWatchWithTimestamp); } return nonPollingWatchFile(fileName, callback, pollingInterval, getFallbackOptions(options)); default: Debug.assertNever(watchFileKind); } } function ensureDynamicPollingWatchFile() { return dynamicPollingWatchFile || (dynamicPollingWatchFile = createDynamicPriorityPollingWatchFile({ getModifiedTime: getModifiedTime3, setTimeout: setTimeout2 })); } function ensureFixedChunkSizePollingWatchFile() { return fixedChunkSizePollingWatchFile || (fixedChunkSizePollingWatchFile = createFixedChunkSizePollingWatchFile({ getModifiedTime: getModifiedTime3, setTimeout: setTimeout2 })); } function updateOptionsForWatchFile(options, useNonPollingWatchers2) { if (options && options.watchFile !== undefined) return options; switch (tscWatchFile) { case "PriorityPollingInterval": return { watchFile: 1 }; case "DynamicPriorityPolling": return { watchFile: 2 }; case "UseFsEvents": return generateWatchFileOptions(4, 1, options); case "UseFsEventsWithFallbackDynamicPolling": return generateWatchFileOptions(4, 2, options); case "UseFsEventsOnParentDirectory": useNonPollingWatchers2 = true; default: return useNonPollingWatchers2 ? generateWatchFileOptions(5, 1, options) : { watchFile: 4 }; } } function generateWatchFileOptions(watchFile3, fallbackPolling, options) { const defaultFallbackPolling = options == null ? undefined : options.fallbackPolling; return { watchFile: watchFile3, fallbackPolling: defaultFallbackPolling === undefined ? fallbackPolling : defaultFallbackPolling }; } function watchDirectory(directoryName, callback, recursive, options) { if (fsSupportsRecursiveFsWatch) { return fsWatch(directoryName, 1, createFsWatchCallbackForDirectoryWatcherCallback(directoryName, callback, options, useCaseSensitiveFileNames2, getCurrentDirectory), recursive, 500, getFallbackOptions(options)); } if (!hostRecursiveDirectoryWatcher) { hostRecursiveDirectoryWatcher = createDirectoryWatcherSupportingRecursive({ useCaseSensitiveFileNames: useCaseSensitiveFileNames2, getCurrentDirectory, fileSystemEntryExists, getAccessibleSortedChildDirectories, watchDirectory: nonRecursiveWatchDirectory, realpath, setTimeout: setTimeout2, clearTimeout: clearTimeout2 }); } return hostRecursiveDirectoryWatcher(directoryName, callback, recursive, options); } function nonRecursiveWatchDirectory(directoryName, callback, recursive, options) { Debug.assert(!recursive); const watchDirectoryOptions = updateOptionsForWatchDirectory(options); const watchDirectoryKind = Debug.checkDefined(watchDirectoryOptions.watchDirectory); switch (watchDirectoryKind) { case 1: return pollingWatchFile(directoryName, () => callback(directoryName), 500, undefined); case 2: return ensureDynamicPollingWatchFile()(directoryName, () => callback(directoryName), 500, undefined); case 3: return ensureFixedChunkSizePollingWatchFile()(directoryName, () => callback(directoryName), undefined, undefined); case 0: return fsWatch(directoryName, 1, createFsWatchCallbackForDirectoryWatcherCallback(directoryName, callback, options, useCaseSensitiveFileNames2, getCurrentDirectory), recursive, 500, getFallbackOptions(watchDirectoryOptions)); default: Debug.assertNever(watchDirectoryKind); } } function updateOptionsForWatchDirectory(options) { if (options && options.watchDirectory !== undefined) return options; switch (tscWatchDirectory) { case "RecursiveDirectoryUsingFsWatchFile": return { watchDirectory: 1 }; case "RecursiveDirectoryUsingDynamicPriorityPolling": return { watchDirectory: 2 }; default: const defaultFallbackPolling = options == null ? undefined : options.fallbackPolling; return { watchDirectory: 0, fallbackPolling: defaultFallbackPolling !== undefined ? defaultFallbackPolling : undefined }; } } function pollingWatchFile(fileName, callback, pollingInterval, options) { return createSingleWatcherPerName(pollingWatches, useCaseSensitiveFileNames2, fileName, callback, (cb) => pollingWatchFileWorker(fileName, cb, pollingInterval, options)); } function fsWatch(fileOrDirectory, entryKind, callback, recursive, fallbackPollingInterval, fallbackOptions) { return createSingleWatcherPerName(recursive ? fsWatchesRecursive : fsWatches, useCaseSensitiveFileNames2, fileOrDirectory, callback, (cb) => fsWatchHandlingExistenceOnHost(fileOrDirectory, entryKind, cb, recursive, fallbackPollingInterval, fallbackOptions)); } function fsWatchHandlingExistenceOnHost(fileOrDirectory, entryKind, callback, recursive, fallbackPollingInterval, fallbackOptions) { let lastDirectoryPartWithDirectorySeparator; let lastDirectoryPart; if (inodeWatching) { lastDirectoryPartWithDirectorySeparator = fileOrDirectory.substring(fileOrDirectory.lastIndexOf(directorySeparator)); lastDirectoryPart = lastDirectoryPartWithDirectorySeparator.slice(directorySeparator.length); } let watcher = !fileSystemEntryExists(fileOrDirectory, entryKind) ? watchMissingFileSystemEntry() : watchPresentFileSystemEntry(); return { close: () => { if (watcher) { watcher.close(); watcher = undefined; } } }; function updateWatcher(createWatcher) { if (watcher) { sysLog2(`sysLog:: ${fileOrDirectory}:: Changing watcher to ${createWatcher === watchPresentFileSystemEntry ? "Present" : "Missing"}FileSystemEntryWatcher`); watcher.close(); watcher = createWatcher(); } } function watchPresentFileSystemEntry() { if (hitSystemWatcherLimit) { sysLog2(`sysLog:: ${fileOrDirectory}:: Defaulting to watchFile`); return watchPresentFileSystemEntryWithFsWatchFile(); } try { const presentWatcher = (entryKind === 1 || !fsWatchWithTimestamp ? fsWatchWorker : fsWatchWorkerHandlingTimestamp)(fileOrDirectory, recursive, inodeWatching ? callbackChangingToMissingFileSystemEntry : callback); presentWatcher.on("error", () => { callback("rename", ""); updateWatcher(watchMissingFileSystemEntry); }); return presentWatcher; } catch (e) { hitSystemWatcherLimit || (hitSystemWatcherLimit = e.code === "ENOSPC"); sysLog2(`sysLog:: ${fileOrDirectory}:: Changing to watchFile`); return watchPresentFileSystemEntryWithFsWatchFile(); } } function callbackChangingToMissingFileSystemEntry(event, relativeName) { let originalRelativeName; if (relativeName && endsWith(relativeName, "~")) { originalRelativeName = relativeName; relativeName = relativeName.slice(0, relativeName.length - 1); } if (event === "rename" && (!relativeName || relativeName === lastDirectoryPart || endsWith(relativeName, lastDirectoryPartWithDirectorySeparator))) { const modifiedTime = getModifiedTime3(fileOrDirectory) || missingFileModifiedTime; if (originalRelativeName) callback(event, originalRelativeName, modifiedTime); callback(event, relativeName, modifiedTime); if (inodeWatching) { updateWatcher(modifiedTime === missingFileModifiedTime ? watchMissingFileSystemEntry : watchPresentFileSystemEntry); } else if (modifiedTime === missingFileModifiedTime) { updateWatcher(watchMissingFileSystemEntry); } } else { if (originalRelativeName) callback(event, originalRelativeName); callback(event, relativeName); } } function watchPresentFileSystemEntryWithFsWatchFile() { return watchFile2(fileOrDirectory, createFileWatcherCallback(callback), fallbackPollingInterval, fallbackOptions); } function watchMissingFileSystemEntry() { return watchFile2(fileOrDirectory, (_fileName, eventKind, modifiedTime) => { if (eventKind === 0) { modifiedTime || (modifiedTime = getModifiedTime3(fileOrDirectory) || missingFileModifiedTime); if (modifiedTime !== missingFileModifiedTime) { callback("rename", "", modifiedTime); updateWatcher(watchPresentFileSystemEntry); } } }, fallbackPollingInterval, fallbackOptions); } } function fsWatchWorkerHandlingTimestamp(fileOrDirectory, recursive, callback) { let modifiedTime = getModifiedTime3(fileOrDirectory) || missingFileModifiedTime; return fsWatchWorker(fileOrDirectory, recursive, (eventName, relativeFileName, currentModifiedTime) => { if (eventName === "change") { currentModifiedTime || (currentModifiedTime = getModifiedTime3(fileOrDirectory) || missingFileModifiedTime); if (currentModifiedTime.getTime() === modifiedTime.getTime()) return; } modifiedTime = currentModifiedTime || getModifiedTime3(fileOrDirectory) || missingFileModifiedTime; callback(eventName, relativeFileName, modifiedTime); }); } } function patchWriteFileEnsuringDirectory(sys2) { const originalWriteFile = sys2.writeFile; sys2.writeFile = (path, data, writeBom) => writeFileEnsuringDirectories(path, data, !!writeBom, (path2, data2, writeByteOrderMark) => originalWriteFile.call(sys2, path2, data2, writeByteOrderMark), (path2) => sys2.createDirectory(path2), (path2) => sys2.directoryExists(path2)); } var sys = (() => { const byteOrderMarkIndicator = "\uFEFF"; function getNodeSystem() { const nativePattern = /^native |^\([^)]+\)$|^(?:internal[\\/]|[\w\s]+(?:\.js)?$)/; const _fs = require("fs"); const _path = require("path"); const _os = require("os"); let _crypto; try { _crypto = require("crypto"); } catch { _crypto = undefined; } let activeSession; let profilePath = "./profile.cpuprofile"; const isMacOs = process.platform === "darwin"; const isLinuxOrMacOs = process.platform === "linux" || isMacOs; const statSyncOptions = { throwIfNoEntry: false }; const platform = _os.platform(); const useCaseSensitiveFileNames2 = isFileSystemCaseSensitive(); const fsRealpath = _fs.realpathSync.native ? process.platform === "win32" ? fsRealPathHandlingLongPath : _fs.realpathSync.native : _fs.realpathSync; const executingFilePath = __filename.endsWith("sys.js") ? _path.join(_path.dirname(__dirname), "__fake__.js") : __filename; const fsSupportsRecursiveFsWatch = process.platform === "win32" || isMacOs; const getCurrentDirectory = memoize(() => process.cwd()); const { watchFile: watchFile2, watchDirectory } = createSystemWatchFunctions({ pollingWatchFileWorker: fsWatchFileWorker, getModifiedTime: getModifiedTime3, setTimeout, clearTimeout, fsWatchWorker, useCaseSensitiveFileNames: useCaseSensitiveFileNames2, getCurrentDirectory, fileSystemEntryExists, fsSupportsRecursiveFsWatch, getAccessibleSortedChildDirectories: (path) => getAccessibleFileSystemEntries(path).directories, realpath, tscWatchFile: process.env.TSC_WATCHFILE, useNonPollingWatchers: !!process.env.TSC_NONPOLLING_WATCHER, tscWatchDirectory: process.env.TSC_WATCHDIRECTORY, inodeWatching: isLinuxOrMacOs, fsWatchWithTimestamp: isMacOs, sysLog }); const nodeSystem = { args: process.argv.slice(2), newLine: _os.EOL, useCaseSensitiveFileNames: useCaseSensitiveFileNames2, write(s) { process.stdout.write(s); }, getWidthOfTerminal() { return process.stdout.columns; }, writeOutputIsTTY() { return process.stdout.isTTY; }, readFile, writeFile: writeFile2, watchFile: watchFile2, watchDirectory, preferNonRecursiveWatch: !fsSupportsRecursiveFsWatch, resolvePath: (path) => _path.resolve(path), fileExists, directoryExists, getAccessibleFileSystemEntries, createDirectory(directoryName) { if (!nodeSystem.directoryExists(directoryName)) { try { _fs.mkdirSync(directoryName); } catch (e) { if (e.code !== "EEXIST") { throw e; } } } }, getExecutingFilePath() { return executingFilePath; }, getCurrentDirectory, getDirectories, getEnvironmentVariable(name) { return process.env[name] || ""; }, readDirectory, getModifiedTime: getModifiedTime3, setModifiedTime, deleteFile, createHash: _crypto ? createSHA256Hash : generateDjb2Hash, createSHA256Hash: _crypto ? createSHA256Hash : undefined, getMemoryUsage() { if (global.gc) { global.gc(); } return process.memoryUsage().heapUsed; }, getFileSize(path) { const stat = statSync(path); if (stat == null ? undefined : stat.isFile()) { return stat.size; } return 0; }, exit(exitCode) { disableCPUProfiler(() => process.exit(exitCode)); }, enableCPUProfiler, disableCPUProfiler, cpuProfilingEnabled: () => !!activeSession || contains(process.execArgv, "--cpu-prof") || contains(process.execArgv, "--prof"), realpath, debugMode: !!process.env.NODE_INSPECTOR_IPC || !!process.env.VSCODE_INSPECTOR_OPTIONS || some(process.execArgv, (arg) => /^--(?:inspect|debug)(?:-brk)?(?:=\d+)?$/i.test(arg)) || !!process.recordreplay, tryEnableSourceMapsForHost() { try { (()=>{throw new Error("Cannot require module "+"source-map-support");})().install(); } catch {} }, setTimeout, clearTimeout, clearScreen: () => { process.stdout.write("\x1B[2J\x1B[3J\x1B[H"); }, setBlocking: () => { var _a; const handle = (_a = process.stdout) == null ? undefined : _a._handle; if (handle && handle.setBlocking) { handle.setBlocking(true); } }, base64decode: (input) => Buffer.from(input, "base64").toString("utf8"), base64encode: (input) => Buffer.from(input).toString("base64"), require: (baseDir, moduleName) => { try { const modulePath = resolveJSModule(moduleName, baseDir, nodeSystem); return { module: require(modulePath), modulePath, error: undefined }; } catch (error2) { return { module: undefined, modulePath: undefined, error: error2 }; } } }; return nodeSystem; function statSync(path) { try { return _fs.statSync(path, statSyncOptions); } catch { return; } } function enableCPUProfiler(path, cb) { if (activeSession) { cb(); return false; } const inspector = require("inspector"); if (!inspector || !inspector.Session) { cb(); return false; } const session = new inspector.Session; session.connect(); session.post("Profiler.enable", () => { session.post("Profiler.start", () => { activeSession = session; profilePath = path; cb(); }); }); return true; } function cleanupPaths(profile) { let externalFileCounter = 0; const remappedPaths = /* @__PURE__ */ new Map; const normalizedDir = normalizeSlashes(_path.dirname(executingFilePath)); const fileUrlRoot = `file://${getRootLength(normalizedDir) === 1 ? "" : "/"}${normalizedDir}`; for (const node of profile.nodes) { if (node.callFrame.url) { const url = normalizeSlashes(node.callFrame.url); if (containsPath(fileUrlRoot, url, useCaseSensitiveFileNames2)) { node.callFrame.url = getRelativePathToDirectoryOrUrl(fileUrlRoot, url, fileUrlRoot, createGetCanonicalFileName(useCaseSensitiveFileNames2), true); } else if (!nativePattern.test(url)) { node.callFrame.url = (remappedPaths.has(url) ? remappedPaths : remappedPaths.set(url, `external${externalFileCounter}.js`)).get(url); externalFileCounter++; } } } return profile; } function disableCPUProfiler(cb) { if (activeSession && activeSession !== "stopping") { const s = activeSession; activeSession.post("Profiler.stop", (err, { profile }) => { var _a; if (!err) { if ((_a = statSync(profilePath)) == null ? undefined : _a.isDirectory()) { profilePath = _path.join(profilePath, `${(/* @__PURE__ */ new Date()).toISOString().replace(/:/g, "-")}+P${process.pid}.cpuprofile`); } try { _fs.mkdirSync(_path.dirname(profilePath), { recursive: true }); } catch {} _fs.writeFileSync(profilePath, JSON.stringify(cleanupPaths(profile))); } activeSession = undefined; s.disconnect(); cb(); }); activeSession = "stopping"; return true; } else { cb(); return false; } } function isFileSystemCaseSensitive() { if (platform === "win32" || platform === "win64") { return false; } return !fileExists(swapCase(__filename)); } function swapCase(s) { return s.replace(/\w/g, (ch) => { const up = ch.toUpperCase(); return ch === up ? ch.toLowerCase() : up; }); } function fsWatchFileWorker(fileName, callback, pollingInterval) { _fs.watchFile(fileName, { persistent: true, interval: pollingInterval }, fileChanged); let eventKind; return { close: () => _fs.unwatchFile(fileName, fileChanged) }; function fileChanged(curr, prev) { const isPreviouslyDeleted = +prev.mtime === 0 || eventKind === 2; if (+curr.mtime === 0) { if (isPreviouslyDeleted) { return; } eventKind = 2; } else if (isPreviouslyDeleted) { eventKind = 0; } else if (+curr.mtime === +prev.mtime) { return; } else { eventKind = 1; } callback(fileName, eventKind, curr.mtime); } } function fsWatchWorker(fileOrDirectory, recursive, callback) { return _fs.watch(fileOrDirectory, fsSupportsRecursiveFsWatch ? { persistent: true, recursive: !!recursive } : { persistent: true }, callback); } function readFile(fileName, _encoding) { let buffer; try { buffer = _fs.readFileSync(fileName); } catch { return; } let len = buffer.length; if (len >= 2 && buffer[0] === 254 && buffer[1] === 255) { len &= ~1; for (let i = 0;i < len; i += 2) { const temp = buffer[i]; buffer[i] = buffer[i + 1]; buffer[i + 1] = temp; } return buffer.toString("utf16le", 2); } if (len >= 2 && buffer[0] === 255 && buffer[1] === 254) { return buffer.toString("utf16le", 2); } if (len >= 3 && buffer[0] === 239 && buffer[1] === 187 && buffer[2] === 191) { return buffer.toString("utf8", 3); } return buffer.toString("utf8"); } function writeFile2(fileName, data, writeByteOrderMark) { if (writeByteOrderMark) { data = byteOrderMarkIndicator + data; } let fd; try { fd = _fs.openSync(fileName, "w"); _fs.writeSync(fd, data, undefined, "utf8"); } finally { if (fd !== undefined) { _fs.closeSync(fd); } } } function getAccessibleFileSystemEntries(path) { try { const entries = _fs.readdirSync(path || ".", { withFileTypes: true }); const files = []; const directories = []; for (const dirent of entries) { const entry = typeof dirent === "string" ? dirent : dirent.name; if (entry === "." || entry === "..") { continue; } let stat; if (typeof dirent === "string" || dirent.isSymbolicLink()) { const name = combinePaths(path, entry); stat = statSync(name); if (!stat) { continue; } } else { stat = dirent; } if (stat.isFile()) { files.push(entry); } else if (stat.isDirectory()) { directories.push(entry); } } files.sort(); directories.sort(); return { files, directories }; } catch { return emptyFileSystemEntries; } } function readDirectory(path, extensions, excludes, includes, depth) { return matchFiles(path, extensions, excludes, includes, useCaseSensitiveFileNames2, process.cwd(), depth, getAccessibleFileSystemEntries, realpath); } function fileSystemEntryExists(path, entryKind) { const stat = statSync(path); if (!stat) { return false; } switch (entryKind) { case 0: return stat.isFile(); case 1: return stat.isDirectory(); default: return false; } } function fileExists(path) { return fileSystemEntryExists(path, 0); } function directoryExists(path) { return fileSystemEntryExists(path, 1); } function getDirectories(path) { return getAccessibleFileSystemEntries(path).directories.slice(); } function fsRealPathHandlingLongPath(path) { return path.length < 260 ? _fs.realpathSync.native(path) : _fs.realpathSync(path); } function realpath(path) { try { return fsRealpath(path); } catch { return path; } } function getModifiedTime3(path) { var _a; return (_a = statSync(path)) == null ? undefined : _a.mtime; } function setModifiedTime(path, time) { try { _fs.utimesSync(path, time, time); } catch { return; } } function deleteFile(path) { try { return _fs.unlinkSync(path); } catch { return; } } function createSHA256Hash(data) { const hash = _crypto.createHash("sha256"); hash.update(data); return hash.digest("hex"); } } let sys2; if (isNodeLikeSystem()) { sys2 = getNodeSystem(); } if (sys2) { patchWriteFileEnsuringDirectory(sys2); } return sys2; })(); function setSys(s) { sys = s; } if (sys && sys.getEnvironmentVariable) { setCustomPollingValues(sys); Debug.setAssertionLevel(/^development$/i.test(sys.getEnvironmentVariable("NODE_ENV")) ? 1 : 0); } if (sys && sys.debugMode) { Debug.isDebugging = true; } var directorySeparator = "/"; var altDirectorySeparator = "\\"; var urlSchemeSeparator = "://"; var backslashRegExp = /\\/g; function isAnyDirectorySeparator(charCode) { return charCode === 47 || charCode === 92; } function isUrl(path) { return getEncodedRootLength(path) < 0; } function isRootedDiskPath(path) { return getEncodedRootLength(path) > 0; } function isDiskPathRoot(path) { const rootLength = getEncodedRootLength(path); return rootLength > 0 && rootLength === path.length; } function pathIsAbsolute(path) { return getEncodedRootLength(path) !== 0; } function pathIsRelative(path) { return /^\.\.?(?:$|[\\/])/.test(path); } function pathIsBareSpecifier(path) { return !pathIsAbsolute(path) && !pathIsRelative(path); } function hasExtension(fileName) { return getBaseFileName(fileName).includes("."); } function fileExtensionIs(path, extension) { return path.length > extension.length && endsWith(path, extension); } function fileExtensionIsOneOf(path, extensions) { for (const extension of extensions) { if (fileExtensionIs(path, extension)) { return true; } } return false; } function hasTrailingDirectorySeparator(path) { return path.length > 0 && isAnyDirectorySeparator(path.charCodeAt(path.length - 1)); } function isVolumeCharacter(charCode) { return charCode >= 97 && charCode <= 122 || charCode >= 65 && charCode <= 90; } function getFileUrlVolumeSeparatorEnd(url, start) { const ch0 = url.charCodeAt(start); if (ch0 === 58) return start + 1; if (ch0 === 37 && url.charCodeAt(start + 1) === 51) { const ch2 = url.charCodeAt(start + 2); if (ch2 === 97 || ch2 === 65) return start + 3; } return -1; } function getEncodedRootLength(path) { if (!path) return 0; const ch0 = path.charCodeAt(0); if (ch0 === 47 || ch0 === 92) { if (path.charCodeAt(1) !== ch0) return 1; const p1 = path.indexOf(ch0 === 47 ? directorySeparator : altDirectorySeparator, 2); if (p1 < 0) return path.length; return p1 + 1; } if (isVolumeCharacter(ch0) && path.charCodeAt(1) === 58) { const ch2 = path.charCodeAt(2); if (ch2 === 47 || ch2 === 92) return 3; if (path.length === 2) return 2; } const schemeEnd = path.indexOf(urlSchemeSeparator); if (schemeEnd !== -1) { const authorityStart = schemeEnd + urlSchemeSeparator.length; const authorityEnd = path.indexOf(directorySeparator, authorityStart); if (authorityEnd !== -1) { const scheme = path.slice(0, schemeEnd); const authority = path.slice(authorityStart, authorityEnd); if (scheme === "file" && (authority === "" || authority === "localhost") && isVolumeCharacter(path.charCodeAt(authorityEnd + 1))) { const volumeSeparatorEnd = getFileUrlVolumeSeparatorEnd(path, authorityEnd + 2); if (volumeSeparatorEnd !== -1) { if (path.charCodeAt(volumeSeparatorEnd) === 47) { return ~(volumeSeparatorEnd + 1); } if (volumeSeparatorEnd === path.length) { return ~volumeSeparatorEnd; } } } return ~(authorityEnd + 1); } return ~path.length; } return 0; } function getRootLength(path) { const rootLength = getEncodedRootLength(path); return rootLength < 0 ? ~rootLength : rootLength; } function getDirectoryPath(path) { path = normalizeSlashes(path); const rootLength = getRootLength(path); if (rootLength === path.length) return path; path = removeTrailingDirectorySeparator(path); return path.slice(0, Math.max(rootLength, path.lastIndexOf(directorySeparator))); } function getBaseFileName(path, extensions, ignoreCase) { path = normalizeSlashes(path); const rootLength = getRootLength(path); if (rootLength === path.length) return ""; path = removeTrailingDirectorySeparator(path); const name = path.slice(Math.max(getRootLength(path), path.lastIndexOf(directorySeparator) + 1)); const extension = extensions !== undefined && ignoreCase !== undefined ? getAnyExtensionFromPath(name, extensions, ignoreCase) : undefined; return extension ? name.slice(0, name.length - extension.length) : name; } function tryGetExtensionFromPath(path, extension, stringEqualityComparer) { if (!startsWith(extension, ".")) extension = "." + extension; if (path.length >= extension.length && path.charCodeAt(path.length - extension.length) === 46) { const pathExtension = path.slice(path.length - extension.length); if (stringEqualityComparer(pathExtension, extension)) { return pathExtension; } } } function getAnyExtensionFromPathWorker(path, extensions, stringEqualityComparer) { if (typeof extensions === "string") { return tryGetExtensionFromPath(path, extensions, stringEqualityComparer) || ""; } for (const extension of extensions) { const result = tryGetExtensionFromPath(path, extension, stringEqualityComparer); if (result) return result; } return ""; } function getAnyExtensionFromPath(path, extensions, ignoreCase) { if (extensions) { return getAnyExtensionFromPathWorker(removeTrailingDirectorySeparator(path), extensions, ignoreCase ? equateStringsCaseInsensitive : equateStringsCaseSensitive); } const baseFileName = getBaseFileName(path); const extensionIndex = baseFileName.lastIndexOf("."); if (extensionIndex >= 0) { return baseFileName.substring(extensionIndex); } return ""; } function pathComponents(path, rootLength) { const root = path.substring(0, rootLength); const rest = path.substring(rootLength).split(directorySeparator); if (rest.length && !lastOrUndefined(rest)) rest.pop(); return [root, ...rest]; } function getPathComponents(path, currentDirectory = "") { path = combinePaths(currentDirectory, path); return pathComponents(path, getRootLength(path)); } function getPathFromPathComponents(pathComponents2, length2) { if (pathComponents2.length === 0) return ""; const root = pathComponents2[0] && ensureTrailingDirectorySeparator(pathComponents2[0]); return root + pathComponents2.slice(1, length2).join(directorySeparator); } function normalizeSlashes(path) { return path.includes("\\") ? path.replace(backslashRegExp, directorySeparator) : path; } function reducePathComponents(components) { if (!some(components)) return []; const reduced = [components[0]]; for (let i = 1;i < components.length; i++) { const component = components[i]; if (!component) continue; if (component === ".") continue; if (component === "..") { if (reduced.length > 1) { if (reduced[reduced.length - 1] !== "..") { reduced.pop(); continue; } } else if (reduced[0]) continue; } reduced.push(component); } return reduced; } function combinePaths(path, ...paths) { if (path) path = normalizeSlashes(path); for (let relativePath of paths) { if (!relativePath) continue; relativePath = normalizeSlashes(relativePath); if (!path || getRootLength(relativePath) !== 0) { path = relativePath; } else { path = ensureTrailingDirectorySeparator(path) + relativePath; } } return path; } function resolvePath(path, ...paths) { return normalizePath(some(paths) ? combinePaths(path, ...paths) : normalizeSlashes(path)); } function getNormalizedPathComponents(path, currentDirectory) { return reducePathComponents(getPathComponents(path, currentDirectory)); } function getNormalizedAbsolutePath(path, currentDirectory) { let rootLength = getRootLength(path); if (rootLength === 0 && currentDirectory) { path = combinePaths(currentDirectory, path); rootLength = getRootLength(path); } else { path = normalizeSlashes(path); } const simpleNormalized = simpleNormalizePath(path); if (simpleNormalized !== undefined) { return simpleNormalized.length > rootLength ? removeTrailingDirectorySeparator(simpleNormalized) : simpleNormalized; } const length2 = path.length; const root = path.substring(0, rootLength); let normalized; let index = rootLength; let segmentStart = index; let normalizedUpTo = index; let seenNonDotDotSegment = rootLength !== 0; while (index < length2) { segmentStart = index; let ch = path.charCodeAt(index); while (ch === 47 && index + 1 < length2) { index++; ch = path.charCodeAt(index); } if (index > segmentStart) { normalized ?? (normalized = path.substring(0, segmentStart - 1)); segmentStart = index; } let segmentEnd = path.indexOf(directorySeparator, index + 1); if (segmentEnd === -1) { segmentEnd = length2; } const segmentLength = segmentEnd - segmentStart; if (segmentLength === 1 && path.charCodeAt(index) === 46) { normalized ?? (normalized = path.substring(0, normalizedUpTo)); } else if (segmentLength === 2 && path.charCodeAt(index) === 46 && path.charCodeAt(index + 1) === 46) { if (!seenNonDotDotSegment) { if (normalized !== undefined) { normalized += normalized.length === rootLength ? ".." : "/.."; } else { normalizedUpTo = index + 2; } } else if (normalized === undefined) { if (normalizedUpTo - 2 >= 0) { normalized = path.substring(0, Math.max(rootLength, path.lastIndexOf(directorySeparator, normalizedUpTo - 2))); } else { normalized = path.substring(0, normalizedUpTo); } } else { const lastSlash = normalized.lastIndexOf(directorySeparator); if (lastSlash !== -1) { normalized = normalized.substring(0, Math.max(rootLength, lastSlash)); } else { normalized = root; } if (normalized.length === rootLength) { seenNonDotDotSegment = rootLength !== 0; } } } else if (normalized !== undefined) { if (normalized.length !== rootLength) { normalized += directorySeparator; } seenNonDotDotSegment = true; normalized += path.substring(segmentStart, segmentEnd); } else { seenNonDotDotSegment = true; normalizedUpTo = segmentEnd; } index = segmentEnd + 1; } return normalized ?? (length2 > rootLength ? removeTrailingDirectorySeparator(path) : path); } function normalizePath(path) { path = normalizeSlashes(path); let normalized = simpleNormalizePath(path); if (normalized !== undefined) { return normalized; } normalized = getNormalizedAbsolutePath(path, ""); return normalized && hasTrailingDirectorySeparator(path) ? ensureTrailingDirectorySeparator(normalized) : normalized; } function simpleNormalizePath(path) { if (!relativePathSegmentRegExp.test(path)) { return path; } let simplified = path.replace(/\/\.\//g, "/"); if (simplified.startsWith("./")) { simplified = simplified.slice(2); } if (simplified !== path) { path = simplified; if (!relativePathSegmentRegExp.test(path)) { return path; } } return; } function getPathWithoutRoot(pathComponents2) { if (pathComponents2.length === 0) return ""; return pathComponents2.slice(1).join(directorySeparator); } function getNormalizedAbsolutePathWithoutRoot(fileName, currentDirectory) { return getPathWithoutRoot(getNormalizedPathComponents(fileName, currentDirectory)); } function toPath(fileName, basePath, getCanonicalFileName) { const nonCanonicalizedPath = isRootedDiskPath(fileName) ? normalizePath(fileName) : getNormalizedAbsolutePath(fileName, basePath); return getCanonicalFileName(nonCanonicalizedPath); } function removeTrailingDirectorySeparator(path) { if (hasTrailingDirectorySeparator(path)) { return path.substr(0, path.length - 1); } return path; } function ensureTrailingDirectorySeparator(path) { if (!hasTrailingDirectorySeparator(path)) { return path + directorySeparator; } return path; } function ensurePathIsNonModuleName(path) { return !pathIsAbsolute(path) && !pathIsRelative(path) ? "./" + path : path; } function changeAnyExtension(path, ext, extensions, ignoreCase) { const pathext = extensions !== undefined && ignoreCase !== undefined ? getAnyExtensionFromPath(path, extensions, ignoreCase) : getAnyExtensionFromPath(path); return pathext ? path.slice(0, path.length - pathext.length) + (startsWith(ext, ".") ? ext : "." + ext) : path; } function changeFullExtension(path, newExtension) { const declarationExtension = getDeclarationFileExtension(path); if (declarationExtension) { return path.slice(0, path.length - declarationExtension.length) + (startsWith(newExtension, ".") ? newExtension : "." + newExtension); } return changeAnyExtension(path, newExtension); } var relativePathSegmentRegExp = /\/\/|(?:^|\/)\.\.?(?:$|\/)/; function comparePathsWorker(a, b, componentComparer) { if (a === b) return 0; if (a === undefined) return -1; if (b === undefined) return 1; const aRoot = a.substring(0, getRootLength(a)); const bRoot = b.substring(0, getRootLength(b)); const result = compareStringsCaseInsensitive(aRoot, bRoot); if (result !== 0) { return result; } const aRest = a.substring(aRoot.length); const bRest = b.substring(bRoot.length); if (!relativePathSegmentRegExp.test(aRest) && !relativePathSegmentRegExp.test(bRest)) { return componentComparer(aRest, bRest); } const aComponents = reducePathComponents(getPathComponents(a)); const bComponents = reducePathComponents(getPathComponents(b)); const sharedLength = Math.min(aComponents.length, bComponents.length); for (let i = 1;i < sharedLength; i++) { const result2 = componentComparer(aComponents[i], bComponents[i]); if (result2 !== 0) { return result2; } } return compareValues(aComponents.length, bComponents.length); } function comparePathsCaseSensitive(a, b) { return comparePathsWorker(a, b, compareStringsCaseSensitive); } function comparePathsCaseInsensitive(a, b) { return comparePathsWorker(a, b, compareStringsCaseInsensitive); } function comparePaths(a, b, currentDirectory, ignoreCase) { if (typeof currentDirectory === "string") { a = combinePaths(currentDirectory, a); b = combinePaths(currentDirectory, b); } else if (typeof currentDirectory === "boolean") { ignoreCase = currentDirectory; } return comparePathsWorker(a, b, getStringComparer(ignoreCase)); } function containsPath(parent2, child, currentDirectory, ignoreCase) { if (typeof currentDirectory === "string") { parent2 = combinePaths(currentDirectory, parent2); child = combinePaths(currentDirectory, child); } else if (typeof currentDirectory === "boolean") { ignoreCase = currentDirectory; } if (parent2 === undefined || child === undefined) return false; if (parent2 === child) return true; const parentComponents = reducePathComponents(getPathComponents(parent2)); const childComponents = reducePathComponents(getPathComponents(child)); if (childComponents.length < parentComponents.length) { return false; } const componentEqualityComparer = ignoreCase ? equateStringsCaseInsensitive : equateStringsCaseSensitive; for (let i = 0;i < parentComponents.length; i++) { const equalityComparer = i === 0 ? equateStringsCaseInsensitive : componentEqualityComparer; if (!equalityComparer(parentComponents[i], childComponents[i])) { return false; } } return true; } function startsWithDirectory(fileName, directoryName, getCanonicalFileName) { const canonicalFileName = getCanonicalFileName(fileName); const canonicalDirectoryName = getCanonicalFileName(directoryName); return startsWith(canonicalFileName, canonicalDirectoryName + "/") || startsWith(canonicalFileName, canonicalDirectoryName + "\\"); } function getPathComponentsRelativeTo(from, to, stringEqualityComparer, getCanonicalFileName) { const fromComponents = reducePathComponents(getPathComponents(from)); const toComponents = reducePathComponents(getPathComponents(to)); let start; for (start = 0;start < fromComponents.length && start < toComponents.length; start++) { const fromComponent = getCanonicalFileName(fromComponents[start]); const toComponent = getCanonicalFileName(toComponents[start]); const comparer = start === 0 ? equateStringsCaseInsensitive : stringEqualityComparer; if (!comparer(fromComponent, toComponent)) break; } if (start === 0) { return toComponents; } const components = toComponents.slice(start); const relative = []; for (;start < fromComponents.length; start++) { relative.push(".."); } return ["", ...relative, ...components]; } function getRelativePathFromDirectory(fromDirectory, to, getCanonicalFileNameOrIgnoreCase) { Debug.assert(getRootLength(fromDirectory) > 0 === getRootLength(to) > 0, "Paths must either both be absolute or both be relative"); const getCanonicalFileName = typeof getCanonicalFileNameOrIgnoreCase === "function" ? getCanonicalFileNameOrIgnoreCase : identity; const ignoreCase = typeof getCanonicalFileNameOrIgnoreCase === "boolean" ? getCanonicalFileNameOrIgnoreCase : false; const pathComponents2 = getPathComponentsRelativeTo(fromDirectory, to, ignoreCase ? equateStringsCaseInsensitive : equateStringsCaseSensitive, getCanonicalFileName); return getPathFromPathComponents(pathComponents2); } function convertToRelativePath(absoluteOrRelativePath, basePath, getCanonicalFileName) { return !isRootedDiskPath(absoluteOrRelativePath) ? absoluteOrRelativePath : getRelativePathToDirectoryOrUrl(basePath, absoluteOrRelativePath, basePath, getCanonicalFileName, false); } function getRelativePathFromFile(from, to, getCanonicalFileName) { return ensurePathIsNonModuleName(getRelativePathFromDirectory(getDirectoryPath(from), to, getCanonicalFileName)); } function getRelativePathToDirectoryOrUrl(directoryPathOrUrl, relativeOrAbsolutePath, currentDirectory, getCanonicalFileName, isAbsolutePathAnUrl) { const pathComponents2 = getPathComponentsRelativeTo(resolvePath(currentDirectory, directoryPathOrUrl), resolvePath(currentDirectory, relativeOrAbsolutePath), equateStringsCaseSensitive, getCanonicalFileName); const firstComponent = pathComponents2[0]; if (isAbsolutePathAnUrl && isRootedDiskPath(firstComponent)) { const prefix = firstComponent.charAt(0) === directorySeparator ? "file://" : "file:///"; pathComponents2[0] = prefix + firstComponent; } return getPathFromPathComponents(pathComponents2); } function forEachAncestorDirectory(directory, callback) { while (true) { const result = callback(directory); if (result !== undefined) { return result; } const parentPath = getDirectoryPath(directory); if (parentPath === directory) { return; } directory = parentPath; } } function isNodeModulesDirectory(dirPath) { return endsWith(dirPath, "/node_modules"); } function diag(code, category, key, message, reportsUnnecessary, elidedInCompatabilityPyramid, reportsDeprecated) { return { code, category, key, message, reportsUnnecessary, elidedInCompatabilityPyramid, reportsDeprecated }; } var Diagnostics = { Unterminated_string_literal: diag(1002, 1, "Unterminated_string_literal_1002", "Unterminated string literal."), Identifier_expected: diag(1003, 1, "Identifier_expected_1003", "Identifier expected."), _0_expected: diag(1005, 1, "_0_expected_1005", "'{0}' expected."), A_file_cannot_have_a_reference_to_itself: diag(1006, 1, "A_file_cannot_have_a_reference_to_itself_1006", "A file cannot have a reference to itself."), The_parser_expected_to_find_a_1_to_match_the_0_token_here: diag(1007, 1, "The_parser_expected_to_find_a_1_to_match_the_0_token_here_1007", "The parser expected to find a '{1}' to match the '{0}' token here."), Trailing_comma_not_allowed: diag(1009, 1, "Trailing_comma_not_allowed_1009", "Trailing comma not allowed."), Asterisk_Slash_expected: diag(1010, 1, "Asterisk_Slash_expected_1010", "'*/' expected."), An_element_access_expression_should_take_an_argument: diag(1011, 1, "An_element_access_expression_should_take_an_argument_1011", "An element access expression should take an argument."), Unexpected_token: diag(1012, 1, "Unexpected_token_1012", "Unexpected token."), A_rest_parameter_or_binding_pattern_may_not_have_a_trailing_comma: diag(1013, 1, "A_rest_parameter_or_binding_pattern_may_not_have_a_trailing_comma_1013", "A rest parameter or binding pattern may not have a trailing comma."), A_rest_parameter_must_be_last_in_a_parameter_list: diag(1014, 1, "A_rest_parameter_must_be_last_in_a_parameter_list_1014", "A rest parameter must be last in a parameter list."), Parameter_cannot_have_question_mark_and_initializer: diag(1015, 1, "Parameter_cannot_have_question_mark_and_initializer_1015", "Parameter cannot have question mark and initializer."), A_required_parameter_cannot_follow_an_optional_parameter: diag(1016, 1, "A_required_parameter_cannot_follow_an_optional_parameter_1016", "A required parameter cannot follow an optional parameter."), An_index_signature_cannot_have_a_rest_parameter: diag(1017, 1, "An_index_signature_cannot_have_a_rest_parameter_1017", "An index signature cannot have a rest parameter."), An_index_signature_parameter_cannot_have_an_accessibility_modifier: diag(1018, 1, "An_index_signature_parameter_cannot_have_an_accessibility_modifier_1018", "An index signature parameter cannot have an accessibility modifier."), An_index_signature_parameter_cannot_have_a_question_mark: diag(1019, 1, "An_index_signature_parameter_cannot_have_a_question_mark_1019", "An index signature parameter cannot have a question mark."), An_index_signature_parameter_cannot_have_an_initializer: diag(1020, 1, "An_index_signature_parameter_cannot_have_an_initializer_1020", "An index signature parameter cannot have an initializer."), An_index_signature_must_have_a_type_annotation: diag(1021, 1, "An_index_signature_must_have_a_type_annotation_1021", "An index signature must have a type annotation."), An_index_signature_parameter_must_have_a_type_annotation: diag(1022, 1, "An_index_signature_parameter_must_have_a_type_annotation_1022", "An index signature parameter must have a type annotation."), readonly_modifier_can_only_appear_on_a_property_declaration_or_index_signature: diag(1024, 1, "readonly_modifier_can_only_appear_on_a_property_declaration_or_index_signature_1024", "'readonly' modifier can only appear on a property declaration or index signature."), An_index_signature_cannot_have_a_trailing_comma: diag(1025, 1, "An_index_signature_cannot_have_a_trailing_comma_1025", "An index signature cannot have a trailing comma."), Accessibility_modifier_already_seen: diag(1028, 1, "Accessibility_modifier_already_seen_1028", "Accessibility modifier already seen."), _0_modifier_must_precede_1_modifier: diag(1029, 1, "_0_modifier_must_precede_1_modifier_1029", "'{0}' modifier must precede '{1}' modifier."), _0_modifier_already_seen: diag(1030, 1, "_0_modifier_already_seen_1030", "'{0}' modifier already seen."), _0_modifier_cannot_appear_on_class_elements_of_this_kind: diag(1031, 1, "_0_modifier_cannot_appear_on_class_elements_of_this_kind_1031", "'{0}' modifier cannot appear on class elements of this kind."), super_must_be_followed_by_an_argument_list_or_member_access: diag(1034, 1, "super_must_be_followed_by_an_argument_list_or_member_access_1034", "'super' must be followed by an argument list or member access."), Only_ambient_modules_can_use_quoted_names: diag(1035, 1, "Only_ambient_modules_can_use_quoted_names_1035", "Only ambient modules can use quoted names."), Statements_are_not_allowed_in_ambient_contexts: diag(1036, 1, "Statements_are_not_allowed_in_ambient_contexts_1036", "Statements are not allowed in ambient contexts."), A_declare_modifier_cannot_be_used_in_an_already_ambient_context: diag(1038, 1, "A_declare_modifier_cannot_be_used_in_an_already_ambient_context_1038", "A 'declare' modifier cannot be used in an already ambient context."), Initializers_are_not_allowed_in_ambient_contexts: diag(1039, 1, "Initializers_are_not_allowed_in_ambient_contexts_1039", "Initializers are not allowed in ambient contexts."), _0_modifier_cannot_be_used_in_an_ambient_context: diag(1040, 1, "_0_modifier_cannot_be_used_in_an_ambient_context_1040", "'{0}' modifier cannot be used in an ambient context."), _0_modifier_cannot_be_used_here: diag(1042, 1, "_0_modifier_cannot_be_used_here_1042", "'{0}' modifier cannot be used here."), _0_modifier_cannot_appear_on_a_module_or_namespace_element: diag(1044, 1, "_0_modifier_cannot_appear_on_a_module_or_namespace_element_1044", "'{0}' modifier cannot appear on a module or namespace element."), Top_level_declarations_in_d_ts_files_must_start_with_either_a_declare_or_export_modifier: diag(1046, 1, "Top_level_declarations_in_d_ts_files_must_start_with_either_a_declare_or_export_modifier_1046", "Top-level declarations in .d.ts files must start with either a 'declare' or 'export' modifier."), A_rest_parameter_cannot_be_optional: diag(1047, 1, "A_rest_parameter_cannot_be_optional_1047", "A rest parameter cannot be optional."), A_rest_parameter_cannot_have_an_initializer: diag(1048, 1, "A_rest_parameter_cannot_have_an_initializer_1048", "A rest parameter cannot have an initializer."), A_set_accessor_must_have_exactly_one_parameter: diag(1049, 1, "A_set_accessor_must_have_exactly_one_parameter_1049", "A 'set' accessor must have exactly one parameter."), A_set_accessor_cannot_have_an_optional_parameter: diag(1051, 1, "A_set_accessor_cannot_have_an_optional_parameter_1051", "A 'set' accessor cannot have an optional parameter."), A_set_accessor_parameter_cannot_have_an_initializer: diag(1052, 1, "A_set_accessor_parameter_cannot_have_an_initializer_1052", "A 'set' accessor parameter cannot have an initializer."), A_set_accessor_cannot_have_rest_parameter: diag(1053, 1, "A_set_accessor_cannot_have_rest_parameter_1053", "A 'set' accessor cannot have rest parameter."), A_get_accessor_cannot_have_parameters: diag(1054, 1, "A_get_accessor_cannot_have_parameters_1054", "A 'get' accessor cannot have parameters."), Type_0_is_not_a_valid_async_function_return_type_in_ES5_because_it_does_not_refer_to_a_Promise_compatible_constructor_value: diag(1055, 1, "Type_0_is_not_a_valid_async_function_return_type_in_ES5_because_it_does_not_refer_to_a_Promise_compa_1055", "Type '{0}' is not a valid async function return type in ES5 because it does not refer to a Promise-compatible constructor value."), Accessors_are_only_available_when_targeting_ECMAScript_5_and_higher: diag(1056, 1, "Accessors_are_only_available_when_targeting_ECMAScript_5_and_higher_1056", "Accessors are only available when targeting ECMAScript 5 and higher."), The_return_type_of_an_async_function_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member: diag(1058, 1, "The_return_type_of_an_async_function_must_either_be_a_valid_promise_or_must_not_contain_a_callable_t_1058", "The return type of an async function must either be a valid promise or must not contain a callable 'then' member."), A_promise_must_have_a_then_method: diag(1059, 1, "A_promise_must_have_a_then_method_1059", "A promise must have a 'then' method."), The_first_parameter_of_the_then_method_of_a_promise_must_be_a_callback: diag(1060, 1, "The_first_parameter_of_the_then_method_of_a_promise_must_be_a_callback_1060", "The first parameter of the 'then' method of a promise must be a callback."), Enum_member_must_have_initializer: diag(1061, 1, "Enum_member_must_have_initializer_1061", "Enum member must have initializer."), Type_is_referenced_directly_or_indirectly_in_the_fulfillment_callback_of_its_own_then_method: diag(1062, 1, "Type_is_referenced_directly_or_indirectly_in_the_fulfillment_callback_of_its_own_then_method_1062", "Type is referenced directly or indirectly in the fulfillment callback of its own 'then' method."), An_export_assignment_cannot_be_used_in_a_namespace: diag(1063, 1, "An_export_assignment_cannot_be_used_in_a_namespace_1063", "An export assignment cannot be used in a namespace."), The_return_type_of_an_async_function_or_method_must_be_the_global_Promise_T_type_Did_you_mean_to_write_Promise_0: diag(1064, 1, "The_return_type_of_an_async_function_or_method_must_be_the_global_Promise_T_type_Did_you_mean_to_wri_1064", "The return type of an async function or method must be the global Promise type. Did you mean to write 'Promise<{0}>'?"), The_return_type_of_an_async_function_or_method_must_be_the_global_Promise_T_type: diag(1065, 1, "The_return_type_of_an_async_function_or_method_must_be_the_global_Promise_T_type_1065", "The return type of an async function or method must be the global Promise type."), In_ambient_enum_declarations_member_initializer_must_be_constant_expression: diag(1066, 1, "In_ambient_enum_declarations_member_initializer_must_be_constant_expression_1066", "In ambient enum declarations member initializer must be constant expression."), Unexpected_token_A_constructor_method_accessor_or_property_was_expected: diag(1068, 1, "Unexpected_token_A_constructor_method_accessor_or_property_was_expected_1068", "Unexpected token. A constructor, method, accessor, or property was expected."), Unexpected_token_A_type_parameter_name_was_expected_without_curly_braces: diag(1069, 1, "Unexpected_token_A_type_parameter_name_was_expected_without_curly_braces_1069", "Unexpected token. A type parameter name was expected without curly braces."), _0_modifier_cannot_appear_on_a_type_member: diag(1070, 1, "_0_modifier_cannot_appear_on_a_type_member_1070", "'{0}' modifier cannot appear on a type member."), _0_modifier_cannot_appear_on_an_index_signature: diag(1071, 1, "_0_modifier_cannot_appear_on_an_index_signature_1071", "'{0}' modifier cannot appear on an index signature."), A_0_modifier_cannot_be_used_with_an_import_declaration: diag(1079, 1, "A_0_modifier_cannot_be_used_with_an_import_declaration_1079", "A '{0}' modifier cannot be used with an import declaration."), Invalid_reference_directive_syntax: diag(1084, 1, "Invalid_reference_directive_syntax_1084", "Invalid 'reference' directive syntax."), _0_modifier_cannot_appear_on_a_constructor_declaration: diag(1089, 1, "_0_modifier_cannot_appear_on_a_constructor_declaration_1089", "'{0}' modifier cannot appear on a constructor declaration."), _0_modifier_cannot_appear_on_a_parameter: diag(1090, 1, "_0_modifier_cannot_appear_on_a_parameter_1090", "'{0}' modifier cannot appear on a parameter."), Only_a_single_variable_declaration_is_allowed_in_a_for_in_statement: diag(1091, 1, "Only_a_single_variable_declaration_is_allowed_in_a_for_in_statement_1091", "Only a single variable declaration is allowed in a 'for...in' statement."), Type_parameters_cannot_appear_on_a_constructor_declaration: diag(1092, 1, "Type_parameters_cannot_appear_on_a_constructor_declaration_1092", "Type parameters cannot appear on a constructor declaration."), Type_annotation_cannot_appear_on_a_constructor_declaration: diag(1093, 1, "Type_annotation_cannot_appear_on_a_constructor_declaration_1093", "Type annotation cannot appear on a constructor declaration."), An_accessor_cannot_have_type_parameters: diag(1094, 1, "An_accessor_cannot_have_type_parameters_1094", "An accessor cannot have type parameters."), A_set_accessor_cannot_have_a_return_type_annotation: diag(1095, 1, "A_set_accessor_cannot_have_a_return_type_annotation_1095", "A 'set' accessor cannot have a return type annotation."), An_index_signature_must_have_exactly_one_parameter: diag(1096, 1, "An_index_signature_must_have_exactly_one_parameter_1096", "An index signature must have exactly one parameter."), _0_list_cannot_be_empty: diag(1097, 1, "_0_list_cannot_be_empty_1097", "'{0}' list cannot be empty."), Type_parameter_list_cannot_be_empty: diag(1098, 1, "Type_parameter_list_cannot_be_empty_1098", "Type parameter list cannot be empty."), Type_argument_list_cannot_be_empty: diag(1099, 1, "Type_argument_list_cannot_be_empty_1099", "Type argument list cannot be empty."), Invalid_use_of_0_in_strict_mode: diag(1100, 1, "Invalid_use_of_0_in_strict_mode_1100", "Invalid use of '{0}' in strict mode."), with_statements_are_not_allowed_in_strict_mode: diag(1101, 1, "with_statements_are_not_allowed_in_strict_mode_1101", "'with' statements are not allowed in strict mode."), delete_cannot_be_called_on_an_identifier_in_strict_mode: diag(1102, 1, "delete_cannot_be_called_on_an_identifier_in_strict_mode_1102", "'delete' cannot be called on an identifier in strict mode."), for_await_loops_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules: diag(1103, 1, "for_await_loops_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules_1103", "'for await' loops are only allowed within async functions and at the top levels of modules."), A_continue_statement_can_only_be_used_within_an_enclosing_iteration_statement: diag(1104, 1, "A_continue_statement_can_only_be_used_within_an_enclosing_iteration_statement_1104", "A 'continue' statement can only be used within an enclosing iteration statement."), A_break_statement_can_only_be_used_within_an_enclosing_iteration_or_switch_statement: diag(1105, 1, "A_break_statement_can_only_be_used_within_an_enclosing_iteration_or_switch_statement_1105", "A 'break' statement can only be used within an enclosing iteration or switch statement."), The_left_hand_side_of_a_for_of_statement_may_not_be_async: diag(1106, 1, "The_left_hand_side_of_a_for_of_statement_may_not_be_async_1106", "The left-hand side of a 'for...of' statement may not be 'async'."), Jump_target_cannot_cross_function_boundary: diag(1107, 1, "Jump_target_cannot_cross_function_boundary_1107", "Jump target cannot cross function boundary."), A_return_statement_can_only_be_used_within_a_function_body: diag(1108, 1, "A_return_statement_can_only_be_used_within_a_function_body_1108", "A 'return' statement can only be used within a function body."), Expression_expected: diag(1109, 1, "Expression_expected_1109", "Expression expected."), Type_expected: diag(1110, 1, "Type_expected_1110", "Type expected."), Private_field_0_must_be_declared_in_an_enclosing_class: diag(1111, 1, "Private_field_0_must_be_declared_in_an_enclosing_class_1111", "Private field '{0}' must be declared in an enclosing class."), A_default_clause_cannot_appear_more_than_once_in_a_switch_statement: diag(1113, 1, "A_default_clause_cannot_appear_more_than_once_in_a_switch_statement_1113", "A 'default' clause cannot appear more than once in a 'switch' statement."), Duplicate_label_0: diag(1114, 1, "Duplicate_label_0_1114", "Duplicate label '{0}'."), A_continue_statement_can_only_jump_to_a_label_of_an_enclosing_iteration_statement: diag(1115, 1, "A_continue_statement_can_only_jump_to_a_label_of_an_enclosing_iteration_statement_1115", "A 'continue' statement can only jump to a label of an enclosing iteration statement."), A_break_statement_can_only_jump_to_a_label_of_an_enclosing_statement: diag(1116, 1, "A_break_statement_can_only_jump_to_a_label_of_an_enclosing_statement_1116", "A 'break' statement can only jump to a label of an enclosing statement."), An_object_literal_cannot_have_multiple_properties_with_the_same_name: diag(1117, 1, "An_object_literal_cannot_have_multiple_properties_with_the_same_name_1117", "An object literal cannot have multiple properties with the same name."), An_object_literal_cannot_have_multiple_get_Slashset_accessors_with_the_same_name: diag(1118, 1, "An_object_literal_cannot_have_multiple_get_Slashset_accessors_with_the_same_name_1118", "An object literal cannot have multiple get/set accessors with the same name."), An_object_literal_cannot_have_property_and_accessor_with_the_same_name: diag(1119, 1, "An_object_literal_cannot_have_property_and_accessor_with_the_same_name_1119", "An object literal cannot have property and accessor with the same name."), An_export_assignment_cannot_have_modifiers: diag(1120, 1, "An_export_assignment_cannot_have_modifiers_1120", "An export assignment cannot have modifiers."), Octal_literals_are_not_allowed_Use_the_syntax_0: diag(1121, 1, "Octal_literals_are_not_allowed_Use_the_syntax_0_1121", "Octal literals are not allowed. Use the syntax '{0}'."), Variable_declaration_list_cannot_be_empty: diag(1123, 1, "Variable_declaration_list_cannot_be_empty_1123", "Variable declaration list cannot be empty."), Digit_expected: diag(1124, 1, "Digit_expected_1124", "Digit expected."), Hexadecimal_digit_expected: diag(1125, 1, "Hexadecimal_digit_expected_1125", "Hexadecimal digit expected."), Unexpected_end_of_text: diag(1126, 1, "Unexpected_end_of_text_1126", "Unexpected end of text."), Invalid_character: diag(1127, 1, "Invalid_character_1127", "Invalid character."), Declaration_or_statement_expected: diag(1128, 1, "Declaration_or_statement_expected_1128", "Declaration or statement expected."), Statement_expected: diag(1129, 1, "Statement_expected_1129", "Statement expected."), case_or_default_expected: diag(1130, 1, "case_or_default_expected_1130", "'case' or 'default' expected."), Property_or_signature_expected: diag(1131, 1, "Property_or_signature_expected_1131", "Property or signature expected."), Enum_member_expected: diag(1132, 1, "Enum_member_expected_1132", "Enum member expected."), Variable_declaration_expected: diag(1134, 1, "Variable_declaration_expected_1134", "Variable declaration expected."), Argument_expression_expected: diag(1135, 1, "Argument_expression_expected_1135", "Argument expression expected."), Property_assignment_expected: diag(1136, 1, "Property_assignment_expected_1136", "Property assignment expected."), Expression_or_comma_expected: diag(1137, 1, "Expression_or_comma_expected_1137", "Expression or comma expected."), Parameter_declaration_expected: diag(1138, 1, "Parameter_declaration_expected_1138", "Parameter declaration expected."), Type_parameter_declaration_expected: diag(1139, 1, "Type_parameter_declaration_expected_1139", "Type parameter declaration expected."), Type_argument_expected: diag(1140, 1, "Type_argument_expected_1140", "Type argument expected."), String_literal_expected: diag(1141, 1, "String_literal_expected_1141", "String literal expected."), Line_break_not_permitted_here: diag(1142, 1, "Line_break_not_permitted_here_1142", "Line break not permitted here."), or_expected: diag(1144, 1, "or_expected_1144", "'{' or ';' expected."), or_JSX_element_expected: diag(1145, 1, "or_JSX_element_expected_1145", "'{' or JSX element expected."), Declaration_expected: diag(1146, 1, "Declaration_expected_1146", "Declaration expected."), Import_declarations_in_a_namespace_cannot_reference_a_module: diag(1147, 1, "Import_declarations_in_a_namespace_cannot_reference_a_module_1147", "Import declarations in a namespace cannot reference a module."), Cannot_use_imports_exports_or_module_augmentations_when_module_is_none: diag(1148, 1, "Cannot_use_imports_exports_or_module_augmentations_when_module_is_none_1148", "Cannot use imports, exports, or module augmentations when '--module' is 'none'."), File_name_0_differs_from_already_included_file_name_1_only_in_casing: diag(1149, 1, "File_name_0_differs_from_already_included_file_name_1_only_in_casing_1149", "File name '{0}' differs from already included file name '{1}' only in casing."), _0_declarations_must_be_initialized: diag(1155, 1, "_0_declarations_must_be_initialized_1155", "'{0}' declarations must be initialized."), _0_declarations_can_only_be_declared_inside_a_block: diag(1156, 1, "_0_declarations_can_only_be_declared_inside_a_block_1156", "'{0}' declarations can only be declared inside a block."), Unterminated_template_literal: diag(1160, 1, "Unterminated_template_literal_1160", "Unterminated template literal."), Unterminated_regular_expression_literal: diag(1161, 1, "Unterminated_regular_expression_literal_1161", "Unterminated regular expression literal."), An_object_member_cannot_be_declared_optional: diag(1162, 1, "An_object_member_cannot_be_declared_optional_1162", "An object member cannot be declared optional."), A_yield_expression_is_only_allowed_in_a_generator_body: diag(1163, 1, "A_yield_expression_is_only_allowed_in_a_generator_body_1163", "A 'yield' expression is only allowed in a generator body."), Computed_property_names_are_not_allowed_in_enums: diag(1164, 1, "Computed_property_names_are_not_allowed_in_enums_1164", "Computed property names are not allowed in enums."), A_computed_property_name_in_an_ambient_context_must_refer_to_an_expression_whose_type_is_a_literal_type_or_a_unique_symbol_type: diag(1165, 1, "A_computed_property_name_in_an_ambient_context_must_refer_to_an_expression_whose_type_is_a_literal_t_1165", "A computed property name in an ambient context must refer to an expression whose type is a literal type or a 'unique symbol' type."), A_computed_property_name_in_a_class_property_declaration_must_have_a_simple_literal_type_or_a_unique_symbol_type: diag(1166, 1, "A_computed_property_name_in_a_class_property_declaration_must_have_a_simple_literal_type_or_a_unique_1166", "A computed property name in a class property declaration must have a simple literal type or a 'unique symbol' type."), A_computed_property_name_in_a_method_overload_must_refer_to_an_expression_whose_type_is_a_literal_type_or_a_unique_symbol_type: diag(1168, 1, "A_computed_property_name_in_a_method_overload_must_refer_to_an_expression_whose_type_is_a_literal_ty_1168", "A computed property name in a method overload must refer to an expression whose type is a literal type or a 'unique symbol' type."), A_computed_property_name_in_an_interface_must_refer_to_an_expression_whose_type_is_a_literal_type_or_a_unique_symbol_type: diag(1169, 1, "A_computed_property_name_in_an_interface_must_refer_to_an_expression_whose_type_is_a_literal_type_or_1169", "A computed property name in an interface must refer to an expression whose type is a literal type or a 'unique symbol' type."), A_computed_property_name_in_a_type_literal_must_refer_to_an_expression_whose_type_is_a_literal_type_or_a_unique_symbol_type: diag(1170, 1, "A_computed_property_name_in_a_type_literal_must_refer_to_an_expression_whose_type_is_a_literal_type__1170", "A computed property name in a type literal must refer to an expression whose type is a literal type or a 'unique symbol' type."), A_comma_expression_is_not_allowed_in_a_computed_property_name: diag(1171, 1, "A_comma_expression_is_not_allowed_in_a_computed_property_name_1171", "A comma expression is not allowed in a computed property name."), extends_clause_already_seen: diag(1172, 1, "extends_clause_already_seen_1172", "'extends' clause already seen."), extends_clause_must_precede_implements_clause: diag(1173, 1, "extends_clause_must_precede_implements_clause_1173", "'extends' clause must precede 'implements' clause."), Classes_can_only_extend_a_single_class: diag(1174, 1, "Classes_can_only_extend_a_single_class_1174", "Classes can only extend a single class."), implements_clause_already_seen: diag(1175, 1, "implements_clause_already_seen_1175", "'implements' clause already seen."), Interface_declaration_cannot_have_implements_clause: diag(1176, 1, "Interface_declaration_cannot_have_implements_clause_1176", "Interface declaration cannot have 'implements' clause."), Binary_digit_expected: diag(1177, 1, "Binary_digit_expected_1177", "Binary digit expected."), Octal_digit_expected: diag(1178, 1, "Octal_digit_expected_1178", "Octal digit expected."), Unexpected_token_expected: diag(1179, 1, "Unexpected_token_expected_1179", "Unexpected token. '{' expected."), Property_destructuring_pattern_expected: diag(1180, 1, "Property_destructuring_pattern_expected_1180", "Property destructuring pattern expected."), Array_element_destructuring_pattern_expected: diag(1181, 1, "Array_element_destructuring_pattern_expected_1181", "Array element destructuring pattern expected."), A_destructuring_declaration_must_have_an_initializer: diag(1182, 1, "A_destructuring_declaration_must_have_an_initializer_1182", "A destructuring declaration must have an initializer."), An_implementation_cannot_be_declared_in_ambient_contexts: diag(1183, 1, "An_implementation_cannot_be_declared_in_ambient_contexts_1183", "An implementation cannot be declared in ambient contexts."), Modifiers_cannot_appear_here: diag(1184, 1, "Modifiers_cannot_appear_here_1184", "Modifiers cannot appear here."), Merge_conflict_marker_encountered: diag(1185, 1, "Merge_conflict_marker_encountered_1185", "Merge conflict marker encountered."), A_rest_element_cannot_have_an_initializer: diag(1186, 1, "A_rest_element_cannot_have_an_initializer_1186", "A rest element cannot have an initializer."), A_parameter_property_may_not_be_declared_using_a_binding_pattern: diag(1187, 1, "A_parameter_property_may_not_be_declared_using_a_binding_pattern_1187", "A parameter property may not be declared using a binding pattern."), Only_a_single_variable_declaration_is_allowed_in_a_for_of_statement: diag(1188, 1, "Only_a_single_variable_declaration_is_allowed_in_a_for_of_statement_1188", "Only a single variable declaration is allowed in a 'for...of' statement."), The_variable_declaration_of_a_for_in_statement_cannot_have_an_initializer: diag(1189, 1, "The_variable_declaration_of_a_for_in_statement_cannot_have_an_initializer_1189", "The variable declaration of a 'for...in' statement cannot have an initializer."), The_variable_declaration_of_a_for_of_statement_cannot_have_an_initializer: diag(1190, 1, "The_variable_declaration_of_a_for_of_statement_cannot_have_an_initializer_1190", "The variable declaration of a 'for...of' statement cannot have an initializer."), An_import_declaration_cannot_have_modifiers: diag(1191, 1, "An_import_declaration_cannot_have_modifiers_1191", "An import declaration cannot have modifiers."), Module_0_has_no_default_export: diag(1192, 1, "Module_0_has_no_default_export_1192", "Module '{0}' has no default export."), An_export_declaration_cannot_have_modifiers: diag(1193, 1, "An_export_declaration_cannot_have_modifiers_1193", "An export declaration cannot have modifiers."), Export_declarations_are_not_permitted_in_a_namespace: diag(1194, 1, "Export_declarations_are_not_permitted_in_a_namespace_1194", "Export declarations are not permitted in a namespace."), export_Asterisk_does_not_re_export_a_default: diag(1195, 1, "export_Asterisk_does_not_re_export_a_default_1195", "'export *' does not re-export a default."), Catch_clause_variable_type_annotation_must_be_any_or_unknown_if_specified: diag(1196, 1, "Catch_clause_variable_type_annotation_must_be_any_or_unknown_if_specified_1196", "Catch clause variable type annotation must be 'any' or 'unknown' if specified."), Catch_clause_variable_cannot_have_an_initializer: diag(1197, 1, "Catch_clause_variable_cannot_have_an_initializer_1197", "Catch clause variable cannot have an initializer."), An_extended_Unicode_escape_value_must_be_between_0x0_and_0x10FFFF_inclusive: diag(1198, 1, "An_extended_Unicode_escape_value_must_be_between_0x0_and_0x10FFFF_inclusive_1198", "An extended Unicode escape value must be between 0x0 and 0x10FFFF inclusive."), Unterminated_Unicode_escape_sequence: diag(1199, 1, "Unterminated_Unicode_escape_sequence_1199", "Unterminated Unicode escape sequence."), Line_terminator_not_permitted_before_arrow: diag(1200, 1, "Line_terminator_not_permitted_before_arrow_1200", "Line terminator not permitted before arrow."), Import_assignment_cannot_be_used_when_targeting_ECMAScript_modules_Consider_using_import_Asterisk_as_ns_from_mod_import_a_from_mod_import_d_from_mod_or_another_module_format_instead: diag(1202, 1, "Import_assignment_cannot_be_used_when_targeting_ECMAScript_modules_Consider_using_import_Asterisk_as_1202", `Import assignment cannot be used when targeting ECMAScript modules. Consider using 'import * as ns from "mod"', 'import {a} from "mod"', 'import d from "mod"', or another module format instead.`), Export_assignment_cannot_be_used_when_targeting_ECMAScript_modules_Consider_using_export_default_or_another_module_format_instead: diag(1203, 1, "Export_assignment_cannot_be_used_when_targeting_ECMAScript_modules_Consider_using_export_default_or__1203", "Export assignment cannot be used when targeting ECMAScript modules. Consider using 'export default' or another module format instead."), Re_exporting_a_type_when_0_is_enabled_requires_using_export_type: diag(1205, 1, "Re_exporting_a_type_when_0_is_enabled_requires_using_export_type_1205", "Re-exporting a type when '{0}' is enabled requires using 'export type'."), Decorators_are_not_valid_here: diag(1206, 1, "Decorators_are_not_valid_here_1206", "Decorators are not valid here."), Decorators_cannot_be_applied_to_multiple_get_Slashset_accessors_of_the_same_name: diag(1207, 1, "Decorators_cannot_be_applied_to_multiple_get_Slashset_accessors_of_the_same_name_1207", "Decorators cannot be applied to multiple get/set accessors of the same name."), Invalid_optional_chain_from_new_expression_Did_you_mean_to_call_0: diag(1209, 1, "Invalid_optional_chain_from_new_expression_Did_you_mean_to_call_0_1209", "Invalid optional chain from new expression. Did you mean to call '{0}()'?"), Code_contained_in_a_class_is_evaluated_in_JavaScript_s_strict_mode_which_does_not_allow_this_use_of_0_For_more_information_see_https_Colon_Slash_Slashdeveloper_mozilla_org_Slashen_US_Slashdocs_SlashWeb_SlashJavaScript_SlashReference_SlashStrict_mode: diag(1210, 1, "Code_contained_in_a_class_is_evaluated_in_JavaScript_s_strict_mode_which_does_not_allow_this_use_of__1210", "Code contained in a class is evaluated in JavaScript's strict mode which does not allow this use of '{0}'. For more information, see https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Strict_mode."), A_class_declaration_without_the_default_modifier_must_have_a_name: diag(1211, 1, "A_class_declaration_without_the_default_modifier_must_have_a_name_1211", "A class declaration without the 'default' modifier must have a name."), Identifier_expected_0_is_a_reserved_word_in_strict_mode: diag(1212, 1, "Identifier_expected_0_is_a_reserved_word_in_strict_mode_1212", "Identifier expected. '{0}' is a reserved word in strict mode."), Identifier_expected_0_is_a_reserved_word_in_strict_mode_Class_definitions_are_automatically_in_strict_mode: diag(1213, 1, "Identifier_expected_0_is_a_reserved_word_in_strict_mode_Class_definitions_are_automatically_in_stric_1213", "Identifier expected. '{0}' is a reserved word in strict mode. Class definitions are automatically in strict mode."), Identifier_expected_0_is_a_reserved_word_in_strict_mode_Modules_are_automatically_in_strict_mode: diag(1214, 1, "Identifier_expected_0_is_a_reserved_word_in_strict_mode_Modules_are_automatically_in_strict_mode_1214", "Identifier expected. '{0}' is a reserved word in strict mode. Modules are automatically in strict mode."), Invalid_use_of_0_Modules_are_automatically_in_strict_mode: diag(1215, 1, "Invalid_use_of_0_Modules_are_automatically_in_strict_mode_1215", "Invalid use of '{0}'. Modules are automatically in strict mode."), Identifier_expected_esModule_is_reserved_as_an_exported_marker_when_transforming_ECMAScript_modules: diag(1216, 1, "Identifier_expected_esModule_is_reserved_as_an_exported_marker_when_transforming_ECMAScript_modules_1216", "Identifier expected. '__esModule' is reserved as an exported marker when transforming ECMAScript modules."), Export_assignment_is_not_supported_when_module_flag_is_system: diag(1218, 1, "Export_assignment_is_not_supported_when_module_flag_is_system_1218", "Export assignment is not supported when '--module' flag is 'system'."), Generators_are_not_allowed_in_an_ambient_context: diag(1221, 1, "Generators_are_not_allowed_in_an_ambient_context_1221", "Generators are not allowed in an ambient context."), An_overload_signature_cannot_be_declared_as_a_generator: diag(1222, 1, "An_overload_signature_cannot_be_declared_as_a_generator_1222", "An overload signature cannot be declared as a generator."), _0_tag_already_specified: diag(1223, 1, "_0_tag_already_specified_1223", "'{0}' tag already specified."), Signature_0_must_be_a_type_predicate: diag(1224, 1, "Signature_0_must_be_a_type_predicate_1224", "Signature '{0}' must be a type predicate."), Cannot_find_parameter_0: diag(1225, 1, "Cannot_find_parameter_0_1225", "Cannot find parameter '{0}'."), Type_predicate_0_is_not_assignable_to_1: diag(1226, 1, "Type_predicate_0_is_not_assignable_to_1_1226", "Type predicate '{0}' is not assignable to '{1}'."), Parameter_0_is_not_in_the_same_position_as_parameter_1: diag(1227, 1, "Parameter_0_is_not_in_the_same_position_as_parameter_1_1227", "Parameter '{0}' is not in the same position as parameter '{1}'."), A_type_predicate_is_only_allowed_in_return_type_position_for_functions_and_methods: diag(1228, 1, "A_type_predicate_is_only_allowed_in_return_type_position_for_functions_and_methods_1228", "A type predicate is only allowed in return type position for functions and methods."), A_type_predicate_cannot_reference_a_rest_parameter: diag(1229, 1, "A_type_predicate_cannot_reference_a_rest_parameter_1229", "A type predicate cannot reference a rest parameter."), A_type_predicate_cannot_reference_element_0_in_a_binding_pattern: diag(1230, 1, "A_type_predicate_cannot_reference_element_0_in_a_binding_pattern_1230", "A type predicate cannot reference element '{0}' in a binding pattern."), An_export_assignment_must_be_at_the_top_level_of_a_file_or_module_declaration: diag(1231, 1, "An_export_assignment_must_be_at_the_top_level_of_a_file_or_module_declaration_1231", "An export assignment must be at the top level of a file or module declaration."), An_import_declaration_can_only_be_used_at_the_top_level_of_a_namespace_or_module: diag(1232, 1, "An_import_declaration_can_only_be_used_at_the_top_level_of_a_namespace_or_module_1232", "An import declaration can only be used at the top level of a namespace or module."), An_export_declaration_can_only_be_used_at_the_top_level_of_a_namespace_or_module: diag(1233, 1, "An_export_declaration_can_only_be_used_at_the_top_level_of_a_namespace_or_module_1233", "An export declaration can only be used at the top level of a namespace or module."), An_ambient_module_declaration_is_only_allowed_at_the_top_level_in_a_file: diag(1234, 1, "An_ambient_module_declaration_is_only_allowed_at_the_top_level_in_a_file_1234", "An ambient module declaration is only allowed at the top level in a file."), A_namespace_declaration_is_only_allowed_at_the_top_level_of_a_namespace_or_module: diag(1235, 1, "A_namespace_declaration_is_only_allowed_at_the_top_level_of_a_namespace_or_module_1235", "A namespace declaration is only allowed at the top level of a namespace or module."), The_return_type_of_a_property_decorator_function_must_be_either_void_or_any: diag(1236, 1, "The_return_type_of_a_property_decorator_function_must_be_either_void_or_any_1236", "The return type of a property decorator function must be either 'void' or 'any'."), The_return_type_of_a_parameter_decorator_function_must_be_either_void_or_any: diag(1237, 1, "The_return_type_of_a_parameter_decorator_function_must_be_either_void_or_any_1237", "The return type of a parameter decorator function must be either 'void' or 'any'."), Unable_to_resolve_signature_of_class_decorator_when_called_as_an_expression: diag(1238, 1, "Unable_to_resolve_signature_of_class_decorator_when_called_as_an_expression_1238", "Unable to resolve signature of class decorator when called as an expression."), Unable_to_resolve_signature_of_parameter_decorator_when_called_as_an_expression: diag(1239, 1, "Unable_to_resolve_signature_of_parameter_decorator_when_called_as_an_expression_1239", "Unable to resolve signature of parameter decorator when called as an expression."), Unable_to_resolve_signature_of_property_decorator_when_called_as_an_expression: diag(1240, 1, "Unable_to_resolve_signature_of_property_decorator_when_called_as_an_expression_1240", "Unable to resolve signature of property decorator when called as an expression."), Unable_to_resolve_signature_of_method_decorator_when_called_as_an_expression: diag(1241, 1, "Unable_to_resolve_signature_of_method_decorator_when_called_as_an_expression_1241", "Unable to resolve signature of method decorator when called as an expression."), abstract_modifier_can_only_appear_on_a_class_method_or_property_declaration: diag(1242, 1, "abstract_modifier_can_only_appear_on_a_class_method_or_property_declaration_1242", "'abstract' modifier can only appear on a class, method, or property declaration."), _0_modifier_cannot_be_used_with_1_modifier: diag(1243, 1, "_0_modifier_cannot_be_used_with_1_modifier_1243", "'{0}' modifier cannot be used with '{1}' modifier."), Abstract_methods_can_only_appear_within_an_abstract_class: diag(1244, 1, "Abstract_methods_can_only_appear_within_an_abstract_class_1244", "Abstract methods can only appear within an abstract class."), Method_0_cannot_have_an_implementation_because_it_is_marked_abstract: diag(1245, 1, "Method_0_cannot_have_an_implementation_because_it_is_marked_abstract_1245", "Method '{0}' cannot have an implementation because it is marked abstract."), An_interface_property_cannot_have_an_initializer: diag(1246, 1, "An_interface_property_cannot_have_an_initializer_1246", "An interface property cannot have an initializer."), A_type_literal_property_cannot_have_an_initializer: diag(1247, 1, "A_type_literal_property_cannot_have_an_initializer_1247", "A type literal property cannot have an initializer."), A_class_member_cannot_have_the_0_keyword: diag(1248, 1, "A_class_member_cannot_have_the_0_keyword_1248", "A class member cannot have the '{0}' keyword."), A_decorator_can_only_decorate_a_method_implementation_not_an_overload: diag(1249, 1, "A_decorator_can_only_decorate_a_method_implementation_not_an_overload_1249", "A decorator can only decorate a method implementation, not an overload."), Function_declarations_are_not_allowed_inside_blocks_in_strict_mode_when_targeting_ES5: diag(1250, 1, "Function_declarations_are_not_allowed_inside_blocks_in_strict_mode_when_targeting_ES5_1250", "Function declarations are not allowed inside blocks in strict mode when targeting 'ES5'."), Function_declarations_are_not_allowed_inside_blocks_in_strict_mode_when_targeting_ES5_Class_definitions_are_automatically_in_strict_mode: diag(1251, 1, "Function_declarations_are_not_allowed_inside_blocks_in_strict_mode_when_targeting_ES5_Class_definiti_1251", "Function declarations are not allowed inside blocks in strict mode when targeting 'ES5'. Class definitions are automatically in strict mode."), Function_declarations_are_not_allowed_inside_blocks_in_strict_mode_when_targeting_ES5_Modules_are_automatically_in_strict_mode: diag(1252, 1, "Function_declarations_are_not_allowed_inside_blocks_in_strict_mode_when_targeting_ES5_Modules_are_au_1252", "Function declarations are not allowed inside blocks in strict mode when targeting 'ES5'. Modules are automatically in strict mode."), Abstract_properties_can_only_appear_within_an_abstract_class: diag(1253, 1, "Abstract_properties_can_only_appear_within_an_abstract_class_1253", "Abstract properties can only appear within an abstract class."), A_const_initializer_in_an_ambient_context_must_be_a_string_or_numeric_literal_or_literal_enum_reference: diag(1254, 1, "A_const_initializer_in_an_ambient_context_must_be_a_string_or_numeric_literal_or_literal_enum_refere_1254", "A 'const' initializer in an ambient context must be a string or numeric literal or literal enum reference."), A_definite_assignment_assertion_is_not_permitted_in_this_context: diag(1255, 1, "A_definite_assignment_assertion_is_not_permitted_in_this_context_1255", "A definite assignment assertion '!' is not permitted in this context."), A_required_element_cannot_follow_an_optional_element: diag(1257, 1, "A_required_element_cannot_follow_an_optional_element_1257", "A required element cannot follow an optional element."), A_default_export_must_be_at_the_top_level_of_a_file_or_module_declaration: diag(1258, 1, "A_default_export_must_be_at_the_top_level_of_a_file_or_module_declaration_1258", "A default export must be at the top level of a file or module declaration."), Module_0_can_only_be_default_imported_using_the_1_flag: diag(1259, 1, "Module_0_can_only_be_default_imported_using_the_1_flag_1259", "Module '{0}' can only be default-imported using the '{1}' flag"), Keywords_cannot_contain_escape_characters: diag(1260, 1, "Keywords_cannot_contain_escape_characters_1260", "Keywords cannot contain escape characters."), Already_included_file_name_0_differs_from_file_name_1_only_in_casing: diag(1261, 1, "Already_included_file_name_0_differs_from_file_name_1_only_in_casing_1261", "Already included file name '{0}' differs from file name '{1}' only in casing."), Identifier_expected_0_is_a_reserved_word_at_the_top_level_of_a_module: diag(1262, 1, "Identifier_expected_0_is_a_reserved_word_at_the_top_level_of_a_module_1262", "Identifier expected. '{0}' is a reserved word at the top-level of a module."), Declarations_with_initializers_cannot_also_have_definite_assignment_assertions: diag(1263, 1, "Declarations_with_initializers_cannot_also_have_definite_assignment_assertions_1263", "Declarations with initializers cannot also have definite assignment assertions."), Declarations_with_definite_assignment_assertions_must_also_have_type_annotations: diag(1264, 1, "Declarations_with_definite_assignment_assertions_must_also_have_type_annotations_1264", "Declarations with definite assignment assertions must also have type annotations."), A_rest_element_cannot_follow_another_rest_element: diag(1265, 1, "A_rest_element_cannot_follow_another_rest_element_1265", "A rest element cannot follow another rest element."), An_optional_element_cannot_follow_a_rest_element: diag(1266, 1, "An_optional_element_cannot_follow_a_rest_element_1266", "An optional element cannot follow a rest element."), Property_0_cannot_have_an_initializer_because_it_is_marked_abstract: diag(1267, 1, "Property_0_cannot_have_an_initializer_because_it_is_marked_abstract_1267", "Property '{0}' cannot have an initializer because it is marked abstract."), An_index_signature_parameter_type_must_be_string_number_symbol_or_a_template_literal_type: diag(1268, 1, "An_index_signature_parameter_type_must_be_string_number_symbol_or_a_template_literal_type_1268", "An index signature parameter type must be 'string', 'number', 'symbol', or a template literal type."), Cannot_use_export_import_on_a_type_or_type_only_namespace_when_0_is_enabled: diag(1269, 1, "Cannot_use_export_import_on_a_type_or_type_only_namespace_when_0_is_enabled_1269", "Cannot use 'export import' on a type or type-only namespace when '{0}' is enabled."), Decorator_function_return_type_0_is_not_assignable_to_type_1: diag(1270, 1, "Decorator_function_return_type_0_is_not_assignable_to_type_1_1270", "Decorator function return type '{0}' is not assignable to type '{1}'."), Decorator_function_return_type_is_0_but_is_expected_to_be_void_or_any: diag(1271, 1, "Decorator_function_return_type_is_0_but_is_expected_to_be_void_or_any_1271", "Decorator function return type is '{0}' but is expected to be 'void' or 'any'."), A_type_referenced_in_a_decorated_signature_must_be_imported_with_import_type_or_a_namespace_import_when_isolatedModules_and_emitDecoratorMetadata_are_enabled: diag(1272, 1, "A_type_referenced_in_a_decorated_signature_must_be_imported_with_import_type_or_a_namespace_import_w_1272", "A type referenced in a decorated signature must be imported with 'import type' or a namespace import when 'isolatedModules' and 'emitDecoratorMetadata' are enabled."), _0_modifier_cannot_appear_on_a_type_parameter: diag(1273, 1, "_0_modifier_cannot_appear_on_a_type_parameter_1273", "'{0}' modifier cannot appear on a type parameter"), _0_modifier_can_only_appear_on_a_type_parameter_of_a_class_interface_or_type_alias: diag(1274, 1, "_0_modifier_can_only_appear_on_a_type_parameter_of_a_class_interface_or_type_alias_1274", "'{0}' modifier can only appear on a type parameter of a class, interface or type alias"), accessor_modifier_can_only_appear_on_a_property_declaration: diag(1275, 1, "accessor_modifier_can_only_appear_on_a_property_declaration_1275", "'accessor' modifier can only appear on a property declaration."), An_accessor_property_cannot_be_declared_optional: diag(1276, 1, "An_accessor_property_cannot_be_declared_optional_1276", "An 'accessor' property cannot be declared optional."), _0_modifier_can_only_appear_on_a_type_parameter_of_a_function_method_or_class: diag(1277, 1, "_0_modifier_can_only_appear_on_a_type_parameter_of_a_function_method_or_class_1277", "'{0}' modifier can only appear on a type parameter of a function, method or class"), The_runtime_will_invoke_the_decorator_with_1_arguments_but_the_decorator_expects_0: diag(1278, 1, "The_runtime_will_invoke_the_decorator_with_1_arguments_but_the_decorator_expects_0_1278", "The runtime will invoke the decorator with {1} arguments, but the decorator expects {0}."), The_runtime_will_invoke_the_decorator_with_1_arguments_but_the_decorator_expects_at_least_0: diag(1279, 1, "The_runtime_will_invoke_the_decorator_with_1_arguments_but_the_decorator_expects_at_least_0_1279", "The runtime will invoke the decorator with {1} arguments, but the decorator expects at least {0}."), Namespaces_are_not_allowed_in_global_script_files_when_0_is_enabled_If_this_file_is_not_intended_to_be_a_global_script_set_moduleDetection_to_force_or_add_an_empty_export_statement: diag(1280, 1, "Namespaces_are_not_allowed_in_global_script_files_when_0_is_enabled_If_this_file_is_not_intended_to__1280", "Namespaces are not allowed in global script files when '{0}' is enabled. If this file is not intended to be a global script, set 'moduleDetection' to 'force' or add an empty 'export {}' statement."), Cannot_access_0_from_another_file_without_qualification_when_1_is_enabled_Use_2_instead: diag(1281, 1, "Cannot_access_0_from_another_file_without_qualification_when_1_is_enabled_Use_2_instead_1281", "Cannot access '{0}' from another file without qualification when '{1}' is enabled. Use '{2}' instead."), An_export_declaration_must_reference_a_value_when_verbatimModuleSyntax_is_enabled_but_0_only_refers_to_a_type: diag(1282, 1, "An_export_declaration_must_reference_a_value_when_verbatimModuleSyntax_is_enabled_but_0_only_refers__1282", "An 'export =' declaration must reference a value when 'verbatimModuleSyntax' is enabled, but '{0}' only refers to a type."), An_export_declaration_must_reference_a_real_value_when_verbatimModuleSyntax_is_enabled_but_0_resolves_to_a_type_only_declaration: diag(1283, 1, "An_export_declaration_must_reference_a_real_value_when_verbatimModuleSyntax_is_enabled_but_0_resolve_1283", "An 'export =' declaration must reference a real value when 'verbatimModuleSyntax' is enabled, but '{0}' resolves to a type-only declaration."), An_export_default_must_reference_a_value_when_verbatimModuleSyntax_is_enabled_but_0_only_refers_to_a_type: diag(1284, 1, "An_export_default_must_reference_a_value_when_verbatimModuleSyntax_is_enabled_but_0_only_refers_to_a_1284", "An 'export default' must reference a value when 'verbatimModuleSyntax' is enabled, but '{0}' only refers to a type."), An_export_default_must_reference_a_real_value_when_verbatimModuleSyntax_is_enabled_but_0_resolves_to_a_type_only_declaration: diag(1285, 1, "An_export_default_must_reference_a_real_value_when_verbatimModuleSyntax_is_enabled_but_0_resolves_to_1285", "An 'export default' must reference a real value when 'verbatimModuleSyntax' is enabled, but '{0}' resolves to a type-only declaration."), ECMAScript_imports_and_exports_cannot_be_written_in_a_CommonJS_file_under_verbatimModuleSyntax: diag(1286, 1, "ECMAScript_imports_and_exports_cannot_be_written_in_a_CommonJS_file_under_verbatimModuleSyntax_1286", "ECMAScript imports and exports cannot be written in a CommonJS file under 'verbatimModuleSyntax'."), A_top_level_export_modifier_cannot_be_used_on_value_declarations_in_a_CommonJS_module_when_verbatimModuleSyntax_is_enabled: diag(1287, 1, "A_top_level_export_modifier_cannot_be_used_on_value_declarations_in_a_CommonJS_module_when_verbatimM_1287", "A top-level 'export' modifier cannot be used on value declarations in a CommonJS module when 'verbatimModuleSyntax' is enabled."), An_import_alias_cannot_resolve_to_a_type_or_type_only_declaration_when_verbatimModuleSyntax_is_enabled: diag(1288, 1, "An_import_alias_cannot_resolve_to_a_type_or_type_only_declaration_when_verbatimModuleSyntax_is_enabl_1288", "An import alias cannot resolve to a type or type-only declaration when 'verbatimModuleSyntax' is enabled."), _0_resolves_to_a_type_only_declaration_and_must_be_marked_type_only_in_this_file_before_re_exporting_when_1_is_enabled_Consider_using_import_type_where_0_is_imported: diag(1289, 1, "_0_resolves_to_a_type_only_declaration_and_must_be_marked_type_only_in_this_file_before_re_exporting_1289", "'{0}' resolves to a type-only declaration and must be marked type-only in this file before re-exporting when '{1}' is enabled. Consider using 'import type' where '{0}' is imported."), _0_resolves_to_a_type_only_declaration_and_must_be_marked_type_only_in_this_file_before_re_exporting_when_1_is_enabled_Consider_using_export_type_0_as_default: diag(1290, 1, "_0_resolves_to_a_type_only_declaration_and_must_be_marked_type_only_in_this_file_before_re_exporting_1290", "'{0}' resolves to a type-only declaration and must be marked type-only in this file before re-exporting when '{1}' is enabled. Consider using 'export type { {0} as default }'."), _0_resolves_to_a_type_and_must_be_marked_type_only_in_this_file_before_re_exporting_when_1_is_enabled_Consider_using_import_type_where_0_is_imported: diag(1291, 1, "_0_resolves_to_a_type_and_must_be_marked_type_only_in_this_file_before_re_exporting_when_1_is_enable_1291", "'{0}' resolves to a type and must be marked type-only in this file before re-exporting when '{1}' is enabled. Consider using 'import type' where '{0}' is imported."), _0_resolves_to_a_type_and_must_be_marked_type_only_in_this_file_before_re_exporting_when_1_is_enabled_Consider_using_export_type_0_as_default: diag(1292, 1, "_0_resolves_to_a_type_and_must_be_marked_type_only_in_this_file_before_re_exporting_when_1_is_enable_1292", "'{0}' resolves to a type and must be marked type-only in this file before re-exporting when '{1}' is enabled. Consider using 'export type { {0} as default }'."), ECMAScript_module_syntax_is_not_allowed_in_a_CommonJS_module_when_module_is_set_to_preserve: diag(1293, 1, "ECMAScript_module_syntax_is_not_allowed_in_a_CommonJS_module_when_module_is_set_to_preserve_1293", "ECMAScript module syntax is not allowed in a CommonJS module when 'module' is set to 'preserve'."), This_syntax_is_not_allowed_when_erasableSyntaxOnly_is_enabled: diag(1294, 1, "This_syntax_is_not_allowed_when_erasableSyntaxOnly_is_enabled_1294", "This syntax is not allowed when 'erasableSyntaxOnly' is enabled."), ECMAScript_imports_and_exports_cannot_be_written_in_a_CommonJS_file_under_verbatimModuleSyntax_Adjust_the_type_field_in_the_nearest_package_json_to_make_this_file_an_ECMAScript_module_or_adjust_your_verbatimModuleSyntax_module_and_moduleResolution_settings_in_TypeScript: diag(1295, 1, "ECMAScript_imports_and_exports_cannot_be_written_in_a_CommonJS_file_under_verbatimModuleSyntax_Adjus_1295", "ECMAScript imports and exports cannot be written in a CommonJS file under 'verbatimModuleSyntax'. Adjust the 'type' field in the nearest 'package.json' to make this file an ECMAScript module, or adjust your 'verbatimModuleSyntax', 'module', and 'moduleResolution' settings in TypeScript."), with_statements_are_not_allowed_in_an_async_function_block: diag(1300, 1, "with_statements_are_not_allowed_in_an_async_function_block_1300", "'with' statements are not allowed in an async function block."), await_expressions_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules: diag(1308, 1, "await_expressions_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules_1308", "'await' expressions are only allowed within async functions and at the top levels of modules."), The_current_file_is_a_CommonJS_module_and_cannot_use_await_at_the_top_level: diag(1309, 1, "The_current_file_is_a_CommonJS_module_and_cannot_use_await_at_the_top_level_1309", "The current file is a CommonJS module and cannot use 'await' at the top level."), Did_you_mean_to_use_a_Colon_An_can_only_follow_a_property_name_when_the_containing_object_literal_is_part_of_a_destructuring_pattern: diag(1312, 1, "Did_you_mean_to_use_a_Colon_An_can_only_follow_a_property_name_when_the_containing_object_literal_is_1312", "Did you mean to use a ':'? An '=' can only follow a property name when the containing object literal is part of a destructuring pattern."), The_body_of_an_if_statement_cannot_be_the_empty_statement: diag(1313, 1, "The_body_of_an_if_statement_cannot_be_the_empty_statement_1313", "The body of an 'if' statement cannot be the empty statement."), Global_module_exports_may_only_appear_in_module_files: diag(1314, 1, "Global_module_exports_may_only_appear_in_module_files_1314", "Global module exports may only appear in module files."), Global_module_exports_may_only_appear_in_declaration_files: diag(1315, 1, "Global_module_exports_may_only_appear_in_declaration_files_1315", "Global module exports may only appear in declaration files."), Global_module_exports_may_only_appear_at_top_level: diag(1316, 1, "Global_module_exports_may_only_appear_at_top_level_1316", "Global module exports may only appear at top level."), A_parameter_property_cannot_be_declared_using_a_rest_parameter: diag(1317, 1, "A_parameter_property_cannot_be_declared_using_a_rest_parameter_1317", "A parameter property cannot be declared using a rest parameter."), An_abstract_accessor_cannot_have_an_implementation: diag(1318, 1, "An_abstract_accessor_cannot_have_an_implementation_1318", "An abstract accessor cannot have an implementation."), A_default_export_can_only_be_used_in_an_ECMAScript_style_module: diag(1319, 1, "A_default_export_can_only_be_used_in_an_ECMAScript_style_module_1319", "A default export can only be used in an ECMAScript-style module."), Type_of_await_operand_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member: diag(1320, 1, "Type_of_await_operand_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member_1320", "Type of 'await' operand must either be a valid promise or must not contain a callable 'then' member."), Type_of_yield_operand_in_an_async_generator_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member: diag(1321, 1, "Type_of_yield_operand_in_an_async_generator_must_either_be_a_valid_promise_or_must_not_contain_a_cal_1321", "Type of 'yield' operand in an async generator must either be a valid promise or must not contain a callable 'then' member."), Type_of_iterated_elements_of_a_yield_Asterisk_operand_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member: diag(1322, 1, "Type_of_iterated_elements_of_a_yield_Asterisk_operand_must_either_be_a_valid_promise_or_must_not_con_1322", "Type of iterated elements of a 'yield*' operand must either be a valid promise or must not contain a callable 'then' member."), Dynamic_imports_are_only_supported_when_the_module_flag_is_set_to_es2020_es2022_esnext_commonjs_amd_system_umd_node16_node18_node20_or_nodenext: diag(1323, 1, "Dynamic_imports_are_only_supported_when_the_module_flag_is_set_to_es2020_es2022_esnext_commonjs_amd__1323", "Dynamic imports are only supported when the '--module' flag is set to 'es2020', 'es2022', 'esnext', 'commonjs', 'amd', 'system', 'umd', 'node16', 'node18', 'node20', or 'nodenext'."), Dynamic_imports_only_support_a_second_argument_when_the_module_option_is_set_to_esnext_node16_node18_node20_nodenext_or_preserve: diag(1324, 1, "Dynamic_imports_only_support_a_second_argument_when_the_module_option_is_set_to_esnext_node16_node18_1324", "Dynamic imports only support a second argument when the '--module' option is set to 'esnext', 'node16', 'node18', 'node20', 'nodenext', or 'preserve'."), Argument_of_dynamic_import_cannot_be_spread_element: diag(1325, 1, "Argument_of_dynamic_import_cannot_be_spread_element_1325", "Argument of dynamic import cannot be spread element."), This_use_of_import_is_invalid_import_calls_can_be_written_but_they_must_have_parentheses_and_cannot_have_type_arguments: diag(1326, 1, "This_use_of_import_is_invalid_import_calls_can_be_written_but_they_must_have_parentheses_and_cannot__1326", "This use of 'import' is invalid. 'import()' calls can be written, but they must have parentheses and cannot have type arguments."), String_literal_with_double_quotes_expected: diag(1327, 1, "String_literal_with_double_quotes_expected_1327", "String literal with double quotes expected."), Property_value_can_only_be_string_literal_numeric_literal_true_false_null_object_literal_or_array_literal: diag(1328, 1, "Property_value_can_only_be_string_literal_numeric_literal_true_false_null_object_literal_or_array_li_1328", "Property value can only be string literal, numeric literal, 'true', 'false', 'null', object literal or array literal."), _0_accepts_too_few_arguments_to_be_used_as_a_decorator_here_Did_you_mean_to_call_it_first_and_write_0: diag(1329, 1, "_0_accepts_too_few_arguments_to_be_used_as_a_decorator_here_Did_you_mean_to_call_it_first_and_write__1329", "'{0}' accepts too few arguments to be used as a decorator here. Did you mean to call it first and write '@{0}()'?"), A_property_of_an_interface_or_type_literal_whose_type_is_a_unique_symbol_type_must_be_readonly: diag(1330, 1, "A_property_of_an_interface_or_type_literal_whose_type_is_a_unique_symbol_type_must_be_readonly_1330", "A property of an interface or type literal whose type is a 'unique symbol' type must be 'readonly'."), A_property_of_a_class_whose_type_is_a_unique_symbol_type_must_be_both_static_and_readonly: diag(1331, 1, "A_property_of_a_class_whose_type_is_a_unique_symbol_type_must_be_both_static_and_readonly_1331", "A property of a class whose type is a 'unique symbol' type must be both 'static' and 'readonly'."), A_variable_whose_type_is_a_unique_symbol_type_must_be_const: diag(1332, 1, "A_variable_whose_type_is_a_unique_symbol_type_must_be_const_1332", "A variable whose type is a 'unique symbol' type must be 'const'."), unique_symbol_types_may_not_be_used_on_a_variable_declaration_with_a_binding_name: diag(1333, 1, "unique_symbol_types_may_not_be_used_on_a_variable_declaration_with_a_binding_name_1333", "'unique symbol' types may not be used on a variable declaration with a binding name."), unique_symbol_types_are_only_allowed_on_variables_in_a_variable_statement: diag(1334, 1, "unique_symbol_types_are_only_allowed_on_variables_in_a_variable_statement_1334", "'unique symbol' types are only allowed on variables in a variable statement."), unique_symbol_types_are_not_allowed_here: diag(1335, 1, "unique_symbol_types_are_not_allowed_here_1335", "'unique symbol' types are not allowed here."), An_index_signature_parameter_type_cannot_be_a_literal_type_or_generic_type_Consider_using_a_mapped_object_type_instead: diag(1337, 1, "An_index_signature_parameter_type_cannot_be_a_literal_type_or_generic_type_Consider_using_a_mapped_o_1337", "An index signature parameter type cannot be a literal type or generic type. Consider using a mapped object type instead."), infer_declarations_are_only_permitted_in_the_extends_clause_of_a_conditional_type: diag(1338, 1, "infer_declarations_are_only_permitted_in_the_extends_clause_of_a_conditional_type_1338", "'infer' declarations are only permitted in the 'extends' clause of a conditional type."), Module_0_does_not_refer_to_a_value_but_is_used_as_a_value_here: diag(1339, 1, "Module_0_does_not_refer_to_a_value_but_is_used_as_a_value_here_1339", "Module '{0}' does not refer to a value, but is used as a value here."), Module_0_does_not_refer_to_a_type_but_is_used_as_a_type_here_Did_you_mean_typeof_import_0: diag(1340, 1, "Module_0_does_not_refer_to_a_type_but_is_used_as_a_type_here_Did_you_mean_typeof_import_0_1340", "Module '{0}' does not refer to a type, but is used as a type here. Did you mean 'typeof import('{0}')'?"), Class_constructor_may_not_be_an_accessor: diag(1341, 1, "Class_constructor_may_not_be_an_accessor_1341", "Class constructor may not be an accessor."), The_import_meta_meta_property_is_only_allowed_when_the_module_option_is_es2020_es2022_esnext_system_node16_node18_node20_or_nodenext: diag(1343, 1, "The_import_meta_meta_property_is_only_allowed_when_the_module_option_is_es2020_es2022_esnext_system__1343", "The 'import.meta' meta-property is only allowed when the '--module' option is 'es2020', 'es2022', 'esnext', 'system', 'node16', 'node18', 'node20', or 'nodenext'."), A_label_is_not_allowed_here: diag(1344, 1, "A_label_is_not_allowed_here_1344", "'A label is not allowed here."), An_expression_of_type_void_cannot_be_tested_for_truthiness: diag(1345, 1, "An_expression_of_type_void_cannot_be_tested_for_truthiness_1345", "An expression of type 'void' cannot be tested for truthiness."), This_parameter_is_not_allowed_with_use_strict_directive: diag(1346, 1, "This_parameter_is_not_allowed_with_use_strict_directive_1346", "This parameter is not allowed with 'use strict' directive."), use_strict_directive_cannot_be_used_with_non_simple_parameter_list: diag(1347, 1, "use_strict_directive_cannot_be_used_with_non_simple_parameter_list_1347", "'use strict' directive cannot be used with non-simple parameter list."), Non_simple_parameter_declared_here: diag(1348, 1, "Non_simple_parameter_declared_here_1348", "Non-simple parameter declared here."), use_strict_directive_used_here: diag(1349, 1, "use_strict_directive_used_here_1349", "'use strict' directive used here."), Print_the_final_configuration_instead_of_building: diag(1350, 3, "Print_the_final_configuration_instead_of_building_1350", "Print the final configuration instead of building."), An_identifier_or_keyword_cannot_immediately_follow_a_numeric_literal: diag(1351, 1, "An_identifier_or_keyword_cannot_immediately_follow_a_numeric_literal_1351", "An identifier or keyword cannot immediately follow a numeric literal."), A_bigint_literal_cannot_use_exponential_notation: diag(1352, 1, "A_bigint_literal_cannot_use_exponential_notation_1352", "A bigint literal cannot use exponential notation."), A_bigint_literal_must_be_an_integer: diag(1353, 1, "A_bigint_literal_must_be_an_integer_1353", "A bigint literal must be an integer."), readonly_type_modifier_is_only_permitted_on_array_and_tuple_literal_types: diag(1354, 1, "readonly_type_modifier_is_only_permitted_on_array_and_tuple_literal_types_1354", "'readonly' type modifier is only permitted on array and tuple literal types."), A_const_assertion_can_only_be_applied_to_references_to_enum_members_or_string_number_boolean_array_or_object_literals: diag(1355, 1, "A_const_assertion_can_only_be_applied_to_references_to_enum_members_or_string_number_boolean_array_o_1355", "A 'const' assertion can only be applied to references to enum members, or string, number, boolean, array, or object literals."), Did_you_mean_to_mark_this_function_as_async: diag(1356, 1, "Did_you_mean_to_mark_this_function_as_async_1356", "Did you mean to mark this function as 'async'?"), An_enum_member_name_must_be_followed_by_a_or: diag(1357, 1, "An_enum_member_name_must_be_followed_by_a_or_1357", "An enum member name must be followed by a ',', '=', or '}'."), Tagged_template_expressions_are_not_permitted_in_an_optional_chain: diag(1358, 1, "Tagged_template_expressions_are_not_permitted_in_an_optional_chain_1358", "Tagged template expressions are not permitted in an optional chain."), Identifier_expected_0_is_a_reserved_word_that_cannot_be_used_here: diag(1359, 1, "Identifier_expected_0_is_a_reserved_word_that_cannot_be_used_here_1359", "Identifier expected. '{0}' is a reserved word that cannot be used here."), Type_0_does_not_satisfy_the_expected_type_1: diag(1360, 1, "Type_0_does_not_satisfy_the_expected_type_1_1360", "Type '{0}' does not satisfy the expected type '{1}'."), _0_cannot_be_used_as_a_value_because_it_was_imported_using_import_type: diag(1361, 1, "_0_cannot_be_used_as_a_value_because_it_was_imported_using_import_type_1361", "'{0}' cannot be used as a value because it was imported using 'import type'."), _0_cannot_be_used_as_a_value_because_it_was_exported_using_export_type: diag(1362, 1, "_0_cannot_be_used_as_a_value_because_it_was_exported_using_export_type_1362", "'{0}' cannot be used as a value because it was exported using 'export type'."), A_type_only_import_can_specify_a_default_import_or_named_bindings_but_not_both: diag(1363, 1, "A_type_only_import_can_specify_a_default_import_or_named_bindings_but_not_both_1363", "A type-only import can specify a default import or named bindings, but not both."), Convert_to_type_only_export: diag(1364, 3, "Convert_to_type_only_export_1364", "Convert to type-only export"), Convert_all_re_exported_types_to_type_only_exports: diag(1365, 3, "Convert_all_re_exported_types_to_type_only_exports_1365", "Convert all re-exported types to type-only exports"), Split_into_two_separate_import_declarations: diag(1366, 3, "Split_into_two_separate_import_declarations_1366", "Split into two separate import declarations"), Split_all_invalid_type_only_imports: diag(1367, 3, "Split_all_invalid_type_only_imports_1367", "Split all invalid type-only imports"), Class_constructor_may_not_be_a_generator: diag(1368, 1, "Class_constructor_may_not_be_a_generator_1368", "Class constructor may not be a generator."), Did_you_mean_0: diag(1369, 3, "Did_you_mean_0_1369", "Did you mean '{0}'?"), await_expressions_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_file_has_no_imports_or_exports_Consider_adding_an_empty_export_to_make_this_file_a_module: diag(1375, 1, "await_expressions_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_fi_1375", "'await' expressions are only allowed at the top level of a file when that file is a module, but this file has no imports or exports. Consider adding an empty 'export {}' to make this file a module."), _0_was_imported_here: diag(1376, 3, "_0_was_imported_here_1376", "'{0}' was imported here."), _0_was_exported_here: diag(1377, 3, "_0_was_exported_here_1377", "'{0}' was exported here."), Top_level_await_expressions_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_node16_node18_node20_nodenext_or_preserve_and_the_target_option_is_set_to_es2017_or_higher: diag(1378, 1, "Top_level_await_expressions_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_n_1378", "Top-level 'await' expressions are only allowed when the 'module' option is set to 'es2022', 'esnext', 'system', 'node16', 'node18', 'node20', 'nodenext', or 'preserve', and the 'target' option is set to 'es2017' or higher."), An_import_alias_cannot_reference_a_declaration_that_was_exported_using_export_type: diag(1379, 1, "An_import_alias_cannot_reference_a_declaration_that_was_exported_using_export_type_1379", "An import alias cannot reference a declaration that was exported using 'export type'."), An_import_alias_cannot_reference_a_declaration_that_was_imported_using_import_type: diag(1380, 1, "An_import_alias_cannot_reference_a_declaration_that_was_imported_using_import_type_1380", "An import alias cannot reference a declaration that was imported using 'import type'."), Unexpected_token_Did_you_mean_or_rbrace: diag(1381, 1, "Unexpected_token_Did_you_mean_or_rbrace_1381", "Unexpected token. Did you mean `{'}'}` or `}`?"), Unexpected_token_Did_you_mean_or_gt: diag(1382, 1, "Unexpected_token_Did_you_mean_or_gt_1382", "Unexpected token. Did you mean `{'>'}` or `>`?"), Function_type_notation_must_be_parenthesized_when_used_in_a_union_type: diag(1385, 1, "Function_type_notation_must_be_parenthesized_when_used_in_a_union_type_1385", "Function type notation must be parenthesized when used in a union type."), Constructor_type_notation_must_be_parenthesized_when_used_in_a_union_type: diag(1386, 1, "Constructor_type_notation_must_be_parenthesized_when_used_in_a_union_type_1386", "Constructor type notation must be parenthesized when used in a union type."), Function_type_notation_must_be_parenthesized_when_used_in_an_intersection_type: diag(1387, 1, "Function_type_notation_must_be_parenthesized_when_used_in_an_intersection_type_1387", "Function type notation must be parenthesized when used in an intersection type."), Constructor_type_notation_must_be_parenthesized_when_used_in_an_intersection_type: diag(1388, 1, "Constructor_type_notation_must_be_parenthesized_when_used_in_an_intersection_type_1388", "Constructor type notation must be parenthesized when used in an intersection type."), _0_is_not_allowed_as_a_variable_declaration_name: diag(1389, 1, "_0_is_not_allowed_as_a_variable_declaration_name_1389", "'{0}' is not allowed as a variable declaration name."), _0_is_not_allowed_as_a_parameter_name: diag(1390, 1, "_0_is_not_allowed_as_a_parameter_name_1390", "'{0}' is not allowed as a parameter name."), An_import_alias_cannot_use_import_type: diag(1392, 1, "An_import_alias_cannot_use_import_type_1392", "An import alias cannot use 'import type'"), Imported_via_0_from_file_1: diag(1393, 3, "Imported_via_0_from_file_1_1393", "Imported via {0} from file '{1}'"), Imported_via_0_from_file_1_with_packageId_2: diag(1394, 3, "Imported_via_0_from_file_1_with_packageId_2_1394", "Imported via {0} from file '{1}' with packageId '{2}'"), Imported_via_0_from_file_1_to_import_importHelpers_as_specified_in_compilerOptions: diag(1395, 3, "Imported_via_0_from_file_1_to_import_importHelpers_as_specified_in_compilerOptions_1395", "Imported via {0} from file '{1}' to import 'importHelpers' as specified in compilerOptions"), Imported_via_0_from_file_1_with_packageId_2_to_import_importHelpers_as_specified_in_compilerOptions: diag(1396, 3, "Imported_via_0_from_file_1_with_packageId_2_to_import_importHelpers_as_specified_in_compilerOptions_1396", "Imported via {0} from file '{1}' with packageId '{2}' to import 'importHelpers' as specified in compilerOptions"), Imported_via_0_from_file_1_to_import_jsx_and_jsxs_factory_functions: diag(1397, 3, "Imported_via_0_from_file_1_to_import_jsx_and_jsxs_factory_functions_1397", "Imported via {0} from file '{1}' to import 'jsx' and 'jsxs' factory functions"), Imported_via_0_from_file_1_with_packageId_2_to_import_jsx_and_jsxs_factory_functions: diag(1398, 3, "Imported_via_0_from_file_1_with_packageId_2_to_import_jsx_and_jsxs_factory_functions_1398", "Imported via {0} from file '{1}' with packageId '{2}' to import 'jsx' and 'jsxs' factory functions"), File_is_included_via_import_here: diag(1399, 3, "File_is_included_via_import_here_1399", "File is included via import here."), Referenced_via_0_from_file_1: diag(1400, 3, "Referenced_via_0_from_file_1_1400", "Referenced via '{0}' from file '{1}'"), File_is_included_via_reference_here: diag(1401, 3, "File_is_included_via_reference_here_1401", "File is included via reference here."), Type_library_referenced_via_0_from_file_1: diag(1402, 3, "Type_library_referenced_via_0_from_file_1_1402", "Type library referenced via '{0}' from file '{1}'"), Type_library_referenced_via_0_from_file_1_with_packageId_2: diag(1403, 3, "Type_library_referenced_via_0_from_file_1_with_packageId_2_1403", "Type library referenced via '{0}' from file '{1}' with packageId '{2}'"), File_is_included_via_type_library_reference_here: diag(1404, 3, "File_is_included_via_type_library_reference_here_1404", "File is included via type library reference here."), Library_referenced_via_0_from_file_1: diag(1405, 3, "Library_referenced_via_0_from_file_1_1405", "Library referenced via '{0}' from file '{1}'"), File_is_included_via_library_reference_here: diag(1406, 3, "File_is_included_via_library_reference_here_1406", "File is included via library reference here."), Matched_by_include_pattern_0_in_1: diag(1407, 3, "Matched_by_include_pattern_0_in_1_1407", "Matched by include pattern '{0}' in '{1}'"), File_is_matched_by_include_pattern_specified_here: diag(1408, 3, "File_is_matched_by_include_pattern_specified_here_1408", "File is matched by include pattern specified here."), Part_of_files_list_in_tsconfig_json: diag(1409, 3, "Part_of_files_list_in_tsconfig_json_1409", "Part of 'files' list in tsconfig.json"), File_is_matched_by_files_list_specified_here: diag(1410, 3, "File_is_matched_by_files_list_specified_here_1410", "File is matched by 'files' list specified here."), Output_from_referenced_project_0_included_because_1_specified: diag(1411, 3, "Output_from_referenced_project_0_included_because_1_specified_1411", "Output from referenced project '{0}' included because '{1}' specified"), Output_from_referenced_project_0_included_because_module_is_specified_as_none: diag(1412, 3, "Output_from_referenced_project_0_included_because_module_is_specified_as_none_1412", "Output from referenced project '{0}' included because '--module' is specified as 'none'"), File_is_output_from_referenced_project_specified_here: diag(1413, 3, "File_is_output_from_referenced_project_specified_here_1413", "File is output from referenced project specified here."), Source_from_referenced_project_0_included_because_1_specified: diag(1414, 3, "Source_from_referenced_project_0_included_because_1_specified_1414", "Source from referenced project '{0}' included because '{1}' specified"), Source_from_referenced_project_0_included_because_module_is_specified_as_none: diag(1415, 3, "Source_from_referenced_project_0_included_because_module_is_specified_as_none_1415", "Source from referenced project '{0}' included because '--module' is specified as 'none'"), File_is_source_from_referenced_project_specified_here: diag(1416, 3, "File_is_source_from_referenced_project_specified_here_1416", "File is source from referenced project specified here."), Entry_point_of_type_library_0_specified_in_compilerOptions: diag(1417, 3, "Entry_point_of_type_library_0_specified_in_compilerOptions_1417", "Entry point of type library '{0}' specified in compilerOptions"), Entry_point_of_type_library_0_specified_in_compilerOptions_with_packageId_1: diag(1418, 3, "Entry_point_of_type_library_0_specified_in_compilerOptions_with_packageId_1_1418", "Entry point of type library '{0}' specified in compilerOptions with packageId '{1}'"), File_is_entry_point_of_type_library_specified_here: diag(1419, 3, "File_is_entry_point_of_type_library_specified_here_1419", "File is entry point of type library specified here."), Entry_point_for_implicit_type_library_0: diag(1420, 3, "Entry_point_for_implicit_type_library_0_1420", "Entry point for implicit type library '{0}'"), Entry_point_for_implicit_type_library_0_with_packageId_1: diag(1421, 3, "Entry_point_for_implicit_type_library_0_with_packageId_1_1421", "Entry point for implicit type library '{0}' with packageId '{1}'"), Library_0_specified_in_compilerOptions: diag(1422, 3, "Library_0_specified_in_compilerOptions_1422", "Library '{0}' specified in compilerOptions"), File_is_library_specified_here: diag(1423, 3, "File_is_library_specified_here_1423", "File is library specified here."), Default_library: diag(1424, 3, "Default_library_1424", "Default library"), Default_library_for_target_0: diag(1425, 3, "Default_library_for_target_0_1425", "Default library for target '{0}'"), File_is_default_library_for_target_specified_here: diag(1426, 3, "File_is_default_library_for_target_specified_here_1426", "File is default library for target specified here."), Root_file_specified_for_compilation: diag(1427, 3, "Root_file_specified_for_compilation_1427", "Root file specified for compilation"), File_is_output_of_project_reference_source_0: diag(1428, 3, "File_is_output_of_project_reference_source_0_1428", "File is output of project reference source '{0}'"), File_redirects_to_file_0: diag(1429, 3, "File_redirects_to_file_0_1429", "File redirects to file '{0}'"), The_file_is_in_the_program_because_Colon: diag(1430, 3, "The_file_is_in_the_program_because_Colon_1430", "The file is in the program because:"), for_await_loops_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_file_has_no_imports_or_exports_Consider_adding_an_empty_export_to_make_this_file_a_module: diag(1431, 1, "for_await_loops_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_file_1431", "'for await' loops are only allowed at the top level of a file when that file is a module, but this file has no imports or exports. Consider adding an empty 'export {}' to make this file a module."), Top_level_for_await_loops_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_node16_node18_node20_nodenext_or_preserve_and_the_target_option_is_set_to_es2017_or_higher: diag(1432, 1, "Top_level_for_await_loops_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_nod_1432", "Top-level 'for await' loops are only allowed when the 'module' option is set to 'es2022', 'esnext', 'system', 'node16', 'node18', 'node20', 'nodenext', or 'preserve', and the 'target' option is set to 'es2017' or higher."), Neither_decorators_nor_modifiers_may_be_applied_to_this_parameters: diag(1433, 1, "Neither_decorators_nor_modifiers_may_be_applied_to_this_parameters_1433", "Neither decorators nor modifiers may be applied to 'this' parameters."), Unexpected_keyword_or_identifier: diag(1434, 1, "Unexpected_keyword_or_identifier_1434", "Unexpected keyword or identifier."), Unknown_keyword_or_identifier_Did_you_mean_0: diag(1435, 1, "Unknown_keyword_or_identifier_Did_you_mean_0_1435", "Unknown keyword or identifier. Did you mean '{0}'?"), Decorators_must_precede_the_name_and_all_keywords_of_property_declarations: diag(1436, 1, "Decorators_must_precede_the_name_and_all_keywords_of_property_declarations_1436", "Decorators must precede the name and all keywords of property declarations."), Namespace_must_be_given_a_name: diag(1437, 1, "Namespace_must_be_given_a_name_1437", "Namespace must be given a name."), Interface_must_be_given_a_name: diag(1438, 1, "Interface_must_be_given_a_name_1438", "Interface must be given a name."), Type_alias_must_be_given_a_name: diag(1439, 1, "Type_alias_must_be_given_a_name_1439", "Type alias must be given a name."), Variable_declaration_not_allowed_at_this_location: diag(1440, 1, "Variable_declaration_not_allowed_at_this_location_1440", "Variable declaration not allowed at this location."), Cannot_start_a_function_call_in_a_type_annotation: diag(1441, 1, "Cannot_start_a_function_call_in_a_type_annotation_1441", "Cannot start a function call in a type annotation."), Expected_for_property_initializer: diag(1442, 1, "Expected_for_property_initializer_1442", "Expected '=' for property initializer."), Module_declaration_names_may_only_use_or_quoted_strings: diag(1443, 1, "Module_declaration_names_may_only_use_or_quoted_strings_1443", `Module declaration names may only use ' or " quoted strings.`), _0_resolves_to_a_type_only_declaration_and_must_be_re_exported_using_a_type_only_re_export_when_1_is_enabled: diag(1448, 1, "_0_resolves_to_a_type_only_declaration_and_must_be_re_exported_using_a_type_only_re_export_when_1_is_1448", "'{0}' resolves to a type-only declaration and must be re-exported using a type-only re-export when '{1}' is enabled."), Preserve_unused_imported_values_in_the_JavaScript_output_that_would_otherwise_be_removed: diag(1449, 3, "Preserve_unused_imported_values_in_the_JavaScript_output_that_would_otherwise_be_removed_1449", "Preserve unused imported values in the JavaScript output that would otherwise be removed."), Dynamic_imports_can_only_accept_a_module_specifier_and_an_optional_set_of_attributes_as_arguments: diag(1450, 3, "Dynamic_imports_can_only_accept_a_module_specifier_and_an_optional_set_of_attributes_as_arguments_1450", "Dynamic imports can only accept a module specifier and an optional set of attributes as arguments"), Private_identifiers_are_only_allowed_in_class_bodies_and_may_only_be_used_as_part_of_a_class_member_declaration_property_access_or_on_the_left_hand_side_of_an_in_expression: diag(1451, 1, "Private_identifiers_are_only_allowed_in_class_bodies_and_may_only_be_used_as_part_of_a_class_member__1451", "Private identifiers are only allowed in class bodies and may only be used as part of a class member declaration, property access, or on the left-hand-side of an 'in' expression"), resolution_mode_should_be_either_require_or_import: diag(1453, 1, "resolution_mode_should_be_either_require_or_import_1453", "`resolution-mode` should be either `require` or `import`."), resolution_mode_can_only_be_set_for_type_only_imports: diag(1454, 1, "resolution_mode_can_only_be_set_for_type_only_imports_1454", "`resolution-mode` can only be set for type-only imports."), resolution_mode_is_the_only_valid_key_for_type_import_assertions: diag(1455, 1, "resolution_mode_is_the_only_valid_key_for_type_import_assertions_1455", "`resolution-mode` is the only valid key for type import assertions."), Type_import_assertions_should_have_exactly_one_key_resolution_mode_with_value_import_or_require: diag(1456, 1, "Type_import_assertions_should_have_exactly_one_key_resolution_mode_with_value_import_or_require_1456", "Type import assertions should have exactly one key - `resolution-mode` - with value `import` or `require`."), Matched_by_default_include_pattern_Asterisk_Asterisk_Slash_Asterisk: diag(1457, 3, "Matched_by_default_include_pattern_Asterisk_Asterisk_Slash_Asterisk_1457", "Matched by default include pattern '**/*'"), File_is_ECMAScript_module_because_0_has_field_type_with_value_module: diag(1458, 3, "File_is_ECMAScript_module_because_0_has_field_type_with_value_module_1458", `File is ECMAScript module because '{0}' has field "type" with value "module"`), File_is_CommonJS_module_because_0_has_field_type_whose_value_is_not_module: diag(1459, 3, "File_is_CommonJS_module_because_0_has_field_type_whose_value_is_not_module_1459", `File is CommonJS module because '{0}' has field "type" whose value is not "module"`), File_is_CommonJS_module_because_0_does_not_have_field_type: diag(1460, 3, "File_is_CommonJS_module_because_0_does_not_have_field_type_1460", `File is CommonJS module because '{0}' does not have field "type"`), File_is_CommonJS_module_because_package_json_was_not_found: diag(1461, 3, "File_is_CommonJS_module_because_package_json_was_not_found_1461", "File is CommonJS module because 'package.json' was not found"), resolution_mode_is_the_only_valid_key_for_type_import_attributes: diag(1463, 1, "resolution_mode_is_the_only_valid_key_for_type_import_attributes_1463", "'resolution-mode' is the only valid key for type import attributes."), Type_import_attributes_should_have_exactly_one_key_resolution_mode_with_value_import_or_require: diag(1464, 1, "Type_import_attributes_should_have_exactly_one_key_resolution_mode_with_value_import_or_require_1464", "Type import attributes should have exactly one key - 'resolution-mode' - with value 'import' or 'require'."), The_import_meta_meta_property_is_not_allowed_in_files_which_will_build_into_CommonJS_output: diag(1470, 1, "The_import_meta_meta_property_is_not_allowed_in_files_which_will_build_into_CommonJS_output_1470", "The 'import.meta' meta-property is not allowed in files which will build into CommonJS output."), Module_0_cannot_be_imported_using_this_construct_The_specifier_only_resolves_to_an_ES_module_which_cannot_be_imported_with_require_Use_an_ECMAScript_import_instead: diag(1471, 1, "Module_0_cannot_be_imported_using_this_construct_The_specifier_only_resolves_to_an_ES_module_which_c_1471", "Module '{0}' cannot be imported using this construct. The specifier only resolves to an ES module, which cannot be imported with 'require'. Use an ECMAScript import instead."), catch_or_finally_expected: diag(1472, 1, "catch_or_finally_expected_1472", "'catch' or 'finally' expected."), An_import_declaration_can_only_be_used_at_the_top_level_of_a_module: diag(1473, 1, "An_import_declaration_can_only_be_used_at_the_top_level_of_a_module_1473", "An import declaration can only be used at the top level of a module."), An_export_declaration_can_only_be_used_at_the_top_level_of_a_module: diag(1474, 1, "An_export_declaration_can_only_be_used_at_the_top_level_of_a_module_1474", "An export declaration can only be used at the top level of a module."), Control_what_method_is_used_to_detect_module_format_JS_files: diag(1475, 3, "Control_what_method_is_used_to_detect_module_format_JS_files_1475", "Control what method is used to detect module-format JS files."), auto_Colon_Treat_files_with_imports_exports_import_meta_jsx_with_jsx_Colon_react_jsx_or_esm_format_with_module_Colon_node16_as_modules: diag(1476, 3, "auto_Colon_Treat_files_with_imports_exports_import_meta_jsx_with_jsx_Colon_react_jsx_or_esm_format_w_1476", '"auto": Treat files with imports, exports, import.meta, jsx (with jsx: react-jsx), or esm format (with module: node16+) as modules.'), An_instantiation_expression_cannot_be_followed_by_a_property_access: diag(1477, 1, "An_instantiation_expression_cannot_be_followed_by_a_property_access_1477", "An instantiation expression cannot be followed by a property access."), Identifier_or_string_literal_expected: diag(1478, 1, "Identifier_or_string_literal_expected_1478", "Identifier or string literal expected."), The_current_file_is_a_CommonJS_module_whose_imports_will_produce_require_calls_however_the_referenced_file_is_an_ECMAScript_module_and_cannot_be_imported_with_require_Consider_writing_a_dynamic_import_0_call_instead: diag(1479, 1, "The_current_file_is_a_CommonJS_module_whose_imports_will_produce_require_calls_however_the_reference_1479", `The current file is a CommonJS module whose imports will produce 'require' calls; however, the referenced file is an ECMAScript module and cannot be imported with 'require'. Consider writing a dynamic 'import("{0}")' call instead.`), To_convert_this_file_to_an_ECMAScript_module_change_its_file_extension_to_0_or_create_a_local_package_json_file_with_type_Colon_module: diag(1480, 3, "To_convert_this_file_to_an_ECMAScript_module_change_its_file_extension_to_0_or_create_a_local_packag_1480", 'To convert this file to an ECMAScript module, change its file extension to \'{0}\' or create a local package.json file with `{ "type": "module" }`.'), To_convert_this_file_to_an_ECMAScript_module_change_its_file_extension_to_0_or_add_the_field_type_Colon_module_to_1: diag(1481, 3, "To_convert_this_file_to_an_ECMAScript_module_change_its_file_extension_to_0_or_add_the_field_type_Co_1481", `To convert this file to an ECMAScript module, change its file extension to '{0}', or add the field \`"type": "module"\` to '{1}'.`), To_convert_this_file_to_an_ECMAScript_module_add_the_field_type_Colon_module_to_0: diag(1482, 3, "To_convert_this_file_to_an_ECMAScript_module_add_the_field_type_Colon_module_to_0_1482", 'To convert this file to an ECMAScript module, add the field `"type": "module"` to \'{0}\'.'), To_convert_this_file_to_an_ECMAScript_module_create_a_local_package_json_file_with_type_Colon_module: diag(1483, 3, "To_convert_this_file_to_an_ECMAScript_module_create_a_local_package_json_file_with_type_Colon_module_1483", 'To convert this file to an ECMAScript module, create a local package.json file with `{ "type": "module" }`.'), _0_is_a_type_and_must_be_imported_using_a_type_only_import_when_verbatimModuleSyntax_is_enabled: diag(1484, 1, "_0_is_a_type_and_must_be_imported_using_a_type_only_import_when_verbatimModuleSyntax_is_enabled_1484", "'{0}' is a type and must be imported using a type-only import when 'verbatimModuleSyntax' is enabled."), _0_resolves_to_a_type_only_declaration_and_must_be_imported_using_a_type_only_import_when_verbatimModuleSyntax_is_enabled: diag(1485, 1, "_0_resolves_to_a_type_only_declaration_and_must_be_imported_using_a_type_only_import_when_verbatimMo_1485", "'{0}' resolves to a type-only declaration and must be imported using a type-only import when 'verbatimModuleSyntax' is enabled."), Decorator_used_before_export_here: diag(1486, 1, "Decorator_used_before_export_here_1486", "Decorator used before 'export' here."), Octal_escape_sequences_are_not_allowed_Use_the_syntax_0: diag(1487, 1, "Octal_escape_sequences_are_not_allowed_Use_the_syntax_0_1487", "Octal escape sequences are not allowed. Use the syntax '{0}'."), Escape_sequence_0_is_not_allowed: diag(1488, 1, "Escape_sequence_0_is_not_allowed_1488", "Escape sequence '{0}' is not allowed."), Decimals_with_leading_zeros_are_not_allowed: diag(1489, 1, "Decimals_with_leading_zeros_are_not_allowed_1489", "Decimals with leading zeros are not allowed."), File_appears_to_be_binary: diag(1490, 1, "File_appears_to_be_binary_1490", "File appears to be binary."), _0_modifier_cannot_appear_on_a_using_declaration: diag(1491, 1, "_0_modifier_cannot_appear_on_a_using_declaration_1491", "'{0}' modifier cannot appear on a 'using' declaration."), _0_declarations_may_not_have_binding_patterns: diag(1492, 1, "_0_declarations_may_not_have_binding_patterns_1492", "'{0}' declarations may not have binding patterns."), The_left_hand_side_of_a_for_in_statement_cannot_be_a_using_declaration: diag(1493, 1, "The_left_hand_side_of_a_for_in_statement_cannot_be_a_using_declaration_1493", "The left-hand side of a 'for...in' statement cannot be a 'using' declaration."), The_left_hand_side_of_a_for_in_statement_cannot_be_an_await_using_declaration: diag(1494, 1, "The_left_hand_side_of_a_for_in_statement_cannot_be_an_await_using_declaration_1494", "The left-hand side of a 'for...in' statement cannot be an 'await using' declaration."), _0_modifier_cannot_appear_on_an_await_using_declaration: diag(1495, 1, "_0_modifier_cannot_appear_on_an_await_using_declaration_1495", "'{0}' modifier cannot appear on an 'await using' declaration."), Identifier_string_literal_or_number_literal_expected: diag(1496, 1, "Identifier_string_literal_or_number_literal_expected_1496", "Identifier, string literal, or number literal expected."), Expression_must_be_enclosed_in_parentheses_to_be_used_as_a_decorator: diag(1497, 1, "Expression_must_be_enclosed_in_parentheses_to_be_used_as_a_decorator_1497", "Expression must be enclosed in parentheses to be used as a decorator."), Invalid_syntax_in_decorator: diag(1498, 1, "Invalid_syntax_in_decorator_1498", "Invalid syntax in decorator."), Unknown_regular_expression_flag: diag(1499, 1, "Unknown_regular_expression_flag_1499", "Unknown regular expression flag."), Duplicate_regular_expression_flag: diag(1500, 1, "Duplicate_regular_expression_flag_1500", "Duplicate regular expression flag."), This_regular_expression_flag_is_only_available_when_targeting_0_or_later: diag(1501, 1, "This_regular_expression_flag_is_only_available_when_targeting_0_or_later_1501", "This regular expression flag is only available when targeting '{0}' or later."), The_Unicode_u_flag_and_the_Unicode_Sets_v_flag_cannot_be_set_simultaneously: diag(1502, 1, "The_Unicode_u_flag_and_the_Unicode_Sets_v_flag_cannot_be_set_simultaneously_1502", "The Unicode (u) flag and the Unicode Sets (v) flag cannot be set simultaneously."), Named_capturing_groups_are_only_available_when_targeting_ES2018_or_later: diag(1503, 1, "Named_capturing_groups_are_only_available_when_targeting_ES2018_or_later_1503", "Named capturing groups are only available when targeting 'ES2018' or later."), Subpattern_flags_must_be_present_when_there_is_a_minus_sign: diag(1504, 1, "Subpattern_flags_must_be_present_when_there_is_a_minus_sign_1504", "Subpattern flags must be present when there is a minus sign."), Incomplete_quantifier_Digit_expected: diag(1505, 1, "Incomplete_quantifier_Digit_expected_1505", "Incomplete quantifier. Digit expected."), Numbers_out_of_order_in_quantifier: diag(1506, 1, "Numbers_out_of_order_in_quantifier_1506", "Numbers out of order in quantifier."), There_is_nothing_available_for_repetition: diag(1507, 1, "There_is_nothing_available_for_repetition_1507", "There is nothing available for repetition."), Unexpected_0_Did_you_mean_to_escape_it_with_backslash: diag(1508, 1, "Unexpected_0_Did_you_mean_to_escape_it_with_backslash_1508", "Unexpected '{0}'. Did you mean to escape it with backslash?"), This_regular_expression_flag_cannot_be_toggled_within_a_subpattern: diag(1509, 1, "This_regular_expression_flag_cannot_be_toggled_within_a_subpattern_1509", "This regular expression flag cannot be toggled within a subpattern."), k_must_be_followed_by_a_capturing_group_name_enclosed_in_angle_brackets: diag(1510, 1, "k_must_be_followed_by_a_capturing_group_name_enclosed_in_angle_brackets_1510", "'\\k' must be followed by a capturing group name enclosed in angle brackets."), q_is_only_available_inside_character_class: diag(1511, 1, "q_is_only_available_inside_character_class_1511", "'\\q' is only available inside character class."), c_must_be_followed_by_an_ASCII_letter: diag(1512, 1, "c_must_be_followed_by_an_ASCII_letter_1512", "'\\c' must be followed by an ASCII letter."), Undetermined_character_escape: diag(1513, 1, "Undetermined_character_escape_1513", "Undetermined character escape."), Expected_a_capturing_group_name: diag(1514, 1, "Expected_a_capturing_group_name_1514", "Expected a capturing group name."), Named_capturing_groups_with_the_same_name_must_be_mutually_exclusive_to_each_other: diag(1515, 1, "Named_capturing_groups_with_the_same_name_must_be_mutually_exclusive_to_each_other_1515", "Named capturing groups with the same name must be mutually exclusive to each other."), A_character_class_range_must_not_be_bounded_by_another_character_class: diag(1516, 1, "A_character_class_range_must_not_be_bounded_by_another_character_class_1516", "A character class range must not be bounded by another character class."), Range_out_of_order_in_character_class: diag(1517, 1, "Range_out_of_order_in_character_class_1517", "Range out of order in character class."), Anything_that_would_possibly_match_more_than_a_single_character_is_invalid_inside_a_negated_character_class: diag(1518, 1, "Anything_that_would_possibly_match_more_than_a_single_character_is_invalid_inside_a_negated_characte_1518", "Anything that would possibly match more than a single character is invalid inside a negated character class."), Operators_must_not_be_mixed_within_a_character_class_Wrap_it_in_a_nested_class_instead: diag(1519, 1, "Operators_must_not_be_mixed_within_a_character_class_Wrap_it_in_a_nested_class_instead_1519", "Operators must not be mixed within a character class. Wrap it in a nested class instead."), Expected_a_class_set_operand: diag(1520, 1, "Expected_a_class_set_operand_1520", "Expected a class set operand."), q_must_be_followed_by_string_alternatives_enclosed_in_braces: diag(1521, 1, "q_must_be_followed_by_string_alternatives_enclosed_in_braces_1521", "'\\q' must be followed by string alternatives enclosed in braces."), A_character_class_must_not_contain_a_reserved_double_punctuator_Did_you_mean_to_escape_it_with_backslash: diag(1522, 1, "A_character_class_must_not_contain_a_reserved_double_punctuator_Did_you_mean_to_escape_it_with_backs_1522", "A character class must not contain a reserved double punctuator. Did you mean to escape it with backslash?"), Expected_a_Unicode_property_name: diag(1523, 1, "Expected_a_Unicode_property_name_1523", "Expected a Unicode property name."), Unknown_Unicode_property_name: diag(1524, 1, "Unknown_Unicode_property_name_1524", "Unknown Unicode property name."), Expected_a_Unicode_property_value: diag(1525, 1, "Expected_a_Unicode_property_value_1525", "Expected a Unicode property value."), Unknown_Unicode_property_value: diag(1526, 1, "Unknown_Unicode_property_value_1526", "Unknown Unicode property value."), Expected_a_Unicode_property_name_or_value: diag(1527, 1, "Expected_a_Unicode_property_name_or_value_1527", "Expected a Unicode property name or value."), Any_Unicode_property_that_would_possibly_match_more_than_a_single_character_is_only_available_when_the_Unicode_Sets_v_flag_is_set: diag(1528, 1, "Any_Unicode_property_that_would_possibly_match_more_than_a_single_character_is_only_available_when_t_1528", "Any Unicode property that would possibly match more than a single character is only available when the Unicode Sets (v) flag is set."), Unknown_Unicode_property_name_or_value: diag(1529, 1, "Unknown_Unicode_property_name_or_value_1529", "Unknown Unicode property name or value."), Unicode_property_value_expressions_are_only_available_when_the_Unicode_u_flag_or_the_Unicode_Sets_v_flag_is_set: diag(1530, 1, "Unicode_property_value_expressions_are_only_available_when_the_Unicode_u_flag_or_the_Unicode_Sets_v__1530", "Unicode property value expressions are only available when the Unicode (u) flag or the Unicode Sets (v) flag is set."), _0_must_be_followed_by_a_Unicode_property_value_expression_enclosed_in_braces: diag(1531, 1, "_0_must_be_followed_by_a_Unicode_property_value_expression_enclosed_in_braces_1531", "'\\{0}' must be followed by a Unicode property value expression enclosed in braces."), There_is_no_capturing_group_named_0_in_this_regular_expression: diag(1532, 1, "There_is_no_capturing_group_named_0_in_this_regular_expression_1532", "There is no capturing group named '{0}' in this regular expression."), This_backreference_refers_to_a_group_that_does_not_exist_There_are_only_0_capturing_groups_in_this_regular_expression: diag(1533, 1, "This_backreference_refers_to_a_group_that_does_not_exist_There_are_only_0_capturing_groups_in_this_r_1533", "This backreference refers to a group that does not exist. There are only {0} capturing groups in this regular expression."), This_backreference_refers_to_a_group_that_does_not_exist_There_are_no_capturing_groups_in_this_regular_expression: diag(1534, 1, "This_backreference_refers_to_a_group_that_does_not_exist_There_are_no_capturing_groups_in_this_regul_1534", "This backreference refers to a group that does not exist. There are no capturing groups in this regular expression."), This_character_cannot_be_escaped_in_a_regular_expression: diag(1535, 1, "This_character_cannot_be_escaped_in_a_regular_expression_1535", "This character cannot be escaped in a regular expression."), Octal_escape_sequences_and_backreferences_are_not_allowed_in_a_character_class_If_this_was_intended_as_an_escape_sequence_use_the_syntax_0_instead: diag(1536, 1, "Octal_escape_sequences_and_backreferences_are_not_allowed_in_a_character_class_If_this_was_intended__1536", "Octal escape sequences and backreferences are not allowed in a character class. If this was intended as an escape sequence, use the syntax '{0}' instead."), Decimal_escape_sequences_and_backreferences_are_not_allowed_in_a_character_class: diag(1537, 1, "Decimal_escape_sequences_and_backreferences_are_not_allowed_in_a_character_class_1537", "Decimal escape sequences and backreferences are not allowed in a character class."), Unicode_escape_sequences_are_only_available_when_the_Unicode_u_flag_or_the_Unicode_Sets_v_flag_is_set: diag(1538, 1, "Unicode_escape_sequences_are_only_available_when_the_Unicode_u_flag_or_the_Unicode_Sets_v_flag_is_se_1538", "Unicode escape sequences are only available when the Unicode (u) flag or the Unicode Sets (v) flag is set."), A_bigint_literal_cannot_be_used_as_a_property_name: diag(1539, 1, "A_bigint_literal_cannot_be_used_as_a_property_name_1539", "A 'bigint' literal cannot be used as a property name."), A_namespace_declaration_should_not_be_declared_using_the_module_keyword_Please_use_the_namespace_keyword_instead: diag(1540, 1, "A_namespace_declaration_should_not_be_declared_using_the_module_keyword_Please_use_the_namespace_key_1540", "A 'namespace' declaration should not be declared using the 'module' keyword. Please use the 'namespace' keyword instead."), Type_only_import_of_an_ECMAScript_module_from_a_CommonJS_module_must_have_a_resolution_mode_attribute: diag(1541, 1, "Type_only_import_of_an_ECMAScript_module_from_a_CommonJS_module_must_have_a_resolution_mode_attribut_1541", "Type-only import of an ECMAScript module from a CommonJS module must have a 'resolution-mode' attribute."), Type_import_of_an_ECMAScript_module_from_a_CommonJS_module_must_have_a_resolution_mode_attribute: diag(1542, 1, "Type_import_of_an_ECMAScript_module_from_a_CommonJS_module_must_have_a_resolution_mode_attribute_1542", "Type import of an ECMAScript module from a CommonJS module must have a 'resolution-mode' attribute."), Importing_a_JSON_file_into_an_ECMAScript_module_requires_a_type_Colon_json_import_attribute_when_module_is_set_to_0: diag(1543, 1, "Importing_a_JSON_file_into_an_ECMAScript_module_requires_a_type_Colon_json_import_attribute_when_mod_1543", `Importing a JSON file into an ECMAScript module requires a 'type: "json"' import attribute when 'module' is set to '{0}'.`), Named_imports_from_a_JSON_file_into_an_ECMAScript_module_are_not_allowed_when_module_is_set_to_0: diag(1544, 1, "Named_imports_from_a_JSON_file_into_an_ECMAScript_module_are_not_allowed_when_module_is_set_to_0_1544", "Named imports from a JSON file into an ECMAScript module are not allowed when 'module' is set to '{0}'."), using_declarations_are_not_allowed_in_ambient_contexts: diag(1545, 1, "using_declarations_are_not_allowed_in_ambient_contexts_1545", "'using' declarations are not allowed in ambient contexts."), await_using_declarations_are_not_allowed_in_ambient_contexts: diag(1546, 1, "await_using_declarations_are_not_allowed_in_ambient_contexts_1546", "'await using' declarations are not allowed in ambient contexts."), using_declarations_are_not_allowed_in_case_or_default_clauses_unless_contained_within_a_block: diag(1547, 1, "using_declarations_are_not_allowed_in_case_or_default_clauses_unless_contained_within_a_block_1547", "'using' declarations are not allowed in 'case' or 'default' clauses unless contained within a block."), await_using_declarations_are_not_allowed_in_case_or_default_clauses_unless_contained_within_a_block: diag(1548, 1, "await_using_declarations_are_not_allowed_in_case_or_default_clauses_unless_contained_within_a_block_1548", "'await using' declarations are not allowed in 'case' or 'default' clauses unless contained within a block."), Ignore_the_tsconfig_found_and_build_with_commandline_options_and_files: diag(1549, 3, "Ignore_the_tsconfig_found_and_build_with_commandline_options_and_files_1549", "Ignore the tsconfig found and build with commandline options and files."), The_types_of_0_are_incompatible_between_these_types: diag(2200, 1, "The_types_of_0_are_incompatible_between_these_types_2200", "The types of '{0}' are incompatible between these types."), The_types_returned_by_0_are_incompatible_between_these_types: diag(2201, 1, "The_types_returned_by_0_are_incompatible_between_these_types_2201", "The types returned by '{0}' are incompatible between these types."), Call_signature_return_types_0_and_1_are_incompatible: diag(2202, 1, "Call_signature_return_types_0_and_1_are_incompatible_2202", "Call signature return types '{0}' and '{1}' are incompatible.", undefined, true), Construct_signature_return_types_0_and_1_are_incompatible: diag(2203, 1, "Construct_signature_return_types_0_and_1_are_incompatible_2203", "Construct signature return types '{0}' and '{1}' are incompatible.", undefined, true), Call_signatures_with_no_arguments_have_incompatible_return_types_0_and_1: diag(2204, 1, "Call_signatures_with_no_arguments_have_incompatible_return_types_0_and_1_2204", "Call signatures with no arguments have incompatible return types '{0}' and '{1}'.", undefined, true), Construct_signatures_with_no_arguments_have_incompatible_return_types_0_and_1: diag(2205, 1, "Construct_signatures_with_no_arguments_have_incompatible_return_types_0_and_1_2205", "Construct signatures with no arguments have incompatible return types '{0}' and '{1}'.", undefined, true), The_type_modifier_cannot_be_used_on_a_named_import_when_import_type_is_used_on_its_import_statement: diag(2206, 1, "The_type_modifier_cannot_be_used_on_a_named_import_when_import_type_is_used_on_its_import_statement_2206", "The 'type' modifier cannot be used on a named import when 'import type' is used on its import statement."), The_type_modifier_cannot_be_used_on_a_named_export_when_export_type_is_used_on_its_export_statement: diag(2207, 1, "The_type_modifier_cannot_be_used_on_a_named_export_when_export_type_is_used_on_its_export_statement_2207", "The 'type' modifier cannot be used on a named export when 'export type' is used on its export statement."), This_type_parameter_might_need_an_extends_0_constraint: diag(2208, 1, "This_type_parameter_might_need_an_extends_0_constraint_2208", "This type parameter might need an `extends {0}` constraint."), The_project_root_is_ambiguous_but_is_required_to_resolve_export_map_entry_0_in_file_1_Supply_the_rootDir_compiler_option_to_disambiguate: diag(2209, 1, "The_project_root_is_ambiguous_but_is_required_to_resolve_export_map_entry_0_in_file_1_Supply_the_roo_2209", "The project root is ambiguous, but is required to resolve export map entry '{0}' in file '{1}'. Supply the `rootDir` compiler option to disambiguate."), The_project_root_is_ambiguous_but_is_required_to_resolve_import_map_entry_0_in_file_1_Supply_the_rootDir_compiler_option_to_disambiguate: diag(2210, 1, "The_project_root_is_ambiguous_but_is_required_to_resolve_import_map_entry_0_in_file_1_Supply_the_roo_2210", "The project root is ambiguous, but is required to resolve import map entry '{0}' in file '{1}'. Supply the `rootDir` compiler option to disambiguate."), Add_extends_constraint: diag(2211, 3, "Add_extends_constraint_2211", "Add `extends` constraint."), Add_extends_constraint_to_all_type_parameters: diag(2212, 3, "Add_extends_constraint_to_all_type_parameters_2212", "Add `extends` constraint to all type parameters"), Duplicate_identifier_0: diag(2300, 1, "Duplicate_identifier_0_2300", "Duplicate identifier '{0}'."), Initializer_of_instance_member_variable_0_cannot_reference_identifier_1_declared_in_the_constructor: diag(2301, 1, "Initializer_of_instance_member_variable_0_cannot_reference_identifier_1_declared_in_the_constructor_2301", "Initializer of instance member variable '{0}' cannot reference identifier '{1}' declared in the constructor."), Static_members_cannot_reference_class_type_parameters: diag(2302, 1, "Static_members_cannot_reference_class_type_parameters_2302", "Static members cannot reference class type parameters."), Circular_definition_of_import_alias_0: diag(2303, 1, "Circular_definition_of_import_alias_0_2303", "Circular definition of import alias '{0}'."), Cannot_find_name_0: diag(2304, 1, "Cannot_find_name_0_2304", "Cannot find name '{0}'."), Module_0_has_no_exported_member_1: diag(2305, 1, "Module_0_has_no_exported_member_1_2305", "Module '{0}' has no exported member '{1}'."), File_0_is_not_a_module: diag(2306, 1, "File_0_is_not_a_module_2306", "File '{0}' is not a module."), Cannot_find_module_0_or_its_corresponding_type_declarations: diag(2307, 1, "Cannot_find_module_0_or_its_corresponding_type_declarations_2307", "Cannot find module '{0}' or its corresponding type declarations."), Module_0_has_already_exported_a_member_named_1_Consider_explicitly_re_exporting_to_resolve_the_ambiguity: diag(2308, 1, "Module_0_has_already_exported_a_member_named_1_Consider_explicitly_re_exporting_to_resolve_the_ambig_2308", "Module {0} has already exported a member named '{1}'. Consider explicitly re-exporting to resolve the ambiguity."), An_export_assignment_cannot_be_used_in_a_module_with_other_exported_elements: diag(2309, 1, "An_export_assignment_cannot_be_used_in_a_module_with_other_exported_elements_2309", "An export assignment cannot be used in a module with other exported elements."), Type_0_recursively_references_itself_as_a_base_type: diag(2310, 1, "Type_0_recursively_references_itself_as_a_base_type_2310", "Type '{0}' recursively references itself as a base type."), Cannot_find_name_0_Did_you_mean_to_write_this_in_an_async_function: diag(2311, 1, "Cannot_find_name_0_Did_you_mean_to_write_this_in_an_async_function_2311", "Cannot find name '{0}'. Did you mean to write this in an async function?"), An_interface_can_only_extend_an_object_type_or_intersection_of_object_types_with_statically_known_members: diag(2312, 1, "An_interface_can_only_extend_an_object_type_or_intersection_of_object_types_with_statically_known_me_2312", "An interface can only extend an object type or intersection of object types with statically known members."), Type_parameter_0_has_a_circular_constraint: diag(2313, 1, "Type_parameter_0_has_a_circular_constraint_2313", "Type parameter '{0}' has a circular constraint."), Generic_type_0_requires_1_type_argument_s: diag(2314, 1, "Generic_type_0_requires_1_type_argument_s_2314", "Generic type '{0}' requires {1} type argument(s)."), Type_0_is_not_generic: diag(2315, 1, "Type_0_is_not_generic_2315", "Type '{0}' is not generic."), Global_type_0_must_be_a_class_or_interface_type: diag(2316, 1, "Global_type_0_must_be_a_class_or_interface_type_2316", "Global type '{0}' must be a class or interface type."), Global_type_0_must_have_1_type_parameter_s: diag(2317, 1, "Global_type_0_must_have_1_type_parameter_s_2317", "Global type '{0}' must have {1} type parameter(s)."), Cannot_find_global_type_0: diag(2318, 1, "Cannot_find_global_type_0_2318", "Cannot find global type '{0}'."), Named_property_0_of_types_1_and_2_are_not_identical: diag(2319, 1, "Named_property_0_of_types_1_and_2_are_not_identical_2319", "Named property '{0}' of types '{1}' and '{2}' are not identical."), Interface_0_cannot_simultaneously_extend_types_1_and_2: diag(2320, 1, "Interface_0_cannot_simultaneously_extend_types_1_and_2_2320", "Interface '{0}' cannot simultaneously extend types '{1}' and '{2}'."), Excessive_stack_depth_comparing_types_0_and_1: diag(2321, 1, "Excessive_stack_depth_comparing_types_0_and_1_2321", "Excessive stack depth comparing types '{0}' and '{1}'."), Type_0_is_not_assignable_to_type_1: diag(2322, 1, "Type_0_is_not_assignable_to_type_1_2322", "Type '{0}' is not assignable to type '{1}'."), Cannot_redeclare_exported_variable_0: diag(2323, 1, "Cannot_redeclare_exported_variable_0_2323", "Cannot redeclare exported variable '{0}'."), Property_0_is_missing_in_type_1: diag(2324, 1, "Property_0_is_missing_in_type_1_2324", "Property '{0}' is missing in type '{1}'."), Property_0_is_private_in_type_1_but_not_in_type_2: diag(2325, 1, "Property_0_is_private_in_type_1_but_not_in_type_2_2325", "Property '{0}' is private in type '{1}' but not in type '{2}'."), Types_of_property_0_are_incompatible: diag(2326, 1, "Types_of_property_0_are_incompatible_2326", "Types of property '{0}' are incompatible."), Property_0_is_optional_in_type_1_but_required_in_type_2: diag(2327, 1, "Property_0_is_optional_in_type_1_but_required_in_type_2_2327", "Property '{0}' is optional in type '{1}' but required in type '{2}'."), Types_of_parameters_0_and_1_are_incompatible: diag(2328, 1, "Types_of_parameters_0_and_1_are_incompatible_2328", "Types of parameters '{0}' and '{1}' are incompatible."), Index_signature_for_type_0_is_missing_in_type_1: diag(2329, 1, "Index_signature_for_type_0_is_missing_in_type_1_2329", "Index signature for type '{0}' is missing in type '{1}'."), _0_and_1_index_signatures_are_incompatible: diag(2330, 1, "_0_and_1_index_signatures_are_incompatible_2330", "'{0}' and '{1}' index signatures are incompatible."), this_cannot_be_referenced_in_a_module_or_namespace_body: diag(2331, 1, "this_cannot_be_referenced_in_a_module_or_namespace_body_2331", "'this' cannot be referenced in a module or namespace body."), this_cannot_be_referenced_in_current_location: diag(2332, 1, "this_cannot_be_referenced_in_current_location_2332", "'this' cannot be referenced in current location."), this_cannot_be_referenced_in_a_static_property_initializer: diag(2334, 1, "this_cannot_be_referenced_in_a_static_property_initializer_2334", "'this' cannot be referenced in a static property initializer."), super_can_only_be_referenced_in_a_derived_class: diag(2335, 1, "super_can_only_be_referenced_in_a_derived_class_2335", "'super' can only be referenced in a derived class."), super_cannot_be_referenced_in_constructor_arguments: diag(2336, 1, "super_cannot_be_referenced_in_constructor_arguments_2336", "'super' cannot be referenced in constructor arguments."), Super_calls_are_not_permitted_outside_constructors_or_in_nested_functions_inside_constructors: diag(2337, 1, "Super_calls_are_not_permitted_outside_constructors_or_in_nested_functions_inside_constructors_2337", "Super calls are not permitted outside constructors or in nested functions inside constructors."), super_property_access_is_permitted_only_in_a_constructor_member_function_or_member_accessor_of_a_derived_class: diag(2338, 1, "super_property_access_is_permitted_only_in_a_constructor_member_function_or_member_accessor_of_a_der_2338", "'super' property access is permitted only in a constructor, member function, or member accessor of a derived class."), Property_0_does_not_exist_on_type_1: diag(2339, 1, "Property_0_does_not_exist_on_type_1_2339", "Property '{0}' does not exist on type '{1}'."), Only_public_and_protected_methods_of_the_base_class_are_accessible_via_the_super_keyword: diag(2340, 1, "Only_public_and_protected_methods_of_the_base_class_are_accessible_via_the_super_keyword_2340", "Only public and protected methods of the base class are accessible via the 'super' keyword."), Property_0_is_private_and_only_accessible_within_class_1: diag(2341, 1, "Property_0_is_private_and_only_accessible_within_class_1_2341", "Property '{0}' is private and only accessible within class '{1}'."), This_syntax_requires_an_imported_helper_named_1_which_does_not_exist_in_0_Consider_upgrading_your_version_of_0: diag(2343, 1, "This_syntax_requires_an_imported_helper_named_1_which_does_not_exist_in_0_Consider_upgrading_your_ve_2343", "This syntax requires an imported helper named '{1}' which does not exist in '{0}'. Consider upgrading your version of '{0}'."), Type_0_does_not_satisfy_the_constraint_1: diag(2344, 1, "Type_0_does_not_satisfy_the_constraint_1_2344", "Type '{0}' does not satisfy the constraint '{1}'."), Argument_of_type_0_is_not_assignable_to_parameter_of_type_1: diag(2345, 1, "Argument_of_type_0_is_not_assignable_to_parameter_of_type_1_2345", "Argument of type '{0}' is not assignable to parameter of type '{1}'."), Call_target_does_not_contain_any_signatures: diag(2346, 1, "Call_target_does_not_contain_any_signatures_2346", "Call target does not contain any signatures."), Untyped_function_calls_may_not_accept_type_arguments: diag(2347, 1, "Untyped_function_calls_may_not_accept_type_arguments_2347", "Untyped function calls may not accept type arguments."), Value_of_type_0_is_not_callable_Did_you_mean_to_include_new: diag(2348, 1, "Value_of_type_0_is_not_callable_Did_you_mean_to_include_new_2348", "Value of type '{0}' is not callable. Did you mean to include 'new'?"), This_expression_is_not_callable: diag(2349, 1, "This_expression_is_not_callable_2349", "This expression is not callable."), Only_a_void_function_can_be_called_with_the_new_keyword: diag(2350, 1, "Only_a_void_function_can_be_called_with_the_new_keyword_2350", "Only a void function can be called with the 'new' keyword."), This_expression_is_not_constructable: diag(2351, 1, "This_expression_is_not_constructable_2351", "This expression is not constructable."), Conversion_of_type_0_to_type_1_may_be_a_mistake_because_neither_type_sufficiently_overlaps_with_the_other_If_this_was_intentional_convert_the_expression_to_unknown_first: diag(2352, 1, "Conversion_of_type_0_to_type_1_may_be_a_mistake_because_neither_type_sufficiently_overlaps_with_the__2352", "Conversion of type '{0}' to type '{1}' may be a mistake because neither type sufficiently overlaps with the other. If this was intentional, convert the expression to 'unknown' first."), Object_literal_may_only_specify_known_properties_and_0_does_not_exist_in_type_1: diag(2353, 1, "Object_literal_may_only_specify_known_properties_and_0_does_not_exist_in_type_1_2353", "Object literal may only specify known properties, and '{0}' does not exist in type '{1}'."), This_syntax_requires_an_imported_helper_but_module_0_cannot_be_found: diag(2354, 1, "This_syntax_requires_an_imported_helper_but_module_0_cannot_be_found_2354", "This syntax requires an imported helper but module '{0}' cannot be found."), A_function_whose_declared_type_is_neither_undefined_void_nor_any_must_return_a_value: diag(2355, 1, "A_function_whose_declared_type_is_neither_undefined_void_nor_any_must_return_a_value_2355", "A function whose declared type is neither 'undefined', 'void', nor 'any' must return a value."), An_arithmetic_operand_must_be_of_type_any_number_bigint_or_an_enum_type: diag(2356, 1, "An_arithmetic_operand_must_be_of_type_any_number_bigint_or_an_enum_type_2356", "An arithmetic operand must be of type 'any', 'number', 'bigint' or an enum type."), The_operand_of_an_increment_or_decrement_operator_must_be_a_variable_or_a_property_access: diag(2357, 1, "The_operand_of_an_increment_or_decrement_operator_must_be_a_variable_or_a_property_access_2357", "The operand of an increment or decrement operator must be a variable or a property access."), The_left_hand_side_of_an_instanceof_expression_must_be_of_type_any_an_object_type_or_a_type_parameter: diag(2358, 1, "The_left_hand_side_of_an_instanceof_expression_must_be_of_type_any_an_object_type_or_a_type_paramete_2358", "The left-hand side of an 'instanceof' expression must be of type 'any', an object type or a type parameter."), The_right_hand_side_of_an_instanceof_expression_must_be_either_of_type_any_a_class_function_or_other_type_assignable_to_the_Function_interface_type_or_an_object_type_with_a_Symbol_hasInstance_method: diag(2359, 1, "The_right_hand_side_of_an_instanceof_expression_must_be_either_of_type_any_a_class_function_or_other_2359", "The right-hand side of an 'instanceof' expression must be either of type 'any', a class, function, or other type assignable to the 'Function' interface type, or an object type with a 'Symbol.hasInstance' method."), The_left_hand_side_of_an_arithmetic_operation_must_be_of_type_any_number_bigint_or_an_enum_type: diag(2362, 1, "The_left_hand_side_of_an_arithmetic_operation_must_be_of_type_any_number_bigint_or_an_enum_type_2362", "The left-hand side of an arithmetic operation must be of type 'any', 'number', 'bigint' or an enum type."), The_right_hand_side_of_an_arithmetic_operation_must_be_of_type_any_number_bigint_or_an_enum_type: diag(2363, 1, "The_right_hand_side_of_an_arithmetic_operation_must_be_of_type_any_number_bigint_or_an_enum_type_2363", "The right-hand side of an arithmetic operation must be of type 'any', 'number', 'bigint' or an enum type."), The_left_hand_side_of_an_assignment_expression_must_be_a_variable_or_a_property_access: diag(2364, 1, "The_left_hand_side_of_an_assignment_expression_must_be_a_variable_or_a_property_access_2364", "The left-hand side of an assignment expression must be a variable or a property access."), Operator_0_cannot_be_applied_to_types_1_and_2: diag(2365, 1, "Operator_0_cannot_be_applied_to_types_1_and_2_2365", "Operator '{0}' cannot be applied to types '{1}' and '{2}'."), Function_lacks_ending_return_statement_and_return_type_does_not_include_undefined: diag(2366, 1, "Function_lacks_ending_return_statement_and_return_type_does_not_include_undefined_2366", "Function lacks ending return statement and return type does not include 'undefined'."), This_comparison_appears_to_be_unintentional_because_the_types_0_and_1_have_no_overlap: diag(2367, 1, "This_comparison_appears_to_be_unintentional_because_the_types_0_and_1_have_no_overlap_2367", "This comparison appears to be unintentional because the types '{0}' and '{1}' have no overlap."), Type_parameter_name_cannot_be_0: diag(2368, 1, "Type_parameter_name_cannot_be_0_2368", "Type parameter name cannot be '{0}'."), A_parameter_property_is_only_allowed_in_a_constructor_implementation: diag(2369, 1, "A_parameter_property_is_only_allowed_in_a_constructor_implementation_2369", "A parameter property is only allowed in a constructor implementation."), A_rest_parameter_must_be_of_an_array_type: diag(2370, 1, "A_rest_parameter_must_be_of_an_array_type_2370", "A rest parameter must be of an array type."), A_parameter_initializer_is_only_allowed_in_a_function_or_constructor_implementation: diag(2371, 1, "A_parameter_initializer_is_only_allowed_in_a_function_or_constructor_implementation_2371", "A parameter initializer is only allowed in a function or constructor implementation."), Parameter_0_cannot_reference_itself: diag(2372, 1, "Parameter_0_cannot_reference_itself_2372", "Parameter '{0}' cannot reference itself."), Parameter_0_cannot_reference_identifier_1_declared_after_it: diag(2373, 1, "Parameter_0_cannot_reference_identifier_1_declared_after_it_2373", "Parameter '{0}' cannot reference identifier '{1}' declared after it."), Duplicate_index_signature_for_type_0: diag(2374, 1, "Duplicate_index_signature_for_type_0_2374", "Duplicate index signature for type '{0}'."), Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_types_of_the_target_s_properties: diag(2375, 1, "Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefi_2375", "Type '{0}' is not assignable to type '{1}' with 'exactOptionalPropertyTypes: true'. Consider adding 'undefined' to the types of the target's properties."), A_super_call_must_be_the_first_statement_in_the_constructor_to_refer_to_super_or_this_when_a_derived_class_contains_initialized_properties_parameter_properties_or_private_identifiers: diag(2376, 1, "A_super_call_must_be_the_first_statement_in_the_constructor_to_refer_to_super_or_this_when_a_derived_2376", "A 'super' call must be the first statement in the constructor to refer to 'super' or 'this' when a derived class contains initialized properties, parameter properties, or private identifiers."), Constructors_for_derived_classes_must_contain_a_super_call: diag(2377, 1, "Constructors_for_derived_classes_must_contain_a_super_call_2377", "Constructors for derived classes must contain a 'super' call."), A_get_accessor_must_return_a_value: diag(2378, 1, "A_get_accessor_must_return_a_value_2378", "A 'get' accessor must return a value."), Argument_of_type_0_is_not_assignable_to_parameter_of_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_types_of_the_target_s_properties: diag(2379, 1, "Argument_of_type_0_is_not_assignable_to_parameter_of_type_1_with_exactOptionalPropertyTypes_Colon_tr_2379", "Argument of type '{0}' is not assignable to parameter of type '{1}' with 'exactOptionalPropertyTypes: true'. Consider adding 'undefined' to the types of the target's properties."), Overload_signatures_must_all_be_exported_or_non_exported: diag(2383, 1, "Overload_signatures_must_all_be_exported_or_non_exported_2383", "Overload signatures must all be exported or non-exported."), Overload_signatures_must_all_be_ambient_or_non_ambient: diag(2384, 1, "Overload_signatures_must_all_be_ambient_or_non_ambient_2384", "Overload signatures must all be ambient or non-ambient."), Overload_signatures_must_all_be_public_private_or_protected: diag(2385, 1, "Overload_signatures_must_all_be_public_private_or_protected_2385", "Overload signatures must all be public, private or protected."), Overload_signatures_must_all_be_optional_or_required: diag(2386, 1, "Overload_signatures_must_all_be_optional_or_required_2386", "Overload signatures must all be optional or required."), Function_overload_must_be_static: diag(2387, 1, "Function_overload_must_be_static_2387", "Function overload must be static."), Function_overload_must_not_be_static: diag(2388, 1, "Function_overload_must_not_be_static_2388", "Function overload must not be static."), Function_implementation_name_must_be_0: diag(2389, 1, "Function_implementation_name_must_be_0_2389", "Function implementation name must be '{0}'."), Constructor_implementation_is_missing: diag(2390, 1, "Constructor_implementation_is_missing_2390", "Constructor implementation is missing."), Function_implementation_is_missing_or_not_immediately_following_the_declaration: diag(2391, 1, "Function_implementation_is_missing_or_not_immediately_following_the_declaration_2391", "Function implementation is missing or not immediately following the declaration."), Multiple_constructor_implementations_are_not_allowed: diag(2392, 1, "Multiple_constructor_implementations_are_not_allowed_2392", "Multiple constructor implementations are not allowed."), Duplicate_function_implementation: diag(2393, 1, "Duplicate_function_implementation_2393", "Duplicate function implementation."), This_overload_signature_is_not_compatible_with_its_implementation_signature: diag(2394, 1, "This_overload_signature_is_not_compatible_with_its_implementation_signature_2394", "This overload signature is not compatible with its implementation signature."), Individual_declarations_in_merged_declaration_0_must_be_all_exported_or_all_local: diag(2395, 1, "Individual_declarations_in_merged_declaration_0_must_be_all_exported_or_all_local_2395", "Individual declarations in merged declaration '{0}' must be all exported or all local."), Duplicate_identifier_arguments_Compiler_uses_arguments_to_initialize_rest_parameters: diag(2396, 1, "Duplicate_identifier_arguments_Compiler_uses_arguments_to_initialize_rest_parameters_2396", "Duplicate identifier 'arguments'. Compiler uses 'arguments' to initialize rest parameters."), Declaration_name_conflicts_with_built_in_global_identifier_0: diag(2397, 1, "Declaration_name_conflicts_with_built_in_global_identifier_0_2397", "Declaration name conflicts with built-in global identifier '{0}'."), constructor_cannot_be_used_as_a_parameter_property_name: diag(2398, 1, "constructor_cannot_be_used_as_a_parameter_property_name_2398", "'constructor' cannot be used as a parameter property name."), Duplicate_identifier_this_Compiler_uses_variable_declaration_this_to_capture_this_reference: diag(2399, 1, "Duplicate_identifier_this_Compiler_uses_variable_declaration_this_to_capture_this_reference_2399", "Duplicate identifier '_this'. Compiler uses variable declaration '_this' to capture 'this' reference."), Expression_resolves_to_variable_declaration_this_that_compiler_uses_to_capture_this_reference: diag(2400, 1, "Expression_resolves_to_variable_declaration_this_that_compiler_uses_to_capture_this_reference_2400", "Expression resolves to variable declaration '_this' that compiler uses to capture 'this' reference."), A_super_call_must_be_a_root_level_statement_within_a_constructor_of_a_derived_class_that_contains_initialized_properties_parameter_properties_or_private_identifiers: diag(2401, 1, "A_super_call_must_be_a_root_level_statement_within_a_constructor_of_a_derived_class_that_contains_in_2401", "A 'super' call must be a root-level statement within a constructor of a derived class that contains initialized properties, parameter properties, or private identifiers."), Expression_resolves_to_super_that_compiler_uses_to_capture_base_class_reference: diag(2402, 1, "Expression_resolves_to_super_that_compiler_uses_to_capture_base_class_reference_2402", "Expression resolves to '_super' that compiler uses to capture base class reference."), Subsequent_variable_declarations_must_have_the_same_type_Variable_0_must_be_of_type_1_but_here_has_type_2: diag(2403, 1, "Subsequent_variable_declarations_must_have_the_same_type_Variable_0_must_be_of_type_1_but_here_has_t_2403", "Subsequent variable declarations must have the same type. Variable '{0}' must be of type '{1}', but here has type '{2}'."), The_left_hand_side_of_a_for_in_statement_cannot_use_a_type_annotation: diag(2404, 1, "The_left_hand_side_of_a_for_in_statement_cannot_use_a_type_annotation_2404", "The left-hand side of a 'for...in' statement cannot use a type annotation."), The_left_hand_side_of_a_for_in_statement_must_be_of_type_string_or_any: diag(2405, 1, "The_left_hand_side_of_a_for_in_statement_must_be_of_type_string_or_any_2405", "The left-hand side of a 'for...in' statement must be of type 'string' or 'any'."), The_left_hand_side_of_a_for_in_statement_must_be_a_variable_or_a_property_access: diag(2406, 1, "The_left_hand_side_of_a_for_in_statement_must_be_a_variable_or_a_property_access_2406", "The left-hand side of a 'for...in' statement must be a variable or a property access."), The_right_hand_side_of_a_for_in_statement_must_be_of_type_any_an_object_type_or_a_type_parameter_but_here_has_type_0: diag(2407, 1, "The_right_hand_side_of_a_for_in_statement_must_be_of_type_any_an_object_type_or_a_type_parameter_but_2407", "The right-hand side of a 'for...in' statement must be of type 'any', an object type or a type parameter, but here has type '{0}'."), Setters_cannot_return_a_value: diag(2408, 1, "Setters_cannot_return_a_value_2408", "Setters cannot return a value."), Return_type_of_constructor_signature_must_be_assignable_to_the_instance_type_of_the_class: diag(2409, 1, "Return_type_of_constructor_signature_must_be_assignable_to_the_instance_type_of_the_class_2409", "Return type of constructor signature must be assignable to the instance type of the class."), The_with_statement_is_not_supported_All_symbols_in_a_with_block_will_have_type_any: diag(2410, 1, "The_with_statement_is_not_supported_All_symbols_in_a_with_block_will_have_type_any_2410", "The 'with' statement is not supported. All symbols in a 'with' block will have type 'any'."), Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_type_of_the_target: diag(2412, 1, "Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefi_2412", "Type '{0}' is not assignable to type '{1}' with 'exactOptionalPropertyTypes: true'. Consider adding 'undefined' to the type of the target."), Property_0_of_type_1_is_not_assignable_to_2_index_type_3: diag(2411, 1, "Property_0_of_type_1_is_not_assignable_to_2_index_type_3_2411", "Property '{0}' of type '{1}' is not assignable to '{2}' index type '{3}'."), _0_index_type_1_is_not_assignable_to_2_index_type_3: diag(2413, 1, "_0_index_type_1_is_not_assignable_to_2_index_type_3_2413", "'{0}' index type '{1}' is not assignable to '{2}' index type '{3}'."), Class_name_cannot_be_0: diag(2414, 1, "Class_name_cannot_be_0_2414", "Class name cannot be '{0}'."), Class_0_incorrectly_extends_base_class_1: diag(2415, 1, "Class_0_incorrectly_extends_base_class_1_2415", "Class '{0}' incorrectly extends base class '{1}'."), Property_0_in_type_1_is_not_assignable_to_the_same_property_in_base_type_2: diag(2416, 1, "Property_0_in_type_1_is_not_assignable_to_the_same_property_in_base_type_2_2416", "Property '{0}' in type '{1}' is not assignable to the same property in base type '{2}'."), Class_static_side_0_incorrectly_extends_base_class_static_side_1: diag(2417, 1, "Class_static_side_0_incorrectly_extends_base_class_static_side_1_2417", "Class static side '{0}' incorrectly extends base class static side '{1}'."), Type_of_computed_property_s_value_is_0_which_is_not_assignable_to_type_1: diag(2418, 1, "Type_of_computed_property_s_value_is_0_which_is_not_assignable_to_type_1_2418", "Type of computed property's value is '{0}', which is not assignable to type '{1}'."), Types_of_construct_signatures_are_incompatible: diag(2419, 1, "Types_of_construct_signatures_are_incompatible_2419", "Types of construct signatures are incompatible."), Class_0_incorrectly_implements_interface_1: diag(2420, 1, "Class_0_incorrectly_implements_interface_1_2420", "Class '{0}' incorrectly implements interface '{1}'."), A_class_can_only_implement_an_object_type_or_intersection_of_object_types_with_statically_known_members: diag(2422, 1, "A_class_can_only_implement_an_object_type_or_intersection_of_object_types_with_statically_known_memb_2422", "A class can only implement an object type or intersection of object types with statically known members."), Class_0_defines_instance_member_function_1_but_extended_class_2_defines_it_as_instance_member_accessor: diag(2423, 1, "Class_0_defines_instance_member_function_1_but_extended_class_2_defines_it_as_instance_member_access_2423", "Class '{0}' defines instance member function '{1}', but extended class '{2}' defines it as instance member accessor."), Class_0_defines_instance_member_property_1_but_extended_class_2_defines_it_as_instance_member_function: diag(2425, 1, "Class_0_defines_instance_member_property_1_but_extended_class_2_defines_it_as_instance_member_functi_2425", "Class '{0}' defines instance member property '{1}', but extended class '{2}' defines it as instance member function."), Class_0_defines_instance_member_accessor_1_but_extended_class_2_defines_it_as_instance_member_function: diag(2426, 1, "Class_0_defines_instance_member_accessor_1_but_extended_class_2_defines_it_as_instance_member_functi_2426", "Class '{0}' defines instance member accessor '{1}', but extended class '{2}' defines it as instance member function."), Interface_name_cannot_be_0: diag(2427, 1, "Interface_name_cannot_be_0_2427", "Interface name cannot be '{0}'."), All_declarations_of_0_must_have_identical_type_parameters: diag(2428, 1, "All_declarations_of_0_must_have_identical_type_parameters_2428", "All declarations of '{0}' must have identical type parameters."), Interface_0_incorrectly_extends_interface_1: diag(2430, 1, "Interface_0_incorrectly_extends_interface_1_2430", "Interface '{0}' incorrectly extends interface '{1}'."), Enum_name_cannot_be_0: diag(2431, 1, "Enum_name_cannot_be_0_2431", "Enum name cannot be '{0}'."), In_an_enum_with_multiple_declarations_only_one_declaration_can_omit_an_initializer_for_its_first_enum_element: diag(2432, 1, "In_an_enum_with_multiple_declarations_only_one_declaration_can_omit_an_initializer_for_its_first_enu_2432", "In an enum with multiple declarations, only one declaration can omit an initializer for its first enum element."), A_namespace_declaration_cannot_be_in_a_different_file_from_a_class_or_function_with_which_it_is_merged: diag(2433, 1, "A_namespace_declaration_cannot_be_in_a_different_file_from_a_class_or_function_with_which_it_is_merg_2433", "A namespace declaration cannot be in a different file from a class or function with which it is merged."), A_namespace_declaration_cannot_be_located_prior_to_a_class_or_function_with_which_it_is_merged: diag(2434, 1, "A_namespace_declaration_cannot_be_located_prior_to_a_class_or_function_with_which_it_is_merged_2434", "A namespace declaration cannot be located prior to a class or function with which it is merged."), Ambient_modules_cannot_be_nested_in_other_modules_or_namespaces: diag(2435, 1, "Ambient_modules_cannot_be_nested_in_other_modules_or_namespaces_2435", "Ambient modules cannot be nested in other modules or namespaces."), Ambient_module_declaration_cannot_specify_relative_module_name: diag(2436, 1, "Ambient_module_declaration_cannot_specify_relative_module_name_2436", "Ambient module declaration cannot specify relative module name."), Module_0_is_hidden_by_a_local_declaration_with_the_same_name: diag(2437, 1, "Module_0_is_hidden_by_a_local_declaration_with_the_same_name_2437", "Module '{0}' is hidden by a local declaration with the same name."), Import_name_cannot_be_0: diag(2438, 1, "Import_name_cannot_be_0_2438", "Import name cannot be '{0}'."), Import_or_export_declaration_in_an_ambient_module_declaration_cannot_reference_module_through_relative_module_name: diag(2439, 1, "Import_or_export_declaration_in_an_ambient_module_declaration_cannot_reference_module_through_relati_2439", "Import or export declaration in an ambient module declaration cannot reference module through relative module name."), Import_declaration_conflicts_with_local_declaration_of_0: diag(2440, 1, "Import_declaration_conflicts_with_local_declaration_of_0_2440", "Import declaration conflicts with local declaration of '{0}'."), Duplicate_identifier_0_Compiler_reserves_name_1_in_top_level_scope_of_a_module: diag(2441, 1, "Duplicate_identifier_0_Compiler_reserves_name_1_in_top_level_scope_of_a_module_2441", "Duplicate identifier '{0}'. Compiler reserves name '{1}' in top level scope of a module."), Types_have_separate_declarations_of_a_private_property_0: diag(2442, 1, "Types_have_separate_declarations_of_a_private_property_0_2442", "Types have separate declarations of a private property '{0}'."), Property_0_is_protected_but_type_1_is_not_a_class_derived_from_2: diag(2443, 1, "Property_0_is_protected_but_type_1_is_not_a_class_derived_from_2_2443", "Property '{0}' is protected but type '{1}' is not a class derived from '{2}'."), Property_0_is_protected_in_type_1_but_public_in_type_2: diag(2444, 1, "Property_0_is_protected_in_type_1_but_public_in_type_2_2444", "Property '{0}' is protected in type '{1}' but public in type '{2}'."), Property_0_is_protected_and_only_accessible_within_class_1_and_its_subclasses: diag(2445, 1, "Property_0_is_protected_and_only_accessible_within_class_1_and_its_subclasses_2445", "Property '{0}' is protected and only accessible within class '{1}' and its subclasses."), Property_0_is_protected_and_only_accessible_through_an_instance_of_class_1_This_is_an_instance_of_class_2: diag(2446, 1, "Property_0_is_protected_and_only_accessible_through_an_instance_of_class_1_This_is_an_instance_of_cl_2446", "Property '{0}' is protected and only accessible through an instance of class '{1}'. This is an instance of class '{2}'."), The_0_operator_is_not_allowed_for_boolean_types_Consider_using_1_instead: diag(2447, 1, "The_0_operator_is_not_allowed_for_boolean_types_Consider_using_1_instead_2447", "The '{0}' operator is not allowed for boolean types. Consider using '{1}' instead."), Block_scoped_variable_0_used_before_its_declaration: diag(2448, 1, "Block_scoped_variable_0_used_before_its_declaration_2448", "Block-scoped variable '{0}' used before its declaration."), Class_0_used_before_its_declaration: diag(2449, 1, "Class_0_used_before_its_declaration_2449", "Class '{0}' used before its declaration."), Enum_0_used_before_its_declaration: diag(2450, 1, "Enum_0_used_before_its_declaration_2450", "Enum '{0}' used before its declaration."), Cannot_redeclare_block_scoped_variable_0: diag(2451, 1, "Cannot_redeclare_block_scoped_variable_0_2451", "Cannot redeclare block-scoped variable '{0}'."), An_enum_member_cannot_have_a_numeric_name: diag(2452, 1, "An_enum_member_cannot_have_a_numeric_name_2452", "An enum member cannot have a numeric name."), Variable_0_is_used_before_being_assigned: diag(2454, 1, "Variable_0_is_used_before_being_assigned_2454", "Variable '{0}' is used before being assigned."), Type_alias_0_circularly_references_itself: diag(2456, 1, "Type_alias_0_circularly_references_itself_2456", "Type alias '{0}' circularly references itself."), Type_alias_name_cannot_be_0: diag(2457, 1, "Type_alias_name_cannot_be_0_2457", "Type alias name cannot be '{0}'."), An_AMD_module_cannot_have_multiple_name_assignments: diag(2458, 1, "An_AMD_module_cannot_have_multiple_name_assignments_2458", "An AMD module cannot have multiple name assignments."), Module_0_declares_1_locally_but_it_is_not_exported: diag(2459, 1, "Module_0_declares_1_locally_but_it_is_not_exported_2459", "Module '{0}' declares '{1}' locally, but it is not exported."), Module_0_declares_1_locally_but_it_is_exported_as_2: diag(2460, 1, "Module_0_declares_1_locally_but_it_is_exported_as_2_2460", "Module '{0}' declares '{1}' locally, but it is exported as '{2}'."), Type_0_is_not_an_array_type: diag(2461, 1, "Type_0_is_not_an_array_type_2461", "Type '{0}' is not an array type."), A_rest_element_must_be_last_in_a_destructuring_pattern: diag(2462, 1, "A_rest_element_must_be_last_in_a_destructuring_pattern_2462", "A rest element must be last in a destructuring pattern."), A_binding_pattern_parameter_cannot_be_optional_in_an_implementation_signature: diag(2463, 1, "A_binding_pattern_parameter_cannot_be_optional_in_an_implementation_signature_2463", "A binding pattern parameter cannot be optional in an implementation signature."), A_computed_property_name_must_be_of_type_string_number_symbol_or_any: diag(2464, 1, "A_computed_property_name_must_be_of_type_string_number_symbol_or_any_2464", "A computed property name must be of type 'string', 'number', 'symbol', or 'any'."), this_cannot_be_referenced_in_a_computed_property_name: diag(2465, 1, "this_cannot_be_referenced_in_a_computed_property_name_2465", "'this' cannot be referenced in a computed property name."), super_cannot_be_referenced_in_a_computed_property_name: diag(2466, 1, "super_cannot_be_referenced_in_a_computed_property_name_2466", "'super' cannot be referenced in a computed property name."), A_computed_property_name_cannot_reference_a_type_parameter_from_its_containing_type: diag(2467, 1, "A_computed_property_name_cannot_reference_a_type_parameter_from_its_containing_type_2467", "A computed property name cannot reference a type parameter from its containing type."), Cannot_find_global_value_0: diag(2468, 1, "Cannot_find_global_value_0_2468", "Cannot find global value '{0}'."), The_0_operator_cannot_be_applied_to_type_symbol: diag(2469, 1, "The_0_operator_cannot_be_applied_to_type_symbol_2469", "The '{0}' operator cannot be applied to type 'symbol'."), Spread_operator_in_new_expressions_is_only_available_when_targeting_ECMAScript_5_and_higher: diag(2472, 1, "Spread_operator_in_new_expressions_is_only_available_when_targeting_ECMAScript_5_and_higher_2472", "Spread operator in 'new' expressions is only available when targeting ECMAScript 5 and higher."), Enum_declarations_must_all_be_const_or_non_const: diag(2473, 1, "Enum_declarations_must_all_be_const_or_non_const_2473", "Enum declarations must all be const or non-const."), const_enum_member_initializers_must_be_constant_expressions: diag(2474, 1, "const_enum_member_initializers_must_be_constant_expressions_2474", "const enum member initializers must be constant expressions."), const_enums_can_only_be_used_in_property_or_index_access_expressions_or_the_right_hand_side_of_an_import_declaration_or_export_assignment_or_type_query: diag(2475, 1, "const_enums_can_only_be_used_in_property_or_index_access_expressions_or_the_right_hand_side_of_an_im_2475", "'const' enums can only be used in property or index access expressions or the right hand side of an import declaration or export assignment or type query."), A_const_enum_member_can_only_be_accessed_using_a_string_literal: diag(2476, 1, "A_const_enum_member_can_only_be_accessed_using_a_string_literal_2476", "A const enum member can only be accessed using a string literal."), const_enum_member_initializer_was_evaluated_to_a_non_finite_value: diag(2477, 1, "const_enum_member_initializer_was_evaluated_to_a_non_finite_value_2477", "'const' enum member initializer was evaluated to a non-finite value."), const_enum_member_initializer_was_evaluated_to_disallowed_value_NaN: diag(2478, 1, "const_enum_member_initializer_was_evaluated_to_disallowed_value_NaN_2478", "'const' enum member initializer was evaluated to disallowed value 'NaN'."), let_is_not_allowed_to_be_used_as_a_name_in_let_or_const_declarations: diag(2480, 1, "let_is_not_allowed_to_be_used_as_a_name_in_let_or_const_declarations_2480", "'let' is not allowed to be used as a name in 'let' or 'const' declarations."), Cannot_initialize_outer_scoped_variable_0_in_the_same_scope_as_block_scoped_declaration_1: diag(2481, 1, "Cannot_initialize_outer_scoped_variable_0_in_the_same_scope_as_block_scoped_declaration_1_2481", "Cannot initialize outer scoped variable '{0}' in the same scope as block scoped declaration '{1}'."), The_left_hand_side_of_a_for_of_statement_cannot_use_a_type_annotation: diag(2483, 1, "The_left_hand_side_of_a_for_of_statement_cannot_use_a_type_annotation_2483", "The left-hand side of a 'for...of' statement cannot use a type annotation."), Export_declaration_conflicts_with_exported_declaration_of_0: diag(2484, 1, "Export_declaration_conflicts_with_exported_declaration_of_0_2484", "Export declaration conflicts with exported declaration of '{0}'."), The_left_hand_side_of_a_for_of_statement_must_be_a_variable_or_a_property_access: diag(2487, 1, "The_left_hand_side_of_a_for_of_statement_must_be_a_variable_or_a_property_access_2487", "The left-hand side of a 'for...of' statement must be a variable or a property access."), Type_0_must_have_a_Symbol_iterator_method_that_returns_an_iterator: diag(2488, 1, "Type_0_must_have_a_Symbol_iterator_method_that_returns_an_iterator_2488", "Type '{0}' must have a '[Symbol.iterator]()' method that returns an iterator."), An_iterator_must_have_a_next_method: diag(2489, 1, "An_iterator_must_have_a_next_method_2489", "An iterator must have a 'next()' method."), The_type_returned_by_the_0_method_of_an_iterator_must_have_a_value_property: diag(2490, 1, "The_type_returned_by_the_0_method_of_an_iterator_must_have_a_value_property_2490", "The type returned by the '{0}()' method of an iterator must have a 'value' property."), The_left_hand_side_of_a_for_in_statement_cannot_be_a_destructuring_pattern: diag(2491, 1, "The_left_hand_side_of_a_for_in_statement_cannot_be_a_destructuring_pattern_2491", "The left-hand side of a 'for...in' statement cannot be a destructuring pattern."), Cannot_redeclare_identifier_0_in_catch_clause: diag(2492, 1, "Cannot_redeclare_identifier_0_in_catch_clause_2492", "Cannot redeclare identifier '{0}' in catch clause."), Tuple_type_0_of_length_1_has_no_element_at_index_2: diag(2493, 1, "Tuple_type_0_of_length_1_has_no_element_at_index_2_2493", "Tuple type '{0}' of length '{1}' has no element at index '{2}'."), Using_a_string_in_a_for_of_statement_is_only_supported_in_ECMAScript_5_and_higher: diag(2494, 1, "Using_a_string_in_a_for_of_statement_is_only_supported_in_ECMAScript_5_and_higher_2494", "Using a string in a 'for...of' statement is only supported in ECMAScript 5 and higher."), Type_0_is_not_an_array_type_or_a_string_type: diag(2495, 1, "Type_0_is_not_an_array_type_or_a_string_type_2495", "Type '{0}' is not an array type or a string type."), The_arguments_object_cannot_be_referenced_in_an_arrow_function_in_ES5_Consider_using_a_standard_function_expression: diag(2496, 1, "The_arguments_object_cannot_be_referenced_in_an_arrow_function_in_ES5_Consider_using_a_standard_func_2496", "The 'arguments' object cannot be referenced in an arrow function in ES5. Consider using a standard function expression."), This_module_can_only_be_referenced_with_ECMAScript_imports_Slashexports_by_turning_on_the_0_flag_and_referencing_its_default_export: diag(2497, 1, "This_module_can_only_be_referenced_with_ECMAScript_imports_Slashexports_by_turning_on_the_0_flag_and_2497", "This module can only be referenced with ECMAScript imports/exports by turning on the '{0}' flag and referencing its default export."), Module_0_uses_export_and_cannot_be_used_with_export_Asterisk: diag(2498, 1, "Module_0_uses_export_and_cannot_be_used_with_export_Asterisk_2498", "Module '{0}' uses 'export =' and cannot be used with 'export *'."), An_interface_can_only_extend_an_identifier_Slashqualified_name_with_optional_type_arguments: diag(2499, 1, "An_interface_can_only_extend_an_identifier_Slashqualified_name_with_optional_type_arguments_2499", "An interface can only extend an identifier/qualified-name with optional type arguments."), A_class_can_only_implement_an_identifier_Slashqualified_name_with_optional_type_arguments: diag(2500, 1, "A_class_can_only_implement_an_identifier_Slashqualified_name_with_optional_type_arguments_2500", "A class can only implement an identifier/qualified-name with optional type arguments."), A_rest_element_cannot_contain_a_binding_pattern: diag(2501, 1, "A_rest_element_cannot_contain_a_binding_pattern_2501", "A rest element cannot contain a binding pattern."), _0_is_referenced_directly_or_indirectly_in_its_own_type_annotation: diag(2502, 1, "_0_is_referenced_directly_or_indirectly_in_its_own_type_annotation_2502", "'{0}' is referenced directly or indirectly in its own type annotation."), Cannot_find_namespace_0: diag(2503, 1, "Cannot_find_namespace_0_2503", "Cannot find namespace '{0}'."), Type_0_must_have_a_Symbol_asyncIterator_method_that_returns_an_async_iterator: diag(2504, 1, "Type_0_must_have_a_Symbol_asyncIterator_method_that_returns_an_async_iterator_2504", "Type '{0}' must have a '[Symbol.asyncIterator]()' method that returns an async iterator."), A_generator_cannot_have_a_void_type_annotation: diag(2505, 1, "A_generator_cannot_have_a_void_type_annotation_2505", "A generator cannot have a 'void' type annotation."), _0_is_referenced_directly_or_indirectly_in_its_own_base_expression: diag(2506, 1, "_0_is_referenced_directly_or_indirectly_in_its_own_base_expression_2506", "'{0}' is referenced directly or indirectly in its own base expression."), Type_0_is_not_a_constructor_function_type: diag(2507, 1, "Type_0_is_not_a_constructor_function_type_2507", "Type '{0}' is not a constructor function type."), No_base_constructor_has_the_specified_number_of_type_arguments: diag(2508, 1, "No_base_constructor_has_the_specified_number_of_type_arguments_2508", "No base constructor has the specified number of type arguments."), Base_constructor_return_type_0_is_not_an_object_type_or_intersection_of_object_types_with_statically_known_members: diag(2509, 1, "Base_constructor_return_type_0_is_not_an_object_type_or_intersection_of_object_types_with_statically_2509", "Base constructor return type '{0}' is not an object type or intersection of object types with statically known members."), Base_constructors_must_all_have_the_same_return_type: diag(2510, 1, "Base_constructors_must_all_have_the_same_return_type_2510", "Base constructors must all have the same return type."), Cannot_create_an_instance_of_an_abstract_class: diag(2511, 1, "Cannot_create_an_instance_of_an_abstract_class_2511", "Cannot create an instance of an abstract class."), Overload_signatures_must_all_be_abstract_or_non_abstract: diag(2512, 1, "Overload_signatures_must_all_be_abstract_or_non_abstract_2512", "Overload signatures must all be abstract or non-abstract."), Abstract_method_0_in_class_1_cannot_be_accessed_via_super_expression: diag(2513, 1, "Abstract_method_0_in_class_1_cannot_be_accessed_via_super_expression_2513", "Abstract method '{0}' in class '{1}' cannot be accessed via super expression."), A_tuple_type_cannot_be_indexed_with_a_negative_value: diag(2514, 1, "A_tuple_type_cannot_be_indexed_with_a_negative_value_2514", "A tuple type cannot be indexed with a negative value."), Non_abstract_class_0_does_not_implement_inherited_abstract_member_1_from_class_2: diag(2515, 1, "Non_abstract_class_0_does_not_implement_inherited_abstract_member_1_from_class_2_2515", "Non-abstract class '{0}' does not implement inherited abstract member {1} from class '{2}'."), All_declarations_of_an_abstract_method_must_be_consecutive: diag(2516, 1, "All_declarations_of_an_abstract_method_must_be_consecutive_2516", "All declarations of an abstract method must be consecutive."), Cannot_assign_an_abstract_constructor_type_to_a_non_abstract_constructor_type: diag(2517, 1, "Cannot_assign_an_abstract_constructor_type_to_a_non_abstract_constructor_type_2517", "Cannot assign an abstract constructor type to a non-abstract constructor type."), A_this_based_type_guard_is_not_compatible_with_a_parameter_based_type_guard: diag(2518, 1, "A_this_based_type_guard_is_not_compatible_with_a_parameter_based_type_guard_2518", "A 'this'-based type guard is not compatible with a parameter-based type guard."), An_async_iterator_must_have_a_next_method: diag(2519, 1, "An_async_iterator_must_have_a_next_method_2519", "An async iterator must have a 'next()' method."), Duplicate_identifier_0_Compiler_uses_declaration_1_to_support_async_functions: diag(2520, 1, "Duplicate_identifier_0_Compiler_uses_declaration_1_to_support_async_functions_2520", "Duplicate identifier '{0}'. Compiler uses declaration '{1}' to support async functions."), The_arguments_object_cannot_be_referenced_in_an_async_function_or_method_in_ES5_Consider_using_a_standard_function_or_method: diag(2522, 1, "The_arguments_object_cannot_be_referenced_in_an_async_function_or_method_in_ES5_Consider_using_a_sta_2522", "The 'arguments' object cannot be referenced in an async function or method in ES5. Consider using a standard function or method."), yield_expressions_cannot_be_used_in_a_parameter_initializer: diag(2523, 1, "yield_expressions_cannot_be_used_in_a_parameter_initializer_2523", "'yield' expressions cannot be used in a parameter initializer."), await_expressions_cannot_be_used_in_a_parameter_initializer: diag(2524, 1, "await_expressions_cannot_be_used_in_a_parameter_initializer_2524", "'await' expressions cannot be used in a parameter initializer."), A_this_type_is_available_only_in_a_non_static_member_of_a_class_or_interface: diag(2526, 1, "A_this_type_is_available_only_in_a_non_static_member_of_a_class_or_interface_2526", "A 'this' type is available only in a non-static member of a class or interface."), The_inferred_type_of_0_references_an_inaccessible_1_type_A_type_annotation_is_necessary: diag(2527, 1, "The_inferred_type_of_0_references_an_inaccessible_1_type_A_type_annotation_is_necessary_2527", "The inferred type of '{0}' references an inaccessible '{1}' type. A type annotation is necessary."), A_module_cannot_have_multiple_default_exports: diag(2528, 1, "A_module_cannot_have_multiple_default_exports_2528", "A module cannot have multiple default exports."), Duplicate_identifier_0_Compiler_reserves_name_1_in_top_level_scope_of_a_module_containing_async_functions: diag(2529, 1, "Duplicate_identifier_0_Compiler_reserves_name_1_in_top_level_scope_of_a_module_containing_async_func_2529", "Duplicate identifier '{0}'. Compiler reserves name '{1}' in top level scope of a module containing async functions."), Property_0_is_incompatible_with_index_signature: diag(2530, 1, "Property_0_is_incompatible_with_index_signature_2530", "Property '{0}' is incompatible with index signature."), Object_is_possibly_null: diag(2531, 1, "Object_is_possibly_null_2531", "Object is possibly 'null'."), Object_is_possibly_undefined: diag(2532, 1, "Object_is_possibly_undefined_2532", "Object is possibly 'undefined'."), Object_is_possibly_null_or_undefined: diag(2533, 1, "Object_is_possibly_null_or_undefined_2533", "Object is possibly 'null' or 'undefined'."), A_function_returning_never_cannot_have_a_reachable_end_point: diag(2534, 1, "A_function_returning_never_cannot_have_a_reachable_end_point_2534", "A function returning 'never' cannot have a reachable end point."), Type_0_cannot_be_used_to_index_type_1: diag(2536, 1, "Type_0_cannot_be_used_to_index_type_1_2536", "Type '{0}' cannot be used to index type '{1}'."), Type_0_has_no_matching_index_signature_for_type_1: diag(2537, 1, "Type_0_has_no_matching_index_signature_for_type_1_2537", "Type '{0}' has no matching index signature for type '{1}'."), Type_0_cannot_be_used_as_an_index_type: diag(2538, 1, "Type_0_cannot_be_used_as_an_index_type_2538", "Type '{0}' cannot be used as an index type."), Cannot_assign_to_0_because_it_is_not_a_variable: diag(2539, 1, "Cannot_assign_to_0_because_it_is_not_a_variable_2539", "Cannot assign to '{0}' because it is not a variable."), Cannot_assign_to_0_because_it_is_a_read_only_property: diag(2540, 1, "Cannot_assign_to_0_because_it_is_a_read_only_property_2540", "Cannot assign to '{0}' because it is a read-only property."), Index_signature_in_type_0_only_permits_reading: diag(2542, 1, "Index_signature_in_type_0_only_permits_reading_2542", "Index signature in type '{0}' only permits reading."), Duplicate_identifier_newTarget_Compiler_uses_variable_declaration_newTarget_to_capture_new_target_meta_property_reference: diag(2543, 1, "Duplicate_identifier_newTarget_Compiler_uses_variable_declaration_newTarget_to_capture_new_target_me_2543", "Duplicate identifier '_newTarget'. Compiler uses variable declaration '_newTarget' to capture 'new.target' meta-property reference."), Expression_resolves_to_variable_declaration_newTarget_that_compiler_uses_to_capture_new_target_meta_property_reference: diag(2544, 1, "Expression_resolves_to_variable_declaration_newTarget_that_compiler_uses_to_capture_new_target_meta__2544", "Expression resolves to variable declaration '_newTarget' that compiler uses to capture 'new.target' meta-property reference."), A_mixin_class_must_have_a_constructor_with_a_single_rest_parameter_of_type_any: diag(2545, 1, "A_mixin_class_must_have_a_constructor_with_a_single_rest_parameter_of_type_any_2545", "A mixin class must have a constructor with a single rest parameter of type 'any[]'."), The_type_returned_by_the_0_method_of_an_async_iterator_must_be_a_promise_for_a_type_with_a_value_property: diag(2547, 1, "The_type_returned_by_the_0_method_of_an_async_iterator_must_be_a_promise_for_a_type_with_a_value_pro_2547", "The type returned by the '{0}()' method of an async iterator must be a promise for a type with a 'value' property."), Type_0_is_not_an_array_type_or_does_not_have_a_Symbol_iterator_method_that_returns_an_iterator: diag(2548, 1, "Type_0_is_not_an_array_type_or_does_not_have_a_Symbol_iterator_method_that_returns_an_iterator_2548", "Type '{0}' is not an array type or does not have a '[Symbol.iterator]()' method that returns an iterator."), Type_0_is_not_an_array_type_or_a_string_type_or_does_not_have_a_Symbol_iterator_method_that_returns_an_iterator: diag(2549, 1, "Type_0_is_not_an_array_type_or_a_string_type_or_does_not_have_a_Symbol_iterator_method_that_returns__2549", "Type '{0}' is not an array type or a string type or does not have a '[Symbol.iterator]()' method that returns an iterator."), Property_0_does_not_exist_on_type_1_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_2_or_later: diag(2550, 1, "Property_0_does_not_exist_on_type_1_Do_you_need_to_change_your_target_library_Try_changing_the_lib_c_2550", "Property '{0}' does not exist on type '{1}'. Do you need to change your target library? Try changing the 'lib' compiler option to '{2}' or later."), Property_0_does_not_exist_on_type_1_Did_you_mean_2: diag(2551, 1, "Property_0_does_not_exist_on_type_1_Did_you_mean_2_2551", "Property '{0}' does not exist on type '{1}'. Did you mean '{2}'?"), Cannot_find_name_0_Did_you_mean_1: diag(2552, 1, "Cannot_find_name_0_Did_you_mean_1_2552", "Cannot find name '{0}'. Did you mean '{1}'?"), Computed_values_are_not_permitted_in_an_enum_with_string_valued_members: diag(2553, 1, "Computed_values_are_not_permitted_in_an_enum_with_string_valued_members_2553", "Computed values are not permitted in an enum with string valued members."), Expected_0_arguments_but_got_1: diag(2554, 1, "Expected_0_arguments_but_got_1_2554", "Expected {0} arguments, but got {1}."), Expected_at_least_0_arguments_but_got_1: diag(2555, 1, "Expected_at_least_0_arguments_but_got_1_2555", "Expected at least {0} arguments, but got {1}."), A_spread_argument_must_either_have_a_tuple_type_or_be_passed_to_a_rest_parameter: diag(2556, 1, "A_spread_argument_must_either_have_a_tuple_type_or_be_passed_to_a_rest_parameter_2556", "A spread argument must either have a tuple type or be passed to a rest parameter."), Expected_0_type_arguments_but_got_1: diag(2558, 1, "Expected_0_type_arguments_but_got_1_2558", "Expected {0} type arguments, but got {1}."), Type_0_has_no_properties_in_common_with_type_1: diag(2559, 1, "Type_0_has_no_properties_in_common_with_type_1_2559", "Type '{0}' has no properties in common with type '{1}'."), Value_of_type_0_has_no_properties_in_common_with_type_1_Did_you_mean_to_call_it: diag(2560, 1, "Value_of_type_0_has_no_properties_in_common_with_type_1_Did_you_mean_to_call_it_2560", "Value of type '{0}' has no properties in common with type '{1}'. Did you mean to call it?"), Object_literal_may_only_specify_known_properties_but_0_does_not_exist_in_type_1_Did_you_mean_to_write_2: diag(2561, 1, "Object_literal_may_only_specify_known_properties_but_0_does_not_exist_in_type_1_Did_you_mean_to_writ_2561", "Object literal may only specify known properties, but '{0}' does not exist in type '{1}'. Did you mean to write '{2}'?"), Base_class_expressions_cannot_reference_class_type_parameters: diag(2562, 1, "Base_class_expressions_cannot_reference_class_type_parameters_2562", "Base class expressions cannot reference class type parameters."), The_containing_function_or_module_body_is_too_large_for_control_flow_analysis: diag(2563, 1, "The_containing_function_or_module_body_is_too_large_for_control_flow_analysis_2563", "The containing function or module body is too large for control flow analysis."), Property_0_has_no_initializer_and_is_not_definitely_assigned_in_the_constructor: diag(2564, 1, "Property_0_has_no_initializer_and_is_not_definitely_assigned_in_the_constructor_2564", "Property '{0}' has no initializer and is not definitely assigned in the constructor."), Property_0_is_used_before_being_assigned: diag(2565, 1, "Property_0_is_used_before_being_assigned_2565", "Property '{0}' is used before being assigned."), A_rest_element_cannot_have_a_property_name: diag(2566, 1, "A_rest_element_cannot_have_a_property_name_2566", "A rest element cannot have a property name."), Enum_declarations_can_only_merge_with_namespace_or_other_enum_declarations: diag(2567, 1, "Enum_declarations_can_only_merge_with_namespace_or_other_enum_declarations_2567", "Enum declarations can only merge with namespace or other enum declarations."), Property_0_may_not_exist_on_type_1_Did_you_mean_2: diag(2568, 1, "Property_0_may_not_exist_on_type_1_Did_you_mean_2_2568", "Property '{0}' may not exist on type '{1}'. Did you mean '{2}'?"), Could_not_find_name_0_Did_you_mean_1: diag(2570, 1, "Could_not_find_name_0_Did_you_mean_1_2570", "Could not find name '{0}'. Did you mean '{1}'?"), Object_is_of_type_unknown: diag(2571, 1, "Object_is_of_type_unknown_2571", "Object is of type 'unknown'."), A_rest_element_type_must_be_an_array_type: diag(2574, 1, "A_rest_element_type_must_be_an_array_type_2574", "A rest element type must be an array type."), No_overload_expects_0_arguments_but_overloads_do_exist_that_expect_either_1_or_2_arguments: diag(2575, 1, "No_overload_expects_0_arguments_but_overloads_do_exist_that_expect_either_1_or_2_arguments_2575", "No overload expects {0} arguments, but overloads do exist that expect either {1} or {2} arguments."), Property_0_does_not_exist_on_type_1_Did_you_mean_to_access_the_static_member_2_instead: diag(2576, 1, "Property_0_does_not_exist_on_type_1_Did_you_mean_to_access_the_static_member_2_instead_2576", "Property '{0}' does not exist on type '{1}'. Did you mean to access the static member '{2}' instead?"), Return_type_annotation_circularly_references_itself: diag(2577, 1, "Return_type_annotation_circularly_references_itself_2577", "Return type annotation circularly references itself."), Unused_ts_expect_error_directive: diag(2578, 1, "Unused_ts_expect_error_directive_2578", "Unused '@ts-expect-error' directive."), Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashnode: diag(2580, 1, "Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashno_2580", "Cannot find name '{0}'. Do you need to install type definitions for node? Try `npm i --save-dev @types/node`."), Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_jQuery_Try_npm_i_save_dev_types_Slashjquery: diag(2581, 1, "Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_jQuery_Try_npm_i_save_dev_types_Slash_2581", "Cannot find name '{0}'. Do you need to install type definitions for jQuery? Try `npm i --save-dev @types/jquery`."), Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_a_test_runner_Try_npm_i_save_dev_types_Slashjest_or_npm_i_save_dev_types_Slashmocha: diag(2582, 1, "Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_a_test_runner_Try_npm_i_save_dev_type_2582", "Cannot find name '{0}'. Do you need to install type definitions for a test runner? Try `npm i --save-dev @types/jest` or `npm i --save-dev @types/mocha`."), Cannot_find_name_0_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_1_or_later: diag(2583, 1, "Cannot_find_name_0_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_2583", "Cannot find name '{0}'. Do you need to change your target library? Try changing the 'lib' compiler option to '{1}' or later."), Cannot_find_name_0_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_include_dom: diag(2584, 1, "Cannot_find_name_0_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_2584", "Cannot find name '{0}'. Do you need to change your target library? Try changing the 'lib' compiler option to include 'dom'."), _0_only_refers_to_a_type_but_is_being_used_as_a_value_here_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_es2015_or_later: diag(2585, 1, "_0_only_refers_to_a_type_but_is_being_used_as_a_value_here_Do_you_need_to_change_your_target_library_2585", "'{0}' only refers to a type, but is being used as a value here. Do you need to change your target library? Try changing the 'lib' compiler option to es2015 or later."), Cannot_assign_to_0_because_it_is_a_constant: diag(2588, 1, "Cannot_assign_to_0_because_it_is_a_constant_2588", "Cannot assign to '{0}' because it is a constant."), Type_instantiation_is_excessively_deep_and_possibly_infinite: diag(2589, 1, "Type_instantiation_is_excessively_deep_and_possibly_infinite_2589", "Type instantiation is excessively deep and possibly infinite."), Expression_produces_a_union_type_that_is_too_complex_to_represent: diag(2590, 1, "Expression_produces_a_union_type_that_is_too_complex_to_represent_2590", "Expression produces a union type that is too complex to represent."), Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashnode_and_then_add_node_to_the_types_field_in_your_tsconfig: diag(2591, 1, "Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashno_2591", "Cannot find name '{0}'. Do you need to install type definitions for node? Try `npm i --save-dev @types/node` and then add 'node' to the types field in your tsconfig."), Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_jQuery_Try_npm_i_save_dev_types_Slashjquery_and_then_add_jquery_to_the_types_field_in_your_tsconfig: diag(2592, 1, "Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_jQuery_Try_npm_i_save_dev_types_Slash_2592", "Cannot find name '{0}'. Do you need to install type definitions for jQuery? Try `npm i --save-dev @types/jquery` and then add 'jquery' to the types field in your tsconfig."), Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_a_test_runner_Try_npm_i_save_dev_types_Slashjest_or_npm_i_save_dev_types_Slashmocha_and_then_add_jest_or_mocha_to_the_types_field_in_your_tsconfig: diag(2593, 1, "Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_a_test_runner_Try_npm_i_save_dev_type_2593", "Cannot find name '{0}'. Do you need to install type definitions for a test runner? Try `npm i --save-dev @types/jest` or `npm i --save-dev @types/mocha` and then add 'jest' or 'mocha' to the types field in your tsconfig."), This_module_is_declared_with_export_and_can_only_be_used_with_a_default_import_when_using_the_0_flag: diag(2594, 1, "This_module_is_declared_with_export_and_can_only_be_used_with_a_default_import_when_using_the_0_flag_2594", "This module is declared with 'export =', and can only be used with a default import when using the '{0}' flag."), _0_can_only_be_imported_by_using_a_default_import: diag(2595, 1, "_0_can_only_be_imported_by_using_a_default_import_2595", "'{0}' can only be imported by using a default import."), _0_can_only_be_imported_by_turning_on_the_esModuleInterop_flag_and_using_a_default_import: diag(2596, 1, "_0_can_only_be_imported_by_turning_on_the_esModuleInterop_flag_and_using_a_default_import_2596", "'{0}' can only be imported by turning on the 'esModuleInterop' flag and using a default import."), _0_can_only_be_imported_by_using_a_require_call_or_by_using_a_default_import: diag(2597, 1, "_0_can_only_be_imported_by_using_a_require_call_or_by_using_a_default_import_2597", "'{0}' can only be imported by using a 'require' call or by using a default import."), _0_can_only_be_imported_by_using_a_require_call_or_by_turning_on_the_esModuleInterop_flag_and_using_a_default_import: diag(2598, 1, "_0_can_only_be_imported_by_using_a_require_call_or_by_turning_on_the_esModuleInterop_flag_and_using__2598", "'{0}' can only be imported by using a 'require' call or by turning on the 'esModuleInterop' flag and using a default import."), JSX_element_implicitly_has_type_any_because_the_global_type_JSX_Element_does_not_exist: diag(2602, 1, "JSX_element_implicitly_has_type_any_because_the_global_type_JSX_Element_does_not_exist_2602", "JSX element implicitly has type 'any' because the global type 'JSX.Element' does not exist."), Property_0_in_type_1_is_not_assignable_to_type_2: diag(2603, 1, "Property_0_in_type_1_is_not_assignable_to_type_2_2603", "Property '{0}' in type '{1}' is not assignable to type '{2}'."), JSX_element_type_0_does_not_have_any_construct_or_call_signatures: diag(2604, 1, "JSX_element_type_0_does_not_have_any_construct_or_call_signatures_2604", "JSX element type '{0}' does not have any construct or call signatures."), Property_0_of_JSX_spread_attribute_is_not_assignable_to_target_property: diag(2606, 1, "Property_0_of_JSX_spread_attribute_is_not_assignable_to_target_property_2606", "Property '{0}' of JSX spread attribute is not assignable to target property."), JSX_element_class_does_not_support_attributes_because_it_does_not_have_a_0_property: diag(2607, 1, "JSX_element_class_does_not_support_attributes_because_it_does_not_have_a_0_property_2607", "JSX element class does not support attributes because it does not have a '{0}' property."), The_global_type_JSX_0_may_not_have_more_than_one_property: diag(2608, 1, "The_global_type_JSX_0_may_not_have_more_than_one_property_2608", "The global type 'JSX.{0}' may not have more than one property."), JSX_spread_child_must_be_an_array_type: diag(2609, 1, "JSX_spread_child_must_be_an_array_type_2609", "JSX spread child must be an array type."), _0_is_defined_as_an_accessor_in_class_1_but_is_overridden_here_in_2_as_an_instance_property: diag(2610, 1, "_0_is_defined_as_an_accessor_in_class_1_but_is_overridden_here_in_2_as_an_instance_property_2610", "'{0}' is defined as an accessor in class '{1}', but is overridden here in '{2}' as an instance property."), _0_is_defined_as_a_property_in_class_1_but_is_overridden_here_in_2_as_an_accessor: diag(2611, 1, "_0_is_defined_as_a_property_in_class_1_but_is_overridden_here_in_2_as_an_accessor_2611", "'{0}' is defined as a property in class '{1}', but is overridden here in '{2}' as an accessor."), Property_0_will_overwrite_the_base_property_in_1_If_this_is_intentional_add_an_initializer_Otherwise_add_a_declare_modifier_or_remove_the_redundant_declaration: diag(2612, 1, "Property_0_will_overwrite_the_base_property_in_1_If_this_is_intentional_add_an_initializer_Otherwise_2612", "Property '{0}' will overwrite the base property in '{1}'. If this is intentional, add an initializer. Otherwise, add a 'declare' modifier or remove the redundant declaration."), Module_0_has_no_default_export_Did_you_mean_to_use_import_1_from_0_instead: diag(2613, 1, "Module_0_has_no_default_export_Did_you_mean_to_use_import_1_from_0_instead_2613", "Module '{0}' has no default export. Did you mean to use 'import { {1} } from {0}' instead?"), Module_0_has_no_exported_member_1_Did_you_mean_to_use_import_1_from_0_instead: diag(2614, 1, "Module_0_has_no_exported_member_1_Did_you_mean_to_use_import_1_from_0_instead_2614", "Module '{0}' has no exported member '{1}'. Did you mean to use 'import {1} from {0}' instead?"), Type_of_property_0_circularly_references_itself_in_mapped_type_1: diag(2615, 1, "Type_of_property_0_circularly_references_itself_in_mapped_type_1_2615", "Type of property '{0}' circularly references itself in mapped type '{1}'."), _0_can_only_be_imported_by_using_import_1_require_2_or_a_default_import: diag(2616, 1, "_0_can_only_be_imported_by_using_import_1_require_2_or_a_default_import_2616", "'{0}' can only be imported by using 'import {1} = require({2})' or a default import."), _0_can_only_be_imported_by_using_import_1_require_2_or_by_turning_on_the_esModuleInterop_flag_and_using_a_default_import: diag(2617, 1, "_0_can_only_be_imported_by_using_import_1_require_2_or_by_turning_on_the_esModuleInterop_flag_and_us_2617", "'{0}' can only be imported by using 'import {1} = require({2})' or by turning on the 'esModuleInterop' flag and using a default import."), Source_has_0_element_s_but_target_requires_1: diag(2618, 1, "Source_has_0_element_s_but_target_requires_1_2618", "Source has {0} element(s) but target requires {1}."), Source_has_0_element_s_but_target_allows_only_1: diag(2619, 1, "Source_has_0_element_s_but_target_allows_only_1_2619", "Source has {0} element(s) but target allows only {1}."), Target_requires_0_element_s_but_source_may_have_fewer: diag(2620, 1, "Target_requires_0_element_s_but_source_may_have_fewer_2620", "Target requires {0} element(s) but source may have fewer."), Target_allows_only_0_element_s_but_source_may_have_more: diag(2621, 1, "Target_allows_only_0_element_s_but_source_may_have_more_2621", "Target allows only {0} element(s) but source may have more."), Source_provides_no_match_for_required_element_at_position_0_in_target: diag(2623, 1, "Source_provides_no_match_for_required_element_at_position_0_in_target_2623", "Source provides no match for required element at position {0} in target."), Source_provides_no_match_for_variadic_element_at_position_0_in_target: diag(2624, 1, "Source_provides_no_match_for_variadic_element_at_position_0_in_target_2624", "Source provides no match for variadic element at position {0} in target."), Variadic_element_at_position_0_in_source_does_not_match_element_at_position_1_in_target: diag(2625, 1, "Variadic_element_at_position_0_in_source_does_not_match_element_at_position_1_in_target_2625", "Variadic element at position {0} in source does not match element at position {1} in target."), Type_at_position_0_in_source_is_not_compatible_with_type_at_position_1_in_target: diag(2626, 1, "Type_at_position_0_in_source_is_not_compatible_with_type_at_position_1_in_target_2626", "Type at position {0} in source is not compatible with type at position {1} in target."), Type_at_positions_0_through_1_in_source_is_not_compatible_with_type_at_position_2_in_target: diag(2627, 1, "Type_at_positions_0_through_1_in_source_is_not_compatible_with_type_at_position_2_in_target_2627", "Type at positions {0} through {1} in source is not compatible with type at position {2} in target."), Cannot_assign_to_0_because_it_is_an_enum: diag(2628, 1, "Cannot_assign_to_0_because_it_is_an_enum_2628", "Cannot assign to '{0}' because it is an enum."), Cannot_assign_to_0_because_it_is_a_class: diag(2629, 1, "Cannot_assign_to_0_because_it_is_a_class_2629", "Cannot assign to '{0}' because it is a class."), Cannot_assign_to_0_because_it_is_a_function: diag(2630, 1, "Cannot_assign_to_0_because_it_is_a_function_2630", "Cannot assign to '{0}' because it is a function."), Cannot_assign_to_0_because_it_is_a_namespace: diag(2631, 1, "Cannot_assign_to_0_because_it_is_a_namespace_2631", "Cannot assign to '{0}' because it is a namespace."), Cannot_assign_to_0_because_it_is_an_import: diag(2632, 1, "Cannot_assign_to_0_because_it_is_an_import_2632", "Cannot assign to '{0}' because it is an import."), JSX_property_access_expressions_cannot_include_JSX_namespace_names: diag(2633, 1, "JSX_property_access_expressions_cannot_include_JSX_namespace_names_2633", "JSX property access expressions cannot include JSX namespace names"), _0_index_signatures_are_incompatible: diag(2634, 1, "_0_index_signatures_are_incompatible_2634", "'{0}' index signatures are incompatible."), Type_0_has_no_signatures_for_which_the_type_argument_list_is_applicable: diag(2635, 1, "Type_0_has_no_signatures_for_which_the_type_argument_list_is_applicable_2635", "Type '{0}' has no signatures for which the type argument list is applicable."), Type_0_is_not_assignable_to_type_1_as_implied_by_variance_annotation: diag(2636, 1, "Type_0_is_not_assignable_to_type_1_as_implied_by_variance_annotation_2636", "Type '{0}' is not assignable to type '{1}' as implied by variance annotation."), Variance_annotations_are_only_supported_in_type_aliases_for_object_function_constructor_and_mapped_types: diag(2637, 1, "Variance_annotations_are_only_supported_in_type_aliases_for_object_function_constructor_and_mapped_t_2637", "Variance annotations are only supported in type aliases for object, function, constructor, and mapped types."), Type_0_may_represent_a_primitive_value_which_is_not_permitted_as_the_right_operand_of_the_in_operator: diag(2638, 1, "Type_0_may_represent_a_primitive_value_which_is_not_permitted_as_the_right_operand_of_the_in_operato_2638", "Type '{0}' may represent a primitive value, which is not permitted as the right operand of the 'in' operator."), React_components_cannot_include_JSX_namespace_names: diag(2639, 1, "React_components_cannot_include_JSX_namespace_names_2639", "React components cannot include JSX namespace names"), Cannot_augment_module_0_with_value_exports_because_it_resolves_to_a_non_module_entity: diag(2649, 1, "Cannot_augment_module_0_with_value_exports_because_it_resolves_to_a_non_module_entity_2649", "Cannot augment module '{0}' with value exports because it resolves to a non-module entity."), Non_abstract_class_expression_is_missing_implementations_for_the_following_members_of_0_Colon_1_and_2_more: diag(2650, 1, "Non_abstract_class_expression_is_missing_implementations_for_the_following_members_of_0_Colon_1_and__2650", "Non-abstract class expression is missing implementations for the following members of '{0}': {1} and {2} more."), A_member_initializer_in_a_enum_declaration_cannot_reference_members_declared_after_it_including_members_defined_in_other_enums: diag(2651, 1, "A_member_initializer_in_a_enum_declaration_cannot_reference_members_declared_after_it_including_memb_2651", "A member initializer in a enum declaration cannot reference members declared after it, including members defined in other enums."), Merged_declaration_0_cannot_include_a_default_export_declaration_Consider_adding_a_separate_export_default_0_declaration_instead: diag(2652, 1, "Merged_declaration_0_cannot_include_a_default_export_declaration_Consider_adding_a_separate_export_d_2652", "Merged declaration '{0}' cannot include a default export declaration. Consider adding a separate 'export default {0}' declaration instead."), Non_abstract_class_expression_does_not_implement_inherited_abstract_member_0_from_class_1: diag(2653, 1, "Non_abstract_class_expression_does_not_implement_inherited_abstract_member_0_from_class_1_2653", "Non-abstract class expression does not implement inherited abstract member '{0}' from class '{1}'."), Non_abstract_class_0_is_missing_implementations_for_the_following_members_of_1_Colon_2: diag(2654, 1, "Non_abstract_class_0_is_missing_implementations_for_the_following_members_of_1_Colon_2_2654", "Non-abstract class '{0}' is missing implementations for the following members of '{1}': {2}."), Non_abstract_class_0_is_missing_implementations_for_the_following_members_of_1_Colon_2_and_3_more: diag(2655, 1, "Non_abstract_class_0_is_missing_implementations_for_the_following_members_of_1_Colon_2_and_3_more_2655", "Non-abstract class '{0}' is missing implementations for the following members of '{1}': {2} and {3} more."), Non_abstract_class_expression_is_missing_implementations_for_the_following_members_of_0_Colon_1: diag(2656, 1, "Non_abstract_class_expression_is_missing_implementations_for_the_following_members_of_0_Colon_1_2656", "Non-abstract class expression is missing implementations for the following members of '{0}': {1}."), JSX_expressions_must_have_one_parent_element: diag(2657, 1, "JSX_expressions_must_have_one_parent_element_2657", "JSX expressions must have one parent element."), Type_0_provides_no_match_for_the_signature_1: diag(2658, 1, "Type_0_provides_no_match_for_the_signature_1_2658", "Type '{0}' provides no match for the signature '{1}'."), super_is_only_allowed_in_members_of_object_literal_expressions_when_option_target_is_ES2015_or_higher: diag(2659, 1, "super_is_only_allowed_in_members_of_object_literal_expressions_when_option_target_is_ES2015_or_highe_2659", "'super' is only allowed in members of object literal expressions when option 'target' is 'ES2015' or higher."), super_can_only_be_referenced_in_members_of_derived_classes_or_object_literal_expressions: diag(2660, 1, "super_can_only_be_referenced_in_members_of_derived_classes_or_object_literal_expressions_2660", "'super' can only be referenced in members of derived classes or object literal expressions."), Cannot_export_0_Only_local_declarations_can_be_exported_from_a_module: diag(2661, 1, "Cannot_export_0_Only_local_declarations_can_be_exported_from_a_module_2661", "Cannot export '{0}'. Only local declarations can be exported from a module."), Cannot_find_name_0_Did_you_mean_the_static_member_1_0: diag(2662, 1, "Cannot_find_name_0_Did_you_mean_the_static_member_1_0_2662", "Cannot find name '{0}'. Did you mean the static member '{1}.{0}'?"), Cannot_find_name_0_Did_you_mean_the_instance_member_this_0: diag(2663, 1, "Cannot_find_name_0_Did_you_mean_the_instance_member_this_0_2663", "Cannot find name '{0}'. Did you mean the instance member 'this.{0}'?"), Invalid_module_name_in_augmentation_module_0_cannot_be_found: diag(2664, 1, "Invalid_module_name_in_augmentation_module_0_cannot_be_found_2664", "Invalid module name in augmentation, module '{0}' cannot be found."), Invalid_module_name_in_augmentation_Module_0_resolves_to_an_untyped_module_at_1_which_cannot_be_augmented: diag(2665, 1, "Invalid_module_name_in_augmentation_Module_0_resolves_to_an_untyped_module_at_1_which_cannot_be_augm_2665", "Invalid module name in augmentation. Module '{0}' resolves to an untyped module at '{1}', which cannot be augmented."), Exports_and_export_assignments_are_not_permitted_in_module_augmentations: diag(2666, 1, "Exports_and_export_assignments_are_not_permitted_in_module_augmentations_2666", "Exports and export assignments are not permitted in module augmentations."), Imports_are_not_permitted_in_module_augmentations_Consider_moving_them_to_the_enclosing_external_module: diag(2667, 1, "Imports_are_not_permitted_in_module_augmentations_Consider_moving_them_to_the_enclosing_external_mod_2667", "Imports are not permitted in module augmentations. Consider moving them to the enclosing external module."), export_modifier_cannot_be_applied_to_ambient_modules_and_module_augmentations_since_they_are_always_visible: diag(2668, 1, "export_modifier_cannot_be_applied_to_ambient_modules_and_module_augmentations_since_they_are_always__2668", "'export' modifier cannot be applied to ambient modules and module augmentations since they are always visible."), Augmentations_for_the_global_scope_can_only_be_directly_nested_in_external_modules_or_ambient_module_declarations: diag(2669, 1, "Augmentations_for_the_global_scope_can_only_be_directly_nested_in_external_modules_or_ambient_module_2669", "Augmentations for the global scope can only be directly nested in external modules or ambient module declarations."), Augmentations_for_the_global_scope_should_have_declare_modifier_unless_they_appear_in_already_ambient_context: diag(2670, 1, "Augmentations_for_the_global_scope_should_have_declare_modifier_unless_they_appear_in_already_ambien_2670", "Augmentations for the global scope should have 'declare' modifier unless they appear in already ambient context."), Cannot_augment_module_0_because_it_resolves_to_a_non_module_entity: diag(2671, 1, "Cannot_augment_module_0_because_it_resolves_to_a_non_module_entity_2671", "Cannot augment module '{0}' because it resolves to a non-module entity."), Cannot_assign_a_0_constructor_type_to_a_1_constructor_type: diag(2672, 1, "Cannot_assign_a_0_constructor_type_to_a_1_constructor_type_2672", "Cannot assign a '{0}' constructor type to a '{1}' constructor type."), Constructor_of_class_0_is_private_and_only_accessible_within_the_class_declaration: diag(2673, 1, "Constructor_of_class_0_is_private_and_only_accessible_within_the_class_declaration_2673", "Constructor of class '{0}' is private and only accessible within the class declaration."), Constructor_of_class_0_is_protected_and_only_accessible_within_the_class_declaration: diag(2674, 1, "Constructor_of_class_0_is_protected_and_only_accessible_within_the_class_declaration_2674", "Constructor of class '{0}' is protected and only accessible within the class declaration."), Cannot_extend_a_class_0_Class_constructor_is_marked_as_private: diag(2675, 1, "Cannot_extend_a_class_0_Class_constructor_is_marked_as_private_2675", "Cannot extend a class '{0}'. Class constructor is marked as private."), Accessors_must_both_be_abstract_or_non_abstract: diag(2676, 1, "Accessors_must_both_be_abstract_or_non_abstract_2676", "Accessors must both be abstract or non-abstract."), A_type_predicate_s_type_must_be_assignable_to_its_parameter_s_type: diag(2677, 1, "A_type_predicate_s_type_must_be_assignable_to_its_parameter_s_type_2677", "A type predicate's type must be assignable to its parameter's type."), Type_0_is_not_comparable_to_type_1: diag(2678, 1, "Type_0_is_not_comparable_to_type_1_2678", "Type '{0}' is not comparable to type '{1}'."), A_function_that_is_called_with_the_new_keyword_cannot_have_a_this_type_that_is_void: diag(2679, 1, "A_function_that_is_called_with_the_new_keyword_cannot_have_a_this_type_that_is_void_2679", "A function that is called with the 'new' keyword cannot have a 'this' type that is 'void'."), A_0_parameter_must_be_the_first_parameter: diag(2680, 1, "A_0_parameter_must_be_the_first_parameter_2680", "A '{0}' parameter must be the first parameter."), A_constructor_cannot_have_a_this_parameter: diag(2681, 1, "A_constructor_cannot_have_a_this_parameter_2681", "A constructor cannot have a 'this' parameter."), this_implicitly_has_type_any_because_it_does_not_have_a_type_annotation: diag(2683, 1, "this_implicitly_has_type_any_because_it_does_not_have_a_type_annotation_2683", "'this' implicitly has type 'any' because it does not have a type annotation."), The_this_context_of_type_0_is_not_assignable_to_method_s_this_of_type_1: diag(2684, 1, "The_this_context_of_type_0_is_not_assignable_to_method_s_this_of_type_1_2684", "The 'this' context of type '{0}' is not assignable to method's 'this' of type '{1}'."), The_this_types_of_each_signature_are_incompatible: diag(2685, 1, "The_this_types_of_each_signature_are_incompatible_2685", "The 'this' types of each signature are incompatible."), _0_refers_to_a_UMD_global_but_the_current_file_is_a_module_Consider_adding_an_import_instead: diag(2686, 1, "_0_refers_to_a_UMD_global_but_the_current_file_is_a_module_Consider_adding_an_import_instead_2686", "'{0}' refers to a UMD global, but the current file is a module. Consider adding an import instead."), All_declarations_of_0_must_have_identical_modifiers: diag(2687, 1, "All_declarations_of_0_must_have_identical_modifiers_2687", "All declarations of '{0}' must have identical modifiers."), Cannot_find_type_definition_file_for_0: diag(2688, 1, "Cannot_find_type_definition_file_for_0_2688", "Cannot find type definition file for '{0}'."), Cannot_extend_an_interface_0_Did_you_mean_implements: diag(2689, 1, "Cannot_extend_an_interface_0_Did_you_mean_implements_2689", "Cannot extend an interface '{0}'. Did you mean 'implements'?"), _0_only_refers_to_a_type_but_is_being_used_as_a_value_here_Did_you_mean_to_use_1_in_0: diag(2690, 1, "_0_only_refers_to_a_type_but_is_being_used_as_a_value_here_Did_you_mean_to_use_1_in_0_2690", "'{0}' only refers to a type, but is being used as a value here. Did you mean to use '{1} in {0}'?"), _0_is_a_primitive_but_1_is_a_wrapper_object_Prefer_using_0_when_possible: diag(2692, 1, "_0_is_a_primitive_but_1_is_a_wrapper_object_Prefer_using_0_when_possible_2692", "'{0}' is a primitive, but '{1}' is a wrapper object. Prefer using '{0}' when possible."), _0_only_refers_to_a_type_but_is_being_used_as_a_value_here: diag(2693, 1, "_0_only_refers_to_a_type_but_is_being_used_as_a_value_here_2693", "'{0}' only refers to a type, but is being used as a value here."), Namespace_0_has_no_exported_member_1: diag(2694, 1, "Namespace_0_has_no_exported_member_1_2694", "Namespace '{0}' has no exported member '{1}'."), Left_side_of_comma_operator_is_unused_and_has_no_side_effects: diag(2695, 1, "Left_side_of_comma_operator_is_unused_and_has_no_side_effects_2695", "Left side of comma operator is unused and has no side effects.", true), The_Object_type_is_assignable_to_very_few_other_types_Did_you_mean_to_use_the_any_type_instead: diag(2696, 1, "The_Object_type_is_assignable_to_very_few_other_types_Did_you_mean_to_use_the_any_type_instead_2696", "The 'Object' type is assignable to very few other types. Did you mean to use the 'any' type instead?"), An_async_function_or_method_must_return_a_Promise_Make_sure_you_have_a_declaration_for_Promise_or_include_ES2015_in_your_lib_option: diag(2697, 1, "An_async_function_or_method_must_return_a_Promise_Make_sure_you_have_a_declaration_for_Promise_or_in_2697", "An async function or method must return a 'Promise'. Make sure you have a declaration for 'Promise' or include 'ES2015' in your '--lib' option."), Spread_types_may_only_be_created_from_object_types: diag(2698, 1, "Spread_types_may_only_be_created_from_object_types_2698", "Spread types may only be created from object types."), Static_property_0_conflicts_with_built_in_property_Function_0_of_constructor_function_1: diag(2699, 1, "Static_property_0_conflicts_with_built_in_property_Function_0_of_constructor_function_1_2699", "Static property '{0}' conflicts with built-in property 'Function.{0}' of constructor function '{1}'."), Rest_types_may_only_be_created_from_object_types: diag(2700, 1, "Rest_types_may_only_be_created_from_object_types_2700", "Rest types may only be created from object types."), The_target_of_an_object_rest_assignment_must_be_a_variable_or_a_property_access: diag(2701, 1, "The_target_of_an_object_rest_assignment_must_be_a_variable_or_a_property_access_2701", "The target of an object rest assignment must be a variable or a property access."), _0_only_refers_to_a_type_but_is_being_used_as_a_namespace_here: diag(2702, 1, "_0_only_refers_to_a_type_but_is_being_used_as_a_namespace_here_2702", "'{0}' only refers to a type, but is being used as a namespace here."), The_operand_of_a_delete_operator_must_be_a_property_reference: diag(2703, 1, "The_operand_of_a_delete_operator_must_be_a_property_reference_2703", "The operand of a 'delete' operator must be a property reference."), The_operand_of_a_delete_operator_cannot_be_a_read_only_property: diag(2704, 1, "The_operand_of_a_delete_operator_cannot_be_a_read_only_property_2704", "The operand of a 'delete' operator cannot be a read-only property."), An_async_function_or_method_in_ES5_requires_the_Promise_constructor_Make_sure_you_have_a_declaration_for_the_Promise_constructor_or_include_ES2015_in_your_lib_option: diag(2705, 1, "An_async_function_or_method_in_ES5_requires_the_Promise_constructor_Make_sure_you_have_a_declaration_2705", "An async function or method in ES5 requires the 'Promise' constructor. Make sure you have a declaration for the 'Promise' constructor or include 'ES2015' in your '--lib' option."), Required_type_parameters_may_not_follow_optional_type_parameters: diag(2706, 1, "Required_type_parameters_may_not_follow_optional_type_parameters_2706", "Required type parameters may not follow optional type parameters."), Generic_type_0_requires_between_1_and_2_type_arguments: diag(2707, 1, "Generic_type_0_requires_between_1_and_2_type_arguments_2707", "Generic type '{0}' requires between {1} and {2} type arguments."), Cannot_use_namespace_0_as_a_value: diag(2708, 1, "Cannot_use_namespace_0_as_a_value_2708", "Cannot use namespace '{0}' as a value."), Cannot_use_namespace_0_as_a_type: diag(2709, 1, "Cannot_use_namespace_0_as_a_type_2709", "Cannot use namespace '{0}' as a type."), _0_are_specified_twice_The_attribute_named_0_will_be_overwritten: diag(2710, 1, "_0_are_specified_twice_The_attribute_named_0_will_be_overwritten_2710", "'{0}' are specified twice. The attribute named '{0}' will be overwritten."), A_dynamic_import_call_returns_a_Promise_Make_sure_you_have_a_declaration_for_Promise_or_include_ES2015_in_your_lib_option: diag(2711, 1, "A_dynamic_import_call_returns_a_Promise_Make_sure_you_have_a_declaration_for_Promise_or_include_ES20_2711", "A dynamic import call returns a 'Promise'. Make sure you have a declaration for 'Promise' or include 'ES2015' in your '--lib' option."), A_dynamic_import_call_in_ES5_requires_the_Promise_constructor_Make_sure_you_have_a_declaration_for_the_Promise_constructor_or_include_ES2015_in_your_lib_option: diag(2712, 1, "A_dynamic_import_call_in_ES5_requires_the_Promise_constructor_Make_sure_you_have_a_declaration_for_t_2712", "A dynamic import call in ES5 requires the 'Promise' constructor. Make sure you have a declaration for the 'Promise' constructor or include 'ES2015' in your '--lib' option."), Cannot_access_0_1_because_0_is_a_type_but_not_a_namespace_Did_you_mean_to_retrieve_the_type_of_the_property_1_in_0_with_0_1: diag(2713, 1, "Cannot_access_0_1_because_0_is_a_type_but_not_a_namespace_Did_you_mean_to_retrieve_the_type_of_the_p_2713", `Cannot access '{0}.{1}' because '{0}' is a type, but not a namespace. Did you mean to retrieve the type of the property '{1}' in '{0}' with '{0}["{1}"]'?`), The_expression_of_an_export_assignment_must_be_an_identifier_or_qualified_name_in_an_ambient_context: diag(2714, 1, "The_expression_of_an_export_assignment_must_be_an_identifier_or_qualified_name_in_an_ambient_context_2714", "The expression of an export assignment must be an identifier or qualified name in an ambient context."), Abstract_property_0_in_class_1_cannot_be_accessed_in_the_constructor: diag(2715, 1, "Abstract_property_0_in_class_1_cannot_be_accessed_in_the_constructor_2715", "Abstract property '{0}' in class '{1}' cannot be accessed in the constructor."), Type_parameter_0_has_a_circular_default: diag(2716, 1, "Type_parameter_0_has_a_circular_default_2716", "Type parameter '{0}' has a circular default."), Subsequent_property_declarations_must_have_the_same_type_Property_0_must_be_of_type_1_but_here_has_type_2: diag(2717, 1, "Subsequent_property_declarations_must_have_the_same_type_Property_0_must_be_of_type_1_but_here_has_t_2717", "Subsequent property declarations must have the same type. Property '{0}' must be of type '{1}', but here has type '{2}'."), Duplicate_property_0: diag(2718, 1, "Duplicate_property_0_2718", "Duplicate property '{0}'."), Type_0_is_not_assignable_to_type_1_Two_different_types_with_this_name_exist_but_they_are_unrelated: diag(2719, 1, "Type_0_is_not_assignable_to_type_1_Two_different_types_with_this_name_exist_but_they_are_unrelated_2719", "Type '{0}' is not assignable to type '{1}'. Two different types with this name exist, but they are unrelated."), Class_0_incorrectly_implements_class_1_Did_you_mean_to_extend_1_and_inherit_its_members_as_a_subclass: diag(2720, 1, "Class_0_incorrectly_implements_class_1_Did_you_mean_to_extend_1_and_inherit_its_members_as_a_subclas_2720", "Class '{0}' incorrectly implements class '{1}'. Did you mean to extend '{1}' and inherit its members as a subclass?"), Cannot_invoke_an_object_which_is_possibly_null: diag(2721, 1, "Cannot_invoke_an_object_which_is_possibly_null_2721", "Cannot invoke an object which is possibly 'null'."), Cannot_invoke_an_object_which_is_possibly_undefined: diag(2722, 1, "Cannot_invoke_an_object_which_is_possibly_undefined_2722", "Cannot invoke an object which is possibly 'undefined'."), Cannot_invoke_an_object_which_is_possibly_null_or_undefined: diag(2723, 1, "Cannot_invoke_an_object_which_is_possibly_null_or_undefined_2723", "Cannot invoke an object which is possibly 'null' or 'undefined'."), _0_has_no_exported_member_named_1_Did_you_mean_2: diag(2724, 1, "_0_has_no_exported_member_named_1_Did_you_mean_2_2724", "'{0}' has no exported member named '{1}'. Did you mean '{2}'?"), Class_name_cannot_be_Object_when_targeting_ES5_and_above_with_module_0: diag(2725, 1, "Class_name_cannot_be_Object_when_targeting_ES5_and_above_with_module_0_2725", "Class name cannot be 'Object' when targeting ES5 and above with module {0}."), Cannot_find_lib_definition_for_0: diag(2726, 1, "Cannot_find_lib_definition_for_0_2726", "Cannot find lib definition for '{0}'."), Cannot_find_lib_definition_for_0_Did_you_mean_1: diag(2727, 1, "Cannot_find_lib_definition_for_0_Did_you_mean_1_2727", "Cannot find lib definition for '{0}'. Did you mean '{1}'?"), _0_is_declared_here: diag(2728, 3, "_0_is_declared_here_2728", "'{0}' is declared here."), Property_0_is_used_before_its_initialization: diag(2729, 1, "Property_0_is_used_before_its_initialization_2729", "Property '{0}' is used before its initialization."), An_arrow_function_cannot_have_a_this_parameter: diag(2730, 1, "An_arrow_function_cannot_have_a_this_parameter_2730", "An arrow function cannot have a 'this' parameter."), Implicit_conversion_of_a_symbol_to_a_string_will_fail_at_runtime_Consider_wrapping_this_expression_in_String: diag(2731, 1, "Implicit_conversion_of_a_symbol_to_a_string_will_fail_at_runtime_Consider_wrapping_this_expression_i_2731", "Implicit conversion of a 'symbol' to a 'string' will fail at runtime. Consider wrapping this expression in 'String(...)'."), Cannot_find_module_0_Consider_using_resolveJsonModule_to_import_module_with_json_extension: diag(2732, 1, "Cannot_find_module_0_Consider_using_resolveJsonModule_to_import_module_with_json_extension_2732", "Cannot find module '{0}'. Consider using '--resolveJsonModule' to import module with '.json' extension."), Property_0_was_also_declared_here: diag(2733, 1, "Property_0_was_also_declared_here_2733", "Property '{0}' was also declared here."), Are_you_missing_a_semicolon: diag(2734, 1, "Are_you_missing_a_semicolon_2734", "Are you missing a semicolon?"), Did_you_mean_for_0_to_be_constrained_to_type_new_args_Colon_any_1: diag(2735, 1, "Did_you_mean_for_0_to_be_constrained_to_type_new_args_Colon_any_1_2735", "Did you mean for '{0}' to be constrained to type 'new (...args: any[]) => {1}'?"), Operator_0_cannot_be_applied_to_type_1: diag(2736, 1, "Operator_0_cannot_be_applied_to_type_1_2736", "Operator '{0}' cannot be applied to type '{1}'."), BigInt_literals_are_not_available_when_targeting_lower_than_ES2020: diag(2737, 1, "BigInt_literals_are_not_available_when_targeting_lower_than_ES2020_2737", "BigInt literals are not available when targeting lower than ES2020."), An_outer_value_of_this_is_shadowed_by_this_container: diag(2738, 3, "An_outer_value_of_this_is_shadowed_by_this_container_2738", "An outer value of 'this' is shadowed by this container."), Type_0_is_missing_the_following_properties_from_type_1_Colon_2: diag(2739, 1, "Type_0_is_missing_the_following_properties_from_type_1_Colon_2_2739", "Type '{0}' is missing the following properties from type '{1}': {2}"), Type_0_is_missing_the_following_properties_from_type_1_Colon_2_and_3_more: diag(2740, 1, "Type_0_is_missing_the_following_properties_from_type_1_Colon_2_and_3_more_2740", "Type '{0}' is missing the following properties from type '{1}': {2}, and {3} more."), Property_0_is_missing_in_type_1_but_required_in_type_2: diag(2741, 1, "Property_0_is_missing_in_type_1_but_required_in_type_2_2741", "Property '{0}' is missing in type '{1}' but required in type '{2}'."), The_inferred_type_of_0_cannot_be_named_without_a_reference_to_1_This_is_likely_not_portable_A_type_annotation_is_necessary: diag(2742, 1, "The_inferred_type_of_0_cannot_be_named_without_a_reference_to_1_This_is_likely_not_portable_A_type_a_2742", "The inferred type of '{0}' cannot be named without a reference to '{1}'. This is likely not portable. A type annotation is necessary."), No_overload_expects_0_type_arguments_but_overloads_do_exist_that_expect_either_1_or_2_type_arguments: diag(2743, 1, "No_overload_expects_0_type_arguments_but_overloads_do_exist_that_expect_either_1_or_2_type_arguments_2743", "No overload expects {0} type arguments, but overloads do exist that expect either {1} or {2} type arguments."), Type_parameter_defaults_can_only_reference_previously_declared_type_parameters: diag(2744, 1, "Type_parameter_defaults_can_only_reference_previously_declared_type_parameters_2744", "Type parameter defaults can only reference previously declared type parameters."), This_JSX_tag_s_0_prop_expects_type_1_which_requires_multiple_children_but_only_a_single_child_was_provided: diag(2745, 1, "This_JSX_tag_s_0_prop_expects_type_1_which_requires_multiple_children_but_only_a_single_child_was_pr_2745", "This JSX tag's '{0}' prop expects type '{1}' which requires multiple children, but only a single child was provided."), This_JSX_tag_s_0_prop_expects_a_single_child_of_type_1_but_multiple_children_were_provided: diag(2746, 1, "This_JSX_tag_s_0_prop_expects_a_single_child_of_type_1_but_multiple_children_were_provided_2746", "This JSX tag's '{0}' prop expects a single child of type '{1}', but multiple children were provided."), _0_components_don_t_accept_text_as_child_elements_Text_in_JSX_has_the_type_string_but_the_expected_type_of_1_is_2: diag(2747, 1, "_0_components_don_t_accept_text_as_child_elements_Text_in_JSX_has_the_type_string_but_the_expected_t_2747", "'{0}' components don't accept text as child elements. Text in JSX has the type 'string', but the expected type of '{1}' is '{2}'."), Cannot_access_ambient_const_enums_when_0_is_enabled: diag(2748, 1, "Cannot_access_ambient_const_enums_when_0_is_enabled_2748", "Cannot access ambient const enums when '{0}' is enabled."), _0_refers_to_a_value_but_is_being_used_as_a_type_here_Did_you_mean_typeof_0: diag(2749, 1, "_0_refers_to_a_value_but_is_being_used_as_a_type_here_Did_you_mean_typeof_0_2749", "'{0}' refers to a value, but is being used as a type here. Did you mean 'typeof {0}'?"), The_implementation_signature_is_declared_here: diag(2750, 1, "The_implementation_signature_is_declared_here_2750", "The implementation signature is declared here."), Circularity_originates_in_type_at_this_location: diag(2751, 1, "Circularity_originates_in_type_at_this_location_2751", "Circularity originates in type at this location."), The_first_export_default_is_here: diag(2752, 1, "The_first_export_default_is_here_2752", "The first export default is here."), Another_export_default_is_here: diag(2753, 1, "Another_export_default_is_here_2753", "Another export default is here."), super_may_not_use_type_arguments: diag(2754, 1, "super_may_not_use_type_arguments_2754", "'super' may not use type arguments."), No_constituent_of_type_0_is_callable: diag(2755, 1, "No_constituent_of_type_0_is_callable_2755", "No constituent of type '{0}' is callable."), Not_all_constituents_of_type_0_are_callable: diag(2756, 1, "Not_all_constituents_of_type_0_are_callable_2756", "Not all constituents of type '{0}' are callable."), Type_0_has_no_call_signatures: diag(2757, 1, "Type_0_has_no_call_signatures_2757", "Type '{0}' has no call signatures."), Each_member_of_the_union_type_0_has_signatures_but_none_of_those_signatures_are_compatible_with_each_other: diag(2758, 1, "Each_member_of_the_union_type_0_has_signatures_but_none_of_those_signatures_are_compatible_with_each_2758", "Each member of the union type '{0}' has signatures, but none of those signatures are compatible with each other."), No_constituent_of_type_0_is_constructable: diag(2759, 1, "No_constituent_of_type_0_is_constructable_2759", "No constituent of type '{0}' is constructable."), Not_all_constituents_of_type_0_are_constructable: diag(2760, 1, "Not_all_constituents_of_type_0_are_constructable_2760", "Not all constituents of type '{0}' are constructable."), Type_0_has_no_construct_signatures: diag(2761, 1, "Type_0_has_no_construct_signatures_2761", "Type '{0}' has no construct signatures."), Each_member_of_the_union_type_0_has_construct_signatures_but_none_of_those_signatures_are_compatible_with_each_other: diag(2762, 1, "Each_member_of_the_union_type_0_has_construct_signatures_but_none_of_those_signatures_are_compatible_2762", "Each member of the union type '{0}' has construct signatures, but none of those signatures are compatible with each other."), Cannot_iterate_value_because_the_next_method_of_its_iterator_expects_type_1_but_for_of_will_always_send_0: diag(2763, 1, "Cannot_iterate_value_because_the_next_method_of_its_iterator_expects_type_1_but_for_of_will_always_s_2763", "Cannot iterate value because the 'next' method of its iterator expects type '{1}', but for-of will always send '{0}'."), Cannot_iterate_value_because_the_next_method_of_its_iterator_expects_type_1_but_array_spread_will_always_send_0: diag(2764, 1, "Cannot_iterate_value_because_the_next_method_of_its_iterator_expects_type_1_but_array_spread_will_al_2764", "Cannot iterate value because the 'next' method of its iterator expects type '{1}', but array spread will always send '{0}'."), Cannot_iterate_value_because_the_next_method_of_its_iterator_expects_type_1_but_array_destructuring_will_always_send_0: diag(2765, 1, "Cannot_iterate_value_because_the_next_method_of_its_iterator_expects_type_1_but_array_destructuring__2765", "Cannot iterate value because the 'next' method of its iterator expects type '{1}', but array destructuring will always send '{0}'."), Cannot_delegate_iteration_to_value_because_the_next_method_of_its_iterator_expects_type_1_but_the_containing_generator_will_always_send_0: diag(2766, 1, "Cannot_delegate_iteration_to_value_because_the_next_method_of_its_iterator_expects_type_1_but_the_co_2766", "Cannot delegate iteration to value because the 'next' method of its iterator expects type '{1}', but the containing generator will always send '{0}'."), The_0_property_of_an_iterator_must_be_a_method: diag(2767, 1, "The_0_property_of_an_iterator_must_be_a_method_2767", "The '{0}' property of an iterator must be a method."), The_0_property_of_an_async_iterator_must_be_a_method: diag(2768, 1, "The_0_property_of_an_async_iterator_must_be_a_method_2768", "The '{0}' property of an async iterator must be a method."), No_overload_matches_this_call: diag(2769, 1, "No_overload_matches_this_call_2769", "No overload matches this call."), The_last_overload_gave_the_following_error: diag(2770, 1, "The_last_overload_gave_the_following_error_2770", "The last overload gave the following error."), The_last_overload_is_declared_here: diag(2771, 1, "The_last_overload_is_declared_here_2771", "The last overload is declared here."), Overload_0_of_1_2_gave_the_following_error: diag(2772, 1, "Overload_0_of_1_2_gave_the_following_error_2772", "Overload {0} of {1}, '{2}', gave the following error."), Did_you_forget_to_use_await: diag(2773, 1, "Did_you_forget_to_use_await_2773", "Did you forget to use 'await'?"), This_condition_will_always_return_true_since_this_function_is_always_defined_Did_you_mean_to_call_it_instead: diag(2774, 1, "This_condition_will_always_return_true_since_this_function_is_always_defined_Did_you_mean_to_call_it_2774", "This condition will always return true since this function is always defined. Did you mean to call it instead?"), Assertions_require_every_name_in_the_call_target_to_be_declared_with_an_explicit_type_annotation: diag(2775, 1, "Assertions_require_every_name_in_the_call_target_to_be_declared_with_an_explicit_type_annotation_2775", "Assertions require every name in the call target to be declared with an explicit type annotation."), Assertions_require_the_call_target_to_be_an_identifier_or_qualified_name: diag(2776, 1, "Assertions_require_the_call_target_to_be_an_identifier_or_qualified_name_2776", "Assertions require the call target to be an identifier or qualified name."), The_operand_of_an_increment_or_decrement_operator_may_not_be_an_optional_property_access: diag(2777, 1, "The_operand_of_an_increment_or_decrement_operator_may_not_be_an_optional_property_access_2777", "The operand of an increment or decrement operator may not be an optional property access."), The_target_of_an_object_rest_assignment_may_not_be_an_optional_property_access: diag(2778, 1, "The_target_of_an_object_rest_assignment_may_not_be_an_optional_property_access_2778", "The target of an object rest assignment may not be an optional property access."), The_left_hand_side_of_an_assignment_expression_may_not_be_an_optional_property_access: diag(2779, 1, "The_left_hand_side_of_an_assignment_expression_may_not_be_an_optional_property_access_2779", "The left-hand side of an assignment expression may not be an optional property access."), The_left_hand_side_of_a_for_in_statement_may_not_be_an_optional_property_access: diag(2780, 1, "The_left_hand_side_of_a_for_in_statement_may_not_be_an_optional_property_access_2780", "The left-hand side of a 'for...in' statement may not be an optional property access."), The_left_hand_side_of_a_for_of_statement_may_not_be_an_optional_property_access: diag(2781, 1, "The_left_hand_side_of_a_for_of_statement_may_not_be_an_optional_property_access_2781", "The left-hand side of a 'for...of' statement may not be an optional property access."), _0_needs_an_explicit_type_annotation: diag(2782, 3, "_0_needs_an_explicit_type_annotation_2782", "'{0}' needs an explicit type annotation."), _0_is_specified_more_than_once_so_this_usage_will_be_overwritten: diag(2783, 1, "_0_is_specified_more_than_once_so_this_usage_will_be_overwritten_2783", "'{0}' is specified more than once, so this usage will be overwritten."), get_and_set_accessors_cannot_declare_this_parameters: diag(2784, 1, "get_and_set_accessors_cannot_declare_this_parameters_2784", "'get' and 'set' accessors cannot declare 'this' parameters."), This_spread_always_overwrites_this_property: diag(2785, 1, "This_spread_always_overwrites_this_property_2785", "This spread always overwrites this property."), _0_cannot_be_used_as_a_JSX_component: diag(2786, 1, "_0_cannot_be_used_as_a_JSX_component_2786", "'{0}' cannot be used as a JSX component."), Its_return_type_0_is_not_a_valid_JSX_element: diag(2787, 1, "Its_return_type_0_is_not_a_valid_JSX_element_2787", "Its return type '{0}' is not a valid JSX element."), Its_instance_type_0_is_not_a_valid_JSX_element: diag(2788, 1, "Its_instance_type_0_is_not_a_valid_JSX_element_2788", "Its instance type '{0}' is not a valid JSX element."), Its_element_type_0_is_not_a_valid_JSX_element: diag(2789, 1, "Its_element_type_0_is_not_a_valid_JSX_element_2789", "Its element type '{0}' is not a valid JSX element."), The_operand_of_a_delete_operator_must_be_optional: diag(2790, 1, "The_operand_of_a_delete_operator_must_be_optional_2790", "The operand of a 'delete' operator must be optional."), Exponentiation_cannot_be_performed_on_bigint_values_unless_the_target_option_is_set_to_es2016_or_later: diag(2791, 1, "Exponentiation_cannot_be_performed_on_bigint_values_unless_the_target_option_is_set_to_es2016_or_lat_2791", "Exponentiation cannot be performed on 'bigint' values unless the 'target' option is set to 'es2016' or later."), Cannot_find_module_0_Did_you_mean_to_set_the_moduleResolution_option_to_nodenext_or_to_add_aliases_to_the_paths_option: diag(2792, 1, "Cannot_find_module_0_Did_you_mean_to_set_the_moduleResolution_option_to_nodenext_or_to_add_aliases_t_2792", "Cannot find module '{0}'. Did you mean to set the 'moduleResolution' option to 'nodenext', or to add aliases to the 'paths' option?"), The_call_would_have_succeeded_against_this_implementation_but_implementation_signatures_of_overloads_are_not_externally_visible: diag(2793, 1, "The_call_would_have_succeeded_against_this_implementation_but_implementation_signatures_of_overloads_2793", "The call would have succeeded against this implementation, but implementation signatures of overloads are not externally visible."), Expected_0_arguments_but_got_1_Did_you_forget_to_include_void_in_your_type_argument_to_Promise: diag(2794, 1, "Expected_0_arguments_but_got_1_Did_you_forget_to_include_void_in_your_type_argument_to_Promise_2794", "Expected {0} arguments, but got {1}. Did you forget to include 'void' in your type argument to 'Promise'?"), The_intrinsic_keyword_can_only_be_used_to_declare_compiler_provided_intrinsic_types: diag(2795, 1, "The_intrinsic_keyword_can_only_be_used_to_declare_compiler_provided_intrinsic_types_2795", "The 'intrinsic' keyword can only be used to declare compiler provided intrinsic types."), It_is_likely_that_you_are_missing_a_comma_to_separate_these_two_template_expressions_They_form_a_tagged_template_expression_which_cannot_be_invoked: diag(2796, 1, "It_is_likely_that_you_are_missing_a_comma_to_separate_these_two_template_expressions_They_form_a_tag_2796", "It is likely that you are missing a comma to separate these two template expressions. They form a tagged template expression which cannot be invoked."), A_mixin_class_that_extends_from_a_type_variable_containing_an_abstract_construct_signature_must_also_be_declared_abstract: diag(2797, 1, "A_mixin_class_that_extends_from_a_type_variable_containing_an_abstract_construct_signature_must_also_2797", "A mixin class that extends from a type variable containing an abstract construct signature must also be declared 'abstract'."), The_declaration_was_marked_as_deprecated_here: diag(2798, 1, "The_declaration_was_marked_as_deprecated_here_2798", "The declaration was marked as deprecated here."), Type_produces_a_tuple_type_that_is_too_large_to_represent: diag(2799, 1, "Type_produces_a_tuple_type_that_is_too_large_to_represent_2799", "Type produces a tuple type that is too large to represent."), Expression_produces_a_tuple_type_that_is_too_large_to_represent: diag(2800, 1, "Expression_produces_a_tuple_type_that_is_too_large_to_represent_2800", "Expression produces a tuple type that is too large to represent."), This_condition_will_always_return_true_since_this_0_is_always_defined: diag(2801, 1, "This_condition_will_always_return_true_since_this_0_is_always_defined_2801", "This condition will always return true since this '{0}' is always defined."), Type_0_can_only_be_iterated_through_when_using_the_downlevelIteration_flag_or_with_a_target_of_es2015_or_higher: diag(2802, 1, "Type_0_can_only_be_iterated_through_when_using_the_downlevelIteration_flag_or_with_a_target_of_es201_2802", "Type '{0}' can only be iterated through when using the '--downlevelIteration' flag or with a '--target' of 'es2015' or higher."), Cannot_assign_to_private_method_0_Private_methods_are_not_writable: diag(2803, 1, "Cannot_assign_to_private_method_0_Private_methods_are_not_writable_2803", "Cannot assign to private method '{0}'. Private methods are not writable."), Duplicate_identifier_0_Static_and_instance_elements_cannot_share_the_same_private_name: diag(2804, 1, "Duplicate_identifier_0_Static_and_instance_elements_cannot_share_the_same_private_name_2804", "Duplicate identifier '{0}'. Static and instance elements cannot share the same private name."), Private_accessor_was_defined_without_a_getter: diag(2806, 1, "Private_accessor_was_defined_without_a_getter_2806", "Private accessor was defined without a getter."), This_syntax_requires_an_imported_helper_named_1_with_2_parameters_which_is_not_compatible_with_the_one_in_0_Consider_upgrading_your_version_of_0: diag(2807, 1, "This_syntax_requires_an_imported_helper_named_1_with_2_parameters_which_is_not_compatible_with_the_o_2807", "This syntax requires an imported helper named '{1}' with {2} parameters, which is not compatible with the one in '{0}'. Consider upgrading your version of '{0}'."), A_get_accessor_must_be_at_least_as_accessible_as_the_setter: diag(2808, 1, "A_get_accessor_must_be_at_least_as_accessible_as_the_setter_2808", "A get accessor must be at least as accessible as the setter"), Declaration_or_statement_expected_This_follows_a_block_of_statements_so_if_you_intended_to_write_a_destructuring_assignment_you_might_need_to_wrap_the_whole_assignment_in_parentheses: diag(2809, 1, "Declaration_or_statement_expected_This_follows_a_block_of_statements_so_if_you_intended_to_write_a_d_2809", "Declaration or statement expected. This '=' follows a block of statements, so if you intended to write a destructuring assignment, you might need to wrap the whole assignment in parentheses."), Expected_1_argument_but_got_0_new_Promise_needs_a_JSDoc_hint_to_produce_a_resolve_that_can_be_called_without_arguments: diag(2810, 1, "Expected_1_argument_but_got_0_new_Promise_needs_a_JSDoc_hint_to_produce_a_resolve_that_can_be_called_2810", "Expected 1 argument, but got 0. 'new Promise()' needs a JSDoc hint to produce a 'resolve' that can be called without arguments."), Initializer_for_property_0: diag(2811, 1, "Initializer_for_property_0_2811", "Initializer for property '{0}'"), Property_0_does_not_exist_on_type_1_Try_changing_the_lib_compiler_option_to_include_dom: diag(2812, 1, "Property_0_does_not_exist_on_type_1_Try_changing_the_lib_compiler_option_to_include_dom_2812", "Property '{0}' does not exist on type '{1}'. Try changing the 'lib' compiler option to include 'dom'."), Class_declaration_cannot_implement_overload_list_for_0: diag(2813, 1, "Class_declaration_cannot_implement_overload_list_for_0_2813", "Class declaration cannot implement overload list for '{0}'."), Function_with_bodies_can_only_merge_with_classes_that_are_ambient: diag(2814, 1, "Function_with_bodies_can_only_merge_with_classes_that_are_ambient_2814", "Function with bodies can only merge with classes that are ambient."), arguments_cannot_be_referenced_in_property_initializers_or_class_static_initialization_blocks: diag(2815, 1, "arguments_cannot_be_referenced_in_property_initializers_or_class_static_initialization_blocks_2815", "'arguments' cannot be referenced in property initializers or class static initialization blocks."), Cannot_use_this_in_a_static_property_initializer_of_a_decorated_class: diag(2816, 1, "Cannot_use_this_in_a_static_property_initializer_of_a_decorated_class_2816", "Cannot use 'this' in a static property initializer of a decorated class."), Property_0_has_no_initializer_and_is_not_definitely_assigned_in_a_class_static_block: diag(2817, 1, "Property_0_has_no_initializer_and_is_not_definitely_assigned_in_a_class_static_block_2817", "Property '{0}' has no initializer and is not definitely assigned in a class static block."), Duplicate_identifier_0_Compiler_reserves_name_1_when_emitting_super_references_in_static_initializers: diag(2818, 1, "Duplicate_identifier_0_Compiler_reserves_name_1_when_emitting_super_references_in_static_initializer_2818", "Duplicate identifier '{0}'. Compiler reserves name '{1}' when emitting 'super' references in static initializers."), Namespace_name_cannot_be_0: diag(2819, 1, "Namespace_name_cannot_be_0_2819", "Namespace name cannot be '{0}'."), Type_0_is_not_assignable_to_type_1_Did_you_mean_2: diag(2820, 1, "Type_0_is_not_assignable_to_type_1_Did_you_mean_2_2820", "Type '{0}' is not assignable to type '{1}'. Did you mean '{2}'?"), Import_assertions_are_only_supported_when_the_module_option_is_set_to_esnext_node18_node20_nodenext_or_preserve: diag(2821, 1, "Import_assertions_are_only_supported_when_the_module_option_is_set_to_esnext_node18_node20_nodenext__2821", "Import assertions are only supported when the '--module' option is set to 'esnext', 'node18', 'node20', 'nodenext', or 'preserve'."), Import_assertions_cannot_be_used_with_type_only_imports_or_exports: diag(2822, 1, "Import_assertions_cannot_be_used_with_type_only_imports_or_exports_2822", "Import assertions cannot be used with type-only imports or exports."), Import_attributes_are_only_supported_when_the_module_option_is_set_to_esnext_node18_node20_nodenext_or_preserve: diag(2823, 1, "Import_attributes_are_only_supported_when_the_module_option_is_set_to_esnext_node18_node20_nodenext__2823", "Import attributes are only supported when the '--module' option is set to 'esnext', 'node18', 'node20', 'nodenext', or 'preserve'."), Cannot_find_namespace_0_Did_you_mean_1: diag(2833, 1, "Cannot_find_namespace_0_Did_you_mean_1_2833", "Cannot find namespace '{0}'. Did you mean '{1}'?"), Relative_import_paths_need_explicit_file_extensions_in_ECMAScript_imports_when_moduleResolution_is_node16_or_nodenext_Consider_adding_an_extension_to_the_import_path: diag(2834, 1, "Relative_import_paths_need_explicit_file_extensions_in_ECMAScript_imports_when_moduleResolution_is_n_2834", "Relative import paths need explicit file extensions in ECMAScript imports when '--moduleResolution' is 'node16' or 'nodenext'. Consider adding an extension to the import path."), Relative_import_paths_need_explicit_file_extensions_in_ECMAScript_imports_when_moduleResolution_is_node16_or_nodenext_Did_you_mean_0: diag(2835, 1, "Relative_import_paths_need_explicit_file_extensions_in_ECMAScript_imports_when_moduleResolution_is_n_2835", "Relative import paths need explicit file extensions in ECMAScript imports when '--moduleResolution' is 'node16' or 'nodenext'. Did you mean '{0}'?"), Import_assertions_are_not_allowed_on_statements_that_compile_to_CommonJS_require_calls: diag(2836, 1, "Import_assertions_are_not_allowed_on_statements_that_compile_to_CommonJS_require_calls_2836", "Import assertions are not allowed on statements that compile to CommonJS 'require' calls."), Import_assertion_values_must_be_string_literal_expressions: diag(2837, 1, "Import_assertion_values_must_be_string_literal_expressions_2837", "Import assertion values must be string literal expressions."), All_declarations_of_0_must_have_identical_constraints: diag(2838, 1, "All_declarations_of_0_must_have_identical_constraints_2838", "All declarations of '{0}' must have identical constraints."), This_condition_will_always_return_0_since_JavaScript_compares_objects_by_reference_not_value: diag(2839, 1, "This_condition_will_always_return_0_since_JavaScript_compares_objects_by_reference_not_value_2839", "This condition will always return '{0}' since JavaScript compares objects by reference, not value."), An_interface_cannot_extend_a_primitive_type_like_0_It_can_only_extend_other_named_object_types: diag(2840, 1, "An_interface_cannot_extend_a_primitive_type_like_0_It_can_only_extend_other_named_object_types_2840", "An interface cannot extend a primitive type like '{0}'. It can only extend other named object types."), _0_is_an_unused_renaming_of_1_Did_you_intend_to_use_it_as_a_type_annotation: diag(2842, 1, "_0_is_an_unused_renaming_of_1_Did_you_intend_to_use_it_as_a_type_annotation_2842", "'{0}' is an unused renaming of '{1}'. Did you intend to use it as a type annotation?"), We_can_only_write_a_type_for_0_by_adding_a_type_for_the_entire_parameter_here: diag(2843, 1, "We_can_only_write_a_type_for_0_by_adding_a_type_for_the_entire_parameter_here_2843", "We can only write a type for '{0}' by adding a type for the entire parameter here."), Type_of_instance_member_variable_0_cannot_reference_identifier_1_declared_in_the_constructor: diag(2844, 1, "Type_of_instance_member_variable_0_cannot_reference_identifier_1_declared_in_the_constructor_2844", "Type of instance member variable '{0}' cannot reference identifier '{1}' declared in the constructor."), This_condition_will_always_return_0: diag(2845, 1, "This_condition_will_always_return_0_2845", "This condition will always return '{0}'."), A_declaration_file_cannot_be_imported_without_import_type_Did_you_mean_to_import_an_implementation_file_0_instead: diag(2846, 1, "A_declaration_file_cannot_be_imported_without_import_type_Did_you_mean_to_import_an_implementation_f_2846", "A declaration file cannot be imported without 'import type'. Did you mean to import an implementation file '{0}' instead?"), The_right_hand_side_of_an_instanceof_expression_must_not_be_an_instantiation_expression: diag(2848, 1, "The_right_hand_side_of_an_instanceof_expression_must_not_be_an_instantiation_expression_2848", "The right-hand side of an 'instanceof' expression must not be an instantiation expression."), Target_signature_provides_too_few_arguments_Expected_0_or_more_but_got_1: diag(2849, 1, "Target_signature_provides_too_few_arguments_Expected_0_or_more_but_got_1_2849", "Target signature provides too few arguments. Expected {0} or more, but got {1}."), The_initializer_of_a_using_declaration_must_be_either_an_object_with_a_Symbol_dispose_method_or_be_null_or_undefined: diag(2850, 1, "The_initializer_of_a_using_declaration_must_be_either_an_object_with_a_Symbol_dispose_method_or_be_n_2850", "The initializer of a 'using' declaration must be either an object with a '[Symbol.dispose]()' method, or be 'null' or 'undefined'."), The_initializer_of_an_await_using_declaration_must_be_either_an_object_with_a_Symbol_asyncDispose_or_Symbol_dispose_method_or_be_null_or_undefined: diag(2851, 1, "The_initializer_of_an_await_using_declaration_must_be_either_an_object_with_a_Symbol_asyncDispose_or_2851", "The initializer of an 'await using' declaration must be either an object with a '[Symbol.asyncDispose]()' or '[Symbol.dispose]()' method, or be 'null' or 'undefined'."), await_using_statements_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules: diag(2852, 1, "await_using_statements_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules_2852", "'await using' statements are only allowed within async functions and at the top levels of modules."), await_using_statements_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_file_has_no_imports_or_exports_Consider_adding_an_empty_export_to_make_this_file_a_module: diag(2853, 1, "await_using_statements_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_th_2853", "'await using' statements are only allowed at the top level of a file when that file is a module, but this file has no imports or exports. Consider adding an empty 'export {}' to make this file a module."), Top_level_await_using_statements_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_node16_node18_node20_nodenext_or_preserve_and_the_target_option_is_set_to_es2017_or_higher: diag(2854, 1, "Top_level_await_using_statements_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_sys_2854", "Top-level 'await using' statements are only allowed when the 'module' option is set to 'es2022', 'esnext', 'system', 'node16', 'node18', 'node20', 'nodenext', or 'preserve', and the 'target' option is set to 'es2017' or higher."), Class_field_0_defined_by_the_parent_class_is_not_accessible_in_the_child_class_via_super: diag(2855, 1, "Class_field_0_defined_by_the_parent_class_is_not_accessible_in_the_child_class_via_super_2855", "Class field '{0}' defined by the parent class is not accessible in the child class via super."), Import_attributes_are_not_allowed_on_statements_that_compile_to_CommonJS_require_calls: diag(2856, 1, "Import_attributes_are_not_allowed_on_statements_that_compile_to_CommonJS_require_calls_2856", "Import attributes are not allowed on statements that compile to CommonJS 'require' calls."), Import_attributes_cannot_be_used_with_type_only_imports_or_exports: diag(2857, 1, "Import_attributes_cannot_be_used_with_type_only_imports_or_exports_2857", "Import attributes cannot be used with type-only imports or exports."), Import_attribute_values_must_be_string_literal_expressions: diag(2858, 1, "Import_attribute_values_must_be_string_literal_expressions_2858", "Import attribute values must be string literal expressions."), Excessive_complexity_comparing_types_0_and_1: diag(2859, 1, "Excessive_complexity_comparing_types_0_and_1_2859", "Excessive complexity comparing types '{0}' and '{1}'."), The_left_hand_side_of_an_instanceof_expression_must_be_assignable_to_the_first_argument_of_the_right_hand_side_s_Symbol_hasInstance_method: diag(2860, 1, "The_left_hand_side_of_an_instanceof_expression_must_be_assignable_to_the_first_argument_of_the_right_2860", "The left-hand side of an 'instanceof' expression must be assignable to the first argument of the right-hand side's '[Symbol.hasInstance]' method."), An_object_s_Symbol_hasInstance_method_must_return_a_boolean_value_for_it_to_be_used_on_the_right_hand_side_of_an_instanceof_expression: diag(2861, 1, "An_object_s_Symbol_hasInstance_method_must_return_a_boolean_value_for_it_to_be_used_on_the_right_han_2861", "An object's '[Symbol.hasInstance]' method must return a boolean value for it to be used on the right-hand side of an 'instanceof' expression."), Type_0_is_generic_and_can_only_be_indexed_for_reading: diag(2862, 1, "Type_0_is_generic_and_can_only_be_indexed_for_reading_2862", "Type '{0}' is generic and can only be indexed for reading."), A_class_cannot_extend_a_primitive_type_like_0_Classes_can_only_extend_constructable_values: diag(2863, 1, "A_class_cannot_extend_a_primitive_type_like_0_Classes_can_only_extend_constructable_values_2863", "A class cannot extend a primitive type like '{0}'. Classes can only extend constructable values."), A_class_cannot_implement_a_primitive_type_like_0_It_can_only_implement_other_named_object_types: diag(2864, 1, "A_class_cannot_implement_a_primitive_type_like_0_It_can_only_implement_other_named_object_types_2864", "A class cannot implement a primitive type like '{0}'. It can only implement other named object types."), Import_0_conflicts_with_local_value_so_must_be_declared_with_a_type_only_import_when_isolatedModules_is_enabled: diag(2865, 1, "Import_0_conflicts_with_local_value_so_must_be_declared_with_a_type_only_import_when_isolatedModules_2865", "Import '{0}' conflicts with local value, so must be declared with a type-only import when 'isolatedModules' is enabled."), Import_0_conflicts_with_global_value_used_in_this_file_so_must_be_declared_with_a_type_only_import_when_isolatedModules_is_enabled: diag(2866, 1, "Import_0_conflicts_with_global_value_used_in_this_file_so_must_be_declared_with_a_type_only_import_w_2866", "Import '{0}' conflicts with global value used in this file, so must be declared with a type-only import when 'isolatedModules' is enabled."), Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_Bun_Try_npm_i_save_dev_types_Slashbun: diag(2867, 1, "Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_Bun_Try_npm_i_save_dev_types_Slashbun_2867", "Cannot find name '{0}'. Do you need to install type definitions for Bun? Try `npm i --save-dev @types/bun`."), Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_Bun_Try_npm_i_save_dev_types_Slashbun_and_then_add_bun_to_the_types_field_in_your_tsconfig: diag(2868, 1, "Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_Bun_Try_npm_i_save_dev_types_Slashbun_2868", "Cannot find name '{0}'. Do you need to install type definitions for Bun? Try `npm i --save-dev @types/bun` and then add 'bun' to the types field in your tsconfig."), Right_operand_of_is_unreachable_because_the_left_operand_is_never_nullish: diag(2869, 1, "Right_operand_of_is_unreachable_because_the_left_operand_is_never_nullish_2869", "Right operand of ?? is unreachable because the left operand is never nullish."), This_binary_expression_is_never_nullish_Are_you_missing_parentheses: diag(2870, 1, "This_binary_expression_is_never_nullish_Are_you_missing_parentheses_2870", "This binary expression is never nullish. Are you missing parentheses?"), This_expression_is_always_nullish: diag(2871, 1, "This_expression_is_always_nullish_2871", "This expression is always nullish."), This_kind_of_expression_is_always_truthy: diag(2872, 1, "This_kind_of_expression_is_always_truthy_2872", "This kind of expression is always truthy."), This_kind_of_expression_is_always_falsy: diag(2873, 1, "This_kind_of_expression_is_always_falsy_2873", "This kind of expression is always falsy."), This_JSX_tag_requires_0_to_be_in_scope_but_it_could_not_be_found: diag(2874, 1, "This_JSX_tag_requires_0_to_be_in_scope_but_it_could_not_be_found_2874", "This JSX tag requires '{0}' to be in scope, but it could not be found."), This_JSX_tag_requires_the_module_path_0_to_exist_but_none_could_be_found_Make_sure_you_have_types_for_the_appropriate_package_installed: diag(2875, 1, "This_JSX_tag_requires_the_module_path_0_to_exist_but_none_could_be_found_Make_sure_you_have_types_fo_2875", "This JSX tag requires the module path '{0}' to exist, but none could be found. Make sure you have types for the appropriate package installed."), This_relative_import_path_is_unsafe_to_rewrite_because_it_looks_like_a_file_name_but_actually_resolves_to_0: diag(2876, 1, "This_relative_import_path_is_unsafe_to_rewrite_because_it_looks_like_a_file_name_but_actually_resolv_2876", 'This relative import path is unsafe to rewrite because it looks like a file name, but actually resolves to "{0}".'), This_import_uses_a_0_extension_to_resolve_to_an_input_TypeScript_file_but_will_not_be_rewritten_during_emit_because_it_is_not_a_relative_path: diag(2877, 1, "This_import_uses_a_0_extension_to_resolve_to_an_input_TypeScript_file_but_will_not_be_rewritten_duri_2877", "This import uses a '{0}' extension to resolve to an input TypeScript file, but will not be rewritten during emit because it is not a relative path."), This_import_path_is_unsafe_to_rewrite_because_it_resolves_to_another_project_and_the_relative_path_between_the_projects_output_files_is_not_the_same_as_the_relative_path_between_its_input_files: diag(2878, 1, "This_import_path_is_unsafe_to_rewrite_because_it_resolves_to_another_project_and_the_relative_path_b_2878", "This import path is unsafe to rewrite because it resolves to another project, and the relative path between the projects' output files is not the same as the relative path between its input files."), Using_JSX_fragments_requires_fragment_factory_0_to_be_in_scope_but_it_could_not_be_found: diag(2879, 1, "Using_JSX_fragments_requires_fragment_factory_0_to_be_in_scope_but_it_could_not_be_found_2879", "Using JSX fragments requires fragment factory '{0}' to be in scope, but it could not be found."), Import_assertions_have_been_replaced_by_import_attributes_Use_with_instead_of_assert: diag(2880, 1, "Import_assertions_have_been_replaced_by_import_attributes_Use_with_instead_of_assert_2880", "Import assertions have been replaced by import attributes. Use 'with' instead of 'assert'."), This_expression_is_never_nullish: diag(2881, 1, "This_expression_is_never_nullish_2881", "This expression is never nullish."), Cannot_find_module_or_type_declarations_for_side_effect_import_of_0: diag(2882, 1, "Cannot_find_module_or_type_declarations_for_side_effect_import_of_0_2882", "Cannot find module or type declarations for side-effect import of '{0}'."), The_inferred_type_of_0_cannot_be_named_without_a_reference_to_2_from_1_This_is_likely_not_portable_A_type_annotation_is_necessary: diag(2883, 1, "The_inferred_type_of_0_cannot_be_named_without_a_reference_to_2_from_1_This_is_likely_not_portable_A_2883", "The inferred type of '{0}' cannot be named without a reference to '{2}' from '{1}'. This is likely not portable. A type annotation is necessary."), Import_declaration_0_is_using_private_name_1: diag(4000, 1, "Import_declaration_0_is_using_private_name_1_4000", "Import declaration '{0}' is using private name '{1}'."), Type_parameter_0_of_exported_class_has_or_is_using_private_name_1: diag(4002, 1, "Type_parameter_0_of_exported_class_has_or_is_using_private_name_1_4002", "Type parameter '{0}' of exported class has or is using private name '{1}'."), Type_parameter_0_of_exported_interface_has_or_is_using_private_name_1: diag(4004, 1, "Type_parameter_0_of_exported_interface_has_or_is_using_private_name_1_4004", "Type parameter '{0}' of exported interface has or is using private name '{1}'."), Type_parameter_0_of_constructor_signature_from_exported_interface_has_or_is_using_private_name_1: diag(4006, 1, "Type_parameter_0_of_constructor_signature_from_exported_interface_has_or_is_using_private_name_1_4006", "Type parameter '{0}' of constructor signature from exported interface has or is using private name '{1}'."), Type_parameter_0_of_call_signature_from_exported_interface_has_or_is_using_private_name_1: diag(4008, 1, "Type_parameter_0_of_call_signature_from_exported_interface_has_or_is_using_private_name_1_4008", "Type parameter '{0}' of call signature from exported interface has or is using private name '{1}'."), Type_parameter_0_of_public_static_method_from_exported_class_has_or_is_using_private_name_1: diag(4010, 1, "Type_parameter_0_of_public_static_method_from_exported_class_has_or_is_using_private_name_1_4010", "Type parameter '{0}' of public static method from exported class has or is using private name '{1}'."), Type_parameter_0_of_public_method_from_exported_class_has_or_is_using_private_name_1: diag(4012, 1, "Type_parameter_0_of_public_method_from_exported_class_has_or_is_using_private_name_1_4012", "Type parameter '{0}' of public method from exported class has or is using private name '{1}'."), Type_parameter_0_of_method_from_exported_interface_has_or_is_using_private_name_1: diag(4014, 1, "Type_parameter_0_of_method_from_exported_interface_has_or_is_using_private_name_1_4014", "Type parameter '{0}' of method from exported interface has or is using private name '{1}'."), Type_parameter_0_of_exported_function_has_or_is_using_private_name_1: diag(4016, 1, "Type_parameter_0_of_exported_function_has_or_is_using_private_name_1_4016", "Type parameter '{0}' of exported function has or is using private name '{1}'."), Implements_clause_of_exported_class_0_has_or_is_using_private_name_1: diag(4019, 1, "Implements_clause_of_exported_class_0_has_or_is_using_private_name_1_4019", "Implements clause of exported class '{0}' has or is using private name '{1}'."), extends_clause_of_exported_class_0_has_or_is_using_private_name_1: diag(4020, 1, "extends_clause_of_exported_class_0_has_or_is_using_private_name_1_4020", "'extends' clause of exported class '{0}' has or is using private name '{1}'."), extends_clause_of_exported_class_has_or_is_using_private_name_0: diag(4021, 1, "extends_clause_of_exported_class_has_or_is_using_private_name_0_4021", "'extends' clause of exported class has or is using private name '{0}'."), extends_clause_of_exported_interface_0_has_or_is_using_private_name_1: diag(4022, 1, "extends_clause_of_exported_interface_0_has_or_is_using_private_name_1_4022", "'extends' clause of exported interface '{0}' has or is using private name '{1}'."), Exported_variable_0_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4023, 1, "Exported_variable_0_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named_4023", "Exported variable '{0}' has or is using name '{1}' from external module {2} but cannot be named."), Exported_variable_0_has_or_is_using_name_1_from_private_module_2: diag(4024, 1, "Exported_variable_0_has_or_is_using_name_1_from_private_module_2_4024", "Exported variable '{0}' has or is using name '{1}' from private module '{2}'."), Exported_variable_0_has_or_is_using_private_name_1: diag(4025, 1, "Exported_variable_0_has_or_is_using_private_name_1_4025", "Exported variable '{0}' has or is using private name '{1}'."), Public_static_property_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4026, 1, "Public_static_property_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot__4026", "Public static property '{0}' of exported class has or is using name '{1}' from external module {2} but cannot be named."), Public_static_property_0_of_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4027, 1, "Public_static_property_0_of_exported_class_has_or_is_using_name_1_from_private_module_2_4027", "Public static property '{0}' of exported class has or is using name '{1}' from private module '{2}'."), Public_static_property_0_of_exported_class_has_or_is_using_private_name_1: diag(4028, 1, "Public_static_property_0_of_exported_class_has_or_is_using_private_name_1_4028", "Public static property '{0}' of exported class has or is using private name '{1}'."), Public_property_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4029, 1, "Public_property_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_name_4029", "Public property '{0}' of exported class has or is using name '{1}' from external module {2} but cannot be named."), Public_property_0_of_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4030, 1, "Public_property_0_of_exported_class_has_or_is_using_name_1_from_private_module_2_4030", "Public property '{0}' of exported class has or is using name '{1}' from private module '{2}'."), Public_property_0_of_exported_class_has_or_is_using_private_name_1: diag(4031, 1, "Public_property_0_of_exported_class_has_or_is_using_private_name_1_4031", "Public property '{0}' of exported class has or is using private name '{1}'."), Property_0_of_exported_interface_has_or_is_using_name_1_from_private_module_2: diag(4032, 1, "Property_0_of_exported_interface_has_or_is_using_name_1_from_private_module_2_4032", "Property '{0}' of exported interface has or is using name '{1}' from private module '{2}'."), Property_0_of_exported_interface_has_or_is_using_private_name_1: diag(4033, 1, "Property_0_of_exported_interface_has_or_is_using_private_name_1_4033", "Property '{0}' of exported interface has or is using private name '{1}'."), Parameter_type_of_public_static_setter_0_from_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4034, 1, "Parameter_type_of_public_static_setter_0_from_exported_class_has_or_is_using_name_1_from_private_mod_4034", "Parameter type of public static setter '{0}' from exported class has or is using name '{1}' from private module '{2}'."), Parameter_type_of_public_static_setter_0_from_exported_class_has_or_is_using_private_name_1: diag(4035, 1, "Parameter_type_of_public_static_setter_0_from_exported_class_has_or_is_using_private_name_1_4035", "Parameter type of public static setter '{0}' from exported class has or is using private name '{1}'."), Parameter_type_of_public_setter_0_from_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4036, 1, "Parameter_type_of_public_setter_0_from_exported_class_has_or_is_using_name_1_from_private_module_2_4036", "Parameter type of public setter '{0}' from exported class has or is using name '{1}' from private module '{2}'."), Parameter_type_of_public_setter_0_from_exported_class_has_or_is_using_private_name_1: diag(4037, 1, "Parameter_type_of_public_setter_0_from_exported_class_has_or_is_using_private_name_1_4037", "Parameter type of public setter '{0}' from exported class has or is using private name '{1}'."), Return_type_of_public_static_getter_0_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4038, 1, "Return_type_of_public_static_getter_0_from_exported_class_has_or_is_using_name_1_from_external_modul_4038", "Return type of public static getter '{0}' from exported class has or is using name '{1}' from external module {2} but cannot be named."), Return_type_of_public_static_getter_0_from_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4039, 1, "Return_type_of_public_static_getter_0_from_exported_class_has_or_is_using_name_1_from_private_module_4039", "Return type of public static getter '{0}' from exported class has or is using name '{1}' from private module '{2}'."), Return_type_of_public_static_getter_0_from_exported_class_has_or_is_using_private_name_1: diag(4040, 1, "Return_type_of_public_static_getter_0_from_exported_class_has_or_is_using_private_name_1_4040", "Return type of public static getter '{0}' from exported class has or is using private name '{1}'."), Return_type_of_public_getter_0_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4041, 1, "Return_type_of_public_getter_0_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_4041", "Return type of public getter '{0}' from exported class has or is using name '{1}' from external module {2} but cannot be named."), Return_type_of_public_getter_0_from_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4042, 1, "Return_type_of_public_getter_0_from_exported_class_has_or_is_using_name_1_from_private_module_2_4042", "Return type of public getter '{0}' from exported class has or is using name '{1}' from private module '{2}'."), Return_type_of_public_getter_0_from_exported_class_has_or_is_using_private_name_1: diag(4043, 1, "Return_type_of_public_getter_0_from_exported_class_has_or_is_using_private_name_1_4043", "Return type of public getter '{0}' from exported class has or is using private name '{1}'."), Return_type_of_constructor_signature_from_exported_interface_has_or_is_using_name_0_from_private_module_1: diag(4044, 1, "Return_type_of_constructor_signature_from_exported_interface_has_or_is_using_name_0_from_private_mod_4044", "Return type of constructor signature from exported interface has or is using name '{0}' from private module '{1}'."), Return_type_of_constructor_signature_from_exported_interface_has_or_is_using_private_name_0: diag(4045, 1, "Return_type_of_constructor_signature_from_exported_interface_has_or_is_using_private_name_0_4045", "Return type of constructor signature from exported interface has or is using private name '{0}'."), Return_type_of_call_signature_from_exported_interface_has_or_is_using_name_0_from_private_module_1: diag(4046, 1, "Return_type_of_call_signature_from_exported_interface_has_or_is_using_name_0_from_private_module_1_4046", "Return type of call signature from exported interface has or is using name '{0}' from private module '{1}'."), Return_type_of_call_signature_from_exported_interface_has_or_is_using_private_name_0: diag(4047, 1, "Return_type_of_call_signature_from_exported_interface_has_or_is_using_private_name_0_4047", "Return type of call signature from exported interface has or is using private name '{0}'."), Return_type_of_index_signature_from_exported_interface_has_or_is_using_name_0_from_private_module_1: diag(4048, 1, "Return_type_of_index_signature_from_exported_interface_has_or_is_using_name_0_from_private_module_1_4048", "Return type of index signature from exported interface has or is using name '{0}' from private module '{1}'."), Return_type_of_index_signature_from_exported_interface_has_or_is_using_private_name_0: diag(4049, 1, "Return_type_of_index_signature_from_exported_interface_has_or_is_using_private_name_0_4049", "Return type of index signature from exported interface has or is using private name '{0}'."), Return_type_of_public_static_method_from_exported_class_has_or_is_using_name_0_from_external_module_1_but_cannot_be_named: diag(4050, 1, "Return_type_of_public_static_method_from_exported_class_has_or_is_using_name_0_from_external_module__4050", "Return type of public static method from exported class has or is using name '{0}' from external module {1} but cannot be named."), Return_type_of_public_static_method_from_exported_class_has_or_is_using_name_0_from_private_module_1: diag(4051, 1, "Return_type_of_public_static_method_from_exported_class_has_or_is_using_name_0_from_private_module_1_4051", "Return type of public static method from exported class has or is using name '{0}' from private module '{1}'."), Return_type_of_public_static_method_from_exported_class_has_or_is_using_private_name_0: diag(4052, 1, "Return_type_of_public_static_method_from_exported_class_has_or_is_using_private_name_0_4052", "Return type of public static method from exported class has or is using private name '{0}'."), Return_type_of_public_method_from_exported_class_has_or_is_using_name_0_from_external_module_1_but_cannot_be_named: diag(4053, 1, "Return_type_of_public_method_from_exported_class_has_or_is_using_name_0_from_external_module_1_but_c_4053", "Return type of public method from exported class has or is using name '{0}' from external module {1} but cannot be named."), Return_type_of_public_method_from_exported_class_has_or_is_using_name_0_from_private_module_1: diag(4054, 1, "Return_type_of_public_method_from_exported_class_has_or_is_using_name_0_from_private_module_1_4054", "Return type of public method from exported class has or is using name '{0}' from private module '{1}'."), Return_type_of_public_method_from_exported_class_has_or_is_using_private_name_0: diag(4055, 1, "Return_type_of_public_method_from_exported_class_has_or_is_using_private_name_0_4055", "Return type of public method from exported class has or is using private name '{0}'."), Return_type_of_method_from_exported_interface_has_or_is_using_name_0_from_private_module_1: diag(4056, 1, "Return_type_of_method_from_exported_interface_has_or_is_using_name_0_from_private_module_1_4056", "Return type of method from exported interface has or is using name '{0}' from private module '{1}'."), Return_type_of_method_from_exported_interface_has_or_is_using_private_name_0: diag(4057, 1, "Return_type_of_method_from_exported_interface_has_or_is_using_private_name_0_4057", "Return type of method from exported interface has or is using private name '{0}'."), Return_type_of_exported_function_has_or_is_using_name_0_from_external_module_1_but_cannot_be_named: diag(4058, 1, "Return_type_of_exported_function_has_or_is_using_name_0_from_external_module_1_but_cannot_be_named_4058", "Return type of exported function has or is using name '{0}' from external module {1} but cannot be named."), Return_type_of_exported_function_has_or_is_using_name_0_from_private_module_1: diag(4059, 1, "Return_type_of_exported_function_has_or_is_using_name_0_from_private_module_1_4059", "Return type of exported function has or is using name '{0}' from private module '{1}'."), Return_type_of_exported_function_has_or_is_using_private_name_0: diag(4060, 1, "Return_type_of_exported_function_has_or_is_using_private_name_0_4060", "Return type of exported function has or is using private name '{0}'."), Parameter_0_of_constructor_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4061, 1, "Parameter_0_of_constructor_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_can_4061", "Parameter '{0}' of constructor from exported class has or is using name '{1}' from external module {2} but cannot be named."), Parameter_0_of_constructor_from_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4062, 1, "Parameter_0_of_constructor_from_exported_class_has_or_is_using_name_1_from_private_module_2_4062", "Parameter '{0}' of constructor from exported class has or is using name '{1}' from private module '{2}'."), Parameter_0_of_constructor_from_exported_class_has_or_is_using_private_name_1: diag(4063, 1, "Parameter_0_of_constructor_from_exported_class_has_or_is_using_private_name_1_4063", "Parameter '{0}' of constructor from exported class has or is using private name '{1}'."), Parameter_0_of_constructor_signature_from_exported_interface_has_or_is_using_name_1_from_private_module_2: diag(4064, 1, "Parameter_0_of_constructor_signature_from_exported_interface_has_or_is_using_name_1_from_private_mod_4064", "Parameter '{0}' of constructor signature from exported interface has or is using name '{1}' from private module '{2}'."), Parameter_0_of_constructor_signature_from_exported_interface_has_or_is_using_private_name_1: diag(4065, 1, "Parameter_0_of_constructor_signature_from_exported_interface_has_or_is_using_private_name_1_4065", "Parameter '{0}' of constructor signature from exported interface has or is using private name '{1}'."), Parameter_0_of_call_signature_from_exported_interface_has_or_is_using_name_1_from_private_module_2: diag(4066, 1, "Parameter_0_of_call_signature_from_exported_interface_has_or_is_using_name_1_from_private_module_2_4066", "Parameter '{0}' of call signature from exported interface has or is using name '{1}' from private module '{2}'."), Parameter_0_of_call_signature_from_exported_interface_has_or_is_using_private_name_1: diag(4067, 1, "Parameter_0_of_call_signature_from_exported_interface_has_or_is_using_private_name_1_4067", "Parameter '{0}' of call signature from exported interface has or is using private name '{1}'."), Parameter_0_of_public_static_method_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4068, 1, "Parameter_0_of_public_static_method_from_exported_class_has_or_is_using_name_1_from_external_module__4068", "Parameter '{0}' of public static method from exported class has or is using name '{1}' from external module {2} but cannot be named."), Parameter_0_of_public_static_method_from_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4069, 1, "Parameter_0_of_public_static_method_from_exported_class_has_or_is_using_name_1_from_private_module_2_4069", "Parameter '{0}' of public static method from exported class has or is using name '{1}' from private module '{2}'."), Parameter_0_of_public_static_method_from_exported_class_has_or_is_using_private_name_1: diag(4070, 1, "Parameter_0_of_public_static_method_from_exported_class_has_or_is_using_private_name_1_4070", "Parameter '{0}' of public static method from exported class has or is using private name '{1}'."), Parameter_0_of_public_method_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4071, 1, "Parameter_0_of_public_method_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_c_4071", "Parameter '{0}' of public method from exported class has or is using name '{1}' from external module {2} but cannot be named."), Parameter_0_of_public_method_from_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4072, 1, "Parameter_0_of_public_method_from_exported_class_has_or_is_using_name_1_from_private_module_2_4072", "Parameter '{0}' of public method from exported class has or is using name '{1}' from private module '{2}'."), Parameter_0_of_public_method_from_exported_class_has_or_is_using_private_name_1: diag(4073, 1, "Parameter_0_of_public_method_from_exported_class_has_or_is_using_private_name_1_4073", "Parameter '{0}' of public method from exported class has or is using private name '{1}'."), Parameter_0_of_method_from_exported_interface_has_or_is_using_name_1_from_private_module_2: diag(4074, 1, "Parameter_0_of_method_from_exported_interface_has_or_is_using_name_1_from_private_module_2_4074", "Parameter '{0}' of method from exported interface has or is using name '{1}' from private module '{2}'."), Parameter_0_of_method_from_exported_interface_has_or_is_using_private_name_1: diag(4075, 1, "Parameter_0_of_method_from_exported_interface_has_or_is_using_private_name_1_4075", "Parameter '{0}' of method from exported interface has or is using private name '{1}'."), Parameter_0_of_exported_function_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4076, 1, "Parameter_0_of_exported_function_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named_4076", "Parameter '{0}' of exported function has or is using name '{1}' from external module {2} but cannot be named."), Parameter_0_of_exported_function_has_or_is_using_name_1_from_private_module_2: diag(4077, 1, "Parameter_0_of_exported_function_has_or_is_using_name_1_from_private_module_2_4077", "Parameter '{0}' of exported function has or is using name '{1}' from private module '{2}'."), Parameter_0_of_exported_function_has_or_is_using_private_name_1: diag(4078, 1, "Parameter_0_of_exported_function_has_or_is_using_private_name_1_4078", "Parameter '{0}' of exported function has or is using private name '{1}'."), Exported_type_alias_0_has_or_is_using_private_name_1: diag(4081, 1, "Exported_type_alias_0_has_or_is_using_private_name_1_4081", "Exported type alias '{0}' has or is using private name '{1}'."), Default_export_of_the_module_has_or_is_using_private_name_0: diag(4082, 1, "Default_export_of_the_module_has_or_is_using_private_name_0_4082", "Default export of the module has or is using private name '{0}'."), Type_parameter_0_of_exported_type_alias_has_or_is_using_private_name_1: diag(4083, 1, "Type_parameter_0_of_exported_type_alias_has_or_is_using_private_name_1_4083", "Type parameter '{0}' of exported type alias has or is using private name '{1}'."), Exported_type_alias_0_has_or_is_using_private_name_1_from_module_2: diag(4084, 1, "Exported_type_alias_0_has_or_is_using_private_name_1_from_module_2_4084", "Exported type alias '{0}' has or is using private name '{1}' from module {2}."), Extends_clause_for_inferred_type_0_has_or_is_using_private_name_1: diag(4085, 1, "Extends_clause_for_inferred_type_0_has_or_is_using_private_name_1_4085", "Extends clause for inferred type '{0}' has or is using private name '{1}'."), Parameter_0_of_index_signature_from_exported_interface_has_or_is_using_name_1_from_private_module_2: diag(4091, 1, "Parameter_0_of_index_signature_from_exported_interface_has_or_is_using_name_1_from_private_module_2_4091", "Parameter '{0}' of index signature from exported interface has or is using name '{1}' from private module '{2}'."), Parameter_0_of_index_signature_from_exported_interface_has_or_is_using_private_name_1: diag(4092, 1, "Parameter_0_of_index_signature_from_exported_interface_has_or_is_using_private_name_1_4092", "Parameter '{0}' of index signature from exported interface has or is using private name '{1}'."), Property_0_of_exported_anonymous_class_type_may_not_be_private_or_protected: diag(4094, 1, "Property_0_of_exported_anonymous_class_type_may_not_be_private_or_protected_4094", "Property '{0}' of exported anonymous class type may not be private or protected."), Public_static_method_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4095, 1, "Public_static_method_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_4095", "Public static method '{0}' of exported class has or is using name '{1}' from external module {2} but cannot be named."), Public_static_method_0_of_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4096, 1, "Public_static_method_0_of_exported_class_has_or_is_using_name_1_from_private_module_2_4096", "Public static method '{0}' of exported class has or is using name '{1}' from private module '{2}'."), Public_static_method_0_of_exported_class_has_or_is_using_private_name_1: diag(4097, 1, "Public_static_method_0_of_exported_class_has_or_is_using_private_name_1_4097", "Public static method '{0}' of exported class has or is using private name '{1}'."), Public_method_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4098, 1, "Public_method_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named_4098", "Public method '{0}' of exported class has or is using name '{1}' from external module {2} but cannot be named."), Public_method_0_of_exported_class_has_or_is_using_name_1_from_private_module_2: diag(4099, 1, "Public_method_0_of_exported_class_has_or_is_using_name_1_from_private_module_2_4099", "Public method '{0}' of exported class has or is using name '{1}' from private module '{2}'."), Public_method_0_of_exported_class_has_or_is_using_private_name_1: diag(4100, 1, "Public_method_0_of_exported_class_has_or_is_using_private_name_1_4100", "Public method '{0}' of exported class has or is using private name '{1}'."), Method_0_of_exported_interface_has_or_is_using_name_1_from_private_module_2: diag(4101, 1, "Method_0_of_exported_interface_has_or_is_using_name_1_from_private_module_2_4101", "Method '{0}' of exported interface has or is using name '{1}' from private module '{2}'."), Method_0_of_exported_interface_has_or_is_using_private_name_1: diag(4102, 1, "Method_0_of_exported_interface_has_or_is_using_private_name_1_4102", "Method '{0}' of exported interface has or is using private name '{1}'."), Type_parameter_0_of_exported_mapped_object_type_is_using_private_name_1: diag(4103, 1, "Type_parameter_0_of_exported_mapped_object_type_is_using_private_name_1_4103", "Type parameter '{0}' of exported mapped object type is using private name '{1}'."), The_type_0_is_readonly_and_cannot_be_assigned_to_the_mutable_type_1: diag(4104, 1, "The_type_0_is_readonly_and_cannot_be_assigned_to_the_mutable_type_1_4104", "The type '{0}' is 'readonly' and cannot be assigned to the mutable type '{1}'."), Private_or_protected_member_0_cannot_be_accessed_on_a_type_parameter: diag(4105, 1, "Private_or_protected_member_0_cannot_be_accessed_on_a_type_parameter_4105", "Private or protected member '{0}' cannot be accessed on a type parameter."), Parameter_0_of_accessor_has_or_is_using_private_name_1: diag(4106, 1, "Parameter_0_of_accessor_has_or_is_using_private_name_1_4106", "Parameter '{0}' of accessor has or is using private name '{1}'."), Parameter_0_of_accessor_has_or_is_using_name_1_from_private_module_2: diag(4107, 1, "Parameter_0_of_accessor_has_or_is_using_name_1_from_private_module_2_4107", "Parameter '{0}' of accessor has or is using name '{1}' from private module '{2}'."), Parameter_0_of_accessor_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named: diag(4108, 1, "Parameter_0_of_accessor_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named_4108", "Parameter '{0}' of accessor has or is using name '{1}' from external module '{2}' but cannot be named."), Type_arguments_for_0_circularly_reference_themselves: diag(4109, 1, "Type_arguments_for_0_circularly_reference_themselves_4109", "Type arguments for '{0}' circularly reference themselves."), Tuple_type_arguments_circularly_reference_themselves: diag(4110, 1, "Tuple_type_arguments_circularly_reference_themselves_4110", "Tuple type arguments circularly reference themselves."), Property_0_comes_from_an_index_signature_so_it_must_be_accessed_with_0: diag(4111, 1, "Property_0_comes_from_an_index_signature_so_it_must_be_accessed_with_0_4111", "Property '{0}' comes from an index signature, so it must be accessed with ['{0}']."), This_member_cannot_have_an_override_modifier_because_its_containing_class_0_does_not_extend_another_class: diag(4112, 1, "This_member_cannot_have_an_override_modifier_because_its_containing_class_0_does_not_extend_another__4112", "This member cannot have an 'override' modifier because its containing class '{0}' does not extend another class."), This_member_cannot_have_an_override_modifier_because_it_is_not_declared_in_the_base_class_0: diag(4113, 1, "This_member_cannot_have_an_override_modifier_because_it_is_not_declared_in_the_base_class_0_4113", "This member cannot have an 'override' modifier because it is not declared in the base class '{0}'."), This_member_must_have_an_override_modifier_because_it_overrides_a_member_in_the_base_class_0: diag(4114, 1, "This_member_must_have_an_override_modifier_because_it_overrides_a_member_in_the_base_class_0_4114", "This member must have an 'override' modifier because it overrides a member in the base class '{0}'."), This_parameter_property_must_have_an_override_modifier_because_it_overrides_a_member_in_base_class_0: diag(4115, 1, "This_parameter_property_must_have_an_override_modifier_because_it_overrides_a_member_in_base_class_0_4115", "This parameter property must have an 'override' modifier because it overrides a member in base class '{0}'."), This_member_must_have_an_override_modifier_because_it_overrides_an_abstract_method_that_is_declared_in_the_base_class_0: diag(4116, 1, "This_member_must_have_an_override_modifier_because_it_overrides_an_abstract_method_that_is_declared__4116", "This member must have an 'override' modifier because it overrides an abstract method that is declared in the base class '{0}'."), This_member_cannot_have_an_override_modifier_because_it_is_not_declared_in_the_base_class_0_Did_you_mean_1: diag(4117, 1, "This_member_cannot_have_an_override_modifier_because_it_is_not_declared_in_the_base_class_0_Did_you__4117", "This member cannot have an 'override' modifier because it is not declared in the base class '{0}'. Did you mean '{1}'?"), The_type_of_this_node_cannot_be_serialized_because_its_property_0_cannot_be_serialized: diag(4118, 1, "The_type_of_this_node_cannot_be_serialized_because_its_property_0_cannot_be_serialized_4118", "The type of this node cannot be serialized because its property '{0}' cannot be serialized."), This_member_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_class_0: diag(4119, 1, "This_member_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_4119", "This member must have a JSDoc comment with an '@override' tag because it overrides a member in the base class '{0}'."), This_parameter_property_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_class_0: diag(4120, 1, "This_parameter_property_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_4120", "This parameter property must have a JSDoc comment with an '@override' tag because it overrides a member in the base class '{0}'."), This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_its_containing_class_0_does_not_extend_another_class: diag(4121, 1, "This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_its_containing_class_0_does_not_4121", "This member cannot have a JSDoc comment with an '@override' tag because its containing class '{0}' does not extend another class."), This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_it_is_not_declared_in_the_base_class_0: diag(4122, 1, "This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_it_is_not_declared_in_the_base__4122", "This member cannot have a JSDoc comment with an '@override' tag because it is not declared in the base class '{0}'."), This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_it_is_not_declared_in_the_base_class_0_Did_you_mean_1: diag(4123, 1, "This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_it_is_not_declared_in_the_base__4123", "This member cannot have a JSDoc comment with an 'override' tag because it is not declared in the base class '{0}'. Did you mean '{1}'?"), Compiler_option_0_of_value_1_is_unstable_Use_nightly_TypeScript_to_silence_this_error_Try_updating_with_npm_install_D_typescript_next: diag(4124, 1, "Compiler_option_0_of_value_1_is_unstable_Use_nightly_TypeScript_to_silence_this_error_Try_updating_w_4124", "Compiler option '{0}' of value '{1}' is unstable. Use nightly TypeScript to silence this error. Try updating with 'npm install -D typescript@next'."), Each_declaration_of_0_1_differs_in_its_value_where_2_was_expected_but_3_was_given: diag(4125, 1, "Each_declaration_of_0_1_differs_in_its_value_where_2_was_expected_but_3_was_given_4125", "Each declaration of '{0}.{1}' differs in its value, where '{2}' was expected but '{3}' was given."), One_value_of_0_1_is_the_string_2_and_the_other_is_assumed_to_be_an_unknown_numeric_value: diag(4126, 1, "One_value_of_0_1_is_the_string_2_and_the_other_is_assumed_to_be_an_unknown_numeric_value_4126", "One value of '{0}.{1}' is the string '{2}', and the other is assumed to be an unknown numeric value."), This_member_cannot_have_an_override_modifier_because_its_name_is_dynamic: diag(4127, 1, "This_member_cannot_have_an_override_modifier_because_its_name_is_dynamic_4127", "This member cannot have an 'override' modifier because its name is dynamic."), This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_its_name_is_dynamic: diag(4128, 1, "This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_its_name_is_dynamic_4128", "This member cannot have a JSDoc comment with an '@override' tag because its name is dynamic."), The_current_host_does_not_support_the_0_option: diag(5001, 1, "The_current_host_does_not_support_the_0_option_5001", "The current host does not support the '{0}' option."), Cannot_find_the_common_subdirectory_path_for_the_input_files: diag(5009, 1, "Cannot_find_the_common_subdirectory_path_for_the_input_files_5009", "Cannot find the common subdirectory path for the input files."), File_specification_cannot_end_in_a_recursive_directory_wildcard_Asterisk_Asterisk_Colon_0: diag(5010, 1, "File_specification_cannot_end_in_a_recursive_directory_wildcard_Asterisk_Asterisk_Colon_0_5010", "File specification cannot end in a recursive directory wildcard ('**'): '{0}'."), The_common_source_directory_of_0_is_1_The_rootDir_setting_must_be_explicitly_set_to_this_or_another_path_to_adjust_your_output_s_file_layout: diag(5011, 1, "The_common_source_directory_of_0_is_1_The_rootDir_setting_must_be_explicitly_set_to_this_or_another__5011", "The common source directory of '{0}' is '{1}'. The 'rootDir' setting must be explicitly set to this or another path to adjust your output's file layout."), Cannot_read_file_0_Colon_1: diag(5012, 1, "Cannot_read_file_0_Colon_1_5012", "Cannot read file '{0}': {1}."), Unknown_compiler_option_0: diag(5023, 1, "Unknown_compiler_option_0_5023", "Unknown compiler option '{0}'."), Compiler_option_0_requires_a_value_of_type_1: diag(5024, 1, "Compiler_option_0_requires_a_value_of_type_1_5024", "Compiler option '{0}' requires a value of type {1}."), Unknown_compiler_option_0_Did_you_mean_1: diag(5025, 1, "Unknown_compiler_option_0_Did_you_mean_1_5025", "Unknown compiler option '{0}'. Did you mean '{1}'?"), Could_not_write_file_0_Colon_1: diag(5033, 1, "Could_not_write_file_0_Colon_1_5033", "Could not write file '{0}': {1}."), Option_project_cannot_be_mixed_with_source_files_on_a_command_line: diag(5042, 1, "Option_project_cannot_be_mixed_with_source_files_on_a_command_line_5042", "Option 'project' cannot be mixed with source files on a command line."), Option_isolatedModules_can_only_be_used_when_either_option_module_is_provided_or_option_target_is_ES2015_or_higher: diag(5047, 1, "Option_isolatedModules_can_only_be_used_when_either_option_module_is_provided_or_option_target_is_ES_5047", "Option 'isolatedModules' can only be used when either option '--module' is provided or option 'target' is 'ES2015' or higher."), Option_0_can_only_be_used_when_either_option_inlineSourceMap_or_option_sourceMap_is_provided: diag(5051, 1, "Option_0_can_only_be_used_when_either_option_inlineSourceMap_or_option_sourceMap_is_provided_5051", "Option '{0} can only be used when either option '--inlineSourceMap' or option '--sourceMap' is provided."), Option_0_cannot_be_specified_without_specifying_option_1: diag(5052, 1, "Option_0_cannot_be_specified_without_specifying_option_1_5052", "Option '{0}' cannot be specified without specifying option '{1}'."), Option_0_cannot_be_specified_with_option_1: diag(5053, 1, "Option_0_cannot_be_specified_with_option_1_5053", "Option '{0}' cannot be specified with option '{1}'."), A_tsconfig_json_file_is_already_defined_at_Colon_0: diag(5054, 1, "A_tsconfig_json_file_is_already_defined_at_Colon_0_5054", "A 'tsconfig.json' file is already defined at: '{0}'."), Cannot_write_file_0_because_it_would_overwrite_input_file: diag(5055, 1, "Cannot_write_file_0_because_it_would_overwrite_input_file_5055", "Cannot write file '{0}' because it would overwrite input file."), Cannot_write_file_0_because_it_would_be_overwritten_by_multiple_input_files: diag(5056, 1, "Cannot_write_file_0_because_it_would_be_overwritten_by_multiple_input_files_5056", "Cannot write file '{0}' because it would be overwritten by multiple input files."), Cannot_find_a_tsconfig_json_file_at_the_specified_directory_Colon_0: diag(5057, 1, "Cannot_find_a_tsconfig_json_file_at_the_specified_directory_Colon_0_5057", "Cannot find a tsconfig.json file at the specified directory: '{0}'."), The_specified_path_does_not_exist_Colon_0: diag(5058, 1, "The_specified_path_does_not_exist_Colon_0_5058", "The specified path does not exist: '{0}'."), Invalid_value_for_reactNamespace_0_is_not_a_valid_identifier: diag(5059, 1, "Invalid_value_for_reactNamespace_0_is_not_a_valid_identifier_5059", "Invalid value for '--reactNamespace'. '{0}' is not a valid identifier."), Pattern_0_can_have_at_most_one_Asterisk_character: diag(5061, 1, "Pattern_0_can_have_at_most_one_Asterisk_character_5061", "Pattern '{0}' can have at most one '*' character."), Substitution_0_in_pattern_1_can_have_at_most_one_Asterisk_character: diag(5062, 1, "Substitution_0_in_pattern_1_can_have_at_most_one_Asterisk_character_5062", "Substitution '{0}' in pattern '{1}' can have at most one '*' character."), Substitutions_for_pattern_0_should_be_an_array: diag(5063, 1, "Substitutions_for_pattern_0_should_be_an_array_5063", "Substitutions for pattern '{0}' should be an array."), Substitution_0_for_pattern_1_has_incorrect_type_expected_string_got_2: diag(5064, 1, "Substitution_0_for_pattern_1_has_incorrect_type_expected_string_got_2_5064", "Substitution '{0}' for pattern '{1}' has incorrect type, expected 'string', got '{2}'."), File_specification_cannot_contain_a_parent_directory_that_appears_after_a_recursive_directory_wildcard_Asterisk_Asterisk_Colon_0: diag(5065, 1, "File_specification_cannot_contain_a_parent_directory_that_appears_after_a_recursive_directory_wildca_5065", "File specification cannot contain a parent directory ('..') that appears after a recursive directory wildcard ('**'): '{0}'."), Substitutions_for_pattern_0_shouldn_t_be_an_empty_array: diag(5066, 1, "Substitutions_for_pattern_0_shouldn_t_be_an_empty_array_5066", "Substitutions for pattern '{0}' shouldn't be an empty array."), Invalid_value_for_jsxFactory_0_is_not_a_valid_identifier_or_qualified_name: diag(5067, 1, "Invalid_value_for_jsxFactory_0_is_not_a_valid_identifier_or_qualified_name_5067", "Invalid value for 'jsxFactory'. '{0}' is not a valid identifier or qualified-name."), Adding_a_tsconfig_json_file_will_help_organize_projects_that_contain_both_TypeScript_and_JavaScript_files_Learn_more_at_https_Colon_Slash_Slashaka_ms_Slashtsconfig: diag(5068, 1, "Adding_a_tsconfig_json_file_will_help_organize_projects_that_contain_both_TypeScript_and_JavaScript__5068", "Adding a tsconfig.json file will help organize projects that contain both TypeScript and JavaScript files. Learn more at https://aka.ms/tsconfig."), Option_0_cannot_be_specified_without_specifying_option_1_or_option_2: diag(5069, 1, "Option_0_cannot_be_specified_without_specifying_option_1_or_option_2_5069", "Option '{0}' cannot be specified without specifying option '{1}' or option '{2}'."), Option_resolveJsonModule_cannot_be_specified_when_moduleResolution_is_set_to_classic: diag(5070, 1, "Option_resolveJsonModule_cannot_be_specified_when_moduleResolution_is_set_to_classic_5070", "Option '--resolveJsonModule' cannot be specified when 'moduleResolution' is set to 'classic'."), Option_resolveJsonModule_cannot_be_specified_when_module_is_set_to_none_system_or_umd: diag(5071, 1, "Option_resolveJsonModule_cannot_be_specified_when_module_is_set_to_none_system_or_umd_5071", "Option '--resolveJsonModule' cannot be specified when 'module' is set to 'none', 'system', or 'umd'."), Unknown_build_option_0: diag(5072, 1, "Unknown_build_option_0_5072", "Unknown build option '{0}'."), Build_option_0_requires_a_value_of_type_1: diag(5073, 1, "Build_option_0_requires_a_value_of_type_1_5073", "Build option '{0}' requires a value of type {1}."), Option_incremental_can_only_be_specified_using_tsconfig_emitting_to_single_file_or_when_option_tsBuildInfoFile_is_specified: diag(5074, 1, "Option_incremental_can_only_be_specified_using_tsconfig_emitting_to_single_file_or_when_option_tsBui_5074", "Option '--incremental' can only be specified using tsconfig, emitting to single file or when option '--tsBuildInfoFile' is specified."), _0_is_assignable_to_the_constraint_of_type_1_but_1_could_be_instantiated_with_a_different_subtype_of_constraint_2: diag(5075, 1, "_0_is_assignable_to_the_constraint_of_type_1_but_1_could_be_instantiated_with_a_different_subtype_of_5075", "'{0}' is assignable to the constraint of type '{1}', but '{1}' could be instantiated with a different subtype of constraint '{2}'."), _0_and_1_operations_cannot_be_mixed_without_parentheses: diag(5076, 1, "_0_and_1_operations_cannot_be_mixed_without_parentheses_5076", "'{0}' and '{1}' operations cannot be mixed without parentheses."), Unknown_build_option_0_Did_you_mean_1: diag(5077, 1, "Unknown_build_option_0_Did_you_mean_1_5077", "Unknown build option '{0}'. Did you mean '{1}'?"), Unknown_watch_option_0: diag(5078, 1, "Unknown_watch_option_0_5078", "Unknown watch option '{0}'."), Unknown_watch_option_0_Did_you_mean_1: diag(5079, 1, "Unknown_watch_option_0_Did_you_mean_1_5079", "Unknown watch option '{0}'. Did you mean '{1}'?"), Watch_option_0_requires_a_value_of_type_1: diag(5080, 1, "Watch_option_0_requires_a_value_of_type_1_5080", "Watch option '{0}' requires a value of type {1}."), Cannot_find_a_tsconfig_json_file_at_the_current_directory_Colon_0: diag(5081, 1, "Cannot_find_a_tsconfig_json_file_at_the_current_directory_Colon_0_5081", "Cannot find a tsconfig.json file at the current directory: {0}."), _0_could_be_instantiated_with_an_arbitrary_type_which_could_be_unrelated_to_1: diag(5082, 1, "_0_could_be_instantiated_with_an_arbitrary_type_which_could_be_unrelated_to_1_5082", "'{0}' could be instantiated with an arbitrary type which could be unrelated to '{1}'."), Cannot_read_file_0: diag(5083, 1, "Cannot_read_file_0_5083", "Cannot read file '{0}'."), A_tuple_member_cannot_be_both_optional_and_rest: diag(5085, 1, "A_tuple_member_cannot_be_both_optional_and_rest_5085", "A tuple member cannot be both optional and rest."), A_labeled_tuple_element_is_declared_as_optional_with_a_question_mark_after_the_name_and_before_the_colon_rather_than_after_the_type: diag(5086, 1, "A_labeled_tuple_element_is_declared_as_optional_with_a_question_mark_after_the_name_and_before_the_c_5086", "A labeled tuple element is declared as optional with a question mark after the name and before the colon, rather than after the type."), A_labeled_tuple_element_is_declared_as_rest_with_a_before_the_name_rather_than_before_the_type: diag(5087, 1, "A_labeled_tuple_element_is_declared_as_rest_with_a_before_the_name_rather_than_before_the_type_5087", "A labeled tuple element is declared as rest with a '...' before the name, rather than before the type."), The_inferred_type_of_0_references_a_type_with_a_cyclic_structure_which_cannot_be_trivially_serialized_A_type_annotation_is_necessary: diag(5088, 1, "The_inferred_type_of_0_references_a_type_with_a_cyclic_structure_which_cannot_be_trivially_serialize_5088", "The inferred type of '{0}' references a type with a cyclic structure which cannot be trivially serialized. A type annotation is necessary."), Option_0_cannot_be_specified_when_option_jsx_is_1: diag(5089, 1, "Option_0_cannot_be_specified_when_option_jsx_is_1_5089", "Option '{0}' cannot be specified when option 'jsx' is '{1}'."), Non_relative_paths_are_not_allowed_when_baseUrl_is_not_set_Did_you_forget_a_leading_Slash: diag(5090, 1, "Non_relative_paths_are_not_allowed_when_baseUrl_is_not_set_Did_you_forget_a_leading_Slash_5090", "Non-relative paths are not allowed when 'baseUrl' is not set. Did you forget a leading './'?"), Option_preserveConstEnums_cannot_be_disabled_when_0_is_enabled: diag(5091, 1, "Option_preserveConstEnums_cannot_be_disabled_when_0_is_enabled_5091", "Option 'preserveConstEnums' cannot be disabled when '{0}' is enabled."), The_root_value_of_a_0_file_must_be_an_object: diag(5092, 1, "The_root_value_of_a_0_file_must_be_an_object_5092", "The root value of a '{0}' file must be an object."), Compiler_option_0_may_only_be_used_with_build: diag(5093, 1, "Compiler_option_0_may_only_be_used_with_build_5093", "Compiler option '--{0}' may only be used with '--build'."), Compiler_option_0_may_not_be_used_with_build: diag(5094, 1, "Compiler_option_0_may_not_be_used_with_build_5094", "Compiler option '--{0}' may not be used with '--build'."), Option_0_can_only_be_used_when_module_is_set_to_preserve_commonjs_or_es2015_or_later: diag(5095, 1, "Option_0_can_only_be_used_when_module_is_set_to_preserve_commonjs_or_es2015_or_later_5095", "Option '{0}' can only be used when 'module' is set to 'preserve', 'commonjs', or 'es2015' or later."), Option_allowImportingTsExtensions_can_only_be_used_when_one_of_noEmit_emitDeclarationOnly_or_rewriteRelativeImportExtensions_is_set: diag(5096, 1, "Option_allowImportingTsExtensions_can_only_be_used_when_one_of_noEmit_emitDeclarationOnly_or_rewrite_5096", "Option 'allowImportingTsExtensions' can only be used when one of 'noEmit', 'emitDeclarationOnly', or 'rewriteRelativeImportExtensions' is set."), An_import_path_can_only_end_with_a_0_extension_when_allowImportingTsExtensions_is_enabled: diag(5097, 1, "An_import_path_can_only_end_with_a_0_extension_when_allowImportingTsExtensions_is_enabled_5097", "An import path can only end with a '{0}' extension when 'allowImportingTsExtensions' is enabled."), Option_0_can_only_be_used_when_moduleResolution_is_set_to_node16_nodenext_or_bundler: diag(5098, 1, "Option_0_can_only_be_used_when_moduleResolution_is_set_to_node16_nodenext_or_bundler_5098", "Option '{0}' can only be used when 'moduleResolution' is set to 'node16', 'nodenext', or 'bundler'."), Option_0_is_deprecated_and_will_stop_functioning_in_TypeScript_1_Specify_compilerOption_ignoreDeprecations_Colon_2_to_silence_this_error: diag(5101, 1, "Option_0_is_deprecated_and_will_stop_functioning_in_TypeScript_1_Specify_compilerOption_ignoreDeprec_5101", `Option '{0}' is deprecated and will stop functioning in TypeScript {1}. Specify compilerOption '"ignoreDeprecations": "{2}"' to silence this error.`), Option_0_has_been_removed_Please_remove_it_from_your_configuration: diag(5102, 1, "Option_0_has_been_removed_Please_remove_it_from_your_configuration_5102", "Option '{0}' has been removed. Please remove it from your configuration."), Invalid_value_for_ignoreDeprecations: diag(5103, 1, "Invalid_value_for_ignoreDeprecations_5103", "Invalid value for '--ignoreDeprecations'."), Option_0_is_redundant_and_cannot_be_specified_with_option_1: diag(5104, 1, "Option_0_is_redundant_and_cannot_be_specified_with_option_1_5104", "Option '{0}' is redundant and cannot be specified with option '{1}'."), Option_verbatimModuleSyntax_cannot_be_used_when_module_is_set_to_UMD_AMD_or_System: diag(5105, 1, "Option_verbatimModuleSyntax_cannot_be_used_when_module_is_set_to_UMD_AMD_or_System_5105", "Option 'verbatimModuleSyntax' cannot be used when 'module' is set to 'UMD', 'AMD', or 'System'."), Use_0_instead: diag(5106, 3, "Use_0_instead_5106", "Use '{0}' instead."), Option_0_1_is_deprecated_and_will_stop_functioning_in_TypeScript_2_Specify_compilerOption_ignoreDeprecations_Colon_3_to_silence_this_error: diag(5107, 1, "Option_0_1_is_deprecated_and_will_stop_functioning_in_TypeScript_2_Specify_compilerOption_ignoreDepr_5107", `Option '{0}={1}' is deprecated and will stop functioning in TypeScript {2}. Specify compilerOption '"ignoreDeprecations": "{3}"' to silence this error.`), Option_0_1_has_been_removed_Please_remove_it_from_your_configuration: diag(5108, 1, "Option_0_1_has_been_removed_Please_remove_it_from_your_configuration_5108", "Option '{0}={1}' has been removed. Please remove it from your configuration."), Option_moduleResolution_must_be_set_to_0_or_left_unspecified_when_option_module_is_set_to_1: diag(5109, 1, "Option_moduleResolution_must_be_set_to_0_or_left_unspecified_when_option_module_is_set_to_1_5109", "Option 'moduleResolution' must be set to '{0}' (or left unspecified) when option 'module' is set to '{1}'."), Option_module_must_be_set_to_0_when_option_moduleResolution_is_set_to_1: diag(5110, 1, "Option_module_must_be_set_to_0_when_option_moduleResolution_is_set_to_1_5110", "Option 'module' must be set to '{0}' when option 'moduleResolution' is set to '{1}'."), Visit_https_Colon_Slash_Slashaka_ms_Slashts6_for_migration_information: diag(5111, 3, "Visit_https_Colon_Slash_Slashaka_ms_Slashts6_for_migration_information_5111", "Visit https://aka.ms/ts6 for migration information."), tsconfig_json_is_present_but_will_not_be_loaded_if_files_are_specified_on_commandline_Use_ignoreConfig_to_skip_this_error: diag(5112, 1, "tsconfig_json_is_present_but_will_not_be_loaded_if_files_are_specified_on_commandline_Use_ignoreConf_5112", "tsconfig.json is present but will not be loaded if files are specified on commandline. Use '--ignoreConfig' to skip this error."), Generates_a_sourcemap_for_each_corresponding_d_ts_file: diag(6000, 3, "Generates_a_sourcemap_for_each_corresponding_d_ts_file_6000", "Generates a sourcemap for each corresponding '.d.ts' file."), Concatenate_and_emit_output_to_single_file: diag(6001, 3, "Concatenate_and_emit_output_to_single_file_6001", "Concatenate and emit output to single file."), Generates_corresponding_d_ts_file: diag(6002, 3, "Generates_corresponding_d_ts_file_6002", "Generates corresponding '.d.ts' file."), Specify_the_location_where_debugger_should_locate_TypeScript_files_instead_of_source_locations: diag(6004, 3, "Specify_the_location_where_debugger_should_locate_TypeScript_files_instead_of_source_locations_6004", "Specify the location where debugger should locate TypeScript files instead of source locations."), Watch_input_files: diag(6005, 3, "Watch_input_files_6005", "Watch input files."), Redirect_output_structure_to_the_directory: diag(6006, 3, "Redirect_output_structure_to_the_directory_6006", "Redirect output structure to the directory."), Do_not_erase_const_enum_declarations_in_generated_code: diag(6007, 3, "Do_not_erase_const_enum_declarations_in_generated_code_6007", "Do not erase const enum declarations in generated code."), Do_not_emit_outputs_if_any_errors_were_reported: diag(6008, 3, "Do_not_emit_outputs_if_any_errors_were_reported_6008", "Do not emit outputs if any errors were reported."), Do_not_emit_comments_to_output: diag(6009, 3, "Do_not_emit_comments_to_output_6009", "Do not emit comments to output."), Do_not_emit_outputs: diag(6010, 3, "Do_not_emit_outputs_6010", "Do not emit outputs."), Allow_default_imports_from_modules_with_no_default_export_This_does_not_affect_code_emit_just_typechecking: diag(6011, 3, "Allow_default_imports_from_modules_with_no_default_export_This_does_not_affect_code_emit_just_typech_6011", "Allow default imports from modules with no default export. This does not affect code emit, just typechecking."), Skip_type_checking_of_declaration_files: diag(6012, 3, "Skip_type_checking_of_declaration_files_6012", "Skip type checking of declaration files."), Do_not_resolve_the_real_path_of_symlinks: diag(6013, 3, "Do_not_resolve_the_real_path_of_symlinks_6013", "Do not resolve the real path of symlinks."), Only_emit_d_ts_declaration_files: diag(6014, 3, "Only_emit_d_ts_declaration_files_6014", "Only emit '.d.ts' declaration files."), Specify_ECMAScript_target_version: diag(6015, 3, "Specify_ECMAScript_target_version_6015", "Specify ECMAScript target version."), Specify_module_code_generation: diag(6016, 3, "Specify_module_code_generation_6016", "Specify module code generation."), Print_this_message: diag(6017, 3, "Print_this_message_6017", "Print this message."), Print_the_compiler_s_version: diag(6019, 3, "Print_the_compiler_s_version_6019", "Print the compiler's version."), Compile_the_project_given_the_path_to_its_configuration_file_or_to_a_folder_with_a_tsconfig_json: diag(6020, 3, "Compile_the_project_given_the_path_to_its_configuration_file_or_to_a_folder_with_a_tsconfig_json_6020", "Compile the project given the path to its configuration file, or to a folder with a 'tsconfig.json'."), Syntax_Colon_0: diag(6023, 3, "Syntax_Colon_0_6023", "Syntax: {0}"), options: diag(6024, 3, "options_6024", "options"), file: diag(6025, 3, "file_6025", "file"), Examples_Colon_0: diag(6026, 3, "Examples_Colon_0_6026", "Examples: {0}"), Options_Colon: diag(6027, 3, "Options_Colon_6027", "Options:"), Version_0: diag(6029, 3, "Version_0_6029", "Version {0}"), Insert_command_line_options_and_files_from_a_file: diag(6030, 3, "Insert_command_line_options_and_files_from_a_file_6030", "Insert command line options and files from a file."), Starting_compilation_in_watch_mode: diag(6031, 3, "Starting_compilation_in_watch_mode_6031", "Starting compilation in watch mode..."), File_change_detected_Starting_incremental_compilation: diag(6032, 3, "File_change_detected_Starting_incremental_compilation_6032", "File change detected. Starting incremental compilation..."), KIND: diag(6034, 3, "KIND_6034", "KIND"), FILE: diag(6035, 3, "FILE_6035", "FILE"), VERSION: diag(6036, 3, "VERSION_6036", "VERSION"), LOCATION: diag(6037, 3, "LOCATION_6037", "LOCATION"), DIRECTORY: diag(6038, 3, "DIRECTORY_6038", "DIRECTORY"), STRATEGY: diag(6039, 3, "STRATEGY_6039", "STRATEGY"), FILE_OR_DIRECTORY: diag(6040, 3, "FILE_OR_DIRECTORY_6040", "FILE OR DIRECTORY"), Errors_Files: diag(6041, 3, "Errors_Files_6041", "Errors Files"), Generates_corresponding_map_file: diag(6043, 3, "Generates_corresponding_map_file_6043", "Generates corresponding '.map' file."), Compiler_option_0_expects_an_argument: diag(6044, 1, "Compiler_option_0_expects_an_argument_6044", "Compiler option '{0}' expects an argument."), Unterminated_quoted_string_in_response_file_0: diag(6045, 1, "Unterminated_quoted_string_in_response_file_0_6045", "Unterminated quoted string in response file '{0}'."), Argument_for_0_option_must_be_Colon_1: diag(6046, 1, "Argument_for_0_option_must_be_Colon_1_6046", "Argument for '{0}' option must be: {1}."), Locale_must_be_of_the_form_language_or_language_territory_For_example_0_or_1: diag(6048, 1, "Locale_must_be_of_the_form_language_or_language_territory_For_example_0_or_1_6048", "Locale must be of the form or -. For example '{0}' or '{1}'."), Unable_to_open_file_0: diag(6050, 1, "Unable_to_open_file_0_6050", "Unable to open file '{0}'."), Corrupted_locale_file_0: diag(6051, 1, "Corrupted_locale_file_0_6051", "Corrupted locale file {0}."), Raise_error_on_expressions_and_declarations_with_an_implied_any_type: diag(6052, 3, "Raise_error_on_expressions_and_declarations_with_an_implied_any_type_6052", "Raise error on expressions and declarations with an implied 'any' type."), File_0_not_found: diag(6053, 1, "File_0_not_found_6053", "File '{0}' not found."), File_0_has_an_unsupported_extension_The_only_supported_extensions_are_1: diag(6054, 1, "File_0_has_an_unsupported_extension_The_only_supported_extensions_are_1_6054", "File '{0}' has an unsupported extension. The only supported extensions are {1}."), Suppress_noImplicitAny_errors_for_indexing_objects_lacking_index_signatures: diag(6055, 3, "Suppress_noImplicitAny_errors_for_indexing_objects_lacking_index_signatures_6055", "Suppress noImplicitAny errors for indexing objects lacking index signatures."), Do_not_emit_declarations_for_code_that_has_an_internal_annotation: diag(6056, 3, "Do_not_emit_declarations_for_code_that_has_an_internal_annotation_6056", "Do not emit declarations for code that has an '@internal' annotation."), Specify_the_root_directory_of_input_files_Use_to_control_the_output_directory_structure_with_outDir: diag(6058, 3, "Specify_the_root_directory_of_input_files_Use_to_control_the_output_directory_structure_with_outDir_6058", "Specify the root directory of input files. Use to control the output directory structure with --outDir."), File_0_is_not_under_rootDir_1_rootDir_is_expected_to_contain_all_source_files: diag(6059, 1, "File_0_is_not_under_rootDir_1_rootDir_is_expected_to_contain_all_source_files_6059", "File '{0}' is not under 'rootDir' '{1}'. 'rootDir' is expected to contain all source files."), Specify_the_end_of_line_sequence_to_be_used_when_emitting_files_Colon_CRLF_dos_or_LF_unix: diag(6060, 3, "Specify_the_end_of_line_sequence_to_be_used_when_emitting_files_Colon_CRLF_dos_or_LF_unix_6060", "Specify the end of line sequence to be used when emitting files: 'CRLF' (dos) or 'LF' (unix)."), NEWLINE: diag(6061, 3, "NEWLINE_6061", "NEWLINE"), Option_0_can_only_be_specified_in_tsconfig_json_file_or_set_to_null_on_command_line: diag(6064, 1, "Option_0_can_only_be_specified_in_tsconfig_json_file_or_set_to_null_on_command_line_6064", "Option '{0}' can only be specified in 'tsconfig.json' file or set to 'null' on command line."), Enables_experimental_support_for_ES7_decorators: diag(6065, 3, "Enables_experimental_support_for_ES7_decorators_6065", "Enables experimental support for ES7 decorators."), Enables_experimental_support_for_emitting_type_metadata_for_decorators: diag(6066, 3, "Enables_experimental_support_for_emitting_type_metadata_for_decorators_6066", "Enables experimental support for emitting type metadata for decorators."), Initializes_a_TypeScript_project_and_creates_a_tsconfig_json_file: diag(6070, 3, "Initializes_a_TypeScript_project_and_creates_a_tsconfig_json_file_6070", "Initializes a TypeScript project and creates a tsconfig.json file."), Successfully_created_a_tsconfig_json_file: diag(6071, 3, "Successfully_created_a_tsconfig_json_file_6071", "Successfully created a tsconfig.json file."), Suppress_excess_property_checks_for_object_literals: diag(6072, 3, "Suppress_excess_property_checks_for_object_literals_6072", "Suppress excess property checks for object literals."), Stylize_errors_and_messages_using_color_and_context_experimental: diag(6073, 3, "Stylize_errors_and_messages_using_color_and_context_experimental_6073", "Stylize errors and messages using color and context (experimental)."), Do_not_report_errors_on_unused_labels: diag(6074, 3, "Do_not_report_errors_on_unused_labels_6074", "Do not report errors on unused labels."), Report_error_when_not_all_code_paths_in_function_return_a_value: diag(6075, 3, "Report_error_when_not_all_code_paths_in_function_return_a_value_6075", "Report error when not all code paths in function return a value."), Report_errors_for_fallthrough_cases_in_switch_statement: diag(6076, 3, "Report_errors_for_fallthrough_cases_in_switch_statement_6076", "Report errors for fallthrough cases in switch statement."), Do_not_report_errors_on_unreachable_code: diag(6077, 3, "Do_not_report_errors_on_unreachable_code_6077", "Do not report errors on unreachable code."), Disallow_inconsistently_cased_references_to_the_same_file: diag(6078, 3, "Disallow_inconsistently_cased_references_to_the_same_file_6078", "Disallow inconsistently-cased references to the same file."), Specify_library_files_to_be_included_in_the_compilation: diag(6079, 3, "Specify_library_files_to_be_included_in_the_compilation_6079", "Specify library files to be included in the compilation."), Specify_JSX_code_generation: diag(6080, 3, "Specify_JSX_code_generation_6080", "Specify JSX code generation."), Only_amd_and_system_modules_are_supported_alongside_0: diag(6082, 1, "Only_amd_and_system_modules_are_supported_alongside_0_6082", "Only 'amd' and 'system' modules are supported alongside --{0}."), Base_directory_to_resolve_non_absolute_module_names: diag(6083, 3, "Base_directory_to_resolve_non_absolute_module_names_6083", "Base directory to resolve non-absolute module names."), Deprecated_Use_jsxFactory_instead_Specify_the_object_invoked_for_createElement_when_targeting_react_JSX_emit: diag(6084, 3, "Deprecated_Use_jsxFactory_instead_Specify_the_object_invoked_for_createElement_when_targeting_react__6084", "[Deprecated] Use '--jsxFactory' instead. Specify the object invoked for createElement when targeting 'react' JSX emit"), Enable_tracing_of_the_name_resolution_process: diag(6085, 3, "Enable_tracing_of_the_name_resolution_process_6085", "Enable tracing of the name resolution process."), Resolving_module_0_from_1: diag(6086, 3, "Resolving_module_0_from_1_6086", "======== Resolving module '{0}' from '{1}'. ========"), Explicitly_specified_module_resolution_kind_Colon_0: diag(6087, 3, "Explicitly_specified_module_resolution_kind_Colon_0_6087", "Explicitly specified module resolution kind: '{0}'."), Module_resolution_kind_is_not_specified_using_0: diag(6088, 3, "Module_resolution_kind_is_not_specified_using_0_6088", "Module resolution kind is not specified, using '{0}'."), Module_name_0_was_successfully_resolved_to_1: diag(6089, 3, "Module_name_0_was_successfully_resolved_to_1_6089", "======== Module name '{0}' was successfully resolved to '{1}'. ========"), Module_name_0_was_not_resolved: diag(6090, 3, "Module_name_0_was_not_resolved_6090", "======== Module name '{0}' was not resolved. ========"), paths_option_is_specified_looking_for_a_pattern_to_match_module_name_0: diag(6091, 3, "paths_option_is_specified_looking_for_a_pattern_to_match_module_name_0_6091", "'paths' option is specified, looking for a pattern to match module name '{0}'."), Module_name_0_matched_pattern_1: diag(6092, 3, "Module_name_0_matched_pattern_1_6092", "Module name '{0}', matched pattern '{1}'."), Trying_substitution_0_candidate_module_location_Colon_1: diag(6093, 3, "Trying_substitution_0_candidate_module_location_Colon_1_6093", "Trying substitution '{0}', candidate module location: '{1}'."), Resolving_module_name_0_relative_to_base_url_1_2: diag(6094, 3, "Resolving_module_name_0_relative_to_base_url_1_2_6094", "Resolving module name '{0}' relative to base url '{1}' - '{2}'."), Loading_module_as_file_Slash_folder_candidate_module_location_0_target_file_types_Colon_1: diag(6095, 3, "Loading_module_as_file_Slash_folder_candidate_module_location_0_target_file_types_Colon_1_6095", "Loading module as file / folder, candidate module location '{0}', target file types: {1}."), File_0_does_not_exist: diag(6096, 3, "File_0_does_not_exist_6096", "File '{0}' does not exist."), File_0_exists_use_it_as_a_name_resolution_result: diag(6097, 3, "File_0_exists_use_it_as_a_name_resolution_result_6097", "File '{0}' exists - use it as a name resolution result."), Loading_module_0_from_node_modules_folder_target_file_types_Colon_1: diag(6098, 3, "Loading_module_0_from_node_modules_folder_target_file_types_Colon_1_6098", "Loading module '{0}' from 'node_modules' folder, target file types: {1}."), Found_package_json_at_0: diag(6099, 3, "Found_package_json_at_0_6099", "Found 'package.json' at '{0}'."), package_json_does_not_have_a_0_field: diag(6100, 3, "package_json_does_not_have_a_0_field_6100", "'package.json' does not have a '{0}' field."), package_json_has_0_field_1_that_references_2: diag(6101, 3, "package_json_has_0_field_1_that_references_2_6101", "'package.json' has '{0}' field '{1}' that references '{2}'."), Allow_javascript_files_to_be_compiled: diag(6102, 3, "Allow_javascript_files_to_be_compiled_6102", "Allow javascript files to be compiled."), Checking_if_0_is_the_longest_matching_prefix_for_1_2: diag(6104, 3, "Checking_if_0_is_the_longest_matching_prefix_for_1_2_6104", "Checking if '{0}' is the longest matching prefix for '{1}' - '{2}'."), Expected_type_of_0_field_in_package_json_to_be_1_got_2: diag(6105, 3, "Expected_type_of_0_field_in_package_json_to_be_1_got_2_6105", "Expected type of '{0}' field in 'package.json' to be '{1}', got '{2}'."), baseUrl_option_is_set_to_0_using_this_value_to_resolve_non_relative_module_name_1: diag(6106, 3, "baseUrl_option_is_set_to_0_using_this_value_to_resolve_non_relative_module_name_1_6106", "'baseUrl' option is set to '{0}', using this value to resolve non-relative module name '{1}'."), rootDirs_option_is_set_using_it_to_resolve_relative_module_name_0: diag(6107, 3, "rootDirs_option_is_set_using_it_to_resolve_relative_module_name_0_6107", "'rootDirs' option is set, using it to resolve relative module name '{0}'."), Longest_matching_prefix_for_0_is_1: diag(6108, 3, "Longest_matching_prefix_for_0_is_1_6108", "Longest matching prefix for '{0}' is '{1}'."), Loading_0_from_the_root_dir_1_candidate_location_2: diag(6109, 3, "Loading_0_from_the_root_dir_1_candidate_location_2_6109", "Loading '{0}' from the root dir '{1}', candidate location '{2}'."), Trying_other_entries_in_rootDirs: diag(6110, 3, "Trying_other_entries_in_rootDirs_6110", "Trying other entries in 'rootDirs'."), Module_resolution_using_rootDirs_has_failed: diag(6111, 3, "Module_resolution_using_rootDirs_has_failed_6111", "Module resolution using 'rootDirs' has failed."), Do_not_emit_use_strict_directives_in_module_output: diag(6112, 3, "Do_not_emit_use_strict_directives_in_module_output_6112", "Do not emit 'use strict' directives in module output."), Enable_strict_null_checks: diag(6113, 3, "Enable_strict_null_checks_6113", "Enable strict null checks."), Unknown_option_excludes_Did_you_mean_exclude: diag(6114, 1, "Unknown_option_excludes_Did_you_mean_exclude_6114", "Unknown option 'excludes'. Did you mean 'exclude'?"), Raise_error_on_this_expressions_with_an_implied_any_type: diag(6115, 3, "Raise_error_on_this_expressions_with_an_implied_any_type_6115", "Raise error on 'this' expressions with an implied 'any' type."), Resolving_type_reference_directive_0_containing_file_1_root_directory_2: diag(6116, 3, "Resolving_type_reference_directive_0_containing_file_1_root_directory_2_6116", "======== Resolving type reference directive '{0}', containing file '{1}', root directory '{2}'. ========"), Type_reference_directive_0_was_successfully_resolved_to_1_primary_Colon_2: diag(6119, 3, "Type_reference_directive_0_was_successfully_resolved_to_1_primary_Colon_2_6119", "======== Type reference directive '{0}' was successfully resolved to '{1}', primary: {2}. ========"), Type_reference_directive_0_was_not_resolved: diag(6120, 3, "Type_reference_directive_0_was_not_resolved_6120", "======== Type reference directive '{0}' was not resolved. ========"), Resolving_with_primary_search_path_0: diag(6121, 3, "Resolving_with_primary_search_path_0_6121", "Resolving with primary search path '{0}'."), Root_directory_cannot_be_determined_skipping_primary_search_paths: diag(6122, 3, "Root_directory_cannot_be_determined_skipping_primary_search_paths_6122", "Root directory cannot be determined, skipping primary search paths."), Resolving_type_reference_directive_0_containing_file_1_root_directory_not_set: diag(6123, 3, "Resolving_type_reference_directive_0_containing_file_1_root_directory_not_set_6123", "======== Resolving type reference directive '{0}', containing file '{1}', root directory not set. ========"), Type_declaration_files_to_be_included_in_compilation: diag(6124, 3, "Type_declaration_files_to_be_included_in_compilation_6124", "Type declaration files to be included in compilation."), Looking_up_in_node_modules_folder_initial_location_0: diag(6125, 3, "Looking_up_in_node_modules_folder_initial_location_0_6125", "Looking up in 'node_modules' folder, initial location '{0}'."), Containing_file_is_not_specified_and_root_directory_cannot_be_determined_skipping_lookup_in_node_modules_folder: diag(6126, 3, "Containing_file_is_not_specified_and_root_directory_cannot_be_determined_skipping_lookup_in_node_mod_6126", "Containing file is not specified and root directory cannot be determined, skipping lookup in 'node_modules' folder."), Resolving_type_reference_directive_0_containing_file_not_set_root_directory_1: diag(6127, 3, "Resolving_type_reference_directive_0_containing_file_not_set_root_directory_1_6127", "======== Resolving type reference directive '{0}', containing file not set, root directory '{1}'. ========"), Resolving_type_reference_directive_0_containing_file_not_set_root_directory_not_set: diag(6128, 3, "Resolving_type_reference_directive_0_containing_file_not_set_root_directory_not_set_6128", "======== Resolving type reference directive '{0}', containing file not set, root directory not set. ========"), Resolving_real_path_for_0_result_1: diag(6130, 3, "Resolving_real_path_for_0_result_1_6130", "Resolving real path for '{0}', result '{1}'."), Cannot_compile_modules_using_option_0_unless_the_module_flag_is_amd_or_system: diag(6131, 1, "Cannot_compile_modules_using_option_0_unless_the_module_flag_is_amd_or_system_6131", "Cannot compile modules using option '{0}' unless the '--module' flag is 'amd' or 'system'."), File_name_0_has_a_1_extension_stripping_it: diag(6132, 3, "File_name_0_has_a_1_extension_stripping_it_6132", "File name '{0}' has a '{1}' extension - stripping it."), _0_is_declared_but_its_value_is_never_read: diag(6133, 1, "_0_is_declared_but_its_value_is_never_read_6133", "'{0}' is declared but its value is never read.", true), Report_errors_on_unused_locals: diag(6134, 3, "Report_errors_on_unused_locals_6134", "Report errors on unused locals."), Report_errors_on_unused_parameters: diag(6135, 3, "Report_errors_on_unused_parameters_6135", "Report errors on unused parameters."), The_maximum_dependency_depth_to_search_under_node_modules_and_load_JavaScript_files: diag(6136, 3, "The_maximum_dependency_depth_to_search_under_node_modules_and_load_JavaScript_files_6136", "The maximum dependency depth to search under node_modules and load JavaScript files."), Cannot_import_type_declaration_files_Consider_importing_0_instead_of_1: diag(6137, 1, "Cannot_import_type_declaration_files_Consider_importing_0_instead_of_1_6137", "Cannot import type declaration files. Consider importing '{0}' instead of '{1}'."), Property_0_is_declared_but_its_value_is_never_read: diag(6138, 1, "Property_0_is_declared_but_its_value_is_never_read_6138", "Property '{0}' is declared but its value is never read.", true), Import_emit_helpers_from_tslib: diag(6139, 3, "Import_emit_helpers_from_tslib_6139", "Import emit helpers from 'tslib'."), Auto_discovery_for_typings_is_enabled_in_project_0_Running_extra_resolution_pass_for_module_1_using_cache_location_2: diag(6140, 1, "Auto_discovery_for_typings_is_enabled_in_project_0_Running_extra_resolution_pass_for_module_1_using__6140", "Auto discovery for typings is enabled in project '{0}'. Running extra resolution pass for module '{1}' using cache location '{2}'."), Parse_in_strict_mode_and_emit_use_strict_for_each_source_file: diag(6141, 3, "Parse_in_strict_mode_and_emit_use_strict_for_each_source_file_6141", 'Parse in strict mode and emit "use strict" for each source file.'), Module_0_was_resolved_to_1_but_jsx_is_not_set: diag(6142, 1, "Module_0_was_resolved_to_1_but_jsx_is_not_set_6142", "Module '{0}' was resolved to '{1}', but '--jsx' is not set."), Module_0_was_resolved_as_locally_declared_ambient_module_in_file_1: diag(6144, 3, "Module_0_was_resolved_as_locally_declared_ambient_module_in_file_1_6144", "Module '{0}' was resolved as locally declared ambient module in file '{1}'."), Specify_the_JSX_factory_function_to_use_when_targeting_react_JSX_emit_e_g_React_createElement_or_h: diag(6146, 3, "Specify_the_JSX_factory_function_to_use_when_targeting_react_JSX_emit_e_g_React_createElement_or_h_6146", "Specify the JSX factory function to use when targeting 'react' JSX emit, e.g. 'React.createElement' or 'h'."), Resolution_for_module_0_was_found_in_cache_from_location_1: diag(6147, 3, "Resolution_for_module_0_was_found_in_cache_from_location_1_6147", "Resolution for module '{0}' was found in cache from location '{1}'."), Directory_0_does_not_exist_skipping_all_lookups_in_it: diag(6148, 3, "Directory_0_does_not_exist_skipping_all_lookups_in_it_6148", "Directory '{0}' does not exist, skipping all lookups in it."), Show_diagnostic_information: diag(6149, 3, "Show_diagnostic_information_6149", "Show diagnostic information."), Show_verbose_diagnostic_information: diag(6150, 3, "Show_verbose_diagnostic_information_6150", "Show verbose diagnostic information."), Emit_a_single_file_with_source_maps_instead_of_having_a_separate_file: diag(6151, 3, "Emit_a_single_file_with_source_maps_instead_of_having_a_separate_file_6151", "Emit a single file with source maps instead of having a separate file."), Emit_the_source_alongside_the_sourcemaps_within_a_single_file_requires_inlineSourceMap_or_sourceMap_to_be_set: diag(6152, 3, "Emit_the_source_alongside_the_sourcemaps_within_a_single_file_requires_inlineSourceMap_or_sourceMap__6152", "Emit the source alongside the sourcemaps within a single file; requires '--inlineSourceMap' or '--sourceMap' to be set."), Transpile_each_file_as_a_separate_module_similar_to_ts_transpileModule: diag(6153, 3, "Transpile_each_file_as_a_separate_module_similar_to_ts_transpileModule_6153", "Transpile each file as a separate module (similar to 'ts.transpileModule')."), Print_names_of_generated_files_part_of_the_compilation: diag(6154, 3, "Print_names_of_generated_files_part_of_the_compilation_6154", "Print names of generated files part of the compilation."), Print_names_of_files_part_of_the_compilation: diag(6155, 3, "Print_names_of_files_part_of_the_compilation_6155", "Print names of files part of the compilation."), The_locale_used_when_displaying_messages_to_the_user_e_g_en_us: diag(6156, 3, "The_locale_used_when_displaying_messages_to_the_user_e_g_en_us_6156", "The locale used when displaying messages to the user (e.g. 'en-us')"), Do_not_generate_custom_helper_functions_like_extends_in_compiled_output: diag(6157, 3, "Do_not_generate_custom_helper_functions_like_extends_in_compiled_output_6157", "Do not generate custom helper functions like '__extends' in compiled output."), Do_not_include_the_default_library_file_lib_d_ts: diag(6158, 3, "Do_not_include_the_default_library_file_lib_d_ts_6158", "Do not include the default library file (lib.d.ts)."), Do_not_add_triple_slash_references_or_imported_modules_to_the_list_of_compiled_files: diag(6159, 3, "Do_not_add_triple_slash_references_or_imported_modules_to_the_list_of_compiled_files_6159", "Do not add triple-slash references or imported modules to the list of compiled files."), Deprecated_Use_skipLibCheck_instead_Skip_type_checking_of_default_library_declaration_files: diag(6160, 3, "Deprecated_Use_skipLibCheck_instead_Skip_type_checking_of_default_library_declaration_files_6160", "[Deprecated] Use '--skipLibCheck' instead. Skip type checking of default library declaration files."), List_of_folders_to_include_type_definitions_from: diag(6161, 3, "List_of_folders_to_include_type_definitions_from_6161", "List of folders to include type definitions from."), Disable_size_limitations_on_JavaScript_projects: diag(6162, 3, "Disable_size_limitations_on_JavaScript_projects_6162", "Disable size limitations on JavaScript projects."), The_character_set_of_the_input_files: diag(6163, 3, "The_character_set_of_the_input_files_6163", "The character set of the input files."), Skipping_module_0_that_looks_like_an_absolute_URI_target_file_types_Colon_1: diag(6164, 3, "Skipping_module_0_that_looks_like_an_absolute_URI_target_file_types_Colon_1_6164", "Skipping module '{0}' that looks like an absolute URI, target file types: {1}."), Do_not_truncate_error_messages: diag(6165, 3, "Do_not_truncate_error_messages_6165", "Do not truncate error messages."), Output_directory_for_generated_declaration_files: diag(6166, 3, "Output_directory_for_generated_declaration_files_6166", "Output directory for generated declaration files."), A_series_of_entries_which_re_map_imports_to_lookup_locations_relative_to_the_baseUrl: diag(6167, 3, "A_series_of_entries_which_re_map_imports_to_lookup_locations_relative_to_the_baseUrl_6167", "A series of entries which re-map imports to lookup locations relative to the 'baseUrl'."), List_of_root_folders_whose_combined_content_represents_the_structure_of_the_project_at_runtime: diag(6168, 3, "List_of_root_folders_whose_combined_content_represents_the_structure_of_the_project_at_runtime_6168", "List of root folders whose combined content represents the structure of the project at runtime."), Show_all_compiler_options: diag(6169, 3, "Show_all_compiler_options_6169", "Show all compiler options."), Deprecated_Use_outFile_instead_Concatenate_and_emit_output_to_single_file: diag(6170, 3, "Deprecated_Use_outFile_instead_Concatenate_and_emit_output_to_single_file_6170", "[Deprecated] Use '--outFile' instead. Concatenate and emit output to single file"), Command_line_Options: diag(6171, 3, "Command_line_Options_6171", "Command-line Options"), Provide_full_support_for_iterables_in_for_of_spread_and_destructuring_when_targeting_ES5: diag(6179, 3, "Provide_full_support_for_iterables_in_for_of_spread_and_destructuring_when_targeting_ES5_6179", "Provide full support for iterables in 'for-of', spread, and destructuring when targeting 'ES5'."), Enable_all_strict_type_checking_options: diag(6180, 3, "Enable_all_strict_type_checking_options_6180", "Enable all strict type-checking options."), Scoped_package_detected_looking_in_0: diag(6182, 3, "Scoped_package_detected_looking_in_0_6182", "Scoped package detected, looking in '{0}'"), Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2: diag(6183, 3, "Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2_6183", "Reusing resolution of module '{0}' from '{1}' of old program, it was successfully resolved to '{2}'."), Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2_with_Package_ID_3: diag(6184, 3, "Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2_with_Package__6184", "Reusing resolution of module '{0}' from '{1}' of old program, it was successfully resolved to '{2}' with Package ID '{3}'."), Enable_strict_checking_of_function_types: diag(6186, 3, "Enable_strict_checking_of_function_types_6186", "Enable strict checking of function types."), Enable_strict_checking_of_property_initialization_in_classes: diag(6187, 3, "Enable_strict_checking_of_property_initialization_in_classes_6187", "Enable strict checking of property initialization in classes."), Numeric_separators_are_not_allowed_here: diag(6188, 1, "Numeric_separators_are_not_allowed_here_6188", "Numeric separators are not allowed here."), Multiple_consecutive_numeric_separators_are_not_permitted: diag(6189, 1, "Multiple_consecutive_numeric_separators_are_not_permitted_6189", "Multiple consecutive numeric separators are not permitted."), Whether_to_keep_outdated_console_output_in_watch_mode_instead_of_clearing_the_screen: diag(6191, 3, "Whether_to_keep_outdated_console_output_in_watch_mode_instead_of_clearing_the_screen_6191", "Whether to keep outdated console output in watch mode instead of clearing the screen."), All_imports_in_import_declaration_are_unused: diag(6192, 1, "All_imports_in_import_declaration_are_unused_6192", "All imports in import declaration are unused.", true), Found_1_error_Watching_for_file_changes: diag(6193, 3, "Found_1_error_Watching_for_file_changes_6193", "Found 1 error. Watching for file changes."), Found_0_errors_Watching_for_file_changes: diag(6194, 3, "Found_0_errors_Watching_for_file_changes_6194", "Found {0} errors. Watching for file changes."), Resolve_keyof_to_string_valued_property_names_only_no_numbers_or_symbols: diag(6195, 3, "Resolve_keyof_to_string_valued_property_names_only_no_numbers_or_symbols_6195", "Resolve 'keyof' to string valued property names only (no numbers or symbols)."), _0_is_declared_but_never_used: diag(6196, 1, "_0_is_declared_but_never_used_6196", "'{0}' is declared but never used.", true), Include_modules_imported_with_json_extension: diag(6197, 3, "Include_modules_imported_with_json_extension_6197", "Include modules imported with '.json' extension"), All_destructured_elements_are_unused: diag(6198, 1, "All_destructured_elements_are_unused_6198", "All destructured elements are unused.", true), All_variables_are_unused: diag(6199, 1, "All_variables_are_unused_6199", "All variables are unused.", true), Definitions_of_the_following_identifiers_conflict_with_those_in_another_file_Colon_0: diag(6200, 1, "Definitions_of_the_following_identifiers_conflict_with_those_in_another_file_Colon_0_6200", "Definitions of the following identifiers conflict with those in another file: {0}"), Conflicts_are_in_this_file: diag(6201, 3, "Conflicts_are_in_this_file_6201", "Conflicts are in this file."), Project_references_may_not_form_a_circular_graph_Cycle_detected_Colon_0: diag(6202, 1, "Project_references_may_not_form_a_circular_graph_Cycle_detected_Colon_0_6202", "Project references may not form a circular graph. Cycle detected: {0}"), _0_was_also_declared_here: diag(6203, 3, "_0_was_also_declared_here_6203", "'{0}' was also declared here."), and_here: diag(6204, 3, "and_here_6204", "and here."), All_type_parameters_are_unused: diag(6205, 1, "All_type_parameters_are_unused_6205", "All type parameters are unused."), package_json_has_a_typesVersions_field_with_version_specific_path_mappings: diag(6206, 3, "package_json_has_a_typesVersions_field_with_version_specific_path_mappings_6206", "'package.json' has a 'typesVersions' field with version-specific path mappings."), package_json_does_not_have_a_typesVersions_entry_that_matches_version_0: diag(6207, 3, "package_json_does_not_have_a_typesVersions_entry_that_matches_version_0_6207", "'package.json' does not have a 'typesVersions' entry that matches version '{0}'."), package_json_has_a_typesVersions_entry_0_that_matches_compiler_version_1_looking_for_a_pattern_to_match_module_name_2: diag(6208, 3, "package_json_has_a_typesVersions_entry_0_that_matches_compiler_version_1_looking_for_a_pattern_to_ma_6208", "'package.json' has a 'typesVersions' entry '{0}' that matches compiler version '{1}', looking for a pattern to match module name '{2}'."), package_json_has_a_typesVersions_entry_0_that_is_not_a_valid_semver_range: diag(6209, 3, "package_json_has_a_typesVersions_entry_0_that_is_not_a_valid_semver_range_6209", "'package.json' has a 'typesVersions' entry '{0}' that is not a valid semver range."), An_argument_for_0_was_not_provided: diag(6210, 3, "An_argument_for_0_was_not_provided_6210", "An argument for '{0}' was not provided."), An_argument_matching_this_binding_pattern_was_not_provided: diag(6211, 3, "An_argument_matching_this_binding_pattern_was_not_provided_6211", "An argument matching this binding pattern was not provided."), Did_you_mean_to_call_this_expression: diag(6212, 3, "Did_you_mean_to_call_this_expression_6212", "Did you mean to call this expression?"), Did_you_mean_to_use_new_with_this_expression: diag(6213, 3, "Did_you_mean_to_use_new_with_this_expression_6213", "Did you mean to use 'new' with this expression?"), Enable_strict_bind_call_and_apply_methods_on_functions: diag(6214, 3, "Enable_strict_bind_call_and_apply_methods_on_functions_6214", "Enable strict 'bind', 'call', and 'apply' methods on functions."), Using_compiler_options_of_project_reference_redirect_0: diag(6215, 3, "Using_compiler_options_of_project_reference_redirect_0_6215", "Using compiler options of project reference redirect '{0}'."), Found_1_error: diag(6216, 3, "Found_1_error_6216", "Found 1 error."), Found_0_errors: diag(6217, 3, "Found_0_errors_6217", "Found {0} errors."), Module_name_0_was_successfully_resolved_to_1_with_Package_ID_2: diag(6218, 3, "Module_name_0_was_successfully_resolved_to_1_with_Package_ID_2_6218", "======== Module name '{0}' was successfully resolved to '{1}' with Package ID '{2}'. ========"), Type_reference_directive_0_was_successfully_resolved_to_1_with_Package_ID_2_primary_Colon_3: diag(6219, 3, "Type_reference_directive_0_was_successfully_resolved_to_1_with_Package_ID_2_primary_Colon_3_6219", "======== Type reference directive '{0}' was successfully resolved to '{1}' with Package ID '{2}', primary: {3}. ========"), package_json_had_a_falsy_0_field: diag(6220, 3, "package_json_had_a_falsy_0_field_6220", "'package.json' had a falsy '{0}' field."), Disable_use_of_source_files_instead_of_declaration_files_from_referenced_projects: diag(6221, 3, "Disable_use_of_source_files_instead_of_declaration_files_from_referenced_projects_6221", "Disable use of source files instead of declaration files from referenced projects."), Emit_class_fields_with_Define_instead_of_Set: diag(6222, 3, "Emit_class_fields_with_Define_instead_of_Set_6222", "Emit class fields with Define instead of Set."), Generates_a_CPU_profile: diag(6223, 3, "Generates_a_CPU_profile_6223", "Generates a CPU profile."), Disable_solution_searching_for_this_project: diag(6224, 3, "Disable_solution_searching_for_this_project_6224", "Disable solution searching for this project."), Specify_strategy_for_watching_file_Colon_FixedPollingInterval_default_PriorityPollingInterval_DynamicPriorityPolling_FixedChunkSizePolling_UseFsEvents_UseFsEventsOnParentDirectory: diag(6225, 3, "Specify_strategy_for_watching_file_Colon_FixedPollingInterval_default_PriorityPollingInterval_Dynami_6225", "Specify strategy for watching file: 'FixedPollingInterval' (default), 'PriorityPollingInterval', 'DynamicPriorityPolling', 'FixedChunkSizePolling', 'UseFsEvents', 'UseFsEventsOnParentDirectory'."), Specify_strategy_for_watching_directory_on_platforms_that_don_t_support_recursive_watching_natively_Colon_UseFsEvents_default_FixedPollingInterval_DynamicPriorityPolling_FixedChunkSizePolling: diag(6226, 3, "Specify_strategy_for_watching_directory_on_platforms_that_don_t_support_recursive_watching_natively__6226", "Specify strategy for watching directory on platforms that don't support recursive watching natively: 'UseFsEvents' (default), 'FixedPollingInterval', 'DynamicPriorityPolling', 'FixedChunkSizePolling'."), Specify_strategy_for_creating_a_polling_watch_when_it_fails_to_create_using_file_system_events_Colon_FixedInterval_default_PriorityInterval_DynamicPriority_FixedChunkSize: diag(6227, 3, "Specify_strategy_for_creating_a_polling_watch_when_it_fails_to_create_using_file_system_events_Colon_6227", "Specify strategy for creating a polling watch when it fails to create using file system events: 'FixedInterval' (default), 'PriorityInterval', 'DynamicPriority', 'FixedChunkSize'."), Tag_0_expects_at_least_1_arguments_but_the_JSX_factory_2_provides_at_most_3: diag(6229, 1, "Tag_0_expects_at_least_1_arguments_but_the_JSX_factory_2_provides_at_most_3_6229", "Tag '{0}' expects at least '{1}' arguments, but the JSX factory '{2}' provides at most '{3}'."), Option_0_can_only_be_specified_in_tsconfig_json_file_or_set_to_false_or_null_on_command_line: diag(6230, 1, "Option_0_can_only_be_specified_in_tsconfig_json_file_or_set_to_false_or_null_on_command_line_6230", "Option '{0}' can only be specified in 'tsconfig.json' file or set to 'false' or 'null' on command line."), Could_not_resolve_the_path_0_with_the_extensions_Colon_1: diag(6231, 1, "Could_not_resolve_the_path_0_with_the_extensions_Colon_1_6231", "Could not resolve the path '{0}' with the extensions: {1}."), Declaration_augments_declaration_in_another_file_This_cannot_be_serialized: diag(6232, 1, "Declaration_augments_declaration_in_another_file_This_cannot_be_serialized_6232", "Declaration augments declaration in another file. This cannot be serialized."), This_is_the_declaration_being_augmented_Consider_moving_the_augmenting_declaration_into_the_same_file: diag(6233, 1, "This_is_the_declaration_being_augmented_Consider_moving_the_augmenting_declaration_into_the_same_fil_6233", "This is the declaration being augmented. Consider moving the augmenting declaration into the same file."), This_expression_is_not_callable_because_it_is_a_get_accessor_Did_you_mean_to_use_it_without: diag(6234, 1, "This_expression_is_not_callable_because_it_is_a_get_accessor_Did_you_mean_to_use_it_without_6234", "This expression is not callable because it is a 'get' accessor. Did you mean to use it without '()'?"), Disable_loading_referenced_projects: diag(6235, 3, "Disable_loading_referenced_projects_6235", "Disable loading referenced projects."), Arguments_for_the_rest_parameter_0_were_not_provided: diag(6236, 1, "Arguments_for_the_rest_parameter_0_were_not_provided_6236", "Arguments for the rest parameter '{0}' were not provided."), Generates_an_event_trace_and_a_list_of_types: diag(6237, 3, "Generates_an_event_trace_and_a_list_of_types_6237", "Generates an event trace and a list of types."), Specify_the_module_specifier_to_be_used_to_import_the_jsx_and_jsxs_factory_functions_from_eg_react: diag(6238, 1, "Specify_the_module_specifier_to_be_used_to_import_the_jsx_and_jsxs_factory_functions_from_eg_react_6238", "Specify the module specifier to be used to import the 'jsx' and 'jsxs' factory functions from. eg, react"), File_0_exists_according_to_earlier_cached_lookups: diag(6239, 3, "File_0_exists_according_to_earlier_cached_lookups_6239", "File '{0}' exists according to earlier cached lookups."), File_0_does_not_exist_according_to_earlier_cached_lookups: diag(6240, 3, "File_0_does_not_exist_according_to_earlier_cached_lookups_6240", "File '{0}' does not exist according to earlier cached lookups."), Resolution_for_type_reference_directive_0_was_found_in_cache_from_location_1: diag(6241, 3, "Resolution_for_type_reference_directive_0_was_found_in_cache_from_location_1_6241", "Resolution for type reference directive '{0}' was found in cache from location '{1}'."), Resolving_type_reference_directive_0_containing_file_1: diag(6242, 3, "Resolving_type_reference_directive_0_containing_file_1_6242", "======== Resolving type reference directive '{0}', containing file '{1}'. ========"), Interpret_optional_property_types_as_written_rather_than_adding_undefined: diag(6243, 3, "Interpret_optional_property_types_as_written_rather_than_adding_undefined_6243", "Interpret optional property types as written, rather than adding 'undefined'."), Modules: diag(6244, 3, "Modules_6244", "Modules"), File_Management: diag(6245, 3, "File_Management_6245", "File Management"), Emit: diag(6246, 3, "Emit_6246", "Emit"), JavaScript_Support: diag(6247, 3, "JavaScript_Support_6247", "JavaScript Support"), Type_Checking: diag(6248, 3, "Type_Checking_6248", "Type Checking"), Editor_Support: diag(6249, 3, "Editor_Support_6249", "Editor Support"), Watch_and_Build_Modes: diag(6250, 3, "Watch_and_Build_Modes_6250", "Watch and Build Modes"), Compiler_Diagnostics: diag(6251, 3, "Compiler_Diagnostics_6251", "Compiler Diagnostics"), Interop_Constraints: diag(6252, 3, "Interop_Constraints_6252", "Interop Constraints"), Backwards_Compatibility: diag(6253, 3, "Backwards_Compatibility_6253", "Backwards Compatibility"), Language_and_Environment: diag(6254, 3, "Language_and_Environment_6254", "Language and Environment"), Projects: diag(6255, 3, "Projects_6255", "Projects"), Output_Formatting: diag(6256, 3, "Output_Formatting_6256", "Output Formatting"), Completeness: diag(6257, 3, "Completeness_6257", "Completeness"), _0_should_be_set_inside_the_compilerOptions_object_of_the_config_json_file: diag(6258, 1, "_0_should_be_set_inside_the_compilerOptions_object_of_the_config_json_file_6258", "'{0}' should be set inside the 'compilerOptions' object of the config json file"), Found_1_error_in_0: diag(6259, 3, "Found_1_error_in_0_6259", "Found 1 error in {0}"), Found_0_errors_in_the_same_file_starting_at_Colon_1: diag(6260, 3, "Found_0_errors_in_the_same_file_starting_at_Colon_1_6260", "Found {0} errors in the same file, starting at: {1}"), Found_0_errors_in_1_files: diag(6261, 3, "Found_0_errors_in_1_files_6261", "Found {0} errors in {1} files."), File_name_0_has_a_1_extension_looking_up_2_instead: diag(6262, 3, "File_name_0_has_a_1_extension_looking_up_2_instead_6262", "File name '{0}' has a '{1}' extension - looking up '{2}' instead."), Module_0_was_resolved_to_1_but_allowArbitraryExtensions_is_not_set: diag(6263, 1, "Module_0_was_resolved_to_1_but_allowArbitraryExtensions_is_not_set_6263", "Module '{0}' was resolved to '{1}', but '--allowArbitraryExtensions' is not set."), Enable_importing_files_with_any_extension_provided_a_declaration_file_is_present: diag(6264, 3, "Enable_importing_files_with_any_extension_provided_a_declaration_file_is_present_6264", "Enable importing files with any extension, provided a declaration file is present."), Resolving_type_reference_directive_for_program_that_specifies_custom_typeRoots_skipping_lookup_in_node_modules_folder: diag(6265, 3, "Resolving_type_reference_directive_for_program_that_specifies_custom_typeRoots_skipping_lookup_in_no_6265", "Resolving type reference directive for program that specifies custom typeRoots, skipping lookup in 'node_modules' folder."), Option_0_can_only_be_specified_on_command_line: diag(6266, 1, "Option_0_can_only_be_specified_on_command_line_6266", "Option '{0}' can only be specified on command line."), Directory_0_has_no_containing_package_json_scope_Imports_will_not_resolve: diag(6270, 3, "Directory_0_has_no_containing_package_json_scope_Imports_will_not_resolve_6270", "Directory '{0}' has no containing package.json scope. Imports will not resolve."), Import_specifier_0_does_not_exist_in_package_json_scope_at_path_1: diag(6271, 3, "Import_specifier_0_does_not_exist_in_package_json_scope_at_path_1_6271", "Import specifier '{0}' does not exist in package.json scope at path '{1}'."), Invalid_import_specifier_0_has_no_possible_resolutions: diag(6272, 3, "Invalid_import_specifier_0_has_no_possible_resolutions_6272", "Invalid import specifier '{0}' has no possible resolutions."), package_json_scope_0_has_no_imports_defined: diag(6273, 3, "package_json_scope_0_has_no_imports_defined_6273", "package.json scope '{0}' has no imports defined."), package_json_scope_0_explicitly_maps_specifier_1_to_null: diag(6274, 3, "package_json_scope_0_explicitly_maps_specifier_1_to_null_6274", "package.json scope '{0}' explicitly maps specifier '{1}' to null."), package_json_scope_0_has_invalid_type_for_target_of_specifier_1: diag(6275, 3, "package_json_scope_0_has_invalid_type_for_target_of_specifier_1_6275", "package.json scope '{0}' has invalid type for target of specifier '{1}'"), Export_specifier_0_does_not_exist_in_package_json_scope_at_path_1: diag(6276, 3, "Export_specifier_0_does_not_exist_in_package_json_scope_at_path_1_6276", "Export specifier '{0}' does not exist in package.json scope at path '{1}'."), Resolution_of_non_relative_name_failed_trying_with_modern_Node_resolution_features_disabled_to_see_if_npm_library_needs_configuration_update: diag(6277, 3, "Resolution_of_non_relative_name_failed_trying_with_modern_Node_resolution_features_disabled_to_see_i_6277", "Resolution of non-relative name failed; trying with modern Node resolution features disabled to see if npm library needs configuration update."), There_are_types_at_0_but_this_result_could_not_be_resolved_when_respecting_package_json_exports_The_1_library_may_need_to_update_its_package_json_or_typings: diag(6278, 3, "There_are_types_at_0_but_this_result_could_not_be_resolved_when_respecting_package_json_exports_The__6278", `There are types at '{0}', but this result could not be resolved when respecting package.json "exports". The '{1}' library may need to update its package.json or typings.`), Resolution_of_non_relative_name_failed_trying_with_moduleResolution_bundler_to_see_if_project_may_need_configuration_update: diag(6279, 3, "Resolution_of_non_relative_name_failed_trying_with_moduleResolution_bundler_to_see_if_project_may_ne_6279", "Resolution of non-relative name failed; trying with '--moduleResolution bundler' to see if project may need configuration update."), There_are_types_at_0_but_this_result_could_not_be_resolved_under_your_current_moduleResolution_setting_Consider_updating_to_node16_nodenext_or_bundler: diag(6280, 3, "There_are_types_at_0_but_this_result_could_not_be_resolved_under_your_current_moduleResolution_setti_6280", "There are types at '{0}', but this result could not be resolved under your current 'moduleResolution' setting. Consider updating to 'node16', 'nodenext', or 'bundler'."), package_json_has_a_peerDependencies_field: diag(6281, 3, "package_json_has_a_peerDependencies_field_6281", "'package.json' has a 'peerDependencies' field."), Found_peerDependency_0_with_1_version: diag(6282, 3, "Found_peerDependency_0_with_1_version_6282", "Found peerDependency '{0}' with '{1}' version."), Failed_to_find_peerDependency_0: diag(6283, 3, "Failed_to_find_peerDependency_0_6283", "Failed to find peerDependency '{0}'."), File_Layout: diag(6284, 3, "File_Layout_6284", "File Layout"), Environment_Settings: diag(6285, 3, "Environment_Settings_6285", "Environment Settings"), See_also_https_Colon_Slash_Slashaka_ms_Slashtsconfig_Slashmodule: diag(6286, 3, "See_also_https_Colon_Slash_Slashaka_ms_Slashtsconfig_Slashmodule_6286", "See also https://aka.ms/tsconfig/module"), For_nodejs_Colon: diag(6287, 3, "For_nodejs_Colon_6287", "For nodejs:"), and_npm_install_D_types_Slashnode: diag(6290, 3, "and_npm_install_D_types_Slashnode_6290", "and npm install -D @types/node"), Other_Outputs: diag(6291, 3, "Other_Outputs_6291", "Other Outputs"), Stricter_Typechecking_Options: diag(6292, 3, "Stricter_Typechecking_Options_6292", "Stricter Typechecking Options"), Style_Options: diag(6293, 3, "Style_Options_6293", "Style Options"), Recommended_Options: diag(6294, 3, "Recommended_Options_6294", "Recommended Options"), Enable_project_compilation: diag(6302, 3, "Enable_project_compilation_6302", "Enable project compilation"), Composite_projects_may_not_disable_declaration_emit: diag(6304, 1, "Composite_projects_may_not_disable_declaration_emit_6304", "Composite projects may not disable declaration emit."), Output_file_0_has_not_been_built_from_source_file_1: diag(6305, 1, "Output_file_0_has_not_been_built_from_source_file_1_6305", "Output file '{0}' has not been built from source file '{1}'."), Referenced_project_0_must_have_setting_composite_Colon_true: diag(6306, 1, "Referenced_project_0_must_have_setting_composite_Colon_true_6306", `Referenced project '{0}' must have setting "composite": true.`), File_0_is_not_listed_within_the_file_list_of_project_1_Projects_must_list_all_files_or_use_an_include_pattern: diag(6307, 1, "File_0_is_not_listed_within_the_file_list_of_project_1_Projects_must_list_all_files_or_use_an_includ_6307", "File '{0}' is not listed within the file list of project '{1}'. Projects must list all files or use an 'include' pattern."), Referenced_project_0_may_not_disable_emit: diag(6310, 1, "Referenced_project_0_may_not_disable_emit_6310", "Referenced project '{0}' may not disable emit."), Project_0_is_out_of_date_because_output_1_is_older_than_input_2: diag(6350, 3, "Project_0_is_out_of_date_because_output_1_is_older_than_input_2_6350", "Project '{0}' is out of date because output '{1}' is older than input '{2}'"), Project_0_is_up_to_date_because_newest_input_1_is_older_than_output_2: diag(6351, 3, "Project_0_is_up_to_date_because_newest_input_1_is_older_than_output_2_6351", "Project '{0}' is up to date because newest input '{1}' is older than output '{2}'"), Project_0_is_out_of_date_because_output_file_1_does_not_exist: diag(6352, 3, "Project_0_is_out_of_date_because_output_file_1_does_not_exist_6352", "Project '{0}' is out of date because output file '{1}' does not exist"), Project_0_is_out_of_date_because_its_dependency_1_is_out_of_date: diag(6353, 3, "Project_0_is_out_of_date_because_its_dependency_1_is_out_of_date_6353", "Project '{0}' is out of date because its dependency '{1}' is out of date"), Project_0_is_up_to_date_with_d_ts_files_from_its_dependencies: diag(6354, 3, "Project_0_is_up_to_date_with_d_ts_files_from_its_dependencies_6354", "Project '{0}' is up to date with .d.ts files from its dependencies"), Projects_in_this_build_Colon_0: diag(6355, 3, "Projects_in_this_build_Colon_0_6355", "Projects in this build: {0}"), A_non_dry_build_would_delete_the_following_files_Colon_0: diag(6356, 3, "A_non_dry_build_would_delete_the_following_files_Colon_0_6356", "A non-dry build would delete the following files: {0}"), A_non_dry_build_would_build_project_0: diag(6357, 3, "A_non_dry_build_would_build_project_0_6357", "A non-dry build would build project '{0}'"), Building_project_0: diag(6358, 3, "Building_project_0_6358", "Building project '{0}'..."), Updating_output_timestamps_of_project_0: diag(6359, 3, "Updating_output_timestamps_of_project_0_6359", "Updating output timestamps of project '{0}'..."), Project_0_is_up_to_date: diag(6361, 3, "Project_0_is_up_to_date_6361", "Project '{0}' is up to date"), Skipping_build_of_project_0_because_its_dependency_1_has_errors: diag(6362, 3, "Skipping_build_of_project_0_because_its_dependency_1_has_errors_6362", "Skipping build of project '{0}' because its dependency '{1}' has errors"), Project_0_can_t_be_built_because_its_dependency_1_has_errors: diag(6363, 3, "Project_0_can_t_be_built_because_its_dependency_1_has_errors_6363", "Project '{0}' can't be built because its dependency '{1}' has errors"), Build_one_or_more_projects_and_their_dependencies_if_out_of_date: diag(6364, 3, "Build_one_or_more_projects_and_their_dependencies_if_out_of_date_6364", "Build one or more projects and their dependencies, if out of date"), Delete_the_outputs_of_all_projects: diag(6365, 3, "Delete_the_outputs_of_all_projects_6365", "Delete the outputs of all projects."), Show_what_would_be_built_or_deleted_if_specified_with_clean: diag(6367, 3, "Show_what_would_be_built_or_deleted_if_specified_with_clean_6367", "Show what would be built (or deleted, if specified with '--clean')"), Option_build_must_be_the_first_command_line_argument: diag(6369, 1, "Option_build_must_be_the_first_command_line_argument_6369", "Option '--build' must be the first command line argument."), Options_0_and_1_cannot_be_combined: diag(6370, 1, "Options_0_and_1_cannot_be_combined_6370", "Options '{0}' and '{1}' cannot be combined."), Updating_unchanged_output_timestamps_of_project_0: diag(6371, 3, "Updating_unchanged_output_timestamps_of_project_0_6371", "Updating unchanged output timestamps of project '{0}'..."), A_non_dry_build_would_update_timestamps_for_output_of_project_0: diag(6374, 3, "A_non_dry_build_would_update_timestamps_for_output_of_project_0_6374", "A non-dry build would update timestamps for output of project '{0}'"), Cannot_write_file_0_because_it_will_overwrite_tsbuildinfo_file_generated_by_referenced_project_1: diag(6377, 1, "Cannot_write_file_0_because_it_will_overwrite_tsbuildinfo_file_generated_by_referenced_project_1_6377", "Cannot write file '{0}' because it will overwrite '.tsbuildinfo' file generated by referenced project '{1}'"), Composite_projects_may_not_disable_incremental_compilation: diag(6379, 1, "Composite_projects_may_not_disable_incremental_compilation_6379", "Composite projects may not disable incremental compilation."), Specify_file_to_store_incremental_compilation_information: diag(6380, 3, "Specify_file_to_store_incremental_compilation_information_6380", "Specify file to store incremental compilation information"), Project_0_is_out_of_date_because_output_for_it_was_generated_with_version_1_that_differs_with_current_version_2: diag(6381, 3, "Project_0_is_out_of_date_because_output_for_it_was_generated_with_version_1_that_differs_with_curren_6381", "Project '{0}' is out of date because output for it was generated with version '{1}' that differs with current version '{2}'"), Skipping_build_of_project_0_because_its_dependency_1_was_not_built: diag(6382, 3, "Skipping_build_of_project_0_because_its_dependency_1_was_not_built_6382", "Skipping build of project '{0}' because its dependency '{1}' was not built"), Project_0_can_t_be_built_because_its_dependency_1_was_not_built: diag(6383, 3, "Project_0_can_t_be_built_because_its_dependency_1_was_not_built_6383", "Project '{0}' can't be built because its dependency '{1}' was not built"), Have_recompiles_in_incremental_and_watch_assume_that_changes_within_a_file_will_only_affect_files_directly_depending_on_it: diag(6384, 3, "Have_recompiles_in_incremental_and_watch_assume_that_changes_within_a_file_will_only_affect_files_di_6384", "Have recompiles in '--incremental' and '--watch' assume that changes within a file will only affect files directly depending on it."), _0_is_deprecated: diag(6385, 2, "_0_is_deprecated_6385", "'{0}' is deprecated.", undefined, undefined, true), Performance_timings_for_diagnostics_or_extendedDiagnostics_are_not_available_in_this_session_A_native_implementation_of_the_Web_Performance_API_could_not_be_found: diag(6386, 3, "Performance_timings_for_diagnostics_or_extendedDiagnostics_are_not_available_in_this_session_A_nativ_6386", "Performance timings for '--diagnostics' or '--extendedDiagnostics' are not available in this session. A native implementation of the Web Performance API could not be found."), The_signature_0_of_1_is_deprecated: diag(6387, 2, "The_signature_0_of_1_is_deprecated_6387", "The signature '{0}' of '{1}' is deprecated.", undefined, undefined, true), Project_0_is_being_forcibly_rebuilt: diag(6388, 3, "Project_0_is_being_forcibly_rebuilt_6388", "Project '{0}' is being forcibly rebuilt"), Reusing_resolution_of_module_0_from_1_of_old_program_it_was_not_resolved: diag(6389, 3, "Reusing_resolution_of_module_0_from_1_of_old_program_it_was_not_resolved_6389", "Reusing resolution of module '{0}' from '{1}' of old program, it was not resolved."), Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_successfully_resolved_to_2: diag(6390, 3, "Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_successfully_resolved__6390", "Reusing resolution of type reference directive '{0}' from '{1}' of old program, it was successfully resolved to '{2}'."), Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_successfully_resolved_to_2_with_Package_ID_3: diag(6391, 3, "Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_successfully_resolved__6391", "Reusing resolution of type reference directive '{0}' from '{1}' of old program, it was successfully resolved to '{2}' with Package ID '{3}'."), Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_not_resolved: diag(6392, 3, "Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_not_resolved_6392", "Reusing resolution of type reference directive '{0}' from '{1}' of old program, it was not resolved."), Reusing_resolution_of_module_0_from_1_found_in_cache_from_location_2_it_was_successfully_resolved_to_3: diag(6393, 3, "Reusing_resolution_of_module_0_from_1_found_in_cache_from_location_2_it_was_successfully_resolved_to_6393", "Reusing resolution of module '{0}' from '{1}' found in cache from location '{2}', it was successfully resolved to '{3}'."), Reusing_resolution_of_module_0_from_1_found_in_cache_from_location_2_it_was_successfully_resolved_to_3_with_Package_ID_4: diag(6394, 3, "Reusing_resolution_of_module_0_from_1_found_in_cache_from_location_2_it_was_successfully_resolved_to_6394", "Reusing resolution of module '{0}' from '{1}' found in cache from location '{2}', it was successfully resolved to '{3}' with Package ID '{4}'."), Reusing_resolution_of_module_0_from_1_found_in_cache_from_location_2_it_was_not_resolved: diag(6395, 3, "Reusing_resolution_of_module_0_from_1_found_in_cache_from_location_2_it_was_not_resolved_6395", "Reusing resolution of module '{0}' from '{1}' found in cache from location '{2}', it was not resolved."), Reusing_resolution_of_type_reference_directive_0_from_1_found_in_cache_from_location_2_it_was_successfully_resolved_to_3: diag(6396, 3, "Reusing_resolution_of_type_reference_directive_0_from_1_found_in_cache_from_location_2_it_was_succes_6396", "Reusing resolution of type reference directive '{0}' from '{1}' found in cache from location '{2}', it was successfully resolved to '{3}'."), Reusing_resolution_of_type_reference_directive_0_from_1_found_in_cache_from_location_2_it_was_successfully_resolved_to_3_with_Package_ID_4: diag(6397, 3, "Reusing_resolution_of_type_reference_directive_0_from_1_found_in_cache_from_location_2_it_was_succes_6397", "Reusing resolution of type reference directive '{0}' from '{1}' found in cache from location '{2}', it was successfully resolved to '{3}' with Package ID '{4}'."), Reusing_resolution_of_type_reference_directive_0_from_1_found_in_cache_from_location_2_it_was_not_resolved: diag(6398, 3, "Reusing_resolution_of_type_reference_directive_0_from_1_found_in_cache_from_location_2_it_was_not_re_6398", "Reusing resolution of type reference directive '{0}' from '{1}' found in cache from location '{2}', it was not resolved."), Project_0_is_out_of_date_because_buildinfo_file_1_indicates_that_some_of_the_changes_were_not_emitted: diag(6399, 3, "Project_0_is_out_of_date_because_buildinfo_file_1_indicates_that_some_of_the_changes_were_not_emitte_6399", "Project '{0}' is out of date because buildinfo file '{1}' indicates that some of the changes were not emitted"), Project_0_is_up_to_date_but_needs_to_update_timestamps_of_output_files_that_are_older_than_input_files: diag(6400, 3, "Project_0_is_up_to_date_but_needs_to_update_timestamps_of_output_files_that_are_older_than_input_fil_6400", "Project '{0}' is up to date but needs to update timestamps of output files that are older than input files"), Project_0_is_out_of_date_because_there_was_error_reading_file_1: diag(6401, 3, "Project_0_is_out_of_date_because_there_was_error_reading_file_1_6401", "Project '{0}' is out of date because there was error reading file '{1}'"), Resolving_in_0_mode_with_conditions_1: diag(6402, 3, "Resolving_in_0_mode_with_conditions_1_6402", "Resolving in {0} mode with conditions {1}."), Matched_0_condition_1: diag(6403, 3, "Matched_0_condition_1_6403", "Matched '{0}' condition '{1}'."), Using_0_subpath_1_with_target_2: diag(6404, 3, "Using_0_subpath_1_with_target_2_6404", "Using '{0}' subpath '{1}' with target '{2}'."), Saw_non_matching_condition_0: diag(6405, 3, "Saw_non_matching_condition_0_6405", "Saw non-matching condition '{0}'."), Project_0_is_out_of_date_because_buildinfo_file_1_indicates_there_is_change_in_compilerOptions: diag(6406, 3, "Project_0_is_out_of_date_because_buildinfo_file_1_indicates_there_is_change_in_compilerOptions_6406", "Project '{0}' is out of date because buildinfo file '{1}' indicates there is change in compilerOptions"), Allow_imports_to_include_TypeScript_file_extensions_Requires_moduleResolution_bundler_and_either_noEmit_or_emitDeclarationOnly_to_be_set: diag(6407, 3, "Allow_imports_to_include_TypeScript_file_extensions_Requires_moduleResolution_bundler_and_either_noE_6407", "Allow imports to include TypeScript file extensions. Requires '--moduleResolution bundler' and either '--noEmit' or '--emitDeclarationOnly' to be set."), Use_the_package_json_exports_field_when_resolving_package_imports: diag(6408, 3, "Use_the_package_json_exports_field_when_resolving_package_imports_6408", "Use the package.json 'exports' field when resolving package imports."), Use_the_package_json_imports_field_when_resolving_imports: diag(6409, 3, "Use_the_package_json_imports_field_when_resolving_imports_6409", "Use the package.json 'imports' field when resolving imports."), Conditions_to_set_in_addition_to_the_resolver_specific_defaults_when_resolving_imports: diag(6410, 3, "Conditions_to_set_in_addition_to_the_resolver_specific_defaults_when_resolving_imports_6410", "Conditions to set in addition to the resolver-specific defaults when resolving imports."), true_when_moduleResolution_is_node16_nodenext_or_bundler_otherwise_false: diag(6411, 3, "true_when_moduleResolution_is_node16_nodenext_or_bundler_otherwise_false_6411", "`true` when 'moduleResolution' is 'node16', 'nodenext', or 'bundler'; otherwise `false`."), Project_0_is_out_of_date_because_buildinfo_file_1_indicates_that_file_2_was_root_file_of_compilation_but_not_any_more: diag(6412, 3, "Project_0_is_out_of_date_because_buildinfo_file_1_indicates_that_file_2_was_root_file_of_compilation_6412", "Project '{0}' is out of date because buildinfo file '{1}' indicates that file '{2}' was root file of compilation but not any more."), Entering_conditional_exports: diag(6413, 3, "Entering_conditional_exports_6413", "Entering conditional exports."), Resolved_under_condition_0: diag(6414, 3, "Resolved_under_condition_0_6414", "Resolved under condition '{0}'."), Failed_to_resolve_under_condition_0: diag(6415, 3, "Failed_to_resolve_under_condition_0_6415", "Failed to resolve under condition '{0}'."), Exiting_conditional_exports: diag(6416, 3, "Exiting_conditional_exports_6416", "Exiting conditional exports."), Searching_all_ancestor_node_modules_directories_for_preferred_extensions_Colon_0: diag(6417, 3, "Searching_all_ancestor_node_modules_directories_for_preferred_extensions_Colon_0_6417", "Searching all ancestor node_modules directories for preferred extensions: {0}."), Searching_all_ancestor_node_modules_directories_for_fallback_extensions_Colon_0: diag(6418, 3, "Searching_all_ancestor_node_modules_directories_for_fallback_extensions_Colon_0_6418", "Searching all ancestor node_modules directories for fallback extensions: {0}."), Project_0_is_out_of_date_because_buildinfo_file_1_indicates_that_program_needs_to_report_errors: diag(6419, 3, "Project_0_is_out_of_date_because_buildinfo_file_1_indicates_that_program_needs_to_report_errors_6419", "Project '{0}' is out of date because buildinfo file '{1}' indicates that program needs to report errors."), Project_0_is_out_of_date_because_1: diag(6420, 3, "Project_0_is_out_of_date_because_1_6420", "Project '{0}' is out of date because {1}."), Rewrite_ts_tsx_mts_and_cts_file_extensions_in_relative_import_paths_to_their_JavaScript_equivalent_in_output_files: diag(6421, 3, "Rewrite_ts_tsx_mts_and_cts_file_extensions_in_relative_import_paths_to_their_JavaScript_equivalent_i_6421", "Rewrite '.ts', '.tsx', '.mts', and '.cts' file extensions in relative import paths to their JavaScript equivalent in output files."), The_expected_type_comes_from_property_0_which_is_declared_here_on_type_1: diag(6500, 3, "The_expected_type_comes_from_property_0_which_is_declared_here_on_type_1_6500", "The expected type comes from property '{0}' which is declared here on type '{1}'"), The_expected_type_comes_from_this_index_signature: diag(6501, 3, "The_expected_type_comes_from_this_index_signature_6501", "The expected type comes from this index signature."), The_expected_type_comes_from_the_return_type_of_this_signature: diag(6502, 3, "The_expected_type_comes_from_the_return_type_of_this_signature_6502", "The expected type comes from the return type of this signature."), Print_names_of_files_that_are_part_of_the_compilation_and_then_stop_processing: diag(6503, 3, "Print_names_of_files_that_are_part_of_the_compilation_and_then_stop_processing_6503", "Print names of files that are part of the compilation and then stop processing."), File_0_is_a_JavaScript_file_Did_you_mean_to_enable_the_allowJs_option: diag(6504, 1, "File_0_is_a_JavaScript_file_Did_you_mean_to_enable_the_allowJs_option_6504", "File '{0}' is a JavaScript file. Did you mean to enable the 'allowJs' option?"), Print_names_of_files_and_the_reason_they_are_part_of_the_compilation: diag(6505, 3, "Print_names_of_files_and_the_reason_they_are_part_of_the_compilation_6505", "Print names of files and the reason they are part of the compilation."), Consider_adding_a_declare_modifier_to_this_class: diag(6506, 3, "Consider_adding_a_declare_modifier_to_this_class_6506", "Consider adding a 'declare' modifier to this class."), Allow_JavaScript_files_to_be_a_part_of_your_program_Use_the_checkJs_option_to_get_errors_from_these_files: diag(6600, 3, "Allow_JavaScript_files_to_be_a_part_of_your_program_Use_the_checkJs_option_to_get_errors_from_these__6600", "Allow JavaScript files to be a part of your program. Use the 'checkJs' option to get errors from these files."), Allow_import_x_from_y_when_a_module_doesn_t_have_a_default_export: diag(6601, 3, "Allow_import_x_from_y_when_a_module_doesn_t_have_a_default_export_6601", "Allow 'import x from y' when a module doesn't have a default export."), Allow_accessing_UMD_globals_from_modules: diag(6602, 3, "Allow_accessing_UMD_globals_from_modules_6602", "Allow accessing UMD globals from modules."), Disable_error_reporting_for_unreachable_code: diag(6603, 3, "Disable_error_reporting_for_unreachable_code_6603", "Disable error reporting for unreachable code."), Disable_error_reporting_for_unused_labels: diag(6604, 3, "Disable_error_reporting_for_unused_labels_6604", "Disable error reporting for unused labels."), Ensure_use_strict_is_always_emitted: diag(6605, 3, "Ensure_use_strict_is_always_emitted_6605", "Ensure 'use strict' is always emitted."), Have_recompiles_in_projects_that_use_incremental_and_watch_mode_assume_that_changes_within_a_file_will_only_affect_files_directly_depending_on_it: diag(6606, 3, "Have_recompiles_in_projects_that_use_incremental_and_watch_mode_assume_that_changes_within_a_file_wi_6606", "Have recompiles in projects that use 'incremental' and 'watch' mode assume that changes within a file will only affect files directly depending on it."), Specify_the_base_directory_to_resolve_non_relative_module_names: diag(6607, 3, "Specify_the_base_directory_to_resolve_non_relative_module_names_6607", "Specify the base directory to resolve non-relative module names."), No_longer_supported_In_early_versions_manually_set_the_text_encoding_for_reading_files: diag(6608, 3, "No_longer_supported_In_early_versions_manually_set_the_text_encoding_for_reading_files_6608", "No longer supported. In early versions, manually set the text encoding for reading files."), Enable_error_reporting_in_type_checked_JavaScript_files: diag(6609, 3, "Enable_error_reporting_in_type_checked_JavaScript_files_6609", "Enable error reporting in type-checked JavaScript files."), Enable_constraints_that_allow_a_TypeScript_project_to_be_used_with_project_references: diag(6611, 3, "Enable_constraints_that_allow_a_TypeScript_project_to_be_used_with_project_references_6611", "Enable constraints that allow a TypeScript project to be used with project references."), Generate_d_ts_files_from_TypeScript_and_JavaScript_files_in_your_project: diag(6612, 3, "Generate_d_ts_files_from_TypeScript_and_JavaScript_files_in_your_project_6612", "Generate .d.ts files from TypeScript and JavaScript files in your project."), Specify_the_output_directory_for_generated_declaration_files: diag(6613, 3, "Specify_the_output_directory_for_generated_declaration_files_6613", "Specify the output directory for generated declaration files."), Create_sourcemaps_for_d_ts_files: diag(6614, 3, "Create_sourcemaps_for_d_ts_files_6614", "Create sourcemaps for d.ts files."), Output_compiler_performance_information_after_building: diag(6615, 3, "Output_compiler_performance_information_after_building_6615", "Output compiler performance information after building."), Disables_inference_for_type_acquisition_by_looking_at_filenames_in_a_project: diag(6616, 3, "Disables_inference_for_type_acquisition_by_looking_at_filenames_in_a_project_6616", "Disables inference for type acquisition by looking at filenames in a project."), Reduce_the_number_of_projects_loaded_automatically_by_TypeScript: diag(6617, 3, "Reduce_the_number_of_projects_loaded_automatically_by_TypeScript_6617", "Reduce the number of projects loaded automatically by TypeScript."), Remove_the_20mb_cap_on_total_source_code_size_for_JavaScript_files_in_the_TypeScript_language_server: diag(6618, 3, "Remove_the_20mb_cap_on_total_source_code_size_for_JavaScript_files_in_the_TypeScript_language_server_6618", "Remove the 20mb cap on total source code size for JavaScript files in the TypeScript language server."), Opt_a_project_out_of_multi_project_reference_checking_when_editing: diag(6619, 3, "Opt_a_project_out_of_multi_project_reference_checking_when_editing_6619", "Opt a project out of multi-project reference checking when editing."), Disable_preferring_source_files_instead_of_declaration_files_when_referencing_composite_projects: diag(6620, 3, "Disable_preferring_source_files_instead_of_declaration_files_when_referencing_composite_projects_6620", "Disable preferring source files instead of declaration files when referencing composite projects."), Emit_more_compliant_but_verbose_and_less_performant_JavaScript_for_iteration: diag(6621, 3, "Emit_more_compliant_but_verbose_and_less_performant_JavaScript_for_iteration_6621", "Emit more compliant, but verbose and less performant JavaScript for iteration."), Emit_a_UTF_8_Byte_Order_Mark_BOM_in_the_beginning_of_output_files: diag(6622, 3, "Emit_a_UTF_8_Byte_Order_Mark_BOM_in_the_beginning_of_output_files_6622", "Emit a UTF-8 Byte Order Mark (BOM) in the beginning of output files."), Only_output_d_ts_files_and_not_JavaScript_files: diag(6623, 3, "Only_output_d_ts_files_and_not_JavaScript_files_6623", "Only output d.ts files and not JavaScript files."), Emit_design_type_metadata_for_decorated_declarations_in_source_files: diag(6624, 3, "Emit_design_type_metadata_for_decorated_declarations_in_source_files_6624", "Emit design-type metadata for decorated declarations in source files."), Disable_the_type_acquisition_for_JavaScript_projects: diag(6625, 3, "Disable_the_type_acquisition_for_JavaScript_projects_6625", "Disable the type acquisition for JavaScript projects"), Emit_additional_JavaScript_to_ease_support_for_importing_CommonJS_modules_This_enables_allowSyntheticDefaultImports_for_type_compatibility: diag(6626, 3, "Emit_additional_JavaScript_to_ease_support_for_importing_CommonJS_modules_This_enables_allowSyntheti_6626", "Emit additional JavaScript to ease support for importing CommonJS modules. This enables 'allowSyntheticDefaultImports' for type compatibility."), Filters_results_from_the_include_option: diag(6627, 3, "Filters_results_from_the_include_option_6627", "Filters results from the `include` option."), Remove_a_list_of_directories_from_the_watch_process: diag(6628, 3, "Remove_a_list_of_directories_from_the_watch_process_6628", "Remove a list of directories from the watch process."), Remove_a_list_of_files_from_the_watch_mode_s_processing: diag(6629, 3, "Remove_a_list_of_files_from_the_watch_mode_s_processing_6629", "Remove a list of files from the watch mode's processing."), Enable_experimental_support_for_legacy_experimental_decorators: diag(6630, 3, "Enable_experimental_support_for_legacy_experimental_decorators_6630", "Enable experimental support for legacy experimental decorators."), Print_files_read_during_the_compilation_including_why_it_was_included: diag(6631, 3, "Print_files_read_during_the_compilation_including_why_it_was_included_6631", "Print files read during the compilation including why it was included."), Output_more_detailed_compiler_performance_information_after_building: diag(6632, 3, "Output_more_detailed_compiler_performance_information_after_building_6632", "Output more detailed compiler performance information after building."), Specify_one_or_more_path_or_node_module_references_to_base_configuration_files_from_which_settings_are_inherited: diag(6633, 3, "Specify_one_or_more_path_or_node_module_references_to_base_configuration_files_from_which_settings_a_6633", "Specify one or more path or node module references to base configuration files from which settings are inherited."), Specify_what_approach_the_watcher_should_use_if_the_system_runs_out_of_native_file_watchers: diag(6634, 3, "Specify_what_approach_the_watcher_should_use_if_the_system_runs_out_of_native_file_watchers_6634", "Specify what approach the watcher should use if the system runs out of native file watchers."), Include_a_list_of_files_This_does_not_support_glob_patterns_as_opposed_to_include: diag(6635, 3, "Include_a_list_of_files_This_does_not_support_glob_patterns_as_opposed_to_include_6635", "Include a list of files. This does not support glob patterns, as opposed to `include`."), Build_all_projects_including_those_that_appear_to_be_up_to_date: diag(6636, 3, "Build_all_projects_including_those_that_appear_to_be_up_to_date_6636", "Build all projects, including those that appear to be up to date."), Ensure_that_casing_is_correct_in_imports: diag(6637, 3, "Ensure_that_casing_is_correct_in_imports_6637", "Ensure that casing is correct in imports."), Emit_a_v8_CPU_profile_of_the_compiler_run_for_debugging: diag(6638, 3, "Emit_a_v8_CPU_profile_of_the_compiler_run_for_debugging_6638", "Emit a v8 CPU profile of the compiler run for debugging."), Allow_importing_helper_functions_from_tslib_once_per_project_instead_of_including_them_per_file: diag(6639, 3, "Allow_importing_helper_functions_from_tslib_once_per_project_instead_of_including_them_per_file_6639", "Allow importing helper functions from tslib once per project, instead of including them per-file."), Skip_building_downstream_projects_on_error_in_upstream_project: diag(6640, 3, "Skip_building_downstream_projects_on_error_in_upstream_project_6640", "Skip building downstream projects on error in upstream project."), Specify_a_list_of_glob_patterns_that_match_files_to_be_included_in_compilation: diag(6641, 3, "Specify_a_list_of_glob_patterns_that_match_files_to_be_included_in_compilation_6641", "Specify a list of glob patterns that match files to be included in compilation."), Save_tsbuildinfo_files_to_allow_for_incremental_compilation_of_projects: diag(6642, 3, "Save_tsbuildinfo_files_to_allow_for_incremental_compilation_of_projects_6642", "Save .tsbuildinfo files to allow for incremental compilation of projects."), Include_sourcemap_files_inside_the_emitted_JavaScript: diag(6643, 3, "Include_sourcemap_files_inside_the_emitted_JavaScript_6643", "Include sourcemap files inside the emitted JavaScript."), Include_source_code_in_the_sourcemaps_inside_the_emitted_JavaScript: diag(6644, 3, "Include_source_code_in_the_sourcemaps_inside_the_emitted_JavaScript_6644", "Include source code in the sourcemaps inside the emitted JavaScript."), Ensure_that_each_file_can_be_safely_transpiled_without_relying_on_other_imports: diag(6645, 3, "Ensure_that_each_file_can_be_safely_transpiled_without_relying_on_other_imports_6645", "Ensure that each file can be safely transpiled without relying on other imports."), Specify_what_JSX_code_is_generated: diag(6646, 3, "Specify_what_JSX_code_is_generated_6646", "Specify what JSX code is generated."), Specify_the_JSX_factory_function_used_when_targeting_React_JSX_emit_e_g_React_createElement_or_h: diag(6647, 3, "Specify_the_JSX_factory_function_used_when_targeting_React_JSX_emit_e_g_React_createElement_or_h_6647", "Specify the JSX factory function used when targeting React JSX emit, e.g. 'React.createElement' or 'h'."), Specify_the_JSX_Fragment_reference_used_for_fragments_when_targeting_React_JSX_emit_e_g_React_Fragment_or_Fragment: diag(6648, 3, "Specify_the_JSX_Fragment_reference_used_for_fragments_when_targeting_React_JSX_emit_e_g_React_Fragme_6648", "Specify the JSX Fragment reference used for fragments when targeting React JSX emit e.g. 'React.Fragment' or 'Fragment'."), Specify_module_specifier_used_to_import_the_JSX_factory_functions_when_using_jsx_Colon_react_jsx_Asterisk: diag(6649, 3, "Specify_module_specifier_used_to_import_the_JSX_factory_functions_when_using_jsx_Colon_react_jsx_Ast_6649", "Specify module specifier used to import the JSX factory functions when using 'jsx: react-jsx*'."), Make_keyof_only_return_strings_instead_of_string_numbers_or_symbols_Legacy_option: diag(6650, 3, "Make_keyof_only_return_strings_instead_of_string_numbers_or_symbols_Legacy_option_6650", "Make keyof only return strings instead of string, numbers or symbols. Legacy option."), Specify_a_set_of_bundled_library_declaration_files_that_describe_the_target_runtime_environment: diag(6651, 3, "Specify_a_set_of_bundled_library_declaration_files_that_describe_the_target_runtime_environment_6651", "Specify a set of bundled library declaration files that describe the target runtime environment."), Print_the_names_of_emitted_files_after_a_compilation: diag(6652, 3, "Print_the_names_of_emitted_files_after_a_compilation_6652", "Print the names of emitted files after a compilation."), Print_all_of_the_files_read_during_the_compilation: diag(6653, 3, "Print_all_of_the_files_read_during_the_compilation_6653", "Print all of the files read during the compilation."), Set_the_language_of_the_messaging_from_TypeScript_This_does_not_affect_emit: diag(6654, 3, "Set_the_language_of_the_messaging_from_TypeScript_This_does_not_affect_emit_6654", "Set the language of the messaging from TypeScript. This does not affect emit."), Specify_the_location_where_debugger_should_locate_map_files_instead_of_generated_locations: diag(6655, 3, "Specify_the_location_where_debugger_should_locate_map_files_instead_of_generated_locations_6655", "Specify the location where debugger should locate map files instead of generated locations."), Specify_the_maximum_folder_depth_used_for_checking_JavaScript_files_from_node_modules_Only_applicable_with_allowJs: diag(6656, 3, "Specify_the_maximum_folder_depth_used_for_checking_JavaScript_files_from_node_modules_Only_applicabl_6656", "Specify the maximum folder depth used for checking JavaScript files from 'node_modules'. Only applicable with 'allowJs'."), Specify_what_module_code_is_generated: diag(6657, 3, "Specify_what_module_code_is_generated_6657", "Specify what module code is generated."), Specify_how_TypeScript_looks_up_a_file_from_a_given_module_specifier: diag(6658, 3, "Specify_how_TypeScript_looks_up_a_file_from_a_given_module_specifier_6658", "Specify how TypeScript looks up a file from a given module specifier."), Set_the_newline_character_for_emitting_files: diag(6659, 3, "Set_the_newline_character_for_emitting_files_6659", "Set the newline character for emitting files."), Disable_emitting_files_from_a_compilation: diag(6660, 3, "Disable_emitting_files_from_a_compilation_6660", "Disable emitting files from a compilation."), Disable_generating_custom_helper_functions_like_extends_in_compiled_output: diag(6661, 3, "Disable_generating_custom_helper_functions_like_extends_in_compiled_output_6661", "Disable generating custom helper functions like '__extends' in compiled output."), Disable_emitting_files_if_any_type_checking_errors_are_reported: diag(6662, 3, "Disable_emitting_files_if_any_type_checking_errors_are_reported_6662", "Disable emitting files if any type checking errors are reported."), Disable_truncating_types_in_error_messages: diag(6663, 3, "Disable_truncating_types_in_error_messages_6663", "Disable truncating types in error messages."), Enable_error_reporting_for_fallthrough_cases_in_switch_statements: diag(6664, 3, "Enable_error_reporting_for_fallthrough_cases_in_switch_statements_6664", "Enable error reporting for fallthrough cases in switch statements."), Enable_error_reporting_for_expressions_and_declarations_with_an_implied_any_type: diag(6665, 3, "Enable_error_reporting_for_expressions_and_declarations_with_an_implied_any_type_6665", "Enable error reporting for expressions and declarations with an implied 'any' type."), Ensure_overriding_members_in_derived_classes_are_marked_with_an_override_modifier: diag(6666, 3, "Ensure_overriding_members_in_derived_classes_are_marked_with_an_override_modifier_6666", "Ensure overriding members in derived classes are marked with an override modifier."), Enable_error_reporting_for_codepaths_that_do_not_explicitly_return_in_a_function: diag(6667, 3, "Enable_error_reporting_for_codepaths_that_do_not_explicitly_return_in_a_function_6667", "Enable error reporting for codepaths that do not explicitly return in a function."), Enable_error_reporting_when_this_is_given_the_type_any: diag(6668, 3, "Enable_error_reporting_when_this_is_given_the_type_any_6668", "Enable error reporting when 'this' is given the type 'any'."), Disable_adding_use_strict_directives_in_emitted_JavaScript_files: diag(6669, 3, "Disable_adding_use_strict_directives_in_emitted_JavaScript_files_6669", "Disable adding 'use strict' directives in emitted JavaScript files."), Disable_including_any_library_files_including_the_default_lib_d_ts: diag(6670, 3, "Disable_including_any_library_files_including_the_default_lib_d_ts_6670", "Disable including any library files, including the default lib.d.ts."), Enforces_using_indexed_accessors_for_keys_declared_using_an_indexed_type: diag(6671, 3, "Enforces_using_indexed_accessors_for_keys_declared_using_an_indexed_type_6671", "Enforces using indexed accessors for keys declared using an indexed type."), Disallow_import_s_require_s_or_reference_s_from_expanding_the_number_of_files_TypeScript_should_add_to_a_project: diag(6672, 3, "Disallow_import_s_require_s_or_reference_s_from_expanding_the_number_of_files_TypeScript_should_add__6672", "Disallow 'import's, 'require's or ''s from expanding the number of files TypeScript should add to a project."), Disable_strict_checking_of_generic_signatures_in_function_types: diag(6673, 3, "Disable_strict_checking_of_generic_signatures_in_function_types_6673", "Disable strict checking of generic signatures in function types."), Add_undefined_to_a_type_when_accessed_using_an_index: diag(6674, 3, "Add_undefined_to_a_type_when_accessed_using_an_index_6674", "Add 'undefined' to a type when accessed using an index."), Enable_error_reporting_when_local_variables_aren_t_read: diag(6675, 3, "Enable_error_reporting_when_local_variables_aren_t_read_6675", "Enable error reporting when local variables aren't read."), Raise_an_error_when_a_function_parameter_isn_t_read: diag(6676, 3, "Raise_an_error_when_a_function_parameter_isn_t_read_6676", "Raise an error when a function parameter isn't read."), Deprecated_setting_Use_outFile_instead: diag(6677, 3, "Deprecated_setting_Use_outFile_instead_6677", "Deprecated setting. Use 'outFile' instead."), Specify_an_output_folder_for_all_emitted_files: diag(6678, 3, "Specify_an_output_folder_for_all_emitted_files_6678", "Specify an output folder for all emitted files."), Specify_a_file_that_bundles_all_outputs_into_one_JavaScript_file_If_declaration_is_true_also_designates_a_file_that_bundles_all_d_ts_output: diag(6679, 3, "Specify_a_file_that_bundles_all_outputs_into_one_JavaScript_file_If_declaration_is_true_also_designa_6679", "Specify a file that bundles all outputs into one JavaScript file. If 'declaration' is true, also designates a file that bundles all .d.ts output."), Specify_a_set_of_entries_that_re_map_imports_to_additional_lookup_locations: diag(6680, 3, "Specify_a_set_of_entries_that_re_map_imports_to_additional_lookup_locations_6680", "Specify a set of entries that re-map imports to additional lookup locations."), Specify_a_list_of_language_service_plugins_to_include: diag(6681, 3, "Specify_a_list_of_language_service_plugins_to_include_6681", "Specify a list of language service plugins to include."), Disable_erasing_const_enum_declarations_in_generated_code: diag(6682, 3, "Disable_erasing_const_enum_declarations_in_generated_code_6682", "Disable erasing 'const enum' declarations in generated code."), Disable_resolving_symlinks_to_their_realpath_This_correlates_to_the_same_flag_in_node: diag(6683, 3, "Disable_resolving_symlinks_to_their_realpath_This_correlates_to_the_same_flag_in_node_6683", "Disable resolving symlinks to their realpath. This correlates to the same flag in node."), Disable_wiping_the_console_in_watch_mode: diag(6684, 3, "Disable_wiping_the_console_in_watch_mode_6684", "Disable wiping the console in watch mode."), Enable_color_and_formatting_in_TypeScript_s_output_to_make_compiler_errors_easier_to_read: diag(6685, 3, "Enable_color_and_formatting_in_TypeScript_s_output_to_make_compiler_errors_easier_to_read_6685", "Enable color and formatting in TypeScript's output to make compiler errors easier to read."), Specify_the_object_invoked_for_createElement_This_only_applies_when_targeting_react_JSX_emit: diag(6686, 3, "Specify_the_object_invoked_for_createElement_This_only_applies_when_targeting_react_JSX_emit_6686", "Specify the object invoked for 'createElement'. This only applies when targeting 'react' JSX emit."), Specify_an_array_of_objects_that_specify_paths_for_projects_Used_in_project_references: diag(6687, 3, "Specify_an_array_of_objects_that_specify_paths_for_projects_Used_in_project_references_6687", "Specify an array of objects that specify paths for projects. Used in project references."), Disable_emitting_comments: diag(6688, 3, "Disable_emitting_comments_6688", "Disable emitting comments."), Enable_importing_json_files: diag(6689, 3, "Enable_importing_json_files_6689", "Enable importing .json files."), Specify_the_root_folder_within_your_source_files: diag(6690, 3, "Specify_the_root_folder_within_your_source_files_6690", "Specify the root folder within your source files."), Allow_multiple_folders_to_be_treated_as_one_when_resolving_modules: diag(6691, 3, "Allow_multiple_folders_to_be_treated_as_one_when_resolving_modules_6691", "Allow multiple folders to be treated as one when resolving modules."), Skip_type_checking_d_ts_files_that_are_included_with_TypeScript: diag(6692, 3, "Skip_type_checking_d_ts_files_that_are_included_with_TypeScript_6692", "Skip type checking .d.ts files that are included with TypeScript."), Skip_type_checking_all_d_ts_files: diag(6693, 3, "Skip_type_checking_all_d_ts_files_6693", "Skip type checking all .d.ts files."), Create_source_map_files_for_emitted_JavaScript_files: diag(6694, 3, "Create_source_map_files_for_emitted_JavaScript_files_6694", "Create source map files for emitted JavaScript files."), Specify_the_root_path_for_debuggers_to_find_the_reference_source_code: diag(6695, 3, "Specify_the_root_path_for_debuggers_to_find_the_reference_source_code_6695", "Specify the root path for debuggers to find the reference source code."), Check_that_the_arguments_for_bind_call_and_apply_methods_match_the_original_function: diag(6697, 3, "Check_that_the_arguments_for_bind_call_and_apply_methods_match_the_original_function_6697", "Check that the arguments for 'bind', 'call', and 'apply' methods match the original function."), When_assigning_functions_check_to_ensure_parameters_and_the_return_values_are_subtype_compatible: diag(6698, 3, "When_assigning_functions_check_to_ensure_parameters_and_the_return_values_are_subtype_compatible_6698", "When assigning functions, check to ensure parameters and the return values are subtype-compatible."), When_type_checking_take_into_account_null_and_undefined: diag(6699, 3, "When_type_checking_take_into_account_null_and_undefined_6699", "When type checking, take into account 'null' and 'undefined'."), Check_for_class_properties_that_are_declared_but_not_set_in_the_constructor: diag(6700, 3, "Check_for_class_properties_that_are_declared_but_not_set_in_the_constructor_6700", "Check for class properties that are declared but not set in the constructor."), Disable_emitting_declarations_that_have_internal_in_their_JSDoc_comments: diag(6701, 3, "Disable_emitting_declarations_that_have_internal_in_their_JSDoc_comments_6701", "Disable emitting declarations that have '@internal' in their JSDoc comments."), Disable_reporting_of_excess_property_errors_during_the_creation_of_object_literals: diag(6702, 3, "Disable_reporting_of_excess_property_errors_during_the_creation_of_object_literals_6702", "Disable reporting of excess property errors during the creation of object literals."), Suppress_noImplicitAny_errors_when_indexing_objects_that_lack_index_signatures: diag(6703, 3, "Suppress_noImplicitAny_errors_when_indexing_objects_that_lack_index_signatures_6703", "Suppress 'noImplicitAny' errors when indexing objects that lack index signatures."), Synchronously_call_callbacks_and_update_the_state_of_directory_watchers_on_platforms_that_don_t_support_recursive_watching_natively: diag(6704, 3, "Synchronously_call_callbacks_and_update_the_state_of_directory_watchers_on_platforms_that_don_t_supp_6704", "Synchronously call callbacks and update the state of directory watchers on platforms that don`t support recursive watching natively."), Set_the_JavaScript_language_version_for_emitted_JavaScript_and_include_compatible_library_declarations: diag(6705, 3, "Set_the_JavaScript_language_version_for_emitted_JavaScript_and_include_compatible_library_declaratio_6705", "Set the JavaScript language version for emitted JavaScript and include compatible library declarations."), Log_paths_used_during_the_moduleResolution_process: diag(6706, 3, "Log_paths_used_during_the_moduleResolution_process_6706", "Log paths used during the 'moduleResolution' process."), Specify_the_path_to_tsbuildinfo_incremental_compilation_file: diag(6707, 3, "Specify_the_path_to_tsbuildinfo_incremental_compilation_file_6707", "Specify the path to .tsbuildinfo incremental compilation file."), Specify_options_for_automatic_acquisition_of_declaration_files: diag(6709, 3, "Specify_options_for_automatic_acquisition_of_declaration_files_6709", "Specify options for automatic acquisition of declaration files."), Specify_multiple_folders_that_act_like_Slashnode_modules_Slash_types: diag(6710, 3, "Specify_multiple_folders_that_act_like_Slashnode_modules_Slash_types_6710", "Specify multiple folders that act like './node_modules/@types'."), Specify_type_package_names_to_be_included_without_being_referenced_in_a_source_file: diag(6711, 3, "Specify_type_package_names_to_be_included_without_being_referenced_in_a_source_file_6711", "Specify type package names to be included without being referenced in a source file."), Emit_ECMAScript_standard_compliant_class_fields: diag(6712, 3, "Emit_ECMAScript_standard_compliant_class_fields_6712", "Emit ECMAScript-standard-compliant class fields."), Enable_verbose_logging: diag(6713, 3, "Enable_verbose_logging_6713", "Enable verbose logging."), Specify_how_directories_are_watched_on_systems_that_lack_recursive_file_watching_functionality: diag(6714, 3, "Specify_how_directories_are_watched_on_systems_that_lack_recursive_file_watching_functionality_6714", "Specify how directories are watched on systems that lack recursive file-watching functionality."), Specify_how_the_TypeScript_watch_mode_works: diag(6715, 3, "Specify_how_the_TypeScript_watch_mode_works_6715", "Specify how the TypeScript watch mode works."), Require_undeclared_properties_from_index_signatures_to_use_element_accesses: diag(6717, 3, "Require_undeclared_properties_from_index_signatures_to_use_element_accesses_6717", "Require undeclared properties from index signatures to use element accesses."), Specify_emit_Slashchecking_behavior_for_imports_that_are_only_used_for_types: diag(6718, 3, "Specify_emit_Slashchecking_behavior_for_imports_that_are_only_used_for_types_6718", "Specify emit/checking behavior for imports that are only used for types."), Require_sufficient_annotation_on_exports_so_other_tools_can_trivially_generate_declaration_files: diag(6719, 3, "Require_sufficient_annotation_on_exports_so_other_tools_can_trivially_generate_declaration_files_6719", "Require sufficient annotation on exports so other tools can trivially generate declaration files."), Built_in_iterators_are_instantiated_with_a_TReturn_type_of_undefined_instead_of_any: diag(6720, 3, "Built_in_iterators_are_instantiated_with_a_TReturn_type_of_undefined_instead_of_any_6720", "Built-in iterators are instantiated with a 'TReturn' type of 'undefined' instead of 'any'."), Do_not_allow_runtime_constructs_that_are_not_part_of_ECMAScript: diag(6721, 3, "Do_not_allow_runtime_constructs_that_are_not_part_of_ECMAScript_6721", "Do not allow runtime constructs that are not part of ECMAScript."), Default_catch_clause_variables_as_unknown_instead_of_any: diag(6803, 3, "Default_catch_clause_variables_as_unknown_instead_of_any_6803", "Default catch clause variables as 'unknown' instead of 'any'."), Do_not_transform_or_elide_any_imports_or_exports_not_marked_as_type_only_ensuring_they_are_written_in_the_output_file_s_format_based_on_the_module_setting: diag(6804, 3, "Do_not_transform_or_elide_any_imports_or_exports_not_marked_as_type_only_ensuring_they_are_written_i_6804", "Do not transform or elide any imports or exports not marked as type-only, ensuring they are written in the output file's format based on the 'module' setting."), Disable_full_type_checking_only_critical_parse_and_emit_errors_will_be_reported: diag(6805, 3, "Disable_full_type_checking_only_critical_parse_and_emit_errors_will_be_reported_6805", "Disable full type checking (only critical parse and emit errors will be reported)."), Check_side_effect_imports: diag(6806, 3, "Check_side_effect_imports_6806", "Check side effect imports."), This_operation_can_be_simplified_This_shift_is_identical_to_0_1_2: diag(6807, 1, "This_operation_can_be_simplified_This_shift_is_identical_to_0_1_2_6807", "This operation can be simplified. This shift is identical to `{0} {1} {2}`."), Enable_lib_replacement: diag(6808, 3, "Enable_lib_replacement_6808", "Enable lib replacement."), Ensure_types_are_ordered_stably_and_deterministically_across_compilations: diag(6809, 3, "Ensure_types_are_ordered_stably_and_deterministically_across_compilations_6809", "Ensure types are ordered stably and deterministically across compilations."), one_of_Colon: diag(6900, 3, "one_of_Colon_6900", "one of:"), one_or_more_Colon: diag(6901, 3, "one_or_more_Colon_6901", "one or more:"), type_Colon: diag(6902, 3, "type_Colon_6902", "type:"), default_Colon: diag(6903, 3, "default_Colon_6903", "default:"), true_unless_strict_is_false: diag(6905, 3, "true_unless_strict_is_false_6905", "`true`, unless `strict` is `false`"), false_unless_composite_is_set: diag(6906, 3, "false_unless_composite_is_set_6906", "`false`, unless `composite` is set"), node_modules_bower_components_jspm_packages_plus_the_value_of_outDir_if_one_is_specified: diag(6907, 3, "node_modules_bower_components_jspm_packages_plus_the_value_of_outDir_if_one_is_specified_6907", '`["node_modules", "bower_components", "jspm_packages"]`, plus the value of `outDir` if one is specified.'), if_files_is_specified_otherwise_Asterisk_Asterisk_Slash_Asterisk: diag(6908, 3, "if_files_is_specified_otherwise_Asterisk_Asterisk_Slash_Asterisk_6908", '`[]` if `files` is specified, otherwise `["**/*"]`'), true_if_composite_false_otherwise: diag(6909, 3, "true_if_composite_false_otherwise_6909", "`true` if `composite`, `false` otherwise"), nodenext_if_module_is_nodenext_node16_if_module_is_node16_or_node18_otherwise_bundler: diag(69010, 3, "nodenext_if_module_is_nodenext_node16_if_module_is_node16_or_node18_otherwise_bundler_69010", "`nodenext` if `module` is `nodenext`; `node16` if `module` is `node16` or `node18`; otherwise, `bundler`."), Computed_from_the_list_of_input_files: diag(6911, 3, "Computed_from_the_list_of_input_files_6911", "Computed from the list of input files"), Platform_specific: diag(6912, 3, "Platform_specific_6912", "Platform specific"), You_can_learn_about_all_of_the_compiler_options_at_0: diag(6913, 3, "You_can_learn_about_all_of_the_compiler_options_at_0_6913", "You can learn about all of the compiler options at {0}"), Including_watch_w_will_start_watching_the_current_project_for_the_file_changes_Once_set_you_can_config_watch_mode_with_Colon: diag(6914, 3, "Including_watch_w_will_start_watching_the_current_project_for_the_file_changes_Once_set_you_can_conf_6914", "Including --watch, -w will start watching the current project for the file changes. Once set, you can config watch mode with:"), Using_build_b_will_make_tsc_behave_more_like_a_build_orchestrator_than_a_compiler_This_is_used_to_trigger_building_composite_projects_which_you_can_learn_more_about_at_0: diag(6915, 3, "Using_build_b_will_make_tsc_behave_more_like_a_build_orchestrator_than_a_compiler_This_is_used_to_tr_6915", "Using --build, -b will make tsc behave more like a build orchestrator than a compiler. This is used to trigger building composite projects which you can learn more about at {0}"), COMMON_COMMANDS: diag(6916, 3, "COMMON_COMMANDS_6916", "COMMON COMMANDS"), ALL_COMPILER_OPTIONS: diag(6917, 3, "ALL_COMPILER_OPTIONS_6917", "ALL COMPILER OPTIONS"), WATCH_OPTIONS: diag(6918, 3, "WATCH_OPTIONS_6918", "WATCH OPTIONS"), BUILD_OPTIONS: diag(6919, 3, "BUILD_OPTIONS_6919", "BUILD OPTIONS"), COMMON_COMPILER_OPTIONS: diag(6920, 3, "COMMON_COMPILER_OPTIONS_6920", "COMMON COMPILER OPTIONS"), COMMAND_LINE_FLAGS: diag(6921, 3, "COMMAND_LINE_FLAGS_6921", "COMMAND LINE FLAGS"), tsc_Colon_The_TypeScript_Compiler: diag(6922, 3, "tsc_Colon_The_TypeScript_Compiler_6922", "tsc: The TypeScript Compiler"), Compiles_the_current_project_tsconfig_json_in_the_working_directory: diag(6923, 3, "Compiles_the_current_project_tsconfig_json_in_the_working_directory_6923", "Compiles the current project (tsconfig.json in the working directory.)"), Ignoring_tsconfig_json_compiles_the_specified_files_with_default_compiler_options: diag(6924, 3, "Ignoring_tsconfig_json_compiles_the_specified_files_with_default_compiler_options_6924", "Ignoring tsconfig.json, compiles the specified files with default compiler options."), Build_a_composite_project_in_the_working_directory: diag(6925, 3, "Build_a_composite_project_in_the_working_directory_6925", "Build a composite project in the working directory."), Creates_a_tsconfig_json_with_the_recommended_settings_in_the_working_directory: diag(6926, 3, "Creates_a_tsconfig_json_with_the_recommended_settings_in_the_working_directory_6926", "Creates a tsconfig.json with the recommended settings in the working directory."), Compiles_the_TypeScript_project_located_at_the_specified_path: diag(6927, 3, "Compiles_the_TypeScript_project_located_at_the_specified_path_6927", "Compiles the TypeScript project located at the specified path."), An_expanded_version_of_this_information_showing_all_possible_compiler_options: diag(6928, 3, "An_expanded_version_of_this_information_showing_all_possible_compiler_options_6928", "An expanded version of this information, showing all possible compiler options"), Compiles_the_current_project_with_additional_settings: diag(6929, 3, "Compiles_the_current_project_with_additional_settings_6929", "Compiles the current project, with additional settings."), true_for_ES2022_and_above_including_ESNext: diag(6930, 3, "true_for_ES2022_and_above_including_ESNext_6930", "`true` for ES2022 and above, including ESNext."), List_of_file_name_suffixes_to_search_when_resolving_a_module: diag(6931, 1, "List_of_file_name_suffixes_to_search_when_resolving_a_module_6931", "List of file name suffixes to search when resolving a module."), false_unless_checkJs_is_set: diag(6932, 3, "false_unless_checkJs_is_set_6932", "`false`, unless `checkJs` is set"), Variable_0_implicitly_has_an_1_type: diag(7005, 1, "Variable_0_implicitly_has_an_1_type_7005", "Variable '{0}' implicitly has an '{1}' type."), Parameter_0_implicitly_has_an_1_type: diag(7006, 1, "Parameter_0_implicitly_has_an_1_type_7006", "Parameter '{0}' implicitly has an '{1}' type."), Member_0_implicitly_has_an_1_type: diag(7008, 1, "Member_0_implicitly_has_an_1_type_7008", "Member '{0}' implicitly has an '{1}' type."), new_expression_whose_target_lacks_a_construct_signature_implicitly_has_an_any_type: diag(7009, 1, "new_expression_whose_target_lacks_a_construct_signature_implicitly_has_an_any_type_7009", "'new' expression, whose target lacks a construct signature, implicitly has an 'any' type."), _0_which_lacks_return_type_annotation_implicitly_has_an_1_return_type: diag(7010, 1, "_0_which_lacks_return_type_annotation_implicitly_has_an_1_return_type_7010", "'{0}', which lacks return-type annotation, implicitly has an '{1}' return type."), Function_expression_which_lacks_return_type_annotation_implicitly_has_an_0_return_type: diag(7011, 1, "Function_expression_which_lacks_return_type_annotation_implicitly_has_an_0_return_type_7011", "Function expression, which lacks return-type annotation, implicitly has an '{0}' return type."), This_overload_implicitly_returns_the_type_0_because_it_lacks_a_return_type_annotation: diag(7012, 1, "This_overload_implicitly_returns_the_type_0_because_it_lacks_a_return_type_annotation_7012", "This overload implicitly returns the type '{0}' because it lacks a return type annotation."), Construct_signature_which_lacks_return_type_annotation_implicitly_has_an_any_return_type: diag(7013, 1, "Construct_signature_which_lacks_return_type_annotation_implicitly_has_an_any_return_type_7013", "Construct signature, which lacks return-type annotation, implicitly has an 'any' return type."), Function_type_which_lacks_return_type_annotation_implicitly_has_an_0_return_type: diag(7014, 1, "Function_type_which_lacks_return_type_annotation_implicitly_has_an_0_return_type_7014", "Function type, which lacks return-type annotation, implicitly has an '{0}' return type."), Element_implicitly_has_an_any_type_because_index_expression_is_not_of_type_number: diag(7015, 1, "Element_implicitly_has_an_any_type_because_index_expression_is_not_of_type_number_7015", "Element implicitly has an 'any' type because index expression is not of type 'number'."), Could_not_find_a_declaration_file_for_module_0_1_implicitly_has_an_any_type: diag(7016, 1, "Could_not_find_a_declaration_file_for_module_0_1_implicitly_has_an_any_type_7016", "Could not find a declaration file for module '{0}'. '{1}' implicitly has an 'any' type."), Element_implicitly_has_an_any_type_because_type_0_has_no_index_signature: diag(7017, 1, "Element_implicitly_has_an_any_type_because_type_0_has_no_index_signature_7017", "Element implicitly has an 'any' type because type '{0}' has no index signature."), Object_literal_s_property_0_implicitly_has_an_1_type: diag(7018, 1, "Object_literal_s_property_0_implicitly_has_an_1_type_7018", "Object literal's property '{0}' implicitly has an '{1}' type."), Rest_parameter_0_implicitly_has_an_any_type: diag(7019, 1, "Rest_parameter_0_implicitly_has_an_any_type_7019", "Rest parameter '{0}' implicitly has an 'any[]' type."), Call_signature_which_lacks_return_type_annotation_implicitly_has_an_any_return_type: diag(7020, 1, "Call_signature_which_lacks_return_type_annotation_implicitly_has_an_any_return_type_7020", "Call signature, which lacks return-type annotation, implicitly has an 'any' return type."), _0_implicitly_has_type_any_because_it_does_not_have_a_type_annotation_and_is_referenced_directly_or_indirectly_in_its_own_initializer: diag(7022, 1, "_0_implicitly_has_type_any_because_it_does_not_have_a_type_annotation_and_is_referenced_directly_or__7022", "'{0}' implicitly has type 'any' because it does not have a type annotation and is referenced directly or indirectly in its own initializer."), _0_implicitly_has_return_type_any_because_it_does_not_have_a_return_type_annotation_and_is_referenced_directly_or_indirectly_in_one_of_its_return_expressions: diag(7023, 1, "_0_implicitly_has_return_type_any_because_it_does_not_have_a_return_type_annotation_and_is_reference_7023", "'{0}' implicitly has return type 'any' because it does not have a return type annotation and is referenced directly or indirectly in one of its return expressions."), Function_implicitly_has_return_type_any_because_it_does_not_have_a_return_type_annotation_and_is_referenced_directly_or_indirectly_in_one_of_its_return_expressions: diag(7024, 1, "Function_implicitly_has_return_type_any_because_it_does_not_have_a_return_type_annotation_and_is_ref_7024", "Function implicitly has return type 'any' because it does not have a return type annotation and is referenced directly or indirectly in one of its return expressions."), Generator_implicitly_has_yield_type_0_Consider_supplying_a_return_type_annotation: diag(7025, 1, "Generator_implicitly_has_yield_type_0_Consider_supplying_a_return_type_annotation_7025", "Generator implicitly has yield type '{0}'. Consider supplying a return type annotation."), JSX_element_implicitly_has_type_any_because_no_interface_JSX_0_exists: diag(7026, 1, "JSX_element_implicitly_has_type_any_because_no_interface_JSX_0_exists_7026", "JSX element implicitly has type 'any' because no interface 'JSX.{0}' exists."), Unreachable_code_detected: diag(7027, 1, "Unreachable_code_detected_7027", "Unreachable code detected.", true), Unused_label: diag(7028, 1, "Unused_label_7028", "Unused label.", true), Fallthrough_case_in_switch: diag(7029, 1, "Fallthrough_case_in_switch_7029", "Fallthrough case in switch."), Not_all_code_paths_return_a_value: diag(7030, 1, "Not_all_code_paths_return_a_value_7030", "Not all code paths return a value."), Binding_element_0_implicitly_has_an_1_type: diag(7031, 1, "Binding_element_0_implicitly_has_an_1_type_7031", "Binding element '{0}' implicitly has an '{1}' type."), Property_0_implicitly_has_type_any_because_its_set_accessor_lacks_a_parameter_type_annotation: diag(7032, 1, "Property_0_implicitly_has_type_any_because_its_set_accessor_lacks_a_parameter_type_annotation_7032", "Property '{0}' implicitly has type 'any', because its set accessor lacks a parameter type annotation."), Property_0_implicitly_has_type_any_because_its_get_accessor_lacks_a_return_type_annotation: diag(7033, 1, "Property_0_implicitly_has_type_any_because_its_get_accessor_lacks_a_return_type_annotation_7033", "Property '{0}' implicitly has type 'any', because its get accessor lacks a return type annotation."), Variable_0_implicitly_has_type_1_in_some_locations_where_its_type_cannot_be_determined: diag(7034, 1, "Variable_0_implicitly_has_type_1_in_some_locations_where_its_type_cannot_be_determined_7034", "Variable '{0}' implicitly has type '{1}' in some locations where its type cannot be determined."), Try_npm_i_save_dev_types_Slash_1_if_it_exists_or_add_a_new_declaration_d_ts_file_containing_declare_module_0: diag(7035, 1, "Try_npm_i_save_dev_types_Slash_1_if_it_exists_or_add_a_new_declaration_d_ts_file_containing_declare__7035", "Try `npm i --save-dev @types/{1}` if it exists or add a new declaration (.d.ts) file containing `declare module '{0}';`"), Dynamic_import_s_specifier_must_be_of_type_string_but_here_has_type_0: diag(7036, 1, "Dynamic_import_s_specifier_must_be_of_type_string_but_here_has_type_0_7036", "Dynamic import's specifier must be of type 'string', but here has type '{0}'."), Enables_emit_interoperability_between_CommonJS_and_ES_Modules_via_creation_of_namespace_objects_for_all_imports_Implies_allowSyntheticDefaultImports: diag(7037, 3, "Enables_emit_interoperability_between_CommonJS_and_ES_Modules_via_creation_of_namespace_objects_for__7037", "Enables emit interoperability between CommonJS and ES Modules via creation of namespace objects for all imports. Implies 'allowSyntheticDefaultImports'."), Type_originates_at_this_import_A_namespace_style_import_cannot_be_called_or_constructed_and_will_cause_a_failure_at_runtime_Consider_using_a_default_import_or_import_require_here_instead: diag(7038, 3, "Type_originates_at_this_import_A_namespace_style_import_cannot_be_called_or_constructed_and_will_cau_7038", "Type originates at this import. A namespace-style import cannot be called or constructed, and will cause a failure at runtime. Consider using a default import or import require here instead."), Mapped_object_type_implicitly_has_an_any_template_type: diag(7039, 1, "Mapped_object_type_implicitly_has_an_any_template_type_7039", "Mapped object type implicitly has an 'any' template type."), If_the_0_package_actually_exposes_this_module_consider_sending_a_pull_request_to_amend_https_Colon_Slash_Slashgithub_com_SlashDefinitelyTyped_SlashDefinitelyTyped_Slashtree_Slashmaster_Slashtypes_Slash_1: diag(7040, 1, "If_the_0_package_actually_exposes_this_module_consider_sending_a_pull_request_to_amend_https_Colon_S_7040", "If the '{0}' package actually exposes this module, consider sending a pull request to amend 'https://github.com/DefinitelyTyped/DefinitelyTyped/tree/master/types/{1}'"), The_containing_arrow_function_captures_the_global_value_of_this: diag(7041, 1, "The_containing_arrow_function_captures_the_global_value_of_this_7041", "The containing arrow function captures the global value of 'this'."), Module_0_was_resolved_to_1_but_resolveJsonModule_is_not_used: diag(7042, 1, "Module_0_was_resolved_to_1_but_resolveJsonModule_is_not_used_7042", "Module '{0}' was resolved to '{1}', but '--resolveJsonModule' is not used."), Variable_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage: diag(7043, 2, "Variable_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage_7043", "Variable '{0}' implicitly has an '{1}' type, but a better type may be inferred from usage."), Parameter_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage: diag(7044, 2, "Parameter_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage_7044", "Parameter '{0}' implicitly has an '{1}' type, but a better type may be inferred from usage."), Member_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage: diag(7045, 2, "Member_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage_7045", "Member '{0}' implicitly has an '{1}' type, but a better type may be inferred from usage."), Variable_0_implicitly_has_type_1_in_some_locations_but_a_better_type_may_be_inferred_from_usage: diag(7046, 2, "Variable_0_implicitly_has_type_1_in_some_locations_but_a_better_type_may_be_inferred_from_usage_7046", "Variable '{0}' implicitly has type '{1}' in some locations, but a better type may be inferred from usage."), Rest_parameter_0_implicitly_has_an_any_type_but_a_better_type_may_be_inferred_from_usage: diag(7047, 2, "Rest_parameter_0_implicitly_has_an_any_type_but_a_better_type_may_be_inferred_from_usage_7047", "Rest parameter '{0}' implicitly has an 'any[]' type, but a better type may be inferred from usage."), Property_0_implicitly_has_type_any_but_a_better_type_for_its_get_accessor_may_be_inferred_from_usage: diag(7048, 2, "Property_0_implicitly_has_type_any_but_a_better_type_for_its_get_accessor_may_be_inferred_from_usage_7048", "Property '{0}' implicitly has type 'any', but a better type for its get accessor may be inferred from usage."), Property_0_implicitly_has_type_any_but_a_better_type_for_its_set_accessor_may_be_inferred_from_usage: diag(7049, 2, "Property_0_implicitly_has_type_any_but_a_better_type_for_its_set_accessor_may_be_inferred_from_usage_7049", "Property '{0}' implicitly has type 'any', but a better type for its set accessor may be inferred from usage."), _0_implicitly_has_an_1_return_type_but_a_better_type_may_be_inferred_from_usage: diag(7050, 2, "_0_implicitly_has_an_1_return_type_but_a_better_type_may_be_inferred_from_usage_7050", "'{0}' implicitly has an '{1}' return type, but a better type may be inferred from usage."), Parameter_has_a_name_but_no_type_Did_you_mean_0_Colon_1: diag(7051, 1, "Parameter_has_a_name_but_no_type_Did_you_mean_0_Colon_1_7051", "Parameter has a name but no type. Did you mean '{0}: {1}'?"), Element_implicitly_has_an_any_type_because_type_0_has_no_index_signature_Did_you_mean_to_call_1: diag(7052, 1, "Element_implicitly_has_an_any_type_because_type_0_has_no_index_signature_Did_you_mean_to_call_1_7052", "Element implicitly has an 'any' type because type '{0}' has no index signature. Did you mean to call '{1}'?"), Element_implicitly_has_an_any_type_because_expression_of_type_0_can_t_be_used_to_index_type_1: diag(7053, 1, "Element_implicitly_has_an_any_type_because_expression_of_type_0_can_t_be_used_to_index_type_1_7053", "Element implicitly has an 'any' type because expression of type '{0}' can't be used to index type '{1}'."), No_index_signature_with_a_parameter_of_type_0_was_found_on_type_1: diag(7054, 1, "No_index_signature_with_a_parameter_of_type_0_was_found_on_type_1_7054", "No index signature with a parameter of type '{0}' was found on type '{1}'."), _0_which_lacks_return_type_annotation_implicitly_has_an_1_yield_type: diag(7055, 1, "_0_which_lacks_return_type_annotation_implicitly_has_an_1_yield_type_7055", "'{0}', which lacks return-type annotation, implicitly has an '{1}' yield type."), The_inferred_type_of_this_node_exceeds_the_maximum_length_the_compiler_will_serialize_An_explicit_type_annotation_is_needed: diag(7056, 1, "The_inferred_type_of_this_node_exceeds_the_maximum_length_the_compiler_will_serialize_An_explicit_ty_7056", "The inferred type of this node exceeds the maximum length the compiler will serialize. An explicit type annotation is needed."), yield_expression_implicitly_results_in_an_any_type_because_its_containing_generator_lacks_a_return_type_annotation: diag(7057, 1, "yield_expression_implicitly_results_in_an_any_type_because_its_containing_generator_lacks_a_return_t_7057", "'yield' expression implicitly results in an 'any' type because its containing generator lacks a return-type annotation."), If_the_0_package_actually_exposes_this_module_try_adding_a_new_declaration_d_ts_file_containing_declare_module_1: diag(7058, 1, "If_the_0_package_actually_exposes_this_module_try_adding_a_new_declaration_d_ts_file_containing_decl_7058", "If the '{0}' package actually exposes this module, try adding a new declaration (.d.ts) file containing `declare module '{1}';`"), This_syntax_is_reserved_in_files_with_the_mts_or_cts_extension_Use_an_as_expression_instead: diag(7059, 1, "This_syntax_is_reserved_in_files_with_the_mts_or_cts_extension_Use_an_as_expression_instead_7059", "This syntax is reserved in files with the .mts or .cts extension. Use an `as` expression instead."), This_syntax_is_reserved_in_files_with_the_mts_or_cts_extension_Add_a_trailing_comma_or_explicit_constraint: diag(7060, 1, "This_syntax_is_reserved_in_files_with_the_mts_or_cts_extension_Add_a_trailing_comma_or_explicit_cons_7060", "This syntax is reserved in files with the .mts or .cts extension. Add a trailing comma or explicit constraint."), A_mapped_type_may_not_declare_properties_or_methods: diag(7061, 1, "A_mapped_type_may_not_declare_properties_or_methods_7061", "A mapped type may not declare properties or methods."), You_cannot_rename_this_element: diag(8000, 1, "You_cannot_rename_this_element_8000", "You cannot rename this element."), You_cannot_rename_elements_that_are_defined_in_the_standard_TypeScript_library: diag(8001, 1, "You_cannot_rename_elements_that_are_defined_in_the_standard_TypeScript_library_8001", "You cannot rename elements that are defined in the standard TypeScript library."), import_can_only_be_used_in_TypeScript_files: diag(8002, 1, "import_can_only_be_used_in_TypeScript_files_8002", "'import ... =' can only be used in TypeScript files."), export_can_only_be_used_in_TypeScript_files: diag(8003, 1, "export_can_only_be_used_in_TypeScript_files_8003", "'export =' can only be used in TypeScript files."), Type_parameter_declarations_can_only_be_used_in_TypeScript_files: diag(8004, 1, "Type_parameter_declarations_can_only_be_used_in_TypeScript_files_8004", "Type parameter declarations can only be used in TypeScript files."), implements_clauses_can_only_be_used_in_TypeScript_files: diag(8005, 1, "implements_clauses_can_only_be_used_in_TypeScript_files_8005", "'implements' clauses can only be used in TypeScript files."), _0_declarations_can_only_be_used_in_TypeScript_files: diag(8006, 1, "_0_declarations_can_only_be_used_in_TypeScript_files_8006", "'{0}' declarations can only be used in TypeScript files."), Type_aliases_can_only_be_used_in_TypeScript_files: diag(8008, 1, "Type_aliases_can_only_be_used_in_TypeScript_files_8008", "Type aliases can only be used in TypeScript files."), The_0_modifier_can_only_be_used_in_TypeScript_files: diag(8009, 1, "The_0_modifier_can_only_be_used_in_TypeScript_files_8009", "The '{0}' modifier can only be used in TypeScript files."), Type_annotations_can_only_be_used_in_TypeScript_files: diag(8010, 1, "Type_annotations_can_only_be_used_in_TypeScript_files_8010", "Type annotations can only be used in TypeScript files."), Type_arguments_can_only_be_used_in_TypeScript_files: diag(8011, 1, "Type_arguments_can_only_be_used_in_TypeScript_files_8011", "Type arguments can only be used in TypeScript files."), Parameter_modifiers_can_only_be_used_in_TypeScript_files: diag(8012, 1, "Parameter_modifiers_can_only_be_used_in_TypeScript_files_8012", "Parameter modifiers can only be used in TypeScript files."), Non_null_assertions_can_only_be_used_in_TypeScript_files: diag(8013, 1, "Non_null_assertions_can_only_be_used_in_TypeScript_files_8013", "Non-null assertions can only be used in TypeScript files."), Type_assertion_expressions_can_only_be_used_in_TypeScript_files: diag(8016, 1, "Type_assertion_expressions_can_only_be_used_in_TypeScript_files_8016", "Type assertion expressions can only be used in TypeScript files."), Signature_declarations_can_only_be_used_in_TypeScript_files: diag(8017, 1, "Signature_declarations_can_only_be_used_in_TypeScript_files_8017", "Signature declarations can only be used in TypeScript files."), Report_errors_in_js_files: diag(8019, 3, "Report_errors_in_js_files_8019", "Report errors in .js files."), JSDoc_types_can_only_be_used_inside_documentation_comments: diag(8020, 1, "JSDoc_types_can_only_be_used_inside_documentation_comments_8020", "JSDoc types can only be used inside documentation comments."), JSDoc_typedef_tag_should_either_have_a_type_annotation_or_be_followed_by_property_or_member_tags: diag(8021, 1, "JSDoc_typedef_tag_should_either_have_a_type_annotation_or_be_followed_by_property_or_member_tags_8021", "JSDoc '@typedef' tag should either have a type annotation or be followed by '@property' or '@member' tags."), JSDoc_0_is_not_attached_to_a_class: diag(8022, 1, "JSDoc_0_is_not_attached_to_a_class_8022", "JSDoc '@{0}' is not attached to a class."), JSDoc_0_1_does_not_match_the_extends_2_clause: diag(8023, 1, "JSDoc_0_1_does_not_match_the_extends_2_clause_8023", "JSDoc '@{0} {1}' does not match the 'extends {2}' clause."), JSDoc_param_tag_has_name_0_but_there_is_no_parameter_with_that_name: diag(8024, 1, "JSDoc_param_tag_has_name_0_but_there_is_no_parameter_with_that_name_8024", "JSDoc '@param' tag has name '{0}', but there is no parameter with that name."), Class_declarations_cannot_have_more_than_one_augments_or_extends_tag: diag(8025, 1, "Class_declarations_cannot_have_more_than_one_augments_or_extends_tag_8025", "Class declarations cannot have more than one '@augments' or '@extends' tag."), Expected_0_type_arguments_provide_these_with_an_extends_tag: diag(8026, 1, "Expected_0_type_arguments_provide_these_with_an_extends_tag_8026", "Expected {0} type arguments; provide these with an '@extends' tag."), Expected_0_1_type_arguments_provide_these_with_an_extends_tag: diag(8027, 1, "Expected_0_1_type_arguments_provide_these_with_an_extends_tag_8027", "Expected {0}-{1} type arguments; provide these with an '@extends' tag."), JSDoc_may_only_appear_in_the_last_parameter_of_a_signature: diag(8028, 1, "JSDoc_may_only_appear_in_the_last_parameter_of_a_signature_8028", "JSDoc '...' may only appear in the last parameter of a signature."), JSDoc_param_tag_has_name_0_but_there_is_no_parameter_with_that_name_It_would_match_arguments_if_it_had_an_array_type: diag(8029, 1, "JSDoc_param_tag_has_name_0_but_there_is_no_parameter_with_that_name_It_would_match_arguments_if_it_h_8029", "JSDoc '@param' tag has name '{0}', but there is no parameter with that name. It would match 'arguments' if it had an array type."), The_type_of_a_function_declaration_must_match_the_function_s_signature: diag(8030, 1, "The_type_of_a_function_declaration_must_match_the_function_s_signature_8030", "The type of a function declaration must match the function's signature."), You_cannot_rename_a_module_via_a_global_import: diag(8031, 1, "You_cannot_rename_a_module_via_a_global_import_8031", "You cannot rename a module via a global import."), Qualified_name_0_is_not_allowed_without_a_leading_param_object_1: diag(8032, 1, "Qualified_name_0_is_not_allowed_without_a_leading_param_object_1_8032", "Qualified name '{0}' is not allowed without a leading '@param {object} {1}'."), A_JSDoc_typedef_comment_may_not_contain_multiple_type_tags: diag(8033, 1, "A_JSDoc_typedef_comment_may_not_contain_multiple_type_tags_8033", "A JSDoc '@typedef' comment may not contain multiple '@type' tags."), The_tag_was_first_specified_here: diag(8034, 1, "The_tag_was_first_specified_here_8034", "The tag was first specified here."), You_cannot_rename_elements_that_are_defined_in_a_node_modules_folder: diag(8035, 1, "You_cannot_rename_elements_that_are_defined_in_a_node_modules_folder_8035", "You cannot rename elements that are defined in a 'node_modules' folder."), You_cannot_rename_elements_that_are_defined_in_another_node_modules_folder: diag(8036, 1, "You_cannot_rename_elements_that_are_defined_in_another_node_modules_folder_8036", "You cannot rename elements that are defined in another 'node_modules' folder."), Type_satisfaction_expressions_can_only_be_used_in_TypeScript_files: diag(8037, 1, "Type_satisfaction_expressions_can_only_be_used_in_TypeScript_files_8037", "Type satisfaction expressions can only be used in TypeScript files."), Decorators_may_not_appear_after_export_or_export_default_if_they_also_appear_before_export: diag(8038, 1, "Decorators_may_not_appear_after_export_or_export_default_if_they_also_appear_before_export_8038", "Decorators may not appear after 'export' or 'export default' if they also appear before 'export'."), A_JSDoc_template_tag_may_not_follow_a_typedef_callback_or_overload_tag: diag(8039, 1, "A_JSDoc_template_tag_may_not_follow_a_typedef_callback_or_overload_tag_8039", "A JSDoc '@template' tag may not follow a '@typedef', '@callback', or '@overload' tag"), Declaration_emit_for_this_file_requires_using_private_name_0_An_explicit_type_annotation_may_unblock_declaration_emit: diag(9005, 1, "Declaration_emit_for_this_file_requires_using_private_name_0_An_explicit_type_annotation_may_unblock_9005", "Declaration emit for this file requires using private name '{0}'. An explicit type annotation may unblock declaration emit."), Declaration_emit_for_this_file_requires_using_private_name_0_from_module_1_An_explicit_type_annotation_may_unblock_declaration_emit: diag(9006, 1, "Declaration_emit_for_this_file_requires_using_private_name_0_from_module_1_An_explicit_type_annotati_9006", "Declaration emit for this file requires using private name '{0}' from module '{1}'. An explicit type annotation may unblock declaration emit."), Function_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations: diag(9007, 1, "Function_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations_9007", "Function must have an explicit return type annotation with --isolatedDeclarations."), Method_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations: diag(9008, 1, "Method_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations_9008", "Method must have an explicit return type annotation with --isolatedDeclarations."), At_least_one_accessor_must_have_an_explicit_type_annotation_with_isolatedDeclarations: diag(9009, 1, "At_least_one_accessor_must_have_an_explicit_type_annotation_with_isolatedDeclarations_9009", "At least one accessor must have an explicit type annotation with --isolatedDeclarations."), Variable_must_have_an_explicit_type_annotation_with_isolatedDeclarations: diag(9010, 1, "Variable_must_have_an_explicit_type_annotation_with_isolatedDeclarations_9010", "Variable must have an explicit type annotation with --isolatedDeclarations."), Parameter_must_have_an_explicit_type_annotation_with_isolatedDeclarations: diag(9011, 1, "Parameter_must_have_an_explicit_type_annotation_with_isolatedDeclarations_9011", "Parameter must have an explicit type annotation with --isolatedDeclarations."), Property_must_have_an_explicit_type_annotation_with_isolatedDeclarations: diag(9012, 1, "Property_must_have_an_explicit_type_annotation_with_isolatedDeclarations_9012", "Property must have an explicit type annotation with --isolatedDeclarations."), Expression_type_can_t_be_inferred_with_isolatedDeclarations: diag(9013, 1, "Expression_type_can_t_be_inferred_with_isolatedDeclarations_9013", "Expression type can't be inferred with --isolatedDeclarations."), Computed_properties_must_be_number_or_string_literals_variables_or_dotted_expressions_with_isolatedDeclarations: diag(9014, 1, "Computed_properties_must_be_number_or_string_literals_variables_or_dotted_expressions_with_isolatedD_9014", "Computed properties must be number or string literals, variables or dotted expressions with --isolatedDeclarations."), Objects_that_contain_spread_assignments_can_t_be_inferred_with_isolatedDeclarations: diag(9015, 1, "Objects_that_contain_spread_assignments_can_t_be_inferred_with_isolatedDeclarations_9015", "Objects that contain spread assignments can't be inferred with --isolatedDeclarations."), Objects_that_contain_shorthand_properties_can_t_be_inferred_with_isolatedDeclarations: diag(9016, 1, "Objects_that_contain_shorthand_properties_can_t_be_inferred_with_isolatedDeclarations_9016", "Objects that contain shorthand properties can't be inferred with --isolatedDeclarations."), Only_const_arrays_can_be_inferred_with_isolatedDeclarations: diag(9017, 1, "Only_const_arrays_can_be_inferred_with_isolatedDeclarations_9017", "Only const arrays can be inferred with --isolatedDeclarations."), Arrays_with_spread_elements_can_t_inferred_with_isolatedDeclarations: diag(9018, 1, "Arrays_with_spread_elements_can_t_inferred_with_isolatedDeclarations_9018", "Arrays with spread elements can't inferred with --isolatedDeclarations."), Binding_elements_can_t_be_exported_directly_with_isolatedDeclarations: diag(9019, 1, "Binding_elements_can_t_be_exported_directly_with_isolatedDeclarations_9019", "Binding elements can't be exported directly with --isolatedDeclarations."), Enum_member_initializers_must_be_computable_without_references_to_external_symbols_with_isolatedDeclarations: diag(9020, 1, "Enum_member_initializers_must_be_computable_without_references_to_external_symbols_with_isolatedDecl_9020", "Enum member initializers must be computable without references to external symbols with --isolatedDeclarations."), Extends_clause_can_t_contain_an_expression_with_isolatedDeclarations: diag(9021, 1, "Extends_clause_can_t_contain_an_expression_with_isolatedDeclarations_9021", "Extends clause can't contain an expression with --isolatedDeclarations."), Inference_from_class_expressions_is_not_supported_with_isolatedDeclarations: diag(9022, 1, "Inference_from_class_expressions_is_not_supported_with_isolatedDeclarations_9022", "Inference from class expressions is not supported with --isolatedDeclarations."), Assigning_properties_to_functions_without_declaring_them_is_not_supported_with_isolatedDeclarations_Add_an_explicit_declaration_for_the_properties_assigned_to_this_function: diag(9023, 1, "Assigning_properties_to_functions_without_declaring_them_is_not_supported_with_isolatedDeclarations__9023", "Assigning properties to functions without declaring them is not supported with --isolatedDeclarations. Add an explicit declaration for the properties assigned to this function."), Declaration_emit_for_this_parameter_requires_implicitly_adding_undefined_to_its_type_This_is_not_supported_with_isolatedDeclarations: diag(9025, 1, "Declaration_emit_for_this_parameter_requires_implicitly_adding_undefined_to_its_type_This_is_not_sup_9025", "Declaration emit for this parameter requires implicitly adding undefined to its type. This is not supported with --isolatedDeclarations."), Declaration_emit_for_this_file_requires_preserving_this_import_for_augmentations_This_is_not_supported_with_isolatedDeclarations: diag(9026, 1, "Declaration_emit_for_this_file_requires_preserving_this_import_for_augmentations_This_is_not_support_9026", "Declaration emit for this file requires preserving this import for augmentations. This is not supported with --isolatedDeclarations."), Add_a_type_annotation_to_the_variable_0: diag(9027, 1, "Add_a_type_annotation_to_the_variable_0_9027", "Add a type annotation to the variable {0}."), Add_a_type_annotation_to_the_parameter_0: diag(9028, 1, "Add_a_type_annotation_to_the_parameter_0_9028", "Add a type annotation to the parameter {0}."), Add_a_type_annotation_to_the_property_0: diag(9029, 1, "Add_a_type_annotation_to_the_property_0_9029", "Add a type annotation to the property {0}."), Add_a_return_type_to_the_function_expression: diag(9030, 1, "Add_a_return_type_to_the_function_expression_9030", "Add a return type to the function expression."), Add_a_return_type_to_the_function_declaration: diag(9031, 1, "Add_a_return_type_to_the_function_declaration_9031", "Add a return type to the function declaration."), Add_a_return_type_to_the_get_accessor_declaration: diag(9032, 1, "Add_a_return_type_to_the_get_accessor_declaration_9032", "Add a return type to the get accessor declaration."), Add_a_type_to_parameter_of_the_set_accessor_declaration: diag(9033, 1, "Add_a_type_to_parameter_of_the_set_accessor_declaration_9033", "Add a type to parameter of the set accessor declaration."), Add_a_return_type_to_the_method: diag(9034, 1, "Add_a_return_type_to_the_method_9034", "Add a return type to the method"), Add_satisfies_and_a_type_assertion_to_this_expression_satisfies_T_as_T_to_make_the_type_explicit: diag(9035, 1, "Add_satisfies_and_a_type_assertion_to_this_expression_satisfies_T_as_T_to_make_the_type_explicit_9035", "Add satisfies and a type assertion to this expression (satisfies T as T) to make the type explicit."), Move_the_expression_in_default_export_to_a_variable_and_add_a_type_annotation_to_it: diag(9036, 1, "Move_the_expression_in_default_export_to_a_variable_and_add_a_type_annotation_to_it_9036", "Move the expression in default export to a variable and add a type annotation to it."), Default_exports_can_t_be_inferred_with_isolatedDeclarations: diag(9037, 1, "Default_exports_can_t_be_inferred_with_isolatedDeclarations_9037", "Default exports can't be inferred with --isolatedDeclarations."), Computed_property_names_on_class_or_object_literals_cannot_be_inferred_with_isolatedDeclarations: diag(9038, 1, "Computed_property_names_on_class_or_object_literals_cannot_be_inferred_with_isolatedDeclarations_9038", "Computed property names on class or object literals cannot be inferred with --isolatedDeclarations."), Type_containing_private_name_0_can_t_be_used_with_isolatedDeclarations: diag(9039, 1, "Type_containing_private_name_0_can_t_be_used_with_isolatedDeclarations_9039", "Type containing private name '{0}' can't be used with --isolatedDeclarations."), JSX_attributes_must_only_be_assigned_a_non_empty_expression: diag(17000, 1, "JSX_attributes_must_only_be_assigned_a_non_empty_expression_17000", "JSX attributes must only be assigned a non-empty 'expression'."), JSX_elements_cannot_have_multiple_attributes_with_the_same_name: diag(17001, 1, "JSX_elements_cannot_have_multiple_attributes_with_the_same_name_17001", "JSX elements cannot have multiple attributes with the same name."), Expected_corresponding_JSX_closing_tag_for_0: diag(17002, 1, "Expected_corresponding_JSX_closing_tag_for_0_17002", "Expected corresponding JSX closing tag for '{0}'."), Cannot_use_JSX_unless_the_jsx_flag_is_provided: diag(17004, 1, "Cannot_use_JSX_unless_the_jsx_flag_is_provided_17004", "Cannot use JSX unless the '--jsx' flag is provided."), A_constructor_cannot_contain_a_super_call_when_its_class_extends_null: diag(17005, 1, "A_constructor_cannot_contain_a_super_call_when_its_class_extends_null_17005", "A constructor cannot contain a 'super' call when its class extends 'null'."), An_unary_expression_with_the_0_operator_is_not_allowed_in_the_left_hand_side_of_an_exponentiation_expression_Consider_enclosing_the_expression_in_parentheses: diag(17006, 1, "An_unary_expression_with_the_0_operator_is_not_allowed_in_the_left_hand_side_of_an_exponentiation_ex_17006", "An unary expression with the '{0}' operator is not allowed in the left-hand side of an exponentiation expression. Consider enclosing the expression in parentheses."), A_type_assertion_expression_is_not_allowed_in_the_left_hand_side_of_an_exponentiation_expression_Consider_enclosing_the_expression_in_parentheses: diag(17007, 1, "A_type_assertion_expression_is_not_allowed_in_the_left_hand_side_of_an_exponentiation_expression_Con_17007", "A type assertion expression is not allowed in the left-hand side of an exponentiation expression. Consider enclosing the expression in parentheses."), JSX_element_0_has_no_corresponding_closing_tag: diag(17008, 1, "JSX_element_0_has_no_corresponding_closing_tag_17008", "JSX element '{0}' has no corresponding closing tag."), super_must_be_called_before_accessing_this_in_the_constructor_of_a_derived_class: diag(17009, 1, "super_must_be_called_before_accessing_this_in_the_constructor_of_a_derived_class_17009", "'super' must be called before accessing 'this' in the constructor of a derived class."), Unknown_type_acquisition_option_0: diag(17010, 1, "Unknown_type_acquisition_option_0_17010", "Unknown type acquisition option '{0}'."), super_must_be_called_before_accessing_a_property_of_super_in_the_constructor_of_a_derived_class: diag(17011, 1, "super_must_be_called_before_accessing_a_property_of_super_in_the_constructor_of_a_derived_class_17011", "'super' must be called before accessing a property of 'super' in the constructor of a derived class."), _0_is_not_a_valid_meta_property_for_keyword_1_Did_you_mean_2: diag(17012, 1, "_0_is_not_a_valid_meta_property_for_keyword_1_Did_you_mean_2_17012", "'{0}' is not a valid meta-property for keyword '{1}'. Did you mean '{2}'?"), Meta_property_0_is_only_allowed_in_the_body_of_a_function_declaration_function_expression_or_constructor: diag(17013, 1, "Meta_property_0_is_only_allowed_in_the_body_of_a_function_declaration_function_expression_or_constru_17013", "Meta-property '{0}' is only allowed in the body of a function declaration, function expression, or constructor."), JSX_fragment_has_no_corresponding_closing_tag: diag(17014, 1, "JSX_fragment_has_no_corresponding_closing_tag_17014", "JSX fragment has no corresponding closing tag."), Expected_corresponding_closing_tag_for_JSX_fragment: diag(17015, 1, "Expected_corresponding_closing_tag_for_JSX_fragment_17015", "Expected corresponding closing tag for JSX fragment."), The_jsxFragmentFactory_compiler_option_must_be_provided_to_use_JSX_fragments_with_the_jsxFactory_compiler_option: diag(17016, 1, "The_jsxFragmentFactory_compiler_option_must_be_provided_to_use_JSX_fragments_with_the_jsxFactory_com_17016", "The 'jsxFragmentFactory' compiler option must be provided to use JSX fragments with the 'jsxFactory' compiler option."), An_jsxFrag_pragma_is_required_when_using_an_jsx_pragma_with_JSX_fragments: diag(17017, 1, "An_jsxFrag_pragma_is_required_when_using_an_jsx_pragma_with_JSX_fragments_17017", "An @jsxFrag pragma is required when using an @jsx pragma with JSX fragments."), Unknown_type_acquisition_option_0_Did_you_mean_1: diag(17018, 1, "Unknown_type_acquisition_option_0_Did_you_mean_1_17018", "Unknown type acquisition option '{0}'. Did you mean '{1}'?"), _0_at_the_end_of_a_type_is_not_valid_TypeScript_syntax_Did_you_mean_to_write_1: diag(17019, 1, "_0_at_the_end_of_a_type_is_not_valid_TypeScript_syntax_Did_you_mean_to_write_1_17019", "'{0}' at the end of a type is not valid TypeScript syntax. Did you mean to write '{1}'?"), _0_at_the_start_of_a_type_is_not_valid_TypeScript_syntax_Did_you_mean_to_write_1: diag(17020, 1, "_0_at_the_start_of_a_type_is_not_valid_TypeScript_syntax_Did_you_mean_to_write_1_17020", "'{0}' at the start of a type is not valid TypeScript syntax. Did you mean to write '{1}'?"), Unicode_escape_sequence_cannot_appear_here: diag(17021, 1, "Unicode_escape_sequence_cannot_appear_here_17021", "Unicode escape sequence cannot appear here."), Circularity_detected_while_resolving_configuration_Colon_0: diag(18000, 1, "Circularity_detected_while_resolving_configuration_Colon_0_18000", "Circularity detected while resolving configuration: {0}"), The_files_list_in_config_file_0_is_empty: diag(18002, 1, "The_files_list_in_config_file_0_is_empty_18002", "The 'files' list in config file '{0}' is empty."), No_inputs_were_found_in_config_file_0_Specified_include_paths_were_1_and_exclude_paths_were_2: diag(18003, 1, "No_inputs_were_found_in_config_file_0_Specified_include_paths_were_1_and_exclude_paths_were_2_18003", "No inputs were found in config file '{0}'. Specified 'include' paths were '{1}' and 'exclude' paths were '{2}'."), File_is_a_CommonJS_module_it_may_be_converted_to_an_ES_module: diag(80001, 2, "File_is_a_CommonJS_module_it_may_be_converted_to_an_ES_module_80001", "File is a CommonJS module; it may be converted to an ES module."), This_constructor_function_may_be_converted_to_a_class_declaration: diag(80002, 2, "This_constructor_function_may_be_converted_to_a_class_declaration_80002", "This constructor function may be converted to a class declaration."), Import_may_be_converted_to_a_default_import: diag(80003, 2, "Import_may_be_converted_to_a_default_import_80003", "Import may be converted to a default import."), JSDoc_types_may_be_moved_to_TypeScript_types: diag(80004, 2, "JSDoc_types_may_be_moved_to_TypeScript_types_80004", "JSDoc types may be moved to TypeScript types."), require_call_may_be_converted_to_an_import: diag(80005, 2, "require_call_may_be_converted_to_an_import_80005", "'require' call may be converted to an import."), This_may_be_converted_to_an_async_function: diag(80006, 2, "This_may_be_converted_to_an_async_function_80006", "This may be converted to an async function."), await_has_no_effect_on_the_type_of_this_expression: diag(80007, 2, "await_has_no_effect_on_the_type_of_this_expression_80007", "'await' has no effect on the type of this expression."), Numeric_literals_with_absolute_values_equal_to_2_53_or_greater_are_too_large_to_be_represented_accurately_as_integers: diag(80008, 2, "Numeric_literals_with_absolute_values_equal_to_2_53_or_greater_are_too_large_to_be_represented_accur_80008", "Numeric literals with absolute values equal to 2^53 or greater are too large to be represented accurately as integers."), JSDoc_typedef_may_be_converted_to_TypeScript_type: diag(80009, 2, "JSDoc_typedef_may_be_converted_to_TypeScript_type_80009", "JSDoc typedef may be converted to TypeScript type."), JSDoc_typedefs_may_be_converted_to_TypeScript_types: diag(80010, 2, "JSDoc_typedefs_may_be_converted_to_TypeScript_types_80010", "JSDoc typedefs may be converted to TypeScript types."), Add_missing_super_call: diag(90001, 3, "Add_missing_super_call_90001", "Add missing 'super()' call"), Make_super_call_the_first_statement_in_the_constructor: diag(90002, 3, "Make_super_call_the_first_statement_in_the_constructor_90002", "Make 'super()' call the first statement in the constructor"), Change_extends_to_implements: diag(90003, 3, "Change_extends_to_implements_90003", "Change 'extends' to 'implements'"), Remove_unused_declaration_for_Colon_0: diag(90004, 3, "Remove_unused_declaration_for_Colon_0_90004", "Remove unused declaration for: '{0}'"), Remove_import_from_0: diag(90005, 3, "Remove_import_from_0_90005", "Remove import from '{0}'"), Implement_interface_0: diag(90006, 3, "Implement_interface_0_90006", "Implement interface '{0}'"), Implement_inherited_abstract_class: diag(90007, 3, "Implement_inherited_abstract_class_90007", "Implement inherited abstract class"), Add_0_to_unresolved_variable: diag(90008, 3, "Add_0_to_unresolved_variable_90008", "Add '{0}.' to unresolved variable"), Remove_variable_statement: diag(90010, 3, "Remove_variable_statement_90010", "Remove variable statement"), Remove_template_tag: diag(90011, 3, "Remove_template_tag_90011", "Remove template tag"), Remove_type_parameters: diag(90012, 3, "Remove_type_parameters_90012", "Remove type parameters"), Import_0_from_1: diag(90013, 3, "Import_0_from_1_90013", `Import '{0}' from "{1}"`), Change_0_to_1: diag(90014, 3, "Change_0_to_1_90014", "Change '{0}' to '{1}'"), Declare_property_0: diag(90016, 3, "Declare_property_0_90016", "Declare property '{0}'"), Add_index_signature_for_property_0: diag(90017, 3, "Add_index_signature_for_property_0_90017", "Add index signature for property '{0}'"), Disable_checking_for_this_file: diag(90018, 3, "Disable_checking_for_this_file_90018", "Disable checking for this file"), Ignore_this_error_message: diag(90019, 3, "Ignore_this_error_message_90019", "Ignore this error message"), Initialize_property_0_in_the_constructor: diag(90020, 3, "Initialize_property_0_in_the_constructor_90020", "Initialize property '{0}' in the constructor"), Initialize_static_property_0: diag(90021, 3, "Initialize_static_property_0_90021", "Initialize static property '{0}'"), Change_spelling_to_0: diag(90022, 3, "Change_spelling_to_0_90022", "Change spelling to '{0}'"), Declare_method_0: diag(90023, 3, "Declare_method_0_90023", "Declare method '{0}'"), Declare_static_method_0: diag(90024, 3, "Declare_static_method_0_90024", "Declare static method '{0}'"), Prefix_0_with_an_underscore: diag(90025, 3, "Prefix_0_with_an_underscore_90025", "Prefix '{0}' with an underscore"), Rewrite_as_the_indexed_access_type_0: diag(90026, 3, "Rewrite_as_the_indexed_access_type_0_90026", "Rewrite as the indexed access type '{0}'"), Declare_static_property_0: diag(90027, 3, "Declare_static_property_0_90027", "Declare static property '{0}'"), Call_decorator_expression: diag(90028, 3, "Call_decorator_expression_90028", "Call decorator expression"), Add_async_modifier_to_containing_function: diag(90029, 3, "Add_async_modifier_to_containing_function_90029", "Add async modifier to containing function"), Replace_infer_0_with_unknown: diag(90030, 3, "Replace_infer_0_with_unknown_90030", "Replace 'infer {0}' with 'unknown'"), Replace_all_unused_infer_with_unknown: diag(90031, 3, "Replace_all_unused_infer_with_unknown_90031", "Replace all unused 'infer' with 'unknown'"), Add_parameter_name: diag(90034, 3, "Add_parameter_name_90034", "Add parameter name"), Declare_private_property_0: diag(90035, 3, "Declare_private_property_0_90035", "Declare private property '{0}'"), Replace_0_with_Promise_1: diag(90036, 3, "Replace_0_with_Promise_1_90036", "Replace '{0}' with 'Promise<{1}>'"), Fix_all_incorrect_return_type_of_an_async_functions: diag(90037, 3, "Fix_all_incorrect_return_type_of_an_async_functions_90037", "Fix all incorrect return type of an async functions"), Declare_private_method_0: diag(90038, 3, "Declare_private_method_0_90038", "Declare private method '{0}'"), Remove_unused_destructuring_declaration: diag(90039, 3, "Remove_unused_destructuring_declaration_90039", "Remove unused destructuring declaration"), Remove_unused_declarations_for_Colon_0: diag(90041, 3, "Remove_unused_declarations_for_Colon_0_90041", "Remove unused declarations for: '{0}'"), Declare_a_private_field_named_0: diag(90053, 3, "Declare_a_private_field_named_0_90053", "Declare a private field named '{0}'."), Includes_imports_of_types_referenced_by_0: diag(90054, 3, "Includes_imports_of_types_referenced_by_0_90054", "Includes imports of types referenced by '{0}'"), Remove_type_from_import_declaration_from_0: diag(90055, 3, "Remove_type_from_import_declaration_from_0_90055", `Remove 'type' from import declaration from "{0}"`), Remove_type_from_import_of_0_from_1: diag(90056, 3, "Remove_type_from_import_of_0_from_1_90056", `Remove 'type' from import of '{0}' from "{1}"`), Add_import_from_0: diag(90057, 3, "Add_import_from_0_90057", 'Add import from "{0}"'), Update_import_from_0: diag(90058, 3, "Update_import_from_0_90058", 'Update import from "{0}"'), Export_0_from_module_1: diag(90059, 3, "Export_0_from_module_1_90059", "Export '{0}' from module '{1}'"), Export_all_referenced_locals: diag(90060, 3, "Export_all_referenced_locals_90060", "Export all referenced locals"), Update_modifiers_of_0: diag(90061, 3, "Update_modifiers_of_0_90061", "Update modifiers of '{0}'"), Add_annotation_of_type_0: diag(90062, 3, "Add_annotation_of_type_0_90062", "Add annotation of type '{0}'"), Add_return_type_0: diag(90063, 3, "Add_return_type_0_90063", "Add return type '{0}'"), Extract_base_class_to_variable: diag(90064, 3, "Extract_base_class_to_variable_90064", "Extract base class to variable"), Extract_default_export_to_variable: diag(90065, 3, "Extract_default_export_to_variable_90065", "Extract default export to variable"), Extract_binding_expressions_to_variable: diag(90066, 3, "Extract_binding_expressions_to_variable_90066", "Extract binding expressions to variable"), Add_all_missing_type_annotations: diag(90067, 3, "Add_all_missing_type_annotations_90067", "Add all missing type annotations"), Add_satisfies_and_an_inline_type_assertion_with_0: diag(90068, 3, "Add_satisfies_and_an_inline_type_assertion_with_0_90068", "Add satisfies and an inline type assertion with '{0}'"), Extract_to_variable_and_replace_with_0_as_typeof_0: diag(90069, 3, "Extract_to_variable_and_replace_with_0_as_typeof_0_90069", "Extract to variable and replace with '{0} as typeof {0}'"), Mark_array_literal_as_const: diag(90070, 3, "Mark_array_literal_as_const_90070", "Mark array literal as const"), Annotate_types_of_properties_expando_function_in_a_namespace: diag(90071, 3, "Annotate_types_of_properties_expando_function_in_a_namespace_90071", "Annotate types of properties expando function in a namespace"), Convert_function_to_an_ES2015_class: diag(95001, 3, "Convert_function_to_an_ES2015_class_95001", "Convert function to an ES2015 class"), Convert_0_to_1_in_0: diag(95003, 3, "Convert_0_to_1_in_0_95003", "Convert '{0}' to '{1} in {0}'"), Extract_to_0_in_1: diag(95004, 3, "Extract_to_0_in_1_95004", "Extract to {0} in {1}"), Extract_function: diag(95005, 3, "Extract_function_95005", "Extract function"), Extract_constant: diag(95006, 3, "Extract_constant_95006", "Extract constant"), Extract_to_0_in_enclosing_scope: diag(95007, 3, "Extract_to_0_in_enclosing_scope_95007", "Extract to {0} in enclosing scope"), Extract_to_0_in_1_scope: diag(95008, 3, "Extract_to_0_in_1_scope_95008", "Extract to {0} in {1} scope"), Annotate_with_type_from_JSDoc: diag(95009, 3, "Annotate_with_type_from_JSDoc_95009", "Annotate with type from JSDoc"), Infer_type_of_0_from_usage: diag(95011, 3, "Infer_type_of_0_from_usage_95011", "Infer type of '{0}' from usage"), Infer_parameter_types_from_usage: diag(95012, 3, "Infer_parameter_types_from_usage_95012", "Infer parameter types from usage"), Convert_to_default_import: diag(95013, 3, "Convert_to_default_import_95013", "Convert to default import"), Install_0: diag(95014, 3, "Install_0_95014", "Install '{0}'"), Replace_import_with_0: diag(95015, 3, "Replace_import_with_0_95015", "Replace import with '{0}'."), Use_synthetic_default_member: diag(95016, 3, "Use_synthetic_default_member_95016", "Use synthetic 'default' member."), Convert_to_ES_module: diag(95017, 3, "Convert_to_ES_module_95017", "Convert to ES module"), Add_undefined_type_to_property_0: diag(95018, 3, "Add_undefined_type_to_property_0_95018", "Add 'undefined' type to property '{0}'"), Add_initializer_to_property_0: diag(95019, 3, "Add_initializer_to_property_0_95019", "Add initializer to property '{0}'"), Add_definite_assignment_assertion_to_property_0: diag(95020, 3, "Add_definite_assignment_assertion_to_property_0_95020", "Add definite assignment assertion to property '{0}'"), Convert_all_type_literals_to_mapped_type: diag(95021, 3, "Convert_all_type_literals_to_mapped_type_95021", "Convert all type literals to mapped type"), Add_all_missing_members: diag(95022, 3, "Add_all_missing_members_95022", "Add all missing members"), Infer_all_types_from_usage: diag(95023, 3, "Infer_all_types_from_usage_95023", "Infer all types from usage"), Delete_all_unused_declarations: diag(95024, 3, "Delete_all_unused_declarations_95024", "Delete all unused declarations"), Prefix_all_unused_declarations_with_where_possible: diag(95025, 3, "Prefix_all_unused_declarations_with_where_possible_95025", "Prefix all unused declarations with '_' where possible"), Fix_all_detected_spelling_errors: diag(95026, 3, "Fix_all_detected_spelling_errors_95026", "Fix all detected spelling errors"), Add_initializers_to_all_uninitialized_properties: diag(95027, 3, "Add_initializers_to_all_uninitialized_properties_95027", "Add initializers to all uninitialized properties"), Add_definite_assignment_assertions_to_all_uninitialized_properties: diag(95028, 3, "Add_definite_assignment_assertions_to_all_uninitialized_properties_95028", "Add definite assignment assertions to all uninitialized properties"), Add_undefined_type_to_all_uninitialized_properties: diag(95029, 3, "Add_undefined_type_to_all_uninitialized_properties_95029", "Add undefined type to all uninitialized properties"), Change_all_jsdoc_style_types_to_TypeScript: diag(95030, 3, "Change_all_jsdoc_style_types_to_TypeScript_95030", "Change all jsdoc-style types to TypeScript"), Change_all_jsdoc_style_types_to_TypeScript_and_add_undefined_to_nullable_types: diag(95031, 3, "Change_all_jsdoc_style_types_to_TypeScript_and_add_undefined_to_nullable_types_95031", "Change all jsdoc-style types to TypeScript (and add '| undefined' to nullable types)"), Implement_all_unimplemented_interfaces: diag(95032, 3, "Implement_all_unimplemented_interfaces_95032", "Implement all unimplemented interfaces"), Install_all_missing_types_packages: diag(95033, 3, "Install_all_missing_types_packages_95033", "Install all missing types packages"), Rewrite_all_as_indexed_access_types: diag(95034, 3, "Rewrite_all_as_indexed_access_types_95034", "Rewrite all as indexed access types"), Convert_all_to_default_imports: diag(95035, 3, "Convert_all_to_default_imports_95035", "Convert all to default imports"), Make_all_super_calls_the_first_statement_in_their_constructor: diag(95036, 3, "Make_all_super_calls_the_first_statement_in_their_constructor_95036", "Make all 'super()' calls the first statement in their constructor"), Add_qualifier_to_all_unresolved_variables_matching_a_member_name: diag(95037, 3, "Add_qualifier_to_all_unresolved_variables_matching_a_member_name_95037", "Add qualifier to all unresolved variables matching a member name"), Change_all_extended_interfaces_to_implements: diag(95038, 3, "Change_all_extended_interfaces_to_implements_95038", "Change all extended interfaces to 'implements'"), Add_all_missing_super_calls: diag(95039, 3, "Add_all_missing_super_calls_95039", "Add all missing super calls"), Implement_all_inherited_abstract_classes: diag(95040, 3, "Implement_all_inherited_abstract_classes_95040", "Implement all inherited abstract classes"), Add_all_missing_async_modifiers: diag(95041, 3, "Add_all_missing_async_modifiers_95041", "Add all missing 'async' modifiers"), Add_ts_ignore_to_all_error_messages: diag(95042, 3, "Add_ts_ignore_to_all_error_messages_95042", "Add '@ts-ignore' to all error messages"), Annotate_everything_with_types_from_JSDoc: diag(95043, 3, "Annotate_everything_with_types_from_JSDoc_95043", "Annotate everything with types from JSDoc"), Add_to_all_uncalled_decorators: diag(95044, 3, "Add_to_all_uncalled_decorators_95044", "Add '()' to all uncalled decorators"), Convert_all_constructor_functions_to_classes: diag(95045, 3, "Convert_all_constructor_functions_to_classes_95045", "Convert all constructor functions to classes"), Generate_get_and_set_accessors: diag(95046, 3, "Generate_get_and_set_accessors_95046", "Generate 'get' and 'set' accessors"), Convert_require_to_import: diag(95047, 3, "Convert_require_to_import_95047", "Convert 'require' to 'import'"), Convert_all_require_to_import: diag(95048, 3, "Convert_all_require_to_import_95048", "Convert all 'require' to 'import'"), Move_to_a_new_file: diag(95049, 3, "Move_to_a_new_file_95049", "Move to a new file"), Remove_unreachable_code: diag(95050, 3, "Remove_unreachable_code_95050", "Remove unreachable code"), Remove_all_unreachable_code: diag(95051, 3, "Remove_all_unreachable_code_95051", "Remove all unreachable code"), Add_missing_typeof: diag(95052, 3, "Add_missing_typeof_95052", "Add missing 'typeof'"), Remove_unused_label: diag(95053, 3, "Remove_unused_label_95053", "Remove unused label"), Remove_all_unused_labels: diag(95054, 3, "Remove_all_unused_labels_95054", "Remove all unused labels"), Convert_0_to_mapped_object_type: diag(95055, 3, "Convert_0_to_mapped_object_type_95055", "Convert '{0}' to mapped object type"), Convert_namespace_import_to_named_imports: diag(95056, 3, "Convert_namespace_import_to_named_imports_95056", "Convert namespace import to named imports"), Convert_named_imports_to_namespace_import: diag(95057, 3, "Convert_named_imports_to_namespace_import_95057", "Convert named imports to namespace import"), Add_or_remove_braces_in_an_arrow_function: diag(95058, 3, "Add_or_remove_braces_in_an_arrow_function_95058", "Add or remove braces in an arrow function"), Add_braces_to_arrow_function: diag(95059, 3, "Add_braces_to_arrow_function_95059", "Add braces to arrow function"), Remove_braces_from_arrow_function: diag(95060, 3, "Remove_braces_from_arrow_function_95060", "Remove braces from arrow function"), Convert_default_export_to_named_export: diag(95061, 3, "Convert_default_export_to_named_export_95061", "Convert default export to named export"), Convert_named_export_to_default_export: diag(95062, 3, "Convert_named_export_to_default_export_95062", "Convert named export to default export"), Add_missing_enum_member_0: diag(95063, 3, "Add_missing_enum_member_0_95063", "Add missing enum member '{0}'"), Add_all_missing_imports: diag(95064, 3, "Add_all_missing_imports_95064", "Add all missing imports"), Convert_to_async_function: diag(95065, 3, "Convert_to_async_function_95065", "Convert to async function"), Convert_all_to_async_functions: diag(95066, 3, "Convert_all_to_async_functions_95066", "Convert all to async functions"), Add_missing_call_parentheses: diag(95067, 3, "Add_missing_call_parentheses_95067", "Add missing call parentheses"), Add_all_missing_call_parentheses: diag(95068, 3, "Add_all_missing_call_parentheses_95068", "Add all missing call parentheses"), Add_unknown_conversion_for_non_overlapping_types: diag(95069, 3, "Add_unknown_conversion_for_non_overlapping_types_95069", "Add 'unknown' conversion for non-overlapping types"), Add_unknown_to_all_conversions_of_non_overlapping_types: diag(95070, 3, "Add_unknown_to_all_conversions_of_non_overlapping_types_95070", "Add 'unknown' to all conversions of non-overlapping types"), Add_missing_new_operator_to_call: diag(95071, 3, "Add_missing_new_operator_to_call_95071", "Add missing 'new' operator to call"), Add_missing_new_operator_to_all_calls: diag(95072, 3, "Add_missing_new_operator_to_all_calls_95072", "Add missing 'new' operator to all calls"), Add_names_to_all_parameters_without_names: diag(95073, 3, "Add_names_to_all_parameters_without_names_95073", "Add names to all parameters without names"), Enable_the_experimentalDecorators_option_in_your_configuration_file: diag(95074, 3, "Enable_the_experimentalDecorators_option_in_your_configuration_file_95074", "Enable the 'experimentalDecorators' option in your configuration file"), Convert_parameters_to_destructured_object: diag(95075, 3, "Convert_parameters_to_destructured_object_95075", "Convert parameters to destructured object"), Extract_type: diag(95077, 3, "Extract_type_95077", "Extract type"), Extract_to_type_alias: diag(95078, 3, "Extract_to_type_alias_95078", "Extract to type alias"), Extract_to_typedef: diag(95079, 3, "Extract_to_typedef_95079", "Extract to typedef"), Infer_this_type_of_0_from_usage: diag(95080, 3, "Infer_this_type_of_0_from_usage_95080", "Infer 'this' type of '{0}' from usage"), Add_const_to_unresolved_variable: diag(95081, 3, "Add_const_to_unresolved_variable_95081", "Add 'const' to unresolved variable"), Add_const_to_all_unresolved_variables: diag(95082, 3, "Add_const_to_all_unresolved_variables_95082", "Add 'const' to all unresolved variables"), Add_await: diag(95083, 3, "Add_await_95083", "Add 'await'"), Add_await_to_initializer_for_0: diag(95084, 3, "Add_await_to_initializer_for_0_95084", "Add 'await' to initializer for '{0}'"), Fix_all_expressions_possibly_missing_await: diag(95085, 3, "Fix_all_expressions_possibly_missing_await_95085", "Fix all expressions possibly missing 'await'"), Remove_unnecessary_await: diag(95086, 3, "Remove_unnecessary_await_95086", "Remove unnecessary 'await'"), Remove_all_unnecessary_uses_of_await: diag(95087, 3, "Remove_all_unnecessary_uses_of_await_95087", "Remove all unnecessary uses of 'await'"), Enable_the_jsx_flag_in_your_configuration_file: diag(95088, 3, "Enable_the_jsx_flag_in_your_configuration_file_95088", "Enable the '--jsx' flag in your configuration file"), Add_await_to_initializers: diag(95089, 3, "Add_await_to_initializers_95089", "Add 'await' to initializers"), Extract_to_interface: diag(95090, 3, "Extract_to_interface_95090", "Extract to interface"), Convert_to_a_bigint_numeric_literal: diag(95091, 3, "Convert_to_a_bigint_numeric_literal_95091", "Convert to a bigint numeric literal"), Convert_all_to_bigint_numeric_literals: diag(95092, 3, "Convert_all_to_bigint_numeric_literals_95092", "Convert all to bigint numeric literals"), Convert_const_to_let: diag(95093, 3, "Convert_const_to_let_95093", "Convert 'const' to 'let'"), Prefix_with_declare: diag(95094, 3, "Prefix_with_declare_95094", "Prefix with 'declare'"), Prefix_all_incorrect_property_declarations_with_declare: diag(95095, 3, "Prefix_all_incorrect_property_declarations_with_declare_95095", "Prefix all incorrect property declarations with 'declare'"), Convert_to_template_string: diag(95096, 3, "Convert_to_template_string_95096", "Convert to template string"), Add_export_to_make_this_file_into_a_module: diag(95097, 3, "Add_export_to_make_this_file_into_a_module_95097", "Add 'export {}' to make this file into a module"), Set_the_target_option_in_your_configuration_file_to_0: diag(95098, 3, "Set_the_target_option_in_your_configuration_file_to_0_95098", "Set the 'target' option in your configuration file to '{0}'"), Set_the_module_option_in_your_configuration_file_to_0: diag(95099, 3, "Set_the_module_option_in_your_configuration_file_to_0_95099", "Set the 'module' option in your configuration file to '{0}'"), Convert_invalid_character_to_its_html_entity_code: diag(95100, 3, "Convert_invalid_character_to_its_html_entity_code_95100", "Convert invalid character to its html entity code"), Convert_all_invalid_characters_to_HTML_entity_code: diag(95101, 3, "Convert_all_invalid_characters_to_HTML_entity_code_95101", "Convert all invalid characters to HTML entity code"), Convert_all_const_to_let: diag(95102, 3, "Convert_all_const_to_let_95102", "Convert all 'const' to 'let'"), Convert_function_expression_0_to_arrow_function: diag(95105, 3, "Convert_function_expression_0_to_arrow_function_95105", "Convert function expression '{0}' to arrow function"), Convert_function_declaration_0_to_arrow_function: diag(95106, 3, "Convert_function_declaration_0_to_arrow_function_95106", "Convert function declaration '{0}' to arrow function"), Fix_all_implicit_this_errors: diag(95107, 3, "Fix_all_implicit_this_errors_95107", "Fix all implicit-'this' errors"), Wrap_invalid_character_in_an_expression_container: diag(95108, 3, "Wrap_invalid_character_in_an_expression_container_95108", "Wrap invalid character in an expression container"), Wrap_all_invalid_characters_in_an_expression_container: diag(95109, 3, "Wrap_all_invalid_characters_in_an_expression_container_95109", "Wrap all invalid characters in an expression container"), Visit_https_Colon_Slash_Slashaka_ms_Slashtsconfig_to_read_more_about_this_file: diag(95110, 3, "Visit_https_Colon_Slash_Slashaka_ms_Slashtsconfig_to_read_more_about_this_file_95110", "Visit https://aka.ms/tsconfig to read more about this file"), Add_a_return_statement: diag(95111, 3, "Add_a_return_statement_95111", "Add a return statement"), Remove_braces_from_arrow_function_body: diag(95112, 3, "Remove_braces_from_arrow_function_body_95112", "Remove braces from arrow function body"), Wrap_the_following_body_with_parentheses_which_should_be_an_object_literal: diag(95113, 3, "Wrap_the_following_body_with_parentheses_which_should_be_an_object_literal_95113", "Wrap the following body with parentheses which should be an object literal"), Add_all_missing_return_statement: diag(95114, 3, "Add_all_missing_return_statement_95114", "Add all missing return statement"), Remove_braces_from_all_arrow_function_bodies_with_relevant_issues: diag(95115, 3, "Remove_braces_from_all_arrow_function_bodies_with_relevant_issues_95115", "Remove braces from all arrow function bodies with relevant issues"), Wrap_all_object_literal_with_parentheses: diag(95116, 3, "Wrap_all_object_literal_with_parentheses_95116", "Wrap all object literal with parentheses"), Move_labeled_tuple_element_modifiers_to_labels: diag(95117, 3, "Move_labeled_tuple_element_modifiers_to_labels_95117", "Move labeled tuple element modifiers to labels"), Convert_overload_list_to_single_signature: diag(95118, 3, "Convert_overload_list_to_single_signature_95118", "Convert overload list to single signature"), Generate_get_and_set_accessors_for_all_overriding_properties: diag(95119, 3, "Generate_get_and_set_accessors_for_all_overriding_properties_95119", "Generate 'get' and 'set' accessors for all overriding properties"), Wrap_in_JSX_fragment: diag(95120, 3, "Wrap_in_JSX_fragment_95120", "Wrap in JSX fragment"), Wrap_all_unparented_JSX_in_JSX_fragment: diag(95121, 3, "Wrap_all_unparented_JSX_in_JSX_fragment_95121", "Wrap all unparented JSX in JSX fragment"), Convert_arrow_function_or_function_expression: diag(95122, 3, "Convert_arrow_function_or_function_expression_95122", "Convert arrow function or function expression"), Convert_to_anonymous_function: diag(95123, 3, "Convert_to_anonymous_function_95123", "Convert to anonymous function"), Convert_to_named_function: diag(95124, 3, "Convert_to_named_function_95124", "Convert to named function"), Convert_to_arrow_function: diag(95125, 3, "Convert_to_arrow_function_95125", "Convert to arrow function"), Remove_parentheses: diag(95126, 3, "Remove_parentheses_95126", "Remove parentheses"), Could_not_find_a_containing_arrow_function: diag(95127, 3, "Could_not_find_a_containing_arrow_function_95127", "Could not find a containing arrow function"), Containing_function_is_not_an_arrow_function: diag(95128, 3, "Containing_function_is_not_an_arrow_function_95128", "Containing function is not an arrow function"), Could_not_find_export_statement: diag(95129, 3, "Could_not_find_export_statement_95129", "Could not find export statement"), This_file_already_has_a_default_export: diag(95130, 3, "This_file_already_has_a_default_export_95130", "This file already has a default export"), Could_not_find_import_clause: diag(95131, 3, "Could_not_find_import_clause_95131", "Could not find import clause"), Could_not_find_namespace_import_or_named_imports: diag(95132, 3, "Could_not_find_namespace_import_or_named_imports_95132", "Could not find namespace import or named imports"), Selection_is_not_a_valid_type_node: diag(95133, 3, "Selection_is_not_a_valid_type_node_95133", "Selection is not a valid type node"), No_type_could_be_extracted_from_this_type_node: diag(95134, 3, "No_type_could_be_extracted_from_this_type_node_95134", "No type could be extracted from this type node"), Could_not_find_property_for_which_to_generate_accessor: diag(95135, 3, "Could_not_find_property_for_which_to_generate_accessor_95135", "Could not find property for which to generate accessor"), Name_is_not_valid: diag(95136, 3, "Name_is_not_valid_95136", "Name is not valid"), Can_only_convert_property_with_modifier: diag(95137, 3, "Can_only_convert_property_with_modifier_95137", "Can only convert property with modifier"), Switch_each_misused_0_to_1: diag(95138, 3, "Switch_each_misused_0_to_1_95138", "Switch each misused '{0}' to '{1}'"), Convert_to_optional_chain_expression: diag(95139, 3, "Convert_to_optional_chain_expression_95139", "Convert to optional chain expression"), Could_not_find_convertible_access_expression: diag(95140, 3, "Could_not_find_convertible_access_expression_95140", "Could not find convertible access expression"), Could_not_find_matching_access_expressions: diag(95141, 3, "Could_not_find_matching_access_expressions_95141", "Could not find matching access expressions"), Can_only_convert_logical_AND_access_chains: diag(95142, 3, "Can_only_convert_logical_AND_access_chains_95142", "Can only convert logical AND access chains"), Add_void_to_Promise_resolved_without_a_value: diag(95143, 3, "Add_void_to_Promise_resolved_without_a_value_95143", "Add 'void' to Promise resolved without a value"), Add_void_to_all_Promises_resolved_without_a_value: diag(95144, 3, "Add_void_to_all_Promises_resolved_without_a_value_95144", "Add 'void' to all Promises resolved without a value"), Use_element_access_for_0: diag(95145, 3, "Use_element_access_for_0_95145", "Use element access for '{0}'"), Use_element_access_for_all_undeclared_properties: diag(95146, 3, "Use_element_access_for_all_undeclared_properties_95146", "Use element access for all undeclared properties."), Delete_all_unused_imports: diag(95147, 3, "Delete_all_unused_imports_95147", "Delete all unused imports"), Infer_function_return_type: diag(95148, 3, "Infer_function_return_type_95148", "Infer function return type"), Return_type_must_be_inferred_from_a_function: diag(95149, 3, "Return_type_must_be_inferred_from_a_function_95149", "Return type must be inferred from a function"), Could_not_determine_function_return_type: diag(95150, 3, "Could_not_determine_function_return_type_95150", "Could not determine function return type"), Could_not_convert_to_arrow_function: diag(95151, 3, "Could_not_convert_to_arrow_function_95151", "Could not convert to arrow function"), Could_not_convert_to_named_function: diag(95152, 3, "Could_not_convert_to_named_function_95152", "Could not convert to named function"), Could_not_convert_to_anonymous_function: diag(95153, 3, "Could_not_convert_to_anonymous_function_95153", "Could not convert to anonymous function"), Can_only_convert_string_concatenations_and_string_literals: diag(95154, 3, "Can_only_convert_string_concatenations_and_string_literals_95154", "Can only convert string concatenations and string literals"), Selection_is_not_a_valid_statement_or_statements: diag(95155, 3, "Selection_is_not_a_valid_statement_or_statements_95155", "Selection is not a valid statement or statements"), Add_missing_function_declaration_0: diag(95156, 3, "Add_missing_function_declaration_0_95156", "Add missing function declaration '{0}'"), Add_all_missing_function_declarations: diag(95157, 3, "Add_all_missing_function_declarations_95157", "Add all missing function declarations"), Method_not_implemented: diag(95158, 3, "Method_not_implemented_95158", "Method not implemented."), Function_not_implemented: diag(95159, 3, "Function_not_implemented_95159", "Function not implemented."), Add_override_modifier: diag(95160, 3, "Add_override_modifier_95160", "Add 'override' modifier"), Remove_override_modifier: diag(95161, 3, "Remove_override_modifier_95161", "Remove 'override' modifier"), Add_all_missing_override_modifiers: diag(95162, 3, "Add_all_missing_override_modifiers_95162", "Add all missing 'override' modifiers"), Remove_all_unnecessary_override_modifiers: diag(95163, 3, "Remove_all_unnecessary_override_modifiers_95163", "Remove all unnecessary 'override' modifiers"), Can_only_convert_named_export: diag(95164, 3, "Can_only_convert_named_export_95164", "Can only convert named export"), Add_missing_properties: diag(95165, 3, "Add_missing_properties_95165", "Add missing properties"), Add_all_missing_properties: diag(95166, 3, "Add_all_missing_properties_95166", "Add all missing properties"), Add_missing_attributes: diag(95167, 3, "Add_missing_attributes_95167", "Add missing attributes"), Add_all_missing_attributes: diag(95168, 3, "Add_all_missing_attributes_95168", "Add all missing attributes"), Add_undefined_to_optional_property_type: diag(95169, 3, "Add_undefined_to_optional_property_type_95169", "Add 'undefined' to optional property type"), Convert_named_imports_to_default_import: diag(95170, 3, "Convert_named_imports_to_default_import_95170", "Convert named imports to default import"), Delete_unused_param_tag_0: diag(95171, 3, "Delete_unused_param_tag_0_95171", "Delete unused '@param' tag '{0}'"), Delete_all_unused_param_tags: diag(95172, 3, "Delete_all_unused_param_tags_95172", "Delete all unused '@param' tags"), Rename_param_tag_name_0_to_1: diag(95173, 3, "Rename_param_tag_name_0_to_1_95173", "Rename '@param' tag name '{0}' to '{1}'"), Use_0: diag(95174, 3, "Use_0_95174", "Use `{0}`."), Use_Number_isNaN_in_all_conditions: diag(95175, 3, "Use_Number_isNaN_in_all_conditions_95175", "Use `Number.isNaN` in all conditions."), Convert_typedef_to_TypeScript_type: diag(95176, 3, "Convert_typedef_to_TypeScript_type_95176", "Convert typedef to TypeScript type."), Convert_all_typedef_to_TypeScript_types: diag(95177, 3, "Convert_all_typedef_to_TypeScript_types_95177", "Convert all typedef to TypeScript types."), Move_to_file: diag(95178, 3, "Move_to_file_95178", "Move to file"), Cannot_move_to_file_selected_file_is_invalid: diag(95179, 3, "Cannot_move_to_file_selected_file_is_invalid_95179", "Cannot move to file, selected file is invalid"), Use_import_type: diag(95180, 3, "Use_import_type_95180", "Use 'import type'"), Use_type_0: diag(95181, 3, "Use_type_0_95181", "Use 'type {0}'"), Fix_all_with_type_only_imports: diag(95182, 3, "Fix_all_with_type_only_imports_95182", "Fix all with type-only imports"), Cannot_move_statements_to_the_selected_file: diag(95183, 3, "Cannot_move_statements_to_the_selected_file_95183", "Cannot move statements to the selected file"), Inline_variable: diag(95184, 3, "Inline_variable_95184", "Inline variable"), Could_not_find_variable_to_inline: diag(95185, 3, "Could_not_find_variable_to_inline_95185", "Could not find variable to inline."), Variables_with_multiple_declarations_cannot_be_inlined: diag(95186, 3, "Variables_with_multiple_declarations_cannot_be_inlined_95186", "Variables with multiple declarations cannot be inlined."), Add_missing_comma_for_object_member_completion_0: diag(95187, 3, "Add_missing_comma_for_object_member_completion_0_95187", "Add missing comma for object member completion '{0}'."), Add_missing_parameter_to_0: diag(95188, 3, "Add_missing_parameter_to_0_95188", "Add missing parameter to '{0}'"), Add_missing_parameters_to_0: diag(95189, 3, "Add_missing_parameters_to_0_95189", "Add missing parameters to '{0}'"), Add_all_missing_parameters: diag(95190, 3, "Add_all_missing_parameters_95190", "Add all missing parameters"), Add_optional_parameter_to_0: diag(95191, 3, "Add_optional_parameter_to_0_95191", "Add optional parameter to '{0}'"), Add_optional_parameters_to_0: diag(95192, 3, "Add_optional_parameters_to_0_95192", "Add optional parameters to '{0}'"), Add_all_optional_parameters: diag(95193, 3, "Add_all_optional_parameters_95193", "Add all optional parameters"), Wrap_in_parentheses: diag(95194, 3, "Wrap_in_parentheses_95194", "Wrap in parentheses"), Wrap_all_invalid_decorator_expressions_in_parentheses: diag(95195, 3, "Wrap_all_invalid_decorator_expressions_in_parentheses_95195", "Wrap all invalid decorator expressions in parentheses"), Add_resolution_mode_import_attribute: diag(95196, 3, "Add_resolution_mode_import_attribute_95196", "Add 'resolution-mode' import attribute"), Add_resolution_mode_import_attribute_to_all_type_only_imports_that_need_it: diag(95197, 3, "Add_resolution_mode_import_attribute_to_all_type_only_imports_that_need_it_95197", "Add 'resolution-mode' import attribute to all type-only imports that need it"), No_value_exists_in_scope_for_the_shorthand_property_0_Either_declare_one_or_provide_an_initializer: diag(18004, 1, "No_value_exists_in_scope_for_the_shorthand_property_0_Either_declare_one_or_provide_an_initializer_18004", "No value exists in scope for the shorthand property '{0}'. Either declare one or provide an initializer."), Classes_may_not_have_a_field_named_constructor: diag(18006, 1, "Classes_may_not_have_a_field_named_constructor_18006", "Classes may not have a field named 'constructor'."), JSX_expressions_may_not_use_the_comma_operator_Did_you_mean_to_write_an_array: diag(18007, 1, "JSX_expressions_may_not_use_the_comma_operator_Did_you_mean_to_write_an_array_18007", "JSX expressions may not use the comma operator. Did you mean to write an array?"), Private_identifiers_cannot_be_used_as_parameters: diag(18009, 1, "Private_identifiers_cannot_be_used_as_parameters_18009", "Private identifiers cannot be used as parameters."), An_accessibility_modifier_cannot_be_used_with_a_private_identifier: diag(18010, 1, "An_accessibility_modifier_cannot_be_used_with_a_private_identifier_18010", "An accessibility modifier cannot be used with a private identifier."), The_operand_of_a_delete_operator_cannot_be_a_private_identifier: diag(18011, 1, "The_operand_of_a_delete_operator_cannot_be_a_private_identifier_18011", "The operand of a 'delete' operator cannot be a private identifier."), constructor_is_a_reserved_word: diag(18012, 1, "constructor_is_a_reserved_word_18012", "'#constructor' is a reserved word."), Property_0_is_not_accessible_outside_class_1_because_it_has_a_private_identifier: diag(18013, 1, "Property_0_is_not_accessible_outside_class_1_because_it_has_a_private_identifier_18013", "Property '{0}' is not accessible outside class '{1}' because it has a private identifier."), The_property_0_cannot_be_accessed_on_type_1_within_this_class_because_it_is_shadowed_by_another_private_identifier_with_the_same_spelling: diag(18014, 1, "The_property_0_cannot_be_accessed_on_type_1_within_this_class_because_it_is_shadowed_by_another_priv_18014", "The property '{0}' cannot be accessed on type '{1}' within this class because it is shadowed by another private identifier with the same spelling."), Property_0_in_type_1_refers_to_a_different_member_that_cannot_be_accessed_from_within_type_2: diag(18015, 1, "Property_0_in_type_1_refers_to_a_different_member_that_cannot_be_accessed_from_within_type_2_18015", "Property '{0}' in type '{1}' refers to a different member that cannot be accessed from within type '{2}'."), Private_identifiers_are_not_allowed_outside_class_bodies: diag(18016, 1, "Private_identifiers_are_not_allowed_outside_class_bodies_18016", "Private identifiers are not allowed outside class bodies."), The_shadowing_declaration_of_0_is_defined_here: diag(18017, 1, "The_shadowing_declaration_of_0_is_defined_here_18017", "The shadowing declaration of '{0}' is defined here"), The_declaration_of_0_that_you_probably_intended_to_use_is_defined_here: diag(18018, 1, "The_declaration_of_0_that_you_probably_intended_to_use_is_defined_here_18018", "The declaration of '{0}' that you probably intended to use is defined here"), _0_modifier_cannot_be_used_with_a_private_identifier: diag(18019, 1, "_0_modifier_cannot_be_used_with_a_private_identifier_18019", "'{0}' modifier cannot be used with a private identifier."), An_enum_member_cannot_be_named_with_a_private_identifier: diag(18024, 1, "An_enum_member_cannot_be_named_with_a_private_identifier_18024", "An enum member cannot be named with a private identifier."), can_only_be_used_at_the_start_of_a_file: diag(18026, 1, "can_only_be_used_at_the_start_of_a_file_18026", "'#!' can only be used at the start of a file."), Compiler_reserves_name_0_when_emitting_private_identifier_downlevel: diag(18027, 1, "Compiler_reserves_name_0_when_emitting_private_identifier_downlevel_18027", "Compiler reserves name '{0}' when emitting private identifier downlevel."), Private_identifiers_are_only_available_when_targeting_ECMAScript_2015_and_higher: diag(18028, 1, "Private_identifiers_are_only_available_when_targeting_ECMAScript_2015_and_higher_18028", "Private identifiers are only available when targeting ECMAScript 2015 and higher."), Private_identifiers_are_not_allowed_in_variable_declarations: diag(18029, 1, "Private_identifiers_are_not_allowed_in_variable_declarations_18029", "Private identifiers are not allowed in variable declarations."), An_optional_chain_cannot_contain_private_identifiers: diag(18030, 1, "An_optional_chain_cannot_contain_private_identifiers_18030", "An optional chain cannot contain private identifiers."), The_intersection_0_was_reduced_to_never_because_property_1_has_conflicting_types_in_some_constituents: diag(18031, 1, "The_intersection_0_was_reduced_to_never_because_property_1_has_conflicting_types_in_some_constituent_18031", "The intersection '{0}' was reduced to 'never' because property '{1}' has conflicting types in some constituents."), The_intersection_0_was_reduced_to_never_because_property_1_exists_in_multiple_constituents_and_is_private_in_some: diag(18032, 1, "The_intersection_0_was_reduced_to_never_because_property_1_exists_in_multiple_constituents_and_is_pr_18032", "The intersection '{0}' was reduced to 'never' because property '{1}' exists in multiple constituents and is private in some."), Type_0_is_not_assignable_to_type_1_as_required_for_computed_enum_member_values: diag(18033, 1, "Type_0_is_not_assignable_to_type_1_as_required_for_computed_enum_member_values_18033", "Type '{0}' is not assignable to type '{1}' as required for computed enum member values."), Specify_the_JSX_fragment_factory_function_to_use_when_targeting_react_JSX_emit_with_jsxFactory_compiler_option_is_specified_e_g_Fragment: diag(18034, 3, "Specify_the_JSX_fragment_factory_function_to_use_when_targeting_react_JSX_emit_with_jsxFactory_compi_18034", "Specify the JSX fragment factory function to use when targeting 'react' JSX emit with 'jsxFactory' compiler option is specified, e.g. 'Fragment'."), Invalid_value_for_jsxFragmentFactory_0_is_not_a_valid_identifier_or_qualified_name: diag(18035, 1, "Invalid_value_for_jsxFragmentFactory_0_is_not_a_valid_identifier_or_qualified_name_18035", "Invalid value for 'jsxFragmentFactory'. '{0}' is not a valid identifier or qualified-name."), Class_decorators_can_t_be_used_with_static_private_identifier_Consider_removing_the_experimental_decorator: diag(18036, 1, "Class_decorators_can_t_be_used_with_static_private_identifier_Consider_removing_the_experimental_dec_18036", "Class decorators can't be used with static private identifier. Consider removing the experimental decorator."), await_expression_cannot_be_used_inside_a_class_static_block: diag(18037, 1, "await_expression_cannot_be_used_inside_a_class_static_block_18037", "'await' expression cannot be used inside a class static block."), for_await_loops_cannot_be_used_inside_a_class_static_block: diag(18038, 1, "for_await_loops_cannot_be_used_inside_a_class_static_block_18038", "'for await' loops cannot be used inside a class static block."), Invalid_use_of_0_It_cannot_be_used_inside_a_class_static_block: diag(18039, 1, "Invalid_use_of_0_It_cannot_be_used_inside_a_class_static_block_18039", "Invalid use of '{0}'. It cannot be used inside a class static block."), A_return_statement_cannot_be_used_inside_a_class_static_block: diag(18041, 1, "A_return_statement_cannot_be_used_inside_a_class_static_block_18041", "A 'return' statement cannot be used inside a class static block."), _0_is_a_type_and_cannot_be_imported_in_JavaScript_files_Use_1_in_a_JSDoc_type_annotation: diag(18042, 1, "_0_is_a_type_and_cannot_be_imported_in_JavaScript_files_Use_1_in_a_JSDoc_type_annotation_18042", "'{0}' is a type and cannot be imported in JavaScript files. Use '{1}' in a JSDoc type annotation."), Types_cannot_appear_in_export_declarations_in_JavaScript_files: diag(18043, 1, "Types_cannot_appear_in_export_declarations_in_JavaScript_files_18043", "Types cannot appear in export declarations in JavaScript files."), _0_is_automatically_exported_here: diag(18044, 3, "_0_is_automatically_exported_here_18044", "'{0}' is automatically exported here."), Properties_with_the_accessor_modifier_are_only_available_when_targeting_ECMAScript_2015_and_higher: diag(18045, 1, "Properties_with_the_accessor_modifier_are_only_available_when_targeting_ECMAScript_2015_and_higher_18045", "Properties with the 'accessor' modifier are only available when targeting ECMAScript 2015 and higher."), _0_is_of_type_unknown: diag(18046, 1, "_0_is_of_type_unknown_18046", "'{0}' is of type 'unknown'."), _0_is_possibly_null: diag(18047, 1, "_0_is_possibly_null_18047", "'{0}' is possibly 'null'."), _0_is_possibly_undefined: diag(18048, 1, "_0_is_possibly_undefined_18048", "'{0}' is possibly 'undefined'."), _0_is_possibly_null_or_undefined: diag(18049, 1, "_0_is_possibly_null_or_undefined_18049", "'{0}' is possibly 'null' or 'undefined'."), The_value_0_cannot_be_used_here: diag(18050, 1, "The_value_0_cannot_be_used_here_18050", "The value '{0}' cannot be used here."), Compiler_option_0_cannot_be_given_an_empty_string: diag(18051, 1, "Compiler_option_0_cannot_be_given_an_empty_string_18051", "Compiler option '{0}' cannot be given an empty string."), Its_type_0_is_not_a_valid_JSX_element_type: diag(18053, 1, "Its_type_0_is_not_a_valid_JSX_element_type_18053", "Its type '{0}' is not a valid JSX element type."), await_using_statements_cannot_be_used_inside_a_class_static_block: diag(18054, 1, "await_using_statements_cannot_be_used_inside_a_class_static_block_18054", "'await using' statements cannot be used inside a class static block."), _0_has_a_string_type_but_must_have_syntactically_recognizable_string_syntax_when_isolatedModules_is_enabled: diag(18055, 1, "_0_has_a_string_type_but_must_have_syntactically_recognizable_string_syntax_when_isolatedModules_is__18055", "'{0}' has a string type, but must have syntactically recognizable string syntax when 'isolatedModules' is enabled."), Enum_member_following_a_non_literal_numeric_member_must_have_an_initializer_when_isolatedModules_is_enabled: diag(18056, 1, "Enum_member_following_a_non_literal_numeric_member_must_have_an_initializer_when_isolatedModules_is__18056", "Enum member following a non-literal numeric member must have an initializer when 'isolatedModules' is enabled."), String_literal_import_and_export_names_are_not_supported_when_the_module_flag_is_set_to_es2015_or_es2020: diag(18057, 1, "String_literal_import_and_export_names_are_not_supported_when_the_module_flag_is_set_to_es2015_or_es_18057", "String literal import and export names are not supported when the '--module' flag is set to 'es2015' or 'es2020'."), Default_imports_are_not_allowed_in_a_deferred_import: diag(18058, 1, "Default_imports_are_not_allowed_in_a_deferred_import_18058", "Default imports are not allowed in a deferred import."), Named_imports_are_not_allowed_in_a_deferred_import: diag(18059, 1, "Named_imports_are_not_allowed_in_a_deferred_import_18059", "Named imports are not allowed in a deferred import."), Deferred_imports_are_only_supported_when_the_module_flag_is_set_to_esnext_or_preserve: diag(18060, 1, "Deferred_imports_are_only_supported_when_the_module_flag_is_set_to_esnext_or_preserve_18060", "Deferred imports are only supported when the '--module' flag is set to 'esnext' or 'preserve'."), _0_is_not_a_valid_meta_property_for_keyword_import_Did_you_mean_meta_or_defer: diag(18061, 1, "_0_is_not_a_valid_meta_property_for_keyword_import_Did_you_mean_meta_or_defer_18061", "'{0}' is not a valid meta-property for keyword 'import'. Did you mean 'meta' or 'defer'?") }; function tokenIsIdentifierOrKeyword(token) { return token >= 80; } function tokenIsIdentifierOrKeywordOrGreaterThan(token) { return token === 32 || tokenIsIdentifierOrKeyword(token); } var textToKeywordObj = { abstract: 128, accessor: 129, any: 133, as: 130, asserts: 131, assert: 132, bigint: 163, boolean: 136, break: 83, case: 84, catch: 85, class: 86, continue: 88, const: 87, ["constructor"]: 137, debugger: 89, declare: 138, default: 90, defer: 166, delete: 91, do: 92, else: 93, enum: 94, export: 95, extends: 96, false: 97, finally: 98, for: 99, from: 161, function: 100, get: 139, if: 101, implements: 119, import: 102, in: 103, infer: 140, instanceof: 104, interface: 120, intrinsic: 141, is: 142, keyof: 143, let: 121, module: 144, namespace: 145, never: 146, new: 105, null: 106, number: 150, object: 151, package: 122, private: 123, protected: 124, public: 125, override: 164, out: 147, readonly: 148, require: 149, global: 162, return: 107, satisfies: 152, set: 153, static: 126, string: 154, super: 108, switch: 109, symbol: 155, this: 110, throw: 111, true: 112, try: 113, type: 156, typeof: 114, undefined: 157, unique: 158, unknown: 159, using: 160, var: 115, void: 116, while: 117, with: 118, yield: 127, async: 134, await: 135, of: 165 }; var textToKeyword = new Map(Object.entries(textToKeywordObj)); var textToToken = new Map(Object.entries({ ...textToKeywordObj, "{": 19, "}": 20, "(": 21, ")": 22, "[": 23, "]": 24, ".": 25, "...": 26, ";": 27, ",": 28, "<": 30, ">": 32, "<=": 33, ">=": 34, "==": 35, "!=": 36, "===": 37, "!==": 38, "=>": 39, "+": 40, "-": 41, "**": 43, "*": 42, "/": 44, "%": 45, "++": 46, "--": 47, "<<": 48, ">": 49, ">>>": 50, "&": 51, "|": 52, "^": 53, "!": 54, "~": 55, "&&": 56, "||": 57, "?": 58, "??": 61, "?.": 29, ":": 59, "=": 64, "+=": 65, "-=": 66, "*=": 67, "**=": 68, "/=": 69, "%=": 70, "<<=": 71, ">>=": 72, ">>>=": 73, "&=": 74, "|=": 75, "^=": 79, "||=": 76, "&&=": 77, "??=": 78, "@": 60, 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72154, 72161, 72163, 72164, 72192, 72254, 72263, 72263, 72272, 72345, 72349, 72349, 72368, 72440, 72704, 72712, 72714, 72758, 72760, 72768, 72784, 72793, 72818, 72847, 72850, 72871, 72873, 72886, 72960, 72966, 72968, 72969, 72971, 73014, 73018, 73018, 73020, 73021, 73023, 73031, 73040, 73049, 73056, 73061, 73063, 73064, 73066, 73102, 73104, 73105, 73107, 73112, 73120, 73129, 73440, 73462, 73472, 73488, 73490, 73530, 73534, 73538, 73552, 73561, 73648, 73648, 73728, 74649, 74752, 74862, 74880, 75075, 77712, 77808, 77824, 78895, 78912, 78933, 82944, 83526, 92160, 92728, 92736, 92766, 92768, 92777, 92784, 92862, 92864, 92873, 92880, 92909, 92912, 92916, 92928, 92982, 92992, 92995, 93008, 93017, 93027, 93047, 93053, 93071, 93760, 93823, 93952, 94026, 94031, 94087, 94095, 94111, 94176, 94177, 94179, 94180, 94192, 94193, 94208, 100343, 100352, 101589, 101632, 101640, 110576, 110579, 110581, 110587, 110589, 110590, 110592, 110882, 110898, 110898, 110928, 110930, 110933, 110933, 110948, 110951, 110960, 111355, 113664, 113770, 113776, 113788, 113792, 113800, 113808, 113817, 113821, 113822, 118528, 118573, 118576, 118598, 119141, 119145, 119149, 119154, 119163, 119170, 119173, 119179, 119210, 119213, 119362, 119364, 119808, 119892, 119894, 119964, 119966, 119967, 119970, 119970, 119973, 119974, 119977, 119980, 119982, 119993, 119995, 119995, 119997, 120003, 120005, 120069, 120071, 120074, 120077, 120084, 120086, 120092, 120094, 120121, 120123, 120126, 120128, 120132, 120134, 120134, 120138, 120144, 120146, 120485, 120488, 120512, 120514, 120538, 120540, 120570, 120572, 120596, 120598, 120628, 120630, 120654, 120656, 120686, 120688, 120712, 120714, 120744, 120746, 120770, 120772, 120779, 120782, 120831, 121344, 121398, 121403, 121452, 121461, 121461, 121476, 121476, 121499, 121503, 121505, 121519, 122624, 122654, 122661, 122666, 122880, 122886, 122888, 122904, 122907, 122913, 122915, 122916, 122918, 122922, 122928, 122989, 123023, 123023, 123136, 123180, 123184, 123197, 123200, 123209, 123214, 123214, 123536, 123566, 123584, 123641, 124112, 124153, 124896, 124902, 124904, 124907, 124909, 124910, 124912, 124926, 124928, 125124, 125136, 125142, 125184, 125259, 125264, 125273, 126464, 126467, 126469, 126495, 126497, 126498, 126500, 126500, 126503, 126503, 126505, 126514, 126516, 126519, 126521, 126521, 126523, 126523, 126530, 126530, 126535, 126535, 126537, 126537, 126539, 126539, 126541, 126543, 126545, 126546, 126548, 126548, 126551, 126551, 126553, 126553, 126555, 126555, 126557, 126557, 126559, 126559, 126561, 126562, 126564, 126564, 126567, 126570, 126572, 126578, 126580, 126583, 126585, 126588, 126590, 126590, 126592, 126601, 126603, 126619, 126625, 126627, 126629, 126633, 126635, 126651, 130032, 130041, 131072, 173791, 173824, 177977, 177984, 178205, 178208, 183969, 183984, 191456, 191472, 192093, 194560, 195101, 196608, 201546, 201552, 205743, 917760, 917999]; var commentDirectiveRegExSingleLine = /^\/\/\/?\s*@(ts-expect-error|ts-ignore)/; var commentDirectiveRegExMultiLine = /^(?:\/|\*)*\s*@(ts-expect-error|ts-ignore)/; var jsDocSeeOrLink = /@(?:see|link)/i; function lookupInUnicodeMap(code, map2) { if (code < map2[0]) { return false; } let lo = 0; let hi = map2.length; let mid; while (lo + 1 < hi) { mid = lo + (hi - lo) / 2; mid -= mid % 2; if (map2[mid] <= code && code <= map2[mid + 1]) { return true; } if (code < map2[mid]) { hi = mid; } else { lo = mid + 2; } } return false; } function isUnicodeIdentifierStart(code, languageVersion) { return languageVersion >= 2 ? lookupInUnicodeMap(code, unicodeESNextIdentifierStart) : lookupInUnicodeMap(code, unicodeES5IdentifierStart); } function isUnicodeIdentifierPart(code, languageVersion) { return languageVersion >= 2 ? lookupInUnicodeMap(code, unicodeESNextIdentifierPart) : lookupInUnicodeMap(code, unicodeES5IdentifierPart); } function makeReverseMap(source) { const result = []; source.forEach((value, name) => { result[value] = name; }); return result; } var tokenStrings = makeReverseMap(textToToken); function tokenToString(t) { return tokenStrings[t]; } function stringToToken(s) { return textToToken.get(s); } var regExpFlagCharCodes = makeReverseMap(charCodeToRegExpFlag); function regularExpressionFlagToCharacterCode(f) { return regExpFlagCharCodes[f]; } function characterCodeToRegularExpressionFlag(ch) { return charCodeToRegExpFlag.get(ch); } function computeLineStarts(text) { const result = []; let pos = 0; let lineStart = 0; while (pos < text.length) { const ch = text.charCodeAt(pos); pos++; switch (ch) { case 13: if (text.charCodeAt(pos) === 10) { pos++; } case 10: result.push(lineStart); lineStart = pos; break; default: if (ch > 127 && isLineBreak(ch)) { result.push(lineStart); lineStart = pos; } break; } } result.push(lineStart); return result; } function getPositionOfLineAndCharacter(sourceFile, line, character, allowEdits) { return sourceFile.getPositionOfLineAndCharacter ? sourceFile.getPositionOfLineAndCharacter(line, character, allowEdits) : computePositionOfLineAndCharacter(getLineStarts(sourceFile), line, character, sourceFile.text, allowEdits); } function computePositionOfLineAndCharacter(lineStarts, line, character, debugText, allowEdits) { if (line < 0 || line >= lineStarts.length) { if (allowEdits) { line = line < 0 ? 0 : line >= lineStarts.length ? lineStarts.length - 1 : line; } else { Debug.fail(`Bad line number. Line: ${line}, lineStarts.length: ${lineStarts.length} , line map is correct? ${debugText !== undefined ? arrayIsEqualTo(lineStarts, computeLineStarts(debugText)) : "unknown"}`); } } const res = lineStarts[line] + character; if (allowEdits) { return res > lineStarts[line + 1] ? lineStarts[line + 1] : typeof debugText === "string" && res > debugText.length ? debugText.length : res; } if (line < lineStarts.length - 1) { Debug.assert(res < lineStarts[line + 1]); } else if (debugText !== undefined) { Debug.assert(res <= debugText.length); } return res; } function getLineStarts(sourceFile) { return sourceFile.lineMap || (sourceFile.lineMap = computeLineStarts(sourceFile.text)); } function computeLineAndCharacterOfPosition(lineStarts, position) { const lineNumber = computeLineOfPosition(lineStarts, position); return { line: lineNumber, character: position - lineStarts[lineNumber] }; } function computeLineOfPosition(lineStarts, position, lowerBound) { let lineNumber = binarySearch(lineStarts, position, identity, compareValues, lowerBound); if (lineNumber < 0) { lineNumber = ~lineNumber - 1; Debug.assert(lineNumber !== -1, "position cannot precede the beginning of the file"); } return lineNumber; } function getLinesBetweenPositions(sourceFile, pos1, pos2) { if (pos1 === pos2) return 0; const lineStarts = getLineStarts(sourceFile); const lower = Math.min(pos1, pos2); const isNegative = lower === pos2; const upper = isNegative ? pos1 : pos2; const lowerLine = computeLineOfPosition(lineStarts, lower); const upperLine = computeLineOfPosition(lineStarts, upper, lowerLine); return isNegative ? lowerLine - upperLine : upperLine - lowerLine; } function getLineAndCharacterOfPosition(sourceFile, position) { return computeLineAndCharacterOfPosition(getLineStarts(sourceFile), position); } function isWhiteSpaceLike(ch) { return isWhiteSpaceSingleLine(ch) || isLineBreak(ch); } function isWhiteSpaceSingleLine(ch) { return ch === 32 || ch === 9 || ch === 11 || ch === 12 || ch === 160 || ch === 133 || ch === 5760 || ch >= 8192 && ch <= 8203 || ch === 8239 || ch === 8287 || ch === 12288 || ch === 65279; } function isLineBreak(ch) { return ch === 10 || ch === 13 || ch === 8232 || ch === 8233; } function isDigit(ch) { return ch >= 48 && ch <= 57; } function isHexDigit(ch) { return isDigit(ch) || ch >= 65 && ch <= 70 || ch >= 97 && ch <= 102; } function isASCIILetter(ch) { return ch >= 65 && ch <= 90 || ch >= 97 && ch <= 122; } function isWordCharacter(ch) { return isASCIILetter(ch) || isDigit(ch) || ch === 95; } function isOctalDigit(ch) { return ch >= 48 && ch <= 55; } function couldStartTrivia(text, pos) { const ch = text.charCodeAt(pos); switch (ch) { case 13: case 10: case 9: case 11: case 12: case 32: case 47: case 60: case 124: case 61: case 62: return true; case 35: return pos === 0; default: return ch > 127; } } function skipTrivia2(text, pos, stopAfterLineBreak, stopAtComments, inJSDoc) { if (positionIsSynthesized(pos)) { return pos; } let canConsumeStar = false; while (true) { const ch = text.charCodeAt(pos); switch (ch) { case 13: if (text.charCodeAt(pos + 1) === 10) { pos++; } case 10: pos++; if (stopAfterLineBreak) { return pos; } canConsumeStar = !!inJSDoc; continue; case 9: case 11: case 12: case 32: pos++; continue; case 47: if (stopAtComments) { break; } if (text.charCodeAt(pos + 1) === 47) { pos += 2; while (pos < text.length) { if (isLineBreak(text.charCodeAt(pos))) { break; } pos++; } canConsumeStar = false; continue; } if (text.charCodeAt(pos + 1) === 42) { pos += 2; while (pos < text.length) { if (text.charCodeAt(pos) === 42 && text.charCodeAt(pos + 1) === 47) { pos += 2; break; } pos++; } canConsumeStar = false; continue; } break; case 60: case 124: case 61: case 62: if (isConflictMarkerTrivia(text, pos)) { pos = scanConflictMarkerTrivia(text, pos); canConsumeStar = false; continue; } break; case 35: if (pos === 0 && isShebangTrivia(text, pos)) { pos = scanShebangTrivia(text, pos); canConsumeStar = false; continue; } break; case 42: if (canConsumeStar) { pos++; canConsumeStar = false; continue; } break; default: if (ch > 127 && isWhiteSpaceLike(ch)) { pos++; continue; } break; } return pos; } } var mergeConflictMarkerLength = "<<<<<<<".length; function isConflictMarkerTrivia(text, pos) { Debug.assert(pos >= 0); if (pos === 0 || isLineBreak(text.charCodeAt(pos - 1))) { const ch = text.charCodeAt(pos); if (pos + mergeConflictMarkerLength < text.length) { for (let i = 0;i < mergeConflictMarkerLength; i++) { if (text.charCodeAt(pos + i) !== ch) { return false; } } return ch === 61 || text.charCodeAt(pos + mergeConflictMarkerLength) === 32; } } return false; } function scanConflictMarkerTrivia(text, pos, error2) { if (error2) { error2(Diagnostics.Merge_conflict_marker_encountered, pos, mergeConflictMarkerLength); } const ch = text.charCodeAt(pos); const len = text.length; if (ch === 60 || ch === 62) { while (pos < len && !isLineBreak(text.charCodeAt(pos))) { pos++; } } else { Debug.assert(ch === 124 || ch === 61); while (pos < len) { const currentChar = text.charCodeAt(pos); if ((currentChar === 61 || currentChar === 62) && currentChar !== ch && isConflictMarkerTrivia(text, pos)) { break; } pos++; } } return pos; } var shebangTriviaRegex = /^#!.*/; function isShebangTrivia(text, pos) { Debug.assert(pos === 0); return shebangTriviaRegex.test(text); } function scanShebangTrivia(text, pos) { const shebang = shebangTriviaRegex.exec(text)[0]; pos = pos + shebang.length; return pos; } function iterateCommentRanges(reduce, text, pos, trailing, cb, state, initial) { let pendingPos; let pendingEnd; let pendingKind; let pendingHasTrailingNewLine; let hasPendingCommentRange = false; let collecting = trailing; let accumulator = initial; if (pos === 0) { collecting = true; const shebang = getShebang(text); if (shebang) { pos = shebang.length; } } scan: while (pos >= 0 && pos < text.length) { const ch = text.charCodeAt(pos); switch (ch) { case 13: if (text.charCodeAt(pos + 1) === 10) { pos++; } case 10: pos++; if (trailing) { break scan; } collecting = true; if (hasPendingCommentRange) { pendingHasTrailingNewLine = true; } continue; case 9: case 11: case 12: case 32: pos++; continue; case 47: const nextChar = text.charCodeAt(pos + 1); let hasTrailingNewLine = false; if (nextChar === 47 || nextChar === 42) { const kind = nextChar === 47 ? 2 : 3; const startPos = pos; pos += 2; if (nextChar === 47) { while (pos < text.length) { if (isLineBreak(text.charCodeAt(pos))) { hasTrailingNewLine = true; break; } pos++; } } else { while (pos < text.length) { if (text.charCodeAt(pos) === 42 && text.charCodeAt(pos + 1) === 47) { pos += 2; break; } pos++; } } if (collecting) { if (hasPendingCommentRange) { accumulator = cb(pendingPos, pendingEnd, pendingKind, pendingHasTrailingNewLine, state, accumulator); if (!reduce && accumulator) { return accumulator; } } pendingPos = startPos; pendingEnd = pos; pendingKind = kind; pendingHasTrailingNewLine = hasTrailingNewLine; hasPendingCommentRange = true; } continue; } break scan; default: if (ch > 127 && isWhiteSpaceLike(ch)) { if (hasPendingCommentRange && isLineBreak(ch)) { pendingHasTrailingNewLine = true; } pos++; continue; } break scan; } } if (hasPendingCommentRange) { accumulator = cb(pendingPos, pendingEnd, pendingKind, pendingHasTrailingNewLine, state, accumulator); } return accumulator; } function forEachLeadingCommentRange(text, pos, cb, state) { return iterateCommentRanges(false, text, pos, false, cb, state); } function forEachTrailingCommentRange(text, pos, cb, state) { return iterateCommentRanges(false, text, pos, true, cb, state); } function reduceEachLeadingCommentRange(text, pos, cb, state, initial) { return iterateCommentRanges(true, text, pos, false, cb, state, initial); } function reduceEachTrailingCommentRange(text, pos, cb, state, initial) { return iterateCommentRanges(true, text, pos, true, cb, state, initial); } function appendCommentRange(pos, end, kind, hasTrailingNewLine, _state, comments = []) { comments.push({ kind, pos, end, hasTrailingNewLine }); return comments; } function getLeadingCommentRanges(text, pos) { return reduceEachLeadingCommentRange(text, pos, appendCommentRange, undefined, undefined); } function getTrailingCommentRanges(text, pos) { return reduceEachTrailingCommentRange(text, pos, appendCommentRange, undefined, undefined); } function getShebang(text) { const match = shebangTriviaRegex.exec(text); if (match) { return match[0]; } } function isIdentifierStart(ch, languageVersion) { return isASCIILetter(ch) || ch === 36 || ch === 95 || ch > 127 && isUnicodeIdentifierStart(ch, languageVersion); } function isIdentifierPart(ch, languageVersion, identifierVariant) { return isWordCharacter(ch) || ch === 36 || (identifierVariant === 1 ? ch === 45 || ch === 58 : false) || ch > 127 && isUnicodeIdentifierPart(ch, languageVersion); } function isIdentifierText(name, languageVersion, identifierVariant) { let ch = codePointAt(name, 0); if (!isIdentifierStart(ch, languageVersion)) { return false; } for (let i = charSize(ch);i < name.length; i += charSize(ch)) { if (!isIdentifierPart(ch = codePointAt(name, i), languageVersion, identifierVariant)) { return false; } } return true; } function createScanner(languageVersion, skipTrivia22, languageVariant = 0, textInitial, onError, start, length2) { var text = textInitial; var pos; var end; var fullStartPos; var tokenStart; var token; var tokenValue; var tokenFlags; var commentDirectives; var skipJsDocLeadingAsterisks = 0; var scriptKind = 0; var jsDocParsingMode = 0; setText(text, start, length2); var scanner2 = { getTokenFullStart: () => fullStartPos, getStartPos: () => fullStartPos, getTokenEnd: () => pos, getTextPos: () => pos, getToken: () => token, getTokenStart: () => tokenStart, getTokenPos: () => tokenStart, getTokenText: () => text.substring(tokenStart, pos), getTokenValue: () => tokenValue, hasUnicodeEscape: () => (tokenFlags & 1024) !== 0, hasExtendedUnicodeEscape: () => (tokenFlags & 8) !== 0, hasPrecedingLineBreak: () => (tokenFlags & 1) !== 0, hasPrecedingJSDocComment: () => (tokenFlags & 2) !== 0, hasPrecedingJSDocLeadingAsterisks: () => (tokenFlags & 32768) !== 0, isIdentifier: () => token === 80 || token > 118, isReservedWord: () => token >= 83 && token <= 118, isUnterminated: () => (tokenFlags & 4) !== 0, getCommentDirectives: () => commentDirectives, getNumericLiteralFlags: () => tokenFlags & 25584, getTokenFlags: () => tokenFlags, reScanGreaterToken, reScanAsteriskEqualsToken, reScanSlashToken, reScanTemplateToken, reScanTemplateHeadOrNoSubstitutionTemplate, scanJsxIdentifier, scanJsxAttributeValue, reScanJsxAttributeValue, reScanJsxToken, reScanLessThanToken, reScanHashToken, reScanQuestionToken, reScanInvalidIdentifier, scanJsxToken, scanJsDocToken, scanJSDocCommentTextToken, scan, getText, clearCommentDirectives, setText, setScriptTarget, setLanguageVariant, setScriptKind, setJSDocParsingMode, setOnError, resetTokenState, setTextPos: resetTokenState, setSkipJsDocLeadingAsterisks, tryScan, lookAhead, scanRange }; if (Debug.isDebugging) { Object.defineProperty(scanner2, "__debugShowCurrentPositionInText", { get: () => { const text2 = scanner2.getText(); return text2.slice(0, scanner2.getTokenFullStart()) + "║" + text2.slice(scanner2.getTokenFullStart()); } }); } return scanner2; function codePointUnchecked(pos2) { return codePointAt(text, pos2); } function codePointChecked(pos2) { return pos2 >= 0 && pos2 < end ? codePointUnchecked(pos2) : -1; } function charCodeUnchecked(pos2) { return text.charCodeAt(pos2); } function charCodeChecked(pos2) { return pos2 >= 0 && pos2 < end ? charCodeUnchecked(pos2) : -1; } function error2(message, errPos = pos, length3, arg0) { if (onError) { const oldPos = pos; pos = errPos; onError(message, length3 || 0, arg0); pos = oldPos; } } function scanNumberFragment() { let start2 = pos; let allowSeparator = false; let isPreviousTokenSeparator = false; let result = ""; while (true) { const ch = charCodeUnchecked(pos); if (ch === 95) { tokenFlags |= 512; if (allowSeparator) { allowSeparator = false; isPreviousTokenSeparator = true; result += text.substring(start2, pos); } else { tokenFlags |= 16384; if (isPreviousTokenSeparator) { error2(Diagnostics.Multiple_consecutive_numeric_separators_are_not_permitted, pos, 1); } else { error2(Diagnostics.Numeric_separators_are_not_allowed_here, pos, 1); } } pos++; start2 = pos; continue; } if (isDigit(ch)) { allowSeparator = true; isPreviousTokenSeparator = false; pos++; continue; } break; } if (charCodeUnchecked(pos - 1) === 95) { tokenFlags |= 16384; error2(Diagnostics.Numeric_separators_are_not_allowed_here, pos - 1, 1); } return result + text.substring(start2, pos); } function scanNumber() { let start2 = pos; let mainFragment; if (charCodeUnchecked(pos) === 48) { pos++; if (charCodeUnchecked(pos) === 95) { tokenFlags |= 512 | 16384; error2(Diagnostics.Numeric_separators_are_not_allowed_here, pos, 1); pos--; mainFragment = scanNumberFragment(); } else if (!scanDigits()) { tokenFlags |= 8192; mainFragment = "" + +tokenValue; } else if (!tokenValue) { mainFragment = "0"; } else { tokenValue = "" + parseInt(tokenValue, 8); tokenFlags |= 32; const withMinus = token === 41; const literal = (withMinus ? "-" : "") + "0o" + (+tokenValue).toString(8); if (withMinus) start2--; error2(Diagnostics.Octal_literals_are_not_allowed_Use_the_syntax_0, start2, pos - start2, literal); return 9; } } else { mainFragment = scanNumberFragment(); } let decimalFragment; let scientificFragment; if (charCodeUnchecked(pos) === 46) { pos++; decimalFragment = scanNumberFragment(); } let end2 = pos; if (charCodeUnchecked(pos) === 69 || charCodeUnchecked(pos) === 101) { pos++; tokenFlags |= 16; if (charCodeUnchecked(pos) === 43 || charCodeUnchecked(pos) === 45) pos++; const preNumericPart = pos; const finalFragment = scanNumberFragment(); if (!finalFragment) { error2(Diagnostics.Digit_expected); } else { scientificFragment = text.substring(end2, preNumericPart) + finalFragment; end2 = pos; } } let result; if (tokenFlags & 512) { result = mainFragment; if (decimalFragment) { result += "." + decimalFragment; } if (scientificFragment) { result += scientificFragment; } } else { result = text.substring(start2, end2); } if (tokenFlags & 8192) { error2(Diagnostics.Decimals_with_leading_zeros_are_not_allowed, start2, end2 - start2); tokenValue = "" + +result; return 9; } if (decimalFragment !== undefined || tokenFlags & 16) { checkForIdentifierStartAfterNumericLiteral(start2, decimalFragment === undefined && !!(tokenFlags & 16)); tokenValue = "" + +result; return 9; } else { tokenValue = result; const type = checkBigIntSuffix(); checkForIdentifierStartAfterNumericLiteral(start2); return type; } } function checkForIdentifierStartAfterNumericLiteral(numericStart, isScientific) { if (!isIdentifierStart(codePointUnchecked(pos), languageVersion)) { return; } const identifierStart = pos; const { length: length3 } = scanIdentifierParts(); if (length3 === 1 && text[identifierStart] === "n") { if (isScientific) { error2(Diagnostics.A_bigint_literal_cannot_use_exponential_notation, numericStart, identifierStart - numericStart + 1); } else { error2(Diagnostics.A_bigint_literal_must_be_an_integer, numericStart, identifierStart - numericStart + 1); } } else { error2(Diagnostics.An_identifier_or_keyword_cannot_immediately_follow_a_numeric_literal, identifierStart, length3); pos = identifierStart; } } function scanDigits() { const start2 = pos; let isOctal = true; while (isDigit(charCodeChecked(pos))) { if (!isOctalDigit(charCodeUnchecked(pos))) { isOctal = false; } pos++; } tokenValue = text.substring(start2, pos); return isOctal; } function scanExactNumberOfHexDigits(count, canHaveSeparators) { const valueString = scanHexDigits(count, false, canHaveSeparators); return valueString ? parseInt(valueString, 16) : -1; } function scanMinimumNumberOfHexDigits(count, canHaveSeparators) { return scanHexDigits(count, true, canHaveSeparators); } function scanHexDigits(minCount, scanAsManyAsPossible, canHaveSeparators) { let valueChars = []; let allowSeparator = false; let isPreviousTokenSeparator = false; while (valueChars.length < minCount || scanAsManyAsPossible) { let ch = charCodeUnchecked(pos); if (canHaveSeparators && ch === 95) { tokenFlags |= 512; if (allowSeparator) { allowSeparator = false; isPreviousTokenSeparator = true; } else if (isPreviousTokenSeparator) { error2(Diagnostics.Multiple_consecutive_numeric_separators_are_not_permitted, pos, 1); } else { error2(Diagnostics.Numeric_separators_are_not_allowed_here, pos, 1); } pos++; continue; } allowSeparator = canHaveSeparators; if (ch >= 65 && ch <= 70) { ch += 97 - 65; } else if (!(ch >= 48 && ch <= 57 || ch >= 97 && ch <= 102)) { break; } valueChars.push(ch); pos++; isPreviousTokenSeparator = false; } if (valueChars.length < minCount) { valueChars = []; } if (charCodeUnchecked(pos - 1) === 95) { error2(Diagnostics.Numeric_separators_are_not_allowed_here, pos - 1, 1); } return String.fromCharCode(...valueChars); } function scanString(jsxAttributeString = false) { const quote2 = charCodeUnchecked(pos); pos++; let result = ""; let start2 = pos; while (true) { if (pos >= end) { result += text.substring(start2, pos); tokenFlags |= 4; error2(Diagnostics.Unterminated_string_literal); break; } const ch = charCodeUnchecked(pos); if (ch === quote2) { result += text.substring(start2, pos); pos++; break; } if (ch === 92 && !jsxAttributeString) { result += text.substring(start2, pos); result += scanEscapeSequence(1 | 2); start2 = pos; continue; } if ((ch === 10 || ch === 13) && !jsxAttributeString) { result += text.substring(start2, pos); tokenFlags |= 4; error2(Diagnostics.Unterminated_string_literal); break; } pos++; } return result; } function scanTemplateAndSetTokenValue(shouldEmitInvalidEscapeError) { const startedWithBacktick = charCodeUnchecked(pos) === 96; pos++; let start2 = pos; let contents = ""; let resultingToken; while (true) { if (pos >= end) { contents += text.substring(start2, pos); tokenFlags |= 4; error2(Diagnostics.Unterminated_template_literal); resultingToken = startedWithBacktick ? 15 : 18; break; } const currChar = charCodeUnchecked(pos); if (currChar === 96) { contents += text.substring(start2, pos); pos++; resultingToken = startedWithBacktick ? 15 : 18; break; } if (currChar === 36 && pos + 1 < end && charCodeUnchecked(pos + 1) === 123) { contents += text.substring(start2, pos); pos += 2; resultingToken = startedWithBacktick ? 16 : 17; break; } if (currChar === 92) { contents += text.substring(start2, pos); contents += scanEscapeSequence(1 | (shouldEmitInvalidEscapeError ? 2 : 0)); start2 = pos; continue; } if (currChar === 13) { contents += text.substring(start2, pos); pos++; if (pos < end && charCodeUnchecked(pos) === 10) { pos++; } contents += ` `; start2 = pos; continue; } pos++; } Debug.assert(resultingToken !== undefined); tokenValue = contents; return resultingToken; } function scanEscapeSequence(flags) { const start2 = pos; pos++; if (pos >= end) { error2(Diagnostics.Unexpected_end_of_text); return ""; } const ch = charCodeUnchecked(pos); pos++; switch (ch) { case 48: if (pos >= end || !isDigit(charCodeUnchecked(pos))) { return "\x00"; } case 49: case 50: case 51: if (pos < end && isOctalDigit(charCodeUnchecked(pos))) { pos++; } case 52: case 53: case 54: case 55: if (pos < end && isOctalDigit(charCodeUnchecked(pos))) { pos++; } tokenFlags |= 2048; if (flags & 6) { const code = parseInt(text.substring(start2 + 1, pos), 8); if (flags & 4 && !(flags & 32) && ch !== 48) { error2(Diagnostics.Octal_escape_sequences_and_backreferences_are_not_allowed_in_a_character_class_If_this_was_intended_as_an_escape_sequence_use_the_syntax_0_instead, start2, pos - start2, "\\x" + code.toString(16).padStart(2, "0")); } else { error2(Diagnostics.Octal_escape_sequences_are_not_allowed_Use_the_syntax_0, start2, pos - start2, "\\x" + code.toString(16).padStart(2, "0")); } return String.fromCharCode(code); } return text.substring(start2, pos); case 56: case 57: tokenFlags |= 2048; if (flags & 6) { if (flags & 4 && !(flags & 32)) { error2(Diagnostics.Decimal_escape_sequences_and_backreferences_are_not_allowed_in_a_character_class, start2, pos - start2); } else { error2(Diagnostics.Escape_sequence_0_is_not_allowed, start2, pos - start2, text.substring(start2, pos)); } return String.fromCharCode(ch); } return text.substring(start2, pos); case 98: return "\b"; case 116: return "\t"; case 110: return ` `; case 118: return "\v"; case 102: return "\f"; case 114: return "\r"; case 39: return "'"; case 34: return '"'; case 117: if (pos < end && charCodeUnchecked(pos) === 123) { pos -= 2; const result = scanExtendedUnicodeEscape(!!(flags & 6)); if (!(flags & 17)) { tokenFlags |= 2048; if (flags & 6) { error2(Diagnostics.Unicode_escape_sequences_are_only_available_when_the_Unicode_u_flag_or_the_Unicode_Sets_v_flag_is_set, start2, pos - start2); } } return result; } for (;pos < start2 + 6; pos++) { if (!(pos < end && isHexDigit(charCodeUnchecked(pos)))) { tokenFlags |= 2048; if (flags & 6) { error2(Diagnostics.Hexadecimal_digit_expected); } return text.substring(start2, pos); } } tokenFlags |= 1024; const escapedValue = parseInt(text.substring(start2 + 2, pos), 16); const escapedValueString = String.fromCharCode(escapedValue); if (flags & 16 && escapedValue >= 55296 && escapedValue <= 56319 && pos + 6 < end && text.substring(pos, pos + 2) === "\\u" && charCodeUnchecked(pos + 2) !== 123) { const nextStart = pos; let nextPos = pos + 2; for (;nextPos < nextStart + 6; nextPos++) { if (!isHexDigit(charCodeUnchecked(nextPos))) { return escapedValueString; } } const nextEscapedValue = parseInt(text.substring(nextStart + 2, nextPos), 16); if (nextEscapedValue >= 56320 && nextEscapedValue <= 57343) { pos = nextPos; return escapedValueString + String.fromCharCode(nextEscapedValue); } } return escapedValueString; case 120: for (;pos < start2 + 4; pos++) { if (!(pos < end && isHexDigit(charCodeUnchecked(pos)))) { tokenFlags |= 2048; if (flags & 6) { error2(Diagnostics.Hexadecimal_digit_expected); } return text.substring(start2, pos); } } tokenFlags |= 4096; return String.fromCharCode(parseInt(text.substring(start2 + 2, pos), 16)); case 13: if (pos < end && charCodeUnchecked(pos) === 10) { pos++; } case 10: case 8232: case 8233: return ""; default: if (flags & 16 || flags & 4 && !(flags & 8) && isIdentifierPart(ch, languageVersion)) { error2(Diagnostics.This_character_cannot_be_escaped_in_a_regular_expression, pos - 2, 2); } return String.fromCharCode(ch); } } function scanExtendedUnicodeEscape(shouldEmitInvalidEscapeError) { const start2 = pos; pos += 3; const escapedStart = pos; const escapedValueString = scanMinimumNumberOfHexDigits(1, false); const escapedValue = escapedValueString ? parseInt(escapedValueString, 16) : -1; let isInvalidExtendedEscape = false; if (escapedValue < 0) { if (shouldEmitInvalidEscapeError) { error2(Diagnostics.Hexadecimal_digit_expected); } isInvalidExtendedEscape = true; } else if (escapedValue > 1114111) { if (shouldEmitInvalidEscapeError) { error2(Diagnostics.An_extended_Unicode_escape_value_must_be_between_0x0_and_0x10FFFF_inclusive, escapedStart, pos - escapedStart); } isInvalidExtendedEscape = true; } if (pos >= end) { if (shouldEmitInvalidEscapeError) { error2(Diagnostics.Unexpected_end_of_text); } isInvalidExtendedEscape = true; } else if (charCodeUnchecked(pos) === 125) { pos++; } else { if (shouldEmitInvalidEscapeError) { error2(Diagnostics.Unterminated_Unicode_escape_sequence); } isInvalidExtendedEscape = true; } if (isInvalidExtendedEscape) { tokenFlags |= 2048; return text.substring(start2, pos); } tokenFlags |= 8; return utf16EncodeAsString(escapedValue); } function peekUnicodeEscape() { if (pos + 5 < end && charCodeUnchecked(pos + 1) === 117) { const start2 = pos; pos += 2; const value = scanExactNumberOfHexDigits(4, false); pos = start2; return value; } return -1; } function peekExtendedUnicodeEscape() { if (codePointUnchecked(pos + 1) === 117 && codePointUnchecked(pos + 2) === 123) { const start2 = pos; pos += 3; const escapedValueString = scanMinimumNumberOfHexDigits(1, false); const escapedValue = escapedValueString ? parseInt(escapedValueString, 16) : -1; pos = start2; return escapedValue; } return -1; } function scanIdentifierParts() { let result = ""; let start2 = pos; while (pos < end) { let ch = codePointUnchecked(pos); if (isIdentifierPart(ch, languageVersion)) { pos += charSize(ch); } else if (ch === 92) { ch = peekExtendedUnicodeEscape(); if (ch >= 0 && isIdentifierPart(ch, languageVersion)) { result += scanExtendedUnicodeEscape(true); start2 = pos; continue; } ch = peekUnicodeEscape(); if (!(ch >= 0 && isIdentifierPart(ch, languageVersion))) { break; } tokenFlags |= 1024; result += text.substring(start2, pos); result += utf16EncodeAsString(ch); pos += 6; start2 = pos; } else { break; } } result += text.substring(start2, pos); return result; } function getIdentifierToken() { const len = tokenValue.length; if (len >= 2 && len <= 12) { const ch = tokenValue.charCodeAt(0); if (ch >= 97 && ch <= 122) { const keyword = textToKeyword.get(tokenValue); if (keyword !== undefined) { return token = keyword; } } } return token = 80; } function scanBinaryOrOctalDigits(base) { let value = ""; let separatorAllowed = false; let isPreviousTokenSeparator = false; while (true) { const ch = charCodeUnchecked(pos); if (ch === 95) { tokenFlags |= 512; if (separatorAllowed) { separatorAllowed = false; isPreviousTokenSeparator = true; } else if (isPreviousTokenSeparator) { error2(Diagnostics.Multiple_consecutive_numeric_separators_are_not_permitted, pos, 1); } else { error2(Diagnostics.Numeric_separators_are_not_allowed_here, pos, 1); } pos++; continue; } separatorAllowed = true; if (!isDigit(ch) || ch - 48 >= base) { break; } value += text[pos]; pos++; isPreviousTokenSeparator = false; } if (charCodeUnchecked(pos - 1) === 95) { error2(Diagnostics.Numeric_separators_are_not_allowed_here, pos - 1, 1); } return value; } function checkBigIntSuffix() { if (charCodeUnchecked(pos) === 110) { tokenValue += "n"; if (tokenFlags & 384) { tokenValue = parsePseudoBigInt(tokenValue) + "n"; } pos++; return 10; } else { const numericValue = tokenFlags & 128 ? parseInt(tokenValue.slice(2), 2) : tokenFlags & 256 ? parseInt(tokenValue.slice(2), 8) : +tokenValue; tokenValue = "" + numericValue; return 9; } } function scan() { fullStartPos = pos; tokenFlags = 0; while (true) { tokenStart = pos; if (pos >= end) { return token = 1; } const ch = codePointUnchecked(pos); if (pos === 0) { if (ch === 35 && isShebangTrivia(text, pos)) { pos = scanShebangTrivia(text, pos); if (skipTrivia22) { continue; } else { return token = 6; } } } switch (ch) { case 10: case 13: tokenFlags |= 1; if (skipTrivia22) { pos++; continue; } else { if (ch === 13 && pos + 1 < end && charCodeUnchecked(pos + 1) === 10) { pos += 2; } else { pos++; } return token = 4; } case 9: case 11: case 12: case 32: case 160: case 5760: case 8192: case 8193: case 8194: case 8195: case 8196: case 8197: case 8198: case 8199: case 8200: case 8201: case 8202: case 8203: case 8239: case 8287: case 12288: case 65279: if (skipTrivia22) { pos++; continue; } else { while (pos < end && isWhiteSpaceSingleLine(charCodeUnchecked(pos))) { pos++; } return token = 5; } case 33: if (charCodeUnchecked(pos + 1) === 61) { if (charCodeUnchecked(pos + 2) === 61) { return pos += 3, token = 38; } return pos += 2, token = 36; } pos++; return token = 54; case 34: case 39: tokenValue = scanString(); return token = 11; case 96: return token = scanTemplateAndSetTokenValue(false); case 37: if (charCodeUnchecked(pos + 1) === 61) { return pos += 2, token = 70; } pos++; return token = 45; case 38: if (charCodeUnchecked(pos + 1) === 38) { if (charCodeUnchecked(pos + 2) === 61) { return pos += 3, token = 77; } return pos += 2, token = 56; } if (charCodeUnchecked(pos + 1) === 61) { return pos += 2, token = 74; } pos++; return token = 51; case 40: pos++; return token = 21; case 41: pos++; return token = 22; case 42: if (charCodeUnchecked(pos + 1) === 61) { return pos += 2, token = 67; } if (charCodeUnchecked(pos + 1) === 42) { if (charCodeUnchecked(pos + 2) === 61) { return pos += 3, token = 68; } return pos += 2, token = 43; } pos++; if (skipJsDocLeadingAsterisks && (tokenFlags & 32768) === 0 && tokenFlags & 1) { tokenFlags |= 32768; continue; } return token = 42; case 43: if (charCodeUnchecked(pos + 1) === 43) { return pos += 2, token = 46; } if (charCodeUnchecked(pos + 1) === 61) { return pos += 2, token = 65; } pos++; return token = 40; case 44: pos++; return token = 28; case 45: if (charCodeUnchecked(pos + 1) === 45) { return pos += 2, token = 47; } if (charCodeUnchecked(pos + 1) === 61) { return pos += 2, token = 66; } pos++; return token = 41; case 46: if (isDigit(charCodeUnchecked(pos + 1))) { scanNumber(); return token = 9; } if (charCodeUnchecked(pos + 1) === 46 && charCodeUnchecked(pos + 2) === 46) { return pos += 3, token = 26; } pos++; return token = 25; case 47: if (charCodeUnchecked(pos + 1) === 47) { pos += 2; while (pos < end) { if (isLineBreak(charCodeUnchecked(pos))) { break; } pos++; } commentDirectives = appendIfCommentDirective(commentDirectives, text.slice(tokenStart, pos), commentDirectiveRegExSingleLine, tokenStart); if (skipTrivia22) { continue; } else { return token = 2; } } if (charCodeUnchecked(pos + 1) === 42) { pos += 2; const isJSDoc2 = charCodeUnchecked(pos) === 42 && charCodeUnchecked(pos + 1) !== 47; let commentClosed = false; let lastLineStart = tokenStart; while (pos < end) { const ch2 = charCodeUnchecked(pos); if (ch2 === 42 && charCodeUnchecked(pos + 1) === 47) { pos += 2; commentClosed = true; break; } pos++; if (isLineBreak(ch2)) { lastLineStart = pos; tokenFlags |= 1; } } if (isJSDoc2 && shouldParseJSDoc()) { tokenFlags |= 2; } commentDirectives = appendIfCommentDirective(commentDirectives, text.slice(lastLineStart, pos), commentDirectiveRegExMultiLine, lastLineStart); if (!commentClosed) { error2(Diagnostics.Asterisk_Slash_expected); } if (skipTrivia22) { continue; } else { if (!commentClosed) { tokenFlags |= 4; } return token = 3; } } if (charCodeUnchecked(pos + 1) === 61) { return pos += 2, token = 69; } pos++; return token = 44; case 48: if (pos + 2 < end && (charCodeUnchecked(pos + 1) === 88 || charCodeUnchecked(pos + 1) === 120)) { pos += 2; tokenValue = scanMinimumNumberOfHexDigits(1, true); if (!tokenValue) { error2(Diagnostics.Hexadecimal_digit_expected); tokenValue = "0"; } tokenValue = "0x" + tokenValue; tokenFlags |= 64; return token = checkBigIntSuffix(); } else if (pos + 2 < end && (charCodeUnchecked(pos + 1) === 66 || charCodeUnchecked(pos + 1) === 98)) { pos += 2; tokenValue = scanBinaryOrOctalDigits(2); if (!tokenValue) { error2(Diagnostics.Binary_digit_expected); tokenValue = "0"; } tokenValue = "0b" + tokenValue; tokenFlags |= 128; return token = checkBigIntSuffix(); } else if (pos + 2 < end && (charCodeUnchecked(pos + 1) === 79 || charCodeUnchecked(pos + 1) === 111)) { pos += 2; tokenValue = scanBinaryOrOctalDigits(8); if (!tokenValue) { error2(Diagnostics.Octal_digit_expected); tokenValue = "0"; } tokenValue = "0o" + tokenValue; tokenFlags |= 256; return token = checkBigIntSuffix(); } case 49: case 50: case 51: case 52: case 53: case 54: case 55: case 56: case 57: return token = scanNumber(); case 58: pos++; return token = 59; case 59: pos++; return token = 27; case 60: if (isConflictMarkerTrivia(text, pos)) { pos = scanConflictMarkerTrivia(text, pos, error2); if (skipTrivia22) { continue; } else { return token = 7; } } if (charCodeUnchecked(pos + 1) === 60) { if (charCodeUnchecked(pos + 2) === 61) { return pos += 3, token = 71; } return pos += 2, token = 48; } if (charCodeUnchecked(pos + 1) === 61) { return pos += 2, token = 33; } if (languageVariant === 1 && charCodeUnchecked(pos + 1) === 47 && charCodeUnchecked(pos + 2) !== 42) { return pos += 2, token = 31; } pos++; return token = 30; case 61: if (isConflictMarkerTrivia(text, pos)) { pos = scanConflictMarkerTrivia(text, pos, error2); if (skipTrivia22) { continue; } else { return token = 7; } } if (charCodeUnchecked(pos + 1) === 61) { if (charCodeUnchecked(pos + 2) === 61) { return pos += 3, token = 37; } return pos += 2, token = 35; } if (charCodeUnchecked(pos + 1) === 62) { return pos += 2, token = 39; } pos++; return token = 64; case 62: if (isConflictMarkerTrivia(text, pos)) { pos = scanConflictMarkerTrivia(text, pos, error2); if (skipTrivia22) { continue; } else { return token = 7; } } pos++; return token = 32; case 63: if (charCodeUnchecked(pos + 1) === 46 && !isDigit(charCodeUnchecked(pos + 2))) { return pos += 2, token = 29; } if (charCodeUnchecked(pos + 1) === 63) { if (charCodeUnchecked(pos + 2) === 61) { return pos += 3, token = 78; } return pos += 2, token = 61; } pos++; return token = 58; case 91: pos++; return token = 23; case 93: pos++; return token = 24; case 94: if (charCodeUnchecked(pos + 1) === 61) { return pos += 2, token = 79; } pos++; return token = 53; case 123: pos++; return token = 19; case 124: if (isConflictMarkerTrivia(text, pos)) { pos = scanConflictMarkerTrivia(text, pos, error2); if (skipTrivia22) { continue; } else { return token = 7; } } if (charCodeUnchecked(pos + 1) === 124) { if (charCodeUnchecked(pos + 2) === 61) { return pos += 3, token = 76; } return pos += 2, token = 57; } if (charCodeUnchecked(pos + 1) === 61) { return pos += 2, token = 75; } pos++; return token = 52; case 125: pos++; return token = 20; case 126: pos++; return token = 55; case 64: pos++; return token = 60; case 92: const extendedCookedChar = peekExtendedUnicodeEscape(); if (extendedCookedChar >= 0 && isIdentifierStart(extendedCookedChar, languageVersion)) { tokenValue = scanExtendedUnicodeEscape(true) + scanIdentifierParts(); return token = getIdentifierToken(); } const cookedChar = peekUnicodeEscape(); if (cookedChar >= 0 && isIdentifierStart(cookedChar, languageVersion)) { pos += 6; tokenFlags |= 1024; tokenValue = String.fromCharCode(cookedChar) + scanIdentifierParts(); return token = getIdentifierToken(); } error2(Diagnostics.Invalid_character); pos++; return token = 0; case 35: if (pos !== 0 && text[pos + 1] === "!") { error2(Diagnostics.can_only_be_used_at_the_start_of_a_file, pos, 2); pos++; return token = 0; } const charAfterHash = codePointUnchecked(pos + 1); if (charAfterHash === 92) { pos++; const extendedCookedChar2 = peekExtendedUnicodeEscape(); if (extendedCookedChar2 >= 0 && isIdentifierStart(extendedCookedChar2, languageVersion)) { tokenValue = "#" + scanExtendedUnicodeEscape(true) + scanIdentifierParts(); return token = 81; } const cookedChar2 = peekUnicodeEscape(); if (cookedChar2 >= 0 && isIdentifierStart(cookedChar2, languageVersion)) { pos += 6; tokenFlags |= 1024; tokenValue = "#" + String.fromCharCode(cookedChar2) + scanIdentifierParts(); return token = 81; } pos--; } if (isIdentifierStart(charAfterHash, languageVersion)) { pos++; scanIdentifier(charAfterHash, languageVersion); } else { tokenValue = "#"; error2(Diagnostics.Invalid_character, pos++, charSize(ch)); } return token = 81; case 65533: error2(Diagnostics.File_appears_to_be_binary, 0, 0); pos = end; return token = 8; default: const identifierKind = scanIdentifier(ch, languageVersion); if (identifierKind) { return token = identifierKind; } else if (isWhiteSpaceSingleLine(ch)) { pos += charSize(ch); continue; } else if (isLineBreak(ch)) { tokenFlags |= 1; pos += charSize(ch); continue; } const size = charSize(ch); error2(Diagnostics.Invalid_character, pos, size); pos += size; return token = 0; } } } function shouldParseJSDoc() { switch (jsDocParsingMode) { case 0: return true; case 1: return false; } if (scriptKind !== 3 && scriptKind !== 4) { return true; } if (jsDocParsingMode === 3) { return false; } return jsDocSeeOrLink.test(text.slice(fullStartPos, pos)); } function reScanInvalidIdentifier() { Debug.assert(token === 0, "'reScanInvalidIdentifier' should only be called when the current token is 'SyntaxKind.Unknown'."); pos = tokenStart = fullStartPos; tokenFlags = 0; const ch = codePointUnchecked(pos); const identifierKind = scanIdentifier(ch, 99); if (identifierKind) { return token = identifierKind; } pos += charSize(ch); return token; } function scanIdentifier(startCharacter, languageVersion2) { let ch = startCharacter; if (isIdentifierStart(ch, languageVersion2)) { pos += charSize(ch); while (pos < end && isIdentifierPart(ch = codePointUnchecked(pos), languageVersion2)) pos += charSize(ch); tokenValue = text.substring(tokenStart, pos); if (ch === 92) { tokenValue += scanIdentifierParts(); } return getIdentifierToken(); } } function reScanGreaterToken() { if (token === 32) { if (charCodeUnchecked(pos) === 62) { if (charCodeUnchecked(pos + 1) === 62) { if (charCodeUnchecked(pos + 2) === 61) { return pos += 3, token = 73; } return pos += 2, token = 50; } if (charCodeUnchecked(pos + 1) === 61) { return pos += 2, token = 72; } pos++; return token = 49; } if (charCodeUnchecked(pos) === 61) { pos++; return token = 34; } } return token; } function reScanAsteriskEqualsToken() { Debug.assert(token === 67, "'reScanAsteriskEqualsToken' should only be called on a '*='"); pos = tokenStart + 1; return token = 64; } function reScanSlashToken(reportErrors2) { if (token === 44 || token === 69) { const startOfRegExpBody = tokenStart + 1; pos = startOfRegExpBody; let inEscape = false; let namedCaptureGroups = false; let inCharacterClass = false; while (true) { const ch = charCodeChecked(pos); if (ch === -1 || isLineBreak(ch)) { tokenFlags |= 4; break; } if (inEscape) { inEscape = false; } else if (ch === 47 && !inCharacterClass) { break; } else if (ch === 91) { inCharacterClass = true; } else if (ch === 92) { inEscape = true; } else if (ch === 93) { inCharacterClass = false; } else if (!inCharacterClass && ch === 40 && charCodeChecked(pos + 1) === 63 && charCodeChecked(pos + 2) === 60 && charCodeChecked(pos + 3) !== 61 && charCodeChecked(pos + 3) !== 33) { namedCaptureGroups = true; } pos++; } const endOfRegExpBody = pos; if (tokenFlags & 4) { pos = startOfRegExpBody; inEscape = false; let characterClassDepth = 0; let inDecimalQuantifier = false; let groupDepth = 0; while (pos < endOfRegExpBody) { const ch = charCodeUnchecked(pos); if (inEscape) { inEscape = false; } else if (ch === 92) { inEscape = true; } else if (ch === 91) { characterClassDepth++; } else if (ch === 93 && characterClassDepth) { characterClassDepth--; } else if (!characterClassDepth) { if (ch === 123) { inDecimalQuantifier = true; } else if (ch === 125 && inDecimalQuantifier) { inDecimalQuantifier = false; } else if (!inDecimalQuantifier) { if (ch === 40) { groupDepth++; } else if (ch === 41 && groupDepth) { groupDepth--; } else if (ch === 41 || ch === 93 || ch === 125) { break; } } } pos++; } while (isWhiteSpaceLike(charCodeChecked(pos - 1)) || charCodeChecked(pos - 1) === 59) pos--; error2(Diagnostics.Unterminated_regular_expression_literal, tokenStart, pos - tokenStart); } else { pos++; let regExpFlags = 0; while (true) { const ch = codePointChecked(pos); if (ch === -1 || !isIdentifierPart(ch, languageVersion)) { break; } const size = charSize(ch); if (reportErrors2) { const flag = characterCodeToRegularExpressionFlag(ch); if (flag === undefined) { error2(Diagnostics.Unknown_regular_expression_flag, pos, size); } else if (regExpFlags & flag) { error2(Diagnostics.Duplicate_regular_expression_flag, pos, size); } else if (((regExpFlags | flag) & 96) === 96) { error2(Diagnostics.The_Unicode_u_flag_and_the_Unicode_Sets_v_flag_cannot_be_set_simultaneously, pos, size); } else { regExpFlags |= flag; checkRegularExpressionFlagAvailability(flag, size); } } pos += size; } if (reportErrors2) { scanRange(startOfRegExpBody, endOfRegExpBody - startOfRegExpBody, () => { scanRegularExpressionWorker(regExpFlags, true, namedCaptureGroups); }); } } tokenValue = text.substring(tokenStart, pos); token = 14; } return token; } function scanRegularExpressionWorker(regExpFlags, annexB, namedCaptureGroups) { var unicodeSetsMode = !!(regExpFlags & 64); var anyUnicodeMode = !!(regExpFlags & 96); var anyUnicodeModeOrNonAnnexB = anyUnicodeMode || !annexB; var mayContainStrings = false; var numberOfCapturingGroups = 0; var groupSpecifiers; var groupNameReferences; var decimalEscapes; var namedCapturingGroupsScopeStack = []; var topNamedCapturingGroupsScope; function scanDisjunction(isInGroup) { while (true) { namedCapturingGroupsScopeStack.push(topNamedCapturingGroupsScope); topNamedCapturingGroupsScope = undefined; scanAlternative(isInGroup); topNamedCapturingGroupsScope = namedCapturingGroupsScopeStack.pop(); if (charCodeChecked(pos) !== 124) { return; } pos++; } } function scanAlternative(isInGroup) { let isPreviousTermQuantifiable = false; while (true) { const start2 = pos; const ch = charCodeChecked(pos); switch (ch) { case -1: return; case 94: case 36: pos++; isPreviousTermQuantifiable = false; break; case 92: pos++; switch (charCodeChecked(pos)) { case 98: case 66: pos++; isPreviousTermQuantifiable = false; break; default: scanAtomEscape(); isPreviousTermQuantifiable = true; break; } break; case 40: pos++; if (charCodeChecked(pos) === 63) { pos++; switch (charCodeChecked(pos)) { case 61: case 33: pos++; isPreviousTermQuantifiable = !anyUnicodeModeOrNonAnnexB; break; case 60: const groupNameStart = pos; pos++; switch (charCodeChecked(pos)) { case 61: case 33: pos++; isPreviousTermQuantifiable = false; break; default: scanGroupName(false); scanExpectedChar(62); if (languageVersion < 5) { error2(Diagnostics.Named_capturing_groups_are_only_available_when_targeting_ES2018_or_later, groupNameStart, pos - groupNameStart); } numberOfCapturingGroups++; isPreviousTermQuantifiable = true; break; } break; default: const start3 = pos; const setFlags = scanPatternModifiers(0); if (charCodeChecked(pos) === 45) { pos++; scanPatternModifiers(setFlags); if (pos === start3 + 1) { error2(Diagnostics.Subpattern_flags_must_be_present_when_there_is_a_minus_sign, start3, pos - start3); } } scanExpectedChar(58); isPreviousTermQuantifiable = true; break; } } else { numberOfCapturingGroups++; isPreviousTermQuantifiable = true; } scanDisjunction(true); scanExpectedChar(41); break; case 123: pos++; const digitsStart = pos; scanDigits(); const min2 = tokenValue; if (!anyUnicodeModeOrNonAnnexB && !min2) { isPreviousTermQuantifiable = true; break; } if (charCodeChecked(pos) === 44) { pos++; scanDigits(); const max = tokenValue; if (!min2) { if (max || charCodeChecked(pos) === 125) { error2(Diagnostics.Incomplete_quantifier_Digit_expected, digitsStart, 0); } else { error2(Diagnostics.Unexpected_0_Did_you_mean_to_escape_it_with_backslash, start2, 1, String.fromCharCode(ch)); isPreviousTermQuantifiable = true; break; } } else if (max && Number.parseInt(min2) > Number.parseInt(max) && (anyUnicodeModeOrNonAnnexB || charCodeChecked(pos) === 125)) { error2(Diagnostics.Numbers_out_of_order_in_quantifier, digitsStart, pos - digitsStart); } } else if (!min2) { if (anyUnicodeModeOrNonAnnexB) { error2(Diagnostics.Unexpected_0_Did_you_mean_to_escape_it_with_backslash, start2, 1, String.fromCharCode(ch)); } isPreviousTermQuantifiable = true; break; } if (charCodeChecked(pos) !== 125) { if (anyUnicodeModeOrNonAnnexB) { error2(Diagnostics._0_expected, pos, 0, String.fromCharCode(125)); pos--; } else { isPreviousTermQuantifiable = true; break; } } case 42: case 43: case 63: pos++; if (charCodeChecked(pos) === 63) { pos++; } if (!isPreviousTermQuantifiable) { error2(Diagnostics.There_is_nothing_available_for_repetition, start2, pos - start2); } isPreviousTermQuantifiable = false; break; case 46: pos++; isPreviousTermQuantifiable = true; break; case 91: pos++; if (unicodeSetsMode) { scanClassSetExpression(); } else { scanClassRanges(); } scanExpectedChar(93); isPreviousTermQuantifiable = true; break; case 41: if (isInGroup) { return; } case 93: case 125: if (anyUnicodeModeOrNonAnnexB || ch === 41) { error2(Diagnostics.Unexpected_0_Did_you_mean_to_escape_it_with_backslash, pos, 1, String.fromCharCode(ch)); } pos++; isPreviousTermQuantifiable = true; break; case 47: case 124: return; default: scanSourceCharacter(); isPreviousTermQuantifiable = true; break; } } } function scanPatternModifiers(currFlags) { while (true) { const ch = codePointChecked(pos); if (ch === -1 || !isIdentifierPart(ch, languageVersion)) { break; } const size = charSize(ch); const flag = characterCodeToRegularExpressionFlag(ch); if (flag === undefined) { error2(Diagnostics.Unknown_regular_expression_flag, pos, size); } else if (currFlags & flag) { error2(Diagnostics.Duplicate_regular_expression_flag, pos, size); } else if (!(flag & 28)) { error2(Diagnostics.This_regular_expression_flag_cannot_be_toggled_within_a_subpattern, pos, size); } else { currFlags |= flag; checkRegularExpressionFlagAvailability(flag, size); } pos += size; } return currFlags; } function scanAtomEscape() { Debug.assertEqual(charCodeUnchecked(pos - 1), 92); switch (charCodeChecked(pos)) { case 107: pos++; if (charCodeChecked(pos) === 60) { pos++; scanGroupName(true); scanExpectedChar(62); } else if (anyUnicodeModeOrNonAnnexB || namedCaptureGroups) { error2(Diagnostics.k_must_be_followed_by_a_capturing_group_name_enclosed_in_angle_brackets, pos - 2, 2); } break; case 113: if (unicodeSetsMode) { pos++; error2(Diagnostics.q_is_only_available_inside_character_class, pos - 2, 2); break; } default: Debug.assert(scanCharacterClassEscape() || scanDecimalEscape() || scanCharacterEscape(true)); break; } } function scanDecimalEscape() { Debug.assertEqual(charCodeUnchecked(pos - 1), 92); const ch = charCodeChecked(pos); if (ch >= 49 && ch <= 57) { const start2 = pos; scanDigits(); decimalEscapes = append(decimalEscapes, { pos: start2, end: pos, value: +tokenValue }); return true; } return false; } function scanCharacterEscape(atomEscape) { Debug.assertEqual(charCodeUnchecked(pos - 1), 92); let ch = charCodeChecked(pos); switch (ch) { case -1: error2(Diagnostics.Undetermined_character_escape, pos - 1, 1); return "\\"; case 99: pos++; ch = charCodeChecked(pos); if (isASCIILetter(ch)) { pos++; return String.fromCharCode(ch & 31); } if (anyUnicodeModeOrNonAnnexB) { error2(Diagnostics.c_must_be_followed_by_an_ASCII_letter, pos - 2, 2); } else if (atomEscape) { pos--; return "\\"; } return String.fromCharCode(ch); case 94: case 36: case 47: case 92: case 46: case 42: case 43: case 63: case 40: case 41: case 91: case 93: case 123: case 125: case 124: pos++; return String.fromCharCode(ch); default: pos--; return scanEscapeSequence(4 | (annexB ? 8 : 0) | (anyUnicodeMode ? 16 : 0) | (atomEscape ? 32 : 0)); } } function scanGroupName(isReference) { Debug.assertEqual(charCodeUnchecked(pos - 1), 60); tokenStart = pos; scanIdentifier(codePointChecked(pos), languageVersion); if (pos === tokenStart) { error2(Diagnostics.Expected_a_capturing_group_name); } else if (isReference) { groupNameReferences = append(groupNameReferences, { pos: tokenStart, end: pos, name: tokenValue }); } else if ((topNamedCapturingGroupsScope == null ? undefined : topNamedCapturingGroupsScope.has(tokenValue)) || namedCapturingGroupsScopeStack.some((group2) => group2 == null ? undefined : group2.has(tokenValue))) { error2(Diagnostics.Named_capturing_groups_with_the_same_name_must_be_mutually_exclusive_to_each_other, tokenStart, pos - tokenStart); } else { topNamedCapturingGroupsScope ?? (topNamedCapturingGroupsScope = /* @__PURE__ */ new Set); topNamedCapturingGroupsScope.add(tokenValue); groupSpecifiers ?? (groupSpecifiers = /* @__PURE__ */ new Set); groupSpecifiers.add(tokenValue); } } function isClassContentExit(ch) { return ch === 93 || ch === -1 || pos >= end; } function scanClassRanges() { Debug.assertEqual(charCodeUnchecked(pos - 1), 91); if (charCodeChecked(pos) === 94) { pos++; } while (true) { const ch = charCodeChecked(pos); if (isClassContentExit(ch)) { return; } const minStart = pos; const minCharacter = scanClassAtom(); if (charCodeChecked(pos) === 45) { pos++; const ch2 = charCodeChecked(pos); if (isClassContentExit(ch2)) { return; } if (!minCharacter && anyUnicodeModeOrNonAnnexB) { error2(Diagnostics.A_character_class_range_must_not_be_bounded_by_another_character_class, minStart, pos - 1 - minStart); } const maxStart = pos; const maxCharacter = scanClassAtom(); if (!maxCharacter && anyUnicodeModeOrNonAnnexB) { error2(Diagnostics.A_character_class_range_must_not_be_bounded_by_another_character_class, maxStart, pos - maxStart); continue; } if (!minCharacter) { continue; } const minCharacterValue = codePointAt(minCharacter, 0); const maxCharacterValue = codePointAt(maxCharacter, 0); if (minCharacter.length === charSize(minCharacterValue) && maxCharacter.length === charSize(maxCharacterValue) && minCharacterValue > maxCharacterValue) { error2(Diagnostics.Range_out_of_order_in_character_class, minStart, pos - minStart); } } } } function scanClassSetExpression() { Debug.assertEqual(charCodeUnchecked(pos - 1), 91); let isCharacterComplement = false; if (charCodeChecked(pos) === 94) { pos++; isCharacterComplement = true; } let expressionMayContainStrings = false; let ch = charCodeChecked(pos); if (isClassContentExit(ch)) { return; } let start2 = pos; let operand; switch (text.slice(pos, pos + 2)) { case "--": case "&&": error2(Diagnostics.Expected_a_class_set_operand); mayContainStrings = false; break; default: operand = scanClassSetOperand(); break; } switch (charCodeChecked(pos)) { case 45: if (charCodeChecked(pos + 1) === 45) { if (isCharacterComplement && mayContainStrings) { error2(Diagnostics.Anything_that_would_possibly_match_more_than_a_single_character_is_invalid_inside_a_negated_character_class, start2, pos - start2); } expressionMayContainStrings = mayContainStrings; scanClassSetSubExpression(3); mayContainStrings = !isCharacterComplement && expressionMayContainStrings; return; } break; case 38: if (charCodeChecked(pos + 1) === 38) { scanClassSetSubExpression(2); if (isCharacterComplement && mayContainStrings) { error2(Diagnostics.Anything_that_would_possibly_match_more_than_a_single_character_is_invalid_inside_a_negated_character_class, start2, pos - start2); } expressionMayContainStrings = mayContainStrings; mayContainStrings = !isCharacterComplement && expressionMayContainStrings; return; } else { error2(Diagnostics.Unexpected_0_Did_you_mean_to_escape_it_with_backslash, pos, 1, String.fromCharCode(ch)); } break; default: if (isCharacterComplement && mayContainStrings) { error2(Diagnostics.Anything_that_would_possibly_match_more_than_a_single_character_is_invalid_inside_a_negated_character_class, start2, pos - start2); } expressionMayContainStrings = mayContainStrings; break; } while (true) { ch = charCodeChecked(pos); if (ch === -1) { break; } switch (ch) { case 45: pos++; ch = charCodeChecked(pos); if (isClassContentExit(ch)) { mayContainStrings = !isCharacterComplement && expressionMayContainStrings; return; } if (ch === 45) { pos++; error2(Diagnostics.Operators_must_not_be_mixed_within_a_character_class_Wrap_it_in_a_nested_class_instead, pos - 2, 2); start2 = pos - 2; operand = text.slice(start2, pos); continue; } else { if (!operand) { error2(Diagnostics.A_character_class_range_must_not_be_bounded_by_another_character_class, start2, pos - 1 - start2); } const secondStart = pos; const secondOperand = scanClassSetOperand(); if (isCharacterComplement && mayContainStrings) { error2(Diagnostics.Anything_that_would_possibly_match_more_than_a_single_character_is_invalid_inside_a_negated_character_class, secondStart, pos - secondStart); } expressionMayContainStrings || (expressionMayContainStrings = mayContainStrings); if (!secondOperand) { error2(Diagnostics.A_character_class_range_must_not_be_bounded_by_another_character_class, secondStart, pos - secondStart); break; } if (!operand) { break; } const minCharacterValue = codePointAt(operand, 0); const maxCharacterValue = codePointAt(secondOperand, 0); if (operand.length === charSize(minCharacterValue) && secondOperand.length === charSize(maxCharacterValue) && minCharacterValue > maxCharacterValue) { error2(Diagnostics.Range_out_of_order_in_character_class, start2, pos - start2); } } break; case 38: start2 = pos; pos++; if (charCodeChecked(pos) === 38) { pos++; error2(Diagnostics.Operators_must_not_be_mixed_within_a_character_class_Wrap_it_in_a_nested_class_instead, pos - 2, 2); if (charCodeChecked(pos) === 38) { error2(Diagnostics.Unexpected_0_Did_you_mean_to_escape_it_with_backslash, pos, 1, String.fromCharCode(ch)); pos++; } } else { error2(Diagnostics.Unexpected_0_Did_you_mean_to_escape_it_with_backslash, pos - 1, 1, String.fromCharCode(ch)); } operand = text.slice(start2, pos); continue; } if (isClassContentExit(charCodeChecked(pos))) { break; } start2 = pos; switch (text.slice(pos, pos + 2)) { case "--": case "&&": error2(Diagnostics.Operators_must_not_be_mixed_within_a_character_class_Wrap_it_in_a_nested_class_instead, pos, 2); pos += 2; operand = text.slice(start2, pos); break; default: operand = scanClassSetOperand(); break; } } mayContainStrings = !isCharacterComplement && expressionMayContainStrings; } function scanClassSetSubExpression(expressionType) { let expressionMayContainStrings = mayContainStrings; while (true) { let ch = charCodeChecked(pos); if (isClassContentExit(ch)) { break; } switch (ch) { case 45: pos++; if (charCodeChecked(pos) === 45) { pos++; if (expressionType !== 3) { error2(Diagnostics.Operators_must_not_be_mixed_within_a_character_class_Wrap_it_in_a_nested_class_instead, pos - 2, 2); } } else { error2(Diagnostics.Operators_must_not_be_mixed_within_a_character_class_Wrap_it_in_a_nested_class_instead, pos - 1, 1); } break; case 38: pos++; if (charCodeChecked(pos) === 38) { pos++; if (expressionType !== 2) { error2(Diagnostics.Operators_must_not_be_mixed_within_a_character_class_Wrap_it_in_a_nested_class_instead, pos - 2, 2); } if (charCodeChecked(pos) === 38) { error2(Diagnostics.Unexpected_0_Did_you_mean_to_escape_it_with_backslash, pos, 1, String.fromCharCode(ch)); pos++; } } else { error2(Diagnostics.Unexpected_0_Did_you_mean_to_escape_it_with_backslash, pos - 1, 1, String.fromCharCode(ch)); } break; default: switch (expressionType) { case 3: error2(Diagnostics._0_expected, pos, 0, "--"); break; case 2: error2(Diagnostics._0_expected, pos, 0, "&&"); break; default: break; } break; } ch = charCodeChecked(pos); if (isClassContentExit(ch)) { error2(Diagnostics.Expected_a_class_set_operand); break; } scanClassSetOperand(); expressionMayContainStrings && (expressionMayContainStrings = mayContainStrings); } mayContainStrings = expressionMayContainStrings; } function scanClassSetOperand() { mayContainStrings = false; switch (charCodeChecked(pos)) { case -1: return ""; case 91: pos++; scanClassSetExpression(); scanExpectedChar(93); return ""; case 92: pos++; if (scanCharacterClassEscape()) { return ""; } else if (charCodeChecked(pos) === 113) { pos++; if (charCodeChecked(pos) === 123) { pos++; scanClassStringDisjunctionContents(); scanExpectedChar(125); return ""; } else { error2(Diagnostics.q_must_be_followed_by_string_alternatives_enclosed_in_braces, pos - 2, 2); return "q"; } } pos--; default: return scanClassSetCharacter(); } } function scanClassStringDisjunctionContents() { Debug.assertEqual(charCodeUnchecked(pos - 1), 123); let characterCount = 0; while (true) { const ch = charCodeChecked(pos); switch (ch) { case -1: return; case 125: if (characterCount !== 1) { mayContainStrings = true; } return; case 124: if (characterCount !== 1) { mayContainStrings = true; } pos++; start = pos; characterCount = 0; break; default: scanClassSetCharacter(); characterCount++; break; } } } function scanClassSetCharacter() { const ch = charCodeChecked(pos); if (ch === -1) { return ""; } if (ch === 92) { pos++; const ch2 = charCodeChecked(pos); switch (ch2) { case 98: pos++; return "\b"; case 38: case 45: case 33: case 35: case 37: case 44: case 58: case 59: case 60: case 61: case 62: case 64: case 96: case 126: pos++; return String.fromCharCode(ch2); default: return scanCharacterEscape(false); } } else if (ch === charCodeChecked(pos + 1)) { switch (ch) { case 38: case 33: case 35: case 37: case 42: case 43: case 44: case 46: case 58: case 59: case 60: case 61: case 62: case 63: case 64: case 96: case 126: error2(Diagnostics.A_character_class_must_not_contain_a_reserved_double_punctuator_Did_you_mean_to_escape_it_with_backslash, pos, 2); pos += 2; return text.substring(pos - 2, pos); } } switch (ch) { case 47: case 40: case 41: case 91: case 93: case 123: case 125: case 45: case 124: error2(Diagnostics.Unexpected_0_Did_you_mean_to_escape_it_with_backslash, pos, 1, String.fromCharCode(ch)); pos++; return String.fromCharCode(ch); } return scanSourceCharacter(); } function scanClassAtom() { if (charCodeChecked(pos) === 92) { pos++; const ch = charCodeChecked(pos); switch (ch) { case 98: pos++; return "\b"; case 45: pos++; return String.fromCharCode(ch); default: if (scanCharacterClassEscape()) { return ""; } return scanCharacterEscape(false); } } else { return scanSourceCharacter(); } } function scanCharacterClassEscape() { Debug.assertEqual(charCodeUnchecked(pos - 1), 92); let isCharacterComplement = false; const start2 = pos - 1; const ch = charCodeChecked(pos); switch (ch) { case 100: case 68: case 115: case 83: case 119: case 87: pos++; return true; case 80: isCharacterComplement = true; case 112: pos++; if (charCodeChecked(pos) === 123) { pos++; const propertyNameOrValueStart = pos; const propertyNameOrValue = scanWordCharacters(); if (charCodeChecked(pos) === 61) { const propertyName = nonBinaryUnicodeProperties.get(propertyNameOrValue); if (pos === propertyNameOrValueStart) { error2(Diagnostics.Expected_a_Unicode_property_name); } else if (propertyName === undefined) { error2(Diagnostics.Unknown_Unicode_property_name, propertyNameOrValueStart, pos - propertyNameOrValueStart); const suggestion = getSpellingSuggestion(propertyNameOrValue, nonBinaryUnicodeProperties.keys(), identity); if (suggestion) { error2(Diagnostics.Did_you_mean_0, propertyNameOrValueStart, pos - propertyNameOrValueStart, suggestion); } } pos++; const propertyValueStart = pos; const propertyValue = scanWordCharacters(); if (pos === propertyValueStart) { error2(Diagnostics.Expected_a_Unicode_property_value); } else if (propertyName !== undefined && !valuesOfNonBinaryUnicodeProperties[propertyName].has(propertyValue)) { error2(Diagnostics.Unknown_Unicode_property_value, propertyValueStart, pos - propertyValueStart); const suggestion = getSpellingSuggestion(propertyValue, valuesOfNonBinaryUnicodeProperties[propertyName], identity); if (suggestion) { error2(Diagnostics.Did_you_mean_0, propertyValueStart, pos - propertyValueStart, suggestion); } } } else { if (pos === propertyNameOrValueStart) { error2(Diagnostics.Expected_a_Unicode_property_name_or_value); } else if (binaryUnicodePropertiesOfStrings.has(propertyNameOrValue)) { if (!unicodeSetsMode) { error2(Diagnostics.Any_Unicode_property_that_would_possibly_match_more_than_a_single_character_is_only_available_when_the_Unicode_Sets_v_flag_is_set, propertyNameOrValueStart, pos - propertyNameOrValueStart); } else if (isCharacterComplement) { error2(Diagnostics.Anything_that_would_possibly_match_more_than_a_single_character_is_invalid_inside_a_negated_character_class, propertyNameOrValueStart, pos - propertyNameOrValueStart); } else { mayContainStrings = true; } } else if (!valuesOfNonBinaryUnicodeProperties.General_Category.has(propertyNameOrValue) && !binaryUnicodeProperties.has(propertyNameOrValue)) { error2(Diagnostics.Unknown_Unicode_property_name_or_value, propertyNameOrValueStart, pos - propertyNameOrValueStart); const suggestion = getSpellingSuggestion(propertyNameOrValue, [...valuesOfNonBinaryUnicodeProperties.General_Category, ...binaryUnicodeProperties, ...binaryUnicodePropertiesOfStrings], identity); if (suggestion) { error2(Diagnostics.Did_you_mean_0, propertyNameOrValueStart, pos - propertyNameOrValueStart, suggestion); } } } scanExpectedChar(125); if (!anyUnicodeMode) { error2(Diagnostics.Unicode_property_value_expressions_are_only_available_when_the_Unicode_u_flag_or_the_Unicode_Sets_v_flag_is_set, start2, pos - start2); } } else if (anyUnicodeModeOrNonAnnexB) { error2(Diagnostics._0_must_be_followed_by_a_Unicode_property_value_expression_enclosed_in_braces, pos - 2, 2, String.fromCharCode(ch)); } else { pos--; return false; } return true; } return false; } function scanWordCharacters() { let value = ""; while (true) { const ch = charCodeChecked(pos); if (ch === -1 || !isWordCharacter(ch)) { break; } value += String.fromCharCode(ch); pos++; } return value; } function scanSourceCharacter() { const size = anyUnicodeMode ? charSize(codePointChecked(pos)) : 1; pos += size; return size > 0 ? text.substring(pos - size, pos) : ""; } function scanExpectedChar(ch) { if (charCodeChecked(pos) === ch) { pos++; } else { error2(Diagnostics._0_expected, pos, 0, String.fromCharCode(ch)); } } scanDisjunction(false); forEach(groupNameReferences, (reference) => { if (!(groupSpecifiers == null ? undefined : groupSpecifiers.has(reference.name))) { error2(Diagnostics.There_is_no_capturing_group_named_0_in_this_regular_expression, reference.pos, reference.end - reference.pos, reference.name); if (groupSpecifiers) { const suggestion = getSpellingSuggestion(reference.name, groupSpecifiers, identity); if (suggestion) { error2(Diagnostics.Did_you_mean_0, reference.pos, reference.end - reference.pos, suggestion); } } } }); forEach(decimalEscapes, (escape) => { if (escape.value > numberOfCapturingGroups) { if (numberOfCapturingGroups) { error2(Diagnostics.This_backreference_refers_to_a_group_that_does_not_exist_There_are_only_0_capturing_groups_in_this_regular_expression, escape.pos, escape.end - escape.pos, numberOfCapturingGroups); } else { error2(Diagnostics.This_backreference_refers_to_a_group_that_does_not_exist_There_are_no_capturing_groups_in_this_regular_expression, escape.pos, escape.end - escape.pos); } } }); } function checkRegularExpressionFlagAvailability(flag, size) { const availableFrom = regExpFlagToFirstAvailableLanguageVersion.get(flag); if (availableFrom && languageVersion < availableFrom) { error2(Diagnostics.This_regular_expression_flag_is_only_available_when_targeting_0_or_later, pos, size, getNameOfScriptTarget(availableFrom)); } } function appendIfCommentDirective(commentDirectives2, text2, commentDirectiveRegEx, lineStart) { const type = getDirectiveFromComment(text2.trimStart(), commentDirectiveRegEx); if (type === undefined) { return commentDirectives2; } return append(commentDirectives2, { range: { pos: lineStart, end: pos }, type }); } function getDirectiveFromComment(text2, commentDirectiveRegEx) { const match = commentDirectiveRegEx.exec(text2); if (!match) { return; } switch (match[1]) { case "ts-expect-error": return 0; case "ts-ignore": return 1; } return; } function reScanTemplateToken(isTaggedTemplate) { pos = tokenStart; return token = scanTemplateAndSetTokenValue(!isTaggedTemplate); } function reScanTemplateHeadOrNoSubstitutionTemplate() { pos = tokenStart; return token = scanTemplateAndSetTokenValue(true); } function reScanJsxToken(allowMultilineJsxText = true) { pos = tokenStart = fullStartPos; return token = scanJsxToken(allowMultilineJsxText); } function reScanLessThanToken() { if (token === 48) { pos = tokenStart + 1; return token = 30; } return token; } function reScanHashToken() { if (token === 81) { pos = tokenStart + 1; return token = 63; } return token; } function reScanQuestionToken() { Debug.assert(token === 61, "'reScanQuestionToken' should only be called on a '??'"); pos = tokenStart + 1; return token = 58; } function scanJsxToken(allowMultilineJsxText = true) { fullStartPos = tokenStart = pos; if (pos >= end) { return token = 1; } let char = charCodeUnchecked(pos); if (char === 60) { if (charCodeUnchecked(pos + 1) === 47) { pos += 2; return token = 31; } pos++; return token = 30; } if (char === 123) { pos++; return token = 19; } let firstNonWhitespace = 0; while (pos < end) { char = charCodeUnchecked(pos); if (char === 123) { break; } if (char === 60) { if (isConflictMarkerTrivia(text, pos)) { pos = scanConflictMarkerTrivia(text, pos, error2); return token = 7; } break; } if (char === 62) { error2(Diagnostics.Unexpected_token_Did_you_mean_or_gt, pos, 1); } if (char === 125) { error2(Diagnostics.Unexpected_token_Did_you_mean_or_rbrace, pos, 1); } if (isLineBreak(char) && firstNonWhitespace === 0) { firstNonWhitespace = -1; } else if (!allowMultilineJsxText && isLineBreak(char) && firstNonWhitespace > 0) { break; } else if (!isWhiteSpaceLike(char)) { firstNonWhitespace = pos; } pos++; } tokenValue = text.substring(fullStartPos, pos); return firstNonWhitespace === -1 ? 13 : 12; } function scanJsxIdentifier() { if (tokenIsIdentifierOrKeyword(token)) { while (pos < end) { const ch = charCodeUnchecked(pos); if (ch === 45) { tokenValue += "-"; pos++; continue; } const oldPos = pos; tokenValue += scanIdentifierParts(); if (pos === oldPos) { break; } } return getIdentifierToken(); } return token; } function scanJsxAttributeValue() { fullStartPos = pos; switch (charCodeUnchecked(pos)) { case 34: case 39: tokenValue = scanString(true); return token = 11; default: return scan(); } } function reScanJsxAttributeValue() { pos = tokenStart = fullStartPos; return scanJsxAttributeValue(); } function scanJSDocCommentTextToken(inBackticks) { fullStartPos = tokenStart = pos; tokenFlags = 0; if (pos >= end) { return token = 1; } for (let ch = charCodeUnchecked(pos);pos < end && (!isLineBreak(ch) && ch !== 96); ch = codePointUnchecked(++pos)) { if (!inBackticks) { if (ch === 123) { break; } else if (ch === 64 && pos - 1 >= 0 && isWhiteSpaceSingleLine(charCodeUnchecked(pos - 1)) && !(pos + 1 < end && isWhiteSpaceLike(charCodeUnchecked(pos + 1)))) { break; } } } if (pos === tokenStart) { return scanJsDocToken(); } tokenValue = text.substring(tokenStart, pos); return token = 82; } function scanJsDocToken() { fullStartPos = tokenStart = pos; tokenFlags = 0; if (pos >= end) { return token = 1; } const ch = codePointUnchecked(pos); pos += charSize(ch); switch (ch) { case 9: case 11: case 12: case 32: while (pos < end && isWhiteSpaceSingleLine(charCodeUnchecked(pos))) { pos++; } return token = 5; case 64: return token = 60; case 13: if (charCodeUnchecked(pos) === 10) { pos++; } case 10: tokenFlags |= 1; return token = 4; case 42: return token = 42; case 123: return token = 19; case 125: return token = 20; case 91: return token = 23; case 93: return token = 24; case 40: return token = 21; case 41: return token = 22; case 60: return token = 30; case 62: return token = 32; case 61: return token = 64; case 44: return token = 28; case 46: return token = 25; case 96: return token = 62; case 35: return token = 63; case 92: pos--; const extendedCookedChar = peekExtendedUnicodeEscape(); if (extendedCookedChar >= 0 && isIdentifierStart(extendedCookedChar, languageVersion)) { tokenValue = scanExtendedUnicodeEscape(true) + scanIdentifierParts(); return token = getIdentifierToken(); } const cookedChar = peekUnicodeEscape(); if (cookedChar >= 0 && isIdentifierStart(cookedChar, languageVersion)) { pos += 6; tokenFlags |= 1024; tokenValue = String.fromCharCode(cookedChar) + scanIdentifierParts(); return token = getIdentifierToken(); } pos++; return token = 0; } if (isIdentifierStart(ch, languageVersion)) { let char = ch; while (pos < end && isIdentifierPart(char = codePointUnchecked(pos), languageVersion) || char === 45) pos += charSize(char); tokenValue = text.substring(tokenStart, pos); if (char === 92) { tokenValue += scanIdentifierParts(); } return token = getIdentifierToken(); } else { return token = 0; } } function speculationHelper(callback, isLookahead) { const savePos = pos; const saveStartPos = fullStartPos; const saveTokenPos = tokenStart; const saveToken = token; const saveTokenValue = tokenValue; const saveTokenFlags = tokenFlags; const result = callback(); if (!result || isLookahead) { pos = savePos; fullStartPos = saveStartPos; tokenStart = saveTokenPos; token = saveToken; tokenValue = saveTokenValue; tokenFlags = saveTokenFlags; } return result; } function scanRange(start2, length3, callback) { const saveEnd = end; const savePos = pos; const saveStartPos = fullStartPos; const saveTokenPos = tokenStart; const saveToken = token; const saveTokenValue = tokenValue; const saveTokenFlags = tokenFlags; const saveErrorExpectations = commentDirectives; setText(text, start2, length3); const result = callback(); end = saveEnd; pos = savePos; fullStartPos = saveStartPos; tokenStart = saveTokenPos; token = saveToken; tokenValue = saveTokenValue; tokenFlags = saveTokenFlags; commentDirectives = saveErrorExpectations; return result; } function lookAhead(callback) { return speculationHelper(callback, true); } function tryScan(callback) { return speculationHelper(callback, false); } function getText() { return text; } function clearCommentDirectives() { commentDirectives = undefined; } function setText(newText, start2, length3) { text = newText || ""; end = length3 === undefined ? text.length : start2 + length3; resetTokenState(start2 || 0); } function setOnError(errorCallback) { onError = errorCallback; } function setScriptTarget(scriptTarget) { languageVersion = scriptTarget; } function setLanguageVariant(variant) { languageVariant = variant; } function setScriptKind(kind) { scriptKind = kind; } function setJSDocParsingMode(kind) { jsDocParsingMode = kind; } function resetTokenState(position) { Debug.assert(position >= 0); pos = position; fullStartPos = position; tokenStart = position; token = 0; tokenValue = undefined; tokenFlags = 0; } function setSkipJsDocLeadingAsterisks(skip) { skipJsDocLeadingAsterisks += skip ? 1 : -1; } } function codePointAt(s, i) { return s.codePointAt(i); } function charSize(ch) { if (ch >= 65536) { return 2; } if (ch === -1) { return 0; } return 1; } function utf16EncodeAsStringFallback(codePoint) { Debug.assert(0 <= codePoint && codePoint <= 1114111); if (codePoint <= 65535) { return String.fromCharCode(codePoint); } const codeUnit1 = Math.floor((codePoint - 65536) / 1024) + 55296; const codeUnit2 = (codePoint - 65536) % 1024 + 56320; return String.fromCharCode(codeUnit1, codeUnit2); } var utf16EncodeAsStringWorker = String.fromCodePoint ? (codePoint) => String.fromCodePoint(codePoint) : utf16EncodeAsStringFallback; function utf16EncodeAsString(codePoint) { return utf16EncodeAsStringWorker(codePoint); } var nonBinaryUnicodeProperties = new Map(Object.entries({ General_Category: "General_Category", gc: "General_Category", Script: "Script", sc: "Script", Script_Extensions: "Script_Extensions", scx: "Script_Extensions" })); var binaryUnicodeProperties = /* @__PURE__ */ new Set(["ASCII", "ASCII_Hex_Digit", "AHex", "Alphabetic", "Alpha", "Any", "Assigned", "Bidi_Control", "Bidi_C", "Bidi_Mirrored", "Bidi_M", "Case_Ignorable", "CI", "Cased", "Changes_When_Casefolded", "CWCF", "Changes_When_Casemapped", "CWCM", "Changes_When_Lowercased", "CWL", "Changes_When_NFKC_Casefolded", "CWKCF", "Changes_When_Titlecased", "CWT", "Changes_When_Uppercased", "CWU", "Dash", "Default_Ignorable_Code_Point", "DI", "Deprecated", "Dep", "Diacritic", "Dia", "Emoji", "Emoji_Component", "EComp", "Emoji_Modifier", "EMod", "Emoji_Modifier_Base", "EBase", "Emoji_Presentation", "EPres", "Extended_Pictographic", "ExtPict", "Extender", "Ext", "Grapheme_Base", "Gr_Base", "Grapheme_Extend", "Gr_Ext", "Hex_Digit", "Hex", "IDS_Binary_Operator", "IDSB", "IDS_Trinary_Operator", "IDST", "ID_Continue", "IDC", "ID_Start", "IDS", "Ideographic", "Ideo", "Join_Control", "Join_C", "Logical_Order_Exception", "LOE", "Lowercase", "Lower", "Math", "Noncharacter_Code_Point", "NChar", "Pattern_Syntax", "Pat_Syn", "Pattern_White_Space", "Pat_WS", "Quotation_Mark", "QMark", "Radical", "Regional_Indicator", "RI", "Sentence_Terminal", "STerm", "Soft_Dotted", "SD", "Terminal_Punctuation", "Term", "Unified_Ideograph", "UIdeo", "Uppercase", "Upper", "Variation_Selector", "VS", "White_Space", "space", "XID_Continue", "XIDC", "XID_Start", "XIDS"]); var binaryUnicodePropertiesOfStrings = /* @__PURE__ */ new Set(["Basic_Emoji", "Emoji_Keycap_Sequence", "RGI_Emoji_Modifier_Sequence", "RGI_Emoji_Flag_Sequence", "RGI_Emoji_Tag_Sequence", "RGI_Emoji_ZWJ_Sequence", "RGI_Emoji"]); var valuesOfNonBinaryUnicodeProperties = { General_Category: /* @__PURE__ */ new Set(["C", "Other", "Cc", "Control", "cntrl", "Cf", "Format", "Cn", "Unassigned", "Co", "Private_Use", "Cs", "Surrogate", "L", "Letter", "LC", "Cased_Letter", "Ll", "Lowercase_Letter", "Lm", "Modifier_Letter", "Lo", "Other_Letter", "Lt", "Titlecase_Letter", "Lu", "Uppercase_Letter", "M", "Mark", "Combining_Mark", "Mc", "Spacing_Mark", "Me", "Enclosing_Mark", "Mn", "Nonspacing_Mark", "N", "Number", "Nd", "Decimal_Number", "digit", "Nl", "Letter_Number", "No", "Other_Number", "P", "Punctuation", "punct", "Pc", "Connector_Punctuation", "Pd", "Dash_Punctuation", "Pe", "Close_Punctuation", "Pf", "Final_Punctuation", "Pi", "Initial_Punctuation", "Po", "Other_Punctuation", "Ps", "Open_Punctuation", "S", "Symbol", "Sc", "Currency_Symbol", "Sk", "Modifier_Symbol", "Sm", "Math_Symbol", "So", "Other_Symbol", "Z", "Separator", "Zl", "Line_Separator", "Zp", "Paragraph_Separator", "Zs", "Space_Separator"]), Script: /* @__PURE__ */ new Set(["Adlm", "Adlam", "Aghb", "Caucasian_Albanian", "Ahom", "Arab", "Arabic", "Armi", "Imperial_Aramaic", "Armn", "Armenian", "Avst", "Avestan", "Bali", "Balinese", "Bamu", "Bamum", "Bass", "Bassa_Vah", "Batk", "Batak", "Beng", "Bengali", "Bhks", "Bhaiksuki", "Bopo", "Bopomofo", "Brah", "Brahmi", "Brai", "Braille", "Bugi", "Buginese", "Buhd", "Buhid", "Cakm", "Chakma", "Cans", "Canadian_Aboriginal", "Cari", "Carian", "Cham", "Cher", "Cherokee", "Chrs", "Chorasmian", "Copt", "Coptic", "Qaac", "Cpmn", "Cypro_Minoan", "Cprt", "Cypriot", "Cyrl", "Cyrillic", "Deva", "Devanagari", "Diak", "Dives_Akuru", "Dogr", "Dogra", "Dsrt", "Deseret", "Dupl", "Duployan", "Egyp", "Egyptian_Hieroglyphs", "Elba", "Elbasan", "Elym", "Elymaic", "Ethi", "Ethiopic", "Geor", "Georgian", "Glag", "Glagolitic", "Gong", "Gunjala_Gondi", "Gonm", "Masaram_Gondi", "Goth", "Gothic", "Gran", "Grantha", "Grek", "Greek", "Gujr", "Gujarati", "Guru", "Gurmukhi", "Hang", "Hangul", "Hani", "Han", "Hano", "Hanunoo", "Hatr", "Hatran", "Hebr", "Hebrew", "Hira", "Hiragana", "Hluw", "Anatolian_Hieroglyphs", "Hmng", "Pahawh_Hmong", "Hmnp", "Nyiakeng_Puachue_Hmong", "Hrkt", "Katakana_Or_Hiragana", "Hung", "Old_Hungarian", "Ital", "Old_Italic", "Java", "Javanese", "Kali", "Kayah_Li", "Kana", "Katakana", "Kawi", "Khar", "Kharoshthi", "Khmr", "Khmer", "Khoj", "Khojki", "Kits", "Khitan_Small_Script", "Knda", "Kannada", "Kthi", "Kaithi", "Lana", "Tai_Tham", "Laoo", "Lao", "Latn", "Latin", "Lepc", "Lepcha", "Limb", "Limbu", "Lina", "Linear_A", "Linb", "Linear_B", "Lisu", "Lyci", "Lycian", "Lydi", "Lydian", "Mahj", "Mahajani", "Maka", "Makasar", "Mand", "Mandaic", "Mani", "Manichaean", "Marc", "Marchen", "Medf", "Medefaidrin", "Mend", "Mende_Kikakui", "Merc", "Meroitic_Cursive", "Mero", "Meroitic_Hieroglyphs", "Mlym", "Malayalam", "Modi", "Mong", "Mongolian", "Mroo", "Mro", "Mtei", "Meetei_Mayek", "Mult", "Multani", "Mymr", "Myanmar", "Nagm", "Nag_Mundari", "Nand", "Nandinagari", "Narb", "Old_North_Arabian", "Nbat", "Nabataean", "Newa", "Nkoo", "Nko", "Nshu", "Nushu", "Ogam", "Ogham", "Olck", "Ol_Chiki", "Orkh", "Old_Turkic", "Orya", "Oriya", "Osge", "Osage", "Osma", "Osmanya", "Ougr", "Old_Uyghur", "Palm", "Palmyrene", "Pauc", "Pau_Cin_Hau", "Perm", "Old_Permic", "Phag", "Phags_Pa", "Phli", "Inscriptional_Pahlavi", "Phlp", "Psalter_Pahlavi", "Phnx", "Phoenician", "Plrd", "Miao", "Prti", "Inscriptional_Parthian", "Rjng", "Rejang", "Rohg", "Hanifi_Rohingya", "Runr", "Runic", "Samr", "Samaritan", "Sarb", "Old_South_Arabian", "Saur", "Saurashtra", "Sgnw", "SignWriting", "Shaw", "Shavian", "Shrd", "Sharada", "Sidd", "Siddham", "Sind", "Khudawadi", "Sinh", "Sinhala", "Sogd", "Sogdian", "Sogo", "Old_Sogdian", "Sora", "Sora_Sompeng", "Soyo", "Soyombo", "Sund", "Sundanese", "Sylo", "Syloti_Nagri", "Syrc", "Syriac", "Tagb", "Tagbanwa", "Takr", "Takri", "Tale", "Tai_Le", "Talu", "New_Tai_Lue", "Taml", "Tamil", "Tang", "Tangut", "Tavt", "Tai_Viet", "Telu", "Telugu", "Tfng", "Tifinagh", "Tglg", "Tagalog", "Thaa", "Thaana", "Thai", "Tibt", "Tibetan", "Tirh", "Tirhuta", "Tnsa", "Tangsa", "Toto", "Ugar", "Ugaritic", "Vaii", "Vai", "Vith", "Vithkuqi", "Wara", "Warang_Citi", "Wcho", "Wancho", "Xpeo", "Old_Persian", "Xsux", "Cuneiform", "Yezi", "Yezidi", "Yiii", "Yi", "Zanb", "Zanabazar_Square", "Zinh", "Inherited", "Qaai", "Zyyy", "Common", "Zzzz", "Unknown"]), Script_Extensions: undefined }; valuesOfNonBinaryUnicodeProperties.Script_Extensions = valuesOfNonBinaryUnicodeProperties.Script; function isExternalModuleNameRelative(moduleName) { return pathIsRelative(moduleName) || isRootedDiskPath(moduleName); } function sortAndDeduplicateDiagnostics(diagnostics) { return sortAndDeduplicate(diagnostics, compareDiagnostics, diagnosticsEqualityComparer); } var targetToLibMap = /* @__PURE__ */ new Map([ [99, "lib.esnext.full.d.ts"], [12, "lib.es2025.full.d.ts"], [11, "lib.es2024.full.d.ts"], [10, "lib.es2023.full.d.ts"], [9, "lib.es2022.full.d.ts"], [8, "lib.es2021.full.d.ts"], [7, "lib.es2020.full.d.ts"], [6, "lib.es2019.full.d.ts"], [5, "lib.es2018.full.d.ts"], [4, "lib.es2017.full.d.ts"], [3, "lib.es2016.full.d.ts"], [2, "lib.es6.d.ts"] ]); function getDefaultLibFileName(options) { const target = getEmitScriptTarget(options); switch (target) { case 99: case 12: case 11: case 10: case 9: case 8: case 7: case 6: case 5: case 4: case 3: case 2: return targetToLibMap.get(target); default: return "lib.d.ts"; } } function textSpanEnd(span) { return span.start + span.length; } function textSpanIsEmpty(span) { return span.length === 0; } function textSpanContainsPosition(span, position) { return position >= span.start && position < textSpanEnd(span); } function textRangeContainsPositionInclusive(range, position) { return position >= range.pos && position <= range.end; } function textSpanContainsTextSpan(span, other) { return other.start >= span.start && textSpanEnd(other) <= textSpanEnd(span); } function textSpanContainsTextRange(span, range) { return range.pos >= span.start && range.end <= textSpanEnd(span); } function textRangeContainsTextSpan(range, span) { return span.start >= range.pos && textSpanEnd(span) <= range.end; } function textSpanOverlapsWith(span, other) { return textSpanOverlap(span, other) !== undefined; } function textSpanOverlap(span1, span2) { const overlap = textSpanIntersection(span1, span2); return overlap && overlap.length === 0 ? undefined : overlap; } function textSpanIntersectsWithTextSpan(span, other) { return decodedTextSpanIntersectsWith(span.start, span.length, other.start, other.length); } function textSpanIntersectsWith(span, start, length2) { return decodedTextSpanIntersectsWith(span.start, span.length, start, length2); } function decodedTextSpanIntersectsWith(start1, length1, start2, length2) { const end1 = start1 + length1; const end2 = start2 + length2; return start2 <= end1 && end2 >= start1; } function textSpanIntersectsWithPosition(span, position) { return position <= textSpanEnd(span) && position >= span.start; } function textRangeIntersectsWithTextSpan(range, span) { return textSpanIntersectsWith(span, range.pos, range.end - range.pos); } function textSpanIntersection(span1, span2) { const start = Math.max(span1.start, span2.start); const end = Math.min(textSpanEnd(span1), textSpanEnd(span2)); return start <= end ? createTextSpanFromBounds(start, end) : undefined; } function normalizeSpans(spans) { spans = spans.filter((span) => span.length > 0).sort((a, b) => { return a.start !== b.start ? a.start - b.start : a.length - b.length; }); const result = []; let i = 0; while (i < spans.length) { let span = spans[i]; let j = i + 1; while (j < spans.length && textSpanIntersectsWithTextSpan(span, spans[j])) { const start = Math.min(span.start, spans[j].start); const end = Math.max(textSpanEnd(span), textSpanEnd(spans[j])); span = createTextSpanFromBounds(start, end); j++; } i = j; result.push(span); } return result; } function createTextSpan(start, length2) { if (start < 0) { throw new Error("start < 0"); } if (length2 < 0) { throw new Error("length < 0"); } return { start, length: length2 }; } function createTextSpanFromBounds(start, end) { return createTextSpan(start, end - start); } function textChangeRangeNewSpan(range) { return createTextSpan(range.span.start, range.newLength); } function textChangeRangeIsUnchanged(range) { return textSpanIsEmpty(range.span) && range.newLength === 0; } function createTextChangeRange(span, newLength) { if (newLength < 0) { throw new Error("newLength < 0"); } return { span, newLength }; } var unchangedTextChangeRange = createTextChangeRange(createTextSpan(0, 0), 0); function collapseTextChangeRangesAcrossMultipleVersions(changes) { if (changes.length === 0) { return unchangedTextChangeRange; } if (changes.length === 1) { return changes[0]; } const change0 = changes[0]; let oldStartN = change0.span.start; let oldEndN = textSpanEnd(change0.span); let newEndN = oldStartN + change0.newLength; for (let i = 1;i < changes.length; i++) { const nextChange = changes[i]; const oldStart1 = oldStartN; const oldEnd1 = oldEndN; const newEnd1 = newEndN; const oldStart2 = nextChange.span.start; const oldEnd2 = textSpanEnd(nextChange.span); const newEnd2 = oldStart2 + nextChange.newLength; oldStartN = Math.min(oldStart1, oldStart2); oldEndN = Math.max(oldEnd1, oldEnd1 + (oldEnd2 - newEnd1)); newEndN = Math.max(newEnd2, newEnd2 + (newEnd1 - oldEnd2)); } return createTextChangeRange(createTextSpanFromBounds(oldStartN, oldEndN), newEndN - oldStartN); } function getTypeParameterOwner(d) { if (d && d.kind === 169) { for (let current = d;current; current = current.parent) { if (isFunctionLike(current) || isClassLike(current) || current.kind === 265) { return current; } } } } function isParameterPropertyDeclaration(node, parent2) { return isParameter(node) && hasSyntacticModifier(node, 31) && parent2.kind === 177; } function isEmptyBindingPattern(node) { if (isBindingPattern(node)) { return every(node.elements, isEmptyBindingElement); } return false; } function isEmptyBindingElement(node) { if (isOmittedExpression(node)) { return true; } return isEmptyBindingPattern(node.name); } function walkUpBindingElementsAndPatterns(binding) { let node = binding.parent; while (isBindingElement(node.parent)) { node = node.parent.parent; } return node.parent; } function getCombinedFlags(node, getFlags) { if (isBindingElement(node)) { node = walkUpBindingElementsAndPatterns(node); } let flags = getFlags(node); if (node.kind === 261) { node = node.parent; } if (node && node.kind === 262) { flags |= getFlags(node); node = node.parent; } if (node && node.kind === 244) { flags |= getFlags(node); } return flags; } function getCombinedModifierFlags(node) { return getCombinedFlags(node, getEffectiveModifierFlags); } function getCombinedNodeFlagsAlwaysIncludeJSDoc(node) { return getCombinedFlags(node, getEffectiveModifierFlagsAlwaysIncludeJSDoc); } function getCombinedNodeFlags(node) { return getCombinedFlags(node, getNodeFlags); } function getNodeFlags(node) { return node.flags; } var supportedLocaleDirectories = ["cs", "de", "es", "fr", "it", "ja", "ko", "pl", "pt-br", "ru", "tr", "zh-cn", "zh-tw"]; function validateLocaleAndSetLanguage(locale, sys2, errors) { const lowerCaseLocale = locale.toLowerCase(); const matchResult = /^([a-z]+)(?:[_-]([a-z]+))?$/.exec(lowerCaseLocale); if (!matchResult) { if (errors) { errors.push(createCompilerDiagnostic(Diagnostics.Locale_must_be_of_the_form_language_or_language_territory_For_example_0_or_1, "en", "ja-jp")); } return; } const language = matchResult[1]; const territory = matchResult[2]; if (contains(supportedLocaleDirectories, lowerCaseLocale) && !trySetLanguageAndTerritory(language, territory, errors)) { trySetLanguageAndTerritory(language, undefined, errors); } setUILocale(locale); function trySetLanguageAndTerritory(language2, territory2, errors2) { const compilerFilePath = normalizePath(sys2.getExecutingFilePath()); const containingDirectoryPath = getDirectoryPath(compilerFilePath); let filePath = combinePaths(containingDirectoryPath, language2); if (territory2) { filePath = filePath + "-" + territory2; } filePath = sys2.resolvePath(combinePaths(filePath, "diagnosticMessages.generated.json")); if (!sys2.fileExists(filePath)) { return false; } let fileContents = ""; try { fileContents = sys2.readFile(filePath); } catch { if (errors2) { errors2.push(createCompilerDiagnostic(Diagnostics.Unable_to_open_file_0, filePath)); } return false; } try { setLocalizedDiagnosticMessages(JSON.parse(fileContents)); } catch { if (errors2) { errors2.push(createCompilerDiagnostic(Diagnostics.Corrupted_locale_file_0, filePath)); } return false; } return true; } } function getOriginalNode(node, nodeTest) { if (node) { while (node.original !== undefined) { node = node.original; } } if (!node || !nodeTest) { return node; } return nodeTest(node) ? node : undefined; } function findAncestor(node, callback) { while (node) { const result = callback(node); if (result === "quit") { return; } else if (result) { return node; } node = node.parent; } return; } function isParseTreeNode(node) { return (node.flags & 16) === 0; } function getParseTreeNode(node, nodeTest) { if (node === undefined || isParseTreeNode(node)) { return node; } node = node.original; while (node) { if (isParseTreeNode(node)) { return !nodeTest || nodeTest(node) ? node : undefined; } node = node.original; } } function escapeLeadingUnderscores(identifier) { return identifier.length >= 2 && identifier.charCodeAt(0) === 95 && identifier.charCodeAt(1) === 95 ? "_" + identifier : identifier; } function unescapeLeadingUnderscores(identifier) { const id = identifier; return id.length >= 3 && id.charCodeAt(0) === 95 && id.charCodeAt(1) === 95 && id.charCodeAt(2) === 95 ? id.substr(1) : id; } function idText(identifierOrPrivateName) { return unescapeLeadingUnderscores(identifierOrPrivateName.escapedText); } function identifierToKeywordKind(node) { const token = stringToToken(node.escapedText); return token ? tryCast(token, isKeyword) : undefined; } function symbolName(symbol) { if (symbol.valueDeclaration && isPrivateIdentifierClassElementDeclaration(symbol.valueDeclaration)) { return idText(symbol.valueDeclaration.name); } return unescapeLeadingUnderscores(symbol.escapedName); } function nameForNamelessJSDocTypedef(declaration) { const hostNode = declaration.parent.parent; if (!hostNode) { return; } if (isDeclaration(hostNode)) { return getDeclarationIdentifier(hostNode); } switch (hostNode.kind) { case 244: if (hostNode.declarationList && hostNode.declarationList.declarations[0]) { return getDeclarationIdentifier(hostNode.declarationList.declarations[0]); } break; case 245: let expr = hostNode.expression; if (expr.kind === 227 && expr.operatorToken.kind === 64) { expr = expr.left; } switch (expr.kind) { case 212: return expr.name; case 213: const arg = expr.argumentExpression; if (isIdentifier(arg)) { return arg; } } break; case 218: { return getDeclarationIdentifier(hostNode.expression); } case 257: { if (isDeclaration(hostNode.statement) || isExpression(hostNode.statement)) { return getDeclarationIdentifier(hostNode.statement); } break; } } } function getDeclarationIdentifier(node) { const name = getNameOfDeclaration(node); return name && isIdentifier(name) ? name : undefined; } function nodeHasName(statement, name) { if (isNamedDeclaration(statement) && isIdentifier(statement.name) && idText(statement.name) === idText(name)) { return true; } if (isVariableStatement(statement) && some(statement.declarationList.declarations, (d) => nodeHasName(d, name))) { return true; } return false; } function getNameOfJSDocTypedef(declaration) { return declaration.name || nameForNamelessJSDocTypedef(declaration); } function isNamedDeclaration(node) { return !!node.name; } function getNonAssignedNameOfDeclaration(declaration) { switch (declaration.kind) { case 80: return declaration; case 349: case 342: { const { name } = declaration; if (name.kind === 167) { return name.right; } break; } case 214: case 227: { const expr2 = declaration; switch (getAssignmentDeclarationKind(expr2)) { case 1: case 4: case 5: case 3: return getElementOrPropertyAccessArgumentExpressionOrName(expr2.left); case 7: case 8: case 9: return expr2.arguments[1]; default: return; } } case 347: return getNameOfJSDocTypedef(declaration); case 341: return nameForNamelessJSDocTypedef(declaration); case 278: { const { expression } = declaration; return isIdentifier(expression) ? expression : undefined; } case 213: const expr = declaration; if (isBindableStaticElementAccessExpression(expr)) { return expr.argumentExpression; } } return declaration.name; } function getNameOfDeclaration(declaration) { if (declaration === undefined) return; return getNonAssignedNameOfDeclaration(declaration) || (isFunctionExpression(declaration) || isArrowFunction(declaration) || isClassExpression(declaration) ? getAssignedName(declaration) : undefined); } function getAssignedName(node) { if (!node.parent) { return; } else if (isPropertyAssignment(node.parent) || isBindingElement(node.parent)) { return node.parent.name; } else if (isBinaryExpression(node.parent) && node === node.parent.right) { if (isIdentifier(node.parent.left)) { return node.parent.left; } else if (isAccessExpression(node.parent.left)) { return getElementOrPropertyAccessArgumentExpressionOrName(node.parent.left); } } else if (isVariableDeclaration(node.parent) && isIdentifier(node.parent.name)) { return node.parent.name; } } function getDecorators(node) { if (hasDecorators(node)) { return filter(node.modifiers, isDecorator); } } function getModifiers(node) { if (hasSyntacticModifier(node, 98303)) { return filter(node.modifiers, isModifier); } } function getJSDocParameterTagsWorker(param, noCache) { if (param.name) { if (isIdentifier(param.name)) { const name = param.name.escapedText; return getJSDocTagsWorker(param.parent, noCache).filter((tag) => isJSDocParameterTag(tag) && isIdentifier(tag.name) && tag.name.escapedText === name); } else { const i = param.parent.parameters.indexOf(param); Debug.assert(i > -1, "Parameters should always be in their parents' parameter list"); const paramTags = getJSDocTagsWorker(param.parent, noCache).filter(isJSDocParameterTag); if (i < paramTags.length) { return [paramTags[i]]; } } } return emptyArray; } function getJSDocParameterTags(param) { return getJSDocParameterTagsWorker(param, false); } function getJSDocParameterTagsNoCache(param) { return getJSDocParameterTagsWorker(param, true); } function getJSDocTypeParameterTagsWorker(param, noCache) { const name = param.name.escapedText; return getJSDocTagsWorker(param.parent, noCache).filter((tag) => isJSDocTemplateTag(tag) && tag.typeParameters.some((tp) => tp.name.escapedText === name)); } function getJSDocTypeParameterTags(param) { return getJSDocTypeParameterTagsWorker(param, false); } function getJSDocTypeParameterTagsNoCache(param) { return getJSDocTypeParameterTagsWorker(param, true); } function hasJSDocParameterTags(node) { return !!getFirstJSDocTag(node, isJSDocParameterTag); } function getJSDocAugmentsTag(node) { return getFirstJSDocTag(node, isJSDocAugmentsTag); } function getJSDocImplementsTags(node) { return getAllJSDocTags(node, isJSDocImplementsTag); } function getJSDocClassTag(node) { return getFirstJSDocTag(node, isJSDocClassTag); } function getJSDocPublicTag(node) { return getFirstJSDocTag(node, isJSDocPublicTag); } function getJSDocPublicTagNoCache(node) { return getFirstJSDocTag(node, isJSDocPublicTag, true); } function getJSDocPrivateTag(node) { return getFirstJSDocTag(node, isJSDocPrivateTag); } function getJSDocPrivateTagNoCache(node) { return getFirstJSDocTag(node, isJSDocPrivateTag, true); } function getJSDocProtectedTag(node) { return getFirstJSDocTag(node, isJSDocProtectedTag); } function getJSDocProtectedTagNoCache(node) { return getFirstJSDocTag(node, isJSDocProtectedTag, true); } function getJSDocReadonlyTag(node) { return getFirstJSDocTag(node, isJSDocReadonlyTag); } function getJSDocReadonlyTagNoCache(node) { return getFirstJSDocTag(node, isJSDocReadonlyTag, true); } function getJSDocOverrideTagNoCache(node) { return getFirstJSDocTag(node, isJSDocOverrideTag, true); } function getJSDocDeprecatedTag(node) { return getFirstJSDocTag(node, isJSDocDeprecatedTag); } function getJSDocDeprecatedTagNoCache(node) { return getFirstJSDocTag(node, isJSDocDeprecatedTag, true); } function getJSDocEnumTag(node) { return getFirstJSDocTag(node, isJSDocEnumTag); } function getJSDocThisTag(node) { return getFirstJSDocTag(node, isJSDocThisTag); } function getJSDocReturnTag(node) { return getFirstJSDocTag(node, isJSDocReturnTag); } function getJSDocTemplateTag(node) { return getFirstJSDocTag(node, isJSDocTemplateTag); } function getJSDocSatisfiesTag(node) { return getFirstJSDocTag(node, isJSDocSatisfiesTag); } function getJSDocTypeTag(node) { const tag = getFirstJSDocTag(node, isJSDocTypeTag); if (tag && tag.typeExpression && tag.typeExpression.type) { return tag; } return; } function getJSDocType(node) { let tag = getFirstJSDocTag(node, isJSDocTypeTag); if (!tag && isParameter(node)) { tag = find(getJSDocParameterTags(node), (tag2) => !!tag2.typeExpression); } return tag && tag.typeExpression && tag.typeExpression.type; } function getJSDocReturnType(node) { const returnTag = getJSDocReturnTag(node); if (returnTag && returnTag.typeExpression) { return returnTag.typeExpression.type; } const typeTag = getJSDocTypeTag(node); if (typeTag && typeTag.typeExpression) { const type = typeTag.typeExpression.type; if (isTypeLiteralNode(type)) { const sig = find(type.members, isCallSignatureDeclaration); return sig && sig.type; } if (isFunctionTypeNode(type) || isJSDocFunctionType(type)) { return type.type; } } } function getJSDocTagsWorker(node, noCache) { var _a; if (!canHaveJSDoc(node)) return emptyArray; let tags = (_a = node.jsDoc) == null ? undefined : _a.jsDocCache; if (tags === undefined || noCache) { const comments = getJSDocCommentsAndTags(node, noCache); Debug.assert(comments.length < 2 || comments[0] !== comments[1]); tags = flatMap(comments, (j) => isJSDoc(j) ? j.tags : j); if (!noCache) { node.jsDoc ?? (node.jsDoc = []); node.jsDoc.jsDocCache = tags; } } return tags; } function getJSDocTags(node) { return getJSDocTagsWorker(node, false); } function getFirstJSDocTag(node, predicate, noCache) { return find(getJSDocTagsWorker(node, noCache), predicate); } function getAllJSDocTags(node, predicate) { return getJSDocTags(node).filter(predicate); } function getAllJSDocTagsOfKind(node, kind) { return getJSDocTags(node).filter((doc) => doc.kind === kind); } function getTextOfJSDocComment(comment) { return typeof comment === "string" ? comment : comment == null ? undefined : comment.map((c) => c.kind === 322 ? c.text : formatJSDocLink(c)).join(""); } function formatJSDocLink(link) { const kind = link.kind === 325 ? "link" : link.kind === 326 ? "linkcode" : "linkplain"; const name = link.name ? entityNameToString(link.name) : ""; const space = link.name && (link.text === "" || link.text.startsWith("://")) ? "" : " "; return `{@${kind} ${name}${space}${link.text}}`; } function getEffectiveTypeParameterDeclarations(node) { if (isJSDocSignature(node)) { if (isJSDocOverloadTag(node.parent)) { const jsDoc = getJSDocRoot(node.parent); if (jsDoc && length(jsDoc.tags)) { return flatMap(jsDoc.tags, (tag) => isJSDocTemplateTag(tag) ? tag.typeParameters : undefined); } } return emptyArray; } if (isJSDocTypeAlias(node)) { Debug.assert(node.parent.kind === 321); return flatMap(node.parent.tags, (tag) => isJSDocTemplateTag(tag) ? tag.typeParameters : undefined); } if (node.typeParameters) { return node.typeParameters; } if (canHaveIllegalTypeParameters(node) && node.typeParameters) { return node.typeParameters; } if (isInJSFile(node)) { const decls = getJSDocTypeParameterDeclarations(node); if (decls.length) { return decls; } const typeTag = getJSDocType(node); if (typeTag && isFunctionTypeNode(typeTag) && typeTag.typeParameters) { return typeTag.typeParameters; } } return emptyArray; } function getEffectiveConstraintOfTypeParameter(node) { return node.constraint ? node.constraint : isJSDocTemplateTag(node.parent) && node === node.parent.typeParameters[0] ? node.parent.constraint : undefined; } function isMemberName(node) { return node.kind === 80 || node.kind === 81; } function isGetOrSetAccessorDeclaration(node) { return node.kind === 179 || node.kind === 178; } function isPropertyAccessChain(node) { return isPropertyAccessExpression(node) && !!(node.flags & 64); } function isElementAccessChain(node) { return isElementAccessExpression(node) && !!(node.flags & 64); } function isCallChain(node) { return isCallExpression(node) && !!(node.flags & 64); } function isOptionalChain(node) { const kind = node.kind; return !!(node.flags & 64) && (kind === 212 || kind === 213 || kind === 214 || kind === 236); } function isOptionalChainRoot(node) { return isOptionalChain(node) && !isNonNullExpression(node) && !!node.questionDotToken; } function isExpressionOfOptionalChainRoot(node) { return isOptionalChainRoot(node.parent) && node.parent.expression === node; } function isOutermostOptionalChain(node) { return !isOptionalChain(node.parent) || isOptionalChainRoot(node.parent) || node !== node.parent.expression; } function isNullishCoalesce(node) { return node.kind === 227 && node.operatorToken.kind === 61; } function isConstTypeReference(node) { return isTypeReferenceNode(node) && isIdentifier(node.typeName) && node.typeName.escapedText === "const" && !node.typeArguments; } function skipPartiallyEmittedExpressions(node) { return skipOuterExpressions(node, 8); } function isNonNullChain(node) { return isNonNullExpression(node) && !!(node.flags & 64); } function isBreakOrContinueStatement(node) { return node.kind === 253 || node.kind === 252; } function isNamedExportBindings(node) { return node.kind === 281 || node.kind === 280; } function isJSDocPropertyLikeTag(node) { return node.kind === 349 || node.kind === 342; } function isNodeKind(kind) { return kind >= 167; } function isTokenKind(kind) { return kind >= 0 && kind <= 166; } function isToken(n) { return isTokenKind(n.kind); } function isNodeArray(array) { return hasProperty(array, "pos") && hasProperty(array, "end"); } function isLiteralKind(kind) { return 9 <= kind && kind <= 15; } function isLiteralExpression(node) { return isLiteralKind(node.kind); } function isLiteralExpressionOfObject(node) { switch (node.kind) { case 211: case 210: case 14: case 219: case 232: return true; } return false; } function isTemplateLiteralKind(kind) { return 15 <= kind && kind <= 18; } function isTemplateLiteralToken(node) { return isTemplateLiteralKind(node.kind); } function isTemplateMiddleOrTemplateTail(node) { const kind = node.kind; return kind === 17 || kind === 18; } function isImportOrExportSpecifier(node) { return isImportSpecifier(node) || isExportSpecifier(node); } function isTypeOnlyImportDeclaration(node) { switch (node.kind) { case 277: return node.isTypeOnly || node.parent.parent.phaseModifier === 156; case 275: return node.parent.phaseModifier === 156; case 274: return node.phaseModifier === 156; case 272: return node.isTypeOnly; } return false; } function isTypeOnlyExportDeclaration(node) { switch (node.kind) { case 282: return node.isTypeOnly || node.parent.parent.isTypeOnly; case 279: return node.isTypeOnly && !!node.moduleSpecifier && !node.exportClause; case 281: return node.parent.isTypeOnly; } return false; } function isTypeOnlyImportOrExportDeclaration(node) { return isTypeOnlyImportDeclaration(node) || isTypeOnlyExportDeclaration(node); } function isPartOfTypeOnlyImportOrExportDeclaration(node) { return findAncestor(node, isTypeOnlyImportOrExportDeclaration) !== undefined; } function isStringTextContainingNode(node) { return node.kind === 11 || isTemplateLiteralKind(node.kind); } function isImportAttributeName(node) { return isStringLiteral(node) || isIdentifier(node); } function isGeneratedIdentifier(node) { var _a; return isIdentifier(node) && ((_a = node.emitNode) == null ? undefined : _a.autoGenerate) !== undefined; } function isGeneratedPrivateIdentifier(node) { var _a; return isPrivateIdentifier(node) && ((_a = node.emitNode) == null ? undefined : _a.autoGenerate) !== undefined; } function isFileLevelReservedGeneratedIdentifier(node) { const flags = node.emitNode.autoGenerate.flags; return !!(flags & 32) && !!(flags & 16) && !!(flags & 8); } function isPrivateIdentifierClassElementDeclaration(node) { return (isPropertyDeclaration(node) || isMethodOrAccessor(node)) && isPrivateIdentifier(node.name); } function isPrivateIdentifierPropertyAccessExpression(node) { return isPropertyAccessExpression(node) && isPrivateIdentifier(node.name); } function isModifierKind(token) { switch (token) { case 128: case 129: case 134: case 87: case 138: case 90: case 95: case 103: case 125: case 123: case 124: case 148: case 126: case 147: case 164: return true; } return false; } function isParameterPropertyModifier(kind) { return !!(modifierToFlag(kind) & 31); } function isClassMemberModifier(idToken) { return isParameterPropertyModifier(idToken) || idToken === 126 || idToken === 164 || idToken === 129; } function isModifier(node) { return isModifierKind(node.kind); } function isEntityName(node) { const kind = node.kind; return kind === 167 || kind === 80; } function isPropertyName(node) { const kind = node.kind; return kind === 80 || kind === 81 || kind === 11 || kind === 9 || kind === 168; } function isBindingName(node) { const kind = node.kind; return kind === 80 || kind === 207 || kind === 208; } function isFunctionLike(node) { return !!node && isFunctionLikeKind(node.kind); } function isFunctionLikeOrClassStaticBlockDeclaration(node) { return !!node && (isFunctionLikeKind(node.kind) || isClassStaticBlockDeclaration(node)); } function isFunctionLikeDeclaration(node) { return node && isFunctionLikeDeclarationKind(node.kind); } function isBooleanLiteral(node) { return node.kind === 112 || node.kind === 97; } function isFunctionLikeDeclarationKind(kind) { switch (kind) { case 263: case 175: case 177: case 178: case 179: case 219: case 220: return true; default: return false; } } function isFunctionLikeKind(kind) { switch (kind) { case 174: case 180: case 324: case 181: case 182: case 185: case 318: case 186: return true; default: return isFunctionLikeDeclarationKind(kind); } } function isFunctionOrModuleBlock(node) { return isSourceFile(node) || isModuleBlock(node) || isBlock(node) && isFunctionLike(node.parent); } function isClassElement(node) { const kind = node.kind; return kind === 177 || kind === 173 || kind === 175 || kind === 178 || kind === 179 || kind === 182 || kind === 176 || kind === 241; } function isClassLike(node) { return node && (node.kind === 264 || node.kind === 232); } function isAccessor(node) { return node && (node.kind === 178 || node.kind === 179); } function isAutoAccessorPropertyDeclaration(node) { return isPropertyDeclaration(node) && hasAccessorModifier(node); } function isClassInstanceProperty(node) { if (isInJSFile(node) && isExpandoPropertyDeclaration(node)) { return (!isBindableStaticAccessExpression(node) || !isPrototypeAccess(node.expression)) && !isBindableStaticNameExpression(node, true); } return node.parent && isClassLike(node.parent) && isPropertyDeclaration(node) && !hasAccessorModifier(node); } function isMethodOrAccessor(node) { switch (node.kind) { case 175: case 178: case 179: return true; default: return false; } } function isModifierLike(node) { return isModifier(node) || isDecorator(node); } function isTypeElement(node) { const kind = node.kind; return kind === 181 || kind === 180 || kind === 172 || kind === 174 || kind === 182 || kind === 178 || kind === 179 || kind === 355; } function isClassOrTypeElement(node) { return isTypeElement(node) || isClassElement(node); } function isObjectLiteralElementLike(node) { const kind = node.kind; return kind === 304 || kind === 305 || kind === 306 || kind === 175 || kind === 178 || kind === 179; } function isTypeNode(node) { return isTypeNodeKind(node.kind); } function isFunctionOrConstructorTypeNode(node) { switch (node.kind) { case 185: case 186: return true; } return false; } function isBindingPattern(node) { if (node) { const kind = node.kind; return kind === 208 || kind === 207; } return false; } function isAssignmentPattern(node) { const kind = node.kind; return kind === 210 || kind === 211; } function isArrayBindingElement(node) { const kind = node.kind; return kind === 209 || kind === 233; } function isDeclarationBindingElement(bindingElement) { switch (bindingElement.kind) { case 261: case 170: case 209: return true; } return false; } function isBindingOrAssignmentElement(node) { return isVariableDeclaration(node) || isParameter(node) || isObjectBindingOrAssignmentElement(node) || isArrayBindingOrAssignmentElement(node); } function isBindingOrAssignmentPattern(node) { return isObjectBindingOrAssignmentPattern(node) || isArrayBindingOrAssignmentPattern(node); } function isObjectBindingOrAssignmentPattern(node) { switch (node.kind) { case 207: case 211: return true; } return false; } function isObjectBindingOrAssignmentElement(node) { switch (node.kind) { case 209: case 304: case 305: case 306: return true; } return false; } function isArrayBindingOrAssignmentPattern(node) { switch (node.kind) { case 208: case 210: return true; } return false; } function isArrayBindingOrAssignmentElement(node) { switch (node.kind) { case 209: case 233: case 231: case 210: case 211: case 80: case 212: case 213: return true; } return isAssignmentExpression(node, true); } function isPropertyAccessOrQualifiedNameOrImportTypeNode(node) { const kind = node.kind; return kind === 212 || kind === 167 || kind === 206; } function isPropertyAccessOrQualifiedName(node) { const kind = node.kind; return kind === 212 || kind === 167; } function isCallLikeOrFunctionLikeExpression(node) { return isCallLikeExpression(node) || isFunctionExpressionOrArrowFunction(node); } function isCallLikeExpression(node) { switch (node.kind) { case 214: case 215: case 216: case 171: case 287: case 286: case 290: return true; case 227: return node.operatorToken.kind === 104; default: return false; } } function isCallOrNewExpression(node) { return node.kind === 214 || node.kind === 215; } function isTemplateLiteral(node) { const kind = node.kind; return kind === 229 || kind === 15; } function isLeftHandSideExpression(node) { return isLeftHandSideExpressionKind(skipPartiallyEmittedExpressions(node).kind); } function isLeftHandSideExpressionKind(kind) { switch (kind) { case 212: case 213: case 215: case 214: case 285: case 286: case 289: case 216: case 210: case 218: case 211: case 232: case 219: case 80: case 81: case 14: case 9: case 10: case 11: case 15: case 229: case 97: case 106: case 110: case 112: case 108: case 236: case 234: case 237: case 102: case 283: return true; default: return false; } } function isUnaryExpression(node) { return isUnaryExpressionKind(skipPartiallyEmittedExpressions(node).kind); } function isUnaryExpressionKind(kind) { switch (kind) { case 225: case 226: case 221: case 222: case 223: case 224: case 217: return true; default: return isLeftHandSideExpressionKind(kind); } } function isUnaryExpressionWithWrite(expr) { switch (expr.kind) { case 226: return true; case 225: return expr.operator === 46 || expr.operator === 47; default: return false; } } function isLiteralTypeLiteral(node) { switch (node.kind) { case 106: case 112: case 97: case 225: return true; default: return isLiteralExpression(node); } } function isExpression(node) { return isExpressionKind(skipPartiallyEmittedExpressions(node).kind); } function isExpressionKind(kind) { switch (kind) { case 228: case 230: case 220: case 227: case 231: case 235: case 233: case 357: case 356: case 239: return true; default: return isUnaryExpressionKind(kind); } } function isAssertionExpression(node) { const kind = node.kind; return kind === 217 || kind === 235; } function isIterationStatement(node, lookInLabeledStatements) { switch (node.kind) { case 249: case 250: case 251: case 247: case 248: return true; case 257: return lookInLabeledStatements && isIterationStatement(node.statement, lookInLabeledStatements); } return false; } function isScopeMarker(node) { return isExportAssignment(node) || isExportDeclaration(node); } function hasScopeMarker(statements) { return some(statements, isScopeMarker); } function needsScopeMarker(result) { return !isAnyImportOrReExport(result) && !isExportAssignment(result) && !hasSyntacticModifier(result, 32) && !isAmbientModule(result); } function isExternalModuleIndicator(result) { return isAnyImportOrReExport(result) || isExportAssignment(result) || hasSyntacticModifier(result, 32); } function isForInOrOfStatement(node) { return node.kind === 250 || node.kind === 251; } function isConciseBody(node) { return isBlock(node) || isExpression(node); } function isFunctionBody(node) { return isBlock(node); } function isForInitializer(node) { return isVariableDeclarationList(node) || isExpression(node); } function isModuleBody(node) { const kind = node.kind; return kind === 269 || kind === 268 || kind === 80; } function isNamespaceBody(node) { const kind = node.kind; return kind === 269 || kind === 268; } function isJSDocNamespaceBody(node) { const kind = node.kind; return kind === 80 || kind === 268; } function isNamedImportBindings(node) { const kind = node.kind; return kind === 276 || kind === 275; } function isModuleOrEnumDeclaration(node) { return node.kind === 268 || node.kind === 267; } function canHaveSymbol(node) { switch (node.kind) { case 220: case 227: case 209: case 214: case 180: case 264: case 232: case 176: case 177: case 186: case 181: case 213: case 267: case 307: case 278: case 279: case 282: case 263: case 219: case 185: case 178: case 80: case 274: case 272: case 277: case 182: case 265: case 339: case 341: case 318: case 342: case 349: case 324: case 347: case 323: case 292: case 293: case 294: case 201: case 175: case 174: case 268: case 203: case 281: case 271: case 275: case 215: case 15: case 9: case 211: case 170: case 212: case 304: case 173: case 172: case 179: case 305: case 308: case 306: case 11: case 266: case 188: case 169: case 261: return true; default: return false; } } function canHaveLocals(node) { switch (node.kind) { case 220: case 242: case 180: case 270: case 300: case 176: case 195: case 177: case 186: case 181: case 249: case 250: case 251: case 263: case 219: case 185: case 178: case 182: case 339: case 341: case 318: case 324: case 347: case 201: case 175: case 174: case 268: case 179: case 308: case 266: return true; default: return false; } } function isDeclarationKind(kind) { return kind === 220 || kind === 209 || kind === 264 || kind === 232 || kind === 176 || kind === 177 || kind === 267 || kind === 307 || kind === 282 || kind === 263 || kind === 219 || kind === 178 || kind === 274 || kind === 272 || kind === 277 || kind === 265 || kind === 292 || kind === 175 || kind === 174 || kind === 268 || kind === 271 || kind === 275 || kind === 281 || kind === 170 || kind === 304 || kind === 173 || kind === 172 || kind === 179 || kind === 305 || kind === 266 || kind === 169 || kind === 261 || kind === 347 || kind === 339 || kind === 349 || kind === 203; } function isDeclarationStatementKind(kind) { return kind === 263 || kind === 283 || kind === 264 || kind === 265 || kind === 266 || kind === 267 || kind === 268 || kind === 273 || kind === 272 || kind === 279 || kind === 278 || kind === 271; } function isStatementKindButNotDeclarationKind(kind) { return kind === 253 || kind === 252 || kind === 260 || kind === 247 || kind === 245 || kind === 243 || kind === 250 || kind === 251 || kind === 249 || kind === 246 || kind === 257 || kind === 254 || kind === 256 || kind === 258 || kind === 259 || kind === 244 || kind === 248 || kind === 255 || kind === 354; } function isDeclaration(node) { if (node.kind === 169) { return node.parent && node.parent.kind !== 346 || isInJSFile(node); } return isDeclarationKind(node.kind); } function isDeclarationStatement(node) { return isDeclarationStatementKind(node.kind); } function isStatementButNotDeclaration(node) { return isStatementKindButNotDeclarationKind(node.kind); } function isStatement(node) { const kind = node.kind; return isStatementKindButNotDeclarationKind(kind) || isDeclarationStatementKind(kind) || isBlockStatement(node); } function isBlockStatement(node) { if (node.kind !== 242) return false; if (node.parent !== undefined) { if (node.parent.kind === 259 || node.parent.kind === 300) { return false; } } return !isFunctionBlock(node); } function isStatementOrBlock(node) { const kind = node.kind; return isStatementKindButNotDeclarationKind(kind) || isDeclarationStatementKind(kind) || kind === 242; } function isModuleReference(node) { const kind = node.kind; return kind === 284 || kind === 167 || kind === 80; } function isJsxTagNameExpression(node) { const kind = node.kind; return kind === 110 || kind === 80 || kind === 212 || kind === 296; } function isJsxChild(node) { const kind = node.kind; return kind === 285 || kind === 295 || kind === 286 || kind === 12 || kind === 289; } function isJsxAttributeLike(node) { const kind = node.kind; return kind === 292 || kind === 294; } function isStringLiteralOrJsxExpression(node) { const kind = node.kind; return kind === 11 || kind === 295; } function isJsxOpeningLikeElement(node) { const kind = node.kind; return kind === 287 || kind === 286; } function isJsxCallLike(node) { const kind = node.kind; return kind === 287 || kind === 286 || kind === 290; } function isCaseOrDefaultClause(node) { const kind = node.kind; return kind === 297 || kind === 298; } function isJSDocNode(node) { return node.kind >= 310 && node.kind <= 352; } function isJSDocCommentContainingNode(node) { return node.kind === 321 || node.kind === 320 || node.kind === 322 || isJSDocLinkLike(node) || isJSDocTag(node) || isJSDocTypeLiteral(node) || isJSDocSignature(node); } function isJSDocTag(node) { return node.kind >= 328 && node.kind <= 352; } function isSetAccessor(node) { return node.kind === 179; } function isGetAccessor(node) { return node.kind === 178; } function hasJSDocNodes(node) { if (!canHaveJSDoc(node)) return false; const { jsDoc } = node; return !!jsDoc && jsDoc.length > 0; } function hasType(node) { return !!node.type; } function hasInitializer(node) { return !!node.initializer; } function hasOnlyExpressionInitializer(node) { switch (node.kind) { case 261: case 170: case 209: case 173: case 304: case 307: return true; default: return false; } } function isObjectLiteralElement(node) { return node.kind === 292 || node.kind === 294 || isObjectLiteralElementLike(node); } function isTypeReferenceType(node) { return node.kind === 184 || node.kind === 234; } var MAX_SMI_X86 = 1073741823; function guessIndentation(lines) { let indentation = MAX_SMI_X86; for (const line of lines) { if (!line.length) { continue; } let i = 0; for (;i < line.length && i < indentation; i++) { if (!isWhiteSpaceLike(line.charCodeAt(i))) { break; } } if (i < indentation) { indentation = i; } if (indentation === 0) { return 0; } } return indentation === MAX_SMI_X86 ? undefined : indentation; } function isStringLiteralLike(node) { return node.kind === 11 || node.kind === 15; } function isJSDocLinkLike(node) { return node.kind === 325 || node.kind === 326 || node.kind === 327; } function hasRestParameter(s) { const last2 = lastOrUndefined(s.parameters); return !!last2 && isRestParameter(last2); } function isRestParameter(node) { const type = isJSDocParameterTag(node) ? node.typeExpression && node.typeExpression.type : node.type; return node.dotDotDotToken !== undefined || !!type && type.kind === 319; } function hasInternalAnnotation(range, sourceFile) { const comment = sourceFile.text.substring(range.pos, range.end); return comment.includes("@internal"); } function isInternalDeclaration(node, sourceFile) { sourceFile ?? (sourceFile = getSourceFileOfNode(node)); const parseTreeNode = getParseTreeNode(node); if (parseTreeNode && parseTreeNode.kind === 170) { const paramIdx = parseTreeNode.parent.parameters.indexOf(parseTreeNode); const previousSibling = paramIdx > 0 ? parseTreeNode.parent.parameters[paramIdx - 1] : undefined; const text = sourceFile.text; const commentRanges = previousSibling ? concatenate(getTrailingCommentRanges(text, skipTrivia2(text, previousSibling.end + 1, false, true)), getLeadingCommentRanges(text, node.pos)) : getTrailingCommentRanges(text, skipTrivia2(text, node.pos, false, true)); return some(commentRanges) && hasInternalAnnotation(last(commentRanges), sourceFile); } const leadingCommentRanges = parseTreeNode && getLeadingCommentRangesOfNode(parseTreeNode, sourceFile); return !!forEach(leadingCommentRanges, (range) => { return hasInternalAnnotation(range, sourceFile); }); } var resolvingEmptyArray = []; var externalHelpersModuleNameText = "tslib"; var defaultMaximumTruncationLength = 160; var noTruncationMaximumTruncationLength = 1e6; var defaultHoverMaximumTruncationLength = 500; function getDeclarationOfKind(symbol, kind) { const declarations = symbol.declarations; if (declarations) { for (const declaration of declarations) { if (declaration.kind === kind) { return declaration; } } } return; } function getDeclarationsOfKind(symbol, kind) { return filter(symbol.declarations || emptyArray, (d) => d.kind === kind); } function createSymbolTable(symbols) { const result = /* @__PURE__ */ new Map; if (symbols) { for (const symbol of symbols) { result.set(symbol.escapedName, symbol); } } return result; } function isTransientSymbol(symbol) { return (symbol.flags & 33554432) !== 0; } function isExternalModuleSymbol(moduleSymbol) { return !!(moduleSymbol.flags & 1536) && moduleSymbol.escapedName.charCodeAt(0) === 34; } var stringWriter = createSingleLineStringWriter(); function createSingleLineStringWriter() { var str = ""; const writeText = (text) => str += text; return { getText: () => str, write: writeText, rawWrite: writeText, writeKeyword: writeText, writeOperator: writeText, writePunctuation: writeText, writeSpace: writeText, writeStringLiteral: writeText, writeLiteral: writeText, writeParameter: writeText, writeProperty: writeText, writeSymbol: (s, _) => writeText(s), writeTrailingSemicolon: writeText, writeComment: writeText, getTextPos: () => str.length, getLine: () => 0, getColumn: () => 0, getIndent: () => 0, isAtStartOfLine: () => false, hasTrailingComment: () => false, hasTrailingWhitespace: () => !!str.length && isWhiteSpaceLike(str.charCodeAt(str.length - 1)), writeLine: () => str += " ", increaseIndent: noop, decreaseIndent: noop, clear: () => str = "" }; } function changesAffectModuleResolution(oldOptions, newOptions) { return oldOptions.configFilePath !== newOptions.configFilePath || optionsHaveModuleResolutionChanges(oldOptions, newOptions); } function optionsHaveModuleResolutionChanges(oldOptions, newOptions) { return optionsHaveChanges(oldOptions, newOptions, moduleResolutionOptionDeclarations); } function changesAffectingProgramStructure(oldOptions, newOptions) { return optionsHaveChanges(oldOptions, newOptions, optionsAffectingProgramStructure); } function optionsHaveChanges(oldOptions, newOptions, optionDeclarations2) { return oldOptions !== newOptions && optionDeclarations2.some((o) => !isJsonEqual(getCompilerOptionValue(oldOptions, o), getCompilerOptionValue(newOptions, o))); } function forEachAncestor(node, callback) { while (true) { const res = callback(node); if (res === "quit") return; if (res !== undefined) return res; if (isSourceFile(node)) return; node = node.parent; } } function forEachEntry(map2, callback) { const iterator = map2.entries(); for (const [key, value] of iterator) { const result = callback(value, key); if (result) { return result; } } return; } function forEachKey(map2, callback) { const iterator = map2.keys(); for (const key of iterator) { const result = callback(key); if (result) { return result; } } return; } function copyEntries(source, target) { source.forEach((value, key) => { target.set(key, value); }); } function usingSingleLineStringWriter(action) { const oldString = stringWriter.getText(); try { action(stringWriter); return stringWriter.getText(); } finally { stringWriter.clear(); stringWriter.writeKeyword(oldString); } } function getFullWidth(node) { return node.end - node.pos; } function projectReferenceIsEqualTo(oldRef, newRef) { return oldRef.path === newRef.path && !oldRef.prepend === !newRef.prepend && !oldRef.circular === !newRef.circular; } function moduleResolutionIsEqualTo(oldResolution, newResolution) { return oldResolution === newResolution || oldResolution.resolvedModule === newResolution.resolvedModule || !!oldResolution.resolvedModule && !!newResolution.resolvedModule && oldResolution.resolvedModule.isExternalLibraryImport === newResolution.resolvedModule.isExternalLibraryImport && oldResolution.resolvedModule.extension === newResolution.resolvedModule.extension && oldResolution.resolvedModule.resolvedFileName === newResolution.resolvedModule.resolvedFileName && oldResolution.resolvedModule.originalPath === newResolution.resolvedModule.originalPath && packageIdIsEqual(oldResolution.resolvedModule.packageId, newResolution.resolvedModule.packageId) && oldResolution.alternateResult === newResolution.alternateResult; } function getResolvedModuleFromResolution(resolution) { return resolution.resolvedModule; } function getResolvedTypeReferenceDirectiveFromResolution(resolution) { return resolution.resolvedTypeReferenceDirective; } function createModuleNotFoundChain(sourceFile, host, moduleReference, mode, packageName) { var _a; const alternateResult = (_a = host.getResolvedModule(sourceFile, moduleReference, mode)) == null ? undefined : _a.alternateResult; const alternateResultMessage = alternateResult && (getEmitModuleResolutionKind(host.getCompilerOptions()) === 2 ? [Diagnostics.There_are_types_at_0_but_this_result_could_not_be_resolved_under_your_current_moduleResolution_setting_Consider_updating_to_node16_nodenext_or_bundler, [alternateResult]] : [ Diagnostics.There_are_types_at_0_but_this_result_could_not_be_resolved_when_respecting_package_json_exports_The_1_library_may_need_to_update_its_package_json_or_typings, [alternateResult, alternateResult.includes(nodeModulesPathPart + "@types/") ? `@types/${mangleScopedPackageName(packageName)}` : packageName] ]); const result = alternateResultMessage ? chainDiagnosticMessages(undefined, alternateResultMessage[0], ...alternateResultMessage[1]) : host.typesPackageExists(packageName) ? chainDiagnosticMessages(undefined, Diagnostics.If_the_0_package_actually_exposes_this_module_consider_sending_a_pull_request_to_amend_https_Colon_Slash_Slashgithub_com_SlashDefinitelyTyped_SlashDefinitelyTyped_Slashtree_Slashmaster_Slashtypes_Slash_1, packageName, mangleScopedPackageName(packageName)) : host.packageBundlesTypes(packageName) ? chainDiagnosticMessages(undefined, Diagnostics.If_the_0_package_actually_exposes_this_module_try_adding_a_new_declaration_d_ts_file_containing_declare_module_1, packageName, moduleReference) : chainDiagnosticMessages(undefined, Diagnostics.Try_npm_i_save_dev_types_Slash_1_if_it_exists_or_add_a_new_declaration_d_ts_file_containing_declare_module_0, moduleReference, mangleScopedPackageName(packageName)); if (result) result.repopulateInfo = () => ({ moduleReference, mode, packageName: packageName === moduleReference ? undefined : packageName }); return result; } function createModeMismatchDetails(currentSourceFile) { const ext = tryGetExtensionFromPath2(currentSourceFile.fileName); const scope = currentSourceFile.packageJsonScope; const targetExt = ext === ".ts" ? ".mts" : ext === ".js" ? ".mjs" : undefined; const result = scope && !scope.contents.packageJsonContent.type ? targetExt ? chainDiagnosticMessages(undefined, Diagnostics.To_convert_this_file_to_an_ECMAScript_module_change_its_file_extension_to_0_or_add_the_field_type_Colon_module_to_1, targetExt, combinePaths(scope.packageDirectory, "package.json")) : chainDiagnosticMessages(undefined, Diagnostics.To_convert_this_file_to_an_ECMAScript_module_add_the_field_type_Colon_module_to_0, combinePaths(scope.packageDirectory, "package.json")) : targetExt ? chainDiagnosticMessages(undefined, Diagnostics.To_convert_this_file_to_an_ECMAScript_module_change_its_file_extension_to_0_or_create_a_local_package_json_file_with_type_Colon_module, targetExt) : chainDiagnosticMessages(undefined, Diagnostics.To_convert_this_file_to_an_ECMAScript_module_create_a_local_package_json_file_with_type_Colon_module); result.repopulateInfo = () => true; return result; } function packageIdIsEqual(a, b) { return a === b || !!a && !!b && a.name === b.name && a.subModuleName === b.subModuleName && a.version === b.version && a.peerDependencies === b.peerDependencies; } function packageIdToPackageName({ name, subModuleName }) { return subModuleName ? `${name}/${subModuleName}` : name; } function packageIdToString(packageId) { return `${packageIdToPackageName(packageId)}@${packageId.version}${packageId.peerDependencies ?? ""}`; } function typeDirectiveIsEqualTo(oldResolution, newResolution) { return oldResolution === newResolution || oldResolution.resolvedTypeReferenceDirective === newResolution.resolvedTypeReferenceDirective || !!oldResolution.resolvedTypeReferenceDirective && !!newResolution.resolvedTypeReferenceDirective && oldResolution.resolvedTypeReferenceDirective.resolvedFileName === newResolution.resolvedTypeReferenceDirective.resolvedFileName && !!oldResolution.resolvedTypeReferenceDirective.primary === !!newResolution.resolvedTypeReferenceDirective.primary && oldResolution.resolvedTypeReferenceDirective.originalPath === newResolution.resolvedTypeReferenceDirective.originalPath; } function hasChangesInResolutions(names, newResolutions, getOldResolution, comparer) { Debug.assert(names.length === newResolutions.length); for (let i = 0;i < names.length; i++) { const newResolution = newResolutions[i]; const entry = names[i]; const oldResolution = getOldResolution(entry); const changed = oldResolution ? !newResolution || !comparer(oldResolution, newResolution) : newResolution; if (changed) { return true; } } return false; } function containsParseError(node) { aggregateChildData(node); return (node.flags & 1048576) !== 0; } function aggregateChildData(node) { if (!(node.flags & 2097152)) { const thisNodeOrAnySubNodesHasError = (node.flags & 262144) !== 0 || forEachChild(node, containsParseError); if (thisNodeOrAnySubNodesHasError) { node.flags |= 1048576; } node.flags |= 2097152; } } function getSourceFileOfNode(node) { while (node && node.kind !== 308) { node = node.parent; } return node; } function getSourceFileOfModule(module22) { return getSourceFileOfNode(module22.valueDeclaration || getNonAugmentationDeclaration(module22)); } function isPlainJsFile(file, checkJs) { return !!file && (file.scriptKind === 1 || file.scriptKind === 2) && !file.checkJsDirective && checkJs === undefined; } function isStatementWithLocals(node) { switch (node.kind) { case 242: case 270: case 249: case 250: case 251: return true; } return false; } function getStartPositionOfLine(line, sourceFile) { Debug.assert(line >= 0); return getLineStarts(sourceFile)[line]; } function nodePosToString(node) { const file = getSourceFileOfNode(node); const loc = getLineAndCharacterOfPosition(file, node.pos); return `${file.fileName}(${loc.line + 1},${loc.character + 1})`; } function getEndLinePosition(line, sourceFile) { Debug.assert(line >= 0); const lineStarts = getLineStarts(sourceFile); const lineIndex = line; const sourceText = sourceFile.text; if (lineIndex + 1 === lineStarts.length) { return sourceText.length - 1; } else { const start = lineStarts[lineIndex]; let pos = lineStarts[lineIndex + 1] - 1; Debug.assert(isLineBreak(sourceText.charCodeAt(pos))); while (start <= pos && isLineBreak(sourceText.charCodeAt(pos))) { pos--; } return pos; } } function isFileLevelUniqueName(sourceFile, name, hasGlobalName) { return !(hasGlobalName && hasGlobalName(name)) && !sourceFile.identifiers.has(name); } function nodeIsMissing(node) { if (node === undefined) { return true; } return node.pos === node.end && node.pos >= 0 && node.kind !== 1; } function nodeIsPresent(node) { return !nodeIsMissing(node); } function isGrammarError(parent2, child) { if (isTypeParameterDeclaration(parent2)) return child === parent2.expression; if (isClassStaticBlockDeclaration(parent2)) return child === parent2.modifiers; if (isPropertySignature(parent2)) return child === parent2.initializer; if (isPropertyDeclaration(parent2)) return child === parent2.questionToken && isAutoAccessorPropertyDeclaration(parent2); if (isPropertyAssignment(parent2)) return child === parent2.modifiers || child === parent2.questionToken || child === parent2.exclamationToken || isGrammarErrorElement(parent2.modifiers, child, isModifierLike); if (isShorthandPropertyAssignment(parent2)) return child === parent2.equalsToken || child === parent2.modifiers || child === parent2.questionToken || child === parent2.exclamationToken || isGrammarErrorElement(parent2.modifiers, child, isModifierLike); if (isMethodDeclaration(parent2)) return child === parent2.exclamationToken; if (isConstructorDeclaration(parent2)) return child === parent2.typeParameters || child === parent2.type || isGrammarErrorElement(parent2.typeParameters, child, isTypeParameterDeclaration); if (isGetAccessorDeclaration(parent2)) return child === parent2.typeParameters || isGrammarErrorElement(parent2.typeParameters, child, isTypeParameterDeclaration); if (isSetAccessorDeclaration(parent2)) return child === parent2.typeParameters || child === parent2.type || isGrammarErrorElement(parent2.typeParameters, child, isTypeParameterDeclaration); if (isNamespaceExportDeclaration(parent2)) return child === parent2.modifiers || isGrammarErrorElement(parent2.modifiers, child, isModifierLike); return false; } function isGrammarErrorElement(nodeArray, child, isElement) { if (!nodeArray || isArray(child) || !isElement(child)) return false; return contains(nodeArray, child); } function insertStatementsAfterPrologue(to, from, isPrologueDirective2) { if (from === undefined || from.length === 0) return to; let statementIndex = 0; for (;statementIndex < to.length; ++statementIndex) { if (!isPrologueDirective2(to[statementIndex])) { break; } } to.splice(statementIndex, 0, ...from); return to; } function insertStatementAfterPrologue(to, statement, isPrologueDirective2) { if (statement === undefined) return to; let statementIndex = 0; for (;statementIndex < to.length; ++statementIndex) { if (!isPrologueDirective2(to[statementIndex])) { break; } } to.splice(statementIndex, 0, statement); return to; } function isAnyPrologueDirective(node) { return isPrologueDirective(node) || !!(getEmitFlags(node) & 2097152); } function insertStatementsAfterStandardPrologue(to, from) { return insertStatementsAfterPrologue(to, from, isPrologueDirective); } function insertStatementsAfterCustomPrologue(to, from) { return insertStatementsAfterPrologue(to, from, isAnyPrologueDirective); } function insertStatementAfterStandardPrologue(to, statement) { return insertStatementAfterPrologue(to, statement, isPrologueDirective); } function insertStatementAfterCustomPrologue(to, statement) { return insertStatementAfterPrologue(to, statement, isAnyPrologueDirective); } function isRecognizedTripleSlashComment(text, commentPos, commentEnd) { if (text.charCodeAt(commentPos + 1) === 47 && commentPos + 2 < commentEnd && text.charCodeAt(commentPos + 2) === 47) { const textSubStr = text.substring(commentPos, commentEnd); return fullTripleSlashReferencePathRegEx.test(textSubStr) || fullTripleSlashAMDReferencePathRegEx.test(textSubStr) || fullTripleSlashAMDModuleRegEx.test(textSubStr) || fullTripleSlashReferenceTypeReferenceDirectiveRegEx.test(textSubStr) || fullTripleSlashLibReferenceRegEx.test(textSubStr) || defaultLibReferenceRegEx.test(textSubStr) ? true : false; } return false; } function isPinnedComment(text, start) { return text.charCodeAt(start + 1) === 42 && text.charCodeAt(start + 2) === 33; } function createCommentDirectivesMap(sourceFile, commentDirectives) { const directivesByLine = new Map(commentDirectives.map((commentDirective) => [ `${getLineAndCharacterOfPosition(sourceFile, commentDirective.range.end).line}`, commentDirective ])); const usedLines = /* @__PURE__ */ new Map; return { getUnusedExpectations, markUsed }; function getUnusedExpectations() { return arrayFrom(directivesByLine.entries()).filter(([line, directive]) => directive.type === 0 && !usedLines.get(line)).map(([_, directive]) => directive); } function markUsed(line) { if (!directivesByLine.has(`${line}`)) { return false; } usedLines.set(`${line}`, true); return true; } } function getTokenPosOfNode(node, sourceFile, includeJsDoc) { if (nodeIsMissing(node)) { return node.pos; } if (isJSDocNode(node) || node.kind === 12) { return skipTrivia2((sourceFile ?? getSourceFileOfNode(node)).text, node.pos, false, true); } if (includeJsDoc && hasJSDocNodes(node)) { return getTokenPosOfNode(node.jsDoc[0], sourceFile); } if (node.kind === 353) { sourceFile ?? (sourceFile = getSourceFileOfNode(node)); const first2 = firstOrUndefined(getNodeChildren(node, sourceFile)); if (first2) { return getTokenPosOfNode(first2, sourceFile, includeJsDoc); } } return skipTrivia2((sourceFile ?? getSourceFileOfNode(node)).text, node.pos, false, false, isInJSDoc(node)); } function getNonDecoratorTokenPosOfNode(node, sourceFile) { const lastDecorator = !nodeIsMissing(node) && canHaveModifiers(node) ? findLast(node.modifiers, isDecorator) : undefined; if (!lastDecorator) { return getTokenPosOfNode(node, sourceFile); } return skipTrivia2((sourceFile || getSourceFileOfNode(node)).text, lastDecorator.end); } function getSourceTextOfNodeFromSourceFile(sourceFile, node, includeTrivia = false) { return getTextOfNodeFromSourceText(sourceFile.text, node, includeTrivia); } function isJSDocTypeExpressionOrChild(node) { return !!findAncestor(node, isJSDocTypeExpression); } function isExportNamespaceAsDefaultDeclaration(node) { return !!(isExportDeclaration(node) && node.exportClause && isNamespaceExport(node.exportClause) && moduleExportNameIsDefault(node.exportClause.name)); } function moduleExportNameTextUnescaped(node) { return node.kind === 11 ? node.text : unescapeLeadingUnderscores(node.escapedText); } function moduleExportNameTextEscaped(node) { return node.kind === 11 ? escapeLeadingUnderscores(node.text) : node.escapedText; } function moduleExportNameIsDefault(node) { return (node.kind === 11 ? node.text : node.escapedText) === "default"; } function getTextOfNodeFromSourceText(sourceText, node, includeTrivia = false) { if (nodeIsMissing(node)) { return ""; } let text = sourceText.substring(includeTrivia ? node.pos : skipTrivia2(sourceText, node.pos), node.end); if (isJSDocTypeExpressionOrChild(node)) { text = text.split(/\r\n|\n|\r/).map((line) => line.replace(/^\s*\*/, "").trimStart()).join(` `); } return text; } function getTextOfNode(node, includeTrivia = false) { return getSourceTextOfNodeFromSourceFile(getSourceFileOfNode(node), node, includeTrivia); } function getPos(range) { return range.pos; } function indexOfNode(nodeArray, node) { return binarySearch(nodeArray, node, getPos, compareValues); } function getEmitFlags(node) { const emitNode = node.emitNode; return emitNode && emitNode.flags || 0; } function getInternalEmitFlags(node) { const emitNode = node.emitNode; return emitNode && emitNode.internalFlags || 0; } var getScriptTargetFeatures = /* @__PURE__ */ memoize(() => new Map(Object.entries({ Array: new Map(Object.entries({ es2015: [ "find", "findIndex", "fill", "copyWithin", "entries", "keys", "values" ], es2016: [ "includes" ], es2019: [ "flat", "flatMap" ], es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), Iterator: new Map(Object.entries({ es2015: emptyArray })), AsyncIterator: new Map(Object.entries({ es2015: emptyArray })), ArrayBuffer: new Map(Object.entries({ es2024: [ "maxByteLength", "resizable", "resize", "detached", "transfer", "transferToFixedLength" ] })), Atomics: new Map(Object.entries({ es2017: [ "add", "and", "compareExchange", "exchange", "isLockFree", "load", "or", "store", "sub", "wait", "notify", "xor" ], es2024: [ "waitAsync" ], esnext: [ "pause" ] })), SharedArrayBuffer: new Map(Object.entries({ es2017: [ "byteLength", "slice" ], es2024: [ "growable", "maxByteLength", "grow" ] })), AsyncIterable: new Map(Object.entries({ es2018: emptyArray })), AsyncIterableIterator: new Map(Object.entries({ es2018: emptyArray })), AsyncGenerator: new Map(Object.entries({ es2018: emptyArray })), AsyncGeneratorFunction: new Map(Object.entries({ es2018: emptyArray })), RegExp: new Map(Object.entries({ es2015: [ "flags", "sticky", "unicode" ], es2018: [ "dotAll" ], es2024: [ "unicodeSets" ] })), RegExpConstructor: new Map(Object.entries({ es2025: [ "escape" ] })), Reflect: new Map(Object.entries({ es2015: [ "apply", "construct", "defineProperty", "deleteProperty", "get", "getOwnPropertyDescriptor", "getPrototypeOf", "has", "isExtensible", "ownKeys", "preventExtensions", "set", "setPrototypeOf" ] })), ArrayConstructor: new Map(Object.entries({ es2015: [ "from", "of" ], esnext: [ "fromAsync" ] })), ObjectConstructor: new Map(Object.entries({ es2015: [ "assign", "getOwnPropertySymbols", "keys", "is", "setPrototypeOf" ], es2017: [ "values", "entries", "getOwnPropertyDescriptors" ], es2019: [ "fromEntries" ], es2022: [ "hasOwn" ], es2024: [ "groupBy" ] })), NumberConstructor: new Map(Object.entries({ es2015: [ "isFinite", "isInteger", "isNaN", "isSafeInteger", "parseFloat", "parseInt" ] })), Math: new Map(Object.entries({ es2015: [ "clz32", "imul", "sign", "log10", "log2", "log1p", "expm1", "cosh", "sinh", "tanh", "acosh", "asinh", "atanh", "hypot", "trunc", "fround", "cbrt" ], es2025: [ "f16round" ] })), Map: new Map(Object.entries({ es2015: [ "entries", "keys", "values" ], esnext: [ "getOrInsert", "getOrInsertComputed" ] })), MapConstructor: new Map(Object.entries({ es2024: [ "groupBy" ] })), Set: new Map(Object.entries({ es2015: [ "entries", "keys", "values" ], es2025: [ "union", "intersection", "difference", "symmetricDifference", "isSubsetOf", "isSupersetOf", "isDisjointFrom" ] })), PromiseConstructor: new Map(Object.entries({ es2015: [ "all", "race", "reject", "resolve" ], es2020: [ "allSettled" ], es2021: [ "any" ], es2024: [ "withResolvers" ], es2025: [ "try" ] })), Symbol: new Map(Object.entries({ es2015: [ "for", "keyFor" ], es2019: [ "description" ] })), WeakMap: new Map(Object.entries({ es2015: [ "entries", "keys", "values" ], esnext: [ "getOrInsert", "getOrInsertComputed" ] })), WeakSet: new Map(Object.entries({ es2015: [ "entries", "keys", "values" ] })), String: new Map(Object.entries({ es2015: [ "codePointAt", "includes", "endsWith", "normalize", "repeat", "startsWith", "anchor", "big", "blink", "bold", "fixed", "fontcolor", "fontsize", "italics", "link", "small", "strike", "sub", "sup" ], es2017: [ "padStart", "padEnd" ], es2019: [ "trimStart", "trimEnd", "trimLeft", "trimRight" ], es2020: [ "matchAll" ], es2021: [ "replaceAll" ], es2022: [ "at" ], es2024: [ "isWellFormed", "toWellFormed" ] })), StringConstructor: new Map(Object.entries({ es2015: [ "fromCodePoint", "raw" ] })), DateTimeFormat: new Map(Object.entries({ es2017: [ "formatToParts" ] })), Promise: new Map(Object.entries({ es2015: emptyArray, es2018: [ "finally" ] })), RegExpMatchArray: new Map(Object.entries({ es2018: [ "groups" ] })), RegExpExecArray: new Map(Object.entries({ es2018: [ "groups" ] })), Intl: new Map(Object.entries({ es2018: [ "PluralRules" ], es2020: [ "RelativeTimeFormat", "Locale", "DisplayNames" ], es2021: [ "ListFormat", "DateTimeFormat" ], es2022: [ "Segmenter" ], es2025: [ "DurationFormat" ] })), NumberFormat: new Map(Object.entries({ es2018: [ "formatToParts" ] })), SymbolConstructor: new Map(Object.entries({ es2020: [ "matchAll" ], esnext: [ "metadata", "dispose", "asyncDispose" ] })), DataView: new Map(Object.entries({ es2020: [ "setBigInt64", "setBigUint64", "getBigInt64", "getBigUint64" ], es2025: [ "setFloat16", "getFloat16" ] })), BigInt: new Map(Object.entries({ es2020: emptyArray })), RelativeTimeFormat: new Map(Object.entries({ es2020: [ "format", "formatToParts", "resolvedOptions" ] })), Int8Array: new Map(Object.entries({ es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), Uint8Array: new Map(Object.entries({ es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ], esnext: [ "toBase64", "setFromBase64", "toHex", "setFromHex" ] })), Uint8ClampedArray: new Map(Object.entries({ es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), Int16Array: new Map(Object.entries({ es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), Uint16Array: new Map(Object.entries({ es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), Int32Array: new Map(Object.entries({ es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), Uint32Array: new Map(Object.entries({ es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), Float16Array: new Map(Object.entries({ es2025: emptyArray })), Float32Array: new Map(Object.entries({ es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), Float64Array: new Map(Object.entries({ es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), BigInt64Array: new Map(Object.entries({ es2020: emptyArray, es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), BigUint64Array: new Map(Object.entries({ es2020: emptyArray, es2022: [ "at" ], es2023: [ "findLastIndex", "findLast", "toReversed", "toSorted", "toSpliced", "with" ] })), Error: new Map(Object.entries({ es2022: [ "cause" ] })), ErrorConstructor: new Map(Object.entries({ esnext: [ "isError" ] })), Uint8ArrayConstructor: new Map(Object.entries({ esnext: [ "fromBase64", "fromHex" ] })), Date: new Map(Object.entries({ esnext: [ "toTemporalInstant" ] })), DisposableStack: new Map(Object.entries({ esnext: emptyArray })), AsyncDisposableStack: new Map(Object.entries({ esnext: emptyArray })) }))); var GetLiteralTextFlags = /* @__PURE__ */ ((GetLiteralTextFlags2) => { GetLiteralTextFlags2[GetLiteralTextFlags2["None"] = 0] = "None"; GetLiteralTextFlags2[GetLiteralTextFlags2["NeverAsciiEscape"] = 1] = "NeverAsciiEscape"; GetLiteralTextFlags2[GetLiteralTextFlags2["JsxAttributeEscape"] = 2] = "JsxAttributeEscape"; GetLiteralTextFlags2[GetLiteralTextFlags2["TerminateUnterminatedLiterals"] = 4] = "TerminateUnterminatedLiterals"; GetLiteralTextFlags2[GetLiteralTextFlags2["AllowNumericSeparator"] = 8] = "AllowNumericSeparator"; return GetLiteralTextFlags2; })(GetLiteralTextFlags || {}); function getLiteralText(node, sourceFile, flags) { if (sourceFile && canUseOriginalText(node, flags)) { return getSourceTextOfNodeFromSourceFile(sourceFile, node); } switch (node.kind) { case 11: { const escapeText = flags & 2 ? escapeJsxAttributeString : flags & 1 || getEmitFlags(node) & 16777216 ? escapeString : escapeNonAsciiString; if (node.singleQuote) { return "'" + escapeText(node.text, 39) + "'"; } else { return '"' + escapeText(node.text, 34) + '"'; } } case 15: case 16: case 17: case 18: { const escapeText = flags & 1 || getEmitFlags(node) & 16777216 ? escapeString : escapeNonAsciiString; const rawText = node.rawText ?? escapeTemplateSubstitution(escapeText(node.text, 96)); switch (node.kind) { case 15: return "`" + rawText + "`"; case 16: return "`" + rawText + "${"; case 17: return "}" + rawText + "${"; case 18: return "}" + rawText + "`"; } break; } case 9: case 10: return node.text; case 14: if (flags & 4 && node.isUnterminated) { return node.text + (node.text.charCodeAt(node.text.length - 1) === 92 ? " /" : "/"); } return node.text; } return Debug.fail(`Literal kind '${node.kind}' not accounted for.`); } function canUseOriginalText(node, flags) { if (nodeIsSynthesized(node) || !node.parent || flags & 4 && node.isUnterminated) { return false; } if (isNumericLiteral(node)) { if (node.numericLiteralFlags & 26656) { return false; } if (node.numericLiteralFlags & 512) { return !!(flags & 8); } } return !isBigIntLiteral(node); } function getTextOfConstantValue(value) { return isString(value) ? `"${escapeString(value)}"` : "" + value; } function makeIdentifierFromModuleName(moduleName) { return getBaseFileName(moduleName).replace(/^(\d)/, "_$1").replace(/\W/g, "_"); } function isBlockOrCatchScoped(declaration) { return (getCombinedNodeFlags(declaration) & 7) !== 0 || isCatchClauseVariableDeclarationOrBindingElement(declaration); } function isCatchClauseVariableDeclarationOrBindingElement(declaration) { const node = getRootDeclaration(declaration); return node.kind === 261 && node.parent.kind === 300; } function isAmbientModule(node) { return isModuleDeclaration(node) && (node.name.kind === 11 || isGlobalScopeAugmentation(node)); } function isModuleWithStringLiteralName(node) { return isModuleDeclaration(node) && node.name.kind === 11; } function isNonGlobalAmbientModule(node) { return isModuleDeclaration(node) && isStringLiteral(node.name); } function isEffectiveModuleDeclaration(node) { return isModuleDeclaration(node) || isIdentifier(node); } function isShorthandAmbientModuleSymbol(moduleSymbol) { return isShorthandAmbientModule(moduleSymbol.valueDeclaration); } function isShorthandAmbientModule(node) { return !!node && node.kind === 268 && !node.body; } function isBlockScopedContainerTopLevel(node) { return node.kind === 308 || node.kind === 268 || isFunctionLikeOrClassStaticBlockDeclaration(node); } function isGlobalScopeAugmentation(module22) { return !!(module22.flags & 2048); } function isExternalModuleAugmentation(node) { return isAmbientModule(node) && isModuleAugmentationExternal(node); } function isModuleAugmentationExternal(node) { switch (node.parent.kind) { case 308: return isExternalModule(node.parent); case 269: return isAmbientModule(node.parent.parent) && isSourceFile(node.parent.parent.parent) && !isExternalModule(node.parent.parent.parent); } return false; } function getNonAugmentationDeclaration(symbol) { var _a; return (_a = symbol.declarations) == null ? undefined : _a.find((d) => !isExternalModuleAugmentation(d) && !(isModuleDeclaration(d) && isGlobalScopeAugmentation(d))); } function isCommonJSContainingModuleKind(kind) { return kind === 1 || 100 <= kind && kind <= 199; } function isEffectiveExternalModule(node, compilerOptions) { return isExternalModule(node) || isCommonJSContainingModuleKind(getEmitModuleKind(compilerOptions)) && !!node.commonJsModuleIndicator; } function isEffectiveStrictModeSourceFile(node, compilerOptions) { switch (node.scriptKind) { case 1: case 3: case 2: case 4: break; default: return false; } if (node.isDeclarationFile) { return false; } if (getAlwaysStrict(compilerOptions)) { return true; } if (startsWithUseStrict(node.statements)) { return true; } if (isExternalModule(node) || getIsolatedModules(compilerOptions)) { return true; } return false; } function isAmbientPropertyDeclaration(node) { return !!(node.flags & 33554432) || hasSyntacticModifier(node, 128); } function isBlockScope(node, parentNode) { switch (node.kind) { case 308: case 270: case 300: case 268: case 249: case 250: case 251: case 177: case 175: case 178: case 179: case 263: case 219: case 220: case 173: case 176: return true; case 242: return !isFunctionLikeOrClassStaticBlockDeclaration(parentNode); } return false; } function isDeclarationWithTypeParameters(node) { Debug.type(node); switch (node.kind) { case 339: case 347: case 324: return true; default: assertType(node); return isDeclarationWithTypeParameterChildren(node); } } function isDeclarationWithTypeParameterChildren(node) { Debug.type(node); switch (node.kind) { case 180: case 181: case 174: case 182: case 185: case 186: case 318: case 264: case 232: case 265: case 266: case 346: case 263: case 175: case 177: case 178: case 179: case 219: case 220: return true; default: assertType(node); return false; } } function isAnyImportSyntax(node) { switch (node.kind) { case 273: case 272: return true; default: return false; } } function isAnyImportOrBareOrAccessedRequire(node) { return isAnyImportSyntax(node) || isVariableDeclarationInitializedToBareOrAccessedRequire(node); } function isAnyImportOrRequireStatement(node) { return isAnyImportSyntax(node) || isRequireVariableStatement(node); } function isLateVisibilityPaintedStatement(node) { switch (node.kind) { case 273: case 272: case 244: case 264: case 263: case 268: case 266: case 265: case 267: return true; default: return false; } } function hasPossibleExternalModuleReference(node) { return isAnyImportOrReExport(node) || isModuleDeclaration(node) || isImportTypeNode(node) || isImportCall(node); } function isAnyImportOrReExport(node) { return isAnyImportSyntax(node) || isExportDeclaration(node); } function getEnclosingContainer(node) { return findAncestor(node.parent, (n) => !!(getContainerFlags(n) & 1)); } function getEnclosingBlockScopeContainer(node) { return findAncestor(node.parent, (current) => isBlockScope(current, current.parent)); } function forEachEnclosingBlockScopeContainer(node, cb) { let container = getEnclosingBlockScopeContainer(node); while (container) { cb(container); container = getEnclosingBlockScopeContainer(container); } } function declarationNameToString(name) { return !name || getFullWidth(name) === 0 ? "(Missing)" : getTextOfNode(name); } function getNameFromIndexInfo(info) { return info.declaration ? declarationNameToString(info.declaration.parameters[0].name) : undefined; } function isComputedNonLiteralName(name) { return name.kind === 168 && !isStringOrNumericLiteralLike(name.expression); } function tryGetTextOfPropertyName(name) { var _a; switch (name.kind) { case 80: case 81: return ((_a = name.emitNode) == null ? undefined : _a.autoGenerate) ? undefined : name.escapedText; case 11: case 9: case 10: case 15: return escapeLeadingUnderscores(name.text); case 168: if (isStringOrNumericLiteralLike(name.expression)) return escapeLeadingUnderscores(name.expression.text); return; case 296: return getEscapedTextOfJsxNamespacedName(name); default: return Debug.assertNever(name); } } function getTextOfPropertyName(name) { return Debug.checkDefined(tryGetTextOfPropertyName(name)); } function entityNameToString(name) { switch (name.kind) { case 110: return "this"; case 81: case 80: return getFullWidth(name) === 0 ? idText(name) : getTextOfNode(name); case 167: return entityNameToString(name.left) + "." + entityNameToString(name.right); case 212: if (isIdentifier(name.name) || isPrivateIdentifier(name.name)) { return entityNameToString(name.expression) + "." + entityNameToString(name.name); } else { return Debug.assertNever(name.name); } case 312: return entityNameToString(name.left) + "#" + entityNameToString(name.right); case 296: return entityNameToString(name.namespace) + ":" + entityNameToString(name.name); default: return Debug.assertNever(name); } } function createDiagnosticForNode(node, message, ...args) { const sourceFile = getSourceFileOfNode(node); return createDiagnosticForNodeInSourceFile(sourceFile, node, message, ...args); } function createDiagnosticForNodeArray(sourceFile, nodes, message, ...args) { const start = skipTrivia2(sourceFile.text, nodes.pos); return createFileDiagnostic(sourceFile, start, nodes.end - start, message, ...args); } function createDiagnosticForNodeInSourceFile(sourceFile, node, message, ...args) { const span = getErrorSpanForNode(sourceFile, node); return createFileDiagnostic(sourceFile, span.start, span.length, message, ...args); } function createDiagnosticForNodeFromMessageChain(sourceFile, node, messageChain, relatedInformation) { const span = getErrorSpanForNode(sourceFile, node); return createFileDiagnosticFromMessageChain(sourceFile, span.start, span.length, messageChain, relatedInformation); } function createDiagnosticForNodeArrayFromMessageChain(sourceFile, nodes, messageChain, relatedInformation) { const start = skipTrivia2(sourceFile.text, nodes.pos); return createFileDiagnosticFromMessageChain(sourceFile, start, nodes.end - start, messageChain, relatedInformation); } function assertDiagnosticLocation(sourceText, start, length2) { Debug.assertGreaterThanOrEqual(start, 0); Debug.assertGreaterThanOrEqual(length2, 0); Debug.assertLessThanOrEqual(start, sourceText.length); Debug.assertLessThanOrEqual(start + length2, sourceText.length); } function createFileDiagnosticFromMessageChain(file, start, length2, messageChain, relatedInformation) { assertDiagnosticLocation(file.text, start, length2); return { file, start, length: length2, code: messageChain.code, category: messageChain.category, messageText: messageChain.next ? messageChain : messageChain.messageText, relatedInformation, canonicalHead: messageChain.canonicalHead }; } function createDiagnosticForFileFromMessageChain(sourceFile, messageChain, relatedInformation) { return { file: sourceFile, start: 0, length: 0, code: messageChain.code, category: messageChain.category, messageText: messageChain.next ? messageChain : messageChain.messageText, relatedInformation }; } function createDiagnosticMessageChainFromDiagnostic(diagnostic) { return typeof diagnostic.messageText === "string" ? { code: diagnostic.code, category: diagnostic.category, messageText: diagnostic.messageText, next: diagnostic.next } : diagnostic.messageText; } function createDiagnosticForRange(sourceFile, range, message) { return { file: sourceFile, start: range.pos, length: range.end - range.pos, code: message.code, category: message.category, messageText: message.message }; } function getCanonicalDiagnostic(message, ...args) { return { code: message.code, messageText: formatMessage(message, ...args) }; } function getSpanOfTokenAtPosition(sourceFile, pos) { const scanner2 = createScanner(sourceFile.languageVersion, true, sourceFile.languageVariant, sourceFile.text, undefined, pos); scanner2.scan(); const start = scanner2.getTokenStart(); return createTextSpanFromBounds(start, scanner2.getTokenEnd()); } function scanTokenAtPosition(sourceFile, pos) { const scanner2 = createScanner(sourceFile.languageVersion, true, sourceFile.languageVariant, sourceFile.text, undefined, pos); scanner2.scan(); return scanner2.getToken(); } function getErrorSpanForArrowFunction(sourceFile, node) { const pos = skipTrivia2(sourceFile.text, node.pos); if (node.body && node.body.kind === 242) { const { line: startLine } = getLineAndCharacterOfPosition(sourceFile, node.body.pos); const { line: endLine } = getLineAndCharacterOfPosition(sourceFile, node.body.end); if (startLine < endLine) { return createTextSpan(pos, getEndLinePosition(startLine, sourceFile) - pos + 1); } } return createTextSpanFromBounds(pos, node.end); } function getErrorSpanForNode(sourceFile, node) { let errorNode = node; switch (node.kind) { case 308: { const pos2 = skipTrivia2(sourceFile.text, 0, false); if (pos2 === sourceFile.text.length) { return createTextSpan(0, 0); } return getSpanOfTokenAtPosition(sourceFile, pos2); } case 261: case 209: case 264: case 232: case 265: case 268: case 267: case 307: case 263: case 219: case 175: case 178: case 179: case 266: case 173: case 172: case 275: errorNode = node.name; break; case 220: return getErrorSpanForArrowFunction(sourceFile, node); case 297: case 298: { const start = skipTrivia2(sourceFile.text, node.pos); const end = node.statements.length > 0 ? node.statements[0].pos : node.end; return createTextSpanFromBounds(start, end); } case 254: case 230: { const pos2 = skipTrivia2(sourceFile.text, node.pos); return getSpanOfTokenAtPosition(sourceFile, pos2); } case 239: { const pos2 = skipTrivia2(sourceFile.text, node.expression.end); return getSpanOfTokenAtPosition(sourceFile, pos2); } case 351: { const pos2 = skipTrivia2(sourceFile.text, node.tagName.pos); return getSpanOfTokenAtPosition(sourceFile, pos2); } case 177: { const constructorDeclaration = node; const start = skipTrivia2(sourceFile.text, constructorDeclaration.pos); const scanner2 = createScanner(sourceFile.languageVersion, true, sourceFile.languageVariant, sourceFile.text, undefined, start); let token = scanner2.scan(); while (token !== 137 && token !== 1) { token = scanner2.scan(); } const end = scanner2.getTokenEnd(); return createTextSpanFromBounds(start, end); } } if (errorNode === undefined) { return getSpanOfTokenAtPosition(sourceFile, node.pos); } Debug.assert(!isJSDoc(errorNode)); const isMissing = nodeIsMissing(errorNode); const pos = isMissing || isJsxText(node) ? errorNode.pos : skipTrivia2(sourceFile.text, errorNode.pos); if (isMissing) { Debug.assert(pos === errorNode.pos, "This failure could trigger https://github.com/Microsoft/TypeScript/issues/20809"); Debug.assert(pos === errorNode.end, "This failure could trigger https://github.com/Microsoft/TypeScript/issues/20809"); } else { Debug.assert(pos >= errorNode.pos, "This failure could trigger https://github.com/Microsoft/TypeScript/issues/20809"); Debug.assert(pos <= errorNode.end, "This failure could trigger https://github.com/Microsoft/TypeScript/issues/20809"); } return createTextSpanFromBounds(pos, errorNode.end); } function isGlobalSourceFile(node) { return node.kind === 308 && !isExternalOrCommonJsModule(node); } function isExternalOrCommonJsModule(file) { return (file.externalModuleIndicator || file.commonJsModuleIndicator) !== undefined; } function isJsonSourceFile(file) { return file.scriptKind === 6; } function isEnumConst(node) { return !!(getCombinedModifierFlags(node) & 4096); } function isDeclarationReadonly(declaration) { return !!(getCombinedModifierFlags(declaration) & 8 && !isParameterPropertyDeclaration(declaration, declaration.parent)); } function isVarAwaitUsing(node) { return (getCombinedNodeFlags(node) & 7) === 6; } function isVarUsing(node) { return (getCombinedNodeFlags(node) & 7) === 4; } function isVarConst(node) { return (getCombinedNodeFlags(node) & 7) === 2; } function isVarConstLike(node) { const blockScopeKind = getCombinedNodeFlags(node) & 7; return blockScopeKind === 2 || blockScopeKind === 4 || blockScopeKind === 6; } function isLet(node) { return (getCombinedNodeFlags(node) & 7) === 1; } function isSuperCall(n) { return n.kind === 214 && n.expression.kind === 108; } function isImportCall(n) { if (n.kind !== 214) return false; const e = n.expression; return e.kind === 102 || isMetaProperty(e) && e.keywordToken === 102 && e.name.escapedText === "defer"; } function isImportMeta(n) { return isMetaProperty(n) && n.keywordToken === 102 && n.name.escapedText === "meta"; } function isLiteralImportTypeNode(n) { return isImportTypeNode(n) && isLiteralTypeNode(n.argument) && isStringLiteral(n.argument.literal); } function isPrologueDirective(node) { return node.kind === 245 && node.expression.kind === 11; } function isCustomPrologue(node) { return !!(getEmitFlags(node) & 2097152); } function isHoistedFunction(node) { return isCustomPrologue(node) && isFunctionDeclaration(node); } function isHoistedVariable(node) { return isIdentifier(node.name) && !node.initializer; } function isHoistedVariableStatement(node) { return isCustomPrologue(node) && isVariableStatement(node) && every(node.declarationList.declarations, isHoistedVariable); } function getLeadingCommentRangesOfNode(node, sourceFileOfNode) { return node.kind !== 12 ? getLeadingCommentRanges(sourceFileOfNode.text, node.pos) : undefined; } function getJSDocCommentRanges(node, text) { const commentRanges = node.kind === 170 || node.kind === 169 || node.kind === 219 || node.kind === 220 || node.kind === 218 || node.kind === 261 || node.kind === 282 ? concatenate(getTrailingCommentRanges(text, node.pos), getLeadingCommentRanges(text, node.pos)) : getLeadingCommentRanges(text, node.pos); return filter(commentRanges, (comment) => comment.end <= node.end && text.charCodeAt(comment.pos + 1) === 42 && text.charCodeAt(comment.pos + 2) === 42 && text.charCodeAt(comment.pos + 3) !== 47); } var fullTripleSlashReferencePathRegEx = /^\/\/\/\s*/; var fullTripleSlashReferenceTypeReferenceDirectiveRegEx = /^\/\/\/\s*/; var fullTripleSlashLibReferenceRegEx = /^\/\/\/\s*/; var fullTripleSlashAMDReferencePathRegEx = /^\/\/\/\s*/; var fullTripleSlashAMDModuleRegEx = /^\/\/\/\s*/; var defaultLibReferenceRegEx = /^\/\/\/\s*/; function isPartOfTypeNode(node) { if (183 <= node.kind && node.kind <= 206) { return true; } switch (node.kind) { case 133: case 159: case 150: case 163: case 154: case 136: case 155: case 151: case 157: case 106: case 146: return true; case 116: return node.parent.kind !== 223; case 234: return isPartOfTypeExpressionWithTypeArguments(node); case 169: return node.parent.kind === 201 || node.parent.kind === 196; case 80: if (node.parent.kind === 167 && node.parent.right === node) { node = node.parent; } else if (node.parent.kind === 212 && node.parent.name === node) { node = node.parent; } Debug.assert(node.kind === 80 || node.kind === 167 || node.kind === 212, "'node' was expected to be a qualified name, identifier or property access in 'isPartOfTypeNode'."); case 167: case 212: case 110: { const { parent: parent2 } = node; if (parent2.kind === 187) { return false; } if (parent2.kind === 206) { return !parent2.isTypeOf; } if (183 <= parent2.kind && parent2.kind <= 206) { return true; } switch (parent2.kind) { case 234: return isPartOfTypeExpressionWithTypeArguments(parent2); case 169: return node === parent2.constraint; case 346: return node === parent2.constraint; case 173: case 172: case 170: case 261: return node === parent2.type; case 263: case 219: case 220: case 177: case 175: case 174: case 178: case 179: return node === parent2.type; case 180: case 181: case 182: return node === parent2.type; case 217: return node === parent2.type; case 214: case 215: case 216: return contains(parent2.typeArguments, node); } } } return false; } function isPartOfTypeExpressionWithTypeArguments(node) { return isJSDocImplementsTag(node.parent) || isJSDocAugmentsTag(node.parent) || isHeritageClause(node.parent) && !isExpressionWithTypeArgumentsInClassExtendsClause(node); } function forEachReturnStatement(body, visitor) { return traverse(body); function traverse(node) { switch (node.kind) { case 254: return visitor(node); case 270: case 242: case 246: case 247: case 248: case 249: case 250: case 251: case 255: case 256: case 297: case 298: case 257: case 259: case 300: return forEachChild(node, traverse); } } } function forEachYieldExpression(body, visitor) { return traverse(body); function traverse(node) { switch (node.kind) { case 230: const value = visitor(node); if (value) { return value; } const operand = node.expression; if (!operand) { return; } return traverse(operand); case 267: case 265: case 268: case 266: return; default: if (isFunctionLike(node)) { if (node.name && node.name.kind === 168) { return traverse(node.name.expression); } } else if (!isPartOfTypeNode(node)) { return forEachChild(node, traverse); } } } } function getRestParameterElementType(node) { if (node && node.kind === 189) { return node.elementType; } else if (node && node.kind === 184) { return singleOrUndefined(node.typeArguments); } else { return; } } function getMembersOfDeclaration(node) { switch (node.kind) { case 265: case 264: case 232: case 188: return node.members; case 211: return node.properties; } } function isVariableLike(node) { if (node) { switch (node.kind) { case 209: case 307: case 170: case 304: case 173: case 172: case 305: case 261: return true; } } return false; } function isVariableDeclarationInVariableStatement(node) { return node.parent.kind === 262 && node.parent.parent.kind === 244; } function isCommonJsExportedExpression(node) { if (!isInJSFile(node)) return false; return isObjectLiteralExpression(node.parent) && isBinaryExpression(node.parent.parent) && getAssignmentDeclarationKind(node.parent.parent) === 2 || isCommonJsExportPropertyAssignment(node.parent); } function isCommonJsExportPropertyAssignment(node) { if (!isInJSFile(node)) return false; return isBinaryExpression(node) && getAssignmentDeclarationKind(node) === 1; } function isValidESSymbolDeclaration(node) { return (isVariableDeclaration(node) ? isVarConst(node) && isIdentifier(node.name) && isVariableDeclarationInVariableStatement(node) : isPropertyDeclaration(node) ? hasEffectiveReadonlyModifier(node) && hasStaticModifier(node) : isPropertySignature(node) && hasEffectiveReadonlyModifier(node)) || isCommonJsExportPropertyAssignment(node); } function introducesArgumentsExoticObject(node) { switch (node.kind) { case 175: case 174: case 177: case 178: case 179: case 263: case 219: return true; } return false; } function unwrapInnermostStatementOfLabel(node, beforeUnwrapLabelCallback) { while (true) { if (beforeUnwrapLabelCallback) { beforeUnwrapLabelCallback(node); } if (node.statement.kind !== 257) { return node.statement; } node = node.statement; } } function isFunctionBlock(node) { return node && node.kind === 242 && isFunctionLike(node.parent); } function isObjectLiteralMethod(node) { return node && node.kind === 175 && node.parent.kind === 211; } function isObjectLiteralOrClassExpressionMethodOrAccessor(node) { return (node.kind === 175 || node.kind === 178 || node.kind === 179) && (node.parent.kind === 211 || node.parent.kind === 232); } function isIdentifierTypePredicate(predicate) { return predicate && predicate.kind === 1; } function isThisTypePredicate(predicate) { return predicate && predicate.kind === 0; } function forEachPropertyAssignment(objectLiteral, key, callback, key2) { return forEach(objectLiteral == null ? undefined : objectLiteral.properties, (property) => { if (!isPropertyAssignment(property)) return; const propName = tryGetTextOfPropertyName(property.name); return key === propName || key2 && key2 === propName ? callback(property) : undefined; }); } function getTsConfigObjectLiteralExpression(tsConfigSourceFile) { if (tsConfigSourceFile && tsConfigSourceFile.statements.length) { const expression = tsConfigSourceFile.statements[0].expression; return tryCast(expression, isObjectLiteralExpression); } } function getTsConfigPropArrayElementValue(tsConfigSourceFile, propKey, elementValue) { return forEachTsConfigPropArray(tsConfigSourceFile, propKey, (property) => isArrayLiteralExpression(property.initializer) ? find(property.initializer.elements, (element) => isStringLiteral(element) && element.text === elementValue) : undefined); } function forEachTsConfigPropArray(tsConfigSourceFile, propKey, callback) { return forEachPropertyAssignment(getTsConfigObjectLiteralExpression(tsConfigSourceFile), propKey, callback); } function getContainingFunction(node) { return findAncestor(node.parent, isFunctionLike); } function getContainingFunctionDeclaration(node) { return findAncestor(node.parent, isFunctionLikeDeclaration); } function getContainingClass(node) { return findAncestor(node.parent, isClassLike); } function getContainingClassStaticBlock(node) { return findAncestor(node.parent, (n) => { if (isClassLike(n) || isFunctionLike(n)) { return "quit"; } return isClassStaticBlockDeclaration(n); }); } function getContainingFunctionOrClassStaticBlock(node) { return findAncestor(node.parent, isFunctionLikeOrClassStaticBlockDeclaration); } function getContainingClassExcludingClassDecorators(node) { const decorator = findAncestor(node.parent, (n) => isClassLike(n) ? "quit" : isDecorator(n)); return decorator && isClassLike(decorator.parent) ? getContainingClass(decorator.parent) : getContainingClass(decorator ?? node); } function getThisContainer(node, includeArrowFunctions, includeClassComputedPropertyName) { Debug.assert(node.kind !== 308); while (true) { node = node.parent; if (!node) { return Debug.fail(); } switch (node.kind) { case 168: if (includeClassComputedPropertyName && isClassLike(node.parent.parent)) { return node; } node = node.parent.parent; break; case 171: if (node.parent.kind === 170 && isClassElement(node.parent.parent)) { node = node.parent.parent; } else if (isClassElement(node.parent)) { node = node.parent; } break; case 220: if (!includeArrowFunctions) { continue; } case 263: case 219: case 268: case 176: case 173: case 172: case 175: case 174: case 177: case 178: case 179: case 180: case 181: case 182: case 267: case 308: return node; } } } function isThisContainerOrFunctionBlock(node) { switch (node.kind) { case 220: case 263: case 219: case 173: return true; case 242: switch (node.parent.kind) { case 177: case 175: case 178: case 179: return true; default: return false; } default: return false; } } function isInTopLevelContext(node) { if (isIdentifier(node) && (isClassDeclaration(node.parent) || isFunctionDeclaration(node.parent)) && node.parent.name === node) { node = node.parent; } const container = getThisContainer(node, true, false); return isSourceFile(container); } function getNewTargetContainer(node) { const container = getThisContainer(node, false, false); if (container) { switch (container.kind) { case 177: case 263: case 219: return container; } } return; } function getSuperContainer(node, stopOnFunctions) { while (true) { node = node.parent; if (!node) { return; } switch (node.kind) { case 168: node = node.parent; break; case 263: case 219: case 220: if (!stopOnFunctions) { continue; } case 173: case 172: case 175: case 174: case 177: case 178: case 179: case 176: return node; case 171: if (node.parent.kind === 170 && isClassElement(node.parent.parent)) { node = node.parent.parent; } else if (isClassElement(node.parent)) { node = node.parent; } break; } } } function getImmediatelyInvokedFunctionExpression(func) { if (func.kind === 219 || func.kind === 220) { let prev = func; let parent2 = func.parent; while (parent2.kind === 218) { prev = parent2; parent2 = parent2.parent; } if (parent2.kind === 214 && parent2.expression === prev) { return parent2; } } } function isSuperProperty(node) { const kind = node.kind; return (kind === 212 || kind === 213) && node.expression.kind === 108; } function isThisProperty(node) { const kind = node.kind; return (kind === 212 || kind === 213) && node.expression.kind === 110; } function isThisInitializedDeclaration(node) { var _a; return !!node && isVariableDeclaration(node) && ((_a = node.initializer) == null ? undefined : _a.kind) === 110; } function isThisInitializedObjectBindingExpression(node) { return !!node && (isShorthandPropertyAssignment(node) || isPropertyAssignment(node)) && isBinaryExpression(node.parent.parent) && node.parent.parent.operatorToken.kind === 64 && node.parent.parent.right.kind === 110; } function getEntityNameFromTypeNode(node) { switch (node.kind) { case 184: return node.typeName; case 234: return isEntityNameExpression(node.expression) ? node.expression : undefined; case 80: case 167: return node; } return; } function getInvokedExpression(node) { switch (node.kind) { case 216: return node.tag; case 287: case 286: return node.tagName; case 227: return node.right; case 290: return node; default: return node.expression; } } function nodeCanBeDecorated(useLegacyDecorators, node, parent2, grandparent) { if (useLegacyDecorators && isNamedDeclaration(node) && isPrivateIdentifier(node.name)) { return false; } switch (node.kind) { case 264: return true; case 232: return !useLegacyDecorators; case 173: return parent2 !== undefined && (useLegacyDecorators ? isClassDeclaration(parent2) : isClassLike(parent2) && !hasAbstractModifier(node) && !hasAmbientModifier(node)); case 178: case 179: case 175: return node.body !== undefined && parent2 !== undefined && (useLegacyDecorators ? isClassDeclaration(parent2) : isClassLike(parent2)); case 170: if (!useLegacyDecorators) return false; return parent2 !== undefined && parent2.body !== undefined && (parent2.kind === 177 || parent2.kind === 175 || parent2.kind === 179) && getThisParameter(parent2) !== node && grandparent !== undefined && grandparent.kind === 264; } return false; } function nodeIsDecorated(useLegacyDecorators, node, parent2, grandparent) { return hasDecorators(node) && nodeCanBeDecorated(useLegacyDecorators, node, parent2, grandparent); } function nodeOrChildIsDecorated(useLegacyDecorators, node, parent2, grandparent) { return nodeIsDecorated(useLegacyDecorators, node, parent2, grandparent) || childIsDecorated(useLegacyDecorators, node, parent2); } function childIsDecorated(useLegacyDecorators, node, parent2) { switch (node.kind) { case 264: return some(node.members, (m) => nodeOrChildIsDecorated(useLegacyDecorators, m, node, parent2)); case 232: return !useLegacyDecorators && some(node.members, (m) => nodeOrChildIsDecorated(useLegacyDecorators, m, node, parent2)); case 175: case 179: case 177: return some(node.parameters, (p) => nodeIsDecorated(useLegacyDecorators, p, node, parent2)); default: return false; } } function classOrConstructorParameterIsDecorated(useLegacyDecorators, node) { if (nodeIsDecorated(useLegacyDecorators, node)) return true; const constructor = getFirstConstructorWithBody(node); return !!constructor && childIsDecorated(useLegacyDecorators, constructor, node); } function classElementOrClassElementParameterIsDecorated(useLegacyDecorators, node, parent2) { let parameters; if (isAccessor(node)) { const { firstAccessor, secondAccessor, setAccessor } = getAllAccessorDeclarations(parent2.members, node); const firstAccessorWithDecorators = hasDecorators(firstAccessor) ? firstAccessor : secondAccessor && hasDecorators(secondAccessor) ? secondAccessor : undefined; if (!firstAccessorWithDecorators || node !== firstAccessorWithDecorators) { return false; } parameters = setAccessor == null ? undefined : setAccessor.parameters; } else if (isMethodDeclaration(node)) { parameters = node.parameters; } if (nodeIsDecorated(useLegacyDecorators, node, parent2)) { return true; } if (parameters) { for (const parameter of parameters) { if (parameterIsThisKeyword(parameter)) continue; if (nodeIsDecorated(useLegacyDecorators, parameter, node, parent2)) return true; } } return false; } function isEmptyStringLiteral(node) { if (node.textSourceNode) { switch (node.textSourceNode.kind) { case 11: return isEmptyStringLiteral(node.textSourceNode); case 15: return node.text === ""; } return false; } return node.text === ""; } function isJSXTagName(node) { const { parent: parent2 } = node; if (parent2.kind === 287 || parent2.kind === 286 || parent2.kind === 288) { return parent2.tagName === node; } return false; } function isExpressionNode(node) { switch (node.kind) { case 108: case 106: case 112: case 97: case 14: case 210: case 211: case 212: case 213: case 214: case 215: case 216: case 235: case 217: case 239: case 236: case 218: case 219: case 232: case 220: case 223: case 221: case 222: case 225: case 226: case 227: case 228: case 231: case 229: case 233: case 285: case 286: case 289: case 230: case 224: return true; case 237: return !isImportCall(node.parent) || node.parent.expression !== node; case 234: return !isHeritageClause(node.parent) && !isJSDocAugmentsTag(node.parent); case 167: while (node.parent.kind === 167) { node = node.parent; } return node.parent.kind === 187 || isJSDocLinkLike(node.parent) || isJSDocNameReference(node.parent) || isJSDocMemberName(node.parent) || isJSXTagName(node); case 312: while (isJSDocMemberName(node.parent)) { node = node.parent; } return node.parent.kind === 187 || isJSDocLinkLike(node.parent) || isJSDocNameReference(node.parent) || isJSDocMemberName(node.parent) || isJSXTagName(node); case 81: return isBinaryExpression(node.parent) && node.parent.left === node && node.parent.operatorToken.kind === 103; case 80: if (node.parent.kind === 187 || isJSDocLinkLike(node.parent) || isJSDocNameReference(node.parent) || isJSDocMemberName(node.parent) || isJSXTagName(node)) { return true; } case 9: case 10: case 11: case 15: case 110: return isInExpressionContext(node); default: return false; } } function isInExpressionContext(node) { const { parent: parent2 } = node; switch (parent2.kind) { case 261: case 170: case 173: case 172: case 307: case 304: case 209: return parent2.initializer === node; case 245: case 246: case 247: case 248: case 254: case 255: case 256: case 297: case 258: return parent2.expression === node; case 249: const forStatement = parent2; return forStatement.initializer === node && forStatement.initializer.kind !== 262 || forStatement.condition === node || forStatement.incrementor === node; case 250: case 251: const forInOrOfStatement = parent2; return forInOrOfStatement.initializer === node && forInOrOfStatement.initializer.kind !== 262 || forInOrOfStatement.expression === node; case 217: case 235: return node === parent2.expression; case 240: return node === parent2.expression; case 168: return node === parent2.expression; case 171: case 295: case 294: case 306: return true; case 234: return parent2.expression === node && !isPartOfTypeNode(parent2); case 305: return parent2.objectAssignmentInitializer === node; case 239: return node === parent2.expression; default: return isExpressionNode(parent2); } } function isPartOfTypeQuery(node) { while (node.kind === 167 || node.kind === 80) { node = node.parent; } return node.kind === 187; } function isNamespaceReexportDeclaration(node) { return isNamespaceExport(node) && !!node.parent.moduleSpecifier; } function isExternalModuleImportEqualsDeclaration(node) { return node.kind === 272 && node.moduleReference.kind === 284; } function getExternalModuleImportEqualsDeclarationExpression(node) { Debug.assert(isExternalModuleImportEqualsDeclaration(node)); return node.moduleReference.expression; } function getExternalModuleRequireArgument(node) { return isVariableDeclarationInitializedToBareOrAccessedRequire(node) && getLeftmostAccessExpression(node.initializer).arguments[0]; } function isInternalModuleImportEqualsDeclaration(node) { return node.kind === 272 && node.moduleReference.kind !== 284; } function isFullSourceFile(sourceFile) { return (sourceFile == null ? undefined : sourceFile.kind) === 308; } function isSourceFileJS(file) { return isInJSFile(file); } function isInJSFile(node) { return !!node && !!(node.flags & 524288); } function isInJsonFile(node) { return !!node && !!(node.flags & 134217728); } function isSourceFileNotJson(file) { return !isJsonSourceFile(file); } function isInJSDoc(node) { return !!node && !!(node.flags & 16777216); } function isJSDocIndexSignature(node) { return isTypeReferenceNode(node) && isIdentifier(node.typeName) && node.typeName.escapedText === "Object" && node.typeArguments && node.typeArguments.length === 2 && (node.typeArguments[0].kind === 154 || node.typeArguments[0].kind === 150); } function isRequireCall(callExpression, requireStringLiteralLikeArgument) { if (callExpression.kind !== 214) { return false; } const { expression, arguments: args } = callExpression; if (expression.kind !== 80 || expression.escapedText !== "require") { return false; } if (args.length !== 1) { return false; } const arg = args[0]; return !requireStringLiteralLikeArgument || isStringLiteralLike(arg); } function isVariableDeclarationInitializedToRequire(node) { return isVariableDeclarationInitializedWithRequireHelper(node, false); } function isVariableDeclarationInitializedToBareOrAccessedRequire(node) { return isVariableDeclarationInitializedWithRequireHelper(node, true); } function isBindingElementOfBareOrAccessedRequire(node) { return isBindingElement(node) && isVariableDeclarationInitializedToBareOrAccessedRequire(node.parent.parent); } function getModuleSpecifierOfBareOrAccessedRequire(node) { if (isVariableDeclarationInitializedToRequire(node)) { return node.initializer.arguments[0]; } if (isVariableDeclarationInitializedToBareOrAccessedRequire(node)) { const leftmost = getLeftmostAccessExpression(node.initializer); if (isRequireCall(leftmost, true)) { return leftmost.arguments[0]; } } return; } function isVariableDeclarationInitializedWithRequireHelper(node, allowAccessedRequire) { return isVariableDeclaration(node) && !!node.initializer && isRequireCall(allowAccessedRequire ? getLeftmostAccessExpression(node.initializer) : node.initializer, true); } function isRequireVariableStatement(node) { return isVariableStatement(node) && node.declarationList.declarations.length > 0 && every(node.declarationList.declarations, (decl) => isVariableDeclarationInitializedToRequire(decl)); } function isSingleOrDoubleQuote(charCode) { return charCode === 39 || charCode === 34; } function isStringDoubleQuoted(str, sourceFile) { return getSourceTextOfNodeFromSourceFile(sourceFile, str).charCodeAt(0) === 34; } function isAssignmentDeclaration(decl) { return isBinaryExpression(decl) || isAccessExpression(decl) || isIdentifier(decl) || isCallExpression(decl); } function getEffectiveInitializer(node) { if (isInJSFile(node) && node.initializer && isBinaryExpression(node.initializer) && (node.initializer.operatorToken.kind === 57 || node.initializer.operatorToken.kind === 61) && node.name && isEntityNameExpression(node.name) && isSameEntityName(node.name, node.initializer.left)) { return node.initializer.right; } return node.initializer; } function getDeclaredExpandoInitializer(node) { const init = getEffectiveInitializer(node); return init && getExpandoInitializer(init, isPrototypeAccess(node.name)); } function hasExpandoValueProperty(node, isPrototypeAssignment) { return forEach(node.properties, (p) => isPropertyAssignment(p) && isIdentifier(p.name) && p.name.escapedText === "value" && p.initializer && getExpandoInitializer(p.initializer, isPrototypeAssignment)); } function getAssignedExpandoInitializer(node) { if (node && node.parent && isBinaryExpression(node.parent) && node.parent.operatorToken.kind === 64) { const isPrototypeAssignment = isPrototypeAccess(node.parent.left); return getExpandoInitializer(node.parent.right, isPrototypeAssignment) || getDefaultedExpandoInitializer(node.parent.left, node.parent.right, isPrototypeAssignment); } if (node && isCallExpression(node) && isBindableObjectDefinePropertyCall(node)) { const result = hasExpandoValueProperty(node.arguments[2], node.arguments[1].text === "prototype"); if (result) { return result; } } } function getExpandoInitializer(initializer, isPrototypeAssignment) { if (isCallExpression(initializer)) { const e = skipParentheses(initializer.expression); return e.kind === 219 || e.kind === 220 ? initializer : undefined; } if (initializer.kind === 219 || initializer.kind === 232 || initializer.kind === 220) { return initializer; } if (isObjectLiteralExpression(initializer) && (initializer.properties.length === 0 || isPrototypeAssignment)) { return initializer; } } function getDefaultedExpandoInitializer(name, initializer, isPrototypeAssignment) { const e = isBinaryExpression(initializer) && (initializer.operatorToken.kind === 57 || initializer.operatorToken.kind === 61) && getExpandoInitializer(initializer.right, isPrototypeAssignment); if (e && isSameEntityName(name, initializer.left)) { return e; } } function isDefaultedExpandoInitializer(node) { const name = isVariableDeclaration(node.parent) ? node.parent.name : isBinaryExpression(node.parent) && node.parent.operatorToken.kind === 64 ? node.parent.left : undefined; return name && getExpandoInitializer(node.right, isPrototypeAccess(name)) && isEntityNameExpression(name) && isSameEntityName(name, node.left); } function getNameOfExpando(node) { if (isBinaryExpression(node.parent)) { const parent2 = (node.parent.operatorToken.kind === 57 || node.parent.operatorToken.kind === 61) && isBinaryExpression(node.parent.parent) ? node.parent.parent : node.parent; if (parent2.operatorToken.kind === 64 && isIdentifier(parent2.left)) { return parent2.left; } } else if (isVariableDeclaration(node.parent)) { return node.parent.name; } } function isSameEntityName(name, initializer) { if (isPropertyNameLiteral(name) && isPropertyNameLiteral(initializer)) { return getTextOfIdentifierOrLiteral(name) === getTextOfIdentifierOrLiteral(initializer); } if (isMemberName(name) && isLiteralLikeAccess(initializer) && (initializer.expression.kind === 110 || isIdentifier(initializer.expression) && (initializer.expression.escapedText === "window" || initializer.expression.escapedText === "self" || initializer.expression.escapedText === "global"))) { return isSameEntityName(name, getNameOrArgument(initializer)); } if (isLiteralLikeAccess(name) && isLiteralLikeAccess(initializer)) { return getElementOrPropertyAccessName(name) === getElementOrPropertyAccessName(initializer) && isSameEntityName(name.expression, initializer.expression); } return false; } function getRightMostAssignedExpression(node) { while (isAssignmentExpression(node, true)) { node = node.right; } return node; } function isExportsIdentifier(node) { return isIdentifier(node) && node.escapedText === "exports"; } function isModuleIdentifier(node) { return isIdentifier(node) && node.escapedText === "module"; } function isModuleExportsAccessExpression(node) { return (isPropertyAccessExpression(node) || isLiteralLikeElementAccess(node)) && isModuleIdentifier(node.expression) && getElementOrPropertyAccessName(node) === "exports"; } function getAssignmentDeclarationKind(expr) { const special = getAssignmentDeclarationKindWorker(expr); return special === 5 || isInJSFile(expr) ? special : 0; } function isBindableObjectDefinePropertyCall(expr) { return length(expr.arguments) === 3 && isPropertyAccessExpression(expr.expression) && isIdentifier(expr.expression.expression) && idText(expr.expression.expression) === "Object" && idText(expr.expression.name) === "defineProperty" && isStringOrNumericLiteralLike(expr.arguments[1]) && isBindableStaticNameExpression(expr.arguments[0], true); } function isLiteralLikeAccess(node) { return isPropertyAccessExpression(node) || isLiteralLikeElementAccess(node); } function isLiteralLikeElementAccess(node) { return isElementAccessExpression(node) && isStringOrNumericLiteralLike(node.argumentExpression); } function isBindableStaticAccessExpression(node, excludeThisKeyword) { return isPropertyAccessExpression(node) && (!excludeThisKeyword && node.expression.kind === 110 || isIdentifier(node.name) && isBindableStaticNameExpression(node.expression, true)) || isBindableStaticElementAccessExpression(node, excludeThisKeyword); } function isBindableStaticElementAccessExpression(node, excludeThisKeyword) { return isLiteralLikeElementAccess(node) && (!excludeThisKeyword && node.expression.kind === 110 || isEntityNameExpression(node.expression) || isBindableStaticAccessExpression(node.expression, true)); } function isBindableStaticNameExpression(node, excludeThisKeyword) { return isEntityNameExpression(node) || isBindableStaticAccessExpression(node, excludeThisKeyword); } function getNameOrArgument(expr) { if (isPropertyAccessExpression(expr)) { return expr.name; } return expr.argumentExpression; } function getAssignmentDeclarationKindWorker(expr) { if (isCallExpression(expr)) { if (!isBindableObjectDefinePropertyCall(expr)) { return 0; } const entityName = expr.arguments[0]; if (isExportsIdentifier(entityName) || isModuleExportsAccessExpression(entityName)) { return 8; } if (isBindableStaticAccessExpression(entityName) && getElementOrPropertyAccessName(entityName) === "prototype") { return 9; } return 7; } if (expr.operatorToken.kind !== 64 || !isAccessExpression(expr.left) || isVoidZero(getRightMostAssignedExpression(expr))) { return 0; } if (isBindableStaticNameExpression(expr.left.expression, true) && getElementOrPropertyAccessName(expr.left) === "prototype" && isObjectLiteralExpression(getInitializerOfBinaryExpression(expr))) { return 6; } return getAssignmentDeclarationPropertyAccessKind(expr.left); } function isVoidZero(node) { return isVoidExpression(node) && isNumericLiteral(node.expression) && node.expression.text === "0"; } function getElementOrPropertyAccessArgumentExpressionOrName(node) { if (isPropertyAccessExpression(node)) { return node.name; } const arg = skipParentheses(node.argumentExpression); if (isNumericLiteral(arg) || isStringLiteralLike(arg)) { return arg; } return node; } function getElementOrPropertyAccessName(node) { const name = getElementOrPropertyAccessArgumentExpressionOrName(node); if (name) { if (isIdentifier(name)) { return name.escapedText; } if (isStringLiteralLike(name) || isNumericLiteral(name)) { return escapeLeadingUnderscores(name.text); } } return; } function getAssignmentDeclarationPropertyAccessKind(lhs) { if (lhs.expression.kind === 110) { return 4; } else if (isModuleExportsAccessExpression(lhs)) { return 2; } else if (isBindableStaticNameExpression(lhs.expression, true)) { if (isPrototypeAccess(lhs.expression)) { return 3; } let nextToLast = lhs; while (!isIdentifier(nextToLast.expression)) { nextToLast = nextToLast.expression; } const id = nextToLast.expression; if ((id.escapedText === "exports" || id.escapedText === "module" && getElementOrPropertyAccessName(nextToLast) === "exports") && isBindableStaticAccessExpression(lhs)) { return 1; } if (isBindableStaticNameExpression(lhs, true) || isElementAccessExpression(lhs) && isDynamicName(lhs)) { return 5; } } return 0; } function getInitializerOfBinaryExpression(expr) { while (isBinaryExpression(expr.right)) { expr = expr.right; } return expr.right; } function isPrototypePropertyAssignment(node) { return isBinaryExpression(node) && getAssignmentDeclarationKind(node) === 3; } function isSpecialPropertyDeclaration(expr) { return isInJSFile(expr) && expr.parent && expr.parent.kind === 245 && (!isElementAccessExpression(expr) || isLiteralLikeElementAccess(expr)) && !!getJSDocTypeTag(expr.parent); } function setValueDeclaration(symbol, node) { const { valueDeclaration } = symbol; if (!valueDeclaration || !(node.flags & 33554432 && !isInJSFile(node) && !(valueDeclaration.flags & 33554432)) && (isAssignmentDeclaration(valueDeclaration) && !isAssignmentDeclaration(node)) || valueDeclaration.kind !== node.kind && isEffectiveModuleDeclaration(valueDeclaration)) { symbol.valueDeclaration = node; } } function isFunctionSymbol(symbol) { if (!symbol || !symbol.valueDeclaration) { return false; } const decl = symbol.valueDeclaration; return decl.kind === 263 || isVariableDeclaration(decl) && decl.initializer && isFunctionLike(decl.initializer); } function canHaveModuleSpecifier(node) { switch (node == null ? undefined : node.kind) { case 261: case 209: case 273: case 279: case 272: case 274: case 281: case 275: case 282: case 277: case 206: return true; } return false; } function tryGetModuleSpecifierFromDeclaration(node) { var _a, _b; switch (node.kind) { case 261: case 209: return (_a = findAncestor(node.initializer, (node2) => isRequireCall(node2, true))) == null ? undefined : _a.arguments[0]; case 273: case 279: case 352: return tryCast(node.moduleSpecifier, isStringLiteralLike); case 272: return tryCast((_b = tryCast(node.moduleReference, isExternalModuleReference)) == null ? undefined : _b.expression, isStringLiteralLike); case 274: case 281: return tryCast(node.parent.moduleSpecifier, isStringLiteralLike); case 275: case 282: return tryCast(node.parent.parent.moduleSpecifier, isStringLiteralLike); case 277: return tryCast(node.parent.parent.parent.moduleSpecifier, isStringLiteralLike); case 206: return isLiteralImportTypeNode(node) ? node.argument.literal : undefined; default: Debug.assertNever(node); } } function importFromModuleSpecifier(node) { return tryGetImportFromModuleSpecifier(node) || Debug.failBadSyntaxKind(node.parent); } function tryGetImportFromModuleSpecifier(node) { switch (node.parent.kind) { case 273: case 279: case 352: return node.parent; case 284: return node.parent.parent; case 214: return isImportCall(node.parent) || isRequireCall(node.parent, false) ? node.parent : undefined; case 202: if (!isStringLiteral(node)) { break; } return tryCast(node.parent.parent, isImportTypeNode); default: return; } } function shouldRewriteModuleSpecifier(specifier, compilerOptions) { return !!compilerOptions.rewriteRelativeImportExtensions && pathIsRelative(specifier) && !isDeclarationFileName(specifier) && hasTSFileExtension(specifier); } function getExternalModuleName(node) { switch (node.kind) { case 273: case 279: case 352: return node.moduleSpecifier; case 272: return node.moduleReference.kind === 284 ? node.moduleReference.expression : undefined; case 206: return isLiteralImportTypeNode(node) ? node.argument.literal : undefined; case 214: return node.arguments[0]; case 268: return node.name.kind === 11 ? node.name : undefined; default: return Debug.assertNever(node); } } function getNamespaceDeclarationNode(node) { switch (node.kind) { case 273: return node.importClause && tryCast(node.importClause.namedBindings, isNamespaceImport); case 272: return node; case 279: return node.exportClause && tryCast(node.exportClause, isNamespaceExport); default: return Debug.assertNever(node); } } function isDefaultImport(node) { return (node.kind === 273 || node.kind === 352) && !!node.importClause && !!node.importClause.name; } function forEachImportClauseDeclaration(node, action) { if (node.name) { const result = action(node); if (result) return result; } if (node.namedBindings) { const result = isNamespaceImport(node.namedBindings) ? action(node.namedBindings) : forEach(node.namedBindings.elements, action); if (result) return result; } } function hasQuestionToken(node) { switch (node.kind) { case 170: case 175: case 174: case 305: case 304: case 173: case 172: return node.questionToken !== undefined; } return false; } function isJSDocConstructSignature(node) { const param = isJSDocFunctionType(node) ? firstOrUndefined(node.parameters) : undefined; const name = tryCast(param && param.name, isIdentifier); return !!name && name.escapedText === "new"; } function isJSDocTypeAlias(node) { return node.kind === 347 || node.kind === 339 || node.kind === 341; } function isTypeAlias(node) { return isJSDocTypeAlias(node) || isTypeAliasDeclaration(node); } function getSourceOfAssignment(node) { return isExpressionStatement(node) && isBinaryExpression(node.expression) && node.expression.operatorToken.kind === 64 ? getRightMostAssignedExpression(node.expression) : undefined; } function getSourceOfDefaultedAssignment(node) { return isExpressionStatement(node) && isBinaryExpression(node.expression) && getAssignmentDeclarationKind(node.expression) !== 0 && isBinaryExpression(node.expression.right) && (node.expression.right.operatorToken.kind === 57 || node.expression.right.operatorToken.kind === 61) ? node.expression.right.right : undefined; } function getSingleInitializerOfVariableStatementOrPropertyDeclaration(node) { switch (node.kind) { case 244: const v = getSingleVariableOfVariableStatement(node); return v && v.initializer; case 173: return node.initializer; case 304: return node.initializer; } } function getSingleVariableOfVariableStatement(node) { return isVariableStatement(node) ? firstOrUndefined(node.declarationList.declarations) : undefined; } function getNestedModuleDeclaration(node) { return isModuleDeclaration(node) && node.body && node.body.kind === 268 ? node.body : undefined; } function canHaveFlowNode(node) { if (node.kind >= 244 && node.kind <= 260) { return true; } switch (node.kind) { case 80: case 110: case 108: case 167: case 237: case 213: case 212: case 209: case 219: case 220: case 175: case 178: case 179: return true; default: return false; } } function canHaveJSDoc(node) { switch (node.kind) { case 220: case 227: case 242: case 253: case 180: case 297: case 264: case 232: case 176: case 177: case 186: case 181: case 252: case 260: case 247: case 213: case 243: case 1: case 267: case 307: case 278: case 279: case 282: case 245: case 250: case 251: case 249: case 263: case 219: case 185: case 178: case 80: case 246: case 273: case 272: case 182: case 265: case 318: case 324: case 257: case 175: case 174: case 268: case 203: case 271: case 211: case 170: case 218: case 212: case 304: case 173: case 172: case 254: case 241: case 179: case 305: case 306: case 256: case 258: case 259: case 266: case 169: case 261: case 244: case 248: case 255: return true; default: return false; } } function getJSDocCommentsAndTags(hostNode, noCache) { let result; if (isVariableLike(hostNode) && hasInitializer(hostNode) && hasJSDocNodes(hostNode.initializer)) { result = addRange(result, filterOwnedJSDocTags(hostNode, hostNode.initializer.jsDoc)); } let node = hostNode; while (node && node.parent) { if (hasJSDocNodes(node)) { result = addRange(result, filterOwnedJSDocTags(hostNode, node.jsDoc)); } if (node.kind === 170) { result = addRange(result, (noCache ? getJSDocParameterTagsNoCache : getJSDocParameterTags)(node)); break; } if (node.kind === 169) { result = addRange(result, (noCache ? getJSDocTypeParameterTagsNoCache : getJSDocTypeParameterTags)(node)); break; } node = getNextJSDocCommentLocation(node); } return result || emptyArray; } function filterOwnedJSDocTags(hostNode, comments) { const lastJsDoc = last(comments); return flatMap(comments, (jsDoc) => { if (jsDoc === lastJsDoc) { const ownedTags = filter(jsDoc.tags, (tag) => ownsJSDocTag(hostNode, tag)); return jsDoc.tags === ownedTags ? [jsDoc] : ownedTags; } else { return filter(jsDoc.tags, isJSDocOverloadTag); } }); } function ownsJSDocTag(hostNode, tag) { return !(isJSDocTypeTag(tag) || isJSDocSatisfiesTag(tag)) || !tag.parent || !isJSDoc(tag.parent) || !isParenthesizedExpression(tag.parent.parent) || tag.parent.parent === hostNode; } function getNextJSDocCommentLocation(node) { const parent2 = node.parent; if (parent2.kind === 304 || parent2.kind === 278 || parent2.kind === 173 || parent2.kind === 245 && node.kind === 212 || parent2.kind === 254 || getNestedModuleDeclaration(parent2) || isAssignmentExpression(node)) { return parent2; } else if (parent2.parent && (getSingleVariableOfVariableStatement(parent2.parent) === node || isAssignmentExpression(parent2))) { return parent2.parent; } else if (parent2.parent && parent2.parent.parent && (getSingleVariableOfVariableStatement(parent2.parent.parent) || getSingleInitializerOfVariableStatementOrPropertyDeclaration(parent2.parent.parent) === node || getSourceOfDefaultedAssignment(parent2.parent.parent))) { return parent2.parent.parent; } } function getParameterSymbolFromJSDoc(node) { if (node.symbol) { return node.symbol; } if (!isIdentifier(node.name)) { return; } const name = node.name.escapedText; const decl = getHostSignatureFromJSDoc(node); if (!decl) { return; } const parameter = find(decl.parameters, (p) => p.name.kind === 80 && p.name.escapedText === name); return parameter && parameter.symbol; } function getEffectiveContainerForJSDocTemplateTag(node) { if (isJSDoc(node.parent) && node.parent.tags) { const typeAlias = find(node.parent.tags, isJSDocTypeAlias); if (typeAlias) { return typeAlias; } } return getHostSignatureFromJSDoc(node); } function getJSDocOverloadTags(node) { return getAllJSDocTags(node, isJSDocOverloadTag); } function getHostSignatureFromJSDoc(node) { const host = getEffectiveJSDocHost(node); if (host) { return isPropertySignature(host) && host.type && isFunctionLike(host.type) ? host.type : isFunctionLike(host) ? host : undefined; } return; } function getEffectiveJSDocHost(node) { const host = getJSDocHost(node); if (host) { return getSourceOfDefaultedAssignment(host) || getSourceOfAssignment(host) || getSingleInitializerOfVariableStatementOrPropertyDeclaration(host) || getSingleVariableOfVariableStatement(host) || getNestedModuleDeclaration(host) || host; } } function getJSDocHost(node) { const jsDoc = getJSDocRoot(node); if (!jsDoc) { return; } const host = jsDoc.parent; if (host && host.jsDoc && jsDoc === lastOrUndefined(host.jsDoc)) { return host; } } function getJSDocRoot(node) { return findAncestor(node.parent, isJSDoc); } function getTypeParameterFromJsDoc(node) { const name = node.name.escapedText; const { typeParameters } = node.parent.parent.parent; return typeParameters && find(typeParameters, (p) => p.name.escapedText === name); } function hasTypeArguments(node) { return !!node.typeArguments; } var AssignmentKind = /* @__PURE__ */ ((AssignmentKind2) => { AssignmentKind2[AssignmentKind2["None"] = 0] = "None"; AssignmentKind2[AssignmentKind2["Definite"] = 1] = "Definite"; AssignmentKind2[AssignmentKind2["Compound"] = 2] = "Compound"; return AssignmentKind2; })(AssignmentKind || {}); function getAssignmentTarget(node) { let parent2 = node.parent; while (true) { switch (parent2.kind) { case 227: const binaryExpression = parent2; const binaryOperator = binaryExpression.operatorToken.kind; return isAssignmentOperator(binaryOperator) && binaryExpression.left === node ? binaryExpression : undefined; case 225: case 226: const unaryExpression = parent2; const unaryOperator = unaryExpression.operator; return unaryOperator === 46 || unaryOperator === 47 ? unaryExpression : undefined; case 250: case 251: const forInOrOfStatement = parent2; return forInOrOfStatement.initializer === node ? forInOrOfStatement : undefined; case 218: case 210: case 231: case 236: node = parent2; break; case 306: node = parent2.parent; break; case 305: if (parent2.name !== node) { return; } node = parent2.parent; break; case 304: if (parent2.name === node) { return; } node = parent2.parent; break; default: return; } parent2 = node.parent; } } function getAssignmentTargetKind(node) { const target = getAssignmentTarget(node); if (!target) { return 0; } switch (target.kind) { case 227: const binaryOperator = target.operatorToken.kind; return binaryOperator === 64 || isLogicalOrCoalescingAssignmentOperator(binaryOperator) ? 1 : 2; case 225: case 226: return 2; case 250: case 251: return 1; } } function isAssignmentTarget(node) { return !!getAssignmentTarget(node); } function isCompoundLikeAssignment(assignment) { const right = skipParentheses(assignment.right); return right.kind === 227 && isShiftOperatorOrHigher(right.operatorToken.kind); } function isInCompoundLikeAssignment(node) { const target = getAssignmentTarget(node); return !!target && isAssignmentExpression(target, true) && isCompoundLikeAssignment(target); } function isNodeWithPossibleHoistedDeclaration(node) { switch (node.kind) { case 242: case 244: case 255: case 246: case 256: case 270: case 297: case 298: case 257: case 249: case 250: case 251: case 247: case 248: case 259: case 300: return true; } return false; } function isValueSignatureDeclaration(node) { return isFunctionExpression(node) || isArrowFunction(node) || isMethodOrAccessor(node) || isFunctionDeclaration(node) || isConstructorDeclaration(node); } function walkUp(node, kind) { while (node && node.kind === kind) { node = node.parent; } return node; } function walkUpParenthesizedTypes(node) { return walkUp(node, 197); } function walkUpParenthesizedExpressions(node) { return walkUp(node, 218); } function walkUpParenthesizedTypesAndGetParentAndChild(node) { let child; while (node && node.kind === 197) { child = node; node = node.parent; } return [child, node]; } function skipTypeParentheses(node) { while (isParenthesizedTypeNode(node)) node = node.type; return node; } function skipParentheses(node, excludeJSDocTypeAssertions) { const flags = excludeJSDocTypeAssertions ? 1 | -2147483648 : 1; return skipOuterExpressions(node, flags); } function isDeleteTarget(node) { if (node.kind !== 212 && node.kind !== 213) { return false; } node = walkUpParenthesizedExpressions(node.parent); return node && node.kind === 221; } function isNodeDescendantOf(node, ancestor) { while (node) { if (node === ancestor) return true; node = node.parent; } return false; } function isDeclarationName(name) { return !isSourceFile(name) && !isBindingPattern(name) && isDeclaration(name.parent) && name.parent.name === name; } function getDeclarationFromName(name) { const parent2 = name.parent; switch (name.kind) { case 11: case 15: case 9: if (isComputedPropertyName(parent2)) return parent2.parent; case 80: if (isDeclaration(parent2)) { return parent2.name === name ? parent2 : undefined; } else if (isQualifiedName(parent2)) { const tag = parent2.parent; return isJSDocParameterTag(tag) && tag.name === parent2 ? tag : undefined; } else { const binExp = parent2.parent; return isBinaryExpression(binExp) && getAssignmentDeclarationKind(binExp) !== 0 && (binExp.left.symbol || binExp.symbol) && getNameOfDeclaration(binExp) === name ? binExp : undefined; } case 81: return isDeclaration(parent2) && parent2.name === name ? parent2 : undefined; default: return; } } function isLiteralComputedPropertyDeclarationName(node) { return isStringOrNumericLiteralLike(node) && node.parent.kind === 168 && isDeclaration(node.parent.parent); } function isIdentifierName(node) { const parent2 = node.parent; switch (parent2.kind) { case 173: case 172: case 175: case 174: case 178: case 179: case 307: case 304: case 212: return parent2.name === node; case 167: return parent2.right === node; case 209: case 277: return parent2.propertyName === node; case 282: case 292: case 286: case 287: case 288: return true; } return false; } function getAliasDeclarationFromName(node) { switch (node.parent.kind) { case 274: case 277: case 275: case 282: case 278: case 272: case 281: return node.parent; case 167: do { node = node.parent; } while (node.parent.kind === 167); return getAliasDeclarationFromName(node); } } function isAliasableExpression(e) { return isEntityNameExpression(e) || isClassExpression(e); } function exportAssignmentIsAlias(node) { const e = getExportAssignmentExpression(node); return isAliasableExpression(e); } function getExportAssignmentExpression(node) { return isExportAssignment(node) ? node.expression : node.right; } function getPropertyAssignmentAliasLikeExpression(node) { return node.kind === 305 ? node.name : node.kind === 304 ? node.initializer : node.parent.right; } function getEffectiveBaseTypeNode(node) { const baseType = getClassExtendsHeritageElement(node); if (baseType && isInJSFile(node)) { const tag = getJSDocAugmentsTag(node); if (tag) { return tag.class; } } return baseType; } function getClassExtendsHeritageElement(node) { const heritageClause = getHeritageClause(node.heritageClauses, 96); return heritageClause && heritageClause.types.length > 0 ? heritageClause.types[0] : undefined; } function getEffectiveImplementsTypeNodes(node) { if (isInJSFile(node)) { return getJSDocImplementsTags(node).map((n) => n.class); } else { const heritageClause = getHeritageClause(node.heritageClauses, 119); return heritageClause == null ? undefined : heritageClause.types; } } function getAllSuperTypeNodes(node) { return isInterfaceDeclaration(node) ? getInterfaceBaseTypeNodes(node) || emptyArray : isClassLike(node) ? concatenate(singleElementArray(getEffectiveBaseTypeNode(node)), getEffectiveImplementsTypeNodes(node)) || emptyArray : emptyArray; } function getInterfaceBaseTypeNodes(node) { const heritageClause = getHeritageClause(node.heritageClauses, 96); return heritageClause ? heritageClause.types : undefined; } function getHeritageClause(clauses, kind) { if (clauses) { for (const clause of clauses) { if (clause.token === kind) { return clause; } } } return; } function getAncestor(node, kind) { while (node) { if (node.kind === kind) { return node; } node = node.parent; } return; } function isKeyword(token) { return 83 <= token && token <= 166; } function isPunctuation(token) { return 19 <= token && token <= 79; } function isKeywordOrPunctuation(token) { return isKeyword(token) || isPunctuation(token); } function isContextualKeyword(token) { return 128 <= token && token <= 166; } function isNonContextualKeyword(token) { return isKeyword(token) && !isContextualKeyword(token); } function isStringANonContextualKeyword(name) { const token = stringToToken(name); return token !== undefined && isNonContextualKeyword(token); } function isIdentifierANonContextualKeyword(node) { const originalKeywordKind = identifierToKeywordKind(node); return !!originalKeywordKind && !isContextualKeyword(originalKeywordKind); } function isTrivia(token) { return 2 <= token && token <= 7; } var FunctionFlags = /* @__PURE__ */ ((FunctionFlags2) => { FunctionFlags2[FunctionFlags2["Normal"] = 0] = "Normal"; FunctionFlags2[FunctionFlags2["Generator"] = 1] = "Generator"; FunctionFlags2[FunctionFlags2["Async"] = 2] = "Async"; FunctionFlags2[FunctionFlags2["Invalid"] = 4] = "Invalid"; FunctionFlags2[FunctionFlags2["AsyncGenerator"] = 3] = "AsyncGenerator"; return FunctionFlags2; })(FunctionFlags || {}); function getFunctionFlags(node) { if (!node) { return 4; } let flags = 0; switch (node.kind) { case 263: case 219: case 175: if (node.asteriskToken) { flags |= 1; } case 220: if (hasSyntacticModifier(node, 1024)) { flags |= 2; } break; } if (!node.body) { flags |= 4; } return flags; } function isAsyncFunction(node) { switch (node.kind) { case 263: case 219: case 220: case 175: return node.body !== undefined && node.asteriskToken === undefined && hasSyntacticModifier(node, 1024); } return false; } function isStringOrNumericLiteralLike(node) { return isStringLiteralLike(node) || isNumericLiteral(node); } function isSignedNumericLiteral(node) { return isPrefixUnaryExpression(node) && (node.operator === 40 || node.operator === 41) && isNumericLiteral(node.operand); } function hasDynamicName(declaration) { const name = getNameOfDeclaration(declaration); return !!name && isDynamicName(name); } function isDynamicName(name) { if (!(name.kind === 168 || name.kind === 213)) { return false; } const expr = isElementAccessExpression(name) ? skipParentheses(name.argumentExpression) : name.expression; return !isStringOrNumericLiteralLike(expr) && !isSignedNumericLiteral(expr); } function getPropertyNameForPropertyNameNode(name) { switch (name.kind) { case 80: case 81: return name.escapedText; case 11: case 15: case 9: case 10: return escapeLeadingUnderscores(name.text); case 168: const nameExpression = name.expression; if (isStringOrNumericLiteralLike(nameExpression)) { return escapeLeadingUnderscores(nameExpression.text); } else if (isSignedNumericLiteral(nameExpression)) { if (nameExpression.operator === 41) { return tokenToString(nameExpression.operator) + nameExpression.operand.text; } return nameExpression.operand.text; } return; case 296: return getEscapedTextOfJsxNamespacedName(name); default: return Debug.assertNever(name); } } function isPropertyNameLiteral(node) { switch (node.kind) { case 80: case 11: case 15: case 9: return true; default: return false; } } function getTextOfIdentifierOrLiteral(node) { return isMemberName(node) ? idText(node) : isJsxNamespacedName(node) ? getTextOfJsxNamespacedName(node) : node.text; } function getEscapedTextOfIdentifierOrLiteral(node) { return isMemberName(node) ? node.escapedText : isJsxNamespacedName(node) ? getEscapedTextOfJsxNamespacedName(node) : escapeLeadingUnderscores(node.text); } function getSymbolNameForPrivateIdentifier(containingClassSymbol, description3) { return `__#${getSymbolId(containingClassSymbol)}@${description3}`; } function isKnownSymbol(symbol) { return startsWith(symbol.escapedName, "__@"); } function isPrivateIdentifierSymbol(symbol) { return startsWith(symbol.escapedName, "__#"); } function isProtoSetter(node) { return isIdentifier(node) ? idText(node) === "__proto__" : isStringLiteral(node) && node.text === "__proto__"; } function isAnonymousFunctionDefinition(node, cb) { node = skipOuterExpressions(node); switch (node.kind) { case 232: if (classHasDeclaredOrExplicitlyAssignedName(node)) { return false; } break; case 219: if (node.name) { return false; } break; case 220: break; default: return false; } return typeof cb === "function" ? cb(node) : true; } function isNamedEvaluationSource(node) { switch (node.kind) { case 304: return !isProtoSetter(node.name); case 305: return !!node.objectAssignmentInitializer; case 261: return isIdentifier(node.name) && !!node.initializer; case 170: return isIdentifier(node.name) && !!node.initializer && !node.dotDotDotToken; case 209: return isIdentifier(node.name) && !!node.initializer && !node.dotDotDotToken; case 173: return !!node.initializer; case 227: switch (node.operatorToken.kind) { case 64: case 77: case 76: case 78: return isIdentifier(node.left); } break; case 278: return true; } return false; } function isNamedEvaluation(node, cb) { if (!isNamedEvaluationSource(node)) return false; switch (node.kind) { case 304: return isAnonymousFunctionDefinition(node.initializer, cb); case 305: return isAnonymousFunctionDefinition(node.objectAssignmentInitializer, cb); case 261: case 170: case 209: case 173: return isAnonymousFunctionDefinition(node.initializer, cb); case 227: return isAnonymousFunctionDefinition(node.right, cb); case 278: return isAnonymousFunctionDefinition(node.expression, cb); } } function isPushOrUnshiftIdentifier(node) { return node.escapedText === "push" || node.escapedText === "unshift"; } function isPartOfParameterDeclaration(node) { const root = getRootDeclaration(node); return root.kind === 170; } function getRootDeclaration(node) { while (node.kind === 209) { node = node.parent.parent; } return node; } function nodeStartsNewLexicalEnvironment(node) { const kind = node.kind; return kind === 177 || kind === 219 || kind === 263 || kind === 220 || kind === 175 || kind === 178 || kind === 179 || kind === 268 || kind === 308; } function nodeIsSynthesized(range) { return positionIsSynthesized(range.pos) || positionIsSynthesized(range.end); } var Associativity = /* @__PURE__ */ ((Associativity2) => { Associativity2[Associativity2["Left"] = 0] = "Left"; Associativity2[Associativity2["Right"] = 1] = "Right"; return Associativity2; })(Associativity || {}); function getExpressionAssociativity(expression) { const operator = getOperator(expression); const hasArguments = expression.kind === 215 && expression.arguments !== undefined; return getOperatorAssociativity(expression.kind, operator, hasArguments); } function getOperatorAssociativity(kind, operator, hasArguments) { switch (kind) { case 215: return hasArguments ? 0 : 1; case 225: case 222: case 223: case 221: case 224: case 228: case 230: return 1; case 227: switch (operator) { case 43: case 64: case 65: case 66: case 68: case 67: case 69: case 70: case 71: case 72: case 73: case 74: case 79: case 75: case 76: case 77: case 78: return 1; } } return 0; } function getExpressionPrecedence(expression) { const operator = getOperator(expression); const hasArguments = expression.kind === 215 && expression.arguments !== undefined; return getOperatorPrecedence(expression.kind, operator, hasArguments); } function getOperator(expression) { if (expression.kind === 227) { return expression.operatorToken.kind; } else if (expression.kind === 225 || expression.kind === 226) { return expression.operator; } else { return expression.kind; } } var OperatorPrecedence = /* @__PURE__ */ ((OperatorPrecedence2) => { OperatorPrecedence2[OperatorPrecedence2["Comma"] = 0] = "Comma"; OperatorPrecedence2[OperatorPrecedence2["Spread"] = 1] = "Spread"; OperatorPrecedence2[OperatorPrecedence2["Yield"] = 2] = "Yield"; OperatorPrecedence2[OperatorPrecedence2["Assignment"] = 3] = "Assignment"; OperatorPrecedence2[OperatorPrecedence2["Conditional"] = 4] = "Conditional"; OperatorPrecedence2[OperatorPrecedence2["LogicalOR"] = 5] = "LogicalOR"; OperatorPrecedence2[OperatorPrecedence2["Coalesce"] = 5] = "Coalesce"; OperatorPrecedence2[OperatorPrecedence2["LogicalAND"] = 6] = "LogicalAND"; OperatorPrecedence2[OperatorPrecedence2["BitwiseOR"] = 7] = "BitwiseOR"; OperatorPrecedence2[OperatorPrecedence2["BitwiseXOR"] = 8] = "BitwiseXOR"; OperatorPrecedence2[OperatorPrecedence2["BitwiseAND"] = 9] = "BitwiseAND"; OperatorPrecedence2[OperatorPrecedence2["Equality"] = 10] = "Equality"; OperatorPrecedence2[OperatorPrecedence2["Relational"] = 11] = "Relational"; OperatorPrecedence2[OperatorPrecedence2["Shift"] = 12] = "Shift"; OperatorPrecedence2[OperatorPrecedence2["Additive"] = 13] = "Additive"; OperatorPrecedence2[OperatorPrecedence2["Multiplicative"] = 14] = "Multiplicative"; OperatorPrecedence2[OperatorPrecedence2["Exponentiation"] = 15] = "Exponentiation"; OperatorPrecedence2[OperatorPrecedence2["Unary"] = 16] = "Unary"; OperatorPrecedence2[OperatorPrecedence2["Update"] = 17] = "Update"; OperatorPrecedence2[OperatorPrecedence2["LeftHandSide"] = 18] = "LeftHandSide"; OperatorPrecedence2[OperatorPrecedence2["Member"] = 19] = "Member"; OperatorPrecedence2[OperatorPrecedence2["Primary"] = 20] = "Primary"; OperatorPrecedence2[OperatorPrecedence2["Highest"] = 20] = "Highest"; OperatorPrecedence2[OperatorPrecedence2["Lowest"] = 0] = "Lowest"; OperatorPrecedence2[OperatorPrecedence2["Invalid"] = -1] = "Invalid"; return OperatorPrecedence2; })(OperatorPrecedence || {}); function getOperatorPrecedence(nodeKind, operatorKind, hasArguments) { switch (nodeKind) { case 357: return 0; case 231: return 1; case 230: return 2; case 228: return 4; case 227: switch (operatorKind) { case 28: return 0; case 64: case 65: case 66: case 68: case 67: case 69: case 70: case 71: case 72: case 73: case 74: case 79: case 75: case 76: case 77: case 78: return 3; default: return getBinaryOperatorPrecedence(operatorKind); } case 217: case 236: case 225: case 222: case 223: case 221: case 224: return 16; case 226: return 17; case 214: return 18; case 215: return hasArguments ? 19 : 18; case 216: case 212: case 213: case 237: return 19; case 235: case 239: return 11; case 110: case 108: case 80: case 81: case 106: case 112: case 97: case 9: case 10: case 11: case 210: case 211: case 219: case 220: case 232: case 14: case 15: case 229: case 218: case 233: case 285: case 286: case 289: return 20; default: return -1; } } function getBinaryOperatorPrecedence(kind) { switch (kind) { case 61: return 5; case 57: return 5; case 56: return 6; case 52: return 7; case 53: return 8; case 51: return 9; case 35: case 36: case 37: case 38: return 10; case 30: case 32: case 33: case 34: case 104: case 103: case 130: case 152: return 11; case 48: case 49: case 50: return 12; case 40: case 41: return 13; case 42: case 44: case 45: return 14; case 43: return 15; } return -1; } function getSemanticJsxChildren(children) { return filter(children, (i) => { switch (i.kind) { case 295: return !!i.expression; case 12: return !i.containsOnlyTriviaWhiteSpaces; default: return true; } }); } function createDiagnosticCollection() { let nonFileDiagnostics = []; const filesWithDiagnostics = []; const fileDiagnostics = /* @__PURE__ */ new Map; let hasReadNonFileDiagnostics = false; return { add, lookup, getGlobalDiagnostics, getDiagnostics: getDiagnostics2 }; function lookup(diagnostic) { let diagnostics; if (diagnostic.file) { diagnostics = fileDiagnostics.get(diagnostic.file.fileName); } else { diagnostics = nonFileDiagnostics; } if (!diagnostics) { return; } const result = binarySearch(diagnostics, diagnostic, identity, compareDiagnosticsSkipRelatedInformation); if (result >= 0) { return diagnostics[result]; } if (~result > 0 && diagnosticsEqualityComparer(diagnostic, diagnostics[~result - 1])) { return diagnostics[~result - 1]; } return; } function add(diagnostic) { let diagnostics; if (diagnostic.file) { diagnostics = fileDiagnostics.get(diagnostic.file.fileName); if (!diagnostics) { diagnostics = []; fileDiagnostics.set(diagnostic.file.fileName, diagnostics); insertSorted(filesWithDiagnostics, diagnostic.file.fileName, compareStringsCaseSensitive); } } else { if (hasReadNonFileDiagnostics) { hasReadNonFileDiagnostics = false; nonFileDiagnostics = nonFileDiagnostics.slice(); } diagnostics = nonFileDiagnostics; } insertSorted(diagnostics, diagnostic, compareDiagnosticsSkipRelatedInformation, diagnosticsEqualityComparer); } function getGlobalDiagnostics() { hasReadNonFileDiagnostics = true; return nonFileDiagnostics; } function getDiagnostics2(fileName) { if (fileName) { return fileDiagnostics.get(fileName) || []; } const fileDiags = flatMapToMutable(filesWithDiagnostics, (f) => fileDiagnostics.get(f)); if (!nonFileDiagnostics.length) { return fileDiags; } fileDiags.unshift(...nonFileDiagnostics); return fileDiags; } } var templateSubstitutionRegExp = /\$\{/g; function escapeTemplateSubstitution(str) { return str.replace(templateSubstitutionRegExp, "\\${"); } function containsInvalidEscapeFlag(node) { return !!((node.templateFlags || 0) & 2048); } function hasInvalidEscape(template) { return template && !!(isNoSubstitutionTemplateLiteral(template) ? containsInvalidEscapeFlag(template) : containsInvalidEscapeFlag(template.head) || some(template.templateSpans, (span) => containsInvalidEscapeFlag(span.literal))); } var doubleQuoteEscapedCharsRegExp = /[\\"\u0000-\u001f\u2028\u2029\u0085]/g; var singleQuoteEscapedCharsRegExp = /[\\'\u0000-\u001f\u2028\u2029\u0085]/g; var backtickQuoteEscapedCharsRegExp = /\r\n|[\\`\u0000-\u0009\u000b-\u001f\u2028\u2029\u0085]/g; var escapedCharsMap = new Map(Object.entries({ "\t": "\\t", "\v": "\\v", "\f": "\\f", "\b": "\\b", "\r": "\\r", "\n": "\\n", "\\": "\\\\", '"': "\\\"", "'": "\\'", "`": "\\`", "\u2028": "\\u2028", "\u2029": "\\u2029", "…": "\\u0085", "\r\n": "\\r\\n" })); function encodeUtf16EscapeSequence(charCode) { const hexCharCode = charCode.toString(16).toUpperCase(); const paddedHexCode = ("0000" + hexCharCode).slice(-4); return "\\u" + paddedHexCode; } function getReplacement(c, offset, input) { if (c.charCodeAt(0) === 0) { const lookAhead = input.charCodeAt(offset + c.length); if (lookAhead >= 48 && lookAhead <= 57) { return "\\x00"; } return "\\0"; } return escapedCharsMap.get(c) || encodeUtf16EscapeSequence(c.charCodeAt(0)); } function escapeString(s, quoteChar) { const escapedCharsRegExp = quoteChar === 96 ? backtickQuoteEscapedCharsRegExp : quoteChar === 39 ? singleQuoteEscapedCharsRegExp : doubleQuoteEscapedCharsRegExp; return s.replace(escapedCharsRegExp, getReplacement); } var nonAsciiCharacters = /[^\u0000-\u007F]/g; function escapeNonAsciiString(s, quoteChar) { s = escapeString(s, quoteChar); return nonAsciiCharacters.test(s) ? s.replace(nonAsciiCharacters, (c) => encodeUtf16EscapeSequence(c.charCodeAt(0))) : s; } var jsxDoubleQuoteEscapedCharsRegExp = /["\u0000-\u001f\u2028\u2029\u0085]/g; var jsxSingleQuoteEscapedCharsRegExp = /['\u0000-\u001f\u2028\u2029\u0085]/g; var jsxEscapedCharsMap = new Map(Object.entries({ '"': """, "'": "'" })); function encodeJsxCharacterEntity(charCode) { const hexCharCode = charCode.toString(16).toUpperCase(); return "&#x" + hexCharCode + ";"; } function getJsxAttributeStringReplacement(c) { if (c.charCodeAt(0) === 0) { return "�"; } return jsxEscapedCharsMap.get(c) || encodeJsxCharacterEntity(c.charCodeAt(0)); } function escapeJsxAttributeString(s, quoteChar) { const escapedCharsRegExp = quoteChar === 39 ? jsxSingleQuoteEscapedCharsRegExp : jsxDoubleQuoteEscapedCharsRegExp; return s.replace(escapedCharsRegExp, getJsxAttributeStringReplacement); } function stripQuotes(name) { const length2 = name.length; if (length2 >= 2 && name.charCodeAt(0) === name.charCodeAt(length2 - 1) && isQuoteOrBacktick(name.charCodeAt(0))) { return name.substring(1, length2 - 1); } return name; } function isQuoteOrBacktick(charCode) { return charCode === 39 || charCode === 34 || charCode === 96; } function isIntrinsicJsxName(name) { const ch = name.charCodeAt(0); return ch >= 97 && ch <= 122 || name.includes("-"); } var indentStrings = ["", " "]; function getIndentString(level) { const singleLevel = indentStrings[1]; for (let current = indentStrings.length;current <= level; current++) { indentStrings.push(indentStrings[current - 1] + singleLevel); } return indentStrings[level]; } function getIndentSize() { return indentStrings[1].length; } function createTextWriter(newLine) { var output; var indent3; var lineStart; var lineCount; var linePos; var hasTrailingComment = false; function updateLineCountAndPosFor(s) { const lineStartsOfS = computeLineStarts(s); if (lineStartsOfS.length > 1) { lineCount = lineCount + lineStartsOfS.length - 1; linePos = output.length - s.length + last(lineStartsOfS); lineStart = linePos - output.length === 0; } else { lineStart = false; } } function writeText(s) { if (s && s.length) { if (lineStart) { s = getIndentString(indent3) + s; lineStart = false; } output += s; updateLineCountAndPosFor(s); } } function write(s) { if (s) hasTrailingComment = false; writeText(s); } function writeComment(s) { if (s) hasTrailingComment = true; writeText(s); } function reset2() { output = ""; indent3 = 0; lineStart = true; lineCount = 0; linePos = 0; hasTrailingComment = false; } function rawWrite(s) { if (s !== undefined) { output += s; updateLineCountAndPosFor(s); hasTrailingComment = false; } } function writeLiteral(s) { if (s && s.length) { write(s); } } function writeLine(force) { if (!lineStart || force) { output += newLine; lineCount++; linePos = output.length; lineStart = true; hasTrailingComment = false; } } reset2(); return { write, rawWrite, writeLiteral, writeLine, increaseIndent: () => { indent3++; }, decreaseIndent: () => { indent3--; }, getIndent: () => indent3, getTextPos: () => output.length, getLine: () => lineCount, getColumn: () => lineStart ? indent3 * getIndentSize() : output.length - linePos, getText: () => output, isAtStartOfLine: () => lineStart, hasTrailingComment: () => hasTrailingComment, hasTrailingWhitespace: () => !!output.length && isWhiteSpaceLike(output.charCodeAt(output.length - 1)), clear: reset2, writeKeyword: write, writeOperator: write, writeParameter: write, writeProperty: write, writePunctuation: write, writeSpace: write, writeStringLiteral: write, writeSymbol: (s, _) => write(s), writeTrailingSemicolon: write, writeComment }; } function getTrailingSemicolonDeferringWriter(writer) { let pendingTrailingSemicolon = false; function commitPendingTrailingSemicolon() { if (pendingTrailingSemicolon) { writer.writeTrailingSemicolon(";"); pendingTrailingSemicolon = false; } } return { ...writer, writeTrailingSemicolon() { pendingTrailingSemicolon = true; }, writeLiteral(s) { commitPendingTrailingSemicolon(); writer.writeLiteral(s); }, writeStringLiteral(s) { commitPendingTrailingSemicolon(); writer.writeStringLiteral(s); }, writeSymbol(s, sym) { commitPendingTrailingSemicolon(); writer.writeSymbol(s, sym); }, writePunctuation(s) { commitPendingTrailingSemicolon(); writer.writePunctuation(s); }, writeKeyword(s) { commitPendingTrailingSemicolon(); writer.writeKeyword(s); }, writeOperator(s) { commitPendingTrailingSemicolon(); writer.writeOperator(s); }, writeParameter(s) { commitPendingTrailingSemicolon(); writer.writeParameter(s); }, writeSpace(s) { commitPendingTrailingSemicolon(); writer.writeSpace(s); }, writeProperty(s) { commitPendingTrailingSemicolon(); writer.writeProperty(s); }, writeComment(s) { commitPendingTrailingSemicolon(); writer.writeComment(s); }, writeLine() { commitPendingTrailingSemicolon(); writer.writeLine(); }, increaseIndent() { commitPendingTrailingSemicolon(); writer.increaseIndent(); }, decreaseIndent() { commitPendingTrailingSemicolon(); writer.decreaseIndent(); } }; } function hostUsesCaseSensitiveFileNames(host) { return host.useCaseSensitiveFileNames ? host.useCaseSensitiveFileNames() : false; } function hostGetCanonicalFileName(host) { return createGetCanonicalFileName(hostUsesCaseSensitiveFileNames(host)); } function getResolvedExternalModuleName(host, file, referenceFile) { return file.moduleName || getExternalModuleNameFromPath(host, file.fileName, referenceFile && referenceFile.fileName); } function getCanonicalAbsolutePath(host, path) { return host.getCanonicalFileName(getNormalizedAbsolutePath(path, host.getCurrentDirectory())); } function getExternalModuleNameFromDeclaration(host, resolver, declaration) { const file = resolver.getExternalModuleFileFromDeclaration(declaration); if (!file || file.isDeclarationFile) { return; } const specifier = getExternalModuleName(declaration); if (specifier && isStringLiteralLike(specifier) && !pathIsRelative(specifier.text) && !getCanonicalAbsolutePath(host, file.path).includes(getCanonicalAbsolutePath(host, ensureTrailingDirectorySeparator(host.getCommonSourceDirectory())))) { return; } return getResolvedExternalModuleName(host, file); } function getExternalModuleNameFromPath(host, fileName, referencePath) { const getCanonicalFileName = (f) => host.getCanonicalFileName(f); const dir = toPath(referencePath ? getDirectoryPath(referencePath) : host.getCommonSourceDirectory(), host.getCurrentDirectory(), getCanonicalFileName); const filePath = getNormalizedAbsolutePath(fileName, host.getCurrentDirectory()); const relativePath = getRelativePathToDirectoryOrUrl(dir, filePath, dir, getCanonicalFileName, false); const extensionless = removeFileExtension(relativePath); return referencePath ? ensurePathIsNonModuleName(extensionless) : extensionless; } function getOwnEmitOutputFilePath(fileName, host, extension) { const compilerOptions = host.getCompilerOptions(); let emitOutputFilePathWithoutExtension; if (compilerOptions.outDir) { emitOutputFilePathWithoutExtension = removeFileExtension(getSourceFilePathInNewDir(fileName, host, compilerOptions.outDir)); } else { emitOutputFilePathWithoutExtension = removeFileExtension(fileName); } return emitOutputFilePathWithoutExtension + extension; } function getDeclarationEmitOutputFilePath(fileName, host) { return getDeclarationEmitOutputFilePathWorker(fileName, host.getCompilerOptions(), host); } function getDeclarationEmitOutputFilePathWorker(fileName, options, host) { const outputDir = options.declarationDir || options.outDir; const path = outputDir ? getSourceFilePathInNewDirWorker(fileName, outputDir, host.getCurrentDirectory(), host.getCommonSourceDirectory(), (f) => host.getCanonicalFileName(f)) : fileName; const declarationExtension = getDeclarationEmitExtensionForPath(path); return removeFileExtension(path) + declarationExtension; } function getDeclarationEmitExtensionForPath(path) { return fileExtensionIsOneOf(path, [".mjs", ".mts"]) ? ".d.mts" : fileExtensionIsOneOf(path, [".cjs", ".cts"]) ? ".d.cts" : fileExtensionIsOneOf(path, [".json"]) ? `.d.json.ts` : ".d.ts"; } function getPossibleOriginalInputExtensionForExtension(path) { return fileExtensionIsOneOf(path, [".d.mts", ".mjs", ".mts"]) ? [".mts", ".mjs"] : fileExtensionIsOneOf(path, [".d.cts", ".cjs", ".cts"]) ? [".cts", ".cjs"] : fileExtensionIsOneOf(path, [`.d.json.ts`]) ? [".json"] : [".tsx", ".ts", ".jsx", ".js"]; } function getPossibleOriginalInputPathWithoutChangingExt(filePath, ignoreCase, outputDir, getCommonSourceDirectory2) { return outputDir ? resolvePath(getCommonSourceDirectory2(), getRelativePathFromDirectory(outputDir, filePath, ignoreCase)) : filePath; } function getPathsBasePath(options, host) { var _a; if (!options.paths) return; return options.baseUrl ?? Debug.checkDefined(options.pathsBasePath || ((_a = host.getCurrentDirectory) == null ? undefined : _a.call(host)), "Encountered 'paths' without a 'baseUrl', config file, or host 'getCurrentDirectory'."); } function getSourceFilesToEmit(host, targetSourceFile, forceDtsEmit) { const options = host.getCompilerOptions(); if (options.outFile) { const moduleKind = getEmitModuleKind(options); const moduleEmitEnabled = options.emitDeclarationOnly || moduleKind === 2 || moduleKind === 4; return filter(host.getSourceFiles(), (sourceFile) => (moduleEmitEnabled || !isExternalModule(sourceFile)) && sourceFileMayBeEmitted(sourceFile, host, forceDtsEmit)); } else { const sourceFiles = targetSourceFile === undefined ? host.getSourceFiles() : [targetSourceFile]; return filter(sourceFiles, (sourceFile) => sourceFileMayBeEmitted(sourceFile, host, forceDtsEmit)); } } function sourceFileMayBeEmitted(sourceFile, host, forceDtsEmit) { const options = host.getCompilerOptions(); if (options.noEmitForJsFiles && isSourceFileJS(sourceFile)) return false; if (sourceFile.isDeclarationFile) return false; if (host.isSourceFileFromExternalLibrary(sourceFile)) return false; if (forceDtsEmit) return true; if (host.isSourceOfProjectReferenceRedirect(sourceFile.fileName)) return false; if (!isJsonSourceFile(sourceFile)) return true; if (host.getRedirectFromSourceFile(sourceFile.fileName)) return false; if (options.outFile) return true; if (!options.outDir) return false; if (options.rootDir || options.configFilePath) { const commonDir = getNormalizedAbsolutePath(getCommonSourceDirectory(options, () => [], host.getCurrentDirectory(), host.getCanonicalFileName), host.getCurrentDirectory()); const outputPath = getSourceFilePathInNewDirWorker(sourceFile.fileName, options.outDir, host.getCurrentDirectory(), commonDir, host.getCanonicalFileName); if (comparePaths(sourceFile.fileName, outputPath, host.getCurrentDirectory(), !host.useCaseSensitiveFileNames()) === 0) return false; } return true; } function getSourceFilePathInNewDir(fileName, host, newDirPath) { return getSourceFilePathInNewDirWorker(fileName, newDirPath, host.getCurrentDirectory(), host.getCommonSourceDirectory(), (f) => host.getCanonicalFileName(f)); } function getSourceFilePathInNewDirWorker(fileName, newDirPath, currentDirectory, commonSourceDirectory, getCanonicalFileName) { let sourceFilePath = getNormalizedAbsolutePath(fileName, currentDirectory); const isSourceFileInCommonSourceDirectory = getCanonicalFileName(sourceFilePath).indexOf(getCanonicalFileName(commonSourceDirectory)) === 0; sourceFilePath = isSourceFileInCommonSourceDirectory ? sourceFilePath.substring(commonSourceDirectory.length) : sourceFilePath; return combinePaths(newDirPath, sourceFilePath); } function writeFile(host, diagnostics, fileName, text, writeByteOrderMark, sourceFiles, data) { host.writeFile(fileName, text, writeByteOrderMark, (hostErrorMessage) => { diagnostics.add(createCompilerDiagnostic(Diagnostics.Could_not_write_file_0_Colon_1, fileName, hostErrorMessage)); }, sourceFiles, data); } function ensureDirectoriesExist(directoryPath, createDirectory, directoryExists) { if (directoryPath.length > getRootLength(directoryPath) && !directoryExists(directoryPath)) { const parentDirectory = getDirectoryPath(directoryPath); ensureDirectoriesExist(parentDirectory, createDirectory, directoryExists); createDirectory(directoryPath); } } function writeFileEnsuringDirectories(path, data, writeByteOrderMark, writeFile2, createDirectory, directoryExists) { try { writeFile2(path, data, writeByteOrderMark); } catch { ensureDirectoriesExist(getDirectoryPath(normalizePath(path)), createDirectory, directoryExists); writeFile2(path, data, writeByteOrderMark); } } function getLineOfLocalPosition(sourceFile, pos) { const lineStarts = getLineStarts(sourceFile); return computeLineOfPosition(lineStarts, pos); } function getLineOfLocalPositionFromLineMap(lineMap, pos) { return computeLineOfPosition(lineMap, pos); } function getFirstConstructorWithBody(node) { return find(node.members, (member) => isConstructorDeclaration(member) && nodeIsPresent(member.body)); } function getSetAccessorValueParameter(accessor) { if (accessor && accessor.parameters.length > 0) { const hasThis = accessor.parameters.length === 2 && parameterIsThisKeyword(accessor.parameters[0]); return accessor.parameters[hasThis ? 1 : 0]; } } function getSetAccessorTypeAnnotationNode(accessor) { const parameter = getSetAccessorValueParameter(accessor); return parameter && parameter.type; } function getThisParameter(signature) { if (signature.parameters.length && !isJSDocSignature(signature)) { const thisParameter = signature.parameters[0]; if (parameterIsThisKeyword(thisParameter)) { return thisParameter; } } } function parameterIsThisKeyword(parameter) { return isThisIdentifier(parameter.name); } function isThisIdentifier(node) { return !!node && node.kind === 80 && identifierIsThisKeyword(node); } function isInTypeQuery(node) { return !!findAncestor(node, (n) => n.kind === 187 ? true : n.kind === 80 || n.kind === 167 ? false : "quit"); } function isThisInTypeQuery(node) { if (!isThisIdentifier(node)) { return false; } while (isQualifiedName(node.parent) && node.parent.left === node) { node = node.parent; } return node.parent.kind === 187; } function identifierIsThisKeyword(id) { return id.escapedText === "this"; } function getAllAccessorDeclarations(declarations, accessor) { let firstAccessor; let secondAccessor; let getAccessor; let setAccessor; if (hasDynamicName(accessor)) { firstAccessor = accessor; if (accessor.kind === 178) { getAccessor = accessor; } else if (accessor.kind === 179) { setAccessor = accessor; } else { Debug.fail("Accessor has wrong kind"); } } else { forEach(declarations, (member) => { if (isAccessor(member) && isStatic(member) === isStatic(accessor)) { const memberName = getPropertyNameForPropertyNameNode(member.name); const accessorName = getPropertyNameForPropertyNameNode(accessor.name); if (memberName === accessorName) { if (!firstAccessor) { firstAccessor = member; } else if (!secondAccessor) { secondAccessor = member; } if (member.kind === 178 && !getAccessor) { getAccessor = member; } if (member.kind === 179 && !setAccessor) { setAccessor = member; } } } }); } return { firstAccessor, secondAccessor, getAccessor, setAccessor }; } function getEffectiveTypeAnnotationNode(node) { if (!isInJSFile(node) && isFunctionDeclaration(node)) return; if (isTypeAliasDeclaration(node)) return; const type = node.type; if (type || !isInJSFile(node)) return type; return isJSDocPropertyLikeTag(node) ? node.typeExpression && node.typeExpression.type : getJSDocType(node); } function getTypeAnnotationNode(node) { return node.type; } function getEffectiveReturnTypeNode(node) { return isJSDocSignature(node) ? node.type && node.type.typeExpression && node.type.typeExpression.type : node.type || (isInJSFile(node) ? getJSDocReturnType(node) : undefined); } function getJSDocTypeParameterDeclarations(node) { return flatMap(getJSDocTags(node), (tag) => isNonTypeAliasTemplate(tag) ? tag.typeParameters : undefined); } function isNonTypeAliasTemplate(tag) { return isJSDocTemplateTag(tag) && !(tag.parent.kind === 321 && (tag.parent.tags.some(isJSDocTypeAlias) || tag.parent.tags.some(isJSDocOverloadTag))); } function getEffectiveSetAccessorTypeAnnotationNode(node) { const parameter = getSetAccessorValueParameter(node); return parameter && getEffectiveTypeAnnotationNode(parameter); } function emitNewLineBeforeLeadingComments(lineMap, writer, node, leadingComments) { emitNewLineBeforeLeadingCommentsOfPosition(lineMap, writer, node.pos, leadingComments); } function emitNewLineBeforeLeadingCommentsOfPosition(lineMap, writer, pos, leadingComments) { if (leadingComments && leadingComments.length && pos !== leadingComments[0].pos && getLineOfLocalPositionFromLineMap(lineMap, pos) !== getLineOfLocalPositionFromLineMap(lineMap, leadingComments[0].pos)) { writer.writeLine(); } } function emitNewLineBeforeLeadingCommentOfPosition(lineMap, writer, pos, commentPos) { if (pos !== commentPos && getLineOfLocalPositionFromLineMap(lineMap, pos) !== getLineOfLocalPositionFromLineMap(lineMap, commentPos)) { writer.writeLine(); } } function emitComments(text, lineMap, writer, comments, leadingSeparator, trailingSeparator, newLine, writeComment) { if (comments && comments.length > 0) { if (leadingSeparator) { writer.writeSpace(" "); } let emitInterveningSeparator = false; for (const comment of comments) { if (emitInterveningSeparator) { writer.writeSpace(" "); emitInterveningSeparator = false; } writeComment(text, lineMap, writer, comment.pos, comment.end, newLine); if (comment.hasTrailingNewLine) { writer.writeLine(); } else { emitInterveningSeparator = true; } } if (emitInterveningSeparator && trailingSeparator) { writer.writeSpace(" "); } } } function emitDetachedComments(text, lineMap, writer, writeComment, node, newLine, removeComments) { let leadingComments; let currentDetachedCommentInfo; if (removeComments) { if (node.pos === 0) { leadingComments = filter(getLeadingCommentRanges(text, node.pos), isPinnedCommentLocal); } } else { leadingComments = getLeadingCommentRanges(text, node.pos); } if (leadingComments) { const detachedComments = []; let lastComment; for (const comment of leadingComments) { if (lastComment) { const lastCommentLine = getLineOfLocalPositionFromLineMap(lineMap, lastComment.end); const commentLine = getLineOfLocalPositionFromLineMap(lineMap, comment.pos); if (commentLine >= lastCommentLine + 2) { break; } } detachedComments.push(comment); lastComment = comment; } if (detachedComments.length) { const lastCommentLine = getLineOfLocalPositionFromLineMap(lineMap, last(detachedComments).end); const nodeLine = getLineOfLocalPositionFromLineMap(lineMap, skipTrivia2(text, node.pos)); if (nodeLine >= lastCommentLine + 2) { emitNewLineBeforeLeadingComments(lineMap, writer, node, leadingComments); emitComments(text, lineMap, writer, detachedComments, false, true, newLine, writeComment); currentDetachedCommentInfo = { nodePos: node.pos, detachedCommentEndPos: last(detachedComments).end }; } } } return currentDetachedCommentInfo; function isPinnedCommentLocal(comment) { return isPinnedComment(text, comment.pos); } } function writeCommentRange(text, lineMap, writer, commentPos, commentEnd, newLine) { if (text.charCodeAt(commentPos + 1) === 42) { const firstCommentLineAndCharacter = computeLineAndCharacterOfPosition(lineMap, commentPos); const lineCount = lineMap.length; let firstCommentLineIndent; for (let pos = commentPos, currentLine = firstCommentLineAndCharacter.line;pos < commentEnd; currentLine++) { const nextLineStart = currentLine + 1 === lineCount ? text.length + 1 : lineMap[currentLine + 1]; if (pos !== commentPos) { if (firstCommentLineIndent === undefined) { firstCommentLineIndent = calculateIndent(text, lineMap[firstCommentLineAndCharacter.line], commentPos); } const currentWriterIndentSpacing = writer.getIndent() * getIndentSize(); const spacesToEmit = currentWriterIndentSpacing - firstCommentLineIndent + calculateIndent(text, pos, nextLineStart); if (spacesToEmit > 0) { let numberOfSingleSpacesToEmit = spacesToEmit % getIndentSize(); const indentSizeSpaceString = getIndentString((spacesToEmit - numberOfSingleSpacesToEmit) / getIndentSize()); writer.rawWrite(indentSizeSpaceString); while (numberOfSingleSpacesToEmit) { writer.rawWrite(" "); numberOfSingleSpacesToEmit--; } } else { writer.rawWrite(""); } } writeTrimmedCurrentLine(text, commentEnd, writer, newLine, pos, nextLineStart); pos = nextLineStart; } } else { writer.writeComment(text.substring(commentPos, commentEnd)); } } function writeTrimmedCurrentLine(text, commentEnd, writer, newLine, pos, nextLineStart) { const end = Math.min(commentEnd, nextLineStart - 1); const currentLineText = text.substring(pos, end).trim(); if (currentLineText) { writer.writeComment(currentLineText); if (end !== commentEnd) { writer.writeLine(); } } else { writer.rawWrite(newLine); } } function calculateIndent(text, pos, end) { let currentLineIndent = 0; for (;pos < end && isWhiteSpaceSingleLine(text.charCodeAt(pos)); pos++) { if (text.charCodeAt(pos) === 9) { currentLineIndent += getIndentSize() - currentLineIndent % getIndentSize(); } else { currentLineIndent++; } } return currentLineIndent; } function hasEffectiveModifiers(node) { return getEffectiveModifierFlags(node) !== 0; } function hasSyntacticModifiers(node) { return getSyntacticModifierFlags(node) !== 0; } function hasEffectiveModifier(node, flags) { return !!getSelectedEffectiveModifierFlags(node, flags); } function hasSyntacticModifier(node, flags) { return !!getSelectedSyntacticModifierFlags(node, flags); } function isStatic(node) { return isClassElement(node) && hasStaticModifier(node) || isClassStaticBlockDeclaration(node); } function hasStaticModifier(node) { return hasSyntacticModifier(node, 256); } function hasOverrideModifier(node) { return hasEffectiveModifier(node, 16); } function hasAbstractModifier(node) { return hasSyntacticModifier(node, 64); } function hasAmbientModifier(node) { return hasSyntacticModifier(node, 128); } function hasAccessorModifier(node) { return hasSyntacticModifier(node, 512); } function hasEffectiveReadonlyModifier(node) { return hasEffectiveModifier(node, 8); } function hasDecorators(node) { return hasSyntacticModifier(node, 32768); } function getSelectedEffectiveModifierFlags(node, flags) { return getEffectiveModifierFlags(node) & flags; } function getSelectedSyntacticModifierFlags(node, flags) { return getSyntacticModifierFlags(node) & flags; } function getModifierFlagsWorker(node, includeJSDoc, alwaysIncludeJSDoc) { if (node.kind >= 0 && node.kind <= 166) { return 0; } if (!(node.modifierFlagsCache & 536870912)) { node.modifierFlagsCache = getSyntacticModifierFlagsNoCache(node) | 536870912; } if (alwaysIncludeJSDoc || includeJSDoc && isInJSFile(node)) { if (!(node.modifierFlagsCache & 268435456) && node.parent) { node.modifierFlagsCache |= getRawJSDocModifierFlagsNoCache(node) | 268435456; } return selectEffectiveModifierFlags(node.modifierFlagsCache); } return selectSyntacticModifierFlags(node.modifierFlagsCache); } function getEffectiveModifierFlags(node) { return getModifierFlagsWorker(node, true); } function getEffectiveModifierFlagsAlwaysIncludeJSDoc(node) { return getModifierFlagsWorker(node, true, true); } function getSyntacticModifierFlags(node) { return getModifierFlagsWorker(node, false); } function getRawJSDocModifierFlagsNoCache(node) { let flags = 0; if (!!node.parent && !isParameter(node)) { if (isInJSFile(node)) { if (getJSDocPublicTagNoCache(node)) flags |= 8388608; if (getJSDocPrivateTagNoCache(node)) flags |= 16777216; if (getJSDocProtectedTagNoCache(node)) flags |= 33554432; if (getJSDocReadonlyTagNoCache(node)) flags |= 67108864; if (getJSDocOverrideTagNoCache(node)) flags |= 134217728; } if (getJSDocDeprecatedTagNoCache(node)) flags |= 65536; } return flags; } function selectSyntacticModifierFlags(flags) { return flags & 65535; } function selectEffectiveModifierFlags(flags) { return flags & 131071 | (flags & 260046848) >>> 23; } function getJSDocModifierFlagsNoCache(node) { return selectEffectiveModifierFlags(getRawJSDocModifierFlagsNoCache(node)); } function getEffectiveModifierFlagsNoCache(node) { return getSyntacticModifierFlagsNoCache(node) | getJSDocModifierFlagsNoCache(node); } function getSyntacticModifierFlagsNoCache(node) { let flags = canHaveModifiers(node) ? modifiersToFlags(node.modifiers) : 0; if (node.flags & 8 || node.kind === 80 && node.flags & 4096) { flags |= 32; } return flags; } function modifiersToFlags(modifiers) { let flags = 0; if (modifiers) { for (const modifier of modifiers) { flags |= modifierToFlag(modifier.kind); } } return flags; } function modifierToFlag(token) { switch (token) { case 126: return 256; case 125: return 1; case 124: return 4; case 123: return 2; case 128: return 64; case 129: return 512; case 95: return 32; case 138: return 128; case 87: return 4096; case 90: return 2048; case 134: return 1024; case 148: return 8; case 164: return 16; case 103: return 8192; case 147: return 16384; case 171: return 32768; } return 0; } function isBinaryLogicalOperator(token) { return token === 57 || token === 56; } function isLogicalOperator(token) { return isBinaryLogicalOperator(token) || token === 54; } function isLogicalOrCoalescingAssignmentOperator(token) { return token === 76 || token === 77 || token === 78; } function isLogicalOrCoalescingAssignmentExpression(expr) { return isBinaryExpression(expr) && isLogicalOrCoalescingAssignmentOperator(expr.operatorToken.kind); } function isLogicalOrCoalescingBinaryOperator(token) { return isBinaryLogicalOperator(token) || token === 61; } function isLogicalOrCoalescingBinaryExpression(expr) { return isBinaryExpression(expr) && isLogicalOrCoalescingBinaryOperator(expr.operatorToken.kind); } function isAssignmentOperator(token) { return token >= 64 && token <= 79; } function tryGetClassExtendingExpressionWithTypeArguments(node) { const cls = tryGetClassImplementingOrExtendingExpressionWithTypeArguments(node); return cls && !cls.isImplements ? cls.class : undefined; } function tryGetClassImplementingOrExtendingExpressionWithTypeArguments(node) { if (isExpressionWithTypeArguments(node)) { if (isHeritageClause(node.parent) && isClassLike(node.parent.parent)) { return { class: node.parent.parent, isImplements: node.parent.token === 119 }; } if (isJSDocAugmentsTag(node.parent)) { const host = getEffectiveJSDocHost(node.parent); if (host && isClassLike(host)) { return { class: host, isImplements: false }; } } } return; } function isAssignmentExpression(node, excludeCompoundAssignment) { return isBinaryExpression(node) && (excludeCompoundAssignment ? node.operatorToken.kind === 64 : isAssignmentOperator(node.operatorToken.kind)) && isLeftHandSideExpression(node.left); } function isDestructuringAssignment(node) { if (isAssignmentExpression(node, true)) { const kind = node.left.kind; return kind === 211 || kind === 210; } return false; } function isExpressionWithTypeArgumentsInClassExtendsClause(node) { return tryGetClassExtendingExpressionWithTypeArguments(node) !== undefined; } function isEntityNameExpression(node) { return node.kind === 80 || isPropertyAccessEntityNameExpression(node); } function getFirstIdentifier(node) { switch (node.kind) { case 80: return node; case 167: do { node = node.left; } while (node.kind !== 80); return node; case 212: do { node = node.expression; } while (node.kind !== 80); return node; } } function isDottedName(node) { return node.kind === 80 || node.kind === 110 || node.kind === 108 || node.kind === 237 || node.kind === 212 && isDottedName(node.expression) || node.kind === 218 && isDottedName(node.expression); } function isPropertyAccessEntityNameExpression(node) { return isPropertyAccessExpression(node) && isIdentifier(node.name) && isEntityNameExpression(node.expression); } function tryGetPropertyAccessOrIdentifierToString(expr) { if (isPropertyAccessExpression(expr)) { const baseStr = tryGetPropertyAccessOrIdentifierToString(expr.expression); if (baseStr !== undefined) { return baseStr + "." + entityNameToString(expr.name); } } else if (isElementAccessExpression(expr)) { const baseStr = tryGetPropertyAccessOrIdentifierToString(expr.expression); if (baseStr !== undefined && isPropertyName(expr.argumentExpression)) { return baseStr + "." + getPropertyNameForPropertyNameNode(expr.argumentExpression); } } else if (isIdentifier(expr)) { return unescapeLeadingUnderscores(expr.escapedText); } else if (isJsxNamespacedName(expr)) { return getTextOfJsxNamespacedName(expr); } return; } function isPrototypeAccess(node) { return isBindableStaticAccessExpression(node) && getElementOrPropertyAccessName(node) === "prototype"; } function isRightSideOfQualifiedNameOrPropertyAccess(node) { return node.parent.kind === 167 && node.parent.right === node || node.parent.kind === 212 && node.parent.name === node || node.parent.kind === 237 && node.parent.name === node; } function isRightSideOfAccessExpression(node) { return !!node.parent && (isPropertyAccessExpression(node.parent) && node.parent.name === node || isElementAccessExpression(node.parent) && node.parent.argumentExpression === node); } function isRightSideOfQualifiedNameOrPropertyAccessOrJSDocMemberName(node) { return isQualifiedName(node.parent) && node.parent.right === node || isPropertyAccessExpression(node.parent) && node.parent.name === node || isJSDocMemberName(node.parent) && node.parent.right === node; } function isInstanceOfExpression(node) { return isBinaryExpression(node) && node.operatorToken.kind === 104; } function isRightSideOfInstanceofExpression(node) { return isInstanceOfExpression(node.parent) && node === node.parent.right; } function isEmptyObjectLiteral(expression) { return expression.kind === 211 && expression.properties.length === 0; } function isEmptyArrayLiteral(expression) { return expression.kind === 210 && expression.elements.length === 0; } function getLocalSymbolForExportDefault(symbol) { if (!isExportDefaultSymbol(symbol) || !symbol.declarations) return; for (const decl of symbol.declarations) { if (decl.localSymbol) return decl.localSymbol; } return; } function isExportDefaultSymbol(symbol) { return symbol && length(symbol.declarations) > 0 && hasSyntacticModifier(symbol.declarations[0], 2048); } function tryExtractTSExtension(fileName) { return find(supportedTSExtensionsForExtractExtension, (extension) => fileExtensionIs(fileName, extension)); } function getExpandedCharCodes(input) { const output = []; const length2 = input.length; for (let i = 0;i < length2; i++) { const charCode = input.charCodeAt(i); if (charCode < 128) { output.push(charCode); } else if (charCode < 2048) { output.push(charCode >> 6 | 192); output.push(charCode & 63 | 128); } else if (charCode < 65536) { output.push(charCode >> 12 | 224); output.push(charCode >> 6 & 63 | 128); output.push(charCode & 63 | 128); } else if (charCode < 131072) { output.push(charCode >> 18 | 240); output.push(charCode >> 12 & 63 | 128); output.push(charCode >> 6 & 63 | 128); output.push(charCode & 63 | 128); } else { Debug.assert(false, "Unexpected code point"); } } return output; } var base64Digits = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/="; function convertToBase64(input) { let result = ""; const charCodes = getExpandedCharCodes(input); let i = 0; const length2 = charCodes.length; let byte1, byte2, byte3, byte4; while (i < length2) { byte1 = charCodes[i] >> 2; byte2 = (charCodes[i] & 3) << 4 | charCodes[i + 1] >> 4; byte3 = (charCodes[i + 1] & 15) << 2 | charCodes[i + 2] >> 6; byte4 = charCodes[i + 2] & 63; if (i + 1 >= length2) { byte3 = byte4 = 64; } else if (i + 2 >= length2) { byte4 = 64; } result += base64Digits.charAt(byte1) + base64Digits.charAt(byte2) + base64Digits.charAt(byte3) + base64Digits.charAt(byte4); i += 3; } return result; } function getStringFromExpandedCharCodes(codes) { let output = ""; let i = 0; const length2 = codes.length; while (i < length2) { const charCode = codes[i]; if (charCode < 128) { output += String.fromCharCode(charCode); i++; } else if ((charCode & 192) === 192) { let value = charCode & 63; i++; let nextCode = codes[i]; while ((nextCode & 192) === 128) { value = value << 6 | nextCode & 63; i++; nextCode = codes[i]; } output += String.fromCharCode(value); } else { output += String.fromCharCode(charCode); i++; } } return output; } function base64encode(host, input) { if (host && host.base64encode) { return host.base64encode(input); } return convertToBase64(input); } function base64decode(host, input) { if (host && host.base64decode) { return host.base64decode(input); } const length2 = input.length; const expandedCharCodes = []; let i = 0; while (i < length2) { if (input.charCodeAt(i) === base64Digits.charCodeAt(64)) { break; } const ch1 = base64Digits.indexOf(input[i]); const ch2 = base64Digits.indexOf(input[i + 1]); const ch3 = base64Digits.indexOf(input[i + 2]); const ch4 = base64Digits.indexOf(input[i + 3]); const code1 = (ch1 & 63) << 2 | ch2 >> 4 & 3; const code2 = (ch2 & 15) << 4 | ch3 >> 2 & 15; const code3 = (ch3 & 3) << 6 | ch4 & 63; if (code2 === 0 && ch3 !== 0) { expandedCharCodes.push(code1); } else if (code3 === 0 && ch4 !== 0) { expandedCharCodes.push(code1, code2); } else { expandedCharCodes.push(code1, code2, code3); } i += 4; } return getStringFromExpandedCharCodes(expandedCharCodes); } function readJsonOrUndefined(path, hostOrText) { const jsonText = isString(hostOrText) ? hostOrText : hostOrText.readFile(path); if (!jsonText) return; let result = tryParseJson(jsonText); if (result === undefined) { const looseResult = parseConfigFileTextToJson(path, jsonText); if (!looseResult.error) { result = looseResult.config; } } return result; } function readJson(path, host) { return readJsonOrUndefined(path, host) || {}; } function tryParseJson(text) { try { return JSON.parse(text); } catch { return; } } function directoryProbablyExists(directoryName, host) { return !host.directoryExists || host.directoryExists(directoryName); } var carriageReturnLineFeed = `\r `; var lineFeed = ` `; function getNewLineCharacter(options) { switch (options.newLine) { case 0: return carriageReturnLineFeed; case 1: case undefined: return lineFeed; } } function createRange(pos, end = pos) { Debug.assert(end >= pos || end === -1); return { pos, end }; } function moveRangeEnd(range, end) { return createRange(range.pos, end); } function moveRangePos(range, pos) { return createRange(pos, range.end); } function moveRangePastDecorators(node) { const lastDecorator = canHaveModifiers(node) ? findLast(node.modifiers, isDecorator) : undefined; return lastDecorator && !positionIsSynthesized(lastDecorator.end) ? moveRangePos(node, lastDecorator.end) : node; } function moveRangePastModifiers(node) { if (isPropertyDeclaration(node) || isMethodDeclaration(node)) { return moveRangePos(node, node.name.pos); } const lastModifier = canHaveModifiers(node) ? lastOrUndefined(node.modifiers) : undefined; return lastModifier && !positionIsSynthesized(lastModifier.end) ? moveRangePos(node, lastModifier.end) : moveRangePastDecorators(node); } function createTokenRange(pos, token) { return createRange(pos, pos + tokenToString(token).length); } function rangeIsOnSingleLine(range, sourceFile) { return rangeStartIsOnSameLineAsRangeEnd(range, range, sourceFile); } function rangeStartPositionsAreOnSameLine(range1, range2, sourceFile) { return positionsAreOnSameLine(getStartPositionOfRange(range1, sourceFile, false), getStartPositionOfRange(range2, sourceFile, false), sourceFile); } function rangeEndPositionsAreOnSameLine(range1, range2, sourceFile) { return positionsAreOnSameLine(range1.end, range2.end, sourceFile); } function rangeStartIsOnSameLineAsRangeEnd(range1, range2, sourceFile) { return positionsAreOnSameLine(getStartPositionOfRange(range1, sourceFile, false), range2.end, sourceFile); } function rangeEndIsOnSameLineAsRangeStart(range1, range2, sourceFile) { return positionsAreOnSameLine(range1.end, getStartPositionOfRange(range2, sourceFile, false), sourceFile); } function getLinesBetweenRangeEndAndRangeStart(range1, range2, sourceFile, includeSecondRangeComments) { const range2Start = getStartPositionOfRange(range2, sourceFile, includeSecondRangeComments); return getLinesBetweenPositions(sourceFile, range1.end, range2Start); } function getLinesBetweenRangeEndPositions(range1, range2, sourceFile) { return getLinesBetweenPositions(sourceFile, range1.end, range2.end); } function isNodeArrayMultiLine(list, sourceFile) { return !positionsAreOnSameLine(list.pos, list.end, sourceFile); } function positionsAreOnSameLine(pos1, pos2, sourceFile) { return getLinesBetweenPositions(sourceFile, pos1, pos2) === 0; } function getStartPositionOfRange(range, sourceFile, includeComments) { return positionIsSynthesized(range.pos) ? -1 : skipTrivia2(sourceFile.text, range.pos, false, includeComments); } function getLinesBetweenPositionAndPrecedingNonWhitespaceCharacter(pos, stopPos, sourceFile, includeComments) { const startPos = skipTrivia2(sourceFile.text, pos, false, includeComments); const prevPos = getPreviousNonWhitespacePosition(startPos, stopPos, sourceFile); return getLinesBetweenPositions(sourceFile, prevPos ?? stopPos, startPos); } function getLinesBetweenPositionAndNextNonWhitespaceCharacter(pos, stopPos, sourceFile, includeComments) { const nextPos = skipTrivia2(sourceFile.text, pos, false, includeComments); return getLinesBetweenPositions(sourceFile, pos, Math.min(stopPos, nextPos)); } function rangeContainsRange(r1, r2) { return startEndContainsRange(r1.pos, r1.end, r2); } function startEndContainsRange(start, end, range) { return start <= range.pos && end >= range.end; } function getPreviousNonWhitespacePosition(pos, stopPos = 0, sourceFile) { while (pos-- > stopPos) { if (!isWhiteSpaceLike(sourceFile.text.charCodeAt(pos))) { return pos; } } } function isDeclarationNameOfEnumOrNamespace(node) { const parseNode = getParseTreeNode(node); if (parseNode) { switch (parseNode.parent.kind) { case 267: case 268: return parseNode === parseNode.parent.name; } } return false; } function getInitializedVariables(node) { return filter(node.declarations, isInitializedVariable); } function isInitializedVariable(node) { return isVariableDeclaration(node) && node.initializer !== undefined; } function isWatchSet(options) { return options.watch && hasProperty(options, "watch"); } function closeFileWatcher(watcher) { watcher.close(); } function getCheckFlags(symbol) { return symbol.flags & 33554432 ? symbol.links.checkFlags : 0; } function getDeclarationModifierFlagsFromSymbol(s, isWrite = false) { if (s.valueDeclaration) { const declaration = isWrite && s.declarations && find(s.declarations, isSetAccessorDeclaration) || s.flags & 32768 && find(s.declarations, isGetAccessorDeclaration) || s.valueDeclaration; const flags = getCombinedModifierFlags(declaration); return s.parent && s.parent.flags & 32 ? flags : flags & ~7; } if (getCheckFlags(s) & 6) { const checkFlags = s.links.checkFlags; const accessModifier = checkFlags & 1024 ? 2 : checkFlags & 256 ? 1 : 4; const staticModifier = checkFlags & 2048 ? 256 : 0; return accessModifier | staticModifier; } if (s.flags & 4194304) { return 1 | 256; } return 0; } function skipAlias(symbol, checker) { return symbol.flags & 2097152 ? checker.getAliasedSymbol(symbol) : symbol; } function getCombinedLocalAndExportSymbolFlags(symbol) { return symbol.exportSymbol ? symbol.exportSymbol.flags | symbol.flags : symbol.flags; } function isWriteOnlyAccess(node) { return accessKind(node) === 1; } function isWriteAccess(node) { return accessKind(node) !== 0; } function accessKind(node) { const { parent: parent2 } = node; switch (parent2 == null ? undefined : parent2.kind) { case 218: return accessKind(parent2); case 226: case 225: const { operator } = parent2; return operator === 46 || operator === 47 ? 2 : 0; case 227: const { left, operatorToken } = parent2; return left === node && isAssignmentOperator(operatorToken.kind) ? operatorToken.kind === 64 ? 1 : 2 : 0; case 212: return parent2.name !== node ? 0 : accessKind(parent2); case 304: { const parentAccess = accessKind(parent2.parent); return node === parent2.name ? reverseAccessKind(parentAccess) : parentAccess; } case 305: return node === parent2.objectAssignmentInitializer ? 0 : accessKind(parent2.parent); case 210: return accessKind(parent2); case 250: case 251: return node === parent2.initializer ? 1 : 0; default: return 0; } } function reverseAccessKind(a) { switch (a) { case 0: return 1; case 1: return 0; case 2: return 2; default: return Debug.assertNever(a); } } function compareDataObjects(dst, src) { if (!dst || !src || Object.keys(dst).length !== Object.keys(src).length) { return false; } for (const e in dst) { if (typeof dst[e] === "object") { if (!compareDataObjects(dst[e], src[e])) { return false; } } else if (typeof dst[e] !== "function") { if (dst[e] !== src[e]) { return false; } } } return true; } function clearMap(map2, onDeleteValue) { map2.forEach(onDeleteValue); map2.clear(); } function mutateMapSkippingNewValues(map2, newMap, options) { const { onDeleteValue, onExistingValue } = options; map2.forEach((existingValue, key) => { var _a; if (!(newMap == null ? undefined : newMap.has(key))) { map2.delete(key); onDeleteValue(existingValue, key); } else if (onExistingValue) { onExistingValue(existingValue, (_a = newMap.get) == null ? undefined : _a.call(newMap, key), key); } }); } function mutateMap(map2, newMap, options) { mutateMapSkippingNewValues(map2, newMap, options); const { createNewValue } = options; newMap == null || newMap.forEach((valueInNewMap, key) => { if (!map2.has(key)) { map2.set(key, createNewValue(key, valueInNewMap)); } }); } function isAbstractConstructorSymbol(symbol) { if (symbol.flags & 32) { const declaration = getClassLikeDeclarationOfSymbol(symbol); return !!declaration && hasSyntacticModifier(declaration, 64); } return false; } function getClassLikeDeclarationOfSymbol(symbol) { var _a; return (_a = symbol.declarations) == null ? undefined : _a.find(isClassLike); } function getObjectFlags(type) { return type.flags & 403963917 ? type.objectFlags : 0; } function isUMDExportSymbol(symbol) { return !!symbol && !!symbol.declarations && !!symbol.declarations[0] && isNamespaceExportDeclaration(symbol.declarations[0]); } function showModuleSpecifier({ moduleSpecifier }) { return isStringLiteral(moduleSpecifier) ? moduleSpecifier.text : getTextOfNode(moduleSpecifier); } function getLastChild(node) { let lastChild; forEachChild(node, (child) => { if (nodeIsPresent(child)) lastChild = child; }, (children) => { for (let i = children.length - 1;i >= 0; i--) { if (nodeIsPresent(children[i])) { lastChild = children[i]; break; } } }); return lastChild; } function addToSeen(seen, key) { if (seen.has(key)) { return false; } seen.add(key); return true; } function isObjectTypeDeclaration(node) { return isClassLike(node) || isInterfaceDeclaration(node) || isTypeLiteralNode(node); } function isTypeNodeKind(kind) { return kind >= 183 && kind <= 206 || kind === 133 || kind === 159 || kind === 150 || kind === 163 || kind === 151 || kind === 136 || kind === 154 || kind === 155 || kind === 116 || kind === 157 || kind === 146 || kind === 141 || kind === 234 || kind === 313 || kind === 314 || kind === 315 || kind === 316 || kind === 317 || kind === 318 || kind === 319; } function isAccessExpression(node) { return node.kind === 212 || node.kind === 213; } function getNameOfAccessExpression(node) { if (node.kind === 212) { return node.name; } Debug.assert(node.kind === 213); return node.argumentExpression; } function isNamedImportsOrExports(node) { return node.kind === 276 || node.kind === 280; } function getLeftmostAccessExpression(expr) { while (isAccessExpression(expr)) { expr = expr.expression; } return expr; } function forEachNameInAccessChainWalkingLeft(name, action) { if (isAccessExpression(name.parent) && isRightSideOfAccessExpression(name)) { return walkAccessExpression(name.parent); } function walkAccessExpression(access) { if (access.kind === 212) { const res = action(access.name); if (res !== undefined) { return res; } } else if (access.kind === 213) { if (isIdentifier(access.argumentExpression) || isStringLiteralLike(access.argumentExpression)) { const res = action(access.argumentExpression); if (res !== undefined) { return res; } } else { return; } } if (isAccessExpression(access.expression)) { return walkAccessExpression(access.expression); } if (isIdentifier(access.expression)) { return action(access.expression); } return; } } function getLeftmostExpression(node, stopAtCallExpressions) { while (true) { switch (node.kind) { case 226: node = node.operand; continue; case 227: node = node.left; continue; case 228: node = node.condition; continue; case 216: node = node.tag; continue; case 214: if (stopAtCallExpressions) { return node; } case 235: case 213: case 212: case 236: case 356: case 239: node = node.expression; continue; } return node; } } function Symbol4(flags, name) { this.flags = flags; this.escapedName = name; this.declarations = undefined; this.valueDeclaration = undefined; this.id = 0; this.mergeId = 0; this.parent = undefined; this.members = undefined; this.exports = undefined; this.exportSymbol = undefined; this.constEnumOnlyModule = undefined; this.isReferenced = undefined; this.lastAssignmentPos = undefined; this.links = undefined; } function Type3(checker, flags) { this.flags = flags; if (Debug.isDebugging || tracing) { this.checker = checker; } } function Signature2(checker, flags) { this.flags = flags; if (Debug.isDebugging) { this.checker = checker; } } function Node4(kind, pos, end) { this.pos = pos; this.end = end; this.kind = kind; this.id = 0; this.flags = 0; this.modifierFlagsCache = 0; this.transformFlags = 0; this.parent = undefined; this.original = undefined; this.emitNode = undefined; } function Token(kind, pos, end) { this.pos = pos; this.end = end; this.kind = kind; this.id = 0; this.flags = 0; this.transformFlags = 0; this.parent = undefined; this.emitNode = undefined; } function Identifier2(kind, pos, end) { this.pos = pos; this.end = end; this.kind = kind; this.id = 0; this.flags = 0; this.transformFlags = 0; this.parent = undefined; this.original = undefined; this.emitNode = undefined; } function SourceMapSource(fileName, text, skipTrivia22) { this.fileName = fileName; this.text = text; this.skipTrivia = skipTrivia22 || ((pos) => pos); } var objectAllocator = { getNodeConstructor: () => Node4, getTokenConstructor: () => Token, getIdentifierConstructor: () => Identifier2, getPrivateIdentifierConstructor: () => Node4, getSourceFileConstructor: () => Node4, getSymbolConstructor: () => Symbol4, getTypeConstructor: () => Type3, getSignatureConstructor: () => Signature2, getSourceMapSourceConstructor: () => SourceMapSource }; var objectAllocatorPatchers = []; function addObjectAllocatorPatcher(fn) { objectAllocatorPatchers.push(fn); fn(objectAllocator); } function setObjectAllocator(alloc) { Object.assign(objectAllocator, alloc); forEach(objectAllocatorPatchers, (fn) => fn(objectAllocator)); } function formatStringFromArgs(text, args) { return text.replace(/\{(\d+)\}/g, (_match, index) => "" + Debug.checkDefined(args[+index])); } var localizedDiagnosticMessages; function setLocalizedDiagnosticMessages(messages) { localizedDiagnosticMessages = messages; } function maybeSetLocalizedDiagnosticMessages(getMessages) { if (!localizedDiagnosticMessages && getMessages) { localizedDiagnosticMessages = getMessages(); } } function getLocaleSpecificMessage(message) { return localizedDiagnosticMessages && localizedDiagnosticMessages[message.key] || message.message; } function createDetachedDiagnostic(fileName, sourceText, start, length2, message, ...args) { if (start + length2 > sourceText.length) { length2 = sourceText.length - start; } assertDiagnosticLocation(sourceText, start, length2); let text = getLocaleSpecificMessage(message); if (some(args)) { text = formatStringFromArgs(text, args); } return { file: undefined, start, length: length2, messageText: text, category: message.category, code: message.code, reportsUnnecessary: message.reportsUnnecessary, fileName }; } function isDiagnosticWithDetachedLocation(diagnostic) { return diagnostic.file === undefined && diagnostic.start !== undefined && diagnostic.length !== undefined && typeof diagnostic.fileName === "string"; } function attachFileToDiagnostic(diagnostic, file) { const fileName = file.fileName || ""; const length2 = file.text.length; Debug.assertEqual(diagnostic.fileName, fileName); Debug.assertLessThanOrEqual(diagnostic.start, length2); Debug.assertLessThanOrEqual(diagnostic.start + diagnostic.length, length2); const diagnosticWithLocation = { file, start: diagnostic.start, length: diagnostic.length, messageText: diagnostic.messageText, category: diagnostic.category, code: diagnostic.code, reportsUnnecessary: diagnostic.reportsUnnecessary }; if (diagnostic.relatedInformation) { diagnosticWithLocation.relatedInformation = []; for (const related of diagnostic.relatedInformation) { if (isDiagnosticWithDetachedLocation(related) && related.fileName === fileName) { Debug.assertLessThanOrEqual(related.start, length2); Debug.assertLessThanOrEqual(related.start + related.length, length2); diagnosticWithLocation.relatedInformation.push(attachFileToDiagnostic(related, file)); } else { diagnosticWithLocation.relatedInformation.push(related); } } } return diagnosticWithLocation; } function attachFileToDiagnostics(diagnostics, file) { const diagnosticsWithLocation = []; for (const diagnostic of diagnostics) { diagnosticsWithLocation.push(attachFileToDiagnostic(diagnostic, file)); } return diagnosticsWithLocation; } function createFileDiagnostic(file, start, length2, message, ...args) { assertDiagnosticLocation(file.text, start, length2); let text = getLocaleSpecificMessage(message); if (some(args)) { text = formatStringFromArgs(text, args); } return { file, start, length: length2, messageText: text, category: message.category, code: message.code, reportsUnnecessary: message.reportsUnnecessary, reportsDeprecated: message.reportsDeprecated }; } function formatMessage(message, ...args) { let text = getLocaleSpecificMessage(message); if (some(args)) { text = formatStringFromArgs(text, args); } return text; } function createCompilerDiagnostic(message, ...args) { let text = getLocaleSpecificMessage(message); if (some(args)) { text = formatStringFromArgs(text, args); } return { file: undefined, start: undefined, length: undefined, messageText: text, category: message.category, code: message.code, reportsUnnecessary: message.reportsUnnecessary, reportsDeprecated: message.reportsDeprecated }; } function createCompilerDiagnosticFromMessageChain(chain, relatedInformation) { return { file: undefined, start: undefined, length: undefined, code: chain.code, category: chain.category, messageText: chain.next ? chain : chain.messageText, relatedInformation }; } function chainDiagnosticMessages(details, message, ...args) { let text = getLocaleSpecificMessage(message); if (some(args)) { text = formatStringFromArgs(text, args); } return { messageText: text, category: message.category, code: message.code, next: details === undefined || Array.isArray(details) ? details : [details] }; } function concatenateDiagnosticMessageChains(headChain, tailChain) { let lastChain = headChain; while (lastChain.next) { lastChain = lastChain.next[0]; } lastChain.next = [tailChain]; } function getDiagnosticFilePath(diagnostic) { return diagnostic.file ? diagnostic.file.path : undefined; } function compareDiagnostics(d1, d2) { return compareDiagnosticsSkipRelatedInformation(d1, d2) || compareRelatedInformation(d1, d2) || 0; } function compareDiagnosticsSkipRelatedInformation(d1, d2) { const code1 = getDiagnosticCode(d1); const code2 = getDiagnosticCode(d2); return compareStringsCaseSensitive(getDiagnosticFilePath(d1), getDiagnosticFilePath(d2)) || compareValues(d1.start, d2.start) || compareValues(d1.length, d2.length) || compareValues(code1, code2) || compareMessageText(d1, d2) || 0; } function compareRelatedInformation(d1, d2) { if (!d1.relatedInformation && !d2.relatedInformation) { return 0; } if (d1.relatedInformation && d2.relatedInformation) { return compareValues(d2.relatedInformation.length, d1.relatedInformation.length) || forEach(d1.relatedInformation, (d1i, index) => { const d2i = d2.relatedInformation[index]; return compareDiagnostics(d1i, d2i); }) || 0; } return d1.relatedInformation ? -1 : 1; } function compareMessageText(d1, d2) { let headMsg1 = getDiagnosticMessage(d1); let headMsg2 = getDiagnosticMessage(d2); if (typeof headMsg1 !== "string") { headMsg1 = headMsg1.messageText; } if (typeof headMsg2 !== "string") { headMsg2 = headMsg2.messageText; } const chain1 = typeof d1.messageText !== "string" ? d1.messageText.next : undefined; const chain2 = typeof d2.messageText !== "string" ? d2.messageText.next : undefined; let res = compareStringsCaseSensitive(headMsg1, headMsg2); if (res) { return res; } res = compareMessageChain(chain1, chain2); if (res) { return res; } if (d1.canonicalHead && !d2.canonicalHead) { return -1; } if (d2.canonicalHead && !d1.canonicalHead) { return 1; } return 0; } function compareMessageChain(c1, c2) { if (c1 === undefined && c2 === undefined) { return 0; } if (c1 === undefined) { return 1; } if (c2 === undefined) { return -1; } return compareMessageChainSize(c1, c2) || compareMessageChainContent(c1, c2); } function compareMessageChainSize(c1, c2) { if (c1 === undefined && c2 === undefined) { return 0; } if (c1 === undefined) { return 1; } if (c2 === undefined) { return -1; } let res = compareValues(c2.length, c1.length); if (res) { return res; } for (let i = 0;i < c2.length; i++) { res = compareMessageChainSize(c1[i].next, c2[i].next); if (res) { return res; } } return 0; } function compareMessageChainContent(c1, c2) { let res; for (let i = 0;i < c2.length; i++) { res = compareStringsCaseSensitive(c1[i].messageText, c2[i].messageText); if (res) { return res; } if (c1[i].next === undefined) { continue; } res = compareMessageChainContent(c1[i].next, c2[i].next); if (res) { return res; } } return 0; } function diagnosticsEqualityComparer(d1, d2) { const code1 = getDiagnosticCode(d1); const code2 = getDiagnosticCode(d2); const msg1 = getDiagnosticMessage(d1); const msg2 = getDiagnosticMessage(d2); return compareStringsCaseSensitive(getDiagnosticFilePath(d1), getDiagnosticFilePath(d2)) === 0 && compareValues(d1.start, d2.start) === 0 && compareValues(d1.length, d2.length) === 0 && compareValues(code1, code2) === 0 && messageTextEqualityComparer(msg1, msg2); } function getDiagnosticCode(d) { var _a; return ((_a = d.canonicalHead) == null ? undefined : _a.code) || d.code; } function getDiagnosticMessage(d) { var _a; return ((_a = d.canonicalHead) == null ? undefined : _a.messageText) || d.messageText; } function messageTextEqualityComparer(m1, m2) { const t1 = typeof m1 === "string" ? m1 : m1.messageText; const t2 = typeof m2 === "string" ? m2 : m2.messageText; return compareStringsCaseSensitive(t1, t2) === 0; } function getLanguageVariant(scriptKind) { return scriptKind === 4 || scriptKind === 2 || scriptKind === 1 || scriptKind === 6 ? 1 : 0; } function walkTreeForJSXTags(node) { if (!(node.transformFlags & 2)) return; return isJsxOpeningLikeElement(node) || isJsxFragment(node) ? node : forEachChild(node, walkTreeForJSXTags); } function isFileModuleFromUsingJSXTag(file) { return !file.isDeclarationFile ? walkTreeForJSXTags(file) : undefined; } function isFileForcedToBeModuleByFormat(file, options) { return (getImpliedNodeFormatForEmitWorker(file, options) === 99 || fileExtensionIsOneOf(file.fileName, [".cjs", ".cts", ".mjs", ".mts"])) && !file.isDeclarationFile ? true : undefined; } function getSetExternalModuleIndicator(options) { switch (getEmitModuleDetectionKind(options)) { case 3: return (file) => { file.externalModuleIndicator = isFileProbablyExternalModule(file) || !file.isDeclarationFile || undefined; }; case 1: return (file) => { file.externalModuleIndicator = isFileProbablyExternalModule(file); }; case 2: const checks = [isFileProbablyExternalModule]; if (options.jsx === 4 || options.jsx === 5) { checks.push(isFileModuleFromUsingJSXTag); } checks.push(isFileForcedToBeModuleByFormat); const combined = or(...checks); const callback = (file) => void (file.externalModuleIndicator = combined(file, options)); return callback; } } function importSyntaxAffectsModuleResolution(options) { const moduleResolution = getEmitModuleResolutionKind(options); return 3 <= moduleResolution && moduleResolution <= 99 || getResolvePackageJsonExports(options) || getResolvePackageJsonImports(options); } function usesWildcardTypes(options) { return some(options.types, (t) => t === "*"); } function createComputedCompilerOptions(options) { return options; } var _computedOptions = createComputedCompilerOptions({ allowImportingTsExtensions: { dependencies: ["rewriteRelativeImportExtensions"], computeValue: (compilerOptions) => { return !!(compilerOptions.allowImportingTsExtensions || compilerOptions.rewriteRelativeImportExtensions); } }, target: { dependencies: [], computeValue: (compilerOptions) => { const target = compilerOptions.target === 0 ? undefined : compilerOptions.target; return target ?? 12; } }, module: { dependencies: ["target"], computeValue: (compilerOptions) => { if (typeof compilerOptions.module === "number") { return compilerOptions.module; } const target = _computedOptions.target.computeValue(compilerOptions); if (target === 99) { return 99; } if (target >= 9) { return 7; } if (target >= 7) { return 6; } if (target >= 2) { return 5; } return 1; } }, moduleResolution: { dependencies: ["module", "target"], computeValue: (compilerOptions) => { if (compilerOptions.moduleResolution !== undefined) { return compilerOptions.moduleResolution; } const moduleKind = _computedOptions.module.computeValue(compilerOptions); switch (moduleKind) { case 0: case 2: case 3: case 4: return 1; case 199: return 99; } if (100 <= moduleKind && moduleKind < 199) { return 3; } return 100; } }, moduleDetection: { dependencies: ["module", "target"], computeValue: (compilerOptions) => { if (compilerOptions.moduleDetection !== undefined) { return compilerOptions.moduleDetection; } const moduleKind = _computedOptions.module.computeValue(compilerOptions); return 100 <= moduleKind && moduleKind <= 199 ? 3 : 2; } }, isolatedModules: { dependencies: ["verbatimModuleSyntax"], computeValue: (compilerOptions) => { return !!(compilerOptions.isolatedModules || compilerOptions.verbatimModuleSyntax); } }, esModuleInterop: { dependencies: [], computeValue: (compilerOptions) => { if (compilerOptions.esModuleInterop !== undefined) { return compilerOptions.esModuleInterop; } return true; } }, allowSyntheticDefaultImports: { dependencies: [], computeValue: (compilerOptions) => { if (compilerOptions.allowSyntheticDefaultImports !== undefined) { return compilerOptions.allowSyntheticDefaultImports; } return true; } }, resolvePackageJsonExports: { dependencies: ["moduleResolution", "module", "target"], computeValue: (compilerOptions) => { const moduleResolution = _computedOptions.moduleResolution.computeValue(compilerOptions); if (!moduleResolutionSupportsPackageJsonExportsAndImports(moduleResolution)) { return false; } if (compilerOptions.resolvePackageJsonExports !== undefined) { return compilerOptions.resolvePackageJsonExports; } switch (moduleResolution) { case 3: case 99: case 100: return true; } return false; } }, resolvePackageJsonImports: { dependencies: ["moduleResolution", "resolvePackageJsonExports", "module", "target"], computeValue: (compilerOptions) => { const moduleResolution = _computedOptions.moduleResolution.computeValue(compilerOptions); if (!moduleResolutionSupportsPackageJsonExportsAndImports(moduleResolution)) { return false; } if (compilerOptions.resolvePackageJsonImports !== undefined) { return compilerOptions.resolvePackageJsonImports; } switch (moduleResolution) { case 3: case 99: case 100: return true; } return false; } }, resolveJsonModule: { dependencies: ["moduleResolution", "module", "target"], computeValue: (compilerOptions) => { if (compilerOptions.resolveJsonModule !== undefined) { return compilerOptions.resolveJsonModule; } switch (_computedOptions.module.computeValue(compilerOptions)) { case 102: case 199: return true; } return _computedOptions.moduleResolution.computeValue(compilerOptions) === 100; } }, declaration: { dependencies: ["composite"], computeValue: (compilerOptions) => { return !!(compilerOptions.declaration || compilerOptions.composite); } }, preserveConstEnums: { dependencies: ["isolatedModules", "verbatimModuleSyntax"], computeValue: (compilerOptions) => { return !!(compilerOptions.preserveConstEnums || _computedOptions.isolatedModules.computeValue(compilerOptions)); } }, incremental: { dependencies: ["composite"], computeValue: (compilerOptions) => { return !!(compilerOptions.incremental || compilerOptions.composite); } }, declarationMap: { dependencies: ["declaration", "composite"], computeValue: (compilerOptions) => { return !!(compilerOptions.declarationMap && _computedOptions.declaration.computeValue(compilerOptions)); } }, allowJs: { dependencies: ["checkJs"], computeValue: (compilerOptions) => { return compilerOptions.allowJs === undefined ? !!compilerOptions.checkJs : compilerOptions.allowJs; } }, useDefineForClassFields: { dependencies: ["target", "module"], computeValue: (compilerOptions) => { return compilerOptions.useDefineForClassFields === undefined ? _computedOptions.target.computeValue(compilerOptions) >= 9 : compilerOptions.useDefineForClassFields; } }, noImplicitAny: { dependencies: ["strict"], computeValue: (compilerOptions) => { return getStrictOptionValue(compilerOptions, "noImplicitAny"); } }, noImplicitThis: { dependencies: ["strict"], computeValue: (compilerOptions) => { return getStrictOptionValue(compilerOptions, "noImplicitThis"); } }, strictNullChecks: { dependencies: ["strict"], computeValue: (compilerOptions) => { return getStrictOptionValue(compilerOptions, "strictNullChecks"); } }, strictFunctionTypes: { dependencies: ["strict"], computeValue: (compilerOptions) => { return getStrictOptionValue(compilerOptions, "strictFunctionTypes"); } }, strictBindCallApply: { dependencies: ["strict"], computeValue: (compilerOptions) => { return getStrictOptionValue(compilerOptions, "strictBindCallApply"); } }, strictPropertyInitialization: { dependencies: ["strict"], computeValue: (compilerOptions) => { return getStrictOptionValue(compilerOptions, "strictPropertyInitialization"); } }, strictBuiltinIteratorReturn: { dependencies: ["strict"], computeValue: (compilerOptions) => { return getStrictOptionValue(compilerOptions, "strictBuiltinIteratorReturn"); } }, alwaysStrict: { dependencies: [], computeValue: (compilerOptions) => { return compilerOptions.alwaysStrict !== false; } }, useUnknownInCatchVariables: { dependencies: ["strict"], computeValue: (compilerOptions) => { return getStrictOptionValue(compilerOptions, "useUnknownInCatchVariables"); } } }); var computedOptions = _computedOptions; var getAllowImportingTsExtensions = _computedOptions.allowImportingTsExtensions.computeValue; var getEmitScriptTarget = _computedOptions.target.computeValue; var getEmitModuleKind = _computedOptions.module.computeValue; var getEmitModuleResolutionKind = _computedOptions.moduleResolution.computeValue; var getEmitModuleDetectionKind = _computedOptions.moduleDetection.computeValue; var getIsolatedModules = _computedOptions.isolatedModules.computeValue; var getESModuleInterop = _computedOptions.esModuleInterop.computeValue; var getAllowSyntheticDefaultImports = _computedOptions.allowSyntheticDefaultImports.computeValue; var getResolvePackageJsonExports = _computedOptions.resolvePackageJsonExports.computeValue; var getResolvePackageJsonImports = _computedOptions.resolvePackageJsonImports.computeValue; var getResolveJsonModule = _computedOptions.resolveJsonModule.computeValue; var getEmitDeclarations = _computedOptions.declaration.computeValue; var shouldPreserveConstEnums = _computedOptions.preserveConstEnums.computeValue; var isIncrementalCompilation = _computedOptions.incremental.computeValue; var getAreDeclarationMapsEnabled = _computedOptions.declarationMap.computeValue; var getAllowJSCompilerOption = _computedOptions.allowJs.computeValue; var getUseDefineForClassFields = _computedOptions.useDefineForClassFields.computeValue; var getAlwaysStrict = _computedOptions.alwaysStrict.computeValue; function emitModuleKindIsNonNodeESM(moduleKind) { return moduleKind >= 5 && moduleKind <= 99; } function hasJsonModuleEmitEnabled(options) { switch (getEmitModuleKind(options)) { case 0: case 4: case 3: return false; } return true; } function moduleResolutionSupportsPackageJsonExportsAndImports(moduleResolution) { return moduleResolution >= 3 && moduleResolution <= 99 || moduleResolution === 100; } function moduleSupportsImportAttributes(moduleKind) { return 101 <= moduleKind && moduleKind <= 199 || moduleKind === 200 || moduleKind === 99; } function getStrictOptionValue(compilerOptions, flag) { return compilerOptions[flag] === undefined ? compilerOptions.strict !== false : !!compilerOptions[flag]; } function getNameOfScriptTarget(scriptTarget) { return forEachEntry(targetOptionDeclaration.type, (value, key) => value === scriptTarget ? key : undefined); } function getEmitStandardClassFields(compilerOptions) { return compilerOptions.useDefineForClassFields !== false && getEmitScriptTarget(compilerOptions) >= 9; } function compilerOptionsAffectSemanticDiagnostics(newOptions, oldOptions) { return optionsHaveChanges(oldOptions, newOptions, semanticDiagnosticsOptionDeclarations); } function compilerOptionsAffectEmit(newOptions, oldOptions) { return optionsHaveChanges(oldOptions, newOptions, affectsEmitOptionDeclarations); } function compilerOptionsAffectDeclarationPath(newOptions, oldOptions) { return optionsHaveChanges(oldOptions, newOptions, affectsDeclarationPathOptionDeclarations); } function getCompilerOptionValue(options, option) { return option.strictFlag ? getStrictOptionValue(options, option.name) : option.allowJsFlag ? getAllowJSCompilerOption(options) : options[option.name]; } function getJSXTransformEnabled(options) { const jsx = options.jsx; return jsx === 2 || jsx === 4 || jsx === 5; } function getJSXImplicitImportBase(compilerOptions, file) { const jsxImportSourcePragmas = file == null ? undefined : file.pragmas.get("jsximportsource"); const jsxImportSourcePragma = isArray(jsxImportSourcePragmas) ? jsxImportSourcePragmas[jsxImportSourcePragmas.length - 1] : jsxImportSourcePragmas; const jsxRuntimePragmas = file == null ? undefined : file.pragmas.get("jsxruntime"); const jsxRuntimePragma = isArray(jsxRuntimePragmas) ? jsxRuntimePragmas[jsxRuntimePragmas.length - 1] : jsxRuntimePragmas; if ((jsxRuntimePragma == null ? undefined : jsxRuntimePragma.arguments.factory) === "classic") { return; } return compilerOptions.jsx === 4 || compilerOptions.jsx === 5 || compilerOptions.jsxImportSource || jsxImportSourcePragma || (jsxRuntimePragma == null ? undefined : jsxRuntimePragma.arguments.factory) === "automatic" ? (jsxImportSourcePragma == null ? undefined : jsxImportSourcePragma.arguments.factory) || compilerOptions.jsxImportSource || "react" : undefined; } function getJSXRuntimeImport(base, options) { return base ? `${base}/${options.jsx === 5 ? "jsx-dev-runtime" : "jsx-runtime"}` : undefined; } function hasZeroOrOneAsteriskCharacter(str) { let seenAsterisk = false; for (let i = 0;i < str.length; i++) { if (str.charCodeAt(i) === 42) { if (!seenAsterisk) { seenAsterisk = true; } else { return false; } } } return true; } function createSymlinkCache(cwd, getCanonicalFileName) { let symlinkedDirectories; let symlinkedDirectoriesByRealpath; let symlinkedFiles; let hasProcessedResolutions = false; return { getSymlinkedFiles: () => symlinkedFiles, getSymlinkedDirectories: () => symlinkedDirectories, getSymlinkedDirectoriesByRealpath: () => symlinkedDirectoriesByRealpath, setSymlinkedFile: (path, real) => (symlinkedFiles || (symlinkedFiles = /* @__PURE__ */ new Map)).set(path, real), setSymlinkedDirectory: (symlink, real) => { let symlinkPath = toPath(symlink, cwd, getCanonicalFileName); if (!containsIgnoredPath(symlinkPath)) { symlinkPath = ensureTrailingDirectorySeparator(symlinkPath); if (real !== false && !(symlinkedDirectories == null ? undefined : symlinkedDirectories.has(symlinkPath))) { (symlinkedDirectoriesByRealpath || (symlinkedDirectoriesByRealpath = createMultiMap())).add(real.realPath, symlink); } (symlinkedDirectories || (symlinkedDirectories = /* @__PURE__ */ new Map)).set(symlinkPath, real); } }, setSymlinksFromResolutions(forEachResolvedModule, forEachResolvedTypeReferenceDirective, typeReferenceDirectives) { Debug.assert(!hasProcessedResolutions); hasProcessedResolutions = true; forEachResolvedModule((resolution) => processResolution(this, resolution.resolvedModule)); forEachResolvedTypeReferenceDirective((resolution) => processResolution(this, resolution.resolvedTypeReferenceDirective)); typeReferenceDirectives.forEach((resolution) => processResolution(this, resolution.resolvedTypeReferenceDirective)); }, hasProcessedResolutions: () => hasProcessedResolutions, setSymlinksFromResolution(resolution) { processResolution(this, resolution); }, hasAnySymlinks }; function hasAnySymlinks() { return !!(symlinkedFiles == null ? undefined : symlinkedFiles.size) || !!symlinkedDirectories && !!forEachEntry(symlinkedDirectories, (value) => !!value); } function processResolution(cache, resolution) { if (!resolution || !resolution.originalPath || !resolution.resolvedFileName) return; const { resolvedFileName, originalPath } = resolution; cache.setSymlinkedFile(toPath(originalPath, cwd, getCanonicalFileName), resolvedFileName); const [commonResolved, commonOriginal] = guessDirectorySymlink(resolvedFileName, originalPath, cwd, getCanonicalFileName) || emptyArray; if (commonResolved && commonOriginal) { cache.setSymlinkedDirectory(commonOriginal, { real: ensureTrailingDirectorySeparator(commonResolved), realPath: ensureTrailingDirectorySeparator(toPath(commonResolved, cwd, getCanonicalFileName)) }); } } } function guessDirectorySymlink(a, b, cwd, getCanonicalFileName) { const aParts = getPathComponents(getNormalizedAbsolutePath(a, cwd)); const bParts = getPathComponents(getNormalizedAbsolutePath(b, cwd)); let isDirectory = false; while (aParts.length >= 2 && bParts.length >= 2 && !isNodeModulesOrScopedPackageDirectory(aParts[aParts.length - 2], getCanonicalFileName) && !isNodeModulesOrScopedPackageDirectory(bParts[bParts.length - 2], getCanonicalFileName) && getCanonicalFileName(aParts[aParts.length - 1]) === getCanonicalFileName(bParts[bParts.length - 1])) { aParts.pop(); bParts.pop(); isDirectory = true; } return isDirectory ? [getPathFromPathComponents(aParts), getPathFromPathComponents(bParts)] : undefined; } function isNodeModulesOrScopedPackageDirectory(s, getCanonicalFileName) { return s !== undefined && (getCanonicalFileName(s) === "node_modules" || startsWith(s, "@")); } function stripLeadingDirectorySeparator(s) { return isAnyDirectorySeparator(s.charCodeAt(0)) ? s.slice(1) : undefined; } function tryRemoveDirectoryPrefix(path, dirPath, getCanonicalFileName) { const withoutPrefix = tryRemovePrefix(path, dirPath, getCanonicalFileName); return withoutPrefix === undefined ? undefined : stripLeadingDirectorySeparator(withoutPrefix); } var reservedCharacterPattern = /[^\w\s/]/g; function regExpEscape(text) { return text.replace(reservedCharacterPattern, escapeRegExpCharacter); } function escapeRegExpCharacter(match) { return "\\" + match; } var wildcardCharCodes = [42, 63]; var commonPackageFolders = ["node_modules", "bower_components", "jspm_packages"]; var implicitExcludePathRegexPattern = `(?!(?:${commonPackageFolders.join("|")})(?:/|$))`; var filesMatcher = { singleAsteriskRegexFragment: "(?:[^./]|(?:\\.(?!min\\.js$))?)*", doubleAsteriskRegexFragment: `(?:/${implicitExcludePathRegexPattern}[^/.][^/]*)*?`, replaceWildcardCharacter: (match) => replaceWildcardCharacter(match, filesMatcher.singleAsteriskRegexFragment) }; var directoriesMatcher = { singleAsteriskRegexFragment: "[^/]*", doubleAsteriskRegexFragment: `(?:/${implicitExcludePathRegexPattern}[^/.][^/]*)*?`, replaceWildcardCharacter: (match) => replaceWildcardCharacter(match, directoriesMatcher.singleAsteriskRegexFragment) }; var excludeMatcher = { singleAsteriskRegexFragment: "[^/]*", doubleAsteriskRegexFragment: "(?:/.+?)?", replaceWildcardCharacter: (match) => replaceWildcardCharacter(match, excludeMatcher.singleAsteriskRegexFragment) }; var wildcardMatchers = { files: filesMatcher, directories: directoriesMatcher, exclude: excludeMatcher }; function getRegularExpressionForWildcard(specs, basePath, usage) { const patterns = getRegularExpressionsForWildcards(specs, basePath, usage); if (!patterns || !patterns.length) { return; } const pattern = patterns.map((pattern2) => `(?:${pattern2})`).join("|"); const terminator = usage === "exclude" ? "(?:$|/)" : "$"; return `^(?:${pattern})${terminator}`; } function getRegularExpressionsForWildcards(specs, basePath, usage) { if (specs === undefined || specs.length === 0) { return; } return flatMap(specs, (spec3) => spec3 && getSubPatternFromSpec(spec3, basePath, usage, wildcardMatchers[usage])); } function isImplicitGlob(lastPathComponent) { return !/[.*?]/.test(lastPathComponent); } function getPatternFromSpec(spec3, basePath, usage) { const pattern = spec3 && getSubPatternFromSpec(spec3, basePath, usage, wildcardMatchers[usage]); return pattern && `^(?:${pattern})${usage === "exclude" ? "(?:$|/)" : "$"}`; } function getSubPatternFromSpec(spec3, basePath, usage, { singleAsteriskRegexFragment, doubleAsteriskRegexFragment, replaceWildcardCharacter: replaceWildcardCharacter2 } = wildcardMatchers[usage]) { let subpattern = ""; let hasWrittenComponent = false; const components = getNormalizedPathComponents(spec3, basePath); const lastComponent = last(components); if (usage !== "exclude" && lastComponent === "**") { return; } components[0] = removeTrailingDirectorySeparator(components[0]); if (isImplicitGlob(lastComponent)) { components.push("**", "*"); } let optionalCount = 0; for (let component of components) { if (component === "**") { subpattern += doubleAsteriskRegexFragment; } else { if (usage === "directories") { subpattern += "(?:"; optionalCount++; } if (hasWrittenComponent) { subpattern += directorySeparator; } if (usage !== "exclude") { let componentPattern = ""; if (component.charCodeAt(0) === 42) { componentPattern += "(?:[^./]" + singleAsteriskRegexFragment + ")?"; component = component.substr(1); } else if (component.charCodeAt(0) === 63) { componentPattern += "[^./]"; component = component.substr(1); } componentPattern += component.replace(reservedCharacterPattern, replaceWildcardCharacter2); if (componentPattern !== component) { subpattern += implicitExcludePathRegexPattern; } subpattern += componentPattern; } else { subpattern += component.replace(reservedCharacterPattern, replaceWildcardCharacter2); } } hasWrittenComponent = true; } while (optionalCount > 0) { subpattern += ")?"; optionalCount--; } return subpattern; } function replaceWildcardCharacter(match, singleAsteriskRegexFragment) { return match === "*" ? singleAsteriskRegexFragment : match === "?" ? "[^/]" : "\\" + match; } function getFileMatcherPatterns(path, excludes, includes, useCaseSensitiveFileNames2, currentDirectory) { path = normalizePath(path); currentDirectory = normalizePath(currentDirectory); const absolutePath = combinePaths(currentDirectory, path); return { includeFilePatterns: map(getRegularExpressionsForWildcards(includes, absolutePath, "files"), (pattern) => `^${pattern}$`), includeFilePattern: getRegularExpressionForWildcard(includes, absolutePath, "files"), includeDirectoryPattern: getRegularExpressionForWildcard(includes, absolutePath, "directories"), excludePattern: getRegularExpressionForWildcard(excludes, absolutePath, "exclude"), basePaths: getBasePaths(path, includes, useCaseSensitiveFileNames2) }; } function getRegexFromPattern(pattern, useCaseSensitiveFileNames2) { return new RegExp(pattern, useCaseSensitiveFileNames2 ? "" : "i"); } function matchFiles(path, extensions, excludes, includes, useCaseSensitiveFileNames2, currentDirectory, depth, getFileSystemEntries, realpath) { path = normalizePath(path); currentDirectory = normalizePath(currentDirectory); const patterns = getFileMatcherPatterns(path, excludes, includes, useCaseSensitiveFileNames2, currentDirectory); const includeFileRegexes = patterns.includeFilePatterns && patterns.includeFilePatterns.map((pattern) => getRegexFromPattern(pattern, useCaseSensitiveFileNames2)); const includeDirectoryRegex = patterns.includeDirectoryPattern && getRegexFromPattern(patterns.includeDirectoryPattern, useCaseSensitiveFileNames2); const excludeRegex = patterns.excludePattern && getRegexFromPattern(patterns.excludePattern, useCaseSensitiveFileNames2); const results = includeFileRegexes ? includeFileRegexes.map(() => []) : [[]]; const visited = /* @__PURE__ */ new Map; const toCanonical = createGetCanonicalFileName(useCaseSensitiveFileNames2); for (const basePath of patterns.basePaths) { visitDirectory(basePath, combinePaths(currentDirectory, basePath), depth); } return flatten(results); function visitDirectory(path2, absolutePath, depth2) { const canonicalPath = toCanonical(realpath(absolutePath)); if (visited.has(canonicalPath)) return; visited.set(canonicalPath, true); const { files, directories } = getFileSystemEntries(path2); for (const current of toSorted(files, compareStringsCaseSensitive)) { const name = combinePaths(path2, current); const absoluteName = combinePaths(absolutePath, current); if (extensions && !fileExtensionIsOneOf(name, extensions)) continue; if (excludeRegex && excludeRegex.test(absoluteName)) continue; if (!includeFileRegexes) { results[0].push(name); } else { const includeIndex = findIndex(includeFileRegexes, (re) => re.test(absoluteName)); if (includeIndex !== -1) { results[includeIndex].push(name); } } } if (depth2 !== undefined) { depth2--; if (depth2 === 0) { return; } } for (const current of toSorted(directories, compareStringsCaseSensitive)) { const name = combinePaths(path2, current); const absoluteName = combinePaths(absolutePath, current); if ((!includeDirectoryRegex || includeDirectoryRegex.test(absoluteName)) && (!excludeRegex || !excludeRegex.test(absoluteName))) { visitDirectory(name, absoluteName, depth2); } } } } function getBasePaths(path, includes, useCaseSensitiveFileNames2) { const basePaths = [path]; if (includes) { const includeBasePaths = []; for (const include of includes) { const absolute = isRootedDiskPath(include) ? include : normalizePath(combinePaths(path, include)); includeBasePaths.push(getIncludeBasePath(absolute)); } includeBasePaths.sort(getStringComparer(!useCaseSensitiveFileNames2)); for (const includeBasePath of includeBasePaths) { if (every(basePaths, (basePath) => !containsPath(basePath, includeBasePath, path, !useCaseSensitiveFileNames2))) { basePaths.push(includeBasePath); } } } return basePaths; } function getIncludeBasePath(absolute) { const wildcardOffset = indexOfAnyCharCode(absolute, wildcardCharCodes); if (wildcardOffset < 0) { return !hasExtension(absolute) ? absolute : removeTrailingDirectorySeparator(getDirectoryPath(absolute)); } return absolute.substring(0, absolute.lastIndexOf(directorySeparator, wildcardOffset)); } function ensureScriptKind(fileName, scriptKind) { return scriptKind || getScriptKindFromFileName(fileName) || 3; } function getScriptKindFromFileName(fileName) { const ext = fileName.substr(fileName.lastIndexOf(".")); switch (ext.toLowerCase()) { case ".js": case ".cjs": case ".mjs": return 1; case ".jsx": return 2; case ".ts": case ".cts": case ".mts": return 3; case ".tsx": return 4; case ".json": return 6; default: return 0; } } var supportedTSExtensions = [[".ts", ".tsx", ".d.ts"], [".cts", ".d.cts"], [".mts", ".d.mts"]]; var supportedTSExtensionsFlat = flatten(supportedTSExtensions); var supportedTSExtensionsWithJson = [...supportedTSExtensions, [".json"]]; var supportedTSExtensionsForExtractExtension = [".d.ts", ".d.cts", ".d.mts", ".cts", ".mts", ".ts", ".tsx"]; var supportedJSExtensions = [[".js", ".jsx"], [".mjs"], [".cjs"]]; var supportedJSExtensionsFlat = flatten(supportedJSExtensions); var allSupportedExtensions = [[".ts", ".tsx", ".d.ts", ".js", ".jsx"], [".cts", ".d.cts", ".cjs"], [".mts", ".d.mts", ".mjs"]]; var allSupportedExtensionsWithJson = [...allSupportedExtensions, [".json"]]; var supportedDeclarationExtensions = [".d.ts", ".d.cts", ".d.mts"]; var supportedTSImplementationExtensions = [".ts", ".cts", ".mts", ".tsx"]; var extensionsNotSupportingExtensionlessResolution = [".mts", ".d.mts", ".mjs", ".cts", ".d.cts", ".cjs"]; function getSupportedExtensions(options, extraFileExtensions) { const needJsExtensions = options && getAllowJSCompilerOption(options); if (!extraFileExtensions || extraFileExtensions.length === 0) { return needJsExtensions ? allSupportedExtensions : supportedTSExtensions; } const builtins = needJsExtensions ? allSupportedExtensions : supportedTSExtensions; const flatBuiltins = flatten(builtins); const extensions = [ ...builtins, ...mapDefined(extraFileExtensions, (x) => x.scriptKind === 7 || needJsExtensions && isJSLike(x.scriptKind) && !flatBuiltins.includes(x.extension) ? [x.extension] : undefined) ]; return extensions; } function getSupportedExtensionsWithJsonIfResolveJsonModule(options, supportedExtensions) { if (!options || !getResolveJsonModule(options)) return supportedExtensions; if (supportedExtensions === allSupportedExtensions) return allSupportedExtensionsWithJson; if (supportedExtensions === supportedTSExtensions) return supportedTSExtensionsWithJson; return [...supportedExtensions, [".json"]]; } function isJSLike(scriptKind) { return scriptKind === 1 || scriptKind === 2; } function hasJSFileExtension(fileName) { return some(supportedJSExtensionsFlat, (extension) => fileExtensionIs(fileName, extension)); } function hasTSFileExtension(fileName) { return some(supportedTSExtensionsFlat, (extension) => fileExtensionIs(fileName, extension)); } function hasImplementationTSFileExtension(fileName) { return some(supportedTSImplementationExtensions, (extension) => fileExtensionIs(fileName, extension)) && !isDeclarationFileName(fileName); } var ModuleSpecifierEnding = /* @__PURE__ */ ((ModuleSpecifierEnding2) => { ModuleSpecifierEnding2[ModuleSpecifierEnding2["Minimal"] = 0] = "Minimal"; ModuleSpecifierEnding2[ModuleSpecifierEnding2["Index"] = 1] = "Index"; ModuleSpecifierEnding2[ModuleSpecifierEnding2["JsExtension"] = 2] = "JsExtension"; ModuleSpecifierEnding2[ModuleSpecifierEnding2["TsExtension"] = 3] = "TsExtension"; return ModuleSpecifierEnding2; })(ModuleSpecifierEnding || {}); function usesExtensionsOnImports({ imports }, hasExtension2 = or(hasJSFileExtension, hasTSFileExtension)) { return firstDefined(imports, ({ text }) => pathIsRelative(text) && !fileExtensionIsOneOf(text, extensionsNotSupportingExtensionlessResolution) ? hasExtension2(text) : undefined) || false; } function getModuleSpecifierEndingPreference(preference, resolutionMode, compilerOptions, sourceFile) { const moduleResolution = getEmitModuleResolutionKind(compilerOptions); const moduleResolutionIsNodeNext = 3 <= moduleResolution && moduleResolution <= 99; if (preference === "js" || resolutionMode === 99 && moduleResolutionIsNodeNext) { if (!shouldAllowImportingTsExtension(compilerOptions)) { return 2; } return inferPreference() !== 2 ? 3 : 2; } if (preference === "minimal") { return 0; } if (preference === "index") { return 1; } if (!shouldAllowImportingTsExtension(compilerOptions)) { return sourceFile && usesExtensionsOnImports(sourceFile) ? 2 : 0; } return inferPreference(); function inferPreference() { let usesJsExtensions = false; const specifiers = (sourceFile == null ? undefined : sourceFile.imports.length) ? sourceFile.imports : sourceFile && isSourceFileJS(sourceFile) ? getRequiresAtTopOfFile(sourceFile).map((r) => r.arguments[0]) : emptyArray; for (const specifier of specifiers) { if (pathIsRelative(specifier.text)) { if (moduleResolutionIsNodeNext && resolutionMode === 1 && getModeForUsageLocation(sourceFile, specifier, compilerOptions) === 99) { continue; } if (fileExtensionIsOneOf(specifier.text, extensionsNotSupportingExtensionlessResolution)) { continue; } if (hasTSFileExtension(specifier.text)) { return 3; } if (hasJSFileExtension(specifier.text)) { usesJsExtensions = true; } } } return usesJsExtensions ? 2 : 0; } } function getRequiresAtTopOfFile(sourceFile) { let nonRequireStatementCount = 0; let requires; for (const statement of sourceFile.statements) { if (nonRequireStatementCount > 3) { break; } if (isRequireVariableStatement(statement)) { requires = concatenate(requires, statement.declarationList.declarations.map((d) => d.initializer)); } else if (isExpressionStatement(statement) && isRequireCall(statement.expression, true)) { requires = append(requires, statement.expression); } else { nonRequireStatementCount++; } } return requires || emptyArray; } function isSupportedSourceFileName(fileName, compilerOptions, extraFileExtensions) { if (!fileName) return false; const supportedExtensions = getSupportedExtensions(compilerOptions, extraFileExtensions); for (const extension of flatten(getSupportedExtensionsWithJsonIfResolveJsonModule(compilerOptions, supportedExtensions))) { if (fileExtensionIs(fileName, extension)) { return true; } } return false; } function numberOfDirectorySeparators(str) { const match = str.match(/\//g); return match ? match.length : 0; } function compareNumberOfDirectorySeparators(path1, path2) { return compareValues(numberOfDirectorySeparators(path1), numberOfDirectorySeparators(path2)); } var extensionsToRemove = [".d.ts", ".d.mts", ".d.cts", ".mjs", ".mts", ".cjs", ".cts", ".ts", ".js", ".tsx", ".jsx", ".json"]; function removeFileExtension(path) { for (const ext of extensionsToRemove) { const extensionless = tryRemoveExtension(path, ext); if (extensionless !== undefined) { return extensionless; } } return path; } function tryRemoveExtension(path, extension) { return fileExtensionIs(path, extension) ? removeExtension(path, extension) : undefined; } function removeExtension(path, extension) { return path.substring(0, path.length - extension.length); } function changeExtension(path, newExtension) { return changeAnyExtension(path, newExtension, extensionsToRemove, false); } function tryParsePattern(pattern) { const indexOfStar = pattern.indexOf("*"); if (indexOfStar === -1) { return pattern; } return pattern.indexOf("*", indexOfStar + 1) !== -1 ? undefined : { prefix: pattern.substr(0, indexOfStar), suffix: pattern.substr(indexOfStar + 1) }; } var parsedPatternsCache = /* @__PURE__ */ new WeakMap; function tryParsePatterns(paths) { let result = parsedPatternsCache.get(paths); if (result !== undefined) { return result; } let matchableStringSet; let patterns; const pathList = getOwnKeys(paths); for (const path of pathList) { const patternOrStr = tryParsePattern(path); if (patternOrStr === undefined) { continue; } else if (typeof patternOrStr === "string") { (matchableStringSet ?? (matchableStringSet = /* @__PURE__ */ new Set)).add(patternOrStr); } else { (patterns ?? (patterns = [])).push(patternOrStr); } } parsedPatternsCache.set(paths, result = { matchableStringSet, patterns }); return result; } function positionIsSynthesized(pos) { return !(pos >= 0); } function extensionIsTS(ext) { return ext === ".ts" || ext === ".tsx" || ext === ".d.ts" || ext === ".cts" || ext === ".mts" || ext === ".d.mts" || ext === ".d.cts" || startsWith(ext, ".d.") && endsWith(ext, ".ts"); } function resolutionExtensionIsTSOrJson(ext) { return extensionIsTS(ext) || ext === ".json"; } function extensionFromPath(path) { const ext = tryGetExtensionFromPath2(path); return ext !== undefined ? ext : Debug.fail(`File ${path} has unknown extension.`); } function isAnySupportedFileExtension(path) { return tryGetExtensionFromPath2(path) !== undefined; } function tryGetExtensionFromPath2(path) { return find(extensionsToRemove, (e) => fileExtensionIs(path, e)); } function isCheckJsEnabledForFile(sourceFile, compilerOptions) { return sourceFile.checkJsDirective ? sourceFile.checkJsDirective.enabled : compilerOptions.checkJs; } var emptyFileSystemEntries = { files: emptyArray, directories: emptyArray }; function matchPatternOrExact(parsedPatterns, candidate) { const { matchableStringSet, patterns } = parsedPatterns; if (matchableStringSet == null ? undefined : matchableStringSet.has(candidate)) { return candidate; } if (patterns === undefined || patterns.length === 0) { return; } return findBestPatternMatch(patterns, (_) => _, candidate); } function sliceAfter(arr, value) { const index = arr.indexOf(value); Debug.assert(index !== -1); return arr.slice(index); } function addRelatedInfo(diagnostic, ...relatedInformation) { if (!relatedInformation.length) { return diagnostic; } if (!diagnostic.relatedInformation) { diagnostic.relatedInformation = []; } Debug.assert(diagnostic.relatedInformation !== emptyArray, "Diagnostic had empty array singleton for related info, but is still being constructed!"); diagnostic.relatedInformation.push(...relatedInformation); return diagnostic; } function minAndMax(arr, getValue) { Debug.assert(arr.length !== 0); let min2 = getValue(arr[0]); let max = min2; for (let i = 1;i < arr.length; i++) { const value = getValue(arr[i]); if (value < min2) { min2 = value; } else if (value > max) { max = value; } } return { min: min2, max }; } function rangeOfNode(node) { return { pos: getTokenPosOfNode(node), end: node.end }; } function rangeOfTypeParameters(sourceFile, typeParameters) { const pos = typeParameters.pos - 1; const end = Math.min(sourceFile.text.length, skipTrivia2(sourceFile.text, typeParameters.end) + 1); return { pos, end }; } function skipTypeChecking(sourceFile, options, host) { return skipTypeCheckingWorker(sourceFile, options, host, false); } function skipTypeCheckingIgnoringNoCheck(sourceFile, options, host) { return skipTypeCheckingWorker(sourceFile, options, host, true); } function skipTypeCheckingWorker(sourceFile, options, host, ignoreNoCheck) { return options.skipLibCheck && sourceFile.isDeclarationFile || options.skipDefaultLibCheck && host.isSourceFileDefaultLibrary(sourceFile) || !ignoreNoCheck && options.noCheck || host.isSourceOfProjectReferenceRedirect(sourceFile.fileName) || !canIncludeBindAndCheckDiagnostics(sourceFile, options); } function canIncludeBindAndCheckDiagnostics(sourceFile, options) { if (!!sourceFile.checkJsDirective && sourceFile.checkJsDirective.enabled === false) return false; if (sourceFile.scriptKind === 3 || sourceFile.scriptKind === 4 || sourceFile.scriptKind === 5) return true; const isJs = sourceFile.scriptKind === 1 || sourceFile.scriptKind === 2; const isCheckJs = isJs && isCheckJsEnabledForFile(sourceFile, options); const isPlainJs = isPlainJsFile(sourceFile, options.checkJs); return isPlainJs || isCheckJs || sourceFile.scriptKind === 7; } function isJsonEqual(a, b) { return a === b || typeof a === "object" && a !== null && typeof b === "object" && b !== null && equalOwnProperties(a, b, isJsonEqual); } function parsePseudoBigInt(stringValue) { let log2Base; switch (stringValue.charCodeAt(1)) { case 98: case 66: log2Base = 1; break; case 111: case 79: log2Base = 3; break; case 120: case 88: log2Base = 4; break; default: const nIndex = stringValue.length - 1; let nonZeroStart = 0; while (stringValue.charCodeAt(nonZeroStart) === 48) { nonZeroStart++; } return stringValue.slice(nonZeroStart, nIndex) || "0"; } const startIndex = 2, endIndex = stringValue.length - 1; const bitsNeeded = (endIndex - startIndex) * log2Base; const segments = new Uint16Array((bitsNeeded >>> 4) + (bitsNeeded & 15 ? 1 : 0)); for (let i = endIndex - 1, bitOffset = 0;i >= startIndex; i--, bitOffset += log2Base) { const segment = bitOffset >>> 4; const digitChar = stringValue.charCodeAt(i); const digit = digitChar <= 57 ? digitChar - 48 : 10 + digitChar - (digitChar <= 70 ? 65 : 97); const shiftedDigit = digit << (bitOffset & 15); segments[segment] |= shiftedDigit; const residual = shiftedDigit >>> 16; if (residual) segments[segment + 1] |= residual; } let base10Value = ""; let firstNonzeroSegment = segments.length - 1; let segmentsRemaining = true; while (segmentsRemaining) { let mod10 = 0; segmentsRemaining = false; for (let segment = firstNonzeroSegment;segment >= 0; segment--) { const newSegment = mod10 << 16 | segments[segment]; const segmentValue = newSegment / 10 | 0; segments[segment] = segmentValue; mod10 = newSegment - segmentValue * 10; if (segmentValue && !segmentsRemaining) { firstNonzeroSegment = segment; segmentsRemaining = true; } } base10Value = mod10 + base10Value; } return base10Value; } function pseudoBigIntToString({ negative, base10Value }) { return (negative && base10Value !== "0" ? "-" : "") + base10Value; } function parseBigInt(text) { if (!isValidBigIntString(text, false)) { return; } return parseValidBigInt(text); } function parseValidBigInt(text) { const negative = text.startsWith("-"); const base10Value = parsePseudoBigInt(`${negative ? text.slice(1) : text}n`); return { negative, base10Value }; } function isValidBigIntString(s, roundTripOnly) { if (s === "") return false; const scanner2 = createScanner(99, false); let success = true; scanner2.setOnError(() => success = false); scanner2.setText(s + "n"); let result = scanner2.scan(); const negative = result === 41; if (negative) { result = scanner2.scan(); } const flags = scanner2.getTokenFlags(); return success && result === 10 && scanner2.getTokenEnd() === s.length + 1 && !(flags & 512) && (!roundTripOnly || s === pseudoBigIntToString({ negative, base10Value: parsePseudoBigInt(scanner2.getTokenValue()) })); } function isValidTypeOnlyAliasUseSite(useSite) { return !!(useSite.flags & 33554432) || isInJSDoc(useSite) || isPartOfTypeQuery(useSite) || isIdentifierInNonEmittingHeritageClause(useSite) || isPartOfPossiblyValidTypeOrAbstractComputedPropertyName(useSite) || !(isExpressionNode(useSite) || isShorthandPropertyNameUseSite(useSite)); } function isShorthandPropertyNameUseSite(useSite) { return isIdentifier(useSite) && isShorthandPropertyAssignment(useSite.parent) && useSite.parent.name === useSite; } function isPartOfPossiblyValidTypeOrAbstractComputedPropertyName(node) { while (node.kind === 80 || node.kind === 212) { node = node.parent; } if (node.kind !== 168) { return false; } if (hasSyntacticModifier(node.parent, 64)) { return true; } const containerKind = node.parent.parent.kind; return containerKind === 265 || containerKind === 188; } function isIdentifierInNonEmittingHeritageClause(node) { if (node.kind !== 80) return false; const heritageClause = findAncestor(node.parent, (parent2) => { switch (parent2.kind) { case 299: return true; case 212: case 234: return false; default: return "quit"; } }); return (heritageClause == null ? undefined : heritageClause.token) === 119 || (heritageClause == null ? undefined : heritageClause.parent.kind) === 265; } function isIdentifierTypeReference(node) { return isTypeReferenceNode(node) && isIdentifier(node.typeName); } function arrayIsHomogeneous(array, comparer = equateValues) { if (array.length < 2) return true; const first2 = array[0]; for (let i = 1, length2 = array.length;i < length2; i++) { const target = array[i]; if (!comparer(first2, target)) return false; } return true; } function setTextRangePos(range, pos) { range.pos = pos; return range; } function setTextRangeEnd(range, end) { range.end = end; return range; } function setTextRangePosEnd(range, pos, end) { return setTextRangeEnd(setTextRangePos(range, pos), end); } function setTextRangePosWidth(range, pos, width) { return setTextRangePosEnd(range, pos, pos + width); } function setNodeFlags(node, newFlags) { if (node) { node.flags = newFlags; } return node; } function setParent(child, parent2) { if (child && parent2) { child.parent = parent2; } return child; } function setParentRecursive(rootNode, incremental) { if (!rootNode) return rootNode; forEachChildRecursively(rootNode, isJSDocNode(rootNode) ? bindParentToChildIgnoringJSDoc : bindParentToChild); return rootNode; function bindParentToChildIgnoringJSDoc(child, parent2) { if (incremental && child.parent === parent2) { return "skip"; } setParent(child, parent2); } function bindJSDoc(child) { if (hasJSDocNodes(child)) { for (const doc of child.jsDoc) { bindParentToChildIgnoringJSDoc(doc, child); forEachChildRecursively(doc, bindParentToChildIgnoringJSDoc); } } } function bindParentToChild(child, parent2) { return bindParentToChildIgnoringJSDoc(child, parent2) || bindJSDoc(child); } } function isPackedElement(node) { return !isOmittedExpression(node); } function isPackedArrayLiteral(node) { return isArrayLiteralExpression(node) && every(node.elements, isPackedElement); } function expressionResultIsUnused(node) { Debug.assertIsDefined(node.parent); while (true) { const parent2 = node.parent; if (isParenthesizedExpression(parent2)) { node = parent2; continue; } if (isExpressionStatement(parent2) || isVoidExpression(parent2) || isForStatement(parent2) && (parent2.initializer === node || parent2.incrementor === node)) { return true; } if (isCommaListExpression(parent2)) { if (node !== last(parent2.elements)) return true; node = parent2; continue; } if (isBinaryExpression(parent2) && parent2.operatorToken.kind === 28) { if (node === parent2.left) return true; node = parent2; continue; } return false; } } function containsIgnoredPath(path) { return some(ignoredPaths, (p) => path.includes(p)); } function getContainingNodeArray(node) { if (!node.parent) return; switch (node.kind) { case 169: const { parent: parent3 } = node; return parent3.kind === 196 ? undefined : parent3.typeParameters; case 170: return node.parent.parameters; case 205: return node.parent.templateSpans; case 240: return node.parent.templateSpans; case 171: { const { parent: parent4 } = node; return canHaveDecorators(parent4) ? parent4.modifiers : undefined; } case 299: return node.parent.heritageClauses; } const { parent: parent2 } = node; if (isJSDocTag(node)) { return isJSDocTypeLiteral(node.parent) ? undefined : node.parent.tags; } switch (parent2.kind) { case 188: case 265: return isTypeElement(node) ? parent2.members : undefined; case 193: case 194: return parent2.types; case 190: case 210: case 357: case 276: case 280: return parent2.elements; case 211: case 293: return parent2.properties; case 214: case 215: return isTypeNode(node) ? parent2.typeArguments : parent2.expression === node ? undefined : parent2.arguments; case 285: case 289: return isJsxChild(node) ? parent2.children : undefined; case 287: case 286: return isTypeNode(node) ? parent2.typeArguments : undefined; case 242: case 297: case 298: case 269: return parent2.statements; case 270: return parent2.clauses; case 264: case 232: return isClassElement(node) ? parent2.members : undefined; case 267: return isEnumMember(node) ? parent2.members : undefined; case 308: return parent2.statements; } } function hasContextSensitiveParameters(node) { if (!node.typeParameters) { if (some(node.parameters, (p) => !getEffectiveTypeAnnotationNode(p))) { return true; } if (node.kind !== 220) { const parameter = firstOrUndefined(node.parameters); if (!(parameter && parameterIsThisKeyword(parameter))) { return !!(node.flags & 256); } } } return false; } function isInfinityOrNaNString(name) { return name === "Infinity" || name === "-Infinity" || name === "NaN"; } function isCatchClauseVariableDeclaration(node) { return node.kind === 261 && node.parent.kind === 300; } function isFunctionExpressionOrArrowFunction(node) { return node.kind === 219 || node.kind === 220; } function escapeSnippetText(text) { return text.replace(/\$/g, () => "\\$"); } function isNumericLiteralName(name) { return (+name).toString() === name; } function createPropertyNameNodeForIdentifierOrLiteral(name, target, singleQuote, stringNamed, isMethod) { const isMethodNamedNew = isMethod && name === "new"; return !isMethodNamedNew && isIdentifierText(name, target) ? factory.createIdentifier(name) : !stringNamed && !isMethodNamedNew && isNumericLiteralName(name) && +name >= 0 ? factory.createNumericLiteral(+name) : factory.createStringLiteral(name, !!singleQuote); } function isThisTypeParameter(type) { return !!(type.flags & 524288 && type.isThisType); } function getNodeModulePathParts(fullPath) { let topLevelNodeModulesIndex = 0; let topLevelPackageNameIndex = 0; let packageRootIndex = 0; let fileNameIndex = 0; let States; ((States2) => { States2[States2["BeforeNodeModules"] = 0] = "BeforeNodeModules"; States2[States2["NodeModules"] = 1] = "NodeModules"; States2[States2["Scope"] = 2] = "Scope"; States2[States2["PackageContent"] = 3] = "PackageContent"; })(States || (States = {})); let partStart = 0; let partEnd = 0; let state = 0; while (partEnd >= 0) { partStart = partEnd; partEnd = fullPath.indexOf("/", partStart + 1); switch (state) { case 0: if (fullPath.indexOf(nodeModulesPathPart, partStart) === partStart) { topLevelNodeModulesIndex = partStart; topLevelPackageNameIndex = partEnd; state = 1; } break; case 1: case 2: if (state === 1 && fullPath.charAt(partStart + 1) === "@") { state = 2; } else { packageRootIndex = partEnd; state = 3; } break; case 3: if (fullPath.indexOf(nodeModulesPathPart, partStart) === partStart) { state = 1; } else { state = 3; } break; } } fileNameIndex = partStart; return state > 1 ? { topLevelNodeModulesIndex, topLevelPackageNameIndex, packageRootIndex, fileNameIndex } : undefined; } function isTypeDeclaration(node) { switch (node.kind) { case 169: case 264: case 265: case 266: case 267: case 347: case 339: case 341: return true; case 274: return node.phaseModifier === 156; case 277: return node.parent.parent.phaseModifier === 156; case 282: return node.parent.parent.isTypeOnly; default: return false; } } function canHaveExportModifier(node) { return isEnumDeclaration(node) || isVariableStatement(node) || isFunctionDeclaration(node) || isClassDeclaration(node) || isInterfaceDeclaration(node) || isTypeDeclaration(node) || isModuleDeclaration(node) && !isExternalModuleAugmentation(node) && !isGlobalScopeAugmentation(node); } function isOptionalJSDocPropertyLikeTag(node) { if (!isJSDocPropertyLikeTag(node)) { return false; } const { isBracketed, typeExpression } = node; return isBracketed || !!typeExpression && typeExpression.type.kind === 317; } function canUsePropertyAccess(name, languageVersion) { if (name.length === 0) { return false; } const firstChar = name.charCodeAt(0); return firstChar === 35 ? name.length > 1 && isIdentifierStart(name.charCodeAt(1), languageVersion) : isIdentifierStart(firstChar, languageVersion); } function hasTabstop(node) { var _a; return ((_a = getSnippetElement(node)) == null ? undefined : _a.kind) === 0; } function isJSDocOptionalParameter(node) { return isInJSFile(node) && (node.type && node.type.kind === 317 || getJSDocParameterTags(node).some(isOptionalJSDocPropertyLikeTag)); } function isOptionalDeclaration(declaration) { switch (declaration.kind) { case 173: case 172: return !!declaration.questionToken; case 170: return !!declaration.questionToken || isJSDocOptionalParameter(declaration); case 349: case 342: return isOptionalJSDocPropertyLikeTag(declaration); default: return false; } } function isNonNullAccess(node) { const kind = node.kind; return (kind === 212 || kind === 213) && isNonNullExpression(node.expression); } function isJSDocSatisfiesExpression(node) { return isInJSFile(node) && isParenthesizedExpression(node) && hasJSDocNodes(node) && !!getJSDocSatisfiesTag(node); } function getJSDocSatisfiesExpressionType(node) { return Debug.checkDefined(tryGetJSDocSatisfiesTypeNode(node)); } function tryGetJSDocSatisfiesTypeNode(node) { const tag = getJSDocSatisfiesTag(node); return tag && tag.typeExpression && tag.typeExpression.type; } function getEscapedTextOfJsxAttributeName(node) { return isIdentifier(node) ? node.escapedText : getEscapedTextOfJsxNamespacedName(node); } function getTextOfJsxAttributeName(node) { return isIdentifier(node) ? idText(node) : getTextOfJsxNamespacedName(node); } function isJsxAttributeName(node) { const kind = node.kind; return kind === 80 || kind === 296; } function getEscapedTextOfJsxNamespacedName(node) { return `${node.namespace.escapedText}:${idText(node.name)}`; } function getTextOfJsxNamespacedName(node) { return `${idText(node.namespace)}:${idText(node.name)}`; } function intrinsicTagNameToString(node) { return isIdentifier(node) ? idText(node) : getTextOfJsxNamespacedName(node); } function isTypeUsableAsPropertyName(type) { return !!(type.flags & 19456); } function getPropertyNameFromType(type) { if (type.flags & 16384) { return type.escapedName; } if (type.flags & (1024 | 2048)) { return escapeLeadingUnderscores("" + type.value); } return Debug.fail(); } function isExpandoPropertyDeclaration(declaration) { return !!declaration && (isPropertyAccessExpression(declaration) || isElementAccessExpression(declaration) || isBinaryExpression(declaration)); } function hasResolutionModeOverride(node) { if (node === undefined) { return false; } return !!getResolutionModeOverride(node.attributes); } var stringReplace = String.prototype.replace; function replaceFirstStar(s, replacement) { return stringReplace.call(s, "*", replacement); } function getNameFromImportAttribute(node) { return isIdentifier(node.name) ? node.name.escapedText : escapeLeadingUnderscores(node.name.text); } function isSourceElement(node) { switch (node.kind) { case 169: case 170: case 173: case 172: case 186: case 185: case 180: case 181: case 182: case 175: case 174: case 176: case 177: case 178: case 179: case 184: case 183: case 187: case 188: case 189: case 190: case 193: case 194: case 197: case 191: case 192: case 198: case 199: case 195: case 196: case 204: case 206: case 203: case 329: case 330: case 347: case 339: case 341: case 346: case 345: case 325: case 326: case 327: case 342: case 349: case 318: case 316: case 315: case 313: case 314: case 323: case 319: case 310: case 334: case 336: case 335: case 351: case 344: case 200: case 201: case 263: case 242: case 269: case 244: case 245: case 246: case 247: case 248: case 249: case 250: case 251: case 252: case 253: case 254: case 255: case 256: case 257: case 258: case 259: case 261: case 209: case 264: case 265: case 266: case 267: case 268: case 273: case 272: case 279: case 278: case 243: case 260: case 283: return true; } return false; } function evaluatorResult(value, isSyntacticallyString = false, resolvedOtherFiles = false, hasExternalReferences = false) { return { value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences }; } function createEvaluator({ evaluateElementAccessExpression, evaluateEntityNameExpression }) { function evaluate(expr, location) { let isSyntacticallyString = false; let resolvedOtherFiles = false; let hasExternalReferences = false; expr = skipParentheses(expr); switch (expr.kind) { case 225: const result = evaluate(expr.operand, location); resolvedOtherFiles = result.resolvedOtherFiles; hasExternalReferences = result.hasExternalReferences; if (typeof result.value === "number") { switch (expr.operator) { case 40: return evaluatorResult(result.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 41: return evaluatorResult(-result.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 55: return evaluatorResult(~result.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); } } break; case 227: { const left = evaluate(expr.left, location); const right = evaluate(expr.right, location); isSyntacticallyString = (left.isSyntacticallyString || right.isSyntacticallyString) && expr.operatorToken.kind === 40; resolvedOtherFiles = left.resolvedOtherFiles || right.resolvedOtherFiles; hasExternalReferences = left.hasExternalReferences || right.hasExternalReferences; if (typeof left.value === "number" && typeof right.value === "number") { switch (expr.operatorToken.kind) { case 52: return evaluatorResult(left.value | right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 51: return evaluatorResult(left.value & right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 49: return evaluatorResult(left.value >> right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 50: return evaluatorResult(left.value >>> right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 48: return evaluatorResult(left.value << right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 53: return evaluatorResult(left.value ^ right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 42: return evaluatorResult(left.value * right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 44: return evaluatorResult(left.value / right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 40: return evaluatorResult(left.value + right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 41: return evaluatorResult(left.value - right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 45: return evaluatorResult(left.value % right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); case 43: return evaluatorResult(left.value ** right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); } } else if ((typeof left.value === "string" || typeof left.value === "number") && (typeof right.value === "string" || typeof right.value === "number") && expr.operatorToken.kind === 40) { return evaluatorResult("" + left.value + right.value, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); } break; } case 11: case 15: return evaluatorResult(expr.text, true); case 229: return evaluateTemplateExpression(expr, location); case 9: return evaluatorResult(+expr.text); case 80: return evaluateEntityNameExpression(expr, location); case 212: if (isEntityNameExpression(expr)) { return evaluateEntityNameExpression(expr, location); } break; case 213: return evaluateElementAccessExpression(expr, location); } return evaluatorResult(undefined, isSyntacticallyString, resolvedOtherFiles, hasExternalReferences); } function evaluateTemplateExpression(expr, location) { let result = expr.head.text; let resolvedOtherFiles = false; let hasExternalReferences = false; for (const span of expr.templateSpans) { const spanResult = evaluate(span.expression, location); if (spanResult.value === undefined) { return evaluatorResult(undefined, true); } result += spanResult.value; result += span.literal.text; resolvedOtherFiles || (resolvedOtherFiles = spanResult.resolvedOtherFiles); hasExternalReferences || (hasExternalReferences = spanResult.hasExternalReferences); } return evaluatorResult(result, true, resolvedOtherFiles, hasExternalReferences); } return evaluate; } function isConstAssertion(location) { return isAssertionExpression(location) && isConstTypeReference(location.type) || isJSDocTypeTag(location) && isConstTypeReference(location.typeExpression); } function findConstructorDeclaration(node) { const members = node.members; for (const member of members) { if (member.kind === 177 && nodeIsPresent(member.body)) { return member; } } } function createNameResolver({ compilerOptions, requireSymbol, argumentsSymbol, error: error2, getSymbolOfDeclaration, globals, lookup, setRequiresScopeChangeCache = returnUndefined, getRequiresScopeChangeCache = returnUndefined, onPropertyWithInvalidInitializer = returnFalse, onFailedToResolveSymbol = returnUndefined, onSuccessfullyResolvedSymbol = returnUndefined }) { var isolatedModulesLikeFlagName = compilerOptions.verbatimModuleSyntax ? "verbatimModuleSyntax" : "isolatedModules"; var emitStandardClassFields = getEmitStandardClassFields(compilerOptions); var emptySymbols = createSymbolTable(); return resolveNameHelper; function resolveNameHelper(location, nameArg, meaning, nameNotFoundMessage, isUse, excludeGlobals) { var _a, _b, _c; const originalLocation = location; let result; let lastLocation; let lastSelfReferenceLocation; let propertyWithInvalidInitializer; let associatedDeclarationForContainingInitializerOrBindingName; let withinDeferredContext = false; let grandparent; const name = isString(nameArg) ? nameArg : nameArg.escapedText; loop: while (location) { if (name === "const" && isConstAssertion(location)) { return; } if (isModuleOrEnumDeclaration(location) && lastLocation && location.name === lastLocation) { lastLocation = location; location = location.parent; } if (canHaveLocals(location) && location.locals && !isGlobalSourceFile(location)) { if (result = lookup(location.locals, name, meaning)) { let useResult = true; if (isFunctionLike(location) && lastLocation && lastLocation !== location.body) { if (meaning & result.flags & 788968 && lastLocation.kind !== 321) { useResult = result.flags & 262144 ? !!(lastLocation.flags & 16) || lastLocation === location.type || lastLocation.kind === 170 || lastLocation.kind === 342 || lastLocation.kind === 343 || lastLocation.kind === 169 : false; } if (meaning & result.flags & 3) { if (useOuterVariableScopeInParameter(result, location, lastLocation)) { useResult = false; } else if (result.flags & 1) { useResult = lastLocation.kind === 170 || !!(lastLocation.flags & 16) || lastLocation === location.type && !!findAncestor(result.valueDeclaration, isParameter); } } } else if (location.kind === 195) { useResult = lastLocation === location.trueType; } if (useResult) { break loop; } else { result = undefined; } } } withinDeferredContext = withinDeferredContext || getIsDeferredContext(location, lastLocation); switch (location.kind) { case 308: if (!isExternalOrCommonJsModule(location)) break; case 268: const moduleExports = ((_a = getSymbolOfDeclaration(location)) == null ? undefined : _a.exports) || emptySymbols; if (location.kind === 308 || isModuleDeclaration(location) && location.flags & 33554432 && !isGlobalScopeAugmentation(location)) { if (result = moduleExports.get("default")) { const localSymbol = getLocalSymbolForExportDefault(result); if (localSymbol && result.flags & meaning && localSymbol.escapedName === name) { break loop; } result = undefined; } const moduleExport = moduleExports.get(name); if (moduleExport && moduleExport.flags === 2097152 && (getDeclarationOfKind(moduleExport, 282) || getDeclarationOfKind(moduleExport, 281))) { break; } } if (name !== "default" && (result = lookup(moduleExports, name, meaning & 2623475))) { if (isSourceFile(location) && location.commonJsModuleIndicator && !((_b = result.declarations) == null ? undefined : _b.some(isJSDocTypeAlias))) { result = undefined; } else { break loop; } } break; case 267: if (result = lookup(((_c = getSymbolOfDeclaration(location)) == null ? undefined : _c.exports) || emptySymbols, name, meaning & 8)) { if (nameNotFoundMessage && getIsolatedModules(compilerOptions) && !(location.flags & 33554432) && getSourceFileOfNode(location) !== getSourceFileOfNode(result.valueDeclaration)) { error2(originalLocation, Diagnostics.Cannot_access_0_from_another_file_without_qualification_when_1_is_enabled_Use_2_instead, unescapeLeadingUnderscores(name), isolatedModulesLikeFlagName, `${unescapeLeadingUnderscores(getSymbolOfDeclaration(location).escapedName)}.${unescapeLeadingUnderscores(name)}`); } break loop; } break; case 173: if (!isStatic(location)) { const ctor = findConstructorDeclaration(location.parent); if (ctor && ctor.locals) { if (lookup(ctor.locals, name, meaning & 111551)) { Debug.assertNode(location, isPropertyDeclaration); propertyWithInvalidInitializer = location; } } } break; case 264: case 232: case 265: if (result = lookup(getSymbolOfDeclaration(location).members || emptySymbols, name, meaning & 788968)) { if (!isTypeParameterSymbolDeclaredInContainer(result, location)) { result = undefined; break; } if (lastLocation && isStatic(lastLocation)) { if (nameNotFoundMessage) { error2(originalLocation, Diagnostics.Static_members_cannot_reference_class_type_parameters); } return; } break loop; } if (isClassExpression(location) && meaning & 32) { const className = location.name; if (className && name === className.escapedText) { result = location.symbol; break loop; } } break; case 234: if (lastLocation === location.expression && location.parent.token === 96) { const container = location.parent.parent; if (isClassLike(container) && (result = lookup(getSymbolOfDeclaration(container).members, name, meaning & 788968))) { if (nameNotFoundMessage) { error2(originalLocation, Diagnostics.Base_class_expressions_cannot_reference_class_type_parameters); } return; } } break; case 168: grandparent = location.parent.parent; if (isClassLike(grandparent) || grandparent.kind === 265) { if (result = lookup(getSymbolOfDeclaration(grandparent).members, name, meaning & 788968)) { if (nameNotFoundMessage) { error2(originalLocation, Diagnostics.A_computed_property_name_cannot_reference_a_type_parameter_from_its_containing_type); } return; } } break; case 220: if (getEmitScriptTarget(compilerOptions) >= 2) { break; } case 175: case 177: case 178: case 179: case 263: if (meaning & 3 && name === "arguments") { result = argumentsSymbol; break loop; } break; case 219: if (meaning & 3 && name === "arguments") { result = argumentsSymbol; break loop; } if (meaning & 16) { const functionName = location.name; if (functionName && name === functionName.escapedText) { result = location.symbol; break loop; } } break; case 171: if (location.parent && location.parent.kind === 170) { location = location.parent; } if (location.parent && (isClassElement(location.parent) || location.parent.kind === 264)) { location = location.parent; } break; case 347: case 339: case 341: case 352: const root = getJSDocRoot(location); if (root) { location = root.parent; } break; case 170: if (lastLocation && (lastLocation === location.initializer || lastLocation === location.name && isBindingPattern(lastLocation))) { if (!associatedDeclarationForContainingInitializerOrBindingName) { associatedDeclarationForContainingInitializerOrBindingName = location; } } break; case 209: if (lastLocation && (lastLocation === location.initializer || lastLocation === location.name && isBindingPattern(lastLocation))) { if (isPartOfParameterDeclaration(location) && !associatedDeclarationForContainingInitializerOrBindingName) { associatedDeclarationForContainingInitializerOrBindingName = location; } } break; case 196: if (meaning & 262144) { const parameterName = location.typeParameter.name; if (parameterName && name === parameterName.escapedText) { result = location.typeParameter.symbol; break loop; } } break; case 282: if (lastLocation && lastLocation === location.propertyName && location.parent.parent.moduleSpecifier) { location = location.parent.parent.parent; } break; } if (isSelfReferenceLocation(location, lastLocation)) { lastSelfReferenceLocation = location; } lastLocation = location; location = isJSDocTemplateTag(location) ? getEffectiveContainerForJSDocTemplateTag(location) || location.parent : isJSDocParameterTag(location) || isJSDocReturnTag(location) ? getHostSignatureFromJSDoc(location) || location.parent : location.parent; } if (isUse && result && (!lastSelfReferenceLocation || result !== lastSelfReferenceLocation.symbol)) { result.isReferenced |= meaning; } if (!result) { if (lastLocation) { Debug.assertNode(lastLocation, isSourceFile); if (lastLocation.commonJsModuleIndicator && name === "exports" && meaning & lastLocation.symbol.flags) { return lastLocation.symbol; } } if (!excludeGlobals) { result = lookup(globals, name, meaning); } } if (!result) { if (originalLocation && isInJSFile(originalLocation) && originalLocation.parent) { if (isRequireCall(originalLocation.parent, false)) { return requireSymbol; } } } if (nameNotFoundMessage) { if (propertyWithInvalidInitializer && onPropertyWithInvalidInitializer(originalLocation, name, propertyWithInvalidInitializer, result)) { return; } if (!result) { onFailedToResolveSymbol(originalLocation, nameArg, meaning, nameNotFoundMessage); } else { onSuccessfullyResolvedSymbol(originalLocation, result, meaning, lastLocation, associatedDeclarationForContainingInitializerOrBindingName, withinDeferredContext); } } return result; } function useOuterVariableScopeInParameter(result, location, lastLocation) { const target = getEmitScriptTarget(compilerOptions); const functionLocation = location; if (isParameter(lastLocation) && functionLocation.body && result.valueDeclaration && result.valueDeclaration.pos >= functionLocation.body.pos && result.valueDeclaration.end <= functionLocation.body.end) { if (target >= 2) { let declarationRequiresScopeChange = getRequiresScopeChangeCache(functionLocation); if (declarationRequiresScopeChange === undefined) { declarationRequiresScopeChange = forEach(functionLocation.parameters, requiresScopeChange) || false; setRequiresScopeChangeCache(functionLocation, declarationRequiresScopeChange); } return !declarationRequiresScopeChange; } } return false; function requiresScopeChange(node) { return requiresScopeChangeWorker(node.name) || !!node.initializer && requiresScopeChangeWorker(node.initializer); } function requiresScopeChangeWorker(node) { switch (node.kind) { case 220: case 219: case 263: case 177: return false; case 175: case 178: case 179: case 304: return requiresScopeChangeWorker(node.name); case 173: if (hasStaticModifier(node)) { return !emitStandardClassFields; } return requiresScopeChangeWorker(node.name); default: if (isNullishCoalesce(node) || isOptionalChain(node)) { return target < 7; } if (isBindingElement(node) && node.dotDotDotToken && isObjectBindingPattern(node.parent)) { return target < 4; } if (isTypeNode(node)) return false; return forEachChild(node, requiresScopeChangeWorker) || false; } } } function getIsDeferredContext(location, lastLocation) { if (location.kind !== 220 && location.kind !== 219) { return isTypeQueryNode(location) || (isFunctionLikeDeclaration(location) || location.kind === 173 && !isStatic(location)) && (!lastLocation || lastLocation !== location.name); } if (lastLocation && lastLocation === location.name) { return false; } if (location.asteriskToken || hasSyntacticModifier(location, 1024)) { return true; } return !getImmediatelyInvokedFunctionExpression(location); } function isSelfReferenceLocation(node, lastLocation) { switch (node.kind) { case 170: return !!lastLocation && lastLocation === node.name; case 263: case 264: case 265: case 267: case 266: case 268: return true; default: return false; } } function isTypeParameterSymbolDeclaredInContainer(symbol, container) { if (symbol.declarations) { for (const decl of symbol.declarations) { if (decl.kind === 169) { const parent2 = isJSDocTemplateTag(decl.parent) ? getJSDocHost(decl.parent) : decl.parent; if (parent2 === container) { return !(isJSDocTemplateTag(decl.parent) && find(decl.parent.parent.tags, isJSDocTypeAlias)); } } } } return false; } } function isPrimitiveLiteralValue(node, includeBigInt = true) { Debug.type(node); switch (node.kind) { case 112: case 97: case 9: case 11: case 15: return true; case 10: return includeBigInt; case 225: if (node.operator === 41) { return isNumericLiteral(node.operand) || includeBigInt && isBigIntLiteral(node.operand); } if (node.operator === 40) { return isNumericLiteral(node.operand); } return false; default: assertType(node); return false; } } function unwrapParenthesizedExpression(o) { while (o.kind === 218) { o = o.expression; } return o; } function hasInferredType(node) { Debug.type(node); switch (node.kind) { case 170: case 172: case 173: case 209: case 212: case 213: case 227: case 261: case 278: case 304: case 305: case 342: case 349: return true; default: assertType(node); return false; } } function isSideEffectImport(node) { const ancestor = findAncestor(node, isImportDeclaration); return !!ancestor && !ancestor.importClause; } var unprefixedNodeCoreModulesList = [ "assert", "assert/strict", "async_hooks", "buffer", "child_process", "cluster", "console", "constants", "crypto", "dgram", "diagnostics_channel", "dns", "dns/promises", "domain", "events", "fs", "fs/promises", "http", "http2", "https", "inspector", "inspector/promises", "module", "net", "os", "path", "path/posix", "path/win32", "perf_hooks", "process", "punycode", "querystring", "readline", "readline/promises", "repl", "stream", "stream/consumers", "stream/promises", "stream/web", "string_decoder", "sys", "timers", "timers/promises", "tls", "trace_events", "tty", "url", "util", "util/types", "v8", "vm", "wasi", "worker_threads", "zlib" ]; var unprefixedNodeCoreModules = new Set(unprefixedNodeCoreModulesList); var exclusivelyPrefixedNodeCoreModules = /* @__PURE__ */ new Set([ "node:quic", "node:sea", "node:sqlite", "node:test", "node:test/reporters" ]); var nodeCoreModules = /* @__PURE__ */ new Set([ ...unprefixedNodeCoreModulesList, ...unprefixedNodeCoreModulesList.map((name) => `node:${name}`), ...exclusivelyPrefixedNodeCoreModules ]); function forEachDynamicImportOrRequireCall(file, includeTypeSpaceImports, requireStringLiteralLikeArgument, cb) { const isJavaScriptFile = isInJSFile(file); const r = /import|require/g; while (r.exec(file.text) !== null) { const node = getNodeAtPosition(file, r.lastIndex, includeTypeSpaceImports); if (isJavaScriptFile && isRequireCall(node, requireStringLiteralLikeArgument)) { cb(node, node.arguments[0]); } else if (isImportCall(node) && node.arguments.length >= 1 && (!requireStringLiteralLikeArgument || isStringLiteralLike(node.arguments[0]))) { cb(node, node.arguments[0]); } else if (includeTypeSpaceImports && isLiteralImportTypeNode(node)) { cb(node, node.argument.literal); } else if (includeTypeSpaceImports && isJSDocImportTag(node)) { const moduleNameExpr = getExternalModuleName(node); if (moduleNameExpr && isStringLiteral(moduleNameExpr) && moduleNameExpr.text) { cb(node, moduleNameExpr); } } } } function getNodeAtPosition(sourceFile, position, includeJSDoc) { const isJavaScriptFile = isInJSFile(sourceFile); let current = sourceFile; const getContainingChild = (child) => { if (child.pos <= position && (position < child.end || position === child.end && child.kind === 1)) { return child; } }; while (true) { const child = isJavaScriptFile && includeJSDoc && hasJSDocNodes(current) && forEach(current.jsDoc, getContainingChild) || forEachChild(current, getContainingChild); if (!child || isMetaProperty(child)) { return current; } current = child; } } function isNewScopeNode(node) { return isFunctionLike(node) || isJSDocSignature(node) || isMappedTypeNode(node); } function getLibNameFromLibReference(libReference) { return toFileNameLowerCase(libReference.fileName); } function getLibFileNameFromLibReference(libReference) { const libName = getLibNameFromLibReference(libReference); return libMap.get(libName); } function forEachResolvedProjectReference(resolvedProjectReferences, cb) { return forEachProjectReference(undefined, resolvedProjectReferences, (resolvedRef) => resolvedRef && cb(resolvedRef)); } function forEachProjectReference(projectReferences, resolvedProjectReferences, cbResolvedRef, cbRef) { let seenResolvedRefs; return worker(projectReferences, resolvedProjectReferences, undefined); function worker(projectReferences2, resolvedProjectReferences2, parent2) { if (cbRef) { const result = cbRef(projectReferences2, parent2); if (result) return result; } let skipChildren; return forEach(resolvedProjectReferences2, (resolvedRef, index) => { if (resolvedRef && (seenResolvedRefs == null ? undefined : seenResolvedRefs.has(resolvedRef.sourceFile.path))) { (skipChildren ?? (skipChildren = /* @__PURE__ */ new Set)).add(resolvedRef); return; } const result = cbResolvedRef(resolvedRef, parent2, index); if (result || !resolvedRef) return result; (seenResolvedRefs || (seenResolvedRefs = /* @__PURE__ */ new Set)).add(resolvedRef.sourceFile.path); }) || forEach(resolvedProjectReferences2, (resolvedRef) => resolvedRef && !(skipChildren == null ? undefined : skipChildren.has(resolvedRef)) ? worker(resolvedRef.commandLine.projectReferences, resolvedRef.references, resolvedRef) : undefined); } } function getOptionsSyntaxByArrayElementValue(optionsObject, name, value) { return optionsObject && getPropertyArrayElementValue(optionsObject, name, value); } function getPropertyArrayElementValue(objectLiteral, propKey, elementValue) { return forEachPropertyAssignment(objectLiteral, propKey, (property) => isArrayLiteralExpression(property.initializer) ? find(property.initializer.elements, (element) => isStringLiteral(element) && element.text === elementValue) : undefined); } function getOptionsSyntaxByValue(optionsObject, name, value) { return forEachOptionsSyntaxByName(optionsObject, name, (property) => isStringLiteral(property.initializer) && property.initializer.text === value ? property.initializer : undefined); } function forEachOptionsSyntaxByName(optionsObject, name, callback) { return forEachPropertyAssignment(optionsObject, name, callback); } function getSynthesizedDeepClone(node, includeTrivia = true) { const clone2 = node && getSynthesizedDeepCloneWorker(node); if (clone2 && !includeTrivia) suppressLeadingAndTrailingTrivia(clone2); return setParentRecursive(clone2, false); } function getSynthesizedDeepCloneWithReplacements(node, includeTrivia, replaceNode) { let clone2 = replaceNode(node); if (clone2) { setOriginalNode(clone2, node); } else { clone2 = getSynthesizedDeepCloneWorker(node, replaceNode); } if (clone2 && !includeTrivia) suppressLeadingAndTrailingTrivia(clone2); return clone2; } function getSynthesizedDeepCloneWorker(node, replaceNode) { const nodeClone = replaceNode ? (n) => getSynthesizedDeepCloneWithReplacements(n, true, replaceNode) : getSynthesizedDeepClone; const nodesClone = replaceNode ? (ns) => ns && getSynthesizedDeepClonesWithReplacements(ns, true, replaceNode) : (ns) => ns && getSynthesizedDeepClones(ns); const visited = visitEachChild(node, nodeClone, undefined, nodesClone, nodeClone); if (visited === node) { const clone2 = isStringLiteral(node) ? setOriginalNode(factory.createStringLiteralFromNode(node), node) : isNumericLiteral(node) ? setOriginalNode(factory.createNumericLiteral(node.text, node.numericLiteralFlags), node) : factory.cloneNode(node); return setTextRange(clone2, node); } visited.parent = undefined; return visited; } function getSynthesizedDeepClones(nodes, includeTrivia = true) { if (nodes) { const cloned = factory.createNodeArray(nodes.map((n) => getSynthesizedDeepClone(n, includeTrivia)), nodes.hasTrailingComma); setTextRange(cloned, nodes); return cloned; } return nodes; } function getSynthesizedDeepClonesWithReplacements(nodes, includeTrivia, replaceNode) { return factory.createNodeArray(nodes.map((n) => getSynthesizedDeepCloneWithReplacements(n, includeTrivia, replaceNode)), nodes.hasTrailingComma); } function suppressLeadingAndTrailingTrivia(node) { suppressLeadingTrivia(node); suppressTrailingTrivia(node); } function suppressLeadingTrivia(node) { addEmitFlagsRecursively(node, 1024, getFirstChild); } function suppressTrailingTrivia(node) { addEmitFlagsRecursively(node, 2048, getLastChild); } function addEmitFlagsRecursively(node, flag, getChild) { addEmitFlags(node, flag); const child = getChild(node); if (child) addEmitFlagsRecursively(child, flag, getChild); } function getFirstChild(node) { return forEachChild(node, (child) => child); } function canHaveStatements(node) { return isBlock(node) || isModuleBlock(node) || isSourceFile(node) || isCaseClause(node) || isDefaultClause(node); } function isPotentiallyExecutableNode(node) { if (244 <= node.kind && node.kind <= 260) { if (isVariableStatement(node)) { if (getCombinedNodeFlags(node.declarationList) & 7) { return true; } return some(node.declarationList.declarations, (d) => d.initializer !== undefined); } return true; } return isClassDeclaration(node) || isEnumDeclaration(node) || isModuleDeclaration(node); } function createBaseNodeFactory() { let NodeConstructor2; let TokenConstructor2; let IdentifierConstructor2; let PrivateIdentifierConstructor2; let SourceFileConstructor2; return { createBaseSourceFileNode, createBaseIdentifierNode, createBasePrivateIdentifierNode, createBaseTokenNode, createBaseNode }; function createBaseSourceFileNode(kind) { return new (SourceFileConstructor2 || (SourceFileConstructor2 = objectAllocator.getSourceFileConstructor()))(kind, -1, -1); } function createBaseIdentifierNode(kind) { return new (IdentifierConstructor2 || (IdentifierConstructor2 = objectAllocator.getIdentifierConstructor()))(kind, -1, -1); } function createBasePrivateIdentifierNode(kind) { return new (PrivateIdentifierConstructor2 || (PrivateIdentifierConstructor2 = objectAllocator.getPrivateIdentifierConstructor()))(kind, -1, -1); } function createBaseTokenNode(kind) { return new (TokenConstructor2 || (TokenConstructor2 = objectAllocator.getTokenConstructor()))(kind, -1, -1); } function createBaseNode(kind) { return new (NodeConstructor2 || (NodeConstructor2 = objectAllocator.getNodeConstructor()))(kind, -1, -1); } } function createParenthesizerRules(factory2) { let binaryLeftOperandParenthesizerCache; let binaryRightOperandParenthesizerCache; return { getParenthesizeLeftSideOfBinaryForOperator, getParenthesizeRightSideOfBinaryForOperator, parenthesizeLeftSideOfBinary, parenthesizeRightSideOfBinary, parenthesizeExpressionOfComputedPropertyName, parenthesizeConditionOfConditionalExpression, parenthesizeBranchOfConditionalExpression, parenthesizeExpressionOfExportDefault, parenthesizeExpressionOfNew, parenthesizeLeftSideOfAccess, parenthesizeOperandOfPostfixUnary, parenthesizeOperandOfPrefixUnary, parenthesizeExpressionsOfCommaDelimitedList, parenthesizeExpressionForDisallowedComma, parenthesizeExpressionOfExpressionStatement, parenthesizeConciseBodyOfArrowFunction, parenthesizeCheckTypeOfConditionalType, parenthesizeExtendsTypeOfConditionalType, parenthesizeConstituentTypesOfUnionType, parenthesizeConstituentTypeOfUnionType, parenthesizeConstituentTypesOfIntersectionType, parenthesizeConstituentTypeOfIntersectionType, parenthesizeOperandOfTypeOperator, parenthesizeOperandOfReadonlyTypeOperator, parenthesizeNonArrayTypeOfPostfixType, parenthesizeElementTypesOfTupleType, parenthesizeElementTypeOfTupleType, parenthesizeTypeOfOptionalType, parenthesizeTypeArguments, parenthesizeLeadingTypeArgument }; function getParenthesizeLeftSideOfBinaryForOperator(operatorKind) { binaryLeftOperandParenthesizerCache || (binaryLeftOperandParenthesizerCache = /* @__PURE__ */ new Map); let parenthesizerRule = binaryLeftOperandParenthesizerCache.get(operatorKind); if (!parenthesizerRule) { parenthesizerRule = (node) => parenthesizeLeftSideOfBinary(operatorKind, node); binaryLeftOperandParenthesizerCache.set(operatorKind, parenthesizerRule); } return parenthesizerRule; } function getParenthesizeRightSideOfBinaryForOperator(operatorKind) { binaryRightOperandParenthesizerCache || (binaryRightOperandParenthesizerCache = /* @__PURE__ */ new Map); let parenthesizerRule = binaryRightOperandParenthesizerCache.get(operatorKind); if (!parenthesizerRule) { parenthesizerRule = (node) => parenthesizeRightSideOfBinary(operatorKind, undefined, node); binaryRightOperandParenthesizerCache.set(operatorKind, parenthesizerRule); } return parenthesizerRule; } function mixingBinaryOperatorsRequiresParentheses(a, b) { if (a === 61) { return b === 56 || b === 57; } if (b === 61) { return a === 56 || a === 57; } return false; } function binaryOperandNeedsParentheses(binaryOperator, operand, isLeftSideOfBinary, leftOperand) { const emittedOperand = skipPartiallyEmittedExpressions(operand); if (isBinaryExpression(emittedOperand) && mixingBinaryOperatorsRequiresParentheses(binaryOperator, emittedOperand.operatorToken.kind)) { return true; } const binaryOperatorPrecedence = getOperatorPrecedence(227, binaryOperator); const binaryOperatorAssociativity = getOperatorAssociativity(227, binaryOperator); if (!isLeftSideOfBinary && operand.kind === 220 && binaryOperatorPrecedence > 3) { return true; } const operandPrecedence = getExpressionPrecedence(emittedOperand); switch (compareValues(operandPrecedence, binaryOperatorPrecedence)) { case -1: if (!isLeftSideOfBinary && binaryOperatorAssociativity === 1 && operand.kind === 230) { return false; } return true; case 1: return false; case 0: if (isLeftSideOfBinary) { return binaryOperatorAssociativity === 1; } else { if (isBinaryExpression(emittedOperand) && emittedOperand.operatorToken.kind === binaryOperator) { if (operatorHasAssociativeProperty(binaryOperator)) { return false; } if (binaryOperator === 40) { const leftKind = leftOperand ? getLiteralKindOfBinaryPlusOperand(leftOperand) : 0; if (isLiteralKind(leftKind) && leftKind === getLiteralKindOfBinaryPlusOperand(emittedOperand)) { return false; } } } const operandAssociativity = getExpressionAssociativity(emittedOperand); return operandAssociativity === 0; } } } function operatorHasAssociativeProperty(binaryOperator) { return binaryOperator === 42 || binaryOperator === 52 || binaryOperator === 51 || binaryOperator === 53 || binaryOperator === 28; } function getLiteralKindOfBinaryPlusOperand(node) { node = skipPartiallyEmittedExpressions(node); if (isLiteralKind(node.kind)) { return node.kind; } if (node.kind === 227 && node.operatorToken.kind === 40) { if (node.cachedLiteralKind !== undefined) { return node.cachedLiteralKind; } const leftKind = getLiteralKindOfBinaryPlusOperand(node.left); const literalKind = isLiteralKind(leftKind) && leftKind === getLiteralKindOfBinaryPlusOperand(node.right) ? leftKind : 0; node.cachedLiteralKind = literalKind; return literalKind; } return 0; } function parenthesizeBinaryOperand(binaryOperator, operand, isLeftSideOfBinary, leftOperand) { const skipped = skipPartiallyEmittedExpressions(operand); if (skipped.kind === 218) { return operand; } return binaryOperandNeedsParentheses(binaryOperator, operand, isLeftSideOfBinary, leftOperand) ? factory2.createParenthesizedExpression(operand) : operand; } function parenthesizeLeftSideOfBinary(binaryOperator, leftSide) { return parenthesizeBinaryOperand(binaryOperator, leftSide, true); } function parenthesizeRightSideOfBinary(binaryOperator, leftSide, rightSide) { return parenthesizeBinaryOperand(binaryOperator, rightSide, false, leftSide); } function parenthesizeExpressionOfComputedPropertyName(expression) { return isCommaSequence(expression) ? factory2.createParenthesizedExpression(expression) : expression; } function parenthesizeConditionOfConditionalExpression(condition) { const conditionalPrecedence = getOperatorPrecedence(228, 58); const emittedCondition = skipPartiallyEmittedExpressions(condition); const conditionPrecedence = getExpressionPrecedence(emittedCondition); if (compareValues(conditionPrecedence, conditionalPrecedence) !== 1) { return factory2.createParenthesizedExpression(condition); } return condition; } function parenthesizeBranchOfConditionalExpression(branch) { const emittedExpression = skipPartiallyEmittedExpressions(branch); return isCommaSequence(emittedExpression) ? factory2.createParenthesizedExpression(branch) : branch; } function parenthesizeExpressionOfExportDefault(expression) { const check = skipPartiallyEmittedExpressions(expression); let needsParens = isCommaSequence(check); if (!needsParens) { switch (getLeftmostExpression(check, false).kind) { case 232: case 219: needsParens = true; } } return needsParens ? factory2.createParenthesizedExpression(expression) : expression; } function parenthesizeExpressionOfNew(expression) { const leftmostExpr = getLeftmostExpression(expression, true); switch (leftmostExpr.kind) { case 214: return factory2.createParenthesizedExpression(expression); case 215: return !leftmostExpr.arguments ? factory2.createParenthesizedExpression(expression) : expression; } return parenthesizeLeftSideOfAccess(expression); } function parenthesizeLeftSideOfAccess(expression, optionalChain) { const emittedExpression = skipPartiallyEmittedExpressions(expression); if (isLeftHandSideExpression(emittedExpression) && (emittedExpression.kind !== 215 || emittedExpression.arguments) && (optionalChain || !isOptionalChain(emittedExpression))) { return expression; } return setTextRange(factory2.createParenthesizedExpression(expression), expression); } function parenthesizeOperandOfPostfixUnary(operand) { return isLeftHandSideExpression(operand) ? operand : setTextRange(factory2.createParenthesizedExpression(operand), operand); } function parenthesizeOperandOfPrefixUnary(operand) { return isUnaryExpression(operand) ? operand : setTextRange(factory2.createParenthesizedExpression(operand), operand); } function parenthesizeExpressionsOfCommaDelimitedList(elements) { const result = sameMap(elements, parenthesizeExpressionForDisallowedComma); return setTextRange(factory2.createNodeArray(result, elements.hasTrailingComma), elements); } function parenthesizeExpressionForDisallowedComma(expression) { const emittedExpression = skipPartiallyEmittedExpressions(expression); const expressionPrecedence = getExpressionPrecedence(emittedExpression); const commaPrecedence = getOperatorPrecedence(227, 28); return expressionPrecedence > commaPrecedence ? expression : setTextRange(factory2.createParenthesizedExpression(expression), expression); } function parenthesizeExpressionOfExpressionStatement(expression) { const emittedExpression = skipPartiallyEmittedExpressions(expression); if (isCallExpression(emittedExpression)) { const callee = emittedExpression.expression; const kind = skipPartiallyEmittedExpressions(callee).kind; if (kind === 219 || kind === 220) { const updated = factory2.updateCallExpression(emittedExpression, setTextRange(factory2.createParenthesizedExpression(callee), callee), emittedExpression.typeArguments, emittedExpression.arguments); return factory2.restoreOuterExpressions(expression, updated, 8); } } const leftmostExpressionKind = getLeftmostExpression(emittedExpression, false).kind; if (leftmostExpressionKind === 211 || leftmostExpressionKind === 219) { return setTextRange(factory2.createParenthesizedExpression(expression), expression); } return expression; } function parenthesizeConciseBodyOfArrowFunction(body) { if (!isBlock(body) && (isCommaSequence(body) || getLeftmostExpression(body, false).kind === 211)) { return setTextRange(factory2.createParenthesizedExpression(body), body); } return body; } function parenthesizeCheckTypeOfConditionalType(checkType) { switch (checkType.kind) { case 185: case 186: case 195: return factory2.createParenthesizedType(checkType); } return checkType; } function parenthesizeExtendsTypeOfConditionalType(extendsType) { switch (extendsType.kind) { case 195: return factory2.createParenthesizedType(extendsType); } return extendsType; } function parenthesizeConstituentTypeOfUnionType(type) { switch (type.kind) { case 193: case 194: return factory2.createParenthesizedType(type); } return parenthesizeCheckTypeOfConditionalType(type); } function parenthesizeConstituentTypesOfUnionType(members) { return factory2.createNodeArray(sameMap(members, parenthesizeConstituentTypeOfUnionType)); } function parenthesizeConstituentTypeOfIntersectionType(type) { switch (type.kind) { case 193: case 194: return factory2.createParenthesizedType(type); } return parenthesizeConstituentTypeOfUnionType(type); } function parenthesizeConstituentTypesOfIntersectionType(members) { return factory2.createNodeArray(sameMap(members, parenthesizeConstituentTypeOfIntersectionType)); } function parenthesizeOperandOfTypeOperator(type) { switch (type.kind) { case 194: return factory2.createParenthesizedType(type); } return parenthesizeConstituentTypeOfIntersectionType(type); } function parenthesizeOperandOfReadonlyTypeOperator(type) { switch (type.kind) { case 199: return factory2.createParenthesizedType(type); } return parenthesizeOperandOfTypeOperator(type); } function parenthesizeNonArrayTypeOfPostfixType(type) { switch (type.kind) { case 196: case 199: case 187: return factory2.createParenthesizedType(type); } return parenthesizeOperandOfTypeOperator(type); } function parenthesizeElementTypesOfTupleType(types) { return factory2.createNodeArray(sameMap(types, parenthesizeElementTypeOfTupleType)); } function parenthesizeElementTypeOfTupleType(type) { if (hasJSDocPostfixQuestion(type)) return factory2.createParenthesizedType(type); return type; } function hasJSDocPostfixQuestion(type) { if (isJSDocNullableType(type)) return type.postfix; if (isNamedTupleMember(type)) return hasJSDocPostfixQuestion(type.type); if (isFunctionTypeNode(type) || isConstructorTypeNode(type) || isTypeOperatorNode(type)) return hasJSDocPostfixQuestion(type.type); if (isConditionalTypeNode(type)) return hasJSDocPostfixQuestion(type.falseType); if (isUnionTypeNode(type)) return hasJSDocPostfixQuestion(last(type.types)); if (isIntersectionTypeNode(type)) return hasJSDocPostfixQuestion(last(type.types)); if (isInferTypeNode(type)) return !!type.typeParameter.constraint && hasJSDocPostfixQuestion(type.typeParameter.constraint); return false; } function parenthesizeTypeOfOptionalType(type) { if (hasJSDocPostfixQuestion(type)) return factory2.createParenthesizedType(type); return parenthesizeNonArrayTypeOfPostfixType(type); } function parenthesizeLeadingTypeArgument(node) { return isFunctionOrConstructorTypeNode(node) && node.typeParameters ? factory2.createParenthesizedType(node) : node; } function parenthesizeOrdinalTypeArgument(node, i) { return i === 0 ? parenthesizeLeadingTypeArgument(node) : node; } function parenthesizeTypeArguments(typeArguments) { if (some(typeArguments)) { return factory2.createNodeArray(sameMap(typeArguments, parenthesizeOrdinalTypeArgument)); } } } var nullParenthesizerRules = { getParenthesizeLeftSideOfBinaryForOperator: (_) => identity, getParenthesizeRightSideOfBinaryForOperator: (_) => identity, parenthesizeLeftSideOfBinary: (_binaryOperator, leftSide) => leftSide, parenthesizeRightSideOfBinary: (_binaryOperator, _leftSide, rightSide) => rightSide, parenthesizeExpressionOfComputedPropertyName: identity, parenthesizeConditionOfConditionalExpression: identity, parenthesizeBranchOfConditionalExpression: identity, parenthesizeExpressionOfExportDefault: identity, parenthesizeExpressionOfNew: (expression) => cast(expression, isLeftHandSideExpression), parenthesizeLeftSideOfAccess: (expression) => cast(expression, isLeftHandSideExpression), parenthesizeOperandOfPostfixUnary: (operand) => cast(operand, isLeftHandSideExpression), parenthesizeOperandOfPrefixUnary: (operand) => cast(operand, isUnaryExpression), parenthesizeExpressionsOfCommaDelimitedList: (nodes) => cast(nodes, isNodeArray), parenthesizeExpressionForDisallowedComma: identity, parenthesizeExpressionOfExpressionStatement: identity, parenthesizeConciseBodyOfArrowFunction: identity, parenthesizeCheckTypeOfConditionalType: identity, parenthesizeExtendsTypeOfConditionalType: identity, parenthesizeConstituentTypesOfUnionType: (nodes) => cast(nodes, isNodeArray), parenthesizeConstituentTypeOfUnionType: identity, parenthesizeConstituentTypesOfIntersectionType: (nodes) => cast(nodes, isNodeArray), parenthesizeConstituentTypeOfIntersectionType: identity, parenthesizeOperandOfTypeOperator: identity, parenthesizeOperandOfReadonlyTypeOperator: identity, parenthesizeNonArrayTypeOfPostfixType: identity, parenthesizeElementTypesOfTupleType: (nodes) => cast(nodes, isNodeArray), parenthesizeElementTypeOfTupleType: identity, parenthesizeTypeOfOptionalType: identity, parenthesizeTypeArguments: (nodes) => nodes && cast(nodes, isNodeArray), parenthesizeLeadingTypeArgument: identity }; function createNodeConverters(factory2) { return { convertToFunctionBlock, convertToFunctionExpression, convertToClassExpression, convertToArrayAssignmentElement, convertToObjectAssignmentElement, convertToAssignmentPattern, convertToObjectAssignmentPattern, convertToArrayAssignmentPattern, convertToAssignmentElementTarget }; function convertToFunctionBlock(node, multiLine) { if (isBlock(node)) return node; const returnStatement = factory2.createReturnStatement(node); setTextRange(returnStatement, node); const body = factory2.createBlock([returnStatement], multiLine); setTextRange(body, node); return body; } function convertToFunctionExpression(node) { var _a; if (!node.body) return Debug.fail(`Cannot convert a FunctionDeclaration without a body`); const updated = factory2.createFunctionExpression((_a = getModifiers(node)) == null ? undefined : _a.filter((modifier) => !isExportModifier(modifier) && !isDefaultModifier(modifier)), node.asteriskToken, node.name, node.typeParameters, node.parameters, node.type, node.body); setOriginalNode(updated, node); setTextRange(updated, node); if (getStartsOnNewLine(node)) { setStartsOnNewLine(updated, true); } return updated; } function convertToClassExpression(node) { var _a; const updated = factory2.createClassExpression((_a = node.modifiers) == null ? undefined : _a.filter((modifier) => !isExportModifier(modifier) && !isDefaultModifier(modifier)), node.name, node.typeParameters, node.heritageClauses, node.members); setOriginalNode(updated, node); setTextRange(updated, node); if (getStartsOnNewLine(node)) { setStartsOnNewLine(updated, true); } return updated; } function convertToArrayAssignmentElement(element) { if (isBindingElement(element)) { if (element.dotDotDotToken) { Debug.assertNode(element.name, isIdentifier); return setOriginalNode(setTextRange(factory2.createSpreadElement(element.name), element), element); } const expression = convertToAssignmentElementTarget(element.name); return element.initializer ? setOriginalNode(setTextRange(factory2.createAssignment(expression, element.initializer), element), element) : expression; } return cast(element, isExpression); } function convertToObjectAssignmentElement(element) { if (isBindingElement(element)) { if (element.dotDotDotToken) { Debug.assertNode(element.name, isIdentifier); return setOriginalNode(setTextRange(factory2.createSpreadAssignment(element.name), element), element); } if (element.propertyName) { const expression = convertToAssignmentElementTarget(element.name); return setOriginalNode(setTextRange(factory2.createPropertyAssignment(element.propertyName, element.initializer ? factory2.createAssignment(expression, element.initializer) : expression), element), element); } Debug.assertNode(element.name, isIdentifier); return setOriginalNode(setTextRange(factory2.createShorthandPropertyAssignment(element.name, element.initializer), element), element); } return cast(element, isObjectLiteralElementLike); } function convertToAssignmentPattern(node) { switch (node.kind) { case 208: case 210: return convertToArrayAssignmentPattern(node); case 207: case 211: return convertToObjectAssignmentPattern(node); } } function convertToObjectAssignmentPattern(node) { if (isObjectBindingPattern(node)) { return setOriginalNode(setTextRange(factory2.createObjectLiteralExpression(map(node.elements, convertToObjectAssignmentElement)), node), node); } return cast(node, isObjectLiteralExpression); } function convertToArrayAssignmentPattern(node) { if (isArrayBindingPattern(node)) { return setOriginalNode(setTextRange(factory2.createArrayLiteralExpression(map(node.elements, convertToArrayAssignmentElement)), node), node); } return cast(node, isArrayLiteralExpression); } function convertToAssignmentElementTarget(node) { if (isBindingPattern(node)) { return convertToAssignmentPattern(node); } return cast(node, isExpression); } } var nullNodeConverters = { convertToFunctionBlock: notImplemented, convertToFunctionExpression: notImplemented, convertToClassExpression: notImplemented, convertToArrayAssignmentElement: notImplemented, convertToObjectAssignmentElement: notImplemented, convertToAssignmentPattern: notImplemented, convertToObjectAssignmentPattern: notImplemented, convertToArrayAssignmentPattern: notImplemented, convertToAssignmentElementTarget: notImplemented }; var nextAutoGenerateId = 0; var NodeFactoryFlags = /* @__PURE__ */ ((NodeFactoryFlags2) => { NodeFactoryFlags2[NodeFactoryFlags2["None"] = 0] = "None"; NodeFactoryFlags2[NodeFactoryFlags2["NoParenthesizerRules"] = 1] = "NoParenthesizerRules"; NodeFactoryFlags2[NodeFactoryFlags2["NoNodeConverters"] = 2] = "NoNodeConverters"; NodeFactoryFlags2[NodeFactoryFlags2["NoIndentationOnFreshPropertyAccess"] = 4] = "NoIndentationOnFreshPropertyAccess"; NodeFactoryFlags2[NodeFactoryFlags2["NoOriginalNode"] = 8] = "NoOriginalNode"; return NodeFactoryFlags2; })(NodeFactoryFlags || {}); var nodeFactoryPatchers = []; function addNodeFactoryPatcher(fn) { nodeFactoryPatchers.push(fn); } function createNodeFactory(flags, baseFactory2) { const setOriginal = flags & 8 ? identity : setOriginalNode; const parenthesizerRules = memoize(() => flags & 1 ? nullParenthesizerRules : createParenthesizerRules(factory2)); const converters = memoize(() => flags & 2 ? nullNodeConverters : createNodeConverters(factory2)); const getBinaryCreateFunction = memoizeOne((operator) => (left, right) => createBinaryExpression(left, operator, right)); const getPrefixUnaryCreateFunction = memoizeOne((operator) => (operand) => createPrefixUnaryExpression(operator, operand)); const getPostfixUnaryCreateFunction = memoizeOne((operator) => (operand) => createPostfixUnaryExpression(operand, operator)); const getJSDocPrimaryTypeCreateFunction = memoizeOne((kind) => () => createJSDocPrimaryTypeWorker(kind)); const getJSDocUnaryTypeCreateFunction = memoizeOne((kind) => (type) => createJSDocUnaryTypeWorker(kind, type)); const getJSDocUnaryTypeUpdateFunction = memoizeOne((kind) => (node, type) => updateJSDocUnaryTypeWorker(kind, node, type)); const getJSDocPrePostfixUnaryTypeCreateFunction = memoizeOne((kind) => (type, postfix) => createJSDocPrePostfixUnaryTypeWorker(kind, type, postfix)); const getJSDocPrePostfixUnaryTypeUpdateFunction = memoizeOne((kind) => (node, type) => updateJSDocPrePostfixUnaryTypeWorker(kind, node, type)); const getJSDocSimpleTagCreateFunction = memoizeOne((kind) => (tagName, comment) => createJSDocSimpleTagWorker(kind, tagName, comment)); const getJSDocSimpleTagUpdateFunction = memoizeOne((kind) => (node, tagName, comment) => updateJSDocSimpleTagWorker(kind, node, tagName, comment)); const getJSDocTypeLikeTagCreateFunction = memoizeOne((kind) => (tagName, typeExpression, comment) => createJSDocTypeLikeTagWorker(kind, tagName, typeExpression, comment)); const getJSDocTypeLikeTagUpdateFunction = memoizeOne((kind) => (node, tagName, typeExpression, comment) => updateJSDocTypeLikeTagWorker(kind, node, tagName, typeExpression, comment)); const factory2 = { get parenthesizer() { return parenthesizerRules(); }, get converters() { return converters(); }, baseFactory: baseFactory2, flags, createNodeArray, createNumericLiteral, createBigIntLiteral, createStringLiteral, createStringLiteralFromNode, createRegularExpressionLiteral, createLiteralLikeNode, createIdentifier, createTempVariable, createLoopVariable, createUniqueName, getGeneratedNameForNode, createPrivateIdentifier, createUniquePrivateName, getGeneratedPrivateNameForNode, createToken, createSuper, createThis, createNull, createTrue, createFalse, createModifier, createModifiersFromModifierFlags, createQualifiedName, updateQualifiedName, createComputedPropertyName, updateComputedPropertyName, createTypeParameterDeclaration, updateTypeParameterDeclaration, createParameterDeclaration, updateParameterDeclaration, createDecorator, updateDecorator, createPropertySignature, updatePropertySignature, createPropertyDeclaration, updatePropertyDeclaration: updatePropertyDeclaration2, createMethodSignature, updateMethodSignature, createMethodDeclaration, updateMethodDeclaration, createConstructorDeclaration, updateConstructorDeclaration, createGetAccessorDeclaration, updateGetAccessorDeclaration, createSetAccessorDeclaration, updateSetAccessorDeclaration, createCallSignature, updateCallSignature, createConstructSignature, updateConstructSignature, createIndexSignature, updateIndexSignature, createClassStaticBlockDeclaration, updateClassStaticBlockDeclaration, createTemplateLiteralTypeSpan, updateTemplateLiteralTypeSpan, createKeywordTypeNode, createTypePredicateNode, updateTypePredicateNode, createTypeReferenceNode, updateTypeReferenceNode, createFunctionTypeNode, updateFunctionTypeNode, createConstructorTypeNode, updateConstructorTypeNode, createTypeQueryNode, updateTypeQueryNode, createTypeLiteralNode, updateTypeLiteralNode, createArrayTypeNode, updateArrayTypeNode, createTupleTypeNode, updateTupleTypeNode, createNamedTupleMember, updateNamedTupleMember, createOptionalTypeNode, updateOptionalTypeNode, createRestTypeNode, updateRestTypeNode, createUnionTypeNode, updateUnionTypeNode, createIntersectionTypeNode, updateIntersectionTypeNode, createConditionalTypeNode, updateConditionalTypeNode, createInferTypeNode, updateInferTypeNode, createImportTypeNode, updateImportTypeNode, createParenthesizedType, updateParenthesizedType, createThisTypeNode, createTypeOperatorNode, updateTypeOperatorNode, createIndexedAccessTypeNode, updateIndexedAccessTypeNode, createMappedTypeNode, updateMappedTypeNode, createLiteralTypeNode, updateLiteralTypeNode, createTemplateLiteralType, updateTemplateLiteralType, createObjectBindingPattern, updateObjectBindingPattern, createArrayBindingPattern, updateArrayBindingPattern, createBindingElement, updateBindingElement, createArrayLiteralExpression, updateArrayLiteralExpression, createObjectLiteralExpression, updateObjectLiteralExpression, createPropertyAccessExpression: flags & 4 ? (expression, name) => setEmitFlags(createPropertyAccessExpression(expression, name), 262144) : createPropertyAccessExpression, updatePropertyAccessExpression, createPropertyAccessChain: flags & 4 ? (expression, questionDotToken, name) => setEmitFlags(createPropertyAccessChain(expression, questionDotToken, name), 262144) : createPropertyAccessChain, updatePropertyAccessChain, createElementAccessExpression, updateElementAccessExpression, createElementAccessChain, updateElementAccessChain, createCallExpression, updateCallExpression, createCallChain, updateCallChain, createNewExpression, updateNewExpression, createTaggedTemplateExpression, updateTaggedTemplateExpression, createTypeAssertion, updateTypeAssertion, createParenthesizedExpression, updateParenthesizedExpression, createFunctionExpression, updateFunctionExpression, createArrowFunction, updateArrowFunction, createDeleteExpression, updateDeleteExpression, createTypeOfExpression, updateTypeOfExpression, createVoidExpression, updateVoidExpression, createAwaitExpression, updateAwaitExpression, createPrefixUnaryExpression, updatePrefixUnaryExpression, createPostfixUnaryExpression, updatePostfixUnaryExpression, createBinaryExpression, updateBinaryExpression, createConditionalExpression, updateConditionalExpression, createTemplateExpression, updateTemplateExpression, createTemplateHead, createTemplateMiddle, createTemplateTail, createNoSubstitutionTemplateLiteral, createTemplateLiteralLikeNode, createYieldExpression, updateYieldExpression, createSpreadElement, updateSpreadElement, createClassExpression, updateClassExpression, createOmittedExpression, createExpressionWithTypeArguments, updateExpressionWithTypeArguments, createAsExpression, updateAsExpression, createNonNullExpression, updateNonNullExpression, createSatisfiesExpression, updateSatisfiesExpression, createNonNullChain, updateNonNullChain, createMetaProperty, updateMetaProperty, createTemplateSpan, updateTemplateSpan, createSemicolonClassElement, createBlock, updateBlock, createVariableStatement, updateVariableStatement, createEmptyStatement, createExpressionStatement, updateExpressionStatement, createIfStatement, updateIfStatement, createDoStatement, updateDoStatement, createWhileStatement, updateWhileStatement, createForStatement, updateForStatement, createForInStatement, updateForInStatement, createForOfStatement, updateForOfStatement, createContinueStatement, updateContinueStatement, createBreakStatement, updateBreakStatement, createReturnStatement, updateReturnStatement, createWithStatement, updateWithStatement, createSwitchStatement, updateSwitchStatement, createLabeledStatement, updateLabeledStatement, createThrowStatement, updateThrowStatement, createTryStatement, updateTryStatement, createDebuggerStatement, createVariableDeclaration, updateVariableDeclaration, createVariableDeclarationList, updateVariableDeclarationList, createFunctionDeclaration, updateFunctionDeclaration, createClassDeclaration, updateClassDeclaration, createInterfaceDeclaration, updateInterfaceDeclaration, createTypeAliasDeclaration, updateTypeAliasDeclaration, createEnumDeclaration, updateEnumDeclaration, createModuleDeclaration, updateModuleDeclaration, createModuleBlock, updateModuleBlock, createCaseBlock, updateCaseBlock, createNamespaceExportDeclaration, updateNamespaceExportDeclaration, createImportEqualsDeclaration, updateImportEqualsDeclaration, createImportDeclaration, updateImportDeclaration, createImportClause: createImportClause2, updateImportClause, createAssertClause, updateAssertClause, createAssertEntry, updateAssertEntry, createImportTypeAssertionContainer, updateImportTypeAssertionContainer, createImportAttributes, updateImportAttributes, createImportAttribute, updateImportAttribute, createNamespaceImport, updateNamespaceImport, createNamespaceExport, updateNamespaceExport, createNamedImports, updateNamedImports, createImportSpecifier, updateImportSpecifier, createExportAssignment: createExportAssignment2, updateExportAssignment, createExportDeclaration, updateExportDeclaration, createNamedExports, updateNamedExports, createExportSpecifier, updateExportSpecifier, createMissingDeclaration, createExternalModuleReference, updateExternalModuleReference, get createJSDocAllType() { return getJSDocPrimaryTypeCreateFunction(313); }, get createJSDocUnknownType() { return getJSDocPrimaryTypeCreateFunction(314); }, get createJSDocNonNullableType() { return getJSDocPrePostfixUnaryTypeCreateFunction(316); }, get updateJSDocNonNullableType() { return getJSDocPrePostfixUnaryTypeUpdateFunction(316); }, get createJSDocNullableType() { return getJSDocPrePostfixUnaryTypeCreateFunction(315); }, get updateJSDocNullableType() { return getJSDocPrePostfixUnaryTypeUpdateFunction(315); }, get createJSDocOptionalType() { return getJSDocUnaryTypeCreateFunction(317); }, get updateJSDocOptionalType() { return getJSDocUnaryTypeUpdateFunction(317); }, get createJSDocVariadicType() { return getJSDocUnaryTypeCreateFunction(319); }, get updateJSDocVariadicType() { return getJSDocUnaryTypeUpdateFunction(319); }, get createJSDocNamepathType() { return getJSDocUnaryTypeCreateFunction(320); }, get updateJSDocNamepathType() { return getJSDocUnaryTypeUpdateFunction(320); }, createJSDocFunctionType, updateJSDocFunctionType, createJSDocTypeLiteral, updateJSDocTypeLiteral, createJSDocTypeExpression, updateJSDocTypeExpression, createJSDocSignature, updateJSDocSignature, createJSDocTemplateTag, updateJSDocTemplateTag, createJSDocTypedefTag, updateJSDocTypedefTag, createJSDocParameterTag, updateJSDocParameterTag, createJSDocPropertyTag, updateJSDocPropertyTag, createJSDocCallbackTag, updateJSDocCallbackTag, createJSDocOverloadTag, updateJSDocOverloadTag, createJSDocAugmentsTag, updateJSDocAugmentsTag, createJSDocImplementsTag, updateJSDocImplementsTag, createJSDocSeeTag, updateJSDocSeeTag, createJSDocImportTag, updateJSDocImportTag, createJSDocNameReference, updateJSDocNameReference, createJSDocMemberName, updateJSDocMemberName, createJSDocLink, updateJSDocLink, createJSDocLinkCode, updateJSDocLinkCode, createJSDocLinkPlain, updateJSDocLinkPlain, get createJSDocTypeTag() { return getJSDocTypeLikeTagCreateFunction(345); }, get updateJSDocTypeTag() { return getJSDocTypeLikeTagUpdateFunction(345); }, get createJSDocReturnTag() { return getJSDocTypeLikeTagCreateFunction(343); }, get updateJSDocReturnTag() { return getJSDocTypeLikeTagUpdateFunction(343); }, get createJSDocThisTag() { return getJSDocTypeLikeTagCreateFunction(344); }, get updateJSDocThisTag() { return getJSDocTypeLikeTagUpdateFunction(344); }, get createJSDocAuthorTag() { return getJSDocSimpleTagCreateFunction(331); }, get updateJSDocAuthorTag() { return getJSDocSimpleTagUpdateFunction(331); }, get createJSDocClassTag() { return getJSDocSimpleTagCreateFunction(333); }, get updateJSDocClassTag() { return getJSDocSimpleTagUpdateFunction(333); }, get createJSDocPublicTag() { return getJSDocSimpleTagCreateFunction(334); }, get updateJSDocPublicTag() { return getJSDocSimpleTagUpdateFunction(334); }, get createJSDocPrivateTag() { return getJSDocSimpleTagCreateFunction(335); }, get updateJSDocPrivateTag() { return getJSDocSimpleTagUpdateFunction(335); }, get createJSDocProtectedTag() { return getJSDocSimpleTagCreateFunction(336); }, get updateJSDocProtectedTag() { return getJSDocSimpleTagUpdateFunction(336); }, get createJSDocReadonlyTag() { return getJSDocSimpleTagCreateFunction(337); }, get updateJSDocReadonlyTag() { return getJSDocSimpleTagUpdateFunction(337); }, get createJSDocOverrideTag() { return getJSDocSimpleTagCreateFunction(338); }, get updateJSDocOverrideTag() { return getJSDocSimpleTagUpdateFunction(338); }, get createJSDocDeprecatedTag() { return getJSDocSimpleTagCreateFunction(332); }, get updateJSDocDeprecatedTag() { return getJSDocSimpleTagUpdateFunction(332); }, get createJSDocThrowsTag() { return getJSDocTypeLikeTagCreateFunction(350); }, get updateJSDocThrowsTag() { return getJSDocTypeLikeTagUpdateFunction(350); }, get createJSDocSatisfiesTag() { return getJSDocTypeLikeTagCreateFunction(351); }, get updateJSDocSatisfiesTag() { return getJSDocTypeLikeTagUpdateFunction(351); }, createJSDocEnumTag, updateJSDocEnumTag, createJSDocUnknownTag, updateJSDocUnknownTag, createJSDocText, updateJSDocText, createJSDocComment, updateJSDocComment, createJsxElement, updateJsxElement, createJsxSelfClosingElement, updateJsxSelfClosingElement, createJsxOpeningElement, updateJsxOpeningElement, createJsxClosingElement, updateJsxClosingElement, createJsxFragment, createJsxText, updateJsxText, createJsxOpeningFragment, createJsxJsxClosingFragment, updateJsxFragment, createJsxAttribute, updateJsxAttribute, createJsxAttributes, updateJsxAttributes, createJsxSpreadAttribute, updateJsxSpreadAttribute, createJsxExpression, updateJsxExpression, createJsxNamespacedName, updateJsxNamespacedName, createCaseClause, updateCaseClause, createDefaultClause, updateDefaultClause, createHeritageClause, updateHeritageClause, createCatchClause, updateCatchClause, createPropertyAssignment, updatePropertyAssignment, createShorthandPropertyAssignment, updateShorthandPropertyAssignment, createSpreadAssignment, updateSpreadAssignment, createEnumMember, updateEnumMember, createSourceFile: createSourceFile2, updateSourceFile: updateSourceFile2, createRedirectedSourceFile, createBundle, updateBundle, createSyntheticExpression, createSyntaxList: createSyntaxList3, createNotEmittedStatement, createNotEmittedTypeElement, createPartiallyEmittedExpression, updatePartiallyEmittedExpression, createCommaListExpression, updateCommaListExpression, createSyntheticReferenceExpression, updateSyntheticReferenceExpression, cloneNode, get createComma() { return getBinaryCreateFunction(28); }, get createAssignment() { return getBinaryCreateFunction(64); }, get createLogicalOr() { return getBinaryCreateFunction(57); }, get createLogicalAnd() { return getBinaryCreateFunction(56); }, get createBitwiseOr() { return getBinaryCreateFunction(52); }, get createBitwiseXor() { return getBinaryCreateFunction(53); }, get createBitwiseAnd() { return getBinaryCreateFunction(51); }, get createStrictEquality() { return getBinaryCreateFunction(37); }, get createStrictInequality() { return getBinaryCreateFunction(38); }, get createEquality() { return getBinaryCreateFunction(35); }, get createInequality() { return getBinaryCreateFunction(36); }, get createLessThan() { return getBinaryCreateFunction(30); }, get createLessThanEquals() { return getBinaryCreateFunction(33); }, get createGreaterThan() { return getBinaryCreateFunction(32); }, get createGreaterThanEquals() { return getBinaryCreateFunction(34); }, get createLeftShift() { return getBinaryCreateFunction(48); }, get createRightShift() { return getBinaryCreateFunction(49); }, get createUnsignedRightShift() { return getBinaryCreateFunction(50); }, get createAdd() { return getBinaryCreateFunction(40); }, get createSubtract() { return getBinaryCreateFunction(41); }, get createMultiply() { return getBinaryCreateFunction(42); }, get createDivide() { return getBinaryCreateFunction(44); }, get createModulo() { return getBinaryCreateFunction(45); }, get createExponent() { return getBinaryCreateFunction(43); }, get createPrefixPlus() { return getPrefixUnaryCreateFunction(40); }, get createPrefixMinus() { return getPrefixUnaryCreateFunction(41); }, get createPrefixIncrement() { return getPrefixUnaryCreateFunction(46); }, get createPrefixDecrement() { return getPrefixUnaryCreateFunction(47); }, get createBitwiseNot() { return getPrefixUnaryCreateFunction(55); }, get createLogicalNot() { return getPrefixUnaryCreateFunction(54); }, get createPostfixIncrement() { return getPostfixUnaryCreateFunction(46); }, get createPostfixDecrement() { return getPostfixUnaryCreateFunction(47); }, createImmediatelyInvokedFunctionExpression, createImmediatelyInvokedArrowFunction, createVoidZero, createExportDefault, createExternalModuleExport, createTypeCheck, createIsNotTypeCheck, createMethodCall, createGlobalMethodCall, createFunctionBindCall, createFunctionCallCall, createFunctionApplyCall, createArraySliceCall, createArrayConcatCall, createObjectDefinePropertyCall, createObjectGetOwnPropertyDescriptorCall, createReflectGetCall, createReflectSetCall, createPropertyDescriptor, createCallBinding, createAssignmentTargetWrapper, inlineExpressions, getInternalName, getLocalName, getExportName, getDeclarationName, getNamespaceMemberName, getExternalModuleOrNamespaceExportName, restoreOuterExpressions, restoreEnclosingLabel, createUseStrictPrologue, copyPrologue, copyStandardPrologue, copyCustomPrologue, ensureUseStrict, liftToBlock, mergeLexicalEnvironment, replaceModifiers, replaceDecoratorsAndModifiers, replacePropertyName }; forEach(nodeFactoryPatchers, (fn) => fn(factory2)); return factory2; function createNodeArray(elements, hasTrailingComma) { if (elements === undefined || elements === emptyArray) { elements = []; } else if (isNodeArray(elements)) { if (hasTrailingComma === undefined || elements.hasTrailingComma === hasTrailingComma) { if (elements.transformFlags === undefined) { aggregateChildrenFlags(elements); } Debug.attachNodeArrayDebugInfo(elements); return elements; } const array2 = elements.slice(); array2.pos = elements.pos; array2.end = elements.end; array2.hasTrailingComma = hasTrailingComma; array2.transformFlags = elements.transformFlags; Debug.attachNodeArrayDebugInfo(array2); return array2; } const length2 = elements.length; const array = length2 >= 1 && length2 <= 4 ? elements.slice() : elements; array.pos = -1; array.end = -1; array.hasTrailingComma = !!hasTrailingComma; array.transformFlags = 0; aggregateChildrenFlags(array); Debug.attachNodeArrayDebugInfo(array); return array; } function createBaseNode(kind) { return baseFactory2.createBaseNode(kind); } function createBaseDeclaration(kind) { const node = createBaseNode(kind); node.symbol = undefined; node.localSymbol = undefined; return node; } function finishUpdateBaseSignatureDeclaration(updated, original) { if (updated !== original) { updated.typeArguments = original.typeArguments; } return update(updated, original); } function createNumericLiteral(value, numericLiteralFlags = 0) { const text = typeof value === "number" ? value + "" : value; Debug.assert(text.charCodeAt(0) !== 45, "Negative numbers should be created in combination with createPrefixUnaryExpression"); const node = createBaseDeclaration(9); node.text = text; node.numericLiteralFlags = numericLiteralFlags; if (numericLiteralFlags & 384) node.transformFlags |= 1024; return node; } function createBigIntLiteral(value) { const node = createBaseToken(10); node.text = typeof value === "string" ? value : pseudoBigIntToString(value) + "n"; node.transformFlags |= 32; return node; } function createBaseStringLiteral(text, isSingleQuote) { const node = createBaseDeclaration(11); node.text = text; node.singleQuote = isSingleQuote; return node; } function createStringLiteral(text, isSingleQuote, hasExtendedUnicodeEscape) { const node = createBaseStringLiteral(text, isSingleQuote); node.hasExtendedUnicodeEscape = hasExtendedUnicodeEscape; if (hasExtendedUnicodeEscape) node.transformFlags |= 1024; return node; } function createStringLiteralFromNode(sourceNode) { const node = createBaseStringLiteral(getTextOfIdentifierOrLiteral(sourceNode), undefined); node.textSourceNode = sourceNode; return node; } function createRegularExpressionLiteral(text) { const node = createBaseToken(14); node.text = text; return node; } function createLiteralLikeNode(kind, text) { switch (kind) { case 9: return createNumericLiteral(text, 0); case 10: return createBigIntLiteral(text); case 11: return createStringLiteral(text, undefined); case 12: return createJsxText(text, false); case 13: return createJsxText(text, true); case 14: return createRegularExpressionLiteral(text); case 15: return createTemplateLiteralLikeNode(kind, text, undefined, 0); } } function createBaseIdentifier(escapedText) { const node = baseFactory2.createBaseIdentifierNode(80); node.escapedText = escapedText; node.jsDoc = undefined; node.flowNode = undefined; node.symbol = undefined; return node; } function createBaseGeneratedIdentifier(text, autoGenerateFlags, prefix, suffix) { const node = createBaseIdentifier(escapeLeadingUnderscores(text)); setIdentifierAutoGenerate(node, { flags: autoGenerateFlags, id: nextAutoGenerateId, prefix, suffix }); nextAutoGenerateId++; return node; } function createIdentifier(text, originalKeywordKind, hasExtendedUnicodeEscape) { if (originalKeywordKind === undefined && text) { originalKeywordKind = stringToToken(text); } if (originalKeywordKind === 80) { originalKeywordKind = undefined; } const node = createBaseIdentifier(escapeLeadingUnderscores(text)); if (hasExtendedUnicodeEscape) node.flags |= 256; if (node.escapedText === "await") { node.transformFlags |= 67108864; } if (node.flags & 256) { node.transformFlags |= 1024; } return node; } function createTempVariable(recordTempVariable, reservedInNestedScopes, prefix, suffix) { let flags2 = 1; if (reservedInNestedScopes) flags2 |= 8; const name = createBaseGeneratedIdentifier("", flags2, prefix, suffix); if (recordTempVariable) { recordTempVariable(name); } return name; } function createLoopVariable(reservedInNestedScopes) { let flags2 = 2; if (reservedInNestedScopes) flags2 |= 8; return createBaseGeneratedIdentifier("", flags2, undefined, undefined); } function createUniqueName(text, flags2 = 0, prefix, suffix) { Debug.assert(!(flags2 & 7), "Argument out of range: flags"); Debug.assert((flags2 & (16 | 32)) !== 32, "GeneratedIdentifierFlags.FileLevel cannot be set without also setting GeneratedIdentifierFlags.Optimistic"); return createBaseGeneratedIdentifier(text, 3 | flags2, prefix, suffix); } function getGeneratedNameForNode(node, flags2 = 0, prefix, suffix) { Debug.assert(!(flags2 & 7), "Argument out of range: flags"); const text = !node ? "" : isMemberName(node) ? formatGeneratedName(false, prefix, node, suffix, idText) : `generated@${getNodeId(node)}`; if (prefix || suffix) flags2 |= 16; const name = createBaseGeneratedIdentifier(text, 4 | flags2, prefix, suffix); name.original = node; return name; } function createBasePrivateIdentifier(escapedText) { const node = baseFactory2.createBasePrivateIdentifierNode(81); node.escapedText = escapedText; node.transformFlags |= 16777216; return node; } function createPrivateIdentifier(text) { if (!startsWith(text, "#")) Debug.fail("First character of private identifier must be #: " + text); return createBasePrivateIdentifier(escapeLeadingUnderscores(text)); } function createBaseGeneratedPrivateIdentifier(text, autoGenerateFlags, prefix, suffix) { const node = createBasePrivateIdentifier(escapeLeadingUnderscores(text)); setIdentifierAutoGenerate(node, { flags: autoGenerateFlags, id: nextAutoGenerateId, prefix, suffix }); nextAutoGenerateId++; return node; } function createUniquePrivateName(text, prefix, suffix) { if (text && !startsWith(text, "#")) Debug.fail("First character of private identifier must be #: " + text); const autoGenerateFlags = 8 | (text ? 3 : 1); return createBaseGeneratedPrivateIdentifier(text ?? "", autoGenerateFlags, prefix, suffix); } function getGeneratedPrivateNameForNode(node, prefix, suffix) { const text = isMemberName(node) ? formatGeneratedName(true, prefix, node, suffix, idText) : `#generated@${getNodeId(node)}`; const flags2 = prefix || suffix ? 16 : 0; const name = createBaseGeneratedPrivateIdentifier(text, 4 | flags2, prefix, suffix); name.original = node; return name; } function createBaseToken(kind) { return baseFactory2.createBaseTokenNode(kind); } function createToken(token) { Debug.assert(token >= 0 && token <= 166, "Invalid token"); Debug.assert(token <= 15 || token >= 18, "Invalid token. Use 'createTemplateLiteralLikeNode' to create template literals."); Debug.assert(token <= 9 || token >= 15, "Invalid token. Use 'createLiteralLikeNode' to create literals."); Debug.assert(token !== 80, "Invalid token. Use 'createIdentifier' to create identifiers"); const node = createBaseToken(token); let transformFlags = 0; switch (token) { case 134: transformFlags = 256 | 128; break; case 160: transformFlags = 4; break; case 125: case 123: case 124: case 148: case 128: case 138: case 87: case 133: case 150: case 163: case 146: case 151: case 103: case 147: case 164: case 154: case 136: case 155: case 116: case 159: case 157: transformFlags = 1; break; case 108: transformFlags = 1024 | 134217728; node.flowNode = undefined; break; case 126: transformFlags = 1024; break; case 129: transformFlags = 16777216; break; case 110: transformFlags = 16384; node.flowNode = undefined; break; } if (transformFlags) { node.transformFlags |= transformFlags; } return node; } function createSuper() { return createToken(108); } function createThis() { return createToken(110); } function createNull() { return createToken(106); } function createTrue() { return createToken(112); } function createFalse() { return createToken(97); } function createModifier(kind) { return createToken(kind); } function createModifiersFromModifierFlags(flags2) { const result = []; if (flags2 & 32) result.push(createModifier(95)); if (flags2 & 128) result.push(createModifier(138)); if (flags2 & 2048) result.push(createModifier(90)); if (flags2 & 4096) result.push(createModifier(87)); if (flags2 & 1) result.push(createModifier(125)); if (flags2 & 2) result.push(createModifier(123)); if (flags2 & 4) result.push(createModifier(124)); if (flags2 & 64) result.push(createModifier(128)); if (flags2 & 256) result.push(createModifier(126)); if (flags2 & 16) result.push(createModifier(164)); if (flags2 & 8) result.push(createModifier(148)); if (flags2 & 512) result.push(createModifier(129)); if (flags2 & 1024) result.push(createModifier(134)); if (flags2 & 8192) result.push(createModifier(103)); if (flags2 & 16384) result.push(createModifier(147)); return result.length ? result : undefined; } function createQualifiedName(left, right) { const node = createBaseNode(167); node.left = left; node.right = asName(right); node.transformFlags |= propagateChildFlags(node.left) | propagateIdentifierNameFlags(node.right); node.flowNode = undefined; return node; } function updateQualifiedName(node, left, right) { return node.left !== left || node.right !== right ? update(createQualifiedName(left, right), node) : node; } function createComputedPropertyName(expression) { const node = createBaseNode(168); node.expression = parenthesizerRules().parenthesizeExpressionOfComputedPropertyName(expression); node.transformFlags |= propagateChildFlags(node.expression) | 1024 | 131072; return node; } function updateComputedPropertyName(node, expression) { return node.expression !== expression ? update(createComputedPropertyName(expression), node) : node; } function createTypeParameterDeclaration(modifiers, name, constraint, defaultType) { const node = createBaseDeclaration(169); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.constraint = constraint; node.default = defaultType; node.transformFlags = 1; node.expression = undefined; node.jsDoc = undefined; return node; } function updateTypeParameterDeclaration(node, modifiers, name, constraint, defaultType) { return node.modifiers !== modifiers || node.name !== name || node.constraint !== constraint || node.default !== defaultType ? update(createTypeParameterDeclaration(modifiers, name, constraint, defaultType), node) : node; } function createParameterDeclaration(modifiers, dotDotDotToken, name, questionToken, type, initializer) { const node = createBaseDeclaration(170); node.modifiers = asNodeArray(modifiers); node.dotDotDotToken = dotDotDotToken; node.name = asName(name); node.questionToken = questionToken; node.type = type; node.initializer = asInitializer(initializer); if (isThisIdentifier(node.name)) { node.transformFlags = 1; } else { node.transformFlags = propagateChildrenFlags(node.modifiers) | propagateChildFlags(node.dotDotDotToken) | propagateNameFlags(node.name) | propagateChildFlags(node.questionToken) | propagateChildFlags(node.initializer) | (node.questionToken ?? node.type ? 1 : 0) | (node.dotDotDotToken ?? node.initializer ? 1024 : 0) | (modifiersToFlags(node.modifiers) & 31 ? 8192 : 0); } node.jsDoc = undefined; return node; } function updateParameterDeclaration(node, modifiers, dotDotDotToken, name, questionToken, type, initializer) { return node.modifiers !== modifiers || node.dotDotDotToken !== dotDotDotToken || node.name !== name || node.questionToken !== questionToken || node.type !== type || node.initializer !== initializer ? update(createParameterDeclaration(modifiers, dotDotDotToken, name, questionToken, type, initializer), node) : node; } function createDecorator(expression) { const node = createBaseNode(171); node.expression = parenthesizerRules().parenthesizeLeftSideOfAccess(expression, false); node.transformFlags |= propagateChildFlags(node.expression) | 1 | 8192 | 33554432; return node; } function updateDecorator(node, expression) { return node.expression !== expression ? update(createDecorator(expression), node) : node; } function createPropertySignature(modifiers, name, questionToken, type) { const node = createBaseDeclaration(172); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.type = type; node.questionToken = questionToken; node.transformFlags = 1; node.initializer = undefined; node.jsDoc = undefined; return node; } function updatePropertySignature(node, modifiers, name, questionToken, type) { return node.modifiers !== modifiers || node.name !== name || node.questionToken !== questionToken || node.type !== type ? finishUpdatePropertySignature(createPropertySignature(modifiers, name, questionToken, type), node) : node; } function finishUpdatePropertySignature(updated, original) { if (updated !== original) { updated.initializer = original.initializer; } return update(updated, original); } function createPropertyDeclaration(modifiers, name, questionOrExclamationToken, type, initializer) { const node = createBaseDeclaration(173); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.questionToken = questionOrExclamationToken && isQuestionToken(questionOrExclamationToken) ? questionOrExclamationToken : undefined; node.exclamationToken = questionOrExclamationToken && isExclamationToken(questionOrExclamationToken) ? questionOrExclamationToken : undefined; node.type = type; node.initializer = asInitializer(initializer); const isAmbient = node.flags & 33554432 || modifiersToFlags(node.modifiers) & 128; node.transformFlags = propagateChildrenFlags(node.modifiers) | propagateNameFlags(node.name) | propagateChildFlags(node.initializer) | (isAmbient || node.questionToken || node.exclamationToken || node.type ? 1 : 0) | (isComputedPropertyName(node.name) || modifiersToFlags(node.modifiers) & 256 && node.initializer ? 8192 : 0) | 16777216; node.jsDoc = undefined; return node; } function updatePropertyDeclaration2(node, modifiers, name, questionOrExclamationToken, type, initializer) { return node.modifiers !== modifiers || node.name !== name || node.questionToken !== (questionOrExclamationToken !== undefined && isQuestionToken(questionOrExclamationToken) ? questionOrExclamationToken : undefined) || node.exclamationToken !== (questionOrExclamationToken !== undefined && isExclamationToken(questionOrExclamationToken) ? questionOrExclamationToken : undefined) || node.type !== type || node.initializer !== initializer ? update(createPropertyDeclaration(modifiers, name, questionOrExclamationToken, type, initializer), node) : node; } function createMethodSignature(modifiers, name, questionToken, typeParameters, parameters, type) { const node = createBaseDeclaration(174); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.questionToken = questionToken; node.typeParameters = asNodeArray(typeParameters); node.parameters = asNodeArray(parameters); node.type = type; node.transformFlags = 1; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.typeArguments = undefined; return node; } function updateMethodSignature(node, modifiers, name, questionToken, typeParameters, parameters, type) { return node.modifiers !== modifiers || node.name !== name || node.questionToken !== questionToken || node.typeParameters !== typeParameters || node.parameters !== parameters || node.type !== type ? finishUpdateBaseSignatureDeclaration(createMethodSignature(modifiers, name, questionToken, typeParameters, parameters, type), node) : node; } function createMethodDeclaration(modifiers, asteriskToken, name, questionToken, typeParameters, parameters, type, body) { const node = createBaseDeclaration(175); node.modifiers = asNodeArray(modifiers); node.asteriskToken = asteriskToken; node.name = asName(name); node.questionToken = questionToken; node.exclamationToken = undefined; node.typeParameters = asNodeArray(typeParameters); node.parameters = createNodeArray(parameters); node.type = type; node.body = body; if (!node.body) { node.transformFlags = 1; } else { const isAsync = modifiersToFlags(node.modifiers) & 1024; const isGenerator = !!node.asteriskToken; const isAsyncGenerator = isAsync && isGenerator; node.transformFlags = propagateChildrenFlags(node.modifiers) | propagateChildFlags(node.asteriskToken) | propagateNameFlags(node.name) | propagateChildFlags(node.questionToken) | propagateChildrenFlags(node.typeParameters) | propagateChildrenFlags(node.parameters) | propagateChildFlags(node.type) | propagateChildFlags(node.body) & ~67108864 | (isAsyncGenerator ? 128 : isAsync ? 256 : isGenerator ? 2048 : 0) | (node.questionToken || node.typeParameters || node.type ? 1 : 0) | 1024; } node.typeArguments = undefined; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.flowNode = undefined; node.endFlowNode = undefined; node.returnFlowNode = undefined; return node; } function updateMethodDeclaration(node, modifiers, asteriskToken, name, questionToken, typeParameters, parameters, type, body) { return node.modifiers !== modifiers || node.asteriskToken !== asteriskToken || node.name !== name || node.questionToken !== questionToken || node.typeParameters !== typeParameters || node.parameters !== parameters || node.type !== type || node.body !== body ? finishUpdateMethodDeclaration(createMethodDeclaration(modifiers, asteriskToken, name, questionToken, typeParameters, parameters, type, body), node) : node; } function finishUpdateMethodDeclaration(updated, original) { if (updated !== original) { updated.exclamationToken = original.exclamationToken; } return update(updated, original); } function createClassStaticBlockDeclaration(body) { const node = createBaseDeclaration(176); node.body = body; node.transformFlags = propagateChildFlags(body) | 16777216; node.modifiers = undefined; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.endFlowNode = undefined; node.returnFlowNode = undefined; return node; } function updateClassStaticBlockDeclaration(node, body) { return node.body !== body ? finishUpdateClassStaticBlockDeclaration(createClassStaticBlockDeclaration(body), node) : node; } function finishUpdateClassStaticBlockDeclaration(updated, original) { if (updated !== original) { updated.modifiers = original.modifiers; } return update(updated, original); } function createConstructorDeclaration(modifiers, parameters, body) { const node = createBaseDeclaration(177); node.modifiers = asNodeArray(modifiers); node.parameters = createNodeArray(parameters); node.body = body; if (!node.body) { node.transformFlags = 1; } else { node.transformFlags = propagateChildrenFlags(node.modifiers) | propagateChildrenFlags(node.parameters) | propagateChildFlags(node.body) & ~67108864 | 1024; } node.typeParameters = undefined; node.type = undefined; node.typeArguments = undefined; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.endFlowNode = undefined; node.returnFlowNode = undefined; return node; } function updateConstructorDeclaration(node, modifiers, parameters, body) { return node.modifiers !== modifiers || node.parameters !== parameters || node.body !== body ? finishUpdateConstructorDeclaration(createConstructorDeclaration(modifiers, parameters, body), node) : node; } function finishUpdateConstructorDeclaration(updated, original) { if (updated !== original) { updated.typeParameters = original.typeParameters; updated.type = original.type; } return finishUpdateBaseSignatureDeclaration(updated, original); } function createGetAccessorDeclaration(modifiers, name, parameters, type, body) { const node = createBaseDeclaration(178); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.parameters = createNodeArray(parameters); node.type = type; node.body = body; if (!node.body) { node.transformFlags = 1; } else { node.transformFlags = propagateChildrenFlags(node.modifiers) | propagateNameFlags(node.name) | propagateChildrenFlags(node.parameters) | propagateChildFlags(node.type) | propagateChildFlags(node.body) & ~67108864 | (node.type ? 1 : 0); } node.typeArguments = undefined; node.typeParameters = undefined; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.flowNode = undefined; node.endFlowNode = undefined; node.returnFlowNode = undefined; return node; } function updateGetAccessorDeclaration(node, modifiers, name, parameters, type, body) { return node.modifiers !== modifiers || node.name !== name || node.parameters !== parameters || node.type !== type || node.body !== body ? finishUpdateGetAccessorDeclaration(createGetAccessorDeclaration(modifiers, name, parameters, type, body), node) : node; } function finishUpdateGetAccessorDeclaration(updated, original) { if (updated !== original) { updated.typeParameters = original.typeParameters; } return finishUpdateBaseSignatureDeclaration(updated, original); } function createSetAccessorDeclaration(modifiers, name, parameters, body) { const node = createBaseDeclaration(179); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.parameters = createNodeArray(parameters); node.body = body; if (!node.body) { node.transformFlags = 1; } else { node.transformFlags = propagateChildrenFlags(node.modifiers) | propagateNameFlags(node.name) | propagateChildrenFlags(node.parameters) | propagateChildFlags(node.body) & ~67108864 | (node.type ? 1 : 0); } node.typeArguments = undefined; node.typeParameters = undefined; node.type = undefined; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.flowNode = undefined; node.endFlowNode = undefined; node.returnFlowNode = undefined; return node; } function updateSetAccessorDeclaration(node, modifiers, name, parameters, body) { return node.modifiers !== modifiers || node.name !== name || node.parameters !== parameters || node.body !== body ? finishUpdateSetAccessorDeclaration(createSetAccessorDeclaration(modifiers, name, parameters, body), node) : node; } function finishUpdateSetAccessorDeclaration(updated, original) { if (updated !== original) { updated.typeParameters = original.typeParameters; updated.type = original.type; } return finishUpdateBaseSignatureDeclaration(updated, original); } function createCallSignature(typeParameters, parameters, type) { const node = createBaseDeclaration(180); node.typeParameters = asNodeArray(typeParameters); node.parameters = asNodeArray(parameters); node.type = type; node.transformFlags = 1; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.typeArguments = undefined; return node; } function updateCallSignature(node, typeParameters, parameters, type) { return node.typeParameters !== typeParameters || node.parameters !== parameters || node.type !== type ? finishUpdateBaseSignatureDeclaration(createCallSignature(typeParameters, parameters, type), node) : node; } function createConstructSignature(typeParameters, parameters, type) { const node = createBaseDeclaration(181); node.typeParameters = asNodeArray(typeParameters); node.parameters = asNodeArray(parameters); node.type = type; node.transformFlags = 1; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.typeArguments = undefined; return node; } function updateConstructSignature(node, typeParameters, parameters, type) { return node.typeParameters !== typeParameters || node.parameters !== parameters || node.type !== type ? finishUpdateBaseSignatureDeclaration(createConstructSignature(typeParameters, parameters, type), node) : node; } function createIndexSignature(modifiers, parameters, type) { const node = createBaseDeclaration(182); node.modifiers = asNodeArray(modifiers); node.parameters = asNodeArray(parameters); node.type = type; node.transformFlags = 1; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.typeArguments = undefined; return node; } function updateIndexSignature(node, modifiers, parameters, type) { return node.parameters !== parameters || node.type !== type || node.modifiers !== modifiers ? finishUpdateBaseSignatureDeclaration(createIndexSignature(modifiers, parameters, type), node) : node; } function createTemplateLiteralTypeSpan(type, literal) { const node = createBaseNode(205); node.type = type; node.literal = literal; node.transformFlags = 1; return node; } function updateTemplateLiteralTypeSpan(node, type, literal) { return node.type !== type || node.literal !== literal ? update(createTemplateLiteralTypeSpan(type, literal), node) : node; } function createKeywordTypeNode(kind) { return createToken(kind); } function createTypePredicateNode(assertsModifier, parameterName, type) { const node = createBaseNode(183); node.assertsModifier = assertsModifier; node.parameterName = asName(parameterName); node.type = type; node.transformFlags = 1; return node; } function updateTypePredicateNode(node, assertsModifier, parameterName, type) { return node.assertsModifier !== assertsModifier || node.parameterName !== parameterName || node.type !== type ? update(createTypePredicateNode(assertsModifier, parameterName, type), node) : node; } function createTypeReferenceNode(typeName, typeArguments) { const node = createBaseNode(184); node.typeName = asName(typeName); node.typeArguments = typeArguments && parenthesizerRules().parenthesizeTypeArguments(createNodeArray(typeArguments)); node.transformFlags = 1; return node; } function updateTypeReferenceNode(node, typeName, typeArguments) { return node.typeName !== typeName || node.typeArguments !== typeArguments ? update(createTypeReferenceNode(typeName, typeArguments), node) : node; } function createFunctionTypeNode(typeParameters, parameters, type) { const node = createBaseDeclaration(185); node.typeParameters = asNodeArray(typeParameters); node.parameters = asNodeArray(parameters); node.type = type; node.transformFlags = 1; node.modifiers = undefined; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.typeArguments = undefined; return node; } function updateFunctionTypeNode(node, typeParameters, parameters, type) { return node.typeParameters !== typeParameters || node.parameters !== parameters || node.type !== type ? finishUpdateFunctionTypeNode(createFunctionTypeNode(typeParameters, parameters, type), node) : node; } function finishUpdateFunctionTypeNode(updated, original) { if (updated !== original) { updated.modifiers = original.modifiers; } return finishUpdateBaseSignatureDeclaration(updated, original); } function createConstructorTypeNode(...args) { return args.length === 4 ? createConstructorTypeNode1(...args) : args.length === 3 ? createConstructorTypeNode2(...args) : Debug.fail("Incorrect number of arguments specified."); } function createConstructorTypeNode1(modifiers, typeParameters, parameters, type) { const node = createBaseDeclaration(186); node.modifiers = asNodeArray(modifiers); node.typeParameters = asNodeArray(typeParameters); node.parameters = asNodeArray(parameters); node.type = type; node.transformFlags = 1; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.typeArguments = undefined; return node; } function createConstructorTypeNode2(typeParameters, parameters, type) { return createConstructorTypeNode1(undefined, typeParameters, parameters, type); } function updateConstructorTypeNode(...args) { return args.length === 5 ? updateConstructorTypeNode1(...args) : args.length === 4 ? updateConstructorTypeNode2(...args) : Debug.fail("Incorrect number of arguments specified."); } function updateConstructorTypeNode1(node, modifiers, typeParameters, parameters, type) { return node.modifiers !== modifiers || node.typeParameters !== typeParameters || node.parameters !== parameters || node.type !== type ? finishUpdateBaseSignatureDeclaration(createConstructorTypeNode(modifiers, typeParameters, parameters, type), node) : node; } function updateConstructorTypeNode2(node, typeParameters, parameters, type) { return updateConstructorTypeNode1(node, node.modifiers, typeParameters, parameters, type); } function createTypeQueryNode(exprName, typeArguments) { const node = createBaseNode(187); node.exprName = exprName; node.typeArguments = typeArguments && parenthesizerRules().parenthesizeTypeArguments(typeArguments); node.transformFlags = 1; return node; } function updateTypeQueryNode(node, exprName, typeArguments) { return node.exprName !== exprName || node.typeArguments !== typeArguments ? update(createTypeQueryNode(exprName, typeArguments), node) : node; } function createTypeLiteralNode(members) { const node = createBaseDeclaration(188); node.members = createNodeArray(members); node.transformFlags = 1; return node; } function updateTypeLiteralNode(node, members) { return node.members !== members ? update(createTypeLiteralNode(members), node) : node; } function createArrayTypeNode(elementType) { const node = createBaseNode(189); node.elementType = parenthesizerRules().parenthesizeNonArrayTypeOfPostfixType(elementType); node.transformFlags = 1; return node; } function updateArrayTypeNode(node, elementType) { return node.elementType !== elementType ? update(createArrayTypeNode(elementType), node) : node; } function createTupleTypeNode(elements) { const node = createBaseNode(190); node.elements = createNodeArray(parenthesizerRules().parenthesizeElementTypesOfTupleType(elements)); node.transformFlags = 1; return node; } function updateTupleTypeNode(node, elements) { return node.elements !== elements ? update(createTupleTypeNode(elements), node) : node; } function createNamedTupleMember(dotDotDotToken, name, questionToken, type) { const node = createBaseDeclaration(203); node.dotDotDotToken = dotDotDotToken; node.name = name; node.questionToken = questionToken; node.type = type; node.transformFlags = 1; node.jsDoc = undefined; return node; } function updateNamedTupleMember(node, dotDotDotToken, name, questionToken, type) { return node.dotDotDotToken !== dotDotDotToken || node.name !== name || node.questionToken !== questionToken || node.type !== type ? update(createNamedTupleMember(dotDotDotToken, name, questionToken, type), node) : node; } function createOptionalTypeNode(type) { const node = createBaseNode(191); node.type = parenthesizerRules().parenthesizeTypeOfOptionalType(type); node.transformFlags = 1; return node; } function updateOptionalTypeNode(node, type) { return node.type !== type ? update(createOptionalTypeNode(type), node) : node; } function createRestTypeNode(type) { const node = createBaseNode(192); node.type = type; node.transformFlags = 1; return node; } function updateRestTypeNode(node, type) { return node.type !== type ? update(createRestTypeNode(type), node) : node; } function createUnionOrIntersectionTypeNode(kind, types, parenthesize) { const node = createBaseNode(kind); node.types = factory2.createNodeArray(parenthesize(types)); node.transformFlags = 1; return node; } function updateUnionOrIntersectionTypeNode(node, types, parenthesize) { return node.types !== types ? update(createUnionOrIntersectionTypeNode(node.kind, types, parenthesize), node) : node; } function createUnionTypeNode(types) { return createUnionOrIntersectionTypeNode(193, types, parenthesizerRules().parenthesizeConstituentTypesOfUnionType); } function updateUnionTypeNode(node, types) { return updateUnionOrIntersectionTypeNode(node, types, parenthesizerRules().parenthesizeConstituentTypesOfUnionType); } function createIntersectionTypeNode(types) { return createUnionOrIntersectionTypeNode(194, types, parenthesizerRules().parenthesizeConstituentTypesOfIntersectionType); } function updateIntersectionTypeNode(node, types) { return updateUnionOrIntersectionTypeNode(node, types, parenthesizerRules().parenthesizeConstituentTypesOfIntersectionType); } function createConditionalTypeNode(checkType, extendsType, trueType, falseType) { const node = createBaseNode(195); node.checkType = parenthesizerRules().parenthesizeCheckTypeOfConditionalType(checkType); node.extendsType = parenthesizerRules().parenthesizeExtendsTypeOfConditionalType(extendsType); node.trueType = trueType; node.falseType = falseType; node.transformFlags = 1; node.locals = undefined; node.nextContainer = undefined; return node; } function updateConditionalTypeNode(node, checkType, extendsType, trueType, falseType) { return node.checkType !== checkType || node.extendsType !== extendsType || node.trueType !== trueType || node.falseType !== falseType ? update(createConditionalTypeNode(checkType, extendsType, trueType, falseType), node) : node; } function createInferTypeNode(typeParameter) { const node = createBaseNode(196); node.typeParameter = typeParameter; node.transformFlags = 1; return node; } function updateInferTypeNode(node, typeParameter) { return node.typeParameter !== typeParameter ? update(createInferTypeNode(typeParameter), node) : node; } function createTemplateLiteralType(head, templateSpans) { const node = createBaseNode(204); node.head = head; node.templateSpans = createNodeArray(templateSpans); node.transformFlags = 1; return node; } function updateTemplateLiteralType(node, head, templateSpans) { return node.head !== head || node.templateSpans !== templateSpans ? update(createTemplateLiteralType(head, templateSpans), node) : node; } function createImportTypeNode(argument, attributes, qualifier, typeArguments, isTypeOf = false) { const node = createBaseNode(206); node.argument = argument; node.attributes = attributes; if (node.assertions && node.assertions.assertClause && node.attributes) { node.assertions.assertClause = node.attributes; } node.qualifier = qualifier; node.typeArguments = typeArguments && parenthesizerRules().parenthesizeTypeArguments(typeArguments); node.isTypeOf = isTypeOf; node.transformFlags = 1; return node; } function updateImportTypeNode(node, argument, attributes, qualifier, typeArguments, isTypeOf = node.isTypeOf) { return node.argument !== argument || node.attributes !== attributes || node.qualifier !== qualifier || node.typeArguments !== typeArguments || node.isTypeOf !== isTypeOf ? update(createImportTypeNode(argument, attributes, qualifier, typeArguments, isTypeOf), node) : node; } function createParenthesizedType(type) { const node = createBaseNode(197); node.type = type; node.transformFlags = 1; return node; } function updateParenthesizedType(node, type) { return node.type !== type ? update(createParenthesizedType(type), node) : node; } function createThisTypeNode() { const node = createBaseNode(198); node.transformFlags = 1; return node; } function createTypeOperatorNode(operator, type) { const node = createBaseNode(199); node.operator = operator; node.type = operator === 148 ? parenthesizerRules().parenthesizeOperandOfReadonlyTypeOperator(type) : parenthesizerRules().parenthesizeOperandOfTypeOperator(type); node.transformFlags = 1; return node; } function updateTypeOperatorNode(node, type) { return node.type !== type ? update(createTypeOperatorNode(node.operator, type), node) : node; } function createIndexedAccessTypeNode(objectType, indexType) { const node = createBaseNode(200); node.objectType = parenthesizerRules().parenthesizeNonArrayTypeOfPostfixType(objectType); node.indexType = indexType; node.transformFlags = 1; return node; } function updateIndexedAccessTypeNode(node, objectType, indexType) { return node.objectType !== objectType || node.indexType !== indexType ? update(createIndexedAccessTypeNode(objectType, indexType), node) : node; } function createMappedTypeNode(readonlyToken, typeParameter, nameType, questionToken, type, members) { const node = createBaseDeclaration(201); node.readonlyToken = readonlyToken; node.typeParameter = typeParameter; node.nameType = nameType; node.questionToken = questionToken; node.type = type; node.members = members && createNodeArray(members); node.transformFlags = 1; node.locals = undefined; node.nextContainer = undefined; return node; } function updateMappedTypeNode(node, readonlyToken, typeParameter, nameType, questionToken, type, members) { return node.readonlyToken !== readonlyToken || node.typeParameter !== typeParameter || node.nameType !== nameType || node.questionToken !== questionToken || node.type !== type || node.members !== members ? update(createMappedTypeNode(readonlyToken, typeParameter, nameType, questionToken, type, members), node) : node; } function createLiteralTypeNode(literal) { const node = createBaseNode(202); node.literal = literal; node.transformFlags = 1; return node; } function updateLiteralTypeNode(node, literal) { return node.literal !== literal ? update(createLiteralTypeNode(literal), node) : node; } function createObjectBindingPattern(elements) { const node = createBaseNode(207); node.elements = createNodeArray(elements); node.transformFlags |= propagateChildrenFlags(node.elements) | 1024 | 524288; if (node.transformFlags & 32768) { node.transformFlags |= 128 | 65536; } return node; } function updateObjectBindingPattern(node, elements) { return node.elements !== elements ? update(createObjectBindingPattern(elements), node) : node; } function createArrayBindingPattern(elements) { const node = createBaseNode(208); node.elements = createNodeArray(elements); node.transformFlags |= propagateChildrenFlags(node.elements) | 1024 | 524288; return node; } function updateArrayBindingPattern(node, elements) { return node.elements !== elements ? update(createArrayBindingPattern(elements), node) : node; } function createBindingElement(dotDotDotToken, propertyName, name, initializer) { const node = createBaseDeclaration(209); node.dotDotDotToken = dotDotDotToken; node.propertyName = asName(propertyName); node.name = asName(name); node.initializer = asInitializer(initializer); node.transformFlags |= propagateChildFlags(node.dotDotDotToken) | propagateNameFlags(node.propertyName) | propagateNameFlags(node.name) | propagateChildFlags(node.initializer) | (node.dotDotDotToken ? 32768 : 0) | 1024; node.flowNode = undefined; return node; } function updateBindingElement(node, dotDotDotToken, propertyName, name, initializer) { return node.propertyName !== propertyName || node.dotDotDotToken !== dotDotDotToken || node.name !== name || node.initializer !== initializer ? update(createBindingElement(dotDotDotToken, propertyName, name, initializer), node) : node; } function createArrayLiteralExpression(elements, multiLine) { const node = createBaseNode(210); const lastElement = elements && lastOrUndefined(elements); const elementsArray = createNodeArray(elements, lastElement && isOmittedExpression(lastElement) ? true : undefined); node.elements = parenthesizerRules().parenthesizeExpressionsOfCommaDelimitedList(elementsArray); node.multiLine = multiLine; node.transformFlags |= propagateChildrenFlags(node.elements); return node; } function updateArrayLiteralExpression(node, elements) { return node.elements !== elements ? update(createArrayLiteralExpression(elements, node.multiLine), node) : node; } function createObjectLiteralExpression(properties, multiLine) { const node = createBaseDeclaration(211); node.properties = createNodeArray(properties); node.multiLine = multiLine; node.transformFlags |= propagateChildrenFlags(node.properties); node.jsDoc = undefined; return node; } function updateObjectLiteralExpression(node, properties) { return node.properties !== properties ? update(createObjectLiteralExpression(properties, node.multiLine), node) : node; } function createBasePropertyAccessExpression(expression, questionDotToken, name) { const node = createBaseDeclaration(212); node.expression = expression; node.questionDotToken = questionDotToken; node.name = name; node.transformFlags = propagateChildFlags(node.expression) | propagateChildFlags(node.questionDotToken) | (isIdentifier(node.name) ? propagateIdentifierNameFlags(node.name) : propagateChildFlags(node.name) | 536870912); node.jsDoc = undefined; node.flowNode = undefined; return node; } function createPropertyAccessExpression(expression, name) { const node = createBasePropertyAccessExpression(parenthesizerRules().parenthesizeLeftSideOfAccess(expression, false), undefined, asName(name)); if (isSuperKeyword(expression)) { node.transformFlags |= 256 | 128; } return node; } function updatePropertyAccessExpression(node, expression, name) { if (isPropertyAccessChain(node)) { return updatePropertyAccessChain(node, expression, node.questionDotToken, cast(name, isIdentifier)); } return node.expression !== expression || node.name !== name ? update(createPropertyAccessExpression(expression, name), node) : node; } function createPropertyAccessChain(expression, questionDotToken, name) { const node = createBasePropertyAccessExpression(parenthesizerRules().parenthesizeLeftSideOfAccess(expression, true), questionDotToken, asName(name)); node.flags |= 64; node.transformFlags |= 32; return node; } function updatePropertyAccessChain(node, expression, questionDotToken, name) { Debug.assert(!!(node.flags & 64), "Cannot update a PropertyAccessExpression using updatePropertyAccessChain. Use updatePropertyAccess instead."); return node.expression !== expression || node.questionDotToken !== questionDotToken || node.name !== name ? update(createPropertyAccessChain(expression, questionDotToken, name), node) : node; } function createBaseElementAccessExpression(expression, questionDotToken, argumentExpression) { const node = createBaseDeclaration(213); node.expression = expression; node.questionDotToken = questionDotToken; node.argumentExpression = argumentExpression; node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.questionDotToken) | propagateChildFlags(node.argumentExpression); node.jsDoc = undefined; node.flowNode = undefined; return node; } function createElementAccessExpression(expression, index) { const node = createBaseElementAccessExpression(parenthesizerRules().parenthesizeLeftSideOfAccess(expression, false), undefined, asExpression(index)); if (isSuperKeyword(expression)) { node.transformFlags |= 256 | 128; } return node; } function updateElementAccessExpression(node, expression, argumentExpression) { if (isElementAccessChain(node)) { return updateElementAccessChain(node, expression, node.questionDotToken, argumentExpression); } return node.expression !== expression || node.argumentExpression !== argumentExpression ? update(createElementAccessExpression(expression, argumentExpression), node) : node; } function createElementAccessChain(expression, questionDotToken, index) { const node = createBaseElementAccessExpression(parenthesizerRules().parenthesizeLeftSideOfAccess(expression, true), questionDotToken, asExpression(index)); node.flags |= 64; node.transformFlags |= 32; return node; } function updateElementAccessChain(node, expression, questionDotToken, argumentExpression) { Debug.assert(!!(node.flags & 64), "Cannot update a ElementAccessExpression using updateElementAccessChain. Use updateElementAccess instead."); return node.expression !== expression || node.questionDotToken !== questionDotToken || node.argumentExpression !== argumentExpression ? update(createElementAccessChain(expression, questionDotToken, argumentExpression), node) : node; } function createBaseCallExpression(expression, questionDotToken, typeArguments, argumentsArray) { const node = createBaseDeclaration(214); node.expression = expression; node.questionDotToken = questionDotToken; node.typeArguments = typeArguments; node.arguments = argumentsArray; node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.questionDotToken) | propagateChildrenFlags(node.typeArguments) | propagateChildrenFlags(node.arguments); if (node.typeArguments) { node.transformFlags |= 1; } if (isSuperProperty(node.expression)) { node.transformFlags |= 16384; } return node; } function createCallExpression(expression, typeArguments, argumentsArray) { const node = createBaseCallExpression(parenthesizerRules().parenthesizeLeftSideOfAccess(expression, false), undefined, asNodeArray(typeArguments), parenthesizerRules().parenthesizeExpressionsOfCommaDelimitedList(createNodeArray(argumentsArray))); if (isImportKeyword(node.expression)) { node.transformFlags |= 8388608; } return node; } function updateCallExpression(node, expression, typeArguments, argumentsArray) { if (isCallChain(node)) { return updateCallChain(node, expression, node.questionDotToken, typeArguments, argumentsArray); } return node.expression !== expression || node.typeArguments !== typeArguments || node.arguments !== argumentsArray ? update(createCallExpression(expression, typeArguments, argumentsArray), node) : node; } function createCallChain(expression, questionDotToken, typeArguments, argumentsArray) { const node = createBaseCallExpression(parenthesizerRules().parenthesizeLeftSideOfAccess(expression, true), questionDotToken, asNodeArray(typeArguments), parenthesizerRules().parenthesizeExpressionsOfCommaDelimitedList(createNodeArray(argumentsArray))); node.flags |= 64; node.transformFlags |= 32; return node; } function updateCallChain(node, expression, questionDotToken, typeArguments, argumentsArray) { Debug.assert(!!(node.flags & 64), "Cannot update a CallExpression using updateCallChain. Use updateCall instead."); return node.expression !== expression || node.questionDotToken !== questionDotToken || node.typeArguments !== typeArguments || node.arguments !== argumentsArray ? update(createCallChain(expression, questionDotToken, typeArguments, argumentsArray), node) : node; } function createNewExpression(expression, typeArguments, argumentsArray) { const node = createBaseDeclaration(215); node.expression = parenthesizerRules().parenthesizeExpressionOfNew(expression); node.typeArguments = asNodeArray(typeArguments); node.arguments = argumentsArray ? parenthesizerRules().parenthesizeExpressionsOfCommaDelimitedList(argumentsArray) : undefined; node.transformFlags |= propagateChildFlags(node.expression) | propagateChildrenFlags(node.typeArguments) | propagateChildrenFlags(node.arguments) | 32; if (node.typeArguments) { node.transformFlags |= 1; } return node; } function updateNewExpression(node, expression, typeArguments, argumentsArray) { return node.expression !== expression || node.typeArguments !== typeArguments || node.arguments !== argumentsArray ? update(createNewExpression(expression, typeArguments, argumentsArray), node) : node; } function createTaggedTemplateExpression(tag, typeArguments, template) { const node = createBaseNode(216); node.tag = parenthesizerRules().parenthesizeLeftSideOfAccess(tag, false); node.typeArguments = asNodeArray(typeArguments); node.template = template; node.transformFlags |= propagateChildFlags(node.tag) | propagateChildrenFlags(node.typeArguments) | propagateChildFlags(node.template) | 1024; if (node.typeArguments) { node.transformFlags |= 1; } if (hasInvalidEscape(node.template)) { node.transformFlags |= 128; } return node; } function updateTaggedTemplateExpression(node, tag, typeArguments, template) { return node.tag !== tag || node.typeArguments !== typeArguments || node.template !== template ? update(createTaggedTemplateExpression(tag, typeArguments, template), node) : node; } function createTypeAssertion(type, expression) { const node = createBaseNode(217); node.expression = parenthesizerRules().parenthesizeOperandOfPrefixUnary(expression); node.type = type; node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.type) | 1; return node; } function updateTypeAssertion(node, type, expression) { return node.type !== type || node.expression !== expression ? update(createTypeAssertion(type, expression), node) : node; } function createParenthesizedExpression(expression) { const node = createBaseNode(218); node.expression = expression; node.transformFlags = propagateChildFlags(node.expression); node.jsDoc = undefined; return node; } function updateParenthesizedExpression(node, expression) { return node.expression !== expression ? update(createParenthesizedExpression(expression), node) : node; } function createFunctionExpression(modifiers, asteriskToken, name, typeParameters, parameters, type, body) { const node = createBaseDeclaration(219); node.modifiers = asNodeArray(modifiers); node.asteriskToken = asteriskToken; node.name = asName(name); node.typeParameters = asNodeArray(typeParameters); node.parameters = createNodeArray(parameters); node.type = type; node.body = body; const isAsync = modifiersToFlags(node.modifiers) & 1024; const isGenerator = !!node.asteriskToken; const isAsyncGenerator = isAsync && isGenerator; node.transformFlags = propagateChildrenFlags(node.modifiers) | propagateChildFlags(node.asteriskToken) | propagateNameFlags(node.name) | propagateChildrenFlags(node.typeParameters) | propagateChildrenFlags(node.parameters) | propagateChildFlags(node.type) | propagateChildFlags(node.body) & ~67108864 | (isAsyncGenerator ? 128 : isAsync ? 256 : isGenerator ? 2048 : 0) | (node.typeParameters || node.type ? 1 : 0) | 4194304; node.typeArguments = undefined; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.flowNode = undefined; node.endFlowNode = undefined; node.returnFlowNode = undefined; return node; } function updateFunctionExpression(node, modifiers, asteriskToken, name, typeParameters, parameters, type, body) { return node.name !== name || node.modifiers !== modifiers || node.asteriskToken !== asteriskToken || node.typeParameters !== typeParameters || node.parameters !== parameters || node.type !== type || node.body !== body ? finishUpdateBaseSignatureDeclaration(createFunctionExpression(modifiers, asteriskToken, name, typeParameters, parameters, type, body), node) : node; } function createArrowFunction(modifiers, typeParameters, parameters, type, equalsGreaterThanToken, body) { const node = createBaseDeclaration(220); node.modifiers = asNodeArray(modifiers); node.typeParameters = asNodeArray(typeParameters); node.parameters = createNodeArray(parameters); node.type = type; node.equalsGreaterThanToken = equalsGreaterThanToken ?? createToken(39); node.body = parenthesizerRules().parenthesizeConciseBodyOfArrowFunction(body); const isAsync = modifiersToFlags(node.modifiers) & 1024; node.transformFlags = propagateChildrenFlags(node.modifiers) | propagateChildrenFlags(node.typeParameters) | propagateChildrenFlags(node.parameters) | propagateChildFlags(node.type) | propagateChildFlags(node.equalsGreaterThanToken) | propagateChildFlags(node.body) & ~67108864 | (node.typeParameters || node.type ? 1 : 0) | (isAsync ? 256 | 16384 : 0) | 1024; node.typeArguments = undefined; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.flowNode = undefined; node.endFlowNode = undefined; node.returnFlowNode = undefined; return node; } function updateArrowFunction(node, modifiers, typeParameters, parameters, type, equalsGreaterThanToken, body) { return node.modifiers !== modifiers || node.typeParameters !== typeParameters || node.parameters !== parameters || node.type !== type || node.equalsGreaterThanToken !== equalsGreaterThanToken || node.body !== body ? finishUpdateBaseSignatureDeclaration(createArrowFunction(modifiers, typeParameters, parameters, type, equalsGreaterThanToken, body), node) : node; } function createDeleteExpression(expression) { const node = createBaseNode(221); node.expression = parenthesizerRules().parenthesizeOperandOfPrefixUnary(expression); node.transformFlags |= propagateChildFlags(node.expression); return node; } function updateDeleteExpression(node, expression) { return node.expression !== expression ? update(createDeleteExpression(expression), node) : node; } function createTypeOfExpression(expression) { const node = createBaseNode(222); node.expression = parenthesizerRules().parenthesizeOperandOfPrefixUnary(expression); node.transformFlags |= propagateChildFlags(node.expression); return node; } function updateTypeOfExpression(node, expression) { return node.expression !== expression ? update(createTypeOfExpression(expression), node) : node; } function createVoidExpression(expression) { const node = createBaseNode(223); node.expression = parenthesizerRules().parenthesizeOperandOfPrefixUnary(expression); node.transformFlags |= propagateChildFlags(node.expression); return node; } function updateVoidExpression(node, expression) { return node.expression !== expression ? update(createVoidExpression(expression), node) : node; } function createAwaitExpression(expression) { const node = createBaseNode(224); node.expression = parenthesizerRules().parenthesizeOperandOfPrefixUnary(expression); node.transformFlags |= propagateChildFlags(node.expression) | 256 | 128 | 2097152; return node; } function updateAwaitExpression(node, expression) { return node.expression !== expression ? update(createAwaitExpression(expression), node) : node; } function createPrefixUnaryExpression(operator, operand) { const node = createBaseNode(225); node.operator = operator; node.operand = parenthesizerRules().parenthesizeOperandOfPrefixUnary(operand); node.transformFlags |= propagateChildFlags(node.operand); if ((operator === 46 || operator === 47) && isIdentifier(node.operand) && !isGeneratedIdentifier(node.operand) && !isLocalName(node.operand)) { node.transformFlags |= 268435456; } return node; } function updatePrefixUnaryExpression(node, operand) { return node.operand !== operand ? update(createPrefixUnaryExpression(node.operator, operand), node) : node; } function createPostfixUnaryExpression(operand, operator) { const node = createBaseNode(226); node.operator = operator; node.operand = parenthesizerRules().parenthesizeOperandOfPostfixUnary(operand); node.transformFlags |= propagateChildFlags(node.operand); if (isIdentifier(node.operand) && !isGeneratedIdentifier(node.operand) && !isLocalName(node.operand)) { node.transformFlags |= 268435456; } return node; } function updatePostfixUnaryExpression(node, operand) { return node.operand !== operand ? update(createPostfixUnaryExpression(operand, node.operator), node) : node; } function createBinaryExpression(left, operator, right) { const node = createBaseDeclaration(227); const operatorToken = asToken(operator); const operatorKind = operatorToken.kind; node.left = parenthesizerRules().parenthesizeLeftSideOfBinary(operatorKind, left); node.operatorToken = operatorToken; node.right = parenthesizerRules().parenthesizeRightSideOfBinary(operatorKind, node.left, right); node.transformFlags |= propagateChildFlags(node.left) | propagateChildFlags(node.operatorToken) | propagateChildFlags(node.right); if (operatorKind === 61) { node.transformFlags |= 32; } else if (operatorKind === 64) { if (isObjectLiteralExpression(node.left)) { node.transformFlags |= 1024 | 128 | 4096 | propagateAssignmentPatternFlags(node.left); } else if (isArrayLiteralExpression(node.left)) { node.transformFlags |= 1024 | 4096 | propagateAssignmentPatternFlags(node.left); } } else if (operatorKind === 43 || operatorKind === 68) { node.transformFlags |= 512; } else if (isLogicalOrCoalescingAssignmentOperator(operatorKind)) { node.transformFlags |= 16; } if (operatorKind === 103 && isPrivateIdentifier(node.left)) { node.transformFlags |= 536870912; } node.jsDoc = undefined; return node; } function propagateAssignmentPatternFlags(node) { return containsObjectRestOrSpread(node) ? 65536 : 0; } function updateBinaryExpression(node, left, operator, right) { return node.left !== left || node.operatorToken !== operator || node.right !== right ? update(createBinaryExpression(left, operator, right), node) : node; } function createConditionalExpression(condition, questionToken, whenTrue, colonToken, whenFalse) { const node = createBaseNode(228); node.condition = parenthesizerRules().parenthesizeConditionOfConditionalExpression(condition); node.questionToken = questionToken ?? createToken(58); node.whenTrue = parenthesizerRules().parenthesizeBranchOfConditionalExpression(whenTrue); node.colonToken = colonToken ?? createToken(59); node.whenFalse = parenthesizerRules().parenthesizeBranchOfConditionalExpression(whenFalse); node.transformFlags |= propagateChildFlags(node.condition) | propagateChildFlags(node.questionToken) | propagateChildFlags(node.whenTrue) | propagateChildFlags(node.colonToken) | propagateChildFlags(node.whenFalse); node.flowNodeWhenFalse = undefined; node.flowNodeWhenTrue = undefined; return node; } function updateConditionalExpression(node, condition, questionToken, whenTrue, colonToken, whenFalse) { return node.condition !== condition || node.questionToken !== questionToken || node.whenTrue !== whenTrue || node.colonToken !== colonToken || node.whenFalse !== whenFalse ? update(createConditionalExpression(condition, questionToken, whenTrue, colonToken, whenFalse), node) : node; } function createTemplateExpression(head, templateSpans) { const node = createBaseNode(229); node.head = head; node.templateSpans = createNodeArray(templateSpans); node.transformFlags |= propagateChildFlags(node.head) | propagateChildrenFlags(node.templateSpans) | 1024; return node; } function updateTemplateExpression(node, head, templateSpans) { return node.head !== head || node.templateSpans !== templateSpans ? update(createTemplateExpression(head, templateSpans), node) : node; } function checkTemplateLiteralLikeNode(kind, text, rawText, templateFlags = 0) { Debug.assert(!(templateFlags & ~7176), "Unsupported template flags."); let cooked = undefined; if (rawText !== undefined && rawText !== text) { cooked = getCookedText(kind, rawText); if (typeof cooked === "object") { return Debug.fail("Invalid raw text"); } } if (text === undefined) { if (cooked === undefined) { return Debug.fail("Arguments 'text' and 'rawText' may not both be undefined."); } text = cooked; } else if (cooked !== undefined) { Debug.assert(text === cooked, "Expected argument 'text' to be the normalized (i.e. 'cooked') version of argument 'rawText'."); } return text; } function getTransformFlagsOfTemplateLiteralLike(templateFlags) { let transformFlags = 1024; if (templateFlags) { transformFlags |= 128; } return transformFlags; } function createTemplateLiteralLikeToken(kind, text, rawText, templateFlags) { const node = createBaseToken(kind); node.text = text; node.rawText = rawText; node.templateFlags = templateFlags & 7176; node.transformFlags = getTransformFlagsOfTemplateLiteralLike(node.templateFlags); return node; } function createTemplateLiteralLikeDeclaration(kind, text, rawText, templateFlags) { const node = createBaseDeclaration(kind); node.text = text; node.rawText = rawText; node.templateFlags = templateFlags & 7176; node.transformFlags = getTransformFlagsOfTemplateLiteralLike(node.templateFlags); return node; } function createTemplateLiteralLikeNode(kind, text, rawText, templateFlags) { if (kind === 15) { return createTemplateLiteralLikeDeclaration(kind, text, rawText, templateFlags); } return createTemplateLiteralLikeToken(kind, text, rawText, templateFlags); } function createTemplateHead(text, rawText, templateFlags) { text = checkTemplateLiteralLikeNode(16, text, rawText, templateFlags); return createTemplateLiteralLikeNode(16, text, rawText, templateFlags); } function createTemplateMiddle(text, rawText, templateFlags) { text = checkTemplateLiteralLikeNode(16, text, rawText, templateFlags); return createTemplateLiteralLikeNode(17, text, rawText, templateFlags); } function createTemplateTail(text, rawText, templateFlags) { text = checkTemplateLiteralLikeNode(16, text, rawText, templateFlags); return createTemplateLiteralLikeNode(18, text, rawText, templateFlags); } function createNoSubstitutionTemplateLiteral(text, rawText, templateFlags) { text = checkTemplateLiteralLikeNode(16, text, rawText, templateFlags); return createTemplateLiteralLikeDeclaration(15, text, rawText, templateFlags); } function createYieldExpression(asteriskToken, expression) { Debug.assert(!asteriskToken || !!expression, "A `YieldExpression` with an asteriskToken must have an expression."); const node = createBaseNode(230); node.expression = expression && parenthesizerRules().parenthesizeExpressionForDisallowedComma(expression); node.asteriskToken = asteriskToken; node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.asteriskToken) | 1024 | 128 | 1048576; return node; } function updateYieldExpression(node, asteriskToken, expression) { return node.expression !== expression || node.asteriskToken !== asteriskToken ? update(createYieldExpression(asteriskToken, expression), node) : node; } function createSpreadElement(expression) { const node = createBaseNode(231); node.expression = parenthesizerRules().parenthesizeExpressionForDisallowedComma(expression); node.transformFlags |= propagateChildFlags(node.expression) | 1024 | 32768; return node; } function updateSpreadElement(node, expression) { return node.expression !== expression ? update(createSpreadElement(expression), node) : node; } function createClassExpression(modifiers, name, typeParameters, heritageClauses, members) { const node = createBaseDeclaration(232); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.typeParameters = asNodeArray(typeParameters); node.heritageClauses = asNodeArray(heritageClauses); node.members = createNodeArray(members); node.transformFlags |= propagateChildrenFlags(node.modifiers) | propagateNameFlags(node.name) | propagateChildrenFlags(node.typeParameters) | propagateChildrenFlags(node.heritageClauses) | propagateChildrenFlags(node.members) | (node.typeParameters ? 1 : 0) | 1024; node.jsDoc = undefined; return node; } function updateClassExpression(node, modifiers, name, typeParameters, heritageClauses, members) { return node.modifiers !== modifiers || node.name !== name || node.typeParameters !== typeParameters || node.heritageClauses !== heritageClauses || node.members !== members ? update(createClassExpression(modifiers, name, typeParameters, heritageClauses, members), node) : node; } function createOmittedExpression() { return createBaseNode(233); } function createExpressionWithTypeArguments(expression, typeArguments) { const node = createBaseNode(234); node.expression = parenthesizerRules().parenthesizeLeftSideOfAccess(expression, false); node.typeArguments = typeArguments && parenthesizerRules().parenthesizeTypeArguments(typeArguments); node.transformFlags |= propagateChildFlags(node.expression) | propagateChildrenFlags(node.typeArguments) | 1024; return node; } function updateExpressionWithTypeArguments(node, expression, typeArguments) { return node.expression !== expression || node.typeArguments !== typeArguments ? update(createExpressionWithTypeArguments(expression, typeArguments), node) : node; } function createAsExpression(expression, type) { const node = createBaseNode(235); node.expression = expression; node.type = type; node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.type) | 1; return node; } function updateAsExpression(node, expression, type) { return node.expression !== expression || node.type !== type ? update(createAsExpression(expression, type), node) : node; } function createNonNullExpression(expression) { const node = createBaseNode(236); node.expression = parenthesizerRules().parenthesizeLeftSideOfAccess(expression, false); node.transformFlags |= propagateChildFlags(node.expression) | 1; return node; } function updateNonNullExpression(node, expression) { if (isNonNullChain(node)) { return updateNonNullChain(node, expression); } return node.expression !== expression ? update(createNonNullExpression(expression), node) : node; } function createSatisfiesExpression(expression, type) { const node = createBaseNode(239); node.expression = expression; node.type = type; node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.type) | 1; return node; } function updateSatisfiesExpression(node, expression, type) { return node.expression !== expression || node.type !== type ? update(createSatisfiesExpression(expression, type), node) : node; } function createNonNullChain(expression) { const node = createBaseNode(236); node.flags |= 64; node.expression = parenthesizerRules().parenthesizeLeftSideOfAccess(expression, true); node.transformFlags |= propagateChildFlags(node.expression) | 1; return node; } function updateNonNullChain(node, expression) { Debug.assert(!!(node.flags & 64), "Cannot update a NonNullExpression using updateNonNullChain. Use updateNonNullExpression instead."); return node.expression !== expression ? update(createNonNullChain(expression), node) : node; } function createMetaProperty(keywordToken, name) { const node = createBaseNode(237); node.keywordToken = keywordToken; node.name = name; node.transformFlags |= propagateChildFlags(node.name); switch (keywordToken) { case 105: node.transformFlags |= 1024; break; case 102: node.transformFlags |= 32; break; default: return Debug.assertNever(keywordToken); } node.flowNode = undefined; return node; } function updateMetaProperty(node, name) { return node.name !== name ? update(createMetaProperty(node.keywordToken, name), node) : node; } function createTemplateSpan(expression, literal) { const node = createBaseNode(240); node.expression = expression; node.literal = literal; node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.literal) | 1024; return node; } function updateTemplateSpan(node, expression, literal) { return node.expression !== expression || node.literal !== literal ? update(createTemplateSpan(expression, literal), node) : node; } function createSemicolonClassElement() { const node = createBaseNode(241); node.transformFlags |= 1024; return node; } function createBlock(statements, multiLine) { const node = createBaseNode(242); node.statements = createNodeArray(statements); node.multiLine = multiLine; node.transformFlags |= propagateChildrenFlags(node.statements); node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; return node; } function updateBlock(node, statements) { return node.statements !== statements ? update(createBlock(statements, node.multiLine), node) : node; } function createVariableStatement(modifiers, declarationList) { const node = createBaseNode(244); node.modifiers = asNodeArray(modifiers); node.declarationList = isArray(declarationList) ? createVariableDeclarationList(declarationList) : declarationList; node.transformFlags |= propagateChildrenFlags(node.modifiers) | propagateChildFlags(node.declarationList); if (modifiersToFlags(node.modifiers) & 128) { node.transformFlags = 1; } node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateVariableStatement(node, modifiers, declarationList) { return node.modifiers !== modifiers || node.declarationList !== declarationList ? update(createVariableStatement(modifiers, declarationList), node) : node; } function createEmptyStatement() { const node = createBaseNode(243); node.jsDoc = undefined; return node; } function createExpressionStatement(expression) { const node = createBaseNode(245); node.expression = parenthesizerRules().parenthesizeExpressionOfExpressionStatement(expression); node.transformFlags |= propagateChildFlags(node.expression); node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateExpressionStatement(node, expression) { return node.expression !== expression ? update(createExpressionStatement(expression), node) : node; } function createIfStatement(expression, thenStatement, elseStatement) { const node = createBaseNode(246); node.expression = expression; node.thenStatement = asEmbeddedStatement(thenStatement); node.elseStatement = asEmbeddedStatement(elseStatement); node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.thenStatement) | propagateChildFlags(node.elseStatement); node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateIfStatement(node, expression, thenStatement, elseStatement) { return node.expression !== expression || node.thenStatement !== thenStatement || node.elseStatement !== elseStatement ? update(createIfStatement(expression, thenStatement, elseStatement), node) : node; } function createDoStatement(statement, expression) { const node = createBaseNode(247); node.statement = asEmbeddedStatement(statement); node.expression = expression; node.transformFlags |= propagateChildFlags(node.statement) | propagateChildFlags(node.expression); node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateDoStatement(node, statement, expression) { return node.statement !== statement || node.expression !== expression ? update(createDoStatement(statement, expression), node) : node; } function createWhileStatement(expression, statement) { const node = createBaseNode(248); node.expression = expression; node.statement = asEmbeddedStatement(statement); node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.statement); node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateWhileStatement(node, expression, statement) { return node.expression !== expression || node.statement !== statement ? update(createWhileStatement(expression, statement), node) : node; } function createForStatement(initializer, condition, incrementor, statement) { const node = createBaseNode(249); node.initializer = initializer; node.condition = condition; node.incrementor = incrementor; node.statement = asEmbeddedStatement(statement); node.transformFlags |= propagateChildFlags(node.initializer) | propagateChildFlags(node.condition) | propagateChildFlags(node.incrementor) | propagateChildFlags(node.statement); node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.flowNode = undefined; return node; } function updateForStatement(node, initializer, condition, incrementor, statement) { return node.initializer !== initializer || node.condition !== condition || node.incrementor !== incrementor || node.statement !== statement ? update(createForStatement(initializer, condition, incrementor, statement), node) : node; } function createForInStatement(initializer, expression, statement) { const node = createBaseNode(250); node.initializer = initializer; node.expression = expression; node.statement = asEmbeddedStatement(statement); node.transformFlags |= propagateChildFlags(node.initializer) | propagateChildFlags(node.expression) | propagateChildFlags(node.statement); node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.flowNode = undefined; return node; } function updateForInStatement(node, initializer, expression, statement) { return node.initializer !== initializer || node.expression !== expression || node.statement !== statement ? update(createForInStatement(initializer, expression, statement), node) : node; } function createForOfStatement(awaitModifier, initializer, expression, statement) { const node = createBaseNode(251); node.awaitModifier = awaitModifier; node.initializer = initializer; node.expression = parenthesizerRules().parenthesizeExpressionForDisallowedComma(expression); node.statement = asEmbeddedStatement(statement); node.transformFlags |= propagateChildFlags(node.awaitModifier) | propagateChildFlags(node.initializer) | propagateChildFlags(node.expression) | propagateChildFlags(node.statement) | 1024; if (awaitModifier) node.transformFlags |= 128; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.flowNode = undefined; return node; } function updateForOfStatement(node, awaitModifier, initializer, expression, statement) { return node.awaitModifier !== awaitModifier || node.initializer !== initializer || node.expression !== expression || node.statement !== statement ? update(createForOfStatement(awaitModifier, initializer, expression, statement), node) : node; } function createContinueStatement(label) { const node = createBaseNode(252); node.label = asName(label); node.transformFlags |= propagateChildFlags(node.label) | 4194304; node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateContinueStatement(node, label) { return node.label !== label ? update(createContinueStatement(label), node) : node; } function createBreakStatement(label) { const node = createBaseNode(253); node.label = asName(label); node.transformFlags |= propagateChildFlags(node.label) | 4194304; node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateBreakStatement(node, label) { return node.label !== label ? update(createBreakStatement(label), node) : node; } function createReturnStatement(expression) { const node = createBaseNode(254); node.expression = expression; node.transformFlags |= propagateChildFlags(node.expression) | 128 | 4194304; node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateReturnStatement(node, expression) { return node.expression !== expression ? update(createReturnStatement(expression), node) : node; } function createWithStatement(expression, statement) { const node = createBaseNode(255); node.expression = expression; node.statement = asEmbeddedStatement(statement); node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.statement); node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateWithStatement(node, expression, statement) { return node.expression !== expression || node.statement !== statement ? update(createWithStatement(expression, statement), node) : node; } function createSwitchStatement(expression, caseBlock) { const node = createBaseNode(256); node.expression = parenthesizerRules().parenthesizeExpressionForDisallowedComma(expression); node.caseBlock = caseBlock; node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.caseBlock); node.jsDoc = undefined; node.flowNode = undefined; node.possiblyExhaustive = false; return node; } function updateSwitchStatement(node, expression, caseBlock) { return node.expression !== expression || node.caseBlock !== caseBlock ? update(createSwitchStatement(expression, caseBlock), node) : node; } function createLabeledStatement(label, statement) { const node = createBaseNode(257); node.label = asName(label); node.statement = asEmbeddedStatement(statement); node.transformFlags |= propagateChildFlags(node.label) | propagateChildFlags(node.statement); node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateLabeledStatement(node, label, statement) { return node.label !== label || node.statement !== statement ? update(createLabeledStatement(label, statement), node) : node; } function createThrowStatement(expression) { const node = createBaseNode(258); node.expression = expression; node.transformFlags |= propagateChildFlags(node.expression); node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateThrowStatement(node, expression) { return node.expression !== expression ? update(createThrowStatement(expression), node) : node; } function createTryStatement(tryBlock, catchClause, finallyBlock) { const node = createBaseNode(259); node.tryBlock = tryBlock; node.catchClause = catchClause; node.finallyBlock = finallyBlock; node.transformFlags |= propagateChildFlags(node.tryBlock) | propagateChildFlags(node.catchClause) | propagateChildFlags(node.finallyBlock); node.jsDoc = undefined; node.flowNode = undefined; return node; } function updateTryStatement(node, tryBlock, catchClause, finallyBlock) { return node.tryBlock !== tryBlock || node.catchClause !== catchClause || node.finallyBlock !== finallyBlock ? update(createTryStatement(tryBlock, catchClause, finallyBlock), node) : node; } function createDebuggerStatement() { const node = createBaseNode(260); node.jsDoc = undefined; node.flowNode = undefined; return node; } function createVariableDeclaration(name, exclamationToken, type, initializer) { const node = createBaseDeclaration(261); node.name = asName(name); node.exclamationToken = exclamationToken; node.type = type; node.initializer = asInitializer(initializer); node.transformFlags |= propagateNameFlags(node.name) | propagateChildFlags(node.initializer) | (node.exclamationToken ?? node.type ? 1 : 0); node.jsDoc = undefined; return node; } function updateVariableDeclaration(node, name, exclamationToken, type, initializer) { return node.name !== name || node.type !== type || node.exclamationToken !== exclamationToken || node.initializer !== initializer ? update(createVariableDeclaration(name, exclamationToken, type, initializer), node) : node; } function createVariableDeclarationList(declarations, flags2 = 0) { const node = createBaseNode(262); node.flags |= flags2 & 7; node.declarations = createNodeArray(declarations); node.transformFlags |= propagateChildrenFlags(node.declarations) | 4194304; if (flags2 & 7) { node.transformFlags |= 1024 | 262144; } if (flags2 & 4) { node.transformFlags |= 4; } return node; } function updateVariableDeclarationList(node, declarations) { return node.declarations !== declarations ? update(createVariableDeclarationList(declarations, node.flags), node) : node; } function createFunctionDeclaration(modifiers, asteriskToken, name, typeParameters, parameters, type, body) { const node = createBaseDeclaration(263); node.modifiers = asNodeArray(modifiers); node.asteriskToken = asteriskToken; node.name = asName(name); node.typeParameters = asNodeArray(typeParameters); node.parameters = createNodeArray(parameters); node.type = type; node.body = body; if (!node.body || modifiersToFlags(node.modifiers) & 128) { node.transformFlags = 1; } else { const isAsync = modifiersToFlags(node.modifiers) & 1024; const isGenerator = !!node.asteriskToken; const isAsyncGenerator = isAsync && isGenerator; node.transformFlags = propagateChildrenFlags(node.modifiers) | propagateChildFlags(node.asteriskToken) | propagateNameFlags(node.name) | propagateChildrenFlags(node.typeParameters) | propagateChildrenFlags(node.parameters) | propagateChildFlags(node.type) | propagateChildFlags(node.body) & ~67108864 | (isAsyncGenerator ? 128 : isAsync ? 256 : isGenerator ? 2048 : 0) | (node.typeParameters || node.type ? 1 : 0) | 4194304; } node.typeArguments = undefined; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.endFlowNode = undefined; node.returnFlowNode = undefined; return node; } function updateFunctionDeclaration(node, modifiers, asteriskToken, name, typeParameters, parameters, type, body) { return node.modifiers !== modifiers || node.asteriskToken !== asteriskToken || node.name !== name || node.typeParameters !== typeParameters || node.parameters !== parameters || node.type !== type || node.body !== body ? finishUpdateFunctionDeclaration(createFunctionDeclaration(modifiers, asteriskToken, name, typeParameters, parameters, type, body), node) : node; } function finishUpdateFunctionDeclaration(updated, original) { if (updated !== original) { if (updated.modifiers === original.modifiers) { updated.modifiers = original.modifiers; } } return finishUpdateBaseSignatureDeclaration(updated, original); } function createClassDeclaration(modifiers, name, typeParameters, heritageClauses, members) { const node = createBaseDeclaration(264); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.typeParameters = asNodeArray(typeParameters); node.heritageClauses = asNodeArray(heritageClauses); node.members = createNodeArray(members); if (modifiersToFlags(node.modifiers) & 128) { node.transformFlags = 1; } else { node.transformFlags |= propagateChildrenFlags(node.modifiers) | propagateNameFlags(node.name) | propagateChildrenFlags(node.typeParameters) | propagateChildrenFlags(node.heritageClauses) | propagateChildrenFlags(node.members) | (node.typeParameters ? 1 : 0) | 1024; if (node.transformFlags & 8192) { node.transformFlags |= 1; } } node.jsDoc = undefined; return node; } function updateClassDeclaration(node, modifiers, name, typeParameters, heritageClauses, members) { return node.modifiers !== modifiers || node.name !== name || node.typeParameters !== typeParameters || node.heritageClauses !== heritageClauses || node.members !== members ? update(createClassDeclaration(modifiers, name, typeParameters, heritageClauses, members), node) : node; } function createInterfaceDeclaration(modifiers, name, typeParameters, heritageClauses, members) { const node = createBaseDeclaration(265); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.typeParameters = asNodeArray(typeParameters); node.heritageClauses = asNodeArray(heritageClauses); node.members = createNodeArray(members); node.transformFlags = 1; node.jsDoc = undefined; return node; } function updateInterfaceDeclaration(node, modifiers, name, typeParameters, heritageClauses, members) { return node.modifiers !== modifiers || node.name !== name || node.typeParameters !== typeParameters || node.heritageClauses !== heritageClauses || node.members !== members ? update(createInterfaceDeclaration(modifiers, name, typeParameters, heritageClauses, members), node) : node; } function createTypeAliasDeclaration(modifiers, name, typeParameters, type) { const node = createBaseDeclaration(266); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.typeParameters = asNodeArray(typeParameters); node.type = type; node.transformFlags = 1; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; return node; } function updateTypeAliasDeclaration(node, modifiers, name, typeParameters, type) { return node.modifiers !== modifiers || node.name !== name || node.typeParameters !== typeParameters || node.type !== type ? update(createTypeAliasDeclaration(modifiers, name, typeParameters, type), node) : node; } function createEnumDeclaration(modifiers, name, members) { const node = createBaseDeclaration(267); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.members = createNodeArray(members); node.transformFlags |= propagateChildrenFlags(node.modifiers) | propagateChildFlags(node.name) | propagateChildrenFlags(node.members) | 1; node.transformFlags &= ~67108864; node.jsDoc = undefined; return node; } function updateEnumDeclaration(node, modifiers, name, members) { return node.modifiers !== modifiers || node.name !== name || node.members !== members ? update(createEnumDeclaration(modifiers, name, members), node) : node; } function createModuleDeclaration(modifiers, name, body, flags2 = 0) { const node = createBaseDeclaration(268); node.modifiers = asNodeArray(modifiers); node.flags |= flags2 & (32 | 8 | 2048); node.name = name; node.body = body; if (modifiersToFlags(node.modifiers) & 128) { node.transformFlags = 1; } else { node.transformFlags |= propagateChildrenFlags(node.modifiers) | propagateChildFlags(node.name) | propagateChildFlags(node.body) | 1; } node.transformFlags &= ~67108864; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; return node; } function updateModuleDeclaration(node, modifiers, name, body) { return node.modifiers !== modifiers || node.name !== name || node.body !== body ? update(createModuleDeclaration(modifiers, name, body, node.flags), node) : node; } function createModuleBlock(statements) { const node = createBaseNode(269); node.statements = createNodeArray(statements); node.transformFlags |= propagateChildrenFlags(node.statements); node.jsDoc = undefined; return node; } function updateModuleBlock(node, statements) { return node.statements !== statements ? update(createModuleBlock(statements), node) : node; } function createCaseBlock(clauses) { const node = createBaseNode(270); node.clauses = createNodeArray(clauses); node.transformFlags |= propagateChildrenFlags(node.clauses); node.locals = undefined; node.nextContainer = undefined; return node; } function updateCaseBlock(node, clauses) { return node.clauses !== clauses ? update(createCaseBlock(clauses), node) : node; } function createNamespaceExportDeclaration(name) { const node = createBaseDeclaration(271); node.name = asName(name); node.transformFlags |= propagateIdentifierNameFlags(node.name) | 1; node.modifiers = undefined; node.jsDoc = undefined; return node; } function updateNamespaceExportDeclaration(node, name) { return node.name !== name ? finishUpdateNamespaceExportDeclaration(createNamespaceExportDeclaration(name), node) : node; } function finishUpdateNamespaceExportDeclaration(updated, original) { if (updated !== original) { updated.modifiers = original.modifiers; } return update(updated, original); } function createImportEqualsDeclaration(modifiers, isTypeOnly, name, moduleReference) { const node = createBaseDeclaration(272); node.modifiers = asNodeArray(modifiers); node.name = asName(name); node.isTypeOnly = isTypeOnly; node.moduleReference = moduleReference; node.transformFlags |= propagateChildrenFlags(node.modifiers) | propagateIdentifierNameFlags(node.name) | propagateChildFlags(node.moduleReference); if (!isExternalModuleReference(node.moduleReference)) { node.transformFlags |= 1; } node.transformFlags &= ~67108864; node.jsDoc = undefined; return node; } function updateImportEqualsDeclaration(node, modifiers, isTypeOnly, name, moduleReference) { return node.modifiers !== modifiers || node.isTypeOnly !== isTypeOnly || node.name !== name || node.moduleReference !== moduleReference ? update(createImportEqualsDeclaration(modifiers, isTypeOnly, name, moduleReference), node) : node; } function createImportDeclaration(modifiers, importClause, moduleSpecifier, attributes) { const node = createBaseNode(273); node.modifiers = asNodeArray(modifiers); node.importClause = importClause; node.moduleSpecifier = moduleSpecifier; node.attributes = node.assertClause = attributes; node.transformFlags |= propagateChildFlags(node.importClause) | propagateChildFlags(node.moduleSpecifier); node.transformFlags &= ~67108864; node.jsDoc = undefined; return node; } function updateImportDeclaration(node, modifiers, importClause, moduleSpecifier, attributes) { return node.modifiers !== modifiers || node.importClause !== importClause || node.moduleSpecifier !== moduleSpecifier || node.attributes !== attributes ? update(createImportDeclaration(modifiers, importClause, moduleSpecifier, attributes), node) : node; } function createImportClause2(phaseModifier, name, namedBindings) { const node = createBaseDeclaration(274); if (typeof phaseModifier === "boolean") { phaseModifier = phaseModifier ? 156 : undefined; } node.isTypeOnly = phaseModifier === 156; node.phaseModifier = phaseModifier; node.name = name; node.namedBindings = namedBindings; node.transformFlags |= propagateChildFlags(node.name) | propagateChildFlags(node.namedBindings); if (phaseModifier === 156) { node.transformFlags |= 1; } node.transformFlags &= ~67108864; return node; } function updateImportClause(node, phaseModifier, name, namedBindings) { if (typeof phaseModifier === "boolean") { phaseModifier = phaseModifier ? 156 : undefined; } return node.phaseModifier !== phaseModifier || node.name !== name || node.namedBindings !== namedBindings ? update(createImportClause2(phaseModifier, name, namedBindings), node) : node; } function createAssertClause(elements, multiLine) { const node = createBaseNode(301); node.elements = createNodeArray(elements); node.multiLine = multiLine; node.token = 132; node.transformFlags |= 4; return node; } function updateAssertClause(node, elements, multiLine) { return node.elements !== elements || node.multiLine !== multiLine ? update(createAssertClause(elements, multiLine), node) : node; } function createAssertEntry(name, value) { const node = createBaseNode(302); node.name = name; node.value = value; node.transformFlags |= 4; return node; } function updateAssertEntry(node, name, value) { return node.name !== name || node.value !== value ? update(createAssertEntry(name, value), node) : node; } function createImportTypeAssertionContainer(clause, multiLine) { const node = createBaseNode(303); node.assertClause = clause; node.multiLine = multiLine; return node; } function updateImportTypeAssertionContainer(node, clause, multiLine) { return node.assertClause !== clause || node.multiLine !== multiLine ? update(createImportTypeAssertionContainer(clause, multiLine), node) : node; } function createImportAttributes(elements, multiLine, token) { const node = createBaseNode(301); node.token = token ?? 118; node.elements = createNodeArray(elements); node.multiLine = multiLine; node.transformFlags |= 4; return node; } function updateImportAttributes(node, elements, multiLine) { return node.elements !== elements || node.multiLine !== multiLine ? update(createImportAttributes(elements, multiLine, node.token), node) : node; } function createImportAttribute(name, value) { const node = createBaseNode(302); node.name = name; node.value = value; node.transformFlags |= 4; return node; } function updateImportAttribute(node, name, value) { return node.name !== name || node.value !== value ? update(createImportAttribute(name, value), node) : node; } function createNamespaceImport(name) { const node = createBaseDeclaration(275); node.name = name; node.transformFlags |= propagateChildFlags(node.name); node.transformFlags &= ~67108864; return node; } function updateNamespaceImport(node, name) { return node.name !== name ? update(createNamespaceImport(name), node) : node; } function createNamespaceExport(name) { const node = createBaseDeclaration(281); node.name = name; node.transformFlags |= propagateChildFlags(node.name) | 32; node.transformFlags &= ~67108864; return node; } function updateNamespaceExport(node, name) { return node.name !== name ? update(createNamespaceExport(name), node) : node; } function createNamedImports(elements) { const node = createBaseNode(276); node.elements = createNodeArray(elements); node.transformFlags |= propagateChildrenFlags(node.elements); node.transformFlags &= ~67108864; return node; } function updateNamedImports(node, elements) { return node.elements !== elements ? update(createNamedImports(elements), node) : node; } function createImportSpecifier(isTypeOnly, propertyName, name) { const node = createBaseDeclaration(277); node.isTypeOnly = isTypeOnly; node.propertyName = propertyName; node.name = name; node.transformFlags |= propagateChildFlags(node.propertyName) | propagateChildFlags(node.name); node.transformFlags &= ~67108864; return node; } function updateImportSpecifier(node, isTypeOnly, propertyName, name) { return node.isTypeOnly !== isTypeOnly || node.propertyName !== propertyName || node.name !== name ? update(createImportSpecifier(isTypeOnly, propertyName, name), node) : node; } function createExportAssignment2(modifiers, isExportEquals, expression) { const node = createBaseDeclaration(278); node.modifiers = asNodeArray(modifiers); node.isExportEquals = isExportEquals; node.expression = isExportEquals ? parenthesizerRules().parenthesizeRightSideOfBinary(64, undefined, expression) : parenthesizerRules().parenthesizeExpressionOfExportDefault(expression); node.transformFlags |= propagateChildrenFlags(node.modifiers) | propagateChildFlags(node.expression); node.transformFlags &= ~67108864; node.jsDoc = undefined; return node; } function updateExportAssignment(node, modifiers, expression) { return node.modifiers !== modifiers || node.expression !== expression ? update(createExportAssignment2(modifiers, node.isExportEquals, expression), node) : node; } function createExportDeclaration(modifiers, isTypeOnly, exportClause, moduleSpecifier, attributes) { const node = createBaseDeclaration(279); node.modifiers = asNodeArray(modifiers); node.isTypeOnly = isTypeOnly; node.exportClause = exportClause; node.moduleSpecifier = moduleSpecifier; node.attributes = node.assertClause = attributes; node.transformFlags |= propagateChildrenFlags(node.modifiers) | propagateChildFlags(node.exportClause) | propagateChildFlags(node.moduleSpecifier); node.transformFlags &= ~67108864; node.jsDoc = undefined; return node; } function updateExportDeclaration(node, modifiers, isTypeOnly, exportClause, moduleSpecifier, attributes) { return node.modifiers !== modifiers || node.isTypeOnly !== isTypeOnly || node.exportClause !== exportClause || node.moduleSpecifier !== moduleSpecifier || node.attributes !== attributes ? finishUpdateExportDeclaration(createExportDeclaration(modifiers, isTypeOnly, exportClause, moduleSpecifier, attributes), node) : node; } function finishUpdateExportDeclaration(updated, original) { if (updated !== original) { if (updated.modifiers === original.modifiers) { updated.modifiers = original.modifiers; } } return update(updated, original); } function createNamedExports(elements) { const node = createBaseNode(280); node.elements = createNodeArray(elements); node.transformFlags |= propagateChildrenFlags(node.elements); node.transformFlags &= ~67108864; return node; } function updateNamedExports(node, elements) { return node.elements !== elements ? update(createNamedExports(elements), node) : node; } function createExportSpecifier(isTypeOnly, propertyName, name) { const node = createBaseNode(282); node.isTypeOnly = isTypeOnly; node.propertyName = asName(propertyName); node.name = asName(name); node.transformFlags |= propagateChildFlags(node.propertyName) | propagateChildFlags(node.name); node.transformFlags &= ~67108864; node.jsDoc = undefined; return node; } function updateExportSpecifier(node, isTypeOnly, propertyName, name) { return node.isTypeOnly !== isTypeOnly || node.propertyName !== propertyName || node.name !== name ? update(createExportSpecifier(isTypeOnly, propertyName, name), node) : node; } function createMissingDeclaration() { const node = createBaseDeclaration(283); node.jsDoc = undefined; return node; } function createExternalModuleReference(expression) { const node = createBaseNode(284); node.expression = expression; node.transformFlags |= propagateChildFlags(node.expression); node.transformFlags &= ~67108864; return node; } function updateExternalModuleReference(node, expression) { return node.expression !== expression ? update(createExternalModuleReference(expression), node) : node; } function createJSDocPrimaryTypeWorker(kind) { return createBaseNode(kind); } function createJSDocPrePostfixUnaryTypeWorker(kind, type, postfix = false) { const node = createJSDocUnaryTypeWorker(kind, postfix ? type && parenthesizerRules().parenthesizeNonArrayTypeOfPostfixType(type) : type); node.postfix = postfix; return node; } function createJSDocUnaryTypeWorker(kind, type) { const node = createBaseNode(kind); node.type = type; return node; } function updateJSDocPrePostfixUnaryTypeWorker(kind, node, type) { return node.type !== type ? update(createJSDocPrePostfixUnaryTypeWorker(kind, type, node.postfix), node) : node; } function updateJSDocUnaryTypeWorker(kind, node, type) { return node.type !== type ? update(createJSDocUnaryTypeWorker(kind, type), node) : node; } function createJSDocFunctionType(parameters, type) { const node = createBaseDeclaration(318); node.parameters = asNodeArray(parameters); node.type = type; node.transformFlags = propagateChildrenFlags(node.parameters) | (node.type ? 1 : 0); node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; node.typeArguments = undefined; return node; } function updateJSDocFunctionType(node, parameters, type) { return node.parameters !== parameters || node.type !== type ? update(createJSDocFunctionType(parameters, type), node) : node; } function createJSDocTypeLiteral(propertyTags, isArrayType = false) { const node = createBaseDeclaration(323); node.jsDocPropertyTags = asNodeArray(propertyTags); node.isArrayType = isArrayType; return node; } function updateJSDocTypeLiteral(node, propertyTags, isArrayType) { return node.jsDocPropertyTags !== propertyTags || node.isArrayType !== isArrayType ? update(createJSDocTypeLiteral(propertyTags, isArrayType), node) : node; } function createJSDocTypeExpression(type) { const node = createBaseNode(310); node.type = type; return node; } function updateJSDocTypeExpression(node, type) { return node.type !== type ? update(createJSDocTypeExpression(type), node) : node; } function createJSDocSignature(typeParameters, parameters, type) { const node = createBaseDeclaration(324); node.typeParameters = asNodeArray(typeParameters); node.parameters = createNodeArray(parameters); node.type = type; node.jsDoc = undefined; node.locals = undefined; node.nextContainer = undefined; return node; } function updateJSDocSignature(node, typeParameters, parameters, type) { return node.typeParameters !== typeParameters || node.parameters !== parameters || node.type !== type ? update(createJSDocSignature(typeParameters, parameters, type), node) : node; } function getDefaultTagName(node) { const defaultTagName = getDefaultTagNameForKind(node.kind); return node.tagName.escapedText === escapeLeadingUnderscores(defaultTagName) ? node.tagName : createIdentifier(defaultTagName); } function createBaseJSDocTag(kind, tagName, comment) { const node = createBaseNode(kind); node.tagName = tagName; node.comment = comment; return node; } function createBaseJSDocTagDeclaration(kind, tagName, comment) { const node = createBaseDeclaration(kind); node.tagName = tagName; node.comment = comment; return node; } function createJSDocTemplateTag(tagName, constraint, typeParameters, comment) { const node = createBaseJSDocTag(346, tagName ?? createIdentifier("template"), comment); node.constraint = constraint; node.typeParameters = createNodeArray(typeParameters); return node; } function updateJSDocTemplateTag(node, tagName = getDefaultTagName(node), constraint, typeParameters, comment) { return node.tagName !== tagName || node.constraint !== constraint || node.typeParameters !== typeParameters || node.comment !== comment ? update(createJSDocTemplateTag(tagName, constraint, typeParameters, comment), node) : node; } function createJSDocTypedefTag(tagName, typeExpression, fullName, comment) { const node = createBaseJSDocTagDeclaration(347, tagName ?? createIdentifier("typedef"), comment); node.typeExpression = typeExpression; node.fullName = fullName; node.name = getJSDocTypeAliasName(fullName); node.locals = undefined; node.nextContainer = undefined; return node; } function updateJSDocTypedefTag(node, tagName = getDefaultTagName(node), typeExpression, fullName, comment) { return node.tagName !== tagName || node.typeExpression !== typeExpression || node.fullName !== fullName || node.comment !== comment ? update(createJSDocTypedefTag(tagName, typeExpression, fullName, comment), node) : node; } function createJSDocParameterTag(tagName, name, isBracketed, typeExpression, isNameFirst, comment) { const node = createBaseJSDocTagDeclaration(342, tagName ?? createIdentifier("param"), comment); node.typeExpression = typeExpression; node.name = name; node.isNameFirst = !!isNameFirst; node.isBracketed = isBracketed; return node; } function updateJSDocParameterTag(node, tagName = getDefaultTagName(node), name, isBracketed, typeExpression, isNameFirst, comment) { return node.tagName !== tagName || node.name !== name || node.isBracketed !== isBracketed || node.typeExpression !== typeExpression || node.isNameFirst !== isNameFirst || node.comment !== comment ? update(createJSDocParameterTag(tagName, name, isBracketed, typeExpression, isNameFirst, comment), node) : node; } function createJSDocPropertyTag(tagName, name, isBracketed, typeExpression, isNameFirst, comment) { const node = createBaseJSDocTagDeclaration(349, tagName ?? createIdentifier("prop"), comment); node.typeExpression = typeExpression; node.name = name; node.isNameFirst = !!isNameFirst; node.isBracketed = isBracketed; return node; } function updateJSDocPropertyTag(node, tagName = getDefaultTagName(node), name, isBracketed, typeExpression, isNameFirst, comment) { return node.tagName !== tagName || node.name !== name || node.isBracketed !== isBracketed || node.typeExpression !== typeExpression || node.isNameFirst !== isNameFirst || node.comment !== comment ? update(createJSDocPropertyTag(tagName, name, isBracketed, typeExpression, isNameFirst, comment), node) : node; } function createJSDocCallbackTag(tagName, typeExpression, fullName, comment) { const node = createBaseJSDocTagDeclaration(339, tagName ?? createIdentifier("callback"), comment); node.typeExpression = typeExpression; node.fullName = fullName; node.name = getJSDocTypeAliasName(fullName); node.locals = undefined; node.nextContainer = undefined; return node; } function updateJSDocCallbackTag(node, tagName = getDefaultTagName(node), typeExpression, fullName, comment) { return node.tagName !== tagName || node.typeExpression !== typeExpression || node.fullName !== fullName || node.comment !== comment ? update(createJSDocCallbackTag(tagName, typeExpression, fullName, comment), node) : node; } function createJSDocOverloadTag(tagName, typeExpression, comment) { const node = createBaseJSDocTag(340, tagName ?? createIdentifier("overload"), comment); node.typeExpression = typeExpression; return node; } function updateJSDocOverloadTag(node, tagName = getDefaultTagName(node), typeExpression, comment) { return node.tagName !== tagName || node.typeExpression !== typeExpression || node.comment !== comment ? update(createJSDocOverloadTag(tagName, typeExpression, comment), node) : node; } function createJSDocAugmentsTag(tagName, className, comment) { const node = createBaseJSDocTag(329, tagName ?? createIdentifier("augments"), comment); node.class = className; return node; } function updateJSDocAugmentsTag(node, tagName = getDefaultTagName(node), className, comment) { return node.tagName !== tagName || node.class !== className || node.comment !== comment ? update(createJSDocAugmentsTag(tagName, className, comment), node) : node; } function createJSDocImplementsTag(tagName, className, comment) { const node = createBaseJSDocTag(330, tagName ?? createIdentifier("implements"), comment); node.class = className; return node; } function createJSDocSeeTag(tagName, name, comment) { const node = createBaseJSDocTag(348, tagName ?? createIdentifier("see"), comment); node.name = name; return node; } function updateJSDocSeeTag(node, tagName, name, comment) { return node.tagName !== tagName || node.name !== name || node.comment !== comment ? update(createJSDocSeeTag(tagName, name, comment), node) : node; } function createJSDocNameReference(name) { const node = createBaseNode(311); node.name = name; return node; } function updateJSDocNameReference(node, name) { return node.name !== name ? update(createJSDocNameReference(name), node) : node; } function createJSDocMemberName(left, right) { const node = createBaseNode(312); node.left = left; node.right = right; node.transformFlags |= propagateChildFlags(node.left) | propagateChildFlags(node.right); return node; } function updateJSDocMemberName(node, left, right) { return node.left !== left || node.right !== right ? update(createJSDocMemberName(left, right), node) : node; } function createJSDocLink(name, text) { const node = createBaseNode(325); node.name = name; node.text = text; return node; } function updateJSDocLink(node, name, text) { return node.name !== name ? update(createJSDocLink(name, text), node) : node; } function createJSDocLinkCode(name, text) { const node = createBaseNode(326); node.name = name; node.text = text; return node; } function updateJSDocLinkCode(node, name, text) { return node.name !== name ? update(createJSDocLinkCode(name, text), node) : node; } function createJSDocLinkPlain(name, text) { const node = createBaseNode(327); node.name = name; node.text = text; return node; } function updateJSDocLinkPlain(node, name, text) { return node.name !== name ? update(createJSDocLinkPlain(name, text), node) : node; } function updateJSDocImplementsTag(node, tagName = getDefaultTagName(node), className, comment) { return node.tagName !== tagName || node.class !== className || node.comment !== comment ? update(createJSDocImplementsTag(tagName, className, comment), node) : node; } function createJSDocSimpleTagWorker(kind, tagName, comment) { const node = createBaseJSDocTag(kind, tagName ?? createIdentifier(getDefaultTagNameForKind(kind)), comment); return node; } function updateJSDocSimpleTagWorker(kind, node, tagName = getDefaultTagName(node), comment) { return node.tagName !== tagName || node.comment !== comment ? update(createJSDocSimpleTagWorker(kind, tagName, comment), node) : node; } function createJSDocTypeLikeTagWorker(kind, tagName, typeExpression, comment) { const node = createBaseJSDocTag(kind, tagName ?? createIdentifier(getDefaultTagNameForKind(kind)), comment); node.typeExpression = typeExpression; return node; } function updateJSDocTypeLikeTagWorker(kind, node, tagName = getDefaultTagName(node), typeExpression, comment) { return node.tagName !== tagName || node.typeExpression !== typeExpression || node.comment !== comment ? update(createJSDocTypeLikeTagWorker(kind, tagName, typeExpression, comment), node) : node; } function createJSDocUnknownTag(tagName, comment) { const node = createBaseJSDocTag(328, tagName, comment); return node; } function updateJSDocUnknownTag(node, tagName, comment) { return node.tagName !== tagName || node.comment !== comment ? update(createJSDocUnknownTag(tagName, comment), node) : node; } function createJSDocEnumTag(tagName, typeExpression, comment) { const node = createBaseJSDocTagDeclaration(341, tagName ?? createIdentifier(getDefaultTagNameForKind(341)), comment); node.typeExpression = typeExpression; node.locals = undefined; node.nextContainer = undefined; return node; } function updateJSDocEnumTag(node, tagName = getDefaultTagName(node), typeExpression, comment) { return node.tagName !== tagName || node.typeExpression !== typeExpression || node.comment !== comment ? update(createJSDocEnumTag(tagName, typeExpression, comment), node) : node; } function createJSDocImportTag(tagName, importClause, moduleSpecifier, attributes, comment) { const node = createBaseJSDocTag(352, tagName ?? createIdentifier("import"), comment); node.importClause = importClause; node.moduleSpecifier = moduleSpecifier; node.attributes = attributes; node.comment = comment; return node; } function updateJSDocImportTag(node, tagName, importClause, moduleSpecifier, attributes, comment) { return node.tagName !== tagName || node.comment !== comment || node.importClause !== importClause || node.moduleSpecifier !== moduleSpecifier || node.attributes !== attributes ? update(createJSDocImportTag(tagName, importClause, moduleSpecifier, attributes, comment), node) : node; } function createJSDocText(text) { const node = createBaseNode(322); node.text = text; return node; } function updateJSDocText(node, text) { return node.text !== text ? update(createJSDocText(text), node) : node; } function createJSDocComment(comment, tags) { const node = createBaseNode(321); node.comment = comment; node.tags = asNodeArray(tags); return node; } function updateJSDocComment(node, comment, tags) { return node.comment !== comment || node.tags !== tags ? update(createJSDocComment(comment, tags), node) : node; } function createJsxElement(openingElement, children, closingElement) { const node = createBaseNode(285); node.openingElement = openingElement; node.children = createNodeArray(children); node.closingElement = closingElement; node.transformFlags |= propagateChildFlags(node.openingElement) | propagateChildrenFlags(node.children) | propagateChildFlags(node.closingElement) | 2; return node; } function updateJsxElement(node, openingElement, children, closingElement) { return node.openingElement !== openingElement || node.children !== children || node.closingElement !== closingElement ? update(createJsxElement(openingElement, children, closingElement), node) : node; } function createJsxSelfClosingElement(tagName, typeArguments, attributes) { const node = createBaseNode(286); node.tagName = tagName; node.typeArguments = asNodeArray(typeArguments); node.attributes = attributes; node.transformFlags |= propagateChildFlags(node.tagName) | propagateChildrenFlags(node.typeArguments) | propagateChildFlags(node.attributes) | 2; if (node.typeArguments) { node.transformFlags |= 1; } return node; } function updateJsxSelfClosingElement(node, tagName, typeArguments, attributes) { return node.tagName !== tagName || node.typeArguments !== typeArguments || node.attributes !== attributes ? update(createJsxSelfClosingElement(tagName, typeArguments, attributes), node) : node; } function createJsxOpeningElement(tagName, typeArguments, attributes) { const node = createBaseNode(287); node.tagName = tagName; node.typeArguments = asNodeArray(typeArguments); node.attributes = attributes; node.transformFlags |= propagateChildFlags(node.tagName) | propagateChildrenFlags(node.typeArguments) | propagateChildFlags(node.attributes) | 2; if (typeArguments) { node.transformFlags |= 1; } return node; } function updateJsxOpeningElement(node, tagName, typeArguments, attributes) { return node.tagName !== tagName || node.typeArguments !== typeArguments || node.attributes !== attributes ? update(createJsxOpeningElement(tagName, typeArguments, attributes), node) : node; } function createJsxClosingElement(tagName) { const node = createBaseNode(288); node.tagName = tagName; node.transformFlags |= propagateChildFlags(node.tagName) | 2; return node; } function updateJsxClosingElement(node, tagName) { return node.tagName !== tagName ? update(createJsxClosingElement(tagName), node) : node; } function createJsxFragment(openingFragment, children, closingFragment) { const node = createBaseNode(289); node.openingFragment = openingFragment; node.children = createNodeArray(children); node.closingFragment = closingFragment; node.transformFlags |= propagateChildFlags(node.openingFragment) | propagateChildrenFlags(node.children) | propagateChildFlags(node.closingFragment) | 2; return node; } function updateJsxFragment(node, openingFragment, children, closingFragment) { return node.openingFragment !== openingFragment || node.children !== children || node.closingFragment !== closingFragment ? update(createJsxFragment(openingFragment, children, closingFragment), node) : node; } function createJsxText(text, containsOnlyTriviaWhiteSpaces) { const node = createBaseNode(12); node.text = text; node.containsOnlyTriviaWhiteSpaces = !!containsOnlyTriviaWhiteSpaces; node.transformFlags |= 2; return node; } function updateJsxText(node, text, containsOnlyTriviaWhiteSpaces) { return node.text !== text || node.containsOnlyTriviaWhiteSpaces !== containsOnlyTriviaWhiteSpaces ? update(createJsxText(text, containsOnlyTriviaWhiteSpaces), node) : node; } function createJsxOpeningFragment() { const node = createBaseNode(290); node.transformFlags |= 2; return node; } function createJsxJsxClosingFragment() { const node = createBaseNode(291); node.transformFlags |= 2; return node; } function createJsxAttribute(name, initializer) { const node = createBaseDeclaration(292); node.name = name; node.initializer = initializer; node.transformFlags |= propagateChildFlags(node.name) | propagateChildFlags(node.initializer) | 2; return node; } function updateJsxAttribute(node, name, initializer) { return node.name !== name || node.initializer !== initializer ? update(createJsxAttribute(name, initializer), node) : node; } function createJsxAttributes(properties) { const node = createBaseDeclaration(293); node.properties = createNodeArray(properties); node.transformFlags |= propagateChildrenFlags(node.properties) | 2; return node; } function updateJsxAttributes(node, properties) { return node.properties !== properties ? update(createJsxAttributes(properties), node) : node; } function createJsxSpreadAttribute(expression) { const node = createBaseNode(294); node.expression = expression; node.transformFlags |= propagateChildFlags(node.expression) | 2; return node; } function updateJsxSpreadAttribute(node, expression) { return node.expression !== expression ? update(createJsxSpreadAttribute(expression), node) : node; } function createJsxExpression(dotDotDotToken, expression) { const node = createBaseNode(295); node.dotDotDotToken = dotDotDotToken; node.expression = expression; node.transformFlags |= propagateChildFlags(node.dotDotDotToken) | propagateChildFlags(node.expression) | 2; return node; } function updateJsxExpression(node, expression) { return node.expression !== expression ? update(createJsxExpression(node.dotDotDotToken, expression), node) : node; } function createJsxNamespacedName(namespace, name) { const node = createBaseNode(296); node.namespace = namespace; node.name = name; node.transformFlags |= propagateChildFlags(node.namespace) | propagateChildFlags(node.name) | 2; return node; } function updateJsxNamespacedName(node, namespace, name) { return node.namespace !== namespace || node.name !== name ? update(createJsxNamespacedName(namespace, name), node) : node; } function createCaseClause(expression, statements) { const node = createBaseNode(297); node.expression = parenthesizerRules().parenthesizeExpressionForDisallowedComma(expression); node.statements = createNodeArray(statements); node.transformFlags |= propagateChildFlags(node.expression) | propagateChildrenFlags(node.statements); node.jsDoc = undefined; return node; } function updateCaseClause(node, expression, statements) { return node.expression !== expression || node.statements !== statements ? update(createCaseClause(expression, statements), node) : node; } function createDefaultClause(statements) { const node = createBaseNode(298); node.statements = createNodeArray(statements); node.transformFlags = propagateChildrenFlags(node.statements); return node; } function updateDefaultClause(node, statements) { return node.statements !== statements ? update(createDefaultClause(statements), node) : node; } function createHeritageClause(token, types) { const node = createBaseNode(299); node.token = token; node.types = createNodeArray(types); node.transformFlags |= propagateChildrenFlags(node.types); switch (token) { case 96: node.transformFlags |= 1024; break; case 119: node.transformFlags |= 1; break; default: return Debug.assertNever(token); } return node; } function updateHeritageClause(node, types) { return node.types !== types ? update(createHeritageClause(node.token, types), node) : node; } function createCatchClause(variableDeclaration, block) { const node = createBaseNode(300); node.variableDeclaration = asVariableDeclaration(variableDeclaration); node.block = block; node.transformFlags |= propagateChildFlags(node.variableDeclaration) | propagateChildFlags(node.block) | (!variableDeclaration ? 64 : 0); node.locals = undefined; node.nextContainer = undefined; return node; } function updateCatchClause(node, variableDeclaration, block) { return node.variableDeclaration !== variableDeclaration || node.block !== block ? update(createCatchClause(variableDeclaration, block), node) : node; } function createPropertyAssignment(name, initializer) { const node = createBaseDeclaration(304); node.name = asName(name); node.initializer = parenthesizerRules().parenthesizeExpressionForDisallowedComma(initializer); node.transformFlags |= propagateNameFlags(node.name) | propagateChildFlags(node.initializer); node.modifiers = undefined; node.questionToken = undefined; node.exclamationToken = undefined; node.jsDoc = undefined; return node; } function updatePropertyAssignment(node, name, initializer) { return node.name !== name || node.initializer !== initializer ? finishUpdatePropertyAssignment(createPropertyAssignment(name, initializer), node) : node; } function finishUpdatePropertyAssignment(updated, original) { if (updated !== original) { updated.modifiers = original.modifiers; updated.questionToken = original.questionToken; updated.exclamationToken = original.exclamationToken; } return update(updated, original); } function createShorthandPropertyAssignment(name, objectAssignmentInitializer) { const node = createBaseDeclaration(305); node.name = asName(name); node.objectAssignmentInitializer = objectAssignmentInitializer && parenthesizerRules().parenthesizeExpressionForDisallowedComma(objectAssignmentInitializer); node.transformFlags |= propagateIdentifierNameFlags(node.name) | propagateChildFlags(node.objectAssignmentInitializer) | 1024; node.equalsToken = undefined; node.modifiers = undefined; node.questionToken = undefined; node.exclamationToken = undefined; node.jsDoc = undefined; return node; } function updateShorthandPropertyAssignment(node, name, objectAssignmentInitializer) { return node.name !== name || node.objectAssignmentInitializer !== objectAssignmentInitializer ? finishUpdateShorthandPropertyAssignment(createShorthandPropertyAssignment(name, objectAssignmentInitializer), node) : node; } function finishUpdateShorthandPropertyAssignment(updated, original) { if (updated !== original) { updated.modifiers = original.modifiers; updated.questionToken = original.questionToken; updated.exclamationToken = original.exclamationToken; updated.equalsToken = original.equalsToken; } return update(updated, original); } function createSpreadAssignment(expression) { const node = createBaseDeclaration(306); node.expression = parenthesizerRules().parenthesizeExpressionForDisallowedComma(expression); node.transformFlags |= propagateChildFlags(node.expression) | 128 | 65536; node.jsDoc = undefined; return node; } function updateSpreadAssignment(node, expression) { return node.expression !== expression ? update(createSpreadAssignment(expression), node) : node; } function createEnumMember(name, initializer) { const node = createBaseDeclaration(307); node.name = asName(name); node.initializer = initializer && parenthesizerRules().parenthesizeExpressionForDisallowedComma(initializer); node.transformFlags |= propagateChildFlags(node.name) | propagateChildFlags(node.initializer) | 1; node.jsDoc = undefined; return node; } function updateEnumMember(node, name, initializer) { return node.name !== name || node.initializer !== initializer ? update(createEnumMember(name, initializer), node) : node; } function createSourceFile2(statements, endOfFileToken, flags2) { const node = baseFactory2.createBaseSourceFileNode(308); node.statements = createNodeArray(statements); node.endOfFileToken = endOfFileToken; node.flags |= flags2; node.text = ""; node.fileName = ""; node.path = ""; node.resolvedPath = ""; node.originalFileName = ""; node.languageVersion = 12; node.languageVariant = 0; node.scriptKind = 0; node.isDeclarationFile = false; node.hasNoDefaultLib = false; node.transformFlags |= propagateChildrenFlags(node.statements) | propagateChildFlags(node.endOfFileToken); node.locals = undefined; node.nextContainer = undefined; node.endFlowNode = undefined; node.nodeCount = 0; node.identifierCount = 0; node.symbolCount = 0; node.parseDiagnostics = undefined; node.bindDiagnostics = undefined; node.bindSuggestionDiagnostics = undefined; node.lineMap = undefined; node.externalModuleIndicator = undefined; node.setExternalModuleIndicator = undefined; node.pragmas = undefined; node.checkJsDirective = undefined; node.referencedFiles = undefined; node.typeReferenceDirectives = undefined; node.libReferenceDirectives = undefined; node.amdDependencies = undefined; node.commentDirectives = undefined; node.identifiers = undefined; node.packageJsonLocations = undefined; node.packageJsonScope = undefined; node.imports = undefined; node.moduleAugmentations = undefined; node.ambientModuleNames = undefined; node.classifiableNames = undefined; node.impliedNodeFormat = undefined; return node; } function createRedirectedSourceFile(redirectInfo) { const node = Object.create(redirectInfo.redirectTarget); Object.defineProperties(node, { id: { get() { return this.redirectInfo.redirectTarget.id; }, set(value) { this.redirectInfo.redirectTarget.id = value; } }, symbol: { get() { return this.redirectInfo.redirectTarget.symbol; }, set(value) { this.redirectInfo.redirectTarget.symbol = value; } } }); node.redirectInfo = redirectInfo; return node; } function cloneRedirectedSourceFile(source) { const node = createRedirectedSourceFile(source.redirectInfo); node.flags |= source.flags & ~16; node.fileName = source.fileName; node.path = source.path; node.resolvedPath = source.resolvedPath; node.originalFileName = source.originalFileName; node.packageJsonLocations = source.packageJsonLocations; node.packageJsonScope = source.packageJsonScope; node.emitNode = undefined; return node; } function cloneSourceFileWorker(source) { const node = baseFactory2.createBaseSourceFileNode(308); node.flags |= source.flags & ~16; for (const p in source) { if (hasProperty(node, p) || !hasProperty(source, p)) { continue; } if (p === "emitNode") { node.emitNode = undefined; continue; } node[p] = source[p]; } return node; } function cloneSourceFile(source) { const node = source.redirectInfo ? cloneRedirectedSourceFile(source) : cloneSourceFileWorker(source); setOriginal(node, source); return node; } function cloneSourceFileWithChanges(source, statements, isDeclarationFile, referencedFiles, typeReferences, hasNoDefaultLib, libReferences) { const node = cloneSourceFile(source); node.statements = createNodeArray(statements); node.isDeclarationFile = isDeclarationFile; node.referencedFiles = referencedFiles; node.typeReferenceDirectives = typeReferences; node.hasNoDefaultLib = hasNoDefaultLib; node.libReferenceDirectives = libReferences; node.transformFlags = propagateChildrenFlags(node.statements) | propagateChildFlags(node.endOfFileToken); return node; } function updateSourceFile2(node, statements, isDeclarationFile = node.isDeclarationFile, referencedFiles = node.referencedFiles, typeReferenceDirectives = node.typeReferenceDirectives, _hasNoDefaultLib = false, libReferenceDirectives = node.libReferenceDirectives) { return node.statements !== statements || node.isDeclarationFile !== isDeclarationFile || node.referencedFiles !== referencedFiles || node.typeReferenceDirectives !== typeReferenceDirectives || node.libReferenceDirectives !== libReferenceDirectives ? update(cloneSourceFileWithChanges(node, statements, isDeclarationFile, referencedFiles, typeReferenceDirectives, false, libReferenceDirectives), node) : node; } function createBundle(sourceFiles) { const node = createBaseNode(309); node.sourceFiles = sourceFiles; node.syntheticFileReferences = undefined; node.syntheticTypeReferences = undefined; node.syntheticLibReferences = undefined; return node; } function updateBundle(node, sourceFiles) { return node.sourceFiles !== sourceFiles ? update(createBundle(sourceFiles), node) : node; } function createSyntheticExpression(type, isSpread = false, tupleNameSource) { const node = createBaseNode(238); node.type = type; node.isSpread = isSpread; node.tupleNameSource = tupleNameSource; return node; } function createSyntaxList3(children) { const node = createBaseNode(353); node._children = children; return node; } function createNotEmittedStatement(original) { const node = createBaseNode(354); node.original = original; setTextRange(node, original); return node; } function createPartiallyEmittedExpression(expression, original) { const node = createBaseNode(356); node.expression = expression; node.original = original; node.transformFlags |= propagateChildFlags(node.expression) | 1; setTextRange(node, original); return node; } function updatePartiallyEmittedExpression(node, expression) { return node.expression !== expression ? update(createPartiallyEmittedExpression(expression, node.original), node) : node; } function createNotEmittedTypeElement() { return createBaseNode(355); } function flattenCommaElements(node) { if (nodeIsSynthesized(node) && !isParseTreeNode(node) && !node.original && !node.emitNode && !node.id) { if (isCommaListExpression(node)) { return node.elements; } if (isBinaryExpression(node) && isCommaToken(node.operatorToken)) { return [node.left, node.right]; } } return node; } function createCommaListExpression(elements) { const node = createBaseNode(357); node.elements = createNodeArray(sameFlatMap(elements, flattenCommaElements)); node.transformFlags |= propagateChildrenFlags(node.elements); return node; } function updateCommaListExpression(node, elements) { return node.elements !== elements ? update(createCommaListExpression(elements), node) : node; } function createSyntheticReferenceExpression(expression, thisArg) { const node = createBaseNode(358); node.expression = expression; node.thisArg = thisArg; node.transformFlags |= propagateChildFlags(node.expression) | propagateChildFlags(node.thisArg); return node; } function updateSyntheticReferenceExpression(node, expression, thisArg) { return node.expression !== expression || node.thisArg !== thisArg ? update(createSyntheticReferenceExpression(expression, thisArg), node) : node; } function cloneGeneratedIdentifier(node) { const clone2 = createBaseIdentifier(node.escapedText); clone2.flags |= node.flags & ~16; clone2.transformFlags = node.transformFlags; setOriginal(clone2, node); setIdentifierAutoGenerate(clone2, { ...node.emitNode.autoGenerate }); return clone2; } function cloneIdentifier(node) { const clone2 = createBaseIdentifier(node.escapedText); clone2.flags |= node.flags & ~16; clone2.jsDoc = node.jsDoc; clone2.flowNode = node.flowNode; clone2.symbol = node.symbol; clone2.transformFlags = node.transformFlags; setOriginal(clone2, node); const typeArguments = getIdentifierTypeArguments(node); if (typeArguments) setIdentifierTypeArguments(clone2, typeArguments); return clone2; } function cloneGeneratedPrivateIdentifier(node) { const clone2 = createBasePrivateIdentifier(node.escapedText); clone2.flags |= node.flags & ~16; clone2.transformFlags = node.transformFlags; setOriginal(clone2, node); setIdentifierAutoGenerate(clone2, { ...node.emitNode.autoGenerate }); return clone2; } function clonePrivateIdentifier(node) { const clone2 = createBasePrivateIdentifier(node.escapedText); clone2.flags |= node.flags & ~16; clone2.transformFlags = node.transformFlags; setOriginal(clone2, node); return clone2; } function cloneNode(node) { if (node === undefined) { return node; } if (isSourceFile(node)) { return cloneSourceFile(node); } if (isGeneratedIdentifier(node)) { return cloneGeneratedIdentifier(node); } if (isIdentifier(node)) { return cloneIdentifier(node); } if (isGeneratedPrivateIdentifier(node)) { return cloneGeneratedPrivateIdentifier(node); } if (isPrivateIdentifier(node)) { return clonePrivateIdentifier(node); } const clone2 = !isNodeKind(node.kind) ? baseFactory2.createBaseTokenNode(node.kind) : baseFactory2.createBaseNode(node.kind); clone2.flags |= node.flags & ~16; clone2.transformFlags = node.transformFlags; setOriginal(clone2, node); for (const key in node) { if (hasProperty(clone2, key) || !hasProperty(node, key)) { continue; } clone2[key] = node[key]; } return clone2; } function createImmediatelyInvokedFunctionExpression(statements, param, paramValue) { return createCallExpression(createFunctionExpression(undefined, undefined, undefined, undefined, param ? [param] : [], undefined, createBlock(statements, true)), undefined, paramValue ? [paramValue] : []); } function createImmediatelyInvokedArrowFunction(statements, param, paramValue) { return createCallExpression(createArrowFunction(undefined, undefined, param ? [param] : [], undefined, undefined, createBlock(statements, true)), undefined, paramValue ? [paramValue] : []); } function createVoidZero() { return createVoidExpression(createNumericLiteral("0")); } function createExportDefault(expression) { return createExportAssignment2(undefined, false, expression); } function createExternalModuleExport(exportName) { return createExportDeclaration(undefined, false, createNamedExports([ createExportSpecifier(false, undefined, exportName) ])); } function createTypeCheck(value, tag) { return tag === "null" ? factory2.createStrictEquality(value, createNull()) : tag === "undefined" ? factory2.createStrictEquality(value, createVoidZero()) : factory2.createStrictEquality(createTypeOfExpression(value), createStringLiteral(tag)); } function createIsNotTypeCheck(value, tag) { return tag === "null" ? factory2.createStrictInequality(value, createNull()) : tag === "undefined" ? factory2.createStrictInequality(value, createVoidZero()) : factory2.createStrictInequality(createTypeOfExpression(value), createStringLiteral(tag)); } function createMethodCall(object, methodName, argumentsList) { if (isCallChain(object)) { return createCallChain(createPropertyAccessChain(object, undefined, methodName), undefined, undefined, argumentsList); } return createCallExpression(createPropertyAccessExpression(object, methodName), undefined, argumentsList); } function createFunctionBindCall(target, thisArg, argumentsList) { return createMethodCall(target, "bind", [thisArg, ...argumentsList]); } function createFunctionCallCall(target, thisArg, argumentsList) { return createMethodCall(target, "call", [thisArg, ...argumentsList]); } function createFunctionApplyCall(target, thisArg, argumentsExpression) { return createMethodCall(target, "apply", [thisArg, argumentsExpression]); } function createGlobalMethodCall(globalObjectName, methodName, argumentsList) { return createMethodCall(createIdentifier(globalObjectName), methodName, argumentsList); } function createArraySliceCall(array, start) { return createMethodCall(array, "slice", start === undefined ? [] : [asExpression(start)]); } function createArrayConcatCall(array, argumentsList) { return createMethodCall(array, "concat", argumentsList); } function createObjectDefinePropertyCall(target, propertyName, attributes) { return createGlobalMethodCall("Object", "defineProperty", [target, asExpression(propertyName), attributes]); } function createObjectGetOwnPropertyDescriptorCall(target, propertyName) { return createGlobalMethodCall("Object", "getOwnPropertyDescriptor", [target, asExpression(propertyName)]); } function createReflectGetCall(target, propertyKey, receiver) { return createGlobalMethodCall("Reflect", "get", receiver ? [target, propertyKey, receiver] : [target, propertyKey]); } function createReflectSetCall(target, propertyKey, value, receiver) { return createGlobalMethodCall("Reflect", "set", receiver ? [target, propertyKey, value, receiver] : [target, propertyKey, value]); } function tryAddPropertyAssignment(properties, propertyName, expression) { if (expression) { properties.push(createPropertyAssignment(propertyName, expression)); return true; } return false; } function createPropertyDescriptor(attributes, singleLine) { const properties = []; tryAddPropertyAssignment(properties, "enumerable", asExpression(attributes.enumerable)); tryAddPropertyAssignment(properties, "configurable", asExpression(attributes.configurable)); let isData = tryAddPropertyAssignment(properties, "writable", asExpression(attributes.writable)); isData = tryAddPropertyAssignment(properties, "value", attributes.value) || isData; let isAccessor2 = tryAddPropertyAssignment(properties, "get", attributes.get); isAccessor2 = tryAddPropertyAssignment(properties, "set", attributes.set) || isAccessor2; Debug.assert(!(isData && isAccessor2), "A PropertyDescriptor may not be both an accessor descriptor and a data descriptor."); return createObjectLiteralExpression(properties, !singleLine); } function updateOuterExpression(outerExpression, expression) { switch (outerExpression.kind) { case 218: return updateParenthesizedExpression(outerExpression, expression); case 217: return updateTypeAssertion(outerExpression, outerExpression.type, expression); case 235: return updateAsExpression(outerExpression, expression, outerExpression.type); case 239: return updateSatisfiesExpression(outerExpression, expression, outerExpression.type); case 236: return updateNonNullExpression(outerExpression, expression); case 234: return updateExpressionWithTypeArguments(outerExpression, expression, outerExpression.typeArguments); case 356: return updatePartiallyEmittedExpression(outerExpression, expression); } } function isIgnorableParen(node) { return isParenthesizedExpression(node) && nodeIsSynthesized(node) && nodeIsSynthesized(getSourceMapRange(node)) && nodeIsSynthesized(getCommentRange(node)) && !some(getSyntheticLeadingComments(node)) && !some(getSyntheticTrailingComments(node)); } function restoreOuterExpressions(outerExpression, innerExpression, kinds = 63) { if (outerExpression && isOuterExpression(outerExpression, kinds) && !isIgnorableParen(outerExpression)) { return updateOuterExpression(outerExpression, restoreOuterExpressions(outerExpression.expression, innerExpression)); } return innerExpression; } function restoreEnclosingLabel(node, outermostLabeledStatement, afterRestoreLabelCallback) { if (!outermostLabeledStatement) { return node; } const updated = updateLabeledStatement(outermostLabeledStatement, outermostLabeledStatement.label, isLabeledStatement(outermostLabeledStatement.statement) ? restoreEnclosingLabel(node, outermostLabeledStatement.statement) : node); if (afterRestoreLabelCallback) { afterRestoreLabelCallback(outermostLabeledStatement); } return updated; } function shouldBeCapturedInTempVariable(node, cacheIdentifiers) { const target = skipParentheses(node); switch (target.kind) { case 80: return cacheIdentifiers; case 110: case 9: case 10: case 11: return false; case 210: const elements = target.elements; if (elements.length === 0) { return false; } return true; case 211: return target.properties.length > 0; default: return true; } } function createCallBinding(expression, recordTempVariable, languageVersion, cacheIdentifiers = false) { const callee = skipOuterExpressions(expression, 63); let thisArg; let target; if (isSuperProperty(callee)) { thisArg = createThis(); target = callee; } else if (isSuperKeyword(callee)) { thisArg = createThis(); target = languageVersion !== undefined && languageVersion < 2 ? setTextRange(createIdentifier("_super"), callee) : callee; } else if (getEmitFlags(callee) & 8192) { thisArg = createVoidZero(); target = parenthesizerRules().parenthesizeLeftSideOfAccess(callee, false); } else if (isPropertyAccessExpression(callee)) { if (shouldBeCapturedInTempVariable(callee.expression, cacheIdentifiers)) { thisArg = createTempVariable(recordTempVariable); target = createPropertyAccessExpression(setTextRange(factory2.createAssignment(thisArg, callee.expression), callee.expression), callee.name); setTextRange(target, callee); } else { thisArg = callee.expression; target = callee; } } else if (isElementAccessExpression(callee)) { if (shouldBeCapturedInTempVariable(callee.expression, cacheIdentifiers)) { thisArg = createTempVariable(recordTempVariable); target = createElementAccessExpression(setTextRange(factory2.createAssignment(thisArg, callee.expression), callee.expression), callee.argumentExpression); setTextRange(target, callee); } else { thisArg = callee.expression; target = callee; } } else { thisArg = createVoidZero(); target = parenthesizerRules().parenthesizeLeftSideOfAccess(expression, false); } return { target, thisArg }; } function createAssignmentTargetWrapper(paramName, expression) { return createPropertyAccessExpression(createParenthesizedExpression(createObjectLiteralExpression([ createSetAccessorDeclaration(undefined, "value", [createParameterDeclaration(undefined, undefined, paramName, undefined, undefined, undefined)], createBlock([ createExpressionStatement(expression) ])) ])), "value"); } function inlineExpressions(expressions) { return expressions.length > 10 ? createCommaListExpression(expressions) : reduceLeft(expressions, factory2.createComma); } function getName(node, allowComments, allowSourceMaps, emitFlags = 0, ignoreAssignedName) { const nodeName = ignoreAssignedName ? node && getNonAssignedNameOfDeclaration(node) : getNameOfDeclaration(node); if (nodeName && isIdentifier(nodeName) && !isGeneratedIdentifier(nodeName)) { const name = setParent(setTextRange(cloneNode(nodeName), nodeName), nodeName.parent); emitFlags |= getEmitFlags(nodeName); if (!allowSourceMaps) emitFlags |= 96; if (!allowComments) emitFlags |= 3072; if (emitFlags) setEmitFlags(name, emitFlags); return name; } return getGeneratedNameForNode(node); } function getInternalName(node, allowComments, allowSourceMaps) { return getName(node, allowComments, allowSourceMaps, 32768 | 65536); } function getLocalName(node, allowComments, allowSourceMaps, ignoreAssignedName) { return getName(node, allowComments, allowSourceMaps, 32768, ignoreAssignedName); } function getExportName(node, allowComments, allowSourceMaps) { return getName(node, allowComments, allowSourceMaps, 16384); } function getDeclarationName(node, allowComments, allowSourceMaps) { return getName(node, allowComments, allowSourceMaps); } function getNamespaceMemberName(ns, name, allowComments, allowSourceMaps) { const qualifiedName = createPropertyAccessExpression(ns, nodeIsSynthesized(name) ? name : cloneNode(name)); setTextRange(qualifiedName, name); let emitFlags = 0; if (!allowSourceMaps) emitFlags |= 96; if (!allowComments) emitFlags |= 3072; if (emitFlags) setEmitFlags(qualifiedName, emitFlags); return qualifiedName; } function getExternalModuleOrNamespaceExportName(ns, node, allowComments, allowSourceMaps) { if (ns && hasSyntacticModifier(node, 32)) { return getNamespaceMemberName(ns, getName(node), allowComments, allowSourceMaps); } return getExportName(node, allowComments, allowSourceMaps); } function copyPrologue(source, target, ensureUseStrict2, visitor) { const offset = copyStandardPrologue(source, target, 0, ensureUseStrict2); return copyCustomPrologue(source, target, offset, visitor); } function isUseStrictPrologue2(node) { return isStringLiteral(node.expression) && node.expression.text === "use strict"; } function createUseStrictPrologue() { return startOnNewLine(createExpressionStatement(createStringLiteral("use strict"))); } function copyStandardPrologue(source, target, statementOffset = 0, ensureUseStrict2) { Debug.assert(target.length === 0, "Prologue directives should be at the first statement in the target statements array"); let foundUseStrict = false; const numStatements = source.length; while (statementOffset < numStatements) { const statement = source[statementOffset]; if (isPrologueDirective(statement)) { if (isUseStrictPrologue2(statement)) { foundUseStrict = true; } target.push(statement); } else { break; } statementOffset++; } if (ensureUseStrict2 && !foundUseStrict) { target.push(createUseStrictPrologue()); } return statementOffset; } function copyCustomPrologue(source, target, statementOffset, visitor, filter2 = returnTrue) { const numStatements = source.length; while (statementOffset !== undefined && statementOffset < numStatements) { const statement = source[statementOffset]; if (getEmitFlags(statement) & 2097152 && filter2(statement)) { append(target, visitor ? visitNode(statement, visitor, isStatement) : statement); } else { break; } statementOffset++; } return statementOffset; } function ensureUseStrict(statements) { const foundUseStrict = findUseStrictPrologue(statements); if (!foundUseStrict) { return setTextRange(createNodeArray([createUseStrictPrologue(), ...statements]), statements); } return statements; } function liftToBlock(nodes) { Debug.assert(every(nodes, isStatementOrBlock), "Cannot lift nodes to a Block."); return singleOrUndefined(nodes) || createBlock(nodes); } function findSpanEnd(array, test, start) { let i = start; while (i < array.length && test(array[i])) { i++; } return i; } function mergeLexicalEnvironment(statements, declarations) { if (!some(declarations)) { return statements; } const leftStandardPrologueEnd = findSpanEnd(statements, isPrologueDirective, 0); const leftHoistedFunctionsEnd = findSpanEnd(statements, isHoistedFunction, leftStandardPrologueEnd); const leftHoistedVariablesEnd = findSpanEnd(statements, isHoistedVariableStatement, leftHoistedFunctionsEnd); const rightStandardPrologueEnd = findSpanEnd(declarations, isPrologueDirective, 0); const rightHoistedFunctionsEnd = findSpanEnd(declarations, isHoistedFunction, rightStandardPrologueEnd); const rightHoistedVariablesEnd = findSpanEnd(declarations, isHoistedVariableStatement, rightHoistedFunctionsEnd); const rightCustomPrologueEnd = findSpanEnd(declarations, isCustomPrologue, rightHoistedVariablesEnd); Debug.assert(rightCustomPrologueEnd === declarations.length, "Expected declarations to be valid standard or custom prologues"); const left = isNodeArray(statements) ? statements.slice() : statements; if (rightCustomPrologueEnd > rightHoistedVariablesEnd) { left.splice(leftHoistedVariablesEnd, 0, ...declarations.slice(rightHoistedVariablesEnd, rightCustomPrologueEnd)); } if (rightHoistedVariablesEnd > rightHoistedFunctionsEnd) { left.splice(leftHoistedFunctionsEnd, 0, ...declarations.slice(rightHoistedFunctionsEnd, rightHoistedVariablesEnd)); } if (rightHoistedFunctionsEnd > rightStandardPrologueEnd) { left.splice(leftStandardPrologueEnd, 0, ...declarations.slice(rightStandardPrologueEnd, rightHoistedFunctionsEnd)); } if (rightStandardPrologueEnd > 0) { if (leftStandardPrologueEnd === 0) { left.splice(0, 0, ...declarations.slice(0, rightStandardPrologueEnd)); } else { const leftPrologues = /* @__PURE__ */ new Map; for (let i = 0;i < leftStandardPrologueEnd; i++) { const leftPrologue = statements[i]; leftPrologues.set(leftPrologue.expression.text, true); } for (let i = rightStandardPrologueEnd - 1;i >= 0; i--) { const rightPrologue = declarations[i]; if (!leftPrologues.has(rightPrologue.expression.text)) { left.unshift(rightPrologue); } } } } if (isNodeArray(statements)) { return setTextRange(createNodeArray(left, statements.hasTrailingComma), statements); } return statements; } function replaceModifiers(node, modifiers) { let modifierArray; if (typeof modifiers === "number") { modifierArray = createModifiersFromModifierFlags(modifiers); } else { modifierArray = modifiers; } return isTypeParameterDeclaration(node) ? updateTypeParameterDeclaration(node, modifierArray, node.name, node.constraint, node.default) : isParameter(node) ? updateParameterDeclaration(node, modifierArray, node.dotDotDotToken, node.name, node.questionToken, node.type, node.initializer) : isConstructorTypeNode(node) ? updateConstructorTypeNode1(node, modifierArray, node.typeParameters, node.parameters, node.type) : isPropertySignature(node) ? updatePropertySignature(node, modifierArray, node.name, node.questionToken, node.type) : isPropertyDeclaration(node) ? updatePropertyDeclaration2(node, modifierArray, node.name, node.questionToken ?? node.exclamationToken, node.type, node.initializer) : isMethodSignature(node) ? updateMethodSignature(node, modifierArray, node.name, node.questionToken, node.typeParameters, node.parameters, node.type) : isMethodDeclaration(node) ? updateMethodDeclaration(node, modifierArray, node.asteriskToken, node.name, node.questionToken, node.typeParameters, node.parameters, node.type, node.body) : isConstructorDeclaration(node) ? updateConstructorDeclaration(node, modifierArray, node.parameters, node.body) : isGetAccessorDeclaration(node) ? updateGetAccessorDeclaration(node, modifierArray, node.name, node.parameters, node.type, node.body) : isSetAccessorDeclaration(node) ? updateSetAccessorDeclaration(node, modifierArray, node.name, node.parameters, node.body) : isIndexSignatureDeclaration(node) ? updateIndexSignature(node, modifierArray, node.parameters, node.type) : isFunctionExpression(node) ? updateFunctionExpression(node, modifierArray, node.asteriskToken, node.name, node.typeParameters, node.parameters, node.type, node.body) : isArrowFunction(node) ? updateArrowFunction(node, modifierArray, node.typeParameters, node.parameters, node.type, node.equalsGreaterThanToken, node.body) : isClassExpression(node) ? updateClassExpression(node, modifierArray, node.name, node.typeParameters, node.heritageClauses, node.members) : isVariableStatement(node) ? updateVariableStatement(node, modifierArray, node.declarationList) : isFunctionDeclaration(node) ? updateFunctionDeclaration(node, modifierArray, node.asteriskToken, node.name, node.typeParameters, node.parameters, node.type, node.body) : isClassDeclaration(node) ? updateClassDeclaration(node, modifierArray, node.name, node.typeParameters, node.heritageClauses, node.members) : isInterfaceDeclaration(node) ? updateInterfaceDeclaration(node, modifierArray, node.name, node.typeParameters, node.heritageClauses, node.members) : isTypeAliasDeclaration(node) ? updateTypeAliasDeclaration(node, modifierArray, node.name, node.typeParameters, node.type) : isEnumDeclaration(node) ? updateEnumDeclaration(node, modifierArray, node.name, node.members) : isModuleDeclaration(node) ? updateModuleDeclaration(node, modifierArray, node.name, node.body) : isImportEqualsDeclaration(node) ? updateImportEqualsDeclaration(node, modifierArray, node.isTypeOnly, node.name, node.moduleReference) : isImportDeclaration(node) ? updateImportDeclaration(node, modifierArray, node.importClause, node.moduleSpecifier, node.attributes) : isExportAssignment(node) ? updateExportAssignment(node, modifierArray, node.expression) : isExportDeclaration(node) ? updateExportDeclaration(node, modifierArray, node.isTypeOnly, node.exportClause, node.moduleSpecifier, node.attributes) : Debug.assertNever(node); } function replaceDecoratorsAndModifiers(node, modifierArray) { return isParameter(node) ? updateParameterDeclaration(node, modifierArray, node.dotDotDotToken, node.name, node.questionToken, node.type, node.initializer) : isPropertyDeclaration(node) ? updatePropertyDeclaration2(node, modifierArray, node.name, node.questionToken ?? node.exclamationToken, node.type, node.initializer) : isMethodDeclaration(node) ? updateMethodDeclaration(node, modifierArray, node.asteriskToken, node.name, node.questionToken, node.typeParameters, node.parameters, node.type, node.body) : isGetAccessorDeclaration(node) ? updateGetAccessorDeclaration(node, modifierArray, node.name, node.parameters, node.type, node.body) : isSetAccessorDeclaration(node) ? updateSetAccessorDeclaration(node, modifierArray, node.name, node.parameters, node.body) : isClassExpression(node) ? updateClassExpression(node, modifierArray, node.name, node.typeParameters, node.heritageClauses, node.members) : isClassDeclaration(node) ? updateClassDeclaration(node, modifierArray, node.name, node.typeParameters, node.heritageClauses, node.members) : Debug.assertNever(node); } function replacePropertyName(node, name) { switch (node.kind) { case 178: return updateGetAccessorDeclaration(node, node.modifiers, name, node.parameters, node.type, node.body); case 179: return updateSetAccessorDeclaration(node, node.modifiers, name, node.parameters, node.body); case 175: return updateMethodDeclaration(node, node.modifiers, node.asteriskToken, name, node.questionToken, node.typeParameters, node.parameters, node.type, node.body); case 174: return updateMethodSignature(node, node.modifiers, name, node.questionToken, node.typeParameters, node.parameters, node.type); case 173: return updatePropertyDeclaration2(node, node.modifiers, name, node.questionToken ?? node.exclamationToken, node.type, node.initializer); case 172: return updatePropertySignature(node, node.modifiers, name, node.questionToken, node.type); case 304: return updatePropertyAssignment(node, name, node.initializer); } } function asNodeArray(array) { return array ? createNodeArray(array) : undefined; } function asName(name) { return typeof name === "string" ? createIdentifier(name) : name; } function asExpression(value) { return typeof value === "string" ? createStringLiteral(value) : typeof value === "number" ? createNumericLiteral(value) : typeof value === "boolean" ? value ? createTrue() : createFalse() : value; } function asInitializer(node) { return node && parenthesizerRules().parenthesizeExpressionForDisallowedComma(node); } function asToken(value) { return typeof value === "number" ? createToken(value) : value; } function asEmbeddedStatement(statement) { return statement && isNotEmittedStatement(statement) ? setTextRange(setOriginal(createEmptyStatement(), statement), statement) : statement; } function asVariableDeclaration(variableDeclaration) { if (typeof variableDeclaration === "string" || variableDeclaration && !isVariableDeclaration(variableDeclaration)) { return createVariableDeclaration(variableDeclaration, undefined, undefined, undefined); } return variableDeclaration; } function update(updated, original) { if (updated !== original) { setOriginal(updated, original); setTextRange(updated, original); } return updated; } } function getDefaultTagNameForKind(kind) { switch (kind) { case 345: return "type"; case 343: return "returns"; case 344: return "this"; case 341: return "enum"; case 331: return "author"; case 333: return "class"; case 334: return "public"; case 335: return "private"; case 336: return "protected"; case 337: return "readonly"; case 338: return "override"; case 346: return "template"; case 347: return "typedef"; case 342: return "param"; case 349: return "prop"; case 339: return "callback"; case 340: return "overload"; case 329: return "augments"; case 330: return "implements"; case 352: return "import"; default: return Debug.fail(`Unsupported kind: ${Debug.formatSyntaxKind(kind)}`); } } var rawTextScanner; var invalidValueSentinel = {}; function getCookedText(kind, rawText) { if (!rawTextScanner) { rawTextScanner = createScanner(99, false, 0); } switch (kind) { case 15: rawTextScanner.setText("`" + rawText + "`"); break; case 16: rawTextScanner.setText("`" + rawText + "${"); break; case 17: rawTextScanner.setText("}" + rawText + "${"); break; case 18: rawTextScanner.setText("}" + rawText + "`"); break; } let token = rawTextScanner.scan(); if (token === 20) { token = rawTextScanner.reScanTemplateToken(false); } if (rawTextScanner.isUnterminated()) { rawTextScanner.setText(undefined); return invalidValueSentinel; } let tokenValue; switch (token) { case 15: case 16: case 17: case 18: tokenValue = rawTextScanner.getTokenValue(); break; } if (tokenValue === undefined || rawTextScanner.scan() !== 1) { rawTextScanner.setText(undefined); return invalidValueSentinel; } rawTextScanner.setText(undefined); return tokenValue; } function propagateNameFlags(node) { return node && isIdentifier(node) ? propagateIdentifierNameFlags(node) : propagateChildFlags(node); } function propagateIdentifierNameFlags(node) { return propagateChildFlags(node) & ~67108864; } function propagatePropertyNameFlagsOfChild(node, transformFlags) { return transformFlags | node.transformFlags & 134234112; } function propagateChildFlags(child) { if (!child) return 0; const childFlags = child.transformFlags & ~getTransformFlagsSubtreeExclusions(child.kind); return isNamedDeclaration(child) && isPropertyName(child.name) ? propagatePropertyNameFlagsOfChild(child.name, childFlags) : childFlags; } function propagateChildrenFlags(children) { return children ? children.transformFlags : 0; } function aggregateChildrenFlags(children) { let subtreeFlags = 0; for (const child of children) { subtreeFlags |= propagateChildFlags(child); } children.transformFlags = subtreeFlags; } function getTransformFlagsSubtreeExclusions(kind) { if (kind >= 183 && kind <= 206) { return -2; } switch (kind) { case 214: case 215: case 210: return -2147450880; case 268: return -1941676032; case 170: return -2147483648; case 220: return -2072174592; case 219: case 263: return -1937940480; case 262: return -2146893824; case 264: case 232: return -2147344384; case 177: return -1937948672; case 173: return -2013249536; case 175: case 178: case 179: return -2005057536; case 133: case 150: case 163: case 146: case 154: case 151: case 136: case 155: case 116: case 169: case 172: case 174: case 180: case 181: case 182: case 265: case 266: return -2; case 211: return -2147278848; case 300: return -2147418112; case 207: case 208: return -2147450880; case 217: case 239: case 235: case 356: case 218: case 108: return -2147483648; case 212: case 213: return -2147483648; default: return -2147483648; } } var baseFactory = createBaseNodeFactory(); function makeSynthetic(node) { node.flags |= 16; return node; } var syntheticFactory = { createBaseSourceFileNode: (kind) => makeSynthetic(baseFactory.createBaseSourceFileNode(kind)), createBaseIdentifierNode: (kind) => makeSynthetic(baseFactory.createBaseIdentifierNode(kind)), createBasePrivateIdentifierNode: (kind) => makeSynthetic(baseFactory.createBasePrivateIdentifierNode(kind)), createBaseTokenNode: (kind) => makeSynthetic(baseFactory.createBaseTokenNode(kind)), createBaseNode: (kind) => makeSynthetic(baseFactory.createBaseNode(kind)) }; var factory = createNodeFactory(4, syntheticFactory); var SourceMapSource2; function createSourceMapSource(fileName, text, skipTrivia22) { return new (SourceMapSource2 || (SourceMapSource2 = objectAllocator.getSourceMapSourceConstructor()))(fileName, text, skipTrivia22); } function setOriginalNode(node, original) { if (node.original !== original) { node.original = original; if (original) { const emitNode = original.emitNode; if (emitNode) node.emitNode = mergeEmitNode(emitNode, node.emitNode); } } return node; } function mergeEmitNode(sourceEmitNode, destEmitNode) { const { flags, internalFlags, leadingComments, trailingComments, commentRange, sourceMapRange, tokenSourceMapRanges, constantValue, helpers, startsOnNewLine, snippetElement, classThis, assignedName } = sourceEmitNode; if (!destEmitNode) destEmitNode = {}; if (flags) { destEmitNode.flags = flags; } if (internalFlags) { destEmitNode.internalFlags = internalFlags & ~8; } if (leadingComments) { destEmitNode.leadingComments = addRange(leadingComments.slice(), destEmitNode.leadingComments); } if (trailingComments) { destEmitNode.trailingComments = addRange(trailingComments.slice(), destEmitNode.trailingComments); } if (commentRange) { destEmitNode.commentRange = commentRange; } if (sourceMapRange) { destEmitNode.sourceMapRange = sourceMapRange; } if (tokenSourceMapRanges) { destEmitNode.tokenSourceMapRanges = mergeTokenSourceMapRanges(tokenSourceMapRanges, destEmitNode.tokenSourceMapRanges); } if (constantValue !== undefined) { destEmitNode.constantValue = constantValue; } if (helpers) { for (const helper of helpers) { destEmitNode.helpers = appendIfUnique(destEmitNode.helpers, helper); } } if (startsOnNewLine !== undefined) { destEmitNode.startsOnNewLine = startsOnNewLine; } if (snippetElement !== undefined) { destEmitNode.snippetElement = snippetElement; } if (classThis) { destEmitNode.classThis = classThis; } if (assignedName) { destEmitNode.assignedName = assignedName; } return destEmitNode; } function mergeTokenSourceMapRanges(sourceRanges, destRanges) { if (!destRanges) destRanges = []; for (const key in sourceRanges) { destRanges[key] = sourceRanges[key]; } return destRanges; } function getOrCreateEmitNode(node) { if (!node.emitNode) { if (isParseTreeNode(node)) { if (node.kind === 308) { return node.emitNode = { annotatedNodes: [node] }; } const sourceFile = getSourceFileOfNode(getParseTreeNode(getSourceFileOfNode(node))) ?? Debug.fail("Could not determine parsed source file."); getOrCreateEmitNode(sourceFile).annotatedNodes.push(node); } node.emitNode = {}; } else { Debug.assert(!(node.emitNode.internalFlags & 8), "Invalid attempt to mutate an immutable node."); } return node.emitNode; } function disposeEmitNodes(sourceFile) { var _a, _b; const annotatedNodes = (_b = (_a = getSourceFileOfNode(getParseTreeNode(sourceFile))) == null ? undefined : _a.emitNode) == null ? undefined : _b.annotatedNodes; if (annotatedNodes) { for (const node of annotatedNodes) { node.emitNode = undefined; } } } function removeAllComments(node) { const emitNode = getOrCreateEmitNode(node); emitNode.flags |= 3072; emitNode.leadingComments = undefined; emitNode.trailingComments = undefined; return node; } function setEmitFlags(node, emitFlags) { getOrCreateEmitNode(node).flags = emitFlags; return node; } function addEmitFlags(node, emitFlags) { const emitNode = getOrCreateEmitNode(node); emitNode.flags = emitNode.flags | emitFlags; return node; } function setInternalEmitFlags(node, emitFlags) { getOrCreateEmitNode(node).internalFlags = emitFlags; return node; } function addInternalEmitFlags(node, emitFlags) { const emitNode = getOrCreateEmitNode(node); emitNode.internalFlags = emitNode.internalFlags | emitFlags; return node; } function getSourceMapRange(node) { var _a; return ((_a = node.emitNode) == null ? undefined : _a.sourceMapRange) ?? node; } function setSourceMapRange(node, range) { getOrCreateEmitNode(node).sourceMapRange = range; return node; } function getTokenSourceMapRange(node, token) { var _a, _b; return (_b = (_a = node.emitNode) == null ? undefined : _a.tokenSourceMapRanges) == null ? undefined : _b[token]; } function setTokenSourceMapRange(node, token, range) { const emitNode = getOrCreateEmitNode(node); const tokenSourceMapRanges = emitNode.tokenSourceMapRanges ?? (emitNode.tokenSourceMapRanges = []); tokenSourceMapRanges[token] = range; return node; } function getStartsOnNewLine(node) { var _a; return (_a = node.emitNode) == null ? undefined : _a.startsOnNewLine; } function setStartsOnNewLine(node, newLine) { getOrCreateEmitNode(node).startsOnNewLine = newLine; return node; } function getCommentRange(node) { var _a; return ((_a = node.emitNode) == null ? undefined : _a.commentRange) ?? node; } function setCommentRange(node, range) { getOrCreateEmitNode(node).commentRange = range; return node; } function getSyntheticLeadingComments(node) { var _a; return (_a = node.emitNode) == null ? undefined : _a.leadingComments; } function setSyntheticLeadingComments(node, comments) { getOrCreateEmitNode(node).leadingComments = comments; return node; } function addSyntheticLeadingComment(node, kind, text, hasTrailingNewLine) { return setSyntheticLeadingComments(node, append(getSyntheticLeadingComments(node), { kind, pos: -1, end: -1, hasTrailingNewLine, text })); } function getSyntheticTrailingComments(node) { var _a; return (_a = node.emitNode) == null ? undefined : _a.trailingComments; } function setSyntheticTrailingComments(node, comments) { getOrCreateEmitNode(node).trailingComments = comments; return node; } function addSyntheticTrailingComment(node, kind, text, hasTrailingNewLine) { return setSyntheticTrailingComments(node, append(getSyntheticTrailingComments(node), { kind, pos: -1, end: -1, hasTrailingNewLine, text })); } function moveSyntheticComments(node, original) { setSyntheticLeadingComments(node, getSyntheticLeadingComments(original)); setSyntheticTrailingComments(node, getSyntheticTrailingComments(original)); const emit = getOrCreateEmitNode(original); emit.leadingComments = undefined; emit.trailingComments = undefined; return node; } function getConstantValue(node) { var _a; return (_a = node.emitNode) == null ? undefined : _a.constantValue; } function setConstantValue(node, value) { const emitNode = getOrCreateEmitNode(node); emitNode.constantValue = value; return node; } function addEmitHelper(node, helper) { const emitNode = getOrCreateEmitNode(node); emitNode.helpers = append(emitNode.helpers, helper); return node; } function addEmitHelpers(node, helpers) { if (some(helpers)) { const emitNode = getOrCreateEmitNode(node); for (const helper of helpers) { emitNode.helpers = appendIfUnique(emitNode.helpers, helper); } } return node; } function removeEmitHelper(node, helper) { var _a; const helpers = (_a = node.emitNode) == null ? undefined : _a.helpers; if (helpers) { return orderedRemoveItem(helpers, helper); } return false; } function getEmitHelpers(node) { var _a; return (_a = node.emitNode) == null ? undefined : _a.helpers; } function moveEmitHelpers(source, target, predicate) { const sourceEmitNode = source.emitNode; const sourceEmitHelpers = sourceEmitNode && sourceEmitNode.helpers; if (!some(sourceEmitHelpers)) return; const targetEmitNode = getOrCreateEmitNode(target); let helpersRemoved = 0; for (let i = 0;i < sourceEmitHelpers.length; i++) { const helper = sourceEmitHelpers[i]; if (predicate(helper)) { helpersRemoved++; targetEmitNode.helpers = appendIfUnique(targetEmitNode.helpers, helper); } else if (helpersRemoved > 0) { sourceEmitHelpers[i - helpersRemoved] = helper; } } if (helpersRemoved > 0) { sourceEmitHelpers.length -= helpersRemoved; } } function getSnippetElement(node) { var _a; return (_a = node.emitNode) == null ? undefined : _a.snippetElement; } function setSnippetElement(node, snippet) { const emitNode = getOrCreateEmitNode(node); emitNode.snippetElement = snippet; return node; } function ignoreSourceNewlines(node) { getOrCreateEmitNode(node).internalFlags |= 4; return node; } function setTypeNode(node, type) { const emitNode = getOrCreateEmitNode(node); emitNode.typeNode = type; return node; } function getTypeNode(node) { var _a; return (_a = node.emitNode) == null ? undefined : _a.typeNode; } function setIdentifierTypeArguments(node, typeArguments) { getOrCreateEmitNode(node).identifierTypeArguments = typeArguments; return node; } function getIdentifierTypeArguments(node) { var _a; return (_a = node.emitNode) == null ? undefined : _a.identifierTypeArguments; } function setIdentifierAutoGenerate(node, autoGenerate) { getOrCreateEmitNode(node).autoGenerate = autoGenerate; return node; } function getIdentifierAutoGenerate(node) { var _a; return (_a = node.emitNode) == null ? undefined : _a.autoGenerate; } function setIdentifierGeneratedImportReference(node, value) { getOrCreateEmitNode(node).generatedImportReference = value; return node; } function getIdentifierGeneratedImportReference(node) { var _a; return (_a = node.emitNode) == null ? undefined : _a.generatedImportReference; } var PrivateIdentifierKind = /* @__PURE__ */ ((PrivateIdentifierKind2) => { PrivateIdentifierKind2["Field"] = "f"; PrivateIdentifierKind2["Method"] = "m"; PrivateIdentifierKind2["Accessor"] = "a"; return PrivateIdentifierKind2; })(PrivateIdentifierKind || {}); function createEmitHelperFactory(context) { const factory2 = context.factory; const immutableTrue = memoize(() => setInternalEmitFlags(factory2.createTrue(), 8)); const immutableFalse = memoize(() => setInternalEmitFlags(factory2.createFalse(), 8)); return { getUnscopedHelperName, createDecorateHelper, createMetadataHelper, createParamHelper, createESDecorateHelper, createRunInitializersHelper, createAssignHelper, createAwaitHelper, createAsyncGeneratorHelper, createAsyncDelegatorHelper, createAsyncValuesHelper, createRestHelper, createAwaiterHelper, createExtendsHelper, createTemplateObjectHelper, createSpreadArrayHelper, createPropKeyHelper, createSetFunctionNameHelper, createValuesHelper, createReadHelper, createGeneratorHelper, createImportStarHelper, createImportStarCallbackHelper, createImportDefaultHelper, createExportStarHelper, createClassPrivateFieldGetHelper, createClassPrivateFieldSetHelper, createClassPrivateFieldInHelper, createAddDisposableResourceHelper, createDisposeResourcesHelper, createRewriteRelativeImportExtensionsHelper }; function getUnscopedHelperName(name) { return setEmitFlags(factory2.createIdentifier(name), 8192 | 4); } function createDecorateHelper(decoratorExpressions, target, memberName, descriptor) { context.requestEmitHelper(decorateHelper); const argumentsArray = []; argumentsArray.push(factory2.createArrayLiteralExpression(decoratorExpressions, true)); argumentsArray.push(target); if (memberName) { argumentsArray.push(memberName); if (descriptor) { argumentsArray.push(descriptor); } } return factory2.createCallExpression(getUnscopedHelperName("__decorate"), undefined, argumentsArray); } function createMetadataHelper(metadataKey, metadataValue) { context.requestEmitHelper(metadataHelper); return factory2.createCallExpression(getUnscopedHelperName("__metadata"), undefined, [ factory2.createStringLiteral(metadataKey), metadataValue ]); } function createParamHelper(expression, parameterOffset, location) { context.requestEmitHelper(paramHelper); return setTextRange(factory2.createCallExpression(getUnscopedHelperName("__param"), undefined, [ factory2.createNumericLiteral(parameterOffset + ""), expression ]), location); } function createESDecorateClassContextObject(contextIn) { const properties = [ factory2.createPropertyAssignment(factory2.createIdentifier("kind"), factory2.createStringLiteral("class")), factory2.createPropertyAssignment(factory2.createIdentifier("name"), contextIn.name), factory2.createPropertyAssignment(factory2.createIdentifier("metadata"), contextIn.metadata) ]; return factory2.createObjectLiteralExpression(properties); } function createESDecorateClassElementAccessGetMethod(elementName) { const accessor = elementName.computed ? factory2.createElementAccessExpression(factory2.createIdentifier("obj"), elementName.name) : factory2.createPropertyAccessExpression(factory2.createIdentifier("obj"), elementName.name); return factory2.createPropertyAssignment("get", factory2.createArrowFunction(undefined, undefined, [factory2.createParameterDeclaration(undefined, undefined, factory2.createIdentifier("obj"))], undefined, undefined, accessor)); } function createESDecorateClassElementAccessSetMethod(elementName) { const accessor = elementName.computed ? factory2.createElementAccessExpression(factory2.createIdentifier("obj"), elementName.name) : factory2.createPropertyAccessExpression(factory2.createIdentifier("obj"), elementName.name); return factory2.createPropertyAssignment("set", factory2.createArrowFunction(undefined, undefined, [ factory2.createParameterDeclaration(undefined, undefined, factory2.createIdentifier("obj")), factory2.createParameterDeclaration(undefined, undefined, factory2.createIdentifier("value")) ], undefined, undefined, factory2.createBlock([ factory2.createExpressionStatement(factory2.createAssignment(accessor, factory2.createIdentifier("value"))) ]))); } function createESDecorateClassElementAccessHasMethod(elementName) { const propertyName = elementName.computed ? elementName.name : isIdentifier(elementName.name) ? factory2.createStringLiteralFromNode(elementName.name) : elementName.name; return factory2.createPropertyAssignment("has", factory2.createArrowFunction(undefined, undefined, [factory2.createParameterDeclaration(undefined, undefined, factory2.createIdentifier("obj"))], undefined, undefined, factory2.createBinaryExpression(propertyName, 103, factory2.createIdentifier("obj")))); } function createESDecorateClassElementAccessObject(name, access) { const properties = []; properties.push(createESDecorateClassElementAccessHasMethod(name)); if (access.get) properties.push(createESDecorateClassElementAccessGetMethod(name)); if (access.set) properties.push(createESDecorateClassElementAccessSetMethod(name)); return factory2.createObjectLiteralExpression(properties); } function createESDecorateClassElementContextObject(contextIn) { const properties = [ factory2.createPropertyAssignment(factory2.createIdentifier("kind"), factory2.createStringLiteral(contextIn.kind)), factory2.createPropertyAssignment(factory2.createIdentifier("name"), contextIn.name.computed ? contextIn.name.name : factory2.createStringLiteralFromNode(contextIn.name.name)), factory2.createPropertyAssignment(factory2.createIdentifier("static"), contextIn.static ? factory2.createTrue() : factory2.createFalse()), factory2.createPropertyAssignment(factory2.createIdentifier("private"), contextIn.private ? factory2.createTrue() : factory2.createFalse()), factory2.createPropertyAssignment(factory2.createIdentifier("access"), createESDecorateClassElementAccessObject(contextIn.name, contextIn.access)), factory2.createPropertyAssignment(factory2.createIdentifier("metadata"), contextIn.metadata) ]; return factory2.createObjectLiteralExpression(properties); } function createESDecorateContextObject(contextIn) { return contextIn.kind === "class" ? createESDecorateClassContextObject(contextIn) : createESDecorateClassElementContextObject(contextIn); } function createESDecorateHelper(ctor, descriptorIn, decorators, contextIn, initializers, extraInitializers) { context.requestEmitHelper(esDecorateHelper); return factory2.createCallExpression(getUnscopedHelperName("__esDecorate"), undefined, [ ctor ?? factory2.createNull(), descriptorIn ?? factory2.createNull(), decorators, createESDecorateContextObject(contextIn), initializers, extraInitializers ]); } function createRunInitializersHelper(thisArg, initializers, value) { context.requestEmitHelper(runInitializersHelper); return factory2.createCallExpression(getUnscopedHelperName("__runInitializers"), undefined, value ? [thisArg, initializers, value] : [thisArg, initializers]); } function createAssignHelper(attributesSegments) { if (getEmitScriptTarget(context.getCompilerOptions()) >= 2) { return factory2.createCallExpression(factory2.createPropertyAccessExpression(factory2.createIdentifier("Object"), "assign"), undefined, attributesSegments); } context.requestEmitHelper(assignHelper); return factory2.createCallExpression(getUnscopedHelperName("__assign"), undefined, attributesSegments); } function createAwaitHelper(expression) { context.requestEmitHelper(awaitHelper); return factory2.createCallExpression(getUnscopedHelperName("__await"), undefined, [expression]); } function createAsyncGeneratorHelper(generatorFunc, hasLexicalThis) { context.requestEmitHelper(awaitHelper); context.requestEmitHelper(asyncGeneratorHelper); (generatorFunc.emitNode || (generatorFunc.emitNode = {})).flags |= 524288 | 1048576; return factory2.createCallExpression(getUnscopedHelperName("__asyncGenerator"), undefined, [ hasLexicalThis ? factory2.createThis() : factory2.createVoidZero(), factory2.createIdentifier("arguments"), generatorFunc ]); } function createAsyncDelegatorHelper(expression) { context.requestEmitHelper(awaitHelper); context.requestEmitHelper(asyncDelegator); return factory2.createCallExpression(getUnscopedHelperName("__asyncDelegator"), undefined, [expression]); } function createAsyncValuesHelper(expression) { context.requestEmitHelper(asyncValues); return factory2.createCallExpression(getUnscopedHelperName("__asyncValues"), undefined, [expression]); } function createRestHelper(value, elements, computedTempVariables, location) { context.requestEmitHelper(restHelper); const propertyNames = []; let computedTempVariableOffset = 0; for (let i = 0;i < elements.length - 1; i++) { const propertyName = getPropertyNameOfBindingOrAssignmentElement(elements[i]); if (propertyName) { if (isComputedPropertyName(propertyName)) { Debug.assertIsDefined(computedTempVariables, "Encountered computed property name but 'computedTempVariables' argument was not provided."); const temp = computedTempVariables[computedTempVariableOffset]; computedTempVariableOffset++; propertyNames.push(factory2.createConditionalExpression(factory2.createTypeCheck(temp, "symbol"), undefined, temp, undefined, factory2.createAdd(temp, factory2.createStringLiteral("")))); } else { propertyNames.push(factory2.createStringLiteralFromNode(propertyName)); } } } return factory2.createCallExpression(getUnscopedHelperName("__rest"), undefined, [ value, setTextRange(factory2.createArrayLiteralExpression(propertyNames), location) ]); } function createAwaiterHelper(hasLexicalThis, argumentsExpression, promiseConstructor, parameters, body) { context.requestEmitHelper(awaiterHelper); const generatorFunc = factory2.createFunctionExpression(undefined, factory2.createToken(42), undefined, undefined, parameters ?? [], undefined, body); (generatorFunc.emitNode || (generatorFunc.emitNode = {})).flags |= 524288 | 1048576; return factory2.createCallExpression(getUnscopedHelperName("__awaiter"), undefined, [ hasLexicalThis ? factory2.createThis() : factory2.createVoidZero(), argumentsExpression ?? factory2.createVoidZero(), promiseConstructor ? createExpressionFromEntityName(factory2, promiseConstructor) : factory2.createVoidZero(), generatorFunc ]); } function createExtendsHelper(name) { context.requestEmitHelper(extendsHelper); return factory2.createCallExpression(getUnscopedHelperName("__extends"), undefined, [name, factory2.createUniqueName("_super", 16 | 32)]); } function createTemplateObjectHelper(cooked, raw) { context.requestEmitHelper(templateObjectHelper); return factory2.createCallExpression(getUnscopedHelperName("__makeTemplateObject"), undefined, [cooked, raw]); } function createSpreadArrayHelper(to, from, packFrom) { context.requestEmitHelper(spreadArrayHelper); return factory2.createCallExpression(getUnscopedHelperName("__spreadArray"), undefined, [to, from, packFrom ? immutableTrue() : immutableFalse()]); } function createPropKeyHelper(expr) { context.requestEmitHelper(propKeyHelper); return factory2.createCallExpression(getUnscopedHelperName("__propKey"), undefined, [expr]); } function createSetFunctionNameHelper(f, name, prefix) { context.requestEmitHelper(setFunctionNameHelper); return context.factory.createCallExpression(getUnscopedHelperName("__setFunctionName"), undefined, prefix ? [f, name, context.factory.createStringLiteral(prefix)] : [f, name]); } function createValuesHelper(expression) { context.requestEmitHelper(valuesHelper); return factory2.createCallExpression(getUnscopedHelperName("__values"), undefined, [expression]); } function createReadHelper(iteratorRecord, count) { context.requestEmitHelper(readHelper); return factory2.createCallExpression(getUnscopedHelperName("__read"), undefined, count !== undefined ? [iteratorRecord, factory2.createNumericLiteral(count + "")] : [iteratorRecord]); } function createGeneratorHelper(body) { context.requestEmitHelper(generatorHelper); return factory2.createCallExpression(getUnscopedHelperName("__generator"), undefined, [factory2.createThis(), body]); } function createImportStarHelper(expression) { context.requestEmitHelper(importStarHelper); return factory2.createCallExpression(getUnscopedHelperName("__importStar"), undefined, [expression]); } function createImportStarCallbackHelper() { context.requestEmitHelper(importStarHelper); return getUnscopedHelperName("__importStar"); } function createImportDefaultHelper(expression) { context.requestEmitHelper(importDefaultHelper); return factory2.createCallExpression(getUnscopedHelperName("__importDefault"), undefined, [expression]); } function createExportStarHelper(moduleExpression, exportsExpression = factory2.createIdentifier("exports")) { context.requestEmitHelper(exportStarHelper); context.requestEmitHelper(createBindingHelper); return factory2.createCallExpression(getUnscopedHelperName("__exportStar"), undefined, [moduleExpression, exportsExpression]); } function createClassPrivateFieldGetHelper(receiver, state, kind, f) { context.requestEmitHelper(classPrivateFieldGetHelper); let args; if (!f) { args = [receiver, state, factory2.createStringLiteral(kind)]; } else { args = [receiver, state, factory2.createStringLiteral(kind), f]; } return factory2.createCallExpression(getUnscopedHelperName("__classPrivateFieldGet"), undefined, args); } function createClassPrivateFieldSetHelper(receiver, state, value, kind, f) { context.requestEmitHelper(classPrivateFieldSetHelper); let args; if (!f) { args = [receiver, state, value, factory2.createStringLiteral(kind)]; } else { args = [receiver, state, value, factory2.createStringLiteral(kind), f]; } return factory2.createCallExpression(getUnscopedHelperName("__classPrivateFieldSet"), undefined, args); } function createClassPrivateFieldInHelper(state, receiver) { context.requestEmitHelper(classPrivateFieldInHelper); return factory2.createCallExpression(getUnscopedHelperName("__classPrivateFieldIn"), undefined, [state, receiver]); } function createAddDisposableResourceHelper(envBinding, value, async) { context.requestEmitHelper(addDisposableResourceHelper); return factory2.createCallExpression(getUnscopedHelperName("__addDisposableResource"), undefined, [envBinding, value, async ? factory2.createTrue() : factory2.createFalse()]); } function createDisposeResourcesHelper(envBinding) { context.requestEmitHelper(disposeResourcesHelper); return factory2.createCallExpression(getUnscopedHelperName("__disposeResources"), undefined, [envBinding]); } function createRewriteRelativeImportExtensionsHelper(expression) { context.requestEmitHelper(rewriteRelativeImportExtensionsHelper); return factory2.createCallExpression(getUnscopedHelperName("__rewriteRelativeImportExtension"), undefined, context.getCompilerOptions().jsx === 1 ? [expression, factory2.createTrue()] : [expression]); } } function compareEmitHelpers(x, y) { if (x === y) return 0; if (x.priority === y.priority) return 0; if (x.priority === undefined) return 1; if (y.priority === undefined) return -1; return compareValues(x.priority, y.priority); } function helperString(input, ...args) { return (uniqueName) => { let result = ""; for (let i = 0;i < args.length; i++) { result += input[i]; result += uniqueName(args[i]); } result += input[input.length - 1]; return result; }; } var decorateHelper = { name: "typescript:decorate", importName: "__decorate", scoped: false, priority: 2, text: ` var __decorate = (this && this.__decorate) || function (decorators, target, key, desc) { var c = arguments.length, r = c < 3 ? target : desc === null ? desc = Object.getOwnPropertyDescriptor(target, key) : desc, d; if (typeof Reflect === "object" && typeof Reflect.decorate === "function") r = Reflect.decorate(decorators, target, key, desc); else for (var i = decorators.length - 1; i >= 0; i--) if (d = decorators[i]) r = (c < 3 ? d(r) : c > 3 ? d(target, key, r) : d(target, key)) || r; return c > 3 && r && Object.defineProperty(target, key, r), r; };` }; var metadataHelper = { name: "typescript:metadata", importName: "__metadata", scoped: false, priority: 3, text: ` var __metadata = (this && this.__metadata) || function (k, v) { if (typeof Reflect === "object" && typeof Reflect.metadata === "function") return Reflect.metadata(k, v); };` }; var paramHelper = { name: "typescript:param", importName: "__param", scoped: false, priority: 4, text: ` var __param = (this && this.__param) || function (paramIndex, decorator) { return function (target, key) { decorator(target, key, paramIndex); } };` }; var esDecorateHelper = { name: "typescript:esDecorate", importName: "__esDecorate", scoped: false, priority: 2, text: ` var __esDecorate = (this && this.__esDecorate) || function (ctor, descriptorIn, decorators, contextIn, initializers, extraInitializers) { function accept(f) { if (f !== void 0 && typeof f !== "function") throw new TypeError("Function expected"); return f; } var kind = contextIn.kind, key = kind === "getter" ? "get" : kind === "setter" ? "set" : "value"; var target = !descriptorIn && ctor ? contextIn["static"] ? ctor : ctor.prototype : null; var descriptor = descriptorIn || (target ? Object.getOwnPropertyDescriptor(target, contextIn.name) : {}); var _, done = false; for (var i = decorators.length - 1; i >= 0; i--) { var context = {}; for (var p in contextIn) context[p] = p === "access" ? {} : contextIn[p]; for (var p in contextIn.access) context.access[p] = contextIn.access[p]; context.addInitializer = function (f) { if (done) throw new TypeError("Cannot add initializers after decoration has completed"); extraInitializers.push(accept(f || null)); }; var result = (0, decorators[i])(kind === "accessor" ? { get: descriptor.get, set: descriptor.set } : descriptor[key], context); if (kind === "accessor") { if (result === void 0) continue; if (result === null || typeof result !== "object") throw new TypeError("Object expected"); if (_ = accept(result.get)) descriptor.get = _; if (_ = accept(result.set)) descriptor.set = _; if (_ = accept(result.init)) initializers.unshift(_); } else if (_ = accept(result)) { if (kind === "field") initializers.unshift(_); else descriptor[key] = _; } } if (target) Object.defineProperty(target, contextIn.name, descriptor); done = true; };` }; var runInitializersHelper = { name: "typescript:runInitializers", importName: "__runInitializers", scoped: false, priority: 2, text: ` var __runInitializers = (this && this.__runInitializers) || function (thisArg, initializers, value) { var useValue = arguments.length > 2; for (var i = 0; i < initializers.length; i++) { value = useValue ? initializers[i].call(thisArg, value) : initializers[i].call(thisArg); } return useValue ? value : void 0; };` }; var assignHelper = { name: "typescript:assign", importName: "__assign", scoped: false, priority: 1, text: ` var __assign = (this && this.__assign) || function () { __assign = Object.assign || function(t) { for (var s, i = 1, n = arguments.length; i < n; i++) { s = arguments[i]; for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p)) t[p] = s[p]; } return t; }; return __assign.apply(this, arguments); };` }; var awaitHelper = { name: "typescript:await", importName: "__await", scoped: false, text: ` var __await = (this && this.__await) || function (v) { return this instanceof __await ? (this.v = v, this) : new __await(v); }` }; var asyncGeneratorHelper = { name: "typescript:asyncGenerator", importName: "__asyncGenerator", scoped: false, dependencies: [awaitHelper], text: ` var __asyncGenerator = (this && this.__asyncGenerator) || function (thisArg, _arguments, generator) { if (!Symbol.asyncIterator) throw new TypeError("Symbol.asyncIterator is not defined."); var g = generator.apply(thisArg, _arguments || []), i, q = []; return i = Object.create((typeof AsyncIterator === "function" ? AsyncIterator : Object).prototype), verb("next"), verb("throw"), verb("return", awaitReturn), i[Symbol.asyncIterator] = function () { return this; }, i; function awaitReturn(f) { return function (v) { return Promise.resolve(v).then(f, reject); }; } function verb(n, f) { if (g[n]) { i[n] = function (v) { return new Promise(function (a, b) { q.push([n, v, a, b]) > 1 || resume(n, v); }); }; if (f) i[n] = f(i[n]); } } function resume(n, v) { try { step(g[n](v)); } catch (e) { settle(q[0][3], e); } } function step(r) { r.value instanceof __await ? Promise.resolve(r.value.v).then(fulfill, reject) : settle(q[0][2], r); } function fulfill(value) { resume("next", value); } function reject(value) { resume("throw", value); } function settle(f, v) { if (f(v), q.shift(), q.length) resume(q[0][0], q[0][1]); } };` }; var asyncDelegator = { name: "typescript:asyncDelegator", importName: "__asyncDelegator", scoped: false, dependencies: [awaitHelper], text: ` var __asyncDelegator = (this && this.__asyncDelegator) || function (o) { var i, p; return i = {}, verb("next"), verb("throw", function (e) { throw e; }), verb("return"), i[Symbol.iterator] = function () { return this; }, i; function verb(n, f) { i[n] = o[n] ? function (v) { return (p = !p) ? { value: __await(o[n](v)), done: false } : f ? f(v) : v; } : f; } };` }; var asyncValues = { name: "typescript:asyncValues", importName: "__asyncValues", scoped: false, text: ` var __asyncValues = (this && this.__asyncValues) || function (o) { if (!Symbol.asyncIterator) throw new TypeError("Symbol.asyncIterator is not defined."); var m = o[Symbol.asyncIterator], i; return m ? m.call(o) : (o = typeof __values === "function" ? __values(o) : o[Symbol.iterator](), i = {}, verb("next"), verb("throw"), verb("return"), i[Symbol.asyncIterator] = function () { return this; }, i); function verb(n) { i[n] = o[n] && function (v) { return new Promise(function (resolve, reject) { v = o[n](v), settle(resolve, reject, v.done, v.value); }); }; } function settle(resolve, reject, d, v) { Promise.resolve(v).then(function(v) { resolve({ value: v, done: d }); }, reject); } };` }; var restHelper = { name: "typescript:rest", importName: "__rest", scoped: false, text: ` var __rest = (this && this.__rest) || function (s, e) { var t = {}; for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p) && e.indexOf(p) < 0) t[p] = s[p]; if (s != null && typeof Object.getOwnPropertySymbols === "function") for (var i = 0, p = Object.getOwnPropertySymbols(s); i < p.length; i++) { if (e.indexOf(p[i]) < 0 && Object.prototype.propertyIsEnumerable.call(s, p[i])) t[p[i]] = s[p[i]]; } return t; };` }; var awaiterHelper = { name: "typescript:awaiter", importName: "__awaiter", scoped: false, priority: 5, text: ` var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); };` }; var extendsHelper = { name: "typescript:extends", importName: "__extends", scoped: false, priority: 0, text: ` var __extends = (this && this.__extends) || (function () { var extendStatics = function (d, b) { extendStatics = Object.setPrototypeOf || ({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) || function (d, b) { for (var p in b) if (Object.prototype.hasOwnProperty.call(b, p)) d[p] = b[p]; }; return extendStatics(d, b); }; return function (d, b) { if (typeof b !== "function" && b !== null) throw new TypeError("Class extends value " + String(b) + " is not a constructor or null"); extendStatics(d, b); function __() { this.constructor = d; } d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __()); }; })();` }; var templateObjectHelper = { name: "typescript:makeTemplateObject", importName: "__makeTemplateObject", scoped: false, priority: 0, text: ` var __makeTemplateObject = (this && this.__makeTemplateObject) || function (cooked, raw) { if (Object.defineProperty) { Object.defineProperty(cooked, "raw", { value: raw }); } else { cooked.raw = raw; } return cooked; };` }; var readHelper = { name: "typescript:read", importName: "__read", scoped: false, text: ` var __read = (this && this.__read) || function (o, n) { var m = typeof Symbol === "function" && o[Symbol.iterator]; if (!m) return o; var i = m.call(o), r, ar = [], e; try { while ((n === void 0 || n-- > 0) && !(r = i.next()).done) ar.push(r.value); } catch (error) { e = { error: error }; } finally { try { if (r && !r.done && (m = i["return"])) m.call(i); } finally { if (e) throw e.error; } } return ar; };` }; var spreadArrayHelper = { name: "typescript:spreadArray", importName: "__spreadArray", scoped: false, text: ` var __spreadArray = (this && this.__spreadArray) || function (to, from, pack) { if (pack || arguments.length === 2) for (var i = 0, l = from.length, ar; i < l; i++) { if (ar || !(i in from)) { if (!ar) ar = Array.prototype.slice.call(from, 0, i); ar[i] = from[i]; } } return to.concat(ar || Array.prototype.slice.call(from)); };` }; var propKeyHelper = { name: "typescript:propKey", importName: "__propKey", scoped: false, text: ` var __propKey = (this && this.__propKey) || function (x) { return typeof x === "symbol" ? x : "".concat(x); };` }; var setFunctionNameHelper = { name: "typescript:setFunctionName", importName: "__setFunctionName", scoped: false, text: ` var __setFunctionName = (this && this.__setFunctionName) || function (f, name, prefix) { if (typeof name === "symbol") name = name.description ? "[".concat(name.description, "]") : ""; return Object.defineProperty(f, "name", { configurable: true, value: prefix ? "".concat(prefix, " ", name) : name }); };` }; var valuesHelper = { name: "typescript:values", importName: "__values", scoped: false, text: ` var __values = (this && this.__values) || function(o) { var s = typeof Symbol === "function" && Symbol.iterator, m = s && o[s], i = 0; if (m) return m.call(o); if (o && typeof o.length === "number") return { next: function () { if (o && i >= o.length) o = void 0; return { value: o && o[i++], done: !o }; } }; throw new TypeError(s ? "Object is not iterable." : "Symbol.iterator is not defined."); };` }; var generatorHelper = { name: "typescript:generator", importName: "__generator", scoped: false, priority: 6, text: ` var __generator = (this && this.__generator) || function (thisArg, body) { var _ = { label: 0, sent: function() { if (t[0] & 1) throw t[1]; return t[1]; }, trys: [], ops: [] }, f, y, t, g = Object.create((typeof Iterator === "function" ? Iterator : Object).prototype); return g.next = verb(0), g["throw"] = verb(1), g["return"] = verb(2), typeof Symbol === "function" && (g[Symbol.iterator] = function() { return this; }), g; function verb(n) { return function (v) { return step([n, v]); }; } function step(op) { if (f) throw new TypeError("Generator is already executing."); while (g && (g = 0, op[0] && (_ = 0)), _) try { if (f = 1, y && (t = op[0] & 2 ? y["return"] : op[0] ? y["throw"] || ((t = y["return"]) && t.call(y), 0) : y.next) && !(t = t.call(y, op[1])).done) return t; if (y = 0, t) op = [op[0] & 2, t.value]; switch (op[0]) { case 0: case 1: t = op; break; case 4: _.label++; return { value: op[1], done: false }; case 5: _.label++; y = op[1]; op = [0]; continue; case 7: op = _.ops.pop(); _.trys.pop(); continue; default: if (!(t = _.trys, t = t.length > 0 && t[t.length - 1]) && (op[0] === 6 || op[0] === 2)) { _ = 0; continue; } if (op[0] === 3 && (!t || (op[1] > t[0] && op[1] < t[3]))) { _.label = op[1]; break; } if (op[0] === 6 && _.label < t[1]) { _.label = t[1]; t = op; break; } if (t && _.label < t[2]) { _.label = t[2]; _.ops.push(op); break; } if (t[2]) _.ops.pop(); _.trys.pop(); continue; } op = body.call(thisArg, _); } catch (e) { op = [6, e]; y = 0; } finally { f = t = 0; } if (op[0] & 5) throw op[1]; return { value: op[0] ? op[1] : void 0, done: true }; } };` }; var createBindingHelper = { name: "typescript:commonjscreatebinding", importName: "__createBinding", scoped: false, priority: 1, text: ` var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; }));` }; var setModuleDefaultHelper = { name: "typescript:commonjscreatevalue", importName: "__setModuleDefault", scoped: false, priority: 1, text: ` var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; });` }; var importStarHelper = { name: "typescript:commonjsimportstar", importName: "__importStar", scoped: false, dependencies: [createBindingHelper, setModuleDefaultHelper], priority: 2, text: ` var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })();` }; var importDefaultHelper = { name: "typescript:commonjsimportdefault", importName: "__importDefault", scoped: false, text: ` var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; };` }; var exportStarHelper = { name: "typescript:export-star", importName: "__exportStar", scoped: false, dependencies: [createBindingHelper], priority: 2, text: ` var __exportStar = (this && this.__exportStar) || function(m, exports) { for (var p in m) if (p !== "default" && !Object.prototype.hasOwnProperty.call(exports, p)) __createBinding(exports, m, p); };` }; var classPrivateFieldGetHelper = { name: "typescript:classPrivateFieldGet", importName: "__classPrivateFieldGet", scoped: false, text: ` var __classPrivateFieldGet = (this && this.__classPrivateFieldGet) || function (receiver, state, kind, f) { if (kind === "a" && !f) throw new TypeError("Private accessor was defined without a getter"); if (typeof state === "function" ? receiver !== state || !f : !state.has(receiver)) throw new TypeError("Cannot read private member from an object whose class did not declare it"); return kind === "m" ? f : kind === "a" ? f.call(receiver) : f ? f.value : state.get(receiver); };` }; var classPrivateFieldSetHelper = { name: "typescript:classPrivateFieldSet", importName: "__classPrivateFieldSet", scoped: false, text: ` var __classPrivateFieldSet = (this && this.__classPrivateFieldSet) || function (receiver, state, value, kind, f) { if (kind === "m") throw new TypeError("Private method is not writable"); if (kind === "a" && !f) throw new TypeError("Private accessor was defined without a setter"); if (typeof state === "function" ? receiver !== state || !f : !state.has(receiver)) throw new TypeError("Cannot write private member to an object whose class did not declare it"); return (kind === "a" ? f.call(receiver, value) : f ? f.value = value : state.set(receiver, value)), value; };` }; var classPrivateFieldInHelper = { name: "typescript:classPrivateFieldIn", importName: "__classPrivateFieldIn", scoped: false, text: ` var __classPrivateFieldIn = (this && this.__classPrivateFieldIn) || function(state, receiver) { if (receiver === null || (typeof receiver !== "object" && typeof receiver !== "function")) throw new TypeError("Cannot use 'in' operator on non-object"); return typeof state === "function" ? receiver === state : state.has(receiver); };` }; var addDisposableResourceHelper = { name: "typescript:addDisposableResource", importName: "__addDisposableResource", scoped: false, text: ` var __addDisposableResource = (this && this.__addDisposableResource) || function (env, value, async) { if (value !== null && value !== void 0) { if (typeof value !== "object" && typeof value !== "function") throw new TypeError("Object expected."); var dispose, inner; if (async) { if (!Symbol.asyncDispose) throw new TypeError("Symbol.asyncDispose is not defined."); dispose = value[Symbol.asyncDispose]; } if (dispose === void 0) { if (!Symbol.dispose) throw new TypeError("Symbol.dispose is not defined."); dispose = value[Symbol.dispose]; if (async) inner = dispose; } if (typeof dispose !== "function") throw new TypeError("Object not disposable."); if (inner) dispose = function() { try { inner.call(this); } catch (e) { return Promise.reject(e); } }; env.stack.push({ value: value, dispose: dispose, async: async }); } else if (async) { env.stack.push({ async: true }); } return value; };` }; var disposeResourcesHelper = { name: "typescript:disposeResources", importName: "__disposeResources", scoped: false, text: ` var __disposeResources = (this && this.__disposeResources) || (function (SuppressedError) { return function (env) { function fail(e) { env.error = env.hasError ? new SuppressedError(e, env.error, "An error was suppressed during disposal.") : e; env.hasError = true; } var r, s = 0; function next() { while (r = env.stack.pop()) { try { if (!r.async && s === 1) return s = 0, env.stack.push(r), Promise.resolve().then(next); if (r.dispose) { var result = r.dispose.call(r.value); if (r.async) return s |= 2, Promise.resolve(result).then(next, function(e) { fail(e); return next(); }); } else s |= 1; } catch (e) { fail(e); } } if (s === 1) return env.hasError ? Promise.reject(env.error) : Promise.resolve(); if (env.hasError) throw env.error; } return next(); }; })(typeof SuppressedError === "function" ? SuppressedError : function (error, suppressed, message) { var e = new Error(message); return e.name = "SuppressedError", e.error = error, e.suppressed = suppressed, e; });` }; var rewriteRelativeImportExtensionsHelper = { name: "typescript:rewriteRelativeImportExtensions", importName: "__rewriteRelativeImportExtension", scoped: false, text: ` var __rewriteRelativeImportExtension = (this && this.__rewriteRelativeImportExtension) || function (path, preserveJsx) { if (typeof path === "string" && /^\\.\\.?\\//.test(path)) { return path.replace(/\\.(tsx)$|((?:\\.d)?)((?:\\.[^./]+?)?)\\.([cm]?)ts$/i, function (m, tsx, d, ext, cm) { return tsx ? preserveJsx ? ".jsx" : ".js" : d && (!ext || !cm) ? m : (d + ext + "." + cm.toLowerCase() + "js"); }); } return path; };` }; var asyncSuperHelper = { name: "typescript:async-super", scoped: true, text: helperString` const ${"_superIndex"} = name => super[name];` }; var advancedAsyncSuperHelper = { name: "typescript:advanced-async-super", scoped: true, text: helperString` const ${"_superIndex"} = (function (geti, seti) { const cache = Object.create(null); return name => cache[name] || (cache[name] = { get value() { return geti(name); }, set value(v) { seti(name, v); } }); })(name => super[name], (name, value) => super[name] = value);` }; function isCallToHelper(firstSegment, helperName) { return isCallExpression(firstSegment) && isIdentifier(firstSegment.expression) && (getEmitFlags(firstSegment.expression) & 8192) !== 0 && firstSegment.expression.escapedText === helperName; } function isNumericLiteral(node) { return node.kind === 9; } function isBigIntLiteral(node) { return node.kind === 10; } function isStringLiteral(node) { return node.kind === 11; } function isJsxText(node) { return node.kind === 12; } function isRegularExpressionLiteral(node) { return node.kind === 14; } function isNoSubstitutionTemplateLiteral(node) { return node.kind === 15; } function isTemplateHead(node) { return node.kind === 16; } function isTemplateMiddle(node) { return node.kind === 17; } function isTemplateTail(node) { return node.kind === 18; } function isDotDotDotToken(node) { return node.kind === 26; } function isCommaToken(node) { return node.kind === 28; } function isPlusToken(node) { return node.kind === 40; } function isMinusToken(node) { return node.kind === 41; } function isAsteriskToken(node) { return node.kind === 42; } function isExclamationToken(node) { return node.kind === 54; } function isQuestionToken(node) { return node.kind === 58; } function isColonToken(node) { return node.kind === 59; } function isQuestionDotToken(node) { return node.kind === 29; } function isEqualsGreaterThanToken(node) { return node.kind === 39; } function isIdentifier(node) { return node.kind === 80; } function isPrivateIdentifier(node) { return node.kind === 81; } function isExportModifier(node) { return node.kind === 95; } function isDefaultModifier(node) { return node.kind === 90; } function isAsyncModifier(node) { return node.kind === 134; } function isAssertsKeyword(node) { return node.kind === 131; } function isAwaitKeyword(node) { return node.kind === 135; } function isReadonlyKeyword(node) { return node.kind === 148; } function isStaticModifier(node) { return node.kind === 126; } function isAbstractModifier(node) { return node.kind === 128; } function isOverrideModifier(node) { return node.kind === 164; } function isAccessorModifier(node) { return node.kind === 129; } function isSuperKeyword(node) { return node.kind === 108; } function isImportKeyword(node) { return node.kind === 102; } function isCaseKeyword(node) { return node.kind === 84; } function isQualifiedName(node) { return node.kind === 167; } function isComputedPropertyName(node) { return node.kind === 168; } function isTypeParameterDeclaration(node) { return node.kind === 169; } function isParameter(node) { return node.kind === 170; } function isDecorator(node) { return node.kind === 171; } function isPropertySignature(node) { return node.kind === 172; } function isPropertyDeclaration(node) { return node.kind === 173; } function isMethodSignature(node) { return node.kind === 174; } function isMethodDeclaration(node) { return node.kind === 175; } function isClassStaticBlockDeclaration(node) { return node.kind === 176; } function isConstructorDeclaration(node) { return node.kind === 177; } function isGetAccessorDeclaration(node) { return node.kind === 178; } function isSetAccessorDeclaration(node) { return node.kind === 179; } function isCallSignatureDeclaration(node) { return node.kind === 180; } function isConstructSignatureDeclaration(node) { return node.kind === 181; } function isIndexSignatureDeclaration(node) { return node.kind === 182; } function isTypePredicateNode(node) { return node.kind === 183; } function isTypeReferenceNode(node) { return node.kind === 184; } function isFunctionTypeNode(node) { return node.kind === 185; } function isConstructorTypeNode(node) { return node.kind === 186; } function isTypeQueryNode(node) { return node.kind === 187; } function isTypeLiteralNode(node) { return node.kind === 188; } function isArrayTypeNode(node) { return node.kind === 189; } function isTupleTypeNode(node) { return node.kind === 190; } function isNamedTupleMember(node) { return node.kind === 203; } function isOptionalTypeNode(node) { return node.kind === 191; } function isRestTypeNode(node) { return node.kind === 192; } function isUnionTypeNode(node) { return node.kind === 193; } function isIntersectionTypeNode(node) { return node.kind === 194; } function isConditionalTypeNode(node) { return node.kind === 195; } function isInferTypeNode(node) { return node.kind === 196; } function isParenthesizedTypeNode(node) { return node.kind === 197; } function isThisTypeNode(node) { return node.kind === 198; } function isTypeOperatorNode(node) { return node.kind === 199; } function isIndexedAccessTypeNode(node) { return node.kind === 200; } function isMappedTypeNode(node) { return node.kind === 201; } function isLiteralTypeNode(node) { return node.kind === 202; } function isImportTypeNode(node) { return node.kind === 206; } function isTemplateLiteralTypeSpan(node) { return node.kind === 205; } function isTemplateLiteralTypeNode(node) { return node.kind === 204; } function isObjectBindingPattern(node) { return node.kind === 207; } function isArrayBindingPattern(node) { return node.kind === 208; } function isBindingElement(node) { return node.kind === 209; } function isArrayLiteralExpression(node) { return node.kind === 210; } function isObjectLiteralExpression(node) { return node.kind === 211; } function isPropertyAccessExpression(node) { return node.kind === 212; } function isElementAccessExpression(node) { return node.kind === 213; } function isCallExpression(node) { return node.kind === 214; } function isNewExpression(node) { return node.kind === 215; } function isTaggedTemplateExpression(node) { return node.kind === 216; } function isTypeAssertionExpression(node) { return node.kind === 217; } function isParenthesizedExpression(node) { return node.kind === 218; } function isFunctionExpression(node) { return node.kind === 219; } function isArrowFunction(node) { return node.kind === 220; } function isDeleteExpression(node) { return node.kind === 221; } function isTypeOfExpression(node) { return node.kind === 222; } function isVoidExpression(node) { return node.kind === 223; } function isAwaitExpression(node) { return node.kind === 224; } function isPrefixUnaryExpression(node) { return node.kind === 225; } function isPostfixUnaryExpression(node) { return node.kind === 226; } function isBinaryExpression(node) { return node.kind === 227; } function isConditionalExpression(node) { return node.kind === 228; } function isTemplateExpression(node) { return node.kind === 229; } function isYieldExpression(node) { return node.kind === 230; } function isSpreadElement(node) { return node.kind === 231; } function isClassExpression(node) { return node.kind === 232; } function isOmittedExpression(node) { return node.kind === 233; } function isExpressionWithTypeArguments(node) { return node.kind === 234; } function isAsExpression(node) { return node.kind === 235; } function isSatisfiesExpression(node) { return node.kind === 239; } function isNonNullExpression(node) { return node.kind === 236; } function isMetaProperty(node) { return node.kind === 237; } function isSyntheticExpression(node) { return node.kind === 238; } function isPartiallyEmittedExpression(node) { return node.kind === 356; } function isCommaListExpression(node) { return node.kind === 357; } function isTemplateSpan(node) { return node.kind === 240; } function isSemicolonClassElement(node) { return node.kind === 241; } function isBlock(node) { return node.kind === 242; } function isVariableStatement(node) { return node.kind === 244; } function isEmptyStatement(node) { return node.kind === 243; } function isExpressionStatement(node) { return node.kind === 245; } function isIfStatement(node) { return node.kind === 246; } function isDoStatement(node) { return node.kind === 247; } function isWhileStatement(node) { return node.kind === 248; } function isForStatement(node) { return node.kind === 249; } function isForInStatement(node) { return node.kind === 250; } function isForOfStatement(node) { return node.kind === 251; } function isContinueStatement(node) { return node.kind === 252; } function isBreakStatement(node) { return node.kind === 253; } function isReturnStatement(node) { return node.kind === 254; } function isWithStatement(node) { return node.kind === 255; } function isSwitchStatement(node) { return node.kind === 256; } function isLabeledStatement(node) { return node.kind === 257; } function isThrowStatement(node) { return node.kind === 258; } function isTryStatement(node) { return node.kind === 259; } function isDebuggerStatement(node) { return node.kind === 260; } function isVariableDeclaration(node) { return node.kind === 261; } function isVariableDeclarationList(node) { return node.kind === 262; } function isFunctionDeclaration(node) { return node.kind === 263; } function isClassDeclaration(node) { return node.kind === 264; } function isInterfaceDeclaration(node) { return node.kind === 265; } function isTypeAliasDeclaration(node) { return node.kind === 266; } function isEnumDeclaration(node) { return node.kind === 267; } function isModuleDeclaration(node) { return node.kind === 268; } function isModuleBlock(node) { return node.kind === 269; } function isCaseBlock(node) { return node.kind === 270; } function isNamespaceExportDeclaration(node) { return node.kind === 271; } function isImportEqualsDeclaration(node) { return node.kind === 272; } function isImportDeclaration(node) { return node.kind === 273; } function isImportClause(node) { return node.kind === 274; } function isImportTypeAssertionContainer(node) { return node.kind === 303; } function isAssertClause(node) { return node.kind === 301; } function isAssertEntry(node) { return node.kind === 302; } function isImportAttributes(node) { return node.kind === 301; } function isImportAttribute(node) { return node.kind === 302; } function isNamespaceImport(node) { return node.kind === 275; } function isNamespaceExport(node) { return node.kind === 281; } function isNamedImports(node) { return node.kind === 276; } function isImportSpecifier(node) { return node.kind === 277; } function isExportAssignment(node) { return node.kind === 278; } function isExportDeclaration(node) { return node.kind === 279; } function isNamedExports(node) { return node.kind === 280; } function isExportSpecifier(node) { return node.kind === 282; } function isModuleExportName(node) { return node.kind === 80 || node.kind === 11; } function isMissingDeclaration(node) { return node.kind === 283; } function isNotEmittedStatement(node) { return node.kind === 354; } function isSyntheticReference(node) { return node.kind === 358; } function isExternalModuleReference(node) { return node.kind === 284; } function isJsxElement(node) { return node.kind === 285; } function isJsxSelfClosingElement(node) { return node.kind === 286; } function isJsxOpeningElement(node) { return node.kind === 287; } function isJsxClosingElement(node) { return node.kind === 288; } function isJsxFragment(node) { return node.kind === 289; } function isJsxOpeningFragment(node) { return node.kind === 290; } function isJsxClosingFragment(node) { return node.kind === 291; } function isJsxAttribute(node) { return node.kind === 292; } function isJsxAttributes(node) { return node.kind === 293; } function isJsxSpreadAttribute(node) { return node.kind === 294; } function isJsxExpression(node) { return node.kind === 295; } function isJsxNamespacedName(node) { return node.kind === 296; } function isCaseClause(node) { return node.kind === 297; } function isDefaultClause(node) { return node.kind === 298; } function isHeritageClause(node) { return node.kind === 299; } function isCatchClause(node) { return node.kind === 300; } function isPropertyAssignment(node) { return node.kind === 304; } function isShorthandPropertyAssignment(node) { return node.kind === 305; } function isSpreadAssignment(node) { return node.kind === 306; } function isEnumMember(node) { return node.kind === 307; } function isSourceFile(node) { return node.kind === 308; } function isBundle(node) { return node.kind === 309; } function isJSDocTypeExpression(node) { return node.kind === 310; } function isJSDocNameReference(node) { return node.kind === 311; } function isJSDocMemberName(node) { return node.kind === 312; } function isJSDocLink(node) { return node.kind === 325; } function isJSDocLinkCode(node) { return node.kind === 326; } function isJSDocLinkPlain(node) { return node.kind === 327; } function isJSDocAllType(node) { return node.kind === 313; } function isJSDocUnknownType(node) { return node.kind === 314; } function isJSDocNullableType(node) { return node.kind === 315; } function isJSDocNonNullableType(node) { return node.kind === 316; } function isJSDocOptionalType(node) { return node.kind === 317; } function isJSDocFunctionType(node) { return node.kind === 318; } function isJSDocVariadicType(node) { return node.kind === 319; } function isJSDocNamepathType(node) { return node.kind === 320; } function isJSDoc(node) { return node.kind === 321; } function isJSDocTypeLiteral(node) { return node.kind === 323; } function isJSDocSignature(node) { return node.kind === 324; } function isJSDocAugmentsTag(node) { return node.kind === 329; } function isJSDocAuthorTag(node) { return node.kind === 331; } function isJSDocClassTag(node) { return node.kind === 333; } function isJSDocCallbackTag(node) { return node.kind === 339; } function isJSDocPublicTag(node) { return node.kind === 334; } function isJSDocPrivateTag(node) { return node.kind === 335; } function isJSDocProtectedTag(node) { return node.kind === 336; } function isJSDocReadonlyTag(node) { return node.kind === 337; } function isJSDocOverrideTag(node) { return node.kind === 338; } function isJSDocOverloadTag(node) { return node.kind === 340; } function isJSDocDeprecatedTag(node) { return node.kind === 332; } function isJSDocSeeTag(node) { return node.kind === 348; } function isJSDocEnumTag(node) { return node.kind === 341; } function isJSDocParameterTag(node) { return node.kind === 342; } function isJSDocReturnTag(node) { return node.kind === 343; } function isJSDocThisTag(node) { return node.kind === 344; } function isJSDocTypeTag(node) { return node.kind === 345; } function isJSDocTemplateTag(node) { return node.kind === 346; } function isJSDocTypedefTag(node) { return node.kind === 347; } function isJSDocUnknownTag(node) { return node.kind === 328; } function isJSDocPropertyTag(node) { return node.kind === 349; } function isJSDocImplementsTag(node) { return node.kind === 330; } function isJSDocSatisfiesTag(node) { return node.kind === 351; } function isJSDocThrowsTag(node) { return node.kind === 350; } function isJSDocImportTag(node) { return node.kind === 352; } function isSyntaxList(n) { return n.kind === 353; } var sourceFileToNodeChildren = /* @__PURE__ */ new WeakMap; function getNodeChildren(node, sourceFile) { var _a; const kind = node.kind; if (!isNodeKind(kind)) { return emptyArray; } if (kind === 353) { return node._children; } return (_a = sourceFileToNodeChildren.get(sourceFile)) == null ? undefined : _a.get(node); } function setNodeChildren(node, sourceFile, children) { if (node.kind === 353) { Debug.fail("Should not need to re-set the children of a SyntaxList."); } let map2 = sourceFileToNodeChildren.get(sourceFile); if (map2 === undefined) { map2 = /* @__PURE__ */ new WeakMap; sourceFileToNodeChildren.set(sourceFile, map2); } map2.set(node, children); return children; } function unsetNodeChildren(node, origSourceFile) { var _a; if (node.kind === 353) { Debug.fail("Did not expect to unset the children of a SyntaxList."); } (_a = sourceFileToNodeChildren.get(origSourceFile)) == null || _a.delete(node); } function transferSourceFileChildren(sourceFile, targetSourceFile) { const map2 = sourceFileToNodeChildren.get(sourceFile); if (map2 !== undefined) { sourceFileToNodeChildren.delete(sourceFile); sourceFileToNodeChildren.set(targetSourceFile, map2); } } function createEmptyExports(factory2) { return factory2.createExportDeclaration(undefined, false, factory2.createNamedExports([]), undefined); } function createMemberAccessForPropertyName(factory2, target, memberName, location) { if (isComputedPropertyName(memberName)) { return setTextRange(factory2.createElementAccessExpression(target, memberName.expression), location); } else { const expression = setTextRange(isMemberName(memberName) ? factory2.createPropertyAccessExpression(target, memberName) : factory2.createElementAccessExpression(target, memberName), memberName); addEmitFlags(expression, 128); return expression; } } function createReactNamespace(reactNamespace, parent2) { const react = parseNodeFactory.createIdentifier(reactNamespace || "React"); setParent(react, getParseTreeNode(parent2)); return react; } function createJsxFactoryExpressionFromEntityName(factory2, jsxFactory, parent2) { if (isQualifiedName(jsxFactory)) { const left = createJsxFactoryExpressionFromEntityName(factory2, jsxFactory.left, parent2); const right = factory2.createIdentifier(idText(jsxFactory.right)); right.escapedText = jsxFactory.right.escapedText; return factory2.createPropertyAccessExpression(left, right); } else { return createReactNamespace(idText(jsxFactory), parent2); } } function createJsxFactoryExpression(factory2, jsxFactoryEntity, reactNamespace, parent2) { return jsxFactoryEntity ? createJsxFactoryExpressionFromEntityName(factory2, jsxFactoryEntity, parent2) : factory2.createPropertyAccessExpression(createReactNamespace(reactNamespace, parent2), "createElement"); } function createJsxFragmentFactoryExpression(factory2, jsxFragmentFactoryEntity, reactNamespace, parent2) { return jsxFragmentFactoryEntity ? createJsxFactoryExpressionFromEntityName(factory2, jsxFragmentFactoryEntity, parent2) : factory2.createPropertyAccessExpression(createReactNamespace(reactNamespace, parent2), "Fragment"); } function createExpressionForJsxElement(factory2, callee, tagName, props, children, location) { const argumentsList = [tagName]; if (props) { argumentsList.push(props); } if (children && children.length > 0) { if (!props) { argumentsList.push(factory2.createNull()); } if (children.length > 1) { for (const child of children) { startOnNewLine(child); argumentsList.push(child); } } else { argumentsList.push(children[0]); } } return setTextRange(factory2.createCallExpression(callee, undefined, argumentsList), location); } function createExpressionForJsxFragment(factory2, jsxFactoryEntity, jsxFragmentFactoryEntity, reactNamespace, children, parentElement, location) { const tagName = createJsxFragmentFactoryExpression(factory2, jsxFragmentFactoryEntity, reactNamespace, parentElement); const argumentsList = [tagName, factory2.createNull()]; if (children && children.length > 0) { if (children.length > 1) { for (const child of children) { startOnNewLine(child); argumentsList.push(child); } } else { argumentsList.push(children[0]); } } return setTextRange(factory2.createCallExpression(createJsxFactoryExpression(factory2, jsxFactoryEntity, reactNamespace, parentElement), undefined, argumentsList), location); } function createForOfBindingStatement(factory2, node, boundValue) { if (isVariableDeclarationList(node)) { const firstDeclaration = first(node.declarations); const updatedDeclaration = factory2.updateVariableDeclaration(firstDeclaration, firstDeclaration.name, undefined, undefined, boundValue); return setTextRange(factory2.createVariableStatement(undefined, factory2.updateVariableDeclarationList(node, [updatedDeclaration])), node); } else { const updatedExpression = setTextRange(factory2.createAssignment(node, boundValue), node); return setTextRange(factory2.createExpressionStatement(updatedExpression), node); } } function createExpressionFromEntityName(factory2, node) { if (isQualifiedName(node)) { const left = createExpressionFromEntityName(factory2, node.left); const right = setParent(setTextRange(factory2.cloneNode(node.right), node.right), node.right.parent); return setTextRange(factory2.createPropertyAccessExpression(left, right), node); } else { return setParent(setTextRange(factory2.cloneNode(node), node), node.parent); } } function createExpressionForPropertyName(factory2, memberName) { if (isIdentifier(memberName)) { return factory2.createStringLiteralFromNode(memberName); } else if (isComputedPropertyName(memberName)) { return setParent(setTextRange(factory2.cloneNode(memberName.expression), memberName.expression), memberName.expression.parent); } else { return setParent(setTextRange(factory2.cloneNode(memberName), memberName), memberName.parent); } } function createExpressionForAccessorDeclaration(factory2, properties, property, receiver, multiLine) { const { firstAccessor, getAccessor, setAccessor } = getAllAccessorDeclarations(properties, property); if (property === firstAccessor) { return setTextRange(factory2.createObjectDefinePropertyCall(receiver, createExpressionForPropertyName(factory2, property.name), factory2.createPropertyDescriptor({ enumerable: factory2.createFalse(), configurable: true, get: getAccessor && setTextRange(setOriginalNode(factory2.createFunctionExpression(getModifiers(getAccessor), undefined, undefined, undefined, getAccessor.parameters, undefined, getAccessor.body), getAccessor), getAccessor), set: setAccessor && setTextRange(setOriginalNode(factory2.createFunctionExpression(getModifiers(setAccessor), undefined, undefined, undefined, setAccessor.parameters, undefined, setAccessor.body), setAccessor), setAccessor) }, !multiLine)), firstAccessor); } return; } function createExpressionForPropertyAssignment(factory2, property, receiver) { return setOriginalNode(setTextRange(factory2.createAssignment(createMemberAccessForPropertyName(factory2, receiver, property.name, property.name), property.initializer), property), property); } function createExpressionForShorthandPropertyAssignment(factory2, property, receiver) { return setOriginalNode(setTextRange(factory2.createAssignment(createMemberAccessForPropertyName(factory2, receiver, property.name, property.name), factory2.cloneNode(property.name)), property), property); } function createExpressionForMethodDeclaration(factory2, method, receiver) { return setOriginalNode(setTextRange(factory2.createAssignment(createMemberAccessForPropertyName(factory2, receiver, method.name, method.name), setOriginalNode(setTextRange(factory2.createFunctionExpression(getModifiers(method), method.asteriskToken, undefined, undefined, method.parameters, undefined, method.body), method), method)), method), method); } function createExpressionForObjectLiteralElementLike(factory2, node, property, receiver) { if (property.name && isPrivateIdentifier(property.name)) { Debug.failBadSyntaxKind(property.name, "Private identifiers are not allowed in object literals."); } switch (property.kind) { case 178: case 179: return createExpressionForAccessorDeclaration(factory2, node.properties, property, receiver, !!node.multiLine); case 304: return createExpressionForPropertyAssignment(factory2, property, receiver); case 305: return createExpressionForShorthandPropertyAssignment(factory2, property, receiver); case 175: return createExpressionForMethodDeclaration(factory2, property, receiver); } } function expandPreOrPostfixIncrementOrDecrementExpression(factory2, node, expression, recordTempVariable, resultVariable) { const operator = node.operator; Debug.assert(operator === 46 || operator === 47, "Expected 'node' to be a pre- or post-increment or pre- or post-decrement expression"); const temp = factory2.createTempVariable(recordTempVariable); expression = factory2.createAssignment(temp, expression); setTextRange(expression, node.operand); let operation = isPrefixUnaryExpression(node) ? factory2.createPrefixUnaryExpression(operator, temp) : factory2.createPostfixUnaryExpression(temp, operator); setTextRange(operation, node); if (resultVariable) { operation = factory2.createAssignment(resultVariable, operation); setTextRange(operation, node); } expression = factory2.createComma(expression, operation); setTextRange(expression, node); if (isPostfixUnaryExpression(node)) { expression = factory2.createComma(expression, temp); setTextRange(expression, node); } return expression; } function isInternalName(node) { return (getEmitFlags(node) & 65536) !== 0; } function isLocalName(node) { return (getEmitFlags(node) & 32768) !== 0; } function isExportName(node) { return (getEmitFlags(node) & 16384) !== 0; } function isUseStrictPrologue(node) { return isStringLiteral(node.expression) && node.expression.text === "use strict"; } function findUseStrictPrologue(statements) { for (const statement of statements) { if (isPrologueDirective(statement)) { if (isUseStrictPrologue(statement)) { return statement; } } else { break; } } return; } function startsWithUseStrict(statements) { const firstStatement = firstOrUndefined(statements); return firstStatement !== undefined && isPrologueDirective(firstStatement) && isUseStrictPrologue(firstStatement); } function isCommaExpression(node) { return node.kind === 227 && node.operatorToken.kind === 28; } function isCommaSequence(node) { return isCommaExpression(node) || isCommaListExpression(node); } function isJSDocTypeAssertion(node) { return isParenthesizedExpression(node) && isInJSFile(node) && !!getJSDocTypeTag(node); } function getJSDocTypeAssertionType(node) { const type = getJSDocType(node); Debug.assertIsDefined(type); return type; } function isOuterExpression(node, kinds = 63) { switch (node.kind) { case 218: if (kinds & -2147483648 && isJSDocTypeAssertion(node)) { return false; } return (kinds & 1) !== 0; case 217: case 235: return (kinds & 2) !== 0; case 239: return (kinds & (2 | 32)) !== 0; case 234: return (kinds & 16) !== 0; case 236: return (kinds & 4) !== 0; case 356: return (kinds & 8) !== 0; } return false; } function skipOuterExpressions(node, kinds = 63) { while (isOuterExpression(node, kinds)) { node = node.expression; } return node; } function walkUpOuterExpressions(node, kinds = 63) { let parent2 = node.parent; while (isOuterExpression(parent2, kinds)) { parent2 = parent2.parent; Debug.assert(parent2); } return parent2; } function startOnNewLine(node) { return setStartsOnNewLine(node, true); } function getExternalHelpersModuleName(node) { const parseNode = getOriginalNode(node, isSourceFile); const emitNode = parseNode && parseNode.emitNode; return emitNode && emitNode.externalHelpersModuleName; } function hasRecordedExternalHelpers(sourceFile) { const parseNode = getOriginalNode(sourceFile, isSourceFile); const emitNode = parseNode && parseNode.emitNode; return !!emitNode && (!!emitNode.externalHelpersModuleName || !!emitNode.externalHelpers); } function createExternalHelpersImportDeclarationIfNeeded(nodeFactory, helperFactory, sourceFile, compilerOptions, hasExportStarsToExportValues, hasImportStar, hasImportDefault) { if (compilerOptions.importHelpers && isEffectiveExternalModule(sourceFile, compilerOptions)) { const moduleKind = getEmitModuleKind(compilerOptions); const impliedModuleKind = getImpliedNodeFormatForEmitWorker(sourceFile, compilerOptions); const helpers = getImportedHelpers(sourceFile); if (impliedModuleKind !== 1 && (moduleKind >= 5 && moduleKind <= 99 || impliedModuleKind === 99 || impliedModuleKind === undefined && moduleKind === 200)) { if (helpers) { const helperNames = []; for (const helper of helpers) { const importName = helper.importName; if (importName) { pushIfUnique(helperNames, importName); } } if (some(helperNames)) { helperNames.sort(compareStringsCaseSensitive); const namedBindings = nodeFactory.createNamedImports(map(helperNames, (name) => isFileLevelUniqueName(sourceFile, name) ? nodeFactory.createImportSpecifier(false, undefined, nodeFactory.createIdentifier(name)) : nodeFactory.createImportSpecifier(false, nodeFactory.createIdentifier(name), helperFactory.getUnscopedHelperName(name)))); const parseNode = getOriginalNode(sourceFile, isSourceFile); const emitNode = getOrCreateEmitNode(parseNode); emitNode.externalHelpers = true; const externalHelpersImportDeclaration = nodeFactory.createImportDeclaration(undefined, nodeFactory.createImportClause(undefined, undefined, namedBindings), nodeFactory.createStringLiteral(externalHelpersModuleNameText), undefined); addInternalEmitFlags(externalHelpersImportDeclaration, 2); return externalHelpersImportDeclaration; } } } else { const externalHelpersModuleName = getOrCreateExternalHelpersModuleNameIfNeeded(nodeFactory, sourceFile, compilerOptions, helpers, hasExportStarsToExportValues, hasImportStar || hasImportDefault); if (externalHelpersModuleName) { const externalHelpersImportDeclaration = nodeFactory.createImportEqualsDeclaration(undefined, false, externalHelpersModuleName, nodeFactory.createExternalModuleReference(nodeFactory.createStringLiteral(externalHelpersModuleNameText))); addInternalEmitFlags(externalHelpersImportDeclaration, 2); return externalHelpersImportDeclaration; } } } } function getImportedHelpers(sourceFile) { return filter(getEmitHelpers(sourceFile), (helper) => !helper.scoped); } function getOrCreateExternalHelpersModuleNameIfNeeded(factory2, node, compilerOptions, helpers, hasExportStarsToExportValues, hasImportStarOrImportDefault) { const externalHelpersModuleName = getExternalHelpersModuleName(node); if (externalHelpersModuleName) { return externalHelpersModuleName; } const create = some(helpers) || (hasExportStarsToExportValues || getESModuleInterop(compilerOptions) && hasImportStarOrImportDefault) && getEmitModuleFormatOfFileWorker(node, compilerOptions) < 4; if (create) { const parseNode = getOriginalNode(node, isSourceFile); const emitNode = getOrCreateEmitNode(parseNode); return emitNode.externalHelpersModuleName || (emitNode.externalHelpersModuleName = factory2.createUniqueName(externalHelpersModuleNameText)); } } function getLocalNameForExternalImport(factory2, node, sourceFile) { const namespaceDeclaration = getNamespaceDeclarationNode(node); if (namespaceDeclaration && !isDefaultImport(node) && !isExportNamespaceAsDefaultDeclaration(node)) { const name = namespaceDeclaration.name; if (name.kind === 11) { return factory2.getGeneratedNameForNode(node); } return isGeneratedIdentifier(name) ? name : factory2.createIdentifier(getSourceTextOfNodeFromSourceFile(sourceFile, name) || idText(name)); } if (node.kind === 273 && node.importClause) { return factory2.getGeneratedNameForNode(node); } if (node.kind === 279 && node.moduleSpecifier) { return factory2.getGeneratedNameForNode(node); } return; } function getExternalModuleNameLiteral(factory2, importNode, sourceFile, host, resolver, compilerOptions) { const moduleName = getExternalModuleName(importNode); if (moduleName && isStringLiteral(moduleName)) { return tryGetModuleNameFromDeclaration(importNode, host, factory2, resolver, compilerOptions) || tryRenameExternalModule(factory2, moduleName, sourceFile) || factory2.cloneNode(moduleName); } return; } function tryRenameExternalModule(factory2, moduleName, sourceFile) { const rename = sourceFile.renamedDependencies && sourceFile.renamedDependencies.get(moduleName.text); return rename ? factory2.createStringLiteral(rename) : undefined; } function tryGetModuleNameFromFile(factory2, file, host, options) { if (!file) { return; } if (file.moduleName) { return factory2.createStringLiteral(file.moduleName); } if (!file.isDeclarationFile && options.outFile) { return factory2.createStringLiteral(getExternalModuleNameFromPath(host, file.fileName)); } return; } function tryGetModuleNameFromDeclaration(declaration, host, factory2, resolver, compilerOptions) { return tryGetModuleNameFromFile(factory2, resolver.getExternalModuleFileFromDeclaration(declaration), host, compilerOptions); } function getInitializerOfBindingOrAssignmentElement(bindingElement) { if (isDeclarationBindingElement(bindingElement)) { return bindingElement.initializer; } if (isPropertyAssignment(bindingElement)) { const initializer = bindingElement.initializer; return isAssignmentExpression(initializer, true) ? initializer.right : undefined; } if (isShorthandPropertyAssignment(bindingElement)) { return bindingElement.objectAssignmentInitializer; } if (isAssignmentExpression(bindingElement, true)) { return bindingElement.right; } if (isSpreadElement(bindingElement)) { return getInitializerOfBindingOrAssignmentElement(bindingElement.expression); } } function getTargetOfBindingOrAssignmentElement(bindingElement) { if (isDeclarationBindingElement(bindingElement)) { return bindingElement.name; } if (isObjectLiteralElementLike(bindingElement)) { switch (bindingElement.kind) { case 304: return getTargetOfBindingOrAssignmentElement(bindingElement.initializer); case 305: return bindingElement.name; case 306: return getTargetOfBindingOrAssignmentElement(bindingElement.expression); } return; } if (isAssignmentExpression(bindingElement, true)) { return getTargetOfBindingOrAssignmentElement(bindingElement.left); } if (isSpreadElement(bindingElement)) { return getTargetOfBindingOrAssignmentElement(bindingElement.expression); } return bindingElement; } function getRestIndicatorOfBindingOrAssignmentElement(bindingElement) { switch (bindingElement.kind) { case 170: case 209: return bindingElement.dotDotDotToken; case 231: case 306: return bindingElement; } return; } function getPropertyNameOfBindingOrAssignmentElement(bindingElement) { const propertyName = tryGetPropertyNameOfBindingOrAssignmentElement(bindingElement); Debug.assert(!!propertyName || isSpreadAssignment(bindingElement), "Invalid property name for binding element."); return propertyName; } function tryGetPropertyNameOfBindingOrAssignmentElement(bindingElement) { switch (bindingElement.kind) { case 209: if (bindingElement.propertyName) { const propertyName = bindingElement.propertyName; if (isPrivateIdentifier(propertyName)) { return Debug.failBadSyntaxKind(propertyName); } return isComputedPropertyName(propertyName) && isStringOrNumericLiteral(propertyName.expression) ? propertyName.expression : propertyName; } break; case 304: if (bindingElement.name) { const propertyName = bindingElement.name; if (isPrivateIdentifier(propertyName)) { return Debug.failBadSyntaxKind(propertyName); } return isComputedPropertyName(propertyName) && isStringOrNumericLiteral(propertyName.expression) ? propertyName.expression : propertyName; } break; case 306: if (bindingElement.name && isPrivateIdentifier(bindingElement.name)) { return Debug.failBadSyntaxKind(bindingElement.name); } return bindingElement.name; } const target = getTargetOfBindingOrAssignmentElement(bindingElement); if (target && isPropertyName(target)) { return target; } } function isStringOrNumericLiteral(node) { const kind = node.kind; return kind === 11 || kind === 9; } function getElementsOfBindingOrAssignmentPattern(name) { switch (name.kind) { case 207: case 208: case 210: return name.elements; case 211: return name.properties; } } function getJSDocTypeAliasName(fullName) { if (fullName) { let rightNode = fullName; while (true) { if (isIdentifier(rightNode) || !rightNode.body) { return isIdentifier(rightNode) ? rightNode : rightNode.name; } rightNode = rightNode.body; } } } function canHaveIllegalType(node) { const kind = node.kind; return kind === 177 || kind === 179; } function canHaveIllegalTypeParameters(node) { const kind = node.kind; return kind === 177 || kind === 178 || kind === 179; } function canHaveIllegalDecorators(node) { const kind = node.kind; return kind === 304 || kind === 305 || kind === 263 || kind === 177 || kind === 182 || kind === 176 || kind === 283 || kind === 244 || kind === 265 || kind === 266 || kind === 267 || kind === 268 || kind === 272 || kind === 273 || kind === 271 || kind === 279 || kind === 278; } function canHaveIllegalModifiers(node) { const kind = node.kind; return kind === 176 || kind === 304 || kind === 305 || kind === 283 || kind === 271; } function isQuestionOrExclamationToken(node) { return isQuestionToken(node) || isExclamationToken(node); } function isIdentifierOrThisTypeNode(node) { return isIdentifier(node) || isThisTypeNode(node); } function isReadonlyKeywordOrPlusOrMinusToken(node) { return isReadonlyKeyword(node) || isPlusToken(node) || isMinusToken(node); } function isQuestionOrPlusOrMinusToken(node) { return isQuestionToken(node) || isPlusToken(node) || isMinusToken(node); } function isModuleName(node) { return isIdentifier(node) || isStringLiteral(node); } function isExponentiationOperator(kind) { return kind === 43; } function isMultiplicativeOperator(kind) { return kind === 42 || kind === 44 || kind === 45; } function isMultiplicativeOperatorOrHigher(kind) { return isExponentiationOperator(kind) || isMultiplicativeOperator(kind); } function isAdditiveOperator(kind) { return kind === 40 || kind === 41; } function isAdditiveOperatorOrHigher(kind) { return isAdditiveOperator(kind) || isMultiplicativeOperatorOrHigher(kind); } function isShiftOperator(kind) { return kind === 48 || kind === 49 || kind === 50; } function isShiftOperatorOrHigher(kind) { return isShiftOperator(kind) || isAdditiveOperatorOrHigher(kind); } function isRelationalOperator(kind) { return kind === 30 || kind === 33 || kind === 32 || kind === 34 || kind === 104 || kind === 103; } function isRelationalOperatorOrHigher(kind) { return isRelationalOperator(kind) || isShiftOperatorOrHigher(kind); } function isEqualityOperator(kind) { return kind === 35 || kind === 37 || kind === 36 || kind === 38; } function isEqualityOperatorOrHigher(kind) { return isEqualityOperator(kind) || isRelationalOperatorOrHigher(kind); } function isBitwiseOperator(kind) { return kind === 51 || kind === 52 || kind === 53; } function isBitwiseOperatorOrHigher(kind) { return isBitwiseOperator(kind) || isEqualityOperatorOrHigher(kind); } function isLogicalOperator2(kind) { return kind === 56 || kind === 57; } function isLogicalOperatorOrHigher(kind) { return isLogicalOperator2(kind) || isBitwiseOperatorOrHigher(kind); } function isAssignmentOperatorOrHigher(kind) { return kind === 61 || isLogicalOperatorOrHigher(kind) || isAssignmentOperator(kind); } function isBinaryOperator(kind) { return isAssignmentOperatorOrHigher(kind) || kind === 28; } function isBinaryOperatorToken(node) { return isBinaryOperator(node.kind); } var BinaryExpressionState; ((BinaryExpressionState2) => { function enter(machine, stackIndex, stateStack, nodeStack, userStateStack, _resultHolder, outerState) { const prevUserState = stackIndex > 0 ? userStateStack[stackIndex - 1] : undefined; Debug.assertEqual(stateStack[stackIndex], enter); userStateStack[stackIndex] = machine.onEnter(nodeStack[stackIndex], prevUserState, outerState); stateStack[stackIndex] = nextState(machine, enter); return stackIndex; } BinaryExpressionState2.enter = enter; function left(machine, stackIndex, stateStack, nodeStack, userStateStack, _resultHolder, _outerState) { Debug.assertEqual(stateStack[stackIndex], left); Debug.assertIsDefined(machine.onLeft); stateStack[stackIndex] = nextState(machine, left); const nextNode = machine.onLeft(nodeStack[stackIndex].left, userStateStack[stackIndex], nodeStack[stackIndex]); if (nextNode) { checkCircularity(stackIndex, nodeStack, nextNode); return pushStack(stackIndex, stateStack, nodeStack, userStateStack, nextNode); } return stackIndex; } BinaryExpressionState2.left = left; function operator(machine, stackIndex, stateStack, nodeStack, userStateStack, _resultHolder, _outerState) { Debug.assertEqual(stateStack[stackIndex], operator); Debug.assertIsDefined(machine.onOperator); stateStack[stackIndex] = nextState(machine, operator); machine.onOperator(nodeStack[stackIndex].operatorToken, userStateStack[stackIndex], nodeStack[stackIndex]); return stackIndex; } BinaryExpressionState2.operator = operator; function right(machine, stackIndex, stateStack, nodeStack, userStateStack, _resultHolder, _outerState) { Debug.assertEqual(stateStack[stackIndex], right); Debug.assertIsDefined(machine.onRight); stateStack[stackIndex] = nextState(machine, right); const nextNode = machine.onRight(nodeStack[stackIndex].right, userStateStack[stackIndex], nodeStack[stackIndex]); if (nextNode) { checkCircularity(stackIndex, nodeStack, nextNode); return pushStack(stackIndex, stateStack, nodeStack, userStateStack, nextNode); } return stackIndex; } BinaryExpressionState2.right = right; function exit(machine, stackIndex, stateStack, nodeStack, userStateStack, resultHolder, _outerState) { Debug.assertEqual(stateStack[stackIndex], exit); stateStack[stackIndex] = nextState(machine, exit); const result = machine.onExit(nodeStack[stackIndex], userStateStack[stackIndex]); if (stackIndex > 0) { stackIndex--; if (machine.foldState) { const side = stateStack[stackIndex] === exit ? "right" : "left"; userStateStack[stackIndex] = machine.foldState(userStateStack[stackIndex], result, side); } } else { resultHolder.value = result; } return stackIndex; } BinaryExpressionState2.exit = exit; function done(_machine, stackIndex, stateStack, _nodeStack, _userStateStack, _resultHolder, _outerState) { Debug.assertEqual(stateStack[stackIndex], done); return stackIndex; } BinaryExpressionState2.done = done; function nextState(machine, currentState) { switch (currentState) { case enter: if (machine.onLeft) return left; case left: if (machine.onOperator) return operator; case operator: if (machine.onRight) return right; case right: return exit; case exit: return done; case done: return done; default: Debug.fail("Invalid state"); } } BinaryExpressionState2.nextState = nextState; function pushStack(stackIndex, stateStack, nodeStack, userStateStack, node) { stackIndex++; stateStack[stackIndex] = enter; nodeStack[stackIndex] = node; userStateStack[stackIndex] = undefined; return stackIndex; } function checkCircularity(stackIndex, nodeStack, node) { if (Debug.shouldAssert(2)) { while (stackIndex >= 0) { Debug.assert(nodeStack[stackIndex] !== node, "Circular traversal detected."); stackIndex--; } } } })(BinaryExpressionState || (BinaryExpressionState = {})); var BinaryExpressionStateMachine = class { constructor(onEnter, onLeft, onOperator, onRight, onExit, foldState) { this.onEnter = onEnter; this.onLeft = onLeft; this.onOperator = onOperator; this.onRight = onRight; this.onExit = onExit; this.foldState = foldState; } }; function createBinaryExpressionTrampoline(onEnter, onLeft, onOperator, onRight, onExit, foldState) { const machine = new BinaryExpressionStateMachine(onEnter, onLeft, onOperator, onRight, onExit, foldState); return trampoline; function trampoline(node, outerState) { const resultHolder = { value: undefined }; const stateStack = [BinaryExpressionState.enter]; const nodeStack = [node]; const userStateStack = [undefined]; let stackIndex = 0; while (stateStack[stackIndex] !== BinaryExpressionState.done) { stackIndex = stateStack[stackIndex](machine, stackIndex, stateStack, nodeStack, userStateStack, resultHolder, outerState); } Debug.assertEqual(stackIndex, 0); return resultHolder.value; } } function isExportOrDefaultKeywordKind(kind) { return kind === 95 || kind === 90; } function isExportOrDefaultModifier(node) { const kind = node.kind; return isExportOrDefaultKeywordKind(kind); } function elideNodes(factory2, nodes) { if (nodes === undefined) return; if (nodes.length === 0) return nodes; return setTextRange(factory2.createNodeArray([], nodes.hasTrailingComma), nodes); } function getNodeForGeneratedName(name) { var _a; const autoGenerate = name.emitNode.autoGenerate; if (autoGenerate.flags & 4) { const autoGenerateId = autoGenerate.id; let node = name; let original = node.original; while (original) { node = original; const autoGenerate2 = (_a = node.emitNode) == null ? undefined : _a.autoGenerate; if (isMemberName(node) && (autoGenerate2 === undefined || !!(autoGenerate2.flags & 4) && autoGenerate2.id !== autoGenerateId)) { break; } original = node.original; } return node; } return name; } function formatGeneratedNamePart(part, generateName) { return typeof part === "object" ? formatGeneratedName(false, part.prefix, part.node, part.suffix, generateName) : typeof part === "string" ? part.length > 0 && part.charCodeAt(0) === 35 ? part.slice(1) : part : ""; } function formatIdentifier(name, generateName) { return typeof name === "string" ? name : formatIdentifierWorker(name, Debug.checkDefined(generateName)); } function formatIdentifierWorker(node, generateName) { return isGeneratedPrivateIdentifier(node) ? generateName(node).slice(1) : isGeneratedIdentifier(node) ? generateName(node) : isPrivateIdentifier(node) ? node.escapedText.slice(1) : idText(node); } function formatGeneratedName(privateName, prefix, baseName, suffix, generateName) { prefix = formatGeneratedNamePart(prefix, generateName); suffix = formatGeneratedNamePart(suffix, generateName); baseName = formatIdentifier(baseName, generateName); return `${privateName ? "#" : ""}${prefix}${baseName}${suffix}`; } function createAccessorPropertyBackingField(factory2, node, modifiers, initializer) { return factory2.updatePropertyDeclaration(node, modifiers, factory2.getGeneratedPrivateNameForNode(node.name, undefined, "_accessor_storage"), undefined, undefined, initializer); } function createAccessorPropertyGetRedirector(factory2, node, modifiers, name, receiver = factory2.createThis()) { return factory2.createGetAccessorDeclaration(modifiers, name, [], undefined, factory2.createBlock([ factory2.createReturnStatement(factory2.createPropertyAccessExpression(receiver, factory2.getGeneratedPrivateNameForNode(node.name, undefined, "_accessor_storage"))) ])); } function createAccessorPropertySetRedirector(factory2, node, modifiers, name, receiver = factory2.createThis()) { return factory2.createSetAccessorDeclaration(modifiers, name, [factory2.createParameterDeclaration(undefined, undefined, "value")], factory2.createBlock([ factory2.createExpressionStatement(factory2.createAssignment(factory2.createPropertyAccessExpression(receiver, factory2.getGeneratedPrivateNameForNode(node.name, undefined, "_accessor_storage")), factory2.createIdentifier("value"))) ])); } function findComputedPropertyNameCacheAssignment(name) { let node = name.expression; while (true) { node = skipOuterExpressions(node); if (isCommaListExpression(node)) { node = last(node.elements); continue; } if (isCommaExpression(node)) { node = node.right; continue; } if (isAssignmentExpression(node, true) && isGeneratedIdentifier(node.left)) { return node; } break; } } function isSyntheticParenthesizedExpression(node) { return isParenthesizedExpression(node) && nodeIsSynthesized(node) && !node.emitNode; } function flattenCommaListWorker(node, expressions) { if (isSyntheticParenthesizedExpression(node)) { flattenCommaListWorker(node.expression, expressions); } else if (isCommaExpression(node)) { flattenCommaListWorker(node.left, expressions); flattenCommaListWorker(node.right, expressions); } else if (isCommaListExpression(node)) { for (const child of node.elements) { flattenCommaListWorker(child, expressions); } } else { expressions.push(node); } } function flattenCommaList(node) { const expressions = []; flattenCommaListWorker(node, expressions); return expressions; } function containsObjectRestOrSpread(node) { if (node.transformFlags & 65536) return true; if (node.transformFlags & 128) { for (const element of getElementsOfBindingOrAssignmentPattern(node)) { const target = getTargetOfBindingOrAssignmentElement(element); if (target && isAssignmentPattern(target)) { if (target.transformFlags & 65536) { return true; } if (target.transformFlags & 128) { if (containsObjectRestOrSpread(target)) return true; } } } } return false; } function setTextRange(range, location) { return location ? setTextRangePosEnd(range, location.pos, location.end) : range; } function canHaveModifiers(node) { const kind = node.kind; return kind === 169 || kind === 170 || kind === 172 || kind === 173 || kind === 174 || kind === 175 || kind === 177 || kind === 178 || kind === 179 || kind === 182 || kind === 186 || kind === 219 || kind === 220 || kind === 232 || kind === 244 || kind === 263 || kind === 264 || kind === 265 || kind === 266 || kind === 267 || kind === 268 || kind === 272 || kind === 273 || kind === 278 || kind === 279; } function canHaveDecorators(node) { const kind = node.kind; return kind === 170 || kind === 173 || kind === 175 || kind === 178 || kind === 179 || kind === 232 || kind === 264; } var NodeConstructor; var TokenConstructor; var IdentifierConstructor; var PrivateIdentifierConstructor; var SourceFileConstructor; var parseBaseNodeFactory = { createBaseSourceFileNode: (kind) => new (SourceFileConstructor || (SourceFileConstructor = objectAllocator.getSourceFileConstructor()))(kind, -1, -1), createBaseIdentifierNode: (kind) => new (IdentifierConstructor || (IdentifierConstructor = objectAllocator.getIdentifierConstructor()))(kind, -1, -1), createBasePrivateIdentifierNode: (kind) => new (PrivateIdentifierConstructor || (PrivateIdentifierConstructor = objectAllocator.getPrivateIdentifierConstructor()))(kind, -1, -1), createBaseTokenNode: (kind) => new (TokenConstructor || (TokenConstructor = objectAllocator.getTokenConstructor()))(kind, -1, -1), createBaseNode: (kind) => new (NodeConstructor || (NodeConstructor = objectAllocator.getNodeConstructor()))(kind, -1, -1) }; var parseNodeFactory = createNodeFactory(1, parseBaseNodeFactory); function visitNode2(cbNode, node) { return node && cbNode(node); } function visitNodes(cbNode, cbNodes, nodes) { if (nodes) { if (cbNodes) { return cbNodes(nodes); } for (const node of nodes) { const result = cbNode(node); if (result) { return result; } } } } function isJSDocLikeText(text, start) { return text.charCodeAt(start + 1) === 42 && text.charCodeAt(start + 2) === 42 && text.charCodeAt(start + 3) !== 47; } function isFileProbablyExternalModule(sourceFile) { return forEach(sourceFile.statements, isAnExternalModuleIndicatorNode) || getImportMetaIfNecessary(sourceFile); } function isAnExternalModuleIndicatorNode(node) { return canHaveModifiers(node) && hasModifierOfKind(node, 95) || isImportEqualsDeclaration(node) && isExternalModuleReference(node.moduleReference) || isImportDeclaration(node) || isExportAssignment(node) || isExportDeclaration(node) ? node : undefined; } function getImportMetaIfNecessary(sourceFile) { return sourceFile.flags & 8388608 ? walkTreeForImportMeta(sourceFile) : undefined; } function walkTreeForImportMeta(node) { return isImportMeta2(node) ? node : forEachChild(node, walkTreeForImportMeta); } function hasModifierOfKind(node, kind) { return some(node.modifiers, (m) => m.kind === kind); } function isImportMeta2(node) { return isMetaProperty(node) && node.keywordToken === 102 && node.name.escapedText === "meta"; } var forEachChildTable = { [167]: function forEachChildInQualifiedName(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.left) || visitNode2(cbNode, node.right); }, [169]: function forEachChildInTypeParameter(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.constraint) || visitNode2(cbNode, node.default) || visitNode2(cbNode, node.expression); }, [305]: function forEachChildInShorthandPropertyAssignment(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.questionToken) || visitNode2(cbNode, node.exclamationToken) || visitNode2(cbNode, node.equalsToken) || visitNode2(cbNode, node.objectAssignmentInitializer); }, [306]: function forEachChildInSpreadAssignment(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [170]: function forEachChildInParameter(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.dotDotDotToken) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.questionToken) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.initializer); }, [173]: function forEachChildInPropertyDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.questionToken) || visitNode2(cbNode, node.exclamationToken) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.initializer); }, [172]: function forEachChildInPropertySignature(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.questionToken) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.initializer); }, [304]: function forEachChildInPropertyAssignment(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.questionToken) || visitNode2(cbNode, node.exclamationToken) || visitNode2(cbNode, node.initializer); }, [261]: function forEachChildInVariableDeclaration(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.name) || visitNode2(cbNode, node.exclamationToken) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.initializer); }, [209]: function forEachChildInBindingElement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.dotDotDotToken) || visitNode2(cbNode, node.propertyName) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.initializer); }, [182]: function forEachChildInIndexSignature(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type); }, [186]: function forEachChildInConstructorType(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type); }, [185]: function forEachChildInFunctionType(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type); }, [180]: forEachChildInCallOrConstructSignature, [181]: forEachChildInCallOrConstructSignature, [175]: function forEachChildInMethodDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.asteriskToken) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.questionToken) || visitNode2(cbNode, node.exclamationToken) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.body); }, [174]: function forEachChildInMethodSignature(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.questionToken) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type); }, [177]: function forEachChildInConstructor(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.body); }, [178]: function forEachChildInGetAccessor(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.body); }, [179]: function forEachChildInSetAccessor(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.body); }, [263]: function forEachChildInFunctionDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.asteriskToken) || visitNode2(cbNode, node.name) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.body); }, [219]: function forEachChildInFunctionExpression(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.asteriskToken) || visitNode2(cbNode, node.name) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.body); }, [220]: function forEachChildInArrowFunction(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type) || visitNode2(cbNode, node.equalsGreaterThanToken) || visitNode2(cbNode, node.body); }, [176]: function forEachChildInClassStaticBlockDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.body); }, [184]: function forEachChildInTypeReference(node, cbNode, cbNodes) { return visitNode2(cbNode, node.typeName) || visitNodes(cbNode, cbNodes, node.typeArguments); }, [183]: function forEachChildInTypePredicate(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.assertsModifier) || visitNode2(cbNode, node.parameterName) || visitNode2(cbNode, node.type); }, [187]: function forEachChildInTypeQuery(node, cbNode, cbNodes) { return visitNode2(cbNode, node.exprName) || visitNodes(cbNode, cbNodes, node.typeArguments); }, [188]: function forEachChildInTypeLiteral(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.members); }, [189]: function forEachChildInArrayType(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.elementType); }, [190]: function forEachChildInTupleType(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.elements); }, [193]: forEachChildInUnionOrIntersectionType, [194]: forEachChildInUnionOrIntersectionType, [195]: function forEachChildInConditionalType(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.checkType) || visitNode2(cbNode, node.extendsType) || visitNode2(cbNode, node.trueType) || visitNode2(cbNode, node.falseType); }, [196]: function forEachChildInInferType(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.typeParameter); }, [206]: function forEachChildInImportType(node, cbNode, cbNodes) { return visitNode2(cbNode, node.argument) || visitNode2(cbNode, node.attributes) || visitNode2(cbNode, node.qualifier) || visitNodes(cbNode, cbNodes, node.typeArguments); }, [303]: function forEachChildInImportTypeAssertionContainer(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.assertClause); }, [197]: forEachChildInParenthesizedTypeOrTypeOperator, [199]: forEachChildInParenthesizedTypeOrTypeOperator, [200]: function forEachChildInIndexedAccessType(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.objectType) || visitNode2(cbNode, node.indexType); }, [201]: function forEachChildInMappedType(node, cbNode, cbNodes) { return visitNode2(cbNode, node.readonlyToken) || visitNode2(cbNode, node.typeParameter) || visitNode2(cbNode, node.nameType) || visitNode2(cbNode, node.questionToken) || visitNode2(cbNode, node.type) || visitNodes(cbNode, cbNodes, node.members); }, [202]: function forEachChildInLiteralType(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.literal); }, [203]: function forEachChildInNamedTupleMember(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.dotDotDotToken) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.questionToken) || visitNode2(cbNode, node.type); }, [207]: forEachChildInObjectOrArrayBindingPattern, [208]: forEachChildInObjectOrArrayBindingPattern, [210]: function forEachChildInArrayLiteralExpression(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.elements); }, [211]: function forEachChildInObjectLiteralExpression(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.properties); }, [212]: function forEachChildInPropertyAccessExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.questionDotToken) || visitNode2(cbNode, node.name); }, [213]: function forEachChildInElementAccessExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.questionDotToken) || visitNode2(cbNode, node.argumentExpression); }, [214]: forEachChildInCallOrNewExpression, [215]: forEachChildInCallOrNewExpression, [216]: function forEachChildInTaggedTemplateExpression(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tag) || visitNode2(cbNode, node.questionDotToken) || visitNodes(cbNode, cbNodes, node.typeArguments) || visitNode2(cbNode, node.template); }, [217]: function forEachChildInTypeAssertionExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.type) || visitNode2(cbNode, node.expression); }, [218]: function forEachChildInParenthesizedExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [221]: function forEachChildInDeleteExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [222]: function forEachChildInTypeOfExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [223]: function forEachChildInVoidExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [225]: function forEachChildInPrefixUnaryExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.operand); }, [230]: function forEachChildInYieldExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.asteriskToken) || visitNode2(cbNode, node.expression); }, [224]: function forEachChildInAwaitExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [226]: function forEachChildInPostfixUnaryExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.operand); }, [227]: function forEachChildInBinaryExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.left) || visitNode2(cbNode, node.operatorToken) || visitNode2(cbNode, node.right); }, [235]: function forEachChildInAsExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.type); }, [236]: function forEachChildInNonNullExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [239]: function forEachChildInSatisfiesExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.type); }, [237]: function forEachChildInMetaProperty(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.name); }, [228]: function forEachChildInConditionalExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.condition) || visitNode2(cbNode, node.questionToken) || visitNode2(cbNode, node.whenTrue) || visitNode2(cbNode, node.colonToken) || visitNode2(cbNode, node.whenFalse); }, [231]: function forEachChildInSpreadElement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [242]: forEachChildInBlock, [269]: forEachChildInBlock, [308]: function forEachChildInSourceFile(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.statements) || visitNode2(cbNode, node.endOfFileToken); }, [244]: function forEachChildInVariableStatement(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.declarationList); }, [262]: function forEachChildInVariableDeclarationList(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.declarations); }, [245]: function forEachChildInExpressionStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [246]: function forEachChildInIfStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.thenStatement) || visitNode2(cbNode, node.elseStatement); }, [247]: function forEachChildInDoStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.statement) || visitNode2(cbNode, node.expression); }, [248]: function forEachChildInWhileStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.statement); }, [249]: function forEachChildInForStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.initializer) || visitNode2(cbNode, node.condition) || visitNode2(cbNode, node.incrementor) || visitNode2(cbNode, node.statement); }, [250]: function forEachChildInForInStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.initializer) || visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.statement); }, [251]: function forEachChildInForOfStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.awaitModifier) || visitNode2(cbNode, node.initializer) || visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.statement); }, [252]: forEachChildInContinueOrBreakStatement, [253]: forEachChildInContinueOrBreakStatement, [254]: function forEachChildInReturnStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [255]: function forEachChildInWithStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.statement); }, [256]: function forEachChildInSwitchStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.caseBlock); }, [270]: function forEachChildInCaseBlock(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.clauses); }, [297]: function forEachChildInCaseClause(node, cbNode, cbNodes) { return visitNode2(cbNode, node.expression) || visitNodes(cbNode, cbNodes, node.statements); }, [298]: function forEachChildInDefaultClause(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.statements); }, [257]: function forEachChildInLabeledStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.label) || visitNode2(cbNode, node.statement); }, [258]: function forEachChildInThrowStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [259]: function forEachChildInTryStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.tryBlock) || visitNode2(cbNode, node.catchClause) || visitNode2(cbNode, node.finallyBlock); }, [300]: function forEachChildInCatchClause(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.variableDeclaration) || visitNode2(cbNode, node.block); }, [171]: function forEachChildInDecorator(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [264]: forEachChildInClassDeclarationOrExpression, [232]: forEachChildInClassDeclarationOrExpression, [265]: function forEachChildInInterfaceDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.heritageClauses) || visitNodes(cbNode, cbNodes, node.members); }, [266]: function forEachChildInTypeAliasDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNode2(cbNode, node.type); }, [267]: function forEachChildInEnumDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNodes(cbNode, cbNodes, node.members); }, [307]: function forEachChildInEnumMember(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.name) || visitNode2(cbNode, node.initializer); }, [268]: function forEachChildInModuleDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.body); }, [272]: function forEachChildInImportEqualsDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNode2(cbNode, node.moduleReference); }, [273]: function forEachChildInImportDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.importClause) || visitNode2(cbNode, node.moduleSpecifier) || visitNode2(cbNode, node.attributes); }, [274]: function forEachChildInImportClause(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.name) || visitNode2(cbNode, node.namedBindings); }, [301]: function forEachChildInImportAttributes(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.elements); }, [302]: function forEachChildInImportAttribute(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.name) || visitNode2(cbNode, node.value); }, [271]: function forEachChildInNamespaceExportDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name); }, [275]: function forEachChildInNamespaceImport(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.name); }, [281]: function forEachChildInNamespaceExport(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.name); }, [276]: forEachChildInNamedImportsOrExports, [280]: forEachChildInNamedImportsOrExports, [279]: function forEachChildInExportDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.exportClause) || visitNode2(cbNode, node.moduleSpecifier) || visitNode2(cbNode, node.attributes); }, [277]: forEachChildInImportOrExportSpecifier, [282]: forEachChildInImportOrExportSpecifier, [278]: function forEachChildInExportAssignment(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.expression); }, [229]: function forEachChildInTemplateExpression(node, cbNode, cbNodes) { return visitNode2(cbNode, node.head) || visitNodes(cbNode, cbNodes, node.templateSpans); }, [240]: function forEachChildInTemplateSpan(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.literal); }, [204]: function forEachChildInTemplateLiteralType(node, cbNode, cbNodes) { return visitNode2(cbNode, node.head) || visitNodes(cbNode, cbNodes, node.templateSpans); }, [205]: function forEachChildInTemplateLiteralTypeSpan(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.type) || visitNode2(cbNode, node.literal); }, [168]: function forEachChildInComputedPropertyName(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [299]: function forEachChildInHeritageClause(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.types); }, [234]: function forEachChildInExpressionWithTypeArguments(node, cbNode, cbNodes) { return visitNode2(cbNode, node.expression) || visitNodes(cbNode, cbNodes, node.typeArguments); }, [284]: function forEachChildInExternalModuleReference(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [283]: function forEachChildInMissingDeclaration(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers); }, [357]: function forEachChildInCommaListExpression(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.elements); }, [285]: function forEachChildInJsxElement(node, cbNode, cbNodes) { return visitNode2(cbNode, node.openingElement) || visitNodes(cbNode, cbNodes, node.children) || visitNode2(cbNode, node.closingElement); }, [289]: function forEachChildInJsxFragment(node, cbNode, cbNodes) { return visitNode2(cbNode, node.openingFragment) || visitNodes(cbNode, cbNodes, node.children) || visitNode2(cbNode, node.closingFragment); }, [286]: forEachChildInJsxOpeningOrSelfClosingElement, [287]: forEachChildInJsxOpeningOrSelfClosingElement, [293]: function forEachChildInJsxAttributes(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.properties); }, [292]: function forEachChildInJsxAttribute(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.name) || visitNode2(cbNode, node.initializer); }, [294]: function forEachChildInJsxSpreadAttribute(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); }, [295]: function forEachChildInJsxExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.dotDotDotToken) || visitNode2(cbNode, node.expression); }, [288]: function forEachChildInJsxClosingElement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.tagName); }, [296]: function forEachChildInJsxNamespacedName(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.namespace) || visitNode2(cbNode, node.name); }, [191]: forEachChildInOptionalRestOrJSDocParameterModifier, [192]: forEachChildInOptionalRestOrJSDocParameterModifier, [310]: forEachChildInOptionalRestOrJSDocParameterModifier, [316]: forEachChildInOptionalRestOrJSDocParameterModifier, [315]: forEachChildInOptionalRestOrJSDocParameterModifier, [317]: forEachChildInOptionalRestOrJSDocParameterModifier, [319]: forEachChildInOptionalRestOrJSDocParameterModifier, [318]: function forEachChildInJSDocFunctionType(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type); }, [321]: function forEachChildInJSDoc(node, cbNode, cbNodes) { return (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)) || visitNodes(cbNode, cbNodes, node.tags); }, [348]: function forEachChildInJSDocSeeTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || visitNode2(cbNode, node.name) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)); }, [311]: function forEachChildInJSDocNameReference(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.name); }, [312]: function forEachChildInJSDocMemberName(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.left) || visitNode2(cbNode, node.right); }, [342]: forEachChildInJSDocParameterOrPropertyTag, [349]: forEachChildInJSDocParameterOrPropertyTag, [331]: function forEachChildInJSDocAuthorTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)); }, [330]: function forEachChildInJSDocImplementsTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || visitNode2(cbNode, node.class) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)); }, [329]: function forEachChildInJSDocAugmentsTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || visitNode2(cbNode, node.class) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)); }, [346]: function forEachChildInJSDocTemplateTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || visitNode2(cbNode, node.constraint) || visitNodes(cbNode, cbNodes, node.typeParameters) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)); }, [347]: function forEachChildInJSDocTypedefTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || (node.typeExpression && node.typeExpression.kind === 310 ? visitNode2(cbNode, node.typeExpression) || visitNode2(cbNode, node.fullName) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)) : visitNode2(cbNode, node.fullName) || visitNode2(cbNode, node.typeExpression) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment))); }, [339]: function forEachChildInJSDocCallbackTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || visitNode2(cbNode, node.fullName) || visitNode2(cbNode, node.typeExpression) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)); }, [343]: forEachChildInJSDocTypeLikeTag, [345]: forEachChildInJSDocTypeLikeTag, [344]: forEachChildInJSDocTypeLikeTag, [341]: forEachChildInJSDocTypeLikeTag, [351]: forEachChildInJSDocTypeLikeTag, [350]: forEachChildInJSDocTypeLikeTag, [340]: forEachChildInJSDocTypeLikeTag, [324]: function forEachChildInJSDocSignature(node, cbNode, _cbNodes) { return forEach(node.typeParameters, cbNode) || forEach(node.parameters, cbNode) || visitNode2(cbNode, node.type); }, [325]: forEachChildInJSDocLinkCodeOrPlain, [326]: forEachChildInJSDocLinkCodeOrPlain, [327]: forEachChildInJSDocLinkCodeOrPlain, [323]: function forEachChildInJSDocTypeLiteral(node, cbNode, _cbNodes) { return forEach(node.jsDocPropertyTags, cbNode); }, [328]: forEachChildInJSDocTag, [333]: forEachChildInJSDocTag, [334]: forEachChildInJSDocTag, [335]: forEachChildInJSDocTag, [336]: forEachChildInJSDocTag, [337]: forEachChildInJSDocTag, [332]: forEachChildInJSDocTag, [338]: forEachChildInJSDocTag, [352]: forEachChildInJSDocImportTag, [356]: forEachChildInPartiallyEmittedExpression }; function forEachChildInCallOrConstructSignature(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.parameters) || visitNode2(cbNode, node.type); } function forEachChildInUnionOrIntersectionType(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.types); } function forEachChildInParenthesizedTypeOrTypeOperator(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.type); } function forEachChildInObjectOrArrayBindingPattern(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.elements); } function forEachChildInCallOrNewExpression(node, cbNode, cbNodes) { return visitNode2(cbNode, node.expression) || visitNode2(cbNode, node.questionDotToken) || visitNodes(cbNode, cbNodes, node.typeArguments) || visitNodes(cbNode, cbNodes, node.arguments); } function forEachChildInBlock(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.statements); } function forEachChildInContinueOrBreakStatement(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.label); } function forEachChildInClassDeclarationOrExpression(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.modifiers) || visitNode2(cbNode, node.name) || visitNodes(cbNode, cbNodes, node.typeParameters) || visitNodes(cbNode, cbNodes, node.heritageClauses) || visitNodes(cbNode, cbNodes, node.members); } function forEachChildInNamedImportsOrExports(node, cbNode, cbNodes) { return visitNodes(cbNode, cbNodes, node.elements); } function forEachChildInImportOrExportSpecifier(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.propertyName) || visitNode2(cbNode, node.name); } function forEachChildInJsxOpeningOrSelfClosingElement(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || visitNodes(cbNode, cbNodes, node.typeArguments) || visitNode2(cbNode, node.attributes); } function forEachChildInOptionalRestOrJSDocParameterModifier(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.type); } function forEachChildInJSDocParameterOrPropertyTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || (node.isNameFirst ? visitNode2(cbNode, node.name) || visitNode2(cbNode, node.typeExpression) : visitNode2(cbNode, node.typeExpression) || visitNode2(cbNode, node.name)) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)); } function forEachChildInJSDocTypeLikeTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || visitNode2(cbNode, node.typeExpression) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)); } function forEachChildInJSDocLinkCodeOrPlain(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.name); } function forEachChildInJSDocTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)); } function forEachChildInJSDocImportTag(node, cbNode, cbNodes) { return visitNode2(cbNode, node.tagName) || visitNode2(cbNode, node.importClause) || visitNode2(cbNode, node.moduleSpecifier) || visitNode2(cbNode, node.attributes) || (typeof node.comment === "string" ? undefined : visitNodes(cbNode, cbNodes, node.comment)); } function forEachChildInPartiallyEmittedExpression(node, cbNode, _cbNodes) { return visitNode2(cbNode, node.expression); } function forEachChild(node, cbNode, cbNodes) { if (node === undefined || node.kind <= 166) { return; } const fn = forEachChildTable[node.kind]; return fn === undefined ? undefined : fn(node, cbNode, cbNodes); } function forEachChildRecursively(rootNode, cbNode, cbNodes) { const queue = gatherPossibleChildren(rootNode); const parents = []; while (parents.length < queue.length) { parents.push(rootNode); } while (queue.length !== 0) { const current = queue.pop(); const parent2 = parents.pop(); if (isArray(current)) { if (cbNodes) { const res = cbNodes(current, parent2); if (res) { if (res === "skip") continue; return res; } } for (let i = current.length - 1;i >= 0; --i) { queue.push(current[i]); parents.push(parent2); } } else { const res = cbNode(current, parent2); if (res) { if (res === "skip") continue; return res; } if (current.kind >= 167) { for (const child of gatherPossibleChildren(current)) { queue.push(child); parents.push(current); } } } } } function gatherPossibleChildren(node) { const children = []; forEachChild(node, addWorkItem, addWorkItem); return children; function addWorkItem(n) { children.unshift(n); } } function setExternalModuleIndicator(sourceFile) { sourceFile.externalModuleIndicator = isFileProbablyExternalModule(sourceFile); } function createSourceFile(fileName, sourceText, languageVersionOrOptions, setParentNodes = false, scriptKind) { var _a, _b; (_a = tracing) == null || _a.push(tracing.Phase.Parse, "createSourceFile", { path: fileName }, true); mark("beforeParse"); let result; const { languageVersion, setExternalModuleIndicator: overrideSetExternalModuleIndicator, impliedNodeFormat: format, jsDocParsingMode } = typeof languageVersionOrOptions === "object" ? languageVersionOrOptions : { languageVersion: languageVersionOrOptions }; if (languageVersion === 100) { result = Parser.parseSourceFile(fileName, sourceText, languageVersion, undefined, setParentNodes, 6, noop, jsDocParsingMode); } else { const setIndicator = format === undefined ? overrideSetExternalModuleIndicator : (file) => { file.impliedNodeFormat = format; return (overrideSetExternalModuleIndicator || setExternalModuleIndicator)(file); }; result = Parser.parseSourceFile(fileName, sourceText, languageVersion, undefined, setParentNodes, scriptKind, setIndicator, jsDocParsingMode); } mark("afterParse"); measure("Parse", "beforeParse", "afterParse"); (_b = tracing) == null || _b.pop(); return result; } function parseIsolatedEntityName(text, languageVersion) { return Parser.parseIsolatedEntityName(text, languageVersion); } function parseJsonText(fileName, sourceText) { return Parser.parseJsonText(fileName, sourceText); } function isExternalModule(file) { return file.externalModuleIndicator !== undefined; } function updateSourceFile(sourceFile, newText, textChangeRange, aggressiveChecks = false) { const newSourceFile = IncrementalParser.updateSourceFile(sourceFile, newText, textChangeRange, aggressiveChecks); newSourceFile.flags |= sourceFile.flags & 12582912; return newSourceFile; } function parseIsolatedJSDocComment(content, start, length2) { const result = Parser.JSDocParser.parseIsolatedJSDocComment(content, start, length2); if (result && result.jsDoc) { Parser.fixupParentReferences(result.jsDoc); } return result; } function parseJSDocTypeExpressionForTests(content, start, length2) { return Parser.JSDocParser.parseJSDocTypeExpressionForTests(content, start, length2); } var Parser; ((Parser2) => { var scanner2 = createScanner(99, true); var disallowInAndDecoratorContext = 8192 | 32768; var NodeConstructor2; var TokenConstructor2; var IdentifierConstructor2; var PrivateIdentifierConstructor2; var SourceFileConstructor2; function countNode(node) { nodeCount++; return node; } var baseNodeFactory = { createBaseSourceFileNode: (kind) => countNode(new SourceFileConstructor2(kind, 0, 0)), createBaseIdentifierNode: (kind) => countNode(new IdentifierConstructor2(kind, 0, 0)), createBasePrivateIdentifierNode: (kind) => countNode(new PrivateIdentifierConstructor2(kind, 0, 0)), createBaseTokenNode: (kind) => countNode(new TokenConstructor2(kind, 0, 0)), createBaseNode: (kind) => countNode(new NodeConstructor2(kind, 0, 0)) }; var factory2 = createNodeFactory(1 | 2 | 8, baseNodeFactory); var { createNodeArray: factoryCreateNodeArray, createNumericLiteral: factoryCreateNumericLiteral, createStringLiteral: factoryCreateStringLiteral, createLiteralLikeNode: factoryCreateLiteralLikeNode, createIdentifier: factoryCreateIdentifier, createPrivateIdentifier: factoryCreatePrivateIdentifier, createToken: factoryCreateToken, createArrayLiteralExpression: factoryCreateArrayLiteralExpression, createObjectLiteralExpression: factoryCreateObjectLiteralExpression, createPropertyAccessExpression: factoryCreatePropertyAccessExpression, createPropertyAccessChain: factoryCreatePropertyAccessChain, createElementAccessExpression: factoryCreateElementAccessExpression, createElementAccessChain: factoryCreateElementAccessChain, createCallExpression: factoryCreateCallExpression, createCallChain: factoryCreateCallChain, createNewExpression: factoryCreateNewExpression, createParenthesizedExpression: factoryCreateParenthesizedExpression, createBlock: factoryCreateBlock, createVariableStatement: factoryCreateVariableStatement, createExpressionStatement: factoryCreateExpressionStatement, createIfStatement: factoryCreateIfStatement, createWhileStatement: factoryCreateWhileStatement, createForStatement: factoryCreateForStatement, createForOfStatement: factoryCreateForOfStatement, createVariableDeclaration: factoryCreateVariableDeclaration, createVariableDeclarationList: factoryCreateVariableDeclarationList } = factory2; var fileName; var sourceFlags; var sourceText; var languageVersion; var scriptKind; var languageVariant; var parseDiagnostics; var jsDocDiagnostics; var syntaxCursor; var currentToken; var nodeCount; var identifiers; var identifierCount; var parsingContext; var notParenthesizedArrow; var contextFlags; var topLevel = true; var parseErrorBeforeNextFinishedNode = false; function parseSourceFile(fileName2, sourceText2, languageVersion2, syntaxCursor2, setParentNodes = false, scriptKind2, setExternalModuleIndicatorOverride, jsDocParsingMode = 0) { var _a; scriptKind2 = ensureScriptKind(fileName2, scriptKind2); if (scriptKind2 === 6) { const result2 = parseJsonText2(fileName2, sourceText2, languageVersion2, syntaxCursor2, setParentNodes); convertToJson(result2, (_a = result2.statements[0]) == null ? undefined : _a.expression, result2.parseDiagnostics, false, undefined); result2.referencedFiles = emptyArray; result2.typeReferenceDirectives = emptyArray; result2.libReferenceDirectives = emptyArray; result2.amdDependencies = emptyArray; result2.hasNoDefaultLib = false; result2.pragmas = emptyMap; return result2; } initializeState(fileName2, sourceText2, languageVersion2, syntaxCursor2, scriptKind2, jsDocParsingMode); const result = parseSourceFileWorker(languageVersion2, setParentNodes, scriptKind2, setExternalModuleIndicatorOverride || setExternalModuleIndicator, jsDocParsingMode); clearState(); return result; } Parser2.parseSourceFile = parseSourceFile; function parseIsolatedEntityName2(content, languageVersion2) { initializeState("", content, languageVersion2, undefined, 1, 0); nextToken(); const entityName = parseEntityName(true); const isValid = token() === 1 && !parseDiagnostics.length; clearState(); return isValid ? entityName : undefined; } Parser2.parseIsolatedEntityName = parseIsolatedEntityName2; function parseJsonText2(fileName2, sourceText2, languageVersion2 = 2, syntaxCursor2, setParentNodes = false) { initializeState(fileName2, sourceText2, languageVersion2, syntaxCursor2, 6, 0); sourceFlags = contextFlags; nextToken(); const pos = getNodePos(); let statements, endOfFileToken; if (token() === 1) { statements = createNodeArray([], pos, pos); endOfFileToken = parseTokenNode(); } else { let expressions; while (token() !== 1) { let expression2; switch (token()) { case 23: expression2 = parseArrayLiteralExpression(); break; case 112: case 97: case 106: expression2 = parseTokenNode(); break; case 41: if (lookAhead(() => nextToken() === 9 && nextToken() !== 59)) { expression2 = parsePrefixUnaryExpression(); } else { expression2 = parseObjectLiteralExpression(); } break; case 9: case 11: if (lookAhead(() => nextToken() !== 59)) { expression2 = parseLiteralNode(); break; } default: expression2 = parseObjectLiteralExpression(); break; } if (expressions && isArray(expressions)) { expressions.push(expression2); } else if (expressions) { expressions = [expressions, expression2]; } else { expressions = expression2; if (token() !== 1) { parseErrorAtCurrentToken(Diagnostics.Unexpected_token); } } } const expression = isArray(expressions) ? finishNode(factoryCreateArrayLiteralExpression(expressions), pos) : Debug.checkDefined(expressions); const statement = factoryCreateExpressionStatement(expression); finishNode(statement, pos); statements = createNodeArray([statement], pos); endOfFileToken = parseExpectedToken(1, Diagnostics.Unexpected_token); } const sourceFile = createSourceFile2(fileName2, 2, 6, false, statements, endOfFileToken, sourceFlags, noop); if (setParentNodes) { fixupParentReferences(sourceFile); } sourceFile.nodeCount = nodeCount; sourceFile.identifierCount = identifierCount; sourceFile.identifiers = identifiers; sourceFile.parseDiagnostics = attachFileToDiagnostics(parseDiagnostics, sourceFile); if (jsDocDiagnostics) { sourceFile.jsDocDiagnostics = attachFileToDiagnostics(jsDocDiagnostics, sourceFile); } const result = sourceFile; clearState(); return result; } Parser2.parseJsonText = parseJsonText2; function initializeState(_fileName, _sourceText, _languageVersion, _syntaxCursor, _scriptKind, _jsDocParsingMode) { NodeConstructor2 = objectAllocator.getNodeConstructor(); TokenConstructor2 = objectAllocator.getTokenConstructor(); IdentifierConstructor2 = objectAllocator.getIdentifierConstructor(); PrivateIdentifierConstructor2 = objectAllocator.getPrivateIdentifierConstructor(); SourceFileConstructor2 = objectAllocator.getSourceFileConstructor(); fileName = normalizePath(_fileName); sourceText = _sourceText; languageVersion = _languageVersion; syntaxCursor = _syntaxCursor; scriptKind = _scriptKind; languageVariant = getLanguageVariant(_scriptKind); parseDiagnostics = []; parsingContext = 0; identifiers = /* @__PURE__ */ new Map; identifierCount = 0; nodeCount = 0; sourceFlags = 0; topLevel = true; switch (scriptKind) { case 1: case 2: contextFlags = 524288; break; case 6: contextFlags = 524288 | 134217728; break; default: contextFlags = 0; break; } parseErrorBeforeNextFinishedNode = false; scanner2.setText(sourceText); scanner2.setOnError(scanError); scanner2.setScriptTarget(languageVersion); scanner2.setLanguageVariant(languageVariant); scanner2.setScriptKind(scriptKind); scanner2.setJSDocParsingMode(_jsDocParsingMode); } function clearState() { scanner2.clearCommentDirectives(); scanner2.setText(""); scanner2.setOnError(undefined); scanner2.setScriptKind(0); scanner2.setJSDocParsingMode(0); sourceText = undefined; languageVersion = undefined; syntaxCursor = undefined; scriptKind = undefined; languageVariant = undefined; sourceFlags = 0; parseDiagnostics = undefined; jsDocDiagnostics = undefined; parsingContext = 0; identifiers = undefined; notParenthesizedArrow = undefined; topLevel = true; } function parseSourceFileWorker(languageVersion2, setParentNodes, scriptKind2, setExternalModuleIndicator2, jsDocParsingMode) { const isDeclarationFile = isDeclarationFileName(fileName); if (isDeclarationFile) { contextFlags |= 33554432; } sourceFlags = contextFlags; nextToken(); const statements = parseList(0, parseStatement); Debug.assert(token() === 1); const endHasJSDoc = hasPrecedingJSDocComment(); const endOfFileToken = withJSDoc(parseTokenNode(), endHasJSDoc); const sourceFile = createSourceFile2(fileName, languageVersion2, scriptKind2, isDeclarationFile, statements, endOfFileToken, sourceFlags, setExternalModuleIndicator2); processCommentPragmas(sourceFile, sourceText); processPragmasIntoFields(sourceFile, reportPragmaDiagnostic); sourceFile.commentDirectives = scanner2.getCommentDirectives(); sourceFile.nodeCount = nodeCount; sourceFile.identifierCount = identifierCount; sourceFile.identifiers = identifiers; sourceFile.parseDiagnostics = attachFileToDiagnostics(parseDiagnostics, sourceFile); sourceFile.jsDocParsingMode = jsDocParsingMode; if (jsDocDiagnostics) { sourceFile.jsDocDiagnostics = attachFileToDiagnostics(jsDocDiagnostics, sourceFile); } if (setParentNodes) { fixupParentReferences(sourceFile); } return sourceFile; function reportPragmaDiagnostic(pos, end, diagnostic) { parseDiagnostics.push(createDetachedDiagnostic(fileName, sourceText, pos, end, diagnostic)); } } let hasDeprecatedTag = false; function withJSDoc(node, hasJSDoc) { if (!hasJSDoc) { return node; } Debug.assert(!node.jsDoc); const jsDoc = mapDefined(getJSDocCommentRanges(node, sourceText), (comment) => JSDocParser.parseJSDocComment(node, comment.pos, comment.end - comment.pos)); if (jsDoc.length) node.jsDoc = jsDoc; if (hasDeprecatedTag) { hasDeprecatedTag = false; node.flags |= 536870912; } return node; } function reparseTopLevelAwait(sourceFile) { const savedSyntaxCursor = syntaxCursor; const baseSyntaxCursor = IncrementalParser.createSyntaxCursor(sourceFile); syntaxCursor = { currentNode: currentNode2 }; const statements = []; const savedParseDiagnostics = parseDiagnostics; parseDiagnostics = []; let pos = 0; let start = findNextStatementWithAwait(sourceFile.statements, 0); while (start !== -1) { const prevStatement = sourceFile.statements[pos]; const nextStatement = sourceFile.statements[start]; addRange(statements, sourceFile.statements, pos, start); pos = findNextStatementWithoutAwait(sourceFile.statements, start); const diagnosticStart = findIndex(savedParseDiagnostics, (diagnostic) => diagnostic.start >= prevStatement.pos); const diagnosticEnd = diagnosticStart >= 0 ? findIndex(savedParseDiagnostics, (diagnostic) => diagnostic.start >= nextStatement.pos, diagnosticStart) : -1; if (diagnosticStart >= 0) { addRange(parseDiagnostics, savedParseDiagnostics, diagnosticStart, diagnosticEnd >= 0 ? diagnosticEnd : undefined); } speculationHelper(() => { const savedContextFlags = contextFlags; contextFlags |= 65536; scanner2.resetTokenState(nextStatement.pos); nextToken(); while (token() !== 1) { const startPos = scanner2.getTokenFullStart(); const statement = parseListElement(0, parseStatement); statements.push(statement); if (startPos === scanner2.getTokenFullStart()) { nextToken(); } if (pos >= 0) { const nonAwaitStatement = sourceFile.statements[pos]; if (statement.end === nonAwaitStatement.pos) { break; } if (statement.end > nonAwaitStatement.pos) { pos = findNextStatementWithoutAwait(sourceFile.statements, pos + 1); } } } contextFlags = savedContextFlags; }, 2); start = pos >= 0 ? findNextStatementWithAwait(sourceFile.statements, pos) : -1; } if (pos >= 0) { const prevStatement = sourceFile.statements[pos]; addRange(statements, sourceFile.statements, pos); const diagnosticStart = findIndex(savedParseDiagnostics, (diagnostic) => diagnostic.start >= prevStatement.pos); if (diagnosticStart >= 0) { addRange(parseDiagnostics, savedParseDiagnostics, diagnosticStart); } } syntaxCursor = savedSyntaxCursor; return factory2.updateSourceFile(sourceFile, setTextRange(factoryCreateNodeArray(statements), sourceFile.statements)); function containsPossibleTopLevelAwait(node) { return !(node.flags & 65536) && !!(node.transformFlags & 67108864); } function findNextStatementWithAwait(statements2, start2) { for (let i = start2;i < statements2.length; i++) { if (containsPossibleTopLevelAwait(statements2[i])) { return i; } } return -1; } function findNextStatementWithoutAwait(statements2, start2) { for (let i = start2;i < statements2.length; i++) { if (!containsPossibleTopLevelAwait(statements2[i])) { return i; } } return -1; } function currentNode2(position) { const node = baseSyntaxCursor.currentNode(position); if (topLevel && node && containsPossibleTopLevelAwait(node)) { markAsIntersectingIncrementalChange(node); } return node; } } function fixupParentReferences(rootNode) { setParentRecursive(rootNode, true); } Parser2.fixupParentReferences = fixupParentReferences; function createSourceFile2(fileName2, languageVersion2, scriptKind2, isDeclarationFile, statements, endOfFileToken, flags, setExternalModuleIndicator2) { let sourceFile = factory2.createSourceFile(statements, endOfFileToken, flags); setTextRangePosWidth(sourceFile, 0, sourceText.length); setFields(sourceFile); if (!isDeclarationFile && isExternalModule(sourceFile) && sourceFile.transformFlags & 67108864) { const oldSourceFile = sourceFile; sourceFile = reparseTopLevelAwait(sourceFile); if (oldSourceFile !== sourceFile) setFields(sourceFile); } return sourceFile; function setFields(sourceFile2) { sourceFile2.text = sourceText; sourceFile2.bindDiagnostics = []; sourceFile2.bindSuggestionDiagnostics = undefined; sourceFile2.languageVersion = languageVersion2; sourceFile2.fileName = fileName2; sourceFile2.languageVariant = getLanguageVariant(scriptKind2); sourceFile2.isDeclarationFile = isDeclarationFile; sourceFile2.scriptKind = scriptKind2; setExternalModuleIndicator2(sourceFile2); sourceFile2.setExternalModuleIndicator = setExternalModuleIndicator2; } } function setContextFlag(val, flag) { if (val) { contextFlags |= flag; } else { contextFlags &= ~flag; } } function setDisallowInContext(val) { setContextFlag(val, 8192); } function setYieldContext(val) { setContextFlag(val, 16384); } function setDecoratorContext(val) { setContextFlag(val, 32768); } function setAwaitContext(val) { setContextFlag(val, 65536); } function doOutsideOfContext(context, func) { const contextFlagsToClear = context & contextFlags; if (contextFlagsToClear) { setContextFlag(false, contextFlagsToClear); const result = func(); setContextFlag(true, contextFlagsToClear); return result; } return func(); } function doInsideOfContext(context, func) { const contextFlagsToSet = context & ~contextFlags; if (contextFlagsToSet) { setContextFlag(true, contextFlagsToSet); const result = func(); setContextFlag(false, contextFlagsToSet); return result; } return func(); } function allowInAnd(func) { return doOutsideOfContext(8192, func); } function disallowInAnd(func) { return doInsideOfContext(8192, func); } function allowConditionalTypesAnd(func) { return doOutsideOfContext(131072, func); } function disallowConditionalTypesAnd(func) { return doInsideOfContext(131072, func); } function doInYieldContext(func) { return doInsideOfContext(16384, func); } function doInDecoratorContext(func) { return doInsideOfContext(32768, func); } function doInAwaitContext(func) { return doInsideOfContext(65536, func); } function doOutsideOfAwaitContext(func) { return doOutsideOfContext(65536, func); } function doInYieldAndAwaitContext(func) { return doInsideOfContext(16384 | 65536, func); } function doOutsideOfYieldAndAwaitContext(func) { return doOutsideOfContext(16384 | 65536, func); } function inContext(flags) { return (contextFlags & flags) !== 0; } function inYieldContext() { return inContext(16384); } function inDisallowInContext() { return inContext(8192); } function inDisallowConditionalTypesContext() { return inContext(131072); } function inDecoratorContext() { return inContext(32768); } function inAwaitContext() { return inContext(65536); } function parseErrorAtCurrentToken(message, ...args) { return parseErrorAt(scanner2.getTokenStart(), scanner2.getTokenEnd(), message, ...args); } function parseErrorAtPosition(start, length2, message, ...args) { const lastError = lastOrUndefined(parseDiagnostics); let result; if (!lastError || start !== lastError.start) { result = createDetachedDiagnostic(fileName, sourceText, start, length2, message, ...args); parseDiagnostics.push(result); } parseErrorBeforeNextFinishedNode = true; return result; } function parseErrorAt(start, end, message, ...args) { return parseErrorAtPosition(start, end - start, message, ...args); } function parseErrorAtRange(range, message, ...args) { parseErrorAt(range.pos, range.end, message, ...args); } function scanError(message, length2, arg0) { parseErrorAtPosition(scanner2.getTokenEnd(), length2, message, arg0); } function getNodePos() { return scanner2.getTokenFullStart(); } function hasPrecedingJSDocComment() { return scanner2.hasPrecedingJSDocComment(); } function token() { return currentToken; } function nextTokenWithoutCheck() { return currentToken = scanner2.scan(); } function nextTokenAnd(func) { nextToken(); return func(); } function nextToken() { if (isKeyword(currentToken) && (scanner2.hasUnicodeEscape() || scanner2.hasExtendedUnicodeEscape())) { parseErrorAt(scanner2.getTokenStart(), scanner2.getTokenEnd(), Diagnostics.Keywords_cannot_contain_escape_characters); } return nextTokenWithoutCheck(); } function nextTokenJSDoc() { return currentToken = scanner2.scanJsDocToken(); } function nextJSDocCommentTextToken(inBackticks) { return currentToken = scanner2.scanJSDocCommentTextToken(inBackticks); } function reScanGreaterToken() { return currentToken = scanner2.reScanGreaterToken(); } function reScanSlashToken() { return currentToken = scanner2.reScanSlashToken(); } function reScanTemplateToken(isTaggedTemplate) { return currentToken = scanner2.reScanTemplateToken(isTaggedTemplate); } function reScanLessThanToken() { return currentToken = scanner2.reScanLessThanToken(); } function reScanHashToken() { return currentToken = scanner2.reScanHashToken(); } function scanJsxIdentifier() { return currentToken = scanner2.scanJsxIdentifier(); } function scanJsxText() { return currentToken = scanner2.scanJsxToken(); } function scanJsxAttributeValue() { return currentToken = scanner2.scanJsxAttributeValue(); } function speculationHelper(callback, speculationKind) { const saveToken = currentToken; const saveParseDiagnosticsLength = parseDiagnostics.length; const saveParseErrorBeforeNextFinishedNode = parseErrorBeforeNextFinishedNode; const saveContextFlags = contextFlags; const result = speculationKind !== 0 ? scanner2.lookAhead(callback) : scanner2.tryScan(callback); Debug.assert(saveContextFlags === contextFlags); if (!result || speculationKind !== 0) { currentToken = saveToken; if (speculationKind !== 2) { parseDiagnostics.length = saveParseDiagnosticsLength; } parseErrorBeforeNextFinishedNode = saveParseErrorBeforeNextFinishedNode; } return result; } function lookAhead(callback) { return speculationHelper(callback, 1); } function tryParse(callback) { return speculationHelper(callback, 0); } function isBindingIdentifier() { if (token() === 80) { return true; } return token() > 118; } function isIdentifier2() { if (token() === 80) { return true; } if (token() === 127 && inYieldContext()) { return false; } if (token() === 135 && inAwaitContext()) { return false; } return token() > 118; } function parseExpected(kind, diagnosticMessage, shouldAdvance = true) { if (token() === kind) { if (shouldAdvance) { nextToken(); } return true; } if (diagnosticMessage) { parseErrorAtCurrentToken(diagnosticMessage); } else { parseErrorAtCurrentToken(Diagnostics._0_expected, tokenToString(kind)); } return false; } const viableKeywordSuggestions = Object.keys(textToKeywordObj).filter((keyword) => keyword.length > 2); function parseErrorForMissingSemicolonAfter(node) { if (isTaggedTemplateExpression(node)) { parseErrorAt(skipTrivia2(sourceText, node.template.pos), node.template.end, Diagnostics.Module_declaration_names_may_only_use_or_quoted_strings); return; } const expressionText = isIdentifier(node) ? idText(node) : undefined; if (!expressionText || !isIdentifierText(expressionText, languageVersion)) { parseErrorAtCurrentToken(Diagnostics._0_expected, tokenToString(27)); return; } const pos = skipTrivia2(sourceText, node.pos); switch (expressionText) { case "const": case "let": case "var": parseErrorAt(pos, node.end, Diagnostics.Variable_declaration_not_allowed_at_this_location); return; case "declare": return; case "interface": parseErrorForInvalidName(Diagnostics.Interface_name_cannot_be_0, Diagnostics.Interface_must_be_given_a_name, 19); return; case "is": parseErrorAt(pos, scanner2.getTokenStart(), Diagnostics.A_type_predicate_is_only_allowed_in_return_type_position_for_functions_and_methods); return; case "module": case "namespace": parseErrorForInvalidName(Diagnostics.Namespace_name_cannot_be_0, Diagnostics.Namespace_must_be_given_a_name, 19); return; case "type": parseErrorForInvalidName(Diagnostics.Type_alias_name_cannot_be_0, Diagnostics.Type_alias_must_be_given_a_name, 64); return; } const suggestion = getSpellingSuggestion(expressionText, viableKeywordSuggestions, identity) ?? getSpaceSuggestion(expressionText); if (suggestion) { parseErrorAt(pos, node.end, Diagnostics.Unknown_keyword_or_identifier_Did_you_mean_0, suggestion); return; } if (token() === 0) { return; } parseErrorAt(pos, node.end, Diagnostics.Unexpected_keyword_or_identifier); } function parseErrorForInvalidName(nameDiagnostic, blankDiagnostic, tokenIfBlankName) { if (token() === tokenIfBlankName) { parseErrorAtCurrentToken(blankDiagnostic); } else { parseErrorAtCurrentToken(nameDiagnostic, scanner2.getTokenValue()); } } function getSpaceSuggestion(expressionText) { for (const keyword of viableKeywordSuggestions) { if (expressionText.length > keyword.length + 2 && startsWith(expressionText, keyword)) { return `${keyword} ${expressionText.slice(keyword.length)}`; } } return; } function parseSemicolonAfterPropertyName(name, type, initializer) { if (token() === 60 && !scanner2.hasPrecedingLineBreak()) { parseErrorAtCurrentToken(Diagnostics.Decorators_must_precede_the_name_and_all_keywords_of_property_declarations); return; } if (token() === 21) { parseErrorAtCurrentToken(Diagnostics.Cannot_start_a_function_call_in_a_type_annotation); nextToken(); return; } if (type && !canParseSemicolon()) { if (initializer) { parseErrorAtCurrentToken(Diagnostics._0_expected, tokenToString(27)); } else { parseErrorAtCurrentToken(Diagnostics.Expected_for_property_initializer); } return; } if (tryParseSemicolon()) { return; } if (initializer) { parseErrorAtCurrentToken(Diagnostics._0_expected, tokenToString(27)); return; } parseErrorForMissingSemicolonAfter(name); } function parseExpectedJSDoc(kind) { if (token() === kind) { nextTokenJSDoc(); return true; } Debug.assert(isKeywordOrPunctuation(kind)); parseErrorAtCurrentToken(Diagnostics._0_expected, tokenToString(kind)); return false; } function parseExpectedMatchingBrackets(openKind, closeKind, openParsed, openPosition) { if (token() === closeKind) { nextToken(); return; } const lastError = parseErrorAtCurrentToken(Diagnostics._0_expected, tokenToString(closeKind)); if (!openParsed) { return; } if (lastError) { addRelatedInfo(lastError, createDetachedDiagnostic(fileName, sourceText, openPosition, 1, Diagnostics.The_parser_expected_to_find_a_1_to_match_the_0_token_here, tokenToString(openKind), tokenToString(closeKind))); } } function parseOptional(t) { if (token() === t) { nextToken(); return true; } return false; } function parseOptionalToken(t) { if (token() === t) { return parseTokenNode(); } return; } function parseOptionalTokenJSDoc(t) { if (token() === t) { return parseTokenNodeJSDoc(); } return; } function parseExpectedToken(t, diagnosticMessage, arg0) { return parseOptionalToken(t) || createMissingNode(t, false, diagnosticMessage || Diagnostics._0_expected, arg0 || tokenToString(t)); } function parseExpectedTokenJSDoc(t) { const optional = parseOptionalTokenJSDoc(t); if (optional) return optional; Debug.assert(isKeywordOrPunctuation(t)); return createMissingNode(t, false, Diagnostics._0_expected, tokenToString(t)); } function parseTokenNode() { const pos = getNodePos(); const kind = token(); nextToken(); return finishNode(factoryCreateToken(kind), pos); } function parseTokenNodeJSDoc() { const pos = getNodePos(); const kind = token(); nextTokenJSDoc(); return finishNode(factoryCreateToken(kind), pos); } function canParseSemicolon() { if (token() === 27) { return true; } return token() === 20 || token() === 1 || scanner2.hasPrecedingLineBreak(); } function tryParseSemicolon() { if (!canParseSemicolon()) { return false; } if (token() === 27) { nextToken(); } return true; } function parseSemicolon() { return tryParseSemicolon() || parseExpected(27); } function createNodeArray(elements, pos, end, hasTrailingComma) { const array = factoryCreateNodeArray(elements, hasTrailingComma); setTextRangePosEnd(array, pos, end ?? scanner2.getTokenFullStart()); return array; } function finishNode(node, pos, end) { setTextRangePosEnd(node, pos, end ?? scanner2.getTokenFullStart()); if (contextFlags) { node.flags |= contextFlags; } if (parseErrorBeforeNextFinishedNode) { parseErrorBeforeNextFinishedNode = false; node.flags |= 262144; } return node; } function createMissingNode(kind, reportAtCurrentPosition, diagnosticMessage, ...args) { if (reportAtCurrentPosition) { parseErrorAtPosition(scanner2.getTokenFullStart(), 0, diagnosticMessage, ...args); } else if (diagnosticMessage) { parseErrorAtCurrentToken(diagnosticMessage, ...args); } const pos = getNodePos(); const result = kind === 80 ? factoryCreateIdentifier("", undefined) : isTemplateLiteralKind(kind) ? factory2.createTemplateLiteralLikeNode(kind, "", "", undefined) : kind === 9 ? factoryCreateNumericLiteral("", undefined) : kind === 11 ? factoryCreateStringLiteral("", undefined) : kind === 283 ? factory2.createMissingDeclaration() : factoryCreateToken(kind); return finishNode(result, pos); } function internIdentifier(text) { let identifier = identifiers.get(text); if (identifier === undefined) { identifiers.set(text, identifier = text); } return identifier; } function createIdentifier(isIdentifier3, diagnosticMessage, privateIdentifierDiagnosticMessage) { if (isIdentifier3) { identifierCount++; const pos = scanner2.hasPrecedingJSDocLeadingAsterisks() ? scanner2.getTokenStart() : getNodePos(); const originalKeywordKind = token(); const text = internIdentifier(scanner2.getTokenValue()); const hasExtendedUnicodeEscape = scanner2.hasExtendedUnicodeEscape(); nextTokenWithoutCheck(); return finishNode(factoryCreateIdentifier(text, originalKeywordKind, hasExtendedUnicodeEscape), pos); } if (token() === 81) { parseErrorAtCurrentToken(privateIdentifierDiagnosticMessage || Diagnostics.Private_identifiers_are_not_allowed_outside_class_bodies); return createIdentifier(true); } if (token() === 0 && scanner2.tryScan(() => scanner2.reScanInvalidIdentifier() === 80)) { return createIdentifier(true); } identifierCount++; const reportAtCurrentPosition = token() === 1; const isReservedWord = scanner2.isReservedWord(); const msgArg = scanner2.getTokenText(); const defaultMessage = isReservedWord ? Diagnostics.Identifier_expected_0_is_a_reserved_word_that_cannot_be_used_here : Diagnostics.Identifier_expected; return createMissingNode(80, reportAtCurrentPosition, diagnosticMessage || defaultMessage, msgArg); } function parseBindingIdentifier(privateIdentifierDiagnosticMessage) { return createIdentifier(isBindingIdentifier(), undefined, privateIdentifierDiagnosticMessage); } function parseIdentifier(diagnosticMessage, privateIdentifierDiagnosticMessage) { return createIdentifier(isIdentifier2(), diagnosticMessage, privateIdentifierDiagnosticMessage); } function parseIdentifierName(diagnosticMessage) { return createIdentifier(tokenIsIdentifierOrKeyword(token()), diagnosticMessage); } function parseIdentifierNameErrorOnUnicodeEscapeSequence() { if (scanner2.hasUnicodeEscape() || scanner2.hasExtendedUnicodeEscape()) { parseErrorAtCurrentToken(Diagnostics.Unicode_escape_sequence_cannot_appear_here); } return createIdentifier(tokenIsIdentifierOrKeyword(token())); } function isLiteralPropertyName() { return tokenIsIdentifierOrKeyword(token()) || token() === 11 || token() === 9 || token() === 10; } function isImportAttributeName2() { return tokenIsIdentifierOrKeyword(token()) || token() === 11; } function parsePropertyNameWorker(allowComputedPropertyNames) { if (token() === 11 || token() === 9 || token() === 10) { const node = parseLiteralNode(); node.text = internIdentifier(node.text); return node; } if (allowComputedPropertyNames && token() === 23) { return parseComputedPropertyName(); } if (token() === 81) { return parsePrivateIdentifier(); } return parseIdentifierName(); } function parsePropertyName() { return parsePropertyNameWorker(true); } function parseComputedPropertyName() { const pos = getNodePos(); parseExpected(23); const expression = allowInAnd(parseExpression); parseExpected(24); return finishNode(factory2.createComputedPropertyName(expression), pos); } function parsePrivateIdentifier() { const pos = getNodePos(); const node = factoryCreatePrivateIdentifier(internIdentifier(scanner2.getTokenValue())); nextToken(); return finishNode(node, pos); } function parseContextualModifier(t) { return token() === t && tryParse(nextTokenCanFollowModifier); } function nextTokenIsOnSameLineAndCanFollowModifier() { nextToken(); if (scanner2.hasPrecedingLineBreak()) { return false; } return canFollowModifier(); } function nextTokenCanFollowModifier() { switch (token()) { case 87: return nextToken() === 94; case 95: nextToken(); if (token() === 90) { return lookAhead(nextTokenCanFollowDefaultKeyword); } if (token() === 156) { return lookAhead(nextTokenCanFollowExportModifier); } return canFollowExportModifier(); case 90: return nextTokenCanFollowDefaultKeyword(); case 126: nextToken(); return canFollowModifier(); case 139: case 153: nextToken(); return canFollowGetOrSetKeyword(); default: return nextTokenIsOnSameLineAndCanFollowModifier(); } } function canFollowExportModifier() { return token() === 60 || token() !== 42 && token() !== 130 && token() !== 19 && canFollowModifier(); } function nextTokenCanFollowExportModifier() { nextToken(); return canFollowExportModifier(); } function parseAnyContextualModifier() { return isModifierKind(token()) && tryParse(nextTokenCanFollowModifier); } function canFollowModifier() { return token() === 23 || token() === 19 || token() === 42 || token() === 26 || isLiteralPropertyName(); } function canFollowGetOrSetKeyword() { return token() === 23 || isLiteralPropertyName(); } function nextTokenCanFollowDefaultKeyword() { nextToken(); return token() === 86 || token() === 100 || token() === 120 || token() === 60 || token() === 128 && lookAhead(nextTokenIsClassKeywordOnSameLine) || token() === 134 && lookAhead(nextTokenIsFunctionKeywordOnSameLine); } function isListElement2(parsingContext2, inErrorRecovery) { const node = currentNode(parsingContext2); if (node) { return true; } switch (parsingContext2) { case 0: case 1: case 3: return !(token() === 27 && inErrorRecovery) && isStartOfStatement(); case 2: return token() === 84 || token() === 90; case 4: return lookAhead(isTypeMemberStart); case 5: return lookAhead(isClassMemberStart) || token() === 27 && !inErrorRecovery; case 6: return token() === 23 || isLiteralPropertyName(); case 12: switch (token()) { case 23: case 42: case 26: case 25: return true; default: return isLiteralPropertyName(); } case 18: return isLiteralPropertyName(); case 9: return token() === 23 || token() === 26 || isLiteralPropertyName(); case 24: return isImportAttributeName2(); case 7: if (token() === 19) { return lookAhead(isValidHeritageClauseObjectLiteral); } if (!inErrorRecovery) { return isStartOfLeftHandSideExpression() && !isHeritageClauseExtendsOrImplementsKeyword(); } else { return isIdentifier2() && !isHeritageClauseExtendsOrImplementsKeyword(); } case 8: return isBindingIdentifierOrPrivateIdentifierOrPattern(); case 10: return token() === 28 || token() === 26 || isBindingIdentifierOrPrivateIdentifierOrPattern(); case 19: return token() === 103 || token() === 87 || isIdentifier2(); case 15: switch (token()) { case 28: case 25: return true; } case 11: return token() === 26 || isStartOfExpression(); case 16: return isStartOfParameter(false); case 17: return isStartOfParameter(true); case 20: case 21: return token() === 28 || isStartOfType(); case 22: return isHeritageClause2(); case 23: if (token() === 161 && lookAhead(nextTokenIsStringLiteral)) { return false; } if (token() === 11) { return true; } return tokenIsIdentifierOrKeyword(token()); case 13: return tokenIsIdentifierOrKeyword(token()) || token() === 19; case 14: return true; case 25: return true; case 26: return Debug.fail("ParsingContext.Count used as a context"); default: Debug.assertNever(parsingContext2, "Non-exhaustive case in 'isListElement'."); } } function isValidHeritageClauseObjectLiteral() { Debug.assert(token() === 19); if (nextToken() === 20) { const next = nextToken(); return next === 28 || next === 19 || next === 96 || next === 119; } return true; } function nextTokenIsIdentifier() { nextToken(); return isIdentifier2(); } function nextTokenIsIdentifierOrKeyword() { nextToken(); return tokenIsIdentifierOrKeyword(token()); } function nextTokenIsIdentifierOrKeywordOrGreaterThan() { nextToken(); return tokenIsIdentifierOrKeywordOrGreaterThan(token()); } function isHeritageClauseExtendsOrImplementsKeyword() { if (token() === 119 || token() === 96) { return lookAhead(nextTokenIsStartOfExpression); } return false; } function nextTokenIsStartOfExpression() { nextToken(); return isStartOfExpression(); } function nextTokenIsStartOfType() { nextToken(); return isStartOfType(); } function isListTerminator(kind) { if (token() === 1) { return true; } switch (kind) { case 1: case 2: case 4: case 5: case 6: case 12: case 9: case 23: case 24: return token() === 20; case 3: return token() === 20 || token() === 84 || token() === 90; case 7: return token() === 19 || token() === 96 || token() === 119; case 8: return isVariableDeclaratorListTerminator(); case 19: return token() === 32 || token() === 21 || token() === 19 || token() === 96 || token() === 119; case 11: return token() === 22 || token() === 27; case 15: case 21: case 10: return token() === 24; case 17: case 16: case 18: return token() === 22 || token() === 24; case 20: return token() !== 28; case 22: return token() === 19 || token() === 20; case 13: return token() === 32 || token() === 44; case 14: return token() === 30 && lookAhead(nextTokenIsSlash); default: return false; } } function isVariableDeclaratorListTerminator() { if (canParseSemicolon()) { return true; } if (isInOrOfKeyword(token())) { return true; } if (token() === 39) { return true; } return false; } function isInSomeParsingContext() { Debug.assert(parsingContext, "Missing parsing context"); for (let kind = 0;kind < 26; kind++) { if (parsingContext & 1 << kind) { if (isListElement2(kind, true) || isListTerminator(kind)) { return true; } } } return false; } function parseList(kind, parseElement) { const saveParsingContext = parsingContext; parsingContext |= 1 << kind; const list = []; const listPos = getNodePos(); while (!isListTerminator(kind)) { if (isListElement2(kind, false)) { list.push(parseListElement(kind, parseElement)); continue; } if (abortParsingListOrMoveToNextToken(kind)) { break; } } parsingContext = saveParsingContext; return createNodeArray(list, listPos); } function parseListElement(parsingContext2, parseElement) { const node = currentNode(parsingContext2); if (node) { return consumeNode(node); } return parseElement(); } function currentNode(parsingContext2, pos) { var _a; if (!syntaxCursor || !isReusableParsingContext(parsingContext2) || parseErrorBeforeNextFinishedNode) { return; } const node = syntaxCursor.currentNode(pos ?? scanner2.getTokenFullStart()); if (nodeIsMissing(node) || intersectsIncrementalChange(node) || containsParseError(node)) { return; } const nodeContextFlags = node.flags & 101441536; if (nodeContextFlags !== contextFlags) { return; } if (!canReuseNode(node, parsingContext2)) { return; } if (canHaveJSDoc(node) && ((_a = node.jsDoc) == null ? undefined : _a.jsDocCache)) { node.jsDoc.jsDocCache = undefined; } return node; } function consumeNode(node) { scanner2.resetTokenState(node.end); nextToken(); return node; } function isReusableParsingContext(parsingContext2) { switch (parsingContext2) { case 5: case 2: case 0: case 1: case 3: case 6: case 4: case 8: case 17: case 16: return true; } return false; } function canReuseNode(node, parsingContext2) { switch (parsingContext2) { case 5: return isReusableClassMember(node); case 2: return isReusableSwitchClause(node); case 0: case 1: case 3: return isReusableStatement(node); case 6: return isReusableEnumMember(node); case 4: return isReusableTypeMember(node); case 8: return isReusableVariableDeclaration(node); case 17: case 16: return isReusableParameter(node); } return false; } function isReusableClassMember(node) { if (node) { switch (node.kind) { case 177: case 182: case 178: case 179: case 173: case 241: return true; case 175: const methodDeclaration = node; const nameIsConstructor = methodDeclaration.name.kind === 80 && methodDeclaration.name.escapedText === "constructor"; return !nameIsConstructor; } } return false; } function isReusableSwitchClause(node) { if (node) { switch (node.kind) { case 297: case 298: return true; } } return false; } function isReusableStatement(node) { if (node) { switch (node.kind) { case 263: case 244: case 242: case 246: case 245: case 258: case 254: case 256: case 253: case 252: case 250: case 251: case 249: case 248: case 255: case 243: case 259: case 257: case 247: case 260: case 273: case 272: case 279: case 278: case 268: case 264: case 265: case 267: case 266: return true; } } return false; } function isReusableEnumMember(node) { return node.kind === 307; } function isReusableTypeMember(node) { if (node) { switch (node.kind) { case 181: case 174: case 182: case 172: case 180: return true; } } return false; } function isReusableVariableDeclaration(node) { if (node.kind !== 261) { return false; } const variableDeclarator = node; return variableDeclarator.initializer === undefined; } function isReusableParameter(node) { if (node.kind !== 170) { return false; } const parameter = node; return parameter.initializer === undefined; } function abortParsingListOrMoveToNextToken(kind) { parsingContextErrors(kind); if (isInSomeParsingContext()) { return true; } nextToken(); return false; } function parsingContextErrors(context) { switch (context) { case 0: return token() === 90 ? parseErrorAtCurrentToken(Diagnostics._0_expected, tokenToString(95)) : parseErrorAtCurrentToken(Diagnostics.Declaration_or_statement_expected); case 1: return parseErrorAtCurrentToken(Diagnostics.Declaration_or_statement_expected); case 2: return parseErrorAtCurrentToken(Diagnostics.case_or_default_expected); case 3: return parseErrorAtCurrentToken(Diagnostics.Statement_expected); case 18: case 4: return parseErrorAtCurrentToken(Diagnostics.Property_or_signature_expected); case 5: return parseErrorAtCurrentToken(Diagnostics.Unexpected_token_A_constructor_method_accessor_or_property_was_expected); case 6: return parseErrorAtCurrentToken(Diagnostics.Enum_member_expected); case 7: return parseErrorAtCurrentToken(Diagnostics.Expression_expected); case 8: return isKeyword(token()) ? parseErrorAtCurrentToken(Diagnostics._0_is_not_allowed_as_a_variable_declaration_name, tokenToString(token())) : parseErrorAtCurrentToken(Diagnostics.Variable_declaration_expected); case 9: return parseErrorAtCurrentToken(Diagnostics.Property_destructuring_pattern_expected); case 10: return parseErrorAtCurrentToken(Diagnostics.Array_element_destructuring_pattern_expected); case 11: return parseErrorAtCurrentToken(Diagnostics.Argument_expression_expected); case 12: return parseErrorAtCurrentToken(Diagnostics.Property_assignment_expected); case 15: return parseErrorAtCurrentToken(Diagnostics.Expression_or_comma_expected); case 17: return parseErrorAtCurrentToken(Diagnostics.Parameter_declaration_expected); case 16: return isKeyword(token()) ? parseErrorAtCurrentToken(Diagnostics._0_is_not_allowed_as_a_parameter_name, tokenToString(token())) : parseErrorAtCurrentToken(Diagnostics.Parameter_declaration_expected); case 19: return parseErrorAtCurrentToken(Diagnostics.Type_parameter_declaration_expected); case 20: return parseErrorAtCurrentToken(Diagnostics.Type_argument_expected); case 21: return parseErrorAtCurrentToken(Diagnostics.Type_expected); case 22: return parseErrorAtCurrentToken(Diagnostics.Unexpected_token_expected); case 23: if (token() === 161) { return parseErrorAtCurrentToken(Diagnostics._0_expected, "}"); } return parseErrorAtCurrentToken(Diagnostics.Identifier_expected); case 13: return parseErrorAtCurrentToken(Diagnostics.Identifier_expected); case 14: return parseErrorAtCurrentToken(Diagnostics.Identifier_expected); case 24: return parseErrorAtCurrentToken(Diagnostics.Identifier_or_string_literal_expected); case 25: return parseErrorAtCurrentToken(Diagnostics.Identifier_expected); case 26: return Debug.fail("ParsingContext.Count used as a context"); default: Debug.assertNever(context); } } function parseDelimitedList(kind, parseElement, considerSemicolonAsDelimiter) { const saveParsingContext = parsingContext; parsingContext |= 1 << kind; const list = []; const listPos = getNodePos(); let commaStart = -1; while (true) { if (isListElement2(kind, false)) { const startPos = scanner2.getTokenFullStart(); const result = parseListElement(kind, parseElement); if (!result) { parsingContext = saveParsingContext; return; } list.push(result); commaStart = scanner2.getTokenStart(); if (parseOptional(28)) { continue; } commaStart = -1; if (isListTerminator(kind)) { break; } parseExpected(28, getExpectedCommaDiagnostic(kind)); if (considerSemicolonAsDelimiter && token() === 27 && !scanner2.hasPrecedingLineBreak()) { nextToken(); } if (startPos === scanner2.getTokenFullStart()) { nextToken(); } continue; } if (isListTerminator(kind)) { break; } if (abortParsingListOrMoveToNextToken(kind)) { break; } } parsingContext = saveParsingContext; return createNodeArray(list, listPos, undefined, commaStart >= 0); } function getExpectedCommaDiagnostic(kind) { return kind === 6 ? Diagnostics.An_enum_member_name_must_be_followed_by_a_or : undefined; } function createMissingList() { const list = createNodeArray([], getNodePos()); list.isMissingList = true; return list; } function isMissingList(arr) { return !!arr.isMissingList; } function parseBracketedList(kind, parseElement, open, close) { if (parseExpected(open)) { const result = parseDelimitedList(kind, parseElement); parseExpected(close); return result; } return createMissingList(); } function parseEntityName(allowReservedWords, diagnosticMessage) { const pos = getNodePos(); let entity = allowReservedWords ? parseIdentifierName(diagnosticMessage) : parseIdentifier(diagnosticMessage); while (parseOptional(25)) { if (token() === 30) { break; } entity = finishNode(factory2.createQualifiedName(entity, parseRightSideOfDot(allowReservedWords, false, true)), pos); } return entity; } function createQualifiedName(entity, name) { return finishNode(factory2.createQualifiedName(entity, name), entity.pos); } function parseRightSideOfDot(allowIdentifierNames, allowPrivateIdentifiers, allowUnicodeEscapeSequenceInIdentifierName) { if (scanner2.hasPrecedingLineBreak() && tokenIsIdentifierOrKeyword(token())) { const matchesPattern = lookAhead(nextTokenIsIdentifierOrKeywordOnSameLine); if (matchesPattern) { return createMissingNode(80, true, Diagnostics.Identifier_expected); } } if (token() === 81) { const node = parsePrivateIdentifier(); return allowPrivateIdentifiers ? node : createMissingNode(80, true, Diagnostics.Identifier_expected); } if (allowIdentifierNames) { return allowUnicodeEscapeSequenceInIdentifierName ? parseIdentifierName() : parseIdentifierNameErrorOnUnicodeEscapeSequence(); } return parseIdentifier(); } function parseTemplateSpans(isTaggedTemplate) { const pos = getNodePos(); const list = []; let node; do { node = parseTemplateSpan(isTaggedTemplate); list.push(node); } while (node.literal.kind === 17); return createNodeArray(list, pos); } function parseTemplateExpression(isTaggedTemplate) { const pos = getNodePos(); return finishNode(factory2.createTemplateExpression(parseTemplateHead(isTaggedTemplate), parseTemplateSpans(isTaggedTemplate)), pos); } function parseTemplateType() { const pos = getNodePos(); return finishNode(factory2.createTemplateLiteralType(parseTemplateHead(false), parseTemplateTypeSpans()), pos); } function parseTemplateTypeSpans() { const pos = getNodePos(); const list = []; let node; do { node = parseTemplateTypeSpan(); list.push(node); } while (node.literal.kind === 17); return createNodeArray(list, pos); } function parseTemplateTypeSpan() { const pos = getNodePos(); return finishNode(factory2.createTemplateLiteralTypeSpan(parseType(), parseLiteralOfTemplateSpan(false)), pos); } function parseLiteralOfTemplateSpan(isTaggedTemplate) { if (token() === 20) { reScanTemplateToken(isTaggedTemplate); return parseTemplateMiddleOrTemplateTail(); } else { return parseExpectedToken(18, Diagnostics._0_expected, tokenToString(20)); } } function parseTemplateSpan(isTaggedTemplate) { const pos = getNodePos(); return finishNode(factory2.createTemplateSpan(allowInAnd(parseExpression), parseLiteralOfTemplateSpan(isTaggedTemplate)), pos); } function parseLiteralNode() { return parseLiteralLikeNode(token()); } function parseTemplateHead(isTaggedTemplate) { if (!isTaggedTemplate && scanner2.getTokenFlags() & 26656) { reScanTemplateToken(false); } const fragment = parseLiteralLikeNode(token()); Debug.assert(fragment.kind === 16, "Template head has wrong token kind"); return fragment; } function parseTemplateMiddleOrTemplateTail() { const fragment = parseLiteralLikeNode(token()); Debug.assert(fragment.kind === 17 || fragment.kind === 18, "Template fragment has wrong token kind"); return fragment; } function getTemplateLiteralRawText(kind) { const isLast = kind === 15 || kind === 18; const tokenText = scanner2.getTokenText(); return tokenText.substring(1, tokenText.length - (scanner2.isUnterminated() ? 0 : isLast ? 1 : 2)); } function parseLiteralLikeNode(kind) { const pos = getNodePos(); const node = isTemplateLiteralKind(kind) ? factory2.createTemplateLiteralLikeNode(kind, scanner2.getTokenValue(), getTemplateLiteralRawText(kind), scanner2.getTokenFlags() & 7176) : kind === 9 ? factoryCreateNumericLiteral(scanner2.getTokenValue(), scanner2.getNumericLiteralFlags()) : kind === 11 ? factoryCreateStringLiteral(scanner2.getTokenValue(), undefined, scanner2.hasExtendedUnicodeEscape()) : isLiteralKind(kind) ? factoryCreateLiteralLikeNode(kind, scanner2.getTokenValue()) : Debug.fail(); if (scanner2.hasExtendedUnicodeEscape()) { node.hasExtendedUnicodeEscape = true; } if (scanner2.isUnterminated()) { node.isUnterminated = true; } nextToken(); return finishNode(node, pos); } function parseEntityNameOfTypeReference() { return parseEntityName(true, Diagnostics.Type_expected); } function parseTypeArgumentsOfTypeReference() { if (!scanner2.hasPrecedingLineBreak() && reScanLessThanToken() === 30) { return parseBracketedList(20, parseType, 30, 32); } } function parseTypeReference() { const pos = getNodePos(); return finishNode(factory2.createTypeReferenceNode(parseEntityNameOfTypeReference(), parseTypeArgumentsOfTypeReference()), pos); } function typeHasArrowFunctionBlockingParseError(node) { switch (node.kind) { case 184: return nodeIsMissing(node.typeName); case 185: case 186: { const { parameters, type } = node; return isMissingList(parameters) || typeHasArrowFunctionBlockingParseError(type); } case 197: return typeHasArrowFunctionBlockingParseError(node.type); default: return false; } } function parseThisTypePredicate(lhs) { nextToken(); return finishNode(factory2.createTypePredicateNode(undefined, lhs, parseType()), lhs.pos); } function parseThisTypeNode() { const pos = getNodePos(); nextToken(); return finishNode(factory2.createThisTypeNode(), pos); } function parseJSDocAllType() { const pos = getNodePos(); nextToken(); return finishNode(factory2.createJSDocAllType(), pos); } function parseJSDocNonNullableType() { const pos = getNodePos(); nextToken(); return finishNode(factory2.createJSDocNonNullableType(parseNonArrayType(), false), pos); } function parseJSDocUnknownOrNullableType() { const pos = getNodePos(); nextToken(); if (token() === 28 || token() === 20 || token() === 22 || token() === 32 || token() === 64 || token() === 52) { return finishNode(factory2.createJSDocUnknownType(), pos); } else { return finishNode(factory2.createJSDocNullableType(parseType(), false), pos); } } function parseJSDocFunctionType() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); if (tryParse(nextTokenIsOpenParen)) { const parameters = parseParameters2(4 | 32); const type = parseReturnType(59, false); return withJSDoc(finishNode(factory2.createJSDocFunctionType(parameters, type), pos), hasJSDoc); } return finishNode(factory2.createTypeReferenceNode(parseIdentifierName(), undefined), pos); } function parseJSDocParameter() { const pos = getNodePos(); let name; if (token() === 110 || token() === 105) { name = parseIdentifierName(); parseExpected(59); } return finishNode(factory2.createParameterDeclaration(undefined, undefined, name, undefined, parseJSDocType(), undefined), pos); } function parseJSDocType() { scanner2.setSkipJsDocLeadingAsterisks(true); const pos = getNodePos(); if (parseOptional(144)) { const moduleTag = factory2.createJSDocNamepathType(undefined); terminate: while (true) { switch (token()) { case 20: case 1: case 28: case 5: break terminate; default: nextTokenJSDoc(); } } scanner2.setSkipJsDocLeadingAsterisks(false); return finishNode(moduleTag, pos); } const hasDotDotDot = parseOptional(26); let type = parseTypeOrTypePredicate(); scanner2.setSkipJsDocLeadingAsterisks(false); if (hasDotDotDot) { type = finishNode(factory2.createJSDocVariadicType(type), pos); } if (token() === 64) { nextToken(); return finishNode(factory2.createJSDocOptionalType(type), pos); } return type; } function parseTypeQuery() { const pos = getNodePos(); parseExpected(114); const entityName = parseEntityName(true); const typeArguments = !scanner2.hasPrecedingLineBreak() ? tryParseTypeArguments() : undefined; return finishNode(factory2.createTypeQueryNode(entityName, typeArguments), pos); } function parseTypeParameter() { const pos = getNodePos(); const modifiers = parseModifiers(false, true); const name = parseIdentifier(); let constraint; let expression; if (parseOptional(96)) { if (isStartOfType() || !isStartOfExpression()) { constraint = parseType(); } else { expression = parseUnaryExpressionOrHigher(); } } const defaultType = parseOptional(64) ? parseType() : undefined; const node = factory2.createTypeParameterDeclaration(modifiers, name, constraint, defaultType); node.expression = expression; return finishNode(node, pos); } function parseTypeParameters() { if (token() === 30) { return parseBracketedList(19, parseTypeParameter, 30, 32); } } function isStartOfParameter(isJSDocParameter) { return token() === 26 || isBindingIdentifierOrPrivateIdentifierOrPattern() || isModifierKind(token()) || token() === 60 || isStartOfType(!isJSDocParameter); } function parseNameOfParameter(modifiers) { const name = parseIdentifierOrPattern(Diagnostics.Private_identifiers_cannot_be_used_as_parameters); if (getFullWidth(name) === 0 && !some(modifiers) && isModifierKind(token())) { nextToken(); } return name; } function isParameterNameStart() { return isBindingIdentifier() || token() === 23 || token() === 19; } function parseParameter(inOuterAwaitContext) { return parseParameterWorker(inOuterAwaitContext); } function parseParameterForSpeculation(inOuterAwaitContext) { return parseParameterWorker(inOuterAwaitContext, false); } function parseParameterWorker(inOuterAwaitContext, allowAmbiguity = true) { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const modifiers = inOuterAwaitContext ? doInAwaitContext(() => parseModifiers(true)) : doOutsideOfAwaitContext(() => parseModifiers(true)); if (token() === 110) { const node2 = factory2.createParameterDeclaration(modifiers, undefined, createIdentifier(true), undefined, parseTypeAnnotation(), undefined); const modifier = firstOrUndefined(modifiers); if (modifier) { parseErrorAtRange(modifier, Diagnostics.Neither_decorators_nor_modifiers_may_be_applied_to_this_parameters); } return withJSDoc(finishNode(node2, pos), hasJSDoc); } const savedTopLevel = topLevel; topLevel = false; const dotDotDotToken = parseOptionalToken(26); if (!allowAmbiguity && !isParameterNameStart()) { return; } const node = withJSDoc(finishNode(factory2.createParameterDeclaration(modifiers, dotDotDotToken, parseNameOfParameter(modifiers), parseOptionalToken(58), parseTypeAnnotation(), parseInitializer()), pos), hasJSDoc); topLevel = savedTopLevel; return node; } function parseReturnType(returnToken, isType) { if (shouldParseReturnType(returnToken, isType)) { return allowConditionalTypesAnd(parseTypeOrTypePredicate); } } function shouldParseReturnType(returnToken, isType) { if (returnToken === 39) { parseExpected(returnToken); return true; } else if (parseOptional(59)) { return true; } else if (isType && token() === 39) { parseErrorAtCurrentToken(Diagnostics._0_expected, tokenToString(59)); nextToken(); return true; } return false; } function parseParametersWorker(flags, allowAmbiguity) { const savedYieldContext = inYieldContext(); const savedAwaitContext = inAwaitContext(); setYieldContext(!!(flags & 1)); setAwaitContext(!!(flags & 2)); const parameters = flags & 32 ? parseDelimitedList(17, parseJSDocParameter) : parseDelimitedList(16, () => allowAmbiguity ? parseParameter(savedAwaitContext) : parseParameterForSpeculation(savedAwaitContext)); setYieldContext(savedYieldContext); setAwaitContext(savedAwaitContext); return parameters; } function parseParameters2(flags) { if (!parseExpected(21)) { return createMissingList(); } const parameters = parseParametersWorker(flags, true); parseExpected(22); return parameters; } function parseTypeMemberSemicolon() { if (parseOptional(28)) { return; } parseSemicolon(); } function parseSignatureMember(kind) { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); if (kind === 181) { parseExpected(105); } const typeParameters = parseTypeParameters(); const parameters = parseParameters2(4); const type = parseReturnType(59, true); parseTypeMemberSemicolon(); const node = kind === 180 ? factory2.createCallSignature(typeParameters, parameters, type) : factory2.createConstructSignature(typeParameters, parameters, type); return withJSDoc(finishNode(node, pos), hasJSDoc); } function isIndexSignature() { return token() === 23 && lookAhead(isUnambiguouslyIndexSignature); } function isUnambiguouslyIndexSignature() { nextToken(); if (token() === 26 || token() === 24) { return true; } if (isModifierKind(token())) { nextToken(); if (isIdentifier2()) { return true; } } else if (!isIdentifier2()) { return false; } else { nextToken(); } if (token() === 59 || token() === 28) { return true; } if (token() !== 58) { return false; } nextToken(); return token() === 59 || token() === 28 || token() === 24; } function parseIndexSignatureDeclaration(pos, hasJSDoc, modifiers) { const parameters = parseBracketedList(16, () => parseParameter(false), 23, 24); const type = parseTypeAnnotation(); parseTypeMemberSemicolon(); const node = factory2.createIndexSignature(modifiers, parameters, type); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parsePropertyOrMethodSignature(pos, hasJSDoc, modifiers) { const name = parsePropertyName(); const questionToken = parseOptionalToken(58); let node; if (token() === 21 || token() === 30) { const typeParameters = parseTypeParameters(); const parameters = parseParameters2(4); const type = parseReturnType(59, true); node = factory2.createMethodSignature(modifiers, name, questionToken, typeParameters, parameters, type); } else { const type = parseTypeAnnotation(); node = factory2.createPropertySignature(modifiers, name, questionToken, type); if (token() === 64) node.initializer = parseInitializer(); } parseTypeMemberSemicolon(); return withJSDoc(finishNode(node, pos), hasJSDoc); } function isTypeMemberStart() { if (token() === 21 || token() === 30 || token() === 139 || token() === 153) { return true; } let idToken = false; while (isModifierKind(token())) { idToken = true; nextToken(); } if (token() === 23) { return true; } if (isLiteralPropertyName()) { idToken = true; nextToken(); } if (idToken) { return token() === 21 || token() === 30 || token() === 58 || token() === 59 || token() === 28 || canParseSemicolon(); } return false; } function parseTypeMember() { if (token() === 21 || token() === 30) { return parseSignatureMember(180); } if (token() === 105 && lookAhead(nextTokenIsOpenParenOrLessThan)) { return parseSignatureMember(181); } const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const modifiers = parseModifiers(false); if (parseContextualModifier(139)) { return parseAccessorDeclaration(pos, hasJSDoc, modifiers, 178, 4); } if (parseContextualModifier(153)) { return parseAccessorDeclaration(pos, hasJSDoc, modifiers, 179, 4); } if (isIndexSignature()) { return parseIndexSignatureDeclaration(pos, hasJSDoc, modifiers); } return parsePropertyOrMethodSignature(pos, hasJSDoc, modifiers); } function nextTokenIsOpenParenOrLessThan() { nextToken(); return token() === 21 || token() === 30; } function nextTokenIsDot() { return nextToken() === 25; } function nextTokenIsOpenParenOrLessThanOrDot() { switch (nextToken()) { case 21: case 30: case 25: return true; } return false; } function parseTypeLiteral() { const pos = getNodePos(); return finishNode(factory2.createTypeLiteralNode(parseObjectTypeMembers()), pos); } function parseObjectTypeMembers() { let members; if (parseExpected(19)) { members = parseList(4, parseTypeMember); parseExpected(20); } else { members = createMissingList(); } return members; } function isStartOfMappedType() { nextToken(); if (token() === 40 || token() === 41) { return nextToken() === 148; } if (token() === 148) { nextToken(); } return token() === 23 && nextTokenIsIdentifier() && nextToken() === 103; } function parseMappedTypeParameter() { const pos = getNodePos(); const name = parseIdentifierName(); parseExpected(103); const type = parseType(); return finishNode(factory2.createTypeParameterDeclaration(undefined, name, type, undefined), pos); } function parseMappedType() { const pos = getNodePos(); parseExpected(19); let readonlyToken; if (token() === 148 || token() === 40 || token() === 41) { readonlyToken = parseTokenNode(); if (readonlyToken.kind !== 148) { parseExpected(148); } } parseExpected(23); const typeParameter = parseMappedTypeParameter(); const nameType = parseOptional(130) ? parseType() : undefined; parseExpected(24); let questionToken; if (token() === 58 || token() === 40 || token() === 41) { questionToken = parseTokenNode(); if (questionToken.kind !== 58) { parseExpected(58); } } const type = parseTypeAnnotation(); parseSemicolon(); const members = parseList(4, parseTypeMember); parseExpected(20); return finishNode(factory2.createMappedTypeNode(readonlyToken, typeParameter, nameType, questionToken, type, members), pos); } function parseTupleElementType() { const pos = getNodePos(); if (parseOptional(26)) { return finishNode(factory2.createRestTypeNode(parseType()), pos); } const type = parseType(); if (isJSDocNullableType(type) && type.pos === type.type.pos) { const node = factory2.createOptionalTypeNode(type.type); setTextRange(node, type); node.flags = type.flags; return node; } return type; } function isNextTokenColonOrQuestionColon() { return nextToken() === 59 || token() === 58 && nextToken() === 59; } function isTupleElementName() { if (token() === 26) { return tokenIsIdentifierOrKeyword(nextToken()) && isNextTokenColonOrQuestionColon(); } return tokenIsIdentifierOrKeyword(token()) && isNextTokenColonOrQuestionColon(); } function parseTupleElementNameOrTupleElementType() { if (lookAhead(isTupleElementName)) { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const dotDotDotToken = parseOptionalToken(26); const name = parseIdentifierName(); const questionToken = parseOptionalToken(58); parseExpected(59); const type = parseTupleElementType(); const node = factory2.createNamedTupleMember(dotDotDotToken, name, questionToken, type); return withJSDoc(finishNode(node, pos), hasJSDoc); } return parseTupleElementType(); } function parseTupleType() { const pos = getNodePos(); return finishNode(factory2.createTupleTypeNode(parseBracketedList(21, parseTupleElementNameOrTupleElementType, 23, 24)), pos); } function parseParenthesizedType() { const pos = getNodePos(); parseExpected(21); const type = parseType(); parseExpected(22); return finishNode(factory2.createParenthesizedType(type), pos); } function parseModifiersForConstructorType() { let modifiers; if (token() === 128) { const pos = getNodePos(); nextToken(); const modifier = finishNode(factoryCreateToken(128), pos); modifiers = createNodeArray([modifier], pos); } return modifiers; } function parseFunctionOrConstructorType() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const modifiers = parseModifiersForConstructorType(); const isConstructorType = parseOptional(105); Debug.assert(!modifiers || isConstructorType, "Per isStartOfFunctionOrConstructorType, a function type cannot have modifiers."); const typeParameters = parseTypeParameters(); const parameters = parseParameters2(4); const type = parseReturnType(39, false); const node = isConstructorType ? factory2.createConstructorTypeNode(modifiers, typeParameters, parameters, type) : factory2.createFunctionTypeNode(typeParameters, parameters, type); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseKeywordAndNoDot() { const node = parseTokenNode(); return token() === 25 ? undefined : node; } function parseLiteralTypeNode(negative) { const pos = getNodePos(); if (negative) { nextToken(); } let expression = token() === 112 || token() === 97 || token() === 106 ? parseTokenNode() : parseLiteralLikeNode(token()); if (negative) { expression = finishNode(factory2.createPrefixUnaryExpression(41, expression), pos); } return finishNode(factory2.createLiteralTypeNode(expression), pos); } function isStartOfTypeOfImportType() { nextToken(); return token() === 102; } function parseImportType() { sourceFlags |= 4194304; const pos = getNodePos(); const isTypeOf = parseOptional(114); parseExpected(102); parseExpected(21); const type = parseType(); let attributes; if (parseOptional(28)) { const openBracePosition = scanner2.getTokenStart(); parseExpected(19); const currentToken2 = token(); if (currentToken2 === 118 || currentToken2 === 132) { nextToken(); } else { parseErrorAtCurrentToken(Diagnostics._0_expected, tokenToString(118)); } parseExpected(59); attributes = parseImportAttributes(currentToken2, true); parseOptional(28); if (!parseExpected(20)) { const lastError = lastOrUndefined(parseDiagnostics); if (lastError && lastError.code === Diagnostics._0_expected.code) { addRelatedInfo(lastError, createDetachedDiagnostic(fileName, sourceText, openBracePosition, 1, Diagnostics.The_parser_expected_to_find_a_1_to_match_the_0_token_here, "{", "}")); } } } parseExpected(22); const qualifier = parseOptional(25) ? parseEntityNameOfTypeReference() : undefined; const typeArguments = parseTypeArgumentsOfTypeReference(); return finishNode(factory2.createImportTypeNode(type, attributes, qualifier, typeArguments, isTypeOf), pos); } function nextTokenIsNumericOrBigIntLiteral() { nextToken(); return token() === 9 || token() === 10; } function parseNonArrayType() { switch (token()) { case 133: case 159: case 154: case 150: case 163: case 155: case 136: case 157: case 146: case 151: return tryParse(parseKeywordAndNoDot) || parseTypeReference(); case 67: scanner2.reScanAsteriskEqualsToken(); case 42: return parseJSDocAllType(); case 61: scanner2.reScanQuestionToken(); case 58: return parseJSDocUnknownOrNullableType(); case 100: return parseJSDocFunctionType(); case 54: return parseJSDocNonNullableType(); case 15: case 11: case 9: case 10: case 112: case 97: case 106: return parseLiteralTypeNode(); case 41: return lookAhead(nextTokenIsNumericOrBigIntLiteral) ? parseLiteralTypeNode(true) : parseTypeReference(); case 116: return parseTokenNode(); case 110: { const thisKeyword = parseThisTypeNode(); if (token() === 142 && !scanner2.hasPrecedingLineBreak()) { return parseThisTypePredicate(thisKeyword); } else { return thisKeyword; } } case 114: return lookAhead(isStartOfTypeOfImportType) ? parseImportType() : parseTypeQuery(); case 19: return lookAhead(isStartOfMappedType) ? parseMappedType() : parseTypeLiteral(); case 23: return parseTupleType(); case 21: return parseParenthesizedType(); case 102: return parseImportType(); case 131: return lookAhead(nextTokenIsIdentifierOrKeywordOnSameLine) ? parseAssertsTypePredicate() : parseTypeReference(); case 16: return parseTemplateType(); default: return parseTypeReference(); } } function isStartOfType(inStartOfParameter) { switch (token()) { case 133: case 159: case 154: case 150: case 163: case 136: case 148: case 155: case 158: case 116: case 157: case 106: case 110: case 114: case 146: case 19: case 23: case 30: case 52: case 51: case 105: case 11: case 9: case 10: case 112: case 97: case 151: case 42: case 58: case 54: case 26: case 140: case 102: case 131: case 15: case 16: return true; case 100: return !inStartOfParameter; case 41: return !inStartOfParameter && lookAhead(nextTokenIsNumericOrBigIntLiteral); case 21: return !inStartOfParameter && lookAhead(isStartOfParenthesizedOrFunctionType); default: return isIdentifier2(); } } function isStartOfParenthesizedOrFunctionType() { nextToken(); return token() === 22 || isStartOfParameter(false) || isStartOfType(); } function parsePostfixTypeOrHigher() { const pos = getNodePos(); let type = parseNonArrayType(); while (!scanner2.hasPrecedingLineBreak()) { switch (token()) { case 54: nextToken(); type = finishNode(factory2.createJSDocNonNullableType(type, true), pos); break; case 58: if (lookAhead(nextTokenIsStartOfType)) { return type; } nextToken(); type = finishNode(factory2.createJSDocNullableType(type, true), pos); break; case 23: parseExpected(23); if (isStartOfType()) { const indexType = parseType(); parseExpected(24); type = finishNode(factory2.createIndexedAccessTypeNode(type, indexType), pos); } else { parseExpected(24); type = finishNode(factory2.createArrayTypeNode(type), pos); } break; default: return type; } } return type; } function parseTypeOperator(operator) { const pos = getNodePos(); parseExpected(operator); return finishNode(factory2.createTypeOperatorNode(operator, parseTypeOperatorOrHigher()), pos); } function tryParseConstraintOfInferType() { if (parseOptional(96)) { const constraint = disallowConditionalTypesAnd(parseType); if (inDisallowConditionalTypesContext() || token() !== 58) { return constraint; } } } function parseTypeParameterOfInferType() { const pos = getNodePos(); const name = parseIdentifier(); const constraint = tryParse(tryParseConstraintOfInferType); const node = factory2.createTypeParameterDeclaration(undefined, name, constraint); return finishNode(node, pos); } function parseInferType() { const pos = getNodePos(); parseExpected(140); return finishNode(factory2.createInferTypeNode(parseTypeParameterOfInferType()), pos); } function parseTypeOperatorOrHigher() { const operator = token(); switch (operator) { case 143: case 158: case 148: return parseTypeOperator(operator); case 140: return parseInferType(); } return allowConditionalTypesAnd(parsePostfixTypeOrHigher); } function parseFunctionOrConstructorTypeToError(isInUnionType) { if (isStartOfFunctionTypeOrConstructorType()) { const type = parseFunctionOrConstructorType(); let diagnostic; if (isFunctionTypeNode(type)) { diagnostic = isInUnionType ? Diagnostics.Function_type_notation_must_be_parenthesized_when_used_in_a_union_type : Diagnostics.Function_type_notation_must_be_parenthesized_when_used_in_an_intersection_type; } else { diagnostic = isInUnionType ? Diagnostics.Constructor_type_notation_must_be_parenthesized_when_used_in_a_union_type : Diagnostics.Constructor_type_notation_must_be_parenthesized_when_used_in_an_intersection_type; } parseErrorAtRange(type, diagnostic); return type; } return; } function parseUnionOrIntersectionType(operator, parseConstituentType, createTypeNode) { const pos = getNodePos(); const isUnionType = operator === 52; const hasLeadingOperator = parseOptional(operator); let type = hasLeadingOperator && parseFunctionOrConstructorTypeToError(isUnionType) || parseConstituentType(); if (token() === operator || hasLeadingOperator) { const types = [type]; while (parseOptional(operator)) { types.push(parseFunctionOrConstructorTypeToError(isUnionType) || parseConstituentType()); } type = finishNode(createTypeNode(createNodeArray(types, pos)), pos); } return type; } function parseIntersectionTypeOrHigher() { return parseUnionOrIntersectionType(51, parseTypeOperatorOrHigher, factory2.createIntersectionTypeNode); } function parseUnionTypeOrHigher() { return parseUnionOrIntersectionType(52, parseIntersectionTypeOrHigher, factory2.createUnionTypeNode); } function nextTokenIsNewKeyword() { nextToken(); return token() === 105; } function isStartOfFunctionTypeOrConstructorType() { if (token() === 30) { return true; } if (token() === 21 && lookAhead(isUnambiguouslyStartOfFunctionType)) { return true; } return token() === 105 || token() === 128 && lookAhead(nextTokenIsNewKeyword); } function skipParameterStart() { if (isModifierKind(token())) { parseModifiers(false); } if (isIdentifier2() || token() === 110) { nextToken(); return true; } if (token() === 23 || token() === 19) { const previousErrorCount = parseDiagnostics.length; parseIdentifierOrPattern(); return previousErrorCount === parseDiagnostics.length; } return false; } function isUnambiguouslyStartOfFunctionType() { nextToken(); if (token() === 22 || token() === 26) { return true; } if (skipParameterStart()) { if (token() === 59 || token() === 28 || token() === 58 || token() === 64) { return true; } if (token() === 22) { nextToken(); if (token() === 39) { return true; } } } return false; } function parseTypeOrTypePredicate() { const pos = getNodePos(); const typePredicateVariable = isIdentifier2() && tryParse(parseTypePredicatePrefix); const type = parseType(); if (typePredicateVariable) { return finishNode(factory2.createTypePredicateNode(undefined, typePredicateVariable, type), pos); } else { return type; } } function parseTypePredicatePrefix() { const id = parseIdentifier(); if (token() === 142 && !scanner2.hasPrecedingLineBreak()) { nextToken(); return id; } } function parseAssertsTypePredicate() { const pos = getNodePos(); const assertsModifier = parseExpectedToken(131); const parameterName = token() === 110 ? parseThisTypeNode() : parseIdentifier(); const type = parseOptional(142) ? parseType() : undefined; return finishNode(factory2.createTypePredicateNode(assertsModifier, parameterName, type), pos); } function parseType() { if (contextFlags & 81920) { return doOutsideOfContext(81920, parseType); } if (isStartOfFunctionTypeOrConstructorType()) { return parseFunctionOrConstructorType(); } const pos = getNodePos(); const type = parseUnionTypeOrHigher(); if (!inDisallowConditionalTypesContext() && !scanner2.hasPrecedingLineBreak() && parseOptional(96)) { const extendsType = disallowConditionalTypesAnd(parseType); parseExpected(58); const trueType = allowConditionalTypesAnd(parseType); parseExpected(59); const falseType = allowConditionalTypesAnd(parseType); return finishNode(factory2.createConditionalTypeNode(type, extendsType, trueType, falseType), pos); } return type; } function parseTypeAnnotation() { return parseOptional(59) ? parseType() : undefined; } function isStartOfLeftHandSideExpression() { switch (token()) { case 110: case 108: case 106: case 112: case 97: case 9: case 10: case 11: case 15: case 16: case 21: case 23: case 19: case 100: case 86: case 105: case 44: case 69: case 80: return true; case 102: return lookAhead(nextTokenIsOpenParenOrLessThanOrDot); default: return isIdentifier2(); } } function isStartOfExpression() { if (isStartOfLeftHandSideExpression()) { return true; } switch (token()) { case 40: case 41: case 55: case 54: case 91: case 114: case 116: case 46: case 47: case 30: case 135: case 127: case 81: case 60: return true; default: if (isBinaryOperator2()) { return true; } return isIdentifier2(); } } function isStartOfExpressionStatement() { return token() !== 19 && token() !== 100 && token() !== 86 && token() !== 60 && isStartOfExpression(); } function parseExpression() { const saveDecoratorContext = inDecoratorContext(); if (saveDecoratorContext) { setDecoratorContext(false); } const pos = getNodePos(); let expr = parseAssignmentExpressionOrHigher(true); let operatorToken; while (operatorToken = parseOptionalToken(28)) { expr = makeBinaryExpression(expr, operatorToken, parseAssignmentExpressionOrHigher(true), pos); } if (saveDecoratorContext) { setDecoratorContext(true); } return expr; } function parseInitializer() { return parseOptional(64) ? parseAssignmentExpressionOrHigher(true) : undefined; } function parseAssignmentExpressionOrHigher(allowReturnTypeInArrowFunction) { if (isYieldExpression2()) { return parseYieldExpression(); } const arrowExpression = tryParseParenthesizedArrowFunctionExpression(allowReturnTypeInArrowFunction) || tryParseAsyncSimpleArrowFunctionExpression(allowReturnTypeInArrowFunction); if (arrowExpression) { return arrowExpression; } const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const expr = parseBinaryExpressionOrHigher(0); if (expr.kind === 80 && token() === 39) { return parseSimpleArrowFunctionExpression(pos, expr, allowReturnTypeInArrowFunction, hasJSDoc, undefined); } if (isLeftHandSideExpression(expr) && isAssignmentOperator(reScanGreaterToken())) { return makeBinaryExpression(expr, parseTokenNode(), parseAssignmentExpressionOrHigher(allowReturnTypeInArrowFunction), pos); } return parseConditionalExpressionRest(expr, pos, allowReturnTypeInArrowFunction); } function isYieldExpression2() { if (token() === 127) { if (inYieldContext()) { return true; } return lookAhead(nextTokenIsIdentifierOrKeywordOrLiteralOnSameLine); } return false; } function nextTokenIsIdentifierOnSameLine() { nextToken(); return !scanner2.hasPrecedingLineBreak() && isIdentifier2(); } function parseYieldExpression() { const pos = getNodePos(); nextToken(); if (!scanner2.hasPrecedingLineBreak() && (token() === 42 || isStartOfExpression())) { return finishNode(factory2.createYieldExpression(parseOptionalToken(42), parseAssignmentExpressionOrHigher(true)), pos); } else { return finishNode(factory2.createYieldExpression(undefined, undefined), pos); } } function parseSimpleArrowFunctionExpression(pos, identifier, allowReturnTypeInArrowFunction, hasJSDoc, asyncModifier) { Debug.assert(token() === 39, "parseSimpleArrowFunctionExpression should only have been called if we had a =>"); const parameter = factory2.createParameterDeclaration(undefined, undefined, identifier, undefined, undefined, undefined); finishNode(parameter, identifier.pos); const parameters = createNodeArray([parameter], parameter.pos, parameter.end); const equalsGreaterThanToken = parseExpectedToken(39); const body = parseArrowFunctionExpressionBody(!!asyncModifier, allowReturnTypeInArrowFunction); const node = factory2.createArrowFunction(asyncModifier, undefined, parameters, undefined, equalsGreaterThanToken, body); return withJSDoc(finishNode(node, pos), hasJSDoc); } function tryParseParenthesizedArrowFunctionExpression(allowReturnTypeInArrowFunction) { const triState = isParenthesizedArrowFunctionExpression(); if (triState === 0) { return; } return triState === 1 ? parseParenthesizedArrowFunctionExpression(true, true) : tryParse(() => parsePossibleParenthesizedArrowFunctionExpression(allowReturnTypeInArrowFunction)); } function isParenthesizedArrowFunctionExpression() { if (token() === 21 || token() === 30 || token() === 134) { return lookAhead(isParenthesizedArrowFunctionExpressionWorker); } if (token() === 39) { return 1; } return 0; } function isParenthesizedArrowFunctionExpressionWorker() { if (token() === 134) { nextToken(); if (scanner2.hasPrecedingLineBreak()) { return 0; } if (token() !== 21 && token() !== 30) { return 0; } } const first2 = token(); const second = nextToken(); if (first2 === 21) { if (second === 22) { const third = nextToken(); switch (third) { case 39: case 59: case 19: return 1; default: return 0; } } if (second === 23 || second === 19) { return 2; } if (second === 26) { return 1; } if (isModifierKind(second) && second !== 134 && lookAhead(nextTokenIsIdentifier)) { if (nextToken() === 130) { return 0; } return 1; } if (!isIdentifier2() && second !== 110) { return 0; } switch (nextToken()) { case 59: return 1; case 58: nextToken(); if (token() === 59 || token() === 28 || token() === 64 || token() === 22) { return 1; } return 0; case 28: case 64: case 22: return 2; } return 0; } else { Debug.assert(first2 === 30); if (!isIdentifier2() && token() !== 87) { return 0; } if (languageVariant === 1) { const isArrowFunctionInJsx = lookAhead(() => { parseOptional(87); const third = nextToken(); if (third === 96) { const fourth = nextToken(); switch (fourth) { case 64: case 32: case 44: return false; default: return true; } } else if (third === 28 || third === 64) { return true; } return false; }); if (isArrowFunctionInJsx) { return 1; } return 0; } return 2; } } function parsePossibleParenthesizedArrowFunctionExpression(allowReturnTypeInArrowFunction) { const tokenPos = scanner2.getTokenStart(); if (notParenthesizedArrow == null ? undefined : notParenthesizedArrow.has(tokenPos)) { return; } const result = parseParenthesizedArrowFunctionExpression(false, allowReturnTypeInArrowFunction); if (!result) { (notParenthesizedArrow || (notParenthesizedArrow = /* @__PURE__ */ new Set)).add(tokenPos); } return result; } function tryParseAsyncSimpleArrowFunctionExpression(allowReturnTypeInArrowFunction) { if (token() === 134) { if (lookAhead(isUnParenthesizedAsyncArrowFunctionWorker) === 1) { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const asyncModifier = parseModifiersForArrowFunction(); const expr = parseBinaryExpressionOrHigher(0); return parseSimpleArrowFunctionExpression(pos, expr, allowReturnTypeInArrowFunction, hasJSDoc, asyncModifier); } } return; } function isUnParenthesizedAsyncArrowFunctionWorker() { if (token() === 134) { nextToken(); if (scanner2.hasPrecedingLineBreak() || token() === 39) { return 0; } const expr = parseBinaryExpressionOrHigher(0); if (!scanner2.hasPrecedingLineBreak() && expr.kind === 80 && token() === 39) { return 1; } } return 0; } function parseParenthesizedArrowFunctionExpression(allowAmbiguity, allowReturnTypeInArrowFunction) { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const modifiers = parseModifiersForArrowFunction(); const isAsync = some(modifiers, isAsyncModifier) ? 2 : 0; const typeParameters = parseTypeParameters(); let parameters; if (!parseExpected(21)) { if (!allowAmbiguity) { return; } parameters = createMissingList(); } else { if (!allowAmbiguity) { const maybeParameters = parseParametersWorker(isAsync, allowAmbiguity); if (!maybeParameters) { return; } parameters = maybeParameters; } else { parameters = parseParametersWorker(isAsync, allowAmbiguity); } if (!parseExpected(22) && !allowAmbiguity) { return; } } const hasReturnColon = token() === 59; const type = parseReturnType(59, false); if (type && !allowAmbiguity && typeHasArrowFunctionBlockingParseError(type)) { return; } let unwrappedType = type; while ((unwrappedType == null ? undefined : unwrappedType.kind) === 197) { unwrappedType = unwrappedType.type; } const hasJSDocFunctionType = unwrappedType && isJSDocFunctionType(unwrappedType); if (!allowAmbiguity && token() !== 39 && (hasJSDocFunctionType || token() !== 19)) { return; } const lastToken = token(); const equalsGreaterThanToken = parseExpectedToken(39); const body = lastToken === 39 || lastToken === 19 ? parseArrowFunctionExpressionBody(some(modifiers, isAsyncModifier), allowReturnTypeInArrowFunction) : parseIdentifier(); if (!allowReturnTypeInArrowFunction && hasReturnColon) { if (token() !== 59) { return; } } const node = factory2.createArrowFunction(modifiers, typeParameters, parameters, type, equalsGreaterThanToken, body); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseArrowFunctionExpressionBody(isAsync, allowReturnTypeInArrowFunction) { if (token() === 19) { return parseFunctionBlock(isAsync ? 2 : 0); } if (token() !== 27 && token() !== 100 && token() !== 86 && isStartOfStatement() && !isStartOfExpressionStatement()) { return parseFunctionBlock(16 | (isAsync ? 2 : 0)); } const savedYieldContext = inYieldContext(); setYieldContext(false); const savedTopLevel = topLevel; topLevel = false; const node = isAsync ? doInAwaitContext(() => parseAssignmentExpressionOrHigher(allowReturnTypeInArrowFunction)) : doOutsideOfAwaitContext(() => parseAssignmentExpressionOrHigher(allowReturnTypeInArrowFunction)); topLevel = savedTopLevel; setYieldContext(savedYieldContext); return node; } function parseConditionalExpressionRest(leftOperand, pos, allowReturnTypeInArrowFunction) { const questionToken = parseOptionalToken(58); if (!questionToken) { return leftOperand; } let colonToken; return finishNode(factory2.createConditionalExpression(leftOperand, questionToken, doOutsideOfContext(disallowInAndDecoratorContext, () => parseAssignmentExpressionOrHigher(false)), colonToken = parseExpectedToken(59), nodeIsPresent(colonToken) ? parseAssignmentExpressionOrHigher(allowReturnTypeInArrowFunction) : createMissingNode(80, false, Diagnostics._0_expected, tokenToString(59))), pos); } function parseBinaryExpressionOrHigher(precedence) { const pos = getNodePos(); const leftOperand = parseUnaryExpressionOrHigher(); return parseBinaryExpressionRest(precedence, leftOperand, pos); } function isInOrOfKeyword(t) { return t === 103 || t === 165; } function parseBinaryExpressionRest(precedence, leftOperand, pos) { while (true) { reScanGreaterToken(); const newPrecedence = getBinaryOperatorPrecedence(token()); const consumeCurrentOperator = token() === 43 ? newPrecedence >= precedence : newPrecedence > precedence; if (!consumeCurrentOperator) { break; } if (token() === 103 && inDisallowInContext()) { break; } if (token() === 130 || token() === 152) { if (scanner2.hasPrecedingLineBreak()) { break; } else { const keywordKind = token(); nextToken(); leftOperand = keywordKind === 152 ? makeSatisfiesExpression(leftOperand, parseType()) : makeAsExpression(leftOperand, parseType()); } } else { leftOperand = makeBinaryExpression(leftOperand, parseTokenNode(), parseBinaryExpressionOrHigher(newPrecedence), pos); } } return leftOperand; } function isBinaryOperator2() { if (inDisallowInContext() && token() === 103) { return false; } return getBinaryOperatorPrecedence(token()) > 0; } function makeSatisfiesExpression(left, right) { return finishNode(factory2.createSatisfiesExpression(left, right), left.pos); } function makeBinaryExpression(left, operatorToken, right, pos) { return finishNode(factory2.createBinaryExpression(left, operatorToken, right), pos); } function makeAsExpression(left, right) { return finishNode(factory2.createAsExpression(left, right), left.pos); } function parsePrefixUnaryExpression() { const pos = getNodePos(); return finishNode(factory2.createPrefixUnaryExpression(token(), nextTokenAnd(parseSimpleUnaryExpression)), pos); } function parseDeleteExpression() { const pos = getNodePos(); return finishNode(factory2.createDeleteExpression(nextTokenAnd(parseSimpleUnaryExpression)), pos); } function parseTypeOfExpression() { const pos = getNodePos(); return finishNode(factory2.createTypeOfExpression(nextTokenAnd(parseSimpleUnaryExpression)), pos); } function parseVoidExpression() { const pos = getNodePos(); return finishNode(factory2.createVoidExpression(nextTokenAnd(parseSimpleUnaryExpression)), pos); } function isAwaitExpression2() { if (token() === 135) { if (inAwaitContext()) { return true; } return lookAhead(nextTokenIsIdentifierOrKeywordOrLiteralOnSameLine); } return false; } function parseAwaitExpression() { const pos = getNodePos(); return finishNode(factory2.createAwaitExpression(nextTokenAnd(parseSimpleUnaryExpression)), pos); } function parseUnaryExpressionOrHigher() { if (isUpdateExpression()) { const pos = getNodePos(); const updateExpression = parseUpdateExpression(); return token() === 43 ? parseBinaryExpressionRest(getBinaryOperatorPrecedence(token()), updateExpression, pos) : updateExpression; } const unaryOperator = token(); const simpleUnaryExpression = parseSimpleUnaryExpression(); if (token() === 43) { const pos = skipTrivia2(sourceText, simpleUnaryExpression.pos); const { end } = simpleUnaryExpression; if (simpleUnaryExpression.kind === 217) { parseErrorAt(pos, end, Diagnostics.A_type_assertion_expression_is_not_allowed_in_the_left_hand_side_of_an_exponentiation_expression_Consider_enclosing_the_expression_in_parentheses); } else { Debug.assert(isKeywordOrPunctuation(unaryOperator)); parseErrorAt(pos, end, Diagnostics.An_unary_expression_with_the_0_operator_is_not_allowed_in_the_left_hand_side_of_an_exponentiation_expression_Consider_enclosing_the_expression_in_parentheses, tokenToString(unaryOperator)); } } return simpleUnaryExpression; } function parseSimpleUnaryExpression() { switch (token()) { case 40: case 41: case 55: case 54: return parsePrefixUnaryExpression(); case 91: return parseDeleteExpression(); case 114: return parseTypeOfExpression(); case 116: return parseVoidExpression(); case 30: if (languageVariant === 1) { return parseJsxElementOrSelfClosingElementOrFragment(true, undefined, undefined, true); } return parseTypeAssertion(); case 135: if (isAwaitExpression2()) { return parseAwaitExpression(); } default: return parseUpdateExpression(); } } function isUpdateExpression() { switch (token()) { case 40: case 41: case 55: case 54: case 91: case 114: case 116: case 135: return false; case 30: if (languageVariant !== 1) { return false; } default: return true; } } function parseUpdateExpression() { if (token() === 46 || token() === 47) { const pos = getNodePos(); return finishNode(factory2.createPrefixUnaryExpression(token(), nextTokenAnd(parseLeftHandSideExpressionOrHigher)), pos); } else if (languageVariant === 1 && token() === 30 && lookAhead(nextTokenIsIdentifierOrKeywordOrGreaterThan)) { return parseJsxElementOrSelfClosingElementOrFragment(true); } const expression = parseLeftHandSideExpressionOrHigher(); Debug.assert(isLeftHandSideExpression(expression)); if ((token() === 46 || token() === 47) && !scanner2.hasPrecedingLineBreak()) { const operator = token(); nextToken(); return finishNode(factory2.createPostfixUnaryExpression(expression, operator), expression.pos); } return expression; } function parseLeftHandSideExpressionOrHigher() { const pos = getNodePos(); let expression; if (token() === 102) { if (lookAhead(nextTokenIsOpenParenOrLessThan)) { sourceFlags |= 4194304; expression = parseTokenNode(); } else if (lookAhead(nextTokenIsDot)) { nextToken(); nextToken(); expression = finishNode(factory2.createMetaProperty(102, parseIdentifierName()), pos); if (expression.name.escapedText === "defer") { if (token() === 21 || token() === 30) { sourceFlags |= 4194304; } } else { sourceFlags |= 8388608; } } else { expression = parseMemberExpressionOrHigher(); } } else { expression = token() === 108 ? parseSuperExpression() : parseMemberExpressionOrHigher(); } return parseCallExpressionRest(pos, expression); } function parseMemberExpressionOrHigher() { const pos = getNodePos(); const expression = parsePrimaryExpression(); return parseMemberExpressionRest(pos, expression, true); } function parseSuperExpression() { const pos = getNodePos(); let expression = parseTokenNode(); if (token() === 30) { const startPos = getNodePos(); const typeArguments = tryParse(parseTypeArgumentsInExpression); if (typeArguments !== undefined) { parseErrorAt(startPos, getNodePos(), Diagnostics.super_may_not_use_type_arguments); if (!isTemplateStartOfTaggedTemplate()) { expression = factory2.createExpressionWithTypeArguments(expression, typeArguments); } } } if (token() === 21 || token() === 25 || token() === 23) { return expression; } parseExpectedToken(25, Diagnostics.super_must_be_followed_by_an_argument_list_or_member_access); return finishNode(factoryCreatePropertyAccessExpression(expression, parseRightSideOfDot(true, true, true)), pos); } function parseJsxElementOrSelfClosingElementOrFragment(inExpressionContext, topInvalidNodePosition, openingTag, mustBeUnary = false) { const pos = getNodePos(); const opening = parseJsxOpeningOrSelfClosingElementOrOpeningFragment(inExpressionContext); let result; if (opening.kind === 287) { let children = parseJsxChildren(opening); let closingElement; const lastChild = children[children.length - 1]; if ((lastChild == null ? undefined : lastChild.kind) === 285 && !tagNamesAreEquivalent(lastChild.openingElement.tagName, lastChild.closingElement.tagName) && tagNamesAreEquivalent(opening.tagName, lastChild.closingElement.tagName)) { const end = lastChild.children.end; const newLast = finishNode(factory2.createJsxElement(lastChild.openingElement, lastChild.children, finishNode(factory2.createJsxClosingElement(finishNode(factoryCreateIdentifier(""), end, end)), end, end)), lastChild.openingElement.pos, end); children = createNodeArray([...children.slice(0, children.length - 1), newLast], children.pos, end); closingElement = lastChild.closingElement; } else { closingElement = parseJsxClosingElement(opening, inExpressionContext); if (!tagNamesAreEquivalent(opening.tagName, closingElement.tagName)) { if (openingTag && isJsxOpeningElement(openingTag) && tagNamesAreEquivalent(closingElement.tagName, openingTag.tagName)) { parseErrorAtRange(opening.tagName, Diagnostics.JSX_element_0_has_no_corresponding_closing_tag, getTextOfNodeFromSourceText(sourceText, opening.tagName)); } else { parseErrorAtRange(closingElement.tagName, Diagnostics.Expected_corresponding_JSX_closing_tag_for_0, getTextOfNodeFromSourceText(sourceText, opening.tagName)); } } } result = finishNode(factory2.createJsxElement(opening, children, closingElement), pos); } else if (opening.kind === 290) { result = finishNode(factory2.createJsxFragment(opening, parseJsxChildren(opening), parseJsxClosingFragment(inExpressionContext)), pos); } else { Debug.assert(opening.kind === 286); result = opening; } if (!mustBeUnary && inExpressionContext && token() === 30) { const topBadPos = typeof topInvalidNodePosition === "undefined" ? result.pos : topInvalidNodePosition; const invalidElement = tryParse(() => parseJsxElementOrSelfClosingElementOrFragment(true, topBadPos)); if (invalidElement) { const operatorToken = createMissingNode(28, false); setTextRangePosWidth(operatorToken, invalidElement.pos, 0); parseErrorAt(skipTrivia2(sourceText, topBadPos), invalidElement.end, Diagnostics.JSX_expressions_must_have_one_parent_element); return finishNode(factory2.createBinaryExpression(result, operatorToken, invalidElement), pos); } } return result; } function parseJsxText() { const pos = getNodePos(); const node = factory2.createJsxText(scanner2.getTokenValue(), currentToken === 13); currentToken = scanner2.scanJsxToken(); return finishNode(node, pos); } function parseJsxChild(openingTag, token2) { switch (token2) { case 1: if (isJsxOpeningFragment(openingTag)) { parseErrorAtRange(openingTag, Diagnostics.JSX_fragment_has_no_corresponding_closing_tag); } else { const tag = openingTag.tagName; const start = Math.min(skipTrivia2(sourceText, tag.pos), tag.end); parseErrorAt(start, tag.end, Diagnostics.JSX_element_0_has_no_corresponding_closing_tag, getTextOfNodeFromSourceText(sourceText, openingTag.tagName)); } return; case 31: case 7: return; case 12: case 13: return parseJsxText(); case 19: return parseJsxExpression(false); case 30: return parseJsxElementOrSelfClosingElementOrFragment(false, undefined, openingTag); default: return Debug.assertNever(token2); } } function parseJsxChildren(openingTag) { const list = []; const listPos = getNodePos(); const saveParsingContext = parsingContext; parsingContext |= 1 << 14; while (true) { const child = parseJsxChild(openingTag, currentToken = scanner2.reScanJsxToken()); if (!child) break; list.push(child); if (isJsxOpeningElement(openingTag) && (child == null ? undefined : child.kind) === 285 && !tagNamesAreEquivalent(child.openingElement.tagName, child.closingElement.tagName) && tagNamesAreEquivalent(openingTag.tagName, child.closingElement.tagName)) { break; } } parsingContext = saveParsingContext; return createNodeArray(list, listPos); } function parseJsxAttributes() { const pos = getNodePos(); return finishNode(factory2.createJsxAttributes(parseList(13, parseJsxAttribute)), pos); } function parseJsxOpeningOrSelfClosingElementOrOpeningFragment(inExpressionContext) { const pos = getNodePos(); parseExpected(30); if (token() === 32) { scanJsxText(); return finishNode(factory2.createJsxOpeningFragment(), pos); } const tagName = parseJsxElementName(); const typeArguments = (contextFlags & 524288) === 0 ? tryParseTypeArguments() : undefined; const attributes = parseJsxAttributes(); let node; if (token() === 32) { scanJsxText(); node = factory2.createJsxOpeningElement(tagName, typeArguments, attributes); } else { parseExpected(44); if (parseExpected(32, undefined, false)) { if (inExpressionContext) { nextToken(); } else { scanJsxText(); } } node = factory2.createJsxSelfClosingElement(tagName, typeArguments, attributes); } return finishNode(node, pos); } function parseJsxElementName() { const pos = getNodePos(); const initialExpression = parseJsxTagName(); if (isJsxNamespacedName(initialExpression)) { return initialExpression; } let expression = initialExpression; while (parseOptional(25)) { expression = finishNode(factoryCreatePropertyAccessExpression(expression, parseRightSideOfDot(true, false, false)), pos); } return expression; } function parseJsxTagName() { const pos = getNodePos(); scanJsxIdentifier(); const isThis2 = token() === 110; const tagName = parseIdentifierNameErrorOnUnicodeEscapeSequence(); if (parseOptional(59)) { scanJsxIdentifier(); return finishNode(factory2.createJsxNamespacedName(tagName, parseIdentifierNameErrorOnUnicodeEscapeSequence()), pos); } return isThis2 ? finishNode(factory2.createToken(110), pos) : tagName; } function parseJsxExpression(inExpressionContext) { const pos = getNodePos(); if (!parseExpected(19)) { return; } let dotDotDotToken; let expression; if (token() !== 20) { if (!inExpressionContext) { dotDotDotToken = parseOptionalToken(26); } expression = parseExpression(); } if (inExpressionContext) { parseExpected(20); } else { if (parseExpected(20, undefined, false)) { scanJsxText(); } } return finishNode(factory2.createJsxExpression(dotDotDotToken, expression), pos); } function parseJsxAttribute() { if (token() === 19) { return parseJsxSpreadAttribute(); } const pos = getNodePos(); return finishNode(factory2.createJsxAttribute(parseJsxAttributeName(), parseJsxAttributeValue()), pos); } function parseJsxAttributeValue() { if (token() === 64) { if (scanJsxAttributeValue() === 11) { return parseLiteralNode(); } if (token() === 19) { return parseJsxExpression(true); } if (token() === 30) { return parseJsxElementOrSelfClosingElementOrFragment(true); } parseErrorAtCurrentToken(Diagnostics.or_JSX_element_expected); } return; } function parseJsxAttributeName() { const pos = getNodePos(); scanJsxIdentifier(); const attrName = parseIdentifierNameErrorOnUnicodeEscapeSequence(); if (parseOptional(59)) { scanJsxIdentifier(); return finishNode(factory2.createJsxNamespacedName(attrName, parseIdentifierNameErrorOnUnicodeEscapeSequence()), pos); } return attrName; } function parseJsxSpreadAttribute() { const pos = getNodePos(); parseExpected(19); parseExpected(26); const expression = parseExpression(); parseExpected(20); return finishNode(factory2.createJsxSpreadAttribute(expression), pos); } function parseJsxClosingElement(open, inExpressionContext) { const pos = getNodePos(); parseExpected(31); const tagName = parseJsxElementName(); if (parseExpected(32, undefined, false)) { if (inExpressionContext || !tagNamesAreEquivalent(open.tagName, tagName)) { nextToken(); } else { scanJsxText(); } } return finishNode(factory2.createJsxClosingElement(tagName), pos); } function parseJsxClosingFragment(inExpressionContext) { const pos = getNodePos(); parseExpected(31); if (parseExpected(32, Diagnostics.Expected_corresponding_closing_tag_for_JSX_fragment, false)) { if (inExpressionContext) { nextToken(); } else { scanJsxText(); } } return finishNode(factory2.createJsxJsxClosingFragment(), pos); } function parseTypeAssertion() { Debug.assert(languageVariant !== 1, "Type assertions should never be parsed in JSX; they should be parsed as comparisons or JSX elements/fragments."); const pos = getNodePos(); parseExpected(30); const type = parseType(); parseExpected(32); const expression = parseSimpleUnaryExpression(); return finishNode(factory2.createTypeAssertion(type, expression), pos); } function nextTokenIsIdentifierOrKeywordOrOpenBracketOrTemplate() { nextToken(); return tokenIsIdentifierOrKeyword(token()) || token() === 23 || isTemplateStartOfTaggedTemplate(); } function isStartOfOptionalPropertyOrElementAccessChain() { return token() === 29 && lookAhead(nextTokenIsIdentifierOrKeywordOrOpenBracketOrTemplate); } function tryReparseOptionalChain(node) { if (node.flags & 64) { return true; } if (isNonNullExpression(node)) { let expr = node.expression; while (isNonNullExpression(expr) && !(expr.flags & 64)) { expr = expr.expression; } if (expr.flags & 64) { while (isNonNullExpression(node)) { node.flags |= 64; node = node.expression; } return true; } } return false; } function parsePropertyAccessExpressionRest(pos, expression, questionDotToken) { const name = parseRightSideOfDot(true, true, true); const isOptionalChain2 = questionDotToken || tryReparseOptionalChain(expression); const propertyAccess = isOptionalChain2 ? factoryCreatePropertyAccessChain(expression, questionDotToken, name) : factoryCreatePropertyAccessExpression(expression, name); if (isOptionalChain2 && isPrivateIdentifier(propertyAccess.name)) { parseErrorAtRange(propertyAccess.name, Diagnostics.An_optional_chain_cannot_contain_private_identifiers); } if (isExpressionWithTypeArguments(expression) && expression.typeArguments) { const pos2 = expression.typeArguments.pos - 1; const end = skipTrivia2(sourceText, expression.typeArguments.end) + 1; parseErrorAt(pos2, end, Diagnostics.An_instantiation_expression_cannot_be_followed_by_a_property_access); } return finishNode(propertyAccess, pos); } function parseElementAccessExpressionRest(pos, expression, questionDotToken) { let argumentExpression; if (token() === 24) { argumentExpression = createMissingNode(80, true, Diagnostics.An_element_access_expression_should_take_an_argument); } else { const argument = allowInAnd(parseExpression); if (isStringOrNumericLiteralLike(argument)) { argument.text = internIdentifier(argument.text); } argumentExpression = argument; } parseExpected(24); const indexedAccess = questionDotToken || tryReparseOptionalChain(expression) ? factoryCreateElementAccessChain(expression, questionDotToken, argumentExpression) : factoryCreateElementAccessExpression(expression, argumentExpression); return finishNode(indexedAccess, pos); } function parseMemberExpressionRest(pos, expression, allowOptionalChain) { while (true) { let questionDotToken; let isPropertyAccess = false; if (allowOptionalChain && isStartOfOptionalPropertyOrElementAccessChain()) { questionDotToken = parseExpectedToken(29); isPropertyAccess = tokenIsIdentifierOrKeyword(token()); } else { isPropertyAccess = parseOptional(25); } if (isPropertyAccess) { expression = parsePropertyAccessExpressionRest(pos, expression, questionDotToken); continue; } if ((questionDotToken || !inDecoratorContext()) && parseOptional(23)) { expression = parseElementAccessExpressionRest(pos, expression, questionDotToken); continue; } if (isTemplateStartOfTaggedTemplate()) { expression = !questionDotToken && expression.kind === 234 ? parseTaggedTemplateRest(pos, expression.expression, questionDotToken, expression.typeArguments) : parseTaggedTemplateRest(pos, expression, questionDotToken, undefined); continue; } if (!questionDotToken) { if (token() === 54 && !scanner2.hasPrecedingLineBreak()) { nextToken(); expression = finishNode(factory2.createNonNullExpression(expression), pos); continue; } const typeArguments = tryParse(parseTypeArgumentsInExpression); if (typeArguments) { expression = finishNode(factory2.createExpressionWithTypeArguments(expression, typeArguments), pos); continue; } } return expression; } } function isTemplateStartOfTaggedTemplate() { return token() === 15 || token() === 16; } function parseTaggedTemplateRest(pos, tag, questionDotToken, typeArguments) { const tagExpression = factory2.createTaggedTemplateExpression(tag, typeArguments, token() === 15 ? (reScanTemplateToken(true), parseLiteralNode()) : parseTemplateExpression(true)); if (questionDotToken || tag.flags & 64) { tagExpression.flags |= 64; } tagExpression.questionDotToken = questionDotToken; return finishNode(tagExpression, pos); } function parseCallExpressionRest(pos, expression) { while (true) { expression = parseMemberExpressionRest(pos, expression, true); let typeArguments; const questionDotToken = parseOptionalToken(29); if (questionDotToken) { typeArguments = tryParse(parseTypeArgumentsInExpression); if (isTemplateStartOfTaggedTemplate()) { expression = parseTaggedTemplateRest(pos, expression, questionDotToken, typeArguments); continue; } } if (typeArguments || token() === 21) { if (!questionDotToken && expression.kind === 234) { typeArguments = expression.typeArguments; expression = expression.expression; } const argumentList = parseArgumentList(); const callExpr = questionDotToken || tryReparseOptionalChain(expression) ? factoryCreateCallChain(expression, questionDotToken, typeArguments, argumentList) : factoryCreateCallExpression(expression, typeArguments, argumentList); expression = finishNode(callExpr, pos); continue; } if (questionDotToken) { const name = createMissingNode(80, false, Diagnostics.Identifier_expected); expression = finishNode(factoryCreatePropertyAccessChain(expression, questionDotToken, name), pos); } break; } return expression; } function parseArgumentList() { parseExpected(21); const result = parseDelimitedList(11, parseArgumentExpression); parseExpected(22); return result; } function parseTypeArgumentsInExpression() { if ((contextFlags & 524288) !== 0) { return; } if (reScanLessThanToken() !== 30) { return; } nextToken(); const typeArguments = parseDelimitedList(20, parseType); if (reScanGreaterToken() !== 32) { return; } nextToken(); return typeArguments && canFollowTypeArgumentsInExpression() ? typeArguments : undefined; } function canFollowTypeArgumentsInExpression() { switch (token()) { case 21: case 15: case 16: return true; case 30: case 32: case 40: case 41: return false; } return scanner2.hasPrecedingLineBreak() || isBinaryOperator2() || !isStartOfExpression(); } function parsePrimaryExpression() { switch (token()) { case 15: if (scanner2.getTokenFlags() & 26656) { reScanTemplateToken(false); } case 9: case 10: case 11: return parseLiteralNode(); case 110: case 108: case 106: case 112: case 97: return parseTokenNode(); case 21: return parseParenthesizedExpression(); case 23: return parseArrayLiteralExpression(); case 19: return parseObjectLiteralExpression(); case 134: if (!lookAhead(nextTokenIsFunctionKeywordOnSameLine)) { break; } return parseFunctionExpression(); case 60: return parseDecoratedExpression(); case 86: return parseClassExpression(); case 100: return parseFunctionExpression(); case 105: return parseNewExpressionOrNewDotTarget(); case 44: case 69: if (reScanSlashToken() === 14) { return parseLiteralNode(); } break; case 16: return parseTemplateExpression(false); case 81: return parsePrivateIdentifier(); } return parseIdentifier(Diagnostics.Expression_expected); } function parseParenthesizedExpression() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(21); const expression = allowInAnd(parseExpression); parseExpected(22); return withJSDoc(finishNode(factoryCreateParenthesizedExpression(expression), pos), hasJSDoc); } function parseSpreadElement() { const pos = getNodePos(); parseExpected(26); const expression = parseAssignmentExpressionOrHigher(true); return finishNode(factory2.createSpreadElement(expression), pos); } function parseArgumentOrArrayLiteralElement() { return token() === 26 ? parseSpreadElement() : token() === 28 ? finishNode(factory2.createOmittedExpression(), getNodePos()) : parseAssignmentExpressionOrHigher(true); } function parseArgumentExpression() { return doOutsideOfContext(disallowInAndDecoratorContext, parseArgumentOrArrayLiteralElement); } function parseArrayLiteralExpression() { const pos = getNodePos(); const openBracketPosition = scanner2.getTokenStart(); const openBracketParsed = parseExpected(23); const multiLine = scanner2.hasPrecedingLineBreak(); const elements = parseDelimitedList(15, parseArgumentOrArrayLiteralElement); parseExpectedMatchingBrackets(23, 24, openBracketParsed, openBracketPosition); return finishNode(factoryCreateArrayLiteralExpression(elements, multiLine), pos); } function parseObjectLiteralElement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); if (parseOptionalToken(26)) { const expression = parseAssignmentExpressionOrHigher(true); return withJSDoc(finishNode(factory2.createSpreadAssignment(expression), pos), hasJSDoc); } const modifiers = parseModifiers(true); if (parseContextualModifier(139)) { return parseAccessorDeclaration(pos, hasJSDoc, modifiers, 178, 0); } if (parseContextualModifier(153)) { return parseAccessorDeclaration(pos, hasJSDoc, modifiers, 179, 0); } const asteriskToken = parseOptionalToken(42); const tokenIsIdentifier = isIdentifier2(); const name = parsePropertyName(); const questionToken = parseOptionalToken(58); const exclamationToken = parseOptionalToken(54); if (asteriskToken || token() === 21 || token() === 30) { return parseMethodDeclaration(pos, hasJSDoc, modifiers, asteriskToken, name, questionToken, exclamationToken); } let node; const isShorthandPropertyAssignment2 = tokenIsIdentifier && token() !== 59; if (isShorthandPropertyAssignment2) { const equalsToken = parseOptionalToken(64); const objectAssignmentInitializer = equalsToken ? allowInAnd(() => parseAssignmentExpressionOrHigher(true)) : undefined; node = factory2.createShorthandPropertyAssignment(name, objectAssignmentInitializer); node.equalsToken = equalsToken; } else { parseExpected(59); const initializer = allowInAnd(() => parseAssignmentExpressionOrHigher(true)); node = factory2.createPropertyAssignment(name, initializer); } node.modifiers = modifiers; node.questionToken = questionToken; node.exclamationToken = exclamationToken; return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseObjectLiteralExpression() { const pos = getNodePos(); const openBracePosition = scanner2.getTokenStart(); const openBraceParsed = parseExpected(19); const multiLine = scanner2.hasPrecedingLineBreak(); const properties = parseDelimitedList(12, parseObjectLiteralElement, true); parseExpectedMatchingBrackets(19, 20, openBraceParsed, openBracePosition); return finishNode(factoryCreateObjectLiteralExpression(properties, multiLine), pos); } function parseFunctionExpression() { const savedDecoratorContext = inDecoratorContext(); setDecoratorContext(false); const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const modifiers = parseModifiers(false); parseExpected(100); const asteriskToken = parseOptionalToken(42); const isGenerator = asteriskToken ? 1 : 0; const isAsync = some(modifiers, isAsyncModifier) ? 2 : 0; const name = isGenerator && isAsync ? doInYieldAndAwaitContext(parseOptionalBindingIdentifier) : isGenerator ? doInYieldContext(parseOptionalBindingIdentifier) : isAsync ? doInAwaitContext(parseOptionalBindingIdentifier) : parseOptionalBindingIdentifier(); const typeParameters = parseTypeParameters(); const parameters = parseParameters2(isGenerator | isAsync); const type = parseReturnType(59, false); const body = parseFunctionBlock(isGenerator | isAsync); setDecoratorContext(savedDecoratorContext); const node = factory2.createFunctionExpression(modifiers, asteriskToken, name, typeParameters, parameters, type, body); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseOptionalBindingIdentifier() { return isBindingIdentifier() ? parseBindingIdentifier() : undefined; } function parseNewExpressionOrNewDotTarget() { const pos = getNodePos(); parseExpected(105); if (parseOptional(25)) { const name = parseIdentifierName(); return finishNode(factory2.createMetaProperty(105, name), pos); } const expressionPos = getNodePos(); let expression = parseMemberExpressionRest(expressionPos, parsePrimaryExpression(), false); let typeArguments; if (expression.kind === 234) { typeArguments = expression.typeArguments; expression = expression.expression; } if (token() === 29) { parseErrorAtCurrentToken(Diagnostics.Invalid_optional_chain_from_new_expression_Did_you_mean_to_call_0, getTextOfNodeFromSourceText(sourceText, expression)); } const argumentList = token() === 21 ? parseArgumentList() : undefined; return finishNode(factoryCreateNewExpression(expression, typeArguments, argumentList), pos); } function parseBlock(ignoreMissingOpenBrace, diagnosticMessage) { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const openBracePosition = scanner2.getTokenStart(); const openBraceParsed = parseExpected(19, diagnosticMessage); if (openBraceParsed || ignoreMissingOpenBrace) { const multiLine = scanner2.hasPrecedingLineBreak(); const statements = parseList(1, parseStatement); parseExpectedMatchingBrackets(19, 20, openBraceParsed, openBracePosition); const result = withJSDoc(finishNode(factoryCreateBlock(statements, multiLine), pos), hasJSDoc); if (token() === 64) { parseErrorAtCurrentToken(Diagnostics.Declaration_or_statement_expected_This_follows_a_block_of_statements_so_if_you_intended_to_write_a_destructuring_assignment_you_might_need_to_wrap_the_whole_assignment_in_parentheses); nextToken(); } return result; } else { const statements = createMissingList(); return withJSDoc(finishNode(factoryCreateBlock(statements, undefined), pos), hasJSDoc); } } function parseFunctionBlock(flags, diagnosticMessage) { const savedYieldContext = inYieldContext(); setYieldContext(!!(flags & 1)); const savedAwaitContext = inAwaitContext(); setAwaitContext(!!(flags & 2)); const savedTopLevel = topLevel; topLevel = false; const saveDecoratorContext = inDecoratorContext(); if (saveDecoratorContext) { setDecoratorContext(false); } const block = parseBlock(!!(flags & 16), diagnosticMessage); if (saveDecoratorContext) { setDecoratorContext(true); } topLevel = savedTopLevel; setYieldContext(savedYieldContext); setAwaitContext(savedAwaitContext); return block; } function parseEmptyStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(27); return withJSDoc(finishNode(factory2.createEmptyStatement(), pos), hasJSDoc); } function parseIfStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(101); const openParenPosition = scanner2.getTokenStart(); const openParenParsed = parseExpected(21); const expression = allowInAnd(parseExpression); parseExpectedMatchingBrackets(21, 22, openParenParsed, openParenPosition); const thenStatement = parseStatement(); const elseStatement = parseOptional(93) ? parseStatement() : undefined; return withJSDoc(finishNode(factoryCreateIfStatement(expression, thenStatement, elseStatement), pos), hasJSDoc); } function parseDoStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(92); const statement = parseStatement(); parseExpected(117); const openParenPosition = scanner2.getTokenStart(); const openParenParsed = parseExpected(21); const expression = allowInAnd(parseExpression); parseExpectedMatchingBrackets(21, 22, openParenParsed, openParenPosition); parseOptional(27); return withJSDoc(finishNode(factory2.createDoStatement(statement, expression), pos), hasJSDoc); } function parseWhileStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(117); const openParenPosition = scanner2.getTokenStart(); const openParenParsed = parseExpected(21); const expression = allowInAnd(parseExpression); parseExpectedMatchingBrackets(21, 22, openParenParsed, openParenPosition); const statement = parseStatement(); return withJSDoc(finishNode(factoryCreateWhileStatement(expression, statement), pos), hasJSDoc); } function parseForOrForInOrForOfStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(99); const awaitToken = parseOptionalToken(135); parseExpected(21); let initializer; if (token() !== 27) { if (token() === 115 || token() === 121 || token() === 87 || token() === 160 && lookAhead(nextTokenIsBindingIdentifierOrStartOfDestructuringOnSameLineDisallowOf) || token() === 135 && lookAhead(nextTokenIsUsingKeywordThenBindingIdentifierOrStartOfObjectDestructuringOnSameLine)) { initializer = parseVariableDeclarationList(true); } else { initializer = disallowInAnd(parseExpression); } } let node; if (awaitToken ? parseExpected(165) : parseOptional(165)) { const expression = allowInAnd(() => parseAssignmentExpressionOrHigher(true)); parseExpected(22); node = factoryCreateForOfStatement(awaitToken, initializer, expression, parseStatement()); } else if (parseOptional(103)) { const expression = allowInAnd(parseExpression); parseExpected(22); node = factory2.createForInStatement(initializer, expression, parseStatement()); } else { parseExpected(27); const condition = token() !== 27 && token() !== 22 ? allowInAnd(parseExpression) : undefined; parseExpected(27); const incrementor = token() !== 22 ? allowInAnd(parseExpression) : undefined; parseExpected(22); node = factoryCreateForStatement(initializer, condition, incrementor, parseStatement()); } return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseBreakOrContinueStatement(kind) { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(kind === 253 ? 83 : 88); const label = canParseSemicolon() ? undefined : parseIdentifier(); parseSemicolon(); const node = kind === 253 ? factory2.createBreakStatement(label) : factory2.createContinueStatement(label); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseReturnStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(107); const expression = canParseSemicolon() ? undefined : allowInAnd(parseExpression); parseSemicolon(); return withJSDoc(finishNode(factory2.createReturnStatement(expression), pos), hasJSDoc); } function parseWithStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(118); const openParenPosition = scanner2.getTokenStart(); const openParenParsed = parseExpected(21); const expression = allowInAnd(parseExpression); parseExpectedMatchingBrackets(21, 22, openParenParsed, openParenPosition); const statement = doInsideOfContext(67108864, parseStatement); return withJSDoc(finishNode(factory2.createWithStatement(expression, statement), pos), hasJSDoc); } function parseCaseClause() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(84); const expression = allowInAnd(parseExpression); parseExpected(59); const statements = parseList(3, parseStatement); return withJSDoc(finishNode(factory2.createCaseClause(expression, statements), pos), hasJSDoc); } function parseDefaultClause() { const pos = getNodePos(); parseExpected(90); parseExpected(59); const statements = parseList(3, parseStatement); return finishNode(factory2.createDefaultClause(statements), pos); } function parseCaseOrDefaultClause() { return token() === 84 ? parseCaseClause() : parseDefaultClause(); } function parseCaseBlock() { const pos = getNodePos(); parseExpected(19); const clauses = parseList(2, parseCaseOrDefaultClause); parseExpected(20); return finishNode(factory2.createCaseBlock(clauses), pos); } function parseSwitchStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(109); parseExpected(21); const expression = allowInAnd(parseExpression); parseExpected(22); const caseBlock = parseCaseBlock(); return withJSDoc(finishNode(factory2.createSwitchStatement(expression, caseBlock), pos), hasJSDoc); } function parseThrowStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(111); let expression = scanner2.hasPrecedingLineBreak() ? undefined : allowInAnd(parseExpression); if (expression === undefined) { identifierCount++; expression = finishNode(factoryCreateIdentifier(""), getNodePos()); } if (!tryParseSemicolon()) { parseErrorForMissingSemicolonAfter(expression); } return withJSDoc(finishNode(factory2.createThrowStatement(expression), pos), hasJSDoc); } function parseTryStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(113); const tryBlock = parseBlock(false); const catchClause = token() === 85 ? parseCatchClause() : undefined; let finallyBlock; if (!catchClause || token() === 98) { parseExpected(98, Diagnostics.catch_or_finally_expected); finallyBlock = parseBlock(false); } return withJSDoc(finishNode(factory2.createTryStatement(tryBlock, catchClause, finallyBlock), pos), hasJSDoc); } function parseCatchClause() { const pos = getNodePos(); parseExpected(85); let variableDeclaration; if (parseOptional(21)) { variableDeclaration = parseVariableDeclaration(); parseExpected(22); } else { variableDeclaration = undefined; } const block = parseBlock(false); return finishNode(factory2.createCatchClause(variableDeclaration, block), pos); } function parseDebuggerStatement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); parseExpected(89); parseSemicolon(); return withJSDoc(finishNode(factory2.createDebuggerStatement(), pos), hasJSDoc); } function parseExpressionOrLabeledStatement() { const pos = getNodePos(); let hasJSDoc = hasPrecedingJSDocComment(); let node; const hasParen = token() === 21; const expression = allowInAnd(parseExpression); if (isIdentifier(expression) && parseOptional(59)) { node = factory2.createLabeledStatement(expression, parseStatement()); } else { if (!tryParseSemicolon()) { parseErrorForMissingSemicolonAfter(expression); } node = factoryCreateExpressionStatement(expression); if (hasParen) { hasJSDoc = false; } } return withJSDoc(finishNode(node, pos), hasJSDoc); } function nextTokenIsIdentifierOrKeywordOnSameLine() { nextToken(); return tokenIsIdentifierOrKeyword(token()) && !scanner2.hasPrecedingLineBreak(); } function nextTokenIsClassKeywordOnSameLine() { nextToken(); return token() === 86 && !scanner2.hasPrecedingLineBreak(); } function nextTokenIsFunctionKeywordOnSameLine() { nextToken(); return token() === 100 && !scanner2.hasPrecedingLineBreak(); } function nextTokenIsIdentifierOrKeywordOrLiteralOnSameLine() { nextToken(); return (tokenIsIdentifierOrKeyword(token()) || token() === 9 || token() === 10 || token() === 11) && !scanner2.hasPrecedingLineBreak(); } function isDeclaration2() { while (true) { switch (token()) { case 115: case 121: case 87: case 100: case 86: case 94: return true; case 160: return isUsingDeclaration(); case 135: return isAwaitUsingDeclaration(); case 120: case 156: case 166: return nextTokenIsIdentifierOnSameLine(); case 144: case 145: return nextTokenIsIdentifierOrStringLiteralOnSameLine(); case 128: case 129: case 134: case 138: case 123: case 124: case 125: case 148: const previousToken = token(); nextToken(); if (scanner2.hasPrecedingLineBreak()) { return false; } if (previousToken === 138 && token() === 156) { return true; } continue; case 162: nextToken(); return token() === 19 || token() === 80 || token() === 95; case 102: nextToken(); return token() === 166 || token() === 11 || token() === 42 || token() === 19 || tokenIsIdentifierOrKeyword(token()); case 95: let currentToken2 = nextToken(); if (currentToken2 === 156) { currentToken2 = lookAhead(nextToken); } if (currentToken2 === 64 || currentToken2 === 42 || currentToken2 === 19 || currentToken2 === 90 || currentToken2 === 130 || currentToken2 === 60) { return true; } continue; case 126: nextToken(); continue; default: return false; } } } function isStartOfDeclaration() { return lookAhead(isDeclaration2); } function isStartOfStatement() { switch (token()) { case 60: case 27: case 19: case 115: case 121: case 160: case 100: case 86: case 94: case 101: case 92: case 117: case 99: case 88: case 83: case 107: case 118: case 109: case 111: case 113: case 89: case 85: case 98: return true; case 102: return isStartOfDeclaration() || lookAhead(nextTokenIsOpenParenOrLessThanOrDot); case 87: case 95: return isStartOfDeclaration(); case 134: case 138: case 120: case 144: case 145: case 156: case 162: case 166: return true; case 129: case 125: case 123: case 124: case 126: case 148: return isStartOfDeclaration() || !lookAhead(nextTokenIsIdentifierOrKeywordOnSameLine); default: return isStartOfExpression(); } } function nextTokenIsBindingIdentifierOrStartOfDestructuring() { nextToken(); return isBindingIdentifier() || token() === 19 || token() === 23; } function isLetDeclaration() { return lookAhead(nextTokenIsBindingIdentifierOrStartOfDestructuring); } function nextTokenIsBindingIdentifierOrStartOfDestructuringOnSameLineDisallowOf() { return nextTokenIsBindingIdentifierOrStartOfDestructuringOnSameLine(true); } function nextTokenIsEqualsOrSemicolonOrColonToken() { nextToken(); return token() === 64 || token() === 27 || token() === 59; } function nextTokenIsBindingIdentifierOrStartOfDestructuringOnSameLine(disallowOf) { nextToken(); if (disallowOf && token() === 165) { return lookAhead(nextTokenIsEqualsOrSemicolonOrColonToken); } return (isBindingIdentifier() || token() === 19) && !scanner2.hasPrecedingLineBreak(); } function isUsingDeclaration() { return lookAhead(nextTokenIsBindingIdentifierOrStartOfDestructuringOnSameLine); } function nextTokenIsUsingKeywordThenBindingIdentifierOrStartOfObjectDestructuringOnSameLine(disallowOf) { if (nextToken() === 160) { return nextTokenIsBindingIdentifierOrStartOfDestructuringOnSameLine(disallowOf); } return false; } function isAwaitUsingDeclaration() { return lookAhead(nextTokenIsUsingKeywordThenBindingIdentifierOrStartOfObjectDestructuringOnSameLine); } function parseStatement() { switch (token()) { case 27: return parseEmptyStatement(); case 19: return parseBlock(false); case 115: return parseVariableStatement(getNodePos(), hasPrecedingJSDocComment(), undefined); case 121: if (isLetDeclaration()) { return parseVariableStatement(getNodePos(), hasPrecedingJSDocComment(), undefined); } break; case 135: if (isAwaitUsingDeclaration()) { return parseVariableStatement(getNodePos(), hasPrecedingJSDocComment(), undefined); } break; case 160: if (isUsingDeclaration()) { return parseVariableStatement(getNodePos(), hasPrecedingJSDocComment(), undefined); } break; case 100: return parseFunctionDeclaration(getNodePos(), hasPrecedingJSDocComment(), undefined); case 86: return parseClassDeclaration(getNodePos(), hasPrecedingJSDocComment(), undefined); case 101: return parseIfStatement(); case 92: return parseDoStatement(); case 117: return parseWhileStatement(); case 99: return parseForOrForInOrForOfStatement(); case 88: return parseBreakOrContinueStatement(252); case 83: return parseBreakOrContinueStatement(253); case 107: return parseReturnStatement(); case 118: return parseWithStatement(); case 109: return parseSwitchStatement(); case 111: return parseThrowStatement(); case 113: case 85: case 98: return parseTryStatement(); case 89: return parseDebuggerStatement(); case 60: return parseDeclaration(); case 134: case 120: case 156: case 144: case 145: case 138: case 87: case 94: case 95: case 102: case 123: case 124: case 125: case 128: case 129: case 126: case 148: case 162: if (isStartOfDeclaration()) { return parseDeclaration(); } break; } return parseExpressionOrLabeledStatement(); } function isDeclareModifier(modifier) { return modifier.kind === 138; } function parseDeclaration() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const modifiers = parseModifiers(true); const isAmbient = some(modifiers, isDeclareModifier); if (isAmbient) { const node = tryReuseAmbientDeclaration(pos); if (node) { return node; } for (const m of modifiers) { m.flags |= 33554432; } return doInsideOfContext(33554432, () => parseDeclarationWorker(pos, hasJSDoc, modifiers)); } else { return parseDeclarationWorker(pos, hasJSDoc, modifiers); } } function tryReuseAmbientDeclaration(pos) { return doInsideOfContext(33554432, () => { const node = currentNode(parsingContext, pos); if (node) { return consumeNode(node); } }); } function parseDeclarationWorker(pos, hasJSDoc, modifiersIn) { switch (token()) { case 115: case 121: case 87: case 160: return parseVariableStatement(pos, hasJSDoc, modifiersIn); case 135: if (!isAwaitUsingDeclaration()) { break; } return parseVariableStatement(pos, hasJSDoc, modifiersIn); case 100: return parseFunctionDeclaration(pos, hasJSDoc, modifiersIn); case 86: return parseClassDeclaration(pos, hasJSDoc, modifiersIn); case 120: return parseInterfaceDeclaration(pos, hasJSDoc, modifiersIn); case 156: return parseTypeAliasDeclaration(pos, hasJSDoc, modifiersIn); case 94: return parseEnumDeclaration(pos, hasJSDoc, modifiersIn); case 162: case 144: case 145: return parseModuleDeclaration(pos, hasJSDoc, modifiersIn); case 102: return parseImportDeclarationOrImportEqualsDeclaration(pos, hasJSDoc, modifiersIn); case 95: nextToken(); switch (token()) { case 90: case 64: return parseExportAssignment(pos, hasJSDoc, modifiersIn); case 130: return parseNamespaceExportDeclaration(pos, hasJSDoc, modifiersIn); default: return parseExportDeclaration(pos, hasJSDoc, modifiersIn); } } if (modifiersIn) { const missing = createMissingNode(283, true, Diagnostics.Declaration_expected); setTextRangePos(missing, pos); missing.modifiers = modifiersIn; return missing; } return; } function nextTokenIsStringLiteral() { return nextToken() === 11; } function nextTokenIsFromKeywordOrEqualsToken() { nextToken(); return token() === 161 || token() === 64; } function nextTokenIsIdentifierOrStringLiteralOnSameLine() { nextToken(); return !scanner2.hasPrecedingLineBreak() && (isIdentifier2() || token() === 11); } function parseFunctionBlockOrSemicolon(flags, diagnosticMessage) { if (token() !== 19) { if (flags & 4) { parseTypeMemberSemicolon(); return; } if (canParseSemicolon()) { parseSemicolon(); return; } } return parseFunctionBlock(flags, diagnosticMessage); } function parseArrayBindingElement() { const pos = getNodePos(); if (token() === 28) { return finishNode(factory2.createOmittedExpression(), pos); } const dotDotDotToken = parseOptionalToken(26); const name = parseIdentifierOrPattern(); const initializer = parseInitializer(); return finishNode(factory2.createBindingElement(dotDotDotToken, undefined, name, initializer), pos); } function parseObjectBindingElement() { const pos = getNodePos(); const dotDotDotToken = parseOptionalToken(26); const tokenIsIdentifier = isBindingIdentifier(); let propertyName = parsePropertyName(); let name; if (tokenIsIdentifier && token() !== 59) { name = propertyName; propertyName = undefined; } else { parseExpected(59); name = parseIdentifierOrPattern(); } const initializer = parseInitializer(); return finishNode(factory2.createBindingElement(dotDotDotToken, propertyName, name, initializer), pos); } function parseObjectBindingPattern() { const pos = getNodePos(); parseExpected(19); const elements = allowInAnd(() => parseDelimitedList(9, parseObjectBindingElement)); parseExpected(20); return finishNode(factory2.createObjectBindingPattern(elements), pos); } function parseArrayBindingPattern() { const pos = getNodePos(); parseExpected(23); const elements = allowInAnd(() => parseDelimitedList(10, parseArrayBindingElement)); parseExpected(24); return finishNode(factory2.createArrayBindingPattern(elements), pos); } function isBindingIdentifierOrPrivateIdentifierOrPattern() { return token() === 19 || token() === 23 || token() === 81 || isBindingIdentifier(); } function parseIdentifierOrPattern(privateIdentifierDiagnosticMessage) { if (token() === 23) { return parseArrayBindingPattern(); } if (token() === 19) { return parseObjectBindingPattern(); } return parseBindingIdentifier(privateIdentifierDiagnosticMessage); } function parseVariableDeclarationAllowExclamation() { return parseVariableDeclaration(true); } function parseVariableDeclaration(allowExclamation) { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const name = parseIdentifierOrPattern(Diagnostics.Private_identifiers_are_not_allowed_in_variable_declarations); let exclamationToken; if (allowExclamation && name.kind === 80 && token() === 54 && !scanner2.hasPrecedingLineBreak()) { exclamationToken = parseTokenNode(); } const type = parseTypeAnnotation(); const initializer = isInOrOfKeyword(token()) ? undefined : parseInitializer(); const node = factoryCreateVariableDeclaration(name, exclamationToken, type, initializer); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseVariableDeclarationList(inForStatementInitializer) { const pos = getNodePos(); let flags = 0; switch (token()) { case 115: break; case 121: flags |= 1; break; case 87: flags |= 2; break; case 160: flags |= 4; break; case 135: if (!isAwaitUsingDeclaration()) { break; } flags |= 6; nextToken(); break; default: Debug.fail(); } nextToken(); let declarations; if (token() === 165 && lookAhead(canFollowContextualOfKeyword)) { declarations = createMissingList(); } else { const savedDisallowIn = inDisallowInContext(); setDisallowInContext(inForStatementInitializer); declarations = parseDelimitedList(8, inForStatementInitializer ? parseVariableDeclaration : parseVariableDeclarationAllowExclamation); setDisallowInContext(savedDisallowIn); } return finishNode(factoryCreateVariableDeclarationList(declarations, flags), pos); } function canFollowContextualOfKeyword() { return nextTokenIsIdentifier() && nextToken() === 22; } function parseVariableStatement(pos, hasJSDoc, modifiers) { const declarationList = parseVariableDeclarationList(false); parseSemicolon(); const node = factoryCreateVariableStatement(modifiers, declarationList); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseFunctionDeclaration(pos, hasJSDoc, modifiers) { const savedAwaitContext = inAwaitContext(); const modifierFlags = modifiersToFlags(modifiers); parseExpected(100); const asteriskToken = parseOptionalToken(42); const name = modifierFlags & 2048 ? parseOptionalBindingIdentifier() : parseBindingIdentifier(); const isGenerator = asteriskToken ? 1 : 0; const isAsync = modifierFlags & 1024 ? 2 : 0; const typeParameters = parseTypeParameters(); if (modifierFlags & 32) setAwaitContext(true); const parameters = parseParameters2(isGenerator | isAsync); const type = parseReturnType(59, false); const body = parseFunctionBlockOrSemicolon(isGenerator | isAsync, Diagnostics.or_expected); setAwaitContext(savedAwaitContext); const node = factory2.createFunctionDeclaration(modifiers, asteriskToken, name, typeParameters, parameters, type, body); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseConstructorName() { if (token() === 137) { return parseExpected(137); } if (token() === 11 && lookAhead(nextToken) === 21) { return tryParse(() => { const literalNode = parseLiteralNode(); return literalNode.text === "constructor" ? literalNode : undefined; }); } } function tryParseConstructorDeclaration(pos, hasJSDoc, modifiers) { return tryParse(() => { if (parseConstructorName()) { const typeParameters = parseTypeParameters(); const parameters = parseParameters2(0); const type = parseReturnType(59, false); const body = parseFunctionBlockOrSemicolon(0, Diagnostics.or_expected); const node = factory2.createConstructorDeclaration(modifiers, parameters, body); node.typeParameters = typeParameters; node.type = type; return withJSDoc(finishNode(node, pos), hasJSDoc); } }); } function parseMethodDeclaration(pos, hasJSDoc, modifiers, asteriskToken, name, questionToken, exclamationToken, diagnosticMessage) { const isGenerator = asteriskToken ? 1 : 0; const isAsync = some(modifiers, isAsyncModifier) ? 2 : 0; const typeParameters = parseTypeParameters(); const parameters = parseParameters2(isGenerator | isAsync); const type = parseReturnType(59, false); const body = parseFunctionBlockOrSemicolon(isGenerator | isAsync, diagnosticMessage); const node = factory2.createMethodDeclaration(modifiers, asteriskToken, name, questionToken, typeParameters, parameters, type, body); node.exclamationToken = exclamationToken; return withJSDoc(finishNode(node, pos), hasJSDoc); } function parsePropertyDeclaration(pos, hasJSDoc, modifiers, name, questionToken) { const exclamationToken = !questionToken && !scanner2.hasPrecedingLineBreak() ? parseOptionalToken(54) : undefined; const type = parseTypeAnnotation(); const initializer = doOutsideOfContext(16384 | 65536 | 8192, parseInitializer); parseSemicolonAfterPropertyName(name, type, initializer); const node = factory2.createPropertyDeclaration(modifiers, name, questionToken || exclamationToken, type, initializer); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parsePropertyOrMethodDeclaration(pos, hasJSDoc, modifiers) { const asteriskToken = parseOptionalToken(42); const name = parsePropertyName(); const questionToken = parseOptionalToken(58); if (asteriskToken || token() === 21 || token() === 30) { return parseMethodDeclaration(pos, hasJSDoc, modifiers, asteriskToken, name, questionToken, undefined, Diagnostics.or_expected); } return parsePropertyDeclaration(pos, hasJSDoc, modifiers, name, questionToken); } function parseAccessorDeclaration(pos, hasJSDoc, modifiers, kind, flags) { const name = parsePropertyName(); const typeParameters = parseTypeParameters(); const parameters = parseParameters2(0); const type = parseReturnType(59, false); const body = parseFunctionBlockOrSemicolon(flags); const node = kind === 178 ? factory2.createGetAccessorDeclaration(modifiers, name, parameters, type, body) : factory2.createSetAccessorDeclaration(modifiers, name, parameters, body); node.typeParameters = typeParameters; if (isSetAccessorDeclaration(node)) node.type = type; return withJSDoc(finishNode(node, pos), hasJSDoc); } function isClassMemberStart() { let idToken; if (token() === 60) { return true; } while (isModifierKind(token())) { idToken = token(); if (isClassMemberModifier(idToken)) { return true; } nextToken(); } if (token() === 42) { return true; } if (isLiteralPropertyName()) { idToken = token(); nextToken(); } if (token() === 23) { return true; } if (idToken !== undefined) { if (!isKeyword(idToken) || idToken === 153 || idToken === 139) { return true; } switch (token()) { case 21: case 30: case 54: case 59: case 64: case 58: return true; default: return canParseSemicolon(); } } return false; } function parseClassStaticBlockDeclaration(pos, hasJSDoc, modifiers) { parseExpectedToken(126); const body = parseClassStaticBlockBody(); const node = withJSDoc(finishNode(factory2.createClassStaticBlockDeclaration(body), pos), hasJSDoc); node.modifiers = modifiers; return node; } function parseClassStaticBlockBody() { const savedYieldContext = inYieldContext(); const savedAwaitContext = inAwaitContext(); setYieldContext(false); setAwaitContext(true); const body = parseBlock(false); setYieldContext(savedYieldContext); setAwaitContext(savedAwaitContext); return body; } function parseDecoratorExpression() { if (inAwaitContext() && token() === 135) { const pos = getNodePos(); const awaitExpression = parseIdentifier(Diagnostics.Expression_expected); nextToken(); const memberExpression = parseMemberExpressionRest(pos, awaitExpression, true); return parseCallExpressionRest(pos, memberExpression); } return parseLeftHandSideExpressionOrHigher(); } function tryParseDecorator() { const pos = getNodePos(); if (!parseOptional(60)) { return; } const expression = doInDecoratorContext(parseDecoratorExpression); return finishNode(factory2.createDecorator(expression), pos); } function tryParseModifier(hasSeenStaticModifier, permitConstAsModifier, stopOnStartOfClassStaticBlock) { const pos = getNodePos(); const kind = token(); if (token() === 87 && permitConstAsModifier) { if (!tryParse(nextTokenIsOnSameLineAndCanFollowModifier)) { return; } } else if (stopOnStartOfClassStaticBlock && token() === 126 && lookAhead(nextTokenIsOpenBrace)) { return; } else if (hasSeenStaticModifier && token() === 126) { return; } else { if (!parseAnyContextualModifier()) { return; } } return finishNode(factoryCreateToken(kind), pos); } function parseModifiers(allowDecorators, permitConstAsModifier, stopOnStartOfClassStaticBlock) { const pos = getNodePos(); let list; let decorator, modifier, hasSeenStaticModifier = false, hasLeadingModifier = false, hasTrailingDecorator = false; if (allowDecorators && token() === 60) { while (decorator = tryParseDecorator()) { list = append(list, decorator); } } while (modifier = tryParseModifier(hasSeenStaticModifier, permitConstAsModifier, stopOnStartOfClassStaticBlock)) { if (modifier.kind === 126) hasSeenStaticModifier = true; list = append(list, modifier); hasLeadingModifier = true; } if (hasLeadingModifier && allowDecorators && token() === 60) { while (decorator = tryParseDecorator()) { list = append(list, decorator); hasTrailingDecorator = true; } } if (hasTrailingDecorator) { while (modifier = tryParseModifier(hasSeenStaticModifier, permitConstAsModifier, stopOnStartOfClassStaticBlock)) { if (modifier.kind === 126) hasSeenStaticModifier = true; list = append(list, modifier); } } return list && createNodeArray(list, pos); } function parseModifiersForArrowFunction() { let modifiers; if (token() === 134) { const pos = getNodePos(); nextToken(); const modifier = finishNode(factoryCreateToken(134), pos); modifiers = createNodeArray([modifier], pos); } return modifiers; } function parseClassElement() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); if (token() === 27) { nextToken(); return withJSDoc(finishNode(factory2.createSemicolonClassElement(), pos), hasJSDoc); } const modifiers = parseModifiers(true, true, true); if (token() === 126 && lookAhead(nextTokenIsOpenBrace)) { return parseClassStaticBlockDeclaration(pos, hasJSDoc, modifiers); } if (parseContextualModifier(139)) { return parseAccessorDeclaration(pos, hasJSDoc, modifiers, 178, 0); } if (parseContextualModifier(153)) { return parseAccessorDeclaration(pos, hasJSDoc, modifiers, 179, 0); } if (token() === 137 || token() === 11) { const constructorDeclaration = tryParseConstructorDeclaration(pos, hasJSDoc, modifiers); if (constructorDeclaration) { return constructorDeclaration; } } if (isIndexSignature()) { return parseIndexSignatureDeclaration(pos, hasJSDoc, modifiers); } if (tokenIsIdentifierOrKeyword(token()) || token() === 11 || token() === 9 || token() === 10 || token() === 42 || token() === 23) { const isAmbient = some(modifiers, isDeclareModifier); if (isAmbient) { for (const m of modifiers) { m.flags |= 33554432; } return doInsideOfContext(33554432, () => parsePropertyOrMethodDeclaration(pos, hasJSDoc, modifiers)); } else { return parsePropertyOrMethodDeclaration(pos, hasJSDoc, modifiers); } } if (modifiers) { const name = createMissingNode(80, true, Diagnostics.Declaration_expected); return parsePropertyDeclaration(pos, hasJSDoc, modifiers, name, undefined); } return Debug.fail("Should not have attempted to parse class member declaration."); } function parseDecoratedExpression() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const modifiers = parseModifiers(true); if (token() === 86) { return parseClassDeclarationOrExpression(pos, hasJSDoc, modifiers, 232); } const missing = createMissingNode(283, true, Diagnostics.Expression_expected); setTextRangePos(missing, pos); missing.modifiers = modifiers; return missing; } function parseClassExpression() { return parseClassDeclarationOrExpression(getNodePos(), hasPrecedingJSDocComment(), undefined, 232); } function parseClassDeclaration(pos, hasJSDoc, modifiers) { return parseClassDeclarationOrExpression(pos, hasJSDoc, modifiers, 264); } function parseClassDeclarationOrExpression(pos, hasJSDoc, modifiers, kind) { const savedAwaitContext = inAwaitContext(); parseExpected(86); const name = parseNameOfClassDeclarationOrExpression(); const typeParameters = parseTypeParameters(); if (some(modifiers, isExportModifier)) setAwaitContext(true); const heritageClauses = parseHeritageClauses(); let members; if (parseExpected(19)) { members = parseClassMembers(); parseExpected(20); } else { members = createMissingList(); } setAwaitContext(savedAwaitContext); const node = kind === 264 ? factory2.createClassDeclaration(modifiers, name, typeParameters, heritageClauses, members) : factory2.createClassExpression(modifiers, name, typeParameters, heritageClauses, members); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseNameOfClassDeclarationOrExpression() { return isBindingIdentifier() && !isImplementsClause() ? createIdentifier(isBindingIdentifier()) : undefined; } function isImplementsClause() { return token() === 119 && lookAhead(nextTokenIsIdentifierOrKeyword); } function parseHeritageClauses() { if (isHeritageClause2()) { return parseList(22, parseHeritageClause); } return; } function parseHeritageClause() { const pos = getNodePos(); const tok = token(); Debug.assert(tok === 96 || tok === 119); nextToken(); const types = parseDelimitedList(7, parseExpressionWithTypeArguments); return finishNode(factory2.createHeritageClause(tok, types), pos); } function parseExpressionWithTypeArguments() { const pos = getNodePos(); const expression = parseLeftHandSideExpressionOrHigher(); if (expression.kind === 234) { return expression; } const typeArguments = tryParseTypeArguments(); return finishNode(factory2.createExpressionWithTypeArguments(expression, typeArguments), pos); } function tryParseTypeArguments() { return token() === 30 ? parseBracketedList(20, parseType, 30, 32) : undefined; } function isHeritageClause2() { return token() === 96 || token() === 119; } function parseClassMembers() { return parseList(5, parseClassElement); } function parseInterfaceDeclaration(pos, hasJSDoc, modifiers) { parseExpected(120); const name = parseIdentifier(); const typeParameters = parseTypeParameters(); const heritageClauses = parseHeritageClauses(); const members = parseObjectTypeMembers(); const node = factory2.createInterfaceDeclaration(modifiers, name, typeParameters, heritageClauses, members); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseTypeAliasDeclaration(pos, hasJSDoc, modifiers) { parseExpected(156); if (scanner2.hasPrecedingLineBreak()) { parseErrorAtCurrentToken(Diagnostics.Line_break_not_permitted_here); } const name = parseIdentifier(); const typeParameters = parseTypeParameters(); parseExpected(64); const type = token() === 141 && tryParse(parseKeywordAndNoDot) || parseType(); parseSemicolon(); const node = factory2.createTypeAliasDeclaration(modifiers, name, typeParameters, type); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseEnumMember() { const pos = getNodePos(); const hasJSDoc = hasPrecedingJSDocComment(); const name = parsePropertyName(); const initializer = allowInAnd(parseInitializer); return withJSDoc(finishNode(factory2.createEnumMember(name, initializer), pos), hasJSDoc); } function parseEnumDeclaration(pos, hasJSDoc, modifiers) { parseExpected(94); const name = parseIdentifier(); let members; if (parseExpected(19)) { members = doOutsideOfYieldAndAwaitContext(() => parseDelimitedList(6, parseEnumMember)); parseExpected(20); } else { members = createMissingList(); } const node = factory2.createEnumDeclaration(modifiers, name, members); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseModuleBlock() { const pos = getNodePos(); let statements; if (parseExpected(19)) { statements = parseList(1, parseStatement); parseExpected(20); } else { statements = createMissingList(); } return finishNode(factory2.createModuleBlock(statements), pos); } function parseModuleOrNamespaceDeclaration(pos, hasJSDoc, modifiers, flags) { const namespaceFlag = flags & 32; const name = flags & 8 ? parseIdentifierName() : parseIdentifier(); const body = parseOptional(25) ? parseModuleOrNamespaceDeclaration(getNodePos(), false, undefined, 8 | namespaceFlag) : parseModuleBlock(); const node = factory2.createModuleDeclaration(modifiers, name, body, flags); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseAmbientExternalModuleDeclaration(pos, hasJSDoc, modifiersIn) { let flags = 0; let name; if (token() === 162) { name = parseIdentifier(); flags |= 2048; } else { name = parseLiteralNode(); name.text = internIdentifier(name.text); } let body; if (token() === 19) { body = parseModuleBlock(); } else { parseSemicolon(); } const node = factory2.createModuleDeclaration(modifiersIn, name, body, flags); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseModuleDeclaration(pos, hasJSDoc, modifiersIn) { let flags = 0; if (token() === 162) { return parseAmbientExternalModuleDeclaration(pos, hasJSDoc, modifiersIn); } else if (parseOptional(145)) { flags |= 32; } else { parseExpected(144); if (token() === 11) { return parseAmbientExternalModuleDeclaration(pos, hasJSDoc, modifiersIn); } } return parseModuleOrNamespaceDeclaration(pos, hasJSDoc, modifiersIn, flags); } function isExternalModuleReference2() { return token() === 149 && lookAhead(nextTokenIsOpenParen); } function nextTokenIsOpenParen() { return nextToken() === 21; } function nextTokenIsOpenBrace() { return nextToken() === 19; } function nextTokenIsSlash() { return nextToken() === 44; } function parseNamespaceExportDeclaration(pos, hasJSDoc, modifiers) { parseExpected(130); parseExpected(145); const name = parseIdentifier(); parseSemicolon(); const node = factory2.createNamespaceExportDeclaration(name); node.modifiers = modifiers; return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseImportDeclarationOrImportEqualsDeclaration(pos, hasJSDoc, modifiers) { parseExpected(102); const afterImportPos = scanner2.getTokenFullStart(); let identifier; if (isIdentifier2()) { identifier = parseIdentifier(); } let phaseModifier; if ((identifier == null ? undefined : identifier.escapedText) === "type" && (token() !== 161 || isIdentifier2() && lookAhead(nextTokenIsFromKeywordOrEqualsToken)) && (isIdentifier2() || tokenAfterImportDefinitelyProducesImportDeclaration())) { phaseModifier = 156; identifier = isIdentifier2() ? parseIdentifier() : undefined; } else if ((identifier == null ? undefined : identifier.escapedText) === "defer" && (token() === 161 ? !lookAhead(nextTokenIsStringLiteral) : token() !== 28 && token() !== 64)) { phaseModifier = 166; identifier = isIdentifier2() ? parseIdentifier() : undefined; } if (identifier && !tokenAfterImportedIdentifierDefinitelyProducesImportDeclaration() && phaseModifier !== 166) { return parseImportEqualsDeclaration(pos, hasJSDoc, modifiers, identifier, phaseModifier === 156); } const importClause = tryParseImportClause(identifier, afterImportPos, phaseModifier, undefined); const moduleSpecifier = parseModuleSpecifier(); const attributes = tryParseImportAttributes(); parseSemicolon(); const node = factory2.createImportDeclaration(modifiers, importClause, moduleSpecifier, attributes); return withJSDoc(finishNode(node, pos), hasJSDoc); } function tryParseImportClause(identifier, pos, phaseModifier, skipJsDocLeadingAsterisks = false) { let importClause; if (identifier || token() === 42 || token() === 19) { importClause = parseImportClause(identifier, pos, phaseModifier, skipJsDocLeadingAsterisks); parseExpected(161); } return importClause; } function tryParseImportAttributes() { const currentToken2 = token(); if (currentToken2 === 118 || currentToken2 === 132 && !scanner2.hasPrecedingLineBreak()) { return parseImportAttributes(currentToken2); } } function parseImportAttribute() { const pos = getNodePos(); const name = tokenIsIdentifierOrKeyword(token()) ? parseIdentifierName() : parseLiteralLikeNode(11); parseExpected(59); const value = parseAssignmentExpressionOrHigher(true); return finishNode(factory2.createImportAttribute(name, value), pos); } function parseImportAttributes(token2, skipKeyword) { const pos = getNodePos(); if (!skipKeyword) { parseExpected(token2); } const openBracePosition = scanner2.getTokenStart(); if (parseExpected(19)) { const multiLine = scanner2.hasPrecedingLineBreak(); const elements = parseDelimitedList(24, parseImportAttribute, true); if (!parseExpected(20)) { const lastError = lastOrUndefined(parseDiagnostics); if (lastError && lastError.code === Diagnostics._0_expected.code) { addRelatedInfo(lastError, createDetachedDiagnostic(fileName, sourceText, openBracePosition, 1, Diagnostics.The_parser_expected_to_find_a_1_to_match_the_0_token_here, "{", "}")); } } return finishNode(factory2.createImportAttributes(elements, multiLine, token2), pos); } else { const elements = createNodeArray([], getNodePos(), undefined, false); return finishNode(factory2.createImportAttributes(elements, false, token2), pos); } } function tokenAfterImportDefinitelyProducesImportDeclaration() { return token() === 42 || token() === 19; } function tokenAfterImportedIdentifierDefinitelyProducesImportDeclaration() { return token() === 28 || token() === 161; } function parseImportEqualsDeclaration(pos, hasJSDoc, modifiers, identifier, isTypeOnly) { parseExpected(64); const moduleReference = parseModuleReference(); parseSemicolon(); const node = factory2.createImportEqualsDeclaration(modifiers, isTypeOnly, identifier, moduleReference); const finished = withJSDoc(finishNode(node, pos), hasJSDoc); return finished; } function parseImportClause(identifier, pos, phaseModifier, skipJsDocLeadingAsterisks) { let namedBindings; if (!identifier || parseOptional(28)) { if (skipJsDocLeadingAsterisks) scanner2.setSkipJsDocLeadingAsterisks(true); if (token() === 42) { namedBindings = parseNamespaceImport(); } else { namedBindings = parseNamedImportsOrExports(276); } if (skipJsDocLeadingAsterisks) scanner2.setSkipJsDocLeadingAsterisks(false); } return finishNode(factory2.createImportClause(phaseModifier, identifier, namedBindings), pos); } function parseModuleReference() { return isExternalModuleReference2() ? parseExternalModuleReference() : parseEntityName(false); } function parseExternalModuleReference() { const pos = getNodePos(); parseExpected(149); parseExpected(21); const expression = parseModuleSpecifier(); parseExpected(22); return finishNode(factory2.createExternalModuleReference(expression), pos); } function parseModuleSpecifier() { if (token() === 11) { const result = parseLiteralNode(); result.text = internIdentifier(result.text); return result; } else { return parseExpression(); } } function parseNamespaceImport() { const pos = getNodePos(); parseExpected(42); parseExpected(130); const name = parseIdentifier(); return finishNode(factory2.createNamespaceImport(name), pos); } function canParseModuleExportName() { return tokenIsIdentifierOrKeyword(token()) || token() === 11; } function parseModuleExportName(parseName) { return token() === 11 ? parseLiteralNode() : parseName(); } function parseNamedImportsOrExports(kind) { const pos = getNodePos(); const node = kind === 276 ? factory2.createNamedImports(parseBracketedList(23, parseImportSpecifier, 19, 20)) : factory2.createNamedExports(parseBracketedList(23, parseExportSpecifier, 19, 20)); return finishNode(node, pos); } function parseExportSpecifier() { const hasJSDoc = hasPrecedingJSDocComment(); return withJSDoc(parseImportOrExportSpecifier(282), hasJSDoc); } function parseImportSpecifier() { return parseImportOrExportSpecifier(277); } function parseImportOrExportSpecifier(kind) { const pos = getNodePos(); let checkIdentifierIsKeyword = isKeyword(token()) && !isIdentifier2(); let checkIdentifierStart = scanner2.getTokenStart(); let checkIdentifierEnd = scanner2.getTokenEnd(); let isTypeOnly = false; let propertyName; let canParseAsKeyword = true; let name = parseModuleExportName(parseIdentifierName); if (name.kind === 80 && name.escapedText === "type") { if (token() === 130) { const firstAs = parseIdentifierName(); if (token() === 130) { const secondAs = parseIdentifierName(); if (canParseModuleExportName()) { isTypeOnly = true; propertyName = firstAs; name = parseModuleExportName(parseNameWithKeywordCheck); canParseAsKeyword = false; } else { propertyName = name; name = secondAs; canParseAsKeyword = false; } } else if (canParseModuleExportName()) { propertyName = name; canParseAsKeyword = false; name = parseModuleExportName(parseNameWithKeywordCheck); } else { isTypeOnly = true; name = firstAs; } } else if (canParseModuleExportName()) { isTypeOnly = true; name = parseModuleExportName(parseNameWithKeywordCheck); } } if (canParseAsKeyword && token() === 130) { propertyName = name; parseExpected(130); name = parseModuleExportName(parseNameWithKeywordCheck); } if (kind === 277) { if (name.kind !== 80) { parseErrorAt(skipTrivia2(sourceText, name.pos), name.end, Diagnostics.Identifier_expected); name = setTextRangePosEnd(createMissingNode(80, false), name.pos, name.pos); } else if (checkIdentifierIsKeyword) { parseErrorAt(checkIdentifierStart, checkIdentifierEnd, Diagnostics.Identifier_expected); } } const node = kind === 277 ? factory2.createImportSpecifier(isTypeOnly, propertyName, name) : factory2.createExportSpecifier(isTypeOnly, propertyName, name); return finishNode(node, pos); function parseNameWithKeywordCheck() { checkIdentifierIsKeyword = isKeyword(token()) && !isIdentifier2(); checkIdentifierStart = scanner2.getTokenStart(); checkIdentifierEnd = scanner2.getTokenEnd(); return parseIdentifierName(); } } function parseNamespaceExport(pos) { return finishNode(factory2.createNamespaceExport(parseModuleExportName(parseIdentifierName)), pos); } function parseExportDeclaration(pos, hasJSDoc, modifiers) { const savedAwaitContext = inAwaitContext(); setAwaitContext(true); let exportClause; let moduleSpecifier; let attributes; const isTypeOnly = parseOptional(156); const namespaceExportPos = getNodePos(); if (parseOptional(42)) { if (parseOptional(130)) { exportClause = parseNamespaceExport(namespaceExportPos); } parseExpected(161); moduleSpecifier = parseModuleSpecifier(); } else { exportClause = parseNamedImportsOrExports(280); if (token() === 161 || token() === 11 && !scanner2.hasPrecedingLineBreak()) { parseExpected(161); moduleSpecifier = parseModuleSpecifier(); } } const currentToken2 = token(); if (moduleSpecifier && (currentToken2 === 118 || currentToken2 === 132) && !scanner2.hasPrecedingLineBreak()) { attributes = parseImportAttributes(currentToken2); } parseSemicolon(); setAwaitContext(savedAwaitContext); const node = factory2.createExportDeclaration(modifiers, isTypeOnly, exportClause, moduleSpecifier, attributes); return withJSDoc(finishNode(node, pos), hasJSDoc); } function parseExportAssignment(pos, hasJSDoc, modifiers) { const savedAwaitContext = inAwaitContext(); setAwaitContext(true); let isExportEquals; if (parseOptional(64)) { isExportEquals = true; } else { parseExpected(90); } const expression = parseAssignmentExpressionOrHigher(true); parseSemicolon(); setAwaitContext(savedAwaitContext); const node = factory2.createExportAssignment(modifiers, isExportEquals, expression); return withJSDoc(finishNode(node, pos), hasJSDoc); } let ParsingContext; ((ParsingContext2) => { ParsingContext2[ParsingContext2["SourceElements"] = 0] = "SourceElements"; ParsingContext2[ParsingContext2["BlockStatements"] = 1] = "BlockStatements"; ParsingContext2[ParsingContext2["SwitchClauses"] = 2] = "SwitchClauses"; ParsingContext2[ParsingContext2["SwitchClauseStatements"] = 3] = "SwitchClauseStatements"; ParsingContext2[ParsingContext2["TypeMembers"] = 4] = "TypeMembers"; ParsingContext2[ParsingContext2["ClassMembers"] = 5] = "ClassMembers"; ParsingContext2[ParsingContext2["EnumMembers"] = 6] = "EnumMembers"; ParsingContext2[ParsingContext2["HeritageClauseElement"] = 7] = "HeritageClauseElement"; ParsingContext2[ParsingContext2["VariableDeclarations"] = 8] = "VariableDeclarations"; ParsingContext2[ParsingContext2["ObjectBindingElements"] = 9] = "ObjectBindingElements"; ParsingContext2[ParsingContext2["ArrayBindingElements"] = 10] = "ArrayBindingElements"; ParsingContext2[ParsingContext2["ArgumentExpressions"] = 11] = "ArgumentExpressions"; ParsingContext2[ParsingContext2["ObjectLiteralMembers"] = 12] = "ObjectLiteralMembers"; ParsingContext2[ParsingContext2["JsxAttributes"] = 13] = "JsxAttributes"; ParsingContext2[ParsingContext2["JsxChildren"] = 14] = "JsxChildren"; ParsingContext2[ParsingContext2["ArrayLiteralMembers"] = 15] = "ArrayLiteralMembers"; ParsingContext2[ParsingContext2["Parameters"] = 16] = "Parameters"; ParsingContext2[ParsingContext2["JSDocParameters"] = 17] = "JSDocParameters"; ParsingContext2[ParsingContext2["RestProperties"] = 18] = "RestProperties"; ParsingContext2[ParsingContext2["TypeParameters"] = 19] = "TypeParameters"; ParsingContext2[ParsingContext2["TypeArguments"] = 20] = "TypeArguments"; ParsingContext2[ParsingContext2["TupleElementTypes"] = 21] = "TupleElementTypes"; ParsingContext2[ParsingContext2["HeritageClauses"] = 22] = "HeritageClauses"; ParsingContext2[ParsingContext2["ImportOrExportSpecifiers"] = 23] = "ImportOrExportSpecifiers"; ParsingContext2[ParsingContext2["ImportAttributes"] = 24] = "ImportAttributes"; ParsingContext2[ParsingContext2["JSDocComment"] = 25] = "JSDocComment"; ParsingContext2[ParsingContext2["Count"] = 26] = "Count"; })(ParsingContext || (ParsingContext = {})); let Tristate; ((Tristate2) => { Tristate2[Tristate2["False"] = 0] = "False"; Tristate2[Tristate2["True"] = 1] = "True"; Tristate2[Tristate2["Unknown"] = 2] = "Unknown"; })(Tristate || (Tristate = {})); let JSDocParser; ((JSDocParser2) => { function parseJSDocTypeExpressionForTests2(content, start, length2) { initializeState("file.js", content, 99, undefined, 1, 0); scanner2.setText(content, start, length2); currentToken = scanner2.scan(); const jsDocTypeExpression = parseJSDocTypeExpression(); const sourceFile = createSourceFile2("file.js", 99, 1, false, [], factoryCreateToken(1), 0, noop); const diagnostics = attachFileToDiagnostics(parseDiagnostics, sourceFile); if (jsDocDiagnostics) { sourceFile.jsDocDiagnostics = attachFileToDiagnostics(jsDocDiagnostics, sourceFile); } clearState(); return jsDocTypeExpression ? { jsDocTypeExpression, diagnostics } : undefined; } JSDocParser2.parseJSDocTypeExpressionForTests = parseJSDocTypeExpressionForTests2; function parseJSDocTypeExpression(mayOmitBraces) { const pos = getNodePos(); const hasBrace = (mayOmitBraces ? parseOptional : parseExpected)(19); const type = doInsideOfContext(16777216, parseJSDocType); if (!mayOmitBraces || hasBrace) { parseExpectedJSDoc(20); } const result = factory2.createJSDocTypeExpression(type); fixupParentReferences(result); return finishNode(result, pos); } JSDocParser2.parseJSDocTypeExpression = parseJSDocTypeExpression; function parseJSDocNameReference() { const pos = getNodePos(); const hasBrace = parseOptional(19); const p2 = getNodePos(); let entityName = parseEntityName(false); while (token() === 81) { reScanHashToken(); nextTokenJSDoc(); entityName = finishNode(factory2.createJSDocMemberName(entityName, parseIdentifier()), p2); } if (hasBrace) { parseExpectedJSDoc(20); } const result = factory2.createJSDocNameReference(entityName); fixupParentReferences(result); return finishNode(result, pos); } JSDocParser2.parseJSDocNameReference = parseJSDocNameReference; function parseIsolatedJSDocComment2(content, start, length2) { initializeState("", content, 99, undefined, 1, 0); const jsDoc = doInsideOfContext(16777216, () => parseJSDocCommentWorker(start, length2)); const sourceFile = { languageVariant: 0, text: content }; const diagnostics = attachFileToDiagnostics(parseDiagnostics, sourceFile); clearState(); return jsDoc ? { jsDoc, diagnostics } : undefined; } JSDocParser2.parseIsolatedJSDocComment = parseIsolatedJSDocComment2; function parseJSDocComment(parent2, start, length2) { const saveToken = currentToken; const saveParseDiagnosticsLength = parseDiagnostics.length; const saveParseErrorBeforeNextFinishedNode = parseErrorBeforeNextFinishedNode; const comment = doInsideOfContext(16777216, () => parseJSDocCommentWorker(start, length2)); setParent(comment, parent2); if (contextFlags & 524288) { if (!jsDocDiagnostics) { jsDocDiagnostics = []; } addRange(jsDocDiagnostics, parseDiagnostics, saveParseDiagnosticsLength); } currentToken = saveToken; parseDiagnostics.length = saveParseDiagnosticsLength; parseErrorBeforeNextFinishedNode = saveParseErrorBeforeNextFinishedNode; return comment; } JSDocParser2.parseJSDocComment = parseJSDocComment; let JSDocState; ((JSDocState2) => { JSDocState2[JSDocState2["BeginningOfLine"] = 0] = "BeginningOfLine"; JSDocState2[JSDocState2["SawAsterisk"] = 1] = "SawAsterisk"; JSDocState2[JSDocState2["SavingComments"] = 2] = "SavingComments"; JSDocState2[JSDocState2["SavingBackticks"] = 3] = "SavingBackticks"; })(JSDocState || (JSDocState = {})); let PropertyLikeParse; ((PropertyLikeParse2) => { PropertyLikeParse2[PropertyLikeParse2["Property"] = 1] = "Property"; PropertyLikeParse2[PropertyLikeParse2["Parameter"] = 2] = "Parameter"; PropertyLikeParse2[PropertyLikeParse2["CallbackParameter"] = 4] = "CallbackParameter"; })(PropertyLikeParse || (PropertyLikeParse = {})); function parseJSDocCommentWorker(start = 0, length2) { const content = sourceText; const end = length2 === undefined ? content.length : start + length2; length2 = end - start; Debug.assert(start >= 0); Debug.assert(start <= end); Debug.assert(end <= content.length); if (!isJSDocLikeText(content, start)) { return; } let tags; let tagsPos; let tagsEnd; let linkEnd; let commentsPos; let comments = []; const parts = []; const saveParsingContext = parsingContext; parsingContext |= 1 << 25; const result = scanner2.scanRange(start + 3, length2 - 5, doJSDocScan); parsingContext = saveParsingContext; return result; function doJSDocScan() { let state = 1; let margin; let indent3 = start - (content.lastIndexOf(` `, start) + 1) + 4; function pushComment(text) { if (!margin) { margin = indent3; } comments.push(text); indent3 += text.length; } nextTokenJSDoc(); while (parseOptionalJsdoc(5)) ; if (parseOptionalJsdoc(4)) { state = 0; indent3 = 0; } loop: while (true) { switch (token()) { case 60: removeTrailingWhitespace(comments); if (!commentsPos) commentsPos = getNodePos(); addTag(parseTag(indent3)); state = 0; margin = undefined; break; case 4: comments.push(scanner2.getTokenText()); state = 0; indent3 = 0; break; case 42: const asterisk = scanner2.getTokenText(); if (state === 1) { state = 2; pushComment(asterisk); } else { Debug.assert(state === 0); state = 1; indent3 += asterisk.length; } break; case 5: Debug.assert(state !== 2, "whitespace shouldn't come from the scanner while saving top-level comment text"); const whitespace = scanner2.getTokenText(); if (margin !== undefined && indent3 + whitespace.length > margin) { comments.push(whitespace.slice(margin - indent3)); } indent3 += whitespace.length; break; case 1: break loop; case 82: state = 2; pushComment(scanner2.getTokenValue()); break; case 19: state = 2; const commentEnd = scanner2.getTokenFullStart(); const linkStart = scanner2.getTokenEnd() - 1; const link = parseJSDocLink(linkStart); if (link) { if (!linkEnd) { removeLeadingNewlines(comments); } parts.push(finishNode(factory2.createJSDocText(comments.join("")), linkEnd ?? start, commentEnd)); parts.push(link); comments = []; linkEnd = scanner2.getTokenEnd(); break; } default: state = 2; pushComment(scanner2.getTokenText()); break; } if (state === 2) { nextJSDocCommentTextToken(false); } else { nextTokenJSDoc(); } } const trimmedComments = comments.join("").trimEnd(); if (parts.length && trimmedComments.length) { parts.push(finishNode(factory2.createJSDocText(trimmedComments), linkEnd ?? start, commentsPos)); } if (parts.length && tags) Debug.assertIsDefined(commentsPos, "having parsed tags implies that the end of the comment span should be set"); const tagsArray = tags && createNodeArray(tags, tagsPos, tagsEnd); return finishNode(factory2.createJSDocComment(parts.length ? createNodeArray(parts, start, commentsPos) : trimmedComments.length ? trimmedComments : undefined, tagsArray), start, end); } function removeLeadingNewlines(comments2) { while (comments2.length && (comments2[0] === ` ` || comments2[0] === "\r")) { comments2.shift(); } } function removeTrailingWhitespace(comments2) { while (comments2.length) { const trimmed = comments2[comments2.length - 1].trimEnd(); if (trimmed === "") { comments2.pop(); } else if (trimmed.length < comments2[comments2.length - 1].length) { comments2[comments2.length - 1] = trimmed; break; } else { break; } } } function isNextNonwhitespaceTokenEndOfFile() { while (true) { nextTokenJSDoc(); if (token() === 1) { return true; } if (!(token() === 5 || token() === 4)) { return false; } } } function skipWhitespace() { if (token() === 5 || token() === 4) { if (lookAhead(isNextNonwhitespaceTokenEndOfFile)) { return; } } while (token() === 5 || token() === 4) { nextTokenJSDoc(); } } function skipWhitespaceOrAsterisk() { if (token() === 5 || token() === 4) { if (lookAhead(isNextNonwhitespaceTokenEndOfFile)) { return ""; } } let precedingLineBreak = scanner2.hasPrecedingLineBreak(); let seenLineBreak = false; let indentText = ""; while (precedingLineBreak && token() === 42 || token() === 5 || token() === 4) { indentText += scanner2.getTokenText(); if (token() === 4) { precedingLineBreak = true; seenLineBreak = true; indentText = ""; } else if (token() === 42) { precedingLineBreak = false; } nextTokenJSDoc(); } return seenLineBreak ? indentText : ""; } function parseTag(margin) { Debug.assert(token() === 60); const start2 = scanner2.getTokenStart(); nextTokenJSDoc(); const tagName = parseJSDocIdentifierName(undefined); const indentText = skipWhitespaceOrAsterisk(); let tag; switch (tagName.escapedText) { case "author": tag = parseAuthorTag(start2, tagName, margin, indentText); break; case "implements": tag = parseImplementsTag(start2, tagName, margin, indentText); break; case "augments": case "extends": tag = parseAugmentsTag(start2, tagName, margin, indentText); break; case "class": case "constructor": tag = parseSimpleTag(start2, factory2.createJSDocClassTag, tagName, margin, indentText); break; case "public": tag = parseSimpleTag(start2, factory2.createJSDocPublicTag, tagName, margin, indentText); break; case "private": tag = parseSimpleTag(start2, factory2.createJSDocPrivateTag, tagName, margin, indentText); break; case "protected": tag = parseSimpleTag(start2, factory2.createJSDocProtectedTag, tagName, margin, indentText); break; case "readonly": tag = parseSimpleTag(start2, factory2.createJSDocReadonlyTag, tagName, margin, indentText); break; case "override": tag = parseSimpleTag(start2, factory2.createJSDocOverrideTag, tagName, margin, indentText); break; case "deprecated": hasDeprecatedTag = true; tag = parseSimpleTag(start2, factory2.createJSDocDeprecatedTag, tagName, margin, indentText); break; case "this": tag = parseThisTag(start2, tagName, margin, indentText); break; case "enum": tag = parseEnumTag(start2, tagName, margin, indentText); break; case "arg": case "argument": case "param": return parseParameterOrPropertyTag(start2, tagName, 2, margin); case "return": case "returns": tag = parseReturnTag(start2, tagName, margin, indentText); break; case "template": tag = parseTemplateTag(start2, tagName, margin, indentText); break; case "type": tag = parseTypeTag(start2, tagName, margin, indentText); break; case "typedef": tag = parseTypedefTag(start2, tagName, margin, indentText); break; case "callback": tag = parseCallbackTag(start2, tagName, margin, indentText); break; case "overload": tag = parseOverloadTag(start2, tagName, margin, indentText); break; case "satisfies": tag = parseSatisfiesTag(start2, tagName, margin, indentText); break; case "see": tag = parseSeeTag(start2, tagName, margin, indentText); break; case "exception": case "throws": tag = parseThrowsTag(start2, tagName, margin, indentText); break; case "import": tag = parseImportTag(start2, tagName, margin, indentText); break; default: tag = parseUnknownTag(start2, tagName, margin, indentText); break; } return tag; } function parseTrailingTagComments(pos, end2, margin, indentText) { if (!indentText) { margin += end2 - pos; } return parseTagComments(margin, indentText.slice(margin)); } function parseTagComments(indent3, initialMargin) { const commentsPos2 = getNodePos(); let comments2 = []; const parts2 = []; let linkEnd2; let state = 0; let margin; function pushComment(text) { if (!margin) { margin = indent3; } comments2.push(text); indent3 += text.length; } if (initialMargin !== undefined) { if (initialMargin !== "") { pushComment(initialMargin); } state = 1; } let tok = token(); loop: while (true) { switch (tok) { case 4: state = 0; comments2.push(scanner2.getTokenText()); indent3 = 0; break; case 60: scanner2.resetTokenState(scanner2.getTokenEnd() - 1); break loop; case 1: break loop; case 5: Debug.assert(state !== 2 && state !== 3, "whitespace shouldn't come from the scanner while saving comment text"); const whitespace = scanner2.getTokenText(); if (margin !== undefined && indent3 + whitespace.length > margin) { comments2.push(whitespace.slice(margin - indent3)); state = 2; } indent3 += whitespace.length; break; case 19: state = 2; const commentEnd = scanner2.getTokenFullStart(); const linkStart = scanner2.getTokenEnd() - 1; const link = parseJSDocLink(linkStart); if (link) { parts2.push(finishNode(factory2.createJSDocText(comments2.join("")), linkEnd2 ?? commentsPos2, commentEnd)); parts2.push(link); comments2 = []; linkEnd2 = scanner2.getTokenEnd(); } else { pushComment(scanner2.getTokenText()); } break; case 62: if (state === 3) { state = 2; } else { state = 3; } pushComment(scanner2.getTokenText()); break; case 82: if (state !== 3) { state = 2; } pushComment(scanner2.getTokenValue()); break; case 42: if (state === 0) { state = 1; indent3 += 1; break; } default: if (state !== 3) { state = 2; } pushComment(scanner2.getTokenText()); break; } if (state === 2 || state === 3) { tok = nextJSDocCommentTextToken(state === 3); } else { tok = nextTokenJSDoc(); } } removeLeadingNewlines(comments2); const trimmedComments = comments2.join("").trimEnd(); if (parts2.length) { if (trimmedComments.length) { parts2.push(finishNode(factory2.createJSDocText(trimmedComments), linkEnd2 ?? commentsPos2)); } return createNodeArray(parts2, commentsPos2, scanner2.getTokenEnd()); } else if (trimmedComments.length) { return trimmedComments; } } function parseJSDocLink(start2) { const linkType = tryParse(parseJSDocLinkPrefix); if (!linkType) { return; } nextTokenJSDoc(); skipWhitespace(); const name = parseJSDocLinkName(); const text = []; while (token() !== 20 && token() !== 4 && token() !== 1) { text.push(scanner2.getTokenText()); nextTokenJSDoc(); } const create = linkType === "link" ? factory2.createJSDocLink : linkType === "linkcode" ? factory2.createJSDocLinkCode : factory2.createJSDocLinkPlain; return finishNode(create(name, text.join("")), start2, scanner2.getTokenEnd()); } function parseJSDocLinkName() { if (tokenIsIdentifierOrKeyword(token())) { const pos = getNodePos(); let name = parseIdentifierName(); while (parseOptional(25)) { name = finishNode(factory2.createQualifiedName(name, token() === 81 ? createMissingNode(80, false) : parseIdentifierName()), pos); } while (token() === 81) { reScanHashToken(); nextTokenJSDoc(); name = finishNode(factory2.createJSDocMemberName(name, parseIdentifier()), pos); } return name; } return; } function parseJSDocLinkPrefix() { skipWhitespaceOrAsterisk(); if (token() === 19 && nextTokenJSDoc() === 60 && tokenIsIdentifierOrKeyword(nextTokenJSDoc())) { const kind = scanner2.getTokenValue(); if (isJSDocLinkTag(kind)) return kind; } } function isJSDocLinkTag(kind) { return kind === "link" || kind === "linkcode" || kind === "linkplain"; } function parseUnknownTag(start2, tagName, indent3, indentText) { return finishNode(factory2.createJSDocUnknownTag(tagName, parseTrailingTagComments(start2, getNodePos(), indent3, indentText)), start2); } function addTag(tag) { if (!tag) { return; } if (!tags) { tags = [tag]; tagsPos = tag.pos; } else { tags.push(tag); } tagsEnd = tag.end; } function tryParseTypeExpression() { skipWhitespaceOrAsterisk(); return token() === 19 ? parseJSDocTypeExpression() : undefined; } function parseBracketNameInPropertyAndParamTag() { const isBracketed = parseOptionalJsdoc(23); if (isBracketed) { skipWhitespace(); } const isBackquoted = parseOptionalJsdoc(62); const name = parseJSDocEntityName(); if (isBackquoted) { parseExpectedTokenJSDoc(62); } if (isBracketed) { skipWhitespace(); if (parseOptionalToken(64)) { parseExpression(); } parseExpected(24); } return { name, isBracketed }; } function isObjectOrObjectArrayTypeReference(node) { switch (node.kind) { case 151: return true; case 189: return isObjectOrObjectArrayTypeReference(node.elementType); default: return isTypeReferenceNode(node) && isIdentifier(node.typeName) && node.typeName.escapedText === "Object" && !node.typeArguments; } } function parseParameterOrPropertyTag(start2, tagName, target, indent3) { let typeExpression = tryParseTypeExpression(); let isNameFirst = !typeExpression; skipWhitespaceOrAsterisk(); const { name, isBracketed } = parseBracketNameInPropertyAndParamTag(); const indentText = skipWhitespaceOrAsterisk(); if (isNameFirst && !lookAhead(parseJSDocLinkPrefix)) { typeExpression = tryParseTypeExpression(); } const comment = parseTrailingTagComments(start2, getNodePos(), indent3, indentText); const nestedTypeLiteral = parseNestedTypeLiteral(typeExpression, name, target, indent3); if (nestedTypeLiteral) { typeExpression = nestedTypeLiteral; isNameFirst = true; } const result2 = target === 1 ? factory2.createJSDocPropertyTag(tagName, name, isBracketed, typeExpression, isNameFirst, comment) : factory2.createJSDocParameterTag(tagName, name, isBracketed, typeExpression, isNameFirst, comment); return finishNode(result2, start2); } function parseNestedTypeLiteral(typeExpression, name, target, indent3) { if (typeExpression && isObjectOrObjectArrayTypeReference(typeExpression.type)) { const pos = getNodePos(); let child; let children; while (child = tryParse(() => parseChildParameterOrPropertyTag(target, indent3, name))) { if (child.kind === 342 || child.kind === 349) { children = append(children, child); } else if (child.kind === 346) { parseErrorAtRange(child.tagName, Diagnostics.A_JSDoc_template_tag_may_not_follow_a_typedef_callback_or_overload_tag); } } if (children) { const literal = finishNode(factory2.createJSDocTypeLiteral(children, typeExpression.type.kind === 189), pos); return finishNode(factory2.createJSDocTypeExpression(literal), pos); } } } function parseReturnTag(start2, tagName, indent3, indentText) { if (some(tags, isJSDocReturnTag)) { parseErrorAt(tagName.pos, scanner2.getTokenStart(), Diagnostics._0_tag_already_specified, unescapeLeadingUnderscores(tagName.escapedText)); } const typeExpression = tryParseTypeExpression(); return finishNode(factory2.createJSDocReturnTag(tagName, typeExpression, parseTrailingTagComments(start2, getNodePos(), indent3, indentText)), start2); } function parseTypeTag(start2, tagName, indent3, indentText) { if (some(tags, isJSDocTypeTag)) { parseErrorAt(tagName.pos, scanner2.getTokenStart(), Diagnostics._0_tag_already_specified, unescapeLeadingUnderscores(tagName.escapedText)); } const typeExpression = parseJSDocTypeExpression(true); const comments2 = indent3 !== undefined && indentText !== undefined ? parseTrailingTagComments(start2, getNodePos(), indent3, indentText) : undefined; return finishNode(factory2.createJSDocTypeTag(tagName, typeExpression, comments2), start2); } function parseSeeTag(start2, tagName, indent3, indentText) { const isMarkdownOrJSDocLink = token() === 23 || lookAhead(() => nextTokenJSDoc() === 60 && tokenIsIdentifierOrKeyword(nextTokenJSDoc()) && isJSDocLinkTag(scanner2.getTokenValue())); const nameExpression = isMarkdownOrJSDocLink ? undefined : parseJSDocNameReference(); const comments2 = indent3 !== undefined && indentText !== undefined ? parseTrailingTagComments(start2, getNodePos(), indent3, indentText) : undefined; return finishNode(factory2.createJSDocSeeTag(tagName, nameExpression, comments2), start2); } function parseThrowsTag(start2, tagName, indent3, indentText) { const typeExpression = tryParseTypeExpression(); const comment = parseTrailingTagComments(start2, getNodePos(), indent3, indentText); return finishNode(factory2.createJSDocThrowsTag(tagName, typeExpression, comment), start2); } function parseAuthorTag(start2, tagName, indent3, indentText) { const commentStart = getNodePos(); const textOnly = parseAuthorNameAndEmail(); let commentEnd = scanner2.getTokenFullStart(); const comments2 = parseTrailingTagComments(start2, commentEnd, indent3, indentText); if (!comments2) { commentEnd = scanner2.getTokenFullStart(); } const allParts = typeof comments2 !== "string" ? createNodeArray(concatenate([finishNode(textOnly, commentStart, commentEnd)], comments2), commentStart) : textOnly.text + comments2; return finishNode(factory2.createJSDocAuthorTag(tagName, allParts), start2); } function parseAuthorNameAndEmail() { const comments2 = []; let inEmail = false; let token2 = scanner2.getToken(); while (token2 !== 1 && token2 !== 4) { if (token2 === 30) { inEmail = true; } else if (token2 === 60 && !inEmail) { break; } else if (token2 === 32 && inEmail) { comments2.push(scanner2.getTokenText()); scanner2.resetTokenState(scanner2.getTokenEnd()); break; } comments2.push(scanner2.getTokenText()); token2 = nextTokenJSDoc(); } return factory2.createJSDocText(comments2.join("")); } function parseImplementsTag(start2, tagName, margin, indentText) { const className = parseExpressionWithTypeArgumentsForAugments(); return finishNode(factory2.createJSDocImplementsTag(tagName, className, parseTrailingTagComments(start2, getNodePos(), margin, indentText)), start2); } function parseAugmentsTag(start2, tagName, margin, indentText) { const className = parseExpressionWithTypeArgumentsForAugments(); return finishNode(factory2.createJSDocAugmentsTag(tagName, className, parseTrailingTagComments(start2, getNodePos(), margin, indentText)), start2); } function parseSatisfiesTag(start2, tagName, margin, indentText) { const typeExpression = parseJSDocTypeExpression(false); const comments2 = margin !== undefined && indentText !== undefined ? parseTrailingTagComments(start2, getNodePos(), margin, indentText) : undefined; return finishNode(factory2.createJSDocSatisfiesTag(tagName, typeExpression, comments2), start2); } function parseImportTag(start2, tagName, margin, indentText) { const afterImportTagPos = scanner2.getTokenFullStart(); let identifier; if (isIdentifier2()) { identifier = parseIdentifier(); } const importClause = tryParseImportClause(identifier, afterImportTagPos, 156, true); const moduleSpecifier = parseModuleSpecifier(); const attributes = tryParseImportAttributes(); const comments2 = margin !== undefined && indentText !== undefined ? parseTrailingTagComments(start2, getNodePos(), margin, indentText) : undefined; return finishNode(factory2.createJSDocImportTag(tagName, importClause, moduleSpecifier, attributes, comments2), start2); } function parseExpressionWithTypeArgumentsForAugments() { const usedBrace = parseOptional(19); const pos = getNodePos(); const expression = parsePropertyAccessEntityNameExpression(); scanner2.setSkipJsDocLeadingAsterisks(true); const typeArguments = tryParseTypeArguments(); scanner2.setSkipJsDocLeadingAsterisks(false); const node = factory2.createExpressionWithTypeArguments(expression, typeArguments); const res = finishNode(node, pos); if (usedBrace) { skipWhitespace(); parseExpected(20); } return res; } function parsePropertyAccessEntityNameExpression() { const pos = getNodePos(); let node = parseJSDocIdentifierName(); while (parseOptional(25)) { const name = parseJSDocIdentifierName(); node = finishNode(factoryCreatePropertyAccessExpression(node, name), pos); } return node; } function parseSimpleTag(start2, createTag, tagName, margin, indentText) { return finishNode(createTag(tagName, parseTrailingTagComments(start2, getNodePos(), margin, indentText)), start2); } function parseThisTag(start2, tagName, margin, indentText) { const typeExpression = parseJSDocTypeExpression(true); skipWhitespace(); return finishNode(factory2.createJSDocThisTag(tagName, typeExpression, parseTrailingTagComments(start2, getNodePos(), margin, indentText)), start2); } function parseEnumTag(start2, tagName, margin, indentText) { const typeExpression = parseJSDocTypeExpression(true); skipWhitespace(); return finishNode(factory2.createJSDocEnumTag(tagName, typeExpression, parseTrailingTagComments(start2, getNodePos(), margin, indentText)), start2); } function parseTypedefTag(start2, tagName, indent3, indentText) { let typeExpression = tryParseTypeExpression(); skipWhitespaceOrAsterisk(); const fullName = parseJSDocTypeNameWithNamespace(); skipWhitespace(); let comment = parseTagComments(indent3); let end2; if (!typeExpression || isObjectOrObjectArrayTypeReference(typeExpression.type)) { let child; let childTypeTag; let jsDocPropertyTags; let hasChildren = false; while (child = tryParse(() => parseChildPropertyTag(indent3))) { if (child.kind === 346) { break; } hasChildren = true; if (child.kind === 345) { if (childTypeTag) { const lastError = parseErrorAtCurrentToken(Diagnostics.A_JSDoc_typedef_comment_may_not_contain_multiple_type_tags); if (lastError) { addRelatedInfo(lastError, createDetachedDiagnostic(fileName, sourceText, 0, 0, Diagnostics.The_tag_was_first_specified_here)); } break; } else { childTypeTag = child; } } else { jsDocPropertyTags = append(jsDocPropertyTags, child); } } if (hasChildren) { const isArrayType = typeExpression && typeExpression.type.kind === 189; const jsdocTypeLiteral = factory2.createJSDocTypeLiteral(jsDocPropertyTags, isArrayType); typeExpression = childTypeTag && childTypeTag.typeExpression && !isObjectOrObjectArrayTypeReference(childTypeTag.typeExpression.type) ? childTypeTag.typeExpression : finishNode(jsdocTypeLiteral, start2); end2 = typeExpression.end; } } end2 = end2 || comment !== undefined ? getNodePos() : (fullName ?? typeExpression ?? tagName).end; if (!comment) { comment = parseTrailingTagComments(start2, end2, indent3, indentText); } const typedefTag = factory2.createJSDocTypedefTag(tagName, typeExpression, fullName, comment); return finishNode(typedefTag, start2, end2); } function parseJSDocTypeNameWithNamespace(nested) { const start2 = scanner2.getTokenStart(); if (!tokenIsIdentifierOrKeyword(token())) { return; } const typeNameOrNamespaceName = parseJSDocIdentifierName(); if (parseOptional(25)) { const body = parseJSDocTypeNameWithNamespace(true); const jsDocNamespaceNode = factory2.createModuleDeclaration(undefined, typeNameOrNamespaceName, body, nested ? 8 : undefined); return finishNode(jsDocNamespaceNode, start2); } if (nested) { typeNameOrNamespaceName.flags |= 4096; } return typeNameOrNamespaceName; } function parseCallbackTagParameters(indent3) { const pos = getNodePos(); let child; let parameters; while (child = tryParse(() => parseChildParameterOrPropertyTag(4, indent3))) { if (child.kind === 346) { parseErrorAtRange(child.tagName, Diagnostics.A_JSDoc_template_tag_may_not_follow_a_typedef_callback_or_overload_tag); break; } parameters = append(parameters, child); } return createNodeArray(parameters || [], pos); } function parseJSDocSignature(start2, indent3) { const parameters = parseCallbackTagParameters(indent3); const returnTag = tryParse(() => { if (parseOptionalJsdoc(60)) { const tag = parseTag(indent3); if (tag && tag.kind === 343) { return tag; } } }); return finishNode(factory2.createJSDocSignature(undefined, parameters, returnTag), start2); } function parseCallbackTag(start2, tagName, indent3, indentText) { const fullName = parseJSDocTypeNameWithNamespace(); skipWhitespace(); let comment = parseTagComments(indent3); const typeExpression = parseJSDocSignature(start2, indent3); if (!comment) { comment = parseTrailingTagComments(start2, getNodePos(), indent3, indentText); } const end2 = comment !== undefined ? getNodePos() : typeExpression.end; return finishNode(factory2.createJSDocCallbackTag(tagName, typeExpression, fullName, comment), start2, end2); } function parseOverloadTag(start2, tagName, indent3, indentText) { skipWhitespace(); let comment = parseTagComments(indent3); const typeExpression = parseJSDocSignature(start2, indent3); if (!comment) { comment = parseTrailingTagComments(start2, getNodePos(), indent3, indentText); } const end2 = comment !== undefined ? getNodePos() : typeExpression.end; return finishNode(factory2.createJSDocOverloadTag(tagName, typeExpression, comment), start2, end2); } function escapedTextsEqual(a, b) { while (!isIdentifier(a) || !isIdentifier(b)) { if (!isIdentifier(a) && !isIdentifier(b) && a.right.escapedText === b.right.escapedText) { a = a.left; b = b.left; } else { return false; } } return a.escapedText === b.escapedText; } function parseChildPropertyTag(indent3) { return parseChildParameterOrPropertyTag(1, indent3); } function parseChildParameterOrPropertyTag(target, indent3, name) { let canParseTag = true; let seenAsterisk = false; while (true) { switch (nextTokenJSDoc()) { case 60: if (canParseTag) { const child = tryParseChildTag(target, indent3); if (child && (child.kind === 342 || child.kind === 349) && name && (isIdentifier(child.name) || !escapedTextsEqual(name, child.name.left))) { return false; } return child; } seenAsterisk = false; break; case 4: canParseTag = true; seenAsterisk = false; break; case 42: if (seenAsterisk) { canParseTag = false; } seenAsterisk = true; break; case 80: canParseTag = false; break; case 1: return false; } } } function tryParseChildTag(target, indent3) { Debug.assert(token() === 60); const start2 = scanner2.getTokenFullStart(); nextTokenJSDoc(); const tagName = parseJSDocIdentifierName(); const indentText = skipWhitespaceOrAsterisk(); let t; switch (tagName.escapedText) { case "type": return target === 1 && parseTypeTag(start2, tagName); case "prop": case "property": t = 1; break; case "arg": case "argument": case "param": t = 2 | 4; break; case "template": return parseTemplateTag(start2, tagName, indent3, indentText); case "this": return parseThisTag(start2, tagName, indent3, indentText); default: return false; } if (!(target & t)) { return false; } return parseParameterOrPropertyTag(start2, tagName, target, indent3); } function parseTemplateTagTypeParameter() { const typeParameterPos = getNodePos(); const isBracketed = parseOptionalJsdoc(23); if (isBracketed) { skipWhitespace(); } const modifiers = parseModifiers(false, true); const name = parseJSDocIdentifierName(Diagnostics.Unexpected_token_A_type_parameter_name_was_expected_without_curly_braces); let defaultType; if (isBracketed) { skipWhitespace(); parseExpected(64); defaultType = doInsideOfContext(16777216, parseJSDocType); parseExpected(24); } if (nodeIsMissing(name)) { return; } return finishNode(factory2.createTypeParameterDeclaration(modifiers, name, undefined, defaultType), typeParameterPos); } function parseTemplateTagTypeParameters() { const pos = getNodePos(); const typeParameters = []; do { skipWhitespace(); const node = parseTemplateTagTypeParameter(); if (node !== undefined) { typeParameters.push(node); } skipWhitespaceOrAsterisk(); } while (parseOptionalJsdoc(28)); return createNodeArray(typeParameters, pos); } function parseTemplateTag(start2, tagName, indent3, indentText) { const constraint = token() === 19 ? parseJSDocTypeExpression() : undefined; const typeParameters = parseTemplateTagTypeParameters(); return finishNode(factory2.createJSDocTemplateTag(tagName, constraint, typeParameters, parseTrailingTagComments(start2, getNodePos(), indent3, indentText)), start2); } function parseOptionalJsdoc(t) { if (token() === t) { nextTokenJSDoc(); return true; } return false; } function parseJSDocEntityName() { let entity = parseJSDocIdentifierName(); if (parseOptional(23)) { parseExpected(24); } while (parseOptional(25)) { const name = parseJSDocIdentifierName(); if (parseOptional(23)) { parseExpected(24); } entity = createQualifiedName(entity, name); } return entity; } function parseJSDocIdentifierName(message) { if (!tokenIsIdentifierOrKeyword(token())) { return createMissingNode(80, !message, message || Diagnostics.Identifier_expected); } identifierCount++; const start2 = scanner2.getTokenStart(); const end2 = scanner2.getTokenEnd(); const originalKeywordKind = token(); const text = internIdentifier(scanner2.getTokenValue()); const result2 = finishNode(factoryCreateIdentifier(text, originalKeywordKind), start2, end2); nextTokenJSDoc(); return result2; } } })(JSDocParser = Parser2.JSDocParser || (Parser2.JSDocParser = {})); })(Parser || (Parser = {})); var incrementallyParsedFiles = /* @__PURE__ */ new WeakSet; function markAsIncrementallyParsed(sourceFile) { if (incrementallyParsedFiles.has(sourceFile)) { Debug.fail("Source file has already been incrementally parsed"); } incrementallyParsedFiles.add(sourceFile); } var intersectingChangeSet = /* @__PURE__ */ new WeakSet; function intersectsIncrementalChange(node) { return intersectingChangeSet.has(node); } function markAsIntersectingIncrementalChange(node) { intersectingChangeSet.add(node); } var IncrementalParser; ((IncrementalParser2) => { function updateSourceFile2(sourceFile, newText, textChangeRange, aggressiveChecks) { aggressiveChecks = aggressiveChecks || Debug.shouldAssert(2); checkChangeRange(sourceFile, newText, textChangeRange, aggressiveChecks); if (textChangeRangeIsUnchanged(textChangeRange)) { return sourceFile; } if (sourceFile.statements.length === 0) { return Parser.parseSourceFile(sourceFile.fileName, newText, sourceFile.languageVersion, undefined, true, sourceFile.scriptKind, sourceFile.setExternalModuleIndicator, sourceFile.jsDocParsingMode); } markAsIncrementallyParsed(sourceFile); Parser.fixupParentReferences(sourceFile); const oldText = sourceFile.text; const syntaxCursor = createSyntaxCursor(sourceFile); const changeRange = extendToAffectedRange(sourceFile, textChangeRange); checkChangeRange(sourceFile, newText, changeRange, aggressiveChecks); Debug.assert(changeRange.span.start <= textChangeRange.span.start); Debug.assert(textSpanEnd(changeRange.span) === textSpanEnd(textChangeRange.span)); Debug.assert(textSpanEnd(textChangeRangeNewSpan(changeRange)) === textSpanEnd(textChangeRangeNewSpan(textChangeRange))); const delta = textChangeRangeNewSpan(changeRange).length - changeRange.span.length; updateTokenPositionsAndMarkElements(sourceFile, changeRange.span.start, textSpanEnd(changeRange.span), textSpanEnd(textChangeRangeNewSpan(changeRange)), delta, oldText, newText, aggressiveChecks); const result = Parser.parseSourceFile(sourceFile.fileName, newText, sourceFile.languageVersion, syntaxCursor, true, sourceFile.scriptKind, sourceFile.setExternalModuleIndicator, sourceFile.jsDocParsingMode); result.commentDirectives = getNewCommentDirectives(sourceFile.commentDirectives, result.commentDirectives, changeRange.span.start, textSpanEnd(changeRange.span), delta, oldText, newText, aggressiveChecks); result.impliedNodeFormat = sourceFile.impliedNodeFormat; transferSourceFileChildren(sourceFile, result); return result; } IncrementalParser2.updateSourceFile = updateSourceFile2; function getNewCommentDirectives(oldDirectives, newDirectives, changeStart, changeRangeOldEnd, delta, oldText, newText, aggressiveChecks) { if (!oldDirectives) return newDirectives; let commentDirectives; let addedNewlyScannedDirectives = false; for (const directive of oldDirectives) { const { range, type } = directive; if (range.end < changeStart) { commentDirectives = append(commentDirectives, directive); } else if (range.pos > changeRangeOldEnd) { addNewlyScannedDirectives(); const updatedDirective = { range: { pos: range.pos + delta, end: range.end + delta }, type }; commentDirectives = append(commentDirectives, updatedDirective); if (aggressiveChecks) { Debug.assert(oldText.substring(range.pos, range.end) === newText.substring(updatedDirective.range.pos, updatedDirective.range.end)); } } } addNewlyScannedDirectives(); return commentDirectives; function addNewlyScannedDirectives() { if (addedNewlyScannedDirectives) return; addedNewlyScannedDirectives = true; if (!commentDirectives) { commentDirectives = newDirectives; } else if (newDirectives) { commentDirectives.push(...newDirectives); } } } function moveElementEntirelyPastChangeRange(element, origSourceFile, isArray2, delta, oldText, newText, aggressiveChecks) { if (isArray2) { visitArray2(element); } else { visitNode3(element); } return; function visitNode3(node) { let text = ""; if (aggressiveChecks && shouldCheckNode(node)) { text = oldText.substring(node.pos, node.end); } unsetNodeChildren(node, origSourceFile); setTextRangePosEnd(node, node.pos + delta, node.end + delta); if (aggressiveChecks && shouldCheckNode(node)) { Debug.assert(text === newText.substring(node.pos, node.end)); } forEachChild(node, visitNode3, visitArray2); if (hasJSDocNodes(node)) { for (const jsDocComment of node.jsDoc) { visitNode3(jsDocComment); } } checkNodePositions(node, aggressiveChecks); } function visitArray2(array) { setTextRangePosEnd(array, array.pos + delta, array.end + delta); for (const node of array) { visitNode3(node); } } } function shouldCheckNode(node) { switch (node.kind) { case 11: case 9: case 80: return true; } return false; } function adjustIntersectingElement(element, changeStart, changeRangeOldEnd, changeRangeNewEnd, delta) { Debug.assert(element.end >= changeStart, "Adjusting an element that was entirely before the change range"); Debug.assert(element.pos <= changeRangeOldEnd, "Adjusting an element that was entirely after the change range"); Debug.assert(element.pos <= element.end); const pos = Math.min(element.pos, changeRangeNewEnd); const end = element.end >= changeRangeOldEnd ? element.end + delta : Math.min(element.end, changeRangeNewEnd); Debug.assert(pos <= end); if (element.parent) { const parent2 = element.parent; Debug.assertGreaterThanOrEqual(pos, parent2.pos); Debug.assertLessThanOrEqual(end, parent2.end); } setTextRangePosEnd(element, pos, end); } function checkNodePositions(node, aggressiveChecks) { if (aggressiveChecks) { let pos = node.pos; const visitNode3 = (child) => { Debug.assert(child.pos >= pos); pos = child.end; }; if (hasJSDocNodes(node)) { for (const jsDocComment of node.jsDoc) { visitNode3(jsDocComment); } } forEachChild(node, visitNode3); Debug.assert(pos <= node.end); } } function updateTokenPositionsAndMarkElements(sourceFile, changeStart, changeRangeOldEnd, changeRangeNewEnd, delta, oldText, newText, aggressiveChecks) { visitNode3(sourceFile); return; function visitNode3(child) { Debug.assert(child.pos <= child.end); if (child.pos > changeRangeOldEnd) { moveElementEntirelyPastChangeRange(child, sourceFile, false, delta, oldText, newText, aggressiveChecks); return; } const fullEnd = child.end; if (fullEnd >= changeStart) { markAsIntersectingIncrementalChange(child); unsetNodeChildren(child, sourceFile); adjustIntersectingElement(child, changeStart, changeRangeOldEnd, changeRangeNewEnd, delta); forEachChild(child, visitNode3, visitArray2); if (hasJSDocNodes(child)) { for (const jsDocComment of child.jsDoc) { visitNode3(jsDocComment); } } checkNodePositions(child, aggressiveChecks); return; } Debug.assert(fullEnd < changeStart); } function visitArray2(array) { Debug.assert(array.pos <= array.end); if (array.pos > changeRangeOldEnd) { moveElementEntirelyPastChangeRange(array, sourceFile, true, delta, oldText, newText, aggressiveChecks); return; } const fullEnd = array.end; if (fullEnd >= changeStart) { markAsIntersectingIncrementalChange(array); adjustIntersectingElement(array, changeStart, changeRangeOldEnd, changeRangeNewEnd, delta); for (const node of array) { visitNode3(node); } return; } Debug.assert(fullEnd < changeStart); } } function extendToAffectedRange(sourceFile, changeRange) { const maxLookahead = 1; let start = changeRange.span.start; for (let i = 0;start > 0 && i <= maxLookahead; i++) { const nearestNode = findNearestNodeStartingBeforeOrAtPosition(sourceFile, start); Debug.assert(nearestNode.pos <= start); const position = nearestNode.pos; start = Math.max(0, position - 1); } const finalSpan = createTextSpanFromBounds(start, textSpanEnd(changeRange.span)); const finalLength = changeRange.newLength + (changeRange.span.start - start); return createTextChangeRange(finalSpan, finalLength); } function findNearestNodeStartingBeforeOrAtPosition(sourceFile, position) { let bestResult = sourceFile; let lastNodeEntirelyBeforePosition; forEachChild(sourceFile, visit); if (lastNodeEntirelyBeforePosition) { const lastChildOfLastEntireNodeBeforePosition = getLastDescendant(lastNodeEntirelyBeforePosition); if (lastChildOfLastEntireNodeBeforePosition.pos > bestResult.pos) { bestResult = lastChildOfLastEntireNodeBeforePosition; } } return bestResult; function getLastDescendant(node) { while (true) { const lastChild = getLastChild(node); if (lastChild) { node = lastChild; } else { return node; } } } function visit(child) { if (nodeIsMissing(child)) { return; } if (child.pos <= position) { if (child.pos >= bestResult.pos) { bestResult = child; } if (position < child.end) { forEachChild(child, visit); return true; } else { Debug.assert(child.end <= position); lastNodeEntirelyBeforePosition = child; } } else { Debug.assert(child.pos > position); return true; } } } function checkChangeRange(sourceFile, newText, textChangeRange, aggressiveChecks) { const oldText = sourceFile.text; if (textChangeRange) { Debug.assert(oldText.length - textChangeRange.span.length + textChangeRange.newLength === newText.length); if (aggressiveChecks || Debug.shouldAssert(3)) { const oldTextPrefix = oldText.substr(0, textChangeRange.span.start); const newTextPrefix = newText.substr(0, textChangeRange.span.start); Debug.assert(oldTextPrefix === newTextPrefix); const oldTextSuffix = oldText.substring(textSpanEnd(textChangeRange.span), oldText.length); const newTextSuffix = newText.substring(textSpanEnd(textChangeRangeNewSpan(textChangeRange)), newText.length); Debug.assert(oldTextSuffix === newTextSuffix); } } } function createSyntaxCursor(sourceFile) { let currentArray = sourceFile.statements; let currentArrayIndex = 0; Debug.assert(currentArrayIndex < currentArray.length); let current = currentArray[currentArrayIndex]; let lastQueriedPosition = -1; return { currentNode(position) { if (position !== lastQueriedPosition) { if (current && current.end === position && currentArrayIndex < currentArray.length - 1) { currentArrayIndex++; current = currentArray[currentArrayIndex]; } if (!current || current.pos !== position) { findHighestListElementThatStartsAtPosition(position); } } lastQueriedPosition = position; Debug.assert(!current || current.pos === position); return current; } }; function findHighestListElementThatStartsAtPosition(position) { currentArray = undefined; currentArrayIndex = -1; current = undefined; forEachChild(sourceFile, visitNode3, visitArray2); return; function visitNode3(node) { if (position >= node.pos && position < node.end) { forEachChild(node, visitNode3, visitArray2); return true; } return false; } function visitArray2(array) { if (position >= array.pos && position < array.end) { for (let i = 0;i < array.length; i++) { const child = array[i]; if (child) { if (child.pos === position) { currentArray = array; currentArrayIndex = i; current = child; return true; } else { if (child.pos < position && position < child.end) { forEachChild(child, visitNode3, visitArray2); return true; } } } } } return false; } } } IncrementalParser2.createSyntaxCursor = createSyntaxCursor; let InvalidPosition; ((InvalidPosition2) => { InvalidPosition2[InvalidPosition2["Value"] = -1] = "Value"; })(InvalidPosition || (InvalidPosition = {})); })(IncrementalParser || (IncrementalParser = {})); function isDeclarationFileName(fileName) { return getDeclarationFileExtension(fileName) !== undefined; } function getDeclarationFileExtension(fileName) { const standardExtension = getAnyExtensionFromPath(fileName, supportedDeclarationExtensions, false); if (standardExtension) { return standardExtension; } if (fileExtensionIs(fileName, ".ts")) { const baseName = getBaseFileName(fileName); const index = baseName.lastIndexOf(".d."); if (index >= 0) { return baseName.substring(index); } } return; } function parseResolutionMode(mode, pos, end, reportDiagnostic) { if (!mode) { return; } if (mode === "import") { return 99; } if (mode === "require") { return 1; } reportDiagnostic(pos, end - pos, Diagnostics.resolution_mode_should_be_either_require_or_import); return; } function processCommentPragmas(context, sourceText) { const pragmas = []; for (const range of getLeadingCommentRanges(sourceText, 0) || emptyArray) { const comment = sourceText.substring(range.pos, range.end); extractPragmas(pragmas, range, comment); } context.pragmas = /* @__PURE__ */ new Map; for (const pragma of pragmas) { if (context.pragmas.has(pragma.name)) { const currentValue = context.pragmas.get(pragma.name); if (currentValue instanceof Array) { currentValue.push(pragma.args); } else { context.pragmas.set(pragma.name, [currentValue, pragma.args]); } continue; } context.pragmas.set(pragma.name, pragma.args); } } function processPragmasIntoFields(context, reportDiagnostic) { context.checkJsDirective = undefined; context.referencedFiles = []; context.typeReferenceDirectives = []; context.libReferenceDirectives = []; context.amdDependencies = []; context.pragmas.forEach((entryOrList, key) => { switch (key) { case "reference": { const referencedFiles = context.referencedFiles; const typeReferenceDirectives = context.typeReferenceDirectives; const libReferenceDirectives = context.libReferenceDirectives; forEach(toArray(entryOrList), (arg) => { const { types, lib, path, ["resolution-mode"]: res, preserve: _preserve } = arg.arguments; const preserve = _preserve === "true" ? true : undefined; if (arg.arguments["no-default-lib"] === "true") {} else if (types) { const parsed = parseResolutionMode(res, types.pos, types.end, reportDiagnostic); typeReferenceDirectives.push({ pos: types.pos, end: types.end, fileName: types.value, ...parsed ? { resolutionMode: parsed } : {}, ...preserve ? { preserve } : {} }); } else if (lib) { libReferenceDirectives.push({ pos: lib.pos, end: lib.end, fileName: lib.value, ...preserve ? { preserve } : {} }); } else if (path) { referencedFiles.push({ pos: path.pos, end: path.end, fileName: path.value, ...preserve ? { preserve } : {} }); } else { reportDiagnostic(arg.range.pos, arg.range.end - arg.range.pos, Diagnostics.Invalid_reference_directive_syntax); } }); break; } case "amd-dependency": { context.amdDependencies = map(toArray(entryOrList), (x) => ({ name: x.arguments.name, path: x.arguments.path })); break; } case "amd-module": { if (entryOrList instanceof Array) { for (const entry of entryOrList) { if (context.moduleName) { reportDiagnostic(entry.range.pos, entry.range.end - entry.range.pos, Diagnostics.An_AMD_module_cannot_have_multiple_name_assignments); } context.moduleName = entry.arguments.name; } } else { context.moduleName = entryOrList.arguments.name; } break; } case "ts-nocheck": case "ts-check": { forEach(toArray(entryOrList), (entry) => { if (!context.checkJsDirective || entry.range.pos > context.checkJsDirective.pos) { context.checkJsDirective = { enabled: key === "ts-check", end: entry.range.end, pos: entry.range.pos }; } }); break; } case "jsx": case "jsxfrag": case "jsximportsource": case "jsxruntime": return; default: Debug.fail("Unhandled pragma kind"); } }); } var namedArgRegExCache = /* @__PURE__ */ new Map; function getNamedArgRegEx(name) { if (namedArgRegExCache.has(name)) { return namedArgRegExCache.get(name); } const result = new RegExp(`(\\s${name}\\s*=\\s*)(?:(?:'([^']*)')|(?:"([^"]*)"))`, "im"); namedArgRegExCache.set(name, result); return result; } var tripleSlashXMLCommentStartRegEx = /^\/\/\/\s*<(\S+)\s.*?\/>/m; var singleLinePragmaRegEx = /^\/\/\/?\s*@([^\s:]+)((?:[^\S\r\n]|:).*)?$/m; function extractPragmas(pragmas, range, text) { const tripleSlash = range.kind === 2 && tripleSlashXMLCommentStartRegEx.exec(text); if (tripleSlash) { const name = tripleSlash[1].toLowerCase(); const pragma = commentPragmas[name]; if (!pragma || !(pragma.kind & 1)) { return; } if (pragma.args) { const argument = {}; for (const arg of pragma.args) { const matcher = getNamedArgRegEx(arg.name); const matchResult = matcher.exec(text); if (!matchResult && !arg.optional) { return; } else if (matchResult) { const value = matchResult[2] || matchResult[3]; if (arg.captureSpan) { const startPos = range.pos + matchResult.index + matchResult[1].length + 1; argument[arg.name] = { value, pos: startPos, end: startPos + value.length }; } else { argument[arg.name] = value; } } } pragmas.push({ name, args: { arguments: argument, range } }); } else { pragmas.push({ name, args: { arguments: {}, range } }); } return; } const singleLine = range.kind === 2 && singleLinePragmaRegEx.exec(text); if (singleLine) { return addPragmaForMatch(pragmas, range, 2, singleLine); } if (range.kind === 3) { const multiLinePragmaRegEx = /@(\S+)(\s+(?:\S.*)?)?$/gm; let multiLineMatch; while (multiLineMatch = multiLinePragmaRegEx.exec(text)) { addPragmaForMatch(pragmas, range, 4, multiLineMatch); } } } function addPragmaForMatch(pragmas, range, kind, match) { if (!match) return; const name = match[1].toLowerCase(); const pragma = commentPragmas[name]; if (!pragma || !(pragma.kind & kind)) { return; } const args = match[2]; const argument = getNamedPragmaArguments(pragma, args); if (argument === "fail") return; pragmas.push({ name, args: { arguments: argument, range } }); return; } function getNamedPragmaArguments(pragma, text) { if (!text) return {}; if (!pragma.args) return {}; const args = text.trim().split(/\s+/); const argMap = {}; for (let i = 0;i < pragma.args.length; i++) { const argument = pragma.args[i]; if (!args[i] && !argument.optional) { return "fail"; } if (argument.captureSpan) { return Debug.fail("Capture spans not yet implemented for non-xml pragmas"); } argMap[argument.name] = args[i]; } return argMap; } function tagNamesAreEquivalent(lhs, rhs) { if (lhs.kind !== rhs.kind) { return false; } if (lhs.kind === 80) { return lhs.escapedText === rhs.escapedText; } if (lhs.kind === 110) { return true; } if (lhs.kind === 296) { return lhs.namespace.escapedText === rhs.namespace.escapedText && lhs.name.escapedText === rhs.name.escapedText; } return lhs.name.escapedText === rhs.name.escapedText && tagNamesAreEquivalent(lhs.expression, rhs.expression); } var compileOnSaveCommandLineOption = { name: "compileOnSave", type: "boolean", defaultValueDescription: false }; var jsxOptionMap = new Map(Object.entries({ preserve: 1, "react-native": 3, "react-jsx": 4, "react-jsxdev": 5, react: 2 })); var inverseJsxOptionMap = new Map(mapIterator(jsxOptionMap.entries(), ([key, value]) => ["" + value, key])); var libEntries = [ ["es5", "lib.es5.d.ts"], ["es6", "lib.es2015.d.ts"], ["es2015", "lib.es2015.d.ts"], ["es7", "lib.es2016.d.ts"], ["es2016", "lib.es2016.d.ts"], ["es2017", "lib.es2017.d.ts"], ["es2018", "lib.es2018.d.ts"], ["es2019", "lib.es2019.d.ts"], ["es2020", "lib.es2020.d.ts"], ["es2021", "lib.es2021.d.ts"], ["es2022", "lib.es2022.d.ts"], ["es2023", "lib.es2023.d.ts"], ["es2024", "lib.es2024.d.ts"], ["es2025", "lib.es2025.d.ts"], ["esnext", "lib.esnext.d.ts"], ["dom", "lib.dom.d.ts"], ["dom.iterable", "lib.dom.iterable.d.ts"], ["dom.asynciterable", "lib.dom.asynciterable.d.ts"], ["webworker", "lib.webworker.d.ts"], ["webworker.importscripts", "lib.webworker.importscripts.d.ts"], ["webworker.iterable", "lib.webworker.iterable.d.ts"], ["webworker.asynciterable", "lib.webworker.asynciterable.d.ts"], ["scripthost", "lib.scripthost.d.ts"], ["es2015.core", "lib.es2015.core.d.ts"], ["es2015.collection", "lib.es2015.collection.d.ts"], ["es2015.generator", "lib.es2015.generator.d.ts"], ["es2015.iterable", "lib.es2015.iterable.d.ts"], ["es2015.promise", "lib.es2015.promise.d.ts"], ["es2015.proxy", "lib.es2015.proxy.d.ts"], ["es2015.reflect", "lib.es2015.reflect.d.ts"], ["es2015.symbol", "lib.es2015.symbol.d.ts"], ["es2015.symbol.wellknown", "lib.es2015.symbol.wellknown.d.ts"], ["es2016.array.include", "lib.es2016.array.include.d.ts"], ["es2016.intl", "lib.es2016.intl.d.ts"], ["es2017.arraybuffer", "lib.es2017.arraybuffer.d.ts"], ["es2017.date", "lib.es2017.date.d.ts"], ["es2017.object", "lib.es2017.object.d.ts"], ["es2017.sharedmemory", "lib.es2017.sharedmemory.d.ts"], ["es2017.string", "lib.es2017.string.d.ts"], ["es2017.intl", "lib.es2017.intl.d.ts"], ["es2017.typedarrays", "lib.es2017.typedarrays.d.ts"], ["es2018.asyncgenerator", "lib.es2018.asyncgenerator.d.ts"], ["es2018.asynciterable", "lib.es2018.asynciterable.d.ts"], ["es2018.intl", "lib.es2018.intl.d.ts"], ["es2018.promise", "lib.es2018.promise.d.ts"], ["es2018.regexp", "lib.es2018.regexp.d.ts"], ["es2019.array", "lib.es2019.array.d.ts"], ["es2019.object", "lib.es2019.object.d.ts"], ["es2019.string", "lib.es2019.string.d.ts"], ["es2019.symbol", "lib.es2019.symbol.d.ts"], ["es2019.intl", "lib.es2019.intl.d.ts"], ["es2020.bigint", "lib.es2020.bigint.d.ts"], ["es2020.date", "lib.es2020.date.d.ts"], ["es2020.promise", "lib.es2020.promise.d.ts"], ["es2020.sharedmemory", "lib.es2020.sharedmemory.d.ts"], ["es2020.string", "lib.es2020.string.d.ts"], ["es2020.symbol.wellknown", "lib.es2020.symbol.wellknown.d.ts"], ["es2020.intl", "lib.es2020.intl.d.ts"], ["es2020.number", "lib.es2020.number.d.ts"], ["es2021.promise", "lib.es2021.promise.d.ts"], ["es2021.string", "lib.es2021.string.d.ts"], ["es2021.weakref", "lib.es2021.weakref.d.ts"], ["es2021.intl", "lib.es2021.intl.d.ts"], ["es2022.array", "lib.es2022.array.d.ts"], ["es2022.error", "lib.es2022.error.d.ts"], ["es2022.intl", "lib.es2022.intl.d.ts"], ["es2022.object", "lib.es2022.object.d.ts"], ["es2022.string", "lib.es2022.string.d.ts"], ["es2022.regexp", "lib.es2022.regexp.d.ts"], ["es2023.array", "lib.es2023.array.d.ts"], ["es2023.collection", "lib.es2023.collection.d.ts"], ["es2023.intl", "lib.es2023.intl.d.ts"], ["es2024.arraybuffer", "lib.es2024.arraybuffer.d.ts"], ["es2024.collection", "lib.es2024.collection.d.ts"], ["es2024.object", "lib.es2024.object.d.ts"], ["es2024.promise", "lib.es2024.promise.d.ts"], ["es2024.regexp", "lib.es2024.regexp.d.ts"], ["es2024.sharedmemory", "lib.es2024.sharedmemory.d.ts"], ["es2024.string", "lib.es2024.string.d.ts"], ["es2025.collection", "lib.es2025.collection.d.ts"], ["es2025.float16", "lib.es2025.float16.d.ts"], ["es2025.intl", "lib.es2025.intl.d.ts"], ["es2025.iterator", "lib.es2025.iterator.d.ts"], ["es2025.promise", "lib.es2025.promise.d.ts"], ["es2025.regexp", "lib.es2025.regexp.d.ts"], ["esnext.asynciterable", "lib.es2018.asynciterable.d.ts"], ["esnext.symbol", "lib.es2019.symbol.d.ts"], ["esnext.bigint", "lib.es2020.bigint.d.ts"], ["esnext.weakref", "lib.es2021.weakref.d.ts"], ["esnext.object", "lib.es2024.object.d.ts"], ["esnext.regexp", "lib.es2024.regexp.d.ts"], ["esnext.string", "lib.es2024.string.d.ts"], ["esnext.float16", "lib.es2025.float16.d.ts"], ["esnext.iterator", "lib.es2025.iterator.d.ts"], ["esnext.promise", "lib.es2025.promise.d.ts"], ["esnext.array", "lib.esnext.array.d.ts"], ["esnext.collection", "lib.esnext.collection.d.ts"], ["esnext.date", "lib.esnext.date.d.ts"], ["esnext.decorators", "lib.esnext.decorators.d.ts"], ["esnext.disposable", "lib.esnext.disposable.d.ts"], ["esnext.error", "lib.esnext.error.d.ts"], ["esnext.intl", "lib.esnext.intl.d.ts"], ["esnext.sharedmemory", "lib.esnext.sharedmemory.d.ts"], ["esnext.temporal", "lib.esnext.temporal.d.ts"], ["esnext.typedarrays", "lib.esnext.typedarrays.d.ts"], ["decorators", "lib.decorators.d.ts"], ["decorators.legacy", "lib.decorators.legacy.d.ts"] ]; var libs = libEntries.map((entry) => entry[0]); var libMap = new Map(libEntries); var optionsForWatch = [ { name: "watchFile", type: new Map(Object.entries({ fixedpollinginterval: 0, prioritypollinginterval: 1, dynamicprioritypolling: 2, fixedchunksizepolling: 3, usefsevents: 4, usefseventsonparentdirectory: 5 })), category: Diagnostics.Watch_and_Build_Modes, description: Diagnostics.Specify_how_the_TypeScript_watch_mode_works, defaultValueDescription: 4 }, { name: "watchDirectory", type: new Map(Object.entries({ usefsevents: 0, fixedpollinginterval: 1, dynamicprioritypolling: 2, fixedchunksizepolling: 3 })), category: Diagnostics.Watch_and_Build_Modes, description: Diagnostics.Specify_how_directories_are_watched_on_systems_that_lack_recursive_file_watching_functionality, defaultValueDescription: 0 }, { name: "fallbackPolling", type: new Map(Object.entries({ fixedinterval: 0, priorityinterval: 1, dynamicpriority: 2, fixedchunksize: 3 })), category: Diagnostics.Watch_and_Build_Modes, description: Diagnostics.Specify_what_approach_the_watcher_should_use_if_the_system_runs_out_of_native_file_watchers, defaultValueDescription: 1 }, { name: "synchronousWatchDirectory", type: "boolean", category: Diagnostics.Watch_and_Build_Modes, description: Diagnostics.Synchronously_call_callbacks_and_update_the_state_of_directory_watchers_on_platforms_that_don_t_support_recursive_watching_natively, defaultValueDescription: false }, { name: "excludeDirectories", type: "list", element: { name: "excludeDirectory", type: "string", isFilePath: true, extraValidation: specToDiagnostic }, allowConfigDirTemplateSubstitution: true, category: Diagnostics.Watch_and_Build_Modes, description: Diagnostics.Remove_a_list_of_directories_from_the_watch_process }, { name: "excludeFiles", type: "list", element: { name: "excludeFile", type: "string", isFilePath: true, extraValidation: specToDiagnostic }, allowConfigDirTemplateSubstitution: true, category: Diagnostics.Watch_and_Build_Modes, description: Diagnostics.Remove_a_list_of_files_from_the_watch_mode_s_processing } ]; var commonOptionsWithBuild = [ { name: "help", shortName: "h", type: "boolean", showInSimplifiedHelpView: true, isCommandLineOnly: true, category: Diagnostics.Command_line_Options, description: Diagnostics.Print_this_message, defaultValueDescription: false }, { name: "help", shortName: "?", type: "boolean", isCommandLineOnly: true, category: Diagnostics.Command_line_Options, defaultValueDescription: false }, { name: "watch", shortName: "w", type: "boolean", showInSimplifiedHelpView: true, isCommandLineOnly: true, category: Diagnostics.Command_line_Options, description: Diagnostics.Watch_input_files, defaultValueDescription: false }, { name: "preserveWatchOutput", type: "boolean", showInSimplifiedHelpView: false, category: Diagnostics.Output_Formatting, description: Diagnostics.Disable_wiping_the_console_in_watch_mode, defaultValueDescription: false }, { name: "listFiles", type: "boolean", category: Diagnostics.Compiler_Diagnostics, description: Diagnostics.Print_all_of_the_files_read_during_the_compilation, defaultValueDescription: false }, { name: "explainFiles", type: "boolean", category: Diagnostics.Compiler_Diagnostics, description: Diagnostics.Print_files_read_during_the_compilation_including_why_it_was_included, defaultValueDescription: false }, { name: "listEmittedFiles", type: "boolean", category: Diagnostics.Compiler_Diagnostics, description: Diagnostics.Print_the_names_of_emitted_files_after_a_compilation, defaultValueDescription: false }, { name: "pretty", type: "boolean", showInSimplifiedHelpView: true, category: Diagnostics.Output_Formatting, description: Diagnostics.Enable_color_and_formatting_in_TypeScript_s_output_to_make_compiler_errors_easier_to_read, defaultValueDescription: true }, { name: "traceResolution", type: "boolean", category: Diagnostics.Compiler_Diagnostics, description: Diagnostics.Log_paths_used_during_the_moduleResolution_process, defaultValueDescription: false }, { name: "diagnostics", type: "boolean", category: Diagnostics.Compiler_Diagnostics, description: Diagnostics.Output_compiler_performance_information_after_building, defaultValueDescription: false }, { name: "extendedDiagnostics", type: "boolean", category: Diagnostics.Compiler_Diagnostics, description: Diagnostics.Output_more_detailed_compiler_performance_information_after_building, defaultValueDescription: false }, { name: "generateCpuProfile", type: "string", isFilePath: true, paramType: Diagnostics.FILE_OR_DIRECTORY, category: Diagnostics.Compiler_Diagnostics, description: Diagnostics.Emit_a_v8_CPU_profile_of_the_compiler_run_for_debugging, defaultValueDescription: "profile.cpuprofile" }, { name: "generateTrace", type: "string", isFilePath: true, paramType: Diagnostics.DIRECTORY, category: Diagnostics.Compiler_Diagnostics, description: Diagnostics.Generates_an_event_trace_and_a_list_of_types }, { name: "incremental", shortName: "i", type: "boolean", category: Diagnostics.Projects, description: Diagnostics.Save_tsbuildinfo_files_to_allow_for_incremental_compilation_of_projects, transpileOptionValue: undefined, defaultValueDescription: Diagnostics.false_unless_composite_is_set }, { name: "declaration", shortName: "d", type: "boolean", affectsBuildInfo: true, showInSimplifiedHelpView: true, category: Diagnostics.Emit, transpileOptionValue: undefined, description: Diagnostics.Generate_d_ts_files_from_TypeScript_and_JavaScript_files_in_your_project, defaultValueDescription: Diagnostics.false_unless_composite_is_set }, { name: "declarationMap", type: "boolean", affectsBuildInfo: true, showInSimplifiedHelpView: true, category: Diagnostics.Emit, defaultValueDescription: false, description: Diagnostics.Create_sourcemaps_for_d_ts_files }, { name: "emitDeclarationOnly", type: "boolean", affectsBuildInfo: true, showInSimplifiedHelpView: true, category: Diagnostics.Emit, description: Diagnostics.Only_output_d_ts_files_and_not_JavaScript_files, transpileOptionValue: undefined, defaultValueDescription: false }, { name: "sourceMap", type: "boolean", affectsBuildInfo: true, showInSimplifiedHelpView: true, category: Diagnostics.Emit, defaultValueDescription: false, description: Diagnostics.Create_source_map_files_for_emitted_JavaScript_files }, { name: "inlineSourceMap", type: "boolean", affectsBuildInfo: true, category: Diagnostics.Emit, description: Diagnostics.Include_sourcemap_files_inside_the_emitted_JavaScript, defaultValueDescription: false }, { name: "noCheck", type: "boolean", showInSimplifiedHelpView: false, category: Diagnostics.Compiler_Diagnostics, description: Diagnostics.Disable_full_type_checking_only_critical_parse_and_emit_errors_will_be_reported, transpileOptionValue: true, defaultValueDescription: false }, { name: "noEmit", type: "boolean", showInSimplifiedHelpView: true, category: Diagnostics.Emit, description: Diagnostics.Disable_emitting_files_from_a_compilation, transpileOptionValue: undefined, defaultValueDescription: false }, { name: "assumeChangesOnlyAffectDirectDependencies", type: "boolean", affectsSemanticDiagnostics: true, affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Watch_and_Build_Modes, description: Diagnostics.Have_recompiles_in_projects_that_use_incremental_and_watch_mode_assume_that_changes_within_a_file_will_only_affect_files_directly_depending_on_it, defaultValueDescription: false }, { name: "locale", type: "string", category: Diagnostics.Command_line_Options, isCommandLineOnly: true, description: Diagnostics.Set_the_language_of_the_messaging_from_TypeScript_This_does_not_affect_emit, defaultValueDescription: Diagnostics.Platform_specific } ]; var targetOptionDeclaration = { name: "target", shortName: "t", type: new Map(Object.entries({ es3: 0, es5: 1, es6: 2, es2015: 2, es2016: 3, es2017: 4, es2018: 5, es2019: 6, es2020: 7, es2021: 8, es2022: 9, es2023: 10, es2024: 11, es2025: 12, esnext: 99 })), affectsSourceFile: true, affectsModuleResolution: true, affectsEmit: true, affectsBuildInfo: true, deprecatedKeys: /* @__PURE__ */ new Set(["es3", "es5"]), paramType: Diagnostics.VERSION, showInSimplifiedHelpView: true, category: Diagnostics.Language_and_Environment, description: Diagnostics.Set_the_JavaScript_language_version_for_emitted_JavaScript_and_include_compatible_library_declarations, defaultValueDescription: 12 }; var moduleOptionDeclaration = { name: "module", shortName: "m", type: new Map(Object.entries({ none: 0, commonjs: 1, amd: 2, system: 4, umd: 3, es6: 5, es2015: 5, es2020: 6, es2022: 7, esnext: 99, node16: 100, node18: 101, node20: 102, nodenext: 199, preserve: 200 })), deprecatedKeys: /* @__PURE__ */ new Set(["none", "amd", "system", "umd"]), affectsSourceFile: true, affectsModuleResolution: true, affectsEmit: true, affectsBuildInfo: true, paramType: Diagnostics.KIND, showInSimplifiedHelpView: true, category: Diagnostics.Modules, description: Diagnostics.Specify_what_module_code_is_generated, defaultValueDescription: undefined }; var commandOptionsWithoutBuild = [ { name: "all", type: "boolean", showInSimplifiedHelpView: true, category: Diagnostics.Command_line_Options, description: Diagnostics.Show_all_compiler_options, defaultValueDescription: false }, { name: "version", shortName: "v", type: "boolean", showInSimplifiedHelpView: true, category: Diagnostics.Command_line_Options, description: Diagnostics.Print_the_compiler_s_version, defaultValueDescription: false }, { name: "init", type: "boolean", showInSimplifiedHelpView: true, category: Diagnostics.Command_line_Options, description: Diagnostics.Initializes_a_TypeScript_project_and_creates_a_tsconfig_json_file, defaultValueDescription: false }, { name: "project", shortName: "p", type: "string", isFilePath: true, showInSimplifiedHelpView: true, category: Diagnostics.Command_line_Options, paramType: Diagnostics.FILE_OR_DIRECTORY, description: Diagnostics.Compile_the_project_given_the_path_to_its_configuration_file_or_to_a_folder_with_a_tsconfig_json }, { name: "showConfig", type: "boolean", showInSimplifiedHelpView: true, category: Diagnostics.Command_line_Options, isCommandLineOnly: true, description: Diagnostics.Print_the_final_configuration_instead_of_building, defaultValueDescription: false }, { name: "listFilesOnly", type: "boolean", category: Diagnostics.Command_line_Options, isCommandLineOnly: true, description: Diagnostics.Print_names_of_files_that_are_part_of_the_compilation_and_then_stop_processing, defaultValueDescription: false }, { name: "ignoreConfig", type: "boolean", showInSimplifiedHelpView: true, category: Diagnostics.Command_line_Options, isCommandLineOnly: true, description: Diagnostics.Ignore_the_tsconfig_found_and_build_with_commandline_options_and_files, defaultValueDescription: false }, targetOptionDeclaration, moduleOptionDeclaration, { name: "lib", type: "list", element: { name: "lib", type: libMap, defaultValueDescription: undefined }, affectsProgramStructure: true, showInSimplifiedHelpView: true, category: Diagnostics.Language_and_Environment, description: Diagnostics.Specify_a_set_of_bundled_library_declaration_files_that_describe_the_target_runtime_environment, transpileOptionValue: undefined }, { name: "allowJs", type: "boolean", allowJsFlag: true, affectsBuildInfo: true, showInSimplifiedHelpView: true, category: Diagnostics.JavaScript_Support, description: Diagnostics.Allow_JavaScript_files_to_be_a_part_of_your_program_Use_the_checkJs_option_to_get_errors_from_these_files, defaultValueDescription: Diagnostics.false_unless_checkJs_is_set }, { name: "checkJs", type: "boolean", affectsModuleResolution: true, affectsSemanticDiagnostics: true, affectsBuildInfo: true, showInSimplifiedHelpView: true, category: Diagnostics.JavaScript_Support, description: Diagnostics.Enable_error_reporting_in_type_checked_JavaScript_files, defaultValueDescription: false }, { name: "jsx", type: jsxOptionMap, affectsSourceFile: true, affectsEmit: true, affectsBuildInfo: true, affectsModuleResolution: true, affectsSemanticDiagnostics: true, paramType: Diagnostics.KIND, showInSimplifiedHelpView: true, category: Diagnostics.Language_and_Environment, description: Diagnostics.Specify_what_JSX_code_is_generated, defaultValueDescription: undefined }, { name: "outFile", type: "string", affectsEmit: true, affectsBuildInfo: true, affectsDeclarationPath: true, isFilePath: true, paramType: Diagnostics.FILE, showInSimplifiedHelpView: true, category: Diagnostics.Emit, description: Diagnostics.Specify_a_file_that_bundles_all_outputs_into_one_JavaScript_file_If_declaration_is_true_also_designates_a_file_that_bundles_all_d_ts_output, transpileOptionValue: undefined }, { name: "outDir", type: "string", affectsEmit: true, affectsBuildInfo: true, affectsDeclarationPath: true, isFilePath: true, paramType: Diagnostics.DIRECTORY, showInSimplifiedHelpView: true, category: Diagnostics.Emit, description: Diagnostics.Specify_an_output_folder_for_all_emitted_files }, { name: "rootDir", type: "string", affectsEmit: true, affectsBuildInfo: true, affectsDeclarationPath: true, isFilePath: true, paramType: Diagnostics.LOCATION, category: Diagnostics.Modules, description: Diagnostics.Specify_the_root_folder_within_your_source_files, defaultValueDescription: Diagnostics.Computed_from_the_list_of_input_files }, { name: "composite", type: "boolean", affectsBuildInfo: true, isTSConfigOnly: true, category: Diagnostics.Projects, transpileOptionValue: undefined, defaultValueDescription: false, description: Diagnostics.Enable_constraints_that_allow_a_TypeScript_project_to_be_used_with_project_references }, { name: "tsBuildInfoFile", type: "string", affectsEmit: true, affectsBuildInfo: true, isFilePath: true, paramType: Diagnostics.FILE, category: Diagnostics.Projects, transpileOptionValue: undefined, defaultValueDescription: ".tsbuildinfo", description: Diagnostics.Specify_the_path_to_tsbuildinfo_incremental_compilation_file }, { name: "removeComments", type: "boolean", affectsEmit: true, affectsBuildInfo: true, showInSimplifiedHelpView: true, category: Diagnostics.Emit, defaultValueDescription: false, description: Diagnostics.Disable_emitting_comments }, { name: "importHelpers", type: "boolean", affectsEmit: true, affectsBuildInfo: true, affectsSourceFile: true, category: Diagnostics.Emit, description: Diagnostics.Allow_importing_helper_functions_from_tslib_once_per_project_instead_of_including_them_per_file, defaultValueDescription: false }, { name: "importsNotUsedAsValues", type: new Map(Object.entries({ remove: 0, preserve: 1, error: 2 })), affectsEmit: true, affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Backwards_Compatibility, description: Diagnostics.Specify_emit_Slashchecking_behavior_for_imports_that_are_only_used_for_types, defaultValueDescription: 0 }, { name: "downlevelIteration", type: "boolean", affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Emit, description: Diagnostics.Emit_more_compliant_but_verbose_and_less_performant_JavaScript_for_iteration, defaultValueDescription: false }, { name: "isolatedModules", type: "boolean", category: Diagnostics.Interop_Constraints, description: Diagnostics.Ensure_that_each_file_can_be_safely_transpiled_without_relying_on_other_imports, transpileOptionValue: true, defaultValueDescription: false }, { name: "verbatimModuleSyntax", type: "boolean", affectsEmit: true, affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Interop_Constraints, description: Diagnostics.Do_not_transform_or_elide_any_imports_or_exports_not_marked_as_type_only_ensuring_they_are_written_in_the_output_file_s_format_based_on_the_module_setting, defaultValueDescription: false }, { name: "isolatedDeclarations", type: "boolean", category: Diagnostics.Interop_Constraints, description: Diagnostics.Require_sufficient_annotation_on_exports_so_other_tools_can_trivially_generate_declaration_files, defaultValueDescription: false, affectsBuildInfo: true, affectsSemanticDiagnostics: true }, { name: "erasableSyntaxOnly", type: "boolean", category: Diagnostics.Interop_Constraints, description: Diagnostics.Do_not_allow_runtime_constructs_that_are_not_part_of_ECMAScript, defaultValueDescription: false, affectsBuildInfo: true, affectsSemanticDiagnostics: true }, { name: "libReplacement", type: "boolean", affectsProgramStructure: true, category: Diagnostics.Language_and_Environment, description: Diagnostics.Enable_lib_replacement, defaultValueDescription: false }, { name: "strict", type: "boolean", affectsBuildInfo: true, showInSimplifiedHelpView: true, category: Diagnostics.Type_Checking, description: Diagnostics.Enable_all_strict_type_checking_options, defaultValueDescription: true }, { name: "noImplicitAny", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, strictFlag: true, category: Diagnostics.Type_Checking, description: Diagnostics.Enable_error_reporting_for_expressions_and_declarations_with_an_implied_any_type, defaultValueDescription: Diagnostics.true_unless_strict_is_false }, { name: "strictNullChecks", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, strictFlag: true, category: Diagnostics.Type_Checking, description: Diagnostics.When_type_checking_take_into_account_null_and_undefined, defaultValueDescription: Diagnostics.true_unless_strict_is_false }, { name: "strictFunctionTypes", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, strictFlag: true, category: Diagnostics.Type_Checking, description: Diagnostics.When_assigning_functions_check_to_ensure_parameters_and_the_return_values_are_subtype_compatible, defaultValueDescription: Diagnostics.true_unless_strict_is_false }, { name: "strictBindCallApply", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, strictFlag: true, category: Diagnostics.Type_Checking, description: Diagnostics.Check_that_the_arguments_for_bind_call_and_apply_methods_match_the_original_function, defaultValueDescription: Diagnostics.true_unless_strict_is_false }, { name: "strictPropertyInitialization", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, strictFlag: true, category: Diagnostics.Type_Checking, description: Diagnostics.Check_for_class_properties_that_are_declared_but_not_set_in_the_constructor, defaultValueDescription: Diagnostics.true_unless_strict_is_false }, { name: "strictBuiltinIteratorReturn", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, strictFlag: true, category: Diagnostics.Type_Checking, description: Diagnostics.Built_in_iterators_are_instantiated_with_a_TReturn_type_of_undefined_instead_of_any, defaultValueDescription: Diagnostics.true_unless_strict_is_false }, { name: "stableTypeOrdering", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, showInHelp: false, category: Diagnostics.Type_Checking, description: Diagnostics.Ensure_types_are_ordered_stably_and_deterministically_across_compilations, defaultValueDescription: false }, { name: "noImplicitThis", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, strictFlag: true, category: Diagnostics.Type_Checking, description: Diagnostics.Enable_error_reporting_when_this_is_given_the_type_any, defaultValueDescription: Diagnostics.true_unless_strict_is_false }, { name: "useUnknownInCatchVariables", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, strictFlag: true, category: Diagnostics.Type_Checking, description: Diagnostics.Default_catch_clause_variables_as_unknown_instead_of_any, defaultValueDescription: Diagnostics.true_unless_strict_is_false }, { name: "alwaysStrict", type: "boolean", affectsSourceFile: true, affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Type_Checking, description: Diagnostics.Ensure_use_strict_is_always_emitted, defaultValueDescription: true }, { name: "noUnusedLocals", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Type_Checking, description: Diagnostics.Enable_error_reporting_when_local_variables_aren_t_read, defaultValueDescription: false }, { name: "noUnusedParameters", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Type_Checking, description: Diagnostics.Raise_an_error_when_a_function_parameter_isn_t_read, defaultValueDescription: false }, { name: "exactOptionalPropertyTypes", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Type_Checking, description: Diagnostics.Interpret_optional_property_types_as_written_rather_than_adding_undefined, defaultValueDescription: false }, { name: "noImplicitReturns", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Type_Checking, description: Diagnostics.Enable_error_reporting_for_codepaths_that_do_not_explicitly_return_in_a_function, defaultValueDescription: false }, { name: "noFallthroughCasesInSwitch", type: "boolean", affectsBindDiagnostics: true, affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Type_Checking, description: Diagnostics.Enable_error_reporting_for_fallthrough_cases_in_switch_statements, defaultValueDescription: false }, { name: "noUncheckedIndexedAccess", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Type_Checking, description: Diagnostics.Add_undefined_to_a_type_when_accessed_using_an_index, defaultValueDescription: false }, { name: "noImplicitOverride", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Type_Checking, description: Diagnostics.Ensure_overriding_members_in_derived_classes_are_marked_with_an_override_modifier, defaultValueDescription: false }, { name: "noPropertyAccessFromIndexSignature", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, showInSimplifiedHelpView: false, category: Diagnostics.Type_Checking, description: Diagnostics.Enforces_using_indexed_accessors_for_keys_declared_using_an_indexed_type, defaultValueDescription: false }, { name: "moduleResolution", type: new Map(Object.entries({ node10: 2, node: 2, classic: 1, node16: 3, nodenext: 99, bundler: 100 })), deprecatedKeys: /* @__PURE__ */ new Set(["node", "node10", "classic"]), affectsSourceFile: true, affectsModuleResolution: true, paramType: Diagnostics.STRATEGY, category: Diagnostics.Modules, description: Diagnostics.Specify_how_TypeScript_looks_up_a_file_from_a_given_module_specifier, defaultValueDescription: Diagnostics.nodenext_if_module_is_nodenext_node16_if_module_is_node16_or_node18_otherwise_bundler }, { name: "baseUrl", type: "string", affectsModuleResolution: true, isFilePath: true, category: Diagnostics.Modules, description: Diagnostics.Specify_the_base_directory_to_resolve_non_relative_module_names }, { name: "paths", type: "object", affectsModuleResolution: true, allowConfigDirTemplateSubstitution: true, isTSConfigOnly: true, category: Diagnostics.Modules, description: Diagnostics.Specify_a_set_of_entries_that_re_map_imports_to_additional_lookup_locations, transpileOptionValue: undefined }, { name: "rootDirs", type: "list", isTSConfigOnly: true, element: { name: "rootDirs", type: "string", isFilePath: true }, affectsModuleResolution: true, allowConfigDirTemplateSubstitution: true, category: Diagnostics.Modules, description: Diagnostics.Allow_multiple_folders_to_be_treated_as_one_when_resolving_modules, transpileOptionValue: undefined, defaultValueDescription: Diagnostics.Computed_from_the_list_of_input_files }, { name: "typeRoots", type: "list", element: { name: "typeRoots", type: "string", isFilePath: true }, affectsModuleResolution: true, allowConfigDirTemplateSubstitution: true, category: Diagnostics.Modules, description: Diagnostics.Specify_multiple_folders_that_act_like_Slashnode_modules_Slash_types }, { name: "types", type: "list", element: { name: "types", type: "string" }, affectsProgramStructure: true, showInSimplifiedHelpView: true, category: Diagnostics.Modules, description: Diagnostics.Specify_type_package_names_to_be_included_without_being_referenced_in_a_source_file, transpileOptionValue: undefined }, { name: "allowSyntheticDefaultImports", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Interop_Constraints, description: Diagnostics.Allow_import_x_from_y_when_a_module_doesn_t_have_a_default_export, defaultValueDescription: true }, { name: "esModuleInterop", type: "boolean", affectsSemanticDiagnostics: true, affectsEmit: true, affectsBuildInfo: true, showInSimplifiedHelpView: true, category: Diagnostics.Interop_Constraints, description: Diagnostics.Emit_additional_JavaScript_to_ease_support_for_importing_CommonJS_modules_This_enables_allowSyntheticDefaultImports_for_type_compatibility, defaultValueDescription: true }, { name: "preserveSymlinks", type: "boolean", category: Diagnostics.Interop_Constraints, description: Diagnostics.Disable_resolving_symlinks_to_their_realpath_This_correlates_to_the_same_flag_in_node, defaultValueDescription: false }, { name: "allowUmdGlobalAccess", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Modules, description: Diagnostics.Allow_accessing_UMD_globals_from_modules, defaultValueDescription: false }, { name: "moduleSuffixes", type: "list", element: { name: "suffix", type: "string" }, listPreserveFalsyValues: true, affectsModuleResolution: true, category: Diagnostics.Modules, description: Diagnostics.List_of_file_name_suffixes_to_search_when_resolving_a_module }, { name: "allowImportingTsExtensions", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Modules, description: Diagnostics.Allow_imports_to_include_TypeScript_file_extensions_Requires_moduleResolution_bundler_and_either_noEmit_or_emitDeclarationOnly_to_be_set, defaultValueDescription: false, transpileOptionValue: undefined }, { name: "rewriteRelativeImportExtensions", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Modules, description: Diagnostics.Rewrite_ts_tsx_mts_and_cts_file_extensions_in_relative_import_paths_to_their_JavaScript_equivalent_in_output_files, defaultValueDescription: false }, { name: "resolvePackageJsonExports", type: "boolean", affectsModuleResolution: true, category: Diagnostics.Modules, description: Diagnostics.Use_the_package_json_exports_field_when_resolving_package_imports, defaultValueDescription: Diagnostics.true_when_moduleResolution_is_node16_nodenext_or_bundler_otherwise_false }, { name: "resolvePackageJsonImports", type: "boolean", affectsModuleResolution: true, category: Diagnostics.Modules, description: Diagnostics.Use_the_package_json_imports_field_when_resolving_imports, defaultValueDescription: Diagnostics.true_when_moduleResolution_is_node16_nodenext_or_bundler_otherwise_false }, { name: "customConditions", type: "list", element: { name: "condition", type: "string" }, affectsModuleResolution: true, category: Diagnostics.Modules, description: Diagnostics.Conditions_to_set_in_addition_to_the_resolver_specific_defaults_when_resolving_imports }, { name: "noUncheckedSideEffectImports", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Modules, description: Diagnostics.Check_side_effect_imports, defaultValueDescription: true }, { name: "sourceRoot", type: "string", affectsEmit: true, affectsBuildInfo: true, paramType: Diagnostics.LOCATION, category: Diagnostics.Emit, description: Diagnostics.Specify_the_root_path_for_debuggers_to_find_the_reference_source_code }, { name: "mapRoot", type: "string", affectsEmit: true, affectsBuildInfo: true, paramType: Diagnostics.LOCATION, category: Diagnostics.Emit, description: Diagnostics.Specify_the_location_where_debugger_should_locate_map_files_instead_of_generated_locations }, { name: "inlineSources", type: "boolean", affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Emit, description: Diagnostics.Include_source_code_in_the_sourcemaps_inside_the_emitted_JavaScript, defaultValueDescription: false }, { name: "experimentalDecorators", type: "boolean", affectsEmit: true, affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Language_and_Environment, description: Diagnostics.Enable_experimental_support_for_legacy_experimental_decorators, defaultValueDescription: false }, { name: "emitDecoratorMetadata", type: "boolean", affectsSemanticDiagnostics: true, affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Language_and_Environment, description: Diagnostics.Emit_design_type_metadata_for_decorated_declarations_in_source_files, defaultValueDescription: false }, { name: "jsxFactory", type: "string", category: Diagnostics.Language_and_Environment, description: Diagnostics.Specify_the_JSX_factory_function_used_when_targeting_React_JSX_emit_e_g_React_createElement_or_h, defaultValueDescription: "`React.createElement`" }, { name: "jsxFragmentFactory", type: "string", category: Diagnostics.Language_and_Environment, description: Diagnostics.Specify_the_JSX_Fragment_reference_used_for_fragments_when_targeting_React_JSX_emit_e_g_React_Fragment_or_Fragment, defaultValueDescription: "React.Fragment" }, { name: "jsxImportSource", type: "string", affectsSemanticDiagnostics: true, affectsEmit: true, affectsBuildInfo: true, affectsModuleResolution: true, affectsSourceFile: true, category: Diagnostics.Language_and_Environment, description: Diagnostics.Specify_module_specifier_used_to_import_the_JSX_factory_functions_when_using_jsx_Colon_react_jsx_Asterisk, defaultValueDescription: "react" }, { name: "resolveJsonModule", type: "boolean", affectsModuleResolution: true, category: Diagnostics.Modules, description: Diagnostics.Enable_importing_json_files, defaultValueDescription: false }, { name: "allowArbitraryExtensions", type: "boolean", affectsProgramStructure: true, category: Diagnostics.Modules, description: Diagnostics.Enable_importing_files_with_any_extension_provided_a_declaration_file_is_present, defaultValueDescription: false }, { name: "out", type: "string", affectsEmit: true, affectsBuildInfo: true, affectsDeclarationPath: true, isFilePath: false, category: Diagnostics.Backwards_Compatibility, paramType: Diagnostics.FILE, transpileOptionValue: undefined, description: Diagnostics.Deprecated_setting_Use_outFile_instead }, { name: "reactNamespace", type: "string", affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Language_and_Environment, description: Diagnostics.Specify_the_object_invoked_for_createElement_This_only_applies_when_targeting_react_JSX_emit, defaultValueDescription: "`React`" }, { name: "skipDefaultLibCheck", type: "boolean", affectsBuildInfo: true, category: Diagnostics.Completeness, description: Diagnostics.Skip_type_checking_d_ts_files_that_are_included_with_TypeScript, defaultValueDescription: false }, { name: "charset", type: "string", category: Diagnostics.Backwards_Compatibility, description: Diagnostics.No_longer_supported_In_early_versions_manually_set_the_text_encoding_for_reading_files, defaultValueDescription: "utf8" }, { name: "emitBOM", type: "boolean", affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Emit, description: Diagnostics.Emit_a_UTF_8_Byte_Order_Mark_BOM_in_the_beginning_of_output_files, defaultValueDescription: false }, { name: "newLine", type: new Map(Object.entries({ crlf: 0, lf: 1 })), affectsEmit: true, affectsBuildInfo: true, paramType: Diagnostics.NEWLINE, category: Diagnostics.Emit, description: Diagnostics.Set_the_newline_character_for_emitting_files, defaultValueDescription: "lf" }, { name: "noErrorTruncation", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Output_Formatting, description: Diagnostics.Disable_truncating_types_in_error_messages, defaultValueDescription: false }, { name: "noLib", type: "boolean", category: Diagnostics.Language_and_Environment, affectsProgramStructure: true, description: Diagnostics.Disable_including_any_library_files_including_the_default_lib_d_ts, transpileOptionValue: true, defaultValueDescription: false }, { name: "noResolve", type: "boolean", affectsModuleResolution: true, category: Diagnostics.Modules, description: Diagnostics.Disallow_import_s_require_s_or_reference_s_from_expanding_the_number_of_files_TypeScript_should_add_to_a_project, transpileOptionValue: true, defaultValueDescription: false }, { name: "stripInternal", type: "boolean", affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Emit, description: Diagnostics.Disable_emitting_declarations_that_have_internal_in_their_JSDoc_comments, defaultValueDescription: false }, { name: "disableSizeLimit", type: "boolean", affectsProgramStructure: true, category: Diagnostics.Editor_Support, description: Diagnostics.Remove_the_20mb_cap_on_total_source_code_size_for_JavaScript_files_in_the_TypeScript_language_server, defaultValueDescription: false }, { name: "disableSourceOfProjectReferenceRedirect", type: "boolean", isTSConfigOnly: true, category: Diagnostics.Projects, description: Diagnostics.Disable_preferring_source_files_instead_of_declaration_files_when_referencing_composite_projects, defaultValueDescription: false }, { name: "disableSolutionSearching", type: "boolean", isTSConfigOnly: true, category: Diagnostics.Projects, description: Diagnostics.Opt_a_project_out_of_multi_project_reference_checking_when_editing, defaultValueDescription: false }, { name: "disableReferencedProjectLoad", type: "boolean", isTSConfigOnly: true, category: Diagnostics.Projects, description: Diagnostics.Reduce_the_number_of_projects_loaded_automatically_by_TypeScript, defaultValueDescription: false }, { name: "noImplicitUseStrict", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Backwards_Compatibility, description: Diagnostics.Disable_adding_use_strict_directives_in_emitted_JavaScript_files, defaultValueDescription: false }, { name: "noEmitHelpers", type: "boolean", affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Emit, description: Diagnostics.Disable_generating_custom_helper_functions_like_extends_in_compiled_output, defaultValueDescription: false }, { name: "noEmitOnError", type: "boolean", affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Emit, transpileOptionValue: undefined, description: Diagnostics.Disable_emitting_files_if_any_type_checking_errors_are_reported, defaultValueDescription: false }, { name: "preserveConstEnums", type: "boolean", affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Emit, description: Diagnostics.Disable_erasing_const_enum_declarations_in_generated_code, defaultValueDescription: false }, { name: "declarationDir", type: "string", affectsEmit: true, affectsBuildInfo: true, affectsDeclarationPath: true, isFilePath: true, paramType: Diagnostics.DIRECTORY, category: Diagnostics.Emit, transpileOptionValue: undefined, description: Diagnostics.Specify_the_output_directory_for_generated_declaration_files }, { name: "skipLibCheck", type: "boolean", affectsBuildInfo: true, category: Diagnostics.Completeness, description: Diagnostics.Skip_type_checking_all_d_ts_files, defaultValueDescription: false }, { name: "allowUnusedLabels", type: "boolean", affectsBindDiagnostics: true, affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Type_Checking, description: Diagnostics.Disable_error_reporting_for_unused_labels, defaultValueDescription: undefined }, { name: "allowUnreachableCode", type: "boolean", affectsBindDiagnostics: true, affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Type_Checking, description: Diagnostics.Disable_error_reporting_for_unreachable_code, defaultValueDescription: undefined }, { name: "suppressExcessPropertyErrors", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Backwards_Compatibility, description: Diagnostics.Disable_reporting_of_excess_property_errors_during_the_creation_of_object_literals, defaultValueDescription: false }, { name: "suppressImplicitAnyIndexErrors", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Backwards_Compatibility, description: Diagnostics.Suppress_noImplicitAny_errors_when_indexing_objects_that_lack_index_signatures, defaultValueDescription: false }, { name: "forceConsistentCasingInFileNames", type: "boolean", affectsModuleResolution: true, category: Diagnostics.Interop_Constraints, description: Diagnostics.Ensure_that_casing_is_correct_in_imports, defaultValueDescription: true }, { name: "maxNodeModuleJsDepth", type: "number", affectsModuleResolution: true, category: Diagnostics.JavaScript_Support, description: Diagnostics.Specify_the_maximum_folder_depth_used_for_checking_JavaScript_files_from_node_modules_Only_applicable_with_allowJs, defaultValueDescription: 0 }, { name: "noStrictGenericChecks", type: "boolean", affectsSemanticDiagnostics: true, affectsBuildInfo: true, category: Diagnostics.Backwards_Compatibility, description: Diagnostics.Disable_strict_checking_of_generic_signatures_in_function_types, defaultValueDescription: false }, { name: "useDefineForClassFields", type: "boolean", affectsSemanticDiagnostics: true, affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Language_and_Environment, description: Diagnostics.Emit_ECMAScript_standard_compliant_class_fields, defaultValueDescription: Diagnostics.true_for_ES2022_and_above_including_ESNext }, { name: "preserveValueImports", type: "boolean", affectsEmit: true, affectsBuildInfo: true, category: Diagnostics.Backwards_Compatibility, description: Diagnostics.Preserve_unused_imported_values_in_the_JavaScript_output_that_would_otherwise_be_removed, defaultValueDescription: false }, { name: "keyofStringsOnly", type: "boolean", category: Diagnostics.Backwards_Compatibility, description: Diagnostics.Make_keyof_only_return_strings_instead_of_string_numbers_or_symbols_Legacy_option, defaultValueDescription: false }, { name: "plugins", type: "list", isTSConfigOnly: true, element: { name: "plugin", type: "object" }, description: Diagnostics.Specify_a_list_of_language_service_plugins_to_include, category: Diagnostics.Editor_Support }, { name: "moduleDetection", type: new Map(Object.entries({ auto: 2, legacy: 1, force: 3 })), affectsSourceFile: true, affectsModuleResolution: true, description: Diagnostics.Control_what_method_is_used_to_detect_module_format_JS_files, category: Diagnostics.Language_and_Environment, defaultValueDescription: Diagnostics.auto_Colon_Treat_files_with_imports_exports_import_meta_jsx_with_jsx_Colon_react_jsx_or_esm_format_with_module_Colon_node16_as_modules }, { name: "ignoreDeprecations", type: "string", defaultValueDescription: undefined } ]; var optionDeclarations = [ ...commonOptionsWithBuild, ...commandOptionsWithoutBuild ]; var semanticDiagnosticsOptionDeclarations = optionDeclarations.filter((option) => !!option.affectsSemanticDiagnostics); var affectsEmitOptionDeclarations = optionDeclarations.filter((option) => !!option.affectsEmit); var affectsDeclarationPathOptionDeclarations = optionDeclarations.filter((option) => !!option.affectsDeclarationPath); var moduleResolutionOptionDeclarations = optionDeclarations.filter((option) => !!option.affectsModuleResolution); var sourceFileAffectingCompilerOptions = optionDeclarations.filter((option) => !!option.affectsSourceFile || !!option.affectsBindDiagnostics); var optionsAffectingProgramStructure = optionDeclarations.filter((option) => !!option.affectsProgramStructure); var transpileOptionValueCompilerOptions = optionDeclarations.filter((option) => hasProperty(option, "transpileOptionValue")); var configDirTemplateSubstitutionOptions = optionDeclarations.filter((option) => option.allowConfigDirTemplateSubstitution || !option.isCommandLineOnly && option.isFilePath); var configDirTemplateSubstitutionWatchOptions = optionsForWatch.filter((option) => option.allowConfigDirTemplateSubstitution || !option.isCommandLineOnly && option.isFilePath); var commandLineOptionOfCustomType = optionDeclarations.filter(isCommandLineOptionOfCustomType); function isCommandLineOptionOfCustomType(option) { return !isString(option.type); } var tscBuildOption = { name: "build", type: "boolean", shortName: "b", showInSimplifiedHelpView: true, category: Diagnostics.Command_line_Options, description: Diagnostics.Build_one_or_more_projects_and_their_dependencies_if_out_of_date, defaultValueDescription: false }; var optionsForBuild = [ tscBuildOption, { name: "verbose", shortName: "v", category: Diagnostics.Command_line_Options, description: Diagnostics.Enable_verbose_logging, type: "boolean", defaultValueDescription: false }, { name: "dry", shortName: "d", category: Diagnostics.Command_line_Options, description: Diagnostics.Show_what_would_be_built_or_deleted_if_specified_with_clean, type: "boolean", defaultValueDescription: false }, { name: "force", shortName: "f", category: Diagnostics.Command_line_Options, description: Diagnostics.Build_all_projects_including_those_that_appear_to_be_up_to_date, type: "boolean", defaultValueDescription: false }, { name: "clean", category: Diagnostics.Command_line_Options, description: Diagnostics.Delete_the_outputs_of_all_projects, type: "boolean", defaultValueDescription: false }, { name: "stopBuildOnErrors", category: Diagnostics.Command_line_Options, description: Diagnostics.Skip_building_downstream_projects_on_error_in_upstream_project, type: "boolean", defaultValueDescription: false } ]; var buildOpts = [ ...commonOptionsWithBuild, ...optionsForBuild ]; var typeAcquisitionDeclarations = [ { name: "enable", type: "boolean", defaultValueDescription: false }, { name: "include", type: "list", element: { name: "include", type: "string" } }, { name: "exclude", type: "list", element: { name: "exclude", type: "string" } }, { name: "disableFilenameBasedTypeAcquisition", type: "boolean", defaultValueDescription: false } ]; function createOptionNameMap(optionDeclarations2) { const optionsNameMap = /* @__PURE__ */ new Map; const shortOptionNames = /* @__PURE__ */ new Map; forEach(optionDeclarations2, (option) => { optionsNameMap.set(option.name.toLowerCase(), option); if (option.shortName) { shortOptionNames.set(option.shortName, option.name); } }); return { optionsNameMap, shortOptionNames }; } var optionsNameMapCache; function getOptionsNameMap() { return optionsNameMapCache || (optionsNameMapCache = createOptionNameMap(optionDeclarations)); } var compilerOptionsAlternateMode = { diagnostic: Diagnostics.Compiler_option_0_may_only_be_used_with_build, getOptionsNameMap: getBuildOptionsNameMap }; var defaultInitCompilerOptions = { module: 1, target: 3, strict: true, esModuleInterop: true, forceConsistentCasingInFileNames: true, skipLibCheck: true }; function createCompilerDiagnosticForInvalidCustomType(opt) { return createDiagnosticForInvalidCustomType(opt, createCompilerDiagnostic); } function createDiagnosticForInvalidCustomType(opt, createDiagnostic) { const namesOfType = arrayFrom(opt.type.keys()); const stringNames = (opt.deprecatedKeys ? namesOfType.filter((k) => !opt.deprecatedKeys.has(k)) : namesOfType).map((key) => `'${key}'`).join(", "); return createDiagnostic(Diagnostics.Argument_for_0_option_must_be_Colon_1, `--${opt.name}`, stringNames); } function parseCustomTypeOption(opt, value, errors) { return convertJsonOptionOfCustomType(opt, (value ?? "").trim(), errors); } function parseListTypeOption(opt, value = "", errors) { value = value.trim(); if (startsWith(value, "-")) { return; } if (opt.type === "listOrElement" && !value.includes(",")) { return validateJsonOptionValue(opt, value, errors); } if (value === "") { return []; } const values = value.split(","); switch (opt.element.type) { case "number": return mapDefined(values, (v) => validateJsonOptionValue(opt.element, parseInt(v), errors)); case "string": return mapDefined(values, (v) => validateJsonOptionValue(opt.element, v || "", errors)); case "boolean": case "object": return Debug.fail(`List of ${opt.element.type} is not yet supported.`); default: return mapDefined(values, (v) => parseCustomTypeOption(opt.element, v, errors)); } } function getOptionName(option) { return option.name; } function createUnknownOptionError(unknownOption, diagnostics, unknownOptionErrorText, node, sourceFile) { var _a; const otherOption = (_a = diagnostics.alternateMode) == null ? undefined : _a.getOptionsNameMap().optionsNameMap.get(unknownOption.toLowerCase()); if (otherOption) { return createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, node, otherOption !== tscBuildOption ? diagnostics.alternateMode.diagnostic : Diagnostics.Option_build_must_be_the_first_command_line_argument, unknownOption); } const possibleOption = getSpellingSuggestion(unknownOption, diagnostics.optionDeclarations, getOptionName); return possibleOption ? createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, node, diagnostics.unknownDidYouMeanDiagnostic, unknownOptionErrorText || unknownOption, possibleOption.name) : createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, node, diagnostics.unknownOptionDiagnostic, unknownOptionErrorText || unknownOption); } function parseCommandLineWorker(diagnostics, commandLine, readFile) { const options = {}; let watchOptions; const fileNames = []; const errors = []; parseStrings(commandLine); return { options, watchOptions, fileNames, errors }; function parseStrings(args) { let i = 0; while (i < args.length) { const s = args[i]; i++; if (s.charCodeAt(0) === 64) { parseResponseFile(s.slice(1)); } else if (s.charCodeAt(0) === 45) { const inputOptionName = s.slice(s.charCodeAt(1) === 45 ? 2 : 1); const opt = getOptionDeclarationFromName(diagnostics.getOptionsNameMap, inputOptionName, true); if (opt) { i = parseOptionValue(args, i, diagnostics, opt, options, errors); } else { const watchOpt = getOptionDeclarationFromName(watchOptionsDidYouMeanDiagnostics.getOptionsNameMap, inputOptionName, true); if (watchOpt) { i = parseOptionValue(args, i, watchOptionsDidYouMeanDiagnostics, watchOpt, watchOptions || (watchOptions = {}), errors); } else { errors.push(createUnknownOptionError(inputOptionName, diagnostics, s)); } } } else { fileNames.push(s); } } } function parseResponseFile(fileName) { const text = tryReadFile(fileName, readFile || ((fileName2) => sys.readFile(fileName2))); if (!isString(text)) { errors.push(text); return; } const args = []; let pos = 0; while (true) { while (pos < text.length && text.charCodeAt(pos) <= 32) pos++; if (pos >= text.length) break; const start = pos; if (text.charCodeAt(start) === 34) { pos++; while (pos < text.length && text.charCodeAt(pos) !== 34) pos++; if (pos < text.length) { args.push(text.substring(start + 1, pos)); pos++; } else { errors.push(createCompilerDiagnostic(Diagnostics.Unterminated_quoted_string_in_response_file_0, fileName)); } } else { while (text.charCodeAt(pos) > 32) pos++; args.push(text.substring(start, pos)); } } parseStrings(args); } } function parseOptionValue(args, i, diagnostics, opt, options, errors) { if (opt.isTSConfigOnly) { const optValue = args[i]; if (optValue === "null") { options[opt.name] = undefined; i++; } else if (opt.type === "boolean") { if (optValue === "false") { options[opt.name] = validateJsonOptionValue(opt, false, errors); i++; } else { if (optValue === "true") i++; errors.push(createCompilerDiagnostic(Diagnostics.Option_0_can_only_be_specified_in_tsconfig_json_file_or_set_to_false_or_null_on_command_line, opt.name)); } } else { errors.push(createCompilerDiagnostic(Diagnostics.Option_0_can_only_be_specified_in_tsconfig_json_file_or_set_to_null_on_command_line, opt.name)); if (optValue && !startsWith(optValue, "-")) i++; } } else { if (!args[i] && opt.type !== "boolean") { errors.push(createCompilerDiagnostic(diagnostics.optionTypeMismatchDiagnostic, opt.name, getCompilerOptionValueTypeString(opt))); } if (args[i] !== "null") { switch (opt.type) { case "number": options[opt.name] = validateJsonOptionValue(opt, parseInt(args[i]), errors); i++; break; case "boolean": const optValue = args[i]; options[opt.name] = validateJsonOptionValue(opt, optValue !== "false", errors); if (optValue === "false" || optValue === "true") { i++; } break; case "string": options[opt.name] = validateJsonOptionValue(opt, args[i] || "", errors); i++; break; case "list": const result = parseListTypeOption(opt, args[i], errors); options[opt.name] = result || []; if (result) { i++; } break; case "listOrElement": Debug.fail("listOrElement not supported here"); break; default: options[opt.name] = parseCustomTypeOption(opt, args[i], errors); i++; break; } } else { options[opt.name] = undefined; i++; } } return i; } var compilerOptionsDidYouMeanDiagnostics = { alternateMode: compilerOptionsAlternateMode, getOptionsNameMap, optionDeclarations, unknownOptionDiagnostic: Diagnostics.Unknown_compiler_option_0, unknownDidYouMeanDiagnostic: Diagnostics.Unknown_compiler_option_0_Did_you_mean_1, optionTypeMismatchDiagnostic: Diagnostics.Compiler_option_0_expects_an_argument }; function parseCommandLine(commandLine, readFile) { return parseCommandLineWorker(compilerOptionsDidYouMeanDiagnostics, commandLine, readFile); } function getOptionFromName(optionName, allowShort) { return getOptionDeclarationFromName(getOptionsNameMap, optionName, allowShort); } function getOptionDeclarationFromName(getOptionNameMap, optionName, allowShort = false) { optionName = optionName.toLowerCase(); const { optionsNameMap, shortOptionNames } = getOptionNameMap(); if (allowShort) { const short = shortOptionNames.get(optionName); if (short !== undefined) { optionName = short; } } return optionsNameMap.get(optionName); } var buildOptionsNameMapCache; function getBuildOptionsNameMap() { return buildOptionsNameMapCache || (buildOptionsNameMapCache = createOptionNameMap(buildOpts)); } var buildOptionsAlternateMode = { diagnostic: Diagnostics.Compiler_option_0_may_not_be_used_with_build, getOptionsNameMap }; var buildOptionsDidYouMeanDiagnostics = { alternateMode: buildOptionsAlternateMode, getOptionsNameMap: getBuildOptionsNameMap, optionDeclarations: buildOpts, unknownOptionDiagnostic: Diagnostics.Unknown_build_option_0, unknownDidYouMeanDiagnostic: Diagnostics.Unknown_build_option_0_Did_you_mean_1, optionTypeMismatchDiagnostic: Diagnostics.Build_option_0_requires_a_value_of_type_1 }; function parseBuildCommand(commandLine) { const { options, watchOptions, fileNames: projects, errors } = parseCommandLineWorker(buildOptionsDidYouMeanDiagnostics, commandLine); const buildOptions = options; if (projects.length === 0) { projects.push("."); } if (buildOptions.clean && buildOptions.force) { errors.push(createCompilerDiagnostic(Diagnostics.Options_0_and_1_cannot_be_combined, "clean", "force")); } if (buildOptions.clean && buildOptions.verbose) { errors.push(createCompilerDiagnostic(Diagnostics.Options_0_and_1_cannot_be_combined, "clean", "verbose")); } if (buildOptions.clean && buildOptions.watch) { errors.push(createCompilerDiagnostic(Diagnostics.Options_0_and_1_cannot_be_combined, "clean", "watch")); } if (buildOptions.watch && buildOptions.dry) { errors.push(createCompilerDiagnostic(Diagnostics.Options_0_and_1_cannot_be_combined, "watch", "dry")); } return { buildOptions, watchOptions, projects, errors }; } function getDiagnosticText(message, ...args) { return cast(createCompilerDiagnostic(message, ...args).messageText, isString); } function getParsedCommandLineOfConfigFile(configFileName, optionsToExtend, host, extendedConfigCache, watchOptionsToExtend, extraFileExtensions) { const configFileText = tryReadFile(configFileName, (fileName) => host.readFile(fileName)); if (!isString(configFileText)) { host.onUnRecoverableConfigFileDiagnostic(configFileText); return; } const result = parseJsonText(configFileName, configFileText); const cwd = host.getCurrentDirectory(); result.path = toPath(configFileName, cwd, createGetCanonicalFileName(host.useCaseSensitiveFileNames)); result.resolvedPath = result.path; result.originalFileName = result.fileName; return parseJsonSourceFileConfigFileContent(result, host, getNormalizedAbsolutePath(getDirectoryPath(configFileName), cwd), optionsToExtend, getNormalizedAbsolutePath(configFileName, cwd), undefined, extraFileExtensions, extendedConfigCache, watchOptionsToExtend); } function readConfigFile(fileName, readFile) { const textOrDiagnostic = tryReadFile(fileName, readFile); return isString(textOrDiagnostic) ? parseConfigFileTextToJson(fileName, textOrDiagnostic) : { config: {}, error: textOrDiagnostic }; } function parseConfigFileTextToJson(fileName, jsonText) { const jsonSourceFile = parseJsonText(fileName, jsonText); return { config: convertConfigFileToObject(jsonSourceFile, jsonSourceFile.parseDiagnostics, undefined), error: jsonSourceFile.parseDiagnostics.length ? jsonSourceFile.parseDiagnostics[0] : undefined }; } function readJsonConfigFile(fileName, readFile) { const textOrDiagnostic = tryReadFile(fileName, readFile); return isString(textOrDiagnostic) ? parseJsonText(fileName, textOrDiagnostic) : { fileName, parseDiagnostics: [textOrDiagnostic] }; } function tryReadFile(fileName, readFile) { let text; try { text = readFile(fileName); } catch (e) { return createCompilerDiagnostic(Diagnostics.Cannot_read_file_0_Colon_1, fileName, e.message); } return text === undefined ? createCompilerDiagnostic(Diagnostics.Cannot_read_file_0, fileName) : text; } function commandLineOptionsToMap(options) { return arrayToMap(options, getOptionName); } var typeAcquisitionDidYouMeanDiagnostics = { optionDeclarations: typeAcquisitionDeclarations, unknownOptionDiagnostic: Diagnostics.Unknown_type_acquisition_option_0, unknownDidYouMeanDiagnostic: Diagnostics.Unknown_type_acquisition_option_0_Did_you_mean_1 }; var watchOptionsNameMapCache; function getWatchOptionsNameMap() { return watchOptionsNameMapCache || (watchOptionsNameMapCache = createOptionNameMap(optionsForWatch)); } var watchOptionsDidYouMeanDiagnostics = { getOptionsNameMap: getWatchOptionsNameMap, optionDeclarations: optionsForWatch, unknownOptionDiagnostic: Diagnostics.Unknown_watch_option_0, unknownDidYouMeanDiagnostic: Diagnostics.Unknown_watch_option_0_Did_you_mean_1, optionTypeMismatchDiagnostic: Diagnostics.Watch_option_0_requires_a_value_of_type_1 }; var commandLineCompilerOptionsMapCache; function getCommandLineCompilerOptionsMap() { return commandLineCompilerOptionsMapCache || (commandLineCompilerOptionsMapCache = commandLineOptionsToMap(optionDeclarations)); } var commandLineWatchOptionsMapCache; function getCommandLineWatchOptionsMap() { return commandLineWatchOptionsMapCache || (commandLineWatchOptionsMapCache = commandLineOptionsToMap(optionsForWatch)); } var commandLineTypeAcquisitionMapCache; function getCommandLineTypeAcquisitionMap() { return commandLineTypeAcquisitionMapCache || (commandLineTypeAcquisitionMapCache = commandLineOptionsToMap(typeAcquisitionDeclarations)); } var extendsOptionDeclaration = { name: "extends", type: "listOrElement", element: { name: "extends", type: "string" }, category: Diagnostics.File_Management, disallowNullOrUndefined: true }; var compilerOptionsDeclaration = { name: "compilerOptions", type: "object", elementOptions: getCommandLineCompilerOptionsMap(), extraKeyDiagnostics: compilerOptionsDidYouMeanDiagnostics }; var watchOptionsDeclaration = { name: "watchOptions", type: "object", elementOptions: getCommandLineWatchOptionsMap(), extraKeyDiagnostics: watchOptionsDidYouMeanDiagnostics }; var typeAcquisitionDeclaration = { name: "typeAcquisition", type: "object", elementOptions: getCommandLineTypeAcquisitionMap(), extraKeyDiagnostics: typeAcquisitionDidYouMeanDiagnostics }; var _tsconfigRootOptions; function getTsconfigRootOptionsMap() { if (_tsconfigRootOptions === undefined) { _tsconfigRootOptions = { name: undefined, type: "object", elementOptions: commandLineOptionsToMap([ compilerOptionsDeclaration, watchOptionsDeclaration, typeAcquisitionDeclaration, extendsOptionDeclaration, { name: "references", type: "list", element: { name: "references", type: "object" }, category: Diagnostics.Projects }, { name: "files", type: "list", element: { name: "files", type: "string" }, category: Diagnostics.File_Management }, { name: "include", type: "list", element: { name: "include", type: "string" }, category: Diagnostics.File_Management, defaultValueDescription: Diagnostics.if_files_is_specified_otherwise_Asterisk_Asterisk_Slash_Asterisk }, { name: "exclude", type: "list", element: { name: "exclude", type: "string" }, category: Diagnostics.File_Management, defaultValueDescription: Diagnostics.node_modules_bower_components_jspm_packages_plus_the_value_of_outDir_if_one_is_specified }, compileOnSaveCommandLineOption ]) }; } return _tsconfigRootOptions; } function convertConfigFileToObject(sourceFile, errors, jsonConversionNotifier) { var _a; const rootExpression = (_a = sourceFile.statements[0]) == null ? undefined : _a.expression; if (rootExpression && rootExpression.kind !== 211) { errors.push(createDiagnosticForNodeInSourceFile(sourceFile, rootExpression, Diagnostics.The_root_value_of_a_0_file_must_be_an_object, getBaseFileName(sourceFile.fileName) === "jsconfig.json" ? "jsconfig.json" : "tsconfig.json")); if (isArrayLiteralExpression(rootExpression)) { const firstObject = find(rootExpression.elements, isObjectLiteralExpression); if (firstObject) { return convertToJson(sourceFile, firstObject, errors, true, jsonConversionNotifier); } } return {}; } return convertToJson(sourceFile, rootExpression, errors, true, jsonConversionNotifier); } function convertToObject(sourceFile, errors) { var _a; return convertToJson(sourceFile, (_a = sourceFile.statements[0]) == null ? undefined : _a.expression, errors, true, undefined); } function convertToJson(sourceFile, rootExpression, errors, returnValue, jsonConversionNotifier) { if (!rootExpression) { return returnValue ? {} : undefined; } return convertPropertyValueToJson(rootExpression, jsonConversionNotifier == null ? undefined : jsonConversionNotifier.rootOptions); function convertObjectLiteralExpressionToJson(node, objectOption) { var _a; const result = returnValue ? {} : undefined; for (const element of node.properties) { if (element.kind !== 304) { errors.push(createDiagnosticForNodeInSourceFile(sourceFile, element, Diagnostics.Property_assignment_expected)); continue; } if (element.questionToken) { errors.push(createDiagnosticForNodeInSourceFile(sourceFile, element.questionToken, Diagnostics.The_0_modifier_can_only_be_used_in_TypeScript_files, "?")); } if (!isDoubleQuotedString(element.name)) { errors.push(createDiagnosticForNodeInSourceFile(sourceFile, element.name, Diagnostics.String_literal_with_double_quotes_expected)); } const textOfKey = isComputedNonLiteralName(element.name) ? undefined : getTextOfPropertyName(element.name); const keyText = textOfKey && unescapeLeadingUnderscores(textOfKey); const option = keyText ? (_a = objectOption == null ? undefined : objectOption.elementOptions) == null ? undefined : _a.get(keyText) : undefined; const value = convertPropertyValueToJson(element.initializer, option); if (typeof keyText !== "undefined") { if (returnValue) { result[keyText] = value; } jsonConversionNotifier == null || jsonConversionNotifier.onPropertySet(keyText, value, element, objectOption, option); } } return result; } function convertArrayLiteralExpressionToJson(elements, elementOption) { if (!returnValue) { elements.forEach((element) => convertPropertyValueToJson(element, elementOption)); return; } return filter(elements.map((element) => convertPropertyValueToJson(element, elementOption)), (v) => v !== undefined); } function convertPropertyValueToJson(valueExpression, option) { switch (valueExpression.kind) { case 112: return true; case 97: return false; case 106: return null; case 11: if (!isDoubleQuotedString(valueExpression)) { errors.push(createDiagnosticForNodeInSourceFile(sourceFile, valueExpression, Diagnostics.String_literal_with_double_quotes_expected)); } return valueExpression.text; case 9: return Number(valueExpression.text); case 225: if (valueExpression.operator !== 41 || valueExpression.operand.kind !== 9) { break; } return -Number(valueExpression.operand.text); case 211: const objectLiteralExpression = valueExpression; return convertObjectLiteralExpressionToJson(objectLiteralExpression, option); case 210: return convertArrayLiteralExpressionToJson(valueExpression.elements, option && option.element); } if (option) { errors.push(createDiagnosticForNodeInSourceFile(sourceFile, valueExpression, Diagnostics.Compiler_option_0_requires_a_value_of_type_1, option.name, getCompilerOptionValueTypeString(option))); } else { errors.push(createDiagnosticForNodeInSourceFile(sourceFile, valueExpression, Diagnostics.Property_value_can_only_be_string_literal_numeric_literal_true_false_null_object_literal_or_array_literal)); } return; } function isDoubleQuotedString(node) { return isStringLiteral(node) && isStringDoubleQuoted(node, sourceFile); } } function getCompilerOptionValueTypeString(option) { return option.type === "listOrElement" ? `${getCompilerOptionValueTypeString(option.element)} or Array` : option.type === "list" ? "Array" : isString(option.type) ? option.type : "string"; } function isCompilerOptionsValue(option, value) { if (option) { if (isNullOrUndefined(value)) return !option.disallowNullOrUndefined; if (option.type === "list") { return isArray(value); } if (option.type === "listOrElement") { return isArray(value) || isCompilerOptionsValue(option.element, value); } const expectedType = isString(option.type) ? option.type : "string"; return typeof value === expectedType; } return false; } function convertToTSConfig(configParseResult, configFileName, host) { var _a, _b, _c; const getCanonicalFileName = createGetCanonicalFileName(host.useCaseSensitiveFileNames); const files = map(filter(configParseResult.fileNames, !((_b = (_a = configParseResult.options.configFile) == null ? undefined : _a.configFileSpecs) == null ? undefined : _b.validatedIncludeSpecs) ? returnTrue : matchesSpecs(configFileName, configParseResult.options.configFile.configFileSpecs.validatedIncludeSpecs, configParseResult.options.configFile.configFileSpecs.validatedExcludeSpecs, host)), (f) => getRelativePathFromFile(getNormalizedAbsolutePath(configFileName, host.getCurrentDirectory()), getNormalizedAbsolutePath(f, host.getCurrentDirectory()), getCanonicalFileName)); const pathOptions = { configFilePath: getNormalizedAbsolutePath(configFileName, host.getCurrentDirectory()), useCaseSensitiveFileNames: host.useCaseSensitiveFileNames }; const optionMap = serializeCompilerOptions(configParseResult.options, pathOptions); const watchOptionMap = configParseResult.watchOptions && serializeWatchOptions(configParseResult.watchOptions); const config = { compilerOptions: { ...optionMapToObject(optionMap), showConfig: undefined, configFile: undefined, configFilePath: undefined, help: undefined, init: undefined, listFiles: undefined, listEmittedFiles: undefined, project: undefined, build: undefined, version: undefined }, watchOptions: watchOptionMap && optionMapToObject(watchOptionMap), references: map(configParseResult.projectReferences, (r) => ({ ...r, path: r.originalPath ? r.originalPath : "", originalPath: undefined })), files: length(files) ? files : undefined, ...((_c = configParseResult.options.configFile) == null ? undefined : _c.configFileSpecs) ? { include: filterSameAsDefaultInclude(configParseResult.options.configFile.configFileSpecs.validatedIncludeSpecs), exclude: configParseResult.options.configFile.configFileSpecs.validatedExcludeSpecs } : {}, compileOnSave: configParseResult.compileOnSave ? true : undefined }; const providedKeys = new Set(optionMap.keys()); const impliedCompilerOptions = {}; for (const option in computedOptions) { if (!providedKeys.has(option) && optionDependsOn(option, providedKeys)) { const implied = computedOptions[option].computeValue(configParseResult.options); const defaultValue = computedOptions[option].computeValue({}); if (implied !== defaultValue) { impliedCompilerOptions[option] = computedOptions[option].computeValue(configParseResult.options); } } } assign(config.compilerOptions, optionMapToObject(serializeCompilerOptions(impliedCompilerOptions, pathOptions))); return config; } function optionDependsOn(option, dependsOn) { const seen = /* @__PURE__ */ new Set; return optionDependsOnRecursive(option); function optionDependsOnRecursive(option2) { var _a; if (addToSeen(seen, option2)) { return some((_a = computedOptions[option2]) == null ? undefined : _a.dependencies, (dep) => dependsOn.has(dep) || optionDependsOnRecursive(dep)); } return false; } } function optionMapToObject(optionMap) { return Object.fromEntries(optionMap); } function filterSameAsDefaultInclude(specs) { if (!length(specs)) return; if (length(specs) !== 1) return specs; if (specs[0] === defaultIncludeSpec) return; return specs; } function matchesSpecs(path, includeSpecs, excludeSpecs, host) { if (!includeSpecs) return returnTrue; const patterns = getFileMatcherPatterns(path, excludeSpecs, includeSpecs, host.useCaseSensitiveFileNames, host.getCurrentDirectory()); const excludeRe = patterns.excludePattern && getRegexFromPattern(patterns.excludePattern, host.useCaseSensitiveFileNames); const includeRe = patterns.includeFilePattern && getRegexFromPattern(patterns.includeFilePattern, host.useCaseSensitiveFileNames); if (includeRe) { if (excludeRe) { return (path2) => !(includeRe.test(path2) && !excludeRe.test(path2)); } return (path2) => !includeRe.test(path2); } if (excludeRe) { return (path2) => excludeRe.test(path2); } return returnTrue; } function getCustomTypeMapOfCommandLineOption(optionDefinition) { switch (optionDefinition.type) { case "string": case "number": case "boolean": case "object": return; case "list": case "listOrElement": return getCustomTypeMapOfCommandLineOption(optionDefinition.element); default: return optionDefinition.type; } } function getNameOfCompilerOptionValue(value, customTypeMap) { return forEachEntry(customTypeMap, (mapValue, key) => { if (mapValue === value) { return key; } }); } function serializeCompilerOptions(options, pathOptions) { return serializeOptionBaseObject(options, getOptionsNameMap(), pathOptions); } function serializeWatchOptions(options) { return serializeOptionBaseObject(options, getWatchOptionsNameMap()); } function serializeOptionBaseObject(options, { optionsNameMap }, pathOptions) { const result = /* @__PURE__ */ new Map; const getCanonicalFileName = pathOptions && createGetCanonicalFileName(pathOptions.useCaseSensitiveFileNames); for (const name in options) { if (hasProperty(options, name)) { if (optionsNameMap.has(name) && (optionsNameMap.get(name).category === Diagnostics.Command_line_Options || optionsNameMap.get(name).category === Diagnostics.Output_Formatting)) { continue; } const value = options[name]; const optionDefinition = optionsNameMap.get(name.toLowerCase()); if (optionDefinition) { Debug.assert(optionDefinition.type !== "listOrElement"); const customTypeMap = getCustomTypeMapOfCommandLineOption(optionDefinition); if (!customTypeMap) { if (pathOptions && optionDefinition.isFilePath) { result.set(name, getRelativePathFromFile(pathOptions.configFilePath, getNormalizedAbsolutePath(value, getDirectoryPath(pathOptions.configFilePath)), getCanonicalFileName)); } else if (pathOptions && optionDefinition.type === "list" && optionDefinition.element.isFilePath) { result.set(name, value.map((v) => getRelativePathFromFile(pathOptions.configFilePath, getNormalizedAbsolutePath(v, getDirectoryPath(pathOptions.configFilePath)), getCanonicalFileName))); } else { result.set(name, value); } } else { if (optionDefinition.type === "list") { result.set(name, value.map((element) => getNameOfCompilerOptionValue(element, customTypeMap))); } else { result.set(name, getNameOfCompilerOptionValue(value, customTypeMap)); } } } } } return result; } function generateTSConfig(options, newLine) { const tab = " "; const result = []; const allSetOptions = Object.keys(options).filter((k) => k !== "init" && k !== "help" && k !== "watch"); result.push(`{`); result.push(`${tab}// ${getLocaleSpecificMessage(Diagnostics.Visit_https_Colon_Slash_Slashaka_ms_Slashtsconfig_to_read_more_about_this_file)}`); result.push(`${tab}"compilerOptions": {`); emitHeader(Diagnostics.File_Layout); emitOption("rootDir", "./src", "optional"); emitOption("outDir", "./dist", "optional"); newline(); emitHeader(Diagnostics.Environment_Settings); emitHeader(Diagnostics.See_also_https_Colon_Slash_Slashaka_ms_Slashtsconfig_Slashmodule); emitOption("module", 199); emitOption("target", 99); emitOption("types", []); if (options.lib) { emitOption("lib", options.lib); } emitHeader(Diagnostics.For_nodejs_Colon); result.push(`${tab}${tab}// "lib": ["esnext"],`); result.push(`${tab}${tab}// "types": ["node"],`); emitHeader(Diagnostics.and_npm_install_D_types_Slashnode); newline(); emitHeader(Diagnostics.Other_Outputs); emitOption("sourceMap", true); emitOption("declaration", true); emitOption("declarationMap", true); newline(); emitHeader(Diagnostics.Stricter_Typechecking_Options); emitOption("noUncheckedIndexedAccess", true); emitOption("exactOptionalPropertyTypes", true); newline(); emitHeader(Diagnostics.Style_Options); emitOption("noImplicitReturns", true, "optional"); emitOption("noImplicitOverride", true, "optional"); emitOption("noUnusedLocals", true, "optional"); emitOption("noUnusedParameters", true, "optional"); emitOption("noFallthroughCasesInSwitch", true, "optional"); emitOption("noPropertyAccessFromIndexSignature", true, "optional"); newline(); emitHeader(Diagnostics.Recommended_Options); emitOption("strict", true); emitOption("jsx", 4); emitOption("verbatimModuleSyntax", true); emitOption("isolatedModules", true); emitOption("noUncheckedSideEffectImports", true); emitOption("moduleDetection", 3); emitOption("skipLibCheck", true); if (allSetOptions.length > 0) { newline(); while (allSetOptions.length > 0) { emitOption(allSetOptions[0], options[allSetOptions[0]]); } } function newline() { result.push(""); } function emitHeader(header) { result.push(`${tab}${tab}// ${getLocaleSpecificMessage(header)}`); } function emitOption(setting, defaultValue, commented = "never") { const existingOptionIndex = allSetOptions.indexOf(setting); if (existingOptionIndex >= 0) { allSetOptions.splice(existingOptionIndex, 1); } let comment; if (commented === "always") { comment = true; } else if (commented === "never") { comment = false; } else { comment = !hasProperty(options, setting); } const value = options[setting] ?? defaultValue; if (comment) { result.push(`${tab}${tab}// "${setting}": ${formatValueOrArray(setting, value)},`); } else { result.push(`${tab}${tab}"${setting}": ${formatValueOrArray(setting, value)},`); } } function formatValueOrArray(settingName, value) { const option = optionDeclarations.filter((c) => c.name === settingName)[0]; if (!option) Debug.fail(`No option named ${settingName}?`); const map2 = option.type instanceof Map ? option.type : undefined; if (isArray(value)) { const map3 = "element" in option && option.element.type instanceof Map ? option.element.type : undefined; return `[${value.map((v) => formatSingleValue(v, map3)).join(", ")}]`; } else { return formatSingleValue(value, map2); } } function formatSingleValue(value, map2) { if (map2) { value = getNameOfCompilerOptionValue(value, map2) ?? Debug.fail(`No matching value of ${value}`); } return JSON.stringify(value); } result.push(`${tab}}`); result.push(`}`); result.push(``); return result.join(newLine); } function convertToOptionsWithAbsolutePaths(options, toAbsolutePath) { const result = {}; const optionsNameMap = getOptionsNameMap().optionsNameMap; for (const name in options) { if (hasProperty(options, name)) { result[name] = convertToOptionValueWithAbsolutePaths(optionsNameMap.get(name.toLowerCase()), options[name], toAbsolutePath); } } if (result.configFilePath) { result.configFilePath = toAbsolutePath(result.configFilePath); } return result; } function convertToOptionValueWithAbsolutePaths(option, value, toAbsolutePath) { if (option && !isNullOrUndefined(value)) { if (option.type === "list") { const values = value; if (option.element.isFilePath && values.length) { return values.map(toAbsolutePath); } } else if (option.isFilePath) { return toAbsolutePath(value); } Debug.assert(option.type !== "listOrElement"); } return value; } function parseJsonConfigFileContent(json, host, basePath, existingOptions, configFileName, resolutionStack, extraFileExtensions, extendedConfigCache, existingWatchOptions) { return parseJsonConfigFileContentWorker(json, undefined, host, basePath, existingOptions, existingWatchOptions, configFileName, resolutionStack, extraFileExtensions, extendedConfigCache); } function parseJsonSourceFileConfigFileContent(sourceFile, host, basePath, existingOptions, configFileName, resolutionStack, extraFileExtensions, extendedConfigCache, existingWatchOptions) { var _a, _b; (_a = tracing) == null || _a.push(tracing.Phase.Parse, "parseJsonSourceFileConfigFileContent", { path: sourceFile.fileName }); const result = parseJsonConfigFileContentWorker(undefined, sourceFile, host, basePath, existingOptions, existingWatchOptions, configFileName, resolutionStack, extraFileExtensions, extendedConfigCache); (_b = tracing) == null || _b.pop(); return result; } function setConfigFileInOptions(options, configFile) { if (configFile) { Object.defineProperty(options, "configFile", { enumerable: false, writable: false, value: configFile }); } } function isNullOrUndefined(x) { return x === undefined || x === null; } function directoryOfCombinedPath(fileName, basePath) { return getDirectoryPath(getNormalizedAbsolutePath(fileName, basePath)); } var defaultIncludeSpec = "**/*"; function parseJsonConfigFileContentWorker(json, sourceFile, host, basePath, existingOptions = {}, existingWatchOptions, configFileName, resolutionStack = [], extraFileExtensions = [], extendedConfigCache) { Debug.assert(json === undefined && sourceFile !== undefined || json !== undefined && sourceFile === undefined); const errors = []; const parsedConfig = parseConfig(json, sourceFile, host, basePath, configFileName, resolutionStack, errors, extendedConfigCache); const { raw } = parsedConfig; const options = handleOptionConfigDirTemplateSubstitution(extend(existingOptions, parsedConfig.options || {}), configDirTemplateSubstitutionOptions, basePath); const watchOptions = handleWatchOptionsConfigDirTemplateSubstitution(existingWatchOptions && parsedConfig.watchOptions ? extend(existingWatchOptions, parsedConfig.watchOptions) : parsedConfig.watchOptions || existingWatchOptions, basePath); options.configFilePath = configFileName && normalizeSlashes(configFileName); const basePathForFileNames = normalizePath(configFileName ? directoryOfCombinedPath(configFileName, basePath) : basePath); const configFileSpecs = getConfigFileSpecs(); if (sourceFile) sourceFile.configFileSpecs = configFileSpecs; setConfigFileInOptions(options, sourceFile); return { options, watchOptions, fileNames: getFileNames(basePathForFileNames), projectReferences: getProjectReferences(basePathForFileNames), typeAcquisition: parsedConfig.typeAcquisition || getDefaultTypeAcquisition(), raw, errors, wildcardDirectories: getWildcardDirectories(configFileSpecs, basePathForFileNames, host.useCaseSensitiveFileNames), compileOnSave: !!raw.compileOnSave }; function getConfigFileSpecs() { const referencesOfRaw = getPropFromRaw("references", (element) => typeof element === "object", "object"); const filesSpecs = toPropValue(getSpecsFromRaw("files")); if (filesSpecs) { const hasZeroOrNoReferences = referencesOfRaw === "no-prop" || isArray(referencesOfRaw) && referencesOfRaw.length === 0; const hasExtends = hasProperty(raw, "extends"); if (filesSpecs.length === 0 && hasZeroOrNoReferences && !hasExtends) { if (sourceFile) { const fileName = configFileName || "tsconfig.json"; const diagnosticMessage = Diagnostics.The_files_list_in_config_file_0_is_empty; const nodeValue = forEachTsConfigPropArray(sourceFile, "files", (property) => property.initializer); const error2 = createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, nodeValue, diagnosticMessage, fileName); errors.push(error2); } else { createCompilerDiagnosticOnlyIfJson(Diagnostics.The_files_list_in_config_file_0_is_empty, configFileName || "tsconfig.json"); } } } let includeSpecs = toPropValue(getSpecsFromRaw("include")); const excludeOfRaw = getSpecsFromRaw("exclude"); let isDefaultIncludeSpec = false; let excludeSpecs = toPropValue(excludeOfRaw); if (excludeOfRaw === "no-prop") { const outDir = options.outDir; const declarationDir = options.declarationDir; if (outDir || declarationDir) { excludeSpecs = filter([outDir, declarationDir], (d) => !!d); } } if (filesSpecs === undefined && includeSpecs === undefined) { includeSpecs = [defaultIncludeSpec]; isDefaultIncludeSpec = true; } let validatedIncludeSpecsBeforeSubstitution, validatedExcludeSpecsBeforeSubstitution; let validatedIncludeSpecs, validatedExcludeSpecs; if (includeSpecs) { validatedIncludeSpecsBeforeSubstitution = validateSpecs(includeSpecs, errors, true, sourceFile, "include"); validatedIncludeSpecs = getSubstitutedStringArrayWithConfigDirTemplate(validatedIncludeSpecsBeforeSubstitution, basePathForFileNames) || validatedIncludeSpecsBeforeSubstitution; } if (excludeSpecs) { validatedExcludeSpecsBeforeSubstitution = validateSpecs(excludeSpecs, errors, false, sourceFile, "exclude"); validatedExcludeSpecs = getSubstitutedStringArrayWithConfigDirTemplate(validatedExcludeSpecsBeforeSubstitution, basePathForFileNames) || validatedExcludeSpecsBeforeSubstitution; } const validatedFilesSpecBeforeSubstitution = filter(filesSpecs, isString); const validatedFilesSpec = getSubstitutedStringArrayWithConfigDirTemplate(validatedFilesSpecBeforeSubstitution, basePathForFileNames) || validatedFilesSpecBeforeSubstitution; return { filesSpecs, includeSpecs, excludeSpecs, validatedFilesSpec, validatedIncludeSpecs, validatedExcludeSpecs, validatedFilesSpecBeforeSubstitution, validatedIncludeSpecsBeforeSubstitution, validatedExcludeSpecsBeforeSubstitution, isDefaultIncludeSpec }; } function getFileNames(basePath2) { const fileNames = getFileNamesFromConfigSpecs(configFileSpecs, basePath2, options, host, extraFileExtensions); if (shouldReportNoInputFiles(fileNames, canJsonReportNoInputFiles(raw), resolutionStack)) { errors.push(getErrorForNoInputFiles(configFileSpecs, configFileName)); } return fileNames; } function getProjectReferences(basePath2) { let projectReferences; const referencesOfRaw = getPropFromRaw("references", (element) => typeof element === "object", "object"); if (isArray(referencesOfRaw)) { for (const ref of referencesOfRaw) { if (typeof ref.path !== "string") { createCompilerDiagnosticOnlyIfJson(Diagnostics.Compiler_option_0_requires_a_value_of_type_1, "reference.path", "string"); } else { (projectReferences || (projectReferences = [])).push({ path: getNormalizedAbsolutePath(ref.path, basePath2), originalPath: ref.path, prepend: ref.prepend, circular: ref.circular }); } } } return projectReferences; } function toPropValue(specResult) { return isArray(specResult) ? specResult : undefined; } function getSpecsFromRaw(prop) { return getPropFromRaw(prop, isString, "string"); } function getPropFromRaw(prop, validateElement, elementTypeName) { if (hasProperty(raw, prop) && !isNullOrUndefined(raw[prop])) { if (isArray(raw[prop])) { const result = raw[prop]; if (!sourceFile && !every(result, validateElement)) { errors.push(createCompilerDiagnostic(Diagnostics.Compiler_option_0_requires_a_value_of_type_1, prop, elementTypeName)); } return result; } else { createCompilerDiagnosticOnlyIfJson(Diagnostics.Compiler_option_0_requires_a_value_of_type_1, prop, "Array"); return "not-array"; } } return "no-prop"; } function createCompilerDiagnosticOnlyIfJson(message, ...args) { if (!sourceFile) { errors.push(createCompilerDiagnostic(message, ...args)); } } } function handleWatchOptionsConfigDirTemplateSubstitution(watchOptions, basePath) { return handleOptionConfigDirTemplateSubstitution(watchOptions, configDirTemplateSubstitutionWatchOptions, basePath); } function handleOptionConfigDirTemplateSubstitution(options, optionDeclarations2, basePath) { if (!options) return options; let result; for (const option of optionDeclarations2) { if (options[option.name] !== undefined) { const value = options[option.name]; switch (option.type) { case "string": Debug.assert(option.isFilePath); if (startsWithConfigDirTemplate(value)) { setOptionValue(option, getSubstitutedPathWithConfigDirTemplate(value, basePath)); } break; case "list": Debug.assert(option.element.isFilePath); const listResult = getSubstitutedStringArrayWithConfigDirTemplate(value, basePath); if (listResult) setOptionValue(option, listResult); break; case "object": Debug.assert(option.name === "paths"); const objectResult = getSubstitutedMapLikeOfStringArrayWithConfigDirTemplate(value, basePath); if (objectResult) setOptionValue(option, objectResult); break; default: Debug.fail("option type not supported"); } } } return result || options; function setOptionValue(option, value) { (result ?? (result = assign({}, options)))[option.name] = value; } } var configDirTemplate = `\${configDir}`; function startsWithConfigDirTemplate(value) { return isString(value) && startsWith(value, configDirTemplate, true); } function getSubstitutedPathWithConfigDirTemplate(value, basePath) { return getNormalizedAbsolutePath(value.replace(configDirTemplate, "./"), basePath); } function getSubstitutedStringArrayWithConfigDirTemplate(list, basePath) { if (!list) return list; let result; list.forEach((element, index) => { if (!startsWithConfigDirTemplate(element)) return; (result ?? (result = list.slice()))[index] = getSubstitutedPathWithConfigDirTemplate(element, basePath); }); return result; } function getSubstitutedMapLikeOfStringArrayWithConfigDirTemplate(mapLike, basePath) { let result; const ownKeys = getOwnKeys(mapLike); ownKeys.forEach((key) => { if (!isArray(mapLike[key])) return; const subStitution = getSubstitutedStringArrayWithConfigDirTemplate(mapLike[key], basePath); if (!subStitution) return; (result ?? (result = assign({}, mapLike)))[key] = subStitution; }); return result; } function isErrorNoInputFiles(error2) { return error2.code === Diagnostics.No_inputs_were_found_in_config_file_0_Specified_include_paths_were_1_and_exclude_paths_were_2.code; } function getErrorForNoInputFiles({ includeSpecs, excludeSpecs }, configFileName) { return createCompilerDiagnostic(Diagnostics.No_inputs_were_found_in_config_file_0_Specified_include_paths_were_1_and_exclude_paths_were_2, configFileName || "tsconfig.json", JSON.stringify(includeSpecs || []), JSON.stringify(excludeSpecs || [])); } function shouldReportNoInputFiles(fileNames, canJsonReportNoInutFiles, resolutionStack) { return fileNames.length === 0 && canJsonReportNoInutFiles && (!resolutionStack || resolutionStack.length === 0); } function isSolutionConfig(config) { return !config.fileNames.length && hasProperty(config.raw, "references"); } function canJsonReportNoInputFiles(raw) { return !hasProperty(raw, "files") && !hasProperty(raw, "references"); } function updateErrorForNoInputFiles(fileNames, configFileName, configFileSpecs, configParseDiagnostics, canJsonReportNoInutFiles) { const existingErrors = configParseDiagnostics.length; if (shouldReportNoInputFiles(fileNames, canJsonReportNoInutFiles)) { configParseDiagnostics.push(getErrorForNoInputFiles(configFileSpecs, configFileName)); } else { filterMutate(configParseDiagnostics, (error2) => !isErrorNoInputFiles(error2)); } return existingErrors !== configParseDiagnostics.length; } function isSuccessfulParsedTsconfig(value) { return !!value.options; } function parseConfig(json, sourceFile, host, basePath, configFileName, resolutionStack, errors, extendedConfigCache) { var _a; basePath = normalizeSlashes(basePath); const resolvedPath = getNormalizedAbsolutePath(configFileName || "", basePath); if (resolutionStack.includes(resolvedPath)) { errors.push(createCompilerDiagnostic(Diagnostics.Circularity_detected_while_resolving_configuration_Colon_0, [...resolutionStack, resolvedPath].join(" -> "))); return { raw: json || convertToObject(sourceFile, errors) }; } const ownConfig = json ? parseOwnConfigOfJson(json, host, basePath, configFileName, errors) : parseOwnConfigOfJsonSourceFile(sourceFile, host, basePath, configFileName, errors); if ((_a = ownConfig.options) == null ? undefined : _a.paths) { ownConfig.options.pathsBasePath = basePath; } if (ownConfig.extendedConfigPath) { resolutionStack = resolutionStack.concat([resolvedPath]); const result = { options: {} }; if (isString(ownConfig.extendedConfigPath)) { applyExtendedConfig(result, ownConfig.extendedConfigPath); } else { ownConfig.extendedConfigPath.forEach((extendedConfigPath) => applyExtendedConfig(result, extendedConfigPath)); } if (result.include) ownConfig.raw.include = result.include; if (result.exclude) ownConfig.raw.exclude = result.exclude; if (result.files) ownConfig.raw.files = result.files; if (ownConfig.raw.compileOnSave === undefined && result.compileOnSave) ownConfig.raw.compileOnSave = result.compileOnSave; if (sourceFile && result.extendedSourceFiles) sourceFile.extendedSourceFiles = arrayFrom(result.extendedSourceFiles.keys()); ownConfig.options = assign(result.options, ownConfig.options); ownConfig.watchOptions = ownConfig.watchOptions && result.watchOptions ? assignWatchOptions(result, ownConfig.watchOptions) : ownConfig.watchOptions || result.watchOptions; } return ownConfig; function applyExtendedConfig(result, extendedConfigPath) { const extendedConfig = getExtendedConfig(sourceFile, extendedConfigPath, host, resolutionStack, errors, extendedConfigCache, result); if (extendedConfig && isSuccessfulParsedTsconfig(extendedConfig)) { const extendsRaw = extendedConfig.raw; let relativeDifference; const setPropertyInResultIfNotUndefined = (propertyName) => { if (ownConfig.raw[propertyName]) return; if (extendsRaw[propertyName]) { result[propertyName] = map(extendsRaw[propertyName], (path) => startsWithConfigDirTemplate(path) || isRootedDiskPath(path) ? path : combinePaths(relativeDifference || (relativeDifference = convertToRelativePath(getDirectoryPath(extendedConfigPath), basePath, createGetCanonicalFileName(host.useCaseSensitiveFileNames))), path)); } }; setPropertyInResultIfNotUndefined("include"); setPropertyInResultIfNotUndefined("exclude"); setPropertyInResultIfNotUndefined("files"); if (extendsRaw.compileOnSave !== undefined) { result.compileOnSave = extendsRaw.compileOnSave; } assign(result.options, extendedConfig.options); result.watchOptions = result.watchOptions && extendedConfig.watchOptions ? assignWatchOptions(result, extendedConfig.watchOptions) : result.watchOptions || extendedConfig.watchOptions; } } function assignWatchOptions(result, watchOptions) { if (result.watchOptionsCopied) return assign(result.watchOptions, watchOptions); result.watchOptionsCopied = true; return assign({}, result.watchOptions, watchOptions); } } function parseOwnConfigOfJson(json, host, basePath, configFileName, errors) { if (hasProperty(json, "excludes")) { errors.push(createCompilerDiagnostic(Diagnostics.Unknown_option_excludes_Did_you_mean_exclude)); } const options = convertCompilerOptionsFromJsonWorker(json.compilerOptions, basePath, errors, configFileName); const typeAcquisition = convertTypeAcquisitionFromJsonWorker(json.typeAcquisition, basePath, errors, configFileName); const watchOptions = convertWatchOptionsFromJsonWorker(json.watchOptions, basePath, errors); json.compileOnSave = convertCompileOnSaveOptionFromJson(json, basePath, errors); const extendedConfigPath = json.extends || json.extends === "" ? getExtendsConfigPathOrArray(json.extends, host, basePath, configFileName, errors) : undefined; return { raw: json, options, watchOptions, typeAcquisition, extendedConfigPath }; } function getExtendsConfigPathOrArray(value, host, basePath, configFileName, errors, propertyAssignment, valueExpression, sourceFile) { let extendedConfigPath; const newBase = configFileName ? directoryOfCombinedPath(configFileName, basePath) : basePath; if (isString(value)) { extendedConfigPath = getExtendsConfigPath(value, host, newBase, errors, valueExpression, sourceFile); } else if (isArray(value)) { extendedConfigPath = []; for (let index = 0;index < value.length; index++) { const fileName = value[index]; if (isString(fileName)) { extendedConfigPath = append(extendedConfigPath, getExtendsConfigPath(fileName, host, newBase, errors, valueExpression == null ? undefined : valueExpression.elements[index], sourceFile)); } else { convertJsonOption(extendsOptionDeclaration.element, value, basePath, errors, propertyAssignment, valueExpression == null ? undefined : valueExpression.elements[index], sourceFile); } } } else { convertJsonOption(extendsOptionDeclaration, value, basePath, errors, propertyAssignment, valueExpression, sourceFile); } return extendedConfigPath; } function parseOwnConfigOfJsonSourceFile(sourceFile, host, basePath, configFileName, errors) { const options = getDefaultCompilerOptions(configFileName); let typeAcquisition; let watchOptions; let extendedConfigPath; let rootCompilerOptions; const rootOptions = getTsconfigRootOptionsMap(); const json = convertConfigFileToObject(sourceFile, errors, { rootOptions, onPropertySet }); if (!typeAcquisition) { typeAcquisition = getDefaultTypeAcquisition(configFileName); } if (rootCompilerOptions && json && json.compilerOptions === undefined) { errors.push(createDiagnosticForNodeInSourceFile(sourceFile, rootCompilerOptions[0], Diagnostics._0_should_be_set_inside_the_compilerOptions_object_of_the_config_json_file, getTextOfPropertyName(rootCompilerOptions[0]))); } return { raw: json, options, watchOptions, typeAcquisition, extendedConfigPath }; function onPropertySet(keyText, value, propertyAssignment, parentOption, option) { if (option && option !== extendsOptionDeclaration) value = convertJsonOption(option, value, basePath, errors, propertyAssignment, propertyAssignment.initializer, sourceFile); if (parentOption == null ? undefined : parentOption.name) { if (option) { let currentOption; if (parentOption === compilerOptionsDeclaration) currentOption = options; else if (parentOption === watchOptionsDeclaration) currentOption = watchOptions ?? (watchOptions = {}); else if (parentOption === typeAcquisitionDeclaration) currentOption = typeAcquisition ?? (typeAcquisition = getDefaultTypeAcquisition(configFileName)); else Debug.fail("Unknown option"); currentOption[option.name] = value; } else if (keyText && (parentOption == null ? undefined : parentOption.extraKeyDiagnostics)) { if (parentOption.elementOptions) { errors.push(createUnknownOptionError(keyText, parentOption.extraKeyDiagnostics, undefined, propertyAssignment.name, sourceFile)); } else { errors.push(createDiagnosticForNodeInSourceFile(sourceFile, propertyAssignment.name, parentOption.extraKeyDiagnostics.unknownOptionDiagnostic, keyText)); } } } else if (parentOption === rootOptions) { if (option === extendsOptionDeclaration) { extendedConfigPath = getExtendsConfigPathOrArray(value, host, basePath, configFileName, errors, propertyAssignment, propertyAssignment.initializer, sourceFile); } else if (!option) { if (keyText === "excludes") { errors.push(createDiagnosticForNodeInSourceFile(sourceFile, propertyAssignment.name, Diagnostics.Unknown_option_excludes_Did_you_mean_exclude)); } if (find(commandOptionsWithoutBuild, (opt) => opt.name === keyText)) { rootCompilerOptions = append(rootCompilerOptions, propertyAssignment.name); } } } } } function getExtendsConfigPath(extendedConfig, host, basePath, errors, valueExpression, sourceFile) { extendedConfig = normalizeSlashes(extendedConfig); if (isRootedDiskPath(extendedConfig) || startsWith(extendedConfig, "./") || startsWith(extendedConfig, "../")) { let extendedConfigPath = getNormalizedAbsolutePath(extendedConfig, basePath); if (!host.fileExists(extendedConfigPath) && !endsWith(extendedConfigPath, ".json")) { extendedConfigPath = `${extendedConfigPath}.json`; if (!host.fileExists(extendedConfigPath)) { errors.push(createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, valueExpression, Diagnostics.File_0_not_found, extendedConfig)); return; } } return extendedConfigPath; } const resolved = nodeNextJsonConfigResolver(extendedConfig, combinePaths(basePath, "tsconfig.json"), host); if (resolved.resolvedModule) { return resolved.resolvedModule.resolvedFileName; } if (extendedConfig === "") { errors.push(createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, valueExpression, Diagnostics.Compiler_option_0_cannot_be_given_an_empty_string, "extends")); } else { errors.push(createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, valueExpression, Diagnostics.File_0_not_found, extendedConfig)); } return; } function getExtendedConfig(sourceFile, extendedConfigPath, host, resolutionStack, errors, extendedConfigCache, result) { const path = host.useCaseSensitiveFileNames ? extendedConfigPath : toFileNameLowerCase(extendedConfigPath); let value; let extendedResult; let extendedConfig; if (extendedConfigCache && (value = extendedConfigCache.get(path))) { ({ extendedResult, extendedConfig } = value); } else { extendedResult = readJsonConfigFile(extendedConfigPath, (path2) => host.readFile(path2)); if (!extendedResult.parseDiagnostics.length) { extendedConfig = parseConfig(undefined, extendedResult, host, getDirectoryPath(extendedConfigPath), getBaseFileName(extendedConfigPath), resolutionStack, errors, extendedConfigCache); } if (extendedConfigCache) { extendedConfigCache.set(path, { extendedResult, extendedConfig }); } } if (sourceFile) { (result.extendedSourceFiles ?? (result.extendedSourceFiles = /* @__PURE__ */ new Set)).add(extendedResult.fileName); if (extendedResult.extendedSourceFiles) { for (const extenedSourceFile of extendedResult.extendedSourceFiles) { result.extendedSourceFiles.add(extenedSourceFile); } } } if (extendedResult.parseDiagnostics.length) { errors.push(...extendedResult.parseDiagnostics); return; } return extendedConfig; } function convertCompileOnSaveOptionFromJson(jsonOption, basePath, errors) { if (!hasProperty(jsonOption, compileOnSaveCommandLineOption.name)) { return false; } const result = convertJsonOption(compileOnSaveCommandLineOption, jsonOption.compileOnSave, basePath, errors); return typeof result === "boolean" && result; } function convertCompilerOptionsFromJson(jsonOptions, basePath, configFileName) { const errors = []; const options = convertCompilerOptionsFromJsonWorker(jsonOptions, basePath, errors, configFileName); return { options, errors }; } function convertTypeAcquisitionFromJson(jsonOptions, basePath, configFileName) { const errors = []; const options = convertTypeAcquisitionFromJsonWorker(jsonOptions, basePath, errors, configFileName); return { options, errors }; } function getDefaultCompilerOptions(configFileName) { const options = configFileName && getBaseFileName(configFileName) === "jsconfig.json" ? { allowJs: true, maxNodeModuleJsDepth: 2, allowSyntheticDefaultImports: true, skipLibCheck: true, noEmit: true } : {}; return options; } function convertCompilerOptionsFromJsonWorker(jsonOptions, basePath, errors, configFileName) { const options = getDefaultCompilerOptions(configFileName); convertOptionsFromJson(getCommandLineCompilerOptionsMap(), jsonOptions, basePath, options, compilerOptionsDidYouMeanDiagnostics, errors); if (configFileName) { options.configFilePath = normalizeSlashes(configFileName); } return options; } function getDefaultTypeAcquisition(configFileName) { return { enable: !!configFileName && getBaseFileName(configFileName) === "jsconfig.json", include: [], exclude: [] }; } function convertTypeAcquisitionFromJsonWorker(jsonOptions, basePath, errors, configFileName) { const options = getDefaultTypeAcquisition(configFileName); convertOptionsFromJson(getCommandLineTypeAcquisitionMap(), jsonOptions, basePath, options, typeAcquisitionDidYouMeanDiagnostics, errors); return options; } function convertWatchOptionsFromJsonWorker(jsonOptions, basePath, errors) { return convertOptionsFromJson(getCommandLineWatchOptionsMap(), jsonOptions, basePath, undefined, watchOptionsDidYouMeanDiagnostics, errors); } function convertOptionsFromJson(optionsNameMap, jsonOptions, basePath, defaultOptions, diagnostics, errors) { if (!jsonOptions) { return; } for (const id in jsonOptions) { const opt = optionsNameMap.get(id); if (opt) { (defaultOptions || (defaultOptions = {}))[opt.name] = convertJsonOption(opt, jsonOptions[id], basePath, errors); } else { errors.push(createUnknownOptionError(id, diagnostics)); } } return defaultOptions; } function createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, node, message, ...args) { return sourceFile && node ? createDiagnosticForNodeInSourceFile(sourceFile, node, message, ...args) : createCompilerDiagnostic(message, ...args); } function convertJsonOption(opt, value, basePath, errors, propertyAssignment, valueExpression, sourceFile) { if (opt.isCommandLineOnly) { errors.push(createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, propertyAssignment == null ? undefined : propertyAssignment.name, Diagnostics.Option_0_can_only_be_specified_on_command_line, opt.name)); return; } if (isCompilerOptionsValue(opt, value)) { const optType = opt.type; if (optType === "list" && isArray(value)) { return convertJsonOptionOfListType(opt, value, basePath, errors, propertyAssignment, valueExpression, sourceFile); } else if (optType === "listOrElement") { return isArray(value) ? convertJsonOptionOfListType(opt, value, basePath, errors, propertyAssignment, valueExpression, sourceFile) : convertJsonOption(opt.element, value, basePath, errors, propertyAssignment, valueExpression, sourceFile); } else if (!isString(opt.type)) { return convertJsonOptionOfCustomType(opt, value, errors, valueExpression, sourceFile); } const validatedValue = validateJsonOptionValue(opt, value, errors, valueExpression, sourceFile); return isNullOrUndefined(validatedValue) ? validatedValue : normalizeNonListOptionValue(opt, basePath, validatedValue); } else { errors.push(createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, valueExpression, Diagnostics.Compiler_option_0_requires_a_value_of_type_1, opt.name, getCompilerOptionValueTypeString(opt))); } } function normalizeNonListOptionValue(option, basePath, value) { if (option.isFilePath) { value = normalizeSlashes(value); value = !startsWithConfigDirTemplate(value) ? getNormalizedAbsolutePath(value, basePath) : value; if (value === "") { value = "."; } } return value; } function validateJsonOptionValue(opt, value, errors, valueExpression, sourceFile) { var _a; if (isNullOrUndefined(value)) return; const d = (_a = opt.extraValidation) == null ? undefined : _a.call(opt, value); if (!d) return value; errors.push(createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, valueExpression, ...d)); return; } function convertJsonOptionOfCustomType(opt, value, errors, valueExpression, sourceFile) { if (isNullOrUndefined(value)) return; const key = value.toLowerCase(); const val = opt.type.get(key); if (val !== undefined) { return validateJsonOptionValue(opt, val, errors, valueExpression, sourceFile); } else { errors.push(createDiagnosticForInvalidCustomType(opt, (message, ...args) => createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(sourceFile, valueExpression, message, ...args))); } } function convertJsonOptionOfListType(option, values, basePath, errors, propertyAssignment, valueExpression, sourceFile) { return filter(map(values, (v, index) => convertJsonOption(option.element, v, basePath, errors, propertyAssignment, valueExpression == null ? undefined : valueExpression.elements[index], sourceFile)), (v) => option.listPreserveFalsyValues ? true : !!v); } var invalidTrailingRecursionPattern = /(?:^|\/)\*\*\/?$/; var wildcardDirectoryPattern = /^[^*?]*(?=\/[^/]*[*?])/; function getFileNamesFromConfigSpecs(configFileSpecs, basePath, options, host, extraFileExtensions = emptyArray) { basePath = normalizePath(basePath); const keyMapper = createGetCanonicalFileName(host.useCaseSensitiveFileNames); const literalFileMap = /* @__PURE__ */ new Map; const wildcardFileMap = /* @__PURE__ */ new Map; const wildCardJsonFileMap = /* @__PURE__ */ new Map; const { validatedFilesSpec, validatedIncludeSpecs, validatedExcludeSpecs } = configFileSpecs; const supportedExtensions = getSupportedExtensions(options, extraFileExtensions); const supportedExtensionsWithJsonIfResolveJsonModule = getSupportedExtensionsWithJsonIfResolveJsonModule(options, supportedExtensions); if (validatedFilesSpec) { for (const fileName of validatedFilesSpec) { const file = getNormalizedAbsolutePath(fileName, basePath); literalFileMap.set(keyMapper(file), file); } } let jsonOnlyIncludeRegexes; if (validatedIncludeSpecs && validatedIncludeSpecs.length > 0) { for (const file of host.readDirectory(basePath, flatten(supportedExtensionsWithJsonIfResolveJsonModule), validatedExcludeSpecs, validatedIncludeSpecs, undefined)) { if (fileExtensionIs(file, ".json")) { if (!jsonOnlyIncludeRegexes) { const includes = validatedIncludeSpecs.filter((s) => endsWith(s, ".json")); const includeFilePatterns = map(getRegularExpressionsForWildcards(includes, basePath, "files"), (pattern) => `^${pattern}$`); jsonOnlyIncludeRegexes = includeFilePatterns ? includeFilePatterns.map((pattern) => getRegexFromPattern(pattern, host.useCaseSensitiveFileNames)) : emptyArray; } const includeIndex = findIndex(jsonOnlyIncludeRegexes, (re) => re.test(file)); if (includeIndex !== -1) { const key2 = keyMapper(file); if (!literalFileMap.has(key2) && !wildCardJsonFileMap.has(key2)) { wildCardJsonFileMap.set(key2, file); } } continue; } if (hasFileWithHigherPriorityExtension(file, literalFileMap, wildcardFileMap, supportedExtensions, keyMapper)) { continue; } removeWildcardFilesWithLowerPriorityExtension(file, wildcardFileMap, supportedExtensions, keyMapper); const key = keyMapper(file); if (!literalFileMap.has(key) && !wildcardFileMap.has(key)) { wildcardFileMap.set(key, file); } } } const literalFiles = arrayFrom(literalFileMap.values()); const wildcardFiles = arrayFrom(wildcardFileMap.values()); return literalFiles.concat(wildcardFiles, arrayFrom(wildCardJsonFileMap.values())); } function isExcludedFile(pathToCheck, spec3, basePath, useCaseSensitiveFileNames2, currentDirectory) { const { validatedFilesSpec, validatedIncludeSpecs, validatedExcludeSpecs } = spec3; if (!length(validatedIncludeSpecs) || !length(validatedExcludeSpecs)) return false; basePath = normalizePath(basePath); const keyMapper = createGetCanonicalFileName(useCaseSensitiveFileNames2); if (validatedFilesSpec) { for (const fileName of validatedFilesSpec) { if (keyMapper(getNormalizedAbsolutePath(fileName, basePath)) === pathToCheck) return false; } } return matchesExcludeWorker(pathToCheck, validatedExcludeSpecs, useCaseSensitiveFileNames2, currentDirectory, basePath); } function invalidDotDotAfterRecursiveWildcard(s) { const wildcardIndex = startsWith(s, "**/") ? 0 : s.indexOf("/**/"); if (wildcardIndex === -1) { return false; } const lastDotIndex = endsWith(s, "/..") ? s.length : s.lastIndexOf("/../"); return lastDotIndex > wildcardIndex; } function matchesExclude(pathToCheck, excludeSpecs, useCaseSensitiveFileNames2, currentDirectory) { return matchesExcludeWorker(pathToCheck, filter(excludeSpecs, (spec3) => !invalidDotDotAfterRecursiveWildcard(spec3)), useCaseSensitiveFileNames2, currentDirectory); } function matchesExcludeWorker(pathToCheck, excludeSpecs, useCaseSensitiveFileNames2, currentDirectory, basePath) { const excludePattern = getRegularExpressionForWildcard(excludeSpecs, combinePaths(normalizePath(currentDirectory), basePath), "exclude"); const excludeRegex = excludePattern && getRegexFromPattern(excludePattern, useCaseSensitiveFileNames2); if (!excludeRegex) return false; if (excludeRegex.test(pathToCheck)) return true; return !hasExtension(pathToCheck) && excludeRegex.test(ensureTrailingDirectorySeparator(pathToCheck)); } function validateSpecs(specs, errors, disallowTrailingRecursion, jsonSourceFile, specKey) { return specs.filter((spec3) => { if (!isString(spec3)) return false; const diag2 = specToDiagnostic(spec3, disallowTrailingRecursion); if (diag2 !== undefined) { errors.push(createDiagnostic(...diag2)); } return diag2 === undefined; }); function createDiagnostic(message, spec3) { const element = getTsConfigPropArrayElementValue(jsonSourceFile, specKey, spec3); return createDiagnosticForNodeInSourceFileOrCompilerDiagnostic(jsonSourceFile, element, message, spec3); } } function specToDiagnostic(spec3, disallowTrailingRecursion) { Debug.assert(typeof spec3 === "string"); if (disallowTrailingRecursion && invalidTrailingRecursionPattern.test(spec3)) { return [Diagnostics.File_specification_cannot_end_in_a_recursive_directory_wildcard_Asterisk_Asterisk_Colon_0, spec3]; } else if (invalidDotDotAfterRecursiveWildcard(spec3)) { return [Diagnostics.File_specification_cannot_contain_a_parent_directory_that_appears_after_a_recursive_directory_wildcard_Asterisk_Asterisk_Colon_0, spec3]; } } function getWildcardDirectories({ validatedIncludeSpecs: include, validatedExcludeSpecs: exclude }, basePath, useCaseSensitiveFileNames2) { const rawExcludeRegex = getRegularExpressionForWildcard(exclude, basePath, "exclude"); const excludeRegex = rawExcludeRegex && new RegExp(rawExcludeRegex, useCaseSensitiveFileNames2 ? "" : "i"); const wildcardDirectories = {}; const wildCardKeyToPath = /* @__PURE__ */ new Map; if (include !== undefined) { const recursiveKeys = []; for (const file of include) { const spec3 = normalizePath(combinePaths(basePath, file)); if (excludeRegex && excludeRegex.test(spec3)) { continue; } const match = getWildcardDirectoryFromSpec(spec3, useCaseSensitiveFileNames2); if (match) { const { key, path, flags } = match; const existingPath = wildCardKeyToPath.get(key); const existingFlags = existingPath !== undefined ? wildcardDirectories[existingPath] : undefined; if (existingFlags === undefined || existingFlags < flags) { wildcardDirectories[existingPath !== undefined ? existingPath : path] = flags; if (existingPath === undefined) wildCardKeyToPath.set(key, path); if (flags === 1) { recursiveKeys.push(key); } } } } for (const path in wildcardDirectories) { if (hasProperty(wildcardDirectories, path)) { for (const recursiveKey of recursiveKeys) { const key = toCanonicalKey(path, useCaseSensitiveFileNames2); if (key !== recursiveKey && containsPath(recursiveKey, key, basePath, !useCaseSensitiveFileNames2)) { delete wildcardDirectories[path]; } } } } } return wildcardDirectories; } function toCanonicalKey(path, useCaseSensitiveFileNames2) { return useCaseSensitiveFileNames2 ? path : toFileNameLowerCase(path); } function getWildcardDirectoryFromSpec(spec3, useCaseSensitiveFileNames2) { const match = wildcardDirectoryPattern.exec(spec3); if (match) { const questionWildcardIndex = spec3.indexOf("?"); const starWildcardIndex = spec3.indexOf("*"); const lastDirectorySeperatorIndex = spec3.lastIndexOf(directorySeparator); return { key: toCanonicalKey(match[0], useCaseSensitiveFileNames2), path: match[0], flags: questionWildcardIndex !== -1 && questionWildcardIndex < lastDirectorySeperatorIndex || starWildcardIndex !== -1 && starWildcardIndex < lastDirectorySeperatorIndex ? 1 : 0 }; } if (isImplicitGlob(spec3.substring(spec3.lastIndexOf(directorySeparator) + 1))) { const path = removeTrailingDirectorySeparator(spec3); return { key: toCanonicalKey(path, useCaseSensitiveFileNames2), path, flags: 1 }; } return; } function hasFileWithHigherPriorityExtension(file, literalFiles, wildcardFiles, extensions, keyMapper) { const extensionGroup = forEach(extensions, (group2) => fileExtensionIsOneOf(file, group2) ? group2 : undefined); if (!extensionGroup) { return false; } for (const ext of extensionGroup) { if (fileExtensionIs(file, ext) && (ext !== ".ts" || !fileExtensionIs(file, ".d.ts"))) { return false; } const higherPriorityPath = keyMapper(changeExtension(file, ext)); if (literalFiles.has(higherPriorityPath) || wildcardFiles.has(higherPriorityPath)) { if (ext === ".d.ts" && (fileExtensionIs(file, ".js") || fileExtensionIs(file, ".jsx"))) { continue; } return true; } } return false; } function removeWildcardFilesWithLowerPriorityExtension(file, wildcardFiles, extensions, keyMapper) { const extensionGroup = forEach(extensions, (group2) => fileExtensionIsOneOf(file, group2) ? group2 : undefined); if (!extensionGroup) { return; } for (let i = extensionGroup.length - 1;i >= 0; i--) { const ext = extensionGroup[i]; if (fileExtensionIs(file, ext)) { return; } const lowerPriorityPath = keyMapper(changeExtension(file, ext)); wildcardFiles.delete(lowerPriorityPath); } } function convertCompilerOptionsForTelemetry(opts) { const out = {}; for (const key in opts) { if (hasProperty(opts, key)) { const type = getOptionFromName(key); if (type !== undefined) { out[key] = getOptionValueWithEmptyStrings(opts[key], type); } } } return out; } function getOptionValueWithEmptyStrings(value, option) { if (value === undefined) return value; switch (option.type) { case "object": return ""; case "string": return ""; case "number": return typeof value === "number" ? value : ""; case "boolean": return typeof value === "boolean" ? value : ""; case "listOrElement": if (!isArray(value)) return getOptionValueWithEmptyStrings(value, option.element); case "list": const elementType = option.element; return isArray(value) ? mapDefined(value, (v) => getOptionValueWithEmptyStrings(v, elementType)) : ""; default: return forEachEntry(option.type, (optionEnumValue, optionStringValue) => { if (optionEnumValue === value) { return optionStringValue; } }); } } function trace(host, message, ...args) { host.trace(formatMessage(message, ...args)); } function isTraceEnabled(compilerOptions, host) { return !!compilerOptions.traceResolution && host.trace !== undefined; } function withPackageId(packageInfo, r, state) { let packageId; if (r && packageInfo) { const packageJsonContent = packageInfo.contents.packageJsonContent; if (typeof packageJsonContent.name === "string" && typeof packageJsonContent.version === "string") { packageId = { name: packageJsonContent.name, subModuleName: r.path.slice(packageInfo.packageDirectory.length + directorySeparator.length), version: packageJsonContent.version, peerDependencies: getPeerDependenciesOfPackageJsonInfo(packageInfo, state) }; } } return r && { path: r.path, extension: r.ext, packageId, resolvedUsingTsExtension: r.resolvedUsingTsExtension }; } function noPackageId(r) { return withPackageId(undefined, r, undefined); } function removeIgnoredPackageId(r) { if (r) { Debug.assert(r.packageId === undefined); return { path: r.path, ext: r.extension, resolvedUsingTsExtension: r.resolvedUsingTsExtension }; } } function formatExtensions(extensions) { const result = []; if (extensions & 1) result.push("TypeScript"); if (extensions & 2) result.push("JavaScript"); if (extensions & 4) result.push("Declaration"); if (extensions & 8) result.push("JSON"); return result.join(", "); } function extensionsToExtensionsArray(extensions) { const result = []; if (extensions & 1) result.push(...supportedTSImplementationExtensions); if (extensions & 2) result.push(...supportedJSExtensionsFlat); if (extensions & 4) result.push(...supportedDeclarationExtensions); if (extensions & 8) result.push(".json"); return result; } function resolvedTypeScriptOnly(resolved) { if (!resolved) { return; } Debug.assert(extensionIsTS(resolved.extension)); return { fileName: resolved.path, packageId: resolved.packageId }; } function createResolvedModuleWithFailedLookupLocationsHandlingSymlink(moduleName, resolved, isExternalLibraryImport, failedLookupLocations, affectingLocations, diagnostics, state, cache, alternateResult) { if (!state.resultFromCache && !state.compilerOptions.preserveSymlinks && resolved && isExternalLibraryImport && !resolved.originalPath && !isExternalModuleNameRelative(moduleName)) { const { resolvedFileName, originalPath } = getOriginalAndResolvedFileName(resolved.path, state.host, state.traceEnabled); if (originalPath) resolved = { ...resolved, path: resolvedFileName, originalPath }; } return createResolvedModuleWithFailedLookupLocations(resolved, isExternalLibraryImport, failedLookupLocations, affectingLocations, diagnostics, state.resultFromCache, cache, alternateResult); } function createResolvedModuleWithFailedLookupLocations(resolved, isExternalLibraryImport, failedLookupLocations, affectingLocations, diagnostics, resultFromCache, cache, alternateResult) { if (resultFromCache) { if (!(cache == null ? undefined : cache.isReadonly)) { resultFromCache.failedLookupLocations = updateResolutionField(resultFromCache.failedLookupLocations, failedLookupLocations); resultFromCache.affectingLocations = updateResolutionField(resultFromCache.affectingLocations, affectingLocations); resultFromCache.resolutionDiagnostics = updateResolutionField(resultFromCache.resolutionDiagnostics, diagnostics); return resultFromCache; } else { return { ...resultFromCache, failedLookupLocations: initializeResolutionFieldForReadonlyCache(resultFromCache.failedLookupLocations, failedLookupLocations), affectingLocations: initializeResolutionFieldForReadonlyCache(resultFromCache.affectingLocations, affectingLocations), resolutionDiagnostics: initializeResolutionFieldForReadonlyCache(resultFromCache.resolutionDiagnostics, diagnostics) }; } } return { resolvedModule: resolved && { resolvedFileName: resolved.path, originalPath: resolved.originalPath === true ? undefined : resolved.originalPath, extension: resolved.extension, isExternalLibraryImport, packageId: resolved.packageId, resolvedUsingTsExtension: !!resolved.resolvedUsingTsExtension }, failedLookupLocations: initializeResolutionField(failedLookupLocations), affectingLocations: initializeResolutionField(affectingLocations), resolutionDiagnostics: initializeResolutionField(diagnostics), alternateResult }; } function initializeResolutionField(value) { return value.length ? value : undefined; } function updateResolutionField(to, value) { if (!(value == null ? undefined : value.length)) return to; if (!(to == null ? undefined : to.length)) return value; to.push(...value); return to; } function initializeResolutionFieldForReadonlyCache(fromCache, value) { if (!(fromCache == null ? undefined : fromCache.length)) return initializeResolutionField(value); if (!value.length) return fromCache.slice(); return [...fromCache, ...value]; } function readPackageJsonField(jsonContent, fieldName, typeOfTag, state) { if (!hasProperty(jsonContent, fieldName)) { if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_does_not_have_a_0_field, fieldName); } return; } const value = jsonContent[fieldName]; if (typeof value !== typeOfTag || value === null) { if (state.traceEnabled) { trace(state.host, Diagnostics.Expected_type_of_0_field_in_package_json_to_be_1_got_2, fieldName, typeOfTag, value === null ? "null" : typeof value); } return; } return value; } function readPackageJsonPathField(jsonContent, fieldName, baseDirectory, state) { const fileName = readPackageJsonField(jsonContent, fieldName, "string", state); if (fileName === undefined) { return; } if (!fileName) { if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_had_a_falsy_0_field, fieldName); } return; } const path = normalizePath(combinePaths(baseDirectory, fileName)); if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_has_0_field_1_that_references_2, fieldName, fileName, path); } return path; } function readPackageJsonTypesFields(jsonContent, baseDirectory, state) { return readPackageJsonPathField(jsonContent, "typings", baseDirectory, state) || readPackageJsonPathField(jsonContent, "types", baseDirectory, state); } function readPackageJsonTSConfigField(jsonContent, baseDirectory, state) { return readPackageJsonPathField(jsonContent, "tsconfig", baseDirectory, state); } function readPackageJsonMainField(jsonContent, baseDirectory, state) { return readPackageJsonPathField(jsonContent, "main", baseDirectory, state); } function readPackageJsonTypesVersionsField(jsonContent, state) { const typesVersions = readPackageJsonField(jsonContent, "typesVersions", "object", state); if (typesVersions === undefined) return; if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_has_a_typesVersions_field_with_version_specific_path_mappings); } return typesVersions; } function readPackageJsonTypesVersionPaths(jsonContent, state) { const typesVersions = readPackageJsonTypesVersionsField(jsonContent, state); if (typesVersions === undefined) return; if (state.traceEnabled) { for (const key in typesVersions) { if (hasProperty(typesVersions, key) && !VersionRange.tryParse(key)) { trace(state.host, Diagnostics.package_json_has_a_typesVersions_entry_0_that_is_not_a_valid_semver_range, key); } } } const result = getPackageJsonTypesVersionsPaths(typesVersions); if (!result) { if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_does_not_have_a_typesVersions_entry_that_matches_version_0, versionMajorMinor); } return; } const { version: bestVersionKey, paths: bestVersionPaths } = result; if (typeof bestVersionPaths !== "object") { if (state.traceEnabled) { trace(state.host, Diagnostics.Expected_type_of_0_field_in_package_json_to_be_1_got_2, `typesVersions['${bestVersionKey}']`, "object", typeof bestVersionPaths); } return; } return result; } var typeScriptVersion; function getPackageJsonTypesVersionsPaths(typesVersions) { if (!typeScriptVersion) typeScriptVersion = new Version(version); for (const key in typesVersions) { if (!hasProperty(typesVersions, key)) continue; const keyRange = VersionRange.tryParse(key); if (keyRange === undefined) { continue; } if (keyRange.test(typeScriptVersion)) { return { version: key, paths: typesVersions[key] }; } } } function getEffectiveTypeRoots(options, host) { if (options.typeRoots) { return options.typeRoots; } let currentDirectory; if (options.configFilePath) { currentDirectory = getDirectoryPath(options.configFilePath); } else if (host.getCurrentDirectory) { currentDirectory = host.getCurrentDirectory(); } if (currentDirectory !== undefined) { return getDefaultTypeRoots(currentDirectory); } } function getDefaultTypeRoots(currentDirectory) { let typeRoots; forEachAncestorDirectory(normalizePath(currentDirectory), (directory) => { const atTypes = combinePaths(directory, nodeModulesAtTypes); (typeRoots ?? (typeRoots = [])).push(atTypes); }); return typeRoots; } var nodeModulesAtTypes = combinePaths("node_modules", "@types"); function arePathsEqual(path1, path2, host) { const useCaseSensitiveFileNames2 = typeof host.useCaseSensitiveFileNames === "function" ? host.useCaseSensitiveFileNames() : host.useCaseSensitiveFileNames; return comparePaths(path1, path2, !useCaseSensitiveFileNames2) === 0; } function getOriginalAndResolvedFileName(fileName, host, traceEnabled) { const resolvedFileName = realPath(fileName, host, traceEnabled); const pathsAreEqual = arePathsEqual(fileName, resolvedFileName, host); return { resolvedFileName: pathsAreEqual ? fileName : resolvedFileName, originalPath: pathsAreEqual ? undefined : fileName }; } function getCandidateFromTypeRoot(typeRoot, typeReferenceDirectiveName, moduleResolutionState) { const nameForLookup = endsWith(typeRoot, "/node_modules/@types") || endsWith(typeRoot, "/node_modules/@types/") ? mangleScopedPackageNameWithTrace(typeReferenceDirectiveName, moduleResolutionState) : typeReferenceDirectiveName; return combinePaths(typeRoot, nameForLookup); } function resolveTypeReferenceDirective(typeReferenceDirectiveName, containingFile, options, host, redirectedReference, cache, resolutionMode) { Debug.assert(typeof typeReferenceDirectiveName === "string", "Non-string value passed to `ts.resolveTypeReferenceDirective`, likely by a wrapping package working with an outdated `resolveTypeReferenceDirectives` signature. This is probably not a problem in TS itself."); const traceEnabled = isTraceEnabled(options, host); if (redirectedReference) { options = redirectedReference.commandLine.options; } const containingDirectory = containingFile ? getDirectoryPath(containingFile) : undefined; let result = containingDirectory ? cache == null ? undefined : cache.getFromDirectoryCache(typeReferenceDirectiveName, resolutionMode, containingDirectory, redirectedReference) : undefined; if (!result && containingDirectory && !isExternalModuleNameRelative(typeReferenceDirectiveName)) { result = cache == null ? undefined : cache.getFromNonRelativeNameCache(typeReferenceDirectiveName, resolutionMode, containingDirectory, redirectedReference); } if (result) { if (traceEnabled) { trace(host, Diagnostics.Resolving_type_reference_directive_0_containing_file_1, typeReferenceDirectiveName, containingFile); if (redirectedReference) trace(host, Diagnostics.Using_compiler_options_of_project_reference_redirect_0, redirectedReference.sourceFile.fileName); trace(host, Diagnostics.Resolution_for_type_reference_directive_0_was_found_in_cache_from_location_1, typeReferenceDirectiveName, containingDirectory); traceResult(result); } return result; } const typeRoots = getEffectiveTypeRoots(options, host); if (traceEnabled) { if (containingFile === undefined) { if (typeRoots === undefined) { trace(host, Diagnostics.Resolving_type_reference_directive_0_containing_file_not_set_root_directory_not_set, typeReferenceDirectiveName); } else { trace(host, Diagnostics.Resolving_type_reference_directive_0_containing_file_not_set_root_directory_1, typeReferenceDirectiveName, typeRoots); } } else { if (typeRoots === undefined) { trace(host, Diagnostics.Resolving_type_reference_directive_0_containing_file_1_root_directory_not_set, typeReferenceDirectiveName, containingFile); } else { trace(host, Diagnostics.Resolving_type_reference_directive_0_containing_file_1_root_directory_2, typeReferenceDirectiveName, containingFile, typeRoots); } } if (redirectedReference) { trace(host, Diagnostics.Using_compiler_options_of_project_reference_redirect_0, redirectedReference.sourceFile.fileName); } } const failedLookupLocations = []; const affectingLocations = []; let features = getNodeResolutionFeatures(options); if (resolutionMode !== undefined) { features |= 94; } const moduleResolution = getEmitModuleResolutionKind(options); if (resolutionMode === 99 && (3 <= moduleResolution && moduleResolution <= 99)) { features |= 32; } const conditions = features & 8 ? getConditions(options, resolutionMode) : []; const diagnostics = []; const moduleResolutionState = { compilerOptions: options, host, traceEnabled, failedLookupLocations, affectingLocations, packageJsonInfoCache: cache, features, conditions, requestContainingDirectory: containingDirectory, reportDiagnostic: (diag2) => void diagnostics.push(diag2), isConfigLookup: false, candidateIsFromPackageJsonField: false, resolvedPackageDirectory: false }; let resolved = primaryLookup(); let primary = true; if (!resolved) { resolved = secondaryLookup(); primary = false; } let resolvedTypeReferenceDirective; if (resolved) { const { fileName, packageId } = resolved; let resolvedFileName = fileName, originalPath; if (!options.preserveSymlinks) ({ resolvedFileName, originalPath } = getOriginalAndResolvedFileName(fileName, host, traceEnabled)); resolvedTypeReferenceDirective = { primary, resolvedFileName, originalPath, packageId, isExternalLibraryImport: pathContainsNodeModules(fileName) }; } result = { resolvedTypeReferenceDirective, failedLookupLocations: initializeResolutionField(failedLookupLocations), affectingLocations: initializeResolutionField(affectingLocations), resolutionDiagnostics: initializeResolutionField(diagnostics) }; if (containingDirectory && cache && !cache.isReadonly) { cache.getOrCreateCacheForDirectory(containingDirectory, redirectedReference).set(typeReferenceDirectiveName, resolutionMode, result); if (!isExternalModuleNameRelative(typeReferenceDirectiveName)) { cache.getOrCreateCacheForNonRelativeName(typeReferenceDirectiveName, resolutionMode, redirectedReference).set(containingDirectory, result); } } if (traceEnabled) traceResult(result); return result; function traceResult(result2) { var _a; if (!((_a = result2.resolvedTypeReferenceDirective) == null ? undefined : _a.resolvedFileName)) { trace(host, Diagnostics.Type_reference_directive_0_was_not_resolved, typeReferenceDirectiveName); } else if (result2.resolvedTypeReferenceDirective.packageId) { trace(host, Diagnostics.Type_reference_directive_0_was_successfully_resolved_to_1_with_Package_ID_2_primary_Colon_3, typeReferenceDirectiveName, result2.resolvedTypeReferenceDirective.resolvedFileName, packageIdToString(result2.resolvedTypeReferenceDirective.packageId), result2.resolvedTypeReferenceDirective.primary); } else { trace(host, Diagnostics.Type_reference_directive_0_was_successfully_resolved_to_1_primary_Colon_2, typeReferenceDirectiveName, result2.resolvedTypeReferenceDirective.resolvedFileName, result2.resolvedTypeReferenceDirective.primary); } } function primaryLookup() { if (typeRoots && typeRoots.length) { if (traceEnabled) { trace(host, Diagnostics.Resolving_with_primary_search_path_0, typeRoots.join(", ")); } return firstDefined(typeRoots, (typeRoot) => { const candidate = getCandidateFromTypeRoot(typeRoot, typeReferenceDirectiveName, moduleResolutionState); const directoryExists = directoryProbablyExists(typeRoot, host); if (!directoryExists && traceEnabled) { trace(host, Diagnostics.Directory_0_does_not_exist_skipping_all_lookups_in_it, typeRoot); } if (options.typeRoots) { const resolvedFromFile = loadModuleFromFile(4, candidate, !directoryExists, moduleResolutionState); if (resolvedFromFile) { const packageDirectory = parseNodeModuleFromPath(resolvedFromFile.path); const packageInfo = packageDirectory ? getPackageJsonInfo(packageDirectory, false, moduleResolutionState) : undefined; return resolvedTypeScriptOnly(withPackageId(packageInfo, resolvedFromFile, moduleResolutionState)); } } return resolvedTypeScriptOnly(loadNodeModuleFromDirectory(4, candidate, !directoryExists, moduleResolutionState)); }); } else { if (traceEnabled) { trace(host, Diagnostics.Root_directory_cannot_be_determined_skipping_primary_search_paths); } } } function secondaryLookup() { const initialLocationForSecondaryLookup = containingFile && getDirectoryPath(containingFile); if (initialLocationForSecondaryLookup !== undefined) { let result2; if (!options.typeRoots || !endsWith(containingFile, inferredTypesContainingFile)) { if (traceEnabled) { trace(host, Diagnostics.Looking_up_in_node_modules_folder_initial_location_0, initialLocationForSecondaryLookup); } if (!isExternalModuleNameRelative(typeReferenceDirectiveName)) { const searchResult = loadModuleFromNearestNodeModulesDirectory(4, typeReferenceDirectiveName, initialLocationForSecondaryLookup, moduleResolutionState, undefined, undefined); result2 = searchResult && searchResult.value; } else { const { path: candidate } = normalizePathForCJSResolution(initialLocationForSecondaryLookup, typeReferenceDirectiveName); result2 = nodeLoadModuleByRelativeName(4, candidate, false, moduleResolutionState, true); } } else if (traceEnabled) { trace(host, Diagnostics.Resolving_type_reference_directive_for_program_that_specifies_custom_typeRoots_skipping_lookup_in_node_modules_folder); } return resolvedTypeScriptOnly(result2); } else { if (traceEnabled) { trace(host, Diagnostics.Containing_file_is_not_specified_and_root_directory_cannot_be_determined_skipping_lookup_in_node_modules_folder); } } } } function getNodeResolutionFeatures(options) { let features = 0; switch (getEmitModuleResolutionKind(options)) { case 3: features = 30; break; case 99: features = 94; break; case 100: features = 94; break; } if (options.resolvePackageJsonExports) { features |= 8; } else if (options.resolvePackageJsonExports === false) { features &= ~8; } if (options.resolvePackageJsonImports) { features |= 2; } else if (options.resolvePackageJsonImports === false) { features &= ~2; } return features; } function getConditions(options, resolutionMode) { const moduleResolution = getEmitModuleResolutionKind(options); if (resolutionMode === undefined) { if (moduleResolution === 100) { resolutionMode = 99; } else if (moduleResolution === 2) { return []; } } const conditions = resolutionMode === 99 ? ["import"] : ["require"]; if (!options.noDtsResolution) { conditions.push("types"); } if (moduleResolution !== 100) { conditions.push("node"); } return concatenate(conditions, options.customConditions); } function resolvePackageNameToPackageJson(packageName, containingDirectory, options, host, cache) { const moduleResolutionState = getTemporaryModuleResolutionState(cache == null ? undefined : cache.getPackageJsonInfoCache(), host, options); return forEachAncestorDirectoryStoppingAtGlobalCache(host, containingDirectory, (ancestorDirectory) => { if (getBaseFileName(ancestorDirectory) !== "node_modules") { const nodeModulesFolder = combinePaths(ancestorDirectory, "node_modules"); const candidate = combinePaths(nodeModulesFolder, packageName); return getPackageJsonInfo(candidate, false, moduleResolutionState); } }); } function getAutomaticTypeDirectiveNames(options, host) { if (!usesWildcardTypes(options)) { return options.types ?? []; } const wildcardMatches = []; if (host.directoryExists && host.getDirectories) { const typeRoots = getEffectiveTypeRoots(options, host); if (typeRoots) { for (const root of typeRoots) { if (host.directoryExists(root)) { for (const typeDirectivePath of host.getDirectories(root)) { const normalized = normalizePath(typeDirectivePath); const packageJsonPath = combinePaths(root, normalized, "package.json"); const isNotNeededPackage = host.fileExists(packageJsonPath) && readJson(packageJsonPath, host).typings === null; if (!isNotNeededPackage) { const baseFileName = getBaseFileName(normalized); if (baseFileName.charCodeAt(0) !== 46) { wildcardMatches.push(baseFileName); } } } } } } } return deduplicate(flatten(options.types.map((t) => t === "*" ? wildcardMatches : t)), equateValues); } function isPackageJsonInfo(entry) { return !!(entry == null ? undefined : entry.contents); } function isMissingPackageJsonInfo(entry) { return !!entry && !entry.contents; } function compilerOptionValueToString(value) { var _a; if (value === null || typeof value !== "object") { return "" + value; } if (isArray(value)) { return `[${(_a = value.map((e) => compilerOptionValueToString(e))) == null ? undefined : _a.join(",")}]`; } let str = "{"; for (const key in value) { if (hasProperty(value, key)) { str += `${key}: ${compilerOptionValueToString(value[key])}`; } } return str + "}"; } function getKeyForCompilerOptions(options, affectingOptionDeclarations) { return affectingOptionDeclarations.map((option) => compilerOptionValueToString(getCompilerOptionValue(options, option))).join("|") + `|${options.pathsBasePath}`; } function createCacheWithRedirects(ownOptions, optionsToRedirectsKey) { const redirectsMap = /* @__PURE__ */ new Map; const redirectsKeyToMap = /* @__PURE__ */ new Map; let ownMap = /* @__PURE__ */ new Map; if (ownOptions) redirectsMap.set(ownOptions, ownMap); return { getMapOfCacheRedirects, getOrCreateMapOfCacheRedirects, update, clear: clear2, getOwnMap: () => ownMap }; function getMapOfCacheRedirects(redirectedReference) { return redirectedReference ? getOrCreateMap(redirectedReference.commandLine.options, false) : ownMap; } function getOrCreateMapOfCacheRedirects(redirectedReference) { return redirectedReference ? getOrCreateMap(redirectedReference.commandLine.options, true) : ownMap; } function update(newOptions) { if (ownOptions !== newOptions) { if (ownOptions) ownMap = getOrCreateMap(newOptions, true); else redirectsMap.set(newOptions, ownMap); ownOptions = newOptions; } } function getOrCreateMap(redirectOptions, create) { let result = redirectsMap.get(redirectOptions); if (result) return result; const key = getRedirectsCacheKey(redirectOptions); result = redirectsKeyToMap.get(key); if (!result) { if (ownOptions) { const ownKey = getRedirectsCacheKey(ownOptions); if (ownKey === key) result = ownMap; else if (!redirectsKeyToMap.has(ownKey)) redirectsKeyToMap.set(ownKey, ownMap); } if (create) result ?? (result = /* @__PURE__ */ new Map); if (result) redirectsKeyToMap.set(key, result); } if (result) redirectsMap.set(redirectOptions, result); return result; } function clear2() { const ownKey = ownOptions && optionsToRedirectsKey.get(ownOptions); ownMap.clear(); redirectsMap.clear(); optionsToRedirectsKey.clear(); redirectsKeyToMap.clear(); if (ownOptions) { if (ownKey) optionsToRedirectsKey.set(ownOptions, ownKey); redirectsMap.set(ownOptions, ownMap); } } function getRedirectsCacheKey(options) { let result = optionsToRedirectsKey.get(options); if (!result) { optionsToRedirectsKey.set(options, result = getKeyForCompilerOptions(options, moduleResolutionOptionDeclarations)); } return result; } } function createPackageJsonInfoCache(currentDirectory, getCanonicalFileName) { let cache; return { getPackageJsonInfo: getPackageJsonInfo2, setPackageJsonInfo, clear: clear2, getInternalMap }; function getPackageJsonInfo2(packageJsonPath) { return cache == null ? undefined : cache.get(toPath(packageJsonPath, currentDirectory, getCanonicalFileName)); } function setPackageJsonInfo(packageJsonPath, info) { (cache || (cache = /* @__PURE__ */ new Map)).set(toPath(packageJsonPath, currentDirectory, getCanonicalFileName), info); } function clear2() { cache = undefined; } function getInternalMap() { return cache; } } function getOrCreateCache(cacheWithRedirects, redirectedReference, key, create) { const cache = cacheWithRedirects.getOrCreateMapOfCacheRedirects(redirectedReference); let result = cache.get(key); if (!result) { result = create(); cache.set(key, result); } return result; } function createPerDirectoryResolutionCache(currentDirectory, getCanonicalFileName, options, optionsToRedirectsKey) { const directoryToModuleNameMap = createCacheWithRedirects(options, optionsToRedirectsKey); return { getFromDirectoryCache, getOrCreateCacheForDirectory, clear: clear2, update, directoryToModuleNameMap }; function clear2() { directoryToModuleNameMap.clear(); } function update(options2) { directoryToModuleNameMap.update(options2); } function getOrCreateCacheForDirectory(directoryName, redirectedReference) { const path = toPath(directoryName, currentDirectory, getCanonicalFileName); return getOrCreateCache(directoryToModuleNameMap, redirectedReference, path, () => createModeAwareCache()); } function getFromDirectoryCache(name, mode, directoryName, redirectedReference) { var _a, _b; const path = toPath(directoryName, currentDirectory, getCanonicalFileName); return (_b = (_a = directoryToModuleNameMap.getMapOfCacheRedirects(redirectedReference)) == null ? undefined : _a.get(path)) == null ? undefined : _b.get(name, mode); } } function createModeAwareCacheKey(specifier, mode) { return mode === undefined ? specifier : `${mode}|${specifier}`; } function createModeAwareCache() { const underlying = /* @__PURE__ */ new Map; const memoizedReverseKeys = /* @__PURE__ */ new Map; const cache = { get(specifier, mode) { return underlying.get(getUnderlyingCacheKey(specifier, mode)); }, set(specifier, mode, value) { underlying.set(getUnderlyingCacheKey(specifier, mode), value); return cache; }, delete(specifier, mode) { underlying.delete(getUnderlyingCacheKey(specifier, mode)); return cache; }, has(specifier, mode) { return underlying.has(getUnderlyingCacheKey(specifier, mode)); }, forEach(cb) { return underlying.forEach((elem, key) => { const [specifier, mode] = memoizedReverseKeys.get(key); return cb(elem, specifier, mode); }); }, size() { return underlying.size; } }; return cache; function getUnderlyingCacheKey(specifier, mode) { const result = createModeAwareCacheKey(specifier, mode); memoizedReverseKeys.set(result, [specifier, mode]); return result; } } function getOriginalOrResolvedModuleFileName(result) { return result.resolvedModule && (result.resolvedModule.originalPath || result.resolvedModule.resolvedFileName); } function getOriginalOrResolvedTypeReferenceFileName(result) { return result.resolvedTypeReferenceDirective && (result.resolvedTypeReferenceDirective.originalPath || result.resolvedTypeReferenceDirective.resolvedFileName); } function createNonRelativeNameResolutionCache(currentDirectory, getCanonicalFileName, options, getResolvedFileName, optionsToRedirectsKey) { const moduleNameToDirectoryMap = createCacheWithRedirects(options, optionsToRedirectsKey); return { getFromNonRelativeNameCache, getOrCreateCacheForNonRelativeName, clear: clear2, update }; function clear2() { moduleNameToDirectoryMap.clear(); } function update(options2) { moduleNameToDirectoryMap.update(options2); } function getFromNonRelativeNameCache(nonRelativeModuleName, mode, directoryName, redirectedReference) { var _a, _b; Debug.assert(!isExternalModuleNameRelative(nonRelativeModuleName)); return (_b = (_a = moduleNameToDirectoryMap.getMapOfCacheRedirects(redirectedReference)) == null ? undefined : _a.get(createModeAwareCacheKey(nonRelativeModuleName, mode))) == null ? undefined : _b.get(directoryName); } function getOrCreateCacheForNonRelativeName(nonRelativeModuleName, mode, redirectedReference) { Debug.assert(!isExternalModuleNameRelative(nonRelativeModuleName)); return getOrCreateCache(moduleNameToDirectoryMap, redirectedReference, createModeAwareCacheKey(nonRelativeModuleName, mode), createPerModuleNameCache); } function createPerModuleNameCache() { const directoryPathMap = /* @__PURE__ */ new Map; return { get, set }; function get(directory) { return directoryPathMap.get(toPath(directory, currentDirectory, getCanonicalFileName)); } function set(directory, result) { const path = toPath(directory, currentDirectory, getCanonicalFileName); if (directoryPathMap.has(path)) { return; } directoryPathMap.set(path, result); const resolvedFileName = getResolvedFileName(result); const commonPrefix = resolvedFileName && getCommonPrefix(path, resolvedFileName); let current = path; while (current !== commonPrefix) { const parent2 = getDirectoryPath(current); if (parent2 === current || directoryPathMap.has(parent2)) { break; } directoryPathMap.set(parent2, result); current = parent2; } } function getCommonPrefix(directory, resolution) { const resolutionDirectory = toPath(getDirectoryPath(resolution), currentDirectory, getCanonicalFileName); let i = 0; const limit = Math.min(directory.length, resolutionDirectory.length); while (i < limit && directory.charCodeAt(i) === resolutionDirectory.charCodeAt(i)) { i++; } if (i === directory.length && (resolutionDirectory.length === i || resolutionDirectory[i] === directorySeparator)) { return directory; } const rootLength = getRootLength(directory); if (i < rootLength) { return; } const sep = directory.lastIndexOf(directorySeparator, i - 1); if (sep === -1) { return; } return directory.substr(0, Math.max(sep, rootLength)); } } } function createModuleOrTypeReferenceResolutionCache(currentDirectory, getCanonicalFileName, options, packageJsonInfoCache, getResolvedFileName, optionsToRedirectsKey) { optionsToRedirectsKey ?? (optionsToRedirectsKey = /* @__PURE__ */ new Map); const perDirectoryResolutionCache = createPerDirectoryResolutionCache(currentDirectory, getCanonicalFileName, options, optionsToRedirectsKey); const nonRelativeNameResolutionCache = createNonRelativeNameResolutionCache(currentDirectory, getCanonicalFileName, options, getResolvedFileName, optionsToRedirectsKey); packageJsonInfoCache ?? (packageJsonInfoCache = createPackageJsonInfoCache(currentDirectory, getCanonicalFileName)); return { ...packageJsonInfoCache, ...perDirectoryResolutionCache, ...nonRelativeNameResolutionCache, clear: clear2, update, getPackageJsonInfoCache: () => packageJsonInfoCache, clearAllExceptPackageJsonInfoCache, optionsToRedirectsKey }; function clear2() { clearAllExceptPackageJsonInfoCache(); packageJsonInfoCache.clear(); } function clearAllExceptPackageJsonInfoCache() { perDirectoryResolutionCache.clear(); nonRelativeNameResolutionCache.clear(); } function update(options2) { perDirectoryResolutionCache.update(options2); nonRelativeNameResolutionCache.update(options2); } } function createModuleResolutionCache(currentDirectory, getCanonicalFileName, options, packageJsonInfoCache, optionsToRedirectsKey) { const result = createModuleOrTypeReferenceResolutionCache(currentDirectory, getCanonicalFileName, options, packageJsonInfoCache, getOriginalOrResolvedModuleFileName, optionsToRedirectsKey); result.getOrCreateCacheForModuleName = (nonRelativeName, mode, redirectedReference) => result.getOrCreateCacheForNonRelativeName(nonRelativeName, mode, redirectedReference); return result; } function createTypeReferenceDirectiveResolutionCache(currentDirectory, getCanonicalFileName, options, packageJsonInfoCache, optionsToRedirectsKey) { return createModuleOrTypeReferenceResolutionCache(currentDirectory, getCanonicalFileName, options, packageJsonInfoCache, getOriginalOrResolvedTypeReferenceFileName, optionsToRedirectsKey); } function getOptionsForLibraryResolution(options) { return { moduleResolution: 2, traceResolution: options.traceResolution }; } function resolveLibrary(libraryName, resolveFrom, compilerOptions, host, cache) { return resolveModuleName(libraryName, resolveFrom, getOptionsForLibraryResolution(compilerOptions), host, cache); } function resolveModuleNameFromCache(moduleName, containingFile, cache, mode) { const containingDirectory = getDirectoryPath(containingFile); return cache.getFromDirectoryCache(moduleName, mode, containingDirectory, undefined); } function resolveModuleName(moduleName, containingFile, compilerOptions, host, cache, redirectedReference, resolutionMode) { const traceEnabled = isTraceEnabled(compilerOptions, host); if (redirectedReference) { compilerOptions = redirectedReference.commandLine.options; } if (traceEnabled) { trace(host, Diagnostics.Resolving_module_0_from_1, moduleName, containingFile); if (redirectedReference) { trace(host, Diagnostics.Using_compiler_options_of_project_reference_redirect_0, redirectedReference.sourceFile.fileName); } } const containingDirectory = getDirectoryPath(containingFile); let result = cache == null ? undefined : cache.getFromDirectoryCache(moduleName, resolutionMode, containingDirectory, redirectedReference); if (result) { if (traceEnabled) { trace(host, Diagnostics.Resolution_for_module_0_was_found_in_cache_from_location_1, moduleName, containingDirectory); } } else { let moduleResolution = compilerOptions.moduleResolution; if (moduleResolution === undefined) { moduleResolution = getEmitModuleResolutionKind(compilerOptions); if (traceEnabled) { trace(host, Diagnostics.Module_resolution_kind_is_not_specified_using_0, ModuleResolutionKind[moduleResolution]); } } else { if (traceEnabled) { trace(host, Diagnostics.Explicitly_specified_module_resolution_kind_Colon_0, ModuleResolutionKind[moduleResolution]); } } switch (moduleResolution) { case 3: result = node16ModuleNameResolver(moduleName, containingFile, compilerOptions, host, cache, redirectedReference, resolutionMode); break; case 99: result = nodeNextModuleNameResolver(moduleName, containingFile, compilerOptions, host, cache, redirectedReference, resolutionMode); break; case 2: result = nodeModuleNameResolver(moduleName, containingFile, compilerOptions, host, cache, redirectedReference, resolutionMode ? getConditions(compilerOptions, resolutionMode) : undefined); break; case 1: result = classicNameResolver(moduleName, containingFile, compilerOptions, host, cache, redirectedReference); break; case 100: result = bundlerModuleNameResolver(moduleName, containingFile, compilerOptions, host, cache, redirectedReference, resolutionMode ? getConditions(compilerOptions, resolutionMode) : undefined); break; default: return Debug.fail(`Unexpected moduleResolution: ${moduleResolution}`); } if (cache && !cache.isReadonly) { cache.getOrCreateCacheForDirectory(containingDirectory, redirectedReference).set(moduleName, resolutionMode, result); if (!isExternalModuleNameRelative(moduleName)) { cache.getOrCreateCacheForNonRelativeName(moduleName, resolutionMode, redirectedReference).set(containingDirectory, result); } } } if (traceEnabled) { if (result.resolvedModule) { if (result.resolvedModule.packageId) { trace(host, Diagnostics.Module_name_0_was_successfully_resolved_to_1_with_Package_ID_2, moduleName, result.resolvedModule.resolvedFileName, packageIdToString(result.resolvedModule.packageId)); } else { trace(host, Diagnostics.Module_name_0_was_successfully_resolved_to_1, moduleName, result.resolvedModule.resolvedFileName); } } else { trace(host, Diagnostics.Module_name_0_was_not_resolved, moduleName); } } return result; } function tryLoadModuleUsingOptionalResolutionSettings(extensions, moduleName, containingDirectory, loader, state) { const resolved = tryLoadModuleUsingPathsIfEligible(extensions, moduleName, loader, state); if (resolved) return resolved.value; if (!isExternalModuleNameRelative(moduleName)) { return tryLoadModuleUsingBaseUrl(extensions, moduleName, loader, state); } else { return tryLoadModuleUsingRootDirs(extensions, moduleName, containingDirectory, loader, state); } } function tryLoadModuleUsingPathsIfEligible(extensions, moduleName, loader, state) { const { baseUrl, paths } = state.compilerOptions; if (paths && !pathIsRelative(moduleName)) { if (state.traceEnabled) { if (baseUrl) { trace(state.host, Diagnostics.baseUrl_option_is_set_to_0_using_this_value_to_resolve_non_relative_module_name_1, baseUrl, moduleName); } trace(state.host, Diagnostics.paths_option_is_specified_looking_for_a_pattern_to_match_module_name_0, moduleName); } const baseDirectory = getPathsBasePath(state.compilerOptions, state.host); const pathPatterns = tryParsePatterns(paths); return tryLoadModuleUsingPaths(extensions, moduleName, baseDirectory, paths, pathPatterns, loader, false, state); } } function tryLoadModuleUsingRootDirs(extensions, moduleName, containingDirectory, loader, state) { if (!state.compilerOptions.rootDirs) { return; } if (state.traceEnabled) { trace(state.host, Diagnostics.rootDirs_option_is_set_using_it_to_resolve_relative_module_name_0, moduleName); } const candidate = normalizePath(combinePaths(containingDirectory, moduleName)); let matchedRootDir; let matchedNormalizedPrefix; for (const rootDir of state.compilerOptions.rootDirs) { let normalizedRoot = normalizePath(rootDir); if (!endsWith(normalizedRoot, directorySeparator)) { normalizedRoot += directorySeparator; } const isLongestMatchingPrefix = startsWith(candidate, normalizedRoot) && (matchedNormalizedPrefix === undefined || matchedNormalizedPrefix.length < normalizedRoot.length); if (state.traceEnabled) { trace(state.host, Diagnostics.Checking_if_0_is_the_longest_matching_prefix_for_1_2, normalizedRoot, candidate, isLongestMatchingPrefix); } if (isLongestMatchingPrefix) { matchedNormalizedPrefix = normalizedRoot; matchedRootDir = rootDir; } } if (matchedNormalizedPrefix) { if (state.traceEnabled) { trace(state.host, Diagnostics.Longest_matching_prefix_for_0_is_1, candidate, matchedNormalizedPrefix); } const suffix = candidate.substr(matchedNormalizedPrefix.length); if (state.traceEnabled) { trace(state.host, Diagnostics.Loading_0_from_the_root_dir_1_candidate_location_2, suffix, matchedNormalizedPrefix, candidate); } const resolvedFileName = loader(extensions, candidate, !directoryProbablyExists(containingDirectory, state.host), state); if (resolvedFileName) { return resolvedFileName; } if (state.traceEnabled) { trace(state.host, Diagnostics.Trying_other_entries_in_rootDirs); } for (const rootDir of state.compilerOptions.rootDirs) { if (rootDir === matchedRootDir) { continue; } const candidate2 = combinePaths(normalizePath(rootDir), suffix); if (state.traceEnabled) { trace(state.host, Diagnostics.Loading_0_from_the_root_dir_1_candidate_location_2, suffix, rootDir, candidate2); } const baseDirectory = getDirectoryPath(candidate2); const resolvedFileName2 = loader(extensions, candidate2, !directoryProbablyExists(baseDirectory, state.host), state); if (resolvedFileName2) { return resolvedFileName2; } } if (state.traceEnabled) { trace(state.host, Diagnostics.Module_resolution_using_rootDirs_has_failed); } } return; } function tryLoadModuleUsingBaseUrl(extensions, moduleName, loader, state) { const { baseUrl } = state.compilerOptions; if (!baseUrl) { return; } if (state.traceEnabled) { trace(state.host, Diagnostics.baseUrl_option_is_set_to_0_using_this_value_to_resolve_non_relative_module_name_1, baseUrl, moduleName); } const candidate = normalizePath(combinePaths(baseUrl, moduleName)); if (state.traceEnabled) { trace(state.host, Diagnostics.Resolving_module_name_0_relative_to_base_url_1_2, moduleName, baseUrl, candidate); } return loader(extensions, candidate, !directoryProbablyExists(getDirectoryPath(candidate), state.host), state); } function resolveJSModule(moduleName, initialDir, host) { const { resolvedModule, failedLookupLocations } = tryResolveJSModuleWorker(moduleName, initialDir, host); if (!resolvedModule) { throw new Error(`Could not resolve JS module '${moduleName}' starting at '${initialDir}'. Looked in: ${failedLookupLocations == null ? undefined : failedLookupLocations.join(", ")}`); } return resolvedModule.resolvedFileName; } var NodeResolutionFeatures = /* @__PURE__ */ ((NodeResolutionFeatures2) => { NodeResolutionFeatures2[NodeResolutionFeatures2["None"] = 0] = "None"; NodeResolutionFeatures2[NodeResolutionFeatures2["Imports"] = 2] = "Imports"; NodeResolutionFeatures2[NodeResolutionFeatures2["SelfName"] = 4] = "SelfName"; NodeResolutionFeatures2[NodeResolutionFeatures2["Exports"] = 8] = "Exports"; NodeResolutionFeatures2[NodeResolutionFeatures2["ExportsPatternTrailers"] = 16] = "ExportsPatternTrailers"; NodeResolutionFeatures2[NodeResolutionFeatures2["ImportsPatternRoot"] = 64] = "ImportsPatternRoot"; NodeResolutionFeatures2[NodeResolutionFeatures2["AllFeatures"] = 94] = "AllFeatures"; NodeResolutionFeatures2[NodeResolutionFeatures2["Node16Default"] = 30] = "Node16Default"; NodeResolutionFeatures2[NodeResolutionFeatures2["NodeNextDefault"] = 94] = "NodeNextDefault"; NodeResolutionFeatures2[NodeResolutionFeatures2["BundlerDefault"] = 94] = "BundlerDefault"; NodeResolutionFeatures2[NodeResolutionFeatures2["EsmMode"] = 32] = "EsmMode"; return NodeResolutionFeatures2; })(NodeResolutionFeatures || {}); function node16ModuleNameResolver(moduleName, containingFile, compilerOptions, host, cache, redirectedReference, resolutionMode) { return nodeNextModuleNameResolverWorker(30, moduleName, containingFile, compilerOptions, host, cache, redirectedReference, resolutionMode); } function nodeNextModuleNameResolver(moduleName, containingFile, compilerOptions, host, cache, redirectedReference, resolutionMode) { return nodeNextModuleNameResolverWorker(94, moduleName, containingFile, compilerOptions, host, cache, redirectedReference, resolutionMode); } function nodeNextModuleNameResolverWorker(features, moduleName, containingFile, compilerOptions, host, cache, redirectedReference, resolutionMode, conditions) { const containingDirectory = getDirectoryPath(containingFile); const esmMode = resolutionMode === 99 ? 32 : 0; let extensions = compilerOptions.noDtsResolution ? 3 : 1 | 2 | 4; if (getResolveJsonModule(compilerOptions)) { extensions |= 8; } return nodeModuleNameResolverWorker(features | esmMode, moduleName, containingDirectory, compilerOptions, host, cache, extensions, false, redirectedReference, conditions); } function tryResolveJSModuleWorker(moduleName, initialDir, host) { return nodeModuleNameResolverWorker(0, moduleName, initialDir, { moduleResolution: 2, allowJs: true }, host, undefined, 2, false, undefined, undefined); } function bundlerModuleNameResolver(moduleName, containingFile, compilerOptions, host, cache, redirectedReference, conditions) { const containingDirectory = getDirectoryPath(containingFile); let extensions = compilerOptions.noDtsResolution ? 3 : 1 | 2 | 4; if (getResolveJsonModule(compilerOptions)) { extensions |= 8; } return nodeModuleNameResolverWorker(getNodeResolutionFeatures(compilerOptions), moduleName, containingDirectory, compilerOptions, host, cache, extensions, false, redirectedReference, conditions); } function nodeModuleNameResolver(moduleName, containingFile, compilerOptions, host, cache, redirectedReference, conditions, isConfigLookup) { let extensions; if (isConfigLookup) { extensions = 8; } else if (compilerOptions.noDtsResolution) { extensions = 3; if (getResolveJsonModule(compilerOptions)) extensions |= 8; } else { extensions = getResolveJsonModule(compilerOptions) ? 1 | 2 | 4 | 8 : 1 | 2 | 4; } return nodeModuleNameResolverWorker(conditions ? 94 : 0, moduleName, getDirectoryPath(containingFile), compilerOptions, host, cache, extensions, !!isConfigLookup, redirectedReference, conditions); } function nodeNextJsonConfigResolver(moduleName, containingFile, host) { return nodeModuleNameResolverWorker(94, moduleName, getDirectoryPath(containingFile), { moduleResolution: 99 }, host, undefined, 8, true, undefined, undefined); } function nodeModuleNameResolverWorker(features, moduleName, containingDirectory, compilerOptions, host, cache, extensions, isConfigLookup, redirectedReference, conditions) { var _a, _b, _c, _d, _e; const traceEnabled = isTraceEnabled(compilerOptions, host); const failedLookupLocations = []; const affectingLocations = []; const moduleResolution = getEmitModuleResolutionKind(compilerOptions); conditions ?? (conditions = getConditions(compilerOptions, moduleResolution === 100 || moduleResolution === 2 ? undefined : features & 32 ? 99 : 1)); const diagnostics = []; const state = { compilerOptions, host, traceEnabled, failedLookupLocations, affectingLocations, packageJsonInfoCache: cache, features, conditions: conditions ?? emptyArray, requestContainingDirectory: containingDirectory, reportDiagnostic: (diag2) => void diagnostics.push(diag2), isConfigLookup, candidateIsFromPackageJsonField: false, resolvedPackageDirectory: false }; if (traceEnabled && moduleResolutionSupportsPackageJsonExportsAndImports(moduleResolution)) { trace(host, Diagnostics.Resolving_in_0_mode_with_conditions_1, features & 32 ? "ESM" : "CJS", state.conditions.map((c) => `'${c}'`).join(", ")); } let result; if (moduleResolution === 2) { const priorityExtensions = extensions & (1 | 4); const secondaryExtensions = extensions & ~(1 | 4); result = priorityExtensions && tryResolve(priorityExtensions, state) || secondaryExtensions && tryResolve(secondaryExtensions, state) || undefined; } else { result = tryResolve(extensions, state); } let alternateResult; if (state.resolvedPackageDirectory && !isConfigLookup && !isExternalModuleNameRelative(moduleName)) { const wantedTypesButGotJs = (result == null ? undefined : result.value) && extensions & (1 | 4) && !extensionIsOk(1 | 4, result.value.resolved.extension); if (((_a = result == null ? undefined : result.value) == null ? undefined : _a.isExternalLibraryImport) && wantedTypesButGotJs && features & 8 && (conditions == null ? undefined : conditions.includes("import"))) { traceIfEnabled(state, Diagnostics.Resolution_of_non_relative_name_failed_trying_with_modern_Node_resolution_features_disabled_to_see_if_npm_library_needs_configuration_update); const diagnosticState = { ...state, features: state.features & ~8, reportDiagnostic: noop }; const diagnosticResult = tryResolve(extensions & (1 | 4), diagnosticState); if ((_b = diagnosticResult == null ? undefined : diagnosticResult.value) == null ? undefined : _b.isExternalLibraryImport) { alternateResult = diagnosticResult.value.resolved.path; } } else if ((!(result == null ? undefined : result.value) || wantedTypesButGotJs) && moduleResolution === 2) { traceIfEnabled(state, Diagnostics.Resolution_of_non_relative_name_failed_trying_with_moduleResolution_bundler_to_see_if_project_may_need_configuration_update); const diagnosticsCompilerOptions = { ...state.compilerOptions, moduleResolution: 100 }; const diagnosticState = { ...state, compilerOptions: diagnosticsCompilerOptions, features: 94, conditions: getConditions(diagnosticsCompilerOptions), reportDiagnostic: noop }; const diagnosticResult = tryResolve(extensions & (1 | 4), diagnosticState); if ((_c = diagnosticResult == null ? undefined : diagnosticResult.value) == null ? undefined : _c.isExternalLibraryImport) { alternateResult = diagnosticResult.value.resolved.path; } } } return createResolvedModuleWithFailedLookupLocationsHandlingSymlink(moduleName, (_d = result == null ? undefined : result.value) == null ? undefined : _d.resolved, (_e = result == null ? undefined : result.value) == null ? undefined : _e.isExternalLibraryImport, failedLookupLocations, affectingLocations, diagnostics, state, cache, alternateResult); function tryResolve(extensions2, state2) { const loader = (extensions3, candidate, onlyRecordFailures, state3) => nodeLoadModuleByRelativeName(extensions3, candidate, onlyRecordFailures, state3, true); const resolved = tryLoadModuleUsingOptionalResolutionSettings(extensions2, moduleName, containingDirectory, loader, state2); if (resolved) { return toSearchResult({ resolved, isExternalLibraryImport: pathContainsNodeModules(resolved.path) }); } if (!isExternalModuleNameRelative(moduleName)) { if (features & 2 && startsWith(moduleName, "#")) { const resolved3 = loadModuleFromImports(extensions2, moduleName, containingDirectory, state2, cache, redirectedReference); if (resolved3) { return resolved3.value && { value: { resolved: resolved3.value, isExternalLibraryImport: false } }; } } if (features & 4) { const resolved3 = loadModuleFromSelfNameReference(extensions2, moduleName, containingDirectory, state2, cache, redirectedReference); if (resolved3) { return resolved3.value && { value: { resolved: resolved3.value, isExternalLibraryImport: false } }; } } if (moduleName.includes(":")) { if (traceEnabled) { trace(host, Diagnostics.Skipping_module_0_that_looks_like_an_absolute_URI_target_file_types_Colon_1, moduleName, formatExtensions(extensions2)); } return; } if (traceEnabled) { trace(host, Diagnostics.Loading_module_0_from_node_modules_folder_target_file_types_Colon_1, moduleName, formatExtensions(extensions2)); } let resolved2 = loadModuleFromNearestNodeModulesDirectory(extensions2, moduleName, containingDirectory, state2, cache, redirectedReference); if (extensions2 & 4) { resolved2 ?? (resolved2 = resolveFromTypeRoot(moduleName, state2)); } return resolved2 && { value: resolved2.value && { resolved: resolved2.value, isExternalLibraryImport: true } }; } else { const { path: candidate, parts } = normalizePathForCJSResolution(containingDirectory, moduleName); const resolved2 = nodeLoadModuleByRelativeName(extensions2, candidate, false, state2, true); return resolved2 && toSearchResult({ resolved: resolved2, isExternalLibraryImport: contains(parts, "node_modules") }); } } } function normalizePathForCJSResolution(containingDirectory, moduleName) { const combined = combinePaths(containingDirectory, moduleName); const parts = getPathComponents(combined); const lastPart = lastOrUndefined(parts); const path = lastPart === "." || lastPart === ".." ? ensureTrailingDirectorySeparator(normalizePath(combined)) : normalizePath(combined); return { path, parts }; } function realPath(path, host, traceEnabled) { if (!host.realpath) { return path; } const real = normalizePath(host.realpath(path)); if (traceEnabled) { trace(host, Diagnostics.Resolving_real_path_for_0_result_1, path, real); } return real; } function nodeLoadModuleByRelativeName(extensions, candidate, onlyRecordFailures, state, considerPackageJson) { if (state.traceEnabled) { trace(state.host, Diagnostics.Loading_module_as_file_Slash_folder_candidate_module_location_0_target_file_types_Colon_1, candidate, formatExtensions(extensions)); } if (!hasTrailingDirectorySeparator(candidate)) { if (!onlyRecordFailures) { const parentOfCandidate = getDirectoryPath(candidate); if (!directoryProbablyExists(parentOfCandidate, state.host)) { if (state.traceEnabled) { trace(state.host, Diagnostics.Directory_0_does_not_exist_skipping_all_lookups_in_it, parentOfCandidate); } onlyRecordFailures = true; } } const resolvedFromFile = loadModuleFromFile(extensions, candidate, onlyRecordFailures, state); if (resolvedFromFile) { const packageDirectory = considerPackageJson ? parseNodeModuleFromPath(resolvedFromFile.path) : undefined; const packageInfo = packageDirectory ? getPackageJsonInfo(packageDirectory, false, state) : undefined; return withPackageId(packageInfo, resolvedFromFile, state); } } if (!onlyRecordFailures) { const candidateExists = directoryProbablyExists(candidate, state.host); if (!candidateExists) { if (state.traceEnabled) { trace(state.host, Diagnostics.Directory_0_does_not_exist_skipping_all_lookups_in_it, candidate); } onlyRecordFailures = true; } } if (!(state.features & 32)) { return loadNodeModuleFromDirectory(extensions, candidate, onlyRecordFailures, state, considerPackageJson); } return; } var nodeModulesPathPart = "/node_modules/"; function pathContainsNodeModules(path) { return path.includes(nodeModulesPathPart); } function parseNodeModuleFromPath(resolved, isFolder) { const path = normalizePath(resolved); const idx = path.lastIndexOf(nodeModulesPathPart); if (idx === -1) { return; } const indexAfterNodeModules = idx + nodeModulesPathPart.length; let indexAfterPackageName = moveToNextDirectorySeparatorIfAvailable(path, indexAfterNodeModules, isFolder); if (path.charCodeAt(indexAfterNodeModules) === 64) { indexAfterPackageName = moveToNextDirectorySeparatorIfAvailable(path, indexAfterPackageName, isFolder); } return path.slice(0, indexAfterPackageName); } function moveToNextDirectorySeparatorIfAvailable(path, prevSeparatorIndex, isFolder) { const nextSeparatorIndex = path.indexOf(directorySeparator, prevSeparatorIndex + 1); return nextSeparatorIndex === -1 ? isFolder ? path.length : prevSeparatorIndex : nextSeparatorIndex; } function loadModuleFromFileNoPackageId(extensions, candidate, onlyRecordFailures, state) { return noPackageId(loadModuleFromFile(extensions, candidate, onlyRecordFailures, state)); } function loadModuleFromFile(extensions, candidate, onlyRecordFailures, state) { const resolvedByReplacingExtension = loadModuleFromFileNoImplicitExtensions(extensions, candidate, onlyRecordFailures, state); if (resolvedByReplacingExtension) { return resolvedByReplacingExtension; } if (!(state.features & 32)) { const resolvedByAddingExtension = tryAddingExtensions(candidate, extensions, "", onlyRecordFailures, state); if (resolvedByAddingExtension) { return resolvedByAddingExtension; } } } function loadModuleFromFileNoImplicitExtensions(extensions, candidate, onlyRecordFailures, state) { const filename = getBaseFileName(candidate); if (!filename.includes(".")) { return; } let extensionless = removeFileExtension(candidate); if (extensionless === candidate) { extensionless = candidate.substring(0, candidate.lastIndexOf(".")); } const extension = candidate.substring(extensionless.length); if (state.traceEnabled) { trace(state.host, Diagnostics.File_name_0_has_a_1_extension_stripping_it, candidate, extension); } return tryAddingExtensions(extensionless, extensions, extension, onlyRecordFailures, state); } function loadFileNameFromPackageJsonField(extensions, candidate, packageJsonValue, onlyRecordFailures, state) { if (extensions & 1 && fileExtensionIsOneOf(candidate, supportedTSImplementationExtensions) || extensions & 4 && fileExtensionIsOneOf(candidate, supportedDeclarationExtensions)) { const result = tryFile(candidate, onlyRecordFailures, state); const ext = tryExtractTSExtension(candidate); return result !== undefined ? { path: candidate, ext, resolvedUsingTsExtension: packageJsonValue ? !endsWith(packageJsonValue, ext) : undefined } : undefined; } if (state.isConfigLookup && extensions === 8 && fileExtensionIs(candidate, ".json")) { const result = tryFile(candidate, onlyRecordFailures, state); return result !== undefined ? { path: candidate, ext: ".json", resolvedUsingTsExtension: undefined } : undefined; } return loadModuleFromFileNoImplicitExtensions(extensions, candidate, onlyRecordFailures, state); } function tryAddingExtensions(candidate, extensions, originalExtension, onlyRecordFailures, state) { if (!onlyRecordFailures) { const directory = getDirectoryPath(candidate); if (directory) { onlyRecordFailures = !directoryProbablyExists(directory, state.host); } } switch (originalExtension) { case ".mjs": case ".mts": case ".d.mts": return extensions & 1 && tryExtension(".mts", originalExtension === ".mts" || originalExtension === ".d.mts") || extensions & 4 && tryExtension(".d.mts", originalExtension === ".mts" || originalExtension === ".d.mts") || extensions & 2 && tryExtension(".mjs") || undefined; case ".cjs": case ".cts": case ".d.cts": return extensions & 1 && tryExtension(".cts", originalExtension === ".cts" || originalExtension === ".d.cts") || extensions & 4 && tryExtension(".d.cts", originalExtension === ".cts" || originalExtension === ".d.cts") || extensions & 2 && tryExtension(".cjs") || undefined; case ".json": return extensions & 4 && tryExtension(".d.json.ts") || extensions & 8 && tryExtension(".json") || undefined; case ".tsx": case ".jsx": return extensions & 1 && (tryExtension(".tsx", originalExtension === ".tsx") || tryExtension(".ts", originalExtension === ".tsx")) || extensions & 4 && tryExtension(".d.ts", originalExtension === ".tsx") || extensions & 2 && (tryExtension(".jsx") || tryExtension(".js")) || undefined; case ".ts": case ".d.ts": case ".js": case "": return extensions & 1 && (tryExtension(".ts", originalExtension === ".ts" || originalExtension === ".d.ts") || tryExtension(".tsx", originalExtension === ".ts" || originalExtension === ".d.ts")) || extensions & 4 && tryExtension(".d.ts", originalExtension === ".ts" || originalExtension === ".d.ts") || extensions & 2 && (tryExtension(".js") || tryExtension(".jsx")) || state.isConfigLookup && tryExtension(".json") || undefined; default: return extensions & 4 && !isDeclarationFileName(candidate + originalExtension) && tryExtension(`.d${originalExtension}.ts`) || undefined; } function tryExtension(ext, resolvedUsingTsExtension) { const path = tryFile(candidate + ext, onlyRecordFailures, state); return path === undefined ? undefined : { path, ext, resolvedUsingTsExtension: !state.candidateIsFromPackageJsonField && resolvedUsingTsExtension }; } } function tryFile(fileName, onlyRecordFailures, state) { var _a; if (!((_a = state.compilerOptions.moduleSuffixes) == null ? undefined : _a.length)) { return tryFileLookup(fileName, onlyRecordFailures, state); } const ext = tryGetExtensionFromPath2(fileName) ?? ""; const fileNameNoExtension = ext ? removeExtension(fileName, ext) : fileName; return forEach(state.compilerOptions.moduleSuffixes, (suffix) => tryFileLookup(fileNameNoExtension + suffix + ext, onlyRecordFailures, state)); } function tryFileLookup(fileName, onlyRecordFailures, state) { var _a; if (!onlyRecordFailures) { if (state.host.fileExists(fileName)) { if (state.traceEnabled) { trace(state.host, Diagnostics.File_0_exists_use_it_as_a_name_resolution_result, fileName); } return fileName; } else { if (state.traceEnabled) { trace(state.host, Diagnostics.File_0_does_not_exist, fileName); } } } (_a = state.failedLookupLocations) == null || _a.push(fileName); return; } function loadNodeModuleFromDirectory(extensions, candidate, onlyRecordFailures, state, considerPackageJson = true) { const packageInfo = considerPackageJson ? getPackageJsonInfo(candidate, onlyRecordFailures, state) : undefined; return withPackageId(packageInfo, loadNodeModuleFromDirectoryWorker(extensions, candidate, onlyRecordFailures, state, packageInfo), state); } function getEntrypointsFromPackageJsonInfo(packageJsonInfo, options, host, cache, resolveJs) { if (!resolveJs && packageJsonInfo.contents.resolvedEntrypoints !== undefined) { return packageJsonInfo.contents.resolvedEntrypoints; } let entrypoints; const extensions = 1 | 4 | (resolveJs ? 2 : 0); const features = getNodeResolutionFeatures(options); const loadPackageJsonMainState = getTemporaryModuleResolutionState(cache == null ? undefined : cache.getPackageJsonInfoCache(), host, options); loadPackageJsonMainState.conditions = getConditions(options); loadPackageJsonMainState.requestContainingDirectory = packageJsonInfo.packageDirectory; const mainResolution = loadNodeModuleFromDirectoryWorker(extensions, packageJsonInfo.packageDirectory, false, loadPackageJsonMainState, packageJsonInfo); entrypoints = append(entrypoints, mainResolution == null ? undefined : mainResolution.path); if (features & 8 && packageJsonInfo.contents.packageJsonContent.exports) { const conditionSets = deduplicate([getConditions(options, 99), getConditions(options, 1)], arrayIsEqualTo); for (const conditions of conditionSets) { const loadPackageJsonExportsState = { ...loadPackageJsonMainState, failedLookupLocations: [], conditions, host }; const exportResolutions = loadEntrypointsFromExportMap(packageJsonInfo, packageJsonInfo.contents.packageJsonContent.exports, loadPackageJsonExportsState, extensions); if (exportResolutions) { for (const resolution of exportResolutions) { entrypoints = appendIfUnique(entrypoints, resolution.path); } } } } return packageJsonInfo.contents.resolvedEntrypoints = entrypoints || false; } function loadEntrypointsFromExportMap(scope, exports22, state, extensions) { let entrypoints; if (isArray(exports22)) { for (const target of exports22) { loadEntrypointsFromTargetExports(target); } } else if (typeof exports22 === "object" && exports22 !== null && allKeysStartWithDot(exports22)) { for (const key in exports22) { loadEntrypointsFromTargetExports(exports22[key]); } } else { loadEntrypointsFromTargetExports(exports22); } return entrypoints; function loadEntrypointsFromTargetExports(target) { var _a, _b; if (typeof target === "string" && startsWith(target, "./")) { if (target.includes("*") && state.host.readDirectory) { if (target.indexOf("*") !== target.lastIndexOf("*")) { return false; } state.host.readDirectory(scope.packageDirectory, extensionsToExtensionsArray(extensions), undefined, [ changeFullExtension(replaceFirstStar(target, "**/*"), ".*") ]).forEach((entry) => { entrypoints = appendIfUnique(entrypoints, { path: entry, ext: getAnyExtensionFromPath(entry), resolvedUsingTsExtension: undefined }); }); } else { const partsAfterFirst = getPathComponents(target).slice(2); if (partsAfterFirst.includes("..") || partsAfterFirst.includes(".") || partsAfterFirst.includes("node_modules")) { return false; } const resolvedTarget = combinePaths(scope.packageDirectory, target); const finalPath = getNormalizedAbsolutePath(resolvedTarget, (_b = (_a = state.host).getCurrentDirectory) == null ? undefined : _b.call(_a)); const result = loadFileNameFromPackageJsonField(extensions, finalPath, target, false, state); if (result) { entrypoints = appendIfUnique(entrypoints, result, (a, b) => a.path === b.path); return true; } } } else if (Array.isArray(target)) { for (const t of target) { const success = loadEntrypointsFromTargetExports(t); if (success) { return true; } } } else if (typeof target === "object" && target !== null) { return forEach(getOwnKeys(target), (key) => { if (key === "default" || contains(state.conditions, key) || isApplicableVersionedTypesKey(state.conditions, key)) { loadEntrypointsFromTargetExports(target[key]); return true; } }); } } } function getTemporaryModuleResolutionState(packageJsonInfoCache, host, options) { return { host, compilerOptions: options, traceEnabled: isTraceEnabled(options, host), failedLookupLocations: undefined, affectingLocations: undefined, packageJsonInfoCache, features: 0, conditions: emptyArray, requestContainingDirectory: undefined, reportDiagnostic: noop, isConfigLookup: false, candidateIsFromPackageJsonField: false, resolvedPackageDirectory: false }; } function getPackageScopeForPath(directory, state) { return forEachAncestorDirectoryStoppingAtGlobalCache(state.host, directory, (dir) => getPackageJsonInfo(dir, false, state)); } function getVersionPathsOfPackageJsonInfo(packageJsonInfo, state) { if (packageJsonInfo.contents.versionPaths === undefined) { packageJsonInfo.contents.versionPaths = readPackageJsonTypesVersionPaths(packageJsonInfo.contents.packageJsonContent, state) || false; } return packageJsonInfo.contents.versionPaths || undefined; } function getPeerDependenciesOfPackageJsonInfo(packageJsonInfo, state) { if (packageJsonInfo.contents.peerDependencies === undefined) { packageJsonInfo.contents.peerDependencies = readPackageJsonPeerDependencies(packageJsonInfo, state) || false; } return packageJsonInfo.contents.peerDependencies || undefined; } function readPackageJsonPeerDependencies(packageJsonInfo, state) { const peerDependencies = readPackageJsonField(packageJsonInfo.contents.packageJsonContent, "peerDependencies", "object", state); if (peerDependencies === undefined) return; if (state.traceEnabled) trace(state.host, Diagnostics.package_json_has_a_peerDependencies_field); const packageDirectory = realPath(packageJsonInfo.packageDirectory, state.host, state.traceEnabled); const nodeModules = packageDirectory.substring(0, packageDirectory.lastIndexOf("node_modules") + "node_modules".length) + directorySeparator; let result = ""; for (const key in peerDependencies) { if (hasProperty(peerDependencies, key)) { const peerPackageJson = getPackageJsonInfo(nodeModules + key, false, state); if (peerPackageJson) { const version2 = peerPackageJson.contents.packageJsonContent.version; result += `+${key}@${version2}`; if (state.traceEnabled) trace(state.host, Diagnostics.Found_peerDependency_0_with_1_version, key, version2); } else { if (state.traceEnabled) trace(state.host, Diagnostics.Failed_to_find_peerDependency_0, key); } } } return result; } function getPackageJsonInfo(packageDirectory, onlyRecordFailures, state) { var _a, _b, _c, _d, _e, _f; const { host, traceEnabled } = state; const packageJsonPath = combinePaths(packageDirectory, "package.json"); if (onlyRecordFailures) { (_a = state.failedLookupLocations) == null || _a.push(packageJsonPath); return; } const existing = (_b = state.packageJsonInfoCache) == null ? undefined : _b.getPackageJsonInfo(packageJsonPath); if (existing !== undefined) { if (isPackageJsonInfo(existing)) { if (traceEnabled) trace(host, Diagnostics.File_0_exists_according_to_earlier_cached_lookups, packageJsonPath); (_c = state.affectingLocations) == null || _c.push(packageJsonPath); return existing.packageDirectory === packageDirectory ? existing : { packageDirectory, contents: existing.contents }; } else { if (existing.directoryExists && traceEnabled) trace(host, Diagnostics.File_0_does_not_exist_according_to_earlier_cached_lookups, packageJsonPath); (_d = state.failedLookupLocations) == null || _d.push(packageJsonPath); return; } } const directoryExists = directoryProbablyExists(packageDirectory, host); if (directoryExists && host.fileExists(packageJsonPath)) { const packageJsonContent = readJson(packageJsonPath, host); if (traceEnabled) { trace(host, Diagnostics.Found_package_json_at_0, packageJsonPath); } const result = { packageDirectory, contents: { packageJsonContent, versionPaths: undefined, resolvedEntrypoints: undefined, peerDependencies: undefined } }; if (state.packageJsonInfoCache && !state.packageJsonInfoCache.isReadonly) state.packageJsonInfoCache.setPackageJsonInfo(packageJsonPath, result); (_e = state.affectingLocations) == null || _e.push(packageJsonPath); return result; } else { if (directoryExists && traceEnabled) { trace(host, Diagnostics.File_0_does_not_exist, packageJsonPath); } if (state.packageJsonInfoCache && !state.packageJsonInfoCache.isReadonly) state.packageJsonInfoCache.setPackageJsonInfo(packageJsonPath, { packageDirectory, directoryExists }); (_f = state.failedLookupLocations) == null || _f.push(packageJsonPath); } } function loadNodeModuleFromDirectoryWorker(extensions, candidate, onlyRecordFailures, state, packageJson) { const versionPaths = packageJson && getVersionPathsOfPackageJsonInfo(packageJson, state); let packageFile; if (packageJson && arePathsEqual(packageJson == null ? undefined : packageJson.packageDirectory, candidate, state.host)) { if (state.isConfigLookup) { packageFile = readPackageJsonTSConfigField(packageJson.contents.packageJsonContent, packageJson.packageDirectory, state); } else { packageFile = extensions & 4 && readPackageJsonTypesFields(packageJson.contents.packageJsonContent, packageJson.packageDirectory, state) || extensions & (3 | 4) && readPackageJsonMainField(packageJson.contents.packageJsonContent, packageJson.packageDirectory, state) || undefined; } } const loader = (extensions2, candidate2, onlyRecordFailures2, state2) => { const fromFile = loadFileNameFromPackageJsonField(extensions2, candidate2, undefined, onlyRecordFailures2, state2); if (fromFile) { return noPackageId(fromFile); } const expandedExtensions = extensions2 === 4 ? 1 | 4 : extensions2; const features = state2.features; const candidateIsFromPackageJsonField = state2.candidateIsFromPackageJsonField; state2.candidateIsFromPackageJsonField = true; if ((packageJson == null ? undefined : packageJson.contents.packageJsonContent.type) !== "module") { state2.features &= ~32; } const result = nodeLoadModuleByRelativeName(expandedExtensions, candidate2, onlyRecordFailures2, state2, false); state2.features = features; state2.candidateIsFromPackageJsonField = candidateIsFromPackageJsonField; return result; }; const onlyRecordFailuresForPackageFile = packageFile ? !directoryProbablyExists(getDirectoryPath(packageFile), state.host) : undefined; const onlyRecordFailuresForIndex = onlyRecordFailures || !directoryProbablyExists(candidate, state.host); const indexPath = combinePaths(candidate, state.isConfigLookup ? "tsconfig" : "index"); if (versionPaths && (!packageFile || containsPath(candidate, packageFile))) { const moduleName = getRelativePathFromDirectory(candidate, packageFile || indexPath, false); if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_has_a_typesVersions_entry_0_that_matches_compiler_version_1_looking_for_a_pattern_to_match_module_name_2, versionPaths.version, version, moduleName); } const pathPatterns = tryParsePatterns(versionPaths.paths); const result = tryLoadModuleUsingPaths(extensions, moduleName, candidate, versionPaths.paths, pathPatterns, loader, onlyRecordFailuresForPackageFile || onlyRecordFailuresForIndex, state); if (result) { return removeIgnoredPackageId(result.value); } } const packageFileResult = packageFile && removeIgnoredPackageId(loader(extensions, packageFile, onlyRecordFailuresForPackageFile, state)); if (packageFileResult) return packageFileResult; if (!(state.features & 32)) { return loadModuleFromFile(extensions, indexPath, onlyRecordFailuresForIndex, state); } } function extensionIsOk(extensions, extension) { return extensions & 2 && (extension === ".js" || extension === ".jsx" || extension === ".mjs" || extension === ".cjs") || extensions & 1 && (extension === ".ts" || extension === ".tsx" || extension === ".mts" || extension === ".cts") || extensions & 4 && (extension === ".d.ts" || extension === ".d.mts" || extension === ".d.cts") || extensions & 8 && extension === ".json" || false; } function parsePackageName(moduleName) { let idx = moduleName.indexOf(directorySeparator); if (moduleName[0] === "@") { idx = moduleName.indexOf(directorySeparator, idx + 1); } return idx === -1 ? { packageName: moduleName, rest: "" } : { packageName: moduleName.slice(0, idx), rest: moduleName.slice(idx + 1) }; } function allKeysStartWithDot(obj) { return every(getOwnKeys(obj), (k) => startsWith(k, ".")); } function noKeyStartsWithDot(obj) { return !some(getOwnKeys(obj), (k) => startsWith(k, ".")); } function loadModuleFromSelfNameReference(extensions, moduleName, directory, state, cache, redirectedReference) { var _a, _b; const directoryPath = getNormalizedAbsolutePath(directory, (_b = (_a = state.host).getCurrentDirectory) == null ? undefined : _b.call(_a)); const scope = getPackageScopeForPath(directoryPath, state); if (!scope || !scope.contents.packageJsonContent.exports) { return; } if (typeof scope.contents.packageJsonContent.name !== "string") { return; } const parts = getPathComponents(moduleName); const nameParts = getPathComponents(scope.contents.packageJsonContent.name); if (!every(nameParts, (p, i) => parts[i] === p)) { return; } const trailingParts = parts.slice(nameParts.length); const subpath = !length(trailingParts) ? "." : `.${directorySeparator}${trailingParts.join(directorySeparator)}`; if (getAllowJSCompilerOption(state.compilerOptions) && !pathContainsNodeModules(directory)) { return loadModuleFromExports(scope, extensions, subpath, state, cache, redirectedReference); } const priorityExtensions = extensions & (1 | 4); const secondaryExtensions = extensions & ~(1 | 4); return loadModuleFromExports(scope, priorityExtensions, subpath, state, cache, redirectedReference) || loadModuleFromExports(scope, secondaryExtensions, subpath, state, cache, redirectedReference); } function loadModuleFromExports(scope, extensions, subpath, state, cache, redirectedReference) { if (!scope.contents.packageJsonContent.exports) { return; } if (subpath === ".") { let mainExport; if (typeof scope.contents.packageJsonContent.exports === "string" || Array.isArray(scope.contents.packageJsonContent.exports) || typeof scope.contents.packageJsonContent.exports === "object" && noKeyStartsWithDot(scope.contents.packageJsonContent.exports)) { mainExport = scope.contents.packageJsonContent.exports; } else if (hasProperty(scope.contents.packageJsonContent.exports, ".")) { mainExport = scope.contents.packageJsonContent.exports["."]; } if (mainExport) { const loadModuleFromTargetExportOrImport = getLoadModuleFromTargetExportOrImport(extensions, state, cache, redirectedReference, subpath, scope, false); return loadModuleFromTargetExportOrImport(mainExport, "", false, "."); } } else if (allKeysStartWithDot(scope.contents.packageJsonContent.exports)) { if (typeof scope.contents.packageJsonContent.exports !== "object") { if (state.traceEnabled) { trace(state.host, Diagnostics.Export_specifier_0_does_not_exist_in_package_json_scope_at_path_1, subpath, scope.packageDirectory); } return toSearchResult(undefined); } const result = loadModuleFromExportsOrImports(extensions, state, cache, redirectedReference, subpath, scope.contents.packageJsonContent.exports, scope, false); if (result) { return result; } } if (state.traceEnabled) { trace(state.host, Diagnostics.Export_specifier_0_does_not_exist_in_package_json_scope_at_path_1, subpath, scope.packageDirectory); } return toSearchResult(undefined); } function loadModuleFromImports(extensions, moduleName, directory, state, cache, redirectedReference) { var _a, _b; if (moduleName === "#" || startsWith(moduleName, "#/") && !(state.features & 64)) { if (state.traceEnabled) { trace(state.host, Diagnostics.Invalid_import_specifier_0_has_no_possible_resolutions, moduleName); } return toSearchResult(undefined); } const directoryPath = getNormalizedAbsolutePath(directory, (_b = (_a = state.host).getCurrentDirectory) == null ? undefined : _b.call(_a)); const scope = getPackageScopeForPath(directoryPath, state); if (!scope) { if (state.traceEnabled) { trace(state.host, Diagnostics.Directory_0_has_no_containing_package_json_scope_Imports_will_not_resolve, directoryPath); } return toSearchResult(undefined); } if (!scope.contents.packageJsonContent.imports) { if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_scope_0_has_no_imports_defined, scope.packageDirectory); } return toSearchResult(undefined); } const result = loadModuleFromExportsOrImports(extensions, state, cache, redirectedReference, moduleName, scope.contents.packageJsonContent.imports, scope, true); if (result) { return result; } if (state.traceEnabled) { trace(state.host, Diagnostics.Import_specifier_0_does_not_exist_in_package_json_scope_at_path_1, moduleName, scope.packageDirectory); } return toSearchResult(undefined); } function comparePatternKeys(a, b) { const aPatternIndex = a.indexOf("*"); const bPatternIndex = b.indexOf("*"); const baseLenA = aPatternIndex === -1 ? a.length : aPatternIndex + 1; const baseLenB = bPatternIndex === -1 ? b.length : bPatternIndex + 1; if (baseLenA > baseLenB) return -1; if (baseLenB > baseLenA) return 1; if (aPatternIndex === -1) return 1; if (bPatternIndex === -1) return -1; if (a.length > b.length) return -1; if (b.length > a.length) return 1; return 0; } function loadModuleFromExportsOrImports(extensions, state, cache, redirectedReference, moduleName, lookupTable, scope, isImports) { const loadModuleFromTargetExportOrImport = getLoadModuleFromTargetExportOrImport(extensions, state, cache, redirectedReference, moduleName, scope, isImports); if (!endsWith(moduleName, directorySeparator) && !moduleName.includes("*") && hasProperty(lookupTable, moduleName)) { const target = lookupTable[moduleName]; return loadModuleFromTargetExportOrImport(target, "", false, moduleName); } const expandingKeys = toSorted(filter(getOwnKeys(lookupTable), (k) => hasOneAsterisk(k) || endsWith(k, "/")), comparePatternKeys); for (const potentialTarget of expandingKeys) { if (state.features & 16 && matchesPatternWithTrailer(potentialTarget, moduleName)) { const target = lookupTable[potentialTarget]; const starPos = potentialTarget.indexOf("*"); const subpath = moduleName.substring(potentialTarget.substring(0, starPos).length, moduleName.length - (potentialTarget.length - 1 - starPos)); return loadModuleFromTargetExportOrImport(target, subpath, true, potentialTarget); } else if (endsWith(potentialTarget, "*") && startsWith(moduleName, potentialTarget.substring(0, potentialTarget.length - 1))) { const target = lookupTable[potentialTarget]; const subpath = moduleName.substring(potentialTarget.length - 1); return loadModuleFromTargetExportOrImport(target, subpath, true, potentialTarget); } else if (startsWith(moduleName, potentialTarget)) { const target = lookupTable[potentialTarget]; const subpath = moduleName.substring(potentialTarget.length); return loadModuleFromTargetExportOrImport(target, subpath, false, potentialTarget); } } function matchesPatternWithTrailer(target, name) { if (endsWith(target, "*")) return false; const starPos = target.indexOf("*"); if (starPos === -1) return false; return startsWith(name, target.substring(0, starPos)) && endsWith(name, target.substring(starPos + 1)); } } function hasOneAsterisk(patternKey) { const firstStar = patternKey.indexOf("*"); return firstStar !== -1 && firstStar === patternKey.lastIndexOf("*"); } function getLoadModuleFromTargetExportOrImport(extensions, state, cache, redirectedReference, moduleName, scope, isImports) { return loadModuleFromTargetExportOrImport; function loadModuleFromTargetExportOrImport(target, subpath, pattern, key) { var _a, _b; if (typeof target === "string") { if (!pattern && subpath.length > 0 && !endsWith(target, "/")) { if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_scope_0_has_invalid_type_for_target_of_specifier_1, scope.packageDirectory, moduleName); } return toSearchResult(undefined); } if (!startsWith(target, "./")) { if (isImports && !startsWith(target, "../") && !startsWith(target, "/") && !isRootedDiskPath(target)) { const combinedLookup = pattern ? target.replace(/\*/g, subpath) : target + subpath; traceIfEnabled(state, Diagnostics.Using_0_subpath_1_with_target_2, "imports", key, combinedLookup); traceIfEnabled(state, Diagnostics.Resolving_module_0_from_1, combinedLookup, scope.packageDirectory + "/"); const result = nodeModuleNameResolverWorker(state.features, combinedLookup, scope.packageDirectory + "/", state.compilerOptions, state.host, cache, extensions, false, redirectedReference, state.conditions); (_a = state.failedLookupLocations) == null || _a.push(...result.failedLookupLocations ?? emptyArray); (_b = state.affectingLocations) == null || _b.push(...result.affectingLocations ?? emptyArray); return toSearchResult(result.resolvedModule ? { path: result.resolvedModule.resolvedFileName, extension: result.resolvedModule.extension, packageId: result.resolvedModule.packageId, originalPath: result.resolvedModule.originalPath, resolvedUsingTsExtension: result.resolvedModule.resolvedUsingTsExtension } : undefined); } if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_scope_0_has_invalid_type_for_target_of_specifier_1, scope.packageDirectory, moduleName); } return toSearchResult(undefined); } const parts = pathIsRelative(target) ? getPathComponents(target).slice(1) : getPathComponents(target); const partsAfterFirst = parts.slice(1); if (partsAfterFirst.includes("..") || partsAfterFirst.includes(".") || partsAfterFirst.includes("node_modules")) { if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_scope_0_has_invalid_type_for_target_of_specifier_1, scope.packageDirectory, moduleName); } return toSearchResult(undefined); } const resolvedTarget = combinePaths(scope.packageDirectory, target); const subpathParts = getPathComponents(subpath); if (subpathParts.includes("..") || subpathParts.includes(".") || subpathParts.includes("node_modules")) { if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_scope_0_has_invalid_type_for_target_of_specifier_1, scope.packageDirectory, moduleName); } return toSearchResult(undefined); } if (state.traceEnabled) { trace(state.host, Diagnostics.Using_0_subpath_1_with_target_2, isImports ? "imports" : "exports", key, pattern ? target.replace(/\*/g, subpath) : target + subpath); } const finalPath = toAbsolutePath(pattern ? resolvedTarget.replace(/\*/g, subpath) : resolvedTarget + subpath); const inputLink = tryLoadInputFileForPath(finalPath, subpath, combinePaths(scope.packageDirectory, "package.json"), isImports); if (inputLink) return inputLink; return toSearchResult(withPackageId(scope, loadFileNameFromPackageJsonField(extensions, finalPath, target, false, state), state)); } else if (typeof target === "object" && target !== null) { if (!Array.isArray(target)) { traceIfEnabled(state, Diagnostics.Entering_conditional_exports); for (const condition of getOwnKeys(target)) { if (condition === "default" || state.conditions.includes(condition) || isApplicableVersionedTypesKey(state.conditions, condition)) { traceIfEnabled(state, Diagnostics.Matched_0_condition_1, isImports ? "imports" : "exports", condition); const subTarget = target[condition]; const result = loadModuleFromTargetExportOrImport(subTarget, subpath, pattern, key); if (result) { if (result.value) { traceIfEnabled(state, Diagnostics.Resolved_under_condition_0, condition); } traceIfEnabled(state, Diagnostics.Exiting_conditional_exports); return result; } else { traceIfEnabled(state, Diagnostics.Failed_to_resolve_under_condition_0, condition); } } else { traceIfEnabled(state, Diagnostics.Saw_non_matching_condition_0, condition); } } traceIfEnabled(state, Diagnostics.Exiting_conditional_exports); return; } else { if (!length(target)) { if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_scope_0_has_invalid_type_for_target_of_specifier_1, scope.packageDirectory, moduleName); } return toSearchResult(undefined); } for (const elem of target) { const result = loadModuleFromTargetExportOrImport(elem, subpath, pattern, key); if (result) { return result; } } } } else if (target === null) { if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_scope_0_explicitly_maps_specifier_1_to_null, scope.packageDirectory, moduleName); } return { value: undefined }; } if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_scope_0_has_invalid_type_for_target_of_specifier_1, scope.packageDirectory, moduleName); } return toSearchResult(undefined); function toAbsolutePath(path) { var _a2, _b2; if (path === undefined) return path; return getNormalizedAbsolutePath(path, (_b2 = (_a2 = state.host).getCurrentDirectory) == null ? undefined : _b2.call(_a2)); } function combineDirectoryPath(root, dir) { return ensureTrailingDirectorySeparator(combinePaths(root, dir)); } function tryLoadInputFileForPath(finalPath, entry, packagePath, isImports2) { var _a2, _b2, _c, _d; if (!state.isConfigLookup && (state.compilerOptions.declarationDir || state.compilerOptions.outDir) && !finalPath.includes("/node_modules/") && (state.compilerOptions.configFile ? containsPath(scope.packageDirectory, toAbsolutePath(state.compilerOptions.configFile.fileName), !useCaseSensitiveFileNames(state)) : true)) { const getCanonicalFileName = hostGetCanonicalFileName({ useCaseSensitiveFileNames: () => useCaseSensitiveFileNames(state) }); const commonSourceDirGuesses = []; if (state.compilerOptions.rootDir || state.compilerOptions.configFilePath) { const commonDir = toAbsolutePath(getCommonSourceDirectory(state.compilerOptions, () => [], ((_b2 = (_a2 = state.host).getCurrentDirectory) == null ? undefined : _b2.call(_a2)) || "", getCanonicalFileName)); commonSourceDirGuesses.push(commonDir); } else if (state.requestContainingDirectory) { const requestingFile = toAbsolutePath(combinePaths(state.requestContainingDirectory, "index.ts")); const commonDir = toAbsolutePath(getCommonSourceDirectory(state.compilerOptions, () => [requestingFile, toAbsolutePath(packagePath)], ((_d = (_c = state.host).getCurrentDirectory) == null ? undefined : _d.call(_c)) || "", getCanonicalFileName)); commonSourceDirGuesses.push(commonDir); let fragment = ensureTrailingDirectorySeparator(commonDir); while (fragment && fragment.length > 1) { const parts = getPathComponents(fragment); parts.pop(); const commonDir2 = getPathFromPathComponents(parts); commonSourceDirGuesses.unshift(commonDir2); fragment = ensureTrailingDirectorySeparator(commonDir2); } } if (commonSourceDirGuesses.length > 1) { state.reportDiagnostic(createCompilerDiagnostic(isImports2 ? Diagnostics.The_project_root_is_ambiguous_but_is_required_to_resolve_import_map_entry_0_in_file_1_Supply_the_rootDir_compiler_option_to_disambiguate : Diagnostics.The_project_root_is_ambiguous_but_is_required_to_resolve_export_map_entry_0_in_file_1_Supply_the_rootDir_compiler_option_to_disambiguate, entry === "" ? "." : entry, packagePath)); } for (const commonSourceDirGuess of commonSourceDirGuesses) { const candidateDirectories = getOutputDirectoriesForBaseDirectory(commonSourceDirGuess); for (const candidateDir of candidateDirectories) { if (containsPath(candidateDir, finalPath, !useCaseSensitiveFileNames(state))) { const pathFragment = finalPath.slice(candidateDir.length + 1); const possibleInputBase = combinePaths(commonSourceDirGuess, pathFragment); const jsAndDtsExtensions = [".mjs", ".cjs", ".js", ".json", ".d.mts", ".d.cts", ".d.ts"]; for (const ext of jsAndDtsExtensions) { if (fileExtensionIs(possibleInputBase, ext)) { const inputExts = getPossibleOriginalInputExtensionForExtension(possibleInputBase); for (const possibleExt of inputExts) { if (!extensionIsOk(extensions, possibleExt)) continue; const possibleInputWithInputExtension = changeAnyExtension(possibleInputBase, possibleExt, ext, !useCaseSensitiveFileNames(state)); if (state.host.fileExists(possibleInputWithInputExtension)) { return toSearchResult(withPackageId(scope, loadFileNameFromPackageJsonField(extensions, possibleInputWithInputExtension, undefined, false, state), state)); } } } } } } } } return; function getOutputDirectoriesForBaseDirectory(commonSourceDirGuess) { var _a3, _b3; const currentDir = state.compilerOptions.configFile ? ((_b3 = (_a3 = state.host).getCurrentDirectory) == null ? undefined : _b3.call(_a3)) || "" : commonSourceDirGuess; const candidateDirectories = []; if (state.compilerOptions.declarationDir) { candidateDirectories.push(toAbsolutePath(combineDirectoryPath(currentDir, state.compilerOptions.declarationDir))); } if (state.compilerOptions.outDir && state.compilerOptions.outDir !== state.compilerOptions.declarationDir) { candidateDirectories.push(toAbsolutePath(combineDirectoryPath(currentDir, state.compilerOptions.outDir))); } return candidateDirectories; } } } } function isApplicableVersionedTypesKey(conditions, key) { if (!conditions.includes("types")) return false; if (!startsWith(key, "types@")) return false; const range = VersionRange.tryParse(key.substring("types@".length)); if (!range) return false; return range.test(version); } function loadModuleFromNearestNodeModulesDirectory(extensions, moduleName, directory, state, cache, redirectedReference) { return loadModuleFromNearestNodeModulesDirectoryWorker(extensions, moduleName, directory, state, false, cache, redirectedReference); } function loadModuleFromNearestNodeModulesDirectoryTypesScope(moduleName, directory, state) { return loadModuleFromNearestNodeModulesDirectoryWorker(4, moduleName, directory, state, true, undefined, undefined); } function loadModuleFromNearestNodeModulesDirectoryWorker(extensions, moduleName, directory, state, typesScopeOnly, cache, redirectedReference) { const mode = state.features === 0 ? undefined : state.features & 32 || state.conditions.includes("import") ? 99 : 1; const priorityExtensions = extensions & (1 | 4); const secondaryExtensions = extensions & ~(1 | 4); if (priorityExtensions) { traceIfEnabled(state, Diagnostics.Searching_all_ancestor_node_modules_directories_for_preferred_extensions_Colon_0, formatExtensions(priorityExtensions)); const result = lookup(priorityExtensions); if (result) return result; } if (secondaryExtensions && !typesScopeOnly) { traceIfEnabled(state, Diagnostics.Searching_all_ancestor_node_modules_directories_for_fallback_extensions_Colon_0, formatExtensions(secondaryExtensions)); return lookup(secondaryExtensions); } function lookup(extensions2) { return forEachAncestorDirectoryStoppingAtGlobalCache(state.host, normalizeSlashes(directory), (ancestorDirectory) => { if (getBaseFileName(ancestorDirectory) !== "node_modules") { const resolutionFromCache = tryFindNonRelativeModuleNameInCache(cache, moduleName, mode, ancestorDirectory, redirectedReference, state); if (resolutionFromCache) { return resolutionFromCache; } return toSearchResult(loadModuleFromImmediateNodeModulesDirectory(extensions2, moduleName, ancestorDirectory, state, typesScopeOnly, cache, redirectedReference)); } }); } } function forEachAncestorDirectoryStoppingAtGlobalCache(host, directory, callback) { var _a; const globalCache = (_a = host == null ? undefined : host.getGlobalTypingsCacheLocation) == null ? undefined : _a.call(host); return forEachAncestorDirectory(directory, (ancestorDirectory) => { const result = callback(ancestorDirectory); if (result !== undefined) return result; if (ancestorDirectory === globalCache) return false; }) || undefined; } function loadModuleFromImmediateNodeModulesDirectory(extensions, moduleName, directory, state, typesScopeOnly, cache, redirectedReference) { const nodeModulesFolder = combinePaths(directory, "node_modules"); const nodeModulesFolderExists = directoryProbablyExists(nodeModulesFolder, state.host); if (!nodeModulesFolderExists && state.traceEnabled) { trace(state.host, Diagnostics.Directory_0_does_not_exist_skipping_all_lookups_in_it, nodeModulesFolder); } if (!typesScopeOnly) { const packageResult = loadModuleFromSpecificNodeModulesDirectory(extensions, moduleName, nodeModulesFolder, nodeModulesFolderExists, state, cache, redirectedReference); if (packageResult) { return packageResult; } } if (extensions & 4) { const nodeModulesAtTypes2 = combinePaths(nodeModulesFolder, "@types"); let nodeModulesAtTypesExists = nodeModulesFolderExists; if (nodeModulesFolderExists && !directoryProbablyExists(nodeModulesAtTypes2, state.host)) { if (state.traceEnabled) { trace(state.host, Diagnostics.Directory_0_does_not_exist_skipping_all_lookups_in_it, nodeModulesAtTypes2); } nodeModulesAtTypesExists = false; } return loadModuleFromSpecificNodeModulesDirectory(4, mangleScopedPackageNameWithTrace(moduleName, state), nodeModulesAtTypes2, nodeModulesAtTypesExists, state, cache, redirectedReference); } } function loadModuleFromSpecificNodeModulesDirectory(extensions, moduleName, nodeModulesDirectory, nodeModulesDirectoryExists, state, cache, redirectedReference) { var _a, _b; const candidate = normalizePath(combinePaths(nodeModulesDirectory, moduleName)); const { packageName, rest } = parsePackageName(moduleName); const packageDirectory = combinePaths(nodeModulesDirectory, packageName); let rootPackageInfo; let packageInfo = getPackageJsonInfo(candidate, !nodeModulesDirectoryExists, state); if (rest !== "" && packageInfo && (!(state.features & 8) || !hasProperty(((_a = rootPackageInfo = getPackageJsonInfo(packageDirectory, !nodeModulesDirectoryExists, state)) == null ? undefined : _a.contents.packageJsonContent) ?? emptyArray, "exports"))) { const fromFile = loadModuleFromFile(extensions, candidate, !nodeModulesDirectoryExists, state); if (fromFile) { return noPackageId(fromFile); } const fromDirectory = loadNodeModuleFromDirectoryWorker(extensions, candidate, !nodeModulesDirectoryExists, state, packageInfo); return withPackageId(packageInfo, fromDirectory, state); } const loader = (extensions2, candidate2, onlyRecordFailures, state2) => { let pathAndExtension = (rest || !(state2.features & 32)) && loadModuleFromFile(extensions2, candidate2, onlyRecordFailures, state2) || loadNodeModuleFromDirectoryWorker(extensions2, candidate2, onlyRecordFailures, state2, packageInfo); if (!pathAndExtension && !rest && packageInfo && (packageInfo.contents.packageJsonContent.exports === undefined || packageInfo.contents.packageJsonContent.exports === null) && state2.features & 32) { pathAndExtension = loadModuleFromFile(extensions2, combinePaths(candidate2, "index.js"), onlyRecordFailures, state2); } return withPackageId(packageInfo, pathAndExtension, state2); }; if (rest !== "") { packageInfo = rootPackageInfo ?? getPackageJsonInfo(packageDirectory, !nodeModulesDirectoryExists, state); } if (packageInfo) { state.resolvedPackageDirectory = true; } if (packageInfo && packageInfo.contents.packageJsonContent.exports && state.features & 8) { return (_b = loadModuleFromExports(packageInfo, extensions, combinePaths(".", rest), state, cache, redirectedReference)) == null ? undefined : _b.value; } const versionPaths = rest !== "" && packageInfo ? getVersionPathsOfPackageJsonInfo(packageInfo, state) : undefined; if (versionPaths) { if (state.traceEnabled) { trace(state.host, Diagnostics.package_json_has_a_typesVersions_entry_0_that_matches_compiler_version_1_looking_for_a_pattern_to_match_module_name_2, versionPaths.version, version, rest); } const packageDirectoryExists = nodeModulesDirectoryExists && directoryProbablyExists(packageDirectory, state.host); const pathPatterns = tryParsePatterns(versionPaths.paths); const fromPaths = tryLoadModuleUsingPaths(extensions, rest, packageDirectory, versionPaths.paths, pathPatterns, loader, !packageDirectoryExists, state); if (fromPaths) { return fromPaths.value; } } return loader(extensions, candidate, !nodeModulesDirectoryExists, state); } function tryLoadModuleUsingPaths(extensions, moduleName, baseDirectory, paths, pathPatterns, loader, onlyRecordFailures, state) { const matchedPattern = matchPatternOrExact(pathPatterns, moduleName); if (matchedPattern) { const matchedStar = isString(matchedPattern) ? undefined : matchedText(matchedPattern, moduleName); const matchedPatternText = isString(matchedPattern) ? matchedPattern : patternText(matchedPattern); if (state.traceEnabled) { trace(state.host, Diagnostics.Module_name_0_matched_pattern_1, moduleName, matchedPatternText); } const resolved = forEach(paths[matchedPatternText], (subst) => { const path = matchedStar ? replaceFirstStar(subst, matchedStar) : subst; const candidate = normalizePath(combinePaths(baseDirectory, path)); if (state.traceEnabled) { trace(state.host, Diagnostics.Trying_substitution_0_candidate_module_location_Colon_1, subst, path); } const extension = tryGetExtensionFromPath2(subst); if (extension !== undefined) { const path2 = tryFile(candidate, onlyRecordFailures, state); if (path2 !== undefined) { return noPackageId({ path: path2, ext: extension, resolvedUsingTsExtension: undefined }); } } return loader(extensions, candidate, onlyRecordFailures || !directoryProbablyExists(getDirectoryPath(candidate), state.host), state); }); return { value: resolved }; } } var mangledScopedPackageSeparator = "__"; function mangleScopedPackageNameWithTrace(packageName, state) { const mangled = mangleScopedPackageName(packageName); if (state.traceEnabled && mangled !== packageName) { trace(state.host, Diagnostics.Scoped_package_detected_looking_in_0, mangled); } return mangled; } function getTypesPackageName(packageName) { return `@types/${mangleScopedPackageName(packageName)}`; } function mangleScopedPackageName(packageName) { if (startsWith(packageName, "@")) { const replaceSlash = packageName.replace(directorySeparator, mangledScopedPackageSeparator); if (replaceSlash !== packageName) { return replaceSlash.slice(1); } } return packageName; } function getPackageNameFromTypesPackageName(mangledName) { const withoutAtTypePrefix = removePrefix(mangledName, "@types/"); if (withoutAtTypePrefix !== mangledName) { return unmangleScopedPackageName(withoutAtTypePrefix); } return mangledName; } function unmangleScopedPackageName(typesPackageName) { return typesPackageName.includes(mangledScopedPackageSeparator) ? "@" + typesPackageName.replace(mangledScopedPackageSeparator, directorySeparator) : typesPackageName; } function tryFindNonRelativeModuleNameInCache(cache, moduleName, mode, containingDirectory, redirectedReference, state) { const result = cache && cache.getFromNonRelativeNameCache(moduleName, mode, containingDirectory, redirectedReference); if (result) { if (state.traceEnabled) { trace(state.host, Diagnostics.Resolution_for_module_0_was_found_in_cache_from_location_1, moduleName, containingDirectory); } state.resultFromCache = result; return { value: result.resolvedModule && { path: result.resolvedModule.resolvedFileName, originalPath: result.resolvedModule.originalPath || true, extension: result.resolvedModule.extension, packageId: result.resolvedModule.packageId, resolvedUsingTsExtension: result.resolvedModule.resolvedUsingTsExtension } }; } } function classicNameResolver(moduleName, containingFile, compilerOptions, host, cache, redirectedReference) { const traceEnabled = isTraceEnabled(compilerOptions, host); const failedLookupLocations = []; const affectingLocations = []; const containingDirectory = getDirectoryPath(containingFile); const diagnostics = []; const state = { compilerOptions, host, traceEnabled, failedLookupLocations, affectingLocations, packageJsonInfoCache: cache, features: 0, conditions: [], requestContainingDirectory: containingDirectory, reportDiagnostic: (diag2) => void diagnostics.push(diag2), isConfigLookup: false, candidateIsFromPackageJsonField: false, resolvedPackageDirectory: false }; const resolved = tryResolve(1 | 4) || tryResolve(2 | (compilerOptions.resolveJsonModule ? 8 : 0)); return createResolvedModuleWithFailedLookupLocationsHandlingSymlink(moduleName, resolved && resolved.value, (resolved == null ? undefined : resolved.value) && pathContainsNodeModules(resolved.value.path), failedLookupLocations, affectingLocations, diagnostics, state, cache); function tryResolve(extensions) { const resolvedUsingSettings = tryLoadModuleUsingOptionalResolutionSettings(extensions, moduleName, containingDirectory, loadModuleFromFileNoPackageId, state); if (resolvedUsingSettings) { return { value: resolvedUsingSettings }; } if (!isExternalModuleNameRelative(moduleName)) { const resolved2 = forEachAncestorDirectoryStoppingAtGlobalCache(state.host, containingDirectory, (directory) => { const resolutionFromCache = tryFindNonRelativeModuleNameInCache(cache, moduleName, undefined, directory, redirectedReference, state); if (resolutionFromCache) { return resolutionFromCache; } const searchName = normalizePath(combinePaths(directory, moduleName)); return toSearchResult(loadModuleFromFileNoPackageId(extensions, searchName, false, state)); }); if (resolved2) return resolved2; if (extensions & (1 | 4)) { let resolved3 = loadModuleFromNearestNodeModulesDirectoryTypesScope(moduleName, containingDirectory, state); if (extensions & 4) resolved3 ?? (resolved3 = resolveFromTypeRoot(moduleName, state)); return resolved3; } } else { const candidate = normalizePath(combinePaths(containingDirectory, moduleName)); return toSearchResult(loadModuleFromFileNoPackageId(extensions, candidate, false, state)); } } } function resolveFromTypeRoot(moduleName, state) { if (!state.compilerOptions.typeRoots) return; for (const typeRoot of state.compilerOptions.typeRoots) { const candidate = getCandidateFromTypeRoot(typeRoot, moduleName, state); const directoryExists = directoryProbablyExists(typeRoot, state.host); if (!directoryExists && state.traceEnabled) { trace(state.host, Diagnostics.Directory_0_does_not_exist_skipping_all_lookups_in_it, typeRoot); } const resolvedFromFile = loadModuleFromFile(4, candidate, !directoryExists, state); if (resolvedFromFile) { const packageDirectory = parseNodeModuleFromPath(resolvedFromFile.path); const packageInfo = packageDirectory ? getPackageJsonInfo(packageDirectory, false, state) : undefined; return toSearchResult(withPackageId(packageInfo, resolvedFromFile, state)); } const resolved = loadNodeModuleFromDirectory(4, candidate, !directoryExists, state); if (resolved) return toSearchResult(resolved); } } function shouldAllowImportingTsExtension(compilerOptions, fromFileName) { return getAllowImportingTsExtensions(compilerOptions) || !!fromFileName && isDeclarationFileName(fromFileName); } function loadModuleFromGlobalCache(moduleName, projectName, compilerOptions, host, globalCache, packageJsonInfoCache) { const traceEnabled = isTraceEnabled(compilerOptions, host); if (traceEnabled) { trace(host, Diagnostics.Auto_discovery_for_typings_is_enabled_in_project_0_Running_extra_resolution_pass_for_module_1_using_cache_location_2, projectName, moduleName, globalCache); } const failedLookupLocations = []; const affectingLocations = []; const diagnostics = []; const state = { compilerOptions, host, traceEnabled, failedLookupLocations, affectingLocations, packageJsonInfoCache, features: 0, conditions: [], requestContainingDirectory: undefined, reportDiagnostic: (diag2) => void diagnostics.push(diag2), isConfigLookup: false, candidateIsFromPackageJsonField: false, resolvedPackageDirectory: false }; const resolved = loadModuleFromImmediateNodeModulesDirectory(4, moduleName, globalCache, state, false, undefined, undefined); return createResolvedModuleWithFailedLookupLocations(resolved, true, failedLookupLocations, affectingLocations, diagnostics, state.resultFromCache, undefined); } function toSearchResult(value) { return value !== undefined ? { value } : undefined; } function traceIfEnabled(state, diagnostic, ...args) { if (state.traceEnabled) { trace(state.host, diagnostic, ...args); } } function useCaseSensitiveFileNames(state) { return !state.host.useCaseSensitiveFileNames ? true : typeof state.host.useCaseSensitiveFileNames === "boolean" ? state.host.useCaseSensitiveFileNames : state.host.useCaseSensitiveFileNames(); } var ModuleInstanceState = /* @__PURE__ */ ((ModuleInstanceState2) => { ModuleInstanceState2[ModuleInstanceState2["NonInstantiated"] = 0] = "NonInstantiated"; ModuleInstanceState2[ModuleInstanceState2["Instantiated"] = 1] = "Instantiated"; ModuleInstanceState2[ModuleInstanceState2["ConstEnumOnly"] = 2] = "ConstEnumOnly"; return ModuleInstanceState2; })(ModuleInstanceState || {}); function getModuleInstanceState(node, visited) { if (node.body && !node.body.parent) { setParent(node.body, node); setParentRecursive(node.body, false); } return node.body ? getModuleInstanceStateCached(node.body, visited) : 1; } function getModuleInstanceStateCached(node, visited = /* @__PURE__ */ new Map) { const nodeId = getNodeId(node); if (visited.has(nodeId)) { return visited.get(nodeId) || 0; } visited.set(nodeId, undefined); const result = getModuleInstanceStateWorker(node, visited); visited.set(nodeId, result); return result; } function getModuleInstanceStateWorker(node, visited) { switch (node.kind) { case 265: case 266: return 0; case 267: if (isEnumConst(node)) { return 2; } break; case 273: case 272: if (!hasSyntacticModifier(node, 32)) { return 0; } break; case 279: const exportDeclaration = node; if (!exportDeclaration.moduleSpecifier && exportDeclaration.exportClause && exportDeclaration.exportClause.kind === 280) { let state = 0; for (const specifier of exportDeclaration.exportClause.elements) { const specifierState = getModuleInstanceStateForAliasTarget(specifier, visited); if (specifierState > state) { state = specifierState; } if (state === 1) { return state; } } return state; } break; case 269: { let state = 0; forEachChild(node, (n) => { const childState = getModuleInstanceStateCached(n, visited); switch (childState) { case 0: return; case 2: state = 2; return; case 1: state = 1; return true; default: Debug.assertNever(childState); } }); return state; } case 268: return getModuleInstanceState(node, visited); case 80: if (node.flags & 4096) { return 0; } } return 1; } function getModuleInstanceStateForAliasTarget(specifier, visited) { const name = specifier.propertyName || specifier.name; if (name.kind !== 80) { return 1; } let p = specifier.parent; while (p) { if (isBlock(p) || isModuleBlock(p) || isSourceFile(p)) { const statements = p.statements; let found; for (const statement of statements) { if (nodeHasName(statement, name)) { if (!statement.parent) { setParent(statement, p); setParentRecursive(statement, false); } const state = getModuleInstanceStateCached(statement, visited); if (found === undefined || state > found) { found = state; } if (found === 1) { return found; } if (statement.kind === 272) { found = 1; } } } if (found !== undefined) { return found; } } p = p.parent; } return 1; } var ContainerFlags = /* @__PURE__ */ ((ContainerFlags2) => { ContainerFlags2[ContainerFlags2["None"] = 0] = "None"; ContainerFlags2[ContainerFlags2["IsContainer"] = 1] = "IsContainer"; ContainerFlags2[ContainerFlags2["IsBlockScopedContainer"] = 2] = "IsBlockScopedContainer"; ContainerFlags2[ContainerFlags2["IsControlFlowContainer"] = 4] = "IsControlFlowContainer"; ContainerFlags2[ContainerFlags2["IsFunctionLike"] = 8] = "IsFunctionLike"; ContainerFlags2[ContainerFlags2["IsFunctionExpression"] = 16] = "IsFunctionExpression"; ContainerFlags2[ContainerFlags2["HasLocals"] = 32] = "HasLocals"; ContainerFlags2[ContainerFlags2["IsInterface"] = 64] = "IsInterface"; ContainerFlags2[ContainerFlags2["IsObjectLiteralOrClassExpressionMethodOrAccessor"] = 128] = "IsObjectLiteralOrClassExpressionMethodOrAccessor"; ContainerFlags2[ContainerFlags2["PropagatesThisKeyword"] = 256] = "PropagatesThisKeyword"; return ContainerFlags2; })(ContainerFlags || {}); function createFlowNode(flags, node, antecedent) { return Debug.attachFlowNodeDebugInfo({ flags, id: 0, node, antecedent }); } var binder = /* @__PURE__ */ createBinder(); function bindSourceFile(file, options) { mark("beforeBind"); binder(file, options); mark("afterBind"); measure("Bind", "beforeBind", "afterBind"); } function createBinder() { var file; var options; var languageVersion; var parent2; var container; var thisParentContainer; var blockScopeContainer; var lastContainer; var delayedTypeAliases; var seenThisKeyword; var jsDocImports; var currentFlow; var currentBreakTarget; var currentContinueTarget; var currentReturnTarget; var currentTrueTarget; var currentFalseTarget; var currentExceptionTarget; var preSwitchCaseFlow; var activeLabelList; var hasExplicitReturn; var inReturnPosition; var hasFlowEffects; var emitFlags; var inStrictMode; var inAssignmentPattern = false; var symbolCount = 0; var Symbol48; var classifiableNames; var unreachableFlow = createFlowNode(1, undefined, undefined); var bindBinaryExpressionFlow = createBindBinaryExpressionFlow(); return bindSourceFile2; function createDiagnosticForNode2(node, message, ...args) { return createDiagnosticForNodeInSourceFile(getSourceFileOfNode(node) || file, node, message, ...args); } function bindSourceFile2(f, opts) { var _a, _b; file = f; options = opts; languageVersion = getEmitScriptTarget(options); inStrictMode = bindInStrictMode(file, opts); classifiableNames = /* @__PURE__ */ new Set; symbolCount = 0; Symbol48 = objectAllocator.getSymbolConstructor(); Debug.attachFlowNodeDebugInfo(unreachableFlow); if (!file.locals) { (_a = tracing) == null || _a.push(tracing.Phase.Bind, "bindSourceFile", { path: file.path }, true); bind(file); (_b = tracing) == null || _b.pop(); file.symbolCount = symbolCount; file.classifiableNames = classifiableNames; delayedBindJSDocTypedefTag(); bindJSDocImports(); } file = undefined; options = undefined; languageVersion = undefined; parent2 = undefined; container = undefined; thisParentContainer = undefined; blockScopeContainer = undefined; lastContainer = undefined; delayedTypeAliases = undefined; jsDocImports = undefined; seenThisKeyword = false; currentFlow = undefined; currentBreakTarget = undefined; currentContinueTarget = undefined; currentReturnTarget = undefined; currentTrueTarget = undefined; currentFalseTarget = undefined; currentExceptionTarget = undefined; activeLabelList = undefined; hasExplicitReturn = false; inReturnPosition = false; hasFlowEffects = false; inAssignmentPattern = false; emitFlags = 0; } function bindInStrictMode(file2, opts) { if (getAlwaysStrict(opts) && !file2.isDeclarationFile) { return true; } else { return !!file2.externalModuleIndicator; } } function createSymbol(flags, name) { symbolCount++; return new Symbol48(flags, name); } function addDeclarationToSymbol(symbol, node, symbolFlags) { symbol.flags |= symbolFlags; node.symbol = symbol; symbol.declarations = appendIfUnique(symbol.declarations, node); if (symbolFlags & (32 | 384 | 1536 | 3) && !symbol.exports) { symbol.exports = createSymbolTable(); } if (symbolFlags & (32 | 64 | 2048 | 4096) && !symbol.members) { symbol.members = createSymbolTable(); } if (symbol.constEnumOnlyModule && symbol.flags & (16 | 32 | 256)) { symbol.constEnumOnlyModule = false; } if (symbolFlags & 111551) { setValueDeclaration(symbol, node); } } function getDeclarationName(node) { if (node.kind === 278) { return node.isExportEquals ? "export=" : "default"; } const name = getNameOfDeclaration(node); if (name) { if (isAmbientModule(node)) { const moduleName = getTextOfIdentifierOrLiteral(name); return isGlobalScopeAugmentation(node) ? "__global" : `"${moduleName}"`; } if (name.kind === 168) { const nameExpression = name.expression; if (isStringOrNumericLiteralLike(nameExpression)) { return escapeLeadingUnderscores(nameExpression.text); } if (isSignedNumericLiteral(nameExpression)) { return tokenToString(nameExpression.operator) + nameExpression.operand.text; } else { Debug.fail("Only computed properties with literal names have declaration names"); } } if (isPrivateIdentifier(name)) { const containingClass = getContainingClass(node); if (!containingClass) { return; } const containingClassSymbol = containingClass.symbol; return getSymbolNameForPrivateIdentifier(containingClassSymbol, name.escapedText); } if (isJsxNamespacedName(name)) { return getEscapedTextOfJsxNamespacedName(name); } return isPropertyNameLiteral(name) ? getEscapedTextOfIdentifierOrLiteral(name) : undefined; } switch (node.kind) { case 177: return "__constructor"; case 185: case 180: case 324: return "__call"; case 186: case 181: return "__new"; case 182: return "__index"; case 279: return "__export"; case 308: return "export="; case 227: if (getAssignmentDeclarationKind(node) === 2) { return "export="; } Debug.fail("Unknown binary declaration kind"); break; case 318: return isJSDocConstructSignature(node) ? "__new" : "__call"; case 170: Debug.assert(node.parent.kind === 318, "Impossible parameter parent kind", () => `parent is: ${Debug.formatSyntaxKind(node.parent.kind)}, expected JSDocFunctionType`); const functionType = node.parent; const index = functionType.parameters.indexOf(node); return "arg" + index; } } function getDisplayName(node) { return isNamedDeclaration(node) ? declarationNameToString(node.name) : unescapeLeadingUnderscores(Debug.checkDefined(getDeclarationName(node))); } function declareSymbol(symbolTable, parent3, node, includes, excludes, isReplaceableByMethod, isComputedName) { Debug.assert(isComputedName || !hasDynamicName(node)); const isDefaultExport = hasSyntacticModifier(node, 2048) || isExportSpecifier(node) && moduleExportNameIsDefault(node.name); const name = isComputedName ? "__computed" : isDefaultExport && parent3 ? "default" : getDeclarationName(node); let symbol; if (name === undefined) { symbol = createSymbol(0, "__missing"); } else { symbol = symbolTable.get(name); if (includes & 2885600) { classifiableNames.add(name); } if (!symbol) { symbolTable.set(name, symbol = createSymbol(0, name)); if (isReplaceableByMethod) symbol.isReplaceableByMethod = true; } else if (isReplaceableByMethod && !symbol.isReplaceableByMethod) { return symbol; } else if (symbol.flags & excludes) { if (symbol.isReplaceableByMethod) { symbolTable.set(name, symbol = createSymbol(0, name)); } else if (!(includes & 3 && symbol.flags & 67108864)) { if (isNamedDeclaration(node)) { setParent(node.name, node); } let message = symbol.flags & 2 ? Diagnostics.Cannot_redeclare_block_scoped_variable_0 : Diagnostics.Duplicate_identifier_0; let messageNeedsName = true; if (symbol.flags & 384 || includes & 384) { message = Diagnostics.Enum_declarations_can_only_merge_with_namespace_or_other_enum_declarations; messageNeedsName = false; } let multipleDefaultExports = false; if (length(symbol.declarations)) { if (isDefaultExport) { message = Diagnostics.A_module_cannot_have_multiple_default_exports; messageNeedsName = false; multipleDefaultExports = true; } else { if (symbol.declarations && symbol.declarations.length && (node.kind === 278 && !node.isExportEquals)) { message = Diagnostics.A_module_cannot_have_multiple_default_exports; messageNeedsName = false; multipleDefaultExports = true; } } } const relatedInformation = []; if (isTypeAliasDeclaration(node) && nodeIsMissing(node.type) && hasSyntacticModifier(node, 32) && symbol.flags & (2097152 | 788968 | 1920)) { relatedInformation.push(createDiagnosticForNode2(node, Diagnostics.Did_you_mean_0, `export type { ${unescapeLeadingUnderscores(node.name.escapedText)} }`)); } const declarationName = getNameOfDeclaration(node) || node; forEach(symbol.declarations, (declaration, index) => { const decl = getNameOfDeclaration(declaration) || declaration; const diag3 = messageNeedsName ? createDiagnosticForNode2(decl, message, getDisplayName(declaration)) : createDiagnosticForNode2(decl, message); file.bindDiagnostics.push(multipleDefaultExports ? addRelatedInfo(diag3, createDiagnosticForNode2(declarationName, index === 0 ? Diagnostics.Another_export_default_is_here : Diagnostics.and_here)) : diag3); if (multipleDefaultExports) { relatedInformation.push(createDiagnosticForNode2(decl, Diagnostics.The_first_export_default_is_here)); } }); const diag2 = messageNeedsName ? createDiagnosticForNode2(declarationName, message, getDisplayName(node)) : createDiagnosticForNode2(declarationName, message); file.bindDiagnostics.push(addRelatedInfo(diag2, ...relatedInformation)); symbol = createSymbol(0, name); } } } addDeclarationToSymbol(symbol, node, includes); if (symbol.parent) { Debug.assert(symbol.parent === parent3, "Existing symbol parent should match new one"); } else { symbol.parent = parent3; } return symbol; } function declareModuleMember(node, symbolFlags, symbolExcludes) { const hasExportModifier = !!(getCombinedModifierFlags(node) & 32) || jsdocTreatAsExported(node); if (symbolFlags & 2097152) { if (node.kind === 282 || node.kind === 272 && hasExportModifier) { return declareSymbol(container.symbol.exports, container.symbol, node, symbolFlags, symbolExcludes); } else { Debug.assertNode(container, canHaveLocals); return declareSymbol(container.locals, undefined, node, symbolFlags, symbolExcludes); } } else { if (isJSDocTypeAlias(node)) Debug.assert(isInJSFile(node)); if (!isAmbientModule(node) && (hasExportModifier || container.flags & 128)) { if (!canHaveLocals(container) || !container.locals || hasSyntacticModifier(node, 2048) && !getDeclarationName(node)) { return declareSymbol(container.symbol.exports, container.symbol, node, symbolFlags, symbolExcludes); } const exportKind = symbolFlags & 111551 ? 1048576 : 0; const local = declareSymbol(container.locals, undefined, node, exportKind, symbolExcludes); local.exportSymbol = declareSymbol(container.symbol.exports, container.symbol, node, symbolFlags, symbolExcludes); node.localSymbol = local; return local; } else { Debug.assertNode(container, canHaveLocals); return declareSymbol(container.locals, undefined, node, symbolFlags, symbolExcludes); } } } function jsdocTreatAsExported(node) { if (node.parent && isModuleDeclaration(node)) { node = node.parent; } if (!isJSDocTypeAlias(node)) return false; if (!isJSDocEnumTag(node) && !!node.fullName) return true; const declName = getNameOfDeclaration(node); if (!declName) return false; if (isPropertyAccessEntityNameExpression(declName.parent) && isTopLevelNamespaceAssignment(declName.parent)) return true; if (isDeclaration(declName.parent) && getCombinedModifierFlags(declName.parent) & 32) return true; return false; } function bindContainer(node, containerFlags) { const saveContainer = container; const saveThisParentContainer = thisParentContainer; const savedBlockScopeContainer = blockScopeContainer; const savedInReturnPosition = inReturnPosition; if (node.kind === 220 && node.body.kind !== 242) inReturnPosition = true; if (containerFlags & 1) { if (node.kind !== 220) { thisParentContainer = container; } container = blockScopeContainer = node; if (containerFlags & 32) { container.locals = createSymbolTable(); addToContainerChain(container); } } else if (containerFlags & 2) { blockScopeContainer = node; if (containerFlags & 32) { blockScopeContainer.locals = undefined; } } if (containerFlags & 4) { const saveCurrentFlow = currentFlow; const saveBreakTarget = currentBreakTarget; const saveContinueTarget = currentContinueTarget; const saveReturnTarget = currentReturnTarget; const saveExceptionTarget = currentExceptionTarget; const saveActiveLabelList = activeLabelList; const saveHasExplicitReturn = hasExplicitReturn; const saveSeenThisKeyword = seenThisKeyword; const isImmediatelyInvoked = containerFlags & 16 && !hasSyntacticModifier(node, 1024) && !node.asteriskToken && !!getImmediatelyInvokedFunctionExpression(node) || node.kind === 176; if (!isImmediatelyInvoked) { currentFlow = createFlowNode(2, undefined, undefined); if (containerFlags & (16 | 128)) { currentFlow.node = node; } } currentReturnTarget = isImmediatelyInvoked || node.kind === 177 || isInJSFile(node) && (node.kind === 263 || node.kind === 219) ? createBranchLabel() : undefined; currentExceptionTarget = undefined; currentBreakTarget = undefined; currentContinueTarget = undefined; activeLabelList = undefined; hasExplicitReturn = false; seenThisKeyword = false; bindChildren(node); node.flags &= ~(5632 | 256); if (!(currentFlow.flags & 1) && containerFlags & 8 && nodeIsPresent(node.body)) { node.flags |= 512; if (hasExplicitReturn) node.flags |= 1024; node.endFlowNode = currentFlow; } if (seenThisKeyword) { node.flags |= 256; } if (node.kind === 308) { node.flags |= emitFlags; node.endFlowNode = currentFlow; } if (currentReturnTarget) { addAntecedent(currentReturnTarget, currentFlow); currentFlow = finishFlowLabel(currentReturnTarget); if (node.kind === 177 || node.kind === 176 || isInJSFile(node) && (node.kind === 263 || node.kind === 219)) { node.returnFlowNode = currentFlow; } } if (!isImmediatelyInvoked) { currentFlow = saveCurrentFlow; } currentBreakTarget = saveBreakTarget; currentContinueTarget = saveContinueTarget; currentReturnTarget = saveReturnTarget; currentExceptionTarget = saveExceptionTarget; activeLabelList = saveActiveLabelList; hasExplicitReturn = saveHasExplicitReturn; seenThisKeyword = containerFlags & 256 ? saveSeenThisKeyword || seenThisKeyword : saveSeenThisKeyword; } else if (containerFlags & 64) { const saveSeenThisKeyword = seenThisKeyword; seenThisKeyword = false; bindChildren(node); Debug.assertNotNode(node, isIdentifier); node.flags = seenThisKeyword ? node.flags | 256 : node.flags & ~256; seenThisKeyword = saveSeenThisKeyword; } else { bindChildren(node); } inReturnPosition = savedInReturnPosition; container = saveContainer; thisParentContainer = saveThisParentContainer; blockScopeContainer = savedBlockScopeContainer; } function bindEachFunctionsFirst(nodes) { bindEach(nodes, (n) => n.kind === 263 ? bind(n) : undefined); bindEach(nodes, (n) => n.kind !== 263 ? bind(n) : undefined); } function bindEach(nodes, bindFunction = bind) { if (nodes === undefined) { return; } forEach(nodes, bindFunction); } function bindEachChild(node) { forEachChild(node, bind, bindEach); } function bindChildren(node) { const saveInAssignmentPattern = inAssignmentPattern; inAssignmentPattern = false; if (isPotentiallyExecutableNode(node)) { node.flags &= ~1073741824; } if (currentFlow === unreachableFlow) { if (canHaveFlowNode(node)) { node.flowNode = undefined; } if (isPotentiallyExecutableNode(node)) { node.flags |= 1073741824; } bindEachChild(node); bindJSDoc(node); inAssignmentPattern = saveInAssignmentPattern; return; } if (244 <= node.kind && node.kind <= 260 && canHaveFlowNode(node)) { node.flowNode = currentFlow; } switch (node.kind) { case 248: bindWhileStatement(node); break; case 247: bindDoStatement(node); break; case 249: bindForStatement(node); break; case 250: case 251: bindForInOrForOfStatement(node); break; case 246: bindIfStatement(node); break; case 254: case 258: bindReturnOrThrow(node); break; case 253: case 252: bindBreakOrContinueStatement(node); break; case 259: bindTryStatement(node); break; case 256: bindSwitchStatement(node); break; case 270: bindCaseBlock(node); break; case 297: bindCaseClause(node); break; case 245: bindExpressionStatement(node); break; case 257: bindLabeledStatement(node); break; case 225: bindPrefixUnaryExpressionFlow(node); break; case 226: bindPostfixUnaryExpressionFlow(node); break; case 227: if (isDestructuringAssignment(node)) { inAssignmentPattern = saveInAssignmentPattern; bindDestructuringAssignmentFlow(node); return; } bindBinaryExpressionFlow(node); break; case 221: bindDeleteExpressionFlow(node); break; case 228: bindConditionalExpressionFlow(node); break; case 261: bindVariableDeclarationFlow(node); break; case 212: case 213: bindAccessExpressionFlow(node); break; case 214: bindCallExpressionFlow(node); break; case 236: bindNonNullExpressionFlow(node); break; case 347: case 339: case 341: bindJSDocTypeAlias(node); break; case 352: bindJSDocImportTag(node); break; case 308: { bindEachFunctionsFirst(node.statements); bind(node.endOfFileToken); break; } case 242: case 269: bindEachFunctionsFirst(node.statements); break; case 209: bindBindingElementFlow(node); break; case 170: bindParameterFlow(node); break; case 211: case 210: case 304: case 231: inAssignmentPattern = saveInAssignmentPattern; default: bindEachChild(node); break; } bindJSDoc(node); inAssignmentPattern = saveInAssignmentPattern; } function isNarrowingExpression(expr) { switch (expr.kind) { case 80: case 110: return true; case 212: case 213: return containsNarrowableReference(expr); case 214: return hasNarrowableArgument(expr); case 218: if (isJSDocTypeAssertion(expr)) { return false; } case 236: return isNarrowingExpression(expr.expression); case 227: return isNarrowingBinaryExpression(expr); case 225: return expr.operator === 54 && isNarrowingExpression(expr.operand); case 222: return isNarrowingExpression(expr.expression); } return false; } function isNarrowableReference(expr) { switch (expr.kind) { case 80: case 110: case 108: case 237: return true; case 212: case 218: case 236: return isNarrowableReference(expr.expression); case 213: return (isStringOrNumericLiteralLike(expr.argumentExpression) || isEntityNameExpression(expr.argumentExpression)) && isNarrowableReference(expr.expression); case 227: return expr.operatorToken.kind === 28 && isNarrowableReference(expr.right) || isAssignmentOperator(expr.operatorToken.kind) && isLeftHandSideExpression(expr.left); } return false; } function containsNarrowableReference(expr) { return isNarrowableReference(expr) || isOptionalChain(expr) && containsNarrowableReference(expr.expression); } function hasNarrowableArgument(expr) { if (expr.arguments) { for (const argument of expr.arguments) { if (containsNarrowableReference(argument)) { return true; } } } if (expr.expression.kind === 212 && containsNarrowableReference(expr.expression.expression)) { return true; } return false; } function isNarrowingTypeofOperands(expr1, expr2) { return isTypeOfExpression(expr1) && isNarrowableOperand(expr1.expression) && isStringLiteralLike(expr2); } function isNarrowingBinaryExpression(expr) { switch (expr.operatorToken.kind) { case 64: case 76: case 77: case 78: return containsNarrowableReference(expr.left); case 35: case 36: case 37: case 38: const left = skipParentheses(expr.left); const right = skipParentheses(expr.right); return isNarrowableOperand(left) || isNarrowableOperand(right) || isNarrowingTypeofOperands(right, left) || isNarrowingTypeofOperands(left, right) || (isBooleanLiteral(right) && isNarrowingExpression(left) || isBooleanLiteral(left) && isNarrowingExpression(right)); case 104: return isNarrowableOperand(expr.left); case 103: return isNarrowingExpression(expr.right); case 28: return isNarrowingExpression(expr.right); } return false; } function isNarrowableOperand(expr) { switch (expr.kind) { case 218: return isNarrowableOperand(expr.expression); case 227: switch (expr.operatorToken.kind) { case 64: return isNarrowableOperand(expr.left); case 28: return isNarrowableOperand(expr.right); } } return containsNarrowableReference(expr); } function createBranchLabel() { return createFlowNode(4, undefined, undefined); } function createLoopLabel() { return createFlowNode(8, undefined, undefined); } function createReduceLabel(target, antecedents, antecedent) { return createFlowNode(1024, { target, antecedents }, antecedent); } function setFlowNodeReferenced(flow) { flow.flags |= flow.flags & 2048 ? 4096 : 2048; } function addAntecedent(label, antecedent) { if (!(antecedent.flags & 1) && !contains(label.antecedent, antecedent)) { (label.antecedent || (label.antecedent = [])).push(antecedent); setFlowNodeReferenced(antecedent); } } function createFlowCondition(flags, antecedent, expression) { if (antecedent.flags & 1) { return antecedent; } if (!expression) { return flags & 32 ? antecedent : unreachableFlow; } if ((expression.kind === 112 && flags & 64 || expression.kind === 97 && flags & 32) && !isExpressionOfOptionalChainRoot(expression) && !isNullishCoalesce(expression.parent)) { return unreachableFlow; } if (!isNarrowingExpression(expression)) { return antecedent; } setFlowNodeReferenced(antecedent); return createFlowNode(flags, expression, antecedent); } function createFlowSwitchClause(antecedent, switchStatement, clauseStart, clauseEnd) { setFlowNodeReferenced(antecedent); return createFlowNode(128, { switchStatement, clauseStart, clauseEnd }, antecedent); } function createFlowMutation(flags, antecedent, node) { setFlowNodeReferenced(antecedent); hasFlowEffects = true; const result = createFlowNode(flags, node, antecedent); if (currentExceptionTarget) { addAntecedent(currentExceptionTarget, result); } return result; } function createFlowCall(antecedent, node) { setFlowNodeReferenced(antecedent); hasFlowEffects = true; return createFlowNode(512, node, antecedent); } function finishFlowLabel(flow) { const antecedents = flow.antecedent; if (!antecedents) { return unreachableFlow; } if (antecedents.length === 1) { return antecedents[0]; } return flow; } function isStatementCondition(node) { const parent3 = node.parent; switch (parent3.kind) { case 246: case 248: case 247: return parent3.expression === node; case 249: case 228: return parent3.condition === node; } return false; } function isLogicalExpression(node) { while (true) { if (node.kind === 218) { node = node.expression; } else if (node.kind === 225 && node.operator === 54) { node = node.operand; } else { return isLogicalOrCoalescingBinaryExpression(node); } } } function isLogicalAssignmentExpression(node) { return isLogicalOrCoalescingAssignmentExpression(skipParentheses(node)); } function isTopLevelLogicalExpression(node) { while (isParenthesizedExpression(node.parent) || isPrefixUnaryExpression(node.parent) && node.parent.operator === 54) { node = node.parent; } return !isStatementCondition(node) && !isLogicalExpression(node.parent) && !(isOptionalChain(node.parent) && node.parent.expression === node); } function doWithConditionalBranches(action, value, trueTarget, falseTarget) { const savedTrueTarget = currentTrueTarget; const savedFalseTarget = currentFalseTarget; currentTrueTarget = trueTarget; currentFalseTarget = falseTarget; action(value); currentTrueTarget = savedTrueTarget; currentFalseTarget = savedFalseTarget; } function bindCondition(node, trueTarget, falseTarget) { doWithConditionalBranches(bind, node, trueTarget, falseTarget); if (!node || !isLogicalAssignmentExpression(node) && !isLogicalExpression(node) && !(isOptionalChain(node) && isOutermostOptionalChain(node))) { addAntecedent(trueTarget, createFlowCondition(32, currentFlow, node)); addAntecedent(falseTarget, createFlowCondition(64, currentFlow, node)); } } function bindIterativeStatement(node, breakTarget, continueTarget) { const saveBreakTarget = currentBreakTarget; const saveContinueTarget = currentContinueTarget; currentBreakTarget = breakTarget; currentContinueTarget = continueTarget; bind(node); currentBreakTarget = saveBreakTarget; currentContinueTarget = saveContinueTarget; } function setContinueTarget(node, target) { let label = activeLabelList; while (label && node.parent.kind === 257) { label.continueTarget = target; label = label.next; node = node.parent; } return target; } function bindWhileStatement(node) { const preWhileLabel = setContinueTarget(node, createLoopLabel()); const preBodyLabel = createBranchLabel(); const postWhileLabel = createBranchLabel(); addAntecedent(preWhileLabel, currentFlow); currentFlow = preWhileLabel; bindCondition(node.expression, preBodyLabel, postWhileLabel); currentFlow = finishFlowLabel(preBodyLabel); bindIterativeStatement(node.statement, postWhileLabel, preWhileLabel); addAntecedent(preWhileLabel, currentFlow); currentFlow = finishFlowLabel(postWhileLabel); } function bindDoStatement(node) { const preDoLabel = createLoopLabel(); const preConditionLabel = setContinueTarget(node, createBranchLabel()); const postDoLabel = createBranchLabel(); addAntecedent(preDoLabel, currentFlow); currentFlow = preDoLabel; bindIterativeStatement(node.statement, postDoLabel, preConditionLabel); addAntecedent(preConditionLabel, currentFlow); currentFlow = finishFlowLabel(preConditionLabel); bindCondition(node.expression, preDoLabel, postDoLabel); currentFlow = finishFlowLabel(postDoLabel); } function bindForStatement(node) { const preLoopLabel = setContinueTarget(node, createLoopLabel()); const preBodyLabel = createBranchLabel(); const preIncrementorLabel = createBranchLabel(); const postLoopLabel = createBranchLabel(); bind(node.initializer); addAntecedent(preLoopLabel, currentFlow); currentFlow = preLoopLabel; bindCondition(node.condition, preBodyLabel, postLoopLabel); currentFlow = finishFlowLabel(preBodyLabel); bindIterativeStatement(node.statement, postLoopLabel, preIncrementorLabel); addAntecedent(preIncrementorLabel, currentFlow); currentFlow = finishFlowLabel(preIncrementorLabel); bind(node.incrementor); addAntecedent(preLoopLabel, currentFlow); currentFlow = finishFlowLabel(postLoopLabel); } function bindForInOrForOfStatement(node) { const preLoopLabel = setContinueTarget(node, createLoopLabel()); const postLoopLabel = createBranchLabel(); bind(node.expression); addAntecedent(preLoopLabel, currentFlow); currentFlow = preLoopLabel; if (node.kind === 251) { bind(node.awaitModifier); } addAntecedent(postLoopLabel, currentFlow); bind(node.initializer); if (node.initializer.kind !== 262) { bindAssignmentTargetFlow(node.initializer); } bindIterativeStatement(node.statement, postLoopLabel, preLoopLabel); addAntecedent(preLoopLabel, currentFlow); currentFlow = finishFlowLabel(postLoopLabel); } function bindIfStatement(node) { const thenLabel = createBranchLabel(); const elseLabel = createBranchLabel(); const postIfLabel = createBranchLabel(); bindCondition(node.expression, thenLabel, elseLabel); currentFlow = finishFlowLabel(thenLabel); bind(node.thenStatement); addAntecedent(postIfLabel, currentFlow); currentFlow = finishFlowLabel(elseLabel); bind(node.elseStatement); addAntecedent(postIfLabel, currentFlow); currentFlow = finishFlowLabel(postIfLabel); } function bindReturnOrThrow(node) { const savedInReturnPosition = inReturnPosition; inReturnPosition = true; bind(node.expression); inReturnPosition = savedInReturnPosition; if (node.kind === 254) { hasExplicitReturn = true; if (currentReturnTarget) { addAntecedent(currentReturnTarget, currentFlow); } } currentFlow = unreachableFlow; hasFlowEffects = true; } function findActiveLabel(name) { for (let label = activeLabelList;label; label = label.next) { if (label.name === name) { return label; } } return; } function bindBreakOrContinueFlow(node, breakTarget, continueTarget) { const flowLabel = node.kind === 253 ? breakTarget : continueTarget; if (flowLabel) { addAntecedent(flowLabel, currentFlow); currentFlow = unreachableFlow; hasFlowEffects = true; } } function bindBreakOrContinueStatement(node) { bind(node.label); if (node.label) { const activeLabel = findActiveLabel(node.label.escapedText); if (activeLabel) { activeLabel.referenced = true; bindBreakOrContinueFlow(node, activeLabel.breakTarget, activeLabel.continueTarget); } } else { bindBreakOrContinueFlow(node, currentBreakTarget, currentContinueTarget); } } function bindTryStatement(node) { const saveReturnTarget = currentReturnTarget; const saveExceptionTarget = currentExceptionTarget; const normalExitLabel = createBranchLabel(); const returnLabel = createBranchLabel(); let exceptionLabel = createBranchLabel(); if (node.finallyBlock) { currentReturnTarget = returnLabel; } addAntecedent(exceptionLabel, currentFlow); currentExceptionTarget = exceptionLabel; bind(node.tryBlock); addAntecedent(normalExitLabel, currentFlow); if (node.catchClause) { currentFlow = finishFlowLabel(exceptionLabel); exceptionLabel = createBranchLabel(); addAntecedent(exceptionLabel, currentFlow); currentExceptionTarget = exceptionLabel; bind(node.catchClause); addAntecedent(normalExitLabel, currentFlow); } currentReturnTarget = saveReturnTarget; currentExceptionTarget = saveExceptionTarget; if (node.finallyBlock) { const finallyLabel = createBranchLabel(); finallyLabel.antecedent = concatenate(concatenate(normalExitLabel.antecedent, exceptionLabel.antecedent), returnLabel.antecedent); currentFlow = finallyLabel; bind(node.finallyBlock); if (currentFlow.flags & 1) { currentFlow = unreachableFlow; } else { if (currentReturnTarget && returnLabel.antecedent) { addAntecedent(currentReturnTarget, createReduceLabel(finallyLabel, returnLabel.antecedent, currentFlow)); } if (currentExceptionTarget && exceptionLabel.antecedent) { addAntecedent(currentExceptionTarget, createReduceLabel(finallyLabel, exceptionLabel.antecedent, currentFlow)); } currentFlow = normalExitLabel.antecedent ? createReduceLabel(finallyLabel, normalExitLabel.antecedent, currentFlow) : unreachableFlow; } } else { currentFlow = finishFlowLabel(normalExitLabel); } } function bindSwitchStatement(node) { const postSwitchLabel = createBranchLabel(); bind(node.expression); const saveBreakTarget = currentBreakTarget; const savePreSwitchCaseFlow = preSwitchCaseFlow; currentBreakTarget = postSwitchLabel; preSwitchCaseFlow = currentFlow; bind(node.caseBlock); addAntecedent(postSwitchLabel, currentFlow); const hasDefault = forEach(node.caseBlock.clauses, (c) => c.kind === 298); node.possiblyExhaustive = !hasDefault && !postSwitchLabel.antecedent; if (!hasDefault) { addAntecedent(postSwitchLabel, createFlowSwitchClause(preSwitchCaseFlow, node, 0, 0)); } currentBreakTarget = saveBreakTarget; preSwitchCaseFlow = savePreSwitchCaseFlow; currentFlow = finishFlowLabel(postSwitchLabel); } function bindCaseBlock(node) { const clauses = node.clauses; const isNarrowingSwitch = node.parent.expression.kind === 112 || isNarrowingExpression(node.parent.expression); let fallthroughFlow = unreachableFlow; for (let i = 0;i < clauses.length; i++) { const clauseStart = i; while (!clauses[i].statements.length && i + 1 < clauses.length) { if (fallthroughFlow === unreachableFlow) { currentFlow = preSwitchCaseFlow; } bind(clauses[i]); i++; } const preCaseLabel = createBranchLabel(); addAntecedent(preCaseLabel, isNarrowingSwitch ? createFlowSwitchClause(preSwitchCaseFlow, node.parent, clauseStart, i + 1) : preSwitchCaseFlow); addAntecedent(preCaseLabel, fallthroughFlow); currentFlow = finishFlowLabel(preCaseLabel); const clause = clauses[i]; bind(clause); fallthroughFlow = currentFlow; if (!(currentFlow.flags & 1) && i !== clauses.length - 1 && options.noFallthroughCasesInSwitch) { clause.fallthroughFlowNode = currentFlow; } } } function bindCaseClause(node) { const saveCurrentFlow = currentFlow; currentFlow = preSwitchCaseFlow; bind(node.expression); currentFlow = saveCurrentFlow; bindEach(node.statements); } function bindExpressionStatement(node) { bind(node.expression); maybeBindExpressionFlowIfCall(node.expression); } function maybeBindExpressionFlowIfCall(node) { if (node.kind === 214) { const call = node; if (call.expression.kind !== 108 && isDottedName(call.expression)) { currentFlow = createFlowCall(currentFlow, call); } } } function bindLabeledStatement(node) { const postStatementLabel = createBranchLabel(); activeLabelList = { next: activeLabelList, name: node.label.escapedText, breakTarget: postStatementLabel, continueTarget: undefined, referenced: false }; bind(node.label); bind(node.statement); if (!activeLabelList.referenced) { node.label.flags |= 1073741824; } activeLabelList = activeLabelList.next; addAntecedent(postStatementLabel, currentFlow); currentFlow = finishFlowLabel(postStatementLabel); } function bindDestructuringTargetFlow(node) { if (node.kind === 227 && node.operatorToken.kind === 64) { bindAssignmentTargetFlow(node.left); } else { bindAssignmentTargetFlow(node); } } function bindAssignmentTargetFlow(node) { if (isNarrowableReference(node)) { currentFlow = createFlowMutation(16, currentFlow, node); } else if (node.kind === 210) { for (const e of node.elements) { if (e.kind === 231) { bindAssignmentTargetFlow(e.expression); } else { bindDestructuringTargetFlow(e); } } } else if (node.kind === 211) { for (const p of node.properties) { if (p.kind === 304) { bindDestructuringTargetFlow(p.initializer); } else if (p.kind === 305) { bindAssignmentTargetFlow(p.name); } else if (p.kind === 306) { bindAssignmentTargetFlow(p.expression); } } } } function bindLogicalLikeExpression(node, trueTarget, falseTarget) { const preRightLabel = createBranchLabel(); if (node.operatorToken.kind === 56 || node.operatorToken.kind === 77) { bindCondition(node.left, preRightLabel, falseTarget); } else { bindCondition(node.left, trueTarget, preRightLabel); } currentFlow = finishFlowLabel(preRightLabel); bind(node.operatorToken); if (isLogicalOrCoalescingAssignmentOperator(node.operatorToken.kind)) { doWithConditionalBranches(bind, node.right, trueTarget, falseTarget); bindAssignmentTargetFlow(node.left); addAntecedent(trueTarget, createFlowCondition(32, currentFlow, node)); addAntecedent(falseTarget, createFlowCondition(64, currentFlow, node)); } else { bindCondition(node.right, trueTarget, falseTarget); } } function bindPrefixUnaryExpressionFlow(node) { if (node.operator === 54) { const saveTrueTarget = currentTrueTarget; currentTrueTarget = currentFalseTarget; currentFalseTarget = saveTrueTarget; bindEachChild(node); currentFalseTarget = currentTrueTarget; currentTrueTarget = saveTrueTarget; } else { bindEachChild(node); if (node.operator === 46 || node.operator === 47) { bindAssignmentTargetFlow(node.operand); } } } function bindPostfixUnaryExpressionFlow(node) { bindEachChild(node); if (node.operator === 46 || node.operator === 47) { bindAssignmentTargetFlow(node.operand); } } function bindDestructuringAssignmentFlow(node) { if (inAssignmentPattern) { inAssignmentPattern = false; bind(node.operatorToken); bind(node.right); inAssignmentPattern = true; bind(node.left); } else { inAssignmentPattern = true; bind(node.left); inAssignmentPattern = false; bind(node.operatorToken); bind(node.right); } bindAssignmentTargetFlow(node.left); } function createBindBinaryExpressionFlow() { return createBinaryExpressionTrampoline(onEnter, onLeft, onOperator, onRight, onExit, undefined); function onEnter(node, state) { if (state) { state.stackIndex++; setParent(node, parent2); const saveInStrictMode = inStrictMode; bindWorker(node); const saveParent = parent2; parent2 = node; state.skip = false; state.inStrictModeStack[state.stackIndex] = saveInStrictMode; state.parentStack[state.stackIndex] = saveParent; } else { state = { stackIndex: 0, skip: false, inStrictModeStack: [undefined], parentStack: [undefined] }; } const operator = node.operatorToken.kind; if (isLogicalOrCoalescingBinaryOperator(operator) || isLogicalOrCoalescingAssignmentOperator(operator)) { if (isTopLevelLogicalExpression(node)) { const postExpressionLabel = createBranchLabel(); const saveCurrentFlow = currentFlow; const saveHasFlowEffects = hasFlowEffects; hasFlowEffects = false; bindLogicalLikeExpression(node, postExpressionLabel, postExpressionLabel); currentFlow = hasFlowEffects ? finishFlowLabel(postExpressionLabel) : saveCurrentFlow; hasFlowEffects || (hasFlowEffects = saveHasFlowEffects); } else { bindLogicalLikeExpression(node, currentTrueTarget, currentFalseTarget); } state.skip = true; } return state; } function onLeft(left, state, node) { if (!state.skip) { const maybeBound = maybeBind2(left); if (node.operatorToken.kind === 28) { maybeBindExpressionFlowIfCall(left); } return maybeBound; } } function onOperator(operatorToken, state, _node) { if (!state.skip) { bind(operatorToken); } } function onRight(right, state, node) { if (!state.skip) { const maybeBound = maybeBind2(right); if (node.operatorToken.kind === 28) { maybeBindExpressionFlowIfCall(right); } return maybeBound; } } function onExit(node, state) { if (!state.skip) { const operator = node.operatorToken.kind; if (isAssignmentOperator(operator) && !isAssignmentTarget(node)) { bindAssignmentTargetFlow(node.left); if (operator === 64 && node.left.kind === 213) { const elementAccess = node.left; if (isNarrowableOperand(elementAccess.expression)) { currentFlow = createFlowMutation(256, currentFlow, node); } } } } const savedInStrictMode = state.inStrictModeStack[state.stackIndex]; const savedParent = state.parentStack[state.stackIndex]; if (savedInStrictMode !== undefined) { inStrictMode = savedInStrictMode; } if (savedParent !== undefined) { parent2 = savedParent; } state.skip = false; state.stackIndex--; } function maybeBind2(node) { if (node && isBinaryExpression(node) && !isDestructuringAssignment(node)) { return node; } bind(node); } } function bindDeleteExpressionFlow(node) { bindEachChild(node); if (node.expression.kind === 212) { bindAssignmentTargetFlow(node.expression); } } function bindConditionalExpressionFlow(node) { const trueLabel = createBranchLabel(); const falseLabel = createBranchLabel(); const postExpressionLabel = createBranchLabel(); const saveCurrentFlow = currentFlow; const saveHasFlowEffects = hasFlowEffects; hasFlowEffects = false; bindCondition(node.condition, trueLabel, falseLabel); currentFlow = finishFlowLabel(trueLabel); if (inReturnPosition) { node.flowNodeWhenTrue = currentFlow; } bind(node.questionToken); bind(node.whenTrue); addAntecedent(postExpressionLabel, currentFlow); currentFlow = finishFlowLabel(falseLabel); if (inReturnPosition) { node.flowNodeWhenFalse = currentFlow; } bind(node.colonToken); bind(node.whenFalse); addAntecedent(postExpressionLabel, currentFlow); currentFlow = hasFlowEffects ? finishFlowLabel(postExpressionLabel) : saveCurrentFlow; hasFlowEffects || (hasFlowEffects = saveHasFlowEffects); } function bindInitializedVariableFlow(node) { const name = !isOmittedExpression(node) ? node.name : undefined; if (isBindingPattern(name)) { for (const child of name.elements) { bindInitializedVariableFlow(child); } } else { currentFlow = createFlowMutation(16, currentFlow, node); } } function bindVariableDeclarationFlow(node) { bindEachChild(node); if (node.initializer || isForInOrOfStatement(node.parent.parent)) { bindInitializedVariableFlow(node); } } function bindBindingElementFlow(node) { bind(node.dotDotDotToken); bind(node.propertyName); bindInitializer(node.initializer); bind(node.name); } function bindParameterFlow(node) { bindEach(node.modifiers); bind(node.dotDotDotToken); bind(node.questionToken); bind(node.type); bindInitializer(node.initializer); bind(node.name); } function bindInitializer(node) { if (!node) { return; } const entryFlow = currentFlow; bind(node); if (entryFlow === unreachableFlow || entryFlow === currentFlow) { return; } const exitFlow = createBranchLabel(); addAntecedent(exitFlow, entryFlow); addAntecedent(exitFlow, currentFlow); currentFlow = finishFlowLabel(exitFlow); } function bindJSDocTypeAlias(node) { bind(node.tagName); if (node.kind !== 341 && node.fullName) { setParent(node.fullName, node); setParentRecursive(node.fullName, false); } if (typeof node.comment !== "string") { bindEach(node.comment); } } function bindJSDocClassTag(node) { bindEachChild(node); const host = getHostSignatureFromJSDoc(node); if (host && host.kind !== 175) { addDeclarationToSymbol(host.symbol, host, 32); } } function bindJSDocImportTag(node) { bind(node.tagName); bind(node.moduleSpecifier); bind(node.attributes); if (typeof node.comment !== "string") { bindEach(node.comment); } } function bindOptionalExpression(node, trueTarget, falseTarget) { doWithConditionalBranches(bind, node, trueTarget, falseTarget); if (!isOptionalChain(node) || isOutermostOptionalChain(node)) { addAntecedent(trueTarget, createFlowCondition(32, currentFlow, node)); addAntecedent(falseTarget, createFlowCondition(64, currentFlow, node)); } } function bindOptionalChainRest(node) { switch (node.kind) { case 212: bind(node.questionDotToken); bind(node.name); break; case 213: bind(node.questionDotToken); bind(node.argumentExpression); break; case 214: bind(node.questionDotToken); bindEach(node.typeArguments); bindEach(node.arguments); break; } } function bindOptionalChain(node, trueTarget, falseTarget) { const preChainLabel = isOptionalChainRoot(node) ? createBranchLabel() : undefined; bindOptionalExpression(node.expression, preChainLabel || trueTarget, falseTarget); if (preChainLabel) { currentFlow = finishFlowLabel(preChainLabel); } doWithConditionalBranches(bindOptionalChainRest, node, trueTarget, falseTarget); if (isOutermostOptionalChain(node)) { addAntecedent(trueTarget, createFlowCondition(32, currentFlow, node)); addAntecedent(falseTarget, createFlowCondition(64, currentFlow, node)); } } function bindOptionalChainFlow(node) { if (isTopLevelLogicalExpression(node)) { const postExpressionLabel = createBranchLabel(); const saveCurrentFlow = currentFlow; const saveHasFlowEffects = hasFlowEffects; bindOptionalChain(node, postExpressionLabel, postExpressionLabel); currentFlow = hasFlowEffects ? finishFlowLabel(postExpressionLabel) : saveCurrentFlow; hasFlowEffects || (hasFlowEffects = saveHasFlowEffects); } else { bindOptionalChain(node, currentTrueTarget, currentFalseTarget); } } function bindNonNullExpressionFlow(node) { if (isOptionalChain(node)) { bindOptionalChainFlow(node); } else { bindEachChild(node); } } function bindAccessExpressionFlow(node) { if (isOptionalChain(node)) { bindOptionalChainFlow(node); } else { bindEachChild(node); } } function bindCallExpressionFlow(node) { if (isOptionalChain(node)) { bindOptionalChainFlow(node); } else { const expr = skipParentheses(node.expression); if (expr.kind === 219 || expr.kind === 220) { bindEach(node.typeArguments); bindEach(node.arguments); bind(node.expression); } else { bindEachChild(node); if (node.expression.kind === 108) { currentFlow = createFlowCall(currentFlow, node); } } } if (node.expression.kind === 212) { const propertyAccess = node.expression; if (isIdentifier(propertyAccess.name) && isNarrowableOperand(propertyAccess.expression) && isPushOrUnshiftIdentifier(propertyAccess.name)) { currentFlow = createFlowMutation(256, currentFlow, node); } } } function addToContainerChain(next) { if (lastContainer) { lastContainer.nextContainer = next; } lastContainer = next; } function declareSymbolAndAddToSymbolTable(node, symbolFlags, symbolExcludes) { switch (container.kind) { case 268: return declareModuleMember(node, symbolFlags, symbolExcludes); case 308: return declareSourceFileMember(node, symbolFlags, symbolExcludes); case 232: case 264: return declareClassMember(node, symbolFlags, symbolExcludes); case 267: return declareSymbol(container.symbol.exports, container.symbol, node, symbolFlags, symbolExcludes); case 188: case 323: case 211: case 265: case 293: return declareSymbol(container.symbol.members, container.symbol, node, symbolFlags, symbolExcludes); case 185: case 186: case 180: case 181: case 324: case 182: case 175: case 174: case 177: case 178: case 179: case 263: case 219: case 220: case 318: case 176: case 266: case 201: if (container.locals) Debug.assertNode(container, canHaveLocals); return declareSymbol(container.locals, undefined, node, symbolFlags, symbolExcludes); } } function declareClassMember(node, symbolFlags, symbolExcludes) { return isStatic(node) ? declareSymbol(container.symbol.exports, container.symbol, node, symbolFlags, symbolExcludes) : declareSymbol(container.symbol.members, container.symbol, node, symbolFlags, symbolExcludes); } function declareSourceFileMember(node, symbolFlags, symbolExcludes) { return isExternalModule(file) ? declareModuleMember(node, symbolFlags, symbolExcludes) : declareSymbol(file.locals, undefined, node, symbolFlags, symbolExcludes); } function hasExportDeclarations(node) { const body = isSourceFile(node) ? node : tryCast(node.body, isModuleBlock); return !!body && body.statements.some((s) => isExportDeclaration(s) || isExportAssignment(s)); } function setExportContextFlag(node) { if (node.flags & 33554432 && !hasExportDeclarations(node)) { node.flags |= 128; } else { node.flags &= ~128; } } function bindModuleDeclaration(node) { setExportContextFlag(node); if (isAmbientModule(node)) { if (hasSyntacticModifier(node, 32)) { errorOnFirstToken(node, Diagnostics.export_modifier_cannot_be_applied_to_ambient_modules_and_module_augmentations_since_they_are_always_visible); } if (isModuleAugmentationExternal(node)) { declareModuleSymbol(node); } else { let pattern; if (node.name.kind === 11) { const { text } = node.name; pattern = tryParsePattern(text); if (pattern === undefined) { errorOnFirstToken(node.name, Diagnostics.Pattern_0_can_have_at_most_one_Asterisk_character, text); } } const symbol = declareSymbolAndAddToSymbolTable(node, 512, 110735); file.patternAmbientModules = append(file.patternAmbientModules, pattern && !isString(pattern) ? { pattern, symbol } : undefined); } } else { const state = declareModuleSymbol(node); if (state !== 0) { const { symbol } = node; symbol.constEnumOnlyModule = !(symbol.flags & (16 | 32 | 256)) && state === 2 && symbol.constEnumOnlyModule !== false; } } } function declareModuleSymbol(node) { const state = getModuleInstanceState(node); const instantiated = state !== 0; declareSymbolAndAddToSymbolTable(node, instantiated ? 512 : 1024, instantiated ? 110735 : 0); return state; } function bindFunctionOrConstructorType(node) { const symbol = createSymbol(131072, getDeclarationName(node)); addDeclarationToSymbol(symbol, node, 131072); const typeLiteralSymbol = createSymbol(2048, "__type"); addDeclarationToSymbol(typeLiteralSymbol, node, 2048); typeLiteralSymbol.members = createSymbolTable(); typeLiteralSymbol.members.set(symbol.escapedName, symbol); } function bindObjectLiteralExpression(node) { return bindAnonymousDeclaration(node, 4096, "__object"); } function bindJsxAttributes(node) { return bindAnonymousDeclaration(node, 4096, "__jsxAttributes"); } function bindJsxAttribute(node, symbolFlags, symbolExcludes) { return declareSymbolAndAddToSymbolTable(node, symbolFlags, symbolExcludes); } function bindAnonymousDeclaration(node, symbolFlags, name) { const symbol = createSymbol(symbolFlags, name); if (symbolFlags & (8 | 106500)) { symbol.parent = container.symbol; } addDeclarationToSymbol(symbol, node, symbolFlags); return symbol; } function bindBlockScopedDeclaration(node, symbolFlags, symbolExcludes) { switch (blockScopeContainer.kind) { case 268: declareModuleMember(node, symbolFlags, symbolExcludes); break; case 308: if (isExternalOrCommonJsModule(container)) { declareModuleMember(node, symbolFlags, symbolExcludes); break; } default: Debug.assertNode(blockScopeContainer, canHaveLocals); if (!blockScopeContainer.locals) { blockScopeContainer.locals = createSymbolTable(); addToContainerChain(blockScopeContainer); } declareSymbol(blockScopeContainer.locals, undefined, node, symbolFlags, symbolExcludes); } } function delayedBindJSDocTypedefTag() { if (!delayedTypeAliases) { return; } const saveContainer = container; const saveLastContainer = lastContainer; const saveBlockScopeContainer = blockScopeContainer; const saveParent = parent2; const saveCurrentFlow = currentFlow; for (const typeAlias of delayedTypeAliases) { const host = typeAlias.parent.parent; container = getEnclosingContainer(host) || file; blockScopeContainer = getEnclosingBlockScopeContainer(host) || file; currentFlow = createFlowNode(2, undefined, undefined); parent2 = typeAlias; bind(typeAlias.typeExpression); const declName = getNameOfDeclaration(typeAlias); if ((isJSDocEnumTag(typeAlias) || !typeAlias.fullName) && declName && isPropertyAccessEntityNameExpression(declName.parent)) { const isTopLevel = isTopLevelNamespaceAssignment(declName.parent); if (isTopLevel) { bindPotentiallyMissingNamespaces(file.symbol, declName.parent, isTopLevel, !!findAncestor(declName, (d) => isPropertyAccessExpression(d) && d.name.escapedText === "prototype"), false); const oldContainer = container; switch (getAssignmentDeclarationPropertyAccessKind(declName.parent)) { case 1: case 2: if (!isExternalOrCommonJsModule(file)) { container = undefined; } else { container = file; } break; case 4: container = declName.parent.expression; break; case 3: container = declName.parent.expression.name; break; case 5: container = isExportsOrModuleExportsOrAlias(file, declName.parent.expression) ? file : isPropertyAccessExpression(declName.parent.expression) ? declName.parent.expression.name : declName.parent.expression; break; case 0: return Debug.fail("Shouldn't have detected typedef or enum on non-assignment declaration"); } if (container) { declareModuleMember(typeAlias, 524288, 788968); } container = oldContainer; } } else if (isJSDocEnumTag(typeAlias) || !typeAlias.fullName || typeAlias.fullName.kind === 80) { parent2 = typeAlias.parent; bindBlockScopedDeclaration(typeAlias, 524288, 788968); } else { bind(typeAlias.fullName); } } container = saveContainer; lastContainer = saveLastContainer; blockScopeContainer = saveBlockScopeContainer; parent2 = saveParent; currentFlow = saveCurrentFlow; } function bindJSDocImports() { if (jsDocImports === undefined) { return; } const saveContainer = container; const saveLastContainer = lastContainer; const saveBlockScopeContainer = blockScopeContainer; const saveParent = parent2; const saveCurrentFlow = currentFlow; for (const jsDocImportTag of jsDocImports) { const host = getJSDocHost(jsDocImportTag); const enclosingContainer = host ? getEnclosingContainer(host) : undefined; const enclosingBlockScopeContainer = host ? getEnclosingBlockScopeContainer(host) : undefined; container = enclosingContainer || file; blockScopeContainer = enclosingBlockScopeContainer || file; currentFlow = createFlowNode(2, undefined, undefined); parent2 = jsDocImportTag; bind(jsDocImportTag.importClause); } container = saveContainer; lastContainer = saveLastContainer; blockScopeContainer = saveBlockScopeContainer; parent2 = saveParent; currentFlow = saveCurrentFlow; } function checkContextualIdentifier(node) { if (!file.parseDiagnostics.length && !(node.flags & 33554432) && !(node.flags & 16777216) && !isIdentifierName(node)) { const originalKeywordKind = identifierToKeywordKind(node); if (originalKeywordKind === undefined) { return; } if (inStrictMode && originalKeywordKind >= 119 && originalKeywordKind <= 127) { file.bindDiagnostics.push(createDiagnosticForNode2(node, getStrictModeIdentifierMessage(node), declarationNameToString(node))); } else if (originalKeywordKind === 135) { if (isExternalModule(file) && isInTopLevelContext(node)) { file.bindDiagnostics.push(createDiagnosticForNode2(node, Diagnostics.Identifier_expected_0_is_a_reserved_word_at_the_top_level_of_a_module, declarationNameToString(node))); } else if (node.flags & 65536) { file.bindDiagnostics.push(createDiagnosticForNode2(node, Diagnostics.Identifier_expected_0_is_a_reserved_word_that_cannot_be_used_here, declarationNameToString(node))); } } else if (originalKeywordKind === 127 && node.flags & 16384) { file.bindDiagnostics.push(createDiagnosticForNode2(node, Diagnostics.Identifier_expected_0_is_a_reserved_word_that_cannot_be_used_here, declarationNameToString(node))); } } } function getStrictModeIdentifierMessage(node) { if (getContainingClass(node)) { return Diagnostics.Identifier_expected_0_is_a_reserved_word_in_strict_mode_Class_definitions_are_automatically_in_strict_mode; } if (file.externalModuleIndicator) { return Diagnostics.Identifier_expected_0_is_a_reserved_word_in_strict_mode_Modules_are_automatically_in_strict_mode; } return Diagnostics.Identifier_expected_0_is_a_reserved_word_in_strict_mode; } function checkPrivateIdentifier(node) { if (node.escapedText === "#constructor") { if (!file.parseDiagnostics.length) { file.bindDiagnostics.push(createDiagnosticForNode2(node, Diagnostics.constructor_is_a_reserved_word, declarationNameToString(node))); } } } function checkStrictModeBinaryExpression(node) { if (inStrictMode && isLeftHandSideExpression(node.left) && isAssignmentOperator(node.operatorToken.kind)) { checkStrictModeEvalOrArguments(node, node.left); } } function checkStrictModeCatchClause(node) { if (inStrictMode && node.variableDeclaration) { checkStrictModeEvalOrArguments(node, node.variableDeclaration.name); } } function checkStrictModeDeleteExpression(node) { if (inStrictMode && node.expression.kind === 80) { const span = getErrorSpanForNode(file, node.expression); file.bindDiagnostics.push(createFileDiagnostic(file, span.start, span.length, Diagnostics.delete_cannot_be_called_on_an_identifier_in_strict_mode)); } } function isEvalOrArgumentsIdentifier(node) { return isIdentifier(node) && (node.escapedText === "eval" || node.escapedText === "arguments"); } function checkStrictModeEvalOrArguments(contextNode, name) { if (name && name.kind === 80) { const identifier = name; if (isEvalOrArgumentsIdentifier(identifier)) { const span = getErrorSpanForNode(file, name); file.bindDiagnostics.push(createFileDiagnostic(file, span.start, span.length, getStrictModeEvalOrArgumentsMessage(contextNode), idText(identifier))); } } } function getStrictModeEvalOrArgumentsMessage(node) { if (getContainingClass(node)) { return Diagnostics.Code_contained_in_a_class_is_evaluated_in_JavaScript_s_strict_mode_which_does_not_allow_this_use_of_0_For_more_information_see_https_Colon_Slash_Slashdeveloper_mozilla_org_Slashen_US_Slashdocs_SlashWeb_SlashJavaScript_SlashReference_SlashStrict_mode; } if (file.externalModuleIndicator) { return Diagnostics.Invalid_use_of_0_Modules_are_automatically_in_strict_mode; } return Diagnostics.Invalid_use_of_0_in_strict_mode; } function checkStrictModeFunctionName(node) { if (inStrictMode && !(node.flags & 33554432)) { checkStrictModeEvalOrArguments(node, node.name); } } function getStrictModeBlockScopeFunctionDeclarationMessage(node) { if (getContainingClass(node)) { return Diagnostics.Function_declarations_are_not_allowed_inside_blocks_in_strict_mode_when_targeting_ES5_Class_definitions_are_automatically_in_strict_mode; } if (file.externalModuleIndicator) { return Diagnostics.Function_declarations_are_not_allowed_inside_blocks_in_strict_mode_when_targeting_ES5_Modules_are_automatically_in_strict_mode; } return Diagnostics.Function_declarations_are_not_allowed_inside_blocks_in_strict_mode_when_targeting_ES5; } function checkStrictModeFunctionDeclaration(node) { if (languageVersion < 2) { if (blockScopeContainer.kind !== 308 && blockScopeContainer.kind !== 268 && !isFunctionLikeOrClassStaticBlockDeclaration(blockScopeContainer)) { const errorSpan = getErrorSpanForNode(file, node); file.bindDiagnostics.push(createFileDiagnostic(file, errorSpan.start, errorSpan.length, getStrictModeBlockScopeFunctionDeclarationMessage(node))); } } } function checkStrictModePostfixUnaryExpression(node) { if (inStrictMode) { checkStrictModeEvalOrArguments(node, node.operand); } } function checkStrictModePrefixUnaryExpression(node) { if (inStrictMode) { if (node.operator === 46 || node.operator === 47) { checkStrictModeEvalOrArguments(node, node.operand); } } } function checkStrictModeWithStatement(node) { if (inStrictMode) { errorOnFirstToken(node, Diagnostics.with_statements_are_not_allowed_in_strict_mode); } } function checkStrictModeLabeledStatement(node) { if (inStrictMode && getEmitScriptTarget(options) >= 2) { if (isDeclarationStatement(node.statement) || isVariableStatement(node.statement)) { errorOnFirstToken(node.label, Diagnostics.A_label_is_not_allowed_here); } } } function errorOnFirstToken(node, message, ...args) { const span = getSpanOfTokenAtPosition(file, node.pos); file.bindDiagnostics.push(createFileDiagnostic(file, span.start, span.length, message, ...args)); } function bind(node) { if (!node) { return; } setParent(node, parent2); if (tracing) node.tracingPath = file.path; const saveInStrictMode = inStrictMode; bindWorker(node); if (node.kind > 166) { const saveParent = parent2; parent2 = node; const containerFlags = getContainerFlags(node); if (containerFlags === 0) { bindChildren(node); } else { bindContainer(node, containerFlags); } parent2 = saveParent; } else { const saveParent = parent2; if (node.kind === 1) parent2 = node; bindJSDoc(node); parent2 = saveParent; } inStrictMode = saveInStrictMode; } function bindJSDoc(node) { if (hasJSDocNodes(node)) { if (isInJSFile(node)) { for (const j of node.jsDoc) { bind(j); } } else { for (const j of node.jsDoc) { setParent(j, node); setParentRecursive(j, false); } } } } function updateStrictModeStatementList(statements) { if (!inStrictMode) { for (const statement of statements) { if (!isPrologueDirective(statement)) { return; } if (isUseStrictPrologueDirective(statement)) { inStrictMode = true; return; } } } } function isUseStrictPrologueDirective(node) { const nodeText2 = getSourceTextOfNodeFromSourceFile(file, node.expression); return nodeText2 === '"use strict"' || nodeText2 === "'use strict'"; } function bindWorker(node) { switch (node.kind) { case 80: if (node.flags & 4096) { let parentNode = node.parent; while (parentNode && !isJSDocTypeAlias(parentNode)) { parentNode = parentNode.parent; } bindBlockScopedDeclaration(parentNode, 524288, 788968); break; } case 110: if (node.kind === 110) { seenThisKeyword = true; } if (currentFlow && (isExpression(node) || parent2.kind === 305)) { node.flowNode = currentFlow; } return checkContextualIdentifier(node); case 167: if (currentFlow && isPartOfTypeQuery(node)) { node.flowNode = currentFlow; } break; case 237: case 108: node.flowNode = currentFlow; break; case 81: return checkPrivateIdentifier(node); case 212: case 213: const expr = node; if (currentFlow && isNarrowableReference(expr)) { expr.flowNode = currentFlow; } if (isSpecialPropertyDeclaration(expr)) { bindSpecialPropertyDeclaration(expr); } if (isInJSFile(expr) && file.commonJsModuleIndicator && isModuleExportsAccessExpression(expr) && !lookupSymbolForName(blockScopeContainer, "module")) { declareSymbol(file.locals, undefined, expr.expression, 1 | 134217728, 111550); } break; case 227: const specialKind = getAssignmentDeclarationKind(node); switch (specialKind) { case 1: bindExportsPropertyAssignment(node); break; case 2: bindModuleExportsAssignment(node); break; case 3: bindPrototypePropertyAssignment(node.left, node); break; case 6: bindPrototypeAssignment(node); break; case 4: bindThisPropertyAssignment(node); break; case 5: const expression = node.left.expression; if (isInJSFile(node) && isIdentifier(expression)) { const symbol = lookupSymbolForName(blockScopeContainer, expression.escapedText); if (isThisInitializedDeclaration(symbol == null ? undefined : symbol.valueDeclaration)) { bindThisPropertyAssignment(node); break; } } bindSpecialPropertyAssignment(node); break; case 0: break; default: Debug.fail("Unknown binary expression special property assignment kind"); } return checkStrictModeBinaryExpression(node); case 300: return checkStrictModeCatchClause(node); case 221: return checkStrictModeDeleteExpression(node); case 226: return checkStrictModePostfixUnaryExpression(node); case 225: return checkStrictModePrefixUnaryExpression(node); case 255: return checkStrictModeWithStatement(node); case 257: return checkStrictModeLabeledStatement(node); case 198: seenThisKeyword = true; return; case 183: break; case 169: return bindTypeParameter(node); case 170: return bindParameter(node); case 261: return bindVariableDeclarationOrBindingElement(node); case 209: node.flowNode = currentFlow; return bindVariableDeclarationOrBindingElement(node); case 173: case 172: return bindPropertyWorker(node); case 304: case 305: return bindPropertyOrMethodOrAccessor(node, 4, 0); case 307: return bindPropertyOrMethodOrAccessor(node, 8, 900095); case 180: case 181: case 182: return declareSymbolAndAddToSymbolTable(node, 131072, 0); case 175: case 174: return bindPropertyOrMethodOrAccessor(node, 8192 | (node.questionToken ? 16777216 : 0), isObjectLiteralMethod(node) ? 0 : 103359); case 263: return bindFunctionDeclaration(node); case 177: return declareSymbolAndAddToSymbolTable(node, 16384, 0); case 178: return bindPropertyOrMethodOrAccessor(node, 32768, 46015); case 179: return bindPropertyOrMethodOrAccessor(node, 65536, 78783); case 185: case 318: case 324: case 186: return bindFunctionOrConstructorType(node); case 188: case 323: case 201: return bindAnonymousTypeWorker(node); case 333: return bindJSDocClassTag(node); case 211: return bindObjectLiteralExpression(node); case 219: case 220: return bindFunctionExpression(node); case 214: const assignmentKind = getAssignmentDeclarationKind(node); switch (assignmentKind) { case 7: return bindObjectDefinePropertyAssignment(node); case 8: return bindObjectDefinePropertyExport(node); case 9: return bindObjectDefinePrototypeProperty(node); case 0: break; default: return Debug.fail("Unknown call expression assignment declaration kind"); } if (isInJSFile(node)) { bindCallExpression(node); } break; case 232: case 264: inStrictMode = true; return bindClassLikeDeclaration(node); case 265: return bindBlockScopedDeclaration(node, 64, 788872); case 266: return bindBlockScopedDeclaration(node, 524288, 788968); case 267: return bindEnumDeclaration(node); case 268: return bindModuleDeclaration(node); case 293: return bindJsxAttributes(node); case 292: return bindJsxAttribute(node, 4, 0); case 272: case 275: case 277: case 282: return declareSymbolAndAddToSymbolTable(node, 2097152, 2097152); case 271: return bindNamespaceExportDeclaration(node); case 274: return bindImportClause(node); case 279: return bindExportDeclaration(node); case 278: return bindExportAssignment(node); case 308: updateStrictModeStatementList(node.statements); return bindSourceFileIfExternalModule(); case 242: if (!isFunctionLikeOrClassStaticBlockDeclaration(node.parent)) { return; } case 269: return updateStrictModeStatementList(node.statements); case 342: if (node.parent.kind === 324) { return bindParameter(node); } if (node.parent.kind !== 323) { break; } case 349: const propTag = node; const flags = propTag.isBracketed || propTag.typeExpression && propTag.typeExpression.type.kind === 317 ? 4 | 16777216 : 4; return declareSymbolAndAddToSymbolTable(propTag, flags, 0); case 347: case 339: case 341: return (delayedTypeAliases || (delayedTypeAliases = [])).push(node); case 340: return bind(node.typeExpression); case 352: return (jsDocImports || (jsDocImports = [])).push(node); } } function bindPropertyWorker(node) { const isAutoAccessor = isAutoAccessorPropertyDeclaration(node); const includes = isAutoAccessor ? 98304 : 4; const excludes = isAutoAccessor ? 13247 : 0; return bindPropertyOrMethodOrAccessor(node, includes | (node.questionToken ? 16777216 : 0), excludes); } function bindAnonymousTypeWorker(node) { return bindAnonymousDeclaration(node, 2048, "__type"); } function bindSourceFileIfExternalModule() { setExportContextFlag(file); if (isExternalModule(file)) { bindSourceFileAsExternalModule(); } else if (isJsonSourceFile(file)) { bindSourceFileAsExternalModule(); const originalSymbol = file.symbol; declareSymbol(file.symbol.exports, file.symbol, file, 4, -1); file.symbol = originalSymbol; } } function bindSourceFileAsExternalModule() { bindAnonymousDeclaration(file, 512, `"${removeFileExtension(file.fileName)}"`); } function bindExportAssignment(node) { if (!container.symbol || !container.symbol.exports) { bindAnonymousDeclaration(node, 111551, getDeclarationName(node)); } else { const flags = exportAssignmentIsAlias(node) ? 2097152 : 4; const symbol = declareSymbol(container.symbol.exports, container.symbol, node, flags, -1); if (node.isExportEquals) { setValueDeclaration(symbol, node); } } } function bindNamespaceExportDeclaration(node) { if (some(node.modifiers)) { file.bindDiagnostics.push(createDiagnosticForNode2(node, Diagnostics.Modifiers_cannot_appear_here)); } const diag2 = !isSourceFile(node.parent) ? Diagnostics.Global_module_exports_may_only_appear_at_top_level : !isExternalModule(node.parent) ? Diagnostics.Global_module_exports_may_only_appear_in_module_files : !node.parent.isDeclarationFile ? Diagnostics.Global_module_exports_may_only_appear_in_declaration_files : undefined; if (diag2) { file.bindDiagnostics.push(createDiagnosticForNode2(node, diag2)); } else { file.symbol.globalExports = file.symbol.globalExports || createSymbolTable(); declareSymbol(file.symbol.globalExports, file.symbol, node, 2097152, 2097152); } } function bindExportDeclaration(node) { if (!container.symbol || !container.symbol.exports) { bindAnonymousDeclaration(node, 8388608, getDeclarationName(node)); } else if (!node.exportClause) { declareSymbol(container.symbol.exports, container.symbol, node, 8388608, 0); } else if (isNamespaceExport(node.exportClause)) { setParent(node.exportClause, node); declareSymbol(container.symbol.exports, container.symbol, node.exportClause, 2097152, 2097152); } } function bindImportClause(node) { if (node.name) { declareSymbolAndAddToSymbolTable(node, 2097152, 2097152); } } function setCommonJsModuleIndicator(node) { if (file.externalModuleIndicator && file.externalModuleIndicator !== true) { return false; } if (!file.commonJsModuleIndicator) { file.commonJsModuleIndicator = node; if (!file.externalModuleIndicator) { bindSourceFileAsExternalModule(); } } return true; } function bindObjectDefinePropertyExport(node) { if (!setCommonJsModuleIndicator(node)) { return; } const symbol = forEachIdentifierInEntityName(node.arguments[0], undefined, (id, symbol2) => { if (symbol2) { addDeclarationToSymbol(symbol2, id, 1536 | 67108864); } return symbol2; }); if (symbol) { const flags = 4 | 1048576; declareSymbol(symbol.exports, symbol, node, flags, 0); } } function bindExportsPropertyAssignment(node) { if (!setCommonJsModuleIndicator(node)) { return; } const symbol = forEachIdentifierInEntityName(node.left.expression, undefined, (id, symbol2) => { if (symbol2) { addDeclarationToSymbol(symbol2, id, 1536 | 67108864); } return symbol2; }); if (symbol) { const isAlias = isAliasableExpression(node.right) && (isExportsIdentifier(node.left.expression) || isModuleExportsAccessExpression(node.left.expression)); const flags = isAlias ? 2097152 : 4 | 1048576; setParent(node.left, node); declareSymbol(symbol.exports, symbol, node.left, flags, 0); } } function bindModuleExportsAssignment(node) { if (!setCommonJsModuleIndicator(node)) { return; } const assignedExpression = getRightMostAssignedExpression(node.right); if (isEmptyObjectLiteral(assignedExpression) || container === file && isExportsOrModuleExportsOrAlias(file, assignedExpression)) { return; } if (isObjectLiteralExpression(assignedExpression) && every(assignedExpression.properties, isShorthandPropertyAssignment)) { forEach(assignedExpression.properties, bindExportAssignedObjectMemberAlias); return; } const flags = exportAssignmentIsAlias(node) ? 2097152 : 4 | 1048576 | 512; const symbol = declareSymbol(file.symbol.exports, file.symbol, node, flags | 67108864, 0); setValueDeclaration(symbol, node); } function bindExportAssignedObjectMemberAlias(node) { declareSymbol(file.symbol.exports, file.symbol, node, 2097152 | 67108864, 0); } function bindThisPropertyAssignment(node) { Debug.assert(isInJSFile(node)); const hasPrivateIdentifier = isBinaryExpression(node) && isPropertyAccessExpression(node.left) && isPrivateIdentifier(node.left.name) || isPropertyAccessExpression(node) && isPrivateIdentifier(node.name); if (hasPrivateIdentifier) { return; } const thisContainer = getThisContainer(node, false, false); switch (thisContainer.kind) { case 263: case 219: let constructorSymbol = thisContainer.symbol; if (isBinaryExpression(thisContainer.parent) && thisContainer.parent.operatorToken.kind === 64) { const l = thisContainer.parent.left; if (isBindableStaticAccessExpression(l) && isPrototypeAccess(l.expression)) { constructorSymbol = lookupSymbolForPropertyAccess(l.expression.expression, thisParentContainer); } } if (constructorSymbol && constructorSymbol.valueDeclaration) { constructorSymbol.members = constructorSymbol.members || createSymbolTable(); if (hasDynamicName(node)) { bindDynamicallyNamedThisPropertyAssignment(node, constructorSymbol, constructorSymbol.members); } else { declareSymbol(constructorSymbol.members, constructorSymbol, node, 4 | 67108864, 0 & ~4); } addDeclarationToSymbol(constructorSymbol, constructorSymbol.valueDeclaration, 32); } break; case 177: case 173: case 175: case 178: case 179: case 176: const containingClass = thisContainer.parent; const symbolTable = isStatic(thisContainer) ? containingClass.symbol.exports : containingClass.symbol.members; if (hasDynamicName(node)) { bindDynamicallyNamedThisPropertyAssignment(node, containingClass.symbol, symbolTable); } else { declareSymbol(symbolTable, containingClass.symbol, node, 4 | 67108864, 0, true); } break; case 308: if (hasDynamicName(node)) { break; } else if (thisContainer.commonJsModuleIndicator) { declareSymbol(thisContainer.symbol.exports, thisContainer.symbol, node, 4 | 1048576, 0); } else { declareSymbolAndAddToSymbolTable(node, 1, 111550); } break; case 268: break; default: Debug.failBadSyntaxKind(thisContainer); } } function bindDynamicallyNamedThisPropertyAssignment(node, symbol, symbolTable) { declareSymbol(symbolTable, symbol, node, 4, 0, true, true); addLateBoundAssignmentDeclarationToSymbol(node, symbol); } function addLateBoundAssignmentDeclarationToSymbol(node, symbol) { if (symbol) { (symbol.assignmentDeclarationMembers || (symbol.assignmentDeclarationMembers = /* @__PURE__ */ new Map)).set(getNodeId(node), node); } } function bindSpecialPropertyDeclaration(node) { if (node.expression.kind === 110) { bindThisPropertyAssignment(node); } else if (isBindableStaticAccessExpression(node) && node.parent.parent.kind === 308) { if (isPrototypeAccess(node.expression)) { bindPrototypePropertyAssignment(node, node.parent); } else { bindStaticPropertyAssignment(node); } } } function bindPrototypeAssignment(node) { setParent(node.left, node); setParent(node.right, node); bindPropertyAssignment(node.left.expression, node.left, false, true); } function bindObjectDefinePrototypeProperty(node) { const namespaceSymbol = lookupSymbolForPropertyAccess(node.arguments[0].expression); if (namespaceSymbol && namespaceSymbol.valueDeclaration) { addDeclarationToSymbol(namespaceSymbol, namespaceSymbol.valueDeclaration, 32); } bindPotentiallyNewExpandoMemberToNamespace(node, namespaceSymbol, true); } function bindPrototypePropertyAssignment(lhs, parent3) { const classPrototype = lhs.expression; const constructorFunction = classPrototype.expression; setParent(constructorFunction, classPrototype); setParent(classPrototype, lhs); setParent(lhs, parent3); bindPropertyAssignment(constructorFunction, lhs, true, true); } function bindObjectDefinePropertyAssignment(node) { let namespaceSymbol = lookupSymbolForPropertyAccess(node.arguments[0]); const isToplevel = node.parent.parent.kind === 308; namespaceSymbol = bindPotentiallyMissingNamespaces(namespaceSymbol, node.arguments[0], isToplevel, false, false); bindPotentiallyNewExpandoMemberToNamespace(node, namespaceSymbol, false); } function bindSpecialPropertyAssignment(node) { var _a; const parentSymbol = lookupSymbolForPropertyAccess(node.left.expression, blockScopeContainer) || lookupSymbolForPropertyAccess(node.left.expression, container); if (!isInJSFile(node) && !isFunctionSymbol(parentSymbol)) { return; } const rootExpr = getLeftmostAccessExpression(node.left); if (isIdentifier(rootExpr) && ((_a = lookupSymbolForName(container, rootExpr.escapedText)) == null ? undefined : _a.flags) & 2097152) { return; } setParent(node.left, node); setParent(node.right, node); if (isIdentifier(node.left.expression) && container === file && isExportsOrModuleExportsOrAlias(file, node.left.expression)) { bindExportsPropertyAssignment(node); } else if (hasDynamicName(node)) { bindAnonymousDeclaration(node, 4 | 67108864, "__computed"); const sym = bindPotentiallyMissingNamespaces(parentSymbol, node.left.expression, isTopLevelNamespaceAssignment(node.left), false, false); addLateBoundAssignmentDeclarationToSymbol(node, sym); } else { bindStaticPropertyAssignment(cast(node.left, isBindableStaticNameExpression)); } } function bindStaticPropertyAssignment(node) { Debug.assert(!isIdentifier(node)); setParent(node.expression, node); bindPropertyAssignment(node.expression, node, false, false); } function bindPotentiallyMissingNamespaces(namespaceSymbol, entityName, isToplevel, isPrototypeProperty, containerIsClass) { if ((namespaceSymbol == null ? undefined : namespaceSymbol.flags) & 2097152) { return namespaceSymbol; } if (isToplevel && !isPrototypeProperty) { const flags = 1536 | 67108864; const excludeFlags = 110735 & ~67108864; namespaceSymbol = forEachIdentifierInEntityName(entityName, namespaceSymbol, (id, symbol, parent3) => { if (symbol) { addDeclarationToSymbol(symbol, id, flags); return symbol; } else { const table = parent3 ? parent3.exports : file.jsGlobalAugmentations || (file.jsGlobalAugmentations = createSymbolTable()); return declareSymbol(table, parent3, id, flags, excludeFlags); } }); } if (containerIsClass && namespaceSymbol && namespaceSymbol.valueDeclaration) { addDeclarationToSymbol(namespaceSymbol, namespaceSymbol.valueDeclaration, 32); } return namespaceSymbol; } function bindPotentiallyNewExpandoMemberToNamespace(declaration, namespaceSymbol, isPrototypeProperty) { if (!namespaceSymbol || !isExpandoSymbol(namespaceSymbol)) { return; } const symbolTable = isPrototypeProperty ? namespaceSymbol.members || (namespaceSymbol.members = createSymbolTable()) : namespaceSymbol.exports || (namespaceSymbol.exports = createSymbolTable()); let includes = 0; let excludes = 0; if (isFunctionLikeDeclaration(getAssignedExpandoInitializer(declaration))) { includes = 8192; excludes = 103359; } else if (isCallExpression(declaration) && isBindableObjectDefinePropertyCall(declaration)) { if (some(declaration.arguments[2].properties, (p) => { const id = getNameOfDeclaration(p); return !!id && isIdentifier(id) && idText(id) === "set"; })) { includes |= 65536 | 4; excludes |= 78783; } if (some(declaration.arguments[2].properties, (p) => { const id = getNameOfDeclaration(p); return !!id && isIdentifier(id) && idText(id) === "get"; })) { includes |= 32768 | 4; excludes |= 46015; } } if (includes === 0) { includes = 4; excludes = 0; } declareSymbol(symbolTable, namespaceSymbol, declaration, includes | 67108864, excludes & ~67108864); } function isTopLevelNamespaceAssignment(propertyAccess) { return isBinaryExpression(propertyAccess.parent) ? getParentOfBinaryExpression(propertyAccess.parent).parent.kind === 308 : propertyAccess.parent.parent.kind === 308; } function bindPropertyAssignment(name, propertyAccess, isPrototypeProperty, containerIsClass) { let namespaceSymbol = lookupSymbolForPropertyAccess(name, blockScopeContainer) || lookupSymbolForPropertyAccess(name, container); const isToplevel = isTopLevelNamespaceAssignment(propertyAccess); namespaceSymbol = bindPotentiallyMissingNamespaces(namespaceSymbol, propertyAccess.expression, isToplevel, isPrototypeProperty, containerIsClass); bindPotentiallyNewExpandoMemberToNamespace(propertyAccess, namespaceSymbol, isPrototypeProperty); } function isExpandoSymbol(symbol) { if (symbol.flags & (16 | 32 | 1024)) { return true; } const node = symbol.valueDeclaration; if (node && isCallExpression(node)) { return !!getAssignedExpandoInitializer(node); } let init = !node ? undefined : isVariableDeclaration(node) ? node.initializer : isBinaryExpression(node) ? node.right : isPropertyAccessExpression(node) && isBinaryExpression(node.parent) ? node.parent.right : undefined; init = init && getRightMostAssignedExpression(init); if (init) { const isPrototypeAssignment = isPrototypeAccess(isVariableDeclaration(node) ? node.name : isBinaryExpression(node) ? node.left : node); return !!getExpandoInitializer(isBinaryExpression(init) && (init.operatorToken.kind === 57 || init.operatorToken.kind === 61) ? init.right : init, isPrototypeAssignment); } return false; } function getParentOfBinaryExpression(expr) { while (isBinaryExpression(expr.parent)) { expr = expr.parent; } return expr.parent; } function lookupSymbolForPropertyAccess(node, lookupContainer = container) { if (isIdentifier(node)) { return lookupSymbolForName(lookupContainer, node.escapedText); } else { const symbol = lookupSymbolForPropertyAccess(node.expression); return symbol && symbol.exports && symbol.exports.get(getElementOrPropertyAccessName(node)); } } function forEachIdentifierInEntityName(e, parent3, action) { if (isExportsOrModuleExportsOrAlias(file, e)) { return file.symbol; } else if (isIdentifier(e)) { return action(e, lookupSymbolForPropertyAccess(e), parent3); } else { const s = forEachIdentifierInEntityName(e.expression, parent3, action); const name = getNameOrArgument(e); if (isPrivateIdentifier(name)) { Debug.fail("unexpected PrivateIdentifier"); } return action(name, s && s.exports && s.exports.get(getElementOrPropertyAccessName(e)), s); } } function bindCallExpression(node) { if (!file.commonJsModuleIndicator && isRequireCall(node, false)) { setCommonJsModuleIndicator(node); } } function bindClassLikeDeclaration(node) { if (node.kind === 264) { bindBlockScopedDeclaration(node, 32, 899503); } else { const bindingName = node.name ? node.name.escapedText : "__class"; bindAnonymousDeclaration(node, 32, bindingName); if (node.name) { classifiableNames.add(node.name.escapedText); } } const { symbol } = node; const prototypeSymbol = createSymbol(4 | 4194304, "prototype"); const symbolExport = symbol.exports.get(prototypeSymbol.escapedName); if (symbolExport) { if (node.name) { setParent(node.name, node); } file.bindDiagnostics.push(createDiagnosticForNode2(symbolExport.declarations[0], Diagnostics.Duplicate_identifier_0, symbolName(prototypeSymbol))); } symbol.exports.set(prototypeSymbol.escapedName, prototypeSymbol); prototypeSymbol.parent = symbol; } function bindEnumDeclaration(node) { return isEnumConst(node) ? bindBlockScopedDeclaration(node, 128, 899967) : bindBlockScopedDeclaration(node, 256, 899327); } function bindVariableDeclarationOrBindingElement(node) { if (inStrictMode) { checkStrictModeEvalOrArguments(node, node.name); } if (!isBindingPattern(node.name)) { const possibleVariableDecl = node.kind === 261 ? node : node.parent.parent; if (isInJSFile(node) && isVariableDeclarationInitializedToBareOrAccessedRequire(possibleVariableDecl) && !getJSDocTypeTag(node) && !(getCombinedModifierFlags(node) & 32)) { declareSymbolAndAddToSymbolTable(node, 2097152, 2097152); } else if (isBlockOrCatchScoped(node)) { bindBlockScopedDeclaration(node, 2, 111551); } else if (isPartOfParameterDeclaration(node)) { declareSymbolAndAddToSymbolTable(node, 1, 111551); } else { declareSymbolAndAddToSymbolTable(node, 1, 111550); } } } function bindParameter(node) { if (node.kind === 342 && container.kind !== 324) { return; } if (inStrictMode && !(node.flags & 33554432)) { checkStrictModeEvalOrArguments(node, node.name); } if (isBindingPattern(node.name)) { bindAnonymousDeclaration(node, 1, "__" + node.parent.parameters.indexOf(node)); } else { declareSymbolAndAddToSymbolTable(node, 1, 111551); } if (isParameterPropertyDeclaration(node, node.parent)) { const classDeclaration = node.parent.parent; declareSymbol(classDeclaration.symbol.members, classDeclaration.symbol, node, 4 | (node.questionToken ? 16777216 : 0), 0); } } function bindFunctionDeclaration(node) { if (!file.isDeclarationFile && !(node.flags & 33554432)) { if (isAsyncFunction(node)) { emitFlags |= 4096; } } checkStrictModeFunctionName(node); if (inStrictMode) { checkStrictModeFunctionDeclaration(node); bindBlockScopedDeclaration(node, 16, 110991); } else { declareSymbolAndAddToSymbolTable(node, 16, 110991); } } function bindFunctionExpression(node) { if (!file.isDeclarationFile && !(node.flags & 33554432)) { if (isAsyncFunction(node)) { emitFlags |= 4096; } } if (currentFlow) { node.flowNode = currentFlow; } checkStrictModeFunctionName(node); const bindingName = node.name ? node.name.escapedText : "__function"; return bindAnonymousDeclaration(node, 16, bindingName); } function bindPropertyOrMethodOrAccessor(node, symbolFlags, symbolExcludes) { if (!file.isDeclarationFile && !(node.flags & 33554432) && isAsyncFunction(node)) { emitFlags |= 4096; } if (currentFlow && isObjectLiteralOrClassExpressionMethodOrAccessor(node)) { node.flowNode = currentFlow; } return hasDynamicName(node) ? bindAnonymousDeclaration(node, symbolFlags, "__computed") : declareSymbolAndAddToSymbolTable(node, symbolFlags, symbolExcludes); } function getInferTypeContainer(node) { const extendsType = findAncestor(node, (n) => n.parent && isConditionalTypeNode(n.parent) && n.parent.extendsType === n); return extendsType && extendsType.parent; } function bindTypeParameter(node) { if (isJSDocTemplateTag(node.parent)) { const container2 = getEffectiveContainerForJSDocTemplateTag(node.parent); if (container2) { Debug.assertNode(container2, canHaveLocals); container2.locals ?? (container2.locals = createSymbolTable()); declareSymbol(container2.locals, undefined, node, 262144, 526824); } else { declareSymbolAndAddToSymbolTable(node, 262144, 526824); } } else if (node.parent.kind === 196) { const container2 = getInferTypeContainer(node.parent); if (container2) { Debug.assertNode(container2, canHaveLocals); container2.locals ?? (container2.locals = createSymbolTable()); declareSymbol(container2.locals, undefined, node, 262144, 526824); } else { bindAnonymousDeclaration(node, 262144, getDeclarationName(node)); } } else { declareSymbolAndAddToSymbolTable(node, 262144, 526824); } } } function isExportsOrModuleExportsOrAlias(sourceFile, node) { let i = 0; const q = createQueue(); q.enqueue(node); while (!q.isEmpty() && i < 100) { i++; node = q.dequeue(); if (isExportsIdentifier(node) || isModuleExportsAccessExpression(node)) { return true; } else if (isIdentifier(node)) { const symbol = lookupSymbolForName(sourceFile, node.escapedText); if (!!symbol && !!symbol.valueDeclaration && isVariableDeclaration(symbol.valueDeclaration) && !!symbol.valueDeclaration.initializer) { const init = symbol.valueDeclaration.initializer; q.enqueue(init); if (isAssignmentExpression(init, true)) { q.enqueue(init.left); q.enqueue(init.right); } } } } return false; } function getContainerFlags(node) { switch (node.kind) { case 232: case 264: case 267: case 211: case 188: case 323: case 293: return 1; case 265: return 1 | 64; case 268: case 266: case 201: case 182: return 1 | 32; case 308: return 1 | 4 | 32; case 178: case 179: case 175: if (isObjectLiteralOrClassExpressionMethodOrAccessor(node)) { return 1 | 4 | 32 | 8 | 128; } case 177: case 263: case 176: return 1 | 4 | 32 | 8; case 174: case 180: case 324: case 318: case 185: case 181: case 186: return 1 | 4 | 32 | 8 | 256; case 352: return 1 | 4 | 32 | 256; case 219: return 1 | 4 | 32 | 8 | 16; case 220: return 1 | 4 | 32 | 8 | 16 | 256; case 269: return 4; case 173: return node.initializer ? 4 : 0; case 300: case 249: case 250: case 251: case 270: return 2 | 32; case 242: return isFunctionLike(node.parent) || isClassStaticBlockDeclaration(node.parent) ? 0 : 2 | 32; } return 0; } function lookupSymbolForName(container, name) { var _a, _b, _c, _d; const local = (_b = (_a = tryCast(container, canHaveLocals)) == null ? undefined : _a.locals) == null ? undefined : _b.get(name); if (local) { return local.exportSymbol ?? local; } if (isSourceFile(container) && container.jsGlobalAugmentations && container.jsGlobalAugmentations.has(name)) { return container.jsGlobalAugmentations.get(name); } if (canHaveSymbol(container)) { return (_d = (_c = container.symbol) == null ? undefined : _c.exports) == null ? undefined : _d.get(name); } } function createGetSymbolWalker(getRestTypeOfSignature, getTypePredicateOfSignature, getReturnTypeOfSignature, getBaseTypes, resolveStructuredTypeMembers, getTypeOfSymbol, getResolvedSymbol, getConstraintOfTypeParameter, getFirstIdentifier2, getTypeArguments) { return getSymbolWalker; function getSymbolWalker(accept = () => true) { const visitedTypes = []; const visitedSymbols = []; return { walkType: (type) => { try { visitType(type); return { visitedTypes: getOwnValues(visitedTypes), visitedSymbols: getOwnValues(visitedSymbols) }; } finally { clear(visitedTypes); clear(visitedSymbols); } }, walkSymbol: (symbol) => { try { visitSymbol(symbol); return { visitedTypes: getOwnValues(visitedTypes), visitedSymbols: getOwnValues(visitedSymbols) }; } finally { clear(visitedTypes); clear(visitedSymbols); } } }; function visitType(type) { if (!type) { return; } if (visitedTypes[type.id]) { return; } visitedTypes[type.id] = type; const shouldBail = visitSymbol(type.symbol); if (shouldBail) return; if (type.flags & 1048576) { const objectType = type; const objectFlags = objectType.objectFlags; if (objectFlags & 4) { visitTypeReference(type); } if (objectFlags & 32) { visitMappedType(type); } if (objectFlags & (1 | 2)) { visitInterfaceType(type); } if (objectFlags & (8 | 16)) { visitObjectType(objectType); } } if (type.flags & 524288) { visitTypeParameter(type); } if (type.flags & 402653184) { visitUnionOrIntersectionType(type); } if (type.flags & 2097152) { visitIndexType(type); } if (type.flags & 33554432) { visitIndexedAccessType(type); } } function visitTypeReference(type) { visitType(type.target); forEach(getTypeArguments(type), visitType); } function visitTypeParameter(type) { visitType(getConstraintOfTypeParameter(type)); } function visitUnionOrIntersectionType(type) { forEach(type.types, visitType); } function visitIndexType(type) { visitType(type.type); } function visitIndexedAccessType(type) { visitType(type.objectType); visitType(type.indexType); visitType(type.constraint); } function visitMappedType(type) { visitType(type.typeParameter); visitType(type.constraintType); visitType(type.templateType); visitType(type.modifiersType); } function visitSignature(signature) { const typePredicate = getTypePredicateOfSignature(signature); if (typePredicate) { visitType(typePredicate.type); } forEach(signature.typeParameters, visitType); for (const parameter of signature.parameters) { visitSymbol(parameter); } visitType(getRestTypeOfSignature(signature)); visitType(getReturnTypeOfSignature(signature)); } function visitInterfaceType(interfaceT) { visitObjectType(interfaceT); forEach(interfaceT.typeParameters, visitType); forEach(getBaseTypes(interfaceT), visitType); visitType(interfaceT.thisType); } function visitObjectType(type) { const resolved = resolveStructuredTypeMembers(type); for (const info of resolved.indexInfos) { visitType(info.keyType); visitType(info.type); } for (const signature of resolved.callSignatures) { visitSignature(signature); } for (const signature of resolved.constructSignatures) { visitSignature(signature); } for (const p of resolved.properties) { visitSymbol(p); } } function visitSymbol(symbol) { if (!symbol) { return false; } const symbolId = getSymbolId(symbol); if (visitedSymbols[symbolId]) { return false; } visitedSymbols[symbolId] = symbol; if (!accept(symbol)) { return true; } const t = getTypeOfSymbol(symbol); visitType(t); if (symbol.exports) { symbol.exports.forEach(visitSymbol); } forEach(symbol.declarations, (d) => { if (d.type && d.type.kind === 187) { const query = d.type; const entity = getResolvedSymbol(getFirstIdentifier2(query.exprName)); visitSymbol(entity); } }); return false; } } } var ts_moduleSpecifiers_exports = {}; __export2(ts_moduleSpecifiers_exports, { RelativePreference: () => RelativePreference, countPathComponents: () => countPathComponents, forEachFileNameOfModule: () => forEachFileNameOfModule, getLocalModuleSpecifierBetweenFileNames: () => getLocalModuleSpecifierBetweenFileNames, getModuleSpecifier: () => getModuleSpecifier, getModuleSpecifierPreferences: () => getModuleSpecifierPreferences, getModuleSpecifiers: () => getModuleSpecifiers, getModuleSpecifiersWithCacheInfo: () => getModuleSpecifiersWithCacheInfo, getNodeModulesPackageName: () => getNodeModulesPackageName, tryGetJSExtensionForFile: () => tryGetJSExtensionForFile, tryGetModuleSpecifiersFromCache: () => tryGetModuleSpecifiersFromCache, tryGetRealFileNameForNonJsDeclarationFileName: () => tryGetRealFileNameForNonJsDeclarationFileName, updateModuleSpecifier: () => updateModuleSpecifier }); var stringToRegex = memoizeOne((pattern) => { try { let slash = pattern.indexOf("/"); if (slash !== 0) { return new RegExp(pattern); } const lastSlash = pattern.lastIndexOf("/"); if (slash === lastSlash) { return new RegExp(pattern); } while ((slash = pattern.indexOf("/", slash + 1)) !== lastSlash) { if (pattern[slash - 1] !== "\\") { return new RegExp(pattern); } } const flags = pattern.substring(lastSlash + 1).replace(/[^iu]/g, ""); pattern = pattern.substring(1, lastSlash); return new RegExp(pattern, flags); } catch { return; } }); var RelativePreference = /* @__PURE__ */ ((RelativePreference2) => { RelativePreference2[RelativePreference2["Relative"] = 0] = "Relative"; RelativePreference2[RelativePreference2["NonRelative"] = 1] = "NonRelative"; RelativePreference2[RelativePreference2["Shortest"] = 2] = "Shortest"; RelativePreference2[RelativePreference2["ExternalNonRelative"] = 3] = "ExternalNonRelative"; return RelativePreference2; })(RelativePreference || {}); function getModuleSpecifierPreferences({ importModuleSpecifierPreference, importModuleSpecifierEnding, autoImportSpecifierExcludeRegexes }, host, compilerOptions, importingSourceFile, oldImportSpecifier) { const filePreferredEnding = getPreferredEnding(); return { excludeRegexes: autoImportSpecifierExcludeRegexes, relativePreference: oldImportSpecifier !== undefined ? isExternalModuleNameRelative(oldImportSpecifier) ? 0 : 1 : importModuleSpecifierPreference === "relative" ? 0 : importModuleSpecifierPreference === "non-relative" ? 1 : importModuleSpecifierPreference === "project-relative" ? 3 : 2, getAllowedEndingsInPreferredOrder: (syntaxImpliedNodeFormat) => { const impliedNodeFormat = getDefaultResolutionModeForFile(importingSourceFile, host, compilerOptions); const preferredEnding = syntaxImpliedNodeFormat !== impliedNodeFormat ? getPreferredEnding(syntaxImpliedNodeFormat) : filePreferredEnding; const moduleResolution = getEmitModuleResolutionKind(compilerOptions); if ((syntaxImpliedNodeFormat ?? impliedNodeFormat) === 99 && 3 <= moduleResolution && moduleResolution <= 99) { if (shouldAllowImportingTsExtension(compilerOptions, importingSourceFile.fileName)) { return [3, 2]; } return [2]; } if (getEmitModuleResolutionKind(compilerOptions) === 1) { return preferredEnding === 2 ? [2, 1] : [1, 2]; } const allowImportingTsExtension = shouldAllowImportingTsExtension(compilerOptions, importingSourceFile.fileName); switch (preferredEnding) { case 2: return allowImportingTsExtension ? [2, 3, 0, 1] : [2, 0, 1]; case 3: return [3, 0, 2, 1]; case 1: return allowImportingTsExtension ? [1, 0, 3, 2] : [1, 0, 2]; case 0: return allowImportingTsExtension ? [0, 1, 3, 2] : [0, 1, 2]; default: Debug.assertNever(preferredEnding); } } }; function getPreferredEnding(resolutionMode) { if (oldImportSpecifier !== undefined) { if (hasJSFileExtension(oldImportSpecifier)) return 2; if (endsWith(oldImportSpecifier, "/index")) return 1; } return getModuleSpecifierEndingPreference(importModuleSpecifierEnding, resolutionMode ?? getDefaultResolutionModeForFile(importingSourceFile, host, compilerOptions), compilerOptions, isFullSourceFile(importingSourceFile) ? importingSourceFile : undefined); } } function updateModuleSpecifier(compilerOptions, importingSourceFile, importingSourceFileName, toFileName2, host, oldImportSpecifier, options = {}) { const res = getModuleSpecifierWorker(compilerOptions, importingSourceFile, importingSourceFileName, toFileName2, host, getModuleSpecifierPreferences({}, host, compilerOptions, importingSourceFile, oldImportSpecifier), {}, options); if (res === oldImportSpecifier) return; return res; } function getModuleSpecifier(compilerOptions, importingSourceFile, importingSourceFileName, toFileName2, host, options = {}) { return getModuleSpecifierWorker(compilerOptions, importingSourceFile, importingSourceFileName, toFileName2, host, getModuleSpecifierPreferences({}, host, compilerOptions, importingSourceFile), {}, options); } function getNodeModulesPackageName(compilerOptions, importingSourceFile, nodeModulesFileName, host, preferences, options = {}) { const info = getInfo(importingSourceFile.fileName, host); const modulePaths = getAllModulePaths(info, nodeModulesFileName, host, preferences, compilerOptions, options); return firstDefined(modulePaths, (modulePath) => tryGetModuleNameAsNodeModule(modulePath, info, importingSourceFile, host, compilerOptions, preferences, true, options.overrideImportMode)); } function getModuleSpecifierWorker(compilerOptions, importingSourceFile, importingSourceFileName, toFileName2, host, preferences, userPreferences, options = {}) { const info = getInfo(importingSourceFileName, host); const modulePaths = getAllModulePaths(info, toFileName2, host, userPreferences, compilerOptions, options); return firstDefined(modulePaths, (modulePath) => tryGetModuleNameAsNodeModule(modulePath, info, importingSourceFile, host, compilerOptions, userPreferences, undefined, options.overrideImportMode)) || getLocalModuleSpecifier(toFileName2, info, compilerOptions, host, options.overrideImportMode || getDefaultResolutionModeForFile(importingSourceFile, host, compilerOptions), preferences); } function tryGetModuleSpecifiersFromCache(moduleSymbol, importingSourceFile, host, userPreferences, options = {}) { const result = tryGetModuleSpecifiersFromCacheWorker(moduleSymbol, importingSourceFile, host, userPreferences, options); return result[1] && { kind: result[0], moduleSpecifiers: result[1], computedWithoutCache: false }; } function tryGetModuleSpecifiersFromCacheWorker(moduleSymbol, importingSourceFile, host, userPreferences, options = {}) { var _a; const moduleSourceFile = getSourceFileOfModule(moduleSymbol); if (!moduleSourceFile) { return emptyArray; } const cache = (_a = host.getModuleSpecifierCache) == null ? undefined : _a.call(host); const cached = cache == null ? undefined : cache.get(importingSourceFile.path, moduleSourceFile.path, userPreferences, options); return [cached == null ? undefined : cached.kind, cached == null ? undefined : cached.moduleSpecifiers, moduleSourceFile, cached == null ? undefined : cached.modulePaths, cache]; } function getModuleSpecifiers(moduleSymbol, checker, compilerOptions, importingSourceFile, host, userPreferences, options = {}) { return getModuleSpecifiersWithCacheInfo(moduleSymbol, checker, compilerOptions, importingSourceFile, host, userPreferences, options, false).moduleSpecifiers; } function getModuleSpecifiersWithCacheInfo(moduleSymbol, checker, compilerOptions, importingSourceFile, host, userPreferences, options = {}, forAutoImport) { let computedWithoutCache = false; const ambient = tryGetModuleNameFromAmbientModule(moduleSymbol, checker); if (ambient) { return { kind: "ambient", moduleSpecifiers: !(forAutoImport && isExcludedByRegex(ambient, userPreferences.autoImportSpecifierExcludeRegexes)) ? [ambient] : emptyArray, computedWithoutCache }; } let [kind, specifiers, moduleSourceFile, modulePaths, cache] = tryGetModuleSpecifiersFromCacheWorker(moduleSymbol, importingSourceFile, host, userPreferences, options); if (specifiers) return { kind, moduleSpecifiers: specifiers, computedWithoutCache }; if (!moduleSourceFile) return { kind: undefined, moduleSpecifiers: emptyArray, computedWithoutCache }; computedWithoutCache = true; modulePaths || (modulePaths = getAllModulePathsWorker(getInfo(importingSourceFile.fileName, host), moduleSourceFile.originalFileName, host, compilerOptions, options)); const result = computeModuleSpecifiers(modulePaths, compilerOptions, importingSourceFile, host, userPreferences, options, forAutoImport); cache == null || cache.set(importingSourceFile.path, moduleSourceFile.path, userPreferences, options, result.kind, modulePaths, result.moduleSpecifiers); return result; } function getLocalModuleSpecifierBetweenFileNames(importingFile, targetFileName, compilerOptions, host, preferences, options = {}) { const info = getInfo(importingFile.fileName, host); const importMode = options.overrideImportMode ?? importingFile.impliedNodeFormat; return getLocalModuleSpecifier(targetFileName, info, compilerOptions, host, importMode, getModuleSpecifierPreferences(preferences, host, compilerOptions, importingFile)); } function computeModuleSpecifiers(modulePaths, compilerOptions, importingSourceFile, host, userPreferences, options = {}, forAutoImport) { const info = getInfo(importingSourceFile.fileName, host); const preferences = getModuleSpecifierPreferences(userPreferences, host, compilerOptions, importingSourceFile); const existingSpecifier = isFullSourceFile(importingSourceFile) && forEach(modulePaths, (modulePath) => forEach(host.getFileIncludeReasons().get(toPath(modulePath.path, host.getCurrentDirectory(), info.getCanonicalFileName)), (reason) => { if (reason.kind !== 3 || reason.file !== importingSourceFile.path) return; const existingMode = host.getModeForResolutionAtIndex(importingSourceFile, reason.index); const targetMode = options.overrideImportMode ?? host.getDefaultResolutionModeForFile(importingSourceFile); if (existingMode !== targetMode && existingMode !== undefined && targetMode !== undefined) { return; } const specifier = getModuleNameStringLiteralAt(importingSourceFile, reason.index).text; return preferences.relativePreference !== 1 || !pathIsRelative(specifier) ? specifier : undefined; })); if (existingSpecifier) { return { kind: undefined, moduleSpecifiers: [existingSpecifier], computedWithoutCache: true }; } const importedFileIsInNodeModules = some(modulePaths, (p) => p.isInNodeModules); let nodeModulesSpecifiers; let pathsSpecifiers; let redirectPathsSpecifiers; let relativeSpecifiers; for (const modulePath of modulePaths) { const specifier = modulePath.isInNodeModules ? tryGetModuleNameAsNodeModule(modulePath, info, importingSourceFile, host, compilerOptions, userPreferences, undefined, options.overrideImportMode) : undefined; if (specifier && !(forAutoImport && isExcludedByRegex(specifier, preferences.excludeRegexes))) { nodeModulesSpecifiers = append(nodeModulesSpecifiers, specifier); if (modulePath.isRedirect) { return { kind: "node_modules", moduleSpecifiers: nodeModulesSpecifiers, computedWithoutCache: true }; } } const local = getLocalModuleSpecifier(modulePath.path, info, compilerOptions, host, options.overrideImportMode || importingSourceFile.impliedNodeFormat, preferences, modulePath.isRedirect || !!specifier); if (!local || forAutoImport && isExcludedByRegex(local, preferences.excludeRegexes)) { continue; } if (modulePath.isRedirect) { redirectPathsSpecifiers = append(redirectPathsSpecifiers, local); } else if (pathIsBareSpecifier(local)) { if (pathContainsNodeModules(local)) { relativeSpecifiers = append(relativeSpecifiers, local); } else { pathsSpecifiers = append(pathsSpecifiers, local); } } else if (forAutoImport || !importedFileIsInNodeModules || modulePath.isInNodeModules) { relativeSpecifiers = append(relativeSpecifiers, local); } } return (pathsSpecifiers == null ? undefined : pathsSpecifiers.length) ? { kind: "paths", moduleSpecifiers: pathsSpecifiers, computedWithoutCache: true } : (redirectPathsSpecifiers == null ? undefined : redirectPathsSpecifiers.length) ? { kind: "redirect", moduleSpecifiers: redirectPathsSpecifiers, computedWithoutCache: true } : (nodeModulesSpecifiers == null ? undefined : nodeModulesSpecifiers.length) ? { kind: "node_modules", moduleSpecifiers: nodeModulesSpecifiers, computedWithoutCache: true } : { kind: "relative", moduleSpecifiers: relativeSpecifiers ?? emptyArray, computedWithoutCache: true }; } function isExcludedByRegex(moduleSpecifier, excludeRegexes) { return some(excludeRegexes, (pattern) => { var _a; return !!((_a = stringToRegex(pattern)) == null ? undefined : _a.test(moduleSpecifier)); }); } function getInfo(importingSourceFileName, host) { importingSourceFileName = getNormalizedAbsolutePath(importingSourceFileName, host.getCurrentDirectory()); const getCanonicalFileName = createGetCanonicalFileName(host.useCaseSensitiveFileNames ? host.useCaseSensitiveFileNames() : true); const sourceDirectory = getDirectoryPath(importingSourceFileName); return { getCanonicalFileName, importingSourceFileName, sourceDirectory, canonicalSourceDirectory: getCanonicalFileName(sourceDirectory) }; } function getLocalModuleSpecifier(moduleFileName, info, compilerOptions, host, importMode, { getAllowedEndingsInPreferredOrder: getAllowedEndingsInPrefererredOrder, relativePreference, excludeRegexes }, pathsOnly) { const { baseUrl, paths, rootDirs } = compilerOptions; if (pathsOnly && !paths) { return; } const { sourceDirectory, canonicalSourceDirectory, getCanonicalFileName } = info; const allowedEndings = getAllowedEndingsInPrefererredOrder(importMode); const relativePath = rootDirs && tryGetModuleNameFromRootDirs(rootDirs, moduleFileName, sourceDirectory, getCanonicalFileName, allowedEndings, compilerOptions) || processEnding(ensurePathIsNonModuleName(getRelativePathFromDirectory(sourceDirectory, moduleFileName, getCanonicalFileName)), allowedEndings, compilerOptions); if (!baseUrl && !paths && !getResolvePackageJsonImports(compilerOptions) || relativePreference === 0) { return pathsOnly ? undefined : relativePath; } const baseDirectory = getNormalizedAbsolutePath(getPathsBasePath(compilerOptions, host) || baseUrl, host.getCurrentDirectory()); const relativeToBaseUrl = getRelativePathIfInSameVolume(moduleFileName, baseDirectory, getCanonicalFileName); if (!relativeToBaseUrl) { return pathsOnly ? undefined : relativePath; } const fromPackageJsonImports = pathsOnly ? undefined : tryGetModuleNameFromPackageJsonImports(moduleFileName, sourceDirectory, compilerOptions, host, importMode, prefersTsExtension(allowedEndings)); const fromPaths = pathsOnly || fromPackageJsonImports === undefined ? paths && tryGetModuleNameFromPaths(relativeToBaseUrl, paths, allowedEndings, baseDirectory, getCanonicalFileName, host, compilerOptions) : undefined; if (pathsOnly) { return fromPaths; } const maybeNonRelative = fromPackageJsonImports ?? (fromPaths === undefined && baseUrl !== undefined ? processEnding(relativeToBaseUrl, allowedEndings, compilerOptions) : fromPaths); if (!maybeNonRelative) { return relativePath; } const relativeIsExcluded = isExcludedByRegex(relativePath, excludeRegexes); const nonRelativeIsExcluded = isExcludedByRegex(maybeNonRelative, excludeRegexes); if (!relativeIsExcluded && nonRelativeIsExcluded) { return relativePath; } if (relativeIsExcluded && !nonRelativeIsExcluded) { return maybeNonRelative; } if (relativePreference === 1 && !pathIsRelative(maybeNonRelative)) { return maybeNonRelative; } if (relativePreference === 3 && !pathIsRelative(maybeNonRelative)) { const projectDirectory = compilerOptions.configFilePath ? toPath(getDirectoryPath(compilerOptions.configFilePath), host.getCurrentDirectory(), info.getCanonicalFileName) : info.getCanonicalFileName(host.getCurrentDirectory()); const modulePath = toPath(moduleFileName, projectDirectory, getCanonicalFileName); const sourceIsInternal = startsWith(canonicalSourceDirectory, projectDirectory); const targetIsInternal = startsWith(modulePath, projectDirectory); if (sourceIsInternal && !targetIsInternal || !sourceIsInternal && targetIsInternal) { return maybeNonRelative; } const nearestTargetPackageJson = getNearestAncestorDirectoryWithPackageJson(host, getDirectoryPath(modulePath)); const nearestSourcePackageJson = getNearestAncestorDirectoryWithPackageJson(host, sourceDirectory); const ignoreCase = !hostUsesCaseSensitiveFileNames(host); if (!packageJsonPathsAreEqual(nearestTargetPackageJson, nearestSourcePackageJson, ignoreCase)) { return maybeNonRelative; } return relativePath; } return isPathRelativeToParent(maybeNonRelative) || countPathComponents(relativePath) < countPathComponents(maybeNonRelative) ? relativePath : maybeNonRelative; } function packageJsonPathsAreEqual(a, b, ignoreCase) { if (a === b) return true; if (a === undefined || b === undefined) return false; return comparePaths(a, b, ignoreCase) === 0; } function countPathComponents(path) { let count = 0; for (let i = startsWith(path, "./") ? 2 : 0;i < path.length; i++) { if (path.charCodeAt(i) === 47) count++; } return count; } function comparePathsByRedirectAndNumberOfDirectorySeparators(a, b) { return compareBooleans(b.isRedirect, a.isRedirect) || compareNumberOfDirectorySeparators(a.path, b.path); } function getNearestAncestorDirectoryWithPackageJson(host, fileName) { if (host.getNearestAncestorDirectoryWithPackageJson) { return host.getNearestAncestorDirectoryWithPackageJson(fileName); } return forEachAncestorDirectoryStoppingAtGlobalCache(host, fileName, (directory) => host.fileExists(combinePaths(directory, "package.json")) ? directory : undefined); } function forEachFileNameOfModule(importingFileName, importedFileName, host, preferSymlinks, cb) { var _a, _b; const getCanonicalFileName = hostGetCanonicalFileName(host); const cwd = host.getCurrentDirectory(); const referenceRedirect = host.isSourceOfProjectReferenceRedirect(importedFileName) ? (_a = host.getRedirectFromSourceFile(importedFileName)) == null ? undefined : _a.outputDts : undefined; const importedPath = toPath(importedFileName, cwd, getCanonicalFileName); const redirects = host.redirectTargetsMap.get(importedPath) || emptyArray; const importedFileNames = [...referenceRedirect ? [referenceRedirect] : emptyArray, importedFileName, ...redirects]; const targets = importedFileNames.map((f) => getNormalizedAbsolutePath(f, cwd)); let shouldFilterIgnoredPaths = !every(targets, containsIgnoredPath); if (!preferSymlinks) { const result2 = forEach(targets, (p) => !(shouldFilterIgnoredPaths && containsIgnoredPath(p)) && cb(p, referenceRedirect === p)); if (result2) return result2; } const symlinkedDirectories = (_b = host.getSymlinkCache) == null ? undefined : _b.call(host).getSymlinkedDirectoriesByRealpath(); const fullImportedFileName = getNormalizedAbsolutePath(importedFileName, cwd); const result = symlinkedDirectories && forEachAncestorDirectoryStoppingAtGlobalCache(host, getDirectoryPath(fullImportedFileName), (realPathDirectory) => { const symlinkDirectories = symlinkedDirectories.get(ensureTrailingDirectorySeparator(toPath(realPathDirectory, cwd, getCanonicalFileName))); if (!symlinkDirectories) return; if (startsWithDirectory(importingFileName, realPathDirectory, getCanonicalFileName)) { return false; } return forEach(targets, (target) => { if (!startsWithDirectory(target, realPathDirectory, getCanonicalFileName)) { return; } const relative = getRelativePathFromDirectory(realPathDirectory, target, getCanonicalFileName); for (const symlinkDirectory of symlinkDirectories) { const option = resolvePath(symlinkDirectory, relative); const result2 = cb(option, target === referenceRedirect); shouldFilterIgnoredPaths = true; if (result2) return result2; } }); }); return result || (preferSymlinks ? forEach(targets, (p) => shouldFilterIgnoredPaths && containsIgnoredPath(p) ? undefined : cb(p, p === referenceRedirect)) : undefined); } function getAllModulePaths(info, importedFileName, host, preferences, compilerOptions, options = {}) { var _a; const importingFilePath = toPath(info.importingSourceFileName, host.getCurrentDirectory(), hostGetCanonicalFileName(host)); const importedFilePath = toPath(importedFileName, host.getCurrentDirectory(), hostGetCanonicalFileName(host)); const cache = (_a = host.getModuleSpecifierCache) == null ? undefined : _a.call(host); if (cache) { const cached = cache.get(importingFilePath, importedFilePath, preferences, options); if (cached == null ? undefined : cached.modulePaths) return cached.modulePaths; } const modulePaths = getAllModulePathsWorker(info, importedFileName, host, compilerOptions, options); if (cache) { cache.setModulePaths(importingFilePath, importedFilePath, preferences, options, modulePaths); } return modulePaths; } var runtimeDependencyFields = ["dependencies", "peerDependencies", "optionalDependencies"]; function getAllRuntimeDependencies(packageJson) { let result; for (const field of runtimeDependencyFields) { const deps = packageJson[field]; if (deps && typeof deps === "object") { result = concatenate(result, getOwnKeys(deps)); } } return result; } function getAllModulePathsWorker(info, importedFileName, host, compilerOptions, options) { var _a, _b; const cache = (_a = host.getModuleResolutionCache) == null ? undefined : _a.call(host); const links = (_b = host.getSymlinkCache) == null ? undefined : _b.call(host); if (cache && links && host.readFile && !pathContainsNodeModules(info.importingSourceFileName)) { Debug.type(host); const state = getTemporaryModuleResolutionState(cache.getPackageJsonInfoCache(), host, {}); const packageJson = getPackageScopeForPath(getDirectoryPath(info.importingSourceFileName), state); if (packageJson) { const toResolve = getAllRuntimeDependencies(packageJson.contents.packageJsonContent); for (const depName of toResolve || emptyArray) { const resolved = resolveModuleName(depName, combinePaths(packageJson.packageDirectory, "package.json"), compilerOptions, host, cache, undefined, options.overrideImportMode); links.setSymlinksFromResolution(resolved.resolvedModule); } } } const allFileNames = /* @__PURE__ */ new Map; let importedFileFromNodeModules = false; forEachFileNameOfModule(info.importingSourceFileName, importedFileName, host, true, (path, isRedirect) => { const isInNodeModules = pathContainsNodeModules(path); allFileNames.set(path, { path: info.getCanonicalFileName(path), isRedirect, isInNodeModules }); importedFileFromNodeModules = importedFileFromNodeModules || isInNodeModules; }); const sortedPaths = []; for (let directory = info.canonicalSourceDirectory;allFileNames.size !== 0; ) { const directoryStart = ensureTrailingDirectorySeparator(directory); let pathsInDirectory; allFileNames.forEach(({ path, isRedirect, isInNodeModules }, fileName) => { if (startsWith(path, directoryStart)) { (pathsInDirectory || (pathsInDirectory = [])).push({ path: fileName, isRedirect, isInNodeModules }); allFileNames.delete(fileName); } }); if (pathsInDirectory) { if (pathsInDirectory.length > 1) { pathsInDirectory.sort(comparePathsByRedirectAndNumberOfDirectorySeparators); } sortedPaths.push(...pathsInDirectory); } const newDirectory = getDirectoryPath(directory); if (newDirectory === directory) break; directory = newDirectory; } if (allFileNames.size) { const remainingPaths = arrayFrom(allFileNames.entries(), ([fileName, { isRedirect, isInNodeModules }]) => ({ path: fileName, isRedirect, isInNodeModules })); if (remainingPaths.length > 1) remainingPaths.sort(comparePathsByRedirectAndNumberOfDirectorySeparators); sortedPaths.push(...remainingPaths); } return sortedPaths; } function tryGetModuleNameFromAmbientModule(moduleSymbol, checker) { var _a; const decl = (_a = moduleSymbol.declarations) == null ? undefined : _a.find((d) => isNonGlobalAmbientModule(d) && (!isExternalModuleAugmentation(d) || !isExternalModuleNameRelative(getTextOfIdentifierOrLiteral(d.name)))); if (decl) { return decl.name.text; } const ambientModuleDeclareCandidates = mapDefined(moduleSymbol.declarations, (d) => { var _a2, _b, _c, _d; if (!isModuleDeclaration(d)) return; const topNamespace = getTopNamespace(d); if (!(((_a2 = topNamespace == null ? undefined : topNamespace.parent) == null ? undefined : _a2.parent) && isModuleBlock(topNamespace.parent) && isAmbientModule(topNamespace.parent.parent) && isSourceFile(topNamespace.parent.parent.parent))) return; const exportAssignment = (_d = (_c = (_b = topNamespace.parent.parent.symbol.exports) == null ? undefined : _b.get("export=")) == null ? undefined : _c.valueDeclaration) == null ? undefined : _d.expression; if (!exportAssignment) return; const exportSymbol = checker.getSymbolAtLocation(exportAssignment); if (!exportSymbol) return; const originalExportSymbol = (exportSymbol == null ? undefined : exportSymbol.flags) & 2097152 ? checker.getAliasedSymbol(exportSymbol) : exportSymbol; if (originalExportSymbol === d.symbol) return topNamespace.parent.parent; function getTopNamespace(namespaceDeclaration) { while (namespaceDeclaration.flags & 8) { namespaceDeclaration = namespaceDeclaration.parent; } return namespaceDeclaration; } }); const ambientModuleDeclare = ambientModuleDeclareCandidates[0]; if (ambientModuleDeclare) { return ambientModuleDeclare.name.text; } } function tryGetModuleNameFromPaths(relativeToBaseUrl, paths, allowedEndings, baseDirectory, getCanonicalFileName, host, compilerOptions) { for (const key in paths) { for (const patternText2 of paths[key]) { const normalized = normalizePath(patternText2); const pattern = getRelativePathIfInSameVolume(normalized, baseDirectory, getCanonicalFileName) ?? normalized; const indexOfStar = pattern.indexOf("*"); const candidates = allowedEndings.map((ending) => ({ ending, value: processEnding(relativeToBaseUrl, [ending], compilerOptions) })); if (tryGetExtensionFromPath2(pattern)) { candidates.push({ ending: undefined, value: relativeToBaseUrl }); } if (indexOfStar !== -1) { const prefix = pattern.substring(0, indexOfStar); const suffix = pattern.substring(indexOfStar + 1); for (const { ending, value } of candidates) { if (value.length >= prefix.length + suffix.length && startsWith(value, prefix) && endsWith(value, suffix) && validateEnding({ ending, value })) { const matchedStar = value.substring(prefix.length, value.length - suffix.length); if (!pathIsRelative(matchedStar)) { return replaceFirstStar(key, matchedStar); } } } } else if (some(candidates, (c) => c.ending !== 0 && pattern === c.value) || some(candidates, (c) => c.ending === 0 && pattern === c.value && validateEnding(c))) { return key; } } } function validateEnding({ ending, value }) { return ending !== 0 || value === processEnding(relativeToBaseUrl, [ending], compilerOptions, host); } } function tryGetModuleNameFromExportsOrImports(options, host, targetFilePath, packageDirectory, packageName, exports22, conditions, mode, isImports, preferTsExtension) { if (typeof exports22 === "string") { const ignoreCase = !hostUsesCaseSensitiveFileNames(host); const getCommonSourceDirectory2 = () => host.getCommonSourceDirectory(); const outputFile = isImports && getOutputJSFileNameWorker(targetFilePath, options, ignoreCase, getCommonSourceDirectory2); const declarationFile = isImports && getOutputDeclarationFileNameWorker(targetFilePath, options, ignoreCase, getCommonSourceDirectory2); const pathOrPattern = getNormalizedAbsolutePath(combinePaths(packageDirectory, exports22), undefined); const extensionSwappedTarget = hasTSFileExtension(targetFilePath) ? removeFileExtension(targetFilePath) + tryGetJSExtensionForFile(targetFilePath, options) : undefined; const canTryTsExtension = preferTsExtension && hasImplementationTSFileExtension(targetFilePath); switch (mode) { case 0: if (extensionSwappedTarget && comparePaths(extensionSwappedTarget, pathOrPattern, ignoreCase) === 0 || comparePaths(targetFilePath, pathOrPattern, ignoreCase) === 0 || outputFile && comparePaths(outputFile, pathOrPattern, ignoreCase) === 0 || declarationFile && comparePaths(declarationFile, pathOrPattern, ignoreCase) === 0) { return { moduleFileToTry: packageName }; } break; case 1: if (canTryTsExtension && containsPath(targetFilePath, pathOrPattern, ignoreCase)) { const fragment = getRelativePathFromDirectory(pathOrPattern, targetFilePath, false); return { moduleFileToTry: getNormalizedAbsolutePath(combinePaths(combinePaths(packageName, exports22), fragment), undefined) }; } if (extensionSwappedTarget && containsPath(pathOrPattern, extensionSwappedTarget, ignoreCase)) { const fragment = getRelativePathFromDirectory(pathOrPattern, extensionSwappedTarget, false); return { moduleFileToTry: getNormalizedAbsolutePath(combinePaths(combinePaths(packageName, exports22), fragment), undefined) }; } if (!canTryTsExtension && containsPath(pathOrPattern, targetFilePath, ignoreCase)) { const fragment = getRelativePathFromDirectory(pathOrPattern, targetFilePath, false); return { moduleFileToTry: getNormalizedAbsolutePath(combinePaths(combinePaths(packageName, exports22), fragment), undefined) }; } if (outputFile && containsPath(pathOrPattern, outputFile, ignoreCase)) { const fragment = getRelativePathFromDirectory(pathOrPattern, outputFile, false); return { moduleFileToTry: combinePaths(packageName, fragment) }; } if (declarationFile && containsPath(pathOrPattern, declarationFile, ignoreCase)) { const fragment = changeFullExtension(getRelativePathFromDirectory(pathOrPattern, declarationFile, false), getJSExtensionForFile(declarationFile, options)); return { moduleFileToTry: combinePaths(packageName, fragment) }; } break; case 2: const starPos = pathOrPattern.indexOf("*"); const leadingSlice = pathOrPattern.slice(0, starPos); const trailingSlice = pathOrPattern.slice(starPos + 1); if (canTryTsExtension && startsWith(targetFilePath, leadingSlice, ignoreCase) && endsWith(targetFilePath, trailingSlice, ignoreCase)) { const starReplacement = targetFilePath.slice(leadingSlice.length, targetFilePath.length - trailingSlice.length); return { moduleFileToTry: replaceFirstStar(packageName, starReplacement) }; } if (extensionSwappedTarget && startsWith(extensionSwappedTarget, leadingSlice, ignoreCase) && endsWith(extensionSwappedTarget, trailingSlice, ignoreCase)) { const starReplacement = extensionSwappedTarget.slice(leadingSlice.length, extensionSwappedTarget.length - trailingSlice.length); return { moduleFileToTry: replaceFirstStar(packageName, starReplacement) }; } if (!canTryTsExtension && startsWith(targetFilePath, leadingSlice, ignoreCase) && endsWith(targetFilePath, trailingSlice, ignoreCase)) { const starReplacement = targetFilePath.slice(leadingSlice.length, targetFilePath.length - trailingSlice.length); return { moduleFileToTry: replaceFirstStar(packageName, starReplacement) }; } if (outputFile && startsWith(outputFile, leadingSlice, ignoreCase) && endsWith(outputFile, trailingSlice, ignoreCase)) { const starReplacement = outputFile.slice(leadingSlice.length, outputFile.length - trailingSlice.length); return { moduleFileToTry: replaceFirstStar(packageName, starReplacement) }; } if (declarationFile && startsWith(declarationFile, leadingSlice, ignoreCase) && endsWith(declarationFile, trailingSlice, ignoreCase)) { const starReplacement = declarationFile.slice(leadingSlice.length, declarationFile.length - trailingSlice.length); const substituted = replaceFirstStar(packageName, starReplacement); const jsExtension = tryGetJSExtensionForFile(declarationFile, options); return jsExtension ? { moduleFileToTry: changeFullExtension(substituted, jsExtension) } : undefined; } break; } } else if (Array.isArray(exports22)) { return forEach(exports22, (e) => tryGetModuleNameFromExportsOrImports(options, host, targetFilePath, packageDirectory, packageName, e, conditions, mode, isImports, preferTsExtension)); } else if (typeof exports22 === "object" && exports22 !== null) { for (const key of getOwnKeys(exports22)) { if (key === "default" || conditions.indexOf(key) >= 0 || isApplicableVersionedTypesKey(conditions, key)) { const subTarget = exports22[key]; const result = tryGetModuleNameFromExportsOrImports(options, host, targetFilePath, packageDirectory, packageName, subTarget, conditions, mode, isImports, preferTsExtension); if (result) { return result; } } } } return; } function tryGetModuleNameFromExports(options, host, targetFilePath, packageDirectory, packageName, exports22, conditions) { if (typeof exports22 === "object" && exports22 !== null && !Array.isArray(exports22) && allKeysStartWithDot(exports22)) { return forEach(getOwnKeys(exports22), (k) => { const subPackageName = getNormalizedAbsolutePath(combinePaths(packageName, k), undefined); const mode = endsWith(k, "/") ? 1 : k.includes("*") ? 2 : 0; return tryGetModuleNameFromExportsOrImports(options, host, targetFilePath, packageDirectory, subPackageName, exports22[k], conditions, mode, false, false); }); } return tryGetModuleNameFromExportsOrImports(options, host, targetFilePath, packageDirectory, packageName, exports22, conditions, 0, false, false); } function tryGetModuleNameFromPackageJsonImports(moduleFileName, sourceDirectory, options, host, importMode, preferTsExtension) { var _a, _b, _c; if (!host.readFile || !getResolvePackageJsonImports(options)) { return; } const ancestorDirectoryWithPackageJson = getNearestAncestorDirectoryWithPackageJson(host, sourceDirectory); if (!ancestorDirectoryWithPackageJson) { return; } const packageJsonPath = combinePaths(ancestorDirectoryWithPackageJson, "package.json"); const cachedPackageJson = (_b = (_a = host.getPackageJsonInfoCache) == null ? undefined : _a.call(host)) == null ? undefined : _b.getPackageJsonInfo(packageJsonPath); if (isMissingPackageJsonInfo(cachedPackageJson) || !host.fileExists(packageJsonPath)) { return; } const packageJsonContent = (cachedPackageJson == null ? undefined : cachedPackageJson.contents.packageJsonContent) || tryParseJson(host.readFile(packageJsonPath)); const imports = packageJsonContent == null ? undefined : packageJsonContent.imports; if (!imports) { return; } const conditions = getConditions(options, importMode); return (_c = forEach(getOwnKeys(imports), (k) => { if (!startsWith(k, "#") || k === "#" || startsWith(k, "#/")) return; const mode = endsWith(k, "/") ? 1 : k.includes("*") ? 2 : 0; return tryGetModuleNameFromExportsOrImports(options, host, moduleFileName, ancestorDirectoryWithPackageJson, k, imports[k], conditions, mode, true, preferTsExtension); })) == null ? undefined : _c.moduleFileToTry; } function tryGetModuleNameFromRootDirs(rootDirs, moduleFileName, sourceDirectory, getCanonicalFileName, allowedEndings, compilerOptions) { const normalizedTargetPaths = getPathsRelativeToRootDirs(moduleFileName, rootDirs, getCanonicalFileName); if (normalizedTargetPaths === undefined) { return; } const normalizedSourcePaths = getPathsRelativeToRootDirs(sourceDirectory, rootDirs, getCanonicalFileName); const relativePaths = flatMap(normalizedSourcePaths, (sourcePath) => { return map(normalizedTargetPaths, (targetPath) => ensurePathIsNonModuleName(getRelativePathFromDirectory(sourcePath, targetPath, getCanonicalFileName))); }); const shortest = min(relativePaths, compareNumberOfDirectorySeparators); if (!shortest) { return; } return processEnding(shortest, allowedEndings, compilerOptions); } function tryGetModuleNameAsNodeModule({ path, isRedirect }, { getCanonicalFileName, canonicalSourceDirectory }, importingSourceFile, host, options, userPreferences, packageNameOnly, overrideMode) { if (!host.fileExists || !host.readFile) { return; } const parts = getNodeModulePathParts(path); if (!parts) { return; } const preferences = getModuleSpecifierPreferences(userPreferences, host, options, importingSourceFile); const allowedEndings = preferences.getAllowedEndingsInPreferredOrder(); let moduleSpecifier = path; let isPackageRootPath = false; if (!packageNameOnly) { let packageRootIndex = parts.packageRootIndex; let moduleFileName; while (true) { const { moduleFileToTry, packageRootPath, blockedByExports, verbatimFromExports } = tryDirectoryWithPackageJson(packageRootIndex); if (getEmitModuleResolutionKind(options) !== 1) { if (blockedByExports) { return; } if (verbatimFromExports) { return moduleFileToTry; } } if (packageRootPath) { moduleSpecifier = packageRootPath; isPackageRootPath = true; break; } if (!moduleFileName) moduleFileName = moduleFileToTry; packageRootIndex = path.indexOf(directorySeparator, packageRootIndex + 1); if (packageRootIndex === -1) { moduleSpecifier = processEnding(moduleFileName, allowedEndings, options, host); break; } } } if (isRedirect && !isPackageRootPath) { return; } const globalTypingsCacheLocation = host.getGlobalTypingsCacheLocation && host.getGlobalTypingsCacheLocation(); const pathToTopLevelNodeModules = getCanonicalFileName(moduleSpecifier.substring(0, parts.topLevelNodeModulesIndex)); if (!(startsWith(canonicalSourceDirectory, pathToTopLevelNodeModules) || globalTypingsCacheLocation && startsWith(getCanonicalFileName(globalTypingsCacheLocation), pathToTopLevelNodeModules))) { return; } const nodeModulesDirectoryName = moduleSpecifier.substring(parts.topLevelPackageNameIndex + 1); const packageName = getPackageNameFromTypesPackageName(nodeModulesDirectoryName); return getEmitModuleResolutionKind(options) === 1 && packageName === nodeModulesDirectoryName ? undefined : packageName; function tryDirectoryWithPackageJson(packageRootIndex) { var _a, _b; const packageRootPath = path.substring(0, packageRootIndex); const packageJsonPath = combinePaths(packageRootPath, "package.json"); let moduleFileToTry = path; let maybeBlockedByTypesVersions = false; const cachedPackageJson = (_b = (_a = host.getPackageJsonInfoCache) == null ? undefined : _a.call(host)) == null ? undefined : _b.getPackageJsonInfo(packageJsonPath); if (isPackageJsonInfo(cachedPackageJson) || cachedPackageJson === undefined && host.fileExists(packageJsonPath)) { const packageJsonContent = (cachedPackageJson == null ? undefined : cachedPackageJson.contents.packageJsonContent) || tryParseJson(host.readFile(packageJsonPath)); const importMode = overrideMode || getDefaultResolutionModeForFile(importingSourceFile, host, options); if (getResolvePackageJsonExports(options)) { const nodeModulesDirectoryName2 = packageRootPath.substring(parts.topLevelPackageNameIndex + 1); const packageName2 = getPackageNameFromTypesPackageName(nodeModulesDirectoryName2); const conditions = getConditions(options, importMode); const fromExports = (packageJsonContent == null ? undefined : packageJsonContent.exports) ? tryGetModuleNameFromExports(options, host, path, packageRootPath, packageName2, packageJsonContent.exports, conditions) : undefined; if (fromExports) { return { ...fromExports, verbatimFromExports: true }; } if (packageJsonContent == null ? undefined : packageJsonContent.exports) { return { moduleFileToTry: path, blockedByExports: true }; } } const versionPaths = (packageJsonContent == null ? undefined : packageJsonContent.typesVersions) ? getPackageJsonTypesVersionsPaths(packageJsonContent.typesVersions) : undefined; if (versionPaths) { const subModuleName = path.slice(packageRootPath.length + 1); const fromPaths = tryGetModuleNameFromPaths(subModuleName, versionPaths.paths, allowedEndings, packageRootPath, getCanonicalFileName, host, options); if (fromPaths === undefined) { maybeBlockedByTypesVersions = true; } else { moduleFileToTry = combinePaths(packageRootPath, fromPaths); } } const mainFileRelative = (packageJsonContent == null ? undefined : packageJsonContent.typings) || (packageJsonContent == null ? undefined : packageJsonContent.types) || (packageJsonContent == null ? undefined : packageJsonContent.main) || "index.js"; if (isString(mainFileRelative) && !(maybeBlockedByTypesVersions && matchPatternOrExact(tryParsePatterns(versionPaths.paths), mainFileRelative))) { const mainExportFile = toPath(mainFileRelative, packageRootPath, getCanonicalFileName); const canonicalModuleFileToTry = getCanonicalFileName(moduleFileToTry); if (removeFileExtension(mainExportFile) === removeFileExtension(canonicalModuleFileToTry)) { return { packageRootPath, moduleFileToTry }; } else if ((packageJsonContent == null ? undefined : packageJsonContent.type) !== "module" && !fileExtensionIsOneOf(canonicalModuleFileToTry, extensionsNotSupportingExtensionlessResolution) && startsWith(canonicalModuleFileToTry, mainExportFile) && getDirectoryPath(canonicalModuleFileToTry) === removeTrailingDirectorySeparator(mainExportFile) && removeFileExtension(getBaseFileName(canonicalModuleFileToTry)) === "index") { return { packageRootPath, moduleFileToTry }; } } } else { const fileName = getCanonicalFileName(moduleFileToTry.substring(parts.packageRootIndex + 1)); if (fileName === "index.d.ts" || fileName === "index.js" || fileName === "index.ts" || fileName === "index.tsx") { return { moduleFileToTry, packageRootPath }; } } return { moduleFileToTry }; } } function tryGetAnyFileFromPath(host, path) { if (!host.fileExists) return; const extensions = flatten(getSupportedExtensions({ allowJs: true }, [{ extension: "node", isMixedContent: false }, { extension: "json", isMixedContent: false, scriptKind: 6 }])); for (const e of extensions) { const fullPath = path + e; if (host.fileExists(fullPath)) { return fullPath; } } } function getPathsRelativeToRootDirs(path, rootDirs, getCanonicalFileName) { return mapDefined(rootDirs, (rootDir) => { const relativePath = getRelativePathIfInSameVolume(path, rootDir, getCanonicalFileName); return relativePath !== undefined && isPathRelativeToParent(relativePath) ? undefined : relativePath; }); } function processEnding(fileName, allowedEndings, options, host) { if (fileExtensionIsOneOf(fileName, [".json", ".mjs", ".cjs"])) { return fileName; } const noExtension = removeFileExtension(fileName); if (fileName === noExtension) { return fileName; } const jsPriority = allowedEndings.indexOf(2); const tsPriority = allowedEndings.indexOf(3); if (fileExtensionIsOneOf(fileName, [".mts", ".cts"]) && tsPriority !== -1 && tsPriority < jsPriority) { return fileName; } else if (fileExtensionIsOneOf(fileName, [".d.mts", ".mts", ".d.cts", ".cts"])) { return noExtension + getJSExtensionForFile(fileName, options); } else if (!fileExtensionIsOneOf(fileName, [".d.ts"]) && fileExtensionIsOneOf(fileName, [".ts"]) && fileName.includes(".d.")) { return tryGetRealFileNameForNonJsDeclarationFileName(fileName); } switch (allowedEndings[0]) { case 0: const withoutIndex = removeSuffix(noExtension, "/index"); if (host && withoutIndex !== noExtension && tryGetAnyFileFromPath(host, withoutIndex)) { return noExtension; } return withoutIndex; case 1: return noExtension; case 2: return noExtension + getJSExtensionForFile(fileName, options); case 3: if (isDeclarationFileName(fileName)) { const extensionlessPriority = allowedEndings.findIndex((e) => e === 0 || e === 1); return extensionlessPriority !== -1 && extensionlessPriority < jsPriority ? noExtension : noExtension + getJSExtensionForFile(fileName, options); } return fileName; default: return Debug.assertNever(allowedEndings[0]); } } function tryGetRealFileNameForNonJsDeclarationFileName(fileName) { const baseName = getBaseFileName(fileName); if (!endsWith(fileName, ".ts") || !baseName.includes(".d.") || fileExtensionIsOneOf(baseName, [".d.ts"])) return; const noExtension = removeExtension(fileName, ".ts"); const ext = noExtension.substring(noExtension.lastIndexOf(".")); return noExtension.substring(0, noExtension.indexOf(".d.")) + ext; } function getJSExtensionForFile(fileName, options) { return tryGetJSExtensionForFile(fileName, options) ?? Debug.fail(`Extension ${extensionFromPath(fileName)} is unsupported:: FileName:: ${fileName}`); } function tryGetJSExtensionForFile(fileName, options) { const ext = tryGetExtensionFromPath2(fileName); switch (ext) { case ".ts": case ".d.ts": return ".js"; case ".tsx": return options.jsx === 1 ? ".jsx" : ".js"; case ".js": case ".jsx": case ".json": return ext; case ".d.mts": case ".mts": case ".mjs": return ".mjs"; case ".d.cts": case ".cts": case ".cjs": return ".cjs"; default: return; } } function getRelativePathIfInSameVolume(path, directoryPath, getCanonicalFileName) { const relativePath = getRelativePathToDirectoryOrUrl(directoryPath, path, directoryPath, getCanonicalFileName, false); return isRootedDiskPath(relativePath) ? undefined : relativePath; } function isPathRelativeToParent(path) { return startsWith(path, ".."); } function getDefaultResolutionModeForFile(file, host, compilerOptions) { return isFullSourceFile(file) ? host.getDefaultResolutionModeForFile(file) : getDefaultResolutionModeForFileWorker(file, compilerOptions); } function prefersTsExtension(allowedEndings) { const tsPriority = allowedEndings.indexOf(3); return tsPriority > -1 && tsPriority < allowedEndings.indexOf(2); } var ambientModuleSymbolRegex = /^".+"$/; var anon = "(anonymous)"; var nextSymbolId = 1; var nextNodeId = 1; var nextMergeId = 1; var nextFlowId = 1; var TypeFacts = /* @__PURE__ */ ((TypeFacts3) => { TypeFacts3[TypeFacts3["None"] = 0] = "None"; TypeFacts3[TypeFacts3["TypeofEQString"] = 1] = "TypeofEQString"; TypeFacts3[TypeFacts3["TypeofEQNumber"] = 2] = "TypeofEQNumber"; TypeFacts3[TypeFacts3["TypeofEQBigInt"] = 4] = "TypeofEQBigInt"; TypeFacts3[TypeFacts3["TypeofEQBoolean"] = 8] = "TypeofEQBoolean"; TypeFacts3[TypeFacts3["TypeofEQSymbol"] = 16] = "TypeofEQSymbol"; TypeFacts3[TypeFacts3["TypeofEQObject"] = 32] = "TypeofEQObject"; TypeFacts3[TypeFacts3["TypeofEQFunction"] = 64] = "TypeofEQFunction"; TypeFacts3[TypeFacts3["TypeofEQHostObject"] = 128] = "TypeofEQHostObject"; TypeFacts3[TypeFacts3["TypeofNEString"] = 256] = "TypeofNEString"; TypeFacts3[TypeFacts3["TypeofNENumber"] = 512] = "TypeofNENumber"; TypeFacts3[TypeFacts3["TypeofNEBigInt"] = 1024] = "TypeofNEBigInt"; TypeFacts3[TypeFacts3["TypeofNEBoolean"] = 2048] = "TypeofNEBoolean"; TypeFacts3[TypeFacts3["TypeofNESymbol"] = 4096] = "TypeofNESymbol"; TypeFacts3[TypeFacts3["TypeofNEObject"] = 8192] = "TypeofNEObject"; TypeFacts3[TypeFacts3["TypeofNEFunction"] = 16384] = "TypeofNEFunction"; TypeFacts3[TypeFacts3["TypeofNEHostObject"] = 32768] = "TypeofNEHostObject"; TypeFacts3[TypeFacts3["EQUndefined"] = 65536] = "EQUndefined"; TypeFacts3[TypeFacts3["EQNull"] = 131072] = "EQNull"; TypeFacts3[TypeFacts3["EQUndefinedOrNull"] = 262144] = "EQUndefinedOrNull"; TypeFacts3[TypeFacts3["NEUndefined"] = 524288] = "NEUndefined"; TypeFacts3[TypeFacts3["NENull"] = 1048576] = "NENull"; TypeFacts3[TypeFacts3["NEUndefinedOrNull"] = 2097152] = "NEUndefinedOrNull"; TypeFacts3[TypeFacts3["Truthy"] = 4194304] = "Truthy"; TypeFacts3[TypeFacts3["Falsy"] = 8388608] = "Falsy"; TypeFacts3[TypeFacts3["IsUndefined"] = 16777216] = "IsUndefined"; TypeFacts3[TypeFacts3["IsNull"] = 33554432] = "IsNull"; TypeFacts3[TypeFacts3["IsUndefinedOrNull"] = 50331648] = "IsUndefinedOrNull"; TypeFacts3[TypeFacts3["All"] = 134217727] = "All"; TypeFacts3[TypeFacts3["BaseStringStrictFacts"] = 3735041] = "BaseStringStrictFacts"; TypeFacts3[TypeFacts3["BaseStringFacts"] = 12582401] = "BaseStringFacts"; TypeFacts3[TypeFacts3["StringStrictFacts"] = 16317953] = "StringStrictFacts"; TypeFacts3[TypeFacts3["StringFacts"] = 16776705] = "StringFacts"; TypeFacts3[TypeFacts3["EmptyStringStrictFacts"] = 12123649] = "EmptyStringStrictFacts"; TypeFacts3[TypeFacts3["EmptyStringFacts"] = 12582401] = "EmptyStringFacts"; TypeFacts3[TypeFacts3["NonEmptyStringStrictFacts"] = 7929345] = "NonEmptyStringStrictFacts"; TypeFacts3[TypeFacts3["NonEmptyStringFacts"] = 16776705] = "NonEmptyStringFacts"; TypeFacts3[TypeFacts3["BaseNumberStrictFacts"] = 3734786] = "BaseNumberStrictFacts"; TypeFacts3[TypeFacts3["BaseNumberFacts"] = 12582146] = "BaseNumberFacts"; TypeFacts3[TypeFacts3["NumberStrictFacts"] = 16317698] = "NumberStrictFacts"; TypeFacts3[TypeFacts3["NumberFacts"] = 16776450] = "NumberFacts"; TypeFacts3[TypeFacts3["ZeroNumberStrictFacts"] = 12123394] = "ZeroNumberStrictFacts"; TypeFacts3[TypeFacts3["ZeroNumberFacts"] = 12582146] = "ZeroNumberFacts"; TypeFacts3[TypeFacts3["NonZeroNumberStrictFacts"] = 7929090] = "NonZeroNumberStrictFacts"; TypeFacts3[TypeFacts3["NonZeroNumberFacts"] = 16776450] = "NonZeroNumberFacts"; TypeFacts3[TypeFacts3["BaseBigIntStrictFacts"] = 3734276] = "BaseBigIntStrictFacts"; TypeFacts3[TypeFacts3["BaseBigIntFacts"] = 12581636] = "BaseBigIntFacts"; TypeFacts3[TypeFacts3["BigIntStrictFacts"] = 16317188] = "BigIntStrictFacts"; TypeFacts3[TypeFacts3["BigIntFacts"] = 16775940] = "BigIntFacts"; TypeFacts3[TypeFacts3["ZeroBigIntStrictFacts"] = 12122884] = "ZeroBigIntStrictFacts"; TypeFacts3[TypeFacts3["ZeroBigIntFacts"] = 12581636] = "ZeroBigIntFacts"; TypeFacts3[TypeFacts3["NonZeroBigIntStrictFacts"] = 7928580] = "NonZeroBigIntStrictFacts"; TypeFacts3[TypeFacts3["NonZeroBigIntFacts"] = 16775940] = "NonZeroBigIntFacts"; TypeFacts3[TypeFacts3["BaseBooleanStrictFacts"] = 3733256] = "BaseBooleanStrictFacts"; TypeFacts3[TypeFacts3["BaseBooleanFacts"] = 12580616] = "BaseBooleanFacts"; TypeFacts3[TypeFacts3["BooleanStrictFacts"] = 16316168] = "BooleanStrictFacts"; TypeFacts3[TypeFacts3["BooleanFacts"] = 16774920] = "BooleanFacts"; TypeFacts3[TypeFacts3["FalseStrictFacts"] = 12121864] = "FalseStrictFacts"; TypeFacts3[TypeFacts3["FalseFacts"] = 12580616] = "FalseFacts"; TypeFacts3[TypeFacts3["TrueStrictFacts"] = 7927560] = "TrueStrictFacts"; TypeFacts3[TypeFacts3["TrueFacts"] = 16774920] = "TrueFacts"; TypeFacts3[TypeFacts3["SymbolStrictFacts"] = 7925520] = "SymbolStrictFacts"; TypeFacts3[TypeFacts3["SymbolFacts"] = 16772880] = "SymbolFacts"; TypeFacts3[TypeFacts3["ObjectStrictFacts"] = 7888800] = "ObjectStrictFacts"; TypeFacts3[TypeFacts3["ObjectFacts"] = 16736160] = "ObjectFacts"; TypeFacts3[TypeFacts3["FunctionStrictFacts"] = 7880640] = "FunctionStrictFacts"; TypeFacts3[TypeFacts3["FunctionFacts"] = 16728000] = "FunctionFacts"; TypeFacts3[TypeFacts3["VoidFacts"] = 9830144] = "VoidFacts"; TypeFacts3[TypeFacts3["UndefinedFacts"] = 26607360] = "UndefinedFacts"; TypeFacts3[TypeFacts3["NullFacts"] = 42917664] = "NullFacts"; TypeFacts3[TypeFacts3["EmptyObjectStrictFacts"] = 83427327] = "EmptyObjectStrictFacts"; TypeFacts3[TypeFacts3["EmptyObjectFacts"] = 83886079] = "EmptyObjectFacts"; TypeFacts3[TypeFacts3["UnknownFacts"] = 83886079] = "UnknownFacts"; TypeFacts3[TypeFacts3["AllTypeofNE"] = 556800] = "AllTypeofNE"; TypeFacts3[TypeFacts3["OrFactsMask"] = 8256] = "OrFactsMask"; TypeFacts3[TypeFacts3["AndFactsMask"] = 134209471] = "AndFactsMask"; return TypeFacts3; })(TypeFacts || {}); var typeofNEFacts = new Map(Object.entries({ string: 256, number: 512, bigint: 1024, boolean: 2048, symbol: 4096, undefined: 524288, object: 8192, function: 16384 })); var CheckMode = /* @__PURE__ */ ((CheckMode3) => { CheckMode3[CheckMode3["Normal"] = 0] = "Normal"; CheckMode3[CheckMode3["Contextual"] = 1] = "Contextual"; CheckMode3[CheckMode3["Inferential"] = 2] = "Inferential"; CheckMode3[CheckMode3["SkipContextSensitive"] = 4] = "SkipContextSensitive"; CheckMode3[CheckMode3["SkipGenericFunctions"] = 8] = "SkipGenericFunctions"; CheckMode3[CheckMode3["IsForSignatureHelp"] = 16] = "IsForSignatureHelp"; CheckMode3[CheckMode3["RestBindingElement"] = 32] = "RestBindingElement"; CheckMode3[CheckMode3["TypeOnly"] = 64] = "TypeOnly"; return CheckMode3; })(CheckMode || {}); var SignatureCheckMode = /* @__PURE__ */ ((SignatureCheckMode3) => { SignatureCheckMode3[SignatureCheckMode3["None"] = 0] = "None"; SignatureCheckMode3[SignatureCheckMode3["BivariantCallback"] = 1] = "BivariantCallback"; SignatureCheckMode3[SignatureCheckMode3["StrictCallback"] = 2] = "StrictCallback"; SignatureCheckMode3[SignatureCheckMode3["IgnoreReturnTypes"] = 4] = "IgnoreReturnTypes"; SignatureCheckMode3[SignatureCheckMode3["StrictArity"] = 8] = "StrictArity"; SignatureCheckMode3[SignatureCheckMode3["StrictTopSignature"] = 16] = "StrictTopSignature"; SignatureCheckMode3[SignatureCheckMode3["Callback"] = 3] = "Callback"; return SignatureCheckMode3; })(SignatureCheckMode || {}); var isNotOverloadAndNotAccessor = and(isNotOverload, isNotAccessor); var intrinsicTypeKinds = new Map(Object.entries({ Uppercase: 0, Lowercase: 1, Capitalize: 2, Uncapitalize: 3, NoInfer: 4 })); var SymbolLinks = class { }; function NodeLinks() { this.flags = 0; } function getNodeId(node) { if (!node.id) { node.id = nextNodeId; nextNodeId++; } return node.id; } function getSymbolId(symbol) { if (!symbol.id) { symbol.id = nextSymbolId; nextSymbolId++; } return symbol.id; } function isInstantiatedModule(node, preserveConstEnums) { const moduleState = getModuleInstanceState(node); return moduleState === 1 || preserveConstEnums && moduleState === 2; } function createTypeChecker(host) { var deferredDiagnosticsCallbacks = []; var addLazyDiagnostic = (arg) => { deferredDiagnosticsCallbacks.push(arg); }; var cancellationToken; var scanner2; var Symbol48 = objectAllocator.getSymbolConstructor(); var Type29 = objectAllocator.getTypeConstructor(); var Signature13 = objectAllocator.getSignatureConstructor(); var typeCount = 0; var symbolCount = 0; var totalInstantiationCount = 0; var instantiationCount = 0; var instantiationDepth = 0; var inlineLevel = 0; var currentNode; var varianceTypeParameter; var isInferencePartiallyBlocked = false; var withinUnreachableCode = false; var reportedUnreachableNodes; var emptySymbols = createSymbolTable(); var arrayVariances = [1]; var compilerOptions = host.getCompilerOptions(); var languageVersion = getEmitScriptTarget(compilerOptions); var moduleKind = getEmitModuleKind(compilerOptions); var legacyDecorators = !!compilerOptions.experimentalDecorators; var useDefineForClassFields = getUseDefineForClassFields(compilerOptions); var emitStandardClassFields = getEmitStandardClassFields(compilerOptions); var allowSyntheticDefaultImports = getAllowSyntheticDefaultImports(compilerOptions); var strictNullChecks = getStrictOptionValue(compilerOptions, "strictNullChecks"); var strictFunctionTypes = getStrictOptionValue(compilerOptions, "strictFunctionTypes"); var strictBindCallApply = getStrictOptionValue(compilerOptions, "strictBindCallApply"); var strictPropertyInitialization = getStrictOptionValue(compilerOptions, "strictPropertyInitialization"); var strictBuiltinIteratorReturn = getStrictOptionValue(compilerOptions, "strictBuiltinIteratorReturn"); var noImplicitAny = getStrictOptionValue(compilerOptions, "noImplicitAny"); var noImplicitThis = getStrictOptionValue(compilerOptions, "noImplicitThis"); var useUnknownInCatchVariables = getStrictOptionValue(compilerOptions, "useUnknownInCatchVariables"); var exactOptionalPropertyTypes = compilerOptions.exactOptionalPropertyTypes; var noUncheckedSideEffectImports = compilerOptions.noUncheckedSideEffectImports !== false; var stableTypeOrdering = !!compilerOptions.stableTypeOrdering; var fileIndexMap = stableTypeOrdering ? new Map(host.getSourceFiles().map((file, i) => [file, i])) : undefined; var checkBinaryExpression = createCheckBinaryExpression(); var emitResolver = createResolver(); var nodeBuilder = createNodeBuilder(); var syntacticNodeBuilder = createSyntacticTypeNodeBuilder(compilerOptions, nodeBuilder.syntacticBuilderResolver); var evaluate = createEvaluator({ evaluateElementAccessExpression, evaluateEntityNameExpression }); var globals = createSymbolTable(); var undefinedSymbol = createSymbol(4, "undefined"); undefinedSymbol.declarations = []; var globalThisSymbol = createSymbol(1536, "globalThis", 8); globalThisSymbol.exports = globals; globalThisSymbol.declarations = []; globals.set(globalThisSymbol.escapedName, globalThisSymbol); var argumentsSymbol = createSymbol(4, "arguments"); var requireSymbol = createSymbol(4, "require"); var isolatedModulesLikeFlagName = compilerOptions.verbatimModuleSyntax ? "verbatimModuleSyntax" : "isolatedModules"; var canCollectSymbolAliasAccessabilityData = !compilerOptions.verbatimModuleSyntax; var apparentArgumentCount; var lastGetCombinedNodeFlagsNode; var lastGetCombinedNodeFlagsResult = 0; var lastGetCombinedModifierFlagsNode; var lastGetCombinedModifierFlagsResult = 0; var resolveName = createNameResolver({ compilerOptions, requireSymbol, argumentsSymbol, globals, getSymbolOfDeclaration, error: error2, getRequiresScopeChangeCache, setRequiresScopeChangeCache, lookup: getSymbol2, onPropertyWithInvalidInitializer: checkAndReportErrorForInvalidInitializer, onFailedToResolveSymbol, onSuccessfullyResolvedSymbol }); var resolveNameForSymbolSuggestion = createNameResolver({ compilerOptions, requireSymbol, argumentsSymbol, globals, getSymbolOfDeclaration, error: error2, getRequiresScopeChangeCache, setRequiresScopeChangeCache, lookup: getSuggestionForSymbolNameLookup }); const checker = { getNodeCount: () => reduceLeft(host.getSourceFiles(), (n, s) => n + s.nodeCount, 0), getIdentifierCount: () => reduceLeft(host.getSourceFiles(), (n, s) => n + s.identifierCount, 0), getSymbolCount: () => reduceLeft(host.getSourceFiles(), (n, s) => n + s.symbolCount, symbolCount), getTypeCount: () => typeCount, getInstantiationCount: () => totalInstantiationCount, getRelationCacheSizes: () => ({ assignable: assignableRelation.size, identity: identityRelation.size, subtype: subtypeRelation.size, strictSubtype: strictSubtypeRelation.size }), isUndefinedSymbol: (symbol) => symbol === undefinedSymbol, isArgumentsSymbol: (symbol) => symbol === argumentsSymbol, isUnknownSymbol: (symbol) => symbol === unknownSymbol, getMergedSymbol, symbolIsValue, getDiagnostics: getDiagnostics2, getGlobalDiagnostics, getRecursionIdentity, getUnmatchedProperties, getTypeOfSymbolAtLocation: (symbol, locationIn) => { const location = getParseTreeNode(locationIn); return location ? getTypeOfSymbolAtLocation(symbol, location) : errorType; }, getTypeOfSymbol, getSymbolsOfParameterPropertyDeclaration: (parameterIn, parameterName) => { const parameter = getParseTreeNode(parameterIn, isParameter); if (parameter === undefined) return Debug.fail("Cannot get symbols of a synthetic parameter that cannot be resolved to a parse-tree node."); Debug.assert(isParameterPropertyDeclaration(parameter, parameter.parent)); return getSymbolsOfParameterPropertyDeclaration(parameter, escapeLeadingUnderscores(parameterName)); }, getDeclaredTypeOfSymbol, getPropertiesOfType, getPropertyOfType: (type, name) => getPropertyOfType(type, escapeLeadingUnderscores(name)), getPrivateIdentifierPropertyOfType: (leftType, name, location) => { const node = getParseTreeNode(location); if (!node) { return; } const propName = escapeLeadingUnderscores(name); const lexicallyScopedIdentifier = lookupSymbolForPrivateIdentifierDeclaration(propName, node); return lexicallyScopedIdentifier ? getPrivateIdentifierPropertyOfType(leftType, lexicallyScopedIdentifier) : undefined; }, getTypeOfPropertyOfType: (type, name) => getTypeOfPropertyOfType(type, escapeLeadingUnderscores(name)), getIndexInfoOfType: (type, kind) => getIndexInfoOfType(type, kind === 0 ? stringType : numberType), getIndexInfosOfType, getIndexInfosOfIndexSymbol, getSignaturesOfType, getIndexTypeOfType: (type, kind) => getIndexTypeOfType(type, kind === 0 ? stringType : numberType), getIndexType: (type) => getIndexType(type), getBaseTypes, getBaseTypeOfLiteralType, getWidenedType, getWidenedLiteralType, fillMissingTypeArguments, getTypeFromTypeNode: (nodeIn) => { const node = getParseTreeNode(nodeIn, isTypeNode); return node ? getTypeFromTypeNode(node) : errorType; }, getParameterType: getTypeAtPosition, getParameterIdentifierInfoAtPosition, getPromisedTypeOfPromise, getAwaitedType: (type) => getAwaitedType(type), getReturnTypeOfSignature, isNullableType, getNullableType, getNonNullableType, getNonOptionalType: removeOptionalTypeMarker, getTypeArguments, typeToTypeNode: nodeBuilder.typeToTypeNode, typePredicateToTypePredicateNode: nodeBuilder.typePredicateToTypePredicateNode, indexInfoToIndexSignatureDeclaration: nodeBuilder.indexInfoToIndexSignatureDeclaration, signatureToSignatureDeclaration: nodeBuilder.signatureToSignatureDeclaration, symbolToEntityName: nodeBuilder.symbolToEntityName, symbolToExpression: nodeBuilder.symbolToExpression, symbolToNode: nodeBuilder.symbolToNode, symbolToTypeParameterDeclarations: nodeBuilder.symbolToTypeParameterDeclarations, symbolToParameterDeclaration: nodeBuilder.symbolToParameterDeclaration, typeParameterToDeclaration: nodeBuilder.typeParameterToDeclaration, getSymbolsInScope: (locationIn, meaning) => { const location = getParseTreeNode(locationIn); return location ? getSymbolsInScope(location, meaning) : []; }, getSymbolAtLocation: (nodeIn) => { const node = getParseTreeNode(nodeIn); return node ? getSymbolAtLocation(node, true) : undefined; }, getIndexInfosAtLocation: (nodeIn) => { const node = getParseTreeNode(nodeIn); return node ? getIndexInfosAtLocation(node) : undefined; }, getShorthandAssignmentValueSymbol: (nodeIn) => { const node = getParseTreeNode(nodeIn); return node ? getShorthandAssignmentValueSymbol(node) : undefined; }, getExportSpecifierLocalTargetSymbol: (nodeIn) => { const node = getParseTreeNode(nodeIn, isExportSpecifier); return node ? getExportSpecifierLocalTargetSymbol(node) : undefined; }, getExportSymbolOfSymbol(symbol) { return getMergedSymbol(symbol.exportSymbol || symbol); }, getTypeAtLocation: (nodeIn) => { const node = getParseTreeNode(nodeIn); return node ? getTypeOfNode(node) : errorType; }, getTypeOfAssignmentPattern: (nodeIn) => { const node = getParseTreeNode(nodeIn, isAssignmentPattern); return node && getTypeOfAssignmentPattern(node) || errorType; }, getPropertySymbolOfDestructuringAssignment: (locationIn) => { const location = getParseTreeNode(locationIn, isIdentifier); return location ? getPropertySymbolOfDestructuringAssignment(location) : undefined; }, signatureToString: (signature, enclosingDeclaration, flags, kind) => { return signatureToString(signature, getParseTreeNode(enclosingDeclaration), flags, kind); }, typeToString: (type, enclosingDeclaration, flags) => { return typeToString(type, getParseTreeNode(enclosingDeclaration), flags); }, symbolToString: (symbol, enclosingDeclaration, meaning, flags) => { return symbolToString(symbol, getParseTreeNode(enclosingDeclaration), meaning, flags); }, typePredicateToString: (predicate, enclosingDeclaration, flags) => { return typePredicateToString(predicate, getParseTreeNode(enclosingDeclaration), flags); }, writeSignature: (signature, enclosingDeclaration, flags, kind, writer, maximumLength, verbosityLevel, out) => { return signatureToString(signature, getParseTreeNode(enclosingDeclaration), flags, kind, writer, maximumLength, verbosityLevel, out); }, writeType: (type, enclosingDeclaration, flags, writer, maximumLength, verbosityLevel, out) => { return typeToString(type, getParseTreeNode(enclosingDeclaration), flags, writer, maximumLength, verbosityLevel, out); }, writeSymbol: (symbol, enclosingDeclaration, meaning, flags, writer) => { return symbolToString(symbol, getParseTreeNode(enclosingDeclaration), meaning, flags, writer); }, writeTypePredicate: (predicate, enclosingDeclaration, flags, writer) => { return typePredicateToString(predicate, getParseTreeNode(enclosingDeclaration), flags, writer); }, getAugmentedPropertiesOfType, getRootSymbols, getSymbolOfExpando, getContextualType: (nodeIn, contextFlags) => { const node = getParseTreeNode(nodeIn, isExpression); if (!node) { return; } if (contextFlags & 4) { return runWithInferenceBlockedFromSourceNode(node, () => getContextualType2(node, contextFlags)); } return getContextualType2(node, contextFlags); }, getContextualTypeForObjectLiteralElement: (nodeIn) => { const node = getParseTreeNode(nodeIn, isObjectLiteralElementLike); return node ? getContextualTypeForObjectLiteralElement(node, undefined) : undefined; }, getContextualTypeForArgumentAtIndex: (nodeIn, argIndex) => { const node = getParseTreeNode(nodeIn, isCallLikeExpression); return node && getContextualTypeForArgumentAtIndex(node, argIndex); }, getContextualTypeForJsxAttribute: (nodeIn) => { const node = getParseTreeNode(nodeIn, isJsxAttributeLike); return node && getContextualTypeForJsxAttribute(node, undefined); }, isContextSensitive, getTypeOfPropertyOfContextualType, getFullyQualifiedName, getResolvedSignature: (node, candidatesOutArray, argumentCount) => getResolvedSignatureWorker(node, candidatesOutArray, argumentCount, 0), getCandidateSignaturesForStringLiteralCompletions, getResolvedSignatureForSignatureHelp: (node, candidatesOutArray, argumentCount) => runWithoutResolvedSignatureCaching(node, () => getResolvedSignatureWorker(node, candidatesOutArray, argumentCount, 16)), getExpandedParameters, hasEffectiveRestParameter, containsArgumentsReference, getConstantValue: (nodeIn) => { const node = getParseTreeNode(nodeIn, canHaveConstantValue); return node ? getConstantValue2(node) : undefined; }, isValidPropertyAccess: (nodeIn, propertyName) => { const node = getParseTreeNode(nodeIn, isPropertyAccessOrQualifiedNameOrImportTypeNode); return !!node && isValidPropertyAccess(node, escapeLeadingUnderscores(propertyName)); }, isValidPropertyAccessForCompletions: (nodeIn, type, property) => { const node = getParseTreeNode(nodeIn, isPropertyAccessExpression); return !!node && isValidPropertyAccessForCompletions(node, type, property); }, getSignatureFromDeclaration: (declarationIn) => { const declaration = getParseTreeNode(declarationIn, isFunctionLike); return declaration ? getSignatureFromDeclaration(declaration) : undefined; }, isImplementationOfOverload: (nodeIn) => { const node = getParseTreeNode(nodeIn, isFunctionLike); return node ? isImplementationOfOverload(node) : undefined; }, getImmediateAliasedSymbol, getAliasedSymbol: resolveAlias, getEmitResolver, requiresAddingImplicitUndefined, getExportsOfModule: getExportsOfModuleAsArray, getExportsAndPropertiesOfModule, forEachExportAndPropertyOfModule, getSymbolWalker: createGetSymbolWalker(getRestTypeOfSignature, getTypePredicateOfSignature, getReturnTypeOfSignature, getBaseTypes, resolveStructuredTypeMembers, getTypeOfSymbol, getResolvedSymbol, getConstraintOfTypeParameter, getFirstIdentifier, getTypeArguments), getAmbientModules, getJsxIntrinsicTagNamesAt, isOptionalParameter: (nodeIn) => { const node = getParseTreeNode(nodeIn, isParameter); return node ? isOptionalParameter(node) : false; }, tryGetMemberInModuleExports: (name, symbol) => tryGetMemberInModuleExports(escapeLeadingUnderscores(name), symbol), tryGetMemberInModuleExportsAndProperties: (name, symbol) => tryGetMemberInModuleExportsAndProperties(escapeLeadingUnderscores(name), symbol), tryFindAmbientModule: (moduleName) => tryFindAmbientModule(moduleName, true), getApparentType, getUnionType, isTypeAssignableTo, createAnonymousType, createSignature, createSymbol, createIndexInfo, getAnyType: () => anyType, getStringType: () => stringType, getStringLiteralType, getNumberType: () => numberType, getNumberLiteralType, getBigIntType: () => bigintType, getBigIntLiteralType, getUnknownType: () => unknownType, createPromiseType, createArrayType, getElementTypeOfArrayType, getBooleanType: () => booleanType, getFalseType: (fresh) => fresh ? falseType : regularFalseType, getTrueType: (fresh) => fresh ? trueType : regularTrueType, getVoidType: () => voidType, getUndefinedType: () => undefinedType, getNullType: () => nullType, getESSymbolType: () => esSymbolType, getNeverType: () => neverType, getNonPrimitiveType: () => nonPrimitiveType, getOptionalType: () => optionalType, getPromiseType: () => getGlobalPromiseType(false), getPromiseLikeType: () => getGlobalPromiseLikeType(false), getAnyAsyncIterableType: () => { const type = getGlobalAsyncIterableType(false); if (type === emptyGenericType) return; return createTypeReference(type, [anyType, anyType, anyType]); }, isSymbolAccessible, isArrayType, isTupleType, isArrayLikeType, isEmptyAnonymousObjectType, isTypeInvalidDueToUnionDiscriminant, getExactOptionalProperties, getAllPossiblePropertiesOfTypes, getSuggestedSymbolForNonexistentProperty, getSuggestedSymbolForNonexistentJSXAttribute, getSuggestedSymbolForNonexistentSymbol: (location, name, meaning) => getSuggestedSymbolForNonexistentSymbol(location, escapeLeadingUnderscores(name), meaning), getSuggestedSymbolForNonexistentModule, getSuggestedSymbolForNonexistentClassMember, getBaseConstraintOfType, getDefaultFromTypeParameter: (type) => type && type.flags & 524288 ? getDefaultFromTypeParameter(type) : undefined, resolveName(name, location, meaning, excludeGlobals) { return resolveName(location, escapeLeadingUnderscores(name), meaning, undefined, false, excludeGlobals); }, getJsxNamespace: (n) => unescapeLeadingUnderscores(getJsxNamespace(n)), getJsxFragmentFactory: (n) => { const jsxFragmentFactory = getJsxFragmentFactoryEntity(n); return jsxFragmentFactory && unescapeLeadingUnderscores(getFirstIdentifier(jsxFragmentFactory).escapedText); }, getAccessibleSymbolChain, getTypePredicateOfSignature, resolveExternalModuleName: (moduleSpecifierIn) => { const moduleSpecifier = getParseTreeNode(moduleSpecifierIn, isExpression); return moduleSpecifier && resolveExternalModuleName(moduleSpecifier, moduleSpecifier, true); }, resolveExternalModuleSymbol, tryGetThisTypeAt: (nodeIn, includeGlobalThis, container) => { const node = getParseTreeNode(nodeIn); return node && tryGetThisTypeAt(node, includeGlobalThis, container); }, getTypeArgumentConstraint: (nodeIn) => { const node = getParseTreeNode(nodeIn, isTypeNode); return node && getTypeArgumentConstraint(node); }, getSuggestionDiagnostics: (fileIn, ct) => { const file = getParseTreeNode(fileIn, isSourceFile) || Debug.fail("Could not determine parsed source file."); if (skipTypeChecking(file, compilerOptions, host)) { return emptyArray; } let diagnostics2; try { cancellationToken = ct; checkSourceFileWithEagerDiagnostics(file); Debug.assert(!!(getNodeLinks(file).flags & 1)); diagnostics2 = addRange(diagnostics2, suggestionDiagnostics.getDiagnostics(file.fileName)); checkUnusedIdentifiers(getPotentiallyUnusedIdentifiers(file), (containingNode, kind, diag2) => { if (!containsParseError(containingNode) && !unusedIsError(kind, !!(containingNode.flags & 33554432))) { (diagnostics2 || (diagnostics2 = [])).push({ ...diag2, category: 2 }); } }); return diagnostics2 || emptyArray; } finally { cancellationToken = undefined; } }, runWithCancellationToken: (token, callback) => { try { cancellationToken = token; return callback(checker); } finally { cancellationToken = undefined; } }, getLocalTypeParametersOfClassOrInterfaceOrTypeAlias, isDeclarationVisible, isPropertyAccessible, getTypeOnlyAliasDeclaration, getMemberOverrideModifierStatus, isTypeParameterPossiblyReferenced, typeHasCallOrConstructSignatures, getSymbolFlags, getTypeArgumentsForResolvedSignature, isLibType }; function getTypeArgumentsForResolvedSignature(signature) { if (signature.mapper === undefined) return; return instantiateTypes((signature.target || signature).typeParameters, signature.mapper); } function getCandidateSignaturesForStringLiteralCompletions(call, editingArgument) { const candidatesSet = /* @__PURE__ */ new Set; const candidates = []; runWithInferenceBlockedFromSourceNode(editingArgument, () => getResolvedSignatureWorker(call, candidates, undefined, 0)); for (const candidate of candidates) { candidatesSet.add(candidate); } candidates.length = 0; runWithoutResolvedSignatureCaching(editingArgument, () => getResolvedSignatureWorker(call, candidates, undefined, 0)); for (const candidate of candidates) { candidatesSet.add(candidate); } return arrayFrom(candidatesSet); } function runWithoutResolvedSignatureCaching(node, fn) { node = findAncestor(node, isCallLikeOrFunctionLikeExpression); if (node) { const cachedResolvedSignatures = []; const cachedTypes2 = []; while (node) { const nodeLinks2 = getNodeLinks(node); cachedResolvedSignatures.push([nodeLinks2, nodeLinks2.resolvedSignature]); nodeLinks2.resolvedSignature = undefined; if (isFunctionExpressionOrArrowFunction(node)) { const symbolLinks2 = getSymbolLinks(getSymbolOfDeclaration(node)); const type = symbolLinks2.type; cachedTypes2.push([symbolLinks2, type]); symbolLinks2.type = undefined; } node = findAncestor(node.parent, isCallLikeOrFunctionLikeExpression); } const result = fn(); for (const [nodeLinks2, resolvedSignature] of cachedResolvedSignatures) { nodeLinks2.resolvedSignature = resolvedSignature; } for (const [symbolLinks2, type] of cachedTypes2) { symbolLinks2.type = type; } return result; } return fn(); } function runWithInferenceBlockedFromSourceNode(node, fn) { const containingCall = findAncestor(node, isCallLikeExpression); if (containingCall) { let toMarkSkip = node; do { getNodeLinks(toMarkSkip).skipDirectInference = true; toMarkSkip = toMarkSkip.parent; } while (toMarkSkip && toMarkSkip !== containingCall); } isInferencePartiallyBlocked = true; const result = runWithoutResolvedSignatureCaching(node, fn); isInferencePartiallyBlocked = false; if (containingCall) { let toMarkSkip = node; do { getNodeLinks(toMarkSkip).skipDirectInference = undefined; toMarkSkip = toMarkSkip.parent; } while (toMarkSkip && toMarkSkip !== containingCall); } return result; } function getResolvedSignatureWorker(nodeIn, candidatesOutArray, argumentCount, checkMode) { const node = getParseTreeNode(nodeIn, isCallLikeExpression); apparentArgumentCount = argumentCount; const res = !node ? undefined : getResolvedSignature(node, candidatesOutArray, checkMode); apparentArgumentCount = undefined; return res; } var tupleTypes = /* @__PURE__ */ new Map; var unionTypes = /* @__PURE__ */ new Map; var unionOfUnionTypes = /* @__PURE__ */ new Map; var intersectionTypes = /* @__PURE__ */ new Map; var stringLiteralTypes = /* @__PURE__ */ new Map; var numberLiteralTypes = /* @__PURE__ */ new Map; var bigIntLiteralTypes = /* @__PURE__ */ new Map; var enumLiteralTypes = /* @__PURE__ */ new Map; var indexedAccessTypes = /* @__PURE__ */ new Map; var templateLiteralTypes = /* @__PURE__ */ new Map; var stringMappingTypes = /* @__PURE__ */ new Map; var substitutionTypes = /* @__PURE__ */ new Map; var subtypeReductionCache = /* @__PURE__ */ new Map; var decoratorContextOverrideTypeCache = /* @__PURE__ */ new Map; var cachedTypes = /* @__PURE__ */ new Map; var evolvingArrayTypes = []; var undefinedProperties = /* @__PURE__ */ new Map; var markerTypes = /* @__PURE__ */ new Set; var unknownSymbol = createSymbol(4, "unknown"); var resolvingSymbol = createSymbol(0, "__resolving__"); var unresolvedSymbols = /* @__PURE__ */ new Map; var errorTypes = /* @__PURE__ */ new Map; var seenIntrinsicNames = /* @__PURE__ */ new Set; var anyType = createIntrinsicType(1, "any"); var autoType = createIntrinsicType(1, "any", 262144, "auto"); var wildcardType = createIntrinsicType(1, "any", undefined, "wildcard"); var blockedStringType = createIntrinsicType(1, "any", undefined, "blocked string"); var errorType = createIntrinsicType(1, "error"); var unresolvedType = createIntrinsicType(1, "unresolved"); var nonInferrableAnyType = createIntrinsicType(1, "any", 65536, "non-inferrable"); var intrinsicMarkerType = createIntrinsicType(1, "intrinsic"); var unknownType = createIntrinsicType(2, "unknown"); var undefinedType = createIntrinsicType(4, "undefined"); var undefinedWideningType = strictNullChecks ? undefinedType : createIntrinsicType(4, "undefined", 65536, "widening"); var missingType = createIntrinsicType(4, "undefined", undefined, "missing"); var undefinedOrMissingType = exactOptionalPropertyTypes ? missingType : undefinedType; var optionalType = createIntrinsicType(4, "undefined", undefined, "optional"); var nullType = createIntrinsicType(8, "null"); var nullWideningType = strictNullChecks ? nullType : createIntrinsicType(8, "null", 65536, "widening"); var stringType = createIntrinsicType(32, "string"); var numberType = createIntrinsicType(64, "number"); var bigintType = createIntrinsicType(128, "bigint"); var falseType = createIntrinsicType(8192, "false", undefined, "fresh"); var regularFalseType = createIntrinsicType(8192, "false"); var trueType = createIntrinsicType(8192, "true", undefined, "fresh"); var regularTrueType = createIntrinsicType(8192, "true"); trueType.regularType = regularTrueType; trueType.freshType = trueType; regularTrueType.regularType = regularTrueType; regularTrueType.freshType = trueType; falseType.regularType = regularFalseType; falseType.freshType = falseType; regularFalseType.regularType = regularFalseType; regularFalseType.freshType = falseType; var booleanType = getUnionType([regularFalseType, regularTrueType]); var esSymbolType = createIntrinsicType(512, "symbol"); var voidType = createIntrinsicType(16, "void"); var neverType = createIntrinsicType(262144, "never"); var silentNeverType = createIntrinsicType(262144, "never", 262144, "silent"); var implicitNeverType = createIntrinsicType(262144, "never", undefined, "implicit"); var unreachableNeverType = createIntrinsicType(262144, "never", undefined, "unreachable"); var nonPrimitiveType = createIntrinsicType(131072, "object"); var stringOrNumberType = getUnionType([stringType, numberType]); var stringNumberSymbolType = getUnionType([stringType, numberType, esSymbolType]); var numberOrBigIntType = getUnionType([numberType, bigintType]); var templateConstraintType = getUnionType([stringType, numberType, booleanType, bigintType, nullType, undefinedType]); var numericStringType = getTemplateLiteralType(["", ""], [numberType]); var restrictiveMapper = makeFunctionTypeMapper((t) => t.flags & 524288 ? getRestrictiveTypeParameter(t) : t, () => "(restrictive mapper)"); var permissiveMapper = makeFunctionTypeMapper((t) => t.flags & 524288 ? wildcardType : t, () => "(permissive mapper)"); var uniqueLiteralType = createIntrinsicType(262144, "never", undefined, "unique literal"); var uniqueLiteralMapper = makeFunctionTypeMapper((t) => t.flags & 524288 ? uniqueLiteralType : t, () => "(unique literal mapper)"); var outofbandVarianceMarkerHandler; var reportUnreliableMapper = makeFunctionTypeMapper((t) => { if (outofbandVarianceMarkerHandler && (t === markerSuperType || t === markerSubType || t === markerOtherType)) { outofbandVarianceMarkerHandler(true); } return t; }, () => "(unmeasurable reporter)"); var reportUnmeasurableMapper = makeFunctionTypeMapper((t) => { if (outofbandVarianceMarkerHandler && (t === markerSuperType || t === markerSubType || t === markerOtherType)) { outofbandVarianceMarkerHandler(false); } return t; }, () => "(unreliable reporter)"); var emptyObjectType = createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, emptyArray); var emptyJsxObjectType = createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, emptyArray); emptyJsxObjectType.objectFlags |= 2048; var emptyFreshJsxObjectType = createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, emptyArray); emptyFreshJsxObjectType.objectFlags |= 2048 | 8192 | 128 | 131072; var emptyTypeLiteralSymbol = createSymbol(2048, "__type"); emptyTypeLiteralSymbol.members = createSymbolTable(); var emptyTypeLiteralType = createAnonymousType(emptyTypeLiteralSymbol, emptySymbols, emptyArray, emptyArray, emptyArray); var unknownEmptyObjectType = createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, emptyArray); var unknownUnionType = strictNullChecks ? getUnionType([undefinedType, nullType, unknownEmptyObjectType]) : unknownType; var emptyGenericType = createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, emptyArray); emptyGenericType.instantiations = /* @__PURE__ */ new Map; var anyFunctionType = createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, emptyArray); anyFunctionType.objectFlags |= 262144; var noConstraintType = createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, emptyArray); var circularConstraintType = createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, emptyArray); var resolvingDefaultType = createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, emptyArray); var markerSuperType = createTypeParameter(); var markerSubType = createTypeParameter(); markerSubType.constraint = markerSuperType; var markerOtherType = createTypeParameter(); var markerSuperTypeForCheck = createTypeParameter(); var markerSubTypeForCheck = createTypeParameter(); markerSubTypeForCheck.constraint = markerSuperTypeForCheck; var noTypePredicate = createTypePredicate(1, "<>", 0, anyType); var anySignature = createSignature(undefined, undefined, undefined, emptyArray, anyType, undefined, 0, 0); var unknownSignature = createSignature(undefined, undefined, undefined, emptyArray, errorType, undefined, 0, 0); var resolvingSignature = createSignature(undefined, undefined, undefined, emptyArray, anyType, undefined, 0, 0); var silentNeverSignature = createSignature(undefined, undefined, undefined, emptyArray, silentNeverType, undefined, 0, 0); var enumNumberIndexInfo = createIndexInfo(numberType, stringType, true); var anyBaseTypeIndexInfo = createIndexInfo(stringType, anyType, false); var iterationTypesCache = /* @__PURE__ */ new Map; var noIterationTypes = { get yieldType() { return Debug.fail("Not supported"); }, get returnType() { return Debug.fail("Not supported"); }, get nextType() { return Debug.fail("Not supported"); } }; var anyIterationTypes = createIterationTypes(anyType, anyType, anyType); var asyncIterationTypesResolver = { iterableCacheKey: "iterationTypesOfAsyncIterable", iteratorCacheKey: "iterationTypesOfAsyncIterator", iteratorSymbolName: "asyncIterator", getGlobalIteratorType: getGlobalAsyncIteratorType, getGlobalIterableType: getGlobalAsyncIterableType, getGlobalIterableIteratorType: getGlobalAsyncIterableIteratorType, getGlobalIteratorObjectType: getGlobalAsyncIteratorObjectType, getGlobalGeneratorType: getGlobalAsyncGeneratorType, getGlobalBuiltinIteratorTypes: getGlobalBuiltinAsyncIteratorTypes, resolveIterationType: (type, errorNode) => getAwaitedType(type, errorNode, Diagnostics.Type_of_await_operand_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member), mustHaveANextMethodDiagnostic: Diagnostics.An_async_iterator_must_have_a_next_method, mustBeAMethodDiagnostic: Diagnostics.The_0_property_of_an_async_iterator_must_be_a_method, mustHaveAValueDiagnostic: Diagnostics.The_type_returned_by_the_0_method_of_an_async_iterator_must_be_a_promise_for_a_type_with_a_value_property }; var syncIterationTypesResolver = { iterableCacheKey: "iterationTypesOfIterable", iteratorCacheKey: "iterationTypesOfIterator", iteratorSymbolName: "iterator", getGlobalIteratorType, getGlobalIterableType, getGlobalIterableIteratorType, getGlobalIteratorObjectType, getGlobalGeneratorType, getGlobalBuiltinIteratorTypes, resolveIterationType: (type, _errorNode) => type, mustHaveANextMethodDiagnostic: Diagnostics.An_iterator_must_have_a_next_method, mustBeAMethodDiagnostic: Diagnostics.The_0_property_of_an_iterator_must_be_a_method, mustHaveAValueDiagnostic: Diagnostics.The_type_returned_by_the_0_method_of_an_iterator_must_have_a_value_property }; var amalgamatedDuplicates; var reverseMappedCache = /* @__PURE__ */ new Map; var reverseHomomorphicMappedCache = /* @__PURE__ */ new Map; var ambientModulesCache; var patternAmbientModules; var patternAmbientModuleAugmentations; var globalObjectType; var globalFunctionType; var globalCallableFunctionType; var globalNewableFunctionType; var globalArrayType; var globalReadonlyArrayType; var globalStringType; var globalNumberType; var globalBooleanType; var globalRegExpType; var globalThisType; var anyArrayType; var autoArrayType; var anyReadonlyArrayType; var deferredGlobalNonNullableTypeAlias; var deferredGlobalESSymbolConstructorSymbol; var deferredGlobalESSymbolConstructorTypeSymbol; var deferredGlobalESSymbolType; var deferredGlobalTypedPropertyDescriptorType; var deferredGlobalPromiseType; var deferredGlobalPromiseLikeType; var deferredGlobalPromiseConstructorSymbol; var deferredGlobalPromiseConstructorLikeType; var deferredGlobalIterableType; var deferredGlobalIteratorType; var deferredGlobalIterableIteratorType; var deferredGlobalIteratorObjectType; var deferredGlobalGeneratorType; var deferredGlobalIteratorYieldResultType; var deferredGlobalIteratorReturnResultType; var deferredGlobalAsyncIterableType; var deferredGlobalAsyncIteratorType; var deferredGlobalAsyncIterableIteratorType; var deferredGlobalBuiltinIteratorTypes; var deferredGlobalBuiltinAsyncIteratorTypes; var deferredGlobalAsyncIteratorObjectType; var deferredGlobalAsyncGeneratorType; var deferredGlobalTemplateStringsArrayType; var deferredGlobalImportMetaType; var deferredGlobalImportMetaExpressionType; var deferredGlobalImportCallOptionsType; var deferredGlobalImportAttributesType; var deferredGlobalDisposableType; var deferredGlobalAsyncDisposableType; var deferredGlobalExtractSymbol; var deferredGlobalOmitSymbol; var deferredGlobalAwaitedSymbol; var deferredGlobalBigIntType; var deferredGlobalNaNSymbol; var deferredGlobalRecordSymbol; var deferredGlobalClassDecoratorContextType; var deferredGlobalClassMethodDecoratorContextType; var deferredGlobalClassGetterDecoratorContextType; var deferredGlobalClassSetterDecoratorContextType; var deferredGlobalClassAccessorDecoratorContextType; var deferredGlobalClassAccessorDecoratorTargetType; var deferredGlobalClassAccessorDecoratorResultType; var deferredGlobalClassFieldDecoratorContextType; var allPotentiallyUnusedIdentifiers = /* @__PURE__ */ new Map; var flowLoopStart = 0; var flowLoopCount = 0; var sharedFlowCount = 0; var flowAnalysisDisabled = false; var flowInvocationCount = 0; var lastFlowNode; var lastFlowNodeReachable; var flowTypeCache; var contextualTypeNodes = []; var contextualTypes = []; var contextualIsCache = []; var contextualTypeCount = 0; var contextualBindingPatterns = []; var inferenceContextNodes = []; var inferenceContexts = []; var inferenceContextCount = 0; var activeTypeMappers = []; var activeTypeMappersCaches = []; var activeTypeMappersCount = 0; var emptyStringType = getStringLiteralType(""); var zeroType = getNumberLiteralType(0); var zeroBigIntType = getBigIntLiteralType({ negative: false, base10Value: "0" }); var resolutionTargets = []; var resolutionResults = []; var resolutionPropertyNames = []; var resolutionStart = 0; var inVarianceComputation = false; var suggestionCount = 0; var maximumSuggestionCount = 10; var mergedSymbols = []; var symbolLinks = []; var nodeLinks = []; var flowLoopCaches = []; var flowLoopNodes = []; var flowLoopKeys = []; var flowLoopTypes = []; var sharedFlowNodes = []; var sharedFlowTypes = []; var flowNodeReachable = []; var flowNodePostSuper = []; var potentialThisCollisions = []; var potentialNewTargetCollisions = []; var potentialWeakMapSetCollisions = []; var potentialReflectCollisions = []; var potentialUnusedRenamedBindingElementsInTypes = []; var awaitedTypeStack = []; var reverseMappedSourceStack = []; var reverseMappedTargetStack = []; var reverseExpandingFlags = 0; var diagnostics = createDiagnosticCollection(); var suggestionDiagnostics = createDiagnosticCollection(); var typeofType = createTypeofType(); var _jsxNamespace; var _jsxFactoryEntity; var subtypeRelation = /* @__PURE__ */ new Map; var strictSubtypeRelation = /* @__PURE__ */ new Map; var assignableRelation = /* @__PURE__ */ new Map; var comparableRelation = /* @__PURE__ */ new Map; var identityRelation = /* @__PURE__ */ new Map; var enumRelation = /* @__PURE__ */ new Map; var suggestedExtensions = [ [".mts", ".mjs"], [".ts", ".js"], [".cts", ".cjs"], [".mjs", ".mjs"], [".js", ".js"], [".cjs", ".cjs"], [".tsx", compilerOptions.jsx === 1 ? ".jsx" : ".js"], [".jsx", ".jsx"], [".json", ".json"] ]; initializeTypeChecker(); return checker; function isDefinitelyReferenceToGlobalSymbolObject(node) { if (!isPropertyAccessExpression(node)) return false; if (!isIdentifier(node.name)) return false; if (!isPropertyAccessExpression(node.expression) && !isIdentifier(node.expression)) return false; if (isIdentifier(node.expression)) { return idText(node.expression) === "Symbol" && getResolvedSymbol(node.expression) === (getGlobalSymbol("Symbol", 111551 | 1048576, undefined) || unknownSymbol); } if (!isIdentifier(node.expression.expression)) return false; return idText(node.expression.name) === "Symbol" && idText(node.expression.expression) === "globalThis" && getResolvedSymbol(node.expression.expression) === globalThisSymbol; } function getCachedType(key) { return key ? cachedTypes.get(key) : undefined; } function setCachedType(key, type) { if (key) cachedTypes.set(key, type); return type; } function getJsxNamespace(location) { if (location) { const file = getSourceFileOfNode(location); if (file) { if (isJsxOpeningFragment(location)) { if (file.localJsxFragmentNamespace) { return file.localJsxFragmentNamespace; } const jsxFragmentPragma = file.pragmas.get("jsxfrag"); if (jsxFragmentPragma) { const chosenPragma = isArray(jsxFragmentPragma) ? jsxFragmentPragma[0] : jsxFragmentPragma; file.localJsxFragmentFactory = parseIsolatedEntityName(chosenPragma.arguments.factory, languageVersion); visitNode(file.localJsxFragmentFactory, markAsSynthetic, isEntityName); if (file.localJsxFragmentFactory) { return file.localJsxFragmentNamespace = getFirstIdentifier(file.localJsxFragmentFactory).escapedText; } } const entity = getJsxFragmentFactoryEntity(location); if (entity) { file.localJsxFragmentFactory = entity; return file.localJsxFragmentNamespace = getFirstIdentifier(entity).escapedText; } } else { const localJsxNamespace = getLocalJsxNamespace(file); if (localJsxNamespace) { return file.localJsxNamespace = localJsxNamespace; } } } } if (!_jsxNamespace) { _jsxNamespace = "React"; if (compilerOptions.jsxFactory) { _jsxFactoryEntity = parseIsolatedEntityName(compilerOptions.jsxFactory, languageVersion); visitNode(_jsxFactoryEntity, markAsSynthetic); if (_jsxFactoryEntity) { _jsxNamespace = getFirstIdentifier(_jsxFactoryEntity).escapedText; } } else if (compilerOptions.reactNamespace) { _jsxNamespace = escapeLeadingUnderscores(compilerOptions.reactNamespace); } } if (!_jsxFactoryEntity) { _jsxFactoryEntity = factory.createQualifiedName(factory.createIdentifier(unescapeLeadingUnderscores(_jsxNamespace)), "createElement"); } return _jsxNamespace; } function getLocalJsxNamespace(file) { if (file.localJsxNamespace) { return file.localJsxNamespace; } const jsxPragma = file.pragmas.get("jsx"); if (jsxPragma) { const chosenPragma = isArray(jsxPragma) ? jsxPragma[0] : jsxPragma; file.localJsxFactory = parseIsolatedEntityName(chosenPragma.arguments.factory, languageVersion); visitNode(file.localJsxFactory, markAsSynthetic, isEntityName); if (file.localJsxFactory) { return file.localJsxNamespace = getFirstIdentifier(file.localJsxFactory).escapedText; } } } function markAsSynthetic(node) { setTextRangePosEnd(node, -1, -1); return visitEachChild(node, markAsSynthetic, undefined); } function getEmitResolver(sourceFile, cancellationToken2, skipDiagnostics) { if (!skipDiagnostics) getDiagnostics2(sourceFile, cancellationToken2); return emitResolver; } function lookupOrIssueError(location, message, ...args) { const diagnostic = location ? createDiagnosticForNode(location, message, ...args) : createCompilerDiagnostic(message, ...args); const existing = diagnostics.lookup(diagnostic); if (existing) { return existing; } else { diagnostics.add(diagnostic); return diagnostic; } } function errorSkippedOn(key, location, message, ...args) { const diagnostic = error2(location, message, ...args); diagnostic.skippedOn = key; return diagnostic; } function createError(location, message, ...args) { return location ? createDiagnosticForNode(location, message, ...args) : createCompilerDiagnostic(message, ...args); } function error2(location, message, ...args) { const diagnostic = createError(location, message, ...args); diagnostics.add(diagnostic); return diagnostic; } function getVerbatimModuleSyntaxErrorMessage(node) { const sourceFile = getSourceFileOfNode(node); const fileName = sourceFile.fileName; if (fileExtensionIsOneOf(fileName, [".cts", ".cjs"])) { return Diagnostics.ECMAScript_imports_and_exports_cannot_be_written_in_a_CommonJS_file_under_verbatimModuleSyntax; } else { return Diagnostics.ECMAScript_imports_and_exports_cannot_be_written_in_a_CommonJS_file_under_verbatimModuleSyntax_Adjust_the_type_field_in_the_nearest_package_json_to_make_this_file_an_ECMAScript_module_or_adjust_your_verbatimModuleSyntax_module_and_moduleResolution_settings_in_TypeScript; } } function addErrorOrSuggestion(isError, diagnostic) { if (isError) { diagnostics.add(diagnostic); } else { suggestionDiagnostics.add({ ...diagnostic, category: 2 }); } } function errorOrSuggestion(isError, location, message, ...args) { if (location.pos < 0 || location.end < 0) { if (!isError) { return; } const file = getSourceFileOfNode(location); addErrorOrSuggestion(isError, "message" in message ? createFileDiagnostic(file, 0, 0, message, ...args) : createDiagnosticForFileFromMessageChain(file, message)); return; } addErrorOrSuggestion(isError, "message" in message ? createDiagnosticForNode(location, message, ...args) : createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(location), location, message)); } function errorAndMaybeSuggestAwait(location, maybeMissingAwait, message, ...args) { const diagnostic = error2(location, message, ...args); if (maybeMissingAwait) { const related = createDiagnosticForNode(location, Diagnostics.Did_you_forget_to_use_await); addRelatedInfo(diagnostic, related); } return diagnostic; } function addDeprecatedSuggestionWorker(declarations, diagnostic) { const deprecatedTag = Array.isArray(declarations) ? forEach(declarations, getJSDocDeprecatedTag) : getJSDocDeprecatedTag(declarations); if (deprecatedTag) { addRelatedInfo(diagnostic, createDiagnosticForNode(deprecatedTag, Diagnostics.The_declaration_was_marked_as_deprecated_here)); } suggestionDiagnostics.add(diagnostic); return diagnostic; } function isDeprecatedSymbol(symbol) { const parentSymbol = getParentOfSymbol(symbol); if (parentSymbol && length(symbol.declarations) > 1) { return parentSymbol.flags & 64 ? some(symbol.declarations, isDeprecatedDeclaration2) : every(symbol.declarations, isDeprecatedDeclaration2); } return !!symbol.valueDeclaration && isDeprecatedDeclaration2(symbol.valueDeclaration) || length(symbol.declarations) && every(symbol.declarations, isDeprecatedDeclaration2); } function isDeprecatedDeclaration2(declaration) { return !!(getCombinedNodeFlagsCached(declaration) & 536870912); } function addDeprecatedSuggestion(location, declarations, deprecatedEntity) { const diagnostic = createDiagnosticForNode(location, Diagnostics._0_is_deprecated, deprecatedEntity); return addDeprecatedSuggestionWorker(declarations, diagnostic); } function addDeprecatedSuggestionWithSignature(location, declaration, deprecatedEntity, signatureString) { const diagnostic = deprecatedEntity ? createDiagnosticForNode(location, Diagnostics.The_signature_0_of_1_is_deprecated, signatureString, deprecatedEntity) : createDiagnosticForNode(location, Diagnostics._0_is_deprecated, signatureString); return addDeprecatedSuggestionWorker(declaration, diagnostic); } function createSymbol(flags, name, checkFlags) { symbolCount++; const symbol = new Symbol48(flags | 33554432, name); symbol.links = new SymbolLinks; symbol.links.checkFlags = checkFlags || 0; return symbol; } function createParameter2(name, type) { const symbol = createSymbol(1, name); symbol.links.type = type; return symbol; } function createProperty(name, type) { const symbol = createSymbol(4, name); symbol.links.type = type; return symbol; } function getExcludedSymbolFlags(flags) { let result = 0; if (flags & 2) result |= 111551; if (flags & 1) result |= 111550; if (flags & 4) result |= 0; if (flags & 8) result |= 900095; if (flags & 16) result |= 110991; if (flags & 32) result |= 899503; if (flags & 64) result |= 788872; if (flags & 256) result |= 899327; if (flags & 128) result |= 899967; if (flags & 512) result |= 110735; if (flags & 8192) result |= 103359; if (flags & 32768) result |= 46015; if (flags & 65536) result |= 78783; if (flags & 262144) result |= 526824; if (flags & 524288) result |= 788968; if (flags & 2097152) result |= 2097152; return result; } function recordMergedSymbol(target, source) { if (!source.mergeId) { source.mergeId = nextMergeId; nextMergeId++; } mergedSymbols[source.mergeId] = target; } function cloneSymbol(symbol) { const result = createSymbol(symbol.flags, symbol.escapedName); result.declarations = symbol.declarations ? symbol.declarations.slice() : []; result.parent = symbol.parent; if (symbol.valueDeclaration) result.valueDeclaration = symbol.valueDeclaration; if (symbol.constEnumOnlyModule) result.constEnumOnlyModule = true; if (symbol.members) result.members = new Map(symbol.members); if (symbol.exports) result.exports = new Map(symbol.exports); recordMergedSymbol(result, symbol); return result; } function mergeSymbol(target, source, unidirectional = false) { if (!(target.flags & getExcludedSymbolFlags(source.flags)) || (source.flags | target.flags) & 67108864) { if (source === target) { return target; } if (!(target.flags & 33554432)) { const resolvedTarget = resolveSymbol(target); if (resolvedTarget === unknownSymbol) { return source; } if (!(resolvedTarget.flags & getExcludedSymbolFlags(source.flags)) || (source.flags | resolvedTarget.flags) & 67108864) { target = cloneSymbol(resolvedTarget); } else { reportMergeSymbolError(target, source); return source; } } if (source.flags & 512 && target.flags & 512 && target.constEnumOnlyModule && !source.constEnumOnlyModule) { target.constEnumOnlyModule = false; } target.flags |= source.flags; if (source.valueDeclaration) { setValueDeclaration(target, source.valueDeclaration); } addRange(target.declarations, source.declarations); if (source.members) { if (!target.members) target.members = createSymbolTable(); mergeSymbolTable(target.members, source.members, unidirectional); } if (source.exports) { if (!target.exports) target.exports = createSymbolTable(); mergeSymbolTable(target.exports, source.exports, unidirectional, target); } if (!unidirectional) { recordMergedSymbol(target, source); } } else if (target.flags & 1024) { if (target !== globalThisSymbol) { error2(source.declarations && getNameOfDeclaration(source.declarations[0]), Diagnostics.Cannot_augment_module_0_with_value_exports_because_it_resolves_to_a_non_module_entity, symbolToString(target)); } } else { reportMergeSymbolError(target, source); } return target; function reportMergeSymbolError(target2, source2) { const isEitherEnum = !!(target2.flags & 384 || source2.flags & 384); const isEitherBlockScoped = !!(target2.flags & 2 || source2.flags & 2); const message = isEitherEnum ? Diagnostics.Enum_declarations_can_only_merge_with_namespace_or_other_enum_declarations : isEitherBlockScoped ? Diagnostics.Cannot_redeclare_block_scoped_variable_0 : Diagnostics.Duplicate_identifier_0; const sourceSymbolFile = source2.declarations && getSourceFileOfNode(source2.declarations[0]); const targetSymbolFile = target2.declarations && getSourceFileOfNode(target2.declarations[0]); const isSourcePlainJs = isPlainJsFile(sourceSymbolFile, compilerOptions.checkJs); const isTargetPlainJs = isPlainJsFile(targetSymbolFile, compilerOptions.checkJs); const symbolName2 = symbolToString(source2); if (sourceSymbolFile && targetSymbolFile && amalgamatedDuplicates && !isEitherEnum && sourceSymbolFile !== targetSymbolFile) { const firstFile = comparePaths(sourceSymbolFile.path, targetSymbolFile.path) === -1 ? sourceSymbolFile : targetSymbolFile; const secondFile = firstFile === sourceSymbolFile ? targetSymbolFile : sourceSymbolFile; const filesDuplicates = getOrUpdate(amalgamatedDuplicates, `${firstFile.path}|${secondFile.path}`, () => ({ firstFile, secondFile, conflictingSymbols: /* @__PURE__ */ new Map })); const conflictingSymbolInfo = getOrUpdate(filesDuplicates.conflictingSymbols, symbolName2, () => ({ isBlockScoped: isEitherBlockScoped, firstFileLocations: [], secondFileLocations: [] })); if (!isSourcePlainJs) addDuplicateLocations(conflictingSymbolInfo.firstFileLocations, source2); if (!isTargetPlainJs) addDuplicateLocations(conflictingSymbolInfo.secondFileLocations, target2); } else { if (!isSourcePlainJs) addDuplicateDeclarationErrorsForSymbols(source2, message, symbolName2, target2); if (!isTargetPlainJs) addDuplicateDeclarationErrorsForSymbols(target2, message, symbolName2, source2); } } function addDuplicateLocations(locs, symbol) { if (symbol.declarations) { for (const decl of symbol.declarations) { pushIfUnique(locs, decl); } } } } function addDuplicateDeclarationErrorsForSymbols(target, message, symbolName2, source) { forEach(target.declarations, (node) => { addDuplicateDeclarationError(node, message, symbolName2, source.declarations); }); } function addDuplicateDeclarationError(node, message, symbolName2, relatedNodes) { const errorNode = (getExpandoInitializer(node, false) ? getNameOfExpando(node) : getNameOfDeclaration(node)) || node; const err = lookupOrIssueError(errorNode, message, symbolName2); for (const relatedNode of relatedNodes || emptyArray) { const adjustedNode = (getExpandoInitializer(relatedNode, false) ? getNameOfExpando(relatedNode) : getNameOfDeclaration(relatedNode)) || relatedNode; if (adjustedNode === errorNode) continue; err.relatedInformation = err.relatedInformation || []; const leadingMessage = createDiagnosticForNode(adjustedNode, Diagnostics._0_was_also_declared_here, symbolName2); const followOnMessage = createDiagnosticForNode(adjustedNode, Diagnostics.and_here); if (length(err.relatedInformation) >= 5 || some(err.relatedInformation, (r) => compareDiagnostics(r, followOnMessage) === 0 || compareDiagnostics(r, leadingMessage) === 0)) continue; addRelatedInfo(err, !length(err.relatedInformation) ? leadingMessage : followOnMessage); } } function combineSymbolTables(first2, second) { if (!(first2 == null ? undefined : first2.size)) return second; if (!(second == null ? undefined : second.size)) return first2; const combined = createSymbolTable(); mergeSymbolTable(combined, first2); mergeSymbolTable(combined, second); return combined; } function mergeSymbolTable(target, source, unidirectional = false, mergedParent) { source.forEach((sourceSymbol, id) => { const targetSymbol = target.get(id); const merged = targetSymbol ? mergeSymbol(targetSymbol, sourceSymbol, unidirectional) : getMergedSymbol(sourceSymbol); if (mergedParent && targetSymbol) { if (merged.flags & 33554432) { merged.parent = mergedParent; } } target.set(id, merged); }); } function mergeModuleAugmentation(moduleName) { var _a, _b, _c; const moduleAugmentation = moduleName.parent; if (((_a = moduleAugmentation.symbol.declarations) == null ? undefined : _a[0]) !== moduleAugmentation) { Debug.assert(moduleAugmentation.symbol.declarations.length > 1); return; } if (isGlobalScopeAugmentation(moduleAugmentation)) { mergeSymbolTable(globals, moduleAugmentation.symbol.exports); } else { const moduleNotFoundError = !(moduleName.parent.parent.flags & 33554432) ? Diagnostics.Invalid_module_name_in_augmentation_module_0_cannot_be_found : undefined; let mainModule = resolveExternalModuleNameWorker(moduleName, moduleName, moduleNotFoundError, false, true); if (!mainModule) { return; } mainModule = resolveExternalModuleSymbol(mainModule); if (mainModule.flags & 1920) { if (some(patternAmbientModules, (module22) => mainModule === module22.symbol)) { const merged = mergeSymbol(moduleAugmentation.symbol, mainModule, true); if (!patternAmbientModuleAugmentations) { patternAmbientModuleAugmentations = /* @__PURE__ */ new Map; } patternAmbientModuleAugmentations.set(moduleName.text, merged); } else { if (((_b = mainModule.exports) == null ? undefined : _b.get("__export")) && ((_c = moduleAugmentation.symbol.exports) == null ? undefined : _c.size)) { const resolvedExports = getResolvedMembersOrExportsOfSymbol(mainModule, "resolvedExports"); for (const [key, value] of arrayFrom(moduleAugmentation.symbol.exports.entries())) { if (resolvedExports.has(key) && !mainModule.exports.has(key)) { mergeSymbol(resolvedExports.get(key), value); } } } mergeSymbol(mainModule, moduleAugmentation.symbol); } } else { error2(moduleName, Diagnostics.Cannot_augment_module_0_because_it_resolves_to_a_non_module_entity, moduleName.text); } } } function addUndefinedToGlobalsOrErrorOnRedeclaration() { const name = undefinedSymbol.escapedName; const targetSymbol = globals.get(name); if (targetSymbol) { forEach(targetSymbol.declarations, (declaration) => { if (!isTypeDeclaration(declaration)) { diagnostics.add(createDiagnosticForNode(declaration, Diagnostics.Declaration_name_conflicts_with_built_in_global_identifier_0, unescapeLeadingUnderscores(name))); } }); } else { globals.set(name, undefinedSymbol); } } function getSymbolLinks(symbol) { if (symbol.flags & 33554432) return symbol.links; const id = getSymbolId(symbol); return symbolLinks[id] ?? (symbolLinks[id] = new SymbolLinks); } function getNodeLinks(node) { const nodeId = getNodeId(node); return nodeLinks[nodeId] || (nodeLinks[nodeId] = new NodeLinks); } function getSymbol2(symbols, name, meaning) { if (meaning) { const symbol = getMergedSymbol(symbols.get(name)); if (symbol) { if (symbol.flags & meaning) { return symbol; } if (symbol.flags & 2097152) { const targetFlags = getSymbolFlags(symbol); if (targetFlags & meaning) { return symbol; } } } } } function getSymbolsOfParameterPropertyDeclaration(parameter, parameterName) { const constructorDeclaration = parameter.parent; const classDeclaration = parameter.parent.parent; const parameterSymbol = getSymbol2(constructorDeclaration.locals, parameterName, 111551); const propertySymbol = getSymbol2(getMembersOfSymbol(classDeclaration.symbol), parameterName, 111551); if (parameterSymbol && propertySymbol) { return [parameterSymbol, propertySymbol]; } return Debug.fail("There should exist two symbols, one as property declaration and one as parameter declaration"); } function isBlockScopedNameDeclaredBeforeUse(declaration, usage) { const declarationFile = getSourceFileOfNode(declaration); const useFile = getSourceFileOfNode(usage); const declContainer = getEnclosingBlockScopeContainer(declaration); if (declarationFile !== useFile) { if (moduleKind && (declarationFile.externalModuleIndicator || useFile.externalModuleIndicator) || !compilerOptions.outFile || isInTypeQuery(usage) || declaration.flags & 33554432) { return true; } if (isUsedInFunctionOrInstanceProperty(usage, declaration)) { return true; } const sourceFiles = host.getSourceFiles(); return sourceFiles.indexOf(declarationFile) <= sourceFiles.indexOf(useFile); } if (!!(usage.flags & 16777216) || isInTypeQuery(usage) || isInAmbientOrTypeNode(usage)) { return true; } if (declaration.pos <= usage.pos && !(isPropertyDeclaration(declaration) && isThisProperty(usage.parent) && !declaration.initializer && !declaration.exclamationToken)) { if (declaration.kind === 209) { const errorBindingElement = getAncestor(usage, 209); if (errorBindingElement) { return findAncestor(errorBindingElement, isBindingElement) !== findAncestor(declaration, isBindingElement) || declaration.pos < errorBindingElement.pos; } return isBlockScopedNameDeclaredBeforeUse(getAncestor(declaration, 261), usage); } else if (declaration.kind === 261) { return !isImmediatelyUsedInInitializerOfBlockScopedVariable(declaration, usage); } else if (isClassLike(declaration)) { const container = findAncestor(usage, (n) => n === declaration ? "quit" : isComputedPropertyName(n) ? n.parent.parent === declaration : !legacyDecorators && isDecorator(n) && (n.parent === declaration || isMethodDeclaration(n.parent) && n.parent.parent === declaration || isGetOrSetAccessorDeclaration(n.parent) && n.parent.parent === declaration || isPropertyDeclaration(n.parent) && n.parent.parent === declaration || isParameter(n.parent) && n.parent.parent.parent === declaration)); if (!container) { return true; } if (!legacyDecorators && isDecorator(container)) { return !!findAncestor(usage, (n) => n === container ? "quit" : isFunctionLike(n) && !getImmediatelyInvokedFunctionExpression(n)); } return false; } else if (isPropertyDeclaration(declaration)) { return !isPropertyImmediatelyReferencedWithinDeclaration(declaration, usage, false); } else if (isParameterPropertyDeclaration(declaration, declaration.parent)) { return !(emitStandardClassFields && getContainingClass(declaration) === getContainingClass(usage) && isUsedInFunctionOrInstanceProperty(usage, declaration)); } return true; } if (usage.parent.kind === 282 || usage.parent.kind === 278 && usage.parent.isExportEquals) { return true; } if (usage.kind === 278 && usage.isExportEquals) { return true; } if (isUsedInFunctionOrInstanceProperty(usage, declaration)) { if (emitStandardClassFields && getContainingClass(declaration) && (isPropertyDeclaration(declaration) || isParameterPropertyDeclaration(declaration, declaration.parent))) { return !isPropertyImmediatelyReferencedWithinDeclaration(declaration, usage, true); } else { return true; } } return false; function isImmediatelyUsedInInitializerOfBlockScopedVariable(declaration2, usage2) { switch (declaration2.parent.parent.kind) { case 244: case 249: case 251: if (isSameScopeDescendentOf(usage2, declaration2, declContainer)) { return true; } break; } const grandparent = declaration2.parent.parent; return isForInOrOfStatement(grandparent) && isSameScopeDescendentOf(usage2, grandparent.expression, declContainer); } function isUsedInFunctionOrInstanceProperty(usage2, declaration2) { return isUsedInFunctionOrInstancePropertyWorker(usage2, declaration2); } function isUsedInFunctionOrInstancePropertyWorker(usage2, declaration2) { return !!findAncestor(usage2, (current) => { if (current === declContainer) { return "quit"; } if (isFunctionLike(current)) { return !getImmediatelyInvokedFunctionExpression(current); } if (isClassStaticBlockDeclaration(current)) { return declaration2.pos < usage2.pos; } const propertyDeclaration = tryCast(current.parent, isPropertyDeclaration); if (propertyDeclaration) { const initializerOfProperty = propertyDeclaration.initializer === current; if (initializerOfProperty) { if (isStatic(current.parent)) { if (declaration2.kind === 175) { return true; } if (isPropertyDeclaration(declaration2) && getContainingClass(usage2) === getContainingClass(declaration2)) { const propName = declaration2.name; if (isIdentifier(propName) || isPrivateIdentifier(propName)) { const type = getTypeOfSymbol(getSymbolOfDeclaration(declaration2)); const staticBlocks = filter(declaration2.parent.members, isClassStaticBlockDeclaration); if (isPropertyInitializedInStaticBlocks(propName, type, staticBlocks, declaration2.parent.pos, current.pos)) { return true; } } } } else { const isDeclarationInstanceProperty = declaration2.kind === 173 && !isStatic(declaration2); if (!isDeclarationInstanceProperty || getContainingClass(usage2) !== getContainingClass(declaration2)) { return true; } } } } const decorator = tryCast(current.parent, isDecorator); if (decorator && decorator.expression === current) { if (isParameter(decorator.parent)) { return isUsedInFunctionOrInstancePropertyWorker(decorator.parent.parent.parent, declaration2) ? true : "quit"; } if (isMethodDeclaration(decorator.parent)) { return isUsedInFunctionOrInstancePropertyWorker(decorator.parent.parent, declaration2) ? true : "quit"; } } return false; }); } function isPropertyImmediatelyReferencedWithinDeclaration(declaration2, usage2, stopAtAnyPropertyDeclaration) { if (usage2.end > declaration2.end) { return false; } const ancestorChangingReferenceScope = findAncestor(usage2, (node) => { if (node === declaration2) { return "quit"; } switch (node.kind) { case 220: return true; case 173: return stopAtAnyPropertyDeclaration && (isPropertyDeclaration(declaration2) && node.parent === declaration2.parent || isParameterPropertyDeclaration(declaration2, declaration2.parent) && node.parent === declaration2.parent.parent) ? "quit" : true; case 242: switch (node.parent.kind) { case 178: case 175: case 179: return true; default: return false; } default: return false; } }); return ancestorChangingReferenceScope === undefined; } } function getRequiresScopeChangeCache(node) { return getNodeLinks(node).declarationRequiresScopeChange; } function setRequiresScopeChangeCache(node, value) { getNodeLinks(node).declarationRequiresScopeChange = value; } function checkAndReportErrorForInvalidInitializer(errorLocation, name, propertyWithInvalidInitializer, result) { if (!emitStandardClassFields) { if (errorLocation && !result && checkAndReportErrorForMissingPrefix(errorLocation, name, name)) { return true; } error2(errorLocation, errorLocation && propertyWithInvalidInitializer.type && textRangeContainsPositionInclusive(propertyWithInvalidInitializer.type, errorLocation.pos) ? Diagnostics.Type_of_instance_member_variable_0_cannot_reference_identifier_1_declared_in_the_constructor : Diagnostics.Initializer_of_instance_member_variable_0_cannot_reference_identifier_1_declared_in_the_constructor, declarationNameToString(propertyWithInvalidInitializer.name), diagnosticName(name)); return true; } return false; } function onFailedToResolveSymbol(errorLocation, nameArg, meaning, nameNotFoundMessage) { const name = isString(nameArg) ? nameArg : nameArg.escapedText; addLazyDiagnostic(() => { if (!errorLocation || errorLocation.parent.kind !== 325 && !checkAndReportErrorForMissingPrefix(errorLocation, name, nameArg) && !checkAndReportErrorForExtendingInterface(errorLocation) && !checkAndReportErrorForUsingTypeAsNamespace(errorLocation, name, meaning) && !checkAndReportErrorForExportingPrimitiveType(errorLocation, name) && !checkAndReportErrorForUsingNamespaceAsTypeOrValue(errorLocation, name, meaning) && !checkAndReportErrorForUsingTypeAsValue(errorLocation, name, meaning) && !checkAndReportErrorForUsingValueAsType(errorLocation, name, meaning)) { let suggestion; let suggestedLib; if (nameArg) { suggestedLib = getSuggestedLibForNonExistentName(nameArg); if (suggestedLib) { error2(errorLocation, nameNotFoundMessage, diagnosticName(nameArg), suggestedLib); } } if (!suggestedLib && suggestionCount < maximumSuggestionCount) { suggestion = getSuggestedSymbolForNonexistentSymbol(errorLocation, name, meaning); const isGlobalScopeAugmentationDeclaration = (suggestion == null ? undefined : suggestion.valueDeclaration) && isAmbientModule(suggestion.valueDeclaration) && isGlobalScopeAugmentation(suggestion.valueDeclaration); if (isGlobalScopeAugmentationDeclaration) { suggestion = undefined; } if (suggestion) { const suggestionName = symbolToString(suggestion); const isUncheckedJS = isUncheckedJSSuggestion(errorLocation, suggestion, false); const message = meaning === 1920 || nameArg && typeof nameArg !== "string" && nodeIsSynthesized(nameArg) ? Diagnostics.Cannot_find_namespace_0_Did_you_mean_1 : isUncheckedJS ? Diagnostics.Could_not_find_name_0_Did_you_mean_1 : Diagnostics.Cannot_find_name_0_Did_you_mean_1; const diagnostic = createError(errorLocation, message, diagnosticName(nameArg), suggestionName); diagnostic.canonicalHead = getCanonicalDiagnostic(nameNotFoundMessage, diagnosticName(nameArg)); addErrorOrSuggestion(!isUncheckedJS, diagnostic); if (suggestion.valueDeclaration) { addRelatedInfo(diagnostic, createDiagnosticForNode(suggestion.valueDeclaration, Diagnostics._0_is_declared_here, suggestionName)); } } } if (!suggestion && !suggestedLib && nameArg) { error2(errorLocation, nameNotFoundMessage, diagnosticName(nameArg)); } suggestionCount++; } }); } function onSuccessfullyResolvedSymbol(errorLocation, result, meaning, lastLocation, associatedDeclarationForContainingInitializerOrBindingName, withinDeferredContext) { addLazyDiagnostic(() => { var _a; const name = result.escapedName; const isInExternalModule = lastLocation && isSourceFile(lastLocation) && isExternalOrCommonJsModule(lastLocation); if (errorLocation && (meaning & 2 || (meaning & 32 || meaning & 384) && (meaning & 111551) === 111551)) { const exportOrLocalSymbol = getExportSymbolOfValueSymbolIfExported(result); if (exportOrLocalSymbol.flags & 2 || exportOrLocalSymbol.flags & 32 || exportOrLocalSymbol.flags & 384) { checkResolvedBlockScopedVariable(exportOrLocalSymbol, errorLocation); } } if (isInExternalModule && (meaning & 111551) === 111551 && !(errorLocation.flags & 16777216)) { const merged = getMergedSymbol(result); if (length(merged.declarations) && every(merged.declarations, (d) => isNamespaceExportDeclaration(d) || isSourceFile(d) && !!d.symbol.globalExports)) { errorOrSuggestion(!compilerOptions.allowUmdGlobalAccess, errorLocation, Diagnostics._0_refers_to_a_UMD_global_but_the_current_file_is_a_module_Consider_adding_an_import_instead, unescapeLeadingUnderscores(name)); } } if (associatedDeclarationForContainingInitializerOrBindingName && !withinDeferredContext && (meaning & 111551) === 111551) { const candidate = getMergedSymbol(getLateBoundSymbol(result)); const root = getRootDeclaration(associatedDeclarationForContainingInitializerOrBindingName); if (candidate === getSymbolOfDeclaration(associatedDeclarationForContainingInitializerOrBindingName)) { error2(errorLocation, Diagnostics.Parameter_0_cannot_reference_itself, declarationNameToString(associatedDeclarationForContainingInitializerOrBindingName.name)); } else if (candidate.valueDeclaration && candidate.valueDeclaration.pos > associatedDeclarationForContainingInitializerOrBindingName.pos && root.parent.locals && getSymbol2(root.parent.locals, candidate.escapedName, meaning) === candidate) { error2(errorLocation, Diagnostics.Parameter_0_cannot_reference_identifier_1_declared_after_it, declarationNameToString(associatedDeclarationForContainingInitializerOrBindingName.name), declarationNameToString(errorLocation)); } } if (errorLocation && meaning & 111551 && result.flags & 2097152 && !(result.flags & 111551) && !isValidTypeOnlyAliasUseSite(errorLocation)) { const typeOnlyDeclaration = getTypeOnlyAliasDeclaration(result, 111551); if (typeOnlyDeclaration) { const message = typeOnlyDeclaration.kind === 282 || typeOnlyDeclaration.kind === 279 || typeOnlyDeclaration.kind === 281 ? Diagnostics._0_cannot_be_used_as_a_value_because_it_was_exported_using_export_type : Diagnostics._0_cannot_be_used_as_a_value_because_it_was_imported_using_import_type; const unescapedName = unescapeLeadingUnderscores(name); addTypeOnlyDeclarationRelatedInfo(error2(errorLocation, message, unescapedName), typeOnlyDeclaration, unescapedName); } } if (compilerOptions.isolatedModules && result && isInExternalModule && (meaning & 111551) === 111551) { const isGlobal = getSymbol2(globals, name, meaning) === result; const nonValueSymbol = isGlobal && isSourceFile(lastLocation) && lastLocation.locals && getSymbol2(lastLocation.locals, name, ~111551); if (nonValueSymbol) { const importDecl = (_a = nonValueSymbol.declarations) == null ? undefined : _a.find((d) => d.kind === 277 || d.kind === 274 || d.kind === 275 || d.kind === 272); if (importDecl && !isTypeOnlyImportDeclaration(importDecl)) { error2(importDecl, Diagnostics.Import_0_conflicts_with_global_value_used_in_this_file_so_must_be_declared_with_a_type_only_import_when_isolatedModules_is_enabled, unescapeLeadingUnderscores(name)); } } } }); } function addTypeOnlyDeclarationRelatedInfo(diagnostic, typeOnlyDeclaration, unescapedName) { if (!typeOnlyDeclaration) return diagnostic; return addRelatedInfo(diagnostic, createDiagnosticForNode(typeOnlyDeclaration, typeOnlyDeclaration.kind === 282 || typeOnlyDeclaration.kind === 279 || typeOnlyDeclaration.kind === 281 ? Diagnostics._0_was_exported_here : Diagnostics._0_was_imported_here, unescapedName)); } function diagnosticName(nameArg) { return isString(nameArg) ? unescapeLeadingUnderscores(nameArg) : declarationNameToString(nameArg); } function checkAndReportErrorForMissingPrefix(errorLocation, name, nameArg) { if (!isIdentifier(errorLocation) || errorLocation.escapedText !== name || isTypeReferenceIdentifier(errorLocation) || isInTypeQuery(errorLocation)) { return false; } const container = getThisContainer(errorLocation, false, false); let location = container; while (location) { if (isClassLike(location.parent)) { const classSymbol = getSymbolOfDeclaration(location.parent); if (!classSymbol) { break; } const constructorType = getTypeOfSymbol(classSymbol); if (getPropertyOfType(constructorType, name)) { error2(errorLocation, Diagnostics.Cannot_find_name_0_Did_you_mean_the_static_member_1_0, diagnosticName(nameArg), symbolToString(classSymbol)); return true; } if (location === container && !isStatic(location)) { const instanceType = getDeclaredTypeOfSymbol(classSymbol).thisType; if (getPropertyOfType(instanceType, name)) { error2(errorLocation, Diagnostics.Cannot_find_name_0_Did_you_mean_the_instance_member_this_0, diagnosticName(nameArg)); return true; } } } location = location.parent; } return false; } function checkAndReportErrorForExtendingInterface(errorLocation) { const expression = getEntityNameForExtendingInterface(errorLocation); if (expression && resolveEntityName(expression, 64, true)) { error2(errorLocation, Diagnostics.Cannot_extend_an_interface_0_Did_you_mean_implements, getTextOfNode(expression)); return true; } return false; } function getEntityNameForExtendingInterface(node) { switch (node.kind) { case 80: case 212: return node.parent ? getEntityNameForExtendingInterface(node.parent) : undefined; case 234: if (isEntityNameExpression(node.expression)) { return node.expression; } default: return; } } function checkAndReportErrorForUsingTypeAsNamespace(errorLocation, name, meaning) { const namespaceMeaning = 1920 | (isInJSFile(errorLocation) ? 111551 : 0); if (meaning === namespaceMeaning) { const symbol = resolveSymbol(resolveName(errorLocation, name, 788968 & ~namespaceMeaning, undefined, false)); const parent2 = errorLocation.parent; if (symbol) { if (isQualifiedName(parent2)) { Debug.assert(parent2.left === errorLocation, "Should only be resolving left side of qualified name as a namespace"); const propName = parent2.right.escapedText; const propType = getPropertyOfType(getDeclaredTypeOfSymbol(symbol), propName); if (propType) { error2(parent2, Diagnostics.Cannot_access_0_1_because_0_is_a_type_but_not_a_namespace_Did_you_mean_to_retrieve_the_type_of_the_property_1_in_0_with_0_1, unescapeLeadingUnderscores(name), unescapeLeadingUnderscores(propName)); return true; } } error2(errorLocation, Diagnostics._0_only_refers_to_a_type_but_is_being_used_as_a_namespace_here, unescapeLeadingUnderscores(name)); return true; } } return false; } function checkAndReportErrorForUsingValueAsType(errorLocation, name, meaning) { if (meaning & (788968 & ~1920)) { const symbol = resolveSymbol(resolveName(errorLocation, name, ~788968 & 111551, undefined, false)); if (symbol && !(symbol.flags & 1920)) { error2(errorLocation, Diagnostics._0_refers_to_a_value_but_is_being_used_as_a_type_here_Did_you_mean_typeof_0, unescapeLeadingUnderscores(name)); return true; } } return false; } function isPrimitiveTypeName(name) { return name === "any" || name === "string" || name === "number" || name === "boolean" || name === "never" || name === "unknown"; } function checkAndReportErrorForExportingPrimitiveType(errorLocation, name) { if (isPrimitiveTypeName(name) && errorLocation.parent.kind === 282) { error2(errorLocation, Diagnostics.Cannot_export_0_Only_local_declarations_can_be_exported_from_a_module, name); return true; } return false; } function checkAndReportErrorForUsingTypeAsValue(errorLocation, name, meaning) { if (meaning & 111551) { if (isPrimitiveTypeName(name)) { const grandparent = errorLocation.parent.parent; if (grandparent && grandparent.parent && isHeritageClause(grandparent)) { const heritageKind = grandparent.token; const containerKind = grandparent.parent.kind; if (containerKind === 265 && heritageKind === 96) { error2(errorLocation, Diagnostics.An_interface_cannot_extend_a_primitive_type_like_0_It_can_only_extend_other_named_object_types, unescapeLeadingUnderscores(name)); } else if (isClassLike(grandparent.parent) && heritageKind === 96) { error2(errorLocation, Diagnostics.A_class_cannot_extend_a_primitive_type_like_0_Classes_can_only_extend_constructable_values, unescapeLeadingUnderscores(name)); } else if (isClassLike(grandparent.parent) && heritageKind === 119) { error2(errorLocation, Diagnostics.A_class_cannot_implement_a_primitive_type_like_0_It_can_only_implement_other_named_object_types, unescapeLeadingUnderscores(name)); } } else { error2(errorLocation, Diagnostics._0_only_refers_to_a_type_but_is_being_used_as_a_value_here, unescapeLeadingUnderscores(name)); } return true; } const symbol = resolveSymbol(resolveName(errorLocation, name, 788968 & ~111551, undefined, false)); const allFlags = symbol && getSymbolFlags(symbol); if (symbol && allFlags !== undefined && !(allFlags & 111551)) { const rawName = unescapeLeadingUnderscores(name); if (isES2015OrLaterConstructorName(name)) { error2(errorLocation, Diagnostics._0_only_refers_to_a_type_but_is_being_used_as_a_value_here_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_es2015_or_later, rawName); } else if (maybeMappedType(errorLocation, symbol)) { error2(errorLocation, Diagnostics._0_only_refers_to_a_type_but_is_being_used_as_a_value_here_Did_you_mean_to_use_1_in_0, rawName, rawName === "K" ? "P" : "K"); } else { error2(errorLocation, Diagnostics._0_only_refers_to_a_type_but_is_being_used_as_a_value_here, rawName); } return true; } } return false; } function maybeMappedType(node, symbol) { const container = findAncestor(node.parent, (n) => isComputedPropertyName(n) || isPropertySignature(n) ? false : isTypeLiteralNode(n) || "quit"); if (container && container.members.length === 1) { const type = getDeclaredTypeOfSymbol(symbol); return !!(type.flags & 134217728) && allTypesAssignableToKind(type, 3072, true); } return false; } function isES2015OrLaterConstructorName(n) { switch (n) { case "Promise": case "Symbol": case "Map": case "WeakMap": case "Set": case "WeakSet": return true; } return false; } function checkAndReportErrorForUsingNamespaceAsTypeOrValue(errorLocation, name, meaning) { if (meaning & (111551 & ~788968)) { const symbol = resolveSymbol(resolveName(errorLocation, name, 1024, undefined, false)); if (symbol) { error2(errorLocation, Diagnostics.Cannot_use_namespace_0_as_a_value, unescapeLeadingUnderscores(name)); return true; } } else if (meaning & (788968 & ~111551)) { const symbol = resolveSymbol(resolveName(errorLocation, name, 1536, undefined, false)); if (symbol) { error2(errorLocation, Diagnostics.Cannot_use_namespace_0_as_a_type, unescapeLeadingUnderscores(name)); return true; } } return false; } function checkResolvedBlockScopedVariable(result, errorLocation) { var _a; Debug.assert(!!(result.flags & 2 || result.flags & 32 || result.flags & 384)); if (result.flags & (16 | 1 | 67108864) && result.flags & 32) { return; } const declaration = (_a = result.declarations) == null ? undefined : _a.find((d) => isBlockOrCatchScoped(d) || isClassLike(d) || d.kind === 267); if (declaration === undefined) return Debug.fail("checkResolvedBlockScopedVariable could not find block-scoped declaration"); if (!(declaration.flags & 33554432) && !isBlockScopedNameDeclaredBeforeUse(declaration, errorLocation)) { let diagnosticMessage; const declarationName = declarationNameToString(getNameOfDeclaration(declaration)); if (result.flags & 2) { diagnosticMessage = error2(errorLocation, Diagnostics.Block_scoped_variable_0_used_before_its_declaration, declarationName); } else if (result.flags & 32) { diagnosticMessage = error2(errorLocation, Diagnostics.Class_0_used_before_its_declaration, declarationName); } else if (result.flags & 256) { diagnosticMessage = error2(errorLocation, Diagnostics.Enum_0_used_before_its_declaration, declarationName); } else { Debug.assert(!!(result.flags & 128)); if (getIsolatedModules(compilerOptions)) { diagnosticMessage = error2(errorLocation, Diagnostics.Enum_0_used_before_its_declaration, declarationName); } } if (diagnosticMessage) { addRelatedInfo(diagnosticMessage, createDiagnosticForNode(declaration, Diagnostics._0_is_declared_here, declarationName)); } } } function isSameScopeDescendentOf(initial, parent2, stopAt) { return !!parent2 && !!findAncestor(initial, (n) => n === parent2 || (n === stopAt || isFunctionLike(n) && (!getImmediatelyInvokedFunctionExpression(n) || getFunctionFlags(n) & 3) ? "quit" : false)); } function getAnyImportSyntax(node) { switch (node.kind) { case 272: return node; case 274: return node.parent; case 275: return node.parent.parent; case 277: return node.parent.parent.parent; default: return; } } function getDeclarationOfAliasSymbol(symbol) { return symbol.declarations && findLast(symbol.declarations, isAliasSymbolDeclaration); } function isAliasSymbolDeclaration(node) { return node.kind === 272 || node.kind === 271 || node.kind === 274 && !!node.name || node.kind === 275 || node.kind === 281 || node.kind === 277 || node.kind === 282 || node.kind === 278 && exportAssignmentIsAlias(node) || isBinaryExpression(node) && getAssignmentDeclarationKind(node) === 2 && exportAssignmentIsAlias(node) || isAccessExpression(node) && isBinaryExpression(node.parent) && node.parent.left === node && node.parent.operatorToken.kind === 64 && isAliasableOrJsExpression(node.parent.right) || node.kind === 305 || node.kind === 304 && isAliasableOrJsExpression(node.initializer) || node.kind === 261 && isVariableDeclarationInitializedToBareOrAccessedRequire(node) || node.kind === 209 && isVariableDeclarationInitializedToBareOrAccessedRequire(node.parent.parent); } function isAliasableOrJsExpression(e) { return isAliasableExpression(e) || isFunctionExpression(e) && isJSConstructor(e); } function getTargetOfImportEqualsDeclaration(node, dontResolveAlias) { const commonJSPropertyAccess = getCommonJSPropertyAccess(node); if (commonJSPropertyAccess) { const name = getLeftmostAccessExpression(commonJSPropertyAccess.expression).arguments[0]; return isIdentifier(commonJSPropertyAccess.name) ? resolveSymbol(getPropertyOfType(resolveExternalModuleTypeByLiteral(name), commonJSPropertyAccess.name.escapedText)) : undefined; } if (isVariableDeclaration(node) || node.moduleReference.kind === 284) { const immediate = resolveExternalModuleName(node, getExternalModuleRequireArgument(node) || getExternalModuleImportEqualsDeclarationExpression(node)); const resolved2 = resolveExternalModuleSymbol(immediate); if (resolved2 && 102 <= moduleKind && moduleKind <= 199) { const moduleExports = getExportOfModule(resolved2, "module.exports", node, dontResolveAlias); if (moduleExports) { return moduleExports; } } markSymbolOfAliasDeclarationIfTypeOnly(node, immediate, resolved2, false); return resolved2; } const resolved = getSymbolOfPartOfRightHandSideOfImportEquals(node.moduleReference, dontResolveAlias); checkAndReportErrorForResolvingImportAliasToTypeOnlySymbol(node, resolved); return resolved; } function checkAndReportErrorForResolvingImportAliasToTypeOnlySymbol(node, resolved) { if (markSymbolOfAliasDeclarationIfTypeOnly(node, undefined, resolved, false) && !node.isTypeOnly) { const typeOnlyDeclaration = getTypeOnlyAliasDeclaration(getSymbolOfDeclaration(node)); const isExport = typeOnlyDeclaration.kind === 282 || typeOnlyDeclaration.kind === 279; const message = isExport ? Diagnostics.An_import_alias_cannot_reference_a_declaration_that_was_exported_using_export_type : Diagnostics.An_import_alias_cannot_reference_a_declaration_that_was_imported_using_import_type; const relatedMessage = isExport ? Diagnostics._0_was_exported_here : Diagnostics._0_was_imported_here; const name = typeOnlyDeclaration.kind === 279 ? "*" : moduleExportNameTextUnescaped(typeOnlyDeclaration.name); addRelatedInfo(error2(node.moduleReference, message), createDiagnosticForNode(typeOnlyDeclaration, relatedMessage, name)); } } function resolveExportByName(moduleSymbol, name, sourceNode, dontResolveAlias) { const exportValue = moduleSymbol.exports.get("export="); const exportSymbol = exportValue ? getPropertyOfType(getTypeOfSymbol(exportValue), name, true) : moduleSymbol.exports.get(name); const resolved = resolveSymbol(exportSymbol, dontResolveAlias); markSymbolOfAliasDeclarationIfTypeOnly(sourceNode, exportSymbol, resolved, false); return resolved; } function isSyntacticDefault(node) { return isExportAssignment(node) && !node.isExportEquals || hasSyntacticModifier(node, 2048) || isExportSpecifier(node) || isNamespaceExport(node); } function getEmitSyntaxForModuleSpecifierExpression(usage) { return isStringLiteralLike(usage) ? host.getEmitSyntaxForUsageLocation(getSourceFileOfNode(usage), usage) : undefined; } function isESMFormatImportImportingCommonjsFormatFile(usageMode, targetMode) { return usageMode === 99 && targetMode === 1; } function isOnlyImportableAsDefault(usage, resolvedModule) { if (100 <= moduleKind && moduleKind <= 199) { const usageMode = getEmitSyntaxForModuleSpecifierExpression(usage); if (usageMode === 99) { resolvedModule ?? (resolvedModule = resolveExternalModuleName(usage, usage, true)); const targetFile = resolvedModule && getSourceFileOfModule(resolvedModule); return targetFile && (isJsonSourceFile(targetFile) || getDeclarationFileExtension(targetFile.fileName) === ".d.json.ts"); } } return false; } function canHaveSyntheticDefault(file, moduleSymbol, dontResolveAlias, usage) { const usageMode = file && getEmitSyntaxForModuleSpecifierExpression(usage); if (file && usageMode !== undefined) { const targetMode = host.getImpliedNodeFormatForEmit(file); if (usageMode === 99 && targetMode === 1 && 100 <= moduleKind && moduleKind <= 199) { return true; } if (usageMode === 99 && targetMode === 99) { return false; } if (!targetMode && file.isDeclarationFile) { const redirect = host.getRedirectFromSourceFile(file.path) || host.getRedirectFromOutput(file.path); if (redirect) { const targetModuleKind = host.getEmitModuleFormatOfFile(file); if (usageMode === 99 && 5 <= targetModuleKind && targetModuleKind <= 99) { return false; } } } } if (!allowSyntheticDefaultImports) { return false; } if (!file || file.isDeclarationFile) { const defaultExportSymbol = resolveExportByName(moduleSymbol, "default", undefined, true); if (defaultExportSymbol && some(defaultExportSymbol.declarations, isSyntacticDefault)) { return false; } if (resolveExportByName(moduleSymbol, escapeLeadingUnderscores("__esModule"), undefined, dontResolveAlias)) { return false; } return true; } if (!isSourceFileJS(file)) { return hasExportAssignmentSymbol(moduleSymbol); } return typeof file.externalModuleIndicator !== "object" && !resolveExportByName(moduleSymbol, escapeLeadingUnderscores("__esModule"), undefined, dontResolveAlias); } function getTargetOfImportClause(node, dontResolveAlias) { const moduleSymbol = resolveExternalModuleName(node, node.parent.moduleSpecifier); if (moduleSymbol) { return getTargetofModuleDefault(moduleSymbol, node, dontResolveAlias); } } function getTargetofModuleDefault(moduleSymbol, node, dontResolveAlias) { var _a; const file = (_a = moduleSymbol.declarations) == null ? undefined : _a.find(isSourceFile); const specifier = getModuleSpecifierForImportOrExport(node); let exportDefaultSymbol; let exportModuleDotExportsSymbol; if (isShorthandAmbientModuleSymbol(moduleSymbol)) { exportDefaultSymbol = moduleSymbol; } else if (file && specifier && 102 <= moduleKind && moduleKind <= 199 && getEmitSyntaxForModuleSpecifierExpression(specifier) === 1 && host.getImpliedNodeFormatForEmit(file) === 99 && (exportModuleDotExportsSymbol = resolveExportByName(moduleSymbol, "module.exports", node, dontResolveAlias))) { if (!getESModuleInterop(compilerOptions)) { error2(node.name, Diagnostics.Module_0_can_only_be_default_imported_using_the_1_flag, symbolToString(moduleSymbol), "esModuleInterop"); return; } markSymbolOfAliasDeclarationIfTypeOnly(node, exportModuleDotExportsSymbol, undefined, false); return exportModuleDotExportsSymbol; } else { exportDefaultSymbol = resolveExportByName(moduleSymbol, "default", node, dontResolveAlias); } if (!specifier) { return exportDefaultSymbol; } const hasDefaultOnly = isOnlyImportableAsDefault(specifier, moduleSymbol); const hasSyntheticDefault = canHaveSyntheticDefault(file, moduleSymbol, dontResolveAlias, specifier); if (!exportDefaultSymbol && !hasSyntheticDefault && !hasDefaultOnly) { if (hasExportAssignmentSymbol(moduleSymbol) && !allowSyntheticDefaultImports) { const compilerOptionName = moduleKind >= 5 ? "allowSyntheticDefaultImports" : "esModuleInterop"; const exportEqualsSymbol = moduleSymbol.exports.get("export="); const exportAssignment = exportEqualsSymbol.valueDeclaration; const err = error2(node.name, Diagnostics.Module_0_can_only_be_default_imported_using_the_1_flag, symbolToString(moduleSymbol), compilerOptionName); if (exportAssignment) { addRelatedInfo(err, createDiagnosticForNode(exportAssignment, Diagnostics.This_module_is_declared_with_export_and_can_only_be_used_with_a_default_import_when_using_the_0_flag, compilerOptionName)); } } else if (isImportClause(node)) { reportNonDefaultExport(moduleSymbol, node); } else { errorNoModuleMemberSymbol(moduleSymbol, moduleSymbol, node, isImportOrExportSpecifier(node) && node.propertyName || node.name); } } else if (hasSyntheticDefault || hasDefaultOnly) { const resolved = resolveExternalModuleSymbol(moduleSymbol, dontResolveAlias) || resolveSymbol(moduleSymbol, dontResolveAlias); markSymbolOfAliasDeclarationIfTypeOnly(node, moduleSymbol, resolved, false); return resolved; } markSymbolOfAliasDeclarationIfTypeOnly(node, exportDefaultSymbol, undefined, false); return exportDefaultSymbol; } function getModuleSpecifierForImportOrExport(node) { switch (node.kind) { case 274: return node.parent.moduleSpecifier; case 272: return isExternalModuleReference(node.moduleReference) ? node.moduleReference.expression : undefined; case 275: return node.parent.parent.moduleSpecifier; case 277: return node.parent.parent.parent.moduleSpecifier; case 282: return node.parent.parent.moduleSpecifier; default: return Debug.assertNever(node); } } function reportNonDefaultExport(moduleSymbol, node) { var _a, _b, _c; if ((_a = moduleSymbol.exports) == null ? undefined : _a.has(node.symbol.escapedName)) { error2(node.name, Diagnostics.Module_0_has_no_default_export_Did_you_mean_to_use_import_1_from_0_instead, symbolToString(moduleSymbol), symbolToString(node.symbol)); } else { const diagnostic = error2(node.name, Diagnostics.Module_0_has_no_default_export, symbolToString(moduleSymbol)); const exportStar = (_b = moduleSymbol.exports) == null ? undefined : _b.get("__export"); if (exportStar) { const defaultExport = (_c = exportStar.declarations) == null ? undefined : _c.find((decl) => { var _a2, _b2; return !!(isExportDeclaration(decl) && decl.moduleSpecifier && ((_b2 = (_a2 = resolveExternalModuleName(decl, decl.moduleSpecifier)) == null ? undefined : _a2.exports) == null ? undefined : _b2.has("default"))); }); if (defaultExport) { addRelatedInfo(diagnostic, createDiagnosticForNode(defaultExport, Diagnostics.export_Asterisk_does_not_re_export_a_default)); } } } } function getTargetOfNamespaceImport(node, dontResolveAlias) { const moduleSpecifier = node.parent.parent.moduleSpecifier; const immediate = resolveExternalModuleName(node, moduleSpecifier); const resolved = resolveESModuleSymbol(immediate, moduleSpecifier, dontResolveAlias, false); markSymbolOfAliasDeclarationIfTypeOnly(node, immediate, resolved, false); return resolved; } function getTargetOfNamespaceExport(node, dontResolveAlias) { const moduleSpecifier = node.parent.moduleSpecifier; const immediate = moduleSpecifier && resolveExternalModuleName(node, moduleSpecifier); const resolved = moduleSpecifier && resolveESModuleSymbol(immediate, moduleSpecifier, dontResolveAlias, false); markSymbolOfAliasDeclarationIfTypeOnly(node, immediate, resolved, false); return resolved; } function combineValueAndTypeSymbols(valueSymbol, typeSymbol) { if (valueSymbol === unknownSymbol && typeSymbol === unknownSymbol) { return unknownSymbol; } if (valueSymbol.flags & (788968 | 1920)) { return valueSymbol; } const result = createSymbol(valueSymbol.flags | typeSymbol.flags, valueSymbol.escapedName); Debug.assert(valueSymbol.declarations || typeSymbol.declarations); result.declarations = deduplicate(concatenate(valueSymbol.declarations, typeSymbol.declarations), equateValues); result.parent = valueSymbol.parent || typeSymbol.parent; if (valueSymbol.valueDeclaration) result.valueDeclaration = valueSymbol.valueDeclaration; if (typeSymbol.members) result.members = new Map(typeSymbol.members); if (valueSymbol.exports) result.exports = new Map(valueSymbol.exports); return result; } function getExportOfModule(symbol, nameText, specifier, dontResolveAlias) { var _a; if (symbol.flags & 1536) { const exportSymbol = getExportsOfSymbol(symbol).get(nameText); const resolved = resolveSymbol(exportSymbol, dontResolveAlias); const exportStarDeclaration = (_a = getSymbolLinks(symbol).typeOnlyExportStarMap) == null ? undefined : _a.get(nameText); markSymbolOfAliasDeclarationIfTypeOnly(specifier, exportSymbol, resolved, false, exportStarDeclaration, nameText); return resolved; } } function getPropertyOfVariable(symbol, name) { if (symbol.flags & 3) { const typeAnnotation = symbol.valueDeclaration.type; if (typeAnnotation) { return resolveSymbol(getPropertyOfType(getTypeFromTypeNode(typeAnnotation), name)); } } } function getExternalModuleMember(node, specifier, dontResolveAlias = false) { var _a; const moduleSpecifier = getExternalModuleRequireArgument(node) || node.moduleSpecifier; const moduleSymbol = resolveExternalModuleName(node, moduleSpecifier); const name = !isPropertyAccessExpression(specifier) && specifier.propertyName || specifier.name; if (!isIdentifier(name) && name.kind !== 11) { return; } const nameText = moduleExportNameTextEscaped(name); const suppressInteropError = nameText === "default" && allowSyntheticDefaultImports; const targetSymbol = resolveESModuleSymbol(moduleSymbol, moduleSpecifier, false, suppressInteropError); if (targetSymbol) { if (nameText || name.kind === 11) { if (isShorthandAmbientModuleSymbol(moduleSymbol)) { return moduleSymbol; } let symbolFromVariable; if (moduleSymbol && moduleSymbol.exports && moduleSymbol.exports.get("export=")) { symbolFromVariable = getPropertyOfType(getTypeOfSymbol(targetSymbol), nameText, true); } else { symbolFromVariable = getPropertyOfVariable(targetSymbol, nameText); } symbolFromVariable = resolveSymbol(symbolFromVariable, dontResolveAlias); let symbolFromModule = getExportOfModule(targetSymbol, nameText, specifier, dontResolveAlias); if (symbolFromModule === undefined && nameText === "default") { const file = (_a = moduleSymbol.declarations) == null ? undefined : _a.find(isSourceFile); if (isOnlyImportableAsDefault(moduleSpecifier, moduleSymbol) || canHaveSyntheticDefault(file, moduleSymbol, dontResolveAlias, moduleSpecifier)) { symbolFromModule = resolveExternalModuleSymbol(moduleSymbol, dontResolveAlias) || resolveSymbol(moduleSymbol, dontResolveAlias); } } const symbol = symbolFromModule && symbolFromVariable && symbolFromModule !== symbolFromVariable ? combineValueAndTypeSymbols(symbolFromVariable, symbolFromModule) : symbolFromModule || symbolFromVariable; if (isImportOrExportSpecifier(specifier) && isOnlyImportableAsDefault(moduleSpecifier, moduleSymbol) && nameText !== "default") { error2(name, Diagnostics.Named_imports_from_a_JSON_file_into_an_ECMAScript_module_are_not_allowed_when_module_is_set_to_0, ModuleKind[moduleKind]); } else if (!symbol) { errorNoModuleMemberSymbol(moduleSymbol, targetSymbol, node, name); } return symbol; } } } function errorNoModuleMemberSymbol(moduleSymbol, targetSymbol, node, name) { var _a; const moduleName = getFullyQualifiedName(moduleSymbol, node); const declarationName = declarationNameToString(name); const suggestion = isIdentifier(name) ? getSuggestedSymbolForNonexistentModule(name, targetSymbol) : undefined; if (suggestion !== undefined) { const suggestionName = symbolToString(suggestion); const diagnostic = error2(name, Diagnostics._0_has_no_exported_member_named_1_Did_you_mean_2, moduleName, declarationName, suggestionName); if (suggestion.valueDeclaration) { addRelatedInfo(diagnostic, createDiagnosticForNode(suggestion.valueDeclaration, Diagnostics._0_is_declared_here, suggestionName)); } } else { if ((_a = moduleSymbol.exports) == null ? undefined : _a.has("default")) { error2(name, Diagnostics.Module_0_has_no_exported_member_1_Did_you_mean_to_use_import_1_from_0_instead, moduleName, declarationName); } else { reportNonExportedMember(node, name, declarationName, moduleSymbol, moduleName); } } } function reportNonExportedMember(node, name, declarationName, moduleSymbol, moduleName) { var _a, _b; const localSymbol = (_b = (_a = tryCast(moduleSymbol.valueDeclaration, canHaveLocals)) == null ? undefined : _a.locals) == null ? undefined : _b.get(moduleExportNameTextEscaped(name)); const exports22 = moduleSymbol.exports; if (localSymbol) { const exportedEqualsSymbol = exports22 == null ? undefined : exports22.get("export="); if (exportedEqualsSymbol) { getSymbolIfSameReference(exportedEqualsSymbol, localSymbol) ? reportInvalidImportEqualsExportMember(node, name, declarationName, moduleName) : error2(name, Diagnostics.Module_0_has_no_exported_member_1, moduleName, declarationName); } else { const exportedSymbol = exports22 ? find(symbolsToArray(exports22), (symbol) => !!getSymbolIfSameReference(symbol, localSymbol)) : undefined; const diagnostic = exportedSymbol ? error2(name, Diagnostics.Module_0_declares_1_locally_but_it_is_exported_as_2, moduleName, declarationName, symbolToString(exportedSymbol)) : error2(name, Diagnostics.Module_0_declares_1_locally_but_it_is_not_exported, moduleName, declarationName); if (localSymbol.declarations) { addRelatedInfo(diagnostic, ...map(localSymbol.declarations, (decl, index) => createDiagnosticForNode(decl, index === 0 ? Diagnostics._0_is_declared_here : Diagnostics.and_here, declarationName))); } } } else { error2(name, Diagnostics.Module_0_has_no_exported_member_1, moduleName, declarationName); } } function reportInvalidImportEqualsExportMember(node, name, declarationName, moduleName) { if (moduleKind >= 5) { const message = getESModuleInterop(compilerOptions) ? Diagnostics._0_can_only_be_imported_by_using_a_default_import : Diagnostics._0_can_only_be_imported_by_turning_on_the_esModuleInterop_flag_and_using_a_default_import; error2(name, message, declarationName); } else { if (isInJSFile(node)) { const message = getESModuleInterop(compilerOptions) ? Diagnostics._0_can_only_be_imported_by_using_a_require_call_or_by_using_a_default_import : Diagnostics._0_can_only_be_imported_by_using_a_require_call_or_by_turning_on_the_esModuleInterop_flag_and_using_a_default_import; error2(name, message, declarationName); } else { const message = getESModuleInterop(compilerOptions) ? Diagnostics._0_can_only_be_imported_by_using_import_1_require_2_or_a_default_import : Diagnostics._0_can_only_be_imported_by_using_import_1_require_2_or_by_turning_on_the_esModuleInterop_flag_and_using_a_default_import; error2(name, message, declarationName, declarationName, moduleName); } } } function getTargetOfImportSpecifier(node, dontResolveAlias) { if (isImportSpecifier(node) && moduleExportNameIsDefault(node.propertyName || node.name)) { const specifier = getModuleSpecifierForImportOrExport(node); const moduleSymbol = specifier && resolveExternalModuleName(node, specifier); if (moduleSymbol) { return getTargetofModuleDefault(moduleSymbol, node, dontResolveAlias); } } const root = isBindingElement(node) ? getRootDeclaration(node) : node.parent.parent.parent; const commonJSPropertyAccess = getCommonJSPropertyAccess(root); const resolved = getExternalModuleMember(root, commonJSPropertyAccess || node, dontResolveAlias); const name = node.propertyName || node.name; if (commonJSPropertyAccess && resolved && isIdentifier(name)) { return resolveSymbol(getPropertyOfType(getTypeOfSymbol(resolved), name.escapedText), dontResolveAlias); } markSymbolOfAliasDeclarationIfTypeOnly(node, undefined, resolved, false); return resolved; } function getCommonJSPropertyAccess(node) { if (isVariableDeclaration(node) && node.initializer && isPropertyAccessExpression(node.initializer)) { return node.initializer; } } function getTargetOfNamespaceExportDeclaration(node, dontResolveAlias) { if (canHaveSymbol(node.parent)) { const resolved = resolveExternalModuleSymbol(node.parent.symbol, dontResolveAlias); markSymbolOfAliasDeclarationIfTypeOnly(node, undefined, resolved, false); return resolved; } } function getTargetOfExportSpecifier(node, meaning, dontResolveAlias) { const name = node.propertyName || node.name; if (moduleExportNameIsDefault(name)) { const specifier = getModuleSpecifierForImportOrExport(node); const moduleSymbol = specifier && resolveExternalModuleName(node, specifier); if (moduleSymbol) { return getTargetofModuleDefault(moduleSymbol, node, !!dontResolveAlias); } } const resolved = node.parent.parent.moduleSpecifier ? getExternalModuleMember(node.parent.parent, node, dontResolveAlias) : name.kind === 11 ? undefined : resolveEntityName(name, meaning, false, dontResolveAlias); markSymbolOfAliasDeclarationIfTypeOnly(node, undefined, resolved, false); return resolved; } function getTargetOfExportAssignment(node, dontResolveAlias) { const expression = isExportAssignment(node) ? node.expression : node.right; const resolved = getTargetOfAliasLikeExpression(expression, dontResolveAlias); markSymbolOfAliasDeclarationIfTypeOnly(node, undefined, resolved, false); return resolved; } function getTargetOfAliasLikeExpression(expression, dontResolveAlias) { if (isClassExpression(expression)) { return checkExpressionCached(expression).symbol; } if (!isEntityName(expression) && !isEntityNameExpression(expression)) { return; } const aliasLike = resolveEntityName(expression, 111551 | 788968 | 1920, true, dontResolveAlias); if (aliasLike) { return aliasLike; } checkExpressionCached(expression); return getNodeLinks(expression).resolvedSymbol; } function getTargetOfAccessExpression(node, dontRecursivelyResolve) { if (!(isBinaryExpression(node.parent) && node.parent.left === node && node.parent.operatorToken.kind === 64)) { return; } return getTargetOfAliasLikeExpression(node.parent.right, dontRecursivelyResolve); } function getTargetOfAliasDeclaration(node, dontRecursivelyResolve = false) { switch (node.kind) { case 272: case 261: return getTargetOfImportEqualsDeclaration(node, dontRecursivelyResolve); case 274: return getTargetOfImportClause(node, dontRecursivelyResolve); case 275: return getTargetOfNamespaceImport(node, dontRecursivelyResolve); case 281: return getTargetOfNamespaceExport(node, dontRecursivelyResolve); case 277: case 209: return getTargetOfImportSpecifier(node, dontRecursivelyResolve); case 282: return getTargetOfExportSpecifier(node, 111551 | 788968 | 1920, dontRecursivelyResolve); case 278: case 227: return getTargetOfExportAssignment(node, dontRecursivelyResolve); case 271: return getTargetOfNamespaceExportDeclaration(node, dontRecursivelyResolve); case 305: return resolveEntityName(node.name, 111551 | 788968 | 1920, true, dontRecursivelyResolve); case 304: return getTargetOfAliasLikeExpression(node.initializer, dontRecursivelyResolve); case 213: case 212: return getTargetOfAccessExpression(node, dontRecursivelyResolve); default: return Debug.fail(); } } function isNonLocalAlias(symbol, excludes = 111551 | 788968 | 1920) { if (!symbol) return false; return (symbol.flags & (2097152 | excludes)) === 2097152 || !!(symbol.flags & 2097152 && symbol.flags & 67108864); } function resolveSymbol(symbol, dontResolveAlias) { return !dontResolveAlias && isNonLocalAlias(symbol) ? resolveAlias(symbol) : symbol; } function resolveAlias(symbol) { Debug.assert((symbol.flags & 2097152) !== 0, "Should only get Alias here."); const links = getSymbolLinks(symbol); if (!links.aliasTarget) { links.aliasTarget = resolvingSymbol; const node = getDeclarationOfAliasSymbol(symbol); if (!node) return Debug.fail(); const target = getTargetOfAliasDeclaration(node); if (links.aliasTarget === resolvingSymbol) { links.aliasTarget = target || unknownSymbol; } else { error2(node, Diagnostics.Circular_definition_of_import_alias_0, symbolToString(symbol)); } } else if (links.aliasTarget === resolvingSymbol) { links.aliasTarget = unknownSymbol; } return links.aliasTarget; } function tryResolveAlias(symbol) { const links = getSymbolLinks(symbol); if (links.aliasTarget !== resolvingSymbol) { return resolveAlias(symbol); } return; } function getSymbolFlags(symbol, excludeTypeOnlyMeanings, excludeLocalMeanings) { const typeOnlyDeclaration = excludeTypeOnlyMeanings && getTypeOnlyAliasDeclaration(symbol); const typeOnlyDeclarationIsExportStar = typeOnlyDeclaration && isExportDeclaration(typeOnlyDeclaration); const typeOnlyResolution = typeOnlyDeclaration && (typeOnlyDeclarationIsExportStar ? resolveExternalModuleName(typeOnlyDeclaration.moduleSpecifier, typeOnlyDeclaration.moduleSpecifier, true) : resolveAlias(typeOnlyDeclaration.symbol)); const typeOnlyExportStarTargets = typeOnlyDeclarationIsExportStar && typeOnlyResolution ? getExportsOfModule(typeOnlyResolution) : undefined; let flags = excludeLocalMeanings ? 0 : symbol.flags; let seenSymbols; while (symbol.flags & 2097152) { const target = getExportSymbolOfValueSymbolIfExported(resolveAlias(symbol)); if (!typeOnlyDeclarationIsExportStar && target === typeOnlyResolution || (typeOnlyExportStarTargets == null ? undefined : typeOnlyExportStarTargets.get(target.escapedName)) === target) { break; } if (target === unknownSymbol) { return -1; } if (target === symbol || (seenSymbols == null ? undefined : seenSymbols.has(target))) { break; } if (target.flags & 2097152) { if (seenSymbols) { seenSymbols.add(target); } else { seenSymbols = /* @__PURE__ */ new Set([symbol, target]); } } flags |= target.flags; symbol = target; } return flags; } function markSymbolOfAliasDeclarationIfTypeOnly(aliasDeclaration, immediateTarget, finalTarget, overwriteEmpty, exportStarDeclaration, exportStarName) { if (!aliasDeclaration || isPropertyAccessExpression(aliasDeclaration)) return false; const sourceSymbol = getSymbolOfDeclaration(aliasDeclaration); if (isTypeOnlyImportOrExportDeclaration(aliasDeclaration)) { const links2 = getSymbolLinks(sourceSymbol); links2.typeOnlyDeclaration = aliasDeclaration; return true; } if (exportStarDeclaration) { const links2 = getSymbolLinks(sourceSymbol); links2.typeOnlyDeclaration = exportStarDeclaration; if (sourceSymbol.escapedName !== exportStarName) { links2.typeOnlyExportStarName = exportStarName; } return true; } const links = getSymbolLinks(sourceSymbol); return markSymbolOfAliasDeclarationIfTypeOnlyWorker(links, immediateTarget, overwriteEmpty) || markSymbolOfAliasDeclarationIfTypeOnlyWorker(links, finalTarget, overwriteEmpty); } function markSymbolOfAliasDeclarationIfTypeOnlyWorker(aliasDeclarationLinks, target, overwriteEmpty) { var _a; if (target && (aliasDeclarationLinks.typeOnlyDeclaration === undefined || overwriteEmpty && aliasDeclarationLinks.typeOnlyDeclaration === false)) { const exportSymbol = ((_a = target.exports) == null ? undefined : _a.get("export=")) ?? target; const typeOnly = exportSymbol.declarations && find(exportSymbol.declarations, isTypeOnlyImportOrExportDeclaration); aliasDeclarationLinks.typeOnlyDeclaration = typeOnly ?? getSymbolLinks(exportSymbol).typeOnlyDeclaration ?? false; } return !!aliasDeclarationLinks.typeOnlyDeclaration; } function getTypeOnlyAliasDeclaration(symbol, include) { var _a; if (!(symbol.flags & 2097152)) { return; } const links = getSymbolLinks(symbol); if (links.typeOnlyDeclaration === undefined) { links.typeOnlyDeclaration = false; const resolved = resolveSymbol(symbol); markSymbolOfAliasDeclarationIfTypeOnly((_a = symbol.declarations) == null ? undefined : _a[0], getDeclarationOfAliasSymbol(symbol) && getImmediateAliasedSymbol(symbol), resolved, true); } if (include === undefined) { return links.typeOnlyDeclaration || undefined; } if (links.typeOnlyDeclaration) { const resolved = links.typeOnlyDeclaration.kind === 279 ? resolveSymbol(getExportsOfModule(links.typeOnlyDeclaration.symbol.parent).get(links.typeOnlyExportStarName || symbol.escapedName)) : resolveAlias(links.typeOnlyDeclaration.symbol); return getSymbolFlags(resolved) & include ? links.typeOnlyDeclaration : undefined; } return; } function getSymbolOfPartOfRightHandSideOfImportEquals(entityName, dontResolveAlias) { if (entityName.kind === 80 && isRightSideOfQualifiedNameOrPropertyAccess(entityName)) { entityName = entityName.parent; } if (entityName.kind === 80 || entityName.parent.kind === 167) { return resolveEntityName(entityName, 1920, false, dontResolveAlias); } else { Debug.assert(entityName.parent.kind === 272); return resolveEntityName(entityName, 111551 | 788968 | 1920, false, dontResolveAlias); } } function getFullyQualifiedName(symbol, containingLocation) { return symbol.parent ? getFullyQualifiedName(symbol.parent, containingLocation) + "." + symbolToString(symbol) : symbolToString(symbol, containingLocation, undefined, 32 | 4); } function getContainingQualifiedNameNode(node) { while (isQualifiedName(node.parent)) { node = node.parent; } return node; } function tryGetQualifiedNameAsValue(node) { let left = getFirstIdentifier(node); let symbol = resolveName(left, left, 111551, undefined, true); if (!symbol) { return; } while (isQualifiedName(left.parent)) { const type = getTypeOfSymbol(symbol); symbol = getPropertyOfType(type, left.parent.right.escapedText); if (!symbol) { return; } left = left.parent; } return symbol; } function resolveEntityName(name, meaning, ignoreErrors, dontResolveAlias, location) { if (nodeIsMissing(name)) { return; } const namespaceMeaning = 1920 | (isInJSFile(name) ? meaning & 111551 : 0); let symbol; if (name.kind === 80) { const message = meaning === namespaceMeaning || nodeIsSynthesized(name) ? Diagnostics.Cannot_find_namespace_0 : getCannotFindNameDiagnosticForName(getFirstIdentifier(name)); const symbolFromJSPrototype = isInJSFile(name) && !nodeIsSynthesized(name) ? resolveEntityNameFromAssignmentDeclaration(name, meaning) : undefined; symbol = getMergedSymbol(resolveName(location || name, name, meaning, ignoreErrors || symbolFromJSPrototype ? undefined : message, true, false)); if (!symbol) { return getMergedSymbol(symbolFromJSPrototype); } } else if (name.kind === 167 || name.kind === 212) { const left = name.kind === 167 ? name.left : name.expression; const right = name.kind === 167 ? name.right : name.name; let namespace = resolveEntityName(left, namespaceMeaning, ignoreErrors, false, location); if (!namespace || nodeIsMissing(right)) { return; } else if (namespace === unknownSymbol) { return namespace; } if (namespace.valueDeclaration && isInJSFile(namespace.valueDeclaration) && getEmitModuleResolutionKind(compilerOptions) !== 100 && isVariableDeclaration(namespace.valueDeclaration) && namespace.valueDeclaration.initializer && isCommonJsRequire(namespace.valueDeclaration.initializer)) { const moduleName = namespace.valueDeclaration.initializer.arguments[0]; const moduleSym = resolveExternalModuleName(moduleName, moduleName); if (moduleSym) { const resolvedModuleSymbol = resolveExternalModuleSymbol(moduleSym); if (resolvedModuleSymbol) { namespace = resolvedModuleSymbol; } } } symbol = getMergedSymbol(getSymbol2(getExportsOfSymbol(namespace), right.escapedText, meaning)); if (!symbol && namespace.flags & 2097152) { symbol = getMergedSymbol(getSymbol2(getExportsOfSymbol(resolveAlias(namespace)), right.escapedText, meaning)); } if (!symbol) { if (!ignoreErrors) { const namespaceName = getFullyQualifiedName(namespace); const declarationName = declarationNameToString(right); const suggestionForNonexistentModule = getSuggestedSymbolForNonexistentModule(right, namespace); if (suggestionForNonexistentModule) { error2(right, Diagnostics._0_has_no_exported_member_named_1_Did_you_mean_2, namespaceName, declarationName, symbolToString(suggestionForNonexistentModule)); return; } const containingQualifiedName = isQualifiedName(name) && getContainingQualifiedNameNode(name); const canSuggestTypeof = globalObjectType && meaning & 788968 && containingQualifiedName && !isTypeOfExpression(containingQualifiedName.parent) && tryGetQualifiedNameAsValue(containingQualifiedName); if (canSuggestTypeof) { error2(containingQualifiedName, Diagnostics._0_refers_to_a_value_but_is_being_used_as_a_type_here_Did_you_mean_typeof_0, entityNameToString(containingQualifiedName)); return; } if (meaning & 1920 && isQualifiedName(name.parent)) { const exportedTypeSymbol = getMergedSymbol(getSymbol2(getExportsOfSymbol(namespace), right.escapedText, 788968)); if (exportedTypeSymbol) { error2(name.parent.right, Diagnostics.Cannot_access_0_1_because_0_is_a_type_but_not_a_namespace_Did_you_mean_to_retrieve_the_type_of_the_property_1_in_0_with_0_1, symbolToString(exportedTypeSymbol), unescapeLeadingUnderscores(name.parent.right.escapedText)); return; } } error2(right, Diagnostics.Namespace_0_has_no_exported_member_1, namespaceName, declarationName); } return; } } else { Debug.assertNever(name, "Unknown entity name kind."); } if (!nodeIsSynthesized(name) && isEntityName(name) && (symbol.flags & 2097152 || name.parent.kind === 278)) { markSymbolOfAliasDeclarationIfTypeOnly(getAliasDeclarationFromName(name), symbol, undefined, true); } return symbol.flags & meaning || dontResolveAlias ? symbol : resolveAlias(symbol); } function resolveEntityNameFromAssignmentDeclaration(name, meaning) { if (isJSDocTypeReference(name.parent)) { const secondaryLocation = getAssignmentDeclarationLocation(name.parent); if (secondaryLocation) { return resolveName(secondaryLocation, name, meaning, undefined, true); } } } function getAssignmentDeclarationLocation(node) { const typeAlias = findAncestor(node, (node2) => !(isJSDocNode(node2) || node2.flags & 16777216) ? "quit" : isJSDocTypeAlias(node2)); if (typeAlias) { return; } const host2 = getJSDocHost(node); if (host2 && isExpressionStatement(host2) && isPrototypePropertyAssignment(host2.expression)) { const symbol = getSymbolOfDeclaration(host2.expression.left); if (symbol) { return getDeclarationOfJSPrototypeContainer(symbol); } } if (host2 && isFunctionExpression(host2) && isPrototypePropertyAssignment(host2.parent) && isExpressionStatement(host2.parent.parent)) { const symbol = getSymbolOfDeclaration(host2.parent.left); if (symbol) { return getDeclarationOfJSPrototypeContainer(symbol); } } if (host2 && (isObjectLiteralMethod(host2) || isPropertyAssignment(host2)) && isBinaryExpression(host2.parent.parent) && getAssignmentDeclarationKind(host2.parent.parent) === 6) { const symbol = getSymbolOfDeclaration(host2.parent.parent.left); if (symbol) { return getDeclarationOfJSPrototypeContainer(symbol); } } const sig = getEffectiveJSDocHost(node); if (sig && isFunctionLike(sig)) { const symbol = getSymbolOfDeclaration(sig); return symbol && symbol.valueDeclaration; } } function getDeclarationOfJSPrototypeContainer(symbol) { const decl = symbol.parent.valueDeclaration; if (!decl) { return; } const initializer = isAssignmentDeclaration(decl) ? getAssignedExpandoInitializer(decl) : hasOnlyExpressionInitializer(decl) ? getDeclaredExpandoInitializer(decl) : undefined; return initializer || decl; } function getExpandoSymbol(symbol) { const decl = symbol.valueDeclaration; if (!decl || !isInJSFile(decl) || symbol.flags & 524288 || getExpandoInitializer(decl, false)) { return; } const init = isVariableDeclaration(decl) ? getDeclaredExpandoInitializer(decl) : getAssignedExpandoInitializer(decl); if (init) { const initSymbol = getSymbolOfNode(init); if (initSymbol) { return mergeJSSymbols(initSymbol, symbol); } } } function resolveExternalModuleName(location, moduleReferenceExpression, ignoreErrors, errorMessage) { const isClassic = getEmitModuleResolutionKind(compilerOptions) === 1; errorMessage ?? (errorMessage = getCannotResolveModuleNameErrorForSpecificModule(moduleReferenceExpression) ?? (isClassic ? Diagnostics.Cannot_find_module_0_Did_you_mean_to_set_the_moduleResolution_option_to_nodenext_or_to_add_aliases_to_the_paths_option : Diagnostics.Cannot_find_module_0_or_its_corresponding_type_declarations)); return resolveExternalModuleNameWorker(location, moduleReferenceExpression, ignoreErrors ? undefined : errorMessage, ignoreErrors); } function resolveExternalModuleNameWorker(location, moduleReferenceExpression, moduleNotFoundError, ignoreErrors = false, isForAugmentation = false) { return isStringLiteralLike(moduleReferenceExpression) ? resolveExternalModule(location, moduleReferenceExpression.text, moduleNotFoundError, !ignoreErrors ? moduleReferenceExpression : undefined, isForAugmentation) : undefined; } function resolveExternalModule(location, moduleReference, moduleNotFoundError, errorNode, isForAugmentation = false) { var _a, _b, _c, _d, _e, _f, _g, _h, _i, _j, _k, _l; if (errorNode && startsWith(moduleReference, "@types/")) { const diag2 = Diagnostics.Cannot_import_type_declaration_files_Consider_importing_0_instead_of_1; const withoutAtTypePrefix = removePrefix(moduleReference, "@types/"); error2(errorNode, diag2, withoutAtTypePrefix, moduleReference); } const ambientModule = tryFindAmbientModule(moduleReference, true); if (ambientModule) { return ambientModule; } const currentSourceFile = getSourceFileOfNode(location); const contextSpecifier = isStringLiteralLike(location) ? location : ((_a = isModuleDeclaration(location) ? location : location.parent && isModuleDeclaration(location.parent) && location.parent.name === location ? location.parent : undefined) == null ? undefined : _a.name) || ((_b = isLiteralImportTypeNode(location) ? location : undefined) == null ? undefined : _b.argument.literal) || isVariableDeclarationInitializedToBareOrAccessedRequire(location) && getModuleSpecifierOfBareOrAccessedRequire(location) || ((_c = findAncestor(location, isImportCall)) == null ? undefined : _c.arguments[0]) || ((_d = findAncestor(location, or(isImportDeclaration, isJSDocImportTag, isExportDeclaration))) == null ? undefined : _d.moduleSpecifier) || ((_e = findAncestor(location, isExternalModuleImportEqualsDeclaration)) == null ? undefined : _e.moduleReference.expression); const mode = contextSpecifier && isStringLiteralLike(contextSpecifier) ? host.getModeForUsageLocation(currentSourceFile, contextSpecifier) : host.getDefaultResolutionModeForFile(currentSourceFile); const moduleResolutionKind = getEmitModuleResolutionKind(compilerOptions); const resolvedModule = (_f = host.getResolvedModule(currentSourceFile, moduleReference, mode)) == null ? undefined : _f.resolvedModule; const resolutionDiagnostic = errorNode && resolvedModule && getResolutionDiagnostic(compilerOptions, resolvedModule, currentSourceFile); const sourceFile = resolvedModule && (!resolutionDiagnostic || resolutionDiagnostic === Diagnostics.Module_0_was_resolved_to_1_but_jsx_is_not_set) && host.getSourceFile(resolvedModule.resolvedFileName); if (sourceFile) { if (resolutionDiagnostic) { error2(errorNode, resolutionDiagnostic, moduleReference, resolvedModule.resolvedFileName); } if (resolvedModule.resolvedUsingTsExtension && isDeclarationFileName(moduleReference)) { const importOrExport = ((_g = findAncestor(location, isImportDeclaration)) == null ? undefined : _g.importClause) || findAncestor(location, or(isImportEqualsDeclaration, isExportDeclaration)); if (errorNode && importOrExport && !importOrExport.isTypeOnly || findAncestor(location, isImportCall)) { error2(errorNode, Diagnostics.A_declaration_file_cannot_be_imported_without_import_type_Did_you_mean_to_import_an_implementation_file_0_instead, getSuggestedImportSource(Debug.checkDefined(tryExtractTSExtension(moduleReference)))); } } else if (resolvedModule.resolvedUsingTsExtension && !shouldAllowImportingTsExtension(compilerOptions, currentSourceFile.fileName)) { const importOrExport = ((_h = findAncestor(location, isImportDeclaration)) == null ? undefined : _h.importClause) || findAncestor(location, or(isImportEqualsDeclaration, isExportDeclaration)); if (errorNode && !((importOrExport == null ? undefined : importOrExport.isTypeOnly) || findAncestor(location, isImportTypeNode))) { const tsExtension = Debug.checkDefined(tryExtractTSExtension(moduleReference)); error2(errorNode, Diagnostics.An_import_path_can_only_end_with_a_0_extension_when_allowImportingTsExtensions_is_enabled, tsExtension); } } else if (compilerOptions.rewriteRelativeImportExtensions && !(location.flags & 33554432) && !isDeclarationFileName(moduleReference) && !isLiteralImportTypeNode(location) && !isPartOfTypeOnlyImportOrExportDeclaration(location)) { const shouldRewrite = shouldRewriteModuleSpecifier(moduleReference, compilerOptions); if (!resolvedModule.resolvedUsingTsExtension && shouldRewrite) { error2(errorNode, Diagnostics.This_relative_import_path_is_unsafe_to_rewrite_because_it_looks_like_a_file_name_but_actually_resolves_to_0, getRelativePathFromFile(getNormalizedAbsolutePath(currentSourceFile.fileName, host.getCurrentDirectory()), resolvedModule.resolvedFileName, hostGetCanonicalFileName(host))); } else if (resolvedModule.resolvedUsingTsExtension && !shouldRewrite && sourceFileMayBeEmitted(sourceFile, host)) { error2(errorNode, Diagnostics.This_import_uses_a_0_extension_to_resolve_to_an_input_TypeScript_file_but_will_not_be_rewritten_during_emit_because_it_is_not_a_relative_path, getAnyExtensionFromPath(moduleReference)); } else if (resolvedModule.resolvedUsingTsExtension && shouldRewrite) { const redirect = (_i = host.getRedirectFromSourceFile(sourceFile.path)) == null ? undefined : _i.resolvedRef; if (redirect) { const ignoreCase = !host.useCaseSensitiveFileNames(); const ownRootDir = host.getCommonSourceDirectory(); const otherRootDir = getCommonSourceDirectoryOfConfig(redirect.commandLine, ignoreCase); const rootDirPath = getRelativePathFromDirectory(ownRootDir, otherRootDir, ignoreCase); const outDirPath = getRelativePathFromDirectory(compilerOptions.outDir || ownRootDir, redirect.commandLine.options.outDir || otherRootDir, ignoreCase); if (rootDirPath !== outDirPath) { error2(errorNode, Diagnostics.This_import_path_is_unsafe_to_rewrite_because_it_resolves_to_another_project_and_the_relative_path_between_the_projects_output_files_is_not_the_same_as_the_relative_path_between_its_input_files); } } } } if (sourceFile.symbol) { if (errorNode && resolvedModule.isExternalLibraryImport && !resolutionExtensionIsTSOrJson(resolvedModule.extension)) { errorOnImplicitAnyModule(false, errorNode, currentSourceFile, mode, resolvedModule, moduleReference); } if (errorNode && (moduleKind === 100 || moduleKind === 101)) { const isSyncImport = currentSourceFile.impliedNodeFormat === 1 && !findAncestor(location, isImportCall) || !!findAncestor(location, isImportEqualsDeclaration); const overrideHost = findAncestor(location, (l) => isImportTypeNode(l) || isExportDeclaration(l) || isImportDeclaration(l) || isJSDocImportTag(l)); if (isSyncImport && sourceFile.impliedNodeFormat === 99 && !hasResolutionModeOverride(overrideHost)) { if (findAncestor(location, isImportEqualsDeclaration)) { error2(errorNode, Diagnostics.Module_0_cannot_be_imported_using_this_construct_The_specifier_only_resolves_to_an_ES_module_which_cannot_be_imported_with_require_Use_an_ECMAScript_import_instead, moduleReference); } else { let diagnosticDetails; const ext = tryGetExtensionFromPath2(currentSourceFile.fileName); if (ext === ".ts" || ext === ".js" || ext === ".tsx" || ext === ".jsx") { diagnosticDetails = createModeMismatchDetails(currentSourceFile); } const message = (overrideHost == null ? undefined : overrideHost.kind) === 273 && ((_j = overrideHost.importClause) == null ? undefined : _j.isTypeOnly) ? Diagnostics.Type_only_import_of_an_ECMAScript_module_from_a_CommonJS_module_must_have_a_resolution_mode_attribute : (overrideHost == null ? undefined : overrideHost.kind) === 206 ? Diagnostics.Type_import_of_an_ECMAScript_module_from_a_CommonJS_module_must_have_a_resolution_mode_attribute : Diagnostics.The_current_file_is_a_CommonJS_module_whose_imports_will_produce_require_calls_however_the_referenced_file_is_an_ECMAScript_module_and_cannot_be_imported_with_require_Consider_writing_a_dynamic_import_0_call_instead; diagnostics.add(createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(errorNode), errorNode, chainDiagnosticMessages(diagnosticDetails, message, moduleReference))); } } } return getMergedSymbol(sourceFile.symbol); } if (errorNode && moduleNotFoundError && !isSideEffectImport(errorNode)) { error2(errorNode, Diagnostics.File_0_is_not_a_module, sourceFile.fileName); } return; } if (patternAmbientModules) { const pattern = findBestPatternMatch(patternAmbientModules, (_) => _.pattern, moduleReference); if (pattern) { const augmentation = patternAmbientModuleAugmentations && patternAmbientModuleAugmentations.get(moduleReference); if (augmentation) { return getMergedSymbol(augmentation); } return getMergedSymbol(pattern.symbol); } } if (!errorNode) { return; } if (resolvedModule && !resolutionExtensionIsTSOrJson(resolvedModule.extension) && resolutionDiagnostic === undefined || resolutionDiagnostic === Diagnostics.Could_not_find_a_declaration_file_for_module_0_1_implicitly_has_an_any_type) { if (isForAugmentation) { const diag2 = Diagnostics.Invalid_module_name_in_augmentation_Module_0_resolves_to_an_untyped_module_at_1_which_cannot_be_augmented; error2(errorNode, diag2, moduleReference, resolvedModule.resolvedFileName); } else { errorOnImplicitAnyModule(noImplicitAny && !!moduleNotFoundError, errorNode, currentSourceFile, mode, resolvedModule, moduleReference); } return; } if (moduleNotFoundError) { if (resolvedModule) { const redirect = host.getRedirectFromSourceFile(resolvedModule.resolvedFileName); if (redirect == null ? undefined : redirect.outputDts) { error2(errorNode, Diagnostics.Output_file_0_has_not_been_built_from_source_file_1, redirect.outputDts, resolvedModule.resolvedFileName); return; } } if (resolutionDiagnostic) { error2(errorNode, resolutionDiagnostic, moduleReference, resolvedModule.resolvedFileName); } else { const isExtensionlessRelativePathImport = pathIsRelative(moduleReference) && !hasExtension(moduleReference); const resolutionIsNode16OrNext = moduleResolutionKind === 3 || moduleResolutionKind === 99; if (!getResolveJsonModule(compilerOptions) && fileExtensionIs(moduleReference, ".json") && moduleResolutionKind !== 1 && hasJsonModuleEmitEnabled(compilerOptions)) { error2(errorNode, Diagnostics.Cannot_find_module_0_Consider_using_resolveJsonModule_to_import_module_with_json_extension, moduleReference); } else if (mode === 99 && resolutionIsNode16OrNext && isExtensionlessRelativePathImport) { const absoluteRef = getNormalizedAbsolutePath(moduleReference, getDirectoryPath(currentSourceFile.path)); const suggestedExt = (_k = suggestedExtensions.find(([actualExt, _importExt]) => host.fileExists(absoluteRef + actualExt))) == null ? undefined : _k[1]; if (suggestedExt) { error2(errorNode, Diagnostics.Relative_import_paths_need_explicit_file_extensions_in_ECMAScript_imports_when_moduleResolution_is_node16_or_nodenext_Did_you_mean_0, moduleReference + suggestedExt); } else { error2(errorNode, Diagnostics.Relative_import_paths_need_explicit_file_extensions_in_ECMAScript_imports_when_moduleResolution_is_node16_or_nodenext_Consider_adding_an_extension_to_the_import_path); } } else { if ((_l = host.getResolvedModule(currentSourceFile, moduleReference, mode)) == null ? undefined : _l.alternateResult) { const errorInfo = createModuleNotFoundChain(currentSourceFile, host, moduleReference, mode, moduleReference); errorOrSuggestion(true, errorNode, chainDiagnosticMessages(errorInfo, moduleNotFoundError, moduleReference)); } else { error2(errorNode, moduleNotFoundError, moduleReference); } } } } return; function getSuggestedImportSource(tsExtension) { const importSourceWithoutExtension = removeExtension(moduleReference, tsExtension); if (emitModuleKindIsNonNodeESM(moduleKind) || mode === 99) { const preferTs = isDeclarationFileName(moduleReference) && shouldAllowImportingTsExtension(compilerOptions); const ext = tsExtension === ".mts" || tsExtension === ".d.mts" ? preferTs ? ".mts" : ".mjs" : tsExtension === ".cts" || tsExtension === ".d.mts" ? preferTs ? ".cts" : ".cjs" : preferTs ? ".ts" : ".js"; return importSourceWithoutExtension + ext; } return importSourceWithoutExtension; } } function errorOnImplicitAnyModule(isError, errorNode, sourceFile, mode, { packageId, resolvedFileName }, moduleReference) { if (isSideEffectImport(errorNode)) { return; } let errorInfo; if (!isExternalModuleNameRelative(moduleReference) && packageId) { errorInfo = createModuleNotFoundChain(sourceFile, host, moduleReference, mode, packageId.name); } errorOrSuggestion(isError, errorNode, chainDiagnosticMessages(errorInfo, Diagnostics.Could_not_find_a_declaration_file_for_module_0_1_implicitly_has_an_any_type, moduleReference, resolvedFileName)); } function resolveExternalModuleSymbol(moduleSymbol, dontResolveAlias) { if (moduleSymbol == null ? undefined : moduleSymbol.exports) { const exportEquals = resolveSymbol(moduleSymbol.exports.get("export="), dontResolveAlias); const exported = getCommonJsExportEquals(getMergedSymbol(exportEquals), getMergedSymbol(moduleSymbol)); return getMergedSymbol(exported) || moduleSymbol; } return; } function getCommonJsExportEquals(exported, moduleSymbol) { if (!exported || exported === unknownSymbol || exported === moduleSymbol || moduleSymbol.exports.size === 1 || exported.flags & 2097152) { return exported; } const links = getSymbolLinks(exported); if (links.cjsExportMerged) { return links.cjsExportMerged; } const merged = exported.flags & 33554432 ? exported : cloneSymbol(exported); merged.flags = merged.flags | 512; if (merged.exports === undefined) { merged.exports = createSymbolTable(); } moduleSymbol.exports.forEach((s, name) => { if (name === "export=") return; merged.exports.set(name, merged.exports.has(name) ? mergeSymbol(merged.exports.get(name), s) : s); }); if (merged === exported) { getSymbolLinks(merged).resolvedExports = undefined; getSymbolLinks(merged).resolvedMembers = undefined; } getSymbolLinks(merged).cjsExportMerged = merged; return links.cjsExportMerged = merged; } function resolveESModuleSymbol(moduleSymbol, referencingLocation, dontResolveAlias, suppressInteropError) { var _a; const symbol = resolveExternalModuleSymbol(moduleSymbol, dontResolveAlias); if (!dontResolveAlias && symbol) { if (!suppressInteropError && !(symbol.flags & (1536 | 3)) && !getDeclarationOfKind(symbol, 308)) { const compilerOptionName = moduleKind >= 5 ? "allowSyntheticDefaultImports" : "esModuleInterop"; error2(referencingLocation, Diagnostics.This_module_can_only_be_referenced_with_ECMAScript_imports_Slashexports_by_turning_on_the_0_flag_and_referencing_its_default_export, compilerOptionName); return symbol; } const referenceParent = referencingLocation.parent; const namespaceImport = isImportDeclaration(referenceParent) && getNamespaceDeclarationNode(referenceParent); if (namespaceImport || isImportCall(referenceParent)) { const reference = isImportCall(referenceParent) ? referenceParent.arguments[0] : referenceParent.moduleSpecifier; const type = getTypeOfSymbol(symbol); const defaultOnlyType = getTypeWithSyntheticDefaultOnly(type, symbol, moduleSymbol, reference); if (defaultOnlyType) { return cloneTypeAsModuleType(symbol, defaultOnlyType, referenceParent); } const targetFile = (_a = moduleSymbol == null ? undefined : moduleSymbol.declarations) == null ? undefined : _a.find(isSourceFile); const usageMode = getEmitSyntaxForModuleSpecifierExpression(reference); let exportModuleDotExportsSymbol; if (namespaceImport && targetFile && 102 <= moduleKind && moduleKind <= 199 && usageMode === 1 && host.getImpliedNodeFormatForEmit(targetFile) === 99 && (exportModuleDotExportsSymbol = resolveExportByName(symbol, "module.exports", namespaceImport, dontResolveAlias))) { if (!suppressInteropError && !(symbol.flags & (1536 | 3))) { error2(referencingLocation, Diagnostics.This_module_can_only_be_referenced_with_ECMAScript_imports_Slashexports_by_turning_on_the_0_flag_and_referencing_its_default_export, "esModuleInterop"); } if (getESModuleInterop(compilerOptions) && hasSignatures(type)) { return cloneTypeAsModuleType(exportModuleDotExportsSymbol, type, referenceParent); } return exportModuleDotExportsSymbol; } const isEsmCjsRef = targetFile && isESMFormatImportImportingCommonjsFormatFile(usageMode, host.getImpliedNodeFormatForEmit(targetFile)); if (getESModuleInterop(compilerOptions) || isEsmCjsRef) { if (hasSignatures(type) || getPropertyOfType(type, "default", true) || isEsmCjsRef) { const moduleType = type.flags & 403701760 ? getTypeWithSyntheticDefaultImportType(type, symbol, moduleSymbol, reference) : createDefaultPropertyWrapperForModule(symbol, symbol.parent); return cloneTypeAsModuleType(symbol, moduleType, referenceParent); } } } } return symbol; } function hasSignatures(type) { return some(getSignaturesOfStructuredType(type, 0)) || some(getSignaturesOfStructuredType(type, 1)); } function cloneTypeAsModuleType(symbol, moduleType, referenceParent) { const result = createSymbol(symbol.flags, symbol.escapedName); result.declarations = symbol.declarations ? symbol.declarations.slice() : []; result.parent = symbol.parent; result.links.target = symbol; result.links.originatingImport = referenceParent; if (symbol.valueDeclaration) result.valueDeclaration = symbol.valueDeclaration; if (symbol.constEnumOnlyModule) result.constEnumOnlyModule = true; if (symbol.members) result.members = new Map(symbol.members); if (symbol.exports) result.exports = new Map(symbol.exports); const resolvedModuleType = resolveStructuredTypeMembers(moduleType); result.links.type = createAnonymousType(result, resolvedModuleType.members, emptyArray, emptyArray, resolvedModuleType.indexInfos); return result; } function hasExportAssignmentSymbol(moduleSymbol) { return moduleSymbol.exports.get("export=") !== undefined; } function getExportsOfModuleAsArray(moduleSymbol) { return symbolsToArray(getExportsOfModule(moduleSymbol)); } function getExportsAndPropertiesOfModule(moduleSymbol) { const exports22 = getExportsOfModuleAsArray(moduleSymbol); const exportEquals = resolveExternalModuleSymbol(moduleSymbol); if (exportEquals !== moduleSymbol) { const type = getTypeOfSymbol(exportEquals); if (shouldTreatPropertiesOfExternalModuleAsExports(type)) { addRange(exports22, getPropertiesOfType(type)); } } return exports22; } function forEachExportAndPropertyOfModule(moduleSymbol, cb) { const exports22 = getExportsOfModule(moduleSymbol); exports22.forEach((symbol, key) => { if (!isReservedMemberName(key)) { cb(symbol, key); } }); const exportEquals = resolveExternalModuleSymbol(moduleSymbol); if (exportEquals !== moduleSymbol) { const type = getTypeOfSymbol(exportEquals); if (shouldTreatPropertiesOfExternalModuleAsExports(type)) { forEachPropertyOfType(type, (symbol, escapedName) => { cb(symbol, escapedName); }); } } } function tryGetMemberInModuleExports(memberName, moduleSymbol) { const symbolTable = getExportsOfModule(moduleSymbol); if (symbolTable) { return symbolTable.get(memberName); } } function tryGetMemberInModuleExportsAndProperties(memberName, moduleSymbol) { const symbol = tryGetMemberInModuleExports(memberName, moduleSymbol); if (symbol) { return symbol; } const exportEquals = resolveExternalModuleSymbol(moduleSymbol); if (exportEquals === moduleSymbol) { return; } const type = getTypeOfSymbol(exportEquals); return shouldTreatPropertiesOfExternalModuleAsExports(type) ? getPropertyOfType(type, memberName) : undefined; } function shouldTreatPropertiesOfExternalModuleAsExports(resolvedExternalModuleType) { return !(resolvedExternalModuleType.flags & 12713980 || getObjectFlags(resolvedExternalModuleType) & 1 || isArrayType(resolvedExternalModuleType) || isTupleType(resolvedExternalModuleType)); } function getExportsOfSymbol(symbol) { return symbol.flags & 6256 ? getResolvedMembersOrExportsOfSymbol(symbol, "resolvedExports") : symbol.flags & 1536 ? getExportsOfModule(symbol) : symbol.exports || emptySymbols; } function getExportsOfModule(moduleSymbol) { const links = getSymbolLinks(moduleSymbol); if (!links.resolvedExports) { const { exports: exports22, typeOnlyExportStarMap } = getExportsOfModuleWorker(moduleSymbol); links.resolvedExports = exports22; links.typeOnlyExportStarMap = typeOnlyExportStarMap; } return links.resolvedExports; } function extendExportSymbols(target, source, lookupTable, exportNode) { if (!source) return; source.forEach((sourceSymbol, id) => { if (id === "default") return; const targetSymbol = target.get(id); if (!targetSymbol) { target.set(id, sourceSymbol); if (lookupTable && exportNode) { lookupTable.set(id, { specifierText: getTextOfNode(exportNode.moduleSpecifier) }); } } else if (lookupTable && exportNode && targetSymbol && resolveSymbol(targetSymbol) !== resolveSymbol(sourceSymbol)) { const collisionTracker = lookupTable.get(id); if (!collisionTracker.exportsWithDuplicate) { collisionTracker.exportsWithDuplicate = [exportNode]; } else { collisionTracker.exportsWithDuplicate.push(exportNode); } } }); } function getExportsOfModuleWorker(moduleSymbol) { const visitedSymbols = []; let typeOnlyExportStarMap; const nonTypeOnlyNames = /* @__PURE__ */ new Set; moduleSymbol = resolveExternalModuleSymbol(moduleSymbol); const exports22 = visit(moduleSymbol) || emptySymbols; if (typeOnlyExportStarMap) { nonTypeOnlyNames.forEach((name) => typeOnlyExportStarMap.delete(name)); } return { exports: exports22, typeOnlyExportStarMap }; function visit(symbol, exportStar, isTypeOnly) { if (!isTypeOnly && (symbol == null ? undefined : symbol.exports)) { symbol.exports.forEach((_, name) => nonTypeOnlyNames.add(name)); } if (!(symbol && symbol.exports && pushIfUnique(visitedSymbols, symbol))) { return; } const symbols = new Map(symbol.exports); const exportStars = symbol.exports.get("__export"); if (exportStars) { const nestedSymbols = createSymbolTable(); const lookupTable = /* @__PURE__ */ new Map; if (exportStars.declarations) { for (const node of exportStars.declarations) { const resolvedModule = resolveExternalModuleName(node, node.moduleSpecifier); const exportedSymbols = visit(resolvedModule, node, isTypeOnly || node.isTypeOnly); extendExportSymbols(nestedSymbols, exportedSymbols, lookupTable, node); } } lookupTable.forEach(({ exportsWithDuplicate }, id) => { if (id === "export=" || !(exportsWithDuplicate && exportsWithDuplicate.length) || symbols.has(id)) { return; } for (const node of exportsWithDuplicate) { diagnostics.add(createDiagnosticForNode(node, Diagnostics.Module_0_has_already_exported_a_member_named_1_Consider_explicitly_re_exporting_to_resolve_the_ambiguity, lookupTable.get(id).specifierText, unescapeLeadingUnderscores(id))); } }); extendExportSymbols(symbols, nestedSymbols); } if (exportStar == null ? undefined : exportStar.isTypeOnly) { typeOnlyExportStarMap ?? (typeOnlyExportStarMap = /* @__PURE__ */ new Map); symbols.forEach((_, escapedName) => typeOnlyExportStarMap.set(escapedName, exportStar)); } return symbols; } } function getMergedSymbol(symbol) { let merged; return symbol && symbol.mergeId && (merged = mergedSymbols[symbol.mergeId]) ? merged : symbol; } function getSymbolOfDeclaration(node) { return getMergedSymbol(node.symbol && getLateBoundSymbol(node.symbol)); } function getSymbolOfNode(node) { return canHaveSymbol(node) ? getSymbolOfDeclaration(node) : undefined; } function getParentOfSymbol(symbol) { return getMergedSymbol(symbol.parent && getLateBoundSymbol(symbol.parent)); } function getFunctionExpressionParentSymbolOrSymbol(symbol) { var _a, _b; return ((_a = symbol.valueDeclaration) == null ? undefined : _a.kind) === 220 || ((_b = symbol.valueDeclaration) == null ? undefined : _b.kind) === 219 ? getSymbolOfNode(symbol.valueDeclaration.parent) || symbol : symbol; } function getAlternativeContainingModules(symbol, enclosingDeclaration) { const containingFile = getSourceFileOfNode(enclosingDeclaration); const id = getNodeId(containingFile); const links = getSymbolLinks(symbol); let results; if (links.extendedContainersByFile && (results = links.extendedContainersByFile.get(id))) { return results; } if (containingFile && containingFile.imports) { for (const importRef of containingFile.imports) { if (nodeIsSynthesized(importRef)) continue; const resolvedModule = resolveExternalModuleName(enclosingDeclaration, importRef, true); if (!resolvedModule) continue; const ref = getAliasForSymbolInContainer(resolvedModule, symbol); if (!ref) continue; results = append(results, resolvedModule); } if (length(results)) { (links.extendedContainersByFile || (links.extendedContainersByFile = /* @__PURE__ */ new Map)).set(id, results); return results; } } if (links.extendedContainers) { return links.extendedContainers; } const otherFiles = host.getSourceFiles(); for (const file of otherFiles) { if (!isExternalModule(file)) continue; const sym = getSymbolOfDeclaration(file); const ref = getAliasForSymbolInContainer(sym, symbol); if (!ref) continue; results = append(results, sym); } return links.extendedContainers = results || emptyArray; } function getContainersOfSymbol(symbol, enclosingDeclaration, meaning) { const container = getParentOfSymbol(symbol); if (container && !(symbol.flags & 262144)) { return getWithAlternativeContainers(container); } const candidates = mapDefined(symbol.declarations, (d) => { if (!isAmbientModule(d) && d.parent) { if (hasNonGlobalAugmentationExternalModuleSymbol(d.parent)) { return getSymbolOfDeclaration(d.parent); } if (isModuleBlock(d.parent) && d.parent.parent && resolveExternalModuleSymbol(getSymbolOfDeclaration(d.parent.parent)) === symbol) { return getSymbolOfDeclaration(d.parent.parent); } } if (isClassExpression(d) && isBinaryExpression(d.parent) && d.parent.operatorToken.kind === 64 && isAccessExpression(d.parent.left) && isEntityNameExpression(d.parent.left.expression)) { if (isModuleExportsAccessExpression(d.parent.left) || isExportsIdentifier(d.parent.left.expression)) { return getSymbolOfDeclaration(getSourceFileOfNode(d)); } checkExpressionCached(d.parent.left.expression); return getNodeLinks(d.parent.left.expression).resolvedSymbol; } }); if (!length(candidates)) { return; } const containers = mapDefined(candidates, (candidate) => getAliasForSymbolInContainer(candidate, symbol) ? candidate : undefined); let bestContainers = []; let alternativeContainers = []; for (const container2 of containers) { const [bestMatch, ...rest] = getWithAlternativeContainers(container2); bestContainers = append(bestContainers, bestMatch); alternativeContainers = addRange(alternativeContainers, rest); } return concatenate(bestContainers, alternativeContainers); function getWithAlternativeContainers(container2) { const additionalContainers = mapDefined(container2.declarations, fileSymbolIfFileSymbolExportEqualsContainer); const reexportContainers = enclosingDeclaration && getAlternativeContainingModules(symbol, enclosingDeclaration); const objectLiteralContainer = getVariableDeclarationOfObjectLiteral(container2, meaning); if (enclosingDeclaration && container2.flags & getQualifiedLeftMeaning(meaning) && getAccessibleSymbolChain(container2, enclosingDeclaration, 1920, false)) { return append(concatenate(concatenate([container2], additionalContainers), reexportContainers), objectLiteralContainer); } const firstVariableMatch = !(container2.flags & getQualifiedLeftMeaning(meaning)) && container2.flags & 788968 && getDeclaredTypeOfSymbol(container2).flags & 1048576 && meaning === 111551 ? forEachSymbolTableInScope(enclosingDeclaration, (t) => { return forEachEntry(t, (s) => { if (s.flags & getQualifiedLeftMeaning(meaning) && getTypeOfSymbol(s) === getDeclaredTypeOfSymbol(container2)) { return s; } }); }) : undefined; let res = firstVariableMatch ? [firstVariableMatch, ...additionalContainers, container2] : [...additionalContainers, container2]; res = append(res, objectLiteralContainer); res = addRange(res, reexportContainers); return res; } function fileSymbolIfFileSymbolExportEqualsContainer(d) { return container && getFileSymbolIfFileSymbolExportEqualsContainer(d, container); } } function getVariableDeclarationOfObjectLiteral(symbol, meaning) { const firstDecl = !!length(symbol.declarations) && first(symbol.declarations); if (meaning & 111551 && firstDecl && firstDecl.parent && isVariableDeclaration(firstDecl.parent)) { if (isObjectLiteralExpression(firstDecl) && firstDecl === firstDecl.parent.initializer || isTypeLiteralNode(firstDecl) && firstDecl === firstDecl.parent.type) { return getSymbolOfDeclaration(firstDecl.parent); } } } function getFileSymbolIfFileSymbolExportEqualsContainer(d, container) { const fileSymbol = getExternalModuleContainer(d); const exported = fileSymbol && fileSymbol.exports && fileSymbol.exports.get("export="); return exported && getSymbolIfSameReference(exported, container) ? fileSymbol : undefined; } function getAliasForSymbolInContainer(container, symbol) { if (container === getParentOfSymbol(symbol)) { return symbol; } const exportEquals = container.exports && container.exports.get("export="); if (exportEquals && getSymbolIfSameReference(exportEquals, symbol)) { return container; } const exports22 = getExportsOfSymbol(container); const quick = exports22.get(symbol.escapedName); if (quick && getSymbolIfSameReference(quick, symbol)) { return quick; } return forEachEntry(exports22, (exported) => { if (getSymbolIfSameReference(exported, symbol)) { return exported; } }); } function getSymbolIfSameReference(s1, s2) { if (getMergedSymbol(resolveSymbol(getMergedSymbol(s1))) === getMergedSymbol(resolveSymbol(getMergedSymbol(s2)))) { return s1; } } function getExportSymbolOfValueSymbolIfExported(symbol) { return getMergedSymbol(symbol && (symbol.flags & 1048576) !== 0 && symbol.exportSymbol || symbol); } function symbolIsValue(symbol, includeTypeOnlyMembers) { return !!(symbol.flags & 111551 || symbol.flags & 2097152 && getSymbolFlags(symbol, !includeTypeOnlyMembers) & 111551); } function createType(flags) { var _a; const result = new Type29(checker, flags); typeCount++; result.id = typeCount; (_a = tracing) == null || _a.recordType(result); return result; } function createTypeWithSymbol(flags, symbol) { const result = createType(flags); result.symbol = symbol; return result; } function createOriginType(flags) { return new Type29(checker, flags); } function createIntrinsicType(kind, intrinsicName, objectFlags = 0, debugIntrinsicName) { checkIntrinsicName(intrinsicName, debugIntrinsicName); const type = createType(kind); type.intrinsicName = intrinsicName; type.debugIntrinsicName = debugIntrinsicName; type.objectFlags = objectFlags | 524288 | 2097152 | 33554432 | 16777216; return type; } function checkIntrinsicName(name, debug) { const key = `${name},${debug ?? ""}`; if (seenIntrinsicNames.has(key)) { Debug.fail(`Duplicate intrinsic type name ${name}${debug ? ` (${debug})` : ""}; you may need to pass a name to createIntrinsicType.`); } seenIntrinsicNames.add(key); } function createObjectType(objectFlags, symbol) { const type = createTypeWithSymbol(1048576, symbol); type.objectFlags = objectFlags; type.members = undefined; type.properties = undefined; type.callSignatures = undefined; type.constructSignatures = undefined; type.indexInfos = undefined; return type; } function createTypeofType() { return getUnionType(map(stableTypeOrdering ? [...typeofNEFacts.keys()].sort() : arrayFrom(typeofNEFacts.keys()), getStringLiteralType)); } function createTypeParameter(symbol) { return createTypeWithSymbol(524288, symbol); } function isReservedMemberName(name) { return name.charCodeAt(0) === 95 && name.charCodeAt(1) === 95 && name.charCodeAt(2) !== 95 && name.charCodeAt(2) !== 64 && name.charCodeAt(2) !== 35; } function getNamedMembers(members, container) { if (!stableTypeOrdering) { let result; members.forEach((symbol, id) => { if (isNamedMember(symbol, id)) { (result ?? (result = [])).push(symbol); } }); return result ?? emptyArray; } if (members.size === 0) { return emptyArray; } let contained; if (container && container.flags & (32 | 64)) { members.forEach((symbol, id) => { if (isNamedMember(symbol, id) && isDeclarationContainedBy(symbol, container)) { contained = append(contained, symbol); } }); } let nonContained; members.forEach((symbol, id) => { if (isNamedMember(symbol, id) && (!container || !(container.flags & (32 | 64)) || !isDeclarationContainedBy(symbol, container))) { nonContained = append(nonContained, symbol); } }); contained == null || contained.sort(compareSymbols); nonContained == null || nonContained.sort(compareSymbols); return concatenate(contained, nonContained) ?? emptyArray; function isDeclarationContainedBy(symbol, container2) { const declaration = symbol.valueDeclaration; if (declaration && container2.declarations) { for (const d of container2.declarations) { if (containedBy(declaration, d)) { return true; } } } return false; function containedBy(a, b) { return b.pos <= a.pos && b.end >= a.end; } } } function isNamedMember(member, escapedName) { return !isReservedMemberName(escapedName) && symbolIsValue(member); } function getNamedOrIndexSignatureMembers(members, symbol) { const result = getNamedMembers(members, symbol); const index = getIndexSymbolFromSymbolTable(members); return index ? concatenate(result, [index]) : result; } function setStructuredTypeMembers(type, members, callSignatures, constructSignatures, indexInfos) { const resolved = type; resolved.members = members; resolved.properties = emptyArray; resolved.callSignatures = callSignatures; resolved.constructSignatures = constructSignatures; resolved.indexInfos = indexInfos; if (members !== emptySymbols) resolved.properties = getNamedMembers(members, type.symbol); return resolved; } function createAnonymousType(symbol, members, callSignatures, constructSignatures, indexInfos) { return setStructuredTypeMembers(createObjectType(16, symbol), members, callSignatures, constructSignatures, indexInfos); } function getResolvedTypeWithoutAbstractConstructSignatures(type) { if (type.constructSignatures.length === 0) return type; if (type.objectTypeWithoutAbstractConstructSignatures) return type.objectTypeWithoutAbstractConstructSignatures; const constructSignatures = filter(type.constructSignatures, (signature) => !(signature.flags & 4)); if (type.constructSignatures === constructSignatures) return type; const typeCopy = createAnonymousType(type.symbol, type.members, type.callSignatures, some(constructSignatures) ? constructSignatures : emptyArray, type.indexInfos); type.objectTypeWithoutAbstractConstructSignatures = typeCopy; typeCopy.objectTypeWithoutAbstractConstructSignatures = typeCopy; return typeCopy; } function forEachSymbolTableInScope(enclosingDeclaration, callback) { let result; for (let location = enclosingDeclaration;location; location = location.parent) { if (canHaveLocals(location) && location.locals && !isGlobalSourceFile(location)) { if (result = callback(location.locals, undefined, true, location)) { return result; } } switch (location.kind) { case 308: if (!isExternalOrCommonJsModule(location)) { break; } case 268: const sym = getSymbolOfDeclaration(location); if (result = callback((sym == null ? undefined : sym.exports) || emptySymbols, undefined, true, location)) { return result; } break; case 264: case 232: case 265: let table; (getSymbolOfDeclaration(location).members || emptySymbols).forEach((memberSymbol, key) => { if (memberSymbol.flags & (788968 & ~67108864)) { (table || (table = createSymbolTable())).set(key, memberSymbol); } }); if (table && (result = callback(table, undefined, false, location))) { return result; } break; } } return callback(globals, undefined, true); } function getQualifiedLeftMeaning(rightMeaning) { return rightMeaning === 111551 ? 111551 : 1920; } function getAccessibleSymbolChain(symbol, enclosingDeclaration, meaning, useOnlyExternalAliasing, visitedSymbolTablesMap = /* @__PURE__ */ new Map) { if (!(symbol && !isPropertyOrMethodDeclarationSymbol(symbol))) { return; } const links = getSymbolLinks(symbol); const cache = links.accessibleChainCache || (links.accessibleChainCache = /* @__PURE__ */ new Map); const firstRelevantLocation = forEachSymbolTableInScope(enclosingDeclaration, (_, __, ___, node) => node); const key = `${useOnlyExternalAliasing ? 0 : 1}|${firstRelevantLocation ? getNodeId(firstRelevantLocation) : 0}|${meaning}`; if (cache.has(key)) { return cache.get(key); } const id = getSymbolId(symbol); let visitedSymbolTables = visitedSymbolTablesMap.get(id); if (!visitedSymbolTables) { visitedSymbolTablesMap.set(id, visitedSymbolTables = []); } const result = forEachSymbolTableInScope(enclosingDeclaration, getAccessibleSymbolChainFromSymbolTable); cache.set(key, result); return result; function getAccessibleSymbolChainFromSymbolTable(symbols, ignoreQualification, isLocalNameLookup) { if (!pushIfUnique(visitedSymbolTables, symbols)) { return; } const result2 = trySymbolTable(symbols, ignoreQualification, isLocalNameLookup); visitedSymbolTables.pop(); return result2; } function canQualifySymbol(symbolFromSymbolTable, meaning2) { return !needsQualification(symbolFromSymbolTable, enclosingDeclaration, meaning2) || !!getAccessibleSymbolChain(symbolFromSymbolTable.parent, enclosingDeclaration, getQualifiedLeftMeaning(meaning2), useOnlyExternalAliasing, visitedSymbolTablesMap); } function isAccessible(symbolFromSymbolTable, resolvedAliasSymbol, ignoreQualification) { return (symbol === (resolvedAliasSymbol || symbolFromSymbolTable) || getMergedSymbol(symbol) === getMergedSymbol(resolvedAliasSymbol || symbolFromSymbolTable)) && !some(symbolFromSymbolTable.declarations, hasNonGlobalAugmentationExternalModuleSymbol) && (ignoreQualification || canQualifySymbol(getMergedSymbol(symbolFromSymbolTable), meaning)); } function trySymbolTable(symbols, ignoreQualification, isLocalNameLookup) { if (isAccessible(symbols.get(symbol.escapedName), undefined, ignoreQualification)) { return [symbol]; } const result2 = forEachEntry(symbols, (symbolFromSymbolTable) => { if (symbolFromSymbolTable.flags & 2097152 && symbolFromSymbolTable.escapedName !== "export=" && symbolFromSymbolTable.escapedName !== "default" && !(isUMDExportSymbol(symbolFromSymbolTable) && enclosingDeclaration && isExternalModule(getSourceFileOfNode(enclosingDeclaration))) && (!useOnlyExternalAliasing || some(symbolFromSymbolTable.declarations, isExternalModuleImportEqualsDeclaration)) && (isLocalNameLookup ? !some(symbolFromSymbolTable.declarations, isNamespaceReexportDeclaration) : true) && (ignoreQualification || !getDeclarationOfKind(symbolFromSymbolTable, 282))) { const resolvedImportedSymbol = resolveAlias(symbolFromSymbolTable); const candidate = getCandidateListForSymbol(symbolFromSymbolTable, resolvedImportedSymbol, ignoreQualification); if (candidate) { return candidate; } } if (symbolFromSymbolTable.escapedName === symbol.escapedName && symbolFromSymbolTable.exportSymbol) { if (isAccessible(getMergedSymbol(symbolFromSymbolTable.exportSymbol), undefined, ignoreQualification)) { return [symbol]; } } }); return result2 || (symbols === globals ? getCandidateListForSymbol(globalThisSymbol, globalThisSymbol, ignoreQualification) : undefined); } function getCandidateListForSymbol(symbolFromSymbolTable, resolvedImportedSymbol, ignoreQualification) { if (isAccessible(symbolFromSymbolTable, resolvedImportedSymbol, ignoreQualification)) { return [symbolFromSymbolTable]; } const candidateTable = getExportsOfSymbol(resolvedImportedSymbol); const accessibleSymbolsFromExports = candidateTable && getAccessibleSymbolChainFromSymbolTable(candidateTable, true); if (accessibleSymbolsFromExports && canQualifySymbol(symbolFromSymbolTable, getQualifiedLeftMeaning(meaning))) { return [symbolFromSymbolTable].concat(accessibleSymbolsFromExports); } } } function needsQualification(symbol, enclosingDeclaration, meaning) { let qualify = false; forEachSymbolTableInScope(enclosingDeclaration, (symbolTable) => { let symbolFromSymbolTable = getMergedSymbol(symbolTable.get(symbol.escapedName)); if (!symbolFromSymbolTable) { return false; } if (symbolFromSymbolTable === symbol) { return true; } const shouldResolveAlias = symbolFromSymbolTable.flags & 2097152 && !getDeclarationOfKind(symbolFromSymbolTable, 282); symbolFromSymbolTable = shouldResolveAlias ? resolveAlias(symbolFromSymbolTable) : symbolFromSymbolTable; const flags = shouldResolveAlias ? getSymbolFlags(symbolFromSymbolTable) : symbolFromSymbolTable.flags; if (flags & meaning) { qualify = true; return true; } return false; }); return qualify; } function isPropertyOrMethodDeclarationSymbol(symbol) { if (symbol.declarations && symbol.declarations.length) { for (const declaration of symbol.declarations) { switch (declaration.kind) { case 173: case 175: case 178: case 179: continue; default: return false; } } return true; } return false; } function isTypeSymbolAccessible(typeSymbol, enclosingDeclaration) { const access = isSymbolAccessibleWorker(typeSymbol, enclosingDeclaration, 788968, false, true); return access.accessibility === 0; } function isValueSymbolAccessible(typeSymbol, enclosingDeclaration) { const access = isSymbolAccessibleWorker(typeSymbol, enclosingDeclaration, 111551, false, true); return access.accessibility === 0; } function isSymbolAccessibleByFlags(typeSymbol, enclosingDeclaration, flags) { const access = isSymbolAccessibleWorker(typeSymbol, enclosingDeclaration, flags, false, false); return access.accessibility === 0; } function isAnySymbolAccessible(symbols, enclosingDeclaration, initialSymbol, meaning, shouldComputeAliasesToMakeVisible, allowModules) { if (!length(symbols)) return; let hadAccessibleChain; let earlyModuleBail = false; for (const symbol of symbols) { const accessibleSymbolChain = getAccessibleSymbolChain(symbol, enclosingDeclaration, meaning, false); if (accessibleSymbolChain) { hadAccessibleChain = symbol; const hasAccessibleDeclarations = hasVisibleDeclarations(accessibleSymbolChain[0], shouldComputeAliasesToMakeVisible); if (hasAccessibleDeclarations) { return hasAccessibleDeclarations; } } if (allowModules) { if (some(symbol.declarations, hasNonGlobalAugmentationExternalModuleSymbol)) { if (shouldComputeAliasesToMakeVisible) { earlyModuleBail = true; continue; } return { accessibility: 0 }; } } const containers = getContainersOfSymbol(symbol, enclosingDeclaration, meaning); const parentResult = isAnySymbolAccessible(containers, enclosingDeclaration, initialSymbol, initialSymbol === symbol ? getQualifiedLeftMeaning(meaning) : meaning, shouldComputeAliasesToMakeVisible, allowModules); if (parentResult) { return parentResult; } } if (earlyModuleBail) { return { accessibility: 0 }; } if (hadAccessibleChain) { return { accessibility: 1, errorSymbolName: symbolToString(initialSymbol, enclosingDeclaration, meaning), errorModuleName: hadAccessibleChain !== initialSymbol ? symbolToString(hadAccessibleChain, enclosingDeclaration, 1920) : undefined }; } } function isSymbolAccessible(symbol, enclosingDeclaration, meaning, shouldComputeAliasesToMakeVisible) { return isSymbolAccessibleWorker(symbol, enclosingDeclaration, meaning, shouldComputeAliasesToMakeVisible, true); } function isSymbolAccessibleWorker(symbol, enclosingDeclaration, meaning, shouldComputeAliasesToMakeVisible, allowModules) { if (symbol && enclosingDeclaration) { const result = isAnySymbolAccessible([symbol], enclosingDeclaration, symbol, meaning, shouldComputeAliasesToMakeVisible, allowModules); if (result) { return result; } const symbolExternalModule = forEach(symbol.declarations, getExternalModuleContainer); if (symbolExternalModule) { const enclosingExternalModule = getExternalModuleContainer(enclosingDeclaration); if (symbolExternalModule !== enclosingExternalModule) { return { accessibility: 2, errorSymbolName: symbolToString(symbol, enclosingDeclaration, meaning), errorModuleName: symbolToString(symbolExternalModule), errorNode: isInJSFile(enclosingDeclaration) ? enclosingDeclaration : undefined }; } } return { accessibility: 1, errorSymbolName: symbolToString(symbol, enclosingDeclaration, meaning) }; } return { accessibility: 0 }; } function getExternalModuleContainer(declaration) { const node = findAncestor(declaration, hasExternalModuleSymbol); return node && getSymbolOfDeclaration(node); } function hasExternalModuleSymbol(declaration) { return isAmbientModule(declaration) || declaration.kind === 308 && isExternalOrCommonJsModule(declaration); } function hasNonGlobalAugmentationExternalModuleSymbol(declaration) { return isModuleWithStringLiteralName(declaration) || declaration.kind === 308 && isExternalOrCommonJsModule(declaration); } function hasVisibleDeclarations(symbol, shouldComputeAliasToMakeVisible) { let aliasesToMakeVisible; if (!every(filter(symbol.declarations, (d) => d.kind !== 80), getIsDeclarationVisible)) { return; } return { accessibility: 0, aliasesToMakeVisible }; function getIsDeclarationVisible(declaration) { var _a, _b; if (!isDeclarationVisible(declaration)) { const anyImportSyntax = getAnyImportSyntax(declaration); if (anyImportSyntax && !hasSyntacticModifier(anyImportSyntax, 32) && isDeclarationVisible(anyImportSyntax.parent)) { return addVisibleAlias(declaration, anyImportSyntax); } else if (isVariableDeclaration(declaration) && isVariableStatement(declaration.parent.parent) && !hasSyntacticModifier(declaration.parent.parent, 32) && isDeclarationVisible(declaration.parent.parent.parent)) { return addVisibleAlias(declaration, declaration.parent.parent); } else if (isLateVisibilityPaintedStatement(declaration) && !hasSyntacticModifier(declaration, 32) && isDeclarationVisible(declaration.parent)) { return addVisibleAlias(declaration, declaration); } else if (isBindingElement(declaration)) { if (symbol.flags & 2097152 && isInJSFile(declaration) && ((_a = declaration.parent) == null ? undefined : _a.parent) && isVariableDeclaration(declaration.parent.parent) && ((_b = declaration.parent.parent.parent) == null ? undefined : _b.parent) && isVariableStatement(declaration.parent.parent.parent.parent) && !hasSyntacticModifier(declaration.parent.parent.parent.parent, 32) && declaration.parent.parent.parent.parent.parent && isDeclarationVisible(declaration.parent.parent.parent.parent.parent)) { return addVisibleAlias(declaration, declaration.parent.parent.parent.parent); } else if (symbol.flags & 2) { const rootDeclaration = walkUpBindingElementsAndPatterns(declaration); if (rootDeclaration.kind === 170) { return false; } const variableStatement = rootDeclaration.parent.parent; if (variableStatement.kind !== 244) { return false; } if (hasSyntacticModifier(variableStatement, 32)) { return true; } if (!isDeclarationVisible(variableStatement.parent)) { return false; } return addVisibleAlias(declaration, variableStatement); } } return false; } return true; } function addVisibleAlias(declaration, aliasingStatement) { if (shouldComputeAliasToMakeVisible) { getNodeLinks(declaration).isVisible = true; aliasesToMakeVisible = appendIfUnique(aliasesToMakeVisible, aliasingStatement); } return true; } } function getMeaningOfEntityNameReference(entityName) { let meaning; if (entityName.parent.kind === 187 || entityName.parent.kind === 234 && !isPartOfTypeNode(entityName.parent) || entityName.parent.kind === 168 || entityName.parent.kind === 183 && entityName.parent.parameterName === entityName) { meaning = 111551 | 1048576; } else if (entityName.kind === 167 || entityName.kind === 212 || entityName.parent.kind === 272 || entityName.parent.kind === 167 && entityName.parent.left === entityName || entityName.parent.kind === 212 && entityName.parent.expression === entityName || entityName.parent.kind === 213 && entityName.parent.expression === entityName) { meaning = 1920; } else { meaning = 788968; } return meaning; } function isEntityNameVisible(entityName, enclosingDeclaration, shouldComputeAliasToMakeVisible = true) { const meaning = getMeaningOfEntityNameReference(entityName); const firstIdentifier = getFirstIdentifier(entityName); const symbol = resolveName(enclosingDeclaration, firstIdentifier.escapedText, meaning, undefined, false); if (symbol && symbol.flags & 262144 && meaning & 788968) { return { accessibility: 0 }; } if (!symbol && isThisIdentifier(firstIdentifier) && isSymbolAccessible(getSymbolOfDeclaration(getThisContainer(firstIdentifier, false, false)), firstIdentifier, meaning, false).accessibility === 0) { return { accessibility: 0 }; } if (!symbol) { return { accessibility: 3, errorSymbolName: getTextOfNode(firstIdentifier), errorNode: firstIdentifier }; } return hasVisibleDeclarations(symbol, shouldComputeAliasToMakeVisible) || { accessibility: 1, errorSymbolName: getTextOfNode(firstIdentifier), errorNode: firstIdentifier }; } function symbolToString(symbol, enclosingDeclaration, meaning, flags = 4, writer) { let nodeFlags = 70221824; let internalNodeFlags = 0; if (flags & 2) { nodeFlags |= 128; } if (flags & 1) { nodeFlags |= 512; } if (flags & 8) { nodeFlags |= 16384; } if (flags & 32) { internalNodeFlags |= 4; } if (flags & 16) { internalNodeFlags |= 1; } const builder = flags & 4 ? nodeBuilder.symbolToNode : nodeBuilder.symbolToEntityName; return writer ? symbolToStringWorker(writer).getText() : usingSingleLineStringWriter(symbolToStringWorker); function symbolToStringWorker(writer2) { const entity = builder(symbol, meaning, enclosingDeclaration, nodeFlags, internalNodeFlags); const printer = (enclosingDeclaration == null ? undefined : enclosingDeclaration.kind) === 308 ? createPrinterWithRemoveCommentsNeverAsciiEscape() : createPrinterWithRemoveComments(); const sourceFile = enclosingDeclaration && getSourceFileOfNode(enclosingDeclaration); printer.writeNode(4, entity, sourceFile, writer2); return writer2; } } function signatureToString(signature, enclosingDeclaration, flags = 0, kind, writer, maximumLength, verbosityLevel, out) { return writer ? signatureToStringWorker(writer).getText() : usingSingleLineStringWriter(signatureToStringWorker); function signatureToStringWorker(writer2) { let sigOutput; if (flags & 262144) { sigOutput = kind === 1 ? 186 : 185; } else { sigOutput = kind === 1 ? 181 : 180; } const sig = nodeBuilder.signatureToSignatureDeclaration(signature, sigOutput, enclosingDeclaration, toNodeBuilderFlags(flags) | 70221824 | 512, undefined, undefined, maximumLength, verbosityLevel, out); const printer = createPrinterWithRemoveCommentsOmitTrailingSemicolon(); const sourceFile = enclosingDeclaration && getSourceFileOfNode(enclosingDeclaration); printer.writeNode(4, sig, sourceFile, getTrailingSemicolonDeferringWriter(writer2)); return writer2; } } function typeToString(type, enclosingDeclaration, flags = 1048576 | 16384, writer = createTextWriter(""), maximumLength, verbosityLevel, out) { const noTruncation = !maximumLength && compilerOptions.noErrorTruncation || flags & 1; const typeNode = nodeBuilder.typeToTypeNode(type, enclosingDeclaration, toNodeBuilderFlags(flags) | 70221824 | (noTruncation ? 1 : 0), undefined, undefined, maximumLength, verbosityLevel, out); if (typeNode === undefined) return Debug.fail("should always get typenode"); const printer = type !== unresolvedType ? createPrinterWithRemoveComments() : createPrinterWithDefaults(); const sourceFile = enclosingDeclaration && getSourceFileOfNode(enclosingDeclaration); printer.writeNode(4, typeNode, sourceFile, writer); const result = writer.getText(); const maxLength2 = maximumLength || (noTruncation ? noTruncationMaximumTruncationLength * 2 : defaultMaximumTruncationLength * 2); if (maxLength2 && result && result.length >= maxLength2) { return result.substr(0, maxLength2 - "...".length) + "..."; } return result; } function getTypeNamesForErrorDisplay(left, right) { let leftStr = symbolValueDeclarationIsContextSensitive(left.symbol) ? typeToString(left, left.symbol.valueDeclaration) : typeToString(left); let rightStr = symbolValueDeclarationIsContextSensitive(right.symbol) ? typeToString(right, right.symbol.valueDeclaration) : typeToString(right); if (leftStr === rightStr) { leftStr = getTypeNameForErrorDisplay(left); rightStr = getTypeNameForErrorDisplay(right); } return [leftStr, rightStr]; } function getTypeNameForErrorDisplay(type) { return typeToString(type, undefined, 64); } function symbolValueDeclarationIsContextSensitive(symbol) { return symbol && !!symbol.valueDeclaration && isExpression(symbol.valueDeclaration) && !isContextSensitive(symbol.valueDeclaration); } function toNodeBuilderFlags(flags = 0) { return flags & 848330095; } function isClassInstanceSide(type) { return !!type.symbol && !!(type.symbol.flags & 32) && (type === getDeclaredTypeOfClassOrInterface(type.symbol) || !!(type.flags & 1048576) && !!(getObjectFlags(type) & 16777216)); } function getTypeFromTypeNodeWithoutContext(node) { return getTypeFromTypeNode(node); } function createNodeBuilder() { const syntacticBuilderResolver = { evaluateEntityNameExpression, isExpandoFunctionDeclaration, hasLateBindableName, shouldRemoveDeclaration(context, node) { return !(context.internalFlags & 8 && isEntityNameExpression(node.name.expression) && checkComputedPropertyName(node.name).flags & 1); }, createRecoveryBoundary(context) { return createRecoveryBoundary(context); }, isDefinitelyReferenceToGlobalSymbolObject, getAllAccessorDeclarations: getAllAccessorDeclarationsForDeclaration, requiresAddingImplicitUndefined(declaration, symbol, enclosingDeclaration) { var _a; switch (declaration.kind) { case 173: case 172: case 349: symbol ?? (symbol = getSymbolOfDeclaration(declaration)); const type = getTypeOfSymbol(symbol); return !!(symbol.flags & 4 && symbol.flags & 16777216 && isOptionalDeclaration(declaration) && ((_a = symbol.links) == null ? undefined : _a.mappedType) && containsNonMissingUndefinedType(type)); case 170: case 342: return requiresAddingImplicitUndefined(declaration, enclosingDeclaration); default: Debug.assertNever(declaration); } }, isOptionalParameter, isUndefinedIdentifierExpression(node) { return getSymbolAtLocation(node) === undefinedSymbol; }, isEntityNameVisible(context, entityName, shouldComputeAliasToMakeVisible) { return isEntityNameVisible(entityName, context.enclosingDeclaration, shouldComputeAliasToMakeVisible); }, serializeExistingTypeNode(context, typeNode, addUndefined) { return serializeExistingTypeNode(context, typeNode, !!addUndefined); }, serializeReturnTypeForSignature(syntacticContext, signatureDeclaration, symbol) { const context = syntacticContext; const signature = getSignatureFromDeclaration(signatureDeclaration); symbol ?? (symbol = getSymbolOfDeclaration(signatureDeclaration)); const returnType = context.enclosingSymbolTypes.get(getSymbolId(symbol)) ?? instantiateType(getReturnTypeOfSignature(signature), context.mapper); return serializeInferredReturnTypeForSignature(context, signature, returnType); }, serializeTypeOfExpression(syntacticContext, expr) { const context = syntacticContext; const type = instantiateType(getWidenedType(getRegularTypeOfExpression(expr)), context.mapper); return typeToTypeNodeHelper(type, context); }, serializeTypeOfDeclaration(syntacticContext, declaration, symbol) { var _a; const context = syntacticContext; symbol ?? (symbol = getSymbolOfDeclaration(declaration)); let type = (_a = context.enclosingSymbolTypes) == null ? undefined : _a.get(getSymbolId(symbol)); if (type === undefined) { type = symbol.flags & 98304 && declaration.kind === 179 ? instantiateType(getWriteTypeOfSymbol(symbol), context.mapper) : symbol && !(symbol.flags & (2048 | 131072)) ? instantiateType(getWidenedLiteralType(getTypeOfSymbol(symbol)), context.mapper) : errorType; } const addUndefinedForParameter = declaration && (isParameter(declaration) || isJSDocParameterTag(declaration)) && requiresAddingImplicitUndefined(declaration, context.enclosingDeclaration); if (addUndefinedForParameter) { type = getOptionalType(type); } return serializeInferredTypeForDeclaration(symbol, context, type); }, serializeNameOfParameter(context, parameter) { return parameterToParameterDeclarationName(getSymbolOfDeclaration(parameter), parameter, context); }, serializeEntityName(syntacticContext, node) { const context = syntacticContext; const symbol = getSymbolAtLocation(node, true); if (!symbol) return; if (!isValueSymbolAccessible(symbol, context.enclosingDeclaration)) return; return symbolToExpression(symbol, context, 111551 | 1048576); }, serializeTypeName(context, node, isTypeOf, typeArguments) { return serializeTypeName(context, node, isTypeOf, typeArguments); }, getJsDocPropertyOverride(syntacticContext, jsDocTypeLiteral, jsDocProperty) { const context = syntacticContext; const name = isIdentifier(jsDocProperty.name) ? jsDocProperty.name : jsDocProperty.name.right; const typeViaParent = getTypeOfPropertyOfType(getTypeFromTypeNode2(context, jsDocTypeLiteral), name.escapedText); const overrideTypeNode = typeViaParent && jsDocProperty.typeExpression && getTypeFromTypeNode2(context, jsDocProperty.typeExpression.type) !== typeViaParent ? typeToTypeNodeHelper(typeViaParent, context) : undefined; return overrideTypeNode; }, enterNewScope(context, node) { if (isFunctionLike(node) || isJSDocSignature(node)) { const signature = getSignatureFromDeclaration(node); return enterNewScope(context, node, signature.parameters, signature.typeParameters); } else { const typeParameters = isConditionalTypeNode(node) ? getInferTypeParameters(node) : [getDeclaredTypeOfTypeParameter(getSymbolOfDeclaration(node.typeParameter))]; return enterNewScope(context, node, undefined, typeParameters); } }, markNodeReuse(context, range, location) { return setTextRange2(context, range, location); }, trackExistingEntityName(context, node) { return trackExistingEntityName(node, context); }, trackComputedName(context, accessExpression) { trackComputedName(accessExpression, context.enclosingDeclaration, context); }, getModuleSpecifierOverride(syntacticContext, parent2, lit) { const context = syntacticContext; if (context.bundled || context.enclosingFile !== getSourceFileOfNode(lit)) { let name = lit.text; const originalName = name; const nodeSymbol = getNodeLinks(parent2).resolvedSymbol; const meaning = parent2.isTypeOf ? 111551 : 788968; const parentSymbol = nodeSymbol && isSymbolAccessible(nodeSymbol, context.enclosingDeclaration, meaning, false).accessibility === 0 && lookupSymbolChain(nodeSymbol, context, meaning, true)[0]; if (parentSymbol && isExternalModuleSymbol(parentSymbol)) { name = getSpecifierForModuleSymbol(parentSymbol, context); } else { const targetFile = getExternalModuleFileFromDeclaration(parent2); if (targetFile) { name = getSpecifierForModuleSymbol(targetFile.symbol, context); } } if (name.includes("/node_modules/")) { context.encounteredError = true; if (context.tracker.reportLikelyUnsafeImportRequiredError) { context.tracker.reportLikelyUnsafeImportRequiredError(name, nodeSymbol ? unescapeLeadingUnderscores(nodeSymbol.escapedName) : undefined); } } if (name !== originalName) { return name; } } }, canReuseTypeNode(context, typeNode) { return canReuseTypeNode(context, typeNode); }, canReuseTypeNodeAnnotation(syntacticContext, node, existing, symbol, requiresAddingUndefined) { var _a; const context = syntacticContext; if (context.enclosingDeclaration === undefined) return false; symbol ?? (symbol = getSymbolOfDeclaration(node)); let type = (_a = context.enclosingSymbolTypes) == null ? undefined : _a.get(getSymbolId(symbol)); if (type === undefined) { if (symbol.flags & 98304) { type = node.kind === 179 ? getWriteTypeOfSymbol(symbol) : getTypeOfAccessors(symbol); } else if (isValueSignatureDeclaration(node)) { type = getReturnTypeOfSignature(getSignatureFromDeclaration(node)); } else { type = getTypeOfSymbol(symbol); } } let annotationType = getTypeFromTypeNodeWithoutContext(existing); if (isErrorType(annotationType)) { return true; } if (requiresAddingUndefined && annotationType) { annotationType = addOptionality(annotationType, !isParameter(node)); } return !!annotationType && typeNodeIsEquivalentToType(node, type, annotationType) && existingTypeNodeIsNotReferenceOrIsReferenceWithCompatibleTypeArgumentCount(existing, type); } }; return { syntacticBuilderResolver, typeToTypeNode: (type, enclosingDeclaration, flags, internalFlags, tracker, maximumLength, verbosityLevel, out) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, maximumLength, verbosityLevel, (context) => typeToTypeNodeHelper(type, context), out), typePredicateToTypePredicateNode: (typePredicate, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => typePredicateToTypePredicateNodeHelper(typePredicate, context)), serializeTypeForDeclaration: (declaration, symbol, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => syntacticNodeBuilder.serializeTypeOfDeclaration(declaration, symbol, context)), serializeReturnTypeForSignature: (signature, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => syntacticNodeBuilder.serializeReturnTypeForSignature(signature, getSymbolOfDeclaration(signature), context)), serializeTypeForExpression: (expr, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => syntacticNodeBuilder.serializeTypeOfExpression(expr, context)), indexInfoToIndexSignatureDeclaration: (indexInfo, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => indexInfoToIndexSignatureDeclarationHelper(indexInfo, context, undefined)), signatureToSignatureDeclaration: (signature, kind, enclosingDeclaration, flags, internalFlags, tracker, maximumLength, verbosityLevel, out) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, maximumLength, verbosityLevel, (context) => signatureToSignatureDeclarationHelper(signature, kind, context), out), symbolToEntityName: (symbol, meaning, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => symbolToName(symbol, context, meaning, false)), symbolToExpression: (symbol, meaning, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => symbolToExpression(symbol, context, meaning)), symbolToTypeParameterDeclarations: (symbol, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => typeParametersToTypeParameterDeclarations(symbol, context)), symbolToParameterDeclaration: (symbol, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => symbolToParameterDeclaration(symbol, context)), typeParameterToDeclaration: (parameter, enclosingDeclaration, flags, internalFlags, tracker, maximumLength, verbosityLevel, out) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, maximumLength, verbosityLevel, (context) => typeParameterToDeclaration(parameter, context), out), symbolTableToDeclarationStatements: (symbolTable, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => symbolTableToDeclarationStatements(symbolTable, context)), symbolToNode: (symbol, meaning, enclosingDeclaration, flags, internalFlags, tracker) => withContext2(enclosingDeclaration, flags, internalFlags, tracker, undefined, undefined, (context) => symbolToNode(symbol, context, meaning)), symbolToDeclarations }; function getTypeFromTypeNode2(context, node, noMappedTypes) { const type = getTypeFromTypeNodeWithoutContext(node); if (!context.mapper) return type; const mappedType = instantiateType(type, context.mapper); return noMappedTypes && mappedType !== type ? undefined : mappedType; } function setTextRange2(context, range, location) { if (!nodeIsSynthesized(range) || !(range.flags & 16) || !context.enclosingFile || context.enclosingFile !== getSourceFileOfNode(getOriginalNode(range))) { range = factory.cloneNode(range); } if (range === location) return range; if (!location) { return range; } let original = range.original; while (original && original !== location) { original = original.original; } if (!original) { setOriginalNode(range, location); } if (context.enclosingFile && context.enclosingFile === getSourceFileOfNode(getOriginalNode(location))) { return setTextRange(range, location); } return range; } function symbolToNode(symbol, context, meaning) { if (context.internalFlags & 1) { if (symbol.valueDeclaration) { const name = getNameOfDeclaration(symbol.valueDeclaration); if (name && isComputedPropertyName(name)) return name; } const nameType = getSymbolLinks(symbol).nameType; if (nameType && nameType.flags & (32768 | 16384)) { context.enclosingDeclaration = nameType.symbol.valueDeclaration; return factory.createComputedPropertyName(symbolToExpression(nameType.symbol, context, meaning)); } } return symbolToExpression(symbol, context, meaning); } function symbolToDeclarations(symbol, meaning, flags, maximumLength, verbosityLevel, out) { const nodes = withContext2(undefined, flags, undefined, undefined, maximumLength, verbosityLevel, (context) => symbolToDeclarationsWorker(symbol, context), out); return mapDefined(nodes, (node) => { switch (node.kind) { case 264: return simplifyClassDeclaration(node, symbol); case 267: return simplifyModifiers(node, isEnumDeclaration, symbol); case 265: return simplifyInterfaceDeclaration(node, symbol, meaning); case 268: return simplifyModifiers(node, isModuleDeclaration, symbol); default: return; } }); } function simplifyClassDeclaration(classDecl, symbol) { const classDeclarations = filter(symbol.declarations, isClassLike); const originalClassDecl = classDeclarations && classDeclarations.length > 0 ? classDeclarations[0] : classDecl; const modifiers = getEffectiveModifierFlags(originalClassDecl) & ~(32 | 128); const isAnonymous = isClassExpression(originalClassDecl); if (isAnonymous) { classDecl = factory.updateClassDeclaration(classDecl, classDecl.modifiers, undefined, classDecl.typeParameters, classDecl.heritageClauses, classDecl.members); } return factory.replaceModifiers(classDecl, modifiers); } function simplifyModifiers(newDecl, isDeclKind, symbol) { const decls = filter(symbol.declarations, isDeclKind); const declWithModifiers = decls && decls.length > 0 ? decls[0] : newDecl; const modifiers = getEffectiveModifierFlags(declWithModifiers) & ~(32 | 128); return factory.replaceModifiers(newDecl, modifiers); } function simplifyInterfaceDeclaration(interfaceDecl, symbol, meaning) { if (!(meaning & 64)) { return; } return simplifyModifiers(interfaceDecl, isInterfaceDeclaration, symbol); } function symbolToDeclarationsWorker(symbol, context) { const type = getDeclaredTypeOfSymbol(symbol); context.typeStack.push(type.id); context.typeStack.push(-1); const table = createSymbolTable([symbol]); const statements = symbolTableToDeclarationStatements(table, context); context.typeStack.pop(); context.typeStack.pop(); return statements; } function withContext2(enclosingDeclaration, flags, internalFlags, tracker, maximumLength, verbosityLevel, cb, out) { const moduleResolverHost = (tracker == null ? undefined : tracker.moduleResolverHost) ?? createBasicNodeBuilderModuleSpecifierResolutionHost(host); flags = flags || 0; const maxTruncationLength = maximumLength || (flags & 1 ? noTruncationMaximumTruncationLength : defaultMaximumTruncationLength); const context = { enclosingDeclaration, enclosingFile: enclosingDeclaration && getSourceFileOfNode(enclosingDeclaration), flags, internalFlags: internalFlags || 0, tracker: undefined, maxTruncationLength, maxExpansionDepth: verbosityLevel ?? -1, encounteredError: false, suppressReportInferenceFallback: false, reportedDiagnostic: false, visitedTypes: undefined, symbolDepth: undefined, inferTypeParameters: undefined, approximateLength: 0, trackedSymbols: undefined, bundled: !!compilerOptions.outFile && !!enclosingDeclaration && isExternalOrCommonJsModule(getSourceFileOfNode(enclosingDeclaration)), truncating: false, usedSymbolNames: undefined, remappedSymbolNames: undefined, remappedSymbolReferences: undefined, reverseMappedStack: undefined, mustCreateTypeParameterSymbolList: true, typeParameterSymbolList: undefined, mustCreateTypeParametersNamesLookups: true, typeParameterNames: undefined, typeParameterNamesByText: undefined, typeParameterNamesByTextNextNameCount: undefined, enclosingSymbolTypes: /* @__PURE__ */ new Map, mapper: undefined, depth: 0, typeStack: [], out: { canIncreaseExpansionDepth: false, truncated: false } }; context.tracker = new SymbolTrackerImpl(context, tracker, moduleResolverHost); const resultingNode = cb(context); if (context.truncating && context.flags & 1) { context.tracker.reportTruncationError(); } if (out) { out.canIncreaseExpansionDepth = context.out.canIncreaseExpansionDepth; out.truncated = context.out.truncated; } return context.encounteredError ? undefined : resultingNode; } function addSymbolTypeToContext(context, symbol, type) { const id = getSymbolId(symbol); const oldType = context.enclosingSymbolTypes.get(id); context.enclosingSymbolTypes.set(id, type); return restore; function restore() { if (oldType) { context.enclosingSymbolTypes.set(id, oldType); } else { context.enclosingSymbolTypes.delete(id); } } } function saveRestoreFlags(context) { const flags = context.flags; const internalFlags = context.internalFlags; const depth = context.depth; return restore; function restore() { context.flags = flags; context.internalFlags = internalFlags; context.depth = depth; } } function checkTruncationLengthIfExpanding(context) { return context.maxExpansionDepth >= 0 && checkTruncationLength(context); } function checkTruncationLength(context) { if (context.truncating) return context.truncating; return context.truncating = context.approximateLength > context.maxTruncationLength; } function canPossiblyExpandType(type, context) { for (let i = 0;i < context.typeStack.length - 1; i++) { if (context.typeStack[i] === type.id) { return false; } } return context.depth < context.maxExpansionDepth || context.depth === context.maxExpansionDepth && !context.out.canIncreaseExpansionDepth; } function shouldExpandType(type, context, isAlias = false) { if (!isAlias && isLibType(type)) { return false; } for (let i = 0;i < context.typeStack.length - 1; i++) { if (context.typeStack[i] === type.id) { return false; } } const result = context.depth < context.maxExpansionDepth; if (!result) { context.out.canIncreaseExpansionDepth = true; } return result; } function typeToTypeNodeHelper(type, context) { const restoreFlags = saveRestoreFlags(context); if (type) context.typeStack.push(type.id); const typeNode = typeToTypeNodeWorker(type, context); if (type) context.typeStack.pop(); restoreFlags(); return typeNode; } function typeToTypeNodeWorker(type, context) { var _a, _b; if (cancellationToken && cancellationToken.throwIfCancellationRequested) { cancellationToken.throwIfCancellationRequested(); } const inTypeAlias = context.flags & 8388608; context.flags &= ~8388608; let expandingEnum = false; if (!type) { if (!(context.flags & 262144)) { context.encounteredError = true; return; } context.approximateLength += 3; return factory.createKeywordTypeNode(133); } if (!(context.flags & 536870912)) { type = getReducedType(type); } if (type.flags & 1) { if (type.aliasSymbol) { return factory.createTypeReferenceNode(symbolToEntityNameNode(type.aliasSymbol), mapToTypeNodes(type.aliasTypeArguments, context)); } if (type === unresolvedType) { return addSyntheticLeadingComment(factory.createKeywordTypeNode(133), 3, "unresolved"); } context.approximateLength += 3; return factory.createKeywordTypeNode(type === intrinsicMarkerType ? 141 : 133); } if (type.flags & 2) { return factory.createKeywordTypeNode(159); } if (type.flags & 32) { context.approximateLength += 6; return factory.createKeywordTypeNode(154); } if (type.flags & 64) { context.approximateLength += 6; return factory.createKeywordTypeNode(150); } if (type.flags & 128) { context.approximateLength += 6; return factory.createKeywordTypeNode(163); } if (type.flags & 256 && !type.aliasSymbol) { context.approximateLength += 7; return factory.createKeywordTypeNode(136); } if (type.flags & 98304) { if (type.symbol.flags & 8) { const parentSymbol = getParentOfSymbol(type.symbol); const parentName = symbolToTypeNode(parentSymbol, context, 788968); if (getDeclaredTypeOfSymbol(parentSymbol) === type) { return parentName; } const memberName = symbolName(type.symbol); if (isIdentifierText(memberName, 99)) { return appendReferenceToType(parentName, factory.createTypeReferenceNode(memberName, undefined)); } if (isImportTypeNode(parentName)) { parentName.isTypeOf = true; return factory.createIndexedAccessTypeNode(parentName, factory.createLiteralTypeNode(factory.createStringLiteral(memberName))); } else if (isTypeReferenceNode(parentName)) { return factory.createIndexedAccessTypeNode(factory.createTypeQueryNode(parentName.typeName), factory.createLiteralTypeNode(factory.createStringLiteral(memberName))); } else { return Debug.fail("Unhandled type node kind returned from `symbolToTypeNode`."); } } if (!shouldExpandType(type, context)) { return symbolToTypeNode(type.symbol, context, 788968); } else { expandingEnum = true; } } if (type.flags & 1024) { context.approximateLength += type.value.length + 2; return factory.createLiteralTypeNode(setEmitFlags(factory.createStringLiteral(type.value, !!(context.flags & 268435456)), 16777216)); } if (type.flags & 2048) { const value = type.value; context.approximateLength += ("" + value).length; return factory.createLiteralTypeNode(value < 0 ? factory.createPrefixUnaryExpression(41, factory.createNumericLiteral(-value)) : factory.createNumericLiteral(value)); } if (type.flags & 4096) { context.approximateLength += pseudoBigIntToString(type.value).length + 1; return factory.createLiteralTypeNode(factory.createBigIntLiteral(type.value)); } if (type.flags & 8192) { context.approximateLength += type.intrinsicName.length; return factory.createLiteralTypeNode(type.intrinsicName === "true" ? factory.createTrue() : factory.createFalse()); } if (type.flags & 16384) { if (!(context.flags & 1048576)) { if (isValueSymbolAccessible(type.symbol, context.enclosingDeclaration)) { context.approximateLength += 6; return symbolToTypeNode(type.symbol, context, 111551); } if (context.tracker.reportInaccessibleUniqueSymbolError) { context.tracker.reportInaccessibleUniqueSymbolError(); } } context.approximateLength += 13; return factory.createTypeOperatorNode(158, factory.createKeywordTypeNode(155)); } if (type.flags & 16) { context.approximateLength += 4; return factory.createKeywordTypeNode(116); } if (type.flags & 4) { context.approximateLength += 9; return factory.createKeywordTypeNode(157); } if (type.flags & 8) { context.approximateLength += 4; return factory.createLiteralTypeNode(factory.createNull()); } if (type.flags & 262144) { context.approximateLength += 5; return factory.createKeywordTypeNode(146); } if (type.flags & 512) { context.approximateLength += 6; return factory.createKeywordTypeNode(155); } if (type.flags & 131072) { context.approximateLength += 6; return factory.createKeywordTypeNode(151); } if (isThisTypeParameter(type)) { if (context.flags & 4194304) { if (!context.encounteredError && !(context.flags & 32768)) { context.encounteredError = true; } (_b = (_a = context.tracker).reportInaccessibleThisError) == null || _b.call(_a); } context.approximateLength += 4; return factory.createThisTypeNode(); } if (!inTypeAlias && type.aliasSymbol && (context.flags & 16384 || isTypeSymbolAccessible(type.aliasSymbol, context.enclosingDeclaration))) { if (!shouldExpandType(type, context, true)) { const typeArgumentNodes = mapToTypeNodes(type.aliasTypeArguments, context); if (isReservedMemberName(type.aliasSymbol.escapedName) && !(type.aliasSymbol.flags & 32)) return factory.createTypeReferenceNode(factory.createIdentifier(""), typeArgumentNodes); if (length(typeArgumentNodes) === 1 && type.aliasSymbol === globalArrayType.symbol) { return factory.createArrayTypeNode(typeArgumentNodes[0]); } return symbolToTypeNode(type.aliasSymbol, context, 788968, typeArgumentNodes); } context.depth += 1; } const objectFlags = getObjectFlags(type); if (objectFlags & 4) { Debug.assert(!!(type.flags & 1048576)); if (shouldExpandType(type, context)) { context.depth += 1; return createAnonymousTypeNode(type, true, true); } return type.node ? visitAndTransformType(type, typeReferenceToTypeNode) : typeReferenceToTypeNode(type); } if (type.flags & 524288 || objectFlags & 3) { if (type.flags & 524288 && contains(context.inferTypeParameters, type)) { context.approximateLength += symbolName(type.symbol).length + 6; let constraintNode; const constraint = getConstraintOfTypeParameter(type); if (constraint) { const inferredConstraint = getInferredTypeParameterConstraint(type, true); if (!(inferredConstraint && isTypeIdenticalTo(constraint, inferredConstraint))) { context.approximateLength += 9; constraintNode = constraint && typeToTypeNodeHelper(constraint, context); } } return factory.createInferTypeNode(typeParameterToDeclarationWithConstraint(type, context, constraintNode)); } if (context.flags & 4 && type.flags & 524288) { const name2 = typeParameterToName(type, context); context.approximateLength += idText(name2).length; return factory.createTypeReferenceNode(factory.createIdentifier(idText(name2)), undefined); } if (objectFlags & 3 && shouldExpandType(type, context)) { context.depth += 1; return createAnonymousTypeNode(type, true, true); } if (type.symbol) { return symbolToTypeNode(type.symbol, context, 788968); } const name = (type === markerSuperTypeForCheck || type === markerSubTypeForCheck) && varianceTypeParameter && varianceTypeParameter.symbol ? (type === markerSubTypeForCheck ? "sub-" : "super-") + symbolName(varianceTypeParameter.symbol) : "?"; return factory.createTypeReferenceNode(factory.createIdentifier(name), undefined); } if (type.flags & 134217728 && type.origin) { type = type.origin; } if (type.flags & (134217728 | 268435456)) { const types = type.flags & 134217728 ? formatUnionTypes(type.types, expandingEnum) : type.types; if (length(types) === 1) { return typeToTypeNodeHelper(types[0], context); } const typeNodes = mapToTypeNodes(types, context, true); if (typeNodes && typeNodes.length > 0) { return type.flags & 134217728 ? factory.createUnionTypeNode(typeNodes) : factory.createIntersectionTypeNode(typeNodes); } else { if (!context.encounteredError && !(context.flags & 262144)) { context.encounteredError = true; } return; } } if (objectFlags & (16 | 32)) { Debug.assert(!!(type.flags & 1048576)); return createAnonymousTypeNode(type); } if (type.flags & 2097152) { const indexedType = type.type; context.approximateLength += 6; const indexTypeNode = typeToTypeNodeHelper(indexedType, context); return factory.createTypeOperatorNode(143, indexTypeNode); } if (type.flags & 4194304) { const texts = type.texts; const types = type.types; const templateHead = factory.createTemplateHead(texts[0]); const templateSpans = factory.createNodeArray(map(types, (t, i) => factory.createTemplateLiteralTypeSpan(typeToTypeNodeHelper(t, context), (i < types.length - 1 ? factory.createTemplateMiddle : factory.createTemplateTail)(texts[i + 1])))); context.approximateLength += 2; return factory.createTemplateLiteralType(templateHead, templateSpans); } if (type.flags & 8388608) { const typeNode = typeToTypeNodeHelper(type.type, context); return symbolToTypeNode(type.symbol, context, 788968, [typeNode]); } if (type.flags & 33554432) { const objectTypeNode = typeToTypeNodeHelper(type.objectType, context); const indexTypeNode = typeToTypeNodeHelper(type.indexType, context); context.approximateLength += 2; return factory.createIndexedAccessTypeNode(objectTypeNode, indexTypeNode); } if (type.flags & 67108864) { return visitAndTransformType(type, (type2) => conditionalTypeToTypeNode(type2)); } if (type.flags & 16777216) { const typeNode = typeToTypeNodeHelper(type.baseType, context); const noInferSymbol = isNoInferType(type) && getGlobalTypeSymbol("NoInfer", false); return noInferSymbol ? symbolToTypeNode(noInferSymbol, context, 788968, [typeNode]) : typeNode; } return Debug.fail("Should be unreachable."); function conditionalTypeToTypeNode(type2) { const checkTypeNode = typeToTypeNodeHelper(type2.checkType, context); context.approximateLength += 15; if (context.flags & 4 && type2.root.isDistributive && !(type2.checkType.flags & 524288)) { const newParam = createTypeParameter(createSymbol(262144, "T")); const name = typeParameterToName(newParam, context); const newTypeVariable = factory.createTypeReferenceNode(name); context.approximateLength += 37; const newMapper = prependTypeMapping(type2.root.checkType, newParam, type2.mapper); const saveInferTypeParameters2 = context.inferTypeParameters; context.inferTypeParameters = type2.root.inferTypeParameters; const extendsTypeNode2 = typeToTypeNodeHelper(instantiateType(type2.root.extendsType, newMapper), context); context.inferTypeParameters = saveInferTypeParameters2; const trueTypeNode2 = typeToTypeNodeOrCircularityElision(instantiateType(getTypeFromTypeNode2(context, type2.root.node.trueType), newMapper)); const falseTypeNode2 = typeToTypeNodeOrCircularityElision(instantiateType(getTypeFromTypeNode2(context, type2.root.node.falseType), newMapper)); return factory.createConditionalTypeNode(checkTypeNode, factory.createInferTypeNode(factory.createTypeParameterDeclaration(undefined, factory.cloneNode(newTypeVariable.typeName))), factory.createConditionalTypeNode(factory.createTypeReferenceNode(factory.cloneNode(name)), typeToTypeNodeHelper(type2.checkType, context), factory.createConditionalTypeNode(newTypeVariable, extendsTypeNode2, trueTypeNode2, falseTypeNode2), factory.createKeywordTypeNode(146)), factory.createKeywordTypeNode(146)); } const saveInferTypeParameters = context.inferTypeParameters; context.inferTypeParameters = type2.root.inferTypeParameters; const extendsTypeNode = typeToTypeNodeHelper(type2.extendsType, context); context.inferTypeParameters = saveInferTypeParameters; const trueTypeNode = typeToTypeNodeOrCircularityElision(getTrueTypeFromConditionalType(type2)); const falseTypeNode = typeToTypeNodeOrCircularityElision(getFalseTypeFromConditionalType(type2)); return factory.createConditionalTypeNode(checkTypeNode, extendsTypeNode, trueTypeNode, falseTypeNode); } function typeToTypeNodeOrCircularityElision(type2) { var _a2, _b2, _c; if (type2.flags & 134217728) { if ((_a2 = context.visitedTypes) == null ? undefined : _a2.has(getTypeId(type2))) { if (!(context.flags & 131072)) { context.encounteredError = true; (_c = (_b2 = context.tracker) == null ? undefined : _b2.reportCyclicStructureError) == null || _c.call(_b2); } return createElidedInformationPlaceholder(context); } return visitAndTransformType(type2, (type3) => typeToTypeNodeHelper(type3, context)); } return typeToTypeNodeHelper(type2, context); } function isMappedTypeHomomorphic(type2) { return !!getHomomorphicTypeVariable(type2); } function isHomomorphicMappedTypeWithNonHomomorphicInstantiation(type2) { return !!type2.target && isMappedTypeHomomorphic(type2.target) && !isMappedTypeHomomorphic(type2); } function createMappedTypeNodeFromType(type2) { var _a2; Debug.assert(!!(type2.flags & 1048576)); const readonlyToken = type2.declaration.readonlyToken ? factory.createToken(type2.declaration.readonlyToken.kind) : undefined; const questionToken = type2.declaration.questionToken ? factory.createToken(type2.declaration.questionToken.kind) : undefined; let appropriateConstraintTypeNode; let newTypeVariable; let templateType = getTemplateTypeFromMappedType(type2); const typeParameter = getTypeParameterFromMappedType(type2); const needsModifierPreservingWrapper = !isMappedTypeWithKeyofConstraintDeclaration(type2) && !(getModifiersTypeFromMappedType(type2).flags & 2) && context.flags & 4 && !(getConstraintTypeFromMappedType(type2).flags & 524288 && ((_a2 = getConstraintOfTypeParameter(getConstraintTypeFromMappedType(type2))) == null ? undefined : _a2.flags) & 2097152); if (isMappedTypeWithKeyofConstraintDeclaration(type2)) { if (isHomomorphicMappedTypeWithNonHomomorphicInstantiation(type2) && context.flags & 4) { const newConstraintParam = createTypeParameter(createSymbol(262144, "T")); const name = typeParameterToName(newConstraintParam, context); const target = type2.target; newTypeVariable = factory.createTypeReferenceNode(name); templateType = instantiateType(getTemplateTypeFromMappedType(target), makeArrayTypeMapper([getTypeParameterFromMappedType(target), getModifiersTypeFromMappedType(target)], [typeParameter, newConstraintParam])); } appropriateConstraintTypeNode = factory.createTypeOperatorNode(143, newTypeVariable || typeToTypeNodeHelper(getModifiersTypeFromMappedType(type2), context)); } else if (needsModifierPreservingWrapper) { const newParam = createTypeParameter(createSymbol(262144, "T")); const name = typeParameterToName(newParam, context); newTypeVariable = factory.createTypeReferenceNode(name); appropriateConstraintTypeNode = newTypeVariable; } else { appropriateConstraintTypeNode = typeToTypeNodeHelper(getConstraintTypeFromMappedType(type2), context); } const typeParameterNode = typeParameterToDeclarationWithConstraint(typeParameter, context, appropriateConstraintTypeNode); const cleanup = enterNewScope(context, type2.declaration, undefined, [getDeclaredTypeOfTypeParameter(getSymbolOfDeclaration(type2.declaration.typeParameter))]); const nameTypeNode = type2.declaration.nameType ? typeToTypeNodeHelper(getNameTypeFromMappedType(type2), context) : undefined; const templateTypeNode = typeToTypeNodeHelper(removeMissingType(templateType, !!(getMappedTypeModifiers(type2) & 4)), context); cleanup(); const mappedTypeNode = factory.createMappedTypeNode(readonlyToken, typeParameterNode, nameTypeNode, questionToken, templateTypeNode, undefined); context.approximateLength += 10; const result = setEmitFlags(mappedTypeNode, 1); if (isHomomorphicMappedTypeWithNonHomomorphicInstantiation(type2) && context.flags & 4) { const originalConstraint = instantiateType(getConstraintOfTypeParameter(getTypeFromTypeNode2(context, type2.declaration.typeParameter.constraint.type)) || unknownType, type2.mapper); return factory.createConditionalTypeNode(typeToTypeNodeHelper(getModifiersTypeFromMappedType(type2), context), factory.createInferTypeNode(factory.createTypeParameterDeclaration(undefined, factory.cloneNode(newTypeVariable.typeName), originalConstraint.flags & 2 ? undefined : typeToTypeNodeHelper(originalConstraint, context))), result, factory.createKeywordTypeNode(146)); } else if (needsModifierPreservingWrapper) { return factory.createConditionalTypeNode(typeToTypeNodeHelper(getConstraintTypeFromMappedType(type2), context), factory.createInferTypeNode(factory.createTypeParameterDeclaration(undefined, factory.cloneNode(newTypeVariable.typeName), factory.createTypeOperatorNode(143, typeToTypeNodeHelper(getModifiersTypeFromMappedType(type2), context)))), result, factory.createKeywordTypeNode(146)); } return result; } function createAnonymousTypeNode(type2, forceClassExpansion = false, forceExpansion = false) { var _a2, _b2; const typeId = type2.id; const symbol = type2.symbol; if (symbol) { const isInstantiationExpressionType = !!(getObjectFlags(type2) & 8388608); if (isInstantiationExpressionType) { const instantiationExpressionType = type2; const existing = instantiationExpressionType.node; if (isTypeQueryNode(existing) && getTypeFromTypeNode2(context, existing) === type2) { const typeNode = syntacticNodeBuilder.tryReuseExistingTypeNode(context, existing); if (typeNode) { return typeNode; } } if ((_a2 = context.visitedTypes) == null ? undefined : _a2.has(typeId)) { return createElidedInformationPlaceholder(context); } return visitAndTransformType(type2, createTypeNodeFromObjectType); } const isInstanceType = isClassInstanceSide(type2) ? 788968 : 111551; if (isJSConstructor(symbol.valueDeclaration)) { return symbolToTypeNode(symbol, context, isInstanceType); } else if (!forceExpansion && (symbol.flags & 32 && !forceClassExpansion && !getBaseTypeVariableOfClass(symbol) && !(symbol.valueDeclaration && isClassLike(symbol.valueDeclaration) && context.flags & 2048 && (!isClassDeclaration(symbol.valueDeclaration) || isSymbolAccessible(symbol, context.enclosingDeclaration, isInstanceType, false).accessibility !== 0)) || symbol.flags & (384 | 512) || shouldWriteTypeOfFunctionSymbol())) { if (shouldExpandType(type2, context)) { context.depth += 1; } else { return symbolToTypeNode(symbol, context, isInstanceType); } } if ((_b2 = context.visitedTypes) == null ? undefined : _b2.has(typeId)) { const typeAlias = getTypeAliasForTypeLiteral(type2); if (typeAlias) { return symbolToTypeNode(typeAlias, context, 788968); } else { return createElidedInformationPlaceholder(context); } } else { return visitAndTransformType(type2, createTypeNodeFromObjectType); } } else { return createTypeNodeFromObjectType(type2); } function shouldWriteTypeOfFunctionSymbol() { var _a3; const isStaticMethodSymbol = !!(symbol.flags & 8192) && some(symbol.declarations, (declaration) => isStatic(declaration) && !isLateBindableIndexSignature(getNameOfDeclaration(declaration))); const isNonLocalFunctionSymbol = !!(symbol.flags & 16) && (symbol.parent || forEach(symbol.declarations, (declaration) => declaration.parent.kind === 308 || declaration.parent.kind === 269)); if (isStaticMethodSymbol || isNonLocalFunctionSymbol) { return (!!(context.flags & 4096) || ((_a3 = context.visitedTypes) == null ? undefined : _a3.has(typeId))) && (!(context.flags & 8) || isValueSymbolAccessible(symbol, context.enclosingDeclaration)); } } } function visitAndTransformType(type2, transform2) { var _a2, _b2, _c; const typeId = type2.id; const isConstructorObject = getObjectFlags(type2) & 16 && type2.symbol && type2.symbol.flags & 32; const id = getObjectFlags(type2) & 4 && type2.node ? "N" + getNodeId(type2.node) : type2.flags & 67108864 ? "N" + getNodeId(type2.root.node) : type2.symbol ? (isConstructorObject ? "+" : "") + getSymbolId(type2.symbol) : undefined; if (!context.visitedTypes) { context.visitedTypes = /* @__PURE__ */ new Set; } if (id && !context.symbolDepth) { context.symbolDepth = /* @__PURE__ */ new Map; } const links = context.maxExpansionDepth >= 0 ? undefined : context.enclosingDeclaration && getNodeLinks(context.enclosingDeclaration); const key = `${getTypeId(type2)}|${context.flags}|${context.internalFlags}`; if (links) { links.serializedTypes || (links.serializedTypes = /* @__PURE__ */ new Map); } const cachedResult = (_a2 = links == null ? undefined : links.serializedTypes) == null ? undefined : _a2.get(key); if (cachedResult) { (_b2 = cachedResult.trackedSymbols) == null || _b2.forEach(([symbol, enclosingDeclaration, meaning]) => context.tracker.trackSymbol(symbol, enclosingDeclaration, meaning)); if (cachedResult.truncating) { context.truncating = true; } context.approximateLength += cachedResult.addedLength; return deepCloneOrReuseNode(cachedResult.node); } let depth; if (id) { depth = context.symbolDepth.get(id) || 0; if (depth > 10) { return createElidedInformationPlaceholder(context); } context.symbolDepth.set(id, depth + 1); } context.visitedTypes.add(typeId); const prevTrackedSymbols = context.trackedSymbols; context.trackedSymbols = undefined; const startLength = context.approximateLength; const result = transform2(type2); const addedLength = context.approximateLength - startLength; if (!context.reportedDiagnostic && !context.encounteredError) { (_c = links == null ? undefined : links.serializedTypes) == null || _c.set(key, { node: result, truncating: context.truncating, addedLength, trackedSymbols: context.trackedSymbols }); } context.visitedTypes.delete(typeId); if (id) { context.symbolDepth.set(id, depth); } context.trackedSymbols = prevTrackedSymbols; return result; function deepCloneOrReuseNode(node) { if (!nodeIsSynthesized(node) && getParseTreeNode(node) === node) { return node; } return setTextRange2(context, factory.cloneNode(visitEachChild(node, deepCloneOrReuseNode, undefined, deepCloneOrReuseNodes, deepCloneOrReuseNode)), node); } function deepCloneOrReuseNodes(nodes, visitor, test, start, count) { if (nodes && nodes.length === 0) { return setTextRange(factory.createNodeArray(undefined, nodes.hasTrailingComma), nodes); } return visitNodes2(nodes, visitor, test, start, count); } } function createTypeNodeFromObjectType(type2) { if (isGenericMappedType(type2) || type2.containsError) { return createMappedTypeNodeFromType(type2); } const resolved = resolveStructuredTypeMembers(type2); if (!resolved.properties.length && !resolved.indexInfos.length) { if (!resolved.callSignatures.length && !resolved.constructSignatures.length) { context.approximateLength += 2; return setEmitFlags(factory.createTypeLiteralNode(undefined), 1); } if (resolved.callSignatures.length === 1 && !resolved.constructSignatures.length) { const signature = resolved.callSignatures[0]; const signatureNode = signatureToSignatureDeclarationHelper(signature, 185, context); return signatureNode; } if (resolved.constructSignatures.length === 1 && !resolved.callSignatures.length) { const signature = resolved.constructSignatures[0]; const signatureNode = signatureToSignatureDeclarationHelper(signature, 186, context); return signatureNode; } } const abstractSignatures = filter(resolved.constructSignatures, (signature) => !!(signature.flags & 4)); if (some(abstractSignatures)) { const types = map(abstractSignatures, getOrCreateTypeFromSignature); const typeElementCount = resolved.callSignatures.length + (resolved.constructSignatures.length - abstractSignatures.length) + resolved.indexInfos.length + (context.flags & 2048 ? countWhere(resolved.properties, (p) => !(p.flags & 4194304)) : length(resolved.properties)); if (typeElementCount) { types.push(getResolvedTypeWithoutAbstractConstructSignatures(resolved)); } return typeToTypeNodeHelper(getIntersectionType(types), context); } const restoreFlags = saveRestoreFlags(context); context.flags |= 4194304; const members = createTypeNodesFromResolvedType(resolved); restoreFlags(); const typeLiteralNode = factory.createTypeLiteralNode(members); context.approximateLength += 2; setEmitFlags(typeLiteralNode, context.flags & 1024 ? 0 : 1); return typeLiteralNode; } function typeReferenceToTypeNode(type2) { let typeArguments = getTypeArguments(type2); if (type2.target === globalArrayType || type2.target === globalReadonlyArrayType) { if (context.flags & 2) { const typeArgumentNode = typeToTypeNodeHelper(typeArguments[0], context); return factory.createTypeReferenceNode(type2.target === globalArrayType ? "Array" : "ReadonlyArray", [typeArgumentNode]); } const elementType = typeToTypeNodeHelper(typeArguments[0], context); const arrayType = factory.createArrayTypeNode(elementType); return type2.target === globalArrayType ? arrayType : factory.createTypeOperatorNode(148, arrayType); } else if (type2.target.objectFlags & 8) { typeArguments = sameMap(typeArguments, (t, i) => removeMissingType(t, !!(type2.target.elementFlags[i] & 2))); if (typeArguments.length > 0) { const arity = getTypeReferenceArity(type2); const tupleConstituentNodes = mapToTypeNodes(typeArguments.slice(0, arity), context); if (tupleConstituentNodes) { const { labeledElementDeclarations } = type2.target; for (let i = 0;i < tupleConstituentNodes.length; i++) { const flags = type2.target.elementFlags[i]; const labeledElementDeclaration = labeledElementDeclarations == null ? undefined : labeledElementDeclarations[i]; if (labeledElementDeclaration) { tupleConstituentNodes[i] = factory.createNamedTupleMember(flags & 12 ? factory.createToken(26) : undefined, factory.createIdentifier(unescapeLeadingUnderscores(getTupleElementLabel(labeledElementDeclaration))), flags & 2 ? factory.createToken(58) : undefined, flags & 4 ? factory.createArrayTypeNode(tupleConstituentNodes[i]) : tupleConstituentNodes[i]); } else { tupleConstituentNodes[i] = flags & 12 ? factory.createRestTypeNode(flags & 4 ? factory.createArrayTypeNode(tupleConstituentNodes[i]) : tupleConstituentNodes[i]) : flags & 2 ? factory.createOptionalTypeNode(tupleConstituentNodes[i]) : tupleConstituentNodes[i]; } } const tupleTypeNode = setEmitFlags(factory.createTupleTypeNode(tupleConstituentNodes), 1); return type2.target.readonly ? factory.createTypeOperatorNode(148, tupleTypeNode) : tupleTypeNode; } } if (context.encounteredError || context.flags & 524288) { const tupleTypeNode = setEmitFlags(factory.createTupleTypeNode([]), 1); return type2.target.readonly ? factory.createTypeOperatorNode(148, tupleTypeNode) : tupleTypeNode; } context.encounteredError = true; return; } else if (context.flags & 2048 && type2.symbol.valueDeclaration && isClassLike(type2.symbol.valueDeclaration) && !isValueSymbolAccessible(type2.symbol, context.enclosingDeclaration)) { return createAnonymousTypeNode(type2); } else { const outerTypeParameters = type2.target.outerTypeParameters; let i = 0; let resultType; if (outerTypeParameters) { const length2 = outerTypeParameters.length; while (i < length2) { const start = i; const parent2 = getParentSymbolOfTypeParameter(outerTypeParameters[i]); do { i++; } while (i < length2 && getParentSymbolOfTypeParameter(outerTypeParameters[i]) === parent2); if (!rangeEquals(outerTypeParameters, typeArguments, start, i)) { const typeArgumentSlice = mapToTypeNodes(typeArguments.slice(start, i), context); const restoreFlags2 = saveRestoreFlags(context); context.flags |= 16; const ref = symbolToTypeNode(parent2, context, 788968, typeArgumentSlice); restoreFlags2(); resultType = !resultType ? ref : appendReferenceToType(resultType, ref); } } } let typeArgumentNodes; if (typeArguments.length > 0) { let typeParameterCount = 0; if (type2.target.typeParameters) { typeParameterCount = Math.min(type2.target.typeParameters.length, typeArguments.length); if (isReferenceToType2(type2, getGlobalIterableType(false)) || isReferenceToType2(type2, getGlobalIterableIteratorType(false)) || isReferenceToType2(type2, getGlobalAsyncIterableType(false)) || isReferenceToType2(type2, getGlobalAsyncIterableIteratorType(false))) { if (!type2.node || !isTypeReferenceNode(type2.node) || !type2.node.typeArguments || type2.node.typeArguments.length < typeParameterCount) { while (typeParameterCount > 0) { const typeArgument = typeArguments[typeParameterCount - 1]; const typeParameter = type2.target.typeParameters[typeParameterCount - 1]; const defaultType = getDefaultFromTypeParameter(typeParameter); if (!defaultType || !isTypeIdenticalTo(typeArgument, defaultType)) { break; } typeParameterCount--; } } } } typeArgumentNodes = mapToTypeNodes(typeArguments.slice(i, typeParameterCount), context); } const restoreFlags = saveRestoreFlags(context); context.flags |= 16; const finalRef = symbolToTypeNode(type2.symbol, context, 788968, typeArgumentNodes); restoreFlags(); return !resultType ? finalRef : appendReferenceToType(resultType, finalRef); } } function appendReferenceToType(root, ref) { if (isImportTypeNode(root)) { let typeArguments = root.typeArguments; let qualifier = root.qualifier; if (qualifier) { if (isIdentifier(qualifier)) { if (typeArguments !== getIdentifierTypeArguments(qualifier)) { qualifier = setIdentifierTypeArguments(factory.cloneNode(qualifier), typeArguments); } } else { if (typeArguments !== getIdentifierTypeArguments(qualifier.right)) { qualifier = factory.updateQualifiedName(qualifier, qualifier.left, setIdentifierTypeArguments(factory.cloneNode(qualifier.right), typeArguments)); } } } typeArguments = ref.typeArguments; const ids = getAccessStack(ref); for (const id of ids) { qualifier = qualifier ? factory.createQualifiedName(qualifier, id) : id; } return factory.updateImportTypeNode(root, root.argument, root.attributes, qualifier, typeArguments, root.isTypeOf); } else { let typeArguments = root.typeArguments; let typeName = root.typeName; if (isIdentifier(typeName)) { if (typeArguments !== getIdentifierTypeArguments(typeName)) { typeName = setIdentifierTypeArguments(factory.cloneNode(typeName), typeArguments); } } else { if (typeArguments !== getIdentifierTypeArguments(typeName.right)) { typeName = factory.updateQualifiedName(typeName, typeName.left, setIdentifierTypeArguments(factory.cloneNode(typeName.right), typeArguments)); } } typeArguments = ref.typeArguments; const ids = getAccessStack(ref); for (const id of ids) { typeName = factory.createQualifiedName(typeName, id); } return factory.updateTypeReferenceNode(root, typeName, typeArguments); } } function getAccessStack(ref) { let state = ref.typeName; const ids = []; while (!isIdentifier(state)) { ids.unshift(state.right); state = state.left; } ids.unshift(state); return ids; } function indexInfoToObjectComputedNamesOrSignatureDeclaration(indexInfo, context2, typeNode) { if (indexInfo.components) { const allComponentComputedNamesSerializable = every(indexInfo.components, (e) => { var _a2; return !!(e.name && isComputedPropertyName(e.name) && isEntityNameExpression(e.name.expression) && context2.enclosingDeclaration && ((_a2 = isEntityNameVisible(e.name.expression, context2.enclosingDeclaration, false)) == null ? undefined : _a2.accessibility) === 0); }); if (allComponentComputedNamesSerializable) { const newComponents = filter(indexInfo.components, (e) => { return !hasLateBindableName(e); }); return map(newComponents, (e) => { trackComputedName(e.name.expression, context2.enclosingDeclaration, context2); return setTextRange2(context2, factory.createPropertySignature(indexInfo.isReadonly ? [factory.createModifier(148)] : undefined, e.name, (isPropertySignature(e) || isPropertyDeclaration(e) || isMethodSignature(e) || isMethodDeclaration(e) || isGetAccessor(e) || isSetAccessor(e)) && e.questionToken ? factory.createToken(58) : undefined, typeNode || typeToTypeNodeHelper(getTypeOfSymbol(e.symbol), context2)), e); }); } } return [indexInfoToIndexSignatureDeclarationHelper(indexInfo, context2, typeNode)]; } function createTypeNodesFromResolvedType(resolvedType) { if (checkTruncationLength(context)) { context.out.truncated = true; if (context.flags & 1) { return [addSyntheticTrailingComment(factory.createNotEmittedTypeElement(), 3, "elided")]; } return [factory.createPropertySignature(undefined, "...", undefined, undefined)]; } context.typeStack.push(-1); const typeElements = []; for (const signature of resolvedType.callSignatures) { typeElements.push(signatureToSignatureDeclarationHelper(signature, 180, context)); } for (const signature of resolvedType.constructSignatures) { if (signature.flags & 4) continue; typeElements.push(signatureToSignatureDeclarationHelper(signature, 181, context)); } for (const info of resolvedType.indexInfos) { typeElements.push(...indexInfoToObjectComputedNamesOrSignatureDeclaration(info, context, resolvedType.objectFlags & 1024 ? createElidedInformationPlaceholder(context) : undefined)); } const properties = resolvedType.properties; if (!properties) { context.typeStack.pop(); return typeElements; } let i = 0; for (const propertySymbol of properties) { if (isExpanding(context) && propertySymbol.flags & 4194304) { continue; } i++; if (context.flags & 2048) { if (propertySymbol.flags & 4194304) { continue; } if (getDeclarationModifierFlagsFromSymbol(propertySymbol) & (2 | 4) && context.tracker.reportPrivateInBaseOfClassExpression) { context.tracker.reportPrivateInBaseOfClassExpression(unescapeLeadingUnderscores(propertySymbol.escapedName)); } if (isPrivateIdentifierSymbol(propertySymbol) && context.tracker.reportPrivateInBaseOfClassExpression) { context.tracker.reportPrivateInBaseOfClassExpression(idText(propertySymbol.valueDeclaration.name)); } } if (checkTruncationLength(context) && i + 2 < properties.length - 1) { context.out.truncated = true; if (context.flags & 1) { const typeElement = typeElements.pop(); typeElements.push(addSyntheticTrailingComment(typeElement, 3, `... ${properties.length - i} more elided ...`)); } else { typeElements.push(factory.createPropertySignature(undefined, `... ${properties.length - i} more ...`, undefined, undefined)); } addPropertyToElementList(properties[properties.length - 1], context, typeElements); break; } addPropertyToElementList(propertySymbol, context, typeElements); } context.typeStack.pop(); return typeElements.length ? typeElements : undefined; } } function createElidedInformationPlaceholder(context) { context.approximateLength += 3; if (!(context.flags & 1)) { return factory.createTypeReferenceNode(factory.createIdentifier("..."), undefined); } return addSyntheticLeadingComment(factory.createKeywordTypeNode(133), 3, "elided"); } function shouldUsePlaceholderForProperty(propertySymbol, context) { var _a; const depth = 3; return !!(getCheckFlags(propertySymbol) & 8192) && (contains(context.reverseMappedStack, propertySymbol) || ((_a = context.reverseMappedStack) == null ? undefined : _a[0]) && !(getObjectFlags(last(context.reverseMappedStack).links.propertyType) & 16) || isDeeplyNestedReverseMappedTypeProperty()); function isDeeplyNestedReverseMappedTypeProperty() { var _a2; if ((((_a2 = context.reverseMappedStack) == null ? undefined : _a2.length) ?? 0) < depth) { return false; } for (let i = 0;i < depth; i++) { const prop = context.reverseMappedStack[context.reverseMappedStack.length - 1 - i]; if (prop.links.mappedType.symbol !== propertySymbol.links.mappedType.symbol) { return false; } } return true; } } function addPropertyToElementList(propertySymbol, context, typeElements) { var _a; const propertyIsReverseMapped = !!(getCheckFlags(propertySymbol) & 8192); const propertyType = shouldUsePlaceholderForProperty(propertySymbol, context) ? anyType : getNonMissingTypeOfSymbol(propertySymbol); const saveEnclosingDeclaration = context.enclosingDeclaration; context.enclosingDeclaration = undefined; if (context.tracker.canTrackSymbol && isLateBoundName(propertySymbol.escapedName)) { if (propertySymbol.declarations) { const decl = first(propertySymbol.declarations); if (hasLateBindableName(decl)) { if (isBinaryExpression(decl)) { const name = getNameOfDeclaration(decl); if (name && isElementAccessExpression(name) && isPropertyAccessEntityNameExpression(name.argumentExpression)) { trackComputedName(name.argumentExpression, saveEnclosingDeclaration, context); } } else { trackComputedName(decl.name.expression, saveEnclosingDeclaration, context); } } } else { context.tracker.reportNonSerializableProperty(symbolToString(propertySymbol)); } } context.enclosingDeclaration = propertySymbol.valueDeclaration || ((_a = propertySymbol.declarations) == null ? undefined : _a[0]) || saveEnclosingDeclaration; const propertyName = getPropertyNameNodeForSymbol(propertySymbol, context); context.enclosingDeclaration = saveEnclosingDeclaration; context.approximateLength += symbolName(propertySymbol).length + 1; if (propertySymbol.flags & 98304) { const writeType = getWriteTypeOfSymbol(propertySymbol); if (!isErrorType(propertyType) && !isErrorType(writeType)) { const symbolMapper = getSymbolLinks(propertySymbol).mapper; const propDeclaration = getDeclarationOfKind(propertySymbol, 173); if (propertyType !== writeType || propertySymbol.parent.flags & 32 && !propDeclaration) { const getterDeclaration = getDeclarationOfKind(propertySymbol, 178); if (getterDeclaration) { const getterSignature = getSignatureFromDeclaration(getterDeclaration); typeElements.push(setCommentRange2(context, signatureToSignatureDeclarationHelper(symbolMapper ? instantiateSignature(getterSignature, symbolMapper) : getterSignature, 178, context, { name: propertyName }), getterDeclaration)); } const setterDeclaration = getDeclarationOfKind(propertySymbol, 179); if (setterDeclaration) { const setterSignature = getSignatureFromDeclaration(setterDeclaration); typeElements.push(setCommentRange2(context, signatureToSignatureDeclarationHelper(symbolMapper ? instantiateSignature(setterSignature, symbolMapper) : setterSignature, 179, context, { name: propertyName }), setterDeclaration)); } return; } if (propertySymbol.parent.flags & 32 && propDeclaration && find(propDeclaration.modifiers, isAccessorModifier)) { const fakeGetterSignature = createSignature(undefined, undefined, undefined, emptyArray, propertyType, undefined, 0, 0); typeElements.push(setCommentRange2(context, signatureToSignatureDeclarationHelper(fakeGetterSignature, 178, context, { name: propertyName }), propDeclaration)); const setterParam = createSymbol(1, "arg"); setterParam.links.type = writeType; const fakeSetterSignature = createSignature(undefined, undefined, undefined, [setterParam], voidType, undefined, 0, 0); typeElements.push(signatureToSignatureDeclarationHelper(fakeSetterSignature, 179, context, { name: propertyName })); return; } } } const optionalToken = propertySymbol.flags & 16777216 ? factory.createToken(58) : undefined; if (propertySymbol.flags & (16 | 8192) && !getPropertiesOfObjectType(propertyType).length && !isReadonlySymbol(propertySymbol)) { const signatures = getSignaturesOfType(filterType(propertyType, (t) => !(t.flags & 4)), 0); for (const signature of signatures) { const methodDeclaration = signatureToSignatureDeclarationHelper(signature, 174, context, { name: propertyName, questionToken: optionalToken }); typeElements.push(preserveCommentsOn(methodDeclaration, signature.declaration || propertySymbol.valueDeclaration)); } if (signatures.length || !optionalToken) { return; } } let propertyTypeNode; if (shouldUsePlaceholderForProperty(propertySymbol, context)) { propertyTypeNode = createElidedInformationPlaceholder(context); } else { if (propertyIsReverseMapped) { context.reverseMappedStack || (context.reverseMappedStack = []); context.reverseMappedStack.push(propertySymbol); } propertyTypeNode = propertyType ? serializeTypeForDeclaration(context, undefined, propertyType, propertySymbol) : factory.createKeywordTypeNode(133); if (propertyIsReverseMapped) { context.reverseMappedStack.pop(); } } const modifiers = isReadonlySymbol(propertySymbol) ? [factory.createToken(148)] : undefined; if (modifiers) { context.approximateLength += 9; } const propertySignature = factory.createPropertySignature(modifiers, propertyName, optionalToken, propertyTypeNode); typeElements.push(preserveCommentsOn(propertySignature, propertySymbol.valueDeclaration)); function preserveCommentsOn(node, range) { var _a2; const jsdocPropertyTag = (_a2 = propertySymbol.declarations) == null ? undefined : _a2.find((d) => d.kind === 349); if (jsdocPropertyTag) { const commentText = getTextOfJSDocComment(jsdocPropertyTag.comment); if (commentText) { setSyntheticLeadingComments(node, [{ kind: 3, text: `* * ` + commentText.replace(/\n/g, ` * `) + ` `, pos: -1, end: -1, hasTrailingNewLine: true }]); } } else if (range) { setCommentRange2(context, node, range); } return node; } } function setCommentRange2(context, node, range) { if (context.enclosingFile && context.enclosingFile === getSourceFileOfNode(range)) { return setCommentRange(node, range); } return node; } function mapToTypeNodes(types, context, isBareList) { if (some(types)) { if (checkTruncationLength(context)) { context.out.truncated = true; if (!isBareList) { return [ context.flags & 1 ? addSyntheticLeadingComment(factory.createKeywordTypeNode(133), 3, "elided") : factory.createTypeReferenceNode("...", undefined) ]; } else if (types.length > 2) { return [ typeToTypeNodeHelper(types[0], context), context.flags & 1 ? addSyntheticLeadingComment(factory.createKeywordTypeNode(133), 3, `... ${types.length - 2} more elided ...`) : factory.createTypeReferenceNode(`... ${types.length - 2} more ...`, undefined), typeToTypeNodeHelper(types[types.length - 1], context) ]; } } const mayHaveNameCollisions = !(context.flags & 64); const seenNames = mayHaveNameCollisions ? createMultiMap() : undefined; const result = []; let i = 0; for (const type of types) { i++; if (checkTruncationLength(context) && i + 2 < types.length - 1) { context.out.truncated = true; result.push(context.flags & 1 ? addSyntheticLeadingComment(factory.createKeywordTypeNode(133), 3, `... ${types.length - i} more elided ...`) : factory.createTypeReferenceNode(`... ${types.length - i} more ...`, undefined)); const typeNode2 = typeToTypeNodeHelper(types[types.length - 1], context); if (typeNode2) { result.push(typeNode2); } break; } context.approximateLength += 2; const typeNode = typeToTypeNodeHelper(type, context); if (typeNode) { result.push(typeNode); if (seenNames && isIdentifierTypeReference(typeNode)) { seenNames.add(typeNode.typeName.escapedText, [type, result.length - 1]); } } } if (seenNames) { const restoreFlags = saveRestoreFlags(context); context.flags |= 64; seenNames.forEach((types2) => { if (!arrayIsHomogeneous(types2, ([a], [b]) => typesAreSameReference(a, b))) { for (const [type, resultIndex] of types2) { result[resultIndex] = typeToTypeNodeHelper(type, context); } } }); restoreFlags(); } return result; } } function typesAreSameReference(a, b) { return a === b || !!a.symbol && a.symbol === b.symbol || !!a.aliasSymbol && a.aliasSymbol === b.aliasSymbol; } function indexInfoToIndexSignatureDeclarationHelper(indexInfo, context, typeNode) { const name = getNameFromIndexInfo(indexInfo) || "x"; const indexerTypeNode = typeToTypeNodeHelper(indexInfo.keyType, context); const indexingParameter = factory.createParameterDeclaration(undefined, undefined, name, undefined, indexerTypeNode, undefined); if (!typeNode) { typeNode = typeToTypeNodeHelper(indexInfo.type || anyType, context); } if (!indexInfo.type && !(context.flags & 2097152)) { context.encounteredError = true; } context.approximateLength += name.length + 4; return factory.createIndexSignature(indexInfo.isReadonly ? [factory.createToken(148)] : undefined, [indexingParameter], typeNode); } function signatureToSignatureDeclarationHelper(signature, kind, context, options) { var _a; let typeParameters; let typeArguments; const expandedParams = getExpandedParameters(signature, true)[0]; const cleanup = enterNewScope(context, signature.declaration, expandedParams, signature.typeParameters, signature.parameters, signature.mapper); context.approximateLength += 3; if (context.flags & 32 && signature.target && signature.mapper && signature.target.typeParameters) { typeArguments = signature.target.typeParameters.map((parameter) => typeToTypeNodeHelper(instantiateType(parameter, signature.mapper), context)); } else { typeParameters = signature.typeParameters && signature.typeParameters.map((parameter) => typeParameterToDeclaration(parameter, context)); } const restoreFlags = saveRestoreFlags(context); context.flags &= ~256; const parameters = (some(expandedParams, (p) => p !== expandedParams[expandedParams.length - 1] && !!(getCheckFlags(p) & 32768)) ? signature.parameters : expandedParams).map((parameter) => symbolToParameterDeclaration(parameter, context, kind === 177)); const thisParameter = context.flags & 33554432 ? undefined : tryGetThisParameterDeclaration(signature, context); if (thisParameter) { parameters.unshift(thisParameter); } restoreFlags(); const returnTypeNode = serializeReturnTypeForSignature(context, signature); let modifiers = options == null ? undefined : options.modifiers; if (kind === 186 && signature.flags & 4) { const flags = modifiersToFlags(modifiers); modifiers = factory.createModifiersFromModifierFlags(flags | 64); } const node = kind === 180 ? factory.createCallSignature(typeParameters, parameters, returnTypeNode) : kind === 181 ? factory.createConstructSignature(typeParameters, parameters, returnTypeNode) : kind === 174 ? factory.createMethodSignature(modifiers, (options == null ? undefined : options.name) ?? factory.createIdentifier(""), options == null ? undefined : options.questionToken, typeParameters, parameters, returnTypeNode) : kind === 175 ? factory.createMethodDeclaration(modifiers, undefined, (options == null ? undefined : options.name) ?? factory.createIdentifier(""), undefined, typeParameters, parameters, returnTypeNode, undefined) : kind === 177 ? factory.createConstructorDeclaration(modifiers, parameters, undefined) : kind === 178 ? factory.createGetAccessorDeclaration(modifiers, (options == null ? undefined : options.name) ?? factory.createIdentifier(""), parameters, returnTypeNode, undefined) : kind === 179 ? factory.createSetAccessorDeclaration(modifiers, (options == null ? undefined : options.name) ?? factory.createIdentifier(""), parameters, undefined) : kind === 182 ? factory.createIndexSignature(modifiers, parameters, returnTypeNode) : kind === 318 ? factory.createJSDocFunctionType(parameters, returnTypeNode) : kind === 185 ? factory.createFunctionTypeNode(typeParameters, parameters, returnTypeNode ?? factory.createTypeReferenceNode(factory.createIdentifier(""))) : kind === 186 ? factory.createConstructorTypeNode(modifiers, typeParameters, parameters, returnTypeNode ?? factory.createTypeReferenceNode(factory.createIdentifier(""))) : kind === 263 ? factory.createFunctionDeclaration(modifiers, undefined, (options == null ? undefined : options.name) ? cast(options.name, isIdentifier) : factory.createIdentifier(""), typeParameters, parameters, returnTypeNode, undefined) : kind === 219 ? factory.createFunctionExpression(modifiers, undefined, (options == null ? undefined : options.name) ? cast(options.name, isIdentifier) : factory.createIdentifier(""), typeParameters, parameters, returnTypeNode, factory.createBlock([])) : kind === 220 ? factory.createArrowFunction(modifiers, typeParameters, parameters, returnTypeNode, undefined, factory.createBlock([])) : Debug.assertNever(kind); if (typeArguments) { node.typeArguments = factory.createNodeArray(typeArguments); } if (((_a = signature.declaration) == null ? undefined : _a.kind) === 324 && signature.declaration.parent.kind === 340) { const comment = getTextOfNode(signature.declaration.parent.parent, true).slice(2, -2).split(/\r\n|\n|\r/).map((line) => line.replace(/^\s+/, " ")).join(` `); addSyntheticLeadingComment(node, 3, comment, true); } cleanup == null || cleanup(); return node; } function createRecoveryBoundary(context) { if (cancellationToken && cancellationToken.throwIfCancellationRequested) { cancellationToken.throwIfCancellationRequested(); } let trackedSymbols; let unreportedErrors; let hadError = false; const oldTracker = context.tracker; const oldTrackedSymbols = context.trackedSymbols; context.trackedSymbols = undefined; const oldEncounteredError = context.encounteredError; context.tracker = new SymbolTrackerImpl(context, { ...oldTracker.inner, reportCyclicStructureError() { markError(() => oldTracker.reportCyclicStructureError()); }, reportInaccessibleThisError() { markError(() => oldTracker.reportInaccessibleThisError()); }, reportInaccessibleUniqueSymbolError() { markError(() => oldTracker.reportInaccessibleUniqueSymbolError()); }, reportLikelyUnsafeImportRequiredError(specifier, symbolName2) { markError(() => oldTracker.reportLikelyUnsafeImportRequiredError(specifier, symbolName2)); }, reportNonSerializableProperty(name) { markError(() => oldTracker.reportNonSerializableProperty(name)); }, reportPrivateInBaseOfClassExpression(propertyName) { markError(() => oldTracker.reportPrivateInBaseOfClassExpression(propertyName)); }, trackSymbol(sym, decl, meaning) { (trackedSymbols ?? (trackedSymbols = [])).push([sym, decl, meaning]); return false; }, moduleResolverHost: context.tracker.moduleResolverHost }, context.tracker.moduleResolverHost); return { startRecoveryScope, finalizeBoundary, markError, hadError: () => hadError }; function markError(unreportedError) { hadError = true; if (unreportedError) { (unreportedErrors ?? (unreportedErrors = [])).push(unreportedError); } } function startRecoveryScope() { const trackedSymbolsTop = (trackedSymbols == null ? undefined : trackedSymbols.length) ?? 0; const unreportedErrorsTop = (unreportedErrors == null ? undefined : unreportedErrors.length) ?? 0; return () => { hadError = false; if (trackedSymbols) { trackedSymbols.length = trackedSymbolsTop; } if (unreportedErrors) { unreportedErrors.length = unreportedErrorsTop; } }; } function finalizeBoundary() { context.tracker = oldTracker; context.trackedSymbols = oldTrackedSymbols; context.encounteredError = oldEncounteredError; unreportedErrors == null || unreportedErrors.forEach((fn) => fn()); if (hadError) { return false; } trackedSymbols == null || trackedSymbols.forEach(([symbol, enclosingDeclaration, meaning]) => context.tracker.trackSymbol(symbol, enclosingDeclaration, meaning)); return true; } } function enterNewScope(context, declaration, expandedParams, typeParameters, originalParameters, mapper) { const cleanupContext = cloneNodeBuilderContext(context); let cleanupParams; let cleanupTypeParams; const oldEnclosingDecl = context.enclosingDeclaration; const oldMapper = context.mapper; if (mapper) { context.mapper = mapper; } if (context.enclosingDeclaration && declaration) { let pushFakeScope2 = function(kind, addAll) { Debug.assert(context.enclosingDeclaration); let existingFakeScope; if (getNodeLinks(context.enclosingDeclaration).fakeScopeForSignatureDeclaration === kind) { existingFakeScope = context.enclosingDeclaration; } else if (context.enclosingDeclaration.parent && getNodeLinks(context.enclosingDeclaration.parent).fakeScopeForSignatureDeclaration === kind) { existingFakeScope = context.enclosingDeclaration.parent; } Debug.assertOptionalNode(existingFakeScope, isBlock); const locals = (existingFakeScope == null ? undefined : existingFakeScope.locals) ?? createSymbolTable(); let newLocals; let oldLocals; addAll((name, symbol) => { if (existingFakeScope) { const oldSymbol = locals.get(name); if (!oldSymbol) { newLocals = append(newLocals, name); } else { oldLocals = append(oldLocals, { name, oldSymbol }); } } locals.set(name, symbol); }); if (!existingFakeScope) { const fakeScope = factory.createBlock(emptyArray); getNodeLinks(fakeScope).fakeScopeForSignatureDeclaration = kind; fakeScope.locals = locals; setParent(fakeScope, context.enclosingDeclaration); context.enclosingDeclaration = fakeScope; } else { return function undo() { forEach(newLocals, (s) => locals.delete(s)); forEach(oldLocals, (s) => locals.set(s.name, s.oldSymbol)); }; } }; var pushFakeScope = pushFakeScope2; cleanupParams = !some(expandedParams) ? undefined : pushFakeScope2("params", (add) => { if (!expandedParams) return; for (let pIndex = 0;pIndex < expandedParams.length; pIndex++) { const param = expandedParams[pIndex]; const originalParam = originalParameters == null ? undefined : originalParameters[pIndex]; if (originalParameters && originalParam !== param) { add(param.escapedName, unknownSymbol); if (originalParam) { add(originalParam.escapedName, unknownSymbol); } } else if (!forEach(param.declarations, (d) => { if (isParameter(d) && isBindingPattern(d.name)) { bindPattern(d.name); return true; } return; function bindPattern(p) { forEach(p.elements, (e) => { switch (e.kind) { case 233: return; case 209: return bindElement(e); default: return Debug.assertNever(e); } }); } function bindElement(e) { if (isBindingPattern(e.name)) { return bindPattern(e.name); } const symbol = getSymbolOfDeclaration(e); add(symbol.escapedName, symbol); } })) { add(param.escapedName, param); } } }); if (context.flags & 4 && some(typeParameters)) { cleanupTypeParams = pushFakeScope2("typeParams", (add) => { for (const typeParam of typeParameters ?? emptyArray) { const typeParamName = typeParameterToName(typeParam, context).escapedText; add(typeParamName, typeParam.symbol); } }); } } return () => { cleanupParams == null || cleanupParams(); cleanupTypeParams == null || cleanupTypeParams(); cleanupContext(); context.enclosingDeclaration = oldEnclosingDecl; context.mapper = oldMapper; }; } function tryGetThisParameterDeclaration(signature, context) { if (signature.thisParameter) { return symbolToParameterDeclaration(signature.thisParameter, context); } if (signature.declaration && isInJSFile(signature.declaration)) { const thisTag = getJSDocThisTag(signature.declaration); if (thisTag && thisTag.typeExpression) { return factory.createParameterDeclaration(undefined, undefined, "this", undefined, typeToTypeNodeHelper(getTypeFromTypeNode2(context, thisTag.typeExpression), context)); } } } function typeParameterToDeclarationWithConstraint(type, context, constraintNode) { const restoreFlags = saveRestoreFlags(context); context.flags &= ~512; const modifiers = factory.createModifiersFromModifierFlags(getTypeParameterModifiers(type)); const name = typeParameterToName(type, context); const defaultParameter = getDefaultFromTypeParameter(type); const defaultParameterNode = defaultParameter && typeToTypeNodeHelper(defaultParameter, context); restoreFlags(); return factory.createTypeParameterDeclaration(modifiers, name, constraintNode, defaultParameterNode); } function typeToTypeNodeHelperWithPossibleReusableTypeNode(type, typeNode, context) { return !canPossiblyExpandType(type, context) && typeNode && getTypeFromTypeNode2(context, typeNode) === type && syntacticNodeBuilder.tryReuseExistingTypeNode(context, typeNode) || typeToTypeNodeHelper(type, context); } function typeParameterToDeclaration(type, context, constraint = getConstraintOfTypeParameter(type)) { const constraintNode = constraint && typeToTypeNodeHelperWithPossibleReusableTypeNode(constraint, getConstraintDeclaration(type), context); return typeParameterToDeclarationWithConstraint(type, context, constraintNode); } function typePredicateToTypePredicateNodeHelper(typePredicate, context) { const assertsModifier = typePredicate.kind === 2 || typePredicate.kind === 3 ? factory.createToken(131) : undefined; const parameterName = typePredicate.kind === 1 || typePredicate.kind === 3 ? setEmitFlags(factory.createIdentifier(typePredicate.parameterName), 16777216) : factory.createThisTypeNode(); const typeNode = typePredicate.type && typeToTypeNodeHelper(typePredicate.type, context); return factory.createTypePredicateNode(assertsModifier, parameterName, typeNode); } function getEffectiveParameterDeclaration(parameterSymbol) { const parameterDeclaration = getDeclarationOfKind(parameterSymbol, 170); if (parameterDeclaration) { return parameterDeclaration; } if (!isTransientSymbol(parameterSymbol)) { return getDeclarationOfKind(parameterSymbol, 342); } } function symbolToParameterDeclaration(parameterSymbol, context, preserveModifierFlags) { const parameterDeclaration = getEffectiveParameterDeclaration(parameterSymbol); const parameterType = getTypeOfSymbol(parameterSymbol); const parameterTypeNode = serializeTypeForDeclaration(context, parameterDeclaration, parameterType, parameterSymbol); const modifiers = !(context.flags & 8192) && preserveModifierFlags && parameterDeclaration && canHaveModifiers(parameterDeclaration) ? map(getModifiers(parameterDeclaration), factory.cloneNode) : undefined; const isRest = parameterDeclaration && isRestParameter(parameterDeclaration) || getCheckFlags(parameterSymbol) & 32768; const dotDotDotToken = isRest ? factory.createToken(26) : undefined; const name = parameterToParameterDeclarationName(parameterSymbol, parameterDeclaration, context); const isOptional = parameterDeclaration && isOptionalParameter(parameterDeclaration) || getCheckFlags(parameterSymbol) & 16384; const questionToken = isOptional ? factory.createToken(58) : undefined; const parameterNode = factory.createParameterDeclaration(modifiers, dotDotDotToken, name, questionToken, parameterTypeNode, undefined); context.approximateLength += symbolName(parameterSymbol).length + 3; return parameterNode; } function parameterToParameterDeclarationName(parameterSymbol, parameterDeclaration, context) { return parameterDeclaration ? parameterDeclaration.name ? parameterDeclaration.name.kind === 80 ? setEmitFlags(factory.cloneNode(parameterDeclaration.name), 16777216) : parameterDeclaration.name.kind === 167 ? setEmitFlags(factory.cloneNode(parameterDeclaration.name.right), 16777216) : cloneBindingName(parameterDeclaration.name) : symbolName(parameterSymbol) : symbolName(parameterSymbol); function cloneBindingName(node) { return elideInitializerAndSetEmitFlags(node); function elideInitializerAndSetEmitFlags(node2) { if (context.tracker.canTrackSymbol && isComputedPropertyName(node2) && isLateBindableName(node2)) { trackComputedName(node2.expression, context.enclosingDeclaration, context); } let visited = visitEachChild(node2, elideInitializerAndSetEmitFlags, undefined, undefined, elideInitializerAndSetEmitFlags); if (isBindingElement(visited)) { visited = factory.updateBindingElement(visited, visited.dotDotDotToken, visited.propertyName, visited.name, undefined); } if (!nodeIsSynthesized(visited)) { visited = factory.cloneNode(visited); } return setEmitFlags(visited, 1 | 16777216); } } } function trackComputedName(accessExpression, enclosingDeclaration, context) { if (!context.tracker.canTrackSymbol) return; const firstIdentifier = getFirstIdentifier(accessExpression); const name = resolveName(enclosingDeclaration, firstIdentifier.escapedText, 111551 | 1048576, undefined, true); if (name) { context.tracker.trackSymbol(name, enclosingDeclaration, 111551); } else { const fallback = resolveName(firstIdentifier, firstIdentifier.escapedText, 111551 | 1048576, undefined, true); if (fallback) { context.tracker.trackSymbol(fallback, enclosingDeclaration, 111551); } } } function lookupSymbolChain(symbol, context, meaning, yieldModuleSymbol) { context.tracker.trackSymbol(symbol, context.enclosingDeclaration, meaning); return lookupSymbolChainWorker(symbol, context, meaning, yieldModuleSymbol); } function lookupSymbolChainWorker(symbol, context, meaning, yieldModuleSymbol) { let chain; const isTypeParameter = symbol.flags & 262144; if (!isTypeParameter && (context.enclosingDeclaration || context.flags & 64) && !(context.internalFlags & 4)) { chain = Debug.checkDefined(getSymbolChain(symbol, meaning, true)); Debug.assert(chain && chain.length > 0); } else { chain = [symbol]; } return chain; function getSymbolChain(symbol2, meaning2, endOfChain) { let accessibleSymbolChain = getAccessibleSymbolChain(symbol2, context.enclosingDeclaration, meaning2, !!(context.flags & 128)); let parentSpecifiers; if (!accessibleSymbolChain || needsQualification(accessibleSymbolChain[0], context.enclosingDeclaration, accessibleSymbolChain.length === 1 ? meaning2 : getQualifiedLeftMeaning(meaning2))) { const parents = getContainersOfSymbol(accessibleSymbolChain ? accessibleSymbolChain[0] : symbol2, context.enclosingDeclaration, meaning2); if (length(parents)) { parentSpecifiers = parents.map((symbol3) => some(symbol3.declarations, hasNonGlobalAugmentationExternalModuleSymbol) ? getSpecifierForModuleSymbol(symbol3, context) : undefined); const indices = parents.map((_, i) => i); indices.sort(sortByBestName); const sortedParents = indices.map((i) => parents[i]); for (const parent2 of sortedParents) { const parentChain = getSymbolChain(parent2, getQualifiedLeftMeaning(meaning2), false); if (parentChain) { if (parent2.exports && parent2.exports.get("export=") && getSymbolIfSameReference(parent2.exports.get("export="), symbol2)) { accessibleSymbolChain = parentChain; break; } accessibleSymbolChain = parentChain.concat(accessibleSymbolChain || [getAliasForSymbolInContainer(parent2, symbol2) || symbol2]); break; } } } } if (accessibleSymbolChain) { return accessibleSymbolChain; } if (endOfChain || !(symbol2.flags & (2048 | 4096))) { if (!endOfChain && !yieldModuleSymbol && !!forEach(symbol2.declarations, hasNonGlobalAugmentationExternalModuleSymbol)) { return; } return [symbol2]; } function sortByBestName(a, b) { const specifierA = parentSpecifiers[a]; const specifierB = parentSpecifiers[b]; if (specifierA && specifierB) { const isBRelative = pathIsRelative(specifierB); if (pathIsRelative(specifierA) === isBRelative) { return countPathComponents(specifierA) - countPathComponents(specifierB); } if (isBRelative) { return -1; } return 1; } return 0; } } } function typeParametersToTypeParameterDeclarations(symbol, context) { let typeParameterNodes; const targetSymbol = getTargetSymbol(symbol); if (targetSymbol.flags & (32 | 64 | 524288)) { typeParameterNodes = factory.createNodeArray(map(getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(symbol), (tp) => typeParameterToDeclaration(tp, context))); } return typeParameterNodes; } function lookupTypeParameterNodes(chain, index, context) { var _a; Debug.assert(chain && 0 <= index && index < chain.length); const symbol = chain[index]; const symbolId = getSymbolId(symbol); if ((_a = context.typeParameterSymbolList) == null ? undefined : _a.has(symbolId)) { return; } if (context.mustCreateTypeParameterSymbolList) { context.mustCreateTypeParameterSymbolList = false; context.typeParameterSymbolList = new Set(context.typeParameterSymbolList); } context.typeParameterSymbolList.add(symbolId); let typeParameterNodes; if (context.flags & 512 && index < chain.length - 1) { const parentSymbol = symbol; const nextSymbol = chain[index + 1]; if (getCheckFlags(nextSymbol) & 1) { const params = getTypeParametersOfClassOrInterface(parentSymbol.flags & 2097152 ? resolveAlias(parentSymbol) : parentSymbol); typeParameterNodes = mapToTypeNodes(map(params, (t) => getMappedType(t, nextSymbol.links.mapper)), context); } else { typeParameterNodes = typeParametersToTypeParameterDeclarations(symbol, context); } } return typeParameterNodes; } function getTopmostIndexedAccessType(top) { if (isIndexedAccessTypeNode(top.objectType)) { return getTopmostIndexedAccessType(top.objectType); } return top; } function getSpecifierForModuleSymbol(symbol, context, overrideImportMode) { let file = getDeclarationOfKind(symbol, 308); if (!file) { const equivalentFileSymbol = firstDefined(symbol.declarations, (d) => getFileSymbolIfFileSymbolExportEqualsContainer(d, symbol)); if (equivalentFileSymbol) { file = getDeclarationOfKind(equivalentFileSymbol, 308); } } if (file && file.moduleName !== undefined) { return file.moduleName; } if (!file) { if (ambientModuleSymbolRegex.test(symbol.escapedName)) { return symbol.escapedName.substring(1, symbol.escapedName.length - 1); } } if (!context.enclosingFile || !context.tracker.moduleResolverHost) { if (ambientModuleSymbolRegex.test(symbol.escapedName)) { return symbol.escapedName.substring(1, symbol.escapedName.length - 1); } return getSourceFileOfNode(getNonAugmentationDeclaration(symbol)).fileName; } const enclosingDeclaration = getOriginalNode(context.enclosingDeclaration); const originalModuleSpecifier = canHaveModuleSpecifier(enclosingDeclaration) ? tryGetModuleSpecifierFromDeclaration(enclosingDeclaration) : undefined; const contextFile = context.enclosingFile; const resolutionMode = overrideImportMode || originalModuleSpecifier && host.getModeForUsageLocation(contextFile, originalModuleSpecifier) || contextFile && host.getDefaultResolutionModeForFile(contextFile); const cacheKey = createModeAwareCacheKey(contextFile.path, resolutionMode); const links = getSymbolLinks(symbol); let specifier = links.specifierCache && links.specifierCache.get(cacheKey); if (!specifier) { const isBundle2 = !!compilerOptions.outFile; const { moduleResolverHost } = context.tracker; const specifierCompilerOptions = isBundle2 ? { ...compilerOptions, baseUrl: moduleResolverHost.getCommonSourceDirectory() } : compilerOptions; specifier = first(getModuleSpecifiers(symbol, checker, specifierCompilerOptions, contextFile, moduleResolverHost, { importModuleSpecifierPreference: isBundle2 ? "non-relative" : "project-relative", importModuleSpecifierEnding: isBundle2 ? "minimal" : resolutionMode === 99 ? "js" : undefined }, { overrideImportMode })); links.specifierCache ?? (links.specifierCache = /* @__PURE__ */ new Map); links.specifierCache.set(cacheKey, specifier); } return specifier; } function symbolToEntityNameNode(symbol) { const identifier = factory.createIdentifier(unescapeLeadingUnderscores(symbol.escapedName)); return symbol.parent ? factory.createQualifiedName(symbolToEntityNameNode(symbol.parent), identifier) : identifier; } function symbolToTypeNode(symbol, context, meaning, overrideTypeArguments) { const chain = lookupSymbolChain(symbol, context, meaning, !(context.flags & 16384)); const isTypeOf = meaning === 111551; if (some(chain[0].declarations, hasNonGlobalAugmentationExternalModuleSymbol)) { const nonRootParts = chain.length > 1 ? createAccessFromSymbolChain(chain, chain.length - 1, 1) : undefined; const typeParameterNodes = overrideTypeArguments || lookupTypeParameterNodes(chain, 0, context); const contextFile = getSourceFileOfNode(getOriginalNode(context.enclosingDeclaration)); const targetFile = getSourceFileOfModule(chain[0]); let specifier; let attributes; if (getEmitModuleResolutionKind(compilerOptions) === 3 || getEmitModuleResolutionKind(compilerOptions) === 99) { if ((targetFile == null ? undefined : targetFile.impliedNodeFormat) === 99 && targetFile.impliedNodeFormat !== (contextFile == null ? undefined : contextFile.impliedNodeFormat)) { specifier = getSpecifierForModuleSymbol(chain[0], context, 99); attributes = factory.createImportAttributes(factory.createNodeArray([ factory.createImportAttribute(factory.createStringLiteral("resolution-mode"), factory.createStringLiteral("import")) ])); } } if (!specifier) { specifier = getSpecifierForModuleSymbol(chain[0], context); } if (!(context.flags & 67108864) && getEmitModuleResolutionKind(compilerOptions) !== 1 && specifier.includes("/node_modules/")) { const oldSpecifier = specifier; if (getEmitModuleResolutionKind(compilerOptions) === 3 || getEmitModuleResolutionKind(compilerOptions) === 99) { const swappedMode = (contextFile == null ? undefined : contextFile.impliedNodeFormat) === 99 ? 1 : 99; specifier = getSpecifierForModuleSymbol(chain[0], context, swappedMode); if (specifier.includes("/node_modules/")) { specifier = oldSpecifier; } else { attributes = factory.createImportAttributes(factory.createNodeArray([ factory.createImportAttribute(factory.createStringLiteral("resolution-mode"), factory.createStringLiteral(swappedMode === 99 ? "import" : "require")) ])); } } if (!attributes) { context.encounteredError = true; if (context.tracker.reportLikelyUnsafeImportRequiredError) { context.tracker.reportLikelyUnsafeImportRequiredError(oldSpecifier, unescapeLeadingUnderscores(symbol.escapedName)); } } } const lit = factory.createLiteralTypeNode(factory.createStringLiteral(specifier)); context.approximateLength += specifier.length + 10; if (!nonRootParts || isEntityName(nonRootParts)) { if (nonRootParts) { const lastId = isIdentifier(nonRootParts) ? nonRootParts : nonRootParts.right; setIdentifierTypeArguments(lastId, undefined); } return factory.createImportTypeNode(lit, attributes, nonRootParts, typeParameterNodes, isTypeOf); } else { const splitNode = getTopmostIndexedAccessType(nonRootParts); const qualifier = splitNode.objectType.typeName; return factory.createIndexedAccessTypeNode(factory.createImportTypeNode(lit, attributes, qualifier, typeParameterNodes, isTypeOf), splitNode.indexType); } } const entityName = createAccessFromSymbolChain(chain, chain.length - 1, 0); if (isIndexedAccessTypeNode(entityName)) { return entityName; } if (isTypeOf) { return factory.createTypeQueryNode(entityName); } else { const lastId = isIdentifier(entityName) ? entityName : entityName.right; const lastTypeArgs = getIdentifierTypeArguments(lastId); setIdentifierTypeArguments(lastId, undefined); return factory.createTypeReferenceNode(entityName, lastTypeArgs); } function createAccessFromSymbolChain(chain2, index, stopper) { const typeParameterNodes = index === chain2.length - 1 ? overrideTypeArguments : lookupTypeParameterNodes(chain2, index, context); const symbol2 = chain2[index]; const parent2 = chain2[index - 1]; let symbolName2; if (index === 0) { context.flags |= 16777216; symbolName2 = getNameOfSymbolAsWritten(symbol2, context); context.approximateLength += (symbolName2 ? symbolName2.length : 0) + 1; context.flags ^= 16777216; } else { if (parent2 && getExportsOfSymbol(parent2)) { const exports22 = getExportsOfSymbol(parent2); forEachEntry(exports22, (ex, name) => { if (getSymbolIfSameReference(ex, symbol2) && !isLateBoundName(name) && name !== "export=") { symbolName2 = unescapeLeadingUnderscores(name); return true; } }); } } if (symbolName2 === undefined) { const name = firstDefined(symbol2.declarations, getNameOfDeclaration); if (name && isComputedPropertyName(name) && isEntityName(name.expression)) { const LHS = createAccessFromSymbolChain(chain2, index - 1, stopper); if (isEntityName(LHS)) { return factory.createIndexedAccessTypeNode(factory.createParenthesizedType(factory.createTypeQueryNode(LHS)), factory.createTypeQueryNode(name.expression)); } return LHS; } symbolName2 = getNameOfSymbolAsWritten(symbol2, context); } context.approximateLength += symbolName2.length + 1; if (!(context.flags & 16) && parent2 && getMembersOfSymbol(parent2) && getMembersOfSymbol(parent2).get(symbol2.escapedName) && getSymbolIfSameReference(getMembersOfSymbol(parent2).get(symbol2.escapedName), symbol2)) { const LHS = createAccessFromSymbolChain(chain2, index - 1, stopper); if (isIndexedAccessTypeNode(LHS)) { return factory.createIndexedAccessTypeNode(LHS, factory.createLiteralTypeNode(factory.createStringLiteral(symbolName2))); } else { return factory.createIndexedAccessTypeNode(factory.createTypeReferenceNode(LHS, typeParameterNodes), factory.createLiteralTypeNode(factory.createStringLiteral(symbolName2))); } } const identifier = setEmitFlags(factory.createIdentifier(symbolName2), 16777216); if (typeParameterNodes) setIdentifierTypeArguments(identifier, factory.createNodeArray(typeParameterNodes)); identifier.symbol = symbol2; if (index > stopper) { const LHS = createAccessFromSymbolChain(chain2, index - 1, stopper); if (!isEntityName(LHS)) { return Debug.fail("Impossible construct - an export of an indexed access cannot be reachable"); } return factory.createQualifiedName(LHS, identifier); } return identifier; } } function typeParameterShadowsOtherTypeParameterInScope(escapedName, context, type) { const result = resolveName(context.enclosingDeclaration, escapedName, 788968, undefined, false); if (result && result.flags & 262144) { return result !== type.symbol; } return false; } function typeParameterToName(type, context) { var _a, _b, _c, _d; if (context.flags & 4 && context.typeParameterNames) { const cached = context.typeParameterNames.get(getTypeId(type)); if (cached) { return cached; } } let result = symbolToName(type.symbol, context, 788968, true); if (!(result.kind & 80)) { return factory.createIdentifier("(Missing type parameter)"); } const decl = (_b = (_a = type.symbol) == null ? undefined : _a.declarations) == null ? undefined : _b[0]; if (decl && isTypeParameterDeclaration(decl)) { result = setTextRange2(context, result, decl.name); } if (context.flags & 4) { const rawtext = result.escapedText; let i = ((_c = context.typeParameterNamesByTextNextNameCount) == null ? undefined : _c.get(rawtext)) || 0; let text = rawtext; while (((_d = context.typeParameterNamesByText) == null ? undefined : _d.has(text)) || typeParameterShadowsOtherTypeParameterInScope(text, context, type)) { i++; text = `${rawtext}_${i}`; } if (text !== rawtext) { const typeArguments = getIdentifierTypeArguments(result); result = factory.createIdentifier(text); setIdentifierTypeArguments(result, typeArguments); } if (context.mustCreateTypeParametersNamesLookups) { context.mustCreateTypeParametersNamesLookups = false; context.typeParameterNames = new Map(context.typeParameterNames); context.typeParameterNamesByTextNextNameCount = new Map(context.typeParameterNamesByTextNextNameCount); context.typeParameterNamesByText = new Set(context.typeParameterNamesByText); } context.typeParameterNamesByTextNextNameCount.set(rawtext, i); context.typeParameterNames.set(getTypeId(type), result); context.typeParameterNamesByText.add(text); } return result; } function symbolToName(symbol, context, meaning, expectsIdentifier) { const chain = lookupSymbolChain(symbol, context, meaning); if (expectsIdentifier && chain.length !== 1 && !context.encounteredError && !(context.flags & 65536)) { context.encounteredError = true; } return createEntityNameFromSymbolChain(chain, chain.length - 1); function createEntityNameFromSymbolChain(chain2, index) { const typeParameterNodes = lookupTypeParameterNodes(chain2, index, context); const symbol2 = chain2[index]; if (index === 0) { context.flags |= 16777216; } const symbolName2 = getNameOfSymbolAsWritten(symbol2, context); if (index === 0) { context.flags ^= 16777216; } const identifier = setEmitFlags(factory.createIdentifier(symbolName2), 16777216); if (typeParameterNodes) setIdentifierTypeArguments(identifier, factory.createNodeArray(typeParameterNodes)); identifier.symbol = symbol2; return index > 0 ? factory.createQualifiedName(createEntityNameFromSymbolChain(chain2, index - 1), identifier) : identifier; } } function symbolToExpression(symbol, context, meaning) { const chain = lookupSymbolChain(symbol, context, meaning); return createExpressionFromSymbolChain(chain, chain.length - 1); function createExpressionFromSymbolChain(chain2, index) { const typeParameterNodes = lookupTypeParameterNodes(chain2, index, context); const symbol2 = chain2[index]; if (index === 0) { context.flags |= 16777216; } let symbolName2 = getNameOfSymbolAsWritten(symbol2, context); if (index === 0) { context.flags ^= 16777216; } let firstChar = symbolName2.charCodeAt(0); if (isSingleOrDoubleQuote(firstChar) && some(symbol2.declarations, hasNonGlobalAugmentationExternalModuleSymbol)) { const specifier = getSpecifierForModuleSymbol(symbol2, context); context.approximateLength += 2 + specifier.length; return factory.createStringLiteral(specifier); } if (index === 0 || canUsePropertyAccess(symbolName2, languageVersion)) { const identifier = setEmitFlags(factory.createIdentifier(symbolName2), 16777216); if (typeParameterNodes) setIdentifierTypeArguments(identifier, factory.createNodeArray(typeParameterNodes)); identifier.symbol = symbol2; context.approximateLength += 1 + symbolName2.length; return index > 0 ? factory.createPropertyAccessExpression(createExpressionFromSymbolChain(chain2, index - 1), identifier) : identifier; } else { if (firstChar === 91) { symbolName2 = symbolName2.substring(1, symbolName2.length - 1); firstChar = symbolName2.charCodeAt(0); } let expression; if (isSingleOrDoubleQuote(firstChar) && !(symbol2.flags & 8)) { const literalText = stripQuotes(symbolName2).replace(/\\./g, (s) => s.substring(1)); context.approximateLength += literalText.length + 2; expression = factory.createStringLiteral(literalText, firstChar === 39); } else if ("" + +symbolName2 === symbolName2) { context.approximateLength += symbolName2.length; expression = factory.createNumericLiteral(+symbolName2); } if (!expression) { const identifier = setEmitFlags(factory.createIdentifier(symbolName2), 16777216); if (typeParameterNodes) setIdentifierTypeArguments(identifier, factory.createNodeArray(typeParameterNodes)); identifier.symbol = symbol2; context.approximateLength += symbolName2.length; expression = identifier; } context.approximateLength += 2; return factory.createElementAccessExpression(createExpressionFromSymbolChain(chain2, index - 1), expression); } } } function isStringNamed(d) { const name = getNameOfDeclaration(d); if (!name) { return false; } if (isComputedPropertyName(name)) { const type = checkExpression(name.expression); return !!(type.flags & 12583968); } if (isElementAccessExpression(name)) { const type = checkExpression(name.argumentExpression); return !!(type.flags & 12583968); } return isStringLiteral(name); } function isSingleQuotedStringNamed(d) { const name = getNameOfDeclaration(d); return !!(name && isStringLiteral(name) && (name.singleQuote || !nodeIsSynthesized(name) && startsWith(getTextOfNode(name, false), "'"))); } function getPropertyNameNodeForSymbol(symbol, context) { const hashPrivateName = getClonedHashPrivateName(symbol); if (hashPrivateName) { return hashPrivateName; } const stringNamed = !!length(symbol.declarations) && every(symbol.declarations, isStringNamed); const singleQuote = !!length(symbol.declarations) && every(symbol.declarations, isSingleQuotedStringNamed); const isMethod = !!(symbol.flags & 8192); const fromNameType = getPropertyNameNodeForSymbolFromNameType(symbol, context, singleQuote, stringNamed, isMethod); if (fromNameType) { return fromNameType; } const rawName = unescapeLeadingUnderscores(symbol.escapedName); return createPropertyNameNodeForIdentifierOrLiteral(rawName, getEmitScriptTarget(compilerOptions), singleQuote, stringNamed, isMethod); } function getPropertyNameNodeForSymbolFromNameType(symbol, context, singleQuote, stringNamed, isMethod) { const nameType = getSymbolLinks(symbol).nameType; if (nameType) { if (nameType.flags & 3072) { const name = "" + nameType.value; if (!isIdentifierText(name, getEmitScriptTarget(compilerOptions)) && (stringNamed || !isNumericLiteralName(name))) { return factory.createStringLiteral(name, !!singleQuote); } if (isNumericLiteralName(name) && startsWith(name, "-")) { return factory.createComputedPropertyName(factory.createPrefixUnaryExpression(41, factory.createNumericLiteral(-name))); } return createPropertyNameNodeForIdentifierOrLiteral(name, getEmitScriptTarget(compilerOptions), singleQuote, stringNamed, isMethod); } if (nameType.flags & 16384) { return factory.createComputedPropertyName(symbolToExpression(nameType.symbol, context, 111551)); } } } function cloneNodeBuilderContext(context) { const oldMustCreateTypeParameterSymbolList = context.mustCreateTypeParameterSymbolList; const oldMustCreateTypeParametersNamesLookups = context.mustCreateTypeParametersNamesLookups; context.mustCreateTypeParameterSymbolList = true; context.mustCreateTypeParametersNamesLookups = true; const oldTypeParameterNames = context.typeParameterNames; const oldTypeParameterNamesByText = context.typeParameterNamesByText; const oldTypeParameterNamesByTextNextNameCount = context.typeParameterNamesByTextNextNameCount; const oldTypeParameterSymbolList = context.typeParameterSymbolList; return () => { context.typeParameterNames = oldTypeParameterNames; context.typeParameterNamesByText = oldTypeParameterNamesByText; context.typeParameterNamesByTextNextNameCount = oldTypeParameterNamesByTextNextNameCount; context.typeParameterSymbolList = oldTypeParameterSymbolList; context.mustCreateTypeParameterSymbolList = oldMustCreateTypeParameterSymbolList; context.mustCreateTypeParametersNamesLookups = oldMustCreateTypeParametersNamesLookups; }; } function getDeclarationWithTypeAnnotation(symbol, enclosingDeclaration) { return symbol.declarations && find(symbol.declarations, (s) => !!getNonlocalEffectiveTypeAnnotationNode(s) && (!enclosingDeclaration || !!findAncestor(s, (n) => n === enclosingDeclaration))); } function existingTypeNodeIsNotReferenceOrIsReferenceWithCompatibleTypeArgumentCount(existing, type) { if (!(getObjectFlags(type) & 4)) return true; if (!isTypeReferenceNode(existing)) return true; getTypeFromTypeReference(existing); const symbol = getNodeLinks(existing).resolvedSymbol; const existingTarget = symbol && getDeclaredTypeOfSymbol(symbol); if (!existingTarget || existingTarget !== type.target) return true; return length(existing.typeArguments) >= getMinTypeArgumentCount(type.target.typeParameters); } function getEnclosingDeclarationIgnoringFakeScope(enclosingDeclaration) { while (getNodeLinks(enclosingDeclaration).fakeScopeForSignatureDeclaration) { enclosingDeclaration = enclosingDeclaration.parent; } return enclosingDeclaration; } function serializeInferredTypeForDeclaration(symbol, context, type) { if (type.flags & 16384 && type.symbol === symbol && (!context.enclosingDeclaration || some(symbol.declarations, (d) => getSourceFileOfNode(d) === context.enclosingFile))) { context.flags |= 1048576; } const result = typeToTypeNodeHelper(type, context); return result; } function serializeTypeForDeclaration(context, declaration, type, symbol) { var _a; let result; const addUndefinedForParameter = declaration && (isParameter(declaration) || isJSDocParameterTag(declaration)) && requiresAddingImplicitUndefined(declaration, context.enclosingDeclaration); const decl = declaration ?? symbol.valueDeclaration ?? getDeclarationWithTypeAnnotation(symbol) ?? ((_a = symbol.declarations) == null ? undefined : _a[0]); if (!canPossiblyExpandType(type, context) && decl) { const restore = addSymbolTypeToContext(context, symbol, type); if (isAccessor(decl)) { result = syntacticNodeBuilder.serializeTypeOfAccessor(decl, symbol, context); } else if (hasInferredType(decl) && !nodeIsSynthesized(decl) && !(getObjectFlags(type) & 196608)) { result = syntacticNodeBuilder.serializeTypeOfDeclaration(decl, symbol, context); } restore(); } if (!result) { if (addUndefinedForParameter) { type = getOptionalType(type); } result = serializeInferredTypeForDeclaration(symbol, context, type); } return result ?? factory.createKeywordTypeNode(133); } function typeNodeIsEquivalentToType(annotatedDeclaration, type, typeFromTypeNode) { if (typeFromTypeNode === type) { return true; } if (!annotatedDeclaration) { return false; } if ((isPropertySignature(annotatedDeclaration) || isPropertyDeclaration(annotatedDeclaration)) && annotatedDeclaration.questionToken) { return getTypeWithFacts(type, 524288) === typeFromTypeNode; } if (isParameter(annotatedDeclaration) && hasEffectiveQuestionToken(annotatedDeclaration)) { return getTypeWithFacts(type, 524288) === typeFromTypeNode; } return false; } function serializeReturnTypeForSignature(context, signature) { const suppressAny = context.flags & 256; const restoreFlags = saveRestoreFlags(context); if (suppressAny) context.flags &= ~256; let returnTypeNode; const returnType = getReturnTypeOfSignature(signature); if (!(suppressAny && isTypeAny(returnType))) { if (signature.declaration && !nodeIsSynthesized(signature.declaration) && !canPossiblyExpandType(returnType, context)) { const declarationSymbol = getSymbolOfDeclaration(signature.declaration); const restore = addSymbolTypeToContext(context, declarationSymbol, returnType); returnTypeNode = syntacticNodeBuilder.serializeReturnTypeForSignature(signature.declaration, declarationSymbol, context); restore(); } if (!returnTypeNode) { returnTypeNode = serializeInferredReturnTypeForSignature(context, signature, returnType); } } if (!returnTypeNode && !suppressAny) { returnTypeNode = factory.createKeywordTypeNode(133); } restoreFlags(); return returnTypeNode; } function serializeInferredReturnTypeForSignature(context, signature, returnType) { const oldSuppressReportInferenceFallback = context.suppressReportInferenceFallback; context.suppressReportInferenceFallback = true; const typePredicate = getTypePredicateOfSignature(signature); const returnTypeNode = typePredicate ? typePredicateToTypePredicateNodeHelper(context.mapper ? instantiateTypePredicate(typePredicate, context.mapper) : typePredicate, context) : typeToTypeNodeHelper(returnType, context); context.suppressReportInferenceFallback = oldSuppressReportInferenceFallback; return returnTypeNode; } function trackExistingEntityName(node, context, enclosingDeclaration = context.enclosingDeclaration) { let introducesError = false; const leftmost = getFirstIdentifier(node); if (isInJSFile(node) && (isExportsIdentifier(leftmost) || isModuleExportsAccessExpression(leftmost.parent) || isQualifiedName(leftmost.parent) && isModuleIdentifier(leftmost.parent.left) && isExportsIdentifier(leftmost.parent.right))) { introducesError = true; return { introducesError, node }; } const meaning = getMeaningOfEntityNameReference(node); let sym; if (isThisIdentifier(leftmost)) { sym = getSymbolOfDeclaration(getThisContainer(leftmost, false, false)); if (isSymbolAccessible(sym, leftmost, meaning, false).accessibility !== 0) { introducesError = true; context.tracker.reportInaccessibleThisError(); } return { introducesError, node: attachSymbolToLeftmostIdentifier(node) }; } sym = resolveEntityName(leftmost, meaning, true, true); if (context.enclosingDeclaration && !(sym && sym.flags & 262144)) { sym = getExportSymbolOfValueSymbolIfExported(sym); const symAtLocation = resolveEntityName(leftmost, meaning, true, true, context.enclosingDeclaration); if (symAtLocation === unknownSymbol || symAtLocation === undefined && sym !== undefined || symAtLocation && sym && !getSymbolIfSameReference(getExportSymbolOfValueSymbolIfExported(symAtLocation), sym)) { if (symAtLocation !== unknownSymbol) { context.tracker.reportInferenceFallback(node); } introducesError = true; return { introducesError, node, sym }; } else { sym = symAtLocation; } } if (sym) { if (sym.flags & 1 && sym.valueDeclaration) { if (isPartOfParameterDeclaration(sym.valueDeclaration) || isJSDocParameterTag(sym.valueDeclaration)) { return { introducesError, node: attachSymbolToLeftmostIdentifier(node) }; } } if (!(sym.flags & 262144) && !isDeclarationName(node) && isSymbolAccessible(sym, enclosingDeclaration, meaning, false).accessibility !== 0) { context.tracker.reportInferenceFallback(node); introducesError = true; } else { context.tracker.trackSymbol(sym, enclosingDeclaration, meaning); } return { introducesError, node: attachSymbolToLeftmostIdentifier(node) }; } return { introducesError, node }; function attachSymbolToLeftmostIdentifier(node2) { if (node2 === leftmost) { const type = getDeclaredTypeOfSymbol(sym); const name = sym.flags & 262144 ? typeParameterToName(type, context) : factory.cloneNode(node2); name.symbol = sym; return setTextRange2(context, setEmitFlags(name, 16777216), node2); } const updated = visitEachChild(node2, (c) => attachSymbolToLeftmostIdentifier(c), undefined); return setTextRange2(context, updated, node2); } } function serializeTypeName(context, node, isTypeOf, typeArguments) { const meaning = isTypeOf ? 111551 : 788968; const symbol = resolveEntityName(node, meaning, true); if (!symbol) return; const resolvedSymbol = symbol.flags & 2097152 ? resolveAlias(symbol) : symbol; if (isSymbolAccessible(symbol, context.enclosingDeclaration, meaning, false).accessibility !== 0) return; return symbolToTypeNode(resolvedSymbol, context, meaning, typeArguments); } function canReuseTypeNode(context, existing) { const type = getTypeFromTypeNode2(context, existing, true); if (!type) { return false; } if (isInJSFile(existing)) { if (isLiteralImportTypeNode(existing)) { getTypeFromImportTypeNode(existing); const nodeSymbol = getNodeLinks(existing).resolvedSymbol; return !nodeSymbol || !(!existing.isTypeOf && !(nodeSymbol.flags & 788968) || !(length(existing.typeArguments) >= getMinTypeArgumentCount(getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(nodeSymbol)))); } } if (isTypeReferenceNode(existing)) { if (isConstTypeReference(existing)) return false; const symbol = getNodeLinks(existing).resolvedSymbol; if (!symbol) return false; if (symbol.flags & 262144) { const declaredType = getDeclaredTypeOfSymbol(symbol); return !(context.mapper && getMappedType(declaredType, context.mapper) !== declaredType); } if (isInJSDoc(existing)) { return existingTypeNodeIsNotReferenceOrIsReferenceWithCompatibleTypeArgumentCount(existing, type) && !getIntendedTypeFromJSDocTypeReference(existing) && !!(symbol.flags & 788968); } } if (isTypeOperatorNode(existing) && existing.operator === 158 && existing.type.kind === 155) { const effectiveEnclosingContext = context.enclosingDeclaration && getEnclosingDeclarationIgnoringFakeScope(context.enclosingDeclaration); return !!findAncestor(existing, (n) => n === effectiveEnclosingContext); } return true; } function serializeExistingTypeNode(context, typeNode, addUndefined) { const type = getTypeFromTypeNode2(context, typeNode); if (addUndefined && !someType(type, (t) => !!(t.flags & 4)) && canReuseTypeNode(context, typeNode)) { const clone2 = syntacticNodeBuilder.tryReuseExistingTypeNode(context, typeNode); if (clone2) { return factory.createUnionTypeNode([clone2, factory.createKeywordTypeNode(157)]); } } return typeToTypeNodeHelper(type, context); } function symbolTableToDeclarationStatements(symbolTable, context) { var _a; const serializePropertySymbolForClass = makeSerializePropertySymbol(factory.createPropertyDeclaration, 175, true); const serializePropertySymbolForInterfaceWorker = makeSerializePropertySymbol((mods, name, question, type) => factory.createPropertySignature(mods, name, question, type), 174, false); const enclosingDeclaration = context.enclosingDeclaration; let results = []; const visitedSymbols = /* @__PURE__ */ new Set; const deferredPrivatesStack = []; const oldcontext = context; context = { ...oldcontext, usedSymbolNames: new Set(oldcontext.usedSymbolNames), remappedSymbolNames: /* @__PURE__ */ new Map, remappedSymbolReferences: new Map((_a = oldcontext.remappedSymbolReferences) == null ? undefined : _a.entries()), tracker: undefined }; const tracker = { ...oldcontext.tracker.inner, trackSymbol: (sym, decl, meaning) => { var _a2, _b; if ((_a2 = context.remappedSymbolNames) == null ? undefined : _a2.has(getSymbolId(sym))) return false; const accessibleResult = isSymbolAccessible(sym, decl, meaning, false); if (accessibleResult.accessibility === 0) { const chain = lookupSymbolChainWorker(sym, context, meaning); if (!(sym.flags & 4)) { const root = chain[0]; const contextFile = getSourceFileOfNode(oldcontext.enclosingDeclaration); if (some(root.declarations, (d) => getSourceFileOfNode(d) === contextFile)) { includePrivateSymbol(root); } } } else if ((_b = oldcontext.tracker.inner) == null ? undefined : _b.trackSymbol) { return oldcontext.tracker.inner.trackSymbol(sym, decl, meaning); } return false; } }; context.tracker = new SymbolTrackerImpl(context, tracker, oldcontext.tracker.moduleResolverHost); forEachEntry(symbolTable, (symbol, name) => { const baseName = unescapeLeadingUnderscores(name); getInternalSymbolName(symbol, baseName); }); let addingDeclare = !context.bundled; const exportEquals = symbolTable.get("export="); if (exportEquals && symbolTable.size > 1 && exportEquals.flags & (2097152 | 1536)) { symbolTable = createSymbolTable(); symbolTable.set("export=", exportEquals); } visitSymbolTable(symbolTable); return mergeRedundantStatements(results); function isIdentifierAndNotUndefined(node) { return !!node && node.kind === 80; } function getNamesOfDeclaration(statement) { if (isVariableStatement(statement)) { return filter(map(statement.declarationList.declarations, getNameOfDeclaration), isIdentifierAndNotUndefined); } return filter([getNameOfDeclaration(statement)], isIdentifierAndNotUndefined); } function flattenExportAssignedNamespace(statements) { const exportAssignment = find(statements, isExportAssignment); const nsIndex = findIndex(statements, isModuleDeclaration); let ns = nsIndex !== -1 ? statements[nsIndex] : undefined; if (ns && exportAssignment && exportAssignment.isExportEquals && isIdentifier(exportAssignment.expression) && isIdentifier(ns.name) && idText(ns.name) === idText(exportAssignment.expression) && ns.body && isModuleBlock(ns.body)) { const excessExports = filter(statements, (s) => !!(getEffectiveModifierFlags(s) & 32)); const name = ns.name; let body = ns.body; if (length(excessExports)) { ns = factory.updateModuleDeclaration(ns, ns.modifiers, ns.name, body = factory.updateModuleBlock(body, factory.createNodeArray([ ...ns.body.statements, factory.createExportDeclaration(undefined, false, factory.createNamedExports(map(flatMap(excessExports, (e) => getNamesOfDeclaration(e)), (id) => factory.createExportSpecifier(false, undefined, id))), undefined) ]))); statements = [...statements.slice(0, nsIndex), ns, ...statements.slice(nsIndex + 1)]; } if (!find(statements, (s) => s !== ns && nodeHasName(s, name))) { results = []; const mixinExportFlag = !some(body.statements, (s) => hasSyntacticModifier(s, 32) || isExportAssignment(s) || isExportDeclaration(s)); forEach(body.statements, (s) => { addResult(s, mixinExportFlag ? 32 : 0); }); statements = [...filter(statements, (s) => s !== ns && s !== exportAssignment), ...results]; } } return statements; } function mergeExportDeclarations(statements) { const exports22 = filter(statements, (d) => isExportDeclaration(d) && !d.moduleSpecifier && !!d.exportClause && isNamedExports(d.exportClause)); if (length(exports22) > 1) { const nonExports = filter(statements, (d) => !isExportDeclaration(d) || !!d.moduleSpecifier || !d.exportClause); statements = [ ...nonExports, factory.createExportDeclaration(undefined, false, factory.createNamedExports(flatMap(exports22, (e) => cast(e.exportClause, isNamedExports).elements)), undefined) ]; } const reexports = filter(statements, (d) => isExportDeclaration(d) && !!d.moduleSpecifier && !!d.exportClause && isNamedExports(d.exportClause)); if (length(reexports) > 1) { const groups = group(reexports, (decl) => isStringLiteral(decl.moduleSpecifier) ? ">" + decl.moduleSpecifier.text : ">"); if (groups.length !== reexports.length) { for (const group2 of groups) { if (group2.length > 1) { statements = [ ...filter(statements, (s) => !group2.includes(s)), factory.createExportDeclaration(undefined, false, factory.createNamedExports(flatMap(group2, (e) => cast(e.exportClause, isNamedExports).elements)), group2[0].moduleSpecifier) ]; } } } } return statements; } function inlineExportModifiers(statements) { const index = findIndex(statements, (d) => isExportDeclaration(d) && !d.moduleSpecifier && !d.attributes && !!d.exportClause && isNamedExports(d.exportClause)); if (index >= 0) { const exportDecl = statements[index]; const replacements = mapDefined(exportDecl.exportClause.elements, (e) => { if (!e.propertyName && e.name.kind !== 11) { const name = e.name; const indices = indicesOf(statements); const associatedIndices = filter(indices, (i) => nodeHasName(statements[i], name)); if (length(associatedIndices) && every(associatedIndices, (i) => canHaveExportModifier(statements[i]))) { for (const index2 of associatedIndices) { statements[index2] = addExportModifier(statements[index2]); } return; } } return e; }); if (!length(replacements)) { orderedRemoveItemAt(statements, index); } else { statements[index] = factory.updateExportDeclaration(exportDecl, exportDecl.modifiers, exportDecl.isTypeOnly, factory.updateNamedExports(exportDecl.exportClause, replacements), exportDecl.moduleSpecifier, exportDecl.attributes); } } return statements; } function mergeRedundantStatements(statements) { statements = flattenExportAssignedNamespace(statements); statements = mergeExportDeclarations(statements); statements = inlineExportModifiers(statements); if (enclosingDeclaration && (isSourceFile(enclosingDeclaration) && isExternalOrCommonJsModule(enclosingDeclaration) || isModuleDeclaration(enclosingDeclaration)) && (!some(statements, isExternalModuleIndicator) || !hasScopeMarker(statements) && some(statements, needsScopeMarker))) { statements.push(createEmptyExports(factory)); } return statements; } function addExportModifier(node) { const flags = (getEffectiveModifierFlags(node) | 32) & ~128; return factory.replaceModifiers(node, flags); } function removeExportModifier(node) { const flags = getEffectiveModifierFlags(node) & ~32; return factory.replaceModifiers(node, flags); } function visitSymbolTable(symbolTable2, suppressNewPrivateContext, propertyAsAlias) { if (!suppressNewPrivateContext) { deferredPrivatesStack.push(/* @__PURE__ */ new Map); } let i = 0; const symbols = Array.from(symbolTable2.values()); for (const symbol of symbols) { i++; if (checkTruncationLengthIfExpanding(context) && i + 2 < symbolTable2.size - 1) { context.out.truncated = true; results.push(createTruncationStatement(`... (${symbolTable2.size - i} more ...)`)); serializeSymbol(symbols[symbols.length - 1], false, !!propertyAsAlias); break; } serializeSymbol(symbol, false, !!propertyAsAlias); } if (!suppressNewPrivateContext) { deferredPrivatesStack[deferredPrivatesStack.length - 1].forEach((symbol) => { serializeSymbol(symbol, true, !!propertyAsAlias); }); deferredPrivatesStack.pop(); } } function serializeSymbol(symbol, isPrivate, propertyAsAlias) { getPropertiesOfType(getTypeOfSymbol(symbol)); const visitedSym = getMergedSymbol(symbol); if (visitedSymbols.has(getSymbolId(visitedSym))) { return; } visitedSymbols.add(getSymbolId(visitedSym)); const skipMembershipCheck = !isPrivate; if (skipMembershipCheck || !!length(symbol.declarations) && some(symbol.declarations, (d) => !!findAncestor(d, (n) => n === enclosingDeclaration))) { const scopeCleanup = cloneNodeBuilderContext(context); context.tracker.pushErrorFallbackNode(find(symbol.declarations, (d) => getSourceFileOfNode(d) === context.enclosingFile)); serializeSymbolWorker(symbol, isPrivate, propertyAsAlias); context.tracker.popErrorFallbackNode(); scopeCleanup(); } } function serializeSymbolWorker(symbol, isPrivate, propertyAsAlias, escapedSymbolName = symbol.escapedName) { var _a2, _b, _c, _d, _e, _f, _g; const symbolName2 = unescapeLeadingUnderscores(escapedSymbolName); const isDefault = escapedSymbolName === "default"; if (isPrivate && !(context.flags & 131072) && isStringANonContextualKeyword(symbolName2) && !isDefault) { context.encounteredError = true; return; } let needsPostExportDefault = isDefault && !!(symbol.flags & -113 || symbol.flags & 16 && length(getPropertiesOfType(getTypeOfSymbol(symbol)))) && !(symbol.flags & 2097152); let needsExportDeclaration = !needsPostExportDefault && !isPrivate && isStringANonContextualKeyword(symbolName2) && !isDefault; if (needsPostExportDefault || needsExportDeclaration) { isPrivate = true; } const modifierFlags = (!isPrivate ? 32 : 0) | (isDefault && !needsPostExportDefault ? 2048 : 0); const isConstMergedWithNS = symbol.flags & 1536 && symbol.flags & (2 | 1 | 4) && escapedSymbolName !== "export="; const isConstMergedWithNSPrintableAsSignatureMerge = isConstMergedWithNS && isTypeRepresentableAsFunctionNamespaceMerge(getTypeOfSymbol(symbol), symbol); if (symbol.flags & (16 | 8192) || isConstMergedWithNSPrintableAsSignatureMerge) { serializeAsFunctionNamespaceMerge(getTypeOfSymbol(symbol), symbol, getInternalSymbolName(symbol, symbolName2), modifierFlags); } if (symbol.flags & 524288) { serializeTypeAlias(symbol, symbolName2, modifierFlags); } if (symbol.flags & (2 | 1 | 4 | 98304) && escapedSymbolName !== "export=" && !(symbol.flags & 4194304) && !(symbol.flags & 32) && !(symbol.flags & 8192) && !isConstMergedWithNSPrintableAsSignatureMerge) { if (propertyAsAlias) { const createdExport = serializeMaybeAliasAssignment(symbol); if (createdExport) { needsExportDeclaration = false; needsPostExportDefault = false; } } else { const type = getTypeOfSymbol(symbol); const localName = getInternalSymbolName(symbol, symbolName2); if (type.symbol && type.symbol !== symbol && type.symbol.flags & 16 && some(type.symbol.declarations, isFunctionExpressionOrArrowFunction) && (((_a2 = type.symbol.members) == null ? undefined : _a2.size) || ((_b = type.symbol.exports) == null ? undefined : _b.size))) { if (!context.remappedSymbolReferences) { context.remappedSymbolReferences = /* @__PURE__ */ new Map; } context.remappedSymbolReferences.set(getSymbolId(type.symbol), symbol); serializeSymbolWorker(type.symbol, isPrivate, propertyAsAlias, escapedSymbolName); context.remappedSymbolReferences.delete(getSymbolId(type.symbol)); } else if (!(symbol.flags & 16) && isTypeRepresentableAsFunctionNamespaceMerge(type, symbol)) { serializeAsFunctionNamespaceMerge(type, symbol, localName, modifierFlags); } else { const flags = !(symbol.flags & 2) ? ((_c = symbol.parent) == null ? undefined : _c.valueDeclaration) && isSourceFile((_d = symbol.parent) == null ? undefined : _d.valueDeclaration) ? 2 : undefined : isConstantVariable(symbol) ? 2 : 1; const name = needsPostExportDefault || !(symbol.flags & 4) ? localName : getUnusedName(localName, symbol); let textRange = symbol.declarations && find(symbol.declarations, (d) => isVariableDeclaration(d)); if (textRange && isVariableDeclarationList(textRange.parent) && textRange.parent.declarations.length === 1) { textRange = textRange.parent.parent; } const propertyAccessRequire = (_e = symbol.declarations) == null ? undefined : _e.find(isPropertyAccessExpression); if (propertyAccessRequire && isBinaryExpression(propertyAccessRequire.parent) && isIdentifier(propertyAccessRequire.parent.right) && ((_f = type.symbol) == null ? undefined : _f.valueDeclaration) && isSourceFile(type.symbol.valueDeclaration)) { const alias = localName === propertyAccessRequire.parent.right.escapedText ? undefined : propertyAccessRequire.parent.right; context.approximateLength += 12 + (((_g = alias == null ? undefined : alias.escapedText) == null ? undefined : _g.length) ?? 0); addResult(factory.createExportDeclaration(undefined, false, factory.createNamedExports([factory.createExportSpecifier(false, alias, localName)])), 0); context.tracker.trackSymbol(type.symbol, context.enclosingDeclaration, 111551); } else { const statement = setTextRange2(context, factory.createVariableStatement(undefined, factory.createVariableDeclarationList([ factory.createVariableDeclaration(name, undefined, serializeTypeForDeclaration(context, undefined, type, symbol)) ], flags)), textRange); context.approximateLength += 7 + name.length; addResult(statement, name !== localName ? modifierFlags & ~32 : modifierFlags); if (name !== localName && !isPrivate) { context.approximateLength += 16 + name.length + localName.length; addResult(factory.createExportDeclaration(undefined, false, factory.createNamedExports([factory.createExportSpecifier(false, name, localName)])), 0); needsExportDeclaration = false; needsPostExportDefault = false; } } } } } if (symbol.flags & 384) { serializeEnum(symbol, symbolName2, modifierFlags); } if (symbol.flags & 32) { if (symbol.flags & 4 && symbol.valueDeclaration && isBinaryExpression(symbol.valueDeclaration.parent) && isClassExpression(symbol.valueDeclaration.parent.right)) { serializeAsAlias(symbol, getInternalSymbolName(symbol, symbolName2), modifierFlags); } else { serializeAsClass(symbol, getInternalSymbolName(symbol, symbolName2), modifierFlags); } } if (symbol.flags & (512 | 1024) && (!isConstMergedWithNS || isTypeOnlyNamespace(symbol)) || isConstMergedWithNSPrintableAsSignatureMerge) { serializeModule(symbol, symbolName2, modifierFlags); } if (symbol.flags & 64 && !(symbol.flags & 32)) { serializeInterface(symbol, symbolName2, modifierFlags); } if (symbol.flags & 2097152) { serializeAsAlias(symbol, getInternalSymbolName(symbol, symbolName2), modifierFlags); } if (symbol.flags & 4 && symbol.escapedName === "export=") { serializeMaybeAliasAssignment(symbol); } if (symbol.flags & 8388608) { if (symbol.declarations) { for (const node of symbol.declarations) { const resolvedModule = resolveExternalModuleName(node, node.moduleSpecifier); if (!resolvedModule) continue; const isTypeOnly = node.isTypeOnly; const specifier = getSpecifierForModuleSymbol(resolvedModule, context); context.approximateLength += 17 + specifier.length; addResult(factory.createExportDeclaration(undefined, isTypeOnly, undefined, factory.createStringLiteral(specifier)), 0); } } } if (needsPostExportDefault) { const internalSymbolName = getInternalSymbolName(symbol, symbolName2); context.approximateLength += 16 + internalSymbolName.length; addResult(factory.createExportAssignment(undefined, false, factory.createIdentifier(internalSymbolName)), 0); } else if (needsExportDeclaration) { const internalSymbolName = getInternalSymbolName(symbol, symbolName2); context.approximateLength += 22 + symbolName2.length + internalSymbolName.length; addResult(factory.createExportDeclaration(undefined, false, factory.createNamedExports([factory.createExportSpecifier(false, internalSymbolName, symbolName2)])), 0); } } function includePrivateSymbol(symbol) { if (some(symbol.declarations, isPartOfParameterDeclaration)) return; Debug.assertIsDefined(deferredPrivatesStack[deferredPrivatesStack.length - 1]); getUnusedName(unescapeLeadingUnderscores(symbol.escapedName), symbol); const isExternalImportAlias = !!(symbol.flags & 2097152) && !some(symbol.declarations, (d) => !!findAncestor(d, isExportDeclaration) || isNamespaceExport(d) || isImportEqualsDeclaration(d) && !isExternalModuleReference(d.moduleReference)); deferredPrivatesStack[isExternalImportAlias ? 0 : deferredPrivatesStack.length - 1].set(getSymbolId(symbol), symbol); } function isExportingScope(enclosingDeclaration2) { return isSourceFile(enclosingDeclaration2) && (isExternalOrCommonJsModule(enclosingDeclaration2) || isJsonSourceFile(enclosingDeclaration2)) || isAmbientModule(enclosingDeclaration2) && !isGlobalScopeAugmentation(enclosingDeclaration2); } function addResult(node, additionalModifierFlags) { if (canHaveModifiers(node)) { const oldModifierFlags = getEffectiveModifierFlags(node); let newModifierFlags = 0; const enclosingDeclaration2 = context.enclosingDeclaration && (isJSDocTypeAlias(context.enclosingDeclaration) ? getSourceFileOfNode(context.enclosingDeclaration) : context.enclosingDeclaration); if (additionalModifierFlags & 32 && enclosingDeclaration2 && (isExportingScope(enclosingDeclaration2) || isModuleDeclaration(enclosingDeclaration2)) && canHaveExportModifier(node)) { newModifierFlags |= 32; } if (addingDeclare && !(newModifierFlags & 32) && (!enclosingDeclaration2 || !(enclosingDeclaration2.flags & 33554432)) && (isEnumDeclaration(node) || isVariableStatement(node) || isFunctionDeclaration(node) || isClassDeclaration(node) || isModuleDeclaration(node))) { newModifierFlags |= 128; } if (additionalModifierFlags & 2048 && (isClassDeclaration(node) || isInterfaceDeclaration(node) || isFunctionDeclaration(node))) { newModifierFlags |= 2048; } if (newModifierFlags) { node = factory.replaceModifiers(node, newModifierFlags | oldModifierFlags); } context.approximateLength += modifiersLength(newModifierFlags | oldModifierFlags); } results.push(node); } function serializeTypeAlias(symbol, symbolName2, modifierFlags) { var _a2; const aliasType = getDeclaredTypeOfTypeAlias(symbol); const typeParams = getSymbolLinks(symbol).typeParameters; const typeParamDecls = map(typeParams, (p) => typeParameterToDeclaration(p, context)); const jsdocAliasDecl = (_a2 = symbol.declarations) == null ? undefined : _a2.find(isJSDocTypeAlias); const commentText = getTextOfJSDocComment(jsdocAliasDecl ? jsdocAliasDecl.comment || jsdocAliasDecl.parent.comment : undefined); const restoreFlags = saveRestoreFlags(context); context.flags |= 8388608; const oldEnclosingDecl = context.enclosingDeclaration; context.enclosingDeclaration = jsdocAliasDecl; const typeNode = jsdocAliasDecl && jsdocAliasDecl.typeExpression && isJSDocTypeExpression(jsdocAliasDecl.typeExpression) && syntacticNodeBuilder.tryReuseExistingTypeNode(context, jsdocAliasDecl.typeExpression.type) || typeToTypeNodeHelper(aliasType, context); const internalSymbolName = getInternalSymbolName(symbol, symbolName2); context.approximateLength += 8 + ((commentText == null ? undefined : commentText.length) ?? 0) + internalSymbolName.length; addResult(setSyntheticLeadingComments(factory.createTypeAliasDeclaration(undefined, internalSymbolName, typeParamDecls, typeNode), !commentText ? [] : [{ kind: 3, text: `* * ` + commentText.replace(/\n/g, ` * `) + ` `, pos: -1, end: -1, hasTrailingNewLine: true }]), modifierFlags); restoreFlags(); context.enclosingDeclaration = oldEnclosingDecl; } function serializeInterface(symbol, symbolName2, modifierFlags) { const internalSymbolName = getInternalSymbolName(symbol, symbolName2); context.approximateLength += 14 + internalSymbolName.length; const interfaceType = getDeclaredTypeOfClassOrInterface(symbol); const localParams = getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(symbol); const typeParamDecls = map(localParams, (p) => typeParameterToDeclaration(p, context)); const baseTypes = getBaseTypes(interfaceType); const baseType = length(baseTypes) ? getIntersectionType(baseTypes) : undefined; const members = serializePropertySymbolsForClassOrInterface(getPropertiesOfType(interfaceType), false, baseType); const callSignatures = serializeSignatures(0, interfaceType, baseType, 180); const constructSignatures = serializeSignatures(1, interfaceType, baseType, 181); const indexSignatures = serializeIndexSignatures(interfaceType, baseType); const heritageClauses = !length(baseTypes) ? undefined : [factory.createHeritageClause(96, mapDefined(baseTypes, (b) => trySerializeAsTypeReference(b, 111551)))]; addResult(factory.createInterfaceDeclaration(undefined, internalSymbolName, typeParamDecls, heritageClauses, [...indexSignatures, ...constructSignatures, ...callSignatures, ...members]), modifierFlags); } function serializePropertySymbolsForClassOrInterface(props, isClass, baseType, isStatic2) { const elements = []; let i = 0; for (const prop of props) { i++; if (checkTruncationLengthIfExpanding(context) && i + 2 < props.length - 1) { context.out.truncated = true; const placeholder = createTruncationProperty(`... ${props.length - i} more ... `, isClass); elements.push(placeholder); const result2 = isClass ? serializePropertySymbolForClass(props[props.length - 1], isStatic2, baseType) : serializePropertySymbolForInterface(props[props.length - 1], baseType); if (isArray(result2)) { elements.push(...result2); } else { elements.push(result2); } break; } context.approximateLength += 1; const result = isClass ? serializePropertySymbolForClass(prop, isStatic2, baseType) : serializePropertySymbolForInterface(prop, baseType); if (isArray(result)) { elements.push(...result); } else { elements.push(result); } } return elements; } function createTruncationProperty(dotDotDotText, isClass) { if (context.flags & 1) { return addSyntheticLeadingComment(factory.createNotEmittedTypeElement(), 3, dotDotDotText); } return isClass ? factory.createPropertyDeclaration(undefined, dotDotDotText, undefined, undefined, undefined) : factory.createPropertySignature(undefined, dotDotDotText, undefined, undefined); } function getNamespaceMembersForSerialization(symbol) { let exports22 = arrayFrom(getExportsOfSymbol(symbol).values()); const merged = getMergedSymbol(symbol); if (merged !== symbol) { const membersSet = new Set(exports22); for (const exported of getExportsOfSymbol(merged).values()) { if (!(getSymbolFlags(resolveSymbol(exported)) & 111551)) { membersSet.add(exported); } } exports22 = arrayFrom(membersSet); } return filter(exports22, (m) => isNamespaceMember(m) && isIdentifierText(m.escapedName, 99)); } function isTypeOnlyNamespace(symbol) { return every(getNamespaceMembersForSerialization(symbol), (m) => !(getSymbolFlags(resolveSymbol(m)) & 111551)); } function serializeModule(symbol, symbolName2, modifierFlags) { const members = getNamespaceMembersForSerialization(symbol); const expanding = isExpanding(context); const locationMap = arrayToMultiMap(members, (m) => m.parent && m.parent === symbol || expanding ? "real" : "merged"); const realMembers = locationMap.get("real") || emptyArray; const mergedMembers = locationMap.get("merged") || emptyArray; if (length(realMembers) || expanding) { let localName; if (expanding) { const oldFlags = context.flags; context.flags |= 512 | 2; localName = symbolToNode(symbol, context, -1); context.flags = oldFlags; } else { const localText = getInternalSymbolName(symbol, symbolName2); localName = factory.createIdentifier(localText); context.approximateLength += localText.length; } serializeAsNamespaceDeclaration(realMembers, localName, modifierFlags, !!(symbol.flags & (16 | 67108864))); } if (length(mergedMembers)) { const containingFile = getSourceFileOfNode(context.enclosingDeclaration); const localName = getInternalSymbolName(symbol, symbolName2); const nsBody = factory.createModuleBlock([factory.createExportDeclaration(undefined, false, factory.createNamedExports(mapDefined(filter(mergedMembers, (n) => n.escapedName !== "export="), (s) => { var _a2, _b; const name = unescapeLeadingUnderscores(s.escapedName); const localName2 = getInternalSymbolName(s, name); const aliasDecl = s.declarations && getDeclarationOfAliasSymbol(s); if (containingFile && (aliasDecl ? containingFile !== getSourceFileOfNode(aliasDecl) : !some(s.declarations, (d) => getSourceFileOfNode(d) === containingFile))) { (_b = (_a2 = context.tracker) == null ? undefined : _a2.reportNonlocalAugmentation) == null || _b.call(_a2, containingFile, symbol, s); return; } const target = aliasDecl && getTargetOfAliasDeclaration(aliasDecl, true); includePrivateSymbol(target || s); const targetName = target ? getInternalSymbolName(target, unescapeLeadingUnderscores(target.escapedName)) : localName2; return factory.createExportSpecifier(false, name === targetName ? undefined : targetName, name); })))]); addResult(factory.createModuleDeclaration(undefined, factory.createIdentifier(localName), nsBody, 32), 0); } } function serializeEnum(symbol, symbolName2, modifierFlags) { const internalSymbolName = getInternalSymbolName(symbol, symbolName2); context.approximateLength += 9 + internalSymbolName.length; const members = []; const memberProps = filter(getPropertiesOfType(getTypeOfSymbol(symbol)), (p) => !!(p.flags & 8)); let i = 0; for (const p of memberProps) { i++; if (checkTruncationLengthIfExpanding(context) && i + 2 < memberProps.length - 1) { context.out.truncated = true; members.push(factory.createEnumMember(` ... ${memberProps.length - i} more ... `)); const last2 = memberProps[memberProps.length - 1]; const initializedValue = last2.declarations && last2.declarations[0] && isEnumMember(last2.declarations[0]) ? getConstantValue2(last2.declarations[0]) : undefined; const initializer2 = initializedValue === undefined ? undefined : typeof initializedValue === "string" ? factory.createStringLiteral(initializedValue) : factory.createNumericLiteral(initializedValue); const memberName2 = unescapeLeadingUnderscores(last2.escapedName); const member2 = factory.createEnumMember(memberName2, initializer2); members.push(member2); break; } const memberDecl = p.declarations && p.declarations[0] && isEnumMember(p.declarations[0]) ? p.declarations[0] : undefined; let initializer; let initializerLength; if (isExpanding(context) && memberDecl && memberDecl.initializer) { initializer = getSynthesizedDeepClone(memberDecl.initializer); initializerLength = memberDecl.initializer.end - memberDecl.initializer.pos; } else { const initializedValue = memberDecl && getConstantValue2(memberDecl); initializer = initializedValue === undefined ? undefined : typeof initializedValue === "string" ? factory.createStringLiteral(initializedValue) : factory.createNumericLiteral(initializedValue); initializerLength = (initializer == null ? undefined : initializer.text.length) ?? 0; } const memberName = unescapeLeadingUnderscores(p.escapedName); context.approximateLength += 4 + memberName.length + initializerLength; const member = factory.createEnumMember(memberName, initializer); members.push(member); } addResult(factory.createEnumDeclaration(factory.createModifiersFromModifierFlags(isConstEnumSymbol(symbol) ? 4096 : 0), internalSymbolName, members), modifierFlags); } function serializeAsFunctionNamespaceMerge(type, symbol, localName, modifierFlags) { const signatures = getSignaturesOfType(type, 0); for (const sig of signatures) { context.approximateLength += 1; const decl = signatureToSignatureDeclarationHelper(sig, 263, context, { name: factory.createIdentifier(localName) }); addResult(setTextRange2(context, decl, getSignatureTextRangeLocation(sig)), modifierFlags); } if (!(symbol.flags & (512 | 1024) && !!symbol.exports && !!symbol.exports.size)) { const props = filter(getPropertiesOfType(type), isNamespaceMember); context.approximateLength += localName.length; serializeAsNamespaceDeclaration(props, factory.createIdentifier(localName), modifierFlags, true); } } function createTruncationStatement(dotDotDotText) { if (context.flags & 1) { return addSyntheticLeadingComment(factory.createEmptyStatement(), 3, dotDotDotText); } return factory.createExpressionStatement(factory.createIdentifier(dotDotDotText)); } function getSignatureTextRangeLocation(signature) { if (signature.declaration && signature.declaration.parent) { if (isBinaryExpression(signature.declaration.parent) && getAssignmentDeclarationKind(signature.declaration.parent) === 5) { return signature.declaration.parent; } if (isVariableDeclaration(signature.declaration.parent) && signature.declaration.parent.parent) { return signature.declaration.parent.parent; } } return signature.declaration; } function serializeAsNamespaceDeclaration(props, localName, modifierFlags, suppressNewPrivateContext) { const nodeFlags = isIdentifier(localName) ? 32 : 0; const expanding = isExpanding(context); if (length(props)) { context.approximateLength += 14; const localVsRemoteMap = arrayToMultiMap(props, (p) => !length(p.declarations) || some(p.declarations, (d) => getSourceFileOfNode(d) === getSourceFileOfNode(context.enclosingDeclaration)) || expanding ? "local" : "remote"); const localProps = localVsRemoteMap.get("local") || emptyArray; let fakespace = parseNodeFactory.createModuleDeclaration(undefined, localName, factory.createModuleBlock([]), nodeFlags); setParent(fakespace, enclosingDeclaration); fakespace.locals = createSymbolTable(props); fakespace.symbol = props[0].parent; const oldResults = results; results = []; const oldAddingDeclare = addingDeclare; addingDeclare = false; const subcontext = { ...context, enclosingDeclaration: fakespace }; const oldContext = context; context = subcontext; visitSymbolTable(createSymbolTable(localProps), suppressNewPrivateContext, true); context = oldContext; addingDeclare = oldAddingDeclare; const declarations = results; results = oldResults; const defaultReplaced = map(declarations, (d) => isExportAssignment(d) && !d.isExportEquals && isIdentifier(d.expression) ? factory.createExportDeclaration(undefined, false, factory.createNamedExports([factory.createExportSpecifier(false, d.expression, factory.createIdentifier("default"))])) : d); const exportModifierStripped = every(defaultReplaced, (d) => hasSyntacticModifier(d, 32)) ? map(defaultReplaced, removeExportModifier) : defaultReplaced; fakespace = factory.updateModuleDeclaration(fakespace, fakespace.modifiers, fakespace.name, factory.createModuleBlock(exportModifierStripped)); addResult(fakespace, modifierFlags); } else if (expanding) { context.approximateLength += 14; addResult(factory.createModuleDeclaration(undefined, localName, factory.createModuleBlock([]), nodeFlags), modifierFlags); } } function isNamespaceMember(p) { return !!(p.flags & (788968 | 1920 | 2097152)) || !(p.flags & 4194304 || p.escapedName === "prototype" || p.valueDeclaration && isStatic(p.valueDeclaration) && isClassLike(p.valueDeclaration.parent)); } function sanitizeJSDocImplements(clauses) { const result = mapDefined(clauses, (e) => { const oldEnclosing = context.enclosingDeclaration; context.enclosingDeclaration = e; let expr = e.expression; if (isEntityNameExpression(expr)) { if (isIdentifier(expr) && idText(expr) === "") { return cleanup(undefined); } let introducesError; ({ introducesError, node: expr } = trackExistingEntityName(expr, context)); if (introducesError) { return cleanup(undefined); } } return cleanup(factory.createExpressionWithTypeArguments(expr, map(e.typeArguments, (a) => syntacticNodeBuilder.tryReuseExistingTypeNode(context, a) || typeToTypeNodeHelper(getTypeFromTypeNode2(context, a), context)))); function cleanup(result2) { context.enclosingDeclaration = oldEnclosing; return result2; } }); if (result.length === clauses.length) { return result; } return; } function serializeAsClass(symbol, localName, modifierFlags) { var _a2, _b; context.approximateLength += 9 + localName.length; const originalDecl = (_a2 = symbol.declarations) == null ? undefined : _a2.find(isClassLike); const oldEnclosing = context.enclosingDeclaration; context.enclosingDeclaration = originalDecl || oldEnclosing; const localParams = getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(symbol); const typeParamDecls = map(localParams, (p) => typeParameterToDeclaration(p, context)); forEach(localParams, (p) => context.approximateLength += symbolName(p.symbol).length); const classType = getTypeWithThisArgument(getDeclaredTypeOfClassOrInterface(symbol)); const baseTypes = getBaseTypes(classType); const originalImplements = originalDecl && getEffectiveImplementsTypeNodes(originalDecl); const implementsExpressions = originalImplements && sanitizeJSDocImplements(originalImplements) || mapDefined(getImplementsTypes(classType), serializeImplementedType); const staticType = getTypeOfSymbol(symbol); const isClass = !!((_b = staticType.symbol) == null ? undefined : _b.valueDeclaration) && isClassLike(staticType.symbol.valueDeclaration); const staticBaseType = isClass ? getBaseConstructorTypeOfClass(staticType) : anyType; context.approximateLength += (length(baseTypes) ? 8 : 0) + (length(implementsExpressions) ? 11 : 0); const heritageClauses = [ ...!length(baseTypes) ? [] : [factory.createHeritageClause(96, map(baseTypes, (b) => serializeBaseType(b, staticBaseType, localName)))], ...!length(implementsExpressions) ? [] : [factory.createHeritageClause(119, implementsExpressions)] ]; const symbolProps = getNonInheritedProperties(classType, baseTypes, getPropertiesOfType(classType)); const publicSymbolProps = filter(symbolProps, (s) => !isHashPrivate(s)); const hasPrivateIdentifier = some(symbolProps, isHashPrivate); const privateProperties = hasPrivateIdentifier ? isExpanding(context) ? serializePropertySymbolsForClassOrInterface(filter(symbolProps, isHashPrivate), true, baseTypes[0], false) : [factory.createPropertyDeclaration(undefined, factory.createPrivateIdentifier("#private"), undefined, undefined, undefined)] : emptyArray; if (hasPrivateIdentifier && !isExpanding(context)) { context.approximateLength += 9; } const publicProperties = serializePropertySymbolsForClassOrInterface(publicSymbolProps, true, baseTypes[0], false); const staticMembers = serializePropertySymbolsForClassOrInterface(filter(getPropertiesOfType(staticType), (p) => !(p.flags & 4194304) && p.escapedName !== "prototype" && !isNamespaceMember(p)), true, staticBaseType, true); const isNonConstructableClassLikeInJsFile = !isClass && !!symbol.valueDeclaration && isInJSFile(symbol.valueDeclaration) && !some(getSignaturesOfType(staticType, 1)); if (isNonConstructableClassLikeInJsFile) context.approximateLength += 21; const constructors = isNonConstructableClassLikeInJsFile ? [factory.createConstructorDeclaration(factory.createModifiersFromModifierFlags(2), [], undefined)] : serializeSignatures(1, staticType, staticBaseType, 177); const indexSignatures = serializeIndexSignatures(classType, baseTypes[0]); context.enclosingDeclaration = oldEnclosing; addResult(setTextRange2(context, factory.createClassDeclaration(undefined, localName, typeParamDecls, heritageClauses, [...indexSignatures, ...staticMembers, ...constructors, ...publicProperties, ...privateProperties]), symbol.declarations && filter(symbol.declarations, (d) => isClassDeclaration(d) || isClassExpression(d))[0]), modifierFlags); } function getSomeTargetNameFromDeclarations(declarations) { return firstDefined(declarations, (d) => { if (isImportSpecifier(d) || isExportSpecifier(d)) { return moduleExportNameTextUnescaped(d.propertyName || d.name); } if (isBinaryExpression(d) || isExportAssignment(d)) { const expression = isExportAssignment(d) ? d.expression : d.right; if (isPropertyAccessExpression(expression)) { return idText(expression.name); } } if (isAliasSymbolDeclaration(d)) { const name = getNameOfDeclaration(d); if (name && isIdentifier(name)) { return idText(name); } } return; }); } function serializeAsAlias(symbol, localName, modifierFlags) { var _a2, _b, _c, _d, _e; const node = getDeclarationOfAliasSymbol(symbol); if (!node) return Debug.fail(); const target = getMergedSymbol(getTargetOfAliasDeclaration(node, true)); if (!target) { return; } let verbatimTargetName = isShorthandAmbientModuleSymbol(target) && getSomeTargetNameFromDeclarations(symbol.declarations) || unescapeLeadingUnderscores(target.escapedName); if (verbatimTargetName === "export=" && allowSyntheticDefaultImports) { verbatimTargetName = "default"; } const targetName = getInternalSymbolName(target, verbatimTargetName); includePrivateSymbol(target); switch (node.kind) { case 209: if (((_b = (_a2 = node.parent) == null ? undefined : _a2.parent) == null ? undefined : _b.kind) === 261) { const specifier2 = getSpecifierForModuleSymbol(target.parent || target, context); const { propertyName } = node; const propertyNameText = propertyName && isIdentifier(propertyName) ? idText(propertyName) : undefined; context.approximateLength += 24 + localName.length + specifier2.length + ((propertyNameText == null ? undefined : propertyNameText.length) ?? 0); addResult(factory.createImportDeclaration(undefined, factory.createImportClause(undefined, undefined, factory.createNamedImports([factory.createImportSpecifier(false, propertyNameText ? factory.createIdentifier(propertyNameText) : undefined, factory.createIdentifier(localName))])), factory.createStringLiteral(specifier2), undefined), 0); break; } Debug.failBadSyntaxKind(((_c = node.parent) == null ? undefined : _c.parent) || node, "Unhandled binding element grandparent kind in declaration serialization"); break; case 305: if (((_e = (_d = node.parent) == null ? undefined : _d.parent) == null ? undefined : _e.kind) === 227) { serializeExportSpecifier(unescapeLeadingUnderscores(symbol.escapedName), targetName); } break; case 261: if (isPropertyAccessExpression(node.initializer)) { const initializer = node.initializer; const uniqueName = factory.createUniqueName(localName); const specifier2 = getSpecifierForModuleSymbol(target.parent || target, context); context.approximateLength += 22 + specifier2.length + idText(uniqueName).length; addResult(factory.createImportEqualsDeclaration(undefined, false, uniqueName, factory.createExternalModuleReference(factory.createStringLiteral(specifier2))), 0); context.approximateLength += 12 + localName.length + idText(uniqueName).length + idText(initializer.name).length; addResult(factory.createImportEqualsDeclaration(undefined, false, factory.createIdentifier(localName), factory.createQualifiedName(uniqueName, initializer.name)), modifierFlags); break; } case 272: if (target.escapedName === "export=" && some(target.declarations, (d) => isSourceFile(d) && isJsonSourceFile(d))) { serializeMaybeAliasAssignment(symbol); break; } const isLocalImport = !(target.flags & 512) && !isVariableDeclaration(node); context.approximateLength += 11 + localName.length + unescapeLeadingUnderscores(target.escapedName).length; addResult(factory.createImportEqualsDeclaration(undefined, false, factory.createIdentifier(localName), isLocalImport ? symbolToName(target, context, -1, false) : factory.createExternalModuleReference(factory.createStringLiteral(getSpecifierForModuleSymbol(target, context)))), isLocalImport ? modifierFlags : 0); break; case 271: addResult(factory.createNamespaceExportDeclaration(idText(node.name)), 0); break; case 274: { const generatedSpecifier = getSpecifierForModuleSymbol(target.parent || target, context); const specifier2 = context.bundled ? factory.createStringLiteral(generatedSpecifier) : node.parent.moduleSpecifier; const attributes = isImportDeclaration(node.parent) ? node.parent.attributes : undefined; const isTypeOnly = isJSDocImportTag(node.parent); context.approximateLength += 14 + localName.length + 3 + (isTypeOnly ? 4 : 0); addResult(factory.createImportDeclaration(undefined, factory.createImportClause(isTypeOnly ? 156 : undefined, factory.createIdentifier(localName), undefined), specifier2, attributes), 0); break; } case 275: { const generatedSpecifier = getSpecifierForModuleSymbol(target.parent || target, context); const specifier2 = context.bundled ? factory.createStringLiteral(generatedSpecifier) : node.parent.parent.moduleSpecifier; const isTypeOnly = isJSDocImportTag(node.parent.parent); context.approximateLength += 19 + localName.length + 3 + (isTypeOnly ? 4 : 0); addResult(factory.createImportDeclaration(undefined, factory.createImportClause(isTypeOnly ? 156 : undefined, undefined, factory.createNamespaceImport(factory.createIdentifier(localName))), specifier2, node.parent.attributes), 0); break; } case 281: context.approximateLength += 19 + localName.length + 3; addResult(factory.createExportDeclaration(undefined, false, factory.createNamespaceExport(factory.createIdentifier(localName)), factory.createStringLiteral(getSpecifierForModuleSymbol(target, context))), 0); break; case 277: { const generatedSpecifier = getSpecifierForModuleSymbol(target.parent || target, context); const specifier2 = context.bundled ? factory.createStringLiteral(generatedSpecifier) : node.parent.parent.parent.moduleSpecifier; const isTypeOnly = isJSDocImportTag(node.parent.parent.parent); context.approximateLength += 19 + localName.length + 3 + (isTypeOnly ? 4 : 0); addResult(factory.createImportDeclaration(undefined, factory.createImportClause(isTypeOnly ? 156 : undefined, undefined, factory.createNamedImports([ factory.createImportSpecifier(false, localName !== verbatimTargetName ? factory.createIdentifier(verbatimTargetName) : undefined, factory.createIdentifier(localName)) ])), specifier2, node.parent.parent.parent.attributes), 0); break; } case 282: const specifier = node.parent.parent.moduleSpecifier; if (specifier) { const propertyName = node.propertyName; if (propertyName && moduleExportNameIsDefault(propertyName)) { verbatimTargetName = "default"; } } serializeExportSpecifier(unescapeLeadingUnderscores(symbol.escapedName), specifier ? verbatimTargetName : targetName, specifier && isStringLiteralLike(specifier) ? factory.createStringLiteral(specifier.text) : undefined); break; case 278: serializeMaybeAliasAssignment(symbol); break; case 227: case 212: case 213: if (symbol.escapedName === "default" || symbol.escapedName === "export=") { serializeMaybeAliasAssignment(symbol); } else { serializeExportSpecifier(localName, targetName); } break; default: return Debug.failBadSyntaxKind(node, "Unhandled alias declaration kind in symbol serializer!"); } } function serializeExportSpecifier(localName, targetName, specifier) { context.approximateLength += 16 + localName.length + (localName !== targetName ? targetName.length : 0); addResult(factory.createExportDeclaration(undefined, false, factory.createNamedExports([factory.createExportSpecifier(false, localName !== targetName ? targetName : undefined, localName)]), specifier), 0); } function serializeMaybeAliasAssignment(symbol) { var _a2; if (symbol.flags & 4194304) { return false; } const name = unescapeLeadingUnderscores(symbol.escapedName); const isExportEquals = name === "export="; const isDefault = name === "default"; const isExportAssignmentCompatibleSymbolName = isExportEquals || isDefault; const aliasDecl = symbol.declarations && getDeclarationOfAliasSymbol(symbol); const target = aliasDecl && getTargetOfAliasDeclaration(aliasDecl, true); if (target && length(target.declarations) && some(target.declarations, (d) => getSourceFileOfNode(d) === getSourceFileOfNode(enclosingDeclaration))) { const expr = aliasDecl && (isExportAssignment(aliasDecl) || isBinaryExpression(aliasDecl) ? getExportAssignmentExpression(aliasDecl) : getPropertyAssignmentAliasLikeExpression(aliasDecl)); const first2 = expr && isEntityNameExpression(expr) ? getFirstNonModuleExportsIdentifier(expr) : undefined; const referenced = first2 && resolveEntityName(first2, -1, true, true, enclosingDeclaration); if (referenced || target) { includePrivateSymbol(referenced || target); } const prevDisableTrackSymbol = context.tracker.disableTrackSymbol; context.tracker.disableTrackSymbol = true; if (isExportAssignmentCompatibleSymbolName) { context.approximateLength += 10; results.push(factory.createExportAssignment(undefined, isExportEquals, symbolToExpression(target, context, -1))); } else { if (first2 === expr && first2) { serializeExportSpecifier(name, idText(first2)); } else if (expr && isClassExpression(expr)) { serializeExportSpecifier(name, getInternalSymbolName(target, symbolName(target))); } else { const varName = getUnusedName(name, symbol); context.approximateLength += varName.length + 10; addResult(factory.createImportEqualsDeclaration(undefined, false, factory.createIdentifier(varName), symbolToName(target, context, -1, false)), 0); serializeExportSpecifier(name, varName); } } context.tracker.disableTrackSymbol = prevDisableTrackSymbol; return true; } else { const varName = getUnusedName(name, symbol); const typeToSerialize = getWidenedType(getTypeOfSymbol(getMergedSymbol(symbol))); if (isTypeRepresentableAsFunctionNamespaceMerge(typeToSerialize, symbol)) { serializeAsFunctionNamespaceMerge(typeToSerialize, symbol, varName, isExportAssignmentCompatibleSymbolName ? 0 : 32); } else { const flags = ((_a2 = context.enclosingDeclaration) == null ? undefined : _a2.kind) === 268 && (!(symbol.flags & 98304) || symbol.flags & 65536) ? 1 : 2; context.approximateLength += varName.length + 5; const statement = factory.createVariableStatement(undefined, factory.createVariableDeclarationList([ factory.createVariableDeclaration(varName, undefined, serializeTypeForDeclaration(context, undefined, typeToSerialize, symbol)) ], flags)); addResult(statement, target && target.flags & 4 && target.escapedName === "export=" ? 128 : name === varName ? 32 : 0); } if (isExportAssignmentCompatibleSymbolName) { context.approximateLength += varName.length + 10; results.push(factory.createExportAssignment(undefined, isExportEquals, factory.createIdentifier(varName))); return true; } else if (name !== varName) { serializeExportSpecifier(name, varName); return true; } return false; } } function isTypeRepresentableAsFunctionNamespaceMerge(typeToSerialize, hostSymbol) { var _a2; const ctxSrc = getSourceFileOfNode(context.enclosingDeclaration); return getObjectFlags(typeToSerialize) & (16 | 32) && !some((_a2 = typeToSerialize.symbol) == null ? undefined : _a2.declarations, isTypeNode) && !length(getIndexInfosOfType(typeToSerialize)) && !isClassInstanceSide(typeToSerialize) && !!(length(filter(getPropertiesOfType(typeToSerialize), isNamespaceMember)) || length(getSignaturesOfType(typeToSerialize, 0))) && !length(getSignaturesOfType(typeToSerialize, 1)) && !getDeclarationWithTypeAnnotation(hostSymbol, enclosingDeclaration) && !(typeToSerialize.symbol && some(typeToSerialize.symbol.declarations, (d) => getSourceFileOfNode(d) !== ctxSrc)) && !some(getPropertiesOfType(typeToSerialize), (p) => isLateBoundName(p.escapedName)) && !some(getPropertiesOfType(typeToSerialize), (p) => some(p.declarations, (d) => getSourceFileOfNode(d) !== ctxSrc)) && every(getPropertiesOfType(typeToSerialize), (p) => { if (!isIdentifierText(symbolName(p), languageVersion)) { return false; } if (!(p.flags & 98304)) { return true; } return getNonMissingTypeOfSymbol(p) === getWriteTypeOfSymbol(p); }); } function makeSerializePropertySymbol(createProperty2, methodKind, useAccessors) { return function serializePropertySymbol(p, isStatic2, baseType) { var _a2, _b, _c, _d, _e, _f; const modifierFlags = getDeclarationModifierFlagsFromSymbol(p); const omitType = !!(modifierFlags & 2) && !isExpanding(context); if (isStatic2 && p.flags & (788968 | 1920 | 2097152)) { return []; } if (p.flags & 4194304 || p.escapedName === "constructor" || baseType && getPropertyOfType(baseType, p.escapedName) && isReadonlySymbol(getPropertyOfType(baseType, p.escapedName)) === isReadonlySymbol(p) && (p.flags & 16777216) === (getPropertyOfType(baseType, p.escapedName).flags & 16777216) && isTypeIdenticalTo(getTypeOfSymbol(p), getTypeOfPropertyOfType(baseType, p.escapedName))) { return []; } const flag = modifierFlags & ~1024 | (isStatic2 ? 256 : 0); const name = getPropertyNameNodeForSymbol(p, context); const firstPropertyLikeDecl = (_a2 = p.declarations) == null ? undefined : _a2.find(or(isPropertyDeclaration, isAccessor, isVariableDeclaration, isPropertySignature, isBinaryExpression, isPropertyAccessExpression)); if (p.flags & 98304 && useAccessors) { const result = []; if (p.flags & 65536) { const setter = p.declarations && forEach(p.declarations, (d) => { if (d.kind === 179) { return d; } if (isCallExpression(d) && isBindableObjectDefinePropertyCall(d)) { return forEach(d.arguments[2].properties, (propDecl) => { const id = getNameOfDeclaration(propDecl); if (!!id && isIdentifier(id) && idText(id) === "set") { return propDecl; } }); } }); Debug.assert(!!setter); const paramSymbol = isFunctionLikeDeclaration(setter) ? getSignatureFromDeclaration(setter).parameters[0] : undefined; const setterDeclaration = (_b = p.declarations) == null ? undefined : _b.find(isSetAccessor); context.approximateLength += modifiersLength(flag) + 7 + (paramSymbol ? symbolName(paramSymbol).length : 5) + (omitType ? 0 : 2); result.push(setTextRange2(context, factory.createSetAccessorDeclaration(factory.createModifiersFromModifierFlags(flag), name, [factory.createParameterDeclaration(undefined, undefined, paramSymbol ? parameterToParameterDeclarationName(paramSymbol, getEffectiveParameterDeclaration(paramSymbol), context) : "value", undefined, omitType ? undefined : serializeTypeForDeclaration(context, setterDeclaration, getWriteTypeOfSymbol(p), p))], undefined), setterDeclaration ?? firstPropertyLikeDecl)); } if (p.flags & 32768) { const getterDeclaration = (_c = p.declarations) == null ? undefined : _c.find(isGetAccessor); context.approximateLength += modifiersLength(flag) + 8 + (omitType ? 0 : 2); result.push(setTextRange2(context, factory.createGetAccessorDeclaration(factory.createModifiersFromModifierFlags(flag), name, [], omitType ? undefined : serializeTypeForDeclaration(context, getterDeclaration, getTypeOfSymbol(p), p), undefined), getterDeclaration ?? firstPropertyLikeDecl)); } return result; } else if (p.flags & (4 | 3 | 98304)) { const modifierFlags2 = (isReadonlySymbol(p) ? 8 : 0) | flag; context.approximateLength += 2 + (omitType ? 0 : 2) + modifiersLength(modifierFlags2); return setTextRange2(context, createProperty2(factory.createModifiersFromModifierFlags(modifierFlags2), name, p.flags & 16777216 ? factory.createToken(58) : undefined, omitType ? undefined : serializeTypeForDeclaration(context, (_d = p.declarations) == null ? undefined : _d.find(isSetAccessorDeclaration), getWriteTypeOfSymbol(p), p), undefined), ((_e = p.declarations) == null ? undefined : _e.find(or(isPropertyDeclaration, isVariableDeclaration))) || firstPropertyLikeDecl); } if (p.flags & (8192 | 16)) { const type = getTypeOfSymbol(p); const signatures = getSignaturesOfType(type, 0); if (omitType) { const modifierFlags2 = (isReadonlySymbol(p) ? 8 : 0) | flag; context.approximateLength += 1 + modifiersLength(modifierFlags2); return setTextRange2(context, createProperty2(factory.createModifiersFromModifierFlags(modifierFlags2), name, p.flags & 16777216 ? factory.createToken(58) : undefined, undefined, undefined), ((_f = p.declarations) == null ? undefined : _f.find(isFunctionLikeDeclaration)) || signatures[0] && signatures[0].declaration || p.declarations && p.declarations[0]); } const results2 = []; for (const sig of signatures) { context.approximateLength += 1; const decl = signatureToSignatureDeclarationHelper(sig, methodKind, context, { name, questionToken: p.flags & 16777216 ? factory.createToken(58) : undefined, modifiers: flag ? factory.createModifiersFromModifierFlags(flag) : undefined }); const location = sig.declaration && isPrototypePropertyAssignment(sig.declaration.parent) ? sig.declaration.parent : sig.declaration; results2.push(setTextRange2(context, decl, location)); } return results2; } return Debug.fail(`Unhandled class member kind! ${p.__debugFlags || p.flags}`); }; } function modifiersLength(flags) { let result = 0; if (flags & 32) result += 7; if (flags & 128) result += 8; if (flags & 2048) result += 8; if (flags & 4096) result += 6; if (flags & 1) result += 7; if (flags & 2) result += 8; if (flags & 4) result += 10; if (flags & 64) result += 9; if (flags & 256) result += 7; if (flags & 16) result += 9; if (flags & 8) result += 9; if (flags & 512) result += 9; if (flags & 1024) result += 6; if (flags & 8192) result += 3; if (flags & 16384) result += 4; return result; } function serializePropertySymbolForInterface(p, baseType) { return serializePropertySymbolForInterfaceWorker(p, false, baseType); } function serializeSignatures(kind, input, baseType, outputKind) { const signatures = getSignaturesOfType(input, kind); if (kind === 1) { if (!baseType && every(signatures, (s) => length(s.parameters) === 0)) { return []; } if (baseType) { const baseSigs = getSignaturesOfType(baseType, 1); if (!length(baseSigs) && every(signatures, (s) => length(s.parameters) === 0)) { return []; } if (baseSigs.length === signatures.length) { let failed2 = false; for (let i = 0;i < baseSigs.length; i++) { if (!compareSignaturesIdentical(signatures[i], baseSigs[i], false, false, true, compareTypesIdentical)) { failed2 = true; break; } } if (!failed2) { return []; } } } let privateProtected = 0; for (const s of signatures) { if (s.declaration) { privateProtected |= getSelectedEffectiveModifierFlags(s.declaration, 2 | 4); } } if (privateProtected) { return [setTextRange2(context, factory.createConstructorDeclaration(factory.createModifiersFromModifierFlags(privateProtected), [], undefined), signatures[0].declaration)]; } } const results2 = []; for (const sig of signatures) { context.approximateLength += 1; const decl = signatureToSignatureDeclarationHelper(sig, outputKind, context); results2.push(setTextRange2(context, decl, sig.declaration)); } return results2; } function serializeIndexSignatures(input, baseType) { const results2 = []; for (const info of getIndexInfosOfType(input)) { if (baseType) { const baseInfo = getIndexInfoOfType(baseType, info.keyType); if (baseInfo) { if (isTypeIdenticalTo(info.type, baseInfo.type)) { continue; } } } results2.push(indexInfoToIndexSignatureDeclarationHelper(info, context, undefined)); } return results2; } function serializeBaseType(t, staticType, rootName) { const ref = trySerializeAsTypeReference(t, 111551); if (ref) { return ref; } const tempName = getUnusedName(`${rootName}_base`); const statement = factory.createVariableStatement(undefined, factory.createVariableDeclarationList([ factory.createVariableDeclaration(tempName, undefined, typeToTypeNodeHelper(staticType, context)) ], 2)); addResult(statement, 0); return factory.createExpressionWithTypeArguments(factory.createIdentifier(tempName), undefined); } function trySerializeAsTypeReference(t, flags) { let typeArgs; let reference; if (t.target && isSymbolAccessibleByFlags(t.target.symbol, enclosingDeclaration, flags)) { typeArgs = map(getTypeArguments(t), (t2) => typeToTypeNodeHelper(t2, context)); reference = symbolToExpression(t.target.symbol, context, 788968); } else if (t.symbol && isSymbolAccessibleByFlags(t.symbol, enclosingDeclaration, flags)) { reference = symbolToExpression(t.symbol, context, 788968); } if (reference) { return factory.createExpressionWithTypeArguments(reference, typeArgs); } } function serializeImplementedType(t) { const ref = trySerializeAsTypeReference(t, 788968); if (ref) { return ref; } if (t.symbol) { return factory.createExpressionWithTypeArguments(symbolToExpression(t.symbol, context, 788968), undefined); } } function getUnusedName(input, symbol) { var _a2, _b; const id = symbol ? getSymbolId(symbol) : undefined; if (id) { if (context.remappedSymbolNames.has(id)) { return context.remappedSymbolNames.get(id); } } if (symbol) { input = getNameCandidateWorker(symbol, input); } let i = 0; const original = input; while ((_a2 = context.usedSymbolNames) == null ? undefined : _a2.has(input)) { i++; input = `${original}_${i}`; } (_b = context.usedSymbolNames) == null || _b.add(input); if (id) { context.remappedSymbolNames.set(id, input); } return input; } function getNameCandidateWorker(symbol, localName) { if (localName === "default" || localName === "__class" || localName === "__function") { const restoreFlags = saveRestoreFlags(context); context.flags |= 16777216; const nameCandidate = getNameOfSymbolAsWritten(symbol, context); restoreFlags(); localName = nameCandidate.length > 0 && isSingleOrDoubleQuote(nameCandidate.charCodeAt(0)) ? stripQuotes(nameCandidate) : nameCandidate; } if (localName === "default") { localName = "_default"; } else if (localName === "export=") { localName = "_exports"; } localName = isIdentifierText(localName, languageVersion) && !isStringANonContextualKeyword(localName) ? localName : "_" + localName.replace(/[^a-z0-9]/gi, "_"); return localName; } function getInternalSymbolName(symbol, localName) { const id = getSymbolId(symbol); if (context.remappedSymbolNames.has(id)) { return context.remappedSymbolNames.get(id); } localName = getNameCandidateWorker(symbol, localName); context.remappedSymbolNames.set(id, localName); return localName; } } function isExpanding(context) { return context.maxExpansionDepth !== -1; } function isHashPrivate(s) { return !!s.valueDeclaration && isNamedDeclaration(s.valueDeclaration) && isPrivateIdentifier(s.valueDeclaration.name); } function getClonedHashPrivateName(s) { if (s.valueDeclaration && isNamedDeclaration(s.valueDeclaration) && isPrivateIdentifier(s.valueDeclaration.name)) { return factory.cloneNode(s.valueDeclaration.name); } return; } } function isLibType(type) { var _a; const symbol = (getObjectFlags(type) & 4) !== 0 ? type.target.symbol : type.symbol; return isTupleType(type) || !!((_a = symbol == null ? undefined : symbol.declarations) == null ? undefined : _a.some((decl) => host.isSourceFileDefaultLibrary(getSourceFileOfNode(decl)))); } function typePredicateToString(typePredicate, enclosingDeclaration, flags = 16384, writer) { return writer ? typePredicateToStringWorker(writer).getText() : usingSingleLineStringWriter(typePredicateToStringWorker); function typePredicateToStringWorker(writer2) { const nodeBuilderFlags = toNodeBuilderFlags(flags) | 70221824 | 512; const predicate = nodeBuilder.typePredicateToTypePredicateNode(typePredicate, enclosingDeclaration, nodeBuilderFlags); const printer = createPrinterWithRemoveComments(); const sourceFile = enclosingDeclaration && getSourceFileOfNode(enclosingDeclaration); printer.writeNode(4, predicate, sourceFile, writer2); return writer2; } } function formatUnionTypes(types, expandingEnum) { const result = []; let flags = 0; for (let i = 0;i < types.length; i++) { const t = types[i]; flags |= t.flags; if (!(t.flags & 12)) { if (t.flags & 8192 || !expandingEnum && t.flags | 98304) { const baseType = t.flags & 8192 ? booleanType : getBaseTypeOfEnumLikeType(t); if (baseType.flags & 134217728) { const count = baseType.types.length; if (i + count <= types.length && getRegularTypeOfLiteralType(types[i + count - 1]) === getRegularTypeOfLiteralType(baseType.types[count - 1])) { result.push(baseType); i += count - 1; continue; } } } result.push(t); } } if (flags & 8) result.push(nullType); if (flags & 4) result.push(undefinedType); return result || types; } function visibilityToString(flags) { if (flags === 2) { return "private"; } if (flags === 4) { return "protected"; } return "public"; } function getTypeAliasForTypeLiteral(type) { if (type.symbol && type.symbol.flags & 2048 && type.symbol.declarations) { const node = walkUpParenthesizedTypes(type.symbol.declarations[0].parent); if (isTypeAliasDeclaration(node)) { return getSymbolOfDeclaration(node); } } return; } function isTopLevelInExternalModuleAugmentation(node) { return node && node.parent && node.parent.kind === 269 && isExternalModuleAugmentation(node.parent.parent); } function isDefaultBindingContext(location) { return location.kind === 308 || isAmbientModule(location); } function getNameOfSymbolFromNameType(symbol, context) { const nameType = getSymbolLinks(symbol).nameType; if (nameType) { if (nameType.flags & 3072) { const name = "" + nameType.value; if (!isIdentifierText(name, getEmitScriptTarget(compilerOptions)) && !isNumericLiteralName(name)) { return `"${escapeString(name, 34)}"`; } if (isNumericLiteralName(name) && startsWith(name, "-")) { return `[${name}]`; } return name; } if (nameType.flags & 16384) { return `[${getNameOfSymbolAsWritten(nameType.symbol, context)}]`; } } } function getNameOfSymbolAsWritten(symbol, context) { var _a; if ((_a = context == null ? undefined : context.remappedSymbolReferences) == null ? undefined : _a.has(getSymbolId(symbol))) { symbol = context.remappedSymbolReferences.get(getSymbolId(symbol)); } if (context && symbol.escapedName === "default" && !(context.flags & 16384) && (!(context.flags & 16777216) || !symbol.declarations || context.enclosingDeclaration && findAncestor(symbol.declarations[0], isDefaultBindingContext) !== findAncestor(context.enclosingDeclaration, isDefaultBindingContext))) { return "default"; } if (symbol.declarations && symbol.declarations.length) { let declaration = firstDefined(symbol.declarations, (d) => getNameOfDeclaration(d) ? d : undefined); const name2 = declaration && getNameOfDeclaration(declaration); if (declaration && name2) { if (isCallExpression(declaration) && isBindableObjectDefinePropertyCall(declaration)) { return symbolName(symbol); } if (isComputedPropertyName(name2) && !(getCheckFlags(symbol) & 4096)) { const nameType = getSymbolLinks(symbol).nameType; if (nameType && nameType.flags & 3072) { const result = getNameOfSymbolFromNameType(symbol, context); if (result !== undefined) { return result; } } } return declarationNameToString(name2); } if (!declaration) { declaration = symbol.declarations[0]; } if (declaration.parent && declaration.parent.kind === 261) { return declarationNameToString(declaration.parent.name); } switch (declaration.kind) { case 232: case 219: case 220: if (context && !context.encounteredError && !(context.flags & 131072)) { context.encounteredError = true; } return declaration.kind === 232 ? "(Anonymous class)" : "(Anonymous function)"; } } const name = getNameOfSymbolFromNameType(symbol, context); return name !== undefined ? name : symbolName(symbol); } function isDeclarationVisible(node) { if (node) { const links = getNodeLinks(node); if (links.isVisible === undefined) { links.isVisible = !!determineIfDeclarationIsVisible(); } return links.isVisible; } return false; function determineIfDeclarationIsVisible() { switch (node.kind) { case 339: case 347: case 341: return !!(node.parent && node.parent.parent && node.parent.parent.parent && isSourceFile(node.parent.parent.parent)); case 209: return isDeclarationVisible(node.parent.parent); case 261: if (isBindingPattern(node.name) && !node.name.elements.length) { return false; } case 268: case 264: case 265: case 266: case 263: case 267: case 272: if (isExternalModuleAugmentation(node)) { return true; } const parent2 = getDeclarationContainer(node); if (!(getCombinedModifierFlagsCached(node) & 32) && !(node.kind !== 272 && parent2.kind !== 308 && parent2.flags & 33554432)) { return isGlobalSourceFile(parent2); } return isDeclarationVisible(parent2); case 173: case 172: case 178: case 179: case 175: case 174: if (hasEffectiveModifier(node, 2 | 4)) { return false; } case 177: case 181: case 180: case 182: case 170: case 269: case 185: case 186: case 188: case 184: case 189: case 190: case 193: case 194: case 197: case 203: return isDeclarationVisible(node.parent); case 274: case 275: case 277: return false; case 169: case 308: case 271: return true; case 278: return false; default: return false; } } } function collectLinkedAliases(node, setVisibility) { let exportSymbol; if (node.kind !== 11 && node.parent && node.parent.kind === 278) { exportSymbol = resolveName(node, node, 111551 | 788968 | 1920 | 2097152, undefined, false); } else if (node.parent.kind === 282) { exportSymbol = getTargetOfExportSpecifier(node.parent, 111551 | 788968 | 1920 | 2097152); } let result; let visited; if (exportSymbol) { visited = /* @__PURE__ */ new Set; visited.add(getSymbolId(exportSymbol)); buildVisibleNodeList(exportSymbol.declarations); } return result; function buildVisibleNodeList(declarations) { forEach(declarations, (declaration) => { const resultNode = getAnyImportSyntax(declaration) || declaration; if (setVisibility) { getNodeLinks(declaration).isVisible = true; } else { result = result || []; pushIfUnique(result, resultNode); } if (isInternalModuleImportEqualsDeclaration(declaration)) { const internalModuleReference = declaration.moduleReference; const firstIdentifier = getFirstIdentifier(internalModuleReference); const importSymbol = resolveName(declaration, firstIdentifier.escapedText, 111551 | 788968 | 1920, undefined, false); if (importSymbol && visited) { if (tryAddToSet(visited, getSymbolId(importSymbol))) { buildVisibleNodeList(importSymbol.declarations); } } } }); } } function pushTypeResolution(target, propertyName) { const resolutionCycleStartIndex = findResolutionCycleStartIndex(target, propertyName); if (resolutionCycleStartIndex >= 0) { const { length: length2 } = resolutionTargets; for (let i = resolutionCycleStartIndex;i < length2; i++) { resolutionResults[i] = false; } return false; } resolutionTargets.push(target); resolutionResults.push(true); resolutionPropertyNames.push(propertyName); return true; } function findResolutionCycleStartIndex(target, propertyName) { for (let i = resolutionTargets.length - 1;i >= resolutionStart; i--) { if (resolutionTargetHasProperty(resolutionTargets[i], resolutionPropertyNames[i])) { return -1; } if (resolutionTargets[i] === target && resolutionPropertyNames[i] === propertyName) { return i; } } return -1; } function resolutionTargetHasProperty(target, propertyName) { switch (propertyName) { case 0: return !!getSymbolLinks(target).type; case 2: return !!getSymbolLinks(target).declaredType; case 1: return !!target.resolvedBaseConstructorType; case 3: return !!target.resolvedReturnType; case 4: return !!target.immediateBaseConstraint; case 5: return !!target.resolvedTypeArguments; case 6: return !!target.baseTypesResolved; case 7: return !!getSymbolLinks(target).writeType; case 8: return getNodeLinks(target).parameterInitializerContainsUndefined !== undefined; } return Debug.assertNever(propertyName); } function popTypeResolution() { resolutionTargets.pop(); resolutionPropertyNames.pop(); return resolutionResults.pop(); } function getDeclarationContainer(node) { return findAncestor(getRootDeclaration(node), (node2) => { switch (node2.kind) { case 261: case 262: case 277: case 276: case 275: case 274: return false; default: return true; } }).parent; } function getTypeOfPrototypeProperty(prototype) { const classType = getDeclaredTypeOfSymbol(getParentOfSymbol(prototype)); return classType.typeParameters ? createTypeReference(classType, map(classType.typeParameters, (_) => anyType)) : classType; } function getTypeOfPropertyOfType(type, name) { const prop = getPropertyOfType(type, name); return prop ? getTypeOfSymbol(prop) : undefined; } function getTypeOfPropertyOrIndexSignatureOfType(type, name) { var _a; let propType; return getTypeOfPropertyOfType(type, name) || (propType = (_a = getApplicableIndexInfoForName(type, name)) == null ? undefined : _a.type) && addOptionality(propType, true, true); } function isTypeAny(type) { return type && (type.flags & 1) !== 0; } function isErrorType(type) { return type === errorType || !!(type.flags & 1 && type.aliasSymbol); } function getTypeForBindingElementParent(node, checkMode) { if (checkMode !== 0) { return getTypeForVariableLikeDeclaration(node, false, checkMode); } const symbol = getSymbolOfDeclaration(node); return symbol && getSymbolLinks(symbol).type || getTypeForVariableLikeDeclaration(node, false, checkMode); } function getRestType(source, properties, symbol) { source = filterType(source, (t) => !(t.flags & 12)); if (source.flags & 262144) { return emptyObjectType; } if (source.flags & 134217728) { return mapType(source, (t) => getRestType(t, properties, symbol)); } let omitKeyType = getUnionType(map(properties, getLiteralTypeFromPropertyName)); const spreadableProperties = []; const unspreadableToRestKeys = []; for (const prop of getPropertiesOfType(source)) { const literalTypeFromProperty = getLiteralTypeFromProperty(prop, 19456); if (!isTypeAssignableTo(literalTypeFromProperty, omitKeyType) && !(getDeclarationModifierFlagsFromSymbol(prop) & (2 | 4)) && isSpreadableProperty(prop)) { spreadableProperties.push(prop); } else { unspreadableToRestKeys.push(literalTypeFromProperty); } } if (isGenericObjectType(source) || isGenericIndexType(omitKeyType)) { if (unspreadableToRestKeys.length) { omitKeyType = getUnionType([omitKeyType, ...unspreadableToRestKeys]); } if (omitKeyType.flags & 262144) { return source; } const omitTypeAlias = getGlobalOmitSymbol(); if (!omitTypeAlias) { return errorType; } return getTypeAliasInstantiation(omitTypeAlias, [source, omitKeyType]); } const members = createSymbolTable(); for (const prop of spreadableProperties) { members.set(prop.escapedName, getSpreadSymbol(prop, false)); } const result = createAnonymousType(symbol, members, emptyArray, emptyArray, getIndexInfosOfType(source)); result.objectFlags |= 4194304; return result; } function isGenericTypeWithUndefinedConstraint(type) { return !!(type.flags & 132644864) && maybeTypeOfKind(getBaseConstraintOfType(type) || unknownType, 4); } function getNonUndefinedType(type) { const typeOrConstraint = someType(type, isGenericTypeWithUndefinedConstraint) ? mapType(type, (t) => t.flags & 132644864 ? getBaseConstraintOrType(t) : t) : type; return getTypeWithFacts(typeOrConstraint, 524288); } function getFlowTypeOfDestructuring(node, declaredType) { const reference = getSyntheticElementAccess(node); return reference ? getFlowTypeOfReference(reference, declaredType) : declaredType; } function getSyntheticElementAccess(node) { const parentAccess = getParentElementAccess(node); if (parentAccess && canHaveFlowNode(parentAccess) && parentAccess.flowNode) { const propName = getDestructuringPropertyName(node); if (propName) { const literal = setTextRange(parseNodeFactory.createStringLiteral(propName), node); const lhsExpr = isLeftHandSideExpression(parentAccess) ? parentAccess : parseNodeFactory.createParenthesizedExpression(parentAccess); const result = setTextRange(parseNodeFactory.createElementAccessExpression(lhsExpr, literal), node); setParent(literal, result); setParent(result, node); if (lhsExpr !== parentAccess) { setParent(lhsExpr, result); } result.flowNode = parentAccess.flowNode; return result; } } } function getParentElementAccess(node) { const ancestor = node.parent.parent; switch (ancestor.kind) { case 209: case 304: return getSyntheticElementAccess(ancestor); case 210: return getSyntheticElementAccess(node.parent); case 261: return ancestor.initializer; case 227: return ancestor.right; } } function getDestructuringPropertyName(node) { const parent2 = node.parent; if (node.kind === 209 && parent2.kind === 207) { return getLiteralPropertyNameText(node.propertyName || node.name); } if (node.kind === 304 || node.kind === 305) { return getLiteralPropertyNameText(node.name); } return "" + parent2.elements.indexOf(node); } function getLiteralPropertyNameText(name) { const type = getLiteralTypeFromPropertyName(name); return type.flags & (1024 | 2048) ? "" + type.value : undefined; } function getTypeForBindingElement(declaration) { const checkMode = declaration.dotDotDotToken ? 32 : 0; const parentType = getTypeForBindingElementParent(declaration.parent.parent, checkMode); return parentType && getBindingElementTypeFromParentType(declaration, parentType, false); } function getBindingElementTypeFromParentType(declaration, parentType, noTupleBoundsCheck) { if (isTypeAny(parentType)) { return parentType; } const pattern = declaration.parent; if (strictNullChecks && declaration.flags & 33554432 && isPartOfParameterDeclaration(declaration)) { parentType = getNonNullableType(parentType); } else if (strictNullChecks && pattern.parent.initializer && !hasTypeFacts(getTypeOfInitializer(pattern.parent.initializer), 65536)) { parentType = getTypeWithFacts(parentType, 524288); } const accessFlags = 32 | (noTupleBoundsCheck || hasDefaultValue(declaration) ? 16 : 0); let type; if (pattern.kind === 207) { if (declaration.dotDotDotToken) { parentType = getReducedType(parentType); if (parentType.flags & 2 || !isValidSpreadType(parentType)) { error2(declaration, Diagnostics.Rest_types_may_only_be_created_from_object_types); return errorType; } const literalMembers = []; for (const element of pattern.elements) { if (!element.dotDotDotToken) { literalMembers.push(element.propertyName || element.name); } } type = getRestType(parentType, literalMembers, declaration.symbol); } else { const name = declaration.propertyName || declaration.name; const indexType = getLiteralTypeFromPropertyName(name); const declaredType = getIndexedAccessType(parentType, indexType, accessFlags, name); type = getFlowTypeOfDestructuring(declaration, declaredType); } } else { const elementType = checkIteratedTypeOrElementType(65 | (declaration.dotDotDotToken ? 0 : 128), parentType, undefinedType, pattern); const index = pattern.elements.indexOf(declaration); if (declaration.dotDotDotToken) { const baseConstraint = mapType(parentType, (t) => t.flags & 117964800 ? getBaseConstraintOrType(t) : t); type = everyType(baseConstraint, isTupleType) ? mapType(baseConstraint, (t) => sliceTupleType(t, index)) : createArrayType(elementType); } else if (isArrayLikeType(parentType)) { const indexType = getNumberLiteralType(index); const declaredType = getIndexedAccessTypeOrUndefined(parentType, indexType, accessFlags, declaration.name) || errorType; type = getFlowTypeOfDestructuring(declaration, declaredType); } else { type = elementType; } } if (!declaration.initializer) { return type; } if (getEffectiveTypeAnnotationNode(walkUpBindingElementsAndPatterns(declaration))) { return strictNullChecks && !hasTypeFacts(checkDeclarationInitializer(declaration, 0), 16777216) ? getNonUndefinedType(type) : type; } return widenTypeInferredFromInitializer(declaration, getUnionType([getNonUndefinedType(type), checkDeclarationInitializer(declaration, 0)], 2)); } function getTypeForDeclarationFromJSDocComment(declaration) { const jsdocType = getJSDocType(declaration); if (jsdocType) { return getTypeFromTypeNode(jsdocType); } return; } function isNullOrUndefined3(node) { const expr = skipParentheses(node, true); return expr.kind === 106 || expr.kind === 80 && getResolvedSymbol(expr) === undefinedSymbol; } function isEmptyArrayLiteral2(node) { const expr = skipParentheses(node, true); return expr.kind === 210 && expr.elements.length === 0; } function addOptionality(type, isProperty = false, isOptional = true) { return strictNullChecks && isOptional ? getOptionalType(type, isProperty) : type; } function getTypeForVariableLikeDeclaration(declaration, includeOptionality, checkMode) { if (isVariableDeclaration(declaration) && declaration.parent.parent.kind === 250) { const indexType = getIndexType(getNonNullableTypeIfNeeded(checkExpression(declaration.parent.parent.expression, checkMode))); return indexType.flags & (524288 | 2097152) ? getExtractStringType(indexType) : stringType; } if (isVariableDeclaration(declaration) && declaration.parent.parent.kind === 251) { const forOfStatement = declaration.parent.parent; return checkRightHandSideOfForOf(forOfStatement) || anyType; } if (isBindingPattern(declaration.parent)) { return getTypeForBindingElement(declaration); } const isProperty = isPropertyDeclaration(declaration) && !hasAccessorModifier(declaration) || isPropertySignature(declaration) || isJSDocPropertyTag(declaration); const isOptional = includeOptionality && isOptionalDeclaration(declaration); const declaredType = tryGetTypeFromEffectiveTypeNode(declaration); if (isCatchClauseVariableDeclarationOrBindingElement(declaration)) { if (declaredType) { return isTypeAny(declaredType) || declaredType === unknownType ? declaredType : errorType; } return useUnknownInCatchVariables ? unknownType : anyType; } if (declaredType) { return addOptionality(declaredType, isProperty, isOptional); } if ((noImplicitAny || isInJSFile(declaration)) && isVariableDeclaration(declaration) && !isBindingPattern(declaration.name) && !(getCombinedModifierFlagsCached(declaration) & 32) && !(declaration.flags & 33554432)) { if (!(getCombinedNodeFlagsCached(declaration) & 6) && (!declaration.initializer || isNullOrUndefined3(declaration.initializer))) { return autoType; } if (declaration.initializer && isEmptyArrayLiteral2(declaration.initializer)) { return autoArrayType; } } if (isParameter(declaration)) { if (!declaration.symbol) { return; } const func = declaration.parent; if (func.kind === 179 && hasBindableName(func)) { const getter = getDeclarationOfKind(getSymbolOfDeclaration(declaration.parent), 178); if (getter) { const getterSignature = getSignatureFromDeclaration(getter); const thisParameter = getAccessorThisParameter(func); if (thisParameter && declaration === thisParameter) { Debug.assert(!thisParameter.type); return getTypeOfSymbol(getterSignature.thisParameter); } return getReturnTypeOfSignature(getterSignature); } } const parameterTypeOfTypeTag = getParameterTypeOfTypeTag(func, declaration); if (parameterTypeOfTypeTag) return parameterTypeOfTypeTag; const type = declaration.symbol.escapedName === "this" ? getContextualThisParameterType(func) : getContextuallyTypedParameterType(declaration); if (type) { return addOptionality(type, false, isOptional); } } if (hasOnlyExpressionInitializer(declaration) && !!declaration.initializer) { if (isInJSFile(declaration) && !isParameter(declaration)) { const containerObjectType = getJSContainerObjectType(declaration, getSymbolOfDeclaration(declaration), getDeclaredExpandoInitializer(declaration)); if (containerObjectType) { return containerObjectType; } } const type = widenTypeInferredFromInitializer(declaration, checkDeclarationInitializer(declaration, checkMode)); return addOptionality(type, isProperty, isOptional); } if (isPropertyDeclaration(declaration) && (noImplicitAny || isInJSFile(declaration))) { if (!hasStaticModifier(declaration)) { const constructor = findConstructorDeclaration(declaration.parent); const type = constructor ? getFlowTypeInConstructor(declaration.symbol, constructor) : getEffectiveModifierFlags(declaration) & 128 ? getTypeOfPropertyInBaseClass(declaration.symbol) : undefined; return type && addOptionality(type, true, isOptional); } else { const staticBlocks = filter(declaration.parent.members, isClassStaticBlockDeclaration); const type = staticBlocks.length ? getFlowTypeInStaticBlocks(declaration.symbol, staticBlocks) : getEffectiveModifierFlags(declaration) & 128 ? getTypeOfPropertyInBaseClass(declaration.symbol) : undefined; return type && addOptionality(type, true, isOptional); } } if (isJsxAttribute(declaration)) { return trueType; } if (isBindingPattern(declaration.name)) { return getTypeFromBindingPattern(declaration.name, false, true); } return; } function isConstructorDeclaredProperty(symbol) { if (symbol.valueDeclaration && isBinaryExpression(symbol.valueDeclaration)) { const links = getSymbolLinks(symbol); if (links.isConstructorDeclaredProperty === undefined) { links.isConstructorDeclaredProperty = false; links.isConstructorDeclaredProperty = !!getDeclaringConstructor(symbol) && every(symbol.declarations, (declaration) => isBinaryExpression(declaration) && isPossiblyAliasedThisProperty(declaration) && (declaration.left.kind !== 213 || isStringOrNumericLiteralLike(declaration.left.argumentExpression)) && !getAnnotatedTypeForAssignmentDeclaration(undefined, declaration, symbol, declaration)); } return links.isConstructorDeclaredProperty; } return false; } function isAutoTypedProperty(symbol) { const declaration = symbol.valueDeclaration; return declaration && isPropertyDeclaration(declaration) && !getEffectiveTypeAnnotationNode(declaration) && !declaration.initializer && (noImplicitAny || isInJSFile(declaration)); } function getDeclaringConstructor(symbol) { if (!symbol.declarations) { return; } for (const declaration of symbol.declarations) { const container = getThisContainer(declaration, false, false); if (container && (container.kind === 177 || isJSConstructor(container))) { return container; } } } function getFlowTypeFromCommonJSExport(symbol) { const file = getSourceFileOfNode(symbol.declarations[0]); const accessName = unescapeLeadingUnderscores(symbol.escapedName); const areAllModuleExports = symbol.declarations.every((d) => isInJSFile(d) && isAccessExpression(d) && isModuleExportsAccessExpression(d.expression)); const reference = areAllModuleExports ? factory.createPropertyAccessExpression(factory.createPropertyAccessExpression(factory.createIdentifier("module"), factory.createIdentifier("exports")), accessName) : factory.createPropertyAccessExpression(factory.createIdentifier("exports"), accessName); if (areAllModuleExports) { setParent(reference.expression.expression, reference.expression); } setParent(reference.expression, reference); setParent(reference, file); reference.flowNode = file.endFlowNode; return getFlowTypeOfReference(reference, autoType, undefinedType); } function getFlowTypeInStaticBlocks(symbol, staticBlocks) { const accessName = startsWith(symbol.escapedName, "__#") ? factory.createPrivateIdentifier(symbol.escapedName.split("@")[1]) : unescapeLeadingUnderscores(symbol.escapedName); for (const staticBlock of staticBlocks) { const reference = factory.createPropertyAccessExpression(factory.createThis(), accessName); setParent(reference.expression, reference); setParent(reference, staticBlock); reference.flowNode = staticBlock.returnFlowNode; const flowType = getFlowTypeOfProperty(reference, symbol); if (noImplicitAny && (flowType === autoType || flowType === autoArrayType)) { error2(symbol.valueDeclaration, Diagnostics.Member_0_implicitly_has_an_1_type, symbolToString(symbol), typeToString(flowType)); } if (everyType(flowType, isNullableType)) { continue; } return convertAutoToAny(flowType); } } function getFlowTypeInConstructor(symbol, constructor) { const accessName = startsWith(symbol.escapedName, "__#") ? factory.createPrivateIdentifier(symbol.escapedName.split("@")[1]) : unescapeLeadingUnderscores(symbol.escapedName); const reference = factory.createPropertyAccessExpression(factory.createThis(), accessName); setParent(reference.expression, reference); setParent(reference, constructor); reference.flowNode = constructor.returnFlowNode; const flowType = getFlowTypeOfProperty(reference, symbol); if (noImplicitAny && (flowType === autoType || flowType === autoArrayType)) { error2(symbol.valueDeclaration, Diagnostics.Member_0_implicitly_has_an_1_type, symbolToString(symbol), typeToString(flowType)); } return everyType(flowType, isNullableType) ? undefined : convertAutoToAny(flowType); } function getFlowTypeOfProperty(reference, prop) { const initialType = (prop == null ? undefined : prop.valueDeclaration) && (!isAutoTypedProperty(prop) || getEffectiveModifierFlags(prop.valueDeclaration) & 128) && getTypeOfPropertyInBaseClass(prop) || undefinedType; return getFlowTypeOfReference(reference, autoType, initialType); } function getWidenedTypeForAssignmentDeclaration(symbol, resolvedSymbol) { const container = getAssignedExpandoInitializer(symbol.valueDeclaration); if (container) { const tag = isInJSFile(container) ? getJSDocTypeTag(container) : undefined; if (tag && tag.typeExpression) { return getTypeFromTypeNode(tag.typeExpression); } const containerObjectType = symbol.valueDeclaration && getJSContainerObjectType(symbol.valueDeclaration, symbol, container); return containerObjectType || getWidenedLiteralType(checkExpressionCached(container)); } let type; let definedInConstructor = false; let definedInMethod = false; if (isConstructorDeclaredProperty(symbol)) { type = getFlowTypeInConstructor(symbol, getDeclaringConstructor(symbol)); } if (!type) { let types; if (symbol.declarations) { let jsdocType; for (const declaration of symbol.declarations) { const expression = isBinaryExpression(declaration) || isCallExpression(declaration) ? declaration : isAccessExpression(declaration) ? isBinaryExpression(declaration.parent) ? declaration.parent : declaration : undefined; if (!expression) { continue; } const kind = isAccessExpression(expression) ? getAssignmentDeclarationPropertyAccessKind(expression) : getAssignmentDeclarationKind(expression); if (kind === 4 || isBinaryExpression(expression) && isPossiblyAliasedThisProperty(expression, kind)) { if (isDeclarationInConstructor(expression)) { definedInConstructor = true; } else { definedInMethod = true; } } if (!isCallExpression(expression)) { jsdocType = getAnnotatedTypeForAssignmentDeclaration(jsdocType, expression, symbol, declaration); } if (!jsdocType) { (types || (types = [])).push(isBinaryExpression(expression) || isCallExpression(expression) ? getInitializerTypeFromAssignmentDeclaration(symbol, resolvedSymbol, expression, kind) : neverType); } } type = jsdocType; } if (!type) { if (!length(types)) { return errorType; } let constructorTypes = definedInConstructor && symbol.declarations ? getConstructorDefinedThisAssignmentTypes(types, symbol.declarations) : undefined; if (definedInMethod) { const propType = getTypeOfPropertyInBaseClass(symbol); if (propType) { (constructorTypes || (constructorTypes = [])).push(propType); definedInConstructor = true; } } const sourceTypes = some(constructorTypes, (t) => !!(t.flags & ~12)) ? constructorTypes : types; type = getUnionType(sourceTypes); } } const widened = getWidenedType(addOptionality(type, false, definedInMethod && !definedInConstructor)); if (symbol.valueDeclaration && isInJSFile(symbol.valueDeclaration) && filterType(widened, (t) => !!(t.flags & ~12)) === neverType) { reportImplicitAny(symbol.valueDeclaration, anyType); return anyType; } return widened; } function getJSContainerObjectType(decl, symbol, init) { var _a, _b; if (!isInJSFile(decl) || !init || !isObjectLiteralExpression(init) || init.properties.length) { return; } const exports22 = createSymbolTable(); while (isBinaryExpression(decl) || isPropertyAccessExpression(decl)) { const s2 = getSymbolOfNode(decl); if ((_a = s2 == null ? undefined : s2.exports) == null ? undefined : _a.size) { mergeSymbolTable(exports22, s2.exports); } decl = isBinaryExpression(decl) ? decl.parent : decl.parent.parent; } const s = getSymbolOfNode(decl); if ((_b = s == null ? undefined : s.exports) == null ? undefined : _b.size) { mergeSymbolTable(exports22, s.exports); } const type = createAnonymousType(symbol, exports22, emptyArray, emptyArray, emptyArray); type.objectFlags |= 4096; return type; } function getAnnotatedTypeForAssignmentDeclaration(declaredType, expression, symbol, declaration) { var _a; const typeNode = getEffectiveTypeAnnotationNode(expression.parent); if (typeNode) { const type = getWidenedType(getTypeFromTypeNode(typeNode)); if (!declaredType) { return type; } else if (!isErrorType(declaredType) && !isErrorType(type) && !isTypeIdenticalTo(declaredType, type)) { errorNextVariableOrPropertyDeclarationMustHaveSameType(undefined, declaredType, declaration, type); } } if ((_a = symbol.parent) == null ? undefined : _a.valueDeclaration) { const possiblyAnnotatedSymbol = getFunctionExpressionParentSymbolOrSymbol(symbol.parent); if (possiblyAnnotatedSymbol.valueDeclaration) { const typeNode2 = getEffectiveTypeAnnotationNode(possiblyAnnotatedSymbol.valueDeclaration); if (typeNode2) { const annotationSymbol = getPropertyOfType(getTypeFromTypeNode(typeNode2), symbol.escapedName); if (annotationSymbol) { return getNonMissingTypeOfSymbol(annotationSymbol); } } } } return declaredType; } function getInitializerTypeFromAssignmentDeclaration(symbol, resolvedSymbol, expression, kind) { if (isCallExpression(expression)) { if (resolvedSymbol) { return getTypeOfSymbol(resolvedSymbol); } const objectLitType = checkExpressionCached(expression.arguments[2]); const valueType = getTypeOfPropertyOfType(objectLitType, "value"); if (valueType) { return valueType; } const getFunc = getTypeOfPropertyOfType(objectLitType, "get"); if (getFunc) { const getSig = getSingleCallSignature(getFunc); if (getSig) { return getReturnTypeOfSignature(getSig); } } const setFunc = getTypeOfPropertyOfType(objectLitType, "set"); if (setFunc) { const setSig = getSingleCallSignature(setFunc); if (setSig) { return getTypeOfFirstParameterOfSignature(setSig); } } return anyType; } if (containsSameNamedThisProperty(expression.left, expression.right)) { return anyType; } const isDirectExport = kind === 1 && (isPropertyAccessExpression(expression.left) || isElementAccessExpression(expression.left)) && (isModuleExportsAccessExpression(expression.left.expression) || isIdentifier(expression.left.expression) && isExportsIdentifier(expression.left.expression)); const type = resolvedSymbol ? getTypeOfSymbol(resolvedSymbol) : isDirectExport ? getRegularTypeOfLiteralType(checkExpressionCached(expression.right)) : getWidenedLiteralType(checkExpressionCached(expression.right)); if (type.flags & 1048576 && kind === 2 && symbol.escapedName === "export=") { const exportedType = resolveStructuredTypeMembers(type); const members = createSymbolTable(); copyEntries(exportedType.members, members); const initialSize = members.size; if (resolvedSymbol && !resolvedSymbol.exports) { resolvedSymbol.exports = createSymbolTable(); } (resolvedSymbol || symbol).exports.forEach((s, name) => { var _a; const exportedMember = members.get(name); if (exportedMember && exportedMember !== s && !(s.flags & 2097152)) { if (s.flags & 111551 && exportedMember.flags & 111551) { if (s.valueDeclaration && exportedMember.valueDeclaration && getSourceFileOfNode(s.valueDeclaration) !== getSourceFileOfNode(exportedMember.valueDeclaration)) { const unescapedName = unescapeLeadingUnderscores(s.escapedName); const exportedMemberName = ((_a = tryCast(exportedMember.valueDeclaration, isNamedDeclaration)) == null ? undefined : _a.name) || exportedMember.valueDeclaration; addRelatedInfo(error2(s.valueDeclaration, Diagnostics.Duplicate_identifier_0, unescapedName), createDiagnosticForNode(exportedMemberName, Diagnostics._0_was_also_declared_here, unescapedName)); addRelatedInfo(error2(exportedMemberName, Diagnostics.Duplicate_identifier_0, unescapedName), createDiagnosticForNode(s.valueDeclaration, Diagnostics._0_was_also_declared_here, unescapedName)); } const union = createSymbol(s.flags | exportedMember.flags, name); union.links.type = getUnionType([getTypeOfSymbol(s), getTypeOfSymbol(exportedMember)]); union.valueDeclaration = exportedMember.valueDeclaration; union.declarations = concatenate(exportedMember.declarations, s.declarations); members.set(name, union); } else { members.set(name, mergeSymbol(s, exportedMember)); } } else { members.set(name, s); } }); const result = createAnonymousType(initialSize !== members.size ? undefined : exportedType.symbol, members, exportedType.callSignatures, exportedType.constructSignatures, exportedType.indexInfos); if (initialSize === members.size) { if (type.aliasSymbol) { result.aliasSymbol = type.aliasSymbol; result.aliasTypeArguments = type.aliasTypeArguments; } if (getObjectFlags(type) & 4) { result.aliasSymbol = type.symbol; const args = getTypeArguments(type); result.aliasTypeArguments = length(args) ? args : undefined; } } result.objectFlags |= getPropagatingFlagsOfTypes([type]) | getObjectFlags(type) & (4096 | 16384 | 128); if (result.symbol && result.symbol.flags & 32 && type === getDeclaredTypeOfClassOrInterface(result.symbol)) { result.objectFlags |= 16777216; } return result; } if (isEmptyArrayLiteralType(type)) { reportImplicitAny(expression, anyArrayType); return anyArrayType; } return type; } function containsSameNamedThisProperty(thisProperty, expression) { return isPropertyAccessExpression(thisProperty) && thisProperty.expression.kind === 110 && forEachChildRecursively(expression, (n) => isMatchingReference(thisProperty, n)); } function isDeclarationInConstructor(expression) { const thisContainer = getThisContainer(expression, false, false); return thisContainer.kind === 177 || thisContainer.kind === 263 || thisContainer.kind === 219 && !isPrototypePropertyAssignment(thisContainer.parent); } function getConstructorDefinedThisAssignmentTypes(types, declarations) { Debug.assert(types.length === declarations.length); return types.filter((_, i) => { const declaration = declarations[i]; const expression = isBinaryExpression(declaration) ? declaration : isBinaryExpression(declaration.parent) ? declaration.parent : undefined; return expression && isDeclarationInConstructor(expression); }); } function getTypeFromBindingElement(element, includePatternInType, reportErrors2) { if (element.initializer) { const contextualType = isBindingPattern(element.name) ? getTypeFromBindingPattern(element.name, true, false) : unknownType; return addOptionality(getWidenedLiteralTypeForInitializer(element, checkDeclarationInitializer(element, 0, contextualType))); } if (isBindingPattern(element.name)) { return getTypeFromBindingPattern(element.name, includePatternInType, reportErrors2); } if (reportErrors2 && !declarationBelongsToPrivateAmbientMember(element)) { reportImplicitAny(element, anyType); } return includePatternInType ? nonInferrableAnyType : anyType; } function getTypeFromObjectBindingPattern(pattern, includePatternInType, reportErrors2) { const members = createSymbolTable(); let stringIndexInfo; let objectFlags = 128 | 131072; forEach(pattern.elements, (e) => { const name = e.propertyName || e.name; if (e.dotDotDotToken) { stringIndexInfo = createIndexInfo(stringType, anyType, false); return; } const exprType = getLiteralTypeFromPropertyName(name); if (!isTypeUsableAsPropertyName(exprType)) { objectFlags |= 512; return; } const text = getPropertyNameFromType(exprType); const flags = 4 | (e.initializer ? 16777216 : 0); const symbol = createSymbol(flags, text); symbol.links.type = getTypeFromBindingElement(e, includePatternInType, reportErrors2); members.set(symbol.escapedName, symbol); }); const result = createAnonymousType(undefined, members, emptyArray, emptyArray, stringIndexInfo ? [stringIndexInfo] : emptyArray); result.objectFlags |= objectFlags; if (includePatternInType) { result.pattern = pattern; result.objectFlags |= 131072; } return result; } function getTypeFromArrayBindingPattern(pattern, includePatternInType, reportErrors2) { const elements = pattern.elements; const lastElement = lastOrUndefined(elements); const restElement = lastElement && lastElement.kind === 209 && lastElement.dotDotDotToken ? lastElement : undefined; if (elements.length === 0 || elements.length === 1 && restElement) { return languageVersion >= 2 ? createIterableType(anyType) : anyArrayType; } const elementTypes = map(elements, (e) => isOmittedExpression(e) ? anyType : getTypeFromBindingElement(e, includePatternInType, reportErrors2)); const minLength = findLastIndex(elements, (e) => !(e === restElement || isOmittedExpression(e) || hasDefaultValue(e)), elements.length - 1) + 1; const elementFlags = map(elements, (e, i) => e === restElement ? 4 : i >= minLength ? 2 : 1); let result = createTupleType(elementTypes, elementFlags); if (includePatternInType) { result = cloneTypeReference(result); result.pattern = pattern; result.objectFlags |= 131072; } return result; } function getTypeFromBindingPattern(pattern, includePatternInType = false, reportErrors2 = false) { if (includePatternInType) contextualBindingPatterns.push(pattern); const result = pattern.kind === 207 ? getTypeFromObjectBindingPattern(pattern, includePatternInType, reportErrors2) : getTypeFromArrayBindingPattern(pattern, includePatternInType, reportErrors2); if (includePatternInType) contextualBindingPatterns.pop(); return result; } function getWidenedTypeForVariableLikeDeclaration(declaration, reportErrors2) { return widenTypeForVariableLikeDeclaration(getTypeForVariableLikeDeclaration(declaration, true, 0), declaration, reportErrors2); } function getTypeFromImportAttributes(node) { const links = getNodeLinks(node); if (!links.resolvedType) { const symbol = createSymbol(4096, "__importAttributes"); const members = createSymbolTable(); forEach(node.elements, (attr) => { const member = createSymbol(4, getNameFromImportAttribute(attr)); member.parent = symbol; member.links.type = checkImportAttribute(attr); member.links.target = member; members.set(member.escapedName, member); }); const type = createAnonymousType(symbol, members, emptyArray, emptyArray, emptyArray); type.objectFlags |= 128 | 262144; links.resolvedType = type; } return links.resolvedType; } function isGlobalSymbolConstructor(node) { const symbol = getSymbolOfNode(node); const globalSymbol = getGlobalESSymbolConstructorTypeSymbol(false); return globalSymbol && symbol && symbol === globalSymbol; } function widenTypeForVariableLikeDeclaration(type, declaration, reportErrors2) { if (type) { if (type.flags & 512 && isGlobalSymbolConstructor(declaration.parent)) { type = getESSymbolLikeTypeForNode(declaration); } if (reportErrors2) { reportErrorsFromWidening(declaration, type); } if (type.flags & 16384 && (isBindingElement(declaration) || !tryGetTypeFromEffectiveTypeNode(declaration)) && type.symbol !== getSymbolOfDeclaration(declaration)) { type = esSymbolType; } return getWidenedType(type); } type = isParameter(declaration) && declaration.dotDotDotToken ? anyArrayType : anyType; if (reportErrors2) { if (!declarationBelongsToPrivateAmbientMember(declaration)) { reportImplicitAny(declaration, type); } } return type; } function declarationBelongsToPrivateAmbientMember(declaration) { const root = getRootDeclaration(declaration); const memberDeclaration = root.kind === 170 ? root.parent : root; return isPrivateWithinAmbient(memberDeclaration); } function tryGetTypeFromEffectiveTypeNode(node) { const typeNode = getEffectiveTypeAnnotationNode(node); if (typeNode) { return getTypeFromTypeNode(typeNode); } } function isParameterOfContextSensitiveSignature(symbol) { let decl = symbol.valueDeclaration; if (!decl) { return false; } if (isBindingElement(decl)) { decl = walkUpBindingElementsAndPatterns(decl); } if (isParameter(decl)) { return isContextSensitiveFunctionOrObjectLiteralMethod(decl.parent); } return false; } function getTypeOfVariableOrParameterOrProperty(symbol) { const links = getSymbolLinks(symbol); if (!links.type) { const type = getTypeOfVariableOrParameterOrPropertyWorker(symbol); if (!links.type && !isParameterOfContextSensitiveSignature(symbol)) { links.type = type; } return type; } return links.type; } function getTypeOfVariableOrParameterOrPropertyWorker(symbol) { if (symbol.flags & 4194304) { return getTypeOfPrototypeProperty(symbol); } if (symbol === requireSymbol) { return anyType; } if (symbol.flags & 134217728 && symbol.valueDeclaration) { const fileSymbol = getSymbolOfDeclaration(getSourceFileOfNode(symbol.valueDeclaration)); const result = createSymbol(fileSymbol.flags, "exports"); result.declarations = fileSymbol.declarations ? fileSymbol.declarations.slice() : []; result.parent = symbol; result.links.target = fileSymbol; if (fileSymbol.valueDeclaration) result.valueDeclaration = fileSymbol.valueDeclaration; if (fileSymbol.members) result.members = new Map(fileSymbol.members); if (fileSymbol.exports) result.exports = new Map(fileSymbol.exports); const members = createSymbolTable(); members.set("exports", result); return createAnonymousType(symbol, members, emptyArray, emptyArray, emptyArray); } Debug.assertIsDefined(symbol.valueDeclaration); const declaration = symbol.valueDeclaration; if (isSourceFile(declaration) && isJsonSourceFile(declaration)) { if (!declaration.statements.length) { return emptyObjectType; } return getWidenedType(getWidenedLiteralType(checkExpression(declaration.statements[0].expression))); } if (isAccessor(declaration)) { return getTypeOfAccessors(symbol); } if (!pushTypeResolution(symbol, 0)) { if (symbol.flags & 512 && !(symbol.flags & 67108864)) { return getTypeOfFuncClassEnumModule(symbol); } return reportCircularityError(symbol); } let type; if (declaration.kind === 278) { type = widenTypeForVariableLikeDeclaration(tryGetTypeFromEffectiveTypeNode(declaration) || checkExpressionCached(declaration.expression), declaration); } else if (isBinaryExpression(declaration) || isInJSFile(declaration) && (isCallExpression(declaration) || (isPropertyAccessExpression(declaration) || isBindableStaticElementAccessExpression(declaration)) && isBinaryExpression(declaration.parent))) { type = getWidenedTypeForAssignmentDeclaration(symbol); } else if (isPropertyAccessExpression(declaration) || isElementAccessExpression(declaration) || isIdentifier(declaration) || isStringLiteralLike(declaration) || isNumericLiteral(declaration) || isClassDeclaration(declaration) || isFunctionDeclaration(declaration) || isMethodDeclaration(declaration) && !isObjectLiteralMethod(declaration) || isMethodSignature(declaration) || isSourceFile(declaration)) { if (symbol.flags & (16 | 8192 | 32 | 384 | 512)) { return getTypeOfFuncClassEnumModule(symbol); } type = isBinaryExpression(declaration.parent) ? getWidenedTypeForAssignmentDeclaration(symbol) : tryGetTypeFromEffectiveTypeNode(declaration) || anyType; } else if (isPropertyAssignment(declaration)) { type = tryGetTypeFromEffectiveTypeNode(declaration) || checkPropertyAssignment(declaration); } else if (isJsxAttribute(declaration)) { type = tryGetTypeFromEffectiveTypeNode(declaration) || checkJsxAttribute(declaration); } else if (isShorthandPropertyAssignment(declaration)) { type = tryGetTypeFromEffectiveTypeNode(declaration) || checkExpressionForMutableLocation(declaration.name, 0); } else if (isObjectLiteralMethod(declaration)) { type = tryGetTypeFromEffectiveTypeNode(declaration) || checkObjectLiteralMethod(declaration, 0); } else if (isParameter(declaration) || isPropertyDeclaration(declaration) || isPropertySignature(declaration) || isVariableDeclaration(declaration) || isBindingElement(declaration) || isJSDocPropertyLikeTag(declaration)) { type = getWidenedTypeForVariableLikeDeclaration(declaration, true); } else if (isEnumDeclaration(declaration)) { type = getTypeOfFuncClassEnumModule(symbol); } else if (isEnumMember(declaration)) { type = getTypeOfEnumMember(symbol); } else { return Debug.fail("Unhandled declaration kind! " + Debug.formatSyntaxKind(declaration.kind) + " for " + Debug.formatSymbol(symbol)); } if (!popTypeResolution()) { if (symbol.flags & 512 && !(symbol.flags & 67108864)) { return getTypeOfFuncClassEnumModule(symbol); } return reportCircularityError(symbol); } return type; } function getAnnotatedAccessorTypeNode(accessor) { if (accessor) { switch (accessor.kind) { case 178: const getterTypeAnnotation = getEffectiveReturnTypeNode(accessor); return getterTypeAnnotation; case 179: const setterTypeAnnotation = getEffectiveSetAccessorTypeAnnotationNode(accessor); return setterTypeAnnotation; case 173: Debug.assert(hasAccessorModifier(accessor)); const accessorTypeAnnotation = getEffectiveTypeAnnotationNode(accessor); return accessorTypeAnnotation; } } return; } function getAnnotatedAccessorType(accessor) { const node = getAnnotatedAccessorTypeNode(accessor); return node && getTypeFromTypeNode(node); } function getAnnotatedAccessorThisParameter(accessor) { const parameter = getAccessorThisParameter(accessor); return parameter && parameter.symbol; } function getThisTypeOfDeclaration(declaration) { return getThisTypeOfSignature(getSignatureFromDeclaration(declaration)); } function getTypeOfAccessors(symbol) { const links = getSymbolLinks(symbol); if (!links.type) { if (!pushTypeResolution(symbol, 0)) { return errorType; } const getter = getDeclarationOfKind(symbol, 178); const setter = getDeclarationOfKind(symbol, 179); const accessor = tryCast(getDeclarationOfKind(symbol, 173), isAutoAccessorPropertyDeclaration); let type = getter && isInJSFile(getter) && getTypeForDeclarationFromJSDocComment(getter) || getAnnotatedAccessorType(getter) || getAnnotatedAccessorType(setter) || getAnnotatedAccessorType(accessor) || getter && getter.body && getReturnTypeFromBody(getter) || accessor && getWidenedTypeForVariableLikeDeclaration(accessor, true); if (!type) { if (setter && !isPrivateWithinAmbient(setter)) { errorOrSuggestion(noImplicitAny, setter, Diagnostics.Property_0_implicitly_has_type_any_because_its_set_accessor_lacks_a_parameter_type_annotation, symbolToString(symbol)); } else if (getter && !isPrivateWithinAmbient(getter)) { errorOrSuggestion(noImplicitAny, getter, Diagnostics.Property_0_implicitly_has_type_any_because_its_get_accessor_lacks_a_return_type_annotation, symbolToString(symbol)); } else if (accessor && !isPrivateWithinAmbient(accessor)) { errorOrSuggestion(noImplicitAny, accessor, Diagnostics.Member_0_implicitly_has_an_1_type, symbolToString(symbol), "any"); } type = anyType; } if (!popTypeResolution()) { if (getAnnotatedAccessorTypeNode(getter)) { error2(getter, Diagnostics._0_is_referenced_directly_or_indirectly_in_its_own_type_annotation, symbolToString(symbol)); } else if (getAnnotatedAccessorTypeNode(setter)) { error2(setter, Diagnostics._0_is_referenced_directly_or_indirectly_in_its_own_type_annotation, symbolToString(symbol)); } else if (getAnnotatedAccessorTypeNode(accessor)) { error2(setter, Diagnostics._0_is_referenced_directly_or_indirectly_in_its_own_type_annotation, symbolToString(symbol)); } else if (getter && noImplicitAny) { error2(getter, Diagnostics._0_implicitly_has_return_type_any_because_it_does_not_have_a_return_type_annotation_and_is_referenced_directly_or_indirectly_in_one_of_its_return_expressions, symbolToString(symbol)); } type = anyType; } links.type ?? (links.type = type); } return links.type; } function getWriteTypeOfAccessors(symbol) { const links = getSymbolLinks(symbol); if (!links.writeType) { if (!pushTypeResolution(symbol, 7)) { return errorType; } const setter = getDeclarationOfKind(symbol, 179) ?? tryCast(getDeclarationOfKind(symbol, 173), isAutoAccessorPropertyDeclaration); let writeType = getAnnotatedAccessorType(setter); if (!popTypeResolution()) { if (getAnnotatedAccessorTypeNode(setter)) { error2(setter, Diagnostics._0_is_referenced_directly_or_indirectly_in_its_own_type_annotation, symbolToString(symbol)); } writeType = anyType; } links.writeType ?? (links.writeType = writeType || getTypeOfAccessors(symbol)); } return links.writeType; } function getBaseTypeVariableOfClass(symbol) { const baseConstructorType = getBaseConstructorTypeOfClass(getDeclaredTypeOfClassOrInterface(symbol)); return baseConstructorType.flags & 34078720 ? baseConstructorType : baseConstructorType.flags & 268435456 ? find(baseConstructorType.types, (t) => !!(t.flags & 34078720)) : undefined; } function getTypeOfFuncClassEnumModule(symbol) { let links = getSymbolLinks(symbol); const originalLinks = links; if (!links.type) { const expando = symbol.valueDeclaration && getSymbolOfExpando(symbol.valueDeclaration, false); if (expando) { const merged = mergeJSSymbols(symbol, expando); if (merged) { symbol = merged; links = merged.links; } } originalLinks.type = links.type = getTypeOfFuncClassEnumModuleWorker(symbol); } return links.type; } function getTypeOfFuncClassEnumModuleWorker(symbol) { const declaration = symbol.valueDeclaration; if (symbol.flags & 1536 && isShorthandAmbientModuleSymbol(symbol)) { return anyType; } else if (declaration && (declaration.kind === 227 || isAccessExpression(declaration) && declaration.parent.kind === 227)) { return getWidenedTypeForAssignmentDeclaration(symbol); } else if (symbol.flags & 512 && declaration && isSourceFile(declaration) && declaration.commonJsModuleIndicator) { const resolvedModule = resolveExternalModuleSymbol(symbol); if (resolvedModule !== symbol) { if (!pushTypeResolution(symbol, 0)) { return errorType; } const exportEquals = getMergedSymbol(symbol.exports.get("export=")); const type2 = getWidenedTypeForAssignmentDeclaration(exportEquals, exportEquals === resolvedModule ? undefined : resolvedModule); if (!popTypeResolution()) { return reportCircularityError(symbol); } return type2; } } const type = createObjectType(16, symbol); if (symbol.flags & 32) { const baseTypeVariable = getBaseTypeVariableOfClass(symbol); return baseTypeVariable ? getIntersectionType([type, baseTypeVariable]) : type; } else { return strictNullChecks && symbol.flags & 16777216 ? getOptionalType(type, true) : type; } } function getTypeOfEnumMember(symbol) { const links = getSymbolLinks(symbol); return links.type || (links.type = getDeclaredTypeOfEnumMember(symbol)); } function getTypeOfAlias(symbol) { const links = getSymbolLinks(symbol); if (!links.type) { if (!pushTypeResolution(symbol, 0)) { return errorType; } const targetSymbol = resolveAlias(symbol); const exportSymbol = symbol.declarations && getTargetOfAliasDeclaration(getDeclarationOfAliasSymbol(symbol), true); const declaredType = firstDefined(exportSymbol == null ? undefined : exportSymbol.declarations, (d) => isExportAssignment(d) ? tryGetTypeFromEffectiveTypeNode(d) : undefined); links.type ?? (links.type = (exportSymbol == null ? undefined : exportSymbol.declarations) && isDuplicatedCommonJSExport(exportSymbol.declarations) && symbol.declarations.length ? getFlowTypeFromCommonJSExport(exportSymbol) : isDuplicatedCommonJSExport(symbol.declarations) ? autoType : declaredType ? declaredType : getSymbolFlags(targetSymbol) & 111551 ? getTypeOfSymbol(targetSymbol) : errorType); if (!popTypeResolution()) { reportCircularityError(exportSymbol ?? symbol); return links.type ?? (links.type = errorType); } } return links.type; } function getTypeOfInstantiatedSymbol(symbol) { const links = getSymbolLinks(symbol); return links.type || (links.type = instantiateType(getTypeOfSymbol(links.target), links.mapper)); } function getWriteTypeOfInstantiatedSymbol(symbol) { const links = getSymbolLinks(symbol); return links.writeType || (links.writeType = instantiateType(getWriteTypeOfSymbol(links.target), links.mapper)); } function reportCircularityError(symbol) { const declaration = symbol.valueDeclaration; if (declaration) { if (getEffectiveTypeAnnotationNode(declaration)) { error2(symbol.valueDeclaration, Diagnostics._0_is_referenced_directly_or_indirectly_in_its_own_type_annotation, symbolToString(symbol)); return errorType; } if (noImplicitAny && (declaration.kind !== 170 || declaration.initializer)) { error2(symbol.valueDeclaration, Diagnostics._0_implicitly_has_type_any_because_it_does_not_have_a_type_annotation_and_is_referenced_directly_or_indirectly_in_its_own_initializer, symbolToString(symbol)); } } else if (symbol.flags & 2097152) { const node = getDeclarationOfAliasSymbol(symbol); if (node) { error2(node, Diagnostics.Circular_definition_of_import_alias_0, symbolToString(symbol)); } } return anyType; } function getTypeOfSymbolWithDeferredType(symbol) { const links = getSymbolLinks(symbol); if (!links.type) { Debug.assertIsDefined(links.deferralParent); Debug.assertIsDefined(links.deferralConstituents); links.type = links.deferralParent.flags & 134217728 ? getUnionType(links.deferralConstituents) : getIntersectionType(links.deferralConstituents); } return links.type; } function getWriteTypeOfSymbolWithDeferredType(symbol) { const links = getSymbolLinks(symbol); if (!links.writeType && links.deferralWriteConstituents) { Debug.assertIsDefined(links.deferralParent); Debug.assertIsDefined(links.deferralConstituents); links.writeType = links.deferralParent.flags & 134217728 ? getUnionType(links.deferralWriteConstituents) : getIntersectionType(links.deferralWriteConstituents); } return links.writeType; } function getWriteTypeOfSymbol(symbol) { const checkFlags = getCheckFlags(symbol); if (checkFlags & 2) { return checkFlags & 65536 ? getWriteTypeOfSymbolWithDeferredType(symbol) || getTypeOfSymbolWithDeferredType(symbol) : symbol.links.writeType || symbol.links.type; } if (symbol.flags & 4) { return removeMissingType(getTypeOfSymbol(symbol), !!(symbol.flags & 16777216)); } if (symbol.flags & 98304) { return checkFlags & 1 ? getWriteTypeOfInstantiatedSymbol(symbol) : getWriteTypeOfAccessors(symbol); } return getTypeOfSymbol(symbol); } function getTypeOfSymbol(symbol) { const checkFlags = getCheckFlags(symbol); if (checkFlags & 65536) { return getTypeOfSymbolWithDeferredType(symbol); } if (checkFlags & 1) { return getTypeOfInstantiatedSymbol(symbol); } if (checkFlags & 262144) { return getTypeOfMappedSymbol(symbol); } if (checkFlags & 8192) { return getTypeOfReverseMappedSymbol(symbol); } if (symbol.flags & (3 | 4)) { return getTypeOfVariableOrParameterOrProperty(symbol); } if (symbol.flags & (16 | 8192 | 32 | 384 | 512)) { return getTypeOfFuncClassEnumModule(symbol); } if (symbol.flags & 8) { return getTypeOfEnumMember(symbol); } if (symbol.flags & 98304) { return getTypeOfAccessors(symbol); } if (symbol.flags & 2097152) { return getTypeOfAlias(symbol); } return errorType; } function getNonMissingTypeOfSymbol(symbol) { return removeMissingType(getTypeOfSymbol(symbol), !!(symbol.flags & 16777216)); } function isReferenceToSomeType(type, targets) { if (type === undefined || (getObjectFlags(type) & 4) === 0) { return false; } for (const target of targets) { if (type.target === target) { return true; } } return false; } function isReferenceToType2(type, target) { return type !== undefined && target !== undefined && (getObjectFlags(type) & 4) !== 0 && type.target === target; } function getTargetType(type) { return getObjectFlags(type) & 4 ? type.target : type; } function hasBaseType(type, checkBase) { return check(type); function check(type2) { if (getObjectFlags(type2) & (3 | 4)) { const target = getTargetType(type2); return target === checkBase || some(getBaseTypes(target), check); } else if (type2.flags & 268435456) { return some(type2.types, check); } return false; } } function appendTypeParameters(typeParameters, declarations) { for (const declaration of declarations) { typeParameters = appendIfUnique(typeParameters, getDeclaredTypeOfTypeParameter(getSymbolOfDeclaration(declaration))); } return typeParameters; } function getOuterTypeParameters(node, includeThisTypes) { while (true) { node = node.parent; if (node && isBinaryExpression(node)) { const assignmentKind = getAssignmentDeclarationKind(node); if (assignmentKind === 6 || assignmentKind === 3) { const symbol = getSymbolOfDeclaration(node.left); if (symbol && symbol.parent && !findAncestor(symbol.parent.valueDeclaration, (d) => node === d)) { node = symbol.parent.valueDeclaration; } } } if (!node) { return; } const kind = node.kind; switch (kind) { case 264: case 232: case 265: case 180: case 181: case 174: case 185: case 186: case 318: case 263: case 175: case 219: case 220: case 266: case 346: case 347: case 341: case 339: case 201: case 195: { const outerTypeParameters = getOuterTypeParameters(node, includeThisTypes); if ((kind === 219 || kind === 220 || isObjectLiteralMethod(node)) && isContextSensitive(node)) { const signature = firstOrUndefined(getSignaturesOfType(getTypeOfSymbol(getSymbolOfDeclaration(node)), 0)); if (signature && signature.typeParameters) { return [...outerTypeParameters || emptyArray, ...signature.typeParameters]; } } if (kind === 201) { return append(outerTypeParameters, getDeclaredTypeOfTypeParameter(getSymbolOfDeclaration(node.typeParameter))); } else if (kind === 195) { return concatenate(outerTypeParameters, getInferTypeParameters(node)); } const outerAndOwnTypeParameters = appendTypeParameters(outerTypeParameters, getEffectiveTypeParameterDeclarations(node)); const thisType = includeThisTypes && (kind === 264 || kind === 232 || kind === 265 || isJSConstructor(node)) && getDeclaredTypeOfClassOrInterface(getSymbolOfDeclaration(node)).thisType; return thisType ? append(outerAndOwnTypeParameters, thisType) : outerAndOwnTypeParameters; } case 342: const paramSymbol = getParameterSymbolFromJSDoc(node); if (paramSymbol) { node = paramSymbol.valueDeclaration; } break; case 321: { const outerTypeParameters = getOuterTypeParameters(node, includeThisTypes); return node.tags ? appendTypeParameters(outerTypeParameters, flatMap(node.tags, (t) => isJSDocTemplateTag(t) ? t.typeParameters : undefined)) : outerTypeParameters; } } } } function getOuterTypeParametersOfClassOrInterface(symbol) { var _a; const declaration = symbol.flags & 32 || symbol.flags & 16 ? symbol.valueDeclaration : (_a = symbol.declarations) == null ? undefined : _a.find((decl) => { if (decl.kind === 265) { return true; } if (decl.kind !== 261) { return false; } const initializer = decl.initializer; return !!initializer && (initializer.kind === 219 || initializer.kind === 220); }); Debug.assert(!!declaration, "Class was missing valueDeclaration -OR- non-class had no interface declarations"); return getOuterTypeParameters(declaration); } function getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(symbol) { if (!symbol.declarations) { return; } let result; for (const node of symbol.declarations) { if (node.kind === 265 || node.kind === 264 || node.kind === 232 || isJSConstructor(node) || isTypeAlias(node)) { const declaration = node; result = appendTypeParameters(result, getEffectiveTypeParameterDeclarations(declaration)); } } return result; } function getTypeParametersOfClassOrInterface(symbol) { return concatenate(getOuterTypeParametersOfClassOrInterface(symbol), getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(symbol)); } function isMixinConstructorType(type) { const signatures = getSignaturesOfType(type, 1); if (signatures.length === 1) { const s = signatures[0]; if (!s.typeParameters && s.parameters.length === 1 && signatureHasRestParameter(s)) { const paramType = getTypeOfParameter(s.parameters[0]); return isTypeAny(paramType) || getElementTypeOfArrayType(paramType) === anyType; } } return false; } function isConstructorType(type) { if (getSignaturesOfType(type, 1).length > 0) { return true; } if (type.flags & 34078720) { const constraint = getBaseConstraintOfType(type); return !!constraint && isMixinConstructorType(constraint); } return false; } function getBaseTypeNodeOfClass(type) { const decl = getClassLikeDeclarationOfSymbol(type.symbol); return decl && getEffectiveBaseTypeNode(decl); } function getConstructorsForTypeArguments(type, typeArgumentNodes, location) { const typeArgCount = length(typeArgumentNodes); const isJavascript = isInJSFile(location); return filter(getSignaturesOfType(type, 1), (sig) => (isJavascript || typeArgCount >= getMinTypeArgumentCount(sig.typeParameters)) && typeArgCount <= length(sig.typeParameters)); } function getInstantiatedConstructorsForTypeArguments(type, typeArgumentNodes, location) { const signatures = getConstructorsForTypeArguments(type, typeArgumentNodes, location); const typeArguments = map(typeArgumentNodes, getTypeFromTypeNode); return sameMap(signatures, (sig) => some(sig.typeParameters) ? getSignatureInstantiation(sig, typeArguments, isInJSFile(location)) : sig); } function getBaseConstructorTypeOfClass(type) { if (!type.resolvedBaseConstructorType) { const decl = getClassLikeDeclarationOfSymbol(type.symbol); const extended = decl && getEffectiveBaseTypeNode(decl); const baseTypeNode = getBaseTypeNodeOfClass(type); if (!baseTypeNode) { return type.resolvedBaseConstructorType = undefinedType; } if (!pushTypeResolution(type, 1)) { return errorType; } const baseConstructorType = checkExpression(baseTypeNode.expression); if (extended && baseTypeNode !== extended) { Debug.assert(!extended.typeArguments); checkExpression(extended.expression); } if (baseConstructorType.flags & (1048576 | 268435456)) { resolveStructuredTypeMembers(baseConstructorType); } if (!popTypeResolution()) { error2(type.symbol.valueDeclaration, Diagnostics._0_is_referenced_directly_or_indirectly_in_its_own_base_expression, symbolToString(type.symbol)); return type.resolvedBaseConstructorType ?? (type.resolvedBaseConstructorType = errorType); } if (!(baseConstructorType.flags & 1) && baseConstructorType !== nullWideningType && !isConstructorType(baseConstructorType)) { const err = error2(baseTypeNode.expression, Diagnostics.Type_0_is_not_a_constructor_function_type, typeToString(baseConstructorType)); if (baseConstructorType.flags & 524288) { const constraint = getConstraintFromTypeParameter(baseConstructorType); let ctorReturn = unknownType; if (constraint) { const ctorSig = getSignaturesOfType(constraint, 1); if (ctorSig[0]) { ctorReturn = getReturnTypeOfSignature(ctorSig[0]); } } if (baseConstructorType.symbol.declarations) { addRelatedInfo(err, createDiagnosticForNode(baseConstructorType.symbol.declarations[0], Diagnostics.Did_you_mean_for_0_to_be_constrained_to_type_new_args_Colon_any_1, symbolToString(baseConstructorType.symbol), typeToString(ctorReturn))); } } return type.resolvedBaseConstructorType ?? (type.resolvedBaseConstructorType = errorType); } type.resolvedBaseConstructorType ?? (type.resolvedBaseConstructorType = baseConstructorType); } return type.resolvedBaseConstructorType; } function getImplementsTypes(type) { let resolvedImplementsTypes = emptyArray; if (type.symbol.declarations) { for (const declaration of type.symbol.declarations) { const implementsTypeNodes = getEffectiveImplementsTypeNodes(declaration); if (!implementsTypeNodes) continue; for (const node of implementsTypeNodes) { const implementsType = getTypeFromTypeNode(node); if (!isErrorType(implementsType)) { if (resolvedImplementsTypes === emptyArray) { resolvedImplementsTypes = [implementsType]; } else { resolvedImplementsTypes.push(implementsType); } } } } } return resolvedImplementsTypes; } function reportCircularBaseType(node, type) { error2(node, Diagnostics.Type_0_recursively_references_itself_as_a_base_type, typeToString(type, undefined, 2)); } function getBaseTypes(type) { if (!(getObjectFlags(type) & (3 | 4))) { return emptyArray; } if (!type.baseTypesResolved) { if (pushTypeResolution(type, 6)) { if (type.objectFlags & 8) { type.resolvedBaseTypes = [getTupleBaseType(type)]; } else if (type.symbol.flags & (32 | 64)) { if (type.symbol.flags & 32) { resolveBaseTypesOfClass(type); } if (type.symbol.flags & 64) { resolveBaseTypesOfInterface(type); } } else { Debug.fail("type must be class or interface"); } if (!popTypeResolution() && type.symbol.declarations) { for (const declaration of type.symbol.declarations) { if (declaration.kind === 264 || declaration.kind === 265) { reportCircularBaseType(declaration, type); } } } } type.baseTypesResolved = true; } return type.resolvedBaseTypes; } function getTupleBaseType(type) { const elementTypes = sameMap(type.typeParameters, (t, i) => type.elementFlags[i] & 8 ? getIndexedAccessType(t, numberType) : t); return createArrayType(getUnionType(elementTypes || emptyArray), type.readonly); } function resolveBaseTypesOfClass(type) { type.resolvedBaseTypes = resolvingEmptyArray; const baseConstructorType = getApparentType(getBaseConstructorTypeOfClass(type)); if (!(baseConstructorType.flags & (1048576 | 268435456 | 1))) { return type.resolvedBaseTypes = emptyArray; } const baseTypeNode = getBaseTypeNodeOfClass(type); let baseType; const originalBaseType = baseConstructorType.symbol ? getDeclaredTypeOfSymbol(baseConstructorType.symbol) : undefined; if (baseConstructorType.symbol && baseConstructorType.symbol.flags & 32 && areAllOuterTypeParametersApplied(originalBaseType)) { baseType = getTypeFromClassOrInterfaceReference(baseTypeNode, baseConstructorType.symbol); } else if (baseConstructorType.flags & 1) { baseType = baseConstructorType; } else { const constructors = getInstantiatedConstructorsForTypeArguments(baseConstructorType, baseTypeNode.typeArguments, baseTypeNode); if (!constructors.length) { error2(baseTypeNode.expression, Diagnostics.No_base_constructor_has_the_specified_number_of_type_arguments); return type.resolvedBaseTypes = emptyArray; } baseType = getReturnTypeOfSignature(constructors[0]); } if (isErrorType(baseType)) { return type.resolvedBaseTypes = emptyArray; } const reducedBaseType = getReducedType(baseType); if (!isValidBaseType(reducedBaseType)) { const elaboration = elaborateNeverIntersection(undefined, baseType); const diagnostic = chainDiagnosticMessages(elaboration, Diagnostics.Base_constructor_return_type_0_is_not_an_object_type_or_intersection_of_object_types_with_statically_known_members, typeToString(reducedBaseType)); diagnostics.add(createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(baseTypeNode.expression), baseTypeNode.expression, diagnostic)); return type.resolvedBaseTypes = emptyArray; } if (type === reducedBaseType || hasBaseType(reducedBaseType, type)) { error2(type.symbol.valueDeclaration, Diagnostics.Type_0_recursively_references_itself_as_a_base_type, typeToString(type, undefined, 2)); return type.resolvedBaseTypes = emptyArray; } if (type.resolvedBaseTypes === resolvingEmptyArray) { type.members = undefined; } return type.resolvedBaseTypes = [reducedBaseType]; } function areAllOuterTypeParametersApplied(type) { const outerTypeParameters = type.outerTypeParameters; if (outerTypeParameters) { const last2 = outerTypeParameters.length - 1; const typeArguments = getTypeArguments(type); return outerTypeParameters[last2].symbol !== typeArguments[last2].symbol; } return true; } function isValidBaseType(type) { if (type.flags & 524288) { const constraint = getBaseConstraintOfType(type); if (constraint) { return isValidBaseType(constraint); } } return !!(type.flags & (1048576 | 131072 | 1) && !isGenericMappedType(type) || type.flags & 268435456 && every(type.types, isValidBaseType)); } function resolveBaseTypesOfInterface(type) { type.resolvedBaseTypes = type.resolvedBaseTypes || emptyArray; if (type.symbol.declarations) { for (const declaration of type.symbol.declarations) { if (declaration.kind === 265 && getInterfaceBaseTypeNodes(declaration)) { for (const node of getInterfaceBaseTypeNodes(declaration)) { const baseType = getReducedType(getTypeFromTypeNode(node)); if (!isErrorType(baseType)) { if (isValidBaseType(baseType)) { if (type !== baseType && !hasBaseType(baseType, type)) { if (type.resolvedBaseTypes === emptyArray) { type.resolvedBaseTypes = [baseType]; } else { type.resolvedBaseTypes.push(baseType); } } else { reportCircularBaseType(declaration, type); } } else { error2(node, Diagnostics.An_interface_can_only_extend_an_object_type_or_intersection_of_object_types_with_statically_known_members); } } } } } } } function isThislessInterface(symbol) { if (!symbol.declarations) { return true; } for (const declaration of symbol.declarations) { if (declaration.kind === 265) { if (declaration.flags & 256) { return false; } const baseTypeNodes = getInterfaceBaseTypeNodes(declaration); if (baseTypeNodes) { for (const node of baseTypeNodes) { if (isEntityNameExpression(node.expression)) { const baseSymbol = resolveEntityName(node.expression, 788968, true); if (!baseSymbol || !(baseSymbol.flags & 64) || getDeclaredTypeOfClassOrInterface(baseSymbol).thisType) { return false; } } } } } } return true; } function getDeclaredTypeOfClassOrInterface(symbol) { let links = getSymbolLinks(symbol); const originalLinks = links; if (!links.declaredType) { const kind = symbol.flags & 32 ? 1 : 2; const merged = mergeJSSymbols(symbol, symbol.valueDeclaration && getAssignedClassSymbol(symbol.valueDeclaration)); if (merged) { symbol = merged; links = merged.links; } const type = originalLinks.declaredType = links.declaredType = createObjectType(kind, symbol); const outerTypeParameters = getOuterTypeParametersOfClassOrInterface(symbol); const localTypeParameters = getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(symbol); if (outerTypeParameters || localTypeParameters || kind === 1 || !isThislessInterface(symbol)) { type.objectFlags |= 4; type.typeParameters = concatenate(outerTypeParameters, localTypeParameters); type.outerTypeParameters = outerTypeParameters; type.localTypeParameters = localTypeParameters; type.instantiations = /* @__PURE__ */ new Map; type.instantiations.set(getTypeListId(type.typeParameters), type); type.target = type; type.resolvedTypeArguments = type.typeParameters; type.thisType = createTypeParameter(symbol); type.thisType.isThisType = true; type.thisType.constraint = type; } } return links.declaredType; } function getDeclaredTypeOfTypeAlias(symbol) { var _a; const links = getSymbolLinks(symbol); if (!links.declaredType) { if (!pushTypeResolution(symbol, 2)) { return errorType; } const declaration = Debug.checkDefined((_a = symbol.declarations) == null ? undefined : _a.find(isTypeAlias), "Type alias symbol with no valid declaration found"); const typeNode = isJSDocTypeAlias(declaration) ? declaration.typeExpression : declaration.type; let type = typeNode ? getTypeFromTypeNode(typeNode) : errorType; if (popTypeResolution()) { const typeParameters = getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(symbol); if (typeParameters) { links.typeParameters = typeParameters; links.instantiations = /* @__PURE__ */ new Map; links.instantiations.set(getTypeListId(typeParameters), type); } if (type === intrinsicMarkerType && symbol.escapedName === "BuiltinIteratorReturn") { type = getBuiltinIteratorReturnType(); } } else { type = errorType; if (declaration.kind === 341) { error2(declaration.typeExpression.type, Diagnostics.Type_alias_0_circularly_references_itself, symbolToString(symbol)); } else { error2(isNamedDeclaration(declaration) ? declaration.name || declaration : declaration, Diagnostics.Type_alias_0_circularly_references_itself, symbolToString(symbol)); } } links.declaredType ?? (links.declaredType = type); } return links.declaredType; } function getBaseTypeOfEnumLikeType(type) { return type.flags & 98304 && type.symbol.flags & 8 ? getDeclaredTypeOfSymbol(getParentOfSymbol(type.symbol)) : type; } function getDeclaredTypeOfEnum(symbol) { const links = getSymbolLinks(symbol); if (!links.declaredType) { const memberTypeList = []; if (symbol.declarations) { for (const declaration of symbol.declarations) { if (declaration.kind === 267) { for (const member of declaration.members) { if (hasBindableName(member)) { const memberSymbol = getSymbolOfDeclaration(member); const value = getEnumMemberValue(member).value; const memberType = getFreshTypeOfLiteralType(value !== undefined ? getEnumLiteralType(value, getSymbolId(symbol), memberSymbol) : createComputedEnumType(memberSymbol)); getSymbolLinks(memberSymbol).declaredType = memberType; memberTypeList.push(getRegularTypeOfLiteralType(memberType)); } } } } } const enumType = memberTypeList.length ? getUnionType(memberTypeList, 1, symbol, undefined) : createComputedEnumType(symbol); if (enumType.flags & 134217728) { enumType.flags |= 32768; enumType.symbol = symbol; } links.declaredType = enumType; } return links.declaredType; } function createComputedEnumType(symbol) { const regularType = createTypeWithSymbol(65536, symbol); const freshType = createTypeWithSymbol(65536, symbol); regularType.regularType = regularType; regularType.freshType = freshType; freshType.regularType = regularType; freshType.freshType = freshType; return regularType; } function getDeclaredTypeOfEnumMember(symbol) { const links = getSymbolLinks(symbol); if (!links.declaredType) { const enumType = getDeclaredTypeOfEnum(getParentOfSymbol(symbol)); if (!links.declaredType) { links.declaredType = enumType; } } return links.declaredType; } function getDeclaredTypeOfTypeParameter(symbol) { const links = getSymbolLinks(symbol); return links.declaredType || (links.declaredType = createTypeParameter(symbol)); } function getDeclaredTypeOfAlias(symbol) { const links = getSymbolLinks(symbol); return links.declaredType || (links.declaredType = getDeclaredTypeOfSymbol(resolveAlias(symbol))); } function getDeclaredTypeOfSymbol(symbol) { return tryGetDeclaredTypeOfSymbol(symbol) || errorType; } function tryGetDeclaredTypeOfSymbol(symbol) { if (symbol.flags & (32 | 64)) { return getDeclaredTypeOfClassOrInterface(symbol); } if (symbol.flags & 524288) { return getDeclaredTypeOfTypeAlias(symbol); } if (symbol.flags & 262144) { return getDeclaredTypeOfTypeParameter(symbol); } if (symbol.flags & 384) { return getDeclaredTypeOfEnum(symbol); } if (symbol.flags & 8) { return getDeclaredTypeOfEnumMember(symbol); } if (symbol.flags & 2097152) { return getDeclaredTypeOfAlias(symbol); } return; } function isThislessType(node) { switch (node.kind) { case 133: case 159: case 154: case 150: case 163: case 136: case 155: case 151: case 116: case 157: case 146: case 202: return true; case 189: return isThislessType(node.elementType); case 184: return !node.typeArguments || node.typeArguments.every(isThislessType); } return false; } function isThislessTypeParameter(node) { const constraint = getEffectiveConstraintOfTypeParameter(node); return !constraint || isThislessType(constraint); } function isThislessVariableLikeDeclaration(node) { const typeNode = getEffectiveTypeAnnotationNode(node); return typeNode ? isThislessType(typeNode) : !hasInitializer(node); } function isThislessFunctionLikeDeclaration(node) { const returnType = getEffectiveReturnTypeNode(node); const typeParameters = getEffectiveTypeParameterDeclarations(node); return (node.kind === 177 || !!returnType && isThislessType(returnType)) && node.parameters.every(isThislessVariableLikeDeclaration) && typeParameters.every(isThislessTypeParameter); } function isThisless(symbol) { if (symbol.declarations && symbol.declarations.length === 1) { const declaration = symbol.declarations[0]; if (declaration) { switch (declaration.kind) { case 173: case 172: return isThislessVariableLikeDeclaration(declaration); case 175: case 174: case 177: case 178: case 179: return isThislessFunctionLikeDeclaration(declaration); } } } return false; } function createInstantiatedSymbolTable(symbols, mapper, mappingThisOnly) { const result = createSymbolTable(); for (const symbol of symbols) { result.set(symbol.escapedName, mappingThisOnly && isThisless(symbol) ? symbol : instantiateSymbol(symbol, mapper)); } return result; } function addInheritedMembers(symbols, baseSymbols) { for (const base of baseSymbols) { if (isStaticPrivateIdentifierProperty(base)) { continue; } const derived = symbols.get(base.escapedName); if (!derived || derived.valueDeclaration && isBinaryExpression(derived.valueDeclaration) && !isConstructorDeclaredProperty(derived) && !getContainingClassStaticBlock(derived.valueDeclaration)) { symbols.set(base.escapedName, base); symbols.set(base.escapedName, base); } } } function isStaticPrivateIdentifierProperty(s) { return !!s.valueDeclaration && isPrivateIdentifierClassElementDeclaration(s.valueDeclaration) && isStatic(s.valueDeclaration); } function resolveDeclaredMembers(type) { if (!type.declaredProperties) { const symbol = type.symbol; const members = getMembersOfSymbol(symbol); type.declaredProperties = getNamedMembers(members, symbol); type.declaredCallSignatures = emptyArray; type.declaredConstructSignatures = emptyArray; type.declaredIndexInfos = emptyArray; type.declaredCallSignatures = getSignaturesOfSymbol(members.get("__call")); type.declaredConstructSignatures = getSignaturesOfSymbol(members.get("__new")); type.declaredIndexInfos = getIndexInfosOfSymbol(symbol); } return type; } function isLateBindableName(node) { return isLateBindableAST(node) && isTypeUsableAsPropertyName(isComputedPropertyName(node) ? checkComputedPropertyName(node) : checkExpressionCached(node.argumentExpression)); } function isLateBindableIndexSignature(node) { return isLateBindableAST(node) && isTypeUsableAsIndexSignature(isComputedPropertyName(node) ? checkComputedPropertyName(node) : checkExpressionCached(node.argumentExpression)); } function isLateBindableAST(node) { if (!isComputedPropertyName(node) && !isElementAccessExpression(node)) { return false; } const expr = isComputedPropertyName(node) ? node.expression : node.argumentExpression; return isEntityNameExpression(expr); } function isTypeUsableAsIndexSignature(type) { return isTypeAssignableTo(type, stringNumberSymbolType); } function isLateBoundName(name) { return name.charCodeAt(0) === 95 && name.charCodeAt(1) === 95 && name.charCodeAt(2) === 64; } function hasLateBindableName(node) { const name = getNameOfDeclaration(node); return !!name && isLateBindableName(name); } function hasLateBindableIndexSignature(node) { const name = getNameOfDeclaration(node); return !!name && isLateBindableIndexSignature(name); } function hasBindableName(node) { return !hasDynamicName(node) || hasLateBindableName(node); } function isNonBindableDynamicName(node) { return isDynamicName(node) && !isLateBindableName(node); } function addDeclarationToLateBoundSymbol(symbol, member, symbolFlags) { Debug.assert(!!(getCheckFlags(symbol) & 4096), "Expected a late-bound symbol."); symbol.flags |= symbolFlags; getSymbolLinks(member.symbol).lateSymbol = symbol; if (!symbol.declarations) { symbol.declarations = [member]; } else if (!member.symbol.isReplaceableByMethod) { symbol.declarations.push(member); } if (symbolFlags & 111551) { setValueDeclaration(symbol, member); } } function lateBindMember(parent2, earlySymbols, lateSymbols, decl) { Debug.assert(!!decl.symbol, "The member is expected to have a symbol."); const links = getNodeLinks(decl); if (!links.resolvedSymbol) { links.resolvedSymbol = decl.symbol; const declName = isBinaryExpression(decl) ? decl.left : decl.name; const type = isElementAccessExpression(declName) ? checkExpressionCached(declName.argumentExpression) : checkComputedPropertyName(declName); if (isTypeUsableAsPropertyName(type)) { const memberName = getPropertyNameFromType(type); const symbolFlags = decl.symbol.flags; let lateSymbol = lateSymbols.get(memberName); if (!lateSymbol) lateSymbols.set(memberName, lateSymbol = createSymbol(0, memberName, 4096)); const earlySymbol = earlySymbols && earlySymbols.get(memberName); if (!(parent2.flags & 32) && lateSymbol.flags & getExcludedSymbolFlags(symbolFlags)) { const declarations = earlySymbol ? concatenate(earlySymbol.declarations, lateSymbol.declarations) : lateSymbol.declarations; const name = !(type.flags & 16384) && unescapeLeadingUnderscores(memberName) || declarationNameToString(declName); forEach(declarations, (declaration) => error2(getNameOfDeclaration(declaration) || declaration, Diagnostics.Property_0_was_also_declared_here, name)); error2(declName || decl, Diagnostics.Duplicate_property_0, name); lateSymbol = createSymbol(0, memberName, 4096); } lateSymbol.links.nameType = type; addDeclarationToLateBoundSymbol(lateSymbol, decl, symbolFlags); if (lateSymbol.parent) { Debug.assert(lateSymbol.parent === parent2, "Existing symbol parent should match new one"); } else { lateSymbol.parent = parent2; } return links.resolvedSymbol = lateSymbol; } } return links.resolvedSymbol; } function lateBindIndexSignature(parent2, earlySymbols, lateSymbols, decl) { let indexSymbol = lateSymbols.get("__index"); if (!indexSymbol) { const early = earlySymbols == null ? undefined : earlySymbols.get("__index"); if (!early) { indexSymbol = createSymbol(0, "__index", 4096); } else { indexSymbol = cloneSymbol(early); indexSymbol.links.checkFlags |= 4096; } lateSymbols.set("__index", indexSymbol); } if (!indexSymbol.declarations) { indexSymbol.declarations = [decl]; } else if (!decl.symbol.isReplaceableByMethod) { indexSymbol.declarations.push(decl); } } function getResolvedMembersOrExportsOfSymbol(symbol, resolutionKind) { const links = getSymbolLinks(symbol); if (!links[resolutionKind]) { const isStatic2 = resolutionKind === "resolvedExports"; const earlySymbols = !isStatic2 ? symbol.members : symbol.flags & 1536 ? getExportsOfModuleWorker(symbol).exports : symbol.exports; links[resolutionKind] = earlySymbols || emptySymbols; const lateSymbols = createSymbolTable(); for (const decl of symbol.declarations || emptyArray) { const members = getMembersOfDeclaration(decl); if (members) { for (const member of members) { if (isStatic2 === hasStaticModifier(member)) { if (hasLateBindableName(member)) { lateBindMember(symbol, earlySymbols, lateSymbols, member); } else if (hasLateBindableIndexSignature(member)) { lateBindIndexSignature(symbol, earlySymbols, lateSymbols, member); } } } } } const assignments = getFunctionExpressionParentSymbolOrSymbol(symbol).assignmentDeclarationMembers; if (assignments) { const decls = arrayFrom(assignments.values()); for (const member of decls) { const assignmentKind = getAssignmentDeclarationKind(member); const isInstanceMember = assignmentKind === 3 || isBinaryExpression(member) && isPossiblyAliasedThisProperty(member, assignmentKind) || assignmentKind === 9 || assignmentKind === 6; if (isStatic2 === !isInstanceMember) { if (hasLateBindableName(member)) { lateBindMember(symbol, earlySymbols, lateSymbols, member); } } } } let resolved = combineSymbolTables(earlySymbols, lateSymbols); if (symbol.flags & 33554432 && links.cjsExportMerged && symbol.declarations) { for (const decl of symbol.declarations) { const original = getSymbolLinks(decl.symbol)[resolutionKind]; if (!resolved) { resolved = original; continue; } if (!original) continue; original.forEach((s, name) => { const existing = resolved.get(name); if (!existing) resolved.set(name, s); else if (existing === s) return; else resolved.set(name, mergeSymbol(existing, s)); }); } } links[resolutionKind] = resolved || emptySymbols; } return links[resolutionKind]; } function getMembersOfSymbol(symbol) { return symbol.flags & 6256 ? getResolvedMembersOrExportsOfSymbol(symbol, "resolvedMembers") : symbol.members || emptySymbols; } function getLateBoundSymbol(symbol) { if (symbol.flags & 106500 && symbol.escapedName === "__computed") { const links = getSymbolLinks(symbol); if (!links.lateSymbol && some(symbol.declarations, hasLateBindableName)) { const parent2 = getMergedSymbol(symbol.parent); if (some(symbol.declarations, hasStaticModifier)) { getExportsOfSymbol(parent2); } else { getMembersOfSymbol(parent2); } } return links.lateSymbol || (links.lateSymbol = symbol); } return symbol; } function getTypeWithThisArgument(type, thisArgument, needApparentType) { if (getObjectFlags(type) & 4) { const target = type.target; const typeArguments = getTypeArguments(type); return length(target.typeParameters) === length(typeArguments) ? createTypeReference(target, concatenate(typeArguments, [thisArgument || target.thisType])) : type; } else if (type.flags & 268435456) { const types = sameMap(type.types, (t) => getTypeWithThisArgument(t, thisArgument, needApparentType)); return types !== type.types ? getIntersectionType(types) : type; } return needApparentType ? getApparentType(type) : type; } function resolveObjectTypeMembers(type, source, typeParameters, typeArguments) { let mapper; let members; let callSignatures; let constructSignatures; let indexInfos; if (rangeEquals(typeParameters, typeArguments, 0, typeParameters.length)) { members = source.symbol ? getMembersOfSymbol(source.symbol) : createSymbolTable(source.declaredProperties); callSignatures = source.declaredCallSignatures; constructSignatures = source.declaredConstructSignatures; indexInfos = source.declaredIndexInfos; } else { mapper = createTypeMapper(typeParameters, typeArguments); members = createInstantiatedSymbolTable(source.declaredProperties, mapper, typeParameters.length === 1); callSignatures = instantiateSignatures(source.declaredCallSignatures, mapper); constructSignatures = instantiateSignatures(source.declaredConstructSignatures, mapper); indexInfos = instantiateIndexInfos(source.declaredIndexInfos, mapper); } const baseTypes = getBaseTypes(source); if (baseTypes.length) { if (source.symbol && members === getMembersOfSymbol(source.symbol)) { const symbolTable = createSymbolTable(source.declaredProperties); const sourceIndex = getIndexSymbol(source.symbol); if (sourceIndex) { symbolTable.set("__index", sourceIndex); } members = symbolTable; } setStructuredTypeMembers(type, members, callSignatures, constructSignatures, indexInfos); const thisArgument = lastOrUndefined(typeArguments); for (const baseType of baseTypes) { const instantiatedBaseType = thisArgument ? getTypeWithThisArgument(instantiateType(baseType, mapper), thisArgument) : baseType; addInheritedMembers(members, getPropertiesOfType(instantiatedBaseType)); callSignatures = concatenate(callSignatures, getSignaturesOfType(instantiatedBaseType, 0)); constructSignatures = concatenate(constructSignatures, getSignaturesOfType(instantiatedBaseType, 1)); const inheritedIndexInfos = instantiatedBaseType !== anyType ? getIndexInfosOfType(instantiatedBaseType) : [anyBaseTypeIndexInfo]; indexInfos = concatenate(indexInfos, filter(inheritedIndexInfos, (info) => !findIndexInfo(indexInfos, info.keyType))); } } setStructuredTypeMembers(type, members, callSignatures, constructSignatures, indexInfos); } function resolveClassOrInterfaceMembers(type) { resolveObjectTypeMembers(type, resolveDeclaredMembers(type), emptyArray, emptyArray); } function resolveTypeReferenceMembers(type) { const source = resolveDeclaredMembers(type.target); const typeParameters = concatenate(source.typeParameters, [source.thisType]); const typeArguments = getTypeArguments(type); const paddedTypeArguments = typeArguments.length === typeParameters.length ? typeArguments : concatenate(typeArguments, [type]); resolveObjectTypeMembers(type, source, typeParameters, paddedTypeArguments); } function createSignature(declaration, typeParameters, thisParameter, parameters, resolvedReturnType, resolvedTypePredicate, minArgumentCount, flags) { const sig = new Signature13(checker, flags); sig.declaration = declaration; sig.typeParameters = typeParameters; sig.parameters = parameters; sig.thisParameter = thisParameter; sig.resolvedReturnType = resolvedReturnType; sig.resolvedTypePredicate = resolvedTypePredicate; sig.minArgumentCount = minArgumentCount; sig.resolvedMinArgumentCount = undefined; sig.target = undefined; sig.mapper = undefined; sig.compositeSignatures = undefined; sig.compositeKind = undefined; return sig; } function cloneSignature(sig) { const result = createSignature(sig.declaration, sig.typeParameters, sig.thisParameter, sig.parameters, undefined, undefined, sig.minArgumentCount, sig.flags & 167); result.target = sig.target; result.mapper = sig.mapper; result.compositeSignatures = sig.compositeSignatures; result.compositeKind = sig.compositeKind; return result; } function createUnionSignature(signature, unionSignatures) { const result = cloneSignature(signature); result.compositeSignatures = unionSignatures; result.compositeKind = 134217728; result.target = undefined; result.mapper = undefined; return result; } function getOptionalCallSignature(signature, callChainFlags) { if ((signature.flags & 24) === callChainFlags) { return signature; } if (!signature.optionalCallSignatureCache) { signature.optionalCallSignatureCache = {}; } const key = callChainFlags === 8 ? "inner" : "outer"; return signature.optionalCallSignatureCache[key] || (signature.optionalCallSignatureCache[key] = createOptionalCallSignature(signature, callChainFlags)); } function createOptionalCallSignature(signature, callChainFlags) { Debug.assert(callChainFlags === 8 || callChainFlags === 16, "An optional call signature can either be for an inner call chain or an outer call chain, but not both."); const result = cloneSignature(signature); result.flags |= callChainFlags; return result; } function getExpandedParameters(sig, skipUnionExpanding) { if (signatureHasRestParameter(sig)) { const restIndex = sig.parameters.length - 1; const restSymbol = sig.parameters[restIndex]; const restType = getTypeOfSymbol(restSymbol); if (isTupleType(restType)) { return [expandSignatureParametersWithTupleMembers(restType, restIndex, restSymbol)]; } else if (!skipUnionExpanding && restType.flags & 134217728 && every(restType.types, isTupleType)) { return map(restType.types, (t) => expandSignatureParametersWithTupleMembers(t, restIndex, restSymbol)); } } return [sig.parameters]; function expandSignatureParametersWithTupleMembers(restType, restIndex, restSymbol) { const elementTypes = getTypeArguments(restType); const associatedNames = getUniqAssociatedNamesFromTupleType(restType, restSymbol); const restParams = map(elementTypes, (t, i) => { const name = associatedNames && associatedNames[i] ? associatedNames[i] : getParameterNameAtPosition(sig, restIndex + i, restType); const flags = restType.target.elementFlags[i]; const checkFlags = flags & 12 ? 32768 : flags & 2 ? 16384 : 0; const symbol = createSymbol(1, name, checkFlags); symbol.links.type = flags & 4 ? createArrayType(t) : t; return symbol; }); return concatenate(sig.parameters.slice(0, restIndex), restParams); } function getUniqAssociatedNamesFromTupleType(type, restSymbol) { const names = map(type.target.labeledElementDeclarations, (labeledElement, i) => getTupleElementLabel(labeledElement, i, type.target.elementFlags[i], restSymbol)); if (names) { const duplicates = []; const uniqueNames = /* @__PURE__ */ new Set; for (let i = 0;i < names.length; i++) { const name = names[i]; if (!tryAddToSet(uniqueNames, name)) { duplicates.push(i); } } const counters = /* @__PURE__ */ new Map; for (const i of duplicates) { let counter = counters.get(names[i]) ?? 1; let name; while (!tryAddToSet(uniqueNames, name = `${names[i]}_${counter}`)) { counter++; } names[i] = name; counters.set(names[i], counter + 1); } } return names; } } function getDefaultConstructSignatures(classType) { const baseConstructorType = getBaseConstructorTypeOfClass(classType); const baseSignatures = getSignaturesOfType(baseConstructorType, 1); const declaration = getClassLikeDeclarationOfSymbol(classType.symbol); const isAbstract = !!declaration && hasSyntacticModifier(declaration, 64); if (baseSignatures.length === 0) { return [createSignature(undefined, classType.localTypeParameters, undefined, emptyArray, classType, undefined, 0, isAbstract ? 4 : 0)]; } const baseTypeNode = getBaseTypeNodeOfClass(classType); const isJavaScript = isInJSFile(baseTypeNode); const typeArguments = typeArgumentsFromTypeReferenceNode(baseTypeNode); const typeArgCount = length(typeArguments); const result = []; for (const baseSig of baseSignatures) { const minTypeArgumentCount = getMinTypeArgumentCount(baseSig.typeParameters); const typeParamCount = length(baseSig.typeParameters); if (isJavaScript || typeArgCount >= minTypeArgumentCount && typeArgCount <= typeParamCount) { const sig = typeParamCount ? createSignatureInstantiation(baseSig, fillMissingTypeArguments(typeArguments, baseSig.typeParameters, minTypeArgumentCount, isJavaScript)) : cloneSignature(baseSig); sig.typeParameters = classType.localTypeParameters; sig.resolvedReturnType = classType; sig.flags = isAbstract ? sig.flags | 4 : sig.flags & ~4; result.push(sig); } } return result; } function findMatchingSignature(signatureList, signature, partialMatch, ignoreThisTypes, ignoreReturnTypes) { for (const s of signatureList) { if (compareSignaturesIdentical(s, signature, partialMatch, ignoreThisTypes, ignoreReturnTypes, partialMatch ? compareTypesSubtypeOf : compareTypesIdentical)) { return s; } } } function findMatchingSignatures(signatureLists, signature, listIndex) { if (signature.typeParameters) { if (listIndex > 0) { return; } for (let i = 1;i < signatureLists.length; i++) { if (!findMatchingSignature(signatureLists[i], signature, false, false, false)) { return; } } return [signature]; } let result; for (let i = 0;i < signatureLists.length; i++) { const match = i === listIndex ? signature : findMatchingSignature(signatureLists[i], signature, false, false, true) || findMatchingSignature(signatureLists[i], signature, true, false, true); if (!match) { return; } result = appendIfUnique(result, match); } return result; } function getUnionSignatures(signatureLists) { let result; let indexWithLengthOverOne; for (let i = 0;i < signatureLists.length; i++) { if (signatureLists[i].length === 0) return emptyArray; if (signatureLists[i].length > 1) { indexWithLengthOverOne = indexWithLengthOverOne === undefined ? i : -1; } for (const signature of signatureLists[i]) { if (!result || !findMatchingSignature(result, signature, false, false, true)) { const unionSignatures = findMatchingSignatures(signatureLists, signature, i); if (unionSignatures) { let s = signature; if (unionSignatures.length > 1) { let thisParameter = signature.thisParameter; const firstThisParameterOfUnionSignatures = forEach(unionSignatures, (sig) => sig.thisParameter); if (firstThisParameterOfUnionSignatures) { const thisType = getIntersectionType(mapDefined(unionSignatures, (sig) => sig.thisParameter && getTypeOfSymbol(sig.thisParameter))); thisParameter = createSymbolWithType(firstThisParameterOfUnionSignatures, thisType); } s = createUnionSignature(signature, unionSignatures); s.thisParameter = thisParameter; } (result || (result = [])).push(s); } } } } if (!length(result) && indexWithLengthOverOne !== -1) { const masterList = signatureLists[indexWithLengthOverOne !== undefined ? indexWithLengthOverOne : 0]; let results = masterList.slice(); for (const signatures of signatureLists) { if (signatures !== masterList) { const signature = signatures[0]; Debug.assert(!!signature, "getUnionSignatures bails early on empty signature lists and should not have empty lists on second pass"); results = !!signature.typeParameters && some(results, (s) => !!s.typeParameters && !compareTypeParametersIdentical(signature.typeParameters, s.typeParameters)) ? undefined : map(results, (sig) => combineSignaturesOfUnionMembers(sig, signature)); if (!results) { break; } } } result = results; } return result || emptyArray; } function compareTypeParametersIdentical(sourceParams, targetParams) { if (length(sourceParams) !== length(targetParams)) { return false; } if (!sourceParams || !targetParams) { return true; } const mapper = createTypeMapper(targetParams, sourceParams); for (let i = 0;i < sourceParams.length; i++) { const source = sourceParams[i]; const target = targetParams[i]; if (source === target) continue; if (!isTypeIdenticalTo(getConstraintFromTypeParameter(source) || unknownType, instantiateType(getConstraintFromTypeParameter(target) || unknownType, mapper))) return false; } return true; } function combineUnionThisParam(left, right, mapper) { if (!left || !right) { return left || right; } const thisType = getIntersectionType([getTypeOfSymbol(left), instantiateType(getTypeOfSymbol(right), mapper)]); return createSymbolWithType(left, thisType); } function combineUnionParameters(left, right, mapper) { const leftCount = getParameterCount(left); const rightCount = getParameterCount(right); const longest = leftCount >= rightCount ? left : right; const shorter = longest === left ? right : left; const longestCount = longest === left ? leftCount : rightCount; const eitherHasEffectiveRest = hasEffectiveRestParameter(left) || hasEffectiveRestParameter(right); const needsExtraRestElement = eitherHasEffectiveRest && !hasEffectiveRestParameter(longest); const params = new Array(longestCount + (needsExtraRestElement ? 1 : 0)); for (let i = 0;i < longestCount; i++) { let longestParamType = tryGetTypeAtPosition(longest, i); if (longest === right) { longestParamType = instantiateType(longestParamType, mapper); } let shorterParamType = tryGetTypeAtPosition(shorter, i) || unknownType; if (shorter === right) { shorterParamType = instantiateType(shorterParamType, mapper); } const unionParamType = getIntersectionType([longestParamType, shorterParamType]); const isRestParam = eitherHasEffectiveRest && !needsExtraRestElement && i === longestCount - 1; const isOptional = i >= getMinArgumentCount(longest) && i >= getMinArgumentCount(shorter); const leftName = i >= leftCount ? undefined : getParameterNameAtPosition(left, i); const rightName = i >= rightCount ? undefined : getParameterNameAtPosition(right, i); const paramName = leftName === rightName ? leftName : !leftName ? rightName : !rightName ? leftName : undefined; const paramSymbol = createSymbol(1 | (isOptional && !isRestParam ? 16777216 : 0), paramName || `arg${i}`, isRestParam ? 32768 : isOptional ? 16384 : 0); paramSymbol.links.type = isRestParam ? createArrayType(unionParamType) : unionParamType; params[i] = paramSymbol; } if (needsExtraRestElement) { const restParamSymbol = createSymbol(1, "args", 32768); restParamSymbol.links.type = createArrayType(getTypeAtPosition(shorter, longestCount)); if (shorter === right) { restParamSymbol.links.type = instantiateType(restParamSymbol.links.type, mapper); } params[longestCount] = restParamSymbol; } return params; } function combineSignaturesOfUnionMembers(left, right) { const typeParams = left.typeParameters || right.typeParameters; let paramMapper; if (left.typeParameters && right.typeParameters) { paramMapper = createTypeMapper(right.typeParameters, left.typeParameters); } let flags = (left.flags | right.flags) & (167 & ~1); const declaration = left.declaration; const params = combineUnionParameters(left, right, paramMapper); const lastParam = lastOrUndefined(params); if (lastParam && getCheckFlags(lastParam) & 32768) { flags |= 1; } const thisParam = combineUnionThisParam(left.thisParameter, right.thisParameter, paramMapper); const minArgCount = Math.max(left.minArgumentCount, right.minArgumentCount); const result = createSignature(declaration, typeParams, thisParam, params, undefined, undefined, minArgCount, flags); result.compositeKind = 134217728; result.compositeSignatures = concatenate(left.compositeKind !== 268435456 && left.compositeSignatures || [left], [right]); if (paramMapper) { result.mapper = left.compositeKind !== 268435456 && left.mapper && left.compositeSignatures ? combineTypeMappers(left.mapper, paramMapper) : paramMapper; } else if (left.compositeKind !== 268435456 && left.mapper && left.compositeSignatures) { result.mapper = left.mapper; } return result; } function getUnionIndexInfos(types) { const sourceInfos = getIndexInfosOfType(types[0]); if (sourceInfos) { const result = []; for (const info of sourceInfos) { const indexType = info.keyType; if (every(types, (t) => !!getIndexInfoOfType(t, indexType))) { result.push(createIndexInfo(indexType, getUnionType(map(types, (t) => getIndexTypeOfType(t, indexType))), some(types, (t) => getIndexInfoOfType(t, indexType).isReadonly))); } } return result; } return emptyArray; } function resolveUnionTypeMembers(type) { const callSignatures = getUnionSignatures(map(type.types, (t) => t === globalFunctionType ? [unknownSignature] : getSignaturesOfType(t, 0))); const constructSignatures = getUnionSignatures(map(type.types, (t) => getSignaturesOfType(t, 1))); const indexInfos = getUnionIndexInfos(type.types); setStructuredTypeMembers(type, emptySymbols, callSignatures, constructSignatures, indexInfos); } function intersectTypes(type1, type2) { return !type1 ? type2 : !type2 ? type1 : getIntersectionType([type1, type2]); } function findMixins(types) { const constructorTypeCount = countWhere(types, (t) => getSignaturesOfType(t, 1).length > 0); const mixinFlags = map(types, isMixinConstructorType); if (constructorTypeCount > 0 && constructorTypeCount === countWhere(mixinFlags, (b) => b)) { const firstMixinIndex = mixinFlags.indexOf(true); mixinFlags[firstMixinIndex] = false; } return mixinFlags; } function includeMixinType(type, types, mixinFlags, index) { const mixedTypes = []; for (let i = 0;i < types.length; i++) { if (i === index) { mixedTypes.push(type); } else if (mixinFlags[i]) { mixedTypes.push(getReturnTypeOfSignature(getSignaturesOfType(types[i], 1)[0])); } } return getIntersectionType(mixedTypes); } function resolveIntersectionTypeMembers(type) { let callSignatures; let constructSignatures; let indexInfos; const types = type.types; const mixinFlags = findMixins(types); const mixinCount = countWhere(mixinFlags, (b) => b); for (let i = 0;i < types.length; i++) { const t = type.types[i]; if (!mixinFlags[i]) { let signatures = getSignaturesOfType(t, 1); if (signatures.length && mixinCount > 0) { signatures = map(signatures, (s) => { const clone2 = cloneSignature(s); clone2.resolvedReturnType = includeMixinType(getReturnTypeOfSignature(s), types, mixinFlags, i); return clone2; }); } constructSignatures = appendSignatures(constructSignatures, signatures); } callSignatures = appendSignatures(callSignatures, getSignaturesOfType(t, 0)); indexInfos = reduceLeft(getIndexInfosOfType(t), (infos, newInfo) => appendIndexInfo(infos, newInfo, false), indexInfos); } setStructuredTypeMembers(type, emptySymbols, callSignatures || emptyArray, constructSignatures || emptyArray, indexInfos || emptyArray); } function appendSignatures(signatures, newSignatures) { for (const sig of newSignatures) { if (!signatures || every(signatures, (s) => !compareSignaturesIdentical(s, sig, false, false, false, compareTypesIdentical))) { signatures = append(signatures, sig); } } return signatures; } function appendIndexInfo(indexInfos, newInfo, union) { if (indexInfos) { for (let i = 0;i < indexInfos.length; i++) { const info = indexInfos[i]; if (info.keyType === newInfo.keyType) { indexInfos[i] = createIndexInfo(info.keyType, union ? getUnionType([info.type, newInfo.type]) : getIntersectionType([info.type, newInfo.type]), union ? info.isReadonly || newInfo.isReadonly : info.isReadonly && newInfo.isReadonly); return indexInfos; } } } return append(indexInfos, newInfo); } function resolveAnonymousTypeMembers(type) { if (type.target) { setStructuredTypeMembers(type, emptySymbols, emptyArray, emptyArray, emptyArray); const members2 = createInstantiatedSymbolTable(getPropertiesOfObjectType(type.target), type.mapper, false); const callSignatures = instantiateSignatures(getSignaturesOfType(type.target, 0), type.mapper); const constructSignatures = instantiateSignatures(getSignaturesOfType(type.target, 1), type.mapper); const indexInfos2 = instantiateIndexInfos(getIndexInfosOfType(type.target), type.mapper); setStructuredTypeMembers(type, members2, callSignatures, constructSignatures, indexInfos2); return; } const symbol = getMergedSymbol(type.symbol); if (symbol.flags & 2048) { setStructuredTypeMembers(type, emptySymbols, emptyArray, emptyArray, emptyArray); const members2 = getMembersOfSymbol(symbol); const callSignatures = getSignaturesOfSymbol(members2.get("__call")); const constructSignatures = getSignaturesOfSymbol(members2.get("__new")); const indexInfos2 = getIndexInfosOfSymbol(symbol); setStructuredTypeMembers(type, members2, callSignatures, constructSignatures, indexInfos2); return; } let members = getExportsOfSymbol(symbol); let indexInfos; if (symbol === globalThisSymbol) { const varsOnly = /* @__PURE__ */ new Map; members.forEach((p) => { var _a; if (!(p.flags & 418) && !(p.flags & 512 && ((_a = p.declarations) == null ? undefined : _a.length) && every(p.declarations, isAmbientModule))) { varsOnly.set(p.escapedName, p); } }); members = varsOnly; } let baseConstructorIndexInfo; setStructuredTypeMembers(type, members, emptyArray, emptyArray, emptyArray); if (symbol.flags & 32) { const classType = getDeclaredTypeOfClassOrInterface(symbol); const baseConstructorType = getBaseConstructorTypeOfClass(classType); if (baseConstructorType.flags & (1048576 | 268435456 | 34078720)) { members = createSymbolTable(getNamedOrIndexSignatureMembers(members, symbol)); addInheritedMembers(members, getPropertiesOfType(baseConstructorType)); } else if (baseConstructorType === anyType) { baseConstructorIndexInfo = anyBaseTypeIndexInfo; } } const indexSymbol = getIndexSymbolFromSymbolTable(members); if (indexSymbol) { indexInfos = getIndexInfosOfIndexSymbol(indexSymbol, arrayFrom(members.values())); } else { if (baseConstructorIndexInfo) { indexInfos = append(indexInfos, baseConstructorIndexInfo); } if (symbol.flags & 384 && (getDeclaredTypeOfSymbol(symbol).flags & 65536 || some(type.properties, (prop) => !!(getTypeOfSymbol(prop).flags & 67648)))) { indexInfos = append(indexInfos, enumNumberIndexInfo); } } setStructuredTypeMembers(type, members, emptyArray, emptyArray, indexInfos || emptyArray); if (symbol.flags & (16 | 8192)) { type.callSignatures = getSignaturesOfSymbol(symbol); } if (symbol.flags & 32) { const classType = getDeclaredTypeOfClassOrInterface(symbol); let constructSignatures = symbol.members ? getSignaturesOfSymbol(symbol.members.get("__constructor")) : emptyArray; if (symbol.flags & 16) { constructSignatures = addRange(constructSignatures.slice(), mapDefined(type.callSignatures, (sig) => isJSConstructor(sig.declaration) ? createSignature(sig.declaration, sig.typeParameters, sig.thisParameter, sig.parameters, classType, undefined, sig.minArgumentCount, sig.flags & 167) : undefined)); } if (!constructSignatures.length) { constructSignatures = getDefaultConstructSignatures(classType); } type.constructSignatures = constructSignatures; } } function replaceIndexedAccess(instantiable, type, replacement) { return instantiateType(instantiable, createTypeMapper([type.indexType, type.objectType], [getNumberLiteralType(0), createTupleType([replacement])])); } function getLimitedConstraint(type) { const constraint = getConstraintTypeFromMappedType(type.mappedType); if (!(constraint.flags & 134217728 || constraint.flags & 268435456)) { return; } const origin = constraint.flags & 134217728 ? constraint.origin : constraint; if (!origin || !(origin.flags & 268435456)) { return; } const limitedConstraint = getIntersectionType(origin.types.filter((t) => t !== type.constraintType)); return limitedConstraint !== neverType ? limitedConstraint : undefined; } function resolveReverseMappedTypeMembers(type) { const indexInfo = getIndexInfoOfType(type.source, stringType); const modifiers = getMappedTypeModifiers(type.mappedType); const readonlyMask = modifiers & 1 ? false : true; const optionalMask = modifiers & 4 ? 0 : 16777216; const indexInfos = indexInfo ? [createIndexInfo(stringType, inferReverseMappedType(indexInfo.type, type.mappedType, type.constraintType) || unknownType, readonlyMask && indexInfo.isReadonly)] : emptyArray; const members = createSymbolTable(); const limitedConstraint = getLimitedConstraint(type); for (const prop of getPropertiesOfType(type.source)) { if (limitedConstraint) { const propertyNameType = getLiteralTypeFromProperty(prop, 19456); if (!isTypeAssignableTo(propertyNameType, limitedConstraint)) { continue; } } const checkFlags = 8192 | (readonlyMask && isReadonlySymbol(prop) ? 8 : 0); const inferredProp = createSymbol(4 | prop.flags & optionalMask, prop.escapedName, checkFlags); inferredProp.declarations = prop.declarations; inferredProp.links.nameType = getSymbolLinks(prop).nameType; inferredProp.links.propertyType = getTypeOfSymbol(prop); if (type.constraintType.type.flags & 33554432 && type.constraintType.type.objectType.flags & 524288 && type.constraintType.type.indexType.flags & 524288) { const newTypeParam = type.constraintType.type.objectType; const newMappedType = replaceIndexedAccess(type.mappedType, type.constraintType.type, newTypeParam); inferredProp.links.mappedType = newMappedType; inferredProp.links.constraintType = getIndexType(newTypeParam); } else { inferredProp.links.mappedType = type.mappedType; inferredProp.links.constraintType = type.constraintType; } members.set(prop.escapedName, inferredProp); } setStructuredTypeMembers(type, members, emptyArray, emptyArray, indexInfos); } function getLowerBoundOfKeyType(type) { if (type.flags & 2097152) { const t = getApparentType(type.type); return isGenericTupleType(t) ? getKnownKeysOfTupleType(t) : getIndexType(t); } if (type.flags & 67108864) { if (type.root.isDistributive) { const checkType = type.checkType; const constraint = getLowerBoundOfKeyType(checkType); if (constraint !== checkType) { return getConditionalTypeInstantiation(type, prependTypeMapping(type.root.checkType, constraint, type.mapper), false); } } return type; } if (type.flags & 134217728) { return mapType(type, getLowerBoundOfKeyType, true); } if (type.flags & 268435456) { const types = type.types; if (types.length === 2 && !!(types[0].flags & (32 | 64 | 128)) && types[1] === emptyTypeLiteralType) { return type; } return getIntersectionType(sameMap(type.types, getLowerBoundOfKeyType)); } return type; } function getIsLateCheckFlag(s) { return getCheckFlags(s) & 4096; } function forEachMappedTypePropertyKeyTypeAndIndexSignatureKeyType(type, include, stringsOnly, cb) { for (const prop of getPropertiesOfType(type)) { cb(getLiteralTypeFromProperty(prop, include)); } if (type.flags & 1) { cb(stringType); } else { for (const info of getIndexInfosOfType(type)) { if (!stringsOnly || info.keyType.flags & (32 | 4194304)) { cb(info.keyType); } } } } function resolveMappedTypeMembers(type) { const members = createSymbolTable(); let indexInfos; setStructuredTypeMembers(type, emptySymbols, emptyArray, emptyArray, emptyArray); const typeParameter = getTypeParameterFromMappedType(type); const constraintType = getConstraintTypeFromMappedType(type); const mappedType = type.target || type; const nameType = getNameTypeFromMappedType(mappedType); const shouldLinkPropDeclarations = getMappedTypeNameTypeKind(mappedType) !== 2; const templateType = getTemplateTypeFromMappedType(mappedType); const modifiersType = getApparentType(getModifiersTypeFromMappedType(type)); const templateModifiers = getMappedTypeModifiers(type); const include = 19456; if (isMappedTypeWithKeyofConstraintDeclaration(type)) { forEachMappedTypePropertyKeyTypeAndIndexSignatureKeyType(modifiersType, include, false, addMemberForKeyType); } else { forEachType(getLowerBoundOfKeyType(constraintType), addMemberForKeyType); } setStructuredTypeMembers(type, members, emptyArray, emptyArray, indexInfos || emptyArray); function addMemberForKeyType(keyType) { const propNameType = nameType ? instantiateType(nameType, appendTypeMapping(type.mapper, typeParameter, keyType)) : keyType; forEachType(propNameType, (t) => addMemberForKeyTypeWorker(keyType, t)); } function addMemberForKeyTypeWorker(keyType, propNameType) { if (isTypeUsableAsPropertyName(propNameType)) { const propName = getPropertyNameFromType(propNameType); const existingProp = members.get(propName); if (existingProp) { existingProp.links.nameType = getUnionType([existingProp.links.nameType, propNameType]); existingProp.links.keyType = getUnionType([existingProp.links.keyType, keyType]); } else { const modifiersProp = isTypeUsableAsPropertyName(keyType) ? getPropertyOfType(modifiersType, getPropertyNameFromType(keyType)) : undefined; const isOptional = !!(templateModifiers & 4 || !(templateModifiers & 8) && modifiersProp && modifiersProp.flags & 16777216); const isReadonly = !!(templateModifiers & 1 || !(templateModifiers & 2) && modifiersProp && isReadonlySymbol(modifiersProp)); const stripOptional = strictNullChecks && !isOptional && modifiersProp && modifiersProp.flags & 16777216; const lateFlag = modifiersProp ? getIsLateCheckFlag(modifiersProp) : 0; const prop = createSymbol(4 | (isOptional ? 16777216 : 0), propName, lateFlag | 262144 | (isReadonly ? 8 : 0) | (stripOptional ? 524288 : 0)); prop.links.mappedType = type; prop.links.nameType = propNameType; prop.links.keyType = keyType; if (modifiersProp) { prop.links.syntheticOrigin = modifiersProp; prop.declarations = shouldLinkPropDeclarations ? modifiersProp.declarations : undefined; } members.set(propName, prop); } } else if (isValidIndexKeyType(propNameType) || propNameType.flags & (1 | 65536)) { const indexKeyType = propNameType.flags & (1 | 32) ? stringType : propNameType.flags & (64 | 65536) ? numberType : propNameType; const propType = instantiateType(templateType, appendTypeMapping(type.mapper, typeParameter, keyType)); const modifiersIndexInfo = getApplicableIndexInfo(modifiersType, propNameType); const isReadonly = !!(templateModifiers & 1 || !(templateModifiers & 2) && (modifiersIndexInfo == null ? undefined : modifiersIndexInfo.isReadonly)); const indexInfo = createIndexInfo(indexKeyType, propType, isReadonly); indexInfos = appendIndexInfo(indexInfos, indexInfo, true); } } } function getTypeOfMappedSymbol(symbol) { var _a; if (!symbol.links.type) { const mappedType = symbol.links.mappedType; if (!pushTypeResolution(symbol, 0)) { mappedType.containsError = true; return errorType; } const templateType = getTemplateTypeFromMappedType(mappedType.target || mappedType); const mapper = appendTypeMapping(mappedType.mapper, getTypeParameterFromMappedType(mappedType), symbol.links.keyType); const propType = instantiateType(templateType, mapper); let type = strictNullChecks && symbol.flags & 16777216 && !maybeTypeOfKind(propType, 4 | 16) ? getOptionalType(propType, true) : symbol.links.checkFlags & 524288 ? removeMissingOrUndefinedType(propType) : propType; if (!popTypeResolution()) { error2(currentNode, Diagnostics.Type_of_property_0_circularly_references_itself_in_mapped_type_1, symbolToString(symbol), typeToString(mappedType)); type = errorType; } (_a = symbol.links).type ?? (_a.type = type); } return symbol.links.type; } function getTypeParameterFromMappedType(type) { return type.typeParameter || (type.typeParameter = getDeclaredTypeOfTypeParameter(getSymbolOfDeclaration(type.declaration.typeParameter))); } function getConstraintTypeFromMappedType(type) { return type.constraintType || (type.constraintType = getConstraintOfTypeParameter(getTypeParameterFromMappedType(type)) || errorType); } function getNameTypeFromMappedType(type) { return type.declaration.nameType ? type.nameType || (type.nameType = instantiateType(getTypeFromTypeNode(type.declaration.nameType), type.mapper)) : undefined; } function getTemplateTypeFromMappedType(type) { return type.templateType || (type.templateType = type.declaration.type ? instantiateType(addOptionality(getTypeFromTypeNode(type.declaration.type), true, !!(getMappedTypeModifiers(type) & 4)), type.mapper) : errorType); } function getConstraintDeclarationForMappedType(type) { return getEffectiveConstraintOfTypeParameter(type.declaration.typeParameter); } function isMappedTypeWithKeyofConstraintDeclaration(type) { const constraintDeclaration = getConstraintDeclarationForMappedType(type); return constraintDeclaration.kind === 199 && constraintDeclaration.operator === 143; } function getModifiersTypeFromMappedType(type) { if (!type.modifiersType) { if (isMappedTypeWithKeyofConstraintDeclaration(type)) { type.modifiersType = instantiateType(getTypeFromTypeNode(getConstraintDeclarationForMappedType(type).type), type.mapper); } else { const declaredType = getTypeFromMappedTypeNode(type.declaration); const constraint = getConstraintTypeFromMappedType(declaredType); const extendedConstraint = constraint && constraint.flags & 524288 ? getConstraintOfTypeParameter(constraint) : constraint; type.modifiersType = extendedConstraint && extendedConstraint.flags & 2097152 ? instantiateType(extendedConstraint.type, type.mapper) : unknownType; } } return type.modifiersType; } function getMappedTypeModifiers(type) { const declaration = type.declaration; return (declaration.readonlyToken ? declaration.readonlyToken.kind === 41 ? 2 : 1 : 0) | (declaration.questionToken ? declaration.questionToken.kind === 41 ? 8 : 4 : 0); } function getMappedTypeOptionality(type) { const modifiers = getMappedTypeModifiers(type); return modifiers & 8 ? -1 : modifiers & 4 ? 1 : 0; } function getCombinedMappedTypeOptionality(type) { if (getObjectFlags(type) & 32) { return getMappedTypeOptionality(type) || getCombinedMappedTypeOptionality(getModifiersTypeFromMappedType(type)); } if (type.flags & 268435456) { const optionality = getCombinedMappedTypeOptionality(type.types[0]); return every(type.types, (t, i) => i === 0 || getCombinedMappedTypeOptionality(t) === optionality) ? optionality : 0; } return 0; } function isPartialMappedType(type) { return !!(getObjectFlags(type) & 32 && getMappedTypeModifiers(type) & 4); } function isGenericMappedType(type) { if (getObjectFlags(type) & 32) { const constraint = getConstraintTypeFromMappedType(type); if (isGenericIndexType(constraint)) { return true; } const nameType = getNameTypeFromMappedType(type); if (nameType && isGenericIndexType(instantiateType(nameType, makeUnaryTypeMapper(getTypeParameterFromMappedType(type), constraint)))) { return true; } } return false; } function getMappedTypeNameTypeKind(type) { const nameType = getNameTypeFromMappedType(type); if (!nameType) { return 0; } return isTypeAssignableTo(nameType, getTypeParameterFromMappedType(type)) ? 1 : 2; } function resolveStructuredTypeMembers(type) { if (!type.members) { if (type.flags & 1048576) { if (type.objectFlags & 4) { resolveTypeReferenceMembers(type); } else if (type.objectFlags & 3) { resolveClassOrInterfaceMembers(type); } else if (type.objectFlags & 1024) { resolveReverseMappedTypeMembers(type); } else if (type.objectFlags & 16) { resolveAnonymousTypeMembers(type); } else if (type.objectFlags & 32) { resolveMappedTypeMembers(type); } else { Debug.fail("Unhandled object type " + Debug.formatObjectFlags(type.objectFlags)); } } else if (type.flags & 134217728) { resolveUnionTypeMembers(type); } else if (type.flags & 268435456) { resolveIntersectionTypeMembers(type); } else { Debug.fail("Unhandled type " + Debug.formatTypeFlags(type.flags)); } } return type; } function getPropertiesOfObjectType(type) { if (type.flags & 1048576) { return resolveStructuredTypeMembers(type).properties; } return emptyArray; } function getPropertyOfObjectType(type, name) { if (type.flags & 1048576) { const resolved = resolveStructuredTypeMembers(type); const symbol = resolved.members.get(name); if (symbol && symbolIsValue(symbol)) { return symbol; } } } function getPropertiesOfUnionOrIntersectionType(type) { if (!type.resolvedProperties) { const members = createSymbolTable(); for (const current of type.types) { for (const prop of getPropertiesOfType(current)) { if (!members.has(prop.escapedName)) { const combinedProp = getPropertyOfUnionOrIntersectionType(type, prop.escapedName, !!(type.flags & 268435456)); if (combinedProp) { members.set(prop.escapedName, combinedProp); } } } if (type.flags & 134217728 && getIndexInfosOfType(current).length === 0) { break; } } type.resolvedProperties = getNamedMembers(members, type.symbol); } return type.resolvedProperties; } function getPropertiesOfType(type) { type = getReducedApparentType(type); return type.flags & 402653184 ? getPropertiesOfUnionOrIntersectionType(type) : getPropertiesOfObjectType(type); } function forEachPropertyOfType(type, action) { type = getReducedApparentType(type); if (type.flags & 403701760) { resolveStructuredTypeMembers(type).members.forEach((symbol, escapedName) => { if (isNamedMember(symbol, escapedName)) { action(symbol, escapedName); } }); } } function isTypeInvalidDueToUnionDiscriminant(contextualType, obj) { const list = obj.properties; return list.some((property) => { const nameType = property.name && (isJsxNamespacedName(property.name) ? getStringLiteralType(getTextOfJsxAttributeName(property.name)) : getLiteralTypeFromPropertyName(property.name)); const name = nameType && isTypeUsableAsPropertyName(nameType) ? getPropertyNameFromType(nameType) : undefined; const expected = name === undefined ? undefined : getTypeOfPropertyOfType(contextualType, name); return !!expected && isLiteralType(expected) && !isTypeAssignableTo(getTypeOfNode(property), expected); }); } function getAllPossiblePropertiesOfTypes(types) { const unionType = getUnionType(types); if (!(unionType.flags & 134217728)) { return getAugmentedPropertiesOfType(unionType); } const props = createSymbolTable(); for (const memberType of types) { for (const { escapedName } of getAugmentedPropertiesOfType(memberType)) { if (!props.has(escapedName)) { const prop = createUnionOrIntersectionProperty(unionType, escapedName); if (prop) props.set(escapedName, prop); } } } return arrayFrom(props.values()); } function getConstraintOfType(type) { return type.flags & 524288 ? getConstraintOfTypeParameter(type) : type.flags & 33554432 ? getConstraintOfIndexedAccess(type) : type.flags & 67108864 ? getConstraintOfConditionalType(type) : getBaseConstraintOfType(type); } function getConstraintOfTypeParameter(typeParameter) { return hasNonCircularBaseConstraint(typeParameter) ? getConstraintFromTypeParameter(typeParameter) : undefined; } function isConstMappedType(type, depth) { const typeVariable = getHomomorphicTypeVariable(type); return !!typeVariable && isConstTypeVariable(typeVariable, depth); } function isConstTypeVariable(type, depth = 0) { var _a; return depth < 5 && !!(type && (type.flags & 524288 && some((_a = type.symbol) == null ? undefined : _a.declarations, (d) => hasSyntacticModifier(d, 4096)) || type.flags & 402653184 && some(type.types, (t) => isConstTypeVariable(t, depth)) || type.flags & 33554432 && isConstTypeVariable(type.objectType, depth + 1) || type.flags & 67108864 && isConstTypeVariable(getConstraintOfConditionalType(type), depth + 1) || type.flags & 16777216 && isConstTypeVariable(type.baseType, depth) || getObjectFlags(type) & 32 && isConstMappedType(type, depth) || isGenericTupleType(type) && findIndex(getElementTypes(type), (t, i) => !!(type.target.elementFlags[i] & 8) && isConstTypeVariable(t, depth)) >= 0)); } function getConstraintOfIndexedAccess(type) { return hasNonCircularBaseConstraint(type) ? getConstraintFromIndexedAccess(type) : undefined; } function getSimplifiedTypeOrConstraint(type) { const simplified = getSimplifiedType(type, false); return simplified !== type ? simplified : getConstraintOfType(type); } function getConstraintFromIndexedAccess(type) { if (isMappedTypeGenericIndexedAccess(type)) { return substituteIndexedMappedType(type.objectType, type.indexType); } const indexConstraint = getSimplifiedTypeOrConstraint(type.indexType); if (indexConstraint && indexConstraint !== type.indexType) { const indexedAccess = getIndexedAccessTypeOrUndefined(type.objectType, indexConstraint, type.accessFlags); if (indexedAccess) { return indexedAccess; } } const objectConstraint = getSimplifiedTypeOrConstraint(type.objectType); if (objectConstraint && objectConstraint !== type.objectType) { return getIndexedAccessTypeOrUndefined(objectConstraint, type.indexType, type.accessFlags); } return; } function getDefaultConstraintOfConditionalType(type) { if (!type.resolvedDefaultConstraint) { const trueConstraint = getInferredTrueTypeFromConditionalType(type); const falseConstraint = getFalseTypeFromConditionalType(type); type.resolvedDefaultConstraint = isTypeAny(trueConstraint) ? falseConstraint : isTypeAny(falseConstraint) ? trueConstraint : getUnionType([trueConstraint, falseConstraint]); } return type.resolvedDefaultConstraint; } function getConstraintOfDistributiveConditionalType(type) { if (type.resolvedConstraintOfDistributive !== undefined) { return type.resolvedConstraintOfDistributive || undefined; } if (type.root.isDistributive && type.restrictiveInstantiation !== type) { const simplified = getSimplifiedType(type.checkType, false); const constraint = simplified === type.checkType ? getConstraintOfType(simplified) : simplified; if (constraint && constraint !== type.checkType) { const instantiated = getConditionalTypeInstantiation(type, prependTypeMapping(type.root.checkType, constraint, type.mapper), true); if (!(instantiated.flags & 262144)) { type.resolvedConstraintOfDistributive = instantiated; return instantiated; } } } type.resolvedConstraintOfDistributive = false; return; } function getConstraintFromConditionalType(type) { return getConstraintOfDistributiveConditionalType(type) || getDefaultConstraintOfConditionalType(type); } function getConstraintOfConditionalType(type) { return hasNonCircularBaseConstraint(type) ? getConstraintFromConditionalType(type) : undefined; } function getEffectiveConstraintOfIntersection(types, targetIsUnion) { let constraints; let hasDisjointDomainType = false; for (const t of types) { if (t.flags & 132644864) { let constraint = getConstraintOfType(t); while (constraint && constraint.flags & (524288 | 2097152 | 67108864)) { constraint = getConstraintOfType(constraint); } if (constraint) { constraints = append(constraints, constraint); if (targetIsUnion) { constraints = append(constraints, t); } } } else if (t.flags & 12812284 || isEmptyAnonymousObjectType(t)) { hasDisjointDomainType = true; } } if (constraints && (targetIsUnion || hasDisjointDomainType)) { if (hasDisjointDomainType) { for (const t of types) { if (t.flags & 12812284 || isEmptyAnonymousObjectType(t)) { constraints = append(constraints, t); } } } return getNormalizedType(getIntersectionType(constraints, 2), false); } return; } function getBaseConstraintOfType(type) { if (type.flags & (117964800 | 402653184 | 4194304 | 8388608) || isGenericTupleType(type)) { const constraint = getResolvedBaseConstraint(type); return constraint !== noConstraintType && constraint !== circularConstraintType ? constraint : undefined; } return type.flags & 2097152 ? stringNumberSymbolType : undefined; } function getBaseConstraintOrType(type) { return getBaseConstraintOfType(type) || type; } function hasNonCircularBaseConstraint(type) { return getResolvedBaseConstraint(type) !== circularConstraintType; } function getResolvedBaseConstraint(type) { if (type.resolvedBaseConstraint) { return type.resolvedBaseConstraint; } const stack = []; return type.resolvedBaseConstraint = getImmediateBaseConstraint(type); function getImmediateBaseConstraint(t) { if (!t.immediateBaseConstraint) { if (!pushTypeResolution(t, 4)) { return circularConstraintType; } let result; const identity2 = getRecursionIdentity(t); if (stack.length < 10 || stack.length < 50 && !contains(stack, identity2)) { stack.push(identity2); result = computeBaseConstraint(getSimplifiedType(t, false)); stack.pop(); } if (!popTypeResolution()) { if (t.flags & 524288) { const errorNode = getConstraintDeclaration(t); if (errorNode) { const diagnostic = error2(errorNode, Diagnostics.Type_parameter_0_has_a_circular_constraint, typeToString(t)); if (currentNode && !isNodeDescendantOf(errorNode, currentNode) && !isNodeDescendantOf(currentNode, errorNode)) { addRelatedInfo(diagnostic, createDiagnosticForNode(currentNode, Diagnostics.Circularity_originates_in_type_at_this_location)); } } } result = circularConstraintType; } t.immediateBaseConstraint ?? (t.immediateBaseConstraint = result || noConstraintType); } return t.immediateBaseConstraint; } function getBaseConstraint(t) { const c = getImmediateBaseConstraint(t); return c !== noConstraintType && c !== circularConstraintType ? c : undefined; } function computeBaseConstraint(t) { if (t.flags & 524288) { const constraint = getConstraintFromTypeParameter(t); return t.isThisType || !constraint ? constraint : getBaseConstraint(constraint); } if (t.flags & 402653184) { const types = t.types; const baseTypes = []; let different = false; for (const type2 of types) { const baseType = getBaseConstraint(type2); if (baseType) { if (baseType !== type2) { different = true; } baseTypes.push(baseType); } else { different = true; } } if (!different) { return t; } return t.flags & 134217728 && baseTypes.length === types.length ? getUnionType(baseTypes) : t.flags & 268435456 && baseTypes.length ? getIntersectionType(baseTypes) : undefined; } if (t.flags & 2097152) { if (isGenericMappedType(t.type)) { const mappedType = t.type; if (getNameTypeFromMappedType(mappedType) && !isMappedTypeWithKeyofConstraintDeclaration(mappedType)) { return getBaseConstraint(getIndexTypeForMappedType(mappedType, 0)); } } return stringNumberSymbolType; } if (t.flags & 4194304) { const types = t.types; const constraints = mapDefined(types, getBaseConstraint); return constraints.length === types.length ? getTemplateLiteralType(t.texts, constraints) : stringType; } if (t.flags & 8388608) { const constraint = getBaseConstraint(t.type); return constraint && constraint !== t.type ? getStringMappingType(t.symbol, constraint) : stringType; } if (t.flags & 33554432) { if (isMappedTypeGenericIndexedAccess(t)) { return getBaseConstraint(substituteIndexedMappedType(t.objectType, t.indexType)); } const baseObjectType = getBaseConstraint(t.objectType); const baseIndexType = getBaseConstraint(t.indexType); const baseIndexedAccess = baseObjectType && baseIndexType && getIndexedAccessTypeOrUndefined(baseObjectType, baseIndexType, t.accessFlags); return baseIndexedAccess && getBaseConstraint(baseIndexedAccess); } if (t.flags & 67108864) { const constraint = getConstraintFromConditionalType(t); return constraint && getBaseConstraint(constraint); } if (t.flags & 16777216) { return getBaseConstraint(getSubstitutionIntersection(t)); } if (isGenericTupleType(t)) { const newElements = map(getElementTypes(t), (v, i) => { const constraint = v.flags & 524288 && t.target.elementFlags[i] & 8 && getBaseConstraint(v) || v; return constraint !== v && everyType(constraint, (c) => isArrayOrTupleType(c) && !isGenericTupleType(c)) ? constraint : v; }); return createTupleType(newElements, t.target.elementFlags, t.target.readonly, t.target.labeledElementDeclarations); } return t; } } function getApparentTypeOfIntersectionType(type, thisArgument) { if (type === thisArgument) { return type.resolvedApparentType || (type.resolvedApparentType = getTypeWithThisArgument(type, thisArgument, true)); } const key = `I${getTypeId(type)},${getTypeId(thisArgument)}`; return getCachedType(key) ?? setCachedType(key, getTypeWithThisArgument(type, thisArgument, true)); } function getResolvedTypeParameterDefault(typeParameter) { if (!typeParameter.default) { if (typeParameter.target) { const targetDefault = getResolvedTypeParameterDefault(typeParameter.target); typeParameter.default = targetDefault ? instantiateType(targetDefault, typeParameter.mapper) : noConstraintType; } else { typeParameter.default = resolvingDefaultType; const defaultDeclaration = typeParameter.symbol && forEach(typeParameter.symbol.declarations, (decl) => isTypeParameterDeclaration(decl) && decl.default); const defaultType = defaultDeclaration ? getTypeFromTypeNode(defaultDeclaration) : noConstraintType; if (typeParameter.default === resolvingDefaultType) { typeParameter.default = defaultType; } } } else if (typeParameter.default === resolvingDefaultType) { typeParameter.default = circularConstraintType; } return typeParameter.default; } function getDefaultFromTypeParameter(typeParameter) { const defaultType = getResolvedTypeParameterDefault(typeParameter); return defaultType !== noConstraintType && defaultType !== circularConstraintType ? defaultType : undefined; } function hasNonCircularTypeParameterDefault(typeParameter) { return getResolvedTypeParameterDefault(typeParameter) !== circularConstraintType; } function hasTypeParameterDefault(typeParameter) { return !!(typeParameter.symbol && forEach(typeParameter.symbol.declarations, (decl) => isTypeParameterDeclaration(decl) && decl.default)); } function getApparentTypeOfMappedType(type) { return type.resolvedApparentType || (type.resolvedApparentType = getResolvedApparentTypeOfMappedType(type)); } function getResolvedApparentTypeOfMappedType(type) { const target = type.target ?? type; const typeVariable = getHomomorphicTypeVariable(target); if (typeVariable && !target.declaration.nameType) { const modifiersType = getModifiersTypeFromMappedType(type); const baseConstraint = isGenericMappedType(modifiersType) ? getApparentTypeOfMappedType(modifiersType) : getBaseConstraintOfType(modifiersType); if (baseConstraint && everyType(baseConstraint, (t) => isArrayOrTupleType(t) || isArrayOrTupleOrIntersection(t))) { return instantiateType(target, prependTypeMapping(typeVariable, baseConstraint, type.mapper)); } } return type; } function isArrayOrTupleOrIntersection(type) { return !!(type.flags & 268435456) && every(type.types, isArrayOrTupleType); } function isMappedTypeGenericIndexedAccess(type) { let objectType; return !!(type.flags & 33554432 && getObjectFlags(objectType = type.objectType) & 32 && !isGenericMappedType(objectType) && isGenericIndexType(type.indexType) && !(getMappedTypeModifiers(objectType) & 8) && !objectType.declaration.nameType); } function getApparentType(type) { const t = type.flags & 132644864 ? getBaseConstraintOfType(type) || unknownType : type; const objectFlags = getObjectFlags(t); return objectFlags & 32 ? getApparentTypeOfMappedType(t) : objectFlags & 4 && t !== type ? getTypeWithThisArgument(t, type) : t.flags & 268435456 ? getApparentTypeOfIntersectionType(t, type) : t.flags & 12583968 ? globalStringType : t.flags & 67648 ? globalNumberType : t.flags & 4224 ? getGlobalBigIntType() : t.flags & 8448 ? globalBooleanType : t.flags & 16896 ? getGlobalESSymbolType() : t.flags & 131072 ? emptyObjectType : t.flags & 2097152 ? stringNumberSymbolType : t.flags & 2 && !strictNullChecks ? emptyObjectType : t; } function getReducedApparentType(type) { return getReducedType(getApparentType(getReducedType(type))); } function createUnionOrIntersectionProperty(containingType, name, skipObjectFunctionPropertyAugment) { var _a, _b, _c; let propFlags = 0; let singleProp; let propSet; let indexTypes; const isUnion = containingType.flags & 134217728; let optionalFlag; let syntheticFlag = 4; let checkFlags = isUnion ? 0 : 8; let mergedInstantiations = false; for (const current of containingType.types) { const type = getApparentType(current); if (!(isErrorType(type) || type.flags & 262144)) { const prop = getPropertyOfType(type, name, skipObjectFunctionPropertyAugment); const modifiers = prop ? getDeclarationModifierFlagsFromSymbol(prop) : 0; if (prop) { if (prop.flags & 106500) { optionalFlag ?? (optionalFlag = isUnion ? 0 : 16777216); if (isUnion) { optionalFlag |= prop.flags & 16777216; } else { optionalFlag &= prop.flags; } } if (!singleProp) { singleProp = prop; propFlags = prop.flags & 98304 || 4; } else if (prop !== singleProp) { const isInstantiation = (getTargetSymbol(prop) || prop) === (getTargetSymbol(singleProp) || singleProp); if (isInstantiation && compareProperties2(singleProp, prop, (a, b) => a === b ? -1 : 0) === -1) { mergedInstantiations = !!singleProp.parent && !!length(getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(singleProp.parent)); } else { if (!propSet) { propSet = /* @__PURE__ */ new Map; propSet.set(getSymbolId(singleProp), singleProp); } const id = getSymbolId(prop); if (!propSet.has(id)) { propSet.set(id, prop); } } if (propFlags & 98304 && (prop.flags & 98304) !== (propFlags & 98304)) { propFlags = propFlags & ~98304 | 4; } } if (isUnion && isReadonlySymbol(prop)) { checkFlags |= 8; } else if (!isUnion && !isReadonlySymbol(prop)) { checkFlags &= ~8; } checkFlags |= (!(modifiers & 6) ? 256 : 0) | (modifiers & 4 ? 512 : 0) | (modifiers & 2 ? 1024 : 0) | (modifiers & 256 ? 2048 : 0); if (!isPrototypeProperty(prop)) { syntheticFlag = 2; } } else if (isUnion) { const indexInfo = !isLateBoundName(name) && getApplicableIndexInfoForName(type, name); if (indexInfo) { propFlags = propFlags & ~98304 | 4; checkFlags |= 32 | (indexInfo.isReadonly ? 8 : 0); indexTypes = append(indexTypes, isTupleType(type) ? getRestTypeOfTupleType(type) || undefinedType : indexInfo.type); } else if (isObjectLiteralType2(type) && !(getObjectFlags(type) & 2097152)) { checkFlags |= 32; indexTypes = append(indexTypes, undefinedType); } else { checkFlags |= 16; } } } } if (!singleProp || isUnion && (propSet || checkFlags & 48) && checkFlags & (1024 | 512) && !(propSet && getCommonDeclarationsOfSymbols(propSet.values()))) { return; } if (!propSet && !(checkFlags & 16) && !indexTypes) { if (mergedInstantiations) { const links = (_a = tryCast(singleProp, isTransientSymbol)) == null ? undefined : _a.links; const clone2 = createSymbolWithType(singleProp, links == null ? undefined : links.type); clone2.parent = (_c = (_b = singleProp.valueDeclaration) == null ? undefined : _b.symbol) == null ? undefined : _c.parent; clone2.links.containingType = containingType; clone2.links.mapper = links == null ? undefined : links.mapper; clone2.links.writeType = getWriteTypeOfSymbol(singleProp); return clone2; } else { return singleProp; } } const props = propSet ? arrayFrom(propSet.values()) : [singleProp]; let declarations; let firstType; let nameType; const propTypes = []; let writeTypes; let firstValueDeclaration; let hasNonUniformValueDeclaration = false; for (const prop of props) { if (!firstValueDeclaration) { firstValueDeclaration = prop.valueDeclaration; } else if (prop.valueDeclaration && prop.valueDeclaration !== firstValueDeclaration) { hasNonUniformValueDeclaration = true; } declarations = addRange(declarations, prop.declarations); const type = getTypeOfSymbol(prop); if (!firstType) { firstType = type; nameType = getSymbolLinks(prop).nameType; } const writeType = getWriteTypeOfSymbol(prop); if (writeTypes || writeType !== type) { writeTypes = append(!writeTypes ? propTypes.slice() : writeTypes, writeType); } if (type !== firstType) { checkFlags |= 64; } if (isLiteralType(type) || isPatternLiteralType(type)) { checkFlags |= 128; } if (type.flags & 262144 && type !== uniqueLiteralType) { checkFlags |= 131072; } propTypes.push(type); } addRange(propTypes, indexTypes); const result = createSymbol(propFlags | (optionalFlag ?? 0), name, syntheticFlag | checkFlags); result.links.containingType = containingType; if (!hasNonUniformValueDeclaration && firstValueDeclaration) { result.valueDeclaration = firstValueDeclaration; if (firstValueDeclaration.symbol.parent) { result.parent = firstValueDeclaration.symbol.parent; } } result.declarations = declarations; result.links.nameType = nameType; if (propTypes.length > 2) { result.links.checkFlags |= 65536; result.links.deferralParent = containingType; result.links.deferralConstituents = propTypes; result.links.deferralWriteConstituents = writeTypes; } else { result.links.type = isUnion ? getUnionType(propTypes) : getIntersectionType(propTypes); if (writeTypes) { result.links.writeType = isUnion ? getUnionType(writeTypes) : getIntersectionType(writeTypes); } } return result; } function getUnionOrIntersectionProperty(type, name, skipObjectFunctionPropertyAugment) { var _a, _b, _c; let property = skipObjectFunctionPropertyAugment ? (_a = type.propertyCacheWithoutObjectFunctionPropertyAugment) == null ? undefined : _a.get(name) : (_b = type.propertyCache) == null ? undefined : _b.get(name); if (!property) { property = createUnionOrIntersectionProperty(type, name, skipObjectFunctionPropertyAugment); if (property) { const properties = skipObjectFunctionPropertyAugment ? type.propertyCacheWithoutObjectFunctionPropertyAugment || (type.propertyCacheWithoutObjectFunctionPropertyAugment = createSymbolTable()) : type.propertyCache || (type.propertyCache = createSymbolTable()); properties.set(name, property); if (skipObjectFunctionPropertyAugment && !(getCheckFlags(property) & 48) && !((_c = type.propertyCache) == null ? undefined : _c.get(name))) { const properties2 = type.propertyCache || (type.propertyCache = createSymbolTable()); properties2.set(name, property); } } } return property; } function getCommonDeclarationsOfSymbols(symbols) { let commonDeclarations; for (const symbol of symbols) { if (!symbol.declarations) { return; } if (!commonDeclarations) { commonDeclarations = new Set(symbol.declarations); continue; } commonDeclarations.forEach((declaration) => { if (!contains(symbol.declarations, declaration)) { commonDeclarations.delete(declaration); } }); if (commonDeclarations.size === 0) { return; } } return commonDeclarations; } function getPropertyOfUnionOrIntersectionType(type, name, skipObjectFunctionPropertyAugment) { const property = getUnionOrIntersectionProperty(type, name, skipObjectFunctionPropertyAugment); return property && !(getCheckFlags(property) & 16) ? property : undefined; } function getReducedType(type) { if (type.flags & 134217728 && type.objectFlags & 16777216) { return type.resolvedReducedType || (type.resolvedReducedType = getReducedUnionType(type)); } else if (type.flags & 268435456) { if (!(type.objectFlags & 16777216)) { type.objectFlags |= 16777216 | (some(getPropertiesOfUnionOrIntersectionType(type), isNeverReducedProperty) ? 33554432 : 0); } return type.objectFlags & 33554432 ? neverType : type; } return type; } function getReducedUnionType(unionType) { const reducedTypes = sameMap(unionType.types, getReducedType); if (reducedTypes === unionType.types) { return unionType; } const reduced = getUnionType(reducedTypes); if (reduced.flags & 134217728) { reduced.resolvedReducedType = reduced; } return reduced; } function isNeverReducedProperty(prop) { return isDiscriminantWithNeverType(prop) || isConflictingPrivateProperty(prop); } function isDiscriminantWithNeverType(prop) { return !(prop.flags & 16777216) && (getCheckFlags(prop) & (192 | 131072)) === 192 && !!(getTypeOfSymbol(prop).flags & 262144); } function isConflictingPrivateProperty(prop) { return !prop.valueDeclaration && !!(getCheckFlags(prop) & 1024); } function isGenericReducibleType(type) { return !!(type.flags & 134217728 && type.objectFlags & 16777216 && some(type.types, isGenericReducibleType) || type.flags & 268435456 && isReducibleIntersection(type)); } function isReducibleIntersection(type) { const uniqueFilled = type.uniqueLiteralFilledInstantiation || (type.uniqueLiteralFilledInstantiation = instantiateType(type, uniqueLiteralMapper)); return getReducedType(uniqueFilled) !== uniqueFilled; } function elaborateNeverIntersection(errorInfo, type) { if (type.flags & 268435456 && getObjectFlags(type) & 33554432) { const neverProp = find(getPropertiesOfUnionOrIntersectionType(type), isDiscriminantWithNeverType); if (neverProp) { return chainDiagnosticMessages(errorInfo, Diagnostics.The_intersection_0_was_reduced_to_never_because_property_1_has_conflicting_types_in_some_constituents, typeToString(type, undefined, 536870912), symbolToString(neverProp)); } const privateProp = find(getPropertiesOfUnionOrIntersectionType(type), isConflictingPrivateProperty); if (privateProp) { return chainDiagnosticMessages(errorInfo, Diagnostics.The_intersection_0_was_reduced_to_never_because_property_1_exists_in_multiple_constituents_and_is_private_in_some, typeToString(type, undefined, 536870912), symbolToString(privateProp)); } } return errorInfo; } function getPropertyOfType(type, name, skipObjectFunctionPropertyAugment, includeTypeOnlyMembers) { var _a, _b; type = getReducedApparentType(type); if (type.flags & 1048576) { const resolved = resolveStructuredTypeMembers(type); const symbol = resolved.members.get(name); if (symbol && !includeTypeOnlyMembers && ((_a = type.symbol) == null ? undefined : _a.flags) & 512 && ((_b = getSymbolLinks(type.symbol).typeOnlyExportStarMap) == null ? undefined : _b.has(name))) { return; } if (symbol && symbolIsValue(symbol, includeTypeOnlyMembers)) { return symbol; } if (skipObjectFunctionPropertyAugment) return; const functionType = resolved === anyFunctionType ? globalFunctionType : resolved.callSignatures.length ? globalCallableFunctionType : resolved.constructSignatures.length ? globalNewableFunctionType : undefined; if (functionType) { const symbol2 = getPropertyOfObjectType(functionType, name); if (symbol2) { return symbol2; } } return getPropertyOfObjectType(globalObjectType, name); } if (type.flags & 268435456) { const prop = getPropertyOfUnionOrIntersectionType(type, name, true); if (prop) { return prop; } if (!skipObjectFunctionPropertyAugment) { return getPropertyOfUnionOrIntersectionType(type, name, skipObjectFunctionPropertyAugment); } return; } if (type.flags & 134217728) { return getPropertyOfUnionOrIntersectionType(type, name, skipObjectFunctionPropertyAugment); } return; } function getSignaturesOfStructuredType(type, kind) { if (type.flags & 403701760) { const resolved = resolveStructuredTypeMembers(type); return kind === 0 ? resolved.callSignatures : resolved.constructSignatures; } return emptyArray; } function getSignaturesOfType(type, kind) { const result = getSignaturesOfStructuredType(getReducedApparentType(type), kind); if (kind === 0 && !length(result) && type.flags & 134217728) { if (type.arrayFallbackSignatures) { return type.arrayFallbackSignatures; } let memberName; if (everyType(type, (t) => { var _a; return !!((_a = t.symbol) == null ? undefined : _a.parent) && isArrayOrTupleSymbol(t.symbol.parent) && (!memberName ? (memberName = t.symbol.escapedName, true) : memberName === t.symbol.escapedName); })) { const arrayArg = mapType(type, (t) => getMappedType((isReadonlyArraySymbol(t.symbol.parent) ? globalReadonlyArrayType : globalArrayType).typeParameters[0], t.mapper)); const arrayType = createArrayType(arrayArg, someType(type, (t) => isReadonlyArraySymbol(t.symbol.parent))); return type.arrayFallbackSignatures = getSignaturesOfType(getTypeOfPropertyOfType(arrayType, memberName), kind); } type.arrayFallbackSignatures = result; } return result; } function isArrayOrTupleSymbol(symbol) { if (!symbol || !globalArrayType.symbol || !globalReadonlyArrayType.symbol) { return false; } return !!getSymbolIfSameReference(symbol, globalArrayType.symbol) || !!getSymbolIfSameReference(symbol, globalReadonlyArrayType.symbol); } function isReadonlyArraySymbol(symbol) { if (!symbol || !globalReadonlyArrayType.symbol) { return false; } return !!getSymbolIfSameReference(symbol, globalReadonlyArrayType.symbol); } function findIndexInfo(indexInfos, keyType) { return find(indexInfos, (info) => info.keyType === keyType); } function findApplicableIndexInfo(indexInfos, keyType) { let stringIndexInfo; let applicableInfo; let applicableInfos; for (const info of indexInfos) { if (info.keyType === stringType) { stringIndexInfo = info; } else if (isApplicableIndexType(keyType, info.keyType)) { if (!applicableInfo) { applicableInfo = info; } else { (applicableInfos || (applicableInfos = [applicableInfo])).push(info); } } } return applicableInfos ? createIndexInfo(unknownType, getIntersectionType(map(applicableInfos, (info) => info.type)), reduceLeft(applicableInfos, (isReadonly, info) => isReadonly && info.isReadonly, true)) : applicableInfo ? applicableInfo : stringIndexInfo && isApplicableIndexType(keyType, stringType) ? stringIndexInfo : undefined; } function isApplicableIndexType(source, target) { return isTypeAssignableTo(source, target) || target === stringType && isTypeAssignableTo(source, numberType) || target === numberType && (source === numericStringType || !!(source.flags & 1024) && isNumericLiteralName(source.value)); } function getIndexInfosOfStructuredType(type) { if (type.flags & 403701760) { const resolved = resolveStructuredTypeMembers(type); return resolved.indexInfos; } return emptyArray; } function getIndexInfosOfType(type) { return getIndexInfosOfStructuredType(getReducedApparentType(type)); } function getIndexInfoOfType(type, keyType) { return findIndexInfo(getIndexInfosOfType(type), keyType); } function getIndexTypeOfType(type, keyType) { var _a; return (_a = getIndexInfoOfType(type, keyType)) == null ? undefined : _a.type; } function getApplicableIndexInfos(type, keyType) { return getIndexInfosOfType(type).filter((info) => isApplicableIndexType(keyType, info.keyType)); } function getApplicableIndexInfo(type, keyType) { return findApplicableIndexInfo(getIndexInfosOfType(type), keyType); } function getApplicableIndexInfoForName(type, name) { return getApplicableIndexInfo(type, isLateBoundName(name) ? esSymbolType : getStringLiteralType(unescapeLeadingUnderscores(name))); } function getTypeParametersFromDeclaration(declaration) { var _a; let result; for (const node of getEffectiveTypeParameterDeclarations(declaration)) { result = appendIfUnique(result, getDeclaredTypeOfTypeParameter(node.symbol)); } return (result == null ? undefined : result.length) ? result : isFunctionDeclaration(declaration) ? (_a = getSignatureOfTypeTag(declaration)) == null ? undefined : _a.typeParameters : undefined; } function symbolsToArray(symbols) { const result = []; symbols.forEach((symbol, id) => { if (!isReservedMemberName(id)) { result.push(symbol); } }); return result; } function tryFindAmbientModule(moduleName, withAugmentations) { if (isExternalModuleNameRelative(moduleName)) { return; } const symbol = getSymbol2(globals, '"' + moduleName + '"', 512); return symbol && withAugmentations ? getMergedSymbol(symbol) : symbol; } function hasEffectiveQuestionToken(node) { return hasQuestionToken(node) || isOptionalJSDocPropertyLikeTag(node) || isParameter(node) && isJSDocOptionalParameter(node); } function isOptionalParameter(node) { if (hasEffectiveQuestionToken(node)) { return true; } if (!isParameter(node)) { return false; } if (node.initializer) { const signature = getSignatureFromDeclaration(node.parent); const parameterIndex = node.parent.parameters.indexOf(node); Debug.assert(parameterIndex >= 0); return parameterIndex >= getMinArgumentCount(signature, 1 | 2); } const iife = getImmediatelyInvokedFunctionExpression(node.parent); if (iife) { return !node.type && !node.dotDotDotToken && node.parent.parameters.indexOf(node) >= getEffectiveCallArguments(iife).length; } return false; } function isOptionalPropertyDeclaration(node) { return isPropertyDeclaration(node) && !hasAccessorModifier(node) && node.questionToken; } function createTypePredicate(kind, parameterName, parameterIndex, type) { return { kind, parameterName, parameterIndex, type }; } function getMinTypeArgumentCount(typeParameters) { let minTypeArgumentCount = 0; if (typeParameters) { for (let i = 0;i < typeParameters.length; i++) { if (!hasTypeParameterDefault(typeParameters[i])) { minTypeArgumentCount = i + 1; } } } return minTypeArgumentCount; } function fillMissingTypeArguments(typeArguments, typeParameters, minTypeArgumentCount, isJavaScriptImplicitAny) { const numTypeParameters = length(typeParameters); if (!numTypeParameters) { return []; } const numTypeArguments = length(typeArguments); if (isJavaScriptImplicitAny || numTypeArguments >= minTypeArgumentCount && numTypeArguments <= numTypeParameters) { const result = typeArguments ? typeArguments.slice() : []; for (let i = numTypeArguments;i < numTypeParameters; i++) { result[i] = errorType; } const baseDefaultType = getDefaultTypeArgumentType(isJavaScriptImplicitAny); for (let i = numTypeArguments;i < numTypeParameters; i++) { let defaultType = getDefaultFromTypeParameter(typeParameters[i]); if (isJavaScriptImplicitAny && defaultType && (isTypeIdenticalTo(defaultType, unknownType) || isTypeIdenticalTo(defaultType, emptyObjectType))) { defaultType = anyType; } result[i] = defaultType ? instantiateType(defaultType, createTypeMapper(typeParameters, result)) : baseDefaultType; } result.length = typeParameters.length; return result; } return typeArguments && typeArguments.slice(); } function getSignatureFromDeclaration(declaration) { const links = getNodeLinks(declaration); if (!links.resolvedSignature) { const parameters = []; let flags = 0; let minArgumentCount = 0; let thisParameter; let thisTag = isInJSFile(declaration) ? getJSDocThisTag(declaration) : undefined; let hasThisParameter2 = false; const iife = getImmediatelyInvokedFunctionExpression(declaration); const isJSConstructSignature = isJSDocConstructSignature(declaration); const isUntypedSignatureInJSFile = !iife && isInJSFile(declaration) && isValueSignatureDeclaration(declaration) && !hasJSDocParameterTags(declaration) && !some(declaration.parameters, (p) => !!getJSDocType(p)) && !getJSDocType(declaration) && !getContextualSignatureForFunctionLikeDeclaration(declaration); if (isUntypedSignatureInJSFile) { flags |= 32; } for (let i = isJSConstructSignature ? 1 : 0;i < declaration.parameters.length; i++) { const param = declaration.parameters[i]; if (isInJSFile(param) && isJSDocThisTag(param)) { thisTag = param; continue; } let paramSymbol = param.symbol; const type = isJSDocParameterTag(param) ? param.typeExpression && param.typeExpression.type : param.type; if (paramSymbol && !!(paramSymbol.flags & 4) && !isBindingPattern(param.name)) { const resolvedSymbol = resolveName(param, paramSymbol.escapedName, 111551, undefined, false); paramSymbol = resolvedSymbol; } if (i === 0 && paramSymbol.escapedName === "this") { hasThisParameter2 = true; thisParameter = param.symbol; } else { parameters.push(paramSymbol); } if (type && type.kind === 202) { flags |= 2; } const isOptionalParameter2 = hasEffectiveQuestionToken(param) || isParameter(param) && param.initializer || isRestParameter(param) || iife && parameters.length > iife.arguments.length && !type; if (!isOptionalParameter2) { minArgumentCount = parameters.length; } } if ((declaration.kind === 178 || declaration.kind === 179) && hasBindableName(declaration) && (!hasThisParameter2 || !thisParameter)) { const otherKind = declaration.kind === 178 ? 179 : 178; const other = getDeclarationOfKind(getSymbolOfDeclaration(declaration), otherKind); if (other) { thisParameter = getAnnotatedAccessorThisParameter(other); } } if (thisTag && thisTag.typeExpression) { thisParameter = createSymbolWithType(createSymbol(1, "this"), getTypeFromTypeNode(thisTag.typeExpression)); } const hostDeclaration = isJSDocSignature(declaration) ? getEffectiveJSDocHost(declaration) : declaration; const classType = hostDeclaration && isConstructorDeclaration(hostDeclaration) ? getDeclaredTypeOfClassOrInterface(getMergedSymbol(hostDeclaration.parent.symbol)) : undefined; const typeParameters = classType ? classType.localTypeParameters : getTypeParametersFromDeclaration(declaration); if (hasRestParameter(declaration) || isInJSFile(declaration) && maybeAddJsSyntheticRestParameter(declaration, parameters)) { flags |= 1; } if (isConstructorTypeNode(declaration) && hasSyntacticModifier(declaration, 64) || isConstructorDeclaration(declaration) && hasSyntacticModifier(declaration.parent, 64)) { flags |= 4; } links.resolvedSignature = createSignature(declaration, typeParameters, thisParameter, parameters, undefined, undefined, minArgumentCount, flags); } return links.resolvedSignature; } function maybeAddJsSyntheticRestParameter(declaration, parameters) { if (isJSDocSignature(declaration) || !containsArgumentsReference(declaration)) { return false; } const lastParam = lastOrUndefined(declaration.parameters); const lastParamTags = lastParam ? getJSDocParameterTags(lastParam) : getJSDocTags(declaration).filter(isJSDocParameterTag); const lastParamVariadicType = firstDefined(lastParamTags, (p) => p.typeExpression && isJSDocVariadicType(p.typeExpression.type) ? p.typeExpression.type : undefined); const syntheticArgsSymbol = createSymbol(3, "args", 32768); if (lastParamVariadicType) { syntheticArgsSymbol.links.type = createArrayType(getTypeFromTypeNode(lastParamVariadicType.type)); } else { syntheticArgsSymbol.links.checkFlags |= 65536; syntheticArgsSymbol.links.deferralParent = neverType; syntheticArgsSymbol.links.deferralConstituents = [anyArrayType]; syntheticArgsSymbol.links.deferralWriteConstituents = [anyArrayType]; } if (lastParamVariadicType) { parameters.pop(); } parameters.push(syntheticArgsSymbol); return true; } function getSignatureOfTypeTag(node) { if (!(isInJSFile(node) && isFunctionLikeDeclaration(node))) return; const typeTag = getJSDocTypeTag(node); return (typeTag == null ? undefined : typeTag.typeExpression) && getSingleCallSignature(getTypeFromTypeNode(typeTag.typeExpression)); } function getParameterTypeOfTypeTag(func, parameter) { const signature = getSignatureOfTypeTag(func); if (!signature) return; const pos = func.parameters.indexOf(parameter); return parameter.dotDotDotToken ? getRestTypeAtPosition(signature, pos) : getTypeAtPosition(signature, pos); } function getReturnTypeOfTypeTag(node) { const signature = getSignatureOfTypeTag(node); return signature && getReturnTypeOfSignature(signature); } function containsArgumentsReference(declaration) { const links = getNodeLinks(declaration); if (links.containsArgumentsReference === undefined) { if (links.flags & 512) { links.containsArgumentsReference = true; } else { links.containsArgumentsReference = traverse(declaration.body); } } return links.containsArgumentsReference; function traverse(node) { if (!node) return false; switch (node.kind) { case 80: return node.escapedText === argumentsSymbol.escapedName && getReferencedValueSymbol(node) === argumentsSymbol; case 173: case 175: case 178: case 179: return node.name.kind === 168 && traverse(node.name); case 212: case 213: return traverse(node.expression); case 304: return traverse(node.initializer); default: return !nodeStartsNewLexicalEnvironment(node) && !isPartOfTypeNode(node) && !!forEachChild(node, traverse); } } } function getSignaturesOfSymbol(symbol) { if (!symbol || !symbol.declarations) return emptyArray; const result = []; for (let i = 0;i < symbol.declarations.length; i++) { const decl = symbol.declarations[i]; if (!isFunctionLike(decl)) continue; if (i > 0 && decl.body) { const previous = symbol.declarations[i - 1]; if (decl.parent === previous.parent && decl.kind === previous.kind && decl.pos === previous.end) { continue; } } if (isInJSFile(decl) && decl.jsDoc) { const tags = getJSDocOverloadTags(decl); if (length(tags)) { for (const tag of tags) { const jsDocSignature = tag.typeExpression; if (jsDocSignature.type === undefined && !isConstructorDeclaration(decl)) { reportImplicitAny(jsDocSignature, anyType); } result.push(getSignatureFromDeclaration(jsDocSignature)); } continue; } } result.push(!isFunctionExpressionOrArrowFunction(decl) && !isObjectLiteralMethod(decl) && getSignatureOfTypeTag(decl) || getSignatureFromDeclaration(decl)); } return result; } function resolveExternalModuleTypeByLiteral(name) { const moduleSym = resolveExternalModuleName(name, name); if (moduleSym) { const resolvedModuleSymbol = resolveExternalModuleSymbol(moduleSym); if (resolvedModuleSymbol) { return getTypeOfSymbol(resolvedModuleSymbol); } } return anyType; } function getThisTypeOfSignature(signature) { if (signature.thisParameter) { return getTypeOfSymbol(signature.thisParameter); } } function getTypePredicateOfSignature(signature) { if (!signature.resolvedTypePredicate) { if (signature.target) { const targetTypePredicate = getTypePredicateOfSignature(signature.target); signature.resolvedTypePredicate = targetTypePredicate ? instantiateTypePredicate(targetTypePredicate, signature.mapper) : noTypePredicate; } else if (signature.compositeSignatures) { signature.resolvedTypePredicate = getUnionOrIntersectionTypePredicate(signature.compositeSignatures, signature.compositeKind) || noTypePredicate; } else { const type = signature.declaration && getEffectiveReturnTypeNode(signature.declaration); let jsdocPredicate; if (!type) { const jsdocSignature = getSignatureOfTypeTag(signature.declaration); if (jsdocSignature && signature !== jsdocSignature) { jsdocPredicate = getTypePredicateOfSignature(jsdocSignature); } } if (type || jsdocPredicate) { signature.resolvedTypePredicate = type && isTypePredicateNode(type) ? createTypePredicateFromTypePredicateNode(type, signature) : jsdocPredicate || noTypePredicate; } else if (signature.declaration && isFunctionLikeDeclaration(signature.declaration) && (!signature.resolvedReturnType || signature.resolvedReturnType.flags & 256) && getParameterCount(signature) > 0) { const { declaration } = signature; signature.resolvedTypePredicate = noTypePredicate; signature.resolvedTypePredicate = getTypePredicateFromBody(declaration) || noTypePredicate; } else { signature.resolvedTypePredicate = noTypePredicate; } } Debug.assert(!!signature.resolvedTypePredicate); } return signature.resolvedTypePredicate === noTypePredicate ? undefined : signature.resolvedTypePredicate; } function createTypePredicateFromTypePredicateNode(node, signature) { const parameterName = node.parameterName; const type = node.type && getTypeFromTypeNode(node.type); return parameterName.kind === 198 ? createTypePredicate(node.assertsModifier ? 2 : 0, undefined, undefined, type) : createTypePredicate(node.assertsModifier ? 3 : 1, parameterName.escapedText, findIndex(signature.parameters, (p) => p.escapedName === parameterName.escapedText), type); } function getUnionOrIntersectionType(types, kind, unionReduction) { return kind !== 268435456 ? getUnionType(types, unionReduction) : getIntersectionType(types); } function getReturnTypeOfSignature(signature) { if (!signature.resolvedReturnType) { if (!pushTypeResolution(signature, 3)) { return errorType; } let type = signature.target ? instantiateType(getReturnTypeOfSignature(signature.target), signature.mapper) : signature.compositeSignatures ? instantiateType(getUnionOrIntersectionType(map(signature.compositeSignatures, getReturnTypeOfSignature), signature.compositeKind, 2), signature.mapper) : getReturnTypeFromAnnotation(signature.declaration) || (nodeIsMissing(signature.declaration.body) ? anyType : getReturnTypeFromBody(signature.declaration)); if (signature.flags & 8) { type = addOptionalTypeMarker(type); } else if (signature.flags & 16) { type = getOptionalType(type); } if (!popTypeResolution()) { if (signature.declaration) { const typeNode = getEffectiveReturnTypeNode(signature.declaration); if (typeNode) { error2(typeNode, Diagnostics.Return_type_annotation_circularly_references_itself); } else if (noImplicitAny) { const declaration = signature.declaration; const name = getNameOfDeclaration(declaration); if (name) { error2(name, Diagnostics._0_implicitly_has_return_type_any_because_it_does_not_have_a_return_type_annotation_and_is_referenced_directly_or_indirectly_in_one_of_its_return_expressions, declarationNameToString(name)); } else { error2(declaration, Diagnostics.Function_implicitly_has_return_type_any_because_it_does_not_have_a_return_type_annotation_and_is_referenced_directly_or_indirectly_in_one_of_its_return_expressions); } } } type = anyType; } signature.resolvedReturnType ?? (signature.resolvedReturnType = type); } return signature.resolvedReturnType; } function getReturnTypeFromAnnotation(declaration) { if (declaration.kind === 177) { return getDeclaredTypeOfClassOrInterface(getMergedSymbol(declaration.parent.symbol)); } const typeNode = getEffectiveReturnTypeNode(declaration); if (isJSDocSignature(declaration)) { const root = getJSDocRoot(declaration); if (root && isConstructorDeclaration(root.parent) && !typeNode) { return getDeclaredTypeOfClassOrInterface(getMergedSymbol(root.parent.parent.symbol)); } } if (isJSDocConstructSignature(declaration)) { return getTypeFromTypeNode(declaration.parameters[0].type); } if (typeNode) { return getTypeFromTypeNode(typeNode); } if (declaration.kind === 178 && hasBindableName(declaration)) { const jsDocType = isInJSFile(declaration) && getTypeForDeclarationFromJSDocComment(declaration); if (jsDocType) { return jsDocType; } const setter = getDeclarationOfKind(getSymbolOfDeclaration(declaration), 179); const setterType = getAnnotatedAccessorType(setter); if (setterType) { return setterType; } } return getReturnTypeOfTypeTag(declaration); } function isResolvingReturnTypeOfSignature(signature) { return signature.compositeSignatures && some(signature.compositeSignatures, isResolvingReturnTypeOfSignature) || !signature.resolvedReturnType && findResolutionCycleStartIndex(signature, 3) >= 0; } function getRestTypeOfSignature(signature) { return tryGetRestTypeOfSignature(signature) || anyType; } function tryGetRestTypeOfSignature(signature) { if (signatureHasRestParameter(signature)) { const sigRestType = getTypeOfSymbol(signature.parameters[signature.parameters.length - 1]); const restType = isTupleType(sigRestType) ? getRestTypeOfTupleType(sigRestType) : sigRestType; return restType && getIndexTypeOfType(restType, numberType); } return; } function getSignatureInstantiation(signature, typeArguments, isJavascript, inferredTypeParameters) { const instantiatedSignature = getSignatureInstantiationWithoutFillingInTypeArguments(signature, fillMissingTypeArguments(typeArguments, signature.typeParameters, getMinTypeArgumentCount(signature.typeParameters), isJavascript)); if (inferredTypeParameters) { const returnSignature = getSingleCallOrConstructSignature(getReturnTypeOfSignature(instantiatedSignature)); if (returnSignature) { const newReturnSignature = cloneSignature(returnSignature); newReturnSignature.typeParameters = inferredTypeParameters; const newReturnType = getOrCreateTypeFromSignature(newReturnSignature); newReturnType.mapper = instantiatedSignature.mapper; const newInstantiatedSignature = cloneSignature(instantiatedSignature); newInstantiatedSignature.resolvedReturnType = newReturnType; return newInstantiatedSignature; } } return instantiatedSignature; } function getSignatureInstantiationWithoutFillingInTypeArguments(signature, typeArguments) { const instantiations = signature.instantiations || (signature.instantiations = /* @__PURE__ */ new Map); const id = getTypeListId(typeArguments); let instantiation = instantiations.get(id); if (!instantiation) { instantiations.set(id, instantiation = createSignatureInstantiation(signature, typeArguments)); } return instantiation; } function createSignatureInstantiation(signature, typeArguments) { return instantiateSignature(signature, createSignatureTypeMapper(signature, typeArguments), true); } function getTypeParametersForMapper(signature) { return sameMap(signature.typeParameters, (tp) => tp.mapper ? instantiateType(tp, tp.mapper) : tp); } function createSignatureTypeMapper(signature, typeArguments) { return createTypeMapper(getTypeParametersForMapper(signature), typeArguments); } function getErasedSignature(signature) { return signature.typeParameters ? signature.erasedSignatureCache || (signature.erasedSignatureCache = createErasedSignature(signature)) : signature; } function createErasedSignature(signature) { return instantiateSignature(signature, createTypeEraser(signature.typeParameters), true); } function getCanonicalSignature(signature) { return signature.typeParameters ? signature.canonicalSignatureCache || (signature.canonicalSignatureCache = createCanonicalSignature(signature)) : signature; } function createCanonicalSignature(signature) { return getSignatureInstantiation(signature, map(signature.typeParameters, (tp) => tp.target && !getConstraintOfTypeParameter(tp.target) ? tp.target : tp), isInJSFile(signature.declaration)); } function getBaseSignature(signature) { const typeParameters = signature.typeParameters; if (typeParameters) { if (signature.baseSignatureCache) { return signature.baseSignatureCache; } const typeEraser = createTypeEraser(typeParameters); const baseConstraintMapper = createTypeMapper(typeParameters, map(typeParameters, (tp) => getConstraintOfTypeParameter(tp) || unknownType)); let baseConstraints = map(typeParameters, (tp) => instantiateType(tp, baseConstraintMapper) || unknownType); for (let i = 0;i < typeParameters.length - 1; i++) { baseConstraints = instantiateTypes(baseConstraints, baseConstraintMapper); } baseConstraints = instantiateTypes(baseConstraints, typeEraser); return signature.baseSignatureCache = instantiateSignature(signature, createTypeMapper(typeParameters, baseConstraints), true); } return signature; } function getOrCreateTypeFromSignature(signature) { var _a, _b; if (!signature.isolatedSignatureType) { const kind = (_a = signature.declaration) == null ? undefined : _a.kind; const isConstructor = kind === undefined || kind === 177 || kind === 181 || kind === 186; const type = createObjectType(16 | 134217728, (_b = signature.declaration) == null ? undefined : _b.symbol); type.members = emptySymbols; type.properties = emptyArray; type.callSignatures = !isConstructor ? [signature] : emptyArray; type.constructSignatures = isConstructor ? [signature] : emptyArray; type.indexInfos = emptyArray; signature.isolatedSignatureType = type; } return signature.isolatedSignatureType; } function getIndexSymbol(symbol) { return symbol.members ? getIndexSymbolFromSymbolTable(getMembersOfSymbol(symbol)) : undefined; } function getIndexSymbolFromSymbolTable(symbolTable) { return symbolTable.get("__index"); } function createIndexInfo(keyType, type, isReadonly, declaration, components) { return { keyType, type, isReadonly, declaration, components }; } function getIndexInfosOfSymbol(symbol) { const indexSymbol = getIndexSymbol(symbol); return indexSymbol ? getIndexInfosOfIndexSymbol(indexSymbol, arrayFrom(getMembersOfSymbol(symbol).values())) : emptyArray; } function getIndexInfosOfIndexSymbol(indexSymbol, siblingSymbols = indexSymbol.parent ? arrayFrom(getMembersOfSymbol(indexSymbol.parent).values()) : undefined) { if (indexSymbol.declarations) { const indexInfos = []; let hasComputedNumberProperty = false; let readonlyComputedNumberProperty = true; let hasComputedSymbolProperty = false; let readonlyComputedSymbolProperty = true; let hasComputedStringProperty = false; let readonlyComputedStringProperty = true; const computedPropertySymbols = []; for (const declaration of indexSymbol.declarations) { if (isIndexSignatureDeclaration(declaration)) { if (declaration.parameters.length === 1) { const parameter = declaration.parameters[0]; if (parameter.type) { forEachType(getTypeFromTypeNode(parameter.type), (keyType) => { if (isValidIndexKeyType(keyType) && !findIndexInfo(indexInfos, keyType)) { indexInfos.push(createIndexInfo(keyType, declaration.type ? getTypeFromTypeNode(declaration.type) : anyType, hasEffectiveModifier(declaration, 8), declaration)); } }); } } } else if (hasLateBindableIndexSignature(declaration)) { const declName = isBinaryExpression(declaration) ? declaration.left : declaration.name; const keyType = isElementAccessExpression(declName) ? checkExpressionCached(declName.argumentExpression) : checkComputedPropertyName(declName); if (findIndexInfo(indexInfos, keyType)) { continue; } if (isTypeAssignableTo(keyType, stringNumberSymbolType)) { if (isTypeAssignableTo(keyType, numberType)) { hasComputedNumberProperty = true; if (!hasEffectiveReadonlyModifier(declaration)) { readonlyComputedNumberProperty = false; } } else if (isTypeAssignableTo(keyType, esSymbolType)) { hasComputedSymbolProperty = true; if (!hasEffectiveReadonlyModifier(declaration)) { readonlyComputedSymbolProperty = false; } } else { hasComputedStringProperty = true; if (!hasEffectiveReadonlyModifier(declaration)) { readonlyComputedStringProperty = false; } } computedPropertySymbols.push(declaration.symbol); } } } const allPropertySymbols = concatenate(computedPropertySymbols, filter(siblingSymbols, (s) => s !== indexSymbol)); if (hasComputedStringProperty && !findIndexInfo(indexInfos, stringType)) indexInfos.push(getObjectLiteralIndexInfo(readonlyComputedStringProperty, 0, allPropertySymbols, stringType)); if (hasComputedNumberProperty && !findIndexInfo(indexInfos, numberType)) indexInfos.push(getObjectLiteralIndexInfo(readonlyComputedNumberProperty, 0, allPropertySymbols, numberType)); if (hasComputedSymbolProperty && !findIndexInfo(indexInfos, esSymbolType)) indexInfos.push(getObjectLiteralIndexInfo(readonlyComputedSymbolProperty, 0, allPropertySymbols, esSymbolType)); return indexInfos; } return emptyArray; } function isValidIndexKeyType(type) { return !!(type.flags & (32 | 64 | 512)) || isPatternLiteralType(type) || !!(type.flags & 268435456) && !isGenericType(type) && some(type.types, isValidIndexKeyType); } function getConstraintDeclaration(type) { return mapDefined(filter(type.symbol && type.symbol.declarations, isTypeParameterDeclaration), getEffectiveConstraintOfTypeParameter)[0]; } function getInferredTypeParameterConstraint(typeParameter, omitTypeReferences) { var _a; let inferences; if ((_a = typeParameter.symbol) == null ? undefined : _a.declarations) { for (const declaration of typeParameter.symbol.declarations) { if (declaration.parent.kind === 196) { const [childTypeParameter = declaration.parent, grandParent] = walkUpParenthesizedTypesAndGetParentAndChild(declaration.parent.parent); if (grandParent.kind === 184 && !omitTypeReferences) { const typeReference = grandParent; const typeParameters = getTypeParametersForTypeReferenceOrImport(typeReference); if (typeParameters) { const index = typeReference.typeArguments.indexOf(childTypeParameter); if (index < typeParameters.length) { const declaredConstraint = getConstraintOfTypeParameter(typeParameters[index]); if (declaredConstraint) { const mapper = makeDeferredTypeMapper(typeParameters, typeParameters.map((_, index2) => () => { return getEffectiveTypeArgumentAtIndex(typeReference, typeParameters, index2); })); const constraint = instantiateType(declaredConstraint, mapper); if (constraint !== typeParameter) { inferences = append(inferences, constraint); } } } } } else if (grandParent.kind === 170 && grandParent.dotDotDotToken || grandParent.kind === 192 || grandParent.kind === 203 && grandParent.dotDotDotToken) { inferences = append(inferences, createArrayType(unknownType)); } else if (grandParent.kind === 205) { inferences = append(inferences, stringType); } else if (grandParent.kind === 169 && grandParent.parent.kind === 201) { inferences = append(inferences, stringNumberSymbolType); } else if (grandParent.kind === 201 && grandParent.type && skipParentheses(grandParent.type) === declaration.parent && grandParent.parent.kind === 195 && grandParent.parent.extendsType === grandParent && grandParent.parent.checkType.kind === 201 && grandParent.parent.checkType.type) { const checkMappedType2 = grandParent.parent.checkType; const nodeType = getTypeFromTypeNode(checkMappedType2.type); inferences = append(inferences, instantiateType(nodeType, makeUnaryTypeMapper(getDeclaredTypeOfTypeParameter(getSymbolOfDeclaration(checkMappedType2.typeParameter)), checkMappedType2.typeParameter.constraint ? getTypeFromTypeNode(checkMappedType2.typeParameter.constraint) : stringNumberSymbolType))); } } } } return inferences && getIntersectionType(inferences); } function getConstraintFromTypeParameter(typeParameter) { if (!typeParameter.constraint) { if (typeParameter.target) { const targetConstraint = getConstraintOfTypeParameter(typeParameter.target); typeParameter.constraint = targetConstraint ? instantiateType(targetConstraint, typeParameter.mapper) : noConstraintType; } else { const constraintDeclaration = getConstraintDeclaration(typeParameter); if (!constraintDeclaration) { typeParameter.constraint = getInferredTypeParameterConstraint(typeParameter) || noConstraintType; } else { let type = getTypeFromTypeNode(constraintDeclaration); if (type.flags & 1 && !isErrorType(type)) { type = constraintDeclaration.parent.parent.kind === 201 ? stringNumberSymbolType : unknownType; } typeParameter.constraint = type; } } } return typeParameter.constraint === noConstraintType ? undefined : typeParameter.constraint; } function getParentSymbolOfTypeParameter(typeParameter) { const tp = getDeclarationOfKind(typeParameter.symbol, 169); const host2 = isJSDocTemplateTag(tp.parent) ? getEffectiveContainerForJSDocTemplateTag(tp.parent) : tp.parent; return host2 && getSymbolOfNode(host2); } function getTypeListId(types) { let result = ""; if (types) { const length2 = types.length; let i = 0; while (i < length2) { const startId = types[i].id; let count = 1; while (i + count < length2 && types[i + count].id === startId + count) { count++; } if (result.length) { result += ","; } result += startId; if (count > 1) { result += ":" + count; } i += count; } } return result; } function getAliasId(aliasSymbol, aliasTypeArguments) { return aliasSymbol ? `@${getSymbolId(aliasSymbol)}` + (aliasTypeArguments ? `:${getTypeListId(aliasTypeArguments)}` : "") : ""; } function getPropagatingFlagsOfTypes(types, excludeKinds) { let result = 0; for (const type of types) { if (excludeKinds === undefined || !(type.flags & excludeKinds)) { result |= getObjectFlags(type); } } return result & 458752; } function tryCreateTypeReference(target, typeArguments) { if (some(typeArguments) && target === emptyGenericType) { return unknownType; } return createTypeReference(target, typeArguments); } function createTypeReference(target, typeArguments) { const id = getTypeListId(typeArguments); let type = target.instantiations.get(id); if (!type) { type = createObjectType(4, target.symbol); target.instantiations.set(id, type); type.objectFlags |= typeArguments ? getPropagatingFlagsOfTypes(typeArguments) : 0; type.target = target; type.resolvedTypeArguments = typeArguments; } return type; } function cloneTypeReference(source) { const type = createTypeWithSymbol(source.flags, source.symbol); type.objectFlags = source.objectFlags; type.target = source.target; type.resolvedTypeArguments = source.resolvedTypeArguments; return type; } function createDeferredTypeReference(target, node, mapper, aliasSymbol, aliasTypeArguments) { if (!aliasSymbol) { aliasSymbol = getAliasSymbolForTypeNode(node); const localAliasTypeArguments = getTypeArgumentsForAliasSymbol(aliasSymbol); aliasTypeArguments = mapper ? instantiateTypes(localAliasTypeArguments, mapper) : localAliasTypeArguments; } const type = createObjectType(4, target.symbol); type.target = target; type.node = node; type.mapper = mapper; type.aliasSymbol = aliasSymbol; type.aliasTypeArguments = aliasTypeArguments; return type; } function getTypeArguments(type) { var _a, _b; if (!type.resolvedTypeArguments) { if (!pushTypeResolution(type, 5)) { return concatenate(type.target.outerTypeParameters, (_a = type.target.localTypeParameters) == null ? undefined : _a.map(() => errorType)) || emptyArray; } const node = type.node; const typeArguments = !node ? emptyArray : node.kind === 184 ? concatenate(type.target.outerTypeParameters, getEffectiveTypeArguments2(node, type.target.localTypeParameters)) : node.kind === 189 ? [getTypeFromTypeNode(node.elementType)] : map(node.elements, getTypeFromTypeNode); if (popTypeResolution()) { type.resolvedTypeArguments ?? (type.resolvedTypeArguments = type.mapper ? instantiateTypes(typeArguments, type.mapper) : typeArguments); } else { type.resolvedTypeArguments ?? (type.resolvedTypeArguments = concatenate(type.target.outerTypeParameters, ((_b = type.target.localTypeParameters) == null ? undefined : _b.map(() => errorType)) || emptyArray)); error2(type.node || currentNode, type.target.symbol ? Diagnostics.Type_arguments_for_0_circularly_reference_themselves : Diagnostics.Tuple_type_arguments_circularly_reference_themselves, type.target.symbol && symbolToString(type.target.symbol)); } } return type.resolvedTypeArguments; } function getTypeReferenceArity(type) { return length(type.target.typeParameters); } function getTypeFromClassOrInterfaceReference(node, symbol) { const type = getDeclaredTypeOfSymbol(getMergedSymbol(symbol)); const typeParameters = type.localTypeParameters; if (typeParameters) { const numTypeArguments = length(node.typeArguments); const minTypeArgumentCount = getMinTypeArgumentCount(typeParameters); const isJs = isInJSFile(node); const isJsImplicitAny = !noImplicitAny && isJs; if (!isJsImplicitAny && (numTypeArguments < minTypeArgumentCount || numTypeArguments > typeParameters.length)) { const missingAugmentsTag = isJs && isExpressionWithTypeArguments(node) && !isJSDocAugmentsTag(node.parent); const diag2 = minTypeArgumentCount === typeParameters.length ? missingAugmentsTag ? Diagnostics.Expected_0_type_arguments_provide_these_with_an_extends_tag : Diagnostics.Generic_type_0_requires_1_type_argument_s : missingAugmentsTag ? Diagnostics.Expected_0_1_type_arguments_provide_these_with_an_extends_tag : Diagnostics.Generic_type_0_requires_between_1_and_2_type_arguments; const typeStr = typeToString(type, undefined, 2); error2(node, diag2, typeStr, minTypeArgumentCount, typeParameters.length); if (!isJs) { return errorType; } } if (node.kind === 184 && isDeferredTypeReferenceNode(node, length(node.typeArguments) !== typeParameters.length)) { return createDeferredTypeReference(type, node, undefined); } const typeArguments = concatenate(type.outerTypeParameters, fillMissingTypeArguments(typeArgumentsFromTypeReferenceNode(node), typeParameters, minTypeArgumentCount, isJs)); return createTypeReference(type, typeArguments); } return checkNoTypeArguments(node, symbol) ? type : errorType; } function getTypeAliasInstantiation(symbol, typeArguments, aliasSymbol, aliasTypeArguments) { const type = getDeclaredTypeOfSymbol(symbol); if (type === intrinsicMarkerType) { const typeKind = intrinsicTypeKinds.get(symbol.escapedName); if (typeKind !== undefined && typeArguments && typeArguments.length === 1) { return typeKind === 4 ? getNoInferType(typeArguments[0]) : getStringMappingType(symbol, typeArguments[0]); } } const links = getSymbolLinks(symbol); const typeParameters = links.typeParameters; const id = getTypeListId(typeArguments) + getAliasId(aliasSymbol, aliasTypeArguments); let instantiation = links.instantiations.get(id); if (!instantiation) { links.instantiations.set(id, instantiation = instantiateTypeWithAlias(type, createTypeMapper(typeParameters, fillMissingTypeArguments(typeArguments, typeParameters, getMinTypeArgumentCount(typeParameters), isInJSFile(symbol.valueDeclaration))), aliasSymbol, aliasTypeArguments)); } return instantiation; } function getTypeFromTypeAliasReference(node, symbol) { if (getCheckFlags(symbol) & 1048576) { const typeArguments = typeArgumentsFromTypeReferenceNode(node); const id = getAliasId(symbol, typeArguments); let errorType2 = errorTypes.get(id); if (!errorType2) { errorType2 = createIntrinsicType(1, "error", undefined, `alias ${id}`); errorType2.aliasSymbol = symbol; errorType2.aliasTypeArguments = typeArguments; errorTypes.set(id, errorType2); } return errorType2; } const type = getDeclaredTypeOfSymbol(symbol); const typeParameters = getSymbolLinks(symbol).typeParameters; if (typeParameters) { const numTypeArguments = length(node.typeArguments); const minTypeArgumentCount = getMinTypeArgumentCount(typeParameters); if (numTypeArguments < minTypeArgumentCount || numTypeArguments > typeParameters.length) { error2(node, minTypeArgumentCount === typeParameters.length ? Diagnostics.Generic_type_0_requires_1_type_argument_s : Diagnostics.Generic_type_0_requires_between_1_and_2_type_arguments, symbolToString(symbol), minTypeArgumentCount, typeParameters.length); return errorType; } const aliasSymbol = getAliasSymbolForTypeNode(node); let newAliasSymbol = aliasSymbol && (isLocalTypeAlias(symbol) || !isLocalTypeAlias(aliasSymbol)) ? aliasSymbol : undefined; let aliasTypeArguments; if (newAliasSymbol) { aliasTypeArguments = getTypeArgumentsForAliasSymbol(newAliasSymbol); } else if (isTypeReferenceType(node)) { const aliasSymbol2 = resolveTypeReferenceName(node, 2097152, true); if (aliasSymbol2 && aliasSymbol2 !== unknownSymbol) { const resolved = resolveAlias(aliasSymbol2); if (resolved && resolved.flags & 524288) { newAliasSymbol = resolved; aliasTypeArguments = typeArgumentsFromTypeReferenceNode(node) || (typeParameters ? [] : undefined); } } } return getTypeAliasInstantiation(symbol, typeArgumentsFromTypeReferenceNode(node), newAliasSymbol, aliasTypeArguments); } return checkNoTypeArguments(node, symbol) ? type : errorType; } function isLocalTypeAlias(symbol) { var _a; const declaration = (_a = symbol.declarations) == null ? undefined : _a.find(isTypeAlias); return !!(declaration && getContainingFunction(declaration)); } function getTypeReferenceName(node) { switch (node.kind) { case 184: return node.typeName; case 234: const expr = node.expression; if (isEntityNameExpression(expr)) { return expr; } } return; } function getSymbolPath(symbol) { return symbol.parent ? `${getSymbolPath(symbol.parent)}.${symbol.escapedName}` : symbol.escapedName; } function getUnresolvedSymbolForEntityName(name) { const identifier = name.kind === 167 ? name.right : name.kind === 212 ? name.name : name; const text = identifier.escapedText; if (text) { const parentSymbol = name.kind === 167 ? getUnresolvedSymbolForEntityName(name.left) : name.kind === 212 ? getUnresolvedSymbolForEntityName(name.expression) : undefined; const path = parentSymbol ? `${getSymbolPath(parentSymbol)}.${text}` : text; let result = unresolvedSymbols.get(path); if (!result) { unresolvedSymbols.set(path, result = createSymbol(524288, text, 1048576)); result.parent = parentSymbol; result.links.declaredType = unresolvedType; } return result; } return unknownSymbol; } function resolveTypeReferenceName(typeReference, meaning, ignoreErrors) { const name = getTypeReferenceName(typeReference); if (!name) { return unknownSymbol; } const symbol = resolveEntityName(name, meaning, ignoreErrors); return symbol && symbol !== unknownSymbol ? symbol : ignoreErrors ? unknownSymbol : getUnresolvedSymbolForEntityName(name); } function getTypeReferenceType(node, symbol) { if (symbol === unknownSymbol) { return errorType; } symbol = getExpandoSymbol(symbol) || symbol; if (symbol.flags & (32 | 64)) { return getTypeFromClassOrInterfaceReference(node, symbol); } if (symbol.flags & 524288) { return getTypeFromTypeAliasReference(node, symbol); } const res = tryGetDeclaredTypeOfSymbol(symbol); if (res) { return checkNoTypeArguments(node, symbol) ? getRegularTypeOfLiteralType(res) : errorType; } if (symbol.flags & 111551 && isJSDocTypeReference(node)) { const jsdocType = getTypeFromJSDocValueReference(node, symbol); if (jsdocType) { return jsdocType; } else { resolveTypeReferenceName(node, 788968); return getTypeOfSymbol(symbol); } } return errorType; } function getTypeFromJSDocValueReference(node, symbol) { const links = getNodeLinks(node); if (!links.resolvedJSDocType) { const valueType = getTypeOfSymbol(symbol); let typeType = valueType; if (symbol.valueDeclaration) { const isImportTypeWithQualifier = node.kind === 206 && node.qualifier; if (valueType.symbol && valueType.symbol !== symbol && isImportTypeWithQualifier) { typeType = getTypeReferenceType(node, valueType.symbol); } } links.resolvedJSDocType = typeType; } return links.resolvedJSDocType; } function getNoInferType(type) { return isNoInferTargetType(type) ? getOrCreateSubstitutionType(type, unknownType) : type; } function isNoInferTargetType(type) { return !!(type.flags & 402653184 && some(type.types, isNoInferTargetType) || type.flags & 16777216 && !isNoInferType(type) && isNoInferTargetType(type.baseType) || type.flags & 1048576 && !isEmptyAnonymousObjectType(type) || type.flags & (132644864 & ~16777216) && !isPatternLiteralType(type)); } function isNoInferType(type) { return !!(type.flags & 16777216 && type.constraint.flags & 2); } function getSubstitutionType(baseType, constraint) { return constraint.flags & 3 || constraint === baseType || baseType.flags & 1 ? baseType : getOrCreateSubstitutionType(baseType, constraint); } function getOrCreateSubstitutionType(baseType, constraint) { const id = `${getTypeId(baseType)}>${getTypeId(constraint)}`; const cached = substitutionTypes.get(id); if (cached) { return cached; } const result = createType(16777216); result.baseType = baseType; result.constraint = constraint; substitutionTypes.set(id, result); return result; } function getSubstitutionIntersection(substitutionType) { return isNoInferType(substitutionType) ? substitutionType.baseType : getIntersectionType([substitutionType.constraint, substitutionType.baseType]); } function isUnaryTupleTypeNode(node) { return node.kind === 190 && node.elements.length === 1; } function getImpliedConstraint(type, checkNode, extendsNode) { return isUnaryTupleTypeNode(checkNode) && isUnaryTupleTypeNode(extendsNode) ? getImpliedConstraint(type, checkNode.elements[0], extendsNode.elements[0]) : getActualTypeVariable(getTypeFromTypeNode(checkNode)) === getActualTypeVariable(type) ? getTypeFromTypeNode(extendsNode) : undefined; } function getConditionalFlowTypeOfType(type, node) { let constraints; let covariant = true; while (node && !isStatement(node) && node.kind !== 321) { const parent2 = node.parent; if (parent2.kind === 170) { covariant = !covariant; } if ((covariant || type.flags & 34078720) && parent2.kind === 195 && node === parent2.trueType) { const constraint = getImpliedConstraint(type, parent2.checkType, parent2.extendsType); if (constraint) { constraints = append(constraints, constraint); } } else if (type.flags & 524288 && parent2.kind === 201 && !parent2.nameType && node === parent2.type) { const mappedType = getTypeFromTypeNode(parent2); if (getTypeParameterFromMappedType(mappedType) === getActualTypeVariable(type)) { const typeParameter = getHomomorphicTypeVariable(mappedType); if (typeParameter) { const constraint = getConstraintOfTypeParameter(typeParameter); if (constraint && everyType(constraint, isArrayOrTupleType)) { constraints = append(constraints, getUnionType([numberType, numericStringType])); } } } } node = parent2; } return constraints ? getSubstitutionType(type, getIntersectionType(constraints)) : type; } function isJSDocTypeReference(node) { return !!(node.flags & 16777216) && (node.kind === 184 || node.kind === 206); } function checkNoTypeArguments(node, symbol) { if (node.typeArguments) { error2(node, Diagnostics.Type_0_is_not_generic, symbol ? symbolToString(symbol) : node.typeName ? declarationNameToString(node.typeName) : anon); return false; } return true; } function getIntendedTypeFromJSDocTypeReference(node) { if (isIdentifier(node.typeName)) { const typeArgs = node.typeArguments; switch (node.typeName.escapedText) { case "String": checkNoTypeArguments(node); return stringType; case "Number": checkNoTypeArguments(node); return numberType; case "BigInt": checkNoTypeArguments(node); return bigintType; case "Boolean": checkNoTypeArguments(node); return booleanType; case "Void": checkNoTypeArguments(node); return voidType; case "Undefined": checkNoTypeArguments(node); return undefinedType; case "Null": checkNoTypeArguments(node); return nullType; case "Function": case "function": checkNoTypeArguments(node); return globalFunctionType; case "array": return (!typeArgs || !typeArgs.length) && !noImplicitAny ? anyArrayType : undefined; case "promise": return (!typeArgs || !typeArgs.length) && !noImplicitAny ? createPromiseType(anyType) : undefined; case "Object": if (typeArgs && typeArgs.length === 2) { if (isJSDocIndexSignature(node)) { const indexed = getTypeFromTypeNode(typeArgs[0]); const target = getTypeFromTypeNode(typeArgs[1]); const indexInfo = indexed === stringType || indexed === numberType ? [createIndexInfo(indexed, target, false)] : emptyArray; return createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, indexInfo); } return anyType; } checkNoTypeArguments(node); return !noImplicitAny ? anyType : undefined; } } } function getTypeFromJSDocNullableTypeNode(node) { const type = getTypeFromTypeNode(node.type); return strictNullChecks ? getNullableType(type, 8) : type; } function getTypeFromTypeReference(node) { const links = getNodeLinks(node); if (!links.resolvedType) { if (isConstTypeReference(node) && isAssertionExpression(node.parent)) { links.resolvedSymbol = unknownSymbol; return links.resolvedType = checkExpressionCached(node.parent.expression); } let symbol; let type; const meaning = 788968; if (isJSDocTypeReference(node)) { type = getIntendedTypeFromJSDocTypeReference(node); if (!type) { symbol = resolveTypeReferenceName(node, meaning, true); if (symbol === unknownSymbol) { symbol = resolveTypeReferenceName(node, meaning | 111551); } else { resolveTypeReferenceName(node, meaning); } type = getTypeReferenceType(node, symbol); } } if (!type) { symbol = resolveTypeReferenceName(node, meaning); type = getTypeReferenceType(node, symbol); } links.resolvedSymbol = symbol; links.resolvedType = type; } return links.resolvedType; } function typeArgumentsFromTypeReferenceNode(node) { return map(node.typeArguments, getTypeFromTypeNode); } function getTypeFromTypeQueryNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { const type = checkExpressionWithTypeArguments(node); links.resolvedType = getRegularTypeOfLiteralType(getWidenedType(type)); } return links.resolvedType; } function getTypeOfGlobalSymbol(symbol, arity) { function getTypeDeclaration(symbol2) { const declarations = symbol2.declarations; if (declarations) { for (const declaration of declarations) { switch (declaration.kind) { case 264: case 265: case 267: return declaration; } } } } if (!symbol) { return arity ? emptyGenericType : emptyObjectType; } const type = getDeclaredTypeOfSymbol(symbol); if (!(type.flags & 1048576)) { error2(getTypeDeclaration(symbol), Diagnostics.Global_type_0_must_be_a_class_or_interface_type, symbolName(symbol)); return arity ? emptyGenericType : emptyObjectType; } if (length(type.typeParameters) !== arity) { error2(getTypeDeclaration(symbol), Diagnostics.Global_type_0_must_have_1_type_parameter_s, symbolName(symbol), arity); return arity ? emptyGenericType : emptyObjectType; } return type; } function getGlobalValueSymbol(name, reportErrors2) { return getGlobalSymbol(name, 111551, reportErrors2 ? Diagnostics.Cannot_find_global_value_0 : undefined); } function getGlobalTypeSymbol(name, reportErrors2) { return getGlobalSymbol(name, 788968, reportErrors2 ? Diagnostics.Cannot_find_global_type_0 : undefined); } function getGlobalTypeAliasSymbol(name, arity, reportErrors2) { const symbol = getGlobalSymbol(name, 788968, reportErrors2 ? Diagnostics.Cannot_find_global_type_0 : undefined); if (symbol) { getDeclaredTypeOfSymbol(symbol); if (length(getSymbolLinks(symbol).typeParameters) !== arity) { const decl = symbol.declarations && find(symbol.declarations, isTypeAliasDeclaration); error2(decl, Diagnostics.Global_type_0_must_have_1_type_parameter_s, symbolName(symbol), arity); return; } } return symbol; } function getGlobalSymbol(name, meaning, diagnostic) { return resolveName(undefined, name, meaning, diagnostic, false, false); } function getGlobalType(name, arity, reportErrors2) { const symbol = getGlobalTypeSymbol(name, reportErrors2); return symbol || reportErrors2 ? getTypeOfGlobalSymbol(symbol, arity) : undefined; } function getGlobalBuiltinTypes(typeNames, arity) { let types; for (const typeName of typeNames) { types = append(types, getGlobalType(typeName, arity, false)); } return types ?? emptyArray; } function getGlobalTypedPropertyDescriptorType() { return deferredGlobalTypedPropertyDescriptorType || (deferredGlobalTypedPropertyDescriptorType = getGlobalType("TypedPropertyDescriptor", 1, true) || emptyGenericType); } function getGlobalTemplateStringsArrayType() { return deferredGlobalTemplateStringsArrayType || (deferredGlobalTemplateStringsArrayType = getGlobalType("TemplateStringsArray", 0, true) || emptyObjectType); } function getGlobalImportMetaType() { return deferredGlobalImportMetaType || (deferredGlobalImportMetaType = getGlobalType("ImportMeta", 0, true) || emptyObjectType); } function getGlobalImportMetaExpressionType() { if (!deferredGlobalImportMetaExpressionType) { const symbol = createSymbol(0, "ImportMetaExpression"); const importMetaType = getGlobalImportMetaType(); const metaPropertySymbol = createSymbol(4, "meta", 8); metaPropertySymbol.parent = symbol; metaPropertySymbol.links.type = importMetaType; const members = createSymbolTable([metaPropertySymbol]); symbol.members = members; deferredGlobalImportMetaExpressionType = createAnonymousType(symbol, members, emptyArray, emptyArray, emptyArray); } return deferredGlobalImportMetaExpressionType; } function getGlobalImportCallOptionsType(reportErrors2) { return deferredGlobalImportCallOptionsType || (deferredGlobalImportCallOptionsType = getGlobalType("ImportCallOptions", 0, reportErrors2)) || emptyObjectType; } function getGlobalImportAttributesType(reportErrors2) { return deferredGlobalImportAttributesType || (deferredGlobalImportAttributesType = getGlobalType("ImportAttributes", 0, reportErrors2)) || emptyObjectType; } function getGlobalESSymbolConstructorSymbol(reportErrors2) { return deferredGlobalESSymbolConstructorSymbol || (deferredGlobalESSymbolConstructorSymbol = getGlobalValueSymbol("Symbol", reportErrors2)); } function getGlobalESSymbolConstructorTypeSymbol(reportErrors2) { return deferredGlobalESSymbolConstructorTypeSymbol || (deferredGlobalESSymbolConstructorTypeSymbol = getGlobalTypeSymbol("SymbolConstructor", reportErrors2)); } function getGlobalESSymbolType() { return deferredGlobalESSymbolType || (deferredGlobalESSymbolType = getGlobalType("Symbol", 0, false)) || emptyObjectType; } function getGlobalPromiseType(reportErrors2) { return deferredGlobalPromiseType || (deferredGlobalPromiseType = getGlobalType("Promise", 1, reportErrors2)) || emptyGenericType; } function getGlobalPromiseLikeType(reportErrors2) { return deferredGlobalPromiseLikeType || (deferredGlobalPromiseLikeType = getGlobalType("PromiseLike", 1, reportErrors2)) || emptyGenericType; } function getGlobalPromiseConstructorSymbol(reportErrors2) { return deferredGlobalPromiseConstructorSymbol || (deferredGlobalPromiseConstructorSymbol = getGlobalValueSymbol("Promise", reportErrors2)); } function getGlobalPromiseConstructorLikeType(reportErrors2) { return deferredGlobalPromiseConstructorLikeType || (deferredGlobalPromiseConstructorLikeType = getGlobalType("PromiseConstructorLike", 0, reportErrors2)) || emptyObjectType; } function getGlobalAsyncIterableType(reportErrors2) { return deferredGlobalAsyncIterableType || (deferredGlobalAsyncIterableType = getGlobalType("AsyncIterable", 3, reportErrors2)) || emptyGenericType; } function getGlobalAsyncIteratorType(reportErrors2) { return deferredGlobalAsyncIteratorType || (deferredGlobalAsyncIteratorType = getGlobalType("AsyncIterator", 3, reportErrors2)) || emptyGenericType; } function getGlobalAsyncIterableIteratorType(reportErrors2) { return deferredGlobalAsyncIterableIteratorType || (deferredGlobalAsyncIterableIteratorType = getGlobalType("AsyncIterableIterator", 3, reportErrors2)) || emptyGenericType; } function getGlobalBuiltinAsyncIteratorTypes() { return deferredGlobalBuiltinAsyncIteratorTypes ?? (deferredGlobalBuiltinAsyncIteratorTypes = getGlobalBuiltinTypes(["ReadableStreamAsyncIterator"], 1)); } function getGlobalAsyncIteratorObjectType(reportErrors2) { return deferredGlobalAsyncIteratorObjectType || (deferredGlobalAsyncIteratorObjectType = getGlobalType("AsyncIteratorObject", 3, reportErrors2)) || emptyGenericType; } function getGlobalAsyncGeneratorType(reportErrors2) { return deferredGlobalAsyncGeneratorType || (deferredGlobalAsyncGeneratorType = getGlobalType("AsyncGenerator", 3, reportErrors2)) || emptyGenericType; } function getGlobalIterableType(reportErrors2) { return deferredGlobalIterableType || (deferredGlobalIterableType = getGlobalType("Iterable", 3, reportErrors2)) || emptyGenericType; } function getGlobalIteratorType(reportErrors2) { return deferredGlobalIteratorType || (deferredGlobalIteratorType = getGlobalType("Iterator", 3, reportErrors2)) || emptyGenericType; } function getGlobalIterableIteratorType(reportErrors2) { return deferredGlobalIterableIteratorType || (deferredGlobalIterableIteratorType = getGlobalType("IterableIterator", 3, reportErrors2)) || emptyGenericType; } function getBuiltinIteratorReturnType() { return strictBuiltinIteratorReturn ? undefinedType : anyType; } function getGlobalBuiltinIteratorTypes() { return deferredGlobalBuiltinIteratorTypes ?? (deferredGlobalBuiltinIteratorTypes = getGlobalBuiltinTypes(["ArrayIterator", "MapIterator", "SetIterator", "StringIterator"], 1)); } function getGlobalIteratorObjectType(reportErrors2) { return deferredGlobalIteratorObjectType || (deferredGlobalIteratorObjectType = getGlobalType("IteratorObject", 3, reportErrors2)) || emptyGenericType; } function getGlobalGeneratorType(reportErrors2) { return deferredGlobalGeneratorType || (deferredGlobalGeneratorType = getGlobalType("Generator", 3, reportErrors2)) || emptyGenericType; } function getGlobalIteratorYieldResultType(reportErrors2) { return deferredGlobalIteratorYieldResultType || (deferredGlobalIteratorYieldResultType = getGlobalType("IteratorYieldResult", 1, reportErrors2)) || emptyGenericType; } function getGlobalIteratorReturnResultType(reportErrors2) { return deferredGlobalIteratorReturnResultType || (deferredGlobalIteratorReturnResultType = getGlobalType("IteratorReturnResult", 1, reportErrors2)) || emptyGenericType; } function getGlobalDisposableType(reportErrors2) { return deferredGlobalDisposableType || (deferredGlobalDisposableType = getGlobalType("Disposable", 0, reportErrors2)) || emptyObjectType; } function getGlobalAsyncDisposableType(reportErrors2) { return deferredGlobalAsyncDisposableType || (deferredGlobalAsyncDisposableType = getGlobalType("AsyncDisposable", 0, reportErrors2)) || emptyObjectType; } function getGlobalTypeOrUndefined(name, arity = 0) { const symbol = getGlobalSymbol(name, 788968, undefined); return symbol && getTypeOfGlobalSymbol(symbol, arity); } function getGlobalExtractSymbol() { deferredGlobalExtractSymbol || (deferredGlobalExtractSymbol = getGlobalTypeAliasSymbol("Extract", 2, true) || unknownSymbol); return deferredGlobalExtractSymbol === unknownSymbol ? undefined : deferredGlobalExtractSymbol; } function getGlobalOmitSymbol() { deferredGlobalOmitSymbol || (deferredGlobalOmitSymbol = getGlobalTypeAliasSymbol("Omit", 2, true) || unknownSymbol); return deferredGlobalOmitSymbol === unknownSymbol ? undefined : deferredGlobalOmitSymbol; } function getGlobalAwaitedSymbol(reportErrors2) { deferredGlobalAwaitedSymbol || (deferredGlobalAwaitedSymbol = getGlobalTypeAliasSymbol("Awaited", 1, reportErrors2) || (reportErrors2 ? unknownSymbol : undefined)); return deferredGlobalAwaitedSymbol === unknownSymbol ? undefined : deferredGlobalAwaitedSymbol; } function getGlobalBigIntType() { return deferredGlobalBigIntType || (deferredGlobalBigIntType = getGlobalType("BigInt", 0, false)) || emptyObjectType; } function getGlobalClassDecoratorContextType(reportErrors2) { return deferredGlobalClassDecoratorContextType ?? (deferredGlobalClassDecoratorContextType = getGlobalType("ClassDecoratorContext", 1, reportErrors2)) ?? emptyGenericType; } function getGlobalClassMethodDecoratorContextType(reportErrors2) { return deferredGlobalClassMethodDecoratorContextType ?? (deferredGlobalClassMethodDecoratorContextType = getGlobalType("ClassMethodDecoratorContext", 2, reportErrors2)) ?? emptyGenericType; } function getGlobalClassGetterDecoratorContextType(reportErrors2) { return deferredGlobalClassGetterDecoratorContextType ?? (deferredGlobalClassGetterDecoratorContextType = getGlobalType("ClassGetterDecoratorContext", 2, reportErrors2)) ?? emptyGenericType; } function getGlobalClassSetterDecoratorContextType(reportErrors2) { return deferredGlobalClassSetterDecoratorContextType ?? (deferredGlobalClassSetterDecoratorContextType = getGlobalType("ClassSetterDecoratorContext", 2, reportErrors2)) ?? emptyGenericType; } function getGlobalClassAccessorDecoratorContextType(reportErrors2) { return deferredGlobalClassAccessorDecoratorContextType ?? (deferredGlobalClassAccessorDecoratorContextType = getGlobalType("ClassAccessorDecoratorContext", 2, reportErrors2)) ?? emptyGenericType; } function getGlobalClassAccessorDecoratorTargetType(reportErrors2) { return deferredGlobalClassAccessorDecoratorTargetType ?? (deferredGlobalClassAccessorDecoratorTargetType = getGlobalType("ClassAccessorDecoratorTarget", 2, reportErrors2)) ?? emptyGenericType; } function getGlobalClassAccessorDecoratorResultType(reportErrors2) { return deferredGlobalClassAccessorDecoratorResultType ?? (deferredGlobalClassAccessorDecoratorResultType = getGlobalType("ClassAccessorDecoratorResult", 2, reportErrors2)) ?? emptyGenericType; } function getGlobalClassFieldDecoratorContextType(reportErrors2) { return deferredGlobalClassFieldDecoratorContextType ?? (deferredGlobalClassFieldDecoratorContextType = getGlobalType("ClassFieldDecoratorContext", 2, reportErrors2)) ?? emptyGenericType; } function getGlobalNaNSymbol() { return deferredGlobalNaNSymbol || (deferredGlobalNaNSymbol = getGlobalValueSymbol("NaN", false)); } function getGlobalRecordSymbol() { deferredGlobalRecordSymbol || (deferredGlobalRecordSymbol = getGlobalTypeAliasSymbol("Record", 2, true) || unknownSymbol); return deferredGlobalRecordSymbol === unknownSymbol ? undefined : deferredGlobalRecordSymbol; } function createTypeFromGenericGlobalType(genericGlobalType, typeArguments) { return genericGlobalType !== emptyGenericType ? createTypeReference(genericGlobalType, typeArguments) : emptyObjectType; } function createTypedPropertyDescriptorType(propertyType) { return createTypeFromGenericGlobalType(getGlobalTypedPropertyDescriptorType(), [propertyType]); } function createIterableType(iteratedType) { return createTypeFromGenericGlobalType(getGlobalIterableType(true), [iteratedType, voidType, undefinedType]); } function createArrayType(elementType, readonly) { return createTypeFromGenericGlobalType(readonly ? globalReadonlyArrayType : globalArrayType, [elementType]); } function getTupleElementFlags(node) { switch (node.kind) { case 191: return 2; case 192: return getRestTypeElementFlags(node); case 203: return node.questionToken ? 2 : node.dotDotDotToken ? getRestTypeElementFlags(node) : 1; default: return 1; } } function getRestTypeElementFlags(node) { return getArrayElementTypeNode(node.type) ? 4 : 8; } function getArrayOrTupleTargetType(node) { const readonly = isReadonlyTypeOperator(node.parent); const elementType = getArrayElementTypeNode(node); if (elementType) { return readonly ? globalReadonlyArrayType : globalArrayType; } const elementFlags = map(node.elements, getTupleElementFlags); return getTupleTargetType(elementFlags, readonly, map(node.elements, memberIfLabeledElementDeclaration)); } function memberIfLabeledElementDeclaration(member) { return isNamedTupleMember(member) || isParameter(member) ? member : undefined; } function isDeferredTypeReferenceNode(node, hasDefaultTypeArguments) { return !!getAliasSymbolForTypeNode(node) || isResolvedByTypeAlias(node) && (node.kind === 189 ? mayResolveTypeAlias(node.elementType) : node.kind === 190 ? some(node.elements, mayResolveTypeAlias) : hasDefaultTypeArguments || some(node.typeArguments, mayResolveTypeAlias)); } function isResolvedByTypeAlias(node) { const parent2 = node.parent; switch (parent2.kind) { case 197: case 203: case 184: case 193: case 194: case 200: case 195: case 199: case 189: case 190: return isResolvedByTypeAlias(parent2); case 266: return true; } return false; } function mayResolveTypeAlias(node) { switch (node.kind) { case 184: return isJSDocTypeReference(node) || !!(resolveTypeReferenceName(node, 788968).flags & 524288); case 187: return true; case 199: return node.operator !== 158 && mayResolveTypeAlias(node.type); case 197: case 191: case 203: case 317: case 315: case 316: case 310: return mayResolveTypeAlias(node.type); case 192: return node.type.kind !== 189 || mayResolveTypeAlias(node.type.elementType); case 193: case 194: return some(node.types, mayResolveTypeAlias); case 200: return mayResolveTypeAlias(node.objectType) || mayResolveTypeAlias(node.indexType); case 195: return mayResolveTypeAlias(node.checkType) || mayResolveTypeAlias(node.extendsType) || mayResolveTypeAlias(node.trueType) || mayResolveTypeAlias(node.falseType); } return false; } function getTypeFromArrayOrTupleTypeNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { const target = getArrayOrTupleTargetType(node); if (target === emptyGenericType) { links.resolvedType = emptyObjectType; } else if (!(node.kind === 190 && some(node.elements, (e) => !!(getTupleElementFlags(e) & 8))) && isDeferredTypeReferenceNode(node)) { links.resolvedType = node.kind === 190 && node.elements.length === 0 ? target : createDeferredTypeReference(target, node, undefined); } else { const elementTypes = node.kind === 189 ? [getTypeFromTypeNode(node.elementType)] : map(node.elements, getTypeFromTypeNode); links.resolvedType = createNormalizedTypeReference(target, elementTypes); } } return links.resolvedType; } function isReadonlyTypeOperator(node) { return isTypeOperatorNode(node) && node.operator === 148; } function createTupleType(elementTypes, elementFlags, readonly = false, namedMemberDeclarations = []) { const tupleTarget = getTupleTargetType(elementFlags || map(elementTypes, (_) => 1), readonly, namedMemberDeclarations); return tupleTarget === emptyGenericType ? emptyObjectType : elementTypes.length ? createNormalizedTypeReference(tupleTarget, elementTypes) : tupleTarget; } function getTupleTargetType(elementFlags, readonly, namedMemberDeclarations) { if (elementFlags.length === 1 && elementFlags[0] & 4) { return readonly ? globalReadonlyArrayType : globalArrayType; } const key = map(elementFlags, (f) => f & 1 ? "#" : f & 2 ? "?" : f & 4 ? "." : "*").join() + (readonly ? "R" : "") + (some(namedMemberDeclarations, (node) => !!node) ? "," + map(namedMemberDeclarations, (node) => node ? getNodeId(node) : "_").join(",") : ""); let type = tupleTypes.get(key); if (!type) { tupleTypes.set(key, type = createTupleTargetType(elementFlags, readonly, namedMemberDeclarations)); } return type; } function createTupleTargetType(elementFlags, readonly, namedMemberDeclarations) { const arity = elementFlags.length; const minLength = countWhere(elementFlags, (f) => !!(f & (1 | 8))); let typeParameters; const properties = []; let combinedFlags = 0; if (arity) { typeParameters = new Array(arity); for (let i = 0;i < arity; i++) { const typeParameter = typeParameters[i] = createTypeParameter(); const flags = elementFlags[i]; combinedFlags |= flags; if (!(combinedFlags & 12)) { const property = createSymbol(4 | (flags & 2 ? 16777216 : 0), "" + i, readonly ? 8 : 0); property.links.tupleLabelDeclaration = namedMemberDeclarations == null ? undefined : namedMemberDeclarations[i]; property.links.type = typeParameter; properties.push(property); } } } const fixedLength = properties.length; const lengthSymbol = createSymbol(4, "length", readonly ? 8 : 0); if (combinedFlags & 12) { lengthSymbol.links.type = numberType; } else { const literalTypes = []; for (let i = minLength;i <= arity; i++) literalTypes.push(getNumberLiteralType(i)); lengthSymbol.links.type = getUnionType(literalTypes); } properties.push(lengthSymbol); const type = createObjectType(8 | 4); type.typeParameters = typeParameters; type.outerTypeParameters = undefined; type.localTypeParameters = typeParameters; type.instantiations = /* @__PURE__ */ new Map; type.instantiations.set(getTypeListId(type.typeParameters), type); type.target = type; type.resolvedTypeArguments = type.typeParameters; type.thisType = createTypeParameter(); type.thisType.isThisType = true; type.thisType.constraint = type; type.declaredProperties = properties; type.declaredCallSignatures = emptyArray; type.declaredConstructSignatures = emptyArray; type.declaredIndexInfos = emptyArray; type.elementFlags = elementFlags; type.minLength = minLength; type.fixedLength = fixedLength; type.hasRestElement = !!(combinedFlags & 12); type.combinedFlags = combinedFlags; type.readonly = readonly; type.labeledElementDeclarations = namedMemberDeclarations; return type; } function createNormalizedTypeReference(target, typeArguments) { return target.objectFlags & 8 ? createNormalizedTupleType(target, typeArguments) : createTypeReference(target, typeArguments); } function createNormalizedTupleType(target, elementTypes) { var _a, _b, _c, _d; if (!(target.combinedFlags & 14)) { return createTypeReference(target, elementTypes); } if (target.combinedFlags & 8) { const unionIndex = findIndex(elementTypes, (t, i) => !!(target.elementFlags[i] & 8 && t.flags & (262144 | 134217728))); if (unionIndex >= 0) { return checkCrossProductUnion(map(elementTypes, (t, i) => target.elementFlags[i] & 8 ? t : unknownType)) ? mapType(elementTypes[unionIndex], (t) => createNormalizedTupleType(target, replaceElement(elementTypes, unionIndex, t))) : errorType; } } const expandedTypes = []; const expandedFlags = []; const expandedDeclarations = []; let lastRequiredIndex = -1; let firstRestIndex = -1; let lastOptionalOrRestIndex = -1; for (let i = 0;i < elementTypes.length; i++) { const type = elementTypes[i]; const flags = target.elementFlags[i]; if (flags & 8) { if (type.flags & 1) { addElement(type, 4, (_a = target.labeledElementDeclarations) == null ? undefined : _a[i]); } else if (type.flags & 117964800 || isGenericMappedType(type)) { addElement(type, 8, (_b = target.labeledElementDeclarations) == null ? undefined : _b[i]); } else if (isTupleType(type)) { const elements = getElementTypes(type); if (elements.length + expandedTypes.length >= 1e4) { error2(currentNode, isPartOfTypeNode(currentNode) ? Diagnostics.Type_produces_a_tuple_type_that_is_too_large_to_represent : Diagnostics.Expression_produces_a_tuple_type_that_is_too_large_to_represent); return errorType; } forEach(elements, (t, n) => { var _a2; return addElement(t, type.target.elementFlags[n], (_a2 = type.target.labeledElementDeclarations) == null ? undefined : _a2[n]); }); } else { addElement(isArrayLikeType(type) && getIndexTypeOfType(type, numberType) || errorType, 4, (_c = target.labeledElementDeclarations) == null ? undefined : _c[i]); } } else { addElement(type, flags, (_d = target.labeledElementDeclarations) == null ? undefined : _d[i]); } } for (let i = 0;i < lastRequiredIndex; i++) { if (expandedFlags[i] & 2) expandedFlags[i] = 1; } if (firstRestIndex >= 0 && firstRestIndex < lastOptionalOrRestIndex) { expandedTypes[firstRestIndex] = getUnionType(sameMap(expandedTypes.slice(firstRestIndex, lastOptionalOrRestIndex + 1), (t, i) => expandedFlags[firstRestIndex + i] & 8 ? getIndexedAccessType(t, numberType) : t)); expandedTypes.splice(firstRestIndex + 1, lastOptionalOrRestIndex - firstRestIndex); expandedFlags.splice(firstRestIndex + 1, lastOptionalOrRestIndex - firstRestIndex); expandedDeclarations.splice(firstRestIndex + 1, lastOptionalOrRestIndex - firstRestIndex); } const tupleTarget = getTupleTargetType(expandedFlags, target.readonly, expandedDeclarations); return tupleTarget === emptyGenericType ? emptyObjectType : expandedFlags.length ? createTypeReference(tupleTarget, expandedTypes) : tupleTarget; function addElement(type, flags, declaration) { if (flags & 1) { lastRequiredIndex = expandedFlags.length; } if (flags & 4 && firstRestIndex < 0) { firstRestIndex = expandedFlags.length; } if (flags & (2 | 4)) { lastOptionalOrRestIndex = expandedFlags.length; } expandedTypes.push(flags & 2 ? addOptionality(type, true) : type); expandedFlags.push(flags); expandedDeclarations.push(declaration); } } function sliceTupleType(type, index, endSkipCount = 0) { const target = type.target; const endIndex = getTypeReferenceArity(type) - endSkipCount; return index > target.fixedLength ? getRestArrayTypeOfTupleType(type) || createTupleType(emptyArray) : createTupleType(getTypeArguments(type).slice(index, endIndex), target.elementFlags.slice(index, endIndex), false, target.labeledElementDeclarations && target.labeledElementDeclarations.slice(index, endIndex)); } function getKnownKeysOfTupleType(type) { return getUnionType(append(arrayOf(type.target.fixedLength, (i) => getStringLiteralType("" + i)), getIndexType(type.target.readonly ? globalReadonlyArrayType : globalArrayType))); } function getStartElementCount(type, flags) { const index = findIndex(type.elementFlags, (f) => !(f & flags)); return index >= 0 ? index : type.elementFlags.length; } function getEndElementCount(type, flags) { return type.elementFlags.length - findLastIndex(type.elementFlags, (f) => !(f & flags)) - 1; } function getTotalFixedElementCount(type) { return type.fixedLength + getEndElementCount(type, 3); } function getElementTypes(type) { const typeArguments = getTypeArguments(type); const arity = getTypeReferenceArity(type); return typeArguments.length === arity ? typeArguments : typeArguments.slice(0, arity); } function getTypeFromOptionalTypeNode(node) { return addOptionality(getTypeFromTypeNode(node.type), true); } function getTypeId(type) { return type.id; } function containsType(types, type) { return stableTypeOrdering ? binarySearch(types, type, identity, compareTypes) >= 0 : binarySearch(types, type, getTypeId, compareValues) >= 0; } function insertType(types, type) { const index = stableTypeOrdering ? binarySearch(types, type, identity, compareTypes) : binarySearch(types, type, getTypeId, compareValues); if (index < 0) { types.splice(~index, 0, type); return true; } return false; } function addTypeToUnion(typeSet, includes, type) { const flags = type.flags; if (!(flags & 262144)) { includes |= flags & 416808959; if (flags & 132644864) includes |= 16777216; if (flags & 268435456 && getObjectFlags(type) & 67108864) includes |= 536870912; if (type === wildcardType) includes |= 33554432; if (isErrorType(type)) includes |= 1073741824; if (!strictNullChecks && flags & 12) { if (!(getObjectFlags(type) & 65536)) includes |= 2097152; } else { const len = typeSet.length; const index = stableTypeOrdering ? binarySearch(typeSet, type, identity, compareTypes) : len && type.id > typeSet[len - 1].id ? ~len : binarySearch(typeSet, type, getTypeId, compareValues); if (index < 0) { typeSet.splice(~index, 0, type); } } } return includes; } function addTypesToUnion(typeSet, includes, types) { let lastType; for (const type of types) { if (type !== lastType) { includes = type.flags & 134217728 ? addTypesToUnion(typeSet, includes | (isNamedUnionType(type) ? 134217728 : 0), type.types) : addTypeToUnion(typeSet, includes, type); lastType = type; } } return includes; } function removeSubtypes(types, hasObjectTypes) { var _a; if (types.length < 2) { return types; } const id = getTypeListId(types); const match = subtypeReductionCache.get(id); if (match) { return match; } const hasEmptyObject = hasObjectTypes && some(types, (t) => !!(t.flags & 1048576) && !isGenericMappedType(t) && isEmptyResolvedType(resolveStructuredTypeMembers(t))); const len = types.length; let i = len; let count = 0; while (i > 0) { i--; const source = types[i]; if (hasEmptyObject || source.flags & 536346624) { if (source.flags & 524288 && getBaseConstraintOrType(source).flags & 134217728) { if (isTypeRelatedTo(source, getUnionType(map(types, (t) => t === source ? neverType : t)), strictSubtypeRelation)) { orderedRemoveItemAt(types, i); } continue; } const keyProperty = source.flags & (1048576 | 268435456 | 117964800) ? find(getPropertiesOfType(source), (p) => isUnitType(getTypeOfSymbol(p))) : undefined; const keyPropertyType = keyProperty && getRegularTypeOfLiteralType(getTypeOfSymbol(keyProperty)); for (const target of types) { if (source !== target) { if (count === 1e5) { const estimatedCount = count / (len - i) * len; if (estimatedCount > 1e6) { (_a = tracing) == null || _a.instant(tracing.Phase.CheckTypes, "removeSubtypes_DepthLimit", { typeIds: types.map((t) => t.id) }); error2(currentNode, Diagnostics.Expression_produces_a_union_type_that_is_too_complex_to_represent); return; } } count++; if (keyProperty && target.flags & (1048576 | 268435456 | 117964800)) { const t = getTypeOfPropertyOfType(target, keyProperty.escapedName); if (t && isUnitType(t) && getRegularTypeOfLiteralType(t) !== keyPropertyType) { continue; } } if (isTypeRelatedTo(source, target, strictSubtypeRelation) && (!(getObjectFlags(getTargetType(source)) & 1) || !(getObjectFlags(getTargetType(target)) & 1) || isTypeDerivedFrom(source, target))) { orderedRemoveItemAt(types, i); break; } } } } } subtypeReductionCache.set(id, types); return types; } function removeRedundantLiteralTypes(types, includes, reduceVoidUndefined) { let i = types.length; while (i > 0) { i--; const t = types[i]; const flags = t.flags; const remove = flags & (1024 | 4194304 | 8388608) && includes & 32 || flags & 2048 && includes & 64 || flags & 4096 && includes & 128 || flags & 16384 && includes & 512 || reduceVoidUndefined && flags & 4 && includes & 16 || isFreshLiteralType(t) && containsType(types, t.regularType); if (remove) { orderedRemoveItemAt(types, i); } } } function removeStringLiteralsMatchedByTemplateLiterals(types) { const templates = filter(types, isPatternLiteralType); if (templates.length) { let i = types.length; while (i > 0) { i--; const t = types[i]; if (t.flags & 1024 && some(templates, (template) => isTypeMatchedByTemplateLiteralOrStringMapping(t, template))) { orderedRemoveItemAt(types, i); } } } } function isTypeMatchedByTemplateLiteralOrStringMapping(type, template) { return template.flags & 4194304 ? isTypeMatchedByTemplateLiteralType(type, template) : isMemberOfStringMapping(type, template); } function removeConstrainedTypeVariables(types) { const typeVariables = []; for (const type of types) { if (type.flags & 268435456 && getObjectFlags(type) & 67108864) { const index = type.types[0].flags & 34078720 ? 0 : 1; pushIfUnique(typeVariables, type.types[index]); } } for (const typeVariable of typeVariables) { const primitives = []; for (const type of types) { if (type.flags & 268435456 && getObjectFlags(type) & 67108864) { const index = type.types[0].flags & 34078720 ? 0 : 1; if (type.types[index] === typeVariable) { insertType(primitives, type.types[1 - index]); } } } const constraint = getBaseConstraintOfType(typeVariable); if (everyType(constraint, (t) => containsType(primitives, t))) { let i = types.length; while (i > 0) { i--; const type = types[i]; if (type.flags & 268435456 && getObjectFlags(type) & 67108864) { const index = type.types[0].flags & 34078720 ? 0 : 1; if (type.types[index] === typeVariable && containsType(primitives, type.types[1 - index])) { orderedRemoveItemAt(types, i); } } } insertType(types, typeVariable); } } } function isNamedUnionType(type) { return !!(type.flags & 134217728 && (type.aliasSymbol || type.origin)); } function addNamedUnions(namedUnions, types) { for (const t of types) { if (t.flags & 134217728) { const origin = t.origin; if (t.aliasSymbol || origin && !(origin.flags & 134217728)) { pushIfUnique(namedUnions, t); } else if (origin && origin.flags & 134217728) { addNamedUnions(namedUnions, origin.types); } } } } function createOriginUnionOrIntersectionType(flags, types) { const result = createOriginType(flags); result.types = types; return result; } function getUnionType(types, unionReduction = 1, aliasSymbol, aliasTypeArguments, origin) { if (types.length === 0) { return neverType; } if (types.length === 1) { return types[0]; } if (types.length === 2 && !origin && (types[0].flags & 134217728 || types[1].flags & 134217728)) { const infix = unionReduction === 0 ? "N" : unionReduction === 2 ? "S" : "L"; const index = types[0].id < types[1].id ? 0 : 1; const id = types[index].id + infix + types[1 - index].id + getAliasId(aliasSymbol, aliasTypeArguments); let type = unionOfUnionTypes.get(id); if (!type) { type = getUnionTypeWorker(types, unionReduction, aliasSymbol, aliasTypeArguments, undefined); unionOfUnionTypes.set(id, type); } return type; } return getUnionTypeWorker(types, unionReduction, aliasSymbol, aliasTypeArguments, origin); } function getUnionTypeWorker(types, unionReduction, aliasSymbol, aliasTypeArguments, origin) { let typeSet = []; const includes = addTypesToUnion(typeSet, 0, types); if (unionReduction !== 0) { if (includes & 3) { return includes & 1 ? includes & 33554432 ? wildcardType : includes & 1073741824 ? errorType : anyType : unknownType; } if (includes & 4) { if (typeSet.length >= 2 && typeSet[0] === undefinedType && typeSet[1] === missingType) { orderedRemoveItemAt(typeSet, 1); } } if (includes & (65536 | 15360 | 16384 | 4194304 | 8388608) || includes & 16 && includes & 4) { removeRedundantLiteralTypes(typeSet, includes, !!(unionReduction & 2)); } if (includes & 1024 && includes & (4194304 | 8388608)) { removeStringLiteralsMatchedByTemplateLiterals(typeSet); } if (includes & 536870912) { removeConstrainedTypeVariables(typeSet); } if (unionReduction === 2) { typeSet = removeSubtypes(typeSet, !!(includes & 1048576)); if (!typeSet) { return errorType; } } if (typeSet.length === 0) { return includes & 8 ? includes & 2097152 ? nullType : nullWideningType : includes & 4 ? includes & 2097152 ? undefinedType : undefinedWideningType : neverType; } } if (!origin && includes & 134217728) { const namedUnions = []; addNamedUnions(namedUnions, types); const reducedTypes = []; for (const t of typeSet) { if (!some(namedUnions, (union) => containsType(union.types, t))) { reducedTypes.push(t); } } if (!aliasSymbol && namedUnions.length === 1 && reducedTypes.length === 0) { return namedUnions[0]; } const namedTypesCount = reduceLeft(namedUnions, (sum, union) => sum + union.types.length, 0); if (namedTypesCount + reducedTypes.length === typeSet.length) { for (const t of namedUnions) { insertType(reducedTypes, t); } origin = createOriginUnionOrIntersectionType(134217728, reducedTypes); } } const objectFlags = (includes & 286523411 ? 0 : 32768) | (includes & 268435456 ? 16777216 : 0); return getUnionTypeFromSortedList(typeSet, objectFlags, aliasSymbol, aliasTypeArguments, origin); } function getUnionOrIntersectionTypePredicate(signatures, kind) { let last2; const types = []; for (const sig of signatures) { const pred = getTypePredicateOfSignature(sig); if (pred) { if (pred.kind !== 0 && pred.kind !== 1 || last2 && !typePredicateKindsMatch(last2, pred)) { return; } last2 = pred; types.push(pred.type); } else { const returnType = kind !== 268435456 ? getReturnTypeOfSignature(sig) : undefined; if (returnType !== falseType && returnType !== regularFalseType) { return; } } } if (!last2) { return; } const compositeType = getUnionOrIntersectionType(types, kind); return createTypePredicate(last2.kind, last2.parameterName, last2.parameterIndex, compositeType); } function typePredicateKindsMatch(a, b) { return a.kind === b.kind && a.parameterIndex === b.parameterIndex; } function getUnionTypeFromSortedList(types, precomputedObjectFlags, aliasSymbol, aliasTypeArguments, origin) { if (types.length === 0) { return neverType; } if (types.length === 1) { return types[0]; } const typeKey = !origin ? getTypeListId(types) : origin.flags & 134217728 ? `|${getTypeListId(origin.types)}` : origin.flags & 268435456 ? `&${getTypeListId(origin.types)}` : `#${origin.type.id}|${getTypeListId(types)}`; const id = typeKey + getAliasId(aliasSymbol, aliasTypeArguments); let type = unionTypes.get(id); if (!type) { type = createType(134217728); type.objectFlags = precomputedObjectFlags | getPropagatingFlagsOfTypes(types, 12); type.types = types; type.origin = origin; type.aliasSymbol = aliasSymbol; type.aliasTypeArguments = aliasTypeArguments; if (types.length === 2 && types[0].flags & 8192 && types[1].flags & 8192) { type.flags |= 256; type.intrinsicName = "boolean"; } unionTypes.set(id, type); } return type; } function getTypeFromUnionTypeNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { const aliasSymbol = getAliasSymbolForTypeNode(node); links.resolvedType = getUnionType(map(node.types, getTypeFromTypeNode), 1, aliasSymbol, getTypeArgumentsForAliasSymbol(aliasSymbol)); } return links.resolvedType; } function addTypeToIntersection(typeSet, includes, type) { const flags = type.flags; if (flags & 268435456) { return addTypesToIntersection(typeSet, includes, type.types); } if (isEmptyAnonymousObjectType(type)) { if (!(includes & 67108864)) { includes |= 67108864; typeSet.set(type.id.toString(), type); } } else { if (flags & 3) { if (type === wildcardType) includes |= 33554432; if (isErrorType(type)) includes |= 1073741824; } else if (strictNullChecks || !(flags & 12)) { if (type === missingType) { includes |= 524288; type = undefinedType; } if (!typeSet.has(type.id.toString())) { if (type.flags & 97292 && includes & 97292) { includes |= 131072; } typeSet.set(type.id.toString(), type); } } includes |= flags & 416808959; } return includes; } function addTypesToIntersection(typeSet, includes, types) { for (const type of types) { includes = addTypeToIntersection(typeSet, includes, getRegularTypeOfLiteralType(type)); } return includes; } function removeRedundantSupertypes(types, includes) { let i = types.length; while (i > 0) { i--; const t = types[i]; const remove = t.flags & 32 && includes & (1024 | 4194304 | 8388608) || t.flags & 64 && includes & 2048 || t.flags & 128 && includes & 4096 || t.flags & 512 && includes & 16384 || t.flags & 16 && includes & 4 || isEmptyAnonymousObjectType(t) && includes & 13893600; if (remove) { orderedRemoveItemAt(types, i); } } } function eachUnionContains(unionTypes2, type) { for (const u of unionTypes2) { if (!containsType(u.types, type)) { if (type === missingType) { return containsType(u.types, undefinedType); } if (type === undefinedType) { return containsType(u.types, missingType); } const primitive = type.flags & 1024 ? stringType : type.flags & (65536 | 2048) ? numberType : type.flags & 4096 ? bigintType : type.flags & 16384 ? esSymbolType : undefined; if (!primitive || !containsType(u.types, primitive)) { return false; } } } return true; } function extractRedundantTemplateLiterals(types) { let i = types.length; const literals = filter(types, (t) => !!(t.flags & 1024)); while (i > 0) { i--; const t = types[i]; if (!(t.flags & (4194304 | 8388608))) continue; for (const t2 of literals) { if (isTypeSubtypeOf(t2, t)) { orderedRemoveItemAt(types, i); break; } else if (isPatternLiteralType(t)) { return true; } } } return false; } function removeFromEach(types, flag) { for (let i = 0;i < types.length; i++) { types[i] = filterType(types[i], (t) => !(t.flags & flag)); } } function intersectUnionsOfPrimitiveTypes(types) { let unionTypes2; const index = findIndex(types, (t) => !!(getObjectFlags(t) & 32768)); if (index < 0) { return false; } let i = index + 1; while (i < types.length) { const t = types[i]; if (getObjectFlags(t) & 32768) { (unionTypes2 || (unionTypes2 = [types[index]])).push(t); orderedRemoveItemAt(types, i); } else { i++; } } if (!unionTypes2) { return false; } const checked = []; const result = []; for (const u of unionTypes2) { for (const t of u.types) { if (insertType(checked, t)) { if (eachUnionContains(unionTypes2, t)) { if (t === undefinedType && result.length && result[0] === missingType) { continue; } if (t === missingType && result.length && result[0] === undefinedType) { result[0] = missingType; continue; } insertType(result, t); } } } } types[index] = getUnionTypeFromSortedList(result, 32768); return true; } function createIntersectionType(types, objectFlags, aliasSymbol, aliasTypeArguments) { const result = createType(268435456); result.objectFlags = objectFlags | getPropagatingFlagsOfTypes(types, 12); result.types = types; result.aliasSymbol = aliasSymbol; result.aliasTypeArguments = aliasTypeArguments; return result; } function getIntersectionType(types, flags = 0, aliasSymbol, aliasTypeArguments) { const typeMembershipMap = /* @__PURE__ */ new Map; const includes = addTypesToIntersection(typeMembershipMap, 0, types); const typeSet = arrayFrom(typeMembershipMap.values()); let objectFlags = 0; if (includes & 262144) { return contains(typeSet, silentNeverType) ? silentNeverType : neverType; } if (strictNullChecks && includes & 12 && includes & (1048576 | 131072 | 67108864) || includes & 131072 && includes & (12812284 & ~131072) || includes & 12583968 && includes & (12812284 & ~12583968) || includes & 67648 && includes & (12812284 & ~67648) || includes & 4224 && includes & (12812284 & ~4224) || includes & 16896 && includes & (12812284 & ~16896) || includes & 20 && includes & (12812284 & ~20)) { return neverType; } if (includes & (4194304 | 8388608) && includes & 1024 && extractRedundantTemplateLiterals(typeSet)) { return neverType; } if (includes & 1) { return includes & 33554432 ? wildcardType : includes & 1073741824 ? errorType : anyType; } if (!strictNullChecks && includes & 12) { return includes & 67108864 ? neverType : includes & 4 ? undefinedType : nullType; } if (includes & 32 && includes & (1024 | 4194304 | 8388608) || includes & 64 && includes & 2048 || includes & 128 && includes & 4096 || includes & 512 && includes & 16384 || includes & 16 && includes & 4 || includes & 67108864 && includes & 13893600) { if (!(flags & 1)) removeRedundantSupertypes(typeSet, includes); } if (includes & 524288) { typeSet[typeSet.indexOf(undefinedType)] = missingType; } if (typeSet.length === 0) { return unknownType; } if (typeSet.length === 1) { return typeSet[0]; } if (typeSet.length === 2 && !(flags & 2)) { const typeVarIndex = typeSet[0].flags & 34078720 ? 0 : 1; const typeVariable = typeSet[typeVarIndex]; const primitiveType = typeSet[1 - typeVarIndex]; if (typeVariable.flags & 34078720 && (primitiveType.flags & (12713980 | 131072) && !isGenericStringLikeType(primitiveType) || includes & 67108864)) { const constraint = getBaseConstraintOfType(typeVariable); if (constraint && everyType(constraint, (t) => !!(t.flags & (12713980 | 131072)) || isEmptyAnonymousObjectType(t))) { if (isTypeStrictSubtypeOf(constraint, primitiveType)) { return typeVariable; } if (!(constraint.flags & 134217728 && someType(constraint, (c) => isTypeStrictSubtypeOf(c, primitiveType)))) { if (!isTypeStrictSubtypeOf(primitiveType, constraint)) { return neverType; } } objectFlags = 67108864; } } } const id = getTypeListId(typeSet) + (flags & 2 ? "*" : getAliasId(aliasSymbol, aliasTypeArguments)); let result = intersectionTypes.get(id); if (!result) { if (includes & 134217728) { if (intersectUnionsOfPrimitiveTypes(typeSet)) { result = getIntersectionType(typeSet, flags, aliasSymbol, aliasTypeArguments); } else if (every(typeSet, (t) => !!(t.flags & 134217728 && t.types[0].flags & 4))) { const containedUndefinedType = some(typeSet, containsMissingType) ? missingType : undefinedType; removeFromEach(typeSet, 4); result = getUnionType([getIntersectionType(typeSet, flags), containedUndefinedType], 1, aliasSymbol, aliasTypeArguments); } else if (every(typeSet, (t) => !!(t.flags & 134217728 && (t.types[0].flags & 8 || t.types[1].flags & 8)))) { removeFromEach(typeSet, 8); result = getUnionType([getIntersectionType(typeSet, flags), nullType], 1, aliasSymbol, aliasTypeArguments); } else if (typeSet.length >= 3 && types.length > 2) { const middle = Math.floor(typeSet.length / 2); result = getIntersectionType([getIntersectionType(typeSet.slice(0, middle), flags), getIntersectionType(typeSet.slice(middle), flags)], flags, aliasSymbol, aliasTypeArguments); } else { if (!checkCrossProductUnion(typeSet)) { return errorType; } const constituents = getCrossProductIntersections(typeSet, flags); const origin = some(constituents, (t) => !!(t.flags & 268435456)) && getConstituentCountOfTypes(constituents) > getConstituentCountOfTypes(typeSet) ? createOriginUnionOrIntersectionType(268435456, typeSet) : undefined; result = getUnionType(constituents, 1, aliasSymbol, aliasTypeArguments, origin); } } else { result = createIntersectionType(typeSet, objectFlags, aliasSymbol, aliasTypeArguments); } intersectionTypes.set(id, result); } return result; } function getCrossProductUnionSize(types) { return reduceLeft(types, (n, t) => t.flags & 134217728 ? n * t.types.length : t.flags & 262144 ? 0 : n, 1); } function checkCrossProductUnion(types) { var _a; const size = getCrossProductUnionSize(types); if (size >= 1e5) { (_a = tracing) == null || _a.instant(tracing.Phase.CheckTypes, "checkCrossProductUnion_DepthLimit", { typeIds: types.map((t) => t.id), size }); error2(currentNode, Diagnostics.Expression_produces_a_union_type_that_is_too_complex_to_represent); return false; } return true; } function getCrossProductIntersections(types, flags) { const count = getCrossProductUnionSize(types); const intersections = []; for (let i = 0;i < count; i++) { const constituents = types.slice(); let n = i; for (let j = types.length - 1;j >= 0; j--) { if (types[j].flags & 134217728) { const sourceTypes = types[j].types; const length2 = sourceTypes.length; constituents[j] = sourceTypes[n % length2]; n = Math.floor(n / length2); } } const t = getIntersectionType(constituents, flags); if (!(t.flags & 262144)) intersections.push(t); } return intersections; } function getConstituentCount(type) { return !(type.flags & 402653184) || type.aliasSymbol ? 1 : type.flags & 134217728 && type.origin ? getConstituentCount(type.origin) : getConstituentCountOfTypes(type.types); } function getConstituentCountOfTypes(types) { return reduceLeft(types, (n, t) => n + getConstituentCount(t), 0); } function getTypeFromIntersectionTypeNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { const aliasSymbol = getAliasSymbolForTypeNode(node); const types = map(node.types, getTypeFromTypeNode); const emptyIndex = types.length === 2 ? types.indexOf(emptyTypeLiteralType) : -1; const t = emptyIndex >= 0 ? types[1 - emptyIndex] : unknownType; const noSupertypeReduction = !!(t.flags & (32 | 64 | 128) || t.flags & 4194304 && isPatternLiteralType(t)); links.resolvedType = getIntersectionType(types, noSupertypeReduction ? 1 : 0, aliasSymbol, getTypeArgumentsForAliasSymbol(aliasSymbol)); } return links.resolvedType; } function createIndexType(type, indexFlags) { const result = createType(2097152); result.type = type; result.indexFlags = indexFlags; return result; } function createOriginIndexType(type) { const result = createOriginType(2097152); result.type = type; return result; } function getIndexTypeForGenericType(type, indexFlags) { return indexFlags & 1 ? type.resolvedStringIndexType || (type.resolvedStringIndexType = createIndexType(type, 1)) : type.resolvedIndexType || (type.resolvedIndexType = createIndexType(type, 0)); } function getIndexTypeForMappedType(type, indexFlags) { const typeParameter = getTypeParameterFromMappedType(type); const constraintType = getConstraintTypeFromMappedType(type); const nameType = getNameTypeFromMappedType(type.target || type); if (!nameType && !(indexFlags & 2)) { return constraintType; } const keyTypes = []; if (isGenericIndexType(constraintType)) { if (isMappedTypeWithKeyofConstraintDeclaration(type)) { return getIndexTypeForGenericType(type, indexFlags); } forEachType(constraintType, addMemberForKeyType); } else if (isMappedTypeWithKeyofConstraintDeclaration(type)) { const modifiersType = getApparentType(getModifiersTypeFromMappedType(type)); forEachMappedTypePropertyKeyTypeAndIndexSignatureKeyType(modifiersType, 19456, !!(indexFlags & 1), addMemberForKeyType); } else { forEachType(getLowerBoundOfKeyType(constraintType), addMemberForKeyType); } const result = indexFlags & 2 ? filterType(getUnionType(keyTypes), (t) => !(t.flags & (1 | 32))) : getUnionType(keyTypes); if (result.flags & 134217728 && constraintType.flags & 134217728 && getTypeListId(result.types) === getTypeListId(constraintType.types)) { return constraintType; } return result; function addMemberForKeyType(keyType) { const propNameType = nameType ? instantiateType(nameType, appendTypeMapping(type.mapper, typeParameter, keyType)) : keyType; keyTypes.push(propNameType === stringType ? stringOrNumberType : propNameType); } } function getLiteralTypeFromPropertyName(name) { if (isPrivateIdentifier(name)) { return neverType; } if (isNumericLiteral(name)) { return getRegularTypeOfLiteralType(checkExpression(name)); } if (isComputedPropertyName(name)) { return getRegularTypeOfLiteralType(checkComputedPropertyName(name)); } const propertyName = getPropertyNameForPropertyNameNode(name); if (propertyName !== undefined) { return getStringLiteralType(unescapeLeadingUnderscores(propertyName)); } if (isExpression(name)) { return getRegularTypeOfLiteralType(checkExpression(name)); } return neverType; } function getLiteralTypeFromProperty(prop, include, includeNonPublic) { if (includeNonPublic || !(getDeclarationModifierFlagsFromSymbol(prop) & 6)) { let type = getSymbolLinks(getLateBoundSymbol(prop)).nameType; if (!type) { const name = getNameOfDeclaration(prop.valueDeclaration); type = prop.escapedName === "default" ? getStringLiteralType("default") : name && getLiteralTypeFromPropertyName(name) || (!isKnownSymbol(prop) ? getStringLiteralType(symbolName(prop)) : undefined); } if (type && type.flags & include) { return type; } } return neverType; } function isKeyTypeIncluded(keyType, include) { return !!(keyType.flags & include || keyType.flags & 268435456 && some(keyType.types, (t) => isKeyTypeIncluded(t, include))); } function getLiteralTypeFromProperties(type, include, includeOrigin) { const origin = includeOrigin && (getObjectFlags(type) & (3 | 4) || type.aliasSymbol) ? createOriginIndexType(type) : undefined; const propertyTypes = map(getPropertiesOfType(type), (prop) => getLiteralTypeFromProperty(prop, include)); const indexKeyTypes = map(getIndexInfosOfType(type), (info) => info !== enumNumberIndexInfo && isKeyTypeIncluded(info.keyType, include) ? info.keyType === stringType && include & 64 ? stringOrNumberType : info.keyType : neverType); return getUnionType(concatenate(propertyTypes, indexKeyTypes), 1, undefined, undefined, origin); } function shouldDeferIndexType(type, indexFlags = 0) { return !!(type.flags & 117964800 || isGenericTupleType(type) || isGenericMappedType(type) && getNameTypeFromMappedType(type) || type.flags & 134217728 && !(indexFlags & 4) && isGenericReducibleType(type) || type.flags & 268435456 && maybeTypeOfKind(type, 132644864) && some(type.types, isEmptyAnonymousObjectType)); } function getIndexType(type, indexFlags = 0) { type = getReducedType(type); return isNoInferType(type) ? getNoInferType(getIndexType(type.baseType, indexFlags)) : shouldDeferIndexType(type, indexFlags) ? getIndexTypeForGenericType(type, indexFlags) : type.flags & 134217728 ? getIntersectionType(map(type.types, (t) => getIndexType(t, indexFlags))) : type.flags & 268435456 ? getUnionType(map(type.types, (t) => getIndexType(t, indexFlags))) : getObjectFlags(type) & 32 ? getIndexTypeForMappedType(type, indexFlags) : type === wildcardType ? wildcardType : type.flags & 2 ? neverType : type.flags & (1 | 262144) ? stringNumberSymbolType : getLiteralTypeFromProperties(type, (indexFlags & 2 ? 1024 : 12583968) | (indexFlags & 1 ? 0 : 67648 | 16896), indexFlags === 0); } function getExtractStringType(type) { const extractTypeAlias = getGlobalExtractSymbol(); return extractTypeAlias ? getTypeAliasInstantiation(extractTypeAlias, [type, stringType]) : stringType; } function getIndexTypeOrString(type) { const indexType = getExtractStringType(getIndexType(type)); return indexType.flags & 262144 ? stringType : indexType; } function getTypeFromTypeOperatorNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { switch (node.operator) { case 143: links.resolvedType = getIndexType(getTypeFromTypeNode(node.type)); break; case 158: links.resolvedType = node.type.kind === 155 ? getESSymbolLikeTypeForNode(walkUpParenthesizedTypes(node.parent)) : errorType; break; case 148: links.resolvedType = getTypeFromTypeNode(node.type); break; default: Debug.assertNever(node.operator); } } return links.resolvedType; } function getTypeFromTemplateTypeNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { links.resolvedType = getTemplateLiteralType([node.head.text, ...map(node.templateSpans, (span) => span.literal.text)], map(node.templateSpans, (span) => getTypeFromTypeNode(span.type))); } return links.resolvedType; } function getTemplateLiteralType(texts, types) { const unionIndex = findIndex(types, (t) => !!(t.flags & (262144 | 134217728))); if (unionIndex >= 0) { return checkCrossProductUnion(types) ? mapType(types[unionIndex], (t) => getTemplateLiteralType(texts, replaceElement(types, unionIndex, t))) : errorType; } if (contains(types, wildcardType)) { return wildcardType; } const newTypes = []; const newTexts = []; let text = texts[0]; if (!addSpans(texts, types)) { return stringType; } if (newTypes.length === 0) { return getStringLiteralType(text); } newTexts.push(text); if (every(newTexts, (t) => t === "")) { if (every(newTypes, (t) => !!(t.flags & 32))) { return stringType; } if (newTypes.length === 1 && isPatternLiteralType(newTypes[0])) { return newTypes[0]; } } const id = `${getTypeListId(newTypes)}|${map(newTexts, (t) => t.length).join(",")}|${newTexts.join("")}`; let type = templateLiteralTypes.get(id); if (!type) { templateLiteralTypes.set(id, type = createTemplateLiteralType(newTexts, newTypes)); } return type; function addSpans(texts2, types2) { for (let i = 0;i < types2.length; i++) { const t = types2[i]; if (t.flags & (15360 | 8 | 4)) { text += getTemplateStringForType(t) || ""; text += texts2[i + 1]; } else if (t.flags & 4194304) { text += t.texts[0]; if (!addSpans(t.texts, t.types)) return false; text += texts2[i + 1]; } else if (isGenericIndexType(t) || isPatternLiteralPlaceholderType(t)) { newTypes.push(t); newTexts.push(text); text = texts2[i + 1]; } else { return false; } } return true; } } function getTemplateStringForType(type) { return type.flags & 1024 ? type.value : type.flags & 2048 ? "" + type.value : type.flags & 4096 ? pseudoBigIntToString(type.value) : type.flags & (8192 | 12) ? type.intrinsicName : undefined; } function createTemplateLiteralType(texts, types) { const type = createType(4194304); type.texts = texts; type.types = types; return type; } function getStringMappingType(symbol, type) { return type.flags & (134217728 | 262144) ? mapType(type, (t) => getStringMappingType(symbol, t)) : type.flags & 1024 ? getStringLiteralType(applyStringMapping(symbol, type.value)) : type.flags & 4194304 ? getTemplateLiteralType(...applyTemplateStringMapping(symbol, type.texts, type.types)) : type.flags & 8388608 && symbol === type.symbol ? type : type.flags & (1 | 32 | 8388608) || isGenericIndexType(type) ? getStringMappingTypeForGenericType(symbol, type) : isPatternLiteralPlaceholderType(type) ? getStringMappingTypeForGenericType(symbol, getTemplateLiteralType(["", ""], [type])) : type; } function applyStringMapping(symbol, str) { switch (intrinsicTypeKinds.get(symbol.escapedName)) { case 0: return str.toUpperCase(); case 1: return str.toLowerCase(); case 2: return str.charAt(0).toUpperCase() + str.slice(1); case 3: return str.charAt(0).toLowerCase() + str.slice(1); } return str; } function applyTemplateStringMapping(symbol, texts, types) { switch (intrinsicTypeKinds.get(symbol.escapedName)) { case 0: return [texts.map((t) => t.toUpperCase()), types.map((t) => getStringMappingType(symbol, t))]; case 1: return [texts.map((t) => t.toLowerCase()), types.map((t) => getStringMappingType(symbol, t))]; case 2: return [texts[0] === "" ? texts : [texts[0].charAt(0).toUpperCase() + texts[0].slice(1), ...texts.slice(1)], texts[0] === "" ? [getStringMappingType(symbol, types[0]), ...types.slice(1)] : types]; case 3: return [texts[0] === "" ? texts : [texts[0].charAt(0).toLowerCase() + texts[0].slice(1), ...texts.slice(1)], texts[0] === "" ? [getStringMappingType(symbol, types[0]), ...types.slice(1)] : types]; } return [texts, types]; } function getStringMappingTypeForGenericType(symbol, type) { const id = `${getSymbolId(symbol)},${getTypeId(type)}`; let result = stringMappingTypes.get(id); if (!result) { stringMappingTypes.set(id, result = createStringMappingType(symbol, type)); } return result; } function createStringMappingType(symbol, type) { const result = createTypeWithSymbol(8388608, symbol); result.type = type; return result; } function createIndexedAccessType(objectType, indexType, accessFlags, aliasSymbol, aliasTypeArguments) { const type = createType(33554432); type.objectType = objectType; type.indexType = indexType; type.accessFlags = accessFlags; type.aliasSymbol = aliasSymbol; type.aliasTypeArguments = aliasTypeArguments; return type; } function isJSLiteralType(type) { if (noImplicitAny) { return false; } if (getObjectFlags(type) & 4096) { return true; } if (type.flags & 134217728) { return every(type.types, isJSLiteralType); } if (type.flags & 268435456) { return some(type.types, isJSLiteralType); } if (type.flags & 132644864) { const constraint = getResolvedBaseConstraint(type); return constraint !== type && isJSLiteralType(constraint); } return false; } function getPropertyNameFromIndex(indexType, accessNode) { return isTypeUsableAsPropertyName(indexType) ? getPropertyNameFromType(indexType) : accessNode && isPropertyName(accessNode) ? getPropertyNameForPropertyNameNode(accessNode) : undefined; } function isUncalledFunctionReference(node, symbol) { if (symbol.flags & (16 | 8192)) { const parent2 = findAncestor(node.parent, (n) => !isAccessExpression(n)) || node.parent; if (isCallLikeExpression(parent2)) { return isCallOrNewExpression(parent2) && isIdentifier(node) && hasMatchingArgument(parent2, node); } return every(symbol.declarations, (d) => !isFunctionLike(d) || isDeprecatedDeclaration2(d)); } return true; } function getPropertyTypeForIndexType(originalObjectType, objectType, indexType, fullIndexType, accessNode, accessFlags) { const accessExpression = accessNode && accessNode.kind === 213 ? accessNode : undefined; const propName = accessNode && isPrivateIdentifier(accessNode) ? undefined : getPropertyNameFromIndex(indexType, accessNode); if (propName !== undefined) { if (accessFlags & 256) { return getTypeOfPropertyOfContextualType(objectType, propName) || anyType; } const prop = getPropertyOfType(objectType, propName); if (prop) { if (accessFlags & 64 && accessNode && prop.declarations && isDeprecatedSymbol(prop) && isUncalledFunctionReference(accessNode, prop)) { const deprecatedNode = (accessExpression == null ? undefined : accessExpression.argumentExpression) ?? (isIndexedAccessTypeNode(accessNode) ? accessNode.indexType : accessNode); addDeprecatedSuggestion(deprecatedNode, prop.declarations, propName); } if (accessExpression) { markPropertyAsReferenced(prop, accessExpression, isSelfTypeAccess(accessExpression.expression, objectType.symbol)); if (isAssignmentToReadonlyEntity(accessExpression, prop, getAssignmentTargetKind(accessExpression))) { error2(accessExpression.argumentExpression, Diagnostics.Cannot_assign_to_0_because_it_is_a_read_only_property, symbolToString(prop)); return; } if (accessFlags & 8) { getNodeLinks(accessNode).resolvedSymbol = prop; } if (isThisPropertyAccessInConstructor(accessExpression, prop)) { return autoType; } } const propType = accessFlags & 4 ? getWriteTypeOfSymbol(prop) : getTypeOfSymbol(prop); return accessExpression && getAssignmentTargetKind(accessExpression) !== 1 ? getFlowTypeOfReference(accessExpression, propType) : accessNode && isIndexedAccessTypeNode(accessNode) && containsMissingType(propType) ? getUnionType([propType, undefinedType]) : propType; } if (everyType(objectType, isTupleType) && isNumericLiteralName(propName)) { const index = +propName; if (accessNode && everyType(objectType, (t) => !(t.target.combinedFlags & 12)) && !(accessFlags & 16)) { const indexNode = getIndexNodeForAccessExpression(accessNode); if (isTupleType(objectType)) { if (index < 0) { error2(indexNode, Diagnostics.A_tuple_type_cannot_be_indexed_with_a_negative_value); return undefinedType; } error2(indexNode, Diagnostics.Tuple_type_0_of_length_1_has_no_element_at_index_2, typeToString(objectType), getTypeReferenceArity(objectType), unescapeLeadingUnderscores(propName)); } else { error2(indexNode, Diagnostics.Property_0_does_not_exist_on_type_1, unescapeLeadingUnderscores(propName), typeToString(objectType)); } } if (index >= 0) { errorIfWritingToReadonlyIndex(getIndexInfoOfType(objectType, numberType)); return getTupleElementTypeOutOfStartCount(objectType, index, accessFlags & 1 ? missingType : undefined); } } } if (!(indexType.flags & 12) && isTypeAssignableToKind(indexType, 12583968 | 67648 | 16896)) { if (objectType.flags & (1 | 262144)) { return objectType; } const indexInfo = getApplicableIndexInfo(objectType, indexType) || getIndexInfoOfType(objectType, stringType); if (indexInfo) { if (accessFlags & 2 && indexInfo.keyType !== numberType) { if (accessExpression) { if (accessFlags & 4) { error2(accessExpression, Diagnostics.Type_0_is_generic_and_can_only_be_indexed_for_reading, typeToString(originalObjectType)); } else { error2(accessExpression, Diagnostics.Type_0_cannot_be_used_to_index_type_1, typeToString(indexType), typeToString(originalObjectType)); } } return; } if (accessNode && indexInfo.keyType === stringType && !isTypeAssignableToKind(indexType, 32 | 64)) { const indexNode = getIndexNodeForAccessExpression(accessNode); error2(indexNode, Diagnostics.Type_0_cannot_be_used_as_an_index_type, typeToString(indexType)); return accessFlags & 1 ? getUnionType([indexInfo.type, missingType]) : indexInfo.type; } errorIfWritingToReadonlyIndex(indexInfo); if (accessFlags & 1 && !(objectType.symbol && objectType.symbol.flags & (256 | 128) && (indexType.symbol && indexType.flags & 32768 && getParentOfSymbol(indexType.symbol) === objectType.symbol))) { return getUnionType([indexInfo.type, missingType]); } return indexInfo.type; } if (indexType.flags & 262144) { return neverType; } if (isJSLiteralType(objectType)) { return anyType; } if (accessExpression && !isConstEnumObjectType(objectType)) { if (isObjectLiteralType2(objectType)) { if (noImplicitAny && indexType.flags & (1024 | 2048)) { diagnostics.add(createDiagnosticForNode(accessExpression, Diagnostics.Property_0_does_not_exist_on_type_1, indexType.value, typeToString(objectType))); return undefinedType; } else if (indexType.flags & (64 | 32)) { const types = map(objectType.properties, (property) => { return getTypeOfSymbol(property); }); return getUnionType(append(types, undefinedType)); } } if (objectType.symbol === globalThisSymbol && propName !== undefined && globalThisSymbol.exports.has(propName) && globalThisSymbol.exports.get(propName).flags & 418) { error2(accessExpression, Diagnostics.Property_0_does_not_exist_on_type_1, unescapeLeadingUnderscores(propName), typeToString(objectType)); } else if (noImplicitAny && !(accessFlags & 128)) { if (propName !== undefined && typeHasStaticProperty(propName, objectType)) { const typeName = typeToString(objectType); error2(accessExpression, Diagnostics.Property_0_does_not_exist_on_type_1_Did_you_mean_to_access_the_static_member_2_instead, propName, typeName, typeName + "[" + getTextOfNode(accessExpression.argumentExpression) + "]"); } else if (getIndexTypeOfType(objectType, numberType)) { error2(accessExpression.argumentExpression, Diagnostics.Element_implicitly_has_an_any_type_because_index_expression_is_not_of_type_number); } else { let suggestion; if (propName !== undefined && (suggestion = getSuggestionForNonexistentProperty(propName, objectType))) { if (suggestion !== undefined) { error2(accessExpression.argumentExpression, Diagnostics.Property_0_does_not_exist_on_type_1_Did_you_mean_2, propName, typeToString(objectType), suggestion); } } else { const suggestion2 = getSuggestionForNonexistentIndexSignature(objectType, accessExpression, indexType); if (suggestion2 !== undefined) { error2(accessExpression, Diagnostics.Element_implicitly_has_an_any_type_because_type_0_has_no_index_signature_Did_you_mean_to_call_1, typeToString(objectType), suggestion2); } else { let errorInfo; if (indexType.flags & 32768) { errorInfo = chainDiagnosticMessages(undefined, Diagnostics.Property_0_does_not_exist_on_type_1, "[" + typeToString(indexType) + "]", typeToString(objectType)); } else if (indexType.flags & 16384) { const symbolName2 = getFullyQualifiedName(indexType.symbol, accessExpression); errorInfo = chainDiagnosticMessages(undefined, Diagnostics.Property_0_does_not_exist_on_type_1, "[" + symbolName2 + "]", typeToString(objectType)); } else if (indexType.flags & 1024) { errorInfo = chainDiagnosticMessages(undefined, Diagnostics.Property_0_does_not_exist_on_type_1, indexType.value, typeToString(objectType)); } else if (indexType.flags & 2048) { errorInfo = chainDiagnosticMessages(undefined, Diagnostics.Property_0_does_not_exist_on_type_1, indexType.value, typeToString(objectType)); } else if (indexType.flags & (64 | 32)) { errorInfo = chainDiagnosticMessages(undefined, Diagnostics.No_index_signature_with_a_parameter_of_type_0_was_found_on_type_1, typeToString(indexType), typeToString(objectType)); } errorInfo = chainDiagnosticMessages(errorInfo, Diagnostics.Element_implicitly_has_an_any_type_because_expression_of_type_0_can_t_be_used_to_index_type_1, typeToString(fullIndexType), typeToString(objectType)); diagnostics.add(createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(accessExpression), accessExpression, errorInfo)); } } } } return; } } if (accessFlags & 16 && isObjectLiteralType2(objectType)) { return undefinedType; } if (isJSLiteralType(objectType)) { return anyType; } if (accessNode) { const indexNode = getIndexNodeForAccessExpression(accessNode); if (indexNode.kind !== 10 && indexType.flags & (1024 | 2048)) { error2(indexNode, Diagnostics.Property_0_does_not_exist_on_type_1, "" + indexType.value, typeToString(objectType)); } else if (indexType.flags & (32 | 64)) { error2(indexNode, Diagnostics.Type_0_has_no_matching_index_signature_for_type_1, typeToString(objectType), typeToString(indexType)); } else { const typeString = indexNode.kind === 10 ? "bigint" : typeToString(indexType); error2(indexNode, Diagnostics.Type_0_cannot_be_used_as_an_index_type, typeString); } } if (isTypeAny(indexType)) { return indexType; } return; function errorIfWritingToReadonlyIndex(indexInfo) { if (indexInfo && indexInfo.isReadonly && accessExpression && (isAssignmentTarget(accessExpression) || isDeleteTarget(accessExpression))) { error2(accessExpression, Diagnostics.Index_signature_in_type_0_only_permits_reading, typeToString(objectType)); } } } function getIndexNodeForAccessExpression(accessNode) { return accessNode.kind === 213 ? accessNode.argumentExpression : accessNode.kind === 200 ? accessNode.indexType : accessNode.kind === 168 ? accessNode.expression : accessNode; } function isPatternLiteralPlaceholderType(type) { if (type.flags & 268435456) { let seenPlaceholder = false; for (const t of type.types) { if (t.flags & (15360 | 12) || isPatternLiteralPlaceholderType(t)) { seenPlaceholder = true; } else if (!(t.flags & 1048576)) { return false; } } return seenPlaceholder; } return !!(type.flags & (1 | 32 | 64 | 128)) || isPatternLiteralType(type); } function isPatternLiteralType(type) { return !!(type.flags & 4194304) && every(type.types, isPatternLiteralPlaceholderType) || !!(type.flags & 8388608) && isPatternLiteralPlaceholderType(type.type); } function isGenericStringLikeType(type) { return !!(type.flags & (4194304 | 8388608)) && !isPatternLiteralType(type); } function isGenericType(type) { return !!getGenericObjectFlags(type); } function isGenericObjectType(type) { return !!(getGenericObjectFlags(type) & 4194304); } function isGenericIndexType(type) { return !!(getGenericObjectFlags(type) & 8388608); } function getGenericObjectFlags(type) { if (type.flags & 402653184) { if (!(type.objectFlags & 2097152)) { type.objectFlags |= 2097152 | reduceLeft(type.types, (flags, t) => flags | getGenericObjectFlags(t), 0); } return type.objectFlags & 12582912; } if (type.flags & 16777216) { if (!(type.objectFlags & 2097152)) { type.objectFlags |= 2097152 | getGenericObjectFlags(type.baseType) | getGenericObjectFlags(type.constraint); } return type.objectFlags & 12582912; } return (type.flags & 117964800 || isGenericMappedType(type) || isGenericTupleType(type) ? 4194304 : 0) | (type.flags & (117964800 | 2097152) || isGenericStringLikeType(type) ? 8388608 : 0); } function getSimplifiedType(type, writing) { return type.flags & 33554432 ? getSimplifiedIndexedAccessType(type, writing) : type.flags & 67108864 ? getSimplifiedConditionalType(type, writing) : type.flags & 2097152 ? getSimplifiedIndexType(type) : type; } function distributeIndexOverObjectType(objectType, indexType, writing) { if (objectType.flags & 134217728 || objectType.flags & 268435456 && !shouldDeferIndexType(objectType)) { const types = map(objectType.types, (t) => getSimplifiedType(getIndexedAccessType(t, indexType), writing)); return objectType.flags & 268435456 || writing ? getIntersectionType(types) : getUnionType(types); } } function distributeObjectOverIndexType(objectType, indexType, writing) { if (indexType.flags & 134217728) { const types = map(indexType.types, (t) => getSimplifiedType(getIndexedAccessType(objectType, t), writing)); return writing ? getIntersectionType(types) : getUnionType(types); } } function getSimplifiedIndexedAccessType(type, writing) { const cache = writing ? "simplifiedForWriting" : "simplifiedForReading"; if (type[cache]) { return type[cache] === circularConstraintType ? type : type[cache]; } type[cache] = circularConstraintType; const objectType = getSimplifiedType(type.objectType, writing); const indexType = getSimplifiedType(type.indexType, writing); const distributedOverIndex = distributeObjectOverIndexType(objectType, indexType, writing); if (distributedOverIndex) { return type[cache] = distributedOverIndex; } if (!(indexType.flags & 132644864)) { const distributedOverObject = distributeIndexOverObjectType(objectType, indexType, writing); if (distributedOverObject) { return type[cache] = distributedOverObject; } } if (isGenericTupleType(objectType) && indexType.flags & 67648) { const elementType = getElementTypeOfSliceOfTupleType(objectType, indexType.flags & 64 ? 0 : objectType.target.fixedLength, 0, writing); if (elementType) { return type[cache] = elementType; } } if (isGenericMappedType(objectType)) { if (getMappedTypeNameTypeKind(objectType) !== 2) { return type[cache] = mapType(substituteIndexedMappedType(objectType, type.indexType), (t) => getSimplifiedType(t, writing)); } } return type[cache] = type; } function getSimplifiedConditionalType(type, writing) { const checkType = type.checkType; const extendsType = type.extendsType; const trueType2 = getTrueTypeFromConditionalType(type); const falseType2 = getFalseTypeFromConditionalType(type); if (falseType2.flags & 262144 && getActualTypeVariable(trueType2) === getActualTypeVariable(checkType)) { if (checkType.flags & 1 || isTypeAssignableTo(getRestrictiveInstantiation(checkType), getRestrictiveInstantiation(extendsType))) { return getSimplifiedType(trueType2, writing); } else if (isIntersectionEmpty(checkType, extendsType)) { return neverType; } } else if (trueType2.flags & 262144 && getActualTypeVariable(falseType2) === getActualTypeVariable(checkType)) { if (!(checkType.flags & 1) && isTypeAssignableTo(getRestrictiveInstantiation(checkType), getRestrictiveInstantiation(extendsType))) { return neverType; } else if (checkType.flags & 1 || isIntersectionEmpty(checkType, extendsType)) { return getSimplifiedType(falseType2, writing); } } return type; } function getSimplifiedIndexType(type) { if (isGenericMappedType(type.type) && getNameTypeFromMappedType(type.type) && !isMappedTypeWithKeyofConstraintDeclaration(type.type)) { return getIndexTypeForMappedType(type.type, 0); } return type; } function isIntersectionEmpty(type1, type2) { return !!(getUnionType([intersectTypes(type1, type2), neverType]).flags & 262144); } function substituteIndexedMappedType(objectType, index) { const mapper = createTypeMapper([getTypeParameterFromMappedType(objectType)], [index]); const templateMapper = combineTypeMappers(objectType.mapper, mapper); const instantiatedTemplateType = instantiateType(getTemplateTypeFromMappedType(objectType.target || objectType), templateMapper); const isOptional = getMappedTypeOptionality(objectType) > 0 || (isGenericType(objectType) ? getCombinedMappedTypeOptionality(getModifiersTypeFromMappedType(objectType)) > 0 : couldAccessOptionalProperty(objectType, index)); return addOptionality(instantiatedTemplateType, true, isOptional); } function couldAccessOptionalProperty(objectType, indexType) { const indexConstraint = getBaseConstraintOfType(indexType); return !!indexConstraint && some(getPropertiesOfType(objectType), (p) => !!(p.flags & 16777216) && isTypeAssignableTo(getLiteralTypeFromProperty(p, 19456), indexConstraint)); } function getIndexedAccessType(objectType, indexType, accessFlags = 0, accessNode, aliasSymbol, aliasTypeArguments) { return getIndexedAccessTypeOrUndefined(objectType, indexType, accessFlags, accessNode, aliasSymbol, aliasTypeArguments) || (accessNode ? errorType : unknownType); } function indexTypeLessThan(indexType, limit) { return everyType(indexType, (t) => { if (t.flags & 3072) { const propName = getPropertyNameFromType(t); if (isNumericLiteralName(propName)) { const index = +propName; return index >= 0 && index < limit; } } return false; }); } function getIndexedAccessTypeOrUndefined(objectType, indexType, accessFlags = 0, accessNode, aliasSymbol, aliasTypeArguments) { if (objectType === wildcardType || indexType === wildcardType) { return wildcardType; } objectType = getReducedType(objectType); if (isStringIndexSignatureOnlyType(objectType) && !(indexType.flags & 12) && isTypeAssignableToKind(indexType, 32 | 64)) { indexType = stringType; } if (compilerOptions.noUncheckedIndexedAccess && accessFlags & 32) accessFlags |= 1; if (isGenericIndexType(indexType) || (accessNode && accessNode.kind !== 200 ? isGenericTupleType(objectType) && !indexTypeLessThan(indexType, getTotalFixedElementCount(objectType.target)) : isGenericObjectType(objectType) && !(isTupleType(objectType) && indexTypeLessThan(indexType, getTotalFixedElementCount(objectType.target))) || isGenericReducibleType(objectType))) { if (objectType.flags & 3) { return objectType; } const persistentAccessFlags = accessFlags & 1; const id = objectType.id + "," + indexType.id + "," + persistentAccessFlags + getAliasId(aliasSymbol, aliasTypeArguments); let type = indexedAccessTypes.get(id); if (!type) { indexedAccessTypes.set(id, type = createIndexedAccessType(objectType, indexType, persistentAccessFlags, aliasSymbol, aliasTypeArguments)); } return type; } const apparentObjectType = getReducedApparentType(objectType); if (indexType.flags & 134217728 && !(indexType.flags & 256)) { const propTypes = []; let wasMissingProp = false; for (const t of indexType.types) { const propType = getPropertyTypeForIndexType(objectType, apparentObjectType, t, indexType, accessNode, accessFlags | (wasMissingProp ? 128 : 0)); if (propType) { propTypes.push(propType); } else if (!accessNode) { return; } else { wasMissingProp = true; } } if (wasMissingProp) { return; } return accessFlags & 4 ? getIntersectionType(propTypes, 0, aliasSymbol, aliasTypeArguments) : getUnionType(propTypes, 1, aliasSymbol, aliasTypeArguments); } return getPropertyTypeForIndexType(objectType, apparentObjectType, indexType, indexType, accessNode, accessFlags | 8 | 64); } function getTypeFromIndexedAccessTypeNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { const objectType = getTypeFromTypeNode(node.objectType); const indexType = getTypeFromTypeNode(node.indexType); const potentialAlias = getAliasSymbolForTypeNode(node); links.resolvedType = getIndexedAccessType(objectType, indexType, 0, node, potentialAlias, getTypeArgumentsForAliasSymbol(potentialAlias)); } return links.resolvedType; } function getTypeFromMappedTypeNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { const type = createObjectType(32, node.symbol); type.declaration = node; type.aliasSymbol = getAliasSymbolForTypeNode(node); type.aliasTypeArguments = getTypeArgumentsForAliasSymbol(type.aliasSymbol); links.resolvedType = type; getConstraintTypeFromMappedType(type); } return links.resolvedType; } function getActualTypeVariable(type) { if (type.flags & 16777216) { return getActualTypeVariable(type.baseType); } if (type.flags & 33554432 && (type.objectType.flags & 16777216 || type.indexType.flags & 16777216)) { return getIndexedAccessType(getActualTypeVariable(type.objectType), getActualTypeVariable(type.indexType)); } return type; } function isSimpleTupleType(node) { return isTupleTypeNode(node) && length(node.elements) > 0 && !some(node.elements, (e) => isOptionalTypeNode(e) || isRestTypeNode(e) || isNamedTupleMember(e) && !!(e.questionToken || e.dotDotDotToken)); } function isDeferredType(type, checkTuples) { return isGenericType(type) || checkTuples && isTupleType(type) && some(getElementTypes(type), isGenericType); } function getConditionalType(root, mapper, forConstraint, aliasSymbol, aliasTypeArguments) { let result; let extraTypes; let tailCount = 0; while (true) { if (tailCount === 1000) { error2(currentNode, Diagnostics.Type_instantiation_is_excessively_deep_and_possibly_infinite); return errorType; } const checkType = instantiateType(getActualTypeVariable(root.checkType), mapper); const extendsType = instantiateType(root.extendsType, mapper); if (checkType === errorType || extendsType === errorType) { return errorType; } if (checkType === wildcardType || extendsType === wildcardType) { return wildcardType; } const checkTypeNode = skipTypeParentheses(root.node.checkType); const extendsTypeNode = skipTypeParentheses(root.node.extendsType); const checkTuples = isSimpleTupleType(checkTypeNode) && isSimpleTupleType(extendsTypeNode) && length(checkTypeNode.elements) === length(extendsTypeNode.elements); const checkTypeDeferred = isDeferredType(checkType, checkTuples); let combinedMapper; if (root.inferTypeParameters) { const context = createInferenceContext(root.inferTypeParameters, undefined, 0); if (mapper) { context.nonFixingMapper = combineTypeMappers(context.nonFixingMapper, mapper); } if (!checkTypeDeferred) { inferTypes(context.inferences, checkType, extendsType, 512 | 1024); } combinedMapper = mapper ? combineTypeMappers(context.mapper, mapper) : context.mapper; } const inferredExtendsType = combinedMapper ? instantiateType(root.extendsType, combinedMapper) : extendsType; if (!checkTypeDeferred && !isDeferredType(inferredExtendsType, checkTuples)) { if (!(inferredExtendsType.flags & 3) && (checkType.flags & 1 || !isTypeAssignableTo(getPermissiveInstantiation(checkType), getPermissiveInstantiation(inferredExtendsType)))) { if (checkType.flags & 1 || forConstraint && !(inferredExtendsType.flags & 262144) && someType(getPermissiveInstantiation(inferredExtendsType), (t) => isTypeAssignableTo(t, getPermissiveInstantiation(checkType)))) { (extraTypes || (extraTypes = [])).push(instantiateType(getTypeFromTypeNode(root.node.trueType), combinedMapper || mapper)); } const falseType2 = getTypeFromTypeNode(root.node.falseType); if (falseType2.flags & 67108864) { const newRoot = falseType2.root; if (newRoot.node.parent === root.node && (!newRoot.isDistributive || newRoot.checkType === root.checkType)) { root = newRoot; continue; } if (canTailRecurse(falseType2, mapper)) { continue; } } result = instantiateType(falseType2, mapper); break; } if (inferredExtendsType.flags & 3 || isTypeAssignableTo(getRestrictiveInstantiation(checkType), getRestrictiveInstantiation(inferredExtendsType))) { const trueType2 = getTypeFromTypeNode(root.node.trueType); const trueMapper = combinedMapper || mapper; if (canTailRecurse(trueType2, trueMapper)) { continue; } result = instantiateType(trueType2, trueMapper); break; } } result = createType(67108864); result.root = root; result.checkType = instantiateType(root.checkType, mapper); result.extendsType = instantiateType(root.extendsType, mapper); result.mapper = mapper; result.combinedMapper = combinedMapper; result.aliasSymbol = aliasSymbol || root.aliasSymbol; result.aliasTypeArguments = aliasSymbol ? aliasTypeArguments : instantiateTypes(root.aliasTypeArguments, mapper); break; } return extraTypes ? getUnionType(append(extraTypes, result)) : result; function canTailRecurse(newType, newMapper) { if (newType.flags & 67108864 && newMapper) { const newRoot = newType.root; if (newRoot.outerTypeParameters) { const typeParamMapper = combineTypeMappers(newType.mapper, newMapper); const typeArguments = map(newRoot.outerTypeParameters, (t) => getMappedType(t, typeParamMapper)); const newRootMapper = createTypeMapper(newRoot.outerTypeParameters, typeArguments); const newCheckType = newRoot.isDistributive ? getMappedType(newRoot.checkType, newRootMapper) : undefined; if (!newCheckType || newCheckType === newRoot.checkType || !(newCheckType.flags & (134217728 | 262144))) { root = newRoot; mapper = newRootMapper; aliasSymbol = undefined; aliasTypeArguments = undefined; if (newRoot.aliasSymbol) { tailCount++; } return true; } } } return false; } } function getTrueTypeFromConditionalType(type) { return type.resolvedTrueType || (type.resolvedTrueType = instantiateType(getTypeFromTypeNode(type.root.node.trueType), type.mapper)); } function getFalseTypeFromConditionalType(type) { return type.resolvedFalseType || (type.resolvedFalseType = instantiateType(getTypeFromTypeNode(type.root.node.falseType), type.mapper)); } function getInferredTrueTypeFromConditionalType(type) { return type.resolvedInferredTrueType || (type.resolvedInferredTrueType = type.combinedMapper ? instantiateType(getTypeFromTypeNode(type.root.node.trueType), type.combinedMapper) : getTrueTypeFromConditionalType(type)); } function getInferTypeParameters(node) { let result; if (node.locals) { node.locals.forEach((symbol) => { if (symbol.flags & 262144) { result = append(result, getDeclaredTypeOfSymbol(symbol)); } }); } return result; } function isDistributionDependent(root) { return root.isDistributive && (isTypeParameterPossiblyReferenced(root.checkType, root.node.trueType) || isTypeParameterPossiblyReferenced(root.checkType, root.node.falseType)); } function getTypeFromConditionalTypeNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { const checkType = getTypeFromTypeNode(node.checkType); const aliasSymbol = getAliasSymbolForTypeNode(node); const aliasTypeArguments = getTypeArgumentsForAliasSymbol(aliasSymbol); const allOuterTypeParameters = getOuterTypeParameters(node, true); const outerTypeParameters = aliasTypeArguments ? allOuterTypeParameters : filter(allOuterTypeParameters, (tp) => isTypeParameterPossiblyReferenced(tp, node)); const root = { node, checkType, extendsType: getTypeFromTypeNode(node.extendsType), isDistributive: !!(checkType.flags & 524288), inferTypeParameters: getInferTypeParameters(node), outerTypeParameters, instantiations: undefined, aliasSymbol, aliasTypeArguments }; links.resolvedType = getConditionalType(root, undefined, false); if (outerTypeParameters) { root.instantiations = /* @__PURE__ */ new Map; root.instantiations.set(getTypeListId(outerTypeParameters), links.resolvedType); } } return links.resolvedType; } function getTypeFromInferTypeNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { links.resolvedType = getDeclaredTypeOfTypeParameter(getSymbolOfDeclaration(node.typeParameter)); } return links.resolvedType; } function getIdentifierChain(node) { if (isIdentifier(node)) { return [node]; } else { return append(getIdentifierChain(node.left), node.right); } } function getTypeFromImportTypeNode(node) { var _a; const links = getNodeLinks(node); if (!links.resolvedType) { if (!isLiteralImportTypeNode(node)) { error2(node.argument, Diagnostics.String_literal_expected); links.resolvedSymbol = unknownSymbol; return links.resolvedType = errorType; } const targetMeaning = node.isTypeOf ? 111551 : node.flags & 16777216 ? 111551 | 788968 : 788968; const innerModuleSymbol = resolveExternalModuleName(node, node.argument.literal); if (!innerModuleSymbol) { links.resolvedSymbol = unknownSymbol; return links.resolvedType = errorType; } const isExportEquals = !!((_a = innerModuleSymbol.exports) == null ? undefined : _a.get("export=")); const moduleSymbol = resolveExternalModuleSymbol(innerModuleSymbol, false); if (!nodeIsMissing(node.qualifier)) { const nameStack = getIdentifierChain(node.qualifier); let currentNamespace = moduleSymbol; let current; while (current = nameStack.shift()) { const meaning = nameStack.length ? 1920 : targetMeaning; const mergedResolvedSymbol = getMergedSymbol(resolveSymbol(currentNamespace)); const symbolFromVariable = node.isTypeOf || isInJSFile(node) && isExportEquals ? getPropertyOfType(getTypeOfSymbol(mergedResolvedSymbol), current.escapedText, false, true) : undefined; const symbolFromModule = node.isTypeOf ? undefined : getSymbol2(getExportsOfSymbol(mergedResolvedSymbol), current.escapedText, meaning); const next = symbolFromModule ?? symbolFromVariable; if (!next) { error2(current, Diagnostics.Namespace_0_has_no_exported_member_1, getFullyQualifiedName(currentNamespace), declarationNameToString(current)); return links.resolvedType = errorType; } getNodeLinks(current).resolvedSymbol = next; getNodeLinks(current.parent).resolvedSymbol = next; currentNamespace = next; } links.resolvedType = resolveImportSymbolType(node, links, currentNamespace, targetMeaning); } else { if (moduleSymbol.flags & targetMeaning) { links.resolvedType = resolveImportSymbolType(node, links, moduleSymbol, targetMeaning); } else { const errorMessage = targetMeaning === 111551 ? Diagnostics.Module_0_does_not_refer_to_a_value_but_is_used_as_a_value_here : Diagnostics.Module_0_does_not_refer_to_a_type_but_is_used_as_a_type_here_Did_you_mean_typeof_import_0; error2(node, errorMessage, node.argument.literal.text); links.resolvedSymbol = unknownSymbol; links.resolvedType = errorType; } } } return links.resolvedType; } function resolveImportSymbolType(node, links, symbol, meaning) { const resolvedSymbol = resolveSymbol(symbol); links.resolvedSymbol = resolvedSymbol; if (meaning === 111551) { return getInstantiationExpressionType(getTypeOfSymbol(symbol), node); } else { return getTypeReferenceType(node, resolvedSymbol); } } function getTypeFromTypeLiteralOrFunctionOrConstructorTypeNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { const aliasSymbol = getAliasSymbolForTypeNode(node); if (!node.symbol || getMembersOfSymbol(node.symbol).size === 0 && !aliasSymbol) { links.resolvedType = emptyTypeLiteralType; } else { let type = createObjectType(16, node.symbol); type.aliasSymbol = aliasSymbol; type.aliasTypeArguments = getTypeArgumentsForAliasSymbol(aliasSymbol); if (isJSDocTypeLiteral(node) && node.isArrayType) { type = createArrayType(type); } links.resolvedType = type; } } return links.resolvedType; } function getAliasSymbolForTypeNode(node) { let host2 = node.parent; while (isParenthesizedTypeNode(host2) || isJSDocTypeExpression(host2) || isTypeOperatorNode(host2) && host2.operator === 148) { host2 = host2.parent; } return isTypeAlias(host2) ? getSymbolOfDeclaration(host2) : undefined; } function getTypeArgumentsForAliasSymbol(symbol) { return symbol ? getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(symbol) : undefined; } function isNonGenericObjectType(type) { return !!(type.flags & 1048576) && !isGenericMappedType(type); } function isEmptyObjectTypeOrSpreadsIntoEmptyObject(type) { return isEmptyObjectType(type) || !!(type.flags & (8 | 4 | 8448 | 67648 | 4224 | 12583968 | 98304 | 131072 | 2097152)); } function tryMergeUnionOfObjectTypeAndEmptyObject(type, readonly) { if (!(type.flags & 134217728)) { return type; } if (every(type.types, isEmptyObjectTypeOrSpreadsIntoEmptyObject)) { return find(type.types, isEmptyObjectType) || emptyObjectType; } const firstType = find(type.types, (t) => !isEmptyObjectTypeOrSpreadsIntoEmptyObject(t)); if (!firstType) { return type; } const secondType = find(type.types, (t) => t !== firstType && !isEmptyObjectTypeOrSpreadsIntoEmptyObject(t)); if (secondType) { return type; } return getAnonymousPartialType(firstType); function getAnonymousPartialType(type2) { const members = createSymbolTable(); for (const prop of getPropertiesOfType(type2)) { if (getDeclarationModifierFlagsFromSymbol(prop) & (2 | 4)) {} else if (isSpreadableProperty(prop)) { const isSetonlyAccessor = prop.flags & 65536 && !(prop.flags & 32768); const flags = 4 | 16777216; const result = createSymbol(flags, prop.escapedName, getIsLateCheckFlag(prop) | (readonly ? 8 : 0)); result.links.type = isSetonlyAccessor ? undefinedType : addOptionality(getTypeOfSymbol(prop), true); result.declarations = prop.declarations; result.links.nameType = getSymbolLinks(prop).nameType; result.links.syntheticOrigin = prop; members.set(prop.escapedName, result); } } const spread = createAnonymousType(type2.symbol, members, emptyArray, emptyArray, getIndexInfosOfType(type2)); spread.objectFlags |= 128 | 131072; return spread; } } function getSpreadType(left, right, symbol, objectFlags, readonly) { if (left.flags & 1 || right.flags & 1) { return anyType; } if (left.flags & 2 || right.flags & 2) { return unknownType; } if (left.flags & 262144) { return right; } if (right.flags & 262144) { return left; } left = tryMergeUnionOfObjectTypeAndEmptyObject(left, readonly); if (left.flags & 134217728) { return checkCrossProductUnion([left, right]) ? mapType(left, (t) => getSpreadType(t, right, symbol, objectFlags, readonly)) : errorType; } right = tryMergeUnionOfObjectTypeAndEmptyObject(right, readonly); if (right.flags & 134217728) { return checkCrossProductUnion([left, right]) ? mapType(right, (t) => getSpreadType(left, t, symbol, objectFlags, readonly)) : errorType; } if (right.flags & (8448 | 67648 | 4224 | 12583968 | 98304 | 131072 | 2097152)) { return left; } if (isGenericObjectType(left) || isGenericObjectType(right)) { if (isEmptyObjectType(left)) { return right; } if (left.flags & 268435456) { const types = left.types; const lastLeft = types[types.length - 1]; if (isNonGenericObjectType(lastLeft) && isNonGenericObjectType(right)) { return getIntersectionType(concatenate(types.slice(0, types.length - 1), [getSpreadType(lastLeft, right, symbol, objectFlags, readonly)])); } } return getIntersectionType([left, right]); } const members = createSymbolTable(); const skippedPrivateMembers = /* @__PURE__ */ new Set; const indexInfos = left === emptyObjectType ? getIndexInfosOfType(right) : getUnionIndexInfos([left, right]); for (const rightProp of getPropertiesOfType(right)) { if (getDeclarationModifierFlagsFromSymbol(rightProp) & (2 | 4)) { skippedPrivateMembers.add(rightProp.escapedName); } else if (isSpreadableProperty(rightProp)) { members.set(rightProp.escapedName, getSpreadSymbol(rightProp, readonly)); } } for (const leftProp of getPropertiesOfType(left)) { if (skippedPrivateMembers.has(leftProp.escapedName) || !isSpreadableProperty(leftProp)) { continue; } if (members.has(leftProp.escapedName)) { const rightProp = members.get(leftProp.escapedName); const rightType = getTypeOfSymbol(rightProp); if (rightProp.flags & 16777216) { const declarations = concatenate(leftProp.declarations, rightProp.declarations); const flags = 4 | leftProp.flags & 16777216; const result = createSymbol(flags, leftProp.escapedName); const leftType = getTypeOfSymbol(leftProp); const leftTypeWithoutUndefined = removeMissingOrUndefinedType(leftType); const rightTypeWithoutUndefined = removeMissingOrUndefinedType(rightType); result.links.type = leftTypeWithoutUndefined === rightTypeWithoutUndefined ? leftType : getUnionType([leftType, rightTypeWithoutUndefined], 2); result.links.leftSpread = leftProp; result.links.rightSpread = rightProp; result.declarations = declarations; result.links.nameType = getSymbolLinks(leftProp).nameType; members.set(leftProp.escapedName, result); } } else { members.set(leftProp.escapedName, getSpreadSymbol(leftProp, readonly)); } } const spread = createAnonymousType(symbol, members, emptyArray, emptyArray, sameMap(indexInfos, (info) => getIndexInfoWithReadonly(info, readonly))); spread.objectFlags |= 128 | 131072 | 2097152 | objectFlags; return spread; } function isSpreadableProperty(prop) { var _a; return !some(prop.declarations, isPrivateIdentifierClassElementDeclaration) && (!(prop.flags & (8192 | 32768 | 65536)) || !((_a = prop.declarations) == null ? undefined : _a.some((decl) => isClassLike(decl.parent)))); } function getSpreadSymbol(prop, readonly) { const isSetonlyAccessor = prop.flags & 65536 && !(prop.flags & 32768); if (!isSetonlyAccessor && readonly === isReadonlySymbol(prop)) { return prop; } const flags = 4 | prop.flags & 16777216; const result = createSymbol(flags, prop.escapedName, getIsLateCheckFlag(prop) | (readonly ? 8 : 0)); result.links.type = isSetonlyAccessor ? undefinedType : getTypeOfSymbol(prop); result.declarations = prop.declarations; result.links.nameType = getSymbolLinks(prop).nameType; result.links.syntheticOrigin = prop; return result; } function getIndexInfoWithReadonly(info, readonly) { return info.isReadonly !== readonly ? createIndexInfo(info.keyType, info.type, readonly, info.declaration, info.components) : info; } function createLiteralType(flags, value, symbol, regularType) { const type = createTypeWithSymbol(flags, symbol); type.value = value; type.regularType = regularType || type; return type; } function getFreshTypeOfLiteralType(type) { if (type.flags & 80896) { if (!type.freshType) { const freshType = createLiteralType(type.flags, type.value, type.symbol, type); freshType.freshType = freshType; type.freshType = freshType; } return type.freshType; } return type; } function getRegularTypeOfLiteralType(type) { return type.flags & 80896 ? type.regularType : type.flags & 134217728 ? type.regularType || (type.regularType = mapType(type, getRegularTypeOfLiteralType)) : type; } function isFreshLiteralType(type) { return !!(type.flags & 80896) && type.freshType === type; } function getStringLiteralType(value) { let type; return stringLiteralTypes.get(value) || (stringLiteralTypes.set(value, type = createLiteralType(1024, value)), type); } function getNumberLiteralType(value) { let type; return numberLiteralTypes.get(value) || (numberLiteralTypes.set(value, type = createLiteralType(2048, value)), type); } function getBigIntLiteralType(value) { let type; const key = pseudoBigIntToString(value); return bigIntLiteralTypes.get(key) || (bigIntLiteralTypes.set(key, type = createLiteralType(4096, value)), type); } function getEnumLiteralType(value, enumId, symbol) { let type; const key = `${enumId}${typeof value === "string" ? "@" : "#"}${value}`; const flags = 32768 | (typeof value === "string" ? 1024 : 2048); return enumLiteralTypes.get(key) || (enumLiteralTypes.set(key, type = createLiteralType(flags, value, symbol)), type); } function getTypeFromLiteralTypeNode(node) { if (node.literal.kind === 106) { return nullType; } const links = getNodeLinks(node); if (!links.resolvedType) { links.resolvedType = getRegularTypeOfLiteralType(checkExpression(node.literal)); } return links.resolvedType; } function createUniqueESSymbolType(symbol) { const type = createTypeWithSymbol(16384, symbol); type.escapedName = `__@${type.symbol.escapedName}@${getSymbolId(type.symbol)}`; return type; } function getESSymbolLikeTypeForNode(node) { if (isInJSFile(node) && isJSDocTypeExpression(node)) { const host2 = getJSDocHost(node); if (host2) { node = getSingleVariableOfVariableStatement(host2) || host2; } } if (isValidESSymbolDeclaration(node)) { const symbol = isCommonJsExportPropertyAssignment(node) ? getSymbolOfNode(node.left) : getSymbolOfNode(node); if (symbol) { const links = getSymbolLinks(symbol); return links.uniqueESSymbolType || (links.uniqueESSymbolType = createUniqueESSymbolType(symbol)); } } return esSymbolType; } function getThisType(node) { const container = getThisContainer(node, false, false); const parent2 = container && container.parent; if (parent2 && (isClassLike(parent2) || parent2.kind === 265)) { if (!isStatic(container) && (!isConstructorDeclaration(container) || isNodeDescendantOf(node, container.body))) { return getDeclaredTypeOfClassOrInterface(getSymbolOfDeclaration(parent2)).thisType; } } if (parent2 && isObjectLiteralExpression(parent2) && isBinaryExpression(parent2.parent) && getAssignmentDeclarationKind(parent2.parent) === 6) { return getDeclaredTypeOfClassOrInterface(getSymbolOfNode(parent2.parent.left).parent).thisType; } const host2 = node.flags & 16777216 ? getHostSignatureFromJSDoc(node) : undefined; if (host2 && isFunctionExpression(host2) && isBinaryExpression(host2.parent) && getAssignmentDeclarationKind(host2.parent) === 3) { return getDeclaredTypeOfClassOrInterface(getSymbolOfNode(host2.parent.left).parent).thisType; } if (isJSConstructor(container) && isNodeDescendantOf(node, container.body)) { return getDeclaredTypeOfClassOrInterface(getSymbolOfDeclaration(container)).thisType; } error2(node, Diagnostics.A_this_type_is_available_only_in_a_non_static_member_of_a_class_or_interface); return errorType; } function getTypeFromThisTypeNode(node) { const links = getNodeLinks(node); if (!links.resolvedType) { links.resolvedType = getThisType(node); } return links.resolvedType; } function getTypeFromRestTypeNode(node) { return getTypeFromTypeNode(getArrayElementTypeNode(node.type) || node.type); } function getArrayElementTypeNode(node) { switch (node.kind) { case 197: return getArrayElementTypeNode(node.type); case 190: if (node.elements.length === 1) { node = node.elements[0]; if (node.kind === 192 || node.kind === 203 && node.dotDotDotToken) { return getArrayElementTypeNode(node.type); } } break; case 189: return node.elementType; } return; } function getTypeFromNamedTupleTypeNode(node) { const links = getNodeLinks(node); return links.resolvedType || (links.resolvedType = node.dotDotDotToken ? getTypeFromRestTypeNode(node) : addOptionality(getTypeFromTypeNode(node.type), true, !!node.questionToken)); } function getTypeFromTypeNode(node) { return getConditionalFlowTypeOfType(getTypeFromTypeNodeWorker(node), node); } function getTypeFromTypeNodeWorker(node) { switch (node.kind) { case 133: case 313: case 314: return anyType; case 159: return unknownType; case 154: return stringType; case 150: return numberType; case 163: return bigintType; case 136: return booleanType; case 155: return esSymbolType; case 116: return voidType; case 157: return undefinedType; case 106: return nullType; case 146: return neverType; case 151: return node.flags & 524288 && !noImplicitAny ? anyType : nonPrimitiveType; case 141: return intrinsicMarkerType; case 198: case 110: return getTypeFromThisTypeNode(node); case 202: return getTypeFromLiteralTypeNode(node); case 184: return getTypeFromTypeReference(node); case 183: return node.assertsModifier ? voidType : booleanType; case 234: return getTypeFromTypeReference(node); case 187: return getTypeFromTypeQueryNode(node); case 189: case 190: return getTypeFromArrayOrTupleTypeNode(node); case 191: return getTypeFromOptionalTypeNode(node); case 193: return getTypeFromUnionTypeNode(node); case 194: return getTypeFromIntersectionTypeNode(node); case 315: return getTypeFromJSDocNullableTypeNode(node); case 317: return addOptionality(getTypeFromTypeNode(node.type)); case 203: return getTypeFromNamedTupleTypeNode(node); case 197: case 316: case 310: return getTypeFromTypeNode(node.type); case 192: return getTypeFromRestTypeNode(node); case 319: return getTypeFromJSDocVariadicType(node); case 185: case 186: case 188: case 323: case 318: case 324: return getTypeFromTypeLiteralOrFunctionOrConstructorTypeNode(node); case 199: return getTypeFromTypeOperatorNode(node); case 200: return getTypeFromIndexedAccessTypeNode(node); case 201: return getTypeFromMappedTypeNode(node); case 195: return getTypeFromConditionalTypeNode(node); case 196: return getTypeFromInferTypeNode(node); case 204: return getTypeFromTemplateTypeNode(node); case 206: return getTypeFromImportTypeNode(node); case 80: case 167: case 212: const symbol = getSymbolAtLocation(node); return symbol ? getDeclaredTypeOfSymbol(symbol) : errorType; default: return errorType; } } function instantiateList(items, mapper, instantiator) { if (items && items.length) { for (let i = 0;i < items.length; i++) { const item = items[i]; const mapped = instantiator(item, mapper); if (item !== mapped) { const result = i === 0 ? [] : items.slice(0, i); result.push(mapped); for (i++;i < items.length; i++) { result.push(instantiator(items[i], mapper)); } return result; } } } return items; } function instantiateTypes(types, mapper) { return instantiateList(types, mapper, instantiateType); } function instantiateSignatures(signatures, mapper) { return instantiateList(signatures, mapper, instantiateSignature); } function instantiateIndexInfos(indexInfos, mapper) { return instantiateList(indexInfos, mapper, instantiateIndexInfo); } function createTypeMapper(sources, targets) { return sources.length === 1 ? makeUnaryTypeMapper(sources[0], targets ? targets[0] : anyType) : makeArrayTypeMapper(sources, targets); } function getMappedType(type, mapper) { switch (mapper.kind) { case 0: return type === mapper.source ? mapper.target : type; case 1: { const sources = mapper.sources; const targets = mapper.targets; for (let i = 0;i < sources.length; i++) { if (type === sources[i]) { return targets ? targets[i] : anyType; } } return type; } case 2: { const sources = mapper.sources; const targets = mapper.targets; for (let i = 0;i < sources.length; i++) { if (type === sources[i]) { return targets[i](); } } return type; } case 3: return mapper.func(type); case 4: case 5: const t1 = getMappedType(type, mapper.mapper1); return t1 !== type && mapper.kind === 4 ? instantiateType(t1, mapper.mapper2) : getMappedType(t1, mapper.mapper2); } } function makeUnaryTypeMapper(source, target) { return Debug.attachDebugPrototypeIfDebug({ kind: 0, source, target }); } function makeArrayTypeMapper(sources, targets) { return Debug.attachDebugPrototypeIfDebug({ kind: 1, sources, targets }); } function makeFunctionTypeMapper(func, debugInfo) { return Debug.attachDebugPrototypeIfDebug({ kind: 3, func, debugInfo: Debug.isDebugging ? debugInfo : undefined }); } function makeDeferredTypeMapper(sources, targets) { return Debug.attachDebugPrototypeIfDebug({ kind: 2, sources, targets }); } function makeCompositeTypeMapper(kind, mapper1, mapper2) { return Debug.attachDebugPrototypeIfDebug({ kind, mapper1, mapper2 }); } function createTypeEraser(sources) { return createTypeMapper(sources, undefined); } function createBackreferenceMapper(context, index) { const forwardInferences = context.inferences.slice(index); return createTypeMapper(map(forwardInferences, (i) => i.typeParameter), map(forwardInferences, () => unknownType)); } function createOuterReturnMapper(context) { return context.outerReturnMapper ?? (context.outerReturnMapper = mergeTypeMappers(context.returnMapper, cloneInferenceContext(context).mapper)); } function combineTypeMappers(mapper1, mapper2) { return mapper1 ? makeCompositeTypeMapper(4, mapper1, mapper2) : mapper2; } function mergeTypeMappers(mapper1, mapper2) { return mapper1 ? makeCompositeTypeMapper(5, mapper1, mapper2) : mapper2; } function prependTypeMapping(source, target, mapper) { return !mapper ? makeUnaryTypeMapper(source, target) : makeCompositeTypeMapper(5, makeUnaryTypeMapper(source, target), mapper); } function appendTypeMapping(mapper, source, target) { return !mapper ? makeUnaryTypeMapper(source, target) : makeCompositeTypeMapper(5, mapper, makeUnaryTypeMapper(source, target)); } function getRestrictiveTypeParameter(tp) { return !tp.constraint && !getConstraintDeclaration(tp) || tp.constraint === noConstraintType ? tp : tp.restrictiveInstantiation || (tp.restrictiveInstantiation = createTypeParameter(tp.symbol), tp.restrictiveInstantiation.constraint = noConstraintType, tp.restrictiveInstantiation); } function cloneTypeParameter(typeParameter) { const result = createTypeParameter(typeParameter.symbol); result.target = typeParameter; return result; } function instantiateTypePredicate(predicate, mapper) { return createTypePredicate(predicate.kind, predicate.parameterName, predicate.parameterIndex, instantiateType(predicate.type, mapper)); } function instantiateSignature(signature, mapper, eraseTypeParameters) { let freshTypeParameters; if (signature.typeParameters && !eraseTypeParameters) { freshTypeParameters = map(signature.typeParameters, cloneTypeParameter); mapper = combineTypeMappers(createTypeMapper(signature.typeParameters, freshTypeParameters), mapper); for (const tp of freshTypeParameters) { tp.mapper = mapper; } } const result = createSignature(signature.declaration, freshTypeParameters, signature.thisParameter && instantiateSymbol(signature.thisParameter, mapper), instantiateList(signature.parameters, mapper, instantiateSymbol), undefined, undefined, signature.minArgumentCount, signature.flags & 167); result.target = signature; result.mapper = mapper; return result; } function instantiateSymbol(symbol, mapper) { const links = getSymbolLinks(symbol); if (links.type && !couldContainTypeVariables(links.type)) { if (!(symbol.flags & 65536)) { return symbol; } if (links.writeType && !couldContainTypeVariables(links.writeType)) { return symbol; } } if (getCheckFlags(symbol) & 1) { symbol = links.target; mapper = combineTypeMappers(links.mapper, mapper); } const result = createSymbol(symbol.flags, symbol.escapedName, 1 | getCheckFlags(symbol) & (8 | 4096 | 16384 | 32768)); result.declarations = symbol.declarations; result.parent = symbol.parent; result.links.target = symbol; result.links.mapper = mapper; if (symbol.valueDeclaration) { result.valueDeclaration = symbol.valueDeclaration; } if (links.nameType) { result.links.nameType = links.nameType; } return result; } function getObjectTypeInstantiation(type, mapper, aliasSymbol, aliasTypeArguments) { const declaration = type.objectFlags & 4 ? type.node : type.objectFlags & 8388608 ? type.node : type.symbol.declarations[0]; const links = getNodeLinks(declaration); const target = type.objectFlags & 4 ? links.resolvedType : type.objectFlags & 64 ? type.target : type; let typeParameters = links.outerTypeParameters; if (!typeParameters) { let outerTypeParameters = getOuterTypeParameters(declaration, true); if (isJSConstructor(declaration)) { const templateTagParameters = getTypeParametersFromDeclaration(declaration); outerTypeParameters = addRange(outerTypeParameters, templateTagParameters); } typeParameters = outerTypeParameters || emptyArray; const allDeclarations = type.objectFlags & (4 | 8388608) ? [declaration] : type.symbol.declarations; typeParameters = (target.objectFlags & (4 | 8388608) || target.symbol.flags & 8192 || target.symbol.flags & 2048) && !target.aliasTypeArguments ? filter(typeParameters, (tp) => some(allDeclarations, (d) => isTypeParameterPossiblyReferenced(tp, d))) : typeParameters; links.outerTypeParameters = typeParameters; } if (typeParameters.length) { const combinedMapper = combineTypeMappers(type.mapper, mapper); const typeArguments = map(typeParameters, (t) => getMappedType(t, combinedMapper)); const newAliasSymbol = aliasSymbol || type.aliasSymbol; const newAliasTypeArguments = aliasSymbol ? aliasTypeArguments : instantiateTypes(type.aliasTypeArguments, mapper); const id = getTypeListId(typeArguments) + getAliasId(newAliasSymbol, newAliasTypeArguments); if (!target.instantiations) { target.instantiations = /* @__PURE__ */ new Map; target.instantiations.set(getTypeListId(typeParameters) + getAliasId(target.aliasSymbol, target.aliasTypeArguments), target); } let result = target.instantiations.get(id); if (!result) { let newMapper = createTypeMapper(typeParameters, typeArguments); if (target.objectFlags & 134217728 && mapper) { newMapper = combineTypeMappers(newMapper, mapper); } result = target.objectFlags & 4 ? createDeferredTypeReference(type.target, type.node, newMapper, newAliasSymbol, newAliasTypeArguments) : target.objectFlags & 32 ? instantiateMappedType(target, newMapper, newAliasSymbol, newAliasTypeArguments) : instantiateAnonymousType(target, newMapper, newAliasSymbol, newAliasTypeArguments); target.instantiations.set(id, result); const resultObjectFlags = getObjectFlags(result); if (result.flags & 403963917 && !(resultObjectFlags & 524288)) { const resultCouldContainTypeVariables = some(typeArguments, couldContainTypeVariables); if (!(getObjectFlags(result) & 524288)) { if (resultObjectFlags & (32 | 16 | 4)) { result.objectFlags |= 524288 | (resultCouldContainTypeVariables ? 1048576 : 0); } else { result.objectFlags |= !resultCouldContainTypeVariables ? 524288 : 0; } } } } return result; } return type; } function maybeTypeParameterReference(node) { return !(node.parent.kind === 184 && node.parent.typeArguments && node === node.parent.typeName || node.parent.kind === 206 && node.parent.typeArguments && node === node.parent.qualifier); } function isTypeParameterPossiblyReferenced(tp, node) { if (tp.symbol && tp.symbol.declarations && tp.symbol.declarations.length === 1) { const container = tp.symbol.declarations[0].parent; for (let n = node;n !== container; n = n.parent) { if (!n || n.kind === 242 || n.kind === 195 && forEachChild(n.extendsType, containsReference)) { return true; } } return containsReference(node); } return true; function containsReference(node2) { switch (node2.kind) { case 198: return !!tp.isThisType; case 80: return !tp.isThisType && isPartOfTypeNode(node2) && maybeTypeParameterReference(node2) && getTypeFromTypeNodeWorker(node2) === tp; case 187: const entityName = node2.exprName; const firstIdentifier = getFirstIdentifier(entityName); if (!isThisIdentifier(firstIdentifier)) { const firstIdentifierSymbol = getResolvedSymbol(firstIdentifier); const tpDeclaration = tp.symbol.declarations[0]; const tpScope = tpDeclaration.kind === 169 ? tpDeclaration.parent : tp.isThisType ? tpDeclaration : undefined; if (firstIdentifierSymbol.declarations && tpScope) { return some(firstIdentifierSymbol.declarations, (idDecl) => isNodeDescendantOf(idDecl, tpScope)) || some(node2.typeArguments, containsReference); } } return true; case 175: case 174: return !node2.type && !!node2.body || some(node2.typeParameters, containsReference) || some(node2.parameters, containsReference) || !!node2.type && containsReference(node2.type); } return !!forEachChild(node2, containsReference); } } function getHomomorphicTypeVariable(type) { const constraintType = getConstraintTypeFromMappedType(type); if (constraintType.flags & 2097152) { const typeVariable = getActualTypeVariable(constraintType.type); if (typeVariable.flags & 524288) { return typeVariable; } } return; } function instantiateMappedType(type, mapper, aliasSymbol, aliasTypeArguments) { const typeVariable = getHomomorphicTypeVariable(type); if (typeVariable) { const mappedTypeVariable = instantiateType(typeVariable, mapper); if (typeVariable !== mappedTypeVariable) { return mapTypeWithAlias(getReducedType(mappedTypeVariable), instantiateConstituent, aliasSymbol, aliasTypeArguments); } } return instantiateType(getConstraintTypeFromMappedType(type), mapper) === wildcardType ? wildcardType : instantiateAnonymousType(type, mapper, aliasSymbol, aliasTypeArguments); function instantiateConstituent(t) { if (t.flags & (3 | 117964800 | 1048576 | 268435456) && t !== wildcardType && !isErrorType(t)) { if (!type.declaration.nameType) { let constraint; if (isArrayType(t) || t.flags & 1 && findResolutionCycleStartIndex(typeVariable, 4) < 0 && (constraint = getConstraintOfTypeParameter(typeVariable)) && everyType(constraint, isArrayOrTupleType)) { return instantiateMappedArrayType(t, type, prependTypeMapping(typeVariable, t, mapper)); } if (isTupleType(t)) { return instantiateMappedTupleType(t, type, typeVariable, mapper); } if (isArrayOrTupleOrIntersection(t)) { return getIntersectionType(map(t.types, instantiateConstituent)); } } return instantiateAnonymousType(type, prependTypeMapping(typeVariable, t, mapper)); } return t; } } function getModifiedReadonlyState(state, modifiers) { return modifiers & 1 ? true : modifiers & 2 ? false : state; } function instantiateMappedTupleType(tupleType, mappedType, typeVariable, mapper) { const elementFlags = tupleType.target.elementFlags; const fixedLength = tupleType.target.fixedLength; const fixedMapper = fixedLength ? prependTypeMapping(typeVariable, tupleType, mapper) : mapper; const newElementTypes = map(getElementTypes(tupleType), (type, i) => { const flags = elementFlags[i]; return i < fixedLength ? instantiateMappedTypeTemplate(mappedType, getStringLiteralType("" + i), !!(flags & 2), fixedMapper) : flags & 8 ? instantiateType(mappedType, prependTypeMapping(typeVariable, type, mapper)) : getElementTypeOfArrayType(instantiateType(mappedType, prependTypeMapping(typeVariable, createArrayType(type), mapper))) ?? unknownType; }); const modifiers = getMappedTypeModifiers(mappedType); const newElementFlags = modifiers & 4 ? map(elementFlags, (f) => f & 1 ? 2 : f) : modifiers & 8 ? map(elementFlags, (f) => f & 2 ? 1 : f) : elementFlags; const newReadonly = getModifiedReadonlyState(tupleType.target.readonly, getMappedTypeModifiers(mappedType)); return contains(newElementTypes, errorType) ? errorType : createTupleType(newElementTypes, newElementFlags, newReadonly, tupleType.target.labeledElementDeclarations); } function instantiateMappedArrayType(arrayType, mappedType, mapper) { const elementType = instantiateMappedTypeTemplate(mappedType, numberType, true, mapper); return isErrorType(elementType) ? errorType : createArrayType(elementType, getModifiedReadonlyState(isReadonlyArrayType(arrayType), getMappedTypeModifiers(mappedType))); } function instantiateMappedTypeTemplate(type, key, isOptional, mapper) { const templateMapper = appendTypeMapping(mapper, getTypeParameterFromMappedType(type), key); const propType = instantiateType(getTemplateTypeFromMappedType(type.target || type), templateMapper); const modifiers = getMappedTypeModifiers(type); return strictNullChecks && modifiers & 4 && !maybeTypeOfKind(propType, 4 | 16) ? getOptionalType(propType, true) : strictNullChecks && modifiers & 8 && isOptional ? getTypeWithFacts(propType, 524288) : propType; } function instantiateAnonymousType(type, mapper, aliasSymbol, aliasTypeArguments) { Debug.assert(type.symbol, "anonymous type must have symbol to be instantiated"); const result = createObjectType(type.objectFlags & ~(524288 | 1048576) | 64, type.symbol); if (type.objectFlags & 32) { result.declaration = type.declaration; const origTypeParameter = getTypeParameterFromMappedType(type); const freshTypeParameter = cloneTypeParameter(origTypeParameter); result.typeParameter = freshTypeParameter; mapper = combineTypeMappers(makeUnaryTypeMapper(origTypeParameter, freshTypeParameter), mapper); freshTypeParameter.mapper = mapper; } if (type.objectFlags & 8388608) { result.node = type.node; } result.target = type; result.mapper = mapper; result.aliasSymbol = aliasSymbol || type.aliasSymbol; result.aliasTypeArguments = aliasSymbol ? aliasTypeArguments : instantiateTypes(type.aliasTypeArguments, mapper); result.objectFlags |= result.aliasTypeArguments ? getPropagatingFlagsOfTypes(result.aliasTypeArguments) : 0; return result; } function getConditionalTypeInstantiation(type, mapper, forConstraint, aliasSymbol, aliasTypeArguments) { const root = type.root; if (root.outerTypeParameters) { const typeArguments = map(root.outerTypeParameters, (t) => getMappedType(t, mapper)); const id = (forConstraint ? "C" : "") + getTypeListId(typeArguments) + getAliasId(aliasSymbol, aliasTypeArguments); let result = root.instantiations.get(id); if (!result) { const newMapper = createTypeMapper(root.outerTypeParameters, typeArguments); const checkType = root.checkType; const distributionType = root.isDistributive ? getReducedType(getMappedType(checkType, newMapper)) : undefined; result = distributionType && checkType !== distributionType && distributionType.flags & (134217728 | 262144) ? mapTypeWithAlias(distributionType, (t) => getConditionalType(root, prependTypeMapping(checkType, t, newMapper), forConstraint), aliasSymbol, aliasTypeArguments) : getConditionalType(root, newMapper, forConstraint, aliasSymbol, aliasTypeArguments); root.instantiations.set(id, result); } return result; } return type; } function instantiateType(type, mapper) { return type && mapper ? instantiateTypeWithAlias(type, mapper, undefined, undefined) : type; } function instantiateTypeWithAlias(type, mapper, aliasSymbol, aliasTypeArguments) { var _a; if (!couldContainTypeVariables(type)) { return type; } if (instantiationDepth === 100 || instantiationCount >= 5000000) { (_a = tracing) == null || _a.instant(tracing.Phase.CheckTypes, "instantiateType_DepthLimit", { typeId: type.id, instantiationDepth, instantiationCount }); error2(currentNode, Diagnostics.Type_instantiation_is_excessively_deep_and_possibly_infinite); return errorType; } const index = findActiveMapper(mapper); if (index === -1) { pushActiveMapper(mapper); } const key = type.id + getAliasId(aliasSymbol, aliasTypeArguments); const mapperCache = activeTypeMappersCaches[index !== -1 ? index : activeTypeMappersCount - 1]; const cached = mapperCache.get(key); if (cached) { return cached; } totalInstantiationCount++; instantiationCount++; instantiationDepth++; const result = instantiateTypeWorker(type, mapper, aliasSymbol, aliasTypeArguments); if (index === -1) { popActiveMapper(); } else { mapperCache.set(key, result); } instantiationDepth--; return result; } function instantiateTypeWorker(type, mapper, aliasSymbol, aliasTypeArguments) { const flags = type.flags; if (flags & 524288) { return getMappedType(type, mapper); } if (flags & 1048576) { const objectFlags = type.objectFlags; if (objectFlags & (4 | 16 | 32)) { if (objectFlags & 4 && !type.node) { const resolvedTypeArguments = type.resolvedTypeArguments; const newTypeArguments = instantiateTypes(resolvedTypeArguments, mapper); return newTypeArguments !== resolvedTypeArguments ? createNormalizedTypeReference(type.target, newTypeArguments) : type; } if (objectFlags & 1024) { return instantiateReverseMappedType(type, mapper); } return getObjectTypeInstantiation(type, mapper, aliasSymbol, aliasTypeArguments); } return type; } if (flags & 402653184) { const origin = type.flags & 134217728 ? type.origin : undefined; const types = origin && origin.flags & 402653184 ? origin.types : type.types; const newTypes = instantiateTypes(types, mapper); if (newTypes === types && aliasSymbol === type.aliasSymbol) { return type; } const newAliasSymbol = aliasSymbol || type.aliasSymbol; const newAliasTypeArguments = aliasSymbol ? aliasTypeArguments : instantiateTypes(type.aliasTypeArguments, mapper); return flags & 268435456 || origin && origin.flags & 268435456 ? getIntersectionType(newTypes, 0, newAliasSymbol, newAliasTypeArguments) : getUnionType(newTypes, 1, newAliasSymbol, newAliasTypeArguments); } if (flags & 2097152) { return getIndexType(instantiateType(type.type, mapper)); } if (flags & 4194304) { return getTemplateLiteralType(type.texts, instantiateTypes(type.types, mapper)); } if (flags & 8388608) { return getStringMappingType(type.symbol, instantiateType(type.type, mapper)); } if (flags & 33554432) { const newAliasSymbol = aliasSymbol || type.aliasSymbol; const newAliasTypeArguments = aliasSymbol ? aliasTypeArguments : instantiateTypes(type.aliasTypeArguments, mapper); return getIndexedAccessType(instantiateType(type.objectType, mapper), instantiateType(type.indexType, mapper), type.accessFlags, undefined, newAliasSymbol, newAliasTypeArguments); } if (flags & 67108864) { return getConditionalTypeInstantiation(type, combineTypeMappers(type.mapper, mapper), false, aliasSymbol, aliasTypeArguments); } if (flags & 16777216) { const newBaseType = instantiateType(type.baseType, mapper); if (isNoInferType(type)) { return getNoInferType(newBaseType); } const newConstraint = instantiateType(type.constraint, mapper); if (newBaseType.flags & 34078720 && isGenericType(newConstraint)) { return getSubstitutionType(newBaseType, newConstraint); } if (newConstraint.flags & 3 || isTypeAssignableTo(getRestrictiveInstantiation(newBaseType), getRestrictiveInstantiation(newConstraint))) { return newBaseType; } return newBaseType.flags & 34078720 ? getSubstitutionType(newBaseType, newConstraint) : getIntersectionType([newConstraint, newBaseType]); } return type; } function instantiateReverseMappedType(type, mapper) { const innerMappedType = instantiateType(type.mappedType, mapper); if (!(getObjectFlags(innerMappedType) & 32)) { return type; } const innerIndexType = instantiateType(type.constraintType, mapper); if (!(innerIndexType.flags & 2097152)) { return type; } const instantiated = inferTypeForHomomorphicMappedType(instantiateType(type.source, mapper), innerMappedType, innerIndexType); if (instantiated) { return instantiated; } return type; } function getPermissiveInstantiation(type) { return type.flags & (12713980 | 3 | 262144) ? type : type.permissiveInstantiation || (type.permissiveInstantiation = instantiateType(type, permissiveMapper)); } function getRestrictiveInstantiation(type) { if (type.flags & (12713980 | 3 | 262144)) { return type; } if (type.restrictiveInstantiation) { return type.restrictiveInstantiation; } type.restrictiveInstantiation = instantiateType(type, restrictiveMapper); type.restrictiveInstantiation.restrictiveInstantiation = type.restrictiveInstantiation; return type.restrictiveInstantiation; } function instantiateIndexInfo(info, mapper) { return createIndexInfo(info.keyType, instantiateType(info.type, mapper), info.isReadonly, info.declaration, info.components); } function isContextSensitive(node) { Debug.assert(node.kind !== 175 || isObjectLiteralMethod(node)); switch (node.kind) { case 219: case 220: case 175: case 263: return isContextSensitiveFunctionLikeDeclaration(node); case 211: return some(node.properties, isContextSensitive); case 210: return some(node.elements, isContextSensitive); case 228: return isContextSensitive(node.whenTrue) || isContextSensitive(node.whenFalse); case 227: return (node.operatorToken.kind === 57 || node.operatorToken.kind === 61) && (isContextSensitive(node.left) || isContextSensitive(node.right)); case 304: return isContextSensitive(node.initializer); case 218: return isContextSensitive(node.expression); case 293: return some(node.properties, isContextSensitive) || isJsxOpeningElement(node.parent) && some(node.parent.parent.children, isContextSensitive); case 292: { const { initializer } = node; return !!initializer && isContextSensitive(initializer); } case 295: case 230: { const { expression } = node; return !!expression && isContextSensitive(expression); } } return false; } function isContextSensitiveFunctionLikeDeclaration(node) { return hasContextSensitiveParameters(node) || hasContextSensitiveReturnExpression(node) || hasContextSensitiveYieldExpression(node); } function hasContextSensitiveReturnExpression(node) { if (node.typeParameters || getEffectiveReturnTypeNode(node) || !node.body) { return false; } if (node.body.kind !== 242) { return isContextSensitive(node.body); } return !!forEachReturnStatement(node.body, (statement) => !!statement.expression && isContextSensitive(statement.expression)); } function hasContextSensitiveYieldExpression(node) { return !!(getFunctionFlags(node) & 1 && node.body && forEachYieldExpression(node.body, isContextSensitive)); } function isContextSensitiveFunctionOrObjectLiteralMethod(func) { return (isFunctionExpressionOrArrowFunction(func) || isObjectLiteralMethod(func)) && isContextSensitiveFunctionLikeDeclaration(func); } function getTypeWithoutSignatures(type) { if (type.flags & 1048576) { const resolved = resolveStructuredTypeMembers(type); if (resolved.constructSignatures.length || resolved.callSignatures.length) { const result = createObjectType(16, type.symbol); result.members = resolved.members; result.properties = resolved.properties; result.callSignatures = emptyArray; result.constructSignatures = emptyArray; result.indexInfos = emptyArray; return result; } } else if (type.flags & 268435456) { return getIntersectionType(map(type.types, getTypeWithoutSignatures)); } return type; } function isTypeIdenticalTo(source, target) { return isTypeRelatedTo(source, target, identityRelation); } function compareTypesIdentical(source, target) { return isTypeRelatedTo(source, target, identityRelation) ? -1 : 0; } function compareTypesAssignable(source, target) { return isTypeRelatedTo(source, target, assignableRelation) ? -1 : 0; } function compareTypesSubtypeOf(source, target) { return isTypeRelatedTo(source, target, subtypeRelation) ? -1 : 0; } function isTypeSubtypeOf(source, target) { return isTypeRelatedTo(source, target, subtypeRelation); } function isTypeStrictSubtypeOf(source, target) { return isTypeRelatedTo(source, target, strictSubtypeRelation); } function isTypeAssignableTo(source, target) { return isTypeRelatedTo(source, target, assignableRelation); } function isTypeDerivedFrom(source, target) { return source.flags & 134217728 ? every(source.types, (t) => isTypeDerivedFrom(t, target)) : target.flags & 134217728 ? some(target.types, (t) => isTypeDerivedFrom(source, t)) : source.flags & 268435456 ? some(source.types, (t) => isTypeDerivedFrom(t, target)) : source.flags & 117964800 ? isTypeDerivedFrom(getBaseConstraintOfType(source) || unknownType, target) : isEmptyAnonymousObjectType(target) ? !!(source.flags & (1048576 | 131072)) : target === globalObjectType ? !!(source.flags & (1048576 | 131072)) && !isEmptyAnonymousObjectType(source) : target === globalFunctionType ? !!(source.flags & 1048576) && isFunctionObjectType(source) : hasBaseType(source, getTargetType(target)) || isArrayType(target) && !isReadonlyArrayType(target) && isTypeDerivedFrom(source, globalReadonlyArrayType); } function isTypeComparableTo(source, target) { return isTypeRelatedTo(source, target, comparableRelation); } function areTypesComparable(type1, type2) { return isTypeComparableTo(type1, type2) || isTypeComparableTo(type2, type1); } function checkTypeAssignableTo(source, target, errorNode, headMessage, containingMessageChain, errorOutputObject) { return checkTypeRelatedTo(source, target, assignableRelation, errorNode, headMessage, containingMessageChain, errorOutputObject); } function checkTypeAssignableToAndOptionallyElaborate(source, target, errorNode, expr, headMessage, containingMessageChain) { return checkTypeRelatedToAndOptionallyElaborate(source, target, assignableRelation, errorNode, expr, headMessage, containingMessageChain, undefined); } function checkTypeRelatedToAndOptionallyElaborate(source, target, relation, errorNode, expr, headMessage, containingMessageChain, errorOutputContainer) { if (isTypeRelatedTo(source, target, relation)) return true; if (!errorNode || !elaborateError(expr, source, target, relation, headMessage, containingMessageChain, errorOutputContainer)) { return checkTypeRelatedTo(source, target, relation, errorNode, headMessage, containingMessageChain, errorOutputContainer); } return false; } function isOrHasGenericConditional(type) { return !!(type.flags & 67108864 || type.flags & 268435456 && some(type.types, isOrHasGenericConditional)); } function elaborateError(node, source, target, relation, headMessage, containingMessageChain, errorOutputContainer) { if (!node || isOrHasGenericConditional(target)) return false; if (!checkTypeRelatedTo(source, target, relation, undefined) && elaborateDidYouMeanToCallOrConstruct(node, source, target, relation, headMessage, containingMessageChain, errorOutputContainer)) { return true; } switch (node.kind) { case 235: if (!isConstAssertion(node)) { break; } case 295: case 218: return elaborateError(node.expression, source, target, relation, headMessage, containingMessageChain, errorOutputContainer); case 227: switch (node.operatorToken.kind) { case 64: case 28: return elaborateError(node.right, source, target, relation, headMessage, containingMessageChain, errorOutputContainer); } break; case 211: return elaborateObjectLiteral(node, source, target, relation, containingMessageChain, errorOutputContainer); case 210: return elaborateArrayLiteral(node, source, target, relation, containingMessageChain, errorOutputContainer); case 293: return elaborateJsxComponents(node, source, target, relation, containingMessageChain, errorOutputContainer); case 220: return elaborateArrowFunction(node, source, target, relation, containingMessageChain, errorOutputContainer); } return false; } function elaborateDidYouMeanToCallOrConstruct(node, source, target, relation, headMessage, containingMessageChain, errorOutputContainer) { const callSignatures = getSignaturesOfType(source, 0); const constructSignatures = getSignaturesOfType(source, 1); for (const signatures of [constructSignatures, callSignatures]) { if (some(signatures, (s) => { const returnType = getReturnTypeOfSignature(s); return !(returnType.flags & (1 | 262144)) && checkTypeRelatedTo(returnType, target, relation, undefined); })) { const resultObj = errorOutputContainer || {}; checkTypeAssignableTo(source, target, node, headMessage, containingMessageChain, resultObj); const diagnostic = resultObj.errors[resultObj.errors.length - 1]; addRelatedInfo(diagnostic, createDiagnosticForNode(node, signatures === constructSignatures ? Diagnostics.Did_you_mean_to_use_new_with_this_expression : Diagnostics.Did_you_mean_to_call_this_expression)); return true; } } return false; } function elaborateArrowFunction(node, source, target, relation, containingMessageChain, errorOutputContainer) { if (isBlock(node.body)) { return false; } if (some(node.parameters, hasType)) { return false; } const sourceSig = getSingleCallSignature(source); if (!sourceSig) { return false; } const targetSignatures = getSignaturesOfType(target, 0); if (!length(targetSignatures)) { return false; } const returnExpression = node.body; const sourceReturn = getReturnTypeOfSignature(sourceSig); const targetReturn = getUnionType(map(targetSignatures, getReturnTypeOfSignature)); if (!checkTypeRelatedTo(sourceReturn, targetReturn, relation, undefined)) { const elaborated = returnExpression && elaborateError(returnExpression, sourceReturn, targetReturn, relation, undefined, containingMessageChain, errorOutputContainer); if (elaborated) { return elaborated; } const resultObj = errorOutputContainer || {}; checkTypeRelatedTo(sourceReturn, targetReturn, relation, returnExpression, undefined, containingMessageChain, resultObj); if (resultObj.errors) { if (target.symbol && length(target.symbol.declarations)) { addRelatedInfo(resultObj.errors[resultObj.errors.length - 1], createDiagnosticForNode(target.symbol.declarations[0], Diagnostics.The_expected_type_comes_from_the_return_type_of_this_signature)); } if ((getFunctionFlags(node) & 2) === 0 && !getTypeOfPropertyOfType(sourceReturn, "then") && checkTypeRelatedTo(createPromiseType(sourceReturn), targetReturn, relation, undefined)) { addRelatedInfo(resultObj.errors[resultObj.errors.length - 1], createDiagnosticForNode(node, Diagnostics.Did_you_mean_to_mark_this_function_as_async)); } return true; } } return false; } function getBestMatchIndexedAccessTypeOrUndefined(source, target, nameType) { const idx = getIndexedAccessTypeOrUndefined(target, nameType); if (idx) { return idx; } if (target.flags & 134217728) { const best = getBestMatchingType(source, target); if (best) { return getIndexedAccessTypeOrUndefined(best, nameType); } } } function checkExpressionForMutableLocationWithContextualType(next, sourcePropType) { pushContextualType(next, sourcePropType, false); const result = checkExpressionForMutableLocation(next, 1); popContextualType(); return result; } function elaborateElementwise(iterator, source, target, relation, containingMessageChain, errorOutputContainer) { let reportedError = false; for (const value of iterator) { const { errorNode: prop, innerExpression: next, nameType, errorMessage } = value; let targetPropType = getBestMatchIndexedAccessTypeOrUndefined(source, target, nameType); if (!targetPropType || targetPropType.flags & 33554432) continue; let sourcePropType = getIndexedAccessTypeOrUndefined(source, nameType); if (!sourcePropType) continue; const propName = getPropertyNameFromIndex(nameType, undefined); if (!checkTypeRelatedTo(sourcePropType, targetPropType, relation, undefined)) { const elaborated = next && elaborateError(next, sourcePropType, targetPropType, relation, undefined, containingMessageChain, errorOutputContainer); reportedError = true; if (!elaborated) { const resultObj = errorOutputContainer || {}; const specificSource = next ? checkExpressionForMutableLocationWithContextualType(next, sourcePropType) : sourcePropType; if (exactOptionalPropertyTypes && isExactOptionalPropertyMismatch(specificSource, targetPropType)) { const diag2 = createDiagnosticForNode(prop, Diagnostics.Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_type_of_the_target, typeToString(specificSource), typeToString(targetPropType)); diagnostics.add(diag2); resultObj.errors = [diag2]; } else { const targetIsOptional = !!(propName && (getPropertyOfType(target, propName) || unknownSymbol).flags & 16777216); const sourceIsOptional = !!(propName && (getPropertyOfType(source, propName) || unknownSymbol).flags & 16777216); targetPropType = removeMissingType(targetPropType, targetIsOptional); sourcePropType = removeMissingType(sourcePropType, targetIsOptional && sourceIsOptional); const result = checkTypeRelatedTo(specificSource, targetPropType, relation, prop, errorMessage, containingMessageChain, resultObj); if (result && specificSource !== sourcePropType) { checkTypeRelatedTo(sourcePropType, targetPropType, relation, prop, errorMessage, containingMessageChain, resultObj); } } if (resultObj.errors) { const reportedDiag = resultObj.errors[resultObj.errors.length - 1]; const propertyName = isTypeUsableAsPropertyName(nameType) ? getPropertyNameFromType(nameType) : undefined; const targetProp = propertyName !== undefined ? getPropertyOfType(target, propertyName) : undefined; let issuedElaboration = false; if (!targetProp) { const indexInfo = getApplicableIndexInfo(target, nameType); if (indexInfo && indexInfo.declaration && !host.isSourceFileDefaultLibrary(getSourceFileOfNode(indexInfo.declaration))) { issuedElaboration = true; addRelatedInfo(reportedDiag, createDiagnosticForNode(indexInfo.declaration, Diagnostics.The_expected_type_comes_from_this_index_signature)); } } if (!issuedElaboration && (targetProp && length(targetProp.declarations) || target.symbol && length(target.symbol.declarations))) { const targetNode = targetProp && length(targetProp.declarations) ? targetProp.declarations[0] : target.symbol.declarations[0]; if (!host.isSourceFileDefaultLibrary(getSourceFileOfNode(targetNode))) { addRelatedInfo(reportedDiag, createDiagnosticForNode(targetNode, Diagnostics.The_expected_type_comes_from_property_0_which_is_declared_here_on_type_1, propertyName && !(nameType.flags & 16384) ? unescapeLeadingUnderscores(propertyName) : typeToString(nameType), typeToString(target))); } } } } } } return reportedError; } function elaborateIterableOrArrayLikeTargetElementwise(iterator, source, target, relation, containingMessageChain, errorOutputContainer) { const tupleOrArrayLikeTargetParts = filterType(target, isArrayOrTupleLikeType); const nonTupleOrArrayLikeTargetParts = filterType(target, (t) => !isArrayOrTupleLikeType(t)); const iterationType = nonTupleOrArrayLikeTargetParts !== neverType ? getIterationTypeOfIterable(13, 0, nonTupleOrArrayLikeTargetParts, undefined) : undefined; let reportedError = false; for (let status = iterator.next();!status.done; status = iterator.next()) { const { errorNode: prop, innerExpression: next, nameType, errorMessage } = status.value; let targetPropType = iterationType; const targetIndexedPropType = tupleOrArrayLikeTargetParts !== neverType ? getBestMatchIndexedAccessTypeOrUndefined(source, tupleOrArrayLikeTargetParts, nameType) : undefined; if (targetIndexedPropType && !(targetIndexedPropType.flags & 33554432)) { targetPropType = iterationType ? getUnionType([iterationType, targetIndexedPropType]) : targetIndexedPropType; } if (!targetPropType) continue; let sourcePropType = getIndexedAccessTypeOrUndefined(source, nameType); if (!sourcePropType) continue; const propName = getPropertyNameFromIndex(nameType, undefined); if (!checkTypeRelatedTo(sourcePropType, targetPropType, relation, undefined)) { const elaborated = next && elaborateError(next, sourcePropType, targetPropType, relation, undefined, containingMessageChain, errorOutputContainer); reportedError = true; if (!elaborated) { const resultObj = errorOutputContainer || {}; const specificSource = next ? checkExpressionForMutableLocationWithContextualType(next, sourcePropType) : sourcePropType; if (exactOptionalPropertyTypes && isExactOptionalPropertyMismatch(specificSource, targetPropType)) { const diag2 = createDiagnosticForNode(prop, Diagnostics.Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_type_of_the_target, typeToString(specificSource), typeToString(targetPropType)); diagnostics.add(diag2); resultObj.errors = [diag2]; } else { const targetIsOptional = !!(propName && (getPropertyOfType(tupleOrArrayLikeTargetParts, propName) || unknownSymbol).flags & 16777216); const sourceIsOptional = !!(propName && (getPropertyOfType(source, propName) || unknownSymbol).flags & 16777216); targetPropType = removeMissingType(targetPropType, targetIsOptional); sourcePropType = removeMissingType(sourcePropType, targetIsOptional && sourceIsOptional); const result = checkTypeRelatedTo(specificSource, targetPropType, relation, prop, errorMessage, containingMessageChain, resultObj); if (result && specificSource !== sourcePropType) { checkTypeRelatedTo(sourcePropType, targetPropType, relation, prop, errorMessage, containingMessageChain, resultObj); } } } } } return reportedError; } function* generateJsxAttributes(node) { if (!length(node.properties)) return; for (const prop of node.properties) { if (isJsxSpreadAttribute(prop) || isHyphenatedJsxName(getTextOfJsxAttributeName(prop.name))) continue; yield { errorNode: prop.name, innerExpression: prop.initializer, nameType: getStringLiteralType(getTextOfJsxAttributeName(prop.name)) }; } } function* generateJsxChildren(node, getInvalidTextDiagnostic) { if (!length(node.children)) return; let memberOffset = 0; for (let i = 0;i < node.children.length; i++) { const child = node.children[i]; const nameType = getNumberLiteralType(i - memberOffset); const elem = getElaborationElementForJsxChild(child, nameType, getInvalidTextDiagnostic); if (elem) { yield elem; } else { memberOffset++; } } } function getElaborationElementForJsxChild(child, nameType, getInvalidTextDiagnostic) { switch (child.kind) { case 295: return { errorNode: child, innerExpression: child.expression, nameType }; case 12: if (child.containsOnlyTriviaWhiteSpaces) { break; } return { errorNode: child, innerExpression: undefined, nameType, errorMessage: getInvalidTextDiagnostic() }; case 285: case 286: case 289: return { errorNode: child, innerExpression: child, nameType }; default: return Debug.assertNever(child, "Found invalid jsx child"); } } function elaborateJsxComponents(node, source, target, relation, containingMessageChain, errorOutputContainer) { let result = elaborateElementwise(generateJsxAttributes(node), source, target, relation, containingMessageChain, errorOutputContainer); let invalidTextDiagnostic; if (isJsxOpeningElement(node.parent) && isJsxElement(node.parent.parent)) { const containingElement = node.parent.parent; const childPropName = getJsxElementChildrenPropertyName(getJsxNamespaceAt(node)); const childrenPropName = childPropName === undefined ? "children" : unescapeLeadingUnderscores(childPropName); const childrenNameType = getStringLiteralType(childrenPropName); const childrenTargetType = getIndexedAccessType(target, childrenNameType); const validChildren = getSemanticJsxChildren(containingElement.children); if (!length(validChildren)) { return result; } const moreThanOneRealChildren = length(validChildren) > 1; let arrayLikeTargetParts; let nonArrayLikeTargetParts; const iterableType = getGlobalIterableType(false); if (iterableType !== emptyGenericType) { const anyIterable = createIterableType(anyType); arrayLikeTargetParts = filterType(childrenTargetType, (t) => isTypeAssignableTo(t, anyIterable)); nonArrayLikeTargetParts = filterType(childrenTargetType, (t) => !isTypeAssignableTo(t, anyIterable)); } else { arrayLikeTargetParts = filterType(childrenTargetType, isArrayOrTupleLikeType); nonArrayLikeTargetParts = filterType(childrenTargetType, (t) => !isArrayOrTupleLikeType(t)); } if (moreThanOneRealChildren) { if (arrayLikeTargetParts !== neverType) { const realSource = createTupleType(checkJsxChildren(containingElement, 0)); const children = generateJsxChildren(containingElement, getInvalidTextualChildDiagnostic); result = elaborateIterableOrArrayLikeTargetElementwise(children, realSource, arrayLikeTargetParts, relation, containingMessageChain, errorOutputContainer) || result; } else if (!isTypeRelatedTo(getIndexedAccessType(source, childrenNameType), childrenTargetType, relation)) { result = true; const diag2 = error2(containingElement.openingElement.tagName, Diagnostics.This_JSX_tag_s_0_prop_expects_a_single_child_of_type_1_but_multiple_children_were_provided, childrenPropName, typeToString(childrenTargetType)); if (errorOutputContainer && errorOutputContainer.skipLogging) { (errorOutputContainer.errors || (errorOutputContainer.errors = [])).push(diag2); } } } else { if (nonArrayLikeTargetParts !== neverType) { const child = validChildren[0]; const elem = getElaborationElementForJsxChild(child, childrenNameType, getInvalidTextualChildDiagnostic); if (elem) { result = elaborateElementwise(function* () { yield elem; }(), source, target, relation, containingMessageChain, errorOutputContainer) || result; } } else if (!isTypeRelatedTo(getIndexedAccessType(source, childrenNameType), childrenTargetType, relation)) { result = true; const diag2 = error2(containingElement.openingElement.tagName, Diagnostics.This_JSX_tag_s_0_prop_expects_type_1_which_requires_multiple_children_but_only_a_single_child_was_provided, childrenPropName, typeToString(childrenTargetType)); if (errorOutputContainer && errorOutputContainer.skipLogging) { (errorOutputContainer.errors || (errorOutputContainer.errors = [])).push(diag2); } } } } return result; function getInvalidTextualChildDiagnostic() { if (!invalidTextDiagnostic) { const tagNameText = getTextOfNode(node.parent.tagName); const childPropName = getJsxElementChildrenPropertyName(getJsxNamespaceAt(node)); const childrenPropName = childPropName === undefined ? "children" : unescapeLeadingUnderscores(childPropName); const childrenTargetType = getIndexedAccessType(target, getStringLiteralType(childrenPropName)); const diagnostic = Diagnostics._0_components_don_t_accept_text_as_child_elements_Text_in_JSX_has_the_type_string_but_the_expected_type_of_1_is_2; invalidTextDiagnostic = { ...diagnostic, key: "!!ALREADY FORMATTED!!", message: formatMessage(diagnostic, tagNameText, childrenPropName, typeToString(childrenTargetType)) }; } return invalidTextDiagnostic; } } function* generateLimitedTupleElements(node, target) { const len = length(node.elements); if (!len) return; for (let i = 0;i < len; i++) { if (isTupleLikeType(target) && !getPropertyOfType(target, "" + i)) continue; const elem = node.elements[i]; if (isOmittedExpression(elem)) continue; const nameType = getNumberLiteralType(i); const checkNode = getEffectiveCheckNode(elem); yield { errorNode: checkNode, innerExpression: checkNode, nameType }; } } function elaborateArrayLiteral(node, source, target, relation, containingMessageChain, errorOutputContainer) { if (target.flags & (12713980 | 262144)) return false; if (isTupleLikeType(source)) { return elaborateElementwise(generateLimitedTupleElements(node, target), source, target, relation, containingMessageChain, errorOutputContainer); } pushContextualType(node, target, false); const tupleizedType = checkArrayLiteral(node, 1, true); popContextualType(); if (isTupleLikeType(tupleizedType)) { return elaborateElementwise(generateLimitedTupleElements(node, target), tupleizedType, target, relation, containingMessageChain, errorOutputContainer); } return false; } function* generateObjectLiteralElements(node) { if (!length(node.properties)) return; for (const prop of node.properties) { if (isSpreadAssignment(prop)) continue; const type = getLiteralTypeFromProperty(getSymbolOfDeclaration(prop), 19456); if (!type || type.flags & 262144) { continue; } switch (prop.kind) { case 179: case 178: case 175: case 305: yield { errorNode: prop.name, innerExpression: undefined, nameType: type }; break; case 304: yield { errorNode: prop.name, innerExpression: prop.initializer, nameType: type, errorMessage: isComputedNonLiteralName(prop.name) ? Diagnostics.Type_of_computed_property_s_value_is_0_which_is_not_assignable_to_type_1 : undefined }; break; default: Debug.assertNever(prop); } } } function elaborateObjectLiteral(node, source, target, relation, containingMessageChain, errorOutputContainer) { if (target.flags & (12713980 | 262144)) return false; return elaborateElementwise(generateObjectLiteralElements(node), source, target, relation, containingMessageChain, errorOutputContainer); } function checkTypeComparableTo(source, target, errorNode, headMessage, containingMessageChain) { return checkTypeRelatedTo(source, target, comparableRelation, errorNode, headMessage, containingMessageChain); } function isSignatureAssignableTo(source, target, ignoreReturnTypes) { return compareSignaturesRelated(source, target, ignoreReturnTypes ? 4 : 0, false, undefined, undefined, compareTypesAssignable, undefined) !== 0; } function isTopSignature(s) { if (!s.typeParameters && (!s.thisParameter || isTypeAny(getTypeOfParameter(s.thisParameter))) && s.parameters.length === 1 && signatureHasRestParameter(s)) { const paramType = getTypeOfParameter(s.parameters[0]); const restType = isArrayType(paramType) ? getTypeArguments(paramType)[0] : paramType; return !!(restType.flags & (1 | 262144) && getReturnTypeOfSignature(s).flags & 3); } return false; } function compareSignaturesRelated(source, target, checkMode, reportErrors2, errorReporter, incompatibleErrorReporter, compareTypes2, reportUnreliableMarkers) { if (source === target) { return -1; } if (!(checkMode & 16 && isTopSignature(source)) && isTopSignature(target)) { return -1; } if (checkMode & 16 && isTopSignature(source) && !isTopSignature(target)) { return 0; } const targetCount = getParameterCount(target); const sourceHasMoreParameters = !hasEffectiveRestParameter(target) && (checkMode & 8 ? hasEffectiveRestParameter(source) || getParameterCount(source) > targetCount : getMinArgumentCount(source) > targetCount); if (sourceHasMoreParameters) { if (reportErrors2 && !(checkMode & 8)) { errorReporter(Diagnostics.Target_signature_provides_too_few_arguments_Expected_0_or_more_but_got_1, getMinArgumentCount(source), targetCount); } return 0; } if (source.typeParameters && source.typeParameters !== target.typeParameters) { target = getCanonicalSignature(target); source = instantiateSignatureInContextOf(source, target, undefined, compareTypes2); } const sourceCount = getParameterCount(source); const sourceRestType = getNonArrayRestType(source); const targetRestType = getNonArrayRestType(target); if (sourceRestType || targetRestType) { instantiateType(sourceRestType || targetRestType, reportUnreliableMarkers); } const kind = target.declaration ? target.declaration.kind : 0; const strictVariance = !(checkMode & 3) && strictFunctionTypes && kind !== 175 && kind !== 174 && kind !== 177; let result = -1; const sourceThisType = getThisTypeOfSignature(source); if (sourceThisType && sourceThisType !== voidType) { const targetThisType = getThisTypeOfSignature(target); if (targetThisType) { const related = !strictVariance && compareTypes2(sourceThisType, targetThisType, false) || compareTypes2(targetThisType, sourceThisType, reportErrors2); if (!related) { if (reportErrors2) { errorReporter(Diagnostics.The_this_types_of_each_signature_are_incompatible); } return 0; } result &= related; } } const paramCount = sourceRestType || targetRestType ? Math.min(sourceCount, targetCount) : Math.max(sourceCount, targetCount); const restIndex = sourceRestType || targetRestType ? paramCount - 1 : -1; for (let i = 0;i < paramCount; i++) { const sourceType = i === restIndex ? getRestOrAnyTypeAtPosition(source, i) : tryGetTypeAtPosition(source, i); const targetType = i === restIndex ? getRestOrAnyTypeAtPosition(target, i) : tryGetTypeAtPosition(target, i); if (sourceType && targetType && (sourceType !== targetType || checkMode & 8)) { const sourceSig = checkMode & 3 || isInstantiatedGenericParameter(source, i) ? undefined : getSingleCallSignature(getNonNullableType(sourceType)); const targetSig = checkMode & 3 || isInstantiatedGenericParameter(target, i) ? undefined : getSingleCallSignature(getNonNullableType(targetType)); const callbacks = sourceSig && targetSig && !getTypePredicateOfSignature(sourceSig) && !getTypePredicateOfSignature(targetSig) && getTypeFacts(sourceType, 50331648) === getTypeFacts(targetType, 50331648); let related = callbacks ? compareSignaturesRelated(targetSig, sourceSig, checkMode & 8 | (strictVariance ? 2 : 1), reportErrors2, errorReporter, incompatibleErrorReporter, compareTypes2, reportUnreliableMarkers) : !(checkMode & 3) && !strictVariance && compareTypes2(sourceType, targetType, false) || compareTypes2(targetType, sourceType, reportErrors2); if (related && checkMode & 8 && i >= getMinArgumentCount(source) && i < getMinArgumentCount(target) && compareTypes2(sourceType, targetType, false)) { related = 0; } if (!related) { if (reportErrors2) { errorReporter(Diagnostics.Types_of_parameters_0_and_1_are_incompatible, unescapeLeadingUnderscores(getParameterNameAtPosition(source, i)), unescapeLeadingUnderscores(getParameterNameAtPosition(target, i))); } return 0; } result &= related; } } if (!(checkMode & 4)) { const targetReturnType = isResolvingReturnTypeOfSignature(target) ? anyType : target.declaration && isJSConstructor(target.declaration) ? getDeclaredTypeOfClassOrInterface(getMergedSymbol(target.declaration.symbol)) : getReturnTypeOfSignature(target); if (targetReturnType === voidType || targetReturnType === anyType) { return result; } const sourceReturnType = isResolvingReturnTypeOfSignature(source) ? anyType : source.declaration && isJSConstructor(source.declaration) ? getDeclaredTypeOfClassOrInterface(getMergedSymbol(source.declaration.symbol)) : getReturnTypeOfSignature(source); const targetTypePredicate = getTypePredicateOfSignature(target); if (targetTypePredicate) { const sourceTypePredicate = getTypePredicateOfSignature(source); if (sourceTypePredicate) { result &= compareTypePredicateRelatedTo(sourceTypePredicate, targetTypePredicate, reportErrors2, errorReporter, compareTypes2); } else if (isIdentifierTypePredicate(targetTypePredicate) || isThisTypePredicate(targetTypePredicate)) { if (reportErrors2) { errorReporter(Diagnostics.Signature_0_must_be_a_type_predicate, signatureToString(source)); } return 0; } } else { result &= checkMode & 1 && compareTypes2(targetReturnType, sourceReturnType, false) || compareTypes2(sourceReturnType, targetReturnType, reportErrors2); if (!result && reportErrors2 && incompatibleErrorReporter) { incompatibleErrorReporter(sourceReturnType, targetReturnType); } } } return result; } function compareTypePredicateRelatedTo(source, target, reportErrors2, errorReporter, compareTypes2) { if (source.kind !== target.kind) { if (reportErrors2) { errorReporter(Diagnostics.A_this_based_type_guard_is_not_compatible_with_a_parameter_based_type_guard); errorReporter(Diagnostics.Type_predicate_0_is_not_assignable_to_1, typePredicateToString(source), typePredicateToString(target)); } return 0; } if (source.kind === 1 || source.kind === 3) { if (source.parameterIndex !== target.parameterIndex) { if (reportErrors2) { errorReporter(Diagnostics.Parameter_0_is_not_in_the_same_position_as_parameter_1, source.parameterName, target.parameterName); errorReporter(Diagnostics.Type_predicate_0_is_not_assignable_to_1, typePredicateToString(source), typePredicateToString(target)); } return 0; } } const related = source.type === target.type ? -1 : source.type && target.type ? compareTypes2(source.type, target.type, reportErrors2) : 0; if (related === 0 && reportErrors2) { errorReporter(Diagnostics.Type_predicate_0_is_not_assignable_to_1, typePredicateToString(source), typePredicateToString(target)); } return related; } function isImplementationCompatibleWithOverload(implementation, overload) { const erasedSource = getErasedSignature(implementation); const erasedTarget = getErasedSignature(overload); const sourceReturnType = getReturnTypeOfSignature(erasedSource); const targetReturnType = getReturnTypeOfSignature(erasedTarget); if (targetReturnType === voidType || isTypeRelatedTo(targetReturnType, sourceReturnType, assignableRelation) || isTypeRelatedTo(sourceReturnType, targetReturnType, assignableRelation)) { return isSignatureAssignableTo(erasedSource, erasedTarget, true); } return false; } function isEmptyResolvedType(t) { return t !== anyFunctionType && t.properties.length === 0 && t.callSignatures.length === 0 && t.constructSignatures.length === 0 && t.indexInfos.length === 0; } function isEmptyObjectType(type) { return type.flags & 1048576 ? !isGenericMappedType(type) && isEmptyResolvedType(resolveStructuredTypeMembers(type)) : type.flags & 131072 ? true : type.flags & 134217728 ? some(type.types, isEmptyObjectType) : type.flags & 268435456 ? every(type.types, isEmptyObjectType) : false; } function isEmptyAnonymousObjectType(type) { return !!(getObjectFlags(type) & 16 && (type.members && isEmptyResolvedType(type) || type.symbol && type.symbol.flags & 2048 && getMembersOfSymbol(type.symbol).size === 0)); } function isUnknownLikeUnionType(type) { if (strictNullChecks && type.flags & 134217728) { if (!(type.objectFlags & 33554432)) { const types = type.types; type.objectFlags |= 33554432 | (types.length >= 3 && types[0].flags & 4 && types[1].flags & 8 && some(types, isEmptyAnonymousObjectType) ? 67108864 : 0); } return !!(type.objectFlags & 67108864); } return false; } function containsUndefinedType(type) { return !!((type.flags & 134217728 ? type.types[0] : type).flags & 4); } function containsNonMissingUndefinedType(type) { const candidate = type.flags & 134217728 ? type.types[0] : type; return !!(candidate.flags & 4) && candidate !== missingType; } function isStringIndexSignatureOnlyType(type) { return type.flags & 1048576 && !isGenericMappedType(type) && getPropertiesOfType(type).length === 0 && getIndexInfosOfType(type).length === 1 && !!getIndexInfoOfType(type, stringType) || type.flags & 402653184 && every(type.types, isStringIndexSignatureOnlyType) || false; } function isEnumTypeRelatedTo(source, target, errorReporter) { const sourceSymbol = source.flags & 8 ? getParentOfSymbol(source) : source; const targetSymbol = target.flags & 8 ? getParentOfSymbol(target) : target; if (sourceSymbol === targetSymbol) { return true; } if (sourceSymbol.escapedName !== targetSymbol.escapedName || !(sourceSymbol.flags & 256) || !(targetSymbol.flags & 256)) { return false; } const id = getSymbolId(sourceSymbol) + "," + getSymbolId(targetSymbol); const entry = enumRelation.get(id); if (entry !== undefined && !(entry & 2 && errorReporter)) { return !!(entry & 1); } const targetEnumType = getTypeOfSymbol(targetSymbol); for (const sourceProperty of getPropertiesOfType(getTypeOfSymbol(sourceSymbol))) { if (sourceProperty.flags & 8) { const targetProperty = getPropertyOfType(targetEnumType, sourceProperty.escapedName); if (!targetProperty || !(targetProperty.flags & 8)) { if (errorReporter) { errorReporter(Diagnostics.Property_0_is_missing_in_type_1, symbolName(sourceProperty), typeToString(getDeclaredTypeOfSymbol(targetSymbol), undefined, 64)); } enumRelation.set(id, 2); return false; } const sourceValue = getEnumMemberValue(getDeclarationOfKind(sourceProperty, 307)).value; const targetValue = getEnumMemberValue(getDeclarationOfKind(targetProperty, 307)).value; if (sourceValue !== targetValue) { const sourceIsString = typeof sourceValue === "string"; const targetIsString = typeof targetValue === "string"; if (sourceValue !== undefined && targetValue !== undefined) { if (errorReporter) { const escapedSource = sourceIsString ? `"${escapeString(sourceValue)}"` : sourceValue; const escapedTarget = targetIsString ? `"${escapeString(targetValue)}"` : targetValue; errorReporter(Diagnostics.Each_declaration_of_0_1_differs_in_its_value_where_2_was_expected_but_3_was_given, symbolName(targetSymbol), symbolName(targetProperty), escapedTarget, escapedSource); } enumRelation.set(id, 2); return false; } if (sourceIsString || targetIsString) { if (errorReporter) { const knownStringValue = sourceValue ?? targetValue; Debug.assert(typeof knownStringValue === "string"); const escapedValue = `"${escapeString(knownStringValue)}"`; errorReporter(Diagnostics.One_value_of_0_1_is_the_string_2_and_the_other_is_assumed_to_be_an_unknown_numeric_value, symbolName(targetSymbol), symbolName(targetProperty), escapedValue); } enumRelation.set(id, 2); return false; } } } } enumRelation.set(id, 1); return true; } function isSimpleTypeRelatedTo(source, target, relation, errorReporter) { const s = source.flags; const t = target.flags; if (t & 1 || s & 262144 || source === wildcardType) return true; if (t & 2 && !(relation === strictSubtypeRelation && s & 1)) return true; if (t & 262144) return false; if (s & 12583968 && t & 32) return true; if (s & 1024 && s & 32768 && t & 1024 && !(t & 32768) && source.value === target.value) return true; if (s & 67648 && t & 64) return true; if (s & 2048 && s & 32768 && t & 2048 && !(t & 32768) && source.value === target.value) return true; if (s & 4224 && t & 128) return true; if (s & 8448 && t & 256) return true; if (s & 16896 && t & 512) return true; if (s & 65536 && t & 65536 && source.symbol.escapedName === target.symbol.escapedName && isEnumTypeRelatedTo(source.symbol, target.symbol, errorReporter)) return true; if (s & 32768 && t & 32768) { if (s & 134217728 && t & 134217728 && isEnumTypeRelatedTo(source.symbol, target.symbol, errorReporter)) return true; if (s & 15360 && t & 15360 && source.value === target.value && isEnumTypeRelatedTo(source.symbol, target.symbol, errorReporter)) return true; } if (s & 4 && (!strictNullChecks && !(t & 402653184) || t & (4 | 16))) return true; if (s & 8 && (!strictNullChecks && !(t & 402653184) || t & 8)) return true; if (s & 1048576 && t & 131072 && !(relation === strictSubtypeRelation && isEmptyAnonymousObjectType(source) && !(getObjectFlags(source) & 8192))) return true; if (relation === assignableRelation || relation === comparableRelation) { if (s & 1) return true; if (s & 64 && (t & 65536 || t & 2048 && t & 32768)) return true; if (s & 2048 && !(s & 32768) && (t & 65536 || t & 2048 && t & 32768 && source.value === target.value)) return true; if (isUnknownLikeUnionType(target)) return true; } return false; } function isTypeRelatedTo(source, target, relation) { if (isFreshLiteralType(source)) { source = source.regularType; } if (isFreshLiteralType(target)) { target = target.regularType; } if (source === target) { return true; } if (relation !== identityRelation) { if (relation === comparableRelation && !(target.flags & 262144) && isSimpleTypeRelatedTo(target, source, relation) || isSimpleTypeRelatedTo(source, target, relation)) { return true; } } else if (!((source.flags | target.flags) & (402653184 | 33554432 | 67108864 | 16777216))) { if (source.flags !== target.flags) return false; if (source.flags & 394239) return true; } if (source.flags & 1048576 && target.flags & 1048576) { const related = relation.get(getRelationKey(source, target, 0, relation, false)); if (related !== undefined) { return !!(related & 1); } } if (source.flags & 536346624 || target.flags & 536346624) { return checkTypeRelatedTo(source, target, relation, undefined); } return false; } function isIgnoredJsxProperty(source, sourceProp) { return getObjectFlags(source) & 2048 && isHyphenatedJsxName(sourceProp.escapedName); } function getNormalizedType(type, writing) { while (true) { const t = isFreshLiteralType(type) ? type.regularType : isGenericTupleType(type) ? getNormalizedTupleType(type, writing) : getObjectFlags(type) & 4 ? type.node ? createTypeReference(type.target, getTypeArguments(type)) : getSingleBaseForNonAugmentingSubtype(type) || type : type.flags & 402653184 ? getNormalizedUnionOrIntersectionType(type, writing) : type.flags & 16777216 ? writing ? type.baseType : getSubstitutionIntersection(type) : type.flags & 102760448 ? getSimplifiedType(type, writing) : type; if (t === type) return t; type = t; } } function getNormalizedUnionOrIntersectionType(type, writing) { const reduced = getReducedType(type); if (reduced !== type) { return reduced; } if (type.flags & 268435456 && shouldNormalizeIntersection(type)) { const normalizedTypes = sameMap(type.types, (t) => getNormalizedType(t, writing)); if (normalizedTypes !== type.types) { return getIntersectionType(normalizedTypes); } } return type; } function shouldNormalizeIntersection(type) { let hasInstantiable = false; let hasNullableOrEmpty = false; for (const t of type.types) { hasInstantiable || (hasInstantiable = !!(t.flags & 132644864)); hasNullableOrEmpty || (hasNullableOrEmpty = !!(t.flags & 12) || isEmptyAnonymousObjectType(t)); if (hasInstantiable && hasNullableOrEmpty) return true; } return false; } function getNormalizedTupleType(type, writing) { const elements = getElementTypes(type); const normalizedElements = sameMap(elements, (t) => t.flags & 102760448 ? getSimplifiedType(t, writing) : t); return elements !== normalizedElements ? createNormalizedTupleType(type.target, normalizedElements) : type; } function checkTypeRelatedTo(source, target, relation, errorNode, headMessage, containingMessageChain, errorOutputContainer) { var _a; let errorInfo; let relatedInfo; let maybeKeys; let maybeKeysSet; let sourceStack; let targetStack; let maybeCount = 0; let sourceDepth = 0; let targetDepth = 0; let expandingFlags = 0; let overflow = false; let overrideNextErrorInfo = 0; let skipParentCounter = 0; let lastSkippedInfo; let incompatibleStack; let relationCount = 16000000 - relation.size >> 3; Debug.assert(relation !== identityRelation || !errorNode, "no error reporting in identity checking"); const result = isRelatedTo(source, target, 3, !!errorNode, headMessage); if (incompatibleStack) { reportIncompatibleStack(); } if (overflow) { const id = getRelationKey(source, target, 0, relation, false); relation.set(id, 2 | (relationCount <= 0 ? 32 : 64)); (_a = tracing) == null || _a.instant(tracing.Phase.CheckTypes, "checkTypeRelatedTo_DepthLimit", { sourceId: source.id, targetId: target.id, depth: sourceDepth, targetDepth }); const message = relationCount <= 0 ? Diagnostics.Excessive_complexity_comparing_types_0_and_1 : Diagnostics.Excessive_stack_depth_comparing_types_0_and_1; const diag2 = error2(errorNode || currentNode, message, typeToString(source), typeToString(target)); if (errorOutputContainer) { (errorOutputContainer.errors || (errorOutputContainer.errors = [])).push(diag2); } } else if (errorInfo) { if (containingMessageChain) { const chain = containingMessageChain(); if (chain) { concatenateDiagnosticMessageChains(chain, errorInfo); errorInfo = chain; } } let relatedInformation; if (headMessage && errorNode && !result && source.symbol) { const links = getSymbolLinks(source.symbol); if (links.originatingImport && !isImportCall(links.originatingImport)) { const helpfulRetry = checkTypeRelatedTo(getTypeOfSymbol(links.target), target, relation, undefined); if (helpfulRetry) { const diag3 = createDiagnosticForNode(links.originatingImport, Diagnostics.Type_originates_at_this_import_A_namespace_style_import_cannot_be_called_or_constructed_and_will_cause_a_failure_at_runtime_Consider_using_a_default_import_or_import_require_here_instead); relatedInformation = append(relatedInformation, diag3); } } } const diag2 = createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(errorNode), errorNode, errorInfo, relatedInformation); if (relatedInfo) { addRelatedInfo(diag2, ...relatedInfo); } if (errorOutputContainer) { (errorOutputContainer.errors || (errorOutputContainer.errors = [])).push(diag2); } if (!errorOutputContainer || !errorOutputContainer.skipLogging) { diagnostics.add(diag2); } } if (errorNode && errorOutputContainer && errorOutputContainer.skipLogging && result === 0) { Debug.assert(!!errorOutputContainer.errors, "missed opportunity to interact with error."); } return result !== 0; function resetErrorInfo(saved) { errorInfo = saved.errorInfo; lastSkippedInfo = saved.lastSkippedInfo; incompatibleStack = saved.incompatibleStack; overrideNextErrorInfo = saved.overrideNextErrorInfo; skipParentCounter = saved.skipParentCounter; relatedInfo = saved.relatedInfo; } function captureErrorCalculationState() { return { errorInfo, lastSkippedInfo, incompatibleStack: incompatibleStack == null ? undefined : incompatibleStack.slice(), overrideNextErrorInfo, skipParentCounter, relatedInfo: relatedInfo == null ? undefined : relatedInfo.slice() }; } function reportIncompatibleError(message, ...args) { overrideNextErrorInfo++; lastSkippedInfo = undefined; (incompatibleStack || (incompatibleStack = [])).push([message, ...args]); } function reportIncompatibleStack() { const stack = incompatibleStack || []; incompatibleStack = undefined; const info = lastSkippedInfo; lastSkippedInfo = undefined; if (stack.length === 1) { reportError(...stack[0]); if (info) { reportRelationError(undefined, ...info); } return; } let path = ""; const secondaryRootErrors = []; while (stack.length) { const [msg, ...args] = stack.pop(); switch (msg.code) { case Diagnostics.Types_of_property_0_are_incompatible.code: { if (path.indexOf("new ") === 0) { path = `(${path})`; } const str = "" + args[0]; if (path.length === 0) { path = `${str}`; } else if (isIdentifierText(str, getEmitScriptTarget(compilerOptions))) { path = `${path}.${str}`; } else if (str[0] === "[" && str[str.length - 1] === "]") { path = `${path}${str}`; } else { path = `${path}[${str}]`; } break; } case Diagnostics.Call_signature_return_types_0_and_1_are_incompatible.code: case Diagnostics.Construct_signature_return_types_0_and_1_are_incompatible.code: case Diagnostics.Call_signatures_with_no_arguments_have_incompatible_return_types_0_and_1.code: case Diagnostics.Construct_signatures_with_no_arguments_have_incompatible_return_types_0_and_1.code: { if (path.length === 0) { let mappedMsg = msg; if (msg.code === Diagnostics.Call_signatures_with_no_arguments_have_incompatible_return_types_0_and_1.code) { mappedMsg = Diagnostics.Call_signature_return_types_0_and_1_are_incompatible; } else if (msg.code === Diagnostics.Construct_signatures_with_no_arguments_have_incompatible_return_types_0_and_1.code) { mappedMsg = Diagnostics.Construct_signature_return_types_0_and_1_are_incompatible; } secondaryRootErrors.unshift([mappedMsg, args[0], args[1]]); } else { const prefix = msg.code === Diagnostics.Construct_signature_return_types_0_and_1_are_incompatible.code || msg.code === Diagnostics.Construct_signatures_with_no_arguments_have_incompatible_return_types_0_and_1.code ? "new " : ""; const params = msg.code === Diagnostics.Call_signatures_with_no_arguments_have_incompatible_return_types_0_and_1.code || msg.code === Diagnostics.Construct_signatures_with_no_arguments_have_incompatible_return_types_0_and_1.code ? "" : "..."; path = `${prefix}${path}(${params})`; } break; } case Diagnostics.Type_at_position_0_in_source_is_not_compatible_with_type_at_position_1_in_target.code: { secondaryRootErrors.unshift([Diagnostics.Type_at_position_0_in_source_is_not_compatible_with_type_at_position_1_in_target, args[0], args[1]]); break; } case Diagnostics.Type_at_positions_0_through_1_in_source_is_not_compatible_with_type_at_position_2_in_target.code: { secondaryRootErrors.unshift([Diagnostics.Type_at_positions_0_through_1_in_source_is_not_compatible_with_type_at_position_2_in_target, args[0], args[1], args[2]]); break; } default: return Debug.fail(`Unhandled Diagnostic: ${msg.code}`); } } if (path) { reportError(path[path.length - 1] === ")" ? Diagnostics.The_types_returned_by_0_are_incompatible_between_these_types : Diagnostics.The_types_of_0_are_incompatible_between_these_types, path); } else { secondaryRootErrors.shift(); } for (const [msg, ...args] of secondaryRootErrors) { const originalValue = msg.elidedInCompatabilityPyramid; msg.elidedInCompatabilityPyramid = false; reportError(msg, ...args); msg.elidedInCompatabilityPyramid = originalValue; } if (info) { reportRelationError(undefined, ...info); } } function reportError(message, ...args) { Debug.assert(!!errorNode); if (incompatibleStack) reportIncompatibleStack(); if (message.elidedInCompatabilityPyramid) return; if (skipParentCounter === 0) { errorInfo = chainDiagnosticMessages(errorInfo, message, ...args); } else { skipParentCounter--; } } function reportParentSkippedError(message, ...args) { reportError(message, ...args); skipParentCounter++; } function associateRelatedInfo(info) { Debug.assert(!!errorInfo); if (!relatedInfo) { relatedInfo = [info]; } else { relatedInfo.push(info); } } function reportRelationError(message, source2, target2) { if (incompatibleStack) reportIncompatibleStack(); const [sourceType, targetType] = getTypeNamesForErrorDisplay(source2, target2); let generalizedSource = source2; let generalizedSourceType = sourceType; if (!(target2.flags & 262144) && isLiteralType(source2) && !typeCouldHaveTopLevelSingletonTypes(target2)) { generalizedSource = getBaseTypeOfLiteralType(source2); Debug.assert(!isTypeAssignableTo(generalizedSource, target2), "generalized source shouldn't be assignable"); generalizedSourceType = getTypeNameForErrorDisplay(generalizedSource); } const targetFlags = target2.flags & 33554432 && !(source2.flags & 33554432) ? target2.objectType.flags : target2.flags; if (targetFlags & 524288 && target2 !== markerSuperTypeForCheck && target2 !== markerSubTypeForCheck) { const constraint = getBaseConstraintOfType(target2); let needsOriginalSource; if (constraint && (isTypeAssignableTo(generalizedSource, constraint) || (needsOriginalSource = isTypeAssignableTo(source2, constraint)))) { reportError(Diagnostics._0_is_assignable_to_the_constraint_of_type_1_but_1_could_be_instantiated_with_a_different_subtype_of_constraint_2, needsOriginalSource ? sourceType : generalizedSourceType, targetType, typeToString(constraint)); } else { errorInfo = undefined; reportError(Diagnostics._0_could_be_instantiated_with_an_arbitrary_type_which_could_be_unrelated_to_1, targetType, generalizedSourceType); } } if (!message) { if (relation === comparableRelation) { message = Diagnostics.Type_0_is_not_comparable_to_type_1; } else if (sourceType === targetType) { message = Diagnostics.Type_0_is_not_assignable_to_type_1_Two_different_types_with_this_name_exist_but_they_are_unrelated; } else if (exactOptionalPropertyTypes && getExactOptionalUnassignableProperties(source2, target2).length) { message = Diagnostics.Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_types_of_the_target_s_properties; } else { if (source2.flags & 1024 && target2.flags & 134217728) { const suggestedType = getSuggestedTypeForNonexistentStringLiteralType(source2, target2); if (suggestedType) { reportError(Diagnostics.Type_0_is_not_assignable_to_type_1_Did_you_mean_2, generalizedSourceType, targetType, typeToString(suggestedType)); return; } } message = Diagnostics.Type_0_is_not_assignable_to_type_1; } } else if (message === Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1 && exactOptionalPropertyTypes && getExactOptionalUnassignableProperties(source2, target2).length) { message = Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_types_of_the_target_s_properties; } reportError(message, generalizedSourceType, targetType); } function tryElaborateErrorsForPrimitivesAndObjects(source2, target2) { const sourceType = symbolValueDeclarationIsContextSensitive(source2.symbol) ? typeToString(source2, source2.symbol.valueDeclaration) : typeToString(source2); const targetType = symbolValueDeclarationIsContextSensitive(target2.symbol) ? typeToString(target2, target2.symbol.valueDeclaration) : typeToString(target2); if (globalStringType === source2 && stringType === target2 || globalNumberType === source2 && numberType === target2 || globalBooleanType === source2 && booleanType === target2 || getGlobalESSymbolType() === source2 && esSymbolType === target2) { reportError(Diagnostics._0_is_a_primitive_but_1_is_a_wrapper_object_Prefer_using_0_when_possible, targetType, sourceType); } } function tryElaborateArrayLikeErrors(source2, target2, reportErrors2) { if (isTupleType(source2)) { if (source2.target.readonly && isMutableArrayOrTuple(target2)) { if (reportErrors2) { reportError(Diagnostics.The_type_0_is_readonly_and_cannot_be_assigned_to_the_mutable_type_1, typeToString(source2), typeToString(target2)); } return false; } return isArrayOrTupleType(target2); } if (isReadonlyArrayType(source2) && isMutableArrayOrTuple(target2)) { if (reportErrors2) { reportError(Diagnostics.The_type_0_is_readonly_and_cannot_be_assigned_to_the_mutable_type_1, typeToString(source2), typeToString(target2)); } return false; } if (isTupleType(target2)) { return isArrayType(source2); } return true; } function isRelatedToWorker(source2, target2, reportErrors2) { return isRelatedTo(source2, target2, 3, reportErrors2); } function isRelatedTo(originalSource, originalTarget, recursionFlags = 3, reportErrors2 = false, headMessage2, intersectionState = 0) { if (originalSource === originalTarget) return -1; if (originalSource.flags & 1048576 && originalTarget.flags & 12713980) { if (relation === comparableRelation && !(originalTarget.flags & 262144) && isSimpleTypeRelatedTo(originalTarget, originalSource, relation) || isSimpleTypeRelatedTo(originalSource, originalTarget, relation, reportErrors2 ? reportError : undefined)) { return -1; } if (reportErrors2) { reportErrorResults(originalSource, originalTarget, originalSource, originalTarget, headMessage2); } return 0; } const source2 = getNormalizedType(originalSource, false); let target2 = getNormalizedType(originalTarget, true); if (source2 === target2) return -1; if (relation === identityRelation) { if (source2.flags !== target2.flags) return 0; if (source2.flags & 394239) return -1; traceUnionsOrIntersectionsTooLarge(source2, target2); return recursiveTypeRelatedTo(source2, target2, false, 0, recursionFlags); } if (source2.flags & 524288 && getConstraintOfType(source2) === target2) { return -1; } if (source2.flags & 13893600 && target2.flags & 134217728) { const types = target2.types; const candidate = types.length === 2 && types[0].flags & 12 ? types[1] : types.length === 3 && types[0].flags & 12 && types[1].flags & 12 ? types[2] : undefined; if (candidate && !(candidate.flags & 12)) { target2 = getNormalizedType(candidate, true); if (source2 === target2) return -1; } } if (relation === comparableRelation && !(target2.flags & 262144) && isSimpleTypeRelatedTo(target2, source2, relation) || isSimpleTypeRelatedTo(source2, target2, relation, reportErrors2 ? reportError : undefined)) return -1; if (source2.flags & 536346624 || target2.flags & 536346624) { const isPerformingExcessPropertyChecks = !(intersectionState & 2) && (isObjectLiteralType2(source2) && getObjectFlags(source2) & 8192); if (isPerformingExcessPropertyChecks) { if (hasExcessProperties(source2, target2, reportErrors2)) { if (reportErrors2) { reportRelationError(headMessage2, source2, originalTarget.aliasSymbol ? originalTarget : target2); } return 0; } } const isPerformingCommonPropertyChecks = (relation !== comparableRelation || isUnitType(source2)) && !(intersectionState & 2) && source2.flags & (12713980 | 1048576 | 268435456) && source2 !== globalObjectType && target2.flags & (1048576 | 268435456) && isWeakType(target2) && (getPropertiesOfType(source2).length > 0 || typeHasCallOrConstructSignatures(source2)); const isComparingJsxAttributes = !!(getObjectFlags(source2) & 2048); if (isPerformingCommonPropertyChecks && !hasCommonProperties(source2, target2, isComparingJsxAttributes)) { if (reportErrors2) { const sourceString = typeToString(originalSource.aliasSymbol ? originalSource : source2); const targetString = typeToString(originalTarget.aliasSymbol ? originalTarget : target2); const calls = getSignaturesOfType(source2, 0); const constructs = getSignaturesOfType(source2, 1); if (calls.length > 0 && isRelatedTo(getReturnTypeOfSignature(calls[0]), target2, 1, false) || constructs.length > 0 && isRelatedTo(getReturnTypeOfSignature(constructs[0]), target2, 1, false)) { reportError(Diagnostics.Value_of_type_0_has_no_properties_in_common_with_type_1_Did_you_mean_to_call_it, sourceString, targetString); } else { reportError(Diagnostics.Type_0_has_no_properties_in_common_with_type_1, sourceString, targetString); } } return 0; } traceUnionsOrIntersectionsTooLarge(source2, target2); const skipCaching = source2.flags & 134217728 && source2.types.length < 4 && !(target2.flags & 134217728) || target2.flags & 134217728 && target2.types.length < 4 && !(source2.flags & 536346624); const result2 = skipCaching ? unionOrIntersectionRelatedTo(source2, target2, reportErrors2, intersectionState) : recursiveTypeRelatedTo(source2, target2, reportErrors2, intersectionState, recursionFlags); if (result2) { return result2; } } if (reportErrors2) { reportErrorResults(originalSource, originalTarget, source2, target2, headMessage2); } return 0; } function reportErrorResults(originalSource, originalTarget, source2, target2, headMessage2) { var _a2, _b; const sourceHasBase = !!getSingleBaseForNonAugmentingSubtype(originalSource); const targetHasBase = !!getSingleBaseForNonAugmentingSubtype(originalTarget); source2 = originalSource.aliasSymbol || sourceHasBase ? originalSource : source2; target2 = originalTarget.aliasSymbol || targetHasBase ? originalTarget : target2; let maybeSuppress = overrideNextErrorInfo > 0; if (maybeSuppress) { overrideNextErrorInfo--; } if (source2.flags & 1048576 && target2.flags & 1048576) { const currentError = errorInfo; tryElaborateArrayLikeErrors(source2, target2, true); if (errorInfo !== currentError) { maybeSuppress = !!errorInfo; } } if (source2.flags & 1048576 && target2.flags & 12713980) { tryElaborateErrorsForPrimitivesAndObjects(source2, target2); } else if (source2.symbol && source2.flags & 1048576 && globalObjectType === source2) { reportError(Diagnostics.The_Object_type_is_assignable_to_very_few_other_types_Did_you_mean_to_use_the_any_type_instead); } else if (getObjectFlags(source2) & 2048 && target2.flags & 268435456) { const targetTypes = target2.types; const intrinsicAttributes = getJsxType(JsxNames.IntrinsicAttributes, errorNode); const intrinsicClassAttributes = getJsxType(JsxNames.IntrinsicClassAttributes, errorNode); if (!isErrorType(intrinsicAttributes) && !isErrorType(intrinsicClassAttributes) && (contains(targetTypes, intrinsicAttributes) || contains(targetTypes, intrinsicClassAttributes))) { return; } } else { errorInfo = elaborateNeverIntersection(errorInfo, originalTarget); } if (!headMessage2 && maybeSuppress) { const savedErrorState = captureErrorCalculationState(); reportRelationError(headMessage2, source2, target2); let canonical; if (errorInfo && errorInfo !== savedErrorState.errorInfo) { canonical = { code: errorInfo.code, messageText: errorInfo.messageText }; } resetErrorInfo(savedErrorState); if (canonical && errorInfo) { errorInfo.canonicalHead = canonical; } lastSkippedInfo = [source2, target2]; return; } reportRelationError(headMessage2, source2, target2); if (source2.flags & 524288 && ((_b = (_a2 = source2.symbol) == null ? undefined : _a2.declarations) == null ? undefined : _b[0]) && !getConstraintOfType(source2)) { const syntheticParam = cloneTypeParameter(source2); syntheticParam.constraint = instantiateType(target2, makeUnaryTypeMapper(source2, syntheticParam)); if (hasNonCircularBaseConstraint(syntheticParam)) { const targetConstraintString = typeToString(target2, source2.symbol.declarations[0]); associateRelatedInfo(createDiagnosticForNode(source2.symbol.declarations[0], Diagnostics.This_type_parameter_might_need_an_extends_0_constraint, targetConstraintString)); } } } function traceUnionsOrIntersectionsTooLarge(source2, target2) { if (!tracing) { return; } if (source2.flags & 402653184 && target2.flags & 402653184) { const sourceUnionOrIntersection = source2; const targetUnionOrIntersection = target2; if (sourceUnionOrIntersection.objectFlags & targetUnionOrIntersection.objectFlags & 32768) { return; } const sourceSize = sourceUnionOrIntersection.types.length; const targetSize = targetUnionOrIntersection.types.length; if (sourceSize * targetSize > 1e6) { tracing.instant(tracing.Phase.CheckTypes, "traceUnionsOrIntersectionsTooLarge_DepthLimit", { sourceId: source2.id, sourceSize, targetId: target2.id, targetSize, pos: errorNode == null ? undefined : errorNode.pos, end: errorNode == null ? undefined : errorNode.end }); } } } function getTypeOfPropertyInTypes(types, name) { const appendPropType = (propTypes, type) => { var _a2; type = getApparentType(type); const prop = type.flags & 402653184 ? getPropertyOfUnionOrIntersectionType(type, name) : getPropertyOfObjectType(type, name); const propType = prop && getTypeOfSymbol(prop) || ((_a2 = getApplicableIndexInfoForName(type, name)) == null ? undefined : _a2.type) || undefinedType; return append(propTypes, propType); }; return getUnionType(reduceLeft(types, appendPropType, undefined) || emptyArray); } function hasExcessProperties(source2, target2, reportErrors2) { var _a2; if (!isExcessPropertyCheckTarget(target2) || !noImplicitAny && getObjectFlags(target2) & 4096) { return false; } const isComparingJsxAttributes = !!(getObjectFlags(source2) & 2048); if ((relation === assignableRelation || relation === comparableRelation) && (isTypeSubsetOf(globalObjectType, target2) || !isComparingJsxAttributes && isEmptyObjectType(target2))) { return false; } let reducedTarget = target2; let checkTypes; if (target2.flags & 134217728) { reducedTarget = findMatchingDiscriminantType(source2, target2, isRelatedTo) || filterPrimitivesIfContainsNonPrimitive(target2); checkTypes = reducedTarget.flags & 134217728 ? reducedTarget.types : [reducedTarget]; } for (const prop of getPropertiesOfType(source2)) { if (shouldCheckAsExcessProperty(prop, source2.symbol) && !isIgnoredJsxProperty(source2, prop)) { if (!isKnownProperty(reducedTarget, prop.escapedName, isComparingJsxAttributes)) { if (reportErrors2) { const errorTarget = filterType(reducedTarget, isExcessPropertyCheckTarget); if (!errorNode) return Debug.fail(); if (isJsxAttributes(errorNode) || isJsxOpeningLikeElement(errorNode) || isJsxOpeningLikeElement(errorNode.parent)) { if (prop.valueDeclaration && isJsxAttribute(prop.valueDeclaration) && getSourceFileOfNode(errorNode) === getSourceFileOfNode(prop.valueDeclaration.name)) { errorNode = prop.valueDeclaration.name; } const propName = symbolToString(prop); const suggestionSymbol = getSuggestedSymbolForNonexistentJSXAttribute(propName, errorTarget); const suggestion = suggestionSymbol ? symbolToString(suggestionSymbol) : undefined; if (suggestion) { reportError(Diagnostics.Property_0_does_not_exist_on_type_1_Did_you_mean_2, propName, typeToString(errorTarget), suggestion); } else { reportError(Diagnostics.Property_0_does_not_exist_on_type_1, propName, typeToString(errorTarget)); } } else { const objectLiteralDeclaration = ((_a2 = source2.symbol) == null ? undefined : _a2.declarations) && firstOrUndefined(source2.symbol.declarations); let suggestion; if (prop.valueDeclaration && findAncestor(prop.valueDeclaration, (d) => d === objectLiteralDeclaration) && getSourceFileOfNode(objectLiteralDeclaration) === getSourceFileOfNode(errorNode)) { const propDeclaration = prop.valueDeclaration; Debug.assertNode(propDeclaration, isObjectLiteralElementLike); const name = propDeclaration.name; errorNode = name; if (isIdentifier(name)) { suggestion = getSuggestionForNonexistentProperty(name, errorTarget); } } if (suggestion !== undefined) { reportParentSkippedError(Diagnostics.Object_literal_may_only_specify_known_properties_but_0_does_not_exist_in_type_1_Did_you_mean_to_write_2, symbolToString(prop), typeToString(errorTarget), suggestion); } else { reportParentSkippedError(Diagnostics.Object_literal_may_only_specify_known_properties_and_0_does_not_exist_in_type_1, symbolToString(prop), typeToString(errorTarget)); } } } return true; } if (checkTypes && !isRelatedTo(getTypeOfSymbol(prop), getTypeOfPropertyInTypes(checkTypes, prop.escapedName), 3, reportErrors2)) { if (reportErrors2) { reportIncompatibleError(Diagnostics.Types_of_property_0_are_incompatible, symbolToString(prop)); } return true; } } } return false; } function shouldCheckAsExcessProperty(prop, container) { return prop.valueDeclaration && container.valueDeclaration && prop.valueDeclaration.parent === container.valueDeclaration; } function unionOrIntersectionRelatedTo(source2, target2, reportErrors2, intersectionState) { if (source2.flags & 134217728) { if (target2.flags & 134217728) { const sourceOrigin = source2.origin; if (sourceOrigin && sourceOrigin.flags & 268435456 && target2.aliasSymbol && contains(sourceOrigin.types, target2)) { return -1; } const targetOrigin = target2.origin; if (targetOrigin && targetOrigin.flags & 134217728 && source2.aliasSymbol && contains(targetOrigin.types, source2)) { return -1; } } return relation === comparableRelation ? someTypeRelatedToType(source2, target2, reportErrors2 && !(source2.flags & 12713980), intersectionState) : eachTypeRelatedToType(source2, target2, reportErrors2 && !(source2.flags & 12713980), intersectionState); } if (target2.flags & 134217728) { return typeRelatedToSomeType(getRegularTypeOfObjectLiteral(source2), target2, reportErrors2 && !(source2.flags & 12713980) && !(target2.flags & 12713980), intersectionState); } if (target2.flags & 268435456) { return typeRelatedToEachType(source2, target2, reportErrors2, 2); } if (relation === comparableRelation && target2.flags & 12713980) { const constraints = sameMap(source2.types, (t) => t.flags & 132644864 ? getBaseConstraintOfType(t) || unknownType : t); if (constraints !== source2.types) { source2 = getIntersectionType(constraints); if (source2.flags & 262144) { return 0; } if (!(source2.flags & 268435456)) { return isRelatedTo(source2, target2, 1, false) || isRelatedTo(target2, source2, 1, false); } } } return someTypeRelatedToType(source2, target2, false, 1); } function eachTypeRelatedToSomeType(source2, target2) { let result2 = -1; const sourceTypes = source2.types; for (const sourceType of sourceTypes) { const related = typeRelatedToSomeType(sourceType, target2, false, 0); if (!related) { return 0; } result2 &= related; } return result2; } function typeRelatedToSomeType(source2, target2, reportErrors2, intersectionState) { const targetTypes = target2.types; if (target2.flags & 134217728) { if (containsType(targetTypes, source2)) { return -1; } if (relation !== comparableRelation && getObjectFlags(target2) & 32768 && !(source2.flags & 32768) && (source2.flags & (1024 | 8192 | 4096) || (relation === subtypeRelation || relation === strictSubtypeRelation) && source2.flags & 2048)) { const alternateForm = source2 === source2.regularType ? source2.freshType : source2.regularType; const primitive = source2.flags & 1024 ? stringType : source2.flags & 2048 ? numberType : source2.flags & 4096 ? bigintType : undefined; return primitive && containsType(targetTypes, primitive) || alternateForm && containsType(targetTypes, alternateForm) ? -1 : 0; } const match = getMatchingUnionConstituentForType(target2, source2); if (match) { const related = isRelatedTo(source2, match, 2, false, undefined, intersectionState); if (related) { return related; } } } for (const type of targetTypes) { const related = isRelatedTo(source2, type, 2, false, undefined, intersectionState); if (related) { return related; } } if (reportErrors2) { const bestMatchingType = getBestMatchingType(source2, target2, isRelatedTo); if (bestMatchingType) { isRelatedTo(source2, bestMatchingType, 2, true, undefined, intersectionState); } } return 0; } function typeRelatedToEachType(source2, target2, reportErrors2, intersectionState) { let result2 = -1; const targetTypes = target2.types; for (const targetType of targetTypes) { const related = isRelatedTo(source2, targetType, 2, reportErrors2, undefined, intersectionState); if (!related) { return 0; } result2 &= related; } return result2; } function someTypeRelatedToType(source2, target2, reportErrors2, intersectionState) { const sourceTypes = source2.types; if (source2.flags & 134217728 && containsType(sourceTypes, target2)) { return -1; } const len = sourceTypes.length; for (let i = 0;i < len; i++) { const related = isRelatedTo(sourceTypes[i], target2, 1, reportErrors2 && i === len - 1, undefined, intersectionState); if (related) { return related; } } return 0; } function getUndefinedStrippedTargetIfNeeded(source2, target2) { if (source2.flags & 134217728 && target2.flags & 134217728 && !(source2.types[0].flags & 4) && target2.types[0].flags & 4) { return extractTypesOfKind(target2, ~4); } return target2; } function eachTypeRelatedToType(source2, target2, reportErrors2, intersectionState) { let result2 = -1; const sourceTypes = source2.types; const undefinedStrippedTarget = getUndefinedStrippedTargetIfNeeded(source2, target2); for (let i = 0;i < sourceTypes.length; i++) { const sourceType = sourceTypes[i]; if (undefinedStrippedTarget.flags & 134217728 && sourceTypes.length >= undefinedStrippedTarget.types.length && sourceTypes.length % undefinedStrippedTarget.types.length === 0) { const related2 = isRelatedTo(sourceType, undefinedStrippedTarget.types[i % undefinedStrippedTarget.types.length], 3, false, undefined, intersectionState); if (related2) { result2 &= related2; continue; } } const related = isRelatedTo(sourceType, target2, 1, reportErrors2, undefined, intersectionState); if (!related) { return 0; } result2 &= related; } return result2; } function typeArgumentsRelatedTo(sources = emptyArray, targets = emptyArray, variances = emptyArray, reportErrors2, intersectionState) { if (sources.length !== targets.length && relation === identityRelation) { return 0; } const length2 = sources.length <= targets.length ? sources.length : targets.length; let result2 = -1; for (let i = 0;i < length2; i++) { const varianceFlags = i < variances.length ? variances[i] : 1; const variance = varianceFlags & 7; if (variance !== 4) { const s = sources[i]; const t = targets[i]; let related = -1; if (varianceFlags & 8) { related = relation === identityRelation ? isRelatedTo(s, t, 3, false) : compareTypesIdentical(s, t); } else { if (inVarianceComputation && varianceFlags & 16) { instantiateType(s, reportUnreliableMapper); } if (variance === 1) { related = isRelatedTo(s, t, 3, reportErrors2, undefined, intersectionState); } else if (variance === 2) { related = isRelatedTo(t, s, 3, reportErrors2, undefined, intersectionState); } else if (variance === 3) { related = isRelatedTo(t, s, 3, false); if (!related) { related = isRelatedTo(s, t, 3, reportErrors2, undefined, intersectionState); } } else { related = isRelatedTo(s, t, 3, reportErrors2, undefined, intersectionState); if (related) { related &= isRelatedTo(t, s, 3, reportErrors2, undefined, intersectionState); } } } if (!related) { return 0; } result2 &= related; } } return result2; } function recursiveTypeRelatedTo(source2, target2, reportErrors2, intersectionState, recursionFlags) { var _a2, _b, _c; if (overflow) { return 0; } const id = getRelationKey(source2, target2, intersectionState, relation, false); const entry = relation.get(id); if (entry !== undefined) { if (reportErrors2 && entry & 2 && !(entry & 96)) {} else { if (outofbandVarianceMarkerHandler) { const saved = entry & 24; if (saved & 8) { instantiateType(source2, reportUnmeasurableMapper); } if (saved & 16) { instantiateType(source2, reportUnreliableMapper); } } if (reportErrors2 && entry & 96) { const message = entry & 32 ? Diagnostics.Excessive_complexity_comparing_types_0_and_1 : Diagnostics.Excessive_stack_depth_comparing_types_0_and_1; reportError(message, typeToString(source2), typeToString(target2)); overrideNextErrorInfo++; } return entry & 1 ? -1 : 0; } } if (relationCount <= 0) { overflow = true; return 0; } if (!maybeKeys) { maybeKeys = []; maybeKeysSet = /* @__PURE__ */ new Set; sourceStack = []; targetStack = []; } else { if (maybeKeysSet.has(id)) { return 3; } const broadestEquivalentId = id.startsWith("*") ? getRelationKey(source2, target2, intersectionState, relation, true) : undefined; if (broadestEquivalentId && maybeKeysSet.has(broadestEquivalentId)) { return 3; } if (sourceDepth === 100 || targetDepth === 100) { overflow = true; return 0; } } const maybeStart = maybeCount; maybeKeys[maybeCount] = id; maybeKeysSet.add(id); maybeCount++; const saveExpandingFlags = expandingFlags; if (recursionFlags & 1) { sourceStack[sourceDepth] = source2; sourceDepth++; if (!(expandingFlags & 1) && isDeeplyNestedType(source2, sourceStack, sourceDepth)) expandingFlags |= 1; } if (recursionFlags & 2) { targetStack[targetDepth] = target2; targetDepth++; if (!(expandingFlags & 2) && isDeeplyNestedType(target2, targetStack, targetDepth)) expandingFlags |= 2; } let originalHandler; let propagatingVarianceFlags = 0; if (outofbandVarianceMarkerHandler) { originalHandler = outofbandVarianceMarkerHandler; outofbandVarianceMarkerHandler = (onlyUnreliable) => { propagatingVarianceFlags |= onlyUnreliable ? 16 : 8; return originalHandler(onlyUnreliable); }; } let result2; if (expandingFlags === 3) { (_a2 = tracing) == null || _a2.instant(tracing.Phase.CheckTypes, "recursiveTypeRelatedTo_DepthLimit", { sourceId: source2.id, sourceIdStack: sourceStack.map((t) => t.id), targetId: target2.id, targetIdStack: targetStack.map((t) => t.id), depth: sourceDepth, targetDepth }); result2 = 3; } else { (_b = tracing) == null || _b.push(tracing.Phase.CheckTypes, "structuredTypeRelatedTo", { sourceId: source2.id, targetId: target2.id }); result2 = structuredTypeRelatedTo(source2, target2, reportErrors2, intersectionState); (_c = tracing) == null || _c.pop(); } if (outofbandVarianceMarkerHandler) { outofbandVarianceMarkerHandler = originalHandler; } if (recursionFlags & 1) { sourceDepth--; } if (recursionFlags & 2) { targetDepth--; } expandingFlags = saveExpandingFlags; if (result2) { if (result2 === -1 || sourceDepth === 0 && targetDepth === 0) { if (result2 === -1 || result2 === 3) { resetMaybeStack(true); } else { resetMaybeStack(false); } } } else { relation.set(id, 2 | propagatingVarianceFlags); relationCount--; resetMaybeStack(false); } return result2; function resetMaybeStack(markAllAsSucceeded) { for (let i = maybeStart;i < maybeCount; i++) { maybeKeysSet.delete(maybeKeys[i]); if (markAllAsSucceeded) { relation.set(maybeKeys[i], 1 | propagatingVarianceFlags); relationCount--; } } maybeCount = maybeStart; } } function structuredTypeRelatedTo(source2, target2, reportErrors2, intersectionState) { const saveErrorInfo = captureErrorCalculationState(); let result2 = structuredTypeRelatedToWorker(source2, target2, reportErrors2, intersectionState, saveErrorInfo); if (relation !== identityRelation) { if (!result2 && (source2.flags & 268435456 || source2.flags & 524288 && target2.flags & 134217728)) { const constraint = getEffectiveConstraintOfIntersection(source2.flags & 268435456 ? source2.types : [source2], !!(target2.flags & 134217728)); if (constraint && everyType(constraint, (c) => c !== source2)) { result2 = isRelatedTo(constraint, target2, 1, false, undefined, intersectionState); } } if (result2 && !(intersectionState & 2) && target2.flags & 268435456 && !isGenericObjectType(target2) && source2.flags & (1048576 | 268435456)) { result2 &= propertiesRelatedTo(source2, target2, reportErrors2, undefined, false, 0); if (result2 && isObjectLiteralType2(source2) && getObjectFlags(source2) & 8192) { result2 &= indexSignaturesRelatedTo(source2, target2, false, reportErrors2, 0); } } else if (result2 && isNonGenericObjectType(target2) && !isArrayOrTupleType(target2) && source2.flags & 268435456 && getApparentType(source2).flags & 403701760 && !some(source2.types, (t) => t === target2 || !!(getObjectFlags(t) & 262144))) { result2 &= propertiesRelatedTo(source2, target2, reportErrors2, undefined, true, intersectionState); } } if (result2) { resetErrorInfo(saveErrorInfo); } return result2; } function getApparentMappedTypeKeys(nameType, targetType) { const modifiersType = getApparentType(getModifiersTypeFromMappedType(targetType)); const mappedKeys = []; forEachMappedTypePropertyKeyTypeAndIndexSignatureKeyType(modifiersType, 19456, false, (t) => void mappedKeys.push(instantiateType(nameType, appendTypeMapping(targetType.mapper, getTypeParameterFromMappedType(targetType), t)))); return getUnionType(mappedKeys); } function structuredTypeRelatedToWorker(source2, target2, reportErrors2, intersectionState, saveErrorInfo) { let result2; let originalErrorInfo; let varianceCheckFailed = false; let sourceFlags = source2.flags; const targetFlags = target2.flags; if (relation === identityRelation) { if (sourceFlags & 402653184) { let result3 = eachTypeRelatedToSomeType(source2, target2); if (result3) { result3 &= eachTypeRelatedToSomeType(target2, source2); } return result3; } if (sourceFlags & 2097152) { return isRelatedTo(source2.type, target2.type, 3, false); } if (sourceFlags & 33554432) { if (result2 = isRelatedTo(source2.objectType, target2.objectType, 3, false)) { if (result2 &= isRelatedTo(source2.indexType, target2.indexType, 3, false)) { return result2; } } } if (sourceFlags & 67108864) { if (source2.root.isDistributive === target2.root.isDistributive) { if (result2 = isRelatedTo(source2.checkType, target2.checkType, 3, false)) { if (result2 &= isRelatedTo(source2.extendsType, target2.extendsType, 3, false)) { if (result2 &= isRelatedTo(getTrueTypeFromConditionalType(source2), getTrueTypeFromConditionalType(target2), 3, false)) { if (result2 &= isRelatedTo(getFalseTypeFromConditionalType(source2), getFalseTypeFromConditionalType(target2), 3, false)) { return result2; } } } } } } if (sourceFlags & 16777216) { if (result2 = isRelatedTo(source2.baseType, target2.baseType, 3, false)) { if (result2 &= isRelatedTo(source2.constraint, target2.constraint, 3, false)) { return result2; } } } if (sourceFlags & 4194304) { if (arrayIsEqualTo(source2.texts, target2.texts)) { const sourceTypes = source2.types; const targetTypes = target2.types; result2 = -1; for (let i = 0;i < sourceTypes.length; i++) { if (!(result2 &= isRelatedTo(sourceTypes[i], targetTypes[i], 3, false))) { break; } } return result2; } } if (sourceFlags & 8388608) { if (source2.symbol === target2.symbol) { return isRelatedTo(source2.type, target2.type, 3, false); } } if (!(sourceFlags & 1048576)) { return 0; } } else if (sourceFlags & 402653184 || targetFlags & 402653184) { if (result2 = unionOrIntersectionRelatedTo(source2, target2, reportErrors2, intersectionState)) { return result2; } if (!(sourceFlags & 132644864 || sourceFlags & 1048576 && targetFlags & 134217728 || sourceFlags & 268435456 && targetFlags & (1048576 | 134217728 | 132644864))) { return 0; } } if (sourceFlags & (1048576 | 67108864) && source2.aliasSymbol && source2.aliasTypeArguments && source2.aliasSymbol === target2.aliasSymbol && !(isMarkerType(source2) || isMarkerType(target2))) { const variances = getAliasVariances(source2.aliasSymbol); if (variances === emptyArray) { return 1; } const params = getSymbolLinks(source2.aliasSymbol).typeParameters; const minParams = getMinTypeArgumentCount(params); const sourceTypes = fillMissingTypeArguments(source2.aliasTypeArguments, params, minParams, isInJSFile(source2.aliasSymbol.valueDeclaration)); const targetTypes = fillMissingTypeArguments(target2.aliasTypeArguments, params, minParams, isInJSFile(source2.aliasSymbol.valueDeclaration)); const varianceResult = relateVariances(sourceTypes, targetTypes, variances, intersectionState); if (varianceResult !== undefined) { return varianceResult; } } if (isSingleElementGenericTupleType(source2) && !source2.target.readonly && (result2 = isRelatedTo(getTypeArguments(source2)[0], target2, 1)) || isSingleElementGenericTupleType(target2) && (target2.target.readonly || isMutableArrayOrTuple(getBaseConstraintOfType(source2) || source2)) && (result2 = isRelatedTo(source2, getTypeArguments(target2)[0], 2))) { return result2; } if (targetFlags & 524288) { if (getObjectFlags(source2) & 32 && !source2.declaration.nameType && isRelatedTo(getIndexType(target2), getConstraintTypeFromMappedType(source2), 3)) { if (!(getMappedTypeModifiers(source2) & 4)) { const templateType = getTemplateTypeFromMappedType(source2); const indexedAccessType = getIndexedAccessType(target2, getTypeParameterFromMappedType(source2)); if (result2 = isRelatedTo(templateType, indexedAccessType, 3, reportErrors2)) { return result2; } } } if (relation === comparableRelation && sourceFlags & 524288) { let constraint = getConstraintOfTypeParameter(source2); if (constraint) { while (constraint && someType(constraint, (c) => !!(c.flags & 524288))) { if (result2 = isRelatedTo(constraint, target2, 1, false)) { return result2; } constraint = getConstraintOfTypeParameter(constraint); } } return 0; } } else if (targetFlags & 2097152) { const targetType = target2.type; if (sourceFlags & 2097152) { if (result2 = isRelatedTo(targetType, source2.type, 3, false)) { return result2; } } if (isTupleType(targetType)) { if (result2 = isRelatedTo(source2, getKnownKeysOfTupleType(targetType), 2, reportErrors2)) { return result2; } } else { const constraint = getSimplifiedTypeOrConstraint(targetType); if (constraint) { if (isRelatedTo(source2, getIndexType(constraint, target2.indexFlags | 4), 2, reportErrors2) === -1) { return -1; } } else if (isGenericMappedType(targetType)) { const nameType = getNameTypeFromMappedType(targetType); const constraintType = getConstraintTypeFromMappedType(targetType); let targetKeys; if (nameType && isMappedTypeWithKeyofConstraintDeclaration(targetType)) { const mappedKeys = getApparentMappedTypeKeys(nameType, targetType); targetKeys = getUnionType([mappedKeys, nameType]); } else { targetKeys = nameType || constraintType; } if (isRelatedTo(source2, targetKeys, 2, reportErrors2) === -1) { return -1; } } } } else if (targetFlags & 33554432) { if (sourceFlags & 33554432) { if (result2 = isRelatedTo(source2.objectType, target2.objectType, 3, reportErrors2)) { result2 &= isRelatedTo(source2.indexType, target2.indexType, 3, reportErrors2); } if (result2) { return result2; } if (reportErrors2) { originalErrorInfo = errorInfo; } } if (relation === assignableRelation || relation === comparableRelation) { const objectType = target2.objectType; const indexType = target2.indexType; const baseObjectType = getBaseConstraintOfType(objectType) || objectType; const baseIndexType = getBaseConstraintOfType(indexType) || indexType; if (!isGenericObjectType(baseObjectType) && !isGenericIndexType(baseIndexType)) { const accessFlags = 4 | (baseObjectType !== objectType ? 2 : 0); const constraint = getIndexedAccessTypeOrUndefined(baseObjectType, baseIndexType, accessFlags); if (constraint) { if (reportErrors2 && originalErrorInfo) { resetErrorInfo(saveErrorInfo); } if (result2 = isRelatedTo(source2, constraint, 2, reportErrors2, undefined, intersectionState)) { return result2; } if (reportErrors2 && originalErrorInfo && errorInfo) { errorInfo = countMessageChainBreadth([originalErrorInfo]) <= countMessageChainBreadth([errorInfo]) ? originalErrorInfo : errorInfo; } } } } if (reportErrors2) { originalErrorInfo = undefined; } } else if (isGenericMappedType(target2) && relation !== identityRelation) { const keysRemapped = !!target2.declaration.nameType; const templateType = getTemplateTypeFromMappedType(target2); const modifiers = getMappedTypeModifiers(target2); if (!(modifiers & 8)) { if (!keysRemapped && templateType.flags & 33554432 && templateType.objectType === source2 && templateType.indexType === getTypeParameterFromMappedType(target2)) { return -1; } if (!isGenericMappedType(source2)) { const targetKeys = keysRemapped ? getNameTypeFromMappedType(target2) : getConstraintTypeFromMappedType(target2); const sourceKeys = getIndexType(source2, 2); const includeOptional = modifiers & 4; const filteredByApplicability = includeOptional ? intersectTypes(targetKeys, sourceKeys) : undefined; if (includeOptional ? !(filteredByApplicability.flags & 262144) : isRelatedTo(targetKeys, sourceKeys, 3)) { const templateType2 = getTemplateTypeFromMappedType(target2); const typeParameter = getTypeParameterFromMappedType(target2); const nonNullComponent = extractTypesOfKind(templateType2, ~12); if (!keysRemapped && nonNullComponent.flags & 33554432 && nonNullComponent.indexType === typeParameter) { if (result2 = isRelatedTo(source2, nonNullComponent.objectType, 2, reportErrors2)) { return result2; } } else { const indexingType = keysRemapped ? filteredByApplicability || targetKeys : filteredByApplicability ? getIntersectionType([filteredByApplicability, typeParameter]) : typeParameter; const indexedAccessType = getIndexedAccessType(source2, indexingType); if (result2 = isRelatedTo(indexedAccessType, templateType2, 3, reportErrors2)) { return result2; } } } originalErrorInfo = errorInfo; resetErrorInfo(saveErrorInfo); } } } else if (targetFlags & 67108864) { if (isDeeplyNestedType(target2, targetStack, targetDepth, 10)) { return 3; } const c = target2; if (!c.root.inferTypeParameters && !isDistributionDependent(c.root) && !(source2.flags & 67108864 && source2.root === c.root)) { const skipTrue = !isTypeAssignableTo(getPermissiveInstantiation(c.checkType), getPermissiveInstantiation(c.extendsType)); const skipFalse = !skipTrue && isTypeAssignableTo(getRestrictiveInstantiation(c.checkType), getRestrictiveInstantiation(c.extendsType)); if (result2 = skipTrue ? -1 : isRelatedTo(source2, getTrueTypeFromConditionalType(c), 2, false, undefined, intersectionState)) { result2 &= skipFalse ? -1 : isRelatedTo(source2, getFalseTypeFromConditionalType(c), 2, false, undefined, intersectionState); if (result2) { return result2; } } } } else if (targetFlags & 4194304) { if (sourceFlags & 4194304) { if (relation === comparableRelation) { return templateLiteralTypesDefinitelyUnrelated(source2, target2) ? 0 : -1; } instantiateType(source2, reportUnreliableMapper); } if (isTypeMatchedByTemplateLiteralType(source2, target2)) { return -1; } } else if (target2.flags & 8388608) { if (!(source2.flags & 8388608)) { if (isMemberOfStringMapping(source2, target2)) { return -1; } } } if (sourceFlags & 34078720) { if (!(sourceFlags & 33554432 && targetFlags & 33554432)) { const constraint = getConstraintOfType(source2) || unknownType; if (result2 = isRelatedTo(constraint, target2, 1, false, undefined, intersectionState)) { return result2; } else if (result2 = isRelatedTo(getTypeWithThisArgument(constraint, source2), target2, 1, reportErrors2 && constraint !== unknownType && !(targetFlags & sourceFlags & 524288), undefined, intersectionState)) { return result2; } if (isMappedTypeGenericIndexedAccess(source2)) { const indexConstraint = getConstraintOfType(source2.indexType); if (indexConstraint) { if (result2 = isRelatedTo(getIndexedAccessType(source2.objectType, indexConstraint), target2, 1, reportErrors2)) { return result2; } } } } } else if (sourceFlags & 2097152) { const isDeferredMappedIndex = shouldDeferIndexType(source2.type, source2.indexFlags) && getObjectFlags(source2.type) & 32; if (result2 = isRelatedTo(stringNumberSymbolType, target2, 1, reportErrors2 && !isDeferredMappedIndex)) { return result2; } if (isDeferredMappedIndex) { const mappedType = source2.type; const nameType = getNameTypeFromMappedType(mappedType); const sourceMappedKeys = nameType && isMappedTypeWithKeyofConstraintDeclaration(mappedType) ? getApparentMappedTypeKeys(nameType, mappedType) : nameType || getConstraintTypeFromMappedType(mappedType); if (result2 = isRelatedTo(sourceMappedKeys, target2, 1, reportErrors2)) { return result2; } } } else if (sourceFlags & 4194304 && !(targetFlags & 1048576)) { if (!(targetFlags & 4194304)) { const constraint = getBaseConstraintOfType(source2); if (constraint && constraint !== source2 && (result2 = isRelatedTo(constraint, target2, 1, reportErrors2))) { return result2; } } } else if (sourceFlags & 8388608) { if (targetFlags & 8388608) { if (source2.symbol !== target2.symbol) { return 0; } if (result2 = isRelatedTo(source2.type, target2.type, 3, reportErrors2)) { return result2; } } else { const constraint = getBaseConstraintOfType(source2); if (constraint && (result2 = isRelatedTo(constraint, target2, 1, reportErrors2))) { return result2; } } } else if (sourceFlags & 67108864) { if (isDeeplyNestedType(source2, sourceStack, sourceDepth, 10)) { return 3; } if (targetFlags & 67108864) { const sourceParams = source2.root.inferTypeParameters; let sourceExtends = source2.extendsType; let mapper; if (sourceParams) { const ctx = createInferenceContext(sourceParams, undefined, 0, isRelatedToWorker); inferTypes(ctx.inferences, target2.extendsType, sourceExtends, 512 | 1024); sourceExtends = instantiateType(sourceExtends, ctx.mapper); mapper = ctx.mapper; } if (isTypeIdenticalTo(sourceExtends, target2.extendsType) && (isRelatedTo(source2.checkType, target2.checkType, 3) || isRelatedTo(target2.checkType, source2.checkType, 3))) { if (result2 = isRelatedTo(instantiateType(getTrueTypeFromConditionalType(source2), mapper), getTrueTypeFromConditionalType(target2), 3, reportErrors2)) { result2 &= isRelatedTo(getFalseTypeFromConditionalType(source2), getFalseTypeFromConditionalType(target2), 3, reportErrors2); } if (result2) { return result2; } } } const defaultConstraint = getDefaultConstraintOfConditionalType(source2); if (defaultConstraint) { if (result2 = isRelatedTo(defaultConstraint, target2, 1, reportErrors2)) { return result2; } } const distributiveConstraint = !(targetFlags & 67108864) && hasNonCircularBaseConstraint(source2) ? getConstraintOfDistributiveConditionalType(source2) : undefined; if (distributiveConstraint) { resetErrorInfo(saveErrorInfo); if (result2 = isRelatedTo(distributiveConstraint, target2, 1, reportErrors2)) { return result2; } } } else { if (relation !== subtypeRelation && relation !== strictSubtypeRelation && isPartialMappedType(target2) && isEmptyObjectType(source2)) { return -1; } if (isGenericMappedType(target2)) { if (isGenericMappedType(source2)) { if (result2 = mappedTypeRelatedTo(source2, target2, reportErrors2)) { return result2; } } return 0; } const sourceIsPrimitive = !!(sourceFlags & 12713980); if (relation !== identityRelation) { source2 = getApparentType(source2); sourceFlags = source2.flags; } else if (isGenericMappedType(source2)) { return 0; } if (getObjectFlags(source2) & 4 && getObjectFlags(target2) & 4 && source2.target === target2.target && !isTupleType(source2) && !(isMarkerType(source2) || isMarkerType(target2))) { if (isEmptyArrayLiteralType(source2)) { return -1; } const variances = getVariances(source2.target); if (variances === emptyArray) { return 1; } const varianceResult = relateVariances(getTypeArguments(source2), getTypeArguments(target2), variances, intersectionState); if (varianceResult !== undefined) { return varianceResult; } } else if (isReadonlyArrayType(target2) ? everyType(source2, isArrayOrTupleType) : isArrayType(target2) && everyType(source2, (t) => isTupleType(t) && !t.target.readonly)) { if (relation !== identityRelation) { return isRelatedTo(getIndexTypeOfType(source2, numberType) || anyType, getIndexTypeOfType(target2, numberType) || anyType, 3, reportErrors2); } else { return 0; } } else if (isGenericTupleType(source2) && isTupleType(target2) && !isGenericTupleType(target2)) { const constraint = getBaseConstraintOrType(source2); if (constraint !== source2) { return isRelatedTo(constraint, target2, 1, reportErrors2); } } else if ((relation === subtypeRelation || relation === strictSubtypeRelation) && isEmptyObjectType(target2) && getObjectFlags(target2) & 8192 && !isEmptyObjectType(source2)) { return 0; } if (sourceFlags & (1048576 | 268435456) && targetFlags & 1048576) { const reportStructuralErrors = reportErrors2 && errorInfo === saveErrorInfo.errorInfo && !sourceIsPrimitive; result2 = propertiesRelatedTo(source2, target2, reportStructuralErrors, undefined, false, intersectionState); if (result2) { result2 &= signaturesRelatedTo(source2, target2, 0, reportStructuralErrors, intersectionState); if (result2) { result2 &= signaturesRelatedTo(source2, target2, 1, reportStructuralErrors, intersectionState); if (result2) { result2 &= indexSignaturesRelatedTo(source2, target2, sourceIsPrimitive, reportStructuralErrors, intersectionState); } } } if (varianceCheckFailed && result2) { errorInfo = originalErrorInfo || errorInfo || saveErrorInfo.errorInfo; } else if (result2) { return result2; } } if (sourceFlags & (1048576 | 268435456) && targetFlags & 134217728) { const objectOnlyTarget = extractTypesOfKind(target2, 1048576 | 268435456 | 16777216); if (objectOnlyTarget.flags & 134217728) { const result3 = typeRelatedToDiscriminatedType(source2, objectOnlyTarget); if (result3) { return result3; } } } } return 0; function countMessageChainBreadth(info) { if (!info) return 0; return reduceLeft(info, (value, chain) => value + 1 + countMessageChainBreadth(chain.next), 0); } function relateVariances(sourceTypeArguments, targetTypeArguments, variances, intersectionState2) { if (result2 = typeArgumentsRelatedTo(sourceTypeArguments, targetTypeArguments, variances, reportErrors2, intersectionState2)) { return result2; } if (some(variances, (v) => !!(v & 24))) { originalErrorInfo = undefined; resetErrorInfo(saveErrorInfo); return; } const allowStructuralFallback = targetTypeArguments && hasCovariantVoidArgument(targetTypeArguments, variances); varianceCheckFailed = !allowStructuralFallback; if (variances !== emptyArray && !allowStructuralFallback) { if (varianceCheckFailed && !(reportErrors2 && some(variances, (v) => (v & 7) === 0))) { return 0; } originalErrorInfo = errorInfo; resetErrorInfo(saveErrorInfo); } } } function mappedTypeRelatedTo(source2, target2, reportErrors2) { const modifiersRelated = relation === comparableRelation || (relation === identityRelation ? getMappedTypeModifiers(source2) === getMappedTypeModifiers(target2) : getCombinedMappedTypeOptionality(source2) <= getCombinedMappedTypeOptionality(target2)); if (modifiersRelated) { let result2; const targetConstraint = getConstraintTypeFromMappedType(target2); const sourceConstraint = instantiateType(getConstraintTypeFromMappedType(source2), getCombinedMappedTypeOptionality(source2) < 0 ? reportUnmeasurableMapper : reportUnreliableMapper); if (result2 = isRelatedTo(targetConstraint, sourceConstraint, 3, reportErrors2)) { const mapper = createTypeMapper([getTypeParameterFromMappedType(source2)], [getTypeParameterFromMappedType(target2)]); if (instantiateType(getNameTypeFromMappedType(source2), mapper) === instantiateType(getNameTypeFromMappedType(target2), mapper)) { return result2 & isRelatedTo(instantiateType(getTemplateTypeFromMappedType(source2), mapper), getTemplateTypeFromMappedType(target2), 3, reportErrors2); } } } return 0; } function typeRelatedToDiscriminatedType(source2, target2) { var _a2; const sourceProperties = getPropertiesOfType(source2); const sourcePropertiesFiltered = findDiscriminantProperties(sourceProperties, target2); if (!sourcePropertiesFiltered) return 0; let numCombinations = 1; for (const sourceProperty of sourcePropertiesFiltered) { numCombinations *= countTypes(getNonMissingTypeOfSymbol(sourceProperty)); if (numCombinations > 25) { (_a2 = tracing) == null || _a2.instant(tracing.Phase.CheckTypes, "typeRelatedToDiscriminatedType_DepthLimit", { sourceId: source2.id, targetId: target2.id, numCombinations }); return 0; } } const sourceDiscriminantTypes = new Array(sourcePropertiesFiltered.length); const excludedProperties = /* @__PURE__ */ new Set; for (let i = 0;i < sourcePropertiesFiltered.length; i++) { const sourceProperty = sourcePropertiesFiltered[i]; const sourcePropertyType = getNonMissingTypeOfSymbol(sourceProperty); sourceDiscriminantTypes[i] = sourcePropertyType.flags & 134217728 ? sourcePropertyType.types : [sourcePropertyType]; excludedProperties.add(sourceProperty.escapedName); } const discriminantCombinations = cartesianProduct(sourceDiscriminantTypes); const matchingTypes = []; for (const combination of discriminantCombinations) { let hasMatch = false; outer: for (const type of target2.types) { for (let i = 0;i < sourcePropertiesFiltered.length; i++) { const sourceProperty = sourcePropertiesFiltered[i]; const targetProperty = getPropertyOfType(type, sourceProperty.escapedName); if (!targetProperty) continue outer; if (sourceProperty === targetProperty) continue; const related = propertyRelatedTo(source2, target2, sourceProperty, targetProperty, (_) => combination[i], false, 0, strictNullChecks || relation === comparableRelation); if (!related) { continue outer; } } pushIfUnique(matchingTypes, type, equateValues); hasMatch = true; } if (!hasMatch) { return 0; } } let result2 = -1; for (const type of matchingTypes) { result2 &= propertiesRelatedTo(source2, type, false, excludedProperties, false, 0); if (result2) { result2 &= signaturesRelatedTo(source2, type, 0, false, 0); if (result2) { result2 &= signaturesRelatedTo(source2, type, 1, false, 0); if (result2 && !(isTupleType(source2) && isTupleType(type))) { result2 &= indexSignaturesRelatedTo(source2, type, false, false, 0); } } } if (!result2) { return result2; } } return result2; } function excludeProperties(properties, excludedProperties) { if (!excludedProperties || properties.length === 0) return properties; let result2; for (let i = 0;i < properties.length; i++) { if (!excludedProperties.has(properties[i].escapedName)) { if (result2) { result2.push(properties[i]); } } else if (!result2) { result2 = properties.slice(0, i); } } return result2 || properties; } function isPropertySymbolTypeRelated(sourceProp, targetProp, getTypeOfSourceProperty, reportErrors2, intersectionState) { const targetIsOptional = strictNullChecks && !!(getCheckFlags(targetProp) & 48); const effectiveTarget = addOptionality(getNonMissingTypeOfSymbol(targetProp), false, targetIsOptional); if (effectiveTarget.flags & (relation === strictSubtypeRelation ? 1 : 3)) { return -1; } const effectiveSource = getTypeOfSourceProperty(sourceProp); return isRelatedTo(effectiveSource, effectiveTarget, 3, reportErrors2, undefined, intersectionState); } function propertyRelatedTo(source2, target2, sourceProp, targetProp, getTypeOfSourceProperty, reportErrors2, intersectionState, skipOptional) { const sourcePropFlags = getDeclarationModifierFlagsFromSymbol(sourceProp); const targetPropFlags = getDeclarationModifierFlagsFromSymbol(targetProp); if (sourcePropFlags & 2 || targetPropFlags & 2) { if (sourceProp.valueDeclaration !== targetProp.valueDeclaration) { if (reportErrors2) { if (sourcePropFlags & 2 && targetPropFlags & 2) { reportError(Diagnostics.Types_have_separate_declarations_of_a_private_property_0, symbolToString(targetProp)); } else { reportError(Diagnostics.Property_0_is_private_in_type_1_but_not_in_type_2, symbolToString(targetProp), typeToString(sourcePropFlags & 2 ? source2 : target2), typeToString(sourcePropFlags & 2 ? target2 : source2)); } } return 0; } } else if (targetPropFlags & 4) { if (!isValidOverrideOf(sourceProp, targetProp)) { if (reportErrors2) { reportError(Diagnostics.Property_0_is_protected_but_type_1_is_not_a_class_derived_from_2, symbolToString(targetProp), typeToString(getDeclaringClass(sourceProp) || source2), typeToString(getDeclaringClass(targetProp) || target2)); } return 0; } } else if (sourcePropFlags & 4) { if (reportErrors2) { reportError(Diagnostics.Property_0_is_protected_in_type_1_but_public_in_type_2, symbolToString(targetProp), typeToString(source2), typeToString(target2)); } return 0; } if (relation === strictSubtypeRelation && isReadonlySymbol(sourceProp) && !isReadonlySymbol(targetProp)) { return 0; } const related = isPropertySymbolTypeRelated(sourceProp, targetProp, getTypeOfSourceProperty, reportErrors2, intersectionState); if (!related) { if (reportErrors2) { reportIncompatibleError(Diagnostics.Types_of_property_0_are_incompatible, symbolToString(targetProp)); } return 0; } if (!skipOptional && sourceProp.flags & 16777216 && targetProp.flags & 106500 && !(targetProp.flags & 16777216)) { if (reportErrors2) { reportError(Diagnostics.Property_0_is_optional_in_type_1_but_required_in_type_2, symbolToString(targetProp), typeToString(source2), typeToString(target2)); } return 0; } return related; } function reportUnmatchedProperty(source2, target2, unmatchedProperty, requireOptionalProperties) { let shouldSkipElaboration = false; if (unmatchedProperty.valueDeclaration && isNamedDeclaration(unmatchedProperty.valueDeclaration) && isPrivateIdentifier(unmatchedProperty.valueDeclaration.name) && source2.symbol && source2.symbol.flags & 32) { const privateIdentifierDescription = unmatchedProperty.valueDeclaration.name.escapedText; const symbolTableKey = getSymbolNameForPrivateIdentifier(source2.symbol, privateIdentifierDescription); if (symbolTableKey && getPropertyOfType(source2, symbolTableKey)) { const sourceName = factory.getDeclarationName(source2.symbol.valueDeclaration); const targetName = factory.getDeclarationName(target2.symbol.valueDeclaration); reportError(Diagnostics.Property_0_in_type_1_refers_to_a_different_member_that_cannot_be_accessed_from_within_type_2, diagnosticName(privateIdentifierDescription), diagnosticName(sourceName.escapedText === "" ? anon : sourceName), diagnosticName(targetName.escapedText === "" ? anon : targetName)); return; } } const props = arrayFrom(getUnmatchedProperties(source2, target2, requireOptionalProperties, false)); if (!headMessage || headMessage.code !== Diagnostics.Class_0_incorrectly_implements_interface_1.code && headMessage.code !== Diagnostics.Class_0_incorrectly_implements_class_1_Did_you_mean_to_extend_1_and_inherit_its_members_as_a_subclass.code) { shouldSkipElaboration = true; } if (props.length === 1) { const propName = symbolToString(unmatchedProperty, undefined, 0, 4 | 16); reportError(Diagnostics.Property_0_is_missing_in_type_1_but_required_in_type_2, propName, ...getTypeNamesForErrorDisplay(source2, target2)); if (length(unmatchedProperty.declarations)) { associateRelatedInfo(createDiagnosticForNode(unmatchedProperty.declarations[0], Diagnostics._0_is_declared_here, propName)); } if (shouldSkipElaboration && errorInfo) { overrideNextErrorInfo++; } } else if (tryElaborateArrayLikeErrors(source2, target2, false)) { if (props.length > 5) { reportError(Diagnostics.Type_0_is_missing_the_following_properties_from_type_1_Colon_2_and_3_more, typeToString(source2), typeToString(target2), map(props.slice(0, 4), (p) => symbolToString(p)).join(", "), props.length - 4); } else { reportError(Diagnostics.Type_0_is_missing_the_following_properties_from_type_1_Colon_2, typeToString(source2), typeToString(target2), map(props, (p) => symbolToString(p)).join(", ")); } if (shouldSkipElaboration && errorInfo) { overrideNextErrorInfo++; } } } function propertiesRelatedTo(source2, target2, reportErrors2, excludedProperties, optionalsOnly, intersectionState) { if (relation === identityRelation) { return propertiesIdenticalTo(source2, target2, excludedProperties); } let result2 = -1; if (isTupleType(target2)) { if (isArrayOrTupleType(source2)) { if (!target2.target.readonly && (isReadonlyArrayType(source2) || isTupleType(source2) && source2.target.readonly)) { return 0; } const sourceArity = getTypeReferenceArity(source2); const targetArity = getTypeReferenceArity(target2); const sourceRestFlag = isTupleType(source2) ? source2.target.combinedFlags & 4 : 4; const targetHasRestElement = !!(target2.target.combinedFlags & 12); const sourceMinLength = isTupleType(source2) ? source2.target.minLength : 0; const targetMinLength = target2.target.minLength; if (!sourceRestFlag && sourceArity < targetMinLength) { if (reportErrors2) { reportError(Diagnostics.Source_has_0_element_s_but_target_requires_1, sourceArity, targetMinLength); } return 0; } if (!targetHasRestElement && targetArity < sourceMinLength) { if (reportErrors2) { reportError(Diagnostics.Source_has_0_element_s_but_target_allows_only_1, sourceMinLength, targetArity); } return 0; } if (!targetHasRestElement && (sourceRestFlag || targetArity < sourceArity)) { if (reportErrors2) { if (sourceMinLength < targetMinLength) { reportError(Diagnostics.Target_requires_0_element_s_but_source_may_have_fewer, targetMinLength); } else { reportError(Diagnostics.Target_allows_only_0_element_s_but_source_may_have_more, targetArity); } } return 0; } const sourceTypeArguments = getTypeArguments(source2); const targetTypeArguments = getTypeArguments(target2); const targetStartCount = getStartElementCount(target2.target, 11); const targetEndCount = getEndElementCount(target2.target, 11); let canExcludeDiscriminants = !!excludedProperties; for (let sourcePosition = 0;sourcePosition < sourceArity; sourcePosition++) { const sourceFlags = isTupleType(source2) ? source2.target.elementFlags[sourcePosition] : 4; const sourcePositionFromEnd = sourceArity - 1 - sourcePosition; const targetPosition = targetHasRestElement && sourcePosition >= targetStartCount ? targetArity - 1 - Math.min(sourcePositionFromEnd, targetEndCount) : sourcePosition; const targetFlags = target2.target.elementFlags[targetPosition]; if (targetFlags & 8 && !(sourceFlags & 8)) { if (reportErrors2) { reportError(Diagnostics.Source_provides_no_match_for_variadic_element_at_position_0_in_target, targetPosition); } return 0; } if (sourceFlags & 8 && !(targetFlags & 12)) { if (reportErrors2) { reportError(Diagnostics.Variadic_element_at_position_0_in_source_does_not_match_element_at_position_1_in_target, sourcePosition, targetPosition); } return 0; } if (targetFlags & 1 && !(sourceFlags & 1)) { if (reportErrors2) { reportError(Diagnostics.Source_provides_no_match_for_required_element_at_position_0_in_target, targetPosition); } return 0; } if (canExcludeDiscriminants) { if (sourceFlags & 12 || targetFlags & 12) { canExcludeDiscriminants = false; } if (canExcludeDiscriminants && (excludedProperties == null ? undefined : excludedProperties.has("" + sourcePosition))) { continue; } } const sourceType = removeMissingType(sourceTypeArguments[sourcePosition], !!(sourceFlags & targetFlags & 2)); const targetType = targetTypeArguments[targetPosition]; const targetCheckType = sourceFlags & 8 && targetFlags & 4 ? createArrayType(targetType) : removeMissingType(targetType, !!(targetFlags & 2)); const related = isRelatedTo(sourceType, targetCheckType, 3, reportErrors2, undefined, intersectionState); if (!related) { if (reportErrors2 && (targetArity > 1 || sourceArity > 1)) { if (targetHasRestElement && sourcePosition >= targetStartCount && sourcePositionFromEnd >= targetEndCount && targetStartCount !== sourceArity - targetEndCount - 1) { reportIncompatibleError(Diagnostics.Type_at_positions_0_through_1_in_source_is_not_compatible_with_type_at_position_2_in_target, targetStartCount, sourceArity - targetEndCount - 1, targetPosition); } else { reportIncompatibleError(Diagnostics.Type_at_position_0_in_source_is_not_compatible_with_type_at_position_1_in_target, sourcePosition, targetPosition); } } return 0; } result2 &= related; } return result2; } if (target2.target.combinedFlags & 12) { return 0; } } const requireOptionalProperties = (relation === subtypeRelation || relation === strictSubtypeRelation) && !isObjectLiteralType2(source2) && !isEmptyArrayLiteralType(source2) && !isTupleType(source2); const unmatchedProperty = getUnmatchedProperty(source2, target2, requireOptionalProperties, false); if (unmatchedProperty) { if (reportErrors2 && shouldReportUnmatchedPropertyError(source2, target2)) { reportUnmatchedProperty(source2, target2, unmatchedProperty, requireOptionalProperties); } return 0; } if (isObjectLiteralType2(target2)) { for (const sourceProp of excludeProperties(getPropertiesOfType(source2), excludedProperties)) { if (!getPropertyOfObjectType(target2, sourceProp.escapedName)) { if (reportErrors2) { reportError(Diagnostics.Property_0_does_not_exist_on_type_1, symbolToString(sourceProp), typeToString(target2)); } return 0; } } } const properties = getPropertiesOfType(target2); const numericNamesOnly = isTupleType(source2) && isTupleType(target2); for (const targetProp of excludeProperties(properties, excludedProperties)) { const name = targetProp.escapedName; if (!(targetProp.flags & 4194304) && (!numericNamesOnly || isNumericLiteralName(name) || name === "length") && (!optionalsOnly || targetProp.flags & 16777216)) { const sourceProp = getPropertyOfType(source2, name); if (sourceProp && sourceProp !== targetProp) { const related = propertyRelatedTo(source2, target2, sourceProp, targetProp, getNonMissingTypeOfSymbol, reportErrors2, intersectionState, relation === comparableRelation); if (!related) { return 0; } result2 &= related; } } } return result2; } function propertiesIdenticalTo(source2, target2, excludedProperties) { if (!(source2.flags & 1048576 && target2.flags & 1048576)) { return 0; } const sourceProperties = excludeProperties(getPropertiesOfObjectType(source2), excludedProperties); const targetProperties = excludeProperties(getPropertiesOfObjectType(target2), excludedProperties); if (sourceProperties.length !== targetProperties.length) { return 0; } let result2 = -1; for (const sourceProp of sourceProperties) { const targetProp = getPropertyOfObjectType(target2, sourceProp.escapedName); if (!targetProp) { return 0; } const related = compareProperties2(sourceProp, targetProp, isRelatedTo); if (!related) { return 0; } result2 &= related; } return result2; } function signaturesRelatedTo(source2, target2, kind, reportErrors2, intersectionState) { var _a2, _b; if (relation === identityRelation) { return signaturesIdenticalTo(source2, target2, kind); } if (source2 === anyFunctionType) { return -1; } if (target2 === anyFunctionType) { return 0; } const sourceIsJSConstructor = source2.symbol && isJSConstructor(source2.symbol.valueDeclaration); const targetIsJSConstructor = target2.symbol && isJSConstructor(target2.symbol.valueDeclaration); const sourceSignatures = getSignaturesOfType(source2, sourceIsJSConstructor && kind === 1 ? 0 : kind); const targetSignatures = getSignaturesOfType(target2, targetIsJSConstructor && kind === 1 ? 0 : kind); if (kind === 1 && sourceSignatures.length && targetSignatures.length) { const sourceIsAbstract = !!(sourceSignatures[0].flags & 4); const targetIsAbstract = !!(targetSignatures[0].flags & 4); if (sourceIsAbstract && !targetIsAbstract) { if (reportErrors2) { reportError(Diagnostics.Cannot_assign_an_abstract_constructor_type_to_a_non_abstract_constructor_type); } return 0; } if (!constructorVisibilitiesAreCompatible(sourceSignatures[0], targetSignatures[0], reportErrors2)) { return 0; } } let result2 = -1; const incompatibleReporter = kind === 1 ? reportIncompatibleConstructSignatureReturn : reportIncompatibleCallSignatureReturn; const sourceObjectFlags = getObjectFlags(source2); const targetObjectFlags = getObjectFlags(target2); if (sourceObjectFlags & 64 && targetObjectFlags & 64 && source2.symbol === target2.symbol || sourceObjectFlags & 4 && targetObjectFlags & 4 && source2.target === target2.target) { Debug.assertEqual(sourceSignatures.length, targetSignatures.length); for (let i = 0;i < targetSignatures.length; i++) { const related = signatureRelatedTo(sourceSignatures[i], targetSignatures[i], true, reportErrors2, intersectionState, incompatibleReporter(sourceSignatures[i], targetSignatures[i])); if (!related) { return 0; } result2 &= related; } } else if (sourceSignatures.length === 1 && targetSignatures.length === 1) { const eraseGenerics = relation === comparableRelation; const sourceSignature = first(sourceSignatures); const targetSignature = first(targetSignatures); result2 = signatureRelatedTo(sourceSignature, targetSignature, eraseGenerics, reportErrors2, intersectionState, incompatibleReporter(sourceSignature, targetSignature)); if (!result2 && reportErrors2 && kind === 1 && sourceObjectFlags & targetObjectFlags && (((_a2 = targetSignature.declaration) == null ? undefined : _a2.kind) === 177 || ((_b = sourceSignature.declaration) == null ? undefined : _b.kind) === 177)) { const constructSignatureToString = (signature) => signatureToString(signature, undefined, 262144, kind); reportError(Diagnostics.Type_0_is_not_assignable_to_type_1, constructSignatureToString(sourceSignature), constructSignatureToString(targetSignature)); reportError(Diagnostics.Types_of_construct_signatures_are_incompatible); return result2; } } else { outer: for (const t of targetSignatures) { const saveErrorInfo = captureErrorCalculationState(); let shouldElaborateErrors = reportErrors2; for (const s of sourceSignatures) { const related = signatureRelatedTo(s, t, true, shouldElaborateErrors, intersectionState, incompatibleReporter(s, t)); if (related) { result2 &= related; resetErrorInfo(saveErrorInfo); continue outer; } shouldElaborateErrors = false; } if (shouldElaborateErrors) { reportError(Diagnostics.Type_0_provides_no_match_for_the_signature_1, typeToString(source2), signatureToString(t, undefined, undefined, kind)); } return 0; } } return result2; } function shouldReportUnmatchedPropertyError(source2, target2) { const typeCallSignatures = getSignaturesOfStructuredType(source2, 0); const typeConstructSignatures = getSignaturesOfStructuredType(source2, 1); const typeProperties = getPropertiesOfObjectType(source2); if ((typeCallSignatures.length || typeConstructSignatures.length) && !typeProperties.length) { if (getSignaturesOfType(target2, 0).length && typeCallSignatures.length || getSignaturesOfType(target2, 1).length && typeConstructSignatures.length) { return true; } return false; } return true; } function reportIncompatibleCallSignatureReturn(siga, sigb) { if (siga.parameters.length === 0 && sigb.parameters.length === 0) { return (source2, target2) => reportIncompatibleError(Diagnostics.Call_signatures_with_no_arguments_have_incompatible_return_types_0_and_1, typeToString(source2), typeToString(target2)); } return (source2, target2) => reportIncompatibleError(Diagnostics.Call_signature_return_types_0_and_1_are_incompatible, typeToString(source2), typeToString(target2)); } function reportIncompatibleConstructSignatureReturn(siga, sigb) { if (siga.parameters.length === 0 && sigb.parameters.length === 0) { return (source2, target2) => reportIncompatibleError(Diagnostics.Construct_signatures_with_no_arguments_have_incompatible_return_types_0_and_1, typeToString(source2), typeToString(target2)); } return (source2, target2) => reportIncompatibleError(Diagnostics.Construct_signature_return_types_0_and_1_are_incompatible, typeToString(source2), typeToString(target2)); } function signatureRelatedTo(source2, target2, erase, reportErrors2, intersectionState, incompatibleReporter) { const checkMode = relation === subtypeRelation ? 16 : relation === strictSubtypeRelation ? 16 | 8 : 0; return compareSignaturesRelated(erase ? getErasedSignature(source2) : source2, erase ? getErasedSignature(target2) : target2, checkMode, reportErrors2, reportError, incompatibleReporter, isRelatedToWorker2, reportUnreliableMapper); function isRelatedToWorker2(source3, target3, reportErrors3) { return isRelatedTo(source3, target3, 3, reportErrors3, undefined, intersectionState); } } function signaturesIdenticalTo(source2, target2, kind) { const sourceSignatures = getSignaturesOfType(source2, kind); const targetSignatures = getSignaturesOfType(target2, kind); if (sourceSignatures.length !== targetSignatures.length) { return 0; } let result2 = -1; for (let i = 0;i < sourceSignatures.length; i++) { const related = compareSignaturesIdentical(sourceSignatures[i], targetSignatures[i], false, false, false, isRelatedTo); if (!related) { return 0; } result2 &= related; } return result2; } function membersRelatedToIndexInfo(source2, targetInfo, reportErrors2, intersectionState) { let result2 = -1; const keyType = targetInfo.keyType; const props = source2.flags & 268435456 ? getPropertiesOfUnionOrIntersectionType(source2) : getPropertiesOfObjectType(source2); for (const prop of props) { if (isIgnoredJsxProperty(source2, prop)) { continue; } if (isApplicableIndexType(getLiteralTypeFromProperty(prop, 19456), keyType)) { const propType = getNonMissingTypeOfSymbol(prop); const type = exactOptionalPropertyTypes || propType.flags & 4 || keyType === numberType || !(prop.flags & 16777216) ? propType : getTypeWithFacts(propType, 524288); const related = isRelatedTo(type, targetInfo.type, 3, reportErrors2, undefined, intersectionState); if (!related) { if (reportErrors2) { reportError(Diagnostics.Property_0_is_incompatible_with_index_signature, symbolToString(prop)); } return 0; } result2 &= related; } } for (const info of getIndexInfosOfType(source2)) { if (isApplicableIndexType(info.keyType, keyType)) { const related = indexInfoRelatedTo(info, targetInfo, reportErrors2, intersectionState); if (!related) { return 0; } result2 &= related; } } return result2; } function indexInfoRelatedTo(sourceInfo, targetInfo, reportErrors2, intersectionState) { const related = isRelatedTo(sourceInfo.type, targetInfo.type, 3, reportErrors2, undefined, intersectionState); if (!related && reportErrors2) { if (sourceInfo.keyType === targetInfo.keyType) { reportError(Diagnostics._0_index_signatures_are_incompatible, typeToString(sourceInfo.keyType)); } else { reportError(Diagnostics._0_and_1_index_signatures_are_incompatible, typeToString(sourceInfo.keyType), typeToString(targetInfo.keyType)); } } return related; } function indexSignaturesRelatedTo(source2, target2, sourceIsPrimitive, reportErrors2, intersectionState) { if (relation === identityRelation) { return indexSignaturesIdenticalTo(source2, target2); } const indexInfos = getIndexInfosOfType(target2); const targetHasStringIndex = some(indexInfos, (info) => info.keyType === stringType); let result2 = -1; for (const targetInfo of indexInfos) { const related = relation !== strictSubtypeRelation && !sourceIsPrimitive && targetHasStringIndex && targetInfo.type.flags & 1 ? -1 : isGenericMappedType(source2) && targetHasStringIndex ? isRelatedTo(getTemplateTypeFromMappedType(source2), targetInfo.type, 3, reportErrors2) : typeRelatedToIndexInfo(source2, targetInfo, reportErrors2, intersectionState); if (!related) { return 0; } result2 &= related; } return result2; } function typeRelatedToIndexInfo(source2, targetInfo, reportErrors2, intersectionState) { const sourceInfo = getApplicableIndexInfo(source2, targetInfo.keyType); if (sourceInfo) { return indexInfoRelatedTo(sourceInfo, targetInfo, reportErrors2, intersectionState); } if (!(intersectionState & 1) && (relation !== strictSubtypeRelation || getObjectFlags(source2) & 8192) && isObjectTypeWithInferableIndex(source2)) { return membersRelatedToIndexInfo(source2, targetInfo, reportErrors2, intersectionState); } if (reportErrors2) { reportError(Diagnostics.Index_signature_for_type_0_is_missing_in_type_1, typeToString(targetInfo.keyType), typeToString(source2)); } return 0; } function indexSignaturesIdenticalTo(source2, target2) { const sourceInfos = getIndexInfosOfType(source2); const targetInfos = getIndexInfosOfType(target2); if (sourceInfos.length !== targetInfos.length) { return 0; } for (const targetInfo of targetInfos) { const sourceInfo = getIndexInfoOfType(source2, targetInfo.keyType); if (!(sourceInfo && isRelatedTo(sourceInfo.type, targetInfo.type, 3) && sourceInfo.isReadonly === targetInfo.isReadonly)) { return 0; } } return -1; } function constructorVisibilitiesAreCompatible(sourceSignature, targetSignature, reportErrors2) { if (!sourceSignature.declaration || !targetSignature.declaration) { return true; } const sourceAccessibility = getSelectedEffectiveModifierFlags(sourceSignature.declaration, 6); const targetAccessibility = getSelectedEffectiveModifierFlags(targetSignature.declaration, 6); if (targetAccessibility === 2) { return true; } if (targetAccessibility === 4 && sourceAccessibility !== 2) { return true; } if (targetAccessibility !== 4 && !sourceAccessibility) { return true; } if (reportErrors2) { reportError(Diagnostics.Cannot_assign_a_0_constructor_type_to_a_1_constructor_type, visibilityToString(sourceAccessibility), visibilityToString(targetAccessibility)); } return false; } } function typeCouldHaveTopLevelSingletonTypes(type) { if (type.flags & 256) { return false; } if (type.flags & 402653184) { return !!forEach(type.types, typeCouldHaveTopLevelSingletonTypes); } if (type.flags & 132644864) { const constraint = getConstraintOfType(type); if (constraint && constraint !== type) { return typeCouldHaveTopLevelSingletonTypes(constraint); } } return isUnitType(type) || !!(type.flags & 4194304) || !!(type.flags & 8388608); } function getExactOptionalUnassignableProperties(source, target) { if (isTupleType(source) && isTupleType(target)) return emptyArray; return getPropertiesOfType(target).filter((targetProp) => isExactOptionalPropertyMismatch(getTypeOfPropertyOfType(source, targetProp.escapedName), getTypeOfSymbol(targetProp))); } function isExactOptionalPropertyMismatch(source, target) { return !!source && !!target && maybeTypeOfKind(source, 4) && !!containsMissingType(target); } function getExactOptionalProperties(type) { return getPropertiesOfType(type).filter((targetProp) => containsMissingType(getTypeOfSymbol(targetProp))); } function getBestMatchingType(source, target, isRelatedTo = compareTypesAssignable) { return findMatchingDiscriminantType(source, target, isRelatedTo) || findMatchingTypeReferenceOrTypeAliasReference(source, target) || findBestTypeForObjectLiteral(source, target) || findBestTypeForInvokable(source, target) || findMostOverlappyType(source, target); } function discriminateTypeByDiscriminableItems(target, discriminators, related) { const types = target.types; const include = types.map((t) => t.flags & 12713980 || getReducedType(t).flags & 262144 ? 0 : -1); for (const [getDiscriminatingType, propertyName] of discriminators) { let matched = false; for (let i = 0;i < types.length; i++) { if (include[i]) { const targetType = getTypeOfPropertyOrIndexSignatureOfType(types[i], propertyName); if (targetType) { if (someType(getDiscriminatingType(), (t) => !!related(t, targetType))) { matched = true; } else { include[i] = 3; } } } } for (let i = 0;i < types.length; i++) { if (include[i] === 3) { include[i] = matched ? 0 : -1; } } } const filtered = contains(include, 0) ? getUnionType(types.filter((_, i) => include[i]), 0) : target; return filtered.flags & 262144 ? target : filtered; } function isWeakType(type) { if (type.flags & 1048576) { const resolved = resolveStructuredTypeMembers(type); return resolved.callSignatures.length === 0 && resolved.constructSignatures.length === 0 && resolved.indexInfos.length === 0 && resolved.properties.length > 0 && every(resolved.properties, (p) => !!(p.flags & 16777216)); } if (type.flags & 16777216) { return isWeakType(type.baseType); } if (type.flags & 268435456) { return every(type.types, isWeakType); } return false; } function hasCommonProperties(source, target, isComparingJsxAttributes) { for (const prop of getPropertiesOfType(source)) { if (isKnownProperty(target, prop.escapedName, isComparingJsxAttributes)) { return true; } } return false; } function getVariances(type) { return type === globalArrayType || type === globalReadonlyArrayType || type.objectFlags & 8 ? arrayVariances : getVariancesWorker(type.symbol, type.typeParameters); } function getAliasVariances(symbol) { return getVariancesWorker(symbol, getSymbolLinks(symbol).typeParameters); } function getVariancesWorker(symbol, typeParameters = emptyArray) { var _a, _b; const links = getSymbolLinks(symbol); if (!links.variances) { (_a = tracing) == null || _a.push(tracing.Phase.CheckTypes, "getVariancesWorker", { arity: typeParameters.length, id: getTypeId(getDeclaredTypeOfSymbol(symbol)) }); const oldVarianceComputation = inVarianceComputation; const saveResolutionStart = resolutionStart; if (!inVarianceComputation) { inVarianceComputation = true; resolutionStart = resolutionTargets.length; } links.variances = emptyArray; const variances = []; for (const tp of typeParameters) { const modifiers = getTypeParameterModifiers(tp); let variance = modifiers & 16384 ? modifiers & 8192 ? 0 : 1 : modifiers & 8192 ? 2 : undefined; if (variance === undefined) { let unmeasurable = false; let unreliable = false; const oldHandler = outofbandVarianceMarkerHandler; outofbandVarianceMarkerHandler = (onlyUnreliable) => onlyUnreliable ? unreliable = true : unmeasurable = true; const typeWithSuper = createMarkerType(symbol, tp, markerSuperType); const typeWithSub = createMarkerType(symbol, tp, markerSubType); variance = (isTypeAssignableTo(typeWithSub, typeWithSuper) ? 1 : 0) | (isTypeAssignableTo(typeWithSuper, typeWithSub) ? 2 : 0); if (variance === 3 && isTypeAssignableTo(createMarkerType(symbol, tp, markerOtherType), typeWithSuper)) { variance = 4; } outofbandVarianceMarkerHandler = oldHandler; if (unmeasurable || unreliable) { if (unmeasurable) { variance |= 8; } if (unreliable) { variance |= 16; } } } variances.push(variance); } if (!oldVarianceComputation) { inVarianceComputation = false; resolutionStart = saveResolutionStart; } links.variances = variances; (_b = tracing) == null || _b.pop({ variances: variances.map(Debug.formatVariance) }); } return links.variances; } function createMarkerType(symbol, source, target) { const mapper = makeUnaryTypeMapper(source, target); const type = getDeclaredTypeOfSymbol(symbol); if (isErrorType(type)) { return type; } const result = symbol.flags & 524288 ? getTypeAliasInstantiation(symbol, instantiateTypes(getSymbolLinks(symbol).typeParameters, mapper)) : createTypeReference(type, instantiateTypes(type.typeParameters, mapper)); markerTypes.add(getTypeId(result)); return result; } function isMarkerType(type) { return markerTypes.has(getTypeId(type)); } function getTypeParameterModifiers(tp) { var _a; return reduceLeft((_a = tp.symbol) == null ? undefined : _a.declarations, (modifiers, d) => modifiers | getEffectiveModifierFlags(d), 0) & (8192 | 16384 | 4096); } function hasCovariantVoidArgument(typeArguments, variances) { for (let i = 0;i < variances.length; i++) { if ((variances[i] & 7) === 1 && typeArguments[i].flags & 16) { return true; } } return false; } function isUnconstrainedTypeParameter(type) { return type.flags & 524288 && !getConstraintOfTypeParameter(type); } function isNonDeferredTypeReference(type) { return !!(getObjectFlags(type) & 4) && !type.node; } function isTypeReferenceWithGenericArguments(type) { return isNonDeferredTypeReference(type) && some(getTypeArguments(type), (t) => !!(t.flags & 524288) || isTypeReferenceWithGenericArguments(t)); } function getGenericTypeReferenceRelationKey(source, target, postFix, ignoreConstraints) { const typeParameters = []; let constraintMarker = ""; const sourceId = getTypeReferenceId(source, 0); const targetId = getTypeReferenceId(target, 0); return `${constraintMarker}${sourceId},${targetId}${postFix}`; function getTypeReferenceId(type, depth = 0) { let result = "" + type.target.id; for (const t of getTypeArguments(type)) { if (t.flags & 524288) { if (ignoreConstraints || isUnconstrainedTypeParameter(t)) { let index = typeParameters.indexOf(t); if (index < 0) { index = typeParameters.length; typeParameters.push(t); } result += "=" + index; continue; } constraintMarker = "*"; } else if (depth < 4 && isTypeReferenceWithGenericArguments(t)) { result += "<" + getTypeReferenceId(t, depth + 1) + ">"; continue; } result += "-" + t.id; } return result; } } function getRelationKey(source, target, intersectionState, relation, ignoreConstraints) { if (relation === identityRelation && source.id > target.id) { const temp = source; source = target; target = temp; } const postFix = intersectionState ? ":" + intersectionState : ""; return isTypeReferenceWithGenericArguments(source) && isTypeReferenceWithGenericArguments(target) ? getGenericTypeReferenceRelationKey(source, target, postFix, ignoreConstraints) : `${source.id},${target.id}${postFix}`; } function forEachProperty2(prop, callback) { if (getCheckFlags(prop) & 6) { for (const t of prop.links.containingType.types) { const p = getPropertyOfType(t, prop.escapedName); const result = p && forEachProperty2(p, callback); if (result) { return result; } } return; } return callback(prop); } function getDeclaringClass(prop) { return prop.parent && prop.parent.flags & 32 ? getDeclaredTypeOfSymbol(getParentOfSymbol(prop)) : undefined; } function getTypeOfPropertyInBaseClass(property) { const classType = getDeclaringClass(property); const baseClassType = classType && getBaseTypes(classType)[0]; return baseClassType && getTypeOfPropertyOfType(baseClassType, property.escapedName); } function isPropertyInClassDerivedFrom(prop, baseClass) { return forEachProperty2(prop, (sp) => { const sourceClass = getDeclaringClass(sp); return sourceClass ? hasBaseType(sourceClass, baseClass) : false; }); } function isValidOverrideOf(sourceProp, targetProp) { return !forEachProperty2(targetProp, (tp) => getDeclarationModifierFlagsFromSymbol(tp) & 4 ? !isPropertyInClassDerivedFrom(sourceProp, getDeclaringClass(tp)) : false); } function isClassDerivedFromDeclaringClasses(checkClass, prop, writing) { return forEachProperty2(prop, (p) => getDeclarationModifierFlagsFromSymbol(p, writing) & 4 ? !hasBaseType(checkClass, getDeclaringClass(p)) : false) ? undefined : checkClass; } function isDeeplyNestedType(type, stack, depth, maxDepth = 3) { if (depth >= maxDepth) { if ((getObjectFlags(type) & 96) === 96) { type = getMappedTargetWithSymbol(type); } if (type.flags & 268435456) { return some(type.types, (t) => isDeeplyNestedType(t, stack, depth, maxDepth)); } const identity2 = getRecursionIdentity(type); let count = 0; let lastTypeId = 0; for (let i = 0;i < depth; i++) { const t = stack[i]; if (hasMatchingRecursionIdentity(t, identity2)) { if (t.id >= lastTypeId) { count++; if (count >= maxDepth) { return true; } } lastTypeId = t.id; } } } return false; } function getMappedTargetWithSymbol(type) { let target; while ((getObjectFlags(type) & 96) === 96 && (target = getModifiersTypeFromMappedType(type)) && (target.symbol || target.flags & 268435456 && some(target.types, (t) => !!t.symbol))) { type = target; } return type; } function hasMatchingRecursionIdentity(type, identity2) { if ((getObjectFlags(type) & 96) === 96) { type = getMappedTargetWithSymbol(type); } if (type.flags & 268435456) { return some(type.types, (t) => hasMatchingRecursionIdentity(t, identity2)); } return getRecursionIdentity(type) === identity2; } function getRecursionIdentity(type) { if (type.flags & 1048576 && !isObjectOrArrayLiteralType(type)) { if (getObjectFlags(type) & 4 && type.node) { return type.node; } if (type.symbol && !(getObjectFlags(type) & 16 && type.symbol.flags & 32)) { return type.symbol; } if (isTupleType(type)) { return type.target; } } if (type.flags & 524288) { return type.symbol; } if (type.flags & 33554432) { do { type = type.objectType; } while (type.flags & 33554432); return type; } if (type.flags & 67108864) { return type.root; } return type; } function isPropertyIdenticalTo(sourceProp, targetProp) { return compareProperties2(sourceProp, targetProp, compareTypesIdentical) !== 0; } function compareProperties2(sourceProp, targetProp, compareTypes2) { if (sourceProp === targetProp) { return -1; } const sourcePropAccessibility = getDeclarationModifierFlagsFromSymbol(sourceProp) & 6; const targetPropAccessibility = getDeclarationModifierFlagsFromSymbol(targetProp) & 6; if (sourcePropAccessibility !== targetPropAccessibility) { return 0; } if (sourcePropAccessibility) { if (getTargetSymbol(sourceProp) !== getTargetSymbol(targetProp)) { return 0; } } else { if ((sourceProp.flags & 16777216) !== (targetProp.flags & 16777216)) { return 0; } } if (isReadonlySymbol(sourceProp) !== isReadonlySymbol(targetProp)) { return 0; } return compareTypes2(getNonMissingTypeOfSymbol(sourceProp), getNonMissingTypeOfSymbol(targetProp)); } function isMatchingSignature(source, target, partialMatch) { const sourceParameterCount = getParameterCount(source); const targetParameterCount = getParameterCount(target); const sourceMinArgumentCount = getMinArgumentCount(source); const targetMinArgumentCount = getMinArgumentCount(target); const sourceHasRestParameter = hasEffectiveRestParameter(source); const targetHasRestParameter = hasEffectiveRestParameter(target); if (sourceParameterCount === targetParameterCount && sourceMinArgumentCount === targetMinArgumentCount && sourceHasRestParameter === targetHasRestParameter) { return true; } if (partialMatch && sourceMinArgumentCount <= targetMinArgumentCount) { return true; } return false; } function compareSignaturesIdentical(source, target, partialMatch, ignoreThisTypes, ignoreReturnTypes, compareTypes2) { if (source === target) { return -1; } if (!isMatchingSignature(source, target, partialMatch)) { return 0; } if (length(source.typeParameters) !== length(target.typeParameters)) { return 0; } if (target.typeParameters) { const mapper = createTypeMapper(source.typeParameters, target.typeParameters); for (let i = 0;i < target.typeParameters.length; i++) { const s = source.typeParameters[i]; const t = target.typeParameters[i]; if (!(s === t || compareTypes2(instantiateType(getConstraintFromTypeParameter(s), mapper) || unknownType, getConstraintFromTypeParameter(t) || unknownType) && compareTypes2(instantiateType(getDefaultFromTypeParameter(s), mapper) || unknownType, getDefaultFromTypeParameter(t) || unknownType))) { return 0; } } source = instantiateSignature(source, mapper, true); } let result = -1; if (!ignoreThisTypes) { const sourceThisType = getThisTypeOfSignature(source); if (sourceThisType) { const targetThisType = getThisTypeOfSignature(target); if (targetThisType) { const related = compareTypes2(sourceThisType, targetThisType); if (!related) { return 0; } result &= related; } } } const targetLen = getParameterCount(target); for (let i = 0;i < targetLen; i++) { const s = getTypeAtPosition(source, i); const t = getTypeAtPosition(target, i); const related = compareTypes2(t, s); if (!related) { return 0; } result &= related; } if (!ignoreReturnTypes) { const sourceTypePredicate = getTypePredicateOfSignature(source); const targetTypePredicate = getTypePredicateOfSignature(target); result &= sourceTypePredicate || targetTypePredicate ? compareTypePredicatesIdentical(sourceTypePredicate, targetTypePredicate, compareTypes2) : compareTypes2(getReturnTypeOfSignature(source), getReturnTypeOfSignature(target)); } return result; } function compareTypePredicatesIdentical(source, target, compareTypes2) { return !(source && target && typePredicateKindsMatch(source, target)) ? 0 : source.type === target.type ? -1 : source.type && target.type ? compareTypes2(source.type, target.type) : 0; } function literalTypesWithSameBaseType(types) { let commonBaseType; for (const t of types) { if (!(t.flags & 262144)) { const baseType = getBaseTypeOfLiteralType(t); commonBaseType ?? (commonBaseType = baseType); if (baseType === t || baseType !== commonBaseType) { return false; } } } return true; } function getCombinedTypeFlags(types) { return reduceLeft(types, (flags, t) => flags | (t.flags & 134217728 ? getCombinedTypeFlags(t.types) : t.flags), 0); } function getCommonSupertype(types) { if (types.length === 1) { return types[0]; } const primaryTypes = strictNullChecks ? sameMap(types, (t) => filterType(t, (u) => !(u.flags & 12))) : types; const superTypeOrUnion = literalTypesWithSameBaseType(primaryTypes) ? getUnionType(primaryTypes) : getSingleCommonSupertype(primaryTypes); return primaryTypes === types ? superTypeOrUnion : getNullableType(superTypeOrUnion, getCombinedTypeFlags(types) & 12); } function getSingleCommonSupertype(types) { const candidate = reduceLeft(types, (s, t) => isTypeStrictSubtypeOf(s, t) ? t : s); return every(types, (t) => t === candidate || isTypeStrictSubtypeOf(t, candidate)) ? candidate : reduceLeft(types, (s, t) => isTypeSubtypeOf(s, t) ? t : s); } function getCommonSubtype(types) { return reduceLeft(types, (s, t) => isTypeSubtypeOf(t, s) ? t : s); } function isArrayType(type) { return !!(getObjectFlags(type) & 4) && (type.target === globalArrayType || type.target === globalReadonlyArrayType); } function isReadonlyArrayType(type) { return !!(getObjectFlags(type) & 4) && type.target === globalReadonlyArrayType; } function isArrayOrTupleType(type) { return isArrayType(type) || isTupleType(type); } function isMutableArrayOrTuple(type) { return isArrayType(type) && !isReadonlyArrayType(type) || isTupleType(type) && !type.target.readonly; } function getElementTypeOfArrayType(type) { return isArrayType(type) ? getTypeArguments(type)[0] : undefined; } function isArrayLikeType(type) { return isArrayType(type) || !(type.flags & 12) && isTypeAssignableTo(type, anyReadonlyArrayType); } function isMutableArrayLikeType(type) { return isMutableArrayOrTuple(type) || !(type.flags & (1 | 12)) && isTypeAssignableTo(type, anyArrayType); } function getSingleBaseForNonAugmentingSubtype(type) { if (!(getObjectFlags(type) & 4) || !(getObjectFlags(type.target) & 3)) { return; } if (getObjectFlags(type) & 33554432) { return getObjectFlags(type) & 67108864 ? type.cachedEquivalentBaseType : undefined; } type.objectFlags |= 33554432; const target = type.target; if (getObjectFlags(target) & 1) { const baseTypeNode = getBaseTypeNodeOfClass(target); if (baseTypeNode && baseTypeNode.expression.kind !== 80 && baseTypeNode.expression.kind !== 212) { return; } } const bases = getBaseTypes(target); if (bases.length !== 1) { return; } if (getMembersOfSymbol(type.symbol).size) { return; } let instantiatedBase = !length(target.typeParameters) ? bases[0] : instantiateType(bases[0], createTypeMapper(target.typeParameters, getTypeArguments(type).slice(0, target.typeParameters.length))); if (length(getTypeArguments(type)) > length(target.typeParameters)) { instantiatedBase = getTypeWithThisArgument(instantiatedBase, last(getTypeArguments(type))); } type.objectFlags |= 67108864; return type.cachedEquivalentBaseType = instantiatedBase; } function isEmptyLiteralType(type) { return strictNullChecks ? type === implicitNeverType : type === undefinedWideningType; } function isEmptyArrayLiteralType(type) { const elementType = getElementTypeOfArrayType(type); return !!elementType && isEmptyLiteralType(elementType); } function isTupleLikeType(type) { let lengthType; return isTupleType(type) || !!getPropertyOfType(type, "0") || isArrayLikeType(type) && !!(lengthType = getTypeOfPropertyOfType(type, "length")) && everyType(lengthType, (t) => !!(t.flags & 2048)); } function isArrayOrTupleLikeType(type) { return isArrayLikeType(type) || isTupleLikeType(type); } function getTupleElementType(type, index) { const propType = getTypeOfPropertyOfType(type, "" + index); if (propType) { return propType; } if (everyType(type, isTupleType)) { return getTupleElementTypeOutOfStartCount(type, index, compilerOptions.noUncheckedIndexedAccess ? undefinedType : undefined); } return; } function isNeitherUnitTypeNorNever(type) { return !(type.flags & (97292 | 262144)); } function isUnitType(type) { return !!(type.flags & 97292); } function isUnitLikeType(type) { const t = getBaseConstraintOrType(type); return t.flags & 268435456 ? some(t.types, isUnitType) : isUnitType(t); } function extractUnitType(type) { return type.flags & 268435456 ? find(type.types, isUnitType) || type : type; } function isLiteralType(type) { return type.flags & 256 ? true : type.flags & 134217728 ? type.flags & 32768 ? true : every(type.types, isUnitType) : isUnitType(type); } function getBaseTypeOfLiteralType(type) { return type.flags & 98304 ? getBaseTypeOfEnumLikeType(type) : type.flags & (1024 | 4194304 | 8388608) ? stringType : type.flags & 2048 ? numberType : type.flags & 4096 ? bigintType : type.flags & 8192 ? booleanType : type.flags & 134217728 ? getBaseTypeOfLiteralTypeUnion(type) : type; } function getBaseTypeOfLiteralTypeUnion(type) { const key = `B${getTypeId(type)}`; return getCachedType(key) ?? setCachedType(key, mapType(type, getBaseTypeOfLiteralType)); } function getBaseTypeOfLiteralTypeForComparison(type) { return type.flags & (1024 | 4194304 | 8388608) ? stringType : type.flags & (2048 | 65536) ? numberType : type.flags & 4096 ? bigintType : type.flags & 8192 ? booleanType : type.flags & 134217728 ? mapType(type, getBaseTypeOfLiteralTypeForComparison) : type; } function getWidenedLiteralType(type) { return type.flags & 98304 && isFreshLiteralType(type) ? getBaseTypeOfEnumLikeType(type) : type.flags & 1024 && isFreshLiteralType(type) ? stringType : type.flags & 2048 && isFreshLiteralType(type) ? numberType : type.flags & 4096 && isFreshLiteralType(type) ? bigintType : type.flags & 8192 && isFreshLiteralType(type) ? booleanType : type.flags & 134217728 ? mapType(type, getWidenedLiteralType) : type; } function getWidenedUniqueESSymbolType(type) { return type.flags & 16384 ? esSymbolType : type.flags & 134217728 ? mapType(type, getWidenedUniqueESSymbolType) : type; } function getWidenedLiteralLikeTypeForContextualType(type, contextualType) { if (!isLiteralOfContextualType(type, contextualType)) { type = getWidenedUniqueESSymbolType(getWidenedLiteralType(type)); } return getRegularTypeOfLiteralType(type); } function getWidenedLiteralLikeTypeForContextualReturnTypeIfNeeded(type, contextualSignatureReturnType, isAsync) { if (type && isUnitType(type)) { const contextualType = !contextualSignatureReturnType ? undefined : isAsync ? getPromisedTypeOfPromise(contextualSignatureReturnType) : contextualSignatureReturnType; type = getWidenedLiteralLikeTypeForContextualType(type, contextualType); } return type; } function getWidenedLiteralLikeTypeForContextualIterationTypeIfNeeded(type, contextualSignatureReturnType, kind, isAsyncGenerator) { if (type && isUnitType(type)) { const contextualType = !contextualSignatureReturnType ? undefined : getIterationTypeOfGeneratorFunctionReturnType(kind, contextualSignatureReturnType, isAsyncGenerator); type = getWidenedLiteralLikeTypeForContextualType(type, contextualType); } return type; } function isTupleType(type) { return !!(getObjectFlags(type) & 4 && type.target.objectFlags & 8); } function isGenericTupleType(type) { return isTupleType(type) && !!(type.target.combinedFlags & 8); } function isSingleElementGenericTupleType(type) { return isGenericTupleType(type) && type.target.elementFlags.length === 1; } function getRestTypeOfTupleType(type) { return getElementTypeOfSliceOfTupleType(type, type.target.fixedLength); } function getTupleElementTypeOutOfStartCount(type, index, undefinedOrMissingType2) { return mapType(type, (t) => { const tupleType = t; const restType = getRestTypeOfTupleType(tupleType); if (!restType) { return undefinedType; } if (undefinedOrMissingType2 && index >= getTotalFixedElementCount(tupleType.target)) { return getUnionType([restType, undefinedOrMissingType2]); } return restType; }); } function getRestArrayTypeOfTupleType(type) { const restType = getRestTypeOfTupleType(type); return restType && createArrayType(restType); } function getElementTypeOfSliceOfTupleType(type, index, endSkipCount = 0, writing = false, noReductions = false) { const length2 = getTypeReferenceArity(type) - endSkipCount; if (index < length2) { const typeArguments = getTypeArguments(type); const elementTypes = []; for (let i = index;i < length2; i++) { const t = typeArguments[i]; elementTypes.push(type.target.elementFlags[i] & 8 ? getIndexedAccessType(t, numberType) : t); } return writing ? getIntersectionType(elementTypes) : getUnionType(elementTypes, noReductions ? 0 : 1); } return; } function isTupleTypeStructureMatching(t1, t2) { return getTypeReferenceArity(t1) === getTypeReferenceArity(t2) && every(t1.target.elementFlags, (f, i) => (f & 12) === (t2.target.elementFlags[i] & 12)); } function isZeroBigInt({ value }) { return value.base10Value === "0"; } function removeDefinitelyFalsyTypes(type) { return filterType(type, (t) => hasTypeFacts(t, 4194304)); } function extractDefinitelyFalsyTypes(type) { return mapType(type, getDefinitelyFalsyPartOfType); } function getDefinitelyFalsyPartOfType(type) { return type.flags & 32 ? emptyStringType : type.flags & 64 ? zeroType : type.flags & 128 ? zeroBigIntType : type === regularFalseType || type === falseType || type.flags & (16 | 4 | 8 | 3) || type.flags & 1024 && type.value === "" || type.flags & 2048 && type.value === 0 || type.flags & 4096 && isZeroBigInt(type) ? type : neverType; } function getNullableType(type, flags) { const missing = flags & ~type.flags & (4 | 8); return missing === 0 ? type : missing === 4 ? getUnionType([type, undefinedType]) : missing === 8 ? getUnionType([type, nullType]) : getUnionType([type, undefinedType, nullType]); } function getOptionalType(type, isProperty = false) { Debug.assert(strictNullChecks); const missingOrUndefined = isProperty ? undefinedOrMissingType : undefinedType; return type === missingOrUndefined || type.flags & 134217728 && type.types[0] === missingOrUndefined ? type : getUnionType([type, missingOrUndefined]); } function getGlobalNonNullableTypeInstantiation(type) { if (!deferredGlobalNonNullableTypeAlias) { deferredGlobalNonNullableTypeAlias = getGlobalSymbol("NonNullable", 524288, undefined) || unknownSymbol; } return deferredGlobalNonNullableTypeAlias !== unknownSymbol ? getTypeAliasInstantiation(deferredGlobalNonNullableTypeAlias, [type]) : getIntersectionType([type, emptyObjectType]); } function getNonNullableType(type) { return strictNullChecks ? getAdjustedTypeWithFacts(type, 2097152) : type; } function addOptionalTypeMarker(type) { return strictNullChecks ? getUnionType([type, optionalType]) : type; } function removeOptionalTypeMarker(type) { return strictNullChecks ? removeType(type, optionalType) : type; } function propagateOptionalTypeMarker(type, node, wasOptional) { return wasOptional ? isOutermostOptionalChain(node) ? getOptionalType(type) : addOptionalTypeMarker(type) : type; } function getOptionalExpressionType(exprType, expression) { return isExpressionOfOptionalChainRoot(expression) ? getNonNullableType(exprType) : isOptionalChain(expression) ? removeOptionalTypeMarker(exprType) : exprType; } function removeMissingType(type, isOptional) { return exactOptionalPropertyTypes && isOptional ? removeType(type, missingType) : type; } function containsMissingType(type) { return type === missingType || !!(type.flags & 134217728) && type.types[0] === missingType; } function removeMissingOrUndefinedType(type) { return exactOptionalPropertyTypes ? removeType(type, missingType) : getTypeWithFacts(type, 524288); } function isCoercibleUnderDoubleEquals(source, target) { return (source.flags & (64 | 32 | 8192)) !== 0 && (target.flags & (64 | 32 | 256)) !== 0; } function isObjectTypeWithInferableIndex(type) { const objectFlags = getObjectFlags(type); return type.flags & 268435456 ? every(type.types, isObjectTypeWithInferableIndex) : !!(type.symbol && (type.symbol.flags & (4096 | 2048 | 384 | 512)) !== 0 && !(type.symbol.flags & 32) && !typeHasCallOrConstructSignatures(type)) || !!(objectFlags & 4194304) || !!(objectFlags & 1024 && isObjectTypeWithInferableIndex(type.source)); } function createSymbolWithType(source, type) { const symbol = createSymbol(source.flags, source.escapedName, getCheckFlags(source) & 8); symbol.declarations = source.declarations; symbol.parent = source.parent; symbol.links.type = type; symbol.links.target = source; if (source.valueDeclaration) { symbol.valueDeclaration = source.valueDeclaration; } const nameType = getSymbolLinks(source).nameType; if (nameType) { symbol.links.nameType = nameType; } return symbol; } function transformTypeOfMembers(type, f) { const members = createSymbolTable(); for (const property of getPropertiesOfObjectType(type)) { const original = getTypeOfSymbol(property); const updated = f(original); members.set(property.escapedName, updated === original ? property : createSymbolWithType(property, updated)); } return members; } function getRegularTypeOfObjectLiteral(type) { if (!(isObjectLiteralType2(type) && getObjectFlags(type) & 8192)) { return type; } const regularType = type.regularType; if (regularType) { return regularType; } const resolved = type; const members = transformTypeOfMembers(type, getRegularTypeOfObjectLiteral); const regularNew = createAnonymousType(resolved.symbol, members, resolved.callSignatures, resolved.constructSignatures, resolved.indexInfos); regularNew.flags = resolved.flags; regularNew.objectFlags |= resolved.objectFlags & ~8192; type.regularType = regularNew; return regularNew; } function createWideningContext(parent2, propertyName, siblings) { return { parent: parent2, propertyName, siblings, resolvedProperties: undefined }; } function getSiblingsOfContext(context) { if (!context.siblings) { const siblings = []; for (const type of getSiblingsOfContext(context.parent)) { if (isObjectLiteralType2(type)) { const prop = getPropertyOfObjectType(type, context.propertyName); if (prop) { forEachType(getTypeOfSymbol(prop), (t) => { siblings.push(t); }); } } } context.siblings = siblings; } return context.siblings; } function getPropertiesOfContext(context) { if (!context.resolvedProperties) { const names = /* @__PURE__ */ new Map; for (const t of getSiblingsOfContext(context)) { if (isObjectLiteralType2(t) && !(getObjectFlags(t) & 2097152)) { for (const prop of getPropertiesOfType(t)) { names.set(prop.escapedName, prop); } } } context.resolvedProperties = arrayFrom(names.values()); } return context.resolvedProperties; } function getWidenedProperty(prop, context) { if (!(prop.flags & 4)) { return prop; } const original = getTypeOfSymbol(prop); const propContext = context && createWideningContext(context, prop.escapedName, undefined); const widened = getWidenedTypeWithContext(original, propContext); return widened === original ? prop : createSymbolWithType(prop, widened); } function getUndefinedProperty(prop) { const cached = undefinedProperties.get(prop.escapedName); if (cached) { return cached; } const result = createSymbolWithType(prop, undefinedOrMissingType); result.flags |= 16777216; undefinedProperties.set(prop.escapedName, result); return result; } function getWidenedTypeOfObjectLiteral(type, context) { const members = createSymbolTable(); for (const prop of getPropertiesOfObjectType(type)) { members.set(prop.escapedName, getWidenedProperty(prop, context)); } if (context) { for (const prop of getPropertiesOfContext(context)) { if (!members.has(prop.escapedName)) { members.set(prop.escapedName, getUndefinedProperty(prop)); } } } const result = createAnonymousType(type.symbol, members, emptyArray, emptyArray, sameMap(getIndexInfosOfType(type), (info) => createIndexInfo(info.keyType, getWidenedType(info.type), info.isReadonly, info.declaration, info.components))); result.objectFlags |= getObjectFlags(type) & (4096 | 262144); return result; } function getWidenedType(type) { return getWidenedTypeWithContext(type, undefined); } function getWidenedTypeWithContext(type, context) { if (getObjectFlags(type) & 196608) { if (context === undefined && type.widened) { return type.widened; } let result; if (type.flags & (1 | 12)) { result = anyType; } else if (isObjectLiteralType2(type)) { result = getWidenedTypeOfObjectLiteral(type, context); } else if (type.flags & 134217728) { const unionContext = context || createWideningContext(undefined, undefined, type.types); const widenedTypes = sameMap(type.types, (t) => t.flags & 12 ? t : getWidenedTypeWithContext(t, unionContext)); result = getUnionType(widenedTypes, some(widenedTypes, isEmptyObjectType) ? 2 : 1); } else if (type.flags & 268435456) { result = getIntersectionType(sameMap(type.types, getWidenedType)); } else if (isArrayOrTupleType(type)) { result = createTypeReference(type.target, sameMap(getTypeArguments(type), getWidenedType)); } if (result && context === undefined) { type.widened = result; } return result || type; } return type; } function reportWideningErrorsInType(type) { var _a; let errorReported = false; if (getObjectFlags(type) & 65536) { if (type.flags & 134217728) { if (some(type.types, isEmptyObjectType)) { errorReported = true; } else { for (const t of type.types) { errorReported || (errorReported = reportWideningErrorsInType(t)); } } } else if (isArrayOrTupleType(type)) { for (const t of getTypeArguments(type)) { errorReported || (errorReported = reportWideningErrorsInType(t)); } } else if (isObjectLiteralType2(type)) { for (const p of getPropertiesOfObjectType(type)) { const t = getTypeOfSymbol(p); if (getObjectFlags(t) & 65536) { errorReported = reportWideningErrorsInType(t); if (!errorReported) { const valueDeclaration = (_a = p.declarations) == null ? undefined : _a.find((d) => { var _a2; return ((_a2 = d.symbol.valueDeclaration) == null ? undefined : _a2.parent) === type.symbol.valueDeclaration; }); if (valueDeclaration) { error2(valueDeclaration, Diagnostics.Object_literal_s_property_0_implicitly_has_an_1_type, symbolToString(p), typeToString(getWidenedType(t))); errorReported = true; } } } } } } return errorReported; } function reportImplicitAny(declaration, type, wideningKind) { const typeAsString = typeToString(getWidenedType(type)); if (isInJSFile(declaration) && !isCheckJsEnabledForFile(getSourceFileOfNode(declaration), compilerOptions)) { return; } let diagnostic; switch (declaration.kind) { case 227: case 173: case 172: diagnostic = noImplicitAny ? Diagnostics.Member_0_implicitly_has_an_1_type : Diagnostics.Member_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage; break; case 170: const param = declaration; if (isIdentifier(param.name)) { const originalKeywordKind = identifierToKeywordKind(param.name); if ((isCallSignatureDeclaration(param.parent) || isMethodSignature(param.parent) || isFunctionTypeNode(param.parent)) && param.parent.parameters.includes(param) && (resolveName(param, param.name.escapedText, 788968, undefined, true) || originalKeywordKind && isTypeNodeKind(originalKeywordKind))) { const newName = "arg" + param.parent.parameters.indexOf(param); const typeName = declarationNameToString(param.name) + (param.dotDotDotToken ? "[]" : ""); errorOrSuggestion(noImplicitAny, declaration, Diagnostics.Parameter_has_a_name_but_no_type_Did_you_mean_0_Colon_1, newName, typeName); return; } } diagnostic = declaration.dotDotDotToken ? noImplicitAny ? Diagnostics.Rest_parameter_0_implicitly_has_an_any_type : Diagnostics.Rest_parameter_0_implicitly_has_an_any_type_but_a_better_type_may_be_inferred_from_usage : noImplicitAny ? Diagnostics.Parameter_0_implicitly_has_an_1_type : Diagnostics.Parameter_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage; break; case 209: diagnostic = Diagnostics.Binding_element_0_implicitly_has_an_1_type; if (!noImplicitAny) { return; } break; case 318: error2(declaration, Diagnostics.Function_type_which_lacks_return_type_annotation_implicitly_has_an_0_return_type, typeAsString); return; case 324: if (noImplicitAny && isJSDocOverloadTag(declaration.parent)) { error2(declaration.parent.tagName, Diagnostics.This_overload_implicitly_returns_the_type_0_because_it_lacks_a_return_type_annotation, typeAsString); } return; case 263: case 175: case 174: case 178: case 179: case 219: case 220: if (noImplicitAny && !declaration.name) { if (wideningKind === 3) { error2(declaration, Diagnostics.Generator_implicitly_has_yield_type_0_Consider_supplying_a_return_type_annotation, typeAsString); } else { error2(declaration, Diagnostics.Function_expression_which_lacks_return_type_annotation_implicitly_has_an_0_return_type, typeAsString); } return; } diagnostic = !noImplicitAny ? Diagnostics._0_implicitly_has_an_1_return_type_but_a_better_type_may_be_inferred_from_usage : wideningKind === 3 ? Diagnostics._0_which_lacks_return_type_annotation_implicitly_has_an_1_yield_type : Diagnostics._0_which_lacks_return_type_annotation_implicitly_has_an_1_return_type; break; case 201: if (noImplicitAny) { error2(declaration, Diagnostics.Mapped_object_type_implicitly_has_an_any_template_type); } return; default: diagnostic = noImplicitAny ? Diagnostics.Variable_0_implicitly_has_an_1_type : Diagnostics.Variable_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage; } errorOrSuggestion(noImplicitAny, declaration, diagnostic, declarationNameToString(getNameOfDeclaration(declaration)), typeAsString); } function shouldReportErrorsFromWideningWithContextualSignature(declaration, wideningKind) { const signature = getContextualSignatureForFunctionLikeDeclaration(declaration); if (!signature) { return true; } let returnType = getReturnTypeOfSignature(signature); const flags = getFunctionFlags(declaration); switch (wideningKind) { case 1: if (flags & 1) { returnType = getIterationTypeOfGeneratorFunctionReturnType(1, returnType, !!(flags & 2)) ?? returnType; } else if (flags & 2) { returnType = getAwaitedTypeNoAlias(returnType) ?? returnType; } return isGenericType(returnType); case 3: const yieldType = getIterationTypeOfGeneratorFunctionReturnType(0, returnType, !!(flags & 2)); return !!yieldType && isGenericType(yieldType); case 2: const nextType = getIterationTypeOfGeneratorFunctionReturnType(2, returnType, !!(flags & 2)); return !!nextType && isGenericType(nextType); } return false; } function reportErrorsFromWidening(declaration, type, wideningKind) { addLazyDiagnostic(() => { if (noImplicitAny && getObjectFlags(type) & 65536) { if (!wideningKind || isFunctionLikeDeclaration(declaration) && shouldReportErrorsFromWideningWithContextualSignature(declaration, wideningKind)) { if (!reportWideningErrorsInType(type)) { reportImplicitAny(declaration, type, wideningKind); } } } }); } function applyToParameterTypes(source, target, callback) { const sourceCount = getParameterCount(source); const targetCount = getParameterCount(target); const sourceRestType = getEffectiveRestType(source); const targetRestType = getEffectiveRestType(target); const targetNonRestCount = targetRestType ? targetCount - 1 : targetCount; const paramCount = sourceRestType ? targetNonRestCount : Math.min(sourceCount, targetNonRestCount); const sourceThisType = getThisTypeOfSignature(source); if (sourceThisType) { const targetThisType = getThisTypeOfSignature(target); if (targetThisType) { callback(sourceThisType, targetThisType); } } for (let i = 0;i < paramCount; i++) { callback(getTypeAtPosition(source, i), getTypeAtPosition(target, i)); } if (targetRestType) { callback(getRestTypeAtPosition(source, paramCount, isConstTypeVariable(targetRestType) && !someType(targetRestType, isMutableArrayLikeType)), targetRestType); } } function applyToReturnTypes(source, target, callback) { const targetTypePredicate = getTypePredicateOfSignature(target); if (targetTypePredicate) { const sourceTypePredicate = getTypePredicateOfSignature(source); if (sourceTypePredicate && typePredicateKindsMatch(sourceTypePredicate, targetTypePredicate) && sourceTypePredicate.type && targetTypePredicate.type) { callback(sourceTypePredicate.type, targetTypePredicate.type); return; } } const targetReturnType = getReturnTypeOfSignature(target); if (couldContainTypeVariables(targetReturnType)) { callback(getReturnTypeOfSignature(source), targetReturnType); } } function createInferenceContext(typeParameters, signature, flags, compareTypes2) { return createInferenceContextWorker(typeParameters.map(createInferenceInfo), signature, flags, compareTypes2 || compareTypesAssignable); } function cloneInferenceContext(context, extraFlags = 0) { return context && createInferenceContextWorker(map(context.inferences, cloneInferenceInfo), context.signature, context.flags | extraFlags, context.compareTypes); } function createInferenceContextWorker(inferences, signature, flags, compareTypes2) { const context = { inferences, signature, flags, compareTypes: compareTypes2, mapper: reportUnmeasurableMapper, nonFixingMapper: reportUnmeasurableMapper }; context.mapper = makeFixingMapperForContext(context); context.nonFixingMapper = makeNonFixingMapperForContext(context); return context; } function makeFixingMapperForContext(context) { return makeDeferredTypeMapper(map(context.inferences, (i) => i.typeParameter), map(context.inferences, (inference, i) => () => { if (!inference.isFixed) { inferFromIntraExpressionSites(context); clearCachedInferences(context.inferences); inference.isFixed = true; } return getInferredType(context, i); })); } function makeNonFixingMapperForContext(context) { return makeDeferredTypeMapper(map(context.inferences, (i) => i.typeParameter), map(context.inferences, (_, i) => () => { return getInferredType(context, i); })); } function clearCachedInferences(inferences) { for (const inference of inferences) { if (!inference.isFixed) { inference.inferredType = undefined; } } } function addIntraExpressionInferenceSite(context, node, type) { (context.intraExpressionInferenceSites ?? (context.intraExpressionInferenceSites = [])).push({ node, type }); } function inferFromIntraExpressionSites(context) { if (context.intraExpressionInferenceSites) { for (const { node, type } of context.intraExpressionInferenceSites) { const contextualType = node.kind === 175 ? getContextualTypeForObjectLiteralMethod(node, 2) : getContextualType2(node, 2); if (contextualType) { inferTypes(context.inferences, type, contextualType); } } context.intraExpressionInferenceSites = undefined; } } function createInferenceInfo(typeParameter) { return { typeParameter, candidates: undefined, contraCandidates: undefined, inferredType: undefined, priority: undefined, topLevel: true, isFixed: false, impliedArity: undefined }; } function cloneInferenceInfo(inference) { return { typeParameter: inference.typeParameter, candidates: inference.candidates && inference.candidates.slice(), contraCandidates: inference.contraCandidates && inference.contraCandidates.slice(), inferredType: inference.inferredType, priority: inference.priority, topLevel: inference.topLevel, isFixed: inference.isFixed, impliedArity: inference.impliedArity }; } function cloneInferredPartOfContext(context) { const inferences = filter(context.inferences, hasInferenceCandidates); return inferences.length ? createInferenceContextWorker(map(inferences, cloneInferenceInfo), context.signature, context.flags, context.compareTypes) : undefined; } function getMapperFromContext(context) { return context && context.mapper; } function couldContainTypeVariables(type) { const objectFlags = getObjectFlags(type); if (objectFlags & 524288) { return !!(objectFlags & 1048576); } const result = !!(type.flags & 132644864 || type.flags & 1048576 && !isNonGenericTopLevelType(type) && (objectFlags & 4 && (type.node || some(getTypeArguments(type), couldContainTypeVariables)) || objectFlags & 16 && type.symbol && type.symbol.flags & (16 | 8192 | 32 | 2048 | 4096) && type.symbol.declarations || objectFlags & (32 | 1024 | 4194304 | 8388608)) || type.flags & 402653184 && !(type.flags & 32768) && !isNonGenericTopLevelType(type) && some(type.types, couldContainTypeVariables)); if (type.flags & 403963917) { type.objectFlags |= 524288 | (result ? 1048576 : 0); } return result; } function isNonGenericTopLevelType(type) { if (type.aliasSymbol && !type.aliasTypeArguments) { const declaration = getDeclarationOfKind(type.aliasSymbol, 266); return !!(declaration && findAncestor(declaration.parent, (n) => n.kind === 308 ? true : n.kind === 268 ? false : "quit")); } return false; } function isTypeParameterAtTopLevel(type, tp, depth = 0) { return !!(type === tp || type.flags & 402653184 && some(type.types, (t) => isTypeParameterAtTopLevel(t, tp, depth)) || depth < 3 && type.flags & 67108864 && (isTypeParameterAtTopLevel(getTrueTypeFromConditionalType(type), tp, depth + 1) || isTypeParameterAtTopLevel(getFalseTypeFromConditionalType(type), tp, depth + 1))); } function isTypeParameterAtTopLevelInReturnType(signature, typeParameter) { const typePredicate = getTypePredicateOfSignature(signature); return typePredicate ? !!typePredicate.type && isTypeParameterAtTopLevel(typePredicate.type, typeParameter) : isTypeParameterAtTopLevel(getReturnTypeOfSignature(signature), typeParameter); } function createEmptyObjectTypeFromStringLiteral(type) { const members = createSymbolTable(); forEachType(type, (t) => { if (!(t.flags & 1024)) { return; } const name = escapeLeadingUnderscores(t.value); const literalProp = createSymbol(4, name); literalProp.links.type = anyType; if (t.symbol) { literalProp.declarations = t.symbol.declarations; literalProp.valueDeclaration = t.symbol.valueDeclaration; } members.set(name, literalProp); }); const indexInfos = type.flags & 32 ? [createIndexInfo(stringType, emptyObjectType, false)] : emptyArray; return createAnonymousType(undefined, members, emptyArray, emptyArray, indexInfos); } function inferTypeForHomomorphicMappedType(source, target, constraint) { const cacheKey = source.id + "," + target.id + "," + constraint.id; if (reverseHomomorphicMappedCache.has(cacheKey)) { return reverseHomomorphicMappedCache.get(cacheKey); } const type = createReverseMappedType(source, target, constraint); reverseHomomorphicMappedCache.set(cacheKey, type); return type; } function isPartiallyInferableType(type) { return !(getObjectFlags(type) & 262144) || isObjectLiteralType2(type) && some(getPropertiesOfType(type), (prop) => isPartiallyInferableType(getTypeOfSymbol(prop))) || isTupleType(type) && some(getElementTypes(type), isPartiallyInferableType); } function createReverseMappedType(source, target, constraint) { if (!(getIndexInfoOfType(source, stringType) || getPropertiesOfType(source).length !== 0 && isPartiallyInferableType(source))) { return; } if (isArrayType(source)) { const elementType = inferReverseMappedType(getTypeArguments(source)[0], target, constraint); if (!elementType) { return; } return createArrayType(elementType, isReadonlyArrayType(source)); } if (isTupleType(source)) { const elementTypes = map(getElementTypes(source), (t) => inferReverseMappedType(t, target, constraint)); if (!every(elementTypes, (t) => !!t)) { return; } const elementFlags = getMappedTypeModifiers(target) & 4 ? sameMap(source.target.elementFlags, (f) => f & 2 ? 1 : f) : source.target.elementFlags; return createTupleType(elementTypes, elementFlags, source.target.readonly, source.target.labeledElementDeclarations); } const reversed = createObjectType(1024 | 16, undefined); reversed.source = source; reversed.mappedType = target; reversed.constraintType = constraint; return reversed; } function getTypeOfReverseMappedSymbol(symbol) { const links = getSymbolLinks(symbol); if (!links.type) { links.type = inferReverseMappedType(symbol.links.propertyType, symbol.links.mappedType, symbol.links.constraintType) || unknownType; } return links.type; } function inferReverseMappedTypeWorker(sourceType, target, constraint) { const typeParameter = getIndexedAccessType(constraint.type, getTypeParameterFromMappedType(target)); const templateType = getTemplateTypeFromMappedType(target); const inference = createInferenceInfo(typeParameter); inferTypes([inference], sourceType, templateType); return getWidenedType(getTypeFromInference(inference) || unknownType); } function inferReverseMappedType(source, target, constraint) { const cacheKey = source.id + "," + target.id + "," + constraint.id; if (reverseMappedCache.has(cacheKey)) { return reverseMappedCache.get(cacheKey) || unknownType; } reverseMappedSourceStack.push(source); reverseMappedTargetStack.push(target); const saveExpandingFlags = reverseExpandingFlags; if (isDeeplyNestedType(source, reverseMappedSourceStack, reverseMappedSourceStack.length, 2)) reverseExpandingFlags |= 1; if (isDeeplyNestedType(target, reverseMappedTargetStack, reverseMappedTargetStack.length, 2)) reverseExpandingFlags |= 2; let type; if (reverseExpandingFlags !== 3) { type = inferReverseMappedTypeWorker(source, target, constraint); } reverseMappedSourceStack.pop(); reverseMappedTargetStack.pop(); reverseExpandingFlags = saveExpandingFlags; reverseMappedCache.set(cacheKey, type); return type; } function* getUnmatchedProperties(source, target, requireOptionalProperties, matchDiscriminantProperties) { const properties = getPropertiesOfType(target); for (const targetProp of properties) { if (isStaticPrivateIdentifierProperty(targetProp)) { continue; } if (requireOptionalProperties || !(targetProp.flags & 16777216 || getCheckFlags(targetProp) & 48)) { const sourceProp = getPropertyOfType(source, targetProp.escapedName); if (!sourceProp) { yield targetProp; } else if (matchDiscriminantProperties) { const targetType = getTypeOfSymbol(targetProp); if (targetType.flags & 97292) { const sourceType = getTypeOfSymbol(sourceProp); if (!(sourceType.flags & 1 || getRegularTypeOfLiteralType(sourceType) === getRegularTypeOfLiteralType(targetType))) { yield targetProp; } } } } } } function getUnmatchedProperty(source, target, requireOptionalProperties, matchDiscriminantProperties) { return firstOrUndefinedIterator(getUnmatchedProperties(source, target, requireOptionalProperties, matchDiscriminantProperties)); } function tupleTypesDefinitelyUnrelated(source, target) { return !(target.target.combinedFlags & 8) && target.target.minLength > source.target.minLength || !(target.target.combinedFlags & 12) && (!!(source.target.combinedFlags & 12) || target.target.fixedLength < source.target.fixedLength); } function typesDefinitelyUnrelated(source, target) { return isTupleType(source) && isTupleType(target) ? tupleTypesDefinitelyUnrelated(source, target) : !!getUnmatchedProperty(source, target, false, true) && !!getUnmatchedProperty(target, source, false, false); } function getTypeFromInference(inference) { return inference.candidates ? getUnionType(inference.candidates, 2) : inference.contraCandidates ? getIntersectionType(inference.contraCandidates) : undefined; } function hasSkipDirectInferenceFlag(node) { return !!getNodeLinks(node).skipDirectInference; } function isFromInferenceBlockedSource(type) { return !!(type.symbol && some(type.symbol.declarations, hasSkipDirectInferenceFlag)); } function templateLiteralTypesDefinitelyUnrelated(source, target) { const sourceStart = source.texts[0]; const targetStart = target.texts[0]; const sourceEnd = source.texts[source.texts.length - 1]; const targetEnd = target.texts[target.texts.length - 1]; const startLen = Math.min(sourceStart.length, targetStart.length); const endLen = Math.min(sourceEnd.length, targetEnd.length); return sourceStart.slice(0, startLen) !== targetStart.slice(0, startLen) || sourceEnd.slice(sourceEnd.length - endLen) !== targetEnd.slice(targetEnd.length - endLen); } function isValidNumberString(s, roundTripOnly) { if (s === "") return false; const n = +s; return isFinite(n) && (!roundTripOnly || "" + n === s); } function parseBigIntLiteralType(text) { return getBigIntLiteralType(parseValidBigInt(text)); } function isMemberOfStringMapping(source, target) { if (target.flags & 1) { return true; } if (target.flags & (32 | 4194304)) { return isTypeAssignableTo(source, target); } if (target.flags & 8388608) { const mappingStack = []; while (target.flags & 8388608) { mappingStack.unshift(target.symbol); target = target.type; } const mappedSource = reduceLeft(mappingStack, (memo, value) => getStringMappingType(value, memo), source); return mappedSource === source && isMemberOfStringMapping(source, target); } return false; } function isValidTypeForTemplateLiteralPlaceholder(source, target) { if (target.flags & 268435456) { return every(target.types, (t) => t === emptyTypeLiteralType || isValidTypeForTemplateLiteralPlaceholder(source, t)); } if (target.flags & 32 || isTypeAssignableTo(source, target)) { return true; } if (source.flags & 1024) { const value = source.value; return !!(target.flags & 64 && isValidNumberString(value, false) || target.flags & 128 && isValidBigIntString(value, false) || target.flags & (8192 | 12) && value === target.intrinsicName || target.flags & 8388608 && isMemberOfStringMapping(source, target) || target.flags & 4194304 && isTypeMatchedByTemplateLiteralType(source, target)); } if (source.flags & 4194304) { const texts = source.texts; return texts.length === 2 && texts[0] === "" && texts[1] === "" && isTypeAssignableTo(source.types[0], target); } return false; } function inferTypesFromTemplateLiteralType(source, target) { return source.flags & 1024 ? inferFromLiteralPartsToTemplateLiteral([source.value], emptyArray, target) : source.flags & 4194304 ? arrayIsEqualTo(source.texts, target.texts) ? map(source.types, (s, i) => { return isTypeAssignableTo(getBaseConstraintOrType(s), getBaseConstraintOrType(target.types[i])) ? s : getStringLikeTypeForType(s); }) : inferFromLiteralPartsToTemplateLiteral(source.texts, source.types, target) : undefined; } function isTypeMatchedByTemplateLiteralType(source, target) { const inferences = inferTypesFromTemplateLiteralType(source, target); return !!inferences && every(inferences, (r, i) => isValidTypeForTemplateLiteralPlaceholder(r, target.types[i])); } function getStringLikeTypeForType(type) { return type.flags & (1 | 12583968) ? type : getTemplateLiteralType(["", ""], [type]); } function inferFromLiteralPartsToTemplateLiteral(sourceTexts, sourceTypes, target) { const lastSourceIndex = sourceTexts.length - 1; const sourceStartText = sourceTexts[0]; const sourceEndText = sourceTexts[lastSourceIndex]; const targetTexts = target.texts; const lastTargetIndex = targetTexts.length - 1; const targetStartText = targetTexts[0]; const targetEndText = targetTexts[lastTargetIndex]; if (lastSourceIndex === 0 && sourceStartText.length < targetStartText.length + targetEndText.length || !sourceStartText.startsWith(targetStartText) || !sourceEndText.endsWith(targetEndText)) return; const remainingEndText = sourceEndText.slice(0, sourceEndText.length - targetEndText.length); const matches = []; let seg = 0; let pos = targetStartText.length; for (let i = 1;i < lastTargetIndex; i++) { const delim = targetTexts[i]; if (delim.length > 0) { let s = seg; let p = pos; while (true) { p = getSourceText(s).indexOf(delim, p); if (p >= 0) break; s++; if (s === sourceTexts.length) return; p = 0; } addMatch(s, p); pos += delim.length; } else if (pos < getSourceText(seg).length) { addMatch(seg, pos + 1); } else if (seg < lastSourceIndex) { addMatch(seg + 1, 0); } else { return; } } addMatch(lastSourceIndex, getSourceText(lastSourceIndex).length); return matches; function getSourceText(index) { return index < lastSourceIndex ? sourceTexts[index] : remainingEndText; } function addMatch(s, p) { const matchType = s === seg ? getStringLiteralType(getSourceText(s).slice(pos, p)) : getTemplateLiteralType([sourceTexts[seg].slice(pos), ...sourceTexts.slice(seg + 1, s), getSourceText(s).slice(0, p)], sourceTypes.slice(seg, s)); matches.push(matchType); seg = s; pos = p; } } function inferTypes(inferences, originalSource, originalTarget, priority = 0, contravariant = false) { let bivariant = false; let propagationType; let inferencePriority = 2048; let visited; let sourceStack; let targetStack; let expandingFlags = 0; inferFromTypes(originalSource, originalTarget); function inferFromTypes(source, target) { if (!couldContainTypeVariables(target) || isNoInferType(target)) { return; } if (source === wildcardType || source === blockedStringType) { const savePropagationType = propagationType; propagationType = source; inferFromTypes(target, target); propagationType = savePropagationType; return; } if (source.aliasSymbol && source.aliasSymbol === target.aliasSymbol) { if (source.aliasTypeArguments) { const params = getSymbolLinks(source.aliasSymbol).typeParameters; const minParams = getMinTypeArgumentCount(params); const sourceTypes = fillMissingTypeArguments(source.aliasTypeArguments, params, minParams, isInJSFile(source.aliasSymbol.valueDeclaration)); const targetTypes = fillMissingTypeArguments(target.aliasTypeArguments, params, minParams, isInJSFile(source.aliasSymbol.valueDeclaration)); inferFromTypeArguments(sourceTypes, targetTypes, getAliasVariances(source.aliasSymbol)); } return; } if (source === target && source.flags & 402653184) { for (const t of source.types) { inferFromTypes(t, t); } return; } if (target.flags & 134217728) { const [tempSources, tempTargets] = inferFromMatchingTypes(source.flags & 134217728 ? source.types : [source], target.types, isTypeOrBaseIdenticalTo); const [sources, targets] = inferFromMatchingTypes(tempSources, tempTargets, isTypeCloselyMatchedBy); if (targets.length === 0) { return; } target = getUnionType(targets); if (sources.length === 0) { inferWithPriority(source, target, 1); return; } source = getUnionType(sources); } else if (target.flags & 268435456 && !every(target.types, isNonGenericObjectType)) { if (!(source.flags & 134217728)) { const [sources, targets] = inferFromMatchingTypes(source.flags & 268435456 ? source.types : [source], target.types, isTypeIdenticalTo); if (sources.length === 0 || targets.length === 0) { return; } source = getIntersectionType(sources); target = getIntersectionType(targets); } } if (target.flags & (33554432 | 16777216)) { if (isNoInferType(target)) { return; } target = getActualTypeVariable(target); } if (target.flags & 34078720) { if (isFromInferenceBlockedSource(source)) { return; } const inference = getInferenceInfoForType(target); if (inference) { if (getObjectFlags(source) & 262144 || source === nonInferrableAnyType) { return; } if (!inference.isFixed) { const candidate = propagationType || source; if (candidate === blockedStringType) { return; } if (inference.priority === undefined || priority < inference.priority) { inference.candidates = undefined; inference.contraCandidates = undefined; inference.topLevel = true; inference.priority = priority; } if (priority === inference.priority) { if (contravariant && !bivariant) { if (!contains(inference.contraCandidates, candidate)) { inference.contraCandidates = append(inference.contraCandidates, candidate); clearCachedInferences(inferences); } } else if (!contains(inference.candidates, candidate)) { inference.candidates = append(inference.candidates, candidate); clearCachedInferences(inferences); } } if (!(priority & 128) && target.flags & 524288 && inference.topLevel && !isTypeParameterAtTopLevel(originalTarget, target)) { inference.topLevel = false; clearCachedInferences(inferences); } } inferencePriority = Math.min(inferencePriority, priority); return; } const simplified = getSimplifiedType(target, false); if (simplified !== target) { inferFromTypes(source, simplified); } else if (target.flags & 33554432) { const indexType = getSimplifiedType(target.indexType, false); if (indexType.flags & 132644864) { const simplified2 = distributeIndexOverObjectType(getSimplifiedType(target.objectType, false), indexType, false); if (simplified2 && simplified2 !== target) { inferFromTypes(source, simplified2); } } } } if (getObjectFlags(source) & 4 && getObjectFlags(target) & 4 && (source.target === target.target || isArrayType(source) && isArrayType(target)) && !(source.node && target.node)) { inferFromTypeArguments(getTypeArguments(source), getTypeArguments(target), getVariances(source.target)); } else if (source.flags & 2097152 && target.flags & 2097152) { inferFromContravariantTypes(source.type, target.type); } else if ((isLiteralType(source) || source.flags & 32) && target.flags & 2097152) { const empty = createEmptyObjectTypeFromStringLiteral(source); inferFromContravariantTypesWithPriority(empty, target.type, 256); } else if (source.flags & 33554432 && target.flags & 33554432) { inferFromTypes(source.objectType, target.objectType); inferFromTypes(source.indexType, target.indexType); } else if (source.flags & 8388608 && target.flags & 8388608) { if (source.symbol === target.symbol) { inferFromTypes(source.type, target.type); } } else if (source.flags & 16777216) { inferFromTypes(source.baseType, target); inferWithPriority(getSubstitutionIntersection(source), target, 4); } else if (target.flags & 67108864) { invokeOnce(source, target, inferToConditionalType); } else if (target.flags & 402653184) { inferToMultipleTypes(source, target.types, target.flags); } else if (source.flags & 134217728) { const sourceTypes = source.types; for (const sourceType of sourceTypes) { inferFromTypes(sourceType, target); } } else if (target.flags & 4194304) { inferToTemplateLiteralType(source, target); } else { source = getReducedType(source); if (isGenericMappedType(source) && isGenericMappedType(target)) { invokeOnce(source, target, inferFromGenericMappedTypes); } if (!(priority & 512 && source.flags & (268435456 | 132644864))) { const apparentSource = getApparentType(source); if (apparentSource !== source && !(apparentSource.flags & (1048576 | 268435456))) { return inferFromTypes(apparentSource, target); } source = apparentSource; } if (source.flags & (1048576 | 268435456)) { invokeOnce(source, target, inferFromObjectTypes); } } } function inferWithPriority(source, target, newPriority) { const savePriority = priority; priority |= newPriority; inferFromTypes(source, target); priority = savePriority; } function inferFromContravariantTypesWithPriority(source, target, newPriority) { const savePriority = priority; priority |= newPriority; inferFromContravariantTypes(source, target); priority = savePriority; } function inferToMultipleTypesWithPriority(source, targets, targetFlags, newPriority) { const savePriority = priority; priority |= newPriority; inferToMultipleTypes(source, targets, targetFlags); priority = savePriority; } function invokeOnce(source, target, action) { const key = source.id + "," + target.id; const status = visited && visited.get(key); if (status !== undefined) { inferencePriority = Math.min(inferencePriority, status); return; } (visited || (visited = /* @__PURE__ */ new Map)).set(key, -1); const saveInferencePriority = inferencePriority; inferencePriority = 2048; const saveExpandingFlags = expandingFlags; (sourceStack ?? (sourceStack = [])).push(source); (targetStack ?? (targetStack = [])).push(target); if (isDeeplyNestedType(source, sourceStack, sourceStack.length, 2)) expandingFlags |= 1; if (isDeeplyNestedType(target, targetStack, targetStack.length, 2)) expandingFlags |= 2; if (expandingFlags !== 3) { action(source, target); } else { inferencePriority = -1; } targetStack.pop(); sourceStack.pop(); expandingFlags = saveExpandingFlags; visited.set(key, inferencePriority); inferencePriority = Math.min(inferencePriority, saveInferencePriority); } function inferFromMatchingTypes(sources, targets, matches) { let matchedSources; let matchedTargets; for (const t of targets) { for (const s of sources) { if (matches(s, t)) { inferFromTypes(s, t); matchedSources = appendIfUnique(matchedSources, s); matchedTargets = appendIfUnique(matchedTargets, t); } } } return [ matchedSources ? filter(sources, (t) => !contains(matchedSources, t)) : sources, matchedTargets ? filter(targets, (t) => !contains(matchedTargets, t)) : targets ]; } function inferFromTypeArguments(sourceTypes, targetTypes, variances) { const count = sourceTypes.length < targetTypes.length ? sourceTypes.length : targetTypes.length; for (let i = 0;i < count; i++) { if (i < variances.length && (variances[i] & 7) === 2) { inferFromContravariantTypes(sourceTypes[i], targetTypes[i]); } else { inferFromTypes(sourceTypes[i], targetTypes[i]); } } } function inferFromContravariantTypes(source, target) { contravariant = !contravariant; inferFromTypes(source, target); contravariant = !contravariant; } function inferFromContravariantTypesIfStrictFunctionTypes(source, target) { if (strictFunctionTypes || priority & 1024) { inferFromContravariantTypes(source, target); } else { inferFromTypes(source, target); } } function getInferenceInfoForType(type) { if (type.flags & 34078720) { for (const inference of inferences) { if (type === inference.typeParameter) { return inference; } } } return; } function getSingleTypeVariableFromIntersectionTypes(types) { let typeVariable; for (const type of types) { const t = type.flags & 268435456 && find(type.types, (t2) => !!getInferenceInfoForType(t2)); if (!t || typeVariable && t !== typeVariable) { return; } typeVariable = t; } return typeVariable; } function inferToMultipleTypes(source, targets, targetFlags) { let typeVariableCount = 0; if (targetFlags & 134217728) { let nakedTypeVariable; const sources = source.flags & 134217728 ? source.types : [source]; const matched = new Array(sources.length); let inferenceCircularity = false; for (const t of targets) { if (getInferenceInfoForType(t)) { nakedTypeVariable = t; typeVariableCount++; } else { for (let i = 0;i < sources.length; i++) { const saveInferencePriority = inferencePriority; inferencePriority = 2048; inferFromTypes(sources[i], t); if (inferencePriority === priority) matched[i] = true; inferenceCircularity = inferenceCircularity || inferencePriority === -1; inferencePriority = Math.min(inferencePriority, saveInferencePriority); } } } if (typeVariableCount === 0) { const intersectionTypeVariable = getSingleTypeVariableFromIntersectionTypes(targets); if (intersectionTypeVariable) { inferWithPriority(source, intersectionTypeVariable, 1); } return; } if (typeVariableCount === 1 && !inferenceCircularity) { const unmatched = flatMap(sources, (s, i) => matched[i] ? undefined : s); if (unmatched.length) { inferFromTypes(getUnionType(unmatched), nakedTypeVariable); return; } } } else { for (const t of targets) { if (getInferenceInfoForType(t)) { typeVariableCount++; } else { inferFromTypes(source, t); } } } if (targetFlags & 268435456 ? typeVariableCount === 1 : typeVariableCount > 0) { for (const t of targets) { if (getInferenceInfoForType(t)) { inferWithPriority(source, t, 1); } } } } function inferToMappedType(source, target, constraintType) { if (constraintType.flags & 134217728 || constraintType.flags & 268435456) { let result = false; for (const type of constraintType.types) { result = inferToMappedType(source, target, type) || result; } return result; } if (constraintType.flags & 2097152) { const inference = getInferenceInfoForType(constraintType.type); if (inference && !inference.isFixed && !isFromInferenceBlockedSource(source)) { const inferredType = inferTypeForHomomorphicMappedType(source, target, constraintType); if (inferredType) { inferWithPriority(inferredType, inference.typeParameter, getObjectFlags(source) & 262144 ? 16 : 8); } } return true; } if (constraintType.flags & 524288) { inferWithPriority(getIndexType(source, source.pattern ? 2 : 0), constraintType, 32); const extendedConstraint = getConstraintOfType(constraintType); if (extendedConstraint && inferToMappedType(source, target, extendedConstraint)) { return true; } const propTypes = map(getPropertiesOfType(source), getTypeOfSymbol); const indexTypes = map(getIndexInfosOfType(source), (info) => info !== enumNumberIndexInfo ? info.type : neverType); inferFromTypes(getUnionType(concatenate(propTypes, indexTypes)), getTemplateTypeFromMappedType(target)); return true; } return false; } function inferToConditionalType(source, target) { if (source.flags & 67108864) { inferFromTypes(source.checkType, target.checkType); inferFromTypes(source.extendsType, target.extendsType); inferFromTypes(getTrueTypeFromConditionalType(source), getTrueTypeFromConditionalType(target)); inferFromTypes(getFalseTypeFromConditionalType(source), getFalseTypeFromConditionalType(target)); } else { const targetTypes = [getTrueTypeFromConditionalType(target), getFalseTypeFromConditionalType(target)]; inferToMultipleTypesWithPriority(source, targetTypes, target.flags, contravariant ? 64 : 0); } } function inferToTemplateLiteralType(source, target) { const matches = inferTypesFromTemplateLiteralType(source, target); const types = target.types; if (matches || every(target.texts, (s) => s.length === 0)) { for (let i = 0;i < types.length; i++) { const source2 = matches ? matches[i] : neverType; const target2 = types[i]; if (source2.flags & 1024 && target2.flags & 34078720) { const inferenceContext = getInferenceInfoForType(target2); const constraint = inferenceContext ? getBaseConstraintOfType(inferenceContext.typeParameter) : undefined; if (constraint && !isTypeAny(constraint)) { const constraintTypes = constraint.flags & 134217728 ? constraint.types : [constraint]; let allTypeFlags = reduceLeft(constraintTypes, (flags, t) => flags | t.flags, 0); if (!(allTypeFlags & 32)) { const str = source2.value; if (allTypeFlags & 67648 && !isValidNumberString(str, true)) { allTypeFlags &= ~67648; } if (allTypeFlags & 4224 && !isValidBigIntString(str, true)) { allTypeFlags &= ~4224; } const matchingType = reduceLeft(constraintTypes, (left, right) => !(right.flags & allTypeFlags) ? left : left.flags & 32 ? left : right.flags & 32 ? source2 : left.flags & 4194304 ? left : right.flags & 4194304 && isTypeMatchedByTemplateLiteralType(source2, right) ? source2 : left.flags & 8388608 ? left : right.flags & 8388608 && str === applyStringMapping(right.symbol, str) ? source2 : left.flags & 1024 ? left : right.flags & 1024 && right.value === str ? right : left.flags & 64 ? left : right.flags & 64 ? getNumberLiteralType(+str) : left.flags & 65536 ? left : right.flags & 65536 ? getNumberLiteralType(+str) : left.flags & 2048 ? left : right.flags & 2048 && right.value === +str ? right : left.flags & 128 ? left : right.flags & 128 ? parseBigIntLiteralType(str) : left.flags & 4096 ? left : right.flags & 4096 && pseudoBigIntToString(right.value) === str ? right : left.flags & 256 ? left : right.flags & 256 ? str === "true" ? trueType : str === "false" ? falseType : booleanType : left.flags & 8192 ? left : right.flags & 8192 && right.intrinsicName === str ? right : left.flags & 4 ? left : right.flags & 4 && right.intrinsicName === str ? right : left.flags & 8 ? left : right.flags & 8 && right.intrinsicName === str ? right : left, neverType); if (!(matchingType.flags & 262144)) { inferFromTypes(matchingType, target2); continue; } } } } inferFromTypes(source2, target2); } } } function inferFromGenericMappedTypes(source, target) { inferFromTypes(getConstraintTypeFromMappedType(source), getConstraintTypeFromMappedType(target)); inferFromTypes(getTemplateTypeFromMappedType(source), getTemplateTypeFromMappedType(target)); const sourceNameType = getNameTypeFromMappedType(source); const targetNameType = getNameTypeFromMappedType(target); if (sourceNameType && targetNameType) inferFromTypes(sourceNameType, targetNameType); } function inferFromObjectTypes(source, target) { var _a, _b; if (getObjectFlags(source) & 4 && getObjectFlags(target) & 4 && (source.target === target.target || isArrayType(source) && isArrayType(target))) { inferFromTypeArguments(getTypeArguments(source), getTypeArguments(target), getVariances(source.target)); return; } if (isGenericMappedType(source) && isGenericMappedType(target)) { inferFromGenericMappedTypes(source, target); } if (getObjectFlags(target) & 32 && !target.declaration.nameType) { const constraintType = getConstraintTypeFromMappedType(target); if (inferToMappedType(source, target, constraintType)) { return; } } if (!typesDefinitelyUnrelated(source, target)) { if (isArrayOrTupleType(source)) { if (isTupleType(target)) { const sourceArity = getTypeReferenceArity(source); const targetArity = getTypeReferenceArity(target); const elementTypes = getTypeArguments(target); const elementFlags = target.target.elementFlags; if (isTupleType(source) && isTupleTypeStructureMatching(source, target)) { for (let i = 0;i < targetArity; i++) { inferFromTypes(getTypeArguments(source)[i], elementTypes[i]); } return; } const startLength = isTupleType(source) ? Math.min(source.target.fixedLength, target.target.fixedLength) : 0; const endLength = Math.min(isTupleType(source) ? getEndElementCount(source.target, 3) : 0, target.target.combinedFlags & 12 ? getEndElementCount(target.target, 3) : 0); for (let i = 0;i < startLength; i++) { inferFromTypes(getTypeArguments(source)[i], elementTypes[i]); } if (!isTupleType(source) || sourceArity - startLength - endLength === 1 && source.target.elementFlags[startLength] & 4) { const restType = getTypeArguments(source)[startLength]; for (let i = startLength;i < targetArity - endLength; i++) { inferFromTypes(elementFlags[i] & 8 ? createArrayType(restType) : restType, elementTypes[i]); } } else { const middleLength = targetArity - startLength - endLength; if (middleLength === 2) { if (elementFlags[startLength] & elementFlags[startLength + 1] & 8) { const targetInfo = getInferenceInfoForType(elementTypes[startLength]); if (targetInfo && targetInfo.impliedArity !== undefined) { inferFromTypes(sliceTupleType(source, startLength, endLength + sourceArity - targetInfo.impliedArity), elementTypes[startLength]); inferFromTypes(sliceTupleType(source, startLength + targetInfo.impliedArity, endLength), elementTypes[startLength + 1]); } } else if (elementFlags[startLength] & 8 && elementFlags[startLength + 1] & 4) { const param = (_a = getInferenceInfoForType(elementTypes[startLength])) == null ? undefined : _a.typeParameter; const constraint = param && getBaseConstraintOfType(param); if (constraint && isTupleType(constraint) && !(constraint.target.combinedFlags & 12)) { const impliedArity = constraint.target.fixedLength; inferFromTypes(sliceTupleType(source, startLength, sourceArity - (startLength + impliedArity)), elementTypes[startLength]); inferFromTypes(getElementTypeOfSliceOfTupleType(source, startLength + impliedArity, endLength), elementTypes[startLength + 1]); } } else if (elementFlags[startLength] & 4 && elementFlags[startLength + 1] & 8) { const param = (_b = getInferenceInfoForType(elementTypes[startLength + 1])) == null ? undefined : _b.typeParameter; const constraint = param && getBaseConstraintOfType(param); if (constraint && isTupleType(constraint) && !(constraint.target.combinedFlags & 12)) { const impliedArity = constraint.target.fixedLength; const endIndex = sourceArity - getEndElementCount(target.target, 3); const startIndex = endIndex - impliedArity; const trailingSlice = createTupleType(getTypeArguments(source).slice(startIndex, endIndex), source.target.elementFlags.slice(startIndex, endIndex), false, source.target.labeledElementDeclarations && source.target.labeledElementDeclarations.slice(startIndex, endIndex)); inferFromTypes(getElementTypeOfSliceOfTupleType(source, startLength, endLength + impliedArity), elementTypes[startLength]); inferFromTypes(trailingSlice, elementTypes[startLength + 1]); } } } else if (middleLength === 1 && elementFlags[startLength] & 8) { const endsInOptional = target.target.elementFlags[targetArity - 1] & 2; const sourceSlice = sliceTupleType(source, startLength, endLength); inferWithPriority(sourceSlice, elementTypes[startLength], endsInOptional ? 2 : 0); } else if (middleLength === 1 && elementFlags[startLength] & 4) { const restType = getElementTypeOfSliceOfTupleType(source, startLength, endLength); if (restType) { inferFromTypes(restType, elementTypes[startLength]); } } } for (let i = 0;i < endLength; i++) { inferFromTypes(getTypeArguments(source)[sourceArity - i - 1], elementTypes[targetArity - i - 1]); } return; } if (isArrayType(target)) { inferFromIndexTypes(source, target); return; } } inferFromProperties(source, target); inferFromSignatures(source, target, 0); inferFromSignatures(source, target, 1); inferFromIndexTypes(source, target); } } function inferFromProperties(source, target) { const properties = getPropertiesOfObjectType(target); for (const targetProp of properties) { const sourceProp = getPropertyOfType(source, targetProp.escapedName); if (sourceProp && !some(sourceProp.declarations, hasSkipDirectInferenceFlag)) { inferFromTypes(removeMissingType(getTypeOfSymbol(sourceProp), !!(sourceProp.flags & 16777216)), removeMissingType(getTypeOfSymbol(targetProp), !!(targetProp.flags & 16777216))); } } } function inferFromSignatures(source, target, kind) { const sourceSignatures = getSignaturesOfType(source, kind); const sourceLen = sourceSignatures.length; if (sourceLen > 0) { const targetSignatures = getSignaturesOfType(target, kind); const targetLen = targetSignatures.length; for (let i = 0;i < targetLen; i++) { const sourceIndex = Math.max(sourceLen - targetLen + i, 0); inferFromSignature(getBaseSignature(sourceSignatures[sourceIndex]), getErasedSignature(targetSignatures[i])); } } } function inferFromSignature(source, target) { if (!(source.flags & 64)) { const saveBivariant = bivariant; const kind = target.declaration ? target.declaration.kind : 0; bivariant = bivariant || kind === 175 || kind === 174 || kind === 177; applyToParameterTypes(source, target, inferFromContravariantTypesIfStrictFunctionTypes); bivariant = saveBivariant; } applyToReturnTypes(source, target, inferFromTypes); } function inferFromIndexTypes(source, target) { const priority2 = getObjectFlags(source) & getObjectFlags(target) & 32 ? 8 : 0; const indexInfos = getIndexInfosOfType(target); if (isObjectTypeWithInferableIndex(source)) { for (const targetInfo of indexInfos) { const propTypes = []; for (const prop of getPropertiesOfType(source)) { if (isApplicableIndexType(getLiteralTypeFromProperty(prop, 19456), targetInfo.keyType)) { const propType = getTypeOfSymbol(prop); propTypes.push(prop.flags & 16777216 ? removeMissingOrUndefinedType(propType) : propType); } } for (const info of getIndexInfosOfType(source)) { if (isApplicableIndexType(info.keyType, targetInfo.keyType)) { propTypes.push(info.type); } } if (propTypes.length) { inferWithPriority(getUnionType(propTypes), targetInfo.type, priority2); } } } for (const targetInfo of indexInfos) { const sourceInfo = getApplicableIndexInfo(source, targetInfo.keyType); if (sourceInfo) { inferWithPriority(sourceInfo.type, targetInfo.type, priority2); } } } } function isTypeOrBaseIdenticalTo(s, t) { return t === missingType ? s === t : isTypeIdenticalTo(s, t) || !!(t.flags & 32 && s.flags & 1024 || t.flags & 64 && s.flags & 2048); } function isTypeCloselyMatchedBy(s, t) { return !!(s.flags & 1048576 && t.flags & 1048576 && s.symbol && s.symbol === t.symbol || s.aliasSymbol && s.aliasTypeArguments && s.aliasSymbol === t.aliasSymbol); } function hasPrimitiveConstraint(type) { const constraint = getConstraintOfTypeParameter(type); return !!constraint && maybeTypeOfKind(constraint.flags & 67108864 ? getDefaultConstraintOfConditionalType(constraint) : constraint, 12713980 | 2097152 | 4194304 | 8388608); } function isObjectLiteralType2(type) { return !!(getObjectFlags(type) & 128); } function isObjectOrArrayLiteralType(type) { return !!(getObjectFlags(type) & (128 | 16384)); } function unionObjectAndArrayLiteralCandidates(candidates) { if (candidates.length > 1) { const objectLiterals = filter(candidates, isObjectOrArrayLiteralType); if (objectLiterals.length) { const literalsType = getUnionType(objectLiterals, 2); return concatenate(filter(candidates, (t) => !isObjectOrArrayLiteralType(t)), [literalsType]); } } return candidates; } function getContravariantInference(inference) { return inference.priority & 416 ? getIntersectionType(inference.contraCandidates) : getCommonSubtype(inference.contraCandidates); } function getCovariantInference(inference, signature) { const candidates = unionObjectAndArrayLiteralCandidates(inference.candidates); const primitiveConstraint = hasPrimitiveConstraint(inference.typeParameter) || isConstTypeVariable(inference.typeParameter); const widenLiteralTypes = !primitiveConstraint && inference.topLevel && (inference.isFixed || !isTypeParameterAtTopLevelInReturnType(signature, inference.typeParameter)); const baseCandidates = primitiveConstraint ? sameMap(candidates, getRegularTypeOfLiteralType) : widenLiteralTypes ? sameMap(candidates, getWidenedLiteralType) : candidates; const unwidenedType = inference.priority & 416 ? getUnionType(baseCandidates, 2) : getCommonSupertype(baseCandidates); return getWidenedType(unwidenedType); } function getInferredType(context, index) { const inference = context.inferences[index]; if (!inference.inferredType) { let inferredType; let fallbackType; if (context.signature) { const inferredCovariantType = inference.candidates ? getCovariantInference(inference, context.signature) : undefined; const inferredContravariantType = inference.contraCandidates ? getContravariantInference(inference) : undefined; if (inferredCovariantType || inferredContravariantType) { const preferCovariantType = inferredCovariantType && (!inferredContravariantType || !(inferredCovariantType.flags & (262144 | 1)) && some(inference.contraCandidates, (t) => isTypeAssignableTo(inferredCovariantType, t)) && every(context.inferences, (other) => other !== inference && getConstraintOfTypeParameter(other.typeParameter) !== inference.typeParameter || every(other.candidates, (t) => isTypeAssignableTo(t, inferredCovariantType)))); inferredType = preferCovariantType ? inferredCovariantType : inferredContravariantType; fallbackType = preferCovariantType ? inferredContravariantType : inferredCovariantType; } else if (context.flags & 1) { inferredType = silentNeverType; } else { const defaultType = getDefaultFromTypeParameter(inference.typeParameter); if (defaultType) { inferredType = instantiateType(defaultType, mergeTypeMappers(createBackreferenceMapper(context, index), context.nonFixingMapper)); } } } else { inferredType = getTypeFromInference(inference); } inference.inferredType = inferredType || getDefaultTypeArgumentType(!!(context.flags & 2)); const constraint = getConstraintOfTypeParameter(inference.typeParameter); if (constraint) { const instantiatedConstraint = instantiateType(constraint, context.nonFixingMapper); if (inferredType) { const constraintWithThis = getTypeWithThisArgument(instantiatedConstraint, inferredType); if (!context.compareTypes(inferredType, constraintWithThis)) { const filteredByConstraint = inference.priority === 128 ? filterType(inferredType, (t) => !!context.compareTypes(t, constraintWithThis)) : neverType; inferredType = !(filteredByConstraint.flags & 262144) ? filteredByConstraint : undefined; } } if (!inferredType) { inferredType = fallbackType && context.compareTypes(fallbackType, getTypeWithThisArgument(instantiatedConstraint, fallbackType)) ? fallbackType : instantiatedConstraint; } inference.inferredType = inferredType; } clearActiveMapperCaches(); } return inference.inferredType; } function getDefaultTypeArgumentType(isInJavaScriptFile) { return isInJavaScriptFile ? anyType : unknownType; } function getInferredTypes(context) { const result = []; for (let i = 0;i < context.inferences.length; i++) { result.push(getInferredType(context, i)); } return result; } function getCannotFindNameDiagnosticForName(node) { switch (node.escapedText) { case "document": case "console": return Diagnostics.Cannot_find_name_0_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_include_dom; case "$": return usesWildcardTypes(compilerOptions) ? Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_jQuery_Try_npm_i_save_dev_types_Slashjquery : Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_jQuery_Try_npm_i_save_dev_types_Slashjquery_and_then_add_jquery_to_the_types_field_in_your_tsconfig; case "beforeEach": case "describe": case "suite": case "it": case "test": return usesWildcardTypes(compilerOptions) ? Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_a_test_runner_Try_npm_i_save_dev_types_Slashjest_or_npm_i_save_dev_types_Slashmocha : Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_a_test_runner_Try_npm_i_save_dev_types_Slashjest_or_npm_i_save_dev_types_Slashmocha_and_then_add_jest_or_mocha_to_the_types_field_in_your_tsconfig; case "process": case "require": case "Buffer": case "module": case "NodeJS": return usesWildcardTypes(compilerOptions) ? Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashnode : Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashnode_and_then_add_node_to_the_types_field_in_your_tsconfig; case "Bun": return usesWildcardTypes(compilerOptions) ? Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_Bun_Try_npm_i_save_dev_types_Slashbun : Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_Bun_Try_npm_i_save_dev_types_Slashbun_and_then_add_bun_to_the_types_field_in_your_tsconfig; case "Map": case "Set": case "Promise": case "Symbol": case "WeakMap": case "WeakSet": case "Iterator": case "AsyncIterator": case "SharedArrayBuffer": case "Atomics": case "AsyncIterable": case "AsyncIterableIterator": case "AsyncGenerator": case "AsyncGeneratorFunction": case "BigInt": case "Reflect": case "BigInt64Array": case "BigUint64Array": return Diagnostics.Cannot_find_name_0_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_1_or_later; case "await": if (isCallExpression(node.parent)) { return Diagnostics.Cannot_find_name_0_Did_you_mean_to_write_this_in_an_async_function; } default: if (node.parent.kind === 305) { return Diagnostics.No_value_exists_in_scope_for_the_shorthand_property_0_Either_declare_one_or_provide_an_initializer; } else { return Diagnostics.Cannot_find_name_0; } } } function getCannotResolveModuleNameErrorForSpecificModule(moduleName) { if (moduleName.kind === 11) { if (nodeCoreModules.has(moduleName.text)) { if (usesWildcardTypes(compilerOptions)) { return Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashnode; } else { return Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashnode_and_then_add_node_to_the_types_field_in_your_tsconfig; } } } return; } function getResolvedSymbol(node) { const links = getNodeLinks(node); if (!links.resolvedSymbol) { links.resolvedSymbol = !nodeIsMissing(node) && resolveName(node, node, 111551 | 1048576, getCannotFindNameDiagnosticForName(node), !isWriteOnlyAccess(node), false) || unknownSymbol; } return links.resolvedSymbol; } function isInAmbientOrTypeNode(node) { return !!(node.flags & 33554432 || findAncestor(node, (n) => isInterfaceDeclaration(n) || isTypeAliasDeclaration(n) || isTypeLiteralNode(n))); } function getFlowCacheKey(node, declaredType, initialType, flowContainer) { switch (node.kind) { case 80: if (!isThisInTypeQuery(node)) { const symbol = getResolvedSymbol(node); return symbol !== unknownSymbol ? `${flowContainer ? getNodeId(flowContainer) : "-1"}|${getTypeId(declaredType)}|${getTypeId(initialType)}|${getSymbolId(symbol)}` : undefined; } case 110: return `0|${flowContainer ? getNodeId(flowContainer) : "-1"}|${getTypeId(declaredType)}|${getTypeId(initialType)}`; case 236: case 218: return getFlowCacheKey(node.expression, declaredType, initialType, flowContainer); case 167: const left = getFlowCacheKey(node.left, declaredType, initialType, flowContainer); return left && `${left}.${node.right.escapedText}`; case 212: case 213: const propName = getAccessedPropertyName(node); if (propName !== undefined) { const key = getFlowCacheKey(node.expression, declaredType, initialType, flowContainer); return key && `${key}.${propName}`; } if (isElementAccessExpression(node) && isIdentifier(node.argumentExpression)) { const symbol = getResolvedSymbol(node.argumentExpression); if (isConstantVariable(symbol) || isParameterOrMutableLocalVariable(symbol) && !isSymbolAssigned(symbol)) { const key = getFlowCacheKey(node.expression, declaredType, initialType, flowContainer); return key && `${key}.@${getSymbolId(symbol)}`; } } break; case 207: case 208: case 263: case 219: case 220: case 175: return `${getNodeId(node)}#${getTypeId(declaredType)}`; } return; } function isMatchingReference(source, target) { switch (target.kind) { case 218: case 236: return isMatchingReference(source, target.expression); case 227: return isAssignmentExpression(target) && isMatchingReference(source, target.left) || isBinaryExpression(target) && target.operatorToken.kind === 28 && isMatchingReference(source, target.right); } switch (source.kind) { case 237: return target.kind === 237 && source.keywordToken === target.keywordToken && source.name.escapedText === target.name.escapedText; case 80: case 81: return isThisInTypeQuery(source) ? target.kind === 110 : target.kind === 80 && getResolvedSymbol(source) === getResolvedSymbol(target) || (isVariableDeclaration(target) || isBindingElement(target)) && getExportSymbolOfValueSymbolIfExported(getResolvedSymbol(source)) === getSymbolOfDeclaration(target); case 110: return target.kind === 110; case 108: return target.kind === 108; case 236: case 218: case 239: return isMatchingReference(source.expression, target); case 212: case 213: const sourcePropertyName = getAccessedPropertyName(source); if (sourcePropertyName !== undefined) { const targetPropertyName = isAccessExpression(target) ? getAccessedPropertyName(target) : undefined; if (targetPropertyName !== undefined) { return targetPropertyName === sourcePropertyName && isMatchingReference(source.expression, target.expression); } } if (isElementAccessExpression(source) && isElementAccessExpression(target) && isIdentifier(source.argumentExpression) && isIdentifier(target.argumentExpression)) { const symbol = getResolvedSymbol(source.argumentExpression); if (symbol === getResolvedSymbol(target.argumentExpression) && (isConstantVariable(symbol) || isParameterOrMutableLocalVariable(symbol) && !isSymbolAssigned(symbol))) { return isMatchingReference(source.expression, target.expression); } } break; case 167: return isAccessExpression(target) && source.right.escapedText === getAccessedPropertyName(target) && isMatchingReference(source.left, target.expression); case 227: return isBinaryExpression(source) && source.operatorToken.kind === 28 && isMatchingReference(source.right, target); } return false; } function getAccessedPropertyName(access) { if (isPropertyAccessExpression(access)) { return access.name.escapedText; } if (isElementAccessExpression(access)) { return tryGetElementAccessExpressionName(access); } if (isBindingElement(access)) { const name = getDestructuringPropertyName(access); return name ? escapeLeadingUnderscores(name) : undefined; } if (isParameter(access)) { return "" + access.parent.parameters.indexOf(access); } return; } function tryGetNameFromType(type) { return type.flags & 16384 ? type.escapedName : type.flags & 3072 ? escapeLeadingUnderscores("" + type.value) : undefined; } function tryGetElementAccessExpressionName(node) { return isStringOrNumericLiteralLike(node.argumentExpression) ? escapeLeadingUnderscores(node.argumentExpression.text) : isEntityNameExpression(node.argumentExpression) ? tryGetNameFromEntityNameExpression(node.argumentExpression) : undefined; } function tryGetNameFromEntityNameExpression(node) { const symbol = resolveEntityName(node, 111551, true); if (!symbol || !(isConstantVariable(symbol) || symbol.flags & 8)) return; const declaration = symbol.valueDeclaration; if (declaration === undefined) return; const type = tryGetTypeFromEffectiveTypeNode(declaration); if (type) { const name = tryGetNameFromType(type); if (name !== undefined) { return name; } } if (hasOnlyExpressionInitializer(declaration) && isBlockScopedNameDeclaredBeforeUse(declaration, node)) { const initializer = getEffectiveInitializer(declaration); if (initializer) { const initializerType = isBindingPattern(declaration.parent) ? getTypeForBindingElement(declaration) : getTypeOfExpression(initializer); return initializerType && tryGetNameFromType(initializerType); } if (isEnumMember(declaration)) { return getTextOfPropertyName(declaration.name); } } return; } function containsMatchingReference(source, target) { while (isAccessExpression(source)) { source = source.expression; if (isMatchingReference(source, target)) { return true; } } return false; } function optionalChainContainsReference(source, target) { while (isOptionalChain(source)) { source = source.expression; if (isMatchingReference(source, target)) { return true; } } return false; } function isDiscriminantProperty(type, name) { if (type && type.flags & 134217728) { const prop = getUnionOrIntersectionProperty(type, name); if (prop && getCheckFlags(prop) & 2) { if (prop.links.isDiscriminantProperty === undefined) { prop.links.isDiscriminantProperty = (prop.links.checkFlags & 192) === 192 && !isGenericType(getTypeOfSymbol(prop)); } return !!prop.links.isDiscriminantProperty; } } return false; } function findDiscriminantProperties(sourceProperties, target) { let result; for (const sourceProperty of sourceProperties) { if (isDiscriminantProperty(target, sourceProperty.escapedName)) { if (result) { result.push(sourceProperty); continue; } result = [sourceProperty]; } } return result; } function mapTypesByKeyProperty(types, name) { const map2 = /* @__PURE__ */ new Map; let count = 0; for (const type of types) { if (type.flags & (1048576 | 268435456 | 117964800)) { const discriminant = getTypeOfPropertyOfType(type, name); if (!discriminant || !isLiteralType(discriminant)) { return; } let duplicate = false; forEachType(discriminant, (t) => { const id = getTypeId(getRegularTypeOfLiteralType(t)); const existing = map2.get(id); if (!existing) { map2.set(id, type); } else if (existing !== unknownType) { map2.set(id, unknownType); duplicate = true; } }); if (!duplicate) count++; } } return count >= 10 && count * 2 >= types.length ? map2 : undefined; } function getKeyPropertyName(unionType) { const types = unionType.types; if (types.length < 10 || getObjectFlags(unionType) & 32768 || countWhere(types, (t) => !!(t.flags & (1048576 | 117964800))) < 10) { return; } if (unionType.keyPropertyName === undefined) { const keyPropertyName = forEach(types, (t) => t.flags & (1048576 | 117964800) ? forEach(getPropertiesOfType(t), (p) => isUnitType(getTypeOfSymbol(p)) ? p.escapedName : undefined) : undefined); const mapByKeyProperty = keyPropertyName && mapTypesByKeyProperty(types, keyPropertyName); unionType.keyPropertyName = mapByKeyProperty ? keyPropertyName : ""; unionType.constituentMap = mapByKeyProperty; } return unionType.keyPropertyName.length ? unionType.keyPropertyName : undefined; } function getConstituentTypeForKeyType(unionType, keyType) { var _a; const result = (_a = unionType.constituentMap) == null ? undefined : _a.get(getTypeId(getRegularTypeOfLiteralType(keyType))); return result !== unknownType ? result : undefined; } function getMatchingUnionConstituentForType(unionType, type) { const keyPropertyName = getKeyPropertyName(unionType); const propType = keyPropertyName && getTypeOfPropertyOfType(type, keyPropertyName); return propType && getConstituentTypeForKeyType(unionType, propType); } function getMatchingUnionConstituentForObjectLiteral(unionType, node) { const keyPropertyName = getKeyPropertyName(unionType); const propNode = keyPropertyName && find(node.properties, (p) => p.symbol && p.kind === 304 && p.symbol.escapedName === keyPropertyName && isPossiblyDiscriminantValue(p.initializer)); const propType = propNode && getContextFreeTypeOfExpression(propNode.initializer); return propType && getConstituentTypeForKeyType(unionType, propType); } function isOrContainsMatchingReference(source, target) { return isMatchingReference(source, target) || containsMatchingReference(source, target); } function hasMatchingArgument(expression, reference) { if (expression.arguments) { for (const argument of expression.arguments) { if (isOrContainsMatchingReference(reference, argument) || optionalChainContainsReference(argument, reference)) { return true; } } } if (expression.expression.kind === 212 && isOrContainsMatchingReference(reference, expression.expression.expression)) { return true; } return false; } function getFlowNodeId(flow) { if (flow.id <= 0) { flow.id = nextFlowId; nextFlowId++; } return flow.id; } function typeMaybeAssignableTo(source, target) { if (!(source.flags & 134217728)) { return isTypeAssignableTo(source, target); } for (const t of source.types) { if (isTypeAssignableTo(t, target)) { return true; } } return false; } function getAssignmentReducedType(declaredType, assignedType) { if (declaredType === assignedType) { return declaredType; } if (assignedType.flags & 262144) { return assignedType; } const key = `A${getTypeId(declaredType)},${getTypeId(assignedType)}`; return getCachedType(key) ?? setCachedType(key, getAssignmentReducedTypeWorker(declaredType, assignedType)); } function getAssignmentReducedTypeWorker(declaredType, assignedType) { const filteredType = filterType(declaredType, (t) => typeMaybeAssignableTo(assignedType, t)); const reducedType = assignedType.flags & 8192 && isFreshLiteralType(assignedType) ? mapType(filteredType, getFreshTypeOfLiteralType) : filteredType; return isTypeAssignableTo(assignedType, reducedType) ? reducedType : declaredType; } function isFunctionObjectType(type) { if (getObjectFlags(type) & 256) { return false; } const resolved = resolveStructuredTypeMembers(type); return !!(resolved.callSignatures.length || resolved.constructSignatures.length || resolved.members.get("bind") && isTypeSubtypeOf(type, globalFunctionType)); } function getTypeFacts(type, mask2) { return getTypeFactsWorker(type, mask2) & mask2; } function hasTypeFacts(type, mask2) { return getTypeFacts(type, mask2) !== 0; } function getTypeFactsWorker(type, callerOnlyNeeds) { if (type.flags & (268435456 | 132644864)) { type = getBaseConstraintOfType(type) || unknownType; } const flags = type.flags; if (flags & (32 | 8388608)) { return strictNullChecks ? 16317953 : 16776705; } if (flags & (1024 | 4194304)) { const isEmpty = flags & 1024 && type.value === ""; return strictNullChecks ? isEmpty ? 12123649 : 7929345 : isEmpty ? 12582401 : 16776705; } if (flags & (64 | 65536)) { return strictNullChecks ? 16317698 : 16776450; } if (flags & 2048) { const isZero = type.value === 0; return strictNullChecks ? isZero ? 12123394 : 7929090 : isZero ? 12582146 : 16776450; } if (flags & 128) { return strictNullChecks ? 16317188 : 16775940; } if (flags & 4096) { const isZero = isZeroBigInt(type); return strictNullChecks ? isZero ? 12122884 : 7928580 : isZero ? 12581636 : 16775940; } if (flags & 256) { return strictNullChecks ? 16316168 : 16774920; } if (flags & 8448) { return strictNullChecks ? type === falseType || type === regularFalseType ? 12121864 : 7927560 : type === falseType || type === regularFalseType ? 12580616 : 16774920; } if (flags & 1048576) { const possibleFacts = strictNullChecks ? 83427327 | 7880640 | 7888800 : 83886079 | 16728000 | 16736160; if ((callerOnlyNeeds & possibleFacts) === 0) { return 0; } return getObjectFlags(type) & 16 && isEmptyObjectType(type) ? strictNullChecks ? 83427327 : 83886079 : isFunctionObjectType(type) ? strictNullChecks ? 7880640 : 16728000 : strictNullChecks ? 7888800 : 16736160; } if (flags & 16) { return 9830144; } if (flags & 4) { return 26607360; } if (flags & 8) { return 42917664; } if (flags & 16896) { return strictNullChecks ? 7925520 : 16772880; } if (flags & 131072) { return strictNullChecks ? 7888800 : 16736160; } if (flags & 262144) { return 0; } if (flags & 134217728) { return reduceLeft(type.types, (facts, t) => facts | getTypeFactsWorker(t, callerOnlyNeeds), 0); } if (flags & 268435456) { return getIntersectionTypeFacts(type, callerOnlyNeeds); } return 83886079; } function getIntersectionTypeFacts(type, callerOnlyNeeds) { const ignoreObjects = maybeTypeOfKind(type, 12713980); let oredFacts = 0; let andedFacts = 134217727; for (const t of type.types) { if (!(ignoreObjects && t.flags & 1048576)) { const f = getTypeFactsWorker(t, callerOnlyNeeds); oredFacts |= f; andedFacts &= f; } } return oredFacts & 8256 | andedFacts & 134209471; } function getTypeWithFacts(type, include) { return filterType(type, (t) => hasTypeFacts(t, include)); } function getAdjustedTypeWithFacts(type, facts) { const reduced = recombineUnknownType(getTypeWithFacts(strictNullChecks && type.flags & 2 ? unknownUnionType : type, facts)); if (strictNullChecks) { switch (facts) { case 524288: return removeNullableByIntersection(reduced, 65536, 131072, 33554432, nullType); case 1048576: return removeNullableByIntersection(reduced, 131072, 65536, 16777216, undefinedType); case 2097152: case 4194304: return mapType(reduced, (t) => hasTypeFacts(t, 262144) ? getGlobalNonNullableTypeInstantiation(t) : t); } } return reduced; } function removeNullableByIntersection(type, targetFacts, otherFacts, otherIncludesFacts, otherType) { const facts = getTypeFacts(type, 65536 | 131072 | 16777216 | 33554432); if (!(facts & targetFacts)) { return type; } const emptyAndOtherUnion = getUnionType([emptyObjectType, otherType]); return mapType(type, (t) => hasTypeFacts(t, targetFacts) ? getIntersectionType([t, !(facts & otherIncludesFacts) && hasTypeFacts(t, otherFacts) ? emptyAndOtherUnion : emptyObjectType]) : t); } function recombineUnknownType(type) { return type === unknownUnionType ? unknownType : type; } function getTypeWithDefault(type, defaultExpression) { return defaultExpression ? getUnionType([getNonUndefinedType(type), getTypeOfExpression(defaultExpression)]) : type; } function getTypeOfDestructuredProperty(type, name) { var _a; const nameType = getLiteralTypeFromPropertyName(name); if (!isTypeUsableAsPropertyName(nameType)) return errorType; const text = getPropertyNameFromType(nameType); return getTypeOfPropertyOfType(type, text) || includeUndefinedInIndexSignature((_a = getApplicableIndexInfoForName(type, text)) == null ? undefined : _a.type) || errorType; } function getTypeOfDestructuredArrayElement(type, index) { return everyType(type, isTupleLikeType) && getTupleElementType(type, index) || includeUndefinedInIndexSignature(checkIteratedTypeOrElementType(65, type, undefinedType, undefined)) || errorType; } function includeUndefinedInIndexSignature(type) { if (!type) return type; return compilerOptions.noUncheckedIndexedAccess ? getUnionType([type, missingType]) : type; } function getTypeOfDestructuredSpreadExpression(type) { return createArrayType(checkIteratedTypeOrElementType(65, type, undefinedType, undefined) || errorType); } function getAssignedTypeOfBinaryExpression(node) { const isDestructuringDefaultAssignment = node.parent.kind === 210 && isDestructuringAssignmentTarget(node.parent) || node.parent.kind === 304 && isDestructuringAssignmentTarget(node.parent.parent); return isDestructuringDefaultAssignment ? getTypeWithDefault(getAssignedType(node), node.right) : getTypeOfExpression(node.right); } function isDestructuringAssignmentTarget(parent2) { return parent2.parent.kind === 227 && parent2.parent.left === parent2 || parent2.parent.kind === 251 && parent2.parent.initializer === parent2; } function getAssignedTypeOfArrayLiteralElement(node, element) { return getTypeOfDestructuredArrayElement(getAssignedType(node), node.elements.indexOf(element)); } function getAssignedTypeOfSpreadExpression(node) { return getTypeOfDestructuredSpreadExpression(getAssignedType(node.parent)); } function getAssignedTypeOfPropertyAssignment(node) { return getTypeOfDestructuredProperty(getAssignedType(node.parent), node.name); } function getAssignedTypeOfShorthandPropertyAssignment(node) { return getTypeWithDefault(getAssignedTypeOfPropertyAssignment(node), node.objectAssignmentInitializer); } function getAssignedType(node) { const { parent: parent2 } = node; switch (parent2.kind) { case 250: return stringType; case 251: return checkRightHandSideOfForOf(parent2) || errorType; case 227: return getAssignedTypeOfBinaryExpression(parent2); case 221: return undefinedType; case 210: return getAssignedTypeOfArrayLiteralElement(parent2, node); case 231: return getAssignedTypeOfSpreadExpression(parent2); case 304: return getAssignedTypeOfPropertyAssignment(parent2); case 305: return getAssignedTypeOfShorthandPropertyAssignment(parent2); } return errorType; } function getInitialTypeOfBindingElement(node) { const pattern = node.parent; const parentType = getInitialType(pattern.parent); const type = pattern.kind === 207 ? getTypeOfDestructuredProperty(parentType, node.propertyName || node.name) : !node.dotDotDotToken ? getTypeOfDestructuredArrayElement(parentType, pattern.elements.indexOf(node)) : getTypeOfDestructuredSpreadExpression(parentType); return getTypeWithDefault(type, node.initializer); } function getTypeOfInitializer(node) { const links = getNodeLinks(node); return links.resolvedType || getTypeOfExpression(node); } function getInitialTypeOfVariableDeclaration(node) { if (node.initializer) { return getTypeOfInitializer(node.initializer); } if (node.parent.parent.kind === 250) { return stringType; } if (node.parent.parent.kind === 251) { return checkRightHandSideOfForOf(node.parent.parent) || errorType; } return errorType; } function getInitialType(node) { return node.kind === 261 ? getInitialTypeOfVariableDeclaration(node) : getInitialTypeOfBindingElement(node); } function isEmptyArrayAssignment(node) { return node.kind === 261 && node.initializer && isEmptyArrayLiteral2(node.initializer) || node.kind !== 209 && node.parent.kind === 227 && isEmptyArrayLiteral2(node.parent.right); } function getReferenceCandidate(node) { switch (node.kind) { case 218: return getReferenceCandidate(node.expression); case 227: switch (node.operatorToken.kind) { case 64: case 76: case 77: case 78: return getReferenceCandidate(node.left); case 28: return getReferenceCandidate(node.right); } } return node; } function getReferenceRoot(node) { const { parent: parent2 } = node; return parent2.kind === 218 || parent2.kind === 227 && parent2.operatorToken.kind === 64 && parent2.left === node || parent2.kind === 227 && parent2.operatorToken.kind === 28 && parent2.right === node ? getReferenceRoot(parent2) : node; } function getTypeOfSwitchClause(clause) { if (clause.kind === 297) { return getRegularTypeOfLiteralType(getTypeOfExpression(clause.expression)); } return neverType; } function getSwitchClauseTypes(switchStatement) { const links = getNodeLinks(switchStatement); if (!links.switchTypes) { links.switchTypes = []; for (const clause of switchStatement.caseBlock.clauses) { links.switchTypes.push(getTypeOfSwitchClause(clause)); } } return links.switchTypes; } function getSwitchClauseTypeOfWitnesses(switchStatement) { if (some(switchStatement.caseBlock.clauses, (clause) => clause.kind === 297 && !isStringLiteralLike(clause.expression))) { return; } const witnesses = []; for (const clause of switchStatement.caseBlock.clauses) { const text = clause.kind === 297 ? clause.expression.text : undefined; witnesses.push(text && !contains(witnesses, text) ? text : undefined); } return witnesses; } function eachTypeContainedIn(source, types) { return source.flags & 134217728 ? !forEach(source.types, (t) => !contains(types, t)) : contains(types, source); } function isTypeSubsetOf(source, target) { return !!(source === target || source.flags & 262144 || target.flags & 134217728 && isTypeSubsetOfUnion(source, target)); } function isTypeSubsetOfUnion(source, target) { if (source.flags & 134217728) { for (const t of source.types) { if (!containsType(target.types, t)) { return false; } } return true; } if (source.flags & 98304 && getBaseTypeOfEnumLikeType(source) === target) { return true; } return containsType(target.types, source); } function forEachType(type, f) { return type.flags & 134217728 ? forEach(type.types, f) : f(type); } function someType(type, f) { return type.flags & 134217728 ? some(type.types, f) : f(type); } function everyType(type, f) { return type.flags & 134217728 ? every(type.types, f) : f(type); } function everyContainedType(type, f) { return type.flags & 402653184 ? every(type.types, f) : f(type); } function filterType(type, f) { if (type.flags & 134217728) { const types = type.types; const filtered = filter(types, f); if (filtered === types) { return type; } const origin = type.origin; let newOrigin; if (origin && origin.flags & 134217728) { const originTypes = origin.types; const originFiltered = filter(originTypes, (t) => !!(t.flags & 134217728) || f(t)); if (originTypes.length - originFiltered.length === types.length - filtered.length) { if (originFiltered.length === 1) { return originFiltered[0]; } newOrigin = createOriginUnionOrIntersectionType(134217728, originFiltered); } } return getUnionTypeFromSortedList(filtered, type.objectFlags & (32768 | 16777216), undefined, undefined, newOrigin); } return type.flags & 262144 || f(type) ? type : neverType; } function removeType(type, targetType) { return filterType(type, (t) => t !== targetType); } function countTypes(type) { return type.flags & 134217728 ? type.types.length : 1; } function mapType(type, mapper, noReductions) { if (type.flags & 262144) { return type; } if (!(type.flags & 134217728)) { return mapper(type); } const origin = type.origin; const types = origin && origin.flags & 134217728 ? origin.types : type.types; let mappedTypes; let changed = false; for (const t of types) { const mapped = t.flags & 134217728 ? mapType(t, mapper, noReductions) : mapper(t); changed || (changed = t !== mapped); if (mapped) { if (!mappedTypes) { mappedTypes = [mapped]; } else { mappedTypes.push(mapped); } } } return changed ? mappedTypes && getUnionType(mappedTypes, noReductions ? 0 : 1) : type; } function mapTypeWithAlias(type, mapper, aliasSymbol, aliasTypeArguments) { return type.flags & 134217728 && aliasSymbol ? getUnionType(map(type.types, mapper), 1, aliasSymbol, aliasTypeArguments) : mapType(type, mapper); } function extractTypesOfKind(type, kind) { return filterType(type, (t) => (t.flags & kind) !== 0); } function replacePrimitivesWithLiterals(typeWithPrimitives, typeWithLiterals) { if (maybeTypeOfKind(typeWithPrimitives, 32 | 4194304 | 64 | 128) && maybeTypeOfKind(typeWithLiterals, 1024 | 4194304 | 8388608 | 2048 | 4096)) { return mapType(typeWithPrimitives, (t) => t.flags & 32 ? extractTypesOfKind(typeWithLiterals, 32 | 1024 | 4194304 | 8388608) : isPatternLiteralType(t) && !maybeTypeOfKind(typeWithLiterals, 32 | 4194304 | 8388608) ? extractTypesOfKind(typeWithLiterals, 1024) : t.flags & 64 ? extractTypesOfKind(typeWithLiterals, 64 | 2048) : t.flags & 128 ? extractTypesOfKind(typeWithLiterals, 128 | 4096) : t); } return typeWithPrimitives; } function isIncomplete(flowType) { return flowType.flags === 0; } function getTypeFromFlowType(flowType) { return flowType.flags === 0 ? flowType.type : flowType; } function createFlowType(type, incomplete) { return incomplete ? { flags: 0, type: type.flags & 262144 ? silentNeverType : type } : type; } function createEvolvingArrayType(elementType) { const result = createObjectType(256); result.elementType = elementType; return result; } function getEvolvingArrayType(elementType) { return evolvingArrayTypes[elementType.id] || (evolvingArrayTypes[elementType.id] = createEvolvingArrayType(elementType)); } function addEvolvingArrayElementType(evolvingArrayType, node) { const elementType = getRegularTypeOfObjectLiteral(getBaseTypeOfLiteralType(getContextFreeTypeOfExpression(node))); return isTypeSubsetOf(elementType, evolvingArrayType.elementType) ? evolvingArrayType : getEvolvingArrayType(getUnionType([evolvingArrayType.elementType, elementType])); } function createFinalArrayType(elementType) { return elementType.flags & 262144 ? autoArrayType : createArrayType(elementType.flags & 134217728 ? getUnionType(elementType.types, 2) : elementType); } function getFinalArrayType(evolvingArrayType) { return evolvingArrayType.finalArrayType || (evolvingArrayType.finalArrayType = createFinalArrayType(evolvingArrayType.elementType)); } function finalizeEvolvingArrayType(type) { return getObjectFlags(type) & 256 ? getFinalArrayType(type) : type; } function getElementTypeOfEvolvingArrayType(type) { return getObjectFlags(type) & 256 ? type.elementType : neverType; } function isEvolvingArrayTypeList(types) { let hasEvolvingArrayType = false; for (const t of types) { if (!(t.flags & 262144)) { if (!(getObjectFlags(t) & 256)) { return false; } hasEvolvingArrayType = true; } } return hasEvolvingArrayType; } function isEvolvingArrayOperationTarget(node) { const root = getReferenceRoot(node); const parent2 = root.parent; const isLengthPushOrUnshift = isPropertyAccessExpression(parent2) && (parent2.name.escapedText === "length" || parent2.parent.kind === 214 && isIdentifier(parent2.name) && isPushOrUnshiftIdentifier(parent2.name)); const isElementAssignment = parent2.kind === 213 && parent2.expression === root && parent2.parent.kind === 227 && parent2.parent.operatorToken.kind === 64 && parent2.parent.left === parent2 && !isAssignmentTarget(parent2.parent) && isTypeAssignableToKind(getTypeOfExpression(parent2.argumentExpression), 67648); return isLengthPushOrUnshift || isElementAssignment; } function isDeclarationWithExplicitTypeAnnotation(node) { return (isVariableDeclaration(node) || isPropertyDeclaration(node) || isPropertySignature(node) || isParameter(node)) && !!(getEffectiveTypeAnnotationNode(node) || isInJSFile(node) && hasInitializer(node) && node.initializer && isFunctionExpressionOrArrowFunction(node.initializer) && getEffectiveReturnTypeNode(node.initializer)); } function getExplicitTypeOfSymbol(symbol, diagnostic) { symbol = resolveSymbol(symbol); if (symbol.flags & (16 | 8192 | 32 | 512)) { return getTypeOfSymbol(symbol); } if (symbol.flags & (3 | 4)) { if (getCheckFlags(symbol) & 262144) { const origin = symbol.links.syntheticOrigin; if (origin && getExplicitTypeOfSymbol(origin)) { return getTypeOfSymbol(symbol); } } const declaration = symbol.valueDeclaration; if (declaration) { if (isDeclarationWithExplicitTypeAnnotation(declaration)) { return getTypeOfSymbol(symbol); } if (isVariableDeclaration(declaration) && declaration.parent.parent.kind === 251) { const statement = declaration.parent.parent; const expressionType = getTypeOfDottedName(statement.expression, undefined); if (expressionType) { const use = statement.awaitModifier ? 15 : 13; return checkIteratedTypeOrElementType(use, expressionType, undefinedType, undefined); } } if (diagnostic) { addRelatedInfo(diagnostic, createDiagnosticForNode(declaration, Diagnostics._0_needs_an_explicit_type_annotation, symbolToString(symbol))); } } } } function getTypeOfDottedName(node, diagnostic) { if (!(node.flags & 67108864)) { switch (node.kind) { case 80: const symbol = getExportSymbolOfValueSymbolIfExported(getResolvedSymbol(node)); return getExplicitTypeOfSymbol(symbol, diagnostic); case 110: return getExplicitThisType(node); case 108: return checkSuperExpression(node); case 212: { const type = getTypeOfDottedName(node.expression, diagnostic); if (type) { const name = node.name; let prop; if (isPrivateIdentifier(name)) { if (!type.symbol) { return; } prop = getPropertyOfType(type, getSymbolNameForPrivateIdentifier(type.symbol, name.escapedText)); } else { prop = getPropertyOfType(type, name.escapedText); } return prop && getExplicitTypeOfSymbol(prop, diagnostic); } return; } case 218: return getTypeOfDottedName(node.expression, diagnostic); } } } function getEffectsSignature(node) { const links = getNodeLinks(node); let signature = links.effectsSignature; if (signature === undefined) { let funcType; if (isBinaryExpression(node)) { const rightType = checkNonNullExpression(node.right); funcType = getSymbolHasInstanceMethodOfObjectType(rightType); } else if (node.parent.kind === 245) { funcType = getTypeOfDottedName(node.expression, undefined); } else if (node.expression.kind !== 108) { if (isOptionalChain(node)) { funcType = checkNonNullType(getOptionalExpressionType(checkExpression(node.expression), node.expression), node.expression); } else { funcType = checkNonNullExpression(node.expression); } } const signatures = getSignaturesOfType(funcType && getApparentType(funcType) || unknownType, 0); const candidate = signatures.length === 1 && !signatures[0].typeParameters ? signatures[0] : some(signatures, hasTypePredicateOrNeverReturnType) ? getResolvedSignature(node) : undefined; signature = links.effectsSignature = candidate && hasTypePredicateOrNeverReturnType(candidate) ? candidate : unknownSignature; } return signature === unknownSignature ? undefined : signature; } function hasTypePredicateOrNeverReturnType(signature) { return !!(getTypePredicateOfSignature(signature) || signature.declaration && (getReturnTypeFromAnnotation(signature.declaration) || unknownType).flags & 262144); } function getTypePredicateArgument(predicate, callExpression) { if (predicate.kind === 1 || predicate.kind === 3) { return callExpression.arguments[predicate.parameterIndex]; } const invokedExpression = skipParentheses(callExpression.expression); return isAccessExpression(invokedExpression) ? skipParentheses(invokedExpression.expression) : undefined; } function reportFlowControlError(node) { const block = findAncestor(node, isFunctionOrModuleBlock); const sourceFile = getSourceFileOfNode(node); const span = getSpanOfTokenAtPosition(sourceFile, block.statements.pos); diagnostics.add(createFileDiagnostic(sourceFile, span.start, span.length, Diagnostics.The_containing_function_or_module_body_is_too_large_for_control_flow_analysis)); } function isReachableFlowNode(flow) { const result = isReachableFlowNodeWorker(flow, false); lastFlowNode = flow; lastFlowNodeReachable = result; return result; } function isFalseExpression(expr) { const node = skipParentheses(expr, true); return node.kind === 97 || node.kind === 227 && (node.operatorToken.kind === 56 && (isFalseExpression(node.left) || isFalseExpression(node.right)) || node.operatorToken.kind === 57 && isFalseExpression(node.left) && isFalseExpression(node.right)); } function isReachableFlowNodeWorker(flow, noCacheCheck) { while (true) { if (flow === lastFlowNode) { return lastFlowNodeReachable; } const flags = flow.flags; if (flags & 4096) { if (!noCacheCheck) { const id = getFlowNodeId(flow); const reachable = flowNodeReachable[id]; return reachable !== undefined ? reachable : flowNodeReachable[id] = isReachableFlowNodeWorker(flow, true); } noCacheCheck = false; } if (flags & (16 | 96 | 256)) { flow = flow.antecedent; } else if (flags & 512) { const signature = getEffectsSignature(flow.node); if (signature) { const predicate = getTypePredicateOfSignature(signature); if (predicate && predicate.kind === 3 && !predicate.type) { const predicateArgument = flow.node.arguments[predicate.parameterIndex]; if (predicateArgument && isFalseExpression(predicateArgument)) { return false; } } if (getReturnTypeOfSignature(signature).flags & 262144) { return false; } } flow = flow.antecedent; } else if (flags & 4) { return some(flow.antecedent, (f) => isReachableFlowNodeWorker(f, false)); } else if (flags & 8) { const antecedents = flow.antecedent; if (antecedents === undefined || antecedents.length === 0) { return false; } flow = antecedents[0]; } else if (flags & 128) { const data = flow.node; if (data.clauseStart === data.clauseEnd && isExhaustiveSwitchStatement(data.switchStatement)) { return false; } flow = flow.antecedent; } else if (flags & 1024) { lastFlowNode = undefined; const target = flow.node.target; const saveAntecedents = target.antecedent; target.antecedent = flow.node.antecedents; const result = isReachableFlowNodeWorker(flow.antecedent, false); target.antecedent = saveAntecedents; return result; } else { return !(flags & 1); } } } function isPostSuperFlowNode(flow, noCacheCheck) { while (true) { const flags = flow.flags; if (flags & 4096) { if (!noCacheCheck) { const id = getFlowNodeId(flow); const postSuper = flowNodePostSuper[id]; return postSuper !== undefined ? postSuper : flowNodePostSuper[id] = isPostSuperFlowNode(flow, true); } noCacheCheck = false; } if (flags & (16 | 96 | 256 | 128)) { flow = flow.antecedent; } else if (flags & 512) { if (flow.node.expression.kind === 108) { return true; } flow = flow.antecedent; } else if (flags & 4) { return every(flow.antecedent, (f) => isPostSuperFlowNode(f, false)); } else if (flags & 8) { flow = flow.antecedent[0]; } else if (flags & 1024) { const target = flow.node.target; const saveAntecedents = target.antecedent; target.antecedent = flow.node.antecedents; const result = isPostSuperFlowNode(flow.antecedent, false); target.antecedent = saveAntecedents; return result; } else { return !!(flags & 1); } } } function isConstantReference(node) { switch (node.kind) { case 110: return true; case 80: if (!isThisInTypeQuery(node)) { const symbol = getResolvedSymbol(node); return isConstantVariable(symbol) || isParameterOrMutableLocalVariable(symbol) && !isSymbolAssigned(symbol) || !!symbol.valueDeclaration && isFunctionExpression(symbol.valueDeclaration); } break; case 212: case 213: return isConstantReference(node.expression) && isReadonlySymbol(getNodeLinks(node).resolvedSymbol || unknownSymbol); case 207: case 208: const rootDeclaration = getRootDeclaration(node.parent); return isParameter(rootDeclaration) || isCatchClauseVariableDeclaration(rootDeclaration) ? !isSomeSymbolAssigned(rootDeclaration) : isVariableDeclaration(rootDeclaration) && isVarConstLike2(rootDeclaration); } return false; } function getFlowTypeOfReference(reference, declaredType, initialType = declaredType, flowContainer, flowNode = ((_a) => (_a = tryCast(reference, canHaveFlowNode)) == null ? undefined : _a.flowNode)()) { let key; let isKeySet = false; let flowDepth = 0; if (flowAnalysisDisabled) { return errorType; } if (!flowNode) { return declaredType; } flowInvocationCount++; const sharedFlowStart = sharedFlowCount; const evolvedType = getTypeFromFlowType(getTypeAtFlowNode(flowNode)); sharedFlowCount = sharedFlowStart; const resultType = getObjectFlags(evolvedType) & 256 && isEvolvingArrayOperationTarget(reference) ? autoArrayType : finalizeEvolvingArrayType(evolvedType); if (resultType === unreachableNeverType || reference.parent && reference.parent.kind === 236 && !(resultType.flags & 262144) && getTypeWithFacts(resultType, 2097152).flags & 262144) { return declaredType; } return resultType; function getOrSetCacheKey() { if (isKeySet) { return key; } isKeySet = true; return key = getFlowCacheKey(reference, declaredType, initialType, flowContainer); } function getTypeAtFlowNode(flow) { var _a2; if (flowDepth === 2000) { (_a2 = tracing) == null || _a2.instant(tracing.Phase.CheckTypes, "getTypeAtFlowNode_DepthLimit", { flowId: flow.id }); flowAnalysisDisabled = true; reportFlowControlError(reference); return errorType; } flowDepth++; let sharedFlow; while (true) { const flags = flow.flags; if (flags & 4096) { for (let i = sharedFlowStart;i < sharedFlowCount; i++) { if (sharedFlowNodes[i] === flow) { flowDepth--; return sharedFlowTypes[i]; } } sharedFlow = flow; } let type; if (flags & 16) { type = getTypeAtFlowAssignment(flow); if (!type) { flow = flow.antecedent; continue; } } else if (flags & 512) { type = getTypeAtFlowCall(flow); if (!type) { flow = flow.antecedent; continue; } } else if (flags & 96) { type = getTypeAtFlowCondition(flow); } else if (flags & 128) { type = getTypeAtSwitchClause(flow); } else if (flags & 12) { if (flow.antecedent.length === 1) { flow = flow.antecedent[0]; continue; } type = flags & 4 ? getTypeAtFlowBranchLabel(flow) : getTypeAtFlowLoopLabel(flow); } else if (flags & 256) { type = getTypeAtFlowArrayMutation(flow); if (!type) { flow = flow.antecedent; continue; } } else if (flags & 1024) { const target = flow.node.target; const saveAntecedents = target.antecedent; target.antecedent = flow.node.antecedents; type = getTypeAtFlowNode(flow.antecedent); target.antecedent = saveAntecedents; } else if (flags & 2) { const container = flow.node; if (container && container !== flowContainer && reference.kind !== 212 && reference.kind !== 213 && !(reference.kind === 110 && container.kind !== 220)) { flow = container.flowNode; continue; } type = initialType; } else { type = convertAutoToAny(declaredType); } if (sharedFlow) { sharedFlowNodes[sharedFlowCount] = sharedFlow; sharedFlowTypes[sharedFlowCount] = type; sharedFlowCount++; } flowDepth--; return type; } } function getInitialOrAssignedType(flow) { const node = flow.node; return getNarrowableTypeForReference(node.kind === 261 || node.kind === 209 ? getInitialType(node) : getAssignedType(node), reference); } function getTypeAtFlowAssignment(flow) { const node = flow.node; if (isMatchingReference(reference, node)) { if (!isReachableFlowNode(flow)) { return unreachableNeverType; } if (getAssignmentTargetKind(node) === 2) { const flowType = getTypeAtFlowNode(flow.antecedent); return createFlowType(getBaseTypeOfLiteralType(getTypeFromFlowType(flowType)), isIncomplete(flowType)); } if (declaredType === autoType || declaredType === autoArrayType) { if (isEmptyArrayAssignment(node)) { return getEvolvingArrayType(neverType); } const assignedType = getWidenedLiteralType(getInitialOrAssignedType(flow)); return isTypeAssignableTo(assignedType, declaredType) ? assignedType : anyArrayType; } const t = isInCompoundLikeAssignment(node) ? getBaseTypeOfLiteralType(declaredType) : declaredType; if (t.flags & 134217728) { return getAssignmentReducedType(t, getInitialOrAssignedType(flow)); } return t; } if (containsMatchingReference(reference, node)) { if (!isReachableFlowNode(flow)) { return unreachableNeverType; } if (isVariableDeclaration(node) && (isInJSFile(node) || isVarConstLike2(node))) { const init = getDeclaredExpandoInitializer(node); if (init && (init.kind === 219 || init.kind === 220)) { return getTypeAtFlowNode(flow.antecedent); } } return declaredType; } if (isVariableDeclaration(node) && node.parent.parent.kind === 250 && (isMatchingReference(reference, node.parent.parent.expression) || optionalChainContainsReference(node.parent.parent.expression, reference))) { return getNonNullableTypeIfNeeded(finalizeEvolvingArrayType(getTypeFromFlowType(getTypeAtFlowNode(flow.antecedent)))); } return; } function narrowTypeByAssertion(type, expr) { const node = skipParentheses(expr, true); if (node.kind === 97) { return unreachableNeverType; } if (node.kind === 227) { if (node.operatorToken.kind === 56) { return narrowTypeByAssertion(narrowTypeByAssertion(type, node.left), node.right); } if (node.operatorToken.kind === 57) { return getUnionType([narrowTypeByAssertion(type, node.left), narrowTypeByAssertion(type, node.right)]); } } return narrowType(type, node, true); } function getTypeAtFlowCall(flow) { const signature = getEffectsSignature(flow.node); if (signature) { const predicate = getTypePredicateOfSignature(signature); if (predicate && (predicate.kind === 2 || predicate.kind === 3)) { const flowType = getTypeAtFlowNode(flow.antecedent); const type = finalizeEvolvingArrayType(getTypeFromFlowType(flowType)); const narrowedType = predicate.type ? narrowTypeByTypePredicate(type, predicate, flow.node, true) : predicate.kind === 3 && predicate.parameterIndex >= 0 && predicate.parameterIndex < flow.node.arguments.length ? narrowTypeByAssertion(type, flow.node.arguments[predicate.parameterIndex]) : type; return narrowedType === type ? flowType : createFlowType(narrowedType, isIncomplete(flowType)); } if (getReturnTypeOfSignature(signature).flags & 262144) { return unreachableNeverType; } } return; } function getTypeAtFlowArrayMutation(flow) { if (declaredType === autoType || declaredType === autoArrayType) { const node = flow.node; const expr = node.kind === 214 ? node.expression.expression : node.left.expression; if (isMatchingReference(reference, getReferenceCandidate(expr))) { const flowType = getTypeAtFlowNode(flow.antecedent); const type = getTypeFromFlowType(flowType); if (getObjectFlags(type) & 256) { let evolvedType2 = type; if (node.kind === 214) { for (const arg of node.arguments) { evolvedType2 = addEvolvingArrayElementType(evolvedType2, arg); } } else { const indexType = getContextFreeTypeOfExpression(node.left.argumentExpression); if (isTypeAssignableToKind(indexType, 67648)) { evolvedType2 = addEvolvingArrayElementType(evolvedType2, node.right); } } return evolvedType2 === type ? flowType : createFlowType(evolvedType2, isIncomplete(flowType)); } return flowType; } } return; } function getTypeAtFlowCondition(flow) { const flowType = getTypeAtFlowNode(flow.antecedent); const type = getTypeFromFlowType(flowType); if (type.flags & 262144) { return flowType; } const assumeTrue = (flow.flags & 32) !== 0; const nonEvolvingType = finalizeEvolvingArrayType(type); const narrowedType = narrowType(nonEvolvingType, flow.node, assumeTrue); if (narrowedType === nonEvolvingType) { return flowType; } return createFlowType(narrowedType, isIncomplete(flowType)); } function getTypeAtSwitchClause(flow) { const expr = skipParentheses(flow.node.switchStatement.expression); const flowType = getTypeAtFlowNode(flow.antecedent); let type = getTypeFromFlowType(flowType); if (isMatchingReference(reference, expr)) { type = narrowTypeBySwitchOnDiscriminant(type, flow.node); } else if (expr.kind === 222 && isMatchingReference(reference, expr.expression)) { type = narrowTypeBySwitchOnTypeOf(type, flow.node); } else if (expr.kind === 112) { type = narrowTypeBySwitchOnTrue(type, flow.node); } else { if (strictNullChecks) { if (optionalChainContainsReference(expr, reference)) { type = narrowTypeBySwitchOptionalChainContainment(type, flow.node, (t) => !(t.flags & (4 | 262144))); } else if (expr.kind === 222 && optionalChainContainsReference(expr.expression, reference)) { type = narrowTypeBySwitchOptionalChainContainment(type, flow.node, (t) => !(t.flags & 262144 || t.flags & 1024 && t.value === "undefined")); } } const access = getDiscriminantPropertyAccess(expr, type); if (access) { type = narrowTypeBySwitchOnDiscriminantProperty(type, access, flow.node); } } return createFlowType(type, isIncomplete(flowType)); } function getTypeAtFlowBranchLabel(flow) { const antecedentTypes = []; let subtypeReduction = false; let seenIncomplete = false; let bypassFlow; for (const antecedent of flow.antecedent) { if (!bypassFlow && antecedent.flags & 128 && antecedent.node.clauseStart === antecedent.node.clauseEnd) { bypassFlow = antecedent; continue; } const flowType = getTypeAtFlowNode(antecedent); const type = getTypeFromFlowType(flowType); if (type === declaredType && declaredType === initialType) { return type; } pushIfUnique(antecedentTypes, type); if (!isTypeSubsetOf(type, initialType)) { subtypeReduction = true; } if (isIncomplete(flowType)) { seenIncomplete = true; } } if (bypassFlow) { const flowType = getTypeAtFlowNode(bypassFlow); const type = getTypeFromFlowType(flowType); if (!(type.flags & 262144) && !contains(antecedentTypes, type) && !isExhaustiveSwitchStatement(bypassFlow.node.switchStatement)) { if (type === declaredType && declaredType === initialType) { return type; } antecedentTypes.push(type); if (!isTypeSubsetOf(type, initialType)) { subtypeReduction = true; } if (isIncomplete(flowType)) { seenIncomplete = true; } } } return createFlowType(getUnionOrEvolvingArrayType(antecedentTypes, subtypeReduction ? 2 : 1), seenIncomplete); } function getTypeAtFlowLoopLabel(flow) { const id = getFlowNodeId(flow); const cache = flowLoopCaches[id] || (flowLoopCaches[id] = /* @__PURE__ */ new Map); const key2 = getOrSetCacheKey(); if (!key2) { return declaredType; } const cached = cache.get(key2); if (cached) { return cached; } for (let i = flowLoopStart;i < flowLoopCount; i++) { if (flowLoopNodes[i] === flow && flowLoopKeys[i] === key2 && flowLoopTypes[i].length) { return createFlowType(getUnionOrEvolvingArrayType(flowLoopTypes[i], 1), true); } } const antecedentTypes = []; let subtypeReduction = false; let firstAntecedentType; for (const antecedent of flow.antecedent) { let flowType; if (!firstAntecedentType) { flowType = firstAntecedentType = getTypeAtFlowNode(antecedent); } else { flowLoopNodes[flowLoopCount] = flow; flowLoopKeys[flowLoopCount] = key2; flowLoopTypes[flowLoopCount] = antecedentTypes; flowLoopCount++; const saveFlowTypeCache = flowTypeCache; flowTypeCache = undefined; flowType = getTypeAtFlowNode(antecedent); flowTypeCache = saveFlowTypeCache; flowLoopCount--; const cached2 = cache.get(key2); if (cached2) { return cached2; } } const type = getTypeFromFlowType(flowType); pushIfUnique(antecedentTypes, type); if (!isTypeSubsetOf(type, initialType)) { subtypeReduction = true; } if (type === declaredType) { break; } } const result = getUnionOrEvolvingArrayType(antecedentTypes, subtypeReduction ? 2 : 1); if (isIncomplete(firstAntecedentType)) { return createFlowType(result, true); } cache.set(key2, result); return result; } function getUnionOrEvolvingArrayType(types, subtypeReduction) { if (isEvolvingArrayTypeList(types)) { return getEvolvingArrayType(getUnionType(map(types, getElementTypeOfEvolvingArrayType))); } const result = recombineUnknownType(getUnionType(sameMap(types, finalizeEvolvingArrayType), subtypeReduction)); if (result !== declaredType && result.flags & declaredType.flags & 134217728 && arrayIsEqualTo(result.types, declaredType.types)) { return declaredType; } return result; } function getCandidateDiscriminantPropertyAccess(expr) { if (isBindingPattern(reference) || isFunctionExpressionOrArrowFunction(reference) || isObjectLiteralMethod(reference)) { if (isIdentifier(expr)) { const symbol = getResolvedSymbol(expr); const declaration = getExportSymbolOfValueSymbolIfExported(symbol).valueDeclaration; if (declaration && (isBindingElement(declaration) || isParameter(declaration)) && reference === declaration.parent && !declaration.initializer && !declaration.dotDotDotToken) { return declaration; } } } else if (isAccessExpression(expr)) { if (isMatchingReference(reference, expr.expression)) { return expr; } } else if (isIdentifier(expr)) { const symbol = getResolvedSymbol(expr); if (isConstantVariable(symbol)) { const declaration = symbol.valueDeclaration; let initializer = getCandidateVariableDeclarationInitializer(declaration); if (initializer && isAccessExpression(initializer) && isMatchingReference(reference, initializer.expression)) { return initializer; } if (isBindingElement(declaration) && !declaration.initializer) { initializer = getCandidateVariableDeclarationInitializer(declaration.parent.parent); if (initializer && (isIdentifier(initializer) || isAccessExpression(initializer)) && isMatchingReference(reference, initializer)) { return declaration; } } } } return; function getCandidateVariableDeclarationInitializer(node) { return isVariableDeclaration(node) && !node.type && node.initializer ? skipParentheses(node.initializer) : undefined; } } function getDiscriminantPropertyAccess(expr, computedType) { if (declaredType.flags & 134217728 || computedType.flags & 134217728) { const access = getCandidateDiscriminantPropertyAccess(expr); if (access) { const name = getAccessedPropertyName(access); if (name) { const type = declaredType.flags & 134217728 && isTypeSubsetOf(computedType, declaredType) ? declaredType : computedType; if (isDiscriminantProperty(type, name)) { return access; } } } } return; } function narrowTypeByDiscriminant(type, access, narrowType2) { const propName = getAccessedPropertyName(access); if (propName === undefined) { return type; } const optionalChain = isOptionalChain(access); const removeNullable = strictNullChecks && (optionalChain || isNonNullAccess(access)) && maybeTypeOfKind(type, 12); let propType = getTypeOfPropertyOfType(removeNullable ? getTypeWithFacts(type, 2097152) : type, propName); if (!propType) { return type; } propType = removeNullable && optionalChain ? getOptionalType(propType) : propType; const narrowedPropType = narrowType2(propType); return filterType(type, (t) => { const discriminantType = getTypeOfPropertyOrIndexSignatureOfType(t, propName) || unknownType; return !(discriminantType.flags & 262144) && !(narrowedPropType.flags & 262144) && areTypesComparable(narrowedPropType, discriminantType); }); } function narrowTypeByDiscriminantProperty(type, access, operator, value, assumeTrue) { if ((operator === 37 || operator === 38) && type.flags & 134217728) { const keyPropertyName = getKeyPropertyName(type); if (keyPropertyName && keyPropertyName === getAccessedPropertyName(access)) { const candidate = getConstituentTypeForKeyType(type, getTypeOfExpression(value)); if (candidate) { return operator === (assumeTrue ? 37 : 38) ? candidate : isUnitType(getTypeOfPropertyOfType(candidate, keyPropertyName) || unknownType) ? removeType(type, candidate) : type; } } } return narrowTypeByDiscriminant(type, access, (t) => narrowTypeByEquality(t, operator, value, assumeTrue)); } function narrowTypeBySwitchOnDiscriminantProperty(type, access, data) { if (data.clauseStart < data.clauseEnd && type.flags & 134217728 && getKeyPropertyName(type) === getAccessedPropertyName(access)) { const clauseTypes = getSwitchClauseTypes(data.switchStatement).slice(data.clauseStart, data.clauseEnd); const candidate = getUnionType(map(clauseTypes, (t) => getConstituentTypeForKeyType(type, t) || unknownType)); if (candidate !== unknownType) { return candidate; } } return narrowTypeByDiscriminant(type, access, (t) => narrowTypeBySwitchOnDiscriminant(t, data)); } function narrowTypeByTruthiness(type, expr, assumeTrue) { if (isMatchingReference(reference, expr)) { return getAdjustedTypeWithFacts(type, assumeTrue ? 4194304 : 8388608); } if (strictNullChecks && assumeTrue && optionalChainContainsReference(expr, reference)) { type = getAdjustedTypeWithFacts(type, 2097152); } const access = getDiscriminantPropertyAccess(expr, type); if (access) { return narrowTypeByDiscriminant(type, access, (t) => getTypeWithFacts(t, assumeTrue ? 4194304 : 8388608)); } return type; } function isTypePresencePossible(type, propName, assumeTrue) { const prop = getPropertyOfType(type, propName); return prop ? !!(prop.flags & 16777216 || getCheckFlags(prop) & 48) || assumeTrue : !!getApplicableIndexInfoForName(type, propName) || !assumeTrue; } function narrowTypeByInKeyword(type, nameType, assumeTrue) { const name = getPropertyNameFromType(nameType); const isKnownProperty2 = someType(type, (t) => isTypePresencePossible(t, name, true)); if (isKnownProperty2) { return filterType(type, (t) => isTypePresencePossible(t, name, assumeTrue)); } if (assumeTrue) { const recordSymbol = getGlobalRecordSymbol(); if (recordSymbol) { return getIntersectionType([type, getTypeAliasInstantiation(recordSymbol, [nameType, unknownType])]); } } return type; } function narrowTypeByBooleanComparison(type, expr, bool, operator, assumeTrue) { assumeTrue = assumeTrue !== (bool.kind === 112) !== (operator !== 38 && operator !== 36); return narrowType(type, expr, assumeTrue); } function narrowTypeByBinaryExpression(type, expr, assumeTrue) { switch (expr.operatorToken.kind) { case 64: case 76: case 77: case 78: return narrowTypeByTruthiness(narrowType(type, expr.right, assumeTrue), expr.left, assumeTrue); case 35: case 36: case 37: case 38: const operator = expr.operatorToken.kind; const left = getReferenceCandidate(expr.left); const right = getReferenceCandidate(expr.right); if (left.kind === 222 && isStringLiteralLike(right)) { return narrowTypeByTypeof(type, left, operator, right, assumeTrue); } if (right.kind === 222 && isStringLiteralLike(left)) { return narrowTypeByTypeof(type, right, operator, left, assumeTrue); } if (isMatchingReference(reference, left)) { return narrowTypeByEquality(type, operator, right, assumeTrue); } if (isMatchingReference(reference, right)) { return narrowTypeByEquality(type, operator, left, assumeTrue); } if (strictNullChecks) { if (optionalChainContainsReference(left, reference)) { type = narrowTypeByOptionalChainContainment(type, operator, right, assumeTrue); } else if (optionalChainContainsReference(right, reference)) { type = narrowTypeByOptionalChainContainment(type, operator, left, assumeTrue); } } const leftAccess = getDiscriminantPropertyAccess(left, type); if (leftAccess) { return narrowTypeByDiscriminantProperty(type, leftAccess, operator, right, assumeTrue); } const rightAccess = getDiscriminantPropertyAccess(right, type); if (rightAccess) { return narrowTypeByDiscriminantProperty(type, rightAccess, operator, left, assumeTrue); } if (isMatchingConstructorReference(left)) { return narrowTypeByConstructor(type, operator, right, assumeTrue); } if (isMatchingConstructorReference(right)) { return narrowTypeByConstructor(type, operator, left, assumeTrue); } if (isBooleanLiteral(right) && !isAccessExpression(left)) { return narrowTypeByBooleanComparison(type, left, right, operator, assumeTrue); } if (isBooleanLiteral(left) && !isAccessExpression(right)) { return narrowTypeByBooleanComparison(type, right, left, operator, assumeTrue); } break; case 104: return narrowTypeByInstanceof(type, expr, assumeTrue); case 103: if (isPrivateIdentifier(expr.left)) { return narrowTypeByPrivateIdentifierInInExpression(type, expr, assumeTrue); } const target = getReferenceCandidate(expr.right); if (containsMissingType(type) && isAccessExpression(reference) && isMatchingReference(reference.expression, target)) { const leftType = getTypeOfExpression(expr.left); if (isTypeUsableAsPropertyName(leftType) && getAccessedPropertyName(reference) === getPropertyNameFromType(leftType)) { return getTypeWithFacts(type, assumeTrue ? 524288 : 65536); } } if (isMatchingReference(reference, target)) { const leftType = getTypeOfExpression(expr.left); if (isTypeUsableAsPropertyName(leftType)) { return narrowTypeByInKeyword(type, leftType, assumeTrue); } } break; case 28: return narrowType(type, expr.right, assumeTrue); case 56: return assumeTrue ? narrowType(narrowType(type, expr.left, true), expr.right, true) : getUnionType([narrowType(type, expr.left, false), narrowType(type, expr.right, false)]); case 57: return assumeTrue ? getUnionType([narrowType(type, expr.left, true), narrowType(type, expr.right, true)]) : narrowType(narrowType(type, expr.left, false), expr.right, false); } return type; } function narrowTypeByPrivateIdentifierInInExpression(type, expr, assumeTrue) { const target = getReferenceCandidate(expr.right); if (!isMatchingReference(reference, target)) { return type; } Debug.assertNode(expr.left, isPrivateIdentifier); const symbol = getSymbolForPrivateIdentifierExpression(expr.left); if (symbol === undefined) { return type; } const classSymbol = symbol.parent; const targetType = hasStaticModifier(Debug.checkDefined(symbol.valueDeclaration, "should always have a declaration")) ? getTypeOfSymbol(classSymbol) : getDeclaredTypeOfSymbol(classSymbol); return getNarrowedType(type, targetType, assumeTrue, true); } function narrowTypeByOptionalChainContainment(type, operator, value, assumeTrue) { const equalsOperator = operator === 35 || operator === 37; const nullableFlags = operator === 35 || operator === 36 ? 12 : 4; const valueType = getTypeOfExpression(value); const removeNullable = equalsOperator !== assumeTrue && everyType(valueType, (t) => !!(t.flags & nullableFlags)) || equalsOperator === assumeTrue && everyType(valueType, (t) => !(t.flags & (3 | nullableFlags))); return removeNullable ? getAdjustedTypeWithFacts(type, 2097152) : type; } function narrowTypeByEquality(type, operator, value, assumeTrue) { if (type.flags & 1) { return type; } if (operator === 36 || operator === 38) { assumeTrue = !assumeTrue; } const valueType = getTypeOfExpression(value); const doubleEquals = operator === 35 || operator === 36; if (valueType.flags & 12) { if (!strictNullChecks) { return type; } const facts = doubleEquals ? assumeTrue ? 262144 : 2097152 : valueType.flags & 8 ? assumeTrue ? 131072 : 1048576 : assumeTrue ? 65536 : 524288; return getAdjustedTypeWithFacts(type, facts); } if (assumeTrue) { if (!doubleEquals && (type.flags & 2 || someType(type, isEmptyAnonymousObjectType))) { if (valueType.flags & (12713980 | 131072) || isEmptyAnonymousObjectType(valueType)) { return valueType; } if (valueType.flags & 1048576) { return nonPrimitiveType; } } const filteredType = filterType(type, (t) => areTypesComparable(t, valueType) || doubleEquals && isCoercibleUnderDoubleEquals(t, valueType)); return replacePrimitivesWithLiterals(filteredType, valueType); } if (isUnitType(valueType)) { return filterType(type, (t) => !(isUnitLikeType(t) && areTypesComparable(t, valueType))); } return type; } function narrowTypeByTypeof(type, typeOfExpr, operator, literal, assumeTrue) { if (operator === 36 || operator === 38) { assumeTrue = !assumeTrue; } const target = getReferenceCandidate(typeOfExpr.expression); if (!isMatchingReference(reference, target)) { if (strictNullChecks && optionalChainContainsReference(target, reference) && assumeTrue === (literal.text !== "undefined")) { type = getAdjustedTypeWithFacts(type, 2097152); } const propertyAccess = getDiscriminantPropertyAccess(target, type); if (propertyAccess) { return narrowTypeByDiscriminant(type, propertyAccess, (t) => narrowTypeByLiteralExpression(t, literal, assumeTrue)); } return type; } return narrowTypeByLiteralExpression(type, literal, assumeTrue); } function narrowTypeByLiteralExpression(type, literal, assumeTrue) { return assumeTrue ? narrowTypeByTypeName(type, literal.text) : getAdjustedTypeWithFacts(type, typeofNEFacts.get(literal.text) || 32768); } function narrowTypeBySwitchOptionalChainContainment(type, { switchStatement, clauseStart, clauseEnd }, clauseCheck) { const everyClauseChecks = clauseStart !== clauseEnd && every(getSwitchClauseTypes(switchStatement).slice(clauseStart, clauseEnd), clauseCheck); return everyClauseChecks ? getTypeWithFacts(type, 2097152) : type; } function narrowTypeBySwitchOnDiscriminant(type, { switchStatement, clauseStart, clauseEnd }) { const switchTypes = getSwitchClauseTypes(switchStatement); if (!switchTypes.length) { return type; } const clauseTypes = switchTypes.slice(clauseStart, clauseEnd); const hasDefaultClause = clauseStart === clauseEnd || contains(clauseTypes, neverType); if (type.flags & 2 && !hasDefaultClause) { let groundClauseTypes; for (let i = 0;i < clauseTypes.length; i += 1) { const t = clauseTypes[i]; if (t.flags & (12713980 | 131072)) { if (groundClauseTypes !== undefined) { groundClauseTypes.push(t); } } else if (t.flags & 1048576) { if (groundClauseTypes === undefined) { groundClauseTypes = clauseTypes.slice(0, i); } groundClauseTypes.push(nonPrimitiveType); } else { return type; } } return getUnionType(groundClauseTypes === undefined ? clauseTypes : groundClauseTypes); } const discriminantType = getUnionType(clauseTypes); const caseType = discriminantType.flags & 262144 ? neverType : replacePrimitivesWithLiterals(filterType(type, (t) => areTypesComparable(discriminantType, t)), discriminantType); if (!hasDefaultClause) { return caseType; } const defaultType = filterType(type, (t) => !(isUnitLikeType(t) && contains(switchTypes, t.flags & 4 ? undefinedType : getRegularTypeOfLiteralType(extractUnitType(t)), (t1, t2) => isUnitType(t1) && areTypesComparable(t1, t2)))); return caseType.flags & 262144 ? defaultType : getUnionType([caseType, defaultType]); } function narrowTypeByTypeName(type, typeName) { switch (typeName) { case "string": return narrowTypeByTypeFacts(type, stringType, 1); case "number": return narrowTypeByTypeFacts(type, numberType, 2); case "bigint": return narrowTypeByTypeFacts(type, bigintType, 4); case "boolean": return narrowTypeByTypeFacts(type, booleanType, 8); case "symbol": return narrowTypeByTypeFacts(type, esSymbolType, 16); case "object": return type.flags & 1 ? type : getUnionType([narrowTypeByTypeFacts(type, nonPrimitiveType, 32), narrowTypeByTypeFacts(type, nullType, 131072)]); case "function": return type.flags & 1 ? type : narrowTypeByTypeFacts(type, globalFunctionType, 64); case "undefined": return narrowTypeByTypeFacts(type, undefinedType, 65536); } return narrowTypeByTypeFacts(type, nonPrimitiveType, 128); } function narrowTypeByTypeFacts(type, impliedType, facts) { return mapType(type, (t) => isTypeRelatedTo(t, impliedType, strictSubtypeRelation) ? hasTypeFacts(t, facts) ? t : neverType : isTypeSubtypeOf(impliedType, t) ? impliedType : hasTypeFacts(t, facts) ? getIntersectionType([t, impliedType]) : neverType); } function narrowTypeBySwitchOnTypeOf(type, { switchStatement, clauseStart, clauseEnd }) { const witnesses = getSwitchClauseTypeOfWitnesses(switchStatement); if (!witnesses) { return type; } const defaultIndex = findIndex(switchStatement.caseBlock.clauses, (clause) => clause.kind === 298); const hasDefaultClause = clauseStart === clauseEnd || defaultIndex >= clauseStart && defaultIndex < clauseEnd; if (hasDefaultClause) { const notEqualFacts = getNotEqualFactsFromTypeofSwitch(clauseStart, clauseEnd, witnesses); return filterType(type, (t) => getTypeFacts(t, notEqualFacts) === notEqualFacts); } const clauseWitnesses = witnesses.slice(clauseStart, clauseEnd); return getUnionType(map(clauseWitnesses, (text) => text ? narrowTypeByTypeName(type, text) : neverType)); } function narrowTypeBySwitchOnTrue(type, { switchStatement, clauseStart, clauseEnd }) { const defaultIndex = findIndex(switchStatement.caseBlock.clauses, (clause) => clause.kind === 298); const hasDefaultClause = clauseStart === clauseEnd || defaultIndex >= clauseStart && defaultIndex < clauseEnd; for (let i = 0;i < clauseStart; i++) { const clause = switchStatement.caseBlock.clauses[i]; if (clause.kind === 297) { type = narrowType(type, clause.expression, false); } } if (hasDefaultClause) { for (let i = clauseEnd;i < switchStatement.caseBlock.clauses.length; i++) { const clause = switchStatement.caseBlock.clauses[i]; if (clause.kind === 297) { type = narrowType(type, clause.expression, false); } } return type; } const clauses = switchStatement.caseBlock.clauses.slice(clauseStart, clauseEnd); return getUnionType(map(clauses, (clause) => clause.kind === 297 ? narrowType(type, clause.expression, true) : neverType)); } function isMatchingConstructorReference(expr) { return (isPropertyAccessExpression(expr) && idText(expr.name) === "constructor" || isElementAccessExpression(expr) && isStringLiteralLike(expr.argumentExpression) && expr.argumentExpression.text === "constructor") && isMatchingReference(reference, expr.expression); } function narrowTypeByConstructor(type, operator, identifier, assumeTrue) { if (assumeTrue ? operator !== 35 && operator !== 37 : operator !== 36 && operator !== 38) { return type; } const identifierType = getTypeOfExpression(identifier); if (!isFunctionType(identifierType) && !isConstructorType(identifierType)) { return type; } const prototypeProperty = getPropertyOfType(identifierType, "prototype"); if (!prototypeProperty) { return type; } const prototypeType = getTypeOfSymbol(prototypeProperty); const candidate = !isTypeAny(prototypeType) ? prototypeType : undefined; if (!candidate || candidate === globalObjectType || candidate === globalFunctionType) { return type; } if (isTypeAny(type)) { return candidate; } return filterType(type, (t) => isConstructedBy(t, candidate)); function isConstructedBy(source, target) { if (source.flags & 1048576 && getObjectFlags(source) & 1 || target.flags & 1048576 && getObjectFlags(target) & 1) { return source.symbol === target.symbol; } return isTypeSubtypeOf(source, target); } } function narrowTypeByInstanceof(type, expr, assumeTrue) { const left = getReferenceCandidate(expr.left); if (!isMatchingReference(reference, left)) { if (assumeTrue && strictNullChecks && optionalChainContainsReference(left, reference)) { return getAdjustedTypeWithFacts(type, 2097152); } return type; } const right = expr.right; const rightType = getTypeOfExpression(right); if (!isTypeDerivedFrom(rightType, globalObjectType)) { return type; } const signature = getEffectsSignature(expr); const predicate = signature && getTypePredicateOfSignature(signature); if (predicate && predicate.kind === 1 && predicate.parameterIndex === 0) { return getNarrowedType(type, predicate.type, assumeTrue, true); } if (!isTypeDerivedFrom(rightType, globalFunctionType)) { return type; } const instanceType = mapType(rightType, getInstanceType); if (isTypeAny(type) && (instanceType === globalObjectType || instanceType === globalFunctionType) || !assumeTrue && !(instanceType.flags & 1048576 && !isEmptyAnonymousObjectType(instanceType))) { return type; } return getNarrowedType(type, instanceType, assumeTrue, true); } function getInstanceType(constructorType) { const prototypePropertyType = getTypeOfPropertyOfType(constructorType, "prototype"); if (prototypePropertyType && !isTypeAny(prototypePropertyType)) { return prototypePropertyType; } const constructSignatures = getSignaturesOfType(constructorType, 1); if (constructSignatures.length) { return getUnionType(map(constructSignatures, (signature) => getReturnTypeOfSignature(getErasedSignature(signature)))); } return emptyObjectType; } function getNarrowedType(type, candidate, assumeTrue, checkDerived) { const key2 = type.flags & 134217728 ? `N${getTypeId(type)},${getTypeId(candidate)},${(assumeTrue ? 1 : 0) | (checkDerived ? 2 : 0)}` : undefined; return getCachedType(key2) ?? setCachedType(key2, getNarrowedTypeWorker(type, candidate, assumeTrue, checkDerived)); } function getNarrowedTypeWorker(type, candidate, assumeTrue, checkDerived) { if (!assumeTrue) { if (type === candidate) { return neverType; } if (checkDerived) { return filterType(type, (t) => !isTypeDerivedFrom(t, candidate)); } type = type.flags & 2 ? unknownUnionType : type; const trueType2 = getNarrowedType(type, candidate, true, false); return recombineUnknownType(filterType(type, (t) => !isTypeSubsetOf(t, trueType2))); } if (type.flags & 3) { return candidate; } if (type === candidate) { return candidate; } const isRelated = checkDerived ? isTypeDerivedFrom : isTypeSubtypeOf; const keyPropertyName = type.flags & 134217728 ? getKeyPropertyName(type) : undefined; const narrowedType = mapType(candidate, (c) => { const discriminant = keyPropertyName && getTypeOfPropertyOfType(c, keyPropertyName); const matching = discriminant && getConstituentTypeForKeyType(type, discriminant); const directlyRelated = mapType(matching || type, checkDerived ? (t) => isTypeDerivedFrom(t, c) ? t : isTypeDerivedFrom(c, t) ? c : neverType : (t) => isTypeStrictSubtypeOf(t, c) ? t : isTypeStrictSubtypeOf(c, t) ? c : isTypeSubtypeOf(t, c) ? t : isTypeSubtypeOf(c, t) ? c : neverType); return directlyRelated.flags & 262144 ? mapType(type, (t) => maybeTypeOfKind(t, 132644864) && isRelated(c, getBaseConstraintOfType(t) || unknownType) ? getIntersectionType([t, c]) : neverType) : directlyRelated; }); return !(narrowedType.flags & 262144) ? narrowedType : isTypeSubtypeOf(candidate, type) ? candidate : isTypeAssignableTo(type, candidate) ? type : isTypeAssignableTo(candidate, type) ? candidate : getIntersectionType([type, candidate]); } function narrowTypeByCallExpression(type, callExpression, assumeTrue) { if (hasMatchingArgument(callExpression, reference)) { const signature = assumeTrue || !isCallChain(callExpression) ? getEffectsSignature(callExpression) : undefined; const predicate = signature && getTypePredicateOfSignature(signature); if (predicate && (predicate.kind === 0 || predicate.kind === 1)) { return narrowTypeByTypePredicate(type, predicate, callExpression, assumeTrue); } } if (containsMissingType(type) && isAccessExpression(reference) && isPropertyAccessExpression(callExpression.expression)) { const callAccess = callExpression.expression; if (isMatchingReference(reference.expression, getReferenceCandidate(callAccess.expression)) && isIdentifier(callAccess.name) && callAccess.name.escapedText === "hasOwnProperty" && callExpression.arguments.length === 1) { const argument = callExpression.arguments[0]; if (isStringLiteralLike(argument) && getAccessedPropertyName(reference) === escapeLeadingUnderscores(argument.text)) { return getTypeWithFacts(type, assumeTrue ? 524288 : 65536); } } } return type; } function narrowTypeByTypePredicate(type, predicate, callExpression, assumeTrue) { if (predicate.type && !(isTypeAny(type) && (predicate.type === globalObjectType || predicate.type === globalFunctionType))) { const predicateArgument = getTypePredicateArgument(predicate, callExpression); if (predicateArgument) { if (isMatchingReference(reference, predicateArgument)) { return getNarrowedType(type, predicate.type, assumeTrue, false); } if (strictNullChecks && optionalChainContainsReference(predicateArgument, reference) && (assumeTrue && !hasTypeFacts(predicate.type, 65536) || !assumeTrue && everyType(predicate.type, isNullableType))) { type = getAdjustedTypeWithFacts(type, 2097152); } const access = getDiscriminantPropertyAccess(predicateArgument, type); if (access) { return narrowTypeByDiscriminant(type, access, (t) => getNarrowedType(t, predicate.type, assumeTrue, false)); } } } return type; } function narrowType(type, expr, assumeTrue) { if (isExpressionOfOptionalChainRoot(expr) || isBinaryExpression(expr.parent) && (expr.parent.operatorToken.kind === 61 || expr.parent.operatorToken.kind === 78) && expr.parent.left === expr) { return narrowTypeByOptionality(type, expr, assumeTrue); } switch (expr.kind) { case 80: if (!isMatchingReference(reference, expr) && inlineLevel < 5) { const symbol = getResolvedSymbol(expr); if (isConstantVariable(symbol)) { const declaration = symbol.valueDeclaration; if (declaration && isVariableDeclaration(declaration) && !declaration.type && declaration.initializer && isConstantReference(reference)) { inlineLevel++; const result = narrowType(type, declaration.initializer, assumeTrue); inlineLevel--; return result; } } } case 110: case 108: case 212: case 213: return narrowTypeByTruthiness(type, expr, assumeTrue); case 214: return narrowTypeByCallExpression(type, expr, assumeTrue); case 218: case 236: case 239: return narrowType(type, expr.expression, assumeTrue); case 227: return narrowTypeByBinaryExpression(type, expr, assumeTrue); case 225: if (expr.operator === 54) { return narrowType(type, expr.operand, !assumeTrue); } break; } return type; } function narrowTypeByOptionality(type, expr, assumePresent) { if (isMatchingReference(reference, expr)) { return getAdjustedTypeWithFacts(type, assumePresent ? 2097152 : 262144); } const access = getDiscriminantPropertyAccess(expr, type); if (access) { return narrowTypeByDiscriminant(type, access, (t) => getTypeWithFacts(t, assumePresent ? 2097152 : 262144)); } return type; } } function getTypeOfSymbolAtLocation(symbol, location) { symbol = getExportSymbolOfValueSymbolIfExported(symbol); if (location.kind === 80 || location.kind === 81) { if (isRightSideOfQualifiedNameOrPropertyAccess(location)) { location = location.parent; } if (isExpressionNode(location) && (!isAssignmentTarget(location) || isWriteAccess(location))) { const type = removeOptionalTypeMarker(isWriteAccess(location) && location.kind === 212 ? checkPropertyAccessExpression(location, undefined, true) : getTypeOfExpression(location)); if (getExportSymbolOfValueSymbolIfExported(getNodeLinks(location).resolvedSymbol) === symbol) { return type; } } } if (isDeclarationName(location) && isSetAccessor(location.parent) && getAnnotatedAccessorTypeNode(location.parent)) { return getWriteTypeOfAccessors(location.parent.symbol); } return isRightSideOfAccessExpression(location) && isWriteAccess(location.parent) ? getWriteTypeOfSymbol(symbol) : getNonMissingTypeOfSymbol(symbol); } function getControlFlowContainer(node) { return findAncestor(node.parent, (node2) => isFunctionLike(node2) && !getImmediatelyInvokedFunctionExpression(node2) || node2.kind === 269 || node2.kind === 308 || node2.kind === 173); } function isSymbolAssignedDefinitely(symbol) { if (symbol.lastAssignmentPos !== undefined) { return symbol.lastAssignmentPos < 0; } return isSymbolAssigned(symbol) && symbol.lastAssignmentPos !== undefined && symbol.lastAssignmentPos < 0; } function isSymbolAssigned(symbol) { return !isPastLastAssignment(symbol, undefined); } function isPastLastAssignment(symbol, location) { const parent2 = findAncestor(symbol.valueDeclaration, isFunctionOrSourceFile); if (!parent2) { return false; } const links = getNodeLinks(parent2); if (!(links.flags & 131072)) { links.flags |= 131072; if (!hasParentWithAssignmentsMarked(parent2)) { markNodeAssignments(parent2); } } return !symbol.lastAssignmentPos || location && Math.abs(symbol.lastAssignmentPos) < location.pos; } function isSomeSymbolAssigned(rootDeclaration) { Debug.assert(isVariableDeclaration(rootDeclaration) || isParameter(rootDeclaration)); return isSomeSymbolAssignedWorker(rootDeclaration.name); } function isSomeSymbolAssignedWorker(node) { if (node.kind === 80) { return isSymbolAssigned(getSymbolOfDeclaration(node.parent)); } return some(node.elements, (e) => e.kind !== 233 && isSomeSymbolAssignedWorker(e.name)); } function hasParentWithAssignmentsMarked(node) { return !!findAncestor(node.parent, (node2) => isFunctionOrSourceFile(node2) && !!(getNodeLinks(node2).flags & 131072)); } function isFunctionOrSourceFile(node) { return isFunctionLikeDeclaration(node) || isSourceFile(node); } function markNodeAssignments(node) { switch (node.kind) { case 80: const assigmentTarget = getAssignmentTargetKind(node); if (assigmentTarget !== 0) { const symbol = getResolvedSymbol(node); const hasDefiniteAssignment = assigmentTarget === 1 || symbol.lastAssignmentPos !== undefined && symbol.lastAssignmentPos < 0; if (isParameterOrMutableLocalVariable(symbol)) { if (symbol.lastAssignmentPos === undefined || Math.abs(symbol.lastAssignmentPos) !== Number.MAX_VALUE) { const referencingFunction = findAncestor(node, isFunctionOrSourceFile); const declaringFunction = findAncestor(symbol.valueDeclaration, isFunctionOrSourceFile); symbol.lastAssignmentPos = referencingFunction === declaringFunction ? extendAssignmentPosition(node, symbol.valueDeclaration) : Number.MAX_VALUE; } if (hasDefiniteAssignment && symbol.lastAssignmentPos > 0) { symbol.lastAssignmentPos *= -1; } } } return; case 282: const exportDeclaration = node.parent.parent; const name = node.propertyName || node.name; if (!node.isTypeOnly && !exportDeclaration.isTypeOnly && !exportDeclaration.moduleSpecifier && name.kind !== 11) { const symbol = resolveEntityName(name, 111551, true, true); if (symbol && isParameterOrMutableLocalVariable(symbol)) { const sign = symbol.lastAssignmentPos !== undefined && symbol.lastAssignmentPos < 0 ? -1 : 1; symbol.lastAssignmentPos = sign * Number.MAX_VALUE; } } return; case 265: case 266: case 267: return; } if (isTypeNode(node)) { return; } forEachChild(node, markNodeAssignments); } function extendAssignmentPosition(node, declaration) { let pos = node.pos; while (node && node.pos > declaration.pos) { switch (node.kind) { case 244: case 245: case 246: case 247: case 248: case 249: case 250: case 251: case 255: case 256: case 259: case 264: pos = node.end; } node = node.parent; } return pos; } function isConstantVariable(symbol) { return symbol.flags & 3 && (getDeclarationNodeFlagsFromSymbol(symbol) & 6) !== 0; } function isParameterOrMutableLocalVariable(symbol) { const declaration = symbol.valueDeclaration && getRootDeclaration(symbol.valueDeclaration); return !!declaration && (isParameter(declaration) || isVariableDeclaration(declaration) && (isCatchClause(declaration.parent) || isMutableLocalVariableDeclaration(declaration))); } function isMutableLocalVariableDeclaration(declaration) { return !!(declaration.parent.flags & 1) && !(getCombinedModifierFlags(declaration) & 32 || declaration.parent.parent.kind === 244 && isGlobalSourceFile(declaration.parent.parent.parent)); } function parameterInitializerContainsUndefined(declaration) { const links = getNodeLinks(declaration); if (links.parameterInitializerContainsUndefined === undefined) { if (!pushTypeResolution(declaration, 8)) { reportCircularityError(declaration.symbol); return true; } const containsUndefined = !!hasTypeFacts(checkDeclarationInitializer(declaration, 0), 16777216); if (!popTypeResolution()) { reportCircularityError(declaration.symbol); return true; } links.parameterInitializerContainsUndefined ?? (links.parameterInitializerContainsUndefined = containsUndefined); } return links.parameterInitializerContainsUndefined; } function removeOptionalityFromDeclaredType(declaredType, declaration) { const removeUndefined = strictNullChecks && declaration.kind === 170 && declaration.initializer && hasTypeFacts(declaredType, 16777216) && !parameterInitializerContainsUndefined(declaration); return removeUndefined ? getTypeWithFacts(declaredType, 524288) : declaredType; } function isConstraintPosition(type, node) { const parent2 = node.parent; return parent2.kind === 212 || parent2.kind === 167 || parent2.kind === 214 && parent2.expression === node || parent2.kind === 215 && parent2.expression === node || parent2.kind === 213 && parent2.expression === node && !(someType(type, isGenericTypeWithoutNullableConstraint) && isGenericIndexType(getTypeOfExpression(parent2.argumentExpression))); } function isGenericTypeWithUnionConstraint(type) { return type.flags & 268435456 ? some(type.types, isGenericTypeWithUnionConstraint) : !!(type.flags & 132644864 && getBaseConstraintOrType(type).flags & (12 | 134217728)); } function isGenericTypeWithoutNullableConstraint(type) { return type.flags & 268435456 ? some(type.types, isGenericTypeWithoutNullableConstraint) : !!(type.flags & 132644864 && !maybeTypeOfKind(getBaseConstraintOrType(type), 12)); } function hasContextualTypeWithNoGenericTypes(node, checkMode) { const contextualType = (isIdentifier(node) || isPropertyAccessExpression(node) || isElementAccessExpression(node)) && !((isJsxOpeningElement(node.parent) || isJsxSelfClosingElement(node.parent)) && node.parent.tagName === node) && (checkMode && checkMode & 32 ? getContextualType2(node, 8) : getContextualType2(node, undefined)); return contextualType && !isGenericType(contextualType); } function getNarrowableTypeForReference(type, reference, checkMode) { if (isNoInferType(type)) { type = type.baseType; } const substituteConstraints = !(checkMode && checkMode & 2) && someType(type, isGenericTypeWithUnionConstraint) && (isConstraintPosition(type, reference) || hasContextualTypeWithNoGenericTypes(reference, checkMode)); return substituteConstraints ? mapType(type, getBaseConstraintOrType) : type; } function isExportOrExportExpression(location) { return !!findAncestor(location, (n) => { const parent2 = n.parent; if (parent2 === undefined) { return "quit"; } if (isExportAssignment(parent2)) { return parent2.expression === n && isEntityNameExpression(n); } if (isExportSpecifier(parent2)) { return parent2.name === n || parent2.propertyName === n; } return false; }); } function markLinkedReferences(location, hint, propSymbol, parentType) { if (!canCollectSymbolAliasAccessabilityData) { return; } if (location.flags & 33554432 && !isPropertySignature(location) && !isPropertyDeclaration(location)) { return; } switch (hint) { case 1: return markIdentifierAliasReferenced(location); case 2: return markPropertyAliasReferenced(location, propSymbol, parentType); case 3: return markExportAssignmentAliasReferenced(location); case 4: return markJsxAliasReferenced(location); case 5: return markAsyncFunctionAliasReferenced(location); case 6: return markImportEqualsAliasReferenced(location); case 7: return markExportSpecifierAliasReferenced(location); case 8: return markDecoratorAliasReferenced(location); case 0: { if (isIdentifier(location) && (isExpressionNode(location) || isShorthandPropertyAssignment(location.parent) || isImportEqualsDeclaration(location.parent) && location.parent.moduleReference === location) && shouldMarkIdentifierAliasReferenced(location)) { if (isPropertyAccessOrQualifiedName(location.parent)) { const left = isPropertyAccessExpression(location.parent) ? location.parent.expression : location.parent.left; if (left !== location) return; } markIdentifierAliasReferenced(location); return; } if (isPropertyAccessOrQualifiedName(location)) { let topProp = location; while (isPropertyAccessOrQualifiedName(topProp)) { if (isPartOfTypeNode(topProp)) return; topProp = topProp.parent; } return markPropertyAliasReferenced(location); } if (isExportAssignment(location)) { return markExportAssignmentAliasReferenced(location); } if (isJsxOpeningLikeElement(location) || isJsxOpeningFragment(location)) { return markJsxAliasReferenced(location); } if (isImportEqualsDeclaration(location)) { if (isInternalModuleImportEqualsDeclaration(location) || checkExternalImportOrExportDeclaration(location)) { return markImportEqualsAliasReferenced(location); } return; } if (isExportSpecifier(location)) { return markExportSpecifierAliasReferenced(location); } if (isFunctionLikeDeclaration(location) || isMethodSignature(location)) { markAsyncFunctionAliasReferenced(location); } if (!compilerOptions.emitDecoratorMetadata) { return; } if (!canHaveDecorators(location) || !hasDecorators(location) || !location.modifiers || !nodeCanBeDecorated(legacyDecorators, location, location.parent, location.parent.parent)) { return; } return markDecoratorAliasReferenced(location); } default: Debug.assertNever(hint, `Unhandled reference hint: ${hint}`); } } function markIdentifierAliasReferenced(location) { const symbol = getResolvedSymbol(location); if (symbol && symbol !== argumentsSymbol && symbol !== unknownSymbol && !isThisInTypeQuery(location)) { markAliasReferenced(symbol, location); } } function markPropertyAliasReferenced(location, propSymbol, parentType) { const left = isPropertyAccessExpression(location) ? location.expression : location.left; if (isThisIdentifier(left) || !isIdentifier(left)) { return; } const parentSymbol = getResolvedSymbol(left); if (!parentSymbol || parentSymbol === unknownSymbol) { return; } if (getIsolatedModules(compilerOptions) || shouldPreserveConstEnums(compilerOptions) && isExportOrExportExpression(location)) { markAliasReferenced(parentSymbol, location); return; } const leftType = parentType || checkExpressionCached(left); if (isTypeAny(leftType) || leftType === silentNeverType) { markAliasReferenced(parentSymbol, location); return; } let prop = propSymbol; if (!prop && !parentType) { const right = isPropertyAccessExpression(location) ? location.name : location.right; const lexicallyScopedSymbol = isPrivateIdentifier(right) && lookupSymbolForPrivateIdentifierDeclaration(right.escapedText, right); const assignmentKind = getAssignmentTargetKind(location); const apparentType = getApparentType(assignmentKind !== 0 || isMethodAccessForCall(location) ? getWidenedType(leftType) : leftType); prop = isPrivateIdentifier(right) ? lexicallyScopedSymbol && getPrivateIdentifierPropertyOfType(apparentType, lexicallyScopedSymbol) || undefined : getPropertyOfType(apparentType, right.escapedText); } if (!(prop && (isConstEnumOrConstEnumOnlyModule(prop) || prop.flags & 8 && location.parent.kind === 307))) { markAliasReferenced(parentSymbol, location); } return; } function markExportAssignmentAliasReferenced(location) { if (isIdentifier(location.expression)) { const id = location.expression; const sym = getExportSymbolOfValueSymbolIfExported(resolveEntityName(id, -1, true, true, location)); if (sym) { markAliasReferenced(sym, id); } } } function markJsxAliasReferenced(node) { if (!getJsxNamespaceContainerForImplicitImport(node)) { const jsxFactoryRefErr = diagnostics && compilerOptions.jsx === 2 ? Diagnostics.This_JSX_tag_requires_0_to_be_in_scope_but_it_could_not_be_found : undefined; const jsxFactoryNamespace = getJsxNamespace(node); const jsxFactoryLocation = isJsxOpeningLikeElement(node) ? node.tagName : node; const shouldFactoryRefErr = compilerOptions.jsx !== 1 && compilerOptions.jsx !== 3; let jsxFactorySym; if (!(isJsxOpeningFragment(node) && jsxFactoryNamespace === "null")) { jsxFactorySym = resolveName(jsxFactoryLocation, jsxFactoryNamespace, shouldFactoryRefErr ? 111551 : 111551 & ~384, jsxFactoryRefErr, true); } if (jsxFactorySym) { jsxFactorySym.isReferenced = -1; if (canCollectSymbolAliasAccessabilityData && jsxFactorySym.flags & 2097152 && !getTypeOnlyAliasDeclaration(jsxFactorySym)) { markAliasSymbolAsReferenced(jsxFactorySym); } } if (isJsxOpeningFragment(node)) { const file = getSourceFileOfNode(node); const entity = getJsxFactoryEntity(file); if (entity) { const localJsxNamespace = getFirstIdentifier(entity).escapedText; resolveName(jsxFactoryLocation, localJsxNamespace, shouldFactoryRefErr ? 111551 : 111551 & ~384, jsxFactoryRefErr, true); } } } return; } function markAsyncFunctionAliasReferenced(location) { if (languageVersion < 2) { if (getFunctionFlags(location) & 2) { const returnTypeNode = getEffectiveReturnTypeNode(location); markTypeNodeAsReferenced(returnTypeNode); } } } function markImportEqualsAliasReferenced(location) { if (hasSyntacticModifier(location, 32)) { markExportAsReferenced(location); } } function markExportSpecifierAliasReferenced(location) { if (!location.parent.parent.moduleSpecifier && !location.isTypeOnly && !location.parent.parent.isTypeOnly) { const exportedName = location.propertyName || location.name; if (exportedName.kind === 11) { return; } const symbol = resolveName(exportedName, exportedName.escapedText, 111551 | 788968 | 1920 | 2097152, undefined, true); if (symbol && (symbol === undefinedSymbol || symbol === globalThisSymbol || symbol.declarations && isGlobalSourceFile(getDeclarationContainer(symbol.declarations[0])))) {} else { const target = symbol && (symbol.flags & 2097152 ? resolveAlias(symbol) : symbol); if (!target || getSymbolFlags(target) & 111551) { markExportAsReferenced(location); markIdentifierAliasReferenced(exportedName); } } return; } } function markDecoratorAliasReferenced(node) { if (compilerOptions.emitDecoratorMetadata) { const firstDecorator = find(node.modifiers, isDecorator); if (!firstDecorator) { return; } checkExternalEmitHelpers(firstDecorator, 16); switch (node.kind) { case 264: const constructor = getFirstConstructorWithBody(node); if (constructor) { for (const parameter of constructor.parameters) { markDecoratorMedataDataTypeNodeAsReferenced(getParameterTypeNodeForDecoratorCheck(parameter)); } } break; case 178: case 179: const otherKind = node.kind === 178 ? 179 : 178; const otherAccessor = getDeclarationOfKind(getSymbolOfDeclaration(node), otherKind); markDecoratorMedataDataTypeNodeAsReferenced(getAnnotatedAccessorTypeNode(node) || otherAccessor && getAnnotatedAccessorTypeNode(otherAccessor)); break; case 175: for (const parameter of node.parameters) { markDecoratorMedataDataTypeNodeAsReferenced(getParameterTypeNodeForDecoratorCheck(parameter)); } markDecoratorMedataDataTypeNodeAsReferenced(getEffectiveReturnTypeNode(node)); break; case 173: markDecoratorMedataDataTypeNodeAsReferenced(getEffectiveTypeAnnotationNode(node)); break; case 170: markDecoratorMedataDataTypeNodeAsReferenced(getParameterTypeNodeForDecoratorCheck(node)); const containingSignature = node.parent; for (const parameter of containingSignature.parameters) { markDecoratorMedataDataTypeNodeAsReferenced(getParameterTypeNodeForDecoratorCheck(parameter)); } markDecoratorMedataDataTypeNodeAsReferenced(getEffectiveReturnTypeNode(containingSignature)); break; } } } function markAliasReferenced(symbol, location) { if (!canCollectSymbolAliasAccessabilityData) { return; } if (isNonLocalAlias(symbol, 111551) && !isInTypeQuery(location)) { const target = resolveAlias(symbol); if (getSymbolFlags(symbol, true) & (111551 | 1048576)) { if (getIsolatedModules(compilerOptions) || shouldPreserveConstEnums(compilerOptions) && isExportOrExportExpression(location) || !isConstEnumOrConstEnumOnlyModule(getExportSymbolOfValueSymbolIfExported(target))) { markAliasSymbolAsReferenced(symbol); } } } } function markAliasSymbolAsReferenced(symbol) { Debug.assert(canCollectSymbolAliasAccessabilityData); const links = getSymbolLinks(symbol); if (!links.referenced) { links.referenced = true; const node = getDeclarationOfAliasSymbol(symbol); if (!node) return Debug.fail(); if (isInternalModuleImportEqualsDeclaration(node)) { if (getSymbolFlags(resolveSymbol(symbol)) & 111551) { const left = getFirstIdentifier(node.moduleReference); markIdentifierAliasReferenced(left); } } } } function markExportAsReferenced(node) { const symbol = getSymbolOfDeclaration(node); const target = resolveAlias(symbol); if (target) { const markAlias = target === unknownSymbol || getSymbolFlags(symbol, true) & 111551 && !isConstEnumOrConstEnumOnlyModule(target); if (markAlias) { markAliasSymbolAsReferenced(symbol); } } } function markEntityNameOrEntityExpressionAsReference(typeName, forDecoratorMetadata) { if (!typeName) return; const rootName = getFirstIdentifier(typeName); const meaning = (typeName.kind === 80 ? 788968 : 1920) | 2097152; const rootSymbol = resolveName(rootName, rootName.escapedText, meaning, undefined, true); if (rootSymbol && rootSymbol.flags & 2097152) { if (canCollectSymbolAliasAccessabilityData && symbolIsValue(rootSymbol) && !isConstEnumOrConstEnumOnlyModule(resolveAlias(rootSymbol)) && !getTypeOnlyAliasDeclaration(rootSymbol)) { markAliasSymbolAsReferenced(rootSymbol); } else if (forDecoratorMetadata && getIsolatedModules(compilerOptions) && getEmitModuleKind(compilerOptions) >= 5 && !symbolIsValue(rootSymbol) && !some(rootSymbol.declarations, isTypeOnlyImportOrExportDeclaration)) { const diag2 = error2(typeName, Diagnostics.A_type_referenced_in_a_decorated_signature_must_be_imported_with_import_type_or_a_namespace_import_when_isolatedModules_and_emitDecoratorMetadata_are_enabled); const aliasDeclaration = find(rootSymbol.declarations || emptyArray, isAliasSymbolDeclaration); if (aliasDeclaration) { addRelatedInfo(diag2, createDiagnosticForNode(aliasDeclaration, Diagnostics._0_was_imported_here, idText(rootName))); } } } } function markTypeNodeAsReferenced(node) { markEntityNameOrEntityExpressionAsReference(node && getEntityNameFromTypeNode(node), false); } function markDecoratorMedataDataTypeNodeAsReferenced(node) { const entityName = getEntityNameForDecoratorMetadata(node); if (entityName && isEntityName(entityName)) { markEntityNameOrEntityExpressionAsReference(entityName, true); } } function getNarrowedTypeOfSymbol(symbol, location) { var _a; const type = getTypeOfSymbol(symbol); const declaration = symbol.valueDeclaration; if (declaration) { if (isBindingElement(declaration) && !declaration.initializer && !declaration.dotDotDotToken && declaration.parent.elements.length >= 2) { const parent2 = declaration.parent.parent; const rootDeclaration = getRootDeclaration(parent2); if (rootDeclaration.kind === 261 && getCombinedNodeFlagsCached(rootDeclaration) & 6 || rootDeclaration.kind === 170) { const links = getNodeLinks(parent2); if (!(links.flags & 4194304)) { links.flags |= 4194304; const parentType = getTypeForBindingElementParent(parent2, 0); const parentTypeConstraint = parentType && mapType(parentType, getBaseConstraintOrType); links.flags &= ~4194304; if (parentTypeConstraint && parentTypeConstraint.flags & 134217728 && !(rootDeclaration.kind === 170 && isSomeSymbolAssigned(rootDeclaration))) { const pattern = declaration.parent; const narrowedType = getFlowTypeOfReference(pattern, parentTypeConstraint, parentTypeConstraint, undefined, location.flowNode); if (narrowedType.flags & 262144) { return neverType; } return getBindingElementTypeFromParentType(declaration, narrowedType, true); } } } } if (isParameter(declaration) && !declaration.type && !declaration.initializer && !declaration.dotDotDotToken) { const func = declaration.parent; if (func.parameters.length >= 2 && isContextSensitiveFunctionOrObjectLiteralMethod(func)) { const contextualSignature = getContextualSignature(func); if (contextualSignature && contextualSignature.parameters.length === 1 && signatureHasRestParameter(contextualSignature)) { const restType = getReducedApparentType(instantiateType(getTypeOfSymbol(contextualSignature.parameters[0]), (_a = getInferenceContext(func)) == null ? undefined : _a.nonFixingMapper)); if (restType.flags & 134217728 && everyType(restType, isTupleType) && !some(func.parameters, isSomeSymbolAssigned)) { const narrowedType = getFlowTypeOfReference(func, restType, restType, undefined, location.flowNode); const index = func.parameters.indexOf(declaration) - (getThisParameter(func) ? 1 : 0); return getIndexedAccessType(narrowedType, getNumberLiteralType(index)); } } } } } return type; } function checkIdentifierCalculateNodeCheckFlags(node, symbol) { if (isThisInTypeQuery(node)) return; if (symbol === argumentsSymbol) { if (isInPropertyInitializerOrClassStaticBlock(node, true)) { error2(node, Diagnostics.arguments_cannot_be_referenced_in_property_initializers_or_class_static_initialization_blocks); return; } let container = getContainingFunction(node); if (container) { if (languageVersion < 2) { if (container.kind === 220) { error2(node, Diagnostics.The_arguments_object_cannot_be_referenced_in_an_arrow_function_in_ES5_Consider_using_a_standard_function_expression); } else if (hasSyntacticModifier(container, 1024)) { error2(node, Diagnostics.The_arguments_object_cannot_be_referenced_in_an_async_function_or_method_in_ES5_Consider_using_a_standard_function_or_method); } } getNodeLinks(container).flags |= 512; while (container && isArrowFunction(container)) { container = getContainingFunction(container); if (container) { getNodeLinks(container).flags |= 512; } } } return; } const localOrExportSymbol = getExportSymbolOfValueSymbolIfExported(symbol); const targetSymbol = resolveAliasWithDeprecationCheck(localOrExportSymbol, node); if (isDeprecatedSymbol(targetSymbol) && isUncalledFunctionReference(node, targetSymbol) && targetSymbol.declarations) { addDeprecatedSuggestion(node, targetSymbol.declarations, node.escapedText); } const declaration = localOrExportSymbol.valueDeclaration; if (declaration && localOrExportSymbol.flags & 32) { if (isClassLike(declaration) && declaration.name !== node) { let container = getThisContainer(node, false, false); while (container.kind !== 308 && container.parent !== declaration) { container = getThisContainer(container, false, false); } if (container.kind !== 308) { getNodeLinks(declaration).flags |= 262144; getNodeLinks(container).flags |= 262144; getNodeLinks(node).flags |= 536870912; } } } checkNestedBlockScopedBinding(node, symbol); } function checkIdentifier(node, checkMode) { if (isThisInTypeQuery(node)) { return checkThisExpression(node); } const symbol = getResolvedSymbol(node); if (symbol === unknownSymbol) { return errorType; } checkIdentifierCalculateNodeCheckFlags(node, symbol); if (symbol === argumentsSymbol) { if (isInPropertyInitializerOrClassStaticBlock(node, true)) { return errorType; } return getTypeOfSymbol(symbol); } if (shouldMarkIdentifierAliasReferenced(node)) { markLinkedReferences(node, 1); } const localOrExportSymbol = getExportSymbolOfValueSymbolIfExported(symbol); let declaration = localOrExportSymbol.valueDeclaration; const immediateDeclaration = declaration; if (declaration && declaration.kind === 209 && contains(contextualBindingPatterns, declaration.parent) && findAncestor(node, (parent2) => parent2 === declaration.parent)) { return nonInferrableAnyType; } let type = getNarrowedTypeOfSymbol(localOrExportSymbol, node); const assignmentKind = getAssignmentTargetKind(node); if (assignmentKind) { if (!(localOrExportSymbol.flags & 3) && !(isInJSFile(node) && localOrExportSymbol.flags & 512)) { const assignmentError = localOrExportSymbol.flags & 384 ? Diagnostics.Cannot_assign_to_0_because_it_is_an_enum : localOrExportSymbol.flags & 32 ? Diagnostics.Cannot_assign_to_0_because_it_is_a_class : localOrExportSymbol.flags & 1536 ? Diagnostics.Cannot_assign_to_0_because_it_is_a_namespace : localOrExportSymbol.flags & 16 ? Diagnostics.Cannot_assign_to_0_because_it_is_a_function : localOrExportSymbol.flags & 2097152 ? Diagnostics.Cannot_assign_to_0_because_it_is_an_import : Diagnostics.Cannot_assign_to_0_because_it_is_not_a_variable; error2(node, assignmentError, symbolToString(symbol)); return errorType; } if (isReadonlySymbol(localOrExportSymbol)) { if (localOrExportSymbol.flags & 3) { error2(node, Diagnostics.Cannot_assign_to_0_because_it_is_a_constant, symbolToString(symbol)); } else { error2(node, Diagnostics.Cannot_assign_to_0_because_it_is_a_read_only_property, symbolToString(symbol)); } return errorType; } } const isAlias = localOrExportSymbol.flags & 2097152; if (localOrExportSymbol.flags & 3) { if (assignmentKind === 1) { return isInCompoundLikeAssignment(node) ? getBaseTypeOfLiteralType(type) : type; } } else if (isAlias) { declaration = getDeclarationOfAliasSymbol(symbol); } else { return type; } if (!declaration) { return type; } type = getNarrowableTypeForReference(type, node, checkMode); const isParameter2 = getRootDeclaration(declaration).kind === 170; const declarationContainer = getControlFlowContainer(declaration); let flowContainer = getControlFlowContainer(node); const isOuterVariable = flowContainer !== declarationContainer; const isSpreadDestructuringAssignmentTarget = node.parent && node.parent.parent && isSpreadAssignment(node.parent) && isDestructuringAssignmentTarget(node.parent.parent); const isModuleExports = symbol.flags & 134217728; const typeIsAutomatic = type === autoType || type === autoArrayType; const isAutomaticTypeInNonNull = typeIsAutomatic && node.parent.kind === 236; while (flowContainer !== declarationContainer && (flowContainer.kind === 219 || flowContainer.kind === 220 || isObjectLiteralOrClassExpressionMethodOrAccessor(flowContainer)) && (isConstantVariable(localOrExportSymbol) && type !== autoArrayType || isParameterOrMutableLocalVariable(localOrExportSymbol) && isPastLastAssignment(localOrExportSymbol, node))) { flowContainer = getControlFlowContainer(flowContainer); } const isNeverInitialized = immediateDeclaration && isVariableDeclaration(immediateDeclaration) && !isForInOrOfStatement(immediateDeclaration.parent.parent) && !immediateDeclaration.initializer && !immediateDeclaration.exclamationToken && isMutableLocalVariableDeclaration(immediateDeclaration) && !isSymbolAssignedDefinitely(symbol); const assumeInitialized = isParameter2 || isAlias || isOuterVariable && !isNeverInitialized || isSpreadDestructuringAssignmentTarget || isModuleExports || isSameScopedBindingElement(node, declaration) || type !== autoType && type !== autoArrayType && (!strictNullChecks || (type.flags & (3 | 16)) !== 0 || isInTypeQuery(node) || isInAmbientOrTypeNode(node) || node.parent.kind === 282) || node.parent.kind === 236 || declaration.kind === 261 && declaration.exclamationToken || declaration.flags & 33554432; const initialType = isAutomaticTypeInNonNull ? undefinedType : assumeInitialized ? isParameter2 ? removeOptionalityFromDeclaredType(type, declaration) : type : typeIsAutomatic ? undefinedType : getOptionalType(type); const flowType = isAutomaticTypeInNonNull ? getNonNullableType(getFlowTypeOfReference(node, type, initialType, flowContainer)) : getFlowTypeOfReference(node, type, initialType, flowContainer); if (!isEvolvingArrayOperationTarget(node) && (type === autoType || type === autoArrayType)) { if (flowType === autoType || flowType === autoArrayType) { if (noImplicitAny) { error2(getNameOfDeclaration(declaration), Diagnostics.Variable_0_implicitly_has_type_1_in_some_locations_where_its_type_cannot_be_determined, symbolToString(symbol), typeToString(flowType)); error2(node, Diagnostics.Variable_0_implicitly_has_an_1_type, symbolToString(symbol), typeToString(flowType)); } return convertAutoToAny(flowType); } } else if (!assumeInitialized && !containsUndefinedType(type) && containsUndefinedType(flowType)) { error2(node, Diagnostics.Variable_0_is_used_before_being_assigned, symbolToString(symbol)); return type; } return assignmentKind ? getBaseTypeOfLiteralType(flowType) : flowType; } function isSameScopedBindingElement(node, declaration) { if (isBindingElement(declaration)) { const bindingElement = findAncestor(node, isBindingElement); return bindingElement && getRootDeclaration(bindingElement) === getRootDeclaration(declaration); } } function shouldMarkIdentifierAliasReferenced(node) { var _a; const parent2 = node.parent; if (parent2) { if (isPropertyAccessExpression(parent2) && parent2.expression === node) { return false; } if (isExportSpecifier(parent2) && parent2.isTypeOnly) { return false; } const greatGrandparent = (_a = parent2.parent) == null ? undefined : _a.parent; if (greatGrandparent && isExportDeclaration(greatGrandparent) && greatGrandparent.isTypeOnly) { return false; } } return true; } function isInsideFunctionOrInstancePropertyInitializer(node, threshold) { return !!findAncestor(node, (n) => n === threshold ? "quit" : isFunctionLike(n) || n.parent && isPropertyDeclaration(n.parent) && !hasStaticModifier(n.parent) && n.parent.initializer === n); } function getPartOfForStatementContainingNode(node, container) { return findAncestor(node, (n) => n === container ? "quit" : n === container.initializer || n === container.condition || n === container.incrementor || n === container.statement); } function getEnclosingIterationStatement(node) { return findAncestor(node, (n) => !n || nodeStartsNewLexicalEnvironment(n) ? "quit" : isIterationStatement(n, false)); } function checkNestedBlockScopedBinding(node, symbol) { if (languageVersion >= 2 || (symbol.flags & (2 | 32)) === 0 || !symbol.valueDeclaration || isSourceFile(symbol.valueDeclaration) || symbol.valueDeclaration.parent.kind === 300) { return; } const container = getEnclosingBlockScopeContainer(symbol.valueDeclaration); const isCaptured = isInsideFunctionOrInstancePropertyInitializer(node, container); const enclosingIterationStatement = getEnclosingIterationStatement(container); if (enclosingIterationStatement) { if (isCaptured) { let capturesBlockScopeBindingInLoopBody = true; if (isForStatement(container)) { const varDeclList = getAncestor(symbol.valueDeclaration, 262); if (varDeclList && varDeclList.parent === container) { const part = getPartOfForStatementContainingNode(node.parent, container); if (part) { const links = getNodeLinks(part); links.flags |= 8192; const capturedBindings = links.capturedBlockScopeBindings || (links.capturedBlockScopeBindings = []); pushIfUnique(capturedBindings, symbol); if (part === container.initializer) { capturesBlockScopeBindingInLoopBody = false; } } } } if (capturesBlockScopeBindingInLoopBody) { getNodeLinks(enclosingIterationStatement).flags |= 4096; } } if (isForStatement(container)) { const varDeclList = getAncestor(symbol.valueDeclaration, 262); if (varDeclList && varDeclList.parent === container && isAssignedInBodyOfForStatement(node, container)) { getNodeLinks(symbol.valueDeclaration).flags |= 65536; } } getNodeLinks(symbol.valueDeclaration).flags |= 32768; } if (isCaptured) { getNodeLinks(symbol.valueDeclaration).flags |= 16384; } } function isBindingCapturedByNode(node, decl) { const links = getNodeLinks(node); return !!links && contains(links.capturedBlockScopeBindings, getSymbolOfDeclaration(decl)); } function isAssignedInBodyOfForStatement(node, container) { let current = node; while (current.parent.kind === 218) { current = current.parent; } let isAssigned = false; if (isAssignmentTarget(current)) { isAssigned = true; } else if (current.parent.kind === 225 || current.parent.kind === 226) { const expr = current.parent; isAssigned = expr.operator === 46 || expr.operator === 47; } if (!isAssigned) { return false; } return !!findAncestor(current, (n) => n === container ? "quit" : n === container.statement); } function captureLexicalThis(node, container) { getNodeLinks(node).flags |= 2; if (container.kind === 173 || container.kind === 177) { const classNode = container.parent; getNodeLinks(classNode).flags |= 4; } else { getNodeLinks(container).flags |= 4; } } function findFirstSuperCall(node) { return isSuperCall(node) ? node : isFunctionLike(node) ? undefined : forEachChild(node, findFirstSuperCall); } function classDeclarationExtendsNull(classDecl) { const classSymbol = getSymbolOfDeclaration(classDecl); const classInstanceType = getDeclaredTypeOfSymbol(classSymbol); const baseConstructorType = getBaseConstructorTypeOfClass(classInstanceType); return baseConstructorType === nullWideningType; } function checkThisBeforeSuper(node, container, diagnosticMessage) { const containingClassDecl = container.parent; const baseTypeNode = getClassExtendsHeritageElement(containingClassDecl); if (baseTypeNode && !classDeclarationExtendsNull(containingClassDecl)) { if (canHaveFlowNode(node) && node.flowNode && !isPostSuperFlowNode(node.flowNode, false)) { error2(node, diagnosticMessage); } } } function checkThisInStaticClassFieldInitializerInDecoratedClass(thisExpression, container) { if (isPropertyDeclaration(container) && hasStaticModifier(container) && legacyDecorators && container.initializer && textRangeContainsPositionInclusive(container.initializer, thisExpression.pos) && hasDecorators(container.parent)) { error2(thisExpression, Diagnostics.Cannot_use_this_in_a_static_property_initializer_of_a_decorated_class); } } function checkThisExpression(node) { const isNodeInTypeQuery = isInTypeQuery(node); let container = getThisContainer(node, true, true); let capturedByArrowFunction = false; let thisInComputedPropertyName = false; if (container.kind === 177) { checkThisBeforeSuper(node, container, Diagnostics.super_must_be_called_before_accessing_this_in_the_constructor_of_a_derived_class); } while (true) { if (container.kind === 220) { container = getThisContainer(container, false, !thisInComputedPropertyName); capturedByArrowFunction = true; } if (container.kind === 168) { container = getThisContainer(container, !capturedByArrowFunction, false); thisInComputedPropertyName = true; continue; } break; } checkThisInStaticClassFieldInitializerInDecoratedClass(node, container); if (thisInComputedPropertyName) { error2(node, Diagnostics.this_cannot_be_referenced_in_a_computed_property_name); } else { switch (container.kind) { case 268: error2(node, Diagnostics.this_cannot_be_referenced_in_a_module_or_namespace_body); break; case 267: error2(node, Diagnostics.this_cannot_be_referenced_in_current_location); break; } } if (!isNodeInTypeQuery && capturedByArrowFunction && languageVersion < 2) { captureLexicalThis(node, container); } const type = tryGetThisTypeAt(node, true, container); if (noImplicitThis) { const globalThisType2 = getTypeOfSymbol(globalThisSymbol); if (type === globalThisType2 && capturedByArrowFunction) { error2(node, Diagnostics.The_containing_arrow_function_captures_the_global_value_of_this); } else if (!type) { const diag2 = error2(node, Diagnostics.this_implicitly_has_type_any_because_it_does_not_have_a_type_annotation); if (!isSourceFile(container)) { const outsideThis = tryGetThisTypeAt(container); if (outsideThis && outsideThis !== globalThisType2) { addRelatedInfo(diag2, createDiagnosticForNode(container, Diagnostics.An_outer_value_of_this_is_shadowed_by_this_container)); } } } } return type || anyType; } function tryGetThisTypeAt(node, includeGlobalThis = true, container = getThisContainer(node, false, false)) { const isInJS = isInJSFile(node); if (isFunctionLike(container) && (!isInParameterInitializerBeforeContainingFunction(node) || getThisParameter(container))) { let thisType = getThisTypeOfDeclaration(container) || isInJS && getTypeForThisExpressionFromJSDoc(container); if (!thisType) { const className = getClassNameFromPrototypeMethod(container); if (isInJS && className) { const classSymbol = checkExpression(className).symbol; if (classSymbol && classSymbol.members && classSymbol.flags & 16) { thisType = getDeclaredTypeOfSymbol(classSymbol).thisType; } } else if (isJSConstructor(container)) { thisType = getDeclaredTypeOfSymbol(getMergedSymbol(container.symbol)).thisType; } thisType || (thisType = getContextualThisParameterType(container)); } if (thisType) { return getFlowTypeOfReference(node, thisType); } } if (isClassLike(container.parent)) { const symbol = getSymbolOfDeclaration(container.parent); const type = isStatic(container) ? getTypeOfSymbol(symbol) : getDeclaredTypeOfSymbol(symbol).thisType; return getFlowTypeOfReference(node, type); } if (isSourceFile(container)) { if (container.commonJsModuleIndicator) { const fileSymbol = getSymbolOfDeclaration(container); return fileSymbol && getTypeOfSymbol(fileSymbol); } else if (container.externalModuleIndicator) { return undefinedType; } else if (includeGlobalThis) { return getTypeOfSymbol(globalThisSymbol); } } } function getExplicitThisType(node) { const container = getThisContainer(node, false, false); if (isFunctionLike(container)) { const signature = getSignatureFromDeclaration(container); if (signature.thisParameter) { return getExplicitTypeOfSymbol(signature.thisParameter); } } if (isClassLike(container.parent)) { const symbol = getSymbolOfDeclaration(container.parent); return isStatic(container) ? getTypeOfSymbol(symbol) : getDeclaredTypeOfSymbol(symbol).thisType; } } function getClassNameFromPrototypeMethod(container) { if (container.kind === 219 && isBinaryExpression(container.parent) && getAssignmentDeclarationKind(container.parent) === 3) { return container.parent.left.expression.expression; } else if (container.kind === 175 && container.parent.kind === 211 && isBinaryExpression(container.parent.parent) && getAssignmentDeclarationKind(container.parent.parent) === 6) { return container.parent.parent.left.expression; } else if (container.kind === 219 && container.parent.kind === 304 && container.parent.parent.kind === 211 && isBinaryExpression(container.parent.parent.parent) && getAssignmentDeclarationKind(container.parent.parent.parent) === 6) { return container.parent.parent.parent.left.expression; } else if (container.kind === 219 && isPropertyAssignment(container.parent) && isIdentifier(container.parent.name) && (container.parent.name.escapedText === "value" || container.parent.name.escapedText === "get" || container.parent.name.escapedText === "set") && isObjectLiteralExpression(container.parent.parent) && isCallExpression(container.parent.parent.parent) && container.parent.parent.parent.arguments[2] === container.parent.parent && getAssignmentDeclarationKind(container.parent.parent.parent) === 9) { return container.parent.parent.parent.arguments[0].expression; } else if (isMethodDeclaration(container) && isIdentifier(container.name) && (container.name.escapedText === "value" || container.name.escapedText === "get" || container.name.escapedText === "set") && isObjectLiteralExpression(container.parent) && isCallExpression(container.parent.parent) && container.parent.parent.arguments[2] === container.parent && getAssignmentDeclarationKind(container.parent.parent) === 9) { return container.parent.parent.arguments[0].expression; } } function getTypeForThisExpressionFromJSDoc(node) { const thisTag = getJSDocThisTag(node); if (thisTag && thisTag.typeExpression) { return getTypeFromTypeNode(thisTag.typeExpression); } const signature = getSignatureOfTypeTag(node); if (signature) { return getThisTypeOfSignature(signature); } } function isInConstructorArgumentInitializer(node, constructorDecl) { return !!findAncestor(node, (n) => isFunctionLikeDeclaration(n) ? "quit" : n.kind === 170 && n.parent === constructorDecl); } function checkSuperExpression(node) { const isCallExpression2 = node.parent.kind === 214 && node.parent.expression === node; const immediateContainer = getSuperContainer(node, true); let container = immediateContainer; let needToCaptureLexicalThis = false; let inAsyncFunction = false; if (!isCallExpression2) { while (container && container.kind === 220) { if (hasSyntacticModifier(container, 1024)) inAsyncFunction = true; container = getSuperContainer(container, true); needToCaptureLexicalThis = languageVersion < 2; } if (container && hasSyntacticModifier(container, 1024)) inAsyncFunction = true; } let nodeCheckFlag = 0; if (!container || !isLegalUsageOfSuperExpression(container)) { const current = findAncestor(node, (n) => n === container ? "quit" : n.kind === 168); if (current && current.kind === 168) { error2(node, Diagnostics.super_cannot_be_referenced_in_a_computed_property_name); } else if (isCallExpression2) { error2(node, Diagnostics.Super_calls_are_not_permitted_outside_constructors_or_in_nested_functions_inside_constructors); } else if (!container || !container.parent || !(isClassLike(container.parent) || container.parent.kind === 211)) { error2(node, Diagnostics.super_can_only_be_referenced_in_members_of_derived_classes_or_object_literal_expressions); } else { error2(node, Diagnostics.super_property_access_is_permitted_only_in_a_constructor_member_function_or_member_accessor_of_a_derived_class); } return errorType; } if (!isCallExpression2 && immediateContainer.kind === 177) { checkThisBeforeSuper(node, container, Diagnostics.super_must_be_called_before_accessing_a_property_of_super_in_the_constructor_of_a_derived_class); } if (isStatic(container) || isCallExpression2) { nodeCheckFlag = 32; if (!isCallExpression2 && languageVersion >= 2 && languageVersion <= 8 && (isPropertyDeclaration(container) || isClassStaticBlockDeclaration(container))) { forEachEnclosingBlockScopeContainer(node.parent, (current) => { if (!isSourceFile(current) || isExternalOrCommonJsModule(current)) { getNodeLinks(current).flags |= 2097152; } }); } } else { nodeCheckFlag = 16; } getNodeLinks(node).flags |= nodeCheckFlag; if (container.kind === 175 && inAsyncFunction) { if (isSuperProperty(node.parent) && isAssignmentTarget(node.parent)) { getNodeLinks(container).flags |= 256; } else { getNodeLinks(container).flags |= 128; } } if (needToCaptureLexicalThis) { captureLexicalThis(node.parent, container); } if (container.parent.kind === 211) { if (languageVersion < 2) { error2(node, Diagnostics.super_is_only_allowed_in_members_of_object_literal_expressions_when_option_target_is_ES2015_or_higher); return errorType; } else { return anyType; } } const classLikeDeclaration = container.parent; if (!getClassExtendsHeritageElement(classLikeDeclaration)) { error2(node, Diagnostics.super_can_only_be_referenced_in_a_derived_class); return errorType; } if (classDeclarationExtendsNull(classLikeDeclaration)) { return isCallExpression2 ? errorType : nullWideningType; } const classType = getDeclaredTypeOfSymbol(getSymbolOfDeclaration(classLikeDeclaration)); const baseClassType = classType && getBaseTypes(classType)[0]; if (!baseClassType) { return errorType; } if (container.kind === 177 && isInConstructorArgumentInitializer(node, container)) { error2(node, Diagnostics.super_cannot_be_referenced_in_constructor_arguments); return errorType; } return nodeCheckFlag === 32 ? getBaseConstructorTypeOfClass(classType) : getTypeWithThisArgument(baseClassType, classType.thisType); function isLegalUsageOfSuperExpression(container2) { if (isCallExpression2) { return container2.kind === 177; } else { if (isClassLike(container2.parent) || container2.parent.kind === 211) { if (isStatic(container2)) { return container2.kind === 175 || container2.kind === 174 || container2.kind === 178 || container2.kind === 179 || container2.kind === 173 || container2.kind === 176; } else { return container2.kind === 175 || container2.kind === 174 || container2.kind === 178 || container2.kind === 179 || container2.kind === 173 || container2.kind === 172 || container2.kind === 177; } } } return false; } } function getContainingObjectLiteral(func) { return (func.kind === 175 || func.kind === 178 || func.kind === 179) && func.parent.kind === 211 ? func.parent : func.kind === 219 && func.parent.kind === 304 ? func.parent.parent : undefined; } function getThisTypeArgument(type) { return getObjectFlags(type) & 4 && type.target === globalThisType ? getTypeArguments(type)[0] : undefined; } function getThisTypeFromContextualType(type) { return mapType(type, (t) => { return t.flags & 268435456 ? forEach(t.types, getThisTypeArgument) : getThisTypeArgument(t); }); } function getThisTypeOfObjectLiteralFromContextualType(containingLiteral, contextualType) { let literal = containingLiteral; let type = contextualType; while (type) { const thisType = getThisTypeFromContextualType(type); if (thisType) { return thisType; } if (literal.parent.kind !== 304) { break; } literal = literal.parent.parent; type = getApparentTypeOfContextualType(literal, undefined); } } function getContextualThisParameterType(func) { if (func.kind === 220) { return; } if (isContextSensitiveFunctionOrObjectLiteralMethod(func)) { const contextualSignature = getContextualSignature(func); if (contextualSignature) { const thisParameter = contextualSignature.thisParameter; if (thisParameter) { return getTypeOfSymbol(thisParameter); } } } const inJs = isInJSFile(func); if (noImplicitThis || inJs) { const containingLiteral = getContainingObjectLiteral(func); if (containingLiteral) { const contextualType = getApparentTypeOfContextualType(containingLiteral, undefined); const thisType = getThisTypeOfObjectLiteralFromContextualType(containingLiteral, contextualType); if (thisType) { return instantiateType(thisType, getMapperFromContext(getInferenceContext(containingLiteral))); } return getWidenedType(contextualType ? getNonNullableType(contextualType) : checkExpressionCached(containingLiteral)); } const parent2 = walkUpParenthesizedExpressions(func.parent); if (isAssignmentExpression(parent2)) { const target = parent2.left; if (isAccessExpression(target)) { const { expression } = target; if (inJs && isIdentifier(expression)) { const sourceFile = getSourceFileOfNode(parent2); if (sourceFile.commonJsModuleIndicator && getResolvedSymbol(expression) === sourceFile.symbol) { return; } } return getWidenedType(checkExpressionCached(expression)); } } } return; } function getContextuallyTypedParameterType(parameter) { const func = parameter.parent; if (!isContextSensitiveFunctionOrObjectLiteralMethod(func)) { return; } const iife = getImmediatelyInvokedFunctionExpression(func); if (iife && iife.arguments) { const args = getEffectiveCallArguments(iife); const indexOfParameter = func.parameters.indexOf(parameter); if (parameter.dotDotDotToken) { return getSpreadArgumentType(args, indexOfParameter, args.length, anyType, undefined, 0); } const links = getNodeLinks(iife); const cached = links.resolvedSignature; links.resolvedSignature = anySignature; const type = indexOfParameter < args.length ? getWidenedLiteralType(checkExpression(args[indexOfParameter])) : parameter.initializer ? undefined : undefinedWideningType; links.resolvedSignature = cached; return type; } const contextualSignature = getContextualSignature(func); if (contextualSignature) { const index = func.parameters.indexOf(parameter) - (getThisParameter(func) ? 1 : 0); return parameter.dotDotDotToken && lastOrUndefined(func.parameters) === parameter ? getRestTypeAtPosition(contextualSignature, index) : tryGetTypeAtPosition(contextualSignature, index); } } function getContextualTypeForVariableLikeDeclaration(declaration, contextFlags) { const typeNode = getEffectiveTypeAnnotationNode(declaration) || (isInJSFile(declaration) ? tryGetJSDocSatisfiesTypeNode(declaration) : undefined); if (typeNode) { return getTypeFromTypeNode(typeNode); } switch (declaration.kind) { case 170: return getContextuallyTypedParameterType(declaration); case 209: return getContextualTypeForBindingElement(declaration, contextFlags); case 173: if (isStatic(declaration)) { return getContextualTypeForStaticPropertyDeclaration(declaration, contextFlags); } } } function getContextualTypeForBindingElement(declaration, contextFlags) { const parent2 = declaration.parent.parent; const name = declaration.propertyName || declaration.name; const parentType = getContextualTypeForVariableLikeDeclaration(parent2, contextFlags) || parent2.kind !== 209 && parent2.initializer && checkDeclarationInitializer(parent2, declaration.dotDotDotToken ? 32 : 0); if (!parentType || isBindingPattern(name) || isComputedNonLiteralName(name)) return; if (parent2.name.kind === 208) { const index = indexOfNode(declaration.parent.elements, declaration); if (index < 0) return; return getContextualTypeForElementExpression(parentType, index); } const nameType = getLiteralTypeFromPropertyName(name); if (isTypeUsableAsPropertyName(nameType)) { const text = getPropertyNameFromType(nameType); return getTypeOfPropertyOfType(parentType, text); } } function getContextualTypeForStaticPropertyDeclaration(declaration, contextFlags) { const parentType = isExpression(declaration.parent) && getContextualType2(declaration.parent, contextFlags); if (!parentType) return; return getTypeOfPropertyOfContextualType(parentType, getSymbolOfDeclaration(declaration).escapedName); } function getContextualTypeForInitializerExpression(node, contextFlags) { const declaration = node.parent; if (hasInitializer(declaration) && node === declaration.initializer) { const result = getContextualTypeForVariableLikeDeclaration(declaration, contextFlags); if (result) { return result; } if (!(contextFlags & 8) && isBindingPattern(declaration.name) && declaration.name.elements.length > 0) { return getTypeFromBindingPattern(declaration.name, true, false); } } return; } function getContextualTypeForReturnExpression(node, contextFlags) { const func = getContainingFunction(node); if (func) { let contextualReturnType = getContextualReturnType(func, contextFlags); if (contextualReturnType) { const functionFlags = getFunctionFlags(func); if (functionFlags & 1) { const isAsyncGenerator = (functionFlags & 2) !== 0; if (contextualReturnType.flags & 134217728) { contextualReturnType = filterType(contextualReturnType, (type) => !!getIterationTypeOfGeneratorFunctionReturnType(1, type, isAsyncGenerator)); } const iterationReturnType = getIterationTypeOfGeneratorFunctionReturnType(1, contextualReturnType, (functionFlags & 2) !== 0); if (!iterationReturnType) { return; } contextualReturnType = iterationReturnType; } if (functionFlags & 2) { const contextualAwaitedType = mapType(contextualReturnType, getAwaitedTypeNoAlias); return contextualAwaitedType && getUnionType([contextualAwaitedType, createPromiseLikeType(contextualAwaitedType)]); } return contextualReturnType; } } return; } function getContextualTypeForAwaitOperand(node, contextFlags) { const contextualType = getContextualType2(node, contextFlags); if (contextualType) { const contextualAwaitedType = getAwaitedTypeNoAlias(contextualType); return contextualAwaitedType && getUnionType([contextualAwaitedType, createPromiseLikeType(contextualAwaitedType)]); } return; } function getContextualTypeForYieldOperand(node, contextFlags) { const func = getContainingFunction(node); if (func) { const functionFlags = getFunctionFlags(func); let contextualReturnType = getContextualReturnType(func, contextFlags); if (contextualReturnType) { const isAsyncGenerator = (functionFlags & 2) !== 0; if (!node.asteriskToken && contextualReturnType.flags & 134217728) { contextualReturnType = filterType(contextualReturnType, (type) => !!getIterationTypeOfGeneratorFunctionReturnType(1, type, isAsyncGenerator)); } if (node.asteriskToken) { const iterationTypes = getIterationTypesOfGeneratorFunctionReturnType(contextualReturnType, isAsyncGenerator); const yieldType = (iterationTypes == null ? undefined : iterationTypes.yieldType) ?? silentNeverType; const returnType = getContextualType2(node, contextFlags) ?? silentNeverType; const nextType = (iterationTypes == null ? undefined : iterationTypes.nextType) ?? unknownType; const generatorType = createGeneratorType(yieldType, returnType, nextType, false); if (isAsyncGenerator) { const asyncGeneratorType = createGeneratorType(yieldType, returnType, nextType, true); return getUnionType([generatorType, asyncGeneratorType]); } return generatorType; } return getIterationTypeOfGeneratorFunctionReturnType(0, contextualReturnType, isAsyncGenerator); } } return; } function isInParameterInitializerBeforeContainingFunction(node) { let inBindingInitializer = false; while (node.parent && !isFunctionLike(node.parent)) { if (isParameter(node.parent) && (inBindingInitializer || node.parent.initializer === node)) { return true; } if (isBindingElement(node.parent) && node.parent.initializer === node) { inBindingInitializer = true; } node = node.parent; } return false; } function getContextualIterationType(kind, functionDecl) { const isAsync = !!(getFunctionFlags(functionDecl) & 2); const contextualReturnType = getContextualReturnType(functionDecl, undefined); if (contextualReturnType) { return getIterationTypeOfGeneratorFunctionReturnType(kind, contextualReturnType, isAsync) || undefined; } return; } function getContextualReturnType(functionDecl, contextFlags) { const returnType = getReturnTypeFromAnnotation(functionDecl); if (returnType) { return returnType; } const signature = getContextualSignatureForFunctionLikeDeclaration(functionDecl); if (signature && !isResolvingReturnTypeOfSignature(signature)) { const returnType2 = getReturnTypeOfSignature(signature); const functionFlags = getFunctionFlags(functionDecl); if (functionFlags & 1) { return filterType(returnType2, (t) => { return !!(t.flags & (3 | 16 | 117964800)) || checkGeneratorInstantiationAssignabilityToReturnType(t, functionFlags, undefined); }); } if (functionFlags & 2) { return filterType(returnType2, (t) => { return !!(t.flags & (3 | 16 | 117964800)) || !!getAwaitedTypeOfPromise(t); }); } return returnType2; } const iife = getImmediatelyInvokedFunctionExpression(functionDecl); if (iife) { return getContextualType2(iife, contextFlags); } return; } function getContextualTypeForArgument(callTarget, arg) { const args = getEffectiveCallArguments(callTarget); const argIndex = args.indexOf(arg); return argIndex === -1 ? undefined : getContextualTypeForArgumentAtIndex(callTarget, argIndex); } function getContextualTypeForArgumentAtIndex(callTarget, argIndex) { if (isImportCall(callTarget)) { return argIndex === 0 ? stringType : argIndex === 1 ? getGlobalImportCallOptionsType(false) : anyType; } const signature = getNodeLinks(callTarget).resolvedSignature === resolvingSignature ? resolvingSignature : getResolvedSignature(callTarget); if (isJsxOpeningLikeElement(callTarget) && argIndex === 0) { return getEffectiveFirstArgumentForJsxSignature(signature, callTarget); } const restIndex = signature.parameters.length - 1; return signatureHasRestParameter(signature) && argIndex >= restIndex ? getIndexedAccessType(getTypeOfSymbol(signature.parameters[restIndex]), getNumberLiteralType(argIndex - restIndex), 256) : getTypeAtPosition(signature, argIndex); } function getContextualTypeForDecorator(decorator) { const signature = getDecoratorCallSignature(decorator); return signature ? getOrCreateTypeFromSignature(signature) : undefined; } function getContextualTypeForSubstitutionExpression(template, substitutionExpression) { if (template.parent.kind === 216) { return getContextualTypeForArgument(template.parent, substitutionExpression); } return; } function getContextualTypeForBinaryOperand(node, contextFlags) { const binaryExpression = node.parent; const { left, operatorToken, right } = binaryExpression; switch (operatorToken.kind) { case 64: case 77: case 76: case 78: return node === right ? getContextualTypeForAssignmentDeclaration(binaryExpression) : undefined; case 57: case 61: const type = getContextualType2(binaryExpression, contextFlags); return node === right && (type && type.pattern || !type && !isDefaultedExpandoInitializer(binaryExpression)) ? getTypeOfExpression(left) : type; case 56: case 28: return node === right ? getContextualType2(binaryExpression, contextFlags) : undefined; default: return; } } function getSymbolForExpression(e) { if (canHaveSymbol(e) && e.symbol) { return e.symbol; } if (isIdentifier(e)) { return getResolvedSymbol(e); } if (isPropertyAccessExpression(e)) { const lhsType = getTypeOfExpression(e.expression); return isPrivateIdentifier(e.name) ? tryGetPrivateIdentifierPropertyOfType(lhsType, e.name) : getPropertyOfType(lhsType, e.name.escapedText); } if (isElementAccessExpression(e)) { const propType = checkExpressionCached(e.argumentExpression); if (!isTypeUsableAsPropertyName(propType)) { return; } const lhsType = getTypeOfExpression(e.expression); return getPropertyOfType(lhsType, getPropertyNameFromType(propType)); } return; function tryGetPrivateIdentifierPropertyOfType(type, id) { const lexicallyScopedSymbol = lookupSymbolForPrivateIdentifierDeclaration(id.escapedText, id); return lexicallyScopedSymbol && getPrivateIdentifierPropertyOfType(type, lexicallyScopedSymbol); } } function getContextualTypeForAssignmentDeclaration(binaryExpression) { var _a, _b; const kind = getAssignmentDeclarationKind(binaryExpression); switch (kind) { case 0: case 4: const lhsSymbol = getSymbolForExpression(binaryExpression.left); const decl = lhsSymbol && lhsSymbol.valueDeclaration; if (decl && (isPropertyDeclaration(decl) || isPropertySignature(decl))) { const overallAnnotation = getEffectiveTypeAnnotationNode(decl); return overallAnnotation && instantiateType(getTypeFromTypeNode(overallAnnotation), getSymbolLinks(lhsSymbol).mapper) || (isPropertyDeclaration(decl) ? decl.initializer && getTypeOfExpression(binaryExpression.left) : undefined); } if (kind === 0) { return getTypeOfExpression(binaryExpression.left); } return getContextualTypeForThisPropertyAssignment(binaryExpression); case 5: if (isPossiblyAliasedThisProperty(binaryExpression, kind)) { return getContextualTypeForThisPropertyAssignment(binaryExpression); } else if (!canHaveSymbol(binaryExpression.left) || !binaryExpression.left.symbol) { return getTypeOfExpression(binaryExpression.left); } else { const decl2 = binaryExpression.left.symbol.valueDeclaration; if (!decl2) { return; } const lhs = cast(binaryExpression.left, isAccessExpression); const overallAnnotation = getEffectiveTypeAnnotationNode(decl2); if (overallAnnotation) { return getTypeFromTypeNode(overallAnnotation); } else if (isIdentifier(lhs.expression)) { const id = lhs.expression; const parentSymbol = resolveName(id, id.escapedText, 111551, undefined, true); if (parentSymbol) { const annotated2 = parentSymbol.valueDeclaration && getEffectiveTypeAnnotationNode(parentSymbol.valueDeclaration); if (annotated2) { const nameStr = getElementOrPropertyAccessName(lhs); if (nameStr !== undefined) { return getTypeOfPropertyOfContextualType(getTypeFromTypeNode(annotated2), nameStr); } } return; } } return isInJSFile(decl2) || decl2 === binaryExpression.left ? undefined : getTypeOfExpression(binaryExpression.left); } case 1: case 6: case 3: case 2: let valueDeclaration; if (kind !== 2) { valueDeclaration = canHaveSymbol(binaryExpression.left) ? (_a = binaryExpression.left.symbol) == null ? undefined : _a.valueDeclaration : undefined; } valueDeclaration || (valueDeclaration = (_b = binaryExpression.symbol) == null ? undefined : _b.valueDeclaration); const annotated = valueDeclaration && getEffectiveTypeAnnotationNode(valueDeclaration); return annotated ? getTypeFromTypeNode(annotated) : undefined; case 7: case 8: case 9: return Debug.fail("Does not apply"); default: return Debug.assertNever(kind); } } function isPossiblyAliasedThisProperty(declaration, kind = getAssignmentDeclarationKind(declaration)) { if (kind === 4) { return true; } if (!isInJSFile(declaration) || kind !== 5 || !isIdentifier(declaration.left.expression)) { return false; } const name = declaration.left.expression.escapedText; const symbol = resolveName(declaration.left, name, 111551, undefined, true, true); return isThisInitializedDeclaration(symbol == null ? undefined : symbol.valueDeclaration); } function getContextualTypeForThisPropertyAssignment(binaryExpression) { if (!binaryExpression.symbol) return getTypeOfExpression(binaryExpression.left); if (binaryExpression.symbol.valueDeclaration) { const annotated = getEffectiveTypeAnnotationNode(binaryExpression.symbol.valueDeclaration); if (annotated) { const type = getTypeFromTypeNode(annotated); if (type) { return type; } } } const thisAccess = cast(binaryExpression.left, isAccessExpression); if (!isObjectLiteralMethod(getThisContainer(thisAccess.expression, false, false))) { return; } const thisType = checkThisExpression(thisAccess.expression); const nameStr = getElementOrPropertyAccessName(thisAccess); return nameStr !== undefined && getTypeOfPropertyOfContextualType(thisType, nameStr) || undefined; } function isCircularMappedProperty(symbol) { return !!(getCheckFlags(symbol) & 262144 && !symbol.links.type && findResolutionCycleStartIndex(symbol, 0) >= 0); } function isExcludedMappedPropertyName(constraint, propertyNameType) { if (constraint.flags & 67108864) { const type = constraint; return !!(getReducedType(getTrueTypeFromConditionalType(type)).flags & 262144) && getActualTypeVariable(getFalseTypeFromConditionalType(type)) === getActualTypeVariable(type.checkType) && isTypeAssignableTo(propertyNameType, type.extendsType); } if (constraint.flags & 268435456) { return some(constraint.types, (t) => isExcludedMappedPropertyName(t, propertyNameType)); } return false; } function getTypeOfPropertyOfContextualType(type, name, nameType) { return mapType(type, (t) => { if (t.flags & 268435456) { let types; let indexInfoCandidates; let ignoreIndexInfos = false; for (const constituentType of t.types) { if (!(constituentType.flags & 1048576)) { continue; } if (isGenericMappedType(constituentType) && getMappedTypeNameTypeKind(constituentType) !== 2) { const substitutedType = getIndexedMappedTypeSubstitutedTypeOfContextualType(constituentType, name, nameType); types = appendContextualPropertyTypeConstituent(types, substitutedType); continue; } const propertyType = getTypeOfConcretePropertyOfContextualType(constituentType, name); if (!propertyType) { if (!ignoreIndexInfos) { indexInfoCandidates = append(indexInfoCandidates, constituentType); } continue; } ignoreIndexInfos = true; indexInfoCandidates = undefined; types = appendContextualPropertyTypeConstituent(types, propertyType); } if (indexInfoCandidates) { for (const candidate of indexInfoCandidates) { const indexInfoType = getTypeFromIndexInfosOfContextualType(candidate, name, nameType); types = appendContextualPropertyTypeConstituent(types, indexInfoType); } } if (!types) { return; } if (types.length === 1) { return types[0]; } return getIntersectionType(types); } if (!(t.flags & 1048576)) { return; } return isGenericMappedType(t) && getMappedTypeNameTypeKind(t) !== 2 ? getIndexedMappedTypeSubstitutedTypeOfContextualType(t, name, nameType) : getTypeOfConcretePropertyOfContextualType(t, name) ?? getTypeFromIndexInfosOfContextualType(t, name, nameType); }, true); } function appendContextualPropertyTypeConstituent(types, type) { return type ? append(types, type.flags & 1 ? unknownType : type) : types; } function getIndexedMappedTypeSubstitutedTypeOfContextualType(type, name, nameType) { const propertyNameType = nameType || getStringLiteralType(unescapeLeadingUnderscores(name)); const constraint = getConstraintTypeFromMappedType(type); if (type.nameType && isExcludedMappedPropertyName(type.nameType, propertyNameType) || isExcludedMappedPropertyName(constraint, propertyNameType)) { return; } const constraintOfConstraint = getBaseConstraintOfType(constraint) || constraint; if (!isTypeAssignableTo(propertyNameType, constraintOfConstraint)) { return; } return substituteIndexedMappedType(type, propertyNameType); } function getTypeOfConcretePropertyOfContextualType(type, name) { const prop = getPropertyOfType(type, name); if (!prop || isCircularMappedProperty(prop)) { return; } return removeMissingType(getTypeOfSymbol(prop), !!(prop.flags & 16777216)); } function getTypeFromIndexInfosOfContextualType(type, name, nameType) { var _a; if (isTupleType(type) && isNumericLiteralName(name) && +name >= 0) { const restType = getElementTypeOfSliceOfTupleType(type, type.target.fixedLength, 0, false, true); if (restType) { return restType; } } return (_a = findApplicableIndexInfo(getIndexInfosOfStructuredType(type), nameType || getStringLiteralType(unescapeLeadingUnderscores(name)))) == null ? undefined : _a.type; } function getContextualTypeForObjectLiteralMethod(node, contextFlags) { Debug.assert(isObjectLiteralMethod(node)); if (node.flags & 67108864) { return; } return getContextualTypeForObjectLiteralElement(node, contextFlags); } function getContextualTypeForObjectLiteralElement(element, contextFlags) { const objectLiteral = element.parent; const propertyAssignmentType = isPropertyAssignment(element) && getContextualTypeForVariableLikeDeclaration(element, contextFlags); if (propertyAssignmentType) { return propertyAssignmentType; } const type = getApparentTypeOfContextualType(objectLiteral, contextFlags); if (type) { if (hasBindableName(element)) { const symbol = getSymbolOfDeclaration(element); return getTypeOfPropertyOfContextualType(type, symbol.escapedName, getSymbolLinks(symbol).nameType); } if (hasDynamicName(element)) { const name = getNameOfDeclaration(element); if (name && isComputedPropertyName(name)) { const exprType = checkExpression(name.expression); const propType = isTypeUsableAsPropertyName(exprType) && getTypeOfPropertyOfContextualType(type, getPropertyNameFromType(exprType)); if (propType) { return propType; } } } if (element.name) { const nameType = getLiteralTypeFromPropertyName(element.name); return mapType(type, (t) => { var _a; return (_a = findApplicableIndexInfo(getIndexInfosOfStructuredType(t), nameType)) == null ? undefined : _a.type; }, true); } } return; } function getSpreadIndices(elements) { let first2, last2; for (let i = 0;i < elements.length; i++) { if (isSpreadElement(elements[i])) { first2 ?? (first2 = i); last2 = i; } } return { first: first2, last: last2 }; } function getContextualTypeForElementExpression(type, index, length2, firstSpreadIndex, lastSpreadIndex) { return type && mapType(type, (t) => { if (isTupleType(t)) { if ((firstSpreadIndex === undefined || index < firstSpreadIndex) && index < t.target.fixedLength) { return removeMissingType(getTypeArguments(t)[index], !!(t.target.elementFlags[index] && 2)); } const offset = length2 !== undefined && (lastSpreadIndex === undefined || index > lastSpreadIndex) ? length2 - index : 0; const fixedEndLength = offset > 0 && t.target.combinedFlags & 12 ? getEndElementCount(t.target, 3) : 0; if (offset > 0 && offset <= fixedEndLength) { return getTypeArguments(t)[getTypeReferenceArity(t) - offset]; } return getElementTypeOfSliceOfTupleType(t, firstSpreadIndex === undefined ? t.target.fixedLength : Math.min(t.target.fixedLength, firstSpreadIndex), length2 === undefined || lastSpreadIndex === undefined ? fixedEndLength : Math.min(fixedEndLength, length2 - lastSpreadIndex), false, true); } return (!firstSpreadIndex || index < firstSpreadIndex) && getTypeOfPropertyOfContextualType(t, "" + index) || getIteratedTypeOrElementType(1, t, undefinedType, undefined, false); }, true); } function getContextualTypeForConditionalOperand(node, contextFlags) { const conditional = node.parent; return node === conditional.whenTrue || node === conditional.whenFalse ? getContextualType2(conditional, contextFlags) : undefined; } function getContextualTypeForChildJsxExpression(node, child, contextFlags) { const attributesType = getApparentTypeOfContextualType(node.openingElement.attributes, contextFlags); const jsxChildrenPropertyName = getJsxElementChildrenPropertyName(getJsxNamespaceAt(node)); if (!(attributesType && !isTypeAny(attributesType) && jsxChildrenPropertyName && jsxChildrenPropertyName !== "")) { return; } const realChildren = getSemanticJsxChildren(node.children); const childIndex = realChildren.indexOf(child); const childFieldType = getTypeOfPropertyOfContextualType(attributesType, jsxChildrenPropertyName); return childFieldType && (realChildren.length === 1 ? childFieldType : mapType(childFieldType, (t) => { if (isArrayLikeType(t)) { return getIndexedAccessType(t, getNumberLiteralType(childIndex)); } else { return t; } }, true)); } function getContextualTypeForJsxExpression(node, contextFlags) { const exprParent = node.parent; return isJsxAttributeLike(exprParent) ? getContextualType2(node, contextFlags) : isJsxElement(exprParent) ? getContextualTypeForChildJsxExpression(exprParent, node, contextFlags) : undefined; } function getContextualTypeForJsxAttribute(attribute, contextFlags) { if (isJsxAttribute(attribute)) { const attributesType = getApparentTypeOfContextualType(attribute.parent, contextFlags); if (!attributesType || isTypeAny(attributesType)) { return; } return getTypeOfPropertyOfContextualType(attributesType, getEscapedTextOfJsxAttributeName(attribute.name)); } else { return getContextualType2(attribute.parent, contextFlags); } } function isPossiblyDiscriminantValue(node) { switch (node.kind) { case 11: case 9: case 10: case 15: case 229: case 112: case 97: case 106: case 80: case 157: return true; case 212: case 218: return isPossiblyDiscriminantValue(node.expression); case 295: return !node.expression || isPossiblyDiscriminantValue(node.expression); } return false; } function discriminateContextualTypeByObjectMembers(node, contextualType) { const key = `D${getNodeId(node)},${getTypeId(contextualType)}`; return getCachedType(key) ?? setCachedType(key, getMatchingUnionConstituentForObjectLiteral(contextualType, node) ?? discriminateTypeByDiscriminableItems(contextualType, concatenate(map(filter(node.properties, (p) => { if (!p.symbol) { return false; } if (p.kind === 304) { return isPossiblyDiscriminantValue(p.initializer) && isDiscriminantProperty(contextualType, p.symbol.escapedName); } if (p.kind === 305) { return isDiscriminantProperty(contextualType, p.symbol.escapedName); } return false; }), (prop) => [() => getContextFreeTypeOfExpression(prop.kind === 304 ? prop.initializer : prop.name), prop.symbol.escapedName]), map(filter(getPropertiesOfType(contextualType), (s) => { var _a; return !!(s.flags & 16777216) && !!((_a = node == null ? undefined : node.symbol) == null ? undefined : _a.members) && !node.symbol.members.has(s.escapedName) && isDiscriminantProperty(contextualType, s.escapedName); }), (s) => [() => undefinedType, s.escapedName])), isTypeAssignableTo)); } function discriminateContextualTypeByJSXAttributes(node, contextualType) { const key = `D${getNodeId(node)},${getTypeId(contextualType)}`; const cached = getCachedType(key); if (cached) return cached; const jsxChildrenPropertyName = getJsxElementChildrenPropertyName(getJsxNamespaceAt(node)); return setCachedType(key, discriminateTypeByDiscriminableItems(contextualType, concatenate(map(filter(node.properties, (p) => !!p.symbol && p.kind === 292 && isDiscriminantProperty(contextualType, p.symbol.escapedName) && (!p.initializer || isPossiblyDiscriminantValue(p.initializer))), (prop) => [!prop.initializer ? () => trueType : () => getContextFreeTypeOfExpression(prop.initializer), prop.symbol.escapedName]), map(filter(getPropertiesOfType(contextualType), (s) => { var _a; if (!(s.flags & 16777216) || !((_a = node == null ? undefined : node.symbol) == null ? undefined : _a.members)) { return false; } const element = node.parent.parent; if (s.escapedName === jsxChildrenPropertyName && isJsxElement(element) && getSemanticJsxChildren(element.children).length) { return false; } return !node.symbol.members.has(s.escapedName) && isDiscriminantProperty(contextualType, s.escapedName); }), (s) => [() => undefinedType, s.escapedName])), isTypeAssignableTo)); } function getApparentTypeOfContextualType(node, contextFlags) { const contextualType = isObjectLiteralMethod(node) ? getContextualTypeForObjectLiteralMethod(node, contextFlags) : getContextualType2(node, contextFlags); const instantiatedType = instantiateContextualType(contextualType, node, contextFlags); if (instantiatedType && !(contextFlags && contextFlags & 2 && instantiatedType.flags & 34078720)) { const apparentType = mapType(instantiatedType, (t) => getObjectFlags(t) & 32 ? t : getApparentType(t), true); return apparentType.flags & 134217728 && isObjectLiteralExpression(node) ? discriminateContextualTypeByObjectMembers(node, apparentType) : apparentType.flags & 134217728 && isJsxAttributes(node) ? discriminateContextualTypeByJSXAttributes(node, apparentType) : apparentType; } } function instantiateContextualType(contextualType, node, contextFlags) { if (contextualType && maybeTypeOfKind(contextualType, 132644864)) { const inferenceContext = getInferenceContext(node); if (inferenceContext && contextFlags & 1 && some(inferenceContext.inferences, hasInferenceCandidatesOrDefault)) { const type = instantiateInstantiableTypes(contextualType, inferenceContext.nonFixingMapper); if (!(type.flags & 3)) { return type; } } if (inferenceContext == null ? undefined : inferenceContext.returnMapper) { const type = instantiateInstantiableTypes(contextualType, inferenceContext.returnMapper); if (!(type.flags & 3)) { return type.flags & 134217728 && containsType(type.types, regularFalseType) && containsType(type.types, regularTrueType) ? filterType(type, (t) => t !== regularFalseType && t !== regularTrueType) : type; } } } return contextualType; } function instantiateInstantiableTypes(type, mapper) { if (type.flags & 132644864) { return instantiateType(type, mapper); } if (type.flags & 134217728) { return getUnionType(map(type.types, (t) => instantiateInstantiableTypes(t, mapper)), 0); } if (type.flags & 268435456) { return getIntersectionType(map(type.types, (t) => instantiateInstantiableTypes(t, mapper))); } return type; } function getContextualType2(node, contextFlags) { var _a; if (node.flags & 67108864) { return; } const index = findContextualNode(node, !contextFlags); if (index >= 0) { return contextualTypes[index]; } const { parent: parent2 } = node; switch (parent2.kind) { case 261: case 170: case 173: case 172: case 209: return getContextualTypeForInitializerExpression(node, contextFlags); case 220: case 254: return getContextualTypeForReturnExpression(node, contextFlags); case 230: return getContextualTypeForYieldOperand(parent2, contextFlags); case 224: return getContextualTypeForAwaitOperand(parent2, contextFlags); case 214: case 215: return getContextualTypeForArgument(parent2, node); case 171: return getContextualTypeForDecorator(parent2); case 217: case 235: return isConstTypeReference(parent2.type) ? getContextualType2(parent2, contextFlags) : getTypeFromTypeNode(parent2.type); case 227: return getContextualTypeForBinaryOperand(node, contextFlags); case 304: case 305: return getContextualTypeForObjectLiteralElement(parent2, contextFlags); case 306: return getContextualType2(parent2.parent, contextFlags); case 210: { const arrayLiteral = parent2; const type = getApparentTypeOfContextualType(arrayLiteral, contextFlags); const elementIndex = indexOfNode(arrayLiteral.elements, node); const spreadIndices = (_a = getNodeLinks(arrayLiteral)).spreadIndices ?? (_a.spreadIndices = getSpreadIndices(arrayLiteral.elements)); return getContextualTypeForElementExpression(type, elementIndex, arrayLiteral.elements.length, spreadIndices.first, spreadIndices.last); } case 228: return getContextualTypeForConditionalOperand(node, contextFlags); case 240: Debug.assert(parent2.parent.kind === 229); return getContextualTypeForSubstitutionExpression(parent2.parent, node); case 218: { if (isInJSFile(parent2)) { if (isJSDocSatisfiesExpression(parent2)) { return getTypeFromTypeNode(getJSDocSatisfiesExpressionType(parent2)); } const typeTag = getJSDocTypeTag(parent2); if (typeTag && !isConstTypeReference(typeTag.typeExpression.type)) { return getTypeFromTypeNode(typeTag.typeExpression.type); } } return getContextualType2(parent2, contextFlags); } case 236: return getContextualType2(parent2, contextFlags); case 239: return getTypeFromTypeNode(parent2.type); case 278: return tryGetTypeFromEffectiveTypeNode(parent2); case 295: return getContextualTypeForJsxExpression(parent2, contextFlags); case 292: case 294: return getContextualTypeForJsxAttribute(parent2, contextFlags); case 287: case 286: return getContextualJsxElementAttributesType(parent2, contextFlags); case 302: return getContextualImportAttributeType(parent2); } return; } function pushCachedContextualType(node) { pushContextualType(node, getContextualType2(node, undefined), true); } function pushContextualType(node, type, isCache) { contextualTypeNodes[contextualTypeCount] = node; contextualTypes[contextualTypeCount] = type; contextualIsCache[contextualTypeCount] = isCache; contextualTypeCount++; } function popContextualType() { contextualTypeCount--; contextualTypeNodes[contextualTypeCount] = undefined; contextualTypes[contextualTypeCount] = undefined; contextualIsCache[contextualTypeCount] = undefined; } function findContextualNode(node, includeCaches) { for (let i = contextualTypeCount - 1;i >= 0; i--) { if (node === contextualTypeNodes[i] && (includeCaches || !contextualIsCache[i])) { return i; } } return -1; } function pushInferenceContext(node, inferenceContext) { inferenceContextNodes[inferenceContextCount] = node; inferenceContexts[inferenceContextCount] = inferenceContext; inferenceContextCount++; } function popInferenceContext() { inferenceContextCount--; inferenceContextNodes[inferenceContextCount] = undefined; inferenceContexts[inferenceContextCount] = undefined; } function getInferenceContext(node) { for (let i = inferenceContextCount - 1;i >= 0; i--) { if (isNodeDescendantOf(node, inferenceContextNodes[i])) { return inferenceContexts[i]; } } } function pushActiveMapper(mapper) { activeTypeMappers[activeTypeMappersCount] = mapper; activeTypeMappersCaches[activeTypeMappersCount] ?? (activeTypeMappersCaches[activeTypeMappersCount] = /* @__PURE__ */ new Map); activeTypeMappersCount++; } function popActiveMapper() { activeTypeMappersCount--; activeTypeMappers[activeTypeMappersCount] = undefined; activeTypeMappersCaches[activeTypeMappersCount].clear(); } function findActiveMapper(mapper) { for (let i = activeTypeMappersCount - 1;i >= 0; i--) { if (mapper === activeTypeMappers[i]) { return i; } } return -1; } function clearActiveMapperCaches() { for (let i = activeTypeMappersCount - 1;i >= 0; i--) { activeTypeMappersCaches[i].clear(); } } function getContextualImportAttributeType(node) { return getTypeOfPropertyOfContextualType(getGlobalImportAttributesType(false), getNameFromImportAttribute(node)); } function getContextualJsxElementAttributesType(node, contextFlags) { if (isJsxOpeningElement(node) && contextFlags !== 4) { const index = findContextualNode(node.parent, !contextFlags); if (index >= 0) { return contextualTypes[index]; } } return getContextualTypeForArgumentAtIndex(node, 0); } function getEffectiveFirstArgumentForJsxSignature(signature, node) { return isJsxOpeningFragment(node) || getJsxReferenceKind(node) !== 0 ? getJsxPropsTypeFromCallSignature(signature, node) : getJsxPropsTypeFromClassType(signature, node); } function getJsxPropsTypeFromCallSignature(sig, context) { let propsType = getTypeOfFirstParameterOfSignatureWithFallback(sig, unknownType); propsType = getJsxManagedAttributesFromLocatedAttributes(context, getJsxNamespaceAt(context), propsType); const intrinsicAttribs = getJsxType(JsxNames.IntrinsicAttributes, context); if (!isErrorType(intrinsicAttribs)) { propsType = intersectTypes(intrinsicAttribs, propsType); } return propsType; } function getJsxPropsTypeForSignatureFromMember(sig, forcedLookupLocation) { if (sig.compositeSignatures) { const results = []; for (const signature of sig.compositeSignatures) { const instance = getReturnTypeOfSignature(signature); if (isTypeAny(instance)) { return instance; } const propType = getTypeOfPropertyOfType(instance, forcedLookupLocation); if (!propType) { return; } results.push(propType); } return getIntersectionType(results); } const instanceType = getReturnTypeOfSignature(sig); return isTypeAny(instanceType) ? instanceType : getTypeOfPropertyOfType(instanceType, forcedLookupLocation); } function getStaticTypeOfReferencedJsxConstructor(context) { if (isJsxOpeningFragment(context)) return getJSXFragmentType(context); if (isJsxIntrinsicTagName(context.tagName)) { const result = getIntrinsicAttributesTypeFromJsxOpeningLikeElement(context); const fakeSignature = createSignatureForJSXIntrinsic(context, result); return getOrCreateTypeFromSignature(fakeSignature); } const tagType = checkExpressionCached(context.tagName); if (tagType.flags & 1024) { const result = getIntrinsicAttributesTypeFromStringLiteralType(tagType, context); if (!result) { return errorType; } const fakeSignature = createSignatureForJSXIntrinsic(context, result); return getOrCreateTypeFromSignature(fakeSignature); } return tagType; } function getJsxManagedAttributesFromLocatedAttributes(context, ns, attributesType) { const managedSym = getJsxLibraryManagedAttributes(ns); if (managedSym) { const ctorType = getStaticTypeOfReferencedJsxConstructor(context); const result = instantiateAliasOrInterfaceWithDefaults(managedSym, isInJSFile(context), ctorType, attributesType); if (result) { return result; } } return attributesType; } function getJsxPropsTypeFromClassType(sig, context) { const ns = getJsxNamespaceAt(context); const forcedLookupLocation = getJsxElementPropertiesName(ns); let attributesType = forcedLookupLocation === undefined ? getTypeOfFirstParameterOfSignatureWithFallback(sig, unknownType) : forcedLookupLocation === "" ? getReturnTypeOfSignature(sig) : getJsxPropsTypeForSignatureFromMember(sig, forcedLookupLocation); if (!attributesType) { if (!!forcedLookupLocation && !!length(context.attributes.properties)) { error2(context, Diagnostics.JSX_element_class_does_not_support_attributes_because_it_does_not_have_a_0_property, unescapeLeadingUnderscores(forcedLookupLocation)); } return unknownType; } attributesType = getJsxManagedAttributesFromLocatedAttributes(context, ns, attributesType); if (isTypeAny(attributesType)) { return attributesType; } else { let apparentAttributesType = attributesType; const intrinsicClassAttribs = getJsxType(JsxNames.IntrinsicClassAttributes, context); if (!isErrorType(intrinsicClassAttribs)) { const typeParams = getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(intrinsicClassAttribs.symbol); const hostClassType = getReturnTypeOfSignature(sig); let libraryManagedAttributeType; if (typeParams) { const inferredArgs = fillMissingTypeArguments([hostClassType], typeParams, getMinTypeArgumentCount(typeParams), isInJSFile(context)); libraryManagedAttributeType = instantiateType(intrinsicClassAttribs, createTypeMapper(typeParams, inferredArgs)); } else libraryManagedAttributeType = intrinsicClassAttribs; apparentAttributesType = intersectTypes(libraryManagedAttributeType, apparentAttributesType); } const intrinsicAttribs = getJsxType(JsxNames.IntrinsicAttributes, context); if (!isErrorType(intrinsicAttribs)) { apparentAttributesType = intersectTypes(intrinsicAttribs, apparentAttributesType); } return apparentAttributesType; } } function getIntersectedSignatures(signatures) { return getStrictOptionValue(compilerOptions, "noImplicitAny") ? reduceLeft(signatures, (left, right) => left === right || !left ? left : compareTypeParametersIdentical(left.typeParameters, right.typeParameters) ? combineSignaturesOfIntersectionMembers(left, right) : undefined) : undefined; } function combineIntersectionThisParam(left, right, mapper) { if (!left || !right) { return left || right; } const thisType = getUnionType([getTypeOfSymbol(left), instantiateType(getTypeOfSymbol(right), mapper)]); return createSymbolWithType(left, thisType); } function combineIntersectionParameters(left, right, mapper) { const leftCount = getParameterCount(left); const rightCount = getParameterCount(right); const longest = leftCount >= rightCount ? left : right; const shorter = longest === left ? right : left; const longestCount = longest === left ? leftCount : rightCount; const eitherHasEffectiveRest = hasEffectiveRestParameter(left) || hasEffectiveRestParameter(right); const needsExtraRestElement = eitherHasEffectiveRest && !hasEffectiveRestParameter(longest); const params = new Array(longestCount + (needsExtraRestElement ? 1 : 0)); for (let i = 0;i < longestCount; i++) { let longestParamType = tryGetTypeAtPosition(longest, i); if (longest === right) { longestParamType = instantiateType(longestParamType, mapper); } let shorterParamType = tryGetTypeAtPosition(shorter, i) || unknownType; if (shorter === right) { shorterParamType = instantiateType(shorterParamType, mapper); } const unionParamType = getUnionType([longestParamType, shorterParamType]); const isRestParam = eitherHasEffectiveRest && !needsExtraRestElement && i === longestCount - 1; const isOptional = i >= getMinArgumentCount(longest) && i >= getMinArgumentCount(shorter); const leftName = i >= leftCount ? undefined : getParameterNameAtPosition(left, i); const rightName = i >= rightCount ? undefined : getParameterNameAtPosition(right, i); const paramName = leftName === rightName ? leftName : !leftName ? rightName : !rightName ? leftName : undefined; const paramSymbol = createSymbol(1 | (isOptional && !isRestParam ? 16777216 : 0), paramName || `arg${i}`, isRestParam ? 32768 : isOptional ? 16384 : 0); paramSymbol.links.type = isRestParam ? createArrayType(unionParamType) : unionParamType; params[i] = paramSymbol; } if (needsExtraRestElement) { const restParamSymbol = createSymbol(1, "args", 32768); restParamSymbol.links.type = createArrayType(getTypeAtPosition(shorter, longestCount)); if (shorter === right) { restParamSymbol.links.type = instantiateType(restParamSymbol.links.type, mapper); } params[longestCount] = restParamSymbol; } return params; } function combineSignaturesOfIntersectionMembers(left, right) { const typeParams = left.typeParameters || right.typeParameters; let paramMapper; if (left.typeParameters && right.typeParameters) { paramMapper = createTypeMapper(right.typeParameters, left.typeParameters); } let flags = (left.flags | right.flags) & (167 & ~1); const declaration = left.declaration; const params = combineIntersectionParameters(left, right, paramMapper); const lastParam = lastOrUndefined(params); if (lastParam && getCheckFlags(lastParam) & 32768) { flags |= 1; } const thisParam = combineIntersectionThisParam(left.thisParameter, right.thisParameter, paramMapper); const minArgCount = Math.max(left.minArgumentCount, right.minArgumentCount); const result = createSignature(declaration, typeParams, thisParam, params, undefined, undefined, minArgCount, flags); result.compositeKind = 268435456; result.compositeSignatures = concatenate(left.compositeKind === 268435456 && left.compositeSignatures || [left], [right]); if (paramMapper) { result.mapper = left.compositeKind === 268435456 && left.mapper && left.compositeSignatures ? combineTypeMappers(left.mapper, paramMapper) : paramMapper; } return result; } function getContextualCallSignature(type, node) { const signatures = getSignaturesOfType(type, 0); const applicableByArity = filter(signatures, (s) => !isAritySmaller(s, node)); return applicableByArity.length === 1 ? applicableByArity[0] : getIntersectedSignatures(applicableByArity); } function isAritySmaller(signature, target) { let targetParameterCount = 0; for (;targetParameterCount < target.parameters.length; targetParameterCount++) { const param = target.parameters[targetParameterCount]; if (param.initializer || param.questionToken || param.dotDotDotToken || isJSDocOptionalParameter(param)) { break; } } if (target.parameters.length && parameterIsThisKeyword(target.parameters[0])) { targetParameterCount--; } return !hasEffectiveRestParameter(signature) && getParameterCount(signature) < targetParameterCount; } function getContextualSignatureForFunctionLikeDeclaration(node) { return isFunctionExpressionOrArrowFunction(node) || isObjectLiteralMethod(node) ? getContextualSignature(node) : undefined; } function getContextualSignature(node) { Debug.assert(node.kind !== 175 || isObjectLiteralMethod(node)); const typeTagSignature = getSignatureOfTypeTag(node); if (typeTagSignature) { return typeTagSignature; } const type = getApparentTypeOfContextualType(node, 1); if (!type) { return; } if (!(type.flags & 134217728)) { return getContextualCallSignature(type, node); } let signatureList; const types = type.types; for (const current of types) { const signature = getContextualCallSignature(current, node); if (signature) { if (!signatureList) { signatureList = [signature]; } else if (!compareSignaturesIdentical(signatureList[0], signature, false, true, true, compareTypesIdentical)) { return; } else { signatureList.push(signature); } } } if (signatureList) { return signatureList.length === 1 ? signatureList[0] : createUnionSignature(signatureList[0], signatureList); } } function checkGrammarRegularExpressionLiteral(node) { const sourceFile = getSourceFileOfNode(node); if (!hasParseDiagnostics(sourceFile) && !node.isUnterminated) { let lastError; scanner2 ?? (scanner2 = createScanner(99, true)); scanner2.setScriptTarget(sourceFile.languageVersion); scanner2.setLanguageVariant(sourceFile.languageVariant); scanner2.setOnError((message, length2, arg0) => { const start = scanner2.getTokenEnd(); if (message.category === 3 && lastError && start === lastError.start && length2 === lastError.length) { const error3 = createDetachedDiagnostic(sourceFile.fileName, sourceFile.text, start, length2, message, arg0); addRelatedInfo(lastError, error3); } else if (!lastError || start !== lastError.start) { lastError = createFileDiagnostic(sourceFile, start, length2, message, arg0); diagnostics.add(lastError); } }); scanner2.setText(sourceFile.text, node.pos, node.end - node.pos); try { scanner2.scan(); Debug.assert(scanner2.reScanSlashToken(true) === 14, "Expected scanner to rescan RegularExpressionLiteral"); return !!lastError; } finally { scanner2.setText(""); scanner2.setOnError(undefined); } } return false; } function checkRegularExpressionLiteral(node) { const nodeLinks2 = getNodeLinks(node); if (!(nodeLinks2.flags & 1)) { nodeLinks2.flags |= 1; addLazyDiagnostic(() => checkGrammarRegularExpressionLiteral(node)); } return globalRegExpType; } function checkSpreadExpression(node, checkMode) { if (languageVersion < LanguageFeatureMinimumTarget.SpreadElements) { checkExternalEmitHelpers(node, compilerOptions.downlevelIteration ? 1536 : 1024); } const arrayOrIterableType = checkExpression(node.expression, checkMode); return checkIteratedTypeOrElementType(33, arrayOrIterableType, undefinedType, node.expression); } function checkSyntheticExpression(node) { return node.isSpread ? getIndexedAccessType(node.type, numberType) : node.type; } function hasDefaultValue(node) { return node.kind === 209 && !!node.initializer || node.kind === 304 && hasDefaultValue(node.initializer) || node.kind === 305 && !!node.objectAssignmentInitializer || node.kind === 227 && node.operatorToken.kind === 64; } function isSpreadIntoCallOrNew(node) { const parent2 = walkUpParenthesizedExpressions(node.parent); return isSpreadElement(parent2) && isCallOrNewExpression(parent2.parent); } function checkArrayLiteral(node, checkMode, forceTuple) { const elements = node.elements; const elementCount = elements.length; const elementTypes = []; const elementFlags = []; pushCachedContextualType(node); const inDestructuringPattern = isAssignmentTarget(node); const inConstContext = isConstContext(node); const contextualType = getApparentTypeOfContextualType(node, undefined); const inTupleContext = isSpreadIntoCallOrNew(node) || !!contextualType && someType(contextualType, (t) => isTupleLikeType(t) || isGenericMappedType(t) && !t.nameType && !!getHomomorphicTypeVariable(t.target || t)); let hasOmittedExpression = false; for (let i = 0;i < elementCount; i++) { const e = elements[i]; if (e.kind === 231) { if (languageVersion < LanguageFeatureMinimumTarget.SpreadElements) { checkExternalEmitHelpers(e, compilerOptions.downlevelIteration ? 1536 : 1024); } const spreadType = checkExpression(e.expression, checkMode, forceTuple); if (isArrayLikeType(spreadType)) { elementTypes.push(spreadType); elementFlags.push(8); } else if (inDestructuringPattern) { const restElementType = getIndexTypeOfType(spreadType, numberType) || getIteratedTypeOrElementType(65, spreadType, undefinedType, undefined, false) || unknownType; elementTypes.push(restElementType); elementFlags.push(4); } else { elementTypes.push(checkIteratedTypeOrElementType(33, spreadType, undefinedType, e.expression)); elementFlags.push(4); } } else if (exactOptionalPropertyTypes && e.kind === 233) { hasOmittedExpression = true; elementTypes.push(undefinedOrMissingType); elementFlags.push(2); } else { const type = checkExpressionForMutableLocation(e, checkMode, forceTuple); elementTypes.push(addOptionality(type, true, hasOmittedExpression)); elementFlags.push(hasOmittedExpression ? 2 : 1); if (inTupleContext && checkMode && checkMode & 2 && !(checkMode & 4) && isContextSensitive(e)) { const inferenceContext = getInferenceContext(node); Debug.assert(inferenceContext); addIntraExpressionInferenceSite(inferenceContext, e, type); } } } popContextualType(); if (inDestructuringPattern) { return createTupleType(elementTypes, elementFlags); } if (forceTuple || inConstContext || inTupleContext) { return createArrayLiteralType(createTupleType(elementTypes, elementFlags, inConstContext && !(contextualType && someType(contextualType, isMutableArrayLikeType)))); } return createArrayLiteralType(createArrayType(elementTypes.length ? getUnionType(sameMap(elementTypes, (t, i) => elementFlags[i] & 8 ? getIndexedAccessTypeOrUndefined(t, numberType) || anyType : t), 2) : strictNullChecks ? implicitNeverType : undefinedWideningType, inConstContext)); } function createArrayLiteralType(type) { if (!(getObjectFlags(type) & 4)) { return type; } let literalType = type.literalType; if (!literalType) { literalType = type.literalType = cloneTypeReference(type); literalType.objectFlags |= 16384 | 131072; } return literalType; } function isNumericName(name) { switch (name.kind) { case 168: return isNumericComputedName(name); case 80: return isNumericLiteralName(name.escapedText); case 9: case 11: return isNumericLiteralName(name.text); default: return false; } } function isNumericComputedName(name) { return isTypeAssignableToKind(checkComputedPropertyName(name), 67648); } function checkComputedPropertyName(node) { const links = getNodeLinks(node.expression); if (!links.resolvedType) { if ((isTypeLiteralNode(node.parent.parent) || isClassLike(node.parent.parent) || isInterfaceDeclaration(node.parent.parent)) && isBinaryExpression(node.expression) && node.expression.operatorToken.kind === 103 && node.parent.kind !== 178 && node.parent.kind !== 179) { return links.resolvedType = errorType; } links.resolvedType = checkExpression(node.expression); if (isPropertyDeclaration(node.parent) && !hasStaticModifier(node.parent) && isClassExpression(node.parent.parent)) { const container = getEnclosingBlockScopeContainer(node.parent.parent); const enclosingIterationStatement = getEnclosingIterationStatement(container); if (enclosingIterationStatement) { getNodeLinks(enclosingIterationStatement).flags |= 4096; getNodeLinks(node).flags |= 32768; getNodeLinks(node.parent.parent).flags |= 32768; } } if (links.resolvedType.flags & 12 || !isTypeAssignableToKind(links.resolvedType, 12583968 | 67648 | 16896) && !isTypeAssignableTo(links.resolvedType, stringNumberSymbolType)) { error2(node, Diagnostics.A_computed_property_name_must_be_of_type_string_number_symbol_or_any); } } return links.resolvedType; } function isSymbolWithNumericName(symbol) { var _a; const firstDecl = (_a = symbol.declarations) == null ? undefined : _a[0]; return isNumericLiteralName(symbol.escapedName) || firstDecl && isNamedDeclaration(firstDecl) && isNumericName(firstDecl.name); } function isSymbolWithSymbolName(symbol) { var _a; const firstDecl = (_a = symbol.declarations) == null ? undefined : _a[0]; return isKnownSymbol(symbol) || firstDecl && isNamedDeclaration(firstDecl) && isComputedPropertyName(firstDecl.name) && isTypeAssignableToKind(checkComputedPropertyName(firstDecl.name), 512); } function isSymbolWithComputedName(symbol) { var _a; const firstDecl = (_a = symbol.declarations) == null ? undefined : _a[0]; return firstDecl && isNamedDeclaration(firstDecl) && isComputedPropertyName(firstDecl.name); } function getObjectLiteralIndexInfo(isReadonly, offset, properties, keyType) { var _a; const propTypes = []; let components; for (let i = offset;i < properties.length; i++) { const prop = properties[i]; if (keyType === stringType && !isSymbolWithSymbolName(prop) || keyType === numberType && isSymbolWithNumericName(prop) || keyType === esSymbolType && isSymbolWithSymbolName(prop)) { propTypes.push(getTypeOfSymbol(properties[i])); if (isSymbolWithComputedName(properties[i])) { components = append(components, (_a = properties[i].declarations) == null ? undefined : _a[0]); } } } const unionType = propTypes.length ? getUnionType(propTypes, 2) : undefinedType; return createIndexInfo(keyType, unionType, isReadonly, undefined, components); } function getImmediateAliasedSymbol(symbol) { Debug.assert((symbol.flags & 2097152) !== 0, "Should only get Alias here."); const links = getSymbolLinks(symbol); if (!links.immediateTarget) { const node = getDeclarationOfAliasSymbol(symbol); if (!node) return Debug.fail(); links.immediateTarget = getTargetOfAliasDeclaration(node, true); } return links.immediateTarget; } function checkObjectLiteral(node, checkMode = 0) { const inDestructuringPattern = isAssignmentTarget(node); checkGrammarObjectLiteralExpression(node, inDestructuringPattern); const allPropertiesTable = strictNullChecks ? createSymbolTable() : undefined; let propertiesTable = createSymbolTable(); let propertiesArray = []; let spread = emptyObjectType; pushCachedContextualType(node); const contextualType = getApparentTypeOfContextualType(node, undefined); const contextualTypeHasPattern = contextualType && contextualType.pattern && (contextualType.pattern.kind === 207 || contextualType.pattern.kind === 211); const inConstContext = isConstContext(node); const checkFlags = inConstContext ? 8 : 0; const isInJavascript = isInJSFile(node) && !isInJsonFile(node); const enumTag = isInJavascript ? getJSDocEnumTag(node) : undefined; const isJSObjectLiteral = !contextualType && isInJavascript && !enumTag; let objectFlags = 8192; let patternWithComputedProperties = false; let hasComputedStringProperty = false; let hasComputedNumberProperty = false; let hasComputedSymbolProperty = false; for (const elem of node.properties) { if (elem.name && isComputedPropertyName(elem.name)) { checkComputedPropertyName(elem.name); } } let offset = 0; for (const memberDecl of node.properties) { let member = getSymbolOfDeclaration(memberDecl); const computedNameType = memberDecl.name && memberDecl.name.kind === 168 ? checkComputedPropertyName(memberDecl.name) : undefined; if (memberDecl.kind === 304 || memberDecl.kind === 305 || isObjectLiteralMethod(memberDecl)) { let type = memberDecl.kind === 304 ? checkPropertyAssignment(memberDecl, checkMode) : memberDecl.kind === 305 ? checkExpressionForMutableLocation(!inDestructuringPattern && memberDecl.objectAssignmentInitializer ? memberDecl.objectAssignmentInitializer : memberDecl.name, checkMode) : checkObjectLiteralMethod(memberDecl, checkMode); if (isInJavascript) { const jsDocType = getTypeForDeclarationFromJSDocComment(memberDecl); if (jsDocType) { checkTypeAssignableTo(type, jsDocType, memberDecl); type = jsDocType; } else if (enumTag && enumTag.typeExpression) { checkTypeAssignableTo(type, getTypeFromTypeNode(enumTag.typeExpression), memberDecl); } } objectFlags |= getObjectFlags(type) & 458752; const nameType = computedNameType && isTypeUsableAsPropertyName(computedNameType) ? computedNameType : undefined; const prop = nameType ? createSymbol(4 | member.flags, getPropertyNameFromType(nameType), checkFlags | 4096) : createSymbol(4 | member.flags, member.escapedName, checkFlags); if (nameType) { prop.links.nameType = nameType; } if (inDestructuringPattern && hasDefaultValue(memberDecl)) { prop.flags |= 16777216; } else if (contextualTypeHasPattern && !(getObjectFlags(contextualType) & 512)) { const impliedProp = getPropertyOfType(contextualType, member.escapedName); if (impliedProp) { prop.flags |= impliedProp.flags & 16777216; } else if (!getIndexInfoOfType(contextualType, stringType)) { error2(memberDecl.name, Diagnostics.Object_literal_may_only_specify_known_properties_and_0_does_not_exist_in_type_1, symbolToString(member), typeToString(contextualType)); } } prop.declarations = member.declarations; prop.parent = member.parent; if (member.valueDeclaration) { prop.valueDeclaration = member.valueDeclaration; } prop.links.type = type; prop.links.target = member; member = prop; allPropertiesTable == null || allPropertiesTable.set(prop.escapedName, prop); if (contextualType && checkMode & 2 && !(checkMode & 4) && (memberDecl.kind === 304 || memberDecl.kind === 175) && isContextSensitive(memberDecl)) { const inferenceContext = getInferenceContext(node); Debug.assert(inferenceContext); const inferenceNode = memberDecl.kind === 304 ? memberDecl.initializer : memberDecl; addIntraExpressionInferenceSite(inferenceContext, inferenceNode, type); } } else if (memberDecl.kind === 306) { if (languageVersion < LanguageFeatureMinimumTarget.ObjectAssign) { checkExternalEmitHelpers(memberDecl, 2); } if (propertiesArray.length > 0) { spread = getSpreadType(spread, createObjectLiteralType(), node.symbol, objectFlags, inConstContext); propertiesArray = []; propertiesTable = createSymbolTable(); hasComputedStringProperty = false; hasComputedNumberProperty = false; hasComputedSymbolProperty = false; } const type = getReducedType(checkExpression(memberDecl.expression, checkMode & 2)); if (isValidSpreadType(type)) { const mergedType = tryMergeUnionOfObjectTypeAndEmptyObject(type, inConstContext); if (allPropertiesTable) { checkSpreadPropOverrides(mergedType, allPropertiesTable, memberDecl); } offset = propertiesArray.length; if (isErrorType(spread)) { continue; } spread = getSpreadType(spread, mergedType, node.symbol, objectFlags, inConstContext); } else { error2(memberDecl, Diagnostics.Spread_types_may_only_be_created_from_object_types); spread = errorType; } continue; } else { Debug.assert(memberDecl.kind === 178 || memberDecl.kind === 179); checkNodeDeferred(memberDecl); } if (computedNameType && !(computedNameType.flags & 19456)) { if (isTypeAssignableTo(computedNameType, stringNumberSymbolType)) { if (isTypeAssignableTo(computedNameType, numberType)) { hasComputedNumberProperty = true; } else if (isTypeAssignableTo(computedNameType, esSymbolType)) { hasComputedSymbolProperty = true; } else { hasComputedStringProperty = true; } if (inDestructuringPattern) { patternWithComputedProperties = true; } } } else { propertiesTable.set(member.escapedName, member); } propertiesArray.push(member); } popContextualType(); if (isErrorType(spread)) { return errorType; } if (spread !== emptyObjectType) { if (propertiesArray.length > 0) { spread = getSpreadType(spread, createObjectLiteralType(), node.symbol, objectFlags, inConstContext); propertiesArray = []; propertiesTable = createSymbolTable(); hasComputedStringProperty = false; hasComputedNumberProperty = false; } return mapType(spread, (t) => t === emptyObjectType ? createObjectLiteralType() : t); } return createObjectLiteralType(); function createObjectLiteralType() { const indexInfos = []; const isReadonly = isConstContext(node); if (hasComputedStringProperty) indexInfos.push(getObjectLiteralIndexInfo(isReadonly, offset, propertiesArray, stringType)); if (hasComputedNumberProperty) indexInfos.push(getObjectLiteralIndexInfo(isReadonly, offset, propertiesArray, numberType)); if (hasComputedSymbolProperty) indexInfos.push(getObjectLiteralIndexInfo(isReadonly, offset, propertiesArray, esSymbolType)); const result = createAnonymousType(node.symbol, propertiesTable, emptyArray, emptyArray, indexInfos); result.objectFlags |= objectFlags | 128 | 131072; if (isJSObjectLiteral) { result.objectFlags |= 4096; } if (patternWithComputedProperties) { result.objectFlags |= 512; } if (inDestructuringPattern) { result.pattern = node; } return result; } } function isValidSpreadType(type) { const t = removeDefinitelyFalsyTypes(mapType(type, getBaseConstraintOrType)); return !!(t.flags & (1 | 131072 | 1048576 | 117964800) || t.flags & 402653184 && every(t.types, isValidSpreadType)); } function checkJsxSelfClosingElementDeferred(node) { checkJsxOpeningLikeElementOrOpeningFragment(node); } function checkJsxSelfClosingElement(node, _checkMode) { checkNodeDeferred(node); return getJsxElementTypeAt(node) || anyType; } function checkJsxElementDeferred(node) { checkJsxOpeningLikeElementOrOpeningFragment(node.openingElement); if (isJsxIntrinsicTagName(node.closingElement.tagName)) { getIntrinsicTagSymbol(node.closingElement); } else { checkExpression(node.closingElement.tagName); } checkJsxChildren(node); } function checkJsxElement(node, _checkMode) { checkNodeDeferred(node); return getJsxElementTypeAt(node) || anyType; } function checkJsxFragment(node) { checkJsxOpeningLikeElementOrOpeningFragment(node.openingFragment); const nodeSourceFile = getSourceFileOfNode(node); if (getJSXTransformEnabled(compilerOptions) && (compilerOptions.jsxFactory || nodeSourceFile.pragmas.has("jsx")) && !compilerOptions.jsxFragmentFactory && !nodeSourceFile.pragmas.has("jsxfrag")) { error2(node, compilerOptions.jsxFactory ? Diagnostics.The_jsxFragmentFactory_compiler_option_must_be_provided_to_use_JSX_fragments_with_the_jsxFactory_compiler_option : Diagnostics.An_jsxFrag_pragma_is_required_when_using_an_jsx_pragma_with_JSX_fragments); } checkJsxChildren(node); const jsxElementType = getJsxElementTypeAt(node); return isErrorType(jsxElementType) ? anyType : jsxElementType; } function isHyphenatedJsxName(name) { return name.includes("-"); } function isJsxIntrinsicTagName(tagName) { return isIdentifier(tagName) && isIntrinsicJsxName(tagName.escapedText) || isJsxNamespacedName(tagName); } function checkJsxAttribute(node, checkMode) { return node.initializer ? checkExpressionForMutableLocation(node.initializer, checkMode) : trueType; } function createJsxAttributesTypeFromAttributesProperty(openingLikeElement, checkMode = 0) { const allAttributesTable = strictNullChecks ? createSymbolTable() : undefined; let attributesTable = createSymbolTable(); let spread = emptyJsxObjectType; let hasSpreadAnyType = false; let typeToIntersect; let explicitlySpecifyChildrenAttribute = false; let objectFlags = 2048; const jsxChildrenPropertyName = getJsxElementChildrenPropertyName(getJsxNamespaceAt(openingLikeElement)); const isJsxOpenFragment = isJsxOpeningFragment(openingLikeElement); let attributesSymbol; let attributeParent = openingLikeElement; if (!isJsxOpenFragment) { const attributes = openingLikeElement.attributes; attributesSymbol = attributes.symbol; attributeParent = attributes; const contextualType = getContextualType2(attributes, 0); for (const attributeDecl of attributes.properties) { const member = attributeDecl.symbol; if (isJsxAttribute(attributeDecl)) { const exprType = checkJsxAttribute(attributeDecl, checkMode); objectFlags |= getObjectFlags(exprType) & 458752; const attributeSymbol = createSymbol(4 | member.flags, member.escapedName); attributeSymbol.declarations = member.declarations; attributeSymbol.parent = member.parent; if (member.valueDeclaration) { attributeSymbol.valueDeclaration = member.valueDeclaration; } attributeSymbol.links.type = exprType; attributeSymbol.links.target = member; attributesTable.set(attributeSymbol.escapedName, attributeSymbol); allAttributesTable == null || allAttributesTable.set(attributeSymbol.escapedName, attributeSymbol); if (getEscapedTextOfJsxAttributeName(attributeDecl.name) === jsxChildrenPropertyName) { explicitlySpecifyChildrenAttribute = true; } if (contextualType) { const prop = getPropertyOfType(contextualType, member.escapedName); if (prop && prop.declarations && isDeprecatedSymbol(prop) && isIdentifier(attributeDecl.name)) { addDeprecatedSuggestion(attributeDecl.name, prop.declarations, attributeDecl.name.escapedText); } } if (contextualType && checkMode & 2 && !(checkMode & 4) && isContextSensitive(attributeDecl)) { const inferenceContext = getInferenceContext(attributes); Debug.assert(inferenceContext); const inferenceNode = attributeDecl.initializer.expression; addIntraExpressionInferenceSite(inferenceContext, inferenceNode, exprType); } } else { Debug.assert(attributeDecl.kind === 294); if (attributesTable.size > 0) { spread = getSpreadType(spread, createJsxAttributesTypeHelper(), attributes.symbol, objectFlags, false); attributesTable = createSymbolTable(); } const exprType = getReducedType(checkExpression(attributeDecl.expression, checkMode & 2)); if (isTypeAny(exprType)) { hasSpreadAnyType = true; } if (isValidSpreadType(exprType)) { spread = getSpreadType(spread, exprType, attributes.symbol, objectFlags, false); if (allAttributesTable) { checkSpreadPropOverrides(exprType, allAttributesTable, attributeDecl); } } else { error2(attributeDecl.expression, Diagnostics.Spread_types_may_only_be_created_from_object_types); typeToIntersect = typeToIntersect ? getIntersectionType([typeToIntersect, exprType]) : exprType; } } } if (!hasSpreadAnyType) { if (attributesTable.size > 0) { spread = getSpreadType(spread, createJsxAttributesTypeHelper(), attributes.symbol, objectFlags, false); } } } const parent2 = openingLikeElement.parent; if ((isJsxElement(parent2) && parent2.openingElement === openingLikeElement || isJsxFragment(parent2) && parent2.openingFragment === openingLikeElement) && getSemanticJsxChildren(parent2.children).length > 0) { const childrenTypes = checkJsxChildren(parent2, checkMode); if (!hasSpreadAnyType && jsxChildrenPropertyName && jsxChildrenPropertyName !== "") { if (explicitlySpecifyChildrenAttribute) { error2(attributeParent, Diagnostics._0_are_specified_twice_The_attribute_named_0_will_be_overwritten, unescapeLeadingUnderscores(jsxChildrenPropertyName)); } const contextualType = isJsxOpeningElement(openingLikeElement) ? getApparentTypeOfContextualType(openingLikeElement.attributes, undefined) : undefined; const childrenContextualType = contextualType && getTypeOfPropertyOfContextualType(contextualType, jsxChildrenPropertyName); const childrenPropSymbol = createSymbol(4, jsxChildrenPropertyName); childrenPropSymbol.links.type = childrenTypes.length === 1 ? childrenTypes[0] : childrenContextualType && someType(childrenContextualType, isTupleLikeType) ? createTupleType(childrenTypes) : createArrayType(getUnionType(childrenTypes)); childrenPropSymbol.valueDeclaration = factory.createPropertySignature(undefined, unescapeLeadingUnderscores(jsxChildrenPropertyName), undefined, undefined); setParent(childrenPropSymbol.valueDeclaration, attributeParent); childrenPropSymbol.valueDeclaration.symbol = childrenPropSymbol; const childPropMap = createSymbolTable(); childPropMap.set(jsxChildrenPropertyName, childrenPropSymbol); spread = getSpreadType(spread, createAnonymousType(attributesSymbol, childPropMap, emptyArray, emptyArray, emptyArray), attributesSymbol, objectFlags | getPropagatingFlagsOfTypes(childrenTypes), false); } } if (hasSpreadAnyType) { return anyType; } if (typeToIntersect && spread !== emptyJsxObjectType) { return getIntersectionType([typeToIntersect, spread]); } return typeToIntersect || (spread === emptyJsxObjectType ? createJsxAttributesTypeHelper() : spread); function createJsxAttributesTypeHelper() { objectFlags |= 8192; return createJsxAttributesType(objectFlags, attributesSymbol, attributesTable); } } function createJsxAttributesType(objectFlags, attributesSymbol, attributesTable) { const result = createAnonymousType(attributesSymbol, attributesTable, emptyArray, emptyArray, emptyArray); result.objectFlags |= objectFlags | 8192 | 128 | 131072; return result; } function checkJsxChildren(node, checkMode) { const childrenTypes = []; for (const child of node.children) { if (child.kind === 12) { if (!child.containsOnlyTriviaWhiteSpaces) { childrenTypes.push(stringType); } } else if (child.kind === 295 && !child.expression) { continue; } else { childrenTypes.push(checkExpressionForMutableLocation(child, checkMode)); } } return childrenTypes; } function checkSpreadPropOverrides(type, props, spread) { for (const right of getPropertiesOfType(type)) { if (!(right.flags & 16777216) && !(getCheckFlags(right) & 48)) { const left = props.get(right.escapedName); if (left) { const diagnostic = error2(left.valueDeclaration, Diagnostics._0_is_specified_more_than_once_so_this_usage_will_be_overwritten, unescapeLeadingUnderscores(left.escapedName)); addRelatedInfo(diagnostic, createDiagnosticForNode(spread, Diagnostics.This_spread_always_overwrites_this_property)); } } } } function checkJsxAttributes(node, checkMode) { return createJsxAttributesTypeFromAttributesProperty(node.parent, checkMode); } function getJsxType(name, location) { const namespace = getJsxNamespaceAt(location); const exports22 = namespace && getExportsOfSymbol(namespace); const typeSymbol = exports22 && getSymbol2(exports22, name, 788968); return typeSymbol ? getDeclaredTypeOfSymbol(typeSymbol) : errorType; } function getIntrinsicTagSymbol(node) { const links = getNodeLinks(node); if (!links.resolvedSymbol) { const intrinsicElementsType = getJsxType(JsxNames.IntrinsicElements, node); if (!isErrorType(intrinsicElementsType)) { if (!isIdentifier(node.tagName) && !isJsxNamespacedName(node.tagName)) return Debug.fail(); const propName = isJsxNamespacedName(node.tagName) ? getEscapedTextOfJsxNamespacedName(node.tagName) : node.tagName.escapedText; const intrinsicProp = getPropertyOfType(intrinsicElementsType, propName); if (intrinsicProp) { links.jsxFlags |= 1; return links.resolvedSymbol = intrinsicProp; } const indexSymbol = getApplicableIndexSymbol(intrinsicElementsType, getStringLiteralType(unescapeLeadingUnderscores(propName))); if (indexSymbol) { links.jsxFlags |= 2; return links.resolvedSymbol = indexSymbol; } if (getTypeOfPropertyOrIndexSignatureOfType(intrinsicElementsType, propName)) { links.jsxFlags |= 2; return links.resolvedSymbol = intrinsicElementsType.symbol; } error2(node, Diagnostics.Property_0_does_not_exist_on_type_1, intrinsicTagNameToString(node.tagName), "JSX." + JsxNames.IntrinsicElements); return links.resolvedSymbol = unknownSymbol; } else { if (noImplicitAny) { error2(node, Diagnostics.JSX_element_implicitly_has_type_any_because_no_interface_JSX_0_exists, unescapeLeadingUnderscores(JsxNames.IntrinsicElements)); } return links.resolvedSymbol = unknownSymbol; } } return links.resolvedSymbol; } function getJsxNamespaceContainerForImplicitImport(location) { const file = location && getSourceFileOfNode(location); const links = file && getNodeLinks(file); if (links && links.jsxImplicitImportContainer === false) { return; } if (links && links.jsxImplicitImportContainer) { return links.jsxImplicitImportContainer; } const runtimeImportSpecifier = getJSXRuntimeImport(getJSXImplicitImportBase(compilerOptions, file), compilerOptions); if (!runtimeImportSpecifier) { return; } const isClassic = getEmitModuleResolutionKind(compilerOptions) === 1; const errorMessage = isClassic ? Diagnostics.Cannot_find_module_0_Did_you_mean_to_set_the_moduleResolution_option_to_nodenext_or_to_add_aliases_to_the_paths_option : Diagnostics.This_JSX_tag_requires_the_module_path_0_to_exist_but_none_could_be_found_Make_sure_you_have_types_for_the_appropriate_package_installed; const specifier = getJSXRuntimeImportSpecifier(file, runtimeImportSpecifier); const mod = resolveExternalModule(specifier || location, runtimeImportSpecifier, errorMessage, location); const result = mod && mod !== unknownSymbol ? getMergedSymbol(resolveSymbol(mod)) : undefined; if (links) { links.jsxImplicitImportContainer = result || false; } return result; } function getJsxNamespaceAt(location) { const links = location && getNodeLinks(location); if (links && links.jsxNamespace) { return links.jsxNamespace; } if (!links || links.jsxNamespace !== false) { let resolvedNamespace = getJsxNamespaceContainerForImplicitImport(location); if (!resolvedNamespace || resolvedNamespace === unknownSymbol) { const namespaceName = getJsxNamespace(location); resolvedNamespace = resolveName(location, namespaceName, 1920, undefined, false); } if (resolvedNamespace) { const candidate = resolveSymbol(getSymbol2(getExportsOfSymbol(resolveSymbol(resolvedNamespace)), JsxNames.JSX, 1920)); if (candidate && candidate !== unknownSymbol) { if (links) { links.jsxNamespace = candidate; } return candidate; } } if (links) { links.jsxNamespace = false; } } const s = resolveSymbol(getGlobalSymbol(JsxNames.JSX, 1920, undefined)); if (s === unknownSymbol) { return; } return s; } function getNameFromJsxElementAttributesContainer(nameOfAttribPropContainer, jsxNamespace) { const jsxElementAttribPropInterfaceSym = jsxNamespace && getSymbol2(jsxNamespace.exports, nameOfAttribPropContainer, 788968); const jsxElementAttribPropInterfaceType = jsxElementAttribPropInterfaceSym && getDeclaredTypeOfSymbol(jsxElementAttribPropInterfaceSym); const propertiesOfJsxElementAttribPropInterface = jsxElementAttribPropInterfaceType && getPropertiesOfType(jsxElementAttribPropInterfaceType); if (propertiesOfJsxElementAttribPropInterface) { if (propertiesOfJsxElementAttribPropInterface.length === 0) { return ""; } else if (propertiesOfJsxElementAttribPropInterface.length === 1) { return propertiesOfJsxElementAttribPropInterface[0].escapedName; } else if (propertiesOfJsxElementAttribPropInterface.length > 1 && jsxElementAttribPropInterfaceSym.declarations) { error2(jsxElementAttribPropInterfaceSym.declarations[0], Diagnostics.The_global_type_JSX_0_may_not_have_more_than_one_property, unescapeLeadingUnderscores(nameOfAttribPropContainer)); } } return; } function getJsxLibraryManagedAttributes(jsxNamespace) { return jsxNamespace && getSymbol2(jsxNamespace.exports, JsxNames.LibraryManagedAttributes, 788968); } function getJsxElementTypeSymbol(jsxNamespace) { return jsxNamespace && getSymbol2(jsxNamespace.exports, JsxNames.ElementType, 788968); } function getJsxElementPropertiesName(jsxNamespace) { return getNameFromJsxElementAttributesContainer(JsxNames.ElementAttributesPropertyNameContainer, jsxNamespace); } function getJsxElementChildrenPropertyName(jsxNamespace) { if (compilerOptions.jsx === 4 || compilerOptions.jsx === 5) { return "children"; } return getNameFromJsxElementAttributesContainer(JsxNames.ElementChildrenAttributeNameContainer, jsxNamespace); } function getUninstantiatedJsxSignaturesOfType(elementType, caller) { if (elementType.flags & 32) { return [anySignature]; } else if (elementType.flags & 1024) { const intrinsicType = getIntrinsicAttributesTypeFromStringLiteralType(elementType, caller); if (!intrinsicType) { error2(caller, Diagnostics.Property_0_does_not_exist_on_type_1, elementType.value, "JSX." + JsxNames.IntrinsicElements); return emptyArray; } else { const fakeSignature = createSignatureForJSXIntrinsic(caller, intrinsicType); return [fakeSignature]; } } const apparentElemType = getApparentType(elementType); let signatures = getSignaturesOfType(apparentElemType, 1); if (signatures.length === 0) { signatures = getSignaturesOfType(apparentElemType, 0); } if (signatures.length === 0 && apparentElemType.flags & 134217728) { signatures = getUnionSignatures(map(apparentElemType.types, (t) => getUninstantiatedJsxSignaturesOfType(t, caller))); } return signatures; } function getIntrinsicAttributesTypeFromStringLiteralType(type, location) { const intrinsicElementsType = getJsxType(JsxNames.IntrinsicElements, location); if (!isErrorType(intrinsicElementsType)) { const stringLiteralTypeName = type.value; const intrinsicProp = getPropertyOfType(intrinsicElementsType, escapeLeadingUnderscores(stringLiteralTypeName)); if (intrinsicProp) { return getTypeOfSymbol(intrinsicProp); } const indexSignatureType = getIndexTypeOfType(intrinsicElementsType, stringType); if (indexSignatureType) { return indexSignatureType; } return; } return anyType; } function checkJsxReturnAssignableToAppropriateBound(refKind, elemInstanceType, openingLikeElement) { if (refKind === 1) { const sfcReturnConstraint = getJsxStatelessElementTypeAt(openingLikeElement); if (sfcReturnConstraint) { checkTypeRelatedTo(elemInstanceType, sfcReturnConstraint, assignableRelation, openingLikeElement.tagName, Diagnostics.Its_return_type_0_is_not_a_valid_JSX_element, generateInitialErrorChain); } } else if (refKind === 0) { const classConstraint = getJsxElementClassTypeAt(openingLikeElement); if (classConstraint) { checkTypeRelatedTo(elemInstanceType, classConstraint, assignableRelation, openingLikeElement.tagName, Diagnostics.Its_instance_type_0_is_not_a_valid_JSX_element, generateInitialErrorChain); } } else { const sfcReturnConstraint = getJsxStatelessElementTypeAt(openingLikeElement); const classConstraint = getJsxElementClassTypeAt(openingLikeElement); if (!sfcReturnConstraint || !classConstraint) { return; } const combined = getUnionType([sfcReturnConstraint, classConstraint]); checkTypeRelatedTo(elemInstanceType, combined, assignableRelation, openingLikeElement.tagName, Diagnostics.Its_element_type_0_is_not_a_valid_JSX_element, generateInitialErrorChain); } function generateInitialErrorChain() { const componentName = getTextOfNode(openingLikeElement.tagName); return chainDiagnosticMessages(undefined, Diagnostics._0_cannot_be_used_as_a_JSX_component, componentName); } } function getIntrinsicAttributesTypeFromJsxOpeningLikeElement(node) { var _a; Debug.assert(isJsxIntrinsicTagName(node.tagName)); const links = getNodeLinks(node); if (!links.resolvedJsxElementAttributesType) { const symbol = getIntrinsicTagSymbol(node); if (links.jsxFlags & 1) { return links.resolvedJsxElementAttributesType = getTypeOfSymbol(symbol) || errorType; } else if (links.jsxFlags & 2) { const propName = isJsxNamespacedName(node.tagName) ? getEscapedTextOfJsxNamespacedName(node.tagName) : node.tagName.escapedText; return links.resolvedJsxElementAttributesType = ((_a = getApplicableIndexInfoForName(getJsxType(JsxNames.IntrinsicElements, node), propName)) == null ? undefined : _a.type) || errorType; } else { return links.resolvedJsxElementAttributesType = errorType; } } return links.resolvedJsxElementAttributesType; } function getJsxElementClassTypeAt(location) { const type = getJsxType(JsxNames.ElementClass, location); if (isErrorType(type)) return; return type; } function getJsxElementTypeAt(location) { return getJsxType(JsxNames.Element, location); } function getJsxStatelessElementTypeAt(location) { const jsxElementType = getJsxElementTypeAt(location); if (jsxElementType) { return getUnionType([jsxElementType, nullType]); } } function getJsxElementTypeTypeAt(location) { const ns = getJsxNamespaceAt(location); if (!ns) return; const sym = getJsxElementTypeSymbol(ns); if (!sym) return; const type = instantiateAliasOrInterfaceWithDefaults(sym, isInJSFile(location)); if (!type || isErrorType(type)) return; return type; } function instantiateAliasOrInterfaceWithDefaults(managedSym, inJs, ...typeArguments) { const declaredManagedType = getDeclaredTypeOfSymbol(managedSym); if (managedSym.flags & 524288) { const params = getSymbolLinks(managedSym).typeParameters; if (length(params) >= typeArguments.length) { const args = fillMissingTypeArguments(typeArguments, params, typeArguments.length, inJs); return length(args) === 0 ? declaredManagedType : getTypeAliasInstantiation(managedSym, args); } } if (length(declaredManagedType.typeParameters) >= typeArguments.length) { const args = fillMissingTypeArguments(typeArguments, declaredManagedType.typeParameters, typeArguments.length, inJs); return createTypeReference(declaredManagedType, args); } return; } function getJsxIntrinsicTagNamesAt(location) { const intrinsics = getJsxType(JsxNames.IntrinsicElements, location); return intrinsics ? getPropertiesOfType(intrinsics) : emptyArray; } function checkJsxPreconditions(errorNode) { if ((compilerOptions.jsx || 0) === 0) { error2(errorNode, Diagnostics.Cannot_use_JSX_unless_the_jsx_flag_is_provided); } if (getJsxElementTypeAt(errorNode) === undefined) { if (noImplicitAny) { error2(errorNode, Diagnostics.JSX_element_implicitly_has_type_any_because_the_global_type_JSX_Element_does_not_exist); } } } function checkJsxOpeningLikeElementOrOpeningFragment(node) { const isNodeOpeningLikeElement = isJsxOpeningLikeElement(node); if (isNodeOpeningLikeElement) { checkGrammarJsxElement(node); } checkJsxPreconditions(node); markJsxAliasReferenced(node); const sig = getResolvedSignature(node); checkDeprecatedSignature(sig, node); if (isNodeOpeningLikeElement) { const jsxOpeningLikeNode = node; const elementTypeConstraint = getJsxElementTypeTypeAt(jsxOpeningLikeNode); if (elementTypeConstraint !== undefined) { const tagName = jsxOpeningLikeNode.tagName; const tagType = isJsxIntrinsicTagName(tagName) ? getStringLiteralType(intrinsicTagNameToString(tagName)) : checkExpression(tagName); checkTypeRelatedTo(tagType, elementTypeConstraint, assignableRelation, tagName, Diagnostics.Its_type_0_is_not_a_valid_JSX_element_type, () => { const componentName = getTextOfNode(tagName); return chainDiagnosticMessages(undefined, Diagnostics._0_cannot_be_used_as_a_JSX_component, componentName); }); } else { checkJsxReturnAssignableToAppropriateBound(getJsxReferenceKind(jsxOpeningLikeNode), getReturnTypeOfSignature(sig), jsxOpeningLikeNode); } } } function isKnownProperty(targetType, name, isComparingJsxAttributes) { if (targetType.flags & 1048576) { if (getPropertyOfObjectType(targetType, name) || getApplicableIndexInfoForName(targetType, name) || isLateBoundName(name) && getIndexInfoOfType(targetType, stringType) || isComparingJsxAttributes && isHyphenatedJsxName(name)) { return true; } } if (targetType.flags & 16777216) { return isKnownProperty(targetType.baseType, name, isComparingJsxAttributes); } if (targetType.flags & 402653184 && isExcessPropertyCheckTarget(targetType)) { for (const t of targetType.types) { if (isKnownProperty(t, name, isComparingJsxAttributes)) { return true; } } } return false; } function isExcessPropertyCheckTarget(type) { return !!(type.flags & 1048576 && !(getObjectFlags(type) & 512) || type.flags & 131072 || type.flags & 16777216 && isExcessPropertyCheckTarget(type.baseType) || type.flags & 134217728 && some(type.types, isExcessPropertyCheckTarget) || type.flags & 268435456 && every(type.types, isExcessPropertyCheckTarget)); } function checkJsxExpression(node, checkMode) { checkGrammarJsxExpression(node); if (node.expression) { const type = checkExpression(node.expression, checkMode); if (node.dotDotDotToken && type !== anyType && !isArrayType(type)) { error2(node, Diagnostics.JSX_spread_child_must_be_an_array_type); } return type; } else { return errorType; } } function getDeclarationNodeFlagsFromSymbol(s) { return s.valueDeclaration ? getCombinedNodeFlagsCached(s.valueDeclaration) : 0; } function isPrototypeProperty(symbol) { if (symbol.flags & 8192 || getCheckFlags(symbol) & 4) { return true; } if (isInJSFile(symbol.valueDeclaration)) { const parent2 = symbol.valueDeclaration.parent; return parent2 && isBinaryExpression(parent2) && getAssignmentDeclarationKind(parent2) === 3; } } function checkPropertyAccessibility(node, isSuper, writing, type, prop, reportError = true) { const errorNode = !reportError ? undefined : node.kind === 167 ? node.right : node.kind === 206 ? node : node.kind === 209 && node.propertyName ? node.propertyName : node.name; return checkPropertyAccessibilityAtLocation(node, isSuper, writing, type, prop, errorNode); } function checkPropertyAccessibilityAtLocation(location, isSuper, writing, containingType, prop, errorNode) { var _a; const flags = getDeclarationModifierFlagsFromSymbol(prop, writing); if (isSuper) { if (languageVersion < 2) { if (symbolHasNonMethodDeclaration(prop)) { if (errorNode) { error2(errorNode, Diagnostics.Only_public_and_protected_methods_of_the_base_class_are_accessible_via_the_super_keyword); } return false; } } if (flags & 64) { if (errorNode) { error2(errorNode, Diagnostics.Abstract_method_0_in_class_1_cannot_be_accessed_via_super_expression, symbolToString(prop), typeToString(getDeclaringClass(prop))); } return false; } if (!(flags & 256) && ((_a = prop.declarations) == null ? undefined : _a.some(isClassInstanceProperty))) { if (errorNode) { error2(errorNode, Diagnostics.Class_field_0_defined_by_the_parent_class_is_not_accessible_in_the_child_class_via_super, symbolToString(prop)); } return false; } } if (flags & 64 && symbolHasNonMethodDeclaration(prop) && (isThisProperty(location) || isThisInitializedObjectBindingExpression(location) || isObjectBindingPattern(location.parent) && isThisInitializedDeclaration(location.parent.parent))) { const parentSymbol = getParentOfSymbol(prop); if (parentSymbol && parentSymbol.flags & 32 && isNodeUsedDuringClassInitialization(location)) { if (errorNode) { error2(errorNode, Diagnostics.Abstract_property_0_in_class_1_cannot_be_accessed_in_the_constructor, symbolToString(prop), symbolToString(parentSymbol)); } return false; } } if (!(flags & 6)) { return true; } if (flags & 2) { const declaringClassDeclaration = getClassLikeDeclarationOfSymbol(getParentOfSymbol(prop)); if (!isNodeWithinClass(location, declaringClassDeclaration)) { if (errorNode) { error2(errorNode, Diagnostics.Property_0_is_private_and_only_accessible_within_class_1, symbolToString(prop), typeToString(getDeclaringClass(prop))); } return false; } return true; } if (isSuper) { return true; } let enclosingClass = forEachEnclosingClass(location, (enclosingDeclaration) => { const enclosingClass2 = getDeclaredTypeOfSymbol(getSymbolOfDeclaration(enclosingDeclaration)); return isClassDerivedFromDeclaringClasses(enclosingClass2, prop, writing); }); if (!enclosingClass) { enclosingClass = getEnclosingClassFromThisParameter(location); enclosingClass = enclosingClass && isClassDerivedFromDeclaringClasses(enclosingClass, prop, writing); if (flags & 256 || !enclosingClass) { if (errorNode) { error2(errorNode, Diagnostics.Property_0_is_protected_and_only_accessible_within_class_1_and_its_subclasses, symbolToString(prop), typeToString(getDeclaringClass(prop) || containingType)); } return false; } } if (flags & 256) { return true; } if (containingType.flags & 524288) { containingType = containingType.isThisType ? getConstraintOfTypeParameter(containingType) : getBaseConstraintOfType(containingType); } if (!containingType || !hasBaseType(containingType, enclosingClass)) { if (errorNode) { error2(errorNode, Diagnostics.Property_0_is_protected_and_only_accessible_through_an_instance_of_class_1_This_is_an_instance_of_class_2, symbolToString(prop), typeToString(enclosingClass), typeToString(containingType)); } return false; } return true; } function getEnclosingClassFromThisParameter(node) { const thisParameter = getThisParameterFromNodeContext(node); let thisType = (thisParameter == null ? undefined : thisParameter.type) && getTypeFromTypeNode(thisParameter.type); if (thisType) { if (thisType.flags & 524288) { thisType = getConstraintOfTypeParameter(thisType); } } else { const thisContainer = getThisContainer(node, false, false); if (isFunctionLike(thisContainer)) { thisType = getContextualThisParameterType(thisContainer); } } if (thisType && getObjectFlags(thisType) & (3 | 4)) { return getTargetType(thisType); } return; } function getThisParameterFromNodeContext(node) { const thisContainer = getThisContainer(node, false, false); return thisContainer && isFunctionLike(thisContainer) ? getThisParameter(thisContainer) : undefined; } function symbolHasNonMethodDeclaration(symbol) { return !!forEachProperty2(symbol, (prop) => !(prop.flags & 8192)); } function checkNonNullExpression(node) { return checkNonNullType(checkExpression(node), node); } function isNullableType(type) { return hasTypeFacts(type, 50331648); } function getNonNullableTypeIfNeeded(type) { return isNullableType(type) ? getNonNullableType(type) : type; } function reportObjectPossiblyNullOrUndefinedError(node, facts) { const nodeText2 = isEntityNameExpression(node) ? entityNameToString(node) : undefined; if (node.kind === 106) { error2(node, Diagnostics.The_value_0_cannot_be_used_here, "null"); return; } if (nodeText2 !== undefined && nodeText2.length < 100) { if (isIdentifier(node) && nodeText2 === "undefined") { error2(node, Diagnostics.The_value_0_cannot_be_used_here, "undefined"); return; } error2(node, facts & 16777216 ? facts & 33554432 ? Diagnostics._0_is_possibly_null_or_undefined : Diagnostics._0_is_possibly_undefined : Diagnostics._0_is_possibly_null, nodeText2); } else { error2(node, facts & 16777216 ? facts & 33554432 ? Diagnostics.Object_is_possibly_null_or_undefined : Diagnostics.Object_is_possibly_undefined : Diagnostics.Object_is_possibly_null); } } function reportCannotInvokePossiblyNullOrUndefinedError(node, facts) { error2(node, facts & 16777216 ? facts & 33554432 ? Diagnostics.Cannot_invoke_an_object_which_is_possibly_null_or_undefined : Diagnostics.Cannot_invoke_an_object_which_is_possibly_undefined : Diagnostics.Cannot_invoke_an_object_which_is_possibly_null); } function checkNonNullTypeWithReporter(type, node, reportError) { if (strictNullChecks && type.flags & 2) { if (isEntityNameExpression(node)) { const nodeText2 = entityNameToString(node); if (nodeText2.length < 100) { error2(node, Diagnostics._0_is_of_type_unknown, nodeText2); return errorType; } } error2(node, Diagnostics.Object_is_of_type_unknown); return errorType; } const facts = getTypeFacts(type, 50331648); if (facts & 50331648) { reportError(node, facts); const t = getNonNullableType(type); return t.flags & (12 | 262144) ? errorType : t; } return type; } function checkNonNullType(type, node) { return checkNonNullTypeWithReporter(type, node, reportObjectPossiblyNullOrUndefinedError); } function checkNonNullNonVoidType(type, node) { const nonNullType = checkNonNullType(type, node); if (nonNullType.flags & 16) { if (isEntityNameExpression(node)) { const nodeText2 = entityNameToString(node); if (isIdentifier(node) && nodeText2 === "undefined") { error2(node, Diagnostics.The_value_0_cannot_be_used_here, nodeText2); return nonNullType; } if (nodeText2.length < 100) { error2(node, Diagnostics._0_is_possibly_undefined, nodeText2); return nonNullType; } } error2(node, Diagnostics.Object_is_possibly_undefined); } return nonNullType; } function checkPropertyAccessExpression(node, checkMode, writeOnly) { return node.flags & 64 ? checkPropertyAccessChain(node, checkMode) : checkPropertyAccessExpressionOrQualifiedName(node, node.expression, checkNonNullExpression(node.expression), node.name, checkMode, writeOnly); } function checkPropertyAccessChain(node, checkMode) { const leftType = checkExpression(node.expression); const nonOptionalType = getOptionalExpressionType(leftType, node.expression); return propagateOptionalTypeMarker(checkPropertyAccessExpressionOrQualifiedName(node, node.expression, checkNonNullType(nonOptionalType, node.expression), node.name, checkMode), node, nonOptionalType !== leftType); } function checkQualifiedName(node, checkMode) { const leftType = isPartOfTypeQuery(node) && isThisIdentifier(node.left) ? checkNonNullType(checkThisExpression(node.left), node.left) : checkNonNullExpression(node.left); return checkPropertyAccessExpressionOrQualifiedName(node, node.left, leftType, node.right, checkMode); } function isMethodAccessForCall(node) { while (node.parent.kind === 218) { node = node.parent; } return isCallOrNewExpression(node.parent) && node.parent.expression === node; } function lookupSymbolForPrivateIdentifierDeclaration(propName, location) { for (let containingClass = getContainingClassExcludingClassDecorators(location);containingClass; containingClass = getContainingClass(containingClass)) { const { symbol } = containingClass; const name = getSymbolNameForPrivateIdentifier(symbol, propName); const prop = symbol.members && symbol.members.get(name) || symbol.exports && symbol.exports.get(name); if (prop) { return prop; } } } function checkGrammarPrivateIdentifierExpression(privId) { if (!getContainingClass(privId)) { return grammarErrorOnNode(privId, Diagnostics.Private_identifiers_are_not_allowed_outside_class_bodies); } if (!isForInStatement(privId.parent)) { if (!isExpressionNode(privId)) { return grammarErrorOnNode(privId, Diagnostics.Private_identifiers_are_only_allowed_in_class_bodies_and_may_only_be_used_as_part_of_a_class_member_declaration_property_access_or_on_the_left_hand_side_of_an_in_expression); } const isInOperation = isBinaryExpression(privId.parent) && privId.parent.operatorToken.kind === 103; if (!getSymbolForPrivateIdentifierExpression(privId) && !isInOperation) { return grammarErrorOnNode(privId, Diagnostics.Cannot_find_name_0, idText(privId)); } } return false; } function checkPrivateIdentifierExpression(privId) { checkGrammarPrivateIdentifierExpression(privId); const symbol = getSymbolForPrivateIdentifierExpression(privId); if (symbol) { markPropertyAsReferenced(symbol, undefined, false); } return anyType; } function getSymbolForPrivateIdentifierExpression(privId) { if (!isExpressionNode(privId)) { return; } const links = getNodeLinks(privId); if (links.resolvedSymbol === undefined) { links.resolvedSymbol = lookupSymbolForPrivateIdentifierDeclaration(privId.escapedText, privId); } return links.resolvedSymbol; } function getPrivateIdentifierPropertyOfType(leftType, lexicallyScopedIdentifier) { return getPropertyOfType(leftType, lexicallyScopedIdentifier.escapedName); } function checkPrivateIdentifierPropertyAccess(leftType, right, lexicallyScopedIdentifier) { let propertyOnType; const properties = getPropertiesOfType(leftType); if (properties) { forEach(properties, (symbol) => { const decl = symbol.valueDeclaration; if (decl && isNamedDeclaration(decl) && isPrivateIdentifier(decl.name) && decl.name.escapedText === right.escapedText) { propertyOnType = symbol; return true; } }); } const diagName = diagnosticName(right); if (propertyOnType) { const typeValueDecl = Debug.checkDefined(propertyOnType.valueDeclaration); const typeClass = Debug.checkDefined(getContainingClass(typeValueDecl)); if (lexicallyScopedIdentifier == null ? undefined : lexicallyScopedIdentifier.valueDeclaration) { const lexicalValueDecl = lexicallyScopedIdentifier.valueDeclaration; const lexicalClass = getContainingClass(lexicalValueDecl); Debug.assert(!!lexicalClass); if (findAncestor(lexicalClass, (n) => typeClass === n)) { const diagnostic = error2(right, Diagnostics.The_property_0_cannot_be_accessed_on_type_1_within_this_class_because_it_is_shadowed_by_another_private_identifier_with_the_same_spelling, diagName, typeToString(leftType)); addRelatedInfo(diagnostic, createDiagnosticForNode(lexicalValueDecl, Diagnostics.The_shadowing_declaration_of_0_is_defined_here, diagName), createDiagnosticForNode(typeValueDecl, Diagnostics.The_declaration_of_0_that_you_probably_intended_to_use_is_defined_here, diagName)); return true; } } error2(right, Diagnostics.Property_0_is_not_accessible_outside_class_1_because_it_has_a_private_identifier, diagName, diagnosticName(typeClass.name || anon)); return true; } return false; } function isThisPropertyAccessInConstructor(node, prop) { return (isConstructorDeclaredProperty(prop) || isThisProperty(node) && isAutoTypedProperty(prop)) && getThisContainer(node, true, false) === getDeclaringConstructor(prop); } function checkPropertyAccessExpressionOrQualifiedName(node, left, leftType, right, checkMode, writeOnly) { const parentSymbol = getNodeLinks(left).resolvedSymbol; const assignmentKind = getAssignmentTargetKind(node); const apparentType = getApparentType(assignmentKind !== 0 || isMethodAccessForCall(node) ? getWidenedType(leftType) : leftType); const isAnyLike = isTypeAny(apparentType) || apparentType === silentNeverType; let prop; if (isPrivateIdentifier(right)) { if (languageVersion < LanguageFeatureMinimumTarget.PrivateNamesAndClassStaticBlocks || languageVersion < LanguageFeatureMinimumTarget.ClassAndClassElementDecorators || !useDefineForClassFields) { if (assignmentKind !== 0) { checkExternalEmitHelpers(node, 1048576); } if (assignmentKind !== 1) { checkExternalEmitHelpers(node, 524288); } } const lexicallyScopedSymbol = lookupSymbolForPrivateIdentifierDeclaration(right.escapedText, right); if (assignmentKind && lexicallyScopedSymbol && lexicallyScopedSymbol.valueDeclaration && isMethodDeclaration(lexicallyScopedSymbol.valueDeclaration)) { grammarErrorOnNode(right, Diagnostics.Cannot_assign_to_private_method_0_Private_methods_are_not_writable, idText(right)); } if (isAnyLike) { if (lexicallyScopedSymbol) { return isErrorType(apparentType) ? errorType : apparentType; } if (getContainingClassExcludingClassDecorators(right) === undefined) { grammarErrorOnNode(right, Diagnostics.Private_identifiers_are_not_allowed_outside_class_bodies); return anyType; } } prop = lexicallyScopedSymbol && getPrivateIdentifierPropertyOfType(leftType, lexicallyScopedSymbol); if (prop === undefined) { if (checkPrivateIdentifierPropertyAccess(leftType, right, lexicallyScopedSymbol)) { return errorType; } const containingClass = getContainingClassExcludingClassDecorators(right); if (containingClass && isPlainJsFile(getSourceFileOfNode(containingClass), compilerOptions.checkJs)) { grammarErrorOnNode(right, Diagnostics.Private_field_0_must_be_declared_in_an_enclosing_class, idText(right)); } } else { const isSetonlyAccessor = prop.flags & 65536 && !(prop.flags & 32768); if (isSetonlyAccessor && assignmentKind !== 1) { error2(node, Diagnostics.Private_accessor_was_defined_without_a_getter); } } } else { if (isAnyLike) { if (isIdentifier(left) && parentSymbol) { markLinkedReferences(node, 2, undefined, leftType); } return isErrorType(apparentType) ? errorType : apparentType; } prop = getPropertyOfType(apparentType, right.escapedText, isConstEnumObjectType(apparentType), node.kind === 167); } markLinkedReferences(node, 2, prop, leftType); let propType; if (!prop) { const indexInfo = !isPrivateIdentifier(right) && (assignmentKind === 0 || !isGenericObjectType(leftType) || isThisTypeParameter(leftType)) ? getApplicableIndexInfoForName(apparentType, right.escapedText) : undefined; if (!(indexInfo && indexInfo.type)) { const isUncheckedJS = isUncheckedJSSuggestion(node, leftType.symbol, true); if (!isUncheckedJS && isJSLiteralType(leftType)) { return anyType; } if (leftType.symbol === globalThisSymbol) { if (globalThisSymbol.exports.has(right.escapedText) && globalThisSymbol.exports.get(right.escapedText).flags & 418) { error2(right, Diagnostics.Property_0_does_not_exist_on_type_1, unescapeLeadingUnderscores(right.escapedText), typeToString(leftType)); } else if (noImplicitAny) { error2(right, Diagnostics.Element_implicitly_has_an_any_type_because_type_0_has_no_index_signature, typeToString(leftType)); } return anyType; } if (right.escapedText && !checkAndReportErrorForExtendingInterface(node)) { reportNonexistentProperty(right, isThisTypeParameter(leftType) ? apparentType : leftType, isUncheckedJS); } return errorType; } if (indexInfo.isReadonly && (isAssignmentTarget(node) || isDeleteTarget(node))) { error2(node, Diagnostics.Index_signature_in_type_0_only_permits_reading, typeToString(apparentType)); } propType = indexInfo.type; if (compilerOptions.noUncheckedIndexedAccess && getAssignmentTargetKind(node) !== 1) { propType = getUnionType([propType, missingType]); } if (compilerOptions.noPropertyAccessFromIndexSignature && isPropertyAccessExpression(node)) { error2(right, Diagnostics.Property_0_comes_from_an_index_signature_so_it_must_be_accessed_with_0, unescapeLeadingUnderscores(right.escapedText)); } if (indexInfo.declaration && isDeprecatedDeclaration2(indexInfo.declaration)) { addDeprecatedSuggestion(right, [indexInfo.declaration], right.escapedText); } } else { const targetPropSymbol = resolveAliasWithDeprecationCheck(prop, right); if (isDeprecatedSymbol(targetPropSymbol) && isUncalledFunctionReference(node, targetPropSymbol) && targetPropSymbol.declarations) { addDeprecatedSuggestion(right, targetPropSymbol.declarations, right.escapedText); } checkPropertyNotUsedBeforeDeclaration(prop, node, right); markPropertyAsReferenced(prop, node, isSelfTypeAccess(left, parentSymbol)); getNodeLinks(node).resolvedSymbol = prop; checkPropertyAccessibility(node, left.kind === 108, isWriteAccess(node), apparentType, prop); if (isAssignmentToReadonlyEntity(node, prop, assignmentKind)) { error2(right, Diagnostics.Cannot_assign_to_0_because_it_is_a_read_only_property, idText(right)); return errorType; } propType = isThisPropertyAccessInConstructor(node, prop) ? autoType : writeOnly || isWriteOnlyAccess(node) ? getWriteTypeOfSymbol(prop) : getTypeOfSymbol(prop); } return getFlowTypeOfAccessExpression(node, prop, propType, right, checkMode); } function isUncheckedJSSuggestion(node, suggestion, excludeClasses) { var _a; const file = getSourceFileOfNode(node); if (file) { if (compilerOptions.checkJs === undefined && file.checkJsDirective === undefined && (file.scriptKind === 1 || file.scriptKind === 2)) { const declarationFile = forEach(suggestion == null ? undefined : suggestion.declarations, getSourceFileOfNode); const suggestionHasNoExtendsOrDecorators = !(suggestion == null ? undefined : suggestion.valueDeclaration) || !isClassLike(suggestion.valueDeclaration) || ((_a = suggestion.valueDeclaration.heritageClauses) == null ? undefined : _a.length) || classOrConstructorParameterIsDecorated(false, suggestion.valueDeclaration); return !(file !== declarationFile && !!declarationFile && isGlobalSourceFile(declarationFile)) && !(excludeClasses && suggestion && suggestion.flags & 32 && suggestionHasNoExtendsOrDecorators) && !(!!node && excludeClasses && isPropertyAccessExpression(node) && node.expression.kind === 110 && suggestionHasNoExtendsOrDecorators); } } return false; } function getFlowTypeOfAccessExpression(node, prop, propType, errorNode, checkMode) { const assignmentKind = getAssignmentTargetKind(node); if (assignmentKind === 1) { return removeMissingType(propType, !!(prop && prop.flags & 16777216)); } if (prop && !(prop.flags & (3 | 4 | 98304)) && !(prop.flags & 8192 && propType.flags & 134217728) && !isDuplicatedCommonJSExport(prop.declarations)) { return propType; } if (propType === autoType) { return getFlowTypeOfProperty(node, prop); } propType = getNarrowableTypeForReference(propType, node, checkMode); let assumeUninitialized = false; if (strictNullChecks && strictPropertyInitialization && isAccessExpression(node) && node.expression.kind === 110) { const declaration = prop && prop.valueDeclaration; if (declaration && isPropertyWithoutInitializer(declaration)) { if (!isStatic(declaration)) { const flowContainer = getControlFlowContainer(node); if (flowContainer.kind === 177 && flowContainer.parent === declaration.parent && !(declaration.flags & 33554432)) { assumeUninitialized = true; } } } } else if (strictNullChecks && prop && prop.valueDeclaration && isPropertyAccessExpression(prop.valueDeclaration) && getAssignmentDeclarationPropertyAccessKind(prop.valueDeclaration) && getControlFlowContainer(node) === getControlFlowContainer(prop.valueDeclaration)) { assumeUninitialized = true; } const flowType = getFlowTypeOfReference(node, propType, assumeUninitialized ? getOptionalType(propType) : propType); if (assumeUninitialized && !containsUndefinedType(propType) && containsUndefinedType(flowType)) { error2(errorNode, Diagnostics.Property_0_is_used_before_being_assigned, symbolToString(prop)); return propType; } return assignmentKind ? getBaseTypeOfLiteralType(flowType) : flowType; } function checkPropertyNotUsedBeforeDeclaration(prop, node, right) { const { valueDeclaration } = prop; if (!valueDeclaration || getSourceFileOfNode(node).isDeclarationFile) { return; } let diagnosticMessage; const declarationName = idText(right); if (isInPropertyInitializerOrClassStaticBlock(node) && !isOptionalPropertyDeclaration(valueDeclaration) && !(isAccessExpression(node) && isAccessExpression(node.expression)) && !isBlockScopedNameDeclaredBeforeUse(valueDeclaration, right) && !(isMethodDeclaration(valueDeclaration) && getCombinedModifierFlagsCached(valueDeclaration) & 256) && (useDefineForClassFields || !isPropertyDeclaredInAncestorClass(prop))) { diagnosticMessage = error2(right, Diagnostics.Property_0_is_used_before_its_initialization, declarationName); } else if (valueDeclaration.kind === 264 && node.parent.kind !== 184 && !(valueDeclaration.flags & 33554432) && !isBlockScopedNameDeclaredBeforeUse(valueDeclaration, right)) { diagnosticMessage = error2(right, Diagnostics.Class_0_used_before_its_declaration, declarationName); } if (diagnosticMessage) { addRelatedInfo(diagnosticMessage, createDiagnosticForNode(valueDeclaration, Diagnostics._0_is_declared_here, declarationName)); } } function isInPropertyInitializerOrClassStaticBlock(node, ignoreArrowFunctions) { return !!findAncestor(node, (node2) => { switch (node2.kind) { case 173: case 176: return true; case 187: case 288: return "quit"; case 220: return ignoreArrowFunctions ? false : "quit"; case 242: return isFunctionLikeDeclaration(node2.parent) && node2.parent.kind !== 220 ? "quit" : false; default: return false; } }); } function isPropertyDeclaredInAncestorClass(prop) { if (prop.parent && prop.parent.flags & 32) { const baseTypes = getBaseTypes(getDeclaredTypeOfSymbol(prop.parent)); if (baseTypes.length) { const superProperty = getPropertyOfType(baseTypes[0], prop.escapedName); return !!(superProperty && superProperty.valueDeclaration); } } return false; } function reportNonexistentProperty(propNode, containingType, isUncheckedJS) { const links = getNodeLinks(propNode); const cache = links.nonExistentPropCheckCache || (links.nonExistentPropCheckCache = /* @__PURE__ */ new Set); const key = `${getTypeId(containingType)}|${isUncheckedJS}`; if (cache.has(key)) { return; } cache.add(key); let errorInfo; let relatedInfo; if (!isPrivateIdentifier(propNode) && containingType.flags & 134217728 && !(containingType.flags & 12713980)) { for (const subtype of containingType.types) { if (!getPropertyOfType(subtype, propNode.escapedText) && !getApplicableIndexInfoForName(subtype, propNode.escapedText)) { errorInfo = chainDiagnosticMessages(errorInfo, Diagnostics.Property_0_does_not_exist_on_type_1, declarationNameToString(propNode), typeToString(subtype)); break; } } } if (typeHasStaticProperty(propNode.escapedText, containingType)) { const propName = declarationNameToString(propNode); const typeName = typeToString(containingType); errorInfo = chainDiagnosticMessages(errorInfo, Diagnostics.Property_0_does_not_exist_on_type_1_Did_you_mean_to_access_the_static_member_2_instead, propName, typeName, typeName + "." + propName); } else { const promisedType = getPromisedTypeOfPromise(containingType); if (promisedType && getPropertyOfType(promisedType, propNode.escapedText)) { errorInfo = chainDiagnosticMessages(errorInfo, Diagnostics.Property_0_does_not_exist_on_type_1, declarationNameToString(propNode), typeToString(containingType)); relatedInfo = createDiagnosticForNode(propNode, Diagnostics.Did_you_forget_to_use_await); } else { const missingProperty = declarationNameToString(propNode); const container = typeToString(containingType); const libSuggestion = getSuggestedLibForNonExistentProperty(missingProperty, containingType); if (libSuggestion !== undefined) { errorInfo = chainDiagnosticMessages(errorInfo, Diagnostics.Property_0_does_not_exist_on_type_1_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_2_or_later, missingProperty, container, libSuggestion); } else { const suggestion = getSuggestedSymbolForNonexistentProperty(propNode, containingType); if (suggestion !== undefined) { const suggestedName = symbolName(suggestion); const message = isUncheckedJS ? Diagnostics.Property_0_may_not_exist_on_type_1_Did_you_mean_2 : Diagnostics.Property_0_does_not_exist_on_type_1_Did_you_mean_2; errorInfo = chainDiagnosticMessages(errorInfo, message, missingProperty, container, suggestedName); relatedInfo = suggestion.valueDeclaration && createDiagnosticForNode(suggestion.valueDeclaration, Diagnostics._0_is_declared_here, suggestedName); } else { const diagnostic = containerSeemsToBeEmptyDomElement(containingType) ? Diagnostics.Property_0_does_not_exist_on_type_1_Try_changing_the_lib_compiler_option_to_include_dom : Diagnostics.Property_0_does_not_exist_on_type_1; errorInfo = chainDiagnosticMessages(elaborateNeverIntersection(errorInfo, containingType), diagnostic, missingProperty, container); } } } } const resultDiagnostic = createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(propNode), propNode, errorInfo); if (relatedInfo) { addRelatedInfo(resultDiagnostic, relatedInfo); } addErrorOrSuggestion(!isUncheckedJS || errorInfo.code !== Diagnostics.Property_0_may_not_exist_on_type_1_Did_you_mean_2.code, resultDiagnostic); } function containerSeemsToBeEmptyDomElement(containingType) { return compilerOptions.lib && !compilerOptions.lib.includes("lib.dom.d.ts") && everyContainedType(containingType, (type) => type.symbol && /^(?:EventTarget|Node|(?:HTML[a-zA-Z]*)?Element)$/.test(unescapeLeadingUnderscores(type.symbol.escapedName))) && isEmptyObjectType(containingType); } function typeHasStaticProperty(propName, containingType) { const prop = containingType.symbol && getPropertyOfType(getTypeOfSymbol(containingType.symbol), propName); return prop !== undefined && !!prop.valueDeclaration && isStatic(prop.valueDeclaration); } function getSuggestedLibForNonExistentName(name) { const missingName = diagnosticName(name); const allFeatures = getScriptTargetFeatures(); const typeFeatures = allFeatures.get(missingName); return typeFeatures && firstIterator(typeFeatures.keys()); } function getSuggestedLibForNonExistentProperty(missingProperty, containingType) { const container = getApparentType(containingType).symbol; if (!container) { return; } const containingTypeName = symbolName(container); const allFeatures = getScriptTargetFeatures(); const typeFeatures = allFeatures.get(containingTypeName); if (typeFeatures) { for (const [libTarget, featuresOfType] of typeFeatures) { if (contains(featuresOfType, missingProperty)) { return libTarget; } } } } function getSuggestedSymbolForNonexistentClassMember(name, baseType) { return getSpellingSuggestionForName(name, getPropertiesOfType(baseType), 106500); } function getSuggestedSymbolForNonexistentProperty(name, containingType) { let props = getPropertiesOfType(containingType); if (typeof name !== "string") { const parent2 = name.parent; if (isPropertyAccessExpression(parent2)) { props = filter(props, (prop) => isValidPropertyAccessForCompletions(parent2, containingType, prop)); } name = idText(name); } return getSpellingSuggestionForName(name, props, 111551); } function getSuggestedSymbolForNonexistentJSXAttribute(name, containingType) { const strName = isString(name) ? name : idText(name); const properties = getPropertiesOfType(containingType); const jsxSpecific = strName === "for" ? find(properties, (x) => symbolName(x) === "htmlFor") : strName === "class" ? find(properties, (x) => symbolName(x) === "className") : undefined; return jsxSpecific ?? getSpellingSuggestionForName(strName, properties, 111551); } function getSuggestionForNonexistentProperty(name, containingType) { const suggestion = getSuggestedSymbolForNonexistentProperty(name, containingType); return suggestion && symbolName(suggestion); } function getSuggestionForSymbolNameLookup(symbols, name, meaning) { const symbol = getSymbol2(symbols, name, meaning); if (symbol) return symbol; let candidates = arrayFrom(symbols.values()); if (symbols === globals) { const primitives = mapDefined(["string", "number", "boolean", "object", "bigint", "symbol"], (s) => symbols.has(s.charAt(0).toUpperCase() + s.slice(1)) ? createSymbol(524288, s) : undefined); candidates = concatenate(primitives, candidates); } sortSymbolsIfTSGoCompat(candidates); return getSpellingSuggestionForName(unescapeLeadingUnderscores(name), candidates, meaning); } function getSuggestedSymbolForNonexistentSymbol(location, outerName, meaning) { Debug.assert(outerName !== undefined, "outername should always be defined"); const result = resolveNameForSymbolSuggestion(location, outerName, meaning, undefined, false, false); return result; } function getSuggestedSymbolForNonexistentModule(name, targetModule) { return targetModule.exports && getSpellingSuggestionForName(idText(name), sortSymbolsIfTSGoCompat(getExportsOfModuleAsArray(targetModule)), 2623475); } function getSuggestionForNonexistentIndexSignature(objectType, expr, keyedType) { function hasProp(name) { const prop = getPropertyOfObjectType(objectType, name); if (prop) { const s = getSingleCallSignature(getTypeOfSymbol(prop)); return !!s && getMinArgumentCount(s) >= 1 && isTypeAssignableTo(keyedType, getTypeAtPosition(s, 0)); } return false; } const suggestedMethod = isAssignmentTarget(expr) ? "set" : "get"; if (!hasProp(suggestedMethod)) { return; } let suggestion = tryGetPropertyAccessOrIdentifierToString(expr.expression); if (suggestion === undefined) { suggestion = suggestedMethod; } else { suggestion += "." + suggestedMethod; } return suggestion; } function getSuggestedTypeForNonexistentStringLiteralType(source, target) { const candidates = target.types.filter((type) => !!(type.flags & 1024)); return getSpellingSuggestion(source.value, candidates, (type) => type.value); } function getSpellingSuggestionForName(name, symbols, meaning) { return getSpellingSuggestion(name, symbols, getCandidateName); function getCandidateName(candidate) { const candidateName = symbolName(candidate); if (startsWith(candidateName, '"')) { return; } if (candidate.flags & meaning) { return candidateName; } if (candidate.flags & 2097152) { const alias = tryResolveAlias(candidate); if (alias && alias.flags & meaning) { return candidateName; } } return; } } function markPropertyAsReferenced(prop, nodeForCheckWriteOnly, isSelfTypeAccess2) { const valueDeclaration = prop && prop.flags & 106500 && prop.valueDeclaration; if (!valueDeclaration) { return; } const hasPrivateModifier = hasEffectiveModifier(valueDeclaration, 2); const hasPrivateIdentifier = prop.valueDeclaration && isNamedDeclaration(prop.valueDeclaration) && isPrivateIdentifier(prop.valueDeclaration.name); if (!hasPrivateModifier && !hasPrivateIdentifier) { return; } if (nodeForCheckWriteOnly && isWriteOnlyAccess(nodeForCheckWriteOnly) && !(prop.flags & 65536)) { return; } if (isSelfTypeAccess2) { const containingMethod = findAncestor(nodeForCheckWriteOnly, isFunctionLikeDeclaration); if (containingMethod && containingMethod.symbol === prop) { return; } } (getCheckFlags(prop) & 1 ? getSymbolLinks(prop).target : prop).isReferenced = -1; } function isSelfTypeAccess(name, parent2) { return name.kind === 110 || !!parent2 && isEntityNameExpression(name) && parent2 === getResolvedSymbol(getFirstIdentifier(name)); } function isValidPropertyAccess(node, propertyName) { switch (node.kind) { case 212: return isValidPropertyAccessWithType(node, node.expression.kind === 108, propertyName, getWidenedType(checkExpression(node.expression))); case 167: return isValidPropertyAccessWithType(node, false, propertyName, getWidenedType(checkExpression(node.left))); case 206: return isValidPropertyAccessWithType(node, false, propertyName, getTypeFromTypeNode(node)); } } function isValidPropertyAccessForCompletions(node, type, property) { return isPropertyAccessible(node, node.kind === 212 && node.expression.kind === 108, false, type, property); } function isValidPropertyAccessWithType(node, isSuper, propertyName, type) { if (isTypeAny(type)) { return true; } const prop = getPropertyOfType(type, propertyName); return !!prop && isPropertyAccessible(node, isSuper, false, type, prop); } function isPropertyAccessible(node, isSuper, isWrite, containingType, property) { if (isTypeAny(containingType)) { return true; } if (property.valueDeclaration && isPrivateIdentifierClassElementDeclaration(property.valueDeclaration)) { const declClass = getContainingClass(property.valueDeclaration); return !isOptionalChain(node) && !!findAncestor(node, (parent2) => parent2 === declClass); } return checkPropertyAccessibilityAtLocation(node, isSuper, isWrite, containingType, property); } function getForInVariableSymbol(node) { const initializer = node.initializer; if (initializer.kind === 262) { const variable = initializer.declarations[0]; if (variable && !isBindingPattern(variable.name)) { return getSymbolOfDeclaration(variable); } } else if (initializer.kind === 80) { return getResolvedSymbol(initializer); } return; } function hasNumericPropertyNames(type) { return getIndexInfosOfType(type).length === 1 && !!getIndexInfoOfType(type, numberType); } function isForInVariableForNumericPropertyNames(expr) { const e = skipParentheses(expr); if (e.kind === 80) { const symbol = getResolvedSymbol(e); if (symbol.flags & 3) { let child = expr; let node = expr.parent; while (node) { if (node.kind === 250 && child === node.statement && getForInVariableSymbol(node) === symbol && hasNumericPropertyNames(getTypeOfExpression(node.expression))) { return true; } child = node; node = node.parent; } } } return false; } function checkIndexedAccess(node, checkMode) { return node.flags & 64 ? checkElementAccessChain(node, checkMode) : checkElementAccessExpression(node, checkNonNullExpression(node.expression), checkMode); } function checkElementAccessChain(node, checkMode) { const exprType = checkExpression(node.expression); const nonOptionalType = getOptionalExpressionType(exprType, node.expression); return propagateOptionalTypeMarker(checkElementAccessExpression(node, checkNonNullType(nonOptionalType, node.expression), checkMode), node, nonOptionalType !== exprType); } function checkElementAccessExpression(node, exprType, checkMode) { const objectType = getAssignmentTargetKind(node) !== 0 || isMethodAccessForCall(node) ? getWidenedType(exprType) : exprType; const indexExpression = node.argumentExpression; const indexType = checkExpression(indexExpression); if (isErrorType(objectType) || objectType === silentNeverType) { return objectType; } if (isConstEnumObjectType(objectType) && !isStringLiteralLike(indexExpression)) { error2(indexExpression, Diagnostics.A_const_enum_member_can_only_be_accessed_using_a_string_literal); return errorType; } const effectiveIndexType = isForInVariableForNumericPropertyNames(indexExpression) ? numberType : indexType; const assignmentTargetKind = getAssignmentTargetKind(node); let accessFlags; if (assignmentTargetKind === 0) { accessFlags = 32; } else { accessFlags = 4 | (isGenericObjectType(objectType) && !isThisTypeParameter(objectType) ? 2 : 0); if (assignmentTargetKind === 2) { accessFlags |= 32; } } const indexedAccessType = getIndexedAccessTypeOrUndefined(objectType, effectiveIndexType, accessFlags, node) || errorType; return checkIndexedAccessIndexType(getFlowTypeOfAccessExpression(node, getNodeLinks(node).resolvedSymbol, indexedAccessType, indexExpression, checkMode), node); } function callLikeExpressionMayHaveTypeArguments(node) { return isCallOrNewExpression(node) || isTaggedTemplateExpression(node) || isJsxOpeningLikeElement(node); } function resolveUntypedCall(node) { if (callLikeExpressionMayHaveTypeArguments(node)) { forEach(node.typeArguments, checkSourceElement); } if (node.kind === 216) { checkExpression(node.template); } else if (isJsxOpeningLikeElement(node)) { checkExpression(node.attributes); } else if (isBinaryExpression(node)) { checkExpression(node.left); } else if (isCallOrNewExpression(node)) { forEach(node.arguments, (argument) => { checkExpression(argument); }); } return anySignature; } function resolveErrorCall(node) { resolveUntypedCall(node); return unknownSignature; } function reorderCandidates(signatures, result, callChainFlags) { let lastParent; let lastSymbol; let cutoffIndex = 0; let index; let specializedIndex = -1; let spliceIndex; Debug.assert(!result.length); for (const signature of signatures) { const symbol = signature.declaration && getSymbolOfDeclaration(signature.declaration); const parent2 = signature.declaration && signature.declaration.parent; if (!lastSymbol || symbol === lastSymbol) { if (lastParent && parent2 === lastParent) { index = index + 1; } else { lastParent = parent2; index = cutoffIndex; } } else { index = cutoffIndex = result.length; lastParent = parent2; } lastSymbol = symbol; if (signatureHasLiteralTypes(signature)) { specializedIndex++; spliceIndex = specializedIndex; cutoffIndex++; } else { spliceIndex = index; } result.splice(spliceIndex, 0, callChainFlags ? getOptionalCallSignature(signature, callChainFlags) : signature); } } function isSpreadArgument(arg) { return !!arg && (arg.kind === 231 || arg.kind === 238 && arg.isSpread); } function getSpreadArgumentIndex(args) { return findIndex(args, isSpreadArgument); } function acceptsVoid(t) { return !!(t.flags & 16); } function acceptsVoidUndefinedUnknownOrAny(t) { return !!(t.flags & (16 | 4 | 2 | 1)); } function hasCorrectArity(node, args, signature, signatureHelpTrailingComma = false) { if (isJsxOpeningFragment(node)) return true; let argCount; let callIsIncomplete = false; let effectiveParameterCount = getParameterCount(signature); let effectiveMinimumArguments = getMinArgumentCount(signature); if (node.kind === 216) { argCount = args.length; if (node.template.kind === 229) { const lastSpan = last(node.template.templateSpans); callIsIncomplete = nodeIsMissing(lastSpan.literal) || !!lastSpan.literal.isUnterminated; } else { const templateLiteral = node.template; Debug.assert(templateLiteral.kind === 15); callIsIncomplete = !!templateLiteral.isUnterminated; } } else if (node.kind === 171) { argCount = getDecoratorArgumentCount(node, signature); } else if (node.kind === 227) { argCount = 1; } else if (isJsxOpeningLikeElement(node)) { callIsIncomplete = node.attributes.end === node.end; if (callIsIncomplete) { return true; } argCount = effectiveMinimumArguments === 0 ? args.length : 1; effectiveParameterCount = args.length === 0 ? effectiveParameterCount : 1; effectiveMinimumArguments = Math.min(effectiveMinimumArguments, 1); } else if (!node.arguments) { Debug.assert(node.kind === 215); return getMinArgumentCount(signature) === 0; } else { argCount = signatureHelpTrailingComma ? args.length + 1 : args.length; callIsIncomplete = node.arguments.end === node.end; const spreadArgIndex = getSpreadArgumentIndex(args); if (spreadArgIndex >= 0) { return spreadArgIndex >= getMinArgumentCount(signature) && (hasEffectiveRestParameter(signature) || spreadArgIndex < getParameterCount(signature)); } } if (!hasEffectiveRestParameter(signature) && argCount > effectiveParameterCount) { return false; } if (callIsIncomplete || argCount >= effectiveMinimumArguments) { return true; } for (let i = argCount;i < effectiveMinimumArguments; i++) { const type = getTypeAtPosition(signature, i); if (filterType(type, isInJSFile(node) && !strictNullChecks ? acceptsVoidUndefinedUnknownOrAny : acceptsVoid).flags & 262144) { return false; } } return true; } function hasCorrectTypeArgumentArity(signature, typeArguments) { const numTypeParameters = length(signature.typeParameters); const minTypeArgumentCount = getMinTypeArgumentCount(signature.typeParameters); return !some(typeArguments) || typeArguments.length >= minTypeArgumentCount && typeArguments.length <= numTypeParameters; } function isInstantiatedGenericParameter(signature, pos) { let type; return !!(signature.target && (type = tryGetTypeAtPosition(signature.target, pos)) && isGenericType(type)); } function getSingleCallSignature(type) { return getSingleSignature(type, 0, false); } function getSingleCallOrConstructSignature(type) { return getSingleSignature(type, 0, false) || getSingleSignature(type, 1, false); } function getSingleSignature(type, kind, allowMembers) { if (type.flags & 1048576) { const resolved = resolveStructuredTypeMembers(type); if (allowMembers || resolved.properties.length === 0 && resolved.indexInfos.length === 0) { if (kind === 0 && resolved.callSignatures.length === 1 && resolved.constructSignatures.length === 0) { return resolved.callSignatures[0]; } if (kind === 1 && resolved.constructSignatures.length === 1 && resolved.callSignatures.length === 0) { return resolved.constructSignatures[0]; } } } return; } function instantiateSignatureInContextOf(signature, contextualSignature, inferenceContext, compareTypes2) { const context = createInferenceContext(getTypeParametersForMapper(signature), signature, 0, compareTypes2); const restType = getEffectiveRestType(contextualSignature); const mapper = inferenceContext && (restType && restType.flags & 524288 ? inferenceContext.nonFixingMapper : inferenceContext.mapper); const sourceSignature = mapper ? instantiateSignature(contextualSignature, mapper) : contextualSignature; applyToParameterTypes(sourceSignature, signature, (source, target) => { inferTypes(context.inferences, source, target); }); if (!inferenceContext) { applyToReturnTypes(contextualSignature, signature, (source, target) => { inferTypes(context.inferences, source, target, 128); }); } return getSignatureInstantiation(signature, getInferredTypes(context), isInJSFile(contextualSignature.declaration)); } function inferJsxTypeArguments(node, signature, checkMode, context) { const paramType = getEffectiveFirstArgumentForJsxSignature(signature, node); const checkAttrType = checkExpressionWithContextualType(node.attributes, paramType, context, checkMode); inferTypes(context.inferences, checkAttrType, paramType); return getInferredTypes(context); } function getThisArgumentType(thisArgumentNode) { if (!thisArgumentNode) { return voidType; } const thisArgumentType = checkExpression(thisArgumentNode); return isRightSideOfInstanceofExpression(thisArgumentNode) ? thisArgumentType : isOptionalChainRoot(thisArgumentNode.parent) ? getNonNullableType(thisArgumentType) : isOptionalChain(thisArgumentNode.parent) ? removeOptionalTypeMarker(thisArgumentType) : thisArgumentType; } function inferTypeArguments(node, signature, args, checkMode, context) { if (isJsxOpeningLikeElement(node)) { return inferJsxTypeArguments(node, signature, checkMode, context); } if (node.kind !== 171 && node.kind !== 227) { const skipBindingPatterns = every(signature.typeParameters, (p) => !!getDefaultFromTypeParameter(p)); const contextualType = getContextualType2(node, skipBindingPatterns ? 8 : 0); if (contextualType) { const inferenceTargetType = getReturnTypeOfSignature(signature); if (couldContainTypeVariables(inferenceTargetType)) { const outerContext = getInferenceContext(node); const isFromBindingPattern = !skipBindingPatterns && getContextualType2(node, 8) !== contextualType; if (!isFromBindingPattern) { const outerMapper = getMapperFromContext(cloneInferenceContext(outerContext, 1)); const instantiatedType = instantiateType(contextualType, outerMapper); const contextualSignature = getSingleCallSignature(instantiatedType); const inferenceSourceType = contextualSignature && contextualSignature.typeParameters ? getOrCreateTypeFromSignature(getSignatureInstantiationWithoutFillingInTypeArguments(contextualSignature, contextualSignature.typeParameters)) : instantiatedType; inferTypes(context.inferences, inferenceSourceType, inferenceTargetType, 128); } const returnContext = createInferenceContext(signature.typeParameters, signature, context.flags); const returnSourceType = instantiateType(contextualType, outerContext && createOuterReturnMapper(outerContext)); inferTypes(returnContext.inferences, returnSourceType, inferenceTargetType); context.returnMapper = some(returnContext.inferences, hasInferenceCandidates) ? getMapperFromContext(cloneInferredPartOfContext(returnContext)) : undefined; } } } const restType = getNonArrayRestType(signature); const argCount = restType ? Math.min(getParameterCount(signature) - 1, args.length) : args.length; if (restType && restType.flags & 524288) { const info = find(context.inferences, (info2) => info2.typeParameter === restType); if (info) { info.impliedArity = findIndex(args, isSpreadArgument, argCount) < 0 ? args.length - argCount : undefined; } } const thisType = getThisTypeOfSignature(signature); if (thisType && couldContainTypeVariables(thisType)) { const thisArgumentNode = getThisArgumentOfCall(node); inferTypes(context.inferences, getThisArgumentType(thisArgumentNode), thisType); } for (let i = 0;i < argCount; i++) { const arg = args[i]; if (arg.kind !== 233) { const paramType = getTypeAtPosition(signature, i); if (couldContainTypeVariables(paramType)) { const argType = checkExpressionWithContextualType(arg, paramType, context, checkMode); inferTypes(context.inferences, argType, paramType); } } } if (restType && couldContainTypeVariables(restType)) { const spreadType = getSpreadArgumentType(args, argCount, args.length, restType, context, checkMode); inferTypes(context.inferences, spreadType, restType); } return getInferredTypes(context); } function getMutableArrayOrTupleType(type) { return type.flags & 134217728 ? mapType(type, getMutableArrayOrTupleType) : type.flags & 1 || isMutableArrayOrTuple(getBaseConstraintOfType(type) || type) ? type : isTupleType(type) ? createTupleType(getElementTypes(type), type.target.elementFlags, false, type.target.labeledElementDeclarations) : createTupleType([type], [8]); } function getSpreadArgumentType(args, index, argCount, restType, context, checkMode) { const inConstContext = isConstTypeVariable(restType); if (index >= argCount - 1) { const arg = args[argCount - 1]; if (isSpreadArgument(arg)) { const spreadType = arg.kind === 238 ? arg.type : checkExpressionWithContextualType(arg.expression, restType, context, checkMode); if (isArrayLikeType(spreadType)) { return getMutableArrayOrTupleType(spreadType); } return createArrayType(checkIteratedTypeOrElementType(33, spreadType, undefinedType, arg.kind === 231 ? arg.expression : arg), inConstContext); } } const types = []; const flags = []; const names = []; for (let i = index;i < argCount; i++) { const arg = args[i]; if (isSpreadArgument(arg)) { const spreadType = arg.kind === 238 ? arg.type : checkExpression(arg.expression); if (isArrayLikeType(spreadType)) { types.push(spreadType); flags.push(8); } else { types.push(checkIteratedTypeOrElementType(33, spreadType, undefinedType, arg.kind === 231 ? arg.expression : arg)); flags.push(4); } } else { const contextualType = isTupleType(restType) ? getContextualTypeForElementExpression(restType, i - index, argCount - index) || unknownType : getIndexedAccessType(restType, getNumberLiteralType(i - index), 256); const argType = checkExpressionWithContextualType(arg, contextualType, context, checkMode); const hasPrimitiveContextualType = inConstContext || maybeTypeOfKind(contextualType, 12713980 | 2097152 | 4194304 | 8388608); types.push(hasPrimitiveContextualType ? getRegularTypeOfLiteralType(argType) : getWidenedLiteralType(argType)); flags.push(1); } if (arg.kind === 238 && arg.tupleNameSource) { names.push(arg.tupleNameSource); } else { names.push(undefined); } } return createTupleType(types, flags, inConstContext && !someType(restType, isMutableArrayLikeType), names); } function checkTypeArguments(signature, typeArgumentNodes, reportErrors2, headMessage) { const isJavascript = isInJSFile(signature.declaration); const typeParameters = signature.typeParameters; const typeArgumentTypes = fillMissingTypeArguments(map(typeArgumentNodes, getTypeFromTypeNode), typeParameters, getMinTypeArgumentCount(typeParameters), isJavascript); let mapper; for (let i = 0;i < typeArgumentNodes.length; i++) { Debug.assert(typeParameters[i] !== undefined, "Should not call checkTypeArguments with too many type arguments"); const constraint = getConstraintOfTypeParameter(typeParameters[i]); if (constraint) { const errorInfo = reportErrors2 && headMessage ? () => chainDiagnosticMessages(undefined, Diagnostics.Type_0_does_not_satisfy_the_constraint_1) : undefined; const typeArgumentHeadMessage = headMessage || Diagnostics.Type_0_does_not_satisfy_the_constraint_1; if (!mapper) { mapper = createTypeMapper(typeParameters, typeArgumentTypes); } const typeArgument = typeArgumentTypes[i]; if (!checkTypeAssignableTo(typeArgument, getTypeWithThisArgument(instantiateType(constraint, mapper), typeArgument), reportErrors2 ? typeArgumentNodes[i] : undefined, typeArgumentHeadMessage, errorInfo)) { return; } } } return typeArgumentTypes; } function getJsxReferenceKind(node) { if (isJsxIntrinsicTagName(node.tagName)) { return 2; } const tagType = getApparentType(checkExpression(node.tagName)); if (length(getSignaturesOfType(tagType, 1))) { return 0; } if (length(getSignaturesOfType(tagType, 0))) { return 1; } return 2; } function checkApplicableSignatureForJsxCallLikeElement(node, signature, relation, checkMode, reportErrors2, containingMessageChain, errorOutputContainer) { const paramType = getEffectiveFirstArgumentForJsxSignature(signature, node); const attributesType = isJsxOpeningFragment(node) ? createJsxAttributesTypeFromAttributesProperty(node) : checkExpressionWithContextualType(node.attributes, paramType, undefined, checkMode); const checkAttributesType = checkMode & 4 ? getRegularTypeOfObjectLiteral(attributesType) : attributesType; return checkTagNameDoesNotExpectTooManyArguments() && checkTypeRelatedToAndOptionallyElaborate(checkAttributesType, paramType, relation, reportErrors2 ? isJsxOpeningFragment(node) ? node : node.tagName : undefined, isJsxOpeningFragment(node) ? undefined : node.attributes, undefined, containingMessageChain, errorOutputContainer); function checkTagNameDoesNotExpectTooManyArguments() { var _a; if (getJsxNamespaceContainerForImplicitImport(node)) { return true; } const tagType = (isJsxOpeningElement(node) || isJsxSelfClosingElement(node)) && !(isJsxIntrinsicTagName(node.tagName) || isJsxNamespacedName(node.tagName)) ? checkExpression(node.tagName) : undefined; if (!tagType) { return true; } const tagCallSignatures = getSignaturesOfType(tagType, 0); if (!length(tagCallSignatures)) { return true; } const factory2 = getJsxFactoryEntity(node); if (!factory2) { return true; } const factorySymbol = resolveEntityName(factory2, 111551, true, false, node); if (!factorySymbol) { return true; } const factoryType = getTypeOfSymbol(factorySymbol); const callSignatures = getSignaturesOfType(factoryType, 0); if (!length(callSignatures)) { return true; } let hasFirstParamSignatures = false; let maxParamCount = 0; for (const sig of callSignatures) { const firstparam = getTypeAtPosition(sig, 0); const signaturesOfParam = getSignaturesOfType(firstparam, 0); if (!length(signaturesOfParam)) continue; for (const paramSig of signaturesOfParam) { hasFirstParamSignatures = true; if (hasEffectiveRestParameter(paramSig)) { return true; } const paramCount = getParameterCount(paramSig); if (paramCount > maxParamCount) { maxParamCount = paramCount; } } } if (!hasFirstParamSignatures) { return true; } let absoluteMinArgCount = Infinity; for (const tagSig of tagCallSignatures) { const tagRequiredArgCount = getMinArgumentCount(tagSig); if (tagRequiredArgCount < absoluteMinArgCount) { absoluteMinArgCount = tagRequiredArgCount; } } if (absoluteMinArgCount <= maxParamCount) { return true; } if (reportErrors2) { const tagName = node.tagName; const diag2 = createDiagnosticForNode(tagName, Diagnostics.Tag_0_expects_at_least_1_arguments_but_the_JSX_factory_2_provides_at_most_3, entityNameToString(tagName), absoluteMinArgCount, entityNameToString(factory2), maxParamCount); const tagNameDeclaration = (_a = getSymbolAtLocation(tagName)) == null ? undefined : _a.valueDeclaration; if (tagNameDeclaration) { addRelatedInfo(diag2, createDiagnosticForNode(tagNameDeclaration, Diagnostics._0_is_declared_here, entityNameToString(tagName))); } if (errorOutputContainer && errorOutputContainer.skipLogging) { (errorOutputContainer.errors || (errorOutputContainer.errors = [])).push(diag2); } if (!errorOutputContainer.skipLogging) { diagnostics.add(diag2); } } return false; } } function getEffectiveCheckNode(argument) { const flags = isInJSFile(argument) ? 1 | 32 | -2147483648 : 1 | 32; return skipOuterExpressions(argument, flags); } function getSignatureApplicabilityError(node, args, signature, relation, checkMode, reportErrors2, containingMessageChain) { const errorOutputContainer = { errors: undefined, skipLogging: true }; if (isJsxCallLike(node)) { if (!checkApplicableSignatureForJsxCallLikeElement(node, signature, relation, checkMode, reportErrors2, containingMessageChain, errorOutputContainer)) { Debug.assert(!reportErrors2 || !!errorOutputContainer.errors, "jsx should have errors when reporting errors"); return errorOutputContainer.errors || emptyArray; } return; } const thisType = getThisTypeOfSignature(signature); if (thisType && thisType !== voidType && !(isNewExpression(node) || isCallExpression(node) && isSuperProperty(node.expression))) { const thisArgumentNode = getThisArgumentOfCall(node); const thisArgumentType = getThisArgumentType(thisArgumentNode); const errorNode = reportErrors2 ? thisArgumentNode || node : undefined; const headMessage2 = Diagnostics.The_this_context_of_type_0_is_not_assignable_to_method_s_this_of_type_1; if (!checkTypeRelatedTo(thisArgumentType, thisType, relation, errorNode, headMessage2, containingMessageChain, errorOutputContainer)) { Debug.assert(!reportErrors2 || !!errorOutputContainer.errors, "this parameter should have errors when reporting errors"); return errorOutputContainer.errors || emptyArray; } } const headMessage = Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1; const restType = getNonArrayRestType(signature); const argCount = restType ? Math.min(getParameterCount(signature) - 1, args.length) : args.length; for (let i = 0;i < argCount; i++) { const arg = args[i]; if (arg.kind !== 233) { const paramType = getTypeAtPosition(signature, i); const argType = checkExpressionWithContextualType(arg, paramType, undefined, checkMode); const checkArgType = checkMode & 4 ? getRegularTypeOfObjectLiteral(argType) : argType; const effectiveCheckArgumentNode = getEffectiveCheckNode(arg); if (!checkTypeRelatedToAndOptionallyElaborate(checkArgType, paramType, relation, reportErrors2 ? effectiveCheckArgumentNode : undefined, effectiveCheckArgumentNode, headMessage, containingMessageChain, errorOutputContainer)) { Debug.assert(!reportErrors2 || !!errorOutputContainer.errors, "parameter should have errors when reporting errors"); maybeAddMissingAwaitInfo(arg, checkArgType, paramType); return errorOutputContainer.errors || emptyArray; } } } if (restType) { const spreadType = getSpreadArgumentType(args, argCount, args.length, restType, undefined, checkMode); const restArgCount = args.length - argCount; const errorNode = !reportErrors2 ? undefined : restArgCount === 0 ? node : restArgCount === 1 ? getEffectiveCheckNode(args[argCount]) : setTextRangePosEnd(createSyntheticExpression(node, spreadType), args[argCount].pos, args[args.length - 1].end); if (!checkTypeRelatedTo(spreadType, restType, relation, errorNode, headMessage, undefined, errorOutputContainer)) { Debug.assert(!reportErrors2 || !!errorOutputContainer.errors, "rest parameter should have errors when reporting errors"); maybeAddMissingAwaitInfo(errorNode, spreadType, restType); return errorOutputContainer.errors || emptyArray; } } return; function maybeAddMissingAwaitInfo(errorNode, source, target) { if (errorNode && reportErrors2 && errorOutputContainer.errors && errorOutputContainer.errors.length) { if (getAwaitedTypeOfPromise(target)) { return; } const awaitedTypeOfSource = getAwaitedTypeOfPromise(source); if (awaitedTypeOfSource && isTypeRelatedTo(awaitedTypeOfSource, target, relation)) { addRelatedInfo(errorOutputContainer.errors[0], createDiagnosticForNode(errorNode, Diagnostics.Did_you_forget_to_use_await)); } } } } function getThisArgumentOfCall(node) { if (node.kind === 227) { return node.right; } const expression = node.kind === 214 ? node.expression : node.kind === 216 ? node.tag : node.kind === 171 && !legacyDecorators ? node.expression : undefined; if (expression) { const callee = skipOuterExpressions(expression); if (isAccessExpression(callee)) { return callee.expression; } } } function createSyntheticExpression(parent2, type, isSpread, tupleNameSource) { const result = parseNodeFactory.createSyntheticExpression(type, isSpread, tupleNameSource); setTextRange(result, parent2); setParent(result, parent2); return result; } function getEffectiveCallArguments(node) { if (isJsxOpeningFragment(node)) { return [createSyntheticExpression(node, emptyFreshJsxObjectType)]; } if (node.kind === 216) { const template = node.template; const args2 = [createSyntheticExpression(template, getGlobalTemplateStringsArrayType())]; if (template.kind === 229) { forEach(template.templateSpans, (span) => { args2.push(span.expression); }); } return args2; } if (node.kind === 171) { return getEffectiveDecoratorArguments(node); } if (node.kind === 227) { return [node.left]; } if (isJsxOpeningLikeElement(node)) { return node.attributes.properties.length > 0 || isJsxOpeningElement(node) && node.parent.children.length > 0 ? [node.attributes] : emptyArray; } const args = node.arguments || emptyArray; const spreadIndex = getSpreadArgumentIndex(args); if (spreadIndex >= 0) { const effectiveArgs = args.slice(0, spreadIndex); for (let i = spreadIndex;i < args.length; i++) { const arg = args[i]; const spreadType = arg.kind === 231 && (flowLoopCount ? checkExpression(arg.expression) : checkExpressionCached(arg.expression)); if (spreadType && isTupleType(spreadType)) { forEach(getElementTypes(spreadType), (t, i2) => { var _a; const flags = spreadType.target.elementFlags[i2]; const syntheticArg = createSyntheticExpression(arg, flags & 4 ? createArrayType(t) : t, !!(flags & 12), (_a = spreadType.target.labeledElementDeclarations) == null ? undefined : _a[i2]); effectiveArgs.push(syntheticArg); }); } else { effectiveArgs.push(arg); } } return effectiveArgs; } return args; } function getEffectiveDecoratorArguments(node) { const expr = node.expression; const signature = getDecoratorCallSignature(node); if (signature) { const args = []; for (const param of signature.parameters) { const type = getTypeOfSymbol(param); args.push(createSyntheticExpression(expr, type)); } return args; } return Debug.fail(); } function getDecoratorArgumentCount(node, signature) { return compilerOptions.experimentalDecorators ? getLegacyDecoratorArgumentCount(node, signature) : Math.min(Math.max(getParameterCount(signature), 1), 2); } function getLegacyDecoratorArgumentCount(node, signature) { switch (node.parent.kind) { case 264: case 232: return 1; case 173: return hasAccessorModifier(node.parent) ? 3 : 2; case 175: case 178: case 179: return signature.parameters.length <= 2 ? 2 : 3; case 170: return 3; default: return Debug.fail(); } } function getDiagnosticSpanForCallNode(node) { const sourceFile = getSourceFileOfNode(node); const { start, length: length2 } = getErrorSpanForNode(sourceFile, isPropertyAccessExpression(node.expression) ? node.expression.name : node.expression); return { start, length: length2, sourceFile }; } function getDiagnosticForCallNode(node, message, ...args) { if (isCallExpression(node)) { const { sourceFile, start, length: length2 } = getDiagnosticSpanForCallNode(node); if ("message" in message) { return createFileDiagnostic(sourceFile, start, length2, message, ...args); } return createDiagnosticForFileFromMessageChain(sourceFile, message); } else { if ("message" in message) { return createDiagnosticForNode(node, message, ...args); } return createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(node), node, message); } } function getErrorNodeForCallNode(callLike) { if (isCallOrNewExpression(callLike)) { return isPropertyAccessExpression(callLike.expression) ? callLike.expression.name : callLike.expression; } if (isTaggedTemplateExpression(callLike)) { return isPropertyAccessExpression(callLike.tag) ? callLike.tag.name : callLike.tag; } if (isJsxOpeningLikeElement(callLike)) { return callLike.tagName; } return callLike; } function isPromiseResolveArityError(node) { if (!isCallExpression(node) || !isIdentifier(node.expression)) return false; const symbol = resolveName(node.expression, node.expression.escapedText, 111551, undefined, false); const decl = symbol == null ? undefined : symbol.valueDeclaration; if (!decl || !isParameter(decl) || !isFunctionExpressionOrArrowFunction(decl.parent) || !isNewExpression(decl.parent.parent) || !isIdentifier(decl.parent.parent.expression)) { return false; } const globalPromiseSymbol = getGlobalPromiseConstructorSymbol(false); if (!globalPromiseSymbol) return false; const constructorSymbol = getSymbolAtLocation(decl.parent.parent.expression, true); return constructorSymbol === globalPromiseSymbol; } function getArgumentArityError(node, signatures, args, headMessage) { var _a; const spreadIndex = getSpreadArgumentIndex(args); if (spreadIndex > -1) { return createDiagnosticForNode(args[spreadIndex], Diagnostics.A_spread_argument_must_either_have_a_tuple_type_or_be_passed_to_a_rest_parameter); } let min2 = Number.POSITIVE_INFINITY; let max = Number.NEGATIVE_INFINITY; let maxBelow = Number.NEGATIVE_INFINITY; let minAbove = Number.POSITIVE_INFINITY; let closestSignature; for (const sig of signatures) { const minParameter = getMinArgumentCount(sig); const maxParameter = getParameterCount(sig); if (minParameter < min2) { min2 = minParameter; closestSignature = sig; } max = Math.max(max, maxParameter); if (minParameter < args.length && minParameter > maxBelow) maxBelow = minParameter; if (args.length < maxParameter && maxParameter < minAbove) minAbove = maxParameter; } const hasRestParameter2 = some(signatures, hasEffectiveRestParameter); const parameterRange = hasRestParameter2 ? min2 : min2 < max ? min2 + "-" + max : min2; const isVoidPromiseError = !hasRestParameter2 && parameterRange === 1 && args.length === 0 && isPromiseResolveArityError(node); if (isVoidPromiseError && isInJSFile(node)) { return getDiagnosticForCallNode(node, Diagnostics.Expected_1_argument_but_got_0_new_Promise_needs_a_JSDoc_hint_to_produce_a_resolve_that_can_be_called_without_arguments); } const error3 = isDecorator(node) ? hasRestParameter2 ? Diagnostics.The_runtime_will_invoke_the_decorator_with_1_arguments_but_the_decorator_expects_at_least_0 : Diagnostics.The_runtime_will_invoke_the_decorator_with_1_arguments_but_the_decorator_expects_0 : hasRestParameter2 ? Diagnostics.Expected_at_least_0_arguments_but_got_1 : isVoidPromiseError ? Diagnostics.Expected_0_arguments_but_got_1_Did_you_forget_to_include_void_in_your_type_argument_to_Promise : Diagnostics.Expected_0_arguments_but_got_1; if (min2 < args.length && args.length < max) { if (headMessage) { let chain = chainDiagnosticMessages(undefined, Diagnostics.No_overload_expects_0_arguments_but_overloads_do_exist_that_expect_either_1_or_2_arguments, args.length, maxBelow, minAbove); chain = chainDiagnosticMessages(chain, headMessage); return getDiagnosticForCallNode(node, chain); } return getDiagnosticForCallNode(node, Diagnostics.No_overload_expects_0_arguments_but_overloads_do_exist_that_expect_either_1_or_2_arguments, args.length, maxBelow, minAbove); } else if (args.length < min2) { let diagnostic; if (headMessage) { let chain = chainDiagnosticMessages(undefined, error3, parameterRange, args.length); chain = chainDiagnosticMessages(chain, headMessage); diagnostic = getDiagnosticForCallNode(node, chain); } else { diagnostic = getDiagnosticForCallNode(node, error3, parameterRange, args.length); } const parameter = (_a = closestSignature == null ? undefined : closestSignature.declaration) == null ? undefined : _a.parameters[closestSignature.thisParameter ? args.length + 1 : args.length]; if (parameter) { const messageAndArgs = isBindingPattern(parameter.name) ? [Diagnostics.An_argument_matching_this_binding_pattern_was_not_provided] : isRestParameter(parameter) ? [Diagnostics.Arguments_for_the_rest_parameter_0_were_not_provided, idText(getFirstIdentifier(parameter.name))] : [Diagnostics.An_argument_for_0_was_not_provided, !parameter.name ? args.length : idText(getFirstIdentifier(parameter.name))]; const parameterError = createDiagnosticForNode(parameter, ...messageAndArgs); return addRelatedInfo(diagnostic, parameterError); } return diagnostic; } else { const errorSpan = factory.createNodeArray(args.slice(max)); const pos = first(errorSpan).pos; let end = last(errorSpan).end; if (end === pos) { end++; } setTextRangePosEnd(errorSpan, pos, end); if (headMessage) { let chain = chainDiagnosticMessages(undefined, error3, parameterRange, args.length); chain = chainDiagnosticMessages(chain, headMessage); return createDiagnosticForNodeArrayFromMessageChain(getSourceFileOfNode(node), errorSpan, chain); } return createDiagnosticForNodeArray(getSourceFileOfNode(node), errorSpan, error3, parameterRange, args.length); } } function getTypeArgumentArityError(node, signatures, typeArguments, headMessage) { const argCount = typeArguments.length; if (signatures.length === 1) { const sig = signatures[0]; const min2 = getMinTypeArgumentCount(sig.typeParameters); const max = length(sig.typeParameters); if (headMessage) { let chain = chainDiagnosticMessages(undefined, Diagnostics.Expected_0_type_arguments_but_got_1, min2 < max ? min2 + "-" + max : min2, argCount); chain = chainDiagnosticMessages(chain, headMessage); return createDiagnosticForNodeArrayFromMessageChain(getSourceFileOfNode(node), typeArguments, chain); } return createDiagnosticForNodeArray(getSourceFileOfNode(node), typeArguments, Diagnostics.Expected_0_type_arguments_but_got_1, min2 < max ? min2 + "-" + max : min2, argCount); } let belowArgCount = -Infinity; let aboveArgCount = Infinity; for (const sig of signatures) { const min2 = getMinTypeArgumentCount(sig.typeParameters); const max = length(sig.typeParameters); if (min2 > argCount) { aboveArgCount = Math.min(aboveArgCount, min2); } else if (max < argCount) { belowArgCount = Math.max(belowArgCount, max); } } if (belowArgCount !== -Infinity && aboveArgCount !== Infinity) { if (headMessage) { let chain = chainDiagnosticMessages(undefined, Diagnostics.No_overload_expects_0_type_arguments_but_overloads_do_exist_that_expect_either_1_or_2_type_arguments, argCount, belowArgCount, aboveArgCount); chain = chainDiagnosticMessages(chain, headMessage); return createDiagnosticForNodeArrayFromMessageChain(getSourceFileOfNode(node), typeArguments, chain); } return createDiagnosticForNodeArray(getSourceFileOfNode(node), typeArguments, Diagnostics.No_overload_expects_0_type_arguments_but_overloads_do_exist_that_expect_either_1_or_2_type_arguments, argCount, belowArgCount, aboveArgCount); } if (headMessage) { let chain = chainDiagnosticMessages(undefined, Diagnostics.Expected_0_type_arguments_but_got_1, belowArgCount === -Infinity ? aboveArgCount : belowArgCount, argCount); chain = chainDiagnosticMessages(chain, headMessage); return createDiagnosticForNodeArrayFromMessageChain(getSourceFileOfNode(node), typeArguments, chain); } return createDiagnosticForNodeArray(getSourceFileOfNode(node), typeArguments, Diagnostics.Expected_0_type_arguments_but_got_1, belowArgCount === -Infinity ? aboveArgCount : belowArgCount, argCount); } function resolveCall(node, signatures, candidatesOutArray, checkMode, callChainFlags, headMessage) { const isTaggedTemplate = node.kind === 216; const isDecorator2 = node.kind === 171; const isJsxOpeningOrSelfClosingElement = isJsxOpeningLikeElement(node); const isJsxOpenFragment = isJsxOpeningFragment(node); const isInstanceof = node.kind === 227; const reportErrors2 = !isInferencePartiallyBlocked && !candidatesOutArray; let candidatesForArgumentError; let candidateForArgumentArityError; let candidateForTypeArgumentError; let result; let argCheckMode = 0; let candidates = []; let typeArguments; if (!isDecorator2 && !isInstanceof && !isSuperCall(node) && !isJsxOpenFragment) { typeArguments = node.typeArguments; if (isTaggedTemplate || isJsxOpeningOrSelfClosingElement || node.expression.kind !== 108) { forEach(typeArguments, checkSourceElement); } } candidates = candidatesOutArray || []; reorderCandidates(signatures, candidates, callChainFlags); if (!isJsxOpenFragment) { if (!candidates.length) { if (reportErrors2) { diagnostics.add(getDiagnosticForCallNode(node, Diagnostics.Call_target_does_not_contain_any_signatures)); } return resolveErrorCall(node); } } const args = getEffectiveCallArguments(node); const isSingleNonGenericCandidate = candidates.length === 1 && !candidates[0].typeParameters; if (!isDecorator2 && !isSingleNonGenericCandidate && some(args, isContextSensitive)) { argCheckMode = 4; } const signatureHelpTrailingComma = !!(checkMode & 16) && node.kind === 214 && node.arguments.hasTrailingComma; if (candidates.length > 1) { result = chooseOverload(candidates, subtypeRelation, isSingleNonGenericCandidate, signatureHelpTrailingComma); } if (!result) { result = chooseOverload(candidates, assignableRelation, isSingleNonGenericCandidate, signatureHelpTrailingComma); } const links = getNodeLinks(node); if (links.resolvedSignature !== resolvingSignature && !candidatesOutArray) { Debug.assert(links.resolvedSignature); return links.resolvedSignature; } if (result) { return result; } result = getCandidateForOverloadFailure(node, candidates, args, !!candidatesOutArray, checkMode); links.resolvedSignature = result; if (reportErrors2) { if (!headMessage && isInstanceof) { headMessage = Diagnostics.The_left_hand_side_of_an_instanceof_expression_must_be_assignable_to_the_first_argument_of_the_right_hand_side_s_Symbol_hasInstance_method; } if (candidatesForArgumentError) { if (candidatesForArgumentError.length === 1 || candidatesForArgumentError.length > 3) { const last2 = candidatesForArgumentError[candidatesForArgumentError.length - 1]; let chain; if (candidatesForArgumentError.length > 3) { chain = chainDiagnosticMessages(chain, Diagnostics.The_last_overload_gave_the_following_error); chain = chainDiagnosticMessages(chain, Diagnostics.No_overload_matches_this_call); } if (headMessage) { chain = chainDiagnosticMessages(chain, headMessage); } const diags = getSignatureApplicabilityError(node, args, last2, assignableRelation, 0, true, () => chain); if (diags) { for (const d of diags) { if (last2.declaration && candidatesForArgumentError.length > 3) { addRelatedInfo(d, createDiagnosticForNode(last2.declaration, Diagnostics.The_last_overload_is_declared_here)); } addImplementationSuccessElaboration(last2, d); diagnostics.add(d); } } else { Debug.fail("No error for last overload signature"); } } else { const allDiagnostics = []; let max = 0; let min2 = Number.MAX_VALUE; let minIndex = 0; let i = 0; for (const c of candidatesForArgumentError) { const chain2 = () => chainDiagnosticMessages(undefined, Diagnostics.Overload_0_of_1_2_gave_the_following_error, i + 1, candidates.length, signatureToString(c)); const diags2 = getSignatureApplicabilityError(node, args, c, assignableRelation, 0, true, chain2); if (diags2) { if (diags2.length <= min2) { min2 = diags2.length; minIndex = i; } max = Math.max(max, diags2.length); allDiagnostics.push(diags2); } else { Debug.fail("No error for 3 or fewer overload signatures"); } i++; } const diags = max > 1 ? allDiagnostics[minIndex] : flatten(allDiagnostics); Debug.assert(diags.length > 0, "No errors reported for 3 or fewer overload signatures"); let chain = chainDiagnosticMessages(map(diags, createDiagnosticMessageChainFromDiagnostic), Diagnostics.No_overload_matches_this_call); if (headMessage) { chain = chainDiagnosticMessages(chain, headMessage); } const related = [...flatMap(diags, (d) => d.relatedInformation)]; let diag2; if (every(diags, (d) => d.start === diags[0].start && d.length === diags[0].length && d.file === diags[0].file)) { const { file, start, length: length2 } = diags[0]; diag2 = { file, start, length: length2, code: chain.code, category: chain.category, messageText: chain, relatedInformation: related }; } else { diag2 = createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(node), getErrorNodeForCallNode(node), chain, related); } addImplementationSuccessElaboration(candidatesForArgumentError[0], diag2); diagnostics.add(diag2); } } else if (candidateForArgumentArityError) { diagnostics.add(getArgumentArityError(node, [candidateForArgumentArityError], args, headMessage)); } else if (candidateForTypeArgumentError) { checkTypeArguments(candidateForTypeArgumentError, node.typeArguments, true, headMessage); } else if (!isJsxOpenFragment) { const signaturesWithCorrectTypeArgumentArity = filter(signatures, (s) => hasCorrectTypeArgumentArity(s, typeArguments)); if (signaturesWithCorrectTypeArgumentArity.length === 0) { diagnostics.add(getTypeArgumentArityError(node, signatures, typeArguments, headMessage)); } else { diagnostics.add(getArgumentArityError(node, signaturesWithCorrectTypeArgumentArity, args, headMessage)); } } } return result; function addImplementationSuccessElaboration(failed2, diagnostic) { var _a, _b; const oldCandidatesForArgumentError = candidatesForArgumentError; const oldCandidateForArgumentArityError = candidateForArgumentArityError; const oldCandidateForTypeArgumentError = candidateForTypeArgumentError; const failedSignatureDeclarations = ((_b = (_a = failed2.declaration) == null ? undefined : _a.symbol) == null ? undefined : _b.declarations) || emptyArray; const isOverload2 = failedSignatureDeclarations.length > 1; const implDecl = isOverload2 ? find(failedSignatureDeclarations, (d) => isFunctionLikeDeclaration(d) && nodeIsPresent(d.body)) : undefined; if (implDecl) { const candidate = getSignatureFromDeclaration(implDecl); const isSingleNonGenericCandidate2 = !candidate.typeParameters; if (chooseOverload([candidate], assignableRelation, isSingleNonGenericCandidate2)) { addRelatedInfo(diagnostic, createDiagnosticForNode(implDecl, Diagnostics.The_call_would_have_succeeded_against_this_implementation_but_implementation_signatures_of_overloads_are_not_externally_visible)); } } candidatesForArgumentError = oldCandidatesForArgumentError; candidateForArgumentArityError = oldCandidateForArgumentArityError; candidateForTypeArgumentError = oldCandidateForTypeArgumentError; } function chooseOverload(candidates2, relation, isSingleNonGenericCandidate2, signatureHelpTrailingComma2 = false) { candidatesForArgumentError = undefined; candidateForArgumentArityError = undefined; candidateForTypeArgumentError = undefined; if (isSingleNonGenericCandidate2) { const candidate = candidates2[0]; if (some(typeArguments) || !hasCorrectArity(node, args, candidate, signatureHelpTrailingComma2)) { return; } if (getSignatureApplicabilityError(node, args, candidate, relation, 0, false, undefined)) { candidatesForArgumentError = [candidate]; return; } return candidate; } for (let candidateIndex = 0;candidateIndex < candidates2.length; candidateIndex++) { const candidate = candidates2[candidateIndex]; if (!hasCorrectTypeArgumentArity(candidate, typeArguments) || !hasCorrectArity(node, args, candidate, signatureHelpTrailingComma2)) { continue; } let checkCandidate; let inferenceContext; if (candidate.typeParameters) { let typeArgumentTypes; if (some(typeArguments)) { typeArgumentTypes = checkTypeArguments(candidate, typeArguments, false); if (!typeArgumentTypes) { candidateForTypeArgumentError = candidate; continue; } } else { inferenceContext = createInferenceContext(candidate.typeParameters, candidate, isInJSFile(node) ? 2 : 0); typeArgumentTypes = inferTypeArguments(node, candidate, args, argCheckMode | 8, inferenceContext); argCheckMode |= inferenceContext.flags & 4 ? 8 : 0; } checkCandidate = getSignatureInstantiation(candidate, typeArgumentTypes, isInJSFile(candidate.declaration), inferenceContext && inferenceContext.inferredTypeParameters); if (getNonArrayRestType(candidate) && !hasCorrectArity(node, args, checkCandidate, signatureHelpTrailingComma2)) { candidateForArgumentArityError = checkCandidate; continue; } } else { checkCandidate = candidate; } if (getSignatureApplicabilityError(node, args, checkCandidate, relation, argCheckMode, false, undefined)) { (candidatesForArgumentError || (candidatesForArgumentError = [])).push(checkCandidate); continue; } if (argCheckMode) { argCheckMode = 0; if (inferenceContext) { const typeArgumentTypes = inferTypeArguments(node, candidate, args, argCheckMode, inferenceContext); checkCandidate = getSignatureInstantiation(candidate, typeArgumentTypes, isInJSFile(candidate.declaration), inferenceContext.inferredTypeParameters); if (getNonArrayRestType(candidate) && !hasCorrectArity(node, args, checkCandidate, signatureHelpTrailingComma2)) { candidateForArgumentArityError = checkCandidate; continue; } } if (getSignatureApplicabilityError(node, args, checkCandidate, relation, argCheckMode, false, undefined)) { (candidatesForArgumentError || (candidatesForArgumentError = [])).push(checkCandidate); continue; } } candidates2[candidateIndex] = checkCandidate; return checkCandidate; } return; } } function getCandidateForOverloadFailure(node, candidates, args, hasCandidatesOutArray, checkMode) { Debug.assert(candidates.length > 0); checkNodeDeferred(node); return hasCandidatesOutArray || candidates.length === 1 || candidates.some((c) => !!c.typeParameters) ? pickLongestCandidateSignature(node, candidates, args, checkMode) : createUnionOfSignaturesForOverloadFailure(candidates); } function createUnionOfSignaturesForOverloadFailure(candidates) { const thisParameters = mapDefined(candidates, (c) => c.thisParameter); let thisParameter; if (thisParameters.length) { thisParameter = createCombinedSymbolFromTypes(thisParameters, thisParameters.map(getTypeOfParameter)); } const { min: minArgumentCount, max: maxNonRestParam } = minAndMax(candidates, getNumNonRestParameters); const parameters = []; for (let i = 0;i < maxNonRestParam; i++) { const symbols = mapDefined(candidates, (s) => signatureHasRestParameter(s) ? i < s.parameters.length - 1 ? s.parameters[i] : last(s.parameters) : i < s.parameters.length ? s.parameters[i] : undefined); Debug.assert(symbols.length !== 0); parameters.push(createCombinedSymbolFromTypes(symbols, mapDefined(candidates, (candidate) => tryGetTypeAtPosition(candidate, i)))); } const restParameterSymbols = mapDefined(candidates, (c) => signatureHasRestParameter(c) ? last(c.parameters) : undefined); let flags = 128; if (restParameterSymbols.length !== 0) { const type = createArrayType(getUnionType(mapDefined(candidates, tryGetRestTypeOfSignature), 2)); parameters.push(createCombinedSymbolForOverloadFailure(restParameterSymbols, type)); flags |= 1; } if (candidates.some(signatureHasLiteralTypes)) { flags |= 2; } return createSignature(candidates[0].declaration, undefined, thisParameter, parameters, getIntersectionType(candidates.map(getReturnTypeOfSignature)), undefined, minArgumentCount, flags); } function getNumNonRestParameters(signature) { const numParams = signature.parameters.length; return signatureHasRestParameter(signature) ? numParams - 1 : numParams; } function createCombinedSymbolFromTypes(sources, types) { return createCombinedSymbolForOverloadFailure(sources, getUnionType(types, 2)); } function createCombinedSymbolForOverloadFailure(sources, type) { return createSymbolWithType(first(sources), type); } function pickLongestCandidateSignature(node, candidates, args, checkMode) { const bestIndex = getLongestCandidateIndex(candidates, apparentArgumentCount === undefined ? args.length : apparentArgumentCount); const candidate = candidates[bestIndex]; const { typeParameters } = candidate; if (!typeParameters) { return candidate; } const typeArgumentNodes = callLikeExpressionMayHaveTypeArguments(node) ? node.typeArguments : undefined; const instantiated = typeArgumentNodes ? createSignatureInstantiation(candidate, getTypeArgumentsFromNodes(typeArgumentNodes, typeParameters, isInJSFile(node))) : inferSignatureInstantiationForOverloadFailure(node, typeParameters, candidate, args, checkMode); candidates[bestIndex] = instantiated; return instantiated; } function getTypeArgumentsFromNodes(typeArgumentNodes, typeParameters, isJs) { const typeArguments = typeArgumentNodes.map(getTypeOfNode); while (typeArguments.length > typeParameters.length) { typeArguments.pop(); } while (typeArguments.length < typeParameters.length) { typeArguments.push(getDefaultFromTypeParameter(typeParameters[typeArguments.length]) || getConstraintOfTypeParameter(typeParameters[typeArguments.length]) || getDefaultTypeArgumentType(isJs)); } return typeArguments; } function inferSignatureInstantiationForOverloadFailure(node, typeParameters, candidate, args, checkMode) { const inferenceContext = createInferenceContext(typeParameters, candidate, isInJSFile(node) ? 2 : 0); const typeArgumentTypes = inferTypeArguments(node, candidate, args, checkMode | 4 | 8, inferenceContext); return createSignatureInstantiation(candidate, typeArgumentTypes); } function getLongestCandidateIndex(candidates, argsCount) { let maxParamsIndex = -1; let maxParams = -1; for (let i = 0;i < candidates.length; i++) { const candidate = candidates[i]; const paramCount = getParameterCount(candidate); if (hasEffectiveRestParameter(candidate) || paramCount >= argsCount) { return i; } if (paramCount > maxParams) { maxParams = paramCount; maxParamsIndex = i; } } return maxParamsIndex; } function resolveCallExpression(node, candidatesOutArray, checkMode) { if (node.expression.kind === 108) { const superType = checkSuperExpression(node.expression); if (isTypeAny(superType)) { for (const arg of node.arguments) { checkExpression(arg); } return anySignature; } if (!isErrorType(superType)) { const baseTypeNode = getEffectiveBaseTypeNode(getContainingClass(node)); if (baseTypeNode) { const baseConstructors = getInstantiatedConstructorsForTypeArguments(superType, baseTypeNode.typeArguments, baseTypeNode); return resolveCall(node, baseConstructors, candidatesOutArray, checkMode, 0); } } return resolveUntypedCall(node); } let callChainFlags; let funcType = checkExpression(node.expression); if (isCallChain(node)) { const nonOptionalType = getOptionalExpressionType(funcType, node.expression); callChainFlags = nonOptionalType === funcType ? 0 : isOutermostOptionalChain(node) ? 16 : 8; funcType = nonOptionalType; } else { callChainFlags = 0; } funcType = checkNonNullTypeWithReporter(funcType, node.expression, reportCannotInvokePossiblyNullOrUndefinedError); if (funcType === silentNeverType) { return silentNeverSignature; } const apparentType = getApparentType(funcType); if (isErrorType(apparentType)) { return resolveErrorCall(node); } const callSignatures = getSignaturesOfType(apparentType, 0); const numConstructSignatures = getSignaturesOfType(apparentType, 1).length; if (isUntypedFunctionCall(funcType, apparentType, callSignatures.length, numConstructSignatures)) { if (!isErrorType(funcType) && node.typeArguments) { error2(node, Diagnostics.Untyped_function_calls_may_not_accept_type_arguments); } return resolveUntypedCall(node); } if (!callSignatures.length) { if (numConstructSignatures) { error2(node, Diagnostics.Value_of_type_0_is_not_callable_Did_you_mean_to_include_new, typeToString(funcType)); } else { let relatedInformation; if (node.arguments.length === 1) { const text = getSourceFileOfNode(node).text; if (isLineBreak(text.charCodeAt(skipTrivia2(text, node.expression.end, true) - 1))) { relatedInformation = createDiagnosticForNode(node.expression, Diagnostics.Are_you_missing_a_semicolon); } } invocationError(node.expression, apparentType, 0, relatedInformation); } return resolveErrorCall(node); } if (checkMode & 8 && !node.typeArguments && callSignatures.some(isGenericFunctionReturningFunction)) { skippedGenericFunction(node, checkMode); return resolvingSignature; } if (callSignatures.some((sig) => isInJSFile(sig.declaration) && !!getJSDocClassTag(sig.declaration))) { error2(node, Diagnostics.Value_of_type_0_is_not_callable_Did_you_mean_to_include_new, typeToString(funcType)); return resolveErrorCall(node); } return resolveCall(node, callSignatures, candidatesOutArray, checkMode, callChainFlags); } function isGenericFunctionReturningFunction(signature) { return !!(signature.typeParameters && isFunctionType(getReturnTypeOfSignature(signature))); } function isUntypedFunctionCall(funcType, apparentFuncType, numCallSignatures, numConstructSignatures) { return isTypeAny(funcType) || isTypeAny(apparentFuncType) && !!(funcType.flags & 524288) || !numCallSignatures && !numConstructSignatures && !(apparentFuncType.flags & 134217728) && !(getReducedType(apparentFuncType).flags & 262144) && isTypeAssignableTo(funcType, globalFunctionType); } function resolveNewExpression(node, candidatesOutArray, checkMode) { let expressionType = checkNonNullExpression(node.expression); if (expressionType === silentNeverType) { return silentNeverSignature; } expressionType = getApparentType(expressionType); if (isErrorType(expressionType)) { return resolveErrorCall(node); } if (isTypeAny(expressionType)) { if (node.typeArguments) { error2(node, Diagnostics.Untyped_function_calls_may_not_accept_type_arguments); } return resolveUntypedCall(node); } const constructSignatures = getSignaturesOfType(expressionType, 1); if (constructSignatures.length) { if (!isConstructorAccessible(node, constructSignatures[0])) { return resolveErrorCall(node); } if (someSignature(constructSignatures, (signature) => !!(signature.flags & 4))) { error2(node, Diagnostics.Cannot_create_an_instance_of_an_abstract_class); return resolveErrorCall(node); } const valueDecl = expressionType.symbol && getClassLikeDeclarationOfSymbol(expressionType.symbol); if (valueDecl && hasSyntacticModifier(valueDecl, 64)) { error2(node, Diagnostics.Cannot_create_an_instance_of_an_abstract_class); return resolveErrorCall(node); } return resolveCall(node, constructSignatures, candidatesOutArray, checkMode, 0); } const callSignatures = getSignaturesOfType(expressionType, 0); if (callSignatures.length) { const signature = resolveCall(node, callSignatures, candidatesOutArray, checkMode, 0); if (!noImplicitAny) { if (signature.declaration && !isJSConstructor(signature.declaration) && getReturnTypeOfSignature(signature) !== voidType) { error2(node, Diagnostics.Only_a_void_function_can_be_called_with_the_new_keyword); } if (getThisTypeOfSignature(signature) === voidType) { error2(node, Diagnostics.A_function_that_is_called_with_the_new_keyword_cannot_have_a_this_type_that_is_void); } } return signature; } invocationError(node.expression, expressionType, 1); return resolveErrorCall(node); } function someSignature(signatures, f) { if (isArray(signatures)) { return some(signatures, (signature) => someSignature(signature, f)); } return signatures.compositeKind === 134217728 ? some(signatures.compositeSignatures, f) : f(signatures); } function typeHasProtectedAccessibleBase(target, type) { const baseTypes = getBaseTypes(type); if (!length(baseTypes)) { return false; } const firstBase = baseTypes[0]; if (firstBase.flags & 268435456) { const types = firstBase.types; const mixinFlags = findMixins(types); let i = 0; for (const intersectionMember of firstBase.types) { if (!mixinFlags[i]) { if (getObjectFlags(intersectionMember) & (1 | 2)) { if (intersectionMember.symbol === target) { return true; } if (typeHasProtectedAccessibleBase(target, intersectionMember)) { return true; } } } i++; } return false; } if (firstBase.symbol === target) { return true; } return typeHasProtectedAccessibleBase(target, firstBase); } function isConstructorAccessible(node, signature) { if (!signature || !signature.declaration) { return true; } const declaration = signature.declaration; const modifiers = getSelectedEffectiveModifierFlags(declaration, 6); if (!modifiers || declaration.kind !== 177) { return true; } const declaringClassDeclaration = getClassLikeDeclarationOfSymbol(declaration.parent.symbol); const declaringClass = getDeclaredTypeOfSymbol(declaration.parent.symbol); if (!isNodeWithinClass(node, declaringClassDeclaration)) { const containingClass = getContainingClass(node); if (containingClass && modifiers & 4) { const containingType = getTypeOfNode(containingClass); if (typeHasProtectedAccessibleBase(declaration.parent.symbol, containingType)) { return true; } } if (modifiers & 2) { error2(node, Diagnostics.Constructor_of_class_0_is_private_and_only_accessible_within_the_class_declaration, typeToString(declaringClass)); } if (modifiers & 4) { error2(node, Diagnostics.Constructor_of_class_0_is_protected_and_only_accessible_within_the_class_declaration, typeToString(declaringClass)); } return false; } return true; } function invocationErrorDetails(errorTarget, apparentType, kind) { let errorInfo; const isCall = kind === 0; const awaitedType = getAwaitedType(apparentType); const maybeMissingAwait = awaitedType && getSignaturesOfType(awaitedType, kind).length > 0; if (apparentType.flags & 134217728) { const types = apparentType.types; let hasSignatures2 = false; for (const constituent of types) { const signatures = getSignaturesOfType(constituent, kind); if (signatures.length !== 0) { hasSignatures2 = true; if (errorInfo) { break; } } else { if (!errorInfo) { errorInfo = chainDiagnosticMessages(errorInfo, isCall ? Diagnostics.Type_0_has_no_call_signatures : Diagnostics.Type_0_has_no_construct_signatures, typeToString(constituent)); errorInfo = chainDiagnosticMessages(errorInfo, isCall ? Diagnostics.Not_all_constituents_of_type_0_are_callable : Diagnostics.Not_all_constituents_of_type_0_are_constructable, typeToString(apparentType)); } if (hasSignatures2) { break; } } } if (!hasSignatures2) { errorInfo = chainDiagnosticMessages(undefined, isCall ? Diagnostics.No_constituent_of_type_0_is_callable : Diagnostics.No_constituent_of_type_0_is_constructable, typeToString(apparentType)); } if (!errorInfo) { errorInfo = chainDiagnosticMessages(errorInfo, isCall ? Diagnostics.Each_member_of_the_union_type_0_has_signatures_but_none_of_those_signatures_are_compatible_with_each_other : Diagnostics.Each_member_of_the_union_type_0_has_construct_signatures_but_none_of_those_signatures_are_compatible_with_each_other, typeToString(apparentType)); } } else { errorInfo = chainDiagnosticMessages(errorInfo, isCall ? Diagnostics.Type_0_has_no_call_signatures : Diagnostics.Type_0_has_no_construct_signatures, typeToString(apparentType)); } let headMessage = isCall ? Diagnostics.This_expression_is_not_callable : Diagnostics.This_expression_is_not_constructable; if (isCallExpression(errorTarget.parent) && errorTarget.parent.arguments.length === 0) { const { resolvedSymbol } = getNodeLinks(errorTarget); if (resolvedSymbol && resolvedSymbol.flags & 32768) { headMessage = Diagnostics.This_expression_is_not_callable_because_it_is_a_get_accessor_Did_you_mean_to_use_it_without; } } return { messageChain: chainDiagnosticMessages(errorInfo, headMessage), relatedMessage: maybeMissingAwait ? Diagnostics.Did_you_forget_to_use_await : undefined }; } function invocationError(errorTarget, apparentType, kind, relatedInformation) { const { messageChain, relatedMessage: relatedInfo } = invocationErrorDetails(errorTarget, apparentType, kind); const diagnostic = createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(errorTarget), errorTarget, messageChain); if (relatedInfo) { addRelatedInfo(diagnostic, createDiagnosticForNode(errorTarget, relatedInfo)); } if (isCallExpression(errorTarget.parent)) { const { start, length: length2 } = getDiagnosticSpanForCallNode(errorTarget.parent); diagnostic.start = start; diagnostic.length = length2; } diagnostics.add(diagnostic); invocationErrorRecovery(apparentType, kind, relatedInformation ? addRelatedInfo(diagnostic, relatedInformation) : diagnostic); } function invocationErrorRecovery(apparentType, kind, diagnostic) { if (!apparentType.symbol) { return; } const importNode = getSymbolLinks(apparentType.symbol).originatingImport; if (importNode && !isImportCall(importNode)) { const sigs = getSignaturesOfType(getTypeOfSymbol(getSymbolLinks(apparentType.symbol).target), kind); if (!sigs || !sigs.length) return; addRelatedInfo(diagnostic, createDiagnosticForNode(importNode, Diagnostics.Type_originates_at_this_import_A_namespace_style_import_cannot_be_called_or_constructed_and_will_cause_a_failure_at_runtime_Consider_using_a_default_import_or_import_require_here_instead)); } } function resolveTaggedTemplateExpression(node, candidatesOutArray, checkMode) { const tagType = checkExpression(node.tag); const apparentType = getApparentType(tagType); if (isErrorType(apparentType)) { return resolveErrorCall(node); } const callSignatures = getSignaturesOfType(apparentType, 0); const numConstructSignatures = getSignaturesOfType(apparentType, 1).length; if (isUntypedFunctionCall(tagType, apparentType, callSignatures.length, numConstructSignatures)) { return resolveUntypedCall(node); } if (!callSignatures.length) { if (isArrayLiteralExpression(node.parent)) { const diagnostic = createDiagnosticForNode(node.tag, Diagnostics.It_is_likely_that_you_are_missing_a_comma_to_separate_these_two_template_expressions_They_form_a_tagged_template_expression_which_cannot_be_invoked); diagnostics.add(diagnostic); return resolveErrorCall(node); } invocationError(node.tag, apparentType, 0); return resolveErrorCall(node); } return resolveCall(node, callSignatures, candidatesOutArray, checkMode, 0); } function getDiagnosticHeadMessageForDecoratorResolution(node) { switch (node.parent.kind) { case 264: case 232: return Diagnostics.Unable_to_resolve_signature_of_class_decorator_when_called_as_an_expression; case 170: return Diagnostics.Unable_to_resolve_signature_of_parameter_decorator_when_called_as_an_expression; case 173: return Diagnostics.Unable_to_resolve_signature_of_property_decorator_when_called_as_an_expression; case 175: case 178: case 179: return Diagnostics.Unable_to_resolve_signature_of_method_decorator_when_called_as_an_expression; default: return Debug.fail(); } } function resolveDecorator(node, candidatesOutArray, checkMode) { const funcType = checkExpression(node.expression); const apparentType = getApparentType(funcType); if (isErrorType(apparentType)) { return resolveErrorCall(node); } const callSignatures = getSignaturesOfType(apparentType, 0); const numConstructSignatures = getSignaturesOfType(apparentType, 1).length; if (isUntypedFunctionCall(funcType, apparentType, callSignatures.length, numConstructSignatures)) { return resolveUntypedCall(node); } if (isPotentiallyUncalledDecorator(node, callSignatures) && !isParenthesizedExpression(node.expression)) { const nodeStr = getTextOfNode(node.expression, false); error2(node, Diagnostics._0_accepts_too_few_arguments_to_be_used_as_a_decorator_here_Did_you_mean_to_call_it_first_and_write_0, nodeStr); return resolveErrorCall(node); } const headMessage = getDiagnosticHeadMessageForDecoratorResolution(node); if (!callSignatures.length) { const errorDetails = invocationErrorDetails(node.expression, apparentType, 0); const messageChain = chainDiagnosticMessages(errorDetails.messageChain, headMessage); const diag2 = createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(node.expression), node.expression, messageChain); if (errorDetails.relatedMessage) { addRelatedInfo(diag2, createDiagnosticForNode(node.expression, errorDetails.relatedMessage)); } diagnostics.add(diag2); invocationErrorRecovery(apparentType, 0, diag2); return resolveErrorCall(node); } return resolveCall(node, callSignatures, candidatesOutArray, checkMode, 0, headMessage); } function createSignatureForJSXIntrinsic(node, result) { const namespace = getJsxNamespaceAt(node); const exports22 = namespace && getExportsOfSymbol(namespace); const typeSymbol = exports22 && getSymbol2(exports22, JsxNames.Element, 788968); const returnNode = typeSymbol && nodeBuilder.symbolToEntityName(typeSymbol, 788968, node); const declaration = factory.createFunctionTypeNode(undefined, [factory.createParameterDeclaration(undefined, undefined, "props", undefined, nodeBuilder.typeToTypeNode(result, node))], returnNode ? factory.createTypeReferenceNode(returnNode, undefined) : factory.createKeywordTypeNode(133)); const parameterSymbol = createSymbol(1, "props"); parameterSymbol.links.type = result; return createSignature(declaration, undefined, undefined, [parameterSymbol], typeSymbol ? getDeclaredTypeOfSymbol(typeSymbol) : errorType, undefined, 1, 0); } function getJSXFragmentType(node) { const sourceFileLinks = getNodeLinks(getSourceFileOfNode(node)); if (sourceFileLinks.jsxFragmentType !== undefined) return sourceFileLinks.jsxFragmentType; const jsxFragmentFactoryName = getJsxNamespace(node); const shouldResolveFactoryReference = (compilerOptions.jsx === 2 || compilerOptions.jsxFragmentFactory !== undefined) && jsxFragmentFactoryName !== "null"; if (!shouldResolveFactoryReference) return sourceFileLinks.jsxFragmentType = anyType; const shouldModuleRefErr = compilerOptions.jsx !== 1 && compilerOptions.jsx !== 3; const jsxFactoryRefErr = diagnostics ? Diagnostics.Using_JSX_fragments_requires_fragment_factory_0_to_be_in_scope_but_it_could_not_be_found : undefined; const jsxFactorySymbol = getJsxNamespaceContainerForImplicitImport(node) ?? resolveName(node, jsxFragmentFactoryName, shouldModuleRefErr ? 111551 : 111551 & ~384, jsxFactoryRefErr, true); if (jsxFactorySymbol === undefined) return sourceFileLinks.jsxFragmentType = errorType; if (jsxFactorySymbol.escapedName === ReactNames.Fragment) return sourceFileLinks.jsxFragmentType = getTypeOfSymbol(jsxFactorySymbol); const resolvedAlias = (jsxFactorySymbol.flags & 2097152) === 0 ? jsxFactorySymbol : resolveAlias(jsxFactorySymbol); const reactExports = jsxFactorySymbol && getExportsOfSymbol(resolvedAlias); const typeSymbol = reactExports && getSymbol2(reactExports, ReactNames.Fragment, 2); const type = typeSymbol && getTypeOfSymbol(typeSymbol); return sourceFileLinks.jsxFragmentType = type === undefined ? errorType : type; } function resolveJsxOpeningLikeElement(node, candidatesOutArray, checkMode) { const isJsxOpenFragment = isJsxOpeningFragment(node); let exprTypes; if (!isJsxOpenFragment) { if (isJsxIntrinsicTagName(node.tagName)) { const result = getIntrinsicAttributesTypeFromJsxOpeningLikeElement(node); const fakeSignature = createSignatureForJSXIntrinsic(node, result); checkTypeAssignableToAndOptionallyElaborate(checkExpressionWithContextualType(node.attributes, getEffectiveFirstArgumentForJsxSignature(fakeSignature, node), undefined, 0), result, node.tagName, node.attributes); if (length(node.typeArguments)) { forEach(node.typeArguments, checkSourceElement); diagnostics.add(createDiagnosticForNodeArray(getSourceFileOfNode(node), node.typeArguments, Diagnostics.Expected_0_type_arguments_but_got_1, 0, length(node.typeArguments))); } return fakeSignature; } exprTypes = checkExpression(node.tagName); } else { exprTypes = getJSXFragmentType(node); } const apparentType = getApparentType(exprTypes); if (isErrorType(apparentType)) { return resolveErrorCall(node); } const signatures = getUninstantiatedJsxSignaturesOfType(exprTypes, node); if (isUntypedFunctionCall(exprTypes, apparentType, signatures.length, 0)) { return resolveUntypedCall(node); } if (signatures.length === 0) { if (isJsxOpenFragment) { error2(node, Diagnostics.JSX_element_type_0_does_not_have_any_construct_or_call_signatures, getTextOfNode(node)); } else { error2(node.tagName, Diagnostics.JSX_element_type_0_does_not_have_any_construct_or_call_signatures, getTextOfNode(node.tagName)); } return resolveErrorCall(node); } return resolveCall(node, signatures, candidatesOutArray, checkMode, 0); } function resolveInstanceofExpression(node, candidatesOutArray, checkMode) { const rightType = checkExpression(node.right); if (!isTypeAny(rightType)) { const hasInstanceMethodType = getSymbolHasInstanceMethodOfObjectType(rightType); if (hasInstanceMethodType) { const apparentType = getApparentType(hasInstanceMethodType); if (isErrorType(apparentType)) { return resolveErrorCall(node); } const callSignatures = getSignaturesOfType(apparentType, 0); const constructSignatures = getSignaturesOfType(apparentType, 1); if (isUntypedFunctionCall(hasInstanceMethodType, apparentType, callSignatures.length, constructSignatures.length)) { return resolveUntypedCall(node); } if (callSignatures.length) { return resolveCall(node, callSignatures, candidatesOutArray, checkMode, 0); } } else if (!(typeHasCallOrConstructSignatures(rightType) || isTypeSubtypeOf(rightType, globalFunctionType))) { error2(node.right, Diagnostics.The_right_hand_side_of_an_instanceof_expression_must_be_either_of_type_any_a_class_function_or_other_type_assignable_to_the_Function_interface_type_or_an_object_type_with_a_Symbol_hasInstance_method); return resolveErrorCall(node); } } return anySignature; } function isPotentiallyUncalledDecorator(decorator, signatures) { return signatures.length && every(signatures, (signature) => signature.minArgumentCount === 0 && !signatureHasRestParameter(signature) && signature.parameters.length < getDecoratorArgumentCount(decorator, signature)); } function resolveSignature(node, candidatesOutArray, checkMode) { switch (node.kind) { case 214: return resolveCallExpression(node, candidatesOutArray, checkMode); case 215: return resolveNewExpression(node, candidatesOutArray, checkMode); case 216: return resolveTaggedTemplateExpression(node, candidatesOutArray, checkMode); case 171: return resolveDecorator(node, candidatesOutArray, checkMode); case 290: case 287: case 286: return resolveJsxOpeningLikeElement(node, candidatesOutArray, checkMode); case 227: return resolveInstanceofExpression(node, candidatesOutArray, checkMode); } Debug.assertNever(node, "Branch in 'resolveSignature' should be unreachable."); } function getResolvedSignature(node, candidatesOutArray, checkMode) { const links = getNodeLinks(node); const cached = links.resolvedSignature; if (cached && cached !== resolvingSignature && !candidatesOutArray) { return cached; } const saveResolutionStart = resolutionStart; if (!cached) { resolutionStart = resolutionTargets.length; } links.resolvedSignature = resolvingSignature; const result = resolveSignature(node, candidatesOutArray, checkMode || 0); resolutionStart = saveResolutionStart; if (result !== resolvingSignature) { links.resolvedSignature = flowLoopStart === flowLoopCount ? result : cached; } return result; } function isJSConstructor(node) { var _a; if (!node || !isInJSFile(node)) { return false; } const func = isFunctionDeclaration(node) || isFunctionExpression(node) ? node : (isVariableDeclaration(node) || isPropertyAssignment(node)) && node.initializer && isFunctionExpression(node.initializer) ? node.initializer : undefined; if (func) { if (getJSDocClassTag(node)) return true; if (isPropertyAssignment(walkUpParenthesizedExpressions(func.parent))) return false; const symbol = getSymbolOfDeclaration(func); return !!((_a = symbol == null ? undefined : symbol.members) == null ? undefined : _a.size); } return false; } function mergeJSSymbols(target, source) { var _a, _b; if (source) { const links = getSymbolLinks(source); if (!links.inferredClassSymbol || !links.inferredClassSymbol.has(getSymbolId(target))) { const inferred = isTransientSymbol(target) ? target : cloneSymbol(target); inferred.exports = inferred.exports || createSymbolTable(); inferred.members = inferred.members || createSymbolTable(); inferred.flags |= source.flags & 32; if ((_a = source.exports) == null ? undefined : _a.size) { mergeSymbolTable(inferred.exports, source.exports); } if ((_b = source.members) == null ? undefined : _b.size) { mergeSymbolTable(inferred.members, source.members); } (links.inferredClassSymbol || (links.inferredClassSymbol = /* @__PURE__ */ new Map)).set(getSymbolId(inferred), inferred); return inferred; } return links.inferredClassSymbol.get(getSymbolId(target)); } } function getAssignedClassSymbol(decl) { var _a; const assignmentSymbol = decl && getSymbolOfExpando(decl, true); const prototype = (_a = assignmentSymbol == null ? undefined : assignmentSymbol.exports) == null ? undefined : _a.get("prototype"); const init = (prototype == null ? undefined : prototype.valueDeclaration) && getAssignedJSPrototype(prototype.valueDeclaration); return init ? getSymbolOfDeclaration(init) : undefined; } function getSymbolOfExpando(node, allowDeclaration) { if (!node.parent) { return; } let name; let decl; if (isVariableDeclaration(node.parent) && node.parent.initializer === node) { if (!isInJSFile(node) && !(isVarConstLike2(node.parent) && isFunctionLikeDeclaration(node))) { return; } name = node.parent.name; decl = node.parent; } else if (isBinaryExpression(node.parent)) { const parentNode = node.parent; const parentNodeOperator = node.parent.operatorToken.kind; if (parentNodeOperator === 64 && (allowDeclaration || parentNode.right === node)) { name = parentNode.left; decl = name; } else if (parentNodeOperator === 57 || parentNodeOperator === 61) { if (isVariableDeclaration(parentNode.parent) && parentNode.parent.initializer === parentNode) { name = parentNode.parent.name; decl = parentNode.parent; } else if (isBinaryExpression(parentNode.parent) && parentNode.parent.operatorToken.kind === 64 && (allowDeclaration || parentNode.parent.right === parentNode)) { name = parentNode.parent.left; decl = name; } if (!name || !isBindableStaticNameExpression(name) || !isSameEntityName(name, parentNode.left)) { return; } } } else if (allowDeclaration && isFunctionDeclaration(node)) { name = node.name; decl = node; } if (!decl || !name || !allowDeclaration && !getExpandoInitializer(node, isPrototypeAccess(name))) { return; } return getSymbolOfNode(decl); } function getAssignedJSPrototype(node) { if (!node.parent) { return false; } let parent2 = node.parent; while (parent2 && parent2.kind === 212) { parent2 = parent2.parent; } if (parent2 && isBinaryExpression(parent2) && isPrototypeAccess(parent2.left) && parent2.operatorToken.kind === 64) { const right = getInitializerOfBinaryExpression(parent2); return isObjectLiteralExpression(right) && right; } } function checkCallExpression(node, checkMode) { var _a, _b, _c; checkGrammarTypeArguments(node, node.typeArguments); const signature = getResolvedSignature(node, undefined, checkMode); if (signature === resolvingSignature) { return silentNeverType; } checkDeprecatedSignature(signature, node); if (node.expression.kind === 108) { return voidType; } if (node.kind === 215) { const declaration = signature.declaration; if (declaration && declaration.kind !== 177 && declaration.kind !== 181 && declaration.kind !== 186 && !(isJSDocSignature(declaration) && ((_b = (_a = getJSDocRoot(declaration)) == null ? undefined : _a.parent) == null ? undefined : _b.kind) === 177) && !isJSDocConstructSignature(declaration) && !isJSConstructor(declaration)) { if (noImplicitAny) { error2(node, Diagnostics.new_expression_whose_target_lacks_a_construct_signature_implicitly_has_an_any_type); } return anyType; } } if (isInJSFile(node) && isCommonJsRequire(node)) { return resolveExternalModuleTypeByLiteral(node.arguments[0]); } const returnType = getReturnTypeOfSignature(signature); if (returnType.flags & 16896 && isSymbolOrSymbolForCall(node)) { return getESSymbolLikeTypeForNode(walkUpParenthesizedExpressions(node.parent)); } if (node.kind === 214 && !node.questionDotToken && node.parent.kind === 245 && returnType.flags & 16 && getTypePredicateOfSignature(signature)) { if (!isDottedName(node.expression)) { error2(node.expression, Diagnostics.Assertions_require_the_call_target_to_be_an_identifier_or_qualified_name); } else if (!getEffectsSignature(node)) { const diagnostic = error2(node.expression, Diagnostics.Assertions_require_every_name_in_the_call_target_to_be_declared_with_an_explicit_type_annotation); getTypeOfDottedName(node.expression, diagnostic); } } if (isInJSFile(node)) { const jsSymbol = getSymbolOfExpando(node, false); if ((_c = jsSymbol == null ? undefined : jsSymbol.exports) == null ? undefined : _c.size) { const jsAssignmentType = createAnonymousType(jsSymbol, jsSymbol.exports, emptyArray, emptyArray, emptyArray); jsAssignmentType.objectFlags |= 4096; return getIntersectionType([returnType, jsAssignmentType]); } } return returnType; } function checkDeprecatedSignature(signature, node) { if (signature.flags & 128) return; if (signature.declaration && signature.declaration.flags & 536870912) { const suggestionNode = getDeprecatedSuggestionNode(node); const name = tryGetPropertyAccessOrIdentifierToString(getInvokedExpression(node)); addDeprecatedSuggestionWithSignature(suggestionNode, signature.declaration, name, signatureToString(signature)); } } function getDeprecatedSuggestionNode(node) { node = skipParentheses(node); switch (node.kind) { case 214: case 171: case 215: return getDeprecatedSuggestionNode(node.expression); case 216: return getDeprecatedSuggestionNode(node.tag); case 287: case 286: return getDeprecatedSuggestionNode(node.tagName); case 213: return node.argumentExpression; case 212: return node.name; case 184: const typeReference = node; return isQualifiedName(typeReference.typeName) ? typeReference.typeName.right : typeReference; default: return node; } } function isSymbolOrSymbolForCall(node) { if (!isCallExpression(node)) return false; let left = node.expression; if (isPropertyAccessExpression(left) && left.name.escapedText === "for") { left = left.expression; } if (!isIdentifier(left) || left.escapedText !== "Symbol") { return false; } const globalESSymbol = getGlobalESSymbolConstructorSymbol(false); if (!globalESSymbol) { return false; } return globalESSymbol === resolveName(left, "Symbol", 111551, undefined, false); } function checkImportCallExpression(node) { checkGrammarImportCallExpression(node); if (node.arguments.length === 0) { return createPromiseReturnType(node, anyType); } const specifier = node.arguments[0]; const specifierType = checkExpressionCached(specifier); const optionsType = node.arguments.length > 1 ? checkExpressionCached(node.arguments[1]) : undefined; for (let i = 2;i < node.arguments.length; ++i) { checkExpressionCached(node.arguments[i]); } if (specifierType.flags & 4 || specifierType.flags & 8 || !isTypeAssignableTo(specifierType, stringType)) { error2(specifier, Diagnostics.Dynamic_import_s_specifier_must_be_of_type_string_but_here_has_type_0, typeToString(specifierType)); } if (optionsType) { const importCallOptionsType = getGlobalImportCallOptionsType(true); if (importCallOptionsType !== emptyObjectType) { checkTypeAssignableTo(optionsType, getNullableType(importCallOptionsType, 4), node.arguments[1]); } if (compilerOptions.ignoreDeprecations !== "6.0" && isObjectLiteralExpression(node.arguments[1])) { for (const prop of node.arguments[1].properties) { if (isPropertyAssignment(prop) && isIdentifier(prop.name) && prop.name.escapedText === "assert") { grammarErrorOnNode(prop.name, Diagnostics.Import_assertions_have_been_replaced_by_import_attributes_Use_with_instead_of_assert); break; } } } } const moduleSymbol = resolveExternalModuleName(node, specifier); if (moduleSymbol) { const esModuleSymbol = resolveESModuleSymbol(moduleSymbol, specifier, true, false); if (esModuleSymbol) { return createPromiseReturnType(node, getTypeWithSyntheticDefaultOnly(getTypeOfSymbol(esModuleSymbol), esModuleSymbol, moduleSymbol, specifier) || getTypeWithSyntheticDefaultImportType(getTypeOfSymbol(esModuleSymbol), esModuleSymbol, moduleSymbol, specifier)); } } return createPromiseReturnType(node, anyType); } function createDefaultPropertyWrapperForModule(symbol, originalSymbol, anonymousSymbol) { const memberTable = createSymbolTable(); const newSymbol = createSymbol(2097152, "default"); newSymbol.parent = originalSymbol; newSymbol.links.nameType = getStringLiteralType("default"); newSymbol.links.aliasTarget = resolveSymbol(symbol); memberTable.set("default", newSymbol); return createAnonymousType(anonymousSymbol, memberTable, emptyArray, emptyArray, emptyArray); } function getTypeWithSyntheticDefaultOnly(type, symbol, originalSymbol, moduleSpecifier) { const hasDefaultOnly = isOnlyImportableAsDefault(moduleSpecifier); if (hasDefaultOnly && type && !isErrorType(type)) { const synthType = type; if (!synthType.defaultOnlyType) { const type2 = createDefaultPropertyWrapperForModule(symbol, originalSymbol); synthType.defaultOnlyType = type2; } return synthType.defaultOnlyType; } return; } function getTypeWithSyntheticDefaultImportType(type, symbol, originalSymbol, moduleSpecifier) { var _a; if (allowSyntheticDefaultImports && type && !isErrorType(type)) { const synthType = type; if (!synthType.syntheticType) { const file = (_a = originalSymbol.declarations) == null ? undefined : _a.find(isSourceFile); const hasSyntheticDefault = canHaveSyntheticDefault(file, originalSymbol, false, moduleSpecifier); if (hasSyntheticDefault) { const anonymousSymbol = createSymbol(2048, "__type"); const defaultContainingObject = createDefaultPropertyWrapperForModule(symbol, originalSymbol, anonymousSymbol); anonymousSymbol.links.type = defaultContainingObject; synthType.syntheticType = isValidSpreadType(type) ? getSpreadType(type, defaultContainingObject, anonymousSymbol, 0, false) : defaultContainingObject; } else { synthType.syntheticType = type; } } return synthType.syntheticType; } return type; } function isCommonJsRequire(node) { if (!isRequireCall(node, true)) { return false; } if (!isIdentifier(node.expression)) return Debug.fail(); const resolvedRequire = resolveName(node.expression, node.expression.escapedText, 111551, undefined, true); if (resolvedRequire === requireSymbol) { return true; } if (resolvedRequire.flags & 2097152) { return false; } const targetDeclarationKind = resolvedRequire.flags & 16 ? 263 : resolvedRequire.flags & 3 ? 261 : 0; if (targetDeclarationKind !== 0) { const decl = getDeclarationOfKind(resolvedRequire, targetDeclarationKind); return !!decl && !!(decl.flags & 33554432); } return false; } function checkTaggedTemplateExpression(node) { if (!checkGrammarTaggedTemplateChain(node)) checkGrammarTypeArguments(node, node.typeArguments); if (languageVersion < LanguageFeatureMinimumTarget.TaggedTemplates) { checkExternalEmitHelpers(node, 262144); } const signature = getResolvedSignature(node); checkDeprecatedSignature(signature, node); return getReturnTypeOfSignature(signature); } function checkAssertion(node, checkMode) { if (node.kind === 217) { const file = getSourceFileOfNode(node); if (file && fileExtensionIsOneOf(file.fileName, [".cts", ".mts"])) { grammarErrorOnNode(node, Diagnostics.This_syntax_is_reserved_in_files_with_the_mts_or_cts_extension_Use_an_as_expression_instead); } if (compilerOptions.erasableSyntaxOnly) { const start = skipTrivia2(file.text, node.pos); const end = node.expression.pos; diagnostics.add(createFileDiagnostic(file, start, end - start, Diagnostics.This_syntax_is_not_allowed_when_erasableSyntaxOnly_is_enabled)); } } return checkAssertionWorker(node, checkMode); } function isValidConstAssertionArgument(node) { switch (node.kind) { case 11: case 15: case 9: case 10: case 112: case 97: case 210: case 211: case 229: return true; case 218: return isValidConstAssertionArgument(node.expression); case 225: const op = node.operator; const arg = node.operand; return op === 41 && (arg.kind === 9 || arg.kind === 10) || op === 40 && arg.kind === 9; case 212: case 213: const expr = skipParentheses(node.expression); const symbol = isEntityNameExpression(expr) ? resolveEntityName(expr, 111551, true) : undefined; return !!(symbol && symbol.flags & 384); } return false; } function checkAssertionWorker(node, checkMode) { const { type, expression } = getAssertionTypeAndExpression(node); const exprType = checkExpression(expression, checkMode); if (isConstTypeReference(type)) { if (!isValidConstAssertionArgument(expression)) { error2(expression, Diagnostics.A_const_assertion_can_only_be_applied_to_references_to_enum_members_or_string_number_boolean_array_or_object_literals); } return getRegularTypeOfLiteralType(exprType); } const links = getNodeLinks(node); links.assertionExpressionType = exprType; checkSourceElement(type); checkNodeDeferred(node); return getTypeFromTypeNode(type); } function getAssertionTypeAndExpression(node) { let type; let expression; switch (node.kind) { case 235: case 217: type = node.type; expression = node.expression; break; case 218: type = getJSDocTypeAssertionType(node); expression = node.expression; break; } return { type, expression }; } function checkAssertionDeferred(node) { const { type } = getAssertionTypeAndExpression(node); const errNode = isParenthesizedExpression(node) ? type : node; const links = getNodeLinks(node); Debug.assertIsDefined(links.assertionExpressionType); const exprType = getRegularTypeOfObjectLiteral(getBaseTypeOfLiteralType(links.assertionExpressionType)); const targetType = getTypeFromTypeNode(type); if (!isErrorType(targetType)) { addLazyDiagnostic(() => { const widenedType = getWidenedType(exprType); if (!isTypeComparableTo(targetType, widenedType)) { checkTypeComparableTo(exprType, targetType, errNode, Diagnostics.Conversion_of_type_0_to_type_1_may_be_a_mistake_because_neither_type_sufficiently_overlaps_with_the_other_If_this_was_intentional_convert_the_expression_to_unknown_first); } }); } } function checkNonNullChain(node) { const leftType = checkExpression(node.expression); const nonOptionalType = getOptionalExpressionType(leftType, node.expression); return propagateOptionalTypeMarker(getNonNullableType(nonOptionalType), node, nonOptionalType !== leftType); } function checkNonNullAssertion(node) { return node.flags & 64 ? checkNonNullChain(node) : getNonNullableType(checkExpression(node.expression)); } function checkExpressionWithTypeArguments(node) { checkGrammarExpressionWithTypeArguments(node); forEach(node.typeArguments, checkSourceElement); if (node.kind === 234) { const parent2 = walkUpParenthesizedExpressions(node.parent); if (parent2.kind === 227 && parent2.operatorToken.kind === 104 && isNodeDescendantOf(node, parent2.right)) { error2(node, Diagnostics.The_right_hand_side_of_an_instanceof_expression_must_not_be_an_instantiation_expression); } } const exprType = node.kind === 234 ? checkExpression(node.expression) : isThisIdentifier(node.exprName) ? checkThisExpression(node.exprName) : checkExpression(node.exprName); return getInstantiationExpressionType(exprType, node); } function getInstantiationExpressionType(exprType, node) { const typeArguments = node.typeArguments; if (exprType === silentNeverType || isErrorType(exprType) || !some(typeArguments)) { return exprType; } const links = getNodeLinks(node); if (!links.instantiationExpressionTypes) { links.instantiationExpressionTypes = /* @__PURE__ */ new Map; } if (links.instantiationExpressionTypes.has(exprType.id)) { return links.instantiationExpressionTypes.get(exprType.id); } let hasSomeApplicableSignature = false; let nonApplicableType; const result = getInstantiatedType(exprType); links.instantiationExpressionTypes.set(exprType.id, result); const errorType2 = hasSomeApplicableSignature ? nonApplicableType : exprType; if (errorType2) { diagnostics.add(createDiagnosticForNodeArray(getSourceFileOfNode(node), typeArguments, Diagnostics.Type_0_has_no_signatures_for_which_the_type_argument_list_is_applicable, typeToString(errorType2))); } return result; function getInstantiatedType(type) { let hasSignatures2 = false; let hasApplicableSignature = false; const result2 = getInstantiatedTypePart(type); hasSomeApplicableSignature || (hasSomeApplicableSignature = hasApplicableSignature); if (hasSignatures2 && !hasApplicableSignature) { nonApplicableType ?? (nonApplicableType = type); } return result2; function getInstantiatedTypePart(type2) { if (type2.flags & 1048576) { const resolved = resolveStructuredTypeMembers(type2); const callSignatures = getInstantiatedSignatures(resolved.callSignatures); const constructSignatures = getInstantiatedSignatures(resolved.constructSignatures); hasSignatures2 || (hasSignatures2 = resolved.callSignatures.length !== 0 || resolved.constructSignatures.length !== 0); hasApplicableSignature || (hasApplicableSignature = callSignatures.length !== 0 || constructSignatures.length !== 0); if (callSignatures !== resolved.callSignatures || constructSignatures !== resolved.constructSignatures) { const result3 = createAnonymousType(createSymbol(0, "__instantiationExpression"), resolved.members, callSignatures, constructSignatures, resolved.indexInfos); result3.objectFlags |= 8388608; result3.node = node; return result3; } } else if (type2.flags & 117964800) { const constraint = getBaseConstraintOfType(type2); if (constraint) { const instantiated = getInstantiatedTypePart(constraint); if (instantiated !== constraint) { return instantiated; } } } else if (type2.flags & 134217728) { return mapType(type2, getInstantiatedType); } else if (type2.flags & 268435456) { return getIntersectionType(sameMap(type2.types, getInstantiatedTypePart)); } return type2; } } function getInstantiatedSignatures(signatures) { const applicableSignatures = filter(signatures, (sig) => !!sig.typeParameters && hasCorrectTypeArgumentArity(sig, typeArguments)); return sameMap(applicableSignatures, (sig) => { const typeArgumentTypes = checkTypeArguments(sig, typeArguments, true); return typeArgumentTypes ? getSignatureInstantiation(sig, typeArgumentTypes, isInJSFile(sig.declaration)) : sig; }); } } function checkSatisfiesExpression(node) { checkSourceElement(node.type); return checkSatisfiesExpressionWorker(node.expression, node.type); } function checkSatisfiesExpressionWorker(expression, target, checkMode) { const exprType = checkExpression(expression, checkMode); const targetType = getTypeFromTypeNode(target); if (isErrorType(targetType)) { return targetType; } const errorNode = findAncestor(target.parent, (n) => n.kind === 239 || n.kind === 351); checkTypeAssignableToAndOptionallyElaborate(exprType, targetType, errorNode, expression, Diagnostics.Type_0_does_not_satisfy_the_expected_type_1); return exprType; } function checkMetaProperty(node) { checkGrammarMetaProperty(node); if (node.keywordToken === 105) { return checkNewTargetMetaProperty(node); } if (node.keywordToken === 102) { if (node.name.escapedText === "defer") { Debug.assert(!isCallExpression(node.parent) || node.parent.expression !== node, "Trying to get the type of `import.defer` in `import.defer(...)`"); return errorType; } return checkImportMetaProperty(node); } return Debug.assertNever(node.keywordToken); } function checkMetaPropertyKeyword(node) { switch (node.keywordToken) { case 102: return getGlobalImportMetaExpressionType(); case 105: const type = checkNewTargetMetaProperty(node); return isErrorType(type) ? errorType : createNewTargetExpressionType(type); default: Debug.assertNever(node.keywordToken); } } function checkNewTargetMetaProperty(node) { const container = getNewTargetContainer(node); if (!container) { error2(node, Diagnostics.Meta_property_0_is_only_allowed_in_the_body_of_a_function_declaration_function_expression_or_constructor, "new.target"); return errorType; } else if (container.kind === 177) { const symbol = getSymbolOfDeclaration(container.parent); return getTypeOfSymbol(symbol); } else { const symbol = getSymbolOfDeclaration(container); return getTypeOfSymbol(symbol); } } function checkImportMetaProperty(node) { if (100 <= moduleKind && moduleKind <= 199) { if (getSourceFileOfNode(node).impliedNodeFormat !== 99) { error2(node, Diagnostics.The_import_meta_meta_property_is_not_allowed_in_files_which_will_build_into_CommonJS_output); } } else if (moduleKind < 6 && moduleKind !== 4) { error2(node, Diagnostics.The_import_meta_meta_property_is_only_allowed_when_the_module_option_is_es2020_es2022_esnext_system_node16_node18_node20_or_nodenext); } const file = getSourceFileOfNode(node); Debug.assert(!!(file.flags & 8388608), "Containing file is missing import meta node flag."); return node.name.escapedText === "meta" ? getGlobalImportMetaType() : errorType; } function getTypeOfParameter(symbol) { const declaration = symbol.valueDeclaration; return addOptionality(getTypeOfSymbol(symbol), false, !!declaration && (hasInitializer(declaration) || isOptionalDeclaration(declaration))); } function getTupleElementLabelFromBindingElement(node, index, elementFlags) { switch (node.name.kind) { case 80: { const name = node.name.escapedText; if (node.dotDotDotToken) { return elementFlags & 12 ? name : `${name}_${index}`; } else { return elementFlags & 3 ? name : `${name}_n`; } } case 208: { if (node.dotDotDotToken) { const elements = node.name.elements; const lastElement = tryCast(lastOrUndefined(elements), isBindingElement); const elementCount = elements.length - ((lastElement == null ? undefined : lastElement.dotDotDotToken) ? 1 : 0); if (index < elementCount) { const element = elements[index]; if (isBindingElement(element)) { return getTupleElementLabelFromBindingElement(element, index, elementFlags); } } else if (lastElement == null ? undefined : lastElement.dotDotDotToken) { return getTupleElementLabelFromBindingElement(lastElement, index - elementCount, elementFlags); } } break; } } return `arg_${index}`; } function getTupleElementLabel(d, index = 0, elementFlags = 3, restSymbol) { if (!d) { const restParameter = tryCast(restSymbol == null ? undefined : restSymbol.valueDeclaration, isParameter); return restParameter ? getTupleElementLabelFromBindingElement(restParameter, index, elementFlags) : `${(restSymbol == null ? undefined : restSymbol.escapedName) ?? "arg"}_${index}`; } Debug.assert(isIdentifier(d.name)); return d.name.escapedText; } function getParameterNameAtPosition(signature, pos, overrideRestType) { var _a; const paramCount = signature.parameters.length - (signatureHasRestParameter(signature) ? 1 : 0); if (pos < paramCount) { return signature.parameters[pos].escapedName; } const restParameter = signature.parameters[paramCount] || unknownSymbol; const restType = overrideRestType || getTypeOfSymbol(restParameter); if (isTupleType(restType)) { const tupleType = restType.target; const index = pos - paramCount; const associatedName = (_a = tupleType.labeledElementDeclarations) == null ? undefined : _a[index]; const elementFlags = tupleType.elementFlags[index]; return getTupleElementLabel(associatedName, index, elementFlags, restParameter); } return restParameter.escapedName; } function getParameterIdentifierInfoAtPosition(signature, pos) { var _a; if (((_a = signature.declaration) == null ? undefined : _a.kind) === 318) { return; } const paramCount = signature.parameters.length - (signatureHasRestParameter(signature) ? 1 : 0); if (pos < paramCount) { const param = signature.parameters[pos]; const paramIdent = getParameterDeclarationIdentifier(param); return paramIdent ? { parameter: paramIdent, parameterName: param.escapedName, isRestParameter: false } : undefined; } const restParameter = signature.parameters[paramCount] || unknownSymbol; const restIdent = getParameterDeclarationIdentifier(restParameter); if (!restIdent) { return; } const restType = getTypeOfSymbol(restParameter); if (isTupleType(restType)) { const associatedNames = restType.target.labeledElementDeclarations; const index = pos - paramCount; const associatedName = associatedNames == null ? undefined : associatedNames[index]; const isRestTupleElement = !!(associatedName == null ? undefined : associatedName.dotDotDotToken); if (associatedName) { Debug.assert(isIdentifier(associatedName.name)); return { parameter: associatedName.name, parameterName: associatedName.name.escapedText, isRestParameter: isRestTupleElement }; } return; } if (pos === paramCount) { return { parameter: restIdent, parameterName: restParameter.escapedName, isRestParameter: true }; } return; } function getParameterDeclarationIdentifier(symbol) { return symbol.valueDeclaration && isParameter(symbol.valueDeclaration) && isIdentifier(symbol.valueDeclaration.name) && symbol.valueDeclaration.name; } function isValidDeclarationForTupleLabel(d) { return d.kind === 203 || isParameter(d) && d.name && isIdentifier(d.name); } function getNameableDeclarationAtPosition(signature, pos) { const paramCount = signature.parameters.length - (signatureHasRestParameter(signature) ? 1 : 0); if (pos < paramCount) { const decl = signature.parameters[pos].valueDeclaration; return decl && isValidDeclarationForTupleLabel(decl) ? decl : undefined; } const restParameter = signature.parameters[paramCount] || unknownSymbol; const restType = getTypeOfSymbol(restParameter); if (isTupleType(restType)) { const associatedNames = restType.target.labeledElementDeclarations; const index = pos - paramCount; return associatedNames && associatedNames[index]; } return restParameter.valueDeclaration && isValidDeclarationForTupleLabel(restParameter.valueDeclaration) ? restParameter.valueDeclaration : undefined; } function getTypeAtPosition(signature, pos) { return tryGetTypeAtPosition(signature, pos) || anyType; } function tryGetTypeAtPosition(signature, pos) { const paramCount = signature.parameters.length - (signatureHasRestParameter(signature) ? 1 : 0); if (pos < paramCount) { return getTypeOfParameter(signature.parameters[pos]); } if (signatureHasRestParameter(signature)) { const restType = getTypeOfSymbol(signature.parameters[paramCount]); const index = pos - paramCount; if (!isTupleType(restType) || restType.target.combinedFlags & 12 || index < restType.target.fixedLength) { return getIndexedAccessType(restType, getNumberLiteralType(index)); } } return; } function getRestTypeAtPosition(source, pos, readonly) { const parameterCount = getParameterCount(source); const minArgumentCount = getMinArgumentCount(source); const restType = getEffectiveRestType(source); if (restType && pos >= parameterCount - 1) { return pos === parameterCount - 1 ? restType : createArrayType(getIndexedAccessType(restType, numberType)); } const types = []; const flags = []; const names = []; for (let i = pos;i < parameterCount; i++) { if (!restType || i < parameterCount - 1) { types.push(getTypeAtPosition(source, i)); flags.push(i < minArgumentCount ? 1 : 2); } else { types.push(restType); flags.push(8); } names.push(getNameableDeclarationAtPosition(source, i)); } return createTupleType(types, flags, readonly, names); } function getRestOrAnyTypeAtPosition(source, pos) { const restType = getRestTypeAtPosition(source, pos); const elementType = restType && getElementTypeOfArrayType(restType); return elementType && isTypeAny(elementType) ? anyType : restType; } function getParameterCount(signature) { const length2 = signature.parameters.length; if (signatureHasRestParameter(signature)) { const restType = getTypeOfSymbol(signature.parameters[length2 - 1]); if (isTupleType(restType)) { return length2 + restType.target.fixedLength - (restType.target.combinedFlags & 12 ? 0 : 1); } } return length2; } function getMinArgumentCount(signature, flags) { const strongArityForUntypedJS = flags & 1; const voidIsNonOptional = flags & 2; if (voidIsNonOptional || signature.resolvedMinArgumentCount === undefined) { let minArgumentCount; if (signatureHasRestParameter(signature)) { const restType = getTypeOfSymbol(signature.parameters[signature.parameters.length - 1]); if (isTupleType(restType)) { const firstOptionalIndex = findIndex(restType.target.elementFlags, (f) => !(f & 1)); const requiredCount = firstOptionalIndex < 0 ? restType.target.fixedLength : firstOptionalIndex; if (requiredCount > 0) { minArgumentCount = signature.parameters.length - 1 + requiredCount; } } } if (minArgumentCount === undefined) { if (!strongArityForUntypedJS && signature.flags & 32) { return 0; } minArgumentCount = signature.minArgumentCount; } if (voidIsNonOptional) { return minArgumentCount; } for (let i = minArgumentCount - 1;i >= 0; i--) { const type = getTypeAtPosition(signature, i); if (filterType(type, acceptsVoid).flags & 262144) { break; } minArgumentCount = i; } signature.resolvedMinArgumentCount = minArgumentCount; } return signature.resolvedMinArgumentCount; } function hasEffectiveRestParameter(signature) { if (signatureHasRestParameter(signature)) { const restType = getTypeOfSymbol(signature.parameters[signature.parameters.length - 1]); return !isTupleType(restType) || !!(restType.target.combinedFlags & 12); } return false; } function getEffectiveRestType(signature) { if (signatureHasRestParameter(signature)) { const restType = getTypeOfSymbol(signature.parameters[signature.parameters.length - 1]); if (!isTupleType(restType)) { return isTypeAny(restType) ? anyArrayType : restType; } if (restType.target.combinedFlags & 12) { return sliceTupleType(restType, restType.target.fixedLength); } } return; } function getNonArrayRestType(signature) { const restType = getEffectiveRestType(signature); return restType && !isArrayType(restType) && !isTypeAny(restType) ? restType : undefined; } function getTypeOfFirstParameterOfSignature(signature) { return getTypeOfFirstParameterOfSignatureWithFallback(signature, neverType); } function getTypeOfFirstParameterOfSignatureWithFallback(signature, fallbackType) { return signature.parameters.length > 0 ? getTypeAtPosition(signature, 0) : fallbackType; } function inferFromAnnotatedParametersAndReturn(signature, context, inferenceContext) { const len = signature.parameters.length - (signatureHasRestParameter(signature) ? 1 : 0); for (let i = 0;i < len; i++) { const declaration = signature.parameters[i].valueDeclaration; const typeNode2 = getEffectiveTypeAnnotationNode(declaration); if (typeNode2) { const source = addOptionality(getTypeFromTypeNode(typeNode2), false, isOptionalDeclaration(declaration)); const target = getTypeAtPosition(context, i); inferTypes(inferenceContext.inferences, source, target); } } const typeNode = signature.declaration && getEffectiveReturnTypeNode(signature.declaration); if (typeNode) { const source = getTypeFromTypeNode(typeNode); const target = getReturnTypeOfSignature(context); inferTypes(inferenceContext.inferences, source, target); } } function assignContextualParameterTypes(signature, context) { if (context.typeParameters) { if (!signature.typeParameters) { signature.typeParameters = context.typeParameters; } else { return; } } if (context.thisParameter) { const parameter = signature.thisParameter; if (!parameter || parameter.valueDeclaration && !parameter.valueDeclaration.type) { if (!parameter) { signature.thisParameter = createSymbolWithType(context.thisParameter, undefined); } assignParameterType(signature.thisParameter, getTypeOfSymbol(context.thisParameter)); } } const len = signature.parameters.length - (signatureHasRestParameter(signature) ? 1 : 0); for (let i = 0;i < len; i++) { const parameter = signature.parameters[i]; const declaration = parameter.valueDeclaration; if (!getEffectiveTypeAnnotationNode(declaration)) { let type = tryGetTypeAtPosition(context, i); if (type && declaration.initializer) { let initializerType = checkDeclarationInitializer(declaration, 0); if (!isTypeAssignableTo(initializerType, type) && isTypeAssignableTo(type, initializerType = widenTypeInferredFromInitializer(declaration, initializerType))) { type = initializerType; } } assignParameterType(parameter, type); } } if (signatureHasRestParameter(signature)) { const parameter = last(signature.parameters); if (parameter.valueDeclaration ? !getEffectiveTypeAnnotationNode(parameter.valueDeclaration) : !!(getCheckFlags(parameter) & 65536)) { const contextualParameterType = getRestTypeAtPosition(context, len); assignParameterType(parameter, contextualParameterType); } } } function assignNonContextualParameterTypes(signature) { if (signature.thisParameter) { assignParameterType(signature.thisParameter); } for (const parameter of signature.parameters) { assignParameterType(parameter); } } function assignParameterType(parameter, contextualType) { const links = getSymbolLinks(parameter); if (!links.type) { const declaration = parameter.valueDeclaration; links.type = addOptionality(contextualType || (declaration ? getWidenedTypeForVariableLikeDeclaration(declaration, true) : getTypeOfSymbol(parameter)), false, !!declaration && !declaration.initializer && isOptionalDeclaration(declaration)); if (declaration && declaration.name.kind !== 80) { if (links.type === unknownType) { links.type = getTypeFromBindingPattern(declaration.name); } assignBindingElementTypes(declaration.name, links.type); } } else if (contextualType) { Debug.assertEqual(links.type, contextualType, "Parameter symbol already has a cached type which differs from newly assigned type"); } } function assignBindingElementTypes(pattern, parentType) { for (const element of pattern.elements) { if (!isOmittedExpression(element)) { const type = getBindingElementTypeFromParentType(element, parentType, false); if (element.name.kind === 80) { getSymbolLinks(getSymbolOfDeclaration(element)).type = type; } else { assignBindingElementTypes(element.name, type); } } } } function createClassDecoratorContextType(classType) { return tryCreateTypeReference(getGlobalClassDecoratorContextType(true), [classType]); } function createClassMethodDecoratorContextType(thisType, valueType) { return tryCreateTypeReference(getGlobalClassMethodDecoratorContextType(true), [thisType, valueType]); } function createClassGetterDecoratorContextType(thisType, valueType) { return tryCreateTypeReference(getGlobalClassGetterDecoratorContextType(true), [thisType, valueType]); } function createClassSetterDecoratorContextType(thisType, valueType) { return tryCreateTypeReference(getGlobalClassSetterDecoratorContextType(true), [thisType, valueType]); } function createClassAccessorDecoratorContextType(thisType, valueType) { return tryCreateTypeReference(getGlobalClassAccessorDecoratorContextType(true), [thisType, valueType]); } function createClassFieldDecoratorContextType(thisType, valueType) { return tryCreateTypeReference(getGlobalClassFieldDecoratorContextType(true), [thisType, valueType]); } function getClassMemberDecoratorContextOverrideType(nameType, isPrivate, isStatic2) { const key = `${isPrivate ? "p" : "P"}${isStatic2 ? "s" : "S"}${nameType.id}`; let overrideType = decoratorContextOverrideTypeCache.get(key); if (!overrideType) { const members = createSymbolTable(); members.set("name", createProperty("name", nameType)); members.set("private", createProperty("private", isPrivate ? trueType : falseType)); members.set("static", createProperty("static", isStatic2 ? trueType : falseType)); overrideType = createAnonymousType(undefined, members, emptyArray, emptyArray, emptyArray); decoratorContextOverrideTypeCache.set(key, overrideType); } return overrideType; } function createClassMemberDecoratorContextTypeForNode(node, thisType, valueType) { const isStatic2 = hasStaticModifier(node); const isPrivate = isPrivateIdentifier(node.name); const nameType = isPrivate ? getStringLiteralType(idText(node.name)) : getLiteralTypeFromPropertyName(node.name); const contextType = isMethodDeclaration(node) ? createClassMethodDecoratorContextType(thisType, valueType) : isGetAccessorDeclaration(node) ? createClassGetterDecoratorContextType(thisType, valueType) : isSetAccessorDeclaration(node) ? createClassSetterDecoratorContextType(thisType, valueType) : isAutoAccessorPropertyDeclaration(node) ? createClassAccessorDecoratorContextType(thisType, valueType) : isPropertyDeclaration(node) ? createClassFieldDecoratorContextType(thisType, valueType) : Debug.failBadSyntaxKind(node); const overrideType = getClassMemberDecoratorContextOverrideType(nameType, isPrivate, isStatic2); return getIntersectionType([contextType, overrideType]); } function createClassAccessorDecoratorTargetType(thisType, valueType) { return tryCreateTypeReference(getGlobalClassAccessorDecoratorTargetType(true), [thisType, valueType]); } function createClassAccessorDecoratorResultType(thisType, valueType) { return tryCreateTypeReference(getGlobalClassAccessorDecoratorResultType(true), [thisType, valueType]); } function createClassFieldDecoratorInitializerMutatorType(thisType, valueType) { const thisParam = createParameter2("this", thisType); const valueParam = createParameter2("value", valueType); return createFunctionType(undefined, thisParam, [valueParam], valueType, undefined, 1); } function createESDecoratorCallSignature(targetType, contextType, nonOptionalReturnType) { const targetParam = createParameter2("target", targetType); const contextParam = createParameter2("context", contextType); const returnType = getUnionType([nonOptionalReturnType, voidType]); return createCallSignature(undefined, undefined, [targetParam, contextParam], returnType); } function getESDecoratorCallSignature(decorator) { const { parent: parent2 } = decorator; const links = getNodeLinks(parent2); if (!links.decoratorSignature) { links.decoratorSignature = anySignature; switch (parent2.kind) { case 264: case 232: { const node = parent2; const targetType = getTypeOfSymbol(getSymbolOfDeclaration(node)); const contextType = createClassDecoratorContextType(targetType); links.decoratorSignature = createESDecoratorCallSignature(targetType, contextType, targetType); break; } case 175: case 178: case 179: { const node = parent2; if (!isClassLike(node.parent)) break; const valueType = isMethodDeclaration(node) ? getOrCreateTypeFromSignature(getSignatureFromDeclaration(node)) : getTypeOfNode(node); const thisType = hasStaticModifier(node) ? getTypeOfSymbol(getSymbolOfDeclaration(node.parent)) : getDeclaredTypeOfClassOrInterface(getSymbolOfDeclaration(node.parent)); const targetType = isGetAccessorDeclaration(node) ? createGetterFunctionType(valueType) : isSetAccessorDeclaration(node) ? createSetterFunctionType(valueType) : valueType; const contextType = createClassMemberDecoratorContextTypeForNode(node, thisType, valueType); const returnType = isGetAccessorDeclaration(node) ? createGetterFunctionType(valueType) : isSetAccessorDeclaration(node) ? createSetterFunctionType(valueType) : valueType; links.decoratorSignature = createESDecoratorCallSignature(targetType, contextType, returnType); break; } case 173: { const node = parent2; if (!isClassLike(node.parent)) break; const valueType = getTypeOfNode(node); const thisType = hasStaticModifier(node) ? getTypeOfSymbol(getSymbolOfDeclaration(node.parent)) : getDeclaredTypeOfClassOrInterface(getSymbolOfDeclaration(node.parent)); const targetType = hasAccessorModifier(node) ? createClassAccessorDecoratorTargetType(thisType, valueType) : undefinedType; const contextType = createClassMemberDecoratorContextTypeForNode(node, thisType, valueType); const returnType = hasAccessorModifier(node) ? createClassAccessorDecoratorResultType(thisType, valueType) : createClassFieldDecoratorInitializerMutatorType(thisType, valueType); links.decoratorSignature = createESDecoratorCallSignature(targetType, contextType, returnType); break; } } } return links.decoratorSignature === anySignature ? undefined : links.decoratorSignature; } function getLegacyDecoratorCallSignature(decorator) { const { parent: parent2 } = decorator; const links = getNodeLinks(parent2); if (!links.decoratorSignature) { links.decoratorSignature = anySignature; switch (parent2.kind) { case 264: case 232: { const node = parent2; const targetType = getTypeOfSymbol(getSymbolOfDeclaration(node)); const targetParam = createParameter2("target", targetType); links.decoratorSignature = createCallSignature(undefined, undefined, [targetParam], getUnionType([targetType, voidType])); break; } case 170: { const node = parent2; if (!isConstructorDeclaration(node.parent) && !(isMethodDeclaration(node.parent) || isSetAccessorDeclaration(node.parent) && isClassLike(node.parent.parent))) { break; } if (getThisParameter(node.parent) === node) { break; } const index = getThisParameter(node.parent) ? node.parent.parameters.indexOf(node) - 1 : node.parent.parameters.indexOf(node); Debug.assert(index >= 0); const targetType = isConstructorDeclaration(node.parent) ? getTypeOfSymbol(getSymbolOfDeclaration(node.parent.parent)) : getParentTypeOfClassElement(node.parent); const keyType = isConstructorDeclaration(node.parent) ? undefinedType : getClassElementPropertyKeyType(node.parent); const indexType = getNumberLiteralType(index); const targetParam = createParameter2("target", targetType); const keyParam = createParameter2("propertyKey", keyType); const indexParam = createParameter2("parameterIndex", indexType); links.decoratorSignature = createCallSignature(undefined, undefined, [targetParam, keyParam, indexParam], voidType); break; } case 175: case 178: case 179: case 173: { const node = parent2; if (!isClassLike(node.parent)) break; const targetType = getParentTypeOfClassElement(node); const targetParam = createParameter2("target", targetType); const keyType = getClassElementPropertyKeyType(node); const keyParam = createParameter2("propertyKey", keyType); const returnType = isPropertyDeclaration(node) ? voidType : createTypedPropertyDescriptorType(getTypeOfNode(node)); const hasPropDesc = !isPropertyDeclaration(parent2) || hasAccessorModifier(parent2); if (hasPropDesc) { const descriptorType = createTypedPropertyDescriptorType(getTypeOfNode(node)); const descriptorParam = createParameter2("descriptor", descriptorType); links.decoratorSignature = createCallSignature(undefined, undefined, [targetParam, keyParam, descriptorParam], getUnionType([returnType, voidType])); } else { links.decoratorSignature = createCallSignature(undefined, undefined, [targetParam, keyParam], getUnionType([returnType, voidType])); } break; } } } return links.decoratorSignature === anySignature ? undefined : links.decoratorSignature; } function getDecoratorCallSignature(decorator) { return legacyDecorators ? getLegacyDecoratorCallSignature(decorator) : getESDecoratorCallSignature(decorator); } function createPromiseType(promisedType) { const globalPromiseType = getGlobalPromiseType(true); if (globalPromiseType !== emptyGenericType) { promisedType = getAwaitedTypeNoAlias(unwrapAwaitedType(promisedType)) || unknownType; return createTypeReference(globalPromiseType, [promisedType]); } return unknownType; } function createPromiseLikeType(promisedType) { const globalPromiseLikeType = getGlobalPromiseLikeType(true); if (globalPromiseLikeType !== emptyGenericType) { promisedType = getAwaitedTypeNoAlias(unwrapAwaitedType(promisedType)) || unknownType; return createTypeReference(globalPromiseLikeType, [promisedType]); } return unknownType; } function createPromiseReturnType(func, promisedType) { const promiseType = createPromiseType(promisedType); if (promiseType === unknownType) { error2(func, isImportCall(func) ? Diagnostics.A_dynamic_import_call_returns_a_Promise_Make_sure_you_have_a_declaration_for_Promise_or_include_ES2015_in_your_lib_option : Diagnostics.An_async_function_or_method_must_return_a_Promise_Make_sure_you_have_a_declaration_for_Promise_or_include_ES2015_in_your_lib_option); return errorType; } else if (!getGlobalPromiseConstructorSymbol(true)) { error2(func, isImportCall(func) ? Diagnostics.A_dynamic_import_call_in_ES5_requires_the_Promise_constructor_Make_sure_you_have_a_declaration_for_the_Promise_constructor_or_include_ES2015_in_your_lib_option : Diagnostics.An_async_function_or_method_in_ES5_requires_the_Promise_constructor_Make_sure_you_have_a_declaration_for_the_Promise_constructor_or_include_ES2015_in_your_lib_option); } return promiseType; } function createNewTargetExpressionType(targetType) { const symbol = createSymbol(0, "NewTargetExpression"); const targetPropertySymbol = createSymbol(4, "target", 8); targetPropertySymbol.parent = symbol; targetPropertySymbol.links.type = targetType; const members = createSymbolTable([targetPropertySymbol]); symbol.members = members; return createAnonymousType(symbol, members, emptyArray, emptyArray, emptyArray); } function getReturnTypeFromBody(func, checkMode) { if (!func.body) { return errorType; } const functionFlags = getFunctionFlags(func); const isAsync = (functionFlags & 2) !== 0; const isGenerator = (functionFlags & 1) !== 0; let returnType; let yieldType; let nextType; let fallbackReturnType = voidType; if (func.body.kind !== 242) { returnType = checkExpressionCached(func.body, checkMode && checkMode & ~8); if (isConstContext(func.body)) { returnType = getRegularTypeOfLiteralType(returnType); } if (isAsync) { returnType = unwrapAwaitedType(checkAwaitedType(returnType, false, func, Diagnostics.The_return_type_of_an_async_function_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member)); } } else if (isGenerator) { const returnTypes = checkAndAggregateReturnExpressionTypes(func, checkMode); if (!returnTypes) { fallbackReturnType = neverType; } else if (returnTypes.length > 0) { returnType = getUnionType(returnTypes, 2); } const { yieldTypes, nextTypes } = checkAndAggregateYieldOperandTypes(func, checkMode); yieldType = some(yieldTypes) ? getUnionType(yieldTypes, 2) : undefined; nextType = some(nextTypes) ? getIntersectionType(nextTypes) : undefined; } else { const types = checkAndAggregateReturnExpressionTypes(func, checkMode); if (!types) { return functionFlags & 2 ? createPromiseReturnType(func, neverType) : neverType; } if (types.length === 0) { const contextualReturnType = getContextualReturnType(func, undefined); const returnType2 = contextualReturnType && someType(unwrapReturnType(contextualReturnType, functionFlags) || voidType, (t) => !!(t.flags & 4)) ? undefinedType : voidType; return functionFlags & 2 ? createPromiseReturnType(func, returnType2) : returnType2; } returnType = getUnionType(types, 2); } if (returnType || yieldType || nextType) { if (yieldType) reportErrorsFromWidening(func, yieldType, 3); if (returnType) reportErrorsFromWidening(func, returnType, 1); if (nextType) reportErrorsFromWidening(func, nextType, 2); if (returnType && isUnitType(returnType) || yieldType && isUnitType(yieldType) || nextType && isUnitType(nextType)) { const contextualSignature = getContextualSignatureForFunctionLikeDeclaration(func); const contextualType = !contextualSignature ? undefined : contextualSignature === getSignatureFromDeclaration(func) ? isGenerator ? undefined : returnType : instantiateContextualType(getReturnTypeOfSignature(contextualSignature), func, undefined); if (isGenerator) { yieldType = getWidenedLiteralLikeTypeForContextualIterationTypeIfNeeded(yieldType, contextualType, 0, isAsync); returnType = getWidenedLiteralLikeTypeForContextualIterationTypeIfNeeded(returnType, contextualType, 1, isAsync); nextType = getWidenedLiteralLikeTypeForContextualIterationTypeIfNeeded(nextType, contextualType, 2, isAsync); } else { returnType = getWidenedLiteralLikeTypeForContextualReturnTypeIfNeeded(returnType, contextualType, isAsync); } } if (yieldType) yieldType = getWidenedType(yieldType); if (returnType) returnType = getWidenedType(returnType); if (nextType) nextType = getWidenedType(nextType); } if (isGenerator) { return createGeneratorType(yieldType || neverType, returnType || fallbackReturnType, nextType || getContextualIterationType(2, func) || unknownType, isAsync); } else { return isAsync ? createPromiseType(returnType || fallbackReturnType) : returnType || fallbackReturnType; } } function createGeneratorType(yieldType, returnType, nextType, isAsyncGenerator) { const resolver = isAsyncGenerator ? asyncIterationTypesResolver : syncIterationTypesResolver; const globalGeneratorType = resolver.getGlobalGeneratorType(false); yieldType = resolver.resolveIterationType(yieldType, undefined) || unknownType; returnType = resolver.resolveIterationType(returnType, undefined) || unknownType; if (globalGeneratorType === emptyGenericType) { const globalIterableIteratorType = resolver.getGlobalIterableIteratorType(false); if (globalIterableIteratorType !== emptyGenericType) { return createTypeFromGenericGlobalType(globalIterableIteratorType, [yieldType, returnType, nextType]); } resolver.getGlobalIterableIteratorType(true); return emptyObjectType; } return createTypeFromGenericGlobalType(globalGeneratorType, [yieldType, returnType, nextType]); } function checkAndAggregateYieldOperandTypes(func, checkMode) { const yieldTypes = []; const nextTypes = []; const isAsync = (getFunctionFlags(func) & 2) !== 0; forEachYieldExpression(func.body, (yieldExpression) => { let yieldExpressionType = yieldExpression.expression ? checkExpression(yieldExpression.expression, checkMode && checkMode & ~8) : undefinedWideningType; if (yieldExpression.expression && isConstContext(yieldExpression.expression)) { yieldExpressionType = getRegularTypeOfLiteralType(yieldExpressionType); } pushIfUnique(yieldTypes, getYieldedTypeOfYieldExpression(yieldExpression, yieldExpressionType, anyType, isAsync)); let nextType; if (yieldExpression.asteriskToken) { const iterationTypes = getIterationTypesOfIterable(yieldExpressionType, isAsync ? 19 : 17, yieldExpression.expression); nextType = iterationTypes && iterationTypes.nextType; } else { nextType = getContextualType2(yieldExpression, undefined); } if (nextType) pushIfUnique(nextTypes, nextType); }); return { yieldTypes, nextTypes }; } function getYieldedTypeOfYieldExpression(node, expressionType, sentType, isAsync) { const errorNode = node.expression || node; const yieldedType = node.asteriskToken ? checkIteratedTypeOrElementType(isAsync ? 19 : 17, expressionType, sentType, errorNode) : expressionType; return !isAsync ? yieldedType : getAwaitedType(yieldedType, errorNode, node.asteriskToken ? Diagnostics.Type_of_iterated_elements_of_a_yield_Asterisk_operand_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member : Diagnostics.Type_of_yield_operand_in_an_async_generator_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member); } function getNotEqualFactsFromTypeofSwitch(start, end, witnesses) { let facts = 0; for (let i = 0;i < witnesses.length; i++) { const witness = i < start || i >= end ? witnesses[i] : undefined; facts |= witness !== undefined ? typeofNEFacts.get(witness) || 32768 : 0; } return facts; } function isExhaustiveSwitchStatement(node) { const links = getNodeLinks(node); if (links.isExhaustive === undefined) { links.isExhaustive = 0; const exhaustive = computeExhaustiveSwitchStatement(node); if (links.isExhaustive === 0) { links.isExhaustive = exhaustive; } } else if (links.isExhaustive === 0) { links.isExhaustive = false; } return links.isExhaustive; } function computeExhaustiveSwitchStatement(node) { if (node.expression.kind === 222) { const witnesses = getSwitchClauseTypeOfWitnesses(node); if (!witnesses) { return false; } const operandConstraint = getBaseConstraintOrType(checkExpressionCached(node.expression.expression)); const notEqualFacts = getNotEqualFactsFromTypeofSwitch(0, 0, witnesses); if (operandConstraint.flags & 3) { return (556800 & notEqualFacts) === 556800; } return !someType(operandConstraint, (t) => getTypeFacts(t, notEqualFacts) === notEqualFacts); } const type = getBaseConstraintOrType(checkExpressionCached(node.expression)); if (!isLiteralType(type)) { return false; } const switchTypes = getSwitchClauseTypes(node); if (!switchTypes.length || some(switchTypes, isNeitherUnitTypeNorNever)) { return false; } return eachTypeContainedIn(mapType(type, getRegularTypeOfLiteralType), switchTypes); } function functionHasImplicitReturn(func) { return func.endFlowNode && isReachableFlowNode(func.endFlowNode); } function checkAndAggregateReturnExpressionTypes(func, checkMode) { const functionFlags = getFunctionFlags(func); const aggregatedTypes = []; let hasReturnWithNoExpression = functionHasImplicitReturn(func); let hasReturnOfTypeNever = false; forEachReturnStatement(func.body, (returnStatement) => { let expr = returnStatement.expression; if (expr) { expr = skipParentheses(expr, true); if (functionFlags & 2 && expr.kind === 224) { expr = skipParentheses(expr.expression, true); } if (expr.kind === 214 && expr.expression.kind === 80 && checkExpressionCached(expr.expression).symbol === getMergedSymbol(func.symbol) && (!isFunctionExpressionOrArrowFunction(func.symbol.valueDeclaration) || isConstantReference(expr.expression))) { hasReturnOfTypeNever = true; return; } let type = checkExpressionCached(expr, checkMode && checkMode & ~8); if (functionFlags & 2) { type = unwrapAwaitedType(checkAwaitedType(type, false, func, Diagnostics.The_return_type_of_an_async_function_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member)); } if (type.flags & 262144) { hasReturnOfTypeNever = true; } pushIfUnique(aggregatedTypes, isConstContext(expr) ? getRegularTypeOfLiteralType(type) : type); } else { hasReturnWithNoExpression = true; } }); if (aggregatedTypes.length === 0 && !hasReturnWithNoExpression && (hasReturnOfTypeNever || mayReturnNever(func))) { return; } if (strictNullChecks && aggregatedTypes.length && hasReturnWithNoExpression && !(isJSConstructor(func) && aggregatedTypes.some((t) => t.symbol === func.symbol))) { pushIfUnique(aggregatedTypes, undefinedType); } return aggregatedTypes; } function mayReturnNever(func) { switch (func.kind) { case 219: case 220: return true; case 175: return func.parent.kind === 211; default: return false; } } function getTypePredicateFromBody(func) { switch (func.kind) { case 177: case 178: case 179: return; } const functionFlags = getFunctionFlags(func); if (functionFlags !== 0) return; let singleReturn; if (func.body && func.body.kind !== 242) { singleReturn = func.body; } else { const bailedEarly = forEachReturnStatement(func.body, (returnStatement) => { if (singleReturn || !returnStatement.expression) return true; singleReturn = returnStatement.expression; }); if (bailedEarly || !singleReturn || functionHasImplicitReturn(func)) return; } return checkIfExpressionRefinesAnyParameter(func, singleReturn); } function checkIfExpressionRefinesAnyParameter(func, expr) { expr = skipParentheses(expr, true); const returnType = checkExpressionCached(expr); if (!(returnType.flags & 256)) return; return forEach(func.parameters, (param, i) => { const initType = getTypeOfSymbol(param.symbol); if (!initType || initType.flags & 256 || !isIdentifier(param.name) || isSymbolAssigned(param.symbol) || isRestParameter(param)) { return; } const trueType2 = checkIfExpressionRefinesParameter(func, expr, param, initType); if (trueType2) { return createTypePredicate(1, unescapeLeadingUnderscores(param.name.escapedText), i, trueType2); } }); } function checkIfExpressionRefinesParameter(func, expr, param, initType) { const antecedent = canHaveFlowNode(expr) && expr.flowNode || expr.parent.kind === 254 && expr.parent.flowNode || createFlowNode(2, undefined, undefined); const trueCondition = createFlowNode(32, expr, antecedent); const trueType2 = getFlowTypeOfReference(param.name, initType, initType, func, trueCondition); if (trueType2 === initType) return; const falseCondition = createFlowNode(64, expr, antecedent); const falseSubtype = getReducedType(getFlowTypeOfReference(param.name, initType, trueType2, func, falseCondition)); return falseSubtype.flags & 262144 ? trueType2 : undefined; } function checkAllCodePathsInNonVoidFunctionReturnOrThrow(func, returnType) { addLazyDiagnostic(checkAllCodePathsInNonVoidFunctionReturnOrThrowDiagnostics); return; function checkAllCodePathsInNonVoidFunctionReturnOrThrowDiagnostics() { const functionFlags = getFunctionFlags(func); const type = returnType && unwrapReturnType(returnType, functionFlags); if (type && (maybeTypeOfKind(type, 16) || type.flags & (1 | 4))) { return; } if (func.kind === 174 || nodeIsMissing(func.body) || func.body.kind !== 242 || !functionHasImplicitReturn(func)) { return; } const hasExplicitReturn = func.flags & 1024; const errorNode = getEffectiveReturnTypeNode(func) || func; if (type && type.flags & 262144) { error2(errorNode, Diagnostics.A_function_returning_never_cannot_have_a_reachable_end_point); } else if (type && !hasExplicitReturn) { error2(errorNode, Diagnostics.A_function_whose_declared_type_is_neither_undefined_void_nor_any_must_return_a_value); } else if (type && strictNullChecks && !isTypeAssignableTo(undefinedType, type)) { error2(errorNode, Diagnostics.Function_lacks_ending_return_statement_and_return_type_does_not_include_undefined); } else if (compilerOptions.noImplicitReturns) { if (!type) { if (!hasExplicitReturn) { return; } const inferredReturnType = getReturnTypeOfSignature(getSignatureFromDeclaration(func)); if (isUnwrappedReturnTypeUndefinedVoidOrAny(func, inferredReturnType)) { return; } } error2(errorNode, Diagnostics.Not_all_code_paths_return_a_value); } } } function checkFunctionExpressionOrObjectLiteralMethod(node, checkMode) { Debug.assert(node.kind !== 175 || isObjectLiteralMethod(node)); checkNodeDeferred(node); if (isFunctionExpression(node)) { checkCollisionsForDeclarationName(node, node.name); } if (checkMode && checkMode & 4 && isContextSensitive(node)) { if (!getEffectiveReturnTypeNode(node) && !hasContextSensitiveParameters(node)) { const contextualSignature = getContextualSignature(node); if (contextualSignature && couldContainTypeVariables(getReturnTypeOfSignature(contextualSignature))) { const links = getNodeLinks(node); if (links.contextFreeType) { return links.contextFreeType; } const returnType = getReturnTypeFromBody(node, checkMode); const returnOnlySignature = createSignature(undefined, undefined, undefined, emptyArray, returnType, undefined, 0, 64); const returnOnlyType = createAnonymousType(node.symbol, emptySymbols, [returnOnlySignature], emptyArray, emptyArray); returnOnlyType.objectFlags |= 262144; return links.contextFreeType = returnOnlyType; } } return anyFunctionType; } const hasGrammarError = checkGrammarFunctionLikeDeclaration(node); if (!hasGrammarError && node.kind === 219) { checkGrammarForGenerator(node); } contextuallyCheckFunctionExpressionOrObjectLiteralMethod(node, checkMode); return getTypeOfSymbol(getSymbolOfDeclaration(node)); } function contextuallyCheckFunctionExpressionOrObjectLiteralMethod(node, checkMode) { const links = getNodeLinks(node); if (!(links.flags & 64)) { const contextualSignature = getContextualSignature(node); if (!(links.flags & 64)) { links.flags |= 64; const signature = firstOrUndefined(getSignaturesOfType(getTypeOfSymbol(getSymbolOfDeclaration(node)), 0)); if (!signature) { return; } if (isContextSensitive(node)) { if (contextualSignature) { const inferenceContext = getInferenceContext(node); let instantiatedContextualSignature; if (checkMode && checkMode & 2) { inferFromAnnotatedParametersAndReturn(signature, contextualSignature, inferenceContext); const restType = getEffectiveRestType(contextualSignature); if (restType && restType.flags & 524288) { instantiatedContextualSignature = instantiateSignature(contextualSignature, inferenceContext.nonFixingMapper); } } instantiatedContextualSignature || (instantiatedContextualSignature = inferenceContext ? instantiateSignature(contextualSignature, inferenceContext.mapper) : contextualSignature); assignContextualParameterTypes(signature, instantiatedContextualSignature); } else { assignNonContextualParameterTypes(signature); } } else if (contextualSignature && !node.typeParameters && contextualSignature.parameters.length > node.parameters.length) { const inferenceContext = getInferenceContext(node); if (checkMode && checkMode & 2) { inferFromAnnotatedParametersAndReturn(signature, contextualSignature, inferenceContext); } } if (contextualSignature && !getReturnTypeFromAnnotation(node) && !signature.resolvedReturnType) { const returnType = getReturnTypeFromBody(node, checkMode); if (!signature.resolvedReturnType) { signature.resolvedReturnType = returnType; } } checkSignatureDeclaration(node); } } } function checkFunctionExpressionOrObjectLiteralMethodDeferred(node) { Debug.assert(node.kind !== 175 || isObjectLiteralMethod(node)); const functionFlags = getFunctionFlags(node); const returnType = getReturnTypeFromAnnotation(node); checkAllCodePathsInNonVoidFunctionReturnOrThrow(node, returnType); if (node.body) { if (!getEffectiveReturnTypeNode(node)) { getReturnTypeOfSignature(getSignatureFromDeclaration(node)); } if (node.body.kind === 242) { checkSourceElement(node.body); } else { const exprType = checkExpression(node.body); const returnOrPromisedType = returnType && unwrapReturnType(returnType, functionFlags); if (returnOrPromisedType) { checkReturnExpression(node, returnOrPromisedType, node.body, node.body, exprType); } } } } function checkArithmeticOperandType(operand, type, diagnostic, isAwaitValid = false) { if (!isTypeAssignableTo(type, numberOrBigIntType)) { const awaitedType = isAwaitValid && getAwaitedTypeOfPromise(type); errorAndMaybeSuggestAwait(operand, !!awaitedType && isTypeAssignableTo(awaitedType, numberOrBigIntType), diagnostic); return false; } return true; } function isReadonlyAssignmentDeclaration(d) { if (!isCallExpression(d)) { return false; } if (!isBindableObjectDefinePropertyCall(d)) { return false; } const objectLitType = checkExpressionCached(d.arguments[2]); const valueType = getTypeOfPropertyOfType(objectLitType, "value"); if (valueType) { const writableProp = getPropertyOfType(objectLitType, "writable"); const writableType = writableProp && getTypeOfSymbol(writableProp); if (!writableType || writableType === falseType || writableType === regularFalseType) { return true; } if (writableProp && writableProp.valueDeclaration && isPropertyAssignment(writableProp.valueDeclaration)) { const initializer = writableProp.valueDeclaration.initializer; const rawOriginalType = checkExpression(initializer); if (rawOriginalType === falseType || rawOriginalType === regularFalseType) { return true; } } return false; } const setProp = getPropertyOfType(objectLitType, "set"); return !setProp; } function isReadonlySymbol(symbol) { return !!(getCheckFlags(symbol) & 8 || symbol.flags & 4 && getDeclarationModifierFlagsFromSymbol(symbol) & 8 || symbol.flags & 3 && getDeclarationNodeFlagsFromSymbol(symbol) & 6 || symbol.flags & 98304 && !(symbol.flags & 65536) || symbol.flags & 8 || some(symbol.declarations, isReadonlyAssignmentDeclaration)); } function isAssignmentToReadonlyEntity(expr, symbol, assignmentKind) { var _a, _b; if (assignmentKind === 0) { return false; } if (isReadonlySymbol(symbol)) { if (symbol.flags & 4 && isAccessExpression(expr) && expr.expression.kind === 110) { const ctor = getControlFlowContainer(expr); if (!(ctor && (ctor.kind === 177 || isJSConstructor(ctor)))) { return true; } if (symbol.valueDeclaration) { const isAssignmentDeclaration2 = isBinaryExpression(symbol.valueDeclaration); const isLocalPropertyDeclaration = ctor.parent === symbol.valueDeclaration.parent; const isLocalParameterProperty = ctor === symbol.valueDeclaration.parent; const isLocalThisPropertyAssignment = isAssignmentDeclaration2 && ((_a = symbol.parent) == null ? undefined : _a.valueDeclaration) === ctor.parent; const isLocalThisPropertyAssignmentConstructorFunction = isAssignmentDeclaration2 && ((_b = symbol.parent) == null ? undefined : _b.valueDeclaration) === ctor; const isWriteableSymbol = isLocalPropertyDeclaration || isLocalParameterProperty || isLocalThisPropertyAssignment || isLocalThisPropertyAssignmentConstructorFunction; return !isWriteableSymbol; } } return true; } if (isAccessExpression(expr)) { const node = skipParentheses(expr.expression); if (node.kind === 80) { const symbol2 = getNodeLinks(node).resolvedSymbol; if (symbol2.flags & 2097152) { const declaration = getDeclarationOfAliasSymbol(symbol2); return !!declaration && declaration.kind === 275; } } } return false; } function checkReferenceExpression(expr, invalidReferenceMessage, invalidOptionalChainMessage) { const node = skipOuterExpressions(expr, 38 | 1); if (node.kind !== 80 && !isAccessExpression(node)) { error2(expr, invalidReferenceMessage); return false; } if (node.flags & 64) { error2(expr, invalidOptionalChainMessage); return false; } return true; } function checkDeleteExpression(node) { checkExpression(node.expression); const expr = skipParentheses(node.expression); if (!isAccessExpression(expr)) { error2(expr, Diagnostics.The_operand_of_a_delete_operator_must_be_a_property_reference); return booleanType; } if (isPropertyAccessExpression(expr) && isPrivateIdentifier(expr.name)) { error2(expr, Diagnostics.The_operand_of_a_delete_operator_cannot_be_a_private_identifier); } const links = getNodeLinks(expr); const symbol = getExportSymbolOfValueSymbolIfExported(links.resolvedSymbol); if (symbol) { if (isReadonlySymbol(symbol)) { error2(expr, Diagnostics.The_operand_of_a_delete_operator_cannot_be_a_read_only_property); } else { checkDeleteExpressionMustBeOptional(expr, symbol); } } return booleanType; } function checkDeleteExpressionMustBeOptional(expr, symbol) { const type = getTypeOfSymbol(symbol); if (strictNullChecks && !(type.flags & (3 | 262144)) && !(exactOptionalPropertyTypes ? symbol.flags & 16777216 : hasTypeFacts(type, 16777216))) { error2(expr, Diagnostics.The_operand_of_a_delete_operator_must_be_optional); } } function checkTypeOfExpression(node) { checkExpression(node.expression); return typeofType; } function checkVoidExpression(node) { checkNodeDeferred(node); return undefinedWideningType; } function checkAwaitGrammar(node) { let hasError = false; const container = getContainingFunctionOrClassStaticBlock(node); if (container && isClassStaticBlockDeclaration(container)) { const message = isAwaitExpression(node) ? Diagnostics.await_expression_cannot_be_used_inside_a_class_static_block : Diagnostics.await_using_statements_cannot_be_used_inside_a_class_static_block; error2(node, message); hasError = true; } else if (!(node.flags & 65536)) { if (isInTopLevelContext(node)) { const sourceFile = getSourceFileOfNode(node); if (!hasParseDiagnostics(sourceFile)) { let span; if (!isEffectiveExternalModule(sourceFile, compilerOptions)) { span ?? (span = getSpanOfTokenAtPosition(sourceFile, node.pos)); const message = isAwaitExpression(node) ? Diagnostics.await_expressions_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_file_has_no_imports_or_exports_Consider_adding_an_empty_export_to_make_this_file_a_module : Diagnostics.await_using_statements_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_file_has_no_imports_or_exports_Consider_adding_an_empty_export_to_make_this_file_a_module; const diagnostic = createFileDiagnostic(sourceFile, span.start, span.length, message); diagnostics.add(diagnostic); hasError = true; } switch (moduleKind) { case 100: case 101: case 102: case 199: if (sourceFile.impliedNodeFormat === 1) { span ?? (span = getSpanOfTokenAtPosition(sourceFile, node.pos)); diagnostics.add(createFileDiagnostic(sourceFile, span.start, span.length, Diagnostics.The_current_file_is_a_CommonJS_module_and_cannot_use_await_at_the_top_level)); hasError = true; break; } case 7: case 99: case 200: case 4: if (languageVersion >= 4) { break; } default: span ?? (span = getSpanOfTokenAtPosition(sourceFile, node.pos)); const message = isAwaitExpression(node) ? Diagnostics.Top_level_await_expressions_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_node16_node18_node20_nodenext_or_preserve_and_the_target_option_is_set_to_es2017_or_higher : Diagnostics.Top_level_await_using_statements_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_node16_node18_node20_nodenext_or_preserve_and_the_target_option_is_set_to_es2017_or_higher; diagnostics.add(createFileDiagnostic(sourceFile, span.start, span.length, message)); hasError = true; break; } } } else { const sourceFile = getSourceFileOfNode(node); if (!hasParseDiagnostics(sourceFile)) { const span = getSpanOfTokenAtPosition(sourceFile, node.pos); const message = isAwaitExpression(node) ? Diagnostics.await_expressions_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules : Diagnostics.await_using_statements_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules; const diagnostic = createFileDiagnostic(sourceFile, span.start, span.length, message); if (container && container.kind !== 177 && (getFunctionFlags(container) & 2) === 0) { const relatedInfo = createDiagnosticForNode(container, Diagnostics.Did_you_mean_to_mark_this_function_as_async); addRelatedInfo(diagnostic, relatedInfo); } diagnostics.add(diagnostic); hasError = true; } } } if (isAwaitExpression(node) && isInParameterInitializerBeforeContainingFunction(node)) { error2(node, Diagnostics.await_expressions_cannot_be_used_in_a_parameter_initializer); hasError = true; } return hasError; } function checkAwaitExpression(node) { addLazyDiagnostic(() => checkAwaitGrammar(node)); const operandType = checkExpression(node.expression); const awaitedType = checkAwaitedType(operandType, true, node, Diagnostics.Type_of_await_operand_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member); if (awaitedType === operandType && !isErrorType(awaitedType) && !(operandType.flags & 3)) { addErrorOrSuggestion(false, createDiagnosticForNode(node, Diagnostics.await_has_no_effect_on_the_type_of_this_expression)); } return awaitedType; } function checkPrefixUnaryExpression(node) { const operandType = checkExpression(node.operand); if (operandType === silentNeverType) { return silentNeverType; } switch (node.operand.kind) { case 9: switch (node.operator) { case 41: return getFreshTypeOfLiteralType(getNumberLiteralType(-node.operand.text)); case 40: return getFreshTypeOfLiteralType(getNumberLiteralType(+node.operand.text)); } break; case 10: if (node.operator === 41) { return getFreshTypeOfLiteralType(getBigIntLiteralType({ negative: true, base10Value: parsePseudoBigInt(node.operand.text) })); } } switch (node.operator) { case 40: case 41: case 55: checkNonNullType(operandType, node.operand); if (maybeTypeOfKindConsideringBaseConstraint(operandType, 16896)) { error2(node.operand, Diagnostics.The_0_operator_cannot_be_applied_to_type_symbol, tokenToString(node.operator)); } if (node.operator === 40) { if (maybeTypeOfKindConsideringBaseConstraint(operandType, 4224)) { error2(node.operand, Diagnostics.Operator_0_cannot_be_applied_to_type_1, tokenToString(node.operator), typeToString(getBaseTypeOfLiteralType(operandType))); } return numberType; } return getUnaryResultType(operandType); case 54: checkTruthinessOfType(operandType, node.operand); const facts = getTypeFacts(operandType, 4194304 | 8388608); return facts === 4194304 ? falseType : facts === 8388608 ? trueType : booleanType; case 46: case 47: const ok = checkArithmeticOperandType(node.operand, checkNonNullType(operandType, node.operand), Diagnostics.An_arithmetic_operand_must_be_of_type_any_number_bigint_or_an_enum_type); if (ok) { checkReferenceExpression(node.operand, Diagnostics.The_operand_of_an_increment_or_decrement_operator_must_be_a_variable_or_a_property_access, Diagnostics.The_operand_of_an_increment_or_decrement_operator_may_not_be_an_optional_property_access); } return getUnaryResultType(operandType); } return errorType; } function checkPostfixUnaryExpression(node) { const operandType = checkExpression(node.operand); if (operandType === silentNeverType) { return silentNeverType; } const ok = checkArithmeticOperandType(node.operand, checkNonNullType(operandType, node.operand), Diagnostics.An_arithmetic_operand_must_be_of_type_any_number_bigint_or_an_enum_type); if (ok) { checkReferenceExpression(node.operand, Diagnostics.The_operand_of_an_increment_or_decrement_operator_must_be_a_variable_or_a_property_access, Diagnostics.The_operand_of_an_increment_or_decrement_operator_may_not_be_an_optional_property_access); } return getUnaryResultType(operandType); } function getUnaryResultType(operandType) { if (maybeTypeOfKind(operandType, 4224)) { return isTypeAssignableToKind(operandType, 3) || maybeTypeOfKind(operandType, 67648) ? numberOrBigIntType : bigintType; } return numberType; } function maybeTypeOfKindConsideringBaseConstraint(type, kind) { if (maybeTypeOfKind(type, kind)) { return true; } const baseConstraint = getBaseConstraintOrType(type); return !!baseConstraint && maybeTypeOfKind(baseConstraint, kind); } function maybeTypeOfKind(type, kind) { if (type.flags & kind) { return true; } if (type.flags & 402653184) { const types = type.types; for (const t of types) { if (maybeTypeOfKind(t, kind)) { return true; } } } return false; } function isTypeAssignableToKind(source, kind, strict) { if (source.flags & kind) { return true; } if (strict && source.flags & (3 | 16 | 4 | 8)) { return false; } return !!(kind & 67648) && isTypeAssignableTo(source, numberType) || !!(kind & 4224) && isTypeAssignableTo(source, bigintType) || !!(kind & 12583968) && isTypeAssignableTo(source, stringType) || !!(kind & 8448) && isTypeAssignableTo(source, booleanType) || !!(kind & 16) && isTypeAssignableTo(source, voidType) || !!(kind & 262144) && isTypeAssignableTo(source, neverType) || !!(kind & 8) && isTypeAssignableTo(source, nullType) || !!(kind & 4) && isTypeAssignableTo(source, undefinedType) || !!(kind & 512) && isTypeAssignableTo(source, esSymbolType) || !!(kind & 131072) && isTypeAssignableTo(source, nonPrimitiveType); } function allTypesAssignableToKind(source, kind, strict) { return source.flags & 134217728 ? every(source.types, (subType) => allTypesAssignableToKind(subType, kind, strict)) : isTypeAssignableToKind(source, kind, strict); } function isConstEnumObjectType(type) { return !!(getObjectFlags(type) & 16) && !!type.symbol && isConstEnumSymbol(type.symbol); } function isConstEnumSymbol(symbol) { return (symbol.flags & 128) !== 0; } function getSymbolHasInstanceMethodOfObjectType(type) { const hasInstancePropertyName = getPropertyNameForKnownSymbolName("hasInstance"); if (allTypesAssignableToKind(type, 131072)) { const hasInstanceProperty = getPropertyOfType(type, hasInstancePropertyName); if (hasInstanceProperty) { const hasInstancePropertyType = getTypeOfSymbol(hasInstanceProperty); if (hasInstancePropertyType && getSignaturesOfType(hasInstancePropertyType, 0).length !== 0) { return hasInstancePropertyType; } } } } function checkInstanceOfExpression(left, right, leftType, rightType, checkMode) { if (leftType === silentNeverType || rightType === silentNeverType) { return silentNeverType; } if (!isTypeAny(leftType) && allTypesAssignableToKind(leftType, 12713980)) { error2(left, Diagnostics.The_left_hand_side_of_an_instanceof_expression_must_be_of_type_any_an_object_type_or_a_type_parameter); } Debug.assert(isInstanceOfExpression(left.parent)); const signature = getResolvedSignature(left.parent, undefined, checkMode); if (signature === resolvingSignature) { return silentNeverType; } const returnType = getReturnTypeOfSignature(signature); checkTypeAssignableTo(returnType, booleanType, right, Diagnostics.An_object_s_Symbol_hasInstance_method_must_return_a_boolean_value_for_it_to_be_used_on_the_right_hand_side_of_an_instanceof_expression); return booleanType; } function hasEmptyObjectIntersection(type) { return someType(type, (t) => t === unknownEmptyObjectType || !!(t.flags & 268435456) && isEmptyAnonymousObjectType(getBaseConstraintOrType(t))); } function checkInExpression(left, right, leftType, rightType) { if (leftType === silentNeverType || rightType === silentNeverType) { return silentNeverType; } if (isPrivateIdentifier(left)) { if (languageVersion < LanguageFeatureMinimumTarget.PrivateNamesAndClassStaticBlocks || languageVersion < LanguageFeatureMinimumTarget.ClassAndClassElementDecorators || !useDefineForClassFields) { checkExternalEmitHelpers(left, 2097152); } if (!getNodeLinks(left).resolvedSymbol && getContainingClass(left)) { const isUncheckedJS = isUncheckedJSSuggestion(left, rightType.symbol, true); reportNonexistentProperty(left, rightType, isUncheckedJS); } } else { checkTypeAssignableTo(checkNonNullType(leftType, left), stringNumberSymbolType, left); } if (checkTypeAssignableTo(checkNonNullType(rightType, right), nonPrimitiveType, right)) { if (hasEmptyObjectIntersection(rightType)) { error2(right, Diagnostics.Type_0_may_represent_a_primitive_value_which_is_not_permitted_as_the_right_operand_of_the_in_operator, typeToString(rightType)); } } return booleanType; } function checkObjectLiteralAssignment(node, sourceType, rightIsThis) { const properties = node.properties; if (strictNullChecks && properties.length === 0) { return checkNonNullType(sourceType, node); } for (let i = 0;i < properties.length; i++) { checkObjectLiteralDestructuringPropertyAssignment(node, sourceType, i, properties, rightIsThis); } return sourceType; } function checkObjectLiteralDestructuringPropertyAssignment(node, objectLiteralType, propertyIndex, allProperties, rightIsThis = false) { const properties = node.properties; const property = properties[propertyIndex]; if (property.kind === 304 || property.kind === 305) { const name = property.name; const exprType = getLiteralTypeFromPropertyName(name); if (isTypeUsableAsPropertyName(exprType)) { const text = getPropertyNameFromType(exprType); const prop = getPropertyOfType(objectLiteralType, text); if (prop) { markPropertyAsReferenced(prop, property, rightIsThis); checkPropertyAccessibility(property, false, true, objectLiteralType, prop); } } const elementType = getIndexedAccessType(objectLiteralType, exprType, 32 | (hasDefaultValue(property) ? 16 : 0), name); const type = getFlowTypeOfDestructuring(property, elementType); return checkDestructuringAssignment(property.kind === 305 ? property : property.initializer, type); } else if (property.kind === 306) { if (propertyIndex < properties.length - 1) { error2(property, Diagnostics.A_rest_element_must_be_last_in_a_destructuring_pattern); } else { if (languageVersion < LanguageFeatureMinimumTarget.ObjectSpreadRest) { checkExternalEmitHelpers(property, 4); } const nonRestNames = []; if (allProperties) { for (const otherProperty of allProperties) { if (!isSpreadAssignment(otherProperty)) { nonRestNames.push(otherProperty.name); } } } const type = getRestType(objectLiteralType, nonRestNames, objectLiteralType.symbol); checkGrammarForDisallowedTrailingComma(allProperties, Diagnostics.A_rest_parameter_or_binding_pattern_may_not_have_a_trailing_comma); return checkDestructuringAssignment(property.expression, type); } } else { error2(property, Diagnostics.Property_assignment_expected); } } function checkArrayLiteralAssignment(node, sourceType, checkMode) { const elements = node.elements; if (languageVersion < LanguageFeatureMinimumTarget.DestructuringAssignment && compilerOptions.downlevelIteration) { checkExternalEmitHelpers(node, 512); } const possiblyOutOfBoundsType = checkIteratedTypeOrElementType(65 | 128, sourceType, undefinedType, node) || errorType; let inBoundsType = compilerOptions.noUncheckedIndexedAccess ? undefined : possiblyOutOfBoundsType; for (let i = 0;i < elements.length; i++) { let type = possiblyOutOfBoundsType; if (node.elements[i].kind === 231) { type = inBoundsType = inBoundsType ?? (checkIteratedTypeOrElementType(65, sourceType, undefinedType, node) || errorType); } checkArrayLiteralDestructuringElementAssignment(node, sourceType, i, type, checkMode); } return sourceType; } function checkArrayLiteralDestructuringElementAssignment(node, sourceType, elementIndex, elementType, checkMode) { const elements = node.elements; const element = elements[elementIndex]; if (element.kind !== 233) { if (element.kind !== 231) { const indexType = getNumberLiteralType(elementIndex); if (isArrayLikeType(sourceType)) { const accessFlags = 32 | (hasDefaultValue(element) ? 16 : 0); const elementType2 = getIndexedAccessTypeOrUndefined(sourceType, indexType, accessFlags, createSyntheticExpression(element, indexType)) || errorType; const assignedType = hasDefaultValue(element) ? getTypeWithFacts(elementType2, 524288) : elementType2; const type = getFlowTypeOfDestructuring(element, assignedType); return checkDestructuringAssignment(element, type, checkMode); } return checkDestructuringAssignment(element, elementType, checkMode); } if (elementIndex < elements.length - 1) { error2(element, Diagnostics.A_rest_element_must_be_last_in_a_destructuring_pattern); } else { const restExpression = element.expression; if (restExpression.kind === 227 && restExpression.operatorToken.kind === 64) { error2(restExpression.operatorToken, Diagnostics.A_rest_element_cannot_have_an_initializer); } else { checkGrammarForDisallowedTrailingComma(node.elements, Diagnostics.A_rest_parameter_or_binding_pattern_may_not_have_a_trailing_comma); const type = everyType(sourceType, isTupleType) ? mapType(sourceType, (t) => sliceTupleType(t, elementIndex)) : createArrayType(elementType); return checkDestructuringAssignment(restExpression, type, checkMode); } } } return; } function checkDestructuringAssignment(exprOrAssignment, sourceType, checkMode, rightIsThis) { let target; if (exprOrAssignment.kind === 305) { const prop = exprOrAssignment; if (prop.objectAssignmentInitializer) { if (strictNullChecks && !hasTypeFacts(checkExpression(prop.objectAssignmentInitializer), 16777216)) { sourceType = getTypeWithFacts(sourceType, 524288); } checkBinaryLikeExpression(prop.name, prop.equalsToken, prop.objectAssignmentInitializer, checkMode); } target = exprOrAssignment.name; } else { target = exprOrAssignment; } if (target.kind === 227 && target.operatorToken.kind === 64) { checkBinaryExpression(target, checkMode); target = target.left; if (strictNullChecks) { sourceType = getTypeWithFacts(sourceType, 524288); } } if (target.kind === 211) { return checkObjectLiteralAssignment(target, sourceType, rightIsThis); } if (target.kind === 210) { return checkArrayLiteralAssignment(target, sourceType, checkMode); } return checkReferenceAssignment(target, sourceType, checkMode); } function checkReferenceAssignment(target, sourceType, checkMode) { const targetType = checkExpression(target, checkMode); const error3 = target.parent.kind === 306 ? Diagnostics.The_target_of_an_object_rest_assignment_must_be_a_variable_or_a_property_access : Diagnostics.The_left_hand_side_of_an_assignment_expression_must_be_a_variable_or_a_property_access; const optionalError = target.parent.kind === 306 ? Diagnostics.The_target_of_an_object_rest_assignment_may_not_be_an_optional_property_access : Diagnostics.The_left_hand_side_of_an_assignment_expression_may_not_be_an_optional_property_access; if (checkReferenceExpression(target, error3, optionalError)) { checkTypeAssignableToAndOptionallyElaborate(sourceType, targetType, target, target); } if (isPrivateIdentifierPropertyAccessExpression(target)) { checkExternalEmitHelpers(target.parent, 1048576); } return sourceType; } function isSideEffectFree(node) { node = skipParentheses(node); switch (node.kind) { case 80: case 11: case 14: case 216: case 229: case 15: case 9: case 10: case 112: case 97: case 106: case 157: case 219: case 232: case 220: case 210: case 211: case 222: case 236: case 286: case 285: return true; case 228: return isSideEffectFree(node.whenTrue) && isSideEffectFree(node.whenFalse); case 227: if (isAssignmentOperator(node.operatorToken.kind)) { return false; } return isSideEffectFree(node.left) && isSideEffectFree(node.right); case 225: case 226: switch (node.operator) { case 54: case 40: case 41: case 55: return true; } return false; case 223: case 217: case 235: default: return false; } } function isTypeEqualityComparableTo(source, target) { return (target.flags & 12) !== 0 || isTypeComparableTo(source, target); } function createCheckBinaryExpression() { const trampoline = createBinaryExpressionTrampoline(onEnter, onLeft, onOperator, onRight, onExit, foldState); return (node, checkMode) => { const result = trampoline(node, checkMode); Debug.assertIsDefined(result); return result; }; function onEnter(node, state, checkMode) { if (state) { state.stackIndex++; state.skip = false; setLeftType(state, undefined); setLastResult(state, undefined); } else { state = { checkMode, skip: false, stackIndex: 0, typeStack: [undefined, undefined] }; } if (isInJSFile(node) && getAssignedExpandoInitializer(node)) { state.skip = true; setLastResult(state, checkExpression(node.right, checkMode)); return state; } checkNullishCoalesceOperands(node); const operator = node.operatorToken.kind; if (operator === 64 && (node.left.kind === 211 || node.left.kind === 210)) { state.skip = true; setLastResult(state, checkDestructuringAssignment(node.left, checkExpression(node.right, checkMode), checkMode, node.right.kind === 110)); return state; } return state; } function onLeft(left, state, _node) { if (!state.skip) { return maybeCheckExpression(state, left); } } function onOperator(operatorToken, state, node) { if (!state.skip) { const leftType = getLastResult(state); Debug.assertIsDefined(leftType); setLeftType(state, leftType); setLastResult(state, undefined); const operator = operatorToken.kind; if (isLogicalOrCoalescingBinaryOperator(operator)) { let parent2 = node.parent; while (parent2.kind === 218 || isLogicalOrCoalescingBinaryExpression(parent2)) { parent2 = parent2.parent; } if (operator === 56 || isIfStatement(parent2)) { checkTestingKnownTruthyCallableOrAwaitableOrEnumMemberType(node.left, leftType, isIfStatement(parent2) ? parent2.thenStatement : undefined); } if (isBinaryLogicalOperator(operator)) { checkTruthinessOfType(leftType, node.left); } } } } function onRight(right, state, _node) { if (!state.skip) { return maybeCheckExpression(state, right); } } function onExit(node, state) { let result; if (state.skip) { result = getLastResult(state); } else { const leftType = getLeftType(state); Debug.assertIsDefined(leftType); const rightType = getLastResult(state); Debug.assertIsDefined(rightType); result = checkBinaryLikeExpressionWorker(node.left, node.operatorToken, node.right, leftType, rightType, state.checkMode, node); } state.skip = false; setLeftType(state, undefined); setLastResult(state, undefined); state.stackIndex--; return result; } function foldState(state, result, _side) { setLastResult(state, result); return state; } function maybeCheckExpression(state, node) { if (isBinaryExpression(node)) { return node; } setLastResult(state, checkExpression(node, state.checkMode)); } function getLeftType(state) { return state.typeStack[state.stackIndex]; } function setLeftType(state, type) { state.typeStack[state.stackIndex] = type; } function getLastResult(state) { return state.typeStack[state.stackIndex + 1]; } function setLastResult(state, type) { state.typeStack[state.stackIndex + 1] = type; } } function checkNullishCoalesceOperands(node) { if (node.operatorToken.kind !== 61) { return; } if (isBinaryExpression(node.parent)) { const { left, operatorToken } = node.parent; if (isBinaryExpression(left) && operatorToken.kind === 57) { grammarErrorOnNode(left, Diagnostics._0_and_1_operations_cannot_be_mixed_without_parentheses, tokenToString(61), tokenToString(operatorToken.kind)); } } else if (isBinaryExpression(node.left)) { const { operatorToken } = node.left; if (operatorToken.kind === 57 || operatorToken.kind === 56) { grammarErrorOnNode(node.left, Diagnostics._0_and_1_operations_cannot_be_mixed_without_parentheses, tokenToString(operatorToken.kind), tokenToString(61)); } } else if (isBinaryExpression(node.right)) { const { operatorToken } = node.right; if (operatorToken.kind === 56) { grammarErrorOnNode(node.right, Diagnostics._0_and_1_operations_cannot_be_mixed_without_parentheses, tokenToString(61), tokenToString(operatorToken.kind)); } } checkNullishCoalesceOperandLeft(node); } function checkNullishCoalesceOperandLeft(node) { const leftTarget = skipOuterExpressions(node.left, 63); const nullishSemantics = getSyntacticNullishnessSemantics(leftTarget); if (nullishSemantics !== 3) { if (nullishSemantics === 1) { error2(leftTarget, Diagnostics.This_expression_is_always_nullish); } else { error2(leftTarget, Diagnostics.Right_operand_of_is_unreachable_because_the_left_operand_is_never_nullish); } } } function getSyntacticNullishnessSemantics(node) { node = skipOuterExpressions(node); switch (node.kind) { case 224: case 214: case 216: case 213: case 237: case 215: case 212: case 230: case 110: return 3; case 227: switch (node.operatorToken.kind) { case 57: case 76: case 56: case 77: return 3; case 28: case 64: case 61: case 78: return getSyntacticNullishnessSemantics(node.right); } return 2; case 228: return getSyntacticNullishnessSemantics(node.whenTrue) | getSyntacticNullishnessSemantics(node.whenFalse); case 106: return 1; case 80: if (getResolvedSymbol(node) === undefinedSymbol) { return 1; } return 3; } return 2; } function checkBinaryLikeExpression(left, operatorToken, right, checkMode, errorNode) { const operator = operatorToken.kind; if (operator === 64 && (left.kind === 211 || left.kind === 210)) { return checkDestructuringAssignment(left, checkExpression(right, checkMode), checkMode, right.kind === 110); } let leftType; if (isBinaryLogicalOperator(operator)) { leftType = checkTruthinessExpression(left, checkMode); } else { leftType = checkExpression(left, checkMode); } const rightType = checkExpression(right, checkMode); return checkBinaryLikeExpressionWorker(left, operatorToken, right, leftType, rightType, checkMode, errorNode); } function checkBinaryLikeExpressionWorker(left, operatorToken, right, leftType, rightType, checkMode, errorNode) { const operator = operatorToken.kind; switch (operator) { case 42: case 43: case 67: case 68: case 44: case 69: case 45: case 70: case 41: case 66: case 48: case 71: case 49: case 72: case 50: case 73: case 52: case 75: case 53: case 79: case 51: case 74: if (leftType === silentNeverType || rightType === silentNeverType) { return silentNeverType; } leftType = checkNonNullType(leftType, left); rightType = checkNonNullType(rightType, right); let suggestedOperator; if (leftType.flags & 8448 && rightType.flags & 8448 && (suggestedOperator = getSuggestedBooleanOperator(operatorToken.kind)) !== undefined) { error2(errorNode || operatorToken, Diagnostics.The_0_operator_is_not_allowed_for_boolean_types_Consider_using_1_instead, tokenToString(operatorToken.kind), tokenToString(suggestedOperator)); return numberType; } else { const leftOk = checkArithmeticOperandType(left, leftType, Diagnostics.The_left_hand_side_of_an_arithmetic_operation_must_be_of_type_any_number_bigint_or_an_enum_type, true); const rightOk = checkArithmeticOperandType(right, rightType, Diagnostics.The_right_hand_side_of_an_arithmetic_operation_must_be_of_type_any_number_bigint_or_an_enum_type, true); let resultType2; if (isTypeAssignableToKind(leftType, 3) && isTypeAssignableToKind(rightType, 3) || !(maybeTypeOfKind(leftType, 4224) || maybeTypeOfKind(rightType, 4224))) { resultType2 = numberType; } else if (bothAreBigIntLike(leftType, rightType)) { switch (operator) { case 50: case 73: reportOperatorError(); break; case 43: case 68: if (languageVersion < 3) { error2(errorNode, Diagnostics.Exponentiation_cannot_be_performed_on_bigint_values_unless_the_target_option_is_set_to_es2016_or_later); } } resultType2 = bigintType; } else { reportOperatorError(bothAreBigIntLike); resultType2 = errorType; } if (leftOk && rightOk) { checkAssignmentOperator(resultType2); switch (operator) { case 48: case 71: case 49: case 72: case 50: case 73: const rhsEval = evaluate(right); if (typeof rhsEval.value === "number" && Math.abs(rhsEval.value) >= 32) { errorOrSuggestion(isEnumMember(walkUpParenthesizedExpressions(right.parent.parent)), errorNode || operatorToken, Diagnostics.This_operation_can_be_simplified_This_shift_is_identical_to_0_1_2, getTextOfNode(left), tokenToString(operator), rhsEval.value % 32); } break; default: break; } } return resultType2; } case 40: case 65: if (leftType === silentNeverType || rightType === silentNeverType) { return silentNeverType; } if (!isTypeAssignableToKind(leftType, 12583968) && !isTypeAssignableToKind(rightType, 12583968)) { leftType = checkNonNullType(leftType, left); rightType = checkNonNullType(rightType, right); } let resultType; if (isTypeAssignableToKind(leftType, 67648, true) && isTypeAssignableToKind(rightType, 67648, true)) { resultType = numberType; } else if (isTypeAssignableToKind(leftType, 4224, true) && isTypeAssignableToKind(rightType, 4224, true)) { resultType = bigintType; } else if (isTypeAssignableToKind(leftType, 12583968, true) || isTypeAssignableToKind(rightType, 12583968, true)) { resultType = stringType; } else if (isTypeAny(leftType) || isTypeAny(rightType)) { resultType = isErrorType(leftType) || isErrorType(rightType) ? errorType : anyType; } if (resultType && !checkForDisallowedESSymbolOperand(operator)) { return resultType; } if (!resultType) { const closeEnoughKind = 67648 | 4224 | 12583968 | 3; reportOperatorError((left2, right2) => isTypeAssignableToKind(left2, closeEnoughKind) && isTypeAssignableToKind(right2, closeEnoughKind)); return anyType; } if (operator === 65) { checkAssignmentOperator(resultType); } return resultType; case 30: case 32: case 33: case 34: if (checkForDisallowedESSymbolOperand(operator)) { leftType = getBaseTypeOfLiteralTypeForComparison(checkNonNullType(leftType, left)); rightType = getBaseTypeOfLiteralTypeForComparison(checkNonNullType(rightType, right)); reportOperatorErrorUnless((left2, right2) => { if (isTypeAny(left2) || isTypeAny(right2)) { return true; } const leftAssignableToNumber = isTypeAssignableTo(left2, numberOrBigIntType); const rightAssignableToNumber = isTypeAssignableTo(right2, numberOrBigIntType); return leftAssignableToNumber && rightAssignableToNumber || !leftAssignableToNumber && !rightAssignableToNumber && areTypesComparable(left2, right2); }); } return booleanType; case 35: case 36: case 37: case 38: if (!(checkMode && checkMode & 64)) { if ((isLiteralExpressionOfObject(left) || isLiteralExpressionOfObject(right)) && (!isInJSFile(left) || (operator === 37 || operator === 38))) { const eqType = operator === 35 || operator === 37; error2(errorNode, Diagnostics.This_condition_will_always_return_0_since_JavaScript_compares_objects_by_reference_not_value, eqType ? "false" : "true"); } checkNaNEquality(errorNode, operator, left, right); reportOperatorErrorUnless((left2, right2) => isTypeEqualityComparableTo(left2, right2) || isTypeEqualityComparableTo(right2, left2)); } return booleanType; case 104: return checkInstanceOfExpression(left, right, leftType, rightType, checkMode); case 103: return checkInExpression(left, right, leftType, rightType); case 56: case 77: { const resultType2 = hasTypeFacts(leftType, 4194304) ? getUnionType([extractDefinitelyFalsyTypes(strictNullChecks ? leftType : getBaseTypeOfLiteralType(rightType)), rightType]) : leftType; if (operator === 77) { checkAssignmentOperator(rightType); } return resultType2; } case 57: case 76: { const resultType2 = hasTypeFacts(leftType, 8388608) ? getUnionType([getNonNullableType(removeDefinitelyFalsyTypes(leftType)), rightType], 2) : leftType; if (operator === 76) { checkAssignmentOperator(rightType); } return resultType2; } case 61: case 78: { const resultType2 = hasTypeFacts(leftType, 262144) ? getUnionType([getNonNullableType(leftType), rightType], 2) : leftType; if (operator === 78) { checkAssignmentOperator(rightType); } return resultType2; } case 64: const declKind = isBinaryExpression(left.parent) ? getAssignmentDeclarationKind(left.parent) : 0; checkAssignmentDeclaration(declKind, rightType); if (isAssignmentDeclaration2(declKind)) { if (!(rightType.flags & 1048576) || declKind !== 2 && declKind !== 6 && !isEmptyObjectType(rightType) && !isFunctionObjectType(rightType) && !(getObjectFlags(rightType) & 1)) { checkAssignmentOperator(rightType); } return leftType; } else { checkAssignmentOperator(rightType); return rightType; } case 28: if (!compilerOptions.allowUnreachableCode && isSideEffectFree(left) && !isIndirectCall(left.parent)) { const sf = getSourceFileOfNode(left); const sourceText = sf.text; const start = skipTrivia2(sourceText, left.pos); const isInDiag2657 = sf.parseDiagnostics.some((diag2) => { if (diag2.code !== Diagnostics.JSX_expressions_must_have_one_parent_element.code) return false; return textSpanContainsPosition(diag2, start); }); if (!isInDiag2657) error2(left, Diagnostics.Left_side_of_comma_operator_is_unused_and_has_no_side_effects); } return rightType; default: return Debug.fail(); } function bothAreBigIntLike(left2, right2) { return isTypeAssignableToKind(left2, 4224) && isTypeAssignableToKind(right2, 4224); } function checkAssignmentDeclaration(kind, rightType2) { if (kind === 2) { for (const prop of getPropertiesOfObjectType(rightType2)) { const propType = getTypeOfSymbol(prop); if (propType.symbol && propType.symbol.flags & 32) { const name = prop.escapedName; const symbol = resolveName(prop.valueDeclaration, name, 788968, undefined, false); if ((symbol == null ? undefined : symbol.declarations) && symbol.declarations.some(isJSDocTypedefTag)) { addDuplicateDeclarationErrorsForSymbols(symbol, Diagnostics.Duplicate_identifier_0, unescapeLeadingUnderscores(name), prop); addDuplicateDeclarationErrorsForSymbols(prop, Diagnostics.Duplicate_identifier_0, unescapeLeadingUnderscores(name), symbol); } } } } } function isIndirectCall(node) { return node.parent.kind === 218 && isNumericLiteral(node.left) && node.left.text === "0" && (isCallExpression(node.parent.parent) && node.parent.parent.expression === node.parent || node.parent.parent.kind === 216) && (isAccessExpression(node.right) || isIdentifier(node.right) && node.right.escapedText === "eval"); } function checkForDisallowedESSymbolOperand(operator2) { const offendingSymbolOperand = maybeTypeOfKindConsideringBaseConstraint(leftType, 16896) ? left : maybeTypeOfKindConsideringBaseConstraint(rightType, 16896) ? right : undefined; if (offendingSymbolOperand) { error2(offendingSymbolOperand, Diagnostics.The_0_operator_cannot_be_applied_to_type_symbol, tokenToString(operator2)); return false; } return true; } function getSuggestedBooleanOperator(operator2) { switch (operator2) { case 52: case 75: return 57; case 53: case 79: return 38; case 51: case 74: return 56; default: return; } } function checkAssignmentOperator(valueType) { if (isAssignmentOperator(operator)) { addLazyDiagnostic(checkAssignmentOperatorWorker); } function checkAssignmentOperatorWorker() { let assigneeType = leftType; if (isCompoundAssignment(operatorToken.kind) && left.kind === 212) { assigneeType = checkPropertyAccessExpression(left, undefined, true); } if (checkReferenceExpression(left, Diagnostics.The_left_hand_side_of_an_assignment_expression_must_be_a_variable_or_a_property_access, Diagnostics.The_left_hand_side_of_an_assignment_expression_may_not_be_an_optional_property_access)) { let headMessage; if (exactOptionalPropertyTypes && isPropertyAccessExpression(left) && maybeTypeOfKind(valueType, 4)) { const target = getTypeOfPropertyOfType(getTypeOfExpression(left.expression), left.name.escapedText); if (isExactOptionalPropertyMismatch(valueType, target)) { headMessage = Diagnostics.Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_type_of_the_target; } } checkTypeAssignableToAndOptionallyElaborate(valueType, assigneeType, left, right, headMessage); } } } function isAssignmentDeclaration2(kind) { var _a; switch (kind) { case 2: return true; case 1: case 5: case 6: case 3: case 4: const symbol = getSymbolOfNode(left); const init = getAssignedExpandoInitializer(right); return !!init && isObjectLiteralExpression(init) && !!((_a = symbol == null ? undefined : symbol.exports) == null ? undefined : _a.size); default: return false; } } function reportOperatorErrorUnless(typesAreCompatible) { if (!typesAreCompatible(leftType, rightType)) { reportOperatorError(typesAreCompatible); return true; } return false; } function reportOperatorError(isRelated) { let wouldWorkWithAwait = false; const errNode = errorNode || operatorToken; if (isRelated) { const awaitedLeftType = getAwaitedTypeNoAlias(leftType); const awaitedRightType = getAwaitedTypeNoAlias(rightType); wouldWorkWithAwait = !(awaitedLeftType === leftType && awaitedRightType === rightType) && !!(awaitedLeftType && awaitedRightType) && isRelated(awaitedLeftType, awaitedRightType); } let effectiveLeft = leftType; let effectiveRight = rightType; if (!wouldWorkWithAwait && isRelated) { [effectiveLeft, effectiveRight] = getBaseTypesIfUnrelated(leftType, rightType, isRelated); } const [leftStr, rightStr] = getTypeNamesForErrorDisplay(effectiveLeft, effectiveRight); if (!tryGiveBetterPrimaryError(errNode, wouldWorkWithAwait, leftStr, rightStr)) { errorAndMaybeSuggestAwait(errNode, wouldWorkWithAwait, Diagnostics.Operator_0_cannot_be_applied_to_types_1_and_2, tokenToString(operatorToken.kind), leftStr, rightStr); } } function tryGiveBetterPrimaryError(errNode, maybeMissingAwait, leftStr, rightStr) { switch (operatorToken.kind) { case 37: case 35: case 38: case 36: return errorAndMaybeSuggestAwait(errNode, maybeMissingAwait, Diagnostics.This_comparison_appears_to_be_unintentional_because_the_types_0_and_1_have_no_overlap, leftStr, rightStr); default: return; } } function checkNaNEquality(errorNode2, operator2, left2, right2) { const isLeftNaN = isGlobalNaN(skipParentheses(left2)); const isRightNaN = isGlobalNaN(skipParentheses(right2)); if (isLeftNaN || isRightNaN) { const err = error2(errorNode2, Diagnostics.This_condition_will_always_return_0, tokenToString(operator2 === 37 || operator2 === 35 ? 97 : 112)); if (isLeftNaN && isRightNaN) return; const operatorString = operator2 === 38 || operator2 === 36 ? tokenToString(54) : ""; const location = isLeftNaN ? right2 : left2; const expression = skipParentheses(location); addRelatedInfo(err, createDiagnosticForNode(location, Diagnostics.Did_you_mean_0, `${operatorString}Number.isNaN(${isEntityNameExpression(expression) ? entityNameToString(expression) : "..."})`)); } } function isGlobalNaN(expr) { if (isIdentifier(expr) && expr.escapedText === "NaN") { const globalNaNSymbol = getGlobalNaNSymbol(); return !!globalNaNSymbol && globalNaNSymbol === getResolvedSymbol(expr); } return false; } } function getBaseTypesIfUnrelated(leftType, rightType, isRelated) { let effectiveLeft = leftType; let effectiveRight = rightType; const leftBase = getBaseTypeOfLiteralType(leftType); const rightBase = getBaseTypeOfLiteralType(rightType); if (!isRelated(leftBase, rightBase)) { effectiveLeft = leftBase; effectiveRight = rightBase; } return [effectiveLeft, effectiveRight]; } function checkYieldExpression(node) { addLazyDiagnostic(checkYieldExpressionGrammar); const func = getContainingFunction(node); if (!func) return anyType; const functionFlags = getFunctionFlags(func); if (!(functionFlags & 1)) { return anyType; } const isAsync = (functionFlags & 2) !== 0; if (node.asteriskToken) { if (isAsync && languageVersion < LanguageFeatureMinimumTarget.AsyncGenerators) { checkExternalEmitHelpers(node, 26624); } if (!isAsync && languageVersion < LanguageFeatureMinimumTarget.Generators && compilerOptions.downlevelIteration) { checkExternalEmitHelpers(node, 256); } } let returnType = getReturnTypeFromAnnotation(func); if (returnType && returnType.flags & 134217728) { returnType = filterType(returnType, (t) => checkGeneratorInstantiationAssignabilityToReturnType(t, functionFlags, undefined)); } const iterationTypes = returnType && getIterationTypesOfGeneratorFunctionReturnType(returnType, isAsync); const signatureYieldType = iterationTypes && iterationTypes.yieldType || anyType; const signatureNextType = iterationTypes && iterationTypes.nextType || anyType; const yieldExpressionType = node.expression ? checkExpression(node.expression) : undefinedWideningType; const yieldedType = getYieldedTypeOfYieldExpression(node, yieldExpressionType, signatureNextType, isAsync); if (returnType && yieldedType) { checkTypeAssignableToAndOptionallyElaborate(yieldedType, signatureYieldType, node.expression || node, node.expression); } if (node.asteriskToken) { const use = isAsync ? 19 : 17; return getIterationTypeOfIterable(use, 1, yieldExpressionType, node.expression) || anyType; } else if (returnType) { return getIterationTypeOfGeneratorFunctionReturnType(2, returnType, isAsync) || anyType; } let type = getContextualIterationType(2, func); if (!type) { type = anyType; addLazyDiagnostic(() => { if (noImplicitAny && !expressionResultIsUnused(node)) { const contextualType = getContextualType2(node, undefined); if (!contextualType || isTypeAny(contextualType)) { error2(node, Diagnostics.yield_expression_implicitly_results_in_an_any_type_because_its_containing_generator_lacks_a_return_type_annotation); } } }); } return type; function checkYieldExpressionGrammar() { if (!(node.flags & 16384)) { grammarErrorOnFirstToken(node, Diagnostics.A_yield_expression_is_only_allowed_in_a_generator_body); } if (isInParameterInitializerBeforeContainingFunction(node)) { error2(node, Diagnostics.yield_expressions_cannot_be_used_in_a_parameter_initializer); } } } function checkConditionalExpression(node, checkMode) { const type = checkTruthinessExpression(node.condition, checkMode); checkTestingKnownTruthyCallableOrAwaitableOrEnumMemberType(node.condition, type, node.whenTrue); const type1 = checkExpression(node.whenTrue, checkMode); const type2 = checkExpression(node.whenFalse, checkMode); return getUnionType([type1, type2], 2); } function isTemplateLiteralContext(node) { const parent2 = node.parent; return isParenthesizedExpression(parent2) && isTemplateLiteralContext(parent2) || isElementAccessExpression(parent2) && parent2.argumentExpression === node; } function checkTemplateExpression(node) { const texts = [node.head.text]; const types = []; for (const span of node.templateSpans) { const type = checkExpression(span.expression); if (maybeTypeOfKindConsideringBaseConstraint(type, 16896)) { error2(span.expression, Diagnostics.Implicit_conversion_of_a_symbol_to_a_string_will_fail_at_runtime_Consider_wrapping_this_expression_in_String); } texts.push(span.literal.text); types.push(isTypeAssignableTo(type, templateConstraintType) ? type : stringType); } const evaluated = node.parent.kind !== 216 && evaluate(node).value; if (evaluated) { return getFreshTypeOfLiteralType(getStringLiteralType(evaluated)); } if (isConstContext(node) || isTemplateLiteralContext(node) || someType(getContextualType2(node, undefined) || unknownType, isTemplateLiteralContextualType)) { return getTemplateLiteralType(texts, types); } return stringType; } function isTemplateLiteralContextualType(type) { return !!(type.flags & (1024 | 4194304) || type.flags & 117964800 && maybeTypeOfKind(getBaseConstraintOfType(type) || unknownType, 12583968)); } function getContextNode2(node) { if (isJsxAttributes(node) && !isJsxSelfClosingElement(node.parent)) { return node.parent.parent; } return node; } function checkExpressionWithContextualType(node, contextualType, inferenceContext, checkMode) { const contextNode = getContextNode2(node); pushContextualType(contextNode, contextualType, false); pushInferenceContext(contextNode, inferenceContext); const type = checkExpression(node, checkMode | 1 | (inferenceContext ? 2 : 0)); if (inferenceContext && inferenceContext.intraExpressionInferenceSites) { inferenceContext.intraExpressionInferenceSites = undefined; } const result = maybeTypeOfKind(type, 15360) && isLiteralOfContextualType(type, instantiateContextualType(contextualType, node, undefined)) ? getRegularTypeOfLiteralType(type) : type; popInferenceContext(); popContextualType(); return result; } function checkExpressionCached(node, checkMode) { if (checkMode) { return checkExpression(node, checkMode); } const links = getNodeLinks(node); if (!links.resolvedType) { const saveFlowLoopStart = flowLoopStart; const saveFlowTypeCache = flowTypeCache; flowLoopStart = flowLoopCount; flowTypeCache = undefined; links.resolvedType = checkExpression(node, checkMode); flowTypeCache = saveFlowTypeCache; flowLoopStart = saveFlowLoopStart; } return links.resolvedType; } function isTypeAssertion(node) { node = skipParentheses(node, true); return node.kind === 217 || node.kind === 235 || isJSDocTypeAssertion(node); } function checkDeclarationInitializer(declaration, checkMode, contextualType) { const initializer = getEffectiveInitializer(declaration); if (isInJSFile(declaration)) { const typeNode = tryGetJSDocSatisfiesTypeNode(declaration); if (typeNode) { return checkSatisfiesExpressionWorker(initializer, typeNode, checkMode); } } const type = getQuickTypeOfExpression(initializer) || (contextualType ? checkExpressionWithContextualType(initializer, contextualType, undefined, checkMode || 0) : checkExpressionCached(initializer, checkMode)); if (isParameter(isBindingElement(declaration) ? walkUpBindingElementsAndPatterns(declaration) : declaration)) { if (declaration.name.kind === 207 && isObjectLiteralType2(type)) { return padObjectLiteralType(type, declaration.name); } if (declaration.name.kind === 208 && isTupleType(type)) { return padTupleType(type, declaration.name); } } return type; } function padObjectLiteralType(type, pattern) { let missingElements; for (const e of pattern.elements) { if (e.initializer) { const name = getPropertyNameFromBindingElement(e); if (name && !getPropertyOfType(type, name)) { missingElements = append(missingElements, e); } } } if (!missingElements) { return type; } const members = createSymbolTable(); for (const prop of getPropertiesOfObjectType(type)) { members.set(prop.escapedName, prop); } for (const e of missingElements) { const symbol = createSymbol(4 | 16777216, getPropertyNameFromBindingElement(e)); symbol.links.type = getTypeFromBindingElement(e, false, false); members.set(symbol.escapedName, symbol); } const result = createAnonymousType(type.symbol, members, emptyArray, emptyArray, getIndexInfosOfType(type)); result.objectFlags = type.objectFlags; return result; } function getPropertyNameFromBindingElement(e) { const exprType = getLiteralTypeFromPropertyName(e.propertyName || e.name); return isTypeUsableAsPropertyName(exprType) ? getPropertyNameFromType(exprType) : undefined; } function padTupleType(type, pattern) { if (type.target.combinedFlags & 12 || getTypeReferenceArity(type) >= pattern.elements.length) { return type; } const patternElements = pattern.elements; const elementTypes = getElementTypes(type).slice(); const elementFlags = type.target.elementFlags.slice(); for (let i = getTypeReferenceArity(type);i < patternElements.length; i++) { const e = patternElements[i]; if (i < patternElements.length - 1 || !(e.kind === 209 && e.dotDotDotToken)) { elementTypes.push(!isOmittedExpression(e) && hasDefaultValue(e) ? getTypeFromBindingElement(e, false, false) : anyType); elementFlags.push(2); if (!isOmittedExpression(e) && !hasDefaultValue(e)) { reportImplicitAny(e, anyType); } } } return createTupleType(elementTypes, elementFlags, type.target.readonly); } function widenTypeInferredFromInitializer(declaration, type) { const widened = getWidenedLiteralTypeForInitializer(declaration, type); if (isInJSFile(declaration)) { if (isEmptyLiteralType(widened)) { reportImplicitAny(declaration, anyType); return anyType; } else if (isEmptyArrayLiteralType(widened)) { reportImplicitAny(declaration, anyArrayType); return anyArrayType; } } return widened; } function getWidenedLiteralTypeForInitializer(declaration, type) { return getCombinedNodeFlagsCached(declaration) & 6 || isDeclarationReadonly(declaration) ? type : getWidenedLiteralType(type); } function isLiteralOfContextualType(candidateType, contextualType) { if (contextualType) { if (contextualType.flags & 402653184) { const types = contextualType.types; return some(types, (t) => isLiteralOfContextualType(candidateType, t)); } if (contextualType.flags & 117964800) { const constraint = getBaseConstraintOfType(contextualType) || unknownType; return maybeTypeOfKind(constraint, 32) && maybeTypeOfKind(candidateType, 1024) || maybeTypeOfKind(constraint, 64) && maybeTypeOfKind(candidateType, 2048) || maybeTypeOfKind(constraint, 128) && maybeTypeOfKind(candidateType, 4096) || maybeTypeOfKind(constraint, 512) && maybeTypeOfKind(candidateType, 16384) || isLiteralOfContextualType(candidateType, constraint); } return !!(contextualType.flags & (1024 | 2097152 | 4194304 | 8388608) && maybeTypeOfKind(candidateType, 1024) || contextualType.flags & 2048 && maybeTypeOfKind(candidateType, 2048) || contextualType.flags & 4096 && maybeTypeOfKind(candidateType, 4096) || contextualType.flags & 8192 && maybeTypeOfKind(candidateType, 8192) || contextualType.flags & 16384 && maybeTypeOfKind(candidateType, 16384)); } return false; } function isConstContext(node) { const parent2 = node.parent; return isAssertionExpression(parent2) && isConstTypeReference(parent2.type) || isJSDocTypeAssertion(parent2) && isConstTypeReference(getJSDocTypeAssertionType(parent2)) || isValidConstAssertionArgument(node) && isConstTypeVariable(getContextualType2(node, 0)) || (isParenthesizedExpression(parent2) || isArrayLiteralExpression(parent2) || isSpreadElement(parent2)) && isConstContext(parent2) || (isPropertyAssignment(parent2) || isShorthandPropertyAssignment(parent2) || isTemplateSpan(parent2)) && isConstContext(parent2.parent); } function checkExpressionForMutableLocation(node, checkMode, forceTuple) { const type = checkExpression(node, checkMode, forceTuple); return isConstContext(node) || isCommonJsExportedExpression(node) ? getRegularTypeOfLiteralType(type) : isTypeAssertion(node) ? type : getWidenedLiteralLikeTypeForContextualType(type, instantiateContextualType(getContextualType2(node, undefined), node, undefined)); } function checkPropertyAssignment(node, checkMode) { if (node.name.kind === 168) { checkComputedPropertyName(node.name); } return checkExpressionForMutableLocation(node.initializer, checkMode); } function checkObjectLiteralMethod(node, checkMode) { checkGrammarMethod(node); if (node.name.kind === 168) { checkComputedPropertyName(node.name); } const uninstantiatedType = checkFunctionExpressionOrObjectLiteralMethod(node, checkMode); return instantiateTypeWithSingleGenericCallSignature(node, uninstantiatedType, checkMode); } function instantiateTypeWithSingleGenericCallSignature(node, type, checkMode) { if (checkMode && checkMode & (2 | 8)) { const callSignature = getSingleSignature(type, 0, true); const constructSignature = getSingleSignature(type, 1, true); const signature = callSignature || constructSignature; if (signature && signature.typeParameters) { const contextualType = getApparentTypeOfContextualType(node, 2); if (contextualType) { const contextualSignature = getSingleSignature(getNonNullableType(contextualType), callSignature ? 0 : 1, false); if (contextualSignature && !contextualSignature.typeParameters) { if (checkMode & 8) { skippedGenericFunction(node, checkMode); return anyFunctionType; } const context = getInferenceContext(node); const returnType = context.signature && getReturnTypeOfSignature(context.signature); const returnSignature = returnType && getSingleCallOrConstructSignature(returnType); if (returnSignature && !returnSignature.typeParameters && !every(context.inferences, hasInferenceCandidates)) { const uniqueTypeParameters = getUniqueTypeParameters(context, signature.typeParameters); const instantiatedSignature = getSignatureInstantiationWithoutFillingInTypeArguments(signature, uniqueTypeParameters); const inferences = map(context.inferences, (info) => createInferenceInfo(info.typeParameter)); applyToParameterTypes(instantiatedSignature, contextualSignature, (source, target) => { inferTypes(inferences, source, target, 0, true); }); if (some(inferences, hasInferenceCandidates)) { applyToReturnTypes(instantiatedSignature, contextualSignature, (source, target) => { inferTypes(inferences, source, target); }); if (!hasOverlappingInferences(context.inferences, inferences)) { mergeInferences(context.inferences, inferences); context.inferredTypeParameters = concatenate(context.inferredTypeParameters, uniqueTypeParameters); return getOrCreateTypeFromSignature(instantiatedSignature); } } } return getOrCreateTypeFromSignature(instantiateSignatureInContextOf(signature, contextualSignature, context)); } } } } return type; } function skippedGenericFunction(node, checkMode) { if (checkMode & 2) { const context = getInferenceContext(node); context.flags |= 4; } } function hasInferenceCandidates(info) { return !!(info.candidates || info.contraCandidates); } function hasInferenceCandidatesOrDefault(info) { return !!(info.candidates || info.contraCandidates || hasTypeParameterDefault(info.typeParameter)); } function hasOverlappingInferences(a, b) { for (let i = 0;i < a.length; i++) { if (hasInferenceCandidates(a[i]) && hasInferenceCandidates(b[i])) { return true; } } return false; } function mergeInferences(target, source) { for (let i = 0;i < target.length; i++) { if (!hasInferenceCandidates(target[i]) && hasInferenceCandidates(source[i])) { target[i] = source[i]; } } } function getUniqueTypeParameters(context, typeParameters) { const result = []; let oldTypeParameters; let newTypeParameters; for (const tp of typeParameters) { const name = tp.symbol.escapedName; if (hasTypeParameterByName(context.inferredTypeParameters, name) || hasTypeParameterByName(result, name)) { const newName = getUniqueTypeParameterName(concatenate(context.inferredTypeParameters, result), name); const symbol = createSymbol(262144, newName); const newTypeParameter = createTypeParameter(symbol); newTypeParameter.target = tp; oldTypeParameters = append(oldTypeParameters, tp); newTypeParameters = append(newTypeParameters, newTypeParameter); result.push(newTypeParameter); } else { result.push(tp); } } if (newTypeParameters) { const mapper = createTypeMapper(oldTypeParameters, newTypeParameters); for (const tp of newTypeParameters) { tp.mapper = mapper; } } return result; } function hasTypeParameterByName(typeParameters, name) { return some(typeParameters, (tp) => tp.symbol.escapedName === name); } function getUniqueTypeParameterName(typeParameters, baseName) { let len = baseName.length; while (len > 1 && baseName.charCodeAt(len - 1) >= 48 && baseName.charCodeAt(len - 1) <= 57) len--; const s = baseName.slice(0, len); for (let index = 1;; index++) { const augmentedName = s + index; if (!hasTypeParameterByName(typeParameters, augmentedName)) { return augmentedName; } } } function getReturnTypeOfSingleNonGenericCallSignature(funcType) { const signature = getSingleCallSignature(funcType); if (signature && !signature.typeParameters) { return getReturnTypeOfSignature(signature); } } function getReturnTypeOfSingleNonGenericSignatureOfCallChain(expr) { const funcType = checkExpression(expr.expression); const nonOptionalType = getOptionalExpressionType(funcType, expr.expression); const returnType = getReturnTypeOfSingleNonGenericCallSignature(funcType); return returnType && propagateOptionalTypeMarker(returnType, expr, nonOptionalType !== funcType); } function getTypeOfExpression(node) { const quickType = getQuickTypeOfExpression(node); if (quickType) { return quickType; } if (node.flags & 268435456 && flowTypeCache) { const cachedType = flowTypeCache[getNodeId(node)]; if (cachedType) { return cachedType; } } const startInvocationCount = flowInvocationCount; const type = checkExpression(node, 64); if (flowInvocationCount !== startInvocationCount) { const cache = flowTypeCache || (flowTypeCache = []); cache[getNodeId(node)] = type; setNodeFlags(node, node.flags | 268435456); } return type; } function getQuickTypeOfExpression(node) { let expr = skipParentheses(node, true); if (isJSDocTypeAssertion(expr)) { const type = getJSDocTypeAssertionType(expr); if (!isConstTypeReference(type)) { return getTypeFromTypeNode(type); } } expr = skipParentheses(node); if (isAwaitExpression(expr)) { const type = getQuickTypeOfExpression(expr.expression); return type ? getAwaitedType(type) : undefined; } if (isCallExpression(expr) && expr.expression.kind !== 108 && !isRequireCall(expr, true) && !isSymbolOrSymbolForCall(expr) && !isImportCall(expr)) { return isCallChain(expr) ? getReturnTypeOfSingleNonGenericSignatureOfCallChain(expr) : getReturnTypeOfSingleNonGenericCallSignature(checkNonNullExpression(expr.expression)); } else if (isAssertionExpression(expr) && !isConstTypeReference(expr.type)) { return getTypeFromTypeNode(expr.type); } else if (isLiteralExpression(node) || isBooleanLiteral(node)) { return checkExpression(node); } return; } function getContextFreeTypeOfExpression(node) { const links = getNodeLinks(node); if (links.contextFreeType) { return links.contextFreeType; } pushContextualType(node, anyType, false); const type = links.contextFreeType = checkExpression(node, 4); popContextualType(); return type; } function checkExpression(node, checkMode, forceTuple) { var _a, _b; (_a = tracing) == null || _a.push(tracing.Phase.Check, "checkExpression", { kind: node.kind, pos: node.pos, end: node.end, path: node.tracingPath }); const saveCurrentNode = currentNode; currentNode = node; instantiationCount = 0; const uninstantiatedType = checkExpressionWorker(node, checkMode, forceTuple); const type = instantiateTypeWithSingleGenericCallSignature(node, uninstantiatedType, checkMode); if (isConstEnumObjectType(type)) { checkConstEnumAccess(node, type); } currentNode = saveCurrentNode; (_b = tracing) == null || _b.pop(); return type; } function checkConstEnumAccess(node, type) { var _a; const ok = node.parent.kind === 212 && node.parent.expression === node || node.parent.kind === 213 && node.parent.expression === node || ((node.kind === 80 || node.kind === 167) && isInRightSideOfImportOrExportAssignment(node) || node.parent.kind === 187 && node.parent.exprName === node) || node.parent.kind === 282; if (!ok) { error2(node, Diagnostics.const_enums_can_only_be_used_in_property_or_index_access_expressions_or_the_right_hand_side_of_an_import_declaration_or_export_assignment_or_type_query); } if (compilerOptions.isolatedModules || compilerOptions.verbatimModuleSyntax && ok && !resolveName(node, getFirstIdentifier(node), 2097152, undefined, false, true)) { Debug.assert(!!(type.symbol.flags & 128)); const constEnumDeclaration = type.symbol.valueDeclaration; const redirect = (_a = host.getRedirectFromOutput(getSourceFileOfNode(constEnumDeclaration).resolvedPath)) == null ? undefined : _a.resolvedRef; if (constEnumDeclaration.flags & 33554432 && !isValidTypeOnlyAliasUseSite(node) && (!redirect || !shouldPreserveConstEnums(redirect.commandLine.options))) { error2(node, Diagnostics.Cannot_access_ambient_const_enums_when_0_is_enabled, isolatedModulesLikeFlagName); } } } function checkParenthesizedExpression(node, checkMode) { if (hasJSDocNodes(node)) { if (isJSDocSatisfiesExpression(node)) { return checkSatisfiesExpressionWorker(node.expression, getJSDocSatisfiesExpressionType(node), checkMode); } if (isJSDocTypeAssertion(node)) { return checkAssertionWorker(node, checkMode); } } return checkExpression(node.expression, checkMode); } function checkExpressionWorker(node, checkMode, forceTuple) { const kind = node.kind; if (cancellationToken) { switch (kind) { case 232: case 219: case 220: cancellationToken.throwIfCancellationRequested(); } } switch (kind) { case 80: return checkIdentifier(node, checkMode); case 81: return checkPrivateIdentifierExpression(node); case 110: return checkThisExpression(node); case 108: return checkSuperExpression(node); case 106: return nullWideningType; case 15: case 11: return hasSkipDirectInferenceFlag(node) ? blockedStringType : getFreshTypeOfLiteralType(getStringLiteralType(node.text)); case 9: checkGrammarNumericLiteral(node); return getFreshTypeOfLiteralType(getNumberLiteralType(+node.text)); case 10: checkGrammarBigIntLiteral(node); return getFreshTypeOfLiteralType(getBigIntLiteralType({ negative: false, base10Value: parsePseudoBigInt(node.text) })); case 112: return trueType; case 97: return falseType; case 229: return checkTemplateExpression(node); case 14: return checkRegularExpressionLiteral(node); case 210: return checkArrayLiteral(node, checkMode, forceTuple); case 211: return checkObjectLiteral(node, checkMode); case 212: return checkPropertyAccessExpression(node, checkMode); case 167: return checkQualifiedName(node, checkMode); case 213: return checkIndexedAccess(node, checkMode); case 214: if (isImportCall(node)) { return checkImportCallExpression(node); } case 215: return checkCallExpression(node, checkMode); case 216: return checkTaggedTemplateExpression(node); case 218: return checkParenthesizedExpression(node, checkMode); case 232: return checkClassExpression(node); case 219: case 220: return checkFunctionExpressionOrObjectLiteralMethod(node, checkMode); case 222: return checkTypeOfExpression(node); case 217: case 235: return checkAssertion(node, checkMode); case 236: return checkNonNullAssertion(node); case 234: return checkExpressionWithTypeArguments(node); case 239: return checkSatisfiesExpression(node); case 237: return checkMetaProperty(node); case 221: return checkDeleteExpression(node); case 223: return checkVoidExpression(node); case 224: return checkAwaitExpression(node); case 225: return checkPrefixUnaryExpression(node); case 226: return checkPostfixUnaryExpression(node); case 227: return checkBinaryExpression(node, checkMode); case 228: return checkConditionalExpression(node, checkMode); case 231: return checkSpreadExpression(node, checkMode); case 233: return undefinedWideningType; case 230: return checkYieldExpression(node); case 238: return checkSyntheticExpression(node); case 295: return checkJsxExpression(node, checkMode); case 285: return checkJsxElement(node, checkMode); case 286: return checkJsxSelfClosingElement(node, checkMode); case 289: return checkJsxFragment(node); case 293: return checkJsxAttributes(node, checkMode); case 287: Debug.fail("Shouldn't ever directly check a JsxOpeningElement"); } return errorType; } function checkTypeParameter(node) { checkGrammarModifiers(node); if (node.expression) { grammarErrorOnFirstToken(node.expression, Diagnostics.Type_expected); } checkSourceElement(node.constraint); checkSourceElement(node.default); const typeParameter = getDeclaredTypeOfTypeParameter(getSymbolOfDeclaration(node)); getBaseConstraintOfType(typeParameter); if (!hasNonCircularTypeParameterDefault(typeParameter)) { error2(node.default, Diagnostics.Type_parameter_0_has_a_circular_default, typeToString(typeParameter)); } const constraintType = getConstraintOfTypeParameter(typeParameter); const defaultType = getDefaultFromTypeParameter(typeParameter); if (constraintType && defaultType) { checkTypeAssignableTo(defaultType, getTypeWithThisArgument(instantiateType(constraintType, makeUnaryTypeMapper(typeParameter, defaultType)), defaultType), node.default, Diagnostics.Type_0_does_not_satisfy_the_constraint_1); } checkNodeDeferred(node); addLazyDiagnostic(() => checkTypeNameIsReserved(node.name, Diagnostics.Type_parameter_name_cannot_be_0)); } function checkTypeParameterDeferred(node) { var _a, _b; if (isInterfaceDeclaration(node.parent) || isClassLike(node.parent) || isTypeAliasDeclaration(node.parent)) { const typeParameter = getDeclaredTypeOfTypeParameter(getSymbolOfDeclaration(node)); const modifiers = getTypeParameterModifiers(typeParameter) & (8192 | 16384); if (modifiers) { const symbol = getSymbolOfDeclaration(node.parent); if (isTypeAliasDeclaration(node.parent) && !(getObjectFlags(getDeclaredTypeOfSymbol(symbol)) & (16 | 32))) { error2(node, Diagnostics.Variance_annotations_are_only_supported_in_type_aliases_for_object_function_constructor_and_mapped_types); } else if (modifiers === 8192 || modifiers === 16384) { (_a = tracing) == null || _a.push(tracing.Phase.CheckTypes, "checkTypeParameterDeferred", { parent: getTypeId(getDeclaredTypeOfSymbol(symbol)), id: getTypeId(typeParameter) }); const source = createMarkerType(symbol, typeParameter, modifiers === 16384 ? markerSubTypeForCheck : markerSuperTypeForCheck); const target = createMarkerType(symbol, typeParameter, modifiers === 16384 ? markerSuperTypeForCheck : markerSubTypeForCheck); const saveVarianceTypeParameter = typeParameter; varianceTypeParameter = typeParameter; checkTypeAssignableTo(source, target, node, Diagnostics.Type_0_is_not_assignable_to_type_1_as_implied_by_variance_annotation); varianceTypeParameter = saveVarianceTypeParameter; (_b = tracing) == null || _b.pop(); } } } } function checkParameter(node) { checkGrammarModifiers(node); checkVariableLikeDeclaration(node); const func = getContainingFunction(node); if (hasSyntacticModifier(node, 31)) { if (compilerOptions.erasableSyntaxOnly) { error2(node, Diagnostics.This_syntax_is_not_allowed_when_erasableSyntaxOnly_is_enabled); } if (!(func.kind === 177 && nodeIsPresent(func.body))) { error2(node, Diagnostics.A_parameter_property_is_only_allowed_in_a_constructor_implementation); } if (func.kind === 177 && isIdentifier(node.name) && node.name.escapedText === "constructor") { error2(node.name, Diagnostics.constructor_cannot_be_used_as_a_parameter_property_name); } } if (!node.initializer && isOptionalDeclaration(node) && isBindingPattern(node.name) && func.body) { error2(node, Diagnostics.A_binding_pattern_parameter_cannot_be_optional_in_an_implementation_signature); } if (node.name && isIdentifier(node.name) && (node.name.escapedText === "this" || node.name.escapedText === "new")) { if (func.parameters.indexOf(node) !== 0) { error2(node, Diagnostics.A_0_parameter_must_be_the_first_parameter, node.name.escapedText); } if (func.kind === 177 || func.kind === 181 || func.kind === 186) { error2(node, Diagnostics.A_constructor_cannot_have_a_this_parameter); } if (func.kind === 220) { error2(node, Diagnostics.An_arrow_function_cannot_have_a_this_parameter); } if (func.kind === 178 || func.kind === 179) { error2(node, Diagnostics.get_and_set_accessors_cannot_declare_this_parameters); } } if (node.dotDotDotToken && !isBindingPattern(node.name) && !isTypeAssignableTo(getReducedType(getTypeOfSymbol(node.symbol)), anyReadonlyArrayType)) { error2(node, Diagnostics.A_rest_parameter_must_be_of_an_array_type); } } function checkTypePredicate(node) { const parent2 = getTypePredicateParent(node); if (!parent2) { error2(node, Diagnostics.A_type_predicate_is_only_allowed_in_return_type_position_for_functions_and_methods); return; } const signature = getSignatureFromDeclaration(parent2); const typePredicate = getTypePredicateOfSignature(signature); if (!typePredicate) { return; } checkSourceElement(node.type); const { parameterName } = node; if (typePredicate.kind !== 0 && typePredicate.kind !== 2) { if (typePredicate.parameterIndex >= 0) { if (signatureHasRestParameter(signature) && typePredicate.parameterIndex === signature.parameters.length - 1) { error2(parameterName, Diagnostics.A_type_predicate_cannot_reference_a_rest_parameter); } else { if (typePredicate.type) { const leadingError = () => chainDiagnosticMessages(undefined, Diagnostics.A_type_predicate_s_type_must_be_assignable_to_its_parameter_s_type); checkTypeAssignableTo(typePredicate.type, getTypeOfSymbol(signature.parameters[typePredicate.parameterIndex]), node.type, undefined, leadingError); } } } else if (parameterName) { let hasReportedError = false; for (const { name } of parent2.parameters) { if (isBindingPattern(name) && checkIfTypePredicateVariableIsDeclaredInBindingPattern(name, parameterName, typePredicate.parameterName)) { hasReportedError = true; break; } } if (!hasReportedError) { error2(node.parameterName, Diagnostics.Cannot_find_parameter_0, typePredicate.parameterName); } } } } function getTypePredicateParent(node) { switch (node.parent.kind) { case 220: case 180: case 263: case 219: case 185: case 175: case 174: const parent2 = node.parent; if (node === parent2.type) { return parent2; } } } function checkIfTypePredicateVariableIsDeclaredInBindingPattern(pattern, predicateVariableNode, predicateVariableName) { for (const element of pattern.elements) { if (isOmittedExpression(element)) { continue; } const name = element.name; if (name.kind === 80 && name.escapedText === predicateVariableName) { error2(predicateVariableNode, Diagnostics.A_type_predicate_cannot_reference_element_0_in_a_binding_pattern, predicateVariableName); return true; } else if (name.kind === 208 || name.kind === 207) { if (checkIfTypePredicateVariableIsDeclaredInBindingPattern(name, predicateVariableNode, predicateVariableName)) { return true; } } } } function checkSignatureDeclaration(node) { if (node.kind === 182) { checkGrammarIndexSignature(node); } else if (node.kind === 185 || node.kind === 263 || node.kind === 186 || node.kind === 180 || node.kind === 177 || node.kind === 181) { checkGrammarFunctionLikeDeclaration(node); } const functionFlags = getFunctionFlags(node); if (!(functionFlags & 4)) { if ((functionFlags & 3) === 3 && languageVersion < LanguageFeatureMinimumTarget.AsyncGenerators) { checkExternalEmitHelpers(node, 6144); } if ((functionFlags & 3) === 2 && languageVersion < LanguageFeatureMinimumTarget.AsyncFunctions) { checkExternalEmitHelpers(node, 64); } if ((functionFlags & 3) !== 0 && languageVersion < LanguageFeatureMinimumTarget.Generators) { checkExternalEmitHelpers(node, 128); } } checkTypeParameters(getEffectiveTypeParameterDeclarations(node)); checkUnmatchedJSDocParameters(node); forEach(node.parameters, checkParameter); if (node.type) { checkSourceElement(node.type); } addLazyDiagnostic(checkSignatureDeclarationDiagnostics); function checkSignatureDeclarationDiagnostics() { checkCollisionWithArgumentsInGeneratedCode(node); let returnTypeNode = getEffectiveReturnTypeNode(node); let returnTypeErrorLocation = returnTypeNode; if (isInJSFile(node)) { const typeTag = getJSDocTypeTag(node); if (typeTag && typeTag.typeExpression && isTypeReferenceNode(typeTag.typeExpression.type)) { const signature = getSingleCallSignature(getTypeFromTypeNode(typeTag.typeExpression)); if (signature && signature.declaration) { returnTypeNode = getEffectiveReturnTypeNode(signature.declaration); returnTypeErrorLocation = typeTag.typeExpression.type; } } } if (noImplicitAny && !returnTypeNode) { switch (node.kind) { case 181: error2(node, Diagnostics.Construct_signature_which_lacks_return_type_annotation_implicitly_has_an_any_return_type); break; case 180: error2(node, Diagnostics.Call_signature_which_lacks_return_type_annotation_implicitly_has_an_any_return_type); break; } } if (returnTypeNode && returnTypeErrorLocation) { const functionFlags2 = getFunctionFlags(node); if ((functionFlags2 & (4 | 1)) === 1) { const returnType = getTypeFromTypeNode(returnTypeNode); if (returnType === voidType) { error2(returnTypeErrorLocation, Diagnostics.A_generator_cannot_have_a_void_type_annotation); } else { checkGeneratorInstantiationAssignabilityToReturnType(returnType, functionFlags2, returnTypeErrorLocation); } } else if ((functionFlags2 & 3) === 2) { checkAsyncFunctionReturnType(node, returnTypeNode, returnTypeErrorLocation); } } if (node.kind !== 182 && node.kind !== 318) { registerForUnusedIdentifiersCheck(node); } } } function checkGeneratorInstantiationAssignabilityToReturnType(returnType, functionFlags, errorNode) { const generatorYieldType = getIterationTypeOfGeneratorFunctionReturnType(0, returnType, (functionFlags & 2) !== 0) || anyType; const generatorReturnType = getIterationTypeOfGeneratorFunctionReturnType(1, returnType, (functionFlags & 2) !== 0) || generatorYieldType; const generatorNextType = getIterationTypeOfGeneratorFunctionReturnType(2, returnType, (functionFlags & 2) !== 0) || unknownType; const generatorInstantiation = createGeneratorType(generatorYieldType, generatorReturnType, generatorNextType, !!(functionFlags & 2)); return checkTypeAssignableTo(generatorInstantiation, returnType, errorNode); } function checkClassForDuplicateDeclarations(node) { const instanceNames = /* @__PURE__ */ new Map; const staticNames = /* @__PURE__ */ new Map; const privateIdentifiers = /* @__PURE__ */ new Map; for (const member of node.members) { if (member.kind === 177) { for (const param of member.parameters) { if (isParameterPropertyDeclaration(param, member) && !isBindingPattern(param.name)) { addName(instanceNames, param.name, param.name.escapedText, 3); } } } else { const isStaticMember = isStatic(member); const name = member.name; if (!name) { continue; } const isPrivate = isPrivateIdentifier(name); const privateStaticFlags = isPrivate && isStaticMember ? 16 : 0; const names = isPrivate ? privateIdentifiers : isStaticMember ? staticNames : instanceNames; const memberName = name && getEffectivePropertyNameForPropertyNameNode(name); if (memberName) { switch (member.kind) { case 178: addName(names, name, memberName, 1 | privateStaticFlags); break; case 179: addName(names, name, memberName, 2 | privateStaticFlags); break; case 173: addName(names, name, memberName, 3 | privateStaticFlags); break; case 175: addName(names, name, memberName, 8 | privateStaticFlags); break; } } } } function addName(names, location, name, meaning) { const prev = names.get(name); if (prev) { if ((prev & 16) !== (meaning & 16)) { error2(location, Diagnostics.Duplicate_identifier_0_Static_and_instance_elements_cannot_share_the_same_private_name, getTextOfNode(location)); } else { const prevIsMethod = !!(prev & 8); const isMethod = !!(meaning & 8); if (prevIsMethod || isMethod) { if (prevIsMethod !== isMethod) { error2(location, Diagnostics.Duplicate_identifier_0, getTextOfNode(location)); } } else if (prev & meaning & ~16) { error2(location, Diagnostics.Duplicate_identifier_0, getTextOfNode(location)); } else { names.set(name, prev | meaning); } } } else { names.set(name, meaning); } } } function checkClassForStaticPropertyNameConflicts(node) { for (const member of node.members) { const memberNameNode = member.name; const isStaticMember = isStatic(member); if (isStaticMember && memberNameNode) { const memberName = getEffectivePropertyNameForPropertyNameNode(memberNameNode); switch (memberName) { case "name": case "length": case "caller": case "arguments": if (useDefineForClassFields) { break; } case "prototype": const message = Diagnostics.Static_property_0_conflicts_with_built_in_property_Function_0_of_constructor_function_1; const className = getNameOfSymbolAsWritten(getSymbolOfDeclaration(node)); error2(memberNameNode, message, memberName, className); break; } } } } function checkObjectTypeForDuplicateDeclarations(node) { const names = /* @__PURE__ */ new Map; for (const member of node.members) { if (member.kind === 172) { let memberName; const name = member.name; switch (name.kind) { case 11: case 9: memberName = name.text; break; case 80: memberName = idText(name); break; default: continue; } if (names.get(memberName)) { error2(getNameOfDeclaration(member.symbol.valueDeclaration), Diagnostics.Duplicate_identifier_0, memberName); error2(member.name, Diagnostics.Duplicate_identifier_0, memberName); } else { names.set(memberName, true); } } } } function checkTypeForDuplicateIndexSignatures(node) { if (node.kind === 265) { const nodeSymbol = getSymbolOfDeclaration(node); if (nodeSymbol.declarations && nodeSymbol.declarations.length > 0 && nodeSymbol.declarations[0] !== node) { return; } } const indexSymbol = getIndexSymbol(getSymbolOfDeclaration(node)); if (indexSymbol == null ? undefined : indexSymbol.declarations) { const indexSignatureMap = /* @__PURE__ */ new Map; for (const declaration of indexSymbol.declarations) { if (isIndexSignatureDeclaration(declaration)) { if (declaration.parameters.length === 1 && declaration.parameters[0].type) { forEachType(getTypeFromTypeNode(declaration.parameters[0].type), (type) => { const entry = indexSignatureMap.get(getTypeId(type)); if (entry) { entry.declarations.push(declaration); } else { indexSignatureMap.set(getTypeId(type), { type, declarations: [declaration] }); } }); } } } indexSignatureMap.forEach((entry) => { if (entry.declarations.length > 1) { for (const declaration of entry.declarations) { error2(declaration, Diagnostics.Duplicate_index_signature_for_type_0, typeToString(entry.type)); } } }); } } function checkPropertyDeclaration(node) { if (!checkGrammarModifiers(node) && !checkGrammarProperty(node)) checkGrammarComputedPropertyName(node.name); checkVariableLikeDeclaration(node); setNodeLinksForPrivateIdentifierScope(node); if (hasSyntacticModifier(node, 64) && node.kind === 173 && node.initializer) { error2(node, Diagnostics.Property_0_cannot_have_an_initializer_because_it_is_marked_abstract, declarationNameToString(node.name)); } } function checkPropertySignature(node) { if (isPrivateIdentifier(node.name)) { error2(node, Diagnostics.Private_identifiers_are_not_allowed_outside_class_bodies); } return checkPropertyDeclaration(node); } function checkMethodDeclaration(node) { if (!checkGrammarMethod(node)) checkGrammarComputedPropertyName(node.name); if (isMethodDeclaration(node) && node.asteriskToken && isIdentifier(node.name) && idText(node.name) === "constructor") { error2(node.name, Diagnostics.Class_constructor_may_not_be_a_generator); } checkFunctionOrMethodDeclaration(node); if (hasSyntacticModifier(node, 64) && node.kind === 175 && node.body) { error2(node, Diagnostics.Method_0_cannot_have_an_implementation_because_it_is_marked_abstract, declarationNameToString(node.name)); } if (isPrivateIdentifier(node.name) && !getContainingClass(node)) { error2(node, Diagnostics.Private_identifiers_are_not_allowed_outside_class_bodies); } setNodeLinksForPrivateIdentifierScope(node); } function setNodeLinksForPrivateIdentifierScope(node) { if (isPrivateIdentifier(node.name)) { if (languageVersion < LanguageFeatureMinimumTarget.PrivateNamesAndClassStaticBlocks || languageVersion < LanguageFeatureMinimumTarget.ClassAndClassElementDecorators || !useDefineForClassFields) { for (let lexicalScope = getEnclosingBlockScopeContainer(node);lexicalScope; lexicalScope = getEnclosingBlockScopeContainer(lexicalScope)) { getNodeLinks(lexicalScope).flags |= 1048576; } if (isClassExpression(node.parent)) { const enclosingIterationStatement = getEnclosingIterationStatement(node.parent); if (enclosingIterationStatement) { getNodeLinks(node.name).flags |= 32768; getNodeLinks(enclosingIterationStatement).flags |= 4096; } } } } } function checkClassStaticBlockDeclaration(node) { checkGrammarModifiers(node); forEachChild(node, checkSourceElement); } function checkConstructorDeclaration(node) { checkSignatureDeclaration(node); if (!checkGrammarConstructorTypeParameters(node)) checkGrammarConstructorTypeAnnotation(node); checkSourceElement(node.body); const symbol = getSymbolOfDeclaration(node); const firstDeclaration = getDeclarationOfKind(symbol, node.kind); if (node === firstDeclaration) { checkFunctionOrConstructorSymbol(symbol); } if (nodeIsMissing(node.body)) { return; } addLazyDiagnostic(checkConstructorDeclarationDiagnostics); return; function isInstancePropertyWithInitializerOrPrivateIdentifierProperty(n) { if (isPrivateIdentifierClassElementDeclaration(n)) { return true; } return n.kind === 173 && !isStatic(n) && !!n.initializer; } function checkConstructorDeclarationDiagnostics() { const containingClassDecl = node.parent; if (getClassExtendsHeritageElement(containingClassDecl)) { captureLexicalThis(node.parent, containingClassDecl); const classExtendsNull = classDeclarationExtendsNull(containingClassDecl); const superCall = findFirstSuperCall(node.body); if (superCall) { if (classExtendsNull) { error2(superCall, Diagnostics.A_constructor_cannot_contain_a_super_call_when_its_class_extends_null); } const superCallShouldBeRootLevel = !emitStandardClassFields && (some(node.parent.members, isInstancePropertyWithInitializerOrPrivateIdentifierProperty) || some(node.parameters, (p) => hasSyntacticModifier(p, 31))); if (superCallShouldBeRootLevel) { if (!superCallIsRootLevelInConstructor(superCall, node.body)) { error2(superCall, Diagnostics.A_super_call_must_be_a_root_level_statement_within_a_constructor_of_a_derived_class_that_contains_initialized_properties_parameter_properties_or_private_identifiers); } else { let superCallStatement; for (const statement of node.body.statements) { if (isExpressionStatement(statement) && isSuperCall(skipOuterExpressions(statement.expression))) { superCallStatement = statement; break; } if (nodeImmediatelyReferencesSuperOrThis(statement)) { break; } } if (superCallStatement === undefined) { error2(node, Diagnostics.A_super_call_must_be_the_first_statement_in_the_constructor_to_refer_to_super_or_this_when_a_derived_class_contains_initialized_properties_parameter_properties_or_private_identifiers); } } } } else if (!classExtendsNull) { error2(node, Diagnostics.Constructors_for_derived_classes_must_contain_a_super_call); } } } } function superCallIsRootLevelInConstructor(superCall, body) { const superCallParent = walkUpParenthesizedExpressions(superCall.parent); return isExpressionStatement(superCallParent) && superCallParent.parent === body; } function nodeImmediatelyReferencesSuperOrThis(node) { if (node.kind === 108 || node.kind === 110) { return true; } if (isThisContainerOrFunctionBlock(node)) { return false; } return !!forEachChild(node, nodeImmediatelyReferencesSuperOrThis); } function checkAccessorDeclaration(node) { if (isIdentifier(node.name) && idText(node.name) === "constructor" && isClassLike(node.parent)) { error2(node.name, Diagnostics.Class_constructor_may_not_be_an_accessor); } addLazyDiagnostic(checkAccessorDeclarationDiagnostics); checkSourceElement(node.body); setNodeLinksForPrivateIdentifierScope(node); function checkAccessorDeclarationDiagnostics() { if (!checkGrammarFunctionLikeDeclaration(node) && !checkGrammarAccessor(node)) checkGrammarComputedPropertyName(node.name); checkDecorators(node); checkSignatureDeclaration(node); if (node.kind === 178) { if (!(node.flags & 33554432) && nodeIsPresent(node.body) && node.flags & 512) { if (!(node.flags & 1024)) { error2(node.name, Diagnostics.A_get_accessor_must_return_a_value); } } } if (node.name.kind === 168) { checkComputedPropertyName(node.name); } if (hasBindableName(node)) { const symbol = getSymbolOfDeclaration(node); const getter = getDeclarationOfKind(symbol, 178); const setter = getDeclarationOfKind(symbol, 179); if (getter && setter && !(getNodeCheckFlags(getter) & 1)) { getNodeLinks(getter).flags |= 1; const getterFlags = getEffectiveModifierFlags(getter); const setterFlags = getEffectiveModifierFlags(setter); if ((getterFlags & 64) !== (setterFlags & 64)) { error2(getter.name, Diagnostics.Accessors_must_both_be_abstract_or_non_abstract); error2(setter.name, Diagnostics.Accessors_must_both_be_abstract_or_non_abstract); } if (getterFlags & 4 && !(setterFlags & (4 | 2)) || getterFlags & 2 && !(setterFlags & 2)) { error2(getter.name, Diagnostics.A_get_accessor_must_be_at_least_as_accessible_as_the_setter); error2(setter.name, Diagnostics.A_get_accessor_must_be_at_least_as_accessible_as_the_setter); } } } const returnType = getTypeOfAccessors(getSymbolOfDeclaration(node)); if (node.kind === 178) { checkAllCodePathsInNonVoidFunctionReturnOrThrow(node, returnType); } } } function checkMissingDeclaration(node) { checkDecorators(node); } function getEffectiveTypeArgumentAtIndex(node, typeParameters, index) { if (node.typeArguments && index < node.typeArguments.length) { return getTypeFromTypeNode(node.typeArguments[index]); } return getEffectiveTypeArguments2(node, typeParameters)[index]; } function getEffectiveTypeArguments2(node, typeParameters) { return fillMissingTypeArguments(map(node.typeArguments, getTypeFromTypeNode), typeParameters, getMinTypeArgumentCount(typeParameters), isInJSFile(node)); } function checkTypeArgumentConstraints(node, typeParameters) { let typeArguments; let mapper; let result = true; for (let i = 0;i < typeParameters.length; i++) { const constraint = getConstraintOfTypeParameter(typeParameters[i]); if (constraint) { if (!typeArguments) { typeArguments = getEffectiveTypeArguments2(node, typeParameters); mapper = createTypeMapper(typeParameters, typeArguments); } result = result && checkTypeAssignableTo(typeArguments[i], instantiateType(constraint, mapper), node.typeArguments[i], Diagnostics.Type_0_does_not_satisfy_the_constraint_1); } } return result; } function getTypeParametersForTypeAndSymbol(type, symbol) { if (!isErrorType(type)) { return symbol.flags & 524288 && getSymbolLinks(symbol).typeParameters || (getObjectFlags(type) & 4 ? type.target.localTypeParameters : undefined); } return; } function getTypeParametersForTypeReferenceOrImport(node) { const type = getTypeFromTypeNode(node); if (!isErrorType(type)) { const symbol = getNodeLinks(node).resolvedSymbol; if (symbol) { return getTypeParametersForTypeAndSymbol(type, symbol); } } return; } function getUninstantiatedSignatures(node) { switch (node.kind) { case 214: case 171: return getSignaturesOfType(getTypeOfExpression(node.expression), 0); case 215: return getSignaturesOfType(getTypeOfExpression(node.expression), 1); case 286: case 287: if (isJsxIntrinsicTagName(node.tagName)) return []; return getSignaturesOfType(getTypeOfExpression(node.tagName), 0); case 216: return getSignaturesOfType(getTypeOfExpression(node.tag), 0); case 227: case 290: return []; } } function getTypeParameterConstraintForPositionAcrossSignatures(signatures, position) { const relevantTypeParameterConstraints = flatMap(signatures, (signature) => { var _a; const relevantTypeParameter = (_a = signature.typeParameters) == null ? undefined : _a[position]; if (relevantTypeParameter === undefined) return []; const relevantConstraint = getConstraintOfTypeParameter(relevantTypeParameter); if (relevantConstraint === undefined) return []; return [relevantConstraint]; }); return getUnionType(relevantTypeParameterConstraints); } function checkTypeReferenceNode(node) { checkGrammarTypeArguments(node, node.typeArguments); if (node.kind === 184 && !isInJSFile(node) && !isInJSDoc(node) && node.typeArguments && node.typeName.end !== node.typeArguments.pos) { const sourceFile = getSourceFileOfNode(node); if (scanTokenAtPosition(sourceFile, node.typeName.end) === 25) { grammarErrorAtPos(node, skipTrivia2(sourceFile.text, node.typeName.end), 1, Diagnostics.JSDoc_types_can_only_be_used_inside_documentation_comments); } } forEach(node.typeArguments, checkSourceElement); checkTypeReferenceOrImport(node); } function checkTypeReferenceOrImport(node) { const type = getTypeFromTypeNode(node); if (!isErrorType(type)) { if (node.typeArguments) { addLazyDiagnostic(() => { const typeParameters = getTypeParametersForTypeReferenceOrImport(node); if (typeParameters) { checkTypeArgumentConstraints(node, typeParameters); } }); } const symbol = getNodeLinks(node).resolvedSymbol; if (symbol) { if (some(symbol.declarations, (d) => isTypeDeclaration(d) && !!(d.flags & 536870912))) { addDeprecatedSuggestion(getDeprecatedSuggestionNode(node), symbol.declarations, symbol.escapedName); } } } } function getTypeArgumentConstraint(node) { let typeArgumentPosition; if (hasTypeArguments(node.parent) && Array.isArray(node.parent.typeArguments)) { typeArgumentPosition = node.parent.typeArguments.indexOf(node); } if (typeArgumentPosition !== undefined) { if (isCallLikeExpression(node.parent)) { return getTypeParameterConstraintForPositionAcrossSignatures(getUninstantiatedSignatures(node.parent), typeArgumentPosition); } if (isDecorator(node.parent.parent)) { return getTypeParameterConstraintForPositionAcrossSignatures(getUninstantiatedSignatures(node.parent.parent), typeArgumentPosition); } if (isExpressionWithTypeArguments(node.parent) && isExpressionStatement(node.parent.parent)) { const uninstantiatedType = checkExpression(node.parent.expression); const callConstraint = getTypeParameterConstraintForPositionAcrossSignatures(getSignaturesOfType(uninstantiatedType, 0), typeArgumentPosition); const constructConstraint = getTypeParameterConstraintForPositionAcrossSignatures(getSignaturesOfType(uninstantiatedType, 1), typeArgumentPosition); if (constructConstraint.flags & 262144) return callConstraint; if (callConstraint.flags & 262144) return constructConstraint; return getIntersectionType([callConstraint, constructConstraint]); } if (isTypeReferenceType(node.parent)) { const typeParameters = getTypeParametersForTypeReferenceOrImport(node.parent); if (!typeParameters) return; const relevantTypeParameter = typeParameters[typeArgumentPosition]; const constraint = getConstraintOfTypeParameter(relevantTypeParameter); return constraint && instantiateType(constraint, createTypeMapper(typeParameters, getEffectiveTypeArguments2(node.parent, typeParameters))); } } } function checkTypeQuery(node) { getTypeFromTypeQueryNode(node); } function checkTypeLiteral(node) { forEach(node.members, checkSourceElement); addLazyDiagnostic(checkTypeLiteralDiagnostics); function checkTypeLiteralDiagnostics() { const type = getTypeFromTypeLiteralOrFunctionOrConstructorTypeNode(node); checkIndexConstraints(type, type.symbol); checkTypeForDuplicateIndexSignatures(node); checkObjectTypeForDuplicateDeclarations(node); } } function checkArrayType(node) { checkSourceElement(node.elementType); } function checkTupleType(node) { let seenOptionalElement = false; let seenRestElement = false; for (const e of node.elements) { let flags = getTupleElementFlags(e); if (flags & 8) { const type = getTypeFromTypeNode(e.type); if (!isArrayLikeType(type)) { error2(e, Diagnostics.A_rest_element_type_must_be_an_array_type); break; } if (isArrayType(type) || isTupleType(type) && type.target.combinedFlags & 4) { flags |= 4; } } if (flags & 4) { if (seenRestElement) { grammarErrorOnNode(e, Diagnostics.A_rest_element_cannot_follow_another_rest_element); break; } seenRestElement = true; } else if (flags & 2) { if (seenRestElement) { grammarErrorOnNode(e, Diagnostics.An_optional_element_cannot_follow_a_rest_element); break; } seenOptionalElement = true; } else if (flags & 1 && seenOptionalElement) { grammarErrorOnNode(e, Diagnostics.A_required_element_cannot_follow_an_optional_element); break; } } forEach(node.elements, checkSourceElement); getTypeFromTypeNode(node); } function checkUnionOrIntersectionType(node) { forEach(node.types, checkSourceElement); getTypeFromTypeNode(node); } function checkIndexedAccessIndexType(type, accessNode) { if (!(type.flags & 33554432)) { return type; } const objectType = type.objectType; const indexType = type.indexType; const hasNumberIndexInfo = !!getIndexInfoOfType(objectType, numberType); if (everyType(indexType, (t) => isTypeAssignableTo(t, getIndexType(objectType, 0)) || hasNumberIndexInfo && isApplicableIndexType(t, numberType))) { if (accessNode.kind === 213 && isAssignmentTarget(accessNode) && getObjectFlags(objectType) & 32 && getMappedTypeModifiers(objectType) & 1) { error2(accessNode, Diagnostics.Index_signature_in_type_0_only_permits_reading, typeToString(objectType)); } return type; } if (isGenericObjectType(objectType)) { const propertyName = getPropertyNameFromIndex(indexType, accessNode); if (propertyName) { const propertySymbol = forEachType(getApparentType(objectType), (t) => getPropertyOfType(t, propertyName)); if (propertySymbol && getDeclarationModifierFlagsFromSymbol(propertySymbol) & 6) { error2(accessNode, Diagnostics.Private_or_protected_member_0_cannot_be_accessed_on_a_type_parameter, unescapeLeadingUnderscores(propertyName)); return errorType; } } } error2(accessNode, Diagnostics.Type_0_cannot_be_used_to_index_type_1, typeToString(indexType), typeToString(objectType)); return errorType; } function checkIndexedAccessType(node) { checkSourceElement(node.objectType); checkSourceElement(node.indexType); checkIndexedAccessIndexType(getTypeFromIndexedAccessTypeNode(node), node); } function checkMappedType(node) { checkGrammarMappedType(node); checkSourceElement(node.typeParameter); checkSourceElement(node.nameType); checkSourceElement(node.type); if (!node.type) { reportImplicitAny(node, anyType); } const type = getTypeFromMappedTypeNode(node); const nameType = getNameTypeFromMappedType(type); if (nameType) { checkTypeAssignableTo(nameType, stringNumberSymbolType, node.nameType); } else { const constraintType = getConstraintTypeFromMappedType(type); checkTypeAssignableTo(constraintType, stringNumberSymbolType, getEffectiveConstraintOfTypeParameter(node.typeParameter)); } } function checkGrammarMappedType(node) { var _a; if ((_a = node.members) == null ? undefined : _a.length) { return grammarErrorOnNode(node.members[0], Diagnostics.A_mapped_type_may_not_declare_properties_or_methods); } } function checkThisType(node) { getTypeFromThisTypeNode(node); } function checkTypeOperator(node) { checkGrammarTypeOperatorNode(node); checkSourceElement(node.type); } function checkConditionalType(node) { forEachChild(node, checkSourceElement); } function checkInferType(node) { if (!findAncestor(node, (n) => n.parent && n.parent.kind === 195 && n.parent.extendsType === n)) { grammarErrorOnNode(node, Diagnostics.infer_declarations_are_only_permitted_in_the_extends_clause_of_a_conditional_type); } checkSourceElement(node.typeParameter); const symbol = getSymbolOfDeclaration(node.typeParameter); if (symbol.declarations && symbol.declarations.length > 1) { const links = getSymbolLinks(symbol); if (!links.typeParametersChecked) { links.typeParametersChecked = true; const typeParameter = getDeclaredTypeOfTypeParameter(symbol); const declarations = getDeclarationsOfKind(symbol, 169); if (!areTypeParametersIdentical(declarations, [typeParameter], (decl) => [decl])) { const name = symbolToString(symbol); for (const declaration of declarations) { error2(declaration.name, Diagnostics.All_declarations_of_0_must_have_identical_constraints, name); } } } } registerForUnusedIdentifiersCheck(node); } function checkTemplateLiteralType(node) { for (const span of node.templateSpans) { checkSourceElement(span.type); const type = getTypeFromTypeNode(span.type); checkTypeAssignableTo(type, templateConstraintType, span.type); } getTypeFromTypeNode(node); } function checkImportType(node) { checkSourceElement(node.argument); if (node.attributes) { if (node.attributes.token !== 118 && compilerOptions.ignoreDeprecations !== "6.0") { grammarErrorOnFirstToken(node.attributes, Diagnostics.Import_assertions_have_been_replaced_by_import_attributes_Use_with_instead_of_assert); } getResolutionModeOverride(node.attributes, grammarErrorOnNode); } checkTypeReferenceOrImport(node); } function checkNamedTupleMember(node) { if (node.dotDotDotToken && node.questionToken) { grammarErrorOnNode(node, Diagnostics.A_tuple_member_cannot_be_both_optional_and_rest); } if (node.type.kind === 191) { grammarErrorOnNode(node.type, Diagnostics.A_labeled_tuple_element_is_declared_as_optional_with_a_question_mark_after_the_name_and_before_the_colon_rather_than_after_the_type); } if (node.type.kind === 192) { grammarErrorOnNode(node.type, Diagnostics.A_labeled_tuple_element_is_declared_as_rest_with_a_before_the_name_rather_than_before_the_type); } checkSourceElement(node.type); getTypeFromTypeNode(node); } function isPrivateWithinAmbient(node) { return (hasEffectiveModifier(node, 2) || isPrivateIdentifierClassElementDeclaration(node)) && !!(node.flags & 33554432); } function getEffectiveDeclarationFlags(n, flagsToCheck) { let flags = getCombinedModifierFlagsCached(n); if (n.parent.kind !== 265 && n.parent.kind !== 264 && n.parent.kind !== 232 && n.flags & 33554432) { const container = getEnclosingContainer(n); if (container && container.flags & 128 && !(flags & 128) && !(isModuleBlock(n.parent) && isModuleDeclaration(n.parent.parent) && isGlobalScopeAugmentation(n.parent.parent))) { flags |= 32; } flags |= 128; } return flags & flagsToCheck; } function checkFunctionOrConstructorSymbol(symbol) { addLazyDiagnostic(() => checkFunctionOrConstructorSymbolWorker(symbol)); } function checkFunctionOrConstructorSymbolWorker(symbol) { function getCanonicalOverload(overloads, implementation) { const implementationSharesContainerWithFirstOverload = implementation !== undefined && implementation.parent === overloads[0].parent; return implementationSharesContainerWithFirstOverload ? implementation : overloads[0]; } function checkFlagAgreementBetweenOverloads(overloads, implementation, flagsToCheck2, someOverloadFlags, allOverloadFlags) { const someButNotAllOverloadFlags = someOverloadFlags ^ allOverloadFlags; if (someButNotAllOverloadFlags !== 0) { const canonicalFlags = getEffectiveDeclarationFlags(getCanonicalOverload(overloads, implementation), flagsToCheck2); group(overloads, (o) => getSourceFileOfNode(o).fileName).forEach((overloadsInFile) => { const canonicalFlagsForFile = getEffectiveDeclarationFlags(getCanonicalOverload(overloadsInFile, implementation), flagsToCheck2); for (const o of overloadsInFile) { const deviation = getEffectiveDeclarationFlags(o, flagsToCheck2) ^ canonicalFlags; const deviationInFile = getEffectiveDeclarationFlags(o, flagsToCheck2) ^ canonicalFlagsForFile; if (deviationInFile & 32) { error2(getNameOfDeclaration(o), Diagnostics.Overload_signatures_must_all_be_exported_or_non_exported); } else if (deviationInFile & 128) { error2(getNameOfDeclaration(o), Diagnostics.Overload_signatures_must_all_be_ambient_or_non_ambient); } else if (deviation & (2 | 4)) { error2(getNameOfDeclaration(o) || o, Diagnostics.Overload_signatures_must_all_be_public_private_or_protected); } else if (deviation & 64) { error2(getNameOfDeclaration(o), Diagnostics.Overload_signatures_must_all_be_abstract_or_non_abstract); } } }); } } function checkQuestionTokenAgreementBetweenOverloads(overloads, implementation, someHaveQuestionToken2, allHaveQuestionToken2) { if (someHaveQuestionToken2 !== allHaveQuestionToken2) { const canonicalHasQuestionToken = hasQuestionToken(getCanonicalOverload(overloads, implementation)); forEach(overloads, (o) => { const deviation = hasQuestionToken(o) !== canonicalHasQuestionToken; if (deviation) { error2(getNameOfDeclaration(o), Diagnostics.Overload_signatures_must_all_be_optional_or_required); } }); } } const flagsToCheck = 32 | 128 | 2 | 4 | 64; let someNodeFlags = 0; let allNodeFlags = flagsToCheck; let someHaveQuestionToken = false; let allHaveQuestionToken = true; let hasOverloads = false; let bodyDeclaration; let lastSeenNonAmbientDeclaration; let previousDeclaration; const declarations = symbol.declarations; const isConstructor = (symbol.flags & 16384) !== 0; function reportImplementationExpectedError(node) { if (node.name && nodeIsMissing(node.name)) { return; } let seen = false; const subsequentNode = forEachChild(node.parent, (c) => { if (seen) { return c; } else { seen = c === node; } }); if (subsequentNode && subsequentNode.pos === node.end) { if (subsequentNode.kind === node.kind) { const errorNode2 = subsequentNode.name || subsequentNode; const subsequentName = subsequentNode.name; if (node.name && subsequentName && (isPrivateIdentifier(node.name) && isPrivateIdentifier(subsequentName) && node.name.escapedText === subsequentName.escapedText || isComputedPropertyName(node.name) && isComputedPropertyName(subsequentName) && isTypeIdenticalTo(checkComputedPropertyName(node.name), checkComputedPropertyName(subsequentName)) || isPropertyNameLiteral(node.name) && isPropertyNameLiteral(subsequentName) && getEscapedTextOfIdentifierOrLiteral(node.name) === getEscapedTextOfIdentifierOrLiteral(subsequentName))) { const reportError = (node.kind === 175 || node.kind === 174) && isStatic(node) !== isStatic(subsequentNode); if (reportError) { const diagnostic = isStatic(node) ? Diagnostics.Function_overload_must_be_static : Diagnostics.Function_overload_must_not_be_static; error2(errorNode2, diagnostic); } return; } if (nodeIsPresent(subsequentNode.body)) { error2(errorNode2, Diagnostics.Function_implementation_name_must_be_0, declarationNameToString(node.name)); return; } } } const errorNode = node.name || node; if (isConstructor) { error2(errorNode, Diagnostics.Constructor_implementation_is_missing); } else { if (hasSyntacticModifier(node, 64)) { error2(errorNode, Diagnostics.All_declarations_of_an_abstract_method_must_be_consecutive); } else { error2(errorNode, Diagnostics.Function_implementation_is_missing_or_not_immediately_following_the_declaration); } } } let duplicateFunctionDeclaration = false; let multipleConstructorImplementation = false; let hasNonAmbientClass = false; const functionDeclarations = []; if (declarations) { for (const current of declarations) { const node = current; const inAmbientContext = node.flags & 33554432; const inAmbientContextOrInterface = node.parent && (node.parent.kind === 265 || node.parent.kind === 188) || inAmbientContext; if (inAmbientContextOrInterface) { previousDeclaration = undefined; } if ((node.kind === 264 || node.kind === 232) && !inAmbientContext) { hasNonAmbientClass = true; } if (node.kind === 263 || node.kind === 175 || node.kind === 174 || node.kind === 177) { functionDeclarations.push(node); const currentNodeFlags = getEffectiveDeclarationFlags(node, flagsToCheck); someNodeFlags |= currentNodeFlags; allNodeFlags &= currentNodeFlags; someHaveQuestionToken = someHaveQuestionToken || hasQuestionToken(node); allHaveQuestionToken = allHaveQuestionToken && hasQuestionToken(node); const bodyIsPresent = nodeIsPresent(node.body); if (bodyIsPresent && bodyDeclaration) { if (isConstructor) { multipleConstructorImplementation = true; } else { duplicateFunctionDeclaration = true; } } else if ((previousDeclaration == null ? undefined : previousDeclaration.parent) === node.parent && previousDeclaration.end !== node.pos) { reportImplementationExpectedError(previousDeclaration); } if (bodyIsPresent) { if (!bodyDeclaration) { bodyDeclaration = node; } } else { hasOverloads = true; } previousDeclaration = node; if (!inAmbientContextOrInterface) { lastSeenNonAmbientDeclaration = node; } } if (isInJSFile(current) && isFunctionLike(current) && current.jsDoc) { hasOverloads = length(getJSDocOverloadTags(current)) > 0; } } } if (multipleConstructorImplementation) { forEach(functionDeclarations, (declaration) => { error2(declaration, Diagnostics.Multiple_constructor_implementations_are_not_allowed); }); } if (duplicateFunctionDeclaration) { forEach(functionDeclarations, (declaration) => { error2(getNameOfDeclaration(declaration) || declaration, Diagnostics.Duplicate_function_implementation); }); } if (hasNonAmbientClass && !isConstructor && symbol.flags & 16 && declarations) { const relatedDiagnostics = filter(declarations, (d) => d.kind === 264).map((d) => createDiagnosticForNode(d, Diagnostics.Consider_adding_a_declare_modifier_to_this_class)); forEach(declarations, (declaration) => { const diagnostic = declaration.kind === 264 ? Diagnostics.Class_declaration_cannot_implement_overload_list_for_0 : declaration.kind === 263 ? Diagnostics.Function_with_bodies_can_only_merge_with_classes_that_are_ambient : undefined; if (diagnostic) { addRelatedInfo(error2(getNameOfDeclaration(declaration) || declaration, diagnostic, symbolName(symbol)), ...relatedDiagnostics); } }); } if (lastSeenNonAmbientDeclaration && !lastSeenNonAmbientDeclaration.body && !hasSyntacticModifier(lastSeenNonAmbientDeclaration, 64) && !lastSeenNonAmbientDeclaration.questionToken) { reportImplementationExpectedError(lastSeenNonAmbientDeclaration); } if (hasOverloads) { if (declarations) { checkFlagAgreementBetweenOverloads(declarations, bodyDeclaration, flagsToCheck, someNodeFlags, allNodeFlags); checkQuestionTokenAgreementBetweenOverloads(declarations, bodyDeclaration, someHaveQuestionToken, allHaveQuestionToken); } if (bodyDeclaration) { const signatures = getSignaturesOfSymbol(symbol); const bodySignature = getSignatureFromDeclaration(bodyDeclaration); for (const signature of signatures) { if (!isImplementationCompatibleWithOverload(bodySignature, signature)) { const errorNode = signature.declaration && isJSDocSignature(signature.declaration) ? signature.declaration.parent.tagName : signature.declaration; addRelatedInfo(error2(errorNode, Diagnostics.This_overload_signature_is_not_compatible_with_its_implementation_signature), createDiagnosticForNode(bodyDeclaration, Diagnostics.The_implementation_signature_is_declared_here)); break; } } } } } function checkExportsOnMergedDeclarations(node) { addLazyDiagnostic(() => checkExportsOnMergedDeclarationsWorker(node)); } function checkExportsOnMergedDeclarationsWorker(node) { let symbol = node.localSymbol; if (!symbol) { symbol = getSymbolOfDeclaration(node); if (!symbol.exportSymbol) { return; } } if (getDeclarationOfKind(symbol, node.kind) !== node) { return; } let exportedDeclarationSpaces = 0; let nonExportedDeclarationSpaces = 0; let defaultExportedDeclarationSpaces = 0; for (const d of symbol.declarations) { const declarationSpaces = getDeclarationSpaces(d); const effectiveDeclarationFlags = getEffectiveDeclarationFlags(d, 32 | 2048); if (effectiveDeclarationFlags & 32) { if (effectiveDeclarationFlags & 2048) { defaultExportedDeclarationSpaces |= declarationSpaces; } else { exportedDeclarationSpaces |= declarationSpaces; } } else { nonExportedDeclarationSpaces |= declarationSpaces; } } const nonDefaultExportedDeclarationSpaces = exportedDeclarationSpaces | nonExportedDeclarationSpaces; const commonDeclarationSpacesForExportsAndLocals = exportedDeclarationSpaces & nonExportedDeclarationSpaces; const commonDeclarationSpacesForDefaultAndNonDefault = defaultExportedDeclarationSpaces & nonDefaultExportedDeclarationSpaces; if (commonDeclarationSpacesForExportsAndLocals || commonDeclarationSpacesForDefaultAndNonDefault) { for (const d of symbol.declarations) { const declarationSpaces = getDeclarationSpaces(d); const name = getNameOfDeclaration(d); if (declarationSpaces & commonDeclarationSpacesForDefaultAndNonDefault) { error2(name, Diagnostics.Merged_declaration_0_cannot_include_a_default_export_declaration_Consider_adding_a_separate_export_default_0_declaration_instead, declarationNameToString(name)); } else if (declarationSpaces & commonDeclarationSpacesForExportsAndLocals) { error2(name, Diagnostics.Individual_declarations_in_merged_declaration_0_must_be_all_exported_or_all_local, declarationNameToString(name)); } } } function getDeclarationSpaces(decl) { let d = decl; switch (d.kind) { case 265: case 266: case 347: case 339: case 341: return 2; case 268: return isAmbientModule(d) || getModuleInstanceState(d) !== 0 ? 4 | 1 : 4; case 264: case 267: case 307: return 2 | 1; case 308: return 2 | 1 | 4; case 278: case 227: const node2 = d; const expression = isExportAssignment(node2) ? node2.expression : node2.right; if (!isEntityNameExpression(expression)) { return 1; } d = expression; case 272: case 275: case 274: let result = 0; const target = resolveAlias(getSymbolOfDeclaration(d)); forEach(target.declarations, (d2) => { result |= getDeclarationSpaces(d2); }); return result; case 261: case 209: case 263: case 277: case 80: return 1; case 174: case 172: return 2; default: return Debug.failBadSyntaxKind(d); } } } function getAwaitedTypeOfPromise(type, errorNode, diagnosticMessage, ...args) { const promisedType = getPromisedTypeOfPromise(type, errorNode); return promisedType && getAwaitedType(promisedType, errorNode, diagnosticMessage, ...args); } function getPromisedTypeOfPromise(type, errorNode, thisTypeForErrorOut) { if (isTypeAny(type)) { return; } const typeAsPromise = type; if (typeAsPromise.promisedTypeOfPromise) { return typeAsPromise.promisedTypeOfPromise; } if (isReferenceToType2(type, getGlobalPromiseType(false))) { return typeAsPromise.promisedTypeOfPromise = getTypeArguments(type)[0]; } if (allTypesAssignableToKind(getBaseConstraintOrType(type), 12713980 | 262144)) { return; } const thenFunction = getTypeOfPropertyOfType(type, "then"); if (isTypeAny(thenFunction)) { return; } const thenSignatures = thenFunction ? getSignaturesOfType(thenFunction, 0) : emptyArray; if (thenSignatures.length === 0) { if (errorNode) { error2(errorNode, Diagnostics.A_promise_must_have_a_then_method); } return; } let thisTypeForError; let candidates; for (const thenSignature of thenSignatures) { const thisType = getThisTypeOfSignature(thenSignature); if (thisType && thisType !== voidType && !isTypeRelatedTo(type, thisType, subtypeRelation)) { thisTypeForError = thisType; } else { candidates = append(candidates, thenSignature); } } if (!candidates) { Debug.assertIsDefined(thisTypeForError); if (thisTypeForErrorOut) { thisTypeForErrorOut.value = thisTypeForError; } if (errorNode) { error2(errorNode, Diagnostics.The_this_context_of_type_0_is_not_assignable_to_method_s_this_of_type_1, typeToString(type), typeToString(thisTypeForError)); } return; } const onfulfilledParameterType = getTypeWithFacts(getUnionType(map(candidates, getTypeOfFirstParameterOfSignature)), 2097152); if (isTypeAny(onfulfilledParameterType)) { return; } const onfulfilledParameterSignatures = getSignaturesOfType(onfulfilledParameterType, 0); if (onfulfilledParameterSignatures.length === 0) { if (errorNode) { error2(errorNode, Diagnostics.The_first_parameter_of_the_then_method_of_a_promise_must_be_a_callback); } return; } return typeAsPromise.promisedTypeOfPromise = getUnionType(map(onfulfilledParameterSignatures, getTypeOfFirstParameterOfSignature), 2); } function checkAwaitedType(type, withAlias, errorNode, diagnosticMessage, ...args) { const awaitedType = withAlias ? getAwaitedType(type, errorNode, diagnosticMessage, ...args) : getAwaitedTypeNoAlias(type, errorNode, diagnosticMessage, ...args); return awaitedType || errorType; } function isThenableType(type) { if (allTypesAssignableToKind(getBaseConstraintOrType(type), 12713980 | 262144)) { return false; } const thenFunction = getTypeOfPropertyOfType(type, "then"); return !!thenFunction && getSignaturesOfType(getTypeWithFacts(thenFunction, 2097152), 0).length > 0; } function isAwaitedTypeInstantiation(type) { var _a; if (type.flags & 67108864) { const awaitedSymbol = getGlobalAwaitedSymbol(false); return !!awaitedSymbol && type.aliasSymbol === awaitedSymbol && ((_a = type.aliasTypeArguments) == null ? undefined : _a.length) === 1; } return false; } function unwrapAwaitedType(type) { return type.flags & 134217728 ? mapType(type, unwrapAwaitedType) : isAwaitedTypeInstantiation(type) ? type.aliasTypeArguments[0] : type; } function isAwaitedTypeNeeded(type) { if (isTypeAny(type) || isAwaitedTypeInstantiation(type)) { return false; } if (isGenericObjectType(type)) { const baseConstraint = getBaseConstraintOfType(type); if (baseConstraint ? baseConstraint.flags & 3 || isEmptyObjectType(baseConstraint) || someType(baseConstraint, isThenableType) : maybeTypeOfKind(type, 34078720)) { return true; } } return false; } function tryCreateAwaitedType(type) { const awaitedSymbol = getGlobalAwaitedSymbol(true); if (awaitedSymbol) { return getTypeAliasInstantiation(awaitedSymbol, [unwrapAwaitedType(type)]); } return; } function createAwaitedTypeIfNeeded(type) { if (isAwaitedTypeNeeded(type)) { return tryCreateAwaitedType(type) ?? type; } Debug.assert(isAwaitedTypeInstantiation(type) || getPromisedTypeOfPromise(type) === undefined, "type provided should not be a non-generic 'promise'-like."); return type; } function getAwaitedType(type, errorNode, diagnosticMessage, ...args) { const awaitedType = getAwaitedTypeNoAlias(type, errorNode, diagnosticMessage, ...args); return awaitedType && createAwaitedTypeIfNeeded(awaitedType); } function getAwaitedTypeNoAlias(type, errorNode, diagnosticMessage, ...args) { if (isTypeAny(type)) { return type; } if (isAwaitedTypeInstantiation(type)) { return type; } const typeAsAwaitable = type; if (typeAsAwaitable.awaitedTypeOfType) { return typeAsAwaitable.awaitedTypeOfType; } if (type.flags & 134217728) { if (awaitedTypeStack.lastIndexOf(type.id) >= 0) { if (errorNode) { error2(errorNode, Diagnostics.Type_is_referenced_directly_or_indirectly_in_the_fulfillment_callback_of_its_own_then_method); } return; } const mapper = errorNode ? (constituentType) => getAwaitedTypeNoAlias(constituentType, errorNode, diagnosticMessage, ...args) : getAwaitedTypeNoAlias; awaitedTypeStack.push(type.id); const mapped = mapType(type, mapper); awaitedTypeStack.pop(); return typeAsAwaitable.awaitedTypeOfType = mapped; } if (isAwaitedTypeNeeded(type)) { return typeAsAwaitable.awaitedTypeOfType = type; } const thisTypeForErrorOut = { value: undefined }; const promisedType = getPromisedTypeOfPromise(type, undefined, thisTypeForErrorOut); if (promisedType) { if (type.id === promisedType.id || awaitedTypeStack.lastIndexOf(promisedType.id) >= 0) { if (errorNode) { error2(errorNode, Diagnostics.Type_is_referenced_directly_or_indirectly_in_the_fulfillment_callback_of_its_own_then_method); } return; } awaitedTypeStack.push(type.id); const awaitedType = getAwaitedTypeNoAlias(promisedType, errorNode, diagnosticMessage, ...args); awaitedTypeStack.pop(); if (!awaitedType) { return; } return typeAsAwaitable.awaitedTypeOfType = awaitedType; } if (isThenableType(type)) { if (errorNode) { Debug.assertIsDefined(diagnosticMessage); let chain; if (thisTypeForErrorOut.value) { chain = chainDiagnosticMessages(chain, Diagnostics.The_this_context_of_type_0_is_not_assignable_to_method_s_this_of_type_1, typeToString(type), typeToString(thisTypeForErrorOut.value)); } chain = chainDiagnosticMessages(chain, diagnosticMessage, ...args); diagnostics.add(createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(errorNode), errorNode, chain)); } return; } return typeAsAwaitable.awaitedTypeOfType = type; } function checkAsyncFunctionReturnType(node, returnTypeNode, returnTypeErrorLocation) { const returnType = getTypeFromTypeNode(returnTypeNode); if (languageVersion >= 2) { if (isErrorType(returnType)) { return; } const globalPromiseType = getGlobalPromiseType(true); if (globalPromiseType !== emptyGenericType && !isReferenceToType2(returnType, globalPromiseType)) { reportErrorForInvalidReturnType(Diagnostics.The_return_type_of_an_async_function_or_method_must_be_the_global_Promise_T_type_Did_you_mean_to_write_Promise_0, returnTypeNode, returnTypeErrorLocation, typeToString(getAwaitedTypeNoAlias(returnType) || voidType)); return; } } else { markLinkedReferences(node, 5); if (isErrorType(returnType)) { return; } const promiseConstructorName = getEntityNameFromTypeNode(returnTypeNode); if (promiseConstructorName === undefined) { reportErrorForInvalidReturnType(Diagnostics.Type_0_is_not_a_valid_async_function_return_type_in_ES5_because_it_does_not_refer_to_a_Promise_compatible_constructor_value, returnTypeNode, returnTypeErrorLocation, typeToString(returnType)); return; } const promiseConstructorSymbol = resolveEntityName(promiseConstructorName, 111551, true); const promiseConstructorType = promiseConstructorSymbol ? getTypeOfSymbol(promiseConstructorSymbol) : errorType; if (isErrorType(promiseConstructorType)) { if (promiseConstructorName.kind === 80 && promiseConstructorName.escapedText === "Promise" && getTargetType(returnType) === getGlobalPromiseType(false)) { error2(returnTypeErrorLocation, Diagnostics.An_async_function_or_method_in_ES5_requires_the_Promise_constructor_Make_sure_you_have_a_declaration_for_the_Promise_constructor_or_include_ES2015_in_your_lib_option); } else { reportErrorForInvalidReturnType(Diagnostics.Type_0_is_not_a_valid_async_function_return_type_in_ES5_because_it_does_not_refer_to_a_Promise_compatible_constructor_value, returnTypeNode, returnTypeErrorLocation, entityNameToString(promiseConstructorName)); } return; } const globalPromiseConstructorLikeType = getGlobalPromiseConstructorLikeType(true); if (globalPromiseConstructorLikeType === emptyObjectType) { reportErrorForInvalidReturnType(Diagnostics.Type_0_is_not_a_valid_async_function_return_type_in_ES5_because_it_does_not_refer_to_a_Promise_compatible_constructor_value, returnTypeNode, returnTypeErrorLocation, entityNameToString(promiseConstructorName)); return; } const headMessage = Diagnostics.Type_0_is_not_a_valid_async_function_return_type_in_ES5_because_it_does_not_refer_to_a_Promise_compatible_constructor_value; const errorInfo = () => returnTypeNode === returnTypeErrorLocation ? undefined : chainDiagnosticMessages(undefined, Diagnostics.The_return_type_of_an_async_function_or_method_must_be_the_global_Promise_T_type); if (!checkTypeAssignableTo(promiseConstructorType, globalPromiseConstructorLikeType, returnTypeErrorLocation, headMessage, errorInfo)) { return; } const rootName = promiseConstructorName && getFirstIdentifier(promiseConstructorName); const collidingSymbol = getSymbol2(node.locals, rootName.escapedText, 111551); if (collidingSymbol) { error2(collidingSymbol.valueDeclaration, Diagnostics.Duplicate_identifier_0_Compiler_uses_declaration_1_to_support_async_functions, idText(rootName), entityNameToString(promiseConstructorName)); return; } } checkAwaitedType(returnType, false, node, Diagnostics.The_return_type_of_an_async_function_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member); function reportErrorForInvalidReturnType(message, returnTypeNode2, returnTypeErrorLocation2, typeName) { if (returnTypeNode2 === returnTypeErrorLocation2) { error2(returnTypeErrorLocation2, message, typeName); } else { const diag2 = error2(returnTypeErrorLocation2, Diagnostics.The_return_type_of_an_async_function_or_method_must_be_the_global_Promise_T_type); addRelatedInfo(diag2, createDiagnosticForNode(returnTypeNode2, message, typeName)); } } } function checkGrammarDecorator(decorator) { const sourceFile = getSourceFileOfNode(decorator); if (!hasParseDiagnostics(sourceFile)) { let node = decorator.expression; if (isParenthesizedExpression(node)) { return false; } let canHaveCallExpression = true; let errorNode; while (true) { if (isExpressionWithTypeArguments(node) || isNonNullExpression(node)) { node = node.expression; continue; } if (isCallExpression(node)) { if (!canHaveCallExpression) { errorNode = node; } if (node.questionDotToken) { errorNode = node.questionDotToken; } node = node.expression; canHaveCallExpression = false; continue; } if (isPropertyAccessExpression(node)) { if (node.questionDotToken) { errorNode = node.questionDotToken; } node = node.expression; canHaveCallExpression = false; continue; } if (!isIdentifier(node)) { errorNode = node; } break; } if (errorNode) { addRelatedInfo(error2(decorator.expression, Diagnostics.Expression_must_be_enclosed_in_parentheses_to_be_used_as_a_decorator), createDiagnosticForNode(errorNode, Diagnostics.Invalid_syntax_in_decorator)); return true; } } return false; } function checkDecorator(node) { checkGrammarDecorator(node); const signature = getResolvedSignature(node); checkDeprecatedSignature(signature, node); const returnType = getReturnTypeOfSignature(signature); if (returnType.flags & 1) { return; } const decoratorSignature = getDecoratorCallSignature(node); if (!(decoratorSignature == null ? undefined : decoratorSignature.resolvedReturnType)) return; let headMessage; const expectedReturnType = decoratorSignature.resolvedReturnType; switch (node.parent.kind) { case 264: case 232: headMessage = Diagnostics.Decorator_function_return_type_0_is_not_assignable_to_type_1; break; case 173: if (!legacyDecorators) { headMessage = Diagnostics.Decorator_function_return_type_0_is_not_assignable_to_type_1; break; } case 170: headMessage = Diagnostics.Decorator_function_return_type_is_0_but_is_expected_to_be_void_or_any; break; case 175: case 178: case 179: headMessage = Diagnostics.Decorator_function_return_type_0_is_not_assignable_to_type_1; break; default: return Debug.failBadSyntaxKind(node.parent); } checkTypeAssignableTo(returnType, expectedReturnType, node.expression, headMessage); } function createCallSignature(typeParameters, thisParameter, parameters, returnType, typePredicate, minArgumentCount = parameters.length, flags = 0) { const decl = factory.createFunctionTypeNode(undefined, emptyArray, factory.createKeywordTypeNode(133)); return createSignature(decl, typeParameters, thisParameter, parameters, returnType, typePredicate, minArgumentCount, flags); } function createFunctionType(typeParameters, thisParameter, parameters, returnType, typePredicate, minArgumentCount, flags) { const signature = createCallSignature(typeParameters, thisParameter, parameters, returnType, typePredicate, minArgumentCount, flags); return getOrCreateTypeFromSignature(signature); } function createGetterFunctionType(type) { return createFunctionType(undefined, undefined, emptyArray, type); } function createSetterFunctionType(type) { const valueParam = createParameter2("value", type); return createFunctionType(undefined, undefined, [valueParam], voidType); } function getEntityNameForDecoratorMetadata(node) { if (node) { switch (node.kind) { case 194: case 193: return getEntityNameForDecoratorMetadataFromTypeList(node.types); case 195: return getEntityNameForDecoratorMetadataFromTypeList([node.trueType, node.falseType]); case 197: case 203: return getEntityNameForDecoratorMetadata(node.type); case 184: return node.typeName; } } } function getEntityNameForDecoratorMetadataFromTypeList(types) { let commonEntityName; for (let typeNode of types) { while (typeNode.kind === 197 || typeNode.kind === 203) { typeNode = typeNode.type; } if (typeNode.kind === 146) { continue; } if (!strictNullChecks && (typeNode.kind === 202 && typeNode.literal.kind === 106 || typeNode.kind === 157)) { continue; } const individualEntityName = getEntityNameForDecoratorMetadata(typeNode); if (!individualEntityName) { return; } if (commonEntityName) { if (!isIdentifier(commonEntityName) || !isIdentifier(individualEntityName) || commonEntityName.escapedText !== individualEntityName.escapedText) { return; } } else { commonEntityName = individualEntityName; } } return commonEntityName; } function getParameterTypeNodeForDecoratorCheck(node) { const typeNode = getEffectiveTypeAnnotationNode(node); return isRestParameter(node) ? getRestParameterElementType(typeNode) : typeNode; } function checkDecorators(node) { if (!canHaveDecorators(node) || !hasDecorators(node) || !node.modifiers || !nodeCanBeDecorated(legacyDecorators, node, node.parent, node.parent.parent)) { return; } const firstDecorator = find(node.modifiers, isDecorator); if (!firstDecorator) { return; } if (legacyDecorators) { checkExternalEmitHelpers(firstDecorator, 8); if (node.kind === 170) { checkExternalEmitHelpers(firstDecorator, 32); } } else if (languageVersion < LanguageFeatureMinimumTarget.ClassAndClassElementDecorators) { checkExternalEmitHelpers(firstDecorator, 8); if (isClassDeclaration(node)) { if (!node.name) { checkExternalEmitHelpers(firstDecorator, 4194304); } else { const member = getFirstTransformableStaticClassElement(node); if (member) { checkExternalEmitHelpers(firstDecorator, 4194304); } } } else if (!isClassExpression(node)) { if (isPrivateIdentifier(node.name) && (isMethodDeclaration(node) || isAccessor(node) || isAutoAccessorPropertyDeclaration(node))) { checkExternalEmitHelpers(firstDecorator, 4194304); } if (isComputedPropertyName(node.name)) { checkExternalEmitHelpers(firstDecorator, 8388608); } } } markLinkedReferences(node, 8); for (const modifier of node.modifiers) { if (isDecorator(modifier)) { checkDecorator(modifier); } } } function checkFunctionDeclaration(node) { addLazyDiagnostic(checkFunctionDeclarationDiagnostics); function checkFunctionDeclarationDiagnostics() { checkFunctionOrMethodDeclaration(node); checkGrammarForGenerator(node); checkCollisionsForDeclarationName(node, node.name); } } function checkJSDocTypeAliasTag(node) { if (!node.typeExpression) { error2(node.name, Diagnostics.JSDoc_typedef_tag_should_either_have_a_type_annotation_or_be_followed_by_property_or_member_tags); } if (node.name) { checkTypeNameIsReserved(node.name, Diagnostics.Type_alias_name_cannot_be_0); } checkSourceElement(node.typeExpression); checkTypeParameters(getEffectiveTypeParameterDeclarations(node)); } function checkJSDocTemplateTag(node) { checkSourceElement(node.constraint); for (const tp of node.typeParameters) { checkSourceElement(tp); } } function checkJSDocTypeTag(node) { checkSourceElement(node.typeExpression); } function checkJSDocSatisfiesTag(node) { checkSourceElement(node.typeExpression); const host2 = getEffectiveJSDocHost(node); if (host2) { const tags = getAllJSDocTags(host2, isJSDocSatisfiesTag); if (length(tags) > 1) { for (let i = 1;i < length(tags); i++) { const tagName = tags[i].tagName; error2(tagName, Diagnostics._0_tag_already_specified, idText(tagName)); } } } } function checkJSDocLinkLikeTag(node) { if (node.name) { resolveJSDocMemberName(node.name, true); } } function checkJSDocParameterTag(node) { checkSourceElement(node.typeExpression); } function checkJSDocPropertyTag(node) { checkSourceElement(node.typeExpression); } function checkJSDocFunctionType(node) { addLazyDiagnostic(checkJSDocFunctionTypeImplicitAny); checkSignatureDeclaration(node); function checkJSDocFunctionTypeImplicitAny() { if (!node.type && !isJSDocConstructSignature(node)) { reportImplicitAny(node, anyType); } } } function checkJSDocThisTag(node) { const host2 = getEffectiveJSDocHost(node); if (host2 && isArrowFunction(host2)) { error2(node.tagName, Diagnostics.An_arrow_function_cannot_have_a_this_parameter); } } function checkJSDocImportTag(node) { checkImportAttributes(node); } function checkJSDocImplementsTag(node) { const classLike = getEffectiveJSDocHost(node); if (!classLike || !isClassDeclaration(classLike) && !isClassExpression(classLike)) { error2(classLike, Diagnostics.JSDoc_0_is_not_attached_to_a_class, idText(node.tagName)); } } function checkJSDocAugmentsTag(node) { const classLike = getEffectiveJSDocHost(node); if (!classLike || !isClassDeclaration(classLike) && !isClassExpression(classLike)) { error2(classLike, Diagnostics.JSDoc_0_is_not_attached_to_a_class, idText(node.tagName)); return; } const augmentsTags = getJSDocTags(classLike).filter(isJSDocAugmentsTag); Debug.assert(augmentsTags.length > 0); if (augmentsTags.length > 1) { error2(augmentsTags[1], Diagnostics.Class_declarations_cannot_have_more_than_one_augments_or_extends_tag); } const name = getIdentifierFromEntityNameExpression(node.class.expression); const extend2 = getClassExtendsHeritageElement(classLike); if (extend2) { const className = getIdentifierFromEntityNameExpression(extend2.expression); if (className && name.escapedText !== className.escapedText) { error2(name, Diagnostics.JSDoc_0_1_does_not_match_the_extends_2_clause, idText(node.tagName), idText(name), idText(className)); } } } function checkJSDocAccessibilityModifiers(node) { const host2 = getJSDocHost(node); if (host2 && isPrivateIdentifierClassElementDeclaration(host2)) { error2(node, Diagnostics.An_accessibility_modifier_cannot_be_used_with_a_private_identifier); } } function getIdentifierFromEntityNameExpression(node) { switch (node.kind) { case 80: return node; case 212: return node.name; default: return; } } function checkFunctionOrMethodDeclaration(node) { var _a; checkDecorators(node); checkSignatureDeclaration(node); const functionFlags = getFunctionFlags(node); if (node.name && node.name.kind === 168) { checkComputedPropertyName(node.name); } if (hasBindableName(node)) { const symbol = getSymbolOfDeclaration(node); const localSymbol = node.localSymbol || symbol; const firstDeclaration = (_a = localSymbol.declarations) == null ? undefined : _a.find((declaration) => declaration.kind === node.kind && !(declaration.flags & 524288)); if (node === firstDeclaration) { checkFunctionOrConstructorSymbol(localSymbol); } if (symbol.parent) { checkFunctionOrConstructorSymbol(symbol); } } const body = node.kind === 174 ? undefined : node.body; checkSourceElement(body); checkAllCodePathsInNonVoidFunctionReturnOrThrow(node, getReturnTypeFromAnnotation(node)); addLazyDiagnostic(checkFunctionOrMethodDeclarationDiagnostics); if (isInJSFile(node)) { const typeTag = getJSDocTypeTag(node); if (typeTag && typeTag.typeExpression && !getContextualCallSignature(getTypeFromTypeNode(typeTag.typeExpression), node)) { error2(typeTag.typeExpression.type, Diagnostics.The_type_of_a_function_declaration_must_match_the_function_s_signature); } } function checkFunctionOrMethodDeclarationDiagnostics() { if (!getEffectiveReturnTypeNode(node)) { if (nodeIsMissing(body) && !isPrivateWithinAmbient(node)) { reportImplicitAny(node, anyType); } if (functionFlags & 1 && nodeIsPresent(body)) { getReturnTypeOfSignature(getSignatureFromDeclaration(node)); } } } } function registerForUnusedIdentifiersCheck(node) { addLazyDiagnostic(registerForUnusedIdentifiersCheckDiagnostics); function registerForUnusedIdentifiersCheckDiagnostics() { const sourceFile = getSourceFileOfNode(node); let potentiallyUnusedIdentifiers = allPotentiallyUnusedIdentifiers.get(sourceFile.path); if (!potentiallyUnusedIdentifiers) { potentiallyUnusedIdentifiers = []; allPotentiallyUnusedIdentifiers.set(sourceFile.path, potentiallyUnusedIdentifiers); } potentiallyUnusedIdentifiers.push(node); } } function checkUnusedIdentifiers(potentiallyUnusedIdentifiers, addDiagnostic) { for (const node of potentiallyUnusedIdentifiers) { switch (node.kind) { case 264: case 232: checkUnusedClassMembers(node, addDiagnostic); checkUnusedTypeParameters(node, addDiagnostic); break; case 308: case 268: case 242: case 270: case 249: case 250: case 251: checkUnusedLocalsAndParameters(node, addDiagnostic); break; case 177: case 219: case 263: case 220: case 175: case 178: case 179: if (node.body) { checkUnusedLocalsAndParameters(node, addDiagnostic); } checkUnusedTypeParameters(node, addDiagnostic); break; case 174: case 180: case 181: case 185: case 186: case 266: case 265: checkUnusedTypeParameters(node, addDiagnostic); break; case 196: checkUnusedInferTypeParameter(node, addDiagnostic); break; default: Debug.assertNever(node, "Node should not have been registered for unused identifiers check"); } } } function errorUnusedLocal(declaration, name, addDiagnostic) { const node = getNameOfDeclaration(declaration) || declaration; const message = isTypeDeclaration(declaration) ? Diagnostics._0_is_declared_but_never_used : Diagnostics._0_is_declared_but_its_value_is_never_read; addDiagnostic(declaration, 0, createDiagnosticForNode(node, message, name)); } function isIdentifierThatStartsWithUnderscore(node) { return isIdentifier(node) && idText(node).charCodeAt(0) === 95; } function checkUnusedClassMembers(node, addDiagnostic) { for (const member of node.members) { switch (member.kind) { case 175: case 173: case 178: case 179: if (member.kind === 179 && member.symbol.flags & 32768) { break; } const symbol = getSymbolOfDeclaration(member); if (!symbol.isReferenced && (hasEffectiveModifier(member, 2) || isNamedDeclaration(member) && isPrivateIdentifier(member.name)) && !(member.flags & 33554432)) { addDiagnostic(member, 0, createDiagnosticForNode(member.name, Diagnostics._0_is_declared_but_its_value_is_never_read, symbolToString(symbol))); } break; case 177: for (const parameter of member.parameters) { if (!parameter.symbol.isReferenced && hasSyntacticModifier(parameter, 2)) { addDiagnostic(parameter, 0, createDiagnosticForNode(parameter.name, Diagnostics.Property_0_is_declared_but_its_value_is_never_read, symbolName(parameter.symbol))); } } break; case 182: case 241: case 176: break; default: Debug.fail("Unexpected class member"); } } } function checkUnusedInferTypeParameter(node, addDiagnostic) { const { typeParameter } = node; if (isTypeParameterUnused(typeParameter)) { addDiagnostic(node, 1, createDiagnosticForNode(node, Diagnostics._0_is_declared_but_its_value_is_never_read, idText(typeParameter.name))); } } function checkUnusedTypeParameters(node, addDiagnostic) { const declarations = getSymbolOfDeclaration(node).declarations; if (!declarations || last(declarations) !== node) return; const typeParameters = getEffectiveTypeParameterDeclarations(node); const seenParentsWithEveryUnused = /* @__PURE__ */ new Set; for (const typeParameter of typeParameters) { if (!isTypeParameterUnused(typeParameter)) continue; const name = idText(typeParameter.name); const { parent: parent2 } = typeParameter; if (parent2.kind !== 196 && parent2.typeParameters.every(isTypeParameterUnused)) { if (tryAddToSet(seenParentsWithEveryUnused, parent2)) { const sourceFile = getSourceFileOfNode(parent2); const range = isJSDocTemplateTag(parent2) ? rangeOfNode(parent2) : rangeOfTypeParameters(sourceFile, parent2.typeParameters); const only = parent2.typeParameters.length === 1; const messageAndArg = only ? [Diagnostics._0_is_declared_but_its_value_is_never_read, name] : [Diagnostics.All_type_parameters_are_unused]; addDiagnostic(typeParameter, 1, createFileDiagnostic(sourceFile, range.pos, range.end - range.pos, ...messageAndArg)); } } else { addDiagnostic(typeParameter, 1, createDiagnosticForNode(typeParameter, Diagnostics._0_is_declared_but_its_value_is_never_read, name)); } } } function isTypeParameterUnused(typeParameter) { return !(getMergedSymbol(typeParameter.symbol).isReferenced & 262144) && !isIdentifierThatStartsWithUnderscore(typeParameter.name); } function addToGroup(map2, key, value, getKey) { const keyString = String(getKey(key)); const group2 = map2.get(keyString); if (group2) { group2[1].push(value); } else { map2.set(keyString, [key, [value]]); } } function tryGetRootParameterDeclaration(node) { return tryCast(getRootDeclaration(node), isParameter); } function isValidUnusedLocalDeclaration(declaration) { if (isBindingElement(declaration)) { if (isObjectBindingPattern(declaration.parent)) { return !!(declaration.propertyName && isIdentifierThatStartsWithUnderscore(declaration.name)); } return isIdentifierThatStartsWithUnderscore(declaration.name); } return isAmbientModule(declaration) || (isVariableDeclaration(declaration) && isForInOrOfStatement(declaration.parent.parent) || isImportedDeclaration(declaration)) && isIdentifierThatStartsWithUnderscore(declaration.name); } function checkUnusedLocalsAndParameters(nodeWithLocals, addDiagnostic) { const unusedImports = /* @__PURE__ */ new Map; const unusedDestructures = /* @__PURE__ */ new Map; const unusedVariables = /* @__PURE__ */ new Map; nodeWithLocals.locals.forEach((local) => { if (local.flags & 262144 ? !(local.flags & 3 && !(local.isReferenced & 3)) : local.isReferenced || local.exportSymbol) { return; } if (local.declarations) { for (const declaration of local.declarations) { if (isValidUnusedLocalDeclaration(declaration)) { continue; } if (isImportedDeclaration(declaration)) { addToGroup(unusedImports, importClauseFromImported(declaration), declaration, getNodeId); } else if (isBindingElement(declaration) && isObjectBindingPattern(declaration.parent)) { const lastElement = last(declaration.parent.elements); if (declaration === lastElement || !last(declaration.parent.elements).dotDotDotToken) { addToGroup(unusedDestructures, declaration.parent, declaration, getNodeId); } } else if (isVariableDeclaration(declaration)) { const blockScopeKind = getCombinedNodeFlagsCached(declaration) & 7; const name = getNameOfDeclaration(declaration); if (blockScopeKind !== 4 && blockScopeKind !== 6 || !name || !isIdentifierThatStartsWithUnderscore(name)) { addToGroup(unusedVariables, declaration.parent, declaration, getNodeId); } } else { const parameter = local.valueDeclaration && tryGetRootParameterDeclaration(local.valueDeclaration); const name = local.valueDeclaration && getNameOfDeclaration(local.valueDeclaration); if (parameter && name) { if (!isParameterPropertyDeclaration(parameter, parameter.parent) && !parameterIsThisKeyword(parameter) && !isIdentifierThatStartsWithUnderscore(name)) { if (isBindingElement(declaration) && isArrayBindingPattern(declaration.parent)) { addToGroup(unusedDestructures, declaration.parent, declaration, getNodeId); } else { addDiagnostic(parameter, 1, createDiagnosticForNode(name, Diagnostics._0_is_declared_but_its_value_is_never_read, symbolName(local))); } } } else { errorUnusedLocal(declaration, symbolName(local), addDiagnostic); } } } } }); unusedImports.forEach(([importClause, unuseds]) => { const importDecl = importClause.parent; const nDeclarations = (importClause.name ? 1 : 0) + (importClause.namedBindings ? importClause.namedBindings.kind === 275 ? 1 : importClause.namedBindings.elements.length : 0); if (nDeclarations === unuseds.length) { addDiagnostic(importDecl, 0, unuseds.length === 1 ? createDiagnosticForNode(importDecl, Diagnostics._0_is_declared_but_its_value_is_never_read, idText(first(unuseds).name)) : createDiagnosticForNode(importDecl, Diagnostics.All_imports_in_import_declaration_are_unused)); } else { for (const unused of unuseds) errorUnusedLocal(unused, idText(unused.name), addDiagnostic); } }); unusedDestructures.forEach(([bindingPattern, bindingElements]) => { const kind = tryGetRootParameterDeclaration(bindingPattern.parent) ? 1 : 0; if (bindingPattern.elements.length === bindingElements.length) { if (bindingElements.length === 1 && bindingPattern.parent.kind === 261 && bindingPattern.parent.parent.kind === 262) { addToGroup(unusedVariables, bindingPattern.parent.parent, bindingPattern.parent, getNodeId); } else { addDiagnostic(bindingPattern, kind, bindingElements.length === 1 ? createDiagnosticForNode(bindingPattern, Diagnostics._0_is_declared_but_its_value_is_never_read, bindingNameText(first(bindingElements).name)) : createDiagnosticForNode(bindingPattern, Diagnostics.All_destructured_elements_are_unused)); } } else { for (const e of bindingElements) { addDiagnostic(e, kind, createDiagnosticForNode(e, Diagnostics._0_is_declared_but_its_value_is_never_read, bindingNameText(e.name))); } } }); unusedVariables.forEach(([declarationList, declarations]) => { if (declarationList.declarations.length === declarations.length) { addDiagnostic(declarationList, 0, declarations.length === 1 ? createDiagnosticForNode(first(declarations).name, Diagnostics._0_is_declared_but_its_value_is_never_read, bindingNameText(first(declarations).name)) : createDiagnosticForNode(declarationList.parent.kind === 244 ? declarationList.parent : declarationList, Diagnostics.All_variables_are_unused)); } else { for (const decl of declarations) { addDiagnostic(decl, 0, createDiagnosticForNode(decl, Diagnostics._0_is_declared_but_its_value_is_never_read, bindingNameText(decl.name))); } } }); } function checkPotentialUncheckedRenamedBindingElementsInTypes() { var _a; for (const node of potentialUnusedRenamedBindingElementsInTypes) { if (!((_a = getSymbolOfDeclaration(node)) == null ? undefined : _a.isReferenced)) { const wrappingDeclaration = walkUpBindingElementsAndPatterns(node); Debug.assert(isPartOfParameterDeclaration(wrappingDeclaration), "Only parameter declaration should be checked here"); const diagnostic = createDiagnosticForNode(node.name, Diagnostics._0_is_an_unused_renaming_of_1_Did_you_intend_to_use_it_as_a_type_annotation, declarationNameToString(node.name), declarationNameToString(node.propertyName)); if (!wrappingDeclaration.type) { addRelatedInfo(diagnostic, createFileDiagnostic(getSourceFileOfNode(wrappingDeclaration), wrappingDeclaration.end, 0, Diagnostics.We_can_only_write_a_type_for_0_by_adding_a_type_for_the_entire_parameter_here, declarationNameToString(node.propertyName))); } diagnostics.add(diagnostic); } } } function bindingNameText(name) { switch (name.kind) { case 80: return idText(name); case 208: case 207: return bindingNameText(cast(first(name.elements), isBindingElement).name); default: return Debug.assertNever(name); } } function isImportedDeclaration(node) { return node.kind === 274 || node.kind === 277 || node.kind === 275; } function importClauseFromImported(decl) { return decl.kind === 274 ? decl : decl.kind === 275 ? decl.parent : decl.parent.parent; } function checkBlock(node) { if (node.kind === 242) { checkGrammarStatementInAmbientContext(node); } if (isFunctionOrModuleBlock(node)) { const saveFlowAnalysisDisabled = flowAnalysisDisabled; forEach(node.statements, checkSourceElement); flowAnalysisDisabled = saveFlowAnalysisDisabled; } else { forEach(node.statements, checkSourceElement); } if (node.locals) { registerForUnusedIdentifiersCheck(node); } } function checkCollisionWithArgumentsInGeneratedCode(node) { if (languageVersion >= 2 || !hasRestParameter(node) || node.flags & 33554432 || nodeIsMissing(node.body)) { return; } forEach(node.parameters, (p) => { if (p.name && !isBindingPattern(p.name) && p.name.escapedText === argumentsSymbol.escapedName) { errorSkippedOn("noEmit", p, Diagnostics.Duplicate_identifier_arguments_Compiler_uses_arguments_to_initialize_rest_parameters); } }); } function needCollisionCheckForIdentifier(node, identifier, name) { if ((identifier == null ? undefined : identifier.escapedText) !== name) { return false; } if (node.kind === 173 || node.kind === 172 || node.kind === 175 || node.kind === 174 || node.kind === 178 || node.kind === 179 || node.kind === 304) { return false; } if (node.flags & 33554432) { return false; } if (isImportClause(node) || isImportEqualsDeclaration(node) || isImportSpecifier(node)) { if (isTypeOnlyImportOrExportDeclaration(node)) { return false; } } const root = getRootDeclaration(node); if (isParameter(root) && nodeIsMissing(root.parent.body)) { return false; } return true; } function checkIfThisIsCapturedInEnclosingScope(node) { findAncestor(node, (current) => { if (getNodeCheckFlags(current) & 4) { const isDeclaration2 = node.kind !== 80; if (isDeclaration2) { error2(getNameOfDeclaration(node), Diagnostics.Duplicate_identifier_this_Compiler_uses_variable_declaration_this_to_capture_this_reference); } else { error2(node, Diagnostics.Expression_resolves_to_variable_declaration_this_that_compiler_uses_to_capture_this_reference); } return true; } return false; }); } function checkIfNewTargetIsCapturedInEnclosingScope(node) { findAncestor(node, (current) => { if (getNodeCheckFlags(current) & 8) { const isDeclaration2 = node.kind !== 80; if (isDeclaration2) { error2(getNameOfDeclaration(node), Diagnostics.Duplicate_identifier_newTarget_Compiler_uses_variable_declaration_newTarget_to_capture_new_target_meta_property_reference); } else { error2(node, Diagnostics.Expression_resolves_to_variable_declaration_newTarget_that_compiler_uses_to_capture_new_target_meta_property_reference); } return true; } return false; }); } function checkCollisionWithRequireExportsInGeneratedCode(node, name) { if (host.getEmitModuleFormatOfFile(getSourceFileOfNode(node)) >= 5) { return; } if (!name || !needCollisionCheckForIdentifier(node, name, "require") && !needCollisionCheckForIdentifier(node, name, "exports")) { return; } if (isModuleDeclaration(node) && getModuleInstanceState(node) !== 1) { return; } const parent2 = getDeclarationContainer(node); if (parent2.kind === 308 && isExternalOrCommonJsModule(parent2)) { errorSkippedOn("noEmit", name, Diagnostics.Duplicate_identifier_0_Compiler_reserves_name_1_in_top_level_scope_of_a_module, declarationNameToString(name), declarationNameToString(name)); } } function checkCollisionWithGlobalPromiseInGeneratedCode(node, name) { if (!name || languageVersion >= 4 || !needCollisionCheckForIdentifier(node, name, "Promise")) { return; } if (isModuleDeclaration(node) && getModuleInstanceState(node) !== 1) { return; } const parent2 = getDeclarationContainer(node); if (parent2.kind === 308 && isExternalOrCommonJsModule(parent2) && parent2.flags & 4096) { errorSkippedOn("noEmit", name, Diagnostics.Duplicate_identifier_0_Compiler_reserves_name_1_in_top_level_scope_of_a_module_containing_async_functions, declarationNameToString(name), declarationNameToString(name)); } } function recordPotentialCollisionWithWeakMapSetInGeneratedCode(node, name) { if (languageVersion <= 8 && (needCollisionCheckForIdentifier(node, name, "WeakMap") || needCollisionCheckForIdentifier(node, name, "WeakSet"))) { potentialWeakMapSetCollisions.push(node); } } function checkWeakMapSetCollision(node) { const enclosingBlockScope = getEnclosingBlockScopeContainer(node); if (getNodeCheckFlags(enclosingBlockScope) & 1048576) { Debug.assert(isNamedDeclaration(node) && isIdentifier(node.name) && typeof node.name.escapedText === "string", "The target of a WeakMap/WeakSet collision check should be an identifier"); errorSkippedOn("noEmit", node, Diagnostics.Compiler_reserves_name_0_when_emitting_private_identifier_downlevel, node.name.escapedText); } } function recordPotentialCollisionWithReflectInGeneratedCode(node, name) { if (name && languageVersion >= 2 && languageVersion <= 8 && needCollisionCheckForIdentifier(node, name, "Reflect")) { potentialReflectCollisions.push(node); } } function checkReflectCollision(node) { let hasCollision = false; if (isClassExpression(node)) { for (const member of node.members) { if (getNodeCheckFlags(member) & 2097152) { hasCollision = true; break; } } } else if (isFunctionExpression(node)) { if (getNodeCheckFlags(node) & 2097152) { hasCollision = true; } } else { const container = getEnclosingBlockScopeContainer(node); if (container && getNodeCheckFlags(container) & 2097152) { hasCollision = true; } } if (hasCollision) { Debug.assert(isNamedDeclaration(node) && isIdentifier(node.name), "The target of a Reflect collision check should be an identifier"); errorSkippedOn("noEmit", node, Diagnostics.Duplicate_identifier_0_Compiler_reserves_name_1_when_emitting_super_references_in_static_initializers, declarationNameToString(node.name), "Reflect"); } } function checkCollisionsForDeclarationName(node, name) { if (!name) return; checkCollisionWithRequireExportsInGeneratedCode(node, name); checkCollisionWithGlobalPromiseInGeneratedCode(node, name); recordPotentialCollisionWithWeakMapSetInGeneratedCode(node, name); recordPotentialCollisionWithReflectInGeneratedCode(node, name); if (isClassLike(node)) { checkTypeNameIsReserved(name, Diagnostics.Class_name_cannot_be_0); if (!(node.flags & 33554432)) { checkClassNameCollisionWithObject(name); } } else if (isEnumDeclaration(node)) { checkTypeNameIsReserved(name, Diagnostics.Enum_name_cannot_be_0); } } function checkVarDeclaredNamesNotShadowed(node) { if ((getCombinedNodeFlagsCached(node) & 7) !== 0 || isPartOfParameterDeclaration(node)) { return; } const symbol = getSymbolOfDeclaration(node); if (symbol.flags & 1) { if (!isIdentifier(node.name)) return Debug.fail(); const localDeclarationSymbol = resolveName(node, node.name.escapedText, 3, undefined, false); if (localDeclarationSymbol && localDeclarationSymbol !== symbol && localDeclarationSymbol.flags & 2) { if (getDeclarationNodeFlagsFromSymbol(localDeclarationSymbol) & 7) { const varDeclList = getAncestor(localDeclarationSymbol.valueDeclaration, 262); const container = varDeclList.parent.kind === 244 && varDeclList.parent.parent ? varDeclList.parent.parent : undefined; const namesShareScope = container && (container.kind === 242 && isFunctionLike(container.parent) || container.kind === 269 || container.kind === 268 || container.kind === 308); if (!namesShareScope) { const name = symbolToString(localDeclarationSymbol); error2(node, Diagnostics.Cannot_initialize_outer_scoped_variable_0_in_the_same_scope_as_block_scoped_declaration_1, name, name); } } } } } function convertAutoToAny(type) { return type === autoType ? anyType : type === autoArrayType ? anyArrayType : type; } function checkVariableLikeDeclaration(node) { var _a; checkDecorators(node); if (!isBindingElement(node)) { checkSourceElement(node.type); } if (!node.name) { return; } if (node.name.kind === 168) { checkComputedPropertyName(node.name); if (hasOnlyExpressionInitializer(node) && node.initializer) { checkExpressionCached(node.initializer); } } if (isBindingElement(node)) { if (node.propertyName && isIdentifier(node.name) && isPartOfParameterDeclaration(node) && nodeIsMissing(getContainingFunction(node).body)) { potentialUnusedRenamedBindingElementsInTypes.push(node); return; } if (isObjectBindingPattern(node.parent) && node.dotDotDotToken && languageVersion < LanguageFeatureMinimumTarget.ObjectSpreadRest) { checkExternalEmitHelpers(node, 4); } if (node.propertyName && node.propertyName.kind === 168) { checkComputedPropertyName(node.propertyName); } const parent2 = node.parent.parent; const parentCheckMode = node.dotDotDotToken ? 32 : 0; const parentType = getTypeForBindingElementParent(parent2, parentCheckMode); const name = node.propertyName || node.name; if (parentType && !isBindingPattern(name)) { const exprType = getLiteralTypeFromPropertyName(name); if (isTypeUsableAsPropertyName(exprType)) { const nameText = getPropertyNameFromType(exprType); const property = getPropertyOfType(parentType, nameText); if (property) { markPropertyAsReferenced(property, undefined, false); checkPropertyAccessibility(node, !!parent2.initializer && parent2.initializer.kind === 108, false, parentType, property); } } } } if (isBindingPattern(node.name)) { if (node.name.kind === 208 && languageVersion < LanguageFeatureMinimumTarget.BindingPatterns && compilerOptions.downlevelIteration) { checkExternalEmitHelpers(node, 512); } forEach(node.name.elements, checkSourceElement); } if (node.initializer && isPartOfParameterDeclaration(node) && nodeIsMissing(getContainingFunction(node).body)) { error2(node, Diagnostics.A_parameter_initializer_is_only_allowed_in_a_function_or_constructor_implementation); return; } if (isBindingPattern(node.name)) { if (isInAmbientOrTypeNode(node)) { return; } const needCheckInitializer = hasOnlyExpressionInitializer(node) && node.initializer && node.parent.parent.kind !== 250; const needCheckWidenedType = !some(node.name.elements, not(isOmittedExpression)); if (needCheckInitializer || needCheckWidenedType) { const widenedType = getWidenedTypeForVariableLikeDeclaration(node); if (needCheckInitializer) { const initializerType = checkExpressionCached(node.initializer); if (strictNullChecks && needCheckWidenedType) { checkNonNullNonVoidType(initializerType, node); } else { checkTypeAssignableToAndOptionallyElaborate(initializerType, getWidenedTypeForVariableLikeDeclaration(node), node, node.initializer); } } if (needCheckWidenedType) { if (isArrayBindingPattern(node.name)) { checkIteratedTypeOrElementType(65, widenedType, undefinedType, node); } else if (strictNullChecks) { checkNonNullNonVoidType(widenedType, node); } } } return; } const symbol = getSymbolOfDeclaration(node); if (symbol.flags & 2097152 && (isVariableDeclarationInitializedToBareOrAccessedRequire(node) || isBindingElementOfBareOrAccessedRequire(node))) { checkAliasSymbol(node); return; } if (node.name.kind === 10) { error2(node.name, Diagnostics.A_bigint_literal_cannot_be_used_as_a_property_name); } const type = convertAutoToAny(getTypeOfSymbol(symbol)); if (node === symbol.valueDeclaration) { const initializer = hasOnlyExpressionInitializer(node) && getEffectiveInitializer(node); if (initializer) { const isJSObjectLiteralInitializer = isInJSFile(node) && isObjectLiteralExpression(initializer) && (initializer.properties.length === 0 || isPrototypeAccess(node.name)) && !!((_a = symbol.exports) == null ? undefined : _a.size); if (!isJSObjectLiteralInitializer && node.parent.parent.kind !== 250) { const initializerType = checkExpressionCached(initializer); checkTypeAssignableToAndOptionallyElaborate(initializerType, type, node, initializer, undefined); const blockScopeKind = getCombinedNodeFlagsCached(node) & 7; if (blockScopeKind === 6) { const globalAsyncDisposableType = getGlobalAsyncDisposableType(true); const globalDisposableType = getGlobalDisposableType(true); if (globalAsyncDisposableType !== emptyObjectType && globalDisposableType !== emptyObjectType) { const optionalDisposableType = getUnionType([globalAsyncDisposableType, globalDisposableType, nullType, undefinedType]); checkTypeAssignableTo(widenTypeForVariableLikeDeclaration(initializerType, node), optionalDisposableType, initializer, Diagnostics.The_initializer_of_an_await_using_declaration_must_be_either_an_object_with_a_Symbol_asyncDispose_or_Symbol_dispose_method_or_be_null_or_undefined); } } else if (blockScopeKind === 4) { const globalDisposableType = getGlobalDisposableType(true); if (globalDisposableType !== emptyObjectType) { const optionalDisposableType = getUnionType([globalDisposableType, nullType, undefinedType]); checkTypeAssignableTo(widenTypeForVariableLikeDeclaration(initializerType, node), optionalDisposableType, initializer, Diagnostics.The_initializer_of_a_using_declaration_must_be_either_an_object_with_a_Symbol_dispose_method_or_be_null_or_undefined); } } } } if (symbol.declarations && symbol.declarations.length > 1) { if (some(symbol.declarations, (d) => d !== node && isVariableLike(d) && !areDeclarationFlagsIdentical(d, node))) { error2(node.name, Diagnostics.All_declarations_of_0_must_have_identical_modifiers, declarationNameToString(node.name)); } } } else { const declarationType = convertAutoToAny(getWidenedTypeForVariableLikeDeclaration(node)); if (!isErrorType(type) && !isErrorType(declarationType) && !isTypeIdenticalTo(type, declarationType) && !(symbol.flags & 67108864)) { errorNextVariableOrPropertyDeclarationMustHaveSameType(symbol.valueDeclaration, type, node, declarationType); } if (hasOnlyExpressionInitializer(node) && node.initializer) { checkTypeAssignableToAndOptionallyElaborate(checkExpressionCached(node.initializer), declarationType, node, node.initializer, undefined); } if (symbol.valueDeclaration && !areDeclarationFlagsIdentical(node, symbol.valueDeclaration)) { error2(node.name, Diagnostics.All_declarations_of_0_must_have_identical_modifiers, declarationNameToString(node.name)); } } if (node.kind !== 173 && node.kind !== 172) { checkExportsOnMergedDeclarations(node); if (node.kind === 261 || node.kind === 209) { checkVarDeclaredNamesNotShadowed(node); } checkCollisionsForDeclarationName(node, node.name); } } function errorNextVariableOrPropertyDeclarationMustHaveSameType(firstDeclaration, firstType, nextDeclaration, nextType) { const nextDeclarationName = getNameOfDeclaration(nextDeclaration); const message = nextDeclaration.kind === 173 || nextDeclaration.kind === 172 ? Diagnostics.Subsequent_property_declarations_must_have_the_same_type_Property_0_must_be_of_type_1_but_here_has_type_2 : Diagnostics.Subsequent_variable_declarations_must_have_the_same_type_Variable_0_must_be_of_type_1_but_here_has_type_2; const declName = declarationNameToString(nextDeclarationName); const err = error2(nextDeclarationName, message, declName, typeToString(firstType), typeToString(nextType)); if (firstDeclaration) { addRelatedInfo(err, createDiagnosticForNode(firstDeclaration, Diagnostics._0_was_also_declared_here, declName)); } } function areDeclarationFlagsIdentical(left, right) { if (left.kind === 170 && right.kind === 261 || left.kind === 261 && right.kind === 170) { return true; } if (hasQuestionToken(left) !== hasQuestionToken(right)) { return false; } const interestingFlags = 2 | 4 | 1024 | 64 | 8 | 256; return getSelectedEffectiveModifierFlags(left, interestingFlags) === getSelectedEffectiveModifierFlags(right, interestingFlags); } function checkVariableDeclaration(node) { var _a, _b; (_a = tracing) == null || _a.push(tracing.Phase.Check, "checkVariableDeclaration", { kind: node.kind, pos: node.pos, end: node.end, path: node.tracingPath }); checkGrammarVariableDeclaration(node); checkVariableLikeDeclaration(node); (_b = tracing) == null || _b.pop(); } function checkBindingElement(node) { checkGrammarBindingElement(node); return checkVariableLikeDeclaration(node); } function checkVariableDeclarationList(node) { const blockScopeKind = getCombinedNodeFlags(node) & 7; if ((blockScopeKind === 4 || blockScopeKind === 6) && languageVersion < LanguageFeatureMinimumTarget.UsingAndAwaitUsing) { checkExternalEmitHelpers(node, 16777216); } forEach(node.declarations, checkSourceElement); } function checkVariableStatement(node) { if (!checkGrammarModifiers(node) && !checkGrammarVariableDeclarationList(node.declarationList)) checkGrammarForDisallowedBlockScopedVariableStatement(node); checkVariableDeclarationList(node.declarationList); } function checkExpressionStatement(node) { checkGrammarStatementInAmbientContext(node); checkExpression(node.expression); } function checkIfStatement(node) { checkGrammarStatementInAmbientContext(node); const type = checkTruthinessExpression(node.expression); checkTestingKnownTruthyCallableOrAwaitableOrEnumMemberType(node.expression, type, node.thenStatement); checkSourceElement(node.thenStatement); if (node.thenStatement.kind === 243) { error2(node.thenStatement, Diagnostics.The_body_of_an_if_statement_cannot_be_the_empty_statement); } checkSourceElement(node.elseStatement); } function checkTestingKnownTruthyCallableOrAwaitableOrEnumMemberType(condExpr, condType, body) { if (!strictNullChecks) return; bothHelper(condExpr, body); function bothHelper(condExpr2, body2) { condExpr2 = skipParentheses(condExpr2); helper(condExpr2, body2); while (isBinaryExpression(condExpr2) && (condExpr2.operatorToken.kind === 57 || condExpr2.operatorToken.kind === 61)) { condExpr2 = skipParentheses(condExpr2.left); helper(condExpr2, body2); } } function helper(condExpr2, body2) { const location = isLogicalOrCoalescingBinaryExpression(condExpr2) ? skipParentheses(condExpr2.right) : condExpr2; if (isModuleExportsAccessExpression(location)) { return; } if (isLogicalOrCoalescingBinaryExpression(location)) { bothHelper(location, body2); return; } const type = location === condExpr2 ? condType : checkExpression(location); if (type.flags & 32768 && isPropertyAccessExpression(location) && (getNodeLinks(location.expression).resolvedSymbol ?? unknownSymbol).flags & 384) { error2(location, Diagnostics.This_condition_will_always_return_0, type.value ? "true" : "false"); return; } const isPropertyExpressionCast = isPropertyAccessExpression(location) && isTypeAssertion(location.expression); if (!hasTypeFacts(type, 4194304) || isPropertyExpressionCast) return; const callSignatures = getSignaturesOfType(type, 0); const isPromise = !!getAwaitedTypeOfPromise(type); if (callSignatures.length === 0 && !isPromise) { return; } const testedNode = isIdentifier(location) ? location : isPropertyAccessExpression(location) ? location.name : undefined; const testedSymbol = testedNode && getSymbolAtLocation(testedNode); if (!testedSymbol && !isPromise) { return; } const isUsed = testedSymbol && isBinaryExpression(condExpr2.parent) && isSymbolUsedInBinaryExpressionChain(condExpr2.parent, testedSymbol) || testedSymbol && body2 && isSymbolUsedInConditionBody(condExpr2, body2, testedNode, testedSymbol); if (!isUsed) { if (isPromise) { errorAndMaybeSuggestAwait(location, true, Diagnostics.This_condition_will_always_return_true_since_this_0_is_always_defined, getTypeNameForErrorDisplay(type)); } else { error2(location, Diagnostics.This_condition_will_always_return_true_since_this_function_is_always_defined_Did_you_mean_to_call_it_instead); } } } } function isSymbolUsedInConditionBody(expr, body, testedNode, testedSymbol) { return !!forEachChild(body, function check(childNode) { if (isIdentifier(childNode)) { const childSymbol = getSymbolAtLocation(childNode); if (childSymbol && childSymbol === testedSymbol) { if (isIdentifier(expr) || isIdentifier(testedNode) && isBinaryExpression(testedNode.parent)) { return true; } let testedExpression = testedNode.parent; let childExpression = childNode.parent; while (testedExpression && childExpression) { if (isIdentifier(testedExpression) && isIdentifier(childExpression) || testedExpression.kind === 110 && childExpression.kind === 110) { return getSymbolAtLocation(testedExpression) === getSymbolAtLocation(childExpression); } else if (isPropertyAccessExpression(testedExpression) && isPropertyAccessExpression(childExpression)) { if (getSymbolAtLocation(testedExpression.name) !== getSymbolAtLocation(childExpression.name)) { return false; } childExpression = childExpression.expression; testedExpression = testedExpression.expression; } else if (isCallExpression(testedExpression) && isCallExpression(childExpression)) { childExpression = childExpression.expression; testedExpression = testedExpression.expression; } else { return false; } } } } return forEachChild(childNode, check); }); } function isSymbolUsedInBinaryExpressionChain(node, testedSymbol) { while (isBinaryExpression(node) && node.operatorToken.kind === 56) { const isUsed = forEachChild(node.right, function visit(child) { if (isIdentifier(child)) { const symbol = getSymbolAtLocation(child); if (symbol && symbol === testedSymbol) { return true; } } return forEachChild(child, visit); }); if (isUsed) { return true; } node = node.parent; } return false; } function checkDoStatement(node) { checkGrammarStatementInAmbientContext(node); checkSourceElement(node.statement); checkTruthinessExpression(node.expression); } function checkWhileStatement(node) { checkGrammarStatementInAmbientContext(node); checkTruthinessExpression(node.expression); checkSourceElement(node.statement); } function checkTruthinessOfType(type, node) { if (type.flags & 16) { error2(node, Diagnostics.An_expression_of_type_void_cannot_be_tested_for_truthiness); } else { const semantics = getSyntacticTruthySemantics(node); if (semantics !== 3) { error2(node, semantics === 1 ? Diagnostics.This_kind_of_expression_is_always_truthy : Diagnostics.This_kind_of_expression_is_always_falsy); } } return type; } function getSyntacticTruthySemantics(node) { node = skipOuterExpressions(node); switch (node.kind) { case 9: if (node.text === "0" || node.text === "1") { return 3; } return 1; case 210: case 220: case 10: case 232: case 219: case 285: case 286: case 211: case 14: return 1; case 223: case 106: return 2; case 15: case 11: return node.text ? 1 : 2; case 228: return getSyntacticTruthySemantics(node.whenTrue) | getSyntacticTruthySemantics(node.whenFalse); case 80: if (getResolvedSymbol(node) === undefinedSymbol) { return 2; } return 3; } return 3; } function checkTruthinessExpression(node, checkMode) { return checkTruthinessOfType(checkExpression(node, checkMode), node); } function checkForStatement(node) { if (!checkGrammarStatementInAmbientContext(node)) { if (node.initializer && node.initializer.kind === 262) { checkGrammarVariableDeclarationList(node.initializer); } } if (node.initializer) { if (node.initializer.kind === 262) { checkVariableDeclarationList(node.initializer); } else { checkExpression(node.initializer); } } if (node.condition) checkTruthinessExpression(node.condition); if (node.incrementor) checkExpression(node.incrementor); checkSourceElement(node.statement); if (node.locals) { registerForUnusedIdentifiersCheck(node); } } function checkForOfStatement(node) { checkGrammarForInOrForOfStatement(node); const container = getContainingFunctionOrClassStaticBlock(node); if (node.awaitModifier) { if (container && isClassStaticBlockDeclaration(container)) { grammarErrorOnNode(node.awaitModifier, Diagnostics.for_await_loops_cannot_be_used_inside_a_class_static_block); } else { const functionFlags = getFunctionFlags(container); if ((functionFlags & (4 | 2)) === 2 && languageVersion < LanguageFeatureMinimumTarget.ForAwaitOf) { checkExternalEmitHelpers(node, 16384); } } } else if (compilerOptions.downlevelIteration && languageVersion < LanguageFeatureMinimumTarget.ForOf) { checkExternalEmitHelpers(node, 256); } if (node.initializer.kind === 262) { checkVariableDeclarationList(node.initializer); } else { const varExpr = node.initializer; const iteratedType = checkRightHandSideOfForOf(node); if (varExpr.kind === 210 || varExpr.kind === 211) { checkDestructuringAssignment(varExpr, iteratedType || errorType); } else { const leftType = checkExpression(varExpr); checkReferenceExpression(varExpr, Diagnostics.The_left_hand_side_of_a_for_of_statement_must_be_a_variable_or_a_property_access, Diagnostics.The_left_hand_side_of_a_for_of_statement_may_not_be_an_optional_property_access); if (iteratedType) { checkTypeAssignableToAndOptionallyElaborate(iteratedType, leftType, varExpr, node.expression); } } } checkSourceElement(node.statement); if (node.locals) { registerForUnusedIdentifiersCheck(node); } } function checkForInStatement(node) { checkGrammarForInOrForOfStatement(node); const rightType = getNonNullableTypeIfNeeded(checkExpression(node.expression)); if (node.initializer.kind === 262) { const variable = node.initializer.declarations[0]; if (variable && isBindingPattern(variable.name)) { error2(variable.name, Diagnostics.The_left_hand_side_of_a_for_in_statement_cannot_be_a_destructuring_pattern); } checkVariableDeclarationList(node.initializer); } else { const varExpr = node.initializer; const leftType = checkExpression(varExpr); if (varExpr.kind === 210 || varExpr.kind === 211) { error2(varExpr, Diagnostics.The_left_hand_side_of_a_for_in_statement_cannot_be_a_destructuring_pattern); } else if (!isTypeAssignableTo(getIndexTypeOrString(rightType), leftType)) { error2(varExpr, Diagnostics.The_left_hand_side_of_a_for_in_statement_must_be_of_type_string_or_any); } else { checkReferenceExpression(varExpr, Diagnostics.The_left_hand_side_of_a_for_in_statement_must_be_a_variable_or_a_property_access, Diagnostics.The_left_hand_side_of_a_for_in_statement_may_not_be_an_optional_property_access); } } if (rightType === neverType || !isTypeAssignableToKind(rightType, 131072 | 117964800)) { error2(node.expression, Diagnostics.The_right_hand_side_of_a_for_in_statement_must_be_of_type_any_an_object_type_or_a_type_parameter_but_here_has_type_0, typeToString(rightType)); } checkSourceElement(node.statement); if (node.locals) { registerForUnusedIdentifiersCheck(node); } } function checkRightHandSideOfForOf(statement) { const use = statement.awaitModifier ? 15 : 13; return checkIteratedTypeOrElementType(use, checkNonNullExpression(statement.expression), undefinedType, statement.expression); } function checkIteratedTypeOrElementType(use, inputType, sentType, errorNode) { if (isTypeAny(inputType)) { return inputType; } return getIteratedTypeOrElementType(use, inputType, sentType, errorNode, true) || anyType; } function getIteratedTypeOrElementType(use, inputType, sentType, errorNode, checkAssignability) { const allowAsyncIterables = (use & 2) !== 0; if (inputType === neverType) { if (errorNode) { reportTypeNotIterableError(errorNode, inputType, allowAsyncIterables); } return; } const iterableExists = getGlobalIterableType(false) !== emptyGenericType; const uplevelIteration = languageVersion >= 2 && iterableExists; const downlevelIteration = !uplevelIteration && compilerOptions.downlevelIteration; const possibleOutOfBounds = compilerOptions.noUncheckedIndexedAccess && !!(use & 128); if (uplevelIteration || downlevelIteration || allowAsyncIterables) { const iterationTypes = getIterationTypesOfIterable(inputType, use, uplevelIteration ? errorNode : undefined); if (checkAssignability) { if (iterationTypes) { const diagnostic = use & 8 ? Diagnostics.Cannot_iterate_value_because_the_next_method_of_its_iterator_expects_type_1_but_for_of_will_always_send_0 : use & 32 ? Diagnostics.Cannot_iterate_value_because_the_next_method_of_its_iterator_expects_type_1_but_array_spread_will_always_send_0 : use & 64 ? Diagnostics.Cannot_iterate_value_because_the_next_method_of_its_iterator_expects_type_1_but_array_destructuring_will_always_send_0 : use & 16 ? Diagnostics.Cannot_delegate_iteration_to_value_because_the_next_method_of_its_iterator_expects_type_1_but_the_containing_generator_will_always_send_0 : undefined; if (diagnostic) { checkTypeAssignableTo(sentType, iterationTypes.nextType, errorNode, diagnostic); } } } if (iterationTypes || uplevelIteration) { return possibleOutOfBounds ? includeUndefinedInIndexSignature(iterationTypes && iterationTypes.yieldType) : iterationTypes && iterationTypes.yieldType; } } let arrayType = inputType; let hasStringConstituent = false; if (use & 4) { if (arrayType.flags & 134217728) { const arrayTypes = inputType.types; const filteredTypes = filter(arrayTypes, (t) => !(t.flags & 12583968)); if (filteredTypes !== arrayTypes) { arrayType = getUnionType(filteredTypes, 2); } } else if (arrayType.flags & 12583968) { arrayType = neverType; } hasStringConstituent = arrayType !== inputType; if (hasStringConstituent) { if (arrayType.flags & 262144) { return possibleOutOfBounds ? includeUndefinedInIndexSignature(stringType) : stringType; } } } if (!isArrayLikeType(arrayType)) { if (errorNode) { const allowsStrings = !!(use & 4) && !hasStringConstituent; const [defaultDiagnostic, maybeMissingAwait] = getIterationDiagnosticDetails(allowsStrings, downlevelIteration); errorAndMaybeSuggestAwait(errorNode, maybeMissingAwait && !!getAwaitedTypeOfPromise(arrayType), defaultDiagnostic, typeToString(arrayType)); } return hasStringConstituent ? possibleOutOfBounds ? includeUndefinedInIndexSignature(stringType) : stringType : undefined; } const arrayElementType = getIndexTypeOfType(arrayType, numberType); if (hasStringConstituent && arrayElementType) { if (arrayElementType.flags & 12583968 && !compilerOptions.noUncheckedIndexedAccess) { return stringType; } return getUnionType(possibleOutOfBounds ? [arrayElementType, stringType, undefinedType] : [arrayElementType, stringType], 2); } return use & 128 ? includeUndefinedInIndexSignature(arrayElementType) : arrayElementType; function getIterationDiagnosticDetails(allowsStrings, downlevelIteration2) { var _a; if (downlevelIteration2) { return allowsStrings ? [Diagnostics.Type_0_is_not_an_array_type_or_a_string_type_or_does_not_have_a_Symbol_iterator_method_that_returns_an_iterator, true] : [Diagnostics.Type_0_is_not_an_array_type_or_does_not_have_a_Symbol_iterator_method_that_returns_an_iterator, true]; } const yieldType = getIterationTypeOfIterable(use, 0, inputType, undefined); if (yieldType) { return [Diagnostics.Type_0_can_only_be_iterated_through_when_using_the_downlevelIteration_flag_or_with_a_target_of_es2015_or_higher, false]; } if (isES2015OrLaterIterable((_a = inputType.symbol) == null ? undefined : _a.escapedName)) { return [Diagnostics.Type_0_can_only_be_iterated_through_when_using_the_downlevelIteration_flag_or_with_a_target_of_es2015_or_higher, true]; } return allowsStrings ? [Diagnostics.Type_0_is_not_an_array_type_or_a_string_type, true] : [Diagnostics.Type_0_is_not_an_array_type, true]; } } function isES2015OrLaterIterable(n) { switch (n) { case "Float32Array": case "Float64Array": case "Int16Array": case "Int32Array": case "Int8Array": case "NodeList": case "Uint16Array": case "Uint32Array": case "Uint8Array": case "Uint8ClampedArray": return true; } return false; } function getIterationTypeOfIterable(use, typeKind, inputType, errorNode) { if (isTypeAny(inputType)) { return; } const iterationTypes = getIterationTypesOfIterable(inputType, use, errorNode); return iterationTypes && iterationTypes[getIterationTypesKeyFromIterationTypeKind(typeKind)]; } function createIterationTypes(yieldType = neverType, returnType = neverType, nextType = unknownType) { if (yieldType.flags & 402431 && returnType.flags & (1 | 262144 | 2 | 16 | 4) && nextType.flags & (1 | 262144 | 2 | 16 | 4)) { const id = getTypeListId([yieldType, returnType, nextType]); let iterationTypes = iterationTypesCache.get(id); if (!iterationTypes) { iterationTypes = { yieldType, returnType, nextType }; iterationTypesCache.set(id, iterationTypes); } return iterationTypes; } return { yieldType, returnType, nextType }; } function combineIterationTypes(array) { let yieldTypes; let returnTypes; let nextTypes; for (const iterationTypes of array) { if (iterationTypes === undefined || iterationTypes === noIterationTypes) { continue; } if (iterationTypes === anyIterationTypes) { return anyIterationTypes; } yieldTypes = append(yieldTypes, iterationTypes.yieldType); returnTypes = append(returnTypes, iterationTypes.returnType); nextTypes = append(nextTypes, iterationTypes.nextType); } if (yieldTypes || returnTypes || nextTypes) { return createIterationTypes(yieldTypes && getUnionType(yieldTypes), returnTypes && getUnionType(returnTypes), nextTypes && getIntersectionType(nextTypes)); } return noIterationTypes; } function getCachedIterationTypes(type, cacheKey) { return type[cacheKey]; } function setCachedIterationTypes(type, cacheKey, cachedTypes2) { return type[cacheKey] = cachedTypes2; } function getIterationTypesOfIterable(type, use, errorNode) { var _a, _b; type = getReducedType(type); if (isTypeAny(type)) { return anyIterationTypes; } if (!(type.flags & 134217728)) { const errorOutputContainer = errorNode ? { errors: undefined, skipLogging: true } : undefined; const iterationTypes2 = getIterationTypesOfIterableWorker(type, use, errorNode, errorOutputContainer); if (iterationTypes2 === noIterationTypes) { if (errorNode) { const rootDiag = reportTypeNotIterableError(errorNode, type, !!(use & 2)); if (errorOutputContainer == null ? undefined : errorOutputContainer.errors) { addRelatedInfo(rootDiag, ...errorOutputContainer.errors); } } return; } else if ((_a = errorOutputContainer == null ? undefined : errorOutputContainer.errors) == null ? undefined : _a.length) { for (const diag2 of errorOutputContainer.errors) { diagnostics.add(diag2); } } return iterationTypes2; } const cacheKey = use & 2 ? "iterationTypesOfAsyncIterable" : "iterationTypesOfIterable"; const cachedTypes2 = getCachedIterationTypes(type, cacheKey); if (cachedTypes2) return cachedTypes2 === noIterationTypes ? undefined : cachedTypes2; let allIterationTypes; for (const constituent of type.types) { const errorOutputContainer = errorNode ? { errors: undefined } : undefined; const iterationTypes2 = getIterationTypesOfIterableWorker(constituent, use, errorNode, errorOutputContainer); if (iterationTypes2 === noIterationTypes) { if (errorNode) { const rootDiag = reportTypeNotIterableError(errorNode, type, !!(use & 2)); if (errorOutputContainer == null ? undefined : errorOutputContainer.errors) { addRelatedInfo(rootDiag, ...errorOutputContainer.errors); } } setCachedIterationTypes(type, cacheKey, noIterationTypes); return; } else if ((_b = errorOutputContainer == null ? undefined : errorOutputContainer.errors) == null ? undefined : _b.length) { for (const diag2 of errorOutputContainer.errors) { diagnostics.add(diag2); } } allIterationTypes = append(allIterationTypes, iterationTypes2); } const iterationTypes = allIterationTypes ? combineIterationTypes(allIterationTypes) : noIterationTypes; setCachedIterationTypes(type, cacheKey, iterationTypes); return iterationTypes === noIterationTypes ? undefined : iterationTypes; } function getAsyncFromSyncIterationTypes(iterationTypes, errorNode) { if (iterationTypes === noIterationTypes) return noIterationTypes; if (iterationTypes === anyIterationTypes) return anyIterationTypes; const { yieldType, returnType, nextType } = iterationTypes; if (errorNode) { getGlobalAwaitedSymbol(true); } return createIterationTypes(getAwaitedType(yieldType, errorNode) || anyType, getAwaitedType(returnType, errorNode) || anyType, nextType); } function getIterationTypesOfIterableWorker(type, use, errorNode, errorOutputContainer) { if (isTypeAny(type)) { return anyIterationTypes; } let noCache = false; if (use & 2) { let iterationTypes = getIterationTypesOfIterableCached(type, asyncIterationTypesResolver) || getIterationTypesOfIterableFast(type, asyncIterationTypesResolver); if (iterationTypes) { if (iterationTypes === noIterationTypes && errorNode) { noCache = true; } else { return use & 8 ? getAsyncFromSyncIterationTypes(iterationTypes, errorNode) : iterationTypes; } } iterationTypes = getIterationTypesOfIterableSlow(type, asyncIterationTypesResolver, errorNode, errorOutputContainer, noCache); if (iterationTypes !== noIterationTypes) { return iterationTypes; } } if (use & 1) { let iterationTypes = getIterationTypesOfIterableCached(type, syncIterationTypesResolver) || getIterationTypesOfIterableFast(type, syncIterationTypesResolver); if (iterationTypes) { if (iterationTypes === noIterationTypes && errorNode) { noCache = true; } else { if (use & 2) { if (iterationTypes !== noIterationTypes) { iterationTypes = getAsyncFromSyncIterationTypes(iterationTypes, errorNode); return noCache ? iterationTypes : setCachedIterationTypes(type, "iterationTypesOfAsyncIterable", iterationTypes); } } else { return iterationTypes; } } } iterationTypes = getIterationTypesOfIterableSlow(type, syncIterationTypesResolver, errorNode, errorOutputContainer, noCache); if (iterationTypes !== noIterationTypes) { if (use & 2) { iterationTypes = getAsyncFromSyncIterationTypes(iterationTypes, errorNode); return noCache ? iterationTypes : setCachedIterationTypes(type, "iterationTypesOfAsyncIterable", iterationTypes); } else { return iterationTypes; } } } return noIterationTypes; } function getIterationTypesOfIterableCached(type, resolver) { return getCachedIterationTypes(type, resolver.iterableCacheKey); } function getIterationTypesOfIterableFast(type, resolver) { if (isReferenceToType2(type, resolver.getGlobalIterableType(false)) || isReferenceToType2(type, resolver.getGlobalIteratorObjectType(false)) || isReferenceToType2(type, resolver.getGlobalIterableIteratorType(false)) || isReferenceToType2(type, resolver.getGlobalGeneratorType(false))) { const [yieldType, returnType, nextType] = getTypeArguments(type); return setCachedIterationTypes(type, resolver.iterableCacheKey, createIterationTypes(resolver.resolveIterationType(yieldType, undefined) || yieldType, resolver.resolveIterationType(returnType, undefined) || returnType, nextType)); } if (isReferenceToSomeType(type, resolver.getGlobalBuiltinIteratorTypes())) { const [yieldType] = getTypeArguments(type); const returnType = getBuiltinIteratorReturnType(); const nextType = unknownType; return setCachedIterationTypes(type, resolver.iterableCacheKey, createIterationTypes(resolver.resolveIterationType(yieldType, undefined) || yieldType, resolver.resolveIterationType(returnType, undefined) || returnType, nextType)); } } function getPropertyNameForKnownSymbolName(symbolName2) { const ctorType = getGlobalESSymbolConstructorSymbol(false); const uniqueType = ctorType && getTypeOfPropertyOfType(getTypeOfSymbol(ctorType), escapeLeadingUnderscores(symbolName2)); return uniqueType && isTypeUsableAsPropertyName(uniqueType) ? getPropertyNameFromType(uniqueType) : `__@${symbolName2}`; } function getIterationTypesOfIterableSlow(type, resolver, errorNode, errorOutputContainer, noCache) { const method = getPropertyOfType(type, getPropertyNameForKnownSymbolName(resolver.iteratorSymbolName)); const methodType = method && !(method.flags & 16777216) ? getTypeOfSymbol(method) : undefined; if (isTypeAny(methodType)) { return noCache ? anyIterationTypes : setCachedIterationTypes(type, resolver.iterableCacheKey, anyIterationTypes); } const allSignatures = methodType ? getSignaturesOfType(methodType, 0) : undefined; const validSignatures = filter(allSignatures, (sig) => getMinArgumentCount(sig) === 0); if (!some(validSignatures)) { if (errorNode && some(allSignatures)) { checkTypeAssignableTo(type, resolver.getGlobalIterableType(true), errorNode, undefined, undefined, errorOutputContainer); } return noCache ? noIterationTypes : setCachedIterationTypes(type, resolver.iterableCacheKey, noIterationTypes); } const iteratorType = getIntersectionType(map(validSignatures, getReturnTypeOfSignature)); const iterationTypes = getIterationTypesOfIteratorWorker(iteratorType, resolver, errorNode, errorOutputContainer, noCache) ?? noIterationTypes; return noCache ? iterationTypes : setCachedIterationTypes(type, resolver.iterableCacheKey, iterationTypes); } function reportTypeNotIterableError(errorNode, type, allowAsyncIterables) { const message = allowAsyncIterables ? Diagnostics.Type_0_must_have_a_Symbol_asyncIterator_method_that_returns_an_async_iterator : Diagnostics.Type_0_must_have_a_Symbol_iterator_method_that_returns_an_iterator; const suggestAwait = !!getAwaitedTypeOfPromise(type) || !allowAsyncIterables && isForOfStatement(errorNode.parent) && errorNode.parent.expression === errorNode && getGlobalAsyncIterableType(false) !== emptyGenericType && isTypeAssignableTo(type, createTypeFromGenericGlobalType(getGlobalAsyncIterableType(false), [anyType, anyType, anyType])); return errorAndMaybeSuggestAwait(errorNode, suggestAwait, message, typeToString(type)); } function getIterationTypesOfIterator(type, resolver, errorNode, errorOutputContainer) { return getIterationTypesOfIteratorWorker(type, resolver, errorNode, errorOutputContainer, false); } function getIterationTypesOfIteratorWorker(type, resolver, errorNode, errorOutputContainer, noCache) { if (isTypeAny(type)) { return anyIterationTypes; } let iterationTypes = getIterationTypesOfIteratorCached(type, resolver) || getIterationTypesOfIteratorFast(type, resolver); if (iterationTypes === noIterationTypes && errorNode) { iterationTypes = undefined; noCache = true; } iterationTypes ?? (iterationTypes = getIterationTypesOfIteratorSlow(type, resolver, errorNode, errorOutputContainer, noCache)); return iterationTypes === noIterationTypes ? undefined : iterationTypes; } function getIterationTypesOfIteratorCached(type, resolver) { return getCachedIterationTypes(type, resolver.iteratorCacheKey); } function getIterationTypesOfIteratorFast(type, resolver) { if (isReferenceToType2(type, resolver.getGlobalIterableIteratorType(false)) || isReferenceToType2(type, resolver.getGlobalIteratorType(false)) || isReferenceToType2(type, resolver.getGlobalIteratorObjectType(false)) || isReferenceToType2(type, resolver.getGlobalGeneratorType(false))) { const [yieldType, returnType, nextType] = getTypeArguments(type); return setCachedIterationTypes(type, resolver.iteratorCacheKey, createIterationTypes(yieldType, returnType, nextType)); } if (isReferenceToSomeType(type, resolver.getGlobalBuiltinIteratorTypes())) { const [yieldType] = getTypeArguments(type); const returnType = getBuiltinIteratorReturnType(); const nextType = unknownType; return setCachedIterationTypes(type, resolver.iteratorCacheKey, createIterationTypes(yieldType, returnType, nextType)); } } function isIteratorResult(type, kind) { const doneType = getTypeOfPropertyOfType(type, "done") || falseType; return isTypeAssignableTo(kind === 0 ? falseType : trueType, doneType); } function isYieldIteratorResult(type) { return isIteratorResult(type, 0); } function isReturnIteratorResult(type) { return isIteratorResult(type, 1); } function getIterationTypesOfIteratorResult(type) { if (isTypeAny(type)) { return anyIterationTypes; } const cachedTypes2 = getCachedIterationTypes(type, "iterationTypesOfIteratorResult"); if (cachedTypes2) { return cachedTypes2; } if (isReferenceToType2(type, getGlobalIteratorYieldResultType(false))) { const yieldType2 = getTypeArguments(type)[0]; return setCachedIterationTypes(type, "iterationTypesOfIteratorResult", createIterationTypes(yieldType2, undefined, undefined)); } if (isReferenceToType2(type, getGlobalIteratorReturnResultType(false))) { const returnType2 = getTypeArguments(type)[0]; return setCachedIterationTypes(type, "iterationTypesOfIteratorResult", createIterationTypes(undefined, returnType2, undefined)); } const yieldIteratorResult = filterType(type, isYieldIteratorResult); const yieldType = yieldIteratorResult !== neverType ? getTypeOfPropertyOfType(yieldIteratorResult, "value") : undefined; const returnIteratorResult = filterType(type, isReturnIteratorResult); const returnType = returnIteratorResult !== neverType ? getTypeOfPropertyOfType(returnIteratorResult, "value") : undefined; if (!yieldType && !returnType) { return setCachedIterationTypes(type, "iterationTypesOfIteratorResult", noIterationTypes); } return setCachedIterationTypes(type, "iterationTypesOfIteratorResult", createIterationTypes(yieldType, returnType || voidType, undefined)); } function getIterationTypesOfMethod(type, resolver, methodName, errorNode, errorOutputContainer) { var _a, _b, _c, _d; const method = getPropertyOfType(type, methodName); if (!method && methodName !== "next") { return; } const methodType = method && !(methodName === "next" && method.flags & 16777216) ? methodName === "next" ? getTypeOfSymbol(method) : getTypeWithFacts(getTypeOfSymbol(method), 2097152) : undefined; if (isTypeAny(methodType)) { return anyIterationTypes; } const methodSignatures = methodType ? getSignaturesOfType(methodType, 0) : emptyArray; if (methodSignatures.length === 0) { if (errorNode) { const diagnostic = methodName === "next" ? resolver.mustHaveANextMethodDiagnostic : resolver.mustBeAMethodDiagnostic; if (errorOutputContainer) { errorOutputContainer.errors ?? (errorOutputContainer.errors = []); errorOutputContainer.errors.push(createDiagnosticForNode(errorNode, diagnostic, methodName)); } else { error2(errorNode, diagnostic, methodName); } } return methodName === "next" ? noIterationTypes : undefined; } if ((methodType == null ? undefined : methodType.symbol) && methodSignatures.length === 1) { const globalGeneratorType = resolver.getGlobalGeneratorType(false); const globalIteratorType = resolver.getGlobalIteratorType(false); const isGeneratorMethod = ((_b = (_a = globalGeneratorType.symbol) == null ? undefined : _a.members) == null ? undefined : _b.get(methodName)) === methodType.symbol; const isIteratorMethod = !isGeneratorMethod && ((_d = (_c = globalIteratorType.symbol) == null ? undefined : _c.members) == null ? undefined : _d.get(methodName)) === methodType.symbol; if (isGeneratorMethod || isIteratorMethod) { const globalType = isGeneratorMethod ? globalGeneratorType : globalIteratorType; const { mapper } = methodType; return createIterationTypes(getMappedType(globalType.typeParameters[0], mapper), getMappedType(globalType.typeParameters[1], mapper), methodName === "next" ? getMappedType(globalType.typeParameters[2], mapper) : undefined); } } let methodParameterTypes; let methodReturnTypes; for (const signature of methodSignatures) { if (methodName !== "throw" && some(signature.parameters)) { methodParameterTypes = append(methodParameterTypes, getTypeAtPosition(signature, 0)); } methodReturnTypes = append(methodReturnTypes, getReturnTypeOfSignature(signature)); } let returnTypes; let nextType; if (methodName !== "throw") { const methodParameterType = methodParameterTypes ? getUnionType(methodParameterTypes) : unknownType; if (methodName === "next") { nextType = methodParameterType; } else if (methodName === "return") { const resolvedMethodParameterType = resolver.resolveIterationType(methodParameterType, errorNode) || anyType; returnTypes = append(returnTypes, resolvedMethodParameterType); } } let yieldType; const methodReturnType = methodReturnTypes ? getIntersectionType(methodReturnTypes) : neverType; const resolvedMethodReturnType = resolver.resolveIterationType(methodReturnType, errorNode) || anyType; const iterationTypes = getIterationTypesOfIteratorResult(resolvedMethodReturnType); if (iterationTypes === noIterationTypes) { if (errorNode) { if (errorOutputContainer) { errorOutputContainer.errors ?? (errorOutputContainer.errors = []); errorOutputContainer.errors.push(createDiagnosticForNode(errorNode, resolver.mustHaveAValueDiagnostic, methodName)); } else { error2(errorNode, resolver.mustHaveAValueDiagnostic, methodName); } } yieldType = anyType; returnTypes = append(returnTypes, anyType); } else { yieldType = iterationTypes.yieldType; returnTypes = append(returnTypes, iterationTypes.returnType); } return createIterationTypes(yieldType, getUnionType(returnTypes), nextType); } function getIterationTypesOfIteratorSlow(type, resolver, errorNode, errorOutputContainer, noCache) { const iterationTypes = combineIterationTypes([ getIterationTypesOfMethod(type, resolver, "next", errorNode, errorOutputContainer), getIterationTypesOfMethod(type, resolver, "return", errorNode, errorOutputContainer), getIterationTypesOfMethod(type, resolver, "throw", errorNode, errorOutputContainer) ]); return noCache ? iterationTypes : setCachedIterationTypes(type, resolver.iteratorCacheKey, iterationTypes); } function getIterationTypeOfGeneratorFunctionReturnType(kind, returnType, isAsyncGenerator) { if (isTypeAny(returnType)) { return; } const iterationTypes = getIterationTypesOfGeneratorFunctionReturnType(returnType, isAsyncGenerator); return iterationTypes && iterationTypes[getIterationTypesKeyFromIterationTypeKind(kind)]; } function getIterationTypesOfGeneratorFunctionReturnType(type, isAsyncGenerator) { if (isTypeAny(type)) { return anyIterationTypes; } const use = isAsyncGenerator ? 2 : 1; const resolver = isAsyncGenerator ? asyncIterationTypesResolver : syncIterationTypesResolver; return getIterationTypesOfIterable(type, use, undefined) || getIterationTypesOfIterator(type, resolver, undefined, undefined); } function checkBreakOrContinueStatement(node) { if (!checkGrammarStatementInAmbientContext(node)) checkGrammarBreakOrContinueStatement(node); } function unwrapReturnType(returnType, functionFlags) { const isGenerator = !!(functionFlags & 1); const isAsync = !!(functionFlags & 2); if (isGenerator) { const returnIterationType = getIterationTypeOfGeneratorFunctionReturnType(1, returnType, isAsync); if (!returnIterationType) { return errorType; } return isAsync ? getAwaitedTypeNoAlias(unwrapAwaitedType(returnIterationType)) : returnIterationType; } return isAsync ? getAwaitedTypeNoAlias(returnType) || errorType : returnType; } function isUnwrappedReturnTypeUndefinedVoidOrAny(func, returnType) { const type = unwrapReturnType(returnType, getFunctionFlags(func)); return !!(type && (maybeTypeOfKind(type, 16) || type.flags & (1 | 4))); } function checkReturnStatement(node) { if (checkGrammarStatementInAmbientContext(node)) { return; } const container = getContainingFunctionOrClassStaticBlock(node); if (container && isClassStaticBlockDeclaration(container)) { grammarErrorOnFirstToken(node, Diagnostics.A_return_statement_cannot_be_used_inside_a_class_static_block); return; } if (!container) { grammarErrorOnFirstToken(node, Diagnostics.A_return_statement_can_only_be_used_within_a_function_body); return; } const signature = getSignatureFromDeclaration(container); const returnType = getReturnTypeOfSignature(signature); if (strictNullChecks || node.expression || returnType.flags & 262144) { const exprType = node.expression ? checkExpressionCached(node.expression) : undefinedType; if (container.kind === 179) { if (node.expression) { error2(node, Diagnostics.Setters_cannot_return_a_value); } } else if (container.kind === 177) { const exprType2 = node.expression ? checkExpressionCached(node.expression) : undefinedType; if (node.expression && !checkTypeAssignableToAndOptionallyElaborate(exprType2, returnType, node, node.expression)) { error2(node, Diagnostics.Return_type_of_constructor_signature_must_be_assignable_to_the_instance_type_of_the_class); } } else if (getReturnTypeFromAnnotation(container)) { const unwrappedReturnType = unwrapReturnType(returnType, getFunctionFlags(container)) ?? returnType; checkReturnExpression(container, unwrappedReturnType, node, node.expression, exprType); } } else if (container.kind !== 177 && compilerOptions.noImplicitReturns && !isUnwrappedReturnTypeUndefinedVoidOrAny(container, returnType)) { error2(node, Diagnostics.Not_all_code_paths_return_a_value); } } function checkReturnExpression(container, unwrappedReturnType, node, expr, exprType, inConditionalExpression = false) { const excludeJSDocTypeAssertions = isInJSFile(node); const functionFlags = getFunctionFlags(container); if (expr) { const unwrappedExpr = skipParentheses(expr, excludeJSDocTypeAssertions); if (isConditionalExpression(unwrappedExpr)) { checkReturnExpression(container, unwrappedReturnType, node, unwrappedExpr.whenTrue, checkExpression(unwrappedExpr.whenTrue), true); checkReturnExpression(container, unwrappedReturnType, node, unwrappedExpr.whenFalse, checkExpression(unwrappedExpr.whenFalse), true); return; } } const inReturnStatement = node.kind === 254; const unwrappedExprType = functionFlags & 2 ? checkAwaitedType(exprType, false, node, Diagnostics.The_return_type_of_an_async_function_must_either_be_a_valid_promise_or_must_not_contain_a_callable_then_member) : exprType; const effectiveExpr = expr && getEffectiveCheckNode(expr); const errorNode = inReturnStatement && !inConditionalExpression ? node : effectiveExpr; checkTypeAssignableToAndOptionallyElaborate(unwrappedExprType, unwrappedReturnType, errorNode, effectiveExpr); } function checkWithStatement(node) { if (!checkGrammarStatementInAmbientContext(node)) { if (node.flags & 65536) { grammarErrorOnFirstToken(node, Diagnostics.with_statements_are_not_allowed_in_an_async_function_block); } } checkExpression(node.expression); const sourceFile = getSourceFileOfNode(node); if (!hasParseDiagnostics(sourceFile)) { const start = getSpanOfTokenAtPosition(sourceFile, node.pos).start; const end = node.statement.pos; grammarErrorAtPos(sourceFile, start, end - start, Diagnostics.The_with_statement_is_not_supported_All_symbols_in_a_with_block_will_have_type_any); } } function checkSwitchStatement(node) { checkGrammarStatementInAmbientContext(node); let firstDefaultClause; let hasDuplicateDefaultClause = false; const expressionType = checkExpression(node.expression); forEach(node.caseBlock.clauses, (clause) => { if (clause.kind === 298 && !hasDuplicateDefaultClause) { if (firstDefaultClause === undefined) { firstDefaultClause = clause; } else { grammarErrorOnNode(clause, Diagnostics.A_default_clause_cannot_appear_more_than_once_in_a_switch_statement); hasDuplicateDefaultClause = true; } } if (clause.kind === 297) { addLazyDiagnostic(createLazyCaseClauseDiagnostics(clause)); } forEach(clause.statements, checkSourceElement); if (compilerOptions.noFallthroughCasesInSwitch && clause.fallthroughFlowNode && isReachableFlowNode(clause.fallthroughFlowNode)) { error2(clause, Diagnostics.Fallthrough_case_in_switch); } function createLazyCaseClauseDiagnostics(clause2) { return () => { const caseType = checkExpression(clause2.expression); if (!isTypeEqualityComparableTo(expressionType, caseType)) { checkTypeComparableTo(caseType, expressionType, clause2.expression, undefined); } }; } }); if (node.caseBlock.locals) { registerForUnusedIdentifiersCheck(node.caseBlock); } } function checkLabeledStatement(node) { if (!checkGrammarStatementInAmbientContext(node)) { findAncestor(node.parent, (current) => { if (isFunctionLike(current)) { return "quit"; } if (current.kind === 257 && current.label.escapedText === node.label.escapedText) { grammarErrorOnNode(node.label, Diagnostics.Duplicate_label_0, getTextOfNode(node.label)); return true; } return false; }); } if (node.label.flags & 1073741824 && compilerOptions.allowUnusedLabels !== true) { errorOrSuggestion(compilerOptions.allowUnusedLabels === false, node.label, Diagnostics.Unused_label); } checkSourceElement(node.statement); } function checkThrowStatement(node) { if (!checkGrammarStatementInAmbientContext(node)) { if (isIdentifier(node.expression) && !node.expression.escapedText) { grammarErrorAfterFirstToken(node, Diagnostics.Line_break_not_permitted_here); } } if (node.expression) { checkExpression(node.expression); } } function checkTryStatement(node) { checkGrammarStatementInAmbientContext(node); checkBlock(node.tryBlock); const catchClause = node.catchClause; if (catchClause) { if (catchClause.variableDeclaration) { const declaration = catchClause.variableDeclaration; checkVariableLikeDeclaration(declaration); const typeNode = getEffectiveTypeAnnotationNode(declaration); if (typeNode) { const type = getTypeFromTypeNode(typeNode); if (type && !(type.flags & 3)) { grammarErrorOnFirstToken(typeNode, Diagnostics.Catch_clause_variable_type_annotation_must_be_any_or_unknown_if_specified); } } else if (declaration.initializer) { grammarErrorOnFirstToken(declaration.initializer, Diagnostics.Catch_clause_variable_cannot_have_an_initializer); } else { const blockLocals = catchClause.block.locals; if (blockLocals) { forEachKey(catchClause.locals, (caughtName) => { const blockLocal = blockLocals.get(caughtName); if ((blockLocal == null ? undefined : blockLocal.valueDeclaration) && (blockLocal.flags & 2) !== 0) { grammarErrorOnNode(blockLocal.valueDeclaration, Diagnostics.Cannot_redeclare_identifier_0_in_catch_clause, unescapeLeadingUnderscores(caughtName)); } }); } } } checkBlock(catchClause.block); } if (node.finallyBlock) { checkBlock(node.finallyBlock); } } function checkIndexConstraints(type, symbol, isStaticIndex) { const indexInfos = getIndexInfosOfType(type); if (indexInfos.length === 0) { return; } for (const prop of getPropertiesOfObjectType(type)) { if (!(isStaticIndex && prop.flags & 4194304)) { checkIndexConstraintForProperty(type, prop, getLiteralTypeFromProperty(prop, 19456, true), getNonMissingTypeOfSymbol(prop)); } } const typeDeclaration = symbol.valueDeclaration; if (typeDeclaration && isClassLike(typeDeclaration)) { for (const member of typeDeclaration.members) { if ((!isStaticIndex && !isStatic(member) || isStaticIndex && isStatic(member)) && !hasBindableName(member)) { const symbol2 = getSymbolOfDeclaration(member); checkIndexConstraintForProperty(type, symbol2, getTypeOfExpression(member.name.expression), getNonMissingTypeOfSymbol(symbol2)); } } } if (indexInfos.length > 1) { for (const info of indexInfos) { checkIndexConstraintForIndexSignature(type, info); } } } function checkIndexConstraintForProperty(type, prop, propNameType, propType) { const declaration = prop.valueDeclaration; const name = getNameOfDeclaration(declaration); if (name && isPrivateIdentifier(name)) { return; } const indexInfos = getApplicableIndexInfos(type, propNameType); const interfaceDeclaration = getObjectFlags(type) & 2 ? getDeclarationOfKind(type.symbol, 265) : undefined; const propDeclaration = declaration && declaration.kind === 227 || name && name.kind === 168 ? declaration : undefined; const localPropDeclaration = getParentOfSymbol(prop) === type.symbol ? declaration : undefined; for (const info of indexInfos) { const localIndexDeclaration = info.declaration && getParentOfSymbol(getSymbolOfDeclaration(info.declaration)) === type.symbol ? info.declaration : undefined; const errorNode = localPropDeclaration || localIndexDeclaration || (interfaceDeclaration && !some(getBaseTypes(type), (base) => !!getPropertyOfObjectType(base, prop.escapedName) && !!getIndexTypeOfType(base, info.keyType)) ? interfaceDeclaration : undefined); if (errorNode && !isTypeAssignableTo(propType, info.type)) { const diagnostic = createError(errorNode, Diagnostics.Property_0_of_type_1_is_not_assignable_to_2_index_type_3, symbolToString(prop), typeToString(propType), typeToString(info.keyType), typeToString(info.type)); if (propDeclaration && errorNode !== propDeclaration) { addRelatedInfo(diagnostic, createDiagnosticForNode(propDeclaration, Diagnostics._0_is_declared_here, symbolToString(prop))); } diagnostics.add(diagnostic); } } } function checkIndexConstraintForIndexSignature(type, checkInfo) { const declaration = checkInfo.declaration; const indexInfos = getApplicableIndexInfos(type, checkInfo.keyType); const interfaceDeclaration = getObjectFlags(type) & 2 ? getDeclarationOfKind(type.symbol, 265) : undefined; const localCheckDeclaration = declaration && getParentOfSymbol(getSymbolOfDeclaration(declaration)) === type.symbol ? declaration : undefined; for (const info of indexInfos) { if (info === checkInfo) continue; const localIndexDeclaration = info.declaration && getParentOfSymbol(getSymbolOfDeclaration(info.declaration)) === type.symbol ? info.declaration : undefined; const errorNode = localCheckDeclaration || localIndexDeclaration || (interfaceDeclaration && !some(getBaseTypes(type), (base) => !!getIndexInfoOfType(base, checkInfo.keyType) && !!getIndexTypeOfType(base, info.keyType)) ? interfaceDeclaration : undefined); if (errorNode && !isTypeAssignableTo(checkInfo.type, info.type)) { error2(errorNode, Diagnostics._0_index_type_1_is_not_assignable_to_2_index_type_3, typeToString(checkInfo.keyType), typeToString(checkInfo.type), typeToString(info.keyType), typeToString(info.type)); } } } function checkTypeNameIsReserved(name, message) { switch (name.escapedText) { case "any": case "unknown": case "never": case "number": case "bigint": case "boolean": case "string": case "symbol": case "void": case "object": case "undefined": error2(name, message, name.escapedText); } } function checkClassNameCollisionWithObject(name) { if (name.escapedText === "Object" && host.getEmitModuleFormatOfFile(getSourceFileOfNode(name)) < 5) { error2(name, Diagnostics.Class_name_cannot_be_Object_when_targeting_ES5_and_above_with_module_0, ModuleKind[moduleKind]); } } function checkUnmatchedJSDocParameters(node) { const jsdocParameters = filter(getJSDocTags(node), isJSDocParameterTag); if (!length(jsdocParameters)) return; const isJs = isInJSFile(node); const parameters = /* @__PURE__ */ new Set; const excludedParameters = /* @__PURE__ */ new Set; forEach(node.parameters, ({ name }, index) => { if (isIdentifier(name)) { parameters.add(name.escapedText); } if (isBindingPattern(name)) { excludedParameters.add(index); } }); const containsArguments = containsArgumentsReference(node); if (containsArguments) { const lastJSDocParamIndex = jsdocParameters.length - 1; const lastJSDocParam = jsdocParameters[lastJSDocParamIndex]; if (isJs && lastJSDocParam && isIdentifier(lastJSDocParam.name) && lastJSDocParam.typeExpression && lastJSDocParam.typeExpression.type && !parameters.has(lastJSDocParam.name.escapedText) && !excludedParameters.has(lastJSDocParamIndex) && !isArrayType(getTypeFromTypeNode(lastJSDocParam.typeExpression.type))) { error2(lastJSDocParam.name, Diagnostics.JSDoc_param_tag_has_name_0_but_there_is_no_parameter_with_that_name_It_would_match_arguments_if_it_had_an_array_type, idText(lastJSDocParam.name)); } } else { forEach(jsdocParameters, ({ name, isNameFirst }, index) => { if (excludedParameters.has(index) || isIdentifier(name) && parameters.has(name.escapedText)) { return; } if (isQualifiedName(name)) { if (isJs) { error2(name, Diagnostics.Qualified_name_0_is_not_allowed_without_a_leading_param_object_1, entityNameToString(name), entityNameToString(name.left)); } } else { if (!isNameFirst) { errorOrSuggestion(isJs, name, Diagnostics.JSDoc_param_tag_has_name_0_but_there_is_no_parameter_with_that_name, idText(name)); } } }); } } function checkTypeParameters(typeParameterDeclarations) { let seenDefault = false; if (typeParameterDeclarations) { for (let i = 0;i < typeParameterDeclarations.length; i++) { const node = typeParameterDeclarations[i]; checkTypeParameter(node); addLazyDiagnostic(createCheckTypeParameterDiagnostic(node, i)); } } function createCheckTypeParameterDiagnostic(node, i) { return () => { if (node.default) { seenDefault = true; checkTypeParametersNotReferenced(node.default, typeParameterDeclarations, i); } else if (seenDefault) { error2(node, Diagnostics.Required_type_parameters_may_not_follow_optional_type_parameters); } for (let j = 0;j < i; j++) { if (typeParameterDeclarations[j].symbol === node.symbol) { error2(node.name, Diagnostics.Duplicate_identifier_0, declarationNameToString(node.name)); } } }; } } function checkTypeParametersNotReferenced(root, typeParameters, index) { visit(root); function visit(node) { if (node.kind === 184) { const type = getTypeFromTypeReference(node); if (type.flags & 524288) { for (let i = index;i < typeParameters.length; i++) { if (type.symbol === getSymbolOfDeclaration(typeParameters[i])) { error2(node, Diagnostics.Type_parameter_defaults_can_only_reference_previously_declared_type_parameters); } } } } forEachChild(node, visit); } } function checkTypeParameterListsIdentical(symbol) { if (symbol.declarations && symbol.declarations.length === 1) { return; } const links = getSymbolLinks(symbol); if (!links.typeParametersChecked) { links.typeParametersChecked = true; const declarations = getClassOrInterfaceDeclarationsOfSymbol(symbol); if (!declarations || declarations.length <= 1) { return; } const type = getDeclaredTypeOfSymbol(symbol); if (!areTypeParametersIdentical(declarations, type.localTypeParameters, getEffectiveTypeParameterDeclarations)) { const name = symbolToString(symbol); for (const declaration of declarations) { error2(declaration.name, Diagnostics.All_declarations_of_0_must_have_identical_type_parameters, name); } } } } function areTypeParametersIdentical(declarations, targetParameters, getTypeParameterDeclarations) { const maxTypeArgumentCount = length(targetParameters); const minTypeArgumentCount = getMinTypeArgumentCount(targetParameters); for (const declaration of declarations) { const sourceParameters = getTypeParameterDeclarations(declaration); const numTypeParameters = sourceParameters.length; if (numTypeParameters < minTypeArgumentCount || numTypeParameters > maxTypeArgumentCount) { return false; } for (let i = 0;i < numTypeParameters; i++) { const source = sourceParameters[i]; const target = targetParameters[i]; if (source.name.escapedText !== target.symbol.escapedName) { return false; } const constraint = getEffectiveConstraintOfTypeParameter(source); const sourceConstraint = constraint && getTypeFromTypeNode(constraint); const targetConstraint = getConstraintOfTypeParameter(target); if (sourceConstraint && targetConstraint && !isTypeIdenticalTo(sourceConstraint, targetConstraint)) { return false; } const sourceDefault = source.default && getTypeFromTypeNode(source.default); const targetDefault = getDefaultFromTypeParameter(target); if (sourceDefault && targetDefault && !isTypeIdenticalTo(sourceDefault, targetDefault)) { return false; } } } return true; } function getFirstTransformableStaticClassElement(node) { const willTransformStaticElementsOfDecoratedClass = !legacyDecorators && languageVersion < LanguageFeatureMinimumTarget.ClassAndClassElementDecorators && classOrConstructorParameterIsDecorated(false, node); const willTransformPrivateElementsOrClassStaticBlocks = languageVersion < LanguageFeatureMinimumTarget.PrivateNamesAndClassStaticBlocks || languageVersion < LanguageFeatureMinimumTarget.ClassAndClassElementDecorators; const willTransformInitializers = !emitStandardClassFields; if (willTransformStaticElementsOfDecoratedClass || willTransformPrivateElementsOrClassStaticBlocks) { for (const member of node.members) { if (willTransformStaticElementsOfDecoratedClass && classElementOrClassElementParameterIsDecorated(false, member, node)) { return firstOrUndefined(getDecorators(node)) ?? node; } else if (willTransformPrivateElementsOrClassStaticBlocks) { if (isClassStaticBlockDeclaration(member)) { return member; } else if (isStatic(member)) { if (isPrivateIdentifierClassElementDeclaration(member) || willTransformInitializers && isInitializedProperty(member)) { return member; } } } } } } function checkClassExpressionExternalHelpers(node) { if (node.name) return; const parent2 = walkUpOuterExpressions(node); if (!isNamedEvaluationSource(parent2)) return; const willTransformESDecorators = !legacyDecorators && languageVersion < LanguageFeatureMinimumTarget.ClassAndClassElementDecorators; let location; if (willTransformESDecorators && classOrConstructorParameterIsDecorated(false, node)) { location = firstOrUndefined(getDecorators(node)) ?? node; } else { location = getFirstTransformableStaticClassElement(node); } if (location) { checkExternalEmitHelpers(location, 4194304); if ((isPropertyAssignment(parent2) || isPropertyDeclaration(parent2) || isBindingElement(parent2)) && isComputedPropertyName(parent2.name)) { checkExternalEmitHelpers(location, 8388608); } } } function checkClassExpression(node) { checkClassLikeDeclaration(node); checkNodeDeferred(node); checkClassExpressionExternalHelpers(node); return getTypeOfSymbol(getSymbolOfDeclaration(node)); } function checkClassExpressionDeferred(node) { forEach(node.members, checkSourceElement); registerForUnusedIdentifiersCheck(node); } function checkClassDeclaration(node) { const firstDecorator = find(node.modifiers, isDecorator); if (legacyDecorators && firstDecorator && some(node.members, (p) => hasStaticModifier(p) && isPrivateIdentifierClassElementDeclaration(p))) { grammarErrorOnNode(firstDecorator, Diagnostics.Class_decorators_can_t_be_used_with_static_private_identifier_Consider_removing_the_experimental_decorator); } if (!node.name && !hasSyntacticModifier(node, 2048)) { grammarErrorOnFirstToken(node, Diagnostics.A_class_declaration_without_the_default_modifier_must_have_a_name); } checkClassLikeDeclaration(node); forEach(node.members, checkSourceElement); registerForUnusedIdentifiersCheck(node); } function checkClassLikeDeclaration(node) { checkGrammarClassLikeDeclaration(node); checkDecorators(node); checkCollisionsForDeclarationName(node, node.name); checkTypeParameters(getEffectiveTypeParameterDeclarations(node)); checkExportsOnMergedDeclarations(node); const symbol = getSymbolOfDeclaration(node); const type = getDeclaredTypeOfSymbol(symbol); const typeWithThis = getTypeWithThisArgument(type); const staticType = getTypeOfSymbol(symbol); checkTypeParameterListsIdentical(symbol); checkFunctionOrConstructorSymbol(symbol); checkClassForDuplicateDeclarations(node); const nodeInAmbientContext = !!(node.flags & 33554432); if (!nodeInAmbientContext) { checkClassForStaticPropertyNameConflicts(node); } const baseTypeNode = getEffectiveBaseTypeNode(node); if (baseTypeNode) { forEach(baseTypeNode.typeArguments, checkSourceElement); if (languageVersion < LanguageFeatureMinimumTarget.Classes) { checkExternalEmitHelpers(baseTypeNode.parent, 1); } const extendsNode = getClassExtendsHeritageElement(node); if (extendsNode && extendsNode !== baseTypeNode) { checkExpression(extendsNode.expression); } const baseTypes = getBaseTypes(type); if (baseTypes.length) { addLazyDiagnostic(() => { const baseType = baseTypes[0]; const baseConstructorType = getBaseConstructorTypeOfClass(type); const staticBaseType = getApparentType(baseConstructorType); checkBaseTypeAccessibility(staticBaseType, baseTypeNode); checkSourceElement(baseTypeNode.expression); if (some(baseTypeNode.typeArguments)) { forEach(baseTypeNode.typeArguments, checkSourceElement); for (const constructor of getConstructorsForTypeArguments(staticBaseType, baseTypeNode.typeArguments, baseTypeNode)) { if (!checkTypeArgumentConstraints(baseTypeNode, constructor.typeParameters)) { break; } } } const baseWithThis = getTypeWithThisArgument(baseType, type.thisType); if (!checkTypeAssignableTo(typeWithThis, baseWithThis, undefined)) { issueMemberSpecificError(node, typeWithThis, baseWithThis, Diagnostics.Class_0_incorrectly_extends_base_class_1); } else { checkTypeAssignableTo(staticType, getTypeWithoutSignatures(staticBaseType), node.name || node, Diagnostics.Class_static_side_0_incorrectly_extends_base_class_static_side_1); } if (baseConstructorType.flags & 34078720) { if (!isMixinConstructorType(staticType)) { error2(node.name || node, Diagnostics.A_mixin_class_must_have_a_constructor_with_a_single_rest_parameter_of_type_any); } else { const constructSignatures = getSignaturesOfType(baseConstructorType, 1); if (constructSignatures.some((signature) => signature.flags & 4) && !hasSyntacticModifier(node, 64)) { error2(node.name || node, Diagnostics.A_mixin_class_that_extends_from_a_type_variable_containing_an_abstract_construct_signature_must_also_be_declared_abstract); } } } if (!(staticBaseType.symbol && staticBaseType.symbol.flags & 32) && !(baseConstructorType.flags & 34078720)) { const constructors = getInstantiatedConstructorsForTypeArguments(staticBaseType, baseTypeNode.typeArguments, baseTypeNode); if (forEach(constructors, (sig) => !isJSConstructor(sig.declaration) && !isTypeIdenticalTo(getReturnTypeOfSignature(sig), baseType))) { error2(baseTypeNode.expression, Diagnostics.Base_constructors_must_all_have_the_same_return_type); } } checkKindsOfPropertyMemberOverrides(type, baseType); }); } } checkMembersForOverrideModifier(node, type, typeWithThis, staticType); const implementedTypeNodes = getEffectiveImplementsTypeNodes(node); if (implementedTypeNodes) { for (const typeRefNode of implementedTypeNodes) { if (!isEntityNameExpression(typeRefNode.expression) || isOptionalChain(typeRefNode.expression)) { error2(typeRefNode.expression, Diagnostics.A_class_can_only_implement_an_identifier_Slashqualified_name_with_optional_type_arguments); } checkTypeReferenceNode(typeRefNode); addLazyDiagnostic(createImplementsDiagnostics(typeRefNode)); } } addLazyDiagnostic(() => { checkIndexConstraints(type, symbol); checkIndexConstraints(staticType, symbol, true); checkTypeForDuplicateIndexSignatures(node); checkPropertyInitialization(node); }); function createImplementsDiagnostics(typeRefNode) { return () => { const t = getReducedType(getTypeFromTypeNode(typeRefNode)); if (!isErrorType(t)) { if (isValidBaseType(t)) { const genericDiag = t.symbol && t.symbol.flags & 32 ? Diagnostics.Class_0_incorrectly_implements_class_1_Did_you_mean_to_extend_1_and_inherit_its_members_as_a_subclass : Diagnostics.Class_0_incorrectly_implements_interface_1; const baseWithThis = getTypeWithThisArgument(t, type.thisType); if (!checkTypeAssignableTo(typeWithThis, baseWithThis, undefined)) { issueMemberSpecificError(node, typeWithThis, baseWithThis, genericDiag); } } else { error2(typeRefNode, Diagnostics.A_class_can_only_implement_an_object_type_or_intersection_of_object_types_with_statically_known_members); } } }; } } function checkMembersForOverrideModifier(node, type, typeWithThis, staticType) { const baseTypeNode = getEffectiveBaseTypeNode(node); const baseTypes = baseTypeNode && getBaseTypes(type); const baseWithThis = (baseTypes == null ? undefined : baseTypes.length) ? getTypeWithThisArgument(first(baseTypes), type.thisType) : undefined; const baseStaticType = getBaseConstructorTypeOfClass(type); for (const member of node.members) { if (hasAmbientModifier(member)) { continue; } if (isConstructorDeclaration(member)) { forEach(member.parameters, (param) => { if (isParameterPropertyDeclaration(param, member)) { checkExistingMemberForOverrideModifier(node, staticType, baseStaticType, baseWithThis, type, typeWithThis, param, true); } }); } checkExistingMemberForOverrideModifier(node, staticType, baseStaticType, baseWithThis, type, typeWithThis, member, false); } } function checkExistingMemberForOverrideModifier(node, staticType, baseStaticType, baseWithThis, type, typeWithThis, member, memberIsParameterProperty, reportErrors2 = true) { const declaredProp = member.name && getSymbolAtLocation(member.name) || getSymbolAtLocation(member); if (!declaredProp) { return 0; } return checkMemberForOverrideModifier(node, staticType, baseStaticType, baseWithThis, type, typeWithThis, hasOverrideModifier(member), hasAbstractModifier(member), isStatic(member), memberIsParameterProperty, declaredProp, reportErrors2 ? member : undefined); } function checkMemberForOverrideModifier(node, staticType, baseStaticType, baseWithThis, type, typeWithThis, memberHasOverrideModifier, memberHasAbstractModifier, memberIsStatic, memberIsParameterProperty, member, errorNode) { const isJs = isInJSFile(node); const nodeInAmbientContext = !!(node.flags & 33554432); if (memberHasOverrideModifier && (member == null ? undefined : member.valueDeclaration) && isClassElement(member.valueDeclaration) && member.valueDeclaration.name && isNonBindableDynamicName(member.valueDeclaration.name)) { error2(errorNode, isJs ? Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_its_name_is_dynamic : Diagnostics.This_member_cannot_have_an_override_modifier_because_its_name_is_dynamic); return 2; } if (baseWithThis && (memberHasOverrideModifier || compilerOptions.noImplicitOverride)) { const thisType = memberIsStatic ? staticType : typeWithThis; const baseType = memberIsStatic ? baseStaticType : baseWithThis; const prop = getPropertyOfType(thisType, member.escapedName); const baseProp = getPropertyOfType(baseType, member.escapedName); const baseClassName = typeToString(baseWithThis); if (prop && !baseProp && memberHasOverrideModifier) { if (errorNode) { const suggestion = getSuggestedSymbolForNonexistentClassMember(symbolName(member), baseType); suggestion ? error2(errorNode, isJs ? Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_it_is_not_declared_in_the_base_class_0_Did_you_mean_1 : Diagnostics.This_member_cannot_have_an_override_modifier_because_it_is_not_declared_in_the_base_class_0_Did_you_mean_1, baseClassName, symbolToString(suggestion)) : error2(errorNode, isJs ? Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_it_is_not_declared_in_the_base_class_0 : Diagnostics.This_member_cannot_have_an_override_modifier_because_it_is_not_declared_in_the_base_class_0, baseClassName); } return 2; } else if (prop && (baseProp == null ? undefined : baseProp.declarations) && compilerOptions.noImplicitOverride && !nodeInAmbientContext) { const baseHasAbstract = some(baseProp.declarations, hasAbstractModifier); if (memberHasOverrideModifier) { return 0; } if (!baseHasAbstract) { if (errorNode) { const diag2 = memberIsParameterProperty ? isJs ? Diagnostics.This_parameter_property_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_class_0 : Diagnostics.This_parameter_property_must_have_an_override_modifier_because_it_overrides_a_member_in_base_class_0 : isJs ? Diagnostics.This_member_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_class_0 : Diagnostics.This_member_must_have_an_override_modifier_because_it_overrides_a_member_in_the_base_class_0; error2(errorNode, diag2, baseClassName); } return 1; } else if (memberHasAbstractModifier && baseHasAbstract) { if (errorNode) { error2(errorNode, Diagnostics.This_member_must_have_an_override_modifier_because_it_overrides_an_abstract_method_that_is_declared_in_the_base_class_0, baseClassName); } return 1; } } } else if (memberHasOverrideModifier) { if (errorNode) { const className = typeToString(type); error2(errorNode, isJs ? Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_its_containing_class_0_does_not_extend_another_class : Diagnostics.This_member_cannot_have_an_override_modifier_because_its_containing_class_0_does_not_extend_another_class, className); } return 2; } return 0; } function issueMemberSpecificError(node, typeWithThis, baseWithThis, broadDiag) { let issuedMemberError = false; for (const member of node.members) { if (isStatic(member)) { continue; } const declaredProp = member.name && getSymbolAtLocation(member.name) || getSymbolAtLocation(member); if (declaredProp) { const prop = getPropertyOfType(typeWithThis, declaredProp.escapedName); const baseProp = getPropertyOfType(baseWithThis, declaredProp.escapedName); if (prop && baseProp) { const rootChain = () => chainDiagnosticMessages(undefined, Diagnostics.Property_0_in_type_1_is_not_assignable_to_the_same_property_in_base_type_2, symbolToString(declaredProp), typeToString(typeWithThis), typeToString(baseWithThis)); if (!checkTypeAssignableTo(getTypeOfSymbol(prop), getTypeOfSymbol(baseProp), member.name || member, undefined, rootChain)) { issuedMemberError = true; } } } } if (!issuedMemberError) { checkTypeAssignableTo(typeWithThis, baseWithThis, node.name || node, broadDiag); } } function checkBaseTypeAccessibility(type, node) { const signatures = getSignaturesOfType(type, 1); if (signatures.length) { const declaration = signatures[0].declaration; if (declaration && hasEffectiveModifier(declaration, 2)) { const typeClassDeclaration = getClassLikeDeclarationOfSymbol(type.symbol); if (!isNodeWithinClass(node, typeClassDeclaration)) { error2(node, Diagnostics.Cannot_extend_a_class_0_Class_constructor_is_marked_as_private, getFullyQualifiedName(type.symbol)); } } } } function getMemberOverrideModifierStatus(node, member, memberSymbol) { if (!member.name) { return 0; } const classSymbol = getSymbolOfDeclaration(node); const type = getDeclaredTypeOfSymbol(classSymbol); const typeWithThis = getTypeWithThisArgument(type); const staticType = getTypeOfSymbol(classSymbol); const baseTypeNode = getEffectiveBaseTypeNode(node); const baseTypes = baseTypeNode && getBaseTypes(type); const baseWithThis = (baseTypes == null ? undefined : baseTypes.length) ? getTypeWithThisArgument(first(baseTypes), type.thisType) : undefined; const baseStaticType = getBaseConstructorTypeOfClass(type); const memberHasOverrideModifier = member.parent ? hasOverrideModifier(member) : hasSyntacticModifier(member, 16); return checkMemberForOverrideModifier(node, staticType, baseStaticType, baseWithThis, type, typeWithThis, memberHasOverrideModifier, hasAbstractModifier(member), isStatic(member), false, memberSymbol); } function getTargetSymbol(s) { return getCheckFlags(s) & 1 ? s.links.target : s; } function getClassOrInterfaceDeclarationsOfSymbol(symbol) { return filter(symbol.declarations, (d) => d.kind === 264 || d.kind === 265); } function checkKindsOfPropertyMemberOverrides(type, baseType) { var _a, _b, _c, _d, _e; const baseProperties = getPropertiesOfType(baseType); const notImplementedInfo = /* @__PURE__ */ new Map; basePropertyCheck: for (const baseProperty of baseProperties) { const base = getTargetSymbol(baseProperty); if (base.flags & 4194304) { continue; } const baseSymbol = getPropertyOfObjectType(type, base.escapedName); if (!baseSymbol) { continue; } const derived = getTargetSymbol(baseSymbol); const baseDeclarationFlags = getDeclarationModifierFlagsFromSymbol(base); Debug.assert(!!derived, "derived should point to something, even if it is the base class' declaration."); if (derived === base) { const derivedClassDecl = getClassLikeDeclarationOfSymbol(type.symbol); if (baseDeclarationFlags & 64 && (!derivedClassDecl || !hasSyntacticModifier(derivedClassDecl, 64))) { for (const otherBaseType of getBaseTypes(type)) { if (otherBaseType === baseType) continue; const baseSymbol2 = getPropertyOfObjectType(otherBaseType, base.escapedName); const derivedElsewhere = baseSymbol2 && getTargetSymbol(baseSymbol2); if (derivedElsewhere && derivedElsewhere !== base) { continue basePropertyCheck; } } const baseTypeName = typeToString(baseType); const typeName = typeToString(type); const basePropertyName = symbolToString(baseProperty); const missedProperties = append((_a = notImplementedInfo.get(derivedClassDecl)) == null ? undefined : _a.missedProperties, basePropertyName); notImplementedInfo.set(derivedClassDecl, { baseTypeName, typeName, missedProperties }); } } else { const derivedDeclarationFlags = getDeclarationModifierFlagsFromSymbol(derived); if (baseDeclarationFlags & 2 || derivedDeclarationFlags & 2) { continue; } let errorMessage; const basePropertyFlags = base.flags & 98308; const derivedPropertyFlags = derived.flags & 98308; if (basePropertyFlags && derivedPropertyFlags) { if ((getCheckFlags(base) & 6 ? (_b = base.declarations) == null ? undefined : _b.some((d) => isPropertyAbstractOrInterface(d, baseDeclarationFlags)) : (_c = base.declarations) == null ? undefined : _c.every((d) => isPropertyAbstractOrInterface(d, baseDeclarationFlags))) || getCheckFlags(base) & 262144 || derived.valueDeclaration && isBinaryExpression(derived.valueDeclaration)) { continue; } const overriddenInstanceProperty = basePropertyFlags !== 4 && derivedPropertyFlags === 4; const overriddenInstanceAccessor = basePropertyFlags === 4 && derivedPropertyFlags !== 4; if (overriddenInstanceProperty || overriddenInstanceAccessor) { const errorMessage2 = overriddenInstanceProperty ? Diagnostics._0_is_defined_as_an_accessor_in_class_1_but_is_overridden_here_in_2_as_an_instance_property : Diagnostics._0_is_defined_as_a_property_in_class_1_but_is_overridden_here_in_2_as_an_accessor; error2(getNameOfDeclaration(derived.valueDeclaration) || derived.valueDeclaration, errorMessage2, symbolToString(base), typeToString(baseType), typeToString(type)); } else if (useDefineForClassFields) { const uninitialized = (_d = derived.declarations) == null ? undefined : _d.find((d) => d.kind === 173 && !d.initializer); if (uninitialized && !(derived.flags & 33554432) && !(baseDeclarationFlags & 64) && !(derivedDeclarationFlags & 64) && !((_e = derived.declarations) == null ? undefined : _e.some((d) => !!(d.flags & 33554432)))) { const constructor = findConstructorDeclaration(getClassLikeDeclarationOfSymbol(type.symbol)); const propName = uninitialized.name; if (uninitialized.exclamationToken || !constructor || !isIdentifier(propName) || !strictNullChecks || !isPropertyInitializedInConstructor(propName, type, constructor)) { const errorMessage2 = Diagnostics.Property_0_will_overwrite_the_base_property_in_1_If_this_is_intentional_add_an_initializer_Otherwise_add_a_declare_modifier_or_remove_the_redundant_declaration; error2(getNameOfDeclaration(derived.valueDeclaration) || derived.valueDeclaration, errorMessage2, symbolToString(base), typeToString(baseType)); } } } continue; } else if (isPrototypeProperty(base)) { if (isPrototypeProperty(derived) || derived.flags & 4) { continue; } else { Debug.assert(!!(derived.flags & 98304)); errorMessage = Diagnostics.Class_0_defines_instance_member_function_1_but_extended_class_2_defines_it_as_instance_member_accessor; } } else if (base.flags & 98304) { errorMessage = Diagnostics.Class_0_defines_instance_member_accessor_1_but_extended_class_2_defines_it_as_instance_member_function; } else { errorMessage = Diagnostics.Class_0_defines_instance_member_property_1_but_extended_class_2_defines_it_as_instance_member_function; } error2(getNameOfDeclaration(derived.valueDeclaration) || derived.valueDeclaration, errorMessage, typeToString(baseType), symbolToString(base), typeToString(type)); } } for (const [errorNode, memberInfo] of notImplementedInfo) { if (length(memberInfo.missedProperties) === 1) { if (isClassExpression(errorNode)) { error2(errorNode, Diagnostics.Non_abstract_class_expression_does_not_implement_inherited_abstract_member_0_from_class_1, first(memberInfo.missedProperties), memberInfo.baseTypeName); } else { error2(errorNode, Diagnostics.Non_abstract_class_0_does_not_implement_inherited_abstract_member_1_from_class_2, memberInfo.typeName, first(memberInfo.missedProperties), memberInfo.baseTypeName); } } else if (length(memberInfo.missedProperties) > 5) { const missedProperties = map(memberInfo.missedProperties.slice(0, 4), (prop) => `'${prop}'`).join(", "); const remainingMissedProperties = length(memberInfo.missedProperties) - 4; if (isClassExpression(errorNode)) { error2(errorNode, Diagnostics.Non_abstract_class_expression_is_missing_implementations_for_the_following_members_of_0_Colon_1_and_2_more, memberInfo.baseTypeName, missedProperties, remainingMissedProperties); } else { error2(errorNode, Diagnostics.Non_abstract_class_0_is_missing_implementations_for_the_following_members_of_1_Colon_2_and_3_more, memberInfo.typeName, memberInfo.baseTypeName, missedProperties, remainingMissedProperties); } } else { const missedProperties = map(memberInfo.missedProperties, (prop) => `'${prop}'`).join(", "); if (isClassExpression(errorNode)) { error2(errorNode, Diagnostics.Non_abstract_class_expression_is_missing_implementations_for_the_following_members_of_0_Colon_1, memberInfo.baseTypeName, missedProperties); } else { error2(errorNode, Diagnostics.Non_abstract_class_0_is_missing_implementations_for_the_following_members_of_1_Colon_2, memberInfo.typeName, memberInfo.baseTypeName, missedProperties); } } } } function isPropertyAbstractOrInterface(declaration, baseDeclarationFlags) { return baseDeclarationFlags & 64 && (!isPropertyDeclaration(declaration) || !declaration.initializer) || isInterfaceDeclaration(declaration.parent); } function getNonInheritedProperties(type, baseTypes, properties) { if (!length(baseTypes)) { return properties; } const seen = /* @__PURE__ */ new Map; forEach(properties, (p) => { seen.set(p.escapedName, p); }); for (const base of baseTypes) { const properties2 = getPropertiesOfType(getTypeWithThisArgument(base, type.thisType)); for (const prop of properties2) { const existing = seen.get(prop.escapedName); if (existing && prop.parent === existing.parent) { seen.delete(prop.escapedName); } } } return arrayFrom(seen.values()); } function checkInheritedPropertiesAreIdentical(type, typeNode) { const baseTypes = getBaseTypes(type); if (baseTypes.length < 2) { return true; } const seen = /* @__PURE__ */ new Map; forEach(resolveDeclaredMembers(type).declaredProperties, (p) => { seen.set(p.escapedName, { prop: p, containingType: type }); }); let ok = true; for (const base of baseTypes) { const properties = getPropertiesOfType(getTypeWithThisArgument(base, type.thisType)); for (const prop of properties) { const existing = seen.get(prop.escapedName); if (!existing) { seen.set(prop.escapedName, { prop, containingType: base }); } else { const isInheritedProperty = existing.containingType !== type; if (isInheritedProperty && !isPropertyIdenticalTo(existing.prop, prop)) { ok = false; const typeName1 = typeToString(existing.containingType); const typeName2 = typeToString(base); let errorInfo = chainDiagnosticMessages(undefined, Diagnostics.Named_property_0_of_types_1_and_2_are_not_identical, symbolToString(prop), typeName1, typeName2); errorInfo = chainDiagnosticMessages(errorInfo, Diagnostics.Interface_0_cannot_simultaneously_extend_types_1_and_2, typeToString(type), typeName1, typeName2); diagnostics.add(createDiagnosticForNodeFromMessageChain(getSourceFileOfNode(typeNode), typeNode, errorInfo)); } } } } return ok; } function checkPropertyInitialization(node) { if (!strictNullChecks || !strictPropertyInitialization || node.flags & 33554432) { return; } const constructor = findConstructorDeclaration(node); for (const member of node.members) { if (getEffectiveModifierFlags(member) & 128) { continue; } if (!isStatic(member) && isPropertyWithoutInitializer(member)) { const propName = member.name; if (isIdentifier(propName) || isPrivateIdentifier(propName) || isComputedPropertyName(propName)) { const type = getTypeOfSymbol(getSymbolOfDeclaration(member)); if (!(type.flags & 3 || containsUndefinedType(type))) { if (!constructor || !isPropertyInitializedInConstructor(propName, type, constructor)) { error2(member.name, Diagnostics.Property_0_has_no_initializer_and_is_not_definitely_assigned_in_the_constructor, declarationNameToString(propName)); } } } } } } function isPropertyWithoutInitializer(node) { return node.kind === 173 && !hasAbstractModifier(node) && !node.exclamationToken && !node.initializer; } function isPropertyInitializedInStaticBlocks(propName, propType, staticBlocks, startPos, endPos) { for (const staticBlock of staticBlocks) { if (staticBlock.pos >= startPos && staticBlock.pos <= endPos) { const reference = factory.createPropertyAccessExpression(factory.createThis(), propName); setParent(reference.expression, reference); setParent(reference, staticBlock); reference.flowNode = staticBlock.returnFlowNode; const flowType = getFlowTypeOfReference(reference, propType, getOptionalType(propType)); if (!containsUndefinedType(flowType)) { return true; } } } return false; } function isPropertyInitializedInConstructor(propName, propType, constructor) { const reference = isComputedPropertyName(propName) ? factory.createElementAccessExpression(factory.createThis(), propName.expression) : factory.createPropertyAccessExpression(factory.createThis(), propName); setParent(reference.expression, reference); setParent(reference, constructor); reference.flowNode = constructor.returnFlowNode; const flowType = getFlowTypeOfReference(reference, propType, getOptionalType(propType)); return !containsUndefinedType(flowType); } function checkInterfaceDeclaration(node) { if (!checkGrammarModifiers(node)) checkGrammarInterfaceDeclaration(node); if (!allowBlockDeclarations(node.parent)) { grammarErrorOnNode(node, Diagnostics._0_declarations_can_only_be_declared_inside_a_block, "interface"); } checkTypeParameters(node.typeParameters); addLazyDiagnostic(() => { checkTypeNameIsReserved(node.name, Diagnostics.Interface_name_cannot_be_0); checkExportsOnMergedDeclarations(node); const symbol = getSymbolOfDeclaration(node); checkTypeParameterListsIdentical(symbol); const firstInterfaceDecl = getDeclarationOfKind(symbol, 265); if (node === firstInterfaceDecl) { const type = getDeclaredTypeOfSymbol(symbol); const typeWithThis = getTypeWithThisArgument(type); if (checkInheritedPropertiesAreIdentical(type, node.name)) { for (const baseType of getBaseTypes(type)) { checkTypeAssignableTo(typeWithThis, getTypeWithThisArgument(baseType, type.thisType), node.name, Diagnostics.Interface_0_incorrectly_extends_interface_1); } checkIndexConstraints(type, symbol); } } checkObjectTypeForDuplicateDeclarations(node); }); forEach(getInterfaceBaseTypeNodes(node), (heritageElement) => { if (!isEntityNameExpression(heritageElement.expression) || isOptionalChain(heritageElement.expression)) { error2(heritageElement.expression, Diagnostics.An_interface_can_only_extend_an_identifier_Slashqualified_name_with_optional_type_arguments); } checkTypeReferenceNode(heritageElement); }); forEach(node.members, checkSourceElement); addLazyDiagnostic(() => { checkTypeForDuplicateIndexSignatures(node); registerForUnusedIdentifiersCheck(node); }); } function checkTypeAliasDeclaration(node) { checkGrammarModifiers(node); checkTypeNameIsReserved(node.name, Diagnostics.Type_alias_name_cannot_be_0); if (!allowBlockDeclarations(node.parent)) { grammarErrorOnNode(node, Diagnostics._0_declarations_can_only_be_declared_inside_a_block, "type"); } checkExportsOnMergedDeclarations(node); checkTypeParameters(node.typeParameters); if (node.type.kind === 141) { const typeParameterCount = length(node.typeParameters); const valid = typeParameterCount === 0 ? node.name.escapedText === "BuiltinIteratorReturn" : typeParameterCount === 1 && intrinsicTypeKinds.has(node.name.escapedText); if (!valid) { error2(node.type, Diagnostics.The_intrinsic_keyword_can_only_be_used_to_declare_compiler_provided_intrinsic_types); } } else { checkSourceElement(node.type); registerForUnusedIdentifiersCheck(node); } } function computeEnumMemberValues(node) { const nodeLinks2 = getNodeLinks(node); if (!(nodeLinks2.flags & 1024)) { nodeLinks2.flags |= 1024; let autoValue = 0; let previous; for (const member of node.members) { const result = computeEnumMemberValue(member, autoValue, previous); getNodeLinks(member).enumMemberValue = result; autoValue = typeof result.value === "number" ? result.value + 1 : undefined; previous = member; } } } function computeEnumMemberValue(member, autoValue, previous) { if (isComputedNonLiteralName(member.name)) { error2(member.name, Diagnostics.Computed_property_names_are_not_allowed_in_enums); } else if (isBigIntLiteral(member.name)) { error2(member.name, Diagnostics.An_enum_member_cannot_have_a_numeric_name); } else { const text = getTextOfPropertyName(member.name); if (isNumericLiteralName(text) && !isInfinityOrNaNString(text)) { error2(member.name, Diagnostics.An_enum_member_cannot_have_a_numeric_name); } } if (member.initializer) { return computeConstantEnumMemberValue(member); } if (member.parent.flags & 33554432 && !isEnumConst(member.parent)) { return evaluatorResult(undefined); } if (autoValue === undefined) { error2(member.name, Diagnostics.Enum_member_must_have_initializer); return evaluatorResult(undefined); } if (getIsolatedModules(compilerOptions) && (previous == null ? undefined : previous.initializer)) { const prevValue = getEnumMemberValue(previous); if (!(typeof prevValue.value === "number" && !prevValue.resolvedOtherFiles)) { error2(member.name, Diagnostics.Enum_member_following_a_non_literal_numeric_member_must_have_an_initializer_when_isolatedModules_is_enabled); } } return evaluatorResult(autoValue); } function computeConstantEnumMemberValue(member) { const isConstEnum = isEnumConst(member.parent); const initializer = member.initializer; const result = evaluate(initializer, member); if (result.value !== undefined) { if (isConstEnum && typeof result.value === "number" && !isFinite(result.value)) { error2(initializer, isNaN(result.value) ? Diagnostics.const_enum_member_initializer_was_evaluated_to_disallowed_value_NaN : Diagnostics.const_enum_member_initializer_was_evaluated_to_a_non_finite_value); } else if (getIsolatedModules(compilerOptions) && typeof result.value === "string" && !result.isSyntacticallyString) { error2(initializer, Diagnostics._0_has_a_string_type_but_must_have_syntactically_recognizable_string_syntax_when_isolatedModules_is_enabled, `${idText(member.parent.name)}.${getTextOfPropertyName(member.name)}`); } } else if (isConstEnum) { error2(initializer, Diagnostics.const_enum_member_initializers_must_be_constant_expressions); } else if (member.parent.flags & 33554432) { error2(initializer, Diagnostics.In_ambient_enum_declarations_member_initializer_must_be_constant_expression); } else { checkTypeAssignableTo(checkExpression(initializer), numberType, initializer, Diagnostics.Type_0_is_not_assignable_to_type_1_as_required_for_computed_enum_member_values); } return result; } function evaluateEntityNameExpression(expr, location) { const symbol = resolveEntityName(expr, 111551, true); if (!symbol) return evaluatorResult(undefined); if (expr.kind === 80) { const identifier = expr; if (isInfinityOrNaNString(identifier.escapedText) && symbol === getGlobalSymbol(identifier.escapedText, 111551, undefined)) { return evaluatorResult(+identifier.escapedText, false); } } if (symbol.flags & 8) { return location ? evaluateEnumMember(expr, symbol, location) : getEnumMemberValue(symbol.valueDeclaration); } if (isConstantVariable(symbol)) { const declaration = symbol.valueDeclaration; if (declaration && isVariableDeclaration(declaration) && !declaration.type && declaration.initializer && (!location || declaration !== location && isBlockScopedNameDeclaredBeforeUse(declaration, location))) { const result = evaluate(declaration.initializer, declaration); if (location && getSourceFileOfNode(location) !== getSourceFileOfNode(declaration)) { return evaluatorResult(result.value, false, true, true); } return evaluatorResult(result.value, result.isSyntacticallyString, result.resolvedOtherFiles, true); } } return evaluatorResult(undefined); } function evaluateElementAccessExpression(expr, location) { const root = expr.expression; if (isEntityNameExpression(root) && isStringLiteralLike(expr.argumentExpression)) { const rootSymbol = resolveEntityName(root, 111551, true); if (rootSymbol && rootSymbol.flags & 384) { const name = escapeLeadingUnderscores(expr.argumentExpression.text); const member = rootSymbol.exports.get(name); if (member) { Debug.assert(getSourceFileOfNode(member.valueDeclaration) === getSourceFileOfNode(rootSymbol.valueDeclaration)); return location ? evaluateEnumMember(expr, member, location) : getEnumMemberValue(member.valueDeclaration); } } } return evaluatorResult(undefined); } function evaluateEnumMember(expr, symbol, location) { const declaration = symbol.valueDeclaration; if (!declaration || declaration === location) { error2(expr, Diagnostics.Property_0_is_used_before_being_assigned, symbolToString(symbol)); return evaluatorResult(undefined); } if (!isBlockScopedNameDeclaredBeforeUse(declaration, location)) { error2(expr, Diagnostics.A_member_initializer_in_a_enum_declaration_cannot_reference_members_declared_after_it_including_members_defined_in_other_enums); return evaluatorResult(0); } const value = getEnumMemberValue(declaration); if (location.parent !== declaration.parent) { return evaluatorResult(value.value, value.isSyntacticallyString, value.resolvedOtherFiles, true); } return value; } function checkEnumDeclaration(node) { addLazyDiagnostic(() => checkEnumDeclarationWorker(node)); } function checkEnumDeclarationWorker(node) { checkGrammarModifiers(node); checkCollisionsForDeclarationName(node, node.name); checkExportsOnMergedDeclarations(node); node.members.forEach(checkSourceElement); if (compilerOptions.erasableSyntaxOnly && !(node.flags & 33554432)) { error2(node, Diagnostics.This_syntax_is_not_allowed_when_erasableSyntaxOnly_is_enabled); } computeEnumMemberValues(node); const enumSymbol = getSymbolOfDeclaration(node); const firstDeclaration = getDeclarationOfKind(enumSymbol, node.kind); if (node === firstDeclaration) { if (enumSymbol.declarations && enumSymbol.declarations.length > 1) { const enumIsConst = isEnumConst(node); forEach(enumSymbol.declarations, (decl) => { if (isEnumDeclaration(decl) && isEnumConst(decl) !== enumIsConst) { error2(getNameOfDeclaration(decl), Diagnostics.Enum_declarations_must_all_be_const_or_non_const); } }); } let seenEnumMissingInitialInitializer = false; forEach(enumSymbol.declarations, (declaration) => { if (declaration.kind !== 267) { return false; } const enumDeclaration = declaration; if (!enumDeclaration.members.length) { return false; } const firstEnumMember = enumDeclaration.members[0]; if (!firstEnumMember.initializer) { if (seenEnumMissingInitialInitializer) { error2(firstEnumMember.name, Diagnostics.In_an_enum_with_multiple_declarations_only_one_declaration_can_omit_an_initializer_for_its_first_enum_element); } else { seenEnumMissingInitialInitializer = true; } } }); } } function checkEnumMember(node) { if (isPrivateIdentifier(node.name)) { error2(node, Diagnostics.An_enum_member_cannot_be_named_with_a_private_identifier); } if (node.initializer) { checkExpression(node.initializer); } } function getFirstNonAmbientClassOrFunctionDeclaration(symbol) { const declarations = symbol.declarations; if (declarations) { for (const declaration of declarations) { if ((declaration.kind === 264 || declaration.kind === 263 && nodeIsPresent(declaration.body)) && !(declaration.flags & 33554432)) { return declaration; } } } return; } function inSameLexicalScope(node1, node2) { const container1 = getEnclosingBlockScopeContainer(node1); const container2 = getEnclosingBlockScopeContainer(node2); if (isGlobalSourceFile(container1)) { return isGlobalSourceFile(container2); } else if (isGlobalSourceFile(container2)) { return false; } else { return container1 === container2; } } function checkModuleDeclaration(node) { if (node.body) { checkSourceElement(node.body); if (!isGlobalScopeAugmentation(node)) { registerForUnusedIdentifiersCheck(node); } } addLazyDiagnostic(checkModuleDeclarationDiagnostics); function checkModuleDeclarationDiagnostics() { var _a, _b; const isGlobalAugmentation = isGlobalScopeAugmentation(node); const inAmbientContext = node.flags & 33554432; if (isGlobalAugmentation && !inAmbientContext) { error2(node.name, Diagnostics.Augmentations_for_the_global_scope_should_have_declare_modifier_unless_they_appear_in_already_ambient_context); } const isAmbientExternalModule = isAmbientModule(node); const contextErrorMessage = isAmbientExternalModule ? Diagnostics.An_ambient_module_declaration_is_only_allowed_at_the_top_level_in_a_file : Diagnostics.A_namespace_declaration_is_only_allowed_at_the_top_level_of_a_namespace_or_module; if (checkGrammarModuleElementContext(node, contextErrorMessage)) { return; } if (!checkGrammarModifiers(node)) { if (!inAmbientContext && node.name.kind === 11) { grammarErrorOnNode(node.name, Diagnostics.Only_ambient_modules_can_use_quoted_names); } } if (isIdentifier(node.name)) { checkCollisionsForDeclarationName(node, node.name); if (!(node.flags & (32 | 2048))) { error2(node.name, Diagnostics.A_namespace_declaration_should_not_be_declared_using_the_module_keyword_Please_use_the_namespace_keyword_instead); } } checkExportsOnMergedDeclarations(node); const symbol = getSymbolOfDeclaration(node); if (symbol.flags & 512 && !inAmbientContext && isInstantiatedModule(node, shouldPreserveConstEnums(compilerOptions))) { if (compilerOptions.erasableSyntaxOnly) { error2(node.name, Diagnostics.This_syntax_is_not_allowed_when_erasableSyntaxOnly_is_enabled); } if (getIsolatedModules(compilerOptions) && !getSourceFileOfNode(node).externalModuleIndicator) { error2(node.name, Diagnostics.Namespaces_are_not_allowed_in_global_script_files_when_0_is_enabled_If_this_file_is_not_intended_to_be_a_global_script_set_moduleDetection_to_force_or_add_an_empty_export_statement, isolatedModulesLikeFlagName); } if (((_a = symbol.declarations) == null ? undefined : _a.length) > 1) { const firstNonAmbientClassOrFunc = getFirstNonAmbientClassOrFunctionDeclaration(symbol); if (firstNonAmbientClassOrFunc) { if (getSourceFileOfNode(node) !== getSourceFileOfNode(firstNonAmbientClassOrFunc)) { error2(node.name, Diagnostics.A_namespace_declaration_cannot_be_in_a_different_file_from_a_class_or_function_with_which_it_is_merged); } else if (node.pos < firstNonAmbientClassOrFunc.pos) { error2(node.name, Diagnostics.A_namespace_declaration_cannot_be_located_prior_to_a_class_or_function_with_which_it_is_merged); } } const mergedClass = getDeclarationOfKind(symbol, 264); if (mergedClass && inSameLexicalScope(node, mergedClass)) { getNodeLinks(node).flags |= 2048; } } if (compilerOptions.verbatimModuleSyntax && node.parent.kind === 308 && host.getEmitModuleFormatOfFile(node.parent) === 1) { const exportModifier = (_b = node.modifiers) == null ? undefined : _b.find((m) => m.kind === 95); if (exportModifier) { error2(exportModifier, Diagnostics.A_top_level_export_modifier_cannot_be_used_on_value_declarations_in_a_CommonJS_module_when_verbatimModuleSyntax_is_enabled); } } } if (isAmbientExternalModule) { if (isExternalModuleAugmentation(node)) { const checkBody = isGlobalAugmentation || getSymbolOfDeclaration(node).flags & 33554432; if (checkBody && node.body) { for (const statement of node.body.statements) { checkModuleAugmentationElement(statement, isGlobalAugmentation); } } } else if (isGlobalSourceFile(node.parent)) { if (isGlobalAugmentation) { error2(node.name, Diagnostics.Augmentations_for_the_global_scope_can_only_be_directly_nested_in_external_modules_or_ambient_module_declarations); } else if (isExternalModuleNameRelative(getTextOfIdentifierOrLiteral(node.name))) { error2(node.name, Diagnostics.Ambient_module_declaration_cannot_specify_relative_module_name); } } else { if (isGlobalAugmentation) { error2(node.name, Diagnostics.Augmentations_for_the_global_scope_can_only_be_directly_nested_in_external_modules_or_ambient_module_declarations); } else { error2(node.name, Diagnostics.Ambient_modules_cannot_be_nested_in_other_modules_or_namespaces); } } } } } function checkModuleAugmentationElement(node, isGlobalAugmentation) { switch (node.kind) { case 244: for (const decl of node.declarationList.declarations) { checkModuleAugmentationElement(decl, isGlobalAugmentation); } break; case 278: case 279: grammarErrorOnFirstToken(node, Diagnostics.Exports_and_export_assignments_are_not_permitted_in_module_augmentations); break; case 272: if (isInternalModuleImportEqualsDeclaration(node)) break; case 273: grammarErrorOnFirstToken(node, Diagnostics.Imports_are_not_permitted_in_module_augmentations_Consider_moving_them_to_the_enclosing_external_module); break; case 209: case 261: const name = node.name; if (isBindingPattern(name)) { for (const el of name.elements) { checkModuleAugmentationElement(el, isGlobalAugmentation); } break; } case 264: case 267: case 263: case 265: case 268: case 266: if (isGlobalAugmentation) { return; } break; } } function getFirstNonModuleExportsIdentifier(node) { switch (node.kind) { case 80: return node; case 167: do { node = node.left; } while (node.kind !== 80); return node; case 212: do { if (isModuleExportsAccessExpression(node.expression) && !isPrivateIdentifier(node.name)) { return node.name; } node = node.expression; } while (node.kind !== 80); return node; } } function checkExternalImportOrExportDeclaration(node) { const moduleName = getExternalModuleName(node); if (!moduleName || nodeIsMissing(moduleName)) { return false; } if (!isStringLiteral(moduleName)) { error2(moduleName, Diagnostics.String_literal_expected); return false; } const inAmbientExternalModule = node.parent.kind === 269 && isAmbientModule(node.parent.parent); if (node.parent.kind !== 308 && !inAmbientExternalModule) { error2(moduleName, node.kind === 279 ? Diagnostics.Export_declarations_are_not_permitted_in_a_namespace : Diagnostics.Import_declarations_in_a_namespace_cannot_reference_a_module); return false; } if (inAmbientExternalModule && isExternalModuleNameRelative(moduleName.text)) { if (!isTopLevelInExternalModuleAugmentation(node)) { error2(node, Diagnostics.Import_or_export_declaration_in_an_ambient_module_declaration_cannot_reference_module_through_relative_module_name); return false; } } if (!isImportEqualsDeclaration(node) && node.attributes) { const diagnostic = node.attributes.token === 118 ? Diagnostics.Import_attribute_values_must_be_string_literal_expressions : Diagnostics.Import_assertion_values_must_be_string_literal_expressions; let hasError = false; for (const attr of node.attributes.elements) { if (!isStringLiteral(attr.value)) { hasError = true; error2(attr.value, diagnostic); } } return !hasError; } return true; } function checkModuleExportName(name, allowStringLiteral = true) { if (name === undefined || name.kind !== 11) { return; } if (!allowStringLiteral) { grammarErrorOnNode(name, Diagnostics.Identifier_expected); } else if (moduleKind === 5 || moduleKind === 6) { grammarErrorOnNode(name, Diagnostics.String_literal_import_and_export_names_are_not_supported_when_the_module_flag_is_set_to_es2015_or_es2020); } } function checkAliasSymbol(node) { var _a, _b, _c, _d, _e; let symbol = getSymbolOfDeclaration(node); const target = resolveAlias(symbol); if (target !== unknownSymbol) { symbol = getMergedSymbol(symbol.exportSymbol || symbol); if (isInJSFile(node) && !(target.flags & 111551) && !isTypeOnlyImportOrExportDeclaration(node)) { const errorNode = isImportOrExportSpecifier(node) ? node.propertyName || node.name : isNamedDeclaration(node) ? node.name : node; Debug.assert(node.kind !== 281); if (node.kind === 282) { const diag2 = error2(errorNode, Diagnostics.Types_cannot_appear_in_export_declarations_in_JavaScript_files); const alreadyExportedSymbol = (_b = (_a = getSourceFileOfNode(node).symbol) == null ? undefined : _a.exports) == null ? undefined : _b.get(moduleExportNameTextEscaped(node.propertyName || node.name)); if (alreadyExportedSymbol === target) { const exportingDeclaration = (_c = alreadyExportedSymbol.declarations) == null ? undefined : _c.find(isJSDocNode); if (exportingDeclaration) { addRelatedInfo(diag2, createDiagnosticForNode(exportingDeclaration, Diagnostics._0_is_automatically_exported_here, unescapeLeadingUnderscores(alreadyExportedSymbol.escapedName))); } } } else { Debug.assert(node.kind !== 261); const importDeclaration = findAncestor(node, or(isImportDeclaration, isImportEqualsDeclaration)); const moduleSpecifier = (importDeclaration && ((_d = tryGetModuleSpecifierFromDeclaration(importDeclaration)) == null ? undefined : _d.text)) ?? "..."; const importedIdentifier = unescapeLeadingUnderscores(isIdentifier(errorNode) ? errorNode.escapedText : symbol.escapedName); error2(errorNode, Diagnostics._0_is_a_type_and_cannot_be_imported_in_JavaScript_files_Use_1_in_a_JSDoc_type_annotation, importedIdentifier, `import("${moduleSpecifier}").${importedIdentifier}`); } return; } const targetFlags = getSymbolFlags(target); const excludedMeanings = (symbol.flags & (111551 | 1048576) ? 111551 : 0) | (symbol.flags & 788968 ? 788968 : 0) | (symbol.flags & 1920 ? 1920 : 0); if (targetFlags & excludedMeanings) { const message = node.kind === 282 ? Diagnostics.Export_declaration_conflicts_with_exported_declaration_of_0 : Diagnostics.Import_declaration_conflicts_with_local_declaration_of_0; error2(node, message, symbolToString(symbol)); } else if (node.kind !== 282) { const appearsValueyToTranspiler = compilerOptions.isolatedModules && !findAncestor(node, isTypeOnlyImportOrExportDeclaration); if (appearsValueyToTranspiler && symbol.flags & (111551 | 1048576)) { error2(node, Diagnostics.Import_0_conflicts_with_local_value_so_must_be_declared_with_a_type_only_import_when_isolatedModules_is_enabled, symbolToString(symbol), isolatedModulesLikeFlagName); } } if (getIsolatedModules(compilerOptions) && !isTypeOnlyImportOrExportDeclaration(node) && !(node.flags & 33554432)) { const typeOnlyAlias = getTypeOnlyAliasDeclaration(symbol); const isType = !(targetFlags & 111551); if (isType || typeOnlyAlias) { switch (node.kind) { case 274: case 277: case 272: { if (compilerOptions.verbatimModuleSyntax) { Debug.assertIsDefined(node.name, "An ImportClause with a symbol should have a name"); const message = compilerOptions.verbatimModuleSyntax && isInternalModuleImportEqualsDeclaration(node) ? Diagnostics.An_import_alias_cannot_resolve_to_a_type_or_type_only_declaration_when_verbatimModuleSyntax_is_enabled : isType ? Diagnostics._0_is_a_type_and_must_be_imported_using_a_type_only_import_when_verbatimModuleSyntax_is_enabled : Diagnostics._0_resolves_to_a_type_only_declaration_and_must_be_imported_using_a_type_only_import_when_verbatimModuleSyntax_is_enabled; const name = moduleExportNameTextUnescaped(node.kind === 277 ? node.propertyName || node.name : node.name); addTypeOnlyDeclarationRelatedInfo(error2(node, message, name), isType ? undefined : typeOnlyAlias, name); } if (isType && node.kind === 272 && hasEffectiveModifier(node, 32)) { error2(node, Diagnostics.Cannot_use_export_import_on_a_type_or_type_only_namespace_when_0_is_enabled, isolatedModulesLikeFlagName); } break; } case 282: { if (compilerOptions.verbatimModuleSyntax || getSourceFileOfNode(typeOnlyAlias) !== getSourceFileOfNode(node)) { const name = moduleExportNameTextUnescaped(node.propertyName || node.name); const diagnostic = isType ? error2(node, Diagnostics.Re_exporting_a_type_when_0_is_enabled_requires_using_export_type, isolatedModulesLikeFlagName) : error2(node, Diagnostics._0_resolves_to_a_type_only_declaration_and_must_be_re_exported_using_a_type_only_re_export_when_1_is_enabled, name, isolatedModulesLikeFlagName); addTypeOnlyDeclarationRelatedInfo(diagnostic, isType ? undefined : typeOnlyAlias, name); break; } } } } if (compilerOptions.verbatimModuleSyntax && node.kind !== 272 && !isInJSFile(node) && host.getEmitModuleFormatOfFile(getSourceFileOfNode(node)) === 1) { error2(node, getVerbatimModuleSyntaxErrorMessage(node)); } else if (moduleKind === 200 && node.kind !== 272 && node.kind !== 261 && host.getEmitModuleFormatOfFile(getSourceFileOfNode(node)) === 1) { error2(node, Diagnostics.ECMAScript_module_syntax_is_not_allowed_in_a_CommonJS_module_when_module_is_set_to_preserve); } if (compilerOptions.verbatimModuleSyntax && !isTypeOnlyImportOrExportDeclaration(node) && !(node.flags & 33554432) && targetFlags & 128) { const constEnumDeclaration = target.valueDeclaration; const redirect = (_e = host.getRedirectFromOutput(getSourceFileOfNode(constEnumDeclaration).resolvedPath)) == null ? undefined : _e.resolvedRef; if (constEnumDeclaration.flags & 33554432 && (!redirect || !shouldPreserveConstEnums(redirect.commandLine.options))) { error2(node, Diagnostics.Cannot_access_ambient_const_enums_when_0_is_enabled, isolatedModulesLikeFlagName); } } } if (isImportSpecifier(node)) { const targetSymbol = resolveAliasWithDeprecationCheck(symbol, node); if (isDeprecatedSymbol(targetSymbol) && targetSymbol.declarations) { addDeprecatedSuggestion(node, targetSymbol.declarations, targetSymbol.escapedName); } } } } function resolveAliasWithDeprecationCheck(symbol, location) { if (!(symbol.flags & 2097152) || isDeprecatedSymbol(symbol) || !getDeclarationOfAliasSymbol(symbol)) { return symbol; } const targetSymbol = resolveAlias(symbol); if (targetSymbol === unknownSymbol) return targetSymbol; while (symbol.flags & 2097152) { const target = getImmediateAliasedSymbol(symbol); if (target) { if (target === targetSymbol) break; if (target.declarations && length(target.declarations)) { if (isDeprecatedSymbol(target)) { addDeprecatedSuggestion(location, target.declarations, target.escapedName); break; } else { if (symbol === targetSymbol) break; symbol = target; } } } else { break; } } return targetSymbol; } function checkImportBinding(node) { checkCollisionsForDeclarationName(node, node.name); checkAliasSymbol(node); if (node.kind === 277) { checkModuleExportName(node.propertyName); if (moduleExportNameIsDefault(node.propertyName || node.name) && getESModuleInterop(compilerOptions) && host.getEmitModuleFormatOfFile(getSourceFileOfNode(node)) < 4) { checkExternalEmitHelpers(node, 131072); } } } function checkImportAttributes(declaration) { var _a; const node = declaration.attributes; if (node) { const importAttributesType = getGlobalImportAttributesType(true); if (importAttributesType !== emptyObjectType) { checkTypeAssignableTo(getTypeFromImportAttributes(node), getNullableType(importAttributesType, 4), node); } const validForTypeAttributes = isExclusivelyTypeOnlyImportOrExport(declaration); const override = getResolutionModeOverride(node, validForTypeAttributes ? grammarErrorOnNode : undefined); const isImportAttributes2 = declaration.attributes.token === 118; if (validForTypeAttributes && override) { return; } if (!moduleSupportsImportAttributes(moduleKind)) { return grammarErrorOnNode(node, isImportAttributes2 ? Diagnostics.Import_attributes_are_only_supported_when_the_module_option_is_set_to_esnext_node18_node20_nodenext_or_preserve : Diagnostics.Import_assertions_are_only_supported_when_the_module_option_is_set_to_esnext_node18_node20_nodenext_or_preserve); } if (102 <= moduleKind && moduleKind <= 199 && !isImportAttributes2) { return grammarErrorOnFirstToken(node, Diagnostics.Import_assertions_have_been_replaced_by_import_attributes_Use_with_instead_of_assert); } if (!isImportAttributes2 && compilerOptions.ignoreDeprecations !== "6.0") { grammarErrorOnFirstToken(node, Diagnostics.Import_assertions_have_been_replaced_by_import_attributes_Use_with_instead_of_assert); } if (declaration.moduleSpecifier && getEmitSyntaxForModuleSpecifierExpression(declaration.moduleSpecifier) === 1) { return grammarErrorOnNode(node, isImportAttributes2 ? Diagnostics.Import_attributes_are_not_allowed_on_statements_that_compile_to_CommonJS_require_calls : Diagnostics.Import_assertions_are_not_allowed_on_statements_that_compile_to_CommonJS_require_calls); } const isTypeOnly = isJSDocImportTag(declaration) || (isImportDeclaration(declaration) ? (_a = declaration.importClause) == null ? undefined : _a.isTypeOnly : declaration.isTypeOnly); if (isTypeOnly) { return grammarErrorOnNode(node, isImportAttributes2 ? Diagnostics.Import_attributes_cannot_be_used_with_type_only_imports_or_exports : Diagnostics.Import_assertions_cannot_be_used_with_type_only_imports_or_exports); } if (override) { return grammarErrorOnNode(node, Diagnostics.resolution_mode_can_only_be_set_for_type_only_imports); } } } function checkImportAttribute(node) { return getRegularTypeOfLiteralType(checkExpressionCached(node.value)); } function checkImportDeclaration(node) { if (checkGrammarModuleElementContext(node, isInJSFile(node) ? Diagnostics.An_import_declaration_can_only_be_used_at_the_top_level_of_a_module : Diagnostics.An_import_declaration_can_only_be_used_at_the_top_level_of_a_namespace_or_module)) { return; } if (!checkGrammarModifiers(node) && node.modifiers) { grammarErrorOnFirstToken(node, Diagnostics.An_import_declaration_cannot_have_modifiers); } if (checkExternalImportOrExportDeclaration(node)) { let resolvedModule; const importClause = node.importClause; if (importClause && !checkGrammarImportClause(importClause)) { if (importClause.name) { checkImportBinding(importClause); } if (importClause.namedBindings) { if (importClause.namedBindings.kind === 275) { checkImportBinding(importClause.namedBindings); if (host.getEmitModuleFormatOfFile(getSourceFileOfNode(node)) < 4 && getESModuleInterop(compilerOptions)) { checkExternalEmitHelpers(node, 65536); } } else { resolvedModule = resolveExternalModuleName(node, node.moduleSpecifier); if (resolvedModule) { forEach(importClause.namedBindings.elements, checkImportBinding); } } } if (!importClause.isTypeOnly && 101 <= moduleKind && moduleKind <= 199 && isOnlyImportableAsDefault(node.moduleSpecifier, resolvedModule) && !hasTypeJsonImportAttribute(node)) { error2(node.moduleSpecifier, Diagnostics.Importing_a_JSON_file_into_an_ECMAScript_module_requires_a_type_Colon_json_import_attribute_when_module_is_set_to_0, ModuleKind[moduleKind]); } } else if (noUncheckedSideEffectImports && !importClause) { resolveExternalModuleName(node, node.moduleSpecifier, undefined, Diagnostics.Cannot_find_module_or_type_declarations_for_side_effect_import_of_0); } } checkImportAttributes(node); } function hasTypeJsonImportAttribute(node) { return !!node.attributes && node.attributes.elements.some((attr) => { var _a; return getTextOfIdentifierOrLiteral(attr.name) === "type" && ((_a = tryCast(attr.value, isStringLiteralLike)) == null ? undefined : _a.text) === "json"; }); } function checkImportEqualsDeclaration(node) { if (checkGrammarModuleElementContext(node, isInJSFile(node) ? Diagnostics.An_import_declaration_can_only_be_used_at_the_top_level_of_a_module : Diagnostics.An_import_declaration_can_only_be_used_at_the_top_level_of_a_namespace_or_module)) { return; } checkGrammarModifiers(node); if (compilerOptions.erasableSyntaxOnly && !(node.flags & 33554432)) { error2(node, Diagnostics.This_syntax_is_not_allowed_when_erasableSyntaxOnly_is_enabled); } if (isInternalModuleImportEqualsDeclaration(node) || checkExternalImportOrExportDeclaration(node)) { checkImportBinding(node); markLinkedReferences(node, 6); if (node.moduleReference.kind !== 284) { const target = resolveAlias(getSymbolOfDeclaration(node)); if (target !== unknownSymbol) { const targetFlags = getSymbolFlags(target); if (targetFlags & 111551) { const moduleName = getFirstIdentifier(node.moduleReference); if (!(resolveEntityName(moduleName, 111551 | 1920).flags & 1920)) { error2(moduleName, Diagnostics.Module_0_is_hidden_by_a_local_declaration_with_the_same_name, declarationNameToString(moduleName)); } } if (targetFlags & 788968) { checkTypeNameIsReserved(node.name, Diagnostics.Import_name_cannot_be_0); } } if (node.isTypeOnly) { grammarErrorOnNode(node, Diagnostics.An_import_alias_cannot_use_import_type); } } else { if (5 <= moduleKind && moduleKind <= 99 && !node.isTypeOnly && !(node.flags & 33554432)) { grammarErrorOnNode(node, Diagnostics.Import_assignment_cannot_be_used_when_targeting_ECMAScript_modules_Consider_using_import_Asterisk_as_ns_from_mod_import_a_from_mod_import_d_from_mod_or_another_module_format_instead); } } } } function checkExportDeclaration(node) { if (checkGrammarModuleElementContext(node, isInJSFile(node) ? Diagnostics.An_export_declaration_can_only_be_used_at_the_top_level_of_a_module : Diagnostics.An_export_declaration_can_only_be_used_at_the_top_level_of_a_namespace_or_module)) { return; } if (!checkGrammarModifiers(node) && hasSyntacticModifiers(node)) { grammarErrorOnFirstToken(node, Diagnostics.An_export_declaration_cannot_have_modifiers); } checkGrammarExportDeclaration(node); if (!node.moduleSpecifier || checkExternalImportOrExportDeclaration(node)) { if (node.exportClause && !isNamespaceExport(node.exportClause)) { forEach(node.exportClause.elements, checkExportSpecifier); const inAmbientExternalModule = node.parent.kind === 269 && isAmbientModule(node.parent.parent); const inAmbientNamespaceDeclaration = !inAmbientExternalModule && node.parent.kind === 269 && !node.moduleSpecifier && node.flags & 33554432; if (node.parent.kind !== 308 && !inAmbientExternalModule && !inAmbientNamespaceDeclaration) { error2(node, Diagnostics.Export_declarations_are_not_permitted_in_a_namespace); } } else { const moduleSymbol = resolveExternalModuleName(node, node.moduleSpecifier); if (moduleSymbol && hasExportAssignmentSymbol(moduleSymbol)) { error2(node.moduleSpecifier, Diagnostics.Module_0_uses_export_and_cannot_be_used_with_export_Asterisk, symbolToString(moduleSymbol)); } else if (node.exportClause) { checkAliasSymbol(node.exportClause); checkModuleExportName(node.exportClause.name); } if (host.getEmitModuleFormatOfFile(getSourceFileOfNode(node)) < 4) { if (node.exportClause) { if (getESModuleInterop(compilerOptions)) { checkExternalEmitHelpers(node, 65536); } } else { checkExternalEmitHelpers(node, 32768); } } } } checkImportAttributes(node); } function checkGrammarExportDeclaration(node) { var _a; if (node.isTypeOnly && ((_a = node.exportClause) == null ? undefined : _a.kind) === 280) { return checkGrammarNamedImportsOrExports(node.exportClause); } return false; } function checkGrammarModuleElementContext(node, errorMessage) { const isInAppropriateContext = node.parent.kind === 308 || node.parent.kind === 269 || node.parent.kind === 268; if (!isInAppropriateContext) { grammarErrorOnFirstToken(node, errorMessage); } return !isInAppropriateContext; } function checkExportSpecifier(node) { checkAliasSymbol(node); const hasModuleSpecifier = node.parent.parent.moduleSpecifier !== undefined; checkModuleExportName(node.propertyName, hasModuleSpecifier); checkModuleExportName(node.name); if (getEmitDeclarations(compilerOptions)) { collectLinkedAliases(node.propertyName || node.name, true); } if (!hasModuleSpecifier) { const exportedName = node.propertyName || node.name; if (exportedName.kind === 11) { return; } const symbol = resolveName(exportedName, exportedName.escapedText, 111551 | 788968 | 1920 | 2097152, undefined, true); if (symbol && (symbol === undefinedSymbol || symbol === globalThisSymbol || symbol.declarations && isGlobalSourceFile(getDeclarationContainer(symbol.declarations[0])))) { error2(exportedName, Diagnostics.Cannot_export_0_Only_local_declarations_can_be_exported_from_a_module, idText(exportedName)); } else { markLinkedReferences(node, 7); } } else { if (getESModuleInterop(compilerOptions) && host.getEmitModuleFormatOfFile(getSourceFileOfNode(node)) < 4 && moduleExportNameIsDefault(node.propertyName || node.name)) { checkExternalEmitHelpers(node, 131072); } } } function checkExportAssignment(node) { const illegalContextMessage = node.isExportEquals ? Diagnostics.An_export_assignment_must_be_at_the_top_level_of_a_file_or_module_declaration : Diagnostics.A_default_export_must_be_at_the_top_level_of_a_file_or_module_declaration; if (checkGrammarModuleElementContext(node, illegalContextMessage)) { return; } if (compilerOptions.erasableSyntaxOnly && node.isExportEquals && !(node.flags & 33554432)) { error2(node, Diagnostics.This_syntax_is_not_allowed_when_erasableSyntaxOnly_is_enabled); } const container = node.parent.kind === 308 ? node.parent : node.parent.parent; if (container.kind === 268 && !isAmbientModule(container)) { if (node.isExportEquals) { error2(node, Diagnostics.An_export_assignment_cannot_be_used_in_a_namespace); } else { error2(node, Diagnostics.A_default_export_can_only_be_used_in_an_ECMAScript_style_module); } return; } if (!checkGrammarModifiers(node) && hasEffectiveModifiers(node)) { grammarErrorOnFirstToken(node, Diagnostics.An_export_assignment_cannot_have_modifiers); } const typeAnnotationNode = getEffectiveTypeAnnotationNode(node); if (typeAnnotationNode) { checkTypeAssignableTo(checkExpressionCached(node.expression), getTypeFromTypeNode(typeAnnotationNode), node.expression); } const isIllegalExportDefaultInCJS = !node.isExportEquals && !(node.flags & 33554432) && compilerOptions.verbatimModuleSyntax && host.getEmitModuleFormatOfFile(getSourceFileOfNode(node)) === 1; if (node.expression.kind === 80) { const id = node.expression; const sym = getExportSymbolOfValueSymbolIfExported(resolveEntityName(id, -1, true, true, node)); if (sym) { markLinkedReferences(node, 3); const typeOnlyDeclaration = getTypeOnlyAliasDeclaration(sym, 111551); if (getSymbolFlags(sym) & 111551) { checkExpressionCached(id); if (!isIllegalExportDefaultInCJS && !(node.flags & 33554432) && compilerOptions.verbatimModuleSyntax && typeOnlyDeclaration) { error2(id, node.isExportEquals ? Diagnostics.An_export_declaration_must_reference_a_real_value_when_verbatimModuleSyntax_is_enabled_but_0_resolves_to_a_type_only_declaration : Diagnostics.An_export_default_must_reference_a_real_value_when_verbatimModuleSyntax_is_enabled_but_0_resolves_to_a_type_only_declaration, idText(id)); } } else if (!isIllegalExportDefaultInCJS && !(node.flags & 33554432) && compilerOptions.verbatimModuleSyntax) { error2(id, node.isExportEquals ? Diagnostics.An_export_declaration_must_reference_a_value_when_verbatimModuleSyntax_is_enabled_but_0_only_refers_to_a_type : Diagnostics.An_export_default_must_reference_a_value_when_verbatimModuleSyntax_is_enabled_but_0_only_refers_to_a_type, idText(id)); } if (!isIllegalExportDefaultInCJS && !(node.flags & 33554432) && getIsolatedModules(compilerOptions) && !(sym.flags & 111551)) { const nonLocalMeanings = getSymbolFlags(sym, false, true); if (sym.flags & 2097152 && nonLocalMeanings & 788968 && !(nonLocalMeanings & 111551) && (!typeOnlyDeclaration || getSourceFileOfNode(typeOnlyDeclaration) !== getSourceFileOfNode(node))) { error2(id, node.isExportEquals ? Diagnostics._0_resolves_to_a_type_and_must_be_marked_type_only_in_this_file_before_re_exporting_when_1_is_enabled_Consider_using_import_type_where_0_is_imported : Diagnostics._0_resolves_to_a_type_and_must_be_marked_type_only_in_this_file_before_re_exporting_when_1_is_enabled_Consider_using_export_type_0_as_default, idText(id), isolatedModulesLikeFlagName); } else if (typeOnlyDeclaration && getSourceFileOfNode(typeOnlyDeclaration) !== getSourceFileOfNode(node)) { addTypeOnlyDeclarationRelatedInfo(error2(id, node.isExportEquals ? Diagnostics._0_resolves_to_a_type_only_declaration_and_must_be_marked_type_only_in_this_file_before_re_exporting_when_1_is_enabled_Consider_using_import_type_where_0_is_imported : Diagnostics._0_resolves_to_a_type_only_declaration_and_must_be_marked_type_only_in_this_file_before_re_exporting_when_1_is_enabled_Consider_using_export_type_0_as_default, idText(id), isolatedModulesLikeFlagName), typeOnlyDeclaration, idText(id)); } } } else { checkExpressionCached(id); } if (getEmitDeclarations(compilerOptions)) { collectLinkedAliases(id, true); } } else { checkExpressionCached(node.expression); } if (isIllegalExportDefaultInCJS) { error2(node, getVerbatimModuleSyntaxErrorMessage(node)); } checkExternalModuleExports(container); if (node.flags & 33554432 && !isEntityNameExpression(node.expression)) { grammarErrorOnNode(node.expression, Diagnostics.The_expression_of_an_export_assignment_must_be_an_identifier_or_qualified_name_in_an_ambient_context); } if (node.isExportEquals) { if (moduleKind >= 5 && moduleKind !== 200 && (node.flags & 33554432 && host.getImpliedNodeFormatForEmit(getSourceFileOfNode(node)) === 99 || !(node.flags & 33554432) && host.getImpliedNodeFormatForEmit(getSourceFileOfNode(node)) !== 1)) { grammarErrorOnNode(node, Diagnostics.Export_assignment_cannot_be_used_when_targeting_ECMAScript_modules_Consider_using_export_default_or_another_module_format_instead); } else if (moduleKind === 4 && !(node.flags & 33554432)) { grammarErrorOnNode(node, Diagnostics.Export_assignment_is_not_supported_when_module_flag_is_system); } } } function hasExportedMembers(moduleSymbol) { return forEachEntry(moduleSymbol.exports, (_, id) => id !== "export="); } function checkExternalModuleExports(node) { const moduleSymbol = getSymbolOfDeclaration(node); const links = getSymbolLinks(moduleSymbol); if (!links.exportsChecked) { const exportEqualsSymbol = moduleSymbol.exports.get("export="); if (exportEqualsSymbol && hasExportedMembers(moduleSymbol)) { const declaration = getDeclarationOfAliasSymbol(exportEqualsSymbol) || exportEqualsSymbol.valueDeclaration; if (declaration && !isTopLevelInExternalModuleAugmentation(declaration) && !isInJSFile(declaration)) { error2(declaration, Diagnostics.An_export_assignment_cannot_be_used_in_a_module_with_other_exported_elements); } } const exports22 = getExportsOfModule(moduleSymbol); if (exports22) { exports22.forEach(({ declarations, flags }, id) => { if (id === "__export") { return; } if (flags & (1920 | 384)) { return; } const exportedDeclarationsCount = countWhere(declarations, and(isNotOverloadAndNotAccessor, not(isInterfaceDeclaration))); if (flags & 524288 && exportedDeclarationsCount <= 2) { return; } if (exportedDeclarationsCount > 1) { if (!isDuplicatedCommonJSExport(declarations)) { for (const declaration of declarations) { if (isNotOverload(declaration)) { diagnostics.add(createDiagnosticForNode(declaration, Diagnostics.Cannot_redeclare_exported_variable_0, unescapeLeadingUnderscores(id))); } } } } }); } links.exportsChecked = true; } } function isDuplicatedCommonJSExport(declarations) { return declarations && declarations.length > 1 && declarations.every((d) => isInJSFile(d) && isAccessExpression(d) && (isExportsIdentifier(d.expression) || isModuleExportsAccessExpression(d.expression))); } function checkSourceElement(node) { if (node) { const saveCurrentNode = currentNode; const saveWithinUnreachableCode = withinUnreachableCode; currentNode = node; instantiationCount = 0; checkSourceElementWorker(node); currentNode = saveCurrentNode; withinUnreachableCode = saveWithinUnreachableCode; } } function checkSourceElementWorker(node) { if (getNodeCheckFlags(node) & 8388608) { return; } if (canHaveJSDoc(node)) { forEach(node.jsDoc, ({ comment, tags }) => { checkJSDocCommentWorker(comment); forEach(tags, (tag) => { checkJSDocCommentWorker(tag.comment); if (isInJSFile(node)) { checkSourceElement(tag); } }); }); } const kind = node.kind; if (cancellationToken) { switch (kind) { case 268: case 264: case 265: case 263: cancellationToken.throwIfCancellationRequested(); } } if (compilerOptions.allowUnreachableCode !== true && !withinUnreachableCode) { if (checkSourceElementUnreachable(node)) { withinUnreachableCode = true; } } switch (kind) { case 169: return checkTypeParameter(node); case 170: return checkParameter(node); case 173: return checkPropertyDeclaration(node); case 172: return checkPropertySignature(node); case 186: case 185: case 180: case 181: case 182: return checkSignatureDeclaration(node); case 175: case 174: return checkMethodDeclaration(node); case 176: return checkClassStaticBlockDeclaration(node); case 177: return checkConstructorDeclaration(node); case 178: case 179: return checkAccessorDeclaration(node); case 184: return checkTypeReferenceNode(node); case 183: return checkTypePredicate(node); case 187: return checkTypeQuery(node); case 188: return checkTypeLiteral(node); case 189: return checkArrayType(node); case 190: return checkTupleType(node); case 193: case 194: return checkUnionOrIntersectionType(node); case 197: case 191: case 192: return checkSourceElement(node.type); case 198: return checkThisType(node); case 199: return checkTypeOperator(node); case 195: return checkConditionalType(node); case 196: return checkInferType(node); case 204: return checkTemplateLiteralType(node); case 206: return checkImportType(node); case 203: return checkNamedTupleMember(node); case 329: return checkJSDocAugmentsTag(node); case 330: return checkJSDocImplementsTag(node); case 347: case 339: case 341: return checkJSDocTypeAliasTag(node); case 346: return checkJSDocTemplateTag(node); case 345: return checkJSDocTypeTag(node); case 325: case 326: case 327: return checkJSDocLinkLikeTag(node); case 342: return checkJSDocParameterTag(node); case 349: return checkJSDocPropertyTag(node); case 318: checkJSDocFunctionType(node); case 316: case 315: case 313: case 314: case 323: checkJSDocTypeIsInJsFile(node); forEachChild(node, checkSourceElement); return; case 319: checkJSDocVariadicType(node); return; case 310: return checkSourceElement(node.type); case 334: case 336: case 335: return checkJSDocAccessibilityModifiers(node); case 351: return checkJSDocSatisfiesTag(node); case 344: return checkJSDocThisTag(node); case 352: return checkJSDocImportTag(node); case 200: return checkIndexedAccessType(node); case 201: return checkMappedType(node); case 263: return checkFunctionDeclaration(node); case 242: case 269: return checkBlock(node); case 244: return checkVariableStatement(node); case 245: return checkExpressionStatement(node); case 246: return checkIfStatement(node); case 247: return checkDoStatement(node); case 248: return checkWhileStatement(node); case 249: return checkForStatement(node); case 250: return checkForInStatement(node); case 251: return checkForOfStatement(node); case 252: case 253: return checkBreakOrContinueStatement(node); case 254: return checkReturnStatement(node); case 255: return checkWithStatement(node); case 256: return checkSwitchStatement(node); case 257: return checkLabeledStatement(node); case 258: return checkThrowStatement(node); case 259: return checkTryStatement(node); case 261: return checkVariableDeclaration(node); case 209: return checkBindingElement(node); case 264: return checkClassDeclaration(node); case 265: return checkInterfaceDeclaration(node); case 266: return checkTypeAliasDeclaration(node); case 267: return checkEnumDeclaration(node); case 307: return checkEnumMember(node); case 268: return checkModuleDeclaration(node); case 273: return checkImportDeclaration(node); case 272: return checkImportEqualsDeclaration(node); case 279: return checkExportDeclaration(node); case 278: return checkExportAssignment(node); case 243: case 260: checkGrammarStatementInAmbientContext(node); return; case 283: return checkMissingDeclaration(node); } } function checkSourceElementUnreachable(node) { if (!isPotentiallyExecutableNode(node)) { return false; } if (reportedUnreachableNodes == null ? undefined : reportedUnreachableNodes.has(node)) { return true; } if (!isSourceElementUnreachable(node)) { return false; } (reportedUnreachableNodes ?? (reportedUnreachableNodes = /* @__PURE__ */ new Set)).add(node); const sourceFile = getSourceFileOfNode(node); let startNode2 = node; let endNode2 = node; const parent2 = node.parent; if (canHaveStatements(parent2)) { const statements = parent2.statements; const offset = statements.indexOf(node); if (offset >= 0) { let first2 = offset; for (let i = offset - 1;i >= 0; i--) { const prevNode = statements[i]; if (!isPotentiallyExecutableNode(prevNode) || reportedUnreachableNodes.has(prevNode) || !isSourceElementUnreachable(prevNode)) { break; } first2 = i; reportedUnreachableNodes.add(prevNode); } let last2 = offset; for (let i = offset + 1;i < statements.length; i++) { const nextNode = statements[i]; if (!isPotentiallyExecutableNode(nextNode) || !isSourceElementUnreachable(nextNode)) { break; } last2 = i; reportedUnreachableNodes.add(nextNode); } startNode2 = statements[first2]; endNode2 = statements[last2]; } } const start = getTokenPosOfNode(startNode2, sourceFile); addErrorOrSuggestion(compilerOptions.allowUnreachableCode === false, createFileDiagnostic(sourceFile, start, endNode2.end - start, Diagnostics.Unreachable_code_detected)); return true; } function isSourceElementUnreachable(node) { if (node.flags & 1073741824) { switch (node.kind) { case 267: return !isEnumConst(node) || shouldPreserveConstEnums(compilerOptions); case 268: return isInstantiatedModule(node, shouldPreserveConstEnums(compilerOptions)); default: return true; } } else if (canHaveFlowNode(node) && node.flowNode) { return !isReachableFlowNode(node.flowNode); } return false; } function checkJSDocCommentWorker(node) { if (isArray(node)) { forEach(node, (tag) => { if (isJSDocLinkLike(tag)) { checkSourceElement(tag); } }); } } function checkJSDocTypeIsInJsFile(node) { if (!isInJSFile(node)) { if (isJSDocNonNullableType(node) || isJSDocNullableType(node)) { const token = tokenToString(isJSDocNonNullableType(node) ? 54 : 58); const diagnostic = node.postfix ? Diagnostics._0_at_the_end_of_a_type_is_not_valid_TypeScript_syntax_Did_you_mean_to_write_1 : Diagnostics._0_at_the_start_of_a_type_is_not_valid_TypeScript_syntax_Did_you_mean_to_write_1; const typeNode = node.type; const type = getTypeFromTypeNode(typeNode); grammarErrorOnNode(node, diagnostic, token, typeToString(isJSDocNullableType(node) && !(type === neverType || type === voidType) ? getUnionType(append([type, undefinedType], node.postfix ? undefined : nullType)) : type)); } else { grammarErrorOnNode(node, Diagnostics.JSDoc_types_can_only_be_used_inside_documentation_comments); } } } function checkJSDocVariadicType(node) { checkJSDocTypeIsInJsFile(node); checkSourceElement(node.type); const { parent: parent2 } = node; if (isParameter(parent2) && isJSDocFunctionType(parent2.parent)) { if (last(parent2.parent.parameters) !== parent2) { error2(node, Diagnostics.A_rest_parameter_must_be_last_in_a_parameter_list); } return; } if (!isJSDocTypeExpression(parent2)) { error2(node, Diagnostics.JSDoc_may_only_appear_in_the_last_parameter_of_a_signature); } const paramTag = node.parent.parent; if (!isJSDocParameterTag(paramTag)) { error2(node, Diagnostics.JSDoc_may_only_appear_in_the_last_parameter_of_a_signature); return; } const param = getParameterSymbolFromJSDoc(paramTag); if (!param) { return; } const host2 = getHostSignatureFromJSDoc(paramTag); if (!host2 || last(host2.parameters).symbol !== param) { error2(node, Diagnostics.A_rest_parameter_must_be_last_in_a_parameter_list); } } function getTypeFromJSDocVariadicType(node) { const type = getTypeFromTypeNode(node.type); const { parent: parent2 } = node; const paramTag = node.parent.parent; if (isJSDocTypeExpression(node.parent) && isJSDocParameterTag(paramTag)) { const host2 = getHostSignatureFromJSDoc(paramTag); const isCallbackTag = isJSDocCallbackTag(paramTag.parent.parent); if (host2 || isCallbackTag) { const lastParamDeclaration = isCallbackTag ? lastOrUndefined(paramTag.parent.parent.typeExpression.parameters) : lastOrUndefined(host2.parameters); const symbol = getParameterSymbolFromJSDoc(paramTag); if (!lastParamDeclaration || symbol && lastParamDeclaration.symbol === symbol && isRestParameter(lastParamDeclaration)) { return createArrayType(type); } } } if (isParameter(parent2) && isJSDocFunctionType(parent2.parent)) { return createArrayType(type); } return addOptionality(type); } function checkNodeDeferred(node) { const enclosingFile = getSourceFileOfNode(node); const links = getNodeLinks(enclosingFile); if (!(links.flags & 1)) { links.deferredNodes || (links.deferredNodes = /* @__PURE__ */ new Set); links.deferredNodes.add(node); } else { Debug.assert(!links.deferredNodes, "A type-checked file should have no deferred nodes."); } } function checkDeferredNodes(context) { const links = getNodeLinks(context); if (links.deferredNodes) { links.deferredNodes.forEach(checkDeferredNode); } links.deferredNodes = undefined; } function checkDeferredNode(node) { var _a, _b; (_a = tracing) == null || _a.push(tracing.Phase.Check, "checkDeferredNode", { kind: node.kind, pos: node.pos, end: node.end, path: node.tracingPath }); const saveCurrentNode = currentNode; currentNode = node; instantiationCount = 0; switch (node.kind) { case 214: case 215: case 216: case 171: case 287: resolveUntypedCall(node); break; case 219: case 220: case 175: case 174: checkFunctionExpressionOrObjectLiteralMethodDeferred(node); break; case 178: case 179: checkAccessorDeclaration(node); break; case 232: checkClassExpressionDeferred(node); break; case 169: checkTypeParameterDeferred(node); break; case 286: checkJsxSelfClosingElementDeferred(node); break; case 285: checkJsxElementDeferred(node); break; case 217: case 235: case 218: checkAssertionDeferred(node); break; case 223: checkExpression(node.expression); break; case 227: if (isInstanceOfExpression(node)) { resolveUntypedCall(node); } break; } currentNode = saveCurrentNode; (_b = tracing) == null || _b.pop(); } function checkSourceFile(node, nodesToCheck) { var _a, _b; (_a = tracing) == null || _a.push(tracing.Phase.Check, nodesToCheck ? "checkSourceFileNodes" : "checkSourceFile", { path: node.path }, true); const beforeMark = nodesToCheck ? "beforeCheckNodes" : "beforeCheck"; const afterMark = nodesToCheck ? "afterCheckNodes" : "afterCheck"; mark(beforeMark); nodesToCheck ? checkSourceFileNodesWorker(node, nodesToCheck) : checkSourceFileWorker(node); mark(afterMark); measure("Check", beforeMark, afterMark); (_b = tracing) == null || _b.pop(); reportedUnreachableNodes = undefined; } function unusedIsError(kind, isAmbient) { if (isAmbient) { return false; } switch (kind) { case 0: return !!compilerOptions.noUnusedLocals; case 1: return !!compilerOptions.noUnusedParameters; default: return Debug.assertNever(kind); } } function getPotentiallyUnusedIdentifiers(sourceFile) { return allPotentiallyUnusedIdentifiers.get(sourceFile.path) || emptyArray; } function checkSourceFileWorker(node) { const links = getNodeLinks(node); if (!(links.flags & 1)) { if (skipTypeChecking(node, compilerOptions, host)) { return; } checkGrammarSourceFile(node); clear(potentialThisCollisions); clear(potentialNewTargetCollisions); clear(potentialWeakMapSetCollisions); clear(potentialReflectCollisions); clear(potentialUnusedRenamedBindingElementsInTypes); if (links.flags & 8388608) { potentialThisCollisions = links.potentialThisCollisions; potentialNewTargetCollisions = links.potentialNewTargetCollisions; potentialWeakMapSetCollisions = links.potentialWeakMapSetCollisions; potentialReflectCollisions = links.potentialReflectCollisions; potentialUnusedRenamedBindingElementsInTypes = links.potentialUnusedRenamedBindingElementsInTypes; } forEach(node.statements, checkSourceElement); checkSourceElement(node.endOfFileToken); checkDeferredNodes(node); if (isExternalOrCommonJsModule(node)) { registerForUnusedIdentifiersCheck(node); } addLazyDiagnostic(() => { if (!node.isDeclarationFile && (compilerOptions.noUnusedLocals || compilerOptions.noUnusedParameters)) { checkUnusedIdentifiers(getPotentiallyUnusedIdentifiers(node), (containingNode, kind, diag2) => { if (!containsParseError(containingNode) && unusedIsError(kind, !!(containingNode.flags & 33554432))) { diagnostics.add(diag2); } }); } if (!node.isDeclarationFile) { checkPotentialUncheckedRenamedBindingElementsInTypes(); } }); if (isExternalOrCommonJsModule(node)) { checkExternalModuleExports(node); } if (potentialThisCollisions.length) { forEach(potentialThisCollisions, checkIfThisIsCapturedInEnclosingScope); clear(potentialThisCollisions); } if (potentialNewTargetCollisions.length) { forEach(potentialNewTargetCollisions, checkIfNewTargetIsCapturedInEnclosingScope); clear(potentialNewTargetCollisions); } if (potentialWeakMapSetCollisions.length) { forEach(potentialWeakMapSetCollisions, checkWeakMapSetCollision); clear(potentialWeakMapSetCollisions); } if (potentialReflectCollisions.length) { forEach(potentialReflectCollisions, checkReflectCollision); clear(potentialReflectCollisions); } links.flags |= 1; } } function checkSourceFileNodesWorker(file, nodes) { const links = getNodeLinks(file); if (!(links.flags & 1)) { if (skipTypeChecking(file, compilerOptions, host)) { return; } checkGrammarSourceFile(file); clear(potentialThisCollisions); clear(potentialNewTargetCollisions); clear(potentialWeakMapSetCollisions); clear(potentialReflectCollisions); clear(potentialUnusedRenamedBindingElementsInTypes); forEach(nodes, checkSourceElement); checkDeferredNodes(file); (links.potentialThisCollisions || (links.potentialThisCollisions = [])).push(...potentialThisCollisions); (links.potentialNewTargetCollisions || (links.potentialNewTargetCollisions = [])).push(...potentialNewTargetCollisions); (links.potentialWeakMapSetCollisions || (links.potentialWeakMapSetCollisions = [])).push(...potentialWeakMapSetCollisions); (links.potentialReflectCollisions || (links.potentialReflectCollisions = [])).push(...potentialReflectCollisions); (links.potentialUnusedRenamedBindingElementsInTypes || (links.potentialUnusedRenamedBindingElementsInTypes = [])).push(...potentialUnusedRenamedBindingElementsInTypes); links.flags |= 8388608; for (const node of nodes) { const nodeLinks2 = getNodeLinks(node); nodeLinks2.flags |= 8388608; } } } function getDiagnostics2(sourceFile, ct, nodesToCheck) { try { cancellationToken = ct; return getDiagnosticsWorker(sourceFile, nodesToCheck); } finally { cancellationToken = undefined; } } function ensurePendingDiagnosticWorkComplete() { for (const cb of deferredDiagnosticsCallbacks) { cb(); } deferredDiagnosticsCallbacks = []; } function checkSourceFileWithEagerDiagnostics(sourceFile, nodesToCheck) { ensurePendingDiagnosticWorkComplete(); const oldAddLazyDiagnostics = addLazyDiagnostic; addLazyDiagnostic = (cb) => cb(); checkSourceFile(sourceFile, nodesToCheck); addLazyDiagnostic = oldAddLazyDiagnostics; } function getDiagnosticsWorker(sourceFile, nodesToCheck) { if (sourceFile) { ensurePendingDiagnosticWorkComplete(); const previousGlobalDiagnostics = diagnostics.getGlobalDiagnostics(); const previousGlobalDiagnosticsSize = previousGlobalDiagnostics.length; checkSourceFileWithEagerDiagnostics(sourceFile, nodesToCheck); const semanticDiagnostics = diagnostics.getDiagnostics(sourceFile.fileName); if (nodesToCheck) { return semanticDiagnostics; } const currentGlobalDiagnostics = diagnostics.getGlobalDiagnostics(); if (currentGlobalDiagnostics !== previousGlobalDiagnostics) { const deferredGlobalDiagnostics = relativeComplement(previousGlobalDiagnostics, currentGlobalDiagnostics, compareDiagnostics); return concatenate(deferredGlobalDiagnostics, semanticDiagnostics); } else if (previousGlobalDiagnosticsSize === 0 && currentGlobalDiagnostics.length > 0) { return concatenate(currentGlobalDiagnostics, semanticDiagnostics); } return semanticDiagnostics; } forEach(host.getSourceFiles(), (file) => checkSourceFileWithEagerDiagnostics(file)); return diagnostics.getDiagnostics(); } function getGlobalDiagnostics() { ensurePendingDiagnosticWorkComplete(); return diagnostics.getGlobalDiagnostics(); } function getSymbolsInScope(location, meaning) { if (location.flags & 67108864) { return []; } const symbols = createSymbolTable(); let isStaticSymbol = false; populateSymbols(); symbols.delete("this"); return symbolsToArray(symbols); function populateSymbols() { while (location) { if (canHaveLocals(location) && location.locals && !isGlobalSourceFile(location)) { copySymbols(location.locals, meaning); } switch (location.kind) { case 308: if (!isExternalModule(location)) break; case 268: copyLocallyVisibleExportSymbols(getSymbolOfDeclaration(location).exports, meaning & 2623475); break; case 267: copySymbols(getSymbolOfDeclaration(location).exports, meaning & 8); break; case 232: const className = location.name; if (className) { copySymbol(location.symbol, meaning); } case 264: case 265: if (!isStaticSymbol) { copySymbols(getMembersOfSymbol(getSymbolOfDeclaration(location)), meaning & 788968); } break; case 219: const funcName = location.name; if (funcName) { copySymbol(location.symbol, meaning); } break; } if (introducesArgumentsExoticObject(location)) { copySymbol(argumentsSymbol, meaning); } isStaticSymbol = isStatic(location); location = location.parent; } copySymbols(globals, meaning); } function copySymbol(symbol, meaning2) { if (getCombinedLocalAndExportSymbolFlags(symbol) & meaning2) { const id = symbol.escapedName; if (!symbols.has(id)) { symbols.set(id, symbol); } } } function copySymbols(source, meaning2) { if (meaning2) { source.forEach((symbol) => { copySymbol(symbol, meaning2); }); } } function copyLocallyVisibleExportSymbols(source, meaning2) { if (meaning2) { source.forEach((symbol) => { if (!getDeclarationOfKind(symbol, 282) && !getDeclarationOfKind(symbol, 281) && symbol.escapedName !== "default") { copySymbol(symbol, meaning2); } }); } } } function isTypeDeclarationName(name) { return name.kind === 80 && isTypeDeclaration(name.parent) && getNameOfDeclaration(name.parent) === name; } function isTypeReferenceIdentifier(node) { while (node.parent.kind === 167) { node = node.parent; } return node.parent.kind === 184; } function isInNameOfExpressionWithTypeArguments(node) { while (node.parent.kind === 212) { node = node.parent; } return node.parent.kind === 234; } function forEachEnclosingClass(node, callback) { let result; let containingClass = getContainingClass(node); while (containingClass) { if (result = callback(containingClass)) break; containingClass = getContainingClass(containingClass); } return result; } function isNodeUsedDuringClassInitialization(node) { return !!findAncestor(node, (element) => { if (isConstructorDeclaration(element) && nodeIsPresent(element.body) || isPropertyDeclaration(element)) { return true; } else if (isClassLike(element) || isFunctionLikeDeclaration(element)) { return "quit"; } return false; }); } function isNodeWithinClass(node, classDeclaration) { return !!forEachEnclosingClass(node, (n) => n === classDeclaration); } function getLeftSideOfImportEqualsOrExportAssignment(nodeOnRightSide) { while (nodeOnRightSide.parent.kind === 167) { nodeOnRightSide = nodeOnRightSide.parent; } if (nodeOnRightSide.parent.kind === 272) { return nodeOnRightSide.parent.moduleReference === nodeOnRightSide ? nodeOnRightSide.parent : undefined; } if (nodeOnRightSide.parent.kind === 278) { return nodeOnRightSide.parent.expression === nodeOnRightSide ? nodeOnRightSide.parent : undefined; } return; } function isInRightSideOfImportOrExportAssignment(node) { return getLeftSideOfImportEqualsOrExportAssignment(node) !== undefined; } function getSpecialPropertyAssignmentSymbolFromEntityName(entityName) { const specialPropertyAssignmentKind = getAssignmentDeclarationKind(entityName.parent.parent); switch (specialPropertyAssignmentKind) { case 1: case 3: return getSymbolOfNode(entityName.parent); case 5: if (isPropertyAccessExpression(entityName.parent) && getLeftmostAccessExpression(entityName.parent) === entityName) { return; } case 4: case 2: return getSymbolOfDeclaration(entityName.parent.parent); } } function isImportTypeQualifierPart(node) { let parent2 = node.parent; while (isQualifiedName(parent2)) { node = parent2; parent2 = parent2.parent; } if (parent2 && parent2.kind === 206 && parent2.qualifier === node) { return parent2; } return; } function isThisPropertyAndThisTyped(node) { if (node.expression.kind === 110) { const container = getThisContainer(node, false, false); if (isFunctionLike(container)) { const containingLiteral = getContainingObjectLiteral(container); if (containingLiteral) { const contextualType = getApparentTypeOfContextualType(containingLiteral, undefined); const type = getThisTypeOfObjectLiteralFromContextualType(containingLiteral, contextualType); return type && !isTypeAny(type); } } } } function getSymbolOfNameOrPropertyAccessExpression(name) { if (isDeclarationName(name)) { return getSymbolOfNode(name.parent); } if (isInJSFile(name) && name.parent.kind === 212 && name.parent === name.parent.parent.left) { if (!isPrivateIdentifier(name) && !isJSDocMemberName(name) && !isThisPropertyAndThisTyped(name.parent)) { const specialPropertyAssignmentSymbol = getSpecialPropertyAssignmentSymbolFromEntityName(name); if (specialPropertyAssignmentSymbol) { return specialPropertyAssignmentSymbol; } } } if (name.parent.kind === 278 && isEntityNameExpression(name)) { const success = resolveEntityName(name, 111551 | 788968 | 1920 | 2097152, true); if (success && success !== unknownSymbol) { return success; } } else if (isEntityName(name) && isInRightSideOfImportOrExportAssignment(name)) { const importEqualsDeclaration = getAncestor(name, 272); Debug.assert(importEqualsDeclaration !== undefined); return getSymbolOfPartOfRightHandSideOfImportEquals(name, true); } if (isEntityName(name)) { const possibleImportNode = isImportTypeQualifierPart(name); if (possibleImportNode) { getTypeFromTypeNode(possibleImportNode); const sym = getNodeLinks(name).resolvedSymbol; return sym === unknownSymbol ? undefined : sym; } } while (isRightSideOfQualifiedNameOrPropertyAccessOrJSDocMemberName(name)) { name = name.parent; } if (isInNameOfExpressionWithTypeArguments(name)) { let meaning = 0; if (name.parent.kind === 234) { meaning = isPartOfTypeNode(name) ? 788968 : 111551; if (isExpressionWithTypeArgumentsInClassExtendsClause(name.parent)) { meaning |= 111551; } } else { meaning = 1920; } meaning |= 2097152; const entityNameSymbol = isEntityNameExpression(name) ? resolveEntityName(name, meaning, true) : undefined; if (entityNameSymbol) { return entityNameSymbol; } } if (name.parent.kind === 342) { return getParameterSymbolFromJSDoc(name.parent); } if (name.parent.kind === 169 && name.parent.parent.kind === 346) { Debug.assert(!isInJSFile(name)); const typeParameter = getTypeParameterFromJsDoc(name.parent); return typeParameter && typeParameter.symbol; } if (isExpressionNode(name)) { if (nodeIsMissing(name)) { return; } const isJSDoc2 = findAncestor(name, or(isJSDocLinkLike, isJSDocNameReference, isJSDocMemberName)); const meaning = isJSDoc2 ? 788968 | 1920 | 111551 : 111551; if (name.kind === 80) { if (isJSXTagName(name) && isJsxIntrinsicTagName(name)) { const symbol = getIntrinsicTagSymbol(name.parent); return symbol === unknownSymbol ? undefined : symbol; } const result = resolveEntityName(name, meaning, true, true, getHostSignatureFromJSDoc(name)); if (!result && isJSDoc2) { const container = findAncestor(name, or(isClassLike, isInterfaceDeclaration)); if (container) { return resolveJSDocMemberName(name, true, getSymbolOfDeclaration(container)); } } if (result && isJSDoc2) { const container = getJSDocHost(name); if (container && isEnumMember(container) && container === result.valueDeclaration) { return resolveEntityName(name, meaning, true, true, getSourceFileOfNode(container)) || result; } } return result; } else if (isPrivateIdentifier(name)) { return getSymbolForPrivateIdentifierExpression(name); } else if (name.kind === 212 || name.kind === 167) { const links = getNodeLinks(name); if (links.resolvedSymbol) { return links.resolvedSymbol; } if (name.kind === 212) { checkPropertyAccessExpression(name, 0); if (!links.resolvedSymbol) { links.resolvedSymbol = getApplicableIndexSymbol(checkExpressionCached(name.expression), getLiteralTypeFromPropertyName(name.name)); } } else { checkQualifiedName(name, 0); } if (!links.resolvedSymbol && isJSDoc2 && isQualifiedName(name)) { return resolveJSDocMemberName(name); } return links.resolvedSymbol; } else if (isJSDocMemberName(name)) { return resolveJSDocMemberName(name); } } else if (isEntityName(name) && isTypeReferenceIdentifier(name)) { const meaning = name.parent.kind === 184 ? 788968 : 1920; const symbol = resolveEntityName(name, meaning, true, true); return symbol && symbol !== unknownSymbol ? symbol : getUnresolvedSymbolForEntityName(name); } if (name.parent.kind === 183) { return resolveEntityName(name, 1, true); } return; } function getApplicableIndexSymbol(type, keyType) { const infos = getApplicableIndexInfos(type, keyType); if (infos.length && type.members) { const symbol = getIndexSymbolFromSymbolTable(resolveStructuredTypeMembers(type).members); if (infos === getIndexInfosOfType(type)) { return symbol; } else if (symbol) { const symbolLinks2 = getSymbolLinks(symbol); const declarationList = mapDefined(infos, (i) => i.declaration); const nodeListId = map(declarationList, getNodeId).join(","); if (!symbolLinks2.filteredIndexSymbolCache) { symbolLinks2.filteredIndexSymbolCache = /* @__PURE__ */ new Map; } if (symbolLinks2.filteredIndexSymbolCache.has(nodeListId)) { return symbolLinks2.filteredIndexSymbolCache.get(nodeListId); } else { const copy = createSymbol(131072, "__index"); copy.declarations = mapDefined(infos, (i) => i.declaration); copy.parent = type.aliasSymbol ? type.aliasSymbol : type.symbol ? type.symbol : getSymbolAtLocation(copy.declarations[0].parent); symbolLinks2.filteredIndexSymbolCache.set(nodeListId, copy); return copy; } } } } function resolveJSDocMemberName(name, ignoreErrors, container) { if (isEntityName(name)) { const meaning = 788968 | 1920 | 111551; let symbol = resolveEntityName(name, meaning, ignoreErrors, true, getHostSignatureFromJSDoc(name)); if (!symbol && isIdentifier(name) && container) { symbol = getMergedSymbol(getSymbol2(getExportsOfSymbol(container), name.escapedText, meaning)); } if (symbol) { return symbol; } } const left = isIdentifier(name) ? container : resolveJSDocMemberName(name.left, ignoreErrors, container); const right = isIdentifier(name) ? name.escapedText : name.right.escapedText; if (left) { const proto = left.flags & 111551 && getPropertyOfType(getTypeOfSymbol(left), "prototype"); const t = proto ? getTypeOfSymbol(proto) : getDeclaredTypeOfSymbol(left); return getPropertyOfType(t, right); } } function getSymbolAtLocation(node, ignoreErrors) { if (isSourceFile(node)) { return isExternalModule(node) ? getMergedSymbol(node.symbol) : undefined; } const { parent: parent2 } = node; const grandParent = parent2.parent; if (node.flags & 67108864) { return; } if (isDeclarationNameOrImportPropertyName(node)) { const parentSymbol = getSymbolOfDeclaration(parent2); return isImportOrExportSpecifier(node.parent) && node.parent.propertyName === node ? getImmediateAliasedSymbol(parentSymbol) : parentSymbol; } else if (isLiteralComputedPropertyDeclarationName(node)) { return getSymbolOfDeclaration(parent2.parent); } if (node.kind === 80) { if (isInRightSideOfImportOrExportAssignment(node)) { return getSymbolOfNameOrPropertyAccessExpression(node); } else if (parent2.kind === 209 && grandParent.kind === 207 && node === parent2.propertyName) { const typeOfPattern = getTypeOfNode(grandParent); const propertyDeclaration = getPropertyOfType(typeOfPattern, node.escapedText); if (propertyDeclaration) { return propertyDeclaration; } } else if (isMetaProperty(parent2) && parent2.name === node) { if (parent2.keywordToken === 105 && idText(node) === "target") { return checkNewTargetMetaProperty(parent2).symbol; } if (parent2.keywordToken === 102 && idText(node) === "meta") { return getGlobalImportMetaExpressionType().members.get("meta"); } return; } } switch (node.kind) { case 80: case 81: case 212: case 167: if (!isThisInTypeQuery(node)) { return getSymbolOfNameOrPropertyAccessExpression(node); } case 110: const container = getThisContainer(node, false, false); if (isFunctionLike(container)) { const sig = getSignatureFromDeclaration(container); if (sig.thisParameter) { return sig.thisParameter; } } if (isInExpressionContext(node)) { return checkExpression(node).symbol; } case 198: return getTypeFromThisTypeNode(node).symbol; case 108: return checkExpression(node).symbol; case 137: const constructorDeclaration = node.parent; if (constructorDeclaration && constructorDeclaration.kind === 177) { return constructorDeclaration.parent.symbol; } return; case 11: case 15: if (isExternalModuleImportEqualsDeclaration(node.parent.parent) && getExternalModuleImportEqualsDeclarationExpression(node.parent.parent) === node || (node.parent.kind === 273 || node.parent.kind === 279) && node.parent.moduleSpecifier === node || isInJSFile(node) && isJSDocImportTag(node.parent) && node.parent.moduleSpecifier === node || (isInJSFile(node) && isRequireCall(node.parent, false) || isImportCall(node.parent)) || isLiteralTypeNode(node.parent) && isLiteralImportTypeNode(node.parent.parent) && node.parent.parent.argument === node.parent) { return resolveExternalModuleName(node, node, ignoreErrors); } if (isCallExpression(parent2) && isBindableObjectDefinePropertyCall(parent2) && parent2.arguments[1] === node) { return getSymbolOfDeclaration(parent2); } case 9: const objectType = isElementAccessExpression(parent2) ? parent2.argumentExpression === node ? getTypeOfExpression(parent2.expression) : undefined : isLiteralTypeNode(parent2) && isIndexedAccessTypeNode(grandParent) ? getTypeFromTypeNode(grandParent.objectType) : undefined; return objectType && getPropertyOfType(objectType, escapeLeadingUnderscores(node.text)); case 90: case 100: case 39: case 86: return getSymbolOfNode(node.parent); case 206: return isLiteralImportTypeNode(node) ? getSymbolAtLocation(node.argument.literal, ignoreErrors) : undefined; case 95: return isExportAssignment(node.parent) ? Debug.checkDefined(node.parent.symbol) : undefined; case 102: if (isMetaProperty(node.parent) && node.parent.name.escapedText === "defer") { return; } case 105: return isMetaProperty(node.parent) ? checkMetaPropertyKeyword(node.parent).symbol : undefined; case 104: if (isBinaryExpression(node.parent)) { const type = getTypeOfExpression(node.parent.right); const hasInstanceMethodType = getSymbolHasInstanceMethodOfObjectType(type); return (hasInstanceMethodType == null ? undefined : hasInstanceMethodType.symbol) ?? type.symbol; } return; case 237: return checkExpression(node).symbol; case 296: if (isJSXTagName(node) && isJsxIntrinsicTagName(node)) { const symbol = getIntrinsicTagSymbol(node.parent); return symbol === unknownSymbol ? undefined : symbol; } default: return; } } function getIndexInfosAtLocation(node) { if (isIdentifier(node) && isPropertyAccessExpression(node.parent) && node.parent.name === node) { const keyType = getLiteralTypeFromPropertyName(node); const objectType = getTypeOfExpression(node.parent.expression); const objectTypes = objectType.flags & 134217728 ? objectType.types : [objectType]; return flatMap(objectTypes, (t) => filter(getIndexInfosOfType(t), (info) => isApplicableIndexType(keyType, info.keyType))); } return; } function getShorthandAssignmentValueSymbol(location) { if (location && location.kind === 305) { return resolveEntityName(location.name, 111551 | 2097152, true); } return; } function getExportSpecifierLocalTargetSymbol(node) { if (isExportSpecifier(node)) { const name = node.propertyName || node.name; return node.parent.parent.moduleSpecifier ? getExternalModuleMember(node.parent.parent, node) : name.kind === 11 ? undefined : resolveEntityName(name, 111551 | 788968 | 1920 | 2097152, true); } else { return resolveEntityName(node, 111551 | 788968 | 1920 | 2097152, true); } } function getTypeOfNode(node) { if (isSourceFile(node) && !isExternalModule(node)) { return errorType; } if (node.flags & 67108864) { return errorType; } const classDecl = tryGetClassImplementingOrExtendingExpressionWithTypeArguments(node); const classType = classDecl && getDeclaredTypeOfClassOrInterface(getSymbolOfDeclaration(classDecl.class)); if (isPartOfTypeNode(node)) { const typeFromTypeNode = getTypeFromTypeNode(node); return classType ? getTypeWithThisArgument(typeFromTypeNode, classType.thisType) : typeFromTypeNode; } if (isExpressionNode(node)) { return getRegularTypeOfExpression(node); } if (classType && !classDecl.isImplements) { const baseType = firstOrUndefined(getBaseTypes(classType)); return baseType ? getTypeWithThisArgument(baseType, classType.thisType) : errorType; } if (isTypeDeclaration(node)) { const symbol = getSymbolOfDeclaration(node); return getDeclaredTypeOfSymbol(symbol); } if (isTypeDeclarationName(node)) { const symbol = getSymbolAtLocation(node); return symbol ? getDeclaredTypeOfSymbol(symbol) : errorType; } if (isBindingElement(node)) { return getTypeForVariableLikeDeclaration(node, true, 0) || errorType; } if (isDeclaration(node)) { const symbol = getSymbolOfDeclaration(node); return symbol ? getTypeOfSymbol(symbol) : errorType; } if (isDeclarationNameOrImportPropertyName(node)) { const symbol = getSymbolAtLocation(node); if (symbol) { return getTypeOfSymbol(symbol); } return errorType; } if (isBindingPattern(node)) { return getTypeForVariableLikeDeclaration(node.parent, true, 0) || errorType; } if (isInRightSideOfImportOrExportAssignment(node)) { const symbol = getSymbolAtLocation(node); if (symbol) { const declaredType = getDeclaredTypeOfSymbol(symbol); return !isErrorType(declaredType) ? declaredType : getTypeOfSymbol(symbol); } } if (isMetaProperty(node.parent) && node.parent.keywordToken === node.kind) { return checkMetaPropertyKeyword(node.parent); } if (isImportAttributes(node)) { return getGlobalImportAttributesType(false); } return errorType; } function getTypeOfAssignmentPattern(expr) { Debug.assert(expr.kind === 211 || expr.kind === 210); if (expr.parent.kind === 251) { const iteratedType = checkRightHandSideOfForOf(expr.parent); return checkDestructuringAssignment(expr, iteratedType || errorType); } if (expr.parent.kind === 227) { const iteratedType = getTypeOfExpression(expr.parent.right); return checkDestructuringAssignment(expr, iteratedType || errorType); } if (expr.parent.kind === 304) { const node2 = cast(expr.parent.parent, isObjectLiteralExpression); const typeOfParentObjectLiteral = getTypeOfAssignmentPattern(node2) || errorType; const propertyIndex = indexOfNode(node2.properties, expr.parent); return checkObjectLiteralDestructuringPropertyAssignment(node2, typeOfParentObjectLiteral, propertyIndex); } const node = cast(expr.parent, isArrayLiteralExpression); const typeOfArrayLiteral = getTypeOfAssignmentPattern(node) || errorType; const elementType = checkIteratedTypeOrElementType(65, typeOfArrayLiteral, undefinedType, expr.parent) || errorType; return checkArrayLiteralDestructuringElementAssignment(node, typeOfArrayLiteral, node.elements.indexOf(expr), elementType); } function getPropertySymbolOfDestructuringAssignment(location) { const typeOfObjectLiteral = getTypeOfAssignmentPattern(cast(location.parent.parent, isAssignmentPattern)); return typeOfObjectLiteral && getPropertyOfType(typeOfObjectLiteral, location.escapedText); } function getRegularTypeOfExpression(expr) { if (isRightSideOfQualifiedNameOrPropertyAccess(expr)) { expr = expr.parent; } return getRegularTypeOfLiteralType(getTypeOfExpression(expr)); } function getParentTypeOfClassElement(node) { const classSymbol = getSymbolOfNode(node.parent); return isStatic(node) ? getTypeOfSymbol(classSymbol) : getDeclaredTypeOfSymbol(classSymbol); } function getClassElementPropertyKeyType(element) { const name = element.name; switch (name.kind) { case 80: return getStringLiteralType(idText(name)); case 9: case 11: return getStringLiteralType(name.text); case 168: const nameType = checkComputedPropertyName(name); return isTypeAssignableToKind(nameType, 16896) ? nameType : stringType; default: return Debug.fail("Unsupported property name."); } } function getAugmentedPropertiesOfType(type) { type = getApparentType(type); const propsByName = createSymbolTable(getPropertiesOfType(type)); const functionType = getSignaturesOfType(type, 0).length ? globalCallableFunctionType : getSignaturesOfType(type, 1).length ? globalNewableFunctionType : undefined; if (functionType) { forEach(getPropertiesOfType(functionType), (p) => { if (!propsByName.has(p.escapedName)) { propsByName.set(p.escapedName, p); } }); } return getNamedMembers(propsByName, undefined); } function typeHasCallOrConstructSignatures(type) { return getSignaturesOfType(type, 0).length !== 0 || getSignaturesOfType(type, 1).length !== 0; } function getRootSymbols(symbol) { const roots = getImmediateRootSymbols(symbol); return roots ? flatMap(roots, getRootSymbols) : [symbol]; } function getImmediateRootSymbols(symbol) { if (getCheckFlags(symbol) & 6) { return mapDefined(getSymbolLinks(symbol).containingType.types, (type) => getPropertyOfType(type, symbol.escapedName)); } else if (symbol.flags & 33554432) { const { links: { leftSpread, rightSpread, syntheticOrigin } } = symbol; return leftSpread ? [leftSpread, rightSpread] : syntheticOrigin ? [syntheticOrigin] : singleElementArray(tryGetTarget(symbol)); } return; } function tryGetTarget(symbol) { let target; let next = symbol; while (next = getSymbolLinks(next).target) { target = next; } return target; } function isArgumentsLocalBinding(nodeIn) { if (isGeneratedIdentifier(nodeIn)) return false; const node = getParseTreeNode(nodeIn, isIdentifier); if (!node) return false; const parent2 = node.parent; if (!parent2) return false; const isPropertyName2 = (isPropertyAccessExpression(parent2) || isPropertyAssignment(parent2)) && parent2.name === node; return !isPropertyName2 && getReferencedValueSymbol(node) === argumentsSymbol; } function isNameOfModuleOrEnumDeclaration(node) { return isModuleOrEnumDeclaration(node.parent) && node === node.parent.name; } function getReferencedExportContainer(nodeIn, prefixLocals) { var _a; const node = getParseTreeNode(nodeIn, isIdentifier); if (node) { let symbol = getReferencedValueSymbol(node, isNameOfModuleOrEnumDeclaration(node)); if (symbol) { if (symbol.flags & 1048576) { const exportSymbol = getMergedSymbol(symbol.exportSymbol); if (!prefixLocals && exportSymbol.flags & 944 && !(exportSymbol.flags & 3)) { return; } symbol = exportSymbol; } const parentSymbol = getParentOfSymbol(symbol); if (parentSymbol) { if (parentSymbol.flags & 512 && ((_a = parentSymbol.valueDeclaration) == null ? undefined : _a.kind) === 308) { const symbolFile = parentSymbol.valueDeclaration; const referenceFile = getSourceFileOfNode(node); const symbolIsUmdExport = symbolFile !== referenceFile; return symbolIsUmdExport ? undefined : symbolFile; } return findAncestor(node.parent, (n) => isModuleOrEnumDeclaration(n) && getSymbolOfDeclaration(n) === parentSymbol); } } } } function getReferencedImportDeclaration(nodeIn) { const specifier = getIdentifierGeneratedImportReference(nodeIn); if (specifier) { return specifier; } const node = getParseTreeNode(nodeIn, isIdentifier); if (node) { const symbol = getReferencedValueOrAliasSymbol(node); if (isNonLocalAlias(symbol, 111551) && !getTypeOnlyAliasDeclaration(symbol, 111551)) { return getDeclarationOfAliasSymbol(symbol); } } return; } function isSymbolOfDestructuredElementOfCatchBinding(symbol) { return symbol.valueDeclaration && isBindingElement(symbol.valueDeclaration) && walkUpBindingElementsAndPatterns(symbol.valueDeclaration).parent.kind === 300; } function isSymbolOfDeclarationWithCollidingName(symbol) { if (symbol.flags & 418 && symbol.valueDeclaration && !isSourceFile(symbol.valueDeclaration)) { const links = getSymbolLinks(symbol); if (links.isDeclarationWithCollidingName === undefined) { const container = getEnclosingBlockScopeContainer(symbol.valueDeclaration); if (isStatementWithLocals(container) || isSymbolOfDestructuredElementOfCatchBinding(symbol)) { if (resolveName(container.parent, symbol.escapedName, 111551, undefined, false)) { links.isDeclarationWithCollidingName = true; } else if (hasNodeCheckFlag(symbol.valueDeclaration, 16384)) { const isDeclaredInLoop = hasNodeCheckFlag(symbol.valueDeclaration, 32768); const inLoopInitializer = isIterationStatement(container, false); const inLoopBodyBlock = container.kind === 242 && isIterationStatement(container.parent, false); links.isDeclarationWithCollidingName = !isBlockScopedContainerTopLevel(container) && (!isDeclaredInLoop || !inLoopInitializer && !inLoopBodyBlock); } else { links.isDeclarationWithCollidingName = false; } } } return links.isDeclarationWithCollidingName; } return false; } function getReferencedDeclarationWithCollidingName(nodeIn) { if (!isGeneratedIdentifier(nodeIn)) { const node = getParseTreeNode(nodeIn, isIdentifier); if (node) { const symbol = getReferencedValueSymbol(node); if (symbol && isSymbolOfDeclarationWithCollidingName(symbol)) { return symbol.valueDeclaration; } } } return; } function isDeclarationWithCollidingName(nodeIn) { const node = getParseTreeNode(nodeIn, isDeclaration); if (node) { const symbol = getSymbolOfDeclaration(node); if (symbol) { return isSymbolOfDeclarationWithCollidingName(symbol); } } return false; } function isValueAliasDeclaration(node) { Debug.assert(canCollectSymbolAliasAccessabilityData); switch (node.kind) { case 272: return isAliasResolvedToValue(getSymbolOfDeclaration(node)); case 274: case 275: case 277: case 282: const symbol = getSymbolOfDeclaration(node); return !!symbol && isAliasResolvedToValue(symbol, true); case 279: const exportClause = node.exportClause; return !!exportClause && (isNamespaceExport(exportClause) || some(exportClause.elements, isValueAliasDeclaration)); case 278: return node.expression && node.expression.kind === 80 ? isAliasResolvedToValue(getSymbolOfDeclaration(node), true) : true; } return false; } function isTopLevelValueImportEqualsWithEntityName(nodeIn) { const node = getParseTreeNode(nodeIn, isImportEqualsDeclaration); if (node === undefined || node.parent.kind !== 308 || !isInternalModuleImportEqualsDeclaration(node)) { return false; } const isValue = isAliasResolvedToValue(getSymbolOfDeclaration(node)); return isValue && node.moduleReference && !nodeIsMissing(node.moduleReference); } function isAliasResolvedToValue(symbol, excludeTypeOnlyValues) { if (!symbol) { return false; } const container = getSourceFileOfNode(symbol.valueDeclaration); const fileSymbol = container && getSymbolOfDeclaration(container); resolveExternalModuleSymbol(fileSymbol); const target = getExportSymbolOfValueSymbolIfExported(resolveAlias(symbol)); if (target === unknownSymbol) { return !excludeTypeOnlyValues || !getTypeOnlyAliasDeclaration(symbol); } return !!(getSymbolFlags(symbol, excludeTypeOnlyValues, true) & 111551) && (shouldPreserveConstEnums(compilerOptions) || !isConstEnumOrConstEnumOnlyModule(target)); } function isConstEnumOrConstEnumOnlyModule(s) { return isConstEnumSymbol(s) || !!s.constEnumOnlyModule; } function isReferencedAliasDeclaration(node, checkChildren) { Debug.assert(canCollectSymbolAliasAccessabilityData); if (isAliasSymbolDeclaration(node)) { const symbol = getSymbolOfDeclaration(node); const links = symbol && getSymbolLinks(symbol); if (links == null ? undefined : links.referenced) { return true; } const target = getSymbolLinks(symbol).aliasTarget; if (target && getEffectiveModifierFlags(node) & 32 && getSymbolFlags(target) & 111551 && (shouldPreserveConstEnums(compilerOptions) || !isConstEnumOrConstEnumOnlyModule(target))) { return true; } } if (checkChildren) { return !!forEachChild(node, (node2) => isReferencedAliasDeclaration(node2, checkChildren)); } return false; } function isImplementationOfOverload(node) { if (nodeIsPresent(node.body)) { if (isGetAccessor(node) || isSetAccessor(node)) return false; const symbol = getSymbolOfDeclaration(node); const signaturesOfSymbol = getSignaturesOfSymbol(symbol); return signaturesOfSymbol.length > 1 || signaturesOfSymbol.length === 1 && signaturesOfSymbol[0].declaration !== node; } return false; } function declaredParameterTypeContainsUndefined(parameter) { const typeNode = getNonlocalEffectiveTypeAnnotationNode(parameter); if (!typeNode) return false; const type = getTypeFromTypeNode(typeNode); return isErrorType(type) || containsUndefinedType(type); } function requiresAddingImplicitUndefined(parameter, enclosingDeclaration) { return (isRequiredInitializedParameter(parameter, enclosingDeclaration) || isOptionalUninitializedParameterProperty(parameter)) && !declaredParameterTypeContainsUndefined(parameter); } function isRequiredInitializedParameter(parameter, enclosingDeclaration) { if (!strictNullChecks || isOptionalParameter(parameter) || isJSDocParameterTag(parameter) || !parameter.initializer) { return false; } if (hasSyntacticModifier(parameter, 31)) { return !!enclosingDeclaration && isFunctionLikeDeclaration(enclosingDeclaration); } return true; } function isOptionalUninitializedParameterProperty(parameter) { return strictNullChecks && isOptionalParameter(parameter) && (isJSDocParameterTag(parameter) || !parameter.initializer) && hasSyntacticModifier(parameter, 31); } function isExpandoFunctionDeclaration(node) { const declaration = getParseTreeNode(node, (n) => isFunctionDeclaration(n) || isVariableDeclaration(n)); if (!declaration) { return false; } let symbol; if (isVariableDeclaration(declaration)) { if (declaration.type || !isInJSFile(declaration) && !isVarConstLike2(declaration)) { return false; } const initializer = getDeclaredExpandoInitializer(declaration); if (!initializer || !canHaveSymbol(initializer)) { return false; } symbol = getSymbolOfDeclaration(initializer); } else { symbol = getSymbolOfDeclaration(declaration); } if (!symbol || !(symbol.flags & 16 | 3)) { return false; } return !!forEachEntry(getExportsOfSymbol(symbol), (p) => p.flags & 111551 && isExpandoPropertyDeclaration(p.valueDeclaration)); } function getPropertiesOfContainerFunction(node) { const declaration = getParseTreeNode(node, isFunctionDeclaration); if (!declaration) { return emptyArray; } const symbol = getSymbolOfDeclaration(declaration); return symbol && getPropertiesOfType(getTypeOfSymbol(symbol)) || emptyArray; } function getNodeCheckFlags(node) { var _a; const nodeId = node.id || 0; if (nodeId < 0 || nodeId >= nodeLinks.length) return 0; return ((_a = nodeLinks[nodeId]) == null ? undefined : _a.flags) || 0; } function hasNodeCheckFlag(node, flag) { calculateNodeCheckFlagWorker(node, flag); return !!(getNodeCheckFlags(node) & flag); } function calculateNodeCheckFlagWorker(node, flag) { if (!compilerOptions.noCheck && canIncludeBindAndCheckDiagnostics(getSourceFileOfNode(node), compilerOptions)) { return; } const links = getNodeLinks(node); if (links.calculatedFlags & flag) { return; } switch (flag) { case 16: case 32: return checkSingleSuperExpression(node); case 128: case 256: case 2097152: return checkChildSuperExpressions(node); case 512: case 8192: case 65536: case 262144: return checkChildIdentifiers(node); case 536870912: return checkSingleIdentifier(node); case 4096: case 32768: case 16384: return checkContainingBlockScopeBindingUses(node); default: return Debug.assertNever(flag, `Unhandled node check flag calculation: ${Debug.formatNodeCheckFlags(flag)}`); } function forEachNodeRecursively(root, cb) { const rootResult = cb(root, root.parent); if (rootResult === "skip") return; if (rootResult) return rootResult; return forEachChildRecursively(root, cb); } function checkSuperExpressions(node2) { const links2 = getNodeLinks(node2); if (links2.calculatedFlags & flag) return "skip"; links2.calculatedFlags |= 128 | 256 | 2097152; checkSingleSuperExpression(node2); return; } function checkChildSuperExpressions(node2) { forEachNodeRecursively(node2, checkSuperExpressions); } function checkSingleSuperExpression(node2) { const nodeLinks2 = getNodeLinks(node2); nodeLinks2.calculatedFlags |= 16 | 32; if (node2.kind === 108) { checkSuperExpression(node2); } } function checkIdentifiers(node2) { const links2 = getNodeLinks(node2); if (links2.calculatedFlags & flag) return "skip"; links2.calculatedFlags |= 512 | 8192 | 65536 | 262144; checkSingleIdentifier(node2); return; } function checkChildIdentifiers(node2) { forEachNodeRecursively(node2, checkIdentifiers); } function isExpressionNodeOrShorthandPropertyAssignmentName(node2) { return isExpressionNode(node2) || isShorthandPropertyAssignment(node2.parent) && (node2.parent.objectAssignmentInitializer ?? node2.parent.name) === node2; } function checkSingleIdentifier(node2) { const nodeLinks2 = getNodeLinks(node2); nodeLinks2.calculatedFlags |= 536870912; if (isIdentifier(node2)) { nodeLinks2.calculatedFlags |= 32768 | 16384; if (isExpressionNodeOrShorthandPropertyAssignmentName(node2) && !(isPropertyAccessExpression(node2.parent) && node2.parent.name === node2)) { const s = getResolvedSymbol(node2); if (s && s !== unknownSymbol) { checkIdentifierCalculateNodeCheckFlags(node2, s); } } } } function checkBlockScopeBindings(node2) { const links2 = getNodeLinks(node2); if (links2.calculatedFlags & flag) return "skip"; links2.calculatedFlags |= 4096 | 32768 | 16384; checkSingleBlockScopeBinding(node2); return; } function checkContainingBlockScopeBindingUses(node2) { const scope = getEnclosingBlockScopeContainer(isDeclarationName(node2) ? node2.parent : node2); forEachNodeRecursively(scope, checkBlockScopeBindings); } function checkSingleBlockScopeBinding(node2) { checkSingleIdentifier(node2); if (isComputedPropertyName(node2)) { checkComputedPropertyName(node2); } if (isPrivateIdentifier(node2) && isClassElement(node2.parent)) { setNodeLinksForPrivateIdentifierScope(node2.parent); } } } function getEnumMemberValue(node) { computeEnumMemberValues(node.parent); return getNodeLinks(node).enumMemberValue ?? evaluatorResult(undefined); } function canHaveConstantValue(node) { switch (node.kind) { case 307: case 212: case 213: return true; } return false; } function getConstantValue2(node) { if (node.kind === 307) { return getEnumMemberValue(node).value; } if (!getNodeLinks(node).resolvedSymbol) { checkExpressionCached(node); } const symbol = getNodeLinks(node).resolvedSymbol || (isEntityNameExpression(node) ? resolveEntityName(node, 111551, true) : undefined); if (symbol && symbol.flags & 8) { const member = symbol.valueDeclaration; if (isEnumConst(member.parent)) { return getEnumMemberValue(member).value; } } return; } function isFunctionType(type) { return !!(type.flags & 1048576) && getSignaturesOfType(type, 0).length > 0; } function getTypeReferenceSerializationKind(typeNameIn, location) { var _a; const typeName = getParseTreeNode(typeNameIn, isEntityName); if (!typeName) return 0; if (location) { location = getParseTreeNode(location); if (!location) return 0; } let isTypeOnly = false; if (isQualifiedName(typeName)) { const rootValueSymbol = resolveEntityName(getFirstIdentifier(typeName), 111551, true, true, location); isTypeOnly = !!((_a = rootValueSymbol == null ? undefined : rootValueSymbol.declarations) == null ? undefined : _a.every(isTypeOnlyImportOrExportDeclaration)); } const valueSymbol = resolveEntityName(typeName, 111551, true, true, location); const resolvedValueSymbol = valueSymbol && valueSymbol.flags & 2097152 ? resolveAlias(valueSymbol) : valueSymbol; isTypeOnly || (isTypeOnly = !!(valueSymbol && getTypeOnlyAliasDeclaration(valueSymbol, 111551))); const typeSymbol = resolveEntityName(typeName, 788968, true, true, location); const resolvedTypeSymbol = typeSymbol && typeSymbol.flags & 2097152 ? resolveAlias(typeSymbol) : typeSymbol; if (!valueSymbol) { isTypeOnly || (isTypeOnly = !!(typeSymbol && getTypeOnlyAliasDeclaration(typeSymbol, 788968))); } if (resolvedValueSymbol && resolvedValueSymbol === resolvedTypeSymbol) { const globalPromiseSymbol = getGlobalPromiseConstructorSymbol(false); if (globalPromiseSymbol && resolvedValueSymbol === globalPromiseSymbol) { return 9; } const constructorType = getTypeOfSymbol(resolvedValueSymbol); if (constructorType && isConstructorType(constructorType)) { return isTypeOnly ? 10 : 1; } } if (!resolvedTypeSymbol) { return isTypeOnly ? 11 : 0; } const type = getDeclaredTypeOfSymbol(resolvedTypeSymbol); if (isErrorType(type)) { return isTypeOnly ? 11 : 0; } else if (type.flags & 3) { return 11; } else if (isTypeAssignableToKind(type, 16 | 12 | 262144)) { return 2; } else if (isTypeAssignableToKind(type, 8448)) { return 6; } else if (isTypeAssignableToKind(type, 67648)) { return 3; } else if (isTypeAssignableToKind(type, 4224)) { return 4; } else if (isTypeAssignableToKind(type, 12583968)) { return 5; } else if (isTupleType(type)) { return 7; } else if (isTypeAssignableToKind(type, 16896)) { return 8; } else if (isFunctionType(type)) { return 10; } else if (isArrayType(type)) { return 7; } else { return 11; } } function createTypeOfDeclaration(declarationIn, enclosingDeclaration, flags, internalFlags, tracker) { const declaration = getParseTreeNode(declarationIn, hasInferredType); if (!declaration) { return factory.createToken(133); } const symbol = getSymbolOfDeclaration(declaration); return nodeBuilder.serializeTypeForDeclaration(declaration, symbol, enclosingDeclaration, flags | 1024, internalFlags, tracker); } function getAllAccessorDeclarationsForDeclaration(accessor) { accessor = getParseTreeNode(accessor, isGetOrSetAccessorDeclaration); const otherKind = accessor.kind === 179 ? 178 : 179; const otherAccessor = getDeclarationOfKind(getSymbolOfDeclaration(accessor), otherKind); const firstAccessor = otherAccessor && otherAccessor.pos < accessor.pos ? otherAccessor : accessor; const secondAccessor = otherAccessor && otherAccessor.pos < accessor.pos ? accessor : otherAccessor; const setAccessor = accessor.kind === 179 ? accessor : otherAccessor; const getAccessor = accessor.kind === 178 ? accessor : otherAccessor; return { firstAccessor, secondAccessor, setAccessor, getAccessor }; } function createReturnTypeOfSignatureDeclaration(signatureDeclarationIn, enclosingDeclaration, flags, internalFlags, tracker) { const signatureDeclaration = getParseTreeNode(signatureDeclarationIn, isFunctionLike); if (!signatureDeclaration) { return factory.createToken(133); } return nodeBuilder.serializeReturnTypeForSignature(signatureDeclaration, enclosingDeclaration, flags | 1024, internalFlags, tracker); } function createTypeOfExpression(exprIn, enclosingDeclaration, flags, internalFlags, tracker) { const expr = getParseTreeNode(exprIn, isExpression); if (!expr) { return factory.createToken(133); } return nodeBuilder.serializeTypeForExpression(expr, enclosingDeclaration, flags | 1024, internalFlags, tracker); } function hasGlobalName(name) { return globals.has(escapeLeadingUnderscores(name)); } function getReferencedValueSymbol(reference, startInDeclarationContainer) { const resolvedSymbol = getNodeLinks(reference).resolvedSymbol; if (resolvedSymbol) { return resolvedSymbol; } let location = reference; if (startInDeclarationContainer) { const parent2 = reference.parent; if (isDeclaration(parent2) && reference === parent2.name) { location = getDeclarationContainer(parent2); } } return resolveName(location, reference.escapedText, 111551 | 1048576 | 2097152, undefined, true); } function getReferencedValueOrAliasSymbol(reference) { const resolvedSymbol = getNodeLinks(reference).resolvedSymbol; if (resolvedSymbol && resolvedSymbol !== unknownSymbol) { return resolvedSymbol; } return resolveName(reference, reference.escapedText, 111551 | 1048576 | 2097152, undefined, true, undefined); } function getReferencedValueDeclaration(referenceIn) { if (!isGeneratedIdentifier(referenceIn)) { const reference = getParseTreeNode(referenceIn, isIdentifier); if (reference) { const symbol = getReferencedValueSymbol(reference); if (symbol) { return getExportSymbolOfValueSymbolIfExported(symbol).valueDeclaration; } } } return; } function getReferencedValueDeclarations(referenceIn) { if (!isGeneratedIdentifier(referenceIn)) { const reference = getParseTreeNode(referenceIn, isIdentifier); if (reference) { const symbol = getReferencedValueSymbol(reference); if (symbol) { return filter(getExportSymbolOfValueSymbolIfExported(symbol).declarations, (declaration) => { switch (declaration.kind) { case 261: case 170: case 209: case 173: case 304: case 305: case 307: case 211: case 263: case 219: case 220: case 264: case 232: case 267: case 175: case 178: case 179: case 268: return true; } return false; }); } } } return; } function isLiteralConstDeclaration(node) { if (isDeclarationReadonly(node) || isVariableDeclaration(node) && isVarConstLike2(node)) { return isFreshLiteralType(getTypeOfSymbol(getSymbolOfDeclaration(node))); } return false; } function literalTypeToNode(type, enclosing, tracker) { const enumResult = type.flags & 98304 ? nodeBuilder.symbolToExpression(type.symbol, 111551, enclosing, undefined, undefined, tracker) : type === trueType ? factory.createTrue() : type === falseType && factory.createFalse(); if (enumResult) return enumResult; const literalValue = type.value; return typeof literalValue === "object" ? factory.createBigIntLiteral(literalValue) : typeof literalValue === "string" ? factory.createStringLiteral(literalValue) : literalValue < 0 ? factory.createPrefixUnaryExpression(41, factory.createNumericLiteral(-literalValue)) : factory.createNumericLiteral(literalValue); } function createLiteralConstValue(node, tracker) { const type = getTypeOfSymbol(getSymbolOfDeclaration(node)); return literalTypeToNode(type, node, tracker); } function getJsxFactoryEntity(location) { return location ? (getJsxNamespace(location), getSourceFileOfNode(location).localJsxFactory || _jsxFactoryEntity) : _jsxFactoryEntity; } function getJsxFragmentFactoryEntity(location) { if (location) { const file = getSourceFileOfNode(location); if (file) { if (file.localJsxFragmentFactory) { return file.localJsxFragmentFactory; } const jsxFragPragmas = file.pragmas.get("jsxfrag"); const jsxFragPragma = isArray(jsxFragPragmas) ? jsxFragPragmas[0] : jsxFragPragmas; if (jsxFragPragma) { file.localJsxFragmentFactory = parseIsolatedEntityName(jsxFragPragma.arguments.factory, languageVersion); return file.localJsxFragmentFactory; } } } if (compilerOptions.jsxFragmentFactory) { return parseIsolatedEntityName(compilerOptions.jsxFragmentFactory, languageVersion); } } function getNonlocalEffectiveTypeAnnotationNode(node) { const direct = getEffectiveTypeAnnotationNode(node); if (direct) { return direct; } if (node.kind === 170 && node.parent.kind === 179) { const other = getAllAccessorDeclarationsForDeclaration(node.parent).getAccessor; if (other) { return getEffectiveReturnTypeNode(other); } } return; } function createResolver() { return { getReferencedExportContainer, getReferencedImportDeclaration, getReferencedDeclarationWithCollidingName, isDeclarationWithCollidingName, isValueAliasDeclaration: (nodeIn) => { const node = getParseTreeNode(nodeIn); return node && canCollectSymbolAliasAccessabilityData ? isValueAliasDeclaration(node) : true; }, hasGlobalName, isReferencedAliasDeclaration: (nodeIn, checkChildren) => { const node = getParseTreeNode(nodeIn); return node && canCollectSymbolAliasAccessabilityData ? isReferencedAliasDeclaration(node, checkChildren) : true; }, hasNodeCheckFlag: (nodeIn, flag) => { const node = getParseTreeNode(nodeIn); if (!node) return false; return hasNodeCheckFlag(node, flag); }, isTopLevelValueImportEqualsWithEntityName, isDeclarationVisible, isImplementationOfOverload, requiresAddingImplicitUndefined, isExpandoFunctionDeclaration, getPropertiesOfContainerFunction, createTypeOfDeclaration, createReturnTypeOfSignatureDeclaration, createTypeOfExpression, createLiteralConstValue, isSymbolAccessible, isEntityNameVisible, getConstantValue: (nodeIn) => { const node = getParseTreeNode(nodeIn, canHaveConstantValue); return node ? getConstantValue2(node) : undefined; }, getEnumMemberValue: (nodeIn) => { const node = getParseTreeNode(nodeIn, isEnumMember); return node ? getEnumMemberValue(node) : undefined; }, collectLinkedAliases, markLinkedReferences: (nodeIn) => { const node = getParseTreeNode(nodeIn); return node && markLinkedReferences(node, 0); }, getReferencedValueDeclaration, getReferencedValueDeclarations, getTypeReferenceSerializationKind, isOptionalParameter, isArgumentsLocalBinding, getExternalModuleFileFromDeclaration: (nodeIn) => { const node = getParseTreeNode(nodeIn, hasPossibleExternalModuleReference); return node && getExternalModuleFileFromDeclaration(node); }, isLiteralConstDeclaration, isLateBound: (nodeIn) => { const node = getParseTreeNode(nodeIn, isDeclaration); const symbol = node && getSymbolOfDeclaration(node); return !!(symbol && getCheckFlags(symbol) & 4096); }, getJsxFactoryEntity, getJsxFragmentFactoryEntity, isBindingCapturedByNode: (node, decl) => { const parseNode = getParseTreeNode(node); const parseDecl = getParseTreeNode(decl); return !!parseNode && !!parseDecl && (isVariableDeclaration(parseDecl) || isBindingElement(parseDecl)) && isBindingCapturedByNode(parseNode, parseDecl); }, getDeclarationStatementsForSourceFile: (node, flags, internalFlags, tracker) => { const n = getParseTreeNode(node); Debug.assert(n && n.kind === 308, "Non-sourcefile node passed into getDeclarationsForSourceFile"); const sym = getSymbolOfDeclaration(node); if (!sym) { return !node.locals ? [] : nodeBuilder.symbolTableToDeclarationStatements(node.locals, node, flags, internalFlags, tracker); } resolveExternalModuleSymbol(sym); return !sym.exports ? [] : nodeBuilder.symbolTableToDeclarationStatements(sym.exports, node, flags, internalFlags, tracker); }, isImportRequiredByAugmentation, isDefinitelyReferenceToGlobalSymbolObject, createLateBoundIndexSignatures: (cls, enclosing, flags, internalFlags, tracker) => { const sym = cls.symbol; const staticInfos = getIndexInfosOfType(getTypeOfSymbol(sym)); const instanceIndexSymbol = getIndexSymbol(sym); const instanceInfos = instanceIndexSymbol && getIndexInfosOfIndexSymbol(instanceIndexSymbol, arrayFrom(getMembersOfSymbol(sym).values())); let result; for (const infoList of [staticInfos, instanceInfos]) { if (!length(infoList)) continue; result || (result = []); for (const info of infoList) { if (info.declaration) continue; if (info === anyBaseTypeIndexInfo) continue; if (info.components) { const allComponentComputedNamesSerializable = every(info.components, (e) => { var _a; return !!(e.name && isComputedPropertyName(e.name) && isEntityNameExpression(e.name.expression) && enclosing && ((_a = isEntityNameVisible(e.name.expression, enclosing, false)) == null ? undefined : _a.accessibility) === 0); }); if (allComponentComputedNamesSerializable) { const newComponents = filter(info.components, (e) => { return !hasLateBindableName(e); }); result.push(...map(newComponents, (e) => { trackComputedName(e.name.expression); const mods = infoList === staticInfos ? [factory.createModifier(126)] : undefined; return factory.createPropertyDeclaration(append(mods, info.isReadonly ? factory.createModifier(148) : undefined), e.name, (isPropertySignature(e) || isPropertyDeclaration(e) || isMethodSignature(e) || isMethodDeclaration(e) || isGetAccessor(e) || isSetAccessor(e)) && e.questionToken ? factory.createToken(58) : undefined, nodeBuilder.typeToTypeNode(getTypeOfSymbol(e.symbol), enclosing, flags, internalFlags, tracker), undefined); })); continue; } } const node = nodeBuilder.indexInfoToIndexSignatureDeclaration(info, enclosing, flags, internalFlags, tracker); if (node && infoList === staticInfos) { (node.modifiers || (node.modifiers = factory.createNodeArray())).unshift(factory.createModifier(126)); } if (node) { result.push(node); } } } return result; function trackComputedName(accessExpression) { if (!tracker.trackSymbol) return; const firstIdentifier = getFirstIdentifier(accessExpression); const name = resolveName(firstIdentifier, firstIdentifier.escapedText, 111551 | 1048576, undefined, true); if (name) { tracker.trackSymbol(name, enclosing, 111551); } } }, symbolToDeclarations: (symbol, meaning, flags, maximumLength, verbosityLevel, out) => { return nodeBuilder.symbolToDeclarations(symbol, meaning, flags, maximumLength, verbosityLevel, out); } }; function isImportRequiredByAugmentation(node) { const file = getSourceFileOfNode(node); if (!file.symbol) return false; const importTarget = getExternalModuleFileFromDeclaration(node); if (!importTarget) return false; if (importTarget === file) return false; const exports22 = getExportsOfModule(file.symbol); for (const s of arrayFrom(exports22.values())) { if (s.mergeId) { const merged = getMergedSymbol(s); if (merged.declarations) { for (const d of merged.declarations) { const declFile = getSourceFileOfNode(d); if (declFile === importTarget) { return true; } } } } } return false; } } function getExternalModuleFileFromDeclaration(declaration) { const specifier = declaration.kind === 268 ? tryCast(declaration.name, isStringLiteral) : getExternalModuleName(declaration); const moduleSymbol = resolveExternalModuleNameWorker(specifier, specifier, undefined); if (!moduleSymbol) { return; } return getDeclarationOfKind(moduleSymbol, 308); } function initializeTypeChecker() { for (const file of host.getSourceFiles()) { bindSourceFile(file, compilerOptions); } amalgamatedDuplicates = /* @__PURE__ */ new Map; let augmentations; for (const file of host.getSourceFiles()) { if (file.redirectInfo) { continue; } if (!isExternalOrCommonJsModule(file)) { const fileGlobalThisSymbol = file.locals.get("globalThis"); if (fileGlobalThisSymbol == null ? undefined : fileGlobalThisSymbol.declarations) { for (const declaration of fileGlobalThisSymbol.declarations) { diagnostics.add(createDiagnosticForNode(declaration, Diagnostics.Declaration_name_conflicts_with_built_in_global_identifier_0, "globalThis")); } } mergeSymbolTable(globals, file.locals); } if (file.jsGlobalAugmentations) { mergeSymbolTable(globals, file.jsGlobalAugmentations); } if (file.patternAmbientModules && file.patternAmbientModules.length) { patternAmbientModules = concatenate(patternAmbientModules, file.patternAmbientModules); } if (file.moduleAugmentations.length) { (augmentations || (augmentations = [])).push(file.moduleAugmentations); } if (file.symbol && file.symbol.globalExports) { const source = file.symbol.globalExports; source.forEach((sourceSymbol, id) => { if (!globals.has(id)) { globals.set(id, sourceSymbol); } }); } } if (augmentations) { for (const list of augmentations) { for (const augmentation of list) { if (!isGlobalScopeAugmentation(augmentation.parent)) continue; mergeModuleAugmentation(augmentation); } } } addUndefinedToGlobalsOrErrorOnRedeclaration(); getSymbolLinks(undefinedSymbol).type = undefinedWideningType; getSymbolLinks(argumentsSymbol).type = getGlobalType("IArguments", 0, true); getSymbolLinks(unknownSymbol).type = errorType; getSymbolLinks(globalThisSymbol).type = createObjectType(16, globalThisSymbol); globalArrayType = getGlobalType("Array", 1, true); globalObjectType = getGlobalType("Object", 0, true); globalFunctionType = getGlobalType("Function", 0, true); globalCallableFunctionType = strictBindCallApply && getGlobalType("CallableFunction", 0, true) || globalFunctionType; globalNewableFunctionType = strictBindCallApply && getGlobalType("NewableFunction", 0, true) || globalFunctionType; globalStringType = getGlobalType("String", 0, true); globalNumberType = getGlobalType("Number", 0, true); globalBooleanType = getGlobalType("Boolean", 0, true); globalRegExpType = getGlobalType("RegExp", 0, true); anyArrayType = createArrayType(anyType); autoArrayType = createArrayType(autoType); if (autoArrayType === emptyObjectType) { autoArrayType = createAnonymousType(undefined, emptySymbols, emptyArray, emptyArray, emptyArray); } globalReadonlyArrayType = getGlobalTypeOrUndefined("ReadonlyArray", 1) || globalArrayType; anyReadonlyArrayType = globalReadonlyArrayType ? createTypeFromGenericGlobalType(globalReadonlyArrayType, [anyType]) : anyArrayType; globalThisType = getGlobalTypeOrUndefined("ThisType", 1); if (augmentations) { for (const list of augmentations) { for (const augmentation of list) { if (isGlobalScopeAugmentation(augmentation.parent)) continue; mergeModuleAugmentation(augmentation); } } } amalgamatedDuplicates.forEach(({ firstFile, secondFile, conflictingSymbols }) => { if (conflictingSymbols.size < 8) { conflictingSymbols.forEach(({ isBlockScoped, firstFileLocations, secondFileLocations }, symbolName2) => { const message = isBlockScoped ? Diagnostics.Cannot_redeclare_block_scoped_variable_0 : Diagnostics.Duplicate_identifier_0; for (const node of firstFileLocations) { addDuplicateDeclarationError(node, message, symbolName2, secondFileLocations); } for (const node of secondFileLocations) { addDuplicateDeclarationError(node, message, symbolName2, firstFileLocations); } }); } else { const list = arrayFrom(conflictingSymbols.keys()).join(", "); diagnostics.add(addRelatedInfo(createDiagnosticForNode(firstFile, Diagnostics.Definitions_of_the_following_identifiers_conflict_with_those_in_another_file_Colon_0, list), createDiagnosticForNode(secondFile, Diagnostics.Conflicts_are_in_this_file))); diagnostics.add(addRelatedInfo(createDiagnosticForNode(secondFile, Diagnostics.Definitions_of_the_following_identifiers_conflict_with_those_in_another_file_Colon_0, list), createDiagnosticForNode(firstFile, Diagnostics.Conflicts_are_in_this_file))); } }); amalgamatedDuplicates = undefined; } function checkExternalEmitHelpers(location, helpers) { if (compilerOptions.importHelpers) { const sourceFile = getSourceFileOfNode(location); if (isEffectiveExternalModule(sourceFile, compilerOptions) && !(location.flags & 33554432)) { const helpersModule = resolveHelpersModule(sourceFile, location); if (helpersModule !== unknownSymbol) { const links = getSymbolLinks(helpersModule); links.requestedExternalEmitHelpers ?? (links.requestedExternalEmitHelpers = 0); if ((links.requestedExternalEmitHelpers & helpers) !== helpers) { const uncheckedHelpers = helpers & ~links.requestedExternalEmitHelpers; for (let helper = 1;helper <= 16777216; helper <<= 1) { if (uncheckedHelpers & helper) { for (const name of getHelperNames(helper)) { const symbol = resolveSymbol(getSymbol2(getExportsOfModule(helpersModule), escapeLeadingUnderscores(name), 111551)); if (!symbol) { error2(location, Diagnostics.This_syntax_requires_an_imported_helper_named_1_which_does_not_exist_in_0_Consider_upgrading_your_version_of_0, externalHelpersModuleNameText, name); } else if (helper & 524288) { if (!some(getSignaturesOfSymbol(symbol), (signature) => getParameterCount(signature) > 3)) { error2(location, Diagnostics.This_syntax_requires_an_imported_helper_named_1_with_2_parameters_which_is_not_compatible_with_the_one_in_0_Consider_upgrading_your_version_of_0, externalHelpersModuleNameText, name, 4); } } else if (helper & 1048576) { if (!some(getSignaturesOfSymbol(symbol), (signature) => getParameterCount(signature) > 4)) { error2(location, Diagnostics.This_syntax_requires_an_imported_helper_named_1_with_2_parameters_which_is_not_compatible_with_the_one_in_0_Consider_upgrading_your_version_of_0, externalHelpersModuleNameText, name, 5); } } else if (helper & 1024) { if (!some(getSignaturesOfSymbol(symbol), (signature) => getParameterCount(signature) > 2)) { error2(location, Diagnostics.This_syntax_requires_an_imported_helper_named_1_with_2_parameters_which_is_not_compatible_with_the_one_in_0_Consider_upgrading_your_version_of_0, externalHelpersModuleNameText, name, 3); } } } } } } links.requestedExternalEmitHelpers |= helpers; } } } } function getHelperNames(helper) { switch (helper) { case 1: return ["__extends"]; case 2: return ["__assign"]; case 4: return ["__rest"]; case 8: return legacyDecorators ? ["__decorate"] : ["__esDecorate", "__runInitializers"]; case 16: return ["__metadata"]; case 32: return ["__param"]; case 64: return ["__awaiter"]; case 128: return ["__generator"]; case 256: return ["__values"]; case 512: return ["__read"]; case 1024: return ["__spreadArray"]; case 2048: return ["__await"]; case 4096: return ["__asyncGenerator"]; case 8192: return ["__asyncDelegator"]; case 16384: return ["__asyncValues"]; case 32768: return ["__exportStar"]; case 65536: return ["__importStar"]; case 131072: return ["__importDefault"]; case 262144: return ["__makeTemplateObject"]; case 524288: return ["__classPrivateFieldGet"]; case 1048576: return ["__classPrivateFieldSet"]; case 2097152: return ["__classPrivateFieldIn"]; case 4194304: return ["__setFunctionName"]; case 8388608: return ["__propKey"]; case 16777216: return ["__addDisposableResource", "__disposeResources"]; case 33554432: return ["__rewriteRelativeImportExtension"]; default: return Debug.fail("Unrecognized helper"); } } function resolveHelpersModule(file, errorNode) { const links = getNodeLinks(file); if (!links.externalHelpersModule) { links.externalHelpersModule = resolveExternalModule(getImportHelpersImportSpecifier(file), externalHelpersModuleNameText, Diagnostics.This_syntax_requires_an_imported_helper_but_module_0_cannot_be_found, errorNode) || unknownSymbol; } return links.externalHelpersModule; } function checkGrammarModifiers(node) { var _a; const quickResult = reportObviousDecoratorErrors(node) || reportObviousModifierErrors(node); if (quickResult !== undefined) { return quickResult; } if (isParameter(node) && parameterIsThisKeyword(node)) { return grammarErrorOnFirstToken(node, Diagnostics.Neither_decorators_nor_modifiers_may_be_applied_to_this_parameters); } const blockScopeKind = isVariableStatement(node) ? node.declarationList.flags & 7 : 0; let lastStatic, lastDeclare, lastAsync, lastOverride, firstDecorator; let flags = 0; let sawExportBeforeDecorators = false; let hasLeadingDecorators = false; for (const modifier of node.modifiers) { if (isDecorator(modifier)) { if (!nodeCanBeDecorated(legacyDecorators, node, node.parent, node.parent.parent)) { if (node.kind === 175 && !nodeIsPresent(node.body)) { return grammarErrorOnFirstToken(node, Diagnostics.A_decorator_can_only_decorate_a_method_implementation_not_an_overload); } else { return grammarErrorOnFirstToken(node, Diagnostics.Decorators_are_not_valid_here); } } else if (legacyDecorators && (node.kind === 178 || node.kind === 179)) { const accessors = getAllAccessorDeclarationsForDeclaration(node); if (hasDecorators(accessors.firstAccessor) && node === accessors.secondAccessor) { return grammarErrorOnFirstToken(node, Diagnostics.Decorators_cannot_be_applied_to_multiple_get_Slashset_accessors_of_the_same_name); } } if (flags & ~(2080 | 32768)) { return grammarErrorOnNode(modifier, Diagnostics.Decorators_are_not_valid_here); } if (hasLeadingDecorators && flags & 98303) { Debug.assertIsDefined(firstDecorator); const sourceFile = getSourceFileOfNode(modifier); if (!hasParseDiagnostics(sourceFile)) { addRelatedInfo(error2(modifier, Diagnostics.Decorators_may_not_appear_after_export_or_export_default_if_they_also_appear_before_export), createDiagnosticForNode(firstDecorator, Diagnostics.Decorator_used_before_export_here)); return true; } return false; } flags |= 32768; if (!(flags & 98303)) { hasLeadingDecorators = true; } else if (flags & 32) { sawExportBeforeDecorators = true; } firstDecorator ?? (firstDecorator = modifier); } else { if (modifier.kind !== 148) { if (node.kind === 172 || node.kind === 174) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_type_member, tokenToString(modifier.kind)); } if (node.kind === 182 && (modifier.kind !== 126 || !isClassLike(node.parent))) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_an_index_signature, tokenToString(modifier.kind)); } } if (modifier.kind !== 103 && modifier.kind !== 147 && modifier.kind !== 87) { if (node.kind === 169) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_type_parameter, tokenToString(modifier.kind)); } } switch (modifier.kind) { case 87: { if (node.kind !== 267 && node.kind !== 169) { return grammarErrorOnNode(node, Diagnostics.A_class_member_cannot_have_the_0_keyword, tokenToString(87)); } const parent2 = isJSDocTemplateTag(node.parent) && getEffectiveJSDocHost(node.parent) || node.parent; if (node.kind === 169 && !(isFunctionLikeDeclaration(parent2) || isClassLike(parent2) || isFunctionTypeNode(parent2) || isConstructorTypeNode(parent2) || isCallSignatureDeclaration(parent2) || isConstructSignatureDeclaration(parent2) || isMethodSignature(parent2))) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_can_only_appear_on_a_type_parameter_of_a_function_method_or_class, tokenToString(modifier.kind)); } break; } case 164: if (flags & 16) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_already_seen, "override"); } else if (flags & 128) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, "override", "declare"); } else if (flags & 8) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "override", "readonly"); } else if (flags & 512) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "override", "accessor"); } else if (flags & 1024) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "override", "async"); } flags |= 16; lastOverride = modifier; break; case 125: case 124: case 123: const text = visibilityToString(modifierToFlag(modifier.kind)); if (flags & 7) { return grammarErrorOnNode(modifier, Diagnostics.Accessibility_modifier_already_seen); } else if (flags & 16) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, text, "override"); } else if (flags & 256) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, text, "static"); } else if (flags & 512) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, text, "accessor"); } else if (flags & 8) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, text, "readonly"); } else if (flags & 1024) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, text, "async"); } else if (node.parent.kind === 269 || node.parent.kind === 308) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_module_or_namespace_element, text); } else if (flags & 64) { if (modifier.kind === 123) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, text, "abstract"); } else { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, text, "abstract"); } } else if (isPrivateIdentifierClassElementDeclaration(node)) { return grammarErrorOnNode(modifier, Diagnostics.An_accessibility_modifier_cannot_be_used_with_a_private_identifier); } flags |= modifierToFlag(modifier.kind); break; case 126: if (flags & 256) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_already_seen, "static"); } else if (flags & 8) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "static", "readonly"); } else if (flags & 1024) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "static", "async"); } else if (flags & 512) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "static", "accessor"); } else if (node.parent.kind === 269 || node.parent.kind === 308) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_module_or_namespace_element, "static"); } else if (node.kind === 170) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_parameter, "static"); } else if (flags & 64) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, "static", "abstract"); } else if (flags & 16) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "static", "override"); } flags |= 256; lastStatic = modifier; break; case 129: if (flags & 512) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_already_seen, "accessor"); } else if (flags & 8) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, "accessor", "readonly"); } else if (flags & 128) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, "accessor", "declare"); } else if (node.kind !== 173) { return grammarErrorOnNode(modifier, Diagnostics.accessor_modifier_can_only_appear_on_a_property_declaration); } flags |= 512; break; case 148: if (flags & 8) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_already_seen, "readonly"); } else if (node.kind !== 173 && node.kind !== 172 && node.kind !== 182 && node.kind !== 170) { return grammarErrorOnNode(modifier, Diagnostics.readonly_modifier_can_only_appear_on_a_property_declaration_or_index_signature); } else if (flags & 512) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, "readonly", "accessor"); } flags |= 8; break; case 95: if (compilerOptions.verbatimModuleSyntax && !(node.flags & 33554432) && node.kind !== 266 && node.kind !== 265 && node.kind !== 268 && node.parent.kind === 308 && host.getEmitModuleFormatOfFile(getSourceFileOfNode(node)) === 1) { return grammarErrorOnNode(modifier, Diagnostics.A_top_level_export_modifier_cannot_be_used_on_value_declarations_in_a_CommonJS_module_when_verbatimModuleSyntax_is_enabled); } if (flags & 32) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_already_seen, "export"); } else if (flags & 128) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "export", "declare"); } else if (flags & 64) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "export", "abstract"); } else if (flags & 1024) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "export", "async"); } else if (isClassLike(node.parent)) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_class_elements_of_this_kind, "export"); } else if (node.kind === 170) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_parameter, "export"); } else if (blockScopeKind === 4) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_using_declaration, "export"); } else if (blockScopeKind === 6) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_an_await_using_declaration, "export"); } flags |= 32; break; case 90: const container = node.parent.kind === 308 ? node.parent : node.parent.parent; if (container.kind === 268 && !isAmbientModule(container)) { return grammarErrorOnNode(modifier, Diagnostics.A_default_export_can_only_be_used_in_an_ECMAScript_style_module); } else if (blockScopeKind === 4) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_using_declaration, "default"); } else if (blockScopeKind === 6) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_an_await_using_declaration, "default"); } else if (!(flags & 32)) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "export", "default"); } else if (sawExportBeforeDecorators) { return grammarErrorOnNode(firstDecorator, Diagnostics.Decorators_are_not_valid_here); } flags |= 2048; break; case 138: if (flags & 128) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_already_seen, "declare"); } else if (flags & 1024) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_in_an_ambient_context, "async"); } else if (flags & 16) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_in_an_ambient_context, "override"); } else if (isClassLike(node.parent) && !isPropertyDeclaration(node)) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_class_elements_of_this_kind, "declare"); } else if (node.kind === 170) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_parameter, "declare"); } else if (blockScopeKind === 4) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_using_declaration, "declare"); } else if (blockScopeKind === 6) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_an_await_using_declaration, "declare"); } else if (node.parent.flags & 33554432 && node.parent.kind === 269) { return grammarErrorOnNode(modifier, Diagnostics.A_declare_modifier_cannot_be_used_in_an_already_ambient_context); } else if (isPrivateIdentifierClassElementDeclaration(node)) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_a_private_identifier, "declare"); } else if (flags & 512) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, "declare", "accessor"); } flags |= 128; lastDeclare = modifier; break; case 128: if (flags & 64) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_already_seen, "abstract"); } if (node.kind !== 264 && node.kind !== 186) { if (node.kind !== 175 && node.kind !== 173 && node.kind !== 178 && node.kind !== 179) { return grammarErrorOnNode(modifier, Diagnostics.abstract_modifier_can_only_appear_on_a_class_method_or_property_declaration); } if (!(node.parent.kind === 264 && hasSyntacticModifier(node.parent, 64))) { const message = node.kind === 173 ? Diagnostics.Abstract_properties_can_only_appear_within_an_abstract_class : Diagnostics.Abstract_methods_can_only_appear_within_an_abstract_class; return grammarErrorOnNode(modifier, message); } if (flags & 256) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, "static", "abstract"); } if (flags & 2) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, "private", "abstract"); } if (flags & 1024 && lastAsync) { return grammarErrorOnNode(lastAsync, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, "async", "abstract"); } if (flags & 16) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "abstract", "override"); } if (flags & 512) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "abstract", "accessor"); } } if (isNamedDeclaration(node) && node.name.kind === 81) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_a_private_identifier, "abstract"); } flags |= 64; break; case 134: if (flags & 1024) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_already_seen, "async"); } else if (flags & 128 || node.parent.flags & 33554432) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_in_an_ambient_context, "async"); } else if (node.kind === 170) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_appear_on_a_parameter, "async"); } if (flags & 64) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_cannot_be_used_with_1_modifier, "async", "abstract"); } flags |= 1024; lastAsync = modifier; break; case 103: case 147: { const inOutFlag = modifier.kind === 103 ? 8192 : 16384; const inOutText = modifier.kind === 103 ? "in" : "out"; const parent2 = isJSDocTemplateTag(node.parent) && (getEffectiveJSDocHost(node.parent) || find((_a = getJSDocRoot(node.parent)) == null ? undefined : _a.tags, isJSDocTypedefTag)) || node.parent; if (node.kind !== 169 || parent2 && !(isInterfaceDeclaration(parent2) || isClassLike(parent2) || isTypeAliasDeclaration(parent2) || isJSDocTypedefTag(parent2))) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_can_only_appear_on_a_type_parameter_of_a_class_interface_or_type_alias, inOutText); } if (flags & inOutFlag) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_already_seen, inOutText); } if (inOutFlag & 8192 && flags & 16384) { return grammarErrorOnNode(modifier, Diagnostics._0_modifier_must_precede_1_modifier, "in", "out"); } flags |= inOutFlag; break; } } } } if (node.kind === 177) { if (flags & 256) { return grammarErrorOnNode(lastStatic, Diagnostics._0_modifier_cannot_appear_on_a_constructor_declaration, "static"); } if (flags & 16) { return grammarErrorOnNode(lastOverride, Diagnostics._0_modifier_cannot_appear_on_a_constructor_declaration, "override"); } if (flags & 1024) { return grammarErrorOnNode(lastAsync, Diagnostics._0_modifier_cannot_appear_on_a_constructor_declaration, "async"); } return false; } else if ((node.kind === 273 || node.kind === 272) && flags & 128) { return grammarErrorOnNode(lastDeclare, Diagnostics.A_0_modifier_cannot_be_used_with_an_import_declaration, "declare"); } else if (node.kind === 170 && flags & 31 && isBindingPattern(node.name)) { return grammarErrorOnNode(node, Diagnostics.A_parameter_property_may_not_be_declared_using_a_binding_pattern); } else if (node.kind === 170 && flags & 31 && node.dotDotDotToken) { return grammarErrorOnNode(node, Diagnostics.A_parameter_property_cannot_be_declared_using_a_rest_parameter); } if (flags & 1024) { return checkGrammarAsyncModifier(node, lastAsync); } return false; } function reportObviousModifierErrors(node) { if (!node.modifiers) return false; const modifier = findFirstIllegalModifier(node); return modifier && grammarErrorOnFirstToken(modifier, Diagnostics.Modifiers_cannot_appear_here); } function findFirstModifierExcept(node, allowedModifier) { const modifier = find(node.modifiers, isModifier); return modifier && modifier.kind !== allowedModifier ? modifier : undefined; } function findFirstIllegalModifier(node) { switch (node.kind) { case 178: case 179: case 177: case 173: case 172: case 175: case 174: case 182: case 268: case 273: case 272: case 279: case 278: case 219: case 220: case 170: case 169: return; case 176: case 304: case 305: case 271: case 283: return find(node.modifiers, isModifier); default: if (node.parent.kind === 269 || node.parent.kind === 308) { return; } switch (node.kind) { case 263: return findFirstModifierExcept(node, 134); case 264: case 186: return findFirstModifierExcept(node, 128); case 232: case 265: case 266: return find(node.modifiers, isModifier); case 244: return node.declarationList.flags & 4 ? findFirstModifierExcept(node, 135) : find(node.modifiers, isModifier); case 267: return findFirstModifierExcept(node, 87); default: Debug.assertNever(node); } } } function reportObviousDecoratorErrors(node) { const decorator = findFirstIllegalDecorator(node); return decorator && grammarErrorOnFirstToken(decorator, Diagnostics.Decorators_are_not_valid_here); } function findFirstIllegalDecorator(node) { return canHaveIllegalDecorators(node) ? find(node.modifiers, isDecorator) : undefined; } function checkGrammarAsyncModifier(node, asyncModifier) { switch (node.kind) { case 175: case 263: case 219: case 220: return false; } return grammarErrorOnNode(asyncModifier, Diagnostics._0_modifier_cannot_be_used_here, "async"); } function checkGrammarForDisallowedTrailingComma(list, diag2 = Diagnostics.Trailing_comma_not_allowed) { if (list && list.hasTrailingComma) { return grammarErrorAtPos(list[0], list.end - ",".length, ",".length, diag2); } return false; } function checkGrammarTypeParameterList(typeParameters, file) { if (typeParameters && typeParameters.length === 0) { const start = typeParameters.pos - "<".length; const end = skipTrivia2(file.text, typeParameters.end) + ">".length; return grammarErrorAtPos(file, start, end - start, Diagnostics.Type_parameter_list_cannot_be_empty); } return false; } function checkGrammarParameterList(parameters) { let seenOptionalParameter = false; const parameterCount = parameters.length; for (let i = 0;i < parameterCount; i++) { const parameter = parameters[i]; if (parameter.dotDotDotToken) { if (i !== parameterCount - 1) { return grammarErrorOnNode(parameter.dotDotDotToken, Diagnostics.A_rest_parameter_must_be_last_in_a_parameter_list); } if (!(parameter.flags & 33554432)) { checkGrammarForDisallowedTrailingComma(parameters, Diagnostics.A_rest_parameter_or_binding_pattern_may_not_have_a_trailing_comma); } if (parameter.questionToken) { return grammarErrorOnNode(parameter.questionToken, Diagnostics.A_rest_parameter_cannot_be_optional); } if (parameter.initializer) { return grammarErrorOnNode(parameter.name, Diagnostics.A_rest_parameter_cannot_have_an_initializer); } } else if (hasEffectiveQuestionToken(parameter)) { seenOptionalParameter = true; if (parameter.questionToken && parameter.initializer) { return grammarErrorOnNode(parameter.name, Diagnostics.Parameter_cannot_have_question_mark_and_initializer); } } else if (seenOptionalParameter && !parameter.initializer) { return grammarErrorOnNode(parameter.name, Diagnostics.A_required_parameter_cannot_follow_an_optional_parameter); } } } function getNonSimpleParameters(parameters) { return filter(parameters, (parameter) => !!parameter.initializer || isBindingPattern(parameter.name) || isRestParameter(parameter)); } function checkGrammarForUseStrictSimpleParameterList(node) { if (languageVersion >= 3) { const useStrictDirective = node.body && isBlock(node.body) && findUseStrictPrologue(node.body.statements); if (useStrictDirective) { const nonSimpleParameters = getNonSimpleParameters(node.parameters); if (length(nonSimpleParameters)) { forEach(nonSimpleParameters, (parameter) => { addRelatedInfo(error2(parameter, Diagnostics.This_parameter_is_not_allowed_with_use_strict_directive), createDiagnosticForNode(useStrictDirective, Diagnostics.use_strict_directive_used_here)); }); const diagnostics2 = nonSimpleParameters.map((parameter, index) => index === 0 ? createDiagnosticForNode(parameter, Diagnostics.Non_simple_parameter_declared_here) : createDiagnosticForNode(parameter, Diagnostics.and_here)); addRelatedInfo(error2(useStrictDirective, Diagnostics.use_strict_directive_cannot_be_used_with_non_simple_parameter_list), ...diagnostics2); return true; } } } return false; } function checkGrammarFunctionLikeDeclaration(node) { const file = getSourceFileOfNode(node); return checkGrammarModifiers(node) || checkGrammarTypeParameterList(node.typeParameters, file) || checkGrammarParameterList(node.parameters) || checkGrammarArrowFunction(node, file) || isFunctionLikeDeclaration(node) && checkGrammarForUseStrictSimpleParameterList(node); } function checkGrammarClassLikeDeclaration(node) { const file = getSourceFileOfNode(node); return checkGrammarClassDeclarationHeritageClauses(node) || checkGrammarTypeParameterList(node.typeParameters, file); } function checkGrammarArrowFunction(node, file) { if (!isArrowFunction(node)) { return false; } if (node.typeParameters && !(length(node.typeParameters) > 1 || node.typeParameters.hasTrailingComma || node.typeParameters[0].constraint)) { if (file && fileExtensionIsOneOf(file.fileName, [".mts", ".cts"])) { grammarErrorOnNode(node.typeParameters[0], Diagnostics.This_syntax_is_reserved_in_files_with_the_mts_or_cts_extension_Add_a_trailing_comma_or_explicit_constraint); } } const { equalsGreaterThanToken } = node; const startLine = getLineAndCharacterOfPosition(file, equalsGreaterThanToken.pos).line; const endLine = getLineAndCharacterOfPosition(file, equalsGreaterThanToken.end).line; return startLine !== endLine && grammarErrorOnNode(equalsGreaterThanToken, Diagnostics.Line_terminator_not_permitted_before_arrow); } function checkGrammarIndexSignatureParameters(node) { const parameter = node.parameters[0]; if (node.parameters.length !== 1) { if (parameter) { return grammarErrorOnNode(parameter.name, Diagnostics.An_index_signature_must_have_exactly_one_parameter); } else { return grammarErrorOnNode(node, Diagnostics.An_index_signature_must_have_exactly_one_parameter); } } checkGrammarForDisallowedTrailingComma(node.parameters, Diagnostics.An_index_signature_cannot_have_a_trailing_comma); if (parameter.dotDotDotToken) { return grammarErrorOnNode(parameter.dotDotDotToken, Diagnostics.An_index_signature_cannot_have_a_rest_parameter); } if (hasEffectiveModifiers(parameter)) { return grammarErrorOnNode(parameter.name, Diagnostics.An_index_signature_parameter_cannot_have_an_accessibility_modifier); } if (parameter.questionToken) { return grammarErrorOnNode(parameter.questionToken, Diagnostics.An_index_signature_parameter_cannot_have_a_question_mark); } if (parameter.initializer) { return grammarErrorOnNode(parameter.name, Diagnostics.An_index_signature_parameter_cannot_have_an_initializer); } if (!parameter.type) { return grammarErrorOnNode(parameter.name, Diagnostics.An_index_signature_parameter_must_have_a_type_annotation); } const type = getTypeFromTypeNode(parameter.type); if (someType(type, (t) => !!(t.flags & 19456)) || isGenericType(type)) { return grammarErrorOnNode(parameter.name, Diagnostics.An_index_signature_parameter_type_cannot_be_a_literal_type_or_generic_type_Consider_using_a_mapped_object_type_instead); } if (!everyType(type, isValidIndexKeyType)) { return grammarErrorOnNode(parameter.name, Diagnostics.An_index_signature_parameter_type_must_be_string_number_symbol_or_a_template_literal_type); } if (!node.type) { return grammarErrorOnNode(node, Diagnostics.An_index_signature_must_have_a_type_annotation); } return false; } function checkGrammarIndexSignature(node) { return checkGrammarModifiers(node) || checkGrammarIndexSignatureParameters(node); } function checkGrammarForAtLeastOneTypeArgument(node, typeArguments) { if (typeArguments && typeArguments.length === 0) { const sourceFile = getSourceFileOfNode(node); const start = typeArguments.pos - "<".length; const end = skipTrivia2(sourceFile.text, typeArguments.end) + ">".length; return grammarErrorAtPos(sourceFile, start, end - start, Diagnostics.Type_argument_list_cannot_be_empty); } return false; } function checkGrammarTypeArguments(node, typeArguments) { return checkGrammarForDisallowedTrailingComma(typeArguments) || checkGrammarForAtLeastOneTypeArgument(node, typeArguments); } function checkGrammarTaggedTemplateChain(node) { if (node.questionDotToken || node.flags & 64) { return grammarErrorOnNode(node.template, Diagnostics.Tagged_template_expressions_are_not_permitted_in_an_optional_chain); } return false; } function checkGrammarHeritageClause(node) { const types = node.types; if (checkGrammarForDisallowedTrailingComma(types)) { return true; } if (types && types.length === 0) { const listType = tokenToString(node.token); return grammarErrorAtPos(node, types.pos, 0, Diagnostics._0_list_cannot_be_empty, listType); } return some(types, checkGrammarExpressionWithTypeArguments); } function checkGrammarExpressionWithTypeArguments(node) { if (isExpressionWithTypeArguments(node) && isImportKeyword(node.expression) && node.typeArguments) { return grammarErrorOnNode(node, Diagnostics.This_use_of_import_is_invalid_import_calls_can_be_written_but_they_must_have_parentheses_and_cannot_have_type_arguments); } return checkGrammarTypeArguments(node, node.typeArguments); } function checkGrammarClassDeclarationHeritageClauses(node) { let seenExtendsClause = false; let seenImplementsClause = false; if (!checkGrammarModifiers(node) && node.heritageClauses) { for (const heritageClause of node.heritageClauses) { if (heritageClause.token === 96) { if (seenExtendsClause) { return grammarErrorOnFirstToken(heritageClause, Diagnostics.extends_clause_already_seen); } if (seenImplementsClause) { return grammarErrorOnFirstToken(heritageClause, Diagnostics.extends_clause_must_precede_implements_clause); } if (heritageClause.types.length > 1) { return grammarErrorOnFirstToken(heritageClause.types[1], Diagnostics.Classes_can_only_extend_a_single_class); } seenExtendsClause = true; } else { Debug.assert(heritageClause.token === 119); if (seenImplementsClause) { return grammarErrorOnFirstToken(heritageClause, Diagnostics.implements_clause_already_seen); } seenImplementsClause = true; } checkGrammarHeritageClause(heritageClause); } } } function checkGrammarInterfaceDeclaration(node) { let seenExtendsClause = false; if (node.heritageClauses) { for (const heritageClause of node.heritageClauses) { if (heritageClause.token === 96) { if (seenExtendsClause) { return grammarErrorOnFirstToken(heritageClause, Diagnostics.extends_clause_already_seen); } seenExtendsClause = true; } else { Debug.assert(heritageClause.token === 119); return grammarErrorOnFirstToken(heritageClause, Diagnostics.Interface_declaration_cannot_have_implements_clause); } checkGrammarHeritageClause(heritageClause); } } return false; } function checkGrammarComputedPropertyName(node) { if (node.kind !== 168) { return false; } const computedPropertyName = node; if (computedPropertyName.expression.kind === 227 && computedPropertyName.expression.operatorToken.kind === 28) { return grammarErrorOnNode(computedPropertyName.expression, Diagnostics.A_comma_expression_is_not_allowed_in_a_computed_property_name); } return false; } function checkGrammarForGenerator(node) { if (node.asteriskToken) { Debug.assert(node.kind === 263 || node.kind === 219 || node.kind === 175); if (node.flags & 33554432) { return grammarErrorOnNode(node.asteriskToken, Diagnostics.Generators_are_not_allowed_in_an_ambient_context); } if (!node.body) { return grammarErrorOnNode(node.asteriskToken, Diagnostics.An_overload_signature_cannot_be_declared_as_a_generator); } } } function checkGrammarForInvalidQuestionMark(questionToken, message) { return !!questionToken && grammarErrorOnNode(questionToken, message); } function checkGrammarForInvalidExclamationToken(exclamationToken, message) { return !!exclamationToken && grammarErrorOnNode(exclamationToken, message); } function checkGrammarObjectLiteralExpression(node, inDestructuring) { const seen = /* @__PURE__ */ new Map; for (const prop of node.properties) { if (prop.kind === 306) { if (inDestructuring) { const expression = skipParentheses(prop.expression); if (isArrayLiteralExpression(expression) || isObjectLiteralExpression(expression)) { return grammarErrorOnNode(prop.expression, Diagnostics.A_rest_element_cannot_contain_a_binding_pattern); } } continue; } const name = prop.name; if (name.kind === 168) { checkGrammarComputedPropertyName(name); } if (prop.kind === 305 && !inDestructuring && prop.objectAssignmentInitializer) { grammarErrorOnNode(prop.equalsToken, Diagnostics.Did_you_mean_to_use_a_Colon_An_can_only_follow_a_property_name_when_the_containing_object_literal_is_part_of_a_destructuring_pattern); } if (name.kind === 81) { grammarErrorOnNode(name, Diagnostics.Private_identifiers_are_not_allowed_outside_class_bodies); } if (canHaveModifiers(prop) && prop.modifiers) { for (const mod of prop.modifiers) { if (isModifier(mod) && (mod.kind !== 134 || prop.kind !== 175)) { grammarErrorOnNode(mod, Diagnostics._0_modifier_cannot_be_used_here, getTextOfNode(mod)); } } } else if (canHaveIllegalModifiers(prop) && prop.modifiers) { for (const mod of prop.modifiers) { if (isModifier(mod)) { grammarErrorOnNode(mod, Diagnostics._0_modifier_cannot_be_used_here, getTextOfNode(mod)); } } } let currentKind; switch (prop.kind) { case 305: case 304: checkGrammarForInvalidExclamationToken(prop.exclamationToken, Diagnostics.A_definite_assignment_assertion_is_not_permitted_in_this_context); checkGrammarForInvalidQuestionMark(prop.questionToken, Diagnostics.An_object_member_cannot_be_declared_optional); if (name.kind === 9) { checkGrammarNumericLiteral(name); } if (name.kind === 10) { addErrorOrSuggestion(true, createDiagnosticForNode(name, Diagnostics.A_bigint_literal_cannot_be_used_as_a_property_name)); } currentKind = 4; break; case 175: currentKind = 8; break; case 178: currentKind = 1; break; case 179: currentKind = 2; break; default: Debug.assertNever(prop, "Unexpected syntax kind:" + prop.kind); } if (!inDestructuring) { const effectiveName = getEffectivePropertyNameForPropertyNameNode(name); if (effectiveName === undefined) { continue; } const existingKind = seen.get(effectiveName); if (!existingKind) { seen.set(effectiveName, currentKind); } else { if (currentKind & 8 && existingKind & 8) { grammarErrorOnNode(name, Diagnostics.Duplicate_identifier_0, getTextOfNode(name)); } else if (currentKind & 4 && existingKind & 4) { grammarErrorOnNode(name, Diagnostics.An_object_literal_cannot_have_multiple_properties_with_the_same_name, getTextOfNode(name)); } else if (currentKind & 3 && existingKind & 3) { if (existingKind !== 3 && currentKind !== existingKind) { seen.set(effectiveName, currentKind | existingKind); } else { return grammarErrorOnNode(name, Diagnostics.An_object_literal_cannot_have_multiple_get_Slashset_accessors_with_the_same_name); } } else { return grammarErrorOnNode(name, Diagnostics.An_object_literal_cannot_have_property_and_accessor_with_the_same_name); } } } } } function checkGrammarJsxElement(node) { checkGrammarJsxName(node.tagName); checkGrammarTypeArguments(node, node.typeArguments); const seen = /* @__PURE__ */ new Map; for (const attr of node.attributes.properties) { if (attr.kind === 294) { continue; } const { name, initializer } = attr; const escapedText = getEscapedTextOfJsxAttributeName(name); if (!seen.get(escapedText)) { seen.set(escapedText, true); } else { return grammarErrorOnNode(name, Diagnostics.JSX_elements_cannot_have_multiple_attributes_with_the_same_name); } if (initializer && initializer.kind === 295 && !initializer.expression) { return grammarErrorOnNode(initializer, Diagnostics.JSX_attributes_must_only_be_assigned_a_non_empty_expression); } } } function checkGrammarJsxName(node) { if (isPropertyAccessExpression(node) && isJsxNamespacedName(node.expression)) { return grammarErrorOnNode(node.expression, Diagnostics.JSX_property_access_expressions_cannot_include_JSX_namespace_names); } if (isJsxNamespacedName(node) && getJSXTransformEnabled(compilerOptions) && !isIntrinsicJsxName(node.namespace.escapedText)) { return grammarErrorOnNode(node, Diagnostics.React_components_cannot_include_JSX_namespace_names); } } function checkGrammarJsxExpression(node) { if (node.expression && isCommaSequence(node.expression)) { return grammarErrorOnNode(node.expression, Diagnostics.JSX_expressions_may_not_use_the_comma_operator_Did_you_mean_to_write_an_array); } } function checkGrammarForInOrForOfStatement(forInOrOfStatement) { if (checkGrammarStatementInAmbientContext(forInOrOfStatement)) { return true; } if (forInOrOfStatement.kind === 251 && forInOrOfStatement.awaitModifier) { if (!(forInOrOfStatement.flags & 65536)) { const sourceFile = getSourceFileOfNode(forInOrOfStatement); if (isInTopLevelContext(forInOrOfStatement)) { if (!hasParseDiagnostics(sourceFile)) { if (!isEffectiveExternalModule(sourceFile, compilerOptions)) { diagnostics.add(createDiagnosticForNode(forInOrOfStatement.awaitModifier, Diagnostics.for_await_loops_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_file_has_no_imports_or_exports_Consider_adding_an_empty_export_to_make_this_file_a_module)); } switch (moduleKind) { case 100: case 101: case 102: case 199: if (sourceFile.impliedNodeFormat === 1) { diagnostics.add(createDiagnosticForNode(forInOrOfStatement.awaitModifier, Diagnostics.The_current_file_is_a_CommonJS_module_and_cannot_use_await_at_the_top_level)); break; } case 7: case 99: case 200: case 4: if (languageVersion >= 4) { break; } default: diagnostics.add(createDiagnosticForNode(forInOrOfStatement.awaitModifier, Diagnostics.Top_level_for_await_loops_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_node16_node18_node20_nodenext_or_preserve_and_the_target_option_is_set_to_es2017_or_higher)); break; } } } else { if (!hasParseDiagnostics(sourceFile)) { const diagnostic = createDiagnosticForNode(forInOrOfStatement.awaitModifier, Diagnostics.for_await_loops_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules); const func = getContainingFunction(forInOrOfStatement); if (func && func.kind !== 177) { Debug.assert((getFunctionFlags(func) & 2) === 0, "Enclosing function should never be an async function."); const relatedInfo = createDiagnosticForNode(func, Diagnostics.Did_you_mean_to_mark_this_function_as_async); addRelatedInfo(diagnostic, relatedInfo); } diagnostics.add(diagnostic); return true; } } } } if (isForOfStatement(forInOrOfStatement) && !(forInOrOfStatement.flags & 65536) && isIdentifier(forInOrOfStatement.initializer) && forInOrOfStatement.initializer.escapedText === "async") { grammarErrorOnNode(forInOrOfStatement.initializer, Diagnostics.The_left_hand_side_of_a_for_of_statement_may_not_be_async); return false; } if (forInOrOfStatement.initializer.kind === 262) { const variableList = forInOrOfStatement.initializer; if (!checkGrammarVariableDeclarationList(variableList)) { const declarations = variableList.declarations; if (!declarations.length) { return false; } if (declarations.length > 1) { const diagnostic = forInOrOfStatement.kind === 250 ? Diagnostics.Only_a_single_variable_declaration_is_allowed_in_a_for_in_statement : Diagnostics.Only_a_single_variable_declaration_is_allowed_in_a_for_of_statement; return grammarErrorOnFirstToken(variableList.declarations[1], diagnostic); } const firstDeclaration = declarations[0]; if (firstDeclaration.initializer) { const diagnostic = forInOrOfStatement.kind === 250 ? Diagnostics.The_variable_declaration_of_a_for_in_statement_cannot_have_an_initializer : Diagnostics.The_variable_declaration_of_a_for_of_statement_cannot_have_an_initializer; return grammarErrorOnNode(firstDeclaration.name, diagnostic); } if (firstDeclaration.type) { const diagnostic = forInOrOfStatement.kind === 250 ? Diagnostics.The_left_hand_side_of_a_for_in_statement_cannot_use_a_type_annotation : Diagnostics.The_left_hand_side_of_a_for_of_statement_cannot_use_a_type_annotation; return grammarErrorOnNode(firstDeclaration, diagnostic); } } } return false; } function checkGrammarAccessor(accessor) { if (!(accessor.flags & 33554432) && accessor.parent.kind !== 188 && accessor.parent.kind !== 265) { if (languageVersion < 2 && isPrivateIdentifier(accessor.name)) { return grammarErrorOnNode(accessor.name, Diagnostics.Private_identifiers_are_only_available_when_targeting_ECMAScript_2015_and_higher); } if (accessor.body === undefined && !hasSyntacticModifier(accessor, 64)) { return grammarErrorAtPos(accessor, accessor.end - 1, ";".length, Diagnostics._0_expected, "{"); } } if (accessor.body) { if (hasSyntacticModifier(accessor, 64)) { return grammarErrorOnNode(accessor, Diagnostics.An_abstract_accessor_cannot_have_an_implementation); } if (accessor.parent.kind === 188 || accessor.parent.kind === 265) { return grammarErrorOnNode(accessor.body, Diagnostics.An_implementation_cannot_be_declared_in_ambient_contexts); } } if (accessor.typeParameters) { return grammarErrorOnNode(accessor.name, Diagnostics.An_accessor_cannot_have_type_parameters); } if (!doesAccessorHaveCorrectParameterCount(accessor)) { return grammarErrorOnNode(accessor.name, accessor.kind === 178 ? Diagnostics.A_get_accessor_cannot_have_parameters : Diagnostics.A_set_accessor_must_have_exactly_one_parameter); } if (accessor.kind === 179) { if (accessor.type) { return grammarErrorOnNode(accessor.name, Diagnostics.A_set_accessor_cannot_have_a_return_type_annotation); } const parameter = Debug.checkDefined(getSetAccessorValueParameter(accessor), "Return value does not match parameter count assertion."); if (parameter.dotDotDotToken) { return grammarErrorOnNode(parameter.dotDotDotToken, Diagnostics.A_set_accessor_cannot_have_rest_parameter); } if (parameter.questionToken) { return grammarErrorOnNode(parameter.questionToken, Diagnostics.A_set_accessor_cannot_have_an_optional_parameter); } if (parameter.initializer) { return grammarErrorOnNode(accessor.name, Diagnostics.A_set_accessor_parameter_cannot_have_an_initializer); } } return false; } function doesAccessorHaveCorrectParameterCount(accessor) { return getAccessorThisParameter(accessor) || accessor.parameters.length === (accessor.kind === 178 ? 0 : 1); } function getAccessorThisParameter(accessor) { if (accessor.parameters.length === (accessor.kind === 178 ? 1 : 2)) { return getThisParameter(accessor); } } function checkGrammarTypeOperatorNode(node) { if (node.operator === 158) { if (node.type.kind !== 155) { return grammarErrorOnNode(node.type, Diagnostics._0_expected, tokenToString(155)); } let parent2 = walkUpParenthesizedTypes(node.parent); if (isInJSFile(parent2) && isJSDocTypeExpression(parent2)) { const host2 = getJSDocHost(parent2); if (host2) { parent2 = getSingleVariableOfVariableStatement(host2) || host2; } } switch (parent2.kind) { case 261: const decl = parent2; if (decl.name.kind !== 80) { return grammarErrorOnNode(node, Diagnostics.unique_symbol_types_may_not_be_used_on_a_variable_declaration_with_a_binding_name); } if (!isVariableDeclarationInVariableStatement(decl)) { return grammarErrorOnNode(node, Diagnostics.unique_symbol_types_are_only_allowed_on_variables_in_a_variable_statement); } if (!(decl.parent.flags & 2)) { return grammarErrorOnNode(parent2.name, Diagnostics.A_variable_whose_type_is_a_unique_symbol_type_must_be_const); } break; case 173: if (!isStatic(parent2) || !hasEffectiveReadonlyModifier(parent2)) { return grammarErrorOnNode(parent2.name, Diagnostics.A_property_of_a_class_whose_type_is_a_unique_symbol_type_must_be_both_static_and_readonly); } break; case 172: if (!hasSyntacticModifier(parent2, 8)) { return grammarErrorOnNode(parent2.name, Diagnostics.A_property_of_an_interface_or_type_literal_whose_type_is_a_unique_symbol_type_must_be_readonly); } break; default: return grammarErrorOnNode(node, Diagnostics.unique_symbol_types_are_not_allowed_here); } } else if (node.operator === 148) { if (node.type.kind !== 189 && node.type.kind !== 190) { return grammarErrorOnFirstToken(node, Diagnostics.readonly_type_modifier_is_only_permitted_on_array_and_tuple_literal_types, tokenToString(155)); } } } function checkGrammarForInvalidDynamicName(node, message) { if (isNonBindableDynamicName(node) && !isEntityNameExpression(isElementAccessExpression(node) ? skipParentheses(node.argumentExpression) : node.expression)) { return grammarErrorOnNode(node, message); } } function checkGrammarMethod(node) { if (checkGrammarFunctionLikeDeclaration(node)) { return true; } if (node.kind === 175) { if (node.parent.kind === 211) { if (node.modifiers && !(node.modifiers.length === 1 && first(node.modifiers).kind === 134)) { return grammarErrorOnFirstToken(node, Diagnostics.Modifiers_cannot_appear_here); } else if (checkGrammarForInvalidQuestionMark(node.questionToken, Diagnostics.An_object_member_cannot_be_declared_optional)) { return true; } else if (checkGrammarForInvalidExclamationToken(node.exclamationToken, Diagnostics.A_definite_assignment_assertion_is_not_permitted_in_this_context)) { return true; } else if (node.body === undefined) { return grammarErrorAtPos(node, node.end - 1, ";".length, Diagnostics._0_expected, "{"); } } if (checkGrammarForGenerator(node)) { return true; } } if (isClassLike(node.parent)) { if (languageVersion < 2 && isPrivateIdentifier(node.name)) { return grammarErrorOnNode(node.name, Diagnostics.Private_identifiers_are_only_available_when_targeting_ECMAScript_2015_and_higher); } if (node.flags & 33554432) { return checkGrammarForInvalidDynamicName(node.name, Diagnostics.A_computed_property_name_in_an_ambient_context_must_refer_to_an_expression_whose_type_is_a_literal_type_or_a_unique_symbol_type); } else if (node.kind === 175 && !node.body) { return checkGrammarForInvalidDynamicName(node.name, Diagnostics.A_computed_property_name_in_a_method_overload_must_refer_to_an_expression_whose_type_is_a_literal_type_or_a_unique_symbol_type); } } else if (node.parent.kind === 265) { return checkGrammarForInvalidDynamicName(node.name, Diagnostics.A_computed_property_name_in_an_interface_must_refer_to_an_expression_whose_type_is_a_literal_type_or_a_unique_symbol_type); } else if (node.parent.kind === 188) { return checkGrammarForInvalidDynamicName(node.name, Diagnostics.A_computed_property_name_in_a_type_literal_must_refer_to_an_expression_whose_type_is_a_literal_type_or_a_unique_symbol_type); } } function checkGrammarBreakOrContinueStatement(node) { let current = node; while (current) { if (isFunctionLikeOrClassStaticBlockDeclaration(current)) { return grammarErrorOnNode(node, Diagnostics.Jump_target_cannot_cross_function_boundary); } switch (current.kind) { case 257: if (node.label && current.label.escapedText === node.label.escapedText) { const isMisplacedContinueLabel = node.kind === 252 && !isIterationStatement(current.statement, true); if (isMisplacedContinueLabel) { return grammarErrorOnNode(node, Diagnostics.A_continue_statement_can_only_jump_to_a_label_of_an_enclosing_iteration_statement); } return false; } break; case 256: if (node.kind === 253 && !node.label) { return false; } break; default: if (isIterationStatement(current, false) && !node.label) { return false; } break; } current = current.parent; } if (node.label) { const message = node.kind === 253 ? Diagnostics.A_break_statement_can_only_jump_to_a_label_of_an_enclosing_statement : Diagnostics.A_continue_statement_can_only_jump_to_a_label_of_an_enclosing_iteration_statement; return grammarErrorOnNode(node, message); } else { const message = node.kind === 253 ? Diagnostics.A_break_statement_can_only_be_used_within_an_enclosing_iteration_or_switch_statement : Diagnostics.A_continue_statement_can_only_be_used_within_an_enclosing_iteration_statement; return grammarErrorOnNode(node, message); } } function checkGrammarBindingElement(node) { if (node.dotDotDotToken) { const elements = node.parent.elements; if (node !== last(elements)) { return grammarErrorOnNode(node, Diagnostics.A_rest_element_must_be_last_in_a_destructuring_pattern); } checkGrammarForDisallowedTrailingComma(elements, Diagnostics.A_rest_parameter_or_binding_pattern_may_not_have_a_trailing_comma); if (node.propertyName) { return grammarErrorOnNode(node.name, Diagnostics.A_rest_element_cannot_have_a_property_name); } } if (node.dotDotDotToken && node.initializer) { return grammarErrorAtPos(node, node.initializer.pos - 1, 1, Diagnostics.A_rest_element_cannot_have_an_initializer); } } function isStringOrNumberLiteralExpression(expr) { return isStringOrNumericLiteralLike(expr) || expr.kind === 225 && expr.operator === 41 && expr.operand.kind === 9; } function isBigIntLiteralExpression(expr) { return expr.kind === 10 || expr.kind === 225 && expr.operator === 41 && expr.operand.kind === 10; } function isSimpleLiteralEnumReference(expr) { if ((isPropertyAccessExpression(expr) || isElementAccessExpression(expr) && isStringOrNumberLiteralExpression(expr.argumentExpression)) && isEntityNameExpression(expr.expression)) { return !!(checkExpressionCached(expr).flags & 98304); } } function checkAmbientInitializer(node) { const initializer = node.initializer; if (initializer) { const isInvalidInitializer = !(isStringOrNumberLiteralExpression(initializer) || isSimpleLiteralEnumReference(initializer) || initializer.kind === 112 || initializer.kind === 97 || isBigIntLiteralExpression(initializer)); const isConstOrReadonly = isDeclarationReadonly(node) || isVariableDeclaration(node) && isVarConstLike2(node); if (isConstOrReadonly && !node.type) { if (isInvalidInitializer) { return grammarErrorOnNode(initializer, Diagnostics.A_const_initializer_in_an_ambient_context_must_be_a_string_or_numeric_literal_or_literal_enum_reference); } } else { return grammarErrorOnNode(initializer, Diagnostics.Initializers_are_not_allowed_in_ambient_contexts); } } } function checkGrammarVariableDeclaration(node) { const nodeFlags = getCombinedNodeFlagsCached(node); const blockScopeKind = nodeFlags & 7; if (isBindingPattern(node.name)) { switch (blockScopeKind) { case 6: return grammarErrorOnNode(node, Diagnostics._0_declarations_may_not_have_binding_patterns, "await using"); case 4: return grammarErrorOnNode(node, Diagnostics._0_declarations_may_not_have_binding_patterns, "using"); } } if (node.parent.parent.kind !== 250 && node.parent.parent.kind !== 251) { if (nodeFlags & 33554432) { checkAmbientInitializer(node); } else if (!node.initializer) { if (isBindingPattern(node.name) && !isBindingPattern(node.parent)) { return grammarErrorOnNode(node, Diagnostics.A_destructuring_declaration_must_have_an_initializer); } switch (blockScopeKind) { case 6: return grammarErrorOnNode(node, Diagnostics._0_declarations_must_be_initialized, "await using"); case 4: return grammarErrorOnNode(node, Diagnostics._0_declarations_must_be_initialized, "using"); case 2: return grammarErrorOnNode(node, Diagnostics._0_declarations_must_be_initialized, "const"); } } } if (node.exclamationToken && (node.parent.parent.kind !== 244 || !node.type || node.initializer || nodeFlags & 33554432)) { const message = node.initializer ? Diagnostics.Declarations_with_initializers_cannot_also_have_definite_assignment_assertions : !node.type ? Diagnostics.Declarations_with_definite_assignment_assertions_must_also_have_type_annotations : Diagnostics.A_definite_assignment_assertion_is_not_permitted_in_this_context; return grammarErrorOnNode(node.exclamationToken, message); } if (host.getEmitModuleFormatOfFile(getSourceFileOfNode(node)) < 4 && !(node.parent.parent.flags & 33554432) && hasSyntacticModifier(node.parent.parent, 32)) { checkESModuleMarker(node.name); } return !!blockScopeKind && checkGrammarNameInLetOrConstDeclarations(node.name); } function checkESModuleMarker(name) { if (name.kind === 80) { if (idText(name) === "__esModule") { return grammarErrorOnNodeSkippedOn("noEmit", name, Diagnostics.Identifier_expected_esModule_is_reserved_as_an_exported_marker_when_transforming_ECMAScript_modules); } } else { const elements = name.elements; for (const element of elements) { if (!isOmittedExpression(element)) { return checkESModuleMarker(element.name); } } } return false; } function checkGrammarNameInLetOrConstDeclarations(name) { if (name.kind === 80) { if (name.escapedText === "let") { return grammarErrorOnNode(name, Diagnostics.let_is_not_allowed_to_be_used_as_a_name_in_let_or_const_declarations); } } else { const elements = name.elements; for (const element of elements) { if (!isOmittedExpression(element)) { checkGrammarNameInLetOrConstDeclarations(element.name); } } } return false; } function checkGrammarVariableDeclarationList(declarationList) { const declarations = declarationList.declarations; if (checkGrammarForDisallowedTrailingComma(declarationList.declarations)) { return true; } if (!declarationList.declarations.length) { return grammarErrorAtPos(declarationList, declarations.pos, declarations.end - declarations.pos, Diagnostics.Variable_declaration_list_cannot_be_empty); } const blockScopeFlags = declarationList.flags & 7; if (blockScopeFlags === 4 || blockScopeFlags === 6) { if (isForInStatement(declarationList.parent)) { return grammarErrorOnNode(declarationList, blockScopeFlags === 4 ? Diagnostics.The_left_hand_side_of_a_for_in_statement_cannot_be_a_using_declaration : Diagnostics.The_left_hand_side_of_a_for_in_statement_cannot_be_an_await_using_declaration); } else if (isVariableStatement(declarationList.parent) && isCaseOrDefaultClause(declarationList.parent.parent)) { return grammarErrorOnNode(declarationList, blockScopeFlags === 4 ? Diagnostics.using_declarations_are_not_allowed_in_case_or_default_clauses_unless_contained_within_a_block : Diagnostics.await_using_declarations_are_not_allowed_in_case_or_default_clauses_unless_contained_within_a_block); } if (declarationList.flags & 33554432) { return grammarErrorOnNode(declarationList, blockScopeFlags === 4 ? Diagnostics.using_declarations_are_not_allowed_in_ambient_contexts : Diagnostics.await_using_declarations_are_not_allowed_in_ambient_contexts); } if (blockScopeFlags === 6) { return checkAwaitGrammar(declarationList); } } return false; } function allowBlockDeclarations(parent2) { switch (parent2.kind) { case 246: case 247: case 248: case 255: case 249: case 250: case 251: return false; case 257: return allowBlockDeclarations(parent2.parent); } return true; } function checkGrammarForDisallowedBlockScopedVariableStatement(node) { if (!allowBlockDeclarations(node.parent)) { const blockScopeKind = getCombinedNodeFlagsCached(node.declarationList) & 7; if (blockScopeKind) { const keyword = blockScopeKind === 1 ? "let" : blockScopeKind === 2 ? "const" : blockScopeKind === 4 ? "using" : blockScopeKind === 6 ? "await using" : Debug.fail("Unknown BlockScope flag"); error2(node, Diagnostics._0_declarations_can_only_be_declared_inside_a_block, keyword); } } } function checkGrammarMetaProperty(node) { const escapedText = node.name.escapedText; switch (node.keywordToken) { case 105: if (escapedText !== "target") { return grammarErrorOnNode(node.name, Diagnostics._0_is_not_a_valid_meta_property_for_keyword_1_Did_you_mean_2, unescapeLeadingUnderscores(node.name.escapedText), tokenToString(node.keywordToken), "target"); } break; case 102: if (escapedText !== "meta") { const isCallee = isCallExpression(node.parent) && node.parent.expression === node; if (escapedText === "defer") { if (!isCallee) { return grammarErrorAtPos(node, node.end, 0, Diagnostics._0_expected, "("); } } else { if (isCallee) { return grammarErrorOnNode(node.name, Diagnostics._0_is_not_a_valid_meta_property_for_keyword_import_Did_you_mean_meta_or_defer, unescapeLeadingUnderscores(node.name.escapedText)); } return grammarErrorOnNode(node.name, Diagnostics._0_is_not_a_valid_meta_property_for_keyword_1_Did_you_mean_2, unescapeLeadingUnderscores(node.name.escapedText), tokenToString(node.keywordToken), "meta"); } } break; } } function hasParseDiagnostics(sourceFile) { return sourceFile.parseDiagnostics.length > 0; } function grammarErrorOnFirstToken(node, message, ...args) { const sourceFile = getSourceFileOfNode(node); if (!hasParseDiagnostics(sourceFile)) { const span = getSpanOfTokenAtPosition(sourceFile, node.pos); diagnostics.add(createFileDiagnostic(sourceFile, span.start, span.length, message, ...args)); return true; } return false; } function grammarErrorAtPos(nodeForSourceFile, start, length2, message, ...args) { const sourceFile = getSourceFileOfNode(nodeForSourceFile); if (!hasParseDiagnostics(sourceFile)) { diagnostics.add(createFileDiagnostic(sourceFile, start, length2, message, ...args)); return true; } return false; } function grammarErrorOnNodeSkippedOn(key, node, message, ...args) { const sourceFile = getSourceFileOfNode(node); if (!hasParseDiagnostics(sourceFile)) { errorSkippedOn(key, node, message, ...args); return true; } return false; } function grammarErrorOnNode(node, message, ...args) { const sourceFile = getSourceFileOfNode(node); if (!hasParseDiagnostics(sourceFile)) { error2(node, message, ...args); return true; } return false; } function checkGrammarConstructorTypeParameters(node) { const jsdocTypeParameters = isInJSFile(node) ? getJSDocTypeParameterDeclarations(node) : undefined; const range = node.typeParameters || jsdocTypeParameters && firstOrUndefined(jsdocTypeParameters); if (range) { const pos = range.pos === range.end ? range.pos : skipTrivia2(getSourceFileOfNode(node).text, range.pos); return grammarErrorAtPos(node, pos, range.end - pos, Diagnostics.Type_parameters_cannot_appear_on_a_constructor_declaration); } } function checkGrammarConstructorTypeAnnotation(node) { const type = node.type || getEffectiveReturnTypeNode(node); if (type) { return grammarErrorOnNode(type, Diagnostics.Type_annotation_cannot_appear_on_a_constructor_declaration); } } function checkGrammarProperty(node) { if (isComputedPropertyName(node.name) && isBinaryExpression(node.name.expression) && node.name.expression.operatorToken.kind === 103) { return grammarErrorOnNode(node.parent.members[0], Diagnostics.A_mapped_type_may_not_declare_properties_or_methods); } if (isClassLike(node.parent)) { if (isStringLiteral(node.name) && node.name.text === "constructor") { return grammarErrorOnNode(node.name, Diagnostics.Classes_may_not_have_a_field_named_constructor); } if (checkGrammarForInvalidDynamicName(node.name, Diagnostics.A_computed_property_name_in_a_class_property_declaration_must_have_a_simple_literal_type_or_a_unique_symbol_type)) { return true; } if (languageVersion < 2 && isPrivateIdentifier(node.name)) { return grammarErrorOnNode(node.name, Diagnostics.Private_identifiers_are_only_available_when_targeting_ECMAScript_2015_and_higher); } if (languageVersion < 2 && isAutoAccessorPropertyDeclaration(node) && !(node.flags & 33554432)) { return grammarErrorOnNode(node.name, Diagnostics.Properties_with_the_accessor_modifier_are_only_available_when_targeting_ECMAScript_2015_and_higher); } if (isAutoAccessorPropertyDeclaration(node) && checkGrammarForInvalidQuestionMark(node.questionToken, Diagnostics.An_accessor_property_cannot_be_declared_optional)) { return true; } } else if (node.parent.kind === 265) { if (checkGrammarForInvalidDynamicName(node.name, Diagnostics.A_computed_property_name_in_an_interface_must_refer_to_an_expression_whose_type_is_a_literal_type_or_a_unique_symbol_type)) { return true; } Debug.assertNode(node, isPropertySignature); if (node.initializer) { return grammarErrorOnNode(node.initializer, Diagnostics.An_interface_property_cannot_have_an_initializer); } } else if (isTypeLiteralNode(node.parent)) { if (checkGrammarForInvalidDynamicName(node.name, Diagnostics.A_computed_property_name_in_a_type_literal_must_refer_to_an_expression_whose_type_is_a_literal_type_or_a_unique_symbol_type)) { return true; } Debug.assertNode(node, isPropertySignature); if (node.initializer) { return grammarErrorOnNode(node.initializer, Diagnostics.A_type_literal_property_cannot_have_an_initializer); } } if (node.flags & 33554432) { checkAmbientInitializer(node); } if (isPropertyDeclaration(node) && node.exclamationToken && (!isClassLike(node.parent) || !node.type || node.initializer || node.flags & 33554432 || isStatic(node) || hasAbstractModifier(node))) { const message = node.initializer ? Diagnostics.Declarations_with_initializers_cannot_also_have_definite_assignment_assertions : !node.type ? Diagnostics.Declarations_with_definite_assignment_assertions_must_also_have_type_annotations : Diagnostics.A_definite_assignment_assertion_is_not_permitted_in_this_context; return grammarErrorOnNode(node.exclamationToken, message); } } function checkGrammarTopLevelElementForRequiredDeclareModifier(node) { if (node.kind === 265 || node.kind === 266 || node.kind === 273 || node.kind === 272 || node.kind === 279 || node.kind === 278 || node.kind === 271 || hasSyntacticModifier(node, 128 | 32 | 2048)) { return false; } return grammarErrorOnFirstToken(node, Diagnostics.Top_level_declarations_in_d_ts_files_must_start_with_either_a_declare_or_export_modifier); } function checkGrammarTopLevelElementsForRequiredDeclareModifier(file) { for (const decl of file.statements) { if (isDeclaration(decl) || decl.kind === 244) { if (checkGrammarTopLevelElementForRequiredDeclareModifier(decl)) { return true; } } } return false; } function checkGrammarSourceFile(node) { return !!(node.flags & 33554432) && checkGrammarTopLevelElementsForRequiredDeclareModifier(node); } function checkGrammarStatementInAmbientContext(node) { if (node.flags & 33554432) { const links = getNodeLinks(node); if (!links.hasReportedStatementInAmbientContext && (isFunctionLike(node.parent) || isAccessor(node.parent))) { return getNodeLinks(node).hasReportedStatementInAmbientContext = grammarErrorOnFirstToken(node, Diagnostics.An_implementation_cannot_be_declared_in_ambient_contexts); } if (node.parent.kind === 242 || node.parent.kind === 269 || node.parent.kind === 308) { const links2 = getNodeLinks(node.parent); if (!links2.hasReportedStatementInAmbientContext) { return links2.hasReportedStatementInAmbientContext = grammarErrorOnFirstToken(node, Diagnostics.Statements_are_not_allowed_in_ambient_contexts); } } } return false; } function checkGrammarNumericLiteral(node) { const isFractional = getTextOfNode(node).includes("."); const isScientific = node.numericLiteralFlags & 16; if (isFractional || isScientific) { return; } const value = +node.text; if (value <= 2 ** 53 - 1) { return; } addErrorOrSuggestion(false, createDiagnosticForNode(node, Diagnostics.Numeric_literals_with_absolute_values_equal_to_2_53_or_greater_are_too_large_to_be_represented_accurately_as_integers)); } function checkGrammarBigIntLiteral(node) { const literalType = isLiteralTypeNode(node.parent) || isPrefixUnaryExpression(node.parent) && isLiteralTypeNode(node.parent.parent); if (!literalType) { if (!(node.flags & 33554432) && languageVersion < 7) { if (grammarErrorOnNode(node, Diagnostics.BigInt_literals_are_not_available_when_targeting_lower_than_ES2020)) { return true; } } } return false; } function grammarErrorAfterFirstToken(node, message, ...args) { const sourceFile = getSourceFileOfNode(node); if (!hasParseDiagnostics(sourceFile)) { const span = getSpanOfTokenAtPosition(sourceFile, node.pos); diagnostics.add(createFileDiagnostic(sourceFile, textSpanEnd(span), 0, message, ...args)); return true; } return false; } function getAmbientModules() { if (!ambientModulesCache) { ambientModulesCache = []; globals.forEach((global2, sym) => { if (ambientModuleSymbolRegex.test(sym)) { ambientModulesCache.push(global2); } }); } return ambientModulesCache; } function checkGrammarImportClause(node) { var _a, _b; if (node.phaseModifier === 156) { if (node.name && node.namedBindings) { return grammarErrorOnNode(node, Diagnostics.A_type_only_import_can_specify_a_default_import_or_named_bindings_but_not_both); } if (((_a = node.namedBindings) == null ? undefined : _a.kind) === 276) { return checkGrammarNamedImportsOrExports(node.namedBindings); } } else if (node.phaseModifier === 166) { if (node.name) { return grammarErrorOnNode(node, Diagnostics.Default_imports_are_not_allowed_in_a_deferred_import); } if (((_b = node.namedBindings) == null ? undefined : _b.kind) === 276) { return grammarErrorOnNode(node, Diagnostics.Named_imports_are_not_allowed_in_a_deferred_import); } if (moduleKind !== 99 && moduleKind !== 200) { return grammarErrorOnNode(node, Diagnostics.Deferred_imports_are_only_supported_when_the_module_flag_is_set_to_esnext_or_preserve); } } return false; } function checkGrammarNamedImportsOrExports(namedBindings) { return !!forEach(namedBindings.elements, (specifier) => { if (specifier.isTypeOnly) { return grammarErrorOnFirstToken(specifier, specifier.kind === 277 ? Diagnostics.The_type_modifier_cannot_be_used_on_a_named_import_when_import_type_is_used_on_its_import_statement : Diagnostics.The_type_modifier_cannot_be_used_on_a_named_export_when_export_type_is_used_on_its_export_statement); } }); } function checkGrammarImportCallExpression(node) { if (compilerOptions.verbatimModuleSyntax && moduleKind === 1) { return grammarErrorOnNode(node, getVerbatimModuleSyntaxErrorMessage(node)); } if (node.expression.kind === 237) { if (moduleKind !== 99 && moduleKind !== 200) { return grammarErrorOnNode(node, Diagnostics.Deferred_imports_are_only_supported_when_the_module_flag_is_set_to_esnext_or_preserve); } } else if (moduleKind === 5) { return grammarErrorOnNode(node, Diagnostics.Dynamic_imports_are_only_supported_when_the_module_flag_is_set_to_es2020_es2022_esnext_commonjs_amd_system_umd_node16_node18_node20_or_nodenext); } if (node.typeArguments) { return grammarErrorOnNode(node, Diagnostics.This_use_of_import_is_invalid_import_calls_can_be_written_but_they_must_have_parentheses_and_cannot_have_type_arguments); } const nodeArguments = node.arguments; if (!(100 <= moduleKind && moduleKind <= 199) && moduleKind !== 99 && moduleKind !== 200) { checkGrammarForDisallowedTrailingComma(nodeArguments); if (nodeArguments.length > 1) { const importAttributesArgument = nodeArguments[1]; return grammarErrorOnNode(importAttributesArgument, Diagnostics.Dynamic_imports_only_support_a_second_argument_when_the_module_option_is_set_to_esnext_node16_node18_node20_nodenext_or_preserve); } } if (nodeArguments.length === 0 || nodeArguments.length > 2) { return grammarErrorOnNode(node, Diagnostics.Dynamic_imports_can_only_accept_a_module_specifier_and_an_optional_set_of_attributes_as_arguments); } const spreadElement = find(nodeArguments, isSpreadElement); if (spreadElement) { return grammarErrorOnNode(spreadElement, Diagnostics.Argument_of_dynamic_import_cannot_be_spread_element); } return false; } function findMatchingTypeReferenceOrTypeAliasReference(source, unionTarget) { const sourceObjectFlags = getObjectFlags(source); if (sourceObjectFlags & (4 | 16) && unionTarget.flags & 134217728) { return find(unionTarget.types, (target) => { if (target.flags & 1048576) { const overlapObjFlags = sourceObjectFlags & getObjectFlags(target); if (overlapObjFlags & 4) { return source.target === target.target; } if (overlapObjFlags & 16) { return !!source.aliasSymbol && source.aliasSymbol === target.aliasSymbol; } } return false; }); } } function findBestTypeForObjectLiteral(source, unionTarget) { if (getObjectFlags(source) & 128 && someType(unionTarget, isArrayLikeType)) { return find(unionTarget.types, (t) => !isArrayLikeType(t)); } } function findBestTypeForInvokable(source, unionTarget) { let signatureKind = 0; const hasSignatures2 = getSignaturesOfType(source, signatureKind).length > 0 || (signatureKind = 1, getSignaturesOfType(source, signatureKind).length > 0); if (hasSignatures2) { return find(unionTarget.types, (t) => getSignaturesOfType(t, signatureKind).length > 0); } } function findMostOverlappyType(source, unionTarget) { let bestMatch; if (!(source.flags & (12713980 | 14680064))) { let matchingCount = 0; for (const target of unionTarget.types) { if (!(target.flags & (12713980 | 14680064))) { const overlap = getIntersectionType([getIndexType(source), getIndexType(target)]); if (overlap.flags & 2097152) { return target; } else if (isUnitType(overlap) || overlap.flags & 134217728) { const len = overlap.flags & 134217728 ? countWhere(overlap.types, isUnitType) : 1; if (len >= matchingCount) { bestMatch = target; matchingCount = len; } } } } } return bestMatch; } function filterPrimitivesIfContainsNonPrimitive(type) { if (maybeTypeOfKind(type, 131072)) { const result = filterType(type, (t) => !(t.flags & 12713980)); if (!(result.flags & 262144)) { return result; } } return type; } function findMatchingDiscriminantType(source, target, isRelatedTo) { if (target.flags & 134217728 && source.flags & (268435456 | 1048576)) { const match = getMatchingUnionConstituentForType(target, source); if (match) { return match; } const sourceProperties = getPropertiesOfType(source); if (sourceProperties) { const sourcePropertiesFiltered = findDiscriminantProperties(sourceProperties, target); if (sourcePropertiesFiltered) { const discriminated = discriminateTypeByDiscriminableItems(target, map(sourcePropertiesFiltered, (p) => [() => getTypeOfSymbol(p), p.escapedName]), isRelatedTo); if (discriminated !== target) { return discriminated; } } } } return; } function getEffectivePropertyNameForPropertyNameNode(node) { const name = getPropertyNameForPropertyNameNode(node); return name ? name : isComputedPropertyName(node) ? tryGetNameFromType(getTypeOfExpression(node.expression)) : undefined; } function getCombinedModifierFlagsCached(node) { if (lastGetCombinedModifierFlagsNode === node) { return lastGetCombinedModifierFlagsResult; } lastGetCombinedModifierFlagsNode = node; lastGetCombinedModifierFlagsResult = getCombinedModifierFlags(node); return lastGetCombinedModifierFlagsResult; } function getCombinedNodeFlagsCached(node) { if (lastGetCombinedNodeFlagsNode === node) { return lastGetCombinedNodeFlagsResult; } lastGetCombinedNodeFlagsNode = node; lastGetCombinedNodeFlagsResult = getCombinedNodeFlags(node); return lastGetCombinedNodeFlagsResult; } function isVarConstLike2(node) { const blockScopeKind = getCombinedNodeFlagsCached(node) & 7; return blockScopeKind === 2 || blockScopeKind === 4 || blockScopeKind === 6; } function getJSXRuntimeImportSpecifier(file, specifierText) { const jsxImportIndex = compilerOptions.importHelpers ? 1 : 0; const specifier = file == null ? undefined : file.imports[jsxImportIndex]; if (specifier) { Debug.assert(nodeIsSynthesized(specifier) && specifier.text === specifierText, `Expected sourceFile.imports[${jsxImportIndex}] to be the synthesized JSX runtime import`); } return specifier; } function getImportHelpersImportSpecifier(file) { Debug.assert(compilerOptions.importHelpers, "Expected importHelpers to be enabled"); const specifier = file.imports[0]; Debug.assert(specifier && nodeIsSynthesized(specifier) && specifier.text === "tslib", `Expected sourceFile.imports[0] to be the synthesized tslib import`); return specifier; } function sortSymbolsIfTSGoCompat(array) { if (stableTypeOrdering && array) { return array.sort(compareSymbols); } return array; } function compareSymbols(s1, s2) { if (s1 === s2) return 0; if (s1 === undefined) return 1; if (s2 === undefined) return -1; if (length(s1.declarations) !== 0 && length(s2.declarations) !== 0) { const r2 = compareNodes(s1.declarations[0], s2.declarations[0]); if (r2 !== 0) return r2; } else if (length(s1.declarations) !== 0) { return -1; } else if (length(s2.declarations) !== 0) { return 1; } const r = compareComparableValues(s1.escapedName, s2.escapedName); if (r !== 0) return r; return getSymbolId(s1) - getSymbolId(s2); } function compareNodes(n1, n2) { if (n1 === n2) return 0; if (n1 === undefined) return 1; if (n2 === undefined) return -1; const s1 = getSourceFileOfNode(n1); const s2 = getSourceFileOfNode(n2); if (s1 !== s2) { const f1 = fileIndexMap.get(s1); const f2 = fileIndexMap.get(s2); return f1 - f2; } return n1.pos - n2.pos; } function compareTypes(t1, t2) { if (t1 === t2) return 0; if (t1 === undefined) return -1; if (t2 === undefined) return 1; let c = getSortOrderFlags(t1) - getSortOrderFlags(t2); if (c !== 0) return c; c = compareTypeNames(t1, t2); if (c !== 0) return c; if (t1.flags & (1 | 2 | 32 | 64 | 256 | 128 | 512 | 16 | 4 | 8 | 262144 | 131072)) {} else if (t1.flags & 1048576) { const c2 = compareSymbols(t1.symbol, t2.symbol); if (c2 !== 0) return c2; if (getObjectFlags(t1) & 4 && getObjectFlags(t2) & 4) { const r1 = t1; const r2 = t2; if (getObjectFlags(r1.target) & 8 && getObjectFlags(r2.target) & 8) { const c3 = compareTupleTypes(r1.target, r2.target); if (c3 !== 0) { return c3; } } if (r1.node === undefined && r2.node === undefined) { const c3 = compareTypeLists(t1.resolvedTypeArguments, t2.resolvedTypeArguments); if (c3 !== 0) { return c3; } } else { let c3 = compareNodes(r1.node, r2.node); if (c3 !== 0) { return c3; } c3 = compareTypeMappers(t1.mapper, t2.mapper); if (c3 !== 0) { return c3; } } } else if (getObjectFlags(t1) & 4) { return -1; } else if (getObjectFlags(t2) & 4) { return 1; } else { let c3 = (getObjectFlags(t1) & 142607679) - (getObjectFlags(t2) & 142607679); if (c3 !== 0) { return c3; } c3 = compareTypeMappers(t1.mapper, t2.mapper); if (c3 !== 0) { return c3; } } } else if (t1.flags & 134217728) { const o1 = t1.origin; const o2 = t2.origin; if (o1 === undefined && o2 === undefined) { const c2 = compareTypeLists(t1.types, t2.types); if (c2 !== 0) { return c2; } } else if (o1 === undefined) { return 1; } else if (o2 === undefined) { return -1; } else { const c2 = compareTypes(o1, o2); if (c2 !== 0) { return c2; } } } else if (t1.flags & 268435456) { const c2 = compareTypeLists(t1.types, t2.types); if (c2 !== 0) { return c2; } } else if (t1.flags & (65536 | 32768 | 16384)) { const c2 = compareSymbols(t1.symbol, t2.symbol); if (c2 !== 0) { return c2; } } else if (t1.flags & 1024) { const c2 = compareComparableValues(t1.value, t2.value); if (c2 !== 0) { return c2; } } else if (t1.flags & 2048) { const c2 = compareComparableValues(t1.value, t2.value); if (c2 !== 0) { return c2; } } else if (t1.flags & 8192) { const b1 = t1.intrinsicName === "true"; const b2 = t2.intrinsicName === "true"; if (b1 !== b2) { if (b1) { return 1; } return -1; } } else if (t1.flags & 524288) { const c2 = compareSymbols(t1.symbol, t2.symbol); if (c2 !== 0) { return c2; } } else if (t1.flags & 2097152) { let c2 = compareTypes(t1.type, t2.type); if (c2 !== 0) { return c2; } c2 = t1.indexFlags - t2.indexFlags; if (c2 !== 0) { return c2; } } else if (t1.flags & 33554432) { let c2 = compareTypes(t1.objectType, t2.objectType); if (c2 !== 0) { return c2; } c2 = compareTypes(t1.indexType, t2.indexType); if (c2 !== 0) { return c2; } } else if (t1.flags & 67108864) { let c2 = compareNodes(t1.root.node, t2.root.node); if (c2 !== 0) { return c2; } c2 = compareTypeMappers(t1.mapper, t2.mapper); if (c2 !== 0) { return c2; } } else if (t1.flags & 16777216) { let c2 = compareTypes(t1.baseType, t2.baseType); if (c2 !== 0) { return c2; } c2 = compareTypes(t1.constraint, t2.constraint); if (c2 !== 0) { return c2; } } else if (t1.flags & 4194304) { let c2 = slicesCompareString(t1.texts, t2.texts); if (c2 !== 0) { return c2; } c2 = compareTypeLists(t1.types, t2.types); if (c2 !== 0) { return c2; } } else if (t1.flags & 8388608) { const c2 = compareTypes(t1.type, t2.type); if (c2 !== 0) { return c2; } } return t1.id - t2.id; function slicesCompareString(s1, s2) { for (let i = 0;i < s1.length; i++) { if (i > s2.length) { return 1; } const v1 = s1[i]; const v2 = s2[i]; const c2 = compareComparableValues(v1, v2); if (c2 !== 0) return c2; } if (s1.length < s2.length) { return -1; } return 0; } } function getSortOrderFlags(t) { if (t.flags & (32768 | 65536) && !(t.flags & 134217728)) { return 65536; } return t.flags; } function compareTypeNames(t1, t2) { const s1 = getTypeNameSymbol(t1); const s2 = getTypeNameSymbol(t2); if (s1 === s2) { if (t1.aliasTypeArguments !== undefined) { return compareTypeLists(t1.aliasTypeArguments, t2.aliasTypeArguments); } return 0; } if (s1 === undefined) { return 1; } if (s2 === undefined) { return -1; } return compareComparableValues(s1.escapedName, s2.escapedName); } function getTypeNameSymbol(t) { if (t.aliasSymbol !== undefined) { return t.aliasSymbol; } if (t.flags & (524288 | 8388608) || getObjectFlags(t) & (3 | 4)) { return t.symbol; } return; } function compareTupleTypes(t1, t2) { var _a; if (t1 === t2) { return 0; } if (t1.readonly !== t2.readonly) { return t1.readonly ? 1 : -1; } if (t1.elementFlags.length !== t2.elementFlags.length) { return t1.elementFlags.length - t2.elementFlags.length; } for (let i = 0;i < t1.elementFlags.length; i++) { const c = t1.elementFlags[i] - t2.elementFlags[i]; if (c !== 0) { return c; } } for (let i = 0;i < (((_a = t1.labeledElementDeclarations) == null ? undefined : _a.length) ?? 0); i++) { const c = compareElementLabels(t1.labeledElementDeclarations[i], t2.labeledElementDeclarations[i]); if (c !== 0) { return c; } } return 0; } function compareElementLabels(n1, n2) { if (n1 === n2) { return 0; } if (n1 === undefined) { return -1; } if (n2 === undefined) { return 1; } return compareComparableValues(n1.name.escapedText, n2.name.escapedText); } function compareTypeLists(s1, s2) { if (length(s1) !== length(s2)) { return length(s1) - length(s2); } for (let i = 0;i < length(s1); i++) { const c = compareTypes(s1[i], s2 == null ? undefined : s2[i]); if (c !== 0) return c; } return 0; } function compareTypeMappers(m1, m2) { if (m1 === m2) { return 0; } if (m1 === undefined) { return 1; } if (m2 === undefined) { return -1; } const kind1 = m1.kind; const kind2 = m2.kind; if (kind1 !== kind2) { return kind1 - kind2; } switch (kind1) { case 0: { const c = compareTypes(m1.source, m2.source); if (c !== 0) { return c; } return compareTypes(m1.target, m2.target); } case 1: { const c = compareTypeLists(m1.sources, m2.sources); if (c !== 0) { return c; } return compareTypeLists(m1.targets, m2.targets); } case 5: { const c = compareTypeMappers(m1.mapper1, m2.mapper1); if (c !== 0) { return c; } return compareTypeMappers(m1.mapper2, m2.mapper2); } } return 0; } } function isNotAccessor(declaration) { return !isAccessor(declaration); } function isNotOverload(declaration) { return declaration.kind !== 263 && declaration.kind !== 175 || !!declaration.body; } function isDeclarationNameOrImportPropertyName(name) { switch (name.parent.kind) { case 277: case 282: return isIdentifier(name) || name.kind === 11; default: return isDeclarationName(name); } } var JsxNames; ((JsxNames2) => { JsxNames2.JSX = "JSX"; JsxNames2.IntrinsicElements = "IntrinsicElements"; JsxNames2.ElementClass = "ElementClass"; JsxNames2.ElementAttributesPropertyNameContainer = "ElementAttributesProperty"; JsxNames2.ElementChildrenAttributeNameContainer = "ElementChildrenAttribute"; JsxNames2.Element = "Element"; JsxNames2.ElementType = "ElementType"; JsxNames2.IntrinsicAttributes = "IntrinsicAttributes"; JsxNames2.IntrinsicClassAttributes = "IntrinsicClassAttributes"; JsxNames2.LibraryManagedAttributes = "LibraryManagedAttributes"; })(JsxNames || (JsxNames = {})); var ReactNames; ((ReactNames2) => { ReactNames2.Fragment = "Fragment"; })(ReactNames || (ReactNames = {})); function getIterationTypesKeyFromIterationTypeKind(typeKind) { switch (typeKind) { case 0: return "yieldType"; case 1: return "returnType"; case 2: return "nextType"; } } function signatureHasRestParameter(s) { return !!(s.flags & 1); } function signatureHasLiteralTypes(s) { return !!(s.flags & 2); } function createBasicNodeBuilderModuleSpecifierResolutionHost(host) { return { getCommonSourceDirectory: host.getCommonSourceDirectory ? () => host.getCommonSourceDirectory() : () => "", getCurrentDirectory: () => host.getCurrentDirectory(), getSymlinkCache: maybeBind(host, host.getSymlinkCache), getPackageJsonInfoCache: () => { var _a; return (_a = host.getPackageJsonInfoCache) == null ? undefined : _a.call(host); }, useCaseSensitiveFileNames: () => host.useCaseSensitiveFileNames(), redirectTargetsMap: host.redirectTargetsMap, getRedirectFromSourceFile: (fileName) => host.getRedirectFromSourceFile(fileName), isSourceOfProjectReferenceRedirect: (fileName) => host.isSourceOfProjectReferenceRedirect(fileName), fileExists: (fileName) => host.fileExists(fileName), getFileIncludeReasons: () => host.getFileIncludeReasons(), readFile: host.readFile ? (fileName) => host.readFile(fileName) : undefined, getDefaultResolutionModeForFile: (file) => host.getDefaultResolutionModeForFile(file), getModeForResolutionAtIndex: (file, index) => host.getModeForResolutionAtIndex(file, index), getGlobalTypingsCacheLocation: maybeBind(host, host.getGlobalTypingsCacheLocation) }; } var SymbolTrackerImpl = class _SymbolTrackerImpl { constructor(context, tracker, moduleResolverHost) { this.moduleResolverHost = undefined; this.inner = undefined; this.disableTrackSymbol = false; var _a; while (tracker instanceof _SymbolTrackerImpl) { tracker = tracker.inner; } this.inner = tracker; this.moduleResolverHost = moduleResolverHost; this.context = context; this.canTrackSymbol = !!((_a = this.inner) == null ? undefined : _a.trackSymbol); } trackSymbol(symbol, enclosingDeclaration, meaning) { var _a, _b; if (((_a = this.inner) == null ? undefined : _a.trackSymbol) && !this.disableTrackSymbol) { if (this.inner.trackSymbol(symbol, enclosingDeclaration, meaning)) { this.onDiagnosticReported(); return true; } if (!(symbol.flags & 262144)) ((_b = this.context).trackedSymbols ?? (_b.trackedSymbols = [])).push([symbol, enclosingDeclaration, meaning]); } return false; } reportInaccessibleThisError() { var _a; if ((_a = this.inner) == null ? undefined : _a.reportInaccessibleThisError) { this.onDiagnosticReported(); this.inner.reportInaccessibleThisError(); } } reportPrivateInBaseOfClassExpression(propertyName) { var _a; if ((_a = this.inner) == null ? undefined : _a.reportPrivateInBaseOfClassExpression) { this.onDiagnosticReported(); this.inner.reportPrivateInBaseOfClassExpression(propertyName); } } reportInaccessibleUniqueSymbolError() { var _a; if ((_a = this.inner) == null ? undefined : _a.reportInaccessibleUniqueSymbolError) { this.onDiagnosticReported(); this.inner.reportInaccessibleUniqueSymbolError(); } } reportCyclicStructureError() { var _a; if ((_a = this.inner) == null ? undefined : _a.reportCyclicStructureError) { this.onDiagnosticReported(); this.inner.reportCyclicStructureError(); } } reportLikelyUnsafeImportRequiredError(specifier, symbolName2) { var _a; if ((_a = this.inner) == null ? undefined : _a.reportLikelyUnsafeImportRequiredError) { this.onDiagnosticReported(); this.inner.reportLikelyUnsafeImportRequiredError(specifier, symbolName2); } } reportTruncationError() { var _a; if ((_a = this.inner) == null ? undefined : _a.reportTruncationError) { this.onDiagnosticReported(); this.inner.reportTruncationError(); } } reportNonlocalAugmentation(containingFile, parentSymbol, augmentingSymbol) { var _a; if ((_a = this.inner) == null ? undefined : _a.reportNonlocalAugmentation) { this.onDiagnosticReported(); this.inner.reportNonlocalAugmentation(containingFile, parentSymbol, augmentingSymbol); } } reportNonSerializableProperty(propertyName) { var _a; if ((_a = this.inner) == null ? undefined : _a.reportNonSerializableProperty) { this.onDiagnosticReported(); this.inner.reportNonSerializableProperty(propertyName); } } onDiagnosticReported() { this.context.reportedDiagnostic = true; } reportInferenceFallback(node) { var _a; if (((_a = this.inner) == null ? undefined : _a.reportInferenceFallback) && !this.context.suppressReportInferenceFallback) { this.onDiagnosticReported(); this.inner.reportInferenceFallback(node); } } pushErrorFallbackNode(node) { var _a, _b; return (_b = (_a = this.inner) == null ? undefined : _a.pushErrorFallbackNode) == null ? undefined : _b.call(_a, node); } popErrorFallbackNode() { var _a, _b; return (_b = (_a = this.inner) == null ? undefined : _a.popErrorFallbackNode) == null ? undefined : _b.call(_a); } }; function visitNode(node, visitor, test, lift) { if (node === undefined) { return node; } const visited = visitor(node); let visitedNode; if (visited === undefined) { return; } else if (isArray(visited)) { visitedNode = (lift || extractSingleNode)(visited); } else { visitedNode = visited; } Debug.assertNode(visitedNode, test); return visitedNode; } function visitNodes2(nodes, visitor, test, start, count) { if (nodes === undefined) { return nodes; } const length2 = nodes.length; if (start === undefined || start < 0) { start = 0; } if (count === undefined || count > length2 - start) { count = length2 - start; } let hasTrailingComma; let pos = -1; let end = -1; if (start > 0 || count < length2) { hasTrailingComma = nodes.hasTrailingComma && start + count === length2; } else { pos = nodes.pos; end = nodes.end; hasTrailingComma = nodes.hasTrailingComma; } const updated = visitArrayWorker(nodes, visitor, test, start, count); if (updated !== nodes) { const updatedArray = factory.createNodeArray(updated, hasTrailingComma); setTextRangePosEnd(updatedArray, pos, end); return updatedArray; } return nodes; } function visitArray(nodes, visitor, test, start, count) { if (nodes === undefined) { return nodes; } const length2 = nodes.length; if (start === undefined || start < 0) { start = 0; } if (count === undefined || count > length2 - start) { count = length2 - start; } return visitArrayWorker(nodes, visitor, test, start, count); } function visitArrayWorker(nodes, visitor, test, start, count) { let updated; const length2 = nodes.length; if (start > 0 || count < length2) { updated = []; } for (let i = 0;i < count; i++) { const node = nodes[i + start]; const visited = node !== undefined ? visitor ? visitor(node) : node : undefined; if (updated !== undefined || visited === undefined || visited !== node) { if (updated === undefined) { updated = nodes.slice(0, i); Debug.assertEachNode(updated, test); } if (visited) { if (isArray(visited)) { for (const visitedNode of visited) { Debug.assertNode(visitedNode, test); updated.push(visitedNode); } } else { Debug.assertNode(visited, test); updated.push(visited); } } } } if (updated) { return updated; } Debug.assertEachNode(nodes, test); return nodes; } function visitLexicalEnvironment(statements, visitor, context, start, ensureUseStrict, nodesVisitor = visitNodes2) { context.startLexicalEnvironment(); statements = nodesVisitor(statements, visitor, isStatement, start); if (ensureUseStrict) statements = context.factory.ensureUseStrict(statements); return factory.mergeLexicalEnvironment(statements, context.endLexicalEnvironment()); } function visitParameterList(nodes, visitor, context, nodesVisitor = visitNodes2) { let updated; context.startLexicalEnvironment(); if (nodes) { context.setLexicalEnvironmentFlags(1, true); updated = nodesVisitor(nodes, visitor, isParameter); if (context.getLexicalEnvironmentFlags() & 2 && getEmitScriptTarget(context.getCompilerOptions()) >= 2) { updated = addDefaultValueAssignmentsIfNeeded(updated, context); } context.setLexicalEnvironmentFlags(1, false); } context.suspendLexicalEnvironment(); return updated; } function addDefaultValueAssignmentsIfNeeded(parameters, context) { let result; for (let i = 0;i < parameters.length; i++) { const parameter = parameters[i]; const updated = addDefaultValueAssignmentIfNeeded(parameter, context); if (result || updated !== parameter) { if (!result) result = parameters.slice(0, i); result[i] = updated; } } if (result) { return setTextRange(context.factory.createNodeArray(result, parameters.hasTrailingComma), parameters); } return parameters; } function addDefaultValueAssignmentIfNeeded(parameter, context) { return parameter.dotDotDotToken ? parameter : isBindingPattern(parameter.name) ? addDefaultValueAssignmentForBindingPattern(parameter, context) : parameter.initializer ? addDefaultValueAssignmentForInitializer(parameter, parameter.name, parameter.initializer, context) : parameter; } function addDefaultValueAssignmentForBindingPattern(parameter, context) { const { factory: factory2 } = context; context.addInitializationStatement(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(parameter.name, undefined, parameter.type, parameter.initializer ? factory2.createConditionalExpression(factory2.createStrictEquality(factory2.getGeneratedNameForNode(parameter), factory2.createVoidZero()), undefined, parameter.initializer, undefined, factory2.getGeneratedNameForNode(parameter)) : factory2.getGeneratedNameForNode(parameter)) ]))); return factory2.updateParameterDeclaration(parameter, parameter.modifiers, parameter.dotDotDotToken, factory2.getGeneratedNameForNode(parameter), parameter.questionToken, parameter.type, undefined); } function addDefaultValueAssignmentForInitializer(parameter, name, initializer, context) { const factory2 = context.factory; context.addInitializationStatement(factory2.createIfStatement(factory2.createTypeCheck(factory2.cloneNode(name), "undefined"), setEmitFlags(setTextRange(factory2.createBlock([ factory2.createExpressionStatement(setEmitFlags(setTextRange(factory2.createAssignment(setEmitFlags(factory2.cloneNode(name), 96), setEmitFlags(initializer, 96 | getEmitFlags(initializer) | 3072)), parameter), 3072)) ]), parameter), 1 | 64 | 768 | 3072))); return factory2.updateParameterDeclaration(parameter, parameter.modifiers, parameter.dotDotDotToken, parameter.name, parameter.questionToken, parameter.type, undefined); } function visitFunctionBody(node, visitor, context, nodeVisitor = visitNode) { context.resumeLexicalEnvironment(); const updated = nodeVisitor(node, visitor, isConciseBody); const declarations = context.endLexicalEnvironment(); if (some(declarations)) { if (!updated) { return context.factory.createBlock(declarations); } const block = context.factory.converters.convertToFunctionBlock(updated); const statements = factory.mergeLexicalEnvironment(block.statements, declarations); return context.factory.updateBlock(block, statements); } return updated; } function visitIterationBody(body, visitor, context, nodeVisitor = visitNode) { context.startBlockScope(); const updated = nodeVisitor(body, visitor, isStatement, context.factory.liftToBlock); Debug.assert(updated); const declarations = context.endBlockScope(); if (some(declarations)) { if (isBlock(updated)) { declarations.push(...updated.statements); return context.factory.updateBlock(updated, declarations); } declarations.push(updated); return context.factory.createBlock(declarations); } return updated; } function visitCommaListElements(elements, visitor, discardVisitor = visitor) { if (discardVisitor === visitor || elements.length <= 1) { return visitNodes2(elements, visitor, isExpression); } let i = 0; const length2 = elements.length; return visitNodes2(elements, (node) => { const discarded = i < length2 - 1; i++; return discarded ? discardVisitor(node) : visitor(node); }, isExpression); } function visitEachChild(node, visitor, context = nullTransformationContext, nodesVisitor = visitNodes2, tokenVisitor, nodeVisitor = visitNode) { if (node === undefined) { return; } const fn = visitEachChildTable[node.kind]; return fn === undefined ? node : fn(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor); } var visitEachChildTable = { [167]: function visitEachChildOfQualifiedName(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateQualifiedName(node, Debug.checkDefined(nodeVisitor(node.left, visitor, isEntityName)), Debug.checkDefined(nodeVisitor(node.right, visitor, isIdentifier))); }, [168]: function visitEachChildOfComputedPropertyName(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateComputedPropertyName(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [169]: function visitEachChildOfTypeParameterDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTypeParameterDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifier), Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier)), nodeVisitor(node.constraint, visitor, isTypeNode), nodeVisitor(node.default, visitor, isTypeNode)); }, [170]: function visitEachChildOfParameterDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateParameterDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), tokenVisitor ? nodeVisitor(node.dotDotDotToken, tokenVisitor, isDotDotDotToken) : node.dotDotDotToken, Debug.checkDefined(nodeVisitor(node.name, visitor, isBindingName)), tokenVisitor ? nodeVisitor(node.questionToken, tokenVisitor, isQuestionToken) : node.questionToken, nodeVisitor(node.type, visitor, isTypeNode), nodeVisitor(node.initializer, visitor, isExpression)); }, [171]: function visitEachChildOfDecorator(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateDecorator(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [172]: function visitEachChildOfPropertySignature(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updatePropertySignature(node, nodesVisitor(node.modifiers, visitor, isModifier), Debug.checkDefined(nodeVisitor(node.name, visitor, isPropertyName)), tokenVisitor ? nodeVisitor(node.questionToken, tokenVisitor, isQuestionToken) : node.questionToken, nodeVisitor(node.type, visitor, isTypeNode)); }, [173]: function visitEachChildOfPropertyDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updatePropertyDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), Debug.checkDefined(nodeVisitor(node.name, visitor, isPropertyName)), tokenVisitor ? nodeVisitor(node.questionToken ?? node.exclamationToken, tokenVisitor, isQuestionOrExclamationToken) : node.questionToken ?? node.exclamationToken, nodeVisitor(node.type, visitor, isTypeNode), nodeVisitor(node.initializer, visitor, isExpression)); }, [174]: function visitEachChildOfMethodSignature(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateMethodSignature(node, nodesVisitor(node.modifiers, visitor, isModifier), Debug.checkDefined(nodeVisitor(node.name, visitor, isPropertyName)), tokenVisitor ? nodeVisitor(node.questionToken, tokenVisitor, isQuestionToken) : node.questionToken, nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), nodesVisitor(node.parameters, visitor, isParameter), nodeVisitor(node.type, visitor, isTypeNode)); }, [175]: function visitEachChildOfMethodDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateMethodDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), tokenVisitor ? nodeVisitor(node.asteriskToken, tokenVisitor, isAsteriskToken) : node.asteriskToken, Debug.checkDefined(nodeVisitor(node.name, visitor, isPropertyName)), tokenVisitor ? nodeVisitor(node.questionToken, tokenVisitor, isQuestionToken) : node.questionToken, nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), visitParameterList(node.parameters, visitor, context, nodesVisitor), nodeVisitor(node.type, visitor, isTypeNode), visitFunctionBody(node.body, visitor, context, nodeVisitor)); }, [177]: function visitEachChildOfConstructorDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateConstructorDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), visitParameterList(node.parameters, visitor, context, nodesVisitor), visitFunctionBody(node.body, visitor, context, nodeVisitor)); }, [178]: function visitEachChildOfGetAccessorDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateGetAccessorDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), Debug.checkDefined(nodeVisitor(node.name, visitor, isPropertyName)), visitParameterList(node.parameters, visitor, context, nodesVisitor), nodeVisitor(node.type, visitor, isTypeNode), visitFunctionBody(node.body, visitor, context, nodeVisitor)); }, [179]: function visitEachChildOfSetAccessorDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateSetAccessorDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), Debug.checkDefined(nodeVisitor(node.name, visitor, isPropertyName)), visitParameterList(node.parameters, visitor, context, nodesVisitor), visitFunctionBody(node.body, visitor, context, nodeVisitor)); }, [176]: function visitEachChildOfClassStaticBlockDeclaration(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { context.startLexicalEnvironment(); context.suspendLexicalEnvironment(); return context.factory.updateClassStaticBlockDeclaration(node, visitFunctionBody(node.body, visitor, context, nodeVisitor)); }, [180]: function visitEachChildOfCallSignatureDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateCallSignature(node, nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), nodesVisitor(node.parameters, visitor, isParameter), nodeVisitor(node.type, visitor, isTypeNode)); }, [181]: function visitEachChildOfConstructSignatureDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateConstructSignature(node, nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), nodesVisitor(node.parameters, visitor, isParameter), nodeVisitor(node.type, visitor, isTypeNode)); }, [182]: function visitEachChildOfIndexSignatureDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateIndexSignature(node, nodesVisitor(node.modifiers, visitor, isModifierLike), nodesVisitor(node.parameters, visitor, isParameter), Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [183]: function visitEachChildOfTypePredicateNode(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTypePredicateNode(node, nodeVisitor(node.assertsModifier, visitor, isAssertsKeyword), Debug.checkDefined(nodeVisitor(node.parameterName, visitor, isIdentifierOrThisTypeNode)), nodeVisitor(node.type, visitor, isTypeNode)); }, [184]: function visitEachChildOfTypeReferenceNode(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTypeReferenceNode(node, Debug.checkDefined(nodeVisitor(node.typeName, visitor, isEntityName)), nodesVisitor(node.typeArguments, visitor, isTypeNode)); }, [185]: function visitEachChildOfFunctionTypeNode(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateFunctionTypeNode(node, nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), nodesVisitor(node.parameters, visitor, isParameter), Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [186]: function visitEachChildOfConstructorTypeNode(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateConstructorTypeNode(node, nodesVisitor(node.modifiers, visitor, isModifier), nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), nodesVisitor(node.parameters, visitor, isParameter), Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [187]: function visitEachChildOfTypeQueryNode(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTypeQueryNode(node, Debug.checkDefined(nodeVisitor(node.exprName, visitor, isEntityName)), nodesVisitor(node.typeArguments, visitor, isTypeNode)); }, [188]: function visitEachChildOfTypeLiteralNode(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateTypeLiteralNode(node, nodesVisitor(node.members, visitor, isTypeElement)); }, [189]: function visitEachChildOfArrayTypeNode(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateArrayTypeNode(node, Debug.checkDefined(nodeVisitor(node.elementType, visitor, isTypeNode))); }, [190]: function visitEachChildOfTupleTypeNode(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateTupleTypeNode(node, nodesVisitor(node.elements, visitor, isTypeNode)); }, [191]: function visitEachChildOfOptionalTypeNode(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateOptionalTypeNode(node, Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [192]: function visitEachChildOfRestTypeNode(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateRestTypeNode(node, Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [193]: function visitEachChildOfUnionTypeNode(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateUnionTypeNode(node, nodesVisitor(node.types, visitor, isTypeNode)); }, [194]: function visitEachChildOfIntersectionTypeNode(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateIntersectionTypeNode(node, nodesVisitor(node.types, visitor, isTypeNode)); }, [195]: function visitEachChildOfConditionalTypeNode(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateConditionalTypeNode(node, Debug.checkDefined(nodeVisitor(node.checkType, visitor, isTypeNode)), Debug.checkDefined(nodeVisitor(node.extendsType, visitor, isTypeNode)), Debug.checkDefined(nodeVisitor(node.trueType, visitor, isTypeNode)), Debug.checkDefined(nodeVisitor(node.falseType, visitor, isTypeNode))); }, [196]: function visitEachChildOfInferTypeNode(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateInferTypeNode(node, Debug.checkDefined(nodeVisitor(node.typeParameter, visitor, isTypeParameterDeclaration))); }, [206]: function visitEachChildOfImportTypeNode(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateImportTypeNode(node, Debug.checkDefined(nodeVisitor(node.argument, visitor, isTypeNode)), nodeVisitor(node.attributes, visitor, isImportAttributes), nodeVisitor(node.qualifier, visitor, isEntityName), nodesVisitor(node.typeArguments, visitor, isTypeNode), node.isTypeOf); }, [303]: function visitEachChildOfImportTypeAssertionContainer(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateImportTypeAssertionContainer(node, Debug.checkDefined(nodeVisitor(node.assertClause, visitor, isAssertClause)), node.multiLine); }, [203]: function visitEachChildOfNamedTupleMember(node, visitor, context, _nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateNamedTupleMember(node, tokenVisitor ? nodeVisitor(node.dotDotDotToken, tokenVisitor, isDotDotDotToken) : node.dotDotDotToken, Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier)), tokenVisitor ? nodeVisitor(node.questionToken, tokenVisitor, isQuestionToken) : node.questionToken, Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [197]: function visitEachChildOfParenthesizedType(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateParenthesizedType(node, Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [199]: function visitEachChildOfTypeOperatorNode(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTypeOperatorNode(node, Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [200]: function visitEachChildOfIndexedAccessType(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateIndexedAccessTypeNode(node, Debug.checkDefined(nodeVisitor(node.objectType, visitor, isTypeNode)), Debug.checkDefined(nodeVisitor(node.indexType, visitor, isTypeNode))); }, [201]: function visitEachChildOfMappedType(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateMappedTypeNode(node, tokenVisitor ? nodeVisitor(node.readonlyToken, tokenVisitor, isReadonlyKeywordOrPlusOrMinusToken) : node.readonlyToken, Debug.checkDefined(nodeVisitor(node.typeParameter, visitor, isTypeParameterDeclaration)), nodeVisitor(node.nameType, visitor, isTypeNode), tokenVisitor ? nodeVisitor(node.questionToken, tokenVisitor, isQuestionOrPlusOrMinusToken) : node.questionToken, nodeVisitor(node.type, visitor, isTypeNode), nodesVisitor(node.members, visitor, isTypeElement)); }, [202]: function visitEachChildOfLiteralTypeNode(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateLiteralTypeNode(node, Debug.checkDefined(nodeVisitor(node.literal, visitor, isLiteralTypeLiteral))); }, [204]: function visitEachChildOfTemplateLiteralType(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTemplateLiteralType(node, Debug.checkDefined(nodeVisitor(node.head, visitor, isTemplateHead)), nodesVisitor(node.templateSpans, visitor, isTemplateLiteralTypeSpan)); }, [205]: function visitEachChildOfTemplateLiteralTypeSpan(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTemplateLiteralTypeSpan(node, Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode)), Debug.checkDefined(nodeVisitor(node.literal, visitor, isTemplateMiddleOrTemplateTail))); }, [207]: function visitEachChildOfObjectBindingPattern(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateObjectBindingPattern(node, nodesVisitor(node.elements, visitor, isBindingElement)); }, [208]: function visitEachChildOfArrayBindingPattern(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateArrayBindingPattern(node, nodesVisitor(node.elements, visitor, isArrayBindingElement)); }, [209]: function visitEachChildOfBindingElement(node, visitor, context, _nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateBindingElement(node, tokenVisitor ? nodeVisitor(node.dotDotDotToken, tokenVisitor, isDotDotDotToken) : node.dotDotDotToken, nodeVisitor(node.propertyName, visitor, isPropertyName), Debug.checkDefined(nodeVisitor(node.name, visitor, isBindingName)), nodeVisitor(node.initializer, visitor, isExpression)); }, [210]: function visitEachChildOfArrayLiteralExpression(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateArrayLiteralExpression(node, nodesVisitor(node.elements, visitor, isExpression)); }, [211]: function visitEachChildOfObjectLiteralExpression(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateObjectLiteralExpression(node, nodesVisitor(node.properties, visitor, isObjectLiteralElementLike)); }, [212]: function visitEachChildOfPropertyAccessExpression(node, visitor, context, _nodesVisitor, nodeVisitor, tokenVisitor) { return isPropertyAccessChain(node) ? context.factory.updatePropertyAccessChain(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), tokenVisitor ? nodeVisitor(node.questionDotToken, tokenVisitor, isQuestionDotToken) : node.questionDotToken, Debug.checkDefined(nodeVisitor(node.name, visitor, isMemberName))) : context.factory.updatePropertyAccessExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), Debug.checkDefined(nodeVisitor(node.name, visitor, isMemberName))); }, [213]: function visitEachChildOfElementAccessExpression(node, visitor, context, _nodesVisitor, nodeVisitor, tokenVisitor) { return isElementAccessChain(node) ? context.factory.updateElementAccessChain(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), tokenVisitor ? nodeVisitor(node.questionDotToken, tokenVisitor, isQuestionDotToken) : node.questionDotToken, Debug.checkDefined(nodeVisitor(node.argumentExpression, visitor, isExpression))) : context.factory.updateElementAccessExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), Debug.checkDefined(nodeVisitor(node.argumentExpression, visitor, isExpression))); }, [214]: function visitEachChildOfCallExpression(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor) { return isCallChain(node) ? context.factory.updateCallChain(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), tokenVisitor ? nodeVisitor(node.questionDotToken, tokenVisitor, isQuestionDotToken) : node.questionDotToken, nodesVisitor(node.typeArguments, visitor, isTypeNode), nodesVisitor(node.arguments, visitor, isExpression)) : context.factory.updateCallExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), nodesVisitor(node.typeArguments, visitor, isTypeNode), nodesVisitor(node.arguments, visitor, isExpression)); }, [215]: function visitEachChildOfNewExpression(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateNewExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), nodesVisitor(node.typeArguments, visitor, isTypeNode), nodesVisitor(node.arguments, visitor, isExpression)); }, [216]: function visitEachChildOfTaggedTemplateExpression(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTaggedTemplateExpression(node, Debug.checkDefined(nodeVisitor(node.tag, visitor, isExpression)), nodesVisitor(node.typeArguments, visitor, isTypeNode), Debug.checkDefined(nodeVisitor(node.template, visitor, isTemplateLiteral))); }, [217]: function visitEachChildOfTypeAssertionExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTypeAssertion(node, Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode)), Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [218]: function visitEachChildOfParenthesizedExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateParenthesizedExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [219]: function visitEachChildOfFunctionExpression(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateFunctionExpression(node, nodesVisitor(node.modifiers, visitor, isModifier), tokenVisitor ? nodeVisitor(node.asteriskToken, tokenVisitor, isAsteriskToken) : node.asteriskToken, nodeVisitor(node.name, visitor, isIdentifier), nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), visitParameterList(node.parameters, visitor, context, nodesVisitor), nodeVisitor(node.type, visitor, isTypeNode), visitFunctionBody(node.body, visitor, context, nodeVisitor)); }, [220]: function visitEachChildOfArrowFunction(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateArrowFunction(node, nodesVisitor(node.modifiers, visitor, isModifier), nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), visitParameterList(node.parameters, visitor, context, nodesVisitor), nodeVisitor(node.type, visitor, isTypeNode), tokenVisitor ? Debug.checkDefined(nodeVisitor(node.equalsGreaterThanToken, tokenVisitor, isEqualsGreaterThanToken)) : node.equalsGreaterThanToken, visitFunctionBody(node.body, visitor, context, nodeVisitor)); }, [221]: function visitEachChildOfDeleteExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateDeleteExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [222]: function visitEachChildOfTypeOfExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTypeOfExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [223]: function visitEachChildOfVoidExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateVoidExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [224]: function visitEachChildOfAwaitExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateAwaitExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [225]: function visitEachChildOfPrefixUnaryExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updatePrefixUnaryExpression(node, Debug.checkDefined(nodeVisitor(node.operand, visitor, isExpression))); }, [226]: function visitEachChildOfPostfixUnaryExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updatePostfixUnaryExpression(node, Debug.checkDefined(nodeVisitor(node.operand, visitor, isExpression))); }, [227]: function visitEachChildOfBinaryExpression(node, visitor, context, _nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateBinaryExpression(node, Debug.checkDefined(nodeVisitor(node.left, visitor, isExpression)), tokenVisitor ? Debug.checkDefined(nodeVisitor(node.operatorToken, tokenVisitor, isBinaryOperatorToken)) : node.operatorToken, Debug.checkDefined(nodeVisitor(node.right, visitor, isExpression))); }, [228]: function visitEachChildOfConditionalExpression(node, visitor, context, _nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateConditionalExpression(node, Debug.checkDefined(nodeVisitor(node.condition, visitor, isExpression)), tokenVisitor ? Debug.checkDefined(nodeVisitor(node.questionToken, tokenVisitor, isQuestionToken)) : node.questionToken, Debug.checkDefined(nodeVisitor(node.whenTrue, visitor, isExpression)), tokenVisitor ? Debug.checkDefined(nodeVisitor(node.colonToken, tokenVisitor, isColonToken)) : node.colonToken, Debug.checkDefined(nodeVisitor(node.whenFalse, visitor, isExpression))); }, [229]: function visitEachChildOfTemplateExpression(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTemplateExpression(node, Debug.checkDefined(nodeVisitor(node.head, visitor, isTemplateHead)), nodesVisitor(node.templateSpans, visitor, isTemplateSpan)); }, [230]: function visitEachChildOfYieldExpression(node, visitor, context, _nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateYieldExpression(node, tokenVisitor ? nodeVisitor(node.asteriskToken, tokenVisitor, isAsteriskToken) : node.asteriskToken, nodeVisitor(node.expression, visitor, isExpression)); }, [231]: function visitEachChildOfSpreadElement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateSpreadElement(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [232]: function visitEachChildOfClassExpression(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateClassExpression(node, nodesVisitor(node.modifiers, visitor, isModifierLike), nodeVisitor(node.name, visitor, isIdentifier), nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), nodesVisitor(node.heritageClauses, visitor, isHeritageClause), nodesVisitor(node.members, visitor, isClassElement)); }, [234]: function visitEachChildOfExpressionWithTypeArguments(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateExpressionWithTypeArguments(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), nodesVisitor(node.typeArguments, visitor, isTypeNode)); }, [235]: function visitEachChildOfAsExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateAsExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [239]: function visitEachChildOfSatisfiesExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateSatisfiesExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [236]: function visitEachChildOfNonNullExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return isOptionalChain(node) ? context.factory.updateNonNullChain(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))) : context.factory.updateNonNullExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [237]: function visitEachChildOfMetaProperty(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateMetaProperty(node, Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier))); }, [240]: function visitEachChildOfTemplateSpan(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTemplateSpan(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), Debug.checkDefined(nodeVisitor(node.literal, visitor, isTemplateMiddleOrTemplateTail))); }, [242]: function visitEachChildOfBlock(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateBlock(node, nodesVisitor(node.statements, visitor, isStatement)); }, [244]: function visitEachChildOfVariableStatement(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateVariableStatement(node, nodesVisitor(node.modifiers, visitor, isModifierLike), Debug.checkDefined(nodeVisitor(node.declarationList, visitor, isVariableDeclarationList))); }, [245]: function visitEachChildOfExpressionStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateExpressionStatement(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [246]: function visitEachChildOfIfStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateIfStatement(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), Debug.checkDefined(nodeVisitor(node.thenStatement, visitor, isStatement, context.factory.liftToBlock)), nodeVisitor(node.elseStatement, visitor, isStatement, context.factory.liftToBlock)); }, [247]: function visitEachChildOfDoStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateDoStatement(node, visitIterationBody(node.statement, visitor, context, nodeVisitor), Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [248]: function visitEachChildOfWhileStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateWhileStatement(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), visitIterationBody(node.statement, visitor, context, nodeVisitor)); }, [249]: function visitEachChildOfForStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateForStatement(node, nodeVisitor(node.initializer, visitor, isForInitializer), nodeVisitor(node.condition, visitor, isExpression), nodeVisitor(node.incrementor, visitor, isExpression), visitIterationBody(node.statement, visitor, context, nodeVisitor)); }, [250]: function visitEachChildOfForInStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateForInStatement(node, Debug.checkDefined(nodeVisitor(node.initializer, visitor, isForInitializer)), Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), visitIterationBody(node.statement, visitor, context, nodeVisitor)); }, [251]: function visitEachChildOfForOfStatement(node, visitor, context, _nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateForOfStatement(node, tokenVisitor ? nodeVisitor(node.awaitModifier, tokenVisitor, isAwaitKeyword) : node.awaitModifier, Debug.checkDefined(nodeVisitor(node.initializer, visitor, isForInitializer)), Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), visitIterationBody(node.statement, visitor, context, nodeVisitor)); }, [252]: function visitEachChildOfContinueStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateContinueStatement(node, nodeVisitor(node.label, visitor, isIdentifier)); }, [253]: function visitEachChildOfBreakStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateBreakStatement(node, nodeVisitor(node.label, visitor, isIdentifier)); }, [254]: function visitEachChildOfReturnStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateReturnStatement(node, nodeVisitor(node.expression, visitor, isExpression)); }, [255]: function visitEachChildOfWithStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateWithStatement(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), Debug.checkDefined(nodeVisitor(node.statement, visitor, isStatement, context.factory.liftToBlock))); }, [256]: function visitEachChildOfSwitchStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateSwitchStatement(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), Debug.checkDefined(nodeVisitor(node.caseBlock, visitor, isCaseBlock))); }, [257]: function visitEachChildOfLabeledStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateLabeledStatement(node, Debug.checkDefined(nodeVisitor(node.label, visitor, isIdentifier)), Debug.checkDefined(nodeVisitor(node.statement, visitor, isStatement, context.factory.liftToBlock))); }, [258]: function visitEachChildOfThrowStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateThrowStatement(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [259]: function visitEachChildOfTryStatement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTryStatement(node, Debug.checkDefined(nodeVisitor(node.tryBlock, visitor, isBlock)), nodeVisitor(node.catchClause, visitor, isCatchClause), nodeVisitor(node.finallyBlock, visitor, isBlock)); }, [261]: function visitEachChildOfVariableDeclaration(node, visitor, context, _nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateVariableDeclaration(node, Debug.checkDefined(nodeVisitor(node.name, visitor, isBindingName)), tokenVisitor ? nodeVisitor(node.exclamationToken, tokenVisitor, isExclamationToken) : node.exclamationToken, nodeVisitor(node.type, visitor, isTypeNode), nodeVisitor(node.initializer, visitor, isExpression)); }, [262]: function visitEachChildOfVariableDeclarationList(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateVariableDeclarationList(node, nodesVisitor(node.declarations, visitor, isVariableDeclaration)); }, [263]: function visitEachChildOfFunctionDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, tokenVisitor) { return context.factory.updateFunctionDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifier), tokenVisitor ? nodeVisitor(node.asteriskToken, tokenVisitor, isAsteriskToken) : node.asteriskToken, nodeVisitor(node.name, visitor, isIdentifier), nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), visitParameterList(node.parameters, visitor, context, nodesVisitor), nodeVisitor(node.type, visitor, isTypeNode), visitFunctionBody(node.body, visitor, context, nodeVisitor)); }, [264]: function visitEachChildOfClassDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateClassDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), nodeVisitor(node.name, visitor, isIdentifier), nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), nodesVisitor(node.heritageClauses, visitor, isHeritageClause), nodesVisitor(node.members, visitor, isClassElement)); }, [265]: function visitEachChildOfInterfaceDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateInterfaceDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier)), nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), nodesVisitor(node.heritageClauses, visitor, isHeritageClause), nodesVisitor(node.members, visitor, isTypeElement)); }, [266]: function visitEachChildOfTypeAliasDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateTypeAliasDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier)), nodesVisitor(node.typeParameters, visitor, isTypeParameterDeclaration), Debug.checkDefined(nodeVisitor(node.type, visitor, isTypeNode))); }, [267]: function visitEachChildOfEnumDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateEnumDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier)), nodesVisitor(node.members, visitor, isEnumMember)); }, [268]: function visitEachChildOfModuleDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateModuleDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), Debug.checkDefined(nodeVisitor(node.name, visitor, isModuleName)), nodeVisitor(node.body, visitor, isModuleBody)); }, [269]: function visitEachChildOfModuleBlock(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateModuleBlock(node, nodesVisitor(node.statements, visitor, isStatement)); }, [270]: function visitEachChildOfCaseBlock(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateCaseBlock(node, nodesVisitor(node.clauses, visitor, isCaseOrDefaultClause)); }, [271]: function visitEachChildOfNamespaceExportDeclaration(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateNamespaceExportDeclaration(node, Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier))); }, [272]: function visitEachChildOfImportEqualsDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateImportEqualsDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), node.isTypeOnly, Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier)), Debug.checkDefined(nodeVisitor(node.moduleReference, visitor, isModuleReference))); }, [273]: function visitEachChildOfImportDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateImportDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), nodeVisitor(node.importClause, visitor, isImportClause), Debug.checkDefined(nodeVisitor(node.moduleSpecifier, visitor, isExpression)), nodeVisitor(node.attributes, visitor, isImportAttributes)); }, [301]: function visitEachChildOfImportAttributes(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateImportAttributes(node, nodesVisitor(node.elements, visitor, isImportAttribute), node.multiLine); }, [302]: function visitEachChildOfImportAttribute(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateImportAttribute(node, Debug.checkDefined(nodeVisitor(node.name, visitor, isImportAttributeName)), Debug.checkDefined(nodeVisitor(node.value, visitor, isExpression))); }, [274]: function visitEachChildOfImportClause(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateImportClause(node, node.phaseModifier, nodeVisitor(node.name, visitor, isIdentifier), nodeVisitor(node.namedBindings, visitor, isNamedImportBindings)); }, [275]: function visitEachChildOfNamespaceImport(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateNamespaceImport(node, Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier))); }, [281]: function visitEachChildOfNamespaceExport(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateNamespaceExport(node, Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier))); }, [276]: function visitEachChildOfNamedImports(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateNamedImports(node, nodesVisitor(node.elements, visitor, isImportSpecifier)); }, [277]: function visitEachChildOfImportSpecifier(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateImportSpecifier(node, node.isTypeOnly, nodeVisitor(node.propertyName, visitor, isModuleExportName), Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier))); }, [278]: function visitEachChildOfExportAssignment(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateExportAssignment(node, nodesVisitor(node.modifiers, visitor, isModifierLike), Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [279]: function visitEachChildOfExportDeclaration(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateExportDeclaration(node, nodesVisitor(node.modifiers, visitor, isModifierLike), node.isTypeOnly, nodeVisitor(node.exportClause, visitor, isNamedExportBindings), nodeVisitor(node.moduleSpecifier, visitor, isExpression), nodeVisitor(node.attributes, visitor, isImportAttributes)); }, [280]: function visitEachChildOfNamedExports(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateNamedExports(node, nodesVisitor(node.elements, visitor, isExportSpecifier)); }, [282]: function visitEachChildOfExportSpecifier(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateExportSpecifier(node, node.isTypeOnly, nodeVisitor(node.propertyName, visitor, isModuleExportName), Debug.checkDefined(nodeVisitor(node.name, visitor, isModuleExportName))); }, [284]: function visitEachChildOfExternalModuleReference(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateExternalModuleReference(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [285]: function visitEachChildOfJsxElement(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateJsxElement(node, Debug.checkDefined(nodeVisitor(node.openingElement, visitor, isJsxOpeningElement)), nodesVisitor(node.children, visitor, isJsxChild), Debug.checkDefined(nodeVisitor(node.closingElement, visitor, isJsxClosingElement))); }, [286]: function visitEachChildOfJsxSelfClosingElement(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateJsxSelfClosingElement(node, Debug.checkDefined(nodeVisitor(node.tagName, visitor, isJsxTagNameExpression)), nodesVisitor(node.typeArguments, visitor, isTypeNode), Debug.checkDefined(nodeVisitor(node.attributes, visitor, isJsxAttributes))); }, [287]: function visitEachChildOfJsxOpeningElement(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateJsxOpeningElement(node, Debug.checkDefined(nodeVisitor(node.tagName, visitor, isJsxTagNameExpression)), nodesVisitor(node.typeArguments, visitor, isTypeNode), Debug.checkDefined(nodeVisitor(node.attributes, visitor, isJsxAttributes))); }, [288]: function visitEachChildOfJsxClosingElement(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateJsxClosingElement(node, Debug.checkDefined(nodeVisitor(node.tagName, visitor, isJsxTagNameExpression))); }, [296]: function forEachChildInJsxNamespacedName2(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateJsxNamespacedName(node, Debug.checkDefined(nodeVisitor(node.namespace, visitor, isIdentifier)), Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier))); }, [289]: function visitEachChildOfJsxFragment(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateJsxFragment(node, Debug.checkDefined(nodeVisitor(node.openingFragment, visitor, isJsxOpeningFragment)), nodesVisitor(node.children, visitor, isJsxChild), Debug.checkDefined(nodeVisitor(node.closingFragment, visitor, isJsxClosingFragment))); }, [292]: function visitEachChildOfJsxAttribute(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateJsxAttribute(node, Debug.checkDefined(nodeVisitor(node.name, visitor, isJsxAttributeName)), nodeVisitor(node.initializer, visitor, isStringLiteralOrJsxExpression)); }, [293]: function visitEachChildOfJsxAttributes(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateJsxAttributes(node, nodesVisitor(node.properties, visitor, isJsxAttributeLike)); }, [294]: function visitEachChildOfJsxSpreadAttribute(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateJsxSpreadAttribute(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [295]: function visitEachChildOfJsxExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateJsxExpression(node, nodeVisitor(node.expression, visitor, isExpression)); }, [297]: function visitEachChildOfCaseClause(node, visitor, context, nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateCaseClause(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression)), nodesVisitor(node.statements, visitor, isStatement)); }, [298]: function visitEachChildOfDefaultClause(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateDefaultClause(node, nodesVisitor(node.statements, visitor, isStatement)); }, [299]: function visitEachChildOfHeritageClause(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateHeritageClause(node, nodesVisitor(node.types, visitor, isExpressionWithTypeArguments)); }, [300]: function visitEachChildOfCatchClause(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateCatchClause(node, nodeVisitor(node.variableDeclaration, visitor, isVariableDeclaration), Debug.checkDefined(nodeVisitor(node.block, visitor, isBlock))); }, [304]: function visitEachChildOfPropertyAssignment(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updatePropertyAssignment(node, Debug.checkDefined(nodeVisitor(node.name, visitor, isPropertyName)), Debug.checkDefined(nodeVisitor(node.initializer, visitor, isExpression))); }, [305]: function visitEachChildOfShorthandPropertyAssignment(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateShorthandPropertyAssignment(node, Debug.checkDefined(nodeVisitor(node.name, visitor, isIdentifier)), nodeVisitor(node.objectAssignmentInitializer, visitor, isExpression)); }, [306]: function visitEachChildOfSpreadAssignment(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateSpreadAssignment(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [307]: function visitEachChildOfEnumMember(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updateEnumMember(node, Debug.checkDefined(nodeVisitor(node.name, visitor, isPropertyName)), nodeVisitor(node.initializer, visitor, isExpression)); }, [308]: function visitEachChildOfSourceFile(node, visitor, context, _nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateSourceFile(node, visitLexicalEnvironment(node.statements, visitor, context)); }, [356]: function visitEachChildOfPartiallyEmittedExpression(node, visitor, context, _nodesVisitor, nodeVisitor, _tokenVisitor) { return context.factory.updatePartiallyEmittedExpression(node, Debug.checkDefined(nodeVisitor(node.expression, visitor, isExpression))); }, [357]: function visitEachChildOfCommaListExpression(node, visitor, context, nodesVisitor, _nodeVisitor, _tokenVisitor) { return context.factory.updateCommaListExpression(node, nodesVisitor(node.elements, visitor, isExpression)); } }; function extractSingleNode(nodes) { Debug.assert(nodes.length <= 1, "Too many nodes written to output."); return singleOrUndefined(nodes); } function createSourceMapGenerator(host, file, sourceRoot, sourcesDirectoryPath, generatorOptions) { var { enter, exit } = generatorOptions.extendedDiagnostics ? createTimer("Source Map", "beforeSourcemap", "afterSourcemap") : nullTimer; var rawSources = []; var sources = []; var sourceToSourceIndexMap = /* @__PURE__ */ new Map; var sourcesContent; var names = []; var nameToNameIndexMap; var mappingCharCodes = []; var mappings = ""; var lastGeneratedLine = 0; var lastGeneratedCharacter = 0; var lastSourceIndex = 0; var lastSourceLine = 0; var lastSourceCharacter = 0; var lastNameIndex = 0; var hasLast = false; var pendingGeneratedLine = 0; var pendingGeneratedCharacter = 0; var pendingSourceIndex = 0; var pendingSourceLine = 0; var pendingSourceCharacter = 0; var pendingNameIndex = 0; var hasPending = false; var hasPendingSource = false; var hasPendingName = false; return { getSources: () => rawSources, addSource, setSourceContent, addName, addMapping, appendSourceMap, toJSON, toString: () => JSON.stringify(toJSON()) }; function addSource(fileName) { enter(); const source = getRelativePathToDirectoryOrUrl(sourcesDirectoryPath, fileName, host.getCurrentDirectory(), host.getCanonicalFileName, true); let sourceIndex = sourceToSourceIndexMap.get(source); if (sourceIndex === undefined) { sourceIndex = sources.length; sources.push(source); rawSources.push(fileName); sourceToSourceIndexMap.set(source, sourceIndex); } exit(); return sourceIndex; } function setSourceContent(sourceIndex, content) { enter(); if (content !== null) { if (!sourcesContent) sourcesContent = []; while (sourcesContent.length < sourceIndex) { sourcesContent.push(null); } sourcesContent[sourceIndex] = content; } exit(); } function addName(name) { enter(); if (!nameToNameIndexMap) nameToNameIndexMap = /* @__PURE__ */ new Map; let nameIndex = nameToNameIndexMap.get(name); if (nameIndex === undefined) { nameIndex = names.length; names.push(name); nameToNameIndexMap.set(name, nameIndex); } exit(); return nameIndex; } function isNewGeneratedPosition(generatedLine, generatedCharacter) { return !hasPending || pendingGeneratedLine !== generatedLine || pendingGeneratedCharacter !== generatedCharacter; } function isBacktrackingSourcePosition(sourceIndex, sourceLine, sourceCharacter) { return sourceIndex !== undefined && sourceLine !== undefined && sourceCharacter !== undefined && pendingSourceIndex === sourceIndex && (pendingSourceLine > sourceLine || pendingSourceLine === sourceLine && pendingSourceCharacter > sourceCharacter); } function addMapping(generatedLine, generatedCharacter, sourceIndex, sourceLine, sourceCharacter, nameIndex) { Debug.assert(generatedLine >= pendingGeneratedLine, "generatedLine cannot backtrack"); Debug.assert(generatedCharacter >= 0, "generatedCharacter cannot be negative"); Debug.assert(sourceIndex === undefined || sourceIndex >= 0, "sourceIndex cannot be negative"); Debug.assert(sourceLine === undefined || sourceLine >= 0, "sourceLine cannot be negative"); Debug.assert(sourceCharacter === undefined || sourceCharacter >= 0, "sourceCharacter cannot be negative"); enter(); if (isNewGeneratedPosition(generatedLine, generatedCharacter) || isBacktrackingSourcePosition(sourceIndex, sourceLine, sourceCharacter)) { commitPendingMapping(); pendingGeneratedLine = generatedLine; pendingGeneratedCharacter = generatedCharacter; hasPendingSource = false; hasPendingName = false; hasPending = true; } if (sourceIndex !== undefined && sourceLine !== undefined && sourceCharacter !== undefined) { pendingSourceIndex = sourceIndex; pendingSourceLine = sourceLine; pendingSourceCharacter = sourceCharacter; hasPendingSource = true; if (nameIndex !== undefined) { pendingNameIndex = nameIndex; hasPendingName = true; } } exit(); } function appendSourceMap(generatedLine, generatedCharacter, map2, sourceMapPath, start, end) { Debug.assert(generatedLine >= pendingGeneratedLine, "generatedLine cannot backtrack"); Debug.assert(generatedCharacter >= 0, "generatedCharacter cannot be negative"); enter(); const sourceIndexToNewSourceIndexMap = []; let nameIndexToNewNameIndexMap; const mappingIterator = decodeMappings(map2.mappings); for (const raw of mappingIterator) { if (end && (raw.generatedLine > end.line || raw.generatedLine === end.line && raw.generatedCharacter > end.character)) { break; } if (start && (raw.generatedLine < start.line || start.line === raw.generatedLine && raw.generatedCharacter < start.character)) { continue; } let newSourceIndex; let newSourceLine; let newSourceCharacter; let newNameIndex; if (raw.sourceIndex !== undefined) { newSourceIndex = sourceIndexToNewSourceIndexMap[raw.sourceIndex]; if (newSourceIndex === undefined) { const rawPath = map2.sources[raw.sourceIndex]; const relativePath = map2.sourceRoot ? combinePaths(map2.sourceRoot, rawPath) : rawPath; const combinedPath = combinePaths(getDirectoryPath(sourceMapPath), relativePath); sourceIndexToNewSourceIndexMap[raw.sourceIndex] = newSourceIndex = addSource(combinedPath); if (map2.sourcesContent && typeof map2.sourcesContent[raw.sourceIndex] === "string") { setSourceContent(newSourceIndex, map2.sourcesContent[raw.sourceIndex]); } } newSourceLine = raw.sourceLine; newSourceCharacter = raw.sourceCharacter; if (map2.names && raw.nameIndex !== undefined) { if (!nameIndexToNewNameIndexMap) nameIndexToNewNameIndexMap = []; newNameIndex = nameIndexToNewNameIndexMap[raw.nameIndex]; if (newNameIndex === undefined) { nameIndexToNewNameIndexMap[raw.nameIndex] = newNameIndex = addName(map2.names[raw.nameIndex]); } } } const rawGeneratedLine = raw.generatedLine - (start ? start.line : 0); const newGeneratedLine = rawGeneratedLine + generatedLine; const rawGeneratedCharacter = start && start.line === raw.generatedLine ? raw.generatedCharacter - start.character : raw.generatedCharacter; const newGeneratedCharacter = rawGeneratedLine === 0 ? rawGeneratedCharacter + generatedCharacter : rawGeneratedCharacter; addMapping(newGeneratedLine, newGeneratedCharacter, newSourceIndex, newSourceLine, newSourceCharacter, newNameIndex); } exit(); } function shouldCommitMapping() { return !hasLast || lastGeneratedLine !== pendingGeneratedLine || lastGeneratedCharacter !== pendingGeneratedCharacter || lastSourceIndex !== pendingSourceIndex || lastSourceLine !== pendingSourceLine || lastSourceCharacter !== pendingSourceCharacter || lastNameIndex !== pendingNameIndex; } function appendMappingCharCode(charCode) { mappingCharCodes.push(charCode); if (mappingCharCodes.length >= 1024) { flushMappingBuffer(); } } function commitPendingMapping() { if (!hasPending || !shouldCommitMapping()) { return; } enter(); if (lastGeneratedLine < pendingGeneratedLine) { do { appendMappingCharCode(59); lastGeneratedLine++; } while (lastGeneratedLine < pendingGeneratedLine); lastGeneratedCharacter = 0; } else { Debug.assertEqual(lastGeneratedLine, pendingGeneratedLine, "generatedLine cannot backtrack"); if (hasLast) { appendMappingCharCode(44); } } appendBase64VLQ(pendingGeneratedCharacter - lastGeneratedCharacter); lastGeneratedCharacter = pendingGeneratedCharacter; if (hasPendingSource) { appendBase64VLQ(pendingSourceIndex - lastSourceIndex); lastSourceIndex = pendingSourceIndex; appendBase64VLQ(pendingSourceLine - lastSourceLine); lastSourceLine = pendingSourceLine; appendBase64VLQ(pendingSourceCharacter - lastSourceCharacter); lastSourceCharacter = pendingSourceCharacter; if (hasPendingName) { appendBase64VLQ(pendingNameIndex - lastNameIndex); lastNameIndex = pendingNameIndex; } } hasLast = true; exit(); } function flushMappingBuffer() { if (mappingCharCodes.length > 0) { mappings += String.fromCharCode.apply(undefined, mappingCharCodes); mappingCharCodes.length = 0; } } function toJSON() { commitPendingMapping(); flushMappingBuffer(); return { version: 3, file, sourceRoot, sources, names, mappings, sourcesContent }; } function appendBase64VLQ(inValue) { if (inValue < 0) { inValue = (-inValue << 1) + 1; } else { inValue = inValue << 1; } do { let currentDigit = inValue & 31; inValue = inValue >> 5; if (inValue > 0) { currentDigit = currentDigit | 32; } appendMappingCharCode(base64FormatEncode(currentDigit)); } while (inValue > 0); } } var sourceMapCommentRegExpDontCareLineStart = /\/\/[@#] source[M]appingURL=(.+)\r?\n?$/; var sourceMapCommentRegExp = /^\/\/[@#] source[M]appingURL=(.+)\r?\n?$/; var whitespaceOrMapCommentRegExp = /^\s*(\/\/[@#] .*)?$/; function getLineInfo(text, lineStarts) { return { getLineCount: () => lineStarts.length, getLineText: (line) => text.substring(lineStarts[line], lineStarts[line + 1]) }; } function tryGetSourceMappingURL(lineInfo) { for (let index = lineInfo.getLineCount() - 1;index >= 0; index--) { const line = lineInfo.getLineText(index); const comment = sourceMapCommentRegExp.exec(line); if (comment) { return comment[1].trimEnd(); } else if (!line.match(whitespaceOrMapCommentRegExp)) { break; } } } function isStringOrNull(x) { return typeof x === "string" || x === null; } function isRawSourceMap(x) { return x !== null && typeof x === "object" && x.version === 3 && typeof x.file === "string" && typeof x.mappings === "string" && isArray(x.sources) && every(x.sources, isString) && (x.sourceRoot === undefined || x.sourceRoot === null || typeof x.sourceRoot === "string") && (x.sourcesContent === undefined || x.sourcesContent === null || isArray(x.sourcesContent) && every(x.sourcesContent, isStringOrNull)) && (x.names === undefined || x.names === null || isArray(x.names) && every(x.names, isString)); } function tryParseRawSourceMap(text) { try { const parsed = JSON.parse(text); if (isRawSourceMap(parsed)) { return parsed; } } catch {} return; } function decodeMappings(mappings) { let done = false; let pos = 0; let generatedLine = 0; let generatedCharacter = 0; let sourceIndex = 0; let sourceLine = 0; let sourceCharacter = 0; let nameIndex = 0; let error2; return { get pos() { return pos; }, get error() { return error2; }, get state() { return captureMapping(true, true); }, next() { while (!done && pos < mappings.length) { const ch = mappings.charCodeAt(pos); if (ch === 59) { generatedLine++; generatedCharacter = 0; pos++; continue; } if (ch === 44) { pos++; continue; } let hasSource = false; let hasName = false; generatedCharacter += base64VLQFormatDecode(); if (hasReportedError()) return stopIterating(); if (generatedCharacter < 0) return setErrorAndStopIterating("Invalid generatedCharacter found"); if (!isSourceMappingSegmentEnd()) { hasSource = true; sourceIndex += base64VLQFormatDecode(); if (hasReportedError()) return stopIterating(); if (sourceIndex < 0) return setErrorAndStopIterating("Invalid sourceIndex found"); if (isSourceMappingSegmentEnd()) return setErrorAndStopIterating("Unsupported Format: No entries after sourceIndex"); sourceLine += base64VLQFormatDecode(); if (hasReportedError()) return stopIterating(); if (sourceLine < 0) return setErrorAndStopIterating("Invalid sourceLine found"); if (isSourceMappingSegmentEnd()) return setErrorAndStopIterating("Unsupported Format: No entries after sourceLine"); sourceCharacter += base64VLQFormatDecode(); if (hasReportedError()) return stopIterating(); if (sourceCharacter < 0) return setErrorAndStopIterating("Invalid sourceCharacter found"); if (!isSourceMappingSegmentEnd()) { hasName = true; nameIndex += base64VLQFormatDecode(); if (hasReportedError()) return stopIterating(); if (nameIndex < 0) return setErrorAndStopIterating("Invalid nameIndex found"); if (!isSourceMappingSegmentEnd()) return setErrorAndStopIterating("Unsupported Error Format: Entries after nameIndex"); } } return { value: captureMapping(hasSource, hasName), done }; } return stopIterating(); }, [Symbol.iterator]() { return this; } }; function captureMapping(hasSource, hasName) { return { generatedLine, generatedCharacter, sourceIndex: hasSource ? sourceIndex : undefined, sourceLine: hasSource ? sourceLine : undefined, sourceCharacter: hasSource ? sourceCharacter : undefined, nameIndex: hasName ? nameIndex : undefined }; } function stopIterating() { done = true; return { value: undefined, done: true }; } function setError(message) { if (error2 === undefined) { error2 = message; } } function setErrorAndStopIterating(message) { setError(message); return stopIterating(); } function hasReportedError() { return error2 !== undefined; } function isSourceMappingSegmentEnd() { return pos === mappings.length || mappings.charCodeAt(pos) === 44 || mappings.charCodeAt(pos) === 59; } function base64VLQFormatDecode() { let moreDigits = true; let shiftCount = 0; let value = 0; for (;moreDigits; pos++) { if (pos >= mappings.length) return setError("Error in decoding base64VLQFormatDecode, past the mapping string"), -1; const currentByte = base64FormatDecode(mappings.charCodeAt(pos)); if (currentByte === -1) return setError("Invalid character in VLQ"), -1; moreDigits = (currentByte & 32) !== 0; value = value | (currentByte & 31) << shiftCount; shiftCount += 5; } if ((value & 1) === 0) { value = value >> 1; } else { value = value >> 1; value = -value; } return value; } } function sameMapping(left, right) { return left === right || left.generatedLine === right.generatedLine && left.generatedCharacter === right.generatedCharacter && left.sourceIndex === right.sourceIndex && left.sourceLine === right.sourceLine && left.sourceCharacter === right.sourceCharacter && left.nameIndex === right.nameIndex; } function isSourceMapping(mapping) { return mapping.sourceIndex !== undefined && mapping.sourceLine !== undefined && mapping.sourceCharacter !== undefined; } function base64FormatEncode(value) { return value >= 0 && value < 26 ? 65 + value : value >= 26 && value < 52 ? 97 + value - 26 : value >= 52 && value < 62 ? 48 + value - 52 : value === 62 ? 43 : value === 63 ? 47 : Debug.fail(`${value}: not a base64 value`); } function base64FormatDecode(ch) { return ch >= 65 && ch <= 90 ? ch - 65 : ch >= 97 && ch <= 122 ? ch - 97 + 26 : ch >= 48 && ch <= 57 ? ch - 48 + 52 : ch === 43 ? 62 : ch === 47 ? 63 : -1; } function isSourceMappedPosition(value) { return value.sourceIndex !== undefined && value.sourcePosition !== undefined; } function sameMappedPosition(left, right) { return left.generatedPosition === right.generatedPosition && left.sourceIndex === right.sourceIndex && left.sourcePosition === right.sourcePosition; } function compareSourcePositions(left, right) { Debug.assert(left.sourceIndex === right.sourceIndex); return compareValues(left.sourcePosition, right.sourcePosition); } function compareGeneratedPositions(left, right) { return compareValues(left.generatedPosition, right.generatedPosition); } function getSourcePositionOfMapping(value) { return value.sourcePosition; } function getGeneratedPositionOfMapping(value) { return value.generatedPosition; } function createDocumentPositionMapper(host, map2, mapPath) { const mapDirectory = getDirectoryPath(mapPath); const sourceRoot = map2.sourceRoot ? getNormalizedAbsolutePath(map2.sourceRoot, mapDirectory) : mapDirectory; const generatedAbsoluteFilePath = getNormalizedAbsolutePath(map2.file, mapDirectory); const generatedFile = host.getSourceFileLike(generatedAbsoluteFilePath); const sourceFileAbsolutePaths = map2.sources.map((source) => getNormalizedAbsolutePath(source, sourceRoot)); const sourceToSourceIndexMap = new Map(sourceFileAbsolutePaths.map((source, i) => [host.getCanonicalFileName(source), i])); let decodedMappings; let generatedMappings; let sourceMappings; return { getSourcePosition, getGeneratedPosition }; function processMapping(mapping) { const generatedPosition = generatedFile !== undefined ? getPositionOfLineAndCharacter(generatedFile, mapping.generatedLine, mapping.generatedCharacter, true) : -1; let source; let sourcePosition; if (isSourceMapping(mapping)) { const sourceFile = host.getSourceFileLike(sourceFileAbsolutePaths[mapping.sourceIndex]); source = map2.sources[mapping.sourceIndex]; sourcePosition = sourceFile !== undefined ? getPositionOfLineAndCharacter(sourceFile, mapping.sourceLine, mapping.sourceCharacter, true) : -1; } return { generatedPosition, source, sourceIndex: mapping.sourceIndex, sourcePosition, nameIndex: mapping.nameIndex }; } function getDecodedMappings() { if (decodedMappings === undefined) { const decoder = decodeMappings(map2.mappings); const mappings = arrayFrom(decoder, processMapping); if (decoder.error !== undefined) { if (host.log) { host.log(`Encountered error while decoding sourcemap: ${decoder.error}`); } decodedMappings = emptyArray; } else { decodedMappings = mappings; } } return decodedMappings; } function getSourceMappings(sourceIndex) { if (sourceMappings === undefined) { const lists = []; for (const mapping of getDecodedMappings()) { if (!isSourceMappedPosition(mapping)) continue; let list = lists[mapping.sourceIndex]; if (!list) lists[mapping.sourceIndex] = list = []; list.push(mapping); } sourceMappings = lists.map((list) => sortAndDeduplicate(list, compareSourcePositions, sameMappedPosition)); } return sourceMappings[sourceIndex]; } function getGeneratedMappings() { if (generatedMappings === undefined) { const list = []; for (const mapping of getDecodedMappings()) { list.push(mapping); } generatedMappings = sortAndDeduplicate(list, compareGeneratedPositions, sameMappedPosition); } return generatedMappings; } function getGeneratedPosition(loc) { const sourceIndex = sourceToSourceIndexMap.get(host.getCanonicalFileName(loc.fileName)); if (sourceIndex === undefined) return loc; const sourceMappings2 = getSourceMappings(sourceIndex); if (!some(sourceMappings2)) return loc; let targetIndex = binarySearchKey(sourceMappings2, loc.pos, getSourcePositionOfMapping, compareValues); if (targetIndex < 0) { targetIndex = ~targetIndex; } const mapping = sourceMappings2[targetIndex]; if (mapping === undefined || mapping.sourceIndex !== sourceIndex) { return loc; } return { fileName: generatedAbsoluteFilePath, pos: mapping.generatedPosition }; } function getSourcePosition(loc) { const generatedMappings2 = getGeneratedMappings(); if (!some(generatedMappings2)) return loc; let targetIndex = binarySearchKey(generatedMappings2, loc.pos, getGeneratedPositionOfMapping, compareValues); if (targetIndex < 0) { targetIndex = ~targetIndex; } const mapping = generatedMappings2[targetIndex]; if (mapping === undefined || !isSourceMappedPosition(mapping)) { return loc; } return { fileName: sourceFileAbsolutePaths[mapping.sourceIndex], pos: mapping.sourcePosition }; } } var identitySourceMapConsumer = { getSourcePosition: identity, getGeneratedPosition: identity }; function getOriginalNodeId(node) { node = getOriginalNode(node); return node ? getNodeId(node) : 0; } function containsDefaultReference(node) { if (!node) return false; if (!isNamedImports(node) && !isNamedExports(node)) return false; return some(node.elements, isNamedDefaultReference); } function isNamedDefaultReference(e) { return moduleExportNameIsDefault(e.propertyName || e.name); } function chainBundle(context, transformSourceFile) { return transformSourceFileOrBundle; function transformSourceFileOrBundle(node) { return node.kind === 308 ? transformSourceFile(node) : transformBundle(node); } function transformBundle(node) { return context.factory.createBundle(map(node.sourceFiles, transformSourceFile)); } } function getExportNeedsImportStarHelper(node) { return !!getNamespaceDeclarationNode(node); } function getImportNeedsImportStarHelper(node) { if (!!getNamespaceDeclarationNode(node)) { return true; } const bindings = node.importClause && node.importClause.namedBindings; if (!bindings) { return false; } if (!isNamedImports(bindings)) return false; let defaultRefCount = 0; for (const binding of bindings.elements) { if (isNamedDefaultReference(binding)) { defaultRefCount++; } } return defaultRefCount > 0 && defaultRefCount !== bindings.elements.length || !!(bindings.elements.length - defaultRefCount) && isDefaultImport(node); } function getImportNeedsImportDefaultHelper(node) { return !getImportNeedsImportStarHelper(node) && (isDefaultImport(node) || !!node.importClause && isNamedImports(node.importClause.namedBindings) && containsDefaultReference(node.importClause.namedBindings)); } function collectExternalModuleInfo(context, sourceFile) { const resolver = context.getEmitResolver(); const compilerOptions = context.getCompilerOptions(); const externalImports = []; const exportSpecifiers = new IdentifierNameMultiMap; const exportedBindings = []; const uniqueExports = /* @__PURE__ */ new Map; const exportedFunctions = /* @__PURE__ */ new Set; let exportedNames; let hasExportDefault = false; let exportEquals; let hasExportStarsToExportValues = false; let hasImportStar = false; let hasImportDefault = false; for (const node of sourceFile.statements) { switch (node.kind) { case 273: externalImports.push(node); if (!hasImportStar && getImportNeedsImportStarHelper(node)) { hasImportStar = true; } if (!hasImportDefault && getImportNeedsImportDefaultHelper(node)) { hasImportDefault = true; } break; case 272: if (node.moduleReference.kind === 284) { externalImports.push(node); } break; case 279: if (node.moduleSpecifier) { if (!node.exportClause) { externalImports.push(node); hasExportStarsToExportValues = true; } else { externalImports.push(node); if (isNamedExports(node.exportClause)) { addExportedNamesForExportDeclaration(node); hasImportDefault || (hasImportDefault = containsDefaultReference(node.exportClause)); } else { const name = node.exportClause.name; const nameText = moduleExportNameTextUnescaped(name); if (!uniqueExports.get(nameText)) { multiMapSparseArrayAdd(exportedBindings, getOriginalNodeId(node), name); uniqueExports.set(nameText, true); exportedNames = append(exportedNames, name); } hasImportStar = true; } } } else { addExportedNamesForExportDeclaration(node); } break; case 278: if (node.isExportEquals && !exportEquals) { exportEquals = node; } break; case 244: if (hasSyntacticModifier(node, 32)) { for (const decl of node.declarationList.declarations) { exportedNames = collectExportedVariableInfo(decl, uniqueExports, exportedNames, exportedBindings); } } break; case 263: if (hasSyntacticModifier(node, 32)) { addExportedFunctionDeclaration(node, undefined, hasSyntacticModifier(node, 2048)); } break; case 264: if (hasSyntacticModifier(node, 32)) { if (hasSyntacticModifier(node, 2048)) { if (!hasExportDefault) { multiMapSparseArrayAdd(exportedBindings, getOriginalNodeId(node), context.factory.getDeclarationName(node)); hasExportDefault = true; } } else { const name = node.name; if (name && !uniqueExports.get(idText(name))) { multiMapSparseArrayAdd(exportedBindings, getOriginalNodeId(node), name); uniqueExports.set(idText(name), true); exportedNames = append(exportedNames, name); } } } break; } } const externalHelpersImportDeclaration = createExternalHelpersImportDeclarationIfNeeded(context.factory, context.getEmitHelperFactory(), sourceFile, compilerOptions, hasExportStarsToExportValues, hasImportStar, hasImportDefault); if (externalHelpersImportDeclaration) { externalImports.unshift(externalHelpersImportDeclaration); } return { externalImports, exportSpecifiers, exportEquals, hasExportStarsToExportValues, exportedBindings, exportedNames, exportedFunctions, externalHelpersImportDeclaration }; function addExportedNamesForExportDeclaration(node) { for (const specifier of cast(node.exportClause, isNamedExports).elements) { const specifierNameText = moduleExportNameTextUnescaped(specifier.name); if (!uniqueExports.get(specifierNameText)) { const name = specifier.propertyName || specifier.name; if (name.kind !== 11) { if (!node.moduleSpecifier) { exportSpecifiers.add(name, specifier); } const decl = resolver.getReferencedImportDeclaration(name) || resolver.getReferencedValueDeclaration(name); if (decl) { if (decl.kind === 263) { addExportedFunctionDeclaration(decl, specifier.name, moduleExportNameIsDefault(specifier.name)); continue; } multiMapSparseArrayAdd(exportedBindings, getOriginalNodeId(decl), specifier.name); } } uniqueExports.set(specifierNameText, true); exportedNames = append(exportedNames, specifier.name); } } } function addExportedFunctionDeclaration(node, name, isDefault) { exportedFunctions.add(getOriginalNode(node, isFunctionDeclaration)); if (isDefault) { if (!hasExportDefault) { multiMapSparseArrayAdd(exportedBindings, getOriginalNodeId(node), name ?? context.factory.getDeclarationName(node)); hasExportDefault = true; } } else { name ?? (name = node.name); const nameText = moduleExportNameTextUnescaped(name); if (!uniqueExports.get(nameText)) { multiMapSparseArrayAdd(exportedBindings, getOriginalNodeId(node), name); uniqueExports.set(nameText, true); } } } } function collectExportedVariableInfo(decl, uniqueExports, exportedNames, exportedBindings) { if (isBindingPattern(decl.name)) { for (const element of decl.name.elements) { if (!isOmittedExpression(element)) { exportedNames = collectExportedVariableInfo(element, uniqueExports, exportedNames, exportedBindings); } } } else if (!isGeneratedIdentifier(decl.name)) { const text = idText(decl.name); if (!uniqueExports.get(text)) { uniqueExports.set(text, true); exportedNames = append(exportedNames, decl.name); if (isLocalName(decl.name)) { multiMapSparseArrayAdd(exportedBindings, getOriginalNodeId(decl), decl.name); } } } return exportedNames; } function multiMapSparseArrayAdd(map2, key, value) { let values = map2[key]; if (values) { values.push(value); } else { map2[key] = values = [value]; } return values; } var IdentifierNameMap = class _IdentifierNameMap { constructor() { this._map = /* @__PURE__ */ new Map; } get size() { return this._map.size; } has(key) { return this._map.has(_IdentifierNameMap.toKey(key)); } get(key) { return this._map.get(_IdentifierNameMap.toKey(key)); } set(key, value) { this._map.set(_IdentifierNameMap.toKey(key), value); return this; } delete(key) { var _a; return ((_a = this._map) == null ? undefined : _a.delete(_IdentifierNameMap.toKey(key))) ?? false; } clear() { this._map.clear(); } values() { return this._map.values(); } static toKey(name) { if (isGeneratedPrivateIdentifier(name) || isGeneratedIdentifier(name)) { const autoGenerate = name.emitNode.autoGenerate; if ((autoGenerate.flags & 7) === 4) { const node = getNodeForGeneratedName(name); const baseName = isMemberName(node) && node !== name ? _IdentifierNameMap.toKey(node) : `(generated@${getNodeId(node)})`; return formatGeneratedName(false, autoGenerate.prefix, baseName, autoGenerate.suffix, _IdentifierNameMap.toKey); } else { const baseName = `(auto@${autoGenerate.id})`; return formatGeneratedName(false, autoGenerate.prefix, baseName, autoGenerate.suffix, _IdentifierNameMap.toKey); } } if (isPrivateIdentifier(name)) { return idText(name).slice(1); } return idText(name); } }; var IdentifierNameMultiMap = class extends IdentifierNameMap { add(key, value) { let values = this.get(key); if (values) { values.push(value); } else { this.set(key, values = [value]); } return values; } remove(key, value) { const values = this.get(key); if (values) { unorderedRemoveItem(values, value); if (!values.length) { this.delete(key); } } } }; function isSimpleCopiableExpression(expression) { return isStringLiteralLike(expression) || expression.kind === 9 || isKeyword(expression.kind) || isIdentifier(expression); } function isSimpleInlineableExpression(expression) { return !isIdentifier(expression) && isSimpleCopiableExpression(expression); } function isCompoundAssignment(kind) { return kind >= 65 && kind <= 79; } function getNonAssignmentOperatorForCompoundAssignment(kind) { switch (kind) { case 65: return 40; case 66: return 41; case 67: return 42; case 68: return 43; case 69: return 44; case 70: return 45; case 71: return 48; case 72: return 49; case 73: return 50; case 74: return 51; case 75: return 52; case 79: return 53; case 76: return 57; case 77: return 56; case 78: return 61; } } function getSuperCallFromStatement(statement) { if (!isExpressionStatement(statement)) { return; } const expression = skipParentheses(statement.expression); return isSuperCall(expression) ? expression : undefined; } function findSuperStatementIndexPathWorker(statements, start, indices) { for (let i = start;i < statements.length; i += 1) { const statement = statements[i]; if (getSuperCallFromStatement(statement)) { indices.unshift(i); return true; } else if (isTryStatement(statement) && findSuperStatementIndexPathWorker(statement.tryBlock.statements, 0, indices)) { indices.unshift(i); return true; } } return false; } function findSuperStatementIndexPath(statements, start) { const indices = []; findSuperStatementIndexPathWorker(statements, start, indices); return indices; } function getProperties(node, requireInitializer, isStatic2) { return filter(node.members, (m) => isInitializedOrStaticProperty(m, requireInitializer, isStatic2)); } function isStaticPropertyDeclarationOrClassStaticBlockDeclaration(element) { return isStaticPropertyDeclaration(element) || isClassStaticBlockDeclaration(element); } function getStaticPropertiesAndClassStaticBlock(node) { return filter(node.members, isStaticPropertyDeclarationOrClassStaticBlockDeclaration); } function isInitializedOrStaticProperty(member, requireInitializer, isStatic2) { return isPropertyDeclaration(member) && (!!member.initializer || !requireInitializer) && hasStaticModifier(member) === isStatic2; } function isStaticPropertyDeclaration(member) { return isPropertyDeclaration(member) && hasStaticModifier(member); } function isInitializedProperty(member) { return member.kind === 173 && member.initializer !== undefined; } function isNonStaticMethodOrAccessorWithPrivateName(member) { return !isStatic(member) && (isMethodOrAccessor(member) || isAutoAccessorPropertyDeclaration(member)) && isPrivateIdentifier(member.name); } function getDecoratorsOfParameters(node) { let decorators; if (node) { const parameters = node.parameters; const firstParameterIsThis = parameters.length > 0 && parameterIsThisKeyword(parameters[0]); const firstParameterOffset = firstParameterIsThis ? 1 : 0; const numParameters = firstParameterIsThis ? parameters.length - 1 : parameters.length; for (let i = 0;i < numParameters; i++) { const parameter = parameters[i + firstParameterOffset]; if (decorators || hasDecorators(parameter)) { if (!decorators) { decorators = new Array(numParameters); } decorators[i] = getDecorators(parameter); } } } return decorators; } function getAllDecoratorsOfClass(node, useLegacyDecorators) { const decorators = getDecorators(node); const parameters = useLegacyDecorators ? getDecoratorsOfParameters(getFirstConstructorWithBody(node)) : undefined; if (!some(decorators) && !some(parameters)) { return; } return { decorators, parameters }; } function getAllDecoratorsOfClassElement(member, parent2, useLegacyDecorators) { switch (member.kind) { case 178: case 179: if (!useLegacyDecorators) { return getAllDecoratorsOfMethod(member, false); } return getAllDecoratorsOfAccessors(member, parent2, true); case 175: return getAllDecoratorsOfMethod(member, useLegacyDecorators); case 173: return getAllDecoratorsOfProperty(member); default: return; } } function getAllDecoratorsOfAccessors(accessor, parent2, useLegacyDecorators) { if (!accessor.body) { return; } const { firstAccessor, secondAccessor, getAccessor, setAccessor } = getAllAccessorDeclarations(parent2.members, accessor); const firstAccessorWithDecorators = hasDecorators(firstAccessor) ? firstAccessor : secondAccessor && hasDecorators(secondAccessor) ? secondAccessor : undefined; if (!firstAccessorWithDecorators || accessor !== firstAccessorWithDecorators) { return; } const decorators = getDecorators(firstAccessorWithDecorators); const parameters = useLegacyDecorators ? getDecoratorsOfParameters(setAccessor) : undefined; if (!some(decorators) && !some(parameters)) { return; } return { decorators, parameters, getDecorators: getAccessor && getDecorators(getAccessor), setDecorators: setAccessor && getDecorators(setAccessor) }; } function getAllDecoratorsOfMethod(method, useLegacyDecorators) { if (!method.body) { return; } const decorators = getDecorators(method); const parameters = useLegacyDecorators ? getDecoratorsOfParameters(method) : undefined; if (!some(decorators) && !some(parameters)) { return; } return { decorators, parameters }; } function getAllDecoratorsOfProperty(property) { const decorators = getDecorators(property); if (!some(decorators)) { return; } return { decorators }; } function walkUpLexicalEnvironments(env, cb) { while (env) { const result = cb(env); if (result !== undefined) return result; env = env.previous; } } function newPrivateEnvironment(data) { return { data }; } function getPrivateIdentifier(privateEnv, name) { var _a, _b; return isGeneratedPrivateIdentifier(name) ? (_a = privateEnv == null ? undefined : privateEnv.generatedIdentifiers) == null ? undefined : _a.get(getNodeForGeneratedName(name)) : (_b = privateEnv == null ? undefined : privateEnv.identifiers) == null ? undefined : _b.get(name.escapedText); } function setPrivateIdentifier(privateEnv, name, entry) { if (isGeneratedPrivateIdentifier(name)) { privateEnv.generatedIdentifiers ?? (privateEnv.generatedIdentifiers = /* @__PURE__ */ new Map); privateEnv.generatedIdentifiers.set(getNodeForGeneratedName(name), entry); } else { privateEnv.identifiers ?? (privateEnv.identifiers = /* @__PURE__ */ new Map); privateEnv.identifiers.set(name.escapedText, entry); } } function accessPrivateIdentifier(env, name) { return walkUpLexicalEnvironments(env, (env2) => getPrivateIdentifier(env2.privateEnv, name)); } function isSimpleParameter(node) { return !node.initializer && isIdentifier(node.name); } function isSimpleParameterList(nodes) { return every(nodes, isSimpleParameter); } function rewriteModuleSpecifier(node, compilerOptions) { if (!node || !isStringLiteral(node) || !shouldRewriteModuleSpecifier(node.text, compilerOptions)) { return node; } const updatedText = changeExtension(node.text, getOutputExtension(node.text, compilerOptions)); return updatedText !== node.text ? setOriginalNode(setTextRange(factory.createStringLiteral(updatedText, node.singleQuote), node), node) : node; } var FlattenLevel = /* @__PURE__ */ ((FlattenLevel2) => { FlattenLevel2[FlattenLevel2["All"] = 0] = "All"; FlattenLevel2[FlattenLevel2["ObjectRest"] = 1] = "ObjectRest"; return FlattenLevel2; })(FlattenLevel || {}); function flattenDestructuringAssignment(node, visitor, context, level, needsValue, createAssignmentCallback) { let location = node; let value; if (isDestructuringAssignment(node)) { value = node.right; while (isEmptyArrayLiteral(node.left) || isEmptyObjectLiteral(node.left)) { if (isDestructuringAssignment(value)) { location = node = value; value = node.right; } else { return Debug.checkDefined(visitNode(value, visitor, isExpression)); } } } let expressions; const flattenContext = { context, level, downlevelIteration: !!context.getCompilerOptions().downlevelIteration, hoistTempVariables: true, emitExpression, emitBindingOrAssignment, createArrayBindingOrAssignmentPattern: (elements) => makeArrayAssignmentPattern(context.factory, elements), createObjectBindingOrAssignmentPattern: (elements) => makeObjectAssignmentPattern(context.factory, elements), createArrayBindingOrAssignmentElement: makeAssignmentElement, visitor }; if (value) { value = visitNode(value, visitor, isExpression); Debug.assert(value); if (isIdentifier(value) && bindingOrAssignmentElementAssignsToName(node, value.escapedText) || bindingOrAssignmentElementContainsNonLiteralComputedName(node)) { value = ensureIdentifier(flattenContext, value, false, location); } else if (needsValue) { value = ensureIdentifier(flattenContext, value, true, location); } else if (nodeIsSynthesized(node)) { location = value; } } flattenBindingOrAssignmentElement(flattenContext, node, value, location, isDestructuringAssignment(node)); if (value && needsValue) { if (!some(expressions)) { return value; } expressions.push(value); } return context.factory.inlineExpressions(expressions) || context.factory.createOmittedExpression(); function emitExpression(expression) { expressions = append(expressions, expression); } function emitBindingOrAssignment(target, value2, location2, original) { Debug.assertNode(target, createAssignmentCallback ? isIdentifier : isExpression); const expression = createAssignmentCallback ? createAssignmentCallback(target, value2, location2) : setTextRange(context.factory.createAssignment(Debug.checkDefined(visitNode(target, visitor, isExpression)), value2), location2); expression.original = original; emitExpression(expression); } } function bindingOrAssignmentElementAssignsToName(element, escapedName) { const target = getTargetOfBindingOrAssignmentElement(element); if (isBindingOrAssignmentPattern(target)) { return bindingOrAssignmentPatternAssignsToName(target, escapedName); } else if (isIdentifier(target)) { return target.escapedText === escapedName; } return false; } function bindingOrAssignmentPatternAssignsToName(pattern, escapedName) { const elements = getElementsOfBindingOrAssignmentPattern(pattern); for (const element of elements) { if (bindingOrAssignmentElementAssignsToName(element, escapedName)) { return true; } } return false; } function bindingOrAssignmentElementContainsNonLiteralComputedName(element) { const propertyName = tryGetPropertyNameOfBindingOrAssignmentElement(element); if (propertyName && isComputedPropertyName(propertyName) && !isLiteralExpression(propertyName.expression)) { return true; } const target = getTargetOfBindingOrAssignmentElement(element); return !!target && isBindingOrAssignmentPattern(target) && bindingOrAssignmentPatternContainsNonLiteralComputedName(target); } function bindingOrAssignmentPatternContainsNonLiteralComputedName(pattern) { return !!forEach(getElementsOfBindingOrAssignmentPattern(pattern), bindingOrAssignmentElementContainsNonLiteralComputedName); } function flattenDestructuringBinding(node, visitor, context, level, rval, hoistTempVariables = false, skipInitializer) { let pendingExpressions; const pendingDeclarations = []; const declarations = []; const flattenContext = { context, level, downlevelIteration: !!context.getCompilerOptions().downlevelIteration, hoistTempVariables, emitExpression, emitBindingOrAssignment, createArrayBindingOrAssignmentPattern: (elements) => makeArrayBindingPattern(context.factory, elements), createObjectBindingOrAssignmentPattern: (elements) => makeObjectBindingPattern(context.factory, elements), createArrayBindingOrAssignmentElement: (name) => makeBindingElement(context.factory, name), visitor }; if (isVariableDeclaration(node)) { let initializer = getInitializerOfBindingOrAssignmentElement(node); if (initializer && (isIdentifier(initializer) && bindingOrAssignmentElementAssignsToName(node, initializer.escapedText) || bindingOrAssignmentElementContainsNonLiteralComputedName(node))) { initializer = ensureIdentifier(flattenContext, Debug.checkDefined(visitNode(initializer, flattenContext.visitor, isExpression)), false, initializer); node = context.factory.updateVariableDeclaration(node, node.name, undefined, undefined, initializer); } } flattenBindingOrAssignmentElement(flattenContext, node, rval, node, skipInitializer); if (pendingExpressions) { const temp = context.factory.createTempVariable(undefined); if (hoistTempVariables) { const value = context.factory.inlineExpressions(pendingExpressions); pendingExpressions = undefined; emitBindingOrAssignment(temp, value, undefined, undefined); } else { context.hoistVariableDeclaration(temp); const pendingDeclaration = last(pendingDeclarations); pendingDeclaration.pendingExpressions = append(pendingDeclaration.pendingExpressions, context.factory.createAssignment(temp, pendingDeclaration.value)); addRange(pendingDeclaration.pendingExpressions, pendingExpressions); pendingDeclaration.value = temp; } } for (const { pendingExpressions: pendingExpressions2, name, value, location, original } of pendingDeclarations) { const variable = context.factory.createVariableDeclaration(name, undefined, undefined, pendingExpressions2 ? context.factory.inlineExpressions(append(pendingExpressions2, value)) : value); variable.original = original; setTextRange(variable, location); declarations.push(variable); } return declarations; function emitExpression(value) { pendingExpressions = append(pendingExpressions, value); } function emitBindingOrAssignment(target, value, location, original) { Debug.assertNode(target, isBindingName); if (pendingExpressions) { value = context.factory.inlineExpressions(append(pendingExpressions, value)); pendingExpressions = undefined; } pendingDeclarations.push({ pendingExpressions, name: target, value, location, original }); } } function flattenBindingOrAssignmentElement(flattenContext, element, value, location, skipInitializer) { const bindingTarget = getTargetOfBindingOrAssignmentElement(element); if (!skipInitializer) { const initializer = visitNode(getInitializerOfBindingOrAssignmentElement(element), flattenContext.visitor, isExpression); if (initializer) { if (value) { value = createDefaultValueCheck(flattenContext, value, initializer, location); if (!isSimpleInlineableExpression(initializer) && isBindingOrAssignmentPattern(bindingTarget)) { value = ensureIdentifier(flattenContext, value, true, location); } } else { value = initializer; } } else if (!value) { value = flattenContext.context.factory.createVoidZero(); } } if (isObjectBindingOrAssignmentPattern(bindingTarget)) { flattenObjectBindingOrAssignmentPattern(flattenContext, element, bindingTarget, value, location); } else if (isArrayBindingOrAssignmentPattern(bindingTarget)) { flattenArrayBindingOrAssignmentPattern(flattenContext, element, bindingTarget, value, location); } else { flattenContext.emitBindingOrAssignment(bindingTarget, value, location, element); } } function flattenObjectBindingOrAssignmentPattern(flattenContext, parent2, pattern, value, location) { const elements = getElementsOfBindingOrAssignmentPattern(pattern); const numElements = elements.length; if (numElements !== 1) { const reuseIdentifierExpressions = !isDeclarationBindingElement(parent2) || numElements !== 0; value = ensureIdentifier(flattenContext, value, reuseIdentifierExpressions, location); } let bindingElements; let computedTempVariables; for (let i = 0;i < numElements; i++) { const element = elements[i]; if (!getRestIndicatorOfBindingOrAssignmentElement(element)) { const propertyName = getPropertyNameOfBindingOrAssignmentElement(element); if (flattenContext.level >= 1 && !(element.transformFlags & (32768 | 65536)) && !(getTargetOfBindingOrAssignmentElement(element).transformFlags & (32768 | 65536)) && !isComputedPropertyName(propertyName)) { bindingElements = append(bindingElements, visitNode(element, flattenContext.visitor, isBindingOrAssignmentElement)); } else { if (bindingElements) { flattenContext.emitBindingOrAssignment(flattenContext.createObjectBindingOrAssignmentPattern(bindingElements), value, location, pattern); bindingElements = undefined; } const rhsValue = createDestructuringPropertyAccess(flattenContext, value, propertyName); if (isComputedPropertyName(propertyName)) { computedTempVariables = append(computedTempVariables, rhsValue.argumentExpression); } flattenBindingOrAssignmentElement(flattenContext, element, rhsValue, element); } } else if (i === numElements - 1) { if (bindingElements) { flattenContext.emitBindingOrAssignment(flattenContext.createObjectBindingOrAssignmentPattern(bindingElements), value, location, pattern); bindingElements = undefined; } const rhsValue = flattenContext.context.getEmitHelperFactory().createRestHelper(value, elements, computedTempVariables, pattern); flattenBindingOrAssignmentElement(flattenContext, element, rhsValue, element); } } if (bindingElements) { flattenContext.emitBindingOrAssignment(flattenContext.createObjectBindingOrAssignmentPattern(bindingElements), value, location, pattern); } } function flattenArrayBindingOrAssignmentPattern(flattenContext, parent2, pattern, value, location) { const elements = getElementsOfBindingOrAssignmentPattern(pattern); const numElements = elements.length; if (flattenContext.level < 1 && flattenContext.downlevelIteration) { value = ensureIdentifier(flattenContext, setTextRange(flattenContext.context.getEmitHelperFactory().createReadHelper(value, numElements > 0 && getRestIndicatorOfBindingOrAssignmentElement(elements[numElements - 1]) ? undefined : numElements), location), false, location); } else if (numElements !== 1 && (flattenContext.level < 1 || numElements === 0) || every(elements, isOmittedExpression)) { const reuseIdentifierExpressions = !isDeclarationBindingElement(parent2) || numElements !== 0; value = ensureIdentifier(flattenContext, value, reuseIdentifierExpressions, location); } let bindingElements; let restContainingElements; for (let i = 0;i < numElements; i++) { const element = elements[i]; if (flattenContext.level >= 1) { if (element.transformFlags & 65536 || flattenContext.hasTransformedPriorElement && !isSimpleBindingOrAssignmentElement(element)) { flattenContext.hasTransformedPriorElement = true; const temp = flattenContext.context.factory.createTempVariable(undefined); if (flattenContext.hoistTempVariables) { flattenContext.context.hoistVariableDeclaration(temp); } restContainingElements = append(restContainingElements, [temp, element]); bindingElements = append(bindingElements, flattenContext.createArrayBindingOrAssignmentElement(temp)); } else { bindingElements = append(bindingElements, element); } } else if (isOmittedExpression(element)) { continue; } else if (!getRestIndicatorOfBindingOrAssignmentElement(element)) { const rhsValue = flattenContext.context.factory.createElementAccessExpression(value, i); flattenBindingOrAssignmentElement(flattenContext, element, rhsValue, element); } else if (i === numElements - 1) { const rhsValue = flattenContext.context.factory.createArraySliceCall(value, i); flattenBindingOrAssignmentElement(flattenContext, element, rhsValue, element); } } if (bindingElements) { flattenContext.emitBindingOrAssignment(flattenContext.createArrayBindingOrAssignmentPattern(bindingElements), value, location, pattern); } if (restContainingElements) { for (const [id, element] of restContainingElements) { flattenBindingOrAssignmentElement(flattenContext, element, id, element); } } } function isSimpleBindingOrAssignmentElement(element) { const target = getTargetOfBindingOrAssignmentElement(element); if (!target || isOmittedExpression(target)) return true; const propertyName = tryGetPropertyNameOfBindingOrAssignmentElement(element); if (propertyName && !isPropertyNameLiteral(propertyName)) return false; const initializer = getInitializerOfBindingOrAssignmentElement(element); if (initializer && !isSimpleInlineableExpression(initializer)) return false; if (isBindingOrAssignmentPattern(target)) return every(getElementsOfBindingOrAssignmentPattern(target), isSimpleBindingOrAssignmentElement); return isIdentifier(target); } function createDefaultValueCheck(flattenContext, value, defaultValue, location) { value = ensureIdentifier(flattenContext, value, true, location); return flattenContext.context.factory.createConditionalExpression(flattenContext.context.factory.createTypeCheck(value, "undefined"), undefined, defaultValue, undefined, value); } function createDestructuringPropertyAccess(flattenContext, value, propertyName) { const { factory: factory2 } = flattenContext.context; if (isComputedPropertyName(propertyName)) { const argumentExpression = ensureIdentifier(flattenContext, Debug.checkDefined(visitNode(propertyName.expression, flattenContext.visitor, isExpression)), false, propertyName); return flattenContext.context.factory.createElementAccessExpression(value, argumentExpression); } else if (isStringOrNumericLiteralLike(propertyName) || isBigIntLiteral(propertyName)) { const argumentExpression = factory2.cloneNode(propertyName); return flattenContext.context.factory.createElementAccessExpression(value, argumentExpression); } else { const name = flattenContext.context.factory.createIdentifier(idText(propertyName)); return flattenContext.context.factory.createPropertyAccessExpression(value, name); } } function ensureIdentifier(flattenContext, value, reuseIdentifierExpressions, location) { if (isIdentifier(value) && reuseIdentifierExpressions) { return value; } else { const temp = flattenContext.context.factory.createTempVariable(undefined); if (flattenContext.hoistTempVariables) { flattenContext.context.hoistVariableDeclaration(temp); flattenContext.emitExpression(setTextRange(flattenContext.context.factory.createAssignment(temp, value), location)); } else { flattenContext.emitBindingOrAssignment(temp, value, location, undefined); } return temp; } } function makeArrayBindingPattern(factory2, elements) { Debug.assertEachNode(elements, isArrayBindingElement); return factory2.createArrayBindingPattern(elements); } function makeArrayAssignmentPattern(factory2, elements) { Debug.assertEachNode(elements, isArrayBindingOrAssignmentElement); return factory2.createArrayLiteralExpression(map(elements, factory2.converters.convertToArrayAssignmentElement)); } function makeObjectBindingPattern(factory2, elements) { Debug.assertEachNode(elements, isBindingElement); return factory2.createObjectBindingPattern(elements); } function makeObjectAssignmentPattern(factory2, elements) { Debug.assertEachNode(elements, isObjectBindingOrAssignmentElement); return factory2.createObjectLiteralExpression(map(elements, factory2.converters.convertToObjectAssignmentElement)); } function makeBindingElement(factory2, name) { return factory2.createBindingElement(undefined, undefined, name); } function makeAssignmentElement(name) { return name; } function createClassThisAssignmentBlock(factory2, classThis, thisExpression = factory2.createThis()) { const expression = factory2.createAssignment(classThis, thisExpression); const statement = factory2.createExpressionStatement(expression); const body = factory2.createBlock([statement], false); const block = factory2.createClassStaticBlockDeclaration(body); getOrCreateEmitNode(block).classThis = classThis; return block; } function isClassThisAssignmentBlock(node) { var _a; if (!isClassStaticBlockDeclaration(node) || node.body.statements.length !== 1) { return false; } const statement = node.body.statements[0]; return isExpressionStatement(statement) && isAssignmentExpression(statement.expression, true) && isIdentifier(statement.expression.left) && ((_a = node.emitNode) == null ? undefined : _a.classThis) === statement.expression.left && statement.expression.right.kind === 110; } function classHasClassThisAssignment(node) { var _a; return !!((_a = node.emitNode) == null ? undefined : _a.classThis) && some(node.members, isClassThisAssignmentBlock); } function injectClassThisAssignmentIfMissing(factory2, node, classThis, thisExpression) { if (classHasClassThisAssignment(node)) { return node; } const staticBlock = createClassThisAssignmentBlock(factory2, classThis, thisExpression); if (node.name) { setSourceMapRange(staticBlock.body.statements[0], node.name); } const members = factory2.createNodeArray([staticBlock, ...node.members]); setTextRange(members, node.members); const updatedNode = isClassDeclaration(node) ? factory2.updateClassDeclaration(node, node.modifiers, node.name, node.typeParameters, node.heritageClauses, members) : factory2.updateClassExpression(node, node.modifiers, node.name, node.typeParameters, node.heritageClauses, members); getOrCreateEmitNode(updatedNode).classThis = classThis; return updatedNode; } function getAssignedNameOfIdentifier(factory2, name, expression) { const original = getOriginalNode(skipOuterExpressions(expression)); if ((isClassDeclaration(original) || isFunctionDeclaration(original)) && !original.name && hasSyntacticModifier(original, 2048)) { return factory2.createStringLiteral("default"); } return factory2.createStringLiteralFromNode(name); } function getAssignedNameOfPropertyName(context, name, assignedNameText) { const { factory: factory2 } = context; if (assignedNameText !== undefined) { const assignedName2 = factory2.createStringLiteral(assignedNameText); return { assignedName: assignedName2, name }; } if (isPropertyNameLiteral(name) || isPrivateIdentifier(name)) { const assignedName2 = factory2.createStringLiteralFromNode(name); return { assignedName: assignedName2, name }; } if (isPropertyNameLiteral(name.expression) && !isIdentifier(name.expression)) { const assignedName2 = factory2.createStringLiteralFromNode(name.expression); return { assignedName: assignedName2, name }; } const assignedName = factory2.getGeneratedNameForNode(name); context.hoistVariableDeclaration(assignedName); const key = context.getEmitHelperFactory().createPropKeyHelper(name.expression); const assignment = factory2.createAssignment(assignedName, key); const updatedName = factory2.updateComputedPropertyName(name, assignment); return { assignedName, name: updatedName }; } function createClassNamedEvaluationHelperBlock(context, assignedName, thisExpression = context.factory.createThis()) { const { factory: factory2 } = context; const expression = context.getEmitHelperFactory().createSetFunctionNameHelper(thisExpression, assignedName); const statement = factory2.createExpressionStatement(expression); const body = factory2.createBlock([statement], false); const block = factory2.createClassStaticBlockDeclaration(body); getOrCreateEmitNode(block).assignedName = assignedName; return block; } function isClassNamedEvaluationHelperBlock(node) { var _a; if (!isClassStaticBlockDeclaration(node) || node.body.statements.length !== 1) { return false; } const statement = node.body.statements[0]; return isExpressionStatement(statement) && isCallToHelper(statement.expression, "___setFunctionName") && statement.expression.arguments.length >= 2 && statement.expression.arguments[1] === ((_a = node.emitNode) == null ? undefined : _a.assignedName); } function classHasExplicitlyAssignedName(node) { var _a; return !!((_a = node.emitNode) == null ? undefined : _a.assignedName) && some(node.members, isClassNamedEvaluationHelperBlock); } function classHasDeclaredOrExplicitlyAssignedName(node) { return !!node.name || classHasExplicitlyAssignedName(node); } function injectClassNamedEvaluationHelperBlockIfMissing(context, node, assignedName, thisExpression) { if (classHasExplicitlyAssignedName(node)) { return node; } const { factory: factory2 } = context; const namedEvaluationBlock = createClassNamedEvaluationHelperBlock(context, assignedName, thisExpression); if (node.name) { setSourceMapRange(namedEvaluationBlock.body.statements[0], node.name); } const insertionIndex = findIndex(node.members, isClassThisAssignmentBlock) + 1; const leading = node.members.slice(0, insertionIndex); const trailing = node.members.slice(insertionIndex); const members = factory2.createNodeArray([...leading, namedEvaluationBlock, ...trailing]); setTextRange(members, node.members); node = isClassDeclaration(node) ? factory2.updateClassDeclaration(node, node.modifiers, node.name, node.typeParameters, node.heritageClauses, members) : factory2.updateClassExpression(node, node.modifiers, node.name, node.typeParameters, node.heritageClauses, members); getOrCreateEmitNode(node).assignedName = assignedName; return node; } function finishTransformNamedEvaluation(context, expression, assignedName, ignoreEmptyStringLiteral) { if (ignoreEmptyStringLiteral && isStringLiteral(assignedName) && isEmptyStringLiteral(assignedName)) { return expression; } const { factory: factory2 } = context; const innerExpression = skipOuterExpressions(expression); const updatedExpression = isClassExpression(innerExpression) ? cast(injectClassNamedEvaluationHelperBlockIfMissing(context, innerExpression, assignedName), isClassExpression) : context.getEmitHelperFactory().createSetFunctionNameHelper(innerExpression, assignedName); return factory2.restoreOuterExpressions(expression, updatedExpression); } function transformNamedEvaluationOfPropertyAssignment(context, node, ignoreEmptyStringLiteral, assignedNameText) { const { factory: factory2 } = context; const { assignedName, name } = getAssignedNameOfPropertyName(context, node.name, assignedNameText); const initializer = finishTransformNamedEvaluation(context, node.initializer, assignedName, ignoreEmptyStringLiteral); return factory2.updatePropertyAssignment(node, name, initializer); } function transformNamedEvaluationOfShorthandAssignmentProperty(context, node, ignoreEmptyStringLiteral, assignedNameText) { const { factory: factory2 } = context; const assignedName = assignedNameText !== undefined ? factory2.createStringLiteral(assignedNameText) : getAssignedNameOfIdentifier(factory2, node.name, node.objectAssignmentInitializer); const objectAssignmentInitializer = finishTransformNamedEvaluation(context, node.objectAssignmentInitializer, assignedName, ignoreEmptyStringLiteral); return factory2.updateShorthandPropertyAssignment(node, node.name, objectAssignmentInitializer); } function transformNamedEvaluationOfVariableDeclaration(context, node, ignoreEmptyStringLiteral, assignedNameText) { const { factory: factory2 } = context; const assignedName = assignedNameText !== undefined ? factory2.createStringLiteral(assignedNameText) : getAssignedNameOfIdentifier(factory2, node.name, node.initializer); const initializer = finishTransformNamedEvaluation(context, node.initializer, assignedName, ignoreEmptyStringLiteral); return factory2.updateVariableDeclaration(node, node.name, node.exclamationToken, node.type, initializer); } function transformNamedEvaluationOfParameterDeclaration(context, node, ignoreEmptyStringLiteral, assignedNameText) { const { factory: factory2 } = context; const assignedName = assignedNameText !== undefined ? factory2.createStringLiteral(assignedNameText) : getAssignedNameOfIdentifier(factory2, node.name, node.initializer); const initializer = finishTransformNamedEvaluation(context, node.initializer, assignedName, ignoreEmptyStringLiteral); return factory2.updateParameterDeclaration(node, node.modifiers, node.dotDotDotToken, node.name, node.questionToken, node.type, initializer); } function transformNamedEvaluationOfBindingElement(context, node, ignoreEmptyStringLiteral, assignedNameText) { const { factory: factory2 } = context; const assignedName = assignedNameText !== undefined ? factory2.createStringLiteral(assignedNameText) : getAssignedNameOfIdentifier(factory2, node.name, node.initializer); const initializer = finishTransformNamedEvaluation(context, node.initializer, assignedName, ignoreEmptyStringLiteral); return factory2.updateBindingElement(node, node.dotDotDotToken, node.propertyName, node.name, initializer); } function transformNamedEvaluationOfPropertyDeclaration(context, node, ignoreEmptyStringLiteral, assignedNameText) { const { factory: factory2 } = context; const { assignedName, name } = getAssignedNameOfPropertyName(context, node.name, assignedNameText); const initializer = finishTransformNamedEvaluation(context, node.initializer, assignedName, ignoreEmptyStringLiteral); return factory2.updatePropertyDeclaration(node, node.modifiers, name, node.questionToken ?? node.exclamationToken, node.type, initializer); } function transformNamedEvaluationOfAssignmentExpression(context, node, ignoreEmptyStringLiteral, assignedNameText) { const { factory: factory2 } = context; const assignedName = assignedNameText !== undefined ? factory2.createStringLiteral(assignedNameText) : getAssignedNameOfIdentifier(factory2, node.left, node.right); const right = finishTransformNamedEvaluation(context, node.right, assignedName, ignoreEmptyStringLiteral); return factory2.updateBinaryExpression(node, node.left, node.operatorToken, right); } function transformNamedEvaluationOfExportAssignment(context, node, ignoreEmptyStringLiteral, assignedNameText) { const { factory: factory2 } = context; const assignedName = assignedNameText !== undefined ? factory2.createStringLiteral(assignedNameText) : factory2.createStringLiteral(node.isExportEquals ? "" : "default"); const expression = finishTransformNamedEvaluation(context, node.expression, assignedName, ignoreEmptyStringLiteral); return factory2.updateExportAssignment(node, node.modifiers, expression); } function transformNamedEvaluation(context, node, ignoreEmptyStringLiteral, assignedName) { switch (node.kind) { case 304: return transformNamedEvaluationOfPropertyAssignment(context, node, ignoreEmptyStringLiteral, assignedName); case 305: return transformNamedEvaluationOfShorthandAssignmentProperty(context, node, ignoreEmptyStringLiteral, assignedName); case 261: return transformNamedEvaluationOfVariableDeclaration(context, node, ignoreEmptyStringLiteral, assignedName); case 170: return transformNamedEvaluationOfParameterDeclaration(context, node, ignoreEmptyStringLiteral, assignedName); case 209: return transformNamedEvaluationOfBindingElement(context, node, ignoreEmptyStringLiteral, assignedName); case 173: return transformNamedEvaluationOfPropertyDeclaration(context, node, ignoreEmptyStringLiteral, assignedName); case 227: return transformNamedEvaluationOfAssignmentExpression(context, node, ignoreEmptyStringLiteral, assignedName); case 278: return transformNamedEvaluationOfExportAssignment(context, node, ignoreEmptyStringLiteral, assignedName); } } var ProcessLevel = /* @__PURE__ */ ((ProcessLevel2) => { ProcessLevel2[ProcessLevel2["LiftRestriction"] = 0] = "LiftRestriction"; ProcessLevel2[ProcessLevel2["All"] = 1] = "All"; return ProcessLevel2; })(ProcessLevel || {}); function processTaggedTemplateExpression(context, node, visitor, currentSourceFile, recordTaggedTemplateString, level) { const tag = visitNode(node.tag, visitor, isExpression); Debug.assert(tag); const templateArguments = [undefined]; const cookedStrings = []; const rawStrings = []; const template = node.template; if (level === 0 && !hasInvalidEscape(template)) { return visitEachChild(node, visitor, context); } const { factory: factory2 } = context; if (isNoSubstitutionTemplateLiteral(template)) { cookedStrings.push(createTemplateCooked(factory2, template)); rawStrings.push(getRawLiteral(factory2, template, currentSourceFile)); } else { cookedStrings.push(createTemplateCooked(factory2, template.head)); rawStrings.push(getRawLiteral(factory2, template.head, currentSourceFile)); for (const templateSpan of template.templateSpans) { cookedStrings.push(createTemplateCooked(factory2, templateSpan.literal)); rawStrings.push(getRawLiteral(factory2, templateSpan.literal, currentSourceFile)); templateArguments.push(Debug.checkDefined(visitNode(templateSpan.expression, visitor, isExpression))); } } const helperCall = context.getEmitHelperFactory().createTemplateObjectHelper(factory2.createArrayLiteralExpression(cookedStrings), factory2.createArrayLiteralExpression(rawStrings)); if (isExternalModule(currentSourceFile)) { const tempVar = factory2.createUniqueName("templateObject"); recordTaggedTemplateString(tempVar); templateArguments[0] = factory2.createLogicalOr(tempVar, factory2.createAssignment(tempVar, helperCall)); } else { templateArguments[0] = helperCall; } return factory2.createCallExpression(tag, undefined, templateArguments); } function createTemplateCooked(factory2, template) { return template.templateFlags & 26656 ? factory2.createVoidZero() : factory2.createStringLiteral(template.text); } function getRawLiteral(factory2, node, currentSourceFile) { let text = node.rawText; if (text === undefined) { Debug.assertIsDefined(currentSourceFile, "Template literal node is missing 'rawText' and does not have a source file. Possibly bad transform."); text = getSourceTextOfNodeFromSourceFile(currentSourceFile, node); const isLast = node.kind === 15 || node.kind === 18; text = text.substring(1, text.length - (isLast ? 1 : 2)); } text = text.replace(/\r\n?/g, ` `); return setTextRange(factory2.createStringLiteral(text), node); } var USE_NEW_TYPE_METADATA_FORMAT = false; function transformTypeScript(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers, startLexicalEnvironment, resumeLexicalEnvironment, endLexicalEnvironment, hoistVariableDeclaration } = context; const resolver = context.getEmitResolver(); const compilerOptions = context.getCompilerOptions(); const languageVersion = getEmitScriptTarget(compilerOptions); const moduleKind = getEmitModuleKind(compilerOptions); const legacyDecorators = !!compilerOptions.experimentalDecorators; const typeSerializer = compilerOptions.emitDecoratorMetadata ? createRuntimeTypeSerializer(context) : undefined; const previousOnEmitNode = context.onEmitNode; const previousOnSubstituteNode = context.onSubstituteNode; context.onEmitNode = onEmitNode; context.onSubstituteNode = onSubstituteNode; context.enableSubstitution(212); context.enableSubstitution(213); let currentSourceFile; let currentNamespace; let currentNamespaceContainerName; let currentLexicalScope; let currentScopeFirstDeclarationsOfName; let enabledSubstitutions = 0; let applicableSubstitutions; return transformSourceFileOrBundle; function transformSourceFileOrBundle(node) { if (node.kind === 309) { return transformBundle(node); } return transformSourceFile(node); } function transformBundle(node) { return factory2.createBundle(node.sourceFiles.map(transformSourceFile)); } function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } currentSourceFile = node; const visited = saveStateAndInvoke(node, visitSourceFile); addEmitHelpers(visited, context.readEmitHelpers()); currentSourceFile = undefined; return visited; } function saveStateAndInvoke(node, f) { const savedCurrentScope = currentLexicalScope; const savedCurrentScopeFirstDeclarationsOfName = currentScopeFirstDeclarationsOfName; onBeforeVisitNode(node); const visited = f(node); if (currentLexicalScope !== savedCurrentScope) { currentScopeFirstDeclarationsOfName = savedCurrentScopeFirstDeclarationsOfName; } currentLexicalScope = savedCurrentScope; return visited; } function onBeforeVisitNode(node) { switch (node.kind) { case 308: case 270: case 269: case 242: currentLexicalScope = node; currentScopeFirstDeclarationsOfName = undefined; break; case 264: case 263: if (hasSyntacticModifier(node, 128)) { break; } if (node.name) { recordEmittedDeclarationInScope(node); } else { Debug.assert(node.kind === 264 || hasSyntacticModifier(node, 2048)); } break; } } function visitor(node) { return saveStateAndInvoke(node, visitorWorker); } function visitorWorker(node) { if (node.transformFlags & 1) { return visitTypeScript(node); } return node; } function sourceElementVisitor(node) { return saveStateAndInvoke(node, sourceElementVisitorWorker); } function sourceElementVisitorWorker(node) { switch (node.kind) { case 273: case 272: case 278: case 279: return visitElidableStatement(node); default: return visitorWorker(node); } } function isElisionBlocked(node) { const parsed = getParseTreeNode(node); if (parsed === node || isExportAssignment(node)) { return false; } if (!parsed || parsed.kind !== node.kind) { return true; } switch (node.kind) { case 273: Debug.assertNode(parsed, isImportDeclaration); if (node.importClause !== parsed.importClause) { return true; } if (node.attributes !== parsed.attributes) { return true; } break; case 272: Debug.assertNode(parsed, isImportEqualsDeclaration); if (node.name !== parsed.name) { return true; } if (node.isTypeOnly !== parsed.isTypeOnly) { return true; } if (node.moduleReference !== parsed.moduleReference && (isEntityName(node.moduleReference) || isEntityName(parsed.moduleReference))) { return true; } break; case 279: Debug.assertNode(parsed, isExportDeclaration); if (node.exportClause !== parsed.exportClause) { return true; } if (node.attributes !== parsed.attributes) { return true; } break; } return false; } function visitElidableStatement(node) { if (isElisionBlocked(node)) { if (node.transformFlags & 1) { return visitEachChild(node, visitor, context); } return node; } switch (node.kind) { case 273: return visitImportDeclaration(node); case 272: return visitImportEqualsDeclaration(node); case 278: return visitExportAssignment(node); case 279: return visitExportDeclaration(node); default: Debug.fail("Unhandled ellided statement"); } } function namespaceElementVisitor(node) { return saveStateAndInvoke(node, namespaceElementVisitorWorker); } function namespaceElementVisitorWorker(node) { if (node.kind === 279 || node.kind === 273 || node.kind === 274 || node.kind === 272 && node.moduleReference.kind === 284) { return; } else if (node.transformFlags & 1 || hasSyntacticModifier(node, 32)) { return visitTypeScript(node); } return node; } function getClassElementVisitor(parent2) { return (node) => saveStateAndInvoke(node, (n) => classElementVisitorWorker(n, parent2)); } function classElementVisitorWorker(node, parent2) { switch (node.kind) { case 177: return visitConstructor(node); case 173: return visitPropertyDeclaration(node, parent2); case 178: return visitGetAccessor(node, parent2); case 179: return visitSetAccessor(node, parent2); case 175: return visitMethodDeclaration(node, parent2); case 176: return visitEachChild(node, visitor, context); case 241: return node; case 182: return; default: return Debug.failBadSyntaxKind(node); } } function getObjectLiteralElementVisitor(parent2) { return (node) => saveStateAndInvoke(node, (n) => objectLiteralElementVisitorWorker(n, parent2)); } function objectLiteralElementVisitorWorker(node, parent2) { switch (node.kind) { case 304: case 305: case 306: return visitor(node); case 178: return visitGetAccessor(node, parent2); case 179: return visitSetAccessor(node, parent2); case 175: return visitMethodDeclaration(node, parent2); default: return Debug.failBadSyntaxKind(node); } } function decoratorElidingVisitor(node) { return isDecorator(node) ? undefined : visitor(node); } function modifierElidingVisitor(node) { return isModifier(node) ? undefined : visitor(node); } function modifierVisitor(node) { if (isDecorator(node)) return; if (modifierToFlag(node.kind) & 28895) { return; } else if (currentNamespace && node.kind === 95) { return; } return node; } function visitTypeScript(node) { if (isStatement(node) && hasSyntacticModifier(node, 128)) { return factory2.createNotEmittedStatement(node); } switch (node.kind) { case 95: case 90: return currentNamespace ? undefined : node; case 125: case 123: case 124: case 128: case 164: case 87: case 138: case 148: case 103: case 147: case 189: case 190: case 191: case 192: case 188: case 183: case 169: case 133: case 159: case 136: case 154: case 150: case 146: case 116: case 155: case 186: case 185: case 187: case 184: case 193: case 194: case 195: case 197: case 198: case 199: case 200: case 201: case 202: case 182: return; case 266: return factory2.createNotEmittedStatement(node); case 271: return; case 265: return factory2.createNotEmittedStatement(node); case 264: return visitClassDeclaration(node); case 232: return visitClassExpression(node); case 299: return visitHeritageClause(node); case 234: return visitExpressionWithTypeArguments(node); case 211: return visitObjectLiteralExpression(node); case 177: case 173: case 175: case 178: case 179: case 176: return Debug.fail("Class and object literal elements must be visited with their respective visitors"); case 263: return visitFunctionDeclaration(node); case 219: return visitFunctionExpression(node); case 220: return visitArrowFunction(node); case 170: return visitParameter(node); case 218: return visitParenthesizedExpression(node); case 217: case 235: return visitAssertionExpression(node); case 239: return visitSatisfiesExpression(node); case 214: return visitCallExpression(node); case 215: return visitNewExpression(node); case 216: return visitTaggedTemplateExpression(node); case 236: return visitNonNullExpression(node); case 267: return visitEnumDeclaration(node); case 244: return visitVariableStatement(node); case 261: return visitVariableDeclaration(node); case 268: return visitModuleDeclaration(node); case 272: return visitImportEqualsDeclaration(node); case 286: return visitJsxSelfClosingElement(node); case 287: return visitJsxJsxOpeningElement(node); default: return visitEachChild(node, visitor, context); } } function visitSourceFile(node) { const alwaysStrict = getAlwaysStrict(compilerOptions) && !(isExternalModule(node) && moduleKind >= 5) && !isJsonSourceFile(node); return factory2.updateSourceFile(node, visitLexicalEnvironment(node.statements, sourceElementVisitor, context, 0, alwaysStrict)); } function visitObjectLiteralExpression(node) { return factory2.updateObjectLiteralExpression(node, visitNodes2(node.properties, getObjectLiteralElementVisitor(node), isObjectLiteralElementLike)); } function getClassFacts(node) { let facts = 0; if (some(getProperties(node, true, true))) facts |= 1; const extendsClauseElement = getEffectiveBaseTypeNode(node); if (extendsClauseElement && skipOuterExpressions(extendsClauseElement.expression).kind !== 106) facts |= 64; if (classOrConstructorParameterIsDecorated(legacyDecorators, node)) facts |= 2; if (childIsDecorated(legacyDecorators, node)) facts |= 4; if (isExportOfNamespace(node)) facts |= 8; else if (isDefaultExternalModuleExport(node)) facts |= 32; else if (isNamedExternalModuleExport(node)) facts |= 16; return facts; } function hasTypeScriptClassSyntax(node) { return !!(node.transformFlags & 8192); } function isClassLikeDeclarationWithTypeScriptSyntax(node) { return hasDecorators(node) || some(node.typeParameters) || some(node.heritageClauses, hasTypeScriptClassSyntax) || some(node.members, hasTypeScriptClassSyntax); } function visitClassDeclaration(node) { const facts = getClassFacts(node); const promoteToIIFE = languageVersion < 2 && !!(facts & 7); if (!isClassLikeDeclarationWithTypeScriptSyntax(node) && !classOrConstructorParameterIsDecorated(legacyDecorators, node) && !isExportOfNamespace(node)) { return factory2.updateClassDeclaration(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), node.name, undefined, visitNodes2(node.heritageClauses, visitor, isHeritageClause), visitNodes2(node.members, getClassElementVisitor(node), isClassElement)); } if (promoteToIIFE) { context.startLexicalEnvironment(); } const moveModifiers = promoteToIIFE || facts & 8; let modifiers = moveModifiers ? visitNodes2(node.modifiers, modifierElidingVisitor, isModifierLike) : visitNodes2(node.modifiers, visitor, isModifierLike); if (facts & 2) { modifiers = injectClassTypeMetadata(modifiers, node); } const needsName = moveModifiers && !node.name || facts & 4 || facts & 1; const name = needsName ? node.name ?? factory2.getGeneratedNameForNode(node) : node.name; const classDeclaration = factory2.updateClassDeclaration(node, modifiers, name, undefined, visitNodes2(node.heritageClauses, visitor, isHeritageClause), transformClassMembers(node)); let emitFlags = getEmitFlags(node); if (facts & 1) { emitFlags |= 64; } setEmitFlags(classDeclaration, emitFlags); let statement; if (promoteToIIFE) { const statements = [classDeclaration]; const closingBraceLocation = createTokenRange(skipTrivia2(currentSourceFile.text, node.members.end), 20); const localName = factory2.getInternalName(node); const outer = factory2.createPartiallyEmittedExpression(localName); setTextRangeEnd(outer, closingBraceLocation.end); setEmitFlags(outer, 3072); const returnStatement = factory2.createReturnStatement(outer); setTextRangePos(returnStatement, closingBraceLocation.pos); setEmitFlags(returnStatement, 3072 | 768); statements.push(returnStatement); insertStatementsAfterStandardPrologue(statements, context.endLexicalEnvironment()); const iife = factory2.createImmediatelyInvokedArrowFunction(statements); setInternalEmitFlags(iife, 1); const varDecl = factory2.createVariableDeclaration(factory2.getLocalName(node, false, false), undefined, undefined, iife); setOriginalNode(varDecl, node); const varStatement = factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([varDecl], 1)); setOriginalNode(varStatement, node); setCommentRange(varStatement, node); setSourceMapRange(varStatement, moveRangePastDecorators(node)); startOnNewLine(varStatement); statement = varStatement; } else { statement = classDeclaration; } if (moveModifiers) { if (facts & 8) { return [ statement, createExportMemberAssignmentStatement(node) ]; } if (facts & 32) { return [ statement, factory2.createExportDefault(factory2.getLocalName(node, false, true)) ]; } if (facts & 16) { return [ statement, factory2.createExternalModuleExport(factory2.getDeclarationName(node, false, true)) ]; } } return statement; } function visitClassExpression(node) { let modifiers = visitNodes2(node.modifiers, modifierElidingVisitor, isModifierLike); if (classOrConstructorParameterIsDecorated(legacyDecorators, node)) { modifiers = injectClassTypeMetadata(modifiers, node); } return factory2.updateClassExpression(node, modifiers, node.name, undefined, visitNodes2(node.heritageClauses, visitor, isHeritageClause), transformClassMembers(node)); } function transformClassMembers(node) { const members = visitNodes2(node.members, getClassElementVisitor(node), isClassElement); let newMembers; const constructor = getFirstConstructorWithBody(node); const parametersWithPropertyAssignments = constructor && filter(constructor.parameters, (p) => isParameterPropertyDeclaration(p, constructor)); if (parametersWithPropertyAssignments) { for (const parameter of parametersWithPropertyAssignments) { if (!isIdentifier(parameter.name)) { continue; } const parameterProperty = factory2.createPropertyDeclaration(undefined, parameter.name, undefined, undefined, undefined); setOriginalNode(parameterProperty, parameter); newMembers = append(newMembers, parameterProperty); } } if (newMembers) { newMembers = addRange(newMembers, members); return setTextRange(factory2.createNodeArray(newMembers), node.members); } return members; } function injectClassTypeMetadata(modifiers, node) { const metadata = getTypeMetadata(node, node); if (some(metadata)) { const modifiersArray = []; addRange(modifiersArray, takeWhile(modifiers, isExportOrDefaultModifier)); addRange(modifiersArray, filter(modifiers, isDecorator)); addRange(modifiersArray, metadata); addRange(modifiersArray, filter(skipWhile(modifiers, isExportOrDefaultModifier), isModifier)); modifiers = setTextRange(factory2.createNodeArray(modifiersArray), modifiers); } return modifiers; } function injectClassElementTypeMetadata(modifiers, node, container) { if (isClassLike(container) && classElementOrClassElementParameterIsDecorated(legacyDecorators, node, container)) { const metadata = getTypeMetadata(node, container); if (some(metadata)) { const modifiersArray = []; addRange(modifiersArray, filter(modifiers, isDecorator)); addRange(modifiersArray, metadata); addRange(modifiersArray, filter(modifiers, isModifier)); modifiers = setTextRange(factory2.createNodeArray(modifiersArray), modifiers); } } return modifiers; } function getTypeMetadata(node, container) { if (!legacyDecorators) return; return USE_NEW_TYPE_METADATA_FORMAT ? getNewTypeMetadata(node, container) : getOldTypeMetadata(node, container); } function getOldTypeMetadata(node, container) { if (typeSerializer) { let decorators; if (shouldAddTypeMetadata(node)) { const typeMetadata = emitHelpers().createMetadataHelper("design:type", typeSerializer.serializeTypeOfNode({ currentLexicalScope, currentNameScope: container }, node, container)); decorators = append(decorators, factory2.createDecorator(typeMetadata)); } if (shouldAddParamTypesMetadata(node)) { const paramTypesMetadata = emitHelpers().createMetadataHelper("design:paramtypes", typeSerializer.serializeParameterTypesOfNode({ currentLexicalScope, currentNameScope: container }, node, container)); decorators = append(decorators, factory2.createDecorator(paramTypesMetadata)); } if (shouldAddReturnTypeMetadata(node)) { const returnTypeMetadata = emitHelpers().createMetadataHelper("design:returntype", typeSerializer.serializeReturnTypeOfNode({ currentLexicalScope, currentNameScope: container }, node)); decorators = append(decorators, factory2.createDecorator(returnTypeMetadata)); } return decorators; } } function getNewTypeMetadata(node, container) { if (typeSerializer) { let properties; if (shouldAddTypeMetadata(node)) { const typeProperty = factory2.createPropertyAssignment("type", factory2.createArrowFunction(undefined, undefined, [], undefined, factory2.createToken(39), typeSerializer.serializeTypeOfNode({ currentLexicalScope, currentNameScope: container }, node, container))); properties = append(properties, typeProperty); } if (shouldAddParamTypesMetadata(node)) { const paramTypeProperty = factory2.createPropertyAssignment("paramTypes", factory2.createArrowFunction(undefined, undefined, [], undefined, factory2.createToken(39), typeSerializer.serializeParameterTypesOfNode({ currentLexicalScope, currentNameScope: container }, node, container))); properties = append(properties, paramTypeProperty); } if (shouldAddReturnTypeMetadata(node)) { const returnTypeProperty = factory2.createPropertyAssignment("returnType", factory2.createArrowFunction(undefined, undefined, [], undefined, factory2.createToken(39), typeSerializer.serializeReturnTypeOfNode({ currentLexicalScope, currentNameScope: container }, node))); properties = append(properties, returnTypeProperty); } if (properties) { const typeInfoMetadata = emitHelpers().createMetadataHelper("design:typeinfo", factory2.createObjectLiteralExpression(properties, true)); return [factory2.createDecorator(typeInfoMetadata)]; } } } function shouldAddTypeMetadata(node) { const kind = node.kind; return kind === 175 || kind === 178 || kind === 179 || kind === 173; } function shouldAddReturnTypeMetadata(node) { return node.kind === 175; } function shouldAddParamTypesMetadata(node) { switch (node.kind) { case 264: case 232: return getFirstConstructorWithBody(node) !== undefined; case 175: case 178: case 179: return true; } return false; } function getExpressionForPropertyName(member, generateNameForComputedPropertyName) { const name = member.name; if (isPrivateIdentifier(name)) { return factory2.createIdentifier(""); } else if (isComputedPropertyName(name)) { return generateNameForComputedPropertyName && !isSimpleInlineableExpression(name.expression) ? factory2.getGeneratedNameForNode(name) : name.expression; } else if (isIdentifier(name)) { return factory2.createStringLiteral(idText(name)); } else { return factory2.cloneNode(name); } } function visitPropertyNameOfClassElement(member) { const name = member.name; if (legacyDecorators && isComputedPropertyName(name) && hasDecorators(member)) { const expression = visitNode(name.expression, visitor, isExpression); Debug.assert(expression); const innerExpression = skipPartiallyEmittedExpressions(expression); if (!isSimpleInlineableExpression(innerExpression)) { const generatedName = factory2.getGeneratedNameForNode(name); hoistVariableDeclaration(generatedName); return factory2.updateComputedPropertyName(name, factory2.createAssignment(generatedName, expression)); } } return Debug.checkDefined(visitNode(name, visitor, isPropertyName)); } function visitHeritageClause(node) { if (node.token === 119) { return; } return visitEachChild(node, visitor, context); } function visitExpressionWithTypeArguments(node) { return factory2.updateExpressionWithTypeArguments(node, Debug.checkDefined(visitNode(node.expression, visitor, isLeftHandSideExpression)), undefined); } function shouldEmitFunctionLikeDeclaration(node) { return !nodeIsMissing(node.body); } function visitPropertyDeclaration(node, parent2) { const isAmbient = node.flags & 33554432 || hasSyntacticModifier(node, 64); if (isAmbient && !(legacyDecorators && hasDecorators(node))) { return; } let modifiers = isClassLike(parent2) ? !isAmbient ? visitNodes2(node.modifiers, visitor, isModifierLike) : visitNodes2(node.modifiers, modifierElidingVisitor, isModifierLike) : visitNodes2(node.modifiers, decoratorElidingVisitor, isModifierLike); modifiers = injectClassElementTypeMetadata(modifiers, node, parent2); if (isAmbient) { return factory2.updatePropertyDeclaration(node, concatenate(modifiers, factory2.createModifiersFromModifierFlags(128)), Debug.checkDefined(visitNode(node.name, visitor, isPropertyName)), undefined, undefined, undefined); } return factory2.updatePropertyDeclaration(node, modifiers, visitPropertyNameOfClassElement(node), undefined, undefined, visitNode(node.initializer, visitor, isExpression)); } function visitConstructor(node) { if (!shouldEmitFunctionLikeDeclaration(node)) { return; } return factory2.updateConstructorDeclaration(node, undefined, visitParameterList(node.parameters, visitor, context), transformConstructorBody(node.body, node)); } function transformConstructorBodyWorker(statementsOut, statementsIn, statementOffset, superPath, superPathDepth, initializerStatements) { const superStatementIndex = superPath[superPathDepth]; const superStatement = statementsIn[superStatementIndex]; addRange(statementsOut, visitNodes2(statementsIn, visitor, isStatement, statementOffset, superStatementIndex - statementOffset)); if (isTryStatement(superStatement)) { const tryBlockStatements = []; transformConstructorBodyWorker(tryBlockStatements, superStatement.tryBlock.statements, 0, superPath, superPathDepth + 1, initializerStatements); const tryBlockStatementsArray = factory2.createNodeArray(tryBlockStatements); setTextRange(tryBlockStatementsArray, superStatement.tryBlock.statements); statementsOut.push(factory2.updateTryStatement(superStatement, factory2.updateBlock(superStatement.tryBlock, tryBlockStatements), visitNode(superStatement.catchClause, visitor, isCatchClause), visitNode(superStatement.finallyBlock, visitor, isBlock))); } else { addRange(statementsOut, visitNodes2(statementsIn, visitor, isStatement, superStatementIndex, 1)); addRange(statementsOut, initializerStatements); } addRange(statementsOut, visitNodes2(statementsIn, visitor, isStatement, superStatementIndex + 1)); } function transformConstructorBody(body, constructor) { const parametersWithPropertyAssignments = constructor && filter(constructor.parameters, (p) => isParameterPropertyDeclaration(p, constructor)); if (!some(parametersWithPropertyAssignments)) { return visitFunctionBody(body, visitor, context); } let statements = []; resumeLexicalEnvironment(); const prologueStatementCount = factory2.copyPrologue(body.statements, statements, false, visitor); const superPath = findSuperStatementIndexPath(body.statements, prologueStatementCount); const parameterPropertyAssignments = mapDefined(parametersWithPropertyAssignments, transformParameterWithPropertyAssignment); if (superPath.length) { transformConstructorBodyWorker(statements, body.statements, prologueStatementCount, superPath, 0, parameterPropertyAssignments); } else { addRange(statements, parameterPropertyAssignments); addRange(statements, visitNodes2(body.statements, visitor, isStatement, prologueStatementCount)); } statements = factory2.mergeLexicalEnvironment(statements, endLexicalEnvironment()); const block = factory2.createBlock(setTextRange(factory2.createNodeArray(statements), body.statements), true); setTextRange(block, body); setOriginalNode(block, body); return block; } function transformParameterWithPropertyAssignment(node) { const name = node.name; if (!isIdentifier(name)) { return; } const propertyName = setParent(setTextRange(factory2.cloneNode(name), name), name.parent); setEmitFlags(propertyName, 3072 | 96); const localName = setParent(setTextRange(factory2.cloneNode(name), name), name.parent); setEmitFlags(localName, 3072); return startOnNewLine(removeAllComments(setTextRange(setOriginalNode(factory2.createExpressionStatement(factory2.createAssignment(setTextRange(factory2.createPropertyAccessExpression(factory2.createThis(), propertyName), node.name), localName)), node), moveRangePos(node, -1)))); } function visitMethodDeclaration(node, parent2) { if (!(node.transformFlags & 1)) { return node; } if (!shouldEmitFunctionLikeDeclaration(node)) { return; } let modifiers = isClassLike(parent2) ? visitNodes2(node.modifiers, visitor, isModifierLike) : visitNodes2(node.modifiers, decoratorElidingVisitor, isModifierLike); modifiers = injectClassElementTypeMetadata(modifiers, node, parent2); return factory2.updateMethodDeclaration(node, modifiers, node.asteriskToken, visitPropertyNameOfClassElement(node), undefined, undefined, visitParameterList(node.parameters, visitor, context), undefined, visitFunctionBody(node.body, visitor, context)); } function shouldEmitAccessorDeclaration(node) { return !(nodeIsMissing(node.body) && hasSyntacticModifier(node, 64)); } function visitGetAccessor(node, parent2) { if (!(node.transformFlags & 1)) { return node; } if (!shouldEmitAccessorDeclaration(node)) { return; } let modifiers = isClassLike(parent2) ? visitNodes2(node.modifiers, visitor, isModifierLike) : visitNodes2(node.modifiers, decoratorElidingVisitor, isModifierLike); modifiers = injectClassElementTypeMetadata(modifiers, node, parent2); return factory2.updateGetAccessorDeclaration(node, modifiers, visitPropertyNameOfClassElement(node), visitParameterList(node.parameters, visitor, context), undefined, visitFunctionBody(node.body, visitor, context) || factory2.createBlock([])); } function visitSetAccessor(node, parent2) { if (!(node.transformFlags & 1)) { return node; } if (!shouldEmitAccessorDeclaration(node)) { return; } let modifiers = isClassLike(parent2) ? visitNodes2(node.modifiers, visitor, isModifierLike) : visitNodes2(node.modifiers, decoratorElidingVisitor, isModifierLike); modifiers = injectClassElementTypeMetadata(modifiers, node, parent2); return factory2.updateSetAccessorDeclaration(node, modifiers, visitPropertyNameOfClassElement(node), visitParameterList(node.parameters, visitor, context), visitFunctionBody(node.body, visitor, context) || factory2.createBlock([])); } function visitFunctionDeclaration(node) { if (!shouldEmitFunctionLikeDeclaration(node)) { return factory2.createNotEmittedStatement(node); } const updated = factory2.updateFunctionDeclaration(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), node.asteriskToken, node.name, undefined, visitParameterList(node.parameters, visitor, context), undefined, visitFunctionBody(node.body, visitor, context) || factory2.createBlock([])); if (isExportOfNamespace(node)) { const statements = [updated]; addExportMemberAssignment(statements, node); return statements; } return updated; } function visitFunctionExpression(node) { if (!shouldEmitFunctionLikeDeclaration(node)) { return factory2.createOmittedExpression(); } const updated = factory2.updateFunctionExpression(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), node.asteriskToken, node.name, undefined, visitParameterList(node.parameters, visitor, context), undefined, visitFunctionBody(node.body, visitor, context) || factory2.createBlock([])); return updated; } function visitArrowFunction(node) { const updated = factory2.updateArrowFunction(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), undefined, visitParameterList(node.parameters, visitor, context), undefined, node.equalsGreaterThanToken, visitFunctionBody(node.body, visitor, context)); return updated; } function visitParameter(node) { if (parameterIsThisKeyword(node)) { return; } const updated = factory2.updateParameterDeclaration(node, visitNodes2(node.modifiers, (node2) => isDecorator(node2) ? visitor(node2) : undefined, isModifierLike), node.dotDotDotToken, Debug.checkDefined(visitNode(node.name, visitor, isBindingName)), undefined, undefined, visitNode(node.initializer, visitor, isExpression)); if (updated !== node) { setCommentRange(updated, node); setTextRange(updated, moveRangePastModifiers(node)); setSourceMapRange(updated, moveRangePastModifiers(node)); setEmitFlags(updated.name, 64); } return updated; } function visitVariableStatement(node) { if (isExportOfNamespace(node)) { const variables = getInitializedVariables(node.declarationList); if (variables.length === 0) { return; } return setTextRange(factory2.createExpressionStatement(factory2.inlineExpressions(map(variables, transformInitializedVariable))), node); } else { return visitEachChild(node, visitor, context); } } function transformInitializedVariable(node) { const name = node.name; if (isBindingPattern(name)) { return flattenDestructuringAssignment(node, visitor, context, 0, false, createNamespaceExportExpression); } else { return setTextRange(factory2.createAssignment(getNamespaceMemberNameWithSourceMapsAndWithoutComments(name), Debug.checkDefined(visitNode(node.initializer, visitor, isExpression))), node); } } function visitVariableDeclaration(node) { const updated = factory2.updateVariableDeclaration(node, Debug.checkDefined(visitNode(node.name, visitor, isBindingName)), undefined, undefined, visitNode(node.initializer, visitor, isExpression)); if (node.type) { setTypeNode(updated.name, node.type); } return updated; } function visitParenthesizedExpression(node) { const innerExpression = skipOuterExpressions(node.expression, ~(38 | 16)); if (isAssertionExpression(innerExpression) || isSatisfiesExpression(innerExpression)) { const expression = visitNode(node.expression, visitor, isExpression); Debug.assert(expression); return factory2.createPartiallyEmittedExpression(expression, node); } return visitEachChild(node, visitor, context); } function visitAssertionExpression(node) { const expression = visitNode(node.expression, visitor, isExpression); Debug.assert(expression); return factory2.createPartiallyEmittedExpression(expression, node); } function visitNonNullExpression(node) { const expression = visitNode(node.expression, visitor, isLeftHandSideExpression); Debug.assert(expression); return factory2.createPartiallyEmittedExpression(expression, node); } function visitSatisfiesExpression(node) { const expression = visitNode(node.expression, visitor, isExpression); Debug.assert(expression); return factory2.createPartiallyEmittedExpression(expression, node); } function visitCallExpression(node) { return factory2.updateCallExpression(node, Debug.checkDefined(visitNode(node.expression, visitor, isExpression)), undefined, visitNodes2(node.arguments, visitor, isExpression)); } function visitNewExpression(node) { return factory2.updateNewExpression(node, Debug.checkDefined(visitNode(node.expression, visitor, isExpression)), undefined, visitNodes2(node.arguments, visitor, isExpression)); } function visitTaggedTemplateExpression(node) { return factory2.updateTaggedTemplateExpression(node, Debug.checkDefined(visitNode(node.tag, visitor, isExpression)), undefined, Debug.checkDefined(visitNode(node.template, visitor, isTemplateLiteral))); } function visitJsxSelfClosingElement(node) { return factory2.updateJsxSelfClosingElement(node, Debug.checkDefined(visitNode(node.tagName, visitor, isJsxTagNameExpression)), undefined, Debug.checkDefined(visitNode(node.attributes, visitor, isJsxAttributes))); } function visitJsxJsxOpeningElement(node) { return factory2.updateJsxOpeningElement(node, Debug.checkDefined(visitNode(node.tagName, visitor, isJsxTagNameExpression)), undefined, Debug.checkDefined(visitNode(node.attributes, visitor, isJsxAttributes))); } function shouldEmitEnumDeclaration(node) { return !isEnumConst(node) || shouldPreserveConstEnums(compilerOptions); } function visitEnumDeclaration(node) { if (!shouldEmitEnumDeclaration(node)) { return factory2.createNotEmittedStatement(node); } const statements = []; let emitFlags = 4; const varAdded = addVarForEnumOrModuleDeclaration(statements, node); if (varAdded) { if (moduleKind !== 4 || currentLexicalScope !== currentSourceFile) { emitFlags |= 1024; } } const parameterName = getNamespaceParameterName(node); const containerName = getNamespaceContainerName(node); const exportName = isExportOfNamespace(node) ? factory2.getExternalModuleOrNamespaceExportName(currentNamespaceContainerName, node, false, true) : factory2.getDeclarationName(node, false, true); let moduleArg = factory2.createLogicalOr(exportName, factory2.createAssignment(exportName, factory2.createObjectLiteralExpression())); if (isExportOfNamespace(node)) { const localName = factory2.getLocalName(node, false, true); moduleArg = factory2.createAssignment(localName, moduleArg); } const enumStatement = factory2.createExpressionStatement(factory2.createCallExpression(factory2.createFunctionExpression(undefined, undefined, undefined, undefined, [factory2.createParameterDeclaration(undefined, undefined, parameterName)], undefined, transformEnumBody(node, containerName)), undefined, [moduleArg])); setOriginalNode(enumStatement, node); if (varAdded) { setSyntheticLeadingComments(enumStatement, undefined); setSyntheticTrailingComments(enumStatement, undefined); } setTextRange(enumStatement, node); addEmitFlags(enumStatement, emitFlags); statements.push(enumStatement); return statements; } function transformEnumBody(node, localName) { const savedCurrentNamespaceLocalName = currentNamespaceContainerName; currentNamespaceContainerName = localName; const statements = []; startLexicalEnvironment(); const members = map(node.members, transformEnumMember); insertStatementsAfterStandardPrologue(statements, endLexicalEnvironment()); addRange(statements, members); currentNamespaceContainerName = savedCurrentNamespaceLocalName; return factory2.createBlock(setTextRange(factory2.createNodeArray(statements), node.members), true); } function transformEnumMember(member) { const name = getExpressionForPropertyName(member, false); const evaluated = resolver.getEnumMemberValue(member); const valueExpression = transformEnumMemberDeclarationValue(member, evaluated == null ? undefined : evaluated.value); const innerAssignment = factory2.createAssignment(factory2.createElementAccessExpression(currentNamespaceContainerName, name), valueExpression); const outerAssignment = typeof (evaluated == null ? undefined : evaluated.value) === "string" || (evaluated == null ? undefined : evaluated.isSyntacticallyString) ? innerAssignment : factory2.createAssignment(factory2.createElementAccessExpression(currentNamespaceContainerName, innerAssignment), name); return setTextRange(factory2.createExpressionStatement(setTextRange(outerAssignment, member)), member); } function transformEnumMemberDeclarationValue(member, constantValue) { if (constantValue !== undefined) { return typeof constantValue === "string" ? factory2.createStringLiteral(constantValue) : constantValue < 0 ? factory2.createPrefixUnaryExpression(41, factory2.createNumericLiteral(-constantValue)) : factory2.createNumericLiteral(constantValue); } else { enableSubstitutionForNonQualifiedEnumMembers(); if (member.initializer) { return Debug.checkDefined(visitNode(member.initializer, visitor, isExpression)); } else { return factory2.createVoidZero(); } } } function shouldEmitModuleDeclaration(nodeIn) { const node = getParseTreeNode(nodeIn, isModuleDeclaration); if (!node) { return true; } return isInstantiatedModule(node, shouldPreserveConstEnums(compilerOptions)); } function recordEmittedDeclarationInScope(node) { if (!currentScopeFirstDeclarationsOfName) { currentScopeFirstDeclarationsOfName = /* @__PURE__ */ new Map; } const name = declaredNameInScope(node); if (!currentScopeFirstDeclarationsOfName.has(name)) { currentScopeFirstDeclarationsOfName.set(name, node); } } function isFirstEmittedDeclarationInScope(node) { if (currentScopeFirstDeclarationsOfName) { const name = declaredNameInScope(node); return currentScopeFirstDeclarationsOfName.get(name) === node; } return true; } function declaredNameInScope(node) { Debug.assertNode(node.name, isIdentifier); return node.name.escapedText; } function addVarForEnumOrModuleDeclaration(statements, node) { const varDecl = factory2.createVariableDeclaration(factory2.getLocalName(node, false, true)); const varFlags = currentLexicalScope.kind === 308 ? 0 : 1; const statement = factory2.createVariableStatement(visitNodes2(node.modifiers, modifierVisitor, isModifier), factory2.createVariableDeclarationList([varDecl], varFlags)); setOriginalNode(varDecl, node); setSyntheticLeadingComments(varDecl, undefined); setSyntheticTrailingComments(varDecl, undefined); setOriginalNode(statement, node); recordEmittedDeclarationInScope(node); if (isFirstEmittedDeclarationInScope(node)) { if (node.kind === 267) { setSourceMapRange(statement.declarationList, node); } else { setSourceMapRange(statement, node); } setCommentRange(statement, node); addEmitFlags(statement, 2048); statements.push(statement); return true; } return false; } function visitModuleDeclaration(node) { if (!shouldEmitModuleDeclaration(node)) { return factory2.createNotEmittedStatement(node); } Debug.assertNode(node.name, isIdentifier, "A TypeScript namespace should have an Identifier name."); enableSubstitutionForNamespaceExports(); const statements = []; let emitFlags = 4; const varAdded = addVarForEnumOrModuleDeclaration(statements, node); if (varAdded) { if (moduleKind !== 4 || currentLexicalScope !== currentSourceFile) { emitFlags |= 1024; } } const parameterName = getNamespaceParameterName(node); const containerName = getNamespaceContainerName(node); const exportName = isExportOfNamespace(node) ? factory2.getExternalModuleOrNamespaceExportName(currentNamespaceContainerName, node, false, true) : factory2.getDeclarationName(node, false, true); let moduleArg = factory2.createLogicalOr(exportName, factory2.createAssignment(exportName, factory2.createObjectLiteralExpression())); if (isExportOfNamespace(node)) { const localName = factory2.getLocalName(node, false, true); moduleArg = factory2.createAssignment(localName, moduleArg); } const moduleStatement = factory2.createExpressionStatement(factory2.createCallExpression(factory2.createFunctionExpression(undefined, undefined, undefined, undefined, [factory2.createParameterDeclaration(undefined, undefined, parameterName)], undefined, transformModuleBody(node, containerName)), undefined, [moduleArg])); setOriginalNode(moduleStatement, node); if (varAdded) { setSyntheticLeadingComments(moduleStatement, undefined); setSyntheticTrailingComments(moduleStatement, undefined); } setTextRange(moduleStatement, node); addEmitFlags(moduleStatement, emitFlags); statements.push(moduleStatement); return statements; } function transformModuleBody(node, namespaceLocalName) { const savedCurrentNamespaceContainerName = currentNamespaceContainerName; const savedCurrentNamespace = currentNamespace; const savedCurrentScopeFirstDeclarationsOfName = currentScopeFirstDeclarationsOfName; currentNamespaceContainerName = namespaceLocalName; currentNamespace = node; currentScopeFirstDeclarationsOfName = undefined; const statements = []; startLexicalEnvironment(); let statementsLocation; let blockLocation; if (node.body) { if (node.body.kind === 269) { saveStateAndInvoke(node.body, (body) => addRange(statements, visitNodes2(body.statements, namespaceElementVisitor, isStatement))); statementsLocation = node.body.statements; blockLocation = node.body; } else { const result = visitModuleDeclaration(node.body); if (result) { if (isArray(result)) { addRange(statements, result); } else { statements.push(result); } } const moduleBlock = getInnerMostModuleDeclarationFromDottedModule(node).body; statementsLocation = moveRangePos(moduleBlock.statements, -1); } } insertStatementsAfterStandardPrologue(statements, endLexicalEnvironment()); currentNamespaceContainerName = savedCurrentNamespaceContainerName; currentNamespace = savedCurrentNamespace; currentScopeFirstDeclarationsOfName = savedCurrentScopeFirstDeclarationsOfName; const block = factory2.createBlock(setTextRange(factory2.createNodeArray(statements), statementsLocation), true); setTextRange(block, blockLocation); if (!node.body || node.body.kind !== 269) { setEmitFlags(block, getEmitFlags(block) | 3072); } return block; } function getInnerMostModuleDeclarationFromDottedModule(moduleDeclaration) { if (moduleDeclaration.body.kind === 268) { const recursiveInnerModule = getInnerMostModuleDeclarationFromDottedModule(moduleDeclaration.body); return recursiveInnerModule || moduleDeclaration.body; } } function visitImportDeclaration(node) { if (!node.importClause) { return node; } if (node.importClause.isTypeOnly) { return; } const importClause = visitNode(node.importClause, visitImportClause, isImportClause); return importClause ? factory2.updateImportDeclaration(node, undefined, importClause, node.moduleSpecifier, node.attributes) : undefined; } function visitImportClause(node) { Debug.assert(node.phaseModifier !== 156); const name = shouldEmitAliasDeclaration(node) ? node.name : undefined; const namedBindings = visitNode(node.namedBindings, visitNamedImportBindings, isNamedImportBindings); return name || namedBindings ? factory2.updateImportClause(node, node.phaseModifier, name, namedBindings) : undefined; } function visitNamedImportBindings(node) { if (node.kind === 275) { return shouldEmitAliasDeclaration(node) ? node : undefined; } else { const allowEmpty = compilerOptions.verbatimModuleSyntax; const elements = visitNodes2(node.elements, visitImportSpecifier, isImportSpecifier); return allowEmpty || some(elements) ? factory2.updateNamedImports(node, elements) : undefined; } } function visitImportSpecifier(node) { return !node.isTypeOnly && shouldEmitAliasDeclaration(node) ? node : undefined; } function visitExportAssignment(node) { return compilerOptions.verbatimModuleSyntax || resolver.isValueAliasDeclaration(node) ? visitEachChild(node, visitor, context) : undefined; } function visitExportDeclaration(node) { if (node.isTypeOnly) { return; } if (!node.exportClause || isNamespaceExport(node.exportClause)) { return factory2.updateExportDeclaration(node, node.modifiers, node.isTypeOnly, node.exportClause, node.moduleSpecifier, node.attributes); } const allowEmpty = !!compilerOptions.verbatimModuleSyntax; const exportClause = visitNode(node.exportClause, (bindings) => visitNamedExportBindings(bindings, allowEmpty), isNamedExportBindings); return exportClause ? factory2.updateExportDeclaration(node, undefined, node.isTypeOnly, exportClause, node.moduleSpecifier, node.attributes) : undefined; } function visitNamedExports(node, allowEmpty) { const elements = visitNodes2(node.elements, visitExportSpecifier, isExportSpecifier); return allowEmpty || some(elements) ? factory2.updateNamedExports(node, elements) : undefined; } function visitNamespaceExports(node) { return factory2.updateNamespaceExport(node, Debug.checkDefined(visitNode(node.name, visitor, isIdentifier))); } function visitNamedExportBindings(node, allowEmpty) { return isNamespaceExport(node) ? visitNamespaceExports(node) : visitNamedExports(node, allowEmpty); } function visitExportSpecifier(node) { return !node.isTypeOnly && (compilerOptions.verbatimModuleSyntax || resolver.isValueAliasDeclaration(node)) ? node : undefined; } function shouldEmitImportEqualsDeclaration(node) { return shouldEmitAliasDeclaration(node) || !isExternalModule(currentSourceFile) && resolver.isTopLevelValueImportEqualsWithEntityName(node); } function visitImportEqualsDeclaration(node) { if (node.isTypeOnly) { return; } if (isExternalModuleImportEqualsDeclaration(node)) { if (!shouldEmitAliasDeclaration(node)) { return; } return visitEachChild(node, visitor, context); } if (!shouldEmitImportEqualsDeclaration(node)) { return; } const moduleReference = createExpressionFromEntityName(factory2, node.moduleReference); setEmitFlags(moduleReference, 3072 | 4096); if (isNamedExternalModuleExport(node) || !isExportOfNamespace(node)) { return setOriginalNode(setTextRange(factory2.createVariableStatement(visitNodes2(node.modifiers, modifierVisitor, isModifier), factory2.createVariableDeclarationList([ setOriginalNode(factory2.createVariableDeclaration(node.name, undefined, undefined, moduleReference), node) ])), node), node); } else { return setOriginalNode(createNamespaceExport(node.name, moduleReference, node), node); } } function isExportOfNamespace(node) { return currentNamespace !== undefined && hasSyntacticModifier(node, 32); } function isExternalModuleExport(node) { return currentNamespace === undefined && hasSyntacticModifier(node, 32); } function isNamedExternalModuleExport(node) { return isExternalModuleExport(node) && !hasSyntacticModifier(node, 2048); } function isDefaultExternalModuleExport(node) { return isExternalModuleExport(node) && hasSyntacticModifier(node, 2048); } function createExportMemberAssignmentStatement(node) { const expression = factory2.createAssignment(factory2.getExternalModuleOrNamespaceExportName(currentNamespaceContainerName, node, false, true), factory2.getLocalName(node)); setSourceMapRange(expression, createRange(node.name ? node.name.pos : node.pos, node.end)); const statement = factory2.createExpressionStatement(expression); setSourceMapRange(statement, createRange(-1, node.end)); return statement; } function addExportMemberAssignment(statements, node) { statements.push(createExportMemberAssignmentStatement(node)); } function createNamespaceExport(exportName, exportValue, location) { return setTextRange(factory2.createExpressionStatement(factory2.createAssignment(factory2.getNamespaceMemberName(currentNamespaceContainerName, exportName, false, true), exportValue)), location); } function createNamespaceExportExpression(exportName, exportValue, location) { return setTextRange(factory2.createAssignment(getNamespaceMemberNameWithSourceMapsAndWithoutComments(exportName), exportValue), location); } function getNamespaceMemberNameWithSourceMapsAndWithoutComments(name) { return factory2.getNamespaceMemberName(currentNamespaceContainerName, name, false, true); } function getNamespaceParameterName(node) { const name = factory2.getGeneratedNameForNode(node); setSourceMapRange(name, node.name); return name; } function getNamespaceContainerName(node) { return factory2.getGeneratedNameForNode(node); } function enableSubstitutionForNonQualifiedEnumMembers() { if ((enabledSubstitutions & 8) === 0) { enabledSubstitutions |= 8; context.enableSubstitution(80); } } function enableSubstitutionForNamespaceExports() { if ((enabledSubstitutions & 2) === 0) { enabledSubstitutions |= 2; context.enableSubstitution(80); context.enableSubstitution(305); context.enableEmitNotification(268); } } function isTransformedModuleDeclaration(node) { return getOriginalNode(node).kind === 268; } function isTransformedEnumDeclaration(node) { return getOriginalNode(node).kind === 267; } function onEmitNode(hint, node, emitCallback) { const savedApplicableSubstitutions = applicableSubstitutions; const savedCurrentSourceFile = currentSourceFile; if (isSourceFile(node)) { currentSourceFile = node; } if (enabledSubstitutions & 2 && isTransformedModuleDeclaration(node)) { applicableSubstitutions |= 2; } if (enabledSubstitutions & 8 && isTransformedEnumDeclaration(node)) { applicableSubstitutions |= 8; } previousOnEmitNode(hint, node, emitCallback); applicableSubstitutions = savedApplicableSubstitutions; currentSourceFile = savedCurrentSourceFile; } function onSubstituteNode(hint, node) { node = previousOnSubstituteNode(hint, node); if (hint === 1) { return substituteExpression(node); } else if (isShorthandPropertyAssignment(node)) { return substituteShorthandPropertyAssignment(node); } return node; } function substituteShorthandPropertyAssignment(node) { if (enabledSubstitutions & 2) { const name = node.name; const exportedName = trySubstituteNamespaceExportedName(name); if (exportedName) { if (node.objectAssignmentInitializer) { const initializer = factory2.createAssignment(exportedName, node.objectAssignmentInitializer); return setTextRange(factory2.createPropertyAssignment(name, initializer), node); } return setTextRange(factory2.createPropertyAssignment(name, exportedName), node); } } return node; } function substituteExpression(node) { switch (node.kind) { case 80: return substituteExpressionIdentifier(node); case 212: return substitutePropertyAccessExpression(node); case 213: return substituteElementAccessExpression(node); } return node; } function substituteExpressionIdentifier(node) { return trySubstituteNamespaceExportedName(node) || node; } function trySubstituteNamespaceExportedName(node) { if (enabledSubstitutions & applicableSubstitutions && !isGeneratedIdentifier(node) && !isLocalName(node)) { const container = resolver.getReferencedExportContainer(node, false); if (container && container.kind !== 308) { const substitute = applicableSubstitutions & 2 && container.kind === 268 || applicableSubstitutions & 8 && container.kind === 267; if (substitute) { return setTextRange(factory2.createPropertyAccessExpression(factory2.getGeneratedNameForNode(container), node), node); } } } return; } function substitutePropertyAccessExpression(node) { return substituteConstantValue(node); } function substituteElementAccessExpression(node) { return substituteConstantValue(node); } function safeMultiLineComment(value) { return value.replace(/\*\//g, "*_/"); } function substituteConstantValue(node) { const constantValue = tryGetConstEnumValue(node); if (constantValue !== undefined) { setConstantValue(node, constantValue); const substitute = typeof constantValue === "string" ? factory2.createStringLiteral(constantValue) : constantValue < 0 ? factory2.createPrefixUnaryExpression(41, factory2.createNumericLiteral(-constantValue)) : factory2.createNumericLiteral(constantValue); if (!compilerOptions.removeComments) { const originalNode = getOriginalNode(node, isAccessExpression); addSyntheticTrailingComment(substitute, 3, ` ${safeMultiLineComment(getTextOfNode(originalNode))} `); } return substitute; } return node; } function tryGetConstEnumValue(node) { if (getIsolatedModules(compilerOptions)) { return; } return isPropertyAccessExpression(node) || isElementAccessExpression(node) ? resolver.getConstantValue(node) : undefined; } function shouldEmitAliasDeclaration(node) { return compilerOptions.verbatimModuleSyntax || isInJSFile(node) || resolver.isReferencedAliasDeclaration(node); } } function transformClassFields(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers, hoistVariableDeclaration, endLexicalEnvironment, startLexicalEnvironment, resumeLexicalEnvironment, addBlockScopedVariable } = context; const resolver = context.getEmitResolver(); const compilerOptions = context.getCompilerOptions(); const languageVersion = getEmitScriptTarget(compilerOptions); const useDefineForClassFields = getUseDefineForClassFields(compilerOptions); const legacyDecorators = !!compilerOptions.experimentalDecorators; const shouldTransformInitializersUsingSet = !useDefineForClassFields; const shouldTransformInitializersUsingDefine = useDefineForClassFields && languageVersion < 9; const shouldTransformInitializers = shouldTransformInitializersUsingSet || shouldTransformInitializersUsingDefine; const shouldTransformPrivateElementsOrClassStaticBlocks = languageVersion < 9; const shouldTransformAutoAccessors = languageVersion < 99 ? -1 : !useDefineForClassFields ? 3 : 0; const shouldTransformThisInStaticInitializers = languageVersion < 9; const shouldTransformSuperInStaticInitializers = shouldTransformThisInStaticInitializers && languageVersion >= 2; const shouldTransformAnything = shouldTransformInitializers || shouldTransformPrivateElementsOrClassStaticBlocks || shouldTransformAutoAccessors === -1; const previousOnSubstituteNode = context.onSubstituteNode; context.onSubstituteNode = onSubstituteNode; const previousOnEmitNode = context.onEmitNode; context.onEmitNode = onEmitNode; let shouldTransformPrivateStaticElementsInFile = false; let enabledSubstitutions = 0; let classAliases; let pendingExpressions; let pendingStatements; let lexicalEnvironment; const lexicalEnvironmentMap = /* @__PURE__ */ new Map; const noSubstitution = /* @__PURE__ */ new Set; let currentClassContainer; let currentClassElement; let shouldSubstituteThisWithClassThis = false; let previousShouldSubstituteThisWithClassThis = false; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } lexicalEnvironment = undefined; shouldTransformPrivateStaticElementsInFile = !!(getInternalEmitFlags(node) & 32); if (!shouldTransformAnything && !shouldTransformPrivateStaticElementsInFile) { return node; } const visited = visitEachChild(node, visitor, context); addEmitHelpers(visited, context.readEmitHelpers()); return visited; } function modifierVisitor(node) { switch (node.kind) { case 129: return shouldTransformAutoAccessorsInCurrentClass() ? undefined : node; default: return tryCast(node, isModifier); } } function visitor(node) { if (!(node.transformFlags & 16777216) && !(node.transformFlags & 134234112)) { return node; } switch (node.kind) { case 264: return visitClassDeclaration(node); case 232: return visitClassExpression(node); case 176: case 173: return Debug.fail("Use `classElementVisitor` instead."); case 304: return visitPropertyAssignment(node); case 244: return visitVariableStatement(node); case 261: return visitVariableDeclaration(node); case 170: return visitParameterDeclaration(node); case 209: return visitBindingElement(node); case 278: return visitExportAssignment(node); case 81: return visitPrivateIdentifier(node); case 212: return visitPropertyAccessExpression(node); case 213: return visitElementAccessExpression(node); case 225: case 226: return visitPreOrPostfixUnaryExpression(node, false); case 227: return visitBinaryExpression(node, false); case 218: return visitParenthesizedExpression(node, false); case 214: return visitCallExpression(node); case 245: return visitExpressionStatement(node); case 216: return visitTaggedTemplateExpression(node); case 249: return visitForStatement(node); case 110: return visitThisExpression(node); case 263: case 219: return setCurrentClassElementAnd(undefined, fallbackVisitor, node); case 177: case 175: case 178: case 179: { return setCurrentClassElementAnd(node, fallbackVisitor, node); } default: return fallbackVisitor(node); } } function fallbackVisitor(node) { return visitEachChild(node, visitor, context); } function discardedValueVisitor(node) { switch (node.kind) { case 225: case 226: return visitPreOrPostfixUnaryExpression(node, true); case 227: return visitBinaryExpression(node, true); case 357: return visitCommaListExpression(node, true); case 218: return visitParenthesizedExpression(node, true); default: return visitor(node); } } function heritageClauseVisitor(node) { switch (node.kind) { case 299: return visitEachChild(node, heritageClauseVisitor, context); case 234: return visitExpressionWithTypeArgumentsInHeritageClause(node); default: return visitor(node); } } function assignmentTargetVisitor(node) { switch (node.kind) { case 211: case 210: return visitAssignmentPattern(node); default: return visitor(node); } } function classElementVisitor(node) { switch (node.kind) { case 177: return setCurrentClassElementAnd(node, visitConstructorDeclaration, node); case 178: case 179: case 175: return setCurrentClassElementAnd(node, visitMethodOrAccessorDeclaration, node); case 173: return setCurrentClassElementAnd(node, visitPropertyDeclaration, node); case 176: return setCurrentClassElementAnd(node, visitClassStaticBlockDeclaration, node); case 168: return visitComputedPropertyName(node); case 241: return node; default: return isModifierLike(node) ? modifierVisitor(node) : visitor(node); } } function propertyNameVisitor(node) { switch (node.kind) { case 168: return visitComputedPropertyName(node); default: return visitor(node); } } function accessorFieldResultVisitor(node) { switch (node.kind) { case 173: return transformFieldInitializer(node); case 178: case 179: return classElementVisitor(node); default: Debug.assertMissingNode(node, "Expected node to either be a PropertyDeclaration, GetAccessorDeclaration, or SetAccessorDeclaration"); break; } } function visitPrivateIdentifier(node) { if (!shouldTransformPrivateElementsOrClassStaticBlocks) { return node; } if (isStatement(node.parent)) { return node; } return setOriginalNode(factory2.createIdentifier(""), node); } function transformPrivateIdentifierInInExpression(node) { const info = accessPrivateIdentifier2(node.left); if (info) { const receiver = visitNode(node.right, visitor, isExpression); return setOriginalNode(emitHelpers().createClassPrivateFieldInHelper(info.brandCheckIdentifier, receiver), node); } return visitEachChild(node, visitor, context); } function visitPropertyAssignment(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node); } return visitEachChild(node, visitor, context); } function visitVariableStatement(node) { const savedPendingStatements = pendingStatements; pendingStatements = []; const visitedNode = visitEachChild(node, visitor, context); const statement = some(pendingStatements) ? [visitedNode, ...pendingStatements] : visitedNode; pendingStatements = savedPendingStatements; return statement; } function visitVariableDeclaration(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node); } return visitEachChild(node, visitor, context); } function visitParameterDeclaration(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node); } return visitEachChild(node, visitor, context); } function visitBindingElement(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node); } return visitEachChild(node, visitor, context); } function visitExportAssignment(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node, true, node.isExportEquals ? "" : "default"); } return visitEachChild(node, visitor, context); } function injectPendingExpressions(expression) { if (some(pendingExpressions)) { if (isParenthesizedExpression(expression)) { pendingExpressions.push(expression.expression); expression = factory2.updateParenthesizedExpression(expression, factory2.inlineExpressions(pendingExpressions)); } else { pendingExpressions.push(expression); expression = factory2.inlineExpressions(pendingExpressions); } pendingExpressions = undefined; } return expression; } function visitComputedPropertyName(node) { const expression = visitNode(node.expression, visitor, isExpression); return factory2.updateComputedPropertyName(node, injectPendingExpressions(expression)); } function visitConstructorDeclaration(node) { if (currentClassContainer) { return transformConstructor(node, currentClassContainer); } return fallbackVisitor(node); } function shouldTransformClassElementToWeakMap(node) { if (shouldTransformPrivateElementsOrClassStaticBlocks) return true; if (hasStaticModifier(node) && getInternalEmitFlags(node) & 32) return true; return false; } function visitMethodOrAccessorDeclaration(node) { Debug.assert(!hasDecorators(node)); if (!isPrivateIdentifierClassElementDeclaration(node) || !shouldTransformClassElementToWeakMap(node)) { return visitEachChild(node, classElementVisitor, context); } const info = accessPrivateIdentifier2(node.name); Debug.assert(info, "Undeclared private name for property declaration."); if (!info.isValid) { return node; } const functionName = getHoistedFunctionName(node); if (functionName) { getPendingExpressions().push(factory2.createAssignment(functionName, factory2.createFunctionExpression(filter(node.modifiers, (m) => isModifier(m) && !isStaticModifier(m) && !isAccessorModifier(m)), node.asteriskToken, functionName, undefined, visitParameterList(node.parameters, visitor, context), undefined, visitFunctionBody(node.body, visitor, context)))); } return; } function setCurrentClassElementAnd(classElement, visitor2, arg) { if (classElement !== currentClassElement) { const savedCurrentClassElement = currentClassElement; currentClassElement = classElement; const result = visitor2(arg); currentClassElement = savedCurrentClassElement; return result; } return visitor2(arg); } function getHoistedFunctionName(node) { Debug.assert(isPrivateIdentifier(node.name)); const info = accessPrivateIdentifier2(node.name); Debug.assert(info, "Undeclared private name for property declaration."); if (info.kind === "m") { return info.methodName; } if (info.kind === "a") { if (isGetAccessor(node)) { return info.getterName; } if (isSetAccessor(node)) { return info.setterName; } } } function tryGetClassThis() { const lex = getClassLexicalEnvironment(); return lex.classThis ?? lex.classConstructor ?? (currentClassContainer == null ? undefined : currentClassContainer.name); } function transformAutoAccessor(node) { const commentRange = getCommentRange(node); const sourceMapRange = getSourceMapRange(node); const name = node.name; let getterName = name; let setterName = name; if (isComputedPropertyName(name) && !isSimpleInlineableExpression(name.expression)) { const cacheAssignment = findComputedPropertyNameCacheAssignment(name); if (cacheAssignment) { getterName = factory2.updateComputedPropertyName(name, visitNode(name.expression, visitor, isExpression)); setterName = factory2.updateComputedPropertyName(name, cacheAssignment.left); } else { const temp = factory2.createTempVariable(hoistVariableDeclaration); setSourceMapRange(temp, name.expression); const expression = visitNode(name.expression, visitor, isExpression); const assignment = factory2.createAssignment(temp, expression); setSourceMapRange(assignment, name.expression); getterName = factory2.updateComputedPropertyName(name, assignment); setterName = factory2.updateComputedPropertyName(name, temp); } } const modifiers = visitNodes2(node.modifiers, modifierVisitor, isModifier); const backingField = createAccessorPropertyBackingField(factory2, node, modifiers, node.initializer); setOriginalNode(backingField, node); setEmitFlags(backingField, 3072); setSourceMapRange(backingField, sourceMapRange); const receiver = isStatic(node) ? tryGetClassThis() ?? factory2.createThis() : factory2.createThis(); const getter = createAccessorPropertyGetRedirector(factory2, node, modifiers, getterName, receiver); setOriginalNode(getter, node); setCommentRange(getter, commentRange); setSourceMapRange(getter, sourceMapRange); const setterModifiers = factory2.createModifiersFromModifierFlags(modifiersToFlags(modifiers)); const setter = createAccessorPropertySetRedirector(factory2, node, setterModifiers, setterName, receiver); setOriginalNode(setter, node); setEmitFlags(setter, 3072); setSourceMapRange(setter, sourceMapRange); return visitArray([backingField, getter, setter], accessorFieldResultVisitor, isClassElement); } function transformPrivateFieldInitializer(node) { if (shouldTransformClassElementToWeakMap(node)) { const info = accessPrivateIdentifier2(node.name); Debug.assert(info, "Undeclared private name for property declaration."); if (!info.isValid) { return node; } if (info.isStatic && !shouldTransformPrivateElementsOrClassStaticBlocks) { const statement = transformPropertyOrClassStaticBlock(node, factory2.createThis()); if (statement) { return factory2.createClassStaticBlockDeclaration(factory2.createBlock([statement], true)); } } return; } if (shouldTransformInitializersUsingSet && !isStatic(node) && (lexicalEnvironment == null ? undefined : lexicalEnvironment.data) && lexicalEnvironment.data.facts & 16) { return factory2.updatePropertyDeclaration(node, visitNodes2(node.modifiers, visitor, isModifierLike), node.name, undefined, undefined, undefined); } if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node); } return factory2.updatePropertyDeclaration(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), visitNode(node.name, propertyNameVisitor, isPropertyName), undefined, undefined, visitNode(node.initializer, visitor, isExpression)); } function transformPublicFieldInitializer(node) { if (shouldTransformInitializers && !isAutoAccessorPropertyDeclaration(node)) { const expr = getPropertyNameExpressionIfNeeded(node.name, !!node.initializer || useDefineForClassFields); if (expr) { getPendingExpressions().push(...flattenCommaList(expr)); } if (isStatic(node) && !shouldTransformPrivateElementsOrClassStaticBlocks) { const initializerStatement = transformPropertyOrClassStaticBlock(node, factory2.createThis()); if (initializerStatement) { const staticBlock = factory2.createClassStaticBlockDeclaration(factory2.createBlock([initializerStatement])); setOriginalNode(staticBlock, node); setCommentRange(staticBlock, node); setCommentRange(initializerStatement, { pos: -1, end: -1 }); setSyntheticLeadingComments(initializerStatement, undefined); setSyntheticTrailingComments(initializerStatement, undefined); return staticBlock; } } return; } return factory2.updatePropertyDeclaration(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), visitNode(node.name, propertyNameVisitor, isPropertyName), undefined, undefined, visitNode(node.initializer, visitor, isExpression)); } function transformFieldInitializer(node) { Debug.assert(!hasDecorators(node), "Decorators should already have been transformed and elided."); return isPrivateIdentifierClassElementDeclaration(node) ? transformPrivateFieldInitializer(node) : transformPublicFieldInitializer(node); } function shouldTransformAutoAccessorsInCurrentClass() { return shouldTransformAutoAccessors === -1 || shouldTransformAutoAccessors === 3 && !!(lexicalEnvironment == null ? undefined : lexicalEnvironment.data) && !!(lexicalEnvironment.data.facts & 16); } function visitPropertyDeclaration(node) { if (isAutoAccessorPropertyDeclaration(node) && (shouldTransformAutoAccessorsInCurrentClass() || hasStaticModifier(node) && getInternalEmitFlags(node) & 32)) { return transformAutoAccessor(node); } return transformFieldInitializer(node); } function shouldForceDynamicThis() { return !!currentClassElement && hasStaticModifier(currentClassElement) && isAccessor(currentClassElement) && isAutoAccessorPropertyDeclaration(getOriginalNode(currentClassElement)); } function ensureDynamicThisIfNeeded(node) { if (shouldForceDynamicThis()) { const innerExpression = skipOuterExpressions(node); if (innerExpression.kind === 110) { noSubstitution.add(innerExpression); } } } function createPrivateIdentifierAccess(info, receiver) { receiver = visitNode(receiver, visitor, isExpression); ensureDynamicThisIfNeeded(receiver); return createPrivateIdentifierAccessHelper(info, receiver); } function createPrivateIdentifierAccessHelper(info, receiver) { setCommentRange(receiver, moveRangePos(receiver, -1)); switch (info.kind) { case "a": return emitHelpers().createClassPrivateFieldGetHelper(receiver, info.brandCheckIdentifier, info.kind, info.getterName); case "m": return emitHelpers().createClassPrivateFieldGetHelper(receiver, info.brandCheckIdentifier, info.kind, info.methodName); case "f": return emitHelpers().createClassPrivateFieldGetHelper(receiver, info.brandCheckIdentifier, info.kind, info.isStatic ? info.variableName : undefined); case "untransformed": return Debug.fail("Access helpers should not be created for untransformed private elements"); default: Debug.assertNever(info, "Unknown private element type"); } } function visitPropertyAccessExpression(node) { if (isPrivateIdentifier(node.name)) { const privateIdentifierInfo = accessPrivateIdentifier2(node.name); if (privateIdentifierInfo) { return setTextRange(setOriginalNode(createPrivateIdentifierAccess(privateIdentifierInfo, node.expression), node), node); } } if (shouldTransformSuperInStaticInitializers && currentClassElement && isSuperProperty(node) && isIdentifier(node.name) && isStaticPropertyDeclarationOrClassStaticBlock(currentClassElement) && (lexicalEnvironment == null ? undefined : lexicalEnvironment.data)) { const { classConstructor, superClassReference, facts } = lexicalEnvironment.data; if (facts & 1) { return visitInvalidSuperProperty(node); } if (classConstructor && superClassReference) { const superProperty = factory2.createReflectGetCall(superClassReference, factory2.createStringLiteralFromNode(node.name), classConstructor); setOriginalNode(superProperty, node.expression); setTextRange(superProperty, node.expression); return superProperty; } } return visitEachChild(node, visitor, context); } function visitElementAccessExpression(node) { if (shouldTransformSuperInStaticInitializers && currentClassElement && isSuperProperty(node) && isStaticPropertyDeclarationOrClassStaticBlock(currentClassElement) && (lexicalEnvironment == null ? undefined : lexicalEnvironment.data)) { const { classConstructor, superClassReference, facts } = lexicalEnvironment.data; if (facts & 1) { return visitInvalidSuperProperty(node); } if (classConstructor && superClassReference) { const superProperty = factory2.createReflectGetCall(superClassReference, visitNode(node.argumentExpression, visitor, isExpression), classConstructor); setOriginalNode(superProperty, node.expression); setTextRange(superProperty, node.expression); return superProperty; } } return visitEachChild(node, visitor, context); } function visitPreOrPostfixUnaryExpression(node, discarded) { if (node.operator === 46 || node.operator === 47) { const operand = skipParentheses(node.operand); if (isPrivateIdentifierPropertyAccessExpression(operand)) { let info; if (info = accessPrivateIdentifier2(operand.name)) { const receiver = visitNode(operand.expression, visitor, isExpression); ensureDynamicThisIfNeeded(receiver); const { readExpression, initializeExpression } = createCopiableReceiverExpr(receiver); let expression = createPrivateIdentifierAccess(info, readExpression); const temp = isPrefixUnaryExpression(node) || discarded ? undefined : factory2.createTempVariable(hoistVariableDeclaration); expression = expandPreOrPostfixIncrementOrDecrementExpression(factory2, node, expression, hoistVariableDeclaration, temp); expression = createPrivateIdentifierAssignment(info, initializeExpression || readExpression, expression, 64); setOriginalNode(expression, node); setTextRange(expression, node); if (temp) { expression = factory2.createComma(expression, temp); setTextRange(expression, node); } return expression; } } else if (shouldTransformSuperInStaticInitializers && currentClassElement && isSuperProperty(operand) && isStaticPropertyDeclarationOrClassStaticBlock(currentClassElement) && (lexicalEnvironment == null ? undefined : lexicalEnvironment.data)) { const { classConstructor, superClassReference, facts } = lexicalEnvironment.data; if (facts & 1) { const expression = visitInvalidSuperProperty(operand); return isPrefixUnaryExpression(node) ? factory2.updatePrefixUnaryExpression(node, expression) : factory2.updatePostfixUnaryExpression(node, expression); } if (classConstructor && superClassReference) { let setterName; let getterName; if (isPropertyAccessExpression(operand)) { if (isIdentifier(operand.name)) { getterName = setterName = factory2.createStringLiteralFromNode(operand.name); } } else { if (isSimpleInlineableExpression(operand.argumentExpression)) { getterName = setterName = operand.argumentExpression; } else { getterName = factory2.createTempVariable(hoistVariableDeclaration); setterName = factory2.createAssignment(getterName, visitNode(operand.argumentExpression, visitor, isExpression)); } } if (setterName && getterName) { let expression = factory2.createReflectGetCall(superClassReference, getterName, classConstructor); setTextRange(expression, operand); const temp = discarded ? undefined : factory2.createTempVariable(hoistVariableDeclaration); expression = expandPreOrPostfixIncrementOrDecrementExpression(factory2, node, expression, hoistVariableDeclaration, temp); expression = factory2.createReflectSetCall(superClassReference, setterName, expression, classConstructor); setOriginalNode(expression, node); setTextRange(expression, node); if (temp) { expression = factory2.createComma(expression, temp); setTextRange(expression, node); } return expression; } } } } return visitEachChild(node, visitor, context); } function visitForStatement(node) { return factory2.updateForStatement(node, visitNode(node.initializer, discardedValueVisitor, isForInitializer), visitNode(node.condition, visitor, isExpression), visitNode(node.incrementor, discardedValueVisitor, isExpression), visitIterationBody(node.statement, visitor, context)); } function visitExpressionStatement(node) { return factory2.updateExpressionStatement(node, visitNode(node.expression, discardedValueVisitor, isExpression)); } function createCopiableReceiverExpr(receiver) { const clone2 = nodeIsSynthesized(receiver) ? receiver : factory2.cloneNode(receiver); if (receiver.kind === 110 && noSubstitution.has(receiver)) { noSubstitution.add(clone2); } if (isSimpleInlineableExpression(receiver)) { return { readExpression: clone2, initializeExpression: undefined }; } const readExpression = factory2.createTempVariable(hoistVariableDeclaration); const initializeExpression = factory2.createAssignment(readExpression, clone2); return { readExpression, initializeExpression }; } function visitCallExpression(node) { var _a; if (isPrivateIdentifierPropertyAccessExpression(node.expression) && accessPrivateIdentifier2(node.expression.name)) { const { thisArg, target } = factory2.createCallBinding(node.expression, hoistVariableDeclaration, languageVersion); if (isCallChain(node)) { return factory2.updateCallChain(node, factory2.createPropertyAccessChain(visitNode(target, visitor, isExpression), node.questionDotToken, "call"), undefined, undefined, [visitNode(thisArg, visitor, isExpression), ...visitNodes2(node.arguments, visitor, isExpression)]); } return factory2.updateCallExpression(node, factory2.createPropertyAccessExpression(visitNode(target, visitor, isExpression), "call"), undefined, [visitNode(thisArg, visitor, isExpression), ...visitNodes2(node.arguments, visitor, isExpression)]); } if (shouldTransformSuperInStaticInitializers && currentClassElement && isSuperProperty(node.expression) && isStaticPropertyDeclarationOrClassStaticBlock(currentClassElement) && ((_a = lexicalEnvironment == null ? undefined : lexicalEnvironment.data) == null ? undefined : _a.classConstructor)) { const invocation = factory2.createFunctionCallCall(visitNode(node.expression, visitor, isExpression), lexicalEnvironment.data.classConstructor, visitNodes2(node.arguments, visitor, isExpression)); setOriginalNode(invocation, node); setTextRange(invocation, node); return invocation; } return visitEachChild(node, visitor, context); } function visitTaggedTemplateExpression(node) { var _a; if (isPrivateIdentifierPropertyAccessExpression(node.tag) && accessPrivateIdentifier2(node.tag.name)) { const { thisArg, target } = factory2.createCallBinding(node.tag, hoistVariableDeclaration, languageVersion); return factory2.updateTaggedTemplateExpression(node, factory2.createCallExpression(factory2.createPropertyAccessExpression(visitNode(target, visitor, isExpression), "bind"), undefined, [visitNode(thisArg, visitor, isExpression)]), undefined, visitNode(node.template, visitor, isTemplateLiteral)); } if (shouldTransformSuperInStaticInitializers && currentClassElement && isSuperProperty(node.tag) && isStaticPropertyDeclarationOrClassStaticBlock(currentClassElement) && ((_a = lexicalEnvironment == null ? undefined : lexicalEnvironment.data) == null ? undefined : _a.classConstructor)) { const invocation = factory2.createFunctionBindCall(visitNode(node.tag, visitor, isExpression), lexicalEnvironment.data.classConstructor, []); setOriginalNode(invocation, node); setTextRange(invocation, node); return factory2.updateTaggedTemplateExpression(node, invocation, undefined, visitNode(node.template, visitor, isTemplateLiteral)); } return visitEachChild(node, visitor, context); } function transformClassStaticBlockDeclaration(node) { if (lexicalEnvironment) { lexicalEnvironmentMap.set(getOriginalNode(node), lexicalEnvironment); } if (shouldTransformPrivateElementsOrClassStaticBlocks) { if (isClassThisAssignmentBlock(node)) { const result = visitNode(node.body.statements[0].expression, visitor, isExpression); if (isAssignmentExpression(result, true) && result.left === result.right) { return; } return result; } if (isClassNamedEvaluationHelperBlock(node)) { return visitNode(node.body.statements[0].expression, visitor, isExpression); } startLexicalEnvironment(); let statements = setCurrentClassElementAnd(node, (statements2) => visitNodes2(statements2, visitor, isStatement), node.body.statements); statements = factory2.mergeLexicalEnvironment(statements, endLexicalEnvironment()); const iife = factory2.createImmediatelyInvokedArrowFunction(statements); setOriginalNode(skipParentheses(iife.expression), node); addEmitFlags(skipParentheses(iife.expression), 4); setOriginalNode(iife, node); setTextRange(iife, node); return iife; } } function isAnonymousClassNeedingAssignedName(node) { if (isClassExpression(node) && !node.name) { const staticPropertiesOrClassStaticBlocks = getStaticPropertiesAndClassStaticBlock(node); if (some(staticPropertiesOrClassStaticBlocks, isClassNamedEvaluationHelperBlock)) { return false; } const hasTransformableStatics = (shouldTransformPrivateElementsOrClassStaticBlocks || !!(getInternalEmitFlags(node) && 32)) && some(staticPropertiesOrClassStaticBlocks, (node2) => isClassStaticBlockDeclaration(node2) || isPrivateIdentifierClassElementDeclaration(node2) || shouldTransformInitializers && isInitializedProperty(node2)); return hasTransformableStatics; } return false; } function visitBinaryExpression(node, discarded) { if (isDestructuringAssignment(node)) { const savedPendingExpressions = pendingExpressions; pendingExpressions = undefined; node = factory2.updateBinaryExpression(node, visitNode(node.left, assignmentTargetVisitor, isExpression), node.operatorToken, visitNode(node.right, visitor, isExpression)); const expr = some(pendingExpressions) ? factory2.inlineExpressions(compact([...pendingExpressions, node])) : node; pendingExpressions = savedPendingExpressions; return expr; } if (isAssignmentExpression(node)) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node); Debug.assertNode(node, isAssignmentExpression); } const left = skipOuterExpressions(node.left, 8 | 1); if (isPrivateIdentifierPropertyAccessExpression(left)) { const info = accessPrivateIdentifier2(left.name); if (info) { return setTextRange(setOriginalNode(createPrivateIdentifierAssignment(info, left.expression, node.right, node.operatorToken.kind), node), node); } } else if (shouldTransformSuperInStaticInitializers && currentClassElement && isSuperProperty(node.left) && isStaticPropertyDeclarationOrClassStaticBlock(currentClassElement) && (lexicalEnvironment == null ? undefined : lexicalEnvironment.data)) { const { classConstructor, superClassReference, facts } = lexicalEnvironment.data; if (facts & 1) { return factory2.updateBinaryExpression(node, visitInvalidSuperProperty(node.left), node.operatorToken, visitNode(node.right, visitor, isExpression)); } if (classConstructor && superClassReference) { let setterName = isElementAccessExpression(node.left) ? visitNode(node.left.argumentExpression, visitor, isExpression) : isIdentifier(node.left.name) ? factory2.createStringLiteralFromNode(node.left.name) : undefined; if (setterName) { let expression = visitNode(node.right, visitor, isExpression); if (isCompoundAssignment(node.operatorToken.kind)) { let getterName = setterName; if (!isSimpleInlineableExpression(setterName)) { getterName = factory2.createTempVariable(hoistVariableDeclaration); setterName = factory2.createAssignment(getterName, setterName); } const superPropertyGet = factory2.createReflectGetCall(superClassReference, getterName, classConstructor); setOriginalNode(superPropertyGet, node.left); setTextRange(superPropertyGet, node.left); expression = factory2.createBinaryExpression(superPropertyGet, getNonAssignmentOperatorForCompoundAssignment(node.operatorToken.kind), expression); setTextRange(expression, node); } const temp = discarded ? undefined : factory2.createTempVariable(hoistVariableDeclaration); if (temp) { expression = factory2.createAssignment(temp, expression); setTextRange(temp, node); } expression = factory2.createReflectSetCall(superClassReference, setterName, expression, classConstructor); setOriginalNode(expression, node); setTextRange(expression, node); if (temp) { expression = factory2.createComma(expression, temp); setTextRange(expression, node); } return expression; } } } } if (isPrivateIdentifierInExpression(node)) { return transformPrivateIdentifierInInExpression(node); } return visitEachChild(node, visitor, context); } function visitCommaListExpression(node, discarded) { const elements = discarded ? visitCommaListElements(node.elements, discardedValueVisitor) : visitCommaListElements(node.elements, visitor, discardedValueVisitor); return factory2.updateCommaListExpression(node, elements); } function visitParenthesizedExpression(node, discarded) { const visitorFunc = discarded ? discardedValueVisitor : visitor; const expression = visitNode(node.expression, visitorFunc, isExpression); return factory2.updateParenthesizedExpression(node, expression); } function createPrivateIdentifierAssignment(info, receiver, right, operator) { receiver = visitNode(receiver, visitor, isExpression); right = visitNode(right, visitor, isExpression); ensureDynamicThisIfNeeded(receiver); if (isCompoundAssignment(operator)) { const { readExpression, initializeExpression } = createCopiableReceiverExpr(receiver); receiver = initializeExpression || readExpression; right = factory2.createBinaryExpression(createPrivateIdentifierAccessHelper(info, readExpression), getNonAssignmentOperatorForCompoundAssignment(operator), right); } setCommentRange(receiver, moveRangePos(receiver, -1)); switch (info.kind) { case "a": return emitHelpers().createClassPrivateFieldSetHelper(receiver, info.brandCheckIdentifier, right, info.kind, info.setterName); case "m": return emitHelpers().createClassPrivateFieldSetHelper(receiver, info.brandCheckIdentifier, right, info.kind, undefined); case "f": return emitHelpers().createClassPrivateFieldSetHelper(receiver, info.brandCheckIdentifier, right, info.kind, info.isStatic ? info.variableName : undefined); case "untransformed": return Debug.fail("Access helpers should not be created for untransformed private elements"); default: Debug.assertNever(info, "Unknown private element type"); } } function getPrivateInstanceMethodsAndAccessors(node) { return filter(node.members, isNonStaticMethodOrAccessorWithPrivateName); } function getClassFacts(node) { var _a; let facts = 0; const original = getOriginalNode(node); if (isClassLike(original) && classOrConstructorParameterIsDecorated(legacyDecorators, original)) { facts |= 1; } if (shouldTransformPrivateElementsOrClassStaticBlocks && (classHasClassThisAssignment(node) || classHasExplicitlyAssignedName(node))) { facts |= 2; } let containsPublicInstanceFields = false; let containsInitializedPublicInstanceFields = false; let containsInstancePrivateElements = false; let containsInstanceAutoAccessors = false; for (const member of node.members) { if (isStatic(member)) { if (member.name && (isPrivateIdentifier(member.name) || isAutoAccessorPropertyDeclaration(member)) && shouldTransformPrivateElementsOrClassStaticBlocks) { facts |= 2; } else if (isAutoAccessorPropertyDeclaration(member) && shouldTransformAutoAccessors === -1 && !node.name && !((_a = node.emitNode) == null ? undefined : _a.classThis)) { facts |= 2; } if (isPropertyDeclaration(member) || isClassStaticBlockDeclaration(member)) { if (shouldTransformThisInStaticInitializers && member.transformFlags & 16384) { facts |= 8; if (!(facts & 1)) { facts |= 2; } } if (shouldTransformSuperInStaticInitializers && member.transformFlags & 134217728) { if (!(facts & 1)) { facts |= 2 | 4; } } } } else if (!hasAbstractModifier(getOriginalNode(member))) { if (isAutoAccessorPropertyDeclaration(member)) { containsInstanceAutoAccessors = true; containsInstancePrivateElements || (containsInstancePrivateElements = isPrivateIdentifierClassElementDeclaration(member)); } else if (isPrivateIdentifierClassElementDeclaration(member)) { containsInstancePrivateElements = true; if (resolver.hasNodeCheckFlag(member, 262144)) { facts |= 2; } } else if (isPropertyDeclaration(member)) { containsPublicInstanceFields = true; containsInitializedPublicInstanceFields || (containsInitializedPublicInstanceFields = !!member.initializer); } } } const willHoistInitializersToConstructor = shouldTransformInitializersUsingDefine && containsPublicInstanceFields || shouldTransformInitializersUsingSet && containsInitializedPublicInstanceFields || shouldTransformPrivateElementsOrClassStaticBlocks && containsInstancePrivateElements || shouldTransformPrivateElementsOrClassStaticBlocks && containsInstanceAutoAccessors && shouldTransformAutoAccessors === -1; if (willHoistInitializersToConstructor) { facts |= 16; } return facts; } function visitExpressionWithTypeArgumentsInHeritageClause(node) { var _a; const facts = ((_a = lexicalEnvironment == null ? undefined : lexicalEnvironment.data) == null ? undefined : _a.facts) || 0; if (facts & 4) { const temp = factory2.createTempVariable(hoistVariableDeclaration, true); getClassLexicalEnvironment().superClassReference = temp; return factory2.updateExpressionWithTypeArguments(node, factory2.createAssignment(temp, visitNode(node.expression, visitor, isExpression)), undefined); } return visitEachChild(node, visitor, context); } function visitInNewClassLexicalEnvironment(node, visitor2) { var _a; const savedCurrentClassContainer = currentClassContainer; const savedPendingExpressions = pendingExpressions; const savedLexicalEnvironment = lexicalEnvironment; currentClassContainer = node; pendingExpressions = undefined; startClassLexicalEnvironment(); const shouldAlwaysTransformPrivateStaticElements = getInternalEmitFlags(node) & 32; if (shouldTransformPrivateElementsOrClassStaticBlocks || shouldAlwaysTransformPrivateStaticElements) { const name = getNameOfDeclaration(node); if (name && isIdentifier(name)) { getPrivateIdentifierEnvironment().data.className = name; } else if ((_a = node.emitNode) == null ? undefined : _a.assignedName) { if (isStringLiteral(node.emitNode.assignedName)) { if (node.emitNode.assignedName.textSourceNode && isIdentifier(node.emitNode.assignedName.textSourceNode)) { getPrivateIdentifierEnvironment().data.className = node.emitNode.assignedName.textSourceNode; } else if (isIdentifierText(node.emitNode.assignedName.text, languageVersion)) { const prefixName = factory2.createIdentifier(node.emitNode.assignedName.text); getPrivateIdentifierEnvironment().data.className = prefixName; } } } } if (shouldTransformPrivateElementsOrClassStaticBlocks) { const privateInstanceMethodsAndAccessors = getPrivateInstanceMethodsAndAccessors(node); if (some(privateInstanceMethodsAndAccessors)) { getPrivateIdentifierEnvironment().data.weakSetName = createHoistedVariableForClass("instances", privateInstanceMethodsAndAccessors[0].name); } } const facts = getClassFacts(node); if (facts) { getClassLexicalEnvironment().facts = facts; } if (facts & 8) { enableSubstitutionForClassStaticThisOrSuperReference(); } const result = visitor2(node, facts); endClassLexicalEnvironment(); Debug.assert(lexicalEnvironment === savedLexicalEnvironment); currentClassContainer = savedCurrentClassContainer; pendingExpressions = savedPendingExpressions; return result; } function visitClassDeclaration(node) { return visitInNewClassLexicalEnvironment(node, visitClassDeclarationInNewClassLexicalEnvironment); } function visitClassDeclarationInNewClassLexicalEnvironment(node, facts) { var _a, _b; let pendingClassReferenceAssignment; if (facts & 2) { if (shouldTransformPrivateElementsOrClassStaticBlocks && ((_a = node.emitNode) == null ? undefined : _a.classThis)) { getClassLexicalEnvironment().classConstructor = node.emitNode.classThis; pendingClassReferenceAssignment = factory2.createAssignment(node.emitNode.classThis, factory2.getInternalName(node)); } else { const temp = factory2.createTempVariable(hoistVariableDeclaration, true); getClassLexicalEnvironment().classConstructor = factory2.cloneNode(temp); pendingClassReferenceAssignment = factory2.createAssignment(temp, factory2.getInternalName(node)); } } if ((_b = node.emitNode) == null ? undefined : _b.classThis) { getClassLexicalEnvironment().classThis = node.emitNode.classThis; } const isClassWithConstructorReference = resolver.hasNodeCheckFlag(node, 262144); const isExport = hasSyntacticModifier(node, 32); const isDefault = hasSyntacticModifier(node, 2048); let modifiers = visitNodes2(node.modifiers, modifierVisitor, isModifier); const heritageClauses = visitNodes2(node.heritageClauses, heritageClauseVisitor, isHeritageClause); const { members, prologue } = transformClassMembers(node); const statements = []; if (pendingClassReferenceAssignment) { getPendingExpressions().unshift(pendingClassReferenceAssignment); } if (some(pendingExpressions)) { statements.push(factory2.createExpressionStatement(factory2.inlineExpressions(pendingExpressions))); } if (shouldTransformInitializersUsingSet || shouldTransformPrivateElementsOrClassStaticBlocks || getInternalEmitFlags(node) & 32) { const staticProperties = getStaticPropertiesAndClassStaticBlock(node); if (some(staticProperties)) { addPropertyOrClassStaticBlockStatements(statements, staticProperties, factory2.getInternalName(node)); } } if (statements.length > 0 && isExport && isDefault) { modifiers = visitNodes2(modifiers, (node2) => isExportOrDefaultModifier(node2) ? undefined : node2, isModifier); statements.push(factory2.createExportAssignment(undefined, false, factory2.getLocalName(node, false, true))); } const alias = getClassLexicalEnvironment().classConstructor; if (isClassWithConstructorReference && alias) { enableSubstitutionForClassAliases(); classAliases[getOriginalNodeId(node)] = alias; } const classDecl = factory2.updateClassDeclaration(node, modifiers, node.name, undefined, heritageClauses, members); statements.unshift(classDecl); if (prologue) { statements.unshift(factory2.createExpressionStatement(prologue)); } return statements; } function visitClassExpression(node) { return visitInNewClassLexicalEnvironment(node, visitClassExpressionInNewClassLexicalEnvironment); } function visitClassExpressionInNewClassLexicalEnvironment(node, facts) { var _a, _b, _c; const isDecoratedClassDeclaration = !!(facts & 1); const staticPropertiesOrClassStaticBlocks = getStaticPropertiesAndClassStaticBlock(node); const isClassWithConstructorReference = resolver.hasNodeCheckFlag(node, 262144); const requiresBlockScopedVar = resolver.hasNodeCheckFlag(node, 32768); let temp; function createClassTempVar() { var _a2; if (shouldTransformPrivateElementsOrClassStaticBlocks && ((_a2 = node.emitNode) == null ? undefined : _a2.classThis)) { return getClassLexicalEnvironment().classConstructor = node.emitNode.classThis; } const temp2 = factory2.createTempVariable(requiresBlockScopedVar ? addBlockScopedVariable : hoistVariableDeclaration, true); getClassLexicalEnvironment().classConstructor = factory2.cloneNode(temp2); return temp2; } if ((_a = node.emitNode) == null ? undefined : _a.classThis) { getClassLexicalEnvironment().classThis = node.emitNode.classThis; } if (facts & 2) { temp ?? (temp = createClassTempVar()); } const modifiers = visitNodes2(node.modifiers, modifierVisitor, isModifier); const heritageClauses = visitNodes2(node.heritageClauses, heritageClauseVisitor, isHeritageClause); const { members, prologue } = transformClassMembers(node); const classExpression = factory2.updateClassExpression(node, modifiers, node.name, undefined, heritageClauses, members); const expressions = []; if (prologue) { expressions.push(prologue); } const hasTransformableStatics = (shouldTransformPrivateElementsOrClassStaticBlocks || getInternalEmitFlags(node) & 32) && some(staticPropertiesOrClassStaticBlocks, (node2) => isClassStaticBlockDeclaration(node2) || isPrivateIdentifierClassElementDeclaration(node2) || shouldTransformInitializers && isInitializedProperty(node2)); if (hasTransformableStatics || some(pendingExpressions)) { if (isDecoratedClassDeclaration) { Debug.assertIsDefined(pendingStatements, "Decorated classes transformed by TypeScript are expected to be within a variable declaration."); if (some(pendingExpressions)) { addRange(pendingStatements, map(pendingExpressions, factory2.createExpressionStatement)); } if (some(staticPropertiesOrClassStaticBlocks)) { addPropertyOrClassStaticBlockStatements(pendingStatements, staticPropertiesOrClassStaticBlocks, ((_b = node.emitNode) == null ? undefined : _b.classThis) ?? factory2.getInternalName(node)); } if (temp) { expressions.push(factory2.createAssignment(temp, classExpression)); } else if (shouldTransformPrivateElementsOrClassStaticBlocks && ((_c = node.emitNode) == null ? undefined : _c.classThis)) { expressions.push(factory2.createAssignment(node.emitNode.classThis, classExpression)); } else { expressions.push(classExpression); } } else { temp ?? (temp = createClassTempVar()); if (isClassWithConstructorReference) { enableSubstitutionForClassAliases(); const alias = factory2.cloneNode(temp); alias.emitNode.autoGenerate.flags &= ~8; classAliases[getOriginalNodeId(node)] = alias; } expressions.push(factory2.createAssignment(temp, classExpression)); addRange(expressions, pendingExpressions); addRange(expressions, generateInitializedPropertyExpressionsOrClassStaticBlock(staticPropertiesOrClassStaticBlocks, temp)); expressions.push(factory2.cloneNode(temp)); } } else { expressions.push(classExpression); } if (expressions.length > 1) { addEmitFlags(classExpression, 131072); expressions.forEach(startOnNewLine); } return factory2.inlineExpressions(expressions); } function visitClassStaticBlockDeclaration(node) { if (!shouldTransformPrivateElementsOrClassStaticBlocks) { return visitEachChild(node, visitor, context); } return; } function visitThisExpression(node) { if (shouldTransformThisInStaticInitializers && currentClassElement && isClassStaticBlockDeclaration(currentClassElement) && (lexicalEnvironment == null ? undefined : lexicalEnvironment.data)) { const { classThis, classConstructor } = lexicalEnvironment.data; return classThis ?? classConstructor ?? node; } return node; } function transformClassMembers(node) { const shouldTransformPrivateStaticElementsInClass = !!(getInternalEmitFlags(node) & 32); if (shouldTransformPrivateElementsOrClassStaticBlocks || shouldTransformPrivateStaticElementsInFile) { for (const member of node.members) { if (isPrivateIdentifierClassElementDeclaration(member)) { if (shouldTransformClassElementToWeakMap(member)) { addPrivateIdentifierToEnvironment(member, member.name, addPrivateIdentifierClassElementToEnvironment); } else { const privateEnv = getPrivateIdentifierEnvironment(); setPrivateIdentifier(privateEnv, member.name, { kind: "untransformed" }); } } } if (shouldTransformPrivateElementsOrClassStaticBlocks) { if (some(getPrivateInstanceMethodsAndAccessors(node))) { createBrandCheckWeakSetForPrivateMethods(); } } if (shouldTransformAutoAccessorsInCurrentClass()) { for (const member of node.members) { if (isAutoAccessorPropertyDeclaration(member)) { const storageName = factory2.getGeneratedPrivateNameForNode(member.name, undefined, "_accessor_storage"); if (shouldTransformPrivateElementsOrClassStaticBlocks || shouldTransformPrivateStaticElementsInClass && hasStaticModifier(member)) { addPrivateIdentifierToEnvironment(member, storageName, addPrivateIdentifierPropertyDeclarationToEnvironment); } else { const privateEnv = getPrivateIdentifierEnvironment(); setPrivateIdentifier(privateEnv, storageName, { kind: "untransformed" }); } } } } } let members = visitNodes2(node.members, classElementVisitor, isClassElement); let syntheticConstructor; if (!some(members, isConstructorDeclaration)) { syntheticConstructor = transformConstructor(undefined, node); } let prologue; let syntheticStaticBlock; if (!shouldTransformPrivateElementsOrClassStaticBlocks && some(pendingExpressions)) { let statement = factory2.createExpressionStatement(factory2.inlineExpressions(pendingExpressions)); if (statement.transformFlags & 134234112) { const temp = factory2.createTempVariable(hoistVariableDeclaration); const arrow = factory2.createArrowFunction(undefined, undefined, [], undefined, undefined, factory2.createBlock([statement])); prologue = factory2.createAssignment(temp, arrow); statement = factory2.createExpressionStatement(factory2.createCallExpression(temp, undefined, [])); } const block = factory2.createBlock([statement]); syntheticStaticBlock = factory2.createClassStaticBlockDeclaration(block); pendingExpressions = undefined; } if (syntheticConstructor || syntheticStaticBlock) { let membersArray; const classThisAssignmentBlock = find(members, isClassThisAssignmentBlock); const classNamedEvaluationHelperBlock = find(members, isClassNamedEvaluationHelperBlock); membersArray = append(membersArray, classThisAssignmentBlock); membersArray = append(membersArray, classNamedEvaluationHelperBlock); membersArray = append(membersArray, syntheticConstructor); membersArray = append(membersArray, syntheticStaticBlock); const remainingMembers = classThisAssignmentBlock || classNamedEvaluationHelperBlock ? filter(members, (member) => member !== classThisAssignmentBlock && member !== classNamedEvaluationHelperBlock) : members; membersArray = addRange(membersArray, remainingMembers); members = setTextRange(factory2.createNodeArray(membersArray), node.members); } return { members, prologue }; } function createBrandCheckWeakSetForPrivateMethods() { const { weakSetName } = getPrivateIdentifierEnvironment().data; Debug.assert(weakSetName, "weakSetName should be set in private identifier environment"); getPendingExpressions().push(factory2.createAssignment(weakSetName, factory2.createNewExpression(factory2.createIdentifier("WeakSet"), undefined, []))); } function transformConstructor(constructor, container) { constructor = visitNode(constructor, visitor, isConstructorDeclaration); if (!(lexicalEnvironment == null ? undefined : lexicalEnvironment.data) || !(lexicalEnvironment.data.facts & 16)) { return constructor; } const extendsClauseElement = getEffectiveBaseTypeNode(container); const isDerivedClass = !!(extendsClauseElement && skipOuterExpressions(extendsClauseElement.expression).kind !== 106); const parameters = visitParameterList(constructor ? constructor.parameters : undefined, visitor, context); const body = transformConstructorBody(container, constructor, isDerivedClass); if (!body) { return constructor; } if (constructor) { Debug.assert(parameters); return factory2.updateConstructorDeclaration(constructor, undefined, parameters, body); } return startOnNewLine(setOriginalNode(setTextRange(factory2.createConstructorDeclaration(undefined, parameters ?? [], body), constructor || container), constructor)); } function transformConstructorBodyWorker(statementsOut, statementsIn, statementOffset, superPath, superPathDepth, initializerStatements, constructor) { const superStatementIndex = superPath[superPathDepth]; const superStatement = statementsIn[superStatementIndex]; addRange(statementsOut, visitNodes2(statementsIn, visitor, isStatement, statementOffset, superStatementIndex - statementOffset)); statementOffset = superStatementIndex + 1; if (isTryStatement(superStatement)) { const tryBlockStatements = []; transformConstructorBodyWorker(tryBlockStatements, superStatement.tryBlock.statements, 0, superPath, superPathDepth + 1, initializerStatements, constructor); const tryBlockStatementsArray = factory2.createNodeArray(tryBlockStatements); setTextRange(tryBlockStatementsArray, superStatement.tryBlock.statements); statementsOut.push(factory2.updateTryStatement(superStatement, factory2.updateBlock(superStatement.tryBlock, tryBlockStatements), visitNode(superStatement.catchClause, visitor, isCatchClause), visitNode(superStatement.finallyBlock, visitor, isBlock))); } else { addRange(statementsOut, visitNodes2(statementsIn, visitor, isStatement, superStatementIndex, 1)); while (statementOffset < statementsIn.length) { const statement = statementsIn[statementOffset]; if (isParameterPropertyDeclaration(getOriginalNode(statement), constructor)) { statementOffset++; } else { break; } } addRange(statementsOut, initializerStatements); } addRange(statementsOut, visitNodes2(statementsIn, visitor, isStatement, statementOffset)); } function transformConstructorBody(node, constructor, isDerivedClass) { var _a; const instanceProperties = getProperties(node, false, false); let properties = instanceProperties; if (!useDefineForClassFields) { properties = filter(properties, (property) => !!property.initializer || isPrivateIdentifier(property.name) || hasAccessorModifier(property)); } const privateMethodsAndAccessors = getPrivateInstanceMethodsAndAccessors(node); const needsConstructorBody = some(properties) || some(privateMethodsAndAccessors); if (!constructor && !needsConstructorBody) { return visitFunctionBody(undefined, visitor, context); } resumeLexicalEnvironment(); const needsSyntheticConstructor = !constructor && isDerivedClass; let statementOffset = 0; let statements = []; const initializerStatements = []; const receiver = factory2.createThis(); addInstanceMethodStatements(initializerStatements, privateMethodsAndAccessors, receiver); if (constructor) { const parameterProperties = filter(instanceProperties, (prop) => isParameterPropertyDeclaration(getOriginalNode(prop), constructor)); const nonParameterProperties = filter(properties, (prop) => !isParameterPropertyDeclaration(getOriginalNode(prop), constructor)); addPropertyOrClassStaticBlockStatements(initializerStatements, parameterProperties, receiver); addPropertyOrClassStaticBlockStatements(initializerStatements, nonParameterProperties, receiver); } else { addPropertyOrClassStaticBlockStatements(initializerStatements, properties, receiver); } if (constructor == null ? undefined : constructor.body) { statementOffset = factory2.copyPrologue(constructor.body.statements, statements, false, visitor); const superStatementIndices = findSuperStatementIndexPath(constructor.body.statements, statementOffset); if (superStatementIndices.length) { transformConstructorBodyWorker(statements, constructor.body.statements, statementOffset, superStatementIndices, 0, initializerStatements, constructor); } else { while (statementOffset < constructor.body.statements.length) { const statement = constructor.body.statements[statementOffset]; if (isParameterPropertyDeclaration(getOriginalNode(statement), constructor)) { statementOffset++; } else { break; } } addRange(statements, initializerStatements); addRange(statements, visitNodes2(constructor.body.statements, visitor, isStatement, statementOffset)); } } else { if (needsSyntheticConstructor) { statements.push(factory2.createExpressionStatement(factory2.createCallExpression(factory2.createSuper(), undefined, [factory2.createSpreadElement(factory2.createIdentifier("arguments"))]))); } addRange(statements, initializerStatements); } statements = factory2.mergeLexicalEnvironment(statements, endLexicalEnvironment()); if (statements.length === 0 && !constructor) { return; } const multiLine = (constructor == null ? undefined : constructor.body) && constructor.body.statements.length >= statements.length ? constructor.body.multiLine ?? statements.length > 0 : statements.length > 0; return setTextRange(factory2.createBlock(setTextRange(factory2.createNodeArray(statements), ((_a = constructor == null ? undefined : constructor.body) == null ? undefined : _a.statements) ?? node.members), multiLine), constructor == null ? undefined : constructor.body); } function addPropertyOrClassStaticBlockStatements(statements, properties, receiver) { for (const property of properties) { if (isStatic(property) && !shouldTransformPrivateElementsOrClassStaticBlocks) { continue; } const statement = transformPropertyOrClassStaticBlock(property, receiver); if (!statement) { continue; } statements.push(statement); } } function transformPropertyOrClassStaticBlock(property, receiver) { const expression = isClassStaticBlockDeclaration(property) ? setCurrentClassElementAnd(property, transformClassStaticBlockDeclaration, property) : transformProperty(property, receiver); if (!expression) { return; } const statement = factory2.createExpressionStatement(expression); setOriginalNode(statement, property); addEmitFlags(statement, getEmitFlags(property) & 3072); setCommentRange(statement, property); const propertyOriginalNode = getOriginalNode(property); if (isParameter(propertyOriginalNode)) { setSourceMapRange(statement, propertyOriginalNode); removeAllComments(statement); } else { setSourceMapRange(statement, moveRangePastModifiers(property)); } setSyntheticLeadingComments(expression, undefined); setSyntheticTrailingComments(expression, undefined); if (hasAccessorModifier(propertyOriginalNode)) { addEmitFlags(statement, 3072); } return statement; } function generateInitializedPropertyExpressionsOrClassStaticBlock(propertiesOrClassStaticBlocks, receiver) { const expressions = []; for (const property of propertiesOrClassStaticBlocks) { const expression = isClassStaticBlockDeclaration(property) ? setCurrentClassElementAnd(property, transformClassStaticBlockDeclaration, property) : setCurrentClassElementAnd(property, () => transformProperty(property, receiver), undefined); if (!expression) { continue; } startOnNewLine(expression); setOriginalNode(expression, property); addEmitFlags(expression, getEmitFlags(property) & 3072); setSourceMapRange(expression, moveRangePastModifiers(property)); setCommentRange(expression, property); expressions.push(expression); } return expressions; } function transformProperty(property, receiver) { var _a; const savedCurrentClassElement = currentClassElement; const transformed = transformPropertyWorker(property, receiver); if (transformed && hasStaticModifier(property) && ((_a = lexicalEnvironment == null ? undefined : lexicalEnvironment.data) == null ? undefined : _a.facts)) { setOriginalNode(transformed, property); addEmitFlags(transformed, 4); setSourceMapRange(transformed, getSourceMapRange(property.name)); lexicalEnvironmentMap.set(getOriginalNode(property), lexicalEnvironment); } currentClassElement = savedCurrentClassElement; return transformed; } function transformPropertyWorker(property, receiver) { const emitAssignment = !useDefineForClassFields; if (isNamedEvaluation(property, isAnonymousClassNeedingAssignedName)) { property = transformNamedEvaluation(context, property); } const propertyName = hasAccessorModifier(property) ? factory2.getGeneratedPrivateNameForNode(property.name) : isComputedPropertyName(property.name) && !isSimpleInlineableExpression(property.name.expression) ? factory2.updateComputedPropertyName(property.name, factory2.getGeneratedNameForNode(property.name)) : property.name; if (hasStaticModifier(property)) { currentClassElement = property; } if (isPrivateIdentifier(propertyName) && shouldTransformClassElementToWeakMap(property)) { const privateIdentifierInfo = accessPrivateIdentifier2(propertyName); if (privateIdentifierInfo) { if (privateIdentifierInfo.kind === "f") { if (!privateIdentifierInfo.isStatic) { return createPrivateInstanceFieldInitializer(factory2, receiver, visitNode(property.initializer, visitor, isExpression), privateIdentifierInfo.brandCheckIdentifier); } else { return createPrivateStaticFieldInitializer(factory2, privateIdentifierInfo.variableName, visitNode(property.initializer, visitor, isExpression)); } } else { return; } } else { Debug.fail("Undeclared private name for property declaration."); } } if ((isPrivateIdentifier(propertyName) || hasStaticModifier(property)) && !property.initializer) { return; } const propertyOriginalNode = getOriginalNode(property); if (hasSyntacticModifier(propertyOriginalNode, 64)) { return; } let initializer = visitNode(property.initializer, visitor, isExpression); if (isParameterPropertyDeclaration(propertyOriginalNode, propertyOriginalNode.parent) && isIdentifier(propertyName)) { const localName = factory2.cloneNode(propertyName); if (initializer) { if (isParenthesizedExpression(initializer) && isCommaExpression(initializer.expression) && isCallToHelper(initializer.expression.left, "___runInitializers") && isVoidExpression(initializer.expression.right) && isNumericLiteral(initializer.expression.right.expression)) { initializer = initializer.expression.left; } initializer = factory2.inlineExpressions([initializer, localName]); } else { initializer = localName; } setEmitFlags(propertyName, 3072 | 96); setSourceMapRange(localName, propertyOriginalNode.name); setEmitFlags(localName, 3072); } else { initializer ?? (initializer = factory2.createVoidZero()); } if (emitAssignment || isPrivateIdentifier(propertyName)) { const memberAccess = createMemberAccessForPropertyName(factory2, receiver, propertyName, propertyName); addEmitFlags(memberAccess, 1024); const expression = factory2.createAssignment(memberAccess, initializer); return expression; } else { const name = isComputedPropertyName(propertyName) ? propertyName.expression : isIdentifier(propertyName) ? factory2.createStringLiteral(unescapeLeadingUnderscores(propertyName.escapedText)) : propertyName; const descriptor = factory2.createPropertyDescriptor({ value: initializer, configurable: true, writable: true, enumerable: true }); return factory2.createObjectDefinePropertyCall(receiver, name, descriptor); } } function enableSubstitutionForClassAliases() { if ((enabledSubstitutions & 1) === 0) { enabledSubstitutions |= 1; context.enableSubstitution(80); classAliases = []; } } function enableSubstitutionForClassStaticThisOrSuperReference() { if ((enabledSubstitutions & 2) === 0) { enabledSubstitutions |= 2; context.enableSubstitution(110); context.enableEmitNotification(263); context.enableEmitNotification(219); context.enableEmitNotification(177); context.enableEmitNotification(178); context.enableEmitNotification(179); context.enableEmitNotification(175); context.enableEmitNotification(173); context.enableEmitNotification(168); } } function addInstanceMethodStatements(statements, methods, receiver) { if (!shouldTransformPrivateElementsOrClassStaticBlocks || !some(methods)) { return; } const { weakSetName } = getPrivateIdentifierEnvironment().data; Debug.assert(weakSetName, "weakSetName should be set in private identifier environment"); statements.push(factory2.createExpressionStatement(createPrivateInstanceMethodInitializer(factory2, receiver, weakSetName))); } function visitInvalidSuperProperty(node) { return isPropertyAccessExpression(node) ? factory2.updatePropertyAccessExpression(node, factory2.createVoidZero(), node.name) : factory2.updateElementAccessExpression(node, factory2.createVoidZero(), visitNode(node.argumentExpression, visitor, isExpression)); } function getPropertyNameExpressionIfNeeded(name, shouldHoist) { if (isComputedPropertyName(name)) { const cacheAssignment = findComputedPropertyNameCacheAssignment(name); const expression = visitNode(name.expression, visitor, isExpression); const innerExpression = skipPartiallyEmittedExpressions(expression); const inlinable = isSimpleInlineableExpression(innerExpression); const alreadyTransformed = !!cacheAssignment || isAssignmentExpression(innerExpression) && isGeneratedIdentifier(innerExpression.left); if (!alreadyTransformed && !inlinable && shouldHoist) { const generatedName = factory2.getGeneratedNameForNode(name); if (resolver.hasNodeCheckFlag(name, 32768)) { addBlockScopedVariable(generatedName); } else { hoistVariableDeclaration(generatedName); } return factory2.createAssignment(generatedName, expression); } return inlinable || isIdentifier(innerExpression) ? undefined : expression; } } function startClassLexicalEnvironment() { lexicalEnvironment = { previous: lexicalEnvironment, data: undefined }; } function endClassLexicalEnvironment() { lexicalEnvironment = lexicalEnvironment == null ? undefined : lexicalEnvironment.previous; } function getClassLexicalEnvironment() { Debug.assert(lexicalEnvironment); return lexicalEnvironment.data ?? (lexicalEnvironment.data = { facts: 0, classConstructor: undefined, classThis: undefined, superClassReference: undefined }); } function getPrivateIdentifierEnvironment() { Debug.assert(lexicalEnvironment); return lexicalEnvironment.privateEnv ?? (lexicalEnvironment.privateEnv = newPrivateEnvironment({ className: undefined, weakSetName: undefined })); } function getPendingExpressions() { return pendingExpressions ?? (pendingExpressions = []); } function addPrivateIdentifierClassElementToEnvironment(node, name, lex, privateEnv, isStatic2, isValid, previousInfo) { if (isAutoAccessorPropertyDeclaration(node)) { addPrivateIdentifierAutoAccessorPropertyDeclarationToEnvironment(node, name, lex, privateEnv, isStatic2, isValid, previousInfo); } else if (isPropertyDeclaration(node)) { addPrivateIdentifierPropertyDeclarationToEnvironment(node, name, lex, privateEnv, isStatic2, isValid, previousInfo); } else if (isMethodDeclaration(node)) { addPrivateIdentifierMethodDeclarationToEnvironment(node, name, lex, privateEnv, isStatic2, isValid, previousInfo); } else if (isGetAccessorDeclaration(node)) { addPrivateIdentifierGetAccessorDeclarationToEnvironment(node, name, lex, privateEnv, isStatic2, isValid, previousInfo); } else if (isSetAccessorDeclaration(node)) { addPrivateIdentifierSetAccessorDeclarationToEnvironment(node, name, lex, privateEnv, isStatic2, isValid, previousInfo); } } function addPrivateIdentifierPropertyDeclarationToEnvironment(_node, name, lex, privateEnv, isStatic2, isValid, _previousInfo) { if (isStatic2) { const brandCheckIdentifier = Debug.checkDefined(lex.classThis ?? lex.classConstructor, "classConstructor should be set in private identifier environment"); const variableName = createHoistedVariableForPrivateName(name); setPrivateIdentifier(privateEnv, name, { kind: "f", isStatic: true, brandCheckIdentifier, variableName, isValid }); } else { const weakMapName = createHoistedVariableForPrivateName(name); setPrivateIdentifier(privateEnv, name, { kind: "f", isStatic: false, brandCheckIdentifier: weakMapName, isValid }); getPendingExpressions().push(factory2.createAssignment(weakMapName, factory2.createNewExpression(factory2.createIdentifier("WeakMap"), undefined, []))); } } function addPrivateIdentifierMethodDeclarationToEnvironment(_node, name, lex, privateEnv, isStatic2, isValid, _previousInfo) { const methodName = createHoistedVariableForPrivateName(name); const brandCheckIdentifier = isStatic2 ? Debug.checkDefined(lex.classThis ?? lex.classConstructor, "classConstructor should be set in private identifier environment") : Debug.checkDefined(privateEnv.data.weakSetName, "weakSetName should be set in private identifier environment"); setPrivateIdentifier(privateEnv, name, { kind: "m", methodName, brandCheckIdentifier, isStatic: isStatic2, isValid }); } function addPrivateIdentifierGetAccessorDeclarationToEnvironment(_node, name, lex, privateEnv, isStatic2, isValid, previousInfo) { const getterName = createHoistedVariableForPrivateName(name, "_get"); const brandCheckIdentifier = isStatic2 ? Debug.checkDefined(lex.classThis ?? lex.classConstructor, "classConstructor should be set in private identifier environment") : Debug.checkDefined(privateEnv.data.weakSetName, "weakSetName should be set in private identifier environment"); if ((previousInfo == null ? undefined : previousInfo.kind) === "a" && previousInfo.isStatic === isStatic2 && !previousInfo.getterName) { previousInfo.getterName = getterName; } else { setPrivateIdentifier(privateEnv, name, { kind: "a", getterName, setterName: undefined, brandCheckIdentifier, isStatic: isStatic2, isValid }); } } function addPrivateIdentifierSetAccessorDeclarationToEnvironment(_node, name, lex, privateEnv, isStatic2, isValid, previousInfo) { const setterName = createHoistedVariableForPrivateName(name, "_set"); const brandCheckIdentifier = isStatic2 ? Debug.checkDefined(lex.classThis ?? lex.classConstructor, "classConstructor should be set in private identifier environment") : Debug.checkDefined(privateEnv.data.weakSetName, "weakSetName should be set in private identifier environment"); if ((previousInfo == null ? undefined : previousInfo.kind) === "a" && previousInfo.isStatic === isStatic2 && !previousInfo.setterName) { previousInfo.setterName = setterName; } else { setPrivateIdentifier(privateEnv, name, { kind: "a", getterName: undefined, setterName, brandCheckIdentifier, isStatic: isStatic2, isValid }); } } function addPrivateIdentifierAutoAccessorPropertyDeclarationToEnvironment(_node, name, lex, privateEnv, isStatic2, isValid, _previousInfo) { const getterName = createHoistedVariableForPrivateName(name, "_get"); const setterName = createHoistedVariableForPrivateName(name, "_set"); const brandCheckIdentifier = isStatic2 ? Debug.checkDefined(lex.classThis ?? lex.classConstructor, "classConstructor should be set in private identifier environment") : Debug.checkDefined(privateEnv.data.weakSetName, "weakSetName should be set in private identifier environment"); setPrivateIdentifier(privateEnv, name, { kind: "a", getterName, setterName, brandCheckIdentifier, isStatic: isStatic2, isValid }); } function addPrivateIdentifierToEnvironment(node, name, addDeclaration) { const lex = getClassLexicalEnvironment(); const privateEnv = getPrivateIdentifierEnvironment(); const previousInfo = getPrivateIdentifier(privateEnv, name); const isStatic2 = hasStaticModifier(node); const isValid = !isReservedPrivateName(name) && previousInfo === undefined; addDeclaration(node, name, lex, privateEnv, isStatic2, isValid, previousInfo); } function createHoistedVariableForClass(name, node, suffix) { const { className } = getPrivateIdentifierEnvironment().data; const prefix = className ? { prefix: "_", node: className, suffix: "_" } : "_"; const identifier = typeof name === "object" ? factory2.getGeneratedNameForNode(name, 16 | 8, prefix, suffix) : typeof name === "string" ? factory2.createUniqueName(name, 16, prefix, suffix) : factory2.createTempVariable(undefined, true, prefix, suffix); if (resolver.hasNodeCheckFlag(node, 32768)) { addBlockScopedVariable(identifier); } else { hoistVariableDeclaration(identifier); } return identifier; } function createHoistedVariableForPrivateName(name, suffix) { const text = tryGetTextOfPropertyName(name); return createHoistedVariableForClass((text == null ? undefined : text.substring(1)) ?? name, name, suffix); } function accessPrivateIdentifier2(name) { const info = accessPrivateIdentifier(lexicalEnvironment, name); return (info == null ? undefined : info.kind) === "untransformed" ? undefined : info; } function wrapPrivateIdentifierForDestructuringTarget(node) { const parameter = factory2.getGeneratedNameForNode(node); const info = accessPrivateIdentifier2(node.name); if (!info) { return visitEachChild(node, visitor, context); } let receiver = node.expression; if (isThisProperty(node) || isSuperProperty(node) || !isSimpleCopiableExpression(node.expression)) { receiver = factory2.createTempVariable(hoistVariableDeclaration, true); getPendingExpressions().push(factory2.createBinaryExpression(receiver, 64, visitNode(node.expression, visitor, isExpression))); } return factory2.createAssignmentTargetWrapper(parameter, createPrivateIdentifierAssignment(info, receiver, parameter, 64)); } function visitDestructuringAssignmentTarget(node) { if (isObjectLiteralExpression(node) || isArrayLiteralExpression(node)) { return visitAssignmentPattern(node); } if (isPrivateIdentifierPropertyAccessExpression(node)) { return wrapPrivateIdentifierForDestructuringTarget(node); } else if (shouldTransformSuperInStaticInitializers && currentClassElement && isSuperProperty(node) && isStaticPropertyDeclarationOrClassStaticBlock(currentClassElement) && (lexicalEnvironment == null ? undefined : lexicalEnvironment.data)) { const { classConstructor, superClassReference, facts } = lexicalEnvironment.data; if (facts & 1) { return visitInvalidSuperProperty(node); } else if (classConstructor && superClassReference) { const name = isElementAccessExpression(node) ? visitNode(node.argumentExpression, visitor, isExpression) : isIdentifier(node.name) ? factory2.createStringLiteralFromNode(node.name) : undefined; if (name) { const temp = factory2.createTempVariable(undefined); return factory2.createAssignmentTargetWrapper(temp, factory2.createReflectSetCall(superClassReference, name, temp, classConstructor)); } } } return visitEachChild(node, visitor, context); } function visitAssignmentElement(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node); } if (isAssignmentExpression(node, true)) { const left = visitDestructuringAssignmentTarget(node.left); const right = visitNode(node.right, visitor, isExpression); return factory2.updateBinaryExpression(node, left, node.operatorToken, right); } return visitDestructuringAssignmentTarget(node); } function visitAssignmentRestElement(node) { if (isLeftHandSideExpression(node.expression)) { const expression = visitDestructuringAssignmentTarget(node.expression); return factory2.updateSpreadElement(node, expression); } return visitEachChild(node, visitor, context); } function visitArrayAssignmentElement(node) { if (isArrayBindingOrAssignmentElement(node)) { if (isSpreadElement(node)) return visitAssignmentRestElement(node); if (!isOmittedExpression(node)) return visitAssignmentElement(node); } return visitEachChild(node, visitor, context); } function visitAssignmentProperty(node) { const name = visitNode(node.name, visitor, isPropertyName); if (isAssignmentExpression(node.initializer, true)) { const assignmentElement = visitAssignmentElement(node.initializer); return factory2.updatePropertyAssignment(node, name, assignmentElement); } if (isLeftHandSideExpression(node.initializer)) { const assignmentElement = visitDestructuringAssignmentTarget(node.initializer); return factory2.updatePropertyAssignment(node, name, assignmentElement); } return visitEachChild(node, visitor, context); } function visitShorthandAssignmentProperty(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node); } return visitEachChild(node, visitor, context); } function visitAssignmentRestProperty(node) { if (isLeftHandSideExpression(node.expression)) { const expression = visitDestructuringAssignmentTarget(node.expression); return factory2.updateSpreadAssignment(node, expression); } return visitEachChild(node, visitor, context); } function visitObjectAssignmentElement(node) { Debug.assertNode(node, isObjectBindingOrAssignmentElement); if (isSpreadAssignment(node)) return visitAssignmentRestProperty(node); if (isShorthandPropertyAssignment(node)) return visitShorthandAssignmentProperty(node); if (isPropertyAssignment(node)) return visitAssignmentProperty(node); return visitEachChild(node, visitor, context); } function visitAssignmentPattern(node) { if (isArrayLiteralExpression(node)) { return factory2.updateArrayLiteralExpression(node, visitNodes2(node.elements, visitArrayAssignmentElement, isExpression)); } else { return factory2.updateObjectLiteralExpression(node, visitNodes2(node.properties, visitObjectAssignmentElement, isObjectLiteralElementLike)); } } function onEmitNode(hint, node, emitCallback) { const original = getOriginalNode(node); const lex = lexicalEnvironmentMap.get(original); if (lex) { const savedLexicalEnvironment = lexicalEnvironment; const savedPreviousShouldSubstituteThisWithClassThis = previousShouldSubstituteThisWithClassThis; lexicalEnvironment = lex; previousShouldSubstituteThisWithClassThis = shouldSubstituteThisWithClassThis; shouldSubstituteThisWithClassThis = !isClassStaticBlockDeclaration(original) || !(getInternalEmitFlags(original) & 32); previousOnEmitNode(hint, node, emitCallback); shouldSubstituteThisWithClassThis = previousShouldSubstituteThisWithClassThis; previousShouldSubstituteThisWithClassThis = savedPreviousShouldSubstituteThisWithClassThis; lexicalEnvironment = savedLexicalEnvironment; return; } switch (node.kind) { case 219: if (isArrowFunction(original) || getEmitFlags(node) & 524288) { break; } case 263: case 177: case 178: case 179: case 175: case 173: { const savedLexicalEnvironment = lexicalEnvironment; const savedPreviousShouldSubstituteThisWithClassThis = previousShouldSubstituteThisWithClassThis; lexicalEnvironment = undefined; previousShouldSubstituteThisWithClassThis = shouldSubstituteThisWithClassThis; shouldSubstituteThisWithClassThis = false; previousOnEmitNode(hint, node, emitCallback); shouldSubstituteThisWithClassThis = previousShouldSubstituteThisWithClassThis; previousShouldSubstituteThisWithClassThis = savedPreviousShouldSubstituteThisWithClassThis; lexicalEnvironment = savedLexicalEnvironment; return; } case 168: { const savedLexicalEnvironment = lexicalEnvironment; const savedShouldSubstituteThisWithClassThis = shouldSubstituteThisWithClassThis; lexicalEnvironment = lexicalEnvironment == null ? undefined : lexicalEnvironment.previous; shouldSubstituteThisWithClassThis = previousShouldSubstituteThisWithClassThis; previousOnEmitNode(hint, node, emitCallback); shouldSubstituteThisWithClassThis = savedShouldSubstituteThisWithClassThis; lexicalEnvironment = savedLexicalEnvironment; return; } } previousOnEmitNode(hint, node, emitCallback); } function onSubstituteNode(hint, node) { node = previousOnSubstituteNode(hint, node); if (hint === 1) { return substituteExpression(node); } return node; } function substituteExpression(node) { switch (node.kind) { case 80: return substituteExpressionIdentifier(node); case 110: return substituteThisExpression(node); } return node; } function substituteThisExpression(node) { if (enabledSubstitutions & 2 && (lexicalEnvironment == null ? undefined : lexicalEnvironment.data) && !noSubstitution.has(node)) { const { facts, classConstructor, classThis } = lexicalEnvironment.data; const substituteThis = shouldSubstituteThisWithClassThis ? classThis ?? classConstructor : classConstructor; if (substituteThis) { return setTextRange(setOriginalNode(factory2.cloneNode(substituteThis), node), node); } if (facts & 1 && legacyDecorators) { return factory2.createParenthesizedExpression(factory2.createVoidZero()); } } return node; } function substituteExpressionIdentifier(node) { return trySubstituteClassAlias(node) || node; } function trySubstituteClassAlias(node) { if (enabledSubstitutions & 1) { if (resolver.hasNodeCheckFlag(node, 536870912)) { const declaration = resolver.getReferencedValueDeclaration(node); if (declaration) { const classAlias = classAliases[declaration.id]; if (classAlias) { const clone2 = factory2.cloneNode(classAlias); setSourceMapRange(clone2, node); setCommentRange(clone2, node); return clone2; } } } } return; } } function createPrivateStaticFieldInitializer(factory2, variableName, initializer) { return factory2.createAssignment(variableName, factory2.createObjectLiteralExpression([ factory2.createPropertyAssignment("value", initializer || factory2.createVoidZero()) ])); } function createPrivateInstanceFieldInitializer(factory2, receiver, initializer, weakMapName) { return factory2.createCallExpression(factory2.createPropertyAccessExpression(weakMapName, "set"), undefined, [receiver, initializer || factory2.createVoidZero()]); } function createPrivateInstanceMethodInitializer(factory2, receiver, weakSetName) { return factory2.createCallExpression(factory2.createPropertyAccessExpression(weakSetName, "add"), undefined, [receiver]); } function isReservedPrivateName(node) { return !isGeneratedPrivateIdentifier(node) && node.escapedText === "#constructor"; } function isPrivateIdentifierInExpression(node) { return isPrivateIdentifier(node.left) && node.operatorToken.kind === 103; } function isStaticPropertyDeclaration2(node) { return isPropertyDeclaration(node) && hasStaticModifier(node); } function isStaticPropertyDeclarationOrClassStaticBlock(node) { return isClassStaticBlockDeclaration(node) || isStaticPropertyDeclaration2(node); } function createRuntimeTypeSerializer(context) { const { factory: factory2, hoistVariableDeclaration } = context; const resolver = context.getEmitResolver(); const compilerOptions = context.getCompilerOptions(); const languageVersion = getEmitScriptTarget(compilerOptions); const strictNullChecks = getStrictOptionValue(compilerOptions, "strictNullChecks"); let currentLexicalScope; let currentNameScope; return { serializeTypeNode: (serializerContext, node) => setSerializerContextAnd(serializerContext, serializeTypeNode, node), serializeTypeOfNode: (serializerContext, node, container) => setSerializerContextAnd(serializerContext, serializeTypeOfNode, node, container), serializeParameterTypesOfNode: (serializerContext, node, container) => setSerializerContextAnd(serializerContext, serializeParameterTypesOfNode, node, container), serializeReturnTypeOfNode: (serializerContext, node) => setSerializerContextAnd(serializerContext, serializeReturnTypeOfNode, node) }; function setSerializerContextAnd(serializerContext, cb, node, arg) { const savedCurrentLexicalScope = currentLexicalScope; const savedCurrentNameScope = currentNameScope; currentLexicalScope = serializerContext.currentLexicalScope; currentNameScope = serializerContext.currentNameScope; const result = arg === undefined ? cb(node) : cb(node, arg); currentLexicalScope = savedCurrentLexicalScope; currentNameScope = savedCurrentNameScope; return result; } function getAccessorTypeNode(node, container) { const accessors = getAllAccessorDeclarations(container.members, node); return accessors.setAccessor && getSetAccessorTypeAnnotationNode(accessors.setAccessor) || accessors.getAccessor && getEffectiveReturnTypeNode(accessors.getAccessor); } function serializeTypeOfNode(node, container) { switch (node.kind) { case 173: case 170: return serializeTypeNode(node.type); case 179: case 178: return serializeTypeNode(getAccessorTypeNode(node, container)); case 264: case 232: case 175: return factory2.createIdentifier("Function"); default: return factory2.createVoidZero(); } } function serializeParameterTypesOfNode(node, container) { const valueDeclaration = isClassLike(node) ? getFirstConstructorWithBody(node) : isFunctionLike(node) && nodeIsPresent(node.body) ? node : undefined; const expressions = []; if (valueDeclaration) { const parameters = getParametersOfDecoratedDeclaration(valueDeclaration, container); const numParameters = parameters.length; for (let i = 0;i < numParameters; i++) { const parameter = parameters[i]; if (i === 0 && isIdentifier(parameter.name) && parameter.name.escapedText === "this") { continue; } if (parameter.dotDotDotToken) { expressions.push(serializeTypeNode(getRestParameterElementType(parameter.type))); } else { expressions.push(serializeTypeOfNode(parameter, container)); } } } return factory2.createArrayLiteralExpression(expressions); } function getParametersOfDecoratedDeclaration(node, container) { if (container && node.kind === 178) { const { setAccessor } = getAllAccessorDeclarations(container.members, node); if (setAccessor) { return setAccessor.parameters; } } return node.parameters; } function serializeReturnTypeOfNode(node) { if (isFunctionLike(node) && node.type) { return serializeTypeNode(node.type); } else if (isAsyncFunction(node)) { return factory2.createIdentifier("Promise"); } return factory2.createVoidZero(); } function serializeTypeNode(node) { if (node === undefined) { return factory2.createIdentifier("Object"); } node = skipTypeParentheses(node); switch (node.kind) { case 116: case 157: case 146: return factory2.createVoidZero(); case 185: case 186: return factory2.createIdentifier("Function"); case 189: case 190: return factory2.createIdentifier("Array"); case 183: return node.assertsModifier ? factory2.createVoidZero() : factory2.createIdentifier("Boolean"); case 136: return factory2.createIdentifier("Boolean"); case 204: case 154: return factory2.createIdentifier("String"); case 151: return factory2.createIdentifier("Object"); case 202: return serializeLiteralOfLiteralTypeNode(node.literal); case 150: return factory2.createIdentifier("Number"); case 163: return getGlobalConstructor("BigInt", 7); case 155: return getGlobalConstructor("Symbol", 2); case 184: return serializeTypeReferenceNode(node); case 194: return serializeUnionOrIntersectionConstituents(node.types, true); case 193: return serializeUnionOrIntersectionConstituents(node.types, false); case 195: return serializeUnionOrIntersectionConstituents([node.trueType, node.falseType], false); case 199: if (node.operator === 148) { return serializeTypeNode(node.type); } break; case 187: case 200: case 201: case 188: case 133: case 159: case 198: case 206: break; case 313: case 314: case 318: case 319: case 320: break; case 315: case 316: case 317: return serializeTypeNode(node.type); default: return Debug.failBadSyntaxKind(node); } return factory2.createIdentifier("Object"); } function serializeLiteralOfLiteralTypeNode(node) { switch (node.kind) { case 11: case 15: return factory2.createIdentifier("String"); case 225: { const operand = node.operand; switch (operand.kind) { case 9: case 10: return serializeLiteralOfLiteralTypeNode(operand); default: return Debug.failBadSyntaxKind(operand); } } case 9: return factory2.createIdentifier("Number"); case 10: return getGlobalConstructor("BigInt", 7); case 112: case 97: return factory2.createIdentifier("Boolean"); case 106: return factory2.createVoidZero(); default: return Debug.failBadSyntaxKind(node); } } function serializeUnionOrIntersectionConstituents(types, isIntersection) { let serializedType; for (let typeNode of types) { typeNode = skipTypeParentheses(typeNode); if (typeNode.kind === 146) { if (isIntersection) return factory2.createVoidZero(); continue; } if (typeNode.kind === 159) { if (!isIntersection) return factory2.createIdentifier("Object"); continue; } if (typeNode.kind === 133) { return factory2.createIdentifier("Object"); } if (!strictNullChecks && (isLiteralTypeNode(typeNode) && typeNode.literal.kind === 106 || typeNode.kind === 157)) { continue; } const serializedConstituent = serializeTypeNode(typeNode); if (isIdentifier(serializedConstituent) && serializedConstituent.escapedText === "Object") { return serializedConstituent; } if (serializedType) { if (!equateSerializedTypeNodes(serializedType, serializedConstituent)) { return factory2.createIdentifier("Object"); } } else { serializedType = serializedConstituent; } } return serializedType ?? factory2.createVoidZero(); } function equateSerializedTypeNodes(left, right) { return isGeneratedIdentifier(left) ? isGeneratedIdentifier(right) : isIdentifier(left) ? isIdentifier(right) && left.escapedText === right.escapedText : isPropertyAccessExpression(left) ? isPropertyAccessExpression(right) && equateSerializedTypeNodes(left.expression, right.expression) && equateSerializedTypeNodes(left.name, right.name) : isVoidExpression(left) ? isVoidExpression(right) && isNumericLiteral(left.expression) && left.expression.text === "0" && isNumericLiteral(right.expression) && right.expression.text === "0" : isStringLiteral(left) ? isStringLiteral(right) && left.text === right.text : isTypeOfExpression(left) ? isTypeOfExpression(right) && equateSerializedTypeNodes(left.expression, right.expression) : isParenthesizedExpression(left) ? isParenthesizedExpression(right) && equateSerializedTypeNodes(left.expression, right.expression) : isConditionalExpression(left) ? isConditionalExpression(right) && equateSerializedTypeNodes(left.condition, right.condition) && equateSerializedTypeNodes(left.whenTrue, right.whenTrue) && equateSerializedTypeNodes(left.whenFalse, right.whenFalse) : isBinaryExpression(left) ? isBinaryExpression(right) && left.operatorToken.kind === right.operatorToken.kind && equateSerializedTypeNodes(left.left, right.left) && equateSerializedTypeNodes(left.right, right.right) : false; } function serializeTypeReferenceNode(node) { const kind = resolver.getTypeReferenceSerializationKind(node.typeName, currentNameScope ?? currentLexicalScope); switch (kind) { case 0: if (findAncestor(node, (n) => n.parent && isConditionalTypeNode(n.parent) && (n.parent.trueType === n || n.parent.falseType === n))) { return factory2.createIdentifier("Object"); } const serialized = serializeEntityNameAsExpressionFallback(node.typeName); const temp = factory2.createTempVariable(hoistVariableDeclaration); return factory2.createConditionalExpression(factory2.createTypeCheck(factory2.createAssignment(temp, serialized), "function"), undefined, temp, undefined, factory2.createIdentifier("Object")); case 1: return serializeEntityNameAsExpression(node.typeName); case 2: return factory2.createVoidZero(); case 4: return getGlobalConstructor("BigInt", 7); case 6: return factory2.createIdentifier("Boolean"); case 3: return factory2.createIdentifier("Number"); case 5: return factory2.createIdentifier("String"); case 7: return factory2.createIdentifier("Array"); case 8: return getGlobalConstructor("Symbol", 2); case 10: return factory2.createIdentifier("Function"); case 9: return factory2.createIdentifier("Promise"); case 11: return factory2.createIdentifier("Object"); default: return Debug.assertNever(kind); } } function createCheckedValue(left, right) { return factory2.createLogicalAnd(factory2.createStrictInequality(factory2.createTypeOfExpression(left), factory2.createStringLiteral("undefined")), right); } function serializeEntityNameAsExpressionFallback(node) { if (node.kind === 80) { const copied = serializeEntityNameAsExpression(node); return createCheckedValue(copied, copied); } if (node.left.kind === 80) { return createCheckedValue(serializeEntityNameAsExpression(node.left), serializeEntityNameAsExpression(node)); } const left = serializeEntityNameAsExpressionFallback(node.left); const temp = factory2.createTempVariable(hoistVariableDeclaration); return factory2.createLogicalAnd(factory2.createLogicalAnd(left.left, factory2.createStrictInequality(factory2.createAssignment(temp, left.right), factory2.createVoidZero())), factory2.createPropertyAccessExpression(temp, node.right)); } function serializeEntityNameAsExpression(node) { switch (node.kind) { case 80: const name = setParent(setTextRange(parseNodeFactory.cloneNode(node), node), node.parent); name.original = undefined; setParent(name, getParseTreeNode(currentLexicalScope)); return name; case 167: return serializeQualifiedNameAsExpression(node); } } function serializeQualifiedNameAsExpression(node) { return factory2.createPropertyAccessExpression(serializeEntityNameAsExpression(node.left), node.right); } function getGlobalConstructorWithFallback(name) { return factory2.createConditionalExpression(factory2.createTypeCheck(factory2.createIdentifier(name), "function"), undefined, factory2.createIdentifier(name), undefined, factory2.createIdentifier("Object")); } function getGlobalConstructor(name, minLanguageVersion) { return languageVersion < minLanguageVersion ? getGlobalConstructorWithFallback(name) : factory2.createIdentifier(name); } } function transformLegacyDecorators(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers, hoistVariableDeclaration } = context; const resolver = context.getEmitResolver(); const compilerOptions = context.getCompilerOptions(); const languageVersion = getEmitScriptTarget(compilerOptions); const previousOnSubstituteNode = context.onSubstituteNode; context.onSubstituteNode = onSubstituteNode; let classAliases; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { const visited = visitEachChild(node, visitor, context); addEmitHelpers(visited, context.readEmitHelpers()); return visited; } function modifierVisitor(node) { return isDecorator(node) ? undefined : node; } function visitor(node) { if (!(node.transformFlags & 33554432)) { return node; } switch (node.kind) { case 171: return; case 264: return visitClassDeclaration(node); case 232: return visitClassExpression(node); case 177: return visitConstructorDeclaration(node); case 175: return visitMethodDeclaration(node); case 179: return visitSetAccessorDeclaration(node); case 178: return visitGetAccessorDeclaration(node); case 173: return visitPropertyDeclaration(node); case 170: return visitParameterDeclaration(node); default: return visitEachChild(node, visitor, context); } } function visitClassDeclaration(node) { if (!(classOrConstructorParameterIsDecorated(true, node) || childIsDecorated(true, node))) { return visitEachChild(node, visitor, context); } const statements = classOrConstructorParameterIsDecorated(true, node) ? transformClassDeclarationWithClassDecorators(node, node.name) : transformClassDeclarationWithoutClassDecorators(node, node.name); return singleOrMany(statements); } function decoratorContainsPrivateIdentifierInExpression(decorator) { return !!(decorator.transformFlags & 536870912); } function parameterDecoratorsContainPrivateIdentifierInExpression(parameterDecorators) { return some(parameterDecorators, decoratorContainsPrivateIdentifierInExpression); } function hasClassElementWithDecoratorContainingPrivateIdentifierInExpression(node) { for (const member of node.members) { if (!canHaveDecorators(member)) continue; const allDecorators = getAllDecoratorsOfClassElement(member, node, true); if (some(allDecorators == null ? undefined : allDecorators.decorators, decoratorContainsPrivateIdentifierInExpression)) return true; if (some(allDecorators == null ? undefined : allDecorators.parameters, parameterDecoratorsContainPrivateIdentifierInExpression)) return true; } return false; } function transformDecoratorsOfClassElements(node, members) { let decorationStatements = []; addClassElementDecorationStatements(decorationStatements, node, false); addClassElementDecorationStatements(decorationStatements, node, true); if (hasClassElementWithDecoratorContainingPrivateIdentifierInExpression(node)) { members = setTextRange(factory2.createNodeArray([ ...members, factory2.createClassStaticBlockDeclaration(factory2.createBlock(decorationStatements, true)) ]), members); decorationStatements = undefined; } return { decorationStatements, members }; } function transformClassDeclarationWithoutClassDecorators(node, name) { const modifiers = visitNodes2(node.modifiers, modifierVisitor, isModifier); const heritageClauses = visitNodes2(node.heritageClauses, visitor, isHeritageClause); let members = visitNodes2(node.members, visitor, isClassElement); let decorationStatements = []; ({ members, decorationStatements } = transformDecoratorsOfClassElements(node, members)); const updated = factory2.updateClassDeclaration(node, modifiers, name, undefined, heritageClauses, members); return addRange([updated], decorationStatements); } function transformClassDeclarationWithClassDecorators(node, name) { const isExport = hasSyntacticModifier(node, 32); const isDefault = hasSyntacticModifier(node, 2048); const modifiers = visitNodes2(node.modifiers, (node2) => isExportOrDefaultModifier(node2) || isDecorator(node2) ? undefined : node2, isModifierLike); const location = moveRangePastModifiers(node); const classAlias = getClassAliasIfNeeded(node); const declName = languageVersion < 2 ? factory2.getInternalName(node, false, true) : factory2.getLocalName(node, false, true); const heritageClauses = visitNodes2(node.heritageClauses, visitor, isHeritageClause); let members = visitNodes2(node.members, visitor, isClassElement); let decorationStatements = []; ({ members, decorationStatements } = transformDecoratorsOfClassElements(node, members)); const assignClassAliasInStaticBlock = languageVersion >= 9 && !!classAlias && some(members, (member) => isPropertyDeclaration(member) && hasSyntacticModifier(member, 256) || isClassStaticBlockDeclaration(member)); if (assignClassAliasInStaticBlock) { members = setTextRange(factory2.createNodeArray([ factory2.createClassStaticBlockDeclaration(factory2.createBlock([ factory2.createExpressionStatement(factory2.createAssignment(classAlias, factory2.createThis())) ])), ...members ]), members); } const classExpression = factory2.createClassExpression(modifiers, name && isGeneratedIdentifier(name) ? undefined : name, undefined, heritageClauses, members); setOriginalNode(classExpression, node); setTextRange(classExpression, location); const varInitializer = classAlias && !assignClassAliasInStaticBlock ? factory2.createAssignment(classAlias, classExpression) : classExpression; const varDecl = factory2.createVariableDeclaration(declName, undefined, undefined, varInitializer); setOriginalNode(varDecl, node); const varDeclList = factory2.createVariableDeclarationList([varDecl], 1); const varStatement = factory2.createVariableStatement(undefined, varDeclList); setOriginalNode(varStatement, node); setTextRange(varStatement, location); setCommentRange(varStatement, node); const statements = [varStatement]; addRange(statements, decorationStatements); addConstructorDecorationStatement(statements, node); if (isExport) { if (isDefault) { const exportStatement = factory2.createExportDefault(declName); statements.push(exportStatement); } else { const exportStatement = factory2.createExternalModuleExport(factory2.getDeclarationName(node)); statements.push(exportStatement); } } return statements; } function visitClassExpression(node) { return factory2.updateClassExpression(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), node.name, undefined, visitNodes2(node.heritageClauses, visitor, isHeritageClause), visitNodes2(node.members, visitor, isClassElement)); } function visitConstructorDeclaration(node) { return factory2.updateConstructorDeclaration(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), visitNodes2(node.parameters, visitor, isParameter), visitNode(node.body, visitor, isBlock)); } function finishClassElement(updated, original) { if (updated !== original) { setCommentRange(updated, original); setSourceMapRange(updated, moveRangePastModifiers(original)); } return updated; } function visitMethodDeclaration(node) { return finishClassElement(factory2.updateMethodDeclaration(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), node.asteriskToken, Debug.checkDefined(visitNode(node.name, visitor, isPropertyName)), undefined, undefined, visitNodes2(node.parameters, visitor, isParameter), undefined, visitNode(node.body, visitor, isBlock)), node); } function visitGetAccessorDeclaration(node) { return finishClassElement(factory2.updateGetAccessorDeclaration(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), Debug.checkDefined(visitNode(node.name, visitor, isPropertyName)), visitNodes2(node.parameters, visitor, isParameter), undefined, visitNode(node.body, visitor, isBlock)), node); } function visitSetAccessorDeclaration(node) { return finishClassElement(factory2.updateSetAccessorDeclaration(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), Debug.checkDefined(visitNode(node.name, visitor, isPropertyName)), visitNodes2(node.parameters, visitor, isParameter), visitNode(node.body, visitor, isBlock)), node); } function visitPropertyDeclaration(node) { if (node.flags & 33554432 || hasSyntacticModifier(node, 128)) { return; } return finishClassElement(factory2.updatePropertyDeclaration(node, visitNodes2(node.modifiers, modifierVisitor, isModifier), Debug.checkDefined(visitNode(node.name, visitor, isPropertyName)), undefined, undefined, visitNode(node.initializer, visitor, isExpression)), node); } function visitParameterDeclaration(node) { const updated = factory2.updateParameterDeclaration(node, elideNodes(factory2, node.modifiers), node.dotDotDotToken, Debug.checkDefined(visitNode(node.name, visitor, isBindingName)), undefined, undefined, visitNode(node.initializer, visitor, isExpression)); if (updated !== node) { setCommentRange(updated, node); setTextRange(updated, moveRangePastModifiers(node)); setSourceMapRange(updated, moveRangePastModifiers(node)); setEmitFlags(updated.name, 64); } return updated; } function isSyntheticMetadataDecorator(node) { return isCallToHelper(node.expression, "___metadata"); } function transformAllDecoratorsOfDeclaration(allDecorators) { if (!allDecorators) { return; } const { false: decorators, true: metadata } = groupBy(allDecorators.decorators, isSyntheticMetadataDecorator); const decoratorExpressions = []; addRange(decoratorExpressions, map(decorators, transformDecorator)); addRange(decoratorExpressions, flatMap(allDecorators.parameters, transformDecoratorsOfParameter)); addRange(decoratorExpressions, map(metadata, transformDecorator)); return decoratorExpressions; } function addClassElementDecorationStatements(statements, node, isStatic2) { addRange(statements, map(generateClassElementDecorationExpressions(node, isStatic2), (expr) => factory2.createExpressionStatement(expr))); } function isDecoratedClassElement(member, isStaticElement, parent2) { return nodeOrChildIsDecorated(true, member, parent2) && isStaticElement === isStatic(member); } function getDecoratedClassElements(node, isStatic2) { return filter(node.members, (m) => isDecoratedClassElement(m, isStatic2, node)); } function generateClassElementDecorationExpressions(node, isStatic2) { const members = getDecoratedClassElements(node, isStatic2); let expressions; for (const member of members) { expressions = append(expressions, generateClassElementDecorationExpression(node, member)); } return expressions; } function generateClassElementDecorationExpression(node, member) { const allDecorators = getAllDecoratorsOfClassElement(member, node, true); const decoratorExpressions = transformAllDecoratorsOfDeclaration(allDecorators); if (!decoratorExpressions) { return; } const prefix = getClassMemberPrefix(node, member); const memberName = getExpressionForPropertyName(member, !hasSyntacticModifier(member, 128)); const descriptor = isPropertyDeclaration(member) && !hasAccessorModifier(member) ? factory2.createVoidZero() : factory2.createNull(); const helper = emitHelpers().createDecorateHelper(decoratorExpressions, prefix, memberName, descriptor); setEmitFlags(helper, 3072); setSourceMapRange(helper, moveRangePastModifiers(member)); return helper; } function addConstructorDecorationStatement(statements, node) { const expression = generateConstructorDecorationExpression(node); if (expression) { statements.push(setOriginalNode(factory2.createExpressionStatement(expression), node)); } } function generateConstructorDecorationExpression(node) { const allDecorators = getAllDecoratorsOfClass(node, true); const decoratorExpressions = transformAllDecoratorsOfDeclaration(allDecorators); if (!decoratorExpressions) { return; } const classAlias = classAliases && classAliases[getOriginalNodeId(node)]; const localName = languageVersion < 2 ? factory2.getInternalName(node, false, true) : factory2.getDeclarationName(node, false, true); const decorate = emitHelpers().createDecorateHelper(decoratorExpressions, localName); const expression = factory2.createAssignment(localName, classAlias ? factory2.createAssignment(classAlias, decorate) : decorate); setEmitFlags(expression, 3072); setSourceMapRange(expression, moveRangePastModifiers(node)); return expression; } function transformDecorator(decorator) { return Debug.checkDefined(visitNode(decorator.expression, visitor, isExpression)); } function transformDecoratorsOfParameter(decorators, parameterOffset) { let expressions; if (decorators) { expressions = []; for (const decorator of decorators) { const helper = emitHelpers().createParamHelper(transformDecorator(decorator), parameterOffset); setTextRange(helper, decorator.expression); setEmitFlags(helper, 3072); expressions.push(helper); } } return expressions; } function getExpressionForPropertyName(member, generateNameForComputedPropertyName) { const name = member.name; if (isPrivateIdentifier(name)) { return factory2.createIdentifier(""); } else if (isComputedPropertyName(name)) { return generateNameForComputedPropertyName && !isSimpleInlineableExpression(name.expression) ? factory2.getGeneratedNameForNode(name) : name.expression; } else if (isIdentifier(name)) { return factory2.createStringLiteral(idText(name)); } else { return factory2.cloneNode(name); } } function enableSubstitutionForClassAliases() { if (!classAliases) { context.enableSubstitution(80); classAliases = []; } } function getClassAliasIfNeeded(node) { if (resolver.hasNodeCheckFlag(node, 262144)) { enableSubstitutionForClassAliases(); const classAlias = factory2.createUniqueName(node.name && !isGeneratedIdentifier(node.name) ? idText(node.name) : "default"); classAliases[getOriginalNodeId(node)] = classAlias; hoistVariableDeclaration(classAlias); return classAlias; } } function getClassPrototype(node) { return factory2.createPropertyAccessExpression(factory2.getDeclarationName(node), "prototype"); } function getClassMemberPrefix(node, member) { return isStatic(member) ? factory2.getDeclarationName(node) : getClassPrototype(node); } function onSubstituteNode(hint, node) { node = previousOnSubstituteNode(hint, node); if (hint === 1) { return substituteExpression(node); } return node; } function substituteExpression(node) { switch (node.kind) { case 80: return substituteExpressionIdentifier(node); } return node; } function substituteExpressionIdentifier(node) { return trySubstituteClassAlias(node) ?? node; } function trySubstituteClassAlias(node) { if (classAliases) { if (resolver.hasNodeCheckFlag(node, 536870912)) { const declaration = resolver.getReferencedValueDeclaration(node); if (declaration) { const classAlias = classAliases[declaration.id]; if (classAlias) { const clone2 = factory2.cloneNode(classAlias); setSourceMapRange(clone2, node); setCommentRange(clone2, node); return clone2; } } } } return; } } function transformESDecorators(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers, startLexicalEnvironment, endLexicalEnvironment, hoistVariableDeclaration } = context; const languageVersion = getEmitScriptTarget(context.getCompilerOptions()); let top; let classInfo; let classThis; let classSuper; let pendingExpressions; let shouldTransformPrivateStaticElementsInFile; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { top = undefined; shouldTransformPrivateStaticElementsInFile = false; const visited = visitEachChild(node, visitor, context); addEmitHelpers(visited, context.readEmitHelpers()); if (shouldTransformPrivateStaticElementsInFile) { addInternalEmitFlags(visited, 32); shouldTransformPrivateStaticElementsInFile = false; } return visited; } function updateState() { classInfo = undefined; classThis = undefined; classSuper = undefined; switch (top == null ? undefined : top.kind) { case "class": classInfo = top.classInfo; break; case "class-element": classInfo = top.next.classInfo; classThis = top.classThis; classSuper = top.classSuper; break; case "name": const grandparent = top.next.next.next; if ((grandparent == null ? undefined : grandparent.kind) === "class-element") { classInfo = grandparent.next.classInfo; classThis = grandparent.classThis; classSuper = grandparent.classSuper; } break; } } function enterClass(classInfo2) { top = { kind: "class", next: top, classInfo: classInfo2, savedPendingExpressions: pendingExpressions }; pendingExpressions = undefined; updateState(); } function exitClass() { Debug.assert((top == null ? undefined : top.kind) === "class", "Incorrect value for top.kind.", () => `Expected top.kind to be 'class' but got '${top == null ? undefined : top.kind}' instead.`); pendingExpressions = top.savedPendingExpressions; top = top.next; updateState(); } function enterClassElement(node) { var _a, _b; Debug.assert((top == null ? undefined : top.kind) === "class", "Incorrect value for top.kind.", () => `Expected top.kind to be 'class' but got '${top == null ? undefined : top.kind}' instead.`); top = { kind: "class-element", next: top }; if (isClassStaticBlockDeclaration(node) || isPropertyDeclaration(node) && hasStaticModifier(node)) { top.classThis = (_a = top.next.classInfo) == null ? undefined : _a.classThis; top.classSuper = (_b = top.next.classInfo) == null ? undefined : _b.classSuper; } updateState(); } function exitClassElement() { var _a; Debug.assert((top == null ? undefined : top.kind) === "class-element", "Incorrect value for top.kind.", () => `Expected top.kind to be 'class-element' but got '${top == null ? undefined : top.kind}' instead.`); Debug.assert(((_a = top.next) == null ? undefined : _a.kind) === "class", "Incorrect value for top.next.kind.", () => { var _a2; return `Expected top.next.kind to be 'class' but got '${(_a2 = top.next) == null ? undefined : _a2.kind}' instead.`; }); top = top.next; updateState(); } function enterName() { Debug.assert((top == null ? undefined : top.kind) === "class-element", "Incorrect value for top.kind.", () => `Expected top.kind to be 'class-element' but got '${top == null ? undefined : top.kind}' instead.`); top = { kind: "name", next: top }; updateState(); } function exitName() { Debug.assert((top == null ? undefined : top.kind) === "name", "Incorrect value for top.kind.", () => `Expected top.kind to be 'name' but got '${top == null ? undefined : top.kind}' instead.`); top = top.next; updateState(); } function enterOther() { if ((top == null ? undefined : top.kind) === "other") { Debug.assert(!pendingExpressions); top.depth++; } else { top = { kind: "other", next: top, depth: 0, savedPendingExpressions: pendingExpressions }; pendingExpressions = undefined; updateState(); } } function exitOther() { Debug.assert((top == null ? undefined : top.kind) === "other", "Incorrect value for top.kind.", () => `Expected top.kind to be 'other' but got '${top == null ? undefined : top.kind}' instead.`); if (top.depth > 0) { Debug.assert(!pendingExpressions); top.depth--; } else { pendingExpressions = top.savedPendingExpressions; top = top.next; updateState(); } } function shouldVisitNode(node) { return !!(node.transformFlags & 33554432) || !!classThis && !!(node.transformFlags & 16384) || !!classThis && !!classSuper && !!(node.transformFlags & 134217728); } function visitor(node) { if (!shouldVisitNode(node)) { return node; } switch (node.kind) { case 171: return Debug.fail("Use `modifierVisitor` instead."); case 264: return visitClassDeclaration(node); case 232: return visitClassExpression(node); case 177: case 173: case 176: return Debug.fail("Not supported outside of a class. Use 'classElementVisitor' instead."); case 170: return visitParameterDeclaration(node); case 227: return visitBinaryExpression(node, false); case 304: return visitPropertyAssignment(node); case 261: return visitVariableDeclaration(node); case 209: return visitBindingElement(node); case 278: return visitExportAssignment(node); case 110: return visitThisExpression(node); case 249: return visitForStatement(node); case 245: return visitExpressionStatement(node); case 357: return visitCommaListExpression(node, false); case 218: return visitParenthesizedExpression(node, false); case 356: return visitPartiallyEmittedExpression(node, false); case 214: return visitCallExpression(node); case 216: return visitTaggedTemplateExpression(node); case 225: case 226: return visitPreOrPostfixUnaryExpression(node, false); case 212: return visitPropertyAccessExpression(node); case 213: return visitElementAccessExpression(node); case 168: return visitComputedPropertyName(node); case 175: case 179: case 178: case 219: case 263: { enterOther(); const result = visitEachChild(node, fallbackVisitor, context); exitOther(); return result; } default: return visitEachChild(node, fallbackVisitor, context); } } function fallbackVisitor(node) { switch (node.kind) { case 171: return; default: return visitor(node); } } function modifierVisitor(node) { switch (node.kind) { case 171: return; default: return node; } } function classElementVisitor(node) { switch (node.kind) { case 177: return visitConstructorDeclaration(node); case 175: return visitMethodDeclaration(node); case 178: return visitGetAccessorDeclaration(node); case 179: return visitSetAccessorDeclaration(node); case 173: return visitPropertyDeclaration(node); case 176: return visitClassStaticBlockDeclaration(node); default: return visitor(node); } } function discardedValueVisitor(node) { switch (node.kind) { case 225: case 226: return visitPreOrPostfixUnaryExpression(node, true); case 227: return visitBinaryExpression(node, true); case 357: return visitCommaListExpression(node, true); case 218: return visitParenthesizedExpression(node, true); default: return visitor(node); } } function getHelperVariableName(node) { let declarationName = node.name && isIdentifier(node.name) && !isGeneratedIdentifier(node.name) ? idText(node.name) : node.name && isPrivateIdentifier(node.name) && !isGeneratedIdentifier(node.name) ? idText(node.name).slice(1) : node.name && isStringLiteral(node.name) && isIdentifierText(node.name.text, 99) ? node.name.text : isClassLike(node) ? "class" : "member"; if (isGetAccessor(node)) declarationName = `get_${declarationName}`; if (isSetAccessor(node)) declarationName = `set_${declarationName}`; if (node.name && isPrivateIdentifier(node.name)) declarationName = `private_${declarationName}`; if (isStatic(node)) declarationName = `static_${declarationName}`; return "_" + declarationName; } function createHelperVariable(node, suffix) { return factory2.createUniqueName(`${getHelperVariableName(node)}_${suffix}`, 16 | 8); } function createLet(name, initializer) { return factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(name, undefined, undefined, initializer) ], 1)); } function createClassInfo(node) { const metadataReference = factory2.createUniqueName("_metadata", 16 | 32); let instanceMethodExtraInitializersName; let staticMethodExtraInitializersName; let hasStaticInitializers = false; let hasNonAmbientInstanceFields = false; let hasStaticPrivateClassElements = false; let classThis2; let pendingStaticInitializers; let pendingInstanceInitializers; if (nodeIsDecorated(false, node)) { const needsUniqueClassThis = some(node.members, (member) => (isPrivateIdentifierClassElementDeclaration(member) || isAutoAccessorPropertyDeclaration(member)) && hasStaticModifier(member)); classThis2 = factory2.createUniqueName("_classThis", needsUniqueClassThis ? 16 | 8 : 16 | 32); } for (const member of node.members) { if (isMethodOrAccessor(member) && nodeOrChildIsDecorated(false, member, node)) { if (hasStaticModifier(member)) { if (!staticMethodExtraInitializersName) { staticMethodExtraInitializersName = factory2.createUniqueName("_staticExtraInitializers", 16 | 32); const initializer = emitHelpers().createRunInitializersHelper(classThis2 ?? factory2.createThis(), staticMethodExtraInitializersName); setSourceMapRange(initializer, node.name ?? moveRangePastDecorators(node)); pendingStaticInitializers ?? (pendingStaticInitializers = []); pendingStaticInitializers.push(initializer); } } else { if (!instanceMethodExtraInitializersName) { instanceMethodExtraInitializersName = factory2.createUniqueName("_instanceExtraInitializers", 16 | 32); const initializer = emitHelpers().createRunInitializersHelper(factory2.createThis(), instanceMethodExtraInitializersName); setSourceMapRange(initializer, node.name ?? moveRangePastDecorators(node)); pendingInstanceInitializers ?? (pendingInstanceInitializers = []); pendingInstanceInitializers.push(initializer); } instanceMethodExtraInitializersName ?? (instanceMethodExtraInitializersName = factory2.createUniqueName("_instanceExtraInitializers", 16 | 32)); } } if (isClassStaticBlockDeclaration(member)) { if (!isClassNamedEvaluationHelperBlock(member)) { hasStaticInitializers = true; } } else if (isPropertyDeclaration(member)) { if (hasStaticModifier(member)) { hasStaticInitializers || (hasStaticInitializers = !!member.initializer || hasDecorators(member)); } else { hasNonAmbientInstanceFields || (hasNonAmbientInstanceFields = !isAmbientPropertyDeclaration(member)); } } if ((isPrivateIdentifierClassElementDeclaration(member) || isAutoAccessorPropertyDeclaration(member)) && hasStaticModifier(member)) { hasStaticPrivateClassElements = true; } if (staticMethodExtraInitializersName && instanceMethodExtraInitializersName && hasStaticInitializers && hasNonAmbientInstanceFields && hasStaticPrivateClassElements) { break; } } return { class: node, classThis: classThis2, metadataReference, instanceMethodExtraInitializersName, staticMethodExtraInitializersName, hasStaticInitializers, hasNonAmbientInstanceFields, hasStaticPrivateClassElements, pendingStaticInitializers, pendingInstanceInitializers }; } function transformClassLike(node) { startLexicalEnvironment(); if (!classHasDeclaredOrExplicitlyAssignedName(node) && classOrConstructorParameterIsDecorated(false, node)) { node = injectClassNamedEvaluationHelperBlockIfMissing(context, node, factory2.createStringLiteral("")); } const classReference = factory2.getLocalName(node, false, false, true); const classInfo2 = createClassInfo(node); const classDefinitionStatements = []; let leadingBlockStatements; let trailingBlockStatements; let syntheticConstructor; let heritageClauses; let shouldTransformPrivateStaticElementsInClass = false; const classDecorators = transformAllDecoratorsOfDeclaration(getAllDecoratorsOfClass(node, false)); if (classDecorators) { classInfo2.classDecoratorsName = factory2.createUniqueName("_classDecorators", 16 | 32); classInfo2.classDescriptorName = factory2.createUniqueName("_classDescriptor", 16 | 32); classInfo2.classExtraInitializersName = factory2.createUniqueName("_classExtraInitializers", 16 | 32); Debug.assertIsDefined(classInfo2.classThis); classDefinitionStatements.push(createLet(classInfo2.classDecoratorsName, factory2.createArrayLiteralExpression(classDecorators)), createLet(classInfo2.classDescriptorName), createLet(classInfo2.classExtraInitializersName, factory2.createArrayLiteralExpression()), createLet(classInfo2.classThis)); if (classInfo2.hasStaticPrivateClassElements) { shouldTransformPrivateStaticElementsInClass = true; shouldTransformPrivateStaticElementsInFile = true; } } const extendsClause = getHeritageClause(node.heritageClauses, 96); const extendsElement = extendsClause && firstOrUndefined(extendsClause.types); const extendsExpression = extendsElement && visitNode(extendsElement.expression, visitor, isExpression); if (extendsExpression) { classInfo2.classSuper = factory2.createUniqueName("_classSuper", 16 | 32); const unwrapped = skipOuterExpressions(extendsExpression); const safeExtendsExpression = isClassExpression(unwrapped) && !unwrapped.name || isFunctionExpression(unwrapped) && !unwrapped.name || isArrowFunction(unwrapped) ? factory2.createComma(factory2.createNumericLiteral(0), extendsExpression) : extendsExpression; classDefinitionStatements.push(createLet(classInfo2.classSuper, safeExtendsExpression)); const updatedExtendsElement = factory2.updateExpressionWithTypeArguments(extendsElement, classInfo2.classSuper, undefined); const updatedExtendsClause = factory2.updateHeritageClause(extendsClause, [updatedExtendsElement]); heritageClauses = factory2.createNodeArray([updatedExtendsClause]); } const renamedClassThis = classInfo2.classThis ?? factory2.createThis(); enterClass(classInfo2); leadingBlockStatements = append(leadingBlockStatements, createMetadata(classInfo2.metadataReference, classInfo2.classSuper)); let members = node.members; members = visitNodes2(members, (node2) => isConstructorDeclaration(node2) ? node2 : classElementVisitor(node2), isClassElement); members = visitNodes2(members, (node2) => isConstructorDeclaration(node2) ? classElementVisitor(node2) : node2, isClassElement); if (pendingExpressions) { let outerThis; for (let expression of pendingExpressions) { expression = visitNode(expression, function thisVisitor(node2) { if (!(node2.transformFlags & 16384)) { return node2; } switch (node2.kind) { case 110: if (!outerThis) { outerThis = factory2.createUniqueName("_outerThis", 16); classDefinitionStatements.unshift(createLet(outerThis, factory2.createThis())); } return outerThis; default: return visitEachChild(node2, thisVisitor, context); } }, isExpression); const statement = factory2.createExpressionStatement(expression); leadingBlockStatements = append(leadingBlockStatements, statement); } pendingExpressions = undefined; } exitClass(); if (some(classInfo2.pendingInstanceInitializers) && !getFirstConstructorWithBody(node)) { const initializerStatements = prepareConstructor(node, classInfo2); if (initializerStatements) { const extendsClauseElement = getEffectiveBaseTypeNode(node); const isDerivedClass = !!(extendsClauseElement && skipOuterExpressions(extendsClauseElement.expression).kind !== 106); const constructorStatements = []; if (isDerivedClass) { const spreadArguments = factory2.createSpreadElement(factory2.createIdentifier("arguments")); const superCall = factory2.createCallExpression(factory2.createSuper(), undefined, [spreadArguments]); constructorStatements.push(factory2.createExpressionStatement(superCall)); } addRange(constructorStatements, initializerStatements); const constructorBody = factory2.createBlock(constructorStatements, true); syntheticConstructor = factory2.createConstructorDeclaration(undefined, [], constructorBody); } } if (classInfo2.staticMethodExtraInitializersName) { classDefinitionStatements.push(createLet(classInfo2.staticMethodExtraInitializersName, factory2.createArrayLiteralExpression())); } if (classInfo2.instanceMethodExtraInitializersName) { classDefinitionStatements.push(createLet(classInfo2.instanceMethodExtraInitializersName, factory2.createArrayLiteralExpression())); } if (classInfo2.memberInfos) { forEachEntry(classInfo2.memberInfos, (memberInfo, member) => { if (isStatic(member)) { classDefinitionStatements.push(createLet(memberInfo.memberDecoratorsName)); if (memberInfo.memberInitializersName) { classDefinitionStatements.push(createLet(memberInfo.memberInitializersName, factory2.createArrayLiteralExpression())); } if (memberInfo.memberExtraInitializersName) { classDefinitionStatements.push(createLet(memberInfo.memberExtraInitializersName, factory2.createArrayLiteralExpression())); } if (memberInfo.memberDescriptorName) { classDefinitionStatements.push(createLet(memberInfo.memberDescriptorName)); } } }); } if (classInfo2.memberInfos) { forEachEntry(classInfo2.memberInfos, (memberInfo, member) => { if (!isStatic(member)) { classDefinitionStatements.push(createLet(memberInfo.memberDecoratorsName)); if (memberInfo.memberInitializersName) { classDefinitionStatements.push(createLet(memberInfo.memberInitializersName, factory2.createArrayLiteralExpression())); } if (memberInfo.memberExtraInitializersName) { classDefinitionStatements.push(createLet(memberInfo.memberExtraInitializersName, factory2.createArrayLiteralExpression())); } if (memberInfo.memberDescriptorName) { classDefinitionStatements.push(createLet(memberInfo.memberDescriptorName)); } } }); } leadingBlockStatements = addRange(leadingBlockStatements, classInfo2.staticNonFieldDecorationStatements); leadingBlockStatements = addRange(leadingBlockStatements, classInfo2.nonStaticNonFieldDecorationStatements); leadingBlockStatements = addRange(leadingBlockStatements, classInfo2.staticFieldDecorationStatements); leadingBlockStatements = addRange(leadingBlockStatements, classInfo2.nonStaticFieldDecorationStatements); if (classInfo2.classDescriptorName && classInfo2.classDecoratorsName && classInfo2.classExtraInitializersName && classInfo2.classThis) { leadingBlockStatements ?? (leadingBlockStatements = []); const valueProperty = factory2.createPropertyAssignment("value", renamedClassThis); const classDescriptor = factory2.createObjectLiteralExpression([valueProperty]); const classDescriptorAssignment = factory2.createAssignment(classInfo2.classDescriptorName, classDescriptor); const classNameReference = factory2.createPropertyAccessExpression(renamedClassThis, "name"); const esDecorateHelper2 = emitHelpers().createESDecorateHelper(factory2.createNull(), classDescriptorAssignment, classInfo2.classDecoratorsName, { kind: "class", name: classNameReference, metadata: classInfo2.metadataReference }, factory2.createNull(), classInfo2.classExtraInitializersName); const esDecorateStatement = factory2.createExpressionStatement(esDecorateHelper2); setSourceMapRange(esDecorateStatement, moveRangePastDecorators(node)); leadingBlockStatements.push(esDecorateStatement); const classDescriptorValueReference = factory2.createPropertyAccessExpression(classInfo2.classDescriptorName, "value"); const classThisAssignment = factory2.createAssignment(classInfo2.classThis, classDescriptorValueReference); const classReferenceAssignment = factory2.createAssignment(classReference, classThisAssignment); leadingBlockStatements.push(factory2.createExpressionStatement(classReferenceAssignment)); } leadingBlockStatements.push(createSymbolMetadata(renamedClassThis, classInfo2.metadataReference)); if (some(classInfo2.pendingStaticInitializers)) { for (const initializer of classInfo2.pendingStaticInitializers) { const initializerStatement = factory2.createExpressionStatement(initializer); setSourceMapRange(initializerStatement, getSourceMapRange(initializer)); trailingBlockStatements = append(trailingBlockStatements, initializerStatement); } classInfo2.pendingStaticInitializers = undefined; } if (classInfo2.classExtraInitializersName) { const runClassInitializersHelper = emitHelpers().createRunInitializersHelper(renamedClassThis, classInfo2.classExtraInitializersName); const runClassInitializersStatement = factory2.createExpressionStatement(runClassInitializersHelper); setSourceMapRange(runClassInitializersStatement, node.name ?? moveRangePastDecorators(node)); trailingBlockStatements = append(trailingBlockStatements, runClassInitializersStatement); } if (leadingBlockStatements && trailingBlockStatements && !classInfo2.hasStaticInitializers) { addRange(leadingBlockStatements, trailingBlockStatements); trailingBlockStatements = undefined; } const leadingStaticBlock = leadingBlockStatements && factory2.createClassStaticBlockDeclaration(factory2.createBlock(leadingBlockStatements, true)); if (leadingStaticBlock && shouldTransformPrivateStaticElementsInClass) { setInternalEmitFlags(leadingStaticBlock, 32); } const trailingStaticBlock = trailingBlockStatements && factory2.createClassStaticBlockDeclaration(factory2.createBlock(trailingBlockStatements, true)); if (leadingStaticBlock || syntheticConstructor || trailingStaticBlock) { const newMembers = []; const existingNamedEvaluationHelperBlockIndex = members.findIndex(isClassNamedEvaluationHelperBlock); if (leadingStaticBlock) { addRange(newMembers, members, 0, existingNamedEvaluationHelperBlockIndex + 1); newMembers.push(leadingStaticBlock); addRange(newMembers, members, existingNamedEvaluationHelperBlockIndex + 1); } else { addRange(newMembers, members); } if (syntheticConstructor) { newMembers.push(syntheticConstructor); } if (trailingStaticBlock) { newMembers.push(trailingStaticBlock); } members = setTextRange(factory2.createNodeArray(newMembers), members); } const lexicalEnvironment = endLexicalEnvironment(); let classExpression; if (classDecorators) { classExpression = factory2.createClassExpression(undefined, undefined, undefined, heritageClauses, members); if (classInfo2.classThis) { classExpression = injectClassThisAssignmentIfMissing(factory2, classExpression, classInfo2.classThis); } const classReferenceDeclaration = factory2.createVariableDeclaration(classReference, undefined, undefined, classExpression); const classReferenceVarDeclList = factory2.createVariableDeclarationList([classReferenceDeclaration]); const returnExpr = classInfo2.classThis ? factory2.createAssignment(classReference, classInfo2.classThis) : classReference; classDefinitionStatements.push(factory2.createVariableStatement(undefined, classReferenceVarDeclList), factory2.createReturnStatement(returnExpr)); } else { classExpression = factory2.createClassExpression(undefined, node.name, undefined, heritageClauses, members); classDefinitionStatements.push(factory2.createReturnStatement(classExpression)); } if (shouldTransformPrivateStaticElementsInClass) { addInternalEmitFlags(classExpression, 32); for (const member of classExpression.members) { if ((isPrivateIdentifierClassElementDeclaration(member) || isAutoAccessorPropertyDeclaration(member)) && hasStaticModifier(member)) { addInternalEmitFlags(member, 32); } } } setOriginalNode(classExpression, node); return factory2.createImmediatelyInvokedArrowFunction(factory2.mergeLexicalEnvironment(classDefinitionStatements, lexicalEnvironment)); } function isDecoratedClassLike(node) { return classOrConstructorParameterIsDecorated(false, node) || childIsDecorated(false, node); } function visitClassDeclaration(node) { if (isDecoratedClassLike(node)) { const statements = []; const originalClass = getOriginalNode(node, isClassLike) ?? node; const className = originalClass.name ? factory2.createStringLiteralFromNode(originalClass.name) : factory2.createStringLiteral("default"); const isExport = hasSyntacticModifier(node, 32); const isDefault = hasSyntacticModifier(node, 2048); if (!node.name) { node = injectClassNamedEvaluationHelperBlockIfMissing(context, node, className); } if (isExport && isDefault) { const iife = transformClassLike(node); if (node.name) { const varDecl = factory2.createVariableDeclaration(factory2.getLocalName(node), undefined, undefined, iife); setOriginalNode(varDecl, node); const varDecls = factory2.createVariableDeclarationList([varDecl], 1); const varStatement = factory2.createVariableStatement(undefined, varDecls); statements.push(varStatement); const exportStatement = factory2.createExportDefault(factory2.getDeclarationName(node)); setOriginalNode(exportStatement, node); setCommentRange(exportStatement, getCommentRange(node)); setSourceMapRange(exportStatement, moveRangePastDecorators(node)); statements.push(exportStatement); } else { const exportStatement = factory2.createExportDefault(iife); setOriginalNode(exportStatement, node); setCommentRange(exportStatement, getCommentRange(node)); setSourceMapRange(exportStatement, moveRangePastDecorators(node)); statements.push(exportStatement); } } else { Debug.assertIsDefined(node.name, "A class declaration that is not a default export must have a name."); const iife = transformClassLike(node); const modifierVisitorNoExport = isExport ? (node2) => isExportModifier(node2) ? undefined : modifierVisitor(node2) : modifierVisitor; const modifiers = visitNodes2(node.modifiers, modifierVisitorNoExport, isModifier); const declName = factory2.getLocalName(node, false, true); const varDecl = factory2.createVariableDeclaration(declName, undefined, undefined, iife); setOriginalNode(varDecl, node); const varDecls = factory2.createVariableDeclarationList([varDecl], 1); const varStatement = factory2.createVariableStatement(modifiers, varDecls); setOriginalNode(varStatement, node); setCommentRange(varStatement, getCommentRange(node)); statements.push(varStatement); if (isExport) { const exportStatement = factory2.createExternalModuleExport(declName); setOriginalNode(exportStatement, node); statements.push(exportStatement); } } return singleOrMany(statements); } else { const modifiers = visitNodes2(node.modifiers, modifierVisitor, isModifier); const heritageClauses = visitNodes2(node.heritageClauses, visitor, isHeritageClause); enterClass(undefined); const members = visitNodes2(node.members, classElementVisitor, isClassElement); exitClass(); return factory2.updateClassDeclaration(node, modifiers, node.name, undefined, heritageClauses, members); } } function visitClassExpression(node) { if (isDecoratedClassLike(node)) { const iife = transformClassLike(node); setOriginalNode(iife, node); return iife; } else { const modifiers = visitNodes2(node.modifiers, modifierVisitor, isModifier); const heritageClauses = visitNodes2(node.heritageClauses, visitor, isHeritageClause); enterClass(undefined); const members = visitNodes2(node.members, classElementVisitor, isClassElement); exitClass(); return factory2.updateClassExpression(node, modifiers, node.name, undefined, heritageClauses, members); } } function prepareConstructor(_parent, classInfo2) { if (some(classInfo2.pendingInstanceInitializers)) { const statements = []; statements.push(factory2.createExpressionStatement(factory2.inlineExpressions(classInfo2.pendingInstanceInitializers))); classInfo2.pendingInstanceInitializers = undefined; return statements; } } function transformConstructorBodyWorker(statementsOut, statementsIn, statementOffset, superPath, superPathDepth, initializerStatements) { const superStatementIndex = superPath[superPathDepth]; const superStatement = statementsIn[superStatementIndex]; addRange(statementsOut, visitNodes2(statementsIn, visitor, isStatement, statementOffset, superStatementIndex - statementOffset)); if (isTryStatement(superStatement)) { const tryBlockStatements = []; transformConstructorBodyWorker(tryBlockStatements, superStatement.tryBlock.statements, 0, superPath, superPathDepth + 1, initializerStatements); const tryBlockStatementsArray = factory2.createNodeArray(tryBlockStatements); setTextRange(tryBlockStatementsArray, superStatement.tryBlock.statements); statementsOut.push(factory2.updateTryStatement(superStatement, factory2.updateBlock(superStatement.tryBlock, tryBlockStatements), visitNode(superStatement.catchClause, visitor, isCatchClause), visitNode(superStatement.finallyBlock, visitor, isBlock))); } else { addRange(statementsOut, visitNodes2(statementsIn, visitor, isStatement, superStatementIndex, 1)); addRange(statementsOut, initializerStatements); } addRange(statementsOut, visitNodes2(statementsIn, visitor, isStatement, superStatementIndex + 1)); } function visitConstructorDeclaration(node) { enterClassElement(node); const modifiers = visitNodes2(node.modifiers, modifierVisitor, isModifier); const parameters = visitNodes2(node.parameters, visitor, isParameter); let body; if (node.body && classInfo) { const initializerStatements = prepareConstructor(classInfo.class, classInfo); if (initializerStatements) { const statements = []; const nonPrologueStart = factory2.copyPrologue(node.body.statements, statements, false, visitor); const superStatementIndices = findSuperStatementIndexPath(node.body.statements, nonPrologueStart); if (superStatementIndices.length > 0) { transformConstructorBodyWorker(statements, node.body.statements, nonPrologueStart, superStatementIndices, 0, initializerStatements); } else { addRange(statements, initializerStatements); addRange(statements, visitNodes2(node.body.statements, visitor, isStatement)); } body = factory2.createBlock(statements, true); setOriginalNode(body, node.body); setTextRange(body, node.body); } } body ?? (body = visitNode(node.body, visitor, isBlock)); exitClassElement(); return factory2.updateConstructorDeclaration(node, modifiers, parameters, body); } function finishClassElement(updated, original) { if (updated !== original) { setCommentRange(updated, original); setSourceMapRange(updated, moveRangePastDecorators(original)); } return updated; } function partialTransformClassElement(member, classInfo2, createDescriptor) { let referencedName; let name; let initializersName; let extraInitializersName; let thisArg; let descriptorName; if (!classInfo2) { const modifiers2 = visitNodes2(member.modifiers, modifierVisitor, isModifier); enterName(); name = visitPropertyName(member.name); exitName(); return { modifiers: modifiers2, referencedName, name, initializersName, descriptorName, thisArg }; } const memberDecorators = transformAllDecoratorsOfDeclaration(getAllDecoratorsOfClassElement(member, classInfo2.class, false)); const modifiers = visitNodes2(member.modifiers, modifierVisitor, isModifier); if (memberDecorators) { const memberDecoratorsName = createHelperVariable(member, "decorators"); const memberDecoratorsArray = factory2.createArrayLiteralExpression(memberDecorators); const memberDecoratorsAssignment = factory2.createAssignment(memberDecoratorsName, memberDecoratorsArray); const memberInfo = { memberDecoratorsName }; classInfo2.memberInfos ?? (classInfo2.memberInfos = /* @__PURE__ */ new Map); classInfo2.memberInfos.set(member, memberInfo); pendingExpressions ?? (pendingExpressions = []); pendingExpressions.push(memberDecoratorsAssignment); const statements = isMethodOrAccessor(member) || isAutoAccessorPropertyDeclaration(member) ? isStatic(member) ? classInfo2.staticNonFieldDecorationStatements ?? (classInfo2.staticNonFieldDecorationStatements = []) : classInfo2.nonStaticNonFieldDecorationStatements ?? (classInfo2.nonStaticNonFieldDecorationStatements = []) : isPropertyDeclaration(member) && !isAutoAccessorPropertyDeclaration(member) ? isStatic(member) ? classInfo2.staticFieldDecorationStatements ?? (classInfo2.staticFieldDecorationStatements = []) : classInfo2.nonStaticFieldDecorationStatements ?? (classInfo2.nonStaticFieldDecorationStatements = []) : Debug.fail(); const kind = isGetAccessorDeclaration(member) ? "getter" : isSetAccessorDeclaration(member) ? "setter" : isMethodDeclaration(member) ? "method" : isAutoAccessorPropertyDeclaration(member) ? "accessor" : isPropertyDeclaration(member) ? "field" : Debug.fail(); let propertyName; if (isIdentifier(member.name) || isPrivateIdentifier(member.name)) { propertyName = { computed: false, name: member.name }; } else if (isPropertyNameLiteral(member.name)) { propertyName = { computed: true, name: factory2.createStringLiteralFromNode(member.name) }; } else { const expression = member.name.expression; if (isPropertyNameLiteral(expression) && !isIdentifier(expression)) { propertyName = { computed: true, name: factory2.createStringLiteralFromNode(expression) }; } else { enterName(); ({ referencedName, name } = visitReferencedPropertyName(member.name)); propertyName = { computed: true, name: referencedName }; exitName(); } } const context2 = { kind, name: propertyName, static: isStatic(member), private: isPrivateIdentifier(member.name), access: { get: isPropertyDeclaration(member) || isGetAccessorDeclaration(member) || isMethodDeclaration(member), set: isPropertyDeclaration(member) || isSetAccessorDeclaration(member) }, metadata: classInfo2.metadataReference }; if (isMethodOrAccessor(member)) { const methodExtraInitializersName = isStatic(member) ? classInfo2.staticMethodExtraInitializersName : classInfo2.instanceMethodExtraInitializersName; Debug.assertIsDefined(methodExtraInitializersName); let descriptor; if (isPrivateIdentifierClassElementDeclaration(member) && createDescriptor) { descriptor = createDescriptor(member, visitNodes2(modifiers, (node) => tryCast(node, isAsyncModifier), isModifier)); memberInfo.memberDescriptorName = descriptorName = createHelperVariable(member, "descriptor"); descriptor = factory2.createAssignment(descriptorName, descriptor); } const esDecorateExpression = emitHelpers().createESDecorateHelper(factory2.createThis(), descriptor ?? factory2.createNull(), memberDecoratorsName, context2, factory2.createNull(), methodExtraInitializersName); const esDecorateStatement = factory2.createExpressionStatement(esDecorateExpression); setSourceMapRange(esDecorateStatement, moveRangePastDecorators(member)); statements.push(esDecorateStatement); } else if (isPropertyDeclaration(member)) { initializersName = memberInfo.memberInitializersName ?? (memberInfo.memberInitializersName = createHelperVariable(member, "initializers")); extraInitializersName = memberInfo.memberExtraInitializersName ?? (memberInfo.memberExtraInitializersName = createHelperVariable(member, "extraInitializers")); if (isStatic(member)) { thisArg = classInfo2.classThis; } let descriptor; if (isPrivateIdentifierClassElementDeclaration(member) && hasAccessorModifier(member) && createDescriptor) { descriptor = createDescriptor(member, undefined); memberInfo.memberDescriptorName = descriptorName = createHelperVariable(member, "descriptor"); descriptor = factory2.createAssignment(descriptorName, descriptor); } const esDecorateExpression = emitHelpers().createESDecorateHelper(isAutoAccessorPropertyDeclaration(member) ? factory2.createThis() : factory2.createNull(), descriptor ?? factory2.createNull(), memberDecoratorsName, context2, initializersName, extraInitializersName); const esDecorateStatement = factory2.createExpressionStatement(esDecorateExpression); setSourceMapRange(esDecorateStatement, moveRangePastDecorators(member)); statements.push(esDecorateStatement); } } if (name === undefined) { enterName(); name = visitPropertyName(member.name); exitName(); } if (!some(modifiers) && (isMethodDeclaration(member) || isPropertyDeclaration(member))) { setEmitFlags(name, 1024); } return { modifiers, referencedName, name, initializersName, extraInitializersName, descriptorName, thisArg }; } function visitMethodDeclaration(node) { enterClassElement(node); const { modifiers, name, descriptorName } = partialTransformClassElement(node, classInfo, createMethodDescriptorObject); if (descriptorName) { exitClassElement(); return finishClassElement(createMethodDescriptorForwarder(modifiers, name, descriptorName), node); } else { const parameters = visitNodes2(node.parameters, visitor, isParameter); const body = visitNode(node.body, visitor, isBlock); exitClassElement(); return finishClassElement(factory2.updateMethodDeclaration(node, modifiers, node.asteriskToken, name, undefined, undefined, parameters, undefined, body), node); } } function visitGetAccessorDeclaration(node) { enterClassElement(node); const { modifiers, name, descriptorName } = partialTransformClassElement(node, classInfo, createGetAccessorDescriptorObject); if (descriptorName) { exitClassElement(); return finishClassElement(createGetAccessorDescriptorForwarder(modifiers, name, descriptorName), node); } else { const parameters = visitNodes2(node.parameters, visitor, isParameter); const body = visitNode(node.body, visitor, isBlock); exitClassElement(); return finishClassElement(factory2.updateGetAccessorDeclaration(node, modifiers, name, parameters, undefined, body), node); } } function visitSetAccessorDeclaration(node) { enterClassElement(node); const { modifiers, name, descriptorName } = partialTransformClassElement(node, classInfo, createSetAccessorDescriptorObject); if (descriptorName) { exitClassElement(); return finishClassElement(createSetAccessorDescriptorForwarder(modifiers, name, descriptorName), node); } else { const parameters = visitNodes2(node.parameters, visitor, isParameter); const body = visitNode(node.body, visitor, isBlock); exitClassElement(); return finishClassElement(factory2.updateSetAccessorDeclaration(node, modifiers, name, parameters, body), node); } } function visitClassStaticBlockDeclaration(node) { enterClassElement(node); let result; if (isClassNamedEvaluationHelperBlock(node)) { result = visitEachChild(node, visitor, context); } else if (isClassThisAssignmentBlock(node)) { const savedClassThis = classThis; classThis = undefined; result = visitEachChild(node, visitor, context); classThis = savedClassThis; } else { node = visitEachChild(node, visitor, context); result = node; if (classInfo) { classInfo.hasStaticInitializers = true; if (some(classInfo.pendingStaticInitializers)) { const statements = []; for (const initializer of classInfo.pendingStaticInitializers) { const initializerStatement = factory2.createExpressionStatement(initializer); setSourceMapRange(initializerStatement, getSourceMapRange(initializer)); statements.push(initializerStatement); } const body = factory2.createBlock(statements, true); const staticBlock = factory2.createClassStaticBlockDeclaration(body); result = [staticBlock, result]; classInfo.pendingStaticInitializers = undefined; } } } exitClassElement(); return result; } function visitPropertyDeclaration(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node, canIgnoreEmptyStringLiteralInAssignedName(node.initializer)); } enterClassElement(node); Debug.assert(!isAmbientPropertyDeclaration(node), "Not yet implemented."); const { modifiers, name, initializersName, extraInitializersName, descriptorName, thisArg } = partialTransformClassElement(node, classInfo, hasAccessorModifier(node) ? createAccessorPropertyDescriptorObject : undefined); startLexicalEnvironment(); let initializer = visitNode(node.initializer, visitor, isExpression); if (initializersName) { initializer = emitHelpers().createRunInitializersHelper(thisArg ?? factory2.createThis(), initializersName, initializer ?? factory2.createVoidZero()); } if (isStatic(node) && classInfo && initializer) { classInfo.hasStaticInitializers = true; } const declarations = endLexicalEnvironment(); if (some(declarations)) { initializer = factory2.createImmediatelyInvokedArrowFunction([ ...declarations, factory2.createReturnStatement(initializer) ]); } if (classInfo) { if (isStatic(node)) { initializer = injectPendingInitializers(classInfo, true, initializer); if (extraInitializersName) { classInfo.pendingStaticInitializers ?? (classInfo.pendingStaticInitializers = []); classInfo.pendingStaticInitializers.push(emitHelpers().createRunInitializersHelper(classInfo.classThis ?? factory2.createThis(), extraInitializersName)); } } else { initializer = injectPendingInitializers(classInfo, false, initializer); if (extraInitializersName) { classInfo.pendingInstanceInitializers ?? (classInfo.pendingInstanceInitializers = []); classInfo.pendingInstanceInitializers.push(emitHelpers().createRunInitializersHelper(factory2.createThis(), extraInitializersName)); } } } exitClassElement(); if (hasAccessorModifier(node) && descriptorName) { const commentRange = getCommentRange(node); const sourceMapRange = getSourceMapRange(node); const name2 = node.name; let getterName = name2; let setterName = name2; if (isComputedPropertyName(name2) && !isSimpleInlineableExpression(name2.expression)) { const cacheAssignment = findComputedPropertyNameCacheAssignment(name2); if (cacheAssignment) { getterName = factory2.updateComputedPropertyName(name2, visitNode(name2.expression, visitor, isExpression)); setterName = factory2.updateComputedPropertyName(name2, cacheAssignment.left); } else { const temp = factory2.createTempVariable(hoistVariableDeclaration); setSourceMapRange(temp, name2.expression); const expression = visitNode(name2.expression, visitor, isExpression); const assignment = factory2.createAssignment(temp, expression); setSourceMapRange(assignment, name2.expression); getterName = factory2.updateComputedPropertyName(name2, assignment); setterName = factory2.updateComputedPropertyName(name2, temp); } } const modifiersWithoutAccessor = visitNodes2(modifiers, (node2) => node2.kind !== 129 ? node2 : undefined, isModifier); const backingField = createAccessorPropertyBackingField(factory2, node, modifiersWithoutAccessor, initializer); setOriginalNode(backingField, node); setEmitFlags(backingField, 3072); setSourceMapRange(backingField, sourceMapRange); setSourceMapRange(backingField.name, node.name); const getter = createGetAccessorDescriptorForwarder(modifiersWithoutAccessor, getterName, descriptorName); setOriginalNode(getter, node); setCommentRange(getter, commentRange); setSourceMapRange(getter, sourceMapRange); const setter = createSetAccessorDescriptorForwarder(modifiersWithoutAccessor, setterName, descriptorName); setOriginalNode(setter, node); setEmitFlags(setter, 3072); setSourceMapRange(setter, sourceMapRange); return [backingField, getter, setter]; } return finishClassElement(factory2.updatePropertyDeclaration(node, modifiers, name, undefined, undefined, initializer), node); } function visitThisExpression(node) { return classThis ?? node; } function visitCallExpression(node) { if (isSuperProperty(node.expression) && classThis) { const expression = visitNode(node.expression, visitor, isExpression); const argumentsList = visitNodes2(node.arguments, visitor, isExpression); const invocation = factory2.createFunctionCallCall(expression, classThis, argumentsList); setOriginalNode(invocation, node); setTextRange(invocation, node); return invocation; } return visitEachChild(node, visitor, context); } function visitTaggedTemplateExpression(node) { if (isSuperProperty(node.tag) && classThis) { const tag = visitNode(node.tag, visitor, isExpression); const boundTag = factory2.createFunctionBindCall(tag, classThis, []); setOriginalNode(boundTag, node); setTextRange(boundTag, node); const template = visitNode(node.template, visitor, isTemplateLiteral); return factory2.updateTaggedTemplateExpression(node, boundTag, undefined, template); } return visitEachChild(node, visitor, context); } function visitPropertyAccessExpression(node) { if (isSuperProperty(node) && isIdentifier(node.name) && classThis && classSuper) { const propertyName = factory2.createStringLiteralFromNode(node.name); const superProperty = factory2.createReflectGetCall(classSuper, propertyName, classThis); setOriginalNode(superProperty, node.expression); setTextRange(superProperty, node.expression); return superProperty; } return visitEachChild(node, visitor, context); } function visitElementAccessExpression(node) { if (isSuperProperty(node) && classThis && classSuper) { const propertyName = visitNode(node.argumentExpression, visitor, isExpression); const superProperty = factory2.createReflectGetCall(classSuper, propertyName, classThis); setOriginalNode(superProperty, node.expression); setTextRange(superProperty, node.expression); return superProperty; } return visitEachChild(node, visitor, context); } function visitParameterDeclaration(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node, canIgnoreEmptyStringLiteralInAssignedName(node.initializer)); } const updated = factory2.updateParameterDeclaration(node, undefined, node.dotDotDotToken, visitNode(node.name, visitor, isBindingName), undefined, undefined, visitNode(node.initializer, visitor, isExpression)); if (updated !== node) { setCommentRange(updated, node); setTextRange(updated, moveRangePastModifiers(node)); setSourceMapRange(updated, moveRangePastModifiers(node)); setEmitFlags(updated.name, 64); } return updated; } function isAnonymousClassNeedingAssignedName(node) { return isClassExpression(node) && !node.name && isDecoratedClassLike(node); } function canIgnoreEmptyStringLiteralInAssignedName(node) { const innerExpression = skipOuterExpressions(node); return isClassExpression(innerExpression) && !innerExpression.name && !classOrConstructorParameterIsDecorated(false, innerExpression); } function visitForStatement(node) { return factory2.updateForStatement(node, visitNode(node.initializer, discardedValueVisitor, isForInitializer), visitNode(node.condition, visitor, isExpression), visitNode(node.incrementor, discardedValueVisitor, isExpression), visitIterationBody(node.statement, visitor, context)); } function visitExpressionStatement(node) { return visitEachChild(node, discardedValueVisitor, context); } function visitBinaryExpression(node, discarded) { if (isDestructuringAssignment(node)) { const left = visitAssignmentPattern(node.left); const right = visitNode(node.right, visitor, isExpression); return factory2.updateBinaryExpression(node, left, node.operatorToken, right); } if (isAssignmentExpression(node)) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node, canIgnoreEmptyStringLiteralInAssignedName(node.right)); return visitEachChild(node, visitor, context); } if (isSuperProperty(node.left) && classThis && classSuper) { let setterName = isElementAccessExpression(node.left) ? visitNode(node.left.argumentExpression, visitor, isExpression) : isIdentifier(node.left.name) ? factory2.createStringLiteralFromNode(node.left.name) : undefined; if (setterName) { let expression = visitNode(node.right, visitor, isExpression); if (isCompoundAssignment(node.operatorToken.kind)) { let getterName = setterName; if (!isSimpleInlineableExpression(setterName)) { getterName = factory2.createTempVariable(hoistVariableDeclaration); setterName = factory2.createAssignment(getterName, setterName); } const superPropertyGet = factory2.createReflectGetCall(classSuper, getterName, classThis); setOriginalNode(superPropertyGet, node.left); setTextRange(superPropertyGet, node.left); expression = factory2.createBinaryExpression(superPropertyGet, getNonAssignmentOperatorForCompoundAssignment(node.operatorToken.kind), expression); setTextRange(expression, node); } const temp = discarded ? undefined : factory2.createTempVariable(hoistVariableDeclaration); if (temp) { expression = factory2.createAssignment(temp, expression); setTextRange(temp, node); } expression = factory2.createReflectSetCall(classSuper, setterName, expression, classThis); setOriginalNode(expression, node); setTextRange(expression, node); if (temp) { expression = factory2.createComma(expression, temp); setTextRange(expression, node); } return expression; } } } if (node.operatorToken.kind === 28) { const left = visitNode(node.left, discardedValueVisitor, isExpression); const right = visitNode(node.right, discarded ? discardedValueVisitor : visitor, isExpression); return factory2.updateBinaryExpression(node, left, node.operatorToken, right); } return visitEachChild(node, visitor, context); } function visitPreOrPostfixUnaryExpression(node, discarded) { if (node.operator === 46 || node.operator === 47) { const operand = skipParentheses(node.operand); if (isSuperProperty(operand) && classThis && classSuper) { let setterName = isElementAccessExpression(operand) ? visitNode(operand.argumentExpression, visitor, isExpression) : isIdentifier(operand.name) ? factory2.createStringLiteralFromNode(operand.name) : undefined; if (setterName) { let getterName = setterName; if (!isSimpleInlineableExpression(setterName)) { getterName = factory2.createTempVariable(hoistVariableDeclaration); setterName = factory2.createAssignment(getterName, setterName); } let expression = factory2.createReflectGetCall(classSuper, getterName, classThis); setOriginalNode(expression, node); setTextRange(expression, node); const temp = discarded ? undefined : factory2.createTempVariable(hoistVariableDeclaration); expression = expandPreOrPostfixIncrementOrDecrementExpression(factory2, node, expression, hoistVariableDeclaration, temp); expression = factory2.createReflectSetCall(classSuper, setterName, expression, classThis); setOriginalNode(expression, node); setTextRange(expression, node); if (temp) { expression = factory2.createComma(expression, temp); setTextRange(expression, node); } return expression; } } } return visitEachChild(node, visitor, context); } function visitCommaListExpression(node, discarded) { const elements = discarded ? visitCommaListElements(node.elements, discardedValueVisitor) : visitCommaListElements(node.elements, visitor, discardedValueVisitor); return factory2.updateCommaListExpression(node, elements); } function visitReferencedPropertyName(node) { if (isPropertyNameLiteral(node) || isPrivateIdentifier(node)) { const referencedName2 = factory2.createStringLiteralFromNode(node); const name2 = visitNode(node, visitor, isPropertyName); return { referencedName: referencedName2, name: name2 }; } if (isPropertyNameLiteral(node.expression) && !isIdentifier(node.expression)) { const referencedName2 = factory2.createStringLiteralFromNode(node.expression); const name2 = visitNode(node, visitor, isPropertyName); return { referencedName: referencedName2, name: name2 }; } const referencedName = factory2.getGeneratedNameForNode(node); hoistVariableDeclaration(referencedName); const key = emitHelpers().createPropKeyHelper(visitNode(node.expression, visitor, isExpression)); const assignment = factory2.createAssignment(referencedName, key); const name = factory2.updateComputedPropertyName(node, injectPendingExpressions(assignment)); return { referencedName, name }; } function visitPropertyName(node) { if (isComputedPropertyName(node)) { return visitComputedPropertyName(node); } return visitNode(node, visitor, isPropertyName); } function visitComputedPropertyName(node) { let expression = visitNode(node.expression, visitor, isExpression); if (!isSimpleInlineableExpression(expression)) { expression = injectPendingExpressions(expression); } return factory2.updateComputedPropertyName(node, expression); } function visitPropertyAssignment(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node, canIgnoreEmptyStringLiteralInAssignedName(node.initializer)); } return visitEachChild(node, visitor, context); } function visitVariableDeclaration(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node, canIgnoreEmptyStringLiteralInAssignedName(node.initializer)); } return visitEachChild(node, visitor, context); } function visitBindingElement(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node, canIgnoreEmptyStringLiteralInAssignedName(node.initializer)); } return visitEachChild(node, visitor, context); } function visitDestructuringAssignmentTarget(node) { if (isObjectLiteralExpression(node) || isArrayLiteralExpression(node)) { return visitAssignmentPattern(node); } if (isSuperProperty(node) && classThis && classSuper) { const propertyName = isElementAccessExpression(node) ? visitNode(node.argumentExpression, visitor, isExpression) : isIdentifier(node.name) ? factory2.createStringLiteralFromNode(node.name) : undefined; if (propertyName) { const paramName = factory2.createTempVariable(undefined); const expression = factory2.createAssignmentTargetWrapper(paramName, factory2.createReflectSetCall(classSuper, propertyName, paramName, classThis)); setOriginalNode(expression, node); setTextRange(expression, node); return expression; } } return visitEachChild(node, visitor, context); } function visitAssignmentElement(node) { if (isAssignmentExpression(node, true)) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node, canIgnoreEmptyStringLiteralInAssignedName(node.right)); } const assignmentTarget = visitDestructuringAssignmentTarget(node.left); const initializer = visitNode(node.right, visitor, isExpression); return factory2.updateBinaryExpression(node, assignmentTarget, node.operatorToken, initializer); } else { return visitDestructuringAssignmentTarget(node); } } function visitAssignmentRestElement(node) { if (isLeftHandSideExpression(node.expression)) { const expression = visitDestructuringAssignmentTarget(node.expression); return factory2.updateSpreadElement(node, expression); } return visitEachChild(node, visitor, context); } function visitArrayAssignmentElement(node) { Debug.assertNode(node, isArrayBindingOrAssignmentElement); if (isSpreadElement(node)) return visitAssignmentRestElement(node); if (!isOmittedExpression(node)) return visitAssignmentElement(node); return visitEachChild(node, visitor, context); } function visitAssignmentProperty(node) { const name = visitNode(node.name, visitor, isPropertyName); if (isAssignmentExpression(node.initializer, true)) { const assignmentElement = visitAssignmentElement(node.initializer); return factory2.updatePropertyAssignment(node, name, assignmentElement); } if (isLeftHandSideExpression(node.initializer)) { const assignmentElement = visitDestructuringAssignmentTarget(node.initializer); return factory2.updatePropertyAssignment(node, name, assignmentElement); } return visitEachChild(node, visitor, context); } function visitShorthandAssignmentProperty(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node, canIgnoreEmptyStringLiteralInAssignedName(node.objectAssignmentInitializer)); } return visitEachChild(node, visitor, context); } function visitAssignmentRestProperty(node) { if (isLeftHandSideExpression(node.expression)) { const expression = visitDestructuringAssignmentTarget(node.expression); return factory2.updateSpreadAssignment(node, expression); } return visitEachChild(node, visitor, context); } function visitObjectAssignmentElement(node) { Debug.assertNode(node, isObjectBindingOrAssignmentElement); if (isSpreadAssignment(node)) return visitAssignmentRestProperty(node); if (isShorthandPropertyAssignment(node)) return visitShorthandAssignmentProperty(node); if (isPropertyAssignment(node)) return visitAssignmentProperty(node); return visitEachChild(node, visitor, context); } function visitAssignmentPattern(node) { if (isArrayLiteralExpression(node)) { const elements = visitNodes2(node.elements, visitArrayAssignmentElement, isExpression); return factory2.updateArrayLiteralExpression(node, elements); } else { const properties = visitNodes2(node.properties, visitObjectAssignmentElement, isObjectLiteralElementLike); return factory2.updateObjectLiteralExpression(node, properties); } } function visitExportAssignment(node) { if (isNamedEvaluation(node, isAnonymousClassNeedingAssignedName)) { node = transformNamedEvaluation(context, node, canIgnoreEmptyStringLiteralInAssignedName(node.expression)); } return visitEachChild(node, visitor, context); } function visitParenthesizedExpression(node, discarded) { const visitorFunc = discarded ? discardedValueVisitor : visitor; const expression = visitNode(node.expression, visitorFunc, isExpression); return factory2.updateParenthesizedExpression(node, expression); } function visitPartiallyEmittedExpression(node, discarded) { const visitorFunc = discarded ? discardedValueVisitor : visitor; const expression = visitNode(node.expression, visitorFunc, isExpression); return factory2.updatePartiallyEmittedExpression(node, expression); } function injectPendingExpressionsCommon(pendingExpressions2, expression) { if (some(pendingExpressions2)) { if (expression) { if (isParenthesizedExpression(expression)) { pendingExpressions2.push(expression.expression); expression = factory2.updateParenthesizedExpression(expression, factory2.inlineExpressions(pendingExpressions2)); } else { pendingExpressions2.push(expression); expression = factory2.inlineExpressions(pendingExpressions2); } } else { expression = factory2.inlineExpressions(pendingExpressions2); } } return expression; } function injectPendingExpressions(expression) { const result = injectPendingExpressionsCommon(pendingExpressions, expression); Debug.assertIsDefined(result); if (result !== expression) { pendingExpressions = undefined; } return result; } function injectPendingInitializers(classInfo2, isStatic2, expression) { const result = injectPendingExpressionsCommon(isStatic2 ? classInfo2.pendingStaticInitializers : classInfo2.pendingInstanceInitializers, expression); if (result !== expression) { if (isStatic2) { classInfo2.pendingStaticInitializers = undefined; } else { classInfo2.pendingInstanceInitializers = undefined; } } return result; } function transformAllDecoratorsOfDeclaration(allDecorators) { if (!allDecorators) { return; } const decoratorExpressions = []; addRange(decoratorExpressions, map(allDecorators.decorators, transformDecorator)); return decoratorExpressions; } function transformDecorator(decorator) { const expression = visitNode(decorator.expression, visitor, isExpression); setEmitFlags(expression, 3072); const innerExpression = skipOuterExpressions(expression); if (isAccessExpression(innerExpression)) { const { target, thisArg } = factory2.createCallBinding(expression, hoistVariableDeclaration, languageVersion, true); return factory2.restoreOuterExpressions(expression, factory2.createFunctionBindCall(target, thisArg, [])); } return expression; } function createDescriptorMethod(original, name, modifiers, asteriskToken, kind, parameters, body) { const func = factory2.createFunctionExpression(modifiers, asteriskToken, undefined, undefined, parameters, undefined, body ?? factory2.createBlock([])); setOriginalNode(func, original); setSourceMapRange(func, moveRangePastDecorators(original)); setEmitFlags(func, 3072); const prefix = kind === "get" || kind === "set" ? kind : undefined; const functionName = factory2.createStringLiteralFromNode(name, undefined); const namedFunction = emitHelpers().createSetFunctionNameHelper(func, functionName, prefix); const method = factory2.createPropertyAssignment(factory2.createIdentifier(kind), namedFunction); setOriginalNode(method, original); setSourceMapRange(method, moveRangePastDecorators(original)); setEmitFlags(method, 3072); return method; } function createMethodDescriptorObject(node, modifiers) { return factory2.createObjectLiteralExpression([ createDescriptorMethod(node, node.name, modifiers, node.asteriskToken, "value", visitNodes2(node.parameters, visitor, isParameter), visitNode(node.body, visitor, isBlock)) ]); } function createGetAccessorDescriptorObject(node, modifiers) { return factory2.createObjectLiteralExpression([ createDescriptorMethod(node, node.name, modifiers, undefined, "get", [], visitNode(node.body, visitor, isBlock)) ]); } function createSetAccessorDescriptorObject(node, modifiers) { return factory2.createObjectLiteralExpression([ createDescriptorMethod(node, node.name, modifiers, undefined, "set", visitNodes2(node.parameters, visitor, isParameter), visitNode(node.body, visitor, isBlock)) ]); } function createAccessorPropertyDescriptorObject(node, modifiers) { return factory2.createObjectLiteralExpression([ createDescriptorMethod(node, node.name, modifiers, undefined, "get", [], factory2.createBlock([ factory2.createReturnStatement(factory2.createPropertyAccessExpression(factory2.createThis(), factory2.getGeneratedPrivateNameForNode(node.name))) ])), createDescriptorMethod(node, node.name, modifiers, undefined, "set", [factory2.createParameterDeclaration(undefined, undefined, "value")], factory2.createBlock([ factory2.createExpressionStatement(factory2.createAssignment(factory2.createPropertyAccessExpression(factory2.createThis(), factory2.getGeneratedPrivateNameForNode(node.name)), factory2.createIdentifier("value"))) ])) ]); } function createMethodDescriptorForwarder(modifiers, name, descriptorName) { modifiers = visitNodes2(modifiers, (node) => isStaticModifier(node) ? node : undefined, isModifier); return factory2.createGetAccessorDeclaration(modifiers, name, [], undefined, factory2.createBlock([ factory2.createReturnStatement(factory2.createPropertyAccessExpression(descriptorName, factory2.createIdentifier("value"))) ])); } function createGetAccessorDescriptorForwarder(modifiers, name, descriptorName) { modifiers = visitNodes2(modifiers, (node) => isStaticModifier(node) ? node : undefined, isModifier); return factory2.createGetAccessorDeclaration(modifiers, name, [], undefined, factory2.createBlock([ factory2.createReturnStatement(factory2.createFunctionCallCall(factory2.createPropertyAccessExpression(descriptorName, factory2.createIdentifier("get")), factory2.createThis(), [])) ])); } function createSetAccessorDescriptorForwarder(modifiers, name, descriptorName) { modifiers = visitNodes2(modifiers, (node) => isStaticModifier(node) ? node : undefined, isModifier); return factory2.createSetAccessorDeclaration(modifiers, name, [factory2.createParameterDeclaration(undefined, undefined, "value")], factory2.createBlock([ factory2.createReturnStatement(factory2.createFunctionCallCall(factory2.createPropertyAccessExpression(descriptorName, factory2.createIdentifier("set")), factory2.createThis(), [factory2.createIdentifier("value")])) ])); } function createMetadata(name, classSuper2) { const varDecl = factory2.createVariableDeclaration(name, undefined, undefined, factory2.createConditionalExpression(factory2.createLogicalAnd(factory2.createTypeCheck(factory2.createIdentifier("Symbol"), "function"), factory2.createPropertyAccessExpression(factory2.createIdentifier("Symbol"), "metadata")), factory2.createToken(58), factory2.createCallExpression(factory2.createPropertyAccessExpression(factory2.createIdentifier("Object"), "create"), undefined, [classSuper2 ? createSymbolMetadataReference(classSuper2) : factory2.createNull()]), factory2.createToken(59), factory2.createVoidZero())); return factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([varDecl], 2)); } function createSymbolMetadata(target, value) { const defineProperty = factory2.createObjectDefinePropertyCall(target, factory2.createPropertyAccessExpression(factory2.createIdentifier("Symbol"), "metadata"), factory2.createPropertyDescriptor({ configurable: true, writable: true, enumerable: true, value }, true)); return setEmitFlags(factory2.createIfStatement(value, factory2.createExpressionStatement(defineProperty)), 1); } function createSymbolMetadataReference(classSuper2) { return factory2.createBinaryExpression(factory2.createElementAccessExpression(classSuper2, factory2.createPropertyAccessExpression(factory2.createIdentifier("Symbol"), "metadata")), 61, factory2.createNull()); } } function transformES2017(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers, resumeLexicalEnvironment, endLexicalEnvironment, hoistVariableDeclaration } = context; const resolver = context.getEmitResolver(); const compilerOptions = context.getCompilerOptions(); const languageVersion = getEmitScriptTarget(compilerOptions); let enabledSubstitutions = 0; let enclosingSuperContainerFlags = 0; let enclosingFunctionParameterNames; let capturedSuperProperties; let hasSuperElementAccess; let lexicalArgumentsBinding; const substitutedSuperAccessors = []; let contextFlags = 0; const previousOnEmitNode = context.onEmitNode; const previousOnSubstituteNode = context.onSubstituteNode; context.onEmitNode = onEmitNode; context.onSubstituteNode = onSubstituteNode; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } setContextFlag(1, false); setContextFlag(2, !isEffectiveStrictModeSourceFile(node, compilerOptions)); const visited = visitEachChild(node, visitor, context); addEmitHelpers(visited, context.readEmitHelpers()); return visited; } function setContextFlag(flag, val) { contextFlags = val ? contextFlags | flag : contextFlags & ~flag; } function inContext(flags) { return (contextFlags & flags) !== 0; } function inTopLevelContext() { return !inContext(1); } function inHasLexicalThisContext() { return inContext(2); } function doWithContext(flags, cb, value) { const contextFlagsToSet = flags & ~contextFlags; if (contextFlagsToSet) { setContextFlag(contextFlagsToSet, true); const result = cb(value); setContextFlag(contextFlagsToSet, false); return result; } return cb(value); } function visitDefault(node) { return visitEachChild(node, visitor, context); } function argumentsVisitor(node) { switch (node.kind) { case 219: case 263: case 175: case 178: case 179: case 177: return node; case 170: case 209: case 261: break; case 80: if (lexicalArgumentsBinding && resolver.isArgumentsLocalBinding(node)) { return lexicalArgumentsBinding; } break; } return visitEachChild(node, argumentsVisitor, context); } function visitor(node) { if ((node.transformFlags & 256) === 0) { return lexicalArgumentsBinding ? argumentsVisitor(node) : node; } switch (node.kind) { case 134: return; case 224: return visitAwaitExpression(node); case 175: return doWithContext(1 | 2, visitMethodDeclaration, node); case 263: return doWithContext(1 | 2, visitFunctionDeclaration, node); case 219: return doWithContext(1 | 2, visitFunctionExpression, node); case 220: return doWithContext(1, visitArrowFunction, node); case 212: if (capturedSuperProperties && isPropertyAccessExpression(node) && node.expression.kind === 108) { capturedSuperProperties.add(node.name.escapedText); } return visitEachChild(node, visitor, context); case 213: if (capturedSuperProperties && node.expression.kind === 108) { hasSuperElementAccess = true; } return visitEachChild(node, visitor, context); case 178: return doWithContext(1 | 2, visitGetAccessorDeclaration, node); case 179: return doWithContext(1 | 2, visitSetAccessorDeclaration, node); case 177: return doWithContext(1 | 2, visitConstructorDeclaration, node); case 264: case 232: return doWithContext(1 | 2, visitDefault, node); default: return visitEachChild(node, visitor, context); } } function asyncBodyVisitor(node) { if (isNodeWithPossibleHoistedDeclaration(node)) { switch (node.kind) { case 244: return visitVariableStatementInAsyncBody(node); case 249: return visitForStatementInAsyncBody(node); case 250: return visitForInStatementInAsyncBody(node); case 251: return visitForOfStatementInAsyncBody(node); case 300: return visitCatchClauseInAsyncBody(node); case 242: case 256: case 270: case 297: case 298: case 259: case 247: case 248: case 246: case 255: case 257: return visitEachChild(node, asyncBodyVisitor, context); default: return Debug.assertNever(node, "Unhandled node."); } } return visitor(node); } function visitCatchClauseInAsyncBody(node) { const catchClauseNames = /* @__PURE__ */ new Set; recordDeclarationName(node.variableDeclaration, catchClauseNames); let catchClauseUnshadowedNames; catchClauseNames.forEach((_, escapedName) => { if (enclosingFunctionParameterNames.has(escapedName)) { if (!catchClauseUnshadowedNames) { catchClauseUnshadowedNames = new Set(enclosingFunctionParameterNames); } catchClauseUnshadowedNames.delete(escapedName); } }); if (catchClauseUnshadowedNames) { const savedEnclosingFunctionParameterNames = enclosingFunctionParameterNames; enclosingFunctionParameterNames = catchClauseUnshadowedNames; const result = visitEachChild(node, asyncBodyVisitor, context); enclosingFunctionParameterNames = savedEnclosingFunctionParameterNames; return result; } else { return visitEachChild(node, asyncBodyVisitor, context); } } function visitVariableStatementInAsyncBody(node) { if (isVariableDeclarationListWithCollidingName(node.declarationList)) { const expression = visitVariableDeclarationListWithCollidingNames(node.declarationList, false); return expression ? factory2.createExpressionStatement(expression) : undefined; } return visitEachChild(node, visitor, context); } function visitForInStatementInAsyncBody(node) { return factory2.updateForInStatement(node, isVariableDeclarationListWithCollidingName(node.initializer) ? visitVariableDeclarationListWithCollidingNames(node.initializer, true) : Debug.checkDefined(visitNode(node.initializer, visitor, isForInitializer)), Debug.checkDefined(visitNode(node.expression, visitor, isExpression)), visitIterationBody(node.statement, asyncBodyVisitor, context)); } function visitForOfStatementInAsyncBody(node) { return factory2.updateForOfStatement(node, visitNode(node.awaitModifier, visitor, isAwaitKeyword), isVariableDeclarationListWithCollidingName(node.initializer) ? visitVariableDeclarationListWithCollidingNames(node.initializer, true) : Debug.checkDefined(visitNode(node.initializer, visitor, isForInitializer)), Debug.checkDefined(visitNode(node.expression, visitor, isExpression)), visitIterationBody(node.statement, asyncBodyVisitor, context)); } function visitForStatementInAsyncBody(node) { const initializer = node.initializer; return factory2.updateForStatement(node, isVariableDeclarationListWithCollidingName(initializer) ? visitVariableDeclarationListWithCollidingNames(initializer, false) : visitNode(node.initializer, visitor, isForInitializer), visitNode(node.condition, visitor, isExpression), visitNode(node.incrementor, visitor, isExpression), visitIterationBody(node.statement, asyncBodyVisitor, context)); } function visitAwaitExpression(node) { if (inTopLevelContext()) { return visitEachChild(node, visitor, context); } return setOriginalNode(setTextRange(factory2.createYieldExpression(undefined, visitNode(node.expression, visitor, isExpression)), node), node); } function visitConstructorDeclaration(node) { const savedLexicalArgumentsBinding = lexicalArgumentsBinding; lexicalArgumentsBinding = undefined; const updated = factory2.updateConstructorDeclaration(node, visitNodes2(node.modifiers, visitor, isModifier), visitParameterList(node.parameters, visitor, context), transformMethodBody(node)); lexicalArgumentsBinding = savedLexicalArgumentsBinding; return updated; } function visitMethodDeclaration(node) { let parameters; const functionFlags = getFunctionFlags(node); const savedLexicalArgumentsBinding = lexicalArgumentsBinding; lexicalArgumentsBinding = undefined; const updated = factory2.updateMethodDeclaration(node, visitNodes2(node.modifiers, visitor, isModifierLike), node.asteriskToken, node.name, undefined, undefined, parameters = functionFlags & 2 ? transformAsyncFunctionParameterList(node) : visitParameterList(node.parameters, visitor, context), undefined, functionFlags & 2 ? transformAsyncFunctionBody(node, parameters) : transformMethodBody(node)); lexicalArgumentsBinding = savedLexicalArgumentsBinding; return updated; } function visitGetAccessorDeclaration(node) { const savedLexicalArgumentsBinding = lexicalArgumentsBinding; lexicalArgumentsBinding = undefined; const updated = factory2.updateGetAccessorDeclaration(node, visitNodes2(node.modifiers, visitor, isModifierLike), node.name, visitParameterList(node.parameters, visitor, context), undefined, transformMethodBody(node)); lexicalArgumentsBinding = savedLexicalArgumentsBinding; return updated; } function visitSetAccessorDeclaration(node) { const savedLexicalArgumentsBinding = lexicalArgumentsBinding; lexicalArgumentsBinding = undefined; const updated = factory2.updateSetAccessorDeclaration(node, visitNodes2(node.modifiers, visitor, isModifierLike), node.name, visitParameterList(node.parameters, visitor, context), transformMethodBody(node)); lexicalArgumentsBinding = savedLexicalArgumentsBinding; return updated; } function visitFunctionDeclaration(node) { let parameters; const savedLexicalArgumentsBinding = lexicalArgumentsBinding; lexicalArgumentsBinding = undefined; const functionFlags = getFunctionFlags(node); const updated = factory2.updateFunctionDeclaration(node, visitNodes2(node.modifiers, visitor, isModifierLike), node.asteriskToken, node.name, undefined, parameters = functionFlags & 2 ? transformAsyncFunctionParameterList(node) : visitParameterList(node.parameters, visitor, context), undefined, functionFlags & 2 ? transformAsyncFunctionBody(node, parameters) : visitFunctionBody(node.body, visitor, context)); lexicalArgumentsBinding = savedLexicalArgumentsBinding; return updated; } function visitFunctionExpression(node) { let parameters; const savedLexicalArgumentsBinding = lexicalArgumentsBinding; lexicalArgumentsBinding = undefined; const functionFlags = getFunctionFlags(node); const updated = factory2.updateFunctionExpression(node, visitNodes2(node.modifiers, visitor, isModifier), node.asteriskToken, node.name, undefined, parameters = functionFlags & 2 ? transformAsyncFunctionParameterList(node) : visitParameterList(node.parameters, visitor, context), undefined, functionFlags & 2 ? transformAsyncFunctionBody(node, parameters) : visitFunctionBody(node.body, visitor, context)); lexicalArgumentsBinding = savedLexicalArgumentsBinding; return updated; } function visitArrowFunction(node) { let parameters; const functionFlags = getFunctionFlags(node); return factory2.updateArrowFunction(node, visitNodes2(node.modifiers, visitor, isModifier), undefined, parameters = functionFlags & 2 ? transformAsyncFunctionParameterList(node) : visitParameterList(node.parameters, visitor, context), undefined, node.equalsGreaterThanToken, functionFlags & 2 ? transformAsyncFunctionBody(node, parameters) : visitFunctionBody(node.body, visitor, context)); } function recordDeclarationName({ name }, names) { if (isIdentifier(name)) { names.add(name.escapedText); } else { for (const element of name.elements) { if (!isOmittedExpression(element)) { recordDeclarationName(element, names); } } } } function isVariableDeclarationListWithCollidingName(node) { return !!node && isVariableDeclarationList(node) && !(node.flags & 7) && node.declarations.some(collidesWithParameterName); } function visitVariableDeclarationListWithCollidingNames(node, hasReceiver) { hoistVariableDeclarationList(node); const variables = getInitializedVariables(node); if (variables.length === 0) { if (hasReceiver) { return visitNode(factory2.converters.convertToAssignmentElementTarget(node.declarations[0].name), visitor, isExpression); } return; } return factory2.inlineExpressions(map(variables, transformInitializedVariable)); } function hoistVariableDeclarationList(node) { forEach(node.declarations, hoistVariable); } function hoistVariable({ name }) { if (isIdentifier(name)) { hoistVariableDeclaration(name); } else { for (const element of name.elements) { if (!isOmittedExpression(element)) { hoistVariable(element); } } } } function transformInitializedVariable(node) { const converted = setSourceMapRange(factory2.createAssignment(factory2.converters.convertToAssignmentElementTarget(node.name), node.initializer), node); return Debug.checkDefined(visitNode(converted, visitor, isExpression)); } function collidesWithParameterName({ name }) { if (isIdentifier(name)) { return enclosingFunctionParameterNames.has(name.escapedText); } else { for (const element of name.elements) { if (!isOmittedExpression(element) && collidesWithParameterName(element)) { return true; } } } return false; } function transformMethodBody(node) { Debug.assertIsDefined(node.body); const savedCapturedSuperProperties = capturedSuperProperties; const savedHasSuperElementAccess = hasSuperElementAccess; capturedSuperProperties = /* @__PURE__ */ new Set; hasSuperElementAccess = false; let updated = visitFunctionBody(node.body, visitor, context); const originalMethod = getOriginalNode(node, isFunctionLikeDeclaration); const emitSuperHelpers = languageVersion >= 2 && (resolver.hasNodeCheckFlag(node, 256) || resolver.hasNodeCheckFlag(node, 128)) && (getFunctionFlags(originalMethod) & 3) !== 3; if (emitSuperHelpers) { enableSubstitutionForAsyncMethodsWithSuper(); if (capturedSuperProperties.size) { const variableStatement = createSuperAccessVariableStatement(factory2, resolver, node, capturedSuperProperties); substitutedSuperAccessors[getNodeId(variableStatement)] = true; const statements = updated.statements.slice(); insertStatementsAfterStandardPrologue(statements, [variableStatement]); updated = factory2.updateBlock(updated, statements); } if (hasSuperElementAccess) { if (resolver.hasNodeCheckFlag(node, 256)) { addEmitHelper(updated, advancedAsyncSuperHelper); } else if (resolver.hasNodeCheckFlag(node, 128)) { addEmitHelper(updated, asyncSuperHelper); } } } capturedSuperProperties = savedCapturedSuperProperties; hasSuperElementAccess = savedHasSuperElementAccess; return updated; } function createCaptureArgumentsStatement() { Debug.assert(lexicalArgumentsBinding); const variable = factory2.createVariableDeclaration(lexicalArgumentsBinding, undefined, undefined, factory2.createIdentifier("arguments")); const statement = factory2.createVariableStatement(undefined, [variable]); startOnNewLine(statement); addEmitFlags(statement, 2097152); return statement; } function transformAsyncFunctionParameterList(node) { if (isSimpleParameterList(node.parameters)) { return visitParameterList(node.parameters, visitor, context); } const newParameters = []; for (const parameter of node.parameters) { if (parameter.initializer || parameter.dotDotDotToken) { if (node.kind === 220) { const restParameter = factory2.createParameterDeclaration(undefined, factory2.createToken(26), factory2.createUniqueName("args", 8)); newParameters.push(restParameter); } break; } const newParameter = factory2.createParameterDeclaration(undefined, undefined, factory2.getGeneratedNameForNode(parameter.name, 8)); newParameters.push(newParameter); } const newParametersArray = factory2.createNodeArray(newParameters); setTextRange(newParametersArray, node.parameters); return newParametersArray; } function transformAsyncFunctionBody(node, outerParameters) { const innerParameters = !isSimpleParameterList(node.parameters) ? visitParameterList(node.parameters, visitor, context) : undefined; resumeLexicalEnvironment(); const original = getOriginalNode(node, isFunctionLike); const nodeType = original.type; const promiseConstructor = languageVersion < 2 ? getPromiseConstructor(nodeType) : undefined; const isArrowFunction2 = node.kind === 220; const savedLexicalArgumentsBinding = lexicalArgumentsBinding; const hasLexicalArguments = resolver.hasNodeCheckFlag(node, 512); const captureLexicalArguments = hasLexicalArguments && !lexicalArgumentsBinding; if (captureLexicalArguments) { lexicalArgumentsBinding = factory2.createUniqueName("arguments"); } let argumentsExpression; if (innerParameters) { if (isArrowFunction2) { const parameterBindings = []; Debug.assert(outerParameters.length <= node.parameters.length); for (let i = 0;i < node.parameters.length; i++) { Debug.assert(i < outerParameters.length); const originalParameter = node.parameters[i]; const outerParameter = outerParameters[i]; Debug.assertNode(outerParameter.name, isIdentifier); if (originalParameter.initializer || originalParameter.dotDotDotToken) { Debug.assert(i === outerParameters.length - 1); parameterBindings.push(factory2.createSpreadElement(outerParameter.name)); break; } parameterBindings.push(outerParameter.name); } argumentsExpression = factory2.createArrayLiteralExpression(parameterBindings); } else { argumentsExpression = factory2.createIdentifier("arguments"); } } const savedEnclosingFunctionParameterNames = enclosingFunctionParameterNames; enclosingFunctionParameterNames = /* @__PURE__ */ new Set; for (const parameter of node.parameters) { recordDeclarationName(parameter, enclosingFunctionParameterNames); } const savedCapturedSuperProperties = capturedSuperProperties; const savedHasSuperElementAccess = hasSuperElementAccess; if (!isArrowFunction2) { capturedSuperProperties = /* @__PURE__ */ new Set; hasSuperElementAccess = false; } const hasLexicalThis = inHasLexicalThisContext(); let asyncBody = transformAsyncFunctionBodyWorker(node.body); asyncBody = factory2.updateBlock(asyncBody, factory2.mergeLexicalEnvironment(asyncBody.statements, endLexicalEnvironment())); let result; if (!isArrowFunction2) { const statements = []; statements.push(factory2.createReturnStatement(emitHelpers().createAwaiterHelper(hasLexicalThis, argumentsExpression, promiseConstructor, innerParameters, asyncBody))); const emitSuperHelpers = languageVersion >= 2 && (resolver.hasNodeCheckFlag(node, 256) || resolver.hasNodeCheckFlag(node, 128)); if (emitSuperHelpers) { enableSubstitutionForAsyncMethodsWithSuper(); if (capturedSuperProperties.size) { const variableStatement = createSuperAccessVariableStatement(factory2, resolver, node, capturedSuperProperties); substitutedSuperAccessors[getNodeId(variableStatement)] = true; insertStatementsAfterStandardPrologue(statements, [variableStatement]); } } if (captureLexicalArguments) { insertStatementsAfterStandardPrologue(statements, [createCaptureArgumentsStatement()]); } const block = factory2.createBlock(statements, true); setTextRange(block, node.body); if (emitSuperHelpers && hasSuperElementAccess) { if (resolver.hasNodeCheckFlag(node, 256)) { addEmitHelper(block, advancedAsyncSuperHelper); } else if (resolver.hasNodeCheckFlag(node, 128)) { addEmitHelper(block, asyncSuperHelper); } } result = block; } else { result = emitHelpers().createAwaiterHelper(hasLexicalThis, argumentsExpression, promiseConstructor, innerParameters, asyncBody); if (captureLexicalArguments) { const block = factory2.converters.convertToFunctionBlock(result); result = factory2.updateBlock(block, factory2.mergeLexicalEnvironment(block.statements, [createCaptureArgumentsStatement()])); } } enclosingFunctionParameterNames = savedEnclosingFunctionParameterNames; if (!isArrowFunction2) { capturedSuperProperties = savedCapturedSuperProperties; hasSuperElementAccess = savedHasSuperElementAccess; lexicalArgumentsBinding = savedLexicalArgumentsBinding; } return result; } function transformAsyncFunctionBodyWorker(body, start) { if (isBlock(body)) { return factory2.updateBlock(body, visitNodes2(body.statements, asyncBodyVisitor, isStatement, start)); } else { return factory2.converters.convertToFunctionBlock(Debug.checkDefined(visitNode(body, asyncBodyVisitor, isConciseBody))); } } function getPromiseConstructor(type) { const typeName = type && getEntityNameFromTypeNode(type); if (typeName && isEntityName(typeName)) { const serializationKind = resolver.getTypeReferenceSerializationKind(typeName); if (serializationKind === 1 || serializationKind === 0) { return typeName; } } return; } function enableSubstitutionForAsyncMethodsWithSuper() { if ((enabledSubstitutions & 1) === 0) { enabledSubstitutions |= 1; context.enableSubstitution(214); context.enableSubstitution(212); context.enableSubstitution(213); context.enableEmitNotification(264); context.enableEmitNotification(175); context.enableEmitNotification(178); context.enableEmitNotification(179); context.enableEmitNotification(177); context.enableEmitNotification(244); } } function onEmitNode(hint, node, emitCallback) { if (enabledSubstitutions & 1 && isSuperContainer(node)) { const superContainerFlags = (resolver.hasNodeCheckFlag(node, 128) ? 128 : 0) | (resolver.hasNodeCheckFlag(node, 256) ? 256 : 0); if (superContainerFlags !== enclosingSuperContainerFlags) { const savedEnclosingSuperContainerFlags = enclosingSuperContainerFlags; enclosingSuperContainerFlags = superContainerFlags; previousOnEmitNode(hint, node, emitCallback); enclosingSuperContainerFlags = savedEnclosingSuperContainerFlags; return; } } else if (enabledSubstitutions && substitutedSuperAccessors[getNodeId(node)]) { const savedEnclosingSuperContainerFlags = enclosingSuperContainerFlags; enclosingSuperContainerFlags = 0; previousOnEmitNode(hint, node, emitCallback); enclosingSuperContainerFlags = savedEnclosingSuperContainerFlags; return; } previousOnEmitNode(hint, node, emitCallback); } function onSubstituteNode(hint, node) { node = previousOnSubstituteNode(hint, node); if (hint === 1 && enclosingSuperContainerFlags) { return substituteExpression(node); } return node; } function substituteExpression(node) { switch (node.kind) { case 212: return substitutePropertyAccessExpression(node); case 213: return substituteElementAccessExpression(node); case 214: return substituteCallExpression(node); } return node; } function substitutePropertyAccessExpression(node) { if (node.expression.kind === 108) { return setTextRange(factory2.createPropertyAccessExpression(factory2.createUniqueName("_super", 16 | 32), node.name), node); } return node; } function substituteElementAccessExpression(node) { if (node.expression.kind === 108) { return createSuperElementAccessInAsyncMethod(node.argumentExpression, node); } return node; } function substituteCallExpression(node) { const expression = node.expression; if (isSuperProperty(expression)) { const argumentExpression = isPropertyAccessExpression(expression) ? substitutePropertyAccessExpression(expression) : substituteElementAccessExpression(expression); return factory2.createCallExpression(factory2.createPropertyAccessExpression(argumentExpression, "call"), undefined, [ factory2.createThis(), ...node.arguments ]); } return node; } function isSuperContainer(node) { const kind = node.kind; return kind === 264 || kind === 177 || kind === 175 || kind === 178 || kind === 179; } function createSuperElementAccessInAsyncMethod(argumentExpression, location) { if (enclosingSuperContainerFlags & 256) { return setTextRange(factory2.createPropertyAccessExpression(factory2.createCallExpression(factory2.createUniqueName("_superIndex", 16 | 32), undefined, [argumentExpression]), "value"), location); } else { return setTextRange(factory2.createCallExpression(factory2.createUniqueName("_superIndex", 16 | 32), undefined, [argumentExpression]), location); } } } function createSuperAccessVariableStatement(factory2, resolver, node, names) { const hasBinding = resolver.hasNodeCheckFlag(node, 256); const accessors = []; names.forEach((_, key) => { const name = unescapeLeadingUnderscores(key); const getterAndSetter = []; getterAndSetter.push(factory2.createPropertyAssignment("get", factory2.createArrowFunction(undefined, undefined, [], undefined, undefined, setEmitFlags(factory2.createPropertyAccessExpression(setEmitFlags(factory2.createSuper(), 8), name), 8)))); if (hasBinding) { getterAndSetter.push(factory2.createPropertyAssignment("set", factory2.createArrowFunction(undefined, undefined, [ factory2.createParameterDeclaration(undefined, undefined, "v", undefined, undefined, undefined) ], undefined, undefined, factory2.createAssignment(setEmitFlags(factory2.createPropertyAccessExpression(setEmitFlags(factory2.createSuper(), 8), name), 8), factory2.createIdentifier("v"))))); } accessors.push(factory2.createPropertyAssignment(name, factory2.createObjectLiteralExpression(getterAndSetter))); }); return factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(factory2.createUniqueName("_super", 16 | 32), undefined, undefined, factory2.createCallExpression(factory2.createPropertyAccessExpression(factory2.createIdentifier("Object"), "create"), undefined, [ factory2.createNull(), factory2.createObjectLiteralExpression(accessors, true) ])) ], 2)); } function transformES2018(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers, resumeLexicalEnvironment, endLexicalEnvironment, hoistVariableDeclaration } = context; const resolver = context.getEmitResolver(); const compilerOptions = context.getCompilerOptions(); const languageVersion = getEmitScriptTarget(compilerOptions); const previousOnEmitNode = context.onEmitNode; context.onEmitNode = onEmitNode; const previousOnSubstituteNode = context.onSubstituteNode; context.onSubstituteNode = onSubstituteNode; let exportedVariableStatement = false; let enabledSubstitutions = 0; let enclosingFunctionFlags; let parametersWithPrecedingObjectRestOrSpread; let enclosingSuperContainerFlags = 0; let hierarchyFacts = 0; let currentSourceFile; let taggedTemplateStringDeclarations; let capturedSuperProperties; let hasSuperElementAccess; const substitutedSuperAccessors = []; return chainBundle(context, transformSourceFile); function affectsSubtree(excludeFacts, includeFacts) { return hierarchyFacts !== (hierarchyFacts & ~excludeFacts | includeFacts); } function enterSubtree(excludeFacts, includeFacts) { const ancestorFacts = hierarchyFacts; hierarchyFacts = (hierarchyFacts & ~excludeFacts | includeFacts) & 3; return ancestorFacts; } function exitSubtree(ancestorFacts) { hierarchyFacts = ancestorFacts; } function recordTaggedTemplateString(temp) { taggedTemplateStringDeclarations = append(taggedTemplateStringDeclarations, factory2.createVariableDeclaration(temp)); } function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } currentSourceFile = node; const visited = visitSourceFile(node); addEmitHelpers(visited, context.readEmitHelpers()); currentSourceFile = undefined; taggedTemplateStringDeclarations = undefined; return visited; } function visitor(node) { return visitorWorker(node, false); } function visitorWithUnusedExpressionResult(node) { return visitorWorker(node, true); } function visitorNoAsyncModifier(node) { if (node.kind === 134) { return; } return node; } function doWithHierarchyFacts(cb, value, excludeFacts, includeFacts) { if (affectsSubtree(excludeFacts, includeFacts)) { const ancestorFacts = enterSubtree(excludeFacts, includeFacts); const result = cb(value); exitSubtree(ancestorFacts); return result; } return cb(value); } function visitDefault(node) { return visitEachChild(node, visitor, context); } function visitorWorker(node, expressionResultIsUnused2) { if ((node.transformFlags & 128) === 0) { return node; } switch (node.kind) { case 224: return visitAwaitExpression(node); case 230: return visitYieldExpression(node); case 254: return visitReturnStatement(node); case 257: return visitLabeledStatement(node); case 211: return visitObjectLiteralExpression(node); case 227: return visitBinaryExpression(node, expressionResultIsUnused2); case 357: return visitCommaListExpression(node, expressionResultIsUnused2); case 300: return visitCatchClause(node); case 244: return visitVariableStatement(node); case 261: return visitVariableDeclaration(node); case 247: case 248: case 250: return doWithHierarchyFacts(visitDefault, node, 0, 2); case 251: return visitForOfStatement(node, undefined); case 249: return doWithHierarchyFacts(visitForStatement, node, 0, 2); case 223: return visitVoidExpression(node); case 177: return doWithHierarchyFacts(visitConstructorDeclaration, node, 2, 1); case 175: return doWithHierarchyFacts(visitMethodDeclaration, node, 2, 1); case 178: return doWithHierarchyFacts(visitGetAccessorDeclaration, node, 2, 1); case 179: return doWithHierarchyFacts(visitSetAccessorDeclaration, node, 2, 1); case 263: return doWithHierarchyFacts(visitFunctionDeclaration, node, 2, 1); case 219: return doWithHierarchyFacts(visitFunctionExpression, node, 2, 1); case 220: return doWithHierarchyFacts(visitArrowFunction, node, 2, 0); case 170: return visitParameter(node); case 245: return visitExpressionStatement(node); case 218: return visitParenthesizedExpression(node, expressionResultIsUnused2); case 216: return visitTaggedTemplateExpression(node); case 212: if (capturedSuperProperties && isPropertyAccessExpression(node) && node.expression.kind === 108) { capturedSuperProperties.add(node.name.escapedText); } return visitEachChild(node, visitor, context); case 213: if (capturedSuperProperties && node.expression.kind === 108) { hasSuperElementAccess = true; } return visitEachChild(node, visitor, context); case 264: case 232: return doWithHierarchyFacts(visitDefault, node, 2, 1); default: return visitEachChild(node, visitor, context); } } function visitAwaitExpression(node) { if (enclosingFunctionFlags & 2 && enclosingFunctionFlags & 1) { return setOriginalNode(setTextRange(factory2.createYieldExpression(undefined, emitHelpers().createAwaitHelper(visitNode(node.expression, visitor, isExpression))), node), node); } return visitEachChild(node, visitor, context); } function visitYieldExpression(node) { if (enclosingFunctionFlags & 2 && enclosingFunctionFlags & 1) { if (node.asteriskToken) { const expression = visitNode(Debug.checkDefined(node.expression), visitor, isExpression); return setOriginalNode(setTextRange(factory2.createYieldExpression(undefined, emitHelpers().createAwaitHelper(factory2.updateYieldExpression(node, node.asteriskToken, setTextRange(emitHelpers().createAsyncDelegatorHelper(setTextRange(emitHelpers().createAsyncValuesHelper(expression), expression)), expression)))), node), node); } return setOriginalNode(setTextRange(factory2.createYieldExpression(undefined, createDownlevelAwait(node.expression ? visitNode(node.expression, visitor, isExpression) : factory2.createVoidZero())), node), node); } return visitEachChild(node, visitor, context); } function visitReturnStatement(node) { if (enclosingFunctionFlags & 2 && enclosingFunctionFlags & 1) { return factory2.updateReturnStatement(node, createDownlevelAwait(node.expression ? visitNode(node.expression, visitor, isExpression) : factory2.createVoidZero())); } return visitEachChild(node, visitor, context); } function visitLabeledStatement(node) { if (enclosingFunctionFlags & 2) { const statement = unwrapInnermostStatementOfLabel(node); if (statement.kind === 251 && statement.awaitModifier) { return visitForOfStatement(statement, node); } return factory2.restoreEnclosingLabel(visitNode(statement, visitor, isStatement, factory2.liftToBlock), node); } return visitEachChild(node, visitor, context); } function chunkObjectLiteralElements(elements) { let chunkObject; const objects = []; for (const e of elements) { if (e.kind === 306) { if (chunkObject) { objects.push(factory2.createObjectLiteralExpression(chunkObject)); chunkObject = undefined; } const target = e.expression; objects.push(visitNode(target, visitor, isExpression)); } else { chunkObject = append(chunkObject, e.kind === 304 ? factory2.createPropertyAssignment(e.name, visitNode(e.initializer, visitor, isExpression)) : visitNode(e, visitor, isObjectLiteralElementLike)); } } if (chunkObject) { objects.push(factory2.createObjectLiteralExpression(chunkObject)); } return objects; } function visitObjectLiteralExpression(node) { if (node.transformFlags & 65536) { const objects = chunkObjectLiteralElements(node.properties); if (objects.length && objects[0].kind !== 211) { objects.unshift(factory2.createObjectLiteralExpression()); } let expression = objects[0]; if (objects.length > 1) { for (let i = 1;i < objects.length; i++) { expression = emitHelpers().createAssignHelper([expression, objects[i]]); } return expression; } else { return emitHelpers().createAssignHelper(objects); } } return visitEachChild(node, visitor, context); } function visitExpressionStatement(node) { return visitEachChild(node, visitorWithUnusedExpressionResult, context); } function visitParenthesizedExpression(node, expressionResultIsUnused2) { return visitEachChild(node, expressionResultIsUnused2 ? visitorWithUnusedExpressionResult : visitor, context); } function visitSourceFile(node) { const ancestorFacts = enterSubtree(2, isEffectiveStrictModeSourceFile(node, compilerOptions) ? 0 : 1); exportedVariableStatement = false; const visited = visitEachChild(node, visitor, context); const statement = concatenate(visited.statements, taggedTemplateStringDeclarations && [ factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList(taggedTemplateStringDeclarations)) ]); const result = factory2.updateSourceFile(visited, setTextRange(factory2.createNodeArray(statement), node.statements)); exitSubtree(ancestorFacts); return result; } function visitTaggedTemplateExpression(node) { return processTaggedTemplateExpression(context, node, visitor, currentSourceFile, recordTaggedTemplateString, 0); } function visitBinaryExpression(node, expressionResultIsUnused2) { if (isDestructuringAssignment(node) && containsObjectRestOrSpread(node.left)) { return flattenDestructuringAssignment(node, visitor, context, 1, !expressionResultIsUnused2); } if (node.operatorToken.kind === 28) { return factory2.updateBinaryExpression(node, visitNode(node.left, visitorWithUnusedExpressionResult, isExpression), node.operatorToken, visitNode(node.right, expressionResultIsUnused2 ? visitorWithUnusedExpressionResult : visitor, isExpression)); } return visitEachChild(node, visitor, context); } function visitCommaListExpression(node, expressionResultIsUnused2) { if (expressionResultIsUnused2) { return visitEachChild(node, visitorWithUnusedExpressionResult, context); } let result; for (let i = 0;i < node.elements.length; i++) { const element = node.elements[i]; const visited = visitNode(element, i < node.elements.length - 1 ? visitorWithUnusedExpressionResult : visitor, isExpression); if (result || visited !== element) { result || (result = node.elements.slice(0, i)); result.push(visited); } } const elements = result ? setTextRange(factory2.createNodeArray(result), node.elements) : node.elements; return factory2.updateCommaListExpression(node, elements); } function visitCatchClause(node) { if (node.variableDeclaration && isBindingPattern(node.variableDeclaration.name) && node.variableDeclaration.name.transformFlags & 65536) { const name = factory2.getGeneratedNameForNode(node.variableDeclaration.name); const updatedDecl = factory2.updateVariableDeclaration(node.variableDeclaration, node.variableDeclaration.name, undefined, undefined, name); const visitedBindings = flattenDestructuringBinding(updatedDecl, visitor, context, 1); let block = visitNode(node.block, visitor, isBlock); if (some(visitedBindings)) { block = factory2.updateBlock(block, [ factory2.createVariableStatement(undefined, visitedBindings), ...block.statements ]); } return factory2.updateCatchClause(node, factory2.updateVariableDeclaration(node.variableDeclaration, name, undefined, undefined, undefined), block); } return visitEachChild(node, visitor, context); } function visitVariableStatement(node) { if (hasSyntacticModifier(node, 32)) { const savedExportedVariableStatement = exportedVariableStatement; exportedVariableStatement = true; const visited = visitEachChild(node, visitor, context); exportedVariableStatement = savedExportedVariableStatement; return visited; } return visitEachChild(node, visitor, context); } function visitVariableDeclaration(node) { if (exportedVariableStatement) { const savedExportedVariableStatement = exportedVariableStatement; exportedVariableStatement = false; const visited = visitVariableDeclarationWorker(node, true); exportedVariableStatement = savedExportedVariableStatement; return visited; } return visitVariableDeclarationWorker(node, false); } function visitVariableDeclarationWorker(node, exportedVariableStatement2) { if (isBindingPattern(node.name) && node.name.transformFlags & 65536) { return flattenDestructuringBinding(node, visitor, context, 1, undefined, exportedVariableStatement2); } return visitEachChild(node, visitor, context); } function visitForStatement(node) { return factory2.updateForStatement(node, visitNode(node.initializer, visitorWithUnusedExpressionResult, isForInitializer), visitNode(node.condition, visitor, isExpression), visitNode(node.incrementor, visitorWithUnusedExpressionResult, isExpression), visitIterationBody(node.statement, visitor, context)); } function visitVoidExpression(node) { return visitEachChild(node, visitorWithUnusedExpressionResult, context); } function visitForOfStatement(node, outermostLabeledStatement) { const ancestorFacts = enterSubtree(0, 2); if (node.initializer.transformFlags & 65536 || isAssignmentPattern(node.initializer) && containsObjectRestOrSpread(node.initializer)) { node = transformForOfStatementWithObjectRest(node); } const result = node.awaitModifier ? transformForAwaitOfStatement(node, outermostLabeledStatement, ancestorFacts) : factory2.restoreEnclosingLabel(visitEachChild(node, visitor, context), outermostLabeledStatement); exitSubtree(ancestorFacts); return result; } function transformForOfStatementWithObjectRest(node) { const initializerWithoutParens = skipParentheses(node.initializer); if (isVariableDeclarationList(initializerWithoutParens) || isAssignmentPattern(initializerWithoutParens)) { let bodyLocation; let statementsLocation; const temp = factory2.createTempVariable(undefined); const statements = [createForOfBindingStatement(factory2, initializerWithoutParens, temp)]; if (isBlock(node.statement)) { addRange(statements, node.statement.statements); bodyLocation = node.statement; statementsLocation = node.statement.statements; } else if (node.statement) { append(statements, node.statement); bodyLocation = node.statement; statementsLocation = node.statement; } return factory2.updateForOfStatement(node, node.awaitModifier, setTextRange(factory2.createVariableDeclarationList([ setTextRange(factory2.createVariableDeclaration(temp), node.initializer) ], 1), node.initializer), node.expression, setTextRange(factory2.createBlock(setTextRange(factory2.createNodeArray(statements), statementsLocation), true), bodyLocation)); } return node; } function convertForOfStatementHead(node, boundValue, nonUserCode) { const value = factory2.createTempVariable(hoistVariableDeclaration); const iteratorValueExpression = factory2.createAssignment(value, boundValue); const iteratorValueStatement = factory2.createExpressionStatement(iteratorValueExpression); setSourceMapRange(iteratorValueStatement, node.expression); const exitNonUserCodeExpression = factory2.createAssignment(nonUserCode, factory2.createFalse()); const exitNonUserCodeStatement = factory2.createExpressionStatement(exitNonUserCodeExpression); setSourceMapRange(exitNonUserCodeStatement, node.expression); const statements = [iteratorValueStatement, exitNonUserCodeStatement]; const binding = createForOfBindingStatement(factory2, node.initializer, value); statements.push(visitNode(binding, visitor, isStatement)); let bodyLocation; let statementsLocation; const statement = visitIterationBody(node.statement, visitor, context); if (isBlock(statement)) { addRange(statements, statement.statements); bodyLocation = statement; statementsLocation = statement.statements; } else { statements.push(statement); } return setTextRange(factory2.createBlock(setTextRange(factory2.createNodeArray(statements), statementsLocation), true), bodyLocation); } function createDownlevelAwait(expression) { return enclosingFunctionFlags & 1 ? factory2.createYieldExpression(undefined, emitHelpers().createAwaitHelper(expression)) : factory2.createAwaitExpression(expression); } function transformForAwaitOfStatement(node, outermostLabeledStatement, ancestorFacts) { const expression = visitNode(node.expression, visitor, isExpression); const iterator = isIdentifier(expression) ? factory2.getGeneratedNameForNode(expression) : factory2.createTempVariable(undefined); const result = isIdentifier(expression) ? factory2.getGeneratedNameForNode(iterator) : factory2.createTempVariable(undefined); const nonUserCode = factory2.createTempVariable(undefined); const done = factory2.createTempVariable(hoistVariableDeclaration); const errorRecord = factory2.createUniqueName("e"); const catchVariable = factory2.getGeneratedNameForNode(errorRecord); const returnMethod = factory2.createTempVariable(undefined); const callValues = setTextRange(emitHelpers().createAsyncValuesHelper(expression), node.expression); const callNext = factory2.createCallExpression(factory2.createPropertyAccessExpression(iterator, "next"), undefined, []); const getDone = factory2.createPropertyAccessExpression(result, "done"); const getValue = factory2.createPropertyAccessExpression(result, "value"); const callReturn = factory2.createFunctionCallCall(returnMethod, iterator, []); hoistVariableDeclaration(errorRecord); hoistVariableDeclaration(returnMethod); const initializer = ancestorFacts & 2 ? factory2.inlineExpressions([factory2.createAssignment(errorRecord, factory2.createVoidZero()), callValues]) : callValues; const forStatement = setEmitFlags(setTextRange(factory2.createForStatement(setEmitFlags(setTextRange(factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(nonUserCode, undefined, undefined, factory2.createTrue()), setTextRange(factory2.createVariableDeclaration(iterator, undefined, undefined, initializer), node.expression), factory2.createVariableDeclaration(result) ]), node.expression), 4194304), factory2.inlineExpressions([ factory2.createAssignment(result, createDownlevelAwait(callNext)), factory2.createAssignment(done, getDone), factory2.createLogicalNot(done) ]), factory2.createAssignment(nonUserCode, factory2.createTrue()), convertForOfStatementHead(node, getValue, nonUserCode)), node), 512); setOriginalNode(forStatement, node); return factory2.createTryStatement(factory2.createBlock([ factory2.restoreEnclosingLabel(forStatement, outermostLabeledStatement) ]), factory2.createCatchClause(factory2.createVariableDeclaration(catchVariable), setEmitFlags(factory2.createBlock([ factory2.createExpressionStatement(factory2.createAssignment(errorRecord, factory2.createObjectLiteralExpression([ factory2.createPropertyAssignment("error", catchVariable) ]))) ]), 1)), factory2.createBlock([ factory2.createTryStatement(factory2.createBlock([ setEmitFlags(factory2.createIfStatement(factory2.createLogicalAnd(factory2.createLogicalAnd(factory2.createLogicalNot(nonUserCode), factory2.createLogicalNot(done)), factory2.createAssignment(returnMethod, factory2.createPropertyAccessExpression(iterator, "return"))), factory2.createExpressionStatement(createDownlevelAwait(callReturn))), 1) ]), undefined, setEmitFlags(factory2.createBlock([ setEmitFlags(factory2.createIfStatement(errorRecord, factory2.createThrowStatement(factory2.createPropertyAccessExpression(errorRecord, "error"))), 1) ]), 1)) ])); } function parameterVisitor(node) { Debug.assertNode(node, isParameter); return visitParameter(node); } function visitParameter(node) { if (parametersWithPrecedingObjectRestOrSpread == null ? undefined : parametersWithPrecedingObjectRestOrSpread.has(node)) { return factory2.updateParameterDeclaration(node, undefined, node.dotDotDotToken, isBindingPattern(node.name) ? factory2.getGeneratedNameForNode(node) : node.name, undefined, undefined, undefined); } if (node.transformFlags & 65536) { return factory2.updateParameterDeclaration(node, undefined, node.dotDotDotToken, factory2.getGeneratedNameForNode(node), undefined, undefined, visitNode(node.initializer, visitor, isExpression)); } return visitEachChild(node, visitor, context); } function collectParametersWithPrecedingObjectRestOrSpread(node) { let parameters; for (const parameter of node.parameters) { if (parameters) { parameters.add(parameter); } else if (parameter.transformFlags & 65536) { parameters = /* @__PURE__ */ new Set; } } return parameters; } function visitConstructorDeclaration(node) { const savedEnclosingFunctionFlags = enclosingFunctionFlags; const savedParametersWithPrecedingObjectRestOrSpread = parametersWithPrecedingObjectRestOrSpread; enclosingFunctionFlags = getFunctionFlags(node); parametersWithPrecedingObjectRestOrSpread = collectParametersWithPrecedingObjectRestOrSpread(node); const updated = factory2.updateConstructorDeclaration(node, node.modifiers, visitParameterList(node.parameters, parameterVisitor, context), transformFunctionBody2(node)); enclosingFunctionFlags = savedEnclosingFunctionFlags; parametersWithPrecedingObjectRestOrSpread = savedParametersWithPrecedingObjectRestOrSpread; return updated; } function visitGetAccessorDeclaration(node) { const savedEnclosingFunctionFlags = enclosingFunctionFlags; const savedParametersWithPrecedingObjectRestOrSpread = parametersWithPrecedingObjectRestOrSpread; enclosingFunctionFlags = getFunctionFlags(node); parametersWithPrecedingObjectRestOrSpread = collectParametersWithPrecedingObjectRestOrSpread(node); const updated = factory2.updateGetAccessorDeclaration(node, node.modifiers, visitNode(node.name, visitor, isPropertyName), visitParameterList(node.parameters, parameterVisitor, context), undefined, transformFunctionBody2(node)); enclosingFunctionFlags = savedEnclosingFunctionFlags; parametersWithPrecedingObjectRestOrSpread = savedParametersWithPrecedingObjectRestOrSpread; return updated; } function visitSetAccessorDeclaration(node) { const savedEnclosingFunctionFlags = enclosingFunctionFlags; const savedParametersWithPrecedingObjectRestOrSpread = parametersWithPrecedingObjectRestOrSpread; enclosingFunctionFlags = getFunctionFlags(node); parametersWithPrecedingObjectRestOrSpread = collectParametersWithPrecedingObjectRestOrSpread(node); const updated = factory2.updateSetAccessorDeclaration(node, node.modifiers, visitNode(node.name, visitor, isPropertyName), visitParameterList(node.parameters, parameterVisitor, context), transformFunctionBody2(node)); enclosingFunctionFlags = savedEnclosingFunctionFlags; parametersWithPrecedingObjectRestOrSpread = savedParametersWithPrecedingObjectRestOrSpread; return updated; } function visitMethodDeclaration(node) { const savedEnclosingFunctionFlags = enclosingFunctionFlags; const savedParametersWithPrecedingObjectRestOrSpread = parametersWithPrecedingObjectRestOrSpread; enclosingFunctionFlags = getFunctionFlags(node); parametersWithPrecedingObjectRestOrSpread = collectParametersWithPrecedingObjectRestOrSpread(node); const updated = factory2.updateMethodDeclaration(node, enclosingFunctionFlags & 1 ? visitNodes2(node.modifiers, visitorNoAsyncModifier, isModifierLike) : node.modifiers, enclosingFunctionFlags & 2 ? undefined : node.asteriskToken, visitNode(node.name, visitor, isPropertyName), visitNode(undefined, visitor, isQuestionToken), undefined, enclosingFunctionFlags & 2 && enclosingFunctionFlags & 1 ? transformAsyncGeneratorFunctionParameterList(node) : visitParameterList(node.parameters, parameterVisitor, context), undefined, enclosingFunctionFlags & 2 && enclosingFunctionFlags & 1 ? transformAsyncGeneratorFunctionBody(node) : transformFunctionBody2(node)); enclosingFunctionFlags = savedEnclosingFunctionFlags; parametersWithPrecedingObjectRestOrSpread = savedParametersWithPrecedingObjectRestOrSpread; return updated; } function visitFunctionDeclaration(node) { const savedEnclosingFunctionFlags = enclosingFunctionFlags; const savedParametersWithPrecedingObjectRestOrSpread = parametersWithPrecedingObjectRestOrSpread; enclosingFunctionFlags = getFunctionFlags(node); parametersWithPrecedingObjectRestOrSpread = collectParametersWithPrecedingObjectRestOrSpread(node); const updated = factory2.updateFunctionDeclaration(node, enclosingFunctionFlags & 1 ? visitNodes2(node.modifiers, visitorNoAsyncModifier, isModifier) : node.modifiers, enclosingFunctionFlags & 2 ? undefined : node.asteriskToken, node.name, undefined, enclosingFunctionFlags & 2 && enclosingFunctionFlags & 1 ? transformAsyncGeneratorFunctionParameterList(node) : visitParameterList(node.parameters, parameterVisitor, context), undefined, enclosingFunctionFlags & 2 && enclosingFunctionFlags & 1 ? transformAsyncGeneratorFunctionBody(node) : transformFunctionBody2(node)); enclosingFunctionFlags = savedEnclosingFunctionFlags; parametersWithPrecedingObjectRestOrSpread = savedParametersWithPrecedingObjectRestOrSpread; return updated; } function visitArrowFunction(node) { const savedEnclosingFunctionFlags = enclosingFunctionFlags; const savedParametersWithPrecedingObjectRestOrSpread = parametersWithPrecedingObjectRestOrSpread; enclosingFunctionFlags = getFunctionFlags(node); parametersWithPrecedingObjectRestOrSpread = collectParametersWithPrecedingObjectRestOrSpread(node); const updated = factory2.updateArrowFunction(node, node.modifiers, undefined, visitParameterList(node.parameters, parameterVisitor, context), undefined, node.equalsGreaterThanToken, transformFunctionBody2(node)); enclosingFunctionFlags = savedEnclosingFunctionFlags; parametersWithPrecedingObjectRestOrSpread = savedParametersWithPrecedingObjectRestOrSpread; return updated; } function visitFunctionExpression(node) { const savedEnclosingFunctionFlags = enclosingFunctionFlags; const savedParametersWithPrecedingObjectRestOrSpread = parametersWithPrecedingObjectRestOrSpread; enclosingFunctionFlags = getFunctionFlags(node); parametersWithPrecedingObjectRestOrSpread = collectParametersWithPrecedingObjectRestOrSpread(node); const updated = factory2.updateFunctionExpression(node, enclosingFunctionFlags & 1 ? visitNodes2(node.modifiers, visitorNoAsyncModifier, isModifier) : node.modifiers, enclosingFunctionFlags & 2 ? undefined : node.asteriskToken, node.name, undefined, enclosingFunctionFlags & 2 && enclosingFunctionFlags & 1 ? transformAsyncGeneratorFunctionParameterList(node) : visitParameterList(node.parameters, parameterVisitor, context), undefined, enclosingFunctionFlags & 2 && enclosingFunctionFlags & 1 ? transformAsyncGeneratorFunctionBody(node) : transformFunctionBody2(node)); enclosingFunctionFlags = savedEnclosingFunctionFlags; parametersWithPrecedingObjectRestOrSpread = savedParametersWithPrecedingObjectRestOrSpread; return updated; } function transformAsyncGeneratorFunctionParameterList(node) { if (isSimpleParameterList(node.parameters)) { return visitParameterList(node.parameters, visitor, context); } const newParameters = []; for (const parameter of node.parameters) { if (parameter.initializer || parameter.dotDotDotToken) { break; } const newParameter = factory2.createParameterDeclaration(undefined, undefined, factory2.getGeneratedNameForNode(parameter.name, 8)); newParameters.push(newParameter); } const newParametersArray = factory2.createNodeArray(newParameters); setTextRange(newParametersArray, node.parameters); return newParametersArray; } function transformAsyncGeneratorFunctionBody(node) { const innerParameters = !isSimpleParameterList(node.parameters) ? visitParameterList(node.parameters, visitor, context) : undefined; resumeLexicalEnvironment(); const savedCapturedSuperProperties = capturedSuperProperties; const savedHasSuperElementAccess = hasSuperElementAccess; capturedSuperProperties = /* @__PURE__ */ new Set; hasSuperElementAccess = false; const outerStatements = []; let asyncBody = factory2.updateBlock(node.body, visitNodes2(node.body.statements, visitor, isStatement)); asyncBody = factory2.updateBlock(asyncBody, factory2.mergeLexicalEnvironment(asyncBody.statements, appendObjectRestAssignmentsIfNeeded(endLexicalEnvironment(), node))); const returnStatement = factory2.createReturnStatement(emitHelpers().createAsyncGeneratorHelper(factory2.createFunctionExpression(undefined, factory2.createToken(42), node.name && factory2.getGeneratedNameForNode(node.name), undefined, innerParameters ?? [], undefined, asyncBody), !!(hierarchyFacts & 1))); const emitSuperHelpers = languageVersion >= 2 && (resolver.hasNodeCheckFlag(node, 256) || resolver.hasNodeCheckFlag(node, 128)); if (emitSuperHelpers) { enableSubstitutionForAsyncMethodsWithSuper(); const variableStatement = createSuperAccessVariableStatement(factory2, resolver, node, capturedSuperProperties); substitutedSuperAccessors[getNodeId(variableStatement)] = true; insertStatementsAfterStandardPrologue(outerStatements, [variableStatement]); } outerStatements.push(returnStatement); const block = factory2.updateBlock(node.body, outerStatements); if (emitSuperHelpers && hasSuperElementAccess) { if (resolver.hasNodeCheckFlag(node, 256)) { addEmitHelper(block, advancedAsyncSuperHelper); } else if (resolver.hasNodeCheckFlag(node, 128)) { addEmitHelper(block, asyncSuperHelper); } } capturedSuperProperties = savedCapturedSuperProperties; hasSuperElementAccess = savedHasSuperElementAccess; return block; } function transformFunctionBody2(node) { resumeLexicalEnvironment(); let statementOffset = 0; const statements = []; const body = visitNode(node.body, visitor, isConciseBody) ?? factory2.createBlock([]); if (isBlock(body)) { statementOffset = factory2.copyPrologue(body.statements, statements, false, visitor); } addRange(statements, appendObjectRestAssignmentsIfNeeded(undefined, node)); const leadingStatements = endLexicalEnvironment(); if (statementOffset > 0 || some(statements) || some(leadingStatements)) { const block = factory2.converters.convertToFunctionBlock(body, true); insertStatementsAfterStandardPrologue(statements, leadingStatements); addRange(statements, block.statements.slice(statementOffset)); return factory2.updateBlock(block, setTextRange(factory2.createNodeArray(statements), block.statements)); } return body; } function appendObjectRestAssignmentsIfNeeded(statements, node) { let containsPrecedingObjectRestOrSpread = false; for (const parameter of node.parameters) { if (containsPrecedingObjectRestOrSpread) { if (isBindingPattern(parameter.name)) { if (parameter.name.elements.length > 0) { const declarations = flattenDestructuringBinding(parameter, visitor, context, 0, factory2.getGeneratedNameForNode(parameter)); if (some(declarations)) { const declarationList = factory2.createVariableDeclarationList(declarations); const statement = factory2.createVariableStatement(undefined, declarationList); setEmitFlags(statement, 2097152); statements = append(statements, statement); } } else if (parameter.initializer) { const name = factory2.getGeneratedNameForNode(parameter); const initializer = visitNode(parameter.initializer, visitor, isExpression); const assignment = factory2.createAssignment(name, initializer); const statement = factory2.createExpressionStatement(assignment); setEmitFlags(statement, 2097152); statements = append(statements, statement); } } else if (parameter.initializer) { const name = factory2.cloneNode(parameter.name); setTextRange(name, parameter.name); setEmitFlags(name, 96); const initializer = visitNode(parameter.initializer, visitor, isExpression); addEmitFlags(initializer, 96 | 3072); const assignment = factory2.createAssignment(name, initializer); setTextRange(assignment, parameter); setEmitFlags(assignment, 3072); const block = factory2.createBlock([factory2.createExpressionStatement(assignment)]); setTextRange(block, parameter); setEmitFlags(block, 1 | 64 | 768 | 3072); const typeCheck = factory2.createTypeCheck(factory2.cloneNode(parameter.name), "undefined"); const statement = factory2.createIfStatement(typeCheck, block); startOnNewLine(statement); setTextRange(statement, parameter); setEmitFlags(statement, 768 | 64 | 2097152 | 3072); statements = append(statements, statement); } } else if (parameter.transformFlags & 65536) { containsPrecedingObjectRestOrSpread = true; const declarations = flattenDestructuringBinding(parameter, visitor, context, 1, factory2.getGeneratedNameForNode(parameter), false, true); if (some(declarations)) { const declarationList = factory2.createVariableDeclarationList(declarations); const statement = factory2.createVariableStatement(undefined, declarationList); setEmitFlags(statement, 2097152); statements = append(statements, statement); } } } return statements; } function enableSubstitutionForAsyncMethodsWithSuper() { if ((enabledSubstitutions & 1) === 0) { enabledSubstitutions |= 1; context.enableSubstitution(214); context.enableSubstitution(212); context.enableSubstitution(213); context.enableEmitNotification(264); context.enableEmitNotification(175); context.enableEmitNotification(178); context.enableEmitNotification(179); context.enableEmitNotification(177); context.enableEmitNotification(244); } } function onEmitNode(hint, node, emitCallback) { if (enabledSubstitutions & 1 && isSuperContainer(node)) { const superContainerFlags = (resolver.hasNodeCheckFlag(node, 128) ? 128 : 0) | (resolver.hasNodeCheckFlag(node, 256) ? 256 : 0); if (superContainerFlags !== enclosingSuperContainerFlags) { const savedEnclosingSuperContainerFlags = enclosingSuperContainerFlags; enclosingSuperContainerFlags = superContainerFlags; previousOnEmitNode(hint, node, emitCallback); enclosingSuperContainerFlags = savedEnclosingSuperContainerFlags; return; } } else if (enabledSubstitutions && substitutedSuperAccessors[getNodeId(node)]) { const savedEnclosingSuperContainerFlags = enclosingSuperContainerFlags; enclosingSuperContainerFlags = 0; previousOnEmitNode(hint, node, emitCallback); enclosingSuperContainerFlags = savedEnclosingSuperContainerFlags; return; } previousOnEmitNode(hint, node, emitCallback); } function onSubstituteNode(hint, node) { node = previousOnSubstituteNode(hint, node); if (hint === 1 && enclosingSuperContainerFlags) { return substituteExpression(node); } return node; } function substituteExpression(node) { switch (node.kind) { case 212: return substitutePropertyAccessExpression(node); case 213: return substituteElementAccessExpression(node); case 214: return substituteCallExpression(node); } return node; } function substitutePropertyAccessExpression(node) { if (node.expression.kind === 108) { return setTextRange(factory2.createPropertyAccessExpression(factory2.createUniqueName("_super", 16 | 32), node.name), node); } return node; } function substituteElementAccessExpression(node) { if (node.expression.kind === 108) { return createSuperElementAccessInAsyncMethod(node.argumentExpression, node); } return node; } function substituteCallExpression(node) { const expression = node.expression; if (isSuperProperty(expression)) { const argumentExpression = isPropertyAccessExpression(expression) ? substitutePropertyAccessExpression(expression) : substituteElementAccessExpression(expression); return factory2.createCallExpression(factory2.createPropertyAccessExpression(argumentExpression, "call"), undefined, [ factory2.createThis(), ...node.arguments ]); } return node; } function isSuperContainer(node) { const kind = node.kind; return kind === 264 || kind === 177 || kind === 175 || kind === 178 || kind === 179; } function createSuperElementAccessInAsyncMethod(argumentExpression, location) { if (enclosingSuperContainerFlags & 256) { return setTextRange(factory2.createPropertyAccessExpression(factory2.createCallExpression(factory2.createIdentifier("_superIndex"), undefined, [argumentExpression]), "value"), location); } else { return setTextRange(factory2.createCallExpression(factory2.createIdentifier("_superIndex"), undefined, [argumentExpression]), location); } } } function transformES2019(context) { const factory2 = context.factory; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } return visitEachChild(node, visitor, context); } function visitor(node) { if ((node.transformFlags & 64) === 0) { return node; } switch (node.kind) { case 300: return visitCatchClause(node); default: return visitEachChild(node, visitor, context); } } function visitCatchClause(node) { if (!node.variableDeclaration) { return factory2.updateCatchClause(node, factory2.createVariableDeclaration(factory2.createTempVariable(undefined)), visitNode(node.block, visitor, isBlock)); } return visitEachChild(node, visitor, context); } } function transformES2020(context) { const { factory: factory2, hoistVariableDeclaration } = context; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } return visitEachChild(node, visitor, context); } function visitor(node) { if ((node.transformFlags & 32) === 0) { return node; } switch (node.kind) { case 214: { const updated = visitNonOptionalCallExpression(node, false); Debug.assertNotNode(updated, isSyntheticReference); return updated; } case 212: case 213: if (isOptionalChain(node)) { const updated = visitOptionalExpression(node, false, false); Debug.assertNotNode(updated, isSyntheticReference); return updated; } return visitEachChild(node, visitor, context); case 227: if (node.operatorToken.kind === 61) { return transformNullishCoalescingExpression(node); } return visitEachChild(node, visitor, context); case 221: return visitDeleteExpression(node); default: return visitEachChild(node, visitor, context); } } function flattenChain(chain) { Debug.assertNotNode(chain, isNonNullChain); const links = [chain]; while (!chain.questionDotToken && !isTaggedTemplateExpression(chain)) { chain = cast(skipPartiallyEmittedExpressions(chain.expression), isOptionalChain); Debug.assertNotNode(chain, isNonNullChain); links.unshift(chain); } return { expression: chain.expression, chain: links }; } function visitNonOptionalParenthesizedExpression(node, captureThisArg, isDelete) { const expression = visitNonOptionalExpression(node.expression, captureThisArg, isDelete); if (isSyntheticReference(expression)) { return factory2.createSyntheticReferenceExpression(factory2.updateParenthesizedExpression(node, expression.expression), expression.thisArg); } return factory2.updateParenthesizedExpression(node, expression); } function visitNonOptionalPropertyOrElementAccessExpression(node, captureThisArg, isDelete) { if (isOptionalChain(node)) { return visitOptionalExpression(node, captureThisArg, isDelete); } let expression = visitNode(node.expression, visitor, isExpression); Debug.assertNotNode(expression, isSyntheticReference); let thisArg; if (captureThisArg) { if (!isSimpleCopiableExpression(expression)) { thisArg = factory2.createTempVariable(hoistVariableDeclaration); expression = factory2.createAssignment(thisArg, expression); } else { thisArg = expression; } } expression = node.kind === 212 ? factory2.updatePropertyAccessExpression(node, expression, visitNode(node.name, visitor, isIdentifier)) : factory2.updateElementAccessExpression(node, expression, visitNode(node.argumentExpression, visitor, isExpression)); return thisArg ? factory2.createSyntheticReferenceExpression(expression, thisArg) : expression; } function visitNonOptionalCallExpression(node, captureThisArg) { if (isOptionalChain(node)) { return visitOptionalExpression(node, captureThisArg, false); } if (isParenthesizedExpression(node.expression) && isOptionalChain(skipParentheses(node.expression))) { const expression = visitNonOptionalParenthesizedExpression(node.expression, true, false); const args = visitNodes2(node.arguments, visitor, isExpression); if (isSyntheticReference(expression)) { return setTextRange(factory2.createFunctionCallCall(expression.expression, expression.thisArg, args), node); } return factory2.updateCallExpression(node, expression, undefined, args); } return visitEachChild(node, visitor, context); } function visitNonOptionalExpression(node, captureThisArg, isDelete) { switch (node.kind) { case 218: return visitNonOptionalParenthesizedExpression(node, captureThisArg, isDelete); case 212: case 213: return visitNonOptionalPropertyOrElementAccessExpression(node, captureThisArg, isDelete); case 214: return visitNonOptionalCallExpression(node, captureThisArg); default: return visitNode(node, visitor, isExpression); } } function visitOptionalExpression(node, captureThisArg, isDelete) { const { expression, chain } = flattenChain(node); const left = visitNonOptionalExpression(skipPartiallyEmittedExpressions(expression), isCallChain(chain[0]), false); let leftThisArg = isSyntheticReference(left) ? left.thisArg : undefined; let capturedLeft = isSyntheticReference(left) ? left.expression : left; let leftExpression = factory2.restoreOuterExpressions(expression, capturedLeft, 8); if (!isSimpleCopiableExpression(capturedLeft)) { capturedLeft = factory2.createTempVariable(hoistVariableDeclaration); leftExpression = factory2.createAssignment(capturedLeft, leftExpression); } let rightExpression = capturedLeft; let thisArg; for (let i = 0;i < chain.length; i++) { const segment = chain[i]; switch (segment.kind) { case 212: case 213: if (i === chain.length - 1 && captureThisArg) { if (!isSimpleCopiableExpression(rightExpression)) { thisArg = factory2.createTempVariable(hoistVariableDeclaration); rightExpression = factory2.createAssignment(thisArg, rightExpression); } else { thisArg = rightExpression; } } rightExpression = segment.kind === 212 ? factory2.createPropertyAccessExpression(rightExpression, visitNode(segment.name, visitor, isIdentifier)) : factory2.createElementAccessExpression(rightExpression, visitNode(segment.argumentExpression, visitor, isExpression)); break; case 214: if (i === 0 && leftThisArg) { if (!isGeneratedIdentifier(leftThisArg)) { leftThisArg = factory2.cloneNode(leftThisArg); addEmitFlags(leftThisArg, 3072); } rightExpression = factory2.createFunctionCallCall(rightExpression, leftThisArg.kind === 108 ? factory2.createThis() : leftThisArg, visitNodes2(segment.arguments, visitor, isExpression)); } else { rightExpression = factory2.createCallExpression(rightExpression, undefined, visitNodes2(segment.arguments, visitor, isExpression)); } break; } setOriginalNode(rightExpression, segment); } const target = isDelete ? factory2.createConditionalExpression(createNotNullCondition(leftExpression, capturedLeft, true), undefined, factory2.createTrue(), undefined, factory2.createDeleteExpression(rightExpression)) : factory2.createConditionalExpression(createNotNullCondition(leftExpression, capturedLeft, true), undefined, factory2.createVoidZero(), undefined, rightExpression); setTextRange(target, node); return thisArg ? factory2.createSyntheticReferenceExpression(target, thisArg) : target; } function createNotNullCondition(left, right, invert) { return factory2.createBinaryExpression(factory2.createBinaryExpression(left, factory2.createToken(invert ? 37 : 38), factory2.createNull()), factory2.createToken(invert ? 57 : 56), factory2.createBinaryExpression(right, factory2.createToken(invert ? 37 : 38), factory2.createVoidZero())); } function transformNullishCoalescingExpression(node) { let left = visitNode(node.left, visitor, isExpression); let right = left; if (!isSimpleCopiableExpression(left)) { right = factory2.createTempVariable(hoistVariableDeclaration); left = factory2.createAssignment(right, left); } return setTextRange(factory2.createConditionalExpression(createNotNullCondition(left, right), undefined, right, undefined, visitNode(node.right, visitor, isExpression)), node); } function visitDeleteExpression(node) { return isOptionalChain(skipParentheses(node.expression)) ? setOriginalNode(visitNonOptionalExpression(node.expression, false, true), node) : factory2.updateDeleteExpression(node, visitNode(node.expression, visitor, isExpression)); } } function transformES2021(context) { const { hoistVariableDeclaration, factory: factory2 } = context; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } return visitEachChild(node, visitor, context); } function visitor(node) { if ((node.transformFlags & 16) === 0) { return node; } if (isLogicalOrCoalescingAssignmentExpression(node)) { return transformLogicalAssignment(node); } return visitEachChild(node, visitor, context); } function transformLogicalAssignment(binaryExpression) { const operator = binaryExpression.operatorToken; const nonAssignmentOperator = getNonAssignmentOperatorForCompoundAssignment(operator.kind); let left = skipParentheses(visitNode(binaryExpression.left, visitor, isLeftHandSideExpression)); let assignmentTarget = left; const right = skipParentheses(visitNode(binaryExpression.right, visitor, isExpression)); if (isAccessExpression(left)) { const propertyAccessTargetSimpleCopiable = isSimpleCopiableExpression(left.expression); const propertyAccessTarget = propertyAccessTargetSimpleCopiable ? left.expression : factory2.createTempVariable(hoistVariableDeclaration); const propertyAccessTargetAssignment = propertyAccessTargetSimpleCopiable ? left.expression : factory2.createAssignment(propertyAccessTarget, left.expression); if (isPropertyAccessExpression(left)) { assignmentTarget = factory2.createPropertyAccessExpression(propertyAccessTarget, left.name); left = factory2.createPropertyAccessExpression(propertyAccessTargetAssignment, left.name); } else { const elementAccessArgumentSimpleCopiable = isSimpleCopiableExpression(left.argumentExpression); const elementAccessArgument = elementAccessArgumentSimpleCopiable ? left.argumentExpression : factory2.createTempVariable(hoistVariableDeclaration); assignmentTarget = factory2.createElementAccessExpression(propertyAccessTarget, elementAccessArgument); left = factory2.createElementAccessExpression(propertyAccessTargetAssignment, elementAccessArgumentSimpleCopiable ? left.argumentExpression : factory2.createAssignment(elementAccessArgument, left.argumentExpression)); } } return factory2.createBinaryExpression(left, nonAssignmentOperator, factory2.createParenthesizedExpression(factory2.createAssignment(assignmentTarget, right))); } } function transformESNext(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers, hoistVariableDeclaration, startLexicalEnvironment, endLexicalEnvironment } = context; let exportBindings; let exportVars; let defaultExportBinding; let exportEqualsBinding; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } const visited = visitNode(node, visitor, isSourceFile); addEmitHelpers(visited, context.readEmitHelpers()); exportVars = undefined; exportBindings = undefined; defaultExportBinding = undefined; return visited; } function visitor(node) { if ((node.transformFlags & 4) === 0) { return node; } switch (node.kind) { case 308: return visitSourceFile(node); case 242: return visitBlock(node); case 249: return visitForStatement(node); case 251: return visitForOfStatement(node); default: return visitEachChild(node, visitor, context); } } function visitSourceFile(node) { const usingKind = getUsingKindOfStatements(node.statements); if (usingKind) { startLexicalEnvironment(); exportBindings = new IdentifierNameMap; exportVars = []; const prologueCount = countPrologueStatements(node.statements); const topLevelStatements = []; addRange(topLevelStatements, visitArray(node.statements, visitor, isStatement, 0, prologueCount)); let pos = prologueCount; while (pos < node.statements.length) { const statement = node.statements[pos]; if (getUsingKind(statement) !== 0) { if (pos > prologueCount) { addRange(topLevelStatements, visitNodes2(node.statements, visitor, isStatement, prologueCount, pos - prologueCount)); } break; } pos++; } Debug.assert(pos < node.statements.length, "Should have encountered at least one 'using' statement."); const envBinding = createEnvBinding(); const bodyStatements = transformUsingDeclarations(node.statements, pos, node.statements.length, envBinding, topLevelStatements); if (exportBindings.size) { append(topLevelStatements, factory2.createExportDeclaration(undefined, false, factory2.createNamedExports(arrayFrom(exportBindings.values())))); } addRange(topLevelStatements, endLexicalEnvironment()); if (exportVars.length) { topLevelStatements.push(factory2.createVariableStatement(factory2.createModifiersFromModifierFlags(32), factory2.createVariableDeclarationList(exportVars, 1))); } addRange(topLevelStatements, createDownlevelUsingStatements(bodyStatements, envBinding, usingKind === 2)); if (exportEqualsBinding) { topLevelStatements.push(factory2.createExportAssignment(undefined, true, exportEqualsBinding)); } return factory2.updateSourceFile(node, topLevelStatements); } return visitEachChild(node, visitor, context); } function visitBlock(node) { const usingKind = getUsingKindOfStatements(node.statements); if (usingKind) { const prologueCount = countPrologueStatements(node.statements); const envBinding = createEnvBinding(); return factory2.updateBlock(node, [ ...visitArray(node.statements, visitor, isStatement, 0, prologueCount), ...createDownlevelUsingStatements(transformUsingDeclarations(node.statements, prologueCount, node.statements.length, envBinding, undefined), envBinding, usingKind === 2) ]); } return visitEachChild(node, visitor, context); } function visitForStatement(node) { if (node.initializer && isUsingVariableDeclarationList(node.initializer)) { return visitNode(factory2.createBlock([ factory2.createVariableStatement(undefined, node.initializer), factory2.updateForStatement(node, undefined, node.condition, node.incrementor, node.statement) ]), visitor, isStatement); } return visitEachChild(node, visitor, context); } function visitForOfStatement(node) { if (isUsingVariableDeclarationList(node.initializer)) { const forInitializer = node.initializer; const forDecl = firstOrUndefined(forInitializer.declarations) || factory2.createVariableDeclaration(factory2.createTempVariable(undefined)); const isAwaitUsing = getUsingKindOfVariableDeclarationList(forInitializer) === 2; const temp = factory2.getGeneratedNameForNode(forDecl.name); const usingVar = factory2.updateVariableDeclaration(forDecl, forDecl.name, undefined, undefined, temp); const usingVarList = factory2.createVariableDeclarationList([usingVar], isAwaitUsing ? 6 : 4); const usingVarStatement = factory2.createVariableStatement(undefined, usingVarList); return visitNode(factory2.updateForOfStatement(node, node.awaitModifier, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(temp) ], 2), node.expression, isBlock(node.statement) ? factory2.updateBlock(node.statement, [ usingVarStatement, ...node.statement.statements ]) : factory2.createBlock([ usingVarStatement, node.statement ], true)), visitor, isStatement); } return visitEachChild(node, visitor, context); } function transformUsingDeclarations(statementsIn, start, end, envBinding, topLevelStatements) { const statements = []; for (let i = start;i < end; i++) { const statement = statementsIn[i]; const usingKind = getUsingKind(statement); if (usingKind) { Debug.assertNode(statement, isVariableStatement); const declarations = []; for (let declaration of statement.declarationList.declarations) { if (!isIdentifier(declaration.name)) { declarations.length = 0; break; } if (isNamedEvaluation(declaration)) { declaration = transformNamedEvaluation(context, declaration); } const initializer = visitNode(declaration.initializer, visitor, isExpression) ?? factory2.createVoidZero(); declarations.push(factory2.updateVariableDeclaration(declaration, declaration.name, undefined, undefined, emitHelpers().createAddDisposableResourceHelper(envBinding, initializer, usingKind === 2))); } if (declarations.length) { const varList = factory2.createVariableDeclarationList(declarations, 2); setOriginalNode(varList, statement.declarationList); setTextRange(varList, statement.declarationList); hoistOrAppendNode(factory2.updateVariableStatement(statement, undefined, varList)); continue; } } const result = visitor(statement); if (isArray(result)) { result.forEach(hoistOrAppendNode); } else if (result) { hoistOrAppendNode(result); } } return statements; function hoistOrAppendNode(node) { Debug.assertNode(node, isStatement); append(statements, hoist(node)); } function hoist(node) { if (!topLevelStatements) return node; switch (node.kind) { case 273: case 272: case 279: case 263: return hoistImportOrExportOrHoistedDeclaration(node, topLevelStatements); case 278: return hoistExportAssignment(node); case 264: return hoistClassDeclaration(node); case 244: return hoistVariableStatement(node); } return node; } } function hoistImportOrExportOrHoistedDeclaration(node, topLevelStatements) { topLevelStatements.push(node); return; } function hoistExportAssignment(node) { return node.isExportEquals ? hoistExportEquals(node) : hoistExportDefault(node); } function hoistExportDefault(node) { if (defaultExportBinding) { return node; } defaultExportBinding = factory2.createUniqueName("_default", 8 | 32 | 16); hoistBindingIdentifier(defaultExportBinding, true, "default", node); let expression = node.expression; let innerExpression = skipOuterExpressions(expression); if (isNamedEvaluation(innerExpression)) { innerExpression = transformNamedEvaluation(context, innerExpression, false, "default"); expression = factory2.restoreOuterExpressions(expression, innerExpression); } const assignment = factory2.createAssignment(defaultExportBinding, expression); return factory2.createExpressionStatement(assignment); } function hoistExportEquals(node) { if (exportEqualsBinding) { return node; } exportEqualsBinding = factory2.createUniqueName("_default", 8 | 32 | 16); hoistVariableDeclaration(exportEqualsBinding); const assignment = factory2.createAssignment(exportEqualsBinding, node.expression); return factory2.createExpressionStatement(assignment); } function hoistClassDeclaration(node) { if (!node.name && defaultExportBinding) { return node; } const isExported2 = hasSyntacticModifier(node, 32); const isDefault = hasSyntacticModifier(node, 2048); let expression = factory2.converters.convertToClassExpression(node); if (node.name) { hoistBindingIdentifier(factory2.getLocalName(node), isExported2 && !isDefault, undefined, node); expression = factory2.createAssignment(factory2.getDeclarationName(node), expression); if (isNamedEvaluation(expression)) { expression = transformNamedEvaluation(context, expression, false); } setOriginalNode(expression, node); setSourceMapRange(expression, node); setCommentRange(expression, node); } if (isDefault && !defaultExportBinding) { defaultExportBinding = factory2.createUniqueName("_default", 8 | 32 | 16); hoistBindingIdentifier(defaultExportBinding, true, "default", node); expression = factory2.createAssignment(defaultExportBinding, expression); if (isNamedEvaluation(expression)) { expression = transformNamedEvaluation(context, expression, false, "default"); } setOriginalNode(expression, node); } return factory2.createExpressionStatement(expression); } function hoistVariableStatement(node) { let expressions; const isExported2 = hasSyntacticModifier(node, 32); for (const variable of node.declarationList.declarations) { hoistBindingElement(variable, isExported2, variable); if (variable.initializer) { expressions = append(expressions, hoistInitializedVariable(variable)); } } if (expressions) { const statement = factory2.createExpressionStatement(factory2.inlineExpressions(expressions)); setOriginalNode(statement, node); setCommentRange(statement, node); setSourceMapRange(statement, node); return statement; } return; } function hoistInitializedVariable(node) { Debug.assertIsDefined(node.initializer); let target; if (isIdentifier(node.name)) { target = factory2.cloneNode(node.name); setEmitFlags(target, getEmitFlags(target) & ~(32768 | 16384 | 65536)); } else { target = factory2.converters.convertToAssignmentPattern(node.name); } const assignment = factory2.createAssignment(target, node.initializer); setOriginalNode(assignment, node); setCommentRange(assignment, node); setSourceMapRange(assignment, node); return assignment; } function hoistBindingElement(node, isExportedDeclaration, original) { if (isBindingPattern(node.name)) { for (const element of node.name.elements) { if (!isOmittedExpression(element)) { hoistBindingElement(element, isExportedDeclaration, original); } } } else { hoistBindingIdentifier(node.name, isExportedDeclaration, undefined, original); } } function hoistBindingIdentifier(node, isExport, exportAlias, original) { const name = isGeneratedIdentifier(node) ? node : factory2.cloneNode(node); if (isExport) { if (exportAlias === undefined && !isLocalName(name)) { const varDecl = factory2.createVariableDeclaration(name); if (original) { setOriginalNode(varDecl, original); } exportVars.push(varDecl); return; } const localName = exportAlias !== undefined ? name : undefined; const exportName = exportAlias !== undefined ? exportAlias : name; const specifier = factory2.createExportSpecifier(false, localName, exportName); if (original) { setOriginalNode(specifier, original); } exportBindings.set(name, specifier); } hoistVariableDeclaration(name); } function createEnvBinding() { return factory2.createUniqueName("env"); } function createDownlevelUsingStatements(bodyStatements, envBinding, async) { const statements = []; const envObject = factory2.createObjectLiteralExpression([ factory2.createPropertyAssignment("stack", factory2.createArrayLiteralExpression()), factory2.createPropertyAssignment("error", factory2.createVoidZero()), factory2.createPropertyAssignment("hasError", factory2.createFalse()) ]); const envVar = factory2.createVariableDeclaration(envBinding, undefined, undefined, envObject); const envVarList = factory2.createVariableDeclarationList([envVar], 2); const envVarStatement = factory2.createVariableStatement(undefined, envVarList); statements.push(envVarStatement); const tryBlock = factory2.createBlock(bodyStatements, true); const bodyCatchBinding = factory2.createUniqueName("e"); const catchClause = factory2.createCatchClause(bodyCatchBinding, factory2.createBlock([ factory2.createExpressionStatement(factory2.createAssignment(factory2.createPropertyAccessExpression(envBinding, "error"), bodyCatchBinding)), factory2.createExpressionStatement(factory2.createAssignment(factory2.createPropertyAccessExpression(envBinding, "hasError"), factory2.createTrue())) ], true)); let finallyBlock; if (async) { const result = factory2.createUniqueName("result"); finallyBlock = factory2.createBlock([ factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(result, undefined, undefined, emitHelpers().createDisposeResourcesHelper(envBinding)) ], 2)), factory2.createIfStatement(result, factory2.createExpressionStatement(factory2.createAwaitExpression(result))) ], true); } else { finallyBlock = factory2.createBlock([ factory2.createExpressionStatement(emitHelpers().createDisposeResourcesHelper(envBinding)) ], true); } const tryStatement = factory2.createTryStatement(tryBlock, catchClause, finallyBlock); statements.push(tryStatement); return statements; } } function countPrologueStatements(statements) { for (let i = 0;i < statements.length; i++) { if (!isPrologueDirective(statements[i]) && !isCustomPrologue(statements[i])) { return i; } } return 0; } function isUsingVariableDeclarationList(node) { return isVariableDeclarationList(node) && getUsingKindOfVariableDeclarationList(node) !== 0; } function getUsingKindOfVariableDeclarationList(node) { return (node.flags & 7) === 6 ? 2 : (node.flags & 7) === 4 ? 1 : 0; } function getUsingKindOfVariableStatement(node) { return getUsingKindOfVariableDeclarationList(node.declarationList); } function getUsingKind(statement) { return isVariableStatement(statement) ? getUsingKindOfVariableStatement(statement) : 0; } function getUsingKindOfStatements(statements) { let result = 0; for (const statement of statements) { const usingKind = getUsingKind(statement); if (usingKind === 2) return 2; if (usingKind > result) result = usingKind; } return result; } function transformJsx(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers } = context; const compilerOptions = context.getCompilerOptions(); let currentSourceFile; let currentFileState; return chainBundle(context, transformSourceFile); function getCurrentFileNameExpression() { if (currentFileState.filenameDeclaration) { return currentFileState.filenameDeclaration.name; } const declaration = factory2.createVariableDeclaration(factory2.createUniqueName("_jsxFileName", 16 | 32), undefined, undefined, factory2.createStringLiteral(currentSourceFile.fileName)); currentFileState.filenameDeclaration = declaration; return currentFileState.filenameDeclaration.name; } function getJsxFactoryCalleePrimitive(isStaticChildren) { return compilerOptions.jsx === 5 ? "jsxDEV" : isStaticChildren ? "jsxs" : "jsx"; } function getJsxFactoryCallee(isStaticChildren) { const type = getJsxFactoryCalleePrimitive(isStaticChildren); return getImplicitImportForName(type); } function getImplicitJsxFragmentReference() { return getImplicitImportForName("Fragment"); } function getImplicitImportForName(name) { var _a, _b; const importSource = name === "createElement" ? currentFileState.importSpecifier : getJSXRuntimeImport(currentFileState.importSpecifier, compilerOptions); const existing = (_b = (_a = currentFileState.utilizedImplicitRuntimeImports) == null ? undefined : _a.get(importSource)) == null ? undefined : _b.get(name); if (existing) { return existing.name; } if (!currentFileState.utilizedImplicitRuntimeImports) { currentFileState.utilizedImplicitRuntimeImports = /* @__PURE__ */ new Map; } let specifierSourceImports = currentFileState.utilizedImplicitRuntimeImports.get(importSource); if (!specifierSourceImports) { specifierSourceImports = /* @__PURE__ */ new Map; currentFileState.utilizedImplicitRuntimeImports.set(importSource, specifierSourceImports); } const generatedName = factory2.createUniqueName(`_${name}`, 16 | 32 | 64); const specifier = factory2.createImportSpecifier(false, factory2.createIdentifier(name), generatedName); setIdentifierGeneratedImportReference(generatedName, specifier); specifierSourceImports.set(name, specifier); return generatedName; } function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } currentSourceFile = node; currentFileState = {}; currentFileState.importSpecifier = getJSXImplicitImportBase(compilerOptions, node); let visited = visitEachChild(node, visitor, context); addEmitHelpers(visited, context.readEmitHelpers()); let statements = visited.statements; if (currentFileState.filenameDeclaration) { statements = insertStatementAfterCustomPrologue(statements.slice(), factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([currentFileState.filenameDeclaration], 2))); } if (currentFileState.utilizedImplicitRuntimeImports) { for (const [importSource, importSpecifiersMap] of arrayFrom(currentFileState.utilizedImplicitRuntimeImports.entries())) { if (isExternalModule(node)) { const importStatement = factory2.createImportDeclaration(undefined, factory2.createImportClause(undefined, undefined, factory2.createNamedImports(arrayFrom(importSpecifiersMap.values()))), factory2.createStringLiteral(importSource), undefined); setParentRecursive(importStatement, false); statements = insertStatementAfterCustomPrologue(statements.slice(), importStatement); } else if (isExternalOrCommonJsModule(node)) { const requireStatement = factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(factory2.createObjectBindingPattern(arrayFrom(importSpecifiersMap.values(), (s) => factory2.createBindingElement(undefined, s.propertyName, s.name))), undefined, undefined, factory2.createCallExpression(factory2.createIdentifier("require"), undefined, [factory2.createStringLiteral(importSource)])) ], 2)); setParentRecursive(requireStatement, false); statements = insertStatementAfterCustomPrologue(statements.slice(), requireStatement); } } } if (statements !== visited.statements) { visited = factory2.updateSourceFile(visited, statements); } currentFileState = undefined; return visited; } function visitor(node) { if (node.transformFlags & 2) { return visitorWorker(node); } else { return node; } } function visitorWorker(node) { switch (node.kind) { case 285: return visitJsxElement(node, false); case 286: return visitJsxSelfClosingElement(node, false); case 289: return visitJsxFragment(node, false); case 295: return visitJsxExpression(node); default: return visitEachChild(node, visitor, context); } } function transformJsxChildToExpression(node) { switch (node.kind) { case 12: return visitJsxText(node); case 295: return visitJsxExpression(node); case 285: return visitJsxElement(node, true); case 286: return visitJsxSelfClosingElement(node, true); case 289: return visitJsxFragment(node, true); default: return Debug.failBadSyntaxKind(node); } } function hasProto(obj) { return obj.properties.some((p) => isPropertyAssignment(p) && (isIdentifier(p.name) && idText(p.name) === "__proto__" || isStringLiteral(p.name) && p.name.text === "__proto__")); } function hasKeyAfterPropsSpread(node) { let spread = false; for (const elem of node.attributes.properties) { if (isJsxSpreadAttribute(elem) && (!isObjectLiteralExpression(elem.expression) || elem.expression.properties.some(isSpreadAssignment))) { spread = true; } else if (spread && isJsxAttribute(elem) && isIdentifier(elem.name) && elem.name.escapedText === "key") { return true; } } return false; } function shouldUseCreateElement(node) { return currentFileState.importSpecifier === undefined || hasKeyAfterPropsSpread(node); } function visitJsxElement(node, isChild) { const tagTransform = shouldUseCreateElement(node.openingElement) ? visitJsxOpeningLikeElementCreateElement : visitJsxOpeningLikeElementJSX; return tagTransform(node.openingElement, node.children, isChild, createRange(skipTrivia2(currentSourceFile.text, node.pos), node.end)); } function visitJsxSelfClosingElement(node, isChild) { const tagTransform = shouldUseCreateElement(node) ? visitJsxOpeningLikeElementCreateElement : visitJsxOpeningLikeElementJSX; return tagTransform(node, undefined, isChild, createRange(skipTrivia2(currentSourceFile.text, node.pos), node.end)); } function visitJsxFragment(node, isChild) { const tagTransform = currentFileState.importSpecifier === undefined ? visitJsxOpeningFragmentCreateElement : visitJsxOpeningFragmentJSX; return tagTransform(node.openingFragment, node.children, isChild, createRange(skipTrivia2(currentSourceFile.text, node.pos), node.end)); } function convertJsxChildrenToChildrenPropObject(children) { const prop = convertJsxChildrenToChildrenPropAssignment(children); return prop && factory2.createObjectLiteralExpression([prop]); } function convertJsxChildrenToChildrenPropAssignment(children) { const nonWhitespaceChildren = getSemanticJsxChildren(children); if (length(nonWhitespaceChildren) === 1 && !nonWhitespaceChildren[0].dotDotDotToken) { const result2 = transformJsxChildToExpression(nonWhitespaceChildren[0]); return result2 && factory2.createPropertyAssignment("children", result2); } const result = mapDefined(children, transformJsxChildToExpression); return length(result) ? factory2.createPropertyAssignment("children", factory2.createArrayLiteralExpression(result)) : undefined; } function visitJsxOpeningLikeElementJSX(node, children, isChild, location) { const tagName = getTagName(node); const childrenProp = children && children.length ? convertJsxChildrenToChildrenPropAssignment(children) : undefined; const keyAttr = find(node.attributes.properties, (p) => !!p.name && isIdentifier(p.name) && p.name.escapedText === "key"); const attrs = keyAttr ? filter(node.attributes.properties, (p) => p !== keyAttr) : node.attributes.properties; const objectProperties = length(attrs) ? transformJsxAttributesToObjectProps(attrs, childrenProp) : factory2.createObjectLiteralExpression(childrenProp ? [childrenProp] : emptyArray); return visitJsxOpeningLikeElementOrFragmentJSX(tagName, objectProperties, keyAttr, children || emptyArray, isChild, location); } function visitJsxOpeningLikeElementOrFragmentJSX(tagName, objectProperties, keyAttr, children, isChild, location) { var _a; const nonWhitespaceChildren = getSemanticJsxChildren(children); const isStaticChildren = length(nonWhitespaceChildren) > 1 || !!((_a = nonWhitespaceChildren[0]) == null ? undefined : _a.dotDotDotToken); const args = [tagName, objectProperties]; if (keyAttr) { args.push(transformJsxAttributeInitializer(keyAttr.initializer)); } if (compilerOptions.jsx === 5) { const originalFile = getOriginalNode(currentSourceFile); if (originalFile && isSourceFile(originalFile)) { if (keyAttr === undefined) { args.push(factory2.createVoidZero()); } args.push(isStaticChildren ? factory2.createTrue() : factory2.createFalse()); const lineCol = getLineAndCharacterOfPosition(originalFile, location.pos); args.push(factory2.createObjectLiteralExpression([ factory2.createPropertyAssignment("fileName", getCurrentFileNameExpression()), factory2.createPropertyAssignment("lineNumber", factory2.createNumericLiteral(lineCol.line + 1)), factory2.createPropertyAssignment("columnNumber", factory2.createNumericLiteral(lineCol.character + 1)) ])); args.push(factory2.createThis()); } } const element = setTextRange(factory2.createCallExpression(getJsxFactoryCallee(isStaticChildren), undefined, args), location); if (isChild) { startOnNewLine(element); } return element; } function visitJsxOpeningLikeElementCreateElement(node, children, isChild, location) { const tagName = getTagName(node); const attrs = node.attributes.properties; const objectProperties = length(attrs) ? transformJsxAttributesToObjectProps(attrs) : factory2.createNull(); const callee = currentFileState.importSpecifier === undefined ? createJsxFactoryExpression(factory2, context.getEmitResolver().getJsxFactoryEntity(currentSourceFile), compilerOptions.reactNamespace, node) : getImplicitImportForName("createElement"); const element = createExpressionForJsxElement(factory2, callee, tagName, objectProperties, mapDefined(children, transformJsxChildToExpression), location); if (isChild) { startOnNewLine(element); } return element; } function visitJsxOpeningFragmentJSX(_node, children, isChild, location) { let childrenProps; if (children && children.length) { const result = convertJsxChildrenToChildrenPropObject(children); if (result) { childrenProps = result; } } return visitJsxOpeningLikeElementOrFragmentJSX(getImplicitJsxFragmentReference(), childrenProps || factory2.createObjectLiteralExpression([]), undefined, children, isChild, location); } function visitJsxOpeningFragmentCreateElement(node, children, isChild, location) { const element = createExpressionForJsxFragment(factory2, context.getEmitResolver().getJsxFactoryEntity(currentSourceFile), context.getEmitResolver().getJsxFragmentFactoryEntity(currentSourceFile), compilerOptions.reactNamespace, mapDefined(children, transformJsxChildToExpression), node, location); if (isChild) { startOnNewLine(element); } return element; } function transformJsxSpreadAttributeToProps(node) { if (isObjectLiteralExpression(node.expression) && !hasProto(node.expression)) { return sameMap(node.expression.properties, (p) => Debug.checkDefined(visitNode(p, visitor, isObjectLiteralElementLike))); } return factory2.createSpreadAssignment(Debug.checkDefined(visitNode(node.expression, visitor, isExpression))); } function transformJsxAttributesToObjectProps(attrs, children) { const target = getEmitScriptTarget(compilerOptions); return target && target >= 5 ? factory2.createObjectLiteralExpression(transformJsxAttributesToProps(attrs, children)) : transformJsxAttributesToExpression(attrs, children); } function transformJsxAttributesToProps(attrs, children) { const props = flatten(spanMap(attrs, isJsxSpreadAttribute, (attrs2, isSpread) => flatten(map(attrs2, (attr) => isSpread ? transformJsxSpreadAttributeToProps(attr) : transformJsxAttributeToObjectLiteralElement(attr))))); if (children) { props.push(children); } return props; } function transformJsxAttributesToExpression(attrs, children) { const expressions = []; let properties = []; for (const attr of attrs) { if (isJsxSpreadAttribute(attr)) { if (isObjectLiteralExpression(attr.expression) && !hasProto(attr.expression)) { for (const prop of attr.expression.properties) { if (isSpreadAssignment(prop)) { finishObjectLiteralIfNeeded(); expressions.push(Debug.checkDefined(visitNode(prop.expression, visitor, isExpression))); continue; } properties.push(Debug.checkDefined(visitNode(prop, visitor))); } continue; } finishObjectLiteralIfNeeded(); expressions.push(Debug.checkDefined(visitNode(attr.expression, visitor, isExpression))); continue; } properties.push(transformJsxAttributeToObjectLiteralElement(attr)); } if (children) { properties.push(children); } finishObjectLiteralIfNeeded(); if (expressions.length && !isObjectLiteralExpression(expressions[0])) { expressions.unshift(factory2.createObjectLiteralExpression()); } return singleOrUndefined(expressions) || emitHelpers().createAssignHelper(expressions); function finishObjectLiteralIfNeeded() { if (properties.length) { expressions.push(factory2.createObjectLiteralExpression(properties)); properties = []; } } } function transformJsxAttributeToObjectLiteralElement(node) { const name = getAttributeName(node); const expression = transformJsxAttributeInitializer(node.initializer); return factory2.createPropertyAssignment(name, expression); } function transformJsxAttributeInitializer(node) { if (node === undefined) { return factory2.createTrue(); } if (node.kind === 11) { const singleQuote = node.singleQuote !== undefined ? node.singleQuote : !isStringDoubleQuoted(node, currentSourceFile); const literal = factory2.createStringLiteral(tryDecodeEntities(node.text) || node.text, singleQuote); return setTextRange(literal, node); } if (node.kind === 295) { if (node.expression === undefined) { return factory2.createTrue(); } return Debug.checkDefined(visitNode(node.expression, visitor, isExpression)); } if (isJsxElement(node)) { return visitJsxElement(node, false); } if (isJsxSelfClosingElement(node)) { return visitJsxSelfClosingElement(node, false); } if (isJsxFragment(node)) { return visitJsxFragment(node, false); } return Debug.failBadSyntaxKind(node); } function visitJsxText(node) { const fixed = fixupWhitespaceAndDecodeEntities(node.text); return fixed === undefined ? undefined : factory2.createStringLiteral(fixed); } function fixupWhitespaceAndDecodeEntities(text) { let acc; let firstNonWhitespace = 0; let lastNonWhitespace = -1; for (let i = 0;i < text.length; i++) { const c = text.charCodeAt(i); if (isLineBreak(c)) { if (firstNonWhitespace !== -1 && lastNonWhitespace !== -1) { acc = addLineOfJsxText(acc, text.substr(firstNonWhitespace, lastNonWhitespace - firstNonWhitespace + 1)); } firstNonWhitespace = -1; } else if (!isWhiteSpaceSingleLine(c)) { lastNonWhitespace = i; if (firstNonWhitespace === -1) { firstNonWhitespace = i; } } } return firstNonWhitespace !== -1 ? addLineOfJsxText(acc, text.substr(firstNonWhitespace)) : acc; } function addLineOfJsxText(acc, trimmedLine) { const decoded = decodeEntities(trimmedLine); return acc === undefined ? decoded : acc + " " + decoded; } function decodeEntities(text) { return text.replace(/&((#((\d+)|x([\da-fA-F]+)))|(\w+));/g, (match, _all, _number, _digits, decimal, hex, word) => { if (decimal) { return utf16EncodeAsString(parseInt(decimal, 10)); } else if (hex) { return utf16EncodeAsString(parseInt(hex, 16)); } else { const ch = entities.get(word); return ch ? utf16EncodeAsString(ch) : match; } }); } function tryDecodeEntities(text) { const decoded = decodeEntities(text); return decoded === text ? undefined : decoded; } function getTagName(node) { if (node.kind === 285) { return getTagName(node.openingElement); } else { const tagName = node.tagName; if (isIdentifier(tagName) && isIntrinsicJsxName(tagName.escapedText)) { return factory2.createStringLiteral(idText(tagName)); } else if (isJsxNamespacedName(tagName)) { return factory2.createStringLiteral(idText(tagName.namespace) + ":" + idText(tagName.name)); } else { return createExpressionFromEntityName(factory2, tagName); } } } function getAttributeName(node) { const name = node.name; if (isIdentifier(name)) { const text = idText(name); return /^[A-Z_]\w*$/i.test(text) ? name : factory2.createStringLiteral(text); } return factory2.createStringLiteral(idText(name.namespace) + ":" + idText(name.name)); } function visitJsxExpression(node) { const expression = visitNode(node.expression, visitor, isExpression); return node.dotDotDotToken ? factory2.createSpreadElement(expression) : expression; } } var entities = new Map(Object.entries({ quot: 34, amp: 38, apos: 39, lt: 60, gt: 62, nbsp: 160, iexcl: 161, cent: 162, pound: 163, curren: 164, yen: 165, brvbar: 166, sect: 167, uml: 168, copy: 169, ordf: 170, laquo: 171, not: 172, shy: 173, reg: 174, macr: 175, deg: 176, plusmn: 177, sup2: 178, sup3: 179, acute: 180, micro: 181, para: 182, middot: 183, cedil: 184, sup1: 185, ordm: 186, raquo: 187, frac14: 188, frac12: 189, frac34: 190, iquest: 191, Agrave: 192, Aacute: 193, Acirc: 194, Atilde: 195, Auml: 196, Aring: 197, AElig: 198, Ccedil: 199, Egrave: 200, Eacute: 201, Ecirc: 202, Euml: 203, Igrave: 204, Iacute: 205, Icirc: 206, Iuml: 207, ETH: 208, Ntilde: 209, Ograve: 210, Oacute: 211, Ocirc: 212, Otilde: 213, Ouml: 214, times: 215, Oslash: 216, Ugrave: 217, Uacute: 218, Ucirc: 219, Uuml: 220, Yacute: 221, THORN: 222, szlig: 223, agrave: 224, aacute: 225, acirc: 226, atilde: 227, auml: 228, aring: 229, aelig: 230, ccedil: 231, egrave: 232, eacute: 233, ecirc: 234, euml: 235, igrave: 236, iacute: 237, icirc: 238, iuml: 239, eth: 240, ntilde: 241, ograve: 242, oacute: 243, ocirc: 244, otilde: 245, ouml: 246, divide: 247, oslash: 248, ugrave: 249, uacute: 250, ucirc: 251, uuml: 252, yacute: 253, thorn: 254, yuml: 255, OElig: 338, oelig: 339, Scaron: 352, scaron: 353, Yuml: 376, fnof: 402, circ: 710, tilde: 732, Alpha: 913, Beta: 914, Gamma: 915, Delta: 916, Epsilon: 917, Zeta: 918, Eta: 919, Theta: 920, Iota: 921, Kappa: 922, Lambda: 923, Mu: 924, Nu: 925, Xi: 926, Omicron: 927, Pi: 928, Rho: 929, Sigma: 931, Tau: 932, Upsilon: 933, Phi: 934, Chi: 935, Psi: 936, Omega: 937, alpha: 945, beta: 946, gamma: 947, delta: 948, epsilon: 949, zeta: 950, eta: 951, theta: 952, iota: 953, kappa: 954, lambda: 955, mu: 956, nu: 957, xi: 958, omicron: 959, pi: 960, rho: 961, sigmaf: 962, sigma: 963, tau: 964, upsilon: 965, phi: 966, chi: 967, psi: 968, omega: 969, thetasym: 977, upsih: 978, piv: 982, ensp: 8194, emsp: 8195, thinsp: 8201, zwnj: 8204, zwj: 8205, lrm: 8206, rlm: 8207, ndash: 8211, mdash: 8212, lsquo: 8216, rsquo: 8217, sbquo: 8218, ldquo: 8220, rdquo: 8221, bdquo: 8222, dagger: 8224, Dagger: 8225, bull: 8226, hellip: 8230, permil: 8240, prime: 8242, Prime: 8243, lsaquo: 8249, rsaquo: 8250, oline: 8254, frasl: 8260, euro: 8364, image: 8465, weierp: 8472, real: 8476, trade: 8482, alefsym: 8501, larr: 8592, uarr: 8593, rarr: 8594, darr: 8595, harr: 8596, crarr: 8629, lArr: 8656, uArr: 8657, rArr: 8658, dArr: 8659, hArr: 8660, forall: 8704, part: 8706, exist: 8707, empty: 8709, nabla: 8711, isin: 8712, notin: 8713, ni: 8715, prod: 8719, sum: 8721, minus: 8722, lowast: 8727, radic: 8730, prop: 8733, infin: 8734, ang: 8736, and: 8743, or: 8744, cap: 8745, cup: 8746, int: 8747, there4: 8756, sim: 8764, cong: 8773, asymp: 8776, ne: 8800, equiv: 8801, le: 8804, ge: 8805, sub: 8834, sup: 8835, nsub: 8836, sube: 8838, supe: 8839, oplus: 8853, otimes: 8855, perp: 8869, sdot: 8901, lceil: 8968, rceil: 8969, lfloor: 8970, rfloor: 8971, lang: 9001, rang: 9002, loz: 9674, spades: 9824, clubs: 9827, hearts: 9829, diams: 9830 })); function transformES2016(context) { const { factory: factory2, hoistVariableDeclaration } = context; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } return visitEachChild(node, visitor, context); } function visitor(node) { if ((node.transformFlags & 512) === 0) { return node; } switch (node.kind) { case 227: return visitBinaryExpression(node); default: return visitEachChild(node, visitor, context); } } function visitBinaryExpression(node) { switch (node.operatorToken.kind) { case 68: return visitExponentiationAssignmentExpression(node); case 43: return visitExponentiationExpression(node); default: return visitEachChild(node, visitor, context); } } function visitExponentiationAssignmentExpression(node) { let target; let value; const left = visitNode(node.left, visitor, isExpression); const right = visitNode(node.right, visitor, isExpression); if (isElementAccessExpression(left)) { const expressionTemp = factory2.createTempVariable(hoistVariableDeclaration); const argumentExpressionTemp = factory2.createTempVariable(hoistVariableDeclaration); target = setTextRange(factory2.createElementAccessExpression(setTextRange(factory2.createAssignment(expressionTemp, left.expression), left.expression), setTextRange(factory2.createAssignment(argumentExpressionTemp, left.argumentExpression), left.argumentExpression)), left); value = setTextRange(factory2.createElementAccessExpression(expressionTemp, argumentExpressionTemp), left); } else if (isPropertyAccessExpression(left)) { const expressionTemp = factory2.createTempVariable(hoistVariableDeclaration); target = setTextRange(factory2.createPropertyAccessExpression(setTextRange(factory2.createAssignment(expressionTemp, left.expression), left.expression), left.name), left); value = setTextRange(factory2.createPropertyAccessExpression(expressionTemp, left.name), left); } else { target = left; value = left; } return setTextRange(factory2.createAssignment(target, setTextRange(factory2.createGlobalMethodCall("Math", "pow", [value, right]), node)), node); } function visitExponentiationExpression(node) { const left = visitNode(node.left, visitor, isExpression); const right = visitNode(node.right, visitor, isExpression); return setTextRange(factory2.createGlobalMethodCall("Math", "pow", [left, right]), node); } } function createSpreadSegment(kind, expression) { return { kind, expression }; } function transformES2015(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers, startLexicalEnvironment, resumeLexicalEnvironment, endLexicalEnvironment, hoistVariableDeclaration } = context; const compilerOptions = context.getCompilerOptions(); const resolver = context.getEmitResolver(); const previousOnSubstituteNode = context.onSubstituteNode; const previousOnEmitNode = context.onEmitNode; context.onEmitNode = onEmitNode; context.onSubstituteNode = onSubstituteNode; let currentSourceFile; let currentText; let hierarchyFacts; let taggedTemplateStringDeclarations; function recordTaggedTemplateString(temp) { taggedTemplateStringDeclarations = append(taggedTemplateStringDeclarations, factory2.createVariableDeclaration(temp)); } let convertedLoopState; let enabledSubstitutions = 0; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } currentSourceFile = node; currentText = node.text; const visited = visitSourceFile(node); addEmitHelpers(visited, context.readEmitHelpers()); currentSourceFile = undefined; currentText = undefined; taggedTemplateStringDeclarations = undefined; hierarchyFacts = 0; return visited; } function enterSubtree(excludeFacts, includeFacts) { const ancestorFacts = hierarchyFacts; hierarchyFacts = (hierarchyFacts & ~excludeFacts | includeFacts) & 32767; return ancestorFacts; } function exitSubtree(ancestorFacts, excludeFacts, includeFacts) { hierarchyFacts = (hierarchyFacts & ~excludeFacts | includeFacts) & -32768 | ancestorFacts; } function isReturnVoidStatementInConstructorWithCapturedSuper(node) { return (hierarchyFacts & 8192) !== 0 && node.kind === 254 && !node.expression; } function isOrMayContainReturnCompletion(node) { return node.transformFlags & 4194304 && (isReturnStatement(node) || isIfStatement(node) || isWithStatement(node) || isSwitchStatement(node) || isCaseBlock(node) || isCaseClause(node) || isDefaultClause(node) || isTryStatement(node) || isCatchClause(node) || isLabeledStatement(node) || isIterationStatement(node, false) || isBlock(node)); } function shouldVisitNode(node) { return (node.transformFlags & 1024) !== 0 || convertedLoopState !== undefined || hierarchyFacts & 8192 && isOrMayContainReturnCompletion(node) || isIterationStatement(node, false) && shouldConvertIterationStatement(node) || (getInternalEmitFlags(node) & 1) !== 0; } function visitor(node) { return shouldVisitNode(node) ? visitorWorker(node, false) : node; } function visitorWithUnusedExpressionResult(node) { return shouldVisitNode(node) ? visitorWorker(node, true) : node; } function classWrapperStatementVisitor(node) { if (shouldVisitNode(node)) { const original = getOriginalNode(node); if (isPropertyDeclaration(original) && hasStaticModifier(original)) { const ancestorFacts = enterSubtree(32670, 16449); const result = visitorWorker(node, false); exitSubtree(ancestorFacts, 229376, 0); return result; } return visitorWorker(node, false); } return node; } function callExpressionVisitor(node) { if (node.kind === 108) { return visitSuperKeyword(node, true); } return visitor(node); } function visitorWorker(node, expressionResultIsUnused2) { switch (node.kind) { case 126: return; case 264: return visitClassDeclaration(node); case 232: return visitClassExpression(node); case 170: return visitParameter(node); case 263: return visitFunctionDeclaration(node); case 220: return visitArrowFunction(node); case 219: return visitFunctionExpression(node); case 261: return visitVariableDeclaration(node); case 80: return visitIdentifier(node); case 262: return visitVariableDeclarationList(node); case 256: return visitSwitchStatement(node); case 270: return visitCaseBlock(node); case 242: return visitBlock(node, false); case 253: case 252: return visitBreakOrContinueStatement(node); case 257: return visitLabeledStatement(node); case 247: case 248: return visitDoOrWhileStatement(node, undefined); case 249: return visitForStatement(node, undefined); case 250: return visitForInStatement(node, undefined); case 251: return visitForOfStatement(node, undefined); case 245: return visitExpressionStatement(node); case 211: return visitObjectLiteralExpression(node); case 300: return visitCatchClause(node); case 305: return visitShorthandPropertyAssignment(node); case 168: return visitComputedPropertyName(node); case 210: return visitArrayLiteralExpression(node); case 214: return visitCallExpression(node); case 215: return visitNewExpression(node); case 218: return visitParenthesizedExpression(node, expressionResultIsUnused2); case 227: return visitBinaryExpression(node, expressionResultIsUnused2); case 357: return visitCommaListExpression(node, expressionResultIsUnused2); case 15: case 16: case 17: case 18: return visitTemplateLiteral(node); case 11: return visitStringLiteral(node); case 9: return visitNumericLiteral(node); case 216: return visitTaggedTemplateExpression(node); case 229: return visitTemplateExpression(node); case 230: return visitYieldExpression(node); case 231: return visitSpreadElement(node); case 108: return visitSuperKeyword(node, false); case 110: return visitThisKeyword(node); case 237: return visitMetaProperty(node); case 175: return visitMethodDeclaration(node); case 178: case 179: return visitAccessorDeclaration(node); case 244: return visitVariableStatement(node); case 254: return visitReturnStatement(node); case 223: return visitVoidExpression(node); default: return visitEachChild(node, visitor, context); } } function visitSourceFile(node) { const ancestorFacts = enterSubtree(8064, 64); const prologue = []; const statements = []; startLexicalEnvironment(); const statementOffset = factory2.copyPrologue(node.statements, prologue, false, visitor); addRange(statements, visitNodes2(node.statements, visitor, isStatement, statementOffset)); if (taggedTemplateStringDeclarations) { statements.push(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList(taggedTemplateStringDeclarations))); } factory2.mergeLexicalEnvironment(prologue, endLexicalEnvironment()); insertCaptureThisForNodeIfNeeded(prologue, node); exitSubtree(ancestorFacts, 0, 0); return factory2.updateSourceFile(node, setTextRange(factory2.createNodeArray(concatenate(prologue, statements)), node.statements)); } function visitSwitchStatement(node) { if (convertedLoopState !== undefined) { const savedAllowedNonLabeledJumps = convertedLoopState.allowedNonLabeledJumps; convertedLoopState.allowedNonLabeledJumps |= 2; const result = visitEachChild(node, visitor, context); convertedLoopState.allowedNonLabeledJumps = savedAllowedNonLabeledJumps; return result; } return visitEachChild(node, visitor, context); } function visitCaseBlock(node) { const ancestorFacts = enterSubtree(7104, 0); const updated = visitEachChild(node, visitor, context); exitSubtree(ancestorFacts, 0, 0); return updated; } function returnCapturedThis(node) { return setOriginalNode(factory2.createReturnStatement(createCapturedThis()), node); } function createCapturedThis() { return factory2.createUniqueName("_this", 16 | 32); } function visitReturnStatement(node) { if (convertedLoopState) { convertedLoopState.nonLocalJumps |= 8; if (isReturnVoidStatementInConstructorWithCapturedSuper(node)) { node = returnCapturedThis(node); } return factory2.createReturnStatement(factory2.createObjectLiteralExpression([ factory2.createPropertyAssignment(factory2.createIdentifier("value"), node.expression ? Debug.checkDefined(visitNode(node.expression, visitor, isExpression)) : factory2.createVoidZero()) ])); } else if (isReturnVoidStatementInConstructorWithCapturedSuper(node)) { return returnCapturedThis(node); } return visitEachChild(node, visitor, context); } function visitThisKeyword(node) { hierarchyFacts |= 65536; if (hierarchyFacts & 2 && !(hierarchyFacts & 16384)) { hierarchyFacts |= 131072; } if (convertedLoopState) { if (hierarchyFacts & 2) { convertedLoopState.containsLexicalThis = true; return node; } return convertedLoopState.thisName || (convertedLoopState.thisName = factory2.createUniqueName("this")); } return node; } function visitVoidExpression(node) { return visitEachChild(node, visitorWithUnusedExpressionResult, context); } function visitIdentifier(node) { if (convertedLoopState) { if (resolver.isArgumentsLocalBinding(node)) { return convertedLoopState.argumentsName || (convertedLoopState.argumentsName = factory2.createUniqueName("arguments")); } } if (node.flags & 256) { return setOriginalNode(setTextRange(factory2.createIdentifier(unescapeLeadingUnderscores(node.escapedText)), node), node); } return node; } function visitBreakOrContinueStatement(node) { if (convertedLoopState) { const jump = node.kind === 253 ? 2 : 4; const canUseBreakOrContinue = node.label && convertedLoopState.labels && convertedLoopState.labels.get(idText(node.label)) || !node.label && convertedLoopState.allowedNonLabeledJumps & jump; if (!canUseBreakOrContinue) { let labelMarker; const label = node.label; if (!label) { if (node.kind === 253) { convertedLoopState.nonLocalJumps |= 2; labelMarker = "break"; } else { convertedLoopState.nonLocalJumps |= 4; labelMarker = "continue"; } } else { if (node.kind === 253) { labelMarker = `break-${label.escapedText}`; setLabeledJump(convertedLoopState, true, idText(label), labelMarker); } else { labelMarker = `continue-${label.escapedText}`; setLabeledJump(convertedLoopState, false, idText(label), labelMarker); } } let returnExpression = factory2.createStringLiteral(labelMarker); if (convertedLoopState.loopOutParameters.length) { const outParams = convertedLoopState.loopOutParameters; let expr; for (let i = 0;i < outParams.length; i++) { const copyExpr = copyOutParameter(outParams[i], 1); if (i === 0) { expr = copyExpr; } else { expr = factory2.createBinaryExpression(expr, 28, copyExpr); } } returnExpression = factory2.createBinaryExpression(expr, 28, returnExpression); } return factory2.createReturnStatement(returnExpression); } } return visitEachChild(node, visitor, context); } function visitClassDeclaration(node) { const variable = factory2.createVariableDeclaration(factory2.getLocalName(node, true), undefined, undefined, transformClassLikeDeclarationToExpression(node)); setOriginalNode(variable, node); const statements = []; const statement = factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([variable])); setOriginalNode(statement, node); setTextRange(statement, node); startOnNewLine(statement); statements.push(statement); if (hasSyntacticModifier(node, 32)) { const exportStatement = hasSyntacticModifier(node, 2048) ? factory2.createExportDefault(factory2.getLocalName(node)) : factory2.createExternalModuleExport(factory2.getLocalName(node)); setOriginalNode(exportStatement, statement); statements.push(exportStatement); } return singleOrMany(statements); } function visitClassExpression(node) { return transformClassLikeDeclarationToExpression(node); } function transformClassLikeDeclarationToExpression(node) { if (node.name) { enableSubstitutionsForBlockScopedBindings(); } const extendsClauseElement = getClassExtendsHeritageElement(node); const classFunction = factory2.createFunctionExpression(undefined, undefined, undefined, undefined, extendsClauseElement ? [factory2.createParameterDeclaration(undefined, undefined, createSyntheticSuper())] : [], undefined, transformClassBody(node, extendsClauseElement)); setEmitFlags(classFunction, getEmitFlags(node) & 131072 | 1048576); const inner = factory2.createPartiallyEmittedExpression(classFunction); setTextRangeEnd(inner, node.end); setEmitFlags(inner, 3072); const outer = factory2.createPartiallyEmittedExpression(inner); setTextRangeEnd(outer, skipTrivia2(currentText, node.pos)); setEmitFlags(outer, 3072); const result = factory2.createParenthesizedExpression(factory2.createCallExpression(outer, undefined, extendsClauseElement ? [Debug.checkDefined(visitNode(extendsClauseElement.expression, visitor, isExpression))] : [])); addSyntheticLeadingComment(result, 3, "* @class "); return result; } function transformClassBody(node, extendsClauseElement) { const statements = []; const name = factory2.getInternalName(node); const constructorLikeName = isIdentifierANonContextualKeyword(name) ? factory2.getGeneratedNameForNode(name) : name; startLexicalEnvironment(); addExtendsHelperIfNeeded(statements, node, extendsClauseElement); addConstructor(statements, node, constructorLikeName, extendsClauseElement); addClassMembers(statements, node); const closingBraceLocation = createTokenRange(skipTrivia2(currentText, node.members.end), 20); const outer = factory2.createPartiallyEmittedExpression(constructorLikeName); setTextRangeEnd(outer, closingBraceLocation.end); setEmitFlags(outer, 3072); const statement = factory2.createReturnStatement(outer); setTextRangePos(statement, closingBraceLocation.pos); setEmitFlags(statement, 3072 | 768); statements.push(statement); insertStatementsAfterStandardPrologue(statements, endLexicalEnvironment()); const block = factory2.createBlock(setTextRange(factory2.createNodeArray(statements), node.members), true); setEmitFlags(block, 3072); return block; } function addExtendsHelperIfNeeded(statements, node, extendsClauseElement) { if (extendsClauseElement) { statements.push(setTextRange(factory2.createExpressionStatement(emitHelpers().createExtendsHelper(factory2.getInternalName(node))), extendsClauseElement)); } } function addConstructor(statements, node, name, extendsClauseElement) { const savedConvertedLoopState = convertedLoopState; convertedLoopState = undefined; const ancestorFacts = enterSubtree(32662, 73); const constructor = getFirstConstructorWithBody(node); const hasSynthesizedSuper = hasSynthesizedDefaultSuperCall(constructor, extendsClauseElement !== undefined); const constructorFunction = factory2.createFunctionDeclaration(undefined, undefined, name, undefined, transformConstructorParameters(constructor, hasSynthesizedSuper), undefined, transformConstructorBody(constructor, node, extendsClauseElement, hasSynthesizedSuper)); setTextRange(constructorFunction, constructor || node); if (extendsClauseElement) { setEmitFlags(constructorFunction, 16); } statements.push(constructorFunction); exitSubtree(ancestorFacts, 229376, 0); convertedLoopState = savedConvertedLoopState; } function transformConstructorParameters(constructor, hasSynthesizedSuper) { return visitParameterList(constructor && !hasSynthesizedSuper ? constructor.parameters : undefined, visitor, context) || []; } function createDefaultConstructorBody(node, isDerivedClass) { const statements = []; resumeLexicalEnvironment(); factory2.mergeLexicalEnvironment(statements, endLexicalEnvironment()); if (isDerivedClass) { statements.push(factory2.createReturnStatement(createDefaultSuperCallOrThis())); } const statementsArray = factory2.createNodeArray(statements); setTextRange(statementsArray, node.members); const block = factory2.createBlock(statementsArray, true); setTextRange(block, node); setEmitFlags(block, 3072); return block; } function isUninitializedVariableStatement(node) { return isVariableStatement(node) && every(node.declarationList.declarations, (decl) => isIdentifier(decl.name) && !decl.initializer); } function containsSuperCall(node) { if (isSuperCall(node)) { return true; } if (!(node.transformFlags & 134217728)) { return false; } switch (node.kind) { case 220: case 219: case 263: case 177: case 176: return false; case 178: case 179: case 175: case 173: { const named = node; if (isComputedPropertyName(named.name)) { return !!forEachChild(named.name, containsSuperCall); } return false; } } return !!forEachChild(node, containsSuperCall); } function transformConstructorBody(constructor, node, extendsClauseElement, hasSynthesizedSuper) { const isDerivedClass = !!extendsClauseElement && skipOuterExpressions(extendsClauseElement.expression).kind !== 106; if (!constructor) return createDefaultConstructorBody(node, isDerivedClass); const prologue = []; const statements = []; resumeLexicalEnvironment(); const standardPrologueEnd = factory2.copyStandardPrologue(constructor.body.statements, prologue, 0); if (hasSynthesizedSuper || containsSuperCall(constructor.body)) { hierarchyFacts |= 8192; } addRange(statements, visitNodes2(constructor.body.statements, visitor, isStatement, standardPrologueEnd)); const mayReplaceThis = isDerivedClass || hierarchyFacts & 8192; addDefaultValueAssignmentsIfNeeded2(prologue, constructor); addRestParameterIfNeeded(prologue, constructor, hasSynthesizedSuper); insertCaptureNewTargetIfNeeded(prologue, constructor); if (mayReplaceThis) { insertCaptureThisForNode(prologue, constructor, createActualThis()); } else { insertCaptureThisForNodeIfNeeded(prologue, constructor); } factory2.mergeLexicalEnvironment(prologue, endLexicalEnvironment()); if (mayReplaceThis && !isSufficientlyCoveredByReturnStatements(constructor.body)) { statements.push(factory2.createReturnStatement(createCapturedThis())); } const body = factory2.createBlock(setTextRange(factory2.createNodeArray([ ...prologue, ...statements ]), constructor.body.statements), true); setTextRange(body, constructor.body); return simplifyConstructor(body, constructor.body, hasSynthesizedSuper); } function isCapturedThis(node) { return isGeneratedIdentifier(node) && idText(node) === "_this"; } function isSyntheticSuper(node) { return isGeneratedIdentifier(node) && idText(node) === "_super"; } function isThisCapturingVariableStatement(node) { return isVariableStatement(node) && node.declarationList.declarations.length === 1 && isThisCapturingVariableDeclaration(node.declarationList.declarations[0]); } function isThisCapturingVariableDeclaration(node) { return isVariableDeclaration(node) && isCapturedThis(node.name) && !!node.initializer; } function isThisCapturingAssignment(node) { return isAssignmentExpression(node, true) && isCapturedThis(node.left); } function isTransformedSuperCall(node) { return isCallExpression(node) && isPropertyAccessExpression(node.expression) && isSyntheticSuper(node.expression.expression) && isIdentifier(node.expression.name) && (idText(node.expression.name) === "call" || idText(node.expression.name) === "apply") && node.arguments.length >= 1 && node.arguments[0].kind === 110; } function isTransformedSuperCallWithFallback(node) { return isBinaryExpression(node) && node.operatorToken.kind === 57 && node.right.kind === 110 && isTransformedSuperCall(node.left); } function isImplicitSuperCall(node) { return isBinaryExpression(node) && node.operatorToken.kind === 56 && isBinaryExpression(node.left) && node.left.operatorToken.kind === 38 && isSyntheticSuper(node.left.left) && node.left.right.kind === 106 && isTransformedSuperCall(node.right) && idText(node.right.expression.name) === "apply"; } function isImplicitSuperCallWithFallback(node) { return isBinaryExpression(node) && node.operatorToken.kind === 57 && node.right.kind === 110 && isImplicitSuperCall(node.left); } function isThisCapturingTransformedSuperCallWithFallback(node) { return isThisCapturingAssignment(node) && isTransformedSuperCallWithFallback(node.right); } function isThisCapturingImplicitSuperCallWithFallback(node) { return isThisCapturingAssignment(node) && isImplicitSuperCallWithFallback(node.right); } function isTransformedSuperCallLike(node) { return isTransformedSuperCall(node) || isTransformedSuperCallWithFallback(node) || isThisCapturingTransformedSuperCallWithFallback(node) || isImplicitSuperCall(node) || isImplicitSuperCallWithFallback(node) || isThisCapturingImplicitSuperCallWithFallback(node); } function simplifyConstructorInlineSuperInThisCaptureVariable(body) { for (let i = 0;i < body.statements.length - 1; i++) { const statement = body.statements[i]; if (!isThisCapturingVariableStatement(statement)) { continue; } const varDecl = statement.declarationList.declarations[0]; if (varDecl.initializer.kind !== 110) { continue; } const thisCaptureStatementIndex = i; let superCallIndex = i + 1; while (superCallIndex < body.statements.length) { const statement2 = body.statements[superCallIndex]; if (isExpressionStatement(statement2)) { if (isTransformedSuperCallLike(skipOuterExpressions(statement2.expression))) { break; } } if (isUninitializedVariableStatement(statement2)) { superCallIndex++; continue; } return body; } const following = body.statements[superCallIndex]; let expression = following.expression; if (isThisCapturingAssignment(expression)) { expression = expression.right; } const newVarDecl = factory2.updateVariableDeclaration(varDecl, varDecl.name, undefined, undefined, expression); const newDeclList = factory2.updateVariableDeclarationList(statement.declarationList, [newVarDecl]); const newVarStatement = factory2.createVariableStatement(statement.modifiers, newDeclList); setOriginalNode(newVarStatement, following); setTextRange(newVarStatement, following); const newStatements = factory2.createNodeArray([ ...body.statements.slice(0, thisCaptureStatementIndex), ...body.statements.slice(thisCaptureStatementIndex + 1, superCallIndex), newVarStatement, ...body.statements.slice(superCallIndex + 1) ]); setTextRange(newStatements, body.statements); return factory2.updateBlock(body, newStatements); } return body; } function simplifyConstructorInlineSuperReturn(body, original) { for (const statement of original.statements) { if (statement.transformFlags & 134217728 && !getSuperCallFromStatement(statement)) { return body; } } const canElideThisCapturingVariable = !(original.transformFlags & 16384) && !(hierarchyFacts & 65536) && !(hierarchyFacts & 131072); for (let i = body.statements.length - 1;i > 0; i--) { const statement = body.statements[i]; if (isReturnStatement(statement) && statement.expression && isCapturedThis(statement.expression)) { const preceding = body.statements[i - 1]; let expression; if (isExpressionStatement(preceding) && isThisCapturingTransformedSuperCallWithFallback(skipOuterExpressions(preceding.expression))) { expression = preceding.expression; } else if (canElideThisCapturingVariable && isThisCapturingVariableStatement(preceding)) { const varDecl = preceding.declarationList.declarations[0]; if (isTransformedSuperCallLike(skipOuterExpressions(varDecl.initializer))) { expression = factory2.createAssignment(createCapturedThis(), varDecl.initializer); } } if (!expression) { break; } const newReturnStatement = factory2.createReturnStatement(expression); setOriginalNode(newReturnStatement, preceding); setTextRange(newReturnStatement, preceding); const newStatements = factory2.createNodeArray([ ...body.statements.slice(0, i - 1), newReturnStatement, ...body.statements.slice(i + 1) ]); setTextRange(newStatements, body.statements); return factory2.updateBlock(body, newStatements); } } return body; } function elideUnusedThisCaptureWorker(node) { if (isThisCapturingVariableStatement(node)) { const varDecl = node.declarationList.declarations[0]; if (varDecl.initializer.kind === 110) { return; } } else if (isThisCapturingAssignment(node)) { return factory2.createPartiallyEmittedExpression(node.right, node); } switch (node.kind) { case 220: case 219: case 263: case 177: case 176: return node; case 178: case 179: case 175: case 173: { const named = node; if (isComputedPropertyName(named.name)) { return factory2.replacePropertyName(named, visitEachChild(named.name, elideUnusedThisCaptureWorker, undefined)); } return node; } } return visitEachChild(node, elideUnusedThisCaptureWorker, undefined); } function simplifyConstructorElideUnusedThisCapture(body, original) { if (original.transformFlags & 16384 || hierarchyFacts & 65536 || hierarchyFacts & 131072) { return body; } for (const statement of original.statements) { if (statement.transformFlags & 134217728 && !getSuperCallFromStatement(statement)) { return body; } } return factory2.updateBlock(body, visitNodes2(body.statements, elideUnusedThisCaptureWorker, isStatement)); } function injectSuperPresenceCheckWorker(node) { if (isTransformedSuperCall(node) && node.arguments.length === 2 && isIdentifier(node.arguments[1]) && idText(node.arguments[1]) === "arguments") { return factory2.createLogicalAnd(factory2.createStrictInequality(createSyntheticSuper(), factory2.createNull()), node); } switch (node.kind) { case 220: case 219: case 263: case 177: case 176: return node; case 178: case 179: case 175: case 173: { const named = node; if (isComputedPropertyName(named.name)) { return factory2.replacePropertyName(named, visitEachChild(named.name, injectSuperPresenceCheckWorker, undefined)); } return node; } } return visitEachChild(node, injectSuperPresenceCheckWorker, undefined); } function complicateConstructorInjectSuperPresenceCheck(body) { return factory2.updateBlock(body, visitNodes2(body.statements, injectSuperPresenceCheckWorker, isStatement)); } function simplifyConstructor(body, original, hasSynthesizedSuper) { const inputBody = body; body = simplifyConstructorInlineSuperInThisCaptureVariable(body); body = simplifyConstructorInlineSuperReturn(body, original); if (body !== inputBody) { body = simplifyConstructorElideUnusedThisCapture(body, original); } if (hasSynthesizedSuper) { body = complicateConstructorInjectSuperPresenceCheck(body); } return body; } function isSufficientlyCoveredByReturnStatements(statement) { if (statement.kind === 254) { return true; } else if (statement.kind === 246) { const ifStatement = statement; if (ifStatement.elseStatement) { return isSufficientlyCoveredByReturnStatements(ifStatement.thenStatement) && isSufficientlyCoveredByReturnStatements(ifStatement.elseStatement); } } else if (statement.kind === 242) { const lastStatement = lastOrUndefined(statement.statements); if (lastStatement && isSufficientlyCoveredByReturnStatements(lastStatement)) { return true; } } return false; } function createActualThis() { return setEmitFlags(factory2.createThis(), 8); } function createDefaultSuperCallOrThis() { return factory2.createLogicalOr(factory2.createLogicalAnd(factory2.createStrictInequality(createSyntheticSuper(), factory2.createNull()), factory2.createFunctionApplyCall(createSyntheticSuper(), createActualThis(), factory2.createIdentifier("arguments"))), createActualThis()); } function visitParameter(node) { if (node.dotDotDotToken) { return; } else if (isBindingPattern(node.name)) { return setOriginalNode(setTextRange(factory2.createParameterDeclaration(undefined, undefined, factory2.getGeneratedNameForNode(node), undefined, undefined, undefined), node), node); } else if (node.initializer) { return setOriginalNode(setTextRange(factory2.createParameterDeclaration(undefined, undefined, node.name, undefined, undefined, undefined), node), node); } else { return node; } } function hasDefaultValueOrBindingPattern(node) { return node.initializer !== undefined || isBindingPattern(node.name); } function addDefaultValueAssignmentsIfNeeded2(statements, node) { if (!some(node.parameters, hasDefaultValueOrBindingPattern)) { return false; } let added = false; for (const parameter of node.parameters) { const { name, initializer, dotDotDotToken } = parameter; if (dotDotDotToken) { continue; } if (isBindingPattern(name)) { added = insertDefaultValueAssignmentForBindingPattern(statements, parameter, name, initializer) || added; } else if (initializer) { insertDefaultValueAssignmentForInitializer(statements, parameter, name, initializer); added = true; } } return added; } function insertDefaultValueAssignmentForBindingPattern(statements, parameter, name, initializer) { if (name.elements.length > 0) { insertStatementAfterCustomPrologue(statements, setEmitFlags(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList(flattenDestructuringBinding(parameter, visitor, context, 0, factory2.getGeneratedNameForNode(parameter)))), 2097152)); return true; } else if (initializer) { insertStatementAfterCustomPrologue(statements, setEmitFlags(factory2.createExpressionStatement(factory2.createAssignment(factory2.getGeneratedNameForNode(parameter), Debug.checkDefined(visitNode(initializer, visitor, isExpression)))), 2097152)); return true; } return false; } function insertDefaultValueAssignmentForInitializer(statements, parameter, name, initializer) { initializer = Debug.checkDefined(visitNode(initializer, visitor, isExpression)); const statement = factory2.createIfStatement(factory2.createTypeCheck(factory2.cloneNode(name), "undefined"), setEmitFlags(setTextRange(factory2.createBlock([ factory2.createExpressionStatement(setEmitFlags(setTextRange(factory2.createAssignment(setEmitFlags(setParent(setTextRange(factory2.cloneNode(name), name), name.parent), 96), setEmitFlags(initializer, 96 | getEmitFlags(initializer) | 3072)), parameter), 3072)) ]), parameter), 1 | 64 | 768 | 3072)); startOnNewLine(statement); setTextRange(statement, parameter); setEmitFlags(statement, 768 | 64 | 2097152 | 3072); insertStatementAfterCustomPrologue(statements, statement); } function shouldAddRestParameter(node, inConstructorWithSynthesizedSuper) { return !!(node && node.dotDotDotToken && !inConstructorWithSynthesizedSuper); } function addRestParameterIfNeeded(statements, node, inConstructorWithSynthesizedSuper) { const prologueStatements = []; const parameter = lastOrUndefined(node.parameters); if (!shouldAddRestParameter(parameter, inConstructorWithSynthesizedSuper)) { return false; } const declarationName = parameter.name.kind === 80 ? setParent(setTextRange(factory2.cloneNode(parameter.name), parameter.name), parameter.name.parent) : factory2.createTempVariable(undefined); setEmitFlags(declarationName, 96); const expressionName = parameter.name.kind === 80 ? factory2.cloneNode(parameter.name) : declarationName; const restIndex = node.parameters.length - 1; const temp = factory2.createLoopVariable(); prologueStatements.push(setEmitFlags(setTextRange(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(declarationName, undefined, undefined, factory2.createArrayLiteralExpression([])) ])), parameter), 2097152)); const forStatement = factory2.createForStatement(setTextRange(factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(temp, undefined, undefined, factory2.createNumericLiteral(restIndex)) ]), parameter), setTextRange(factory2.createLessThan(temp, factory2.createPropertyAccessExpression(factory2.createIdentifier("arguments"), "length")), parameter), setTextRange(factory2.createPostfixIncrement(temp), parameter), factory2.createBlock([ startOnNewLine(setTextRange(factory2.createExpressionStatement(factory2.createAssignment(factory2.createElementAccessExpression(expressionName, restIndex === 0 ? temp : factory2.createSubtract(temp, factory2.createNumericLiteral(restIndex))), factory2.createElementAccessExpression(factory2.createIdentifier("arguments"), temp))), parameter)) ])); setEmitFlags(forStatement, 2097152); startOnNewLine(forStatement); prologueStatements.push(forStatement); if (parameter.name.kind !== 80) { prologueStatements.push(setEmitFlags(setTextRange(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList(flattenDestructuringBinding(parameter, visitor, context, 0, expressionName))), parameter), 2097152)); } insertStatementsAfterCustomPrologue(statements, prologueStatements); return true; } function insertCaptureThisForNodeIfNeeded(statements, node) { if (hierarchyFacts & 131072 && node.kind !== 220) { insertCaptureThisForNode(statements, node, factory2.createThis()); return true; } return false; } function insertCaptureThisForNode(statements, node, initializer) { enableSubstitutionsForCapturedThis(); const captureThisStatement = factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(createCapturedThis(), undefined, undefined, initializer) ])); setEmitFlags(captureThisStatement, 3072 | 2097152); setSourceMapRange(captureThisStatement, node); insertStatementAfterCustomPrologue(statements, captureThisStatement); } function insertCaptureNewTargetIfNeeded(statements, node) { if (hierarchyFacts & 32768) { let newTarget; switch (node.kind) { case 220: return statements; case 175: case 178: case 179: newTarget = factory2.createVoidZero(); break; case 177: newTarget = factory2.createPropertyAccessExpression(setEmitFlags(factory2.createThis(), 8), "constructor"); break; case 263: case 219: newTarget = factory2.createConditionalExpression(factory2.createLogicalAnd(setEmitFlags(factory2.createThis(), 8), factory2.createBinaryExpression(setEmitFlags(factory2.createThis(), 8), 104, factory2.getLocalName(node))), undefined, factory2.createPropertyAccessExpression(setEmitFlags(factory2.createThis(), 8), "constructor"), undefined, factory2.createVoidZero()); break; default: return Debug.failBadSyntaxKind(node); } const captureNewTargetStatement = factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(factory2.createUniqueName("_newTarget", 16 | 32), undefined, undefined, newTarget) ])); setEmitFlags(captureNewTargetStatement, 3072 | 2097152); insertStatementAfterCustomPrologue(statements, captureNewTargetStatement); } return statements; } function addClassMembers(statements, node) { for (const member of node.members) { switch (member.kind) { case 241: statements.push(transformSemicolonClassElementToStatement(member)); break; case 175: statements.push(transformClassMethodDeclarationToStatement(getClassMemberPrefix(node, member), member, node)); break; case 178: case 179: const accessors = getAllAccessorDeclarations(node.members, member); if (member === accessors.firstAccessor) { statements.push(transformAccessorsToStatement(getClassMemberPrefix(node, member), accessors, node)); } break; case 177: case 176: break; default: Debug.failBadSyntaxKind(member, currentSourceFile && currentSourceFile.fileName); break; } } } function transformSemicolonClassElementToStatement(member) { return setTextRange(factory2.createEmptyStatement(), member); } function transformClassMethodDeclarationToStatement(receiver, member, container) { const commentRange = getCommentRange(member); const sourceMapRange = getSourceMapRange(member); const memberFunction = transformFunctionLikeToExpression(member, member, undefined, container); const propertyName = visitNode(member.name, visitor, isPropertyName); Debug.assert(propertyName); let e; if (!isPrivateIdentifier(propertyName) && getUseDefineForClassFields(context.getCompilerOptions())) { const name = isComputedPropertyName(propertyName) ? propertyName.expression : isIdentifier(propertyName) ? factory2.createStringLiteral(unescapeLeadingUnderscores(propertyName.escapedText)) : propertyName; e = factory2.createObjectDefinePropertyCall(receiver, name, factory2.createPropertyDescriptor({ value: memberFunction, enumerable: false, writable: true, configurable: true })); } else { const memberName = createMemberAccessForPropertyName(factory2, receiver, propertyName, member.name); e = factory2.createAssignment(memberName, memberFunction); } setEmitFlags(memberFunction, 3072); setSourceMapRange(memberFunction, sourceMapRange); const statement = setTextRange(factory2.createExpressionStatement(e), member); setOriginalNode(statement, member); setCommentRange(statement, commentRange); setEmitFlags(statement, 96); return statement; } function transformAccessorsToStatement(receiver, accessors, container) { const statement = factory2.createExpressionStatement(transformAccessorsToExpression(receiver, accessors, container, false)); setEmitFlags(statement, 3072); setSourceMapRange(statement, getSourceMapRange(accessors.firstAccessor)); return statement; } function transformAccessorsToExpression(receiver, { firstAccessor, getAccessor, setAccessor }, container, startsOnNewLine) { const target = setParent(setTextRange(factory2.cloneNode(receiver), receiver), receiver.parent); setEmitFlags(target, 3072 | 64); setSourceMapRange(target, firstAccessor.name); const visitedAccessorName = visitNode(firstAccessor.name, visitor, isPropertyName); Debug.assert(visitedAccessorName); if (isPrivateIdentifier(visitedAccessorName)) { return Debug.failBadSyntaxKind(visitedAccessorName, "Encountered unhandled private identifier while transforming ES2015."); } const propertyName = createExpressionForPropertyName(factory2, visitedAccessorName); setEmitFlags(propertyName, 3072 | 32); setSourceMapRange(propertyName, firstAccessor.name); const properties = []; if (getAccessor) { const getterFunction = transformFunctionLikeToExpression(getAccessor, undefined, undefined, container); setSourceMapRange(getterFunction, getSourceMapRange(getAccessor)); setEmitFlags(getterFunction, 1024); const getter = factory2.createPropertyAssignment("get", getterFunction); setCommentRange(getter, getCommentRange(getAccessor)); properties.push(getter); } if (setAccessor) { const setterFunction = transformFunctionLikeToExpression(setAccessor, undefined, undefined, container); setSourceMapRange(setterFunction, getSourceMapRange(setAccessor)); setEmitFlags(setterFunction, 1024); const setter = factory2.createPropertyAssignment("set", setterFunction); setCommentRange(setter, getCommentRange(setAccessor)); properties.push(setter); } properties.push(factory2.createPropertyAssignment("enumerable", getAccessor || setAccessor ? factory2.createFalse() : factory2.createTrue()), factory2.createPropertyAssignment("configurable", factory2.createTrue())); const call = factory2.createCallExpression(factory2.createPropertyAccessExpression(factory2.createIdentifier("Object"), "defineProperty"), undefined, [ target, propertyName, factory2.createObjectLiteralExpression(properties, true) ]); if (startsOnNewLine) { startOnNewLine(call); } return call; } function visitArrowFunction(node) { if (node.transformFlags & 16384 && !(hierarchyFacts & 16384)) { hierarchyFacts |= 131072; } const savedConvertedLoopState = convertedLoopState; convertedLoopState = undefined; const ancestorFacts = enterSubtree(15232, 66); const func = factory2.createFunctionExpression(undefined, undefined, undefined, undefined, visitParameterList(node.parameters, visitor, context), undefined, transformFunctionBody2(node)); setTextRange(func, node); setOriginalNode(func, node); setEmitFlags(func, 16); exitSubtree(ancestorFacts, 0, 0); convertedLoopState = savedConvertedLoopState; return func; } function visitFunctionExpression(node) { const ancestorFacts = getEmitFlags(node) & 524288 ? enterSubtree(32662, 69) : enterSubtree(32670, 65); const savedConvertedLoopState = convertedLoopState; convertedLoopState = undefined; const parameters = visitParameterList(node.parameters, visitor, context); const body = transformFunctionBody2(node); const name = hierarchyFacts & 32768 ? factory2.getLocalName(node) : node.name; exitSubtree(ancestorFacts, 229376, 0); convertedLoopState = savedConvertedLoopState; return factory2.updateFunctionExpression(node, undefined, node.asteriskToken, name, undefined, parameters, undefined, body); } function visitFunctionDeclaration(node) { const savedConvertedLoopState = convertedLoopState; convertedLoopState = undefined; const ancestorFacts = enterSubtree(32670, 65); const parameters = visitParameterList(node.parameters, visitor, context); const body = transformFunctionBody2(node); const name = hierarchyFacts & 32768 ? factory2.getLocalName(node) : node.name; exitSubtree(ancestorFacts, 229376, 0); convertedLoopState = savedConvertedLoopState; return factory2.updateFunctionDeclaration(node, visitNodes2(node.modifiers, visitor, isModifier), node.asteriskToken, name, undefined, parameters, undefined, body); } function transformFunctionLikeToExpression(node, location, name, container) { const savedConvertedLoopState = convertedLoopState; convertedLoopState = undefined; const ancestorFacts = container && isClassLike(container) && !isStatic(node) ? enterSubtree(32670, 65 | 8) : enterSubtree(32670, 65); const parameters = visitParameterList(node.parameters, visitor, context); const body = transformFunctionBody2(node); if (hierarchyFacts & 32768 && !name && (node.kind === 263 || node.kind === 219)) { name = factory2.getGeneratedNameForNode(node); } exitSubtree(ancestorFacts, 229376, 0); convertedLoopState = savedConvertedLoopState; return setOriginalNode(setTextRange(factory2.createFunctionExpression(undefined, node.asteriskToken, name, undefined, parameters, undefined, body), location), node); } function transformFunctionBody2(node) { let multiLine = false; let singleLine = false; let statementsLocation; let closeBraceLocation; const prologue = []; const statements = []; const body = node.body; let statementOffset; resumeLexicalEnvironment(); if (isBlock(body)) { statementOffset = factory2.copyStandardPrologue(body.statements, prologue, 0, false); statementOffset = factory2.copyCustomPrologue(body.statements, statements, statementOffset, visitor, isHoistedFunction); statementOffset = factory2.copyCustomPrologue(body.statements, statements, statementOffset, visitor, isHoistedVariableStatement); } multiLine = addDefaultValueAssignmentsIfNeeded2(statements, node) || multiLine; multiLine = addRestParameterIfNeeded(statements, node, false) || multiLine; if (isBlock(body)) { statementOffset = factory2.copyCustomPrologue(body.statements, statements, statementOffset, visitor); statementsLocation = body.statements; addRange(statements, visitNodes2(body.statements, visitor, isStatement, statementOffset)); if (!multiLine && body.multiLine) { multiLine = true; } } else { Debug.assert(node.kind === 220); statementsLocation = moveRangeEnd(body, -1); const equalsGreaterThanToken = node.equalsGreaterThanToken; if (!nodeIsSynthesized(equalsGreaterThanToken) && !nodeIsSynthesized(body)) { if (rangeEndIsOnSameLineAsRangeStart(equalsGreaterThanToken, body, currentSourceFile)) { singleLine = true; } else { multiLine = true; } } const expression = visitNode(body, visitor, isExpression); const returnStatement = factory2.createReturnStatement(expression); setTextRange(returnStatement, body); moveSyntheticComments(returnStatement, body); setEmitFlags(returnStatement, 768 | 64 | 2048); statements.push(returnStatement); closeBraceLocation = body; } factory2.mergeLexicalEnvironment(prologue, endLexicalEnvironment()); insertCaptureNewTargetIfNeeded(prologue, node); insertCaptureThisForNodeIfNeeded(prologue, node); if (some(prologue)) { multiLine = true; } statements.unshift(...prologue); if (isBlock(body) && arrayIsEqualTo(statements, body.statements)) { return body; } const block = factory2.createBlock(setTextRange(factory2.createNodeArray(statements), statementsLocation), multiLine); setTextRange(block, node.body); if (!multiLine && singleLine) { setEmitFlags(block, 1); } if (closeBraceLocation) { setTokenSourceMapRange(block, 20, closeBraceLocation); } setOriginalNode(block, node.body); return block; } function visitBlock(node, isFunctionBody2) { if (isFunctionBody2) { return visitEachChild(node, visitor, context); } const ancestorFacts = hierarchyFacts & 256 ? enterSubtree(7104, 512) : enterSubtree(6976, 128); const updated = visitEachChild(node, visitor, context); exitSubtree(ancestorFacts, 0, 0); return updated; } function visitExpressionStatement(node) { return visitEachChild(node, visitorWithUnusedExpressionResult, context); } function visitParenthesizedExpression(node, expressionResultIsUnused2) { return visitEachChild(node, expressionResultIsUnused2 ? visitorWithUnusedExpressionResult : visitor, context); } function visitBinaryExpression(node, expressionResultIsUnused2) { if (isDestructuringAssignment(node)) { return flattenDestructuringAssignment(node, visitor, context, 0, !expressionResultIsUnused2); } if (node.operatorToken.kind === 28) { return factory2.updateBinaryExpression(node, Debug.checkDefined(visitNode(node.left, visitorWithUnusedExpressionResult, isExpression)), node.operatorToken, Debug.checkDefined(visitNode(node.right, expressionResultIsUnused2 ? visitorWithUnusedExpressionResult : visitor, isExpression))); } return visitEachChild(node, visitor, context); } function visitCommaListExpression(node, expressionResultIsUnused2) { if (expressionResultIsUnused2) { return visitEachChild(node, visitorWithUnusedExpressionResult, context); } let result; for (let i = 0;i < node.elements.length; i++) { const element = node.elements[i]; const visited = visitNode(element, i < node.elements.length - 1 ? visitorWithUnusedExpressionResult : visitor, isExpression); if (result || visited !== element) { result || (result = node.elements.slice(0, i)); Debug.assert(visited); result.push(visited); } } const elements = result ? setTextRange(factory2.createNodeArray(result), node.elements) : node.elements; return factory2.updateCommaListExpression(node, elements); } function isVariableStatementOfTypeScriptClassWrapper(node) { return node.declarationList.declarations.length === 1 && !!node.declarationList.declarations[0].initializer && !!(getInternalEmitFlags(node.declarationList.declarations[0].initializer) & 1); } function visitVariableStatement(node) { const ancestorFacts = enterSubtree(0, hasSyntacticModifier(node, 32) ? 32 : 0); let updated; if (convertedLoopState && (node.declarationList.flags & 7) === 0 && !isVariableStatementOfTypeScriptClassWrapper(node)) { let assignments; for (const decl of node.declarationList.declarations) { hoistVariableDeclarationDeclaredInConvertedLoop(convertedLoopState, decl); if (decl.initializer) { let assignment; if (isBindingPattern(decl.name)) { assignment = flattenDestructuringAssignment(decl, visitor, context, 0); } else { assignment = factory2.createBinaryExpression(decl.name, 64, Debug.checkDefined(visitNode(decl.initializer, visitor, isExpression))); setTextRange(assignment, decl); } assignments = append(assignments, assignment); } } if (assignments) { updated = setTextRange(factory2.createExpressionStatement(factory2.inlineExpressions(assignments)), node); } else { updated = undefined; } } else { updated = visitEachChild(node, visitor, context); } exitSubtree(ancestorFacts, 0, 0); return updated; } function visitVariableDeclarationList(node) { if (node.flags & 7 || node.transformFlags & 524288) { if (node.flags & 7) { enableSubstitutionsForBlockScopedBindings(); } const declarations = visitNodes2(node.declarations, node.flags & 1 ? visitVariableDeclarationInLetDeclarationList : visitVariableDeclaration, isVariableDeclaration); const declarationList = factory2.createVariableDeclarationList(declarations); setOriginalNode(declarationList, node); setTextRange(declarationList, node); setCommentRange(declarationList, node); if (node.transformFlags & 524288 && (isBindingPattern(node.declarations[0].name) || isBindingPattern(last(node.declarations).name))) { setSourceMapRange(declarationList, getRangeUnion(declarations)); } return declarationList; } return visitEachChild(node, visitor, context); } function getRangeUnion(declarations) { let pos = -1, end = -1; for (const node of declarations) { pos = pos === -1 ? node.pos : node.pos === -1 ? pos : Math.min(pos, node.pos); end = Math.max(end, node.end); } return createRange(pos, end); } function shouldEmitExplicitInitializerForLetDeclaration(node) { const isCapturedInFunction = resolver.hasNodeCheckFlag(node, 16384); const isDeclaredInLoop = resolver.hasNodeCheckFlag(node, 32768); const emittedAsTopLevel = (hierarchyFacts & 64) !== 0 || isCapturedInFunction && isDeclaredInLoop && (hierarchyFacts & 512) !== 0; const emitExplicitInitializer = !emittedAsTopLevel && (hierarchyFacts & 4096) === 0 && (!resolver.isDeclarationWithCollidingName(node) || isDeclaredInLoop && !isCapturedInFunction && (hierarchyFacts & (2048 | 4096)) === 0); return emitExplicitInitializer; } function visitVariableDeclarationInLetDeclarationList(node) { const name = node.name; if (isBindingPattern(name)) { return visitVariableDeclaration(node); } if (!node.initializer && shouldEmitExplicitInitializerForLetDeclaration(node)) { return factory2.updateVariableDeclaration(node, node.name, undefined, undefined, factory2.createVoidZero()); } return visitEachChild(node, visitor, context); } function visitVariableDeclaration(node) { const ancestorFacts = enterSubtree(32, 0); let updated; if (isBindingPattern(node.name)) { updated = flattenDestructuringBinding(node, visitor, context, 0, undefined, (ancestorFacts & 32) !== 0); } else { updated = visitEachChild(node, visitor, context); } exitSubtree(ancestorFacts, 0, 0); return updated; } function recordLabel(node) { convertedLoopState.labels.set(idText(node.label), true); } function resetLabel(node) { convertedLoopState.labels.set(idText(node.label), false); } function visitLabeledStatement(node) { if (convertedLoopState && !convertedLoopState.labels) { convertedLoopState.labels = /* @__PURE__ */ new Map; } const statement = unwrapInnermostStatementOfLabel(node, convertedLoopState && recordLabel); return isIterationStatement(statement, false) ? visitIterationStatement(statement, node) : factory2.restoreEnclosingLabel(visitNode(statement, visitor, isStatement, factory2.liftToBlock) ?? setTextRange(factory2.createEmptyStatement(), statement), node, convertedLoopState && resetLabel); } function visitIterationStatement(node, outermostLabeledStatement) { switch (node.kind) { case 247: case 248: return visitDoOrWhileStatement(node, outermostLabeledStatement); case 249: return visitForStatement(node, outermostLabeledStatement); case 250: return visitForInStatement(node, outermostLabeledStatement); case 251: return visitForOfStatement(node, outermostLabeledStatement); } } function visitIterationStatementWithFacts(excludeFacts, includeFacts, node, outermostLabeledStatement, convert) { const ancestorFacts = enterSubtree(excludeFacts, includeFacts); const updated = convertIterationStatementBodyIfNecessary(node, outermostLabeledStatement, ancestorFacts, convert); exitSubtree(ancestorFacts, 0, 0); return updated; } function visitDoOrWhileStatement(node, outermostLabeledStatement) { return visitIterationStatementWithFacts(0, 1280, node, outermostLabeledStatement); } function visitForStatement(node, outermostLabeledStatement) { return visitIterationStatementWithFacts(5056, 3328, node, outermostLabeledStatement); } function visitEachChildOfForStatement2(node) { return factory2.updateForStatement(node, visitNode(node.initializer, visitorWithUnusedExpressionResult, isForInitializer), visitNode(node.condition, visitor, isExpression), visitNode(node.incrementor, visitorWithUnusedExpressionResult, isExpression), Debug.checkDefined(visitNode(node.statement, visitor, isStatement, factory2.liftToBlock))); } function visitForInStatement(node, outermostLabeledStatement) { return visitIterationStatementWithFacts(3008, 5376, node, outermostLabeledStatement); } function visitForOfStatement(node, outermostLabeledStatement) { return visitIterationStatementWithFacts(3008, 5376, node, outermostLabeledStatement, compilerOptions.downlevelIteration ? convertForOfStatementForIterable : convertForOfStatementForArray); } function convertForOfStatementHead(node, boundValue, convertedLoopBodyStatements) { const statements = []; const initializer = node.initializer; if (isVariableDeclarationList(initializer)) { if (node.initializer.flags & 7) { enableSubstitutionsForBlockScopedBindings(); } const firstOriginalDeclaration = firstOrUndefined(initializer.declarations); if (firstOriginalDeclaration && isBindingPattern(firstOriginalDeclaration.name)) { const declarations = flattenDestructuringBinding(firstOriginalDeclaration, visitor, context, 0, boundValue); const declarationList = setTextRange(factory2.createVariableDeclarationList(declarations), node.initializer); setOriginalNode(declarationList, node.initializer); setSourceMapRange(declarationList, createRange(declarations[0].pos, last(declarations).end)); statements.push(factory2.createVariableStatement(undefined, declarationList)); } else { statements.push(setTextRange(factory2.createVariableStatement(undefined, setOriginalNode(setTextRange(factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(firstOriginalDeclaration ? firstOriginalDeclaration.name : factory2.createTempVariable(undefined), undefined, undefined, boundValue) ]), moveRangePos(initializer, -1)), initializer)), moveRangeEnd(initializer, -1))); } } else { const assignment = factory2.createAssignment(initializer, boundValue); if (isDestructuringAssignment(assignment)) { statements.push(factory2.createExpressionStatement(visitBinaryExpression(assignment, true))); } else { setTextRangeEnd(assignment, initializer.end); statements.push(setTextRange(factory2.createExpressionStatement(Debug.checkDefined(visitNode(assignment, visitor, isExpression))), moveRangeEnd(initializer, -1))); } } if (convertedLoopBodyStatements) { return createSyntheticBlockForConvertedStatements(addRange(statements, convertedLoopBodyStatements)); } else { const statement = visitNode(node.statement, visitor, isStatement, factory2.liftToBlock); Debug.assert(statement); if (isBlock(statement)) { return factory2.updateBlock(statement, setTextRange(factory2.createNodeArray(concatenate(statements, statement.statements)), statement.statements)); } else { statements.push(statement); return createSyntheticBlockForConvertedStatements(statements); } } } function createSyntheticBlockForConvertedStatements(statements) { return setEmitFlags(factory2.createBlock(factory2.createNodeArray(statements), true), 96 | 768); } function convertForOfStatementForArray(node, outermostLabeledStatement, convertedLoopBodyStatements) { const expression = visitNode(node.expression, visitor, isExpression); Debug.assert(expression); const counter = factory2.createLoopVariable(); const rhsReference = isIdentifier(expression) ? factory2.getGeneratedNameForNode(expression) : factory2.createTempVariable(undefined); setEmitFlags(expression, 96 | getEmitFlags(expression)); const forStatement = setTextRange(factory2.createForStatement(setEmitFlags(setTextRange(factory2.createVariableDeclarationList([ setTextRange(factory2.createVariableDeclaration(counter, undefined, undefined, factory2.createNumericLiteral(0)), moveRangePos(node.expression, -1)), setTextRange(factory2.createVariableDeclaration(rhsReference, undefined, undefined, expression), node.expression) ]), node.expression), 4194304), setTextRange(factory2.createLessThan(counter, factory2.createPropertyAccessExpression(rhsReference, "length")), node.expression), setTextRange(factory2.createPostfixIncrement(counter), node.expression), convertForOfStatementHead(node, factory2.createElementAccessExpression(rhsReference, counter), convertedLoopBodyStatements)), node); setEmitFlags(forStatement, 512); setTextRange(forStatement, node); return factory2.restoreEnclosingLabel(forStatement, outermostLabeledStatement, convertedLoopState && resetLabel); } function convertForOfStatementForIterable(node, outermostLabeledStatement, convertedLoopBodyStatements, ancestorFacts) { const expression = visitNode(node.expression, visitor, isExpression); Debug.assert(expression); const iterator = isIdentifier(expression) ? factory2.getGeneratedNameForNode(expression) : factory2.createTempVariable(undefined); const result = isIdentifier(expression) ? factory2.getGeneratedNameForNode(iterator) : factory2.createTempVariable(undefined); const errorRecord = factory2.createUniqueName("e"); const catchVariable = factory2.getGeneratedNameForNode(errorRecord); const returnMethod = factory2.createTempVariable(undefined); const values = setTextRange(emitHelpers().createValuesHelper(expression), node.expression); const next = factory2.createCallExpression(factory2.createPropertyAccessExpression(iterator, "next"), undefined, []); hoistVariableDeclaration(errorRecord); hoistVariableDeclaration(returnMethod); const initializer = ancestorFacts & 1024 ? factory2.inlineExpressions([factory2.createAssignment(errorRecord, factory2.createVoidZero()), values]) : values; const forStatement = setEmitFlags(setTextRange(factory2.createForStatement(setEmitFlags(setTextRange(factory2.createVariableDeclarationList([ setTextRange(factory2.createVariableDeclaration(iterator, undefined, undefined, initializer), node.expression), factory2.createVariableDeclaration(result, undefined, undefined, next) ]), node.expression), 4194304), factory2.createLogicalNot(factory2.createPropertyAccessExpression(result, "done")), factory2.createAssignment(result, next), convertForOfStatementHead(node, factory2.createPropertyAccessExpression(result, "value"), convertedLoopBodyStatements)), node), 512); return factory2.createTryStatement(factory2.createBlock([ factory2.restoreEnclosingLabel(forStatement, outermostLabeledStatement, convertedLoopState && resetLabel) ]), factory2.createCatchClause(factory2.createVariableDeclaration(catchVariable), setEmitFlags(factory2.createBlock([ factory2.createExpressionStatement(factory2.createAssignment(errorRecord, factory2.createObjectLiteralExpression([ factory2.createPropertyAssignment("error", catchVariable) ]))) ]), 1)), factory2.createBlock([ factory2.createTryStatement(factory2.createBlock([ setEmitFlags(factory2.createIfStatement(factory2.createLogicalAnd(factory2.createLogicalAnd(result, factory2.createLogicalNot(factory2.createPropertyAccessExpression(result, "done"))), factory2.createAssignment(returnMethod, factory2.createPropertyAccessExpression(iterator, "return"))), factory2.createExpressionStatement(factory2.createFunctionCallCall(returnMethod, iterator, []))), 1) ]), undefined, setEmitFlags(factory2.createBlock([ setEmitFlags(factory2.createIfStatement(errorRecord, factory2.createThrowStatement(factory2.createPropertyAccessExpression(errorRecord, "error"))), 1) ]), 1)) ])); } function visitObjectLiteralExpression(node) { const properties = node.properties; let numInitialProperties = -1, hasComputed = false; for (let i = 0;i < properties.length; i++) { const property = properties[i]; if (property.transformFlags & 1048576 && hierarchyFacts & 4 || (hasComputed = Debug.checkDefined(property.name).kind === 168)) { numInitialProperties = i; break; } } if (numInitialProperties < 0) { return visitEachChild(node, visitor, context); } const temp = factory2.createTempVariable(hoistVariableDeclaration); const expressions = []; const assignment = factory2.createAssignment(temp, setEmitFlags(factory2.createObjectLiteralExpression(visitNodes2(properties, visitor, isObjectLiteralElementLike, 0, numInitialProperties), node.multiLine), hasComputed ? 131072 : 0)); if (node.multiLine) { startOnNewLine(assignment); } expressions.push(assignment); addObjectLiteralMembers(expressions, node, temp, numInitialProperties); expressions.push(node.multiLine ? startOnNewLine(setParent(setTextRange(factory2.cloneNode(temp), temp), temp.parent)) : temp); return factory2.inlineExpressions(expressions); } function shouldConvertPartOfIterationStatement(node) { return resolver.hasNodeCheckFlag(node, 8192); } function shouldConvertInitializerOfForStatement(node) { return isForStatement(node) && !!node.initializer && shouldConvertPartOfIterationStatement(node.initializer); } function shouldConvertConditionOfForStatement(node) { return isForStatement(node) && !!node.condition && shouldConvertPartOfIterationStatement(node.condition); } function shouldConvertIncrementorOfForStatement(node) { return isForStatement(node) && !!node.incrementor && shouldConvertPartOfIterationStatement(node.incrementor); } function shouldConvertIterationStatement(node) { return shouldConvertBodyOfIterationStatement(node) || shouldConvertInitializerOfForStatement(node); } function shouldConvertBodyOfIterationStatement(node) { return resolver.hasNodeCheckFlag(node, 4096); } function hoistVariableDeclarationDeclaredInConvertedLoop(state, node) { if (!state.hoistedLocalVariables) { state.hoistedLocalVariables = []; } visit(node.name); function visit(node2) { if (node2.kind === 80) { state.hoistedLocalVariables.push(node2); } else { for (const element of node2.elements) { if (!isOmittedExpression(element)) { visit(element.name); } } } } } function convertIterationStatementBodyIfNecessary(node, outermostLabeledStatement, ancestorFacts, convert) { if (!shouldConvertIterationStatement(node)) { let saveAllowedNonLabeledJumps; if (convertedLoopState) { saveAllowedNonLabeledJumps = convertedLoopState.allowedNonLabeledJumps; convertedLoopState.allowedNonLabeledJumps = 2 | 4; } const result = convert ? convert(node, outermostLabeledStatement, undefined, ancestorFacts) : factory2.restoreEnclosingLabel(isForStatement(node) ? visitEachChildOfForStatement2(node) : visitEachChild(node, visitor, context), outermostLabeledStatement, convertedLoopState && resetLabel); if (convertedLoopState) { convertedLoopState.allowedNonLabeledJumps = saveAllowedNonLabeledJumps; } return result; } const currentState = createConvertedLoopState(node); const statements = []; const outerConvertedLoopState = convertedLoopState; convertedLoopState = currentState; const initializerFunction = shouldConvertInitializerOfForStatement(node) ? createFunctionForInitializerOfForStatement(node, currentState) : undefined; const bodyFunction = shouldConvertBodyOfIterationStatement(node) ? createFunctionForBodyOfIterationStatement(node, currentState, outerConvertedLoopState) : undefined; convertedLoopState = outerConvertedLoopState; if (initializerFunction) statements.push(initializerFunction.functionDeclaration); if (bodyFunction) statements.push(bodyFunction.functionDeclaration); addExtraDeclarationsForConvertedLoop(statements, currentState, outerConvertedLoopState); if (initializerFunction) { statements.push(generateCallToConvertedLoopInitializer(initializerFunction.functionName, initializerFunction.containsYield)); } let loop; if (bodyFunction) { if (convert) { loop = convert(node, outermostLabeledStatement, bodyFunction.part, ancestorFacts); } else { const clone2 = convertIterationStatementCore(node, initializerFunction, factory2.createBlock(bodyFunction.part, true)); loop = factory2.restoreEnclosingLabel(clone2, outermostLabeledStatement, convertedLoopState && resetLabel); } } else { const clone2 = convertIterationStatementCore(node, initializerFunction, Debug.checkDefined(visitNode(node.statement, visitor, isStatement, factory2.liftToBlock))); loop = factory2.restoreEnclosingLabel(clone2, outermostLabeledStatement, convertedLoopState && resetLabel); } statements.push(loop); return statements; } function convertIterationStatementCore(node, initializerFunction, convertedLoopBody) { switch (node.kind) { case 249: return convertForStatement(node, initializerFunction, convertedLoopBody); case 250: return convertForInStatement(node, convertedLoopBody); case 251: return convertForOfStatement(node, convertedLoopBody); case 247: return convertDoStatement(node, convertedLoopBody); case 248: return convertWhileStatement(node, convertedLoopBody); default: return Debug.failBadSyntaxKind(node, "IterationStatement expected"); } } function convertForStatement(node, initializerFunction, convertedLoopBody) { const shouldConvertCondition = node.condition && shouldConvertPartOfIterationStatement(node.condition); const shouldConvertIncrementor = shouldConvertCondition || node.incrementor && shouldConvertPartOfIterationStatement(node.incrementor); return factory2.updateForStatement(node, visitNode(initializerFunction ? initializerFunction.part : node.initializer, visitorWithUnusedExpressionResult, isForInitializer), visitNode(shouldConvertCondition ? undefined : node.condition, visitor, isExpression), visitNode(shouldConvertIncrementor ? undefined : node.incrementor, visitorWithUnusedExpressionResult, isExpression), convertedLoopBody); } function convertForOfStatement(node, convertedLoopBody) { return factory2.updateForOfStatement(node, undefined, Debug.checkDefined(visitNode(node.initializer, visitor, isForInitializer)), Debug.checkDefined(visitNode(node.expression, visitor, isExpression)), convertedLoopBody); } function convertForInStatement(node, convertedLoopBody) { return factory2.updateForInStatement(node, Debug.checkDefined(visitNode(node.initializer, visitor, isForInitializer)), Debug.checkDefined(visitNode(node.expression, visitor, isExpression)), convertedLoopBody); } function convertDoStatement(node, convertedLoopBody) { return factory2.updateDoStatement(node, convertedLoopBody, Debug.checkDefined(visitNode(node.expression, visitor, isExpression))); } function convertWhileStatement(node, convertedLoopBody) { return factory2.updateWhileStatement(node, Debug.checkDefined(visitNode(node.expression, visitor, isExpression)), convertedLoopBody); } function createConvertedLoopState(node) { let loopInitializer; switch (node.kind) { case 249: case 250: case 251: const initializer = node.initializer; if (initializer && initializer.kind === 262) { loopInitializer = initializer; } break; } const loopParameters = []; const loopOutParameters = []; if (loopInitializer && getCombinedNodeFlags(loopInitializer) & 7) { const hasCapturedBindingsInForHead = shouldConvertInitializerOfForStatement(node) || shouldConvertConditionOfForStatement(node) || shouldConvertIncrementorOfForStatement(node); for (const decl of loopInitializer.declarations) { processLoopVariableDeclaration(node, decl, loopParameters, loopOutParameters, hasCapturedBindingsInForHead); } } const currentState = { loopParameters, loopOutParameters }; if (convertedLoopState) { if (convertedLoopState.argumentsName) { currentState.argumentsName = convertedLoopState.argumentsName; } if (convertedLoopState.thisName) { currentState.thisName = convertedLoopState.thisName; } if (convertedLoopState.hoistedLocalVariables) { currentState.hoistedLocalVariables = convertedLoopState.hoistedLocalVariables; } } return currentState; } function addExtraDeclarationsForConvertedLoop(statements, state, outerState) { let extraVariableDeclarations; if (state.argumentsName) { if (outerState) { outerState.argumentsName = state.argumentsName; } else { (extraVariableDeclarations || (extraVariableDeclarations = [])).push(factory2.createVariableDeclaration(state.argumentsName, undefined, undefined, factory2.createIdentifier("arguments"))); } } if (state.thisName) { if (outerState) { outerState.thisName = state.thisName; } else { (extraVariableDeclarations || (extraVariableDeclarations = [])).push(factory2.createVariableDeclaration(state.thisName, undefined, undefined, factory2.createIdentifier("this"))); } } if (state.hoistedLocalVariables) { if (outerState) { outerState.hoistedLocalVariables = state.hoistedLocalVariables; } else { if (!extraVariableDeclarations) { extraVariableDeclarations = []; } for (const identifier of state.hoistedLocalVariables) { extraVariableDeclarations.push(factory2.createVariableDeclaration(identifier)); } } } if (state.loopOutParameters.length) { if (!extraVariableDeclarations) { extraVariableDeclarations = []; } for (const outParam of state.loopOutParameters) { extraVariableDeclarations.push(factory2.createVariableDeclaration(outParam.outParamName)); } } if (state.conditionVariable) { if (!extraVariableDeclarations) { extraVariableDeclarations = []; } extraVariableDeclarations.push(factory2.createVariableDeclaration(state.conditionVariable, undefined, undefined, factory2.createFalse())); } if (extraVariableDeclarations) { statements.push(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList(extraVariableDeclarations))); } } function createOutVariable(p) { return factory2.createVariableDeclaration(p.originalName, undefined, undefined, p.outParamName); } function createFunctionForInitializerOfForStatement(node, currentState) { const functionName = factory2.createUniqueName("_loop_init"); const containsYield = (node.initializer.transformFlags & 1048576) !== 0; let emitFlags = 0; if (currentState.containsLexicalThis) emitFlags |= 16; if (containsYield && hierarchyFacts & 4) emitFlags |= 524288; const statements = []; statements.push(factory2.createVariableStatement(undefined, node.initializer)); copyOutParameters(currentState.loopOutParameters, 2, 1, statements); const functionDeclaration = factory2.createVariableStatement(undefined, setEmitFlags(factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(functionName, undefined, undefined, setEmitFlags(factory2.createFunctionExpression(undefined, containsYield ? factory2.createToken(42) : undefined, undefined, undefined, undefined, undefined, Debug.checkDefined(visitNode(factory2.createBlock(statements, true), visitor, isBlock))), emitFlags)) ]), 4194304)); const part = factory2.createVariableDeclarationList(map(currentState.loopOutParameters, createOutVariable)); return { functionName, containsYield, functionDeclaration, part }; } function createFunctionForBodyOfIterationStatement(node, currentState, outerState) { const functionName = factory2.createUniqueName("_loop"); startLexicalEnvironment(); const statement = visitNode(node.statement, visitor, isStatement, factory2.liftToBlock); const lexicalEnvironment = endLexicalEnvironment(); const statements = []; if (shouldConvertConditionOfForStatement(node) || shouldConvertIncrementorOfForStatement(node)) { currentState.conditionVariable = factory2.createUniqueName("inc"); if (node.incrementor) { statements.push(factory2.createIfStatement(currentState.conditionVariable, factory2.createExpressionStatement(Debug.checkDefined(visitNode(node.incrementor, visitor, isExpression))), factory2.createExpressionStatement(factory2.createAssignment(currentState.conditionVariable, factory2.createTrue())))); } else { statements.push(factory2.createIfStatement(factory2.createLogicalNot(currentState.conditionVariable), factory2.createExpressionStatement(factory2.createAssignment(currentState.conditionVariable, factory2.createTrue())))); } if (shouldConvertConditionOfForStatement(node)) { statements.push(factory2.createIfStatement(factory2.createPrefixUnaryExpression(54, Debug.checkDefined(visitNode(node.condition, visitor, isExpression))), Debug.checkDefined(visitNode(factory2.createBreakStatement(), visitor, isStatement)))); } } Debug.assert(statement); if (isBlock(statement)) { addRange(statements, statement.statements); } else { statements.push(statement); } copyOutParameters(currentState.loopOutParameters, 1, 1, statements); insertStatementsAfterStandardPrologue(statements, lexicalEnvironment); const loopBody = factory2.createBlock(statements, true); if (isBlock(statement)) setOriginalNode(loopBody, statement); const containsYield = (node.statement.transformFlags & 1048576) !== 0; let emitFlags = 1048576; if (currentState.containsLexicalThis) emitFlags |= 16; if (containsYield && (hierarchyFacts & 4) !== 0) emitFlags |= 524288; const functionDeclaration = factory2.createVariableStatement(undefined, setEmitFlags(factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(functionName, undefined, undefined, setEmitFlags(factory2.createFunctionExpression(undefined, containsYield ? factory2.createToken(42) : undefined, undefined, undefined, currentState.loopParameters, undefined, loopBody), emitFlags)) ]), 4194304)); const part = generateCallToConvertedLoop(functionName, currentState, outerState, containsYield); return { functionName, containsYield, functionDeclaration, part }; } function copyOutParameter(outParam, copyDirection) { const source = copyDirection === 0 ? outParam.outParamName : outParam.originalName; const target = copyDirection === 0 ? outParam.originalName : outParam.outParamName; return factory2.createBinaryExpression(target, 64, source); } function copyOutParameters(outParams, partFlags, copyDirection, statements) { for (const outParam of outParams) { if (outParam.flags & partFlags) { statements.push(factory2.createExpressionStatement(copyOutParameter(outParam, copyDirection))); } } } function generateCallToConvertedLoopInitializer(initFunctionExpressionName, containsYield) { const call = factory2.createCallExpression(initFunctionExpressionName, undefined, []); const callResult = containsYield ? factory2.createYieldExpression(factory2.createToken(42), setEmitFlags(call, 8388608)) : call; return factory2.createExpressionStatement(callResult); } function generateCallToConvertedLoop(loopFunctionExpressionName, state, outerState, containsYield) { const statements = []; const isSimpleLoop = !(state.nonLocalJumps & ~4) && !state.labeledNonLocalBreaks && !state.labeledNonLocalContinues; const call = factory2.createCallExpression(loopFunctionExpressionName, undefined, map(state.loopParameters, (p) => p.name)); const callResult = containsYield ? factory2.createYieldExpression(factory2.createToken(42), setEmitFlags(call, 8388608)) : call; if (isSimpleLoop) { statements.push(factory2.createExpressionStatement(callResult)); copyOutParameters(state.loopOutParameters, 1, 0, statements); } else { const loopResultName = factory2.createUniqueName("state"); const stateVariable = factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([factory2.createVariableDeclaration(loopResultName, undefined, undefined, callResult)])); statements.push(stateVariable); copyOutParameters(state.loopOutParameters, 1, 0, statements); if (state.nonLocalJumps & 8) { let returnStatement; if (outerState) { outerState.nonLocalJumps |= 8; returnStatement = factory2.createReturnStatement(loopResultName); } else { returnStatement = factory2.createReturnStatement(factory2.createPropertyAccessExpression(loopResultName, "value")); } statements.push(factory2.createIfStatement(factory2.createTypeCheck(loopResultName, "object"), returnStatement)); } if (state.nonLocalJumps & 2) { statements.push(factory2.createIfStatement(factory2.createStrictEquality(loopResultName, factory2.createStringLiteral("break")), factory2.createBreakStatement())); } if (state.labeledNonLocalBreaks || state.labeledNonLocalContinues) { const caseClauses = []; processLabeledJumps(state.labeledNonLocalBreaks, true, loopResultName, outerState, caseClauses); processLabeledJumps(state.labeledNonLocalContinues, false, loopResultName, outerState, caseClauses); statements.push(factory2.createSwitchStatement(loopResultName, factory2.createCaseBlock(caseClauses))); } } return statements; } function setLabeledJump(state, isBreak, labelText, labelMarker) { if (isBreak) { if (!state.labeledNonLocalBreaks) { state.labeledNonLocalBreaks = /* @__PURE__ */ new Map; } state.labeledNonLocalBreaks.set(labelText, labelMarker); } else { if (!state.labeledNonLocalContinues) { state.labeledNonLocalContinues = /* @__PURE__ */ new Map; } state.labeledNonLocalContinues.set(labelText, labelMarker); } } function processLabeledJumps(table, isBreak, loopResultName, outerLoop, caseClauses) { if (!table) { return; } table.forEach((labelMarker, labelText) => { const statements = []; if (!outerLoop || outerLoop.labels && outerLoop.labels.get(labelText)) { const label = factory2.createIdentifier(labelText); statements.push(isBreak ? factory2.createBreakStatement(label) : factory2.createContinueStatement(label)); } else { setLabeledJump(outerLoop, isBreak, labelText, labelMarker); statements.push(factory2.createReturnStatement(loopResultName)); } caseClauses.push(factory2.createCaseClause(factory2.createStringLiteral(labelMarker), statements)); }); } function processLoopVariableDeclaration(container, decl, loopParameters, loopOutParameters, hasCapturedBindingsInForHead) { const name = decl.name; if (isBindingPattern(name)) { for (const element of name.elements) { if (!isOmittedExpression(element)) { processLoopVariableDeclaration(container, element, loopParameters, loopOutParameters, hasCapturedBindingsInForHead); } } } else { loopParameters.push(factory2.createParameterDeclaration(undefined, undefined, name)); const needsOutParam = resolver.hasNodeCheckFlag(decl, 65536); if (needsOutParam || hasCapturedBindingsInForHead) { const outParamName = factory2.createUniqueName("out_" + idText(name)); let flags = 0; if (needsOutParam) { flags |= 1; } if (isForStatement(container)) { if (container.initializer && resolver.isBindingCapturedByNode(container.initializer, decl)) { flags |= 2; } if (container.condition && resolver.isBindingCapturedByNode(container.condition, decl) || container.incrementor && resolver.isBindingCapturedByNode(container.incrementor, decl)) { flags |= 1; } } loopOutParameters.push({ flags, originalName: name, outParamName }); } } } function addObjectLiteralMembers(expressions, node, receiver, start) { const properties = node.properties; const numProperties = properties.length; for (let i = start;i < numProperties; i++) { const property = properties[i]; switch (property.kind) { case 178: case 179: const accessors = getAllAccessorDeclarations(node.properties, property); if (property === accessors.firstAccessor) { expressions.push(transformAccessorsToExpression(receiver, accessors, node, !!node.multiLine)); } break; case 175: expressions.push(transformObjectLiteralMethodDeclarationToExpression(property, receiver, node, node.multiLine)); break; case 304: expressions.push(transformPropertyAssignmentToExpression(property, receiver, node.multiLine)); break; case 305: expressions.push(transformShorthandPropertyAssignmentToExpression(property, receiver, node.multiLine)); break; default: Debug.failBadSyntaxKind(node); break; } } } function transformPropertyAssignmentToExpression(property, receiver, startsOnNewLine) { const expression = factory2.createAssignment(createMemberAccessForPropertyName(factory2, receiver, Debug.checkDefined(visitNode(property.name, visitor, isPropertyName))), Debug.checkDefined(visitNode(property.initializer, visitor, isExpression))); setTextRange(expression, property); if (startsOnNewLine) { startOnNewLine(expression); } return expression; } function transformShorthandPropertyAssignmentToExpression(property, receiver, startsOnNewLine) { const expression = factory2.createAssignment(createMemberAccessForPropertyName(factory2, receiver, Debug.checkDefined(visitNode(property.name, visitor, isPropertyName))), factory2.cloneNode(property.name)); setTextRange(expression, property); if (startsOnNewLine) { startOnNewLine(expression); } return expression; } function transformObjectLiteralMethodDeclarationToExpression(method, receiver, container, startsOnNewLine) { const expression = factory2.createAssignment(createMemberAccessForPropertyName(factory2, receiver, Debug.checkDefined(visitNode(method.name, visitor, isPropertyName))), transformFunctionLikeToExpression(method, method, undefined, container)); setTextRange(expression, method); if (startsOnNewLine) { startOnNewLine(expression); } return expression; } function visitCatchClause(node) { const ancestorFacts = enterSubtree(7104, 0); let updated; Debug.assert(!!node.variableDeclaration, "Catch clause variable should always be present when downleveling ES2015."); if (isBindingPattern(node.variableDeclaration.name)) { const temp = factory2.createTempVariable(undefined); const newVariableDeclaration = factory2.createVariableDeclaration(temp); setTextRange(newVariableDeclaration, node.variableDeclaration); const vars = flattenDestructuringBinding(node.variableDeclaration, visitor, context, 0, temp); const list = factory2.createVariableDeclarationList(vars); setTextRange(list, node.variableDeclaration); const destructure = factory2.createVariableStatement(undefined, list); updated = factory2.updateCatchClause(node, newVariableDeclaration, addStatementToStartOfBlock(node.block, destructure)); } else { updated = visitEachChild(node, visitor, context); } exitSubtree(ancestorFacts, 0, 0); return updated; } function addStatementToStartOfBlock(block, statement) { const transformedStatements = visitNodes2(block.statements, visitor, isStatement); return factory2.updateBlock(block, [statement, ...transformedStatements]); } function visitMethodDeclaration(node) { Debug.assert(!isComputedPropertyName(node.name)); const functionExpression = transformFunctionLikeToExpression(node, moveRangePos(node, -1), undefined, undefined); setEmitFlags(functionExpression, 1024 | getEmitFlags(functionExpression)); return setTextRange(factory2.createPropertyAssignment(node.name, functionExpression), node); } function visitAccessorDeclaration(node) { Debug.assert(!isComputedPropertyName(node.name)); const savedConvertedLoopState = convertedLoopState; convertedLoopState = undefined; const ancestorFacts = enterSubtree(32670, 65); let updated; const parameters = visitParameterList(node.parameters, visitor, context); const body = transformFunctionBody2(node); if (node.kind === 178) { updated = factory2.updateGetAccessorDeclaration(node, node.modifiers, node.name, parameters, node.type, body); } else { updated = factory2.updateSetAccessorDeclaration(node, node.modifiers, node.name, parameters, body); } exitSubtree(ancestorFacts, 229376, 0); convertedLoopState = savedConvertedLoopState; return updated; } function visitShorthandPropertyAssignment(node) { return setTextRange(factory2.createPropertyAssignment(node.name, visitIdentifier(factory2.cloneNode(node.name))), node); } function visitComputedPropertyName(node) { return visitEachChild(node, visitor, context); } function visitYieldExpression(node) { return visitEachChild(node, visitor, context); } function visitArrayLiteralExpression(node) { if (some(node.elements, isSpreadElement)) { return transformAndSpreadElements(node.elements, false, !!node.multiLine, !!node.elements.hasTrailingComma); } return visitEachChild(node, visitor, context); } function visitCallExpression(node) { if (getInternalEmitFlags(node) & 1) { return visitTypeScriptClassWrapper(node); } const expression = skipOuterExpressions(node.expression); if (expression.kind === 108 || isSuperProperty(expression) || some(node.arguments, isSpreadElement)) { return visitCallExpressionWithPotentialCapturedThisAssignment(node, true); } return factory2.updateCallExpression(node, Debug.checkDefined(visitNode(node.expression, callExpressionVisitor, isExpression)), undefined, visitNodes2(node.arguments, visitor, isExpression)); } function visitTypeScriptClassWrapper(node) { const body = cast(cast(skipOuterExpressions(node.expression), isArrowFunction).body, isBlock); const isVariableStatementWithInitializer = (stmt) => isVariableStatement(stmt) && !!first(stmt.declarationList.declarations).initializer; const savedConvertedLoopState = convertedLoopState; convertedLoopState = undefined; const bodyStatements = visitNodes2(body.statements, classWrapperStatementVisitor, isStatement); convertedLoopState = savedConvertedLoopState; const classStatements = filter(bodyStatements, isVariableStatementWithInitializer); const remainingStatements = filter(bodyStatements, (stmt) => !isVariableStatementWithInitializer(stmt)); const varStatement = cast(first(classStatements), isVariableStatement); const variable = varStatement.declarationList.declarations[0]; const initializer = skipOuterExpressions(variable.initializer); let aliasAssignment = tryCast(initializer, isAssignmentExpression); if (!aliasAssignment && isBinaryExpression(initializer) && initializer.operatorToken.kind === 28) { aliasAssignment = tryCast(initializer.left, isAssignmentExpression); } const call = cast(aliasAssignment ? skipOuterExpressions(aliasAssignment.right) : initializer, isCallExpression); const func = cast(skipOuterExpressions(call.expression), isFunctionExpression); const funcStatements = func.body.statements; let classBodyStart = 0; let classBodyEnd = -1; const statements = []; if (aliasAssignment) { const extendsCall = tryCast(funcStatements[classBodyStart], isExpressionStatement); if (extendsCall) { statements.push(extendsCall); classBodyStart++; } statements.push(funcStatements[classBodyStart]); classBodyStart++; statements.push(factory2.createExpressionStatement(factory2.createAssignment(aliasAssignment.left, cast(variable.name, isIdentifier)))); } while (!isReturnStatement(elementAt(funcStatements, classBodyEnd))) { classBodyEnd--; } addRange(statements, funcStatements, classBodyStart, classBodyEnd); if (classBodyEnd < -1) { addRange(statements, funcStatements, classBodyEnd + 1); } const returnStatement = tryCast(elementAt(funcStatements, classBodyEnd), isReturnStatement); for (const statement of remainingStatements) { if (isReturnStatement(statement) && (returnStatement == null ? undefined : returnStatement.expression) && !isIdentifier(returnStatement.expression)) { statements.push(returnStatement); } else { statements.push(statement); } } addRange(statements, classStatements, 1); return factory2.restoreOuterExpressions(node.expression, factory2.restoreOuterExpressions(variable.initializer, factory2.restoreOuterExpressions(aliasAssignment && aliasAssignment.right, factory2.updateCallExpression(call, factory2.restoreOuterExpressions(call.expression, factory2.updateFunctionExpression(func, undefined, undefined, undefined, undefined, func.parameters, undefined, factory2.updateBlock(func.body, statements))), undefined, call.arguments)))); } function visitCallExpressionWithPotentialCapturedThisAssignment(node, assignToCapturedThis) { if (node.transformFlags & 32768 || node.expression.kind === 108 || isSuperProperty(skipOuterExpressions(node.expression))) { const { target, thisArg } = factory2.createCallBinding(node.expression, hoistVariableDeclaration); if (node.expression.kind === 108) { setEmitFlags(thisArg, 8); } let resultingCall; if (node.transformFlags & 32768) { resultingCall = factory2.createFunctionApplyCall(Debug.checkDefined(visitNode(target, callExpressionVisitor, isExpression)), node.expression.kind === 108 ? thisArg : Debug.checkDefined(visitNode(thisArg, visitor, isExpression)), transformAndSpreadElements(node.arguments, true, false, false)); } else { resultingCall = setTextRange(factory2.createFunctionCallCall(Debug.checkDefined(visitNode(target, callExpressionVisitor, isExpression)), node.expression.kind === 108 ? thisArg : Debug.checkDefined(visitNode(thisArg, visitor, isExpression)), visitNodes2(node.arguments, visitor, isExpression)), node); } if (node.expression.kind === 108) { const initializer = factory2.createLogicalOr(resultingCall, createActualThis()); resultingCall = assignToCapturedThis ? factory2.createAssignment(createCapturedThis(), initializer) : initializer; } return setOriginalNode(resultingCall, node); } if (isSuperCall(node)) { hierarchyFacts |= 131072; } return visitEachChild(node, visitor, context); } function visitNewExpression(node) { if (some(node.arguments, isSpreadElement)) { const { target, thisArg } = factory2.createCallBinding(factory2.createPropertyAccessExpression(node.expression, "bind"), hoistVariableDeclaration); return factory2.createNewExpression(factory2.createFunctionApplyCall(Debug.checkDefined(visitNode(target, visitor, isExpression)), thisArg, transformAndSpreadElements(factory2.createNodeArray([factory2.createVoidZero(), ...node.arguments]), true, false, false)), undefined, []); } return visitEachChild(node, visitor, context); } function transformAndSpreadElements(elements, isArgumentList, multiLine, hasTrailingComma) { const numElements = elements.length; const segments = flatten(spanMap(elements, partitionSpread, (partition, visitPartition, _start, end) => visitPartition(partition, multiLine, hasTrailingComma && end === numElements))); if (segments.length === 1) { const firstSegment = segments[0]; if (isArgumentList && !compilerOptions.downlevelIteration || isPackedArrayLiteral(firstSegment.expression) || isCallToHelper(firstSegment.expression, "___spreadArray")) { return firstSegment.expression; } } const helpers = emitHelpers(); const startsWithSpread = segments[0].kind !== 0; let expression = startsWithSpread ? factory2.createArrayLiteralExpression() : segments[0].expression; for (let i = startsWithSpread ? 0 : 1;i < segments.length; i++) { const segment = segments[i]; expression = helpers.createSpreadArrayHelper(expression, segment.expression, segment.kind === 1 && !isArgumentList); } return expression; } function partitionSpread(node) { return isSpreadElement(node) ? visitSpanOfSpreads : visitSpanOfNonSpreads; } function visitSpanOfSpreads(chunk) { return map(chunk, visitExpressionOfSpread); } function visitExpressionOfSpread(node) { Debug.assertNode(node, isSpreadElement); let expression = visitNode(node.expression, visitor, isExpression); Debug.assert(expression); const isCallToReadHelper = isCallToHelper(expression, "___read"); let kind = isCallToReadHelper || isPackedArrayLiteral(expression) ? 2 : 1; if (compilerOptions.downlevelIteration && kind === 1 && !isArrayLiteralExpression(expression) && !isCallToReadHelper) { expression = emitHelpers().createReadHelper(expression, undefined); kind = 2; } return createSpreadSegment(kind, expression); } function visitSpanOfNonSpreads(chunk, multiLine, hasTrailingComma) { const expression = factory2.createArrayLiteralExpression(visitNodes2(factory2.createNodeArray(chunk, hasTrailingComma), visitor, isExpression), multiLine); return createSpreadSegment(0, expression); } function visitSpreadElement(node) { return visitNode(node.expression, visitor, isExpression); } function visitTemplateLiteral(node) { return setTextRange(factory2.createStringLiteral(node.text), node); } function visitStringLiteral(node) { if (node.hasExtendedUnicodeEscape) { return setTextRange(factory2.createStringLiteral(node.text), node); } return node; } function visitNumericLiteral(node) { if (node.numericLiteralFlags & 384) { return setTextRange(factory2.createNumericLiteral(node.text), node); } return node; } function visitTaggedTemplateExpression(node) { return processTaggedTemplateExpression(context, node, visitor, currentSourceFile, recordTaggedTemplateString, 1); } function visitTemplateExpression(node) { let expression = factory2.createStringLiteral(node.head.text); for (const span of node.templateSpans) { const args = [Debug.checkDefined(visitNode(span.expression, visitor, isExpression))]; if (span.literal.text.length > 0) { args.push(factory2.createStringLiteral(span.literal.text)); } expression = factory2.createCallExpression(factory2.createPropertyAccessExpression(expression, "concat"), undefined, args); } return setTextRange(expression, node); } function createSyntheticSuper() { return factory2.createUniqueName("_super", 16 | 32); } function visitSuperKeyword(node, isExpressionOfCall) { const expression = hierarchyFacts & 8 && !isExpressionOfCall ? factory2.createPropertyAccessExpression(setOriginalNode(createSyntheticSuper(), node), "prototype") : createSyntheticSuper(); setOriginalNode(expression, node); setCommentRange(expression, node); setSourceMapRange(expression, node); return expression; } function visitMetaProperty(node) { if (node.keywordToken === 105 && node.name.escapedText === "target") { hierarchyFacts |= 32768; return factory2.createUniqueName("_newTarget", 16 | 32); } return node; } function onEmitNode(hint, node, emitCallback) { if (enabledSubstitutions & 1 && isFunctionLike(node)) { const ancestorFacts = enterSubtree(32670, getEmitFlags(node) & 16 ? 65 | 16 : 65); previousOnEmitNode(hint, node, emitCallback); exitSubtree(ancestorFacts, 0, 0); return; } previousOnEmitNode(hint, node, emitCallback); } function enableSubstitutionsForBlockScopedBindings() { if ((enabledSubstitutions & 2) === 0) { enabledSubstitutions |= 2; context.enableSubstitution(80); } } function enableSubstitutionsForCapturedThis() { if ((enabledSubstitutions & 1) === 0) { enabledSubstitutions |= 1; context.enableSubstitution(110); context.enableEmitNotification(177); context.enableEmitNotification(175); context.enableEmitNotification(178); context.enableEmitNotification(179); context.enableEmitNotification(220); context.enableEmitNotification(219); context.enableEmitNotification(263); } } function onSubstituteNode(hint, node) { node = previousOnSubstituteNode(hint, node); if (hint === 1) { return substituteExpression(node); } if (isIdentifier(node)) { return substituteIdentifier(node); } return node; } function substituteIdentifier(node) { if (enabledSubstitutions & 2 && !isInternalName(node)) { const original = getParseTreeNode(node, isIdentifier); if (original && isNameOfDeclarationWithCollidingName(original)) { return setTextRange(factory2.getGeneratedNameForNode(original), node); } } return node; } function isNameOfDeclarationWithCollidingName(node) { switch (node.parent.kind) { case 209: case 264: case 267: case 261: return node.parent.name === node && resolver.isDeclarationWithCollidingName(node.parent); } return false; } function substituteExpression(node) { switch (node.kind) { case 80: return substituteExpressionIdentifier(node); case 110: return substituteThisKeyword(node); } return node; } function substituteExpressionIdentifier(node) { if (enabledSubstitutions & 2 && !isInternalName(node)) { const declaration = resolver.getReferencedDeclarationWithCollidingName(node); if (declaration && !(isClassLike(declaration) && isPartOfClassBody(declaration, node))) { return setTextRange(factory2.getGeneratedNameForNode(getNameOfDeclaration(declaration)), node); } } return node; } function isPartOfClassBody(declaration, node) { let currentNode = getParseTreeNode(node); if (!currentNode || currentNode === declaration || currentNode.end <= declaration.pos || currentNode.pos >= declaration.end) { return false; } const blockScope = getEnclosingBlockScopeContainer(declaration); while (currentNode) { if (currentNode === blockScope || currentNode === declaration) { return false; } if (isClassElement(currentNode) && currentNode.parent === declaration) { return true; } currentNode = currentNode.parent; } return false; } function substituteThisKeyword(node) { if (enabledSubstitutions & 1 && hierarchyFacts & 16) { return setTextRange(createCapturedThis(), node); } return node; } function getClassMemberPrefix(node, member) { return isStatic(member) ? factory2.getInternalName(node) : factory2.createPropertyAccessExpression(factory2.getInternalName(node), "prototype"); } function hasSynthesizedDefaultSuperCall(constructor, hasExtendsClause) { if (!constructor || !hasExtendsClause) { return false; } if (some(constructor.parameters)) { return false; } const statement = firstOrUndefined(constructor.body.statements); if (!statement || !nodeIsSynthesized(statement) || statement.kind !== 245) { return false; } const statementExpression = statement.expression; if (!nodeIsSynthesized(statementExpression) || statementExpression.kind !== 214) { return false; } const callTarget = statementExpression.expression; if (!nodeIsSynthesized(callTarget) || callTarget.kind !== 108) { return false; } const callArgument = singleOrUndefined(statementExpression.arguments); if (!callArgument || !nodeIsSynthesized(callArgument) || callArgument.kind !== 231) { return false; } const expression = callArgument.expression; return isIdentifier(expression) && expression.escapedText === "arguments"; } } function getInstructionName(instruction) { switch (instruction) { case 2: return "return"; case 3: return "break"; case 4: return "yield"; case 5: return "yield*"; case 7: return "endfinally"; default: return; } } function transformGenerators(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers, resumeLexicalEnvironment, endLexicalEnvironment, hoistFunctionDeclaration, hoistVariableDeclaration } = context; const compilerOptions = context.getCompilerOptions(); const languageVersion = getEmitScriptTarget(compilerOptions); const resolver = context.getEmitResolver(); const previousOnSubstituteNode = context.onSubstituteNode; context.onSubstituteNode = onSubstituteNode; let renamedCatchVariables; let renamedCatchVariableDeclarations; let inGeneratorFunctionBody; let inStatementContainingYield; let blocks; let blockOffsets; let blockActions; let blockStack; let labelOffsets; let labelExpressions; let nextLabelId = 1; let operations; let operationArguments; let operationLocations; let state; let blockIndex = 0; let labelNumber = 0; let labelNumbers; let lastOperationWasAbrupt; let lastOperationWasCompletion; let clauses; let statements; let exceptionBlockStack; let currentExceptionBlock; let withBlockStack; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile || (node.transformFlags & 2048) === 0) { return node; } const visited = visitEachChild(node, visitor, context); addEmitHelpers(visited, context.readEmitHelpers()); return visited; } function visitor(node) { const transformFlags = node.transformFlags; if (inStatementContainingYield) { return visitJavaScriptInStatementContainingYield(node); } else if (inGeneratorFunctionBody) { return visitJavaScriptInGeneratorFunctionBody(node); } else if (isFunctionLikeDeclaration(node) && node.asteriskToken) { return visitGenerator(node); } else if (transformFlags & 2048) { return visitEachChild(node, visitor, context); } else { return node; } } function visitJavaScriptInStatementContainingYield(node) { switch (node.kind) { case 247: return visitDoStatement(node); case 248: return visitWhileStatement(node); case 256: return visitSwitchStatement(node); case 257: return visitLabeledStatement(node); default: return visitJavaScriptInGeneratorFunctionBody(node); } } function visitJavaScriptInGeneratorFunctionBody(node) { switch (node.kind) { case 263: return visitFunctionDeclaration(node); case 219: return visitFunctionExpression(node); case 178: case 179: return visitAccessorDeclaration(node); case 244: return visitVariableStatement(node); case 249: return visitForStatement(node); case 250: return visitForInStatement(node); case 253: return visitBreakStatement(node); case 252: return visitContinueStatement(node); case 254: return visitReturnStatement(node); default: if (node.transformFlags & 1048576) { return visitJavaScriptContainingYield(node); } else if (node.transformFlags & (2048 | 4194304)) { return visitEachChild(node, visitor, context); } else { return node; } } } function visitJavaScriptContainingYield(node) { switch (node.kind) { case 227: return visitBinaryExpression(node); case 357: return visitCommaListExpression(node); case 228: return visitConditionalExpression(node); case 230: return visitYieldExpression(node); case 210: return visitArrayLiteralExpression(node); case 211: return visitObjectLiteralExpression(node); case 213: return visitElementAccessExpression(node); case 214: return visitCallExpression(node); case 215: return visitNewExpression(node); default: return visitEachChild(node, visitor, context); } } function visitGenerator(node) { switch (node.kind) { case 263: return visitFunctionDeclaration(node); case 219: return visitFunctionExpression(node); default: return Debug.failBadSyntaxKind(node); } } function visitFunctionDeclaration(node) { if (node.asteriskToken) { node = setOriginalNode(setTextRange(factory2.createFunctionDeclaration(node.modifiers, undefined, node.name, undefined, visitParameterList(node.parameters, visitor, context), undefined, transformGeneratorFunctionBody(node.body)), node), node); } else { const savedInGeneratorFunctionBody = inGeneratorFunctionBody; const savedInStatementContainingYield = inStatementContainingYield; inGeneratorFunctionBody = false; inStatementContainingYield = false; node = visitEachChild(node, visitor, context); inGeneratorFunctionBody = savedInGeneratorFunctionBody; inStatementContainingYield = savedInStatementContainingYield; } if (inGeneratorFunctionBody) { hoistFunctionDeclaration(node); return; } else { return node; } } function visitFunctionExpression(node) { if (node.asteriskToken) { node = setOriginalNode(setTextRange(factory2.createFunctionExpression(undefined, undefined, node.name, undefined, visitParameterList(node.parameters, visitor, context), undefined, transformGeneratorFunctionBody(node.body)), node), node); } else { const savedInGeneratorFunctionBody = inGeneratorFunctionBody; const savedInStatementContainingYield = inStatementContainingYield; inGeneratorFunctionBody = false; inStatementContainingYield = false; node = visitEachChild(node, visitor, context); inGeneratorFunctionBody = savedInGeneratorFunctionBody; inStatementContainingYield = savedInStatementContainingYield; } return node; } function visitAccessorDeclaration(node) { const savedInGeneratorFunctionBody = inGeneratorFunctionBody; const savedInStatementContainingYield = inStatementContainingYield; inGeneratorFunctionBody = false; inStatementContainingYield = false; node = visitEachChild(node, visitor, context); inGeneratorFunctionBody = savedInGeneratorFunctionBody; inStatementContainingYield = savedInStatementContainingYield; return node; } function transformGeneratorFunctionBody(body) { const statements2 = []; const savedInGeneratorFunctionBody = inGeneratorFunctionBody; const savedInStatementContainingYield = inStatementContainingYield; const savedBlocks = blocks; const savedBlockOffsets = blockOffsets; const savedBlockActions = blockActions; const savedBlockStack = blockStack; const savedLabelOffsets = labelOffsets; const savedLabelExpressions = labelExpressions; const savedNextLabelId = nextLabelId; const savedOperations = operations; const savedOperationArguments = operationArguments; const savedOperationLocations = operationLocations; const savedState = state; inGeneratorFunctionBody = true; inStatementContainingYield = false; blocks = undefined; blockOffsets = undefined; blockActions = undefined; blockStack = undefined; labelOffsets = undefined; labelExpressions = undefined; nextLabelId = 1; operations = undefined; operationArguments = undefined; operationLocations = undefined; state = factory2.createTempVariable(undefined); resumeLexicalEnvironment(); const statementOffset = factory2.copyPrologue(body.statements, statements2, false, visitor); transformAndEmitStatements(body.statements, statementOffset); const buildResult = build2(); insertStatementsAfterStandardPrologue(statements2, endLexicalEnvironment()); statements2.push(factory2.createReturnStatement(buildResult)); inGeneratorFunctionBody = savedInGeneratorFunctionBody; inStatementContainingYield = savedInStatementContainingYield; blocks = savedBlocks; blockOffsets = savedBlockOffsets; blockActions = savedBlockActions; blockStack = savedBlockStack; labelOffsets = savedLabelOffsets; labelExpressions = savedLabelExpressions; nextLabelId = savedNextLabelId; operations = savedOperations; operationArguments = savedOperationArguments; operationLocations = savedOperationLocations; state = savedState; return setTextRange(factory2.createBlock(statements2, body.multiLine), body); } function visitVariableStatement(node) { if (node.transformFlags & 1048576) { transformAndEmitVariableDeclarationList(node.declarationList); return; } else { if (getEmitFlags(node) & 2097152) { return node; } for (const variable of node.declarationList.declarations) { hoistVariableDeclaration(variable.name); } const variables = getInitializedVariables(node.declarationList); if (variables.length === 0) { return; } return setSourceMapRange(factory2.createExpressionStatement(factory2.inlineExpressions(map(variables, transformInitializedVariable))), node); } } function visitBinaryExpression(node) { const assoc = getExpressionAssociativity(node); switch (assoc) { case 0: return visitLeftAssociativeBinaryExpression(node); case 1: return visitRightAssociativeBinaryExpression(node); default: return Debug.assertNever(assoc); } } function visitRightAssociativeBinaryExpression(node) { const { left, right } = node; if (containsYield(right)) { let target; switch (left.kind) { case 212: target = factory2.updatePropertyAccessExpression(left, cacheExpression(Debug.checkDefined(visitNode(left.expression, visitor, isLeftHandSideExpression))), left.name); break; case 213: target = factory2.updateElementAccessExpression(left, cacheExpression(Debug.checkDefined(visitNode(left.expression, visitor, isLeftHandSideExpression))), cacheExpression(Debug.checkDefined(visitNode(left.argumentExpression, visitor, isExpression)))); break; default: target = Debug.checkDefined(visitNode(left, visitor, isExpression)); break; } const operator = node.operatorToken.kind; if (isCompoundAssignment(operator)) { return setTextRange(factory2.createAssignment(target, setTextRange(factory2.createBinaryExpression(cacheExpression(target), getNonAssignmentOperatorForCompoundAssignment(operator), Debug.checkDefined(visitNode(right, visitor, isExpression))), node)), node); } else { return factory2.updateBinaryExpression(node, target, node.operatorToken, Debug.checkDefined(visitNode(right, visitor, isExpression))); } } return visitEachChild(node, visitor, context); } function visitLeftAssociativeBinaryExpression(node) { if (containsYield(node.right)) { if (isLogicalOperator(node.operatorToken.kind)) { return visitLogicalBinaryExpression(node); } else if (node.operatorToken.kind === 28) { return visitCommaExpression(node); } return factory2.updateBinaryExpression(node, cacheExpression(Debug.checkDefined(visitNode(node.left, visitor, isExpression))), node.operatorToken, Debug.checkDefined(visitNode(node.right, visitor, isExpression))); } return visitEachChild(node, visitor, context); } function visitCommaExpression(node) { let pendingExpressions = []; visit(node.left); visit(node.right); return factory2.inlineExpressions(pendingExpressions); function visit(node2) { if (isBinaryExpression(node2) && node2.operatorToken.kind === 28) { visit(node2.left); visit(node2.right); } else { if (containsYield(node2) && pendingExpressions.length > 0) { emitWorker(1, [factory2.createExpressionStatement(factory2.inlineExpressions(pendingExpressions))]); pendingExpressions = []; } pendingExpressions.push(Debug.checkDefined(visitNode(node2, visitor, isExpression))); } } } function visitCommaListExpression(node) { let pendingExpressions = []; for (const elem of node.elements) { if (isBinaryExpression(elem) && elem.operatorToken.kind === 28) { pendingExpressions.push(visitCommaExpression(elem)); } else { if (containsYield(elem) && pendingExpressions.length > 0) { emitWorker(1, [factory2.createExpressionStatement(factory2.inlineExpressions(pendingExpressions))]); pendingExpressions = []; } pendingExpressions.push(Debug.checkDefined(visitNode(elem, visitor, isExpression))); } } return factory2.inlineExpressions(pendingExpressions); } function visitLogicalBinaryExpression(node) { const resultLabel = defineLabel(); const resultLocal = declareLocal(); emitAssignment(resultLocal, Debug.checkDefined(visitNode(node.left, visitor, isExpression)), node.left); if (node.operatorToken.kind === 56) { emitBreakWhenFalse(resultLabel, resultLocal, node.left); } else { emitBreakWhenTrue(resultLabel, resultLocal, node.left); } emitAssignment(resultLocal, Debug.checkDefined(visitNode(node.right, visitor, isExpression)), node.right); markLabel(resultLabel); return resultLocal; } function visitConditionalExpression(node) { if (containsYield(node.whenTrue) || containsYield(node.whenFalse)) { const whenFalseLabel = defineLabel(); const resultLabel = defineLabel(); const resultLocal = declareLocal(); emitBreakWhenFalse(whenFalseLabel, Debug.checkDefined(visitNode(node.condition, visitor, isExpression)), node.condition); emitAssignment(resultLocal, Debug.checkDefined(visitNode(node.whenTrue, visitor, isExpression)), node.whenTrue); emitBreak(resultLabel); markLabel(whenFalseLabel); emitAssignment(resultLocal, Debug.checkDefined(visitNode(node.whenFalse, visitor, isExpression)), node.whenFalse); markLabel(resultLabel); return resultLocal; } return visitEachChild(node, visitor, context); } function visitYieldExpression(node) { const resumeLabel = defineLabel(); const expression = visitNode(node.expression, visitor, isExpression); if (node.asteriskToken) { const iterator = (getEmitFlags(node.expression) & 8388608) === 0 ? setTextRange(emitHelpers().createValuesHelper(expression), node) : expression; emitYieldStar(iterator, node); } else { emitYield(expression, node); } markLabel(resumeLabel); return createGeneratorResume(node); } function visitArrayLiteralExpression(node) { return visitElements(node.elements, undefined, undefined, node.multiLine); } function visitElements(elements, leadingElement, location, multiLine) { const numInitialElements = countInitialNodesWithoutYield(elements); let temp; if (numInitialElements > 0) { temp = declareLocal(); const initialElements = visitNodes2(elements, visitor, isExpression, 0, numInitialElements); emitAssignment(temp, factory2.createArrayLiteralExpression(leadingElement ? [leadingElement, ...initialElements] : initialElements)); leadingElement = undefined; } const expressions = reduceLeft(elements, reduceElement, [], numInitialElements); return temp ? factory2.createArrayConcatCall(temp, [factory2.createArrayLiteralExpression(expressions, multiLine)]) : setTextRange(factory2.createArrayLiteralExpression(leadingElement ? [leadingElement, ...expressions] : expressions, multiLine), location); function reduceElement(expressions2, element) { if (containsYield(element) && expressions2.length > 0) { const hasAssignedTemp = temp !== undefined; if (!temp) { temp = declareLocal(); } emitAssignment(temp, hasAssignedTemp ? factory2.createArrayConcatCall(temp, [factory2.createArrayLiteralExpression(expressions2, multiLine)]) : factory2.createArrayLiteralExpression(leadingElement ? [leadingElement, ...expressions2] : expressions2, multiLine)); leadingElement = undefined; expressions2 = []; } expressions2.push(Debug.checkDefined(visitNode(element, visitor, isExpression))); return expressions2; } } function visitObjectLiteralExpression(node) { const properties = node.properties; const multiLine = node.multiLine; const numInitialProperties = countInitialNodesWithoutYield(properties); const temp = declareLocal(); emitAssignment(temp, factory2.createObjectLiteralExpression(visitNodes2(properties, visitor, isObjectLiteralElementLike, 0, numInitialProperties), multiLine)); const expressions = reduceLeft(properties, reduceProperty, [], numInitialProperties); expressions.push(multiLine ? startOnNewLine(setParent(setTextRange(factory2.cloneNode(temp), temp), temp.parent)) : temp); return factory2.inlineExpressions(expressions); function reduceProperty(expressions2, property) { if (containsYield(property) && expressions2.length > 0) { emitStatement(factory2.createExpressionStatement(factory2.inlineExpressions(expressions2))); expressions2 = []; } const expression = createExpressionForObjectLiteralElementLike(factory2, node, property, temp); const visited = visitNode(expression, visitor, isExpression); if (visited) { if (multiLine) { startOnNewLine(visited); } expressions2.push(visited); } return expressions2; } } function visitElementAccessExpression(node) { if (containsYield(node.argumentExpression)) { return factory2.updateElementAccessExpression(node, cacheExpression(Debug.checkDefined(visitNode(node.expression, visitor, isLeftHandSideExpression))), Debug.checkDefined(visitNode(node.argumentExpression, visitor, isExpression))); } return visitEachChild(node, visitor, context); } function visitCallExpression(node) { if (!isImportCall(node) && forEach(node.arguments, containsYield)) { const { target, thisArg } = factory2.createCallBinding(node.expression, hoistVariableDeclaration, languageVersion, true); return setOriginalNode(setTextRange(factory2.createFunctionApplyCall(cacheExpression(Debug.checkDefined(visitNode(target, visitor, isLeftHandSideExpression))), thisArg, visitElements(node.arguments)), node), node); } return visitEachChild(node, visitor, context); } function visitNewExpression(node) { if (forEach(node.arguments, containsYield)) { const { target, thisArg } = factory2.createCallBinding(factory2.createPropertyAccessExpression(node.expression, "bind"), hoistVariableDeclaration); return setOriginalNode(setTextRange(factory2.createNewExpression(factory2.createFunctionApplyCall(cacheExpression(Debug.checkDefined(visitNode(target, visitor, isExpression))), thisArg, visitElements(node.arguments, factory2.createVoidZero())), undefined, []), node), node); } return visitEachChild(node, visitor, context); } function transformAndEmitStatements(statements2, start = 0) { const numStatements = statements2.length; for (let i = start;i < numStatements; i++) { transformAndEmitStatement(statements2[i]); } } function transformAndEmitEmbeddedStatement(node) { if (isBlock(node)) { transformAndEmitStatements(node.statements); } else { transformAndEmitStatement(node); } } function transformAndEmitStatement(node) { const savedInStatementContainingYield = inStatementContainingYield; if (!inStatementContainingYield) { inStatementContainingYield = containsYield(node); } transformAndEmitStatementWorker(node); inStatementContainingYield = savedInStatementContainingYield; } function transformAndEmitStatementWorker(node) { switch (node.kind) { case 242: return transformAndEmitBlock(node); case 245: return transformAndEmitExpressionStatement(node); case 246: return transformAndEmitIfStatement(node); case 247: return transformAndEmitDoStatement(node); case 248: return transformAndEmitWhileStatement(node); case 249: return transformAndEmitForStatement(node); case 250: return transformAndEmitForInStatement(node); case 252: return transformAndEmitContinueStatement(node); case 253: return transformAndEmitBreakStatement(node); case 254: return transformAndEmitReturnStatement(node); case 255: return transformAndEmitWithStatement(node); case 256: return transformAndEmitSwitchStatement(node); case 257: return transformAndEmitLabeledStatement(node); case 258: return transformAndEmitThrowStatement(node); case 259: return transformAndEmitTryStatement(node); default: return emitStatement(visitNode(node, visitor, isStatement)); } } function transformAndEmitBlock(node) { if (containsYield(node)) { transformAndEmitStatements(node.statements); } else { emitStatement(visitNode(node, visitor, isStatement)); } } function transformAndEmitExpressionStatement(node) { emitStatement(visitNode(node, visitor, isStatement)); } function transformAndEmitVariableDeclarationList(node) { for (const variable of node.declarations) { const name = factory2.cloneNode(variable.name); setCommentRange(name, variable.name); hoistVariableDeclaration(name); } const variables = getInitializedVariables(node); const numVariables = variables.length; let variablesWritten = 0; let pendingExpressions = []; while (variablesWritten < numVariables) { for (let i = variablesWritten;i < numVariables; i++) { const variable = variables[i]; if (containsYield(variable.initializer) && pendingExpressions.length > 0) { break; } pendingExpressions.push(transformInitializedVariable(variable)); } if (pendingExpressions.length) { emitStatement(factory2.createExpressionStatement(factory2.inlineExpressions(pendingExpressions))); variablesWritten += pendingExpressions.length; pendingExpressions = []; } } return; } function transformInitializedVariable(node) { return setSourceMapRange(factory2.createAssignment(setSourceMapRange(factory2.cloneNode(node.name), node.name), Debug.checkDefined(visitNode(node.initializer, visitor, isExpression))), node); } function transformAndEmitIfStatement(node) { if (containsYield(node)) { if (containsYield(node.thenStatement) || containsYield(node.elseStatement)) { const endLabel = defineLabel(); const elseLabel = node.elseStatement ? defineLabel() : undefined; emitBreakWhenFalse(node.elseStatement ? elseLabel : endLabel, Debug.checkDefined(visitNode(node.expression, visitor, isExpression)), node.expression); transformAndEmitEmbeddedStatement(node.thenStatement); if (node.elseStatement) { emitBreak(endLabel); markLabel(elseLabel); transformAndEmitEmbeddedStatement(node.elseStatement); } markLabel(endLabel); } else { emitStatement(visitNode(node, visitor, isStatement)); } } else { emitStatement(visitNode(node, visitor, isStatement)); } } function transformAndEmitDoStatement(node) { if (containsYield(node)) { const conditionLabel = defineLabel(); const loopLabel = defineLabel(); beginLoopBlock(conditionLabel); markLabel(loopLabel); transformAndEmitEmbeddedStatement(node.statement); markLabel(conditionLabel); emitBreakWhenTrue(loopLabel, Debug.checkDefined(visitNode(node.expression, visitor, isExpression))); endLoopBlock(); } else { emitStatement(visitNode(node, visitor, isStatement)); } } function visitDoStatement(node) { if (inStatementContainingYield) { beginScriptLoopBlock(); node = visitEachChild(node, visitor, context); endLoopBlock(); return node; } else { return visitEachChild(node, visitor, context); } } function transformAndEmitWhileStatement(node) { if (containsYield(node)) { const loopLabel = defineLabel(); const endLabel = beginLoopBlock(loopLabel); markLabel(loopLabel); emitBreakWhenFalse(endLabel, Debug.checkDefined(visitNode(node.expression, visitor, isExpression))); transformAndEmitEmbeddedStatement(node.statement); emitBreak(loopLabel); endLoopBlock(); } else { emitStatement(visitNode(node, visitor, isStatement)); } } function visitWhileStatement(node) { if (inStatementContainingYield) { beginScriptLoopBlock(); node = visitEachChild(node, visitor, context); endLoopBlock(); return node; } else { return visitEachChild(node, visitor, context); } } function transformAndEmitForStatement(node) { if (containsYield(node)) { const conditionLabel = defineLabel(); const incrementLabel = defineLabel(); const endLabel = beginLoopBlock(incrementLabel); if (node.initializer) { const initializer = node.initializer; if (isVariableDeclarationList(initializer)) { transformAndEmitVariableDeclarationList(initializer); } else { emitStatement(setTextRange(factory2.createExpressionStatement(Debug.checkDefined(visitNode(initializer, visitor, isExpression))), initializer)); } } markLabel(conditionLabel); if (node.condition) { emitBreakWhenFalse(endLabel, Debug.checkDefined(visitNode(node.condition, visitor, isExpression))); } transformAndEmitEmbeddedStatement(node.statement); markLabel(incrementLabel); if (node.incrementor) { emitStatement(setTextRange(factory2.createExpressionStatement(Debug.checkDefined(visitNode(node.incrementor, visitor, isExpression))), node.incrementor)); } emitBreak(conditionLabel); endLoopBlock(); } else { emitStatement(visitNode(node, visitor, isStatement)); } } function visitForStatement(node) { if (inStatementContainingYield) { beginScriptLoopBlock(); } const initializer = node.initializer; if (initializer && isVariableDeclarationList(initializer)) { for (const variable of initializer.declarations) { hoistVariableDeclaration(variable.name); } const variables = getInitializedVariables(initializer); node = factory2.updateForStatement(node, variables.length > 0 ? factory2.inlineExpressions(map(variables, transformInitializedVariable)) : undefined, visitNode(node.condition, visitor, isExpression), visitNode(node.incrementor, visitor, isExpression), visitIterationBody(node.statement, visitor, context)); } else { node = visitEachChild(node, visitor, context); } if (inStatementContainingYield) { endLoopBlock(); } return node; } function transformAndEmitForInStatement(node) { if (containsYield(node)) { const obj = declareLocal(); const keysArray = declareLocal(); const key = declareLocal(); const keysIndex = factory2.createLoopVariable(); const initializer = node.initializer; hoistVariableDeclaration(keysIndex); emitAssignment(obj, Debug.checkDefined(visitNode(node.expression, visitor, isExpression))); emitAssignment(keysArray, factory2.createArrayLiteralExpression()); emitStatement(factory2.createForInStatement(key, obj, factory2.createExpressionStatement(factory2.createCallExpression(factory2.createPropertyAccessExpression(keysArray, "push"), undefined, [key])))); emitAssignment(keysIndex, factory2.createNumericLiteral(0)); const conditionLabel = defineLabel(); const incrementLabel = defineLabel(); const endLoopLabel = beginLoopBlock(incrementLabel); markLabel(conditionLabel); emitBreakWhenFalse(endLoopLabel, factory2.createLessThan(keysIndex, factory2.createPropertyAccessExpression(keysArray, "length"))); emitAssignment(key, factory2.createElementAccessExpression(keysArray, keysIndex)); emitBreakWhenFalse(incrementLabel, factory2.createBinaryExpression(key, 103, obj)); let variable; if (isVariableDeclarationList(initializer)) { for (const variable2 of initializer.declarations) { hoistVariableDeclaration(variable2.name); } variable = factory2.cloneNode(initializer.declarations[0].name); } else { variable = Debug.checkDefined(visitNode(initializer, visitor, isExpression)); Debug.assert(isLeftHandSideExpression(variable)); } emitAssignment(variable, key); transformAndEmitEmbeddedStatement(node.statement); markLabel(incrementLabel); emitStatement(factory2.createExpressionStatement(factory2.createPostfixIncrement(keysIndex))); emitBreak(conditionLabel); endLoopBlock(); } else { emitStatement(visitNode(node, visitor, isStatement)); } } function visitForInStatement(node) { if (inStatementContainingYield) { beginScriptLoopBlock(); } const initializer = node.initializer; if (isVariableDeclarationList(initializer)) { for (const variable of initializer.declarations) { hoistVariableDeclaration(variable.name); } node = factory2.updateForInStatement(node, initializer.declarations[0].name, Debug.checkDefined(visitNode(node.expression, visitor, isExpression)), Debug.checkDefined(visitNode(node.statement, visitor, isStatement, factory2.liftToBlock))); } else { node = visitEachChild(node, visitor, context); } if (inStatementContainingYield) { endLoopBlock(); } return node; } function transformAndEmitContinueStatement(node) { const label = findContinueTarget(node.label ? idText(node.label) : undefined); if (label > 0) { emitBreak(label, node); } else { emitStatement(node); } } function visitContinueStatement(node) { if (inStatementContainingYield) { const label = findContinueTarget(node.label && idText(node.label)); if (label > 0) { return createInlineBreak(label, node); } } return visitEachChild(node, visitor, context); } function transformAndEmitBreakStatement(node) { const label = findBreakTarget(node.label ? idText(node.label) : undefined); if (label > 0) { emitBreak(label, node); } else { emitStatement(node); } } function visitBreakStatement(node) { if (inStatementContainingYield) { const label = findBreakTarget(node.label && idText(node.label)); if (label > 0) { return createInlineBreak(label, node); } } return visitEachChild(node, visitor, context); } function transformAndEmitReturnStatement(node) { emitReturn(visitNode(node.expression, visitor, isExpression), node); } function visitReturnStatement(node) { return createInlineReturn(visitNode(node.expression, visitor, isExpression), node); } function transformAndEmitWithStatement(node) { if (containsYield(node)) { beginWithBlock(cacheExpression(Debug.checkDefined(visitNode(node.expression, visitor, isExpression)))); transformAndEmitEmbeddedStatement(node.statement); endWithBlock(); } else { emitStatement(visitNode(node, visitor, isStatement)); } } function transformAndEmitSwitchStatement(node) { if (containsYield(node.caseBlock)) { const caseBlock = node.caseBlock; const numClauses = caseBlock.clauses.length; const endLabel = beginSwitchBlock(); const expression = cacheExpression(Debug.checkDefined(visitNode(node.expression, visitor, isExpression))); const clauseLabels = []; let defaultClauseIndex = -1; for (let i = 0;i < numClauses; i++) { const clause = caseBlock.clauses[i]; clauseLabels.push(defineLabel()); if (clause.kind === 298 && defaultClauseIndex === -1) { defaultClauseIndex = i; } } let clausesWritten = 0; let pendingClauses = []; while (clausesWritten < numClauses) { let defaultClausesSkipped = 0; for (let i = clausesWritten;i < numClauses; i++) { const clause = caseBlock.clauses[i]; if (clause.kind === 297) { if (containsYield(clause.expression) && pendingClauses.length > 0) { break; } pendingClauses.push(factory2.createCaseClause(Debug.checkDefined(visitNode(clause.expression, visitor, isExpression)), [ createInlineBreak(clauseLabels[i], clause.expression) ])); } else { defaultClausesSkipped++; } } if (pendingClauses.length) { emitStatement(factory2.createSwitchStatement(expression, factory2.createCaseBlock(pendingClauses))); clausesWritten += pendingClauses.length; pendingClauses = []; } if (defaultClausesSkipped > 0) { clausesWritten += defaultClausesSkipped; defaultClausesSkipped = 0; } } if (defaultClauseIndex >= 0) { emitBreak(clauseLabels[defaultClauseIndex]); } else { emitBreak(endLabel); } for (let i = 0;i < numClauses; i++) { markLabel(clauseLabels[i]); transformAndEmitStatements(caseBlock.clauses[i].statements); } endSwitchBlock(); } else { emitStatement(visitNode(node, visitor, isStatement)); } } function visitSwitchStatement(node) { if (inStatementContainingYield) { beginScriptSwitchBlock(); } node = visitEachChild(node, visitor, context); if (inStatementContainingYield) { endSwitchBlock(); } return node; } function transformAndEmitLabeledStatement(node) { if (containsYield(node)) { beginLabeledBlock(idText(node.label)); transformAndEmitEmbeddedStatement(node.statement); endLabeledBlock(); } else { emitStatement(visitNode(node, visitor, isStatement)); } } function visitLabeledStatement(node) { if (inStatementContainingYield) { beginScriptLabeledBlock(idText(node.label)); } node = visitEachChild(node, visitor, context); if (inStatementContainingYield) { endLabeledBlock(); } return node; } function transformAndEmitThrowStatement(node) { emitThrow(Debug.checkDefined(visitNode(node.expression ?? factory2.createVoidZero(), visitor, isExpression)), node); } function transformAndEmitTryStatement(node) { if (containsYield(node)) { beginExceptionBlock(); transformAndEmitEmbeddedStatement(node.tryBlock); if (node.catchClause) { beginCatchBlock(node.catchClause.variableDeclaration); transformAndEmitEmbeddedStatement(node.catchClause.block); } if (node.finallyBlock) { beginFinallyBlock(); transformAndEmitEmbeddedStatement(node.finallyBlock); } endExceptionBlock(); } else { emitStatement(visitEachChild(node, visitor, context)); } } function containsYield(node) { return !!node && (node.transformFlags & 1048576) !== 0; } function countInitialNodesWithoutYield(nodes) { const numNodes = nodes.length; for (let i = 0;i < numNodes; i++) { if (containsYield(nodes[i])) { return i; } } return -1; } function onSubstituteNode(hint, node) { node = previousOnSubstituteNode(hint, node); if (hint === 1) { return substituteExpression(node); } return node; } function substituteExpression(node) { if (isIdentifier(node)) { return substituteExpressionIdentifier(node); } return node; } function substituteExpressionIdentifier(node) { if (!isGeneratedIdentifier(node) && renamedCatchVariables && renamedCatchVariables.has(idText(node))) { const original = getOriginalNode(node); if (isIdentifier(original) && original.parent) { const declaration = resolver.getReferencedValueDeclaration(original); if (declaration) { const name = renamedCatchVariableDeclarations[getOriginalNodeId(declaration)]; if (name) { const clone2 = setParent(setTextRange(factory2.cloneNode(name), name), name.parent); setSourceMapRange(clone2, node); setCommentRange(clone2, node); return clone2; } } } } return node; } function cacheExpression(node) { if (isGeneratedIdentifier(node) || getEmitFlags(node) & 8192) { return node; } const temp = factory2.createTempVariable(hoistVariableDeclaration); emitAssignment(temp, node, node); return temp; } function declareLocal(name) { const temp = name ? factory2.createUniqueName(name) : factory2.createTempVariable(undefined); hoistVariableDeclaration(temp); return temp; } function defineLabel() { if (!labelOffsets) { labelOffsets = []; } const label = nextLabelId; nextLabelId++; labelOffsets[label] = -1; return label; } function markLabel(label) { Debug.assert(labelOffsets !== undefined, "No labels were defined."); labelOffsets[label] = operations ? operations.length : 0; } function beginBlock(block) { if (!blocks) { blocks = []; blockActions = []; blockOffsets = []; blockStack = []; } const index = blockActions.length; blockActions[index] = 0; blockOffsets[index] = operations ? operations.length : 0; blocks[index] = block; blockStack.push(block); return index; } function endBlock() { const block = peekBlock(); if (block === undefined) return Debug.fail("beginBlock was never called."); const index = blockActions.length; blockActions[index] = 1; blockOffsets[index] = operations ? operations.length : 0; blocks[index] = block; blockStack.pop(); return block; } function peekBlock() { return lastOrUndefined(blockStack); } function peekBlockKind() { const block = peekBlock(); return block && block.kind; } function beginWithBlock(expression) { const startLabel = defineLabel(); const endLabel = defineLabel(); markLabel(startLabel); beginBlock({ kind: 1, expression, startLabel, endLabel }); } function endWithBlock() { Debug.assert(peekBlockKind() === 1); const block = endBlock(); markLabel(block.endLabel); } function beginExceptionBlock() { const startLabel = defineLabel(); const endLabel = defineLabel(); markLabel(startLabel); beginBlock({ kind: 0, state: 0, startLabel, endLabel }); emitNop(); return endLabel; } function beginCatchBlock(variable) { Debug.assert(peekBlockKind() === 0); let name; if (isGeneratedIdentifier(variable.name)) { name = variable.name; hoistVariableDeclaration(variable.name); } else { const text = idText(variable.name); name = declareLocal(text); if (!renamedCatchVariables) { renamedCatchVariables = /* @__PURE__ */ new Map; renamedCatchVariableDeclarations = []; context.enableSubstitution(80); } renamedCatchVariables.set(text, true); renamedCatchVariableDeclarations[getOriginalNodeId(variable)] = name; } const exception = peekBlock(); Debug.assert(exception.state < 1); const endLabel = exception.endLabel; emitBreak(endLabel); const catchLabel = defineLabel(); markLabel(catchLabel); exception.state = 1; exception.catchVariable = name; exception.catchLabel = catchLabel; emitAssignment(name, factory2.createCallExpression(factory2.createPropertyAccessExpression(state, "sent"), undefined, [])); emitNop(); } function beginFinallyBlock() { Debug.assert(peekBlockKind() === 0); const exception = peekBlock(); Debug.assert(exception.state < 2); const endLabel = exception.endLabel; emitBreak(endLabel); const finallyLabel = defineLabel(); markLabel(finallyLabel); exception.state = 2; exception.finallyLabel = finallyLabel; } function endExceptionBlock() { Debug.assert(peekBlockKind() === 0); const exception = endBlock(); const state2 = exception.state; if (state2 < 2) { emitBreak(exception.endLabel); } else { emitEndfinally(); } markLabel(exception.endLabel); emitNop(); exception.state = 3; } function beginScriptLoopBlock() { beginBlock({ kind: 3, isScript: true, breakLabel: -1, continueLabel: -1 }); } function beginLoopBlock(continueLabel) { const breakLabel = defineLabel(); beginBlock({ kind: 3, isScript: false, breakLabel, continueLabel }); return breakLabel; } function endLoopBlock() { Debug.assert(peekBlockKind() === 3); const block = endBlock(); const breakLabel = block.breakLabel; if (!block.isScript) { markLabel(breakLabel); } } function beginScriptSwitchBlock() { beginBlock({ kind: 2, isScript: true, breakLabel: -1 }); } function beginSwitchBlock() { const breakLabel = defineLabel(); beginBlock({ kind: 2, isScript: false, breakLabel }); return breakLabel; } function endSwitchBlock() { Debug.assert(peekBlockKind() === 2); const block = endBlock(); const breakLabel = block.breakLabel; if (!block.isScript) { markLabel(breakLabel); } } function beginScriptLabeledBlock(labelText) { beginBlock({ kind: 4, isScript: true, labelText, breakLabel: -1 }); } function beginLabeledBlock(labelText) { const breakLabel = defineLabel(); beginBlock({ kind: 4, isScript: false, labelText, breakLabel }); } function endLabeledBlock() { Debug.assert(peekBlockKind() === 4); const block = endBlock(); if (!block.isScript) { markLabel(block.breakLabel); } } function supportsUnlabeledBreak(block) { return block.kind === 2 || block.kind === 3; } function supportsLabeledBreakOrContinue(block) { return block.kind === 4; } function supportsUnlabeledContinue(block) { return block.kind === 3; } function hasImmediateContainingLabeledBlock(labelText, start) { for (let j = start;j >= 0; j--) { const containingBlock = blockStack[j]; if (supportsLabeledBreakOrContinue(containingBlock)) { if (containingBlock.labelText === labelText) { return true; } } else { break; } } return false; } function findBreakTarget(labelText) { if (blockStack) { if (labelText) { for (let i = blockStack.length - 1;i >= 0; i--) { const block = blockStack[i]; if (supportsLabeledBreakOrContinue(block) && block.labelText === labelText) { return block.breakLabel; } else if (supportsUnlabeledBreak(block) && hasImmediateContainingLabeledBlock(labelText, i - 1)) { return block.breakLabel; } } } else { for (let i = blockStack.length - 1;i >= 0; i--) { const block = blockStack[i]; if (supportsUnlabeledBreak(block)) { return block.breakLabel; } } } } return 0; } function findContinueTarget(labelText) { if (blockStack) { if (labelText) { for (let i = blockStack.length - 1;i >= 0; i--) { const block = blockStack[i]; if (supportsUnlabeledContinue(block) && hasImmediateContainingLabeledBlock(labelText, i - 1)) { return block.continueLabel; } } } else { for (let i = blockStack.length - 1;i >= 0; i--) { const block = blockStack[i]; if (supportsUnlabeledContinue(block)) { return block.continueLabel; } } } } return 0; } function createLabel(label) { if (label !== undefined && label > 0) { if (labelExpressions === undefined) { labelExpressions = []; } const expression = factory2.createNumericLiteral(Number.MAX_SAFE_INTEGER); if (labelExpressions[label] === undefined) { labelExpressions[label] = [expression]; } else { labelExpressions[label].push(expression); } return expression; } return factory2.createOmittedExpression(); } function createInstruction(instruction) { const literal = factory2.createNumericLiteral(instruction); addSyntheticTrailingComment(literal, 3, getInstructionName(instruction)); return literal; } function createInlineBreak(label, location) { Debug.assertLessThan(0, label, "Invalid label"); return setTextRange(factory2.createReturnStatement(factory2.createArrayLiteralExpression([ createInstruction(3), createLabel(label) ])), location); } function createInlineReturn(expression, location) { return setTextRange(factory2.createReturnStatement(factory2.createArrayLiteralExpression(expression ? [createInstruction(2), expression] : [createInstruction(2)])), location); } function createGeneratorResume(location) { return setTextRange(factory2.createCallExpression(factory2.createPropertyAccessExpression(state, "sent"), undefined, []), location); } function emitNop() { emitWorker(0); } function emitStatement(node) { if (node) { emitWorker(1, [node]); } else { emitNop(); } } function emitAssignment(left, right, location) { emitWorker(2, [left, right], location); } function emitBreak(label, location) { emitWorker(3, [label], location); } function emitBreakWhenTrue(label, condition, location) { emitWorker(4, [label, condition], location); } function emitBreakWhenFalse(label, condition, location) { emitWorker(5, [label, condition], location); } function emitYieldStar(expression, location) { emitWorker(7, [expression], location); } function emitYield(expression, location) { emitWorker(6, [expression], location); } function emitReturn(expression, location) { emitWorker(8, [expression], location); } function emitThrow(expression, location) { emitWorker(9, [expression], location); } function emitEndfinally() { emitWorker(10); } function emitWorker(code, args, location) { if (operations === undefined) { operations = []; operationArguments = []; operationLocations = []; } if (labelOffsets === undefined) { markLabel(defineLabel()); } const operationIndex = operations.length; operations[operationIndex] = code; operationArguments[operationIndex] = args; operationLocations[operationIndex] = location; } function build2() { blockIndex = 0; labelNumber = 0; labelNumbers = undefined; lastOperationWasAbrupt = false; lastOperationWasCompletion = false; clauses = undefined; statements = undefined; exceptionBlockStack = undefined; currentExceptionBlock = undefined; withBlockStack = undefined; const buildResult = buildStatements(); return emitHelpers().createGeneratorHelper(setEmitFlags(factory2.createFunctionExpression(undefined, undefined, undefined, undefined, [factory2.createParameterDeclaration(undefined, undefined, state)], undefined, factory2.createBlock(buildResult, buildResult.length > 0)), 1048576)); } function buildStatements() { if (operations) { for (let operationIndex = 0;operationIndex < operations.length; operationIndex++) { writeOperation(operationIndex); } flushFinalLabel(operations.length); } else { flushFinalLabel(0); } if (clauses) { const labelExpression = factory2.createPropertyAccessExpression(state, "label"); const switchStatement = factory2.createSwitchStatement(labelExpression, factory2.createCaseBlock(clauses)); return [startOnNewLine(switchStatement)]; } if (statements) { return statements; } return []; } function flushLabel() { if (!statements) { return; } appendLabel(!lastOperationWasAbrupt); lastOperationWasAbrupt = false; lastOperationWasCompletion = false; labelNumber++; } function flushFinalLabel(operationIndex) { if (isFinalLabelReachable(operationIndex)) { tryEnterLabel(operationIndex); withBlockStack = undefined; writeReturn(undefined, undefined); } if (statements && clauses) { appendLabel(false); } updateLabelExpressions(); } function isFinalLabelReachable(operationIndex) { if (!lastOperationWasCompletion) { return true; } if (!labelOffsets || !labelExpressions) { return false; } for (let label = 0;label < labelOffsets.length; label++) { if (labelOffsets[label] === operationIndex && labelExpressions[label]) { return true; } } return false; } function appendLabel(markLabelEnd) { if (!clauses) { clauses = []; } if (statements) { if (withBlockStack) { for (let i = withBlockStack.length - 1;i >= 0; i--) { const withBlock = withBlockStack[i]; statements = [factory2.createWithStatement(withBlock.expression, factory2.createBlock(statements))]; } } if (currentExceptionBlock) { const { startLabel, catchLabel, finallyLabel, endLabel } = currentExceptionBlock; statements.unshift(factory2.createExpressionStatement(factory2.createCallExpression(factory2.createPropertyAccessExpression(factory2.createPropertyAccessExpression(state, "trys"), "push"), undefined, [ factory2.createArrayLiteralExpression([ createLabel(startLabel), createLabel(catchLabel), createLabel(finallyLabel), createLabel(endLabel) ]) ]))); currentExceptionBlock = undefined; } if (markLabelEnd) { statements.push(factory2.createExpressionStatement(factory2.createAssignment(factory2.createPropertyAccessExpression(state, "label"), factory2.createNumericLiteral(labelNumber + 1)))); } } clauses.push(factory2.createCaseClause(factory2.createNumericLiteral(labelNumber), statements || [])); statements = undefined; } function tryEnterLabel(operationIndex) { if (!labelOffsets) { return; } for (let label = 0;label < labelOffsets.length; label++) { if (labelOffsets[label] === operationIndex) { flushLabel(); if (labelNumbers === undefined) { labelNumbers = []; } if (labelNumbers[labelNumber] === undefined) { labelNumbers[labelNumber] = [label]; } else { labelNumbers[labelNumber].push(label); } } } } function updateLabelExpressions() { if (labelExpressions !== undefined && labelNumbers !== undefined) { for (let labelNumber2 = 0;labelNumber2 < labelNumbers.length; labelNumber2++) { const labels = labelNumbers[labelNumber2]; if (labels !== undefined) { for (const label of labels) { const expressions = labelExpressions[label]; if (expressions !== undefined) { for (const expression of expressions) { expression.text = String(labelNumber2); } } } } } } } function tryEnterOrLeaveBlock(operationIndex) { if (blocks) { for (;blockIndex < blockActions.length && blockOffsets[blockIndex] <= operationIndex; blockIndex++) { const block = blocks[blockIndex]; const blockAction = blockActions[blockIndex]; switch (block.kind) { case 0: if (blockAction === 0) { if (!exceptionBlockStack) { exceptionBlockStack = []; } if (!statements) { statements = []; } exceptionBlockStack.push(currentExceptionBlock); currentExceptionBlock = block; } else if (blockAction === 1) { currentExceptionBlock = exceptionBlockStack.pop(); } break; case 1: if (blockAction === 0) { if (!withBlockStack) { withBlockStack = []; } withBlockStack.push(block); } else if (blockAction === 1) { withBlockStack.pop(); } break; } } } } function writeOperation(operationIndex) { tryEnterLabel(operationIndex); tryEnterOrLeaveBlock(operationIndex); if (lastOperationWasAbrupt) { return; } lastOperationWasAbrupt = false; lastOperationWasCompletion = false; const opcode = operations[operationIndex]; if (opcode === 0) { return; } else if (opcode === 10) { return writeEndfinally(); } const args = operationArguments[operationIndex]; if (opcode === 1) { return writeStatement(args[0]); } const location = operationLocations[operationIndex]; switch (opcode) { case 2: return writeAssign(args[0], args[1], location); case 3: return writeBreak(args[0], location); case 4: return writeBreakWhenTrue(args[0], args[1], location); case 5: return writeBreakWhenFalse(args[0], args[1], location); case 6: return writeYield(args[0], location); case 7: return writeYieldStar(args[0], location); case 8: return writeReturn(args[0], location); case 9: return writeThrow(args[0], location); } } function writeStatement(statement) { if (statement) { if (!statements) { statements = [statement]; } else { statements.push(statement); } } } function writeAssign(left, right, operationLocation) { writeStatement(setTextRange(factory2.createExpressionStatement(factory2.createAssignment(left, right)), operationLocation)); } function writeThrow(expression, operationLocation) { lastOperationWasAbrupt = true; lastOperationWasCompletion = true; writeStatement(setTextRange(factory2.createThrowStatement(expression), operationLocation)); } function writeReturn(expression, operationLocation) { lastOperationWasAbrupt = true; lastOperationWasCompletion = true; writeStatement(setEmitFlags(setTextRange(factory2.createReturnStatement(factory2.createArrayLiteralExpression(expression ? [createInstruction(2), expression] : [createInstruction(2)])), operationLocation), 768)); } function writeBreak(label, operationLocation) { lastOperationWasAbrupt = true; writeStatement(setEmitFlags(setTextRange(factory2.createReturnStatement(factory2.createArrayLiteralExpression([ createInstruction(3), createLabel(label) ])), operationLocation), 768)); } function writeBreakWhenTrue(label, condition, operationLocation) { writeStatement(setEmitFlags(factory2.createIfStatement(condition, setEmitFlags(setTextRange(factory2.createReturnStatement(factory2.createArrayLiteralExpression([ createInstruction(3), createLabel(label) ])), operationLocation), 768)), 1)); } function writeBreakWhenFalse(label, condition, operationLocation) { writeStatement(setEmitFlags(factory2.createIfStatement(factory2.createLogicalNot(condition), setEmitFlags(setTextRange(factory2.createReturnStatement(factory2.createArrayLiteralExpression([ createInstruction(3), createLabel(label) ])), operationLocation), 768)), 1)); } function writeYield(expression, operationLocation) { lastOperationWasAbrupt = true; writeStatement(setEmitFlags(setTextRange(factory2.createReturnStatement(factory2.createArrayLiteralExpression(expression ? [createInstruction(4), expression] : [createInstruction(4)])), operationLocation), 768)); } function writeYieldStar(expression, operationLocation) { lastOperationWasAbrupt = true; writeStatement(setEmitFlags(setTextRange(factory2.createReturnStatement(factory2.createArrayLiteralExpression([ createInstruction(5), expression ])), operationLocation), 768)); } function writeEndfinally() { lastOperationWasAbrupt = true; writeStatement(factory2.createReturnStatement(factory2.createArrayLiteralExpression([ createInstruction(7) ]))); } } function transformModule(context) { function getTransformModuleDelegate(moduleKind2) { switch (moduleKind2) { case 2: return transformAMDModule; case 3: return transformUMDModule; default: return transformCommonJSModule; } } const { factory: factory2, getEmitHelperFactory: emitHelpers, startLexicalEnvironment, endLexicalEnvironment, hoistVariableDeclaration } = context; const compilerOptions = context.getCompilerOptions(); const resolver = context.getEmitResolver(); const host = context.getEmitHost(); const languageVersion = getEmitScriptTarget(compilerOptions); const moduleKind = getEmitModuleKind(compilerOptions); const previousOnSubstituteNode = context.onSubstituteNode; const previousOnEmitNode = context.onEmitNode; context.onSubstituteNode = onSubstituteNode; context.onEmitNode = onEmitNode; context.enableSubstitution(214); context.enableSubstitution(216); context.enableSubstitution(80); context.enableSubstitution(227); context.enableSubstitution(305); context.enableEmitNotification(308); const moduleInfoMap = []; let currentSourceFile; let currentModuleInfo; let importsAndRequiresToRewriteOrShim; const noSubstitution = []; let needUMDDynamicImportHelper; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile || !(isEffectiveExternalModule(node, compilerOptions) || node.transformFlags & 8388608 || isJsonSourceFile(node) && hasJsonModuleEmitEnabled(compilerOptions) && compilerOptions.outFile)) { return node; } currentSourceFile = node; currentModuleInfo = collectExternalModuleInfo(context, node); moduleInfoMap[getOriginalNodeId(node)] = currentModuleInfo; if (compilerOptions.rewriteRelativeImportExtensions) { forEachDynamicImportOrRequireCall(node, false, false, (node2) => { if (!isStringLiteralLike(node2.arguments[0]) || shouldRewriteModuleSpecifier(node2.arguments[0].text, compilerOptions)) { importsAndRequiresToRewriteOrShim = append(importsAndRequiresToRewriteOrShim, node2); } }); } const transformModule2 = getTransformModuleDelegate(moduleKind); const updated = transformModule2(node); currentSourceFile = undefined; currentModuleInfo = undefined; needUMDDynamicImportHelper = false; return updated; } function shouldEmitUnderscoreUnderscoreESModule() { if (hasJSFileExtension(currentSourceFile.fileName) && currentSourceFile.commonJsModuleIndicator && (!currentSourceFile.externalModuleIndicator || currentSourceFile.externalModuleIndicator === true)) { return false; } if (!currentModuleInfo.exportEquals && isExternalModule(currentSourceFile)) { return true; } return false; } function transformCommonJSModule(node) { startLexicalEnvironment(); const statements = []; const ensureUseStrict = getAlwaysStrict(compilerOptions) || isExternalModule(currentSourceFile); const statementOffset = factory2.copyPrologue(node.statements, statements, ensureUseStrict && !isJsonSourceFile(node), topLevelVisitor); if (shouldEmitUnderscoreUnderscoreESModule()) { append(statements, createUnderscoreUnderscoreESModule()); } if (some(currentModuleInfo.exportedNames)) { const chunkSize = 50; for (let i = 0;i < currentModuleInfo.exportedNames.length; i += chunkSize) { append(statements, factory2.createExpressionStatement(reduceLeft(currentModuleInfo.exportedNames.slice(i, i + chunkSize), (prev, nextId) => nextId.kind === 11 ? factory2.createAssignment(factory2.createElementAccessExpression(factory2.createIdentifier("exports"), factory2.createStringLiteral(nextId.text)), prev) : factory2.createAssignment(factory2.createPropertyAccessExpression(factory2.createIdentifier("exports"), factory2.createIdentifier(idText(nextId))), prev), factory2.createVoidZero()))); } } for (const f of currentModuleInfo.exportedFunctions) { appendExportsOfHoistedDeclaration(statements, f); } append(statements, visitNode(currentModuleInfo.externalHelpersImportDeclaration, topLevelVisitor, isStatement)); addRange(statements, visitNodes2(node.statements, topLevelVisitor, isStatement, statementOffset)); addExportEqualsIfNeeded(statements, false); insertStatementsAfterStandardPrologue(statements, endLexicalEnvironment()); const updated = factory2.updateSourceFile(node, setTextRange(factory2.createNodeArray(statements), node.statements)); addEmitHelpers(updated, context.readEmitHelpers()); return updated; } function transformAMDModule(node) { const define = factory2.createIdentifier("define"); const moduleName = tryGetModuleNameFromFile(factory2, node, host, compilerOptions); const jsonSourceFile = isJsonSourceFile(node) && node; const { aliasedModuleNames, unaliasedModuleNames, importAliasNames } = collectAsynchronousDependencies(node, true); const updated = factory2.updateSourceFile(node, setTextRange(factory2.createNodeArray([ factory2.createExpressionStatement(factory2.createCallExpression(define, undefined, [ ...moduleName ? [moduleName] : [], factory2.createArrayLiteralExpression(jsonSourceFile ? emptyArray : [ factory2.createStringLiteral("require"), factory2.createStringLiteral("exports"), ...aliasedModuleNames, ...unaliasedModuleNames ]), jsonSourceFile ? jsonSourceFile.statements.length ? jsonSourceFile.statements[0].expression : factory2.createObjectLiteralExpression() : factory2.createFunctionExpression(undefined, undefined, undefined, undefined, [ factory2.createParameterDeclaration(undefined, undefined, "require"), factory2.createParameterDeclaration(undefined, undefined, "exports"), ...importAliasNames ], undefined, transformAsynchronousModuleBody(node)) ])) ]), node.statements)); addEmitHelpers(updated, context.readEmitHelpers()); return updated; } function transformUMDModule(node) { const { aliasedModuleNames, unaliasedModuleNames, importAliasNames } = collectAsynchronousDependencies(node, false); const moduleName = tryGetModuleNameFromFile(factory2, node, host, compilerOptions); const umdHeader = factory2.createFunctionExpression(undefined, undefined, undefined, undefined, [factory2.createParameterDeclaration(undefined, undefined, "factory")], undefined, setTextRange(factory2.createBlock([ factory2.createIfStatement(factory2.createLogicalAnd(factory2.createTypeCheck(factory2.createIdentifier("module"), "object"), factory2.createTypeCheck(factory2.createPropertyAccessExpression(factory2.createIdentifier("module"), "exports"), "object")), factory2.createBlock([ factory2.createVariableStatement(undefined, [ factory2.createVariableDeclaration("v", undefined, undefined, factory2.createCallExpression(factory2.createIdentifier("factory"), undefined, [ factory2.createIdentifier("require"), factory2.createIdentifier("exports") ])) ]), setEmitFlags(factory2.createIfStatement(factory2.createStrictInequality(factory2.createIdentifier("v"), factory2.createIdentifier("undefined")), factory2.createExpressionStatement(factory2.createAssignment(factory2.createPropertyAccessExpression(factory2.createIdentifier("module"), "exports"), factory2.createIdentifier("v")))), 1) ]), factory2.createIfStatement(factory2.createLogicalAnd(factory2.createTypeCheck(factory2.createIdentifier("define"), "function"), factory2.createPropertyAccessExpression(factory2.createIdentifier("define"), "amd")), factory2.createBlock([ factory2.createExpressionStatement(factory2.createCallExpression(factory2.createIdentifier("define"), undefined, [ ...moduleName ? [moduleName] : [], factory2.createArrayLiteralExpression([ factory2.createStringLiteral("require"), factory2.createStringLiteral("exports"), ...aliasedModuleNames, ...unaliasedModuleNames ]), factory2.createIdentifier("factory") ])) ]))) ], true), undefined)); const updated = factory2.updateSourceFile(node, setTextRange(factory2.createNodeArray([ factory2.createExpressionStatement(factory2.createCallExpression(umdHeader, undefined, [ factory2.createFunctionExpression(undefined, undefined, undefined, undefined, [ factory2.createParameterDeclaration(undefined, undefined, "require"), factory2.createParameterDeclaration(undefined, undefined, "exports"), ...importAliasNames ], undefined, transformAsynchronousModuleBody(node)) ])) ]), node.statements)); addEmitHelpers(updated, context.readEmitHelpers()); return updated; } function collectAsynchronousDependencies(node, includeNonAmdDependencies) { const aliasedModuleNames = []; const unaliasedModuleNames = []; const importAliasNames = []; for (const amdDependency of node.amdDependencies) { if (amdDependency.name) { aliasedModuleNames.push(factory2.createStringLiteral(amdDependency.path)); importAliasNames.push(factory2.createParameterDeclaration(undefined, undefined, amdDependency.name)); } else { unaliasedModuleNames.push(factory2.createStringLiteral(amdDependency.path)); } } for (const importNode of currentModuleInfo.externalImports) { const externalModuleName = getExternalModuleNameLiteral(factory2, importNode, currentSourceFile, host, resolver, compilerOptions); const importAliasName = getLocalNameForExternalImport(factory2, importNode, currentSourceFile); if (externalModuleName) { if (includeNonAmdDependencies && importAliasName) { setEmitFlags(importAliasName, 8); aliasedModuleNames.push(externalModuleName); importAliasNames.push(factory2.createParameterDeclaration(undefined, undefined, importAliasName)); } else { unaliasedModuleNames.push(externalModuleName); } } } return { aliasedModuleNames, unaliasedModuleNames, importAliasNames }; } function getAMDImportExpressionForImport(node) { if (isImportEqualsDeclaration(node) || isExportDeclaration(node) || !getExternalModuleNameLiteral(factory2, node, currentSourceFile, host, resolver, compilerOptions)) { return; } const name = getLocalNameForExternalImport(factory2, node, currentSourceFile); const expr = getHelperExpressionForImport(node, name); if (expr === name) { return; } return factory2.createExpressionStatement(factory2.createAssignment(name, expr)); } function transformAsynchronousModuleBody(node) { startLexicalEnvironment(); const statements = []; const statementOffset = factory2.copyPrologue(node.statements, statements, true, topLevelVisitor); if (shouldEmitUnderscoreUnderscoreESModule()) { append(statements, createUnderscoreUnderscoreESModule()); } if (some(currentModuleInfo.exportedNames)) { append(statements, factory2.createExpressionStatement(reduceLeft(currentModuleInfo.exportedNames, (prev, nextId) => nextId.kind === 11 ? factory2.createAssignment(factory2.createElementAccessExpression(factory2.createIdentifier("exports"), factory2.createStringLiteral(nextId.text)), prev) : factory2.createAssignment(factory2.createPropertyAccessExpression(factory2.createIdentifier("exports"), factory2.createIdentifier(idText(nextId))), prev), factory2.createVoidZero()))); } for (const f of currentModuleInfo.exportedFunctions) { appendExportsOfHoistedDeclaration(statements, f); } append(statements, visitNode(currentModuleInfo.externalHelpersImportDeclaration, topLevelVisitor, isStatement)); if (moduleKind === 2) { addRange(statements, mapDefined(currentModuleInfo.externalImports, getAMDImportExpressionForImport)); } addRange(statements, visitNodes2(node.statements, topLevelVisitor, isStatement, statementOffset)); addExportEqualsIfNeeded(statements, true); insertStatementsAfterStandardPrologue(statements, endLexicalEnvironment()); const body = factory2.createBlock(statements, true); if (needUMDDynamicImportHelper) { addEmitHelper(body, dynamicImportUMDHelper); } return body; } function addExportEqualsIfNeeded(statements, emitAsReturn) { if (currentModuleInfo.exportEquals) { const expressionResult = visitNode(currentModuleInfo.exportEquals.expression, visitor, isExpression); if (expressionResult) { if (emitAsReturn) { const statement = factory2.createReturnStatement(expressionResult); setTextRange(statement, currentModuleInfo.exportEquals); setEmitFlags(statement, 768 | 3072); statements.push(statement); } else { const statement = factory2.createExpressionStatement(factory2.createAssignment(factory2.createPropertyAccessExpression(factory2.createIdentifier("module"), "exports"), expressionResult)); setTextRange(statement, currentModuleInfo.exportEquals); setEmitFlags(statement, 3072); statements.push(statement); } } } } function topLevelVisitor(node) { switch (node.kind) { case 273: return visitTopLevelImportDeclaration(node); case 272: return visitTopLevelImportEqualsDeclaration(node); case 279: return visitTopLevelExportDeclaration(node); case 278: return visitTopLevelExportAssignment(node); default: return topLevelNestedVisitor(node); } } function topLevelNestedVisitor(node) { switch (node.kind) { case 244: return visitVariableStatement(node); case 263: return visitFunctionDeclaration(node); case 264: return visitClassDeclaration(node); case 249: return visitForStatement(node, true); case 250: return visitForInStatement(node); case 251: return visitForOfStatement(node); case 247: return visitDoStatement(node); case 248: return visitWhileStatement(node); case 257: return visitLabeledStatement(node); case 255: return visitWithStatement(node); case 246: return visitIfStatement(node); case 256: return visitSwitchStatement(node); case 270: return visitCaseBlock(node); case 297: return visitCaseClause(node); case 298: return visitDefaultClause(node); case 259: return visitTryStatement(node); case 300: return visitCatchClause(node); case 242: return visitBlock(node); default: return visitor(node); } } function visitorWorker(node, valueIsDiscarded) { if (!(node.transformFlags & (8388608 | 4096 | 268435456)) && !(importsAndRequiresToRewriteOrShim == null ? undefined : importsAndRequiresToRewriteOrShim.length)) { return node; } switch (node.kind) { case 249: return visitForStatement(node, false); case 245: return visitExpressionStatement(node); case 218: return visitParenthesizedExpression(node, valueIsDiscarded); case 356: return visitPartiallyEmittedExpression(node, valueIsDiscarded); case 214: const needsRewrite = node === firstOrUndefined(importsAndRequiresToRewriteOrShim); if (needsRewrite) { importsAndRequiresToRewriteOrShim.shift(); } if (isImportCall(node) && host.shouldTransformImportCall(currentSourceFile)) { return visitImportCallExpression(node, needsRewrite); } else if (needsRewrite) { return shimOrRewriteImportOrRequireCall(node); } break; case 227: if (isDestructuringAssignment(node)) { return visitDestructuringAssignment(node, valueIsDiscarded); } break; case 225: case 226: return visitPreOrPostfixUnaryExpression(node, valueIsDiscarded); } return visitEachChild(node, visitor, context); } function visitor(node) { return visitorWorker(node, false); } function discardedValueVisitor(node) { return visitorWorker(node, true); } function destructuringNeedsFlattening(node) { if (isObjectLiteralExpression(node)) { for (const elem of node.properties) { switch (elem.kind) { case 304: if (destructuringNeedsFlattening(elem.initializer)) { return true; } break; case 305: if (destructuringNeedsFlattening(elem.name)) { return true; } break; case 306: if (destructuringNeedsFlattening(elem.expression)) { return true; } break; case 175: case 178: case 179: return false; default: Debug.assertNever(elem, "Unhandled object member kind"); } } } else if (isArrayLiteralExpression(node)) { for (const elem of node.elements) { if (isSpreadElement(elem)) { if (destructuringNeedsFlattening(elem.expression)) { return true; } } else if (destructuringNeedsFlattening(elem)) { return true; } } } else if (isIdentifier(node)) { return length(getExports(node)) > (isExportName(node) ? 1 : 0); } return false; } function visitDestructuringAssignment(node, valueIsDiscarded) { if (destructuringNeedsFlattening(node.left)) { return flattenDestructuringAssignment(node, visitor, context, 0, !valueIsDiscarded, createAllExportExpressions); } return visitEachChild(node, visitor, context); } function visitForStatement(node, isTopLevel) { if (isTopLevel && node.initializer && isVariableDeclarationList(node.initializer) && !(node.initializer.flags & 7)) { const exportStatements = appendExportsOfVariableDeclarationList(undefined, node.initializer, false); if (exportStatements) { const statements = []; const varDeclList = visitNode(node.initializer, discardedValueVisitor, isVariableDeclarationList); const varStatement = factory2.createVariableStatement(undefined, varDeclList); statements.push(varStatement); addRange(statements, exportStatements); const condition = visitNode(node.condition, visitor, isExpression); const incrementor = visitNode(node.incrementor, discardedValueVisitor, isExpression); const body = visitIterationBody(node.statement, isTopLevel ? topLevelNestedVisitor : visitor, context); statements.push(factory2.updateForStatement(node, undefined, condition, incrementor, body)); return statements; } } return factory2.updateForStatement(node, visitNode(node.initializer, discardedValueVisitor, isForInitializer), visitNode(node.condition, visitor, isExpression), visitNode(node.incrementor, discardedValueVisitor, isExpression), visitIterationBody(node.statement, isTopLevel ? topLevelNestedVisitor : visitor, context)); } function visitForInStatement(node) { if (isVariableDeclarationList(node.initializer) && !(node.initializer.flags & 7)) { const exportStatements = appendExportsOfVariableDeclarationList(undefined, node.initializer, true); if (some(exportStatements)) { const initializer = visitNode(node.initializer, discardedValueVisitor, isForInitializer); const expression = visitNode(node.expression, visitor, isExpression); const body = visitIterationBody(node.statement, topLevelNestedVisitor, context); const mergedBody = isBlock(body) ? factory2.updateBlock(body, [...exportStatements, ...body.statements]) : factory2.createBlock([...exportStatements, body], true); return factory2.updateForInStatement(node, initializer, expression, mergedBody); } } return factory2.updateForInStatement(node, visitNode(node.initializer, discardedValueVisitor, isForInitializer), visitNode(node.expression, visitor, isExpression), visitIterationBody(node.statement, topLevelNestedVisitor, context)); } function visitForOfStatement(node) { if (isVariableDeclarationList(node.initializer) && !(node.initializer.flags & 7)) { const exportStatements = appendExportsOfVariableDeclarationList(undefined, node.initializer, true); const initializer = visitNode(node.initializer, discardedValueVisitor, isForInitializer); const expression = visitNode(node.expression, visitor, isExpression); let body = visitIterationBody(node.statement, topLevelNestedVisitor, context); if (some(exportStatements)) { body = isBlock(body) ? factory2.updateBlock(body, [...exportStatements, ...body.statements]) : factory2.createBlock([...exportStatements, body], true); } return factory2.updateForOfStatement(node, node.awaitModifier, initializer, expression, body); } return factory2.updateForOfStatement(node, node.awaitModifier, visitNode(node.initializer, discardedValueVisitor, isForInitializer), visitNode(node.expression, visitor, isExpression), visitIterationBody(node.statement, topLevelNestedVisitor, context)); } function visitDoStatement(node) { return factory2.updateDoStatement(node, visitIterationBody(node.statement, topLevelNestedVisitor, context), visitNode(node.expression, visitor, isExpression)); } function visitWhileStatement(node) { return factory2.updateWhileStatement(node, visitNode(node.expression, visitor, isExpression), visitIterationBody(node.statement, topLevelNestedVisitor, context)); } function visitLabeledStatement(node) { return factory2.updateLabeledStatement(node, node.label, visitNode(node.statement, topLevelNestedVisitor, isStatement, factory2.liftToBlock) ?? setTextRange(factory2.createEmptyStatement(), node.statement)); } function visitWithStatement(node) { return factory2.updateWithStatement(node, visitNode(node.expression, visitor, isExpression), Debug.checkDefined(visitNode(node.statement, topLevelNestedVisitor, isStatement, factory2.liftToBlock))); } function visitIfStatement(node) { return factory2.updateIfStatement(node, visitNode(node.expression, visitor, isExpression), visitNode(node.thenStatement, topLevelNestedVisitor, isStatement, factory2.liftToBlock) ?? factory2.createBlock([]), visitNode(node.elseStatement, topLevelNestedVisitor, isStatement, factory2.liftToBlock)); } function visitSwitchStatement(node) { return factory2.updateSwitchStatement(node, visitNode(node.expression, visitor, isExpression), Debug.checkDefined(visitNode(node.caseBlock, topLevelNestedVisitor, isCaseBlock))); } function visitCaseBlock(node) { return factory2.updateCaseBlock(node, visitNodes2(node.clauses, topLevelNestedVisitor, isCaseOrDefaultClause)); } function visitCaseClause(node) { return factory2.updateCaseClause(node, visitNode(node.expression, visitor, isExpression), visitNodes2(node.statements, topLevelNestedVisitor, isStatement)); } function visitDefaultClause(node) { return visitEachChild(node, topLevelNestedVisitor, context); } function visitTryStatement(node) { return visitEachChild(node, topLevelNestedVisitor, context); } function visitCatchClause(node) { return factory2.updateCatchClause(node, node.variableDeclaration, Debug.checkDefined(visitNode(node.block, topLevelNestedVisitor, isBlock))); } function visitBlock(node) { node = visitEachChild(node, topLevelNestedVisitor, context); return node; } function visitExpressionStatement(node) { return factory2.updateExpressionStatement(node, visitNode(node.expression, discardedValueVisitor, isExpression)); } function visitParenthesizedExpression(node, valueIsDiscarded) { return factory2.updateParenthesizedExpression(node, visitNode(node.expression, valueIsDiscarded ? discardedValueVisitor : visitor, isExpression)); } function visitPartiallyEmittedExpression(node, valueIsDiscarded) { return factory2.updatePartiallyEmittedExpression(node, visitNode(node.expression, valueIsDiscarded ? discardedValueVisitor : visitor, isExpression)); } function visitPreOrPostfixUnaryExpression(node, valueIsDiscarded) { if ((node.operator === 46 || node.operator === 47) && isIdentifier(node.operand) && !isGeneratedIdentifier(node.operand) && !isLocalName(node.operand) && !isDeclarationNameOfEnumOrNamespace(node.operand)) { const exportedNames = getExports(node.operand); if (exportedNames) { let temp; let expression = visitNode(node.operand, visitor, isExpression); if (isPrefixUnaryExpression(node)) { expression = factory2.updatePrefixUnaryExpression(node, expression); } else { expression = factory2.updatePostfixUnaryExpression(node, expression); if (!valueIsDiscarded) { temp = factory2.createTempVariable(hoistVariableDeclaration); expression = factory2.createAssignment(temp, expression); setTextRange(expression, node); } expression = factory2.createComma(expression, factory2.cloneNode(node.operand)); setTextRange(expression, node); } for (const exportName of exportedNames) { noSubstitution[getNodeId(expression)] = true; expression = createExportExpression(exportName, expression); setTextRange(expression, node); } if (temp) { noSubstitution[getNodeId(expression)] = true; expression = factory2.createComma(expression, temp); setTextRange(expression, node); } return expression; } } return visitEachChild(node, visitor, context); } function shimOrRewriteImportOrRequireCall(node) { return factory2.updateCallExpression(node, node.expression, undefined, visitNodes2(node.arguments, (arg) => { if (arg === node.arguments[0]) { return isStringLiteralLike(arg) ? rewriteModuleSpecifier(arg, compilerOptions) : emitHelpers().createRewriteRelativeImportExtensionsHelper(arg); } return visitor(arg); }, isExpression)); } function visitImportCallExpression(node, rewriteOrShim) { if (moduleKind === 0 && languageVersion >= 7) { return visitEachChild(node, visitor, context); } const externalModuleName = getExternalModuleNameLiteral(factory2, node, currentSourceFile, host, resolver, compilerOptions); const firstArgument = visitNode(firstOrUndefined(node.arguments), visitor, isExpression); const argument = externalModuleName && (!firstArgument || !isStringLiteral(firstArgument) || firstArgument.text !== externalModuleName.text) ? externalModuleName : firstArgument && rewriteOrShim ? isStringLiteral(firstArgument) ? rewriteModuleSpecifier(firstArgument, compilerOptions) : emitHelpers().createRewriteRelativeImportExtensionsHelper(firstArgument) : firstArgument; const containsLexicalThis = !!(node.transformFlags & 16384); switch (compilerOptions.module) { case 2: return createImportCallExpressionAMD(argument, containsLexicalThis); case 3: return createImportCallExpressionUMD(argument ?? factory2.createVoidZero(), containsLexicalThis); case 1: default: return createImportCallExpressionCommonJS(argument); } } function createImportCallExpressionUMD(arg, containsLexicalThis) { needUMDDynamicImportHelper = true; if (isSimpleCopiableExpression(arg)) { const argClone = isGeneratedIdentifier(arg) ? arg : isStringLiteral(arg) ? factory2.createStringLiteralFromNode(arg) : setEmitFlags(setTextRange(factory2.cloneNode(arg), arg), 3072); return factory2.createConditionalExpression(factory2.createIdentifier("__syncRequire"), undefined, createImportCallExpressionCommonJS(arg), undefined, createImportCallExpressionAMD(argClone, containsLexicalThis)); } else { const temp = factory2.createTempVariable(hoistVariableDeclaration); return factory2.createComma(factory2.createAssignment(temp, arg), factory2.createConditionalExpression(factory2.createIdentifier("__syncRequire"), undefined, createImportCallExpressionCommonJS(temp, true), undefined, createImportCallExpressionAMD(temp, containsLexicalThis))); } } function createImportCallExpressionAMD(arg, containsLexicalThis) { const resolve = factory2.createUniqueName("resolve"); const reject = factory2.createUniqueName("reject"); const parameters = [ factory2.createParameterDeclaration(undefined, undefined, resolve), factory2.createParameterDeclaration(undefined, undefined, reject) ]; const body = factory2.createBlock([ factory2.createExpressionStatement(factory2.createCallExpression(factory2.createIdentifier("require"), undefined, [factory2.createArrayLiteralExpression([arg || factory2.createOmittedExpression()]), resolve, reject])) ]); let func; if (languageVersion >= 2) { func = factory2.createArrowFunction(undefined, undefined, parameters, undefined, undefined, body); } else { func = factory2.createFunctionExpression(undefined, undefined, undefined, undefined, parameters, undefined, body); if (containsLexicalThis) { setEmitFlags(func, 16); } } const promise = factory2.createNewExpression(factory2.createIdentifier("Promise"), undefined, [func]); if (getESModuleInterop(compilerOptions)) { return factory2.createCallExpression(factory2.createPropertyAccessExpression(promise, factory2.createIdentifier("then")), undefined, [emitHelpers().createImportStarCallbackHelper()]); } return promise; } function createImportCallExpressionCommonJS(arg, isInlineable) { const needSyncEval = arg && !isSimpleInlineableExpression(arg) && !isInlineable; const promiseResolveCall = factory2.createCallExpression(factory2.createPropertyAccessExpression(factory2.createIdentifier("Promise"), "resolve"), undefined, needSyncEval ? languageVersion >= 2 ? [ factory2.createTemplateExpression(factory2.createTemplateHead(""), [ factory2.createTemplateSpan(arg, factory2.createTemplateTail("")) ]) ] : [ factory2.createCallExpression(factory2.createPropertyAccessExpression(factory2.createStringLiteral(""), "concat"), undefined, [arg]) ] : []); let requireCall = factory2.createCallExpression(factory2.createIdentifier("require"), undefined, needSyncEval ? [factory2.createIdentifier("s")] : arg ? [arg] : []); if (getESModuleInterop(compilerOptions)) { requireCall = emitHelpers().createImportStarHelper(requireCall); } const parameters = needSyncEval ? [ factory2.createParameterDeclaration(undefined, undefined, "s") ] : []; let func; if (languageVersion >= 2) { func = factory2.createArrowFunction(undefined, undefined, parameters, undefined, undefined, requireCall); } else { func = factory2.createFunctionExpression(undefined, undefined, undefined, undefined, parameters, undefined, factory2.createBlock([factory2.createReturnStatement(requireCall)])); } const downleveledImport = factory2.createCallExpression(factory2.createPropertyAccessExpression(promiseResolveCall, "then"), undefined, [func]); return downleveledImport; } function getHelperExpressionForExport(node, innerExpr) { if (!getESModuleInterop(compilerOptions) || getInternalEmitFlags(node) & 2) { return innerExpr; } if (getExportNeedsImportStarHelper(node)) { return emitHelpers().createImportStarHelper(innerExpr); } return innerExpr; } function getHelperExpressionForImport(node, innerExpr) { if (!getESModuleInterop(compilerOptions) || getInternalEmitFlags(node) & 2) { return innerExpr; } if (getImportNeedsImportStarHelper(node)) { return emitHelpers().createImportStarHelper(innerExpr); } if (getImportNeedsImportDefaultHelper(node)) { return emitHelpers().createImportDefaultHelper(innerExpr); } return innerExpr; } function visitTopLevelImportDeclaration(node) { let statements; const namespaceDeclaration = getNamespaceDeclarationNode(node); if (moduleKind !== 2) { if (!node.importClause) { return setOriginalNode(setTextRange(factory2.createExpressionStatement(createRequireCall2(node)), node), node); } else { const variables = []; if (namespaceDeclaration && !isDefaultImport(node)) { variables.push(factory2.createVariableDeclaration(factory2.cloneNode(namespaceDeclaration.name), undefined, undefined, getHelperExpressionForImport(node, createRequireCall2(node)))); } else { variables.push(factory2.createVariableDeclaration(factory2.getGeneratedNameForNode(node), undefined, undefined, getHelperExpressionForImport(node, createRequireCall2(node)))); if (namespaceDeclaration && isDefaultImport(node)) { variables.push(factory2.createVariableDeclaration(factory2.cloneNode(namespaceDeclaration.name), undefined, undefined, factory2.getGeneratedNameForNode(node))); } } statements = append(statements, setOriginalNode(setTextRange(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList(variables, languageVersion >= 2 ? 2 : 0)), node), node)); } } else if (namespaceDeclaration && isDefaultImport(node)) { statements = append(statements, factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ setOriginalNode(setTextRange(factory2.createVariableDeclaration(factory2.cloneNode(namespaceDeclaration.name), undefined, undefined, factory2.getGeneratedNameForNode(node)), node), node) ], languageVersion >= 2 ? 2 : 0))); } statements = appendExportsOfImportDeclaration(statements, node); return singleOrMany(statements); } function createRequireCall2(importNode) { const moduleName = getExternalModuleNameLiteral(factory2, importNode, currentSourceFile, host, resolver, compilerOptions); const args = []; if (moduleName) { args.push(rewriteModuleSpecifier(moduleName, compilerOptions)); } return factory2.createCallExpression(factory2.createIdentifier("require"), undefined, args); } function visitTopLevelImportEqualsDeclaration(node) { Debug.assert(isExternalModuleImportEqualsDeclaration(node), "import= for internal module references should be handled in an earlier transformer."); let statements; if (moduleKind !== 2) { if (hasSyntacticModifier(node, 32)) { statements = append(statements, setOriginalNode(setTextRange(factory2.createExpressionStatement(createExportExpression(node.name, createRequireCall2(node))), node), node)); } else { statements = append(statements, setOriginalNode(setTextRange(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(factory2.cloneNode(node.name), undefined, undefined, createRequireCall2(node)) ], languageVersion >= 2 ? 2 : 0)), node), node)); } } else { if (hasSyntacticModifier(node, 32)) { statements = append(statements, setOriginalNode(setTextRange(factory2.createExpressionStatement(createExportExpression(factory2.getExportName(node), factory2.getLocalName(node))), node), node)); } } statements = appendExportsOfImportEqualsDeclaration(statements, node); return singleOrMany(statements); } function visitTopLevelExportDeclaration(node) { if (!node.moduleSpecifier) { return; } const generatedName = factory2.getGeneratedNameForNode(node); if (node.exportClause && isNamedExports(node.exportClause)) { const statements = []; if (moduleKind !== 2) { statements.push(setOriginalNode(setTextRange(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(generatedName, undefined, undefined, createRequireCall2(node)) ])), node), node)); } for (const specifier of node.exportClause.elements) { const specifierName = specifier.propertyName || specifier.name; const exportNeedsImportDefault = !!getESModuleInterop(compilerOptions) && !(getInternalEmitFlags(node) & 2) && moduleExportNameIsDefault(specifierName); const target = exportNeedsImportDefault ? emitHelpers().createImportDefaultHelper(generatedName) : generatedName; const exportedValue = specifierName.kind === 11 ? factory2.createElementAccessExpression(target, specifierName) : factory2.createPropertyAccessExpression(target, specifierName); statements.push(setOriginalNode(setTextRange(factory2.createExpressionStatement(createExportExpression(specifier.name.kind === 11 ? factory2.cloneNode(specifier.name) : factory2.getExportName(specifier), exportedValue, undefined, true)), specifier), specifier)); } return singleOrMany(statements); } else if (node.exportClause) { const statements = []; statements.push(setOriginalNode(setTextRange(factory2.createExpressionStatement(createExportExpression(factory2.cloneNode(node.exportClause.name), getHelperExpressionForExport(node, moduleKind !== 2 ? createRequireCall2(node) : isExportNamespaceAsDefaultDeclaration(node) ? generatedName : node.exportClause.name.kind === 11 ? generatedName : factory2.createIdentifier(idText(node.exportClause.name))))), node), node)); return singleOrMany(statements); } else { return setOriginalNode(setTextRange(factory2.createExpressionStatement(emitHelpers().createExportStarHelper(moduleKind !== 2 ? createRequireCall2(node) : generatedName)), node), node); } } function visitTopLevelExportAssignment(node) { if (node.isExportEquals) { return; } return createExportStatement(factory2.createIdentifier("default"), visitNode(node.expression, visitor, isExpression), node, true); } function visitFunctionDeclaration(node) { let statements; if (hasSyntacticModifier(node, 32)) { statements = append(statements, setOriginalNode(setTextRange(factory2.createFunctionDeclaration(visitNodes2(node.modifiers, modifierVisitor, isModifier), node.asteriskToken, factory2.getDeclarationName(node, true, true), undefined, visitNodes2(node.parameters, visitor, isParameter), undefined, visitEachChild(node.body, visitor, context)), node), node)); } else { statements = append(statements, visitEachChild(node, visitor, context)); } return singleOrMany(statements); } function visitClassDeclaration(node) { let statements; if (hasSyntacticModifier(node, 32)) { statements = append(statements, setOriginalNode(setTextRange(factory2.createClassDeclaration(visitNodes2(node.modifiers, modifierVisitor, isModifierLike), factory2.getDeclarationName(node, true, true), undefined, visitNodes2(node.heritageClauses, visitor, isHeritageClause), visitNodes2(node.members, visitor, isClassElement)), node), node)); } else { statements = append(statements, visitEachChild(node, visitor, context)); } statements = appendExportsOfHoistedDeclaration(statements, node); return singleOrMany(statements); } function visitVariableStatement(node) { let statements; let variables; let expressions; if (hasSyntacticModifier(node, 32)) { let modifiers; let removeCommentsOnExpressions = false; for (const variable of node.declarationList.declarations) { if (isIdentifier(variable.name) && isLocalName(variable.name)) { if (!modifiers) { modifiers = visitNodes2(node.modifiers, modifierVisitor, isModifier); } if (variable.initializer) { const updatedVariable = factory2.updateVariableDeclaration(variable, variable.name, undefined, undefined, createExportExpression(variable.name, visitNode(variable.initializer, visitor, isExpression))); variables = append(variables, updatedVariable); } else { variables = append(variables, variable); } } else if (variable.initializer) { if (!isBindingPattern(variable.name) && (isArrowFunction(variable.initializer) || isFunctionExpression(variable.initializer) || isClassExpression(variable.initializer))) { const expression = factory2.createAssignment(setTextRange(factory2.createPropertyAccessExpression(factory2.createIdentifier("exports"), variable.name), variable.name), factory2.createIdentifier(getTextOfIdentifierOrLiteral(variable.name))); const updatedVariable = factory2.createVariableDeclaration(variable.name, variable.exclamationToken, variable.type, visitNode(variable.initializer, visitor, isExpression)); variables = append(variables, updatedVariable); expressions = append(expressions, expression); removeCommentsOnExpressions = true; } else { expressions = append(expressions, transformInitializedVariable(variable)); } } } if (variables) { statements = append(statements, factory2.updateVariableStatement(node, modifiers, factory2.updateVariableDeclarationList(node.declarationList, variables))); } if (expressions) { const statement = setOriginalNode(setTextRange(factory2.createExpressionStatement(factory2.inlineExpressions(expressions)), node), node); if (removeCommentsOnExpressions) { removeAllComments(statement); } statements = append(statements, statement); } } else { statements = append(statements, visitEachChild(node, visitor, context)); } statements = appendExportsOfVariableStatement(statements, node); return singleOrMany(statements); } function createAllExportExpressions(name, value, location) { const exportedNames = getExports(name); if (exportedNames) { let expression = isExportName(name) ? value : factory2.createAssignment(name, value); for (const exportName of exportedNames) { setEmitFlags(expression, 8); expression = createExportExpression(exportName, expression, location); } return expression; } return factory2.createAssignment(name, value); } function transformInitializedVariable(node) { if (isBindingPattern(node.name)) { return flattenDestructuringAssignment(visitNode(node, visitor, isInitializedVariable), visitor, context, 0, false, createAllExportExpressions); } else { return factory2.createAssignment(setTextRange(factory2.createPropertyAccessExpression(factory2.createIdentifier("exports"), node.name), node.name), node.initializer ? visitNode(node.initializer, visitor, isExpression) : factory2.createVoidZero()); } } function appendExportsOfImportDeclaration(statements, decl) { if (currentModuleInfo.exportEquals) { return statements; } const importClause = decl.importClause; if (!importClause) { return statements; } const seen = new IdentifierNameMap; if (importClause.name) { statements = appendExportsOfDeclaration(statements, seen, importClause); } const namedBindings = importClause.namedBindings; if (namedBindings) { switch (namedBindings.kind) { case 275: statements = appendExportsOfDeclaration(statements, seen, namedBindings); break; case 276: for (const importBinding of namedBindings.elements) { statements = appendExportsOfDeclaration(statements, seen, importBinding, true); } break; } } return statements; } function appendExportsOfImportEqualsDeclaration(statements, decl) { if (currentModuleInfo.exportEquals) { return statements; } return appendExportsOfDeclaration(statements, new IdentifierNameMap, decl); } function appendExportsOfVariableStatement(statements, node) { return appendExportsOfVariableDeclarationList(statements, node.declarationList, false); } function appendExportsOfVariableDeclarationList(statements, node, isForInOrOfInitializer) { if (currentModuleInfo.exportEquals) { return statements; } for (const decl of node.declarations) { statements = appendExportsOfBindingElement(statements, decl, isForInOrOfInitializer); } return statements; } function appendExportsOfBindingElement(statements, decl, isForInOrOfInitializer) { if (currentModuleInfo.exportEquals) { return statements; } if (isBindingPattern(decl.name)) { for (const element of decl.name.elements) { if (!isOmittedExpression(element)) { statements = appendExportsOfBindingElement(statements, element, isForInOrOfInitializer); } } } else if (!isGeneratedIdentifier(decl.name) && (!isVariableDeclaration(decl) || decl.initializer || isForInOrOfInitializer)) { statements = appendExportsOfDeclaration(statements, new IdentifierNameMap, decl); } return statements; } function appendExportsOfHoistedDeclaration(statements, decl) { if (currentModuleInfo.exportEquals) { return statements; } const seen = new IdentifierNameMap; if (hasSyntacticModifier(decl, 32)) { const exportName = hasSyntacticModifier(decl, 2048) ? factory2.createIdentifier("default") : factory2.getDeclarationName(decl); statements = appendExportStatement(statements, seen, exportName, factory2.getLocalName(decl), decl); } if (decl.name) { statements = appendExportsOfDeclaration(statements, seen, decl); } return statements; } function appendExportsOfDeclaration(statements, seen, decl, liveBinding) { const name = factory2.getDeclarationName(decl); const exportSpecifiers = currentModuleInfo.exportSpecifiers.get(name); if (exportSpecifiers) { for (const exportSpecifier of exportSpecifiers) { statements = appendExportStatement(statements, seen, exportSpecifier.name, name, exportSpecifier.name, undefined, liveBinding); } } return statements; } function appendExportStatement(statements, seen, exportName, expression, location, allowComments, liveBinding) { if (exportName.kind !== 11) { if (seen.has(exportName)) { return statements; } seen.set(exportName, true); } statements = append(statements, createExportStatement(exportName, expression, location, allowComments, liveBinding)); return statements; } function createUnderscoreUnderscoreESModule() { const statement = factory2.createExpressionStatement(factory2.createCallExpression(factory2.createPropertyAccessExpression(factory2.createIdentifier("Object"), "defineProperty"), undefined, [ factory2.createIdentifier("exports"), factory2.createStringLiteral("__esModule"), factory2.createObjectLiteralExpression([ factory2.createPropertyAssignment("value", factory2.createTrue()) ]) ])); setEmitFlags(statement, 2097152); return statement; } function createExportStatement(name, value, location, allowComments, liveBinding) { const statement = setTextRange(factory2.createExpressionStatement(createExportExpression(name, value, undefined, liveBinding)), location); startOnNewLine(statement); if (!allowComments) { setEmitFlags(statement, 3072); } return statement; } function createExportExpression(name, value, location, liveBinding) { return setTextRange(liveBinding ? factory2.createCallExpression(factory2.createPropertyAccessExpression(factory2.createIdentifier("Object"), "defineProperty"), undefined, [ factory2.createIdentifier("exports"), factory2.createStringLiteralFromNode(name), factory2.createObjectLiteralExpression([ factory2.createPropertyAssignment("enumerable", factory2.createTrue()), factory2.createPropertyAssignment("get", factory2.createFunctionExpression(undefined, undefined, undefined, undefined, [], undefined, factory2.createBlock([factory2.createReturnStatement(value)]))) ]) ]) : factory2.createAssignment(name.kind === 11 ? factory2.createElementAccessExpression(factory2.createIdentifier("exports"), factory2.cloneNode(name)) : factory2.createPropertyAccessExpression(factory2.createIdentifier("exports"), factory2.cloneNode(name)), value), location); } function modifierVisitor(node) { switch (node.kind) { case 95: case 90: return; } return node; } function onEmitNode(hint, node, emitCallback) { if (node.kind === 308) { currentSourceFile = node; currentModuleInfo = moduleInfoMap[getOriginalNodeId(currentSourceFile)]; previousOnEmitNode(hint, node, emitCallback); currentSourceFile = undefined; currentModuleInfo = undefined; } else { previousOnEmitNode(hint, node, emitCallback); } } function onSubstituteNode(hint, node) { node = previousOnSubstituteNode(hint, node); if (node.id && noSubstitution[node.id]) { return node; } if (hint === 1) { return substituteExpression(node); } else if (isShorthandPropertyAssignment(node)) { return substituteShorthandPropertyAssignment(node); } return node; } function substituteShorthandPropertyAssignment(node) { const name = node.name; const exportedOrImportedName = substituteExpressionIdentifier(name); if (exportedOrImportedName !== name) { if (node.objectAssignmentInitializer) { const initializer = factory2.createAssignment(exportedOrImportedName, node.objectAssignmentInitializer); return setTextRange(factory2.createPropertyAssignment(name, initializer), node); } return setTextRange(factory2.createPropertyAssignment(name, exportedOrImportedName), node); } return node; } function substituteExpression(node) { switch (node.kind) { case 80: return substituteExpressionIdentifier(node); case 214: return substituteCallExpression(node); case 216: return substituteTaggedTemplateExpression(node); case 227: return substituteBinaryExpression(node); } return node; } function substituteCallExpression(node) { if (isIdentifier(node.expression)) { const expression = substituteExpressionIdentifier(node.expression); noSubstitution[getNodeId(expression)] = true; if (!isIdentifier(expression) && !(getEmitFlags(node.expression) & 8192)) { return addInternalEmitFlags(factory2.updateCallExpression(node, expression, undefined, node.arguments), 16); } } return node; } function substituteTaggedTemplateExpression(node) { if (isIdentifier(node.tag)) { const tag = substituteExpressionIdentifier(node.tag); noSubstitution[getNodeId(tag)] = true; if (!isIdentifier(tag) && !(getEmitFlags(node.tag) & 8192)) { return addInternalEmitFlags(factory2.updateTaggedTemplateExpression(node, tag, undefined, node.template), 16); } } return node; } function substituteExpressionIdentifier(node) { var _a, _b; if (getEmitFlags(node) & 8192) { const externalHelpersModuleName = getExternalHelpersModuleName(currentSourceFile); if (externalHelpersModuleName) { return factory2.createPropertyAccessExpression(externalHelpersModuleName, node); } return node; } else if (!(isGeneratedIdentifier(node) && !(node.emitNode.autoGenerate.flags & 64)) && !isLocalName(node)) { const exportContainer = resolver.getReferencedExportContainer(node, isExportName(node)); if (exportContainer && exportContainer.kind === 308) { return setTextRange(factory2.createPropertyAccessExpression(factory2.createIdentifier("exports"), factory2.cloneNode(node)), node); } const importDeclaration = resolver.getReferencedImportDeclaration(node); if (importDeclaration) { if (isImportClause(importDeclaration)) { return setTextRange(factory2.createPropertyAccessExpression(factory2.getGeneratedNameForNode(importDeclaration.parent), factory2.createIdentifier("default")), node); } else if (isImportSpecifier(importDeclaration)) { const name = importDeclaration.propertyName || importDeclaration.name; const target = factory2.getGeneratedNameForNode(((_b = (_a = importDeclaration.parent) == null ? undefined : _a.parent) == null ? undefined : _b.parent) || importDeclaration); return setTextRange(name.kind === 11 ? factory2.createElementAccessExpression(target, factory2.cloneNode(name)) : factory2.createPropertyAccessExpression(target, factory2.cloneNode(name)), node); } } } return node; } function substituteBinaryExpression(node) { if (isAssignmentOperator(node.operatorToken.kind) && isIdentifier(node.left) && (!isGeneratedIdentifier(node.left) || isFileLevelReservedGeneratedIdentifier(node.left)) && !isLocalName(node.left)) { const exportedNames = getExports(node.left); if (exportedNames) { let expression = node; for (const exportName of exportedNames) { noSubstitution[getNodeId(expression)] = true; expression = createExportExpression(exportName, expression, node); } return expression; } } return node; } function getExports(name) { if (!isGeneratedIdentifier(name)) { const importDeclaration = resolver.getReferencedImportDeclaration(name); if (importDeclaration) { return currentModuleInfo == null ? undefined : currentModuleInfo.exportedBindings[getOriginalNodeId(importDeclaration)]; } const bindingsSet = /* @__PURE__ */ new Set; const declarations = resolver.getReferencedValueDeclarations(name); if (declarations) { for (const declaration of declarations) { const bindings = currentModuleInfo == null ? undefined : currentModuleInfo.exportedBindings[getOriginalNodeId(declaration)]; if (bindings) { for (const binding of bindings) { bindingsSet.add(binding); } } } if (bindingsSet.size) { return arrayFrom(bindingsSet); } } } else if (isFileLevelReservedGeneratedIdentifier(name)) { const exportSpecifiers = currentModuleInfo == null ? undefined : currentModuleInfo.exportSpecifiers.get(name); if (exportSpecifiers) { const exportedNames = []; for (const exportSpecifier of exportSpecifiers) { exportedNames.push(exportSpecifier.name); } return exportedNames; } } } } var dynamicImportUMDHelper = { name: "typescript:dynamicimport-sync-require", scoped: true, text: ` var __syncRequire = typeof module === "object" && typeof module.exports === "object";` }; function transformSystemModule(context) { const { factory: factory2, startLexicalEnvironment, endLexicalEnvironment, hoistVariableDeclaration } = context; const compilerOptions = context.getCompilerOptions(); const resolver = context.getEmitResolver(); const host = context.getEmitHost(); const previousOnSubstituteNode = context.onSubstituteNode; const previousOnEmitNode = context.onEmitNode; context.onSubstituteNode = onSubstituteNode; context.onEmitNode = onEmitNode; context.enableSubstitution(80); context.enableSubstitution(305); context.enableSubstitution(227); context.enableSubstitution(237); context.enableEmitNotification(308); const moduleInfoMap = []; const exportFunctionsMap = []; const noSubstitutionMap = []; const contextObjectMap = []; let currentSourceFile; let moduleInfo; let exportFunction; let contextObject; let hoistedStatements; let enclosingBlockScopedContainer; let noSubstitution; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile || !(isEffectiveExternalModule(node, compilerOptions) || node.transformFlags & 8388608)) { return node; } const id = getOriginalNodeId(node); currentSourceFile = node; enclosingBlockScopedContainer = node; moduleInfo = moduleInfoMap[id] = collectExternalModuleInfo(context, node); exportFunction = factory2.createUniqueName("exports"); exportFunctionsMap[id] = exportFunction; contextObject = contextObjectMap[id] = factory2.createUniqueName("context"); const dependencyGroups = collectDependencyGroups(moduleInfo.externalImports); const moduleBodyBlock = createSystemModuleBody(node, dependencyGroups); const moduleBodyFunction = factory2.createFunctionExpression(undefined, undefined, undefined, undefined, [ factory2.createParameterDeclaration(undefined, undefined, exportFunction), factory2.createParameterDeclaration(undefined, undefined, contextObject) ], undefined, moduleBodyBlock); const moduleName = tryGetModuleNameFromFile(factory2, node, host, compilerOptions); const dependencies = factory2.createArrayLiteralExpression(map(dependencyGroups, (dependencyGroup) => dependencyGroup.name)); const updated = setEmitFlags(factory2.updateSourceFile(node, setTextRange(factory2.createNodeArray([ factory2.createExpressionStatement(factory2.createCallExpression(factory2.createPropertyAccessExpression(factory2.createIdentifier("System"), "register"), undefined, moduleName ? [moduleName, dependencies, moduleBodyFunction] : [dependencies, moduleBodyFunction])) ]), node.statements)), 2048); if (!compilerOptions.outFile) { moveEmitHelpers(updated, moduleBodyBlock, (helper) => !helper.scoped); } if (noSubstitution) { noSubstitutionMap[id] = noSubstitution; noSubstitution = undefined; } currentSourceFile = undefined; moduleInfo = undefined; exportFunction = undefined; contextObject = undefined; hoistedStatements = undefined; enclosingBlockScopedContainer = undefined; return updated; } function collectDependencyGroups(externalImports) { const groupIndices = /* @__PURE__ */ new Map; const dependencyGroups = []; for (const externalImport of externalImports) { const externalModuleName = getExternalModuleNameLiteral(factory2, externalImport, currentSourceFile, host, resolver, compilerOptions); if (externalModuleName) { const text = externalModuleName.text; const groupIndex = groupIndices.get(text); if (groupIndex !== undefined) { dependencyGroups[groupIndex].externalImports.push(externalImport); } else { groupIndices.set(text, dependencyGroups.length); dependencyGroups.push({ name: externalModuleName, externalImports: [externalImport] }); } } } return dependencyGroups; } function createSystemModuleBody(node, dependencyGroups) { const statements = []; startLexicalEnvironment(); const ensureUseStrict = getAlwaysStrict(compilerOptions) || isExternalModule(currentSourceFile); const statementOffset = factory2.copyPrologue(node.statements, statements, ensureUseStrict, topLevelVisitor); statements.push(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration("__moduleName", undefined, undefined, factory2.createLogicalAnd(contextObject, factory2.createPropertyAccessExpression(contextObject, "id"))) ]))); visitNode(moduleInfo.externalHelpersImportDeclaration, topLevelVisitor, isStatement); const executeStatements = visitNodes2(node.statements, topLevelVisitor, isStatement, statementOffset); addRange(statements, hoistedStatements); insertStatementsAfterStandardPrologue(statements, endLexicalEnvironment()); const exportStarFunction = addExportStarIfNeeded(statements); const modifiers = node.transformFlags & 2097152 ? factory2.createModifiersFromModifierFlags(1024) : undefined; const moduleObject = factory2.createObjectLiteralExpression([ factory2.createPropertyAssignment("setters", createSettersArray(exportStarFunction, dependencyGroups)), factory2.createPropertyAssignment("execute", factory2.createFunctionExpression(modifiers, undefined, undefined, undefined, [], undefined, factory2.createBlock(executeStatements, true))) ], true); statements.push(factory2.createReturnStatement(moduleObject)); return factory2.createBlock(statements, true); } function addExportStarIfNeeded(statements) { if (!moduleInfo.hasExportStarsToExportValues) { return; } if (!some(moduleInfo.exportedNames) && moduleInfo.exportedFunctions.size === 0 && moduleInfo.exportSpecifiers.size === 0) { let hasExportDeclarationWithExportClause = false; for (const externalImport of moduleInfo.externalImports) { if (externalImport.kind === 279 && externalImport.exportClause) { hasExportDeclarationWithExportClause = true; break; } } if (!hasExportDeclarationWithExportClause) { const exportStarFunction2 = createExportStarFunction(undefined); statements.push(exportStarFunction2); return exportStarFunction2.name; } } const exportedNames = []; if (moduleInfo.exportedNames) { for (const exportedLocalName of moduleInfo.exportedNames) { if (moduleExportNameIsDefault(exportedLocalName)) { continue; } exportedNames.push(factory2.createPropertyAssignment(factory2.createStringLiteralFromNode(exportedLocalName), factory2.createTrue())); } } for (const f of moduleInfo.exportedFunctions) { if (hasSyntacticModifier(f, 2048)) { continue; } Debug.assert(!!f.name); exportedNames.push(factory2.createPropertyAssignment(factory2.createStringLiteralFromNode(f.name), factory2.createTrue())); } const exportedNamesStorageRef = factory2.createUniqueName("exportedNames"); statements.push(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(exportedNamesStorageRef, undefined, undefined, factory2.createObjectLiteralExpression(exportedNames, true)) ]))); const exportStarFunction = createExportStarFunction(exportedNamesStorageRef); statements.push(exportStarFunction); return exportStarFunction.name; } function createExportStarFunction(localNames) { const exportStarFunction = factory2.createUniqueName("exportStar"); const m = factory2.createIdentifier("m"); const n = factory2.createIdentifier("n"); const exports22 = factory2.createIdentifier("exports"); let condition = factory2.createStrictInequality(n, factory2.createStringLiteral("default")); if (localNames) { condition = factory2.createLogicalAnd(condition, factory2.createLogicalNot(factory2.createCallExpression(factory2.createPropertyAccessExpression(localNames, "hasOwnProperty"), undefined, [n]))); } return factory2.createFunctionDeclaration(undefined, undefined, exportStarFunction, undefined, [factory2.createParameterDeclaration(undefined, undefined, m)], undefined, factory2.createBlock([ factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(exports22, undefined, undefined, factory2.createObjectLiteralExpression([])) ])), factory2.createForInStatement(factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(n) ]), m, factory2.createBlock([ setEmitFlags(factory2.createIfStatement(condition, factory2.createExpressionStatement(factory2.createAssignment(factory2.createElementAccessExpression(exports22, n), factory2.createElementAccessExpression(m, n)))), 1) ])), factory2.createExpressionStatement(factory2.createCallExpression(exportFunction, undefined, [exports22])) ], true)); } function createSettersArray(exportStarFunction, dependencyGroups) { const setters = []; for (const group2 of dependencyGroups) { const localName = forEach(group2.externalImports, (i) => getLocalNameForExternalImport(factory2, i, currentSourceFile)); const parameterName = localName ? factory2.getGeneratedNameForNode(localName) : factory2.createUniqueName(""); const statements = []; for (const entry of group2.externalImports) { const importVariableName = getLocalNameForExternalImport(factory2, entry, currentSourceFile); switch (entry.kind) { case 273: if (!entry.importClause) { break; } case 272: Debug.assert(importVariableName !== undefined); statements.push(factory2.createExpressionStatement(factory2.createAssignment(importVariableName, parameterName))); if (hasSyntacticModifier(entry, 32)) { statements.push(factory2.createExpressionStatement(factory2.createCallExpression(exportFunction, undefined, [ factory2.createStringLiteral(idText(importVariableName)), parameterName ]))); } break; case 279: Debug.assert(importVariableName !== undefined); if (entry.exportClause) { if (isNamedExports(entry.exportClause)) { const properties = []; for (const e of entry.exportClause.elements) { properties.push(factory2.createPropertyAssignment(factory2.createStringLiteral(moduleExportNameTextUnescaped(e.name)), factory2.createElementAccessExpression(parameterName, factory2.createStringLiteral(moduleExportNameTextUnescaped(e.propertyName || e.name))))); } statements.push(factory2.createExpressionStatement(factory2.createCallExpression(exportFunction, undefined, [factory2.createObjectLiteralExpression(properties, true)]))); } else { statements.push(factory2.createExpressionStatement(factory2.createCallExpression(exportFunction, undefined, [ factory2.createStringLiteral(moduleExportNameTextUnescaped(entry.exportClause.name)), parameterName ]))); } } else { statements.push(factory2.createExpressionStatement(factory2.createCallExpression(exportStarFunction, undefined, [parameterName]))); } break; } } setters.push(factory2.createFunctionExpression(undefined, undefined, undefined, undefined, [factory2.createParameterDeclaration(undefined, undefined, parameterName)], undefined, factory2.createBlock(statements, true))); } return factory2.createArrayLiteralExpression(setters, true); } function topLevelVisitor(node) { switch (node.kind) { case 273: return visitImportDeclaration(node); case 272: return visitImportEqualsDeclaration(node); case 279: return visitExportDeclaration(node); case 278: return visitExportAssignment(node); default: return topLevelNestedVisitor(node); } } function visitImportDeclaration(node) { let statements; if (node.importClause) { hoistVariableDeclaration(getLocalNameForExternalImport(factory2, node, currentSourceFile)); } return singleOrMany(appendExportsOfImportDeclaration(statements, node)); } function visitExportDeclaration(node) { Debug.assertIsDefined(node); return; } function visitImportEqualsDeclaration(node) { Debug.assert(isExternalModuleImportEqualsDeclaration(node), "import= for internal module references should be handled in an earlier transformer."); let statements; hoistVariableDeclaration(getLocalNameForExternalImport(factory2, node, currentSourceFile)); return singleOrMany(appendExportsOfImportEqualsDeclaration(statements, node)); } function visitExportAssignment(node) { if (node.isExportEquals) { return; } const expression = visitNode(node.expression, visitor, isExpression); return createExportStatement(factory2.createIdentifier("default"), expression, true); } function visitFunctionDeclaration(node) { if (hasSyntacticModifier(node, 32)) { hoistedStatements = append(hoistedStatements, factory2.updateFunctionDeclaration(node, visitNodes2(node.modifiers, modifierVisitor, isModifierLike), node.asteriskToken, factory2.getDeclarationName(node, true, true), undefined, visitNodes2(node.parameters, visitor, isParameter), undefined, visitNode(node.body, visitor, isBlock))); } else { hoistedStatements = append(hoistedStatements, visitEachChild(node, visitor, context)); } hoistedStatements = appendExportsOfHoistedDeclaration(hoistedStatements, node); return; } function visitClassDeclaration(node) { let statements; const name = factory2.getLocalName(node); hoistVariableDeclaration(name); statements = append(statements, setTextRange(factory2.createExpressionStatement(factory2.createAssignment(name, setTextRange(factory2.createClassExpression(visitNodes2(node.modifiers, modifierVisitor, isModifierLike), node.name, undefined, visitNodes2(node.heritageClauses, visitor, isHeritageClause), visitNodes2(node.members, visitor, isClassElement)), node))), node)); statements = appendExportsOfHoistedDeclaration(statements, node); return singleOrMany(statements); } function visitVariableStatement(node) { if (!shouldHoistVariableDeclarationList(node.declarationList)) { return visitNode(node, visitor, isStatement); } let statements; if (isVarUsing(node.declarationList) || isVarAwaitUsing(node.declarationList)) { const modifiers = visitNodes2(node.modifiers, modifierVisitor, isModifierLike); const declarations = []; for (const variable of node.declarationList.declarations) { declarations.push(factory2.updateVariableDeclaration(variable, factory2.getGeneratedNameForNode(variable.name), undefined, undefined, transformInitializedVariable(variable, false))); } const declarationList = factory2.updateVariableDeclarationList(node.declarationList, declarations); statements = append(statements, factory2.updateVariableStatement(node, modifiers, declarationList)); } else { let expressions; const isExportedDeclaration = hasSyntacticModifier(node, 32); for (const variable of node.declarationList.declarations) { if (variable.initializer) { expressions = append(expressions, transformInitializedVariable(variable, isExportedDeclaration)); } else { hoistBindingElement(variable); } } if (expressions) { statements = append(statements, setTextRange(factory2.createExpressionStatement(factory2.inlineExpressions(expressions)), node)); } } statements = appendExportsOfVariableStatement(statements, node, false); return singleOrMany(statements); } function hoistBindingElement(node) { if (isBindingPattern(node.name)) { for (const element of node.name.elements) { if (!isOmittedExpression(element)) { hoistBindingElement(element); } } } else { hoistVariableDeclaration(factory2.cloneNode(node.name)); } } function shouldHoistVariableDeclarationList(node) { return (getEmitFlags(node) & 4194304) === 0 && (enclosingBlockScopedContainer.kind === 308 || (getOriginalNode(node).flags & 7) === 0); } function transformInitializedVariable(node, isExportedDeclaration) { const createAssignment = isExportedDeclaration ? createExportedVariableAssignment : createNonExportedVariableAssignment; return isBindingPattern(node.name) ? flattenDestructuringAssignment(node, visitor, context, 0, false, createAssignment) : node.initializer ? createAssignment(node.name, visitNode(node.initializer, visitor, isExpression)) : node.name; } function createExportedVariableAssignment(name, value, location) { return createVariableAssignment(name, value, location, true); } function createNonExportedVariableAssignment(name, value, location) { return createVariableAssignment(name, value, location, false); } function createVariableAssignment(name, value, location, isExportedDeclaration) { hoistVariableDeclaration(factory2.cloneNode(name)); return isExportedDeclaration ? createExportExpression(name, preventSubstitution(setTextRange(factory2.createAssignment(name, value), location))) : preventSubstitution(setTextRange(factory2.createAssignment(name, value), location)); } function appendExportsOfImportDeclaration(statements, decl) { if (moduleInfo.exportEquals) { return statements; } const importClause = decl.importClause; if (!importClause) { return statements; } if (importClause.name) { statements = appendExportsOfDeclaration(statements, importClause); } const namedBindings = importClause.namedBindings; if (namedBindings) { switch (namedBindings.kind) { case 275: statements = appendExportsOfDeclaration(statements, namedBindings); break; case 276: for (const importBinding of namedBindings.elements) { statements = appendExportsOfDeclaration(statements, importBinding); } break; } } return statements; } function appendExportsOfImportEqualsDeclaration(statements, decl) { if (moduleInfo.exportEquals) { return statements; } return appendExportsOfDeclaration(statements, decl); } function appendExportsOfVariableStatement(statements, node, exportSelf) { if (moduleInfo.exportEquals) { return statements; } for (const decl of node.declarationList.declarations) { if (decl.initializer || exportSelf) { statements = appendExportsOfBindingElement(statements, decl, exportSelf); } } return statements; } function appendExportsOfBindingElement(statements, decl, exportSelf) { if (moduleInfo.exportEquals) { return statements; } if (isBindingPattern(decl.name)) { for (const element of decl.name.elements) { if (!isOmittedExpression(element)) { statements = appendExportsOfBindingElement(statements, element, exportSelf); } } } else if (!isGeneratedIdentifier(decl.name)) { let excludeName; if (exportSelf) { statements = appendExportStatement(statements, decl.name, factory2.getLocalName(decl)); excludeName = idText(decl.name); } statements = appendExportsOfDeclaration(statements, decl, excludeName); } return statements; } function appendExportsOfHoistedDeclaration(statements, decl) { if (moduleInfo.exportEquals) { return statements; } let excludeName; if (hasSyntacticModifier(decl, 32)) { const exportName = hasSyntacticModifier(decl, 2048) ? factory2.createStringLiteral("default") : decl.name; statements = appendExportStatement(statements, exportName, factory2.getLocalName(decl)); excludeName = getTextOfIdentifierOrLiteral(exportName); } if (decl.name) { statements = appendExportsOfDeclaration(statements, decl, excludeName); } return statements; } function appendExportsOfDeclaration(statements, decl, excludeName) { if (moduleInfo.exportEquals) { return statements; } const name = factory2.getDeclarationName(decl); const exportSpecifiers = moduleInfo.exportSpecifiers.get(name); if (exportSpecifiers) { for (const exportSpecifier of exportSpecifiers) { if (moduleExportNameTextUnescaped(exportSpecifier.name) !== excludeName) { statements = appendExportStatement(statements, exportSpecifier.name, name); } } } return statements; } function appendExportStatement(statements, exportName, expression, allowComments) { statements = append(statements, createExportStatement(exportName, expression, allowComments)); return statements; } function createExportStatement(name, value, allowComments) { const statement = factory2.createExpressionStatement(createExportExpression(name, value)); startOnNewLine(statement); if (!allowComments) { setEmitFlags(statement, 3072); } return statement; } function createExportExpression(name, value) { const exportName = isIdentifier(name) ? factory2.createStringLiteralFromNode(name) : name; setEmitFlags(value, getEmitFlags(value) | 3072); return setCommentRange(factory2.createCallExpression(exportFunction, undefined, [exportName, value]), value); } function topLevelNestedVisitor(node) { switch (node.kind) { case 244: return visitVariableStatement(node); case 263: return visitFunctionDeclaration(node); case 264: return visitClassDeclaration(node); case 249: return visitForStatement(node, true); case 250: return visitForInStatement(node); case 251: return visitForOfStatement(node); case 247: return visitDoStatement(node); case 248: return visitWhileStatement(node); case 257: return visitLabeledStatement(node); case 255: return visitWithStatement(node); case 246: return visitIfStatement(node); case 256: return visitSwitchStatement(node); case 270: return visitCaseBlock(node); case 297: return visitCaseClause(node); case 298: return visitDefaultClause(node); case 259: return visitTryStatement(node); case 300: return visitCatchClause(node); case 242: return visitBlock(node); default: return visitor(node); } } function visitForStatement(node, isTopLevel) { const savedEnclosingBlockScopedContainer = enclosingBlockScopedContainer; enclosingBlockScopedContainer = node; node = factory2.updateForStatement(node, visitNode(node.initializer, isTopLevel ? visitForInitializer : discardedValueVisitor, isForInitializer), visitNode(node.condition, visitor, isExpression), visitNode(node.incrementor, discardedValueVisitor, isExpression), visitIterationBody(node.statement, isTopLevel ? topLevelNestedVisitor : visitor, context)); enclosingBlockScopedContainer = savedEnclosingBlockScopedContainer; return node; } function visitForInStatement(node) { const savedEnclosingBlockScopedContainer = enclosingBlockScopedContainer; enclosingBlockScopedContainer = node; node = factory2.updateForInStatement(node, visitForInitializer(node.initializer), visitNode(node.expression, visitor, isExpression), visitIterationBody(node.statement, topLevelNestedVisitor, context)); enclosingBlockScopedContainer = savedEnclosingBlockScopedContainer; return node; } function visitForOfStatement(node) { const savedEnclosingBlockScopedContainer = enclosingBlockScopedContainer; enclosingBlockScopedContainer = node; node = factory2.updateForOfStatement(node, node.awaitModifier, visitForInitializer(node.initializer), visitNode(node.expression, visitor, isExpression), visitIterationBody(node.statement, topLevelNestedVisitor, context)); enclosingBlockScopedContainer = savedEnclosingBlockScopedContainer; return node; } function shouldHoistForInitializer(node) { return isVariableDeclarationList(node) && shouldHoistVariableDeclarationList(node); } function visitForInitializer(node) { if (shouldHoistForInitializer(node)) { let expressions; for (const variable of node.declarations) { expressions = append(expressions, transformInitializedVariable(variable, false)); if (!variable.initializer) { hoistBindingElement(variable); } } return expressions ? factory2.inlineExpressions(expressions) : factory2.createOmittedExpression(); } else { return visitNode(node, discardedValueVisitor, isForInitializer); } } function visitDoStatement(node) { return factory2.updateDoStatement(node, visitIterationBody(node.statement, topLevelNestedVisitor, context), visitNode(node.expression, visitor, isExpression)); } function visitWhileStatement(node) { return factory2.updateWhileStatement(node, visitNode(node.expression, visitor, isExpression), visitIterationBody(node.statement, topLevelNestedVisitor, context)); } function visitLabeledStatement(node) { return factory2.updateLabeledStatement(node, node.label, visitNode(node.statement, topLevelNestedVisitor, isStatement, factory2.liftToBlock) ?? factory2.createExpressionStatement(factory2.createIdentifier(""))); } function visitWithStatement(node) { return factory2.updateWithStatement(node, visitNode(node.expression, visitor, isExpression), Debug.checkDefined(visitNode(node.statement, topLevelNestedVisitor, isStatement, factory2.liftToBlock))); } function visitIfStatement(node) { return factory2.updateIfStatement(node, visitNode(node.expression, visitor, isExpression), visitNode(node.thenStatement, topLevelNestedVisitor, isStatement, factory2.liftToBlock) ?? factory2.createBlock([]), visitNode(node.elseStatement, topLevelNestedVisitor, isStatement, factory2.liftToBlock)); } function visitSwitchStatement(node) { return factory2.updateSwitchStatement(node, visitNode(node.expression, visitor, isExpression), Debug.checkDefined(visitNode(node.caseBlock, topLevelNestedVisitor, isCaseBlock))); } function visitCaseBlock(node) { const savedEnclosingBlockScopedContainer = enclosingBlockScopedContainer; enclosingBlockScopedContainer = node; node = factory2.updateCaseBlock(node, visitNodes2(node.clauses, topLevelNestedVisitor, isCaseOrDefaultClause)); enclosingBlockScopedContainer = savedEnclosingBlockScopedContainer; return node; } function visitCaseClause(node) { return factory2.updateCaseClause(node, visitNode(node.expression, visitor, isExpression), visitNodes2(node.statements, topLevelNestedVisitor, isStatement)); } function visitDefaultClause(node) { return visitEachChild(node, topLevelNestedVisitor, context); } function visitTryStatement(node) { return visitEachChild(node, topLevelNestedVisitor, context); } function visitCatchClause(node) { const savedEnclosingBlockScopedContainer = enclosingBlockScopedContainer; enclosingBlockScopedContainer = node; node = factory2.updateCatchClause(node, node.variableDeclaration, Debug.checkDefined(visitNode(node.block, topLevelNestedVisitor, isBlock))); enclosingBlockScopedContainer = savedEnclosingBlockScopedContainer; return node; } function visitBlock(node) { const savedEnclosingBlockScopedContainer = enclosingBlockScopedContainer; enclosingBlockScopedContainer = node; node = visitEachChild(node, topLevelNestedVisitor, context); enclosingBlockScopedContainer = savedEnclosingBlockScopedContainer; return node; } function visitorWorker(node, valueIsDiscarded) { if (!(node.transformFlags & (4096 | 8388608 | 268435456))) { return node; } switch (node.kind) { case 249: return visitForStatement(node, false); case 245: return visitExpressionStatement(node); case 218: return visitParenthesizedExpression(node, valueIsDiscarded); case 356: return visitPartiallyEmittedExpression(node, valueIsDiscarded); case 227: if (isDestructuringAssignment(node)) { return visitDestructuringAssignment(node, valueIsDiscarded); } break; case 214: if (isImportCall(node)) { return visitImportCallExpression(node); } break; case 225: case 226: return visitPrefixOrPostfixUnaryExpression(node, valueIsDiscarded); } return visitEachChild(node, visitor, context); } function visitor(node) { return visitorWorker(node, false); } function discardedValueVisitor(node) { return visitorWorker(node, true); } function visitExpressionStatement(node) { return factory2.updateExpressionStatement(node, visitNode(node.expression, discardedValueVisitor, isExpression)); } function visitParenthesizedExpression(node, valueIsDiscarded) { return factory2.updateParenthesizedExpression(node, visitNode(node.expression, valueIsDiscarded ? discardedValueVisitor : visitor, isExpression)); } function visitPartiallyEmittedExpression(node, valueIsDiscarded) { return factory2.updatePartiallyEmittedExpression(node, visitNode(node.expression, valueIsDiscarded ? discardedValueVisitor : visitor, isExpression)); } function visitImportCallExpression(node) { const externalModuleName = getExternalModuleNameLiteral(factory2, node, currentSourceFile, host, resolver, compilerOptions); const firstArgument = visitNode(firstOrUndefined(node.arguments), visitor, isExpression); const argument = externalModuleName && (!firstArgument || !isStringLiteral(firstArgument) || firstArgument.text !== externalModuleName.text) ? externalModuleName : firstArgument; return factory2.createCallExpression(factory2.createPropertyAccessExpression(contextObject, factory2.createIdentifier("import")), undefined, argument ? [argument] : []); } function visitDestructuringAssignment(node, valueIsDiscarded) { if (hasExportedReferenceInDestructuringTarget(node.left)) { return flattenDestructuringAssignment(node, visitor, context, 0, !valueIsDiscarded); } return visitEachChild(node, visitor, context); } function hasExportedReferenceInDestructuringTarget(node) { if (isAssignmentExpression(node, true)) { return hasExportedReferenceInDestructuringTarget(node.left); } else if (isSpreadElement(node)) { return hasExportedReferenceInDestructuringTarget(node.expression); } else if (isObjectLiteralExpression(node)) { return some(node.properties, hasExportedReferenceInDestructuringTarget); } else if (isArrayLiteralExpression(node)) { return some(node.elements, hasExportedReferenceInDestructuringTarget); } else if (isShorthandPropertyAssignment(node)) { return hasExportedReferenceInDestructuringTarget(node.name); } else if (isPropertyAssignment(node)) { return hasExportedReferenceInDestructuringTarget(node.initializer); } else if (isIdentifier(node)) { const container = resolver.getReferencedExportContainer(node); return container !== undefined && container.kind === 308; } else { return false; } } function visitPrefixOrPostfixUnaryExpression(node, valueIsDiscarded) { if ((node.operator === 46 || node.operator === 47) && isIdentifier(node.operand) && !isGeneratedIdentifier(node.operand) && !isLocalName(node.operand) && !isDeclarationNameOfEnumOrNamespace(node.operand)) { const exportedNames = getExports(node.operand); if (exportedNames) { let temp; let expression = visitNode(node.operand, visitor, isExpression); if (isPrefixUnaryExpression(node)) { expression = factory2.updatePrefixUnaryExpression(node, expression); } else { expression = factory2.updatePostfixUnaryExpression(node, expression); if (!valueIsDiscarded) { temp = factory2.createTempVariable(hoistVariableDeclaration); expression = factory2.createAssignment(temp, expression); setTextRange(expression, node); } expression = factory2.createComma(expression, factory2.cloneNode(node.operand)); setTextRange(expression, node); } for (const exportName of exportedNames) { expression = createExportExpression(exportName, preventSubstitution(expression)); } if (temp) { expression = factory2.createComma(expression, temp); setTextRange(expression, node); } return expression; } } return visitEachChild(node, visitor, context); } function modifierVisitor(node) { switch (node.kind) { case 95: case 90: return; } return node; } function onEmitNode(hint, node, emitCallback) { if (node.kind === 308) { const id = getOriginalNodeId(node); currentSourceFile = node; moduleInfo = moduleInfoMap[id]; exportFunction = exportFunctionsMap[id]; noSubstitution = noSubstitutionMap[id]; contextObject = contextObjectMap[id]; if (noSubstitution) { delete noSubstitutionMap[id]; } previousOnEmitNode(hint, node, emitCallback); currentSourceFile = undefined; moduleInfo = undefined; exportFunction = undefined; contextObject = undefined; noSubstitution = undefined; } else { previousOnEmitNode(hint, node, emitCallback); } } function onSubstituteNode(hint, node) { node = previousOnSubstituteNode(hint, node); if (isSubstitutionPrevented(node)) { return node; } if (hint === 1) { return substituteExpression(node); } else if (hint === 4) { return substituteUnspecified(node); } return node; } function substituteUnspecified(node) { switch (node.kind) { case 305: return substituteShorthandPropertyAssignment(node); } return node; } function substituteShorthandPropertyAssignment(node) { var _a, _b; const name = node.name; if (!isGeneratedIdentifier(name) && !isLocalName(name)) { const importDeclaration = resolver.getReferencedImportDeclaration(name); if (importDeclaration) { if (isImportClause(importDeclaration)) { return setTextRange(factory2.createPropertyAssignment(factory2.cloneNode(name), factory2.createPropertyAccessExpression(factory2.getGeneratedNameForNode(importDeclaration.parent), factory2.createIdentifier("default"))), node); } else if (isImportSpecifier(importDeclaration)) { const importedName = importDeclaration.propertyName || importDeclaration.name; const target = factory2.getGeneratedNameForNode(((_b = (_a = importDeclaration.parent) == null ? undefined : _a.parent) == null ? undefined : _b.parent) || importDeclaration); return setTextRange(factory2.createPropertyAssignment(factory2.cloneNode(name), importedName.kind === 11 ? factory2.createElementAccessExpression(target, factory2.cloneNode(importedName)) : factory2.createPropertyAccessExpression(target, factory2.cloneNode(importedName))), node); } } } return node; } function substituteExpression(node) { switch (node.kind) { case 80: return substituteExpressionIdentifier(node); case 227: return substituteBinaryExpression(node); case 237: return substituteMetaProperty(node); } return node; } function substituteExpressionIdentifier(node) { var _a, _b; if (getEmitFlags(node) & 8192) { const externalHelpersModuleName = getExternalHelpersModuleName(currentSourceFile); if (externalHelpersModuleName) { return factory2.createPropertyAccessExpression(externalHelpersModuleName, node); } return node; } if (!isGeneratedIdentifier(node) && !isLocalName(node)) { const importDeclaration = resolver.getReferencedImportDeclaration(node); if (importDeclaration) { if (isImportClause(importDeclaration)) { return setTextRange(factory2.createPropertyAccessExpression(factory2.getGeneratedNameForNode(importDeclaration.parent), factory2.createIdentifier("default")), node); } else if (isImportSpecifier(importDeclaration)) { const importedName = importDeclaration.propertyName || importDeclaration.name; const target = factory2.getGeneratedNameForNode(((_b = (_a = importDeclaration.parent) == null ? undefined : _a.parent) == null ? undefined : _b.parent) || importDeclaration); return setTextRange(importedName.kind === 11 ? factory2.createElementAccessExpression(target, factory2.cloneNode(importedName)) : factory2.createPropertyAccessExpression(target, factory2.cloneNode(importedName)), node); } } } return node; } function substituteBinaryExpression(node) { if (isAssignmentOperator(node.operatorToken.kind) && isIdentifier(node.left) && (!isGeneratedIdentifier(node.left) || isFileLevelReservedGeneratedIdentifier(node.left)) && !isLocalName(node.left)) { const exportedNames = getExports(node.left); if (exportedNames) { let expression = node; for (const exportName of exportedNames) { expression = createExportExpression(exportName, preventSubstitution(expression)); } return expression; } } return node; } function substituteMetaProperty(node) { if (isImportMeta(node)) { return factory2.createPropertyAccessExpression(contextObject, factory2.createIdentifier("meta")); } return node; } function getExports(name) { let exportedNames; const valueDeclaration = getReferencedDeclaration(name); if (valueDeclaration) { const exportContainer = resolver.getReferencedExportContainer(name, false); if (exportContainer && exportContainer.kind === 308) { exportedNames = append(exportedNames, factory2.getDeclarationName(valueDeclaration)); } exportedNames = addRange(exportedNames, moduleInfo == null ? undefined : moduleInfo.exportedBindings[getOriginalNodeId(valueDeclaration)]); } else if (isGeneratedIdentifier(name) && isFileLevelReservedGeneratedIdentifier(name)) { const exportSpecifiers = moduleInfo == null ? undefined : moduleInfo.exportSpecifiers.get(name); if (exportSpecifiers) { const exportedNames2 = []; for (const exportSpecifier of exportSpecifiers) { exportedNames2.push(exportSpecifier.name); } return exportedNames2; } } return exportedNames; } function getReferencedDeclaration(name) { if (!isGeneratedIdentifier(name)) { const importDeclaration = resolver.getReferencedImportDeclaration(name); if (importDeclaration) return importDeclaration; const valueDeclaration = resolver.getReferencedValueDeclaration(name); if (valueDeclaration && (moduleInfo == null ? undefined : moduleInfo.exportedBindings[getOriginalNodeId(valueDeclaration)])) return valueDeclaration; const declarations = resolver.getReferencedValueDeclarations(name); if (declarations) { for (const declaration of declarations) { if (declaration !== valueDeclaration && (moduleInfo == null ? undefined : moduleInfo.exportedBindings[getOriginalNodeId(declaration)])) return declaration; } } return valueDeclaration; } } function preventSubstitution(node) { if (noSubstitution === undefined) noSubstitution = []; noSubstitution[getNodeId(node)] = true; return node; } function isSubstitutionPrevented(node) { return noSubstitution && node.id && noSubstitution[node.id]; } } function transformECMAScriptModule(context) { const { factory: factory2, getEmitHelperFactory: emitHelpers } = context; const host = context.getEmitHost(); const resolver = context.getEmitResolver(); const compilerOptions = context.getCompilerOptions(); const languageVersion = getEmitScriptTarget(compilerOptions); const previousOnEmitNode = context.onEmitNode; const previousOnSubstituteNode = context.onSubstituteNode; context.onEmitNode = onEmitNode; context.onSubstituteNode = onSubstituteNode; context.enableEmitNotification(308); context.enableSubstitution(80); const noSubstitution = /* @__PURE__ */ new Set; let importsAndRequiresToRewriteOrShim; let helperNameSubstitutions; let currentSourceFile; let importRequireStatements; return chainBundle(context, transformSourceFile); function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } if (isExternalModule(node) || getIsolatedModules(compilerOptions)) { currentSourceFile = node; importRequireStatements = undefined; if (compilerOptions.rewriteRelativeImportExtensions && (currentSourceFile.flags & 4194304 || isInJSFile(node))) { forEachDynamicImportOrRequireCall(node, false, false, (node2) => { if (!isStringLiteralLike(node2.arguments[0]) || shouldRewriteModuleSpecifier(node2.arguments[0].text, compilerOptions)) { importsAndRequiresToRewriteOrShim = append(importsAndRequiresToRewriteOrShim, node2); } }); } let result = updateExternalModule(node); addEmitHelpers(result, context.readEmitHelpers()); currentSourceFile = undefined; if (importRequireStatements) { result = factory2.updateSourceFile(result, setTextRange(factory2.createNodeArray(insertStatementsAfterCustomPrologue(result.statements.slice(), importRequireStatements)), result.statements)); } if (!isExternalModule(node) || getEmitModuleKind(compilerOptions) === 200 || some(result.statements, isExternalModuleIndicator)) { return result; } return factory2.updateSourceFile(result, setTextRange(factory2.createNodeArray([...result.statements, createEmptyExports(factory2)]), result.statements)); } return node; } function updateExternalModule(node) { const externalHelpersImportDeclaration = createExternalHelpersImportDeclarationIfNeeded(factory2, emitHelpers(), node, compilerOptions); if (externalHelpersImportDeclaration) { const statements = []; const statementOffset = factory2.copyPrologue(node.statements, statements); addRange(statements, visitArray([externalHelpersImportDeclaration], visitor, isStatement)); addRange(statements, visitNodes2(node.statements, visitor, isStatement, statementOffset)); return factory2.updateSourceFile(node, setTextRange(factory2.createNodeArray(statements), node.statements)); } else { return visitEachChild(node, visitor, context); } } function visitor(node) { switch (node.kind) { case 272: return getEmitModuleKind(compilerOptions) >= 100 ? visitImportEqualsDeclaration(node) : undefined; case 278: return visitExportAssignment(node); case 279: const exportDecl = node; return visitExportDeclaration(exportDecl); case 273: return visitImportDeclaration(node); case 214: if (node === (importsAndRequiresToRewriteOrShim == null ? undefined : importsAndRequiresToRewriteOrShim[0])) { return visitImportOrRequireCall(importsAndRequiresToRewriteOrShim.shift()); } default: if ((importsAndRequiresToRewriteOrShim == null ? undefined : importsAndRequiresToRewriteOrShim.length) && rangeContainsRange(node, importsAndRequiresToRewriteOrShim[0])) { return visitEachChild(node, visitor, context); } } return node; } function visitImportDeclaration(node) { if (!compilerOptions.rewriteRelativeImportExtensions) { return node; } const updatedModuleSpecifier = rewriteModuleSpecifier(node.moduleSpecifier, compilerOptions); if (updatedModuleSpecifier === node.moduleSpecifier) { return node; } return factory2.updateImportDeclaration(node, node.modifiers, node.importClause, updatedModuleSpecifier, node.attributes); } function visitImportOrRequireCall(node) { return factory2.updateCallExpression(node, node.expression, node.typeArguments, [ isStringLiteralLike(node.arguments[0]) ? rewriteModuleSpecifier(node.arguments[0], compilerOptions) : emitHelpers().createRewriteRelativeImportExtensionsHelper(node.arguments[0]), ...node.arguments.slice(1) ]); } function createRequireCall2(importNode) { const moduleName = getExternalModuleNameLiteral(factory2, importNode, Debug.checkDefined(currentSourceFile), host, resolver, compilerOptions); const args = []; if (moduleName) { args.push(rewriteModuleSpecifier(moduleName, compilerOptions)); } if (getEmitModuleKind(compilerOptions) === 200) { return factory2.createCallExpression(factory2.createIdentifier("require"), undefined, args); } if (!importRequireStatements) { const createRequireName = factory2.createUniqueName("_createRequire", 16 | 32); const importStatement = factory2.createImportDeclaration(undefined, factory2.createImportClause(undefined, undefined, factory2.createNamedImports([ factory2.createImportSpecifier(false, factory2.createIdentifier("createRequire"), createRequireName) ])), factory2.createStringLiteral("module"), undefined); const requireHelperName = factory2.createUniqueName("__require", 16 | 32); const requireStatement = factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(requireHelperName, undefined, undefined, factory2.createCallExpression(factory2.cloneNode(createRequireName), undefined, [ factory2.createPropertyAccessExpression(factory2.createMetaProperty(102, factory2.createIdentifier("meta")), factory2.createIdentifier("url")) ])) ], languageVersion >= 2 ? 2 : 0)); importRequireStatements = [importStatement, requireStatement]; } const name = importRequireStatements[1].declarationList.declarations[0].name; Debug.assertNode(name, isIdentifier); return factory2.createCallExpression(factory2.cloneNode(name), undefined, args); } function visitImportEqualsDeclaration(node) { Debug.assert(isExternalModuleImportEqualsDeclaration(node), "import= for internal module references should be handled in an earlier transformer."); let statements; statements = append(statements, setOriginalNode(setTextRange(factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList([ factory2.createVariableDeclaration(factory2.cloneNode(node.name), undefined, undefined, createRequireCall2(node)) ], languageVersion >= 2 ? 2 : 0)), node), node)); statements = appendExportsOfImportEqualsDeclaration(statements, node); return singleOrMany(statements); } function appendExportsOfImportEqualsDeclaration(statements, node) { if (hasSyntacticModifier(node, 32)) { statements = append(statements, factory2.createExportDeclaration(undefined, node.isTypeOnly, factory2.createNamedExports([factory2.createExportSpecifier(false, undefined, idText(node.name))]))); } return statements; } function visitExportAssignment(node) { if (node.isExportEquals) { if (getEmitModuleKind(compilerOptions) === 200) { const statement = setOriginalNode(factory2.createExpressionStatement(factory2.createAssignment(factory2.createPropertyAccessExpression(factory2.createIdentifier("module"), "exports"), node.expression)), node); return statement; } return; } return node; } function visitExportDeclaration(node) { const updatedModuleSpecifier = rewriteModuleSpecifier(node.moduleSpecifier, compilerOptions); if (compilerOptions.module !== undefined && compilerOptions.module > 5 || !node.exportClause || !isNamespaceExport(node.exportClause) || !node.moduleSpecifier) { return !node.moduleSpecifier || updatedModuleSpecifier === node.moduleSpecifier ? node : factory2.updateExportDeclaration(node, node.modifiers, node.isTypeOnly, node.exportClause, updatedModuleSpecifier, node.attributes); } const oldIdentifier = node.exportClause.name; const synthName = factory2.getGeneratedNameForNode(oldIdentifier); const importDecl = factory2.createImportDeclaration(undefined, factory2.createImportClause(undefined, undefined, factory2.createNamespaceImport(synthName)), updatedModuleSpecifier, node.attributes); setOriginalNode(importDecl, node.exportClause); const exportDecl = isExportNamespaceAsDefaultDeclaration(node) ? factory2.createExportDefault(synthName) : factory2.createExportDeclaration(undefined, false, factory2.createNamedExports([factory2.createExportSpecifier(false, synthName, oldIdentifier)])); setOriginalNode(exportDecl, node); return [importDecl, exportDecl]; } function onEmitNode(hint, node, emitCallback) { if (isSourceFile(node)) { if ((isExternalModule(node) || getIsolatedModules(compilerOptions)) && compilerOptions.importHelpers) { helperNameSubstitutions = /* @__PURE__ */ new Map; } currentSourceFile = node; previousOnEmitNode(hint, node, emitCallback); currentSourceFile = undefined; helperNameSubstitutions = undefined; } else { previousOnEmitNode(hint, node, emitCallback); } } function onSubstituteNode(hint, node) { node = previousOnSubstituteNode(hint, node); if (node.id && noSubstitution.has(node.id)) { return node; } if (isIdentifier(node) && getEmitFlags(node) & 8192) { return substituteHelperName(node); } return node; } function substituteHelperName(node) { const externalHelpersModuleName = currentSourceFile && getExternalHelpersModuleName(currentSourceFile); if (externalHelpersModuleName) { noSubstitution.add(getNodeId(node)); return factory2.createPropertyAccessExpression(externalHelpersModuleName, node); } if (helperNameSubstitutions) { const name = idText(node); let substitution = helperNameSubstitutions.get(name); if (!substitution) { helperNameSubstitutions.set(name, substitution = factory2.createUniqueName(name, 16 | 32)); } return substitution; } return node; } } function transformImpliedNodeFormatDependentModule(context) { const previousOnSubstituteNode = context.onSubstituteNode; const previousOnEmitNode = context.onEmitNode; const esmTransform = transformECMAScriptModule(context); const esmOnSubstituteNode = context.onSubstituteNode; const esmOnEmitNode = context.onEmitNode; context.onSubstituteNode = previousOnSubstituteNode; context.onEmitNode = previousOnEmitNode; const cjsTransform = transformModule(context); const cjsOnSubstituteNode = context.onSubstituteNode; const cjsOnEmitNode = context.onEmitNode; const getEmitModuleFormatOfFile2 = (file) => context.getEmitHost().getEmitModuleFormatOfFile(file); context.onSubstituteNode = onSubstituteNode; context.onEmitNode = onEmitNode; context.enableSubstitution(308); context.enableEmitNotification(308); let currentSourceFile; return transformSourceFileOrBundle; function onSubstituteNode(hint, node) { if (isSourceFile(node)) { currentSourceFile = node; return previousOnSubstituteNode(hint, node); } else { if (!currentSourceFile) { return previousOnSubstituteNode(hint, node); } if (getEmitModuleFormatOfFile2(currentSourceFile) >= 5) { return esmOnSubstituteNode(hint, node); } return cjsOnSubstituteNode(hint, node); } } function onEmitNode(hint, node, emitCallback) { if (isSourceFile(node)) { currentSourceFile = node; } if (!currentSourceFile) { return previousOnEmitNode(hint, node, emitCallback); } if (getEmitModuleFormatOfFile2(currentSourceFile) >= 5) { return esmOnEmitNode(hint, node, emitCallback); } return cjsOnEmitNode(hint, node, emitCallback); } function getModuleTransformForFile(file) { return getEmitModuleFormatOfFile2(file) >= 5 ? esmTransform : cjsTransform; } function transformSourceFile(node) { if (node.isDeclarationFile) { return node; } currentSourceFile = node; const result = getModuleTransformForFile(node)(node); currentSourceFile = undefined; Debug.assert(isSourceFile(result)); return result; } function transformSourceFileOrBundle(node) { return node.kind === 308 ? transformSourceFile(node) : transformBundle(node); } function transformBundle(node) { return context.factory.createBundle(map(node.sourceFiles, transformSourceFile)); } } function canProduceDiagnostics(node) { return isVariableDeclaration(node) || isPropertyDeclaration(node) || isPropertySignature(node) || isBindingElement(node) || isSetAccessor(node) || isGetAccessor(node) || isConstructSignatureDeclaration(node) || isCallSignatureDeclaration(node) || isMethodDeclaration(node) || isMethodSignature(node) || isFunctionDeclaration(node) || isParameter(node) || isTypeParameterDeclaration(node) || isExpressionWithTypeArguments(node) || isImportEqualsDeclaration(node) || isTypeAliasDeclaration(node) || isConstructorDeclaration(node) || isIndexSignatureDeclaration(node) || isPropertyAccessExpression(node) || isElementAccessExpression(node) || isBinaryExpression(node) || isJSDocTypeAlias(node); } function createGetSymbolAccessibilityDiagnosticForNodeName(node) { if (isSetAccessor(node) || isGetAccessor(node)) { return getAccessorNameVisibilityError; } else if (isMethodSignature(node) || isMethodDeclaration(node)) { return getMethodNameVisibilityError; } else { return createGetSymbolAccessibilityDiagnosticForNode(node); } function getAccessorNameVisibilityError(symbolAccessibilityResult) { const diagnosticMessage = getAccessorNameVisibilityDiagnosticMessage(symbolAccessibilityResult); return diagnosticMessage !== undefined ? { diagnosticMessage, errorNode: node, typeName: node.name } : undefined; } function getAccessorNameVisibilityDiagnosticMessage(symbolAccessibilityResult) { if (isStatic(node)) { return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Public_static_property_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Public_static_property_0_of_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Public_static_property_0_of_exported_class_has_or_is_using_private_name_1; } else if (node.parent.kind === 264) { return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Public_property_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Public_property_0_of_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Public_property_0_of_exported_class_has_or_is_using_private_name_1; } else { return symbolAccessibilityResult.errorModuleName ? Diagnostics.Property_0_of_exported_interface_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Property_0_of_exported_interface_has_or_is_using_private_name_1; } } function getMethodNameVisibilityError(symbolAccessibilityResult) { const diagnosticMessage = getMethodNameVisibilityDiagnosticMessage(symbolAccessibilityResult); return diagnosticMessage !== undefined ? { diagnosticMessage, errorNode: node, typeName: node.name } : undefined; } function getMethodNameVisibilityDiagnosticMessage(symbolAccessibilityResult) { if (isStatic(node)) { return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Public_static_method_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Public_static_method_0_of_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Public_static_method_0_of_exported_class_has_or_is_using_private_name_1; } else if (node.parent.kind === 264) { return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Public_method_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Public_method_0_of_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Public_method_0_of_exported_class_has_or_is_using_private_name_1; } else { return symbolAccessibilityResult.errorModuleName ? Diagnostics.Method_0_of_exported_interface_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Method_0_of_exported_interface_has_or_is_using_private_name_1; } } } function createGetSymbolAccessibilityDiagnosticForNode(node) { if (isVariableDeclaration(node) || isPropertyDeclaration(node) || isPropertySignature(node) || isPropertyAccessExpression(node) || isElementAccessExpression(node) || isBinaryExpression(node) || isBindingElement(node) || isConstructorDeclaration(node)) { return getVariableDeclarationTypeVisibilityError; } else if (isSetAccessor(node) || isGetAccessor(node)) { return getAccessorDeclarationTypeVisibilityError; } else if (isConstructSignatureDeclaration(node) || isCallSignatureDeclaration(node) || isMethodDeclaration(node) || isMethodSignature(node) || isFunctionDeclaration(node) || isIndexSignatureDeclaration(node)) { return getReturnTypeVisibilityError; } else if (isParameter(node)) { if (isParameterPropertyDeclaration(node, node.parent) && hasSyntacticModifier(node.parent, 2)) { return getVariableDeclarationTypeVisibilityError; } return getParameterDeclarationTypeVisibilityError; } else if (isTypeParameterDeclaration(node)) { return getTypeParameterConstraintVisibilityError; } else if (isExpressionWithTypeArguments(node)) { return getHeritageClauseVisibilityError; } else if (isImportEqualsDeclaration(node)) { return getImportEntityNameVisibilityError; } else if (isTypeAliasDeclaration(node) || isJSDocTypeAlias(node)) { return getTypeAliasDeclarationVisibilityError; } else { return Debug.assertNever(node, `Attempted to set a declaration diagnostic context for unhandled node kind: ${Debug.formatSyntaxKind(node.kind)}`); } function getVariableDeclarationTypeVisibilityDiagnosticMessage(symbolAccessibilityResult) { if (node.kind === 261 || node.kind === 209) { return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Exported_variable_0_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Exported_variable_0_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Exported_variable_0_has_or_is_using_private_name_1; } else if (node.kind === 173 || node.kind === 212 || node.kind === 213 || node.kind === 227 || node.kind === 172 || node.kind === 170 && hasSyntacticModifier(node.parent, 2)) { if (isStatic(node)) { return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Public_static_property_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Public_static_property_0_of_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Public_static_property_0_of_exported_class_has_or_is_using_private_name_1; } else if (node.parent.kind === 264 || node.kind === 170) { return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Public_property_0_of_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Public_property_0_of_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Public_property_0_of_exported_class_has_or_is_using_private_name_1; } else { return symbolAccessibilityResult.errorModuleName ? Diagnostics.Property_0_of_exported_interface_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Property_0_of_exported_interface_has_or_is_using_private_name_1; } } } function getVariableDeclarationTypeVisibilityError(symbolAccessibilityResult) { const diagnosticMessage = getVariableDeclarationTypeVisibilityDiagnosticMessage(symbolAccessibilityResult); return diagnosticMessage !== undefined ? { diagnosticMessage, errorNode: node, typeName: node.name } : undefined; } function getAccessorDeclarationTypeVisibilityError(symbolAccessibilityResult) { let diagnosticMessage; if (node.kind === 179) { if (isStatic(node)) { diagnosticMessage = symbolAccessibilityResult.errorModuleName ? Diagnostics.Parameter_type_of_public_static_setter_0_from_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_type_of_public_static_setter_0_from_exported_class_has_or_is_using_private_name_1; } else { diagnosticMessage = symbolAccessibilityResult.errorModuleName ? Diagnostics.Parameter_type_of_public_setter_0_from_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_type_of_public_setter_0_from_exported_class_has_or_is_using_private_name_1; } } else { if (isStatic(node)) { diagnosticMessage = symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Return_type_of_public_static_getter_0_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Return_type_of_public_static_getter_0_from_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Return_type_of_public_static_getter_0_from_exported_class_has_or_is_using_private_name_1; } else { diagnosticMessage = symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Return_type_of_public_getter_0_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Return_type_of_public_getter_0_from_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Return_type_of_public_getter_0_from_exported_class_has_or_is_using_private_name_1; } } return { diagnosticMessage, errorNode: node.name, typeName: node.name }; } function getReturnTypeVisibilityError(symbolAccessibilityResult) { let diagnosticMessage; switch (node.kind) { case 181: diagnosticMessage = symbolAccessibilityResult.errorModuleName ? Diagnostics.Return_type_of_constructor_signature_from_exported_interface_has_or_is_using_name_0_from_private_module_1 : Diagnostics.Return_type_of_constructor_signature_from_exported_interface_has_or_is_using_private_name_0; break; case 180: diagnosticMessage = symbolAccessibilityResult.errorModuleName ? Diagnostics.Return_type_of_call_signature_from_exported_interface_has_or_is_using_name_0_from_private_module_1 : Diagnostics.Return_type_of_call_signature_from_exported_interface_has_or_is_using_private_name_0; break; case 182: diagnosticMessage = symbolAccessibilityResult.errorModuleName ? Diagnostics.Return_type_of_index_signature_from_exported_interface_has_or_is_using_name_0_from_private_module_1 : Diagnostics.Return_type_of_index_signature_from_exported_interface_has_or_is_using_private_name_0; break; case 175: case 174: if (isStatic(node)) { diagnosticMessage = symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Return_type_of_public_static_method_from_exported_class_has_or_is_using_name_0_from_external_module_1_but_cannot_be_named : Diagnostics.Return_type_of_public_static_method_from_exported_class_has_or_is_using_name_0_from_private_module_1 : Diagnostics.Return_type_of_public_static_method_from_exported_class_has_or_is_using_private_name_0; } else if (node.parent.kind === 264) { diagnosticMessage = symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Return_type_of_public_method_from_exported_class_has_or_is_using_name_0_from_external_module_1_but_cannot_be_named : Diagnostics.Return_type_of_public_method_from_exported_class_has_or_is_using_name_0_from_private_module_1 : Diagnostics.Return_type_of_public_method_from_exported_class_has_or_is_using_private_name_0; } else { diagnosticMessage = symbolAccessibilityResult.errorModuleName ? Diagnostics.Return_type_of_method_from_exported_interface_has_or_is_using_name_0_from_private_module_1 : Diagnostics.Return_type_of_method_from_exported_interface_has_or_is_using_private_name_0; } break; case 263: diagnosticMessage = symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Return_type_of_exported_function_has_or_is_using_name_0_from_external_module_1_but_cannot_be_named : Diagnostics.Return_type_of_exported_function_has_or_is_using_name_0_from_private_module_1 : Diagnostics.Return_type_of_exported_function_has_or_is_using_private_name_0; break; default: return Debug.fail("This is unknown kind for signature: " + node.kind); } return { diagnosticMessage, errorNode: node.name || node }; } function getParameterDeclarationTypeVisibilityError(symbolAccessibilityResult) { const diagnosticMessage = getParameterDeclarationTypeVisibilityDiagnosticMessage(symbolAccessibilityResult); return diagnosticMessage !== undefined ? { diagnosticMessage, errorNode: node, typeName: node.name } : undefined; } function getParameterDeclarationTypeVisibilityDiagnosticMessage(symbolAccessibilityResult) { switch (node.parent.kind) { case 177: return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Parameter_0_of_constructor_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Parameter_0_of_constructor_from_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_0_of_constructor_from_exported_class_has_or_is_using_private_name_1; case 181: case 186: return symbolAccessibilityResult.errorModuleName ? Diagnostics.Parameter_0_of_constructor_signature_from_exported_interface_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_0_of_constructor_signature_from_exported_interface_has_or_is_using_private_name_1; case 180: return symbolAccessibilityResult.errorModuleName ? Diagnostics.Parameter_0_of_call_signature_from_exported_interface_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_0_of_call_signature_from_exported_interface_has_or_is_using_private_name_1; case 182: return symbolAccessibilityResult.errorModuleName ? Diagnostics.Parameter_0_of_index_signature_from_exported_interface_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_0_of_index_signature_from_exported_interface_has_or_is_using_private_name_1; case 175: case 174: if (isStatic(node.parent)) { return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Parameter_0_of_public_static_method_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Parameter_0_of_public_static_method_from_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_0_of_public_static_method_from_exported_class_has_or_is_using_private_name_1; } else if (node.parent.parent.kind === 264) { return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Parameter_0_of_public_method_from_exported_class_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Parameter_0_of_public_method_from_exported_class_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_0_of_public_method_from_exported_class_has_or_is_using_private_name_1; } else { return symbolAccessibilityResult.errorModuleName ? Diagnostics.Parameter_0_of_method_from_exported_interface_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_0_of_method_from_exported_interface_has_or_is_using_private_name_1; } case 263: case 185: return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Parameter_0_of_exported_function_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Parameter_0_of_exported_function_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_0_of_exported_function_has_or_is_using_private_name_1; case 179: case 178: return symbolAccessibilityResult.errorModuleName ? symbolAccessibilityResult.accessibility === 2 ? Diagnostics.Parameter_0_of_accessor_has_or_is_using_name_1_from_external_module_2_but_cannot_be_named : Diagnostics.Parameter_0_of_accessor_has_or_is_using_name_1_from_private_module_2 : Diagnostics.Parameter_0_of_accessor_has_or_is_using_private_name_1; default: return Debug.fail(`Unknown parent for parameter: ${Debug.formatSyntaxKind(node.parent.kind)}`); } } function getTypeParameterConstraintVisibilityError() { let diagnosticMessage; switch (node.parent.kind) { case 264: diagnosticMessage = Diagnostics.Type_parameter_0_of_exported_class_has_or_is_using_private_name_1; break; case 265: diagnosticMessage = Diagnostics.Type_parameter_0_of_exported_interface_has_or_is_using_private_name_1; break; case 201: diagnosticMessage = Diagnostics.Type_parameter_0_of_exported_mapped_object_type_is_using_private_name_1; break; case 186: case 181: diagnosticMessage = Diagnostics.Type_parameter_0_of_constructor_signature_from_exported_interface_has_or_is_using_private_name_1; break; case 180: diagnosticMessage = Diagnostics.Type_parameter_0_of_call_signature_from_exported_interface_has_or_is_using_private_name_1; break; case 175: case 174: if (isStatic(node.parent)) { diagnosticMessage = Diagnostics.Type_parameter_0_of_public_static_method_from_exported_class_has_or_is_using_private_name_1; } else if (node.parent.parent.kind === 264) { diagnosticMessage = Diagnostics.Type_parameter_0_of_public_method_from_exported_class_has_or_is_using_private_name_1; } else { diagnosticMessage = Diagnostics.Type_parameter_0_of_method_from_exported_interface_has_or_is_using_private_name_1; } break; case 185: case 263: diagnosticMessage = Diagnostics.Type_parameter_0_of_exported_function_has_or_is_using_private_name_1; break; case 196: diagnosticMessage = Diagnostics.Extends_clause_for_inferred_type_0_has_or_is_using_private_name_1; break; case 266: diagnosticMessage = Diagnostics.Type_parameter_0_of_exported_type_alias_has_or_is_using_private_name_1; break; default: return Debug.fail("This is unknown parent for type parameter: " + node.parent.kind); } return { diagnosticMessage, errorNode: node, typeName: node.name }; } function getHeritageClauseVisibilityError() { let diagnosticMessage; if (isClassDeclaration(node.parent.parent)) { diagnosticMessage = isHeritageClause(node.parent) && node.parent.token === 119 ? Diagnostics.Implements_clause_of_exported_class_0_has_or_is_using_private_name_1 : node.parent.parent.name ? Diagnostics.extends_clause_of_exported_class_0_has_or_is_using_private_name_1 : Diagnostics.extends_clause_of_exported_class_has_or_is_using_private_name_0; } else { diagnosticMessage = Diagnostics.extends_clause_of_exported_interface_0_has_or_is_using_private_name_1; } return { diagnosticMessage, errorNode: node, typeName: getNameOfDeclaration(node.parent.parent) }; } function getImportEntityNameVisibilityError() { return { diagnosticMessage: Diagnostics.Import_declaration_0_is_using_private_name_1, errorNode: node, typeName: node.name }; } function getTypeAliasDeclarationVisibilityError(symbolAccessibilityResult) { return { diagnosticMessage: symbolAccessibilityResult.errorModuleName ? Diagnostics.Exported_type_alias_0_has_or_is_using_private_name_1_from_module_2 : Diagnostics.Exported_type_alias_0_has_or_is_using_private_name_1, errorNode: isJSDocTypeAlias(node) ? Debug.checkDefined(node.typeExpression) : node.type, typeName: isJSDocTypeAlias(node) ? getNameOfDeclaration(node) : node.name }; } } function createGetIsolatedDeclarationErrors(resolver) { const relatedSuggestionByDeclarationKind = { [220]: Diagnostics.Add_a_return_type_to_the_function_expression, [219]: Diagnostics.Add_a_return_type_to_the_function_expression, [175]: Diagnostics.Add_a_return_type_to_the_method, [178]: Diagnostics.Add_a_return_type_to_the_get_accessor_declaration, [179]: Diagnostics.Add_a_type_to_parameter_of_the_set_accessor_declaration, [263]: Diagnostics.Add_a_return_type_to_the_function_declaration, [181]: Diagnostics.Add_a_return_type_to_the_function_declaration, [170]: Diagnostics.Add_a_type_annotation_to_the_parameter_0, [261]: Diagnostics.Add_a_type_annotation_to_the_variable_0, [173]: Diagnostics.Add_a_type_annotation_to_the_property_0, [172]: Diagnostics.Add_a_type_annotation_to_the_property_0, [278]: Diagnostics.Move_the_expression_in_default_export_to_a_variable_and_add_a_type_annotation_to_it }; const errorByDeclarationKind = { [219]: Diagnostics.Function_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations, [263]: Diagnostics.Function_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations, [220]: Diagnostics.Function_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations, [175]: Diagnostics.Method_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations, [181]: Diagnostics.Method_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations, [178]: Diagnostics.At_least_one_accessor_must_have_an_explicit_type_annotation_with_isolatedDeclarations, [179]: Diagnostics.At_least_one_accessor_must_have_an_explicit_type_annotation_with_isolatedDeclarations, [170]: Diagnostics.Parameter_must_have_an_explicit_type_annotation_with_isolatedDeclarations, [261]: Diagnostics.Variable_must_have_an_explicit_type_annotation_with_isolatedDeclarations, [173]: Diagnostics.Property_must_have_an_explicit_type_annotation_with_isolatedDeclarations, [172]: Diagnostics.Property_must_have_an_explicit_type_annotation_with_isolatedDeclarations, [168]: Diagnostics.Computed_property_names_on_class_or_object_literals_cannot_be_inferred_with_isolatedDeclarations, [306]: Diagnostics.Objects_that_contain_spread_assignments_can_t_be_inferred_with_isolatedDeclarations, [305]: Diagnostics.Objects_that_contain_shorthand_properties_can_t_be_inferred_with_isolatedDeclarations, [210]: Diagnostics.Only_const_arrays_can_be_inferred_with_isolatedDeclarations, [278]: Diagnostics.Default_exports_can_t_be_inferred_with_isolatedDeclarations, [231]: Diagnostics.Arrays_with_spread_elements_can_t_inferred_with_isolatedDeclarations }; return getDiagnostic2; function getDiagnostic2(node) { const heritageClause = findAncestor(node, isHeritageClause); if (heritageClause) { return createDiagnosticForNode(node, Diagnostics.Extends_clause_can_t_contain_an_expression_with_isolatedDeclarations); } if ((isPartOfTypeNode(node) || isTypeQueryNode(node.parent)) && (isEntityName(node) || isEntityNameExpression(node))) { return createEntityInTypeNodeError(node); } Debug.type(node); switch (node.kind) { case 178: case 179: return createAccessorTypeError(node); case 168: case 305: case 306: return createObjectLiteralError(node); case 210: case 231: return createArrayLiteralError(node); case 175: case 181: case 219: case 220: case 263: return createReturnTypeError(node); case 209: return createBindingElementError(node); case 173: case 261: return createVariableOrPropertyError(node); case 170: return createParameterError(node); case 304: return createExpressionError(node.initializer); case 232: return createClassExpressionError(node); default: assertType(node); return createExpressionError(node); } } function findNearestDeclaration(node) { const result = findAncestor(node, (n) => isExportAssignment(n) || isStatement(n) || isVariableDeclaration(n) || isPropertyDeclaration(n) || isParameter(n)); if (!result) return; if (isExportAssignment(result)) return result; if (isReturnStatement(result)) { return findAncestor(result, (n) => isFunctionLikeDeclaration(n) && !isConstructorDeclaration(n)); } return isStatement(result) ? undefined : result; } function createAccessorTypeError(node) { const { getAccessor, setAccessor } = getAllAccessorDeclarations(node.symbol.declarations, node); const targetNode = (isSetAccessor(node) ? node.parameters[0] : node) ?? node; const diag2 = createDiagnosticForNode(targetNode, errorByDeclarationKind[node.kind]); if (setAccessor) { addRelatedInfo(diag2, createDiagnosticForNode(setAccessor, relatedSuggestionByDeclarationKind[setAccessor.kind])); } if (getAccessor) { addRelatedInfo(diag2, createDiagnosticForNode(getAccessor, relatedSuggestionByDeclarationKind[getAccessor.kind])); } return diag2; } function addParentDeclarationRelatedInfo(node, diag2) { const parentDeclaration = findNearestDeclaration(node); if (parentDeclaration) { const targetStr = isExportAssignment(parentDeclaration) || !parentDeclaration.name ? "" : getTextOfNode(parentDeclaration.name, false); addRelatedInfo(diag2, createDiagnosticForNode(parentDeclaration, relatedSuggestionByDeclarationKind[parentDeclaration.kind], targetStr)); } return diag2; } function createObjectLiteralError(node) { const diag2 = createDiagnosticForNode(node, errorByDeclarationKind[node.kind]); addParentDeclarationRelatedInfo(node, diag2); return diag2; } function createArrayLiteralError(node) { const diag2 = createDiagnosticForNode(node, errorByDeclarationKind[node.kind]); addParentDeclarationRelatedInfo(node, diag2); return diag2; } function createReturnTypeError(node) { const diag2 = createDiagnosticForNode(node, errorByDeclarationKind[node.kind]); addParentDeclarationRelatedInfo(node, diag2); addRelatedInfo(diag2, createDiagnosticForNode(node, relatedSuggestionByDeclarationKind[node.kind])); return diag2; } function createBindingElementError(node) { return createDiagnosticForNode(node, Diagnostics.Binding_elements_can_t_be_exported_directly_with_isolatedDeclarations); } function createVariableOrPropertyError(node) { const diag2 = createDiagnosticForNode(node, errorByDeclarationKind[node.kind]); const targetStr = getTextOfNode(node.name, false); addRelatedInfo(diag2, createDiagnosticForNode(node, relatedSuggestionByDeclarationKind[node.kind], targetStr)); return diag2; } function createParameterError(node) { if (isSetAccessor(node.parent)) { return createAccessorTypeError(node.parent); } const addUndefined = resolver.requiresAddingImplicitUndefined(node, node.parent); if (!addUndefined && node.initializer) { return createExpressionError(node.initializer); } const message = addUndefined ? Diagnostics.Declaration_emit_for_this_parameter_requires_implicitly_adding_undefined_to_its_type_This_is_not_supported_with_isolatedDeclarations : errorByDeclarationKind[node.kind]; const diag2 = createDiagnosticForNode(node, message); const targetStr = getTextOfNode(node.name, false); addRelatedInfo(diag2, createDiagnosticForNode(node, relatedSuggestionByDeclarationKind[node.kind], targetStr)); return diag2; } function createClassExpressionError(node) { return createExpressionError(node, Diagnostics.Inference_from_class_expressions_is_not_supported_with_isolatedDeclarations); } function createEntityInTypeNodeError(node) { const diag2 = createDiagnosticForNode(node, Diagnostics.Type_containing_private_name_0_can_t_be_used_with_isolatedDeclarations, getTextOfNode(node, false)); addParentDeclarationRelatedInfo(node, diag2); return diag2; } function createExpressionError(node, diagnosticMessage) { const parentDeclaration = findNearestDeclaration(node); let diag2; if (parentDeclaration) { const targetStr = isExportAssignment(parentDeclaration) || !parentDeclaration.name ? "" : getTextOfNode(parentDeclaration.name, false); const parent2 = findAncestor(node.parent, (n) => isExportAssignment(n) || (isStatement(n) ? "quit" : !isParenthesizedExpression(n) && !isTypeAssertionExpression(n) && !isAsExpression(n))); if (parentDeclaration === parent2) { diag2 = createDiagnosticForNode(node, diagnosticMessage ?? errorByDeclarationKind[parentDeclaration.kind]); addRelatedInfo(diag2, createDiagnosticForNode(parentDeclaration, relatedSuggestionByDeclarationKind[parentDeclaration.kind], targetStr)); } else { diag2 = createDiagnosticForNode(node, diagnosticMessage ?? Diagnostics.Expression_type_can_t_be_inferred_with_isolatedDeclarations); addRelatedInfo(diag2, createDiagnosticForNode(parentDeclaration, relatedSuggestionByDeclarationKind[parentDeclaration.kind], targetStr)); addRelatedInfo(diag2, createDiagnosticForNode(node, Diagnostics.Add_satisfies_and_a_type_assertion_to_this_expression_satisfies_T_as_T_to_make_the_type_explicit)); } } else { diag2 = createDiagnosticForNode(node, diagnosticMessage ?? Diagnostics.Expression_type_can_t_be_inferred_with_isolatedDeclarations); } return diag2; } } function getDeclarationDiagnostics(host, resolver, file) { const compilerOptions = host.getCompilerOptions(); const files = filter(getSourceFilesToEmit(host, file), isSourceFileNotJson); return contains(files, file) ? transformNodes(resolver, host, factory, compilerOptions, [file], [transformDeclarations], false).diagnostics : undefined; } var declarationEmitNodeBuilderFlags = 1024 | 2048 | 4096 | 8 | 524288 | 4 | 1; var declarationEmitInternalNodeBuilderFlags = 8; function transformDeclarations(context) { const throwDiagnostic = () => Debug.fail("Diagnostic emitted without context"); let getSymbolAccessibilityDiagnostic = throwDiagnostic; let needsDeclare = true; let isBundledEmit = false; let resultHasExternalModuleIndicator = false; let needsScopeFixMarker = false; let resultHasScopeMarker = false; let enclosingDeclaration; let lateMarkedStatements; let lateStatementReplacementMap; let suppressNewDiagnosticContexts; const { factory: factory2 } = context; const host = context.getEmitHost(); let restoreFallbackNode = () => { return; }; const symbolTracker = { trackSymbol, reportInaccessibleThisError, reportInaccessibleUniqueSymbolError, reportCyclicStructureError, reportPrivateInBaseOfClassExpression, reportLikelyUnsafeImportRequiredError, reportTruncationError, moduleResolverHost: host, reportNonlocalAugmentation, reportNonSerializableProperty, reportInferenceFallback, pushErrorFallbackNode(node) { const currentFallback = errorFallbackNode; const currentRestore = restoreFallbackNode; restoreFallbackNode = () => { restoreFallbackNode = currentRestore; errorFallbackNode = currentFallback; }; errorFallbackNode = node; }, popErrorFallbackNode() { restoreFallbackNode(); } }; let errorNameNode; let errorFallbackNode; let currentSourceFile; let rawReferencedFiles; let rawTypeReferenceDirectives; let rawLibReferenceDirectives; const resolver = context.getEmitResolver(); const options = context.getCompilerOptions(); const getIsolatedDeclarationError = createGetIsolatedDeclarationErrors(resolver); const { stripInternal, isolatedDeclarations } = options; return transformRoot; function reportExpandoFunctionErrors(node) { resolver.getPropertiesOfContainerFunction(node).forEach((p) => { if (isExpandoPropertyDeclaration(p.valueDeclaration)) { const errorTarget = isBinaryExpression(p.valueDeclaration) ? p.valueDeclaration.left : p.valueDeclaration; context.addDiagnostic(createDiagnosticForNode(errorTarget, Diagnostics.Assigning_properties_to_functions_without_declaring_them_is_not_supported_with_isolatedDeclarations_Add_an_explicit_declaration_for_the_properties_assigned_to_this_function)); } }); } function reportInferenceFallback(node) { if (!isolatedDeclarations || isSourceFileJS(currentSourceFile)) return; if (getSourceFileOfNode(node) !== currentSourceFile) return; if (isVariableDeclaration(node) && resolver.isExpandoFunctionDeclaration(node)) { reportExpandoFunctionErrors(node); } else { context.addDiagnostic(getIsolatedDeclarationError(node)); } } function handleSymbolAccessibilityError(symbolAccessibilityResult) { if (symbolAccessibilityResult.accessibility === 0) { if (symbolAccessibilityResult.aliasesToMakeVisible) { if (!lateMarkedStatements) { lateMarkedStatements = symbolAccessibilityResult.aliasesToMakeVisible; } else { for (const ref of symbolAccessibilityResult.aliasesToMakeVisible) { pushIfUnique(lateMarkedStatements, ref); } } } } else if (symbolAccessibilityResult.accessibility !== 3) { const errorInfo = getSymbolAccessibilityDiagnostic(symbolAccessibilityResult); if (errorInfo) { if (errorInfo.typeName) { context.addDiagnostic(createDiagnosticForNode(symbolAccessibilityResult.errorNode || errorInfo.errorNode, errorInfo.diagnosticMessage, getTextOfNode(errorInfo.typeName), symbolAccessibilityResult.errorSymbolName, symbolAccessibilityResult.errorModuleName)); } else { context.addDiagnostic(createDiagnosticForNode(symbolAccessibilityResult.errorNode || errorInfo.errorNode, errorInfo.diagnosticMessage, symbolAccessibilityResult.errorSymbolName, symbolAccessibilityResult.errorModuleName)); } return true; } } return false; } function trackSymbol(symbol, enclosingDeclaration2, meaning) { if (symbol.flags & 262144) return false; const issuedDiagnostic = handleSymbolAccessibilityError(resolver.isSymbolAccessible(symbol, enclosingDeclaration2, meaning, true)); return issuedDiagnostic; } function reportPrivateInBaseOfClassExpression(propertyName) { if (errorNameNode || errorFallbackNode) { context.addDiagnostic(addRelatedInfo(createDiagnosticForNode(errorNameNode || errorFallbackNode, Diagnostics.Property_0_of_exported_anonymous_class_type_may_not_be_private_or_protected, propertyName), ...isVariableDeclaration((errorNameNode || errorFallbackNode).parent) ? [createDiagnosticForNode(errorNameNode || errorFallbackNode, Diagnostics.Add_a_type_annotation_to_the_variable_0, errorDeclarationNameWithFallback())] : [])); } } function errorDeclarationNameWithFallback() { return errorNameNode ? declarationNameToString(errorNameNode) : errorFallbackNode && getNameOfDeclaration(errorFallbackNode) ? declarationNameToString(getNameOfDeclaration(errorFallbackNode)) : errorFallbackNode && isExportAssignment(errorFallbackNode) ? errorFallbackNode.isExportEquals ? "export=" : "default" : "(Missing)"; } function reportInaccessibleUniqueSymbolError() { if (errorNameNode || errorFallbackNode) { context.addDiagnostic(createDiagnosticForNode(errorNameNode || errorFallbackNode, Diagnostics.The_inferred_type_of_0_references_an_inaccessible_1_type_A_type_annotation_is_necessary, errorDeclarationNameWithFallback(), "unique symbol")); } } function reportCyclicStructureError() { if (errorNameNode || errorFallbackNode) { context.addDiagnostic(createDiagnosticForNode(errorNameNode || errorFallbackNode, Diagnostics.The_inferred_type_of_0_references_a_type_with_a_cyclic_structure_which_cannot_be_trivially_serialized_A_type_annotation_is_necessary, errorDeclarationNameWithFallback())); } } function reportInaccessibleThisError() { if (errorNameNode || errorFallbackNode) { context.addDiagnostic(createDiagnosticForNode(errorNameNode || errorFallbackNode, Diagnostics.The_inferred_type_of_0_references_an_inaccessible_1_type_A_type_annotation_is_necessary, errorDeclarationNameWithFallback(), "this")); } } function reportLikelyUnsafeImportRequiredError(specifier, symbolName2) { if (errorNameNode || errorFallbackNode) { if (symbolName2) { context.addDiagnostic(createDiagnosticForNode(errorNameNode || errorFallbackNode, Diagnostics.The_inferred_type_of_0_cannot_be_named_without_a_reference_to_2_from_1_This_is_likely_not_portable_A_type_annotation_is_necessary, errorDeclarationNameWithFallback(), specifier, symbolName2)); } else { context.addDiagnostic(createDiagnosticForNode(errorNameNode || errorFallbackNode, Diagnostics.The_inferred_type_of_0_cannot_be_named_without_a_reference_to_1_This_is_likely_not_portable_A_type_annotation_is_necessary, errorDeclarationNameWithFallback(), specifier)); } } } function reportTruncationError() { if (errorNameNode || errorFallbackNode) { context.addDiagnostic(createDiagnosticForNode(errorNameNode || errorFallbackNode, Diagnostics.The_inferred_type_of_this_node_exceeds_the_maximum_length_the_compiler_will_serialize_An_explicit_type_annotation_is_needed)); } } function reportNonlocalAugmentation(containingFile, parentSymbol, symbol) { var _a; const primaryDeclaration = (_a = parentSymbol.declarations) == null ? undefined : _a.find((d) => getSourceFileOfNode(d) === containingFile); const augmentingDeclarations = filter(symbol.declarations, (d) => getSourceFileOfNode(d) !== containingFile); if (primaryDeclaration && augmentingDeclarations) { for (const augmentations of augmentingDeclarations) { context.addDiagnostic(addRelatedInfo(createDiagnosticForNode(augmentations, Diagnostics.Declaration_augments_declaration_in_another_file_This_cannot_be_serialized), createDiagnosticForNode(primaryDeclaration, Diagnostics.This_is_the_declaration_being_augmented_Consider_moving_the_augmenting_declaration_into_the_same_file))); } } } function reportNonSerializableProperty(propertyName) { if (errorNameNode || errorFallbackNode) { context.addDiagnostic(createDiagnosticForNode(errorNameNode || errorFallbackNode, Diagnostics.The_type_of_this_node_cannot_be_serialized_because_its_property_0_cannot_be_serialized, propertyName)); } } function transformDeclarationsForJS(sourceFile) { const oldDiag = getSymbolAccessibilityDiagnostic; getSymbolAccessibilityDiagnostic = (s) => s.errorNode && canProduceDiagnostics(s.errorNode) ? createGetSymbolAccessibilityDiagnosticForNode(s.errorNode)(s) : { diagnosticMessage: s.errorModuleName ? Diagnostics.Declaration_emit_for_this_file_requires_using_private_name_0_from_module_1_An_explicit_type_annotation_may_unblock_declaration_emit : Diagnostics.Declaration_emit_for_this_file_requires_using_private_name_0_An_explicit_type_annotation_may_unblock_declaration_emit, errorNode: s.errorNode || sourceFile }; const result = resolver.getDeclarationStatementsForSourceFile(sourceFile, declarationEmitNodeBuilderFlags, declarationEmitInternalNodeBuilderFlags, symbolTracker); getSymbolAccessibilityDiagnostic = oldDiag; return result; } function transformRoot(node) { if (node.kind === 308 && node.isDeclarationFile) { return node; } if (node.kind === 309) { isBundledEmit = true; rawReferencedFiles = []; rawTypeReferenceDirectives = []; rawLibReferenceDirectives = []; const bundle = factory2.createBundle(map(node.sourceFiles, (sourceFile) => { if (sourceFile.isDeclarationFile) return; currentSourceFile = sourceFile; enclosingDeclaration = sourceFile; lateMarkedStatements = undefined; suppressNewDiagnosticContexts = false; lateStatementReplacementMap = /* @__PURE__ */ new Map; getSymbolAccessibilityDiagnostic = throwDiagnostic; needsScopeFixMarker = false; resultHasScopeMarker = false; collectFileReferences(sourceFile); if (isExternalOrCommonJsModule(sourceFile) || isJsonSourceFile(sourceFile)) { resultHasExternalModuleIndicator = false; needsDeclare = false; const statements = isSourceFileJS(sourceFile) ? factory2.createNodeArray(transformDeclarationsForJS(sourceFile)) : visitNodes2(sourceFile.statements, visitDeclarationStatements, isStatement); const newFile = factory2.updateSourceFile(sourceFile, [factory2.createModuleDeclaration([factory2.createModifier(138)], factory2.createStringLiteral(getResolvedExternalModuleName(context.getEmitHost(), sourceFile)), factory2.createModuleBlock(setTextRange(factory2.createNodeArray(transformAndReplaceLatePaintedStatements(statements)), sourceFile.statements)))], true, [], [], false, []); return newFile; } needsDeclare = true; const updated = isSourceFileJS(sourceFile) ? factory2.createNodeArray(transformDeclarationsForJS(sourceFile)) : visitNodes2(sourceFile.statements, visitDeclarationStatements, isStatement); return factory2.updateSourceFile(sourceFile, transformAndReplaceLatePaintedStatements(updated), true, [], [], false, []); })); const outputFilePath2 = getDirectoryPath(normalizeSlashes(getOutputPathsFor(node, host, true).declarationFilePath)); bundle.syntheticFileReferences = getReferencedFiles(outputFilePath2); bundle.syntheticTypeReferences = getTypeReferences(); bundle.syntheticLibReferences = getLibReferences(); return bundle; } needsDeclare = true; needsScopeFixMarker = false; resultHasScopeMarker = false; enclosingDeclaration = node; currentSourceFile = node; getSymbolAccessibilityDiagnostic = throwDiagnostic; isBundledEmit = false; resultHasExternalModuleIndicator = false; suppressNewDiagnosticContexts = false; lateMarkedStatements = undefined; lateStatementReplacementMap = /* @__PURE__ */ new Map; rawReferencedFiles = []; rawTypeReferenceDirectives = []; rawLibReferenceDirectives = []; collectFileReferences(currentSourceFile); let combinedStatements; if (isSourceFileJS(currentSourceFile)) { combinedStatements = factory2.createNodeArray(transformDeclarationsForJS(node)); } else { const statements = visitNodes2(node.statements, visitDeclarationStatements, isStatement); combinedStatements = setTextRange(factory2.createNodeArray(transformAndReplaceLatePaintedStatements(statements)), node.statements); if (isExternalModule(node) && (!resultHasExternalModuleIndicator || needsScopeFixMarker && !resultHasScopeMarker)) { combinedStatements = setTextRange(factory2.createNodeArray([...combinedStatements, createEmptyExports(factory2)]), combinedStatements); } } const outputFilePath = getDirectoryPath(normalizeSlashes(getOutputPathsFor(node, host, true).declarationFilePath)); return factory2.updateSourceFile(node, combinedStatements, true, getReferencedFiles(outputFilePath), getTypeReferences(), false, getLibReferences()); function collectFileReferences(sourceFile) { rawReferencedFiles = concatenate(rawReferencedFiles, map(sourceFile.referencedFiles, (f) => [sourceFile, f])); rawTypeReferenceDirectives = concatenate(rawTypeReferenceDirectives, sourceFile.typeReferenceDirectives); rawLibReferenceDirectives = concatenate(rawLibReferenceDirectives, sourceFile.libReferenceDirectives); } function copyFileReferenceAsSynthetic(ref) { const newRef = { ...ref }; newRef.pos = -1; newRef.end = -1; return newRef; } function getTypeReferences() { return mapDefined(rawTypeReferenceDirectives, (ref) => { if (!ref.preserve) return; return copyFileReferenceAsSynthetic(ref); }); } function getLibReferences() { return mapDefined(rawLibReferenceDirectives, (ref) => { if (!ref.preserve) return; return copyFileReferenceAsSynthetic(ref); }); } function getReferencedFiles(outputFilePath2) { return mapDefined(rawReferencedFiles, ([sourceFile, ref]) => { if (!ref.preserve) return; const file = host.getSourceFileFromReference(sourceFile, ref); if (!file) { return; } let declFileName; if (file.isDeclarationFile) { declFileName = file.fileName; } else { if (isBundledEmit && contains(node.sourceFiles, file)) return; const paths = getOutputPathsFor(file, host, true); declFileName = paths.declarationFilePath || paths.jsFilePath || file.fileName; } if (!declFileName) return; const fileName = getRelativePathToDirectoryOrUrl(outputFilePath2, declFileName, host.getCurrentDirectory(), host.getCanonicalFileName, false); const newRef = copyFileReferenceAsSynthetic(ref); newRef.fileName = fileName; return newRef; }); } } function filterBindingPatternInitializers(name) { if (name.kind === 80) { return name; } else { if (name.kind === 208) { return factory2.updateArrayBindingPattern(name, visitNodes2(name.elements, visitBindingElement, isArrayBindingElement)); } else { return factory2.updateObjectBindingPattern(name, visitNodes2(name.elements, visitBindingElement, isBindingElement)); } } function visitBindingElement(elem) { if (elem.kind === 233) { return elem; } if (elem.propertyName && isComputedPropertyName(elem.propertyName) && isEntityNameExpression(elem.propertyName.expression)) { checkEntityNameVisibility(elem.propertyName.expression, enclosingDeclaration); } return factory2.updateBindingElement(elem, elem.dotDotDotToken, elem.propertyName, filterBindingPatternInitializers(elem.name), undefined); } } function ensureParameter(p, modifierMask) { let oldDiag; if (!suppressNewDiagnosticContexts) { oldDiag = getSymbolAccessibilityDiagnostic; getSymbolAccessibilityDiagnostic = createGetSymbolAccessibilityDiagnosticForNode(p); } const newParam = factory2.updateParameterDeclaration(p, maskModifiers(factory2, p, modifierMask), p.dotDotDotToken, filterBindingPatternInitializers(p.name), resolver.isOptionalParameter(p) ? p.questionToken || factory2.createToken(58) : undefined, ensureType(p, true), ensureNoInitializer(p)); if (!suppressNewDiagnosticContexts) { getSymbolAccessibilityDiagnostic = oldDiag; } return newParam; } function shouldPrintWithInitializer(node) { return canHaveLiteralInitializer(node) && !!node.initializer && resolver.isLiteralConstDeclaration(getParseTreeNode(node)); } function ensureNoInitializer(node) { if (shouldPrintWithInitializer(node)) { const unwrappedInitializer = unwrapParenthesizedExpression(node.initializer); if (!isPrimitiveLiteralValue(unwrappedInitializer)) { reportInferenceFallback(node); } return resolver.createLiteralConstValue(getParseTreeNode(node, canHaveLiteralInitializer), symbolTracker); } return; } function ensureType(node, ignorePrivate) { if (!ignorePrivate && hasEffectiveModifier(node, 2)) { return; } if (shouldPrintWithInitializer(node)) { return; } if (!isExportAssignment(node) && !isBindingElement(node) && node.type && (!isParameter(node) || !resolver.requiresAddingImplicitUndefined(node, enclosingDeclaration))) { return visitNode(node.type, visitDeclarationSubtree, isTypeNode); } const oldErrorNameNode = errorNameNode; errorNameNode = node.name; let oldDiag; if (!suppressNewDiagnosticContexts) { oldDiag = getSymbolAccessibilityDiagnostic; if (canProduceDiagnostics(node)) { getSymbolAccessibilityDiagnostic = createGetSymbolAccessibilityDiagnosticForNode(node); } } let typeNode; if (hasInferredType(node)) { typeNode = resolver.createTypeOfDeclaration(node, enclosingDeclaration, declarationEmitNodeBuilderFlags, declarationEmitInternalNodeBuilderFlags, symbolTracker); } else if (isFunctionLike(node)) { typeNode = resolver.createReturnTypeOfSignatureDeclaration(node, enclosingDeclaration, declarationEmitNodeBuilderFlags, declarationEmitInternalNodeBuilderFlags, symbolTracker); } else { Debug.assertNever(node); } errorNameNode = oldErrorNameNode; if (!suppressNewDiagnosticContexts) { getSymbolAccessibilityDiagnostic = oldDiag; } return typeNode ?? factory2.createKeywordTypeNode(133); } function isDeclarationAndNotVisible(node) { node = getParseTreeNode(node); switch (node.kind) { case 263: case 268: case 265: case 264: case 266: case 267: return !resolver.isDeclarationVisible(node); case 261: return !getBindingNameVisible(node); case 272: case 273: case 279: case 278: return false; case 176: return true; } return false; } function shouldEmitFunctionProperties(input) { var _a; if (input.body) { return true; } const overloadSignatures = (_a = input.symbol.declarations) == null ? undefined : _a.filter((decl) => isFunctionDeclaration(decl) && !decl.body); return !overloadSignatures || overloadSignatures.indexOf(input) === overloadSignatures.length - 1; } function getBindingNameVisible(elem) { if (isOmittedExpression(elem)) { return false; } if (isBindingPattern(elem.name)) { return some(elem.name.elements, getBindingNameVisible); } else { return resolver.isDeclarationVisible(elem); } } function updateParamsList(node, params, modifierMask) { if (hasEffectiveModifier(node, 2)) { return factory2.createNodeArray(); } const newParams = map(params, (p) => ensureParameter(p, modifierMask)); if (!newParams) { return factory2.createNodeArray(); } return factory2.createNodeArray(newParams, params.hasTrailingComma); } function updateAccessorParamsList(input, isPrivate) { let newParams; if (!isPrivate) { const thisParameter = getThisParameter(input); if (thisParameter) { newParams = [ensureParameter(thisParameter)]; } } if (isSetAccessorDeclaration(input)) { let newValueParameter; if (!isPrivate) { const valueParameter = getSetAccessorValueParameter(input); if (valueParameter) { newValueParameter = ensureParameter(valueParameter); } } if (!newValueParameter) { newValueParameter = factory2.createParameterDeclaration(undefined, undefined, "value"); } newParams = append(newParams, newValueParameter); } return factory2.createNodeArray(newParams || emptyArray); } function ensureTypeParams(node, params) { return hasEffectiveModifier(node, 2) ? undefined : visitNodes2(params, visitDeclarationSubtree, isTypeParameterDeclaration); } function isEnclosingDeclaration(node) { return isSourceFile(node) || isTypeAliasDeclaration(node) || isModuleDeclaration(node) || isClassDeclaration(node) || isInterfaceDeclaration(node) || isFunctionLike(node) || isIndexSignatureDeclaration(node) || isMappedTypeNode(node); } function checkEntityNameVisibility(entityName, enclosingDeclaration2) { const visibilityResult = resolver.isEntityNameVisible(entityName, enclosingDeclaration2); handleSymbolAccessibilityError(visibilityResult); } function preserveJsDoc(updated, original) { if (hasJSDocNodes(updated) && hasJSDocNodes(original)) { updated.jsDoc = original.jsDoc; } return setCommentRange(updated, getCommentRange(original)); } function rewriteModuleSpecifier2(parent2, input) { if (!input) return; resultHasExternalModuleIndicator = resultHasExternalModuleIndicator || parent2.kind !== 268 && parent2.kind !== 206; if (isStringLiteralLike(input)) { if (isBundledEmit) { const newName = getExternalModuleNameFromDeclaration(context.getEmitHost(), resolver, parent2); if (newName) { return factory2.createStringLiteral(newName); } } } return input; } function transformImportEqualsDeclaration(decl) { if (!resolver.isDeclarationVisible(decl)) return; if (decl.moduleReference.kind === 284) { const specifier = getExternalModuleImportEqualsDeclarationExpression(decl); return factory2.updateImportEqualsDeclaration(decl, decl.modifiers, decl.isTypeOnly, decl.name, factory2.updateExternalModuleReference(decl.moduleReference, rewriteModuleSpecifier2(decl, specifier))); } else { const oldDiag = getSymbolAccessibilityDiagnostic; getSymbolAccessibilityDiagnostic = createGetSymbolAccessibilityDiagnosticForNode(decl); checkEntityNameVisibility(decl.moduleReference, enclosingDeclaration); getSymbolAccessibilityDiagnostic = oldDiag; return decl; } } function transformImportDeclaration(decl) { if (!decl.importClause) { return factory2.updateImportDeclaration(decl, decl.modifiers, decl.importClause, rewriteModuleSpecifier2(decl, decl.moduleSpecifier), tryGetResolutionModeOverride(decl.attributes)); } const phaseModifier = decl.importClause.phaseModifier === 166 ? undefined : decl.importClause.phaseModifier; const visibleDefaultBinding = decl.importClause && decl.importClause.name && resolver.isDeclarationVisible(decl.importClause) ? decl.importClause.name : undefined; if (!decl.importClause.namedBindings) { return visibleDefaultBinding && factory2.updateImportDeclaration(decl, decl.modifiers, factory2.updateImportClause(decl.importClause, phaseModifier, visibleDefaultBinding, undefined), rewriteModuleSpecifier2(decl, decl.moduleSpecifier), tryGetResolutionModeOverride(decl.attributes)); } if (decl.importClause.namedBindings.kind === 275) { const namedBindings = resolver.isDeclarationVisible(decl.importClause.namedBindings) ? decl.importClause.namedBindings : undefined; return visibleDefaultBinding || namedBindings ? factory2.updateImportDeclaration(decl, decl.modifiers, factory2.updateImportClause(decl.importClause, phaseModifier, visibleDefaultBinding, namedBindings), rewriteModuleSpecifier2(decl, decl.moduleSpecifier), tryGetResolutionModeOverride(decl.attributes)) : undefined; } const bindingList = mapDefined(decl.importClause.namedBindings.elements, (b) => resolver.isDeclarationVisible(b) ? b : undefined); if (bindingList && bindingList.length || visibleDefaultBinding) { return factory2.updateImportDeclaration(decl, decl.modifiers, factory2.updateImportClause(decl.importClause, phaseModifier, visibleDefaultBinding, bindingList && bindingList.length ? factory2.updateNamedImports(decl.importClause.namedBindings, bindingList) : undefined), rewriteModuleSpecifier2(decl, decl.moduleSpecifier), tryGetResolutionModeOverride(decl.attributes)); } if (resolver.isImportRequiredByAugmentation(decl)) { if (isolatedDeclarations) { context.addDiagnostic(createDiagnosticForNode(decl, Diagnostics.Declaration_emit_for_this_file_requires_preserving_this_import_for_augmentations_This_is_not_supported_with_isolatedDeclarations)); } return factory2.updateImportDeclaration(decl, decl.modifiers, undefined, rewriteModuleSpecifier2(decl, decl.moduleSpecifier), tryGetResolutionModeOverride(decl.attributes)); } } function tryGetResolutionModeOverride(node) { const mode = getResolutionModeOverride(node); return node && mode !== undefined ? node : undefined; } function transformAndReplaceLatePaintedStatements(statements) { while (length(lateMarkedStatements)) { const i = lateMarkedStatements.shift(); if (!isLateVisibilityPaintedStatement(i)) { return Debug.fail(`Late replaced statement was found which is not handled by the declaration transformer!: ${Debug.formatSyntaxKind(i.kind)}`); } const priorNeedsDeclare = needsDeclare; needsDeclare = i.parent && isSourceFile(i.parent) && !(isExternalModule(i.parent) && isBundledEmit); const result = transformTopLevelDeclaration(i); needsDeclare = priorNeedsDeclare; lateStatementReplacementMap.set(getOriginalNodeId(i), result); } return visitNodes2(statements, visitLateVisibilityMarkedStatements, isStatement); function visitLateVisibilityMarkedStatements(statement) { if (isLateVisibilityPaintedStatement(statement)) { const key = getOriginalNodeId(statement); if (lateStatementReplacementMap.has(key)) { const result = lateStatementReplacementMap.get(key); lateStatementReplacementMap.delete(key); if (result) { if (isArray(result) ? some(result, needsScopeMarker) : needsScopeMarker(result)) { needsScopeFixMarker = true; } if (isSourceFile(statement.parent) && (isArray(result) ? some(result, isExternalModuleIndicator) : isExternalModuleIndicator(result))) { resultHasExternalModuleIndicator = true; } } return result; } } return statement; } } function visitDeclarationSubtree(input) { if (shouldStripInternal(input)) return; if (isDeclaration(input)) { if (isDeclarationAndNotVisible(input)) return; if (hasDynamicName(input)) { if (isolatedDeclarations) { if (!resolver.isDefinitelyReferenceToGlobalSymbolObject(input.name.expression)) { if (isClassDeclaration(input.parent) || isObjectLiteralExpression(input.parent)) { context.addDiagnostic(createDiagnosticForNode(input, Diagnostics.Computed_property_names_on_class_or_object_literals_cannot_be_inferred_with_isolatedDeclarations)); return; } else if ((isInterfaceDeclaration(input.parent) || isTypeLiteralNode(input.parent)) && !isEntityNameExpression(input.name.expression)) { context.addDiagnostic(createDiagnosticForNode(input, Diagnostics.Computed_properties_must_be_number_or_string_literals_variables_or_dotted_expressions_with_isolatedDeclarations)); return; } } } else if (!resolver.isLateBound(getParseTreeNode(input)) || !isEntityNameExpression(input.name.expression)) { return; } } } if (isFunctionLike(input) && resolver.isImplementationOfOverload(input)) return; if (isSemicolonClassElement(input)) return; let previousEnclosingDeclaration; if (isEnclosingDeclaration(input)) { previousEnclosingDeclaration = enclosingDeclaration; enclosingDeclaration = input; } const oldDiag = getSymbolAccessibilityDiagnostic; const canProduceDiagnostic = canProduceDiagnostics(input); const oldWithinObjectLiteralType = suppressNewDiagnosticContexts; let shouldEnterSuppressNewDiagnosticsContextContext = (input.kind === 188 || input.kind === 201) && input.parent.kind !== 266; if (isMethodDeclaration(input) || isMethodSignature(input)) { if (hasEffectiveModifier(input, 2)) { if (input.symbol && input.symbol.declarations && input.symbol.declarations[0] !== input) return; return cleanup(factory2.createPropertyDeclaration(ensureModifiers(input), input.name, undefined, undefined, undefined)); } } if (canProduceDiagnostic && !suppressNewDiagnosticContexts) { getSymbolAccessibilityDiagnostic = createGetSymbolAccessibilityDiagnosticForNode(input); } if (isTypeQueryNode(input)) { checkEntityNameVisibility(input.exprName, enclosingDeclaration); } if (shouldEnterSuppressNewDiagnosticsContextContext) { suppressNewDiagnosticContexts = true; } if (isProcessedComponent(input)) { switch (input.kind) { case 234: { if (isEntityName(input.expression) || isEntityNameExpression(input.expression)) { checkEntityNameVisibility(input.expression, enclosingDeclaration); } const node = visitEachChild(input, visitDeclarationSubtree, context); return cleanup(factory2.updateExpressionWithTypeArguments(node, node.expression, node.typeArguments)); } case 184: { checkEntityNameVisibility(input.typeName, enclosingDeclaration); const node = visitEachChild(input, visitDeclarationSubtree, context); return cleanup(factory2.updateTypeReferenceNode(node, node.typeName, node.typeArguments)); } case 181: return cleanup(factory2.updateConstructSignature(input, ensureTypeParams(input, input.typeParameters), updateParamsList(input, input.parameters), ensureType(input))); case 177: { const ctor = factory2.createConstructorDeclaration(ensureModifiers(input), updateParamsList(input, input.parameters, 0), undefined); return cleanup(ctor); } case 175: { if (isPrivateIdentifier(input.name)) { return cleanup(undefined); } const sig = factory2.createMethodDeclaration(ensureModifiers(input), undefined, input.name, input.questionToken, ensureTypeParams(input, input.typeParameters), updateParamsList(input, input.parameters), ensureType(input), undefined); return cleanup(sig); } case 178: { if (isPrivateIdentifier(input.name)) { return cleanup(undefined); } return cleanup(factory2.updateGetAccessorDeclaration(input, ensureModifiers(input), input.name, updateAccessorParamsList(input, hasEffectiveModifier(input, 2)), ensureType(input), undefined)); } case 179: { if (isPrivateIdentifier(input.name)) { return cleanup(undefined); } return cleanup(factory2.updateSetAccessorDeclaration(input, ensureModifiers(input), input.name, updateAccessorParamsList(input, hasEffectiveModifier(input, 2)), undefined)); } case 173: if (isPrivateIdentifier(input.name)) { return cleanup(undefined); } return cleanup(factory2.updatePropertyDeclaration(input, ensureModifiers(input), input.name, input.questionToken, ensureType(input), ensureNoInitializer(input))); case 172: if (isPrivateIdentifier(input.name)) { return cleanup(undefined); } return cleanup(factory2.updatePropertySignature(input, ensureModifiers(input), input.name, input.questionToken, ensureType(input))); case 174: { if (isPrivateIdentifier(input.name)) { return cleanup(undefined); } return cleanup(factory2.updateMethodSignature(input, ensureModifiers(input), input.name, input.questionToken, ensureTypeParams(input, input.typeParameters), updateParamsList(input, input.parameters), ensureType(input))); } case 180: { return cleanup(factory2.updateCallSignature(input, ensureTypeParams(input, input.typeParameters), updateParamsList(input, input.parameters), ensureType(input))); } case 182: { return cleanup(factory2.updateIndexSignature(input, ensureModifiers(input), updateParamsList(input, input.parameters), visitNode(input.type, visitDeclarationSubtree, isTypeNode) || factory2.createKeywordTypeNode(133))); } case 261: { if (isBindingPattern(input.name)) { return recreateBindingPattern(input.name); } shouldEnterSuppressNewDiagnosticsContextContext = true; suppressNewDiagnosticContexts = true; return cleanup(factory2.updateVariableDeclaration(input, input.name, undefined, ensureType(input), ensureNoInitializer(input))); } case 169: { if (isPrivateMethodTypeParameter(input) && (input.default || input.constraint)) { return cleanup(factory2.updateTypeParameterDeclaration(input, input.modifiers, input.name, undefined, undefined)); } return cleanup(visitEachChild(input, visitDeclarationSubtree, context)); } case 195: { const checkType = visitNode(input.checkType, visitDeclarationSubtree, isTypeNode); const extendsType = visitNode(input.extendsType, visitDeclarationSubtree, isTypeNode); const oldEnclosingDecl = enclosingDeclaration; enclosingDeclaration = input.trueType; const trueType = visitNode(input.trueType, visitDeclarationSubtree, isTypeNode); enclosingDeclaration = oldEnclosingDecl; const falseType = visitNode(input.falseType, visitDeclarationSubtree, isTypeNode); Debug.assert(checkType); Debug.assert(extendsType); Debug.assert(trueType); Debug.assert(falseType); return cleanup(factory2.updateConditionalTypeNode(input, checkType, extendsType, trueType, falseType)); } case 185: { return cleanup(factory2.updateFunctionTypeNode(input, visitNodes2(input.typeParameters, visitDeclarationSubtree, isTypeParameterDeclaration), updateParamsList(input, input.parameters), Debug.checkDefined(visitNode(input.type, visitDeclarationSubtree, isTypeNode)))); } case 186: { return cleanup(factory2.updateConstructorTypeNode(input, ensureModifiers(input), visitNodes2(input.typeParameters, visitDeclarationSubtree, isTypeParameterDeclaration), updateParamsList(input, input.parameters), Debug.checkDefined(visitNode(input.type, visitDeclarationSubtree, isTypeNode)))); } case 206: { if (!isLiteralImportTypeNode(input)) return cleanup(input); return cleanup(factory2.updateImportTypeNode(input, factory2.updateLiteralTypeNode(input.argument, rewriteModuleSpecifier2(input, input.argument.literal)), input.attributes, input.qualifier, visitNodes2(input.typeArguments, visitDeclarationSubtree, isTypeNode), input.isTypeOf)); } default: Debug.assertNever(input, `Attempted to process unhandled node kind: ${Debug.formatSyntaxKind(input.kind)}`); } } if (isTupleTypeNode(input) && getLineAndCharacterOfPosition(currentSourceFile, input.pos).line === getLineAndCharacterOfPosition(currentSourceFile, input.end).line) { setEmitFlags(input, 1); } return cleanup(visitEachChild(input, visitDeclarationSubtree, context)); function cleanup(returnValue) { if (returnValue && canProduceDiagnostic && hasDynamicName(input)) { checkName(input); } if (isEnclosingDeclaration(input)) { enclosingDeclaration = previousEnclosingDeclaration; } if (canProduceDiagnostic && !suppressNewDiagnosticContexts) { getSymbolAccessibilityDiagnostic = oldDiag; } if (shouldEnterSuppressNewDiagnosticsContextContext) { suppressNewDiagnosticContexts = oldWithinObjectLiteralType; } if (returnValue === input) { return returnValue; } return returnValue && setOriginalNode(preserveJsDoc(returnValue, input), input); } } function isPrivateMethodTypeParameter(node) { return node.parent.kind === 175 && hasEffectiveModifier(node.parent, 2); } function visitDeclarationStatements(input) { if (!isPreservedDeclarationStatement(input)) { return; } if (shouldStripInternal(input)) return; switch (input.kind) { case 279: { if (isSourceFile(input.parent)) { resultHasExternalModuleIndicator = true; } resultHasScopeMarker = true; return factory2.updateExportDeclaration(input, input.modifiers, input.isTypeOnly, input.exportClause, rewriteModuleSpecifier2(input, input.moduleSpecifier), tryGetResolutionModeOverride(input.attributes)); } case 278: { if (isSourceFile(input.parent)) { resultHasExternalModuleIndicator = true; } resultHasScopeMarker = true; if (input.expression.kind === 80) { return input; } else { const newId = factory2.createUniqueName("_default", 16); getSymbolAccessibilityDiagnostic = () => ({ diagnosticMessage: Diagnostics.Default_export_of_the_module_has_or_is_using_private_name_0, errorNode: input }); errorFallbackNode = input; const type = ensureType(input); const varDecl = factory2.createVariableDeclaration(newId, undefined, type, undefined); errorFallbackNode = undefined; const statement = factory2.createVariableStatement(needsDeclare ? [factory2.createModifier(138)] : [], factory2.createVariableDeclarationList([varDecl], 2)); preserveJsDoc(statement, input); removeAllComments(input); return [statement, factory2.updateExportAssignment(input, input.modifiers, newId)]; } } } const result = transformTopLevelDeclaration(input); lateStatementReplacementMap.set(getOriginalNodeId(input), result); return input; } function stripExportModifiers(statement) { if (isImportEqualsDeclaration(statement) || hasEffectiveModifier(statement, 2048) || !canHaveModifiers(statement)) { return statement; } const modifiers = factory2.createModifiersFromModifierFlags(getEffectiveModifierFlags(statement) & (131071 ^ 32)); return factory2.replaceModifiers(statement, modifiers); } function updateModuleDeclarationAndKeyword(node, modifiers, name, body) { const updated = factory2.updateModuleDeclaration(node, modifiers, name, body); if (isAmbientModule(updated) || updated.flags & 32) { return updated; } const fixed = factory2.createModuleDeclaration(updated.modifiers, updated.name, updated.body, updated.flags | 32); setOriginalNode(fixed, updated); setTextRange(fixed, updated); return fixed; } function transformTopLevelDeclaration(input) { if (lateMarkedStatements) { while (orderedRemoveItem(lateMarkedStatements, input)) ; } if (shouldStripInternal(input)) return; switch (input.kind) { case 272: { return transformImportEqualsDeclaration(input); } case 273: { return transformImportDeclaration(input); } } if (isDeclaration(input) && isDeclarationAndNotVisible(input)) return; if (isJSDocImportTag(input)) return; if (isFunctionLike(input) && resolver.isImplementationOfOverload(input)) return; let previousEnclosingDeclaration; if (isEnclosingDeclaration(input)) { previousEnclosingDeclaration = enclosingDeclaration; enclosingDeclaration = input; } const canProdiceDiagnostic = canProduceDiagnostics(input); const oldDiag = getSymbolAccessibilityDiagnostic; if (canProdiceDiagnostic) { getSymbolAccessibilityDiagnostic = createGetSymbolAccessibilityDiagnosticForNode(input); } const previousNeedsDeclare = needsDeclare; switch (input.kind) { case 266: { needsDeclare = false; const clean2 = cleanup(factory2.updateTypeAliasDeclaration(input, ensureModifiers(input), input.name, visitNodes2(input.typeParameters, visitDeclarationSubtree, isTypeParameterDeclaration), Debug.checkDefined(visitNode(input.type, visitDeclarationSubtree, isTypeNode)))); needsDeclare = previousNeedsDeclare; return clean2; } case 265: { return cleanup(factory2.updateInterfaceDeclaration(input, ensureModifiers(input), input.name, ensureTypeParams(input, input.typeParameters), transformHeritageClauses(input.heritageClauses), visitNodes2(input.members, visitDeclarationSubtree, isTypeElement))); } case 263: { const clean2 = cleanup(factory2.updateFunctionDeclaration(input, ensureModifiers(input), undefined, input.name, ensureTypeParams(input, input.typeParameters), updateParamsList(input, input.parameters), ensureType(input), undefined)); if (clean2 && resolver.isExpandoFunctionDeclaration(input) && shouldEmitFunctionProperties(input)) { const props = resolver.getPropertiesOfContainerFunction(input); if (isolatedDeclarations) { reportExpandoFunctionErrors(input); } const fakespace = parseNodeFactory.createModuleDeclaration(undefined, clean2.name || factory2.createIdentifier("_default"), factory2.createModuleBlock([]), 32); setParent(fakespace, enclosingDeclaration); fakespace.locals = createSymbolTable(props); fakespace.symbol = props[0].parent; const exportMappings = []; let declarations = mapDefined(props, (p) => { if (!isExpandoPropertyDeclaration(p.valueDeclaration)) { return; } const nameStr = unescapeLeadingUnderscores(p.escapedName); if (!isIdentifierText(nameStr, 99)) { return; } getSymbolAccessibilityDiagnostic = createGetSymbolAccessibilityDiagnosticForNode(p.valueDeclaration); const type = resolver.createTypeOfDeclaration(p.valueDeclaration, fakespace, declarationEmitNodeBuilderFlags, declarationEmitInternalNodeBuilderFlags | 2, symbolTracker); getSymbolAccessibilityDiagnostic = oldDiag; const isNonContextualKeywordName = isStringANonContextualKeyword(nameStr); const name = isNonContextualKeywordName ? factory2.getGeneratedNameForNode(p.valueDeclaration) : factory2.createIdentifier(nameStr); if (isNonContextualKeywordName) { exportMappings.push([name, nameStr]); } const varDecl = factory2.createVariableDeclaration(name, undefined, type, undefined); return factory2.createVariableStatement(isNonContextualKeywordName ? undefined : [factory2.createToken(95)], factory2.createVariableDeclarationList([varDecl])); }); if (!exportMappings.length) { declarations = mapDefined(declarations, (declaration) => factory2.replaceModifiers(declaration, 0)); } else { declarations.push(factory2.createExportDeclaration(undefined, false, factory2.createNamedExports(map(exportMappings, ([gen, exp]) => { return factory2.createExportSpecifier(false, gen, exp); })))); } const namespaceDecl = factory2.createModuleDeclaration(ensureModifiers(input), input.name, factory2.createModuleBlock(declarations), 32); if (!hasEffectiveModifier(clean2, 2048)) { return [clean2, namespaceDecl]; } const modifiers = factory2.createModifiersFromModifierFlags(getEffectiveModifierFlags(clean2) & ~2080 | 128); const cleanDeclaration = factory2.updateFunctionDeclaration(clean2, modifiers, undefined, clean2.name, clean2.typeParameters, clean2.parameters, clean2.type, undefined); const namespaceDeclaration = factory2.updateModuleDeclaration(namespaceDecl, modifiers, namespaceDecl.name, namespaceDecl.body); const exportDefaultDeclaration = factory2.createExportAssignment(undefined, false, namespaceDecl.name); if (isSourceFile(input.parent)) { resultHasExternalModuleIndicator = true; } resultHasScopeMarker = true; return [cleanDeclaration, namespaceDeclaration, exportDefaultDeclaration]; } else { return clean2; } } case 268: { needsDeclare = false; const inner = input.body; if (inner && inner.kind === 269) { const oldNeedsScopeFix = needsScopeFixMarker; const oldHasScopeFix = resultHasScopeMarker; resultHasScopeMarker = false; needsScopeFixMarker = false; const statements = visitNodes2(inner.statements, visitDeclarationStatements, isStatement); let lateStatements = transformAndReplaceLatePaintedStatements(statements); if (input.flags & 33554432) { needsScopeFixMarker = false; } if (!isGlobalScopeAugmentation(input) && !hasScopeMarker2(lateStatements) && !resultHasScopeMarker) { if (needsScopeFixMarker) { lateStatements = factory2.createNodeArray([...lateStatements, createEmptyExports(factory2)]); } else { lateStatements = visitNodes2(lateStatements, stripExportModifiers, isStatement); } } const body = factory2.updateModuleBlock(inner, lateStatements); needsDeclare = previousNeedsDeclare; needsScopeFixMarker = oldNeedsScopeFix; resultHasScopeMarker = oldHasScopeFix; const mods = ensureModifiers(input); return cleanup(updateModuleDeclarationAndKeyword(input, mods, isExternalModuleAugmentation(input) ? rewriteModuleSpecifier2(input, input.name) : input.name, body)); } else { needsDeclare = previousNeedsDeclare; const mods = ensureModifiers(input); needsDeclare = false; visitNode(inner, visitDeclarationStatements); const id = getOriginalNodeId(inner); const body = lateStatementReplacementMap.get(id); lateStatementReplacementMap.delete(id); return cleanup(updateModuleDeclarationAndKeyword(input, mods, input.name, body)); } } case 264: { errorNameNode = input.name; errorFallbackNode = input; const modifiers = factory2.createNodeArray(ensureModifiers(input)); const typeParameters = ensureTypeParams(input, input.typeParameters); const ctor = getFirstConstructorWithBody(input); let parameterProperties; if (ctor) { const oldDiag2 = getSymbolAccessibilityDiagnostic; parameterProperties = compact(flatMap(ctor.parameters, (param) => { if (!hasSyntacticModifier(param, 31) || shouldStripInternal(param)) return; getSymbolAccessibilityDiagnostic = createGetSymbolAccessibilityDiagnosticForNode(param); if (param.name.kind === 80) { return preserveJsDoc(factory2.createPropertyDeclaration(ensureModifiers(param), param.name, param.questionToken, ensureType(param), ensureNoInitializer(param)), param); } else { return walkBindingPattern(param.name); } function walkBindingPattern(pattern) { let elems; for (const elem of pattern.elements) { if (isOmittedExpression(elem)) continue; if (isBindingPattern(elem.name)) { elems = concatenate(elems, walkBindingPattern(elem.name)); continue; } elems = elems || []; elems.push(factory2.createPropertyDeclaration(ensureModifiers(param), elem.name, undefined, ensureType(elem), undefined)); } return elems; } })); getSymbolAccessibilityDiagnostic = oldDiag2; } const hasPrivateIdentifier = some(input.members, (member) => !!member.name && isPrivateIdentifier(member.name)); const privateIdentifier = hasPrivateIdentifier ? [ factory2.createPropertyDeclaration(undefined, factory2.createPrivateIdentifier("#private"), undefined, undefined, undefined) ] : undefined; const lateIndexes = resolver.createLateBoundIndexSignatures(input, enclosingDeclaration, declarationEmitNodeBuilderFlags, declarationEmitInternalNodeBuilderFlags, symbolTracker); const memberNodes = concatenate(concatenate(concatenate(privateIdentifier, lateIndexes), parameterProperties), visitNodes2(input.members, visitDeclarationSubtree, isClassElement)); const members = factory2.createNodeArray(memberNodes); const extendsClause = getEffectiveBaseTypeNode(input); if (extendsClause && !isEntityNameExpression(extendsClause.expression) && extendsClause.expression.kind !== 106) { const oldId = input.name ? unescapeLeadingUnderscores(input.name.escapedText) : "default"; const newId = factory2.createUniqueName(`${oldId}_base`, 16); getSymbolAccessibilityDiagnostic = () => ({ diagnosticMessage: Diagnostics.extends_clause_of_exported_class_0_has_or_is_using_private_name_1, errorNode: extendsClause, typeName: input.name }); const varDecl = factory2.createVariableDeclaration(newId, undefined, resolver.createTypeOfExpression(extendsClause.expression, input, declarationEmitNodeBuilderFlags, declarationEmitInternalNodeBuilderFlags, symbolTracker), undefined); const statement = factory2.createVariableStatement(needsDeclare ? [factory2.createModifier(138)] : [], factory2.createVariableDeclarationList([varDecl], 2)); const heritageClauses = factory2.createNodeArray(map(input.heritageClauses, (clause) => { if (clause.token === 96) { const oldDiag2 = getSymbolAccessibilityDiagnostic; getSymbolAccessibilityDiagnostic = createGetSymbolAccessibilityDiagnosticForNode(clause.types[0]); const newClause = factory2.updateHeritageClause(clause, map(clause.types, (t) => factory2.updateExpressionWithTypeArguments(t, newId, visitNodes2(t.typeArguments, visitDeclarationSubtree, isTypeNode)))); getSymbolAccessibilityDiagnostic = oldDiag2; return newClause; } return factory2.updateHeritageClause(clause, visitNodes2(factory2.createNodeArray(filter(clause.types, (t) => isEntityNameExpression(t.expression) || t.expression.kind === 106)), visitDeclarationSubtree, isExpressionWithTypeArguments)); })); return [ statement, cleanup(factory2.updateClassDeclaration(input, modifiers, input.name, typeParameters, heritageClauses, members)) ]; } else { const heritageClauses = transformHeritageClauses(input.heritageClauses); return cleanup(factory2.updateClassDeclaration(input, modifiers, input.name, typeParameters, heritageClauses, members)); } } case 244: { return cleanup(transformVariableStatement(input)); } case 267: { return cleanup(factory2.updateEnumDeclaration(input, factory2.createNodeArray(ensureModifiers(input)), input.name, factory2.createNodeArray(mapDefined(input.members, (m) => { if (shouldStripInternal(m)) return; const enumValue = resolver.getEnumMemberValue(m); const constValue = enumValue == null ? undefined : enumValue.value; if (isolatedDeclarations && m.initializer && (enumValue == null ? undefined : enumValue.hasExternalReferences) && !isComputedPropertyName(m.name)) { context.addDiagnostic(createDiagnosticForNode(m, Diagnostics.Enum_member_initializers_must_be_computable_without_references_to_external_symbols_with_isolatedDeclarations)); } const newInitializer = constValue === undefined ? undefined : typeof constValue === "string" ? factory2.createStringLiteral(constValue) : constValue < 0 ? factory2.createPrefixUnaryExpression(41, factory2.createNumericLiteral(-constValue)) : factory2.createNumericLiteral(constValue); return preserveJsDoc(factory2.updateEnumMember(m, m.name, newInitializer), m); })))); } } return Debug.assertNever(input, `Unhandled top-level node in declaration emit: ${Debug.formatSyntaxKind(input.kind)}`); function cleanup(node) { if (isEnclosingDeclaration(input)) { enclosingDeclaration = previousEnclosingDeclaration; } if (canProdiceDiagnostic) { getSymbolAccessibilityDiagnostic = oldDiag; } if (input.kind === 268) { needsDeclare = previousNeedsDeclare; } if (node === input) { return node; } errorFallbackNode = undefined; errorNameNode = undefined; return node && setOriginalNode(preserveJsDoc(node, input), input); } } function transformVariableStatement(input) { if (!forEach(input.declarationList.declarations, getBindingNameVisible)) return; const nodes = visitNodes2(input.declarationList.declarations, visitDeclarationSubtree, isVariableDeclaration); if (!length(nodes)) return; const modifiers = factory2.createNodeArray(ensureModifiers(input)); let declList; if (isVarUsing(input.declarationList) || isVarAwaitUsing(input.declarationList)) { declList = factory2.createVariableDeclarationList(nodes, 2); setOriginalNode(declList, input.declarationList); setTextRange(declList, input.declarationList); setCommentRange(declList, input.declarationList); } else { declList = factory2.updateVariableDeclarationList(input.declarationList, nodes); } return factory2.updateVariableStatement(input, modifiers, declList); } function recreateBindingPattern(d) { return flatten(mapDefined(d.elements, (e) => recreateBindingElement(e))); } function recreateBindingElement(e) { if (e.kind === 233) { return; } if (e.name) { if (!getBindingNameVisible(e)) return; if (isBindingPattern(e.name)) { return recreateBindingPattern(e.name); } else { return factory2.createVariableDeclaration(e.name, undefined, ensureType(e), undefined); } } } function checkName(node) { let oldDiag; if (!suppressNewDiagnosticContexts) { oldDiag = getSymbolAccessibilityDiagnostic; getSymbolAccessibilityDiagnostic = createGetSymbolAccessibilityDiagnosticForNodeName(node); } errorNameNode = node.name; Debug.assert(hasDynamicName(node)); const decl = node; const entityName = decl.name.expression; checkEntityNameVisibility(entityName, enclosingDeclaration); if (!suppressNewDiagnosticContexts) { getSymbolAccessibilityDiagnostic = oldDiag; } errorNameNode = undefined; } function shouldStripInternal(node) { return !!stripInternal && !!node && isInternalDeclaration(node, currentSourceFile); } function isScopeMarker2(node) { return isExportAssignment(node) || isExportDeclaration(node); } function hasScopeMarker2(statements) { return some(statements, isScopeMarker2); } function ensureModifiers(node) { const currentFlags = getEffectiveModifierFlags(node); const newFlags = ensureModifierFlags(node); if (currentFlags === newFlags) { return visitArray(node.modifiers, (n) => tryCast(n, isModifier), isModifier); } return factory2.createModifiersFromModifierFlags(newFlags); } function ensureModifierFlags(node) { let mask2 = 131071 ^ (1 | 1024 | 16); let additions = needsDeclare && !isAlwaysType(node) ? 128 : 0; const parentIsFile = node.parent.kind === 308; if (!parentIsFile || isBundledEmit && parentIsFile && isExternalModule(node.parent)) { mask2 ^= 128; additions = 0; } return maskModifierFlags(node, mask2, additions); } function transformHeritageClauses(nodes) { return factory2.createNodeArray(filter(map(nodes, (clause) => factory2.updateHeritageClause(clause, visitNodes2(factory2.createNodeArray(filter(clause.types, (t) => { return isEntityNameExpression(t.expression) || clause.token === 96 && t.expression.kind === 106; })), visitDeclarationSubtree, isExpressionWithTypeArguments))), (clause) => clause.types && !!clause.types.length)); } } function isAlwaysType(node) { if (node.kind === 265) { return true; } return false; } function maskModifiers(factory2, node, modifierMask, modifierAdditions) { return factory2.createModifiersFromModifierFlags(maskModifierFlags(node, modifierMask, modifierAdditions)); } function maskModifierFlags(node, modifierMask = 131071 ^ 1, modifierAdditions = 0) { let flags = getEffectiveModifierFlags(node) & modifierMask | modifierAdditions; if (flags & 2048 && !(flags & 32)) { flags ^= 32; } if (flags & 2048 && flags & 128) { flags ^= 128; } return flags; } function canHaveLiteralInitializer(node) { switch (node.kind) { case 173: case 172: return !hasEffectiveModifier(node, 2); case 170: case 261: return true; } return false; } function isPreservedDeclarationStatement(node) { switch (node.kind) { case 263: case 268: case 272: case 265: case 264: case 266: case 267: case 244: case 273: case 279: case 278: return true; } return false; } function isProcessedComponent(node) { switch (node.kind) { case 181: case 177: case 175: case 178: case 179: case 173: case 172: case 174: case 180: case 182: case 261: case 169: case 234: case 184: case 195: case 185: case 186: case 206: return true; } return false; } function getModuleTransformer(moduleKind) { switch (moduleKind) { case 200: return transformECMAScriptModule; case 99: case 7: case 6: case 5: case 100: case 101: case 102: case 199: case 1: return transformImpliedNodeFormatDependentModule; case 4: return transformSystemModule; default: return transformModule; } } var noTransformers = { scriptTransformers: emptyArray, declarationTransformers: emptyArray }; function getTransformers(compilerOptions, customTransformers, emitOnly) { return { scriptTransformers: getScriptTransformers(compilerOptions, customTransformers, emitOnly), declarationTransformers: getDeclarationTransformers(customTransformers) }; } function getScriptTransformers(compilerOptions, customTransformers, emitOnly) { if (emitOnly) return emptyArray; const languageVersion = getEmitScriptTarget(compilerOptions); const moduleKind = getEmitModuleKind(compilerOptions); const useDefineForClassFields = getUseDefineForClassFields(compilerOptions); const transformers = []; addRange(transformers, customTransformers && map(customTransformers.before, wrapScriptTransformerFactory)); transformers.push(transformTypeScript); if (compilerOptions.experimentalDecorators) { transformers.push(transformLegacyDecorators); } if (getJSXTransformEnabled(compilerOptions)) { transformers.push(transformJsx); } if (languageVersion < 99) { transformers.push(transformESNext); } if (!compilerOptions.experimentalDecorators && (languageVersion < 99 || !useDefineForClassFields)) { transformers.push(transformESDecorators); } transformers.push(transformClassFields); if (languageVersion < 8) { transformers.push(transformES2021); } if (languageVersion < 7) { transformers.push(transformES2020); } if (languageVersion < 6) { transformers.push(transformES2019); } if (languageVersion < 5) { transformers.push(transformES2018); } if (languageVersion < 4) { transformers.push(transformES2017); } if (languageVersion < 3) { transformers.push(transformES2016); } if (languageVersion < 2) { transformers.push(transformES2015); transformers.push(transformGenerators); } transformers.push(getModuleTransformer(moduleKind)); addRange(transformers, customTransformers && map(customTransformers.after, wrapScriptTransformerFactory)); return transformers; } function getDeclarationTransformers(customTransformers) { const transformers = []; transformers.push(transformDeclarations); addRange(transformers, customTransformers && map(customTransformers.afterDeclarations, wrapDeclarationTransformerFactory)); return transformers; } function wrapCustomTransformer(transformer) { return (node) => isBundle(node) ? transformer.transformBundle(node) : transformer.transformSourceFile(node); } function wrapCustomTransformerFactory(transformer, handleDefault) { return (context) => { const customTransformer = transformer(context); return typeof customTransformer === "function" ? handleDefault(context, customTransformer) : wrapCustomTransformer(customTransformer); }; } function wrapScriptTransformerFactory(transformer) { return wrapCustomTransformerFactory(transformer, chainBundle); } function wrapDeclarationTransformerFactory(transformer) { return wrapCustomTransformerFactory(transformer, (_, node) => node); } function noEmitSubstitution(_hint, node) { return node; } function noEmitNotification(hint, node, callback) { callback(hint, node); } function transformNodes(resolver, host, factory2, options, nodes, transformers, allowDtsFiles) { var _a, _b; const enabledSyntaxKindFeatures = new Array(359); let lexicalEnvironmentVariableDeclarations; let lexicalEnvironmentFunctionDeclarations; let lexicalEnvironmentStatements; let lexicalEnvironmentFlags = 0; let lexicalEnvironmentVariableDeclarationsStack = []; let lexicalEnvironmentFunctionDeclarationsStack = []; let lexicalEnvironmentStatementsStack = []; let lexicalEnvironmentFlagsStack = []; let lexicalEnvironmentStackOffset = 0; let lexicalEnvironmentSuspended = false; let blockScopedVariableDeclarationsStack = []; let blockScopeStackOffset = 0; let blockScopedVariableDeclarations; let emitHelpers; let onSubstituteNode = noEmitSubstitution; let onEmitNode = noEmitNotification; let state = 0; const diagnostics = []; const context = { factory: factory2, getCompilerOptions: () => options, getEmitResolver: () => resolver, getEmitHost: () => host, getEmitHelperFactory: memoize(() => createEmitHelperFactory(context)), startLexicalEnvironment, suspendLexicalEnvironment, resumeLexicalEnvironment, endLexicalEnvironment, setLexicalEnvironmentFlags, getLexicalEnvironmentFlags, hoistVariableDeclaration, hoistFunctionDeclaration, addInitializationStatement, startBlockScope, endBlockScope, addBlockScopedVariable, requestEmitHelper, readEmitHelpers, enableSubstitution, enableEmitNotification, isSubstitutionEnabled, isEmitNotificationEnabled, get onSubstituteNode() { return onSubstituteNode; }, set onSubstituteNode(value) { Debug.assert(state < 1, "Cannot modify transformation hooks after initialization has completed."); Debug.assert(value !== undefined, "Value must not be 'undefined'"); onSubstituteNode = value; }, get onEmitNode() { return onEmitNode; }, set onEmitNode(value) { Debug.assert(state < 1, "Cannot modify transformation hooks after initialization has completed."); Debug.assert(value !== undefined, "Value must not be 'undefined'"); onEmitNode = value; }, addDiagnostic(diag2) { diagnostics.push(diag2); } }; for (const node of nodes) { disposeEmitNodes(getSourceFileOfNode(getParseTreeNode(node))); } mark("beforeTransform"); const transformersWithContext = transformers.map((t) => t(context)); const transformation = (node) => { for (const transform2 of transformersWithContext) { node = transform2(node); } return node; }; state = 1; const transformed = []; for (const node of nodes) { (_a = tracing) == null || _a.push(tracing.Phase.Emit, "transformNodes", node.kind === 308 ? { path: node.path } : { kind: node.kind, pos: node.pos, end: node.end }); transformed.push((allowDtsFiles ? transformation : transformRoot)(node)); (_b = tracing) == null || _b.pop(); } state = 2; mark("afterTransform"); measure("transformTime", "beforeTransform", "afterTransform"); return { transformed, substituteNode, emitNodeWithNotification, isEmitNotificationEnabled, dispose, diagnostics }; function transformRoot(node) { return node && (!isSourceFile(node) || !node.isDeclarationFile) ? transformation(node) : node; } function enableSubstitution(kind) { Debug.assert(state < 2, "Cannot modify the transformation context after transformation has completed."); enabledSyntaxKindFeatures[kind] |= 1; } function isSubstitutionEnabled(node) { return (enabledSyntaxKindFeatures[node.kind] & 1) !== 0 && (getEmitFlags(node) & 8) === 0; } function substituteNode(hint, node) { Debug.assert(state < 3, "Cannot substitute a node after the result is disposed."); return node && isSubstitutionEnabled(node) && onSubstituteNode(hint, node) || node; } function enableEmitNotification(kind) { Debug.assert(state < 2, "Cannot modify the transformation context after transformation has completed."); enabledSyntaxKindFeatures[kind] |= 2; } function isEmitNotificationEnabled(node) { return (enabledSyntaxKindFeatures[node.kind] & 2) !== 0 || (getEmitFlags(node) & 4) !== 0; } function emitNodeWithNotification(hint, node, emitCallback) { Debug.assert(state < 3, "Cannot invoke TransformationResult callbacks after the result is disposed."); if (node) { if (isEmitNotificationEnabled(node)) { onEmitNode(hint, node, emitCallback); } else { emitCallback(hint, node); } } } function hoistVariableDeclaration(name) { Debug.assert(state > 0, "Cannot modify the lexical environment during initialization."); Debug.assert(state < 2, "Cannot modify the lexical environment after transformation has completed."); const decl = setEmitFlags(factory2.createVariableDeclaration(name), 128); if (!lexicalEnvironmentVariableDeclarations) { lexicalEnvironmentVariableDeclarations = [decl]; } else { lexicalEnvironmentVariableDeclarations.push(decl); } if (lexicalEnvironmentFlags & 1) { lexicalEnvironmentFlags |= 2; } } function hoistFunctionDeclaration(func) { Debug.assert(state > 0, "Cannot modify the lexical environment during initialization."); Debug.assert(state < 2, "Cannot modify the lexical environment after transformation has completed."); setEmitFlags(func, 2097152); if (!lexicalEnvironmentFunctionDeclarations) { lexicalEnvironmentFunctionDeclarations = [func]; } else { lexicalEnvironmentFunctionDeclarations.push(func); } } function addInitializationStatement(node) { Debug.assert(state > 0, "Cannot modify the lexical environment during initialization."); Debug.assert(state < 2, "Cannot modify the lexical environment after transformation has completed."); setEmitFlags(node, 2097152); if (!lexicalEnvironmentStatements) { lexicalEnvironmentStatements = [node]; } else { lexicalEnvironmentStatements.push(node); } } function startLexicalEnvironment() { Debug.assert(state > 0, "Cannot modify the lexical environment during initialization."); Debug.assert(state < 2, "Cannot modify the lexical environment after transformation has completed."); Debug.assert(!lexicalEnvironmentSuspended, "Lexical environment is suspended."); lexicalEnvironmentVariableDeclarationsStack[lexicalEnvironmentStackOffset] = lexicalEnvironmentVariableDeclarations; lexicalEnvironmentFunctionDeclarationsStack[lexicalEnvironmentStackOffset] = lexicalEnvironmentFunctionDeclarations; lexicalEnvironmentStatementsStack[lexicalEnvironmentStackOffset] = lexicalEnvironmentStatements; lexicalEnvironmentFlagsStack[lexicalEnvironmentStackOffset] = lexicalEnvironmentFlags; lexicalEnvironmentStackOffset++; lexicalEnvironmentVariableDeclarations = undefined; lexicalEnvironmentFunctionDeclarations = undefined; lexicalEnvironmentStatements = undefined; lexicalEnvironmentFlags = 0; } function suspendLexicalEnvironment() { Debug.assert(state > 0, "Cannot modify the lexical environment during initialization."); Debug.assert(state < 2, "Cannot modify the lexical environment after transformation has completed."); Debug.assert(!lexicalEnvironmentSuspended, "Lexical environment is already suspended."); lexicalEnvironmentSuspended = true; } function resumeLexicalEnvironment() { Debug.assert(state > 0, "Cannot modify the lexical environment during initialization."); Debug.assert(state < 2, "Cannot modify the lexical environment after transformation has completed."); Debug.assert(lexicalEnvironmentSuspended, "Lexical environment is not suspended."); lexicalEnvironmentSuspended = false; } function endLexicalEnvironment() { Debug.assert(state > 0, "Cannot modify the lexical environment during initialization."); Debug.assert(state < 2, "Cannot modify the lexical environment after transformation has completed."); Debug.assert(!lexicalEnvironmentSuspended, "Lexical environment is suspended."); let statements; if (lexicalEnvironmentVariableDeclarations || lexicalEnvironmentFunctionDeclarations || lexicalEnvironmentStatements) { if (lexicalEnvironmentFunctionDeclarations) { statements = [...lexicalEnvironmentFunctionDeclarations]; } if (lexicalEnvironmentVariableDeclarations) { const statement = factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList(lexicalEnvironmentVariableDeclarations)); setEmitFlags(statement, 2097152); if (!statements) { statements = [statement]; } else { statements.push(statement); } } if (lexicalEnvironmentStatements) { if (!statements) { statements = [...lexicalEnvironmentStatements]; } else { statements = [...statements, ...lexicalEnvironmentStatements]; } } } lexicalEnvironmentStackOffset--; lexicalEnvironmentVariableDeclarations = lexicalEnvironmentVariableDeclarationsStack[lexicalEnvironmentStackOffset]; lexicalEnvironmentFunctionDeclarations = lexicalEnvironmentFunctionDeclarationsStack[lexicalEnvironmentStackOffset]; lexicalEnvironmentStatements = lexicalEnvironmentStatementsStack[lexicalEnvironmentStackOffset]; lexicalEnvironmentFlags = lexicalEnvironmentFlagsStack[lexicalEnvironmentStackOffset]; if (lexicalEnvironmentStackOffset === 0) { lexicalEnvironmentVariableDeclarationsStack = []; lexicalEnvironmentFunctionDeclarationsStack = []; lexicalEnvironmentStatementsStack = []; lexicalEnvironmentFlagsStack = []; } return statements; } function setLexicalEnvironmentFlags(flags, value) { lexicalEnvironmentFlags = value ? lexicalEnvironmentFlags | flags : lexicalEnvironmentFlags & ~flags; } function getLexicalEnvironmentFlags() { return lexicalEnvironmentFlags; } function startBlockScope() { Debug.assert(state > 0, "Cannot start a block scope during initialization."); Debug.assert(state < 2, "Cannot start a block scope after transformation has completed."); blockScopedVariableDeclarationsStack[blockScopeStackOffset] = blockScopedVariableDeclarations; blockScopeStackOffset++; blockScopedVariableDeclarations = undefined; } function endBlockScope() { Debug.assert(state > 0, "Cannot end a block scope during initialization."); Debug.assert(state < 2, "Cannot end a block scope after transformation has completed."); const statements = some(blockScopedVariableDeclarations) ? [ factory2.createVariableStatement(undefined, factory2.createVariableDeclarationList(blockScopedVariableDeclarations.map((identifier) => factory2.createVariableDeclaration(identifier)), 1)) ] : undefined; blockScopeStackOffset--; blockScopedVariableDeclarations = blockScopedVariableDeclarationsStack[blockScopeStackOffset]; if (blockScopeStackOffset === 0) { blockScopedVariableDeclarationsStack = []; } return statements; } function addBlockScopedVariable(name) { Debug.assert(blockScopeStackOffset > 0, "Cannot add a block scoped variable outside of an iteration body."); (blockScopedVariableDeclarations || (blockScopedVariableDeclarations = [])).push(name); } function requestEmitHelper(helper) { Debug.assert(state > 0, "Cannot modify the transformation context during initialization."); Debug.assert(state < 2, "Cannot modify the transformation context after transformation has completed."); Debug.assert(!helper.scoped, "Cannot request a scoped emit helper."); if (helper.dependencies) { for (const h of helper.dependencies) { requestEmitHelper(h); } } emitHelpers = append(emitHelpers, helper); } function readEmitHelpers() { Debug.assert(state > 0, "Cannot modify the transformation context during initialization."); Debug.assert(state < 2, "Cannot modify the transformation context after transformation has completed."); const helpers = emitHelpers; emitHelpers = undefined; return helpers; } function dispose() { if (state < 3) { for (const node of nodes) { disposeEmitNodes(getSourceFileOfNode(getParseTreeNode(node))); } lexicalEnvironmentVariableDeclarations = undefined; lexicalEnvironmentVariableDeclarationsStack = undefined; lexicalEnvironmentFunctionDeclarations = undefined; lexicalEnvironmentFunctionDeclarationsStack = undefined; onSubstituteNode = undefined; onEmitNode = undefined; emitHelpers = undefined; state = 3; } } } var nullTransformationContext = { factory, getCompilerOptions: () => ({}), getEmitResolver: notImplemented, getEmitHost: notImplemented, getEmitHelperFactory: notImplemented, startLexicalEnvironment: noop, resumeLexicalEnvironment: noop, suspendLexicalEnvironment: noop, endLexicalEnvironment: returnUndefined, setLexicalEnvironmentFlags: noop, getLexicalEnvironmentFlags: () => 0, hoistVariableDeclaration: noop, hoistFunctionDeclaration: noop, addInitializationStatement: noop, startBlockScope: noop, endBlockScope: returnUndefined, addBlockScopedVariable: noop, requestEmitHelper: noop, readEmitHelpers: notImplemented, enableSubstitution: noop, enableEmitNotification: noop, isSubstitutionEnabled: notImplemented, isEmitNotificationEnabled: notImplemented, onSubstituteNode: noEmitSubstitution, onEmitNode: noEmitNotification, addDiagnostic: noop }; var brackets = createBracketsMap(); function isBuildInfoFile(file) { return fileExtensionIs(file, ".tsbuildinfo"); } function forEachEmittedFile(host, action, sourceFilesOrTargetSourceFile, forceDtsEmit = false, onlyBuildInfo, includeBuildInfo) { const sourceFiles = isArray(sourceFilesOrTargetSourceFile) ? sourceFilesOrTargetSourceFile : getSourceFilesToEmit(host, sourceFilesOrTargetSourceFile, forceDtsEmit); const options = host.getCompilerOptions(); if (!onlyBuildInfo) { if (options.outFile) { if (sourceFiles.length) { const bundle = factory.createBundle(sourceFiles); const result = action(getOutputPathsFor(bundle, host, forceDtsEmit), bundle); if (result) { return result; } } } else { for (const sourceFile of sourceFiles) { const result = action(getOutputPathsFor(sourceFile, host, forceDtsEmit), sourceFile); if (result) { return result; } } } } if (includeBuildInfo) { const buildInfoPath = getTsBuildInfoEmitOutputFilePath(options); if (buildInfoPath) return action({ buildInfoPath }, undefined); } } function getTsBuildInfoEmitOutputFilePath(options) { const configFile = options.configFilePath; if (!canEmitTsBuildInfo(options)) return; if (options.tsBuildInfoFile) return options.tsBuildInfoFile; const outPath = options.outFile; let buildInfoExtensionLess; if (outPath) { buildInfoExtensionLess = removeFileExtension(outPath); } else { if (!configFile) return; const configFileExtensionLess = removeFileExtension(configFile); buildInfoExtensionLess = options.outDir ? options.rootDir ? resolvePath(options.outDir, getRelativePathFromDirectory(options.rootDir, configFileExtensionLess, true)) : combinePaths(options.outDir, getBaseFileName(configFileExtensionLess)) : configFileExtensionLess; } return buildInfoExtensionLess + ".tsbuildinfo"; } function canEmitTsBuildInfo(options) { return isIncrementalCompilation(options) || !!options.tscBuild; } function getOutputPathsForBundle(options, forceDtsPaths) { const outPath = options.outFile; const jsFilePath = options.emitDeclarationOnly ? undefined : outPath; const sourceMapFilePath = jsFilePath && getSourceMapFilePath(jsFilePath, options); const declarationFilePath = forceDtsPaths || getEmitDeclarations(options) ? removeFileExtension(outPath) + ".d.ts" : undefined; const declarationMapPath = declarationFilePath && getAreDeclarationMapsEnabled(options) ? declarationFilePath + ".map" : undefined; return { jsFilePath, sourceMapFilePath, declarationFilePath, declarationMapPath }; } function getOutputPathsFor(sourceFile, host, forceDtsPaths) { const options = host.getCompilerOptions(); if (sourceFile.kind === 309) { return getOutputPathsForBundle(options, forceDtsPaths); } else { const ownOutputFilePath = getOwnEmitOutputFilePath(sourceFile.fileName, host, getOutputExtension(sourceFile.fileName, options)); const isJsonFile = isJsonSourceFile(sourceFile); const isJsonEmittedToSameLocation = isJsonFile && comparePaths(sourceFile.fileName, ownOutputFilePath, host.getCurrentDirectory(), !host.useCaseSensitiveFileNames()) === 0; const jsFilePath = options.emitDeclarationOnly || isJsonEmittedToSameLocation ? undefined : ownOutputFilePath; const sourceMapFilePath = !jsFilePath || isJsonSourceFile(sourceFile) ? undefined : getSourceMapFilePath(jsFilePath, options); const declarationFilePath = forceDtsPaths || getEmitDeclarations(options) && !isJsonFile ? getDeclarationEmitOutputFilePath(sourceFile.fileName, host) : undefined; const declarationMapPath = declarationFilePath && getAreDeclarationMapsEnabled(options) ? declarationFilePath + ".map" : undefined; return { jsFilePath, sourceMapFilePath, declarationFilePath, declarationMapPath }; } } function getSourceMapFilePath(jsFilePath, options) { return options.sourceMap && !options.inlineSourceMap ? jsFilePath + ".map" : undefined; } function getOutputExtension(fileName, options) { return fileExtensionIs(fileName, ".json") ? ".json" : options.jsx === 1 && fileExtensionIsOneOf(fileName, [".jsx", ".tsx"]) ? ".jsx" : fileExtensionIsOneOf(fileName, [".mts", ".mjs"]) ? ".mjs" : fileExtensionIsOneOf(fileName, [".cts", ".cjs"]) ? ".cjs" : ".js"; } function getOutputPathWithoutChangingExt(inputFileName, ignoreCase, outputDir, getCommonSourceDirectory2) { return outputDir ? resolvePath(outputDir, getRelativePathFromDirectory(getCommonSourceDirectory2(), inputFileName, ignoreCase)) : inputFileName; } function getOutputDeclarationFileName(inputFileName, configFile, ignoreCase, getCommonSourceDirectory2 = () => getCommonSourceDirectoryOfConfig(configFile, ignoreCase)) { return getOutputDeclarationFileNameWorker(inputFileName, configFile.options, ignoreCase, getCommonSourceDirectory2); } function getOutputDeclarationFileNameWorker(inputFileName, options, ignoreCase, getCommonSourceDirectory2) { return changeExtension(getOutputPathWithoutChangingExt(inputFileName, ignoreCase, options.declarationDir || options.outDir, getCommonSourceDirectory2), getDeclarationEmitExtensionForPath(inputFileName)); } function getOutputJSFileName(inputFileName, configFile, ignoreCase, getCommonSourceDirectory2 = () => getCommonSourceDirectoryOfConfig(configFile, ignoreCase)) { if (configFile.options.emitDeclarationOnly) return; const isJsonFile = fileExtensionIs(inputFileName, ".json"); const outputFileName = getOutputJSFileNameWorker(inputFileName, configFile.options, ignoreCase, getCommonSourceDirectory2); return !isJsonFile || comparePaths(inputFileName, outputFileName, Debug.checkDefined(configFile.options.configFilePath), ignoreCase) !== 0 ? outputFileName : undefined; } function getOutputJSFileNameWorker(inputFileName, options, ignoreCase, getCommonSourceDirectory2) { return changeExtension(getOutputPathWithoutChangingExt(inputFileName, ignoreCase, options.outDir, getCommonSourceDirectory2), getOutputExtension(inputFileName, options)); } function createAddOutput() { let outputs; return { addOutput, getOutputs }; function addOutput(path) { if (path) { (outputs || (outputs = [])).push(path); } } function getOutputs() { return outputs || emptyArray; } } function getSingleOutputFileNames(configFile, addOutput) { const { jsFilePath, sourceMapFilePath, declarationFilePath, declarationMapPath } = getOutputPathsForBundle(configFile.options, false); addOutput(jsFilePath); addOutput(sourceMapFilePath); addOutput(declarationFilePath); addOutput(declarationMapPath); } function getOwnOutputFileNames(configFile, inputFileName, ignoreCase, addOutput, getCommonSourceDirectory2) { if (isDeclarationFileName(inputFileName)) return; const js = getOutputJSFileName(inputFileName, configFile, ignoreCase, getCommonSourceDirectory2); addOutput(js); if (fileExtensionIs(inputFileName, ".json")) return; if (js && configFile.options.sourceMap) { addOutput(`${js}.map`); } if (getEmitDeclarations(configFile.options)) { const dts = getOutputDeclarationFileName(inputFileName, configFile, ignoreCase, getCommonSourceDirectory2); addOutput(dts); if (configFile.options.declarationMap) { addOutput(`${dts}.map`); } } } function getCommonSourceDirectory(options, emittedFiles, currentDirectory, getCanonicalFileName, checkSourceFilesBelongToPath) { let commonSourceDirectory; if (options.rootDir) { commonSourceDirectory = getNormalizedAbsolutePath(options.rootDir, currentDirectory); checkSourceFilesBelongToPath == null || checkSourceFilesBelongToPath(options.rootDir); } else if (options.configFilePath) { commonSourceDirectory = getDirectoryPath(normalizeSlashes(options.configFilePath)); checkSourceFilesBelongToPath == null || checkSourceFilesBelongToPath(commonSourceDirectory); } else { commonSourceDirectory = computeCommonSourceDirectoryOfFilenames(emittedFiles(), currentDirectory, getCanonicalFileName); } if (commonSourceDirectory && commonSourceDirectory[commonSourceDirectory.length - 1] !== directorySeparator) { commonSourceDirectory += directorySeparator; } return commonSourceDirectory; } function getComputedCommonSourceDirectory(emittedFiles, currentDirectory, getCanonicalFileName) { let commonSourceDirectory = computeCommonSourceDirectoryOfFilenames(emittedFiles, currentDirectory, getCanonicalFileName); if (commonSourceDirectory && commonSourceDirectory[commonSourceDirectory.length - 1] !== directorySeparator) { commonSourceDirectory += directorySeparator; } return commonSourceDirectory; } function getCommonSourceDirectoryOfConfig({ options, fileNames }, ignoreCase) { return getCommonSourceDirectory(options, () => filter(fileNames, (file) => !(options.noEmitForJsFiles && fileExtensionIsOneOf(file, supportedJSExtensionsFlat)) && !isDeclarationFileName(file)), getDirectoryPath(normalizeSlashes(Debug.checkDefined(options.configFilePath))), createGetCanonicalFileName(!ignoreCase)); } function getAllProjectOutputs(configFile, ignoreCase) { const { addOutput, getOutputs } = createAddOutput(); if (configFile.options.outFile) { getSingleOutputFileNames(configFile, addOutput); } else { const getCommonSourceDirectory2 = memoize(() => getCommonSourceDirectoryOfConfig(configFile, ignoreCase)); for (const inputFileName of configFile.fileNames) { getOwnOutputFileNames(configFile, inputFileName, ignoreCase, addOutput, getCommonSourceDirectory2); } } addOutput(getTsBuildInfoEmitOutputFilePath(configFile.options)); return getOutputs(); } function getOutputFileNames(commandLine, inputFileName, ignoreCase) { inputFileName = normalizePath(inputFileName); Debug.assert(contains(commandLine.fileNames, inputFileName), `Expected fileName to be present in command line`); const { addOutput, getOutputs } = createAddOutput(); if (commandLine.options.outFile) { getSingleOutputFileNames(commandLine, addOutput); } else { getOwnOutputFileNames(commandLine, inputFileName, ignoreCase, addOutput); } return getOutputs(); } function getFirstProjectOutput(configFile, ignoreCase) { if (configFile.options.outFile) { const { jsFilePath, declarationFilePath } = getOutputPathsForBundle(configFile.options, false); return Debug.checkDefined(jsFilePath || declarationFilePath, `project ${configFile.options.configFilePath} expected to have at least one output`); } const getCommonSourceDirectory2 = memoize(() => getCommonSourceDirectoryOfConfig(configFile, ignoreCase)); for (const inputFileName of configFile.fileNames) { if (isDeclarationFileName(inputFileName)) continue; const jsFilePath = getOutputJSFileName(inputFileName, configFile, ignoreCase, getCommonSourceDirectory2); if (jsFilePath) return jsFilePath; if (fileExtensionIs(inputFileName, ".json")) continue; if (getEmitDeclarations(configFile.options)) { return getOutputDeclarationFileName(inputFileName, configFile, ignoreCase, getCommonSourceDirectory2); } } const buildInfoPath = getTsBuildInfoEmitOutputFilePath(configFile.options); if (buildInfoPath) return buildInfoPath; return Debug.fail(`project ${configFile.options.configFilePath} expected to have at least one output`); } function emitResolverSkipsTypeChecking(emitOnly, forceDtsEmit) { return !!forceDtsEmit && !!emitOnly; } function emitFiles(resolver, host, targetSourceFile, { scriptTransformers, declarationTransformers }, emitOnly, onlyBuildInfo, forceDtsEmit, skipBuildInfo) { var compilerOptions = host.getCompilerOptions(); var sourceMapDataList = compilerOptions.sourceMap || compilerOptions.inlineSourceMap || getAreDeclarationMapsEnabled(compilerOptions) ? [] : undefined; var emittedFilesList = compilerOptions.listEmittedFiles ? [] : undefined; var emitterDiagnostics = createDiagnosticCollection(); var newLine = getNewLineCharacter(compilerOptions); var writer = createTextWriter(newLine); var { enter, exit } = createTimer("printTime", "beforePrint", "afterPrint"); var emitSkipped = false; enter(); forEachEmittedFile(host, emitSourceFileOrBundle, getSourceFilesToEmit(host, targetSourceFile, forceDtsEmit), forceDtsEmit, onlyBuildInfo, !targetSourceFile && !skipBuildInfo); exit(); return { emitSkipped, diagnostics: emitterDiagnostics.getDiagnostics(), emittedFiles: emittedFilesList, sourceMaps: sourceMapDataList }; function emitSourceFileOrBundle({ jsFilePath, sourceMapFilePath, declarationFilePath, declarationMapPath, buildInfoPath }, sourceFileOrBundle) { var _a, _b, _c, _d, _e, _f; (_a = tracing) == null || _a.push(tracing.Phase.Emit, "emitJsFileOrBundle", { jsFilePath }); emitJsFileOrBundle(sourceFileOrBundle, jsFilePath, sourceMapFilePath); (_b = tracing) == null || _b.pop(); (_c = tracing) == null || _c.push(tracing.Phase.Emit, "emitDeclarationFileOrBundle", { declarationFilePath }); emitDeclarationFileOrBundle(sourceFileOrBundle, declarationFilePath, declarationMapPath); (_d = tracing) == null || _d.pop(); (_e = tracing) == null || _e.push(tracing.Phase.Emit, "emitBuildInfo", { buildInfoPath }); emitBuildInfo(buildInfoPath); (_f = tracing) == null || _f.pop(); } function emitBuildInfo(buildInfoPath) { if (!buildInfoPath || targetSourceFile) return; if (host.isEmitBlocked(buildInfoPath)) { emitSkipped = true; return; } const buildInfo = host.getBuildInfo() || { version }; writeFile(host, emitterDiagnostics, buildInfoPath, getBuildInfoText(buildInfo), false, undefined, { buildInfo }); emittedFilesList == null || emittedFilesList.push(buildInfoPath); } function emitJsFileOrBundle(sourceFileOrBundle, jsFilePath, sourceMapFilePath) { if (!sourceFileOrBundle || emitOnly || !jsFilePath) { return; } if (host.isEmitBlocked(jsFilePath) || compilerOptions.noEmit) { emitSkipped = true; return; } (isSourceFile(sourceFileOrBundle) ? [sourceFileOrBundle] : filter(sourceFileOrBundle.sourceFiles, isSourceFileNotJson)).forEach((sourceFile) => { if (compilerOptions.noCheck || !canIncludeBindAndCheckDiagnostics(sourceFile, compilerOptions)) markLinkedReferences(sourceFile); }); const transform2 = transformNodes(resolver, host, factory, compilerOptions, [sourceFileOrBundle], scriptTransformers, false); const printerOptions = { removeComments: compilerOptions.removeComments, newLine: compilerOptions.newLine, noEmitHelpers: compilerOptions.noEmitHelpers, module: getEmitModuleKind(compilerOptions), moduleResolution: getEmitModuleResolutionKind(compilerOptions), target: getEmitScriptTarget(compilerOptions), sourceMap: compilerOptions.sourceMap, inlineSourceMap: compilerOptions.inlineSourceMap, inlineSources: compilerOptions.inlineSources, extendedDiagnostics: compilerOptions.extendedDiagnostics }; const printer = createPrinter(printerOptions, { hasGlobalName: resolver.hasGlobalName, onEmitNode: transform2.emitNodeWithNotification, isEmitNotificationEnabled: transform2.isEmitNotificationEnabled, substituteNode: transform2.substituteNode }); Debug.assert(transform2.transformed.length === 1, "Should only see one output from the transform"); printSourceFileOrBundle(jsFilePath, sourceMapFilePath, transform2, printer, compilerOptions); transform2.dispose(); if (emittedFilesList) { emittedFilesList.push(jsFilePath); if (sourceMapFilePath) { emittedFilesList.push(sourceMapFilePath); } } } function emitDeclarationFileOrBundle(sourceFileOrBundle, declarationFilePath, declarationMapPath) { if (!sourceFileOrBundle || emitOnly === 0) return; if (!declarationFilePath) { if (emitOnly || compilerOptions.emitDeclarationOnly) emitSkipped = true; return; } const sourceFiles = isSourceFile(sourceFileOrBundle) ? [sourceFileOrBundle] : sourceFileOrBundle.sourceFiles; const filesForEmit = forceDtsEmit ? sourceFiles : filter(sourceFiles, isSourceFileNotJson); const inputListOrBundle = compilerOptions.outFile ? [factory.createBundle(filesForEmit)] : filesForEmit; filesForEmit.forEach((sourceFile) => { if (emitOnly && !getEmitDeclarations(compilerOptions) || compilerOptions.noCheck || emitResolverSkipsTypeChecking(emitOnly, forceDtsEmit) || !canIncludeBindAndCheckDiagnostics(sourceFile, compilerOptions)) { collectLinkedAliases(sourceFile); } }); const declarationTransform = transformNodes(resolver, host, factory, compilerOptions, inputListOrBundle, declarationTransformers, false); if (length(declarationTransform.diagnostics)) { for (const diagnostic of declarationTransform.diagnostics) { emitterDiagnostics.add(diagnostic); } } const declBlocked = !!declarationTransform.diagnostics && !!declarationTransform.diagnostics.length || !!host.isEmitBlocked(declarationFilePath) || !!compilerOptions.noEmit; emitSkipped = emitSkipped || declBlocked; if (!declBlocked || forceDtsEmit) { Debug.assert(declarationTransform.transformed.length === 1, "Should only see one output from the decl transform"); const printerOptions = { removeComments: compilerOptions.removeComments, newLine: compilerOptions.newLine, noEmitHelpers: true, module: compilerOptions.module, moduleResolution: compilerOptions.moduleResolution, target: compilerOptions.target, sourceMap: emitOnly !== 2 && compilerOptions.declarationMap, inlineSourceMap: compilerOptions.inlineSourceMap, extendedDiagnostics: compilerOptions.extendedDiagnostics, onlyPrintJsDocStyle: true, omitBraceSourceMapPositions: true }; const declarationPrinter = createPrinter(printerOptions, { hasGlobalName: resolver.hasGlobalName, onEmitNode: declarationTransform.emitNodeWithNotification, isEmitNotificationEnabled: declarationTransform.isEmitNotificationEnabled, substituteNode: declarationTransform.substituteNode }); const dtsWritten = printSourceFileOrBundle(declarationFilePath, declarationMapPath, declarationTransform, declarationPrinter, { sourceMap: printerOptions.sourceMap, sourceRoot: compilerOptions.sourceRoot, mapRoot: compilerOptions.mapRoot, extendedDiagnostics: compilerOptions.extendedDiagnostics }); if (emittedFilesList) { if (dtsWritten) emittedFilesList.push(declarationFilePath); if (declarationMapPath) { emittedFilesList.push(declarationMapPath); } } } declarationTransform.dispose(); } function collectLinkedAliases(node) { if (isExportAssignment(node)) { if (node.expression.kind === 80) { resolver.collectLinkedAliases(node.expression, true); } return; } else if (isExportSpecifier(node)) { resolver.collectLinkedAliases(node.propertyName || node.name, true); return; } forEachChild(node, collectLinkedAliases); } function markLinkedReferences(file) { if (isSourceFileJS(file)) return; forEachChildRecursively(file, (n) => { if (isImportEqualsDeclaration(n) && !(getSyntacticModifierFlags(n) & 32)) return "skip"; if (isImportDeclaration(n)) return "skip"; resolver.markLinkedReferences(n); }); } function printSourceFileOrBundle(jsFilePath, sourceMapFilePath, transform2, printer, mapOptions) { const sourceFileOrBundle = transform2.transformed[0]; const bundle = sourceFileOrBundle.kind === 309 ? sourceFileOrBundle : undefined; const sourceFile = sourceFileOrBundle.kind === 308 ? sourceFileOrBundle : undefined; const sourceFiles = bundle ? bundle.sourceFiles : [sourceFile]; let sourceMapGenerator; if (shouldEmitSourceMaps(mapOptions, sourceFileOrBundle)) { sourceMapGenerator = createSourceMapGenerator(host, getBaseFileName(normalizeSlashes(jsFilePath)), getSourceRoot(mapOptions), getSourceMapDirectory(mapOptions, jsFilePath, sourceFile), mapOptions); } if (bundle) { printer.writeBundle(bundle, writer, sourceMapGenerator); } else { printer.writeFile(sourceFile, writer, sourceMapGenerator); } let sourceMapUrlPos; if (sourceMapGenerator) { if (sourceMapDataList) { sourceMapDataList.push({ inputSourceFileNames: sourceMapGenerator.getSources(), sourceMap: sourceMapGenerator.toJSON() }); } const sourceMappingURL = getSourceMappingURL(mapOptions, sourceMapGenerator, jsFilePath, sourceMapFilePath, sourceFile); if (sourceMappingURL) { if (!writer.isAtStartOfLine()) writer.rawWrite(newLine); sourceMapUrlPos = writer.getTextPos(); writer.writeComment(`//# ${"sourceMappingURL"}=${sourceMappingURL}`); } if (sourceMapFilePath) { const sourceMap = sourceMapGenerator.toString(); writeFile(host, emitterDiagnostics, sourceMapFilePath, sourceMap, false, sourceFiles); } } else { writer.writeLine(); } const text = writer.getText(); const data = { sourceMapUrlPos, diagnostics: transform2.diagnostics }; writeFile(host, emitterDiagnostics, jsFilePath, text, !!compilerOptions.emitBOM, sourceFiles, data); writer.clear(); return !data.skippedDtsWrite; } function shouldEmitSourceMaps(mapOptions, sourceFileOrBundle) { return (mapOptions.sourceMap || mapOptions.inlineSourceMap) && (sourceFileOrBundle.kind !== 308 || !fileExtensionIs(sourceFileOrBundle.fileName, ".json")); } function getSourceRoot(mapOptions) { const sourceRoot = normalizeSlashes(mapOptions.sourceRoot || ""); return sourceRoot ? ensureTrailingDirectorySeparator(sourceRoot) : sourceRoot; } function getSourceMapDirectory(mapOptions, filePath, sourceFile) { if (mapOptions.sourceRoot) return host.getCommonSourceDirectory(); if (mapOptions.mapRoot) { let sourceMapDir = normalizeSlashes(mapOptions.mapRoot); if (sourceFile) { sourceMapDir = getDirectoryPath(getSourceFilePathInNewDir(sourceFile.fileName, host, sourceMapDir)); } if (getRootLength(sourceMapDir) === 0) { sourceMapDir = combinePaths(host.getCommonSourceDirectory(), sourceMapDir); } return sourceMapDir; } return getDirectoryPath(normalizePath(filePath)); } function getSourceMappingURL(mapOptions, sourceMapGenerator, filePath, sourceMapFilePath, sourceFile) { if (mapOptions.inlineSourceMap) { const sourceMapText = sourceMapGenerator.toString(); const base64SourceMapText = base64encode(sys, sourceMapText); return `data:application/json;base64,${base64SourceMapText}`; } const sourceMapFile = getBaseFileName(normalizeSlashes(Debug.checkDefined(sourceMapFilePath))); if (mapOptions.mapRoot) { let sourceMapDir = normalizeSlashes(mapOptions.mapRoot); if (sourceFile) { sourceMapDir = getDirectoryPath(getSourceFilePathInNewDir(sourceFile.fileName, host, sourceMapDir)); } if (getRootLength(sourceMapDir) === 0) { sourceMapDir = combinePaths(host.getCommonSourceDirectory(), sourceMapDir); return encodeURI(getRelativePathToDirectoryOrUrl(getDirectoryPath(normalizePath(filePath)), combinePaths(sourceMapDir, sourceMapFile), host.getCurrentDirectory(), host.getCanonicalFileName, true)); } else { return encodeURI(combinePaths(sourceMapDir, sourceMapFile)); } } return encodeURI(sourceMapFile); } } function getBuildInfoText(buildInfo) { return JSON.stringify(buildInfo); } function getBuildInfo(buildInfoFile, buildInfoText) { return readJsonOrUndefined(buildInfoFile, buildInfoText); } var notImplementedResolver = { hasGlobalName: notImplemented, getReferencedExportContainer: notImplemented, getReferencedImportDeclaration: notImplemented, getReferencedDeclarationWithCollidingName: notImplemented, isDeclarationWithCollidingName: notImplemented, isValueAliasDeclaration: notImplemented, isReferencedAliasDeclaration: notImplemented, isTopLevelValueImportEqualsWithEntityName: notImplemented, hasNodeCheckFlag: notImplemented, isDeclarationVisible: notImplemented, isLateBound: (_node) => false, collectLinkedAliases: notImplemented, markLinkedReferences: notImplemented, isImplementationOfOverload: notImplemented, requiresAddingImplicitUndefined: notImplemented, isExpandoFunctionDeclaration: notImplemented, getPropertiesOfContainerFunction: notImplemented, createTypeOfDeclaration: notImplemented, createReturnTypeOfSignatureDeclaration: notImplemented, createTypeOfExpression: notImplemented, createLiteralConstValue: notImplemented, isSymbolAccessible: notImplemented, isEntityNameVisible: notImplemented, getConstantValue: notImplemented, getEnumMemberValue: notImplemented, getReferencedValueDeclaration: notImplemented, getReferencedValueDeclarations: notImplemented, getTypeReferenceSerializationKind: notImplemented, isOptionalParameter: notImplemented, isArgumentsLocalBinding: notImplemented, getExternalModuleFileFromDeclaration: notImplemented, isLiteralConstDeclaration: notImplemented, getJsxFactoryEntity: notImplemented, getJsxFragmentFactoryEntity: notImplemented, isBindingCapturedByNode: notImplemented, getDeclarationStatementsForSourceFile: notImplemented, isImportRequiredByAugmentation: notImplemented, isDefinitelyReferenceToGlobalSymbolObject: notImplemented, createLateBoundIndexSignatures: notImplemented, symbolToDeclarations: notImplemented }; var createPrinterWithDefaults = /* @__PURE__ */ memoize(() => createPrinter({})); var createPrinterWithRemoveComments = /* @__PURE__ */ memoize(() => createPrinter({ removeComments: true })); var createPrinterWithRemoveCommentsNeverAsciiEscape = /* @__PURE__ */ memoize(() => createPrinter({ removeComments: true, neverAsciiEscape: true })); var createPrinterWithRemoveCommentsOmitTrailingSemicolon = /* @__PURE__ */ memoize(() => createPrinter({ removeComments: true, omitTrailingSemicolon: true })); function createPrinter(printerOptions = {}, handlers = {}) { var { hasGlobalName, onEmitNode = noEmitNotification, isEmitNotificationEnabled, substituteNode = noEmitSubstitution, onBeforeEmitNode, onAfterEmitNode, onBeforeEmitNodeArray, onAfterEmitNodeArray, onBeforeEmitToken, onAfterEmitToken } = handlers; var extendedDiagnostics = !!printerOptions.extendedDiagnostics; var omitBraceSourcePositions = !!printerOptions.omitBraceSourceMapPositions; var newLine = getNewLineCharacter(printerOptions); var moduleKind = getEmitModuleKind(printerOptions); var bundledHelpers = /* @__PURE__ */ new Map; var currentSourceFile; var nodeIdToGeneratedName; var nodeIdToGeneratedPrivateName; var autoGeneratedIdToGeneratedName; var generatedNames; var formattedNameTempFlagsStack; var formattedNameTempFlags; var privateNameTempFlagsStack; var privateNameTempFlags; var tempFlagsStack; var tempFlags; var reservedNamesStack; var reservedNames; var reservedPrivateNamesStack; var reservedPrivateNames; var preserveSourceNewlines = printerOptions.preserveSourceNewlines; var nextListElementPos; var writer; var ownWriter; var write = writeBase; var isOwnFileEmit; var sourceMapsDisabled = true; var sourceMapGenerator; var sourceMapSource; var sourceMapSourceIndex = -1; var mostRecentlyAddedSourceMapSource; var mostRecentlyAddedSourceMapSourceIndex = -1; var containerPos = -1; var containerEnd = -1; var declarationListContainerEnd = -1; var currentLineMap; var detachedCommentsInfo; var hasWrittenComment = false; var commentsDisabled = !!printerOptions.removeComments; var lastSubstitution; var currentParenthesizerRule; var { enter: enterComment, exit: exitComment } = createTimerIf(extendedDiagnostics, "commentTime", "beforeComment", "afterComment"); var parenthesizer = factory.parenthesizer; var typeArgumentParenthesizerRuleSelector = { select: (index) => index === 0 ? parenthesizer.parenthesizeLeadingTypeArgument : undefined }; var emitBinaryExpression = createEmitBinaryExpression(); reset2(); return { printNode, printList, printFile, printBundle, writeNode, writeList, writeFile: writeFile2, writeBundle }; function printNode(hint, node, sourceFile) { switch (hint) { case 0: Debug.assert(isSourceFile(node), "Expected a SourceFile node."); break; case 2: Debug.assert(isIdentifier(node), "Expected an Identifier node."); break; case 1: Debug.assert(isExpression(node), "Expected an Expression node."); break; } switch (node.kind) { case 308: return printFile(node); case 309: return printBundle(node); } writeNode(hint, node, sourceFile, beginPrint()); return endPrint(); } function printList(format, nodes, sourceFile) { writeList(format, nodes, sourceFile, beginPrint()); return endPrint(); } function printBundle(bundle) { writeBundle(bundle, beginPrint(), undefined); return endPrint(); } function printFile(sourceFile) { writeFile2(sourceFile, beginPrint(), undefined); return endPrint(); } function writeNode(hint, node, sourceFile, output) { const previousWriter = writer; setWriter(output, undefined); print(hint, node, sourceFile); reset2(); writer = previousWriter; } function writeList(format, nodes, sourceFile, output) { const previousWriter = writer; setWriter(output, undefined); if (sourceFile) { setSourceFile(sourceFile); } emitList(undefined, nodes, format); reset2(); writer = previousWriter; } function writeBundle(bundle, output, sourceMapGenerator2) { isOwnFileEmit = false; const previousWriter = writer; setWriter(output, sourceMapGenerator2); emitShebangIfNeeded(bundle); emitPrologueDirectivesIfNeeded(bundle); emitHelpers(bundle); emitSyntheticTripleSlashReferencesIfNeeded(bundle); for (const sourceFile of bundle.sourceFiles) { print(0, sourceFile, sourceFile); } reset2(); writer = previousWriter; } function writeFile2(sourceFile, output, sourceMapGenerator2) { isOwnFileEmit = true; const previousWriter = writer; setWriter(output, sourceMapGenerator2); emitShebangIfNeeded(sourceFile); emitPrologueDirectivesIfNeeded(sourceFile); print(0, sourceFile, sourceFile); reset2(); writer = previousWriter; } function beginPrint() { return ownWriter || (ownWriter = createTextWriter(newLine)); } function endPrint() { const text = ownWriter.getText(); ownWriter.clear(); return text; } function print(hint, node, sourceFile) { if (sourceFile) { setSourceFile(sourceFile); } pipelineEmit(hint, node, undefined); } function setSourceFile(sourceFile) { currentSourceFile = sourceFile; currentLineMap = undefined; detachedCommentsInfo = undefined; if (sourceFile) { setSourceMapSource(sourceFile); } } function setWriter(_writer, _sourceMapGenerator) { if (_writer && printerOptions.omitTrailingSemicolon) { _writer = getTrailingSemicolonDeferringWriter(_writer); } writer = _writer; sourceMapGenerator = _sourceMapGenerator; sourceMapsDisabled = !writer || !sourceMapGenerator; } function reset2() { nodeIdToGeneratedName = []; nodeIdToGeneratedPrivateName = []; autoGeneratedIdToGeneratedName = []; generatedNames = /* @__PURE__ */ new Set; formattedNameTempFlagsStack = []; formattedNameTempFlags = /* @__PURE__ */ new Map; privateNameTempFlagsStack = []; privateNameTempFlags = 0; tempFlagsStack = []; tempFlags = 0; reservedNamesStack = []; reservedNames = undefined; reservedPrivateNamesStack = []; reservedPrivateNames = undefined; currentSourceFile = undefined; currentLineMap = undefined; detachedCommentsInfo = undefined; setWriter(undefined, undefined); } function getCurrentLineMap() { return currentLineMap || (currentLineMap = getLineStarts(Debug.checkDefined(currentSourceFile))); } function emit(node, parenthesizerRule) { if (node === undefined) return; pipelineEmit(4, node, parenthesizerRule); } function emitIdentifierName(node) { if (node === undefined) return; pipelineEmit(2, node, undefined); } function emitExpression(node, parenthesizerRule) { if (node === undefined) return; pipelineEmit(1, node, parenthesizerRule); } function emitJsxAttributeValue(node) { pipelineEmit(isStringLiteral(node) ? 6 : 4, node); } function beforeEmitNode(node) { if (preserveSourceNewlines && getInternalEmitFlags(node) & 4) { preserveSourceNewlines = false; } } function afterEmitNode(savedPreserveSourceNewlines) { preserveSourceNewlines = savedPreserveSourceNewlines; } function pipelineEmit(emitHint, node, parenthesizerRule) { currentParenthesizerRule = parenthesizerRule; const pipelinePhase = getPipelinePhase(0, emitHint, node); pipelinePhase(emitHint, node); currentParenthesizerRule = undefined; } function shouldEmitComments(node) { return !commentsDisabled && !isSourceFile(node); } function shouldEmitSourceMaps(node) { return !sourceMapsDisabled && !isSourceFile(node) && !isInJsonFile(node); } function getPipelinePhase(phase, emitHint, node) { switch (phase) { case 0: if (onEmitNode !== noEmitNotification && (!isEmitNotificationEnabled || isEmitNotificationEnabled(node))) { return pipelineEmitWithNotification; } case 1: if (substituteNode !== noEmitSubstitution && (lastSubstitution = substituteNode(emitHint, node) || node) !== node) { if (currentParenthesizerRule) { lastSubstitution = currentParenthesizerRule(lastSubstitution); } return pipelineEmitWithSubstitution; } case 2: if (shouldEmitComments(node)) { return pipelineEmitWithComments; } case 3: if (shouldEmitSourceMaps(node)) { return pipelineEmitWithSourceMaps; } case 4: return pipelineEmitWithHint; default: return Debug.assertNever(phase); } } function getNextPipelinePhase(currentPhase, emitHint, node) { return getPipelinePhase(currentPhase + 1, emitHint, node); } function pipelineEmitWithNotification(hint, node) { const pipelinePhase = getNextPipelinePhase(0, hint, node); onEmitNode(hint, node, pipelinePhase); } function pipelineEmitWithHint(hint, node) { onBeforeEmitNode == null || onBeforeEmitNode(node); if (preserveSourceNewlines) { const savedPreserveSourceNewlines = preserveSourceNewlines; beforeEmitNode(node); pipelineEmitWithHintWorker(hint, node); afterEmitNode(savedPreserveSourceNewlines); } else { pipelineEmitWithHintWorker(hint, node); } onAfterEmitNode == null || onAfterEmitNode(node); currentParenthesizerRule = undefined; } function pipelineEmitWithHintWorker(hint, node, allowSnippets = true) { if (allowSnippets) { const snippet = getSnippetElement(node); if (snippet) { return emitSnippetNode(hint, node, snippet); } } if (hint === 0) return emitSourceFile(cast(node, isSourceFile)); if (hint === 2) return emitIdentifier(cast(node, isIdentifier)); if (hint === 6) return emitLiteral(cast(node, isStringLiteral), true); if (hint === 3) return emitMappedTypeParameter(cast(node, isTypeParameterDeclaration)); if (hint === 7) return emitImportTypeNodeAttributes(cast(node, isImportAttributes)); if (hint === 5) { Debug.assertNode(node, isEmptyStatement); return emitEmptyStatement(true); } if (hint === 4) { switch (node.kind) { case 16: case 17: case 18: return emitLiteral(node, false); case 80: return emitIdentifier(node); case 81: return emitPrivateIdentifier(node); case 167: return emitQualifiedName(node); case 168: return emitComputedPropertyName(node); case 169: return emitTypeParameter(node); case 170: return emitParameter(node); case 171: return emitDecorator(node); case 172: return emitPropertySignature(node); case 173: return emitPropertyDeclaration(node); case 174: return emitMethodSignature(node); case 175: return emitMethodDeclaration(node); case 176: return emitClassStaticBlockDeclaration(node); case 177: return emitConstructor(node); case 178: case 179: return emitAccessorDeclaration(node); case 180: return emitCallSignature(node); case 181: return emitConstructSignature(node); case 182: return emitIndexSignature(node); case 183: return emitTypePredicate(node); case 184: return emitTypeReference(node); case 185: return emitFunctionType(node); case 186: return emitConstructorType(node); case 187: return emitTypeQuery(node); case 188: return emitTypeLiteral(node); case 189: return emitArrayType(node); case 190: return emitTupleType(node); case 191: return emitOptionalType(node); case 193: return emitUnionType(node); case 194: return emitIntersectionType(node); case 195: return emitConditionalType(node); case 196: return emitInferType(node); case 197: return emitParenthesizedType(node); case 234: return emitExpressionWithTypeArguments(node); case 198: return emitThisType(); case 199: return emitTypeOperator(node); case 200: return emitIndexedAccessType(node); case 201: return emitMappedType(node); case 202: return emitLiteralType(node); case 203: return emitNamedTupleMember(node); case 204: return emitTemplateType(node); case 205: return emitTemplateTypeSpan(node); case 206: return emitImportTypeNode(node); case 207: return emitObjectBindingPattern(node); case 208: return emitArrayBindingPattern(node); case 209: return emitBindingElement(node); case 240: return emitTemplateSpan(node); case 241: return emitSemicolonClassElement(); case 242: return emitBlock(node); case 244: return emitVariableStatement(node); case 243: return emitEmptyStatement(false); case 245: return emitExpressionStatement(node); case 246: return emitIfStatement(node); case 247: return emitDoStatement(node); case 248: return emitWhileStatement(node); case 249: return emitForStatement(node); case 250: return emitForInStatement(node); case 251: return emitForOfStatement(node); case 252: return emitContinueStatement(node); case 253: return emitBreakStatement(node); case 254: return emitReturnStatement(node); case 255: return emitWithStatement(node); case 256: return emitSwitchStatement(node); case 257: return emitLabeledStatement(node); case 258: return emitThrowStatement(node); case 259: return emitTryStatement(node); case 260: return emitDebuggerStatement(node); case 261: return emitVariableDeclaration(node); case 262: return emitVariableDeclarationList(node); case 263: return emitFunctionDeclaration(node); case 264: return emitClassDeclaration(node); case 265: return emitInterfaceDeclaration(node); case 266: return emitTypeAliasDeclaration(node); case 267: return emitEnumDeclaration(node); case 268: return emitModuleDeclaration(node); case 269: return emitModuleBlock(node); case 270: return emitCaseBlock(node); case 271: return emitNamespaceExportDeclaration(node); case 272: return emitImportEqualsDeclaration(node); case 273: return emitImportDeclaration(node); case 274: return emitImportClause(node); case 275: return emitNamespaceImport(node); case 281: return emitNamespaceExport(node); case 276: return emitNamedImports(node); case 277: return emitImportSpecifier(node); case 278: return emitExportAssignment(node); case 279: return emitExportDeclaration(node); case 280: return emitNamedExports(node); case 282: return emitExportSpecifier(node); case 301: return emitImportAttributes(node); case 302: return emitImportAttribute(node); case 283: return; case 284: return emitExternalModuleReference(node); case 12: return emitJsxText(node); case 287: case 290: return emitJsxOpeningElementOrFragment(node); case 288: case 291: return emitJsxClosingElementOrFragment(node); case 292: return emitJsxAttribute(node); case 293: return emitJsxAttributes(node); case 294: return emitJsxSpreadAttribute(node); case 295: return emitJsxExpression(node); case 296: return emitJsxNamespacedName(node); case 297: return emitCaseClause(node); case 298: return emitDefaultClause(node); case 299: return emitHeritageClause(node); case 300: return emitCatchClause(node); case 304: return emitPropertyAssignment(node); case 305: return emitShorthandPropertyAssignment(node); case 306: return emitSpreadAssignment(node); case 307: return emitEnumMember(node); case 308: return emitSourceFile(node); case 309: return Debug.fail("Bundles should be printed using printBundle"); case 310: return emitJSDocTypeExpression(node); case 311: return emitJSDocNameReference(node); case 313: return writePunctuation("*"); case 314: return writePunctuation("?"); case 315: return emitJSDocNullableType(node); case 316: return emitJSDocNonNullableType(node); case 317: return emitJSDocOptionalType(node); case 318: return emitJSDocFunctionType(node); case 192: case 319: return emitRestOrJSDocVariadicType(node); case 320: return; case 321: return emitJSDoc(node); case 323: return emitJSDocTypeLiteral(node); case 324: return emitJSDocSignature(node); case 328: case 333: case 338: return emitJSDocSimpleTag(node); case 329: case 330: return emitJSDocHeritageTag(node); case 331: case 332: return; case 334: case 335: case 336: case 337: return; case 339: return emitJSDocCallbackTag(node); case 340: return emitJSDocOverloadTag(node); case 342: case 349: return emitJSDocPropertyLikeTag(node); case 341: case 343: case 344: case 345: case 350: case 351: return emitJSDocSimpleTypedTag(node); case 346: return emitJSDocTemplateTag(node); case 347: return emitJSDocTypedefTag(node); case 348: return emitJSDocSeeTag(node); case 352: return emitJSDocImportTag(node); case 354: case 355: return; } if (isExpression(node)) { hint = 1; if (substituteNode !== noEmitSubstitution) { const substitute = substituteNode(hint, node) || node; if (substitute !== node) { node = substitute; if (currentParenthesizerRule) { node = currentParenthesizerRule(node); } } } } } if (hint === 1) { switch (node.kind) { case 9: case 10: return emitNumericOrBigIntLiteral(node); case 11: case 14: case 15: return emitLiteral(node, false); case 80: return emitIdentifier(node); case 81: return emitPrivateIdentifier(node); case 210: return emitArrayLiteralExpression(node); case 211: return emitObjectLiteralExpression(node); case 212: return emitPropertyAccessExpression(node); case 213: return emitElementAccessExpression(node); case 214: return emitCallExpression(node); case 215: return emitNewExpression(node); case 216: return emitTaggedTemplateExpression(node); case 217: return emitTypeAssertionExpression(node); case 218: return emitParenthesizedExpression(node); case 219: return emitFunctionExpression(node); case 220: return emitArrowFunction(node); case 221: return emitDeleteExpression(node); case 222: return emitTypeOfExpression(node); case 223: return emitVoidExpression(node); case 224: return emitAwaitExpression(node); case 225: return emitPrefixUnaryExpression(node); case 226: return emitPostfixUnaryExpression(node); case 227: return emitBinaryExpression(node); case 228: return emitConditionalExpression(node); case 229: return emitTemplateExpression(node); case 230: return emitYieldExpression(node); case 231: return emitSpreadElement(node); case 232: return emitClassExpression(node); case 233: return; case 235: return emitAsExpression(node); case 236: return emitNonNullExpression(node); case 234: return emitExpressionWithTypeArguments(node); case 239: return emitSatisfiesExpression(node); case 237: return emitMetaProperty(node); case 238: return Debug.fail("SyntheticExpression should never be printed."); case 283: return; case 285: return emitJsxElement(node); case 286: return emitJsxSelfClosingElement(node); case 289: return emitJsxFragment(node); case 353: return Debug.fail("SyntaxList should not be printed"); case 354: return; case 356: return emitPartiallyEmittedExpression(node); case 357: return emitCommaList(node); case 358: return Debug.fail("SyntheticReferenceExpression should not be printed"); } } if (isKeyword(node.kind)) return writeTokenNode(node, writeKeyword); if (isTokenKind(node.kind)) return writeTokenNode(node, writePunctuation); Debug.fail(`Unhandled SyntaxKind: ${Debug.formatSyntaxKind(node.kind)}.`); } function emitMappedTypeParameter(node) { emit(node.name); writeSpace(); writeKeyword("in"); writeSpace(); emit(node.constraint); } function pipelineEmitWithSubstitution(hint, node) { const pipelinePhase = getNextPipelinePhase(1, hint, node); Debug.assertIsDefined(lastSubstitution); node = lastSubstitution; lastSubstitution = undefined; pipelinePhase(hint, node); } function emitHelpers(node) { let helpersEmitted = false; const bundle = node.kind === 309 ? node : undefined; if (bundle && moduleKind === 0) { return; } const numNodes = bundle ? bundle.sourceFiles.length : 1; for (let i = 0;i < numNodes; i++) { const currentNode = bundle ? bundle.sourceFiles[i] : node; const sourceFile = isSourceFile(currentNode) ? currentNode : currentSourceFile; const shouldSkip = printerOptions.noEmitHelpers || !!sourceFile && hasRecordedExternalHelpers(sourceFile); const shouldBundle = isSourceFile(currentNode) && !isOwnFileEmit; const helpers = getSortedEmitHelpers(currentNode); if (helpers) { for (const helper of helpers) { if (!helper.scoped) { if (shouldSkip) continue; if (shouldBundle) { if (bundledHelpers.get(helper.name)) { continue; } bundledHelpers.set(helper.name, true); } } else if (bundle) { continue; } if (typeof helper.text === "string") { writeLines(helper.text); } else { writeLines(helper.text(makeFileLevelOptimisticUniqueName)); } helpersEmitted = true; } } } return helpersEmitted; } function getSortedEmitHelpers(node) { const helpers = getEmitHelpers(node); return helpers && toSorted(helpers, compareEmitHelpers); } function emitNumericOrBigIntLiteral(node) { emitLiteral(node, false); } function emitLiteral(node, jsxAttributeEscape) { const text = getLiteralTextOfNode(node, undefined, printerOptions.neverAsciiEscape, jsxAttributeEscape); if ((printerOptions.sourceMap || printerOptions.inlineSourceMap) && (node.kind === 11 || isTemplateLiteralKind(node.kind))) { writeLiteral(text); } else { writeStringLiteral(text); } } function emitSnippetNode(hint, node, snippet) { switch (snippet.kind) { case 1: emitPlaceholder(hint, node, snippet); break; case 0: emitTabStop(hint, node, snippet); break; } } function emitPlaceholder(hint, node, snippet) { nonEscapingWrite(`\${${snippet.order}:`); pipelineEmitWithHintWorker(hint, node, false); nonEscapingWrite(`}`); } function emitTabStop(hint, node, snippet) { Debug.assert(node.kind === 243, `A tab stop cannot be attached to a node of kind ${Debug.formatSyntaxKind(node.kind)}.`); Debug.assert(hint !== 5, `A tab stop cannot be attached to an embedded statement.`); nonEscapingWrite(`$${snippet.order}`); } function emitIdentifier(node) { const writeText = node.symbol ? writeSymbol : write; writeText(getTextOfNode2(node, false), node.symbol); emitList(node, getIdentifierTypeArguments(node), 53776); } function emitPrivateIdentifier(node) { write(getTextOfNode2(node, false)); } function emitQualifiedName(node) { emitEntityName(node.left); writePunctuation("."); emit(node.right); } function emitEntityName(node) { if (node.kind === 80) { emitExpression(node); } else { emit(node); } } function emitComputedPropertyName(node) { writePunctuation("["); emitExpression(node.expression, parenthesizer.parenthesizeExpressionOfComputedPropertyName); writePunctuation("]"); } function emitTypeParameter(node) { emitModifierList(node, node.modifiers); emit(node.name); if (node.constraint) { writeSpace(); writeKeyword("extends"); writeSpace(); emit(node.constraint); } if (node.default) { writeSpace(); writeOperator("="); writeSpace(); emit(node.default); } } function emitParameter(node) { emitDecoratorsAndModifiers(node, node.modifiers, true); emit(node.dotDotDotToken); emitNodeWithWriter(node.name, writeParameter); emit(node.questionToken); if (node.parent && node.parent.kind === 318 && !node.name) { emit(node.type); } else { emitTypeAnnotation(node.type); } emitInitializer(node.initializer, node.type ? node.type.end : node.questionToken ? node.questionToken.end : node.name ? node.name.end : node.modifiers ? node.modifiers.end : node.pos, node, parenthesizer.parenthesizeExpressionForDisallowedComma); } function emitDecorator(decorator) { writePunctuation("@"); emitExpression(decorator.expression, parenthesizer.parenthesizeLeftSideOfAccess); } function emitPropertySignature(node) { emitModifierList(node, node.modifiers); emitNodeWithWriter(node.name, writeProperty); emit(node.questionToken); emitTypeAnnotation(node.type); writeTrailingSemicolon(); } function emitPropertyDeclaration(node) { emitDecoratorsAndModifiers(node, node.modifiers, true); emit(node.name); emit(node.questionToken); emit(node.exclamationToken); emitTypeAnnotation(node.type); emitInitializer(node.initializer, node.type ? node.type.end : node.questionToken ? node.questionToken.end : node.name.end, node); writeTrailingSemicolon(); } function emitMethodSignature(node) { emitModifierList(node, node.modifiers); emit(node.name); emit(node.questionToken); emitSignatureAndBody(node, emitSignatureHead, emitEmptyFunctionBody); } function emitMethodDeclaration(node) { emitDecoratorsAndModifiers(node, node.modifiers, true); emit(node.asteriskToken); emit(node.name); emit(node.questionToken); emitSignatureAndBody(node, emitSignatureHead, emitFunctionBody); } function emitClassStaticBlockDeclaration(node) { writeKeyword("static"); pushNameGenerationScope(node); emitBlockFunctionBody(node.body); popNameGenerationScope(node); } function emitConstructor(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); writeKeyword("constructor"); emitSignatureAndBody(node, emitSignatureHead, emitFunctionBody); } function emitAccessorDeclaration(node) { const pos = emitDecoratorsAndModifiers(node, node.modifiers, true); const token = node.kind === 178 ? 139 : 153; emitTokenWithComment(token, pos, writeKeyword, node); writeSpace(); emit(node.name); emitSignatureAndBody(node, emitSignatureHead, emitFunctionBody); } function emitCallSignature(node) { emitSignatureAndBody(node, emitSignatureHead, emitEmptyFunctionBody); } function emitConstructSignature(node) { writeKeyword("new"); writeSpace(); emitSignatureAndBody(node, emitSignatureHead, emitEmptyFunctionBody); } function emitIndexSignature(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); emitParametersForIndexSignature(node, node.parameters); emitTypeAnnotation(node.type); writeTrailingSemicolon(); } function emitTemplateTypeSpan(node) { emit(node.type); emit(node.literal); } function emitSemicolonClassElement() { writeTrailingSemicolon(); } function emitTypePredicate(node) { if (node.assertsModifier) { emit(node.assertsModifier); writeSpace(); } emit(node.parameterName); if (node.type) { writeSpace(); writeKeyword("is"); writeSpace(); emit(node.type); } } function emitTypeReference(node) { emit(node.typeName); emitTypeArguments(node, node.typeArguments); } function emitFunctionType(node) { emitSignatureAndBody(node, emitFunctionTypeHead, emitFunctionTypeBody); } function emitFunctionTypeHead(node) { emitTypeParameters(node, node.typeParameters); emitParametersForArrow(node, node.parameters); writeSpace(); writePunctuation("=>"); } function emitFunctionTypeBody(node) { writeSpace(); emit(node.type); } function emitJSDocFunctionType(node) { writeKeyword("function"); emitParameters(node, node.parameters); writePunctuation(":"); emit(node.type); } function emitJSDocNullableType(node) { writePunctuation("?"); emit(node.type); } function emitJSDocNonNullableType(node) { writePunctuation("!"); emit(node.type); } function emitJSDocOptionalType(node) { emit(node.type); writePunctuation("="); } function emitConstructorType(node) { emitModifierList(node, node.modifiers); writeKeyword("new"); writeSpace(); emitSignatureAndBody(node, emitFunctionTypeHead, emitFunctionTypeBody); } function emitTypeQuery(node) { writeKeyword("typeof"); writeSpace(); emit(node.exprName); emitTypeArguments(node, node.typeArguments); } function emitTypeLiteral(node) { pushNameGenerationScope(node); forEach(node.members, generateMemberNames); writePunctuation("{"); const flags = getEmitFlags(node) & 1 ? 768 : 32897; emitList(node, node.members, flags | 524288); writePunctuation("}"); popNameGenerationScope(node); } function emitArrayType(node) { emit(node.elementType, parenthesizer.parenthesizeNonArrayTypeOfPostfixType); writePunctuation("["); writePunctuation("]"); } function emitRestOrJSDocVariadicType(node) { writePunctuation("..."); emit(node.type); } function emitTupleType(node) { emitTokenWithComment(23, node.pos, writePunctuation, node); const flags = getEmitFlags(node) & 1 ? 528 : 657; emitList(node, node.elements, flags | 524288, parenthesizer.parenthesizeElementTypeOfTupleType); emitTokenWithComment(24, node.elements.end, writePunctuation, node); } function emitNamedTupleMember(node) { emit(node.dotDotDotToken); emit(node.name); emit(node.questionToken); emitTokenWithComment(59, node.name.end, writePunctuation, node); writeSpace(); emit(node.type); } function emitOptionalType(node) { emit(node.type, parenthesizer.parenthesizeTypeOfOptionalType); writePunctuation("?"); } function emitUnionType(node) { emitList(node, node.types, 516, parenthesizer.parenthesizeConstituentTypeOfUnionType); } function emitIntersectionType(node) { emitList(node, node.types, 520, parenthesizer.parenthesizeConstituentTypeOfIntersectionType); } function emitConditionalType(node) { emit(node.checkType, parenthesizer.parenthesizeCheckTypeOfConditionalType); writeSpace(); writeKeyword("extends"); writeSpace(); emit(node.extendsType, parenthesizer.parenthesizeExtendsTypeOfConditionalType); writeSpace(); writePunctuation("?"); writeSpace(); emit(node.trueType); writeSpace(); writePunctuation(":"); writeSpace(); emit(node.falseType); } function emitInferType(node) { writeKeyword("infer"); writeSpace(); emit(node.typeParameter); } function emitParenthesizedType(node) { writePunctuation("("); emit(node.type); writePunctuation(")"); } function emitThisType() { writeKeyword("this"); } function emitTypeOperator(node) { writeTokenText(node.operator, writeKeyword); writeSpace(); const parenthesizerRule = node.operator === 148 ? parenthesizer.parenthesizeOperandOfReadonlyTypeOperator : parenthesizer.parenthesizeOperandOfTypeOperator; emit(node.type, parenthesizerRule); } function emitIndexedAccessType(node) { emit(node.objectType, parenthesizer.parenthesizeNonArrayTypeOfPostfixType); writePunctuation("["); emit(node.indexType); writePunctuation("]"); } function emitMappedType(node) { const emitFlags = getEmitFlags(node); writePunctuation("{"); if (emitFlags & 1) { writeSpace(); } else { writeLine(); increaseIndent(); } if (node.readonlyToken) { emit(node.readonlyToken); if (node.readonlyToken.kind !== 148) { writeKeyword("readonly"); } writeSpace(); } writePunctuation("["); pipelineEmit(3, node.typeParameter); if (node.nameType) { writeSpace(); writeKeyword("as"); writeSpace(); emit(node.nameType); } writePunctuation("]"); if (node.questionToken) { emit(node.questionToken); if (node.questionToken.kind !== 58) { writePunctuation("?"); } } writePunctuation(":"); writeSpace(); emit(node.type); writeTrailingSemicolon(); if (emitFlags & 1) { writeSpace(); } else { writeLine(); decreaseIndent(); } emitList(node, node.members, 2); writePunctuation("}"); } function emitLiteralType(node) { emitExpression(node.literal); } function emitTemplateType(node) { emit(node.head); emitList(node, node.templateSpans, 262144); } function emitImportTypeNode(node) { if (node.isTypeOf) { writeKeyword("typeof"); writeSpace(); } writeKeyword("import"); writePunctuation("("); emit(node.argument); if (node.attributes) { writePunctuation(","); writeSpace(); pipelineEmit(7, node.attributes); } writePunctuation(")"); if (node.qualifier) { writePunctuation("."); emit(node.qualifier); } emitTypeArguments(node, node.typeArguments); } function emitObjectBindingPattern(node) { writePunctuation("{"); emitList(node, node.elements, 525136); writePunctuation("}"); } function emitArrayBindingPattern(node) { writePunctuation("["); emitList(node, node.elements, 524880); writePunctuation("]"); } function emitBindingElement(node) { emit(node.dotDotDotToken); if (node.propertyName) { emit(node.propertyName); writePunctuation(":"); writeSpace(); } emit(node.name); emitInitializer(node.initializer, node.name.end, node, parenthesizer.parenthesizeExpressionForDisallowedComma); } function emitArrayLiteralExpression(node) { const elements = node.elements; const preferNewLine = node.multiLine ? 65536 : 0; emitExpressionList(node, elements, 8914 | preferNewLine, parenthesizer.parenthesizeExpressionForDisallowedComma); } function emitObjectLiteralExpression(node) { pushNameGenerationScope(node); forEach(node.properties, generateMemberNames); const indentedFlag = getEmitFlags(node) & 131072; if (indentedFlag) { increaseIndent(); } const preferNewLine = node.multiLine ? 65536 : 0; const allowTrailingComma = currentSourceFile && !isJsonSourceFile(currentSourceFile) ? 64 : 0; emitList(node, node.properties, 526226 | allowTrailingComma | preferNewLine); if (indentedFlag) { decreaseIndent(); } popNameGenerationScope(node); } function emitPropertyAccessExpression(node) { emitExpression(node.expression, parenthesizer.parenthesizeLeftSideOfAccess); const token = node.questionDotToken || setTextRangePosEnd(factory.createToken(25), node.expression.end, node.name.pos); const linesBeforeDot = getLinesBetweenNodes(node, node.expression, token); const linesAfterDot = getLinesBetweenNodes(node, token, node.name); writeLinesAndIndent(linesBeforeDot, false); const shouldEmitDotDot = token.kind !== 29 && mayNeedDotDotForPropertyAccess(node.expression) && !writer.hasTrailingComment() && !writer.hasTrailingWhitespace(); if (shouldEmitDotDot) { writePunctuation("."); } if (node.questionDotToken) { emit(token); } else { emitTokenWithComment(token.kind, node.expression.end, writePunctuation, node); } writeLinesAndIndent(linesAfterDot, false); emit(node.name); decreaseIndentIf(linesBeforeDot, linesAfterDot); } function mayNeedDotDotForPropertyAccess(expression) { expression = skipPartiallyEmittedExpressions(expression); if (isNumericLiteral(expression)) { const text = getLiteralTextOfNode(expression, undefined, true, false); return !(expression.numericLiteralFlags & 448) && !text.includes(tokenToString(25)) && !text.includes(String.fromCharCode(69)) && !text.includes(String.fromCharCode(101)); } else if (isAccessExpression(expression)) { const constantValue = getConstantValue(expression); return typeof constantValue === "number" && isFinite(constantValue) && constantValue >= 0 && Math.floor(constantValue) === constantValue; } } function emitElementAccessExpression(node) { emitExpression(node.expression, parenthesizer.parenthesizeLeftSideOfAccess); emit(node.questionDotToken); emitTokenWithComment(23, node.expression.end, writePunctuation, node); emitExpression(node.argumentExpression); emitTokenWithComment(24, node.argumentExpression.end, writePunctuation, node); } function emitCallExpression(node) { const indirectCall = getInternalEmitFlags(node) & 16; if (indirectCall) { writePunctuation("("); writeLiteral("0"); writePunctuation(","); writeSpace(); } emitExpression(node.expression, parenthesizer.parenthesizeLeftSideOfAccess); if (indirectCall) { writePunctuation(")"); } emit(node.questionDotToken); emitTypeArguments(node, node.typeArguments); emitExpressionList(node, node.arguments, 2576, parenthesizer.parenthesizeExpressionForDisallowedComma); } function emitNewExpression(node) { emitTokenWithComment(105, node.pos, writeKeyword, node); writeSpace(); emitExpression(node.expression, parenthesizer.parenthesizeExpressionOfNew); emitTypeArguments(node, node.typeArguments); emitExpressionList(node, node.arguments, 18960, parenthesizer.parenthesizeExpressionForDisallowedComma); } function emitTaggedTemplateExpression(node) { const indirectCall = getInternalEmitFlags(node) & 16; if (indirectCall) { writePunctuation("("); writeLiteral("0"); writePunctuation(","); writeSpace(); } emitExpression(node.tag, parenthesizer.parenthesizeLeftSideOfAccess); if (indirectCall) { writePunctuation(")"); } emitTypeArguments(node, node.typeArguments); writeSpace(); emitExpression(node.template); } function emitTypeAssertionExpression(node) { writePunctuation("<"); emit(node.type); writePunctuation(">"); emitExpression(node.expression, parenthesizer.parenthesizeOperandOfPrefixUnary); } function emitParenthesizedExpression(node) { const openParenPos = emitTokenWithComment(21, node.pos, writePunctuation, node); const indented = writeLineSeparatorsAndIndentBefore(node.expression, node); emitExpression(node.expression, undefined); writeLineSeparatorsAfter(node.expression, node); decreaseIndentIf(indented); emitTokenWithComment(22, node.expression ? node.expression.end : openParenPos, writePunctuation, node); } function emitFunctionExpression(node) { generateNameIfNeeded(node.name); emitFunctionDeclarationOrExpression(node); } function emitArrowFunction(node) { emitModifierList(node, node.modifiers); emitSignatureAndBody(node, emitArrowFunctionHead, emitArrowFunctionBody); } function emitArrowFunctionHead(node) { emitTypeParameters(node, node.typeParameters); emitParametersForArrow(node, node.parameters); emitTypeAnnotation(node.type); writeSpace(); emit(node.equalsGreaterThanToken); } function emitArrowFunctionBody(node) { if (isBlock(node.body)) { emitBlockFunctionBody(node.body); } else { writeSpace(); emitExpression(node.body, parenthesizer.parenthesizeConciseBodyOfArrowFunction); } } function emitDeleteExpression(node) { emitTokenWithComment(91, node.pos, writeKeyword, node); writeSpace(); emitExpression(node.expression, parenthesizer.parenthesizeOperandOfPrefixUnary); } function emitTypeOfExpression(node) { emitTokenWithComment(114, node.pos, writeKeyword, node); writeSpace(); emitExpression(node.expression, parenthesizer.parenthesizeOperandOfPrefixUnary); } function emitVoidExpression(node) { emitTokenWithComment(116, node.pos, writeKeyword, node); writeSpace(); emitExpression(node.expression, parenthesizer.parenthesizeOperandOfPrefixUnary); } function emitAwaitExpression(node) { emitTokenWithComment(135, node.pos, writeKeyword, node); writeSpace(); emitExpression(node.expression, parenthesizer.parenthesizeOperandOfPrefixUnary); } function emitPrefixUnaryExpression(node) { writeTokenText(node.operator, writeOperator); if (shouldEmitWhitespaceBeforeOperand(node)) { writeSpace(); } emitExpression(node.operand, parenthesizer.parenthesizeOperandOfPrefixUnary); } function shouldEmitWhitespaceBeforeOperand(node) { const operand = node.operand; return operand.kind === 225 && (node.operator === 40 && (operand.operator === 40 || operand.operator === 46) || node.operator === 41 && (operand.operator === 41 || operand.operator === 47)); } function emitPostfixUnaryExpression(node) { emitExpression(node.operand, parenthesizer.parenthesizeOperandOfPostfixUnary); writeTokenText(node.operator, writeOperator); } function createEmitBinaryExpression() { return createBinaryExpressionTrampoline(onEnter, onLeft, onOperator, onRight, onExit, undefined); function onEnter(node, state) { if (state) { state.stackIndex++; state.preserveSourceNewlinesStack[state.stackIndex] = preserveSourceNewlines; state.containerPosStack[state.stackIndex] = containerPos; state.containerEndStack[state.stackIndex] = containerEnd; state.declarationListContainerEndStack[state.stackIndex] = declarationListContainerEnd; const emitComments2 = state.shouldEmitCommentsStack[state.stackIndex] = shouldEmitComments(node); const emitSourceMaps = state.shouldEmitSourceMapsStack[state.stackIndex] = shouldEmitSourceMaps(node); onBeforeEmitNode == null || onBeforeEmitNode(node); if (emitComments2) emitCommentsBeforeNode(node); if (emitSourceMaps) emitSourceMapsBeforeNode(node); beforeEmitNode(node); } else { state = { stackIndex: 0, preserveSourceNewlinesStack: [undefined], containerPosStack: [-1], containerEndStack: [-1], declarationListContainerEndStack: [-1], shouldEmitCommentsStack: [false], shouldEmitSourceMapsStack: [false] }; } return state; } function onLeft(next, _workArea, parent2) { return maybeEmitExpression(next, parent2, "left"); } function onOperator(operatorToken, _state, node) { const isCommaOperator = operatorToken.kind !== 28; const linesBeforeOperator = getLinesBetweenNodes(node, node.left, operatorToken); const linesAfterOperator = getLinesBetweenNodes(node, operatorToken, node.right); writeLinesAndIndent(linesBeforeOperator, isCommaOperator); emitLeadingCommentsOfPosition(operatorToken.pos); writeTokenNode(operatorToken, operatorToken.kind === 103 ? writeKeyword : writeOperator); emitTrailingCommentsOfPosition(operatorToken.end, true); writeLinesAndIndent(linesAfterOperator, true); } function onRight(next, _workArea, parent2) { return maybeEmitExpression(next, parent2, "right"); } function onExit(node, state) { const linesBeforeOperator = getLinesBetweenNodes(node, node.left, node.operatorToken); const linesAfterOperator = getLinesBetweenNodes(node, node.operatorToken, node.right); decreaseIndentIf(linesBeforeOperator, linesAfterOperator); if (state.stackIndex > 0) { const savedPreserveSourceNewlines = state.preserveSourceNewlinesStack[state.stackIndex]; const savedContainerPos = state.containerPosStack[state.stackIndex]; const savedContainerEnd = state.containerEndStack[state.stackIndex]; const savedDeclarationListContainerEnd = state.declarationListContainerEndStack[state.stackIndex]; const shouldEmitComments2 = state.shouldEmitCommentsStack[state.stackIndex]; const shouldEmitSourceMaps2 = state.shouldEmitSourceMapsStack[state.stackIndex]; afterEmitNode(savedPreserveSourceNewlines); if (shouldEmitSourceMaps2) emitSourceMapsAfterNode(node); if (shouldEmitComments2) emitCommentsAfterNode(node, savedContainerPos, savedContainerEnd, savedDeclarationListContainerEnd); onAfterEmitNode == null || onAfterEmitNode(node); state.stackIndex--; } } function maybeEmitExpression(next, parent2, side) { const parenthesizerRule = side === "left" ? parenthesizer.getParenthesizeLeftSideOfBinaryForOperator(parent2.operatorToken.kind) : parenthesizer.getParenthesizeRightSideOfBinaryForOperator(parent2.operatorToken.kind); let pipelinePhase = getPipelinePhase(0, 1, next); if (pipelinePhase === pipelineEmitWithSubstitution) { Debug.assertIsDefined(lastSubstitution); next = parenthesizerRule(cast(lastSubstitution, isExpression)); pipelinePhase = getNextPipelinePhase(1, 1, next); lastSubstitution = undefined; } if (pipelinePhase === pipelineEmitWithComments || pipelinePhase === pipelineEmitWithSourceMaps || pipelinePhase === pipelineEmitWithHint) { if (isBinaryExpression(next)) { return next; } } currentParenthesizerRule = parenthesizerRule; pipelinePhase(1, next); } } function emitConditionalExpression(node) { const linesBeforeQuestion = getLinesBetweenNodes(node, node.condition, node.questionToken); const linesAfterQuestion = getLinesBetweenNodes(node, node.questionToken, node.whenTrue); const linesBeforeColon = getLinesBetweenNodes(node, node.whenTrue, node.colonToken); const linesAfterColon = getLinesBetweenNodes(node, node.colonToken, node.whenFalse); emitExpression(node.condition, parenthesizer.parenthesizeConditionOfConditionalExpression); writeLinesAndIndent(linesBeforeQuestion, true); emit(node.questionToken); writeLinesAndIndent(linesAfterQuestion, true); emitExpression(node.whenTrue, parenthesizer.parenthesizeBranchOfConditionalExpression); decreaseIndentIf(linesBeforeQuestion, linesAfterQuestion); writeLinesAndIndent(linesBeforeColon, true); emit(node.colonToken); writeLinesAndIndent(linesAfterColon, true); emitExpression(node.whenFalse, parenthesizer.parenthesizeBranchOfConditionalExpression); decreaseIndentIf(linesBeforeColon, linesAfterColon); } function emitTemplateExpression(node) { emit(node.head); emitList(node, node.templateSpans, 262144); } function emitYieldExpression(node) { emitTokenWithComment(127, node.pos, writeKeyword, node); emit(node.asteriskToken); emitExpressionWithLeadingSpace(node.expression && parenthesizeExpressionForNoAsi(node.expression), parenthesizeExpressionForNoAsiAndDisallowedComma); } function emitSpreadElement(node) { emitTokenWithComment(26, node.pos, writePunctuation, node); emitExpression(node.expression, parenthesizer.parenthesizeExpressionForDisallowedComma); } function emitClassExpression(node) { generateNameIfNeeded(node.name); emitClassDeclarationOrExpression(node); } function emitExpressionWithTypeArguments(node) { emitExpression(node.expression, parenthesizer.parenthesizeLeftSideOfAccess); emitTypeArguments(node, node.typeArguments); } function emitAsExpression(node) { emitExpression(node.expression, undefined); if (node.type) { writeSpace(); writeKeyword("as"); writeSpace(); emit(node.type); } } function emitNonNullExpression(node) { emitExpression(node.expression, parenthesizer.parenthesizeLeftSideOfAccess); writeOperator("!"); } function emitSatisfiesExpression(node) { emitExpression(node.expression, undefined); if (node.type) { writeSpace(); writeKeyword("satisfies"); writeSpace(); emit(node.type); } } function emitMetaProperty(node) { writeToken(node.keywordToken, node.pos, writePunctuation); writePunctuation("."); emit(node.name); } function emitTemplateSpan(node) { emitExpression(node.expression); emit(node.literal); } function emitBlock(node) { emitBlockStatements(node, !node.multiLine && isEmptyBlock(node)); } function emitBlockStatements(node, forceSingleLine) { emitTokenWithComment(19, node.pos, writePunctuation, node); const format = forceSingleLine || getEmitFlags(node) & 1 ? 768 : 129; emitList(node, node.statements, format); emitTokenWithComment(20, node.statements.end, writePunctuation, node, !!(format & 1)); } function emitVariableStatement(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); emit(node.declarationList); writeTrailingSemicolon(); } function emitEmptyStatement(isEmbeddedStatement) { if (isEmbeddedStatement) { writePunctuation(";"); } else { writeTrailingSemicolon(); } } function emitExpressionStatement(node) { emitExpression(node.expression, parenthesizer.parenthesizeExpressionOfExpressionStatement); if (!currentSourceFile || !isJsonSourceFile(currentSourceFile) || nodeIsSynthesized(node.expression)) { writeTrailingSemicolon(); } } function emitIfStatement(node) { const openParenPos = emitTokenWithComment(101, node.pos, writeKeyword, node); writeSpace(); emitTokenWithComment(21, openParenPos, writePunctuation, node); emitExpression(node.expression); emitTokenWithComment(22, node.expression.end, writePunctuation, node); emitEmbeddedStatement(node, node.thenStatement); if (node.elseStatement) { writeLineOrSpace(node, node.thenStatement, node.elseStatement); emitTokenWithComment(93, node.thenStatement.end, writeKeyword, node); if (node.elseStatement.kind === 246) { writeSpace(); emit(node.elseStatement); } else { emitEmbeddedStatement(node, node.elseStatement); } } } function emitWhileClause(node, startPos) { const openParenPos = emitTokenWithComment(117, startPos, writeKeyword, node); writeSpace(); emitTokenWithComment(21, openParenPos, writePunctuation, node); emitExpression(node.expression); emitTokenWithComment(22, node.expression.end, writePunctuation, node); } function emitDoStatement(node) { emitTokenWithComment(92, node.pos, writeKeyword, node); emitEmbeddedStatement(node, node.statement); if (isBlock(node.statement) && !preserveSourceNewlines) { writeSpace(); } else { writeLineOrSpace(node, node.statement, node.expression); } emitWhileClause(node, node.statement.end); writeTrailingSemicolon(); } function emitWhileStatement(node) { emitWhileClause(node, node.pos); emitEmbeddedStatement(node, node.statement); } function emitForStatement(node) { const openParenPos = emitTokenWithComment(99, node.pos, writeKeyword, node); writeSpace(); let pos = emitTokenWithComment(21, openParenPos, writePunctuation, node); emitForBinding(node.initializer); pos = emitTokenWithComment(27, node.initializer ? node.initializer.end : pos, writePunctuation, node); emitExpressionWithLeadingSpace(node.condition); pos = emitTokenWithComment(27, node.condition ? node.condition.end : pos, writePunctuation, node); emitExpressionWithLeadingSpace(node.incrementor); emitTokenWithComment(22, node.incrementor ? node.incrementor.end : pos, writePunctuation, node); emitEmbeddedStatement(node, node.statement); } function emitForInStatement(node) { const openParenPos = emitTokenWithComment(99, node.pos, writeKeyword, node); writeSpace(); emitTokenWithComment(21, openParenPos, writePunctuation, node); emitForBinding(node.initializer); writeSpace(); emitTokenWithComment(103, node.initializer.end, writeKeyword, node); writeSpace(); emitExpression(node.expression); emitTokenWithComment(22, node.expression.end, writePunctuation, node); emitEmbeddedStatement(node, node.statement); } function emitForOfStatement(node) { const openParenPos = emitTokenWithComment(99, node.pos, writeKeyword, node); writeSpace(); emitWithTrailingSpace(node.awaitModifier); emitTokenWithComment(21, openParenPos, writePunctuation, node); emitForBinding(node.initializer); writeSpace(); emitTokenWithComment(165, node.initializer.end, writeKeyword, node); writeSpace(); emitExpression(node.expression); emitTokenWithComment(22, node.expression.end, writePunctuation, node); emitEmbeddedStatement(node, node.statement); } function emitForBinding(node) { if (node !== undefined) { if (node.kind === 262) { emit(node); } else { emitExpression(node); } } } function emitContinueStatement(node) { emitTokenWithComment(88, node.pos, writeKeyword, node); emitWithLeadingSpace(node.label); writeTrailingSemicolon(); } function emitBreakStatement(node) { emitTokenWithComment(83, node.pos, writeKeyword, node); emitWithLeadingSpace(node.label); writeTrailingSemicolon(); } function emitTokenWithComment(token, pos, writer2, contextNode, indentLeading) { const node = getParseTreeNode(contextNode); const isSimilarNode = node && node.kind === contextNode.kind; const startPos = pos; if (isSimilarNode && currentSourceFile) { pos = skipTrivia2(currentSourceFile.text, pos); } if (isSimilarNode && contextNode.pos !== startPos) { const needsIndent = indentLeading && currentSourceFile && !positionsAreOnSameLine(startPos, pos, currentSourceFile); if (needsIndent) { increaseIndent(); } emitLeadingCommentsOfPosition(startPos); if (needsIndent) { decreaseIndent(); } } if (!omitBraceSourcePositions && (token === 19 || token === 20)) { pos = writeToken(token, pos, writer2, contextNode); } else { pos = writeTokenText(token, writer2, pos); } if (isSimilarNode && contextNode.end !== pos) { const isJsxExprContext = contextNode.kind === 295; emitTrailingCommentsOfPosition(pos, !isJsxExprContext, isJsxExprContext); } return pos; } function commentWillEmitNewLine(node) { return node.kind === 2 || !!node.hasTrailingNewLine; } function willEmitLeadingNewLine(node) { if (!currentSourceFile) return false; const leadingCommentRanges = getLeadingCommentRanges(currentSourceFile.text, node.pos); if (leadingCommentRanges) { const parseNode = getParseTreeNode(node); if (parseNode && isParenthesizedExpression(parseNode.parent)) { return true; } } if (some(leadingCommentRanges, commentWillEmitNewLine)) return true; if (some(getSyntheticLeadingComments(node), commentWillEmitNewLine)) return true; if (isPartiallyEmittedExpression(node)) { if (node.pos !== node.expression.pos) { if (some(getTrailingCommentRanges(currentSourceFile.text, node.expression.pos), commentWillEmitNewLine)) return true; } return willEmitLeadingNewLine(node.expression); } return false; } function parenthesizeExpressionForNoAsi(node) { if (!commentsDisabled) { switch (node.kind) { case 356: if (willEmitLeadingNewLine(node)) { const parseNode = getParseTreeNode(node); if (parseNode && isParenthesizedExpression(parseNode)) { const parens = factory.createParenthesizedExpression(node.expression); setOriginalNode(parens, node); setTextRange(parens, parseNode); return parens; } return factory.createParenthesizedExpression(node); } return factory.updatePartiallyEmittedExpression(node, parenthesizeExpressionForNoAsi(node.expression)); case 212: return factory.updatePropertyAccessExpression(node, parenthesizeExpressionForNoAsi(node.expression), node.name); case 213: return factory.updateElementAccessExpression(node, parenthesizeExpressionForNoAsi(node.expression), node.argumentExpression); case 214: return factory.updateCallExpression(node, parenthesizeExpressionForNoAsi(node.expression), node.typeArguments, node.arguments); case 216: return factory.updateTaggedTemplateExpression(node, parenthesizeExpressionForNoAsi(node.tag), node.typeArguments, node.template); case 226: return factory.updatePostfixUnaryExpression(node, parenthesizeExpressionForNoAsi(node.operand)); case 227: return factory.updateBinaryExpression(node, parenthesizeExpressionForNoAsi(node.left), node.operatorToken, node.right); case 228: return factory.updateConditionalExpression(node, parenthesizeExpressionForNoAsi(node.condition), node.questionToken, node.whenTrue, node.colonToken, node.whenFalse); case 235: return factory.updateAsExpression(node, parenthesizeExpressionForNoAsi(node.expression), node.type); case 239: return factory.updateSatisfiesExpression(node, parenthesizeExpressionForNoAsi(node.expression), node.type); case 236: return factory.updateNonNullExpression(node, parenthesizeExpressionForNoAsi(node.expression)); } } return node; } function parenthesizeExpressionForNoAsiAndDisallowedComma(node) { return parenthesizeExpressionForNoAsi(parenthesizer.parenthesizeExpressionForDisallowedComma(node)); } function emitReturnStatement(node) { emitTokenWithComment(107, node.pos, writeKeyword, node); emitExpressionWithLeadingSpace(node.expression && parenthesizeExpressionForNoAsi(node.expression), parenthesizeExpressionForNoAsi); writeTrailingSemicolon(); } function emitWithStatement(node) { const openParenPos = emitTokenWithComment(118, node.pos, writeKeyword, node); writeSpace(); emitTokenWithComment(21, openParenPos, writePunctuation, node); emitExpression(node.expression); emitTokenWithComment(22, node.expression.end, writePunctuation, node); emitEmbeddedStatement(node, node.statement); } function emitSwitchStatement(node) { const openParenPos = emitTokenWithComment(109, node.pos, writeKeyword, node); writeSpace(); emitTokenWithComment(21, openParenPos, writePunctuation, node); emitExpression(node.expression); emitTokenWithComment(22, node.expression.end, writePunctuation, node); writeSpace(); emit(node.caseBlock); } function emitLabeledStatement(node) { emit(node.label); emitTokenWithComment(59, node.label.end, writePunctuation, node); writeSpace(); emit(node.statement); } function emitThrowStatement(node) { emitTokenWithComment(111, node.pos, writeKeyword, node); emitExpressionWithLeadingSpace(parenthesizeExpressionForNoAsi(node.expression), parenthesizeExpressionForNoAsi); writeTrailingSemicolon(); } function emitTryStatement(node) { emitTokenWithComment(113, node.pos, writeKeyword, node); writeSpace(); emit(node.tryBlock); if (node.catchClause) { writeLineOrSpace(node, node.tryBlock, node.catchClause); emit(node.catchClause); } if (node.finallyBlock) { writeLineOrSpace(node, node.catchClause || node.tryBlock, node.finallyBlock); emitTokenWithComment(98, (node.catchClause || node.tryBlock).end, writeKeyword, node); writeSpace(); emit(node.finallyBlock); } } function emitDebuggerStatement(node) { writeToken(89, node.pos, writeKeyword); writeTrailingSemicolon(); } function emitVariableDeclaration(node) { var _a, _b, _c; emit(node.name); emit(node.exclamationToken); emitTypeAnnotation(node.type); emitInitializer(node.initializer, ((_a = node.type) == null ? undefined : _a.end) ?? ((_c = (_b = node.name.emitNode) == null ? undefined : _b.typeNode) == null ? undefined : _c.end) ?? node.name.end, node, parenthesizer.parenthesizeExpressionForDisallowedComma); } function emitVariableDeclarationList(node) { if (isVarAwaitUsing(node)) { writeKeyword("await"); writeSpace(); writeKeyword("using"); } else { const head = isLet(node) ? "let" : isVarConst(node) ? "const" : isVarUsing(node) ? "using" : "var"; writeKeyword(head); } writeSpace(); emitList(node, node.declarations, 528); } function emitFunctionDeclaration(node) { emitFunctionDeclarationOrExpression(node); } function emitFunctionDeclarationOrExpression(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); writeKeyword("function"); emit(node.asteriskToken); writeSpace(); emitIdentifierName(node.name); emitSignatureAndBody(node, emitSignatureHead, emitFunctionBody); } function emitSignatureAndBody(node, emitSignatureHead2, emitBody) { const indentedFlag = getEmitFlags(node) & 131072; if (indentedFlag) { increaseIndent(); } pushNameGenerationScope(node); forEach(node.parameters, generateNames); emitSignatureHead2(node); emitBody(node); popNameGenerationScope(node); if (indentedFlag) { decreaseIndent(); } } function emitFunctionBody(node) { const body = node.body; if (body) { emitBlockFunctionBody(body); } else { writeTrailingSemicolon(); } } function emitEmptyFunctionBody(_node) { writeTrailingSemicolon(); } function emitSignatureHead(node) { emitTypeParameters(node, node.typeParameters); emitParameters(node, node.parameters); emitTypeAnnotation(node.type); } function shouldEmitBlockFunctionBodyOnSingleLine(body) { if (getEmitFlags(body) & 1) { return true; } if (body.multiLine) { return false; } if (!nodeIsSynthesized(body) && currentSourceFile && !rangeIsOnSingleLine(body, currentSourceFile)) { return false; } if (getLeadingLineTerminatorCount(body, firstOrUndefined(body.statements), 2) || getClosingLineTerminatorCount(body, lastOrUndefined(body.statements), 2, body.statements)) { return false; } let previousStatement; for (const statement of body.statements) { if (getSeparatingLineTerminatorCount(previousStatement, statement, 2) > 0) { return false; } previousStatement = statement; } return true; } function emitBlockFunctionBody(body) { generateNames(body); onBeforeEmitNode == null || onBeforeEmitNode(body); writeSpace(); writePunctuation("{"); increaseIndent(); const emitBlockFunctionBody2 = shouldEmitBlockFunctionBodyOnSingleLine(body) ? emitBlockFunctionBodyOnSingleLine : emitBlockFunctionBodyWorker; emitBodyWithDetachedComments(body, body.statements, emitBlockFunctionBody2); decreaseIndent(); writeToken(20, body.statements.end, writePunctuation, body); onAfterEmitNode == null || onAfterEmitNode(body); } function emitBlockFunctionBodyOnSingleLine(body) { emitBlockFunctionBodyWorker(body, true); } function emitBlockFunctionBodyWorker(body, emitBlockFunctionBodyOnSingleLine2) { const statementOffset = emitPrologueDirectives(body.statements); const pos = writer.getTextPos(); emitHelpers(body); if (statementOffset === 0 && pos === writer.getTextPos() && emitBlockFunctionBodyOnSingleLine2) { decreaseIndent(); emitList(body, body.statements, 768); increaseIndent(); } else { emitList(body, body.statements, 1, undefined, statementOffset); } } function emitClassDeclaration(node) { emitClassDeclarationOrExpression(node); } function emitClassDeclarationOrExpression(node) { emitDecoratorsAndModifiers(node, node.modifiers, true); emitTokenWithComment(86, moveRangePastModifiers(node).pos, writeKeyword, node); if (node.name) { writeSpace(); emitIdentifierName(node.name); } const indentedFlag = getEmitFlags(node) & 131072; if (indentedFlag) { increaseIndent(); } emitTypeParameters(node, node.typeParameters); emitList(node, node.heritageClauses, 0); writeSpace(); writePunctuation("{"); pushNameGenerationScope(node); forEach(node.members, generateMemberNames); emitList(node, node.members, 129); popNameGenerationScope(node); writePunctuation("}"); if (indentedFlag) { decreaseIndent(); } } function emitInterfaceDeclaration(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); writeKeyword("interface"); writeSpace(); emit(node.name); emitTypeParameters(node, node.typeParameters); emitList(node, node.heritageClauses, 512); writeSpace(); writePunctuation("{"); pushNameGenerationScope(node); forEach(node.members, generateMemberNames); emitList(node, node.members, 129); popNameGenerationScope(node); writePunctuation("}"); } function emitTypeAliasDeclaration(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); writeKeyword("type"); writeSpace(); emit(node.name); emitTypeParameters(node, node.typeParameters); writeSpace(); writePunctuation("="); writeSpace(); emit(node.type); writeTrailingSemicolon(); } function emitEnumDeclaration(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); writeKeyword("enum"); writeSpace(); emit(node.name); writeSpace(); writePunctuation("{"); emitList(node, node.members, 145); writePunctuation("}"); } function emitModuleDeclaration(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); if (~node.flags & 2048) { writeKeyword(node.flags & 32 ? "namespace" : "module"); writeSpace(); } emit(node.name); let body = node.body; if (!body) return writeTrailingSemicolon(); while (body && isModuleDeclaration(body)) { writePunctuation("."); emit(body.name); body = body.body; } writeSpace(); emit(body); } function emitModuleBlock(node) { pushNameGenerationScope(node); forEach(node.statements, generateNames); emitBlockStatements(node, isEmptyBlock(node)); popNameGenerationScope(node); } function emitCaseBlock(node) { emitTokenWithComment(19, node.pos, writePunctuation, node); emitList(node, node.clauses, 129); emitTokenWithComment(20, node.clauses.end, writePunctuation, node, true); } function emitImportEqualsDeclaration(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); emitTokenWithComment(102, node.modifiers ? node.modifiers.end : node.pos, writeKeyword, node); writeSpace(); if (node.isTypeOnly) { emitTokenWithComment(156, node.pos, writeKeyword, node); writeSpace(); } emit(node.name); writeSpace(); emitTokenWithComment(64, node.name.end, writePunctuation, node); writeSpace(); emitModuleReference(node.moduleReference); writeTrailingSemicolon(); } function emitModuleReference(node) { if (node.kind === 80) { emitExpression(node); } else { emit(node); } } function emitImportDeclaration(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); emitTokenWithComment(102, node.modifiers ? node.modifiers.end : node.pos, writeKeyword, node); writeSpace(); if (node.importClause) { emit(node.importClause); writeSpace(); emitTokenWithComment(161, node.importClause.end, writeKeyword, node); writeSpace(); } emitExpression(node.moduleSpecifier); if (node.attributes) { emitWithLeadingSpace(node.attributes); } writeTrailingSemicolon(); } function emitImportClause(node) { if (node.phaseModifier !== undefined) { emitTokenWithComment(node.phaseModifier, node.pos, writeKeyword, node); writeSpace(); } emit(node.name); if (node.name && node.namedBindings) { emitTokenWithComment(28, node.name.end, writePunctuation, node); writeSpace(); } emit(node.namedBindings); } function emitNamespaceImport(node) { const asPos = emitTokenWithComment(42, node.pos, writePunctuation, node); writeSpace(); emitTokenWithComment(130, asPos, writeKeyword, node); writeSpace(); emit(node.name); } function emitNamedImports(node) { emitNamedImportsOrExports(node); } function emitImportSpecifier(node) { emitImportOrExportSpecifier(node); } function emitExportAssignment(node) { const nextPos = emitTokenWithComment(95, node.pos, writeKeyword, node); writeSpace(); if (node.isExportEquals) { emitTokenWithComment(64, nextPos, writeOperator, node); } else { emitTokenWithComment(90, nextPos, writeKeyword, node); } writeSpace(); emitExpression(node.expression, node.isExportEquals ? parenthesizer.getParenthesizeRightSideOfBinaryForOperator(64) : parenthesizer.parenthesizeExpressionOfExportDefault); writeTrailingSemicolon(); } function emitExportDeclaration(node) { emitDecoratorsAndModifiers(node, node.modifiers, false); let nextPos = emitTokenWithComment(95, node.pos, writeKeyword, node); writeSpace(); if (node.isTypeOnly) { nextPos = emitTokenWithComment(156, nextPos, writeKeyword, node); writeSpace(); } if (node.exportClause) { emit(node.exportClause); } else { nextPos = emitTokenWithComment(42, nextPos, writePunctuation, node); } if (node.moduleSpecifier) { writeSpace(); const fromPos = node.exportClause ? node.exportClause.end : nextPos; emitTokenWithComment(161, fromPos, writeKeyword, node); writeSpace(); emitExpression(node.moduleSpecifier); } if (node.attributes) { emitWithLeadingSpace(node.attributes); } writeTrailingSemicolon(); } function emitImportTypeNodeAttributes(node) { writePunctuation("{"); writeSpace(); writeKeyword(node.token === 132 ? "assert" : "with"); writePunctuation(":"); writeSpace(); const elements = node.elements; emitList(node, elements, 526226); writeSpace(); writePunctuation("}"); } function emitImportAttributes(node) { emitTokenWithComment(node.token, node.pos, writeKeyword, node); writeSpace(); const elements = node.elements; emitList(node, elements, 526226); } function emitImportAttribute(node) { emit(node.name); writePunctuation(":"); writeSpace(); const value = node.value; if ((getEmitFlags(value) & 1024) === 0) { const commentRange = getCommentRange(value); emitTrailingCommentsOfPosition(commentRange.pos); } emit(value); } function emitNamespaceExportDeclaration(node) { let nextPos = emitTokenWithComment(95, node.pos, writeKeyword, node); writeSpace(); nextPos = emitTokenWithComment(130, nextPos, writeKeyword, node); writeSpace(); nextPos = emitTokenWithComment(145, nextPos, writeKeyword, node); writeSpace(); emit(node.name); writeTrailingSemicolon(); } function emitNamespaceExport(node) { const asPos = emitTokenWithComment(42, node.pos, writePunctuation, node); writeSpace(); emitTokenWithComment(130, asPos, writeKeyword, node); writeSpace(); emit(node.name); } function emitNamedExports(node) { emitNamedImportsOrExports(node); } function emitExportSpecifier(node) { emitImportOrExportSpecifier(node); } function emitNamedImportsOrExports(node) { writePunctuation("{"); emitList(node, node.elements, 525136); writePunctuation("}"); } function emitImportOrExportSpecifier(node) { if (node.isTypeOnly) { writeKeyword("type"); writeSpace(); } if (node.propertyName) { emit(node.propertyName); writeSpace(); emitTokenWithComment(130, node.propertyName.end, writeKeyword, node); writeSpace(); } emit(node.name); } function emitExternalModuleReference(node) { writeKeyword("require"); writePunctuation("("); emitExpression(node.expression); writePunctuation(")"); } function emitJsxElement(node) { emit(node.openingElement); emitList(node, node.children, 262144); emit(node.closingElement); } function emitJsxSelfClosingElement(node) { writePunctuation("<"); emitJsxTagName(node.tagName); emitTypeArguments(node, node.typeArguments); writeSpace(); emit(node.attributes); writePunctuation("/>"); } function emitJsxFragment(node) { emit(node.openingFragment); emitList(node, node.children, 262144); emit(node.closingFragment); } function emitJsxOpeningElementOrFragment(node) { writePunctuation("<"); if (isJsxOpeningElement(node)) { const indented = writeLineSeparatorsAndIndentBefore(node.tagName, node); emitJsxTagName(node.tagName); emitTypeArguments(node, node.typeArguments); if (node.attributes.properties && node.attributes.properties.length > 0) { writeSpace(); } emit(node.attributes); writeLineSeparatorsAfter(node.attributes, node); decreaseIndentIf(indented); } writePunctuation(">"); } function emitJsxText(node) { writer.writeLiteral(node.text); } function emitJsxClosingElementOrFragment(node) { writePunctuation(""); } function emitJsxAttributes(node) { emitList(node, node.properties, 262656); } function emitJsxAttribute(node) { emit(node.name); emitNodeWithPrefix("=", writePunctuation, node.initializer, emitJsxAttributeValue); } function emitJsxSpreadAttribute(node) { writePunctuation("{..."); emitExpression(node.expression); writePunctuation("}"); } function hasTrailingCommentsAtPosition(pos) { let result = false; forEachTrailingCommentRange((currentSourceFile == null ? undefined : currentSourceFile.text) || "", pos + 1, () => result = true); return result; } function hasLeadingCommentsAtPosition(pos) { let result = false; forEachLeadingCommentRange((currentSourceFile == null ? undefined : currentSourceFile.text) || "", pos + 1, () => result = true); return result; } function hasCommentsAtPosition(pos) { return hasTrailingCommentsAtPosition(pos) || hasLeadingCommentsAtPosition(pos); } function emitJsxExpression(node) { var _a; if (node.expression || !commentsDisabled && !nodeIsSynthesized(node) && hasCommentsAtPosition(node.pos)) { const isMultiline = currentSourceFile && !nodeIsSynthesized(node) && getLineAndCharacterOfPosition(currentSourceFile, node.pos).line !== getLineAndCharacterOfPosition(currentSourceFile, node.end).line; if (isMultiline) { writer.increaseIndent(); } const end = emitTokenWithComment(19, node.pos, writePunctuation, node); emit(node.dotDotDotToken); emitExpression(node.expression); emitTokenWithComment(20, ((_a = node.expression) == null ? undefined : _a.end) || end, writePunctuation, node); if (isMultiline) { writer.decreaseIndent(); } } } function emitJsxNamespacedName(node) { emitIdentifierName(node.namespace); writePunctuation(":"); emitIdentifierName(node.name); } function emitJsxTagName(node) { if (node.kind === 80) { emitExpression(node); } else { emit(node); } } function emitCaseClause(node) { emitTokenWithComment(84, node.pos, writeKeyword, node); writeSpace(); emitExpression(node.expression, parenthesizer.parenthesizeExpressionForDisallowedComma); emitCaseOrDefaultClauseRest(node, node.statements, node.expression.end); } function emitDefaultClause(node) { const pos = emitTokenWithComment(90, node.pos, writeKeyword, node); emitCaseOrDefaultClauseRest(node, node.statements, pos); } function emitCaseOrDefaultClauseRest(parentNode, statements, colonPos) { const emitAsSingleStatement = statements.length === 1 && (!currentSourceFile || nodeIsSynthesized(parentNode) || nodeIsSynthesized(statements[0]) || rangeStartPositionsAreOnSameLine(parentNode, statements[0], currentSourceFile)); let format = 163969; if (emitAsSingleStatement) { writeToken(59, colonPos, writePunctuation, parentNode); writeSpace(); format &= ~(1 | 128); } else { emitTokenWithComment(59, colonPos, writePunctuation, parentNode); } emitList(parentNode, statements, format); } function emitHeritageClause(node) { writeSpace(); writeTokenText(node.token, writeKeyword); writeSpace(); emitList(node, node.types, 528); } function emitCatchClause(node) { const openParenPos = emitTokenWithComment(85, node.pos, writeKeyword, node); writeSpace(); if (node.variableDeclaration) { emitTokenWithComment(21, openParenPos, writePunctuation, node); emit(node.variableDeclaration); emitTokenWithComment(22, node.variableDeclaration.end, writePunctuation, node); writeSpace(); } emit(node.block); } function emitPropertyAssignment(node) { emit(node.name); writePunctuation(":"); writeSpace(); const initializer = node.initializer; if ((getEmitFlags(initializer) & 1024) === 0) { const commentRange = getCommentRange(initializer); emitTrailingCommentsOfPosition(commentRange.pos); } emitExpression(initializer, parenthesizer.parenthesizeExpressionForDisallowedComma); } function emitShorthandPropertyAssignment(node) { emit(node.name); if (node.objectAssignmentInitializer) { writeSpace(); writePunctuation("="); writeSpace(); emitExpression(node.objectAssignmentInitializer, parenthesizer.parenthesizeExpressionForDisallowedComma); } } function emitSpreadAssignment(node) { if (node.expression) { emitTokenWithComment(26, node.pos, writePunctuation, node); emitExpression(node.expression, parenthesizer.parenthesizeExpressionForDisallowedComma); } } function emitEnumMember(node) { emit(node.name); emitInitializer(node.initializer, node.name.end, node, parenthesizer.parenthesizeExpressionForDisallowedComma); } function emitJSDoc(node) { write("/**"); if (node.comment) { const text = getTextOfJSDocComment(node.comment); if (text) { const lines = text.split(/\r\n?|\n/); for (const line of lines) { writeLine(); writeSpace(); writePunctuation("*"); writeSpace(); write(line); } } } if (node.tags) { if (node.tags.length === 1 && node.tags[0].kind === 345 && !node.comment) { writeSpace(); emit(node.tags[0]); } else { emitList(node, node.tags, 33); } } writeSpace(); write("*/"); } function emitJSDocSimpleTypedTag(tag) { emitJSDocTagName(tag.tagName); emitJSDocTypeExpression(tag.typeExpression); emitJSDocComment(tag.comment); } function emitJSDocSeeTag(tag) { emitJSDocTagName(tag.tagName); emit(tag.name); emitJSDocComment(tag.comment); } function emitJSDocImportTag(tag) { emitJSDocTagName(tag.tagName); writeSpace(); if (tag.importClause) { emit(tag.importClause); writeSpace(); emitTokenWithComment(161, tag.importClause.end, writeKeyword, tag); writeSpace(); } emitExpression(tag.moduleSpecifier); if (tag.attributes) { emitWithLeadingSpace(tag.attributes); } emitJSDocComment(tag.comment); } function emitJSDocNameReference(node) { writeSpace(); writePunctuation("{"); emit(node.name); writePunctuation("}"); } function emitJSDocHeritageTag(tag) { emitJSDocTagName(tag.tagName); writeSpace(); writePunctuation("{"); emit(tag.class); writePunctuation("}"); emitJSDocComment(tag.comment); } function emitJSDocTemplateTag(tag) { emitJSDocTagName(tag.tagName); emitJSDocTypeExpression(tag.constraint); writeSpace(); emitList(tag, tag.typeParameters, 528); emitJSDocComment(tag.comment); } function emitJSDocTypedefTag(tag) { emitJSDocTagName(tag.tagName); if (tag.typeExpression) { if (tag.typeExpression.kind === 310) { emitJSDocTypeExpression(tag.typeExpression); } else { writeSpace(); writePunctuation("{"); write("Object"); if (tag.typeExpression.isArrayType) { writePunctuation("["); writePunctuation("]"); } writePunctuation("}"); } } if (tag.fullName) { writeSpace(); emit(tag.fullName); } emitJSDocComment(tag.comment); if (tag.typeExpression && tag.typeExpression.kind === 323) { emitJSDocTypeLiteral(tag.typeExpression); } } function emitJSDocCallbackTag(tag) { emitJSDocTagName(tag.tagName); if (tag.name) { writeSpace(); emit(tag.name); } emitJSDocComment(tag.comment); emitJSDocSignature(tag.typeExpression); } function emitJSDocOverloadTag(tag) { emitJSDocComment(tag.comment); emitJSDocSignature(tag.typeExpression); } function emitJSDocSimpleTag(tag) { emitJSDocTagName(tag.tagName); emitJSDocComment(tag.comment); } function emitJSDocTypeLiteral(lit) { emitList(lit, factory.createNodeArray(lit.jsDocPropertyTags), 33); } function emitJSDocSignature(sig) { if (sig.typeParameters) { emitList(sig, factory.createNodeArray(sig.typeParameters), 33); } if (sig.parameters) { emitList(sig, factory.createNodeArray(sig.parameters), 33); } if (sig.type) { writeLine(); writeSpace(); writePunctuation("*"); writeSpace(); emit(sig.type); } } function emitJSDocPropertyLikeTag(param) { emitJSDocTagName(param.tagName); emitJSDocTypeExpression(param.typeExpression); writeSpace(); if (param.isBracketed) { writePunctuation("["); } emit(param.name); if (param.isBracketed) { writePunctuation("]"); } emitJSDocComment(param.comment); } function emitJSDocTagName(tagName) { writePunctuation("@"); emit(tagName); } function emitJSDocComment(comment) { const text = getTextOfJSDocComment(comment); if (text) { writeSpace(); write(text); } } function emitJSDocTypeExpression(typeExpression) { if (typeExpression) { writeSpace(); writePunctuation("{"); emit(typeExpression.type); writePunctuation("}"); } } function emitSourceFile(node) { writeLine(); const statements = node.statements; const shouldEmitDetachedComment = statements.length === 0 || !isPrologueDirective(statements[0]) || nodeIsSynthesized(statements[0]); if (shouldEmitDetachedComment) { emitBodyWithDetachedComments(node, statements, emitSourceFileWorker); return; } emitSourceFileWorker(node); } function emitSyntheticTripleSlashReferencesIfNeeded(node) { emitTripleSlashDirectives(node.syntheticFileReferences || [], node.syntheticTypeReferences || [], node.syntheticLibReferences || []); } function emitTripleSlashDirectivesIfNeeded(node) { if (node.isDeclarationFile) emitTripleSlashDirectives(node.referencedFiles, node.typeReferenceDirectives, node.libReferenceDirectives); } function emitTripleSlashDirectives(files, types, libs2) { if (currentSourceFile && currentSourceFile.moduleName) { writeComment(`/// `); writeLine(); } if (currentSourceFile && currentSourceFile.amdDependencies) { for (const dep of currentSourceFile.amdDependencies) { if (dep.name) { writeComment(`/// `); } else { writeComment(`/// `); } writeLine(); } } function writeDirectives(kind, directives) { for (const directive of directives) { const resolutionMode = directive.resolutionMode ? `resolution-mode="${directive.resolutionMode === 99 ? "import" : "require"}" ` : ""; const preserve = directive.preserve ? `preserve="true" ` : ""; writeComment(`/// `); writeLine(); } } writeDirectives("path", files); writeDirectives("types", types); writeDirectives("lib", libs2); } function emitSourceFileWorker(node) { const statements = node.statements; pushNameGenerationScope(node); forEach(node.statements, generateNames); emitHelpers(node); const index = findIndex(statements, (statement) => !isPrologueDirective(statement)); emitTripleSlashDirectivesIfNeeded(node); emitList(node, statements, 1, undefined, index === -1 ? statements.length : index); popNameGenerationScope(node); } function emitPartiallyEmittedExpression(node) { const emitFlags = getEmitFlags(node); if (!(emitFlags & 1024) && node.pos !== node.expression.pos) { emitTrailingCommentsOfPosition(node.expression.pos); } emitExpression(node.expression); if (!(emitFlags & 2048) && node.end !== node.expression.end) { emitLeadingCommentsOfPosition(node.expression.end); } } function emitCommaList(node) { emitExpressionList(node, node.elements, 528, undefined); } function emitPrologueDirectives(statements, sourceFile, seenPrologueDirectives) { let needsToSetSourceFile = !!sourceFile; for (let i = 0;i < statements.length; i++) { const statement = statements[i]; if (isPrologueDirective(statement)) { const shouldEmitPrologueDirective = seenPrologueDirectives ? !seenPrologueDirectives.has(statement.expression.text) : true; if (shouldEmitPrologueDirective) { if (needsToSetSourceFile) { needsToSetSourceFile = false; setSourceFile(sourceFile); } writeLine(); emit(statement); if (seenPrologueDirectives) { seenPrologueDirectives.add(statement.expression.text); } } } else { return i; } } return statements.length; } function emitPrologueDirectivesIfNeeded(sourceFileOrBundle) { if (isSourceFile(sourceFileOrBundle)) { emitPrologueDirectives(sourceFileOrBundle.statements, sourceFileOrBundle); } else { const seenPrologueDirectives = /* @__PURE__ */ new Set; for (const sourceFile of sourceFileOrBundle.sourceFiles) { emitPrologueDirectives(sourceFile.statements, sourceFile, seenPrologueDirectives); } setSourceFile(undefined); } } function emitShebangIfNeeded(sourceFileOrBundle) { if (isSourceFile(sourceFileOrBundle)) { const shebang = getShebang(sourceFileOrBundle.text); if (shebang) { writeComment(shebang); writeLine(); return true; } } else { for (const sourceFile of sourceFileOrBundle.sourceFiles) { if (emitShebangIfNeeded(sourceFile)) { return true; } } } } function emitNodeWithWriter(node, writer2) { if (!node) return; const savedWrite = write; write = writer2; emit(node); write = savedWrite; } function emitDecoratorsAndModifiers(node, modifiers, allowDecorators) { if (modifiers == null ? undefined : modifiers.length) { if (every(modifiers, isModifier)) { return emitModifierList(node, modifiers); } if (every(modifiers, isDecorator)) { if (allowDecorators) { return emitDecoratorList(node, modifiers); } return node.pos; } onBeforeEmitNodeArray == null || onBeforeEmitNodeArray(modifiers); let lastMode; let mode; let start = 0; let pos = 0; let lastModifier; while (start < modifiers.length) { while (pos < modifiers.length) { lastModifier = modifiers[pos]; mode = isDecorator(lastModifier) ? "decorators" : "modifiers"; if (lastMode === undefined) { lastMode = mode; } else if (mode !== lastMode) { break; } pos++; } const textRange = { pos: -1, end: -1 }; if (start === 0) textRange.pos = modifiers.pos; if (pos === modifiers.length - 1) textRange.end = modifiers.end; if (lastMode === "modifiers" || allowDecorators) { emitNodeListItems(emit, node, modifiers, lastMode === "modifiers" ? 2359808 : 2146305, undefined, start, pos - start, false, textRange); } start = pos; lastMode = mode; pos++; } onAfterEmitNodeArray == null || onAfterEmitNodeArray(modifiers); if (lastModifier && !positionIsSynthesized(lastModifier.end)) { return lastModifier.end; } } return node.pos; } function emitModifierList(node, modifiers) { emitList(node, modifiers, 2359808); const lastModifier = lastOrUndefined(modifiers); return lastModifier && !positionIsSynthesized(lastModifier.end) ? lastModifier.end : node.pos; } function emitTypeAnnotation(node) { if (node) { writePunctuation(":"); writeSpace(); emit(node); } } function emitInitializer(node, equalCommentStartPos, container, parenthesizerRule) { if (node) { writeSpace(); emitTokenWithComment(64, equalCommentStartPos, writeOperator, container); writeSpace(); emitExpression(node, parenthesizerRule); } } function emitNodeWithPrefix(prefix, prefixWriter, node, emit2) { if (node) { prefixWriter(prefix); emit2(node); } } function emitWithLeadingSpace(node) { if (node) { writeSpace(); emit(node); } } function emitExpressionWithLeadingSpace(node, parenthesizerRule) { if (node) { writeSpace(); emitExpression(node, parenthesizerRule); } } function emitWithTrailingSpace(node) { if (node) { emit(node); writeSpace(); } } function emitEmbeddedStatement(parent2, node) { if (isBlock(node) || getEmitFlags(parent2) & 1 || preserveSourceNewlines && !getLeadingLineTerminatorCount(parent2, node, 0)) { writeSpace(); emit(node); } else { writeLine(); increaseIndent(); if (isEmptyStatement(node)) { pipelineEmit(5, node); } else { emit(node); } decreaseIndent(); } } function emitDecoratorList(parentNode, decorators) { emitList(parentNode, decorators, 2146305); const lastDecorator = lastOrUndefined(decorators); return lastDecorator && !positionIsSynthesized(lastDecorator.end) ? lastDecorator.end : parentNode.pos; } function emitTypeArguments(parentNode, typeArguments) { emitList(parentNode, typeArguments, 53776, typeArgumentParenthesizerRuleSelector); } function emitTypeParameters(parentNode, typeParameters) { if (isFunctionLike(parentNode) && parentNode.typeArguments) { return emitTypeArguments(parentNode, parentNode.typeArguments); } emitList(parentNode, typeParameters, 53776 | (isArrowFunction(parentNode) ? 64 : 0)); } function emitParameters(parentNode, parameters) { emitList(parentNode, parameters, 2576); } function canEmitSimpleArrowHead(parentNode, parameters) { const parameter = singleOrUndefined(parameters); return parameter && parameter.pos === parentNode.pos && isArrowFunction(parentNode) && !parentNode.type && !some(parentNode.modifiers) && !some(parentNode.typeParameters) && !some(parameter.modifiers) && !parameter.dotDotDotToken && !parameter.questionToken && !parameter.type && !parameter.initializer && isIdentifier(parameter.name); } function emitParametersForArrow(parentNode, parameters) { if (canEmitSimpleArrowHead(parentNode, parameters)) { emitList(parentNode, parameters, 2576 & ~2048); } else { emitParameters(parentNode, parameters); } } function emitParametersForIndexSignature(parentNode, parameters) { emitList(parentNode, parameters, 8848); } function writeDelimiter(format) { switch (format & 60) { case 0: break; case 16: writePunctuation(","); break; case 4: writeSpace(); writePunctuation("|"); break; case 32: writeSpace(); writePunctuation("*"); writeSpace(); break; case 8: writeSpace(); writePunctuation("&"); break; } } function emitList(parentNode, children, format, parenthesizerRule, start, count) { emitNodeList(emit, parentNode, children, format | (parentNode && getEmitFlags(parentNode) & 2 ? 65536 : 0), parenthesizerRule, start, count); } function emitExpressionList(parentNode, children, format, parenthesizerRule, start, count) { emitNodeList(emitExpression, parentNode, children, format, parenthesizerRule, start, count); } function emitNodeList(emit2, parentNode, children, format, parenthesizerRule, start = 0, count = children ? children.length - start : 0) { const isUndefined = children === undefined; if (isUndefined && format & 16384) { return; } const isEmpty = children === undefined || start >= children.length || count === 0; if (isEmpty && format & 32768) { onBeforeEmitNodeArray == null || onBeforeEmitNodeArray(children); onAfterEmitNodeArray == null || onAfterEmitNodeArray(children); return; } if (format & 15360) { writePunctuation(getOpeningBracket(format)); if (isEmpty && children) { emitTrailingCommentsOfPosition(children.pos, true); } } onBeforeEmitNodeArray == null || onBeforeEmitNodeArray(children); if (isEmpty) { if (format & 1 && !(preserveSourceNewlines && (!parentNode || currentSourceFile && rangeIsOnSingleLine(parentNode, currentSourceFile)))) { writeLine(); } else if (format & 256 && !(format & 524288)) { writeSpace(); } } else { emitNodeListItems(emit2, parentNode, children, format, parenthesizerRule, start, count, children.hasTrailingComma, children); } onAfterEmitNodeArray == null || onAfterEmitNodeArray(children); if (format & 15360) { if (isEmpty && children) { emitLeadingCommentsOfPosition(children.end); } writePunctuation(getClosingBracket(format)); } } function emitNodeListItems(emit2, parentNode, children, format, parenthesizerRule, start, count, hasTrailingComma, childrenTextRange) { const mayEmitInterveningComments = (format & 262144) === 0; let shouldEmitInterveningComments = mayEmitInterveningComments; const leadingLineTerminatorCount = getLeadingLineTerminatorCount(parentNode, children[start], format); if (leadingLineTerminatorCount) { writeLine(leadingLineTerminatorCount); shouldEmitInterveningComments = false; } else if (format & 256) { writeSpace(); } if (format & 128) { increaseIndent(); } const emitListItem = getEmitListItem(emit2, parenthesizerRule); let previousSibling; let shouldDecreaseIndentAfterEmit = false; for (let i = 0;i < count; i++) { const child = children[start + i]; if (format & 32) { writeLine(); writeDelimiter(format); } else if (previousSibling) { if (format & 60 && previousSibling.end !== (parentNode ? parentNode.end : -1)) { const previousSiblingEmitFlags = getEmitFlags(previousSibling); if (!(previousSiblingEmitFlags & 2048)) { emitLeadingCommentsOfPosition(previousSibling.end); } } writeDelimiter(format); const separatingLineTerminatorCount = getSeparatingLineTerminatorCount(previousSibling, child, format); if (separatingLineTerminatorCount > 0) { if ((format & (3 | 128)) === 0) { increaseIndent(); shouldDecreaseIndentAfterEmit = true; } if (shouldEmitInterveningComments && format & 60 && !positionIsSynthesized(child.pos)) { const commentRange = getCommentRange(child); emitTrailingCommentsOfPosition(commentRange.pos, !!(format & 512), true); } writeLine(separatingLineTerminatorCount); shouldEmitInterveningComments = false; } else if (previousSibling && format & 512) { writeSpace(); } } if (shouldEmitInterveningComments) { const commentRange = getCommentRange(child); emitTrailingCommentsOfPosition(commentRange.pos); } else { shouldEmitInterveningComments = mayEmitInterveningComments; } nextListElementPos = child.pos; emitListItem(child, emit2, parenthesizerRule, i); if (shouldDecreaseIndentAfterEmit) { decreaseIndent(); shouldDecreaseIndentAfterEmit = false; } previousSibling = child; } const emitFlags = previousSibling ? getEmitFlags(previousSibling) : 0; const skipTrailingComments = commentsDisabled || !!(emitFlags & 2048); const emitTrailingComma = hasTrailingComma && format & 64 && format & 16; if (emitTrailingComma) { if (previousSibling && !skipTrailingComments) { emitTokenWithComment(28, previousSibling.end, writePunctuation, previousSibling); } else { writePunctuation(","); } } if (previousSibling && (parentNode ? parentNode.end : -1) !== previousSibling.end && format & 60 && !skipTrailingComments) { emitLeadingCommentsOfPosition(emitTrailingComma && (childrenTextRange == null ? undefined : childrenTextRange.end) ? childrenTextRange.end : previousSibling.end); } if (format & 128) { decreaseIndent(); } const closingLineTerminatorCount = getClosingLineTerminatorCount(parentNode, children[start + count - 1], format, childrenTextRange); if (closingLineTerminatorCount) { writeLine(closingLineTerminatorCount); } else if (format & (2097152 | 256)) { writeSpace(); } } function writeLiteral(s) { writer.writeLiteral(s); } function writeStringLiteral(s) { writer.writeStringLiteral(s); } function writeBase(s) { writer.write(s); } function writeSymbol(s, sym) { writer.writeSymbol(s, sym); } function writePunctuation(s) { writer.writePunctuation(s); } function writeTrailingSemicolon() { writer.writeTrailingSemicolon(";"); } function writeKeyword(s) { writer.writeKeyword(s); } function writeOperator(s) { writer.writeOperator(s); } function writeParameter(s) { writer.writeParameter(s); } function writeComment(s) { writer.writeComment(s); } function writeSpace() { writer.writeSpace(" "); } function writeProperty(s) { writer.writeProperty(s); } function nonEscapingWrite(s) { if (writer.nonEscapingWrite) { writer.nonEscapingWrite(s); } else { writer.write(s); } } function writeLine(count = 1) { for (let i = 0;i < count; i++) { writer.writeLine(i > 0); } } function increaseIndent() { writer.increaseIndent(); } function decreaseIndent() { writer.decreaseIndent(); } function writeToken(token, pos, writer2, contextNode) { return !sourceMapsDisabled ? emitTokenWithSourceMap(contextNode, token, writer2, pos, writeTokenText) : writeTokenText(token, writer2, pos); } function writeTokenNode(node, writer2) { if (onBeforeEmitToken) { onBeforeEmitToken(node); } writer2(tokenToString(node.kind)); if (onAfterEmitToken) { onAfterEmitToken(node); } } function writeTokenText(token, writer2, pos) { const tokenString = tokenToString(token); writer2(tokenString); return pos < 0 ? pos : pos + tokenString.length; } function writeLineOrSpace(parentNode, prevChildNode, nextChildNode) { if (getEmitFlags(parentNode) & 1) { writeSpace(); } else if (preserveSourceNewlines) { const lines = getLinesBetweenNodes(parentNode, prevChildNode, nextChildNode); if (lines) { writeLine(lines); } else { writeSpace(); } } else { writeLine(); } } function writeLines(text) { const lines = text.split(/\r\n?|\n/); const indentation = guessIndentation(lines); for (const lineText of lines) { const line = indentation ? lineText.slice(indentation) : lineText; if (line.length) { writeLine(); write(line); } } } function writeLinesAndIndent(lineCount, writeSpaceIfNotIndenting) { if (lineCount) { increaseIndent(); writeLine(lineCount); } else if (writeSpaceIfNotIndenting) { writeSpace(); } } function decreaseIndentIf(value1, value2) { if (value1) { decreaseIndent(); } if (value2) { decreaseIndent(); } } function getLeadingLineTerminatorCount(parentNode, firstChild, format) { if (format & 2 || preserveSourceNewlines) { if (format & 65536) { return 1; } if (firstChild === undefined) { return !parentNode || currentSourceFile && rangeIsOnSingleLine(parentNode, currentSourceFile) ? 0 : 1; } if (firstChild.pos === nextListElementPos) { return 0; } if (firstChild.kind === 12) { return 0; } if (currentSourceFile && parentNode && !positionIsSynthesized(parentNode.pos) && !nodeIsSynthesized(firstChild) && (!firstChild.parent || getOriginalNode(firstChild.parent) === getOriginalNode(parentNode))) { if (preserveSourceNewlines) { return getEffectiveLines((includeComments) => getLinesBetweenPositionAndPrecedingNonWhitespaceCharacter(firstChild.pos, parentNode.pos, currentSourceFile, includeComments)); } return rangeStartPositionsAreOnSameLine(parentNode, firstChild, currentSourceFile) ? 0 : 1; } if (synthesizedNodeStartsOnNewLine(firstChild, format)) { return 1; } } return format & 1 ? 1 : 0; } function getSeparatingLineTerminatorCount(previousNode, nextNode, format) { if (format & 2 || preserveSourceNewlines) { if (previousNode === undefined || nextNode === undefined) { return 0; } if (nextNode.kind === 12) { return 0; } else if (currentSourceFile && !nodeIsSynthesized(previousNode) && !nodeIsSynthesized(nextNode)) { if (preserveSourceNewlines && siblingNodePositionsAreComparable(previousNode, nextNode)) { return getEffectiveLines((includeComments) => getLinesBetweenRangeEndAndRangeStart(previousNode, nextNode, currentSourceFile, includeComments)); } else if (!preserveSourceNewlines && originalNodesHaveSameParent(previousNode, nextNode)) { return rangeEndIsOnSameLineAsRangeStart(previousNode, nextNode, currentSourceFile) ? 0 : 1; } return format & 65536 ? 1 : 0; } else if (synthesizedNodeStartsOnNewLine(previousNode, format) || synthesizedNodeStartsOnNewLine(nextNode, format)) { return 1; } } else if (getStartsOnNewLine(nextNode)) { return 1; } return format & 1 ? 1 : 0; } function getClosingLineTerminatorCount(parentNode, lastChild, format, childrenTextRange) { if (format & 2 || preserveSourceNewlines) { if (format & 65536) { return 1; } if (lastChild === undefined) { return !parentNode || currentSourceFile && rangeIsOnSingleLine(parentNode, currentSourceFile) ? 0 : 1; } if (currentSourceFile && parentNode && !positionIsSynthesized(parentNode.pos) && !nodeIsSynthesized(lastChild) && (!lastChild.parent || lastChild.parent === parentNode)) { if (preserveSourceNewlines) { const end = childrenTextRange && !positionIsSynthesized(childrenTextRange.end) ? childrenTextRange.end : lastChild.end; return getEffectiveLines((includeComments) => getLinesBetweenPositionAndNextNonWhitespaceCharacter(end, parentNode.end, currentSourceFile, includeComments)); } return rangeEndPositionsAreOnSameLine(parentNode, lastChild, currentSourceFile) ? 0 : 1; } if (synthesizedNodeStartsOnNewLine(lastChild, format)) { return 1; } } if (format & 1 && !(format & 131072)) { return 1; } return 0; } function getEffectiveLines(getLineDifference) { Debug.assert(!!preserveSourceNewlines); const lines = getLineDifference(true); if (lines === 0) { return getLineDifference(false); } return lines; } function writeLineSeparatorsAndIndentBefore(node, parent2) { const leadingNewlines = preserveSourceNewlines && getLeadingLineTerminatorCount(parent2, node, 0); if (leadingNewlines) { writeLinesAndIndent(leadingNewlines, false); } return !!leadingNewlines; } function writeLineSeparatorsAfter(node, parent2) { const trailingNewlines = preserveSourceNewlines && getClosingLineTerminatorCount(parent2, node, 0, undefined); if (trailingNewlines) { writeLine(trailingNewlines); } } function synthesizedNodeStartsOnNewLine(node, format) { if (nodeIsSynthesized(node)) { const startsOnNewLine = getStartsOnNewLine(node); if (startsOnNewLine === undefined) { return (format & 65536) !== 0; } return startsOnNewLine; } return (format & 65536) !== 0; } function getLinesBetweenNodes(parent2, node1, node2) { if (getEmitFlags(parent2) & 262144) { return 0; } parent2 = skipSynthesizedParentheses(parent2); node1 = skipSynthesizedParentheses(node1); node2 = skipSynthesizedParentheses(node2); if (getStartsOnNewLine(node2)) { return 1; } if (currentSourceFile && !nodeIsSynthesized(parent2) && !nodeIsSynthesized(node1) && !nodeIsSynthesized(node2)) { if (preserveSourceNewlines) { return getEffectiveLines((includeComments) => getLinesBetweenRangeEndAndRangeStart(node1, node2, currentSourceFile, includeComments)); } return rangeEndIsOnSameLineAsRangeStart(node1, node2, currentSourceFile) ? 0 : 1; } return 0; } function isEmptyBlock(block) { return block.statements.length === 0 && (!currentSourceFile || rangeEndIsOnSameLineAsRangeStart(block, block, currentSourceFile)); } function skipSynthesizedParentheses(node) { while (node.kind === 218 && nodeIsSynthesized(node)) { node = node.expression; } return node; } function getTextOfNode2(node, includeTrivia) { if (isGeneratedIdentifier(node) || isGeneratedPrivateIdentifier(node)) { return generateName(node); } if (isStringLiteral(node) && node.textSourceNode) { return getTextOfNode2(node.textSourceNode, includeTrivia); } const sourceFile = currentSourceFile; const canUseSourceFile = !!sourceFile && !!node.parent && !nodeIsSynthesized(node); if (isMemberName(node)) { if (!canUseSourceFile || getSourceFileOfNode(node) !== getOriginalNode(sourceFile)) { return idText(node); } } else if (isJsxNamespacedName(node)) { if (!canUseSourceFile || getSourceFileOfNode(node) !== getOriginalNode(sourceFile)) { return getTextOfJsxNamespacedName(node); } } else { Debug.assertNode(node, isLiteralExpression); if (!canUseSourceFile) { return node.text; } } return getSourceTextOfNodeFromSourceFile(sourceFile, node, includeTrivia); } function getLiteralTextOfNode(node, sourceFile = currentSourceFile, neverAsciiEscape, jsxAttributeEscape) { if (node.kind === 11 && node.textSourceNode) { const textSourceNode = node.textSourceNode; if (isIdentifier(textSourceNode) || isPrivateIdentifier(textSourceNode) || isNumericLiteral(textSourceNode) || isJsxNamespacedName(textSourceNode)) { const text = isNumericLiteral(textSourceNode) ? textSourceNode.text : getTextOfNode2(textSourceNode); return jsxAttributeEscape ? `"${escapeJsxAttributeString(text)}"` : neverAsciiEscape || getEmitFlags(node) & 16777216 ? `"${escapeString(text)}"` : `"${escapeNonAsciiString(text)}"`; } else { return getLiteralTextOfNode(textSourceNode, getSourceFileOfNode(textSourceNode), neverAsciiEscape, jsxAttributeEscape); } } const flags = (neverAsciiEscape ? 1 : 0) | (jsxAttributeEscape ? 2 : 0) | (printerOptions.terminateUnterminatedLiterals ? 4 : 0) | (printerOptions.target && printerOptions.target >= 8 ? 8 : 0); return getLiteralText(node, sourceFile, flags); } function pushNameGenerationScope(node) { privateNameTempFlagsStack.push(privateNameTempFlags); privateNameTempFlags = 0; reservedPrivateNamesStack.push(reservedPrivateNames); if (node && getEmitFlags(node) & 1048576) { return; } tempFlagsStack.push(tempFlags); tempFlags = 0; formattedNameTempFlagsStack.push(formattedNameTempFlags); formattedNameTempFlags = undefined; reservedNamesStack.push(reservedNames); } function popNameGenerationScope(node) { privateNameTempFlags = privateNameTempFlagsStack.pop(); reservedPrivateNames = reservedPrivateNamesStack.pop(); if (node && getEmitFlags(node) & 1048576) { return; } tempFlags = tempFlagsStack.pop(); formattedNameTempFlags = formattedNameTempFlagsStack.pop(); reservedNames = reservedNamesStack.pop(); } function reserveNameInNestedScopes(name) { if (!reservedNames || reservedNames === lastOrUndefined(reservedNamesStack)) { reservedNames = /* @__PURE__ */ new Set; } reservedNames.add(name); } function reservePrivateNameInNestedScopes(name) { if (!reservedPrivateNames || reservedPrivateNames === lastOrUndefined(reservedPrivateNamesStack)) { reservedPrivateNames = /* @__PURE__ */ new Set; } reservedPrivateNames.add(name); } function generateNames(node) { if (!node) return; switch (node.kind) { case 242: forEach(node.statements, generateNames); break; case 257: case 255: case 247: case 248: generateNames(node.statement); break; case 246: generateNames(node.thenStatement); generateNames(node.elseStatement); break; case 249: case 251: case 250: generateNames(node.initializer); generateNames(node.statement); break; case 256: generateNames(node.caseBlock); break; case 270: forEach(node.clauses, generateNames); break; case 297: case 298: forEach(node.statements, generateNames); break; case 259: generateNames(node.tryBlock); generateNames(node.catchClause); generateNames(node.finallyBlock); break; case 300: generateNames(node.variableDeclaration); generateNames(node.block); break; case 244: generateNames(node.declarationList); break; case 262: forEach(node.declarations, generateNames); break; case 261: case 170: case 209: case 264: generateNameIfNeeded(node.name); break; case 263: generateNameIfNeeded(node.name); if (getEmitFlags(node) & 1048576) { forEach(node.parameters, generateNames); generateNames(node.body); } break; case 207: case 208: forEach(node.elements, generateNames); break; case 273: generateNames(node.importClause); break; case 274: generateNameIfNeeded(node.name); generateNames(node.namedBindings); break; case 275: generateNameIfNeeded(node.name); break; case 281: generateNameIfNeeded(node.name); break; case 276: forEach(node.elements, generateNames); break; case 277: generateNameIfNeeded(node.propertyName || node.name); break; } } function generateMemberNames(node) { if (!node) return; switch (node.kind) { case 304: case 305: case 173: case 172: case 175: case 174: case 178: case 179: generateNameIfNeeded(node.name); break; } } function generateNameIfNeeded(name) { if (name) { if (isGeneratedIdentifier(name) || isGeneratedPrivateIdentifier(name)) { generateName(name); } else if (isBindingPattern(name)) { generateNames(name); } } } function generateName(name) { const autoGenerate = name.emitNode.autoGenerate; if ((autoGenerate.flags & 7) === 4) { return generateNameCached(getNodeForGeneratedName(name), isPrivateIdentifier(name), autoGenerate.flags, autoGenerate.prefix, autoGenerate.suffix); } else { const autoGenerateId = autoGenerate.id; return autoGeneratedIdToGeneratedName[autoGenerateId] || (autoGeneratedIdToGeneratedName[autoGenerateId] = makeName(name)); } } function generateNameCached(node, privateName, flags, prefix, suffix) { const nodeId = getNodeId(node); const cache = privateName ? nodeIdToGeneratedPrivateName : nodeIdToGeneratedName; return cache[nodeId] || (cache[nodeId] = generateNameForNode(node, privateName, flags ?? 0, formatGeneratedNamePart(prefix, generateName), formatGeneratedNamePart(suffix))); } function isUniqueName(name, privateName) { return isFileLevelUniqueNameInCurrentFile(name, privateName) && !isReservedName(name, privateName) && !generatedNames.has(name); } function isReservedName(name, privateName) { let set; let stack; if (privateName) { set = reservedPrivateNames; stack = reservedPrivateNamesStack; } else { set = reservedNames; stack = reservedNamesStack; } if (set == null ? undefined : set.has(name)) { return true; } for (let i = stack.length - 1;i >= 0; i--) { if (set === stack[i]) { continue; } set = stack[i]; if (set == null ? undefined : set.has(name)) { return true; } } return false; } function isFileLevelUniqueNameInCurrentFile(name, _isPrivate) { return currentSourceFile ? isFileLevelUniqueName(currentSourceFile, name, hasGlobalName) : true; } function isUniqueLocalName(name, container) { for (let node = container;node && isNodeDescendantOf(node, container); node = node.nextContainer) { if (canHaveLocals(node) && node.locals) { const local = node.locals.get(escapeLeadingUnderscores(name)); if (local && local.flags & (111551 | 1048576 | 2097152)) { return false; } } } return true; } function getTempFlags(formattedNameKey) { switch (formattedNameKey) { case "": return tempFlags; case "#": return privateNameTempFlags; default: return (formattedNameTempFlags == null ? undefined : formattedNameTempFlags.get(formattedNameKey)) ?? 0; } } function setTempFlags(formattedNameKey, flags) { switch (formattedNameKey) { case "": tempFlags = flags; break; case "#": privateNameTempFlags = flags; break; default: formattedNameTempFlags ?? (formattedNameTempFlags = /* @__PURE__ */ new Map); formattedNameTempFlags.set(formattedNameKey, flags); break; } } function makeTempVariableName(flags, reservedInNestedScopes, privateName, prefix, suffix) { if (prefix.length > 0 && prefix.charCodeAt(0) === 35) { prefix = prefix.slice(1); } const key = formatGeneratedName(privateName, prefix, "", suffix); let tempFlags2 = getTempFlags(key); if (flags && !(tempFlags2 & flags)) { const name = flags === 268435456 ? "_i" : "_n"; const fullName = formatGeneratedName(privateName, prefix, name, suffix); if (isUniqueName(fullName, privateName)) { tempFlags2 |= flags; if (privateName) { reservePrivateNameInNestedScopes(fullName); } else if (reservedInNestedScopes) { reserveNameInNestedScopes(fullName); } setTempFlags(key, tempFlags2); return fullName; } } while (true) { const count = tempFlags2 & 268435455; tempFlags2++; if (count !== 8 && count !== 13) { const name = count < 26 ? "_" + String.fromCharCode(97 + count) : "_" + (count - 26); const fullName = formatGeneratedName(privateName, prefix, name, suffix); if (isUniqueName(fullName, privateName)) { if (privateName) { reservePrivateNameInNestedScopes(fullName); } else if (reservedInNestedScopes) { reserveNameInNestedScopes(fullName); } setTempFlags(key, tempFlags2); return fullName; } } } } function makeUniqueName2(baseName, checkFn = isUniqueName, optimistic, scoped, privateName, prefix, suffix) { if (baseName.length > 0 && baseName.charCodeAt(0) === 35) { baseName = baseName.slice(1); } if (prefix.length > 0 && prefix.charCodeAt(0) === 35) { prefix = prefix.slice(1); } if (optimistic) { const fullName = formatGeneratedName(privateName, prefix, baseName, suffix); if (checkFn(fullName, privateName)) { if (privateName) { reservePrivateNameInNestedScopes(fullName); } else if (scoped) { reserveNameInNestedScopes(fullName); } else { generatedNames.add(fullName); } return fullName; } } if (baseName.charCodeAt(baseName.length - 1) !== 95) { baseName += "_"; } let i = 1; while (true) { const fullName = formatGeneratedName(privateName, prefix, baseName + i, suffix); if (checkFn(fullName, privateName)) { if (privateName) { reservePrivateNameInNestedScopes(fullName); } else if (scoped) { reserveNameInNestedScopes(fullName); } else { generatedNames.add(fullName); } return fullName; } i++; } } function makeFileLevelOptimisticUniqueName(name) { return makeUniqueName2(name, isFileLevelUniqueNameInCurrentFile, true, false, false, "", ""); } function generateNameForModuleOrEnum(node) { const name = getTextOfNode2(node.name); return isUniqueLocalName(name, tryCast(node, canHaveLocals)) ? name : makeUniqueName2(name, isUniqueName, false, false, false, "", ""); } function generateNameForImportOrExportDeclaration(node) { const expr = getExternalModuleName(node); const baseName = isStringLiteral(expr) ? makeIdentifierFromModuleName(expr.text) : "module"; return makeUniqueName2(baseName, isUniqueName, false, false, false, "", ""); } function generateNameForExportDefault() { return makeUniqueName2("default", isUniqueName, false, false, false, "", ""); } function generateNameForClassExpression() { return makeUniqueName2("class", isUniqueName, false, false, false, "", ""); } function generateNameForMethodOrAccessor(node, privateName, prefix, suffix) { if (isIdentifier(node.name)) { return generateNameCached(node.name, privateName); } return makeTempVariableName(0, false, privateName, prefix, suffix); } function generateNameForNode(node, privateName, flags, prefix, suffix) { switch (node.kind) { case 80: case 81: return makeUniqueName2(getTextOfNode2(node), isUniqueName, !!(flags & 16), !!(flags & 8), privateName, prefix, suffix); case 268: case 267: Debug.assert(!prefix && !suffix && !privateName); return generateNameForModuleOrEnum(node); case 273: case 279: Debug.assert(!prefix && !suffix && !privateName); return generateNameForImportOrExportDeclaration(node); case 263: case 264: { Debug.assert(!prefix && !suffix && !privateName); const name = node.name; if (name && !isGeneratedIdentifier(name)) { return generateNameForNode(name, false, flags, prefix, suffix); } return generateNameForExportDefault(); } case 278: Debug.assert(!prefix && !suffix && !privateName); return generateNameForExportDefault(); case 232: Debug.assert(!prefix && !suffix && !privateName); return generateNameForClassExpression(); case 175: case 178: case 179: return generateNameForMethodOrAccessor(node, privateName, prefix, suffix); case 168: return makeTempVariableName(0, true, privateName, prefix, suffix); default: return makeTempVariableName(0, false, privateName, prefix, suffix); } } function makeName(name) { const autoGenerate = name.emitNode.autoGenerate; const prefix = formatGeneratedNamePart(autoGenerate.prefix, generateName); const suffix = formatGeneratedNamePart(autoGenerate.suffix); switch (autoGenerate.flags & 7) { case 1: return makeTempVariableName(0, !!(autoGenerate.flags & 8), isPrivateIdentifier(name), prefix, suffix); case 2: Debug.assertNode(name, isIdentifier); return makeTempVariableName(268435456, !!(autoGenerate.flags & 8), false, prefix, suffix); case 3: return makeUniqueName2(idText(name), autoGenerate.flags & 32 ? isFileLevelUniqueNameInCurrentFile : isUniqueName, !!(autoGenerate.flags & 16), !!(autoGenerate.flags & 8), isPrivateIdentifier(name), prefix, suffix); } return Debug.fail(`Unsupported GeneratedIdentifierKind: ${Debug.formatEnum(autoGenerate.flags & 7, GeneratedIdentifierFlags, true)}.`); } function pipelineEmitWithComments(hint, node) { const pipelinePhase = getNextPipelinePhase(2, hint, node); const savedContainerPos = containerPos; const savedContainerEnd = containerEnd; const savedDeclarationListContainerEnd = declarationListContainerEnd; emitCommentsBeforeNode(node); pipelinePhase(hint, node); emitCommentsAfterNode(node, savedContainerPos, savedContainerEnd, savedDeclarationListContainerEnd); } function emitCommentsBeforeNode(node) { const emitFlags = getEmitFlags(node); const commentRange = getCommentRange(node); emitLeadingCommentsOfNode(node, emitFlags, commentRange.pos, commentRange.end); if (emitFlags & 4096) { commentsDisabled = true; } } function emitCommentsAfterNode(node, savedContainerPos, savedContainerEnd, savedDeclarationListContainerEnd) { const emitFlags = getEmitFlags(node); const commentRange = getCommentRange(node); if (emitFlags & 4096) { commentsDisabled = false; } emitTrailingCommentsOfNode(node, emitFlags, commentRange.pos, commentRange.end, savedContainerPos, savedContainerEnd, savedDeclarationListContainerEnd); const typeNode = getTypeNode(node); if (typeNode) { emitTrailingCommentsOfNode(node, emitFlags, typeNode.pos, typeNode.end, savedContainerPos, savedContainerEnd, savedDeclarationListContainerEnd); } } function emitLeadingCommentsOfNode(node, emitFlags, pos, end) { enterComment(); hasWrittenComment = false; const skipLeadingComments = pos < 0 || (emitFlags & 1024) !== 0 || node.kind === 12; const skipTrailingComments = end < 0 || (emitFlags & 2048) !== 0 || node.kind === 12; if ((pos > 0 || end > 0) && pos !== end) { if (!skipLeadingComments) { emitLeadingComments(pos, node.kind !== 354); } if (!skipLeadingComments || pos >= 0 && (emitFlags & 1024) !== 0) { containerPos = pos; } if (!skipTrailingComments || end >= 0 && (emitFlags & 2048) !== 0) { containerEnd = end; if (node.kind === 262) { declarationListContainerEnd = end; } } } forEach(getSyntheticLeadingComments(node), emitLeadingSynthesizedComment); exitComment(); } function emitTrailingCommentsOfNode(node, emitFlags, pos, end, savedContainerPos, savedContainerEnd, savedDeclarationListContainerEnd) { enterComment(); const skipTrailingComments = end < 0 || (emitFlags & 2048) !== 0 || node.kind === 12; forEach(getSyntheticTrailingComments(node), emitTrailingSynthesizedComment); if ((pos > 0 || end > 0) && pos !== end) { containerPos = savedContainerPos; containerEnd = savedContainerEnd; declarationListContainerEnd = savedDeclarationListContainerEnd; if (!skipTrailingComments && node.kind !== 354) { emitTrailingComments(end); } } exitComment(); } function emitLeadingSynthesizedComment(comment) { if (comment.hasLeadingNewline || comment.kind === 2) { writer.writeLine(); } writeSynthesizedComment(comment); if (comment.hasTrailingNewLine || comment.kind === 2) { writer.writeLine(); } else { writer.writeSpace(" "); } } function emitTrailingSynthesizedComment(comment) { if (!writer.isAtStartOfLine()) { writer.writeSpace(" "); } writeSynthesizedComment(comment); if (comment.hasTrailingNewLine) { writer.writeLine(); } } function writeSynthesizedComment(comment) { const text = formatSynthesizedComment(comment); const lineMap = comment.kind === 3 ? computeLineStarts(text) : undefined; writeCommentRange(text, lineMap, writer, 0, text.length, newLine); } function formatSynthesizedComment(comment) { return comment.kind === 3 ? `/*${comment.text}*/` : `//${comment.text}`; } function emitBodyWithDetachedComments(node, detachedRange, emitCallback) { enterComment(); const { pos, end } = detachedRange; const emitFlags = getEmitFlags(node); const skipLeadingComments = pos < 0 || (emitFlags & 1024) !== 0; const skipTrailingComments = commentsDisabled || end < 0 || (emitFlags & 2048) !== 0; if (!skipLeadingComments) { emitDetachedCommentsAndUpdateCommentsInfo(detachedRange); } exitComment(); if (emitFlags & 4096 && !commentsDisabled) { commentsDisabled = true; emitCallback(node); commentsDisabled = false; } else { emitCallback(node); } enterComment(); if (!skipTrailingComments) { emitLeadingComments(detachedRange.end, true); if (hasWrittenComment && !writer.isAtStartOfLine()) { writer.writeLine(); } } exitComment(); } function originalNodesHaveSameParent(nodeA, nodeB) { nodeA = getOriginalNode(nodeA); return nodeA.parent && nodeA.parent === getOriginalNode(nodeB).parent; } function siblingNodePositionsAreComparable(previousNode, nextNode) { if (nextNode.pos < previousNode.end) { return false; } previousNode = getOriginalNode(previousNode); nextNode = getOriginalNode(nextNode); const parent2 = previousNode.parent; if (!parent2 || parent2 !== nextNode.parent) { return false; } const parentNodeArray = getContainingNodeArray(previousNode); const prevNodeIndex = parentNodeArray == null ? undefined : parentNodeArray.indexOf(previousNode); return prevNodeIndex !== undefined && prevNodeIndex > -1 && parentNodeArray.indexOf(nextNode) === prevNodeIndex + 1; } function emitLeadingComments(pos, isEmittedNode) { hasWrittenComment = false; if (isEmittedNode) { if (pos === 0 && (currentSourceFile == null ? undefined : currentSourceFile.isDeclarationFile)) { forEachLeadingCommentToEmit(pos, emitNonTripleSlashLeadingComment); } else { forEachLeadingCommentToEmit(pos, emitLeadingComment); } } else if (pos === 0) { forEachLeadingCommentToEmit(pos, emitTripleSlashLeadingComment); } } function emitTripleSlashLeadingComment(commentPos, commentEnd, kind, hasTrailingNewLine, rangePos) { if (isTripleSlashComment(commentPos, commentEnd)) { emitLeadingComment(commentPos, commentEnd, kind, hasTrailingNewLine, rangePos); } } function emitNonTripleSlashLeadingComment(commentPos, commentEnd, kind, hasTrailingNewLine, rangePos) { if (!isTripleSlashComment(commentPos, commentEnd)) { emitLeadingComment(commentPos, commentEnd, kind, hasTrailingNewLine, rangePos); } } function shouldWriteComment(text, pos) { if (printerOptions.onlyPrintJsDocStyle) { return isJSDocLikeText(text, pos) || isPinnedComment(text, pos); } return true; } function emitLeadingComment(commentPos, commentEnd, kind, hasTrailingNewLine, rangePos) { if (!currentSourceFile || !shouldWriteComment(currentSourceFile.text, commentPos)) return; if (!hasWrittenComment) { emitNewLineBeforeLeadingCommentOfPosition(getCurrentLineMap(), writer, rangePos, commentPos); hasWrittenComment = true; } emitPos(commentPos); writeCommentRange(currentSourceFile.text, getCurrentLineMap(), writer, commentPos, commentEnd, newLine); emitPos(commentEnd); if (hasTrailingNewLine) { writer.writeLine(); } else if (kind === 3) { writer.writeSpace(" "); } } function emitLeadingCommentsOfPosition(pos) { if (commentsDisabled || pos === -1) { return; } emitLeadingComments(pos, true); } function emitTrailingComments(pos) { forEachTrailingCommentToEmit(pos, emitTrailingComment); } function emitTrailingComment(commentPos, commentEnd, _kind, hasTrailingNewLine) { if (!currentSourceFile || !shouldWriteComment(currentSourceFile.text, commentPos)) return; if (!writer.isAtStartOfLine()) { writer.writeSpace(" "); } emitPos(commentPos); writeCommentRange(currentSourceFile.text, getCurrentLineMap(), writer, commentPos, commentEnd, newLine); emitPos(commentEnd); if (hasTrailingNewLine) { writer.writeLine(); } } function emitTrailingCommentsOfPosition(pos, prefixSpace, forceNoNewline) { if (commentsDisabled) { return; } enterComment(); forEachTrailingCommentToEmit(pos, prefixSpace ? emitTrailingComment : forceNoNewline ? emitTrailingCommentOfPositionNoNewline : emitTrailingCommentOfPosition); exitComment(); } function emitTrailingCommentOfPositionNoNewline(commentPos, commentEnd, kind) { if (!currentSourceFile) return; emitPos(commentPos); writeCommentRange(currentSourceFile.text, getCurrentLineMap(), writer, commentPos, commentEnd, newLine); emitPos(commentEnd); if (kind === 2) { writer.writeLine(); } } function emitTrailingCommentOfPosition(commentPos, commentEnd, _kind, hasTrailingNewLine) { if (!currentSourceFile) return; emitPos(commentPos); writeCommentRange(currentSourceFile.text, getCurrentLineMap(), writer, commentPos, commentEnd, newLine); emitPos(commentEnd); if (hasTrailingNewLine) { writer.writeLine(); } else { writer.writeSpace(" "); } } function forEachLeadingCommentToEmit(pos, cb) { if (currentSourceFile && (containerPos === -1 || pos !== containerPos)) { if (hasDetachedComments(pos)) { forEachLeadingCommentWithoutDetachedComments(cb); } else { forEachLeadingCommentRange(currentSourceFile.text, pos, cb, pos); } } } function forEachTrailingCommentToEmit(end, cb) { if (currentSourceFile && (containerEnd === -1 || end !== containerEnd && end !== declarationListContainerEnd)) { forEachTrailingCommentRange(currentSourceFile.text, end, cb); } } function hasDetachedComments(pos) { return detachedCommentsInfo !== undefined && last(detachedCommentsInfo).nodePos === pos; } function forEachLeadingCommentWithoutDetachedComments(cb) { if (!currentSourceFile) return; const pos = last(detachedCommentsInfo).detachedCommentEndPos; if (detachedCommentsInfo.length - 1) { detachedCommentsInfo.pop(); } else { detachedCommentsInfo = undefined; } forEachLeadingCommentRange(currentSourceFile.text, pos, cb, pos); } function emitDetachedCommentsAndUpdateCommentsInfo(range) { const currentDetachedCommentInfo = currentSourceFile && emitDetachedComments(currentSourceFile.text, getCurrentLineMap(), writer, emitComment, range, newLine, commentsDisabled); if (currentDetachedCommentInfo) { if (detachedCommentsInfo) { detachedCommentsInfo.push(currentDetachedCommentInfo); } else { detachedCommentsInfo = [currentDetachedCommentInfo]; } } } function emitComment(text, lineMap, writer2, commentPos, commentEnd, newLine2) { if (!currentSourceFile || !shouldWriteComment(currentSourceFile.text, commentPos)) return; emitPos(commentPos); writeCommentRange(text, lineMap, writer2, commentPos, commentEnd, newLine2); emitPos(commentEnd); } function isTripleSlashComment(commentPos, commentEnd) { return !!currentSourceFile && isRecognizedTripleSlashComment(currentSourceFile.text, commentPos, commentEnd); } function pipelineEmitWithSourceMaps(hint, node) { const pipelinePhase = getNextPipelinePhase(3, hint, node); emitSourceMapsBeforeNode(node); pipelinePhase(hint, node); emitSourceMapsAfterNode(node); } function emitSourceMapsBeforeNode(node) { const emitFlags = getEmitFlags(node); const sourceMapRange = getSourceMapRange(node); const source = sourceMapRange.source || sourceMapSource; if (node.kind !== 354 && (emitFlags & 32) === 0 && sourceMapRange.pos >= 0) { emitSourcePos(sourceMapRange.source || sourceMapSource, skipSourceTrivia(source, sourceMapRange.pos)); } if (emitFlags & 128) { sourceMapsDisabled = true; } } function emitSourceMapsAfterNode(node) { const emitFlags = getEmitFlags(node); const sourceMapRange = getSourceMapRange(node); if (emitFlags & 128) { sourceMapsDisabled = false; } if (node.kind !== 354 && (emitFlags & 64) === 0 && sourceMapRange.end >= 0) { emitSourcePos(sourceMapRange.source || sourceMapSource, sourceMapRange.end); } } function skipSourceTrivia(source, pos) { return source.skipTrivia ? source.skipTrivia(pos) : skipTrivia2(source.text, pos); } function emitPos(pos) { if (sourceMapsDisabled || positionIsSynthesized(pos) || isJsonSourceMapSource(sourceMapSource)) { return; } const { line: sourceLine, character: sourceCharacter } = getLineAndCharacterOfPosition(sourceMapSource, pos); sourceMapGenerator.addMapping(writer.getLine(), writer.getColumn(), sourceMapSourceIndex, sourceLine, sourceCharacter, undefined); } function emitSourcePos(source, pos) { if (source !== sourceMapSource) { const savedSourceMapSource = sourceMapSource; const savedSourceMapSourceIndex = sourceMapSourceIndex; setSourceMapSource(source); emitPos(pos); resetSourceMapSource(savedSourceMapSource, savedSourceMapSourceIndex); } else { emitPos(pos); } } function emitTokenWithSourceMap(node, token, writer2, tokenPos, emitCallback) { if (sourceMapsDisabled || node && isInJsonFile(node)) { return emitCallback(token, writer2, tokenPos); } const emitNode = node && node.emitNode; const emitFlags = emitNode && emitNode.flags || 0; const range = emitNode && emitNode.tokenSourceMapRanges && emitNode.tokenSourceMapRanges[token]; const source = range && range.source || sourceMapSource; tokenPos = skipSourceTrivia(source, range ? range.pos : tokenPos); if ((emitFlags & 256) === 0 && tokenPos >= 0) { emitSourcePos(source, tokenPos); } tokenPos = emitCallback(token, writer2, tokenPos); if (range) tokenPos = range.end; if ((emitFlags & 512) === 0 && tokenPos >= 0) { emitSourcePos(source, tokenPos); } return tokenPos; } function setSourceMapSource(source) { if (sourceMapsDisabled) { return; } sourceMapSource = source; if (source === mostRecentlyAddedSourceMapSource) { sourceMapSourceIndex = mostRecentlyAddedSourceMapSourceIndex; return; } if (isJsonSourceMapSource(source)) { return; } sourceMapSourceIndex = sourceMapGenerator.addSource(source.fileName); if (printerOptions.inlineSources) { sourceMapGenerator.setSourceContent(sourceMapSourceIndex, source.text); } mostRecentlyAddedSourceMapSource = source; mostRecentlyAddedSourceMapSourceIndex = sourceMapSourceIndex; } function resetSourceMapSource(source, sourceIndex) { sourceMapSource = source; sourceMapSourceIndex = sourceIndex; } function isJsonSourceMapSource(sourceFile) { return fileExtensionIs(sourceFile.fileName, ".json"); } } function createBracketsMap() { const brackets2 = []; brackets2[1024] = ["{", "}"]; brackets2[2048] = ["(", ")"]; brackets2[4096] = ["<", ">"]; brackets2[8192] = ["[", "]"]; return brackets2; } function getOpeningBracket(format) { return brackets[format & 15360][0]; } function getClosingBracket(format) { return brackets[format & 15360][1]; } function emitListItemNoParenthesizer(node, emit, _parenthesizerRule, _index) { emit(node); } function emitListItemWithParenthesizerRuleSelector(node, emit, parenthesizerRuleSelector, index) { emit(node, parenthesizerRuleSelector.select(index)); } function emitListItemWithParenthesizerRule(node, emit, parenthesizerRule, _index) { emit(node, parenthesizerRule); } function getEmitListItem(emit, parenthesizerRule) { return emit.length === 1 ? emitListItemNoParenthesizer : typeof parenthesizerRule === "object" ? emitListItemWithParenthesizerRuleSelector : emitListItemWithParenthesizerRule; } function createCachedDirectoryStructureHost(host, currentDirectory, useCaseSensitiveFileNames2) { if (!host.getDirectories || !host.readDirectory) { return; } const cachedReadDirectoryResult = /* @__PURE__ */ new Map; const getCanonicalFileName = createGetCanonicalFileName(useCaseSensitiveFileNames2); return { useCaseSensitiveFileNames: useCaseSensitiveFileNames2, fileExists, readFile: (path, encoding) => host.readFile(path, encoding), directoryExists: host.directoryExists && directoryExists, getDirectories, readDirectory, createDirectory: host.createDirectory && createDirectory, writeFile: host.writeFile && writeFile2, addOrDeleteFileOrDirectory, addOrDeleteFile, clearCache, realpath: host.realpath && realpath }; function toPath3(fileName) { return toPath(fileName, currentDirectory, getCanonicalFileName); } function getCachedFileSystemEntries(rootDirPath) { return cachedReadDirectoryResult.get(ensureTrailingDirectorySeparator(rootDirPath)); } function getCachedFileSystemEntriesForBaseDir(path) { const entries = getCachedFileSystemEntries(getDirectoryPath(path)); if (!entries) { return entries; } if (!entries.sortedAndCanonicalizedFiles) { entries.sortedAndCanonicalizedFiles = entries.files.map(getCanonicalFileName).sort(); entries.sortedAndCanonicalizedDirectories = entries.directories.map(getCanonicalFileName).sort(); } return entries; } function getBaseNameOfFileName(fileName) { return getBaseFileName(normalizePath(fileName)); } function createCachedFileSystemEntries(rootDir, rootDirPath) { var _a; if (!host.realpath || ensureTrailingDirectorySeparator(toPath3(host.realpath(rootDir))) === rootDirPath) { const resultFromHost = { files: map(host.readDirectory(rootDir, undefined, undefined, ["*.*"]), getBaseNameOfFileName) || [], directories: host.getDirectories(rootDir) || [] }; cachedReadDirectoryResult.set(ensureTrailingDirectorySeparator(rootDirPath), resultFromHost); return resultFromHost; } if ((_a = host.directoryExists) == null ? undefined : _a.call(host, rootDir)) { cachedReadDirectoryResult.set(rootDirPath, false); return false; } return; } function tryReadDirectory2(rootDir, rootDirPath) { rootDirPath = ensureTrailingDirectorySeparator(rootDirPath); const cachedResult = getCachedFileSystemEntries(rootDirPath); if (cachedResult) { return cachedResult; } try { return createCachedFileSystemEntries(rootDir, rootDirPath); } catch { Debug.assert(!cachedReadDirectoryResult.has(ensureTrailingDirectorySeparator(rootDirPath))); return; } } function hasEntry(entries, name) { const index = binarySearch(entries, name, identity, compareStringsCaseSensitive); return index >= 0; } function writeFile2(fileName, data, writeByteOrderMark) { const path = toPath3(fileName); const result = getCachedFileSystemEntriesForBaseDir(path); if (result) { updateFilesOfFileSystemEntry(result, getBaseNameOfFileName(fileName), true); } return host.writeFile(fileName, data, writeByteOrderMark); } function fileExists(fileName) { const path = toPath3(fileName); const result = getCachedFileSystemEntriesForBaseDir(path); return result && hasEntry(result.sortedAndCanonicalizedFiles, getCanonicalFileName(getBaseNameOfFileName(fileName))) || host.fileExists(fileName); } function directoryExists(dirPath) { const path = toPath3(dirPath); return cachedReadDirectoryResult.has(ensureTrailingDirectorySeparator(path)) || host.directoryExists(dirPath); } function createDirectory(dirPath) { const path = toPath3(dirPath); const result = getCachedFileSystemEntriesForBaseDir(path); if (result) { const baseName = getBaseNameOfFileName(dirPath); const canonicalizedBaseName = getCanonicalFileName(baseName); const canonicalizedDirectories = result.sortedAndCanonicalizedDirectories; if (insertSorted(canonicalizedDirectories, canonicalizedBaseName, compareStringsCaseSensitive)) { result.directories.push(baseName); } } host.createDirectory(dirPath); } function getDirectories(rootDir) { const rootDirPath = toPath3(rootDir); const result = tryReadDirectory2(rootDir, rootDirPath); if (result) { return result.directories.slice(); } return host.getDirectories(rootDir); } function readDirectory(rootDir, extensions, excludes, includes, depth) { const rootDirPath = toPath3(rootDir); const rootResult = tryReadDirectory2(rootDir, rootDirPath); let rootSymLinkResult; if (rootResult !== undefined) { return matchFiles(rootDir, extensions, excludes, includes, useCaseSensitiveFileNames2, currentDirectory, depth, getFileSystemEntries, realpath); } return host.readDirectory(rootDir, extensions, excludes, includes, depth); function getFileSystemEntries(dir) { const path = toPath3(dir); if (path === rootDirPath) { return rootResult || getFileSystemEntriesFromHost(dir, path); } const result = tryReadDirectory2(dir, path); return result !== undefined ? result || getFileSystemEntriesFromHost(dir, path) : emptyFileSystemEntries; } function getFileSystemEntriesFromHost(dir, path) { if (rootSymLinkResult && path === rootDirPath) return rootSymLinkResult; const result = { files: map(host.readDirectory(dir, undefined, undefined, ["*.*"]), getBaseNameOfFileName) || emptyArray, directories: host.getDirectories(dir) || emptyArray }; if (path === rootDirPath) rootSymLinkResult = result; return result; } } function realpath(s) { return host.realpath ? host.realpath(s) : s; } function clearFirstAncestorEntry(fileOrDirectoryPath) { forEachAncestorDirectory(getDirectoryPath(fileOrDirectoryPath), (ancestor) => cachedReadDirectoryResult.delete(ensureTrailingDirectorySeparator(ancestor)) ? true : undefined); } function addOrDeleteFileOrDirectory(fileOrDirectory, fileOrDirectoryPath) { const existingResult = getCachedFileSystemEntries(fileOrDirectoryPath); if (existingResult !== undefined) { clearCache(); return; } const parentResult = getCachedFileSystemEntriesForBaseDir(fileOrDirectoryPath); if (!parentResult) { clearFirstAncestorEntry(fileOrDirectoryPath); return; } if (!host.directoryExists) { clearCache(); return; } const baseName = getBaseNameOfFileName(fileOrDirectory); const fsQueryResult = { fileExists: host.fileExists(fileOrDirectory), directoryExists: host.directoryExists(fileOrDirectory) }; if (fsQueryResult.directoryExists || hasEntry(parentResult.sortedAndCanonicalizedDirectories, getCanonicalFileName(baseName))) { clearCache(); } else { updateFilesOfFileSystemEntry(parentResult, baseName, fsQueryResult.fileExists); } return fsQueryResult; } function addOrDeleteFile(fileName, filePath, eventKind) { if (eventKind === 1) { return; } const parentResult = getCachedFileSystemEntriesForBaseDir(filePath); if (parentResult) { updateFilesOfFileSystemEntry(parentResult, getBaseNameOfFileName(fileName), eventKind === 0); } else { clearFirstAncestorEntry(filePath); } } function updateFilesOfFileSystemEntry(parentResult, baseName, fileExists2) { const canonicalizedFiles = parentResult.sortedAndCanonicalizedFiles; const canonicalizedBaseName = getCanonicalFileName(baseName); if (fileExists2) { if (insertSorted(canonicalizedFiles, canonicalizedBaseName, compareStringsCaseSensitive)) { parentResult.files.push(baseName); } } else { const sortedIndex = binarySearch(canonicalizedFiles, canonicalizedBaseName, identity, compareStringsCaseSensitive); if (sortedIndex >= 0) { canonicalizedFiles.splice(sortedIndex, 1); const unsortedIndex = parentResult.files.findIndex((entry) => getCanonicalFileName(entry) === canonicalizedBaseName); parentResult.files.splice(unsortedIndex, 1); } } } function clearCache() { cachedReadDirectoryResult.clear(); } } var ProgramUpdateLevel = /* @__PURE__ */ ((ProgramUpdateLevel2) => { ProgramUpdateLevel2[ProgramUpdateLevel2["Update"] = 0] = "Update"; ProgramUpdateLevel2[ProgramUpdateLevel2["RootNamesAndUpdate"] = 1] = "RootNamesAndUpdate"; ProgramUpdateLevel2[ProgramUpdateLevel2["Full"] = 2] = "Full"; return ProgramUpdateLevel2; })(ProgramUpdateLevel || {}); function updateSharedExtendedConfigFileWatcher(projectPath, options, extendedConfigFilesMap, createExtendedConfigFileWatch, toPath3) { var _a; const extendedConfigs = arrayToMap(((_a = options == null ? undefined : options.configFile) == null ? undefined : _a.extendedSourceFiles) || emptyArray, toPath3); extendedConfigFilesMap.forEach((watcher, extendedConfigFilePath) => { if (!extendedConfigs.has(extendedConfigFilePath)) { watcher.projects.delete(projectPath); watcher.close(); } }); extendedConfigs.forEach((extendedConfigFileName, extendedConfigFilePath) => { const existing = extendedConfigFilesMap.get(extendedConfigFilePath); if (existing) { existing.projects.add(projectPath); } else { extendedConfigFilesMap.set(extendedConfigFilePath, { projects: /* @__PURE__ */ new Set([projectPath]), watcher: createExtendedConfigFileWatch(extendedConfigFileName, extendedConfigFilePath), close: () => { const existing2 = extendedConfigFilesMap.get(extendedConfigFilePath); if (!existing2 || existing2.projects.size !== 0) return; existing2.watcher.close(); extendedConfigFilesMap.delete(extendedConfigFilePath); } }); } }); } function clearSharedExtendedConfigFileWatcher(projectPath, extendedConfigFilesMap) { extendedConfigFilesMap.forEach((watcher) => { if (watcher.projects.delete(projectPath)) watcher.close(); }); } function cleanExtendedConfigCache(extendedConfigCache, extendedConfigFilePath, toPath3) { if (!extendedConfigCache.delete(extendedConfigFilePath)) return; extendedConfigCache.forEach(({ extendedResult }, key) => { var _a; if ((_a = extendedResult.extendedSourceFiles) == null ? undefined : _a.some((extendedFile) => toPath3(extendedFile) === extendedConfigFilePath)) { cleanExtendedConfigCache(extendedConfigCache, key, toPath3); } }); } function updateMissingFilePathsWatch(program, missingFileWatches, createMissingFileWatch) { mutateMap(missingFileWatches, program.getMissingFilePaths(), { createNewValue: createMissingFileWatch, onDeleteValue: closeFileWatcher }); } function updateWatchingWildcardDirectories(existingWatchedForWildcards, wildcardDirectories, watchDirectory) { if (wildcardDirectories) { mutateMap(existingWatchedForWildcards, new Map(Object.entries(wildcardDirectories)), { createNewValue: createWildcardDirectoryWatcher, onDeleteValue: closeFileWatcherOf, onExistingValue: updateWildcardDirectoryWatcher }); } else { clearMap(existingWatchedForWildcards, closeFileWatcherOf); } function createWildcardDirectoryWatcher(directory, flags) { return { watcher: watchDirectory(directory, flags), flags }; } function updateWildcardDirectoryWatcher(existingWatcher, flags, directory) { if (existingWatcher.flags === flags) { return; } existingWatcher.watcher.close(); existingWatchedForWildcards.set(directory, createWildcardDirectoryWatcher(directory, flags)); } } function isIgnoredFileFromWildCardWatching({ watchedDirPath, fileOrDirectory, fileOrDirectoryPath, configFileName, options, program, extraFileExtensions, currentDirectory, useCaseSensitiveFileNames: useCaseSensitiveFileNames2, writeLog, toPath: toPath3, getScriptKind: getScriptKind2 }) { const newPath = removeIgnoredPath(fileOrDirectoryPath); if (!newPath) { writeLog(`Project: ${configFileName} Detected ignored path: ${fileOrDirectory}`); return true; } fileOrDirectoryPath = newPath; if (fileOrDirectoryPath === watchedDirPath) return false; if (hasExtension(fileOrDirectoryPath) && !(isSupportedSourceFileName(fileOrDirectory, options, extraFileExtensions) || isSupportedScriptKind())) { writeLog(`Project: ${configFileName} Detected file add/remove of non supported extension: ${fileOrDirectory}`); return true; } if (isExcludedFile(fileOrDirectory, options.configFile.configFileSpecs, getNormalizedAbsolutePath(getDirectoryPath(configFileName), currentDirectory), useCaseSensitiveFileNames2, currentDirectory)) { writeLog(`Project: ${configFileName} Detected excluded file: ${fileOrDirectory}`); return true; } if (!program) return false; if (options.outFile || options.outDir) return false; if (isDeclarationFileName(fileOrDirectoryPath)) { if (options.declarationDir) return false; } else if (!fileExtensionIsOneOf(fileOrDirectoryPath, supportedJSExtensionsFlat)) { return false; } const filePathWithoutExtension = removeFileExtension(fileOrDirectoryPath); const realProgram = isArray(program) ? undefined : isBuilderProgram(program) ? program.getProgramOrUndefined() : program; const builderProgram = !realProgram && !isArray(program) ? program : undefined; if (hasSourceFile(filePathWithoutExtension + ".ts") || hasSourceFile(filePathWithoutExtension + ".tsx")) { writeLog(`Project: ${configFileName} Detected output file: ${fileOrDirectory}`); return true; } return false; function hasSourceFile(file) { return realProgram ? !!realProgram.getSourceFileByPath(file) : builderProgram ? builderProgram.state.fileInfos.has(file) : !!find(program, (rootFile) => toPath3(rootFile) === file); } function isSupportedScriptKind() { if (!getScriptKind2) return false; const scriptKind = getScriptKind2(fileOrDirectory); switch (scriptKind) { case 3: case 4: case 7: case 5: return true; case 1: case 2: return getAllowJSCompilerOption(options); case 6: return getResolveJsonModule(options); case 0: return false; } } } function isEmittedFileOfProgram(program, file) { if (!program) { return false; } return program.isEmittedFile(file); } var WatchLogLevel = /* @__PURE__ */ ((WatchLogLevel2) => { WatchLogLevel2[WatchLogLevel2["None"] = 0] = "None"; WatchLogLevel2[WatchLogLevel2["TriggerOnly"] = 1] = "TriggerOnly"; WatchLogLevel2[WatchLogLevel2["Verbose"] = 2] = "Verbose"; return WatchLogLevel2; })(WatchLogLevel || {}); function getWatchFactory(host, watchLogLevel, log, getDetailWatchInfo2) { setSysLog(watchLogLevel === 2 ? log : noop); const plainInvokeFactory = { watchFile: (file, callback, pollingInterval, options) => host.watchFile(file, callback, pollingInterval, options), watchDirectory: (directory, callback, flags, options) => host.watchDirectory(directory, callback, (flags & 1) !== 0, options) }; const triggerInvokingFactory = watchLogLevel !== 0 ? { watchFile: createTriggerLoggingAddWatch("watchFile"), watchDirectory: createTriggerLoggingAddWatch("watchDirectory") } : undefined; const factory2 = watchLogLevel === 2 ? { watchFile: createFileWatcherWithLogging, watchDirectory: createDirectoryWatcherWithLogging } : triggerInvokingFactory || plainInvokeFactory; const excludeWatcherFactory = watchLogLevel === 2 ? createExcludeWatcherWithLogging : returnNoopFileWatcher; return { watchFile: createExcludeHandlingAddWatch("watchFile"), watchDirectory: createExcludeHandlingAddWatch("watchDirectory") }; function createExcludeHandlingAddWatch(key) { return (file, cb, flags, options, detailInfo1, detailInfo2) => { var _a; return !matchesExclude(file, key === "watchFile" ? options == null ? undefined : options.excludeFiles : options == null ? undefined : options.excludeDirectories, useCaseSensitiveFileNames2(), ((_a = host.getCurrentDirectory) == null ? undefined : _a.call(host)) || "") ? factory2[key].call(undefined, file, cb, flags, options, detailInfo1, detailInfo2) : excludeWatcherFactory(file, flags, options, detailInfo1, detailInfo2); }; } function useCaseSensitiveFileNames2() { return typeof host.useCaseSensitiveFileNames === "boolean" ? host.useCaseSensitiveFileNames : host.useCaseSensitiveFileNames(); } function createExcludeWatcherWithLogging(file, flags, options, detailInfo1, detailInfo2) { log(`ExcludeWatcher:: Added:: ${getWatchInfo(file, flags, options, detailInfo1, detailInfo2, getDetailWatchInfo2)}`); return { close: () => log(`ExcludeWatcher:: Close:: ${getWatchInfo(file, flags, options, detailInfo1, detailInfo2, getDetailWatchInfo2)}`) }; } function createFileWatcherWithLogging(file, cb, flags, options, detailInfo1, detailInfo2) { log(`FileWatcher:: Added:: ${getWatchInfo(file, flags, options, detailInfo1, detailInfo2, getDetailWatchInfo2)}`); const watcher = triggerInvokingFactory.watchFile(file, cb, flags, options, detailInfo1, detailInfo2); return { close: () => { log(`FileWatcher:: Close:: ${getWatchInfo(file, flags, options, detailInfo1, detailInfo2, getDetailWatchInfo2)}`); watcher.close(); } }; } function createDirectoryWatcherWithLogging(file, cb, flags, options, detailInfo1, detailInfo2) { const watchInfo = `DirectoryWatcher:: Added:: ${getWatchInfo(file, flags, options, detailInfo1, detailInfo2, getDetailWatchInfo2)}`; log(watchInfo); const start = timestamp(); const watcher = triggerInvokingFactory.watchDirectory(file, cb, flags, options, detailInfo1, detailInfo2); const elapsed = timestamp() - start; log(`Elapsed:: ${elapsed}ms ${watchInfo}`); return { close: () => { const watchInfo2 = `DirectoryWatcher:: Close:: ${getWatchInfo(file, flags, options, detailInfo1, detailInfo2, getDetailWatchInfo2)}`; log(watchInfo2); const start2 = timestamp(); watcher.close(); const elapsed2 = timestamp() - start2; log(`Elapsed:: ${elapsed2}ms ${watchInfo2}`); } }; } function createTriggerLoggingAddWatch(key) { return (file, cb, flags, options, detailInfo1, detailInfo2) => plainInvokeFactory[key].call(undefined, file, (...args) => { const triggerredInfo = `${key === "watchFile" ? "FileWatcher" : "DirectoryWatcher"}:: Triggered with ${args[0]} ${args[1] !== undefined ? args[1] : ""}:: ${getWatchInfo(file, flags, options, detailInfo1, detailInfo2, getDetailWatchInfo2)}`; log(triggerredInfo); const start = timestamp(); cb.call(undefined, ...args); const elapsed = timestamp() - start; log(`Elapsed:: ${elapsed}ms ${triggerredInfo}`); }, flags, options, detailInfo1, detailInfo2); } function getWatchInfo(file, flags, options, detailInfo1, detailInfo2, getDetailWatchInfo3) { return `WatchInfo: ${file} ${flags} ${JSON.stringify(options)} ${getDetailWatchInfo3 ? getDetailWatchInfo3(detailInfo1, detailInfo2) : detailInfo2 === undefined ? detailInfo1 : `${detailInfo1} ${detailInfo2}`}`; } } function getFallbackOptions(options) { const fallbackPolling = options == null ? undefined : options.fallbackPolling; return { watchFile: fallbackPolling !== undefined ? fallbackPolling : 1 }; } function closeFileWatcherOf(objWithWatcher) { objWithWatcher.watcher.close(); } function findConfigFile(searchPath, fileExists, configName = "tsconfig.json") { return forEachAncestorDirectory(searchPath, (ancestor) => { const fileName = combinePaths(ancestor, configName); return fileExists(fileName) ? fileName : undefined; }); } function resolveTripleslashReference(moduleName, containingFile) { const basePath = getDirectoryPath(containingFile); const referencedFileName = isRootedDiskPath(moduleName) ? moduleName : combinePaths(basePath, moduleName); return normalizePath(referencedFileName); } function computeCommonSourceDirectoryOfFilenames(fileNames, currentDirectory, getCanonicalFileName) { let commonPathComponents; const failed2 = forEach(fileNames, (sourceFile) => { const sourcePathComponents = getNormalizedPathComponents(sourceFile, currentDirectory); sourcePathComponents.pop(); if (!commonPathComponents) { commonPathComponents = sourcePathComponents; return; } const n = Math.min(commonPathComponents.length, sourcePathComponents.length); for (let i = 0;i < n; i++) { if (getCanonicalFileName(commonPathComponents[i]) !== getCanonicalFileName(sourcePathComponents[i])) { if (i === 0) { return true; } commonPathComponents.length = i; break; } } if (sourcePathComponents.length < commonPathComponents.length) { commonPathComponents.length = sourcePathComponents.length; } }); if (failed2) { return ""; } if (!commonPathComponents) { return currentDirectory; } return getPathFromPathComponents(commonPathComponents); } function createCompilerHost(options, setParentNodes) { return createCompilerHostWorker(options, setParentNodes); } function createGetSourceFile(readFile, setParentNodes) { return (fileName, languageVersionOrOptions, onError) => { let text; try { mark("beforeIORead"); text = readFile(fileName); mark("afterIORead"); measure("I/O Read", "beforeIORead", "afterIORead"); } catch (e) { if (onError) { onError(e.message); } text = ""; } return text !== undefined ? createSourceFile(fileName, text, languageVersionOrOptions, setParentNodes) : undefined; }; } function createWriteFileMeasuringIO(actualWriteFile, createDirectory, directoryExists) { return (fileName, data, writeByteOrderMark, onError) => { try { mark("beforeIOWrite"); writeFileEnsuringDirectories(fileName, data, writeByteOrderMark, actualWriteFile, createDirectory, directoryExists); mark("afterIOWrite"); measure("I/O Write", "beforeIOWrite", "afterIOWrite"); } catch (e) { if (onError) { onError(e.message); } } }; } function createCompilerHostWorker(options, setParentNodes, system = sys) { const existingDirectories = /* @__PURE__ */ new Map; const getCanonicalFileName = createGetCanonicalFileName(system.useCaseSensitiveFileNames); function directoryExists(directoryPath) { if (existingDirectories.has(directoryPath)) { return true; } if ((compilerHost.directoryExists || system.directoryExists)(directoryPath)) { existingDirectories.set(directoryPath, true); return true; } return false; } function getDefaultLibLocation() { return getDirectoryPath(normalizePath(system.getExecutingFilePath())); } const newLine = getNewLineCharacter(options); const realpath = system.realpath && ((path) => system.realpath(path)); const compilerHost = { getSourceFile: createGetSourceFile((fileName) => compilerHost.readFile(fileName), setParentNodes), getDefaultLibLocation, getDefaultLibFileName: (options2) => combinePaths(getDefaultLibLocation(), getDefaultLibFileName(options2)), writeFile: createWriteFileMeasuringIO((path, data, writeByteOrderMark) => system.writeFile(path, data, writeByteOrderMark), (path) => (compilerHost.createDirectory || system.createDirectory)(path), (path) => directoryExists(path)), getCurrentDirectory: memoize(() => system.getCurrentDirectory()), useCaseSensitiveFileNames: () => system.useCaseSensitiveFileNames, getCanonicalFileName, getNewLine: () => newLine, fileExists: (fileName) => system.fileExists(fileName), readFile: (fileName) => system.readFile(fileName), trace: (s) => system.write(s + newLine), directoryExists: (directoryName) => system.directoryExists(directoryName), getEnvironmentVariable: (name) => system.getEnvironmentVariable ? system.getEnvironmentVariable(name) : "", getDirectories: (path) => system.getDirectories(path), realpath, readDirectory: (path, extensions, include, exclude, depth) => system.readDirectory(path, extensions, include, exclude, depth), createDirectory: (d) => system.createDirectory(d), createHash: maybeBind(system, system.createHash) }; return compilerHost; } function changeCompilerHostLikeToUseCache(host, toPath3, getSourceFile) { const originalReadFile = host.readFile; const originalFileExists = host.fileExists; const originalDirectoryExists = host.directoryExists; const originalCreateDirectory = host.createDirectory; const originalWriteFile = host.writeFile; const readFileCache = /* @__PURE__ */ new Map; const fileExistsCache = /* @__PURE__ */ new Map; const directoryExistsCache = /* @__PURE__ */ new Map; const sourceFileCache = /* @__PURE__ */ new Map; const readFileWithCache = (fileName) => { const key = toPath3(fileName); const value = readFileCache.get(key); if (value !== undefined) return value !== false ? value : undefined; return setReadFileCache(key, fileName); }; const setReadFileCache = (key, fileName) => { const newValue = originalReadFile.call(host, fileName); readFileCache.set(key, newValue !== undefined ? newValue : false); return newValue; }; host.readFile = (fileName) => { const key = toPath3(fileName); const value = readFileCache.get(key); if (value !== undefined) return value !== false ? value : undefined; if (!fileExtensionIs(fileName, ".json") && !isBuildInfoFile(fileName)) { return originalReadFile.call(host, fileName); } return setReadFileCache(key, fileName); }; const getSourceFileWithCache = getSourceFile ? (fileName, languageVersionOrOptions, onError, shouldCreateNewSourceFile) => { const key = toPath3(fileName); const impliedNodeFormat = typeof languageVersionOrOptions === "object" ? languageVersionOrOptions.impliedNodeFormat : undefined; const forImpliedNodeFormat = sourceFileCache.get(impliedNodeFormat); const value = forImpliedNodeFormat == null ? undefined : forImpliedNodeFormat.get(key); if (value) return value; const sourceFile = getSourceFile(fileName, languageVersionOrOptions, onError, shouldCreateNewSourceFile); if (sourceFile && (isDeclarationFileName(fileName) || fileExtensionIs(fileName, ".json"))) { sourceFileCache.set(impliedNodeFormat, (forImpliedNodeFormat || /* @__PURE__ */ new Map).set(key, sourceFile)); } return sourceFile; } : undefined; host.fileExists = (fileName) => { const key = toPath3(fileName); const value = fileExistsCache.get(key); if (value !== undefined) return value; const newValue = originalFileExists.call(host, fileName); fileExistsCache.set(key, !!newValue); return newValue; }; if (originalWriteFile) { host.writeFile = (fileName, data, ...rest) => { const key = toPath3(fileName); fileExistsCache.delete(key); const value = readFileCache.get(key); if (value !== undefined && value !== data) { readFileCache.delete(key); sourceFileCache.forEach((map2) => map2.delete(key)); } else if (getSourceFileWithCache) { sourceFileCache.forEach((map2) => { const sourceFile = map2.get(key); if (sourceFile && sourceFile.text !== data) { map2.delete(key); } }); } originalWriteFile.call(host, fileName, data, ...rest); }; } if (originalDirectoryExists) { host.directoryExists = (directory) => { const key = toPath3(directory); const value = directoryExistsCache.get(key); if (value !== undefined) return value; const newValue = originalDirectoryExists.call(host, directory); directoryExistsCache.set(key, !!newValue); return newValue; }; if (originalCreateDirectory) { host.createDirectory = (directory) => { const key = toPath3(directory); directoryExistsCache.delete(key); originalCreateDirectory.call(host, directory); }; } } return { originalReadFile, originalFileExists, originalDirectoryExists, originalCreateDirectory, originalWriteFile, getSourceFileWithCache, readFileWithCache }; } function getPreEmitDiagnostics(program, sourceFile, cancellationToken) { let diagnostics; diagnostics = addRange(diagnostics, program.getConfigFileParsingDiagnostics()); diagnostics = addRange(diagnostics, program.getOptionsDiagnostics(cancellationToken)); diagnostics = addRange(diagnostics, program.getSyntacticDiagnostics(sourceFile, cancellationToken)); diagnostics = addRange(diagnostics, program.getGlobalDiagnostics(cancellationToken)); diagnostics = addRange(diagnostics, program.getSemanticDiagnostics(sourceFile, cancellationToken)); if (getEmitDeclarations(program.getCompilerOptions())) { diagnostics = addRange(diagnostics, program.getDeclarationDiagnostics(sourceFile, cancellationToken)); } return sortAndDeduplicateDiagnostics(diagnostics || emptyArray); } function formatDiagnostics(diagnostics, host) { let output = ""; for (const diagnostic of diagnostics) { output += formatDiagnostic2(diagnostic, host); } return output; } function formatDiagnostic2(diagnostic, host) { const errorMessage = `${diagnosticCategoryName(diagnostic)} TS${diagnostic.code}: ${flattenDiagnosticMessageText(diagnostic.messageText, host.getNewLine())}${host.getNewLine()}`; if (diagnostic.file) { const { line, character } = getLineAndCharacterOfPosition(diagnostic.file, diagnostic.start); const fileName = diagnostic.file.fileName; const relativeFileName = convertToRelativePath(fileName, host.getCurrentDirectory(), (fileName2) => host.getCanonicalFileName(fileName2)); return `${relativeFileName}(${line + 1},${character + 1}): ` + errorMessage; } return errorMessage; } var ForegroundColorEscapeSequences = /* @__PURE__ */ ((ForegroundColorEscapeSequences2) => { ForegroundColorEscapeSequences2["Grey"] = "\x1B[90m"; ForegroundColorEscapeSequences2["Red"] = "\x1B[91m"; ForegroundColorEscapeSequences2["Yellow"] = "\x1B[93m"; ForegroundColorEscapeSequences2["Blue"] = "\x1B[94m"; ForegroundColorEscapeSequences2["Cyan"] = "\x1B[96m"; return ForegroundColorEscapeSequences2; })(ForegroundColorEscapeSequences || {}); var gutterStyleSequence = "\x1B[7m"; var gutterSeparator = " "; var resetEscapeSequence = "\x1B[0m"; var ellipsis = "..."; var halfIndent = " "; var indent = " "; function getCategoryFormat(category) { switch (category) { case 1: return "\x1B[91m"; case 0: return "\x1B[93m"; case 2: return Debug.fail("Should never get an Info diagnostic on the command line."); case 3: return "\x1B[94m"; } } function formatColorAndReset(text, formatStyle) { return formatStyle + text + resetEscapeSequence; } function formatCodeSpan(file, start, length2, indent3, squiggleColor, host) { const { line: firstLine, character: firstLineChar } = getLineAndCharacterOfPosition(file, start); const { line: lastLine, character: lastLineChar } = getLineAndCharacterOfPosition(file, start + length2); const lastLineInFile = getLineAndCharacterOfPosition(file, file.text.length).line; const hasMoreThanFiveLines = lastLine - firstLine >= 4; let gutterWidth = (lastLine + 1 + "").length; if (hasMoreThanFiveLines) { gutterWidth = Math.max(ellipsis.length, gutterWidth); } let context = ""; for (let i = firstLine;i <= lastLine; i++) { context += host.getNewLine(); if (hasMoreThanFiveLines && firstLine + 1 < i && i < lastLine - 1) { context += indent3 + formatColorAndReset(ellipsis.padStart(gutterWidth), gutterStyleSequence) + gutterSeparator + host.getNewLine(); i = lastLine - 1; } const lineStart = getPositionOfLineAndCharacter(file, i, 0); const lineEnd = i < lastLineInFile ? getPositionOfLineAndCharacter(file, i + 1, 0) : file.text.length; let lineContent = file.text.slice(lineStart, lineEnd); lineContent = lineContent.trimEnd(); lineContent = lineContent.replace(/\t/g, " "); context += indent3 + formatColorAndReset((i + 1 + "").padStart(gutterWidth), gutterStyleSequence) + gutterSeparator; context += lineContent + host.getNewLine(); context += indent3 + formatColorAndReset("".padStart(gutterWidth), gutterStyleSequence) + gutterSeparator; context += squiggleColor; if (i === firstLine) { const lastCharForLine = i === lastLine ? lastLineChar : undefined; context += lineContent.slice(0, firstLineChar).replace(/\S/g, " "); context += lineContent.slice(firstLineChar, lastCharForLine).replace(/./g, "~"); } else if (i === lastLine) { context += lineContent.slice(0, lastLineChar).replace(/./g, "~"); } else { context += lineContent.replace(/./g, "~"); } context += resetEscapeSequence; } return context; } function formatLocation(file, start, host, color = formatColorAndReset) { const { line: firstLine, character: firstLineChar } = getLineAndCharacterOfPosition(file, start); const relativeFileName = host ? convertToRelativePath(file.fileName, host.getCurrentDirectory(), (fileName) => host.getCanonicalFileName(fileName)) : file.fileName; let output = ""; output += color(relativeFileName, "\x1B[96m"); output += ":"; output += color(`${firstLine + 1}`, "\x1B[93m"); output += ":"; output += color(`${firstLineChar + 1}`, "\x1B[93m"); return output; } function formatDiagnosticsWithColorAndContext(diagnostics, host) { let output = ""; for (const diagnostic of diagnostics) { if (diagnostic.file) { const { file, start } = diagnostic; output += formatLocation(file, start, host); output += " - "; } output += formatColorAndReset(diagnosticCategoryName(diagnostic), getCategoryFormat(diagnostic.category)); output += formatColorAndReset(` TS${diagnostic.code}: `, "\x1B[90m"); output += flattenDiagnosticMessageText(diagnostic.messageText, host.getNewLine()); if (diagnostic.file && diagnostic.code !== Diagnostics.File_appears_to_be_binary.code) { output += host.getNewLine(); output += formatCodeSpan(diagnostic.file, diagnostic.start, diagnostic.length, "", getCategoryFormat(diagnostic.category), host); } if (diagnostic.relatedInformation) { output += host.getNewLine(); for (const { file, start, length: length2, messageText } of diagnostic.relatedInformation) { if (file) { output += host.getNewLine(); output += halfIndent + formatLocation(file, start, host); output += formatCodeSpan(file, start, length2, indent, "\x1B[96m", host); } output += host.getNewLine(); output += indent + flattenDiagnosticMessageText(messageText, host.getNewLine()); } } output += host.getNewLine(); } return output; } function flattenDiagnosticMessageText(diag2, newLine, indent3 = 0) { if (isString(diag2)) { return diag2; } else if (diag2 === undefined) { return ""; } let result = ""; if (indent3) { result += newLine; for (let i = 0;i < indent3; i++) { result += " "; } } result += diag2.messageText; indent3++; if (diag2.next) { for (const kid of diag2.next) { result += flattenDiagnosticMessageText(kid, newLine, indent3); } } return result; } function getModeForFileReference(ref, containingFileMode) { return (isString(ref) ? containingFileMode : ref.resolutionMode) || containingFileMode; } function getModeForResolutionAtIndex(file, index, compilerOptions) { return getModeForUsageLocationWorker(file, getModuleNameStringLiteralAt(file, index), compilerOptions); } function isExclusivelyTypeOnlyImportOrExport(decl) { var _a; if (isExportDeclaration(decl)) { return decl.isTypeOnly; } if ((_a = decl.importClause) == null ? undefined : _a.isTypeOnly) { return true; } return false; } function getModeForUsageLocation(file, usage, compilerOptions) { return getModeForUsageLocationWorker(file, usage, compilerOptions); } function getModeForUsageLocationWorker(file, usage, compilerOptions) { if (isImportDeclaration(usage.parent) || isExportDeclaration(usage.parent) || isJSDocImportTag(usage.parent)) { const isTypeOnly = isExclusivelyTypeOnlyImportOrExport(usage.parent); if (isTypeOnly) { const override = getResolutionModeOverride(usage.parent.attributes); if (override) { return override; } } } if (usage.parent.parent && isImportTypeNode(usage.parent.parent)) { const override = getResolutionModeOverride(usage.parent.parent.attributes); if (override) { return override; } } if (compilerOptions && importSyntaxAffectsModuleResolution(compilerOptions)) { return getEmitSyntaxForUsageLocationWorker(file, usage, compilerOptions); } } function getEmitSyntaxForUsageLocationWorker(file, usage, compilerOptions) { var _a; if (!compilerOptions) { return; } const exprParentParent = (_a = walkUpParenthesizedExpressions(usage.parent)) == null ? undefined : _a.parent; if (exprParentParent && isImportEqualsDeclaration(exprParentParent) || isRequireCall(usage.parent, false)) { return 1; } if (isImportCall(walkUpParenthesizedExpressions(usage.parent))) { return shouldTransformImportCallWorker(file, compilerOptions) ? 1 : 99; } const fileEmitMode = getEmitModuleFormatOfFileWorker(file, compilerOptions); return fileEmitMode === 1 ? 1 : emitModuleKindIsNonNodeESM(fileEmitMode) || fileEmitMode === 200 ? 99 : undefined; } function getResolutionModeOverride(node, grammarErrorOnNode) { if (!node) return; if (length(node.elements) !== 1) { grammarErrorOnNode == null || grammarErrorOnNode(node, node.token === 118 ? Diagnostics.Type_import_attributes_should_have_exactly_one_key_resolution_mode_with_value_import_or_require : Diagnostics.Type_import_assertions_should_have_exactly_one_key_resolution_mode_with_value_import_or_require); return; } const elem = node.elements[0]; if (!isStringLiteralLike(elem.name)) return; if (elem.name.text !== "resolution-mode") { grammarErrorOnNode == null || grammarErrorOnNode(elem.name, node.token === 118 ? Diagnostics.resolution_mode_is_the_only_valid_key_for_type_import_attributes : Diagnostics.resolution_mode_is_the_only_valid_key_for_type_import_assertions); return; } if (!isStringLiteralLike(elem.value)) return; if (elem.value.text !== "import" && elem.value.text !== "require") { grammarErrorOnNode == null || grammarErrorOnNode(elem.value, Diagnostics.resolution_mode_should_be_either_require_or_import); return; } return elem.value.text === "import" ? 99 : 1; } var emptyResolution = { resolvedModule: undefined, resolvedTypeReferenceDirective: undefined }; function getModuleResolutionName(literal) { return literal.text; } var moduleResolutionNameAndModeGetter = { getName: getModuleResolutionName, getMode: (entry, file, compilerOptions) => getModeForUsageLocation(file, entry, compilerOptions) }; function createModuleResolutionLoader(containingFile, redirectedReference, options, host, cache) { return { nameAndMode: moduleResolutionNameAndModeGetter, resolve: (moduleName, resolutionMode) => resolveModuleName(moduleName, containingFile, options, host, cache, redirectedReference, resolutionMode) }; } function getTypeReferenceResolutionName(entry) { return !isString(entry) ? entry.fileName : entry; } var typeReferenceResolutionNameAndModeGetter = { getName: getTypeReferenceResolutionName, getMode: (entry, file, compilerOptions) => getModeForFileReference(entry, file && getDefaultResolutionModeForFileWorker(file, compilerOptions)) }; function createTypeReferenceResolutionLoader(containingFile, redirectedReference, options, host, cache) { return { nameAndMode: typeReferenceResolutionNameAndModeGetter, resolve: (typeRef, resoluionMode) => resolveTypeReferenceDirective(typeRef, containingFile, options, host, redirectedReference, cache, resoluionMode) }; } function loadWithModeAwareCache(entries, containingFile, redirectedReference, options, containingSourceFile, host, resolutionCache, createLoader) { if (entries.length === 0) return emptyArray; const resolutions = []; const cache = /* @__PURE__ */ new Map; const loader = createLoader(containingFile, redirectedReference, options, host, resolutionCache); for (const entry of entries) { const name = loader.nameAndMode.getName(entry); const mode = loader.nameAndMode.getMode(entry, containingSourceFile, (redirectedReference == null ? undefined : redirectedReference.commandLine.options) || options); const key = createModeAwareCacheKey(name, mode); let result = cache.get(key); if (!result) { cache.set(key, result = loader.resolve(name, mode)); } resolutions.push(result); } return resolutions; } var inferredTypesContainingFile = "__inferred type names__.ts"; function getInferredLibraryNameResolveFrom(options, currentDirectory, libFileName) { const containingDirectory = options.configFilePath ? getDirectoryPath(options.configFilePath) : currentDirectory; return combinePaths(containingDirectory, `__lib_node_modules_lookup_${libFileName}__.ts`); } function getLibraryNameFromLibFileName(libFileName) { const components = libFileName.split("."); let path = components[1]; let i = 2; while (components[i] && components[i] !== "d") { path += (i === 2 ? "/" : "-") + components[i]; i++; } return "@typescript/lib-" + path; } function isReferencedFile(reason) { switch (reason == null ? undefined : reason.kind) { case 3: case 4: case 5: case 7: return true; default: return false; } } function isReferenceFileLocation(location) { return location.pos !== undefined; } function getReferencedFileLocation(program, ref) { var _a, _b, _c, _d; const file = Debug.checkDefined(program.getSourceFileByPath(ref.file)); const { kind, index } = ref; let pos, end, packageId; switch (kind) { case 3: const importLiteral = getModuleNameStringLiteralAt(file, index); packageId = (_b = (_a = program.getResolvedModuleFromModuleSpecifier(importLiteral, file)) == null ? undefined : _a.resolvedModule) == null ? undefined : _b.packageId; if (importLiteral.pos === -1) return { file, packageId, text: importLiteral.text }; pos = skipTrivia2(file.text, importLiteral.pos); end = importLiteral.end; break; case 4: ({ pos, end } = file.referencedFiles[index]); break; case 5: ({ pos, end } = file.typeReferenceDirectives[index]); packageId = (_d = (_c = program.getResolvedTypeReferenceDirectiveFromTypeReferenceDirective(file.typeReferenceDirectives[index], file)) == null ? undefined : _c.resolvedTypeReferenceDirective) == null ? undefined : _d.packageId; break; case 7: ({ pos, end } = file.libReferenceDirectives[index]); break; default: return Debug.assertNever(kind); } return { file, pos, end, packageId }; } function isProgramUptoDate(program, rootFileNames, newOptions, getSourceVersion, fileExists, hasInvalidatedResolutions, hasInvalidatedLibResolutions, hasChangedAutomaticTypeDirectiveNames, getParsedCommandLine, projectReferences) { if (!program || (hasChangedAutomaticTypeDirectiveNames == null ? undefined : hasChangedAutomaticTypeDirectiveNames())) return false; if (!arrayIsEqualTo(program.getRootFileNames(), rootFileNames)) return false; let seenResolvedRefs; if (!arrayIsEqualTo(program.getProjectReferences(), projectReferences, projectReferenceUptoDate)) return false; if (program.getSourceFiles().some(sourceFileNotUptoDate)) return false; const missingPaths = program.getMissingFilePaths(); if (missingPaths && forEachEntry(missingPaths, fileExists)) return false; const currentOptions = program.getCompilerOptions(); if (!compareDataObjects(currentOptions, newOptions)) return false; if (program.resolvedLibReferences && forEachEntry(program.resolvedLibReferences, (_value, libFileName) => hasInvalidatedLibResolutions(libFileName))) return false; if (currentOptions.configFile && newOptions.configFile) return currentOptions.configFile.text === newOptions.configFile.text; return true; function sourceFileNotUptoDate(sourceFile) { return !sourceFileVersionUptoDate(sourceFile) || hasInvalidatedResolutions(sourceFile.path); } function sourceFileVersionUptoDate(sourceFile) { return sourceFile.version === getSourceVersion(sourceFile.resolvedPath, sourceFile.fileName); } function projectReferenceUptoDate(oldRef, newRef, index) { return projectReferenceIsEqualTo(oldRef, newRef) && resolvedProjectReferenceUptoDate(program.getResolvedProjectReferences()[index], oldRef); } function resolvedProjectReferenceUptoDate(oldResolvedRef, oldRef) { if (oldResolvedRef) { if (contains(seenResolvedRefs, oldResolvedRef)) return true; const refPath2 = resolveProjectReferencePath(oldRef); const newParsedCommandLine = getParsedCommandLine(refPath2); if (!newParsedCommandLine) return false; if (oldResolvedRef.commandLine.options.configFile !== newParsedCommandLine.options.configFile) return false; if (!arrayIsEqualTo(oldResolvedRef.commandLine.fileNames, newParsedCommandLine.fileNames)) return false; (seenResolvedRefs || (seenResolvedRefs = [])).push(oldResolvedRef); return !forEach(oldResolvedRef.references, (childResolvedRef, index) => !resolvedProjectReferenceUptoDate(childResolvedRef, oldResolvedRef.commandLine.projectReferences[index])); } const refPath = resolveProjectReferencePath(oldRef); return !getParsedCommandLine(refPath); } } function getConfigFileParsingDiagnostics(configFileParseResult) { return configFileParseResult.options.configFile ? [...configFileParseResult.options.configFile.parseDiagnostics, ...configFileParseResult.errors] : configFileParseResult.errors; } function getImpliedNodeFormatForFile(fileName, packageJsonInfoCache, host, options) { const result = getImpliedNodeFormatForFileWorker(fileName, packageJsonInfoCache, host, options); return typeof result === "object" ? result.impliedNodeFormat : result; } function getImpliedNodeFormatForFileWorker(fileName, packageJsonInfoCache, host, options) { const moduleResolution = getEmitModuleResolutionKind(options); const shouldLookupFromPackageJson = 3 <= moduleResolution && moduleResolution <= 99 || pathContainsNodeModules(fileName); return fileExtensionIsOneOf(fileName, [".d.mts", ".mts", ".mjs"]) ? 99 : fileExtensionIsOneOf(fileName, [".d.cts", ".cts", ".cjs"]) ? 1 : shouldLookupFromPackageJson && fileExtensionIsOneOf(fileName, [".d.ts", ".ts", ".tsx", ".js", ".jsx"]) ? lookupFromPackageJson() : undefined; function lookupFromPackageJson() { const state = getTemporaryModuleResolutionState(packageJsonInfoCache, host, options); const packageJsonLocations = []; state.failedLookupLocations = packageJsonLocations; state.affectingLocations = packageJsonLocations; const packageJsonScope = getPackageScopeForPath(getDirectoryPath(fileName), state); const impliedNodeFormat = (packageJsonScope == null ? undefined : packageJsonScope.contents.packageJsonContent.type) === "module" ? 99 : 1; return { impliedNodeFormat, packageJsonLocations, packageJsonScope }; } } var plainJSErrors = /* @__PURE__ */ new Set([ Diagnostics.Cannot_redeclare_block_scoped_variable_0.code, Diagnostics.A_module_cannot_have_multiple_default_exports.code, Diagnostics.Another_export_default_is_here.code, Diagnostics.The_first_export_default_is_here.code, Diagnostics.Identifier_expected_0_is_a_reserved_word_at_the_top_level_of_a_module.code, Diagnostics.Identifier_expected_0_is_a_reserved_word_in_strict_mode_Modules_are_automatically_in_strict_mode.code, Diagnostics.Identifier_expected_0_is_a_reserved_word_that_cannot_be_used_here.code, Diagnostics.constructor_is_a_reserved_word.code, Diagnostics.delete_cannot_be_called_on_an_identifier_in_strict_mode.code, Diagnostics.Code_contained_in_a_class_is_evaluated_in_JavaScript_s_strict_mode_which_does_not_allow_this_use_of_0_For_more_information_see_https_Colon_Slash_Slashdeveloper_mozilla_org_Slashen_US_Slashdocs_SlashWeb_SlashJavaScript_SlashReference_SlashStrict_mode.code, Diagnostics.Invalid_use_of_0_Modules_are_automatically_in_strict_mode.code, Diagnostics.Invalid_use_of_0_in_strict_mode.code, Diagnostics.A_label_is_not_allowed_here.code, Diagnostics.with_statements_are_not_allowed_in_strict_mode.code, Diagnostics.A_break_statement_can_only_be_used_within_an_enclosing_iteration_or_switch_statement.code, Diagnostics.A_break_statement_can_only_jump_to_a_label_of_an_enclosing_statement.code, Diagnostics.A_class_declaration_without_the_default_modifier_must_have_a_name.code, Diagnostics.A_class_member_cannot_have_the_0_keyword.code, Diagnostics.A_comma_expression_is_not_allowed_in_a_computed_property_name.code, Diagnostics.A_continue_statement_can_only_be_used_within_an_enclosing_iteration_statement.code, Diagnostics.A_continue_statement_can_only_jump_to_a_label_of_an_enclosing_iteration_statement.code, Diagnostics.A_continue_statement_can_only_jump_to_a_label_of_an_enclosing_iteration_statement.code, Diagnostics.A_default_clause_cannot_appear_more_than_once_in_a_switch_statement.code, Diagnostics.A_default_export_must_be_at_the_top_level_of_a_file_or_module_declaration.code, Diagnostics.A_definite_assignment_assertion_is_not_permitted_in_this_context.code, Diagnostics.A_destructuring_declaration_must_have_an_initializer.code, Diagnostics.A_get_accessor_cannot_have_parameters.code, Diagnostics.A_rest_element_cannot_contain_a_binding_pattern.code, Diagnostics.A_rest_element_cannot_have_a_property_name.code, Diagnostics.A_rest_element_cannot_have_an_initializer.code, Diagnostics.A_rest_element_must_be_last_in_a_destructuring_pattern.code, Diagnostics.A_rest_parameter_cannot_have_an_initializer.code, Diagnostics.A_rest_parameter_must_be_last_in_a_parameter_list.code, Diagnostics.A_rest_parameter_or_binding_pattern_may_not_have_a_trailing_comma.code, Diagnostics.A_return_statement_cannot_be_used_inside_a_class_static_block.code, Diagnostics.A_set_accessor_cannot_have_rest_parameter.code, Diagnostics.A_set_accessor_must_have_exactly_one_parameter.code, Diagnostics.An_export_declaration_can_only_be_used_at_the_top_level_of_a_module.code, Diagnostics.An_export_declaration_cannot_have_modifiers.code, Diagnostics.An_import_declaration_can_only_be_used_at_the_top_level_of_a_module.code, Diagnostics.An_import_declaration_cannot_have_modifiers.code, Diagnostics.An_object_member_cannot_be_declared_optional.code, Diagnostics.Argument_of_dynamic_import_cannot_be_spread_element.code, Diagnostics.Cannot_assign_to_private_method_0_Private_methods_are_not_writable.code, Diagnostics.Cannot_redeclare_identifier_0_in_catch_clause.code, Diagnostics.Catch_clause_variable_cannot_have_an_initializer.code, Diagnostics.Class_decorators_can_t_be_used_with_static_private_identifier_Consider_removing_the_experimental_decorator.code, Diagnostics.Classes_can_only_extend_a_single_class.code, Diagnostics.Classes_may_not_have_a_field_named_constructor.code, Diagnostics.Did_you_mean_to_use_a_Colon_An_can_only_follow_a_property_name_when_the_containing_object_literal_is_part_of_a_destructuring_pattern.code, Diagnostics.Duplicate_label_0.code, Diagnostics.Dynamic_imports_can_only_accept_a_module_specifier_and_an_optional_set_of_attributes_as_arguments.code, Diagnostics.for_await_loops_cannot_be_used_inside_a_class_static_block.code, Diagnostics.JSX_attributes_must_only_be_assigned_a_non_empty_expression.code, Diagnostics.JSX_elements_cannot_have_multiple_attributes_with_the_same_name.code, Diagnostics.JSX_expressions_may_not_use_the_comma_operator_Did_you_mean_to_write_an_array.code, Diagnostics.JSX_property_access_expressions_cannot_include_JSX_namespace_names.code, Diagnostics.Jump_target_cannot_cross_function_boundary.code, Diagnostics.Line_terminator_not_permitted_before_arrow.code, Diagnostics.Modifiers_cannot_appear_here.code, Diagnostics.Only_a_single_variable_declaration_is_allowed_in_a_for_in_statement.code, Diagnostics.Only_a_single_variable_declaration_is_allowed_in_a_for_of_statement.code, Diagnostics.Private_identifiers_are_not_allowed_outside_class_bodies.code, Diagnostics.Private_identifiers_are_only_allowed_in_class_bodies_and_may_only_be_used_as_part_of_a_class_member_declaration_property_access_or_on_the_left_hand_side_of_an_in_expression.code, Diagnostics.Property_0_is_not_accessible_outside_class_1_because_it_has_a_private_identifier.code, Diagnostics.Tagged_template_expressions_are_not_permitted_in_an_optional_chain.code, Diagnostics.The_left_hand_side_of_a_for_of_statement_may_not_be_async.code, Diagnostics.The_variable_declaration_of_a_for_in_statement_cannot_have_an_initializer.code, Diagnostics.The_variable_declaration_of_a_for_of_statement_cannot_have_an_initializer.code, Diagnostics.Trailing_comma_not_allowed.code, Diagnostics.Variable_declaration_list_cannot_be_empty.code, Diagnostics._0_and_1_operations_cannot_be_mixed_without_parentheses.code, Diagnostics._0_expected.code, Diagnostics._0_is_not_a_valid_meta_property_for_keyword_1_Did_you_mean_2.code, Diagnostics._0_list_cannot_be_empty.code, Diagnostics._0_modifier_already_seen.code, Diagnostics._0_modifier_cannot_appear_on_a_constructor_declaration.code, Diagnostics._0_modifier_cannot_appear_on_a_module_or_namespace_element.code, Diagnostics._0_modifier_cannot_appear_on_a_parameter.code, Diagnostics._0_modifier_cannot_appear_on_class_elements_of_this_kind.code, Diagnostics._0_modifier_cannot_be_used_here.code, Diagnostics._0_modifier_must_precede_1_modifier.code, Diagnostics._0_declarations_can_only_be_declared_inside_a_block.code, Diagnostics._0_declarations_must_be_initialized.code, Diagnostics.extends_clause_already_seen.code, Diagnostics.let_is_not_allowed_to_be_used_as_a_name_in_let_or_const_declarations.code, Diagnostics.Class_constructor_may_not_be_a_generator.code, Diagnostics.Class_constructor_may_not_be_an_accessor.code, Diagnostics.await_expressions_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules.code, Diagnostics.await_using_statements_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules.code, Diagnostics.Private_field_0_must_be_declared_in_an_enclosing_class.code, Diagnostics.This_condition_will_always_return_0_since_JavaScript_compares_objects_by_reference_not_value.code ]); function shouldProgramCreateNewSourceFiles(program, newOptions) { if (!program) return false; return optionsHaveChanges(program.getCompilerOptions(), newOptions, sourceFileAffectingCompilerOptions); } function createCreateProgramOptions(rootNames, options, host, oldProgram, configFileParsingDiagnostics, typeScriptVersion3) { return { rootNames, options, host, oldProgram, configFileParsingDiagnostics, typeScriptVersion: typeScriptVersion3 }; } function createProgram(_rootNamesOrOptions, _options, _host, _oldProgram, _configFileParsingDiagnostics) { var _a, _b, _c, _d, _e, _f, _g, _h, _i, _j, _k, _l, _m, _n, _o, _p; let _createProgramOptions = isArray(_rootNamesOrOptions) ? createCreateProgramOptions(_rootNamesOrOptions, _options, _host, _oldProgram, _configFileParsingDiagnostics) : _rootNamesOrOptions; const { rootNames, options, configFileParsingDiagnostics, projectReferences, typeScriptVersion: typeScriptVersion3, host: createProgramOptionsHost } = _createProgramOptions; let { oldProgram } = _createProgramOptions; _createProgramOptions = undefined; _rootNamesOrOptions = undefined; for (const option of commandLineOptionOfCustomType) { if (hasProperty(options, option.name)) { if (typeof options[option.name] === "string") { throw new Error(`${option.name} is a string value; tsconfig JSON must be parsed with parseJsonSourceFileConfigFileContent or getParsedCommandLineOfConfigFile before passing to createProgram`); } } } const reportInvalidIgnoreDeprecations = memoize(() => createOptionValueDiagnostic("ignoreDeprecations", Diagnostics.Invalid_value_for_ignoreDeprecations)); let processingDefaultLibFiles; let processingOtherFiles; let files; let symlinks; let typeChecker; let classifiableNames; let filesWithReferencesProcessed; let cachedBindAndCheckDiagnosticsForFile; let cachedDeclarationDiagnosticsForFile; const programDiagnostics = createProgramDiagnostics(getCompilerOptionsObjectLiteralSyntax); let automaticTypeDirectiveNames; let automaticTypeDirectiveResolutions; let resolvedLibReferences; let resolvedLibProcessing; let resolvedModules; let resolvedModulesProcessing; let resolvedTypeReferenceDirectiveNames; let resolvedTypeReferenceDirectiveNamesProcessing; let packageMap; const maxNodeModuleJsDepth = typeof options.maxNodeModuleJsDepth === "number" ? options.maxNodeModuleJsDepth : 0; let currentNodeModulesDepth = 0; const modulesWithElidedImports = /* @__PURE__ */ new Map; const sourceFilesFoundSearchingNodeModules = /* @__PURE__ */ new Map; (_a = tracing) == null || _a.push(tracing.Phase.Program, "createProgram", { configFilePath: options.configFilePath, rootDir: options.rootDir }, true); mark("beforeProgram"); const host = createProgramOptionsHost || createCompilerHost(options); const configParsingHost = parseConfigHostFromCompilerHostLike(host); const getDefaultLibraryFileName = memoize(() => host.getDefaultLibFileName(options)); const defaultLibraryPath = host.getDefaultLibLocation ? host.getDefaultLibLocation() : getDirectoryPath(getDefaultLibraryFileName()); let skipVerifyCompilerOptions = false; const currentDirectory = host.getCurrentDirectory(); const supportedExtensions = getSupportedExtensions(options); const supportedExtensionsWithJsonIfResolveJsonModule = getSupportedExtensionsWithJsonIfResolveJsonModule(options, supportedExtensions); const hasEmitBlockingDiagnostics = /* @__PURE__ */ new Map; let _compilerOptionsObjectLiteralSyntax; let _compilerOptionsPropertySyntax; let moduleResolutionCache; let actualResolveModuleNamesWorker; const hasInvalidatedResolutions = host.hasInvalidatedResolutions || returnFalse; if (host.resolveModuleNameLiterals) { actualResolveModuleNamesWorker = host.resolveModuleNameLiterals.bind(host); moduleResolutionCache = (_b = host.getModuleResolutionCache) == null ? undefined : _b.call(host); } else if (host.resolveModuleNames) { actualResolveModuleNamesWorker = (moduleNames, containingFile, redirectedReference, options2, containingSourceFile, reusedNames) => host.resolveModuleNames(moduleNames.map(getModuleResolutionName), containingFile, reusedNames == null ? undefined : reusedNames.map(getModuleResolutionName), redirectedReference, options2, containingSourceFile).map((resolved) => resolved ? resolved.extension !== undefined ? { resolvedModule: resolved } : { resolvedModule: { ...resolved, extension: extensionFromPath(resolved.resolvedFileName) } } : emptyResolution); moduleResolutionCache = (_c = host.getModuleResolutionCache) == null ? undefined : _c.call(host); } else { moduleResolutionCache = createModuleResolutionCache(currentDirectory, getCanonicalFileName, options); actualResolveModuleNamesWorker = (moduleNames, containingFile, redirectedReference, options2, containingSourceFile) => loadWithModeAwareCache(moduleNames, containingFile, redirectedReference, options2, containingSourceFile, host, moduleResolutionCache, createModuleResolutionLoader); } let actualResolveTypeReferenceDirectiveNamesWorker; if (host.resolveTypeReferenceDirectiveReferences) { actualResolveTypeReferenceDirectiveNamesWorker = host.resolveTypeReferenceDirectiveReferences.bind(host); } else if (host.resolveTypeReferenceDirectives) { actualResolveTypeReferenceDirectiveNamesWorker = (typeDirectiveNames, containingFile, redirectedReference, options2, containingSourceFile) => host.resolveTypeReferenceDirectives(typeDirectiveNames.map(getTypeReferenceResolutionName), containingFile, redirectedReference, options2, containingSourceFile == null ? undefined : containingSourceFile.impliedNodeFormat).map((resolvedTypeReferenceDirective) => ({ resolvedTypeReferenceDirective })); } else { const typeReferenceDirectiveResolutionCache = createTypeReferenceDirectiveResolutionCache(currentDirectory, getCanonicalFileName, undefined, moduleResolutionCache == null ? undefined : moduleResolutionCache.getPackageJsonInfoCache(), moduleResolutionCache == null ? undefined : moduleResolutionCache.optionsToRedirectsKey); actualResolveTypeReferenceDirectiveNamesWorker = (typeDirectiveNames, containingFile, redirectedReference, options2, containingSourceFile) => loadWithModeAwareCache(typeDirectiveNames, containingFile, redirectedReference, options2, containingSourceFile, host, typeReferenceDirectiveResolutionCache, createTypeReferenceResolutionLoader); } const hasInvalidatedLibResolutions = host.hasInvalidatedLibResolutions || returnFalse; let actualResolveLibrary; if (host.resolveLibrary) { actualResolveLibrary = host.resolveLibrary.bind(host); } else { const libraryResolutionCache = createModuleResolutionCache(currentDirectory, getCanonicalFileName, options, moduleResolutionCache == null ? undefined : moduleResolutionCache.getPackageJsonInfoCache()); actualResolveLibrary = (libraryName, resolveFrom, options2) => resolveLibrary(libraryName, resolveFrom, options2, host, libraryResolutionCache); } const packageIdToSourceFile = /* @__PURE__ */ new Map; let sourceFileToPackageName = /* @__PURE__ */ new Map; let redirectTargetsMap = createMultiMap(); let usesUriStyleNodeCoreModules; const filesByName = /* @__PURE__ */ new Map; const libFiles = /* @__PURE__ */ new Set; let missingFileNames = /* @__PURE__ */ new Map; const filesByNameIgnoreCase = host.useCaseSensitiveFileNames() ? /* @__PURE__ */ new Map : undefined; let resolvedProjectReferences; let projectReferenceRedirects; let mapSourceFileToResolvedRef; let mapOutputFileToResolvedRef; const useSourceOfProjectReferenceRedirect = !!((_d = host.useSourceOfProjectReferenceRedirect) == null ? undefined : _d.call(host)) && !options.disableSourceOfProjectReferenceRedirect; const { onProgramCreateComplete, fileExists, directoryExists } = updateHostForUseSourceOfProjectReferenceRedirect({ compilerHost: host, getSymlinkCache, useSourceOfProjectReferenceRedirect, toPath: toPath3, getResolvedProjectReferences, getRedirectFromOutput, forEachResolvedProjectReference: forEachResolvedProjectReference2 }); const readFile = host.readFile.bind(host); (_e = tracing) == null || _e.push(tracing.Phase.Program, "shouldProgramCreateNewSourceFiles", { hasOldProgram: !!oldProgram }); const shouldCreateNewSourceFile = shouldProgramCreateNewSourceFiles(oldProgram, options); (_f = tracing) == null || _f.pop(); let structureIsReused; (_g = tracing) == null || _g.push(tracing.Phase.Program, "tryReuseStructureFromOldProgram", {}); structureIsReused = tryReuseStructureFromOldProgram(); (_h = tracing) == null || _h.pop(); if (structureIsReused !== 2) { processingDefaultLibFiles = []; processingOtherFiles = []; if (projectReferences) { if (!resolvedProjectReferences) { resolvedProjectReferences = projectReferences.map(parseProjectReferenceConfigFile); } if (rootNames.length) { resolvedProjectReferences == null || resolvedProjectReferences.forEach((parsedRef, index) => { if (!parsedRef) return; const out = parsedRef.commandLine.options.outFile; if (useSourceOfProjectReferenceRedirect) { if (out || getEmitModuleKind(parsedRef.commandLine.options) === 0) { for (const fileName of parsedRef.commandLine.fileNames) { processProjectReferenceFile(fileName, { kind: 1, index }); } } } else { if (out) { processProjectReferenceFile(changeExtension(out, ".d.ts"), { kind: 2, index }); } else if (getEmitModuleKind(parsedRef.commandLine.options) === 0) { const getCommonSourceDirectory3 = memoize(() => getCommonSourceDirectoryOfConfig(parsedRef.commandLine, !host.useCaseSensitiveFileNames())); for (const fileName of parsedRef.commandLine.fileNames) { if (!isDeclarationFileName(fileName) && !fileExtensionIs(fileName, ".json")) { processProjectReferenceFile(getOutputDeclarationFileName(fileName, parsedRef.commandLine, !host.useCaseSensitiveFileNames(), getCommonSourceDirectory3), { kind: 2, index }); } } } } }); } } (_i = tracing) == null || _i.push(tracing.Phase.Program, "processRootFiles", { count: rootNames.length }); forEach(rootNames, (name, index) => processRootFile(name, false, { kind: 0, index })); (_j = tracing) == null || _j.pop(); automaticTypeDirectiveNames ?? (automaticTypeDirectiveNames = rootNames.length ? getAutomaticTypeDirectiveNames(options, host) : emptyArray); automaticTypeDirectiveResolutions = createModeAwareCache(); if (automaticTypeDirectiveNames.length) { (_k = tracing) == null || _k.push(tracing.Phase.Program, "processTypeReferences", { count: automaticTypeDirectiveNames.length }); const containingDirectory = options.configFilePath ? getDirectoryPath(options.configFilePath) : currentDirectory; const containingFilename = combinePaths(containingDirectory, inferredTypesContainingFile); const resolutions = resolveTypeReferenceDirectiveNamesReusingOldState(automaticTypeDirectiveNames, containingFilename); for (let i = 0;i < automaticTypeDirectiveNames.length; i++) { automaticTypeDirectiveResolutions.set(automaticTypeDirectiveNames[i], undefined, resolutions[i]); processTypeReferenceDirective(automaticTypeDirectiveNames[i], undefined, resolutions[i], { kind: 8, typeReference: automaticTypeDirectiveNames[i], packageId: (_m = (_l = resolutions[i]) == null ? undefined : _l.resolvedTypeReferenceDirective) == null ? undefined : _m.packageId }); } (_n = tracing) == null || _n.pop(); } if (rootNames.length && !options.noLib) { const defaultLibraryFileName = getDefaultLibraryFileName(); if (!options.lib && defaultLibraryFileName) { libFiles.add(toPath3(defaultLibraryFileName)); processRootFile(defaultLibraryFileName, true, { kind: 6 }); } else { forEach(options.lib, (libFileName, index) => { processRootFile(pathForLibFile(libFileName), true, { kind: 6, index }); }); } } files = toSorted(processingDefaultLibFiles, compareDefaultLibFiles).concat(processingOtherFiles); processingDefaultLibFiles = undefined; processingOtherFiles = undefined; filesWithReferencesProcessed = undefined; } if (oldProgram && host.onReleaseOldSourceFile) { const oldSourceFiles = oldProgram.getSourceFiles(); for (const oldSourceFile of oldSourceFiles) { const newFile = getSourceFileByPath(oldSourceFile.resolvedPath); if (shouldCreateNewSourceFile || !newFile || newFile.impliedNodeFormat !== oldSourceFile.impliedNodeFormat || oldSourceFile.resolvedPath === oldSourceFile.path && newFile.resolvedPath !== oldSourceFile.path) { host.onReleaseOldSourceFile(oldSourceFile, oldProgram.getCompilerOptions(), !!getSourceFileByPath(oldSourceFile.path), newFile); } } if (!host.getParsedCommandLine) { oldProgram.forEachResolvedProjectReference((resolvedProjectReference) => { if (!getResolvedProjectReferenceByPath(resolvedProjectReference.sourceFile.path)) { host.onReleaseOldSourceFile(resolvedProjectReference.sourceFile, oldProgram.getCompilerOptions(), false, undefined); } }); } } if (oldProgram && host.onReleaseParsedCommandLine) { forEachProjectReference(oldProgram.getProjectReferences(), oldProgram.getResolvedProjectReferences(), (oldResolvedRef, parent2, index) => { const oldReference = (parent2 == null ? undefined : parent2.commandLine.projectReferences[index]) || oldProgram.getProjectReferences()[index]; const oldRefPath = resolveProjectReferencePath(oldReference); if (!(projectReferenceRedirects == null ? undefined : projectReferenceRedirects.has(toPath3(oldRefPath)))) { host.onReleaseParsedCommandLine(oldRefPath, oldResolvedRef, oldProgram.getCompilerOptions()); } }); } oldProgram = undefined; resolvedLibProcessing = undefined; resolvedModulesProcessing = undefined; resolvedTypeReferenceDirectiveNamesProcessing = undefined; const program = { getRootFileNames: () => rootNames, getSourceFile, getSourceFileByPath, getSourceFiles: () => files, getMissingFilePaths: () => missingFileNames, getModuleResolutionCache: () => moduleResolutionCache, getFilesByNameMap: () => filesByName, getCompilerOptions: () => options, getSyntacticDiagnostics, getOptionsDiagnostics, getGlobalDiagnostics, getSemanticDiagnostics, getCachedSemanticDiagnostics, getSuggestionDiagnostics, getDeclarationDiagnostics: getDeclarationDiagnostics2, getBindAndCheckDiagnostics, getProgramDiagnostics, getTypeChecker, getClassifiableNames, getCommonSourceDirectory: getCommonSourceDirectory2, emit, getCurrentDirectory: () => currentDirectory, getNodeCount: () => getTypeChecker().getNodeCount(), getIdentifierCount: () => getTypeChecker().getIdentifierCount(), getSymbolCount: () => getTypeChecker().getSymbolCount(), getTypeCount: () => getTypeChecker().getTypeCount(), getInstantiationCount: () => getTypeChecker().getInstantiationCount(), getRelationCacheSizes: () => getTypeChecker().getRelationCacheSizes(), getFileProcessingDiagnostics: () => programDiagnostics.getFileProcessingDiagnostics(), getAutomaticTypeDirectiveNames: () => automaticTypeDirectiveNames, getAutomaticTypeDirectiveResolutions: () => automaticTypeDirectiveResolutions, isSourceFileFromExternalLibrary, isSourceFileDefaultLibrary, getModeForUsageLocation: getModeForUsageLocation2, getEmitSyntaxForUsageLocation, getModeForResolutionAtIndex: getModeForResolutionAtIndex2, getSourceFileFromReference, getLibFileFromReference, sourceFileToPackageName, redirectTargetsMap, usesUriStyleNodeCoreModules, resolvedModules, resolvedTypeReferenceDirectiveNames, resolvedLibReferences, getProgramDiagnosticsContainer: () => programDiagnostics, getResolvedModule, getResolvedModuleFromModuleSpecifier, getResolvedTypeReferenceDirective, getResolvedTypeReferenceDirectiveFromTypeReferenceDirective, forEachResolvedModule, forEachResolvedTypeReferenceDirective, getCurrentPackagesMap: () => packageMap, typesPackageExists, packageBundlesTypes, isEmittedFile, getConfigFileParsingDiagnostics: getConfigFileParsingDiagnostics2, getProjectReferences, getResolvedProjectReferences, getRedirectFromSourceFile, getResolvedProjectReferenceByPath, forEachResolvedProjectReference: forEachResolvedProjectReference2, isSourceOfProjectReferenceRedirect, getRedirectFromOutput, getCompilerOptionsForFile, getDefaultResolutionModeForFile: getDefaultResolutionModeForFile2, getEmitModuleFormatOfFile: getEmitModuleFormatOfFile2, getImpliedNodeFormatForEmit: getImpliedNodeFormatForEmit2, shouldTransformImportCall, emitBuildInfo, fileExists, readFile, directoryExists, getSymlinkCache, realpath: (_o = host.realpath) == null ? undefined : _o.bind(host), useCaseSensitiveFileNames: () => host.useCaseSensitiveFileNames(), getCanonicalFileName, getFileIncludeReasons: () => programDiagnostics.getFileReasons(), structureIsReused, writeFile: writeFile2, getGlobalTypingsCacheLocation: maybeBind(host, host.getGlobalTypingsCacheLocation) }; onProgramCreateComplete(); if (!skipVerifyCompilerOptions) { verifyCompilerOptions(); } mark("afterProgram"); measure("Program", "beforeProgram", "afterProgram"); (_p = tracing) == null || _p.pop(); return program; function getResolvedModule(file, moduleName, mode) { var _a2; return (_a2 = resolvedModules == null ? undefined : resolvedModules.get(file.path)) == null ? undefined : _a2.get(moduleName, mode); } function getResolvedModuleFromModuleSpecifier(moduleSpecifier, sourceFile) { sourceFile ?? (sourceFile = getSourceFileOfNode(moduleSpecifier)); Debug.assertIsDefined(sourceFile, "`moduleSpecifier` must have a `SourceFile` ancestor. Use `program.getResolvedModule` instead to provide the containing file and resolution mode."); return getResolvedModule(sourceFile, moduleSpecifier.text, getModeForUsageLocation2(sourceFile, moduleSpecifier)); } function getResolvedTypeReferenceDirective(file, typeDirectiveName, mode) { var _a2; return (_a2 = resolvedTypeReferenceDirectiveNames == null ? undefined : resolvedTypeReferenceDirectiveNames.get(file.path)) == null ? undefined : _a2.get(typeDirectiveName, mode); } function getResolvedTypeReferenceDirectiveFromTypeReferenceDirective(typeRef, sourceFile) { return getResolvedTypeReferenceDirective(sourceFile, typeRef.fileName, getModeForTypeReferenceDirectiveInFile(typeRef, sourceFile)); } function forEachResolvedModule(callback, file) { forEachResolution(resolvedModules, callback, file); } function forEachResolvedTypeReferenceDirective(callback, file) { forEachResolution(resolvedTypeReferenceDirectiveNames, callback, file); } function forEachResolution(resolutionCache, callback, file) { var _a2; if (file) (_a2 = resolutionCache == null ? undefined : resolutionCache.get(file.path)) == null || _a2.forEach((resolution, name, mode) => callback(resolution, name, mode, file.path)); else resolutionCache == null || resolutionCache.forEach((resolutions, filePath) => resolutions.forEach((resolution, name, mode) => callback(resolution, name, mode, filePath))); } function getPackagesMap() { if (packageMap) return packageMap; packageMap = /* @__PURE__ */ new Map; forEachResolvedModule(({ resolvedModule }) => { if (resolvedModule == null ? undefined : resolvedModule.packageId) packageMap.set(resolvedModule.packageId.name, resolvedModule.extension === ".d.ts" || !!packageMap.get(resolvedModule.packageId.name)); }); return packageMap; } function typesPackageExists(packageName) { return getPackagesMap().has(getTypesPackageName(packageName)); } function packageBundlesTypes(packageName) { return !!getPackagesMap().get(packageName); } function addResolutionDiagnostics(resolution) { var _a2; if (!((_a2 = resolution.resolutionDiagnostics) == null ? undefined : _a2.length)) return; programDiagnostics.addFileProcessingDiagnostic({ kind: 2, diagnostics: resolution.resolutionDiagnostics }); } function addResolutionDiagnosticsFromResolutionOrCache(containingFile, name, resolution, mode) { if (host.resolveModuleNameLiterals || !host.resolveModuleNames) return addResolutionDiagnostics(resolution); if (!moduleResolutionCache || isExternalModuleNameRelative(name)) return; const containingFileName = getNormalizedAbsolutePath(containingFile.originalFileName, currentDirectory); const containingDir = getDirectoryPath(containingFileName); const redirectedReference = getRedirectReferenceForResolution(containingFile); const fromCache = moduleResolutionCache.getFromNonRelativeNameCache(name, mode, containingDir, redirectedReference); if (fromCache) addResolutionDiagnostics(fromCache); } function resolveModuleNamesWorker(moduleNames, containingFile, reusedNames) { var _a2, _b2; const containingFileName = getNormalizedAbsolutePath(containingFile.originalFileName, currentDirectory); const redirectedReference = getRedirectReferenceForResolution(containingFile); (_a2 = tracing) == null || _a2.push(tracing.Phase.Program, "resolveModuleNamesWorker", { containingFileName }); mark("beforeResolveModule"); const result = actualResolveModuleNamesWorker(moduleNames, containingFileName, redirectedReference, options, containingFile, reusedNames); mark("afterResolveModule"); measure("ResolveModule", "beforeResolveModule", "afterResolveModule"); (_b2 = tracing) == null || _b2.pop(); return result; } function resolveTypeReferenceDirectiveNamesWorker(typeDirectiveNames, containingFile, reusedNames) { var _a2, _b2; const containingSourceFile = !isString(containingFile) ? containingFile : undefined; const containingFileName = !isString(containingFile) ? getNormalizedAbsolutePath(containingFile.originalFileName, currentDirectory) : containingFile; const redirectedReference = containingSourceFile && getRedirectReferenceForResolution(containingSourceFile); (_a2 = tracing) == null || _a2.push(tracing.Phase.Program, "resolveTypeReferenceDirectiveNamesWorker", { containingFileName }); mark("beforeResolveTypeReference"); const result = actualResolveTypeReferenceDirectiveNamesWorker(typeDirectiveNames, containingFileName, redirectedReference, options, containingSourceFile, reusedNames); mark("afterResolveTypeReference"); measure("ResolveTypeReference", "beforeResolveTypeReference", "afterResolveTypeReference"); (_b2 = tracing) == null || _b2.pop(); return result; } function getRedirectReferenceForResolution(file) { var _a2, _b2; const redirect = getRedirectFromSourceFile(file.originalFileName); if (redirect || !isDeclarationFileName(file.originalFileName)) return redirect == null ? undefined : redirect.resolvedRef; const resultFromDts = (_a2 = getRedirectFromOutput(file.path)) == null ? undefined : _a2.resolvedRef; if (resultFromDts) return resultFromDts; if (!host.realpath || !options.preserveSymlinks || !file.originalFileName.includes(nodeModulesPathPart)) return; const realDeclarationPath = toPath3(host.realpath(file.originalFileName)); return realDeclarationPath === file.path ? undefined : (_b2 = getRedirectFromOutput(realDeclarationPath)) == null ? undefined : _b2.resolvedRef; } function compareDefaultLibFiles(a, b) { return compareValues(getDefaultLibFilePriority(a), getDefaultLibFilePriority(b)); } function getDefaultLibFilePriority(a) { if (containsPath(defaultLibraryPath, a.fileName, false)) { const basename = getBaseFileName(a.fileName); if (basename === "lib.d.ts" || basename === "lib.es6.d.ts") return 0; const name = removeSuffix(removePrefix(basename, "lib."), ".d.ts"); const index = libs.indexOf(name); if (index !== -1) return index + 1; } return libs.length + 2; } function toPath3(fileName) { return toPath(fileName, currentDirectory, getCanonicalFileName); } function getCommonSourceDirectory2() { let commonSourceDirectory = programDiagnostics.getCommonSourceDirectory(); if (commonSourceDirectory !== undefined) { return commonSourceDirectory; } const emittedFiles = filter(files, (file) => sourceFileMayBeEmitted(file, program)); commonSourceDirectory = getCommonSourceDirectory(options, () => mapDefined(emittedFiles, (file) => file.isDeclarationFile ? undefined : file.fileName), currentDirectory, getCanonicalFileName, (commonSourceDirectory2) => checkSourceFilesBelongToPath(emittedFiles, commonSourceDirectory2)); programDiagnostics.setCommonSourceDirectory(commonSourceDirectory); return commonSourceDirectory; } function getClassifiableNames() { var _a2; if (!classifiableNames) { getTypeChecker(); classifiableNames = /* @__PURE__ */ new Set; for (const sourceFile of files) { (_a2 = sourceFile.classifiableNames) == null || _a2.forEach((value) => classifiableNames.add(value)); } } return classifiableNames; } function resolveModuleNamesReusingOldState(moduleNames, containingFile) { return resolveNamesReusingOldState({ entries: moduleNames, containingFile, containingSourceFile: containingFile, redirectedReference: getRedirectReferenceForResolution(containingFile), nameAndModeGetter: moduleResolutionNameAndModeGetter, resolutionWorker: resolveModuleNamesWorker, getResolutionFromOldProgram: (name, mode) => oldProgram == null ? undefined : oldProgram.getResolvedModule(containingFile, name, mode), getResolved: getResolvedModuleFromResolution, canReuseResolutionsInFile: () => containingFile === (oldProgram == null ? undefined : oldProgram.getSourceFile(containingFile.fileName)) && !hasInvalidatedResolutions(containingFile.path), resolveToOwnAmbientModule: true }); } function resolveTypeReferenceDirectiveNamesReusingOldState(typeDirectiveNames, containingFile) { const containingSourceFile = !isString(containingFile) ? containingFile : undefined; return resolveNamesReusingOldState({ entries: typeDirectiveNames, containingFile, containingSourceFile, redirectedReference: containingSourceFile && getRedirectReferenceForResolution(containingSourceFile), nameAndModeGetter: typeReferenceResolutionNameAndModeGetter, resolutionWorker: resolveTypeReferenceDirectiveNamesWorker, getResolutionFromOldProgram: (name, mode) => { var _a2; return containingSourceFile ? oldProgram == null ? undefined : oldProgram.getResolvedTypeReferenceDirective(containingSourceFile, name, mode) : (_a2 = oldProgram == null ? undefined : oldProgram.getAutomaticTypeDirectiveResolutions()) == null ? undefined : _a2.get(name, mode); }, getResolved: getResolvedTypeReferenceDirectiveFromResolution, canReuseResolutionsInFile: () => containingSourceFile ? containingSourceFile === (oldProgram == null ? undefined : oldProgram.getSourceFile(containingSourceFile.fileName)) && !hasInvalidatedResolutions(containingSourceFile.path) : !hasInvalidatedResolutions(toPath3(containingFile)) }); } function resolveNamesReusingOldState({ entries, containingFile, containingSourceFile, redirectedReference, nameAndModeGetter, resolutionWorker, getResolutionFromOldProgram, getResolved, canReuseResolutionsInFile, resolveToOwnAmbientModule }) { if (!entries.length) return emptyArray; if (structureIsReused === 0 && (!resolveToOwnAmbientModule || !containingSourceFile.ambientModuleNames.length)) { return resolutionWorker(entries, containingFile, undefined); } let unknownEntries; let unknownEntryIndices; let result; let reusedNames; const reuseResolutions = canReuseResolutionsInFile(); for (let i = 0;i < entries.length; i++) { const entry = entries[i]; if (reuseResolutions) { const name = nameAndModeGetter.getName(entry); const mode = nameAndModeGetter.getMode(entry, containingSourceFile, (redirectedReference == null ? undefined : redirectedReference.commandLine.options) ?? options); const oldResolution = getResolutionFromOldProgram(name, mode); const oldResolved = oldResolution && getResolved(oldResolution); if (oldResolved) { if (isTraceEnabled(options, host)) { trace(host, resolutionWorker === resolveModuleNamesWorker ? oldResolved.packageId ? Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2_with_Package_ID_3 : Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2 : oldResolved.packageId ? Diagnostics.Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_successfully_resolved_to_2_with_Package_ID_3 : Diagnostics.Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_successfully_resolved_to_2, name, containingSourceFile ? getNormalizedAbsolutePath(containingSourceFile.originalFileName, currentDirectory) : containingFile, oldResolved.resolvedFileName, oldResolved.packageId && packageIdToString(oldResolved.packageId)); } (result ?? (result = new Array(entries.length)))[i] = oldResolution; (reusedNames ?? (reusedNames = [])).push(entry); continue; } } if (resolveToOwnAmbientModule) { const name = nameAndModeGetter.getName(entry); if (contains(containingSourceFile.ambientModuleNames, name)) { if (isTraceEnabled(options, host)) { trace(host, Diagnostics.Module_0_was_resolved_as_locally_declared_ambient_module_in_file_1, name, getNormalizedAbsolutePath(containingSourceFile.originalFileName, currentDirectory)); } (result ?? (result = new Array(entries.length)))[i] = emptyResolution; continue; } } (unknownEntries ?? (unknownEntries = [])).push(entry); (unknownEntryIndices ?? (unknownEntryIndices = [])).push(i); } if (!unknownEntries) return result; const resolutions = resolutionWorker(unknownEntries, containingFile, reusedNames); if (!result) return resolutions; resolutions.forEach((resolution, index) => result[unknownEntryIndices[index]] = resolution); return result; } function canReuseProjectReferences() { return !forEachProjectReference(oldProgram.getProjectReferences(), oldProgram.getResolvedProjectReferences(), (oldResolvedRef, parent2, index) => { const newRef = (parent2 ? parent2.commandLine.projectReferences : projectReferences)[index]; const newResolvedRef = parseProjectReferenceConfigFile(newRef); if (oldResolvedRef) { return !newResolvedRef || newResolvedRef.sourceFile !== oldResolvedRef.sourceFile || !arrayIsEqualTo(oldResolvedRef.commandLine.fileNames, newResolvedRef.commandLine.fileNames); } else { return newResolvedRef !== undefined; } }, (oldProjectReferences, parent2) => { const newReferences = parent2 ? getResolvedProjectReferenceByPath(parent2.sourceFile.path).commandLine.projectReferences : projectReferences; return !arrayIsEqualTo(oldProjectReferences, newReferences, projectReferenceIsEqualTo); }); } function tryReuseStructureFromOldProgram() { var _a2; if (!oldProgram) { return 0; } const oldOptions = oldProgram.getCompilerOptions(); if (changesAffectModuleResolution(oldOptions, options)) { return 0; } const oldRootNames = oldProgram.getRootFileNames(); if (!arrayIsEqualTo(oldRootNames, rootNames)) { return 0; } if (!canReuseProjectReferences()) { return 0; } if (projectReferences) { resolvedProjectReferences = projectReferences.map(parseProjectReferenceConfigFile); } const newSourceFiles = []; const modifiedSourceFiles = []; structureIsReused = 2; if (forEachEntry(oldProgram.getMissingFilePaths(), (missingFileName) => host.fileExists(missingFileName))) { return 0; } const oldSourceFiles = oldProgram.getSourceFiles(); let SeenPackageName; ((SeenPackageName2) => { SeenPackageName2[SeenPackageName2["Exists"] = 0] = "Exists"; SeenPackageName2[SeenPackageName2["Modified"] = 1] = "Modified"; })(SeenPackageName || (SeenPackageName = {})); const seenPackageNames = /* @__PURE__ */ new Map; for (const oldSourceFile of oldSourceFiles) { const sourceFileOptions = getCreateSourceFileOptions(oldSourceFile.fileName, moduleResolutionCache, host, options); let newSourceFile = host.getSourceFileByPath ? host.getSourceFileByPath(oldSourceFile.fileName, oldSourceFile.resolvedPath, sourceFileOptions, undefined, shouldCreateNewSourceFile) : host.getSourceFile(oldSourceFile.fileName, sourceFileOptions, undefined, shouldCreateNewSourceFile); if (!newSourceFile) { return 0; } newSourceFile.packageJsonLocations = ((_a2 = sourceFileOptions.packageJsonLocations) == null ? undefined : _a2.length) ? sourceFileOptions.packageJsonLocations : undefined; newSourceFile.packageJsonScope = sourceFileOptions.packageJsonScope; Debug.assert(!newSourceFile.redirectInfo, "Host should not return a redirect source file from `getSourceFile`"); let fileChanged; if (oldSourceFile.redirectInfo) { if (newSourceFile !== oldSourceFile.redirectInfo.unredirected) { return 0; } fileChanged = false; newSourceFile = oldSourceFile; } else if (oldProgram.redirectTargetsMap.has(oldSourceFile.path)) { if (newSourceFile !== oldSourceFile) { return 0; } fileChanged = false; } else { fileChanged = newSourceFile !== oldSourceFile; } newSourceFile.path = oldSourceFile.path; newSourceFile.originalFileName = oldSourceFile.originalFileName; newSourceFile.resolvedPath = oldSourceFile.resolvedPath; newSourceFile.fileName = oldSourceFile.fileName; const packageName = oldProgram.sourceFileToPackageName.get(oldSourceFile.path); if (packageName !== undefined) { const prevKind = seenPackageNames.get(packageName); const newKind = fileChanged ? 1 : 0; if (prevKind !== undefined && newKind === 1 || prevKind === 1) { return 0; } seenPackageNames.set(packageName, newKind); } if (fileChanged) { if (oldSourceFile.impliedNodeFormat !== newSourceFile.impliedNodeFormat) { structureIsReused = 1; } else if (!arrayIsEqualTo(oldSourceFile.libReferenceDirectives, newSourceFile.libReferenceDirectives, fileReferenceIsEqualTo)) { structureIsReused = 1; } else if (!arrayIsEqualTo(oldSourceFile.referencedFiles, newSourceFile.referencedFiles, fileReferenceIsEqualTo)) { structureIsReused = 1; } else { collectExternalModuleReferences(newSourceFile); if (!arrayIsEqualTo(oldSourceFile.imports, newSourceFile.imports, moduleNameIsEqualTo)) { structureIsReused = 1; } else if (!arrayIsEqualTo(oldSourceFile.moduleAugmentations, newSourceFile.moduleAugmentations, moduleNameIsEqualTo)) { structureIsReused = 1; } else if ((oldSourceFile.flags & 12582912) !== (newSourceFile.flags & 12582912)) { structureIsReused = 1; } else if (!arrayIsEqualTo(oldSourceFile.typeReferenceDirectives, newSourceFile.typeReferenceDirectives, fileReferenceIsEqualTo)) { structureIsReused = 1; } } modifiedSourceFiles.push(newSourceFile); } else if (hasInvalidatedResolutions(oldSourceFile.path)) { structureIsReused = 1; modifiedSourceFiles.push(newSourceFile); } newSourceFiles.push(newSourceFile); } if (structureIsReused !== 2) { return structureIsReused; } for (const newSourceFile of modifiedSourceFiles) { const moduleNames = getModuleNames(newSourceFile); const resolutions = resolveModuleNamesReusingOldState(moduleNames, newSourceFile); (resolvedModulesProcessing ?? (resolvedModulesProcessing = /* @__PURE__ */ new Map)).set(newSourceFile.path, resolutions); const optionsForFile = getCompilerOptionsForFile(newSourceFile); const resolutionsChanged = hasChangesInResolutions(moduleNames, resolutions, (name) => oldProgram.getResolvedModule(newSourceFile, name.text, getModeForUsageLocationWorker(newSourceFile, name, optionsForFile)), moduleResolutionIsEqualTo); if (resolutionsChanged) structureIsReused = 1; const typesReferenceDirectives = newSourceFile.typeReferenceDirectives; const typeReferenceResolutions = resolveTypeReferenceDirectiveNamesReusingOldState(typesReferenceDirectives, newSourceFile); (resolvedTypeReferenceDirectiveNamesProcessing ?? (resolvedTypeReferenceDirectiveNamesProcessing = /* @__PURE__ */ new Map)).set(newSourceFile.path, typeReferenceResolutions); const typeReferenceResolutionsChanged = hasChangesInResolutions(typesReferenceDirectives, typeReferenceResolutions, (name) => oldProgram.getResolvedTypeReferenceDirective(newSourceFile, getTypeReferenceResolutionName(name), getModeForTypeReferenceDirectiveInFile(name, newSourceFile)), typeDirectiveIsEqualTo); if (typeReferenceResolutionsChanged) structureIsReused = 1; } if (structureIsReused !== 2) { return structureIsReused; } if (changesAffectingProgramStructure(oldOptions, options)) { return 1; } if (oldProgram.resolvedLibReferences && forEachEntry(oldProgram.resolvedLibReferences, (resolution, libFileName) => pathForLibFileWorker(libFileName).actual !== resolution.actual)) { return 1; } if (host.hasChangedAutomaticTypeDirectiveNames) { if (host.hasChangedAutomaticTypeDirectiveNames()) return 1; } else { automaticTypeDirectiveNames = getAutomaticTypeDirectiveNames(options, host); if (!arrayIsEqualTo(oldProgram.getAutomaticTypeDirectiveNames(), automaticTypeDirectiveNames)) return 1; } missingFileNames = oldProgram.getMissingFilePaths(); Debug.assert(newSourceFiles.length === oldProgram.getSourceFiles().length); for (const newSourceFile of newSourceFiles) { filesByName.set(newSourceFile.path, newSourceFile); if (oldProgram.isSourceFileDefaultLibrary(newSourceFile)) { libFiles.add(newSourceFile.path); } } const oldFilesByNameMap = oldProgram.getFilesByNameMap(); oldFilesByNameMap.forEach((oldFile, path) => { if (!oldFile) { filesByName.set(path, oldFile); return; } if (oldFile.path === path) { if (oldProgram.isSourceFileFromExternalLibrary(oldFile)) { sourceFilesFoundSearchingNodeModules.set(oldFile.path, true); } return; } filesByName.set(path, filesByName.get(oldFile.path)); }); const isConfigIdentical = oldOptions.configFile && oldOptions.configFile === options.configFile || !oldOptions.configFile && !options.configFile && !optionsHaveChanges(oldOptions, options, optionDeclarations); programDiagnostics.reuseStateFromOldProgram(oldProgram.getProgramDiagnosticsContainer(), isConfigIdentical); skipVerifyCompilerOptions = isConfigIdentical; files = newSourceFiles; automaticTypeDirectiveNames = oldProgram.getAutomaticTypeDirectiveNames(); automaticTypeDirectiveResolutions = oldProgram.getAutomaticTypeDirectiveResolutions(); sourceFileToPackageName = oldProgram.sourceFileToPackageName; redirectTargetsMap = oldProgram.redirectTargetsMap; usesUriStyleNodeCoreModules = oldProgram.usesUriStyleNodeCoreModules; resolvedModules = oldProgram.resolvedModules; resolvedTypeReferenceDirectiveNames = oldProgram.resolvedTypeReferenceDirectiveNames; resolvedLibReferences = oldProgram.resolvedLibReferences; packageMap = oldProgram.getCurrentPackagesMap(); return 2; } function getEmitHost(writeFileCallback) { return { getCanonicalFileName, getCommonSourceDirectory: program.getCommonSourceDirectory, getCompilerOptions: program.getCompilerOptions, getCurrentDirectory: () => currentDirectory, getSourceFile: program.getSourceFile, getSourceFileByPath: program.getSourceFileByPath, getSourceFiles: program.getSourceFiles, isSourceFileFromExternalLibrary, getRedirectFromSourceFile, isSourceOfProjectReferenceRedirect, getSymlinkCache, writeFile: writeFileCallback || writeFile2, isEmitBlocked, shouldTransformImportCall, getEmitModuleFormatOfFile: getEmitModuleFormatOfFile2, getDefaultResolutionModeForFile: getDefaultResolutionModeForFile2, getModeForResolutionAtIndex: getModeForResolutionAtIndex2, readFile: (f) => host.readFile(f), fileExists: (f) => { const path = toPath3(f); if (getSourceFileByPath(path)) return true; if (missingFileNames.has(path)) return false; return host.fileExists(f); }, realpath: maybeBind(host, host.realpath), useCaseSensitiveFileNames: () => host.useCaseSensitiveFileNames(), getBuildInfo: () => { var _a2; return (_a2 = program.getBuildInfo) == null ? undefined : _a2.call(program); }, getSourceFileFromReference: (file, ref) => program.getSourceFileFromReference(file, ref), redirectTargetsMap, getFileIncludeReasons: program.getFileIncludeReasons, createHash: maybeBind(host, host.createHash), getModuleResolutionCache: () => program.getModuleResolutionCache(), trace: maybeBind(host, host.trace), getGlobalTypingsCacheLocation: program.getGlobalTypingsCacheLocation }; } function writeFile2(fileName, text, writeByteOrderMark, onError, sourceFiles, data) { host.writeFile(fileName, text, writeByteOrderMark, onError, sourceFiles, data); } function emitBuildInfo(writeFileCallback) { var _a2, _b2; (_a2 = tracing) == null || _a2.push(tracing.Phase.Emit, "emitBuildInfo", {}, true); mark("beforeEmit"); const emitResult = emitFiles(notImplementedResolver, getEmitHost(writeFileCallback), undefined, noTransformers, false, true); mark("afterEmit"); measure("Emit", "beforeEmit", "afterEmit"); (_b2 = tracing) == null || _b2.pop(); return emitResult; } function getResolvedProjectReferences() { return resolvedProjectReferences; } function getProjectReferences() { return projectReferences; } function isSourceFileFromExternalLibrary(file) { return !!sourceFilesFoundSearchingNodeModules.get(file.path); } function isSourceFileDefaultLibrary(file) { return libFiles.has(file.path); } function getTypeChecker() { return typeChecker || (typeChecker = createTypeChecker(program)); } function emit(sourceFile, writeFileCallback, cancellationToken, emitOnly, transformers, forceDtsEmit, skipBuildInfo) { var _a2, _b2; (_a2 = tracing) == null || _a2.push(tracing.Phase.Emit, "emit", { path: sourceFile == null ? undefined : sourceFile.path }, true); const result = runWithCancellationToken(() => emitWorker(program, sourceFile, writeFileCallback, cancellationToken, emitOnly, transformers, forceDtsEmit, skipBuildInfo)); (_b2 = tracing) == null || _b2.pop(); return result; } function isEmitBlocked(emitFileName) { return hasEmitBlockingDiagnostics.has(toPath3(emitFileName)); } function emitWorker(program2, sourceFile, writeFileCallback, cancellationToken, emitOnly, customTransformers, forceDtsEmit, skipBuildInfo) { if (!forceDtsEmit) { const result = handleNoEmitOptions(program2, sourceFile, writeFileCallback, cancellationToken); if (result) return result; } const typeChecker2 = getTypeChecker(); const emitResolver = typeChecker2.getEmitResolver(options.outFile ? undefined : sourceFile, cancellationToken, emitResolverSkipsTypeChecking(emitOnly, forceDtsEmit)); mark("beforeEmit"); const emitResult = typeChecker2.runWithCancellationToken(cancellationToken, () => emitFiles(emitResolver, getEmitHost(writeFileCallback), sourceFile, getTransformers(options, customTransformers, emitOnly), emitOnly, false, forceDtsEmit, skipBuildInfo)); mark("afterEmit"); measure("Emit", "beforeEmit", "afterEmit"); return emitResult; } function getSourceFile(fileName) { return getSourceFileByPath(toPath3(fileName)); } function getSourceFileByPath(path) { return filesByName.get(path) || undefined; } function getDiagnosticsHelper(sourceFile, getDiagnostics2, cancellationToken) { if (sourceFile) { return sortAndDeduplicateDiagnostics(getDiagnostics2(sourceFile, cancellationToken)); } return sortAndDeduplicateDiagnostics(flatMap(program.getSourceFiles(), (sourceFile2) => { if (cancellationToken) { cancellationToken.throwIfCancellationRequested(); } return getDiagnostics2(sourceFile2, cancellationToken); })); } function getSyntacticDiagnostics(sourceFile, cancellationToken) { return getDiagnosticsHelper(sourceFile, getSyntacticDiagnosticsForFile, cancellationToken); } function getSemanticDiagnostics(sourceFile, cancellationToken, nodesToCheck) { return getDiagnosticsHelper(sourceFile, (sourceFile2, cancellationToken2) => getSemanticDiagnosticsForFile(sourceFile2, cancellationToken2, nodesToCheck), cancellationToken); } function getCachedSemanticDiagnostics(sourceFile) { return cachedBindAndCheckDiagnosticsForFile == null ? undefined : cachedBindAndCheckDiagnosticsForFile.get(sourceFile.path); } function getBindAndCheckDiagnostics(sourceFile, cancellationToken) { return getBindAndCheckDiagnosticsForFile(sourceFile, cancellationToken, undefined); } function getProgramDiagnostics(sourceFile) { var _a2; if (skipTypeChecking(sourceFile, options, program)) { return emptyArray; } const programDiagnosticsInFile = programDiagnostics.getCombinedDiagnostics(program).getDiagnostics(sourceFile.fileName); if (!((_a2 = sourceFile.commentDirectives) == null ? undefined : _a2.length)) { return programDiagnosticsInFile; } return getDiagnosticsWithPrecedingDirectives(sourceFile, sourceFile.commentDirectives, programDiagnosticsInFile).diagnostics; } function getDeclarationDiagnostics2(sourceFile, cancellationToken) { return getDiagnosticsHelper(sourceFile, getDeclarationDiagnosticsForFile, cancellationToken); } function getSyntacticDiagnosticsForFile(sourceFile) { if (isSourceFileJS(sourceFile)) { if (!sourceFile.additionalSyntacticDiagnostics) { sourceFile.additionalSyntacticDiagnostics = getJSSyntacticDiagnosticsForFile(sourceFile); } return concatenate(sourceFile.additionalSyntacticDiagnostics, sourceFile.parseDiagnostics); } return sourceFile.parseDiagnostics; } function runWithCancellationToken(func) { try { return func(); } catch (e) { if (e instanceof OperationCanceledException) { typeChecker = undefined; } throw e; } } function getSemanticDiagnosticsForFile(sourceFile, cancellationToken, nodesToCheck) { return concatenate(filterSemanticDiagnostics(getBindAndCheckDiagnosticsForFile(sourceFile, cancellationToken, nodesToCheck), options), getProgramDiagnostics(sourceFile)); } function getBindAndCheckDiagnosticsForFile(sourceFile, cancellationToken, nodesToCheck) { if (nodesToCheck) { return getBindAndCheckDiagnosticsForFileNoCache(sourceFile, cancellationToken, nodesToCheck); } let result = cachedBindAndCheckDiagnosticsForFile == null ? undefined : cachedBindAndCheckDiagnosticsForFile.get(sourceFile.path); if (!result) { (cachedBindAndCheckDiagnosticsForFile ?? (cachedBindAndCheckDiagnosticsForFile = /* @__PURE__ */ new Map)).set(sourceFile.path, result = getBindAndCheckDiagnosticsForFileNoCache(sourceFile, cancellationToken)); } return result; } function getBindAndCheckDiagnosticsForFileNoCache(sourceFile, cancellationToken, nodesToCheck) { return runWithCancellationToken(() => { if (skipTypeChecking(sourceFile, options, program)) { return emptyArray; } const typeChecker2 = getTypeChecker(); Debug.assert(!!sourceFile.bindDiagnostics); const isJs = sourceFile.scriptKind === 1 || sourceFile.scriptKind === 2; const isPlainJs = isPlainJsFile(sourceFile, options.checkJs); const isCheckJs = isJs && isCheckJsEnabledForFile(sourceFile, options); let bindDiagnostics = sourceFile.bindDiagnostics; let checkDiagnostics = typeChecker2.getDiagnostics(sourceFile, cancellationToken, nodesToCheck); if (isPlainJs) { bindDiagnostics = filter(bindDiagnostics, (d) => plainJSErrors.has(d.code)); checkDiagnostics = filter(checkDiagnostics, (d) => plainJSErrors.has(d.code)); } return getMergedBindAndCheckDiagnostics(sourceFile, !isPlainJs, !!nodesToCheck, bindDiagnostics, checkDiagnostics, isCheckJs ? sourceFile.jsDocDiagnostics : undefined); }); } function getMergedBindAndCheckDiagnostics(sourceFile, includeBindAndCheckDiagnostics, partialCheck, ...allDiagnostics) { var _a2; const flatDiagnostics = flatten(allDiagnostics); if (!includeBindAndCheckDiagnostics || !((_a2 = sourceFile.commentDirectives) == null ? undefined : _a2.length)) { return flatDiagnostics; } const { diagnostics, directives } = getDiagnosticsWithPrecedingDirectives(sourceFile, sourceFile.commentDirectives, flatDiagnostics); if (partialCheck) { return diagnostics; } for (const errorExpectation of directives.getUnusedExpectations()) { diagnostics.push(createDiagnosticForRange(sourceFile, errorExpectation.range, Diagnostics.Unused_ts_expect_error_directive)); } return diagnostics; } function getDiagnosticsWithPrecedingDirectives(sourceFile, commentDirectives, flatDiagnostics) { const directives = createCommentDirectivesMap(sourceFile, commentDirectives); const diagnostics = flatDiagnostics.filter((diagnostic) => markPrecedingCommentDirectiveLine(diagnostic, directives) === -1); return { diagnostics, directives }; } function getSuggestionDiagnostics(sourceFile, cancellationToken) { return runWithCancellationToken(() => { return getTypeChecker().getSuggestionDiagnostics(sourceFile, cancellationToken); }); } function markPrecedingCommentDirectiveLine(diagnostic, directives) { const { file, start } = diagnostic; if (!file) { return -1; } const lineStarts = getLineStarts(file); let line = computeLineAndCharacterOfPosition(lineStarts, start).line - 1; while (line >= 0) { if (directives.markUsed(line)) { return line; } const lineText = file.text.slice(lineStarts[line], lineStarts[line + 1]).trim(); if (lineText !== "" && !/^\s*\/\/.*$/.test(lineText)) { return -1; } line--; } return -1; } function getJSSyntacticDiagnosticsForFile(sourceFile) { return runWithCancellationToken(() => { const diagnostics = []; walk2(sourceFile, sourceFile); forEachChildRecursively(sourceFile, walk2, walkArray); return diagnostics; function walk2(node, parent2) { switch (parent2.kind) { case 170: case 173: case 175: if (parent2.questionToken === node) { diagnostics.push(createDiagnosticForNode2(node, Diagnostics.The_0_modifier_can_only_be_used_in_TypeScript_files, "?")); return "skip"; } case 174: case 177: case 178: case 179: case 219: case 263: case 220: case 261: if (parent2.type === node) { diagnostics.push(createDiagnosticForNode2(node, Diagnostics.Type_annotations_can_only_be_used_in_TypeScript_files)); return "skip"; } } switch (node.kind) { case 274: if (node.isTypeOnly) { diagnostics.push(createDiagnosticForNode2(parent2, Diagnostics._0_declarations_can_only_be_used_in_TypeScript_files, "import type")); return "skip"; } break; case 279: if (node.isTypeOnly) { diagnostics.push(createDiagnosticForNode2(node, Diagnostics._0_declarations_can_only_be_used_in_TypeScript_files, "export type")); return "skip"; } break; case 277: case 282: if (node.isTypeOnly) { diagnostics.push(createDiagnosticForNode2(node, Diagnostics._0_declarations_can_only_be_used_in_TypeScript_files, isImportSpecifier(node) ? "import...type" : "export...type")); return "skip"; } break; case 272: diagnostics.push(createDiagnosticForNode2(node, Diagnostics.import_can_only_be_used_in_TypeScript_files)); return "skip"; case 278: if (node.isExportEquals) { diagnostics.push(createDiagnosticForNode2(node, Diagnostics.export_can_only_be_used_in_TypeScript_files)); return "skip"; } break; case 299: const heritageClause = node; if (heritageClause.token === 119) { diagnostics.push(createDiagnosticForNode2(node, Diagnostics.implements_clauses_can_only_be_used_in_TypeScript_files)); return "skip"; } break; case 265: const interfaceKeyword = tokenToString(120); Debug.assertIsDefined(interfaceKeyword); diagnostics.push(createDiagnosticForNode2(node, Diagnostics._0_declarations_can_only_be_used_in_TypeScript_files, interfaceKeyword)); return "skip"; case 268: const moduleKeyword = node.flags & 32 ? tokenToString(145) : tokenToString(144); Debug.assertIsDefined(moduleKeyword); diagnostics.push(createDiagnosticForNode2(node, Diagnostics._0_declarations_can_only_be_used_in_TypeScript_files, moduleKeyword)); return "skip"; case 266: diagnostics.push(createDiagnosticForNode2(node, Diagnostics.Type_aliases_can_only_be_used_in_TypeScript_files)); return "skip"; case 177: case 175: case 263: if (!node.body) { diagnostics.push(createDiagnosticForNode2(node, Diagnostics.Signature_declarations_can_only_be_used_in_TypeScript_files)); return "skip"; } return; case 267: const enumKeyword = Debug.checkDefined(tokenToString(94)); diagnostics.push(createDiagnosticForNode2(node, Diagnostics._0_declarations_can_only_be_used_in_TypeScript_files, enumKeyword)); return "skip"; case 236: diagnostics.push(createDiagnosticForNode2(node, Diagnostics.Non_null_assertions_can_only_be_used_in_TypeScript_files)); return "skip"; case 235: diagnostics.push(createDiagnosticForNode2(node.type, Diagnostics.Type_assertion_expressions_can_only_be_used_in_TypeScript_files)); return "skip"; case 239: diagnostics.push(createDiagnosticForNode2(node.type, Diagnostics.Type_satisfaction_expressions_can_only_be_used_in_TypeScript_files)); return "skip"; case 217: Debug.fail(); } } function walkArray(nodes, parent2) { if (canHaveIllegalDecorators(parent2)) { const decorator = find(parent2.modifiers, isDecorator); if (decorator) { diagnostics.push(createDiagnosticForNode2(decorator, Diagnostics.Decorators_are_not_valid_here)); } } else if (canHaveDecorators(parent2) && parent2.modifiers) { const decoratorIndex = findIndex(parent2.modifiers, isDecorator); if (decoratorIndex >= 0) { if (isParameter(parent2) && !options.experimentalDecorators) { diagnostics.push(createDiagnosticForNode2(parent2.modifiers[decoratorIndex], Diagnostics.Decorators_are_not_valid_here)); } else if (isClassDeclaration(parent2)) { const exportIndex = findIndex(parent2.modifiers, isExportModifier); if (exportIndex >= 0) { const defaultIndex = findIndex(parent2.modifiers, isDefaultModifier); if (decoratorIndex > exportIndex && defaultIndex >= 0 && decoratorIndex < defaultIndex) { diagnostics.push(createDiagnosticForNode2(parent2.modifiers[decoratorIndex], Diagnostics.Decorators_are_not_valid_here)); } else if (exportIndex >= 0 && decoratorIndex < exportIndex) { const trailingDecoratorIndex = findIndex(parent2.modifiers, isDecorator, exportIndex); if (trailingDecoratorIndex >= 0) { diagnostics.push(addRelatedInfo(createDiagnosticForNode2(parent2.modifiers[trailingDecoratorIndex], Diagnostics.Decorators_may_not_appear_after_export_or_export_default_if_they_also_appear_before_export), createDiagnosticForNode2(parent2.modifiers[decoratorIndex], Diagnostics.Decorator_used_before_export_here))); } } } } } } switch (parent2.kind) { case 264: case 232: case 175: case 177: case 178: case 179: case 219: case 263: case 220: if (nodes === parent2.typeParameters) { diagnostics.push(createDiagnosticForNodeArray2(nodes, Diagnostics.Type_parameter_declarations_can_only_be_used_in_TypeScript_files)); return "skip"; } case 244: if (nodes === parent2.modifiers) { checkModifiers(parent2.modifiers, parent2.kind === 244); return "skip"; } break; case 173: if (nodes === parent2.modifiers) { for (const modifier of nodes) { if (isModifier(modifier) && modifier.kind !== 126 && modifier.kind !== 129) { diagnostics.push(createDiagnosticForNode2(modifier, Diagnostics.The_0_modifier_can_only_be_used_in_TypeScript_files, tokenToString(modifier.kind))); } } return "skip"; } break; case 170: if (nodes === parent2.modifiers && some(nodes, isModifier)) { diagnostics.push(createDiagnosticForNodeArray2(nodes, Diagnostics.Parameter_modifiers_can_only_be_used_in_TypeScript_files)); return "skip"; } break; case 214: case 215: case 234: case 286: case 287: case 216: if (nodes === parent2.typeArguments) { diagnostics.push(createDiagnosticForNodeArray2(nodes, Diagnostics.Type_arguments_can_only_be_used_in_TypeScript_files)); return "skip"; } break; } } function checkModifiers(modifiers, isConstValid) { for (const modifier of modifiers) { switch (modifier.kind) { case 87: if (isConstValid) { continue; } case 125: case 123: case 124: case 148: case 138: case 128: case 164: case 103: case 147: diagnostics.push(createDiagnosticForNode2(modifier, Diagnostics.The_0_modifier_can_only_be_used_in_TypeScript_files, tokenToString(modifier.kind))); break; case 126: case 95: case 90: case 129: } } } function createDiagnosticForNodeArray2(nodes, message, ...args) { const start = nodes.pos; return createFileDiagnostic(sourceFile, start, nodes.end - start, message, ...args); } function createDiagnosticForNode2(node, message, ...args) { return createDiagnosticForNodeInSourceFile(sourceFile, node, message, ...args); } }); } function getDeclarationDiagnosticsWorker(sourceFile, cancellationToken) { let result = cachedDeclarationDiagnosticsForFile == null ? undefined : cachedDeclarationDiagnosticsForFile.get(sourceFile.path); if (!result) { (cachedDeclarationDiagnosticsForFile ?? (cachedDeclarationDiagnosticsForFile = /* @__PURE__ */ new Map)).set(sourceFile.path, result = getDeclarationDiagnosticsForFileNoCache(sourceFile, cancellationToken)); } return result; } function getDeclarationDiagnosticsForFileNoCache(sourceFile, cancellationToken) { return runWithCancellationToken(() => { const resolver = getTypeChecker().getEmitResolver(sourceFile, cancellationToken); return getDeclarationDiagnostics(getEmitHost(noop), resolver, sourceFile) || emptyArray; }); } function getDeclarationDiagnosticsForFile(sourceFile, cancellationToken) { return sourceFile.isDeclarationFile ? emptyArray : getDeclarationDiagnosticsWorker(sourceFile, cancellationToken); } function getOptionsDiagnostics() { return sortAndDeduplicateDiagnostics(concatenate(programDiagnostics.getCombinedDiagnostics(program).getGlobalDiagnostics(), getOptionsDiagnosticsOfConfigFile())); } function getOptionsDiagnosticsOfConfigFile() { if (!options.configFile) return emptyArray; let diagnostics = programDiagnostics.getCombinedDiagnostics(program).getDiagnostics(options.configFile.fileName); forEachResolvedProjectReference2((resolvedRef) => { diagnostics = concatenate(diagnostics, programDiagnostics.getCombinedDiagnostics(program).getDiagnostics(resolvedRef.sourceFile.fileName)); }); return diagnostics; } function getGlobalDiagnostics() { return rootNames.length ? sortAndDeduplicateDiagnostics(getTypeChecker().getGlobalDiagnostics().slice()) : emptyArray; } function getConfigFileParsingDiagnostics2() { return configFileParsingDiagnostics || emptyArray; } function processRootFile(fileName, isDefaultLib, reason) { processSourceFile(normalizePath(fileName), isDefaultLib, undefined, reason); } function fileReferenceIsEqualTo(a, b) { return a.fileName === b.fileName; } function moduleNameIsEqualTo(a, b) { return a.kind === 80 ? b.kind === 80 && a.escapedText === b.escapedText : b.kind === 11 && a.text === b.text; } function createSyntheticImport(text, file) { const externalHelpersModuleReference = factory.createStringLiteral(text); const importDecl = factory.createImportDeclaration(undefined, undefined, externalHelpersModuleReference); addInternalEmitFlags(importDecl, 2); setParent(externalHelpersModuleReference, importDecl); setParent(importDecl, file); externalHelpersModuleReference.flags &= ~16; importDecl.flags &= ~16; return externalHelpersModuleReference; } function collectExternalModuleReferences(file) { if (file.imports) { return; } const isJavaScriptFile = isSourceFileJS(file); const isExternalModuleFile = isExternalModule(file); let imports; let moduleAugmentations; let ambientModules; if (isJavaScriptFile || !file.isDeclarationFile && (getIsolatedModules(options) || isExternalModule(file))) { if (options.importHelpers) { imports = [createSyntheticImport(externalHelpersModuleNameText, file)]; } const jsxImport = getJSXRuntimeImport(getJSXImplicitImportBase(options, file), options); if (jsxImport) { (imports || (imports = [])).push(createSyntheticImport(jsxImport, file)); } } for (const node of file.statements) { collectModuleReferences(node, false); } if (file.flags & 4194304 || isJavaScriptFile) { forEachDynamicImportOrRequireCall(file, true, true, (node, moduleSpecifier) => { setParentRecursive(node, false); imports = append(imports, moduleSpecifier); }); } file.imports = imports || emptyArray; file.moduleAugmentations = moduleAugmentations || emptyArray; file.ambientModuleNames = ambientModules || emptyArray; return; function collectModuleReferences(node, inAmbientModule) { if (isAnyImportOrReExport(node)) { const moduleNameExpr = getExternalModuleName(node); if (moduleNameExpr && isStringLiteral(moduleNameExpr) && moduleNameExpr.text && (!inAmbientModule || !isExternalModuleNameRelative(moduleNameExpr.text))) { setParentRecursive(node, false); imports = append(imports, moduleNameExpr); if (!usesUriStyleNodeCoreModules && currentNodeModulesDepth === 0 && !file.isDeclarationFile) { if (startsWith(moduleNameExpr.text, "node:") && !exclusivelyPrefixedNodeCoreModules.has(moduleNameExpr.text)) { usesUriStyleNodeCoreModules = true; } else if (usesUriStyleNodeCoreModules === undefined && unprefixedNodeCoreModules.has(moduleNameExpr.text)) { usesUriStyleNodeCoreModules = false; } } } } else if (isModuleDeclaration(node)) { if (isAmbientModule(node) && (inAmbientModule || hasSyntacticModifier(node, 128) || file.isDeclarationFile)) { node.name.parent = node; const nameText = getTextOfIdentifierOrLiteral(node.name); if (isExternalModuleFile || inAmbientModule && !isExternalModuleNameRelative(nameText)) { (moduleAugmentations || (moduleAugmentations = [])).push(node.name); } else if (!inAmbientModule) { if (file.isDeclarationFile) { (ambientModules || (ambientModules = [])).push(nameText); } const body = node.body; if (body) { for (const statement of body.statements) { collectModuleReferences(statement, true); } } } } } } } function getLibFileFromReference(ref) { var _a2; const libFileName = getLibFileNameFromLibReference(ref); const actualFileName = libFileName && ((_a2 = resolvedLibReferences == null ? undefined : resolvedLibReferences.get(libFileName)) == null ? undefined : _a2.actual); return actualFileName !== undefined ? getSourceFile(actualFileName) : undefined; } function getSourceFileFromReference(referencingFile, ref) { return getSourceFileFromReferenceWorker(resolveTripleslashReference(ref.fileName, referencingFile.fileName), getSourceFile); } function getSourceFileFromReferenceWorker(fileName, getSourceFile2, fail, reason) { if (hasExtension(fileName)) { const canonicalFileName = host.getCanonicalFileName(fileName); if (!options.allowNonTsExtensions && !forEach(flatten(supportedExtensionsWithJsonIfResolveJsonModule), (extension) => fileExtensionIs(canonicalFileName, extension))) { if (fail) { if (hasJSFileExtension(canonicalFileName)) { fail(Diagnostics.File_0_is_a_JavaScript_file_Did_you_mean_to_enable_the_allowJs_option, fileName); } else { fail(Diagnostics.File_0_has_an_unsupported_extension_The_only_supported_extensions_are_1, fileName, "'" + flatten(supportedExtensions).join("', '") + "'"); } } return; } const sourceFile = getSourceFile2(fileName); if (fail) { if (!sourceFile) { const redirect = getRedirectFromSourceFile(fileName); if (redirect == null ? undefined : redirect.outputDts) { fail(Diagnostics.Output_file_0_has_not_been_built_from_source_file_1, redirect.outputDts, fileName); } else { fail(Diagnostics.File_0_not_found, fileName); } } else if (isReferencedFile(reason) && canonicalFileName === host.getCanonicalFileName(getSourceFileByPath(reason.file).fileName)) { fail(Diagnostics.A_file_cannot_have_a_reference_to_itself); } } return sourceFile; } else { const sourceFileNoExtension = options.allowNonTsExtensions && getSourceFile2(fileName); if (sourceFileNoExtension) return sourceFileNoExtension; if (fail && options.allowNonTsExtensions) { fail(Diagnostics.File_0_not_found, fileName); return; } const sourceFileWithAddedExtension = forEach(supportedExtensions[0], (extension) => getSourceFile2(fileName + extension)); if (fail && !sourceFileWithAddedExtension) fail(Diagnostics.Could_not_resolve_the_path_0_with_the_extensions_Colon_1, fileName, "'" + flatten(supportedExtensions).join("', '") + "'"); return sourceFileWithAddedExtension; } } function processSourceFile(fileName, isDefaultLib, packageId, reason) { getSourceFileFromReferenceWorker(fileName, (fileName2) => findSourceFile(fileName2, isDefaultLib, reason, packageId), (diagnostic, ...args) => addFilePreprocessingFileExplainingDiagnostic(undefined, reason, diagnostic, args), reason); } function processProjectReferenceFile(fileName, reason) { return processSourceFile(fileName, false, undefined, reason); } function reportFileNamesDifferOnlyInCasingError(fileName, existingFile, reason) { const hasExistingReasonToReportErrorOn = !isReferencedFile(reason) && some(programDiagnostics.getFileReasons().get(existingFile.path), isReferencedFile); if (hasExistingReasonToReportErrorOn) { addFilePreprocessingFileExplainingDiagnostic(existingFile, reason, Diagnostics.Already_included_file_name_0_differs_from_file_name_1_only_in_casing, [existingFile.fileName, fileName]); } else { addFilePreprocessingFileExplainingDiagnostic(existingFile, reason, Diagnostics.File_name_0_differs_from_already_included_file_name_1_only_in_casing, [fileName, existingFile.fileName]); } } function createRedirectedSourceFile(redirectTarget, unredirected, fileName, path, resolvedPath, originalFileName, sourceFileOptions) { var _a2; const redirect = parseNodeFactory.createRedirectedSourceFile({ redirectTarget, unredirected }); redirect.fileName = fileName; redirect.path = path; redirect.resolvedPath = resolvedPath; redirect.originalFileName = originalFileName; redirect.packageJsonLocations = ((_a2 = sourceFileOptions.packageJsonLocations) == null ? undefined : _a2.length) ? sourceFileOptions.packageJsonLocations : undefined; redirect.packageJsonScope = sourceFileOptions.packageJsonScope; sourceFilesFoundSearchingNodeModules.set(path, currentNodeModulesDepth > 0); return redirect; } function findSourceFile(fileName, isDefaultLib, reason, packageId) { var _a2, _b2; (_a2 = tracing) == null || _a2.push(tracing.Phase.Program, "findSourceFile", { fileName, isDefaultLib: isDefaultLib || undefined, fileIncludeKind: FileIncludeKind[reason.kind] }); const result = findSourceFileWorker(fileName, isDefaultLib, reason, packageId); (_b2 = tracing) == null || _b2.pop(); return result; } function getCreateSourceFileOptions(fileName, moduleResolutionCache2, host2, options2) { const result = getImpliedNodeFormatForFileWorker(getNormalizedAbsolutePath(fileName, currentDirectory), moduleResolutionCache2 == null ? undefined : moduleResolutionCache2.getPackageJsonInfoCache(), host2, options2); const languageVersion = getEmitScriptTarget(options2); const setExternalModuleIndicator2 = getSetExternalModuleIndicator(options2); return typeof result === "object" ? { ...result, languageVersion, setExternalModuleIndicator: setExternalModuleIndicator2, jsDocParsingMode: host2.jsDocParsingMode } : { languageVersion, impliedNodeFormat: result, setExternalModuleIndicator: setExternalModuleIndicator2, jsDocParsingMode: host2.jsDocParsingMode }; } function findSourceFileWorker(fileName, isDefaultLib, reason, packageId) { var _a2, _b2; const path = toPath3(fileName); if (useSourceOfProjectReferenceRedirect) { let source = getRedirectFromOutput(path); if (!source && host.realpath && options.preserveSymlinks && isDeclarationFileName(fileName) && fileName.includes(nodeModulesPathPart)) { const realPath2 = toPath3(host.realpath(fileName)); if (realPath2 !== path) source = getRedirectFromOutput(realPath2); } if (source == null ? undefined : source.source) { const file2 = findSourceFile(source.source, isDefaultLib, reason, packageId); if (file2) addFileToFilesByName(file2, path, fileName, undefined); return file2; } } const originalFileName = fileName; if (filesByName.has(path)) { const file2 = filesByName.get(path); const addedReason = addFileIncludeReason(file2 || undefined, reason, true); if (file2 && addedReason && !(options.forceConsistentCasingInFileNames === false)) { const checkedName = file2.fileName; const isRedirect = toPath3(checkedName) !== toPath3(fileName); if (isRedirect) { fileName = ((_a2 = getRedirectFromSourceFile(fileName)) == null ? undefined : _a2.outputDts) || fileName; } const checkedAbsolutePath = getNormalizedAbsolutePathWithoutRoot(checkedName, currentDirectory); const inputAbsolutePath = getNormalizedAbsolutePathWithoutRoot(fileName, currentDirectory); if (checkedAbsolutePath !== inputAbsolutePath) { reportFileNamesDifferOnlyInCasingError(fileName, file2, reason); } } if (file2 && sourceFilesFoundSearchingNodeModules.get(file2.path) && currentNodeModulesDepth === 0) { sourceFilesFoundSearchingNodeModules.set(file2.path, false); if (!options.noResolve) { processReferencedFiles(file2, isDefaultLib); processTypeReferenceDirectives(file2); } if (!options.noLib) { processLibReferenceDirectives(file2); } modulesWithElidedImports.set(file2.path, false); processImportedModules(file2); } else if (file2 && modulesWithElidedImports.get(file2.path)) { if (currentNodeModulesDepth < maxNodeModuleJsDepth) { modulesWithElidedImports.set(file2.path, false); processImportedModules(file2); } } return file2 || undefined; } let redirectedPath; if (!useSourceOfProjectReferenceRedirect) { const redirectProject = getRedirectFromSourceFile(fileName); if (redirectProject == null ? undefined : redirectProject.outputDts) { if (redirectProject.resolvedRef.commandLine.options.outFile) { return; } fileName = redirectProject.outputDts; redirectedPath = toPath3(redirectProject.outputDts); } } const sourceFileOptions = getCreateSourceFileOptions(fileName, moduleResolutionCache, host, options); const file = host.getSourceFile(fileName, sourceFileOptions, (hostErrorMessage) => addFilePreprocessingFileExplainingDiagnostic(undefined, reason, Diagnostics.Cannot_read_file_0_Colon_1, [fileName, hostErrorMessage]), shouldCreateNewSourceFile); if (packageId) { const packageIdKey = packageIdToString(packageId); const fileFromPackageId = packageIdToSourceFile.get(packageIdKey); if (fileFromPackageId) { const dupFile = createRedirectedSourceFile(fileFromPackageId, file, fileName, path, toPath3(fileName), originalFileName, sourceFileOptions); redirectTargetsMap.add(fileFromPackageId.path, fileName); addFileToFilesByName(dupFile, path, fileName, redirectedPath); addFileIncludeReason(dupFile, reason, false); sourceFileToPackageName.set(path, packageIdToPackageName(packageId)); processingOtherFiles.push(dupFile); return dupFile; } else if (file) { packageIdToSourceFile.set(packageIdKey, file); sourceFileToPackageName.set(path, packageIdToPackageName(packageId)); } } addFileToFilesByName(file, path, fileName, redirectedPath); if (file) { sourceFilesFoundSearchingNodeModules.set(path, currentNodeModulesDepth > 0); file.fileName = fileName; file.path = path; file.resolvedPath = toPath3(fileName); file.originalFileName = originalFileName; file.packageJsonLocations = ((_b2 = sourceFileOptions.packageJsonLocations) == null ? undefined : _b2.length) ? sourceFileOptions.packageJsonLocations : undefined; file.packageJsonScope = sourceFileOptions.packageJsonScope; addFileIncludeReason(file, reason, false); if (host.useCaseSensitiveFileNames()) { const pathLowerCase = toFileNameLowerCase(path); const existingFile = filesByNameIgnoreCase.get(pathLowerCase); if (existingFile) { reportFileNamesDifferOnlyInCasingError(fileName, existingFile, reason); } else { filesByNameIgnoreCase.set(pathLowerCase, file); } } if (!options.noResolve) { processReferencedFiles(file, isDefaultLib); processTypeReferenceDirectives(file); } if (!options.noLib) { processLibReferenceDirectives(file); } processImportedModules(file); if (isDefaultLib) { processingDefaultLibFiles.push(file); } else { processingOtherFiles.push(file); } (filesWithReferencesProcessed ?? (filesWithReferencesProcessed = /* @__PURE__ */ new Set)).add(file.path); } return file; } function addFileIncludeReason(file, reason, checkExisting) { if (file && (!checkExisting || !isReferencedFile(reason) || !(filesWithReferencesProcessed == null ? undefined : filesWithReferencesProcessed.has(reason.file)))) { programDiagnostics.getFileReasons().add(file.path, reason); return true; } return false; } function addFileToFilesByName(file, path, fileName, redirectedPath) { if (redirectedPath) { updateFilesByNameMap(fileName, redirectedPath, file); updateFilesByNameMap(fileName, path, file || false); } else { updateFilesByNameMap(fileName, path, file); } } function updateFilesByNameMap(fileName, path, file) { filesByName.set(path, file); if (file !== undefined) missingFileNames.delete(path); else missingFileNames.set(path, fileName); } function getRedirectFromSourceFile(fileName) { return mapSourceFileToResolvedRef == null ? undefined : mapSourceFileToResolvedRef.get(toPath3(fileName)); } function forEachResolvedProjectReference2(cb) { return forEachResolvedProjectReference(resolvedProjectReferences, cb); } function getRedirectFromOutput(path) { return mapOutputFileToResolvedRef == null ? undefined : mapOutputFileToResolvedRef.get(path); } function isSourceOfProjectReferenceRedirect(fileName) { return useSourceOfProjectReferenceRedirect && !!getRedirectFromSourceFile(fileName); } function getResolvedProjectReferenceByPath(projectReferencePath) { if (!projectReferenceRedirects) { return; } return projectReferenceRedirects.get(projectReferencePath) || undefined; } function processReferencedFiles(file, isDefaultLib) { forEach(file.referencedFiles, (ref, index) => { processSourceFile(resolveTripleslashReference(ref.fileName, file.fileName), isDefaultLib, undefined, { kind: 4, file: file.path, index }); }); } function processTypeReferenceDirectives(file) { const typeDirectives = file.typeReferenceDirectives; if (!typeDirectives.length) return; const resolutions = (resolvedTypeReferenceDirectiveNamesProcessing == null ? undefined : resolvedTypeReferenceDirectiveNamesProcessing.get(file.path)) || resolveTypeReferenceDirectiveNamesReusingOldState(typeDirectives, file); const resolutionsInFile = createModeAwareCache(); (resolvedTypeReferenceDirectiveNames ?? (resolvedTypeReferenceDirectiveNames = /* @__PURE__ */ new Map)).set(file.path, resolutionsInFile); for (let index = 0;index < typeDirectives.length; index++) { const ref = file.typeReferenceDirectives[index]; const resolvedTypeReferenceDirective = resolutions[index]; const fileName = ref.fileName; const mode = getModeForTypeReferenceDirectiveInFile(ref, file); resolutionsInFile.set(fileName, mode, resolvedTypeReferenceDirective); processTypeReferenceDirective(fileName, mode, resolvedTypeReferenceDirective, { kind: 5, file: file.path, index }); } } function getCompilerOptionsForFile(file) { var _a2; return ((_a2 = getRedirectReferenceForResolution(file)) == null ? undefined : _a2.commandLine.options) || options; } function processTypeReferenceDirective(typeReferenceDirective, mode, resolution, reason) { var _a2, _b2; (_a2 = tracing) == null || _a2.push(tracing.Phase.Program, "processTypeReferenceDirective", { directive: typeReferenceDirective, hasResolved: !!resolution.resolvedTypeReferenceDirective, refKind: reason.kind, refPath: isReferencedFile(reason) ? reason.file : undefined }); processTypeReferenceDirectiveWorker(typeReferenceDirective, mode, resolution, reason); (_b2 = tracing) == null || _b2.pop(); } function processTypeReferenceDirectiveWorker(typeReferenceDirective, mode, resolution, reason) { addResolutionDiagnostics(resolution); const { resolvedTypeReferenceDirective } = resolution; if (resolvedTypeReferenceDirective) { if (resolvedTypeReferenceDirective.isExternalLibraryImport) currentNodeModulesDepth++; processSourceFile(resolvedTypeReferenceDirective.resolvedFileName, false, resolvedTypeReferenceDirective.packageId, reason); if (resolvedTypeReferenceDirective.isExternalLibraryImport) currentNodeModulesDepth--; } else { addFilePreprocessingFileExplainingDiagnostic(undefined, reason, Diagnostics.Cannot_find_type_definition_file_for_0, [typeReferenceDirective]); } } function pathForLibFile(libFileName) { const existing = resolvedLibReferences == null ? undefined : resolvedLibReferences.get(libFileName); if (existing) return existing.actual; const result = pathForLibFileWorker(libFileName); (resolvedLibReferences ?? (resolvedLibReferences = /* @__PURE__ */ new Map)).set(libFileName, result); libFiles.add(toPath3(result.actual)); return result.actual; } function pathForLibFileWorker(libFileName) { var _a2, _b2, _c2, _d2, _e2; const existing = resolvedLibProcessing == null ? undefined : resolvedLibProcessing.get(libFileName); if (existing) return existing; if (!options.libReplacement) { const result2 = { resolution: { resolvedModule: undefined }, actual: combinePaths(defaultLibraryPath, libFileName) }; (resolvedLibProcessing ?? (resolvedLibProcessing = /* @__PURE__ */ new Map)).set(libFileName, result2); return result2; } if (structureIsReused !== 0 && oldProgram && !hasInvalidatedLibResolutions(libFileName)) { const oldResolution = (_a2 = oldProgram.resolvedLibReferences) == null ? undefined : _a2.get(libFileName); if (oldResolution) { if (oldResolution.resolution && isTraceEnabled(options, host)) { const libraryName2 = getLibraryNameFromLibFileName(libFileName); const resolveFrom2 = getInferredLibraryNameResolveFrom(options, currentDirectory, libFileName); trace(host, oldResolution.resolution.resolvedModule ? oldResolution.resolution.resolvedModule.packageId ? Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2_with_Package_ID_3 : Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2 : Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_not_resolved, libraryName2, getNormalizedAbsolutePath(resolveFrom2, currentDirectory), (_b2 = oldResolution.resolution.resolvedModule) == null ? undefined : _b2.resolvedFileName, ((_c2 = oldResolution.resolution.resolvedModule) == null ? undefined : _c2.packageId) && packageIdToString(oldResolution.resolution.resolvedModule.packageId)); } (resolvedLibProcessing ?? (resolvedLibProcessing = /* @__PURE__ */ new Map)).set(libFileName, oldResolution); return oldResolution; } } const libraryName = getLibraryNameFromLibFileName(libFileName); const resolveFrom = getInferredLibraryNameResolveFrom(options, currentDirectory, libFileName); (_d2 = tracing) == null || _d2.push(tracing.Phase.Program, "resolveLibrary", { resolveFrom }); mark("beforeResolveLibrary"); const resolution = actualResolveLibrary(libraryName, resolveFrom, options, libFileName); mark("afterResolveLibrary"); measure("ResolveLibrary", "beforeResolveLibrary", "afterResolveLibrary"); (_e2 = tracing) == null || _e2.pop(); const result = { resolution, actual: resolution.resolvedModule ? resolution.resolvedModule.resolvedFileName : combinePaths(defaultLibraryPath, libFileName) }; (resolvedLibProcessing ?? (resolvedLibProcessing = /* @__PURE__ */ new Map)).set(libFileName, result); return result; } function processLibReferenceDirectives(file) { forEach(file.libReferenceDirectives, (libReference, index) => { const libFileName = getLibFileNameFromLibReference(libReference); if (libFileName) { processRootFile(pathForLibFile(libFileName), true, { kind: 7, file: file.path, index }); } else { programDiagnostics.addFileProcessingDiagnostic({ kind: 0, reason: { kind: 7, file: file.path, index } }); } }); } function getCanonicalFileName(fileName) { return host.getCanonicalFileName(fileName); } function processImportedModules(file) { collectExternalModuleReferences(file); if (file.imports.length || file.moduleAugmentations.length) { const moduleNames = getModuleNames(file); const resolutions = (resolvedModulesProcessing == null ? undefined : resolvedModulesProcessing.get(file.path)) || resolveModuleNamesReusingOldState(moduleNames, file); Debug.assert(resolutions.length === moduleNames.length); const optionsForFile = getCompilerOptionsForFile(file); const resolutionsInFile = createModeAwareCache(); (resolvedModules ?? (resolvedModules = /* @__PURE__ */ new Map)).set(file.path, resolutionsInFile); for (let index = 0;index < moduleNames.length; index++) { const resolution = resolutions[index].resolvedModule; const moduleName = moduleNames[index].text; const mode = getModeForUsageLocationWorker(file, moduleNames[index], optionsForFile); resolutionsInFile.set(moduleName, mode, resolutions[index]); addResolutionDiagnosticsFromResolutionOrCache(file, moduleName, resolutions[index], mode); if (!resolution) { continue; } const isFromNodeModulesSearch = resolution.isExternalLibraryImport; const isJsFile = !resolutionExtensionIsTSOrJson(resolution.extension) && !getRedirectFromSourceFile(resolution.resolvedFileName); const isJsFileFromNodeModules = isFromNodeModulesSearch && isJsFile && (!resolution.originalPath || pathContainsNodeModules(resolution.resolvedFileName)); const resolvedFileName = resolution.resolvedFileName; if (isFromNodeModulesSearch) { currentNodeModulesDepth++; } const elideImport = isJsFileFromNodeModules && currentNodeModulesDepth > maxNodeModuleJsDepth; const shouldAddFile = resolvedFileName && !getResolutionDiagnostic(optionsForFile, resolution, file) && !optionsForFile.noResolve && index < file.imports.length && !elideImport && !(isJsFile && !getAllowJSCompilerOption(optionsForFile)) && (isInJSFile(file.imports[index]) || !(file.imports[index].flags & 16777216)); if (elideImport) { modulesWithElidedImports.set(file.path, true); } else if (shouldAddFile) { findSourceFile(resolvedFileName, false, { kind: 3, file: file.path, index }, resolution.packageId); } if (isFromNodeModulesSearch) { currentNodeModulesDepth--; } } } } function checkSourceFilesBelongToPath(sourceFiles, rootDirectory) { let allFilesBelongToPath = true; const absoluteRootDirectoryPath = host.getCanonicalFileName(getNormalizedAbsolutePath(rootDirectory, currentDirectory)); for (const sourceFile of sourceFiles) { if (!sourceFile.isDeclarationFile) { const absoluteSourceFilePath = host.getCanonicalFileName(getNormalizedAbsolutePath(sourceFile.fileName, currentDirectory)); if (absoluteSourceFilePath.indexOf(absoluteRootDirectoryPath) !== 0) { programDiagnostics.addLazyConfigDiagnostic(sourceFile, Diagnostics.File_0_is_not_under_rootDir_1_rootDir_is_expected_to_contain_all_source_files, sourceFile.fileName, rootDirectory); allFilesBelongToPath = false; } } } return allFilesBelongToPath; } function parseProjectReferenceConfigFile(ref) { if (!projectReferenceRedirects) { projectReferenceRedirects = /* @__PURE__ */ new Map; } const refPath = resolveProjectReferencePath(ref); const sourceFilePath = toPath3(refPath); const fromCache = projectReferenceRedirects.get(sourceFilePath); if (fromCache !== undefined) { return fromCache || undefined; } let commandLine; let sourceFile; if (host.getParsedCommandLine) { commandLine = host.getParsedCommandLine(refPath); if (!commandLine) { addFileToFilesByName(undefined, sourceFilePath, refPath, undefined); projectReferenceRedirects.set(sourceFilePath, false); return; } sourceFile = Debug.checkDefined(commandLine.options.configFile); Debug.assert(!sourceFile.path || sourceFile.path === sourceFilePath); addFileToFilesByName(sourceFile, sourceFilePath, refPath, undefined); } else { const basePath = getNormalizedAbsolutePath(getDirectoryPath(refPath), currentDirectory); sourceFile = host.getSourceFile(refPath, 100); addFileToFilesByName(sourceFile, sourceFilePath, refPath, undefined); if (sourceFile === undefined) { projectReferenceRedirects.set(sourceFilePath, false); return; } commandLine = parseJsonSourceFileConfigFileContent(sourceFile, configParsingHost, basePath, undefined, refPath); } sourceFile.fileName = refPath; sourceFile.path = sourceFilePath; sourceFile.resolvedPath = sourceFilePath; sourceFile.originalFileName = refPath; const resolvedRef = { commandLine, sourceFile }; projectReferenceRedirects.set(sourceFilePath, resolvedRef); if (options.configFile !== sourceFile) { mapSourceFileToResolvedRef ?? (mapSourceFileToResolvedRef = /* @__PURE__ */ new Map); mapOutputFileToResolvedRef ?? (mapOutputFileToResolvedRef = /* @__PURE__ */ new Map); let outDts; if (commandLine.options.outFile) { outDts = changeExtension(commandLine.options.outFile, ".d.ts"); mapOutputFileToResolvedRef == null || mapOutputFileToResolvedRef.set(toPath3(outDts), { resolvedRef }); } const getCommonSourceDirectory3 = memoize(() => getCommonSourceDirectoryOfConfig(resolvedRef.commandLine, !host.useCaseSensitiveFileNames())); commandLine.fileNames.forEach((fileName) => { const path = toPath3(fileName); let outputDts; if (!isDeclarationFileName(fileName) && !fileExtensionIs(fileName, ".json")) { if (!commandLine.options.outFile) { outputDts = getOutputDeclarationFileName(fileName, resolvedRef.commandLine, !host.useCaseSensitiveFileNames(), getCommonSourceDirectory3); mapOutputFileToResolvedRef.set(toPath3(outputDts), { resolvedRef, source: fileName }); } else { outputDts = outDts; } } mapSourceFileToResolvedRef.set(path, { resolvedRef, outputDts }); }); } if (commandLine.projectReferences) { resolvedRef.references = commandLine.projectReferences.map(parseProjectReferenceConfigFile); } return resolvedRef; } function verifyCompilerOptions() { if (options.strictPropertyInitialization && !getStrictOptionValue(options, "strictNullChecks")) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_without_specifying_option_1, "strictPropertyInitialization", "strictNullChecks"); } if (options.exactOptionalPropertyTypes && !getStrictOptionValue(options, "strictNullChecks")) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_without_specifying_option_1, "exactOptionalPropertyTypes", "strictNullChecks"); } if (options.isolatedModules || options.verbatimModuleSyntax) { if (options.outFile) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_with_option_1, "outFile", options.verbatimModuleSyntax ? "verbatimModuleSyntax" : "isolatedModules"); } } if (options.isolatedDeclarations) { if (getAllowJSCompilerOption(options)) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_with_option_1, "allowJs", "isolatedDeclarations"); } if (!getEmitDeclarations(options)) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_without_specifying_option_1_or_option_2, "isolatedDeclarations", "declaration", "composite"); } } if (options.inlineSourceMap) { if (options.sourceMap) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_with_option_1, "sourceMap", "inlineSourceMap"); } if (options.mapRoot) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_with_option_1, "mapRoot", "inlineSourceMap"); } } if (options.composite) { if (options.declaration === false) { createDiagnosticForOptionName(Diagnostics.Composite_projects_may_not_disable_declaration_emit, "declaration"); } if (options.incremental === false) { createDiagnosticForOptionName(Diagnostics.Composite_projects_may_not_disable_incremental_compilation, "declaration"); } } const outputFile = options.outFile; if (!options.tsBuildInfoFile && options.incremental && !outputFile && !options.configFilePath) { programDiagnostics.addConfigDiagnostic(createCompilerDiagnostic(Diagnostics.Option_incremental_can_only_be_specified_using_tsconfig_emitting_to_single_file_or_when_option_tsBuildInfoFile_is_specified)); } verifyDeprecatedCompilerOptions(); verifyProjectReferences(); if (options.composite) { const rootPaths = new Set(rootNames.map(toPath3)); for (const file of files) { if (sourceFileMayBeEmitted(file, program) && !rootPaths.has(file.path)) { programDiagnostics.addLazyConfigDiagnostic(file, Diagnostics.File_0_is_not_listed_within_the_file_list_of_project_1_Projects_must_list_all_files_or_use_an_include_pattern, file.fileName, options.configFilePath || ""); } } } if (options.paths) { for (const key in options.paths) { if (!hasProperty(options.paths, key)) { continue; } if (!hasZeroOrOneAsteriskCharacter(key)) { createDiagnosticForOptionPaths(true, key, Diagnostics.Pattern_0_can_have_at_most_one_Asterisk_character, key); } if (isArray(options.paths[key])) { const len = options.paths[key].length; if (len === 0) { createDiagnosticForOptionPaths(false, key, Diagnostics.Substitutions_for_pattern_0_shouldn_t_be_an_empty_array, key); } for (let i = 0;i < len; i++) { const subst = options.paths[key][i]; const typeOfSubst = typeof subst; if (typeOfSubst === "string") { if (!hasZeroOrOneAsteriskCharacter(subst)) { createDiagnosticForOptionPathKeyValue(key, i, Diagnostics.Substitution_0_in_pattern_1_can_have_at_most_one_Asterisk_character, subst, key); } if (!options.baseUrl && !pathIsRelative(subst) && !pathIsAbsolute(subst)) { createDiagnosticForOptionPathKeyValue(key, i, Diagnostics.Non_relative_paths_are_not_allowed_when_baseUrl_is_not_set_Did_you_forget_a_leading_Slash); } } else { createDiagnosticForOptionPathKeyValue(key, i, Diagnostics.Substitution_0_for_pattern_1_has_incorrect_type_expected_string_got_2, subst, key, typeOfSubst); } } } else { createDiagnosticForOptionPaths(false, key, Diagnostics.Substitutions_for_pattern_0_should_be_an_array, key); } } } if (!options.sourceMap && !options.inlineSourceMap) { if (options.inlineSources) { createDiagnosticForOptionName(Diagnostics.Option_0_can_only_be_used_when_either_option_inlineSourceMap_or_option_sourceMap_is_provided, "inlineSources"); } if (options.sourceRoot) { createDiagnosticForOptionName(Diagnostics.Option_0_can_only_be_used_when_either_option_inlineSourceMap_or_option_sourceMap_is_provided, "sourceRoot"); } } if (options.mapRoot && !(options.sourceMap || options.declarationMap)) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_without_specifying_option_1_or_option_2, "mapRoot", "sourceMap", "declarationMap"); } if (options.declarationDir) { if (!getEmitDeclarations(options)) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_without_specifying_option_1_or_option_2, "declarationDir", "declaration", "composite"); } if (outputFile) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_with_option_1, "declarationDir", "outFile"); } } if (options.declarationMap && !getEmitDeclarations(options)) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_without_specifying_option_1_or_option_2, "declarationMap", "declaration", "composite"); } if (options.lib && options.noLib) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_with_option_1, "lib", "noLib"); } const languageVersion = getEmitScriptTarget(options); const firstNonAmbientExternalModuleSourceFile = find(files, (f) => isExternalModule(f) && !f.isDeclarationFile); if (options.isolatedModules || options.verbatimModuleSyntax) { if (options.module === 0 && languageVersion < 2 && options.isolatedModules) { createDiagnosticForOptionName(Diagnostics.Option_isolatedModules_can_only_be_used_when_either_option_module_is_provided_or_option_target_is_ES2015_or_higher, "isolatedModules", "target"); } if (options.preserveConstEnums === false) { createDiagnosticForOptionName(Diagnostics.Option_preserveConstEnums_cannot_be_disabled_when_0_is_enabled, options.verbatimModuleSyntax ? "verbatimModuleSyntax" : "isolatedModules", "preserveConstEnums"); } } else if (firstNonAmbientExternalModuleSourceFile && languageVersion < 2 && options.module === 0) { const span = getErrorSpanForNode(firstNonAmbientExternalModuleSourceFile, typeof firstNonAmbientExternalModuleSourceFile.externalModuleIndicator === "boolean" ? firstNonAmbientExternalModuleSourceFile : firstNonAmbientExternalModuleSourceFile.externalModuleIndicator); programDiagnostics.addConfigDiagnostic(createFileDiagnostic(firstNonAmbientExternalModuleSourceFile, span.start, span.length, Diagnostics.Cannot_use_imports_exports_or_module_augmentations_when_module_is_none)); } if (outputFile && !options.emitDeclarationOnly) { if (options.module && !(options.module === 2 || options.module === 4)) { createDiagnosticForOptionName(Diagnostics.Only_amd_and_system_modules_are_supported_alongside_0, "outFile", "module"); } else if (options.module === undefined && firstNonAmbientExternalModuleSourceFile) { const span = getErrorSpanForNode(firstNonAmbientExternalModuleSourceFile, typeof firstNonAmbientExternalModuleSourceFile.externalModuleIndicator === "boolean" ? firstNonAmbientExternalModuleSourceFile : firstNonAmbientExternalModuleSourceFile.externalModuleIndicator); programDiagnostics.addConfigDiagnostic(createFileDiagnostic(firstNonAmbientExternalModuleSourceFile, span.start, span.length, Diagnostics.Cannot_compile_modules_using_option_0_unless_the_module_flag_is_amd_or_system, "outFile")); } } if (getResolveJsonModule(options)) { if (getEmitModuleResolutionKind(options) === 1) { createDiagnosticForOptionName(Diagnostics.Option_resolveJsonModule_cannot_be_specified_when_moduleResolution_is_set_to_classic, "resolveJsonModule"); } else if (!hasJsonModuleEmitEnabled(options)) { createDiagnosticForOptionName(Diagnostics.Option_resolveJsonModule_cannot_be_specified_when_module_is_set_to_none_system_or_umd, "resolveJsonModule", "module"); } } if (options.outDir || options.rootDir || options.sourceRoot || options.mapRoot || getEmitDeclarations(options) && options.declarationDir) { const dir = getCommonSourceDirectory2(); if (options.outDir && dir === "" && files.some((file) => getRootLength(file.fileName) > 1)) { createDiagnosticForOptionName(Diagnostics.Cannot_find_the_common_subdirectory_path_for_the_input_files, "outDir"); } } if (!options.noEmit && !options.composite && !options.rootDir && options.configFilePath && (options.outDir || getEmitDeclarations(options) && options.declarationDir || options.outFile)) { const dir = getCommonSourceDirectory2(); const emittedFiles = mapDefined(files, (file) => !file.isDeclarationFile && sourceFileMayBeEmitted(file, program) ? file.fileName : undefined); const dir59 = getComputedCommonSourceDirectory(emittedFiles, currentDirectory, getCanonicalFileName); if (dir59 !== "" && getCanonicalFileName(dir) !== getCanonicalFileName(dir59)) { createDiagnosticForOption(true, options.outFile ? "outFile" : options.outDir ? "outDir" : "declarationDir", !options.outFile && options.outDir ? "declarationDir" : undefined, chainDiagnosticMessages(chainDiagnosticMessages(undefined, Diagnostics.Visit_https_Colon_Slash_Slashaka_ms_Slashts6_for_migration_information), Diagnostics.The_common_source_directory_of_0_is_1_The_rootDir_setting_must_be_explicitly_set_to_this_or_another_path_to_adjust_your_output_s_file_layout, getBaseFileName(options.configFilePath), getRelativePathFromFile(options.configFilePath, dir59, getCanonicalFileName))); } } if (options.checkJs && !getAllowJSCompilerOption(options)) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_without_specifying_option_1, "checkJs", "allowJs"); } if (options.emitDeclarationOnly) { if (!getEmitDeclarations(options)) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_without_specifying_option_1_or_option_2, "emitDeclarationOnly", "declaration", "composite"); } } if (options.emitDecoratorMetadata && !options.experimentalDecorators) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_without_specifying_option_1, "emitDecoratorMetadata", "experimentalDecorators"); } if (options.jsxFactory) { if (options.reactNamespace) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_with_option_1, "reactNamespace", "jsxFactory"); } if (options.jsx === 4 || options.jsx === 5) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_when_option_jsx_is_1, "jsxFactory", inverseJsxOptionMap.get("" + options.jsx)); } if (!parseIsolatedEntityName(options.jsxFactory, languageVersion)) { createOptionValueDiagnostic("jsxFactory", Diagnostics.Invalid_value_for_jsxFactory_0_is_not_a_valid_identifier_or_qualified_name, options.jsxFactory); } } else if (options.reactNamespace && !isIdentifierText(options.reactNamespace, languageVersion)) { createOptionValueDiagnostic("reactNamespace", Diagnostics.Invalid_value_for_reactNamespace_0_is_not_a_valid_identifier, options.reactNamespace); } if (options.jsxFragmentFactory) { if (!options.jsxFactory) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_without_specifying_option_1, "jsxFragmentFactory", "jsxFactory"); } if (options.jsx === 4 || options.jsx === 5) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_when_option_jsx_is_1, "jsxFragmentFactory", inverseJsxOptionMap.get("" + options.jsx)); } if (!parseIsolatedEntityName(options.jsxFragmentFactory, languageVersion)) { createOptionValueDiagnostic("jsxFragmentFactory", Diagnostics.Invalid_value_for_jsxFragmentFactory_0_is_not_a_valid_identifier_or_qualified_name, options.jsxFragmentFactory); } } if (options.reactNamespace) { if (options.jsx === 4 || options.jsx === 5) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_when_option_jsx_is_1, "reactNamespace", inverseJsxOptionMap.get("" + options.jsx)); } } if (options.jsxImportSource) { if (options.jsx === 2) { createDiagnosticForOptionName(Diagnostics.Option_0_cannot_be_specified_when_option_jsx_is_1, "jsxImportSource", inverseJsxOptionMap.get("" + options.jsx)); } } const moduleKind = getEmitModuleKind(options); if (options.verbatimModuleSyntax) { if (moduleKind === 2 || moduleKind === 3 || moduleKind === 4) { createDiagnosticForOptionName(Diagnostics.Option_verbatimModuleSyntax_cannot_be_used_when_module_is_set_to_UMD_AMD_or_System, "verbatimModuleSyntax"); } } if (options.allowImportingTsExtensions && !(options.noEmit || options.emitDeclarationOnly || options.rewriteRelativeImportExtensions)) { createOptionValueDiagnostic("allowImportingTsExtensions", Diagnostics.Option_allowImportingTsExtensions_can_only_be_used_when_one_of_noEmit_emitDeclarationOnly_or_rewriteRelativeImportExtensions_is_set); } const moduleResolution = getEmitModuleResolutionKind(options); if (options.resolvePackageJsonExports && !moduleResolutionSupportsPackageJsonExportsAndImports(moduleResolution)) { createDiagnosticForOptionName(Diagnostics.Option_0_can_only_be_used_when_moduleResolution_is_set_to_node16_nodenext_or_bundler, "resolvePackageJsonExports"); } if (options.resolvePackageJsonImports && !moduleResolutionSupportsPackageJsonExportsAndImports(moduleResolution)) { createDiagnosticForOptionName(Diagnostics.Option_0_can_only_be_used_when_moduleResolution_is_set_to_node16_nodenext_or_bundler, "resolvePackageJsonImports"); } if (options.customConditions && !moduleResolutionSupportsPackageJsonExportsAndImports(moduleResolution)) { createDiagnosticForOptionName(Diagnostics.Option_0_can_only_be_used_when_moduleResolution_is_set_to_node16_nodenext_or_bundler, "customConditions"); } if (moduleResolution === 100 && !emitModuleKindIsNonNodeESM(moduleKind) && moduleKind !== 200 && moduleKind !== 1) { createOptionValueDiagnostic("moduleResolution", Diagnostics.Option_0_can_only_be_used_when_module_is_set_to_preserve_commonjs_or_es2015_or_later, "bundler"); } if (ModuleKind[moduleKind] && (100 <= moduleKind && moduleKind <= 199) && !(3 <= moduleResolution && moduleResolution <= 99)) { const moduleKindName = ModuleKind[moduleKind]; const moduleResolutionName = ModuleResolutionKind[moduleKindName] ? moduleKindName : "Node16"; createOptionValueDiagnostic("moduleResolution", Diagnostics.Option_moduleResolution_must_be_set_to_0_or_left_unspecified_when_option_module_is_set_to_1, moduleResolutionName, moduleKindName); } else if (ModuleResolutionKind[moduleResolution] && (3 <= moduleResolution && moduleResolution <= 99) && !(100 <= moduleKind && moduleKind <= 199)) { const moduleResolutionName = ModuleResolutionKind[moduleResolution]; createOptionValueDiagnostic("module", Diagnostics.Option_module_must_be_set_to_0_when_option_moduleResolution_is_set_to_1, moduleResolutionName, moduleResolutionName); } if (!options.noEmit && !options.suppressOutputPathCheck) { const emitHost = getEmitHost(); const emitFilesSeen = /* @__PURE__ */ new Set; forEachEmittedFile(emitHost, (emitFileNames) => { if (!options.emitDeclarationOnly) { verifyEmitFilePath(emitFileNames.jsFilePath, emitFilesSeen); } verifyEmitFilePath(emitFileNames.declarationFilePath, emitFilesSeen); }); } function verifyEmitFilePath(emitFileName, emitFilesSeen) { if (emitFileName) { const emitFilePath = toPath3(emitFileName); if (filesByName.has(emitFilePath)) { let chain; if (!options.configFilePath) { chain = chainDiagnosticMessages(undefined, Diagnostics.Adding_a_tsconfig_json_file_will_help_organize_projects_that_contain_both_TypeScript_and_JavaScript_files_Learn_more_at_https_Colon_Slash_Slashaka_ms_Slashtsconfig); } chain = chainDiagnosticMessages(chain, Diagnostics.Cannot_write_file_0_because_it_would_overwrite_input_file, emitFileName); blockEmittingOfFile(emitFileName, createCompilerDiagnosticFromMessageChain(chain)); } const emitFileKey = !host.useCaseSensitiveFileNames() ? toFileNameLowerCase(emitFilePath) : emitFilePath; if (emitFilesSeen.has(emitFileKey)) { blockEmittingOfFile(emitFileName, createCompilerDiagnostic(Diagnostics.Cannot_write_file_0_because_it_would_be_overwritten_by_multiple_input_files, emitFileName)); } else { emitFilesSeen.add(emitFileKey); } } } } function getIgnoreDeprecationsVersion() { const ignoreDeprecations = options.ignoreDeprecations; if (ignoreDeprecations) { if (ignoreDeprecations === "5.0" || ignoreDeprecations === "6.0") { return new Version(ignoreDeprecations); } reportInvalidIgnoreDeprecations(); } return Version.zero; } function checkDeprecations(deprecatedIn, removedIn, createDiagnostic, fn) { const deprecatedInVersion = new Version(deprecatedIn); const removedInVersion = new Version(removedIn); const typescriptVersion = new Version(typeScriptVersion3 || versionMajorMinor); const ignoreDeprecationsVersion = getIgnoreDeprecationsVersion(); const mustBeRemoved = !(removedInVersion.compareTo(typescriptVersion) === 1); const canBeSilenced = !mustBeRemoved && ignoreDeprecationsVersion.compareTo(deprecatedInVersion) === -1; if (mustBeRemoved || canBeSilenced) { fn((name, value, useInstead, related) => { if (mustBeRemoved) { if (value === undefined) { createDiagnostic(name, value, useInstead, related, Diagnostics.Option_0_has_been_removed_Please_remove_it_from_your_configuration, name); } else { createDiagnostic(name, value, useInstead, related, Diagnostics.Option_0_1_has_been_removed_Please_remove_it_from_your_configuration, name, value); } } else { if (value === undefined) { createDiagnostic(name, value, useInstead, related, Diagnostics.Option_0_is_deprecated_and_will_stop_functioning_in_TypeScript_1_Specify_compilerOption_ignoreDeprecations_Colon_2_to_silence_this_error, name, removedIn, deprecatedIn); } else { createDiagnostic(name, value, useInstead, related, Diagnostics.Option_0_1_is_deprecated_and_will_stop_functioning_in_TypeScript_2_Specify_compilerOption_ignoreDeprecations_Colon_3_to_silence_this_error, name, value, removedIn, deprecatedIn); } } }); } } function verifyDeprecatedCompilerOptions() { function createDiagnostic(name, value, useInstead, related, message, ...args) { if (useInstead) { let details = chainDiagnosticMessages(undefined, Diagnostics.Use_0_instead, useInstead); if (related) { details = chainDiagnosticMessages(details, related); } const chain = chainDiagnosticMessages(details, message, ...args); createDiagnosticForOption(!value, name, undefined, chain); } else { let details; if (related) { details = chainDiagnosticMessages(undefined, related); } const chain = chainDiagnosticMessages(details, message, ...args); createDiagnosticForOption(!value, name, undefined, chain); } } checkDeprecations("5.0", "5.5", createDiagnostic, (createDeprecatedDiagnostic) => { if (options.target === 0) { createDeprecatedDiagnostic("target", "ES3"); } if (options.noImplicitUseStrict) { createDeprecatedDiagnostic("noImplicitUseStrict"); } if (options.keyofStringsOnly) { createDeprecatedDiagnostic("keyofStringsOnly"); } if (options.suppressExcessPropertyErrors) { createDeprecatedDiagnostic("suppressExcessPropertyErrors"); } if (options.suppressImplicitAnyIndexErrors) { createDeprecatedDiagnostic("suppressImplicitAnyIndexErrors"); } if (options.noStrictGenericChecks) { createDeprecatedDiagnostic("noStrictGenericChecks"); } if (options.charset) { createDeprecatedDiagnostic("charset"); } if (options.out) { createDeprecatedDiagnostic("out"); } if (options.importsNotUsedAsValues) { createDeprecatedDiagnostic("importsNotUsedAsValues", undefined, "verbatimModuleSyntax"); } if (options.preserveValueImports) { createDeprecatedDiagnostic("preserveValueImports", undefined, "verbatimModuleSyntax"); } }); checkDeprecations("6.0", "7.0", createDiagnostic, (createDeprecatedDiagnostic) => { if (options.alwaysStrict === false) { createDeprecatedDiagnostic("alwaysStrict", "false", undefined, undefined); } if (options.target === 1) { createDeprecatedDiagnostic("target", "ES5"); } if (options.moduleResolution === 2) { createDeprecatedDiagnostic("moduleResolution", "node10", undefined, Diagnostics.Visit_https_Colon_Slash_Slashaka_ms_Slashts6_for_migration_information); } if (options.moduleResolution === 1) { createDeprecatedDiagnostic("moduleResolution", "classic", undefined, undefined); } if (options.baseUrl !== undefined) { createDeprecatedDiagnostic("baseUrl", undefined, undefined, Diagnostics.Visit_https_Colon_Slash_Slashaka_ms_Slashts6_for_migration_information); } if (options.esModuleInterop === false) { createDeprecatedDiagnostic("esModuleInterop", "false", undefined, undefined); } if (options.allowSyntheticDefaultImports === false) { createDeprecatedDiagnostic("allowSyntheticDefaultImports", "false", undefined, undefined); } if (options.outFile) { createDeprecatedDiagnostic("outFile"); } if (options.module === 0 || options.module === 2 || options.module === 3 || options.module === 4) { createDeprecatedDiagnostic("module", ModuleKind[options.module], undefined, undefined); } if (options.downlevelIteration !== undefined) { createDeprecatedDiagnostic("downlevelIteration"); } }); } function verifyDeprecatedProjectReference(ref, parentFile, index) { function createDiagnostic(_name, _value, _useInstead, _related, message, ...args) { createDiagnosticForReference(parentFile, index, message, ...args); } checkDeprecations("5.0", "5.5", createDiagnostic, (createDeprecatedDiagnostic) => { if (ref.prepend) { createDeprecatedDiagnostic("prepend"); } }); } function addFilePreprocessingFileExplainingDiagnostic(file, fileProcessingReason, diagnostic, args) { programDiagnostics.addFileProcessingDiagnostic({ kind: 1, file: file && file.path, fileProcessingReason, diagnostic, args }); } function verifyProjectReferences() { const buildInfoPath = !options.suppressOutputPathCheck ? getTsBuildInfoEmitOutputFilePath(options) : undefined; forEachProjectReference(projectReferences, resolvedProjectReferences, (resolvedRef, parent2, index) => { const ref = (parent2 ? parent2.commandLine.projectReferences : projectReferences)[index]; const parentFile = parent2 && parent2.sourceFile; verifyDeprecatedProjectReference(ref, parentFile, index); if (!resolvedRef) { createDiagnosticForReference(parentFile, index, Diagnostics.File_0_not_found, ref.path); return; } const options2 = resolvedRef.commandLine.options; if (!options2.composite || options2.noEmit) { const inputs = parent2 ? parent2.commandLine.fileNames : rootNames; if (inputs.length) { if (!options2.composite) createDiagnosticForReference(parentFile, index, Diagnostics.Referenced_project_0_must_have_setting_composite_Colon_true, ref.path); if (options2.noEmit) createDiagnosticForReference(parentFile, index, Diagnostics.Referenced_project_0_may_not_disable_emit, ref.path); } } if (!parent2 && buildInfoPath && buildInfoPath === getTsBuildInfoEmitOutputFilePath(options2)) { createDiagnosticForReference(parentFile, index, Diagnostics.Cannot_write_file_0_because_it_will_overwrite_tsbuildinfo_file_generated_by_referenced_project_1, buildInfoPath, ref.path); hasEmitBlockingDiagnostics.set(toPath3(buildInfoPath), true); } }); } function createDiagnosticForOptionPathKeyValue(key, valueIndex, message, ...args) { let needCompilerDiagnostic = true; forEachOptionPathsSyntax((pathProp) => { if (isObjectLiteralExpression(pathProp.initializer)) { forEachPropertyAssignment(pathProp.initializer, key, (keyProps) => { const initializer = keyProps.initializer; if (isArrayLiteralExpression(initializer) && initializer.elements.length > valueIndex) { programDiagnostics.addConfigDiagnostic(createDiagnosticForNodeInSourceFile(options.configFile, initializer.elements[valueIndex], message, ...args)); needCompilerDiagnostic = false; } }); } }); if (needCompilerDiagnostic) { createCompilerOptionsDiagnostic(message, ...args); } } function createDiagnosticForOptionPaths(onKey, key, message, ...args) { let needCompilerDiagnostic = true; forEachOptionPathsSyntax((pathProp) => { if (isObjectLiteralExpression(pathProp.initializer) && createOptionDiagnosticInObjectLiteralSyntax(pathProp.initializer, onKey, key, undefined, message, ...args)) { needCompilerDiagnostic = false; } }); if (needCompilerDiagnostic) { createCompilerOptionsDiagnostic(message, ...args); } } function forEachOptionPathsSyntax(callback) { return forEachOptionsSyntaxByName(getCompilerOptionsObjectLiteralSyntax(), "paths", callback); } function createDiagnosticForOptionName(message, option1, option2, option3) { createDiagnosticForOption(true, option1, option2, message, option1, option2, option3); } function createOptionValueDiagnostic(option1, message, ...args) { createDiagnosticForOption(false, option1, undefined, message, ...args); } function createDiagnosticForReference(sourceFile, index, message, ...args) { const referencesSyntax = forEachTsConfigPropArray(sourceFile || options.configFile, "references", (property) => isArrayLiteralExpression(property.initializer) ? property.initializer : undefined); if (referencesSyntax && referencesSyntax.elements.length > index) { programDiagnostics.addConfigDiagnostic(createDiagnosticForNodeInSourceFile(sourceFile || options.configFile, referencesSyntax.elements[index], message, ...args)); } else { programDiagnostics.addConfigDiagnostic(createCompilerDiagnostic(message, ...args)); } } function createDiagnosticForOption(onKey, option1, option2, message, ...args) { const compilerOptionsObjectLiteralSyntax = getCompilerOptionsObjectLiteralSyntax(); const needCompilerDiagnostic = !compilerOptionsObjectLiteralSyntax || !createOptionDiagnosticInObjectLiteralSyntax(compilerOptionsObjectLiteralSyntax, onKey, option1, option2, message, ...args); if (needCompilerDiagnostic) { createCompilerOptionsDiagnostic(message, ...args); } } function createCompilerOptionsDiagnostic(message, ...args) { const compilerOptionsProperty = getCompilerOptionsPropertySyntax(); if (compilerOptionsProperty) { if ("messageText" in message) { programDiagnostics.addConfigDiagnostic(createDiagnosticForNodeFromMessageChain(options.configFile, compilerOptionsProperty.name, message)); } else { programDiagnostics.addConfigDiagnostic(createDiagnosticForNodeInSourceFile(options.configFile, compilerOptionsProperty.name, message, ...args)); } } else if ("messageText" in message) { programDiagnostics.addConfigDiagnostic(createCompilerDiagnosticFromMessageChain(message)); } else { programDiagnostics.addConfigDiagnostic(createCompilerDiagnostic(message, ...args)); } } function getCompilerOptionsObjectLiteralSyntax() { if (_compilerOptionsObjectLiteralSyntax === undefined) { const compilerOptionsProperty = getCompilerOptionsPropertySyntax(); _compilerOptionsObjectLiteralSyntax = compilerOptionsProperty ? tryCast(compilerOptionsProperty.initializer, isObjectLiteralExpression) || false : false; } return _compilerOptionsObjectLiteralSyntax || undefined; } function getCompilerOptionsPropertySyntax() { if (_compilerOptionsPropertySyntax === undefined) { _compilerOptionsPropertySyntax = forEachPropertyAssignment(getTsConfigObjectLiteralExpression(options.configFile), "compilerOptions", identity) || false; } return _compilerOptionsPropertySyntax || undefined; } function createOptionDiagnosticInObjectLiteralSyntax(objectLiteral, onKey, key1, key2, message, ...args) { let needsCompilerDiagnostic = false; forEachPropertyAssignment(objectLiteral, key1, (prop) => { if ("messageText" in message) { programDiagnostics.addConfigDiagnostic(createDiagnosticForNodeFromMessageChain(options.configFile, onKey ? prop.name : prop.initializer, message)); } else { programDiagnostics.addConfigDiagnostic(createDiagnosticForNodeInSourceFile(options.configFile, onKey ? prop.name : prop.initializer, message, ...args)); } needsCompilerDiagnostic = true; }, key2); return needsCompilerDiagnostic; } function blockEmittingOfFile(emitFileName, diag2) { hasEmitBlockingDiagnostics.set(toPath3(emitFileName), true); programDiagnostics.addConfigDiagnostic(diag2); } function isEmittedFile(file) { if (options.noEmit) { return false; } const filePath = toPath3(file); if (getSourceFileByPath(filePath)) { return false; } const out = options.outFile; if (out) { return isSameFile(filePath, out) || isSameFile(filePath, removeFileExtension(out) + ".d.ts"); } if (options.declarationDir && containsPath(options.declarationDir, filePath, currentDirectory, !host.useCaseSensitiveFileNames())) { return true; } if (options.outDir) { return containsPath(options.outDir, filePath, currentDirectory, !host.useCaseSensitiveFileNames()); } if (fileExtensionIsOneOf(filePath, supportedJSExtensionsFlat) || isDeclarationFileName(filePath)) { const filePathWithoutExtension = removeFileExtension(filePath); return !!getSourceFileByPath(filePathWithoutExtension + ".ts") || !!getSourceFileByPath(filePathWithoutExtension + ".tsx"); } return false; } function isSameFile(file1, file2) { return comparePaths(file1, file2, currentDirectory, !host.useCaseSensitiveFileNames()) === 0; } function getSymlinkCache() { if (host.getSymlinkCache) { return host.getSymlinkCache(); } if (!symlinks) { symlinks = createSymlinkCache(currentDirectory, getCanonicalFileName); } if (files && !symlinks.hasProcessedResolutions()) { symlinks.setSymlinksFromResolutions(forEachResolvedModule, forEachResolvedTypeReferenceDirective, automaticTypeDirectiveResolutions); } return symlinks; } function getModeForUsageLocation2(file, usage) { return getModeForUsageLocationWorker(file, usage, getCompilerOptionsForFile(file)); } function getEmitSyntaxForUsageLocation(file, usage) { return getEmitSyntaxForUsageLocationWorker(file, usage, getCompilerOptionsForFile(file)); } function getModeForResolutionAtIndex2(file, index) { return getModeForUsageLocation2(file, getModuleNameStringLiteralAt(file, index)); } function getDefaultResolutionModeForFile2(sourceFile) { return getDefaultResolutionModeForFileWorker(sourceFile, getCompilerOptionsForFile(sourceFile)); } function getImpliedNodeFormatForEmit2(sourceFile) { return getImpliedNodeFormatForEmitWorker(sourceFile, getCompilerOptionsForFile(sourceFile)); } function getEmitModuleFormatOfFile2(sourceFile) { return getEmitModuleFormatOfFileWorker(sourceFile, getCompilerOptionsForFile(sourceFile)); } function shouldTransformImportCall(sourceFile) { return shouldTransformImportCallWorker(sourceFile, getCompilerOptionsForFile(sourceFile)); } function getModeForTypeReferenceDirectiveInFile(ref, sourceFile) { return ref.resolutionMode || getDefaultResolutionModeForFile2(sourceFile); } } function shouldTransformImportCallWorker(sourceFile, options) { const moduleKind = getEmitModuleKind(options); if (100 <= moduleKind && moduleKind <= 199 || moduleKind === 200) { return false; } return getEmitModuleFormatOfFileWorker(sourceFile, options) < 5; } function getEmitModuleFormatOfFileWorker(sourceFile, options) { return getImpliedNodeFormatForEmitWorker(sourceFile, options) ?? getEmitModuleKind(options); } function getImpliedNodeFormatForEmitWorker(sourceFile, options) { var _a, _b; const moduleKind = getEmitModuleKind(options); if (100 <= moduleKind && moduleKind <= 199) { return sourceFile.impliedNodeFormat; } if (sourceFile.impliedNodeFormat === 1 && (((_a = sourceFile.packageJsonScope) == null ? undefined : _a.contents.packageJsonContent.type) === "commonjs" || fileExtensionIsOneOf(sourceFile.fileName, [".cjs", ".cts"]))) { return 1; } if (sourceFile.impliedNodeFormat === 99 && (((_b = sourceFile.packageJsonScope) == null ? undefined : _b.contents.packageJsonContent.type) === "module" || fileExtensionIsOneOf(sourceFile.fileName, [".mjs", ".mts"]))) { return 99; } return; } function getDefaultResolutionModeForFileWorker(sourceFile, options) { return importSyntaxAffectsModuleResolution(options) ? getImpliedNodeFormatForEmitWorker(sourceFile, options) : undefined; } function updateHostForUseSourceOfProjectReferenceRedirect(host) { let setOfDeclarationDirectories; const originalFileExists = host.compilerHost.fileExists; const originalDirectoryExists = host.compilerHost.directoryExists; const originalGetDirectories = host.compilerHost.getDirectories; const originalRealpath = host.compilerHost.realpath; if (!host.useSourceOfProjectReferenceRedirect) return { onProgramCreateComplete: noop, fileExists }; host.compilerHost.fileExists = fileExists; let directoryExists; if (originalDirectoryExists) { directoryExists = host.compilerHost.directoryExists = (path) => { if (originalDirectoryExists.call(host.compilerHost, path)) { handleDirectoryCouldBeSymlink(path); return true; } if (!host.getResolvedProjectReferences()) return false; if (!setOfDeclarationDirectories) { setOfDeclarationDirectories = /* @__PURE__ */ new Set; host.forEachResolvedProjectReference((ref) => { const out = ref.commandLine.options.outFile; if (out) { setOfDeclarationDirectories.add(getDirectoryPath(host.toPath(out))); } else { const declarationDir = ref.commandLine.options.declarationDir || ref.commandLine.options.outDir; if (declarationDir) { setOfDeclarationDirectories.add(host.toPath(declarationDir)); } } }); } return fileOrDirectoryExistsUsingSource(path, false); }; } if (originalGetDirectories) { host.compilerHost.getDirectories = (path) => !host.getResolvedProjectReferences() || originalDirectoryExists && originalDirectoryExists.call(host.compilerHost, path) ? originalGetDirectories.call(host.compilerHost, path) : []; } if (originalRealpath) { host.compilerHost.realpath = (s) => { var _a; return ((_a = host.getSymlinkCache().getSymlinkedFiles()) == null ? undefined : _a.get(host.toPath(s))) || originalRealpath.call(host.compilerHost, s); }; } return { onProgramCreateComplete, fileExists, directoryExists }; function onProgramCreateComplete() { host.compilerHost.fileExists = originalFileExists; host.compilerHost.directoryExists = originalDirectoryExists; host.compilerHost.getDirectories = originalGetDirectories; } function fileExists(file) { if (originalFileExists.call(host.compilerHost, file)) return true; if (!host.getResolvedProjectReferences()) return false; if (!isDeclarationFileName(file)) return false; return fileOrDirectoryExistsUsingSource(file, true); } function fileExistsIfProjectReferenceDts(file) { const source = host.getRedirectFromOutput(host.toPath(file)); return source !== undefined ? isString(source.source) ? originalFileExists.call(host.compilerHost, source.source) : true : undefined; } function directoryExistsIfProjectReferenceDeclDir(dir) { const dirPath = host.toPath(dir); const dirPathWithTrailingDirectorySeparator = `${dirPath}${directorySeparator}`; return forEachKey(setOfDeclarationDirectories, (declDirPath) => dirPath === declDirPath || startsWith(declDirPath, dirPathWithTrailingDirectorySeparator) || startsWith(dirPath, `${declDirPath}/`)); } function handleDirectoryCouldBeSymlink(directory) { var _a; if (!host.getResolvedProjectReferences() || containsIgnoredPath(directory)) return; if (!originalRealpath || !directory.includes(nodeModulesPathPart)) return; const symlinkCache = host.getSymlinkCache(); const directoryPath = ensureTrailingDirectorySeparator(host.toPath(directory)); if ((_a = symlinkCache.getSymlinkedDirectories()) == null ? undefined : _a.has(directoryPath)) return; const real = normalizePath(originalRealpath.call(host.compilerHost, directory)); let realPath2; if (real === directory || (realPath2 = ensureTrailingDirectorySeparator(host.toPath(real))) === directoryPath) { symlinkCache.setSymlinkedDirectory(directoryPath, false); return; } symlinkCache.setSymlinkedDirectory(directory, { real: ensureTrailingDirectorySeparator(real), realPath: realPath2 }); } function fileOrDirectoryExistsUsingSource(fileOrDirectory, isFile) { var _a; const fileOrDirectoryExistsUsingSource2 = isFile ? fileExistsIfProjectReferenceDts : directoryExistsIfProjectReferenceDeclDir; const result = fileOrDirectoryExistsUsingSource2(fileOrDirectory); if (result !== undefined) return result; const symlinkCache = host.getSymlinkCache(); const symlinkedDirectories = symlinkCache.getSymlinkedDirectories(); if (!symlinkedDirectories) return false; const fileOrDirectoryPath = host.toPath(fileOrDirectory); if (!fileOrDirectoryPath.includes(nodeModulesPathPart)) return false; if (isFile && ((_a = symlinkCache.getSymlinkedFiles()) == null ? undefined : _a.has(fileOrDirectoryPath))) return true; return firstDefinedIterator(symlinkedDirectories.entries(), ([directoryPath, symlinkedDirectory]) => { if (!symlinkedDirectory || !startsWith(fileOrDirectoryPath, directoryPath)) return; const result2 = fileOrDirectoryExistsUsingSource2(fileOrDirectoryPath.replace(directoryPath, symlinkedDirectory.realPath)); if (isFile && result2) { const absolutePath = getNormalizedAbsolutePath(fileOrDirectory, host.compilerHost.getCurrentDirectory()); symlinkCache.setSymlinkedFile(fileOrDirectoryPath, `${symlinkedDirectory.real}${absolutePath.replace(new RegExp(directoryPath, "i"), "")}`); } return result2; }) || false; } } var emitSkippedWithNoDiagnostics = { diagnostics: emptyArray, sourceMaps: undefined, emittedFiles: undefined, emitSkipped: true }; function handleNoEmitOptions(program, sourceFile, writeFile2, cancellationToken) { const options = program.getCompilerOptions(); if (options.noEmit) { return sourceFile ? emitSkippedWithNoDiagnostics : program.emitBuildInfo(writeFile2, cancellationToken); } if (!options.noEmitOnError) return; let diagnostics = [ ...program.getOptionsDiagnostics(cancellationToken), ...program.getSyntacticDiagnostics(sourceFile, cancellationToken), ...program.getGlobalDiagnostics(cancellationToken), ...program.getSemanticDiagnostics(sourceFile, cancellationToken) ]; if (diagnostics.length === 0 && getEmitDeclarations(program.getCompilerOptions())) { diagnostics = program.getDeclarationDiagnostics(undefined, cancellationToken); } if (!diagnostics.length) return; let emittedFiles; if (!sourceFile) { const emitResult = program.emitBuildInfo(writeFile2, cancellationToken); if (emitResult.diagnostics) diagnostics = [...diagnostics, ...emitResult.diagnostics]; emittedFiles = emitResult.emittedFiles; } return { diagnostics, sourceMaps: undefined, emittedFiles, emitSkipped: true }; } function filterSemanticDiagnostics(diagnostic, option) { return filter(diagnostic, (d) => !d.skippedOn || !option[d.skippedOn]); } function parseConfigHostFromCompilerHostLike(host, directoryStructureHost = host) { return { fileExists: (f) => directoryStructureHost.fileExists(f), readDirectory(root, extensions, excludes, includes, depth) { Debug.assertIsDefined(directoryStructureHost.readDirectory, "'CompilerHost.readDirectory' must be implemented to correctly process 'projectReferences'"); return directoryStructureHost.readDirectory(root, extensions, excludes, includes, depth); }, readFile: (f) => directoryStructureHost.readFile(f), directoryExists: maybeBind(directoryStructureHost, directoryStructureHost.directoryExists), getDirectories: maybeBind(directoryStructureHost, directoryStructureHost.getDirectories), realpath: maybeBind(directoryStructureHost, directoryStructureHost.realpath), useCaseSensitiveFileNames: host.useCaseSensitiveFileNames(), getCurrentDirectory: () => host.getCurrentDirectory(), onUnRecoverableConfigFileDiagnostic: host.onUnRecoverableConfigFileDiagnostic || returnUndefined, trace: host.trace ? (s) => host.trace(s) : undefined }; } function resolveProjectReferencePath(ref) { return resolveConfigFileProjectName(ref.path); } function getResolutionDiagnostic(options, { extension }, { isDeclarationFile }) { switch (extension) { case ".ts": case ".d.ts": case ".mts": case ".d.mts": case ".cts": case ".d.cts": return; case ".tsx": return needJsx(); case ".jsx": return needJsx() || needAllowJs(); case ".js": case ".mjs": case ".cjs": return needAllowJs(); case ".json": return needResolveJsonModule(); default: return needAllowArbitraryExtensions(); } function needJsx() { return options.jsx ? undefined : Diagnostics.Module_0_was_resolved_to_1_but_jsx_is_not_set; } function needAllowJs() { return getAllowJSCompilerOption(options) || !getStrictOptionValue(options, "noImplicitAny") ? undefined : Diagnostics.Could_not_find_a_declaration_file_for_module_0_1_implicitly_has_an_any_type; } function needResolveJsonModule() { return getResolveJsonModule(options) ? undefined : Diagnostics.Module_0_was_resolved_to_1_but_resolveJsonModule_is_not_used; } function needAllowArbitraryExtensions() { return isDeclarationFile || options.allowArbitraryExtensions ? undefined : Diagnostics.Module_0_was_resolved_to_1_but_allowArbitraryExtensions_is_not_set; } } function getModuleNames({ imports, moduleAugmentations }) { const res = imports.map((i) => i); for (const aug of moduleAugmentations) { if (aug.kind === 11) { res.push(aug); } } return res; } function getModuleNameStringLiteralAt({ imports, moduleAugmentations }, index) { if (index < imports.length) return imports[index]; let augIndex = imports.length; for (const aug of moduleAugmentations) { if (aug.kind === 11) { if (index === augIndex) return aug; augIndex++; } } Debug.fail("should never ask for module name at index higher than possible module name"); } function createProgramDiagnostics(getCompilerOptionsObjectLiteralSyntax) { let computedDiagnostics; let fileReasons = createMultiMap(); let fileProcessingDiagnostics; let commonSourceDirectory; let configDiagnostics; let lazyConfigDiagnostics; let fileReasonsToChain; let reasonToRelatedInfo; return { addConfigDiagnostic(diag2) { Debug.assert(computedDiagnostics === undefined, "Cannot modify program diagnostic state after requesting combined diagnostics"); (configDiagnostics ?? (configDiagnostics = createDiagnosticCollection())).add(diag2); }, addLazyConfigDiagnostic(file, message, ...args) { Debug.assert(computedDiagnostics === undefined, "Cannot modify program diagnostic state after requesting combined diagnostics"); (lazyConfigDiagnostics ?? (lazyConfigDiagnostics = [])).push({ file, diagnostic: message, args }); }, addFileProcessingDiagnostic(diag2) { Debug.assert(computedDiagnostics === undefined, "Cannot modify program diagnostic state after requesting combined diagnostics"); (fileProcessingDiagnostics ?? (fileProcessingDiagnostics = [])).push(diag2); }, setCommonSourceDirectory(directory) { commonSourceDirectory = directory; }, reuseStateFromOldProgram(oldProgramDiagnostics, isConfigIdentical) { fileReasons = oldProgramDiagnostics.getFileReasons(); fileProcessingDiagnostics = oldProgramDiagnostics.getFileProcessingDiagnostics(); if (isConfigIdentical) { commonSourceDirectory = oldProgramDiagnostics.getCommonSourceDirectory(); configDiagnostics = oldProgramDiagnostics.getConfigDiagnostics(); lazyConfigDiagnostics = oldProgramDiagnostics.getLazyConfigDiagnostics(); } }, getFileProcessingDiagnostics() { return fileProcessingDiagnostics; }, getFileReasons() { return fileReasons; }, getCommonSourceDirectory() { return commonSourceDirectory; }, getConfigDiagnostics() { return configDiagnostics; }, getLazyConfigDiagnostics() { return lazyConfigDiagnostics; }, getCombinedDiagnostics(program) { if (computedDiagnostics) { return computedDiagnostics; } computedDiagnostics = createDiagnosticCollection(); configDiagnostics == null || configDiagnostics.getDiagnostics().forEach((d) => computedDiagnostics.add(d)); fileProcessingDiagnostics == null || fileProcessingDiagnostics.forEach((diagnostic) => { switch (diagnostic.kind) { case 1: return computedDiagnostics.add(createDiagnosticExplainingFile(program, diagnostic.file && program.getSourceFileByPath(diagnostic.file), diagnostic.fileProcessingReason, diagnostic.diagnostic, diagnostic.args || emptyArray)); case 0: return computedDiagnostics.add(filePreprocessingLibreferenceDiagnostic(program, diagnostic)); case 2: return diagnostic.diagnostics.forEach((d) => computedDiagnostics.add(d)); default: Debug.assertNever(diagnostic); } }); lazyConfigDiagnostics == null || lazyConfigDiagnostics.forEach(({ file, diagnostic, args }) => computedDiagnostics.add(createDiagnosticExplainingFile(program, file, undefined, diagnostic, args))); fileReasonsToChain = undefined; reasonToRelatedInfo = undefined; return computedDiagnostics; } }; function filePreprocessingLibreferenceDiagnostic(program, { reason }) { const { file, pos, end } = getReferencedFileLocation(program, reason); const libReference = file.libReferenceDirectives[reason.index]; const libName = getLibNameFromLibReference(libReference); const unqualifiedLibName = removeSuffix(removePrefix(libName, "lib."), ".d.ts"); const suggestion = getSpellingSuggestion(unqualifiedLibName, libs, identity); return createFileDiagnostic(file, Debug.checkDefined(pos), Debug.checkDefined(end) - pos, suggestion ? Diagnostics.Cannot_find_lib_definition_for_0_Did_you_mean_1 : Diagnostics.Cannot_find_lib_definition_for_0, libName, suggestion); } function createDiagnosticExplainingFile(program, file, fileProcessingReason, diagnostic, args) { let seenReasons; let fileIncludeReasons; let relatedInfo; let fileIncludeReasonDetails; let redirectInfo; let chain; const reasons = file && fileReasons.get(file.path); let locationReason = isReferencedFile(fileProcessingReason) ? fileProcessingReason : undefined; let cachedChain = file && (fileReasonsToChain == null ? undefined : fileReasonsToChain.get(file.path)); if (cachedChain) { if (cachedChain.fileIncludeReasonDetails) { seenReasons = new Set(reasons); reasons == null || reasons.forEach(populateRelatedInfo); } else { reasons == null || reasons.forEach(processReason); } redirectInfo = cachedChain.redirectInfo; } else { reasons == null || reasons.forEach(processReason); redirectInfo = file && explainIfFileIsRedirectAndImpliedFormat(file, program.getCompilerOptionsForFile(file)); } if (fileProcessingReason) processReason(fileProcessingReason); const processedExtraReason = (seenReasons == null ? undefined : seenReasons.size) !== (reasons == null ? undefined : reasons.length); if (locationReason && (seenReasons == null ? undefined : seenReasons.size) === 1) seenReasons = undefined; if (seenReasons && cachedChain) { if (cachedChain.details && !processedExtraReason) { chain = chainDiagnosticMessages(cachedChain.details, diagnostic, ...args ?? emptyArray); } else if (cachedChain.fileIncludeReasonDetails) { if (!processedExtraReason) { if (!cachedFileIncludeDetailsHasProcessedExtraReason()) { fileIncludeReasonDetails = cachedChain.fileIncludeReasonDetails; } else { fileIncludeReasons = cachedChain.fileIncludeReasonDetails.next.slice(0, reasons.length); } } else { if (!cachedFileIncludeDetailsHasProcessedExtraReason()) { fileIncludeReasons = [...cachedChain.fileIncludeReasonDetails.next, fileIncludeReasons[0]]; } else { fileIncludeReasons = append(cachedChain.fileIncludeReasonDetails.next.slice(0, reasons.length), fileIncludeReasons[0]); } } } } if (!chain) { if (!fileIncludeReasonDetails) fileIncludeReasonDetails = seenReasons && chainDiagnosticMessages(fileIncludeReasons, Diagnostics.The_file_is_in_the_program_because_Colon); chain = chainDiagnosticMessages(redirectInfo ? fileIncludeReasonDetails ? [fileIncludeReasonDetails, ...redirectInfo] : redirectInfo : fileIncludeReasonDetails, diagnostic, ...args || emptyArray); } if (file) { if (cachedChain) { if (!cachedChain.fileIncludeReasonDetails || !processedExtraReason && fileIncludeReasonDetails) { cachedChain.fileIncludeReasonDetails = fileIncludeReasonDetails; } } else { (fileReasonsToChain ?? (fileReasonsToChain = /* @__PURE__ */ new Map)).set(file.path, cachedChain = { fileIncludeReasonDetails, redirectInfo }); } if (!cachedChain.details && !processedExtraReason) cachedChain.details = chain.next; } const location = locationReason && getReferencedFileLocation(program, locationReason); return location && isReferenceFileLocation(location) ? createFileDiagnosticFromMessageChain(location.file, location.pos, location.end - location.pos, chain, relatedInfo) : createCompilerDiagnosticFromMessageChain(chain, relatedInfo); function processReason(reason) { if (seenReasons == null ? undefined : seenReasons.has(reason)) return; (seenReasons ?? (seenReasons = /* @__PURE__ */ new Set)).add(reason); (fileIncludeReasons ?? (fileIncludeReasons = [])).push(fileIncludeReasonToDiagnostics(program, reason)); populateRelatedInfo(reason); } function populateRelatedInfo(reason) { if (!locationReason && isReferencedFile(reason)) { locationReason = reason; } else if (locationReason !== reason) { relatedInfo = append(relatedInfo, getFileIncludeReasonToRelatedInformation(program, reason)); } } function cachedFileIncludeDetailsHasProcessedExtraReason() { var _a; return ((_a = cachedChain.fileIncludeReasonDetails.next) == null ? undefined : _a.length) !== (reasons == null ? undefined : reasons.length); } } function getFileIncludeReasonToRelatedInformation(program, reason) { let relatedInfo = reasonToRelatedInfo == null ? undefined : reasonToRelatedInfo.get(reason); if (relatedInfo === undefined) (reasonToRelatedInfo ?? (reasonToRelatedInfo = /* @__PURE__ */ new Map)).set(reason, relatedInfo = fileIncludeReasonToRelatedInformation(program, reason) ?? false); return relatedInfo || undefined; } function fileIncludeReasonToRelatedInformation(program, reason) { if (isReferencedFile(reason)) { const referenceLocation = getReferencedFileLocation(program, reason); let message2; switch (reason.kind) { case 3: message2 = Diagnostics.File_is_included_via_import_here; break; case 4: message2 = Diagnostics.File_is_included_via_reference_here; break; case 5: message2 = Diagnostics.File_is_included_via_type_library_reference_here; break; case 7: message2 = Diagnostics.File_is_included_via_library_reference_here; break; default: Debug.assertNever(reason); } return isReferenceFileLocation(referenceLocation) ? createFileDiagnostic(referenceLocation.file, referenceLocation.pos, referenceLocation.end - referenceLocation.pos, message2) : undefined; } const currentDirectory = program.getCurrentDirectory(); const rootNames = program.getRootFileNames(); const options = program.getCompilerOptions(); if (!options.configFile) return; let configFileNode; let message; switch (reason.kind) { case 0: if (!options.configFile.configFileSpecs) return; const fileName = getNormalizedAbsolutePath(rootNames[reason.index], currentDirectory); const matchedByFiles = getMatchedFileSpec(program, fileName); if (matchedByFiles) { configFileNode = getTsConfigPropArrayElementValue(options.configFile, "files", matchedByFiles); message = Diagnostics.File_is_matched_by_files_list_specified_here; break; } const matchedByInclude = getMatchedIncludeSpec(program, fileName); if (!matchedByInclude || !isString(matchedByInclude)) return; configFileNode = getTsConfigPropArrayElementValue(options.configFile, "include", matchedByInclude); message = Diagnostics.File_is_matched_by_include_pattern_specified_here; break; case 1: case 2: const resolvedProjectReferences = program.getResolvedProjectReferences(); const projectReferences = program.getProjectReferences(); const referencedResolvedRef = Debug.checkDefined(resolvedProjectReferences == null ? undefined : resolvedProjectReferences[reason.index]); const referenceInfo = forEachProjectReference(projectReferences, resolvedProjectReferences, (resolvedRef, parent2, index2) => resolvedRef === referencedResolvedRef ? { sourceFile: (parent2 == null ? undefined : parent2.sourceFile) || options.configFile, index: index2 } : undefined); if (!referenceInfo) return; const { sourceFile, index } = referenceInfo; const referencesSyntax = forEachTsConfigPropArray(sourceFile, "references", (property) => isArrayLiteralExpression(property.initializer) ? property.initializer : undefined); return referencesSyntax && referencesSyntax.elements.length > index ? createDiagnosticForNodeInSourceFile(sourceFile, referencesSyntax.elements[index], reason.kind === 2 ? Diagnostics.File_is_output_from_referenced_project_specified_here : Diagnostics.File_is_source_from_referenced_project_specified_here) : undefined; case 8: configFileNode = getOptionsSyntaxByArrayElementValue(getCompilerOptionsObjectLiteralSyntax(), "types", usesWildcardTypes(options) ? "*" : reason.typeReference); message = Diagnostics.File_is_entry_point_of_type_library_specified_here; break; case 6: if (reason.index !== undefined) { configFileNode = getOptionsSyntaxByArrayElementValue(getCompilerOptionsObjectLiteralSyntax(), "lib", options.lib[reason.index]); message = Diagnostics.File_is_library_specified_here; break; } const target = getNameOfScriptTarget(getEmitScriptTarget(options)); configFileNode = target ? getOptionsSyntaxByValue(getCompilerOptionsObjectLiteralSyntax(), "target", target) : undefined; message = Diagnostics.File_is_default_library_for_target_specified_here; break; default: Debug.assertNever(reason); } return configFileNode && createDiagnosticForNodeInSourceFile(options.configFile, configFileNode, message); } } function getFileEmitOutput(program, sourceFile, emitOnlyDtsFiles, cancellationToken, customTransformers, forceDtsEmit) { const outputFiles = []; const { emitSkipped, diagnostics } = program.emit(sourceFile, writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers, forceDtsEmit); return { outputFiles, emitSkipped, diagnostics }; function writeFile2(fileName, text, writeByteOrderMark) { outputFiles.push({ name: fileName, writeByteOrderMark, text }); } } var SignatureInfo = /* @__PURE__ */ ((SignatureInfo2) => { SignatureInfo2[SignatureInfo2["ComputedDts"] = 0] = "ComputedDts"; SignatureInfo2[SignatureInfo2["StoredSignatureAtEmit"] = 1] = "StoredSignatureAtEmit"; SignatureInfo2[SignatureInfo2["UsedVersion"] = 2] = "UsedVersion"; return SignatureInfo2; })(SignatureInfo || {}); var BuilderState; ((BuilderState2) => { function createManyToManyPathMap() { function create2(forward, reverse, deleted) { const map2 = { getKeys: (v) => reverse.get(v), getValues: (k) => forward.get(k), keys: () => forward.keys(), size: () => forward.size, deleteKey: (k) => { (deleted || (deleted = /* @__PURE__ */ new Set)).add(k); const set = forward.get(k); if (!set) { return false; } set.forEach((v) => deleteFromMultimap(reverse, v, k)); forward.delete(k); return true; }, set: (k, vSet) => { deleted == null || deleted.delete(k); const existingVSet = forward.get(k); forward.set(k, vSet); existingVSet == null || existingVSet.forEach((v) => { if (!vSet.has(v)) { deleteFromMultimap(reverse, v, k); } }); vSet.forEach((v) => { if (!(existingVSet == null ? undefined : existingVSet.has(v))) { addToMultimap(reverse, v, k); } }); return map2; } }; return map2; } return create2(/* @__PURE__ */ new Map, /* @__PURE__ */ new Map, undefined); } BuilderState2.createManyToManyPathMap = createManyToManyPathMap; function addToMultimap(map2, k, v) { let set = map2.get(k); if (!set) { set = /* @__PURE__ */ new Set; map2.set(k, set); } set.add(v); } function deleteFromMultimap(map2, k, v) { const set = map2.get(k); if (set == null ? undefined : set.delete(v)) { if (!set.size) { map2.delete(k); } return true; } return false; } function getReferencedFilesFromImportedModuleSymbol(symbol) { return mapDefined(symbol.declarations, (declaration) => { var _a; return (_a = getSourceFileOfNode(declaration)) == null ? undefined : _a.resolvedPath; }); } function getReferencedFilesFromImportLiteral(checker, importName) { const symbol = checker.getSymbolAtLocation(importName); return symbol && getReferencedFilesFromImportedModuleSymbol(symbol); } function getReferencedFileFromFileName(program, fileName, sourceFileDirectory, getCanonicalFileName) { var _a; return toPath(((_a = program.getRedirectFromSourceFile(fileName)) == null ? undefined : _a.outputDts) || fileName, sourceFileDirectory, getCanonicalFileName); } function getReferencedFiles(program, sourceFile, getCanonicalFileName) { let referencedFiles; if (sourceFile.imports && sourceFile.imports.length > 0) { const checker = program.getTypeChecker(); for (const importName of sourceFile.imports) { const declarationSourceFilePaths = getReferencedFilesFromImportLiteral(checker, importName); declarationSourceFilePaths == null || declarationSourceFilePaths.forEach(addReferencedFile); } } const sourceFileDirectory = getDirectoryPath(sourceFile.resolvedPath); if (sourceFile.referencedFiles && sourceFile.referencedFiles.length > 0) { for (const referencedFile of sourceFile.referencedFiles) { const referencedPath = getReferencedFileFromFileName(program, referencedFile.fileName, sourceFileDirectory, getCanonicalFileName); addReferencedFile(referencedPath); } } program.forEachResolvedTypeReferenceDirective(({ resolvedTypeReferenceDirective }) => { if (!resolvedTypeReferenceDirective) { return; } const fileName = resolvedTypeReferenceDirective.resolvedFileName; const typeFilePath = getReferencedFileFromFileName(program, fileName, sourceFileDirectory, getCanonicalFileName); addReferencedFile(typeFilePath); }, sourceFile); if (sourceFile.moduleAugmentations.length) { const checker = program.getTypeChecker(); for (const moduleName of sourceFile.moduleAugmentations) { if (!isStringLiteral(moduleName)) continue; const symbol = checker.getSymbolAtLocation(moduleName); if (!symbol) continue; addReferenceFromAmbientModule(symbol); } } for (const ambientModule of program.getTypeChecker().getAmbientModules()) { if (ambientModule.declarations && ambientModule.declarations.length > 1) { addReferenceFromAmbientModule(ambientModule); } } return referencedFiles; function addReferenceFromAmbientModule(symbol) { if (!symbol.declarations) { return; } for (const declaration of symbol.declarations) { const declarationSourceFile = getSourceFileOfNode(declaration); if (declarationSourceFile && declarationSourceFile !== sourceFile) { addReferencedFile(declarationSourceFile.resolvedPath); } } } function addReferencedFile(referencedPath) { (referencedFiles || (referencedFiles = /* @__PURE__ */ new Set)).add(referencedPath); } } function canReuseOldState(newReferencedMap, oldState) { return oldState && !oldState.referencedMap === !newReferencedMap; } BuilderState2.canReuseOldState = canReuseOldState; function createReferencedMap(options) { return options.module !== 0 && !options.outFile ? createManyToManyPathMap() : undefined; } BuilderState2.createReferencedMap = createReferencedMap; function create(newProgram, oldState, disableUseFileVersionAsSignature) { var _a, _b; const fileInfos = /* @__PURE__ */ new Map; const options = newProgram.getCompilerOptions(); const referencedMap = createReferencedMap(options); const useOldState = canReuseOldState(referencedMap, oldState); newProgram.getTypeChecker(); for (const sourceFile of newProgram.getSourceFiles()) { const version2 = Debug.checkDefined(sourceFile.version, "Program intended to be used with Builder should have source files with versions set"); const oldUncommittedSignature = useOldState ? (_a = oldState.oldSignatures) == null ? undefined : _a.get(sourceFile.resolvedPath) : undefined; const signature = oldUncommittedSignature === undefined ? useOldState ? (_b = oldState.fileInfos.get(sourceFile.resolvedPath)) == null ? undefined : _b.signature : undefined : oldUncommittedSignature || undefined; if (referencedMap) { const newReferences = getReferencedFiles(newProgram, sourceFile, newProgram.getCanonicalFileName); if (newReferences) { referencedMap.set(sourceFile.resolvedPath, newReferences); } } fileInfos.set(sourceFile.resolvedPath, { version: version2, signature, affectsGlobalScope: !options.outFile ? isFileAffectingGlobalScope(sourceFile) || undefined : undefined, impliedFormat: sourceFile.impliedNodeFormat }); } return { fileInfos, referencedMap, useFileVersionAsSignature: !disableUseFileVersionAsSignature && !useOldState }; } BuilderState2.create = create; function releaseCache2(state) { state.allFilesExcludingDefaultLibraryFile = undefined; state.allFileNames = undefined; } BuilderState2.releaseCache = releaseCache2; function getFilesAffectedBy(state, programOfThisState, path, cancellationToken, host) { var _a; const result = getFilesAffectedByWithOldState(state, programOfThisState, path, cancellationToken, host); (_a = state.oldSignatures) == null || _a.clear(); return result; } BuilderState2.getFilesAffectedBy = getFilesAffectedBy; function getFilesAffectedByWithOldState(state, programOfThisState, path, cancellationToken, host) { const sourceFile = programOfThisState.getSourceFileByPath(path); if (!sourceFile) { return emptyArray; } if (!updateShapeSignature(state, programOfThisState, sourceFile, cancellationToken, host)) { return [sourceFile]; } return (state.referencedMap ? getFilesAffectedByUpdatedShapeWhenModuleEmit : getFilesAffectedByUpdatedShapeWhenNonModuleEmit)(state, programOfThisState, sourceFile, cancellationToken, host); } BuilderState2.getFilesAffectedByWithOldState = getFilesAffectedByWithOldState; function updateSignatureOfFile(state, signature, path) { state.fileInfos.get(path).signature = signature; (state.hasCalledUpdateShapeSignature || (state.hasCalledUpdateShapeSignature = /* @__PURE__ */ new Set)).add(path); } BuilderState2.updateSignatureOfFile = updateSignatureOfFile; function computeDtsSignature(programOfThisState, sourceFile, cancellationToken, host, onNewSignature) { programOfThisState.emit(sourceFile, (fileName, text, _writeByteOrderMark, _onError, sourceFiles, data) => { Debug.assert(isDeclarationFileName(fileName), `File extension for signature expected to be dts: Got:: ${fileName}`); onNewSignature(computeSignatureWithDiagnostics(programOfThisState, sourceFile, text, host, data), sourceFiles); }, cancellationToken, 2, undefined, true); } BuilderState2.computeDtsSignature = computeDtsSignature; function updateShapeSignature(state, programOfThisState, sourceFile, cancellationToken, host, useFileVersionAsSignature = state.useFileVersionAsSignature) { var _a; if ((_a = state.hasCalledUpdateShapeSignature) == null ? undefined : _a.has(sourceFile.resolvedPath)) return false; const info = state.fileInfos.get(sourceFile.resolvedPath); const prevSignature = info.signature; let latestSignature; if (!sourceFile.isDeclarationFile && !useFileVersionAsSignature) { computeDtsSignature(programOfThisState, sourceFile, cancellationToken, host, (signature) => { latestSignature = signature; if (host.storeSignatureInfo) (state.signatureInfo ?? (state.signatureInfo = /* @__PURE__ */ new Map)).set(sourceFile.resolvedPath, 0); }); } if (latestSignature === undefined) { latestSignature = sourceFile.version; if (host.storeSignatureInfo) (state.signatureInfo ?? (state.signatureInfo = /* @__PURE__ */ new Map)).set(sourceFile.resolvedPath, 2); } (state.oldSignatures || (state.oldSignatures = /* @__PURE__ */ new Map)).set(sourceFile.resolvedPath, prevSignature || false); (state.hasCalledUpdateShapeSignature || (state.hasCalledUpdateShapeSignature = /* @__PURE__ */ new Set)).add(sourceFile.resolvedPath); info.signature = latestSignature; return latestSignature !== prevSignature; } BuilderState2.updateShapeSignature = updateShapeSignature; function getAllDependencies(state, programOfThisState, sourceFile) { const compilerOptions = programOfThisState.getCompilerOptions(); if (compilerOptions.outFile) { return getAllFileNames(state, programOfThisState); } if (!state.referencedMap || isFileAffectingGlobalScope(sourceFile)) { return getAllFileNames(state, programOfThisState); } const seenMap = /* @__PURE__ */ new Set; const queue = [sourceFile.resolvedPath]; while (queue.length) { const path = queue.pop(); if (!seenMap.has(path)) { seenMap.add(path); const references = state.referencedMap.getValues(path); if (references) { for (const key of references.keys()) { queue.push(key); } } } } return arrayFrom(mapDefinedIterator(seenMap.keys(), (path) => { var _a; return ((_a = programOfThisState.getSourceFileByPath(path)) == null ? undefined : _a.fileName) ?? path; })); } BuilderState2.getAllDependencies = getAllDependencies; function getAllFileNames(state, programOfThisState) { if (!state.allFileNames) { const sourceFiles = programOfThisState.getSourceFiles(); state.allFileNames = sourceFiles === emptyArray ? emptyArray : sourceFiles.map((file) => file.fileName); } return state.allFileNames; } function getReferencedByPaths(state, referencedFilePath) { const keys = state.referencedMap.getKeys(referencedFilePath); return keys ? arrayFrom(keys.keys()) : []; } BuilderState2.getReferencedByPaths = getReferencedByPaths; function containsOnlyAmbientModules(sourceFile) { for (const statement of sourceFile.statements) { if (!isModuleWithStringLiteralName(statement)) { return false; } } return true; } function containsGlobalScopeAugmentation(sourceFile) { return some(sourceFile.moduleAugmentations, (augmentation) => isGlobalScopeAugmentation(augmentation.parent)); } function isFileAffectingGlobalScope(sourceFile) { return containsGlobalScopeAugmentation(sourceFile) || !isExternalOrCommonJsModule(sourceFile) && !isJsonSourceFile(sourceFile) && !containsOnlyAmbientModules(sourceFile); } function getAllFilesExcludingDefaultLibraryFile(state, programOfThisState, firstSourceFile) { if (state.allFilesExcludingDefaultLibraryFile) { return state.allFilesExcludingDefaultLibraryFile; } let result; if (firstSourceFile) addSourceFile(firstSourceFile); for (const sourceFile of programOfThisState.getSourceFiles()) { if (sourceFile !== firstSourceFile) { addSourceFile(sourceFile); } } state.allFilesExcludingDefaultLibraryFile = result || emptyArray; return state.allFilesExcludingDefaultLibraryFile; function addSourceFile(sourceFile) { if (!programOfThisState.isSourceFileDefaultLibrary(sourceFile)) { (result || (result = [])).push(sourceFile); } } } BuilderState2.getAllFilesExcludingDefaultLibraryFile = getAllFilesExcludingDefaultLibraryFile; function getFilesAffectedByUpdatedShapeWhenNonModuleEmit(state, programOfThisState, sourceFileWithUpdatedShape) { const compilerOptions = programOfThisState.getCompilerOptions(); if (compilerOptions && compilerOptions.outFile) { return [sourceFileWithUpdatedShape]; } return getAllFilesExcludingDefaultLibraryFile(state, programOfThisState, sourceFileWithUpdatedShape); } function getFilesAffectedByUpdatedShapeWhenModuleEmit(state, programOfThisState, sourceFileWithUpdatedShape, cancellationToken, host) { if (isFileAffectingGlobalScope(sourceFileWithUpdatedShape)) { return getAllFilesExcludingDefaultLibraryFile(state, programOfThisState, sourceFileWithUpdatedShape); } const compilerOptions = programOfThisState.getCompilerOptions(); if (compilerOptions && (getIsolatedModules(compilerOptions) || compilerOptions.outFile)) { return [sourceFileWithUpdatedShape]; } const seenFileNamesMap = /* @__PURE__ */ new Map; seenFileNamesMap.set(sourceFileWithUpdatedShape.resolvedPath, sourceFileWithUpdatedShape); const queue = getReferencedByPaths(state, sourceFileWithUpdatedShape.resolvedPath); while (queue.length > 0) { const currentPath = queue.pop(); if (!seenFileNamesMap.has(currentPath)) { const currentSourceFile = programOfThisState.getSourceFileByPath(currentPath); seenFileNamesMap.set(currentPath, currentSourceFile); if (currentSourceFile && updateShapeSignature(state, programOfThisState, currentSourceFile, cancellationToken, host)) { queue.push(...getReferencedByPaths(state, currentSourceFile.resolvedPath)); } } } return arrayFrom(mapDefinedIterator(seenFileNamesMap.values(), (value) => value)); } })(BuilderState || (BuilderState = {})); var BuilderFileEmit = /* @__PURE__ */ ((BuilderFileEmit2) => { BuilderFileEmit2[BuilderFileEmit2["None"] = 0] = "None"; BuilderFileEmit2[BuilderFileEmit2["Js"] = 1] = "Js"; BuilderFileEmit2[BuilderFileEmit2["JsMap"] = 2] = "JsMap"; BuilderFileEmit2[BuilderFileEmit2["JsInlineMap"] = 4] = "JsInlineMap"; BuilderFileEmit2[BuilderFileEmit2["DtsErrors"] = 8] = "DtsErrors"; BuilderFileEmit2[BuilderFileEmit2["DtsEmit"] = 16] = "DtsEmit"; BuilderFileEmit2[BuilderFileEmit2["DtsMap"] = 32] = "DtsMap"; BuilderFileEmit2[BuilderFileEmit2["Dts"] = 24] = "Dts"; BuilderFileEmit2[BuilderFileEmit2["AllJs"] = 7] = "AllJs"; BuilderFileEmit2[BuilderFileEmit2["AllDtsEmit"] = 48] = "AllDtsEmit"; BuilderFileEmit2[BuilderFileEmit2["AllDts"] = 56] = "AllDts"; BuilderFileEmit2[BuilderFileEmit2["All"] = 63] = "All"; return BuilderFileEmit2; })(BuilderFileEmit || {}); function isBuilderProgramStateWithDefinedProgram(state) { return state.program !== undefined; } function toBuilderProgramStateWithDefinedProgram(state) { Debug.assert(isBuilderProgramStateWithDefinedProgram(state)); return state; } function getBuilderFileEmit(options) { let result = 1; if (options.sourceMap) result = result | 2; if (options.inlineSourceMap) result = result | 4; if (getEmitDeclarations(options)) result = result | 24; if (options.declarationMap) result = result | 32; if (options.emitDeclarationOnly) result = result & 56; return result; } function getPendingEmitKind(optionsOrEmitKind, oldOptionsOrEmitKind) { const oldEmitKind = oldOptionsOrEmitKind && (isNumber(oldOptionsOrEmitKind) ? oldOptionsOrEmitKind : getBuilderFileEmit(oldOptionsOrEmitKind)); const emitKind = isNumber(optionsOrEmitKind) ? optionsOrEmitKind : getBuilderFileEmit(optionsOrEmitKind); if (oldEmitKind === emitKind) return 0; if (!oldEmitKind || !emitKind) return emitKind; const diff = oldEmitKind ^ emitKind; let result = 0; if (diff & 7) result = emitKind & 7; if (diff & 8) result = result | emitKind & 8; if (diff & 48) result = result | emitKind & 48; return result; } function hasSameKeys(map1, map2) { return map1 === map2 || map1 !== undefined && map2 !== undefined && map1.size === map2.size && !forEachKey(map1, (key) => !map2.has(key)); } function createBuilderProgramState(newProgram, oldState) { var _a, _b; const state = BuilderState.create(newProgram, oldState, false); state.program = newProgram; const compilerOptions = newProgram.getCompilerOptions(); state.compilerOptions = compilerOptions; const outFilePath = compilerOptions.outFile; state.semanticDiagnosticsPerFile = /* @__PURE__ */ new Map; if (outFilePath && compilerOptions.composite && (oldState == null ? undefined : oldState.outSignature) && outFilePath === oldState.compilerOptions.outFile) { state.outSignature = oldState.outSignature && getEmitSignatureFromOldSignature(compilerOptions, oldState.compilerOptions, oldState.outSignature); } state.changedFilesSet = /* @__PURE__ */ new Set; state.latestChangedDtsFile = compilerOptions.composite ? oldState == null ? undefined : oldState.latestChangedDtsFile : undefined; state.checkPending = state.compilerOptions.noCheck ? true : undefined; const useOldState = BuilderState.canReuseOldState(state.referencedMap, oldState); const oldCompilerOptions = useOldState ? oldState.compilerOptions : undefined; let canCopySemanticDiagnostics = useOldState && !compilerOptionsAffectSemanticDiagnostics(compilerOptions, oldCompilerOptions); const canCopyEmitSignatures = compilerOptions.composite && (oldState == null ? undefined : oldState.emitSignatures) && !outFilePath && !compilerOptionsAffectDeclarationPath(compilerOptions, oldState.compilerOptions); let canCopyEmitDiagnostics = true; if (useOldState) { (_a = oldState.changedFilesSet) == null || _a.forEach((value) => state.changedFilesSet.add(value)); if (!outFilePath && ((_b = oldState.affectedFilesPendingEmit) == null ? undefined : _b.size)) { state.affectedFilesPendingEmit = new Map(oldState.affectedFilesPendingEmit); state.seenAffectedFiles = /* @__PURE__ */ new Set; } state.programEmitPending = oldState.programEmitPending; if (outFilePath && state.changedFilesSet.size) { canCopySemanticDiagnostics = false; canCopyEmitDiagnostics = false; } state.hasErrorsFromOldState = oldState.hasErrors; } else { state.buildInfoEmitPending = isIncrementalCompilation(compilerOptions); } const referencedMap = state.referencedMap; const oldReferencedMap = useOldState ? oldState.referencedMap : undefined; const copyDeclarationFileDiagnostics = canCopySemanticDiagnostics && !compilerOptions.skipLibCheck === !oldCompilerOptions.skipLibCheck; const copyLibFileDiagnostics = copyDeclarationFileDiagnostics && !compilerOptions.skipDefaultLibCheck === !oldCompilerOptions.skipDefaultLibCheck; state.fileInfos.forEach((info, sourceFilePath) => { var _a2; let oldInfo; let newReferences; if (!useOldState || !(oldInfo = oldState.fileInfos.get(sourceFilePath)) || oldInfo.version !== info.version || oldInfo.impliedFormat !== info.impliedFormat || !hasSameKeys(newReferences = referencedMap && referencedMap.getValues(sourceFilePath), oldReferencedMap && oldReferencedMap.getValues(sourceFilePath)) || newReferences && forEachKey(newReferences, (path) => !state.fileInfos.has(path) && oldState.fileInfos.has(path))) { addFileToChangeSet(sourceFilePath); } else { const sourceFile = newProgram.getSourceFileByPath(sourceFilePath); const emitDiagnostics = canCopyEmitDiagnostics ? (_a2 = oldState.emitDiagnosticsPerFile) == null ? undefined : _a2.get(sourceFilePath) : undefined; if (emitDiagnostics) { (state.emitDiagnosticsPerFile ?? (state.emitDiagnosticsPerFile = /* @__PURE__ */ new Map)).set(sourceFilePath, oldState.hasReusableDiagnostic ? convertToDiagnostics(emitDiagnostics, sourceFilePath, newProgram) : repopulateDiagnostics(emitDiagnostics, newProgram)); } if (canCopySemanticDiagnostics) { if (sourceFile.isDeclarationFile && !copyDeclarationFileDiagnostics) return; if (newProgram.isSourceFileDefaultLibrary(sourceFile) && !copyLibFileDiagnostics) return; const diagnostics = oldState.semanticDiagnosticsPerFile.get(sourceFilePath); if (diagnostics) { state.semanticDiagnosticsPerFile.set(sourceFilePath, oldState.hasReusableDiagnostic ? convertToDiagnostics(diagnostics, sourceFilePath, newProgram) : repopulateDiagnostics(diagnostics, newProgram)); (state.semanticDiagnosticsFromOldState ?? (state.semanticDiagnosticsFromOldState = /* @__PURE__ */ new Set)).add(sourceFilePath); } } } if (canCopyEmitSignatures) { const oldEmitSignature = oldState.emitSignatures.get(sourceFilePath); if (oldEmitSignature) { (state.emitSignatures ?? (state.emitSignatures = /* @__PURE__ */ new Map)).set(sourceFilePath, getEmitSignatureFromOldSignature(compilerOptions, oldState.compilerOptions, oldEmitSignature)); } } }); if (useOldState && forEachEntry(oldState.fileInfos, (info, sourceFilePath) => { if (state.fileInfos.has(sourceFilePath)) return false; if (info.affectsGlobalScope) return true; state.buildInfoEmitPending = true; return !!outFilePath; })) { BuilderState.getAllFilesExcludingDefaultLibraryFile(state, newProgram, undefined).forEach((file) => addFileToChangeSet(file.resolvedPath)); } else if (oldCompilerOptions) { const pendingEmitKind = compilerOptionsAffectEmit(compilerOptions, oldCompilerOptions) ? getBuilderFileEmit(compilerOptions) : getPendingEmitKind(compilerOptions, oldCompilerOptions); if (pendingEmitKind !== 0) { if (!outFilePath) { newProgram.getSourceFiles().forEach((f) => { if (!state.changedFilesSet.has(f.resolvedPath)) { addToAffectedFilesPendingEmit(state, f.resolvedPath, pendingEmitKind); } }); Debug.assert(!state.seenAffectedFiles || !state.seenAffectedFiles.size); state.seenAffectedFiles = state.seenAffectedFiles || /* @__PURE__ */ new Set; } else if (!state.changedFilesSet.size) { state.programEmitPending = state.programEmitPending ? state.programEmitPending | pendingEmitKind : pendingEmitKind; } state.buildInfoEmitPending = true; } } if (useOldState && state.semanticDiagnosticsPerFile.size !== state.fileInfos.size && oldState.checkPending !== state.checkPending) state.buildInfoEmitPending = true; return state; function addFileToChangeSet(path) { state.changedFilesSet.add(path); if (outFilePath) { canCopySemanticDiagnostics = false; canCopyEmitDiagnostics = false; state.semanticDiagnosticsFromOldState = undefined; state.semanticDiagnosticsPerFile.clear(); state.emitDiagnosticsPerFile = undefined; } state.buildInfoEmitPending = true; state.programEmitPending = undefined; } } function getEmitSignatureFromOldSignature(options, oldOptions, oldEmitSignature) { return !!options.declarationMap === !!oldOptions.declarationMap ? oldEmitSignature : isString(oldEmitSignature) ? [oldEmitSignature] : oldEmitSignature[0]; } function repopulateDiagnostics(diagnostics, newProgram) { if (!diagnostics.length) return diagnostics; return sameMap(diagnostics, (diag2) => { if (isString(diag2.messageText)) return diag2; const repopulatedChain = convertOrRepopulateDiagnosticMessageChain(diag2.messageText, diag2.file, newProgram, (chain) => { var _a; return (_a = chain.repopulateInfo) == null ? undefined : _a.call(chain); }); return repopulatedChain === diag2.messageText ? diag2 : { ...diag2, messageText: repopulatedChain }; }); } function convertOrRepopulateDiagnosticMessageChain(chain, sourceFile, newProgram, repopulateInfo) { const info = repopulateInfo(chain); if (info === true) { return { ...createModeMismatchDetails(sourceFile), next: convertOrRepopulateDiagnosticMessageChainArray(chain.next, sourceFile, newProgram, repopulateInfo) }; } else if (info) { return { ...createModuleNotFoundChain(sourceFile, newProgram, info.moduleReference, info.mode, info.packageName || info.moduleReference), next: convertOrRepopulateDiagnosticMessageChainArray(chain.next, sourceFile, newProgram, repopulateInfo) }; } const next = convertOrRepopulateDiagnosticMessageChainArray(chain.next, sourceFile, newProgram, repopulateInfo); return next === chain.next ? chain : { ...chain, next }; } function convertOrRepopulateDiagnosticMessageChainArray(array, sourceFile, newProgram, repopulateInfo) { return sameMap(array, (chain) => convertOrRepopulateDiagnosticMessageChain(chain, sourceFile, newProgram, repopulateInfo)); } function convertToDiagnostics(diagnostics, diagnosticFilePath, newProgram) { if (!diagnostics.length) return emptyArray; let buildInfoDirectory; return diagnostics.map((diagnostic) => { const result = convertToDiagnosticRelatedInformation(diagnostic, diagnosticFilePath, newProgram, toPathInBuildInfoDirectory); result.reportsUnnecessary = diagnostic.reportsUnnecessary; result.reportsDeprecated = diagnostic.reportDeprecated; result.source = diagnostic.source; result.skippedOn = diagnostic.skippedOn; const { relatedInformation } = diagnostic; result.relatedInformation = relatedInformation ? relatedInformation.length ? relatedInformation.map((r) => convertToDiagnosticRelatedInformation(r, diagnosticFilePath, newProgram, toPathInBuildInfoDirectory)) : [] : undefined; return result; }); function toPathInBuildInfoDirectory(path) { buildInfoDirectory ?? (buildInfoDirectory = getDirectoryPath(getNormalizedAbsolutePath(getTsBuildInfoEmitOutputFilePath(newProgram.getCompilerOptions()), newProgram.getCurrentDirectory()))); return toPath(path, buildInfoDirectory, newProgram.getCanonicalFileName); } } function convertToDiagnosticRelatedInformation(diagnostic, diagnosticFilePath, newProgram, toPath3) { const { file } = diagnostic; const sourceFile = file !== false ? newProgram.getSourceFileByPath(file ? toPath3(file) : diagnosticFilePath) : undefined; return { ...diagnostic, file: sourceFile, messageText: isString(diagnostic.messageText) ? diagnostic.messageText : convertOrRepopulateDiagnosticMessageChain(diagnostic.messageText, sourceFile, newProgram, (chain) => chain.info) }; } function releaseCache(state) { BuilderState.releaseCache(state); state.program = undefined; } function assertSourceFileOkWithoutNextAffectedCall(state, sourceFile) { Debug.assert(!sourceFile || !state.affectedFiles || state.affectedFiles[state.affectedFilesIndex - 1] !== sourceFile || !state.semanticDiagnosticsPerFile.has(sourceFile.resolvedPath)); } function getNextAffectedFile(state, cancellationToken, host) { var _a; while (true) { const { affectedFiles } = state; if (affectedFiles) { const seenAffectedFiles = state.seenAffectedFiles; let affectedFilesIndex = state.affectedFilesIndex; while (affectedFilesIndex < affectedFiles.length) { const affectedFile = affectedFiles[affectedFilesIndex]; if (!seenAffectedFiles.has(affectedFile.resolvedPath)) { state.affectedFilesIndex = affectedFilesIndex; addToAffectedFilesPendingEmit(state, affectedFile.resolvedPath, getBuilderFileEmit(state.compilerOptions)); handleDtsMayChangeOfAffectedFile(state, affectedFile, cancellationToken, host); return affectedFile; } affectedFilesIndex++; } state.changedFilesSet.delete(state.currentChangedFilePath); state.currentChangedFilePath = undefined; (_a = state.oldSignatures) == null || _a.clear(); state.affectedFiles = undefined; } const nextKey = state.changedFilesSet.keys().next(); if (nextKey.done) { return; } const compilerOptions = state.program.getCompilerOptions(); if (compilerOptions.outFile) return state.program; state.affectedFiles = BuilderState.getFilesAffectedByWithOldState(state, state.program, nextKey.value, cancellationToken, host); state.currentChangedFilePath = nextKey.value; state.affectedFilesIndex = 0; if (!state.seenAffectedFiles) state.seenAffectedFiles = /* @__PURE__ */ new Set; } } function clearAffectedFilesPendingEmit(state, emitOnlyDtsFiles, isForDtsErrors) { var _a, _b; if (!((_a = state.affectedFilesPendingEmit) == null ? undefined : _a.size) && !state.programEmitPending) return; if (!emitOnlyDtsFiles && !isForDtsErrors) { state.affectedFilesPendingEmit = undefined; state.programEmitPending = undefined; } (_b = state.affectedFilesPendingEmit) == null || _b.forEach((emitKind, path) => { const pending = !isForDtsErrors ? emitKind & 7 : emitKind & (7 | 48); if (!pending) state.affectedFilesPendingEmit.delete(path); else state.affectedFilesPendingEmit.set(path, pending); }); if (state.programEmitPending) { const pending = !isForDtsErrors ? state.programEmitPending & 7 : state.programEmitPending & (7 | 48); if (!pending) state.programEmitPending = undefined; else state.programEmitPending = pending; } } function getPendingEmitKindWithSeen(optionsOrEmitKind, seenOldOptionsOrEmitKind, emitOnlyDtsFiles, isForDtsErrors) { let pendingKind = getPendingEmitKind(optionsOrEmitKind, seenOldOptionsOrEmitKind); if (emitOnlyDtsFiles) pendingKind = pendingKind & 56; if (isForDtsErrors) pendingKind = pendingKind & 8; return pendingKind; } function getBuilderFileEmitAllDts(isForDtsErrors) { return !isForDtsErrors ? 56 : 8; } function getNextAffectedFilePendingEmit(state, emitOnlyDtsFiles, isForDtsErrors) { var _a; if (!((_a = state.affectedFilesPendingEmit) == null ? undefined : _a.size)) return; return forEachEntry(state.affectedFilesPendingEmit, (emitKind, path) => { var _a2; const affectedFile = state.program.getSourceFileByPath(path); if (!affectedFile || !sourceFileMayBeEmitted(affectedFile, state.program)) { state.affectedFilesPendingEmit.delete(path); return; } const seenKind = (_a2 = state.seenEmittedFiles) == null ? undefined : _a2.get(affectedFile.resolvedPath); const pendingKind = getPendingEmitKindWithSeen(emitKind, seenKind, emitOnlyDtsFiles, isForDtsErrors); if (pendingKind) return { affectedFile, emitKind: pendingKind }; }); } function getNextPendingEmitDiagnosticsFile(state, isForDtsErrors) { var _a; if (!((_a = state.emitDiagnosticsPerFile) == null ? undefined : _a.size)) return; return forEachEntry(state.emitDiagnosticsPerFile, (diagnostics, path) => { var _a2; const affectedFile = state.program.getSourceFileByPath(path); if (!affectedFile || !sourceFileMayBeEmitted(affectedFile, state.program)) { state.emitDiagnosticsPerFile.delete(path); return; } const seenKind = ((_a2 = state.seenEmittedFiles) == null ? undefined : _a2.get(affectedFile.resolvedPath)) || 0; if (!(seenKind & getBuilderFileEmitAllDts(isForDtsErrors))) return { affectedFile, diagnostics, seenKind }; }); } function removeDiagnosticsOfLibraryFiles(state) { if (!state.cleanedDiagnosticsOfLibFiles) { state.cleanedDiagnosticsOfLibFiles = true; const options = state.program.getCompilerOptions(); forEach(state.program.getSourceFiles(), (f) => state.program.isSourceFileDefaultLibrary(f) && !skipTypeCheckingIgnoringNoCheck(f, options, state.program) && removeSemanticDiagnosticsOf(state, f.resolvedPath)); } } function handleDtsMayChangeOfAffectedFile(state, affectedFile, cancellationToken, host) { removeSemanticDiagnosticsOf(state, affectedFile.resolvedPath); if (state.allFilesExcludingDefaultLibraryFile === state.affectedFiles) { removeDiagnosticsOfLibraryFiles(state); BuilderState.updateShapeSignature(state, state.program, affectedFile, cancellationToken, host); return; } if (state.compilerOptions.assumeChangesOnlyAffectDirectDependencies) return; handleDtsMayChangeOfReferencingExportOfAffectedFile(state, affectedFile, cancellationToken, host); } function handleDtsMayChangeOf(state, path, invalidateJsFiles, cancellationToken, host) { removeSemanticDiagnosticsOf(state, path); if (!state.changedFilesSet.has(path)) { const sourceFile = state.program.getSourceFileByPath(path); if (sourceFile) { BuilderState.updateShapeSignature(state, state.program, sourceFile, cancellationToken, host, true); if (invalidateJsFiles) { addToAffectedFilesPendingEmit(state, path, getBuilderFileEmit(state.compilerOptions)); } else if (getEmitDeclarations(state.compilerOptions)) { addToAffectedFilesPendingEmit(state, path, state.compilerOptions.declarationMap ? 56 : 24); } } } } function removeSemanticDiagnosticsOf(state, path) { if (!state.semanticDiagnosticsFromOldState) { return true; } state.semanticDiagnosticsFromOldState.delete(path); state.semanticDiagnosticsPerFile.delete(path); return !state.semanticDiagnosticsFromOldState.size; } function isChangedSignature(state, path) { const oldSignature = Debug.checkDefined(state.oldSignatures).get(path) || undefined; const newSignature = Debug.checkDefined(state.fileInfos.get(path)).signature; return newSignature !== oldSignature; } function handleDtsMayChangeOfGlobalScope(state, filePath, invalidateJsFiles, cancellationToken, host) { var _a; if (!((_a = state.fileInfos.get(filePath)) == null ? undefined : _a.affectsGlobalScope)) return false; BuilderState.getAllFilesExcludingDefaultLibraryFile(state, state.program, undefined).forEach((file) => handleDtsMayChangeOf(state, file.resolvedPath, invalidateJsFiles, cancellationToken, host)); removeDiagnosticsOfLibraryFiles(state); return true; } function handleDtsMayChangeOfReferencingExportOfAffectedFile(state, affectedFile, cancellationToken, host) { var _a, _b; if (!state.referencedMap || !state.changedFilesSet.has(affectedFile.resolvedPath)) return; if (!isChangedSignature(state, affectedFile.resolvedPath)) return; if (getIsolatedModules(state.compilerOptions)) { const seenFileNamesMap = /* @__PURE__ */ new Map; seenFileNamesMap.set(affectedFile.resolvedPath, true); const queue = BuilderState.getReferencedByPaths(state, affectedFile.resolvedPath); while (queue.length > 0) { const currentPath = queue.pop(); if (!seenFileNamesMap.has(currentPath)) { seenFileNamesMap.set(currentPath, true); if (handleDtsMayChangeOfGlobalScope(state, currentPath, false, cancellationToken, host)) return; handleDtsMayChangeOf(state, currentPath, false, cancellationToken, host); if (isChangedSignature(state, currentPath)) { const currentSourceFile = state.program.getSourceFileByPath(currentPath); queue.push(...BuilderState.getReferencedByPaths(state, currentSourceFile.resolvedPath)); } } } } const seenFileAndExportsOfFile = /* @__PURE__ */ new Set; const invalidateJsFiles = !!((_a = affectedFile.symbol) == null ? undefined : _a.exports) && !!forEachEntry(affectedFile.symbol.exports, (exported) => { if ((exported.flags & 128) !== 0) return true; const aliased = skipAlias(exported, state.program.getTypeChecker()); if (aliased === exported) return false; return (aliased.flags & 128) !== 0 && some(aliased.declarations, (d) => getSourceFileOfNode(d) === affectedFile); }); (_b = state.referencedMap.getKeys(affectedFile.resolvedPath)) == null || _b.forEach((exportedFromPath) => { if (handleDtsMayChangeOfGlobalScope(state, exportedFromPath, invalidateJsFiles, cancellationToken, host)) return true; const references = state.referencedMap.getKeys(exportedFromPath); return references && forEachKey(references, (filePath) => handleDtsMayChangeOfFileAndExportsOfFile(state, filePath, invalidateJsFiles, seenFileAndExportsOfFile, cancellationToken, host)); }); } function handleDtsMayChangeOfFileAndExportsOfFile(state, filePath, invalidateJsFiles, seenFileAndExportsOfFile, cancellationToken, host) { var _a; if (!tryAddToSet(seenFileAndExportsOfFile, filePath)) return; if (handleDtsMayChangeOfGlobalScope(state, filePath, invalidateJsFiles, cancellationToken, host)) return true; handleDtsMayChangeOf(state, filePath, invalidateJsFiles, cancellationToken, host); (_a = state.referencedMap.getKeys(filePath)) == null || _a.forEach((referencingFilePath) => handleDtsMayChangeOfFileAndExportsOfFile(state, referencingFilePath, invalidateJsFiles, seenFileAndExportsOfFile, cancellationToken, host)); return; } function getSemanticDiagnosticsOfFile(state, sourceFile, cancellationToken, semanticDiagnosticsPerFile) { if (state.compilerOptions.noCheck) return emptyArray; return concatenate(getBinderAndCheckerDiagnosticsOfFile(state, sourceFile, cancellationToken, semanticDiagnosticsPerFile), state.program.getProgramDiagnostics(sourceFile)); } function getBinderAndCheckerDiagnosticsOfFile(state, sourceFile, cancellationToken, semanticDiagnosticsPerFile) { semanticDiagnosticsPerFile ?? (semanticDiagnosticsPerFile = state.semanticDiagnosticsPerFile); const path = sourceFile.resolvedPath; const cachedDiagnostics = semanticDiagnosticsPerFile.get(path); if (cachedDiagnostics) { return filterSemanticDiagnostics(cachedDiagnostics, state.compilerOptions); } const diagnostics = state.program.getBindAndCheckDiagnostics(sourceFile, cancellationToken); semanticDiagnosticsPerFile.set(path, diagnostics); state.buildInfoEmitPending = true; return filterSemanticDiagnostics(diagnostics, state.compilerOptions); } function isIncrementalBundleEmitBuildInfo(info) { var _a; return !!((_a = info.options) == null ? undefined : _a.outFile); } function isIncrementalBuildInfo(info) { return !!info.fileNames; } function isNonIncrementalBuildInfo(info) { return !isIncrementalBuildInfo(info) && !!info.root; } function ensureHasErrorsForState(state) { if (state.hasErrors !== undefined) return; if (isIncrementalCompilation(state.compilerOptions)) { state.hasErrors = !some(state.program.getSourceFiles(), (f) => { var _a, _b; const bindAndCheckDiagnostics = state.semanticDiagnosticsPerFile.get(f.resolvedPath); return bindAndCheckDiagnostics === undefined || !!bindAndCheckDiagnostics.length || !!((_b = (_a = state.emitDiagnosticsPerFile) == null ? undefined : _a.get(f.resolvedPath)) == null ? undefined : _b.length); }) && (hasSyntaxOrGlobalErrors(state) || some(state.program.getSourceFiles(), (f) => !!state.program.getProgramDiagnostics(f).length)); } else { state.hasErrors = some(state.program.getSourceFiles(), (f) => { var _a, _b; const bindAndCheckDiagnostics = state.semanticDiagnosticsPerFile.get(f.resolvedPath); return !!(bindAndCheckDiagnostics == null ? undefined : bindAndCheckDiagnostics.length) || !!((_b = (_a = state.emitDiagnosticsPerFile) == null ? undefined : _a.get(f.resolvedPath)) == null ? undefined : _b.length); }) || hasSyntaxOrGlobalErrors(state); } } function hasSyntaxOrGlobalErrors(state) { return !!state.program.getConfigFileParsingDiagnostics().length || !!state.program.getSyntacticDiagnostics().length || !!state.program.getOptionsDiagnostics().length || !!state.program.getGlobalDiagnostics().length; } function getBuildInfoEmitPending(state) { ensureHasErrorsForState(state); return state.buildInfoEmitPending ?? (state.buildInfoEmitPending = !!state.hasErrorsFromOldState !== !!state.hasErrors); } function getBuildInfo2(state) { var _a, _b; const currentDirectory = state.program.getCurrentDirectory(); const buildInfoDirectory = getDirectoryPath(getNormalizedAbsolutePath(getTsBuildInfoEmitOutputFilePath(state.compilerOptions), currentDirectory)); const latestChangedDtsFile = state.latestChangedDtsFile ? relativeToBuildInfoEnsuringAbsolutePath(state.latestChangedDtsFile) : undefined; const fileNames = []; const fileNameToFileId = /* @__PURE__ */ new Map; const rootFileNames = new Set(state.program.getRootFileNames().map((f) => toPath(f, currentDirectory, state.program.getCanonicalFileName))); ensureHasErrorsForState(state); if (!isIncrementalCompilation(state.compilerOptions)) { const buildInfo2 = { root: arrayFrom(rootFileNames, (r) => relativeToBuildInfo(r)), errors: state.hasErrors ? true : undefined, checkPending: state.checkPending, version }; return buildInfo2; } const root = []; if (state.compilerOptions.outFile) { const fileInfos2 = arrayFrom(state.fileInfos.entries(), ([key, value]) => { const fileId = toFileId(key); tryAddRoot(key, fileId); return value.impliedFormat ? { version: value.version, impliedFormat: value.impliedFormat, signature: undefined, affectsGlobalScope: undefined } : value.version; }); const buildInfo2 = { fileNames, fileInfos: fileInfos2, root, resolvedRoot: toResolvedRoot(), options: toIncrementalBuildInfoCompilerOptions(state.compilerOptions), semanticDiagnosticsPerFile: !state.changedFilesSet.size ? toIncrementalBuildInfoDiagnostics() : undefined, emitDiagnosticsPerFile: toIncrementalBuildInfoEmitDiagnostics(), changeFileSet: toChangeFileSet(), outSignature: state.outSignature, latestChangedDtsFile, pendingEmit: !state.programEmitPending ? undefined : state.programEmitPending === getBuilderFileEmit(state.compilerOptions) ? false : state.programEmitPending, errors: state.hasErrors ? true : undefined, checkPending: state.checkPending, version }; return buildInfo2; } let fileIdsList; let fileNamesToFileIdListId; let emitSignatures; const fileInfos = arrayFrom(state.fileInfos.entries(), ([key, value]) => { var _a2, _b2; const fileId = toFileId(key); tryAddRoot(key, fileId); Debug.assert(fileNames[fileId - 1] === relativeToBuildInfo(key)); const oldSignature = (_a2 = state.oldSignatures) == null ? undefined : _a2.get(key); const actualSignature = oldSignature !== undefined ? oldSignature || undefined : value.signature; if (state.compilerOptions.composite) { const file = state.program.getSourceFileByPath(key); if (!isJsonSourceFile(file) && sourceFileMayBeEmitted(file, state.program)) { const emitSignature = (_b2 = state.emitSignatures) == null ? undefined : _b2.get(key); if (emitSignature !== actualSignature) { emitSignatures = append(emitSignatures, emitSignature === undefined ? fileId : [fileId, !isString(emitSignature) && emitSignature[0] === actualSignature ? emptyArray : emitSignature]); } } } return value.version === actualSignature ? value.affectsGlobalScope || value.impliedFormat ? { version: value.version, signature: undefined, affectsGlobalScope: value.affectsGlobalScope, impliedFormat: value.impliedFormat } : value.version : actualSignature !== undefined ? oldSignature === undefined ? value : { version: value.version, signature: actualSignature, affectsGlobalScope: value.affectsGlobalScope, impliedFormat: value.impliedFormat } : { version: value.version, signature: false, affectsGlobalScope: value.affectsGlobalScope, impliedFormat: value.impliedFormat }; }); let referencedMap; if ((_a = state.referencedMap) == null ? undefined : _a.size()) { referencedMap = arrayFrom(state.referencedMap.keys()).sort(compareStringsCaseSensitive).map((key) => [ toFileId(key), toFileIdListId(state.referencedMap.getValues(key)) ]); } const semanticDiagnosticsPerFile = toIncrementalBuildInfoDiagnostics(); let affectedFilesPendingEmit; if ((_b = state.affectedFilesPendingEmit) == null ? undefined : _b.size) { const fullEmitForOptions = getBuilderFileEmit(state.compilerOptions); const seenFiles = /* @__PURE__ */ new Set; for (const path of arrayFrom(state.affectedFilesPendingEmit.keys()).sort(compareStringsCaseSensitive)) { if (tryAddToSet(seenFiles, path)) { const file = state.program.getSourceFileByPath(path); if (!file || !sourceFileMayBeEmitted(file, state.program)) continue; const fileId = toFileId(path), pendingEmit = state.affectedFilesPendingEmit.get(path); affectedFilesPendingEmit = append(affectedFilesPendingEmit, pendingEmit === fullEmitForOptions ? fileId : pendingEmit === 24 ? [fileId] : [fileId, pendingEmit]); } } } const buildInfo = { fileNames, fileIdsList, fileInfos, root, resolvedRoot: toResolvedRoot(), options: toIncrementalBuildInfoCompilerOptions(state.compilerOptions), referencedMap, semanticDiagnosticsPerFile, emitDiagnosticsPerFile: toIncrementalBuildInfoEmitDiagnostics(), changeFileSet: toChangeFileSet(), affectedFilesPendingEmit, emitSignatures, latestChangedDtsFile, errors: state.hasErrors ? true : undefined, checkPending: state.checkPending, version }; return buildInfo; function relativeToBuildInfoEnsuringAbsolutePath(path) { return relativeToBuildInfo(getNormalizedAbsolutePath(path, currentDirectory)); } function relativeToBuildInfo(path) { return ensurePathIsNonModuleName(getRelativePathFromDirectory(buildInfoDirectory, path, state.program.getCanonicalFileName)); } function toFileId(path) { let fileId = fileNameToFileId.get(path); if (fileId === undefined) { fileNames.push(relativeToBuildInfo(path)); fileNameToFileId.set(path, fileId = fileNames.length); } return fileId; } function toFileIdListId(set) { const fileIds = arrayFrom(set.keys(), toFileId).sort(compareValues); const key = fileIds.join(); let fileIdListId = fileNamesToFileIdListId == null ? undefined : fileNamesToFileIdListId.get(key); if (fileIdListId === undefined) { fileIdsList = append(fileIdsList, fileIds); (fileNamesToFileIdListId ?? (fileNamesToFileIdListId = /* @__PURE__ */ new Map)).set(key, fileIdListId = fileIdsList.length); } return fileIdListId; } function tryAddRoot(path, fileId) { const file = state.program.getSourceFile(path); if (!state.program.getFileIncludeReasons().get(file.path).some((r) => r.kind === 0)) return; if (!root.length) return root.push(fileId); const last2 = root[root.length - 1]; const isLastStartEnd = isArray(last2); if (isLastStartEnd && last2[1] === fileId - 1) return last2[1] = fileId; if (isLastStartEnd || root.length === 1 || last2 !== fileId - 1) return root.push(fileId); const lastButOne = root[root.length - 2]; if (!isNumber(lastButOne) || lastButOne !== last2 - 1) return root.push(fileId); root[root.length - 2] = [lastButOne, fileId]; return root.length = root.length - 1; } function toResolvedRoot() { let result; rootFileNames.forEach((path) => { const file = state.program.getSourceFileByPath(path); if (file && path !== file.resolvedPath) { result = append(result, [toFileId(file.resolvedPath), toFileId(path)]); } }); return result; } function toIncrementalBuildInfoCompilerOptions(options) { let result; const { optionsNameMap } = getOptionsNameMap(); for (const name of getOwnKeys(options).sort(compareStringsCaseSensitive)) { const optionInfo = optionsNameMap.get(name.toLowerCase()); if (optionInfo == null ? undefined : optionInfo.affectsBuildInfo) { (result || (result = {}))[name] = toReusableCompilerOptionValue(optionInfo, options[name]); } } return result; } function toReusableCompilerOptionValue(option, value) { if (option) { Debug.assert(option.type !== "listOrElement"); if (option.type === "list") { const values = value; if (option.element.isFilePath && values.length) { return values.map(relativeToBuildInfoEnsuringAbsolutePath); } } else if (option.isFilePath) { return relativeToBuildInfoEnsuringAbsolutePath(value); } } return value; } function toIncrementalBuildInfoDiagnostics() { let result; state.fileInfos.forEach((_value, key) => { const value = state.semanticDiagnosticsPerFile.get(key); if (!value) { if (!state.changedFilesSet.has(key)) result = append(result, toFileId(key)); } else if (value.length) { result = append(result, [ toFileId(key), toReusableDiagnostic(value, key) ]); } }); return result; } function toIncrementalBuildInfoEmitDiagnostics() { var _a2; let result; if (!((_a2 = state.emitDiagnosticsPerFile) == null ? undefined : _a2.size)) return result; for (const key of arrayFrom(state.emitDiagnosticsPerFile.keys()).sort(compareStringsCaseSensitive)) { const value = state.emitDiagnosticsPerFile.get(key); result = append(result, [ toFileId(key), toReusableDiagnostic(value, key) ]); } return result; } function toReusableDiagnostic(diagnostics, diagnosticFilePath) { Debug.assert(!!diagnostics.length); return diagnostics.map((diagnostic) => { const result = toReusableDiagnosticRelatedInformation(diagnostic, diagnosticFilePath); result.reportsUnnecessary = diagnostic.reportsUnnecessary; result.reportDeprecated = diagnostic.reportsDeprecated; result.source = diagnostic.source; result.skippedOn = diagnostic.skippedOn; const { relatedInformation } = diagnostic; result.relatedInformation = relatedInformation ? relatedInformation.length ? relatedInformation.map((r) => toReusableDiagnosticRelatedInformation(r, diagnosticFilePath)) : [] : undefined; return result; }); } function toReusableDiagnosticRelatedInformation(diagnostic, diagnosticFilePath) { const { file } = diagnostic; return { ...diagnostic, file: file ? file.resolvedPath === diagnosticFilePath ? undefined : relativeToBuildInfo(file.resolvedPath) : false, messageText: isString(diagnostic.messageText) ? diagnostic.messageText : toReusableDiagnosticMessageChain(diagnostic.messageText) }; } function toReusableDiagnosticMessageChain(chain) { if (chain.repopulateInfo) { return { info: chain.repopulateInfo(), next: toReusableDiagnosticMessageChainArray(chain.next) }; } const next = toReusableDiagnosticMessageChainArray(chain.next); return next === chain.next ? chain : { ...chain, next }; } function toReusableDiagnosticMessageChainArray(array) { if (!array) return array; return forEach(array, (chain, index) => { const reusable = toReusableDiagnosticMessageChain(chain); if (chain === reusable) return; const result = index > 0 ? array.slice(0, index - 1) : []; result.push(reusable); for (let i = index + 1;i < array.length; i++) { result.push(toReusableDiagnosticMessageChain(array[i])); } return result; }) || array; } function toChangeFileSet() { let changeFileSet; if (state.changedFilesSet.size) { for (const path of arrayFrom(state.changedFilesSet.keys()).sort(compareStringsCaseSensitive)) { changeFileSet = append(changeFileSet, toFileId(path)); } } return changeFileSet; } } var BuilderProgramKind = /* @__PURE__ */ ((BuilderProgramKind2) => { BuilderProgramKind2[BuilderProgramKind2["SemanticDiagnosticsBuilderProgram"] = 0] = "SemanticDiagnosticsBuilderProgram"; BuilderProgramKind2[BuilderProgramKind2["EmitAndSemanticDiagnosticsBuilderProgram"] = 1] = "EmitAndSemanticDiagnosticsBuilderProgram"; return BuilderProgramKind2; })(BuilderProgramKind || {}); function getBuilderCreationParameters(newProgramOrRootNames, hostOrOptions, oldProgramOrHost, configFileParsingDiagnosticsOrOldProgram, configFileParsingDiagnostics, projectReferences) { let host; let newProgram; let oldProgram; if (newProgramOrRootNames === undefined) { Debug.assert(hostOrOptions === undefined); host = oldProgramOrHost; oldProgram = configFileParsingDiagnosticsOrOldProgram; Debug.assert(!!oldProgram); newProgram = oldProgram.getProgram(); } else if (isArray(newProgramOrRootNames)) { oldProgram = configFileParsingDiagnosticsOrOldProgram; newProgram = createProgram({ rootNames: newProgramOrRootNames, options: hostOrOptions, host: oldProgramOrHost, oldProgram: oldProgram && oldProgram.getProgramOrUndefined(), configFileParsingDiagnostics, projectReferences }); host = oldProgramOrHost; } else { newProgram = newProgramOrRootNames; host = hostOrOptions; oldProgram = oldProgramOrHost; configFileParsingDiagnostics = configFileParsingDiagnosticsOrOldProgram; } return { host, newProgram, oldProgram, configFileParsingDiagnostics: configFileParsingDiagnostics || emptyArray }; } function getTextHandlingSourceMapForSignature(text, data) { return (data == null ? undefined : data.sourceMapUrlPos) !== undefined ? text.substring(0, data.sourceMapUrlPos) : text; } function computeSignatureWithDiagnostics(program, sourceFile, text, host, data) { var _a; text = getTextHandlingSourceMapForSignature(text, data); let sourceFileDirectory; if ((_a = data == null ? undefined : data.diagnostics) == null ? undefined : _a.length) { text += data.diagnostics.map((diagnostic) => `${locationInfo(diagnostic)}${DiagnosticCategory[diagnostic.category]}${diagnostic.code}: ${flattenDiagnosticMessageText2(diagnostic.messageText)}`).join(` `); } return (host.createHash ?? generateDjb2Hash)(text); function flattenDiagnosticMessageText2(diagnostic) { return isString(diagnostic) ? diagnostic : diagnostic === undefined ? "" : !diagnostic.next ? diagnostic.messageText : diagnostic.messageText + diagnostic.next.map(flattenDiagnosticMessageText2).join(` `); } function locationInfo(diagnostic) { if (diagnostic.file.resolvedPath === sourceFile.resolvedPath) return `(${diagnostic.start},${diagnostic.length})`; if (sourceFileDirectory === undefined) sourceFileDirectory = getDirectoryPath(sourceFile.resolvedPath); return `${ensurePathIsNonModuleName(getRelativePathFromDirectory(sourceFileDirectory, diagnostic.file.resolvedPath, program.getCanonicalFileName))}(${diagnostic.start},${diagnostic.length})`; } } function computeSignature(text, host, data) { return (host.createHash ?? generateDjb2Hash)(getTextHandlingSourceMapForSignature(text, data)); } function createBuilderProgram(kind, { newProgram, host, oldProgram, configFileParsingDiagnostics }) { let oldState = oldProgram && oldProgram.state; if (oldState && newProgram === oldState.program && configFileParsingDiagnostics === newProgram.getConfigFileParsingDiagnostics()) { newProgram = undefined; oldState = undefined; return oldProgram; } const state = createBuilderProgramState(newProgram, oldState); newProgram.getBuildInfo = () => getBuildInfo2(toBuilderProgramStateWithDefinedProgram(state)); newProgram = undefined; oldProgram = undefined; oldState = undefined; const builderProgram = createRedirectedBuilderProgram(state, configFileParsingDiagnostics); builderProgram.state = state; builderProgram.hasChangedEmitSignature = () => !!state.hasChangedEmitSignature; builderProgram.getAllDependencies = (sourceFile) => BuilderState.getAllDependencies(state, Debug.checkDefined(state.program), sourceFile); builderProgram.getSemanticDiagnostics = getSemanticDiagnostics; builderProgram.getDeclarationDiagnostics = getDeclarationDiagnostics2; builderProgram.emit = emit; builderProgram.releaseProgram = () => releaseCache(state); if (kind === 0) { builderProgram.getSemanticDiagnosticsOfNextAffectedFile = getSemanticDiagnosticsOfNextAffectedFile; } else if (kind === 1) { builderProgram.getSemanticDiagnosticsOfNextAffectedFile = getSemanticDiagnosticsOfNextAffectedFile; builderProgram.emitNextAffectedFile = emitNextAffectedFile; builderProgram.emitBuildInfo = emitBuildInfo; } else { notImplemented(); } return builderProgram; function emitBuildInfo(writeFile2, cancellationToken) { Debug.assert(isBuilderProgramStateWithDefinedProgram(state)); if (getBuildInfoEmitPending(state)) { const result = state.program.emitBuildInfo(writeFile2 || maybeBind(host, host.writeFile), cancellationToken); state.buildInfoEmitPending = false; return result; } return emitSkippedWithNoDiagnostics; } function emitNextAffectedFileOrDtsErrors(writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers, isForDtsErrors) { var _a, _b, _c, _d; Debug.assert(isBuilderProgramStateWithDefinedProgram(state)); let affected = getNextAffectedFile(state, cancellationToken, host); const programEmitKind = getBuilderFileEmit(state.compilerOptions); let emitKind = !isForDtsErrors ? emitOnlyDtsFiles ? programEmitKind & 56 : programEmitKind : 8; if (!affected) { if (!state.compilerOptions.outFile) { const pendingAffectedFile = getNextAffectedFilePendingEmit(state, emitOnlyDtsFiles, isForDtsErrors); if (pendingAffectedFile) { ({ affectedFile: affected, emitKind } = pendingAffectedFile); } else { const pendingForDiagnostics = getNextPendingEmitDiagnosticsFile(state, isForDtsErrors); if (pendingForDiagnostics) { (state.seenEmittedFiles ?? (state.seenEmittedFiles = /* @__PURE__ */ new Map)).set(pendingForDiagnostics.affectedFile.resolvedPath, pendingForDiagnostics.seenKind | getBuilderFileEmitAllDts(isForDtsErrors)); return { result: { emitSkipped: true, diagnostics: pendingForDiagnostics.diagnostics }, affected: pendingForDiagnostics.affectedFile }; } } } else { if (state.programEmitPending) { emitKind = getPendingEmitKindWithSeen(state.programEmitPending, state.seenProgramEmit, emitOnlyDtsFiles, isForDtsErrors); if (emitKind) affected = state.program; } if (!affected && ((_a = state.emitDiagnosticsPerFile) == null ? undefined : _a.size)) { const seenKind = state.seenProgramEmit || 0; if (!(seenKind & getBuilderFileEmitAllDts(isForDtsErrors))) { state.seenProgramEmit = getBuilderFileEmitAllDts(isForDtsErrors) | seenKind; const diagnostics = []; state.emitDiagnosticsPerFile.forEach((d) => addRange(diagnostics, d)); return { result: { emitSkipped: true, diagnostics }, affected: state.program }; } } } if (!affected) { if (isForDtsErrors || !getBuildInfoEmitPending(state)) return; const affected2 = state.program; const result2 = affected2.emitBuildInfo(writeFile2 || maybeBind(host, host.writeFile), cancellationToken); state.buildInfoEmitPending = false; return { result: result2, affected: affected2 }; } } let emitOnly; if (emitKind & 7) emitOnly = 0; if (emitKind & 56) emitOnly = emitOnly === undefined ? 1 : undefined; const result = !isForDtsErrors ? state.program.emit(affected === state.program ? undefined : affected, getWriteFileCallback(writeFile2, customTransformers), cancellationToken, emitOnly, customTransformers, undefined, true) : { emitSkipped: true, diagnostics: state.program.getDeclarationDiagnostics(affected === state.program ? undefined : affected, cancellationToken) }; if (affected !== state.program) { const affectedSourceFile = affected; state.seenAffectedFiles.add(affectedSourceFile.resolvedPath); if (state.affectedFilesIndex !== undefined) state.affectedFilesIndex++; state.buildInfoEmitPending = true; const existing = ((_b = state.seenEmittedFiles) == null ? undefined : _b.get(affectedSourceFile.resolvedPath)) || 0; (state.seenEmittedFiles ?? (state.seenEmittedFiles = /* @__PURE__ */ new Map)).set(affectedSourceFile.resolvedPath, emitKind | existing); const existingPending = ((_c = state.affectedFilesPendingEmit) == null ? undefined : _c.get(affectedSourceFile.resolvedPath)) || programEmitKind; const pendingKind = getPendingEmitKind(existingPending, emitKind | existing); if (pendingKind) (state.affectedFilesPendingEmit ?? (state.affectedFilesPendingEmit = /* @__PURE__ */ new Map)).set(affectedSourceFile.resolvedPath, pendingKind); else (_d = state.affectedFilesPendingEmit) == null || _d.delete(affectedSourceFile.resolvedPath); if (result.diagnostics.length) (state.emitDiagnosticsPerFile ?? (state.emitDiagnosticsPerFile = /* @__PURE__ */ new Map)).set(affectedSourceFile.resolvedPath, result.diagnostics); } else { state.changedFilesSet.clear(); state.programEmitPending = state.changedFilesSet.size ? getPendingEmitKind(programEmitKind, emitKind) : state.programEmitPending ? getPendingEmitKind(state.programEmitPending, emitKind) : undefined; state.seenProgramEmit = emitKind | (state.seenProgramEmit || 0); setEmitDiagnosticsPerFile(result.diagnostics); state.buildInfoEmitPending = true; } return { result, affected }; } function setEmitDiagnosticsPerFile(diagnostics) { let emitDiagnosticsPerFile; diagnostics.forEach((d) => { if (!d.file) return; let diagnostics2 = emitDiagnosticsPerFile == null ? undefined : emitDiagnosticsPerFile.get(d.file.resolvedPath); if (!diagnostics2) (emitDiagnosticsPerFile ?? (emitDiagnosticsPerFile = /* @__PURE__ */ new Map)).set(d.file.resolvedPath, diagnostics2 = []); diagnostics2.push(d); }); if (emitDiagnosticsPerFile) state.emitDiagnosticsPerFile = emitDiagnosticsPerFile; } function emitNextAffectedFile(writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers) { return emitNextAffectedFileOrDtsErrors(writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers, false); } function getWriteFileCallback(writeFile2, customTransformers) { Debug.assert(isBuilderProgramStateWithDefinedProgram(state)); if (!getEmitDeclarations(state.compilerOptions)) return writeFile2 || maybeBind(host, host.writeFile); return (fileName, text, writeByteOrderMark, onError, sourceFiles, data) => { var _a, _b, _c; if (isDeclarationFileName(fileName)) { if (!state.compilerOptions.outFile) { Debug.assert((sourceFiles == null ? undefined : sourceFiles.length) === 1); let emitSignature; if (!customTransformers) { const file = sourceFiles[0]; const info = state.fileInfos.get(file.resolvedPath); if (info.signature === file.version) { const signature = computeSignatureWithDiagnostics(state.program, file, text, host, data); if (!((_a = data == null ? undefined : data.diagnostics) == null ? undefined : _a.length)) emitSignature = signature; if (signature !== file.version) { if (host.storeSignatureInfo) (state.signatureInfo ?? (state.signatureInfo = /* @__PURE__ */ new Map)).set(file.resolvedPath, 1); if (state.affectedFiles) { const existing = (_b = state.oldSignatures) == null ? undefined : _b.get(file.resolvedPath); if (existing === undefined) (state.oldSignatures ?? (state.oldSignatures = /* @__PURE__ */ new Map)).set(file.resolvedPath, info.signature || false); info.signature = signature; } else { info.signature = signature; } } } } if (state.compilerOptions.composite) { const filePath = sourceFiles[0].resolvedPath; emitSignature = handleNewSignature((_c = state.emitSignatures) == null ? undefined : _c.get(filePath), emitSignature); if (!emitSignature) return data.skippedDtsWrite = true; (state.emitSignatures ?? (state.emitSignatures = /* @__PURE__ */ new Map)).set(filePath, emitSignature); } } else if (state.compilerOptions.composite) { const newSignature = handleNewSignature(state.outSignature, undefined); if (!newSignature) return data.skippedDtsWrite = true; state.outSignature = newSignature; } } if (writeFile2) writeFile2(fileName, text, writeByteOrderMark, onError, sourceFiles, data); else if (host.writeFile) host.writeFile(fileName, text, writeByteOrderMark, onError, sourceFiles, data); else state.program.writeFile(fileName, text, writeByteOrderMark, onError, sourceFiles, data); function handleNewSignature(oldSignatureFormat, newSignature) { const oldSignature = !oldSignatureFormat || isString(oldSignatureFormat) ? oldSignatureFormat : oldSignatureFormat[0]; newSignature ?? (newSignature = computeSignature(text, host, data)); if (newSignature === oldSignature) { if (oldSignatureFormat === oldSignature) return; else if (data) data.differsOnlyInMap = true; else data = { differsOnlyInMap: true }; } else { state.hasChangedEmitSignature = true; state.latestChangedDtsFile = fileName; } return newSignature; } }; } function emit(targetSourceFile, writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers) { Debug.assert(isBuilderProgramStateWithDefinedProgram(state)); if (kind === 1) { assertSourceFileOkWithoutNextAffectedCall(state, targetSourceFile); } const result = handleNoEmitOptions(builderProgram, targetSourceFile, writeFile2, cancellationToken); if (result) return result; if (!targetSourceFile) { if (kind === 1) { let sourceMaps = []; let emitSkipped = false; let diagnostics; let emittedFiles = []; let affectedEmitResult; while (affectedEmitResult = emitNextAffectedFile(writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers)) { emitSkipped = emitSkipped || affectedEmitResult.result.emitSkipped; diagnostics = addRange(diagnostics, affectedEmitResult.result.diagnostics); emittedFiles = addRange(emittedFiles, affectedEmitResult.result.emittedFiles); sourceMaps = addRange(sourceMaps, affectedEmitResult.result.sourceMaps); } return { emitSkipped, diagnostics: diagnostics || emptyArray, emittedFiles, sourceMaps }; } else { clearAffectedFilesPendingEmit(state, emitOnlyDtsFiles, false); } } const emitResult = state.program.emit(targetSourceFile, getWriteFileCallback(writeFile2, customTransformers), cancellationToken, emitOnlyDtsFiles, customTransformers); handleNonEmitBuilderWithEmitOrDtsErrors(targetSourceFile, emitOnlyDtsFiles, false, emitResult.diagnostics); return emitResult; } function handleNonEmitBuilderWithEmitOrDtsErrors(targetSourceFile, emitOnlyDtsFiles, isForDtsErrors, diagnostics) { if (!targetSourceFile && kind !== 1) { clearAffectedFilesPendingEmit(state, emitOnlyDtsFiles, isForDtsErrors); setEmitDiagnosticsPerFile(diagnostics); } } function getDeclarationDiagnostics2(sourceFile, cancellationToken) { var _a; Debug.assert(isBuilderProgramStateWithDefinedProgram(state)); if (kind === 1) { assertSourceFileOkWithoutNextAffectedCall(state, sourceFile); let affectedEmitResult; let diagnostics; while (affectedEmitResult = emitNextAffectedFileOrDtsErrors(undefined, cancellationToken, undefined, undefined, true)) { if (!sourceFile) diagnostics = addRange(diagnostics, affectedEmitResult.result.diagnostics); } return (!sourceFile ? diagnostics : (_a = state.emitDiagnosticsPerFile) == null ? undefined : _a.get(sourceFile.resolvedPath)) || emptyArray; } else { const result = state.program.getDeclarationDiagnostics(sourceFile, cancellationToken); handleNonEmitBuilderWithEmitOrDtsErrors(sourceFile, undefined, true, result); return result; } } function getSemanticDiagnosticsOfNextAffectedFile(cancellationToken, ignoreSourceFile) { Debug.assert(isBuilderProgramStateWithDefinedProgram(state)); while (true) { const affected = getNextAffectedFile(state, cancellationToken, host); let result; if (!affected) { if (state.checkPending && !state.compilerOptions.noCheck) { state.checkPending = undefined; state.buildInfoEmitPending = true; } return; } else if (affected !== state.program) { const affectedSourceFile = affected; if (!ignoreSourceFile || !ignoreSourceFile(affectedSourceFile)) { result = getSemanticDiagnosticsOfFile(state, affectedSourceFile, cancellationToken); } state.seenAffectedFiles.add(affectedSourceFile.resolvedPath); state.affectedFilesIndex++; state.buildInfoEmitPending = true; if (!result) continue; } else { let diagnostics; const semanticDiagnosticsPerFile = /* @__PURE__ */ new Map; state.program.getSourceFiles().forEach((sourceFile) => diagnostics = addRange(diagnostics, getSemanticDiagnosticsOfFile(state, sourceFile, cancellationToken, semanticDiagnosticsPerFile))); state.semanticDiagnosticsPerFile = semanticDiagnosticsPerFile; result = diagnostics || emptyArray; state.changedFilesSet.clear(); state.programEmitPending = getBuilderFileEmit(state.compilerOptions); if (!state.compilerOptions.noCheck) state.checkPending = undefined; state.buildInfoEmitPending = true; } return { result, affected }; } } function getSemanticDiagnostics(sourceFile, cancellationToken) { Debug.assert(isBuilderProgramStateWithDefinedProgram(state)); assertSourceFileOkWithoutNextAffectedCall(state, sourceFile); if (sourceFile) { return getSemanticDiagnosticsOfFile(state, sourceFile, cancellationToken); } while (true) { const affectedResult = getSemanticDiagnosticsOfNextAffectedFile(cancellationToken); if (!affectedResult) break; if (affectedResult.affected === state.program) return affectedResult.result; } let diagnostics; for (const sourceFile2 of state.program.getSourceFiles()) { diagnostics = addRange(diagnostics, getSemanticDiagnosticsOfFile(state, sourceFile2, cancellationToken)); } if (state.checkPending && !state.compilerOptions.noCheck) { state.checkPending = undefined; state.buildInfoEmitPending = true; } return diagnostics || emptyArray; } } function addToAffectedFilesPendingEmit(state, affectedFilePendingEmit, kind) { var _a, _b; const existingKind = ((_a = state.affectedFilesPendingEmit) == null ? undefined : _a.get(affectedFilePendingEmit)) || 0; (state.affectedFilesPendingEmit ?? (state.affectedFilesPendingEmit = /* @__PURE__ */ new Map)).set(affectedFilePendingEmit, existingKind | kind); (_b = state.emitDiagnosticsPerFile) == null || _b.delete(affectedFilePendingEmit); } function toBuilderStateFileInfoForMultiEmit(fileInfo) { return isString(fileInfo) ? { version: fileInfo, signature: fileInfo, affectsGlobalScope: undefined, impliedFormat: undefined } : isString(fileInfo.signature) ? fileInfo : { version: fileInfo.version, signature: fileInfo.signature === false ? undefined : fileInfo.version, affectsGlobalScope: fileInfo.affectsGlobalScope, impliedFormat: fileInfo.impliedFormat }; } function toBuilderFileEmit(value, fullEmitForOptions) { return isNumber(value) ? fullEmitForOptions : value[1] || 24; } function toProgramEmitPending(value, options) { return !value ? getBuilderFileEmit(options || {}) : value; } function createBuilderProgramUsingIncrementalBuildInfo(buildInfo, buildInfoPath, host) { var _a, _b, _c, _d; const buildInfoDirectory = getDirectoryPath(getNormalizedAbsolutePath(buildInfoPath, host.getCurrentDirectory())); const getCanonicalFileName = createGetCanonicalFileName(host.useCaseSensitiveFileNames()); let state; const filePaths = (_a = buildInfo.fileNames) == null ? undefined : _a.map(toPathInBuildInfoDirectory); let filePathsSetList; const latestChangedDtsFile = buildInfo.latestChangedDtsFile ? toAbsolutePath(buildInfo.latestChangedDtsFile) : undefined; const fileInfos = /* @__PURE__ */ new Map; const changedFilesSet = new Set(map(buildInfo.changeFileSet, toFilePath)); if (isIncrementalBundleEmitBuildInfo(buildInfo)) { buildInfo.fileInfos.forEach((fileInfo, index) => { const path = toFilePath(index + 1); fileInfos.set(path, isString(fileInfo) ? { version: fileInfo, signature: undefined, affectsGlobalScope: undefined, impliedFormat: undefined } : fileInfo); }); state = { fileInfos, compilerOptions: buildInfo.options ? convertToOptionsWithAbsolutePaths(buildInfo.options, toAbsolutePath) : {}, semanticDiagnosticsPerFile: toPerFileSemanticDiagnostics(buildInfo.semanticDiagnosticsPerFile), emitDiagnosticsPerFile: toPerFileEmitDiagnostics(buildInfo.emitDiagnosticsPerFile), hasReusableDiagnostic: true, changedFilesSet, latestChangedDtsFile, outSignature: buildInfo.outSignature, programEmitPending: buildInfo.pendingEmit === undefined ? undefined : toProgramEmitPending(buildInfo.pendingEmit, buildInfo.options), hasErrors: buildInfo.errors, checkPending: buildInfo.checkPending }; } else { filePathsSetList = (_b = buildInfo.fileIdsList) == null ? undefined : _b.map((fileIds) => new Set(fileIds.map(toFilePath))); const emitSignatures = ((_c = buildInfo.options) == null ? undefined : _c.composite) && !buildInfo.options.outFile ? /* @__PURE__ */ new Map : undefined; buildInfo.fileInfos.forEach((fileInfo, index) => { const path = toFilePath(index + 1); const stateFileInfo = toBuilderStateFileInfoForMultiEmit(fileInfo); fileInfos.set(path, stateFileInfo); if (emitSignatures && stateFileInfo.signature) emitSignatures.set(path, stateFileInfo.signature); }); (_d = buildInfo.emitSignatures) == null || _d.forEach((value) => { if (isNumber(value)) emitSignatures.delete(toFilePath(value)); else { const key = toFilePath(value[0]); emitSignatures.set(key, !isString(value[1]) && !value[1].length ? [emitSignatures.get(key)] : value[1]); } }); const fullEmitForOptions = buildInfo.affectedFilesPendingEmit ? getBuilderFileEmit(buildInfo.options || {}) : undefined; state = { fileInfos, compilerOptions: buildInfo.options ? convertToOptionsWithAbsolutePaths(buildInfo.options, toAbsolutePath) : {}, referencedMap: toManyToManyPathMap(buildInfo.referencedMap, buildInfo.options ?? {}), semanticDiagnosticsPerFile: toPerFileSemanticDiagnostics(buildInfo.semanticDiagnosticsPerFile), emitDiagnosticsPerFile: toPerFileEmitDiagnostics(buildInfo.emitDiagnosticsPerFile), hasReusableDiagnostic: true, changedFilesSet, affectedFilesPendingEmit: buildInfo.affectedFilesPendingEmit && arrayToMap(buildInfo.affectedFilesPendingEmit, (value) => toFilePath(isNumber(value) ? value : value[0]), (value) => toBuilderFileEmit(value, fullEmitForOptions)), latestChangedDtsFile, emitSignatures: (emitSignatures == null ? undefined : emitSignatures.size) ? emitSignatures : undefined, hasErrors: buildInfo.errors, checkPending: buildInfo.checkPending }; } return { state, getProgram: notImplemented, getProgramOrUndefined: returnUndefined, releaseProgram: noop, getCompilerOptions: () => state.compilerOptions, getSourceFile: notImplemented, getSourceFiles: notImplemented, getOptionsDiagnostics: notImplemented, getGlobalDiagnostics: notImplemented, getConfigFileParsingDiagnostics: notImplemented, getSyntacticDiagnostics: notImplemented, getDeclarationDiagnostics: notImplemented, getSemanticDiagnostics: notImplemented, emit: notImplemented, getAllDependencies: notImplemented, getCurrentDirectory: notImplemented, emitNextAffectedFile: notImplemented, getSemanticDiagnosticsOfNextAffectedFile: notImplemented, emitBuildInfo: notImplemented, close: noop, hasChangedEmitSignature: returnFalse }; function toPathInBuildInfoDirectory(path) { return toPath(path, buildInfoDirectory, getCanonicalFileName); } function toAbsolutePath(path) { return getNormalizedAbsolutePath(path, buildInfoDirectory); } function toFilePath(fileId) { return filePaths[fileId - 1]; } function toFilePathsSet(fileIdsListId) { return filePathsSetList[fileIdsListId - 1]; } function toManyToManyPathMap(referenceMap, options) { const map2 = BuilderState.createReferencedMap(options); if (!map2 || !referenceMap) return map2; referenceMap.forEach(([fileId, fileIdListId]) => map2.set(toFilePath(fileId), toFilePathsSet(fileIdListId))); return map2; } function toPerFileSemanticDiagnostics(diagnostics) { const semanticDiagnostics = new Map(mapDefinedIterator(fileInfos.keys(), (key) => !changedFilesSet.has(key) ? [key, emptyArray] : undefined)); diagnostics == null || diagnostics.forEach((value) => { if (isNumber(value)) semanticDiagnostics.delete(toFilePath(value)); else semanticDiagnostics.set(toFilePath(value[0]), value[1]); }); return semanticDiagnostics; } function toPerFileEmitDiagnostics(diagnostics) { return diagnostics && arrayToMap(diagnostics, (value) => toFilePath(value[0]), (value) => value[1]); } } function getBuildInfoFileVersionMap(program, buildInfoPath, host) { const buildInfoDirectory = getDirectoryPath(getNormalizedAbsolutePath(buildInfoPath, host.getCurrentDirectory())); const getCanonicalFileName = createGetCanonicalFileName(host.useCaseSensitiveFileNames()); const fileInfos = /* @__PURE__ */ new Map; let rootIndex = 0; const roots = /* @__PURE__ */ new Map; const resolvedRoots = new Map(program.resolvedRoot); program.fileInfos.forEach((fileInfo, index) => { const path = toPath(program.fileNames[index], buildInfoDirectory, getCanonicalFileName); const version2 = isString(fileInfo) ? fileInfo : fileInfo.version; fileInfos.set(path, version2); if (rootIndex < program.root.length) { const current = program.root[rootIndex]; const fileId = index + 1; if (isArray(current)) { if (current[0] <= fileId && fileId <= current[1]) { addRoot(fileId, path); if (current[1] === fileId) rootIndex++; } } else if (current === fileId) { addRoot(fileId, path); rootIndex++; } } }); return { fileInfos, roots }; function addRoot(fileId, path) { const root = resolvedRoots.get(fileId); if (root) { roots.set(toPath(program.fileNames[root - 1], buildInfoDirectory, getCanonicalFileName), path); } else { roots.set(path, undefined); } } } function getNonIncrementalBuildInfoRoots(buildInfo, buildInfoPath, host) { if (!isNonIncrementalBuildInfo(buildInfo)) return; const buildInfoDirectory = getDirectoryPath(getNormalizedAbsolutePath(buildInfoPath, host.getCurrentDirectory())); const getCanonicalFileName = createGetCanonicalFileName(host.useCaseSensitiveFileNames()); return buildInfo.root.map((r) => toPath(r, buildInfoDirectory, getCanonicalFileName)); } function createRedirectedBuilderProgram(state, configFileParsingDiagnostics) { return { state: undefined, getProgram, getProgramOrUndefined: () => state.program, releaseProgram: () => state.program = undefined, getCompilerOptions: () => state.compilerOptions, getSourceFile: (fileName) => getProgram().getSourceFile(fileName), getSourceFiles: () => getProgram().getSourceFiles(), getOptionsDiagnostics: (cancellationToken) => getProgram().getOptionsDiagnostics(cancellationToken), getGlobalDiagnostics: (cancellationToken) => getProgram().getGlobalDiagnostics(cancellationToken), getConfigFileParsingDiagnostics: () => configFileParsingDiagnostics, getSyntacticDiagnostics: (sourceFile, cancellationToken) => getProgram().getSyntacticDiagnostics(sourceFile, cancellationToken), getDeclarationDiagnostics: (sourceFile, cancellationToken) => getProgram().getDeclarationDiagnostics(sourceFile, cancellationToken), getSemanticDiagnostics: (sourceFile, cancellationToken) => getProgram().getSemanticDiagnostics(sourceFile, cancellationToken), emit: (sourceFile, writeFile2, cancellationToken, emitOnlyDts, customTransformers) => getProgram().emit(sourceFile, writeFile2, cancellationToken, emitOnlyDts, customTransformers), emitBuildInfo: (writeFile2, cancellationToken) => getProgram().emitBuildInfo(writeFile2, cancellationToken), getAllDependencies: notImplemented, getCurrentDirectory: () => getProgram().getCurrentDirectory(), close: noop }; function getProgram() { return Debug.checkDefined(state.program); } } function createSemanticDiagnosticsBuilderProgram(newProgramOrRootNames, hostOrOptions, oldProgramOrHost, configFileParsingDiagnosticsOrOldProgram, configFileParsingDiagnostics, projectReferences) { return createBuilderProgram(0, getBuilderCreationParameters(newProgramOrRootNames, hostOrOptions, oldProgramOrHost, configFileParsingDiagnosticsOrOldProgram, configFileParsingDiagnostics, projectReferences)); } function createEmitAndSemanticDiagnosticsBuilderProgram(newProgramOrRootNames, hostOrOptions, oldProgramOrHost, configFileParsingDiagnosticsOrOldProgram, configFileParsingDiagnostics, projectReferences) { return createBuilderProgram(1, getBuilderCreationParameters(newProgramOrRootNames, hostOrOptions, oldProgramOrHost, configFileParsingDiagnosticsOrOldProgram, configFileParsingDiagnostics, projectReferences)); } function createAbstractBuilder(newProgramOrRootNames, hostOrOptions, oldProgramOrHost, configFileParsingDiagnosticsOrOldProgram, configFileParsingDiagnostics, projectReferences) { const { newProgram, configFileParsingDiagnostics: newConfigFileParsingDiagnostics } = getBuilderCreationParameters(newProgramOrRootNames, hostOrOptions, oldProgramOrHost, configFileParsingDiagnosticsOrOldProgram, configFileParsingDiagnostics, projectReferences); return createRedirectedBuilderProgram({ program: newProgram, compilerOptions: newProgram.getCompilerOptions() }, newConfigFileParsingDiagnostics); } function removeIgnoredPath(path) { if (endsWith(path, "/node_modules/.staging")) { return removeSuffix(path, "/.staging"); } return some(ignoredPaths, (searchPath) => path.includes(searchPath)) ? undefined : path; } function perceivedOsRootLengthForWatching(pathComponents2, length2) { if (length2 <= 1) return 1; let indexAfterOsRoot = 1; let isDosStyle = pathComponents2[0].search(/[a-z]:/i) === 0; if (pathComponents2[0] !== directorySeparator && !isDosStyle && pathComponents2[1].search(/[a-z]\$$/i) === 0) { if (length2 === 2) return 2; indexAfterOsRoot = 2; isDosStyle = true; } if (isDosStyle && !pathComponents2[indexAfterOsRoot].match(/^users$/i)) { return indexAfterOsRoot; } if (pathComponents2[indexAfterOsRoot].match(/^workspaces$/i)) { return indexAfterOsRoot + 1; } return indexAfterOsRoot + 2; } function canWatchDirectoryOrFile(pathComponents2, length2) { if (length2 === undefined) length2 = pathComponents2.length; if (length2 <= 2) return false; const perceivedOsRootLength = perceivedOsRootLengthForWatching(pathComponents2, length2); return length2 > perceivedOsRootLength + 1; } function canWatchDirectoryOrFilePath(path) { return canWatchDirectoryOrFile(getPathComponents(path)); } function canWatchAtTypes(atTypes) { return canWatchAffectedPackageJsonOrNodeModulesOfAtTypes(getDirectoryPath(atTypes)); } function isInDirectoryPath(dirComponents, fileOrDirComponents) { if (fileOrDirComponents.length < dirComponents.length) return false; for (let i = 0;i < dirComponents.length; i++) { if (fileOrDirComponents[i] !== dirComponents[i]) return false; } return true; } function canWatchAffectedPackageJsonOrNodeModulesOfAtTypes(fileOrDirPath) { return canWatchDirectoryOrFilePath(fileOrDirPath); } function canWatchAffectingLocation(filePath) { return canWatchAffectedPackageJsonOrNodeModulesOfAtTypes(filePath); } function getDirectoryToWatchFailedLookupLocation(failedLookupLocation, failedLookupLocationPath, rootDir, rootPath, rootPathComponents, isRootWatchable, getCurrentDirectory, preferNonRecursiveWatch) { const failedLookupPathComponents = getPathComponents(failedLookupLocationPath); failedLookupLocation = isRootedDiskPath(failedLookupLocation) ? normalizePath(failedLookupLocation) : getNormalizedAbsolutePath(failedLookupLocation, getCurrentDirectory()); const failedLookupComponents = getPathComponents(failedLookupLocation); const perceivedOsRootLength = perceivedOsRootLengthForWatching(failedLookupPathComponents, failedLookupPathComponents.length); if (failedLookupPathComponents.length <= perceivedOsRootLength + 1) return; const nodeModulesIndex = failedLookupPathComponents.indexOf("node_modules"); if (nodeModulesIndex !== -1 && nodeModulesIndex + 1 <= perceivedOsRootLength + 1) return; const lastNodeModulesIndex = failedLookupPathComponents.lastIndexOf("node_modules"); if (isRootWatchable && isInDirectoryPath(rootPathComponents, failedLookupPathComponents)) { if (failedLookupPathComponents.length > rootPathComponents.length + 1) { return getDirectoryOfFailedLookupWatch(failedLookupComponents, failedLookupPathComponents, Math.max(rootPathComponents.length + 1, perceivedOsRootLength + 1), lastNodeModulesIndex); } else { return { dir: rootDir, dirPath: rootPath, nonRecursive: true }; } } return getDirectoryToWatchFromFailedLookupLocationDirectory(failedLookupComponents, failedLookupPathComponents, failedLookupPathComponents.length - 1, perceivedOsRootLength, nodeModulesIndex, rootPathComponents, lastNodeModulesIndex, preferNonRecursiveWatch); } function getDirectoryToWatchFromFailedLookupLocationDirectory(dirComponents, dirPathComponents, dirPathComponentsLength, perceivedOsRootLength, nodeModulesIndex, rootPathComponents, lastNodeModulesIndex, preferNonRecursiveWatch) { if (nodeModulesIndex !== -1) { return getDirectoryOfFailedLookupWatch(dirComponents, dirPathComponents, nodeModulesIndex + 1, lastNodeModulesIndex); } let nonRecursive = true; let length2 = dirPathComponentsLength; if (!preferNonRecursiveWatch) { for (let i = 0;i < dirPathComponentsLength; i++) { if (dirPathComponents[i] !== rootPathComponents[i]) { nonRecursive = false; length2 = Math.max(i + 1, perceivedOsRootLength + 1); break; } } } return getDirectoryOfFailedLookupWatch(dirComponents, dirPathComponents, length2, lastNodeModulesIndex, nonRecursive); } function getDirectoryOfFailedLookupWatch(dirComponents, dirPathComponents, length2, lastNodeModulesIndex, nonRecursive) { let packageDirLength; if (lastNodeModulesIndex !== -1 && lastNodeModulesIndex + 1 >= length2 && lastNodeModulesIndex + 2 < dirPathComponents.length) { if (!startsWith(dirPathComponents[lastNodeModulesIndex + 1], "@")) { packageDirLength = lastNodeModulesIndex + 2; } else if (lastNodeModulesIndex + 3 < dirPathComponents.length) { packageDirLength = lastNodeModulesIndex + 3; } } return { dir: getPathFromPathComponents(dirComponents, length2), dirPath: getPathFromPathComponents(dirPathComponents, length2), nonRecursive, packageDir: packageDirLength !== undefined ? getPathFromPathComponents(dirComponents, packageDirLength) : undefined, packageDirPath: packageDirLength !== undefined ? getPathFromPathComponents(dirPathComponents, packageDirLength) : undefined }; } function getDirectoryToWatchFailedLookupLocationFromTypeRoot(typeRoot, typeRootPath, rootPath, rootPathComponents, isRootWatchable, getCurrentDirectory, preferNonRecursiveWatch, filterCustomPath) { const typeRootPathComponents = getPathComponents(typeRootPath); if (isRootWatchable && isInDirectoryPath(rootPathComponents, typeRootPathComponents)) { return rootPath; } typeRoot = isRootedDiskPath(typeRoot) ? normalizePath(typeRoot) : getNormalizedAbsolutePath(typeRoot, getCurrentDirectory()); const toWatch = getDirectoryToWatchFromFailedLookupLocationDirectory(getPathComponents(typeRoot), typeRootPathComponents, typeRootPathComponents.length, perceivedOsRootLengthForWatching(typeRootPathComponents, typeRootPathComponents.length), typeRootPathComponents.indexOf("node_modules"), rootPathComponents, typeRootPathComponents.lastIndexOf("node_modules"), preferNonRecursiveWatch); return toWatch && filterCustomPath(toWatch.dirPath) ? toWatch.dirPath : undefined; } function getRootDirectoryOfResolutionCache(rootDirForResolution, getCurrentDirectory) { const normalized = getNormalizedAbsolutePath(rootDirForResolution, getCurrentDirectory()); return !isDiskPathRoot(normalized) ? removeTrailingDirectorySeparator(normalized) : normalized; } function getModuleResolutionHost(resolutionHost) { var _a; return ((_a = resolutionHost.getCompilerHost) == null ? undefined : _a.call(resolutionHost)) || resolutionHost; } function createModuleResolutionLoaderUsingGlobalCache(containingFile, redirectedReference, options, resolutionHost, moduleResolutionCache) { return { nameAndMode: moduleResolutionNameAndModeGetter, resolve: (moduleName, resoluionMode) => resolveModuleNameUsingGlobalCache(resolutionHost, moduleResolutionCache, moduleName, containingFile, options, redirectedReference, resoluionMode) }; } function resolveModuleNameUsingGlobalCache(resolutionHost, moduleResolutionCache, moduleName, containingFile, compilerOptions, redirectedReference, mode) { const host = getModuleResolutionHost(resolutionHost); const primaryResult = resolveModuleName(moduleName, containingFile, compilerOptions, host, moduleResolutionCache, redirectedReference, mode); if (!resolutionHost.getGlobalTypingsCacheLocation) { return primaryResult; } const globalCache = resolutionHost.getGlobalTypingsCacheLocation(); if (globalCache !== undefined && !isExternalModuleNameRelative(moduleName) && !(primaryResult.resolvedModule && extensionIsTS(primaryResult.resolvedModule.extension))) { const { resolvedModule, failedLookupLocations, affectingLocations, resolutionDiagnostics } = loadModuleFromGlobalCache(Debug.checkDefined(resolutionHost.globalCacheResolutionModuleName)(moduleName), resolutionHost.projectName, compilerOptions, host, globalCache, moduleResolutionCache); if (resolvedModule) { primaryResult.resolvedModule = resolvedModule; primaryResult.failedLookupLocations = updateResolutionField(primaryResult.failedLookupLocations, failedLookupLocations); primaryResult.affectingLocations = updateResolutionField(primaryResult.affectingLocations, affectingLocations); primaryResult.resolutionDiagnostics = updateResolutionField(primaryResult.resolutionDiagnostics, resolutionDiagnostics); return primaryResult; } } return primaryResult; } function createResolutionCache(resolutionHost, rootDirForResolution, logChangesWhenResolvingModule) { let filesWithChangedSetOfUnresolvedImports; let filesWithInvalidatedResolutions; let filesWithInvalidatedNonRelativeUnresolvedImports; const nonRelativeExternalModuleResolutions = /* @__PURE__ */ new Set; const resolutionsWithFailedLookups = /* @__PURE__ */ new Set; const resolutionsWithOnlyAffectingLocations = /* @__PURE__ */ new Set; const resolvedFileToResolution = /* @__PURE__ */ new Map; const impliedFormatPackageJsons = /* @__PURE__ */ new Map; let hasChangedAutomaticTypeDirectiveNames = false; let affectingPathChecksForFile; let affectingPathChecks; let failedLookupChecks; let startsWithPathChecks; let isInDirectoryChecks; let allModuleAndTypeResolutionsAreInvalidated = false; const getCurrentDirectory = memoize(() => resolutionHost.getCurrentDirectory()); const cachedDirectoryStructureHost = resolutionHost.getCachedDirectoryStructureHost(); const resolvedModuleNames = /* @__PURE__ */ new Map; const moduleResolutionCache = createModuleResolutionCache(getCurrentDirectory(), resolutionHost.getCanonicalFileName, resolutionHost.getCompilationSettings()); const resolvedTypeReferenceDirectives = /* @__PURE__ */ new Map; const typeReferenceDirectiveResolutionCache = createTypeReferenceDirectiveResolutionCache(getCurrentDirectory(), resolutionHost.getCanonicalFileName, resolutionHost.getCompilationSettings(), moduleResolutionCache.getPackageJsonInfoCache(), moduleResolutionCache.optionsToRedirectsKey); const resolvedLibraries = /* @__PURE__ */ new Map; const libraryResolutionCache = createModuleResolutionCache(getCurrentDirectory(), resolutionHost.getCanonicalFileName, getOptionsForLibraryResolution(resolutionHost.getCompilationSettings()), moduleResolutionCache.getPackageJsonInfoCache()); const directoryWatchesOfFailedLookups = /* @__PURE__ */ new Map; const fileWatchesOfAffectingLocations = /* @__PURE__ */ new Map; const rootDir = getRootDirectoryOfResolutionCache(rootDirForResolution, getCurrentDirectory); const rootPath = resolutionHost.toPath(rootDir); const rootPathComponents = getPathComponents(rootPath); const isRootWatchable = canWatchDirectoryOrFile(rootPathComponents); const isSymlinkCache = /* @__PURE__ */ new Map; const packageDirWatchers = /* @__PURE__ */ new Map; const dirPathToSymlinkPackageRefCount = /* @__PURE__ */ new Map; const typeRootsWatches = /* @__PURE__ */ new Map; return { rootDirForResolution, resolvedModuleNames, resolvedTypeReferenceDirectives, resolvedLibraries, resolvedFileToResolution, resolutionsWithFailedLookups, resolutionsWithOnlyAffectingLocations, directoryWatchesOfFailedLookups, fileWatchesOfAffectingLocations, packageDirWatchers, dirPathToSymlinkPackageRefCount, watchFailedLookupLocationsOfExternalModuleResolutions, getModuleResolutionCache: () => moduleResolutionCache, startRecordingFilesWithChangedResolutions, finishRecordingFilesWithChangedResolutions, startCachingPerDirectoryResolution, finishCachingPerDirectoryResolution, resolveModuleNameLiterals, resolveTypeReferenceDirectiveReferences, resolveLibrary: resolveLibrary2, resolveSingleModuleNameWithoutWatching, removeResolutionsFromProjectReferenceRedirects, removeResolutionsOfFile, hasChangedAutomaticTypeDirectiveNames: () => hasChangedAutomaticTypeDirectiveNames, invalidateResolutionOfFile, invalidateResolutionsOfFailedLookupLocations, setFilesWithInvalidatedNonRelativeUnresolvedImports, createHasInvalidatedResolutions, isFileWithInvalidatedNonRelativeUnresolvedImports, updateTypeRootsWatch, closeTypeRootsWatch, clear: clear2, onChangesAffectModuleResolution }; function clear2() { clearMap(directoryWatchesOfFailedLookups, closeFileWatcherOf); clearMap(fileWatchesOfAffectingLocations, closeFileWatcherOf); isSymlinkCache.clear(); packageDirWatchers.clear(); dirPathToSymlinkPackageRefCount.clear(); nonRelativeExternalModuleResolutions.clear(); closeTypeRootsWatch(); resolvedModuleNames.clear(); resolvedTypeReferenceDirectives.clear(); resolvedFileToResolution.clear(); resolutionsWithFailedLookups.clear(); resolutionsWithOnlyAffectingLocations.clear(); failedLookupChecks = undefined; startsWithPathChecks = undefined; isInDirectoryChecks = undefined; affectingPathChecks = undefined; affectingPathChecksForFile = undefined; allModuleAndTypeResolutionsAreInvalidated = false; moduleResolutionCache.clear(); typeReferenceDirectiveResolutionCache.clear(); moduleResolutionCache.update(resolutionHost.getCompilationSettings()); typeReferenceDirectiveResolutionCache.update(resolutionHost.getCompilationSettings()); libraryResolutionCache.clear(); impliedFormatPackageJsons.clear(); resolvedLibraries.clear(); hasChangedAutomaticTypeDirectiveNames = false; } function onChangesAffectModuleResolution() { allModuleAndTypeResolutionsAreInvalidated = true; moduleResolutionCache.clearAllExceptPackageJsonInfoCache(); typeReferenceDirectiveResolutionCache.clearAllExceptPackageJsonInfoCache(); moduleResolutionCache.update(resolutionHost.getCompilationSettings()); typeReferenceDirectiveResolutionCache.update(resolutionHost.getCompilationSettings()); } function startRecordingFilesWithChangedResolutions() { filesWithChangedSetOfUnresolvedImports = []; } function finishRecordingFilesWithChangedResolutions() { const collected = filesWithChangedSetOfUnresolvedImports; filesWithChangedSetOfUnresolvedImports = undefined; return collected; } function isFileWithInvalidatedNonRelativeUnresolvedImports(path) { if (!filesWithInvalidatedNonRelativeUnresolvedImports) { return false; } const value = filesWithInvalidatedNonRelativeUnresolvedImports.get(path); return !!value && !!value.length; } function createHasInvalidatedResolutions(customHasInvalidatedResolutions, customHasInvalidatedLibResolutions) { invalidateResolutionsOfFailedLookupLocations(); const collected = filesWithInvalidatedResolutions; filesWithInvalidatedResolutions = undefined; return { hasInvalidatedResolutions: (path) => customHasInvalidatedResolutions(path) || allModuleAndTypeResolutionsAreInvalidated || !!(collected == null ? undefined : collected.has(path)) || isFileWithInvalidatedNonRelativeUnresolvedImports(path), hasInvalidatedLibResolutions: (libFileName) => { var _a; return customHasInvalidatedLibResolutions(libFileName) || !!((_a = resolvedLibraries == null ? undefined : resolvedLibraries.get(libFileName)) == null ? undefined : _a.isInvalidated); } }; } function startCachingPerDirectoryResolution() { moduleResolutionCache.isReadonly = undefined; typeReferenceDirectiveResolutionCache.isReadonly = undefined; libraryResolutionCache.isReadonly = undefined; moduleResolutionCache.getPackageJsonInfoCache().isReadonly = undefined; moduleResolutionCache.clearAllExceptPackageJsonInfoCache(); typeReferenceDirectiveResolutionCache.clearAllExceptPackageJsonInfoCache(); libraryResolutionCache.clearAllExceptPackageJsonInfoCache(); watchFailedLookupLocationOfNonRelativeModuleResolutions(); isSymlinkCache.clear(); } function cleanupLibResolutionWatching(newProgram) { resolvedLibraries.forEach((resolution, libFileName) => { var _a; if (!((_a = newProgram == null ? undefined : newProgram.resolvedLibReferences) == null ? undefined : _a.has(libFileName))) { stopWatchFailedLookupLocationOfResolution(resolution, resolutionHost.toPath(getInferredLibraryNameResolveFrom(resolutionHost.getCompilationSettings(), getCurrentDirectory(), libFileName)), getResolvedModuleFromResolution); resolvedLibraries.delete(libFileName); } }); } function finishCachingPerDirectoryResolution(newProgram, oldProgram) { filesWithInvalidatedNonRelativeUnresolvedImports = undefined; allModuleAndTypeResolutionsAreInvalidated = false; watchFailedLookupLocationOfNonRelativeModuleResolutions(); if (newProgram !== oldProgram) { cleanupLibResolutionWatching(newProgram); newProgram == null || newProgram.getSourceFiles().forEach((newFile) => { var _a; const expected = ((_a = newFile.packageJsonLocations) == null ? undefined : _a.length) ?? 0; const existing = impliedFormatPackageJsons.get(newFile.resolvedPath) ?? emptyArray; for (let i = existing.length;i < expected; i++) { createFileWatcherOfAffectingLocation(newFile.packageJsonLocations[i], false); } if (existing.length > expected) { for (let i = expected;i < existing.length; i++) { fileWatchesOfAffectingLocations.get(existing[i]).files--; } } if (expected) impliedFormatPackageJsons.set(newFile.resolvedPath, newFile.packageJsonLocations); else impliedFormatPackageJsons.delete(newFile.resolvedPath); }); impliedFormatPackageJsons.forEach((existing, path) => { const newFile = newProgram == null ? undefined : newProgram.getSourceFileByPath(path); if (!newFile || newFile.resolvedPath !== path) { existing.forEach((location) => fileWatchesOfAffectingLocations.get(location).files--); impliedFormatPackageJsons.delete(path); } }); } directoryWatchesOfFailedLookups.forEach(closeDirectoryWatchesOfFailedLookup); fileWatchesOfAffectingLocations.forEach(closeFileWatcherOfAffectingLocation); packageDirWatchers.forEach(closePackageDirWatcher); hasChangedAutomaticTypeDirectiveNames = false; moduleResolutionCache.isReadonly = true; typeReferenceDirectiveResolutionCache.isReadonly = true; libraryResolutionCache.isReadonly = true; moduleResolutionCache.getPackageJsonInfoCache().isReadonly = true; isSymlinkCache.clear(); } function closePackageDirWatcher(watcher, packageDirPath) { if (watcher.dirPathToWatcher.size === 0) { packageDirWatchers.delete(packageDirPath); } } function closeDirectoryWatchesOfFailedLookup(watcher, path) { if (watcher.refCount === 0) { directoryWatchesOfFailedLookups.delete(path); watcher.watcher.close(); } } function closeFileWatcherOfAffectingLocation(watcher, path) { var _a; if (watcher.files === 0 && watcher.resolutions === 0 && !((_a = watcher.symlinks) == null ? undefined : _a.size)) { fileWatchesOfAffectingLocations.delete(path); watcher.watcher.close(); } } function resolveNamesWithLocalCache({ entries, containingFile, containingSourceFile, redirectedReference, options, perFileCache, reusedNames, loader, getResolutionWithResolvedFileName, deferWatchingNonRelativeResolution, shouldRetryResolution, logChanges }) { var _a, _b; const path = resolutionHost.toPath(containingFile); const resolutionsInFile = perFileCache.get(path) || perFileCache.set(path, createModeAwareCache()).get(path); const resolvedModules = []; const hasInvalidatedNonRelativeUnresolvedImport = logChanges && isFileWithInvalidatedNonRelativeUnresolvedImports(path); const program = resolutionHost.getCurrentProgram(); const oldRedirect = program && ((_a = program.getRedirectFromSourceFile(containingFile)) == null ? undefined : _a.resolvedRef); const unmatchedRedirects = oldRedirect ? !redirectedReference || redirectedReference.sourceFile.path !== oldRedirect.sourceFile.path : !!redirectedReference; const seenNamesInFile = createModeAwareCache(); for (const entry of entries) { const name = loader.nameAndMode.getName(entry); const mode = loader.nameAndMode.getMode(entry, containingSourceFile, (redirectedReference == null ? undefined : redirectedReference.commandLine.options) || options); let resolution = resolutionsInFile.get(name, mode); if (!seenNamesInFile.has(name, mode) && (allModuleAndTypeResolutionsAreInvalidated || unmatchedRedirects || !resolution || resolution.isInvalidated || hasInvalidatedNonRelativeUnresolvedImport && !isExternalModuleNameRelative(name) && shouldRetryResolution(resolution))) { const existingResolution = resolution; resolution = loader.resolve(name, mode); if (resolutionHost.onDiscoveredSymlink && resolutionIsSymlink(resolution)) { resolutionHost.onDiscoveredSymlink(); } resolutionsInFile.set(name, mode, resolution); if (resolution !== existingResolution && !((_b = resolutionHost.skipWatchingFailedLookups) == null ? undefined : _b.call(resolutionHost, path))) { watchFailedLookupLocationsOfExternalModuleResolutions(name, resolution, path, getResolutionWithResolvedFileName, deferWatchingNonRelativeResolution); if (existingResolution) { stopWatchFailedLookupLocationOfResolution(existingResolution, path, getResolutionWithResolvedFileName); } } if (logChanges && filesWithChangedSetOfUnresolvedImports && !resolutionIsEqualTo(existingResolution, resolution)) { filesWithChangedSetOfUnresolvedImports.push(path); logChanges = false; } } else { const host = getModuleResolutionHost(resolutionHost); if (isTraceEnabled(options, host) && !seenNamesInFile.has(name, mode)) { const resolved = getResolutionWithResolvedFileName(resolution); trace(host, perFileCache === resolvedModuleNames ? (resolved == null ? undefined : resolved.resolvedFileName) ? resolved.packageId ? Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2_with_Package_ID_3 : Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2 : Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_not_resolved : (resolved == null ? undefined : resolved.resolvedFileName) ? resolved.packageId ? Diagnostics.Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_successfully_resolved_to_2_with_Package_ID_3 : Diagnostics.Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_successfully_resolved_to_2 : Diagnostics.Reusing_resolution_of_type_reference_directive_0_from_1_of_old_program_it_was_not_resolved, name, containingFile, resolved == null ? undefined : resolved.resolvedFileName, (resolved == null ? undefined : resolved.packageId) && packageIdToString(resolved.packageId)); } } Debug.assert(resolution !== undefined && !resolution.isInvalidated); seenNamesInFile.set(name, mode, true); resolvedModules.push(resolution); } reusedNames == null || reusedNames.forEach((entry) => seenNamesInFile.set(loader.nameAndMode.getName(entry), loader.nameAndMode.getMode(entry, containingSourceFile, (redirectedReference == null ? undefined : redirectedReference.commandLine.options) || options), true)); if (resolutionsInFile.size() !== seenNamesInFile.size()) { resolutionsInFile.forEach((resolution, name, mode) => { var _a2; if (!seenNamesInFile.has(name, mode)) { if (!((_a2 = resolutionHost.skipWatchingFailedLookups) == null ? undefined : _a2.call(resolutionHost, path))) { stopWatchFailedLookupLocationOfResolution(resolution, path, getResolutionWithResolvedFileName); } resolutionsInFile.delete(name, mode); } }); } return resolvedModules; function resolutionIsEqualTo(oldResolution, newResolution) { if (oldResolution === newResolution) { return true; } if (!oldResolution || !newResolution) { return false; } const oldResult = getResolutionWithResolvedFileName(oldResolution); const newResult = getResolutionWithResolvedFileName(newResolution); if (oldResult === newResult) { return true; } if (!oldResult || !newResult) { return false; } return oldResult.resolvedFileName === newResult.resolvedFileName; } } function resolveTypeReferenceDirectiveReferences(typeDirectiveReferences, containingFile, redirectedReference, options, containingSourceFile, reusedNames) { return resolveNamesWithLocalCache({ entries: typeDirectiveReferences, containingFile, containingSourceFile, redirectedReference, options, reusedNames, perFileCache: resolvedTypeReferenceDirectives, loader: createTypeReferenceResolutionLoader(containingFile, redirectedReference, options, getModuleResolutionHost(resolutionHost), typeReferenceDirectiveResolutionCache), getResolutionWithResolvedFileName: getResolvedTypeReferenceDirectiveFromResolution, shouldRetryResolution: (resolution) => resolution.resolvedTypeReferenceDirective === undefined, deferWatchingNonRelativeResolution: false }); } function resolveModuleNameLiterals(moduleLiterals, containingFile, redirectedReference, options, containingSourceFile, reusedNames) { return resolveNamesWithLocalCache({ entries: moduleLiterals, containingFile, containingSourceFile, redirectedReference, options, reusedNames, perFileCache: resolvedModuleNames, loader: createModuleResolutionLoaderUsingGlobalCache(containingFile, redirectedReference, options, resolutionHost, moduleResolutionCache), getResolutionWithResolvedFileName: getResolvedModuleFromResolution, shouldRetryResolution: (resolution) => !resolution.resolvedModule || !resolutionExtensionIsTSOrJson(resolution.resolvedModule.extension), logChanges: logChangesWhenResolvingModule, deferWatchingNonRelativeResolution: true }); } function resolveLibrary2(libraryName, resolveFrom, options, libFileName) { const host = getModuleResolutionHost(resolutionHost); let resolution = resolvedLibraries == null ? undefined : resolvedLibraries.get(libFileName); if (!resolution || resolution.isInvalidated) { const existingResolution = resolution; resolution = resolveLibrary(libraryName, resolveFrom, options, host, libraryResolutionCache); const path = resolutionHost.toPath(resolveFrom); watchFailedLookupLocationsOfExternalModuleResolutions(libraryName, resolution, path, getResolvedModuleFromResolution, false); resolvedLibraries.set(libFileName, resolution); if (existingResolution) { stopWatchFailedLookupLocationOfResolution(existingResolution, path, getResolvedModuleFromResolution); } } else { if (isTraceEnabled(options, host)) { const resolved = getResolvedModuleFromResolution(resolution); trace(host, (resolved == null ? undefined : resolved.resolvedFileName) ? resolved.packageId ? Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2_with_Package_ID_3 : Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_successfully_resolved_to_2 : Diagnostics.Reusing_resolution_of_module_0_from_1_of_old_program_it_was_not_resolved, libraryName, resolveFrom, resolved == null ? undefined : resolved.resolvedFileName, (resolved == null ? undefined : resolved.packageId) && packageIdToString(resolved.packageId)); } } return resolution; } function resolveSingleModuleNameWithoutWatching(moduleName, containingFile) { var _a, _b; const path = resolutionHost.toPath(containingFile); const resolutionsInFile = resolvedModuleNames.get(path); const resolution = resolutionsInFile == null ? undefined : resolutionsInFile.get(moduleName, undefined); if (resolution && !resolution.isInvalidated) return resolution; const data = (_a = resolutionHost.beforeResolveSingleModuleNameWithoutWatching) == null ? undefined : _a.call(resolutionHost, moduleResolutionCache); const host = getModuleResolutionHost(resolutionHost); const result = resolveModuleName(moduleName, containingFile, resolutionHost.getCompilationSettings(), host, moduleResolutionCache); (_b = resolutionHost.afterResolveSingleModuleNameWithoutWatching) == null || _b.call(resolutionHost, moduleResolutionCache, moduleName, containingFile, result, data); return result; } function isNodeModulesAtTypesDirectory(dirPath) { return endsWith(dirPath, "/node_modules/@types"); } function watchFailedLookupLocationsOfExternalModuleResolutions(name, resolution, filePath, getResolutionWithResolvedFileName, deferWatchingNonRelativeResolution) { (resolution.files ?? (resolution.files = /* @__PURE__ */ new Set)).add(filePath); if (resolution.files.size !== 1) return; if (!deferWatchingNonRelativeResolution || isExternalModuleNameRelative(name)) { watchFailedLookupLocationOfResolution(resolution); } else { nonRelativeExternalModuleResolutions.add(resolution); } const resolved = getResolutionWithResolvedFileName(resolution); if (resolved && resolved.resolvedFileName) { const key = resolutionHost.toPath(resolved.resolvedFileName); let resolutions = resolvedFileToResolution.get(key); if (!resolutions) resolvedFileToResolution.set(key, resolutions = /* @__PURE__ */ new Set); resolutions.add(resolution); } } function watchFailedLookupLocation(failedLookupLocation, setAtRoot) { const failedLookupLocationPath = resolutionHost.toPath(failedLookupLocation); const toWatch = getDirectoryToWatchFailedLookupLocation(failedLookupLocation, failedLookupLocationPath, rootDir, rootPath, rootPathComponents, isRootWatchable, getCurrentDirectory, resolutionHost.preferNonRecursiveWatch); if (toWatch) { const { dir, dirPath, nonRecursive, packageDir, packageDirPath } = toWatch; if (dirPath === rootPath) { Debug.assert(nonRecursive); Debug.assert(!packageDir); setAtRoot = true; } else { setDirectoryWatcher(dir, dirPath, packageDir, packageDirPath, nonRecursive); } } return setAtRoot; } function watchFailedLookupLocationOfResolution(resolution) { var _a; Debug.assert(!!((_a = resolution.files) == null ? undefined : _a.size)); const { failedLookupLocations, affectingLocations, alternateResult } = resolution; if (!(failedLookupLocations == null ? undefined : failedLookupLocations.length) && !(affectingLocations == null ? undefined : affectingLocations.length) && !alternateResult) return; if ((failedLookupLocations == null ? undefined : failedLookupLocations.length) || alternateResult) resolutionsWithFailedLookups.add(resolution); let setAtRoot = false; if (failedLookupLocations) { for (const failedLookupLocation of failedLookupLocations) { setAtRoot = watchFailedLookupLocation(failedLookupLocation, setAtRoot); } } if (alternateResult) setAtRoot = watchFailedLookupLocation(alternateResult, setAtRoot); if (setAtRoot) { setDirectoryWatcher(rootDir, rootPath, undefined, undefined, true); } watchAffectingLocationsOfResolution(resolution, !(failedLookupLocations == null ? undefined : failedLookupLocations.length) && !alternateResult); } function watchAffectingLocationsOfResolution(resolution, addToResolutionsWithOnlyAffectingLocations) { var _a; Debug.assert(!!((_a = resolution.files) == null ? undefined : _a.size)); const { affectingLocations } = resolution; if (!(affectingLocations == null ? undefined : affectingLocations.length)) return; if (addToResolutionsWithOnlyAffectingLocations) resolutionsWithOnlyAffectingLocations.add(resolution); for (const affectingLocation of affectingLocations) { createFileWatcherOfAffectingLocation(affectingLocation, true); } } function createFileWatcherOfAffectingLocation(affectingLocation, forResolution) { const fileWatcher = fileWatchesOfAffectingLocations.get(affectingLocation); if (fileWatcher) { if (forResolution) fileWatcher.resolutions++; else fileWatcher.files++; return; } let locationToWatch = affectingLocation; let isSymlink = false; let symlinkWatcher; if (resolutionHost.realpath) { locationToWatch = resolutionHost.realpath(affectingLocation); if (affectingLocation !== locationToWatch) { isSymlink = true; symlinkWatcher = fileWatchesOfAffectingLocations.get(locationToWatch); } } const resolutions = forResolution ? 1 : 0; const files = forResolution ? 0 : 1; if (!isSymlink || !symlinkWatcher) { const watcher = { watcher: canWatchAffectingLocation(resolutionHost.toPath(locationToWatch)) ? resolutionHost.watchAffectingFileLocation(locationToWatch, (fileName, eventKind) => { cachedDirectoryStructureHost == null || cachedDirectoryStructureHost.addOrDeleteFile(fileName, resolutionHost.toPath(locationToWatch), eventKind); invalidateAffectingFileWatcher(locationToWatch, moduleResolutionCache.getPackageJsonInfoCache().getInternalMap()); resolutionHost.scheduleInvalidateResolutionsOfFailedLookupLocations(); }) : noopFileWatcher, resolutions: isSymlink ? 0 : resolutions, files: isSymlink ? 0 : files, symlinks: undefined }; fileWatchesOfAffectingLocations.set(locationToWatch, watcher); if (isSymlink) symlinkWatcher = watcher; } if (isSymlink) { Debug.assert(!!symlinkWatcher); const watcher = { watcher: { close: () => { var _a; const symlinkWatcher2 = fileWatchesOfAffectingLocations.get(locationToWatch); if (((_a = symlinkWatcher2 == null ? undefined : symlinkWatcher2.symlinks) == null ? undefined : _a.delete(affectingLocation)) && !symlinkWatcher2.symlinks.size && !symlinkWatcher2.resolutions && !symlinkWatcher2.files) { fileWatchesOfAffectingLocations.delete(locationToWatch); symlinkWatcher2.watcher.close(); } } }, resolutions, files, symlinks: undefined }; fileWatchesOfAffectingLocations.set(affectingLocation, watcher); (symlinkWatcher.symlinks ?? (symlinkWatcher.symlinks = /* @__PURE__ */ new Set)).add(affectingLocation); } } function invalidateAffectingFileWatcher(path, packageJsonMap) { var _a; const watcher = fileWatchesOfAffectingLocations.get(path); if (watcher == null ? undefined : watcher.resolutions) (affectingPathChecks ?? (affectingPathChecks = /* @__PURE__ */ new Set)).add(path); if (watcher == null ? undefined : watcher.files) (affectingPathChecksForFile ?? (affectingPathChecksForFile = /* @__PURE__ */ new Set)).add(path); (_a = watcher == null ? undefined : watcher.symlinks) == null || _a.forEach((path2) => invalidateAffectingFileWatcher(path2, packageJsonMap)); packageJsonMap == null || packageJsonMap.delete(resolutionHost.toPath(path)); } function watchFailedLookupLocationOfNonRelativeModuleResolutions() { nonRelativeExternalModuleResolutions.forEach(watchFailedLookupLocationOfResolution); nonRelativeExternalModuleResolutions.clear(); } function createDirectoryWatcherForPackageDir(dir, dirPath, packageDir, packageDirPath, nonRecursive) { Debug.assert(!nonRecursive); let isSymlink = isSymlinkCache.get(packageDirPath); let packageDirWatcher = packageDirWatchers.get(packageDirPath); if (isSymlink === undefined) { const realPath2 = resolutionHost.realpath(packageDir); isSymlink = realPath2 !== packageDir && resolutionHost.toPath(realPath2) !== packageDirPath; isSymlinkCache.set(packageDirPath, isSymlink); if (!packageDirWatcher) { packageDirWatchers.set(packageDirPath, packageDirWatcher = { dirPathToWatcher: /* @__PURE__ */ new Map, isSymlink }); } else if (packageDirWatcher.isSymlink !== isSymlink) { packageDirWatcher.dirPathToWatcher.forEach((watcher) => { removeDirectoryWatcher(packageDirWatcher.isSymlink ? packageDirPath : dirPath); watcher.watcher = createDirPathToWatcher(); }); packageDirWatcher.isSymlink = isSymlink; } } else { Debug.assertIsDefined(packageDirWatcher); Debug.assert(isSymlink === packageDirWatcher.isSymlink); } const forDirPath = packageDirWatcher.dirPathToWatcher.get(dirPath); if (forDirPath) { forDirPath.refCount++; } else { packageDirWatcher.dirPathToWatcher.set(dirPath, { watcher: createDirPathToWatcher(), refCount: 1 }); if (isSymlink) dirPathToSymlinkPackageRefCount.set(dirPath, (dirPathToSymlinkPackageRefCount.get(dirPath) ?? 0) + 1); } function createDirPathToWatcher() { return isSymlink ? createOrAddRefToDirectoryWatchOfFailedLookups(packageDir, packageDirPath, nonRecursive) : createOrAddRefToDirectoryWatchOfFailedLookups(dir, dirPath, nonRecursive); } } function setDirectoryWatcher(dir, dirPath, packageDir, packageDirPath, nonRecursive) { if (!packageDirPath || !resolutionHost.realpath) { createOrAddRefToDirectoryWatchOfFailedLookups(dir, dirPath, nonRecursive); } else { createDirectoryWatcherForPackageDir(dir, dirPath, packageDir, packageDirPath, nonRecursive); } } function createOrAddRefToDirectoryWatchOfFailedLookups(dir, dirPath, nonRecursive) { let dirWatcher = directoryWatchesOfFailedLookups.get(dirPath); if (dirWatcher) { Debug.assert(!!nonRecursive === !!dirWatcher.nonRecursive); dirWatcher.refCount++; } else { directoryWatchesOfFailedLookups.set(dirPath, dirWatcher = { watcher: createDirectoryWatcher(dir, dirPath, nonRecursive), refCount: 1, nonRecursive }); } return dirWatcher; } function stopWatchFailedLookupLocation(failedLookupLocation, removeAtRoot) { const failedLookupLocationPath = resolutionHost.toPath(failedLookupLocation); const toWatch = getDirectoryToWatchFailedLookupLocation(failedLookupLocation, failedLookupLocationPath, rootDir, rootPath, rootPathComponents, isRootWatchable, getCurrentDirectory, resolutionHost.preferNonRecursiveWatch); if (toWatch) { const { dirPath, packageDirPath } = toWatch; if (dirPath === rootPath) { removeAtRoot = true; } else if (packageDirPath && resolutionHost.realpath) { const packageDirWatcher = packageDirWatchers.get(packageDirPath); const forDirPath = packageDirWatcher.dirPathToWatcher.get(dirPath); forDirPath.refCount--; if (forDirPath.refCount === 0) { removeDirectoryWatcher(packageDirWatcher.isSymlink ? packageDirPath : dirPath); packageDirWatcher.dirPathToWatcher.delete(dirPath); if (packageDirWatcher.isSymlink) { const refCount = dirPathToSymlinkPackageRefCount.get(dirPath) - 1; if (refCount === 0) { dirPathToSymlinkPackageRefCount.delete(dirPath); } else { dirPathToSymlinkPackageRefCount.set(dirPath, refCount); } } } } else { removeDirectoryWatcher(dirPath); } } return removeAtRoot; } function stopWatchFailedLookupLocationOfResolution(resolution, filePath, getResolutionWithResolvedFileName) { Debug.checkDefined(resolution.files).delete(filePath); if (resolution.files.size) return; resolution.files = undefined; const resolved = getResolutionWithResolvedFileName(resolution); if (resolved && resolved.resolvedFileName) { const key = resolutionHost.toPath(resolved.resolvedFileName); const resolutions = resolvedFileToResolution.get(key); if ((resolutions == null ? undefined : resolutions.delete(resolution)) && !resolutions.size) resolvedFileToResolution.delete(key); } const { failedLookupLocations, affectingLocations, alternateResult } = resolution; if (resolutionsWithFailedLookups.delete(resolution)) { let removeAtRoot = false; if (failedLookupLocations) { for (const failedLookupLocation of failedLookupLocations) { removeAtRoot = stopWatchFailedLookupLocation(failedLookupLocation, removeAtRoot); } } if (alternateResult) removeAtRoot = stopWatchFailedLookupLocation(alternateResult, removeAtRoot); if (removeAtRoot) removeDirectoryWatcher(rootPath); } else if (affectingLocations == null ? undefined : affectingLocations.length) { resolutionsWithOnlyAffectingLocations.delete(resolution); } if (affectingLocations) { for (const affectingLocation of affectingLocations) { const watcher = fileWatchesOfAffectingLocations.get(affectingLocation); watcher.resolutions--; } } } function removeDirectoryWatcher(dirPath) { const dirWatcher = directoryWatchesOfFailedLookups.get(dirPath); dirWatcher.refCount--; } function createDirectoryWatcher(directory, dirPath, nonRecursive) { return resolutionHost.watchDirectoryOfFailedLookupLocation(directory, (fileOrDirectory) => { const fileOrDirectoryPath = resolutionHost.toPath(fileOrDirectory); if (cachedDirectoryStructureHost) { cachedDirectoryStructureHost.addOrDeleteFileOrDirectory(fileOrDirectory, fileOrDirectoryPath); } scheduleInvalidateResolutionOfFailedLookupLocation(fileOrDirectoryPath, dirPath === fileOrDirectoryPath); }, nonRecursive ? 0 : 1); } function removeResolutionsOfFileFromCache(cache, filePath, getResolutionWithResolvedFileName) { var _a; const resolutions = cache.get(filePath); if (resolutions) { if (!((_a = resolutionHost.skipWatchingFailedLookups) == null ? undefined : _a.call(resolutionHost, filePath))) { resolutions.forEach((resolution) => stopWatchFailedLookupLocationOfResolution(resolution, filePath, getResolutionWithResolvedFileName)); } cache.delete(filePath); } } function removeResolutionsFromProjectReferenceRedirects(filePath) { if (!fileExtensionIs(filePath, ".json")) return; const program = resolutionHost.getCurrentProgram(); if (!program) return; const resolvedProjectReference = program.getResolvedProjectReferenceByPath(filePath); if (!resolvedProjectReference) return; resolvedProjectReference.commandLine.fileNames.forEach((f) => removeResolutionsOfFile(resolutionHost.toPath(f))); } function removeResolutionsOfFile(filePath) { removeResolutionsOfFileFromCache(resolvedModuleNames, filePath, getResolvedModuleFromResolution); removeResolutionsOfFileFromCache(resolvedTypeReferenceDirectives, filePath, getResolvedTypeReferenceDirectiveFromResolution); } function invalidateResolutions(resolutions, canInvalidate) { if (!resolutions) return false; let invalidated = false; resolutions.forEach((resolution) => { if (resolution.isInvalidated || !canInvalidate(resolution)) return; resolution.isInvalidated = invalidated = true; for (const containingFilePath of Debug.checkDefined(resolution.files)) { (filesWithInvalidatedResolutions ?? (filesWithInvalidatedResolutions = /* @__PURE__ */ new Set)).add(containingFilePath); hasChangedAutomaticTypeDirectiveNames = hasChangedAutomaticTypeDirectiveNames || endsWith(containingFilePath, inferredTypesContainingFile); } }); return invalidated; } function invalidateResolutionOfFile(filePath) { removeResolutionsOfFile(filePath); const prevHasChangedAutomaticTypeDirectiveNames = hasChangedAutomaticTypeDirectiveNames; if (invalidateResolutions(resolvedFileToResolution.get(filePath), returnTrue) && hasChangedAutomaticTypeDirectiveNames && !prevHasChangedAutomaticTypeDirectiveNames) { resolutionHost.onChangedAutomaticTypeDirectiveNames(); } } function setFilesWithInvalidatedNonRelativeUnresolvedImports(filesMap) { Debug.assert(filesWithInvalidatedNonRelativeUnresolvedImports === filesMap || filesWithInvalidatedNonRelativeUnresolvedImports === undefined); filesWithInvalidatedNonRelativeUnresolvedImports = filesMap; } function scheduleInvalidateResolutionOfFailedLookupLocation(fileOrDirectoryPath, isCreatingWatchedDirectory) { if (isCreatingWatchedDirectory) { (isInDirectoryChecks || (isInDirectoryChecks = /* @__PURE__ */ new Set)).add(fileOrDirectoryPath); } else { const updatedPath = removeIgnoredPath(fileOrDirectoryPath); if (!updatedPath) return false; fileOrDirectoryPath = updatedPath; if (resolutionHost.fileIsOpen(fileOrDirectoryPath)) { return false; } const dirOfFileOrDirectory = getDirectoryPath(fileOrDirectoryPath); if (isNodeModulesAtTypesDirectory(fileOrDirectoryPath) || isNodeModulesDirectory(fileOrDirectoryPath) || isNodeModulesAtTypesDirectory(dirOfFileOrDirectory) || isNodeModulesDirectory(dirOfFileOrDirectory)) { (failedLookupChecks || (failedLookupChecks = /* @__PURE__ */ new Set)).add(fileOrDirectoryPath); (startsWithPathChecks || (startsWithPathChecks = /* @__PURE__ */ new Set)).add(fileOrDirectoryPath); } else { if (isEmittedFileOfProgram(resolutionHost.getCurrentProgram(), fileOrDirectoryPath)) { return false; } if (fileExtensionIs(fileOrDirectoryPath, ".map")) { return false; } (failedLookupChecks || (failedLookupChecks = /* @__PURE__ */ new Set)).add(fileOrDirectoryPath); (startsWithPathChecks || (startsWithPathChecks = /* @__PURE__ */ new Set)).add(fileOrDirectoryPath); const packagePath = parseNodeModuleFromPath(fileOrDirectoryPath, true); if (packagePath) (startsWithPathChecks || (startsWithPathChecks = /* @__PURE__ */ new Set)).add(packagePath); } } resolutionHost.scheduleInvalidateResolutionsOfFailedLookupLocations(); } function invalidatePackageJsonMap() { const packageJsonMap = moduleResolutionCache.getPackageJsonInfoCache().getInternalMap(); if (packageJsonMap && (failedLookupChecks || startsWithPathChecks || isInDirectoryChecks)) { packageJsonMap.forEach((_value, path) => isInvalidatedFailedLookup(path) ? packageJsonMap.delete(path) : undefined); } } function invalidateResolutionsOfFailedLookupLocations() { var _a; if (allModuleAndTypeResolutionsAreInvalidated) { affectingPathChecksForFile = undefined; invalidatePackageJsonMap(); if (failedLookupChecks || startsWithPathChecks || isInDirectoryChecks || affectingPathChecks) { invalidateResolutions(resolvedLibraries, canInvalidateFailedLookupResolution); } failedLookupChecks = undefined; startsWithPathChecks = undefined; isInDirectoryChecks = undefined; affectingPathChecks = undefined; return true; } let invalidated = false; if (affectingPathChecksForFile) { (_a = resolutionHost.getCurrentProgram()) == null || _a.getSourceFiles().forEach((f) => { if (some(f.packageJsonLocations, (location) => affectingPathChecksForFile.has(location))) { (filesWithInvalidatedResolutions ?? (filesWithInvalidatedResolutions = /* @__PURE__ */ new Set)).add(f.path); invalidated = true; } }); affectingPathChecksForFile = undefined; } if (!failedLookupChecks && !startsWithPathChecks && !isInDirectoryChecks && !affectingPathChecks) { return invalidated; } invalidated = invalidateResolutions(resolutionsWithFailedLookups, canInvalidateFailedLookupResolution) || invalidated; invalidatePackageJsonMap(); failedLookupChecks = undefined; startsWithPathChecks = undefined; isInDirectoryChecks = undefined; invalidated = invalidateResolutions(resolutionsWithOnlyAffectingLocations, canInvalidatedFailedLookupResolutionWithAffectingLocation) || invalidated; affectingPathChecks = undefined; return invalidated; } function canInvalidateFailedLookupResolution(resolution) { var _a; if (canInvalidatedFailedLookupResolutionWithAffectingLocation(resolution)) return true; if (!failedLookupChecks && !startsWithPathChecks && !isInDirectoryChecks) return false; return ((_a = resolution.failedLookupLocations) == null ? undefined : _a.some((location) => isInvalidatedFailedLookup(resolutionHost.toPath(location)))) || !!resolution.alternateResult && isInvalidatedFailedLookup(resolutionHost.toPath(resolution.alternateResult)); } function isInvalidatedFailedLookup(locationPath) { return (failedLookupChecks == null ? undefined : failedLookupChecks.has(locationPath)) || firstDefinedIterator((startsWithPathChecks == null ? undefined : startsWithPathChecks.keys()) || [], (fileOrDirectoryPath) => startsWith(locationPath, fileOrDirectoryPath) ? true : undefined) || firstDefinedIterator((isInDirectoryChecks == null ? undefined : isInDirectoryChecks.keys()) || [], (dirPath) => locationPath.length > dirPath.length && startsWith(locationPath, dirPath) && (isDiskPathRoot(dirPath) || locationPath[dirPath.length] === directorySeparator) ? true : undefined); } function canInvalidatedFailedLookupResolutionWithAffectingLocation(resolution) { var _a; return !!affectingPathChecks && ((_a = resolution.affectingLocations) == null ? undefined : _a.some((location) => affectingPathChecks.has(location))); } function closeTypeRootsWatch() { clearMap(typeRootsWatches, closeFileWatcher); } function createTypeRootsWatch(typeRoot) { return canWatchTypeRootPath(typeRoot) ? resolutionHost.watchTypeRootsDirectory(typeRoot, (fileOrDirectory) => { const fileOrDirectoryPath = resolutionHost.toPath(fileOrDirectory); if (cachedDirectoryStructureHost) { cachedDirectoryStructureHost.addOrDeleteFileOrDirectory(fileOrDirectory, fileOrDirectoryPath); } hasChangedAutomaticTypeDirectiveNames = true; resolutionHost.onChangedAutomaticTypeDirectiveNames(); const dirPath = getDirectoryToWatchFailedLookupLocationFromTypeRoot(typeRoot, resolutionHost.toPath(typeRoot), rootPath, rootPathComponents, isRootWatchable, getCurrentDirectory, resolutionHost.preferNonRecursiveWatch, (dirPath2) => directoryWatchesOfFailedLookups.has(dirPath2) || dirPathToSymlinkPackageRefCount.has(dirPath2)); if (dirPath) { scheduleInvalidateResolutionOfFailedLookupLocation(fileOrDirectoryPath, dirPath === fileOrDirectoryPath); } }, 1) : noopFileWatcher; } function updateTypeRootsWatch() { var _a; const options = resolutionHost.getCompilationSettings(); if (!usesWildcardTypes(options)) { closeTypeRootsWatch(); return; } if (!isRootWatchable || ((_a = resolutionHost.skipWatchingTypeRoots) == null ? undefined : _a.call(resolutionHost))) { closeTypeRootsWatch(); return; } const typeRoots = getEffectiveTypeRoots(options, { getCurrentDirectory }); if (typeRoots) { mutateMap(typeRootsWatches, new Set(typeRoots), { createNewValue: createTypeRootsWatch, onDeleteValue: closeFileWatcher }); } else { closeTypeRootsWatch(); } } function canWatchTypeRootPath(typeRoot) { if (resolutionHost.getCompilationSettings().typeRoots) return true; return canWatchAtTypes(resolutionHost.toPath(typeRoot)); } } function resolutionIsSymlink(resolution) { var _a, _b; return !!(((_a = resolution.resolvedModule) == null ? undefined : _a.originalPath) || ((_b = resolution.resolvedTypeReferenceDirective) == null ? undefined : _b.originalPath)); } var sysFormatDiagnosticsHost = sys ? { getCurrentDirectory: () => sys.getCurrentDirectory(), getNewLine: () => sys.newLine, getCanonicalFileName: createGetCanonicalFileName(sys.useCaseSensitiveFileNames) } : undefined; function createDiagnosticReporter(system, pretty) { const host = system === sys && sysFormatDiagnosticsHost ? sysFormatDiagnosticsHost : { getCurrentDirectory: () => system.getCurrentDirectory(), getNewLine: () => system.newLine, getCanonicalFileName: createGetCanonicalFileName(system.useCaseSensitiveFileNames) }; if (!pretty) { return (diagnostic) => system.write(formatDiagnostic2(diagnostic, host)); } const diagnostics = new Array(1); return (diagnostic) => { diagnostics[0] = diagnostic; system.write(formatDiagnosticsWithColorAndContext(diagnostics, host) + host.getNewLine()); diagnostics[0] = undefined; }; } function clearScreenIfNotWatchingForFileChanges(system, diagnostic, options) { if (system.clearScreen && !options.preserveWatchOutput && !options.extendedDiagnostics && !options.diagnostics && contains(screenStartingMessageCodes, diagnostic.code)) { system.clearScreen(); return true; } return false; } var screenStartingMessageCodes = [ Diagnostics.Starting_compilation_in_watch_mode.code, Diagnostics.File_change_detected_Starting_incremental_compilation.code ]; function getPlainDiagnosticFollowingNewLines(diagnostic, newLine) { return contains(screenStartingMessageCodes, diagnostic.code) ? newLine + newLine : newLine; } function getLocaleTimeString(system) { return !system.now ? (/* @__PURE__ */ new Date()).toLocaleTimeString() : system.now().toLocaleTimeString("en-US", { timeZone: "UTC" }).replace(" ", " "); } function createWatchStatusReporter(system, pretty) { return pretty ? (diagnostic, newLine, options) => { clearScreenIfNotWatchingForFileChanges(system, diagnostic, options); let output = `[${formatColorAndReset(getLocaleTimeString(system), "\x1B[90m")}] `; output += `${flattenDiagnosticMessageText(diagnostic.messageText, system.newLine)}${newLine + newLine}`; system.write(output); } : (diagnostic, newLine, options) => { let output = ""; if (!clearScreenIfNotWatchingForFileChanges(system, diagnostic, options)) { output += newLine; } output += `${getLocaleTimeString(system)} - `; output += `${flattenDiagnosticMessageText(diagnostic.messageText, system.newLine)}${getPlainDiagnosticFollowingNewLines(diagnostic, newLine)}`; system.write(output); }; } function parseConfigFileWithSystem(configFileName, optionsToExtend, extendedConfigCache, watchOptionsToExtend, system, reportDiagnostic) { const host = system; host.onUnRecoverableConfigFileDiagnostic = (diagnostic) => reportUnrecoverableDiagnostic(system, reportDiagnostic, diagnostic); const result = getParsedCommandLineOfConfigFile(configFileName, optionsToExtend, host, extendedConfigCache, watchOptionsToExtend); host.onUnRecoverableConfigFileDiagnostic = undefined; return result; } function getErrorCountForSummary(diagnostics) { return countWhere(diagnostics, (diagnostic) => diagnostic.category === 1); } function getFilesInErrorForSummary(diagnostics) { const filesInError = filter(diagnostics, (diagnostic) => diagnostic.category === 1).map((errorDiagnostic) => { if (errorDiagnostic.file === undefined) return; return `${errorDiagnostic.file.fileName}`; }); return filesInError.map((fileName) => { if (fileName === undefined) { return; } const diagnosticForFileName = find(diagnostics, (diagnostic) => diagnostic.file !== undefined && diagnostic.file.fileName === fileName); if (diagnosticForFileName !== undefined) { const { line } = getLineAndCharacterOfPosition(diagnosticForFileName.file, diagnosticForFileName.start); return { fileName, line: line + 1 }; } }); } function getWatchErrorSummaryDiagnosticMessage(errorCount) { return errorCount === 1 ? Diagnostics.Found_1_error_Watching_for_file_changes : Diagnostics.Found_0_errors_Watching_for_file_changes; } function prettyPathForFileError(error2, cwd) { const line = formatColorAndReset(":" + error2.line, "\x1B[90m"); if (pathIsAbsolute(error2.fileName) && pathIsAbsolute(cwd)) { return getRelativePathFromDirectory(cwd, error2.fileName, false) + line; } return error2.fileName + line; } function getErrorSummaryText(errorCount, filesInError, newLine, host) { if (errorCount === 0) return ""; const nonNilFiles = filesInError.filter((fileInError) => fileInError !== undefined); const distinctFileNamesWithLines = nonNilFiles.map((fileInError) => `${fileInError.fileName}:${fileInError.line}`).filter((value, index, self) => self.indexOf(value) === index); const firstFileReference = nonNilFiles[0] && prettyPathForFileError(nonNilFiles[0], host.getCurrentDirectory()); let messageAndArgs; if (errorCount === 1) { messageAndArgs = filesInError[0] !== undefined ? [Diagnostics.Found_1_error_in_0, firstFileReference] : [Diagnostics.Found_1_error]; } else { messageAndArgs = distinctFileNamesWithLines.length === 0 ? [Diagnostics.Found_0_errors, errorCount] : distinctFileNamesWithLines.length === 1 ? [Diagnostics.Found_0_errors_in_the_same_file_starting_at_Colon_1, errorCount, firstFileReference] : [Diagnostics.Found_0_errors_in_1_files, errorCount, distinctFileNamesWithLines.length]; } const d = createCompilerDiagnostic(...messageAndArgs); const suffix = distinctFileNamesWithLines.length > 1 ? createTabularErrorsDisplay(nonNilFiles, host) : ""; return `${newLine}${flattenDiagnosticMessageText(d.messageText, newLine)}${newLine}${newLine}${suffix}`; } function createTabularErrorsDisplay(filesInError, host) { const distinctFiles = filesInError.filter((value, index, self) => index === self.findIndex((file) => (file == null ? undefined : file.fileName) === (value == null ? undefined : value.fileName))); if (distinctFiles.length === 0) return ""; const numberLength = (num) => Math.log(num) * Math.LOG10E + 1; const fileToErrorCount = distinctFiles.map((file) => [file, countWhere(filesInError, (fileInError) => fileInError.fileName === file.fileName)]); const maxErrors = maxBy(fileToErrorCount, 0, (value) => value[1]); const headerRow = Diagnostics.Errors_Files.message; const leftColumnHeadingLength = headerRow.split(" ")[0].length; const leftPaddingGoal = Math.max(leftColumnHeadingLength, numberLength(maxErrors)); const headerPadding = Math.max(numberLength(maxErrors) - leftColumnHeadingLength, 0); let tabularData = ""; tabularData += " ".repeat(headerPadding) + headerRow + ` `; fileToErrorCount.forEach((row) => { const [file, errorCount] = row; const errorCountDigitsLength = Math.log(errorCount) * Math.LOG10E + 1 | 0; const leftPadding = errorCountDigitsLength < leftPaddingGoal ? " ".repeat(leftPaddingGoal - errorCountDigitsLength) : ""; const fileRef = prettyPathForFileError(file, host.getCurrentDirectory()); tabularData += `${leftPadding}${errorCount} ${fileRef} `; }); return tabularData; } function isBuilderProgram(program) { return !!program.state; } function listFiles(program, write) { const options = program.getCompilerOptions(); if (options.explainFiles) { explainFiles(isBuilderProgram(program) ? program.getProgram() : program, write); } else if (options.listFiles || options.listFilesOnly) { forEach(program.getSourceFiles(), (file) => { write(file.fileName); }); } } function explainFiles(program, write) { var _a, _b; const reasons = program.getFileIncludeReasons(); const relativeFileName = (fileName) => convertToRelativePath(fileName, program.getCurrentDirectory(), program.getCanonicalFileName); for (const file of program.getSourceFiles()) { write(`${toFileName(file, relativeFileName)}`); (_a = reasons.get(file.path)) == null || _a.forEach((reason) => write(` ${fileIncludeReasonToDiagnostics(program, reason, relativeFileName).messageText}`)); (_b = explainIfFileIsRedirectAndImpliedFormat(file, program.getCompilerOptionsForFile(file), relativeFileName)) == null || _b.forEach((d) => write(` ${d.messageText}`)); } } function explainIfFileIsRedirectAndImpliedFormat(file, options, fileNameConvertor) { var _a; let result; if (file.path !== file.resolvedPath) { (result ?? (result = [])).push(chainDiagnosticMessages(undefined, Diagnostics.File_is_output_of_project_reference_source_0, toFileName(file.originalFileName, fileNameConvertor))); } if (file.redirectInfo) { (result ?? (result = [])).push(chainDiagnosticMessages(undefined, Diagnostics.File_redirects_to_file_0, toFileName(file.redirectInfo.redirectTarget, fileNameConvertor))); } if (isExternalOrCommonJsModule(file)) { switch (getImpliedNodeFormatForEmitWorker(file, options)) { case 99: if (file.packageJsonScope) { (result ?? (result = [])).push(chainDiagnosticMessages(undefined, Diagnostics.File_is_ECMAScript_module_because_0_has_field_type_with_value_module, toFileName(last(file.packageJsonLocations), fileNameConvertor))); } break; case 1: if (file.packageJsonScope) { (result ?? (result = [])).push(chainDiagnosticMessages(undefined, file.packageJsonScope.contents.packageJsonContent.type ? Diagnostics.File_is_CommonJS_module_because_0_has_field_type_whose_value_is_not_module : Diagnostics.File_is_CommonJS_module_because_0_does_not_have_field_type, toFileName(last(file.packageJsonLocations), fileNameConvertor))); } else if ((_a = file.packageJsonLocations) == null ? undefined : _a.length) { (result ?? (result = [])).push(chainDiagnosticMessages(undefined, Diagnostics.File_is_CommonJS_module_because_package_json_was_not_found)); } break; } } return result; } function getMatchedFileSpec(program, fileName) { var _a; const configFile = program.getCompilerOptions().configFile; if (!((_a = configFile == null ? undefined : configFile.configFileSpecs) == null ? undefined : _a.validatedFilesSpec)) return; const filePath = program.getCanonicalFileName(fileName); const basePath = getDirectoryPath(getNormalizedAbsolutePath(configFile.fileName, program.getCurrentDirectory())); const index = findIndex(configFile.configFileSpecs.validatedFilesSpec, (fileSpec) => program.getCanonicalFileName(getNormalizedAbsolutePath(fileSpec, basePath)) === filePath); return index !== -1 ? configFile.configFileSpecs.validatedFilesSpecBeforeSubstitution[index] : undefined; } function getMatchedIncludeSpec(program, fileName) { var _a, _b; const configFile = program.getCompilerOptions().configFile; if (!((_a = configFile == null ? undefined : configFile.configFileSpecs) == null ? undefined : _a.validatedIncludeSpecs)) return; if (configFile.configFileSpecs.isDefaultIncludeSpec) return true; const isJsonFile = fileExtensionIs(fileName, ".json"); const basePath = getDirectoryPath(getNormalizedAbsolutePath(configFile.fileName, program.getCurrentDirectory())); const useCaseSensitiveFileNames2 = program.useCaseSensitiveFileNames(); const index = findIndex((_b = configFile == null ? undefined : configFile.configFileSpecs) == null ? undefined : _b.validatedIncludeSpecs, (includeSpec) => { if (isJsonFile && !endsWith(includeSpec, ".json")) return false; const pattern = getPatternFromSpec(includeSpec, basePath, "files"); return !!pattern && getRegexFromPattern(`(?:${pattern})$`, useCaseSensitiveFileNames2).test(fileName); }); return index !== -1 ? configFile.configFileSpecs.validatedIncludeSpecsBeforeSubstitution[index] : undefined; } function fileIncludeReasonToDiagnostics(program, reason, fileNameConvertor) { var _a, _b; const options = program.getCompilerOptions(); if (isReferencedFile(reason)) { const referenceLocation = getReferencedFileLocation(program, reason); const referenceText = isReferenceFileLocation(referenceLocation) ? referenceLocation.file.text.substring(referenceLocation.pos, referenceLocation.end) : `"${referenceLocation.text}"`; let message; Debug.assert(isReferenceFileLocation(referenceLocation) || reason.kind === 3, "Only synthetic references are imports"); switch (reason.kind) { case 3: if (isReferenceFileLocation(referenceLocation)) { message = referenceLocation.packageId ? Diagnostics.Imported_via_0_from_file_1_with_packageId_2 : Diagnostics.Imported_via_0_from_file_1; } else if (referenceLocation.text === externalHelpersModuleNameText) { message = referenceLocation.packageId ? Diagnostics.Imported_via_0_from_file_1_with_packageId_2_to_import_importHelpers_as_specified_in_compilerOptions : Diagnostics.Imported_via_0_from_file_1_to_import_importHelpers_as_specified_in_compilerOptions; } else { message = referenceLocation.packageId ? Diagnostics.Imported_via_0_from_file_1_with_packageId_2_to_import_jsx_and_jsxs_factory_functions : Diagnostics.Imported_via_0_from_file_1_to_import_jsx_and_jsxs_factory_functions; } break; case 4: Debug.assert(!referenceLocation.packageId); message = Diagnostics.Referenced_via_0_from_file_1; break; case 5: message = referenceLocation.packageId ? Diagnostics.Type_library_referenced_via_0_from_file_1_with_packageId_2 : Diagnostics.Type_library_referenced_via_0_from_file_1; break; case 7: Debug.assert(!referenceLocation.packageId); message = Diagnostics.Library_referenced_via_0_from_file_1; break; default: Debug.assertNever(reason); } return chainDiagnosticMessages(undefined, message, referenceText, toFileName(referenceLocation.file, fileNameConvertor), referenceLocation.packageId && packageIdToString(referenceLocation.packageId)); } switch (reason.kind) { case 0: if (!((_a = options.configFile) == null ? undefined : _a.configFileSpecs)) return chainDiagnosticMessages(undefined, Diagnostics.Root_file_specified_for_compilation); const fileName = getNormalizedAbsolutePath(program.getRootFileNames()[reason.index], program.getCurrentDirectory()); const matchedByFiles = getMatchedFileSpec(program, fileName); if (matchedByFiles) return chainDiagnosticMessages(undefined, Diagnostics.Part_of_files_list_in_tsconfig_json); const matchedByInclude = getMatchedIncludeSpec(program, fileName); return isString(matchedByInclude) ? chainDiagnosticMessages(undefined, Diagnostics.Matched_by_include_pattern_0_in_1, matchedByInclude, toFileName(options.configFile, fileNameConvertor)) : chainDiagnosticMessages(undefined, matchedByInclude ? Diagnostics.Matched_by_default_include_pattern_Asterisk_Asterisk_Slash_Asterisk : Diagnostics.Root_file_specified_for_compilation); case 1: case 2: const isOutput = reason.kind === 2; const referencedResolvedRef = Debug.checkDefined((_b = program.getResolvedProjectReferences()) == null ? undefined : _b[reason.index]); return chainDiagnosticMessages(undefined, options.outFile ? isOutput ? Diagnostics.Output_from_referenced_project_0_included_because_1_specified : Diagnostics.Source_from_referenced_project_0_included_because_1_specified : isOutput ? Diagnostics.Output_from_referenced_project_0_included_because_module_is_specified_as_none : Diagnostics.Source_from_referenced_project_0_included_because_module_is_specified_as_none, toFileName(referencedResolvedRef.sourceFile.fileName, fileNameConvertor), options.outFile ? "--outFile" : "--out"); case 8: { const messageAndArgs = !usesWildcardTypes(options) ? reason.packageId ? [Diagnostics.Entry_point_of_type_library_0_specified_in_compilerOptions_with_packageId_1, reason.typeReference, packageIdToString(reason.packageId)] : [Diagnostics.Entry_point_of_type_library_0_specified_in_compilerOptions, reason.typeReference] : reason.packageId ? [Diagnostics.Entry_point_for_implicit_type_library_0_with_packageId_1, reason.typeReference, packageIdToString(reason.packageId)] : [Diagnostics.Entry_point_for_implicit_type_library_0, reason.typeReference]; return chainDiagnosticMessages(undefined, ...messageAndArgs); } case 6: { if (reason.index !== undefined) return chainDiagnosticMessages(undefined, Diagnostics.Library_0_specified_in_compilerOptions, options.lib[reason.index]); const target = getNameOfScriptTarget(getEmitScriptTarget(options)); const messageAndArgs = target ? [Diagnostics.Default_library_for_target_0, target] : [Diagnostics.Default_library]; return chainDiagnosticMessages(undefined, ...messageAndArgs); } default: Debug.assertNever(reason); } } function toFileName(file, fileNameConvertor) { const fileName = isString(file) ? file : file.fileName; return fileNameConvertor ? fileNameConvertor(fileName) : fileName; } function emitFilesAndReportErrors(program, reportDiagnostic, write, reportSummary, writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers) { const options = program.getCompilerOptions(); const allDiagnostics = program.getConfigFileParsingDiagnostics().slice(); const configFileParsingDiagnosticsLength = allDiagnostics.length; addRange(allDiagnostics, program.getSyntacticDiagnostics(undefined, cancellationToken)); if (allDiagnostics.length === configFileParsingDiagnosticsLength) { addRange(allDiagnostics, program.getOptionsDiagnostics(cancellationToken)); if (!options.listFilesOnly) { addRange(allDiagnostics, program.getGlobalDiagnostics(cancellationToken)); if (allDiagnostics.length === configFileParsingDiagnosticsLength) { addRange(allDiagnostics, program.getSemanticDiagnostics(undefined, cancellationToken)); } if (options.noEmit && getEmitDeclarations(options) && allDiagnostics.length === configFileParsingDiagnosticsLength) { addRange(allDiagnostics, program.getDeclarationDiagnostics(undefined, cancellationToken)); } } } const emitResult = options.listFilesOnly ? { emitSkipped: true, diagnostics: emptyArray } : program.emit(undefined, writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers); addRange(allDiagnostics, emitResult.diagnostics); const diagnostics = sortAndDeduplicateDiagnostics(allDiagnostics); diagnostics.forEach(reportDiagnostic); if (write) { const currentDir = program.getCurrentDirectory(); forEach(emitResult.emittedFiles, (file) => { const filepath = getNormalizedAbsolutePath(file, currentDir); write(`TSFILE: ${filepath}`); }); listFiles(program, write); } if (reportSummary) { reportSummary(getErrorCountForSummary(diagnostics), getFilesInErrorForSummary(diagnostics)); } return { emitResult, diagnostics }; } function emitFilesAndReportErrorsAndGetExitStatus(program, reportDiagnostic, write, reportSummary, writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers) { const { emitResult, diagnostics } = emitFilesAndReportErrors(program, reportDiagnostic, write, reportSummary, writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers); if (emitResult.emitSkipped && diagnostics.length > 0) { return 1; } else if (diagnostics.length > 0) { return 2; } return 0; } var noopFileWatcher = { close: noop }; var returnNoopFileWatcher = () => noopFileWatcher; function createWatchHost(system = sys, reportWatchStatus2) { const onWatchStatusChange = reportWatchStatus2 || createWatchStatusReporter(system); return { onWatchStatusChange, watchFile: maybeBind(system, system.watchFile) || returnNoopFileWatcher, watchDirectory: maybeBind(system, system.watchDirectory) || returnNoopFileWatcher, setTimeout: maybeBind(system, system.setTimeout) || noop, clearTimeout: maybeBind(system, system.clearTimeout) || noop, preferNonRecursiveWatch: system.preferNonRecursiveWatch }; } var WatchType = { ConfigFile: "Config file", ExtendedConfigFile: "Extended config file", SourceFile: "Source file", MissingFile: "Missing file", WildcardDirectory: "Wild card directory", FailedLookupLocations: "Failed Lookup Locations", AffectingFileLocation: "File location affecting resolution", TypeRoots: "Type roots", ConfigFileOfReferencedProject: "Config file of referened project", ExtendedConfigOfReferencedProject: "Extended config file of referenced project", WildcardDirectoryOfReferencedProject: "Wild card directory of referenced project", PackageJson: "package.json file", ClosedScriptInfo: "Closed Script info", ConfigFileForInferredRoot: "Config file for the inferred project root", NodeModules: "node_modules for closed script infos and package.jsons affecting module specifier cache", MissingSourceMapFile: "Missing source map file", NoopConfigFileForInferredRoot: "Noop Config file for the inferred project root", MissingGeneratedFile: "Missing generated file", NodeModulesForModuleSpecifierCache: "node_modules for module specifier cache invalidation", TypingInstallerLocationFile: "File location for typing installer", TypingInstallerLocationDirectory: "Directory location for typing installer" }; function createWatchFactory(host, options) { const watchLogLevel = host.trace ? options.extendedDiagnostics ? 2 : options.diagnostics ? 1 : 0 : 0; const writeLog = watchLogLevel !== 0 ? (s) => host.trace(s) : noop; const result = getWatchFactory(host, watchLogLevel, writeLog); result.writeLog = writeLog; return result; } function createCompilerHostFromProgramHost(host, getCompilerOptions, directoryStructureHost = host) { const useCaseSensitiveFileNames2 = host.useCaseSensitiveFileNames(); const compilerHost = { getSourceFile: createGetSourceFile((fileName, encoding) => !encoding ? compilerHost.readFile(fileName) : host.readFile(fileName, encoding), undefined), getDefaultLibLocation: maybeBind(host, host.getDefaultLibLocation), getDefaultLibFileName: (options) => host.getDefaultLibFileName(options), writeFile: createWriteFileMeasuringIO((path, data, writeByteOrderMark) => host.writeFile(path, data, writeByteOrderMark), (path) => host.createDirectory(path), (path) => host.directoryExists(path)), getCurrentDirectory: memoize(() => host.getCurrentDirectory()), useCaseSensitiveFileNames: () => useCaseSensitiveFileNames2, getCanonicalFileName: createGetCanonicalFileName(useCaseSensitiveFileNames2), getNewLine: () => getNewLineCharacter(getCompilerOptions()), fileExists: (f) => host.fileExists(f), readFile: (f) => host.readFile(f), trace: maybeBind(host, host.trace), directoryExists: maybeBind(directoryStructureHost, directoryStructureHost.directoryExists), getDirectories: maybeBind(directoryStructureHost, directoryStructureHost.getDirectories), realpath: maybeBind(host, host.realpath), getEnvironmentVariable: maybeBind(host, host.getEnvironmentVariable) || (() => ""), createHash: maybeBind(host, host.createHash), readDirectory: maybeBind(host, host.readDirectory), storeSignatureInfo: host.storeSignatureInfo, jsDocParsingMode: host.jsDocParsingMode }; return compilerHost; } function getSourceFileVersionAsHashFromText(host, text) { if (text.match(sourceMapCommentRegExpDontCareLineStart)) { let lineEnd = text.length; let lineStart = lineEnd; for (let pos = lineEnd - 1;pos >= 0; pos--) { const ch = text.charCodeAt(pos); switch (ch) { case 10: if (pos && text.charCodeAt(pos - 1) === 13) { pos--; } case 13: break; default: if (ch < 127 || !isLineBreak(ch)) { lineStart = pos; continue; } break; } const line = text.substring(lineStart, lineEnd); if (line.match(sourceMapCommentRegExp)) { text = text.substring(0, lineStart); break; } else if (!line.match(whitespaceOrMapCommentRegExp)) { break; } lineEnd = lineStart; } } return (host.createHash || generateDjb2Hash)(text); } function setGetSourceFileAsHashVersioned(compilerHost) { const originalGetSourceFile = compilerHost.getSourceFile; compilerHost.getSourceFile = (...args) => { const result = originalGetSourceFile.call(compilerHost, ...args); if (result) { result.version = getSourceFileVersionAsHashFromText(compilerHost, result.text); } return result; }; } function createProgramHost(system, createProgram2) { const getDefaultLibLocation = memoize(() => getDirectoryPath(normalizePath(system.getExecutingFilePath()))); return { useCaseSensitiveFileNames: () => system.useCaseSensitiveFileNames, getNewLine: () => system.newLine, getCurrentDirectory: memoize(() => system.getCurrentDirectory()), getDefaultLibLocation, getDefaultLibFileName: (options) => combinePaths(getDefaultLibLocation(), getDefaultLibFileName(options)), fileExists: (path) => system.fileExists(path), readFile: (path, encoding) => system.readFile(path, encoding), directoryExists: (path) => system.directoryExists(path), getDirectories: (path) => system.getDirectories(path), readDirectory: (path, extensions, exclude, include, depth) => system.readDirectory(path, extensions, exclude, include, depth), realpath: maybeBind(system, system.realpath), getEnvironmentVariable: maybeBind(system, system.getEnvironmentVariable), trace: (s) => system.write(s + system.newLine), createDirectory: (path) => system.createDirectory(path), writeFile: (path, data, writeByteOrderMark) => system.writeFile(path, data, writeByteOrderMark), createHash: maybeBind(system, system.createHash), createProgram: createProgram2 || createEmitAndSemanticDiagnosticsBuilderProgram, storeSignatureInfo: system.storeSignatureInfo, now: maybeBind(system, system.now) }; } function createWatchCompilerHost(system = sys, createProgram2, reportDiagnostic, reportWatchStatus2) { const write = (s) => system.write(s + system.newLine); const result = createProgramHost(system, createProgram2); copyProperties(result, createWatchHost(system, reportWatchStatus2)); result.afterProgramCreate = (builderProgram) => { const compilerOptions = builderProgram.getCompilerOptions(); const newLine = getNewLineCharacter(compilerOptions); emitFilesAndReportErrors(builderProgram, reportDiagnostic, write, (errorCount) => result.onWatchStatusChange(createCompilerDiagnostic(getWatchErrorSummaryDiagnosticMessage(errorCount), errorCount), newLine, compilerOptions, errorCount)); }; return result; } function reportUnrecoverableDiagnostic(system, reportDiagnostic, diagnostic) { reportDiagnostic(diagnostic); system.exit(1); } function createWatchCompilerHostOfConfigFile({ configFileName, optionsToExtend, watchOptionsToExtend, extraFileExtensions, system, createProgram: createProgram2, reportDiagnostic, reportWatchStatus: reportWatchStatus2 }) { const diagnosticReporter = reportDiagnostic || createDiagnosticReporter(system); const host = createWatchCompilerHost(system, createProgram2, diagnosticReporter, reportWatchStatus2); host.onUnRecoverableConfigFileDiagnostic = (diagnostic) => reportUnrecoverableDiagnostic(system, diagnosticReporter, diagnostic); host.configFileName = configFileName; host.optionsToExtend = optionsToExtend; host.watchOptionsToExtend = watchOptionsToExtend; host.extraFileExtensions = extraFileExtensions; return host; } function createWatchCompilerHostOfFilesAndCompilerOptions({ rootFiles, options, watchOptions, projectReferences, system, createProgram: createProgram2, reportDiagnostic, reportWatchStatus: reportWatchStatus2 }) { const host = createWatchCompilerHost(system, createProgram2, reportDiagnostic || createDiagnosticReporter(system), reportWatchStatus2); host.rootFiles = rootFiles; host.options = options; host.watchOptions = watchOptions; host.projectReferences = projectReferences; return host; } function performIncrementalCompilation(input) { const system = input.system || sys; const host = input.host || (input.host = createIncrementalCompilerHost(input.options, system)); const builderProgram = createIncrementalProgram(input); const exitStatus = emitFilesAndReportErrorsAndGetExitStatus(builderProgram, input.reportDiagnostic || createDiagnosticReporter(system), (s) => host.trace && host.trace(s), input.reportErrorSummary || input.options.pretty ? (errorCount, filesInError) => system.write(getErrorSummaryText(errorCount, filesInError, system.newLine, host)) : undefined); if (input.afterProgramEmitAndDiagnostics) input.afterProgramEmitAndDiagnostics(builderProgram); return exitStatus; } function readBuilderProgram(compilerOptions, host) { const buildInfoPath = getTsBuildInfoEmitOutputFilePath(compilerOptions); if (!buildInfoPath) return; let buildInfo; if (host.getBuildInfo) { buildInfo = host.getBuildInfo(buildInfoPath, compilerOptions.configFilePath); } else { const content = host.readFile(buildInfoPath); if (!content) return; buildInfo = getBuildInfo(buildInfoPath, content); } if (!buildInfo || buildInfo.version !== version || !isIncrementalBuildInfo(buildInfo)) return; return createBuilderProgramUsingIncrementalBuildInfo(buildInfo, buildInfoPath, host); } function createIncrementalCompilerHost(options, system = sys) { const host = createCompilerHostWorker(options, undefined, system); host.createHash = maybeBind(system, system.createHash); host.storeSignatureInfo = system.storeSignatureInfo; setGetSourceFileAsHashVersioned(host); changeCompilerHostLikeToUseCache(host, (fileName) => toPath(fileName, host.getCurrentDirectory(), host.getCanonicalFileName)); return host; } function createIncrementalProgram({ rootNames, options, configFileParsingDiagnostics, projectReferences, host, createProgram: createProgram2 }) { host = host || createIncrementalCompilerHost(options); createProgram2 = createProgram2 || createEmitAndSemanticDiagnosticsBuilderProgram; const oldProgram = readBuilderProgram(options, host); return createProgram2(rootNames, options, host, oldProgram, configFileParsingDiagnostics, projectReferences); } function createWatchCompilerHost2(rootFilesOrConfigFileName, options, system, createProgram2, reportDiagnostic, reportWatchStatus2, projectReferencesOrWatchOptionsToExtend, watchOptionsOrExtraFileExtensions) { if (isArray(rootFilesOrConfigFileName)) { return createWatchCompilerHostOfFilesAndCompilerOptions({ rootFiles: rootFilesOrConfigFileName, options, watchOptions: watchOptionsOrExtraFileExtensions, projectReferences: projectReferencesOrWatchOptionsToExtend, system, createProgram: createProgram2, reportDiagnostic, reportWatchStatus: reportWatchStatus2 }); } else { return createWatchCompilerHostOfConfigFile({ configFileName: rootFilesOrConfigFileName, optionsToExtend: options, watchOptionsToExtend: projectReferencesOrWatchOptionsToExtend, extraFileExtensions: watchOptionsOrExtraFileExtensions, system, createProgram: createProgram2, reportDiagnostic, reportWatchStatus: reportWatchStatus2 }); } } function createWatchProgram(host) { let builderProgram; let updateLevel; let missingFilesMap; let watchedWildcardDirectories; let staleWatches = /* @__PURE__ */ new Map([[undefined, undefined]]); let timerToUpdateProgram; let timerToInvalidateFailedLookupResolutions; let parsedConfigs; let sharedExtendedConfigFileWatchers; let extendedConfigCache = host.extendedConfigCache; let reportFileChangeDetectedOnCreateProgram = false; const sourceFilesCache = /* @__PURE__ */ new Map; let missingFilePathsRequestedForRelease; let hasChangedCompilerOptions = false; const useCaseSensitiveFileNames2 = host.useCaseSensitiveFileNames(); const currentDirectory = host.getCurrentDirectory(); const { configFileName, optionsToExtend: optionsToExtendForConfigFile = {}, watchOptionsToExtend, extraFileExtensions, createProgram: createProgram2 } = host; let { rootFiles: rootFileNames, options: compilerOptions, watchOptions, projectReferences } = host; let wildcardDirectories; let configFileParsingDiagnostics; let canConfigFileJsonReportNoInputFiles = false; let hasChangedConfigFileParsingErrors = false; const cachedDirectoryStructureHost = configFileName === undefined ? undefined : createCachedDirectoryStructureHost(host, currentDirectory, useCaseSensitiveFileNames2); const directoryStructureHost = cachedDirectoryStructureHost || host; const parseConfigFileHost = parseConfigHostFromCompilerHostLike(host, directoryStructureHost); let newLine = updateNewLine(); if (configFileName && host.configFileParsingResult) { setConfigFileParsingResult(host.configFileParsingResult); newLine = updateNewLine(); } reportWatchDiagnostic(Diagnostics.Starting_compilation_in_watch_mode); if (configFileName && !host.configFileParsingResult) { newLine = getNewLineCharacter(optionsToExtendForConfigFile); Debug.assert(!rootFileNames); parseConfigFile2(); newLine = updateNewLine(); } Debug.assert(compilerOptions); Debug.assert(rootFileNames); const { watchFile: watchFile2, watchDirectory, writeLog } = createWatchFactory(host, compilerOptions); const getCanonicalFileName = createGetCanonicalFileName(useCaseSensitiveFileNames2); writeLog(`Current directory: ${currentDirectory} CaseSensitiveFileNames: ${useCaseSensitiveFileNames2}`); let configFileWatcher; if (configFileName) { configFileWatcher = watchFile2(configFileName, scheduleProgramReload, 2000, watchOptions, WatchType.ConfigFile); } const compilerHost = createCompilerHostFromProgramHost(host, () => compilerOptions, directoryStructureHost); setGetSourceFileAsHashVersioned(compilerHost); const getNewSourceFile = compilerHost.getSourceFile; compilerHost.getSourceFile = (fileName, ...args) => getVersionedSourceFileByPath(fileName, toPath3(fileName), ...args); compilerHost.getSourceFileByPath = getVersionedSourceFileByPath; compilerHost.getNewLine = () => newLine; compilerHost.fileExists = fileExists; compilerHost.onReleaseOldSourceFile = onReleaseOldSourceFile; compilerHost.onReleaseParsedCommandLine = onReleaseParsedCommandLine; compilerHost.toPath = toPath3; compilerHost.getCompilationSettings = () => compilerOptions; compilerHost.useSourceOfProjectReferenceRedirect = maybeBind(host, host.useSourceOfProjectReferenceRedirect); compilerHost.preferNonRecursiveWatch = host.preferNonRecursiveWatch; compilerHost.watchDirectoryOfFailedLookupLocation = (dir, cb, flags) => watchDirectory(dir, cb, flags, watchOptions, WatchType.FailedLookupLocations); compilerHost.watchAffectingFileLocation = (file, cb) => watchFile2(file, cb, 2000, watchOptions, WatchType.AffectingFileLocation); compilerHost.watchTypeRootsDirectory = (dir, cb, flags) => watchDirectory(dir, cb, flags, watchOptions, WatchType.TypeRoots); compilerHost.getCachedDirectoryStructureHost = () => cachedDirectoryStructureHost; compilerHost.scheduleInvalidateResolutionsOfFailedLookupLocations = scheduleInvalidateResolutionsOfFailedLookupLocations; compilerHost.onInvalidatedResolution = scheduleProgramUpdate; compilerHost.onChangedAutomaticTypeDirectiveNames = scheduleProgramUpdate; compilerHost.fileIsOpen = returnFalse; compilerHost.getCurrentProgram = getCurrentProgram; compilerHost.writeLog = writeLog; compilerHost.getParsedCommandLine = getParsedCommandLine; const resolutionCache = createResolutionCache(compilerHost, configFileName ? getDirectoryPath(getNormalizedAbsolutePath(configFileName, currentDirectory)) : currentDirectory, false); compilerHost.resolveModuleNameLiterals = maybeBind(host, host.resolveModuleNameLiterals); compilerHost.resolveModuleNames = maybeBind(host, host.resolveModuleNames); if (!compilerHost.resolveModuleNameLiterals && !compilerHost.resolveModuleNames) { compilerHost.resolveModuleNameLiterals = resolutionCache.resolveModuleNameLiterals.bind(resolutionCache); } compilerHost.resolveTypeReferenceDirectiveReferences = maybeBind(host, host.resolveTypeReferenceDirectiveReferences); compilerHost.resolveTypeReferenceDirectives = maybeBind(host, host.resolveTypeReferenceDirectives); if (!compilerHost.resolveTypeReferenceDirectiveReferences && !compilerHost.resolveTypeReferenceDirectives) { compilerHost.resolveTypeReferenceDirectiveReferences = resolutionCache.resolveTypeReferenceDirectiveReferences.bind(resolutionCache); } compilerHost.resolveLibrary = !host.resolveLibrary ? resolutionCache.resolveLibrary.bind(resolutionCache) : host.resolveLibrary.bind(host); compilerHost.getModuleResolutionCache = host.resolveModuleNameLiterals || host.resolveModuleNames ? maybeBind(host, host.getModuleResolutionCache) : () => resolutionCache.getModuleResolutionCache(); const userProvidedResolution = !!host.resolveModuleNameLiterals || !!host.resolveTypeReferenceDirectiveReferences || !!host.resolveModuleNames || !!host.resolveTypeReferenceDirectives; const customHasInvalidatedResolutions = userProvidedResolution ? maybeBind(host, host.hasInvalidatedResolutions) || returnTrue : returnFalse; const customHasInvalidLibResolutions = host.resolveLibrary ? maybeBind(host, host.hasInvalidatedLibResolutions) || returnTrue : returnFalse; builderProgram = readBuilderProgram(compilerOptions, compilerHost); synchronizeProgram(); return configFileName ? { getCurrentProgram: getCurrentBuilderProgram, getProgram: updateProgram, close, getResolutionCache } : { getCurrentProgram: getCurrentBuilderProgram, getProgram: updateProgram, updateRootFileNames, close, getResolutionCache }; function close() { clearInvalidateResolutionsOfFailedLookupLocations(); resolutionCache.clear(); clearMap(sourceFilesCache, (value) => { if (value && value.fileWatcher) { value.fileWatcher.close(); value.fileWatcher = undefined; } }); if (configFileWatcher) { configFileWatcher.close(); configFileWatcher = undefined; } extendedConfigCache == null || extendedConfigCache.clear(); extendedConfigCache = undefined; if (sharedExtendedConfigFileWatchers) { clearMap(sharedExtendedConfigFileWatchers, closeFileWatcherOf); sharedExtendedConfigFileWatchers = undefined; } if (watchedWildcardDirectories) { clearMap(watchedWildcardDirectories, closeFileWatcherOf); watchedWildcardDirectories = undefined; } if (missingFilesMap) { clearMap(missingFilesMap, closeFileWatcher); missingFilesMap = undefined; } if (parsedConfigs) { clearMap(parsedConfigs, (config) => { var _a; (_a = config.watcher) == null || _a.close(); config.watcher = undefined; if (config.watchedDirectories) clearMap(config.watchedDirectories, closeFileWatcherOf); config.watchedDirectories = undefined; }); parsedConfigs = undefined; } builderProgram = undefined; } function getResolutionCache() { return resolutionCache; } function getCurrentBuilderProgram() { return builderProgram; } function getCurrentProgram() { return builderProgram && builderProgram.getProgramOrUndefined(); } function synchronizeProgram() { writeLog(`Synchronizing program`); Debug.assert(compilerOptions); Debug.assert(rootFileNames); clearInvalidateResolutionsOfFailedLookupLocations(); const program = getCurrentBuilderProgram(); if (hasChangedCompilerOptions) { newLine = updateNewLine(); if (program && changesAffectModuleResolution(program.getCompilerOptions(), compilerOptions)) { resolutionCache.onChangesAffectModuleResolution(); } } const { hasInvalidatedResolutions, hasInvalidatedLibResolutions } = resolutionCache.createHasInvalidatedResolutions(customHasInvalidatedResolutions, customHasInvalidLibResolutions); const { originalReadFile, originalFileExists, originalDirectoryExists, originalCreateDirectory, originalWriteFile, readFileWithCache } = changeCompilerHostLikeToUseCache(compilerHost, toPath3); if (isProgramUptoDate(getCurrentProgram(), rootFileNames, compilerOptions, (path) => getSourceVersion(path, readFileWithCache), (fileName) => compilerHost.fileExists(fileName), hasInvalidatedResolutions, hasInvalidatedLibResolutions, hasChangedAutomaticTypeDirectiveNames, getParsedCommandLine, projectReferences)) { if (hasChangedConfigFileParsingErrors) { if (reportFileChangeDetectedOnCreateProgram) { reportWatchDiagnostic(Diagnostics.File_change_detected_Starting_incremental_compilation); } builderProgram = createProgram2(undefined, undefined, compilerHost, builderProgram, configFileParsingDiagnostics, projectReferences); hasChangedConfigFileParsingErrors = false; } } else { if (reportFileChangeDetectedOnCreateProgram) { reportWatchDiagnostic(Diagnostics.File_change_detected_Starting_incremental_compilation); } createNewProgram(hasInvalidatedResolutions, hasInvalidatedLibResolutions); } reportFileChangeDetectedOnCreateProgram = false; if (host.afterProgramCreate && program !== builderProgram) { host.afterProgramCreate(builderProgram); } compilerHost.readFile = originalReadFile; compilerHost.fileExists = originalFileExists; compilerHost.directoryExists = originalDirectoryExists; compilerHost.createDirectory = originalCreateDirectory; compilerHost.writeFile = originalWriteFile; staleWatches == null || staleWatches.forEach((configFile, configPath) => { if (!configPath) { watchConfigFileWildCardDirectories(); if (configFileName) updateExtendedConfigFilesWatches(toPath3(configFileName), compilerOptions, watchOptions, WatchType.ExtendedConfigFile); } else { const config = parsedConfigs == null ? undefined : parsedConfigs.get(configPath); if (config) watchReferencedProject(configFile, configPath, config); } }); staleWatches = undefined; return builderProgram; } function createNewProgram(hasInvalidatedResolutions, hasInvalidatedLibResolutions) { writeLog("CreatingProgramWith::"); writeLog(` roots: ${JSON.stringify(rootFileNames)}`); writeLog(` options: ${JSON.stringify(compilerOptions)}`); if (projectReferences) writeLog(` projectReferences: ${JSON.stringify(projectReferences)}`); const needsUpdateInTypeRootWatch = hasChangedCompilerOptions || !getCurrentProgram(); hasChangedCompilerOptions = false; hasChangedConfigFileParsingErrors = false; resolutionCache.startCachingPerDirectoryResolution(); compilerHost.hasInvalidatedResolutions = hasInvalidatedResolutions; compilerHost.hasInvalidatedLibResolutions = hasInvalidatedLibResolutions; compilerHost.hasChangedAutomaticTypeDirectiveNames = hasChangedAutomaticTypeDirectiveNames; const oldProgram = getCurrentProgram(); builderProgram = createProgram2(rootFileNames, compilerOptions, compilerHost, builderProgram, configFileParsingDiagnostics, projectReferences); resolutionCache.finishCachingPerDirectoryResolution(builderProgram.getProgram(), oldProgram); updateMissingFilePathsWatch(builderProgram.getProgram(), missingFilesMap || (missingFilesMap = /* @__PURE__ */ new Map), watchMissingFilePath); if (needsUpdateInTypeRootWatch) { resolutionCache.updateTypeRootsWatch(); } if (missingFilePathsRequestedForRelease) { for (const missingFilePath of missingFilePathsRequestedForRelease) { if (!missingFilesMap.has(missingFilePath)) { sourceFilesCache.delete(missingFilePath); } } missingFilePathsRequestedForRelease = undefined; } } function updateRootFileNames(files) { Debug.assert(!configFileName, "Cannot update root file names with config file watch mode"); rootFileNames = files; scheduleProgramUpdate(); } function updateNewLine() { return getNewLineCharacter(compilerOptions || optionsToExtendForConfigFile); } function toPath3(fileName) { return toPath(fileName, currentDirectory, getCanonicalFileName); } function isFileMissingOnHost(hostSourceFile) { return typeof hostSourceFile === "boolean"; } function isFilePresenceUnknownOnHost(hostSourceFile) { return typeof hostSourceFile.version === "boolean"; } function fileExists(fileName) { const path = toPath3(fileName); if (isFileMissingOnHost(sourceFilesCache.get(path))) { return false; } return directoryStructureHost.fileExists(fileName); } function getVersionedSourceFileByPath(fileName, path, languageVersionOrOptions, onError, shouldCreateNewSourceFile) { const hostSourceFile = sourceFilesCache.get(path); if (isFileMissingOnHost(hostSourceFile)) { return; } const impliedNodeFormat = typeof languageVersionOrOptions === "object" ? languageVersionOrOptions.impliedNodeFormat : undefined; if (hostSourceFile === undefined || shouldCreateNewSourceFile || isFilePresenceUnknownOnHost(hostSourceFile) || hostSourceFile.sourceFile.impliedNodeFormat !== impliedNodeFormat) { const sourceFile = getNewSourceFile(fileName, languageVersionOrOptions, onError); if (hostSourceFile) { if (sourceFile) { hostSourceFile.sourceFile = sourceFile; hostSourceFile.version = sourceFile.version; if (!hostSourceFile.fileWatcher) { hostSourceFile.fileWatcher = watchFilePath(path, fileName, onSourceFileChange, 250, watchOptions, WatchType.SourceFile); } } else { if (hostSourceFile.fileWatcher) { hostSourceFile.fileWatcher.close(); } sourceFilesCache.set(path, false); } } else { if (sourceFile) { const fileWatcher = watchFilePath(path, fileName, onSourceFileChange, 250, watchOptions, WatchType.SourceFile); sourceFilesCache.set(path, { sourceFile, version: sourceFile.version, fileWatcher }); } else { sourceFilesCache.set(path, false); } } return sourceFile; } return hostSourceFile.sourceFile; } function nextSourceFileVersion(path) { const hostSourceFile = sourceFilesCache.get(path); if (hostSourceFile !== undefined) { if (isFileMissingOnHost(hostSourceFile)) { sourceFilesCache.set(path, { version: false }); } else { hostSourceFile.version = false; } } } function getSourceVersion(path, readFileWithCache) { const hostSourceFile = sourceFilesCache.get(path); if (!hostSourceFile) return; if (hostSourceFile.version) return hostSourceFile.version; const text = readFileWithCache(path); return text !== undefined ? getSourceFileVersionAsHashFromText(compilerHost, text) : undefined; } function onReleaseOldSourceFile(oldSourceFile, _oldOptions, hasSourceFileByPath) { const hostSourceFileInfo = sourceFilesCache.get(oldSourceFile.resolvedPath); if (hostSourceFileInfo !== undefined) { if (isFileMissingOnHost(hostSourceFileInfo)) { (missingFilePathsRequestedForRelease || (missingFilePathsRequestedForRelease = [])).push(oldSourceFile.path); } else if (hostSourceFileInfo.sourceFile === oldSourceFile) { if (hostSourceFileInfo.fileWatcher) { hostSourceFileInfo.fileWatcher.close(); } sourceFilesCache.delete(oldSourceFile.resolvedPath); if (!hasSourceFileByPath) { resolutionCache.removeResolutionsOfFile(oldSourceFile.path); } } } } function reportWatchDiagnostic(message) { if (host.onWatchStatusChange) { host.onWatchStatusChange(createCompilerDiagnostic(message), newLine, compilerOptions || optionsToExtendForConfigFile); } } function hasChangedAutomaticTypeDirectiveNames() { return resolutionCache.hasChangedAutomaticTypeDirectiveNames(); } function clearInvalidateResolutionsOfFailedLookupLocations() { if (!timerToInvalidateFailedLookupResolutions) return false; host.clearTimeout(timerToInvalidateFailedLookupResolutions); timerToInvalidateFailedLookupResolutions = undefined; return true; } function scheduleInvalidateResolutionsOfFailedLookupLocations() { if (!host.setTimeout || !host.clearTimeout) { return resolutionCache.invalidateResolutionsOfFailedLookupLocations(); } const pending = clearInvalidateResolutionsOfFailedLookupLocations(); writeLog(`Scheduling invalidateFailedLookup${pending ? ", Cancelled earlier one" : ""}`); timerToInvalidateFailedLookupResolutions = host.setTimeout(invalidateResolutionsOfFailedLookup, 250, "timerToInvalidateFailedLookupResolutions"); } function invalidateResolutionsOfFailedLookup() { timerToInvalidateFailedLookupResolutions = undefined; if (resolutionCache.invalidateResolutionsOfFailedLookupLocations()) { scheduleProgramUpdate(); } } function scheduleProgramUpdate() { if (!host.setTimeout || !host.clearTimeout) { return; } if (timerToUpdateProgram) { host.clearTimeout(timerToUpdateProgram); } writeLog("Scheduling update"); timerToUpdateProgram = host.setTimeout(updateProgramWithWatchStatus, 250, "timerToUpdateProgram"); } function scheduleProgramReload() { Debug.assert(!!configFileName); updateLevel = 2; scheduleProgramUpdate(); } function updateProgramWithWatchStatus() { timerToUpdateProgram = undefined; reportFileChangeDetectedOnCreateProgram = true; updateProgram(); } function updateProgram() { switch (updateLevel) { case 1: reloadFileNamesFromConfigFile(); break; case 2: reloadConfigFile(); break; default: synchronizeProgram(); break; } return getCurrentBuilderProgram(); } function reloadFileNamesFromConfigFile() { writeLog("Reloading new file names and options"); Debug.assert(compilerOptions); Debug.assert(configFileName); updateLevel = 0; rootFileNames = getFileNamesFromConfigSpecs(compilerOptions.configFile.configFileSpecs, getNormalizedAbsolutePath(getDirectoryPath(configFileName), currentDirectory), compilerOptions, parseConfigFileHost, extraFileExtensions); if (updateErrorForNoInputFiles(rootFileNames, getNormalizedAbsolutePath(configFileName, currentDirectory), compilerOptions.configFile.configFileSpecs, configFileParsingDiagnostics, canConfigFileJsonReportNoInputFiles)) { hasChangedConfigFileParsingErrors = true; } synchronizeProgram(); } function reloadConfigFile() { Debug.assert(configFileName); writeLog(`Reloading config file: ${configFileName}`); updateLevel = 0; if (cachedDirectoryStructureHost) { cachedDirectoryStructureHost.clearCache(); } parseConfigFile2(); hasChangedCompilerOptions = true; (staleWatches ?? (staleWatches = /* @__PURE__ */ new Map)).set(undefined, undefined); synchronizeProgram(); } function parseConfigFile2() { Debug.assert(configFileName); setConfigFileParsingResult(getParsedCommandLineOfConfigFile(configFileName, optionsToExtendForConfigFile, parseConfigFileHost, extendedConfigCache || (extendedConfigCache = /* @__PURE__ */ new Map), watchOptionsToExtend, extraFileExtensions)); } function setConfigFileParsingResult(configFileParseResult) { rootFileNames = configFileParseResult.fileNames; compilerOptions = configFileParseResult.options; watchOptions = configFileParseResult.watchOptions; projectReferences = configFileParseResult.projectReferences; wildcardDirectories = configFileParseResult.wildcardDirectories; configFileParsingDiagnostics = getConfigFileParsingDiagnostics(configFileParseResult).slice(); canConfigFileJsonReportNoInputFiles = canJsonReportNoInputFiles(configFileParseResult.raw); hasChangedConfigFileParsingErrors = true; } function getParsedCommandLine(configFileName2) { const configPath = toPath3(configFileName2); let config = parsedConfigs == null ? undefined : parsedConfigs.get(configPath); if (config) { if (!config.updateLevel) return config.parsedCommandLine; if (config.parsedCommandLine && config.updateLevel === 1 && !host.getParsedCommandLine) { writeLog("Reloading new file names and options"); Debug.assert(compilerOptions); const fileNames = getFileNamesFromConfigSpecs(config.parsedCommandLine.options.configFile.configFileSpecs, getNormalizedAbsolutePath(getDirectoryPath(configFileName2), currentDirectory), compilerOptions, parseConfigFileHost); config.parsedCommandLine = { ...config.parsedCommandLine, fileNames }; config.updateLevel = undefined; return config.parsedCommandLine; } } writeLog(`Loading config file: ${configFileName2}`); const parsedCommandLine = host.getParsedCommandLine ? host.getParsedCommandLine(configFileName2) : getParsedCommandLineFromConfigFileHost(configFileName2); if (config) { config.parsedCommandLine = parsedCommandLine; config.updateLevel = undefined; } else { (parsedConfigs || (parsedConfigs = /* @__PURE__ */ new Map)).set(configPath, config = { parsedCommandLine }); } (staleWatches ?? (staleWatches = /* @__PURE__ */ new Map)).set(configPath, configFileName2); return parsedCommandLine; } function getParsedCommandLineFromConfigFileHost(configFileName2) { const onUnRecoverableConfigFileDiagnostic = parseConfigFileHost.onUnRecoverableConfigFileDiagnostic; parseConfigFileHost.onUnRecoverableConfigFileDiagnostic = noop; const parsedCommandLine = getParsedCommandLineOfConfigFile(configFileName2, undefined, parseConfigFileHost, extendedConfigCache || (extendedConfigCache = /* @__PURE__ */ new Map), watchOptionsToExtend); parseConfigFileHost.onUnRecoverableConfigFileDiagnostic = onUnRecoverableConfigFileDiagnostic; return parsedCommandLine; } function onReleaseParsedCommandLine(fileName) { var _a; const path = toPath3(fileName); const config = parsedConfigs == null ? undefined : parsedConfigs.get(path); if (!config) return; parsedConfigs.delete(path); if (config.watchedDirectories) clearMap(config.watchedDirectories, closeFileWatcherOf); (_a = config.watcher) == null || _a.close(); clearSharedExtendedConfigFileWatcher(path, sharedExtendedConfigFileWatchers); } function watchFilePath(path, file, callback, pollingInterval, options, watchType) { return watchFile2(file, (fileName, eventKind) => callback(fileName, eventKind, path), pollingInterval, options, watchType); } function onSourceFileChange(fileName, eventKind, path) { updateCachedSystemWithFile(fileName, path, eventKind); if (eventKind === 2 && sourceFilesCache.has(path)) { resolutionCache.invalidateResolutionOfFile(path); } nextSourceFileVersion(path); scheduleProgramUpdate(); } function updateCachedSystemWithFile(fileName, path, eventKind) { if (cachedDirectoryStructureHost) { cachedDirectoryStructureHost.addOrDeleteFile(fileName, path, eventKind); } } function watchMissingFilePath(missingFilePath, missingFileName) { return (parsedConfigs == null ? undefined : parsedConfigs.has(missingFilePath)) ? noopFileWatcher : watchFilePath(missingFilePath, missingFileName, onMissingFileChange, 500, watchOptions, WatchType.MissingFile); } function onMissingFileChange(fileName, eventKind, missingFilePath) { updateCachedSystemWithFile(fileName, missingFilePath, eventKind); if (eventKind === 0 && missingFilesMap.has(missingFilePath)) { missingFilesMap.get(missingFilePath).close(); missingFilesMap.delete(missingFilePath); nextSourceFileVersion(missingFilePath); scheduleProgramUpdate(); } } function watchConfigFileWildCardDirectories() { updateWatchingWildcardDirectories(watchedWildcardDirectories || (watchedWildcardDirectories = /* @__PURE__ */ new Map), wildcardDirectories, watchWildcardDirectory); } function watchWildcardDirectory(directory, flags) { return watchDirectory(directory, (fileOrDirectory) => { Debug.assert(configFileName); Debug.assert(compilerOptions); const fileOrDirectoryPath = toPath3(fileOrDirectory); if (cachedDirectoryStructureHost) { cachedDirectoryStructureHost.addOrDeleteFileOrDirectory(fileOrDirectory, fileOrDirectoryPath); } nextSourceFileVersion(fileOrDirectoryPath); if (isIgnoredFileFromWildCardWatching({ watchedDirPath: toPath3(directory), fileOrDirectory, fileOrDirectoryPath, configFileName, extraFileExtensions, options: compilerOptions, program: getCurrentBuilderProgram() || rootFileNames, currentDirectory, useCaseSensitiveFileNames: useCaseSensitiveFileNames2, writeLog, toPath: toPath3 })) return; if (updateLevel !== 2) { updateLevel = 1; scheduleProgramUpdate(); } }, flags, watchOptions, WatchType.WildcardDirectory); } function updateExtendedConfigFilesWatches(forProjectPath, options, watchOptions2, watchType) { updateSharedExtendedConfigFileWatcher(forProjectPath, options, sharedExtendedConfigFileWatchers || (sharedExtendedConfigFileWatchers = /* @__PURE__ */ new Map), (extendedConfigFileName, extendedConfigFilePath) => watchFile2(extendedConfigFileName, (_fileName, eventKind) => { var _a; updateCachedSystemWithFile(extendedConfigFileName, extendedConfigFilePath, eventKind); if (extendedConfigCache) cleanExtendedConfigCache(extendedConfigCache, extendedConfigFilePath, toPath3); const projects = (_a = sharedExtendedConfigFileWatchers.get(extendedConfigFilePath)) == null ? undefined : _a.projects; if (!(projects == null ? undefined : projects.size)) return; projects.forEach((projectPath) => { if (configFileName && toPath3(configFileName) === projectPath) { updateLevel = 2; } else { const config = parsedConfigs == null ? undefined : parsedConfigs.get(projectPath); if (config) config.updateLevel = 2; resolutionCache.removeResolutionsFromProjectReferenceRedirects(projectPath); } scheduleProgramUpdate(); }); }, 2000, watchOptions2, watchType), toPath3); } function watchReferencedProject(configFileName2, configPath, commandLine) { var _a, _b, _c, _d; commandLine.watcher || (commandLine.watcher = watchFile2(configFileName2, (_fileName, eventKind) => { updateCachedSystemWithFile(configFileName2, configPath, eventKind); const config = parsedConfigs == null ? undefined : parsedConfigs.get(configPath); if (config) config.updateLevel = 2; resolutionCache.removeResolutionsFromProjectReferenceRedirects(configPath); scheduleProgramUpdate(); }, 2000, ((_a = commandLine.parsedCommandLine) == null ? undefined : _a.watchOptions) || watchOptions, WatchType.ConfigFileOfReferencedProject)); updateWatchingWildcardDirectories(commandLine.watchedDirectories || (commandLine.watchedDirectories = /* @__PURE__ */ new Map), (_b = commandLine.parsedCommandLine) == null ? undefined : _b.wildcardDirectories, (directory, flags) => { var _a2; return watchDirectory(directory, (fileOrDirectory) => { const fileOrDirectoryPath = toPath3(fileOrDirectory); if (cachedDirectoryStructureHost) { cachedDirectoryStructureHost.addOrDeleteFileOrDirectory(fileOrDirectory, fileOrDirectoryPath); } nextSourceFileVersion(fileOrDirectoryPath); const config = parsedConfigs == null ? undefined : parsedConfigs.get(configPath); if (!(config == null ? undefined : config.parsedCommandLine)) return; if (isIgnoredFileFromWildCardWatching({ watchedDirPath: toPath3(directory), fileOrDirectory, fileOrDirectoryPath, configFileName: configFileName2, options: config.parsedCommandLine.options, program: config.parsedCommandLine.fileNames, currentDirectory, useCaseSensitiveFileNames: useCaseSensitiveFileNames2, writeLog, toPath: toPath3 })) return; if (config.updateLevel !== 2) { config.updateLevel = 1; scheduleProgramUpdate(); } }, flags, ((_a2 = commandLine.parsedCommandLine) == null ? undefined : _a2.watchOptions) || watchOptions, WatchType.WildcardDirectoryOfReferencedProject); }); updateExtendedConfigFilesWatches(configPath, (_c = commandLine.parsedCommandLine) == null ? undefined : _c.options, ((_d = commandLine.parsedCommandLine) == null ? undefined : _d.watchOptions) || watchOptions, WatchType.ExtendedConfigOfReferencedProject); } } var UpToDateStatusType = /* @__PURE__ */ ((UpToDateStatusType2) => { UpToDateStatusType2[UpToDateStatusType2["Unbuildable"] = 0] = "Unbuildable"; UpToDateStatusType2[UpToDateStatusType2["UpToDate"] = 1] = "UpToDate"; UpToDateStatusType2[UpToDateStatusType2["UpToDateWithUpstreamTypes"] = 2] = "UpToDateWithUpstreamTypes"; UpToDateStatusType2[UpToDateStatusType2["OutputMissing"] = 3] = "OutputMissing"; UpToDateStatusType2[UpToDateStatusType2["ErrorReadingFile"] = 4] = "ErrorReadingFile"; UpToDateStatusType2[UpToDateStatusType2["OutOfDateWithSelf"] = 5] = "OutOfDateWithSelf"; UpToDateStatusType2[UpToDateStatusType2["OutOfDateWithUpstream"] = 6] = "OutOfDateWithUpstream"; UpToDateStatusType2[UpToDateStatusType2["OutOfDateBuildInfoWithPendingEmit"] = 7] = "OutOfDateBuildInfoWithPendingEmit"; UpToDateStatusType2[UpToDateStatusType2["OutOfDateBuildInfoWithErrors"] = 8] = "OutOfDateBuildInfoWithErrors"; UpToDateStatusType2[UpToDateStatusType2["OutOfDateOptions"] = 9] = "OutOfDateOptions"; UpToDateStatusType2[UpToDateStatusType2["OutOfDateRoots"] = 10] = "OutOfDateRoots"; UpToDateStatusType2[UpToDateStatusType2["UpstreamOutOfDate"] = 11] = "UpstreamOutOfDate"; UpToDateStatusType2[UpToDateStatusType2["UpstreamBlocked"] = 12] = "UpstreamBlocked"; UpToDateStatusType2[UpToDateStatusType2["ComputingUpstream"] = 13] = "ComputingUpstream"; UpToDateStatusType2[UpToDateStatusType2["TsVersionOutputOfDate"] = 14] = "TsVersionOutputOfDate"; UpToDateStatusType2[UpToDateStatusType2["UpToDateWithInputFileText"] = 15] = "UpToDateWithInputFileText"; UpToDateStatusType2[UpToDateStatusType2["ContainerOnly"] = 16] = "ContainerOnly"; UpToDateStatusType2[UpToDateStatusType2["ForceBuild"] = 17] = "ForceBuild"; return UpToDateStatusType2; })(UpToDateStatusType || {}); function resolveConfigFileProjectName(project) { if (fileExtensionIs(project, ".json")) { return project; } return combinePaths(project, "tsconfig.json"); } var minimumDate = /* @__PURE__ */ new Date(-8640000000000000); function getOrCreateValueFromConfigFileMap(configFileMap, resolved, createT) { const existingValue = configFileMap.get(resolved); let newValue; if (!existingValue) { newValue = createT(); configFileMap.set(resolved, newValue); } return existingValue || newValue; } function getOrCreateValueMapFromConfigFileMap(configFileMap, resolved) { return getOrCreateValueFromConfigFileMap(configFileMap, resolved, () => /* @__PURE__ */ new Map); } function getCurrentTime(host) { return host.now ? host.now() : /* @__PURE__ */ new Date; } function isCircularBuildOrder(buildOrder) { return !!buildOrder && !!buildOrder.buildOrder; } function getBuildOrderFromAnyBuildOrder(anyBuildOrder) { return isCircularBuildOrder(anyBuildOrder) ? anyBuildOrder.buildOrder : anyBuildOrder; } function createBuilderStatusReporter(system, pretty) { return (diagnostic) => { let output = pretty ? `[${formatColorAndReset(getLocaleTimeString(system), "\x1B[90m")}] ` : `${getLocaleTimeString(system)} - `; output += `${flattenDiagnosticMessageText(diagnostic.messageText, system.newLine)}${system.newLine + system.newLine}`; system.write(output); }; } function createSolutionBuilderHostBase(system, createProgram2, reportDiagnostic, reportSolutionBuilderStatus) { const host = createProgramHost(system, createProgram2); host.getModifiedTime = system.getModifiedTime ? (path) => system.getModifiedTime(path) : returnUndefined; host.setModifiedTime = system.setModifiedTime ? (path, date) => system.setModifiedTime(path, date) : noop; host.deleteFile = system.deleteFile ? (path) => system.deleteFile(path) : noop; host.reportDiagnostic = reportDiagnostic || createDiagnosticReporter(system); host.reportSolutionBuilderStatus = reportSolutionBuilderStatus || createBuilderStatusReporter(system); host.now = maybeBind(system, system.now); return host; } function createSolutionBuilderHost(system = sys, createProgram2, reportDiagnostic, reportSolutionBuilderStatus, reportErrorSummary2) { const host = createSolutionBuilderHostBase(system, createProgram2, reportDiagnostic, reportSolutionBuilderStatus); host.reportErrorSummary = reportErrorSummary2; return host; } function createSolutionBuilderWithWatchHost(system = sys, createProgram2, reportDiagnostic, reportSolutionBuilderStatus, reportWatchStatus2) { const host = createSolutionBuilderHostBase(system, createProgram2, reportDiagnostic, reportSolutionBuilderStatus); const watchHost = createWatchHost(system, reportWatchStatus2); copyProperties(host, watchHost); return host; } function getCompilerOptionsOfBuildOptions(buildOptions) { const result = {}; commonOptionsWithBuild.forEach((option) => { if (hasProperty(buildOptions, option.name)) result[option.name] = buildOptions[option.name]; }); result.tscBuild = true; return result; } function createSolutionBuilder(host, rootNames, defaultOptions) { return createSolutionBuilderWorker(false, host, rootNames, defaultOptions); } function createSolutionBuilderWithWatch(host, rootNames, defaultOptions, baseWatchOptions) { return createSolutionBuilderWorker(true, host, rootNames, defaultOptions, baseWatchOptions); } function createSolutionBuilderState(watch, hostOrHostWithWatch, rootNames, options, baseWatchOptions) { const host = hostOrHostWithWatch; const hostWithWatch = hostOrHostWithWatch; const baseCompilerOptions = getCompilerOptionsOfBuildOptions(options); const compilerHost = createCompilerHostFromProgramHost(host, () => state.projectCompilerOptions); setGetSourceFileAsHashVersioned(compilerHost); compilerHost.getParsedCommandLine = (fileName) => parseConfigFile(state, fileName, toResolvedConfigFilePath(state, fileName)); compilerHost.resolveModuleNameLiterals = maybeBind(host, host.resolveModuleNameLiterals); compilerHost.resolveTypeReferenceDirectiveReferences = maybeBind(host, host.resolveTypeReferenceDirectiveReferences); compilerHost.resolveLibrary = maybeBind(host, host.resolveLibrary); compilerHost.resolveModuleNames = maybeBind(host, host.resolveModuleNames); compilerHost.resolveTypeReferenceDirectives = maybeBind(host, host.resolveTypeReferenceDirectives); compilerHost.getModuleResolutionCache = maybeBind(host, host.getModuleResolutionCache); let moduleResolutionCache, typeReferenceDirectiveResolutionCache; if (!compilerHost.resolveModuleNameLiterals && !compilerHost.resolveModuleNames) { moduleResolutionCache = createModuleResolutionCache(compilerHost.getCurrentDirectory(), compilerHost.getCanonicalFileName); compilerHost.resolveModuleNameLiterals = (moduleNames, containingFile, redirectedReference, options2, containingSourceFile) => loadWithModeAwareCache(moduleNames, containingFile, redirectedReference, options2, containingSourceFile, host, moduleResolutionCache, createModuleResolutionLoader); compilerHost.getModuleResolutionCache = () => moduleResolutionCache; } if (!compilerHost.resolveTypeReferenceDirectiveReferences && !compilerHost.resolveTypeReferenceDirectives) { typeReferenceDirectiveResolutionCache = createTypeReferenceDirectiveResolutionCache(compilerHost.getCurrentDirectory(), compilerHost.getCanonicalFileName, undefined, moduleResolutionCache == null ? undefined : moduleResolutionCache.getPackageJsonInfoCache(), moduleResolutionCache == null ? undefined : moduleResolutionCache.optionsToRedirectsKey); compilerHost.resolveTypeReferenceDirectiveReferences = (typeDirectiveNames, containingFile, redirectedReference, options2, containingSourceFile) => loadWithModeAwareCache(typeDirectiveNames, containingFile, redirectedReference, options2, containingSourceFile, host, typeReferenceDirectiveResolutionCache, createTypeReferenceResolutionLoader); } let libraryResolutionCache; if (!compilerHost.resolveLibrary) { libraryResolutionCache = createModuleResolutionCache(compilerHost.getCurrentDirectory(), compilerHost.getCanonicalFileName, undefined, moduleResolutionCache == null ? undefined : moduleResolutionCache.getPackageJsonInfoCache()); compilerHost.resolveLibrary = (libraryName, resolveFrom, options2) => resolveLibrary(libraryName, resolveFrom, options2, host, libraryResolutionCache); } compilerHost.getBuildInfo = (fileName, configFilePath) => getBuildInfo3(state, fileName, toResolvedConfigFilePath(state, configFilePath), undefined); const { watchFile: watchFile2, watchDirectory, writeLog } = createWatchFactory(hostWithWatch, options); const state = { host, hostWithWatch, parseConfigFileHost: parseConfigHostFromCompilerHostLike(host), write: maybeBind(host, host.trace), options, baseCompilerOptions, rootNames, baseWatchOptions, resolvedConfigFilePaths: /* @__PURE__ */ new Map, configFileCache: /* @__PURE__ */ new Map, projectStatus: /* @__PURE__ */ new Map, extendedConfigCache: /* @__PURE__ */ new Map, buildInfoCache: /* @__PURE__ */ new Map, outputTimeStamps: /* @__PURE__ */ new Map, builderPrograms: /* @__PURE__ */ new Map, diagnostics: /* @__PURE__ */ new Map, projectPendingBuild: /* @__PURE__ */ new Map, projectErrorsReported: /* @__PURE__ */ new Map, compilerHost, moduleResolutionCache, typeReferenceDirectiveResolutionCache, libraryResolutionCache, buildOrder: undefined, readFileWithCache: (f) => host.readFile(f), projectCompilerOptions: baseCompilerOptions, cache: undefined, allProjectBuildPending: true, needsSummary: true, watchAllProjectsPending: watch, watch, allWatchedWildcardDirectories: /* @__PURE__ */ new Map, allWatchedInputFiles: /* @__PURE__ */ new Map, allWatchedConfigFiles: /* @__PURE__ */ new Map, allWatchedExtendedConfigFiles: /* @__PURE__ */ new Map, allWatchedPackageJsonFiles: /* @__PURE__ */ new Map, filesWatched: /* @__PURE__ */ new Map, lastCachedPackageJsonLookups: /* @__PURE__ */ new Map, timerToBuildInvalidatedProject: undefined, reportFileChangeDetected: false, watchFile: watchFile2, watchDirectory, writeLog }; return state; } function toPath2(state, fileName) { return toPath(fileName, state.compilerHost.getCurrentDirectory(), state.compilerHost.getCanonicalFileName); } function toResolvedConfigFilePath(state, fileName) { const { resolvedConfigFilePaths } = state; const path = resolvedConfigFilePaths.get(fileName); if (path !== undefined) return path; const resolvedPath = toPath2(state, fileName); resolvedConfigFilePaths.set(fileName, resolvedPath); return resolvedPath; } function isParsedCommandLine(entry) { return !!entry.options; } function getCachedParsedConfigFile(state, configFilePath) { const value = state.configFileCache.get(configFilePath); return value && isParsedCommandLine(value) ? value : undefined; } function parseConfigFile(state, configFileName, configFilePath) { const { configFileCache } = state; const value = configFileCache.get(configFilePath); if (value) { return isParsedCommandLine(value) ? value : undefined; } mark("SolutionBuilder::beforeConfigFileParsing"); let diagnostic; const { parseConfigFileHost, baseCompilerOptions, baseWatchOptions, extendedConfigCache, host } = state; let parsed; if (host.getParsedCommandLine) { parsed = host.getParsedCommandLine(configFileName); if (!parsed) diagnostic = createCompilerDiagnostic(Diagnostics.File_0_not_found, configFileName); } else { parseConfigFileHost.onUnRecoverableConfigFileDiagnostic = (d) => diagnostic = d; parsed = getParsedCommandLineOfConfigFile(configFileName, baseCompilerOptions, parseConfigFileHost, extendedConfigCache, baseWatchOptions); parseConfigFileHost.onUnRecoverableConfigFileDiagnostic = noop; } configFileCache.set(configFilePath, parsed || diagnostic); mark("SolutionBuilder::afterConfigFileParsing"); measure("SolutionBuilder::Config file parsing", "SolutionBuilder::beforeConfigFileParsing", "SolutionBuilder::afterConfigFileParsing"); return parsed; } function resolveProjectName(state, name) { return resolveConfigFileProjectName(resolvePath(state.compilerHost.getCurrentDirectory(), name)); } function createBuildOrder(state, roots) { const temporaryMarks = /* @__PURE__ */ new Map; const permanentMarks = /* @__PURE__ */ new Map; const circularityReportStack = []; let buildOrder; let circularDiagnostics; for (const root of roots) { visit(root); } return circularDiagnostics ? { buildOrder: buildOrder || emptyArray, circularDiagnostics } : buildOrder || emptyArray; function visit(configFileName, inCircularContext) { const projPath = toResolvedConfigFilePath(state, configFileName); if (permanentMarks.has(projPath)) return; if (temporaryMarks.has(projPath)) { if (!inCircularContext) { (circularDiagnostics || (circularDiagnostics = [])).push(createCompilerDiagnostic(Diagnostics.Project_references_may_not_form_a_circular_graph_Cycle_detected_Colon_0, circularityReportStack.join(`\r `))); } return; } temporaryMarks.set(projPath, true); circularityReportStack.push(configFileName); const parsed = parseConfigFile(state, configFileName, projPath); if (parsed && parsed.projectReferences) { for (const ref of parsed.projectReferences) { const resolvedRefPath = resolveProjectName(state, ref.path); visit(resolvedRefPath, inCircularContext || ref.circular); } } circularityReportStack.pop(); permanentMarks.set(projPath, true); (buildOrder || (buildOrder = [])).push(configFileName); } } function getBuildOrder(state) { return state.buildOrder || createStateBuildOrder(state); } function createStateBuildOrder(state) { const buildOrder = createBuildOrder(state, state.rootNames.map((f) => resolveProjectName(state, f))); state.resolvedConfigFilePaths.clear(); const currentProjects = new Set(getBuildOrderFromAnyBuildOrder(buildOrder).map((resolved) => toResolvedConfigFilePath(state, resolved))); const noopOnDelete = { onDeleteValue: noop }; mutateMapSkippingNewValues(state.configFileCache, currentProjects, noopOnDelete); mutateMapSkippingNewValues(state.projectStatus, currentProjects, noopOnDelete); mutateMapSkippingNewValues(state.builderPrograms, currentProjects, noopOnDelete); mutateMapSkippingNewValues(state.diagnostics, currentProjects, noopOnDelete); mutateMapSkippingNewValues(state.projectPendingBuild, currentProjects, noopOnDelete); mutateMapSkippingNewValues(state.projectErrorsReported, currentProjects, noopOnDelete); mutateMapSkippingNewValues(state.buildInfoCache, currentProjects, noopOnDelete); mutateMapSkippingNewValues(state.outputTimeStamps, currentProjects, noopOnDelete); mutateMapSkippingNewValues(state.lastCachedPackageJsonLookups, currentProjects, noopOnDelete); if (state.watch) { mutateMapSkippingNewValues(state.allWatchedConfigFiles, currentProjects, { onDeleteValue: closeFileWatcher }); state.allWatchedExtendedConfigFiles.forEach((watcher) => { watcher.projects.forEach((project) => { if (!currentProjects.has(project)) { watcher.projects.delete(project); } }); watcher.close(); }); mutateMapSkippingNewValues(state.allWatchedWildcardDirectories, currentProjects, { onDeleteValue: (existingMap) => existingMap.forEach(closeFileWatcherOf) }); mutateMapSkippingNewValues(state.allWatchedInputFiles, currentProjects, { onDeleteValue: (existingMap) => existingMap.forEach(closeFileWatcher) }); mutateMapSkippingNewValues(state.allWatchedPackageJsonFiles, currentProjects, { onDeleteValue: (existingMap) => existingMap.forEach(closeFileWatcher) }); } return state.buildOrder = buildOrder; } function getBuildOrderFor(state, project, onlyReferences) { const resolvedProject = project && resolveProjectName(state, project); const buildOrderFromState = getBuildOrder(state); if (isCircularBuildOrder(buildOrderFromState)) return buildOrderFromState; if (resolvedProject) { const projectPath = toResolvedConfigFilePath(state, resolvedProject); const projectIndex = findIndex(buildOrderFromState, (configFileName) => toResolvedConfigFilePath(state, configFileName) === projectPath); if (projectIndex === -1) return; } const buildOrder = resolvedProject ? createBuildOrder(state, [resolvedProject]) : buildOrderFromState; Debug.assert(!isCircularBuildOrder(buildOrder)); Debug.assert(!onlyReferences || resolvedProject !== undefined); Debug.assert(!onlyReferences || buildOrder[buildOrder.length - 1] === resolvedProject); return onlyReferences ? buildOrder.slice(0, buildOrder.length - 1) : buildOrder; } function enableCache(state) { if (state.cache) { disableCache(state); } const { compilerHost, host } = state; const originalReadFileWithCache = state.readFileWithCache; const originalGetSourceFile = compilerHost.getSourceFile; const { originalReadFile, originalFileExists, originalDirectoryExists, originalCreateDirectory, originalWriteFile, getSourceFileWithCache, readFileWithCache } = changeCompilerHostLikeToUseCache(host, (fileName) => toPath2(state, fileName), (...args) => originalGetSourceFile.call(compilerHost, ...args)); state.readFileWithCache = readFileWithCache; compilerHost.getSourceFile = getSourceFileWithCache; state.cache = { originalReadFile, originalFileExists, originalDirectoryExists, originalCreateDirectory, originalWriteFile, originalReadFileWithCache, originalGetSourceFile }; } function disableCache(state) { if (!state.cache) return; const { cache, host, compilerHost, extendedConfigCache, moduleResolutionCache, typeReferenceDirectiveResolutionCache, libraryResolutionCache } = state; host.readFile = cache.originalReadFile; host.fileExists = cache.originalFileExists; host.directoryExists = cache.originalDirectoryExists; host.createDirectory = cache.originalCreateDirectory; host.writeFile = cache.originalWriteFile; compilerHost.getSourceFile = cache.originalGetSourceFile; state.readFileWithCache = cache.originalReadFileWithCache; extendedConfigCache.clear(); moduleResolutionCache == null || moduleResolutionCache.clear(); typeReferenceDirectiveResolutionCache == null || typeReferenceDirectiveResolutionCache.clear(); libraryResolutionCache == null || libraryResolutionCache.clear(); state.cache = undefined; } function clearProjectStatus(state, resolved) { state.projectStatus.delete(resolved); state.diagnostics.delete(resolved); } function addProjToQueue({ projectPendingBuild }, proj, updateLevel) { const value = projectPendingBuild.get(proj); if (value === undefined) { projectPendingBuild.set(proj, updateLevel); } else if (value < updateLevel) { projectPendingBuild.set(proj, updateLevel); } } function setupInitialBuild(state, cancellationToken) { if (!state.allProjectBuildPending) return; state.allProjectBuildPending = false; if (state.options.watch) reportWatchStatus(state, Diagnostics.Starting_compilation_in_watch_mode); enableCache(state); const buildOrder = getBuildOrderFromAnyBuildOrder(getBuildOrder(state)); buildOrder.forEach((configFileName) => state.projectPendingBuild.set(toResolvedConfigFilePath(state, configFileName), 0)); if (cancellationToken) { cancellationToken.throwIfCancellationRequested(); } } var InvalidatedProjectKind = /* @__PURE__ */ ((InvalidatedProjectKind2) => { InvalidatedProjectKind2[InvalidatedProjectKind2["Build"] = 0] = "Build"; InvalidatedProjectKind2[InvalidatedProjectKind2["UpdateOutputFileStamps"] = 1] = "UpdateOutputFileStamps"; return InvalidatedProjectKind2; })(InvalidatedProjectKind || {}); function doneInvalidatedProject(state, projectPath) { state.projectPendingBuild.delete(projectPath); return state.diagnostics.has(projectPath) ? 1 : 0; } function createUpdateOutputFileStampsProject(state, project, projectPath, config, buildOrder) { let updateOutputFileStampsPending = true; return { kind: 1, project, projectPath, buildOrder, getCompilerOptions: () => config.options, getCurrentDirectory: () => state.compilerHost.getCurrentDirectory(), updateOutputFileStatmps: () => { updateOutputTimestamps(state, config, projectPath); updateOutputFileStampsPending = false; }, done: () => { if (updateOutputFileStampsPending) { updateOutputTimestamps(state, config, projectPath); } mark("SolutionBuilder::Timestamps only updates"); return doneInvalidatedProject(state, projectPath); } }; } function createBuildOrUpdateInvalidedProject(state, project, projectPath, projectIndex, config, status, buildOrder) { let step = 0; let program; let buildResult; return { kind: 0, project, projectPath, buildOrder, getCompilerOptions: () => config.options, getCurrentDirectory: () => state.compilerHost.getCurrentDirectory(), getBuilderProgram: () => withProgramOrUndefined(identity), getProgram: () => withProgramOrUndefined((program2) => program2.getProgramOrUndefined()), getSourceFile: (fileName) => withProgramOrUndefined((program2) => program2.getSourceFile(fileName)), getSourceFiles: () => withProgramOrEmptyArray((program2) => program2.getSourceFiles()), getOptionsDiagnostics: (cancellationToken) => withProgramOrEmptyArray((program2) => program2.getOptionsDiagnostics(cancellationToken)), getGlobalDiagnostics: (cancellationToken) => withProgramOrEmptyArray((program2) => program2.getGlobalDiagnostics(cancellationToken)), getConfigFileParsingDiagnostics: () => withProgramOrEmptyArray((program2) => program2.getConfigFileParsingDiagnostics()), getSyntacticDiagnostics: (sourceFile, cancellationToken) => withProgramOrEmptyArray((program2) => program2.getSyntacticDiagnostics(sourceFile, cancellationToken)), getAllDependencies: (sourceFile) => withProgramOrEmptyArray((program2) => program2.getAllDependencies(sourceFile)), getSemanticDiagnostics: (sourceFile, cancellationToken) => withProgramOrEmptyArray((program2) => program2.getSemanticDiagnostics(sourceFile, cancellationToken)), getSemanticDiagnosticsOfNextAffectedFile: (cancellationToken, ignoreSourceFile) => withProgramOrUndefined((program2) => program2.getSemanticDiagnosticsOfNextAffectedFile && program2.getSemanticDiagnosticsOfNextAffectedFile(cancellationToken, ignoreSourceFile)), emit: (targetSourceFile, writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers) => { if (targetSourceFile || emitOnlyDtsFiles) { return withProgramOrUndefined((program2) => { var _a, _b; return program2.emit(targetSourceFile, writeFile2, cancellationToken, emitOnlyDtsFiles, customTransformers || ((_b = (_a = state.host).getCustomTransformers) == null ? undefined : _b.call(_a, project))); }); } executeSteps(0, cancellationToken); return emit(writeFile2, cancellationToken, customTransformers); }, done }; function done(cancellationToken, writeFile2, customTransformers) { executeSteps(3, cancellationToken, writeFile2, customTransformers); mark("SolutionBuilder::Projects built"); return doneInvalidatedProject(state, projectPath); } function withProgramOrUndefined(action) { executeSteps(0); return program && action(program); } function withProgramOrEmptyArray(action) { return withProgramOrUndefined(action) || emptyArray; } function createProgram2() { var _a, _b, _c; Debug.assert(program === undefined); if (state.options.dry) { reportStatus(state, Diagnostics.A_non_dry_build_would_build_project_0, project); buildResult = 1; step = 2; return; } if (state.options.verbose) reportStatus(state, Diagnostics.Building_project_0, project); if (config.fileNames.length === 0) { reportAndStoreErrors(state, projectPath, getConfigFileParsingDiagnostics(config)); buildResult = 0; step = 2; return; } const { host, compilerHost } = state; state.projectCompilerOptions = config.options; (_a = state.moduleResolutionCache) == null || _a.update(config.options); (_b = state.typeReferenceDirectiveResolutionCache) == null || _b.update(config.options); program = host.createProgram(config.fileNames, config.options, compilerHost, getOldProgram(state, projectPath, config), getConfigFileParsingDiagnostics(config), config.projectReferences); if (state.watch) { const internalMap = (_c = state.moduleResolutionCache) == null ? undefined : _c.getPackageJsonInfoCache().getInternalMap(); state.lastCachedPackageJsonLookups.set(projectPath, internalMap && new Set(arrayFrom(internalMap.values(), (data) => state.host.realpath && (isPackageJsonInfo(data) || data.directoryExists) ? state.host.realpath(combinePaths(data.packageDirectory, "package.json")) : combinePaths(data.packageDirectory, "package.json")))); state.builderPrograms.set(projectPath, program); } step++; } function emit(writeFileCallback, cancellationToken, customTransformers) { var _a, _b, _c; Debug.assertIsDefined(program); Debug.assert(step === 1); const { host, compilerHost } = state; const emittedOutputs = /* @__PURE__ */ new Map; const options = program.getCompilerOptions(); const isIncremental = isIncrementalCompilation(options); let outputTimeStampMap; let now; const { emitResult, diagnostics } = emitFilesAndReportErrors(program, (d) => host.reportDiagnostic(d), state.write, undefined, (name, text, writeByteOrderMark, onError, sourceFiles, data) => { var _a2; const path = toPath2(state, name); emittedOutputs.set(toPath2(state, name), name); if (data == null ? undefined : data.buildInfo) { now || (now = getCurrentTime(state.host)); const isChangedSignature2 = (_a2 = program.hasChangedEmitSignature) == null ? undefined : _a2.call(program); const existing = getBuildInfoCacheEntry(state, name, projectPath); if (existing) { existing.buildInfo = data.buildInfo; existing.modifiedTime = now; if (isChangedSignature2) existing.latestChangedDtsTime = now; } else { state.buildInfoCache.set(projectPath, { path: toPath2(state, name), buildInfo: data.buildInfo, modifiedTime: now, latestChangedDtsTime: isChangedSignature2 ? now : undefined }); } } const modifiedTime = (data == null ? undefined : data.differsOnlyInMap) ? getModifiedTime(state.host, name) : undefined; (writeFileCallback || compilerHost.writeFile)(name, text, writeByteOrderMark, onError, sourceFiles, data); if (data == null ? undefined : data.differsOnlyInMap) state.host.setModifiedTime(name, modifiedTime); else if (!isIncremental && state.watch) { (outputTimeStampMap || (outputTimeStampMap = getOutputTimeStampMap(state, projectPath))).set(path, now || (now = getCurrentTime(state.host))); } }, cancellationToken, undefined, customTransformers || ((_b = (_a = state.host).getCustomTransformers) == null ? undefined : _b.call(_a, project))); if ((!options.noEmitOnError || !diagnostics.length) && (emittedOutputs.size || status.type !== 8)) { updateOutputTimestampsWorker(state, config, projectPath, Diagnostics.Updating_unchanged_output_timestamps_of_project_0, emittedOutputs); } state.projectErrorsReported.set(projectPath, true); buildResult = ((_c = program.hasChangedEmitSignature) == null ? undefined : _c.call(program)) ? 0 : 2; if (!diagnostics.length) { state.diagnostics.delete(projectPath); state.projectStatus.set(projectPath, { type: 1, oldestOutputFileName: firstOrUndefinedIterator(emittedOutputs.values()) ?? getFirstProjectOutput(config, !host.useCaseSensitiveFileNames()) }); } else { state.diagnostics.set(projectPath, diagnostics); state.projectStatus.set(projectPath, { type: 0, reason: `it had errors` }); buildResult |= 4; } afterProgramDone(state, program); step = 2; return emitResult; } function executeSteps(till, cancellationToken, writeFile2, customTransformers) { while (step <= till && step < 3) { const currentStep = step; switch (step) { case 0: createProgram2(); break; case 1: emit(writeFile2, cancellationToken, customTransformers); break; case 2: queueReferencingProjects(state, project, projectPath, projectIndex, config, buildOrder, Debug.checkDefined(buildResult)); step++; break; case 3: default: assertType(step); } Debug.assert(step > currentStep); } } } function getNextInvalidatedProjectCreateInfo(state, buildOrder, reportQueue) { if (!state.projectPendingBuild.size) return; if (isCircularBuildOrder(buildOrder)) return; const { options, projectPendingBuild } = state; for (let projectIndex = 0;projectIndex < buildOrder.length; projectIndex++) { const project = buildOrder[projectIndex]; const projectPath = toResolvedConfigFilePath(state, project); const updateLevel = state.projectPendingBuild.get(projectPath); if (updateLevel === undefined) continue; if (reportQueue) { reportQueue = false; reportBuildQueue(state, buildOrder); } const config = parseConfigFile(state, project, projectPath); if (!config) { reportParseConfigFileDiagnostic(state, projectPath); projectPendingBuild.delete(projectPath); continue; } if (updateLevel === 2) { watchConfigFile(state, project, projectPath, config); watchExtendedConfigFiles(state, projectPath, config); watchWildCardDirectories(state, project, projectPath, config); watchInputFiles(state, project, projectPath, config); watchPackageJsonFiles(state, project, projectPath, config); } else if (updateLevel === 1) { config.fileNames = getFileNamesFromConfigSpecs(config.options.configFile.configFileSpecs, getDirectoryPath(project), config.options, state.parseConfigFileHost); updateErrorForNoInputFiles(config.fileNames, project, config.options.configFile.configFileSpecs, config.errors, canJsonReportNoInputFiles(config.raw)); watchInputFiles(state, project, projectPath, config); watchPackageJsonFiles(state, project, projectPath, config); } const status = getUpToDateStatus(state, config, projectPath); if (!options.force) { if (status.type === 1) { verboseReportProjectStatus(state, project, status); reportAndStoreErrors(state, projectPath, getConfigFileParsingDiagnostics(config)); projectPendingBuild.delete(projectPath); if (options.dry) { reportStatus(state, Diagnostics.Project_0_is_up_to_date, project); } continue; } if (status.type === 2 || status.type === 15) { reportAndStoreErrors(state, projectPath, getConfigFileParsingDiagnostics(config)); return { kind: 1, status, project, projectPath, projectIndex, config }; } } if (status.type === 12) { verboseReportProjectStatus(state, project, status); reportAndStoreErrors(state, projectPath, getConfigFileParsingDiagnostics(config)); projectPendingBuild.delete(projectPath); if (options.verbose) { reportStatus(state, status.upstreamProjectBlocked ? Diagnostics.Skipping_build_of_project_0_because_its_dependency_1_was_not_built : Diagnostics.Skipping_build_of_project_0_because_its_dependency_1_has_errors, project, status.upstreamProjectName); } continue; } if (status.type === 16) { verboseReportProjectStatus(state, project, status); reportAndStoreErrors(state, projectPath, getConfigFileParsingDiagnostics(config)); projectPendingBuild.delete(projectPath); continue; } return { kind: 0, status, project, projectPath, projectIndex, config }; } return; } function createInvalidatedProjectWithInfo(state, info, buildOrder) { verboseReportProjectStatus(state, info.project, info.status); return info.kind !== 1 ? createBuildOrUpdateInvalidedProject(state, info.project, info.projectPath, info.projectIndex, info.config, info.status, buildOrder) : createUpdateOutputFileStampsProject(state, info.project, info.projectPath, info.config, buildOrder); } function getNextInvalidatedProject(state, buildOrder, reportQueue) { const info = getNextInvalidatedProjectCreateInfo(state, buildOrder, reportQueue); if (!info) return info; return createInvalidatedProjectWithInfo(state, info, buildOrder); } function getOldProgram({ options, builderPrograms, compilerHost }, proj, parsed) { if (options.force) return; const value = builderPrograms.get(proj); if (value) return value; return readBuilderProgram(parsed.options, compilerHost); } function afterProgramDone(state, program) { if (program) { if (state.host.afterProgramEmitAndDiagnostics) { state.host.afterProgramEmitAndDiagnostics(program); } program.releaseProgram(); } state.projectCompilerOptions = state.baseCompilerOptions; } function isFileWatcherWithModifiedTime(value) { return !!value.watcher; } function getModifiedTime2(state, fileName) { const path = toPath2(state, fileName); const existing = state.filesWatched.get(path); if (state.watch && !!existing) { if (!isFileWatcherWithModifiedTime(existing)) return existing; if (existing.modifiedTime) return existing.modifiedTime; } const result = getModifiedTime(state.host, fileName); if (state.watch) { if (existing) existing.modifiedTime = result; else state.filesWatched.set(path, result); } return result; } function watchFile(state, file, callback, pollingInterval, options, watchType, project) { const path = toPath2(state, file); const existing = state.filesWatched.get(path); if (existing && isFileWatcherWithModifiedTime(existing)) { existing.callbacks.push(callback); } else { const watcher = state.watchFile(file, (fileName, eventKind, modifiedTime) => { const existing2 = Debug.checkDefined(state.filesWatched.get(path)); Debug.assert(isFileWatcherWithModifiedTime(existing2)); existing2.modifiedTime = modifiedTime; existing2.callbacks.forEach((cb) => cb(fileName, eventKind, modifiedTime)); }, pollingInterval, options, watchType, project); state.filesWatched.set(path, { callbacks: [callback], watcher, modifiedTime: existing }); } return { close: () => { const existing2 = Debug.checkDefined(state.filesWatched.get(path)); Debug.assert(isFileWatcherWithModifiedTime(existing2)); if (existing2.callbacks.length === 1) { state.filesWatched.delete(path); closeFileWatcherOf(existing2); } else { unorderedRemoveItem(existing2.callbacks, callback); } } }; } function getOutputTimeStampMap(state, resolvedConfigFilePath) { if (!state.watch) return; let result = state.outputTimeStamps.get(resolvedConfigFilePath); if (!result) state.outputTimeStamps.set(resolvedConfigFilePath, result = /* @__PURE__ */ new Map); return result; } function getBuildInfoCacheEntry(state, buildInfoPath, resolvedConfigPath) { const path = toPath2(state, buildInfoPath); const existing = state.buildInfoCache.get(resolvedConfigPath); return (existing == null ? undefined : existing.path) === path ? existing : undefined; } function getBuildInfo3(state, buildInfoPath, resolvedConfigPath, modifiedTime) { const path = toPath2(state, buildInfoPath); const existing = state.buildInfoCache.get(resolvedConfigPath); if (existing !== undefined && existing.path === path) { return existing.buildInfo || undefined; } const value = state.readFileWithCache(buildInfoPath); const buildInfo = value ? getBuildInfo(buildInfoPath, value) : undefined; state.buildInfoCache.set(resolvedConfigPath, { path, buildInfo: buildInfo || false, modifiedTime: modifiedTime || missingFileModifiedTime }); return buildInfo; } function checkConfigFileUpToDateStatus(state, configFile, oldestOutputFileTime, oldestOutputFileName) { const tsconfigTime = getModifiedTime2(state, configFile); if (oldestOutputFileTime < tsconfigTime) { return { type: 5, outOfDateOutputFileName: oldestOutputFileName, newerInputFileName: configFile }; } } function getUpToDateStatusWorker(state, project, resolvedPath) { var _a, _b, _c, _d, _e; if (isSolutionConfig(project)) return { type: 16 }; let referenceStatuses; const force = !!state.options.force; if (project.projectReferences) { state.projectStatus.set(resolvedPath, { type: 13 }); for (const ref of project.projectReferences) { const resolvedRef = resolveProjectReferencePath(ref); const resolvedRefPath = toResolvedConfigFilePath(state, resolvedRef); const resolvedConfig = parseConfigFile(state, resolvedRef, resolvedRefPath); const refStatus = getUpToDateStatus(state, resolvedConfig, resolvedRefPath); if (refStatus.type === 13 || refStatus.type === 16) { continue; } if (state.options.stopBuildOnErrors && (refStatus.type === 0 || refStatus.type === 12)) { return { type: 12, upstreamProjectName: ref.path, upstreamProjectBlocked: refStatus.type === 12 }; } if (!force) (referenceStatuses || (referenceStatuses = [])).push({ ref, refStatus, resolvedRefPath, resolvedConfig }); } } if (force) return { type: 17 }; const { host } = state; const buildInfoPath = getTsBuildInfoEmitOutputFilePath(project.options); const isIncremental = isIncrementalCompilation(project.options); let buildInfoCacheEntry = getBuildInfoCacheEntry(state, buildInfoPath, resolvedPath); const buildInfoTime = (buildInfoCacheEntry == null ? undefined : buildInfoCacheEntry.modifiedTime) || getModifiedTime(host, buildInfoPath); if (buildInfoTime === missingFileModifiedTime) { if (!buildInfoCacheEntry) { state.buildInfoCache.set(resolvedPath, { path: toPath2(state, buildInfoPath), buildInfo: false, modifiedTime: buildInfoTime }); } return { type: 3, missingOutputFileName: buildInfoPath }; } const buildInfo = getBuildInfo3(state, buildInfoPath, resolvedPath, buildInfoTime); if (!buildInfo) { return { type: 4, fileName: buildInfoPath }; } const incrementalBuildInfo = isIncremental && isIncrementalBuildInfo(buildInfo) ? buildInfo : undefined; if ((incrementalBuildInfo || !isIncremental) && buildInfo.version !== version) { return { type: 14, version: buildInfo.version }; } if (!project.options.noCheck && (buildInfo.errors || buildInfo.checkPending)) { return { type: 8, buildInfoFile: buildInfoPath }; } if (incrementalBuildInfo) { if (!project.options.noCheck && (((_a = incrementalBuildInfo.changeFileSet) == null ? undefined : _a.length) || ((_b = incrementalBuildInfo.semanticDiagnosticsPerFile) == null ? undefined : _b.length) || getEmitDeclarations(project.options) && ((_c = incrementalBuildInfo.emitDiagnosticsPerFile) == null ? undefined : _c.length))) { return { type: 8, buildInfoFile: buildInfoPath }; } if (!project.options.noEmit && (((_d = incrementalBuildInfo.changeFileSet) == null ? undefined : _d.length) || ((_e = incrementalBuildInfo.affectedFilesPendingEmit) == null ? undefined : _e.length) || incrementalBuildInfo.pendingEmit !== undefined)) { return { type: 7, buildInfoFile: buildInfoPath }; } if ((!project.options.noEmit || project.options.noEmit && getEmitDeclarations(project.options)) && getPendingEmitKindWithSeen(project.options, incrementalBuildInfo.options || {}, undefined, !!project.options.noEmit)) { return { type: 9, buildInfoFile: buildInfoPath }; } } let oldestOutputFileTime = buildInfoTime; let oldestOutputFileName = buildInfoPath; let newestInputFileName = undefined; let newestInputFileTime = minimumDate; let pseudoInputUpToDate = false; const seenRoots = /* @__PURE__ */ new Set; let buildInfoVersionMap; for (const inputFile of project.fileNames) { const inputTime = getModifiedTime2(state, inputFile); if (inputTime === missingFileModifiedTime) { return { type: 0, reason: `${inputFile} does not exist` }; } const inputPath = toPath2(state, inputFile); if (buildInfoTime < inputTime) { let version2; let currentVersion; if (incrementalBuildInfo) { if (!buildInfoVersionMap) buildInfoVersionMap = getBuildInfoFileVersionMap(incrementalBuildInfo, buildInfoPath, host); const resolvedInputPath = buildInfoVersionMap.roots.get(inputPath); version2 = buildInfoVersionMap.fileInfos.get(resolvedInputPath ?? inputPath); const text = version2 ? state.readFileWithCache(resolvedInputPath ?? inputFile) : undefined; currentVersion = text !== undefined ? getSourceFileVersionAsHashFromText(host, text) : undefined; if (version2 && version2 === currentVersion) pseudoInputUpToDate = true; } if (!version2 || version2 !== currentVersion) { return { type: 5, outOfDateOutputFileName: buildInfoPath, newerInputFileName: inputFile }; } } if (inputTime > newestInputFileTime) { newestInputFileName = inputFile; newestInputFileTime = inputTime; } seenRoots.add(inputPath); } let existingRoot; if (incrementalBuildInfo) { if (!buildInfoVersionMap) buildInfoVersionMap = getBuildInfoFileVersionMap(incrementalBuildInfo, buildInfoPath, host); existingRoot = forEachEntry(buildInfoVersionMap.roots, (_resolved, existingRoot2) => !seenRoots.has(existingRoot2) ? existingRoot2 : undefined); } else { existingRoot = forEach(getNonIncrementalBuildInfoRoots(buildInfo, buildInfoPath, host), (root) => !seenRoots.has(root) ? root : undefined); } if (existingRoot) { return { type: 10, buildInfoFile: buildInfoPath, inputFile: existingRoot }; } if (!isIncremental) { const outputs = getAllProjectOutputs(project, !host.useCaseSensitiveFileNames()); const outputTimeStampMap = getOutputTimeStampMap(state, resolvedPath); for (const output of outputs) { if (output === buildInfoPath) continue; const path = toPath2(state, output); let outputTime = outputTimeStampMap == null ? undefined : outputTimeStampMap.get(path); if (!outputTime) { outputTime = getModifiedTime(state.host, output); outputTimeStampMap == null || outputTimeStampMap.set(path, outputTime); } if (outputTime === missingFileModifiedTime) { return { type: 3, missingOutputFileName: output }; } if (outputTime < newestInputFileTime) { return { type: 5, outOfDateOutputFileName: output, newerInputFileName: newestInputFileName }; } if (outputTime < oldestOutputFileTime) { oldestOutputFileTime = outputTime; oldestOutputFileName = output; } } } let pseudoUpToDate = false; if (referenceStatuses) { for (const { ref, refStatus, resolvedConfig, resolvedRefPath } of referenceStatuses) { if (refStatus.newestInputFileTime && refStatus.newestInputFileTime <= oldestOutputFileTime) { continue; } if (hasSameBuildInfo(state, buildInfoCacheEntry ?? (buildInfoCacheEntry = state.buildInfoCache.get(resolvedPath)), resolvedRefPath)) { return { type: 6, outOfDateOutputFileName: buildInfoPath, newerProjectName: ref.path }; } const newestDeclarationFileContentChangedTime = getLatestChangedDtsTime(state, resolvedConfig.options, resolvedRefPath); if (newestDeclarationFileContentChangedTime && newestDeclarationFileContentChangedTime <= oldestOutputFileTime) { pseudoUpToDate = true; continue; } Debug.assert(oldestOutputFileName !== undefined, "Should have an oldest output filename here"); return { type: 6, outOfDateOutputFileName: oldestOutputFileName, newerProjectName: ref.path }; } } const configStatus = checkConfigFileUpToDateStatus(state, project.options.configFilePath, oldestOutputFileTime, oldestOutputFileName); if (configStatus) return configStatus; const extendedConfigStatus = forEach(project.options.configFile.extendedSourceFiles || emptyArray, (configFile) => checkConfigFileUpToDateStatus(state, configFile, oldestOutputFileTime, oldestOutputFileName)); if (extendedConfigStatus) return extendedConfigStatus; const packageJsonLookups = state.lastCachedPackageJsonLookups.get(resolvedPath); const dependentPackageFileStatus = packageJsonLookups && forEachKey(packageJsonLookups, (path) => checkConfigFileUpToDateStatus(state, path, oldestOutputFileTime, oldestOutputFileName)); if (dependentPackageFileStatus) return dependentPackageFileStatus; return { type: pseudoUpToDate ? 2 : pseudoInputUpToDate ? 15 : 1, newestInputFileTime, newestInputFileName, oldestOutputFileName }; } function hasSameBuildInfo(state, buildInfoCacheEntry, resolvedRefPath) { const refBuildInfo = state.buildInfoCache.get(resolvedRefPath); return refBuildInfo.path === buildInfoCacheEntry.path; } function getUpToDateStatus(state, project, resolvedPath) { if (project === undefined) { return { type: 0, reason: "config file deleted mid-build" }; } const prior = state.projectStatus.get(resolvedPath); if (prior !== undefined) { return prior; } mark("SolutionBuilder::beforeUpToDateCheck"); const actual = getUpToDateStatusWorker(state, project, resolvedPath); mark("SolutionBuilder::afterUpToDateCheck"); measure("SolutionBuilder::Up-to-date check", "SolutionBuilder::beforeUpToDateCheck", "SolutionBuilder::afterUpToDateCheck"); state.projectStatus.set(resolvedPath, actual); return actual; } function updateOutputTimestampsWorker(state, proj, projectPath, verboseMessage, skipOutputs) { if (proj.options.noEmit) return; let now; const buildInfoPath = getTsBuildInfoEmitOutputFilePath(proj.options); const isIncremental = isIncrementalCompilation(proj.options); if (buildInfoPath && isIncremental) { if (!(skipOutputs == null ? undefined : skipOutputs.has(toPath2(state, buildInfoPath)))) { if (!!state.options.verbose) reportStatus(state, verboseMessage, proj.options.configFilePath); state.host.setModifiedTime(buildInfoPath, now = getCurrentTime(state.host)); getBuildInfoCacheEntry(state, buildInfoPath, projectPath).modifiedTime = now; } state.outputTimeStamps.delete(projectPath); return; } const { host } = state; const outputs = getAllProjectOutputs(proj, !host.useCaseSensitiveFileNames()); const outputTimeStampMap = getOutputTimeStampMap(state, projectPath); const modifiedOutputs = outputTimeStampMap ? /* @__PURE__ */ new Set : undefined; if (!skipOutputs || outputs.length !== skipOutputs.size) { let reportVerbose = !!state.options.verbose; for (const file of outputs) { const path = toPath2(state, file); if (skipOutputs == null ? undefined : skipOutputs.has(path)) continue; if (reportVerbose) { reportVerbose = false; reportStatus(state, verboseMessage, proj.options.configFilePath); } host.setModifiedTime(file, now || (now = getCurrentTime(state.host))); if (file === buildInfoPath) getBuildInfoCacheEntry(state, buildInfoPath, projectPath).modifiedTime = now; else if (outputTimeStampMap) { outputTimeStampMap.set(path, now); modifiedOutputs.add(path); } } } outputTimeStampMap == null || outputTimeStampMap.forEach((_value, key) => { if (!(skipOutputs == null ? undefined : skipOutputs.has(key)) && !modifiedOutputs.has(key)) outputTimeStampMap.delete(key); }); } function getLatestChangedDtsTime(state, options, resolvedConfigPath) { if (!options.composite) return; const entry = Debug.checkDefined(state.buildInfoCache.get(resolvedConfigPath)); if (entry.latestChangedDtsTime !== undefined) return entry.latestChangedDtsTime || undefined; const latestChangedDtsTime = entry.buildInfo && isIncrementalBuildInfo(entry.buildInfo) && entry.buildInfo.latestChangedDtsFile ? state.host.getModifiedTime(getNormalizedAbsolutePath(entry.buildInfo.latestChangedDtsFile, getDirectoryPath(entry.path))) : undefined; entry.latestChangedDtsTime = latestChangedDtsTime || false; return latestChangedDtsTime; } function updateOutputTimestamps(state, proj, resolvedPath) { if (state.options.dry) { return reportStatus(state, Diagnostics.A_non_dry_build_would_update_timestamps_for_output_of_project_0, proj.options.configFilePath); } updateOutputTimestampsWorker(state, proj, resolvedPath, Diagnostics.Updating_output_timestamps_of_project_0); state.projectStatus.set(resolvedPath, { type: 1, oldestOutputFileName: getFirstProjectOutput(proj, !state.host.useCaseSensitiveFileNames()) }); } function queueReferencingProjects(state, project, projectPath, projectIndex, config, buildOrder, buildResult) { if (state.options.stopBuildOnErrors && buildResult & 4) return; if (!config.options.composite) return; for (let index = projectIndex + 1;index < buildOrder.length; index++) { const nextProject = buildOrder[index]; const nextProjectPath = toResolvedConfigFilePath(state, nextProject); if (state.projectPendingBuild.has(nextProjectPath)) continue; const nextProjectConfig = parseConfigFile(state, nextProject, nextProjectPath); if (!nextProjectConfig || !nextProjectConfig.projectReferences) continue; for (const ref of nextProjectConfig.projectReferences) { const resolvedRefPath = resolveProjectName(state, ref.path); if (toResolvedConfigFilePath(state, resolvedRefPath) !== projectPath) continue; const status = state.projectStatus.get(nextProjectPath); if (status) { switch (status.type) { case 1: if (buildResult & 2) { status.type = 2; break; } case 15: case 2: if (!(buildResult & 2)) { state.projectStatus.set(nextProjectPath, { type: 6, outOfDateOutputFileName: status.oldestOutputFileName, newerProjectName: project }); } break; case 12: if (toResolvedConfigFilePath(state, resolveProjectName(state, status.upstreamProjectName)) === projectPath) { clearProjectStatus(state, nextProjectPath); } break; } } addProjToQueue(state, nextProjectPath, 0); break; } } } function build(state, project, cancellationToken, writeFile2, getCustomTransformers, onlyReferences) { mark("SolutionBuilder::beforeBuild"); const result = buildWorker(state, project, cancellationToken, writeFile2, getCustomTransformers, onlyReferences); mark("SolutionBuilder::afterBuild"); measure("SolutionBuilder::Build", "SolutionBuilder::beforeBuild", "SolutionBuilder::afterBuild"); return result; } function buildWorker(state, project, cancellationToken, writeFile2, getCustomTransformers, onlyReferences) { const buildOrder = getBuildOrderFor(state, project, onlyReferences); if (!buildOrder) return 3; setupInitialBuild(state, cancellationToken); let reportQueue = true; let successfulProjects = 0; while (true) { const invalidatedProject = getNextInvalidatedProject(state, buildOrder, reportQueue); if (!invalidatedProject) break; reportQueue = false; invalidatedProject.done(cancellationToken, writeFile2, getCustomTransformers == null ? undefined : getCustomTransformers(invalidatedProject.project)); if (!state.diagnostics.has(invalidatedProject.projectPath)) successfulProjects++; } disableCache(state); reportErrorSummary(state, buildOrder); startWatching(state, buildOrder); return isCircularBuildOrder(buildOrder) ? 4 : !buildOrder.some((p) => state.diagnostics.has(toResolvedConfigFilePath(state, p))) ? 0 : successfulProjects ? 2 : 1; } function clean(state, project, onlyReferences) { mark("SolutionBuilder::beforeClean"); const result = cleanWorker(state, project, onlyReferences); mark("SolutionBuilder::afterClean"); measure("SolutionBuilder::Clean", "SolutionBuilder::beforeClean", "SolutionBuilder::afterClean"); return result; } function cleanWorker(state, project, onlyReferences) { const buildOrder = getBuildOrderFor(state, project, onlyReferences); if (!buildOrder) return 3; if (isCircularBuildOrder(buildOrder)) { reportErrors(state, buildOrder.circularDiagnostics); return 4; } const { options, host } = state; const filesToDelete = options.dry ? [] : undefined; for (const proj of buildOrder) { const resolvedPath = toResolvedConfigFilePath(state, proj); const parsed = parseConfigFile(state, proj, resolvedPath); if (parsed === undefined) { reportParseConfigFileDiagnostic(state, resolvedPath); continue; } const outputs = getAllProjectOutputs(parsed, !host.useCaseSensitiveFileNames()); if (!outputs.length) continue; const inputFileNames = new Set(parsed.fileNames.map((f) => toPath2(state, f))); for (const output of outputs) { if (inputFileNames.has(toPath2(state, output))) continue; if (host.fileExists(output)) { if (filesToDelete) { filesToDelete.push(output); } else { host.deleteFile(output); invalidateProject(state, resolvedPath, 0); } } } } if (filesToDelete) { reportStatus(state, Diagnostics.A_non_dry_build_would_delete_the_following_files_Colon_0, filesToDelete.map((f) => `\r * ${f}`).join("")); } return 0; } function invalidateProject(state, resolved, updateLevel) { if (state.host.getParsedCommandLine && updateLevel === 1) { updateLevel = 2; } if (updateLevel === 2) { state.configFileCache.delete(resolved); state.buildOrder = undefined; } state.needsSummary = true; clearProjectStatus(state, resolved); addProjToQueue(state, resolved, updateLevel); enableCache(state); } function invalidateProjectAndScheduleBuilds(state, resolvedPath, updateLevel) { state.reportFileChangeDetected = true; invalidateProject(state, resolvedPath, updateLevel); scheduleBuildInvalidatedProject(state, 250, true); } function scheduleBuildInvalidatedProject(state, time, changeDetected) { const { hostWithWatch } = state; if (!hostWithWatch.setTimeout || !hostWithWatch.clearTimeout) { return; } if (state.timerToBuildInvalidatedProject) { hostWithWatch.clearTimeout(state.timerToBuildInvalidatedProject); } state.timerToBuildInvalidatedProject = hostWithWatch.setTimeout(buildNextInvalidatedProject, time, "timerToBuildInvalidatedProject", state, changeDetected); } function buildNextInvalidatedProject(_timeoutType, state, changeDetected) { mark("SolutionBuilder::beforeBuild"); const buildOrder = buildNextInvalidatedProjectWorker(state, changeDetected); mark("SolutionBuilder::afterBuild"); measure("SolutionBuilder::Build", "SolutionBuilder::beforeBuild", "SolutionBuilder::afterBuild"); if (buildOrder) reportErrorSummary(state, buildOrder); } function buildNextInvalidatedProjectWorker(state, changeDetected) { state.timerToBuildInvalidatedProject = undefined; if (state.reportFileChangeDetected) { state.reportFileChangeDetected = false; state.projectErrorsReported.clear(); reportWatchStatus(state, Diagnostics.File_change_detected_Starting_incremental_compilation); } let projectsBuilt = 0; const buildOrder = getBuildOrder(state); const invalidatedProject = getNextInvalidatedProject(state, buildOrder, false); if (invalidatedProject) { invalidatedProject.done(); projectsBuilt++; while (state.projectPendingBuild.size) { if (state.timerToBuildInvalidatedProject) return; const info = getNextInvalidatedProjectCreateInfo(state, buildOrder, false); if (!info) break; if (info.kind !== 1 && (changeDetected || projectsBuilt === 5)) { scheduleBuildInvalidatedProject(state, 100, false); return; } const project = createInvalidatedProjectWithInfo(state, info, buildOrder); project.done(); if (info.kind !== 1) projectsBuilt++; } } disableCache(state); return buildOrder; } function watchConfigFile(state, resolved, resolvedPath, parsed) { if (!state.watch || state.allWatchedConfigFiles.has(resolvedPath)) return; state.allWatchedConfigFiles.set(resolvedPath, watchFile(state, resolved, () => invalidateProjectAndScheduleBuilds(state, resolvedPath, 2), 2000, parsed == null ? undefined : parsed.watchOptions, WatchType.ConfigFile, resolved)); } function watchExtendedConfigFiles(state, resolvedPath, parsed) { updateSharedExtendedConfigFileWatcher(resolvedPath, parsed == null ? undefined : parsed.options, state.allWatchedExtendedConfigFiles, (extendedConfigFileName, extendedConfigFilePath) => watchFile(state, extendedConfigFileName, () => { var _a; return (_a = state.allWatchedExtendedConfigFiles.get(extendedConfigFilePath)) == null ? undefined : _a.projects.forEach((projectConfigFilePath) => invalidateProjectAndScheduleBuilds(state, projectConfigFilePath, 2)); }, 2000, parsed == null ? undefined : parsed.watchOptions, WatchType.ExtendedConfigFile), (fileName) => toPath2(state, fileName)); } function watchWildCardDirectories(state, resolved, resolvedPath, parsed) { if (!state.watch) return; updateWatchingWildcardDirectories(getOrCreateValueMapFromConfigFileMap(state.allWatchedWildcardDirectories, resolvedPath), parsed.wildcardDirectories, (dir, flags) => state.watchDirectory(dir, (fileOrDirectory) => { var _a; if (isIgnoredFileFromWildCardWatching({ watchedDirPath: toPath2(state, dir), fileOrDirectory, fileOrDirectoryPath: toPath2(state, fileOrDirectory), configFileName: resolved, currentDirectory: state.compilerHost.getCurrentDirectory(), options: parsed.options, program: state.builderPrograms.get(resolvedPath) || ((_a = getCachedParsedConfigFile(state, resolvedPath)) == null ? undefined : _a.fileNames), useCaseSensitiveFileNames: state.parseConfigFileHost.useCaseSensitiveFileNames, writeLog: (s) => state.writeLog(s), toPath: (fileName) => toPath2(state, fileName) })) return; invalidateProjectAndScheduleBuilds(state, resolvedPath, 1); }, flags, parsed == null ? undefined : parsed.watchOptions, WatchType.WildcardDirectory, resolved)); } function watchInputFiles(state, resolved, resolvedPath, parsed) { if (!state.watch) return; mutateMap(getOrCreateValueMapFromConfigFileMap(state.allWatchedInputFiles, resolvedPath), new Set(parsed.fileNames), { createNewValue: (input) => watchFile(state, input, () => invalidateProjectAndScheduleBuilds(state, resolvedPath, 0), 250, parsed == null ? undefined : parsed.watchOptions, WatchType.SourceFile, resolved), onDeleteValue: closeFileWatcher }); } function watchPackageJsonFiles(state, resolved, resolvedPath, parsed) { if (!state.watch || !state.lastCachedPackageJsonLookups) return; mutateMap(getOrCreateValueMapFromConfigFileMap(state.allWatchedPackageJsonFiles, resolvedPath), state.lastCachedPackageJsonLookups.get(resolvedPath), { createNewValue: (input) => watchFile(state, input, () => invalidateProjectAndScheduleBuilds(state, resolvedPath, 0), 2000, parsed == null ? undefined : parsed.watchOptions, WatchType.PackageJson, resolved), onDeleteValue: closeFileWatcher }); } function startWatching(state, buildOrder) { if (!state.watchAllProjectsPending) return; mark("SolutionBuilder::beforeWatcherCreation"); state.watchAllProjectsPending = false; for (const resolved of getBuildOrderFromAnyBuildOrder(buildOrder)) { const resolvedPath = toResolvedConfigFilePath(state, resolved); const cfg = parseConfigFile(state, resolved, resolvedPath); watchConfigFile(state, resolved, resolvedPath, cfg); watchExtendedConfigFiles(state, resolvedPath, cfg); if (cfg) { watchWildCardDirectories(state, resolved, resolvedPath, cfg); watchInputFiles(state, resolved, resolvedPath, cfg); watchPackageJsonFiles(state, resolved, resolvedPath, cfg); } } mark("SolutionBuilder::afterWatcherCreation"); measure("SolutionBuilder::Watcher creation", "SolutionBuilder::beforeWatcherCreation", "SolutionBuilder::afterWatcherCreation"); } function stopWatching(state) { clearMap(state.allWatchedConfigFiles, closeFileWatcher); clearMap(state.allWatchedExtendedConfigFiles, closeFileWatcherOf); clearMap(state.allWatchedWildcardDirectories, (watchedWildcardDirectories) => clearMap(watchedWildcardDirectories, closeFileWatcherOf)); clearMap(state.allWatchedInputFiles, (watchedWildcardDirectories) => clearMap(watchedWildcardDirectories, closeFileWatcher)); clearMap(state.allWatchedPackageJsonFiles, (watchedPacageJsonFiles) => clearMap(watchedPacageJsonFiles, closeFileWatcher)); } function createSolutionBuilderWorker(watch, hostOrHostWithWatch, rootNames, options, baseWatchOptions) { const state = createSolutionBuilderState(watch, hostOrHostWithWatch, rootNames, options, baseWatchOptions); return { build: (project, cancellationToken, writeFile2, getCustomTransformers) => build(state, project, cancellationToken, writeFile2, getCustomTransformers), clean: (project) => clean(state, project), buildReferences: (project, cancellationToken, writeFile2, getCustomTransformers) => build(state, project, cancellationToken, writeFile2, getCustomTransformers, true), cleanReferences: (project) => clean(state, project, true), getNextInvalidatedProject: (cancellationToken) => { setupInitialBuild(state, cancellationToken); return getNextInvalidatedProject(state, getBuildOrder(state), false); }, getBuildOrder: () => getBuildOrder(state), getUpToDateStatusOfProject: (project) => { const configFileName = resolveProjectName(state, project); const configFilePath = toResolvedConfigFilePath(state, configFileName); return getUpToDateStatus(state, parseConfigFile(state, configFileName, configFilePath), configFilePath); }, invalidateProject: (configFilePath, updateLevel) => invalidateProject(state, configFilePath, updateLevel || 0), close: () => stopWatching(state) }; } function relName(state, path) { return convertToRelativePath(path, state.compilerHost.getCurrentDirectory(), state.compilerHost.getCanonicalFileName); } function reportStatus(state, message, ...args) { state.host.reportSolutionBuilderStatus(createCompilerDiagnostic(message, ...args)); } function reportWatchStatus(state, message, ...args) { var _a, _b; (_b = (_a = state.hostWithWatch).onWatchStatusChange) == null || _b.call(_a, createCompilerDiagnostic(message, ...args), state.host.getNewLine(), state.baseCompilerOptions); } function reportErrors({ host }, errors) { errors.forEach((err) => host.reportDiagnostic(err)); } function reportAndStoreErrors(state, proj, errors) { reportErrors(state, errors); state.projectErrorsReported.set(proj, true); if (errors.length) { state.diagnostics.set(proj, errors); } } function reportParseConfigFileDiagnostic(state, proj) { reportAndStoreErrors(state, proj, [state.configFileCache.get(proj)]); } function reportErrorSummary(state, buildOrder) { if (!state.needsSummary) return; state.needsSummary = false; const canReportSummary = state.watch || !!state.host.reportErrorSummary; const { diagnostics } = state; let totalErrors = 0; let filesInError = []; if (isCircularBuildOrder(buildOrder)) { reportBuildQueue(state, buildOrder.buildOrder); reportErrors(state, buildOrder.circularDiagnostics); if (canReportSummary) totalErrors += getErrorCountForSummary(buildOrder.circularDiagnostics); if (canReportSummary) filesInError = [...filesInError, ...getFilesInErrorForSummary(buildOrder.circularDiagnostics)]; } else { buildOrder.forEach((project) => { const projectPath = toResolvedConfigFilePath(state, project); if (!state.projectErrorsReported.has(projectPath)) { reportErrors(state, diagnostics.get(projectPath) || emptyArray); } }); if (canReportSummary) diagnostics.forEach((singleProjectErrors) => totalErrors += getErrorCountForSummary(singleProjectErrors)); if (canReportSummary) diagnostics.forEach((singleProjectErrors) => [...filesInError, ...getFilesInErrorForSummary(singleProjectErrors)]); } if (state.watch) { reportWatchStatus(state, getWatchErrorSummaryDiagnosticMessage(totalErrors), totalErrors); } else if (state.host.reportErrorSummary) { state.host.reportErrorSummary(totalErrors, filesInError); } } function reportBuildQueue(state, buildQueue) { if (state.options.verbose) { reportStatus(state, Diagnostics.Projects_in_this_build_Colon_0, buildQueue.map((s) => `\r * ` + relName(state, s)).join("")); } } function reportUpToDateStatus(state, configFileName, status) { switch (status.type) { case 5: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_output_1_is_older_than_input_2, relName(state, configFileName), relName(state, status.outOfDateOutputFileName), relName(state, status.newerInputFileName)); case 6: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_output_1_is_older_than_input_2, relName(state, configFileName), relName(state, status.outOfDateOutputFileName), relName(state, status.newerProjectName)); case 3: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_output_file_1_does_not_exist, relName(state, configFileName), relName(state, status.missingOutputFileName)); case 4: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_there_was_error_reading_file_1, relName(state, configFileName), relName(state, status.fileName)); case 7: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_buildinfo_file_1_indicates_that_some_of_the_changes_were_not_emitted, relName(state, configFileName), relName(state, status.buildInfoFile)); case 8: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_buildinfo_file_1_indicates_that_program_needs_to_report_errors, relName(state, configFileName), relName(state, status.buildInfoFile)); case 9: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_buildinfo_file_1_indicates_there_is_change_in_compilerOptions, relName(state, configFileName), relName(state, status.buildInfoFile)); case 10: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_buildinfo_file_1_indicates_that_file_2_was_root_file_of_compilation_but_not_any_more, relName(state, configFileName), relName(state, status.buildInfoFile), relName(state, status.inputFile)); case 1: if (status.newestInputFileTime !== undefined) { return reportStatus(state, Diagnostics.Project_0_is_up_to_date_because_newest_input_1_is_older_than_output_2, relName(state, configFileName), relName(state, status.newestInputFileName || ""), relName(state, status.oldestOutputFileName || "")); } break; case 2: return reportStatus(state, Diagnostics.Project_0_is_up_to_date_with_d_ts_files_from_its_dependencies, relName(state, configFileName)); case 15: return reportStatus(state, Diagnostics.Project_0_is_up_to_date_but_needs_to_update_timestamps_of_output_files_that_are_older_than_input_files, relName(state, configFileName)); case 11: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_its_dependency_1_is_out_of_date, relName(state, configFileName), relName(state, status.upstreamProjectName)); case 12: return reportStatus(state, status.upstreamProjectBlocked ? Diagnostics.Project_0_can_t_be_built_because_its_dependency_1_was_not_built : Diagnostics.Project_0_can_t_be_built_because_its_dependency_1_has_errors, relName(state, configFileName), relName(state, status.upstreamProjectName)); case 0: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_1, relName(state, configFileName), status.reason); case 14: return reportStatus(state, Diagnostics.Project_0_is_out_of_date_because_output_for_it_was_generated_with_version_1_that_differs_with_current_version_2, relName(state, configFileName), status.version, version); case 17: return reportStatus(state, Diagnostics.Project_0_is_being_forcibly_rebuilt, relName(state, configFileName)); case 16: case 13: break; default: assertType(status); } } function verboseReportProjectStatus(state, configFileName, status) { if (state.options.verbose) { reportUpToDateStatus(state, configFileName, status); } } var StatisticType = /* @__PURE__ */ ((StatisticType2) => { StatisticType2[StatisticType2["time"] = 0] = "time"; StatisticType2[StatisticType2["count"] = 1] = "count"; StatisticType2[StatisticType2["memory"] = 2] = "memory"; return StatisticType2; })(StatisticType || {}); function countLines(program) { const counts2 = getCountsMap(); forEach(program.getSourceFiles(), (file) => { const key = getCountKey(program, file); const lineCount = getLineStarts(file).length; counts2.set(key, counts2.get(key) + lineCount); }); return counts2; } function getCountsMap() { const counts2 = /* @__PURE__ */ new Map; counts2.set("Library", 0); counts2.set("Definitions", 0); counts2.set("TypeScript", 0); counts2.set("JavaScript", 0); counts2.set("JSON", 0); counts2.set("Other", 0); return counts2; } function getCountKey(program, file) { if (program.isSourceFileDefaultLibrary(file)) { return "Library"; } else if (file.isDeclarationFile) { return "Definitions"; } const path = file.path; if (fileExtensionIsOneOf(path, supportedTSExtensionsFlat)) { return "TypeScript"; } else if (fileExtensionIsOneOf(path, supportedJSExtensionsFlat)) { return "JavaScript"; } else if (fileExtensionIs(path, ".json")) { return "JSON"; } else { return "Other"; } } function updateReportDiagnostic(sys2, existing, options) { return shouldBePretty(sys2, options) ? createDiagnosticReporter(sys2, true) : existing; } function defaultIsPretty(sys2) { if (sys2.getEnvironmentVariable("NO_COLOR")) { return false; } if (sys2.getEnvironmentVariable("FORCE_COLOR")) { return true; } return !!sys2.writeOutputIsTTY && sys2.writeOutputIsTTY(); } function shouldBePretty(sys2, options) { if (!options || typeof options.pretty === "undefined") { return defaultIsPretty(sys2); } return options.pretty; } function getOptionsForHelp(commandLine) { const helpOptions = filter(optionDeclarations.concat(tscBuildOption), (option) => option.showInHelp !== false); return commandLine.options.all ? toSorted(helpOptions, (a, b) => compareStringsCaseInsensitive(a.name, b.name)) : filter(helpOptions, (v) => !!v.showInSimplifiedHelpView); } function printVersion(sys2) { sys2.write(getDiagnosticText(Diagnostics.Version_0, version) + sys2.newLine); } function createColors(sys2) { const showColors = defaultIsPretty(sys2); if (!showColors) { return { bold: (str) => str, blue: (str) => str, blueBackground: (str) => str, brightWhite: (str) => str }; } function bold(str) { return `\x1B[1m${str}\x1B[22m`; } const isWindows = sys2.getEnvironmentVariable("OS") && sys2.getEnvironmentVariable("OS").toLowerCase().includes("windows"); const isWindowsTerminal = sys2.getEnvironmentVariable("WT_SESSION"); const isVSCode = sys2.getEnvironmentVariable("TERM_PROGRAM") && sys2.getEnvironmentVariable("TERM_PROGRAM") === "vscode"; function blue(str) { if (isWindows && !isWindowsTerminal && !isVSCode) { return brightWhite(str); } return `\x1B[94m${str}\x1B[39m`; } const supportsRicherColors = sys2.getEnvironmentVariable("COLORTERM") === "truecolor" || sys2.getEnvironmentVariable("TERM") === "xterm-256color"; function blueBackground(str) { if (supportsRicherColors) { return `\x1B[48;5;68m${str}\x1B[39;49m`; } else { return `\x1B[44m${str}\x1B[39;49m`; } } function brightWhite(str) { return `\x1B[97m${str}\x1B[39m`; } return { bold, blue, brightWhite, blueBackground }; } function getDisplayNameTextOfOption(option) { return `--${option.name}${option.shortName ? `, -${option.shortName}` : ""}`; } function generateOptionOutput(sys2, option, rightAlignOfLeft, leftAlignOfRight) { var _a; const text = []; const colors = createColors(sys2); const name = getDisplayNameTextOfOption(option); const valueCandidates = getValueCandidate(option); const defaultValueDescription = typeof option.defaultValueDescription === "object" ? getDiagnosticText(option.defaultValueDescription) : formatDefaultValue(option.defaultValueDescription, option.type === "list" || option.type === "listOrElement" ? option.element.type : option.type); const terminalWidth = ((_a = sys2.getWidthOfTerminal) == null ? undefined : _a.call(sys2)) ?? 0; if (terminalWidth >= 80) { let description3 = ""; if (option.description) { description3 = getDiagnosticText(option.description); } text.push(...getPrettyOutput(name, description3, rightAlignOfLeft, leftAlignOfRight, terminalWidth, true), sys2.newLine); if (showAdditionalInfoOutput(valueCandidates, option)) { if (valueCandidates) { text.push(...getPrettyOutput(valueCandidates.valueType, valueCandidates.possibleValues, rightAlignOfLeft, leftAlignOfRight, terminalWidth, false), sys2.newLine); } if (defaultValueDescription) { text.push(...getPrettyOutput(getDiagnosticText(Diagnostics.default_Colon), defaultValueDescription, rightAlignOfLeft, leftAlignOfRight, terminalWidth, false), sys2.newLine); } } text.push(sys2.newLine); } else { text.push(colors.blue(name), sys2.newLine); if (option.description) { const description3 = getDiagnosticText(option.description); text.push(description3); } text.push(sys2.newLine); if (showAdditionalInfoOutput(valueCandidates, option)) { if (valueCandidates) { text.push(`${valueCandidates.valueType} ${valueCandidates.possibleValues}`); } if (defaultValueDescription) { if (valueCandidates) text.push(sys2.newLine); const diagType = getDiagnosticText(Diagnostics.default_Colon); text.push(`${diagType} ${defaultValueDescription}`); } text.push(sys2.newLine); } text.push(sys2.newLine); } return text; function formatDefaultValue(defaultValue, type) { return defaultValue !== undefined && typeof type === "object" ? arrayFrom(type.entries()).filter(([, value]) => value === defaultValue).map(([name2]) => name2).join("/") : String(defaultValue); } function showAdditionalInfoOutput(valueCandidates2, option2) { const ignoreValues = ["string"]; const ignoredDescriptions = [undefined, "false", "n/a"]; const defaultValueDescription2 = option2.defaultValueDescription; if (option2.category === Diagnostics.Command_line_Options) return false; if (contains(ignoreValues, valueCandidates2 == null ? undefined : valueCandidates2.possibleValues) && contains(ignoredDescriptions, defaultValueDescription2)) { return false; } return true; } function getPrettyOutput(left, right, rightAlignOfLeft2, leftAlignOfRight2, terminalWidth2, colorLeft) { const res = []; let isFirstLine = true; let remainRight = right; const rightCharacterNumber = terminalWidth2 - leftAlignOfRight2; while (remainRight.length > 0) { let curLeft = ""; if (isFirstLine) { curLeft = left.padStart(rightAlignOfLeft2); curLeft = curLeft.padEnd(leftAlignOfRight2); curLeft = colorLeft ? colors.blue(curLeft) : curLeft; } else { curLeft = "".padStart(leftAlignOfRight2); } const curRight = remainRight.substr(0, rightCharacterNumber); remainRight = remainRight.slice(rightCharacterNumber); res.push(`${curLeft}${curRight}`); isFirstLine = false; } return res; } function getValueCandidate(option2) { if (option2.type === "object") { return; } return { valueType: getValueType(option2), possibleValues: getPossibleValues(option2) }; function getValueType(option3) { Debug.assert(option3.type !== "listOrElement"); switch (option3.type) { case "string": case "number": case "boolean": return getDiagnosticText(Diagnostics.type_Colon); case "list": return getDiagnosticText(Diagnostics.one_or_more_Colon); default: return getDiagnosticText(Diagnostics.one_of_Colon); } } function getPossibleValues(option3) { let possibleValues; switch (option3.type) { case "string": case "number": case "boolean": possibleValues = option3.type; break; case "list": case "listOrElement": possibleValues = getPossibleValues(option3.element); break; case "object": possibleValues = ""; break; default: const inverted = {}; option3.type.forEach((value, name2) => { var _a2; if (!((_a2 = option3.deprecatedKeys) == null ? undefined : _a2.has(name2))) { (inverted[value] || (inverted[value] = [])).push(name2); } }); return Object.entries(inverted).map(([, synonyms]) => synonyms.join("/")).join(", "); } return possibleValues; } } } function generateGroupOptionOutput(sys2, optionsList) { let maxLength2 = 0; for (const option of optionsList) { const curLength = getDisplayNameTextOfOption(option).length; maxLength2 = maxLength2 > curLength ? maxLength2 : curLength; } const rightAlignOfLeftPart = maxLength2 + 2; const leftAlignOfRightPart = rightAlignOfLeftPart + 2; let lines = []; for (const option of optionsList) { const tmp = generateOptionOutput(sys2, option, rightAlignOfLeftPart, leftAlignOfRightPart); lines = [...lines, ...tmp]; } if (lines[lines.length - 2] !== sys2.newLine) { lines.push(sys2.newLine); } return lines; } function generateSectionOptionsOutput(sys2, sectionName, options, subCategory, beforeOptionsDescription, afterOptionsDescription) { let res = []; res.push(createColors(sys2).bold(sectionName) + sys2.newLine + sys2.newLine); if (beforeOptionsDescription) { res.push(beforeOptionsDescription + sys2.newLine + sys2.newLine); } if (!subCategory) { res = [...res, ...generateGroupOptionOutput(sys2, options)]; if (afterOptionsDescription) { res.push(afterOptionsDescription + sys2.newLine + sys2.newLine); } return res; } const categoryMap = /* @__PURE__ */ new Map; for (const option of options) { if (!option.category) { continue; } const curCategory = getDiagnosticText(option.category); const optionsOfCurCategory = categoryMap.get(curCategory) ?? []; optionsOfCurCategory.push(option); categoryMap.set(curCategory, optionsOfCurCategory); } categoryMap.forEach((value, key) => { res.push(`### ${key}${sys2.newLine}${sys2.newLine}`); res = [...res, ...generateGroupOptionOutput(sys2, value)]; }); if (afterOptionsDescription) { res.push(afterOptionsDescription + sys2.newLine + sys2.newLine); } return res; } function printEasyHelp(sys2, simpleOptions) { const colors = createColors(sys2); let output = [...getHeader(sys2, `${getDiagnosticText(Diagnostics.tsc_Colon_The_TypeScript_Compiler)} - ${getDiagnosticText(Diagnostics.Version_0, version)}`)]; output.push(colors.bold(getDiagnosticText(Diagnostics.COMMON_COMMANDS)) + sys2.newLine + sys2.newLine); example("tsc", Diagnostics.Compiles_the_current_project_tsconfig_json_in_the_working_directory); example("tsc app.ts util.ts", Diagnostics.Ignoring_tsconfig_json_compiles_the_specified_files_with_default_compiler_options); example("tsc -b", Diagnostics.Build_a_composite_project_in_the_working_directory); example("tsc --init", Diagnostics.Creates_a_tsconfig_json_with_the_recommended_settings_in_the_working_directory); example("tsc -p ./path/to/tsconfig.json", Diagnostics.Compiles_the_TypeScript_project_located_at_the_specified_path); example("tsc --help --all", Diagnostics.An_expanded_version_of_this_information_showing_all_possible_compiler_options); example(["tsc --noEmit", "tsc --target esnext"], Diagnostics.Compiles_the_current_project_with_additional_settings); const cliCommands = simpleOptions.filter((opt) => opt.isCommandLineOnly || opt.category === Diagnostics.Command_line_Options); const configOpts = simpleOptions.filter((opt) => !contains(cliCommands, opt)); output = [ ...output, ...generateSectionOptionsOutput(sys2, getDiagnosticText(Diagnostics.COMMAND_LINE_FLAGS), cliCommands, false, undefined, undefined), ...generateSectionOptionsOutput(sys2, getDiagnosticText(Diagnostics.COMMON_COMPILER_OPTIONS), configOpts, false, undefined, formatMessage(Diagnostics.You_can_learn_about_all_of_the_compiler_options_at_0, "https://aka.ms/tsc")) ]; for (const line of output) { sys2.write(line); } function example(ex, desc) { const examples = typeof ex === "string" ? [ex] : ex; for (const example2 of examples) { output.push(" " + colors.blue(example2) + sys2.newLine); } output.push(" " + getDiagnosticText(desc) + sys2.newLine + sys2.newLine); } } function printAllHelp(sys2, compilerOptions, buildOptions, watchOptions) { let output = [...getHeader(sys2, `${getDiagnosticText(Diagnostics.tsc_Colon_The_TypeScript_Compiler)} - ${getDiagnosticText(Diagnostics.Version_0, version)}`)]; output = [...output, ...generateSectionOptionsOutput(sys2, getDiagnosticText(Diagnostics.ALL_COMPILER_OPTIONS), compilerOptions, true, undefined, formatMessage(Diagnostics.You_can_learn_about_all_of_the_compiler_options_at_0, "https://aka.ms/tsc"))]; output = [...output, ...generateSectionOptionsOutput(sys2, getDiagnosticText(Diagnostics.WATCH_OPTIONS), filter(watchOptions, (option) => option.showInHelp !== false), false, getDiagnosticText(Diagnostics.Including_watch_w_will_start_watching_the_current_project_for_the_file_changes_Once_set_you_can_config_watch_mode_with_Colon))]; output = [...output, ...generateSectionOptionsOutput(sys2, getDiagnosticText(Diagnostics.BUILD_OPTIONS), filter(buildOptions, (option) => option !== tscBuildOption && option.showInHelp !== false), false, formatMessage(Diagnostics.Using_build_b_will_make_tsc_behave_more_like_a_build_orchestrator_than_a_compiler_This_is_used_to_trigger_building_composite_projects_which_you_can_learn_more_about_at_0, "https://aka.ms/tsc-composite-builds"))]; for (const line of output) { sys2.write(line); } } function printBuildHelp(sys2, buildOptions) { let output = [...getHeader(sys2, `${getDiagnosticText(Diagnostics.tsc_Colon_The_TypeScript_Compiler)} - ${getDiagnosticText(Diagnostics.Version_0, version)}`)]; output = [...output, ...generateSectionOptionsOutput(sys2, getDiagnosticText(Diagnostics.BUILD_OPTIONS), filter(buildOptions, (option) => option !== tscBuildOption && option.showInHelp !== false), false, formatMessage(Diagnostics.Using_build_b_will_make_tsc_behave_more_like_a_build_orchestrator_than_a_compiler_This_is_used_to_trigger_building_composite_projects_which_you_can_learn_more_about_at_0, "https://aka.ms/tsc-composite-builds"))]; for (const line of output) { sys2.write(line); } } function getHeader(sys2, message) { var _a; const colors = createColors(sys2); const header = []; const terminalWidth = ((_a = sys2.getWidthOfTerminal) == null ? undefined : _a.call(sys2)) ?? 0; const tsIconLength = 5; const tsIconFirstLine = colors.blueBackground("".padStart(tsIconLength)); const tsIconSecondLine = colors.blueBackground(colors.brightWhite("TS ".padStart(tsIconLength))); if (terminalWidth >= message.length + tsIconLength) { const rightAlign = terminalWidth > 120 ? 120 : terminalWidth; const leftAlign = rightAlign - tsIconLength; header.push(message.padEnd(leftAlign) + tsIconFirstLine + sys2.newLine); header.push("".padStart(leftAlign) + tsIconSecondLine + sys2.newLine); } else { header.push(message + sys2.newLine); header.push(sys2.newLine); } return header; } function printHelp(sys2, commandLine) { if (!commandLine.options.all) { printEasyHelp(sys2, getOptionsForHelp(commandLine)); } else { printAllHelp(sys2, getOptionsForHelp(commandLine), optionsForBuild, optionsForWatch); } } function executeCommandLineWorker(sys2, cb, commandLine) { let reportDiagnostic = createDiagnosticReporter(sys2); let configFileName; if (commandLine.options.locale) { validateLocaleAndSetLanguage(commandLine.options.locale, sys2, commandLine.errors); } if (commandLine.errors.length > 0) { commandLine.errors.forEach(reportDiagnostic); return sys2.exit(1); } if (commandLine.options.init) { writeConfigFile(sys2, reportDiagnostic, commandLine.options); return sys2.exit(0); } if (commandLine.options.version) { printVersion(sys2); return sys2.exit(0); } if (commandLine.options.help || commandLine.options.all) { printHelp(sys2, commandLine); return sys2.exit(0); } if (commandLine.options.watch && commandLine.options.listFilesOnly) { reportDiagnostic(createCompilerDiagnostic(Diagnostics.Options_0_and_1_cannot_be_combined, "watch", "listFilesOnly")); return sys2.exit(1); } if (commandLine.options.project) { if (commandLine.fileNames.length !== 0) { reportDiagnostic(createCompilerDiagnostic(Diagnostics.Option_project_cannot_be_mixed_with_source_files_on_a_command_line)); return sys2.exit(1); } const fileOrDirectory = normalizePath(commandLine.options.project); if (!fileOrDirectory || sys2.directoryExists(fileOrDirectory)) { configFileName = combinePaths(fileOrDirectory, "tsconfig.json"); if (!sys2.fileExists(configFileName)) { reportDiagnostic(createCompilerDiagnostic(Diagnostics.Cannot_find_a_tsconfig_json_file_at_the_specified_directory_Colon_0, commandLine.options.project)); return sys2.exit(1); } } else { configFileName = fileOrDirectory; if (!sys2.fileExists(configFileName)) { reportDiagnostic(createCompilerDiagnostic(Diagnostics.The_specified_path_does_not_exist_Colon_0, commandLine.options.project)); return sys2.exit(1); } } } else if (!commandLine.options.ignoreConfig || commandLine.fileNames.length === 0) { const searchPath = normalizePath(sys2.getCurrentDirectory()); configFileName = findConfigFile(searchPath, (fileName) => sys2.fileExists(fileName)); if (commandLine.fileNames.length !== 0) { if (configFileName) { reportDiagnostic(createCompilerDiagnostic(Diagnostics.tsconfig_json_is_present_but_will_not_be_loaded_if_files_are_specified_on_commandline_Use_ignoreConfig_to_skip_this_error)); return sys2.exit(1); } } else if (!configFileName) { if (commandLine.options.showConfig) { reportDiagnostic(createCompilerDiagnostic(Diagnostics.Cannot_find_a_tsconfig_json_file_at_the_current_directory_Colon_0, normalizePath(sys2.getCurrentDirectory()))); } else { printVersion(sys2); printHelp(sys2, commandLine); } return sys2.exit(1); } } const currentDirectory = sys2.getCurrentDirectory(); const commandLineOptions = convertToOptionsWithAbsolutePaths(commandLine.options, (fileName) => getNormalizedAbsolutePath(fileName, currentDirectory)); if (configFileName) { const extendedConfigCache = /* @__PURE__ */ new Map; const configParseResult = parseConfigFileWithSystem(configFileName, commandLineOptions, extendedConfigCache, commandLine.watchOptions, sys2, reportDiagnostic); if (commandLineOptions.showConfig) { if (configParseResult.errors.length !== 0) { reportDiagnostic = updateReportDiagnostic(sys2, reportDiagnostic, configParseResult.options); configParseResult.errors.forEach(reportDiagnostic); return sys2.exit(1); } sys2.write(JSON.stringify(convertToTSConfig(configParseResult, configFileName, sys2), null, 4) + sys2.newLine); return sys2.exit(0); } reportDiagnostic = updateReportDiagnostic(sys2, reportDiagnostic, configParseResult.options); if (isWatchSet(configParseResult.options)) { if (reportWatchModeWithoutSysSupport(sys2, reportDiagnostic)) return; return createWatchOfConfigFile(sys2, cb, reportDiagnostic, configParseResult, commandLineOptions, commandLine.watchOptions, extendedConfigCache); } else if (isIncrementalCompilation(configParseResult.options)) { performIncrementalCompilation2(sys2, cb, reportDiagnostic, configParseResult); } else { performCompilation(sys2, cb, reportDiagnostic, configParseResult); } } else { if (commandLineOptions.showConfig) { sys2.write(JSON.stringify(convertToTSConfig(commandLine, combinePaths(currentDirectory, "tsconfig.json"), sys2), null, 4) + sys2.newLine); return sys2.exit(0); } reportDiagnostic = updateReportDiagnostic(sys2, reportDiagnostic, commandLineOptions); if (isWatchSet(commandLineOptions)) { if (reportWatchModeWithoutSysSupport(sys2, reportDiagnostic)) return; return createWatchOfFilesAndCompilerOptions(sys2, cb, reportDiagnostic, commandLine.fileNames, commandLineOptions, commandLine.watchOptions); } else if (isIncrementalCompilation(commandLineOptions)) { performIncrementalCompilation2(sys2, cb, reportDiagnostic, { ...commandLine, options: commandLineOptions }); } else { performCompilation(sys2, cb, reportDiagnostic, { ...commandLine, options: commandLineOptions }); } } } function isBuildCommand(commandLineArgs) { if (commandLineArgs.length > 0 && commandLineArgs[0].charCodeAt(0) === 45) { const firstOption = commandLineArgs[0].slice(commandLineArgs[0].charCodeAt(1) === 45 ? 2 : 1).toLowerCase(); return firstOption === tscBuildOption.name || firstOption === tscBuildOption.shortName; } return false; } function executeCommandLine(system, cb, commandLineArgs) { if (isBuildCommand(commandLineArgs)) { const { buildOptions, watchOptions, projects, errors } = parseBuildCommand(commandLineArgs); if (buildOptions.generateCpuProfile && system.enableCPUProfiler) { system.enableCPUProfiler(buildOptions.generateCpuProfile, () => performBuild(system, cb, buildOptions, watchOptions, projects, errors)); } else { return performBuild(system, cb, buildOptions, watchOptions, projects, errors); } } const commandLine = parseCommandLine(commandLineArgs, (path) => system.readFile(path)); if (commandLine.options.generateCpuProfile && system.enableCPUProfiler) { system.enableCPUProfiler(commandLine.options.generateCpuProfile, () => executeCommandLineWorker(system, cb, commandLine)); } else { return executeCommandLineWorker(system, cb, commandLine); } } function reportWatchModeWithoutSysSupport(sys2, reportDiagnostic) { if (!sys2.watchFile || !sys2.watchDirectory) { reportDiagnostic(createCompilerDiagnostic(Diagnostics.The_current_host_does_not_support_the_0_option, "--watch")); sys2.exit(1); return true; } return false; } var defaultJSDocParsingMode = 2; function performBuild(sys2, cb, buildOptions, watchOptions, projects, errors) { const reportDiagnostic = updateReportDiagnostic(sys2, createDiagnosticReporter(sys2), buildOptions); if (buildOptions.locale) { validateLocaleAndSetLanguage(buildOptions.locale, sys2, errors); } if (errors.length > 0) { errors.forEach(reportDiagnostic); return sys2.exit(1); } if (buildOptions.help) { printVersion(sys2); printBuildHelp(sys2, buildOpts); return sys2.exit(0); } if (projects.length === 0) { printVersion(sys2); printBuildHelp(sys2, buildOpts); return sys2.exit(0); } if (!sys2.getModifiedTime || !sys2.setModifiedTime || buildOptions.clean && !sys2.deleteFile) { reportDiagnostic(createCompilerDiagnostic(Diagnostics.The_current_host_does_not_support_the_0_option, "--build")); return sys2.exit(1); } if (buildOptions.watch) { if (reportWatchModeWithoutSysSupport(sys2, reportDiagnostic)) return; const buildHost2 = createSolutionBuilderWithWatchHost(sys2, undefined, reportDiagnostic, createBuilderStatusReporter(sys2, shouldBePretty(sys2, buildOptions)), createWatchStatusReporter2(sys2, buildOptions)); buildHost2.jsDocParsingMode = defaultJSDocParsingMode; const solutionPerformance2 = enableSolutionPerformance(sys2, buildOptions); updateSolutionBuilderHost(sys2, cb, buildHost2, solutionPerformance2); const onWatchStatusChange = buildHost2.onWatchStatusChange; let reportBuildStatistics = false; buildHost2.onWatchStatusChange = (d, newLine, options, errorCount) => { onWatchStatusChange == null || onWatchStatusChange(d, newLine, options, errorCount); if (reportBuildStatistics && (d.code === Diagnostics.Found_0_errors_Watching_for_file_changes.code || d.code === Diagnostics.Found_1_error_Watching_for_file_changes.code)) { reportSolutionBuilderTimes(builder2, solutionPerformance2); } }; const builder2 = createSolutionBuilderWithWatch(buildHost2, projects, buildOptions, watchOptions); builder2.build(); reportSolutionBuilderTimes(builder2, solutionPerformance2); reportBuildStatistics = true; return builder2; } const buildHost = createSolutionBuilderHost(sys2, undefined, reportDiagnostic, createBuilderStatusReporter(sys2, shouldBePretty(sys2, buildOptions)), createReportErrorSummary(sys2, buildOptions)); buildHost.jsDocParsingMode = defaultJSDocParsingMode; const solutionPerformance = enableSolutionPerformance(sys2, buildOptions); updateSolutionBuilderHost(sys2, cb, buildHost, solutionPerformance); const builder = createSolutionBuilder(buildHost, projects, buildOptions); const exitStatus = buildOptions.clean ? builder.clean() : builder.build(); reportSolutionBuilderTimes(builder, solutionPerformance); dumpTracingLegend(); return sys2.exit(exitStatus); } function createReportErrorSummary(sys2, options) { return shouldBePretty(sys2, options) ? (errorCount, filesInError) => sys2.write(getErrorSummaryText(errorCount, filesInError, sys2.newLine, sys2)) : undefined; } function performCompilation(sys2, cb, reportDiagnostic, config) { const { fileNames, options, projectReferences } = config; const host = createCompilerHostWorker(options, undefined, sys2); host.jsDocParsingMode = defaultJSDocParsingMode; const currentDirectory = host.getCurrentDirectory(); const getCanonicalFileName = createGetCanonicalFileName(host.useCaseSensitiveFileNames()); changeCompilerHostLikeToUseCache(host, (fileName) => toPath(fileName, currentDirectory, getCanonicalFileName)); enableStatisticsAndTracing(sys2, options, false); const programOptions = { rootNames: fileNames, options, projectReferences, host, configFileParsingDiagnostics: getConfigFileParsingDiagnostics(config) }; const program = createProgram(programOptions); const exitStatus = emitFilesAndReportErrorsAndGetExitStatus(program, reportDiagnostic, (s) => sys2.write(s + sys2.newLine), createReportErrorSummary(sys2, options)); reportStatistics(sys2, program, undefined); cb(program); return sys2.exit(exitStatus); } function performIncrementalCompilation2(sys2, cb, reportDiagnostic, config) { const { options, fileNames, projectReferences } = config; enableStatisticsAndTracing(sys2, options, false); const host = createIncrementalCompilerHost(options, sys2); host.jsDocParsingMode = defaultJSDocParsingMode; const exitStatus = performIncrementalCompilation({ host, system: sys2, rootNames: fileNames, options, configFileParsingDiagnostics: getConfigFileParsingDiagnostics(config), projectReferences, reportDiagnostic, reportErrorSummary: createReportErrorSummary(sys2, options), afterProgramEmitAndDiagnostics: (builderProgram) => { reportStatistics(sys2, builderProgram.getProgram(), undefined); cb(builderProgram); } }); return sys2.exit(exitStatus); } function updateSolutionBuilderHost(sys2, cb, buildHost, solutionPerformance) { updateCreateProgram(sys2, buildHost, true); buildHost.afterProgramEmitAndDiagnostics = (program) => { reportStatistics(sys2, program.getProgram(), solutionPerformance); cb(program); }; } function updateCreateProgram(sys2, host, isBuildMode) { const compileUsingBuilder = host.createProgram; host.createProgram = (rootNames, options, host2, oldProgram, configFileParsingDiagnostics, projectReferences) => { Debug.assert(rootNames !== undefined || options === undefined && !!oldProgram); if (options !== undefined) { enableStatisticsAndTracing(sys2, options, isBuildMode); } return compileUsingBuilder(rootNames, options, host2, oldProgram, configFileParsingDiagnostics, projectReferences); }; } function updateWatchCompilationHost(sys2, cb, watchCompilerHost) { watchCompilerHost.jsDocParsingMode = defaultJSDocParsingMode; updateCreateProgram(sys2, watchCompilerHost, false); const emitFilesUsingBuilder = watchCompilerHost.afterProgramCreate; watchCompilerHost.afterProgramCreate = (builderProgram) => { emitFilesUsingBuilder(builderProgram); reportStatistics(sys2, builderProgram.getProgram(), undefined); cb(builderProgram); }; } function createWatchStatusReporter2(sys2, options) { return createWatchStatusReporter(sys2, shouldBePretty(sys2, options)); } function createWatchOfConfigFile(system, cb, reportDiagnostic, configParseResult, optionsToExtend, watchOptionsToExtend, extendedConfigCache) { const watchCompilerHost = createWatchCompilerHostOfConfigFile({ configFileName: configParseResult.options.configFilePath, optionsToExtend, watchOptionsToExtend, system, reportDiagnostic, reportWatchStatus: createWatchStatusReporter2(system, configParseResult.options) }); updateWatchCompilationHost(system, cb, watchCompilerHost); watchCompilerHost.configFileParsingResult = configParseResult; watchCompilerHost.extendedConfigCache = extendedConfigCache; return createWatchProgram(watchCompilerHost); } function createWatchOfFilesAndCompilerOptions(system, cb, reportDiagnostic, rootFiles, options, watchOptions) { const watchCompilerHost = createWatchCompilerHostOfFilesAndCompilerOptions({ rootFiles, options, watchOptions, system, reportDiagnostic, reportWatchStatus: createWatchStatusReporter2(system, options) }); updateWatchCompilationHost(system, cb, watchCompilerHost); return createWatchProgram(watchCompilerHost); } function enableSolutionPerformance(system, options) { if (system === sys && options.extendedDiagnostics) { enable(); return createSolutionPerfomrance(); } } function createSolutionPerfomrance() { let statistics; return { addAggregateStatistic, forEachAggregateStatistics: forEachAggreateStatistics, clear: clear2 }; function addAggregateStatistic(s) { const existing = statistics == null ? undefined : statistics.get(s.name); if (existing) { if (existing.type === 2) existing.value = Math.max(existing.value, s.value); else existing.value += s.value; } else { (statistics ?? (statistics = /* @__PURE__ */ new Map)).set(s.name, s); } } function forEachAggreateStatistics(cb) { statistics == null || statistics.forEach(cb); } function clear2() { statistics = undefined; } } function reportSolutionBuilderTimes(builder, solutionPerformance) { if (!solutionPerformance) return; if (!isEnabled()) { sys.write(Diagnostics.Performance_timings_for_diagnostics_or_extendedDiagnostics_are_not_available_in_this_session_A_native_implementation_of_the_Web_Performance_API_could_not_be_found.message + ` `); return; } const statistics = []; statistics.push({ name: "Projects in scope", value: getBuildOrderFromAnyBuildOrder(builder.getBuildOrder()).length, type: 1 }); reportSolutionBuilderCountStatistic("SolutionBuilder::Projects built"); reportSolutionBuilderCountStatistic("SolutionBuilder::Timestamps only updates"); reportSolutionBuilderCountStatistic("SolutionBuilder::Bundles updated"); solutionPerformance.forEachAggregateStatistics((s) => { s.name = `Aggregate ${s.name}`; statistics.push(s); }); forEachMeasure((name, duration) => { if (isSolutionMarkOrMeasure(name)) statistics.push({ name: `${getNameFromSolutionBuilderMarkOrMeasure(name)} time`, value: duration, type: 0 }); }); disable(); enable(); solutionPerformance.clear(); reportAllStatistics(sys, statistics); function reportSolutionBuilderCountStatistic(name) { const value = getCount(name); if (value) { statistics.push({ name: getNameFromSolutionBuilderMarkOrMeasure(name), value, type: 1 }); } } function getNameFromSolutionBuilderMarkOrMeasure(name) { return name.replace("SolutionBuilder::", ""); } } function canReportDiagnostics(system, compilerOptions) { return system === sys && (compilerOptions.diagnostics || compilerOptions.extendedDiagnostics); } function canTrace(system, compilerOptions) { return system === sys && compilerOptions.generateTrace; } function enableStatisticsAndTracing(system, compilerOptions, isBuildMode) { if (canReportDiagnostics(system, compilerOptions)) { enable(system); } if (canTrace(system, compilerOptions)) { startTracing(isBuildMode ? "build" : "project", compilerOptions.generateTrace, compilerOptions.configFilePath); } } function isSolutionMarkOrMeasure(name) { return startsWith(name, "SolutionBuilder::"); } function reportStatistics(sys2, program, solutionPerformance) { var _a; const compilerOptions = program.getCompilerOptions(); if (canTrace(sys2, compilerOptions)) { (_a = tracing) == null || _a.stopTracing(); } let statistics; if (canReportDiagnostics(sys2, compilerOptions)) { statistics = []; const memoryUsed = sys2.getMemoryUsage ? sys2.getMemoryUsage() : -1; reportCountStatistic("Files", program.getSourceFiles().length); const lineCounts = countLines(program); if (compilerOptions.extendedDiagnostics) { for (const [key, value] of lineCounts.entries()) { reportCountStatistic("Lines of " + key, value); } } else { reportCountStatistic("Lines", reduceLeftIterator(lineCounts.values(), (sum, count) => sum + count, 0)); } reportCountStatistic("Identifiers", program.getIdentifierCount()); reportCountStatistic("Symbols", program.getSymbolCount()); reportCountStatistic("Types", program.getTypeCount()); reportCountStatistic("Instantiations", program.getInstantiationCount()); if (memoryUsed >= 0) { reportStatisticalValue({ name: "Memory used", value: memoryUsed, type: 2 }, true); } const isPerformanceEnabled = isEnabled(); const programTime = isPerformanceEnabled ? getDuration("Program") : 0; const bindTime = isPerformanceEnabled ? getDuration("Bind") : 0; const checkTime = isPerformanceEnabled ? getDuration("Check") : 0; const emitTime = isPerformanceEnabled ? getDuration("Emit") : 0; if (compilerOptions.extendedDiagnostics) { const caches = program.getRelationCacheSizes(); reportCountStatistic("Assignability cache size", caches.assignable); reportCountStatistic("Identity cache size", caches.identity); reportCountStatistic("Subtype cache size", caches.subtype); reportCountStatistic("Strict subtype cache size", caches.strictSubtype); if (isPerformanceEnabled) { forEachMeasure((name, duration) => { if (!isSolutionMarkOrMeasure(name)) reportTimeStatistic(`${name} time`, duration, true); }); } } else if (isPerformanceEnabled) { reportTimeStatistic("I/O read", getDuration("I/O Read"), true); reportTimeStatistic("I/O write", getDuration("I/O Write"), true); reportTimeStatistic("Parse time", programTime, true); reportTimeStatistic("Bind time", bindTime, true); reportTimeStatistic("Check time", checkTime, true); reportTimeStatistic("Emit time", emitTime, true); } if (isPerformanceEnabled) { reportTimeStatistic("Total time", programTime + bindTime + checkTime + emitTime, false); } reportAllStatistics(sys2, statistics); if (!isPerformanceEnabled) { sys2.write(Diagnostics.Performance_timings_for_diagnostics_or_extendedDiagnostics_are_not_available_in_this_session_A_native_implementation_of_the_Web_Performance_API_could_not_be_found.message + ` `); } else { if (solutionPerformance) { forEachMeasure((name) => { if (!isSolutionMarkOrMeasure(name)) clearMeasures(name); }); forEachMark((name) => { if (!isSolutionMarkOrMeasure(name)) clearMarks(name); }); } else { disable(); } } } function reportStatisticalValue(s, aggregate) { statistics.push(s); if (aggregate) solutionPerformance == null || solutionPerformance.addAggregateStatistic(s); } function reportCountStatistic(name, count) { reportStatisticalValue({ name, value: count, type: 1 }, true); } function reportTimeStatistic(name, time, aggregate) { reportStatisticalValue({ name, value: time, type: 0 }, aggregate); } } function reportAllStatistics(sys2, statistics) { let nameSize = 0; let valueSize = 0; for (const s of statistics) { if (s.name.length > nameSize) { nameSize = s.name.length; } const value = statisticValue(s); if (value.length > valueSize) { valueSize = value.length; } } for (const s of statistics) { sys2.write(`${s.name}:`.padEnd(nameSize + 2) + statisticValue(s).toString().padStart(valueSize) + sys2.newLine); } } function statisticValue(s) { switch (s.type) { case 1: return "" + s.value; case 0: return (s.value / 1000).toFixed(2) + "s"; case 2: return Math.round(s.value / 1000) + "K"; default: Debug.assertNever(s.type); } } function writeConfigFile(sys2, reportDiagnostic, options) { const currentDirectory = sys2.getCurrentDirectory(); const file = normalizePath(combinePaths(currentDirectory, "tsconfig.json")); if (sys2.fileExists(file)) { reportDiagnostic(createCompilerDiagnostic(Diagnostics.A_tsconfig_json_file_is_already_defined_at_Colon_0, file)); } else { sys2.writeFile(file, generateTSConfig(options, sys2.newLine)); const output = [sys2.newLine, ...getHeader(sys2, "Created a new tsconfig.json")]; output.push(`You can learn more at https://aka.ms/tsconfig` + sys2.newLine); for (const line of output) { sys2.write(line); } } return; } function syntacticResult(type, reportFallback = true) { return { type, reportFallback }; } var notImplemented2 = syntacticResult(undefined, false); var alreadyReported = syntacticResult(undefined, false); var failed = syntacticResult(undefined, true); function createSyntacticTypeNodeBuilder(options, resolver) { const strictNullChecks = getStrictOptionValue(options, "strictNullChecks"); return { serializeTypeOfDeclaration, serializeReturnTypeForSignature, serializeTypeOfExpression, serializeTypeOfAccessor, tryReuseExistingTypeNode(context, existing) { if (!resolver.canReuseTypeNode(context, existing)) { return; } return tryReuseExistingTypeNode(context, existing); } }; function reuseNode(context, node, range = node) { return node === undefined ? undefined : resolver.markNodeReuse(context, node.flags & 16 ? node : factory.cloneNode(node), range ?? node); } function tryReuseExistingTypeNode(context, existing) { const { finalizeBoundary, startRecoveryScope, hadError, markError } = resolver.createRecoveryBoundary(context); const transformed = visitNode(existing, visitExistingNodeTreeSymbols, isTypeNode); if (!finalizeBoundary()) { return; } context.approximateLength += existing.end - existing.pos; return transformed; function visitExistingNodeTreeSymbols(node) { if (hadError()) return node; const recover = startRecoveryScope(); const onExitNewScope = isNewScopeNode(node) ? resolver.enterNewScope(context, node) : undefined; const result = visitExistingNodeTreeSymbolsWorker(node); onExitNewScope == null || onExitNewScope(); if (hadError()) { if (isTypeNode(node) && !isTypePredicateNode(node)) { recover(); return resolver.serializeExistingTypeNode(context, node); } return node; } return result ? resolver.markNodeReuse(context, result, node) : undefined; } function tryVisitSimpleTypeNode(node) { const innerNode = skipTypeParentheses(node); switch (innerNode.kind) { case 184: return tryVisitTypeReference(innerNode); case 187: return tryVisitTypeQuery(innerNode); case 200: return tryVisitIndexedAccess(innerNode); case 199: const typeOperatorNode = innerNode; if (typeOperatorNode.operator === 143) { return tryVisitKeyOf(typeOperatorNode); } } return visitNode(node, visitExistingNodeTreeSymbols, isTypeNode); } function tryVisitIndexedAccess(node) { const resultObjectType = tryVisitSimpleTypeNode(node.objectType); if (resultObjectType === undefined) { return; } return factory.updateIndexedAccessTypeNode(node, resultObjectType, visitNode(node.indexType, visitExistingNodeTreeSymbols, isTypeNode)); } function tryVisitKeyOf(node) { Debug.assertEqual(node.operator, 143); const type = tryVisitSimpleTypeNode(node.type); if (type === undefined) { return; } return factory.updateTypeOperatorNode(node, type); } function tryVisitTypeQuery(node) { const { introducesError, node: exprName } = resolver.trackExistingEntityName(context, node.exprName); if (!introducesError) { return factory.updateTypeQueryNode(node, exprName, visitNodes2(node.typeArguments, visitExistingNodeTreeSymbols, isTypeNode)); } const serializedName = resolver.serializeTypeName(context, node.exprName, true); if (serializedName) { return resolver.markNodeReuse(context, serializedName, node.exprName); } } function tryVisitTypeReference(node) { if (resolver.canReuseTypeNode(context, node)) { const { introducesError, node: newName } = resolver.trackExistingEntityName(context, node.typeName); const typeArguments = visitNodes2(node.typeArguments, visitExistingNodeTreeSymbols, isTypeNode); if (!introducesError) { const updated = factory.updateTypeReferenceNode(node, newName, typeArguments); return resolver.markNodeReuse(context, updated, node); } else { const serializedName = resolver.serializeTypeName(context, node.typeName, false, typeArguments); if (serializedName) { return resolver.markNodeReuse(context, serializedName, node.typeName); } } } } function visitExistingNodeTreeSymbolsWorker(node) { var _a; if (isJSDocTypeExpression(node)) { return visitNode(node.type, visitExistingNodeTreeSymbols, isTypeNode); } if (isJSDocAllType(node) || node.kind === 320) { return factory.createKeywordTypeNode(133); } if (isJSDocUnknownType(node)) { return factory.createKeywordTypeNode(159); } if (isJSDocNullableType(node)) { return factory.createUnionTypeNode([visitNode(node.type, visitExistingNodeTreeSymbols, isTypeNode), factory.createLiteralTypeNode(factory.createNull())]); } if (isJSDocOptionalType(node)) { return factory.createUnionTypeNode([visitNode(node.type, visitExistingNodeTreeSymbols, isTypeNode), factory.createKeywordTypeNode(157)]); } if (isJSDocNonNullableType(node)) { return visitNode(node.type, visitExistingNodeTreeSymbols); } if (isJSDocVariadicType(node)) { return factory.createArrayTypeNode(visitNode(node.type, visitExistingNodeTreeSymbols, isTypeNode)); } if (isJSDocTypeLiteral(node)) { return factory.createTypeLiteralNode(map(node.jsDocPropertyTags, (t) => { const name = visitNode(isIdentifier(t.name) ? t.name : t.name.right, visitExistingNodeTreeSymbols, isIdentifier); const overrideTypeNode = resolver.getJsDocPropertyOverride(context, node, t); return factory.createPropertySignature(undefined, name, t.isBracketed || t.typeExpression && isJSDocOptionalType(t.typeExpression.type) ? factory.createToken(58) : undefined, overrideTypeNode || t.typeExpression && visitNode(t.typeExpression.type, visitExistingNodeTreeSymbols, isTypeNode) || factory.createKeywordTypeNode(133)); })); } if (isTypeReferenceNode(node) && isIdentifier(node.typeName) && node.typeName.escapedText === "") { return setOriginalNode(factory.createKeywordTypeNode(133), node); } if ((isExpressionWithTypeArguments(node) || isTypeReferenceNode(node)) && isJSDocIndexSignature(node)) { return factory.createTypeLiteralNode([factory.createIndexSignature(undefined, [factory.createParameterDeclaration(undefined, undefined, "x", undefined, visitNode(node.typeArguments[0], visitExistingNodeTreeSymbols, isTypeNode))], visitNode(node.typeArguments[1], visitExistingNodeTreeSymbols, isTypeNode))]); } if (isJSDocFunctionType(node)) { if (isJSDocConstructSignature(node)) { let newTypeNode; return factory.createConstructorTypeNode(undefined, visitNodes2(node.typeParameters, visitExistingNodeTreeSymbols, isTypeParameterDeclaration), mapDefined(node.parameters, (p, i) => p.name && isIdentifier(p.name) && p.name.escapedText === "new" ? (newTypeNode = p.type, undefined) : factory.createParameterDeclaration(undefined, getEffectiveDotDotDotForParameter(p), resolver.markNodeReuse(context, factory.createIdentifier(getNameForJSDocFunctionParameter(p, i)), p), factory.cloneNode(p.questionToken), visitNode(p.type, visitExistingNodeTreeSymbols, isTypeNode), undefined)), visitNode(newTypeNode || node.type, visitExistingNodeTreeSymbols, isTypeNode) || factory.createKeywordTypeNode(133)); } else { return factory.createFunctionTypeNode(visitNodes2(node.typeParameters, visitExistingNodeTreeSymbols, isTypeParameterDeclaration), map(node.parameters, (p, i) => factory.createParameterDeclaration(undefined, getEffectiveDotDotDotForParameter(p), resolver.markNodeReuse(context, factory.createIdentifier(getNameForJSDocFunctionParameter(p, i)), p), factory.cloneNode(p.questionToken), visitNode(p.type, visitExistingNodeTreeSymbols, isTypeNode), undefined)), visitNode(node.type, visitExistingNodeTreeSymbols, isTypeNode) || factory.createKeywordTypeNode(133)); } } if (isThisTypeNode(node)) { if (resolver.canReuseTypeNode(context, node)) { return node; } markError(); return node; } if (isTypeParameterDeclaration(node)) { const { node: newName } = resolver.trackExistingEntityName(context, node.name); return factory.updateTypeParameterDeclaration(node, visitNodes2(node.modifiers, visitExistingNodeTreeSymbols, isModifier), newName, visitNode(node.constraint, visitExistingNodeTreeSymbols, isTypeNode), visitNode(node.default, visitExistingNodeTreeSymbols, isTypeNode)); } if (isIndexedAccessTypeNode(node)) { const result = tryVisitIndexedAccess(node); if (!result) { markError(); return node; } return result; } if (isTypeReferenceNode(node)) { const result = tryVisitTypeReference(node); if (result) { return result; } markError(); return node; } if (isLiteralImportTypeNode(node)) { if (((_a = node.attributes) == null ? undefined : _a.token) === 132) { markError(); return node; } if (!resolver.canReuseTypeNode(context, node)) { return resolver.serializeExistingTypeNode(context, node); } const specifier = rewriteModuleSpecifier2(node, node.argument.literal); const literal = specifier === node.argument.literal ? reuseNode(context, node.argument.literal) : specifier; return factory.updateImportTypeNode(node, literal === node.argument.literal ? reuseNode(context, node.argument) : factory.createLiteralTypeNode(literal), visitNode(node.attributes, visitExistingNodeTreeSymbols, isImportAttributes), visitNode(node.qualifier, visitExistingNodeTreeSymbols, isEntityName), visitNodes2(node.typeArguments, visitExistingNodeTreeSymbols, isTypeNode), node.isTypeOf); } if (isNamedDeclaration(node) && node.name.kind === 168 && !resolver.hasLateBindableName(node)) { if (!hasDynamicName(node)) { return visitEachChild2(node, visitExistingNodeTreeSymbols); } if (resolver.shouldRemoveDeclaration(context, node)) { return; } } if (isFunctionLike(node) && !node.type || isPropertyDeclaration(node) && !node.type && !node.initializer || isPropertySignature(node) && !node.type && !node.initializer || isParameter(node) && !node.type && !node.initializer) { let visited = visitEachChild2(node, visitExistingNodeTreeSymbols); if (visited === node) { visited = resolver.markNodeReuse(context, factory.cloneNode(node), node); } visited.type = factory.createKeywordTypeNode(133); if (isParameter(node)) { visited.modifiers = undefined; } return visited; } if (isTypeQueryNode(node)) { const result = tryVisitTypeQuery(node); if (!result) { markError(); return node; } return result; } if (isComputedPropertyName(node) && isEntityNameExpression(node.expression)) { const { node: result, introducesError } = resolver.trackExistingEntityName(context, node.expression); if (!introducesError) { return factory.updateComputedPropertyName(node, result); } else { const computedPropertyNameType = resolver.serializeTypeOfExpression(context, node.expression); let literal; if (isLiteralTypeNode(computedPropertyNameType)) { literal = computedPropertyNameType.literal; } else { const evaluated = resolver.evaluateEntityNameExpression(node.expression); const literalNode = typeof evaluated.value === "string" ? factory.createStringLiteral(evaluated.value, undefined) : typeof evaluated.value === "number" ? factory.createNumericLiteral(evaluated.value, 0) : undefined; if (!literalNode) { if (isImportTypeNode(computedPropertyNameType)) { resolver.trackComputedName(context, node.expression); } return node; } literal = literalNode; } if (literal.kind === 11 && isIdentifierText(literal.text, getEmitScriptTarget(options))) { return factory.createIdentifier(literal.text); } if (literal.kind === 9 && !literal.text.startsWith("-")) { return literal; } return factory.updateComputedPropertyName(node, literal); } } if (isTypePredicateNode(node)) { let parameterName; if (isIdentifier(node.parameterName)) { const { node: result, introducesError } = resolver.trackExistingEntityName(context, node.parameterName); if (introducesError) markError(); parameterName = result; } else { parameterName = factory.cloneNode(node.parameterName); } return factory.updateTypePredicateNode(node, factory.cloneNode(node.assertsModifier), parameterName, visitNode(node.type, visitExistingNodeTreeSymbols, isTypeNode)); } if (isTupleTypeNode(node) || isTypeLiteralNode(node) || isMappedTypeNode(node)) { const visited = visitEachChild2(node, visitExistingNodeTreeSymbols); const clone2 = resolver.markNodeReuse(context, visited === node ? factory.cloneNode(node) : visited, node); const flags = getEmitFlags(clone2); setEmitFlags(clone2, flags | (context.flags & 1024 && isTypeLiteralNode(node) ? 0 : 1)); return clone2; } if (isStringLiteral(node) && !!(context.flags & 268435456) && !node.singleQuote) { const clone2 = factory.cloneNode(node); clone2.singleQuote = true; return clone2; } if (isConditionalTypeNode(node)) { const checkType = visitNode(node.checkType, visitExistingNodeTreeSymbols, isTypeNode); const disposeScope = resolver.enterNewScope(context, node); const extendType = visitNode(node.extendsType, visitExistingNodeTreeSymbols, isTypeNode); const trueType = visitNode(node.trueType, visitExistingNodeTreeSymbols, isTypeNode); disposeScope(); const falseType = visitNode(node.falseType, visitExistingNodeTreeSymbols, isTypeNode); return factory.updateConditionalTypeNode(node, checkType, extendType, trueType, falseType); } if (isTypeOperatorNode(node)) { if (node.operator === 158 && node.type.kind === 155) { if (!resolver.canReuseTypeNode(context, node)) { markError(); return node; } } else if (node.operator === 143) { const result = tryVisitKeyOf(node); if (!result) { markError(); return node; } return result; } } return visitEachChild2(node, visitExistingNodeTreeSymbols); function visitEachChild2(node2, visitor) { const nonlocalNode = !context.enclosingFile || context.enclosingFile !== getSourceFileOfNode(node2); return visitEachChild(node2, visitor, undefined, nonlocalNode ? visitNodesWithoutCopyingPositions : undefined); } function visitNodesWithoutCopyingPositions(nodes, visitor, test, start, count) { let result = visitNodes2(nodes, visitor, test, start, count); if (result) { if (result.pos !== -1 || result.end !== -1) { if (result === nodes) { result = factory.createNodeArray(nodes.slice(), nodes.hasTrailingComma); } setTextRangePosEnd(result, -1, -1); } } return result; } function getEffectiveDotDotDotForParameter(p) { return p.dotDotDotToken || (p.type && isJSDocVariadicType(p.type) ? factory.createToken(26) : undefined); } function getNameForJSDocFunctionParameter(p, index) { return p.name && isIdentifier(p.name) && p.name.escapedText === "this" ? "this" : getEffectiveDotDotDotForParameter(p) ? `args` : `arg${index}`; } function rewriteModuleSpecifier2(parent2, lit) { const newName = resolver.getModuleSpecifierOverride(context, parent2, lit); return newName ? setOriginalNode(factory.createStringLiteral(newName), lit) : lit; } } } function serializeExistingTypeNode(typeNode, context, addUndefined) { if (!typeNode) return; let result; if ((!addUndefined || canAddUndefined(typeNode)) && resolver.canReuseTypeNode(context, typeNode)) { result = tryReuseExistingTypeNode(context, typeNode); if (result !== undefined) { result = addUndefinedIfNeeded(result, addUndefined, undefined, context); } } return result; } function serializeTypeAnnotationOfDeclaration(declaredType, context, node, symbol, requiresAddingUndefined, useFallback = requiresAddingUndefined !== undefined) { if (!declaredType) return; if (!resolver.canReuseTypeNodeAnnotation(context, node, declaredType, symbol, requiresAddingUndefined)) { if (!requiresAddingUndefined || !resolver.canReuseTypeNodeAnnotation(context, node, declaredType, symbol, false)) { return; } } let result; if (!requiresAddingUndefined || canAddUndefined(declaredType)) { result = serializeExistingTypeNode(declaredType, context, requiresAddingUndefined); } if (result !== undefined || !useFallback) { return result; } context.tracker.reportInferenceFallback(node); return resolver.serializeExistingTypeNode(context, declaredType, requiresAddingUndefined) ?? factory.createKeywordTypeNode(133); } function serializeExistingTypeNodeWithFallback(typeNode, context, addUndefined, targetNode) { if (!typeNode) return; const result = serializeExistingTypeNode(typeNode, context, addUndefined); if (result !== undefined) { return result; } context.tracker.reportInferenceFallback(targetNode ?? typeNode); return resolver.serializeExistingTypeNode(context, typeNode, addUndefined) ?? factory.createKeywordTypeNode(133); } function serializeTypeOfAccessor(accessor, symbol, context) { return typeFromAccessor(accessor, symbol, context) ?? inferAccessorType(accessor, resolver.getAllAccessorDeclarations(accessor), context, symbol); } function serializeTypeOfExpression(expr, context, addUndefined, preserveLiterals) { const result = typeFromExpression(expr, context, false, addUndefined, preserveLiterals); return result.type !== undefined ? result.type : inferExpressionType(expr, context, result.reportFallback); } function serializeTypeOfDeclaration(node, symbol, context) { switch (node.kind) { case 170: case 342: return typeFromParameter(node, symbol, context); case 261: return typeFromVariable(node, symbol, context); case 172: case 349: case 173: return typeFromProperty(node, symbol, context); case 209: return inferTypeOfDeclaration(node, symbol, context); case 278: return serializeTypeOfExpression(node.expression, context, undefined, true); case 212: case 213: case 227: return typeFromExpandoProperty(node, symbol, context); case 304: case 305: return typeFromPropertyAssignment(node, symbol, context); default: Debug.assertNever(node, `Node needs to be an inferrable node, found ${Debug.formatSyntaxKind(node.kind)}`); } } function typeFromPropertyAssignment(node, symbol, context) { const typeAnnotation = getEffectiveTypeAnnotationNode(node); let result; if (typeAnnotation && resolver.canReuseTypeNodeAnnotation(context, node, typeAnnotation, symbol)) { result = serializeExistingTypeNode(typeAnnotation, context); } if (!result && node.kind === 304) { const initializer = node.initializer; const assertionNode = isJSDocTypeAssertion(initializer) ? getJSDocTypeAssertionType(initializer) : initializer.kind === 235 || initializer.kind === 217 ? initializer.type : undefined; if (assertionNode && !isConstTypeReference(assertionNode) && resolver.canReuseTypeNodeAnnotation(context, node, assertionNode, symbol)) { result = serializeExistingTypeNode(assertionNode, context); } } return result ?? inferTypeOfDeclaration(node, symbol, context, false); } function serializeReturnTypeForSignature(node, symbol, context) { switch (node.kind) { case 178: return serializeTypeOfAccessor(node, symbol, context); case 175: case 263: case 181: case 174: case 180: case 177: case 179: case 182: case 185: case 186: case 219: case 220: case 318: case 324: return createReturnFromSignature(node, symbol, context); default: Debug.assertNever(node, `Node needs to be an inferrable node, found ${Debug.formatSyntaxKind(node.kind)}`); } } function getTypeAnnotationFromAccessor(accessor) { if (accessor) { return accessor.kind === 178 ? isInJSFile(accessor) && getJSDocType(accessor) || getEffectiveReturnTypeNode(accessor) : getEffectiveSetAccessorTypeAnnotationNode(accessor); } } function getTypeAnnotationFromAllAccessorDeclarations(node, accessors) { let accessorType = getTypeAnnotationFromAccessor(node); if (!accessorType && node !== accessors.firstAccessor) { accessorType = getTypeAnnotationFromAccessor(accessors.firstAccessor); } if (!accessorType && accessors.secondAccessor && node !== accessors.secondAccessor) { accessorType = getTypeAnnotationFromAccessor(accessors.secondAccessor); } return accessorType; } function typeFromAccessor(node, symbol, context) { const accessorDeclarations = resolver.getAllAccessorDeclarations(node); const accessorType = getTypeAnnotationFromAllAccessorDeclarations(node, accessorDeclarations); if (accessorType && !isTypePredicateNode(accessorType)) { return withNewScope(context, node, () => serializeTypeAnnotationOfDeclaration(accessorType, context, node, symbol) ?? inferTypeOfDeclaration(node, symbol, context)); } if (accessorDeclarations.getAccessor) { return withNewScope(context, accessorDeclarations.getAccessor, () => createReturnFromSignature(accessorDeclarations.getAccessor, symbol, context)); } return; } function typeFromVariable(node, symbol, context) { var _a; const declaredType = getEffectiveTypeAnnotationNode(node); let resultType = failed; if (declaredType) { resultType = syntacticResult(serializeTypeAnnotationOfDeclaration(declaredType, context, node, symbol)); } else if (node.initializer && (((_a = symbol.declarations) == null ? undefined : _a.length) === 1 || countWhere(symbol.declarations, isVariableDeclaration) === 1)) { if (!resolver.isExpandoFunctionDeclaration(node) && !isContextuallyTyped(node)) { resultType = typeFromExpression(node.initializer, context, undefined, undefined, isVarConstLike(node)); } } return resultType.type !== undefined ? resultType.type : inferTypeOfDeclaration(node, symbol, context, resultType.reportFallback); } function typeFromParameter(node, symbol, context) { const parent2 = node.parent; if (parent2.kind === 179) { return serializeTypeOfAccessor(parent2, undefined, context); } const declaredType = getEffectiveTypeAnnotationNode(node); const addUndefined = resolver.requiresAddingImplicitUndefined(node, symbol, context.enclosingDeclaration); let resultType = failed; if (declaredType) { resultType = syntacticResult(serializeTypeAnnotationOfDeclaration(declaredType, context, node, symbol, addUndefined)); } else if (isParameter(node) && node.initializer && isIdentifier(node.name) && !isContextuallyTyped(node)) { resultType = typeFromExpression(node.initializer, context, undefined, addUndefined); } return resultType.type !== undefined ? resultType.type : inferTypeOfDeclaration(node, symbol, context, resultType.reportFallback); } function typeFromExpandoProperty(node, symbol, context) { const declaredType = getEffectiveTypeAnnotationNode(node); let result; if (declaredType) { result = serializeTypeAnnotationOfDeclaration(declaredType, context, node, symbol); } const oldSuppressReportInferenceFallback = context.suppressReportInferenceFallback; context.suppressReportInferenceFallback = true; const resultType = result ?? inferTypeOfDeclaration(node, symbol, context, false); context.suppressReportInferenceFallback = oldSuppressReportInferenceFallback; return resultType; } function typeFromProperty(node, symbol, context) { const declaredType = getEffectiveTypeAnnotationNode(node); const requiresAddingUndefined = resolver.requiresAddingImplicitUndefined(node, symbol, context.enclosingDeclaration); let resultType = failed; if (declaredType) { resultType = syntacticResult(serializeTypeAnnotationOfDeclaration(declaredType, context, node, symbol, requiresAddingUndefined)); } else { const initializer = isPropertyDeclaration(node) ? node.initializer : undefined; if (initializer && !isContextuallyTyped(node)) { const isReadonly = isDeclarationReadonly(node); resultType = typeFromExpression(initializer, context, undefined, requiresAddingUndefined, isReadonly); } } return resultType.type !== undefined ? resultType.type : inferTypeOfDeclaration(node, symbol, context, resultType.reportFallback); } function inferTypeOfDeclaration(node, symbol, context, reportFallback = true) { if (reportFallback) { context.tracker.reportInferenceFallback(node); } if (context.noInferenceFallback === true) { return factory.createKeywordTypeNode(133); } return resolver.serializeTypeOfDeclaration(context, node, symbol); } function inferExpressionType(node, context, reportFallback = true, requiresAddingUndefined) { Debug.assert(!requiresAddingUndefined); if (reportFallback) { context.tracker.reportInferenceFallback(node); } if (context.noInferenceFallback === true) { return factory.createKeywordTypeNode(133); } return resolver.serializeTypeOfExpression(context, node) ?? factory.createKeywordTypeNode(133); } function inferReturnTypeOfSignatureSignature(node, context, symbol, reportFallback) { if (reportFallback) { context.tracker.reportInferenceFallback(node); } if (context.noInferenceFallback === true) { return factory.createKeywordTypeNode(133); } return resolver.serializeReturnTypeForSignature(context, node, symbol) ?? factory.createKeywordTypeNode(133); } function inferAccessorType(node, allAccessors, context, symbol, reportFallback = true) { if (node.kind === 178) { return createReturnFromSignature(node, symbol, context, reportFallback); } else { if (reportFallback) { context.tracker.reportInferenceFallback(node); } const result = allAccessors.getAccessor && createReturnFromSignature(allAccessors.getAccessor, symbol, context, reportFallback); return result ?? resolver.serializeTypeOfDeclaration(context, node, symbol) ?? factory.createKeywordTypeNode(133); } } function withNewScope(context, node, fn) { const cleanup = resolver.enterNewScope(context, node); const result = fn(); cleanup(); return result; } function typeFromTypeAssertion(expression, type, context, requiresAddingUndefined) { if (isConstTypeReference(type)) { return typeFromExpression(expression, context, true, requiresAddingUndefined); } return syntacticResult(serializeExistingTypeNodeWithFallback(type, context, requiresAddingUndefined)); } function typeFromExpression(node, context, isConstContext = false, requiresAddingUndefined = false, preserveLiterals = false) { switch (node.kind) { case 218: if (isJSDocTypeAssertion(node)) { return typeFromTypeAssertion(node.expression, getJSDocTypeAssertionType(node), context, requiresAddingUndefined); } return typeFromExpression(node.expression, context, isConstContext, requiresAddingUndefined); case 80: if (resolver.isUndefinedIdentifierExpression(node)) { return syntacticResult(createUndefinedTypeNode()); } break; case 106: if (strictNullChecks) { return syntacticResult(addUndefinedIfNeeded(factory.createLiteralTypeNode(factory.createNull()), requiresAddingUndefined, node, context)); } else { return syntacticResult(factory.createKeywordTypeNode(133)); } case 220: case 219: Debug.type(node); return withNewScope(context, node, () => typeFromFunctionLikeExpression(node, context)); case 217: case 235: const asExpression = node; return typeFromTypeAssertion(asExpression.expression, asExpression.type, context, requiresAddingUndefined); case 225: const unaryExpression = node; if (isPrimitiveLiteralValue(unaryExpression)) { return typeFromPrimitiveLiteral(unaryExpression.operator === 40 ? unaryExpression.operand : unaryExpression, unaryExpression.operand.kind === 10 ? 163 : 150, context, isConstContext || preserveLiterals, requiresAddingUndefined); } break; case 210: return typeFromArrayLiteral(node, context, isConstContext, requiresAddingUndefined); case 211: return typeFromObjectLiteral(node, context, isConstContext, requiresAddingUndefined); case 232: return syntacticResult(inferExpressionType(node, context, true, requiresAddingUndefined)); case 229: if (!isConstContext && !preserveLiterals) { return syntacticResult(factory.createKeywordTypeNode(154)); } break; default: let typeKind; let primitiveNode = node; switch (node.kind) { case 9: typeKind = 150; break; case 15: primitiveNode = factory.createStringLiteral(node.text); typeKind = 154; break; case 11: typeKind = 154; break; case 10: typeKind = 163; break; case 112: case 97: typeKind = 136; break; } if (typeKind) { return typeFromPrimitiveLiteral(primitiveNode, typeKind, context, isConstContext || preserveLiterals, requiresAddingUndefined); } } return failed; } function typeFromFunctionLikeExpression(fnNode, context) { const returnType = createReturnFromSignature(fnNode, undefined, context); const typeParameters = reuseTypeParameters(fnNode.typeParameters, context); const parameters = fnNode.parameters.map((p) => ensureParameter(p, context)); return syntacticResult(factory.createFunctionTypeNode(typeParameters, parameters, returnType)); } function canGetTypeFromArrayLiteral(arrayLiteral, context, isConstContext) { if (!isConstContext) { context.tracker.reportInferenceFallback(arrayLiteral); return false; } for (const element of arrayLiteral.elements) { if (element.kind === 231) { context.tracker.reportInferenceFallback(element); return false; } } return true; } function typeFromArrayLiteral(arrayLiteral, context, isConstContext, requiresAddingUndefined) { if (!canGetTypeFromArrayLiteral(arrayLiteral, context, isConstContext)) { if (requiresAddingUndefined || isDeclaration(walkUpParenthesizedExpressions(arrayLiteral).parent)) { return alreadyReported; } return syntacticResult(inferExpressionType(arrayLiteral, context, false, requiresAddingUndefined)); } const oldNoInferenceFallback = context.noInferenceFallback; context.noInferenceFallback = true; const elementTypesInfo = []; for (const element of arrayLiteral.elements) { Debug.assert(element.kind !== 231); if (element.kind === 233) { elementTypesInfo.push(createUndefinedTypeNode()); } else { const expressionType = typeFromExpression(element, context, isConstContext); const elementType = expressionType.type !== undefined ? expressionType.type : inferExpressionType(element, context, expressionType.reportFallback); elementTypesInfo.push(elementType); } } const tupleType = factory.createTupleTypeNode(elementTypesInfo); tupleType.emitNode = { flags: 1, autoGenerate: undefined, internalFlags: 0 }; context.noInferenceFallback = oldNoInferenceFallback; return notImplemented2; } function canGetTypeFromObjectLiteral(objectLiteral, context) { let result = true; for (const prop of objectLiteral.properties) { if (prop.flags & 262144) { result = false; break; } if (prop.kind === 305 || prop.kind === 306) { context.tracker.reportInferenceFallback(prop); result = false; } else if (prop.name.flags & 262144) { result = false; break; } else if (prop.name.kind === 81) { result = false; } else if (prop.name.kind === 168) { const expression = prop.name.expression; if (!isPrimitiveLiteralValue(expression, false) && !resolver.isDefinitelyReferenceToGlobalSymbolObject(expression)) { context.tracker.reportInferenceFallback(prop.name); result = false; } } } return result; } function typeFromObjectLiteral(objectLiteral, context, isConstContext, requiresAddingUndefined) { if (!canGetTypeFromObjectLiteral(objectLiteral, context)) { if (requiresAddingUndefined || isDeclaration(walkUpParenthesizedExpressions(objectLiteral).parent)) { return alreadyReported; } return syntacticResult(inferExpressionType(objectLiteral, context, false, requiresAddingUndefined)); } const oldNoInferenceFallback = context.noInferenceFallback; context.noInferenceFallback = true; const properties = []; const oldFlags = context.flags; context.flags |= 4194304; for (const prop of objectLiteral.properties) { Debug.assert(!isShorthandPropertyAssignment(prop) && !isSpreadAssignment(prop)); const name = prop.name; let newProp; switch (prop.kind) { case 175: newProp = withNewScope(context, prop, () => typeFromObjectLiteralMethod(prop, name, context, isConstContext)); break; case 304: newProp = typeFromObjectLiteralPropertyAssignment(prop, name, context, isConstContext); break; case 179: case 178: newProp = typeFromObjectLiteralAccessor(prop, name, context); break; } if (newProp) { setCommentRange(newProp, prop); properties.push(newProp); } } context.flags = oldFlags; const typeNode = factory.createTypeLiteralNode(properties); if (!(context.flags & 1024)) { setEmitFlags(typeNode, 1); } context.noInferenceFallback = oldNoInferenceFallback; return notImplemented2; } function typeFromObjectLiteralPropertyAssignment(prop, name, context, isConstContext) { const modifiers = isConstContext ? [factory.createModifier(148)] : []; const expressionResult = typeFromExpression(prop.initializer, context, isConstContext); const typeNode = expressionResult.type !== undefined ? expressionResult.type : inferTypeOfDeclaration(prop, undefined, context, expressionResult.reportFallback); return factory.createPropertySignature(modifiers, reuseNode(context, name), undefined, typeNode); } function ensureParameter(p, context) { return factory.updateParameterDeclaration(p, undefined, reuseNode(context, p.dotDotDotToken), resolver.serializeNameOfParameter(context, p), resolver.isOptionalParameter(p) ? factory.createToken(58) : undefined, typeFromParameter(p, undefined, context), undefined); } function reuseTypeParameters(typeParameters, context) { return typeParameters == null ? undefined : typeParameters.map((tp) => { var _a; const { node: tpName } = resolver.trackExistingEntityName(context, tp.name); return factory.updateTypeParameterDeclaration(tp, (_a = tp.modifiers) == null ? undefined : _a.map((m) => reuseNode(context, m)), tpName, serializeExistingTypeNodeWithFallback(tp.constraint, context), serializeExistingTypeNodeWithFallback(tp.default, context)); }); } function typeFromObjectLiteralMethod(method, name, context, isConstContext) { const returnType = createReturnFromSignature(method, undefined, context); const typeParameters = reuseTypeParameters(method.typeParameters, context); const parameters = method.parameters.map((p) => ensureParameter(p, context)); if (isConstContext) { return factory.createPropertySignature([factory.createModifier(148)], reuseNode(context, name), reuseNode(context, method.questionToken), factory.createFunctionTypeNode(typeParameters, parameters, returnType)); } else { if (isIdentifier(name) && name.escapedText === "new") { name = factory.createStringLiteral("new"); } return factory.createMethodSignature([], reuseNode(context, name), reuseNode(context, method.questionToken), typeParameters, parameters, returnType); } } function typeFromObjectLiteralAccessor(accessor, name, context) { const allAccessors = resolver.getAllAccessorDeclarations(accessor); const getAccessorType = allAccessors.getAccessor && getTypeAnnotationFromAccessor(allAccessors.getAccessor); const setAccessorType = allAccessors.setAccessor && getTypeAnnotationFromAccessor(allAccessors.setAccessor); if (getAccessorType !== undefined && setAccessorType !== undefined) { return withNewScope(context, accessor, () => { const parameters = accessor.parameters.map((p) => ensureParameter(p, context)); if (isGetAccessor(accessor)) { return factory.updateGetAccessorDeclaration(accessor, [], reuseNode(context, name), parameters, serializeExistingTypeNodeWithFallback(getAccessorType, context), undefined); } else { return factory.updateSetAccessorDeclaration(accessor, [], reuseNode(context, name), parameters, undefined); } }); } else if (allAccessors.firstAccessor === accessor) { const foundType = getAccessorType ? withNewScope(context, allAccessors.getAccessor, () => serializeExistingTypeNodeWithFallback(getAccessorType, context)) : setAccessorType ? withNewScope(context, allAccessors.setAccessor, () => serializeExistingTypeNodeWithFallback(setAccessorType, context)) : undefined; const propertyType = foundType ?? inferAccessorType(accessor, allAccessors, context, undefined); const propertySignature = factory.createPropertySignature(allAccessors.setAccessor === undefined ? [factory.createModifier(148)] : [], reuseNode(context, name), undefined, propertyType); return propertySignature; } } function createUndefinedTypeNode() { if (strictNullChecks) { return factory.createKeywordTypeNode(157); } else { return factory.createKeywordTypeNode(133); } } function typeFromPrimitiveLiteral(node, baseType, context, preserveLiterals, requiresAddingUndefined) { let result; if (preserveLiterals) { if (node.kind === 225 && node.operator === 40) { result = factory.createLiteralTypeNode(reuseNode(context, node.operand)); } result = factory.createLiteralTypeNode(reuseNode(context, node)); } else { result = factory.createKeywordTypeNode(baseType); } return syntacticResult(addUndefinedIfNeeded(result, requiresAddingUndefined, node, context)); } function addUndefinedIfNeeded(node, addUndefined, owner, context) { const parentDeclaration = owner && walkUpParenthesizedExpressions(owner).parent; const optionalDeclaration = parentDeclaration && isDeclaration(parentDeclaration) && isOptionalDeclaration(parentDeclaration); if (!strictNullChecks || !(addUndefined || optionalDeclaration)) return node; if (!canAddUndefined(node)) { context.tracker.reportInferenceFallback(node); } if (isUnionTypeNode(node)) { return factory.createUnionTypeNode([...node.types, factory.createKeywordTypeNode(157)]); } return factory.createUnionTypeNode([node, factory.createKeywordTypeNode(157)]); } function canAddUndefined(node) { if (!strictNullChecks) return true; if (isKeyword(node.kind) || node.kind === 202 || node.kind === 185 || node.kind === 186 || node.kind === 189 || node.kind === 190 || node.kind === 188 || node.kind === 204 || node.kind === 198) { return true; } if (node.kind === 197) { return canAddUndefined(node.type); } if (node.kind === 193 || node.kind === 194) { return node.types.every(canAddUndefined); } return false; } function createReturnFromSignature(fn, symbol, context, reportFallback = true) { let returnType = failed; const returnTypeNode = isJSDocConstructSignature(fn) ? getEffectiveTypeAnnotationNode(fn.parameters[0]) : getEffectiveReturnTypeNode(fn); if (returnTypeNode) { returnType = syntacticResult(serializeTypeAnnotationOfDeclaration(returnTypeNode, context, fn, symbol)); } else if (isValueSignatureDeclaration(fn)) { returnType = typeFromSingleReturnExpression(fn, context); } return returnType.type !== undefined ? returnType.type : inferReturnTypeOfSignatureSignature(fn, context, symbol, reportFallback && returnType.reportFallback && !returnTypeNode); } function typeFromSingleReturnExpression(declaration, context) { let candidateExpr; if (declaration && !nodeIsMissing(declaration.body)) { const flags = getFunctionFlags(declaration); if (flags & 3) return failed; const body = declaration.body; if (body && isBlock(body)) { forEachReturnStatement(body, (s) => { if (s.parent !== body) { candidateExpr = undefined; return true; } if (!candidateExpr) { candidateExpr = s.expression; } else { candidateExpr = undefined; return true; } }); } else { candidateExpr = body; } } if (candidateExpr) { if (isContextuallyTyped(candidateExpr)) { const type = isJSDocTypeAssertion(candidateExpr) ? getJSDocTypeAssertionType(candidateExpr) : isAsExpression(candidateExpr) || isTypeAssertionExpression(candidateExpr) ? candidateExpr.type : undefined; if (type && !isConstTypeReference(type)) { return syntacticResult(serializeExistingTypeNode(type, context)); } } else { return typeFromExpression(candidateExpr, context); } } return failed; } function isContextuallyTyped(node) { return findAncestor(node.parent, (n) => { return isCallExpression(n) || !isFunctionLikeDeclaration(n) && !!getEffectiveTypeAnnotationNode(n) || isJsxElement(n) || isJsxExpression(n); }); } } var ts_JsTyping_exports = {}; __export2(ts_JsTyping_exports, { NameValidationResult: () => NameValidationResult, discoverTypings: () => discoverTypings, isTypingUpToDate: () => isTypingUpToDate, loadSafeList: () => loadSafeList, loadTypesMap: () => loadTypesMap, nonRelativeModuleNameForTypingCache: () => nonRelativeModuleNameForTypingCache, renderPackageNameValidationFailure: () => renderPackageNameValidationFailure, validatePackageName: () => validatePackageName }); var ActionSet = "action::set"; var ActionInvalidate = "action::invalidate"; var ActionPackageInstalled = "action::packageInstalled"; var EventTypesRegistry = "event::typesRegistry"; var EventBeginInstallTypes = "event::beginInstallTypes"; var EventEndInstallTypes = "event::endInstallTypes"; var EventInitializationFailed = "event::initializationFailed"; var ActionWatchTypingLocations = "action::watchTypingLocations"; var Arguments; ((Arguments2) => { Arguments2.GlobalCacheLocation = "--globalTypingsCacheLocation"; Arguments2.LogFile = "--logFile"; Arguments2.EnableTelemetry = "--enableTelemetry"; Arguments2.TypingSafeListLocation = "--typingSafeListLocation"; Arguments2.TypesMapLocation = "--typesMapLocation"; Arguments2.NpmLocation = "--npmLocation"; Arguments2.ValidateDefaultNpmLocation = "--validateDefaultNpmLocation"; })(Arguments || (Arguments = {})); function hasArgument(argumentName) { return sys.args.includes(argumentName); } function findArgument(argumentName) { const index = sys.args.indexOf(argumentName); return index >= 0 && index < sys.args.length - 1 ? sys.args[index + 1] : undefined; } function nowString() { const d = /* @__PURE__ */ new Date; return `${d.getHours().toString().padStart(2, "0")}:${d.getMinutes().toString().padStart(2, "0")}:${d.getSeconds().toString().padStart(2, "0")}.${d.getMilliseconds().toString().padStart(3, "0")}`; } var indentStr = ` `; function indent2(str) { return indentStr + str.replace(/\n/g, indentStr); } function stringifyIndented(json) { return indent2(JSON.stringify(json, undefined, 2)); } function isTypingUpToDate(cachedTyping, availableTypingVersions) { const availableVersion = new Version(getProperty(availableTypingVersions, `ts${versionMajorMinor}`) || getProperty(availableTypingVersions, "latest")); return availableVersion.compareTo(cachedTyping.version) <= 0; } function nonRelativeModuleNameForTypingCache(moduleName) { return nodeCoreModules.has(moduleName) ? "node" : moduleName; } function loadSafeList(host, safeListPath) { const result = readConfigFile(safeListPath, (path) => host.readFile(path)); return new Map(Object.entries(result.config)); } function loadTypesMap(host, typesMapPath) { var _a; const result = readConfigFile(typesMapPath, (path) => host.readFile(path)); if ((_a = result.config) == null ? undefined : _a.simpleMap) { return new Map(Object.entries(result.config.simpleMap)); } return; } function discoverTypings(host, log, fileNames, projectRootPath, safeList, packageNameToTypingLocation, typeAcquisition, unresolvedImports, typesRegistry, compilerOptions) { if (!typeAcquisition || !typeAcquisition.enable) { return { cachedTypingPaths: [], newTypingNames: [], filesToWatch: [] }; } const inferredTypings = /* @__PURE__ */ new Map; fileNames = mapDefined(fileNames, (fileName) => { const path = normalizePath(fileName); if (hasJSFileExtension(path)) { return path; } }); const filesToWatch = []; if (typeAcquisition.include) addInferredTypings(typeAcquisition.include, "Explicitly included types"); const exclude = typeAcquisition.exclude || []; if (!compilerOptions.types || usesWildcardTypes(compilerOptions)) { const possibleSearchDirs = new Set(fileNames.map(getDirectoryPath)); possibleSearchDirs.add(projectRootPath); possibleSearchDirs.forEach((searchDir) => { getTypingNames(searchDir, "bower.json", "bower_components", filesToWatch); getTypingNames(searchDir, "package.json", "node_modules", filesToWatch); }); } if (!typeAcquisition.disableFilenameBasedTypeAcquisition) { getTypingNamesFromSourceFileNames(fileNames); } if (unresolvedImports) { const module22 = deduplicate(unresolvedImports.map(nonRelativeModuleNameForTypingCache), equateStringsCaseSensitive, compareStringsCaseSensitive); addInferredTypings(module22, "Inferred typings from unresolved imports"); } for (const excludeTypingName of exclude) { const didDelete = inferredTypings.delete(excludeTypingName); if (didDelete && log) log(`Typing for ${excludeTypingName} is in exclude list, will be ignored.`); } packageNameToTypingLocation.forEach((typing, name) => { const registryEntry = typesRegistry.get(name); if (inferredTypings.get(name) === false && registryEntry !== undefined && isTypingUpToDate(typing, registryEntry)) { inferredTypings.set(name, typing.typingLocation); } }); const newTypingNames = []; const cachedTypingPaths = []; inferredTypings.forEach((inferred, typing) => { if (inferred) { cachedTypingPaths.push(inferred); } else { newTypingNames.push(typing); } }); const result = { cachedTypingPaths, newTypingNames, filesToWatch }; if (log) log(`Finished typings discovery:${stringifyIndented(result)}`); return result; function addInferredTyping(typingName) { if (!inferredTypings.has(typingName)) { inferredTypings.set(typingName, false); } } function addInferredTypings(typingNames, message) { if (log) log(`${message}: ${JSON.stringify(typingNames)}`); forEach(typingNames, addInferredTyping); } function getTypingNames(projectRootPath2, manifestName, modulesDirName, filesToWatch2) { const manifestPath = combinePaths(projectRootPath2, manifestName); let manifest; let manifestTypingNames; if (host.fileExists(manifestPath)) { filesToWatch2.push(manifestPath); manifest = readConfigFile(manifestPath, (path) => host.readFile(path)).config; manifestTypingNames = flatMap([manifest.dependencies, manifest.devDependencies, manifest.optionalDependencies, manifest.peerDependencies], getOwnKeys); addInferredTypings(manifestTypingNames, `Typing names in '${manifestPath}' dependencies`); } const packagesFolderPath = combinePaths(projectRootPath2, modulesDirName); filesToWatch2.push(packagesFolderPath); if (!host.directoryExists(packagesFolderPath)) { return; } const packageNames = []; const dependencyManifestNames = manifestTypingNames ? manifestTypingNames.map((typingName) => combinePaths(packagesFolderPath, typingName, manifestName)) : host.readDirectory(packagesFolderPath, [".json"], undefined, undefined, 3).filter((manifestPath2) => { if (getBaseFileName(manifestPath2) !== manifestName) { return false; } const pathComponents2 = getPathComponents(normalizePath(manifestPath2)); const isScoped = pathComponents2[pathComponents2.length - 3][0] === "@"; return isScoped && toFileNameLowerCase(pathComponents2[pathComponents2.length - 4]) === modulesDirName || !isScoped && toFileNameLowerCase(pathComponents2[pathComponents2.length - 3]) === modulesDirName; }); if (log) log(`Searching for typing names in ${packagesFolderPath}; all files: ${JSON.stringify(dependencyManifestNames)}`); for (const manifestPath2 of dependencyManifestNames) { const normalizedFileName = normalizePath(manifestPath2); const result2 = readConfigFile(normalizedFileName, (path) => host.readFile(path)); const manifest2 = result2.config; if (!manifest2.name) { continue; } const ownTypes = manifest2.types || manifest2.typings; if (ownTypes) { const absolutePath = getNormalizedAbsolutePath(ownTypes, getDirectoryPath(normalizedFileName)); if (host.fileExists(absolutePath)) { if (log) log(` Package '${manifest2.name}' provides its own types.`); inferredTypings.set(manifest2.name, absolutePath); } else { if (log) log(` Package '${manifest2.name}' provides its own types but they are missing.`); } } else { packageNames.push(manifest2.name); } } addInferredTypings(packageNames, " Found package names"); } function getTypingNamesFromSourceFileNames(fileNames2) { const fromFileNames = mapDefined(fileNames2, (j) => { if (!hasJSFileExtension(j)) return; const inferredTypingName = removeFileExtension(toFileNameLowerCase(getBaseFileName(j))); const cleanedTypingName = removeMinAndVersionNumbers(inferredTypingName); return safeList.get(cleanedTypingName); }); if (fromFileNames.length) { addInferredTypings(fromFileNames, "Inferred typings from file names"); } const hasJsxFile = some(fileNames2, (f) => fileExtensionIs(f, ".jsx")); if (hasJsxFile) { if (log) log(`Inferred 'react' typings due to presence of '.jsx' extension`); addInferredTyping("react"); } } } var NameValidationResult = /* @__PURE__ */ ((NameValidationResult2) => { NameValidationResult2[NameValidationResult2["Ok"] = 0] = "Ok"; NameValidationResult2[NameValidationResult2["EmptyName"] = 1] = "EmptyName"; NameValidationResult2[NameValidationResult2["NameTooLong"] = 2] = "NameTooLong"; NameValidationResult2[NameValidationResult2["NameStartsWithDot"] = 3] = "NameStartsWithDot"; NameValidationResult2[NameValidationResult2["NameStartsWithUnderscore"] = 4] = "NameStartsWithUnderscore"; NameValidationResult2[NameValidationResult2["NameContainsInvalidCharacters"] = 5] = "NameContainsInvalidCharacters"; NameValidationResult2[NameValidationResult2["NameContainsNonURISafeCharacters"] = 5] = "NameContainsNonURISafeCharacters"; return NameValidationResult2; })(NameValidationResult || {}); var maxPackageNameLength = 214; function validatePackageName(packageName) { return validatePackageNameWorker(packageName, true); } function validatePackageNameWorker(packageName, supportScopedPackage) { if (!packageName) { return 1; } if (packageName.length > maxPackageNameLength) { return 2; } if (packageName.charCodeAt(0) === 46) { return 3; } if (packageName.charCodeAt(0) === 95) { return 4; } if (supportScopedPackage) { const matches = /^@([^/]+)\/([^/]+)$/.exec(packageName); if (matches) { const scopeResult = validatePackageNameWorker(matches[1], false); if (scopeResult !== 0) { return { name: matches[1], isScopeName: true, result: scopeResult }; } const packageResult = validatePackageNameWorker(matches[2], false); if (packageResult !== 0) { return { name: matches[2], isScopeName: false, result: packageResult }; } return 0; } } if (!/^[\w.-]+$/.test(packageName)) { return 5; } return 0; } function renderPackageNameValidationFailure(result, typing) { return typeof result === "object" ? renderPackageNameValidationFailureWorker(typing, result.result, result.name, result.isScopeName) : renderPackageNameValidationFailureWorker(typing, result, typing, false); } function renderPackageNameValidationFailureWorker(typing, result, name, isScopeName) { const kind = isScopeName ? "Scope" : "Package"; switch (result) { case 1: return `'${typing}':: ${kind} name '${name}' cannot be empty`; case 2: return `'${typing}':: ${kind} name '${name}' should be less than ${maxPackageNameLength} characters`; case 3: return `'${typing}':: ${kind} name '${name}' cannot start with '.'`; case 4: return `'${typing}':: ${kind} name '${name}' cannot start with '_'`; case 5: return `'${typing}':: ${kind} name '${name}' contains invalid characters`; case 0: return Debug.fail(); default: Debug.assertNever(result); } } var ScriptSnapshot; ((ScriptSnapshot2) => { class StringScriptSnapshot { constructor(text) { this.text = text; } getText(start, end) { return start === 0 && end === this.text.length ? this.text : this.text.substring(start, end); } getLength() { return this.text.length; } getChangeRange() { return; } } function fromString(text) { return new StringScriptSnapshot(text); } ScriptSnapshot2.fromString = fromString; })(ScriptSnapshot || (ScriptSnapshot = {})); var PackageJsonDependencyGroup = /* @__PURE__ */ ((PackageJsonDependencyGroup2) => { PackageJsonDependencyGroup2[PackageJsonDependencyGroup2["Dependencies"] = 1] = "Dependencies"; PackageJsonDependencyGroup2[PackageJsonDependencyGroup2["DevDependencies"] = 2] = "DevDependencies"; PackageJsonDependencyGroup2[PackageJsonDependencyGroup2["PeerDependencies"] = 4] = "PeerDependencies"; PackageJsonDependencyGroup2[PackageJsonDependencyGroup2["OptionalDependencies"] = 8] = "OptionalDependencies"; PackageJsonDependencyGroup2[PackageJsonDependencyGroup2["All"] = 15] = "All"; return PackageJsonDependencyGroup2; })(PackageJsonDependencyGroup || {}); var PackageJsonAutoImportPreference = /* @__PURE__ */ ((PackageJsonAutoImportPreference2) => { PackageJsonAutoImportPreference2[PackageJsonAutoImportPreference2["Off"] = 0] = "Off"; PackageJsonAutoImportPreference2[PackageJsonAutoImportPreference2["On"] = 1] = "On"; PackageJsonAutoImportPreference2[PackageJsonAutoImportPreference2["Auto"] = 2] = "Auto"; return PackageJsonAutoImportPreference2; })(PackageJsonAutoImportPreference || {}); var LanguageServiceMode = /* @__PURE__ */ ((LanguageServiceMode2) => { LanguageServiceMode2[LanguageServiceMode2["Semantic"] = 0] = "Semantic"; LanguageServiceMode2[LanguageServiceMode2["PartialSemantic"] = 1] = "PartialSemantic"; LanguageServiceMode2[LanguageServiceMode2["Syntactic"] = 2] = "Syntactic"; return LanguageServiceMode2; })(LanguageServiceMode || {}); var emptyOptions = {}; var SemanticClassificationFormat = /* @__PURE__ */ ((SemanticClassificationFormat2) => { SemanticClassificationFormat2["Original"] = "original"; SemanticClassificationFormat2["TwentyTwenty"] = "2020"; return SemanticClassificationFormat2; })(SemanticClassificationFormat || {}); var OrganizeImportsMode = /* @__PURE__ */ ((OrganizeImportsMode2) => { OrganizeImportsMode2["All"] = "All"; OrganizeImportsMode2["SortAndCombine"] = "SortAndCombine"; OrganizeImportsMode2["RemoveUnused"] = "RemoveUnused"; return OrganizeImportsMode2; })(OrganizeImportsMode || {}); var CompletionTriggerKind = /* @__PURE__ */ ((CompletionTriggerKind2) => { CompletionTriggerKind2[CompletionTriggerKind2["Invoked"] = 1] = "Invoked"; CompletionTriggerKind2[CompletionTriggerKind2["TriggerCharacter"] = 2] = "TriggerCharacter"; CompletionTriggerKind2[CompletionTriggerKind2["TriggerForIncompleteCompletions"] = 3] = "TriggerForIncompleteCompletions"; return CompletionTriggerKind2; })(CompletionTriggerKind || {}); var InlayHintKind2 = /* @__PURE__ */ ((InlayHintKind3) => { InlayHintKind3["Type"] = "Type"; InlayHintKind3["Parameter"] = "Parameter"; InlayHintKind3["Enum"] = "Enum"; return InlayHintKind3; })(InlayHintKind2 || {}); var HighlightSpanKind = /* @__PURE__ */ ((HighlightSpanKind2) => { HighlightSpanKind2["none"] = "none"; HighlightSpanKind2["definition"] = "definition"; HighlightSpanKind2["reference"] = "reference"; HighlightSpanKind2["writtenReference"] = "writtenReference"; return HighlightSpanKind2; })(HighlightSpanKind || {}); var IndentStyle = /* @__PURE__ */ ((IndentStyle3) => { IndentStyle3[IndentStyle3["None"] = 0] = "None"; IndentStyle3[IndentStyle3["Block"] = 1] = "Block"; IndentStyle3[IndentStyle3["Smart"] = 2] = "Smart"; return IndentStyle3; })(IndentStyle || {}); var SemicolonPreference = /* @__PURE__ */ ((SemicolonPreference2) => { SemicolonPreference2["Ignore"] = "ignore"; SemicolonPreference2["Insert"] = "insert"; SemicolonPreference2["Remove"] = "remove"; return SemicolonPreference2; })(SemicolonPreference || {}); function getDefaultFormatCodeSettings(newLineCharacter) { return { indentSize: 4, tabSize: 4, newLineCharacter: newLineCharacter || ` `, convertTabsToSpaces: true, indentStyle: 2, insertSpaceAfterConstructor: false, insertSpaceAfterCommaDelimiter: true, insertSpaceAfterSemicolonInForStatements: true, insertSpaceBeforeAndAfterBinaryOperators: true, insertSpaceAfterKeywordsInControlFlowStatements: true, insertSpaceAfterFunctionKeywordForAnonymousFunctions: false, insertSpaceAfterOpeningAndBeforeClosingNonemptyParenthesis: false, insertSpaceAfterOpeningAndBeforeClosingNonemptyBrackets: false, insertSpaceAfterOpeningAndBeforeClosingNonemptyBraces: true, insertSpaceAfterOpeningAndBeforeClosingTemplateStringBraces: false, insertSpaceAfterOpeningAndBeforeClosingJsxExpressionBraces: false, insertSpaceBeforeFunctionParenthesis: false, placeOpenBraceOnNewLineForFunctions: false, placeOpenBraceOnNewLineForControlBlocks: false, semicolons: "ignore", trimTrailingWhitespace: true, indentSwitchCase: true }; } var testFormatSettings = getDefaultFormatCodeSettings(` `); var SymbolDisplayPartKind = /* @__PURE__ */ ((SymbolDisplayPartKind2) => { SymbolDisplayPartKind2[SymbolDisplayPartKind2["aliasName"] = 0] = "aliasName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["className"] = 1] = "className"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["enumName"] = 2] = "enumName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["fieldName"] = 3] = "fieldName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["interfaceName"] = 4] = "interfaceName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["keyword"] = 5] = "keyword"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["lineBreak"] = 6] = "lineBreak"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["numericLiteral"] = 7] = "numericLiteral"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["stringLiteral"] = 8] = "stringLiteral"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["localName"] = 9] = "localName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["methodName"] = 10] = "methodName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["moduleName"] = 11] = "moduleName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["operator"] = 12] = "operator"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["parameterName"] = 13] = "parameterName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["propertyName"] = 14] = "propertyName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["punctuation"] = 15] = "punctuation"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["space"] = 16] = "space"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["text"] = 17] = "text"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["typeParameterName"] = 18] = "typeParameterName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["enumMemberName"] = 19] = "enumMemberName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["functionName"] = 20] = "functionName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["regularExpressionLiteral"] = 21] = "regularExpressionLiteral"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["link"] = 22] = "link"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["linkName"] = 23] = "linkName"; SymbolDisplayPartKind2[SymbolDisplayPartKind2["linkText"] = 24] = "linkText"; return SymbolDisplayPartKind2; })(SymbolDisplayPartKind || {}); var CompletionInfoFlags = /* @__PURE__ */ ((CompletionInfoFlags2) => { CompletionInfoFlags2[CompletionInfoFlags2["None"] = 0] = "None"; CompletionInfoFlags2[CompletionInfoFlags2["MayIncludeAutoImports"] = 1] = "MayIncludeAutoImports"; CompletionInfoFlags2[CompletionInfoFlags2["IsImportStatementCompletion"] = 2] = "IsImportStatementCompletion"; CompletionInfoFlags2[CompletionInfoFlags2["IsContinuation"] = 4] = "IsContinuation"; CompletionInfoFlags2[CompletionInfoFlags2["ResolvedModuleSpecifiers"] = 8] = "ResolvedModuleSpecifiers"; CompletionInfoFlags2[CompletionInfoFlags2["ResolvedModuleSpecifiersBeyondLimit"] = 16] = "ResolvedModuleSpecifiersBeyondLimit"; CompletionInfoFlags2[CompletionInfoFlags2["MayIncludeMethodSnippets"] = 32] = "MayIncludeMethodSnippets"; return CompletionInfoFlags2; })(CompletionInfoFlags || {}); var OutliningSpanKind = /* @__PURE__ */ ((OutliningSpanKind2) => { OutliningSpanKind2["Comment"] = "comment"; OutliningSpanKind2["Region"] = "region"; OutliningSpanKind2["Code"] = "code"; OutliningSpanKind2["Imports"] = "imports"; return OutliningSpanKind2; })(OutliningSpanKind || {}); var OutputFileType = /* @__PURE__ */ ((OutputFileType2) => { OutputFileType2[OutputFileType2["JavaScript"] = 0] = "JavaScript"; OutputFileType2[OutputFileType2["SourceMap"] = 1] = "SourceMap"; OutputFileType2[OutputFileType2["Declaration"] = 2] = "Declaration"; return OutputFileType2; })(OutputFileType || {}); var EndOfLineState = /* @__PURE__ */ ((EndOfLineState2) => { EndOfLineState2[EndOfLineState2["None"] = 0] = "None"; EndOfLineState2[EndOfLineState2["InMultiLineCommentTrivia"] = 1] = "InMultiLineCommentTrivia"; EndOfLineState2[EndOfLineState2["InSingleQuoteStringLiteral"] = 2] = "InSingleQuoteStringLiteral"; EndOfLineState2[EndOfLineState2["InDoubleQuoteStringLiteral"] = 3] = "InDoubleQuoteStringLiteral"; EndOfLineState2[EndOfLineState2["InTemplateHeadOrNoSubstitutionTemplate"] = 4] = "InTemplateHeadOrNoSubstitutionTemplate"; EndOfLineState2[EndOfLineState2["InTemplateMiddleOrTail"] = 5] = "InTemplateMiddleOrTail"; EndOfLineState2[EndOfLineState2["InTemplateSubstitutionPosition"] = 6] = "InTemplateSubstitutionPosition"; return EndOfLineState2; })(EndOfLineState || {}); var TokenClass = /* @__PURE__ */ ((TokenClass2) => { TokenClass2[TokenClass2["Punctuation"] = 0] = "Punctuation"; TokenClass2[TokenClass2["Keyword"] = 1] = "Keyword"; TokenClass2[TokenClass2["Operator"] = 2] = "Operator"; TokenClass2[TokenClass2["Comment"] = 3] = "Comment"; TokenClass2[TokenClass2["Whitespace"] = 4] = "Whitespace"; TokenClass2[TokenClass2["Identifier"] = 5] = "Identifier"; TokenClass2[TokenClass2["NumberLiteral"] = 6] = "NumberLiteral"; TokenClass2[TokenClass2["BigIntLiteral"] = 7] = "BigIntLiteral"; TokenClass2[TokenClass2["StringLiteral"] = 8] = "StringLiteral"; TokenClass2[TokenClass2["RegExpLiteral"] = 9] = "RegExpLiteral"; return TokenClass2; })(TokenClass || {}); var ScriptElementKind = /* @__PURE__ */ ((ScriptElementKind2) => { ScriptElementKind2["unknown"] = ""; ScriptElementKind2["warning"] = "warning"; ScriptElementKind2["keyword"] = "keyword"; ScriptElementKind2["scriptElement"] = "script"; ScriptElementKind2["moduleElement"] = "module"; ScriptElementKind2["classElement"] = "class"; ScriptElementKind2["localClassElement"] = "local class"; ScriptElementKind2["interfaceElement"] = "interface"; ScriptElementKind2["typeElement"] = "type"; ScriptElementKind2["enumElement"] = "enum"; ScriptElementKind2["enumMemberElement"] = "enum member"; ScriptElementKind2["variableElement"] = "var"; ScriptElementKind2["localVariableElement"] = "local var"; ScriptElementKind2["variableUsingElement"] = "using"; ScriptElementKind2["variableAwaitUsingElement"] = "await using"; ScriptElementKind2["functionElement"] = "function"; ScriptElementKind2["localFunctionElement"] = "local function"; ScriptElementKind2["memberFunctionElement"] = "method"; ScriptElementKind2["memberGetAccessorElement"] = "getter"; ScriptElementKind2["memberSetAccessorElement"] = "setter"; ScriptElementKind2["memberVariableElement"] = "property"; ScriptElementKind2["memberAccessorVariableElement"] = "accessor"; ScriptElementKind2["constructorImplementationElement"] = "constructor"; ScriptElementKind2["callSignatureElement"] = "call"; ScriptElementKind2["indexSignatureElement"] = "index"; ScriptElementKind2["constructSignatureElement"] = "construct"; ScriptElementKind2["parameterElement"] = "parameter"; ScriptElementKind2["typeParameterElement"] = "type parameter"; ScriptElementKind2["primitiveType"] = "primitive type"; ScriptElementKind2["label"] = "label"; ScriptElementKind2["alias"] = "alias"; ScriptElementKind2["constElement"] = "const"; ScriptElementKind2["letElement"] = "let"; ScriptElementKind2["directory"] = "directory"; ScriptElementKind2["externalModuleName"] = "external module name"; ScriptElementKind2["jsxAttribute"] = "JSX attribute"; ScriptElementKind2["string"] = "string"; ScriptElementKind2["link"] = "link"; ScriptElementKind2["linkName"] = "link name"; ScriptElementKind2["linkText"] = "link text"; return ScriptElementKind2; })(ScriptElementKind || {}); var ScriptElementKindModifier = /* @__PURE__ */ ((ScriptElementKindModifier2) => { ScriptElementKindModifier2["none"] = ""; ScriptElementKindModifier2["publicMemberModifier"] = "public"; ScriptElementKindModifier2["privateMemberModifier"] = "private"; ScriptElementKindModifier2["protectedMemberModifier"] = "protected"; ScriptElementKindModifier2["exportedModifier"] = "export"; ScriptElementKindModifier2["ambientModifier"] = "declare"; ScriptElementKindModifier2["staticModifier"] = "static"; ScriptElementKindModifier2["abstractModifier"] = "abstract"; ScriptElementKindModifier2["optionalModifier"] = "optional"; ScriptElementKindModifier2["deprecatedModifier"] = "deprecated"; ScriptElementKindModifier2["dtsModifier"] = ".d.ts"; ScriptElementKindModifier2["tsModifier"] = ".ts"; ScriptElementKindModifier2["tsxModifier"] = ".tsx"; ScriptElementKindModifier2["jsModifier"] = ".js"; ScriptElementKindModifier2["jsxModifier"] = ".jsx"; ScriptElementKindModifier2["jsonModifier"] = ".json"; ScriptElementKindModifier2["dmtsModifier"] = ".d.mts"; ScriptElementKindModifier2["mtsModifier"] = ".mts"; ScriptElementKindModifier2["mjsModifier"] = ".mjs"; ScriptElementKindModifier2["dctsModifier"] = ".d.cts"; ScriptElementKindModifier2["ctsModifier"] = ".cts"; ScriptElementKindModifier2["cjsModifier"] = ".cjs"; return ScriptElementKindModifier2; })(ScriptElementKindModifier || {}); var ClassificationTypeNames = /* @__PURE__ */ ((ClassificationTypeNames2) => { ClassificationTypeNames2["comment"] = "comment"; ClassificationTypeNames2["identifier"] = "identifier"; ClassificationTypeNames2["keyword"] = "keyword"; ClassificationTypeNames2["numericLiteral"] = "number"; ClassificationTypeNames2["bigintLiteral"] = "bigint"; ClassificationTypeNames2["operator"] = "operator"; ClassificationTypeNames2["stringLiteral"] = "string"; ClassificationTypeNames2["whiteSpace"] = "whitespace"; ClassificationTypeNames2["text"] = "text"; ClassificationTypeNames2["punctuation"] = "punctuation"; ClassificationTypeNames2["className"] = "class name"; ClassificationTypeNames2["enumName"] = "enum name"; ClassificationTypeNames2["interfaceName"] = "interface name"; ClassificationTypeNames2["moduleName"] = "module name"; ClassificationTypeNames2["typeParameterName"] = "type parameter name"; ClassificationTypeNames2["typeAliasName"] = "type alias name"; ClassificationTypeNames2["parameterName"] = "parameter name"; ClassificationTypeNames2["docCommentTagName"] = "doc comment tag name"; ClassificationTypeNames2["jsxOpenTagName"] = "jsx open tag name"; ClassificationTypeNames2["jsxCloseTagName"] = "jsx close tag name"; ClassificationTypeNames2["jsxSelfClosingTagName"] = "jsx self closing tag name"; ClassificationTypeNames2["jsxAttribute"] = "jsx attribute"; ClassificationTypeNames2["jsxText"] = "jsx text"; ClassificationTypeNames2["jsxAttributeStringLiteralValue"] = "jsx attribute string literal value"; return ClassificationTypeNames2; })(ClassificationTypeNames || {}); var ClassificationType = /* @__PURE__ */ ((ClassificationType2) => { ClassificationType2[ClassificationType2["comment"] = 1] = "comment"; ClassificationType2[ClassificationType2["identifier"] = 2] = "identifier"; ClassificationType2[ClassificationType2["keyword"] = 3] = "keyword"; ClassificationType2[ClassificationType2["numericLiteral"] = 4] = "numericLiteral"; ClassificationType2[ClassificationType2["operator"] = 5] = "operator"; ClassificationType2[ClassificationType2["stringLiteral"] = 6] = "stringLiteral"; ClassificationType2[ClassificationType2["regularExpressionLiteral"] = 7] = "regularExpressionLiteral"; ClassificationType2[ClassificationType2["whiteSpace"] = 8] = "whiteSpace"; ClassificationType2[ClassificationType2["text"] = 9] = "text"; ClassificationType2[ClassificationType2["punctuation"] = 10] = "punctuation"; ClassificationType2[ClassificationType2["className"] = 11] = "className"; ClassificationType2[ClassificationType2["enumName"] = 12] = "enumName"; ClassificationType2[ClassificationType2["interfaceName"] = 13] = "interfaceName"; ClassificationType2[ClassificationType2["moduleName"] = 14] = "moduleName"; ClassificationType2[ClassificationType2["typeParameterName"] = 15] = "typeParameterName"; ClassificationType2[ClassificationType2["typeAliasName"] = 16] = "typeAliasName"; ClassificationType2[ClassificationType2["parameterName"] = 17] = "parameterName"; ClassificationType2[ClassificationType2["docCommentTagName"] = 18] = "docCommentTagName"; ClassificationType2[ClassificationType2["jsxOpenTagName"] = 19] = "jsxOpenTagName"; ClassificationType2[ClassificationType2["jsxCloseTagName"] = 20] = "jsxCloseTagName"; ClassificationType2[ClassificationType2["jsxSelfClosingTagName"] = 21] = "jsxSelfClosingTagName"; ClassificationType2[ClassificationType2["jsxAttribute"] = 22] = "jsxAttribute"; ClassificationType2[ClassificationType2["jsxText"] = 23] = "jsxText"; ClassificationType2[ClassificationType2["jsxAttributeStringLiteralValue"] = 24] = "jsxAttributeStringLiteralValue"; ClassificationType2[ClassificationType2["bigintLiteral"] = 25] = "bigintLiteral"; return ClassificationType2; })(ClassificationType || {}); var scanner = createScanner(99, true); var SemanticMeaning = /* @__PURE__ */ ((SemanticMeaning2) => { SemanticMeaning2[SemanticMeaning2["None"] = 0] = "None"; SemanticMeaning2[SemanticMeaning2["Value"] = 1] = "Value"; SemanticMeaning2[SemanticMeaning2["Type"] = 2] = "Type"; SemanticMeaning2[SemanticMeaning2["Namespace"] = 4] = "Namespace"; SemanticMeaning2[SemanticMeaning2["All"] = 7] = "All"; return SemanticMeaning2; })(SemanticMeaning || {}); function getMeaningFromDeclaration(node) { switch (node.kind) { case 261: return isInJSFile(node) && getJSDocEnumTag(node) ? 7 : 1; case 170: case 209: case 173: case 172: case 304: case 305: case 175: case 174: case 177: case 178: case 179: case 263: case 219: case 220: case 300: case 292: return 1; case 169: case 265: case 266: case 188: return 2; case 347: return node.name === undefined ? 1 | 2 : 2; case 307: case 264: return 1 | 2; case 268: if (isAmbientModule(node)) { return 4 | 1; } else if (getModuleInstanceState(node) === 1) { return 4 | 1; } else { return 4; } case 267: case 276: case 277: case 272: case 273: case 278: case 279: return 7; case 308: return 4 | 1; } return 7; } function getMeaningFromLocation(node) { node = getAdjustedReferenceLocation(node); const parent2 = node.parent; if (node.kind === 308) { return 1; } else if (isExportAssignment(parent2) || isExportSpecifier(parent2) || isExternalModuleReference(parent2) || isImportSpecifier(parent2) || isImportClause(parent2) || isImportEqualsDeclaration(parent2) && node === parent2.name) { return 7; } else if (isInRightSideOfInternalImportEqualsDeclaration(node)) { return getMeaningFromRightHandSideOfImportEquals(node); } else if (isDeclarationName(node)) { return getMeaningFromDeclaration(parent2); } else if (isEntityName(node) && findAncestor(node, or(isJSDocNameReference, isJSDocLinkLike, isJSDocMemberName))) { return 7; } else if (isTypeReference(node)) { return 2; } else if (isNamespaceReference(node)) { return 4; } else if (isTypeParameterDeclaration(parent2)) { Debug.assert(isJSDocTemplateTag(parent2.parent)); return 2; } else if (isLiteralTypeNode(parent2)) { return 2 | 1; } else { return 1; } } function getMeaningFromRightHandSideOfImportEquals(node) { const name = node.kind === 167 ? node : isQualifiedName(node.parent) && node.parent.right === node ? node.parent : undefined; return name && name.parent.kind === 272 ? 7 : 4; } function isInRightSideOfInternalImportEqualsDeclaration(node) { if (!node.parent) { return false; } while (node.parent.kind === 167) { node = node.parent; } return isInternalModuleImportEqualsDeclaration(node.parent) && node.parent.moduleReference === node; } function isNamespaceReference(node) { return isQualifiedNameNamespaceReference(node) || isPropertyAccessNamespaceReference(node); } function isQualifiedNameNamespaceReference(node) { let root = node; let isLastClause = true; if (root.parent.kind === 167) { while (root.parent && root.parent.kind === 167) { root = root.parent; } isLastClause = root.right === node; } return root.parent.kind === 184 && !isLastClause; } function isPropertyAccessNamespaceReference(node) { let root = node; let isLastClause = true; if (root.parent.kind === 212) { while (root.parent && root.parent.kind === 212) { root = root.parent; } isLastClause = root.name === node; } if (!isLastClause && root.parent.kind === 234 && root.parent.parent.kind === 299) { const decl = root.parent.parent.parent; return decl.kind === 264 && root.parent.parent.token === 119 || decl.kind === 265 && root.parent.parent.token === 96; } return false; } function isTypeReference(node) { if (isRightSideOfQualifiedNameOrPropertyAccess(node)) { node = node.parent; } switch (node.kind) { case 110: return !isExpressionNode(node); case 198: return true; } switch (node.parent.kind) { case 184: return true; case 206: return !node.parent.isTypeOf; case 234: return isPartOfTypeNode(node.parent); } return false; } function isCallExpressionTarget(node, includeElementAccess = false, skipPastOuterExpressions = false) { return isCalleeWorker(node, isCallExpression, selectExpressionOfCallOrNewExpressionOrDecorator, includeElementAccess, skipPastOuterExpressions); } function isNewExpressionTarget(node, includeElementAccess = false, skipPastOuterExpressions = false) { return isCalleeWorker(node, isNewExpression, selectExpressionOfCallOrNewExpressionOrDecorator, includeElementAccess, skipPastOuterExpressions); } function isCallOrNewExpressionTarget(node, includeElementAccess = false, skipPastOuterExpressions = false) { return isCalleeWorker(node, isCallOrNewExpression, selectExpressionOfCallOrNewExpressionOrDecorator, includeElementAccess, skipPastOuterExpressions); } function isTaggedTemplateTag(node, includeElementAccess = false, skipPastOuterExpressions = false) { return isCalleeWorker(node, isTaggedTemplateExpression, selectTagOfTaggedTemplateExpression, includeElementAccess, skipPastOuterExpressions); } function isDecoratorTarget(node, includeElementAccess = false, skipPastOuterExpressions = false) { return isCalleeWorker(node, isDecorator, selectExpressionOfCallOrNewExpressionOrDecorator, includeElementAccess, skipPastOuterExpressions); } function isJsxOpeningLikeElementTagName(node, includeElementAccess = false, skipPastOuterExpressions = false) { return isCalleeWorker(node, isJsxOpeningLikeElement, selectTagNameOfJsxOpeningLikeElement, includeElementAccess, skipPastOuterExpressions); } function selectExpressionOfCallOrNewExpressionOrDecorator(node) { return node.expression; } function selectTagOfTaggedTemplateExpression(node) { return node.tag; } function selectTagNameOfJsxOpeningLikeElement(node) { return node.tagName; } function isCalleeWorker(node, pred, calleeSelector, includeElementAccess, skipPastOuterExpressions) { let target = includeElementAccess ? climbPastPropertyOrElementAccess(node) : climbPastPropertyAccess(node); if (skipPastOuterExpressions) { target = skipOuterExpressions(target); } return !!target && !!target.parent && pred(target.parent) && calleeSelector(target.parent) === target; } function climbPastPropertyAccess(node) { return isRightSideOfPropertyAccess(node) ? node.parent : node; } function climbPastPropertyOrElementAccess(node) { return isRightSideOfPropertyAccess(node) || isArgumentExpressionOfElementAccess(node) ? node.parent : node; } function getTargetLabel(referenceNode, labelName) { while (referenceNode) { if (referenceNode.kind === 257 && referenceNode.label.escapedText === labelName) { return referenceNode.label; } referenceNode = referenceNode.parent; } return; } function hasPropertyAccessExpressionWithName(node, funcName) { if (!isPropertyAccessExpression(node.expression)) { return false; } return node.expression.name.text === funcName; } function isJumpStatementTarget(node) { var _a; return isIdentifier(node) && ((_a = tryCast(node.parent, isBreakOrContinueStatement)) == null ? undefined : _a.label) === node; } function isLabelOfLabeledStatement(node) { var _a; return isIdentifier(node) && ((_a = tryCast(node.parent, isLabeledStatement)) == null ? undefined : _a.label) === node; } function isLabelName(node) { return isLabelOfLabeledStatement(node) || isJumpStatementTarget(node); } function isTagName(node) { var _a; return ((_a = tryCast(node.parent, isJSDocTag)) == null ? undefined : _a.tagName) === node; } function isRightSideOfQualifiedName(node) { var _a; return ((_a = tryCast(node.parent, isQualifiedName)) == null ? undefined : _a.right) === node; } function isRightSideOfPropertyAccess(node) { var _a; return ((_a = tryCast(node.parent, isPropertyAccessExpression)) == null ? undefined : _a.name) === node; } function isArgumentExpressionOfElementAccess(node) { var _a; return ((_a = tryCast(node.parent, isElementAccessExpression)) == null ? undefined : _a.argumentExpression) === node; } function isNameOfModuleDeclaration(node) { var _a; return ((_a = tryCast(node.parent, isModuleDeclaration)) == null ? undefined : _a.name) === node; } function isNameOfFunctionDeclaration(node) { var _a; return isIdentifier(node) && ((_a = tryCast(node.parent, isFunctionLike)) == null ? undefined : _a.name) === node; } function isLiteralNameOfPropertyDeclarationOrIndexAccess(node) { switch (node.parent.kind) { case 173: case 172: case 304: case 307: case 175: case 174: case 178: case 179: case 268: return getNameOfDeclaration(node.parent) === node; case 213: return node.parent.argumentExpression === node; case 168: return true; case 202: return node.parent.parent.kind === 200; default: return false; } } function isExpressionOfExternalModuleImportEqualsDeclaration(node) { return isExternalModuleImportEqualsDeclaration(node.parent.parent) && getExternalModuleImportEqualsDeclarationExpression(node.parent.parent) === node; } function getContainerNode(node) { if (isJSDocTypeAlias(node)) { node = node.parent.parent; } while (true) { node = node.parent; if (!node) { return; } switch (node.kind) { case 308: case 175: case 174: case 263: case 219: case 178: case 179: case 264: case 265: case 267: case 268: return node; } } } function getNodeKind(node) { switch (node.kind) { case 308: return isExternalModule(node) ? "module" : "script"; case 268: return "module"; case 264: case 232: return "class"; case 265: return "interface"; case 266: case 339: case 347: return "type"; case 267: return "enum"; case 261: return getKindOfVariableDeclaration(node); case 209: return getKindOfVariableDeclaration(getRootDeclaration(node)); case 220: case 263: case 219: return "function"; case 178: return "getter"; case 179: return "setter"; case 175: case 174: return "method"; case 304: const { initializer } = node; return isFunctionLike(initializer) ? "method" : "property"; case 173: case 172: case 305: case 306: return "property"; case 182: return "index"; case 181: return "construct"; case 180: return "call"; case 177: case 176: return "constructor"; case 169: return "type parameter"; case 307: return "enum member"; case 170: return hasSyntacticModifier(node, 31) ? "property" : "parameter"; case 272: case 277: case 282: case 275: case 281: return "alias"; case 227: const kind = getAssignmentDeclarationKind(node); const { right } = node; switch (kind) { case 7: case 8: case 9: case 0: return ""; case 1: case 2: const rightKind = getNodeKind(right); return rightKind === "" ? "const" : rightKind; case 3: return isFunctionExpression(right) ? "method" : "property"; case 4: return "property"; case 5: return isFunctionExpression(right) ? "method" : "property"; case 6: return "local class"; default: { assertType(kind); return ""; } } case 80: return isImportClause(node.parent) ? "alias" : ""; case 278: const scriptKind = getNodeKind(node.expression); return scriptKind === "" ? "const" : scriptKind; default: return ""; } function getKindOfVariableDeclaration(v) { return isVarConst(v) ? "const" : isLet(v) ? "let" : "var"; } } function isThis(node) { switch (node.kind) { case 110: return true; case 80: return identifierIsThisKeyword(node) && node.parent.kind === 170; default: return false; } } var tripleSlashDirectivePrefixRegex = /^\/\/\/\s*= end; } function rangeOverlapsWithStartEnd(r1, start, end) { return startEndOverlapsWithStartEnd(r1.pos, r1.end, start, end); } function nodeOverlapsWithStartEnd(node, sourceFile, start, end) { return startEndOverlapsWithStartEnd(node.getStart(sourceFile), node.end, start, end); } function startEndOverlapsWithStartEnd(start1, end1, start2, end2) { const start = Math.max(start1, start2); const end = Math.min(end1, end2); return start < end; } function positionBelongsToNode(candidate, position, sourceFile) { Debug.assert(candidate.pos <= position); return position < candidate.end || !isCompletedNode(candidate, sourceFile); } function isCompletedNode(n, sourceFile) { if (n === undefined || nodeIsMissing(n)) { return false; } switch (n.kind) { case 264: case 265: case 267: case 211: case 207: case 188: case 242: case 269: case 270: case 276: case 280: return nodeEndsWith(n, 20, sourceFile); case 300: return isCompletedNode(n.block, sourceFile); case 215: if (!n.arguments) { return true; } case 214: case 218: case 197: return nodeEndsWith(n, 22, sourceFile); case 185: case 186: return isCompletedNode(n.type, sourceFile); case 177: case 178: case 179: case 263: case 219: case 175: case 174: case 181: case 180: case 220: if (n.body) { return isCompletedNode(n.body, sourceFile); } if (n.type) { return isCompletedNode(n.type, sourceFile); } return hasChildOfKind(n, 22, sourceFile); case 268: return !!n.body && isCompletedNode(n.body, sourceFile); case 246: if (n.elseStatement) { return isCompletedNode(n.elseStatement, sourceFile); } return isCompletedNode(n.thenStatement, sourceFile); case 245: return isCompletedNode(n.expression, sourceFile) || hasChildOfKind(n, 27, sourceFile); case 210: case 208: case 213: case 168: case 190: return nodeEndsWith(n, 24, sourceFile); case 182: if (n.type) { return isCompletedNode(n.type, sourceFile); } return hasChildOfKind(n, 24, sourceFile); case 297: case 298: return false; case 249: case 250: case 251: case 248: return isCompletedNode(n.statement, sourceFile); case 247: return hasChildOfKind(n, 117, sourceFile) ? nodeEndsWith(n, 22, sourceFile) : isCompletedNode(n.statement, sourceFile); case 187: return isCompletedNode(n.exprName, sourceFile); case 222: case 221: case 223: case 230: case 231: const unaryWordExpression = n; return isCompletedNode(unaryWordExpression.expression, sourceFile); case 216: return isCompletedNode(n.template, sourceFile); case 229: const lastSpan = lastOrUndefined(n.templateSpans); return isCompletedNode(lastSpan, sourceFile); case 240: return nodeIsPresent(n.literal); case 279: case 273: return nodeIsPresent(n.moduleSpecifier); case 225: return isCompletedNode(n.operand, sourceFile); case 227: return isCompletedNode(n.right, sourceFile); case 228: return isCompletedNode(n.whenFalse, sourceFile); default: return true; } } function nodeEndsWith(n, expectedLastToken, sourceFile) { const children = n.getChildren(sourceFile); if (children.length) { const lastChild = last(children); if (lastChild.kind === expectedLastToken) { return true; } else if (lastChild.kind === 27 && children.length !== 1) { return children[children.length - 2].kind === expectedLastToken; } } return false; } function findListItemInfo(node) { const list = findContainingList(node); if (!list) { return; } const children = list.getChildren(); const listItemIndex = indexOfNode(children, node); return { listItemIndex, list }; } function hasChildOfKind(n, kind, sourceFile) { return !!findChildOfKind(n, kind, sourceFile); } function findChildOfKind(n, kind, sourceFile) { return find(n.getChildren(sourceFile), (c) => c.kind === kind); } function findContainingList(node) { const syntaxList = find(node.parent.getChildren(), (c) => isSyntaxList(c) && rangeContainsRange(c, node)); Debug.assert(!syntaxList || contains(syntaxList.getChildren(), node)); return syntaxList; } function isDefaultModifier2(node) { return node.kind === 90; } function isClassKeyword(node) { return node.kind === 86; } function isFunctionKeyword(node) { return node.kind === 100; } function getAdjustedLocationForClass(node) { if (isNamedDeclaration(node)) { return node.name; } if (isClassDeclaration(node)) { const defaultModifier = node.modifiers && find(node.modifiers, isDefaultModifier2); if (defaultModifier) return defaultModifier; } if (isClassExpression(node)) { const classKeyword = find(node.getChildren(), isClassKeyword); if (classKeyword) return classKeyword; } } function getAdjustedLocationForFunction(node) { if (isNamedDeclaration(node)) { return node.name; } if (isFunctionDeclaration(node)) { const defaultModifier = find(node.modifiers, isDefaultModifier2); if (defaultModifier) return defaultModifier; } if (isFunctionExpression(node)) { const functionKeyword = find(node.getChildren(), isFunctionKeyword); if (functionKeyword) return functionKeyword; } } function getAncestorTypeNode(node) { let lastTypeNode; findAncestor(node, (a) => { if (isTypeNode(a)) { lastTypeNode = a; } return !isQualifiedName(a.parent) && !isTypeNode(a.parent) && !isTypeElement(a.parent); }); return lastTypeNode; } function getContextualTypeFromParentOrAncestorTypeNode(node, checker) { if (node.flags & (16777216 & ~524288)) return; const contextualType = getContextualTypeFromParent(node, checker); if (contextualType) return contextualType; const ancestorTypeNode = getAncestorTypeNode(node); return ancestorTypeNode && checker.getTypeAtLocation(ancestorTypeNode); } function getAdjustedLocationForDeclaration(node, forRename) { if (!forRename) { switch (node.kind) { case 264: case 232: return getAdjustedLocationForClass(node); case 263: case 219: return getAdjustedLocationForFunction(node); case 177: return node; } } if (isNamedDeclaration(node)) { return node.name; } } function getAdjustedLocationForImportDeclaration(node, forRename) { if (node.importClause) { if (node.importClause.name && node.importClause.namedBindings) { return; } if (node.importClause.name) { return node.importClause.name; } if (node.importClause.namedBindings) { if (isNamedImports(node.importClause.namedBindings)) { const onlyBinding = singleOrUndefined(node.importClause.namedBindings.elements); if (!onlyBinding) { return; } return onlyBinding.name; } else if (isNamespaceImport(node.importClause.namedBindings)) { return node.importClause.namedBindings.name; } } } if (!forRename) { return node.moduleSpecifier; } } function getAdjustedLocationForExportDeclaration(node, forRename) { if (node.exportClause) { if (isNamedExports(node.exportClause)) { const onlyBinding = singleOrUndefined(node.exportClause.elements); if (!onlyBinding) { return; } return node.exportClause.elements[0].name; } else if (isNamespaceExport(node.exportClause)) { return node.exportClause.name; } } if (!forRename) { return node.moduleSpecifier; } } function getAdjustedLocationForHeritageClause(node) { if (node.types.length === 1) { return node.types[0].expression; } } function getAdjustedLocation(node, forRename) { const { parent: parent2 } = node; if (isModifier(node) && (forRename || node.kind !== 90) ? canHaveModifiers(parent2) && contains(parent2.modifiers, node) : node.kind === 86 ? isClassDeclaration(parent2) || isClassExpression(node) : node.kind === 100 ? isFunctionDeclaration(parent2) || isFunctionExpression(node) : node.kind === 120 ? isInterfaceDeclaration(parent2) : node.kind === 94 ? isEnumDeclaration(parent2) : node.kind === 156 ? isTypeAliasDeclaration(parent2) : node.kind === 145 || node.kind === 144 ? isModuleDeclaration(parent2) : node.kind === 102 ? isImportEqualsDeclaration(parent2) : node.kind === 139 ? isGetAccessorDeclaration(parent2) : node.kind === 153 && isSetAccessorDeclaration(parent2)) { const location = getAdjustedLocationForDeclaration(parent2, forRename); if (location) { return location; } } if ((node.kind === 115 || node.kind === 87 || node.kind === 121) && isVariableDeclarationList(parent2) && parent2.declarations.length === 1) { const decl = parent2.declarations[0]; if (isIdentifier(decl.name)) { return decl.name; } } if (node.kind === 156) { if (isImportClause(parent2) && parent2.isTypeOnly) { const location = getAdjustedLocationForImportDeclaration(parent2.parent, forRename); if (location) { return location; } } if (isExportDeclaration(parent2) && parent2.isTypeOnly) { const location = getAdjustedLocationForExportDeclaration(parent2, forRename); if (location) { return location; } } } if (node.kind === 130) { if (isImportSpecifier(parent2) && parent2.propertyName || isExportSpecifier(parent2) && parent2.propertyName || isNamespaceImport(parent2) || isNamespaceExport(parent2)) { return parent2.name; } if (isExportDeclaration(parent2) && parent2.exportClause && isNamespaceExport(parent2.exportClause)) { return parent2.exportClause.name; } } if (node.kind === 102 && isImportDeclaration(parent2)) { const location = getAdjustedLocationForImportDeclaration(parent2, forRename); if (location) { return location; } } if (node.kind === 95) { if (isExportDeclaration(parent2)) { const location = getAdjustedLocationForExportDeclaration(parent2, forRename); if (location) { return location; } } if (isExportAssignment(parent2)) { return skipOuterExpressions(parent2.expression); } } if (node.kind === 149 && isExternalModuleReference(parent2)) { return parent2.expression; } if (node.kind === 161 && (isImportDeclaration(parent2) || isExportDeclaration(parent2)) && parent2.moduleSpecifier) { return parent2.moduleSpecifier; } if ((node.kind === 96 || node.kind === 119) && isHeritageClause(parent2) && parent2.token === node.kind) { const location = getAdjustedLocationForHeritageClause(parent2); if (location) { return location; } } if (node.kind === 96) { if (isTypeParameterDeclaration(parent2) && parent2.constraint && isTypeReferenceNode(parent2.constraint)) { return parent2.constraint.typeName; } if (isConditionalTypeNode(parent2) && isTypeReferenceNode(parent2.extendsType)) { return parent2.extendsType.typeName; } } if (node.kind === 140 && isInferTypeNode(parent2)) { return parent2.typeParameter.name; } if (node.kind === 103 && isTypeParameterDeclaration(parent2) && isMappedTypeNode(parent2.parent)) { return parent2.name; } if (node.kind === 143 && isTypeOperatorNode(parent2) && parent2.operator === 143 && isTypeReferenceNode(parent2.type)) { return parent2.type.typeName; } if (node.kind === 148 && isTypeOperatorNode(parent2) && parent2.operator === 148 && isArrayTypeNode(parent2.type) && isTypeReferenceNode(parent2.type.elementType)) { return parent2.type.elementType.typeName; } if (!forRename) { if (node.kind === 105 && isNewExpression(parent2) || node.kind === 116 && isVoidExpression(parent2) || node.kind === 114 && isTypeOfExpression(parent2) || node.kind === 135 && isAwaitExpression(parent2) || node.kind === 127 && isYieldExpression(parent2) || node.kind === 91 && isDeleteExpression(parent2)) { if (parent2.expression) { return skipOuterExpressions(parent2.expression); } } if ((node.kind === 103 || node.kind === 104) && isBinaryExpression(parent2) && parent2.operatorToken === node) { return skipOuterExpressions(parent2.right); } if (node.kind === 130 && isAsExpression(parent2) && isTypeReferenceNode(parent2.type)) { return parent2.type.typeName; } if (node.kind === 103 && isForInStatement(parent2) || node.kind === 165 && isForOfStatement(parent2)) { return skipOuterExpressions(parent2.expression); } } return node; } function getAdjustedReferenceLocation(node) { return getAdjustedLocation(node, false); } function getAdjustedRenameLocation(node) { return getAdjustedLocation(node, true); } function getTouchingPropertyName(sourceFile, position) { return getTouchingToken(sourceFile, position, (n) => isPropertyNameLiteral(n) || isKeyword(n.kind) || isPrivateIdentifier(n)); } function getTouchingToken(sourceFile, position, includePrecedingTokenAtEndPosition) { return getTokenAtPositionWorker(sourceFile, position, false, includePrecedingTokenAtEndPosition, false); } function getTokenAtPosition(sourceFile, position) { return getTokenAtPositionWorker(sourceFile, position, true, undefined, false); } function getTokenAtPositionWorker(sourceFile, position, allowPositionInLeadingTrivia, includePrecedingTokenAtEndPosition, includeEndPosition) { let current = sourceFile; let foundToken; outer: while (true) { const children = current.getChildren(sourceFile); const i = binarySearchKey(children, position, (_, i2) => i2, (middle, _) => { const end = children[middle].getEnd(); if (end < position) { return -1; } const start = allowPositionInLeadingTrivia ? children[middle].getFullStart() : children[middle].getStart(sourceFile, true); if (start > position) { return 1; } if (nodeContainsPosition(children[middle], start, end)) { if (children[middle - 1]) { if (nodeContainsPosition(children[middle - 1])) { return 1; } } return 0; } if (includePrecedingTokenAtEndPosition && start === position && children[middle - 1] && children[middle - 1].getEnd() === position && nodeContainsPosition(children[middle - 1])) { return 1; } return -1; }); if (foundToken) { return foundToken; } if (i >= 0 && children[i]) { current = children[i]; continue outer; } return current; } function nodeContainsPosition(node, start, end) { end ?? (end = node.getEnd()); if (end < position) { return false; } start ?? (start = allowPositionInLeadingTrivia ? node.getFullStart() : node.getStart(sourceFile, true)); if (start > position) { return false; } if (position < end || position === end && (node.kind === 1 || includeEndPosition)) { return true; } else if (includePrecedingTokenAtEndPosition && end === position) { const previousToken = findPrecedingToken(position, sourceFile, node); if (previousToken && includePrecedingTokenAtEndPosition(previousToken)) { foundToken = previousToken; return true; } } return false; } } function findFirstNonJsxWhitespaceToken(sourceFile, position) { let tokenAtPosition = getTokenAtPosition(sourceFile, position); while (isWhiteSpaceOnlyJsxText(tokenAtPosition)) { const nextToken = findNextToken(tokenAtPosition, tokenAtPosition.parent, sourceFile); if (!nextToken) return; tokenAtPosition = nextToken; } return tokenAtPosition; } function findTokenOnLeftOfPosition(file, position) { const tokenAtPosition = getTokenAtPosition(file, position); if (isToken(tokenAtPosition) && position > tokenAtPosition.getStart(file) && position < tokenAtPosition.getEnd()) { return tokenAtPosition; } return findPrecedingToken(position, file); } function findNextToken(previousToken, parent2, sourceFile) { return find2(parent2); function find2(n) { if (isToken(n) && n.pos === previousToken.end) { return n; } return firstDefined(n.getChildren(sourceFile), (child) => { const shouldDiveInChildNode = child.pos <= previousToken.pos && child.end > previousToken.end || child.pos === previousToken.end; return shouldDiveInChildNode && nodeHasTokens(child, sourceFile) ? find2(child) : undefined; }); } } function findPrecedingToken(position, sourceFile, startNode2, excludeJsdoc) { const result = find2(startNode2 || sourceFile); Debug.assert(!(result && isWhiteSpaceOnlyJsxText(result))); return result; function find2(n) { if (isNonWhitespaceToken(n) && n.kind !== 1) { return n; } const children = n.getChildren(sourceFile); const i = binarySearchKey(children, position, (_, i2) => i2, (middle, _) => { if (position < children[middle].end) { if (!children[middle - 1] || position >= children[middle - 1].end) { return 0; } return 1; } return -1; }); if (i >= 0 && children[i]) { const child = children[i]; if (position < child.end) { const start = child.getStart(sourceFile, !excludeJsdoc); const lookInPreviousChild = start >= position || !nodeHasTokens(child, sourceFile) || isWhiteSpaceOnlyJsxText(child); if (lookInPreviousChild) { const candidate2 = findRightmostChildNodeWithTokens(children, i, sourceFile, n.kind); if (candidate2) { if (!excludeJsdoc && isJSDocCommentContainingNode(candidate2) && candidate2.getChildren(sourceFile).length) { return find2(candidate2); } return findRightmostToken(candidate2, sourceFile); } return; } else { return find2(child); } } } Debug.assert(startNode2 !== undefined || n.kind === 308 || n.kind === 1 || isJSDocCommentContainingNode(n)); const candidate = findRightmostChildNodeWithTokens(children, children.length, sourceFile, n.kind); return candidate && findRightmostToken(candidate, sourceFile); } } function isNonWhitespaceToken(n) { return isToken(n) && !isWhiteSpaceOnlyJsxText(n); } function findRightmostToken(n, sourceFile) { if (isNonWhitespaceToken(n)) { return n; } const children = n.getChildren(sourceFile); if (children.length === 0) { return n; } const candidate = findRightmostChildNodeWithTokens(children, children.length, sourceFile, n.kind); return candidate && findRightmostToken(candidate, sourceFile); } function findRightmostChildNodeWithTokens(children, exclusiveStartPosition, sourceFile, parentKind) { for (let i = exclusiveStartPosition - 1;i >= 0; i--) { const child = children[i]; if (isWhiteSpaceOnlyJsxText(child)) { if (i === 0 && (parentKind === 12 || parentKind === 286)) { Debug.fail("`JsxText` tokens should not be the first child of `JsxElement | JsxSelfClosingElement`"); } } else if (nodeHasTokens(children[i], sourceFile)) { return children[i]; } } } function isInString(sourceFile, position, previousToken = findPrecedingToken(position, sourceFile)) { if (previousToken && isStringTextContainingNode(previousToken)) { const start = previousToken.getStart(sourceFile); const end = previousToken.getEnd(); if (start < position && position < end) { return true; } if (position === end) { return !!previousToken.isUnterminated; } } return false; } function isInsideJsxElementOrAttribute(sourceFile, position) { const token = getTokenAtPosition(sourceFile, position); if (!token) { return false; } if (token.kind === 12) { return true; } if (token.kind === 30 && token.parent.kind === 12) { return true; } if (token.kind === 30 && token.parent.kind === 295) { return true; } if (token && token.kind === 20 && token.parent.kind === 295) { return true; } if (token.kind === 30 && token.parent.kind === 288) { return true; } return false; } function isWhiteSpaceOnlyJsxText(node) { return isJsxText(node) && node.containsOnlyTriviaWhiteSpaces; } function isInTemplateString(sourceFile, position) { const token = getTokenAtPosition(sourceFile, position); return isTemplateLiteralKind(token.kind) && position > token.getStart(sourceFile); } function isInJSXText(sourceFile, position) { const token = getTokenAtPosition(sourceFile, position); if (isJsxText(token)) { return true; } if (token.kind === 19 && isJsxExpression(token.parent) && isJsxElement(token.parent.parent)) { return true; } if (token.kind === 30 && isJsxOpeningLikeElement(token.parent) && isJsxElement(token.parent.parent)) { return true; } return false; } function isInsideJsxElement(sourceFile, position) { function isInsideJsxElementTraversal(node) { while (node) { if (node.kind >= 286 && node.kind <= 295 || node.kind === 12 || node.kind === 30 || node.kind === 32 || node.kind === 80 || node.kind === 20 || node.kind === 19 || node.kind === 44) { node = node.parent; } else if (node.kind === 285) { if (position > node.getStart(sourceFile)) return true; node = node.parent; } else { return false; } } return false; } return isInsideJsxElementTraversal(getTokenAtPosition(sourceFile, position)); } function findPrecedingMatchingToken(token, matchingTokenKind, sourceFile) { const closeTokenText = tokenToString(token.kind); const matchingTokenText = tokenToString(matchingTokenKind); const tokenFullStart = token.getFullStart(); const bestGuessIndex = sourceFile.text.lastIndexOf(matchingTokenText, tokenFullStart); if (bestGuessIndex === -1) { return; } if (sourceFile.text.lastIndexOf(closeTokenText, tokenFullStart - 1) < bestGuessIndex) { const nodeAtGuess = findPrecedingToken(bestGuessIndex + 1, sourceFile); if (nodeAtGuess && nodeAtGuess.kind === matchingTokenKind) { return nodeAtGuess; } } const tokenKind = token.kind; let remainingMatchingTokens = 0; while (true) { const preceding = findPrecedingToken(token.getFullStart(), sourceFile); if (!preceding) { return; } token = preceding; if (token.kind === matchingTokenKind) { if (remainingMatchingTokens === 0) { return token; } remainingMatchingTokens--; } else if (token.kind === tokenKind) { remainingMatchingTokens++; } } } function removeOptionality(type, isOptionalExpression, isOptionalChain2) { return isOptionalExpression ? type.getNonNullableType() : isOptionalChain2 ? type.getNonOptionalType() : type; } function isPossiblyTypeArgumentPosition(token, sourceFile, checker) { const info = getPossibleTypeArgumentsInfo(token, sourceFile); return info !== undefined && (isPartOfTypeNode(info.called) || getPossibleGenericSignatures(info.called, info.nTypeArguments, checker).length !== 0 || isPossiblyTypeArgumentPosition(info.called, sourceFile, checker)); } function getPossibleGenericSignatures(called, typeArgumentCount, checker) { let type = checker.getTypeAtLocation(called); if (isOptionalChain(called.parent)) { type = removeOptionality(type, isOptionalChainRoot(called.parent), true); } const signatures = isNewExpression(called.parent) ? type.getConstructSignatures() : type.getCallSignatures(); return signatures.filter((candidate) => !!candidate.typeParameters && candidate.typeParameters.length >= typeArgumentCount); } function getPossibleTypeArgumentsInfo(tokenIn, sourceFile) { if (sourceFile.text.lastIndexOf("<", tokenIn ? tokenIn.pos : sourceFile.text.length) === -1) { return; } let token = tokenIn; let remainingLessThanTokens = 0; let nTypeArguments = 0; while (token) { switch (token.kind) { case 30: token = findPrecedingToken(token.getFullStart(), sourceFile); if (token && token.kind === 29) { token = findPrecedingToken(token.getFullStart(), sourceFile); } if (!token || !isIdentifier(token)) return; if (!remainingLessThanTokens) { return isDeclarationName(token) ? undefined : { called: token, nTypeArguments }; } remainingLessThanTokens--; break; case 50: remainingLessThanTokens = 3; break; case 49: remainingLessThanTokens = 2; break; case 32: remainingLessThanTokens++; break; case 20: token = findPrecedingMatchingToken(token, 19, sourceFile); if (!token) return; break; case 22: token = findPrecedingMatchingToken(token, 21, sourceFile); if (!token) return; break; case 24: token = findPrecedingMatchingToken(token, 23, sourceFile); if (!token) return; break; case 28: nTypeArguments++; break; case 39: case 80: case 11: case 9: case 10: case 112: case 97: case 114: case 96: case 143: case 25: case 52: case 58: case 59: break; default: if (isTypeNode(token)) { break; } return; } token = findPrecedingToken(token.getFullStart(), sourceFile); } return; } function isInComment(sourceFile, position, tokenAtPosition) { return ts_formatting_exports.getRangeOfEnclosingComment(sourceFile, position, undefined, tokenAtPosition); } function hasDocComment(sourceFile, position) { const token = getTokenAtPosition(sourceFile, position); return !!findAncestor(token, isJSDoc); } function nodeHasTokens(n, sourceFile) { return n.kind === 1 ? !!n.jsDoc : n.getWidth(sourceFile) !== 0; } function getNodeModifiers(node, excludeFlags = 0) { const result = []; const flags = isDeclaration(node) ? getCombinedNodeFlagsAlwaysIncludeJSDoc(node) & ~excludeFlags : 0; if (flags & 2) result.push("private"); if (flags & 4) result.push("protected"); if (flags & 1) result.push("public"); if (flags & 256 || isClassStaticBlockDeclaration(node)) result.push("static"); if (flags & 64) result.push("abstract"); if (flags & 32) result.push("export"); if (flags & 65536) result.push("deprecated"); if (node.flags & 33554432) result.push("declare"); if (node.kind === 278) result.push("export"); return result.length > 0 ? result.join(",") : ""; } function getTypeArgumentOrTypeParameterList(node) { if (node.kind === 184 || node.kind === 214) { return node.typeArguments; } if (isFunctionLike(node) || node.kind === 264 || node.kind === 265) { return node.typeParameters; } return; } function isComment(kind) { return kind === 2 || kind === 3; } function isStringOrRegularExpressionOrTemplateLiteral(kind) { if (kind === 11 || kind === 14 || isTemplateLiteralKind(kind)) { return true; } return false; } function areIntersectedTypesAvoidingStringReduction(checker, t1, t2) { return !!(t1.flags & 32) && checker.isEmptyAnonymousObjectType(t2); } function isStringAndEmptyAnonymousObjectIntersection(type) { if (!type.isIntersection()) { return false; } const { types, checker } = type; return types.length === 2 && (areIntersectedTypesAvoidingStringReduction(checker, types[0], types[1]) || areIntersectedTypesAvoidingStringReduction(checker, types[1], types[0])); } function isInsideTemplateLiteral(node, position, sourceFile) { return isTemplateLiteralKind(node.kind) && (node.getStart(sourceFile) < position && position < node.end) || !!node.isUnterminated && position === node.end; } function isAccessibilityModifier(kind) { switch (kind) { case 125: case 123: case 124: return true; } return false; } function cloneCompilerOptions(options) { const result = clone(options); setConfigFileInOptions(result, options && options.configFile); return result; } function isArrayLiteralOrObjectLiteralDestructuringPattern(node) { if (node.kind === 210 || node.kind === 211) { if (node.parent.kind === 227 && node.parent.left === node && node.parent.operatorToken.kind === 64) { return true; } if (node.parent.kind === 251 && node.parent.initializer === node) { return true; } if (isArrayLiteralOrObjectLiteralDestructuringPattern(node.parent.kind === 304 ? node.parent.parent : node.parent)) { return true; } } return false; } function isInReferenceComment(sourceFile, position) { return isInReferenceCommentWorker(sourceFile, position, true); } function isInNonReferenceComment(sourceFile, position) { return isInReferenceCommentWorker(sourceFile, position, false); } function isInReferenceCommentWorker(sourceFile, position, shouldBeReference) { const range = isInComment(sourceFile, position, undefined); return !!range && shouldBeReference === tripleSlashDirectivePrefixRegex.test(sourceFile.text.substring(range.pos, range.end)); } function getReplacementSpanForContextToken(contextToken, position) { if (!contextToken) return; switch (contextToken.kind) { case 11: case 15: return createTextSpanFromStringLiteralLikeContent(contextToken, position); default: return createTextSpanFromNode(contextToken); } } function createTextSpanFromNode(node, sourceFile, endNode2) { return createTextSpanFromBounds(node.getStart(sourceFile), (endNode2 || node).getEnd()); } function createTextSpanFromStringLiteralLikeContent(node, position) { let replacementEnd = node.getEnd() - 1; if (node.isUnterminated) { if (node.getStart() === replacementEnd) return; replacementEnd = Math.min(position, node.getEnd()); } return createTextSpanFromBounds(node.getStart() + 1, replacementEnd); } function createTextRangeFromNode(node, sourceFile) { return createRange(node.getStart(sourceFile), node.end); } function createTextSpanFromRange(range) { return createTextSpanFromBounds(range.pos, range.end); } function createTextRangeFromSpan(span) { return createRange(span.start, span.start + span.length); } function createTextChangeFromStartLength(start, length2, newText) { return createTextChange(createTextSpan(start, length2), newText); } function createTextChange(span, newText) { return { span, newText }; } var typeKeywords = [ 133, 131, 163, 136, 97, 140, 143, 146, 106, 150, 151, 148, 154, 155, 114, 112, 116, 157, 158, 159 ]; function isTypeKeyword(kind) { return contains(typeKeywords, kind); } function isTypeKeywordToken(node) { return node.kind === 156; } function isTypeKeywordTokenOrIdentifier(node) { return isTypeKeywordToken(node) || isIdentifier(node) && node.text === "type"; } function nodeSeenTracker() { const seen = []; return (node) => { const id = getNodeId(node); return !seen[id] && (seen[id] = true); }; } function getSnapshotText(snap) { return snap.getText(0, snap.getLength()); } function repeatString(str, count) { let result = ""; for (let i = 0;i < count; i++) { result += str; } return result; } function skipConstraint(type) { return type.isTypeParameter() ? type.getConstraint() || type : type; } function getNameFromPropertyName(name) { return name.kind === 168 ? isStringOrNumericLiteralLike(name.expression) ? name.expression.text : undefined : isPrivateIdentifier(name) ? idText(name) : getTextOfIdentifierOrLiteral(name); } function programContainsModules(program) { return program.getSourceFiles().some((s) => !s.isDeclarationFile && !program.isSourceFileFromExternalLibrary(s) && !!(s.externalModuleIndicator || s.commonJsModuleIndicator)); } function programContainsEsModules(program) { return program.getSourceFiles().some((s) => !s.isDeclarationFile && !program.isSourceFileFromExternalLibrary(s) && !!s.externalModuleIndicator); } function compilerOptionsIndicateEsModules(compilerOptions) { return !!compilerOptions.module || getEmitScriptTarget(compilerOptions) >= 2 || !!compilerOptions.noEmit; } function createModuleSpecifierResolutionHost(program, host) { return { fileExists: (fileName) => program.fileExists(fileName), getCurrentDirectory: () => host.getCurrentDirectory(), readFile: maybeBind(host, host.readFile), useCaseSensitiveFileNames: maybeBind(host, host.useCaseSensitiveFileNames) || program.useCaseSensitiveFileNames, getSymlinkCache: maybeBind(host, host.getSymlinkCache) || program.getSymlinkCache, getModuleSpecifierCache: maybeBind(host, host.getModuleSpecifierCache), getPackageJsonInfoCache: () => { var _a; return (_a = program.getModuleResolutionCache()) == null ? undefined : _a.getPackageJsonInfoCache(); }, getGlobalTypingsCacheLocation: maybeBind(host, host.getGlobalTypingsCacheLocation), redirectTargetsMap: program.redirectTargetsMap, getRedirectFromSourceFile: (fileName) => program.getRedirectFromSourceFile(fileName), isSourceOfProjectReferenceRedirect: (fileName) => program.isSourceOfProjectReferenceRedirect(fileName), getNearestAncestorDirectoryWithPackageJson: maybeBind(host, host.getNearestAncestorDirectoryWithPackageJson), getFileIncludeReasons: () => program.getFileIncludeReasons(), getCommonSourceDirectory: () => program.getCommonSourceDirectory(), getDefaultResolutionModeForFile: (file) => program.getDefaultResolutionModeForFile(file), getModeForResolutionAtIndex: (file, index) => program.getModeForResolutionAtIndex(file, index) }; } function getModuleSpecifierResolverHost(program, host) { return { ...createModuleSpecifierResolutionHost(program, host), getCommonSourceDirectory: () => program.getCommonSourceDirectory() }; } function moduleResolutionUsesNodeModules(moduleResolution) { return moduleResolution === 2 || moduleResolution >= 3 && moduleResolution <= 99 || moduleResolution === 100; } function makeImport(defaultImport, namedImports, moduleSpecifier, quotePreference, isTypeOnly) { return factory.createImportDeclaration(undefined, defaultImport || namedImports ? factory.createImportClause(isTypeOnly ? 156 : undefined, defaultImport, namedImports && namedImports.length ? factory.createNamedImports(namedImports) : undefined) : undefined, typeof moduleSpecifier === "string" ? makeStringLiteral(moduleSpecifier, quotePreference) : moduleSpecifier, undefined); } function makeStringLiteral(text, quotePreference) { return factory.createStringLiteral(text, quotePreference === 0); } var QuotePreference = /* @__PURE__ */ ((QuotePreference6) => { QuotePreference6[QuotePreference6["Single"] = 0] = "Single"; QuotePreference6[QuotePreference6["Double"] = 1] = "Double"; return QuotePreference6; })(QuotePreference || {}); function quotePreferenceFromString(str, sourceFile) { return isStringDoubleQuoted(str, sourceFile) ? 1 : 0; } function getQuotePreference(sourceFile, preferences) { if (preferences.quotePreference && preferences.quotePreference !== "auto") { return preferences.quotePreference === "single" ? 0 : 1; } else { const firstModuleSpecifier = isFullSourceFile(sourceFile) && sourceFile.imports && find(sourceFile.imports, (n) => isStringLiteral(n) && !nodeIsSynthesized(n.parent)); return firstModuleSpecifier ? quotePreferenceFromString(firstModuleSpecifier, sourceFile) : 1; } } function getQuoteFromPreference(qp) { switch (qp) { case 0: return "'"; case 1: return '"'; default: return Debug.assertNever(qp); } } function symbolNameNoDefault(symbol) { const escaped = symbolEscapedNameNoDefault(symbol); return escaped === undefined ? undefined : unescapeLeadingUnderscores(escaped); } function symbolEscapedNameNoDefault(symbol) { if (symbol.escapedName !== "default") { return symbol.escapedName; } return firstDefined(symbol.declarations, (decl) => { const name = getNameOfDeclaration(decl); return name && name.kind === 80 ? name.escapedText : undefined; }); } function isModuleSpecifierLike(node) { return isStringLiteralLike(node) && (isExternalModuleReference(node.parent) || isImportDeclaration(node.parent) || isJSDocImportTag(node.parent) || isRequireCall(node.parent, false) && node.parent.arguments[0] === node || isImportCall(node.parent) && node.parent.arguments[0] === node); } function isObjectBindingElementWithoutPropertyName(bindingElement) { return isBindingElement(bindingElement) && isObjectBindingPattern(bindingElement.parent) && isIdentifier(bindingElement.name) && !bindingElement.propertyName; } function getPropertySymbolFromBindingElement(checker, bindingElement) { const typeOfPattern = checker.getTypeAtLocation(bindingElement.parent); return typeOfPattern && checker.getPropertyOfType(typeOfPattern, bindingElement.name.text); } function getParentNodeInSpan(node, file, span) { if (!node) return; while (node.parent) { if (isSourceFile(node.parent) || !spanContainsNode(span, node.parent, file)) { return node; } node = node.parent; } } function spanContainsNode(span, node, file) { return textSpanContainsPosition(span, node.getStart(file)) && node.getEnd() <= textSpanEnd(span); } function findModifier(node, kind) { return canHaveModifiers(node) ? find(node.modifiers, (m) => m.kind === kind) : undefined; } function insertImports(changes, sourceFile, imports, blankLineBetween, preferences) { var _a; const decl = isArray(imports) ? imports[0] : imports; const importKindPredicate = decl.kind === 244 ? isRequireVariableStatement : isAnyImportSyntax; const existingImportStatements = filter(sourceFile.statements, importKindPredicate); const { comparer, isSorted } = ts_OrganizeImports_exports.getOrganizeImportsStringComparerWithDetection(existingImportStatements, preferences); const sortedNewImports = isArray(imports) ? toSorted(imports, (a, b) => ts_OrganizeImports_exports.compareImportsOrRequireStatements(a, b, comparer)) : [imports]; if (!(existingImportStatements == null ? undefined : existingImportStatements.length)) { if (isFullSourceFile(sourceFile)) { changes.insertNodesAtTopOfFile(sourceFile, sortedNewImports, blankLineBetween); } else { for (const newImport of sortedNewImports) { changes.insertStatementsInNewFile(sourceFile.fileName, [newImport], (_a = getOriginalNode(newImport)) == null ? undefined : _a.getSourceFile()); } } return; } Debug.assert(isFullSourceFile(sourceFile)); if (existingImportStatements && isSorted) { for (const newImport of sortedNewImports) { const insertionIndex = ts_OrganizeImports_exports.getImportDeclarationInsertionIndex(existingImportStatements, newImport, comparer); if (insertionIndex === 0) { const options = existingImportStatements[0] === sourceFile.statements[0] ? { leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.Exclude } : {}; changes.insertNodeBefore(sourceFile, existingImportStatements[0], newImport, false, options); } else { const prevImport = existingImportStatements[insertionIndex - 1]; changes.insertNodeAfter(sourceFile, prevImport, newImport); } } } else { const lastExistingImport = lastOrUndefined(existingImportStatements); if (lastExistingImport) { changes.insertNodesAfter(sourceFile, lastExistingImport, sortedNewImports); } else { changes.insertNodesAtTopOfFile(sourceFile, sortedNewImports, blankLineBetween); } } } function getTypeKeywordOfTypeOnlyImport(importClause, sourceFile) { Debug.assert(importClause.isTypeOnly); return cast(importClause.getChildAt(0, sourceFile), isTypeKeywordToken); } function textSpansEqual(a, b) { return !!a && !!b && a.start === b.start && a.length === b.length; } function documentSpansEqual(a, b, useCaseSensitiveFileNames2) { return (useCaseSensitiveFileNames2 ? equateStringsCaseSensitive : equateStringsCaseInsensitive)(a.fileName, b.fileName) && textSpansEqual(a.textSpan, b.textSpan); } function getDocumentSpansEqualityComparer(useCaseSensitiveFileNames2) { return (a, b) => documentSpansEqual(a, b, useCaseSensitiveFileNames2); } function forEachUnique(array, callback) { if (array) { for (let i = 0;i < array.length; i++) { if (array.indexOf(array[i]) === i) { const result = callback(array[i], i); if (result) { return result; } } } } return; } function isTextWhiteSpaceLike(text, startPos, endPos) { for (let i = startPos;i < endPos; i++) { if (!isWhiteSpaceLike(text.charCodeAt(i))) { return false; } } return true; } function getMappedLocation(location, sourceMapper, fileExists) { const mapsTo = sourceMapper.tryGetSourcePosition(location); return mapsTo && (!fileExists || fileExists(normalizePath(mapsTo.fileName)) ? mapsTo : undefined); } function getMappedDocumentSpan(documentSpan, sourceMapper, fileExists) { const { fileName, textSpan } = documentSpan; const newPosition = getMappedLocation({ fileName, pos: textSpan.start }, sourceMapper, fileExists); if (!newPosition) return; const newEndPosition = getMappedLocation({ fileName, pos: textSpan.start + textSpan.length }, sourceMapper, fileExists); const newLength = newEndPosition ? newEndPosition.pos - newPosition.pos : textSpan.length; return { fileName: newPosition.fileName, textSpan: { start: newPosition.pos, length: newLength }, originalFileName: documentSpan.fileName, originalTextSpan: documentSpan.textSpan, contextSpan: getMappedContextSpan(documentSpan, sourceMapper, fileExists), originalContextSpan: documentSpan.contextSpan }; } function getMappedContextSpan(documentSpan, sourceMapper, fileExists) { const contextSpanStart = documentSpan.contextSpan && getMappedLocation({ fileName: documentSpan.fileName, pos: documentSpan.contextSpan.start }, sourceMapper, fileExists); const contextSpanEnd = documentSpan.contextSpan && getMappedLocation({ fileName: documentSpan.fileName, pos: documentSpan.contextSpan.start + documentSpan.contextSpan.length }, sourceMapper, fileExists); return contextSpanStart && contextSpanEnd ? { start: contextSpanStart.pos, length: contextSpanEnd.pos - contextSpanStart.pos } : undefined; } function isFirstDeclarationOfSymbolParameter(symbol) { const declaration = symbol.declarations ? firstOrUndefined(symbol.declarations) : undefined; return !!findAncestor(declaration, (n) => isParameter(n) ? true : isBindingElement(n) || isObjectBindingPattern(n) || isArrayBindingPattern(n) ? false : "quit"); } var displayPartWriterCache = /* @__PURE__ */ new Map; function getDisplayPartWriter(maximumLength) { maximumLength = maximumLength || defaultMaximumTruncationLength; if (!displayPartWriterCache.has(maximumLength)) { displayPartWriterCache.set(maximumLength, getDisplayPartWriterWorker(maximumLength)); } return displayPartWriterCache.get(maximumLength); } function getDisplayPartWriterWorker(maximumLength) { const absoluteMaximumLength = maximumLength * 10; let displayParts; let lineStart; let indent3; let length2; resetWriter(); const unknownWrite = (text) => writeKind(text, 17); return { displayParts: () => { const finalText = displayParts.length && displayParts[displayParts.length - 1].text; if (length2 > absoluteMaximumLength && finalText && finalText !== "...") { if (!isWhiteSpaceLike(finalText.charCodeAt(finalText.length - 1))) { displayParts.push(displayPart(" ", 16)); } displayParts.push(displayPart("...", 15)); } return displayParts; }, writeKeyword: (text) => writeKind(text, 5), writeOperator: (text) => writeKind(text, 12), writePunctuation: (text) => writeKind(text, 15), writeTrailingSemicolon: (text) => writeKind(text, 15), writeSpace: (text) => writeKind(text, 16), writeStringLiteral: (text) => writeKind(text, 8), writeParameter: (text) => writeKind(text, 13), writeProperty: (text) => writeKind(text, 14), writeLiteral: (text) => writeKind(text, 8), writeSymbol, writeLine, write: unknownWrite, writeComment: unknownWrite, getText: () => "", getTextPos: () => 0, getColumn: () => 0, getLine: () => 0, isAtStartOfLine: () => false, hasTrailingWhitespace: () => false, hasTrailingComment: () => false, rawWrite: notImplemented, getIndent: () => indent3, increaseIndent: () => { indent3++; }, decreaseIndent: () => { indent3--; }, clear: resetWriter }; function writeIndent() { if (length2 > absoluteMaximumLength) return; if (lineStart) { const indentString = getIndentString(indent3); if (indentString) { length2 += indentString.length; displayParts.push(displayPart(indentString, 16)); } lineStart = false; } } function writeKind(text, kind) { if (length2 > absoluteMaximumLength) return; writeIndent(); length2 += text.length; displayParts.push(displayPart(text, kind)); } function writeSymbol(text, symbol) { if (length2 > absoluteMaximumLength) return; writeIndent(); length2 += text.length; displayParts.push(symbolPart(text, symbol)); } function writeLine() { if (length2 > absoluteMaximumLength) return; length2 += 1; displayParts.push(lineBreakPart()); lineStart = true; } function resetWriter() { displayParts = []; lineStart = true; indent3 = 0; length2 = 0; } } function symbolPart(text, symbol) { return displayPart(text, displayPartKind(symbol)); function displayPartKind(symbol2) { const flags = symbol2.flags; if (flags & 3) { return isFirstDeclarationOfSymbolParameter(symbol2) ? 13 : 9; } if (flags & 4) return 14; if (flags & 32768) return 14; if (flags & 65536) return 14; if (flags & 8) return 19; if (flags & 16) return 20; if (flags & 32) return 1; if (flags & 64) return 4; if (flags & 384) return 2; if (flags & 1536) return 11; if (flags & 8192) return 10; if (flags & 262144) return 18; if (flags & 524288) return 0; if (flags & 2097152) return 0; return 17; } } function displayPart(text, kind) { return { text, kind: SymbolDisplayPartKind[kind] }; } function spacePart() { return displayPart(" ", 16); } function keywordPart(kind) { return displayPart(tokenToString(kind), 5); } function punctuationPart(kind) { return displayPart(tokenToString(kind), 15); } function operatorPart(kind) { return displayPart(tokenToString(kind), 12); } function parameterNamePart(text) { return displayPart(text, 13); } function propertyNamePart(text) { return displayPart(text, 14); } function textOrKeywordPart(text) { const kind = stringToToken(text); return kind === undefined ? textPart(text) : keywordPart(kind); } function textPart(text) { return displayPart(text, 17); } function typeAliasNamePart(text) { return displayPart(text, 0); } function typeParameterNamePart(text) { return displayPart(text, 18); } function linkTextPart(text) { return displayPart(text, 24); } function linkNamePart(text, target) { return { text, kind: SymbolDisplayPartKind[23], target: { fileName: getSourceFileOfNode(target).fileName, textSpan: createTextSpanFromNode(target) } }; } function linkPart(text) { return displayPart(text, 22); } function buildLinkParts(link, checker) { var _a; const prefix = isJSDocLink(link) ? "link" : isJSDocLinkCode(link) ? "linkcode" : "linkplain"; const parts = [linkPart(`{@${prefix} `)]; if (!link.name) { if (link.text) { parts.push(linkTextPart(link.text)); } } else { const symbol = checker == null ? undefined : checker.getSymbolAtLocation(link.name); const targetSymbol = symbol && checker ? getSymbolTarget(symbol, checker) : undefined; const suffix = findLinkNameEnd(link.text); const name = getTextOfNode(link.name) + link.text.slice(0, suffix); const text = skipSeparatorFromLinkText(link.text.slice(suffix)); const decl = (targetSymbol == null ? undefined : targetSymbol.valueDeclaration) || ((_a = targetSymbol == null ? undefined : targetSymbol.declarations) == null ? undefined : _a[0]); if (decl) { parts.push(linkNamePart(name, decl)); if (text) parts.push(linkTextPart(text)); } else { const separator = suffix === 0 || link.text.charCodeAt(suffix) === 124 && name.charCodeAt(name.length - 1) !== 32 ? " " : ""; parts.push(linkTextPart(name + separator + text)); } } parts.push(linkPart("}")); return parts; } function skipSeparatorFromLinkText(text) { let pos = 0; if (text.charCodeAt(pos++) === 124) { while (pos < text.length && text.charCodeAt(pos) === 32) pos++; return text.slice(pos); } return text; } function findLinkNameEnd(text) { let pos = text.indexOf("://"); if (pos === 0) { while (pos < text.length && text.charCodeAt(pos) !== 124) pos++; return pos; } if (text.indexOf("()") === 0) return 2; if (text.charAt(0) === "<") { let brackets2 = 0; let i = 0; while (i < text.length) { if (text[i] === "<") brackets2++; if (text[i] === ">") brackets2--; i++; if (!brackets2) return i; } } return 0; } var lineFeed2 = ` `; function getNewLineOrDefaultFromHost(host, formatSettings) { var _a; return (formatSettings == null ? undefined : formatSettings.newLineCharacter) || ((_a = host.getNewLine) == null ? undefined : _a.call(host)) || lineFeed2; } function lineBreakPart() { return displayPart(` `, 6); } function mapToDisplayParts(writeDisplayParts, maximumLength) { const displayPartWriter = getDisplayPartWriter(maximumLength); try { writeDisplayParts(displayPartWriter); return displayPartWriter.displayParts(); } finally { displayPartWriter.clear(); } } function typeToDisplayParts(typechecker, type, enclosingDeclaration, flags = 0, maximumLength, verbosityLevel, out) { return mapToDisplayParts((writer) => { typechecker.writeType(type, enclosingDeclaration, flags | 1024 | 16384, writer, maximumLength, verbosityLevel, out); }, maximumLength); } function symbolToDisplayParts(typeChecker, symbol, enclosingDeclaration, meaning, flags = 0) { return mapToDisplayParts((writer) => { typeChecker.writeSymbol(symbol, enclosingDeclaration, meaning, flags | 8, writer); }); } function signatureToDisplayParts(typechecker, signature, enclosingDeclaration, flags = 0, maximumLength, verbosityLevel, out) { flags |= 16384 | 1024 | 32 | 8192; return mapToDisplayParts((writer) => { typechecker.writeSignature(signature, enclosingDeclaration, flags, undefined, writer, maximumLength, verbosityLevel, out); }, maximumLength); } function isImportOrExportSpecifierName(location) { return !!location.parent && isImportOrExportSpecifier(location.parent) && location.parent.propertyName === location; } function getScriptKind(fileName, host) { return ensureScriptKind(fileName, host.getScriptKind && host.getScriptKind(fileName)); } function getSymbolTarget(symbol, checker) { let next = symbol; while (isAliasSymbol(next) || isTransientSymbol(next) && next.links.target) { if (isTransientSymbol(next) && next.links.target) { next = next.links.target; } else { next = skipAlias(next, checker); } } return next; } function isAliasSymbol(symbol) { return (symbol.flags & 2097152) !== 0; } function getUniqueSymbolId(symbol, checker) { return getSymbolId(skipAlias(symbol, checker)); } function getFirstNonSpaceCharacterPosition(text, position) { while (isWhiteSpaceLike(text.charCodeAt(position))) { position += 1; } return position; } function getPrecedingNonSpaceCharacterPosition(text, position) { while (position > -1 && isWhiteSpaceSingleLine(text.charCodeAt(position))) { position -= 1; } return position + 1; } function copyComments(sourceNode, targetNode) { const sourceFile = sourceNode.getSourceFile(); const text = sourceFile.text; if (hasLeadingLineBreak(sourceNode, text)) { copyLeadingComments(sourceNode, targetNode, sourceFile); } else { copyTrailingAsLeadingComments(sourceNode, targetNode, sourceFile); } copyTrailingComments(sourceNode, targetNode, sourceFile); } function hasLeadingLineBreak(node, text) { const start = node.getFullStart(); const end = node.getStart(); for (let i = start;i < end; i++) { if (text.charCodeAt(i) === 10) return true; } return false; } function getUniqueName(baseName, sourceFile) { let nameText = baseName; for (let i = 1;!isFileLevelUniqueName(sourceFile, nameText); i++) { nameText = `${baseName}_${i}`; } return nameText; } function getRenameLocation(edits, renameFilename, name, preferLastLocation) { let delta = 0; let lastPos = -1; for (const { fileName, textChanges: textChanges2 } of edits) { Debug.assert(fileName === renameFilename); for (const change of textChanges2) { const { span, newText } = change; const index = indexInTextChange(newText, escapeString(name)); if (index !== -1) { lastPos = span.start + delta + index; if (!preferLastLocation) { return lastPos; } } delta += newText.length - span.length; } } Debug.assert(preferLastLocation); Debug.assert(lastPos >= 0); return lastPos; } function copyLeadingComments(sourceNode, targetNode, sourceFile, commentKind, hasTrailingNewLine) { forEachLeadingCommentRange(sourceFile.text, sourceNode.pos, getAddCommentsFunction(targetNode, sourceFile, commentKind, hasTrailingNewLine, addSyntheticLeadingComment)); } function copyTrailingComments(sourceNode, targetNode, sourceFile, commentKind, hasTrailingNewLine) { forEachTrailingCommentRange(sourceFile.text, sourceNode.end, getAddCommentsFunction(targetNode, sourceFile, commentKind, hasTrailingNewLine, addSyntheticTrailingComment)); } function copyTrailingAsLeadingComments(sourceNode, targetNode, sourceFile, commentKind, hasTrailingNewLine) { forEachTrailingCommentRange(sourceFile.text, sourceNode.pos, getAddCommentsFunction(targetNode, sourceFile, commentKind, hasTrailingNewLine, addSyntheticLeadingComment)); } function getAddCommentsFunction(targetNode, sourceFile, commentKind, hasTrailingNewLine, cb) { return (pos, end, kind, htnl) => { if (kind === 3) { pos += 2; end -= 2; } else { pos += 2; } cb(targetNode, commentKind || kind, sourceFile.text.slice(pos, end), hasTrailingNewLine !== undefined ? hasTrailingNewLine : htnl); }; } function indexInTextChange(change, name) { if (startsWith(change, name)) return 0; let idx = change.indexOf(" " + name); if (idx === -1) idx = change.indexOf("." + name); if (idx === -1) idx = change.indexOf('"' + name); return idx === -1 ? -1 : idx + 1; } function needsParentheses(expression) { return isBinaryExpression(expression) && expression.operatorToken.kind === 28 || isObjectLiteralExpression(expression) || (isAsExpression(expression) || isSatisfiesExpression(expression)) && isObjectLiteralExpression(expression.expression); } function getContextualTypeFromParent(node, checker, contextFlags) { const parent2 = walkUpParenthesizedExpressions(node.parent); switch (parent2.kind) { case 215: return checker.getContextualType(parent2, contextFlags); case 227: { const { left, operatorToken, right } = parent2; return isEqualityOperatorKind(operatorToken.kind) ? checker.getTypeAtLocation(node === right ? left : right) : checker.getContextualType(node, contextFlags); } case 297: return getSwitchedType(parent2, checker); default: return checker.getContextualType(node, contextFlags); } } function quote(sourceFile, preferences, text) { const quotePreference = getQuotePreference(sourceFile, preferences); const quoted = JSON.stringify(text); return quotePreference === 0 ? `'${stripQuotes(quoted).replace(/'/g, () => "\\'").replace(/\\"/g, '"')}'` : quoted; } function isEqualityOperatorKind(kind) { switch (kind) { case 37: case 35: case 38: case 36: return true; default: return false; } } function isStringLiteralOrTemplate(node) { switch (node.kind) { case 11: case 15: case 229: case 216: return true; default: return false; } } function hasIndexSignature(type) { return !!type.getStringIndexType() || !!type.getNumberIndexType(); } function getSwitchedType(caseClause, checker) { return checker.getTypeAtLocation(caseClause.parent.parent.expression); } var ANONYMOUS = "anonymous function"; function getTypeNodeIfAccessible(type, enclosingScope, program, host) { const checker = program.getTypeChecker(); let typeIsAccessible = true; const notAccessible = () => typeIsAccessible = false; const res = checker.typeToTypeNode(type, enclosingScope, 1, 8, { trackSymbol: (symbol, declaration, meaning) => { typeIsAccessible = typeIsAccessible && checker.isSymbolAccessible(symbol, declaration, meaning, false).accessibility === 0; return !typeIsAccessible; }, reportInaccessibleThisError: notAccessible, reportPrivateInBaseOfClassExpression: notAccessible, reportInaccessibleUniqueSymbolError: notAccessible, moduleResolverHost: getModuleSpecifierResolverHost(program, host) }); return typeIsAccessible ? res : undefined; } function syntaxRequiresTrailingCommaOrSemicolonOrASI(kind) { return kind === 180 || kind === 181 || kind === 182 || kind === 172 || kind === 174; } function syntaxRequiresTrailingFunctionBlockOrSemicolonOrASI(kind) { return kind === 263 || kind === 177 || kind === 175 || kind === 178 || kind === 179; } function syntaxRequiresTrailingModuleBlockOrSemicolonOrASI(kind) { return kind === 268; } function syntaxRequiresTrailingSemicolonOrASI(kind) { return kind === 244 || kind === 245 || kind === 247 || kind === 252 || kind === 253 || kind === 254 || kind === 258 || kind === 260 || kind === 173 || kind === 266 || kind === 273 || kind === 272 || kind === 279 || kind === 271 || kind === 278; } var syntaxMayBeASICandidate = or(syntaxRequiresTrailingCommaOrSemicolonOrASI, syntaxRequiresTrailingFunctionBlockOrSemicolonOrASI, syntaxRequiresTrailingModuleBlockOrSemicolonOrASI, syntaxRequiresTrailingSemicolonOrASI); function nodeIsASICandidate(node, sourceFile) { const lastToken = node.getLastToken(sourceFile); if (lastToken && lastToken.kind === 27) { return false; } if (syntaxRequiresTrailingCommaOrSemicolonOrASI(node.kind)) { if (lastToken && lastToken.kind === 28) { return false; } } else if (syntaxRequiresTrailingModuleBlockOrSemicolonOrASI(node.kind)) { const lastChild = last(node.getChildren(sourceFile)); if (lastChild && isModuleBlock(lastChild)) { return false; } } else if (syntaxRequiresTrailingFunctionBlockOrSemicolonOrASI(node.kind)) { const lastChild = last(node.getChildren(sourceFile)); if (lastChild && isFunctionBlock(lastChild)) { return false; } } else if (!syntaxRequiresTrailingSemicolonOrASI(node.kind)) { return false; } if (node.kind === 247) { return true; } const topNode = findAncestor(node, (ancestor) => !ancestor.parent); const nextToken = findNextToken(node, topNode, sourceFile); if (!nextToken || nextToken.kind === 20) { return true; } const startLine = sourceFile.getLineAndCharacterOfPosition(node.getEnd()).line; const endLine = sourceFile.getLineAndCharacterOfPosition(nextToken.getStart(sourceFile)).line; return startLine !== endLine; } function positionIsASICandidate(pos, context, sourceFile) { const contextAncestor = findAncestor(context, (ancestor) => { if (ancestor.end !== pos) { return "quit"; } return syntaxMayBeASICandidate(ancestor.kind); }); return !!contextAncestor && nodeIsASICandidate(contextAncestor, sourceFile); } function probablyUsesSemicolons(sourceFile) { let withSemicolon = 0; let withoutSemicolon = 0; const nStatementsToObserve = 5; forEachChild(sourceFile, function visit(node) { if (syntaxRequiresTrailingSemicolonOrASI(node.kind)) { const lastToken = node.getLastToken(sourceFile); if ((lastToken == null ? undefined : lastToken.kind) === 27) { withSemicolon++; } else { withoutSemicolon++; } } else if (syntaxRequiresTrailingCommaOrSemicolonOrASI(node.kind)) { const lastToken = node.getLastToken(sourceFile); if ((lastToken == null ? undefined : lastToken.kind) === 27) { withSemicolon++; } else if (lastToken && lastToken.kind !== 28) { const lastTokenLine = getLineAndCharacterOfPosition(sourceFile, lastToken.getStart(sourceFile)).line; const nextTokenLine = getLineAndCharacterOfPosition(sourceFile, getSpanOfTokenAtPosition(sourceFile, lastToken.end).start).line; if (lastTokenLine !== nextTokenLine) { withoutSemicolon++; } } } if (withSemicolon + withoutSemicolon >= nStatementsToObserve) { return true; } return forEachChild(node, visit); }); if (withSemicolon === 0 && withoutSemicolon <= 1) { return true; } return withSemicolon / withoutSemicolon > 1 / nStatementsToObserve; } function tryGetDirectories(host, directoryName) { return tryIOAndConsumeErrors(host, host.getDirectories, directoryName) || []; } function tryReadDirectory(host, path, extensions, exclude, include) { return tryIOAndConsumeErrors(host, host.readDirectory, path, extensions, exclude, include) || emptyArray; } function tryFileExists(host, path) { return tryIOAndConsumeErrors(host, host.fileExists, path); } function tryDirectoryExists(host, path) { return tryAndIgnoreErrors(() => directoryProbablyExists(path, host)) || false; } function tryAndIgnoreErrors(cb) { try { return cb(); } catch { return; } } function tryIOAndConsumeErrors(host, toApply, ...args) { return tryAndIgnoreErrors(() => toApply && toApply.apply(host, args)); } function findPackageJsons(startDirectory, host) { const paths = []; forEachAncestorDirectoryStoppingAtGlobalCache(host, startDirectory, (ancestor) => { const currentConfigPath = combinePaths(ancestor, "package.json"); if (tryFileExists(host, currentConfigPath)) { paths.push(currentConfigPath); } }); return paths; } function findPackageJson(directory, host) { let packageJson; forEachAncestorDirectoryStoppingAtGlobalCache(host, directory, (ancestor) => { if (ancestor === "node_modules") return true; packageJson = findConfigFile(ancestor, (f) => tryFileExists(host, f), "package.json"); if (packageJson) { return true; } }); return packageJson; } function getPackageJsonsVisibleToFile(fileName, host) { if (!host.fileExists) { return []; } const packageJsons = []; forEachAncestorDirectoryStoppingAtGlobalCache(host, getDirectoryPath(fileName), (ancestor) => { const packageJsonFileName = combinePaths(ancestor, "package.json"); if (host.fileExists(packageJsonFileName)) { const info = createPackageJsonInfo(packageJsonFileName, host); if (info) { packageJsons.push(info); } } }); return packageJsons; } function createPackageJsonInfo(fileName, host) { if (!host.readFile) { return; } const dependencyKeys = ["dependencies", "devDependencies", "optionalDependencies", "peerDependencies"]; const stringContent = host.readFile(fileName) || ""; const content = tryParseJson(stringContent); const info = {}; if (content) { for (const key of dependencyKeys) { const dependencies = content[key]; if (!dependencies) { continue; } const dependencyMap = /* @__PURE__ */ new Map; for (const packageName in dependencies) { dependencyMap.set(packageName, dependencies[packageName]); } info[key] = dependencyMap; } } const dependencyGroups = [ [1, info.dependencies], [2, info.devDependencies], [8, info.optionalDependencies], [4, info.peerDependencies] ]; return { ...info, parseable: !!content, fileName, get, has(dependencyName, inGroups) { return !!get(dependencyName, inGroups); } }; function get(dependencyName, inGroups = 15) { for (const [group2, deps] of dependencyGroups) { if (deps && inGroups & group2) { const dep = deps.get(dependencyName); if (dep !== undefined) { return dep; } } } } } function createPackageJsonImportFilter(fromFile, preferences, host) { const packageJsons = (host.getPackageJsonsVisibleToFile && host.getPackageJsonsVisibleToFile(fromFile.fileName) || getPackageJsonsVisibleToFile(fromFile.fileName, host)).filter((p) => p.parseable); let usesNodeCoreModules; let ambientModuleCache; let sourceFileCache; return { allowsImportingAmbientModule, getSourceFileInfo, allowsImportingSpecifier }; function moduleSpecifierIsCoveredByPackageJson(specifier) { const packageName = getNodeModuleRootSpecifier(specifier); for (const packageJson of packageJsons) { if (packageJson.has(packageName) || packageJson.has(getTypesPackageName(packageName))) { return true; } } return false; } function allowsImportingAmbientModule(moduleSymbol, moduleSpecifierResolutionHost) { if (!packageJsons.length || !moduleSymbol.valueDeclaration) { return true; } if (!ambientModuleCache) { ambientModuleCache = /* @__PURE__ */ new Map; } else { const cached = ambientModuleCache.get(moduleSymbol); if (cached !== undefined) { return cached; } } const declaredModuleSpecifier = stripQuotes(moduleSymbol.getName()); if (isAllowedCoreNodeModulesImport(declaredModuleSpecifier)) { ambientModuleCache.set(moduleSymbol, true); return true; } const declaringSourceFile = moduleSymbol.valueDeclaration.getSourceFile(); const declaringNodeModuleName = getNodeModulesPackageNameFromFileName(declaringSourceFile.fileName, moduleSpecifierResolutionHost); if (typeof declaringNodeModuleName === "undefined") { ambientModuleCache.set(moduleSymbol, true); return true; } const result = moduleSpecifierIsCoveredByPackageJson(declaringNodeModuleName) || moduleSpecifierIsCoveredByPackageJson(declaredModuleSpecifier); ambientModuleCache.set(moduleSymbol, result); return result; } function getSourceFileInfo(sourceFile, moduleSpecifierResolutionHost) { if (!packageJsons.length) { return { importable: true, packageName: undefined }; } if (!sourceFileCache) { sourceFileCache = /* @__PURE__ */ new Map; } else { const cached = sourceFileCache.get(sourceFile); if (cached !== undefined) { return cached; } } const packageName = getNodeModulesPackageNameFromFileName(sourceFile.fileName, moduleSpecifierResolutionHost); if (!packageName) { const result2 = { importable: true, packageName }; sourceFileCache.set(sourceFile, result2); return result2; } const importable = moduleSpecifierIsCoveredByPackageJson(packageName); const result = { importable, packageName }; sourceFileCache.set(sourceFile, result); return result; } function allowsImportingSpecifier(moduleSpecifier) { if (!packageJsons.length || isAllowedCoreNodeModulesImport(moduleSpecifier)) { return true; } if (pathIsRelative(moduleSpecifier) || isRootedDiskPath(moduleSpecifier)) { return true; } return moduleSpecifierIsCoveredByPackageJson(moduleSpecifier); } function isAllowedCoreNodeModulesImport(moduleSpecifier) { if (isFullSourceFile(fromFile) && isSourceFileJS(fromFile) && nodeCoreModules.has(moduleSpecifier)) { if (usesNodeCoreModules === undefined) { usesNodeCoreModules = consumesNodeCoreModules(fromFile); } if (usesNodeCoreModules) { return true; } } return false; } function getNodeModulesPackageNameFromFileName(importedFileName, moduleSpecifierResolutionHost) { if (!importedFileName.includes("node_modules")) { return; } const specifier = ts_moduleSpecifiers_exports.getNodeModulesPackageName(host.getCompilationSettings(), fromFile, importedFileName, moduleSpecifierResolutionHost, preferences); if (!specifier) { return; } if (!pathIsRelative(specifier) && !isRootedDiskPath(specifier)) { return getNodeModuleRootSpecifier(specifier); } } function getNodeModuleRootSpecifier(fullSpecifier) { const components = getPathComponents(getPackageNameFromTypesPackageName(fullSpecifier)).slice(1); if (startsWith(components[0], "@")) { return `${components[0]}/${components[1]}`; } return components[0]; } } function consumesNodeCoreModules(sourceFile) { return some(sourceFile.imports, ({ text }) => nodeCoreModules.has(text)); } function isInsideNodeModules(fileOrDirectory) { return contains(getPathComponents(fileOrDirectory), "node_modules"); } function isDiagnosticWithLocation(diagnostic) { return diagnostic.file !== undefined && diagnostic.start !== undefined && diagnostic.length !== undefined; } function findDiagnosticForNode(node, sortedFileDiagnostics) { const span = createTextSpanFromNode(node); const index = binarySearchKey(sortedFileDiagnostics, span, identity, compareTextSpans); if (index >= 0) { const diagnostic = sortedFileDiagnostics[index]; Debug.assertEqual(diagnostic.file, node.getSourceFile(), "Diagnostics proided to 'findDiagnosticForNode' must be from a single SourceFile"); return cast(diagnostic, isDiagnosticWithLocation); } } function getDiagnosticsWithinSpan(span, sortedFileDiagnostics) { var _a; let index = binarySearchKey(sortedFileDiagnostics, span.start, (diag2) => diag2.start, compareValues); if (index < 0) { index = ~index; } while (((_a = sortedFileDiagnostics[index - 1]) == null ? undefined : _a.start) === span.start) { index--; } const result = []; const end = textSpanEnd(span); while (true) { const diagnostic = tryCast(sortedFileDiagnostics[index], isDiagnosticWithLocation); if (!diagnostic || diagnostic.start > end) { break; } if (textSpanContainsTextSpan(span, diagnostic)) { result.push(diagnostic); } index++; } return result; } function getRefactorContextSpan({ startPosition, endPosition }) { return createTextSpanFromBounds(startPosition, endPosition === undefined ? startPosition : endPosition); } function getFixableErrorSpanExpression(sourceFile, span) { const token = getTokenAtPosition(sourceFile, span.start); const expression = findAncestor(token, (node) => { if (node.getStart(sourceFile) < span.start || node.getEnd() > textSpanEnd(span)) { return "quit"; } return isExpression(node) && textSpansEqual(span, createTextSpanFromNode(node, sourceFile)); }); return expression; } function mapOneOrMany(valueOrArray, f, resultSelector = identity) { return valueOrArray ? isArray(valueOrArray) ? resultSelector(map(valueOrArray, f)) : f(valueOrArray, 0) : undefined; } function firstOrOnly(valueOrArray) { return isArray(valueOrArray) ? first(valueOrArray) : valueOrArray; } function getNameForExportedSymbol(symbol, scriptTarget, preferCapitalized) { if (symbol.escapedName === "export=" || symbol.escapedName === "default") { return getDefaultLikeExportNameFromDeclaration(symbol) || moduleSymbolToValidIdentifier(getSymbolParentOrFail(symbol), scriptTarget, !!preferCapitalized); } return symbol.name; } function getDefaultLikeExportNameFromDeclaration(symbol) { return firstDefined(symbol.declarations, (d) => { var _a, _b, _c; if (isExportAssignment(d)) { return (_a = tryCast(skipOuterExpressions(d.expression), isIdentifier)) == null ? undefined : _a.text; } if (isExportSpecifier(d) && d.symbol.flags === 2097152) { return (_b = tryCast(d.propertyName, isIdentifier)) == null ? undefined : _b.text; } const name = (_c = tryCast(getNameOfDeclaration(d), isIdentifier)) == null ? undefined : _c.text; if (name) { return name; } if (symbol.parent && !isExternalModuleSymbol(symbol.parent)) { return symbol.parent.getName(); } }); } function getSymbolParentOrFail(symbol) { var _a; return Debug.checkDefined(symbol.parent, `Symbol parent was undefined. Flags: ${Debug.formatSymbolFlags(symbol.flags)}. Declarations: ${(_a = symbol.declarations) == null ? undefined : _a.map((d) => { const kind = Debug.formatSyntaxKind(d.kind); const inJS = isInJSFile(d); const { expression } = d; return (inJS ? "[JS]" : "") + kind + (expression ? ` (expression: ${Debug.formatSyntaxKind(expression.kind)})` : ""); }).join(", ")}.`); } function moduleSymbolToValidIdentifier(moduleSymbol, target, forceCapitalize) { return moduleSpecifierToValidIdentifier(removeFileExtension(stripQuotes(moduleSymbol.name)), target, forceCapitalize); } function moduleSpecifierToValidIdentifier(moduleSpecifier, target, forceCapitalize) { const baseName = getBaseFileName(removeSuffix(removeFileExtension(moduleSpecifier), "/index")); let res = ""; let lastCharWasValid = true; const firstCharCode = baseName.charCodeAt(0); if (isIdentifierStart(firstCharCode, target)) { res += String.fromCharCode(firstCharCode); if (forceCapitalize) { res = res.toUpperCase(); } } else { lastCharWasValid = false; } for (let i = 1;i < baseName.length; i++) { const ch = baseName.charCodeAt(i); const isValid = isIdentifierPart(ch, target); if (isValid) { let char = String.fromCharCode(ch); if (!lastCharWasValid) { char = char.toUpperCase(); } res += char; } lastCharWasValid = isValid; } return !isStringANonContextualKeyword(res) ? res || "_" : `_${res}`; } function stringContainsAt(haystack, needle, startIndex) { const needleLength = needle.length; if (needleLength + startIndex > haystack.length) { return false; } for (let i = 0;i < needleLength; i++) { if (needle.charCodeAt(i) !== haystack.charCodeAt(i + startIndex)) return false; } return true; } function startsWithUnderscore(name) { return name.charCodeAt(0) === 95; } function isDeprecatedDeclaration(decl) { return !!(getCombinedNodeFlagsAlwaysIncludeJSDoc(decl) & 65536); } function shouldUseUriStyleNodeCoreModules(file, program) { let decisionFromFile; for (const node of file.imports) { if (nodeCoreModules.has(node.text) && !exclusivelyPrefixedNodeCoreModules.has(node.text)) { if (startsWith(node.text, "node:")) { return true; } else { decisionFromFile = false; } } } return decisionFromFile ?? program.usesUriStyleNodeCoreModules; } function getNewLineKind(newLineCharacter) { return newLineCharacter === ` ` ? 1 : 0; } function diagnosticToString(diag2) { return isArray(diag2) ? formatStringFromArgs(getLocaleSpecificMessage(diag2[0]), diag2.slice(1)) : getLocaleSpecificMessage(diag2); } function getFormatCodeSettingsForWriting({ options }, sourceFile) { const shouldAutoDetectSemicolonPreference = !options.semicolons || options.semicolons === "ignore"; const shouldRemoveSemicolons = options.semicolons === "remove" || shouldAutoDetectSemicolonPreference && !probablyUsesSemicolons(sourceFile); return { ...options, semicolons: shouldRemoveSemicolons ? "remove" : "ignore" }; } function jsxModeNeedsExplicitImport(jsx) { return jsx === 2 || jsx === 3; } function isSourceFileFromLibrary(program, node) { return program.isSourceFileFromExternalLibrary(node) || program.isSourceFileDefaultLibrary(node); } function newCaseClauseTracker(checker, clauses) { const existingStrings = /* @__PURE__ */ new Set; const existingNumbers = /* @__PURE__ */ new Set; const existingBigInts = /* @__PURE__ */ new Set; for (const clause of clauses) { if (!isDefaultClause(clause)) { const expression = skipParentheses(clause.expression); if (isLiteralExpression(expression)) { switch (expression.kind) { case 15: case 11: existingStrings.add(expression.text); break; case 9: existingNumbers.add(parseInt(expression.text)); break; case 10: const parsedBigInt = parseBigInt(endsWith(expression.text, "n") ? expression.text.slice(0, -1) : expression.text); if (parsedBigInt) { existingBigInts.add(pseudoBigIntToString(parsedBigInt)); } break; } } else { const symbol = checker.getSymbolAtLocation(clause.expression); if (symbol && symbol.valueDeclaration && isEnumMember(symbol.valueDeclaration)) { const enumValue = checker.getConstantValue(symbol.valueDeclaration); if (enumValue !== undefined) { addValue(enumValue); } } } } } return { addValue, hasValue }; function addValue(value) { switch (typeof value) { case "string": existingStrings.add(value); break; case "number": existingNumbers.add(value); } } function hasValue(value) { switch (typeof value) { case "string": return existingStrings.has(value); case "number": return existingNumbers.has(value); case "object": return existingBigInts.has(pseudoBigIntToString(value)); } } } function fileShouldUseJavaScriptRequire(file, program, host, preferRequire) { var _a; const fileName = typeof file === "string" ? file : file.fileName; if (!hasJSFileExtension(fileName)) { return false; } const compilerOptions = typeof file === "string" ? program.getCompilerOptions() : program.getCompilerOptionsForFile(file); const moduleKind = getEmitModuleKind(compilerOptions); const sourceFileLike = typeof file === "string" ? { fileName: file, impliedNodeFormat: getImpliedNodeFormatForFile(toPath(file, host.getCurrentDirectory(), hostGetCanonicalFileName(host)), (_a = program.getPackageJsonInfoCache) == null ? undefined : _a.call(program), host, compilerOptions) } : file; const impliedNodeFormat = getImpliedNodeFormatForEmitWorker(sourceFileLike, compilerOptions); if (impliedNodeFormat === 99) { return false; } if (impliedNodeFormat === 1) { return true; } if (compilerOptions.verbatimModuleSyntax && moduleKind === 1) { return true; } if (compilerOptions.verbatimModuleSyntax && emitModuleKindIsNonNodeESM(moduleKind)) { return false; } if (typeof file === "object") { if (file.commonJsModuleIndicator) { return true; } if (file.externalModuleIndicator) { return false; } } return preferRequire; } function isBlockLike(node) { switch (node.kind) { case 242: case 308: case 269: case 297: return true; default: return false; } } function createFutureSourceFile(fileName, syntaxModuleIndicator, program, moduleResolutionHost) { var _a; const result = getImpliedNodeFormatForFileWorker(fileName, (_a = program.getPackageJsonInfoCache) == null ? undefined : _a.call(program), moduleResolutionHost, program.getCompilerOptions()); let impliedNodeFormat, packageJsonScope; if (typeof result === "object") { impliedNodeFormat = result.impliedNodeFormat; packageJsonScope = result.packageJsonScope; } return { path: toPath(fileName, program.getCurrentDirectory(), program.getCanonicalFileName), fileName, externalModuleIndicator: syntaxModuleIndicator === 99 ? true : undefined, commonJsModuleIndicator: syntaxModuleIndicator === 1 ? true : undefined, impliedNodeFormat, packageJsonScope, statements: emptyArray, imports: emptyArray }; } var ImportKind = /* @__PURE__ */ ((ImportKind2) => { ImportKind2[ImportKind2["Named"] = 0] = "Named"; ImportKind2[ImportKind2["Default"] = 1] = "Default"; ImportKind2[ImportKind2["Namespace"] = 2] = "Namespace"; ImportKind2[ImportKind2["CommonJS"] = 3] = "CommonJS"; return ImportKind2; })(ImportKind || {}); var ExportKind = /* @__PURE__ */ ((ExportKind3) => { ExportKind3[ExportKind3["Named"] = 0] = "Named"; ExportKind3[ExportKind3["Default"] = 1] = "Default"; ExportKind3[ExportKind3["ExportEquals"] = 2] = "ExportEquals"; ExportKind3[ExportKind3["UMD"] = 3] = "UMD"; ExportKind3[ExportKind3["Module"] = 4] = "Module"; return ExportKind3; })(ExportKind || {}); function createCacheableExportInfoMap(host) { let exportInfoId = 1; const exportInfo = createMultiMap(); const symbols = /* @__PURE__ */ new Map; const packages = /* @__PURE__ */ new Map; let usableByFileName; const cache = { isUsableByFile: (importingFile) => importingFile === usableByFileName, isEmpty: () => !exportInfo.size, clear: () => { exportInfo.clear(); symbols.clear(); usableByFileName = undefined; }, add: (importingFile, symbol, symbolTableKey, moduleSymbol, moduleFile, exportKind, isFromPackageJson, checker) => { if (importingFile !== usableByFileName) { cache.clear(); usableByFileName = importingFile; } let packageName; if (moduleFile) { const nodeModulesPathParts = getNodeModulePathParts(moduleFile.fileName); if (nodeModulesPathParts) { const { topLevelNodeModulesIndex, topLevelPackageNameIndex, packageRootIndex } = nodeModulesPathParts; packageName = unmangleScopedPackageName(getPackageNameFromTypesPackageName(moduleFile.fileName.substring(topLevelPackageNameIndex + 1, packageRootIndex))); if (startsWith(importingFile, moduleFile.path.substring(0, topLevelNodeModulesIndex))) { const prevDeepestNodeModulesPath = packages.get(packageName); const nodeModulesPath = moduleFile.fileName.substring(0, topLevelPackageNameIndex + 1); if (prevDeepestNodeModulesPath) { const prevDeepestNodeModulesIndex = prevDeepestNodeModulesPath.indexOf(nodeModulesPathPart); if (topLevelNodeModulesIndex > prevDeepestNodeModulesIndex) { packages.set(packageName, nodeModulesPath); } } else { packages.set(packageName, nodeModulesPath); } } } } const isDefault = exportKind === 1; const namedSymbol = isDefault && getLocalSymbolForExportDefault(symbol) || symbol; const names = exportKind === 0 || isExternalModuleSymbol(namedSymbol) ? unescapeLeadingUnderscores(symbolTableKey) : getNamesForExportedSymbol(namedSymbol, checker, undefined); const symbolName2 = typeof names === "string" ? names : names[0]; const capitalizedSymbolName = typeof names === "string" ? undefined : names[1]; const moduleName = stripQuotes(moduleSymbol.name); const id = exportInfoId++; const target = skipAlias(symbol, checker); const storedSymbol = symbol.flags & 33554432 ? undefined : symbol; const storedModuleSymbol = moduleSymbol.flags & 33554432 ? undefined : moduleSymbol; if (!storedSymbol || !storedModuleSymbol) symbols.set(id, [symbol, moduleSymbol]); exportInfo.add(key(symbolName2, symbol, isExternalModuleNameRelative(moduleName) ? undefined : moduleName, checker), { id, symbolTableKey, symbolName: symbolName2, capitalizedSymbolName, moduleName, moduleFile, moduleFileName: moduleFile == null ? undefined : moduleFile.fileName, packageName, exportKind, targetFlags: target.flags, isFromPackageJson, symbol: storedSymbol, moduleSymbol: storedModuleSymbol }); }, get: (importingFile, key2) => { if (importingFile !== usableByFileName) return; const result = exportInfo.get(key2); return result == null ? undefined : result.map(rehydrateCachedInfo); }, search: (importingFile, preferCapitalized, matches, action) => { if (importingFile !== usableByFileName) return; return forEachEntry(exportInfo, (info, key2) => { const { symbolName: symbolName2, ambientModuleName } = parseKey(key2); const name = preferCapitalized && info[0].capitalizedSymbolName || symbolName2; if (matches(name, info[0].targetFlags)) { const rehydrated = info.map(rehydrateCachedInfo); const filtered = rehydrated.filter((r, i) => isNotShadowedByDeeperNodeModulesPackage(r, info[i].packageName)); if (filtered.length) { const res = action(filtered, name, !!ambientModuleName, key2); if (res !== undefined) return res; } } }); }, releaseSymbols: () => { symbols.clear(); }, onFileChanged: (oldSourceFile, newSourceFile, typeAcquisitionEnabled) => { if (fileIsGlobalOnly(oldSourceFile) && fileIsGlobalOnly(newSourceFile)) { return false; } if (usableByFileName && usableByFileName !== newSourceFile.path || typeAcquisitionEnabled && consumesNodeCoreModules(oldSourceFile) !== consumesNodeCoreModules(newSourceFile) || !arrayIsEqualTo(oldSourceFile.moduleAugmentations, newSourceFile.moduleAugmentations) || !ambientModuleDeclarationsAreEqual(oldSourceFile, newSourceFile)) { cache.clear(); return true; } usableByFileName = newSourceFile.path; return false; } }; if (Debug.isDebugging) { Object.defineProperty(cache, "__cache", { value: exportInfo }); } return cache; function rehydrateCachedInfo(info) { if (info.symbol && info.moduleSymbol) return info; const { id, exportKind, targetFlags, isFromPackageJson, moduleFileName } = info; const [cachedSymbol, cachedModuleSymbol] = symbols.get(id) || emptyArray; if (cachedSymbol && cachedModuleSymbol) { return { symbol: cachedSymbol, moduleSymbol: cachedModuleSymbol, moduleFileName, exportKind, targetFlags, isFromPackageJson }; } const checker = (isFromPackageJson ? host.getPackageJsonAutoImportProvider() : host.getCurrentProgram()).getTypeChecker(); const moduleSymbol = info.moduleSymbol || cachedModuleSymbol || Debug.checkDefined(info.moduleFile ? checker.getMergedSymbol(info.moduleFile.symbol) : checker.tryFindAmbientModule(info.moduleName)); const symbol = info.symbol || cachedSymbol || Debug.checkDefined(exportKind === 2 ? checker.resolveExternalModuleSymbol(moduleSymbol) : checker.tryGetMemberInModuleExportsAndProperties(unescapeLeadingUnderscores(info.symbolTableKey), moduleSymbol), `Could not find symbol '${info.symbolName}' by key '${info.symbolTableKey}' in module ${moduleSymbol.name}`); symbols.set(id, [symbol, moduleSymbol]); return { symbol, moduleSymbol, moduleFileName, exportKind, targetFlags, isFromPackageJson }; } function key(importedName, symbol, ambientModuleName, checker) { const moduleKey = ambientModuleName || ""; return `${importedName.length} ${getSymbolId(skipAlias(symbol, checker))} ${importedName} ${moduleKey}`; } function parseKey(key2) { const firstSpace = key2.indexOf(" "); const secondSpace = key2.indexOf(" ", firstSpace + 1); const symbolNameLength = parseInt(key2.substring(0, firstSpace), 10); const data = key2.substring(secondSpace + 1); const symbolName2 = data.substring(0, symbolNameLength); const moduleKey = data.substring(symbolNameLength + 1); const ambientModuleName = moduleKey === "" ? undefined : moduleKey; return { symbolName: symbolName2, ambientModuleName }; } function fileIsGlobalOnly(file) { return !file.commonJsModuleIndicator && !file.externalModuleIndicator && !file.moduleAugmentations && !file.ambientModuleNames; } function ambientModuleDeclarationsAreEqual(oldSourceFile, newSourceFile) { if (!arrayIsEqualTo(oldSourceFile.ambientModuleNames, newSourceFile.ambientModuleNames)) { return false; } let oldFileStatementIndex = -1; let newFileStatementIndex = -1; for (const ambientModuleName of newSourceFile.ambientModuleNames) { const isMatchingModuleDeclaration = (node) => isNonGlobalAmbientModule(node) && node.name.text === ambientModuleName; oldFileStatementIndex = findIndex(oldSourceFile.statements, isMatchingModuleDeclaration, oldFileStatementIndex + 1); newFileStatementIndex = findIndex(newSourceFile.statements, isMatchingModuleDeclaration, newFileStatementIndex + 1); if (oldSourceFile.statements[oldFileStatementIndex] !== newSourceFile.statements[newFileStatementIndex]) { return false; } } return true; } function isNotShadowedByDeeperNodeModulesPackage(info, packageName) { if (!packageName || !info.moduleFileName) return true; const typingsCacheLocation = host.getGlobalTypingsCacheLocation(); if (typingsCacheLocation && startsWith(info.moduleFileName, typingsCacheLocation)) return true; const packageDeepestNodeModulesPath = packages.get(packageName); return !packageDeepestNodeModulesPath || startsWith(info.moduleFileName, packageDeepestNodeModulesPath); } } function isImportable(program, fromFile, toFile, toModule, preferences, packageJsonFilter, moduleSpecifierResolutionHost, moduleSpecifierCache) { var _a; if (!toFile) { let useNodePrefix; const moduleName = stripQuotes(toModule.name); if (nodeCoreModules.has(moduleName) && (useNodePrefix = shouldUseUriStyleNodeCoreModules(fromFile, program)) !== undefined) { return useNodePrefix === startsWith(moduleName, "node:"); } return !packageJsonFilter || packageJsonFilter.allowsImportingAmbientModule(toModule, moduleSpecifierResolutionHost) || fileContainsPackageImport(fromFile, moduleName); } Debug.assertIsDefined(toFile); if (fromFile === toFile) return false; const cachedResult = moduleSpecifierCache == null ? undefined : moduleSpecifierCache.get(fromFile.path, toFile.path, preferences, {}); if ((cachedResult == null ? undefined : cachedResult.isBlockedByPackageJsonDependencies) !== undefined) { return !cachedResult.isBlockedByPackageJsonDependencies || !!cachedResult.packageName && fileContainsPackageImport(fromFile, cachedResult.packageName); } const getCanonicalFileName = hostGetCanonicalFileName(moduleSpecifierResolutionHost); const globalTypingsCache = (_a = moduleSpecifierResolutionHost.getGlobalTypingsCacheLocation) == null ? undefined : _a.call(moduleSpecifierResolutionHost); const hasImportablePath = !!ts_moduleSpecifiers_exports.forEachFileNameOfModule(fromFile.fileName, toFile.fileName, moduleSpecifierResolutionHost, false, (toPath3) => { const file = program.getSourceFile(toPath3); return (file === toFile || !file) && isImportablePath(fromFile.fileName, toPath3, getCanonicalFileName, globalTypingsCache, moduleSpecifierResolutionHost); }); if (packageJsonFilter) { const importInfo = hasImportablePath ? packageJsonFilter.getSourceFileInfo(toFile, moduleSpecifierResolutionHost) : undefined; moduleSpecifierCache == null || moduleSpecifierCache.setBlockedByPackageJsonDependencies(fromFile.path, toFile.path, preferences, {}, importInfo == null ? undefined : importInfo.packageName, !(importInfo == null ? undefined : importInfo.importable)); return !!(importInfo == null ? undefined : importInfo.importable) || hasImportablePath && !!(importInfo == null ? undefined : importInfo.packageName) && fileContainsPackageImport(fromFile, importInfo.packageName); } return hasImportablePath; } function fileContainsPackageImport(sourceFile, packageName) { return sourceFile.imports && sourceFile.imports.some((i) => i.text === packageName || i.text.startsWith(packageName + "/")); } function isImportablePath(fromPath, toPath3, getCanonicalFileName, globalCachePath, host) { const toNodeModules = forEachAncestorDirectoryStoppingAtGlobalCache(host, toPath3, (ancestor) => getBaseFileName(ancestor) === "node_modules" ? ancestor : undefined); const toNodeModulesParent = toNodeModules && getDirectoryPath(getCanonicalFileName(toNodeModules)); return toNodeModulesParent === undefined || startsWith(getCanonicalFileName(fromPath), toNodeModulesParent) || !!globalCachePath && startsWith(getCanonicalFileName(globalCachePath), toNodeModulesParent); } function forEachExternalModuleToImportFrom(program, host, preferences, useAutoImportProvider, cb) { var _a, _b; const useCaseSensitiveFileNames2 = hostUsesCaseSensitiveFileNames(host); const excludePatterns = preferences.autoImportFileExcludePatterns && getIsExcludedPatterns(preferences, useCaseSensitiveFileNames2); forEachExternalModule(program.getTypeChecker(), program.getSourceFiles(), excludePatterns, host, (module22, file) => cb(module22, file, program, false)); const autoImportProvider = useAutoImportProvider && ((_a = host.getPackageJsonAutoImportProvider) == null ? undefined : _a.call(host)); if (autoImportProvider) { const start = timestamp(); const checker = program.getTypeChecker(); forEachExternalModule(autoImportProvider.getTypeChecker(), autoImportProvider.getSourceFiles(), excludePatterns, host, (module22, file) => { if (file && !program.getSourceFile(file.fileName) || !file && !checker.resolveName(module22.name, undefined, 1536, false)) { cb(module22, file, autoImportProvider, true); } }); (_b = host.log) == null || _b.call(host, `forEachExternalModuleToImportFrom autoImportProvider: ${timestamp() - start}`); } } function getIsExcludedPatterns(preferences, useCaseSensitiveFileNames2) { return mapDefined(preferences.autoImportFileExcludePatterns, (spec3) => { const pattern = getSubPatternFromSpec(spec3, "", "exclude"); return pattern ? getRegexFromPattern(pattern, useCaseSensitiveFileNames2) : undefined; }); } function forEachExternalModule(checker, allSourceFiles, excludePatterns, host, cb) { var _a; const isExcluded = excludePatterns && getIsExcluded(excludePatterns, host); for (const ambient of checker.getAmbientModules()) { if (!ambient.name.includes("*") && !(excludePatterns && ((_a = ambient.declarations) == null ? undefined : _a.every((d) => isExcluded(d.getSourceFile()))))) { cb(ambient, undefined); } } for (const sourceFile of allSourceFiles) { if (isExternalOrCommonJsModule(sourceFile) && !(isExcluded == null ? undefined : isExcluded(sourceFile))) { cb(checker.getMergedSymbol(sourceFile.symbol), sourceFile); } } } function getIsExcluded(excludePatterns, host) { var _a; const realpathsWithSymlinks = (_a = host.getSymlinkCache) == null ? undefined : _a.call(host).getSymlinkedDirectoriesByRealpath(); return ({ fileName, path }) => { if (excludePatterns.some((p) => p.test(fileName))) return true; if ((realpathsWithSymlinks == null ? undefined : realpathsWithSymlinks.size) && pathContainsNodeModules(fileName)) { let dir = getDirectoryPath(fileName); return forEachAncestorDirectoryStoppingAtGlobalCache(host, getDirectoryPath(path), (dirPath) => { const symlinks = realpathsWithSymlinks.get(ensureTrailingDirectorySeparator(dirPath)); if (symlinks) { return symlinks.some((s) => excludePatterns.some((p) => p.test(fileName.replace(dir, s)))); } dir = getDirectoryPath(dir); }) ?? false; } return false; }; } function getIsFileExcluded(host, preferences) { if (!preferences.autoImportFileExcludePatterns) return () => false; return getIsExcluded(getIsExcludedPatterns(preferences, hostUsesCaseSensitiveFileNames(host)), host); } function getExportInfoMap(importingFile, host, program, preferences, cancellationToken) { var _a, _b, _c, _d, _e; const start = timestamp(); (_a = host.getPackageJsonAutoImportProvider) == null || _a.call(host); const cache = ((_b = host.getCachedExportInfoMap) == null ? undefined : _b.call(host)) || createCacheableExportInfoMap({ getCurrentProgram: () => program, getPackageJsonAutoImportProvider: () => { var _a2; return (_a2 = host.getPackageJsonAutoImportProvider) == null ? undefined : _a2.call(host); }, getGlobalTypingsCacheLocation: () => { var _a2; return (_a2 = host.getGlobalTypingsCacheLocation) == null ? undefined : _a2.call(host); } }); if (cache.isUsableByFile(importingFile.path)) { (_c = host.log) == null || _c.call(host, "getExportInfoMap: cache hit"); return cache; } (_d = host.log) == null || _d.call(host, "getExportInfoMap: cache miss or empty; calculating new results"); let moduleCount = 0; try { forEachExternalModuleToImportFrom(program, host, preferences, true, (moduleSymbol, moduleFile, program2, isFromPackageJson) => { if (++moduleCount % 100 === 0) cancellationToken == null || cancellationToken.throwIfCancellationRequested(); const seenExports = /* @__PURE__ */ new Set; const checker = program2.getTypeChecker(); const defaultInfo = getDefaultLikeExportInfo(moduleSymbol, checker); if (defaultInfo && isImportableSymbol(defaultInfo.symbol, checker)) { cache.add(importingFile.path, defaultInfo.symbol, defaultInfo.exportKind === 1 ? "default" : "export=", moduleSymbol, moduleFile, defaultInfo.exportKind, isFromPackageJson, checker); } checker.forEachExportAndPropertyOfModule(moduleSymbol, (exported, key) => { if (exported !== (defaultInfo == null ? undefined : defaultInfo.symbol) && isImportableSymbol(exported, checker) && addToSeen(seenExports, key)) { cache.add(importingFile.path, exported, key, moduleSymbol, moduleFile, 0, isFromPackageJson, checker); } }); }); } catch (err) { cache.clear(); throw err; } (_e = host.log) == null || _e.call(host, `getExportInfoMap: done in ${timestamp() - start} ms`); return cache; } function getDefaultLikeExportInfo(moduleSymbol, checker) { const exportEquals = checker.resolveExternalModuleSymbol(moduleSymbol); if (exportEquals !== moduleSymbol) { const defaultExport2 = checker.tryGetMemberInModuleExports("default", exportEquals); if (defaultExport2) return { symbol: defaultExport2, exportKind: 1 }; return { symbol: exportEquals, exportKind: 2 }; } const defaultExport = checker.tryGetMemberInModuleExports("default", moduleSymbol); if (defaultExport) return { symbol: defaultExport, exportKind: 1 }; } function isImportableSymbol(symbol, checker) { return !checker.isUndefinedSymbol(symbol) && !checker.isUnknownSymbol(symbol) && !isKnownSymbol(symbol) && !isPrivateIdentifierSymbol(symbol); } function getNamesForExportedSymbol(defaultExport, checker, scriptTarget) { let names; forEachNameOfDefaultExport(defaultExport, checker, scriptTarget, (name, capitalizedName) => { names = capitalizedName ? [name, capitalizedName] : name; return true; }); return Debug.checkDefined(names); } function forEachNameOfDefaultExport(defaultExport, checker, scriptTarget, cb) { let chain; let current = defaultExport; const seen = /* @__PURE__ */ new Set; while (current) { const fromDeclaration = getDefaultLikeExportNameFromDeclaration(current); if (fromDeclaration) { const final = cb(fromDeclaration); if (final) return final; } if (current.escapedName !== "default" && current.escapedName !== "export=") { const final = cb(current.name); if (final) return final; } chain = append(chain, current); if (!addToSeen(seen, current)) break; current = current.flags & 2097152 ? checker.getImmediateAliasedSymbol(current) : undefined; } for (const symbol of chain ?? emptyArray) { if (symbol.parent && isExternalModuleSymbol(symbol.parent)) { const final = cb(moduleSymbolToValidIdentifier(symbol.parent, scriptTarget, false), moduleSymbolToValidIdentifier(symbol.parent, scriptTarget, true)); if (final) return final; } } } function createClassifier() { const scanner2 = createScanner(99, false); function getClassificationsForLine(text, lexState, syntacticClassifierAbsent) { return convertClassificationsToResult(getEncodedLexicalClassifications(text, lexState, syntacticClassifierAbsent), text); } function getEncodedLexicalClassifications(text, lexState, syntacticClassifierAbsent) { let token = 0; let lastNonTriviaToken = 0; const templateStack = []; const { prefix, pushTemplate } = getPrefixFromLexState(lexState); text = prefix + text; const offset = prefix.length; if (pushTemplate) { templateStack.push(16); } scanner2.setText(text); let endOfLineState = 0; const spans = []; let angleBracketStack = 0; do { token = scanner2.scan(); if (!isTrivia(token)) { handleToken(); lastNonTriviaToken = token; } const end = scanner2.getTokenEnd(); pushEncodedClassification(scanner2.getTokenStart(), end, offset, classFromKind(token), spans); if (end >= text.length) { const end2 = getNewEndOfLineState(scanner2, token, lastOrUndefined(templateStack)); if (end2 !== undefined) { endOfLineState = end2; } } } while (token !== 1); function handleToken() { switch (token) { case 44: case 69: if (!noRegexTable[lastNonTriviaToken] && scanner2.reScanSlashToken() === 14) { token = 14; } break; case 30: if (lastNonTriviaToken === 80) { angleBracketStack++; } break; case 32: if (angleBracketStack > 0) { angleBracketStack--; } break; case 133: case 154: case 150: case 136: case 155: if (angleBracketStack > 0 && !syntacticClassifierAbsent) { token = 80; } break; case 16: templateStack.push(token); break; case 19: if (templateStack.length > 0) { templateStack.push(token); } break; case 20: if (templateStack.length > 0) { const lastTemplateStackToken = lastOrUndefined(templateStack); if (lastTemplateStackToken === 16) { token = scanner2.reScanTemplateToken(false); if (token === 18) { templateStack.pop(); } else { Debug.assertEqual(token, 17, "Should have been a template middle."); } } else { Debug.assertEqual(lastTemplateStackToken, 19, "Should have been an open brace"); templateStack.pop(); } } break; default: if (!isKeyword(token)) { break; } if (lastNonTriviaToken === 25) { token = 80; } else if (isKeyword(lastNonTriviaToken) && isKeyword(token) && !canFollow(lastNonTriviaToken, token)) { token = 80; } } } return { endOfLineState, spans }; } return { getClassificationsForLine, getEncodedLexicalClassifications }; } var noRegexTable = arrayToNumericMap([ 80, 11, 9, 10, 14, 110, 46, 47, 22, 24, 20, 112, 97 ], (token) => token, () => true); function getNewEndOfLineState(scanner2, token, lastOnTemplateStack) { switch (token) { case 11: { if (!scanner2.isUnterminated()) return; const tokenText = scanner2.getTokenText(); const lastCharIndex = tokenText.length - 1; let numBackslashes = 0; while (tokenText.charCodeAt(lastCharIndex - numBackslashes) === 92) { numBackslashes++; } if ((numBackslashes & 1) === 0) return; return tokenText.charCodeAt(0) === 34 ? 3 : 2; } case 3: return scanner2.isUnterminated() ? 1 : undefined; default: if (isTemplateLiteralKind(token)) { if (!scanner2.isUnterminated()) { return; } switch (token) { case 18: return 5; case 15: return 4; default: return Debug.fail("Only 'NoSubstitutionTemplateLiteral's and 'TemplateTail's can be unterminated; got SyntaxKind #" + token); } } return lastOnTemplateStack === 16 ? 6 : undefined; } } function pushEncodedClassification(start, end, offset, classification, result) { if (classification === 8) { return; } if (start === 0 && offset > 0) { start += offset; } const length2 = end - start; if (length2 > 0) { result.push(start - offset, length2, classification); } } function convertClassificationsToResult(classifications, text) { const entries = []; const dense = classifications.spans; let lastEnd = 0; for (let i = 0;i < dense.length; i += 3) { const start = dense[i]; const length2 = dense[i + 1]; const type = dense[i + 2]; if (lastEnd >= 0) { const whitespaceLength2 = start - lastEnd; if (whitespaceLength2 > 0) { entries.push({ length: whitespaceLength2, classification: 4 }); } } entries.push({ length: length2, classification: convertClassification(type) }); lastEnd = start + length2; } const whitespaceLength = text.length - lastEnd; if (whitespaceLength > 0) { entries.push({ length: whitespaceLength, classification: 4 }); } return { entries, finalLexState: classifications.endOfLineState }; } function convertClassification(type) { switch (type) { case 1: return 3; case 3: return 1; case 4: return 6; case 25: return 7; case 5: return 2; case 6: return 8; case 8: return 4; case 10: return 0; case 2: case 11: case 12: case 13: case 14: case 15: case 16: case 9: case 17: return 5; default: return; } } function canFollow(keyword1, keyword2) { if (!isAccessibilityModifier(keyword1)) { return true; } switch (keyword2) { case 139: case 153: case 137: case 126: case 129: return true; default: return false; } } function getPrefixFromLexState(lexState) { switch (lexState) { case 3: return { prefix: '"\\\n' }; case 2: return { prefix: "'\\\n" }; case 1: return { prefix: `/* ` }; case 4: return { prefix: "`\n" }; case 5: return { prefix: `} `, pushTemplate: true }; case 6: return { prefix: "", pushTemplate: true }; case 0: return { prefix: "" }; default: return Debug.assertNever(lexState); } } function isBinaryExpressionOperatorToken(token) { switch (token) { case 42: case 44: case 45: case 40: case 41: case 48: case 49: case 50: case 30: case 32: case 33: case 34: case 104: case 103: case 130: case 152: case 35: case 36: case 37: case 38: case 51: case 53: case 52: case 56: case 57: case 75: case 74: case 79: case 71: case 72: case 73: case 65: case 66: case 67: case 69: case 70: case 64: case 28: case 61: case 76: case 77: case 78: return true; default: return false; } } function isPrefixUnaryExpressionOperatorToken(token) { switch (token) { case 40: case 41: case 55: case 54: case 46: case 47: return true; default: return false; } } function classFromKind(token) { if (isKeyword(token)) { return 3; } else if (isBinaryExpressionOperatorToken(token) || isPrefixUnaryExpressionOperatorToken(token)) { return 5; } else if (token >= 19 && token <= 79) { return 10; } switch (token) { case 9: return 4; case 10: return 25; case 11: return 6; case 14: return 7; case 7: case 3: case 2: return 1; case 5: case 4: return 8; case 80: default: if (isTemplateLiteralKind(token)) { return 6; } return 2; } } function getSemanticClassifications(typeChecker, cancellationToken, sourceFile, classifiableNames, span) { return convertClassificationsToSpans(getEncodedSemanticClassifications(typeChecker, cancellationToken, sourceFile, classifiableNames, span)); } function checkForClassificationCancellation(cancellationToken, kind) { switch (kind) { case 268: case 264: case 265: case 263: case 232: case 219: case 220: cancellationToken.throwIfCancellationRequested(); } } function getEncodedSemanticClassifications(typeChecker, cancellationToken, sourceFile, classifiableNames, span) { const spans = []; sourceFile.forEachChild(function cb(node) { if (!node || !textSpanIntersectsWith(span, node.pos, node.getFullWidth())) { return; } checkForClassificationCancellation(cancellationToken, node.kind); if (isIdentifier(node) && !nodeIsMissing(node) && classifiableNames.has(node.escapedText)) { const symbol = typeChecker.getSymbolAtLocation(node); const type = symbol && classifySymbol(symbol, getMeaningFromLocation(node), typeChecker); if (type) { pushClassification(node.getStart(sourceFile), node.getEnd(), type); } } node.forEachChild(cb); }); return { spans, endOfLineState: 0 }; function pushClassification(start, end, type) { const length2 = end - start; Debug.assert(length2 > 0, `Classification had non-positive length of ${length2}`); spans.push(start); spans.push(length2); spans.push(type); } } function classifySymbol(symbol, meaningAtPosition, checker) { const flags = symbol.getFlags(); if ((flags & 2885600) === 0) { return; } else if (flags & 32) { return 11; } else if (flags & 384) { return 12; } else if (flags & 524288) { return 16; } else if (flags & 1536) { return meaningAtPosition & 4 || meaningAtPosition & 1 && hasValueSideModule(symbol) ? 14 : undefined; } else if (flags & 2097152) { return classifySymbol(checker.getAliasedSymbol(symbol), meaningAtPosition, checker); } else if (meaningAtPosition & 2) { return flags & 64 ? 13 : flags & 262144 ? 15 : undefined; } else { return; } } function hasValueSideModule(symbol) { return some(symbol.declarations, (declaration) => isModuleDeclaration(declaration) && getModuleInstanceState(declaration) === 1); } function getClassificationTypeName(type) { switch (type) { case 1: return "comment"; case 2: return "identifier"; case 3: return "keyword"; case 4: return "number"; case 25: return "bigint"; case 5: return "operator"; case 6: return "string"; case 8: return "whitespace"; case 9: return "text"; case 10: return "punctuation"; case 11: return "class name"; case 12: return "enum name"; case 13: return "interface name"; case 14: return "module name"; case 15: return "type parameter name"; case 16: return "type alias name"; case 17: return "parameter name"; case 18: return "doc comment tag name"; case 19: return "jsx open tag name"; case 20: return "jsx close tag name"; case 21: return "jsx self closing tag name"; case 22: return "jsx attribute"; case 23: return "jsx text"; case 24: return "jsx attribute string literal value"; default: return; } } function convertClassificationsToSpans(classifications) { Debug.assert(classifications.spans.length % 3 === 0); const dense = classifications.spans; const result = []; for (let i = 0;i < dense.length; i += 3) { result.push({ textSpan: createTextSpan(dense[i], dense[i + 1]), classificationType: getClassificationTypeName(dense[i + 2]) }); } return result; } function getSyntacticClassifications(cancellationToken, sourceFile, span) { return convertClassificationsToSpans(getEncodedSyntacticClassifications(cancellationToken, sourceFile, span)); } function getEncodedSyntacticClassifications(cancellationToken, sourceFile, span) { const spanStart = span.start; const spanLength = span.length; const triviaScanner = createScanner(99, false, sourceFile.languageVariant, sourceFile.text); const mergeConflictScanner = createScanner(99, false, sourceFile.languageVariant, sourceFile.text); const result = []; processElement(sourceFile); return { spans: result, endOfLineState: 0 }; function pushClassification(start, length2, type) { result.push(start); result.push(length2); result.push(type); } function classifyLeadingTriviaAndGetTokenStart(token) { triviaScanner.resetTokenState(token.pos); while (true) { const start = triviaScanner.getTokenEnd(); if (!couldStartTrivia(sourceFile.text, start)) { return start; } const kind = triviaScanner.scan(); const end = triviaScanner.getTokenEnd(); const width = end - start; if (!isTrivia(kind)) { return start; } switch (kind) { case 4: case 5: continue; case 2: case 3: classifyComment(token, kind, start, width); triviaScanner.resetTokenState(end); continue; case 7: const text = sourceFile.text; const ch = text.charCodeAt(start); if (ch === 60 || ch === 62) { pushClassification(start, width, 1); continue; } Debug.assert(ch === 124 || ch === 61); classifyDisabledMergeCode(text, start, end); break; case 6: break; default: Debug.assertNever(kind); } } } function classifyComment(token, kind, start, width) { if (kind === 3) { const docCommentAndDiagnostics = parseIsolatedJSDocComment(sourceFile.text, start, width); if (docCommentAndDiagnostics && docCommentAndDiagnostics.jsDoc) { setParent(docCommentAndDiagnostics.jsDoc, token); classifyJSDocComment(docCommentAndDiagnostics.jsDoc); return; } } else if (kind === 2) { if (tryClassifyTripleSlashComment(start, width)) { return; } } pushCommentRange(start, width); } function pushCommentRange(start, width) { pushClassification(start, width, 1); } function classifyJSDocComment(docComment) { var _a, _b, _c, _d, _e, _f, _g, _h; let pos = docComment.pos; if (docComment.tags) { for (const tag of docComment.tags) { if (tag.pos !== pos) { pushCommentRange(pos, tag.pos - pos); } pushClassification(tag.pos, 1, 10); pushClassification(tag.tagName.pos, tag.tagName.end - tag.tagName.pos, 18); pos = tag.tagName.end; let commentStart = tag.tagName.end; switch (tag.kind) { case 342: const param = tag; processJSDocParameterTag(param); commentStart = param.isNameFirst && ((_a = param.typeExpression) == null ? undefined : _a.end) || param.name.end; break; case 349: const prop = tag; commentStart = prop.isNameFirst && ((_b = prop.typeExpression) == null ? undefined : _b.end) || prop.name.end; break; case 346: processJSDocTemplateTag(tag); pos = tag.end; commentStart = tag.typeParameters.end; break; case 347: const type = tag; commentStart = ((_c = type.typeExpression) == null ? undefined : _c.kind) === 310 && ((_d = type.fullName) == null ? undefined : _d.end) || ((_e = type.typeExpression) == null ? undefined : _e.end) || commentStart; break; case 339: commentStart = tag.typeExpression.end; break; case 345: processElement(tag.typeExpression); pos = tag.end; commentStart = tag.typeExpression.end; break; case 344: case 341: commentStart = tag.typeExpression.end; break; case 343: processElement(tag.typeExpression); pos = tag.end; commentStart = ((_f = tag.typeExpression) == null ? undefined : _f.end) || commentStart; break; case 348: commentStart = ((_g = tag.name) == null ? undefined : _g.end) || commentStart; break; case 329: case 330: commentStart = tag.class.end; break; case 350: processElement(tag.typeExpression); pos = tag.end; commentStart = ((_h = tag.typeExpression) == null ? undefined : _h.end) || commentStart; break; } if (typeof tag.comment === "object") { pushCommentRange(tag.comment.pos, tag.comment.end - tag.comment.pos); } else if (typeof tag.comment === "string") { pushCommentRange(commentStart, tag.end - commentStart); } } } if (pos !== docComment.end) { pushCommentRange(pos, docComment.end - pos); } return; function processJSDocParameterTag(tag) { if (tag.isNameFirst) { pushCommentRange(pos, tag.name.pos - pos); pushClassification(tag.name.pos, tag.name.end - tag.name.pos, 17); pos = tag.name.end; } if (tag.typeExpression) { pushCommentRange(pos, tag.typeExpression.pos - pos); processElement(tag.typeExpression); pos = tag.typeExpression.end; } if (!tag.isNameFirst) { pushCommentRange(pos, tag.name.pos - pos); pushClassification(tag.name.pos, tag.name.end - tag.name.pos, 17); pos = tag.name.end; } } } function tryClassifyTripleSlashComment(start, width) { const tripleSlashXMLCommentRegEx = /^(\/\/\/\s*)(<)(?:(\S+)((?:[^/]|\/[^>])*)(\/>)?)?/m; const attributeRegex = /(\s)(\S+)(\s*)(=)(\s*)('[^']+'|"[^"]+")/g; const text = sourceFile.text.substr(start, width); const match = tripleSlashXMLCommentRegEx.exec(text); if (!match) { return false; } if (!match[3] || !(match[3] in commentPragmas)) { return false; } let pos = start; pushCommentRange(pos, match[1].length); pos += match[1].length; pushClassification(pos, match[2].length, 10); pos += match[2].length; pushClassification(pos, match[3].length, 21); pos += match[3].length; const attrText = match[4]; let attrPos = pos; while (true) { const attrMatch = attributeRegex.exec(attrText); if (!attrMatch) { break; } const newAttrPos = pos + attrMatch.index + attrMatch[1].length; if (newAttrPos > attrPos) { pushCommentRange(attrPos, newAttrPos - attrPos); attrPos = newAttrPos; } pushClassification(attrPos, attrMatch[2].length, 22); attrPos += attrMatch[2].length; if (attrMatch[3].length) { pushCommentRange(attrPos, attrMatch[3].length); attrPos += attrMatch[3].length; } pushClassification(attrPos, attrMatch[4].length, 5); attrPos += attrMatch[4].length; if (attrMatch[5].length) { pushCommentRange(attrPos, attrMatch[5].length); attrPos += attrMatch[5].length; } pushClassification(attrPos, attrMatch[6].length, 24); attrPos += attrMatch[6].length; } pos += match[4].length; if (pos > attrPos) { pushCommentRange(attrPos, pos - attrPos); } if (match[5]) { pushClassification(pos, match[5].length, 10); pos += match[5].length; } const end = start + width; if (pos < end) { pushCommentRange(pos, end - pos); } return true; } function processJSDocTemplateTag(tag) { for (const child of tag.getChildren()) { processElement(child); } } function classifyDisabledMergeCode(text, start, end) { let i; for (i = start;i < end; i++) { if (isLineBreak(text.charCodeAt(i))) { break; } } pushClassification(start, i - start, 1); mergeConflictScanner.resetTokenState(i); while (mergeConflictScanner.getTokenEnd() < end) { classifyDisabledCodeToken(); } } function classifyDisabledCodeToken() { const start = mergeConflictScanner.getTokenEnd(); const tokenKind = mergeConflictScanner.scan(); const end = mergeConflictScanner.getTokenEnd(); const type = classifyTokenType(tokenKind); if (type) { pushClassification(start, end - start, type); } } function tryClassifyNode(node) { if (isJSDoc(node)) { return true; } if (nodeIsMissing(node)) { return true; } const classifiedElementName = tryClassifyJsxElementName(node); if (!isToken(node) && node.kind !== 12 && classifiedElementName === undefined) { return false; } const tokenStart = node.kind === 12 ? node.pos : classifyLeadingTriviaAndGetTokenStart(node); const tokenWidth = node.end - tokenStart; Debug.assert(tokenWidth >= 0); if (tokenWidth > 0) { const type = classifiedElementName || classifyTokenType(node.kind, node); if (type) { pushClassification(tokenStart, tokenWidth, type); } } return true; } function tryClassifyJsxElementName(token) { switch (token.parent && token.parent.kind) { case 287: if (token.parent.tagName === token) { return 19; } break; case 288: if (token.parent.tagName === token) { return 20; } break; case 286: if (token.parent.tagName === token) { return 21; } break; case 292: if (token.parent.name === token) { return 22; } break; } return; } function classifyTokenType(tokenKind, token) { if (isKeyword(tokenKind)) { return 3; } if (tokenKind === 30 || tokenKind === 32) { if (token && getTypeArgumentOrTypeParameterList(token.parent)) { return 10; } } if (isPunctuation(tokenKind)) { if (token) { const parent2 = token.parent; if (tokenKind === 64) { if (parent2.kind === 261 || parent2.kind === 173 || parent2.kind === 170 || parent2.kind === 292) { return 5; } } if (parent2.kind === 227 || parent2.kind === 225 || parent2.kind === 226 || parent2.kind === 228) { return 5; } } return 10; } else if (tokenKind === 9) { return 4; } else if (tokenKind === 10) { return 25; } else if (tokenKind === 11) { return token && token.parent.kind === 292 ? 24 : 6; } else if (tokenKind === 14) { return 6; } else if (isTemplateLiteralKind(tokenKind)) { return 6; } else if (tokenKind === 12) { return 23; } else if (tokenKind === 80) { if (token) { switch (token.parent.kind) { case 264: if (token.parent.name === token) { return 11; } return; case 169: if (token.parent.name === token) { return 15; } return; case 265: if (token.parent.name === token) { return 13; } return; case 267: if (token.parent.name === token) { return 12; } return; case 268: if (token.parent.name === token) { return 14; } return; case 170: if (token.parent.name === token) { return isThisIdentifier(token) ? 3 : 17; } return; } if (isConstTypeReference(token.parent)) { return 3; } } return 2; } } function processElement(element) { if (!element) { return; } if (decodedTextSpanIntersectsWith(spanStart, spanLength, element.pos, element.getFullWidth())) { checkForClassificationCancellation(cancellationToken, element.kind); for (const child of element.getChildren(sourceFile)) { if (!tryClassifyNode(child)) { processElement(child); } } } } } var DocumentHighlights; ((DocumentHighlights3) => { function getDocumentHighlights(program, cancellationToken, sourceFile, position, sourceFilesToSearch) { const node = getTouchingPropertyName(sourceFile, position); if (node.parent && (isJsxOpeningElement(node.parent) && node.parent.tagName === node || isJsxClosingElement(node.parent))) { const { openingElement, closingElement } = node.parent.parent; const highlightSpans = [openingElement, closingElement].map(({ tagName }) => getHighlightSpanForNode(tagName, sourceFile)); return [{ fileName: sourceFile.fileName, highlightSpans }]; } return getSemanticDocumentHighlights(position, node, program, cancellationToken, sourceFilesToSearch) || getSyntacticDocumentHighlights(node, sourceFile); } DocumentHighlights3.getDocumentHighlights = getDocumentHighlights; function getHighlightSpanForNode(node, sourceFile) { return { fileName: sourceFile.fileName, textSpan: createTextSpanFromNode(node, sourceFile), kind: "none" }; } function getSemanticDocumentHighlights(position, node, program, cancellationToken, sourceFilesToSearch) { const sourceFilesSet = new Set(sourceFilesToSearch.map((f) => f.fileName)); const referenceEntries = ts_FindAllReferences_exports.getReferenceEntriesForNode(position, node, program, sourceFilesToSearch, cancellationToken, undefined, sourceFilesSet); if (!referenceEntries) return; const map2 = arrayToMultiMap(referenceEntries.map(ts_FindAllReferences_exports.toHighlightSpan), (e) => e.fileName, (e) => e.span); const getCanonicalFileName = createGetCanonicalFileName(program.useCaseSensitiveFileNames()); return arrayFrom(mapDefinedIterator(map2.entries(), ([fileName, highlightSpans]) => { if (!sourceFilesSet.has(fileName)) { if (!program.redirectTargetsMap.has(toPath(fileName, program.getCurrentDirectory(), getCanonicalFileName))) { return; } const redirectTarget = program.getSourceFile(fileName); const redirect = find(sourceFilesToSearch, (f) => !!f.redirectInfo && f.redirectInfo.redirectTarget === redirectTarget); fileName = redirect.fileName; Debug.assert(sourceFilesSet.has(fileName)); } return { fileName, highlightSpans }; })); } function getSyntacticDocumentHighlights(node, sourceFile) { const highlightSpans = getHighlightSpans(node, sourceFile); return highlightSpans && [{ fileName: sourceFile.fileName, highlightSpans }]; } function getHighlightSpans(node, sourceFile) { switch (node.kind) { case 101: case 93: return isIfStatement(node.parent) ? getIfElseOccurrences(node.parent, sourceFile) : undefined; case 107: return useParent(node.parent, isReturnStatement, getReturnOccurrences); case 111: return useParent(node.parent, isThrowStatement, getThrowOccurrences); case 113: case 85: case 98: const tryStatement = node.kind === 85 ? node.parent.parent : node.parent; return useParent(tryStatement, isTryStatement, getTryCatchFinallyOccurrences); case 109: return useParent(node.parent, isSwitchStatement, getSwitchCaseDefaultOccurrences); case 84: case 90: { if (isDefaultClause(node.parent) || isCaseClause(node.parent)) { return useParent(node.parent.parent.parent, isSwitchStatement, getSwitchCaseDefaultOccurrences); } return; } case 83: case 88: return useParent(node.parent, isBreakOrContinueStatement, getBreakOrContinueStatementOccurrences); case 99: case 117: case 92: return useParent(node.parent, (n) => isIterationStatement(n, true), getLoopBreakContinueOccurrences); case 137: return getFromAllDeclarations(isConstructorDeclaration, [137]); case 139: case 153: return getFromAllDeclarations(isAccessor, [139, 153]); case 135: return useParent(node.parent, isAwaitExpression, getAsyncAndAwaitOccurrences); case 134: return highlightSpans(getAsyncAndAwaitOccurrences(node)); case 127: return highlightSpans(getYieldOccurrences(node)); case 103: case 147: return; default: return isModifierKind(node.kind) && (isDeclaration(node.parent) || isVariableStatement(node.parent)) ? highlightSpans(getModifierOccurrences(node.kind, node.parent)) : undefined; } function getFromAllDeclarations(nodeTest, keywords) { return useParent(node.parent, nodeTest, (decl) => { var _a; return mapDefined((_a = tryCast(decl, canHaveSymbol)) == null ? undefined : _a.symbol.declarations, (d) => nodeTest(d) ? find(d.getChildren(sourceFile), (c) => contains(keywords, c.kind)) : undefined); }); } function useParent(node2, nodeTest, getNodes4) { return nodeTest(node2) ? highlightSpans(getNodes4(node2, sourceFile)) : undefined; } function highlightSpans(nodes) { return nodes && nodes.map((node2) => getHighlightSpanForNode(node2, sourceFile)); } } function aggregateOwnedThrowStatements(node) { if (isThrowStatement(node)) { return [node]; } else if (isTryStatement(node)) { return concatenate(node.catchClause ? aggregateOwnedThrowStatements(node.catchClause) : node.tryBlock && aggregateOwnedThrowStatements(node.tryBlock), node.finallyBlock && aggregateOwnedThrowStatements(node.finallyBlock)); } return isFunctionLike(node) ? undefined : flatMapChildren(node, aggregateOwnedThrowStatements); } function getThrowStatementOwner(throwStatement) { let child = throwStatement; while (child.parent) { const parent2 = child.parent; if (isFunctionBlock(parent2) || parent2.kind === 308) { return parent2; } if (isTryStatement(parent2) && parent2.tryBlock === child && parent2.catchClause) { return child; } child = parent2; } return; } function aggregateAllBreakAndContinueStatements(node) { return isBreakOrContinueStatement(node) ? [node] : isFunctionLike(node) ? undefined : flatMapChildren(node, aggregateAllBreakAndContinueStatements); } function flatMapChildren(node, cb) { const result = []; node.forEachChild((child) => { const value = cb(child); if (value !== undefined) { result.push(...toArray(value)); } }); return result; } function ownsBreakOrContinueStatement(owner, statement) { const actualOwner = getBreakOrContinueOwner(statement); return !!actualOwner && actualOwner === owner; } function getBreakOrContinueOwner(statement) { return findAncestor(statement, (node) => { switch (node.kind) { case 256: if (statement.kind === 252) { return false; } case 249: case 250: case 251: case 248: case 247: return !statement.label || isLabeledBy(node, statement.label.escapedText); default: return isFunctionLike(node) && "quit"; } }); } function getModifierOccurrences(modifier, declaration) { return mapDefined(getNodesToSearchForModifier(declaration, modifierToFlag(modifier)), (node) => findModifier(node, modifier)); } function getNodesToSearchForModifier(declaration, modifierFlag) { const container = declaration.parent; switch (container.kind) { case 269: case 308: case 242: case 297: case 298: if (modifierFlag & 64 && isClassDeclaration(declaration)) { return [...declaration.members, declaration]; } else { return container.statements; } case 177: case 175: case 263: return [...container.parameters, ...isClassLike(container.parent) ? container.parent.members : []]; case 264: case 232: case 265: case 188: const nodes = container.members; if (modifierFlag & (7 | 8)) { const constructor = find(container.members, isConstructorDeclaration); if (constructor) { return [...nodes, ...constructor.parameters]; } } else if (modifierFlag & 64) { return [...nodes, container]; } return nodes; default: return; } } function pushKeywordIf(keywordList, token, ...expected) { if (token && contains(expected, token.kind)) { keywordList.push(token); return true; } return false; } function getLoopBreakContinueOccurrences(loopNode) { const keywords = []; if (pushKeywordIf(keywords, loopNode.getFirstToken(), 99, 117, 92)) { if (loopNode.kind === 247) { const loopTokens = loopNode.getChildren(); for (let i = loopTokens.length - 1;i >= 0; i--) { if (pushKeywordIf(keywords, loopTokens[i], 117)) { break; } } } } forEach(aggregateAllBreakAndContinueStatements(loopNode.statement), (statement) => { if (ownsBreakOrContinueStatement(loopNode, statement)) { pushKeywordIf(keywords, statement.getFirstToken(), 83, 88); } }); return keywords; } function getBreakOrContinueStatementOccurrences(breakOrContinueStatement) { const owner = getBreakOrContinueOwner(breakOrContinueStatement); if (owner) { switch (owner.kind) { case 249: case 250: case 251: case 247: case 248: return getLoopBreakContinueOccurrences(owner); case 256: return getSwitchCaseDefaultOccurrences(owner); } } return; } function getSwitchCaseDefaultOccurrences(switchStatement) { const keywords = []; pushKeywordIf(keywords, switchStatement.getFirstToken(), 109); forEach(switchStatement.caseBlock.clauses, (clause) => { pushKeywordIf(keywords, clause.getFirstToken(), 84, 90); forEach(aggregateAllBreakAndContinueStatements(clause), (statement) => { if (ownsBreakOrContinueStatement(switchStatement, statement)) { pushKeywordIf(keywords, statement.getFirstToken(), 83); } }); }); return keywords; } function getTryCatchFinallyOccurrences(tryStatement, sourceFile) { const keywords = []; pushKeywordIf(keywords, tryStatement.getFirstToken(), 113); if (tryStatement.catchClause) { pushKeywordIf(keywords, tryStatement.catchClause.getFirstToken(), 85); } if (tryStatement.finallyBlock) { const finallyKeyword = findChildOfKind(tryStatement, 98, sourceFile); pushKeywordIf(keywords, finallyKeyword, 98); } return keywords; } function getThrowOccurrences(throwStatement, sourceFile) { const owner = getThrowStatementOwner(throwStatement); if (!owner) { return; } const keywords = []; forEach(aggregateOwnedThrowStatements(owner), (throwStatement2) => { keywords.push(findChildOfKind(throwStatement2, 111, sourceFile)); }); if (isFunctionBlock(owner)) { forEachReturnStatement(owner, (returnStatement) => { keywords.push(findChildOfKind(returnStatement, 107, sourceFile)); }); } return keywords; } function getReturnOccurrences(returnStatement, sourceFile) { const func = getContainingFunction(returnStatement); if (!func) { return; } const keywords = []; forEachReturnStatement(cast(func.body, isBlock), (returnStatement2) => { keywords.push(findChildOfKind(returnStatement2, 107, sourceFile)); }); forEach(aggregateOwnedThrowStatements(func.body), (throwStatement) => { keywords.push(findChildOfKind(throwStatement, 111, sourceFile)); }); return keywords; } function getAsyncAndAwaitOccurrences(node) { const func = getContainingFunction(node); if (!func) { return; } const keywords = []; if (func.modifiers) { func.modifiers.forEach((modifier) => { pushKeywordIf(keywords, modifier, 134); }); } forEachChild(func, (child) => { traverseWithoutCrossingFunction(child, (node2) => { if (isAwaitExpression(node2)) { pushKeywordIf(keywords, node2.getFirstToken(), 135); } }); }); return keywords; } function getYieldOccurrences(node) { const func = getContainingFunction(node); if (!func) { return; } const keywords = []; forEachChild(func, (child) => { traverseWithoutCrossingFunction(child, (node2) => { if (isYieldExpression(node2)) { pushKeywordIf(keywords, node2.getFirstToken(), 127); } }); }); return keywords; } function traverseWithoutCrossingFunction(node, cb) { cb(node); if (!isFunctionLike(node) && !isClassLike(node) && !isInterfaceDeclaration(node) && !isModuleDeclaration(node) && !isTypeAliasDeclaration(node) && !isTypeNode(node)) { forEachChild(node, (child) => traverseWithoutCrossingFunction(child, cb)); } } function getIfElseOccurrences(ifStatement, sourceFile) { const keywords = getIfElseKeywords(ifStatement, sourceFile); const result = []; for (let i = 0;i < keywords.length; i++) { if (keywords[i].kind === 93 && i < keywords.length - 1) { const elseKeyword = keywords[i]; const ifKeyword = keywords[i + 1]; let shouldCombineElseAndIf = true; for (let j = ifKeyword.getStart(sourceFile) - 1;j >= elseKeyword.end; j--) { if (!isWhiteSpaceSingleLine(sourceFile.text.charCodeAt(j))) { shouldCombineElseAndIf = false; break; } } if (shouldCombineElseAndIf) { result.push({ fileName: sourceFile.fileName, textSpan: createTextSpanFromBounds(elseKeyword.getStart(), ifKeyword.end), kind: "reference" }); i++; continue; } } result.push(getHighlightSpanForNode(keywords[i], sourceFile)); } return result; } function getIfElseKeywords(ifStatement, sourceFile) { const keywords = []; while (isIfStatement(ifStatement.parent) && ifStatement.parent.elseStatement === ifStatement) { ifStatement = ifStatement.parent; } while (true) { const children = ifStatement.getChildren(sourceFile); pushKeywordIf(keywords, children[0], 101); for (let i = children.length - 1;i >= 0; i--) { if (pushKeywordIf(keywords, children[i], 93)) { break; } } if (!ifStatement.elseStatement || !isIfStatement(ifStatement.elseStatement)) { break; } ifStatement = ifStatement.elseStatement; } return keywords; } function isLabeledBy(node, labelName) { return !!findAncestor(node.parent, (owner) => !isLabeledStatement(owner) ? "quit" : owner.label.escapedText === labelName); } })(DocumentHighlights || (DocumentHighlights = {})); function isDocumentRegistryEntry(entry) { return !!entry.sourceFile; } function createDocumentRegistry(useCaseSensitiveFileNames2, currentDirectory, jsDocParsingMode) { return createDocumentRegistryInternal(useCaseSensitiveFileNames2, currentDirectory, jsDocParsingMode); } function createDocumentRegistryInternal(useCaseSensitiveFileNames2, currentDirectory = "", jsDocParsingMode, externalCache) { const buckets = /* @__PURE__ */ new Map; const getCanonicalFileName = createGetCanonicalFileName(!!useCaseSensitiveFileNames2); function reportStats() { const bucketInfoArray = arrayFrom(buckets.keys()).filter((name) => name && name.charAt(0) === "_").map((name) => { const entries = buckets.get(name); const sourceFiles = []; entries.forEach((entry, name2) => { if (isDocumentRegistryEntry(entry)) { sourceFiles.push({ name: name2, scriptKind: entry.sourceFile.scriptKind, refCount: entry.languageServiceRefCount }); } else { entry.forEach((value, scriptKind) => sourceFiles.push({ name: name2, scriptKind, refCount: value.languageServiceRefCount })); } }); sourceFiles.sort((x, y) => y.refCount - x.refCount); return { bucket: name, sourceFiles }; }); return JSON.stringify(bucketInfoArray, undefined, 2); } function getCompilationSettings(settingsOrHost) { if (typeof settingsOrHost.getCompilationSettings === "function") { return settingsOrHost.getCompilationSettings(); } return settingsOrHost; } function acquireDocument(fileName, compilationSettings, scriptSnapshot, version2, scriptKind, languageVersionOrOptions) { const path = toPath(fileName, currentDirectory, getCanonicalFileName); const key = getKeyForCompilationSettings(getCompilationSettings(compilationSettings)); return acquireDocumentWithKey(fileName, path, compilationSettings, key, scriptSnapshot, version2, scriptKind, languageVersionOrOptions); } function acquireDocumentWithKey(fileName, path, compilationSettings, key, scriptSnapshot, version2, scriptKind, languageVersionOrOptions) { return acquireOrUpdateDocument(fileName, path, compilationSettings, key, scriptSnapshot, version2, true, scriptKind, languageVersionOrOptions); } function updateDocument(fileName, compilationSettings, scriptSnapshot, version2, scriptKind, languageVersionOrOptions) { const path = toPath(fileName, currentDirectory, getCanonicalFileName); const key = getKeyForCompilationSettings(getCompilationSettings(compilationSettings)); return updateDocumentWithKey(fileName, path, compilationSettings, key, scriptSnapshot, version2, scriptKind, languageVersionOrOptions); } function updateDocumentWithKey(fileName, path, compilationSettings, key, scriptSnapshot, version2, scriptKind, languageVersionOrOptions) { return acquireOrUpdateDocument(fileName, path, getCompilationSettings(compilationSettings), key, scriptSnapshot, version2, false, scriptKind, languageVersionOrOptions); } function getDocumentRegistryEntry(bucketEntry, scriptKind) { const entry = isDocumentRegistryEntry(bucketEntry) ? bucketEntry : bucketEntry.get(Debug.checkDefined(scriptKind, "If there are more than one scriptKind's for same document the scriptKind should be provided")); Debug.assert(scriptKind === undefined || !entry || entry.sourceFile.scriptKind === scriptKind, `Script kind should match provided ScriptKind:${scriptKind} and sourceFile.scriptKind: ${entry == null ? undefined : entry.sourceFile.scriptKind}, !entry: ${!entry}`); return entry; } function acquireOrUpdateDocument(fileName, path, compilationSettingsOrHost, key, scriptSnapshot, version2, acquiring, scriptKind, languageVersionOrOptions) { var _a, _b, _c, _d; scriptKind = ensureScriptKind(fileName, scriptKind); const compilationSettings = getCompilationSettings(compilationSettingsOrHost); const host = compilationSettingsOrHost === compilationSettings ? undefined : compilationSettingsOrHost; const scriptTarget = scriptKind === 6 ? 100 : getEmitScriptTarget(compilationSettings); const sourceFileOptions = typeof languageVersionOrOptions === "object" ? languageVersionOrOptions : { languageVersion: scriptTarget, impliedNodeFormat: host && getImpliedNodeFormatForFile(path, (_d = (_c = (_b = (_a = host.getCompilerHost) == null ? undefined : _a.call(host)) == null ? undefined : _b.getModuleResolutionCache) == null ? undefined : _c.call(_b)) == null ? undefined : _d.getPackageJsonInfoCache(), host, compilationSettings), setExternalModuleIndicator: getSetExternalModuleIndicator(compilationSettings), jsDocParsingMode }; sourceFileOptions.languageVersion = scriptTarget; Debug.assertEqual(jsDocParsingMode, sourceFileOptions.jsDocParsingMode); const oldBucketCount = buckets.size; const keyWithMode = getDocumentRegistryBucketKeyWithMode(key, sourceFileOptions.impliedNodeFormat); const bucket = getOrUpdate(buckets, keyWithMode, () => /* @__PURE__ */ new Map); if (tracing) { if (buckets.size > oldBucketCount) { tracing.instant(tracing.Phase.Session, "createdDocumentRegistryBucket", { configFilePath: compilationSettings.configFilePath, key: keyWithMode }); } const otherBucketKey = !isDeclarationFileName(path) && forEachEntry(buckets, (bucket2, bucketKey) => bucketKey !== keyWithMode && bucket2.has(path) && bucketKey); if (otherBucketKey) { tracing.instant(tracing.Phase.Session, "documentRegistryBucketOverlap", { path, key1: otherBucketKey, key2: keyWithMode }); } } const bucketEntry = bucket.get(path); let entry = bucketEntry && getDocumentRegistryEntry(bucketEntry, scriptKind); if (!entry && externalCache) { const sourceFile = externalCache.getDocument(keyWithMode, path); if (sourceFile && sourceFile.scriptKind === scriptKind && sourceFile.text === getSnapshotText(scriptSnapshot)) { Debug.assert(acquiring); entry = { sourceFile, languageServiceRefCount: 0 }; setBucketEntry(); } } if (!entry) { const sourceFile = createLanguageServiceSourceFile(fileName, scriptSnapshot, sourceFileOptions, version2, false, scriptKind); if (externalCache) { externalCache.setDocument(keyWithMode, path, sourceFile); } entry = { sourceFile, languageServiceRefCount: 1 }; setBucketEntry(); } else { if (entry.sourceFile.version !== version2) { entry.sourceFile = updateLanguageServiceSourceFile(entry.sourceFile, scriptSnapshot, version2, scriptSnapshot.getChangeRange(entry.sourceFile.scriptSnapshot)); if (externalCache) { externalCache.setDocument(keyWithMode, path, entry.sourceFile); } } if (acquiring) { entry.languageServiceRefCount++; } } Debug.assert(entry.languageServiceRefCount !== 0); return entry.sourceFile; function setBucketEntry() { if (!bucketEntry) { bucket.set(path, entry); } else if (isDocumentRegistryEntry(bucketEntry)) { const scriptKindMap = /* @__PURE__ */ new Map; scriptKindMap.set(bucketEntry.sourceFile.scriptKind, bucketEntry); scriptKindMap.set(scriptKind, entry); bucket.set(path, scriptKindMap); } else { bucketEntry.set(scriptKind, entry); } } } function releaseDocument(fileName, compilationSettings, scriptKind, impliedNodeFormat) { const path = toPath(fileName, currentDirectory, getCanonicalFileName); const key = getKeyForCompilationSettings(compilationSettings); return releaseDocumentWithKey(path, key, scriptKind, impliedNodeFormat); } function releaseDocumentWithKey(path, key, scriptKind, impliedNodeFormat) { const bucket = Debug.checkDefined(buckets.get(getDocumentRegistryBucketKeyWithMode(key, impliedNodeFormat))); const bucketEntry = bucket.get(path); const entry = getDocumentRegistryEntry(bucketEntry, scriptKind); entry.languageServiceRefCount--; Debug.assert(entry.languageServiceRefCount >= 0); if (entry.languageServiceRefCount === 0) { if (isDocumentRegistryEntry(bucketEntry)) { bucket.delete(path); } else { bucketEntry.delete(scriptKind); if (bucketEntry.size === 1) { bucket.set(path, firstDefinedIterator(bucketEntry.values(), identity)); } } } } return { acquireDocument, acquireDocumentWithKey, updateDocument, updateDocumentWithKey, releaseDocument, releaseDocumentWithKey, getKeyForCompilationSettings, getDocumentRegistryBucketKeyWithMode, reportStats, getBuckets: () => buckets }; } function getKeyForCompilationSettings(settings) { return getKeyForCompilerOptions(settings, sourceFileAffectingCompilerOptions); } function getDocumentRegistryBucketKeyWithMode(key, mode) { return mode ? `${key}|${mode}` : key; } function getEditsForFileRename(program, oldFileOrDirPath, newFileOrDirPath, host, formatContext, preferences, sourceMapper) { const useCaseSensitiveFileNames2 = hostUsesCaseSensitiveFileNames(host); const getCanonicalFileName = createGetCanonicalFileName(useCaseSensitiveFileNames2); const oldToNew = getPathUpdater(oldFileOrDirPath, newFileOrDirPath, getCanonicalFileName, sourceMapper); const newToOld = getPathUpdater(newFileOrDirPath, oldFileOrDirPath, getCanonicalFileName, sourceMapper); return ts_textChanges_exports.ChangeTracker.with({ host, formatContext, preferences }, (changeTracker) => { updateTsconfigFiles(program, changeTracker, oldToNew, oldFileOrDirPath, newFileOrDirPath, host.getCurrentDirectory(), useCaseSensitiveFileNames2); updateImports(program, changeTracker, oldToNew, newToOld, host, getCanonicalFileName); }); } function getPathUpdater(oldFileOrDirPath, newFileOrDirPath, getCanonicalFileName, sourceMapper) { const canonicalOldPath = getCanonicalFileName(oldFileOrDirPath); return (path) => { const originalPath = sourceMapper && sourceMapper.tryGetSourcePosition({ fileName: path, pos: 0 }); const updatedPath = getUpdatedPath(originalPath ? originalPath.fileName : path); return originalPath ? updatedPath === undefined ? undefined : makeCorrespondingRelativeChange(originalPath.fileName, updatedPath, path, getCanonicalFileName) : updatedPath; }; function getUpdatedPath(pathToUpdate) { if (getCanonicalFileName(pathToUpdate) === canonicalOldPath) return newFileOrDirPath; const suffix = tryRemoveDirectoryPrefix(pathToUpdate, canonicalOldPath, getCanonicalFileName); return suffix === undefined ? undefined : newFileOrDirPath + "/" + suffix; } } function makeCorrespondingRelativeChange(a0, b0, a1, getCanonicalFileName) { const rel = getRelativePathFromFile(a0, b0, getCanonicalFileName); return combinePathsSafe(getDirectoryPath(a1), rel); } function updateTsconfigFiles(program, changeTracker, oldToNew, oldFileOrDirPath, newFileOrDirPath, currentDirectory, useCaseSensitiveFileNames2) { const { configFile } = program.getCompilerOptions(); if (!configFile) return; const configDir = getDirectoryPath(configFile.fileName); const jsonObjectLiteral = getTsConfigObjectLiteralExpression(configFile); if (!jsonObjectLiteral) return; forEachProperty(jsonObjectLiteral, (property, propertyName) => { switch (propertyName) { case "files": case "include": case "exclude": { const foundExactMatch = updatePaths(property); if (foundExactMatch || propertyName !== "include" || !isArrayLiteralExpression(property.initializer)) return; const includes = mapDefined(property.initializer.elements, (e) => isStringLiteral(e) ? e.text : undefined); if (includes.length === 0) return; const matchers = getFileMatcherPatterns(configDir, [], includes, useCaseSensitiveFileNames2, currentDirectory); if (getRegexFromPattern(Debug.checkDefined(matchers.includeFilePattern), useCaseSensitiveFileNames2).test(oldFileOrDirPath) && !getRegexFromPattern(Debug.checkDefined(matchers.includeFilePattern), useCaseSensitiveFileNames2).test(newFileOrDirPath)) { changeTracker.insertNodeAfter(configFile, last(property.initializer.elements), factory.createStringLiteral(relativePath(newFileOrDirPath))); } return; } case "compilerOptions": forEachProperty(property.initializer, (property2, propertyName2) => { const option = getOptionFromName(propertyName2); Debug.assert((option == null ? undefined : option.type) !== "listOrElement"); if (option && (option.isFilePath || option.type === "list" && option.element.isFilePath)) { updatePaths(property2); } else if (propertyName2 === "paths") { forEachProperty(property2.initializer, (pathsProperty) => { if (!isArrayLiteralExpression(pathsProperty.initializer)) return; for (const e of pathsProperty.initializer.elements) { tryUpdateString(e); } }); } }); return; } }); function updatePaths(property) { const elements = isArrayLiteralExpression(property.initializer) ? property.initializer.elements : [property.initializer]; let foundExactMatch = false; for (const element of elements) { foundExactMatch = tryUpdateString(element) || foundExactMatch; } return foundExactMatch; } function tryUpdateString(element) { if (!isStringLiteral(element)) return false; const elementFileName = combinePathsSafe(configDir, element.text); const updated = oldToNew(elementFileName); if (updated !== undefined) { changeTracker.replaceRangeWithText(configFile, createStringRange(element, configFile), relativePath(updated)); return true; } return false; } function relativePath(path) { return getRelativePathFromDirectory(configDir, path, !useCaseSensitiveFileNames2); } } function updateImports(program, changeTracker, oldToNew, newToOld, host, getCanonicalFileName) { const allFiles = program.getSourceFiles(); for (const sourceFile of allFiles) { const newFromOld = oldToNew(sourceFile.fileName); const newImportFromPath = newFromOld ?? sourceFile.fileName; const newImportFromDirectory = getDirectoryPath(newImportFromPath); const oldFromNew = newToOld(sourceFile.fileName); const oldImportFromPath = oldFromNew || sourceFile.fileName; const oldImportFromDirectory = getDirectoryPath(oldImportFromPath); const importingSourceFileMoved = newFromOld !== undefined || oldFromNew !== undefined; updateImportsWorker(sourceFile, changeTracker, (referenceText) => { if (!pathIsRelative(referenceText)) return; const oldAbsolute = combinePathsSafe(oldImportFromDirectory, referenceText); const newAbsolute = oldToNew(oldAbsolute); return newAbsolute === undefined ? undefined : ensurePathIsNonModuleName(getRelativePathFromDirectory(newImportFromDirectory, newAbsolute, getCanonicalFileName)); }, (importLiteral) => { const importedModuleSymbol = program.getTypeChecker().getSymbolAtLocation(importLiteral); if ((importedModuleSymbol == null ? undefined : importedModuleSymbol.declarations) && importedModuleSymbol.declarations.some((d) => isAmbientModule(d))) return; const toImport = oldFromNew !== undefined ? getSourceFileToImportFromResolved(importLiteral, resolveModuleName(importLiteral.text, oldImportFromPath, program.getCompilerOptions(), host), oldToNew, allFiles) : getSourceFileToImport(importedModuleSymbol, importLiteral, sourceFile, program, host, oldToNew); return toImport !== undefined && (toImport.updated || importingSourceFileMoved && pathIsRelative(importLiteral.text)) ? ts_moduleSpecifiers_exports.updateModuleSpecifier(program.getCompilerOptions(), sourceFile, newImportFromPath, toImport.newFileName, createModuleSpecifierResolutionHost(program, host), importLiteral.text) : undefined; }); } } function combineNormal(pathA, pathB) { return normalizePath(combinePaths(pathA, pathB)); } function combinePathsSafe(pathA, pathB) { return ensurePathIsNonModuleName(combineNormal(pathA, pathB)); } function getSourceFileToImport(importedModuleSymbol, importLiteral, importingSourceFile, program, host, oldToNew) { if (importedModuleSymbol) { const oldFileName = find(importedModuleSymbol.declarations, isSourceFile).fileName; const newFileName = oldToNew(oldFileName); return newFileName === undefined ? { newFileName: oldFileName, updated: false } : { newFileName, updated: true }; } else { const mode = program.getModeForUsageLocation(importingSourceFile, importLiteral); const resolved = host.resolveModuleNameLiterals || !host.resolveModuleNames ? program.getResolvedModuleFromModuleSpecifier(importLiteral, importingSourceFile) : host.getResolvedModuleWithFailedLookupLocationsFromCache && host.getResolvedModuleWithFailedLookupLocationsFromCache(importLiteral.text, importingSourceFile.fileName, mode); return getSourceFileToImportFromResolved(importLiteral, resolved, oldToNew, program.getSourceFiles()); } } function getSourceFileToImportFromResolved(importLiteral, resolved, oldToNew, sourceFiles) { if (!resolved) return; if (resolved.resolvedModule) { const result2 = tryChange(resolved.resolvedModule.resolvedFileName); if (result2) return result2; } const result = forEach(resolved.failedLookupLocations, tryChangeWithIgnoringPackageJsonExisting) || pathIsRelative(importLiteral.text) && forEach(resolved.failedLookupLocations, tryChangeWithIgnoringPackageJson); if (result) return result; return resolved.resolvedModule && { newFileName: resolved.resolvedModule.resolvedFileName, updated: false }; function tryChangeWithIgnoringPackageJsonExisting(oldFileName) { const newFileName = oldToNew(oldFileName); return newFileName && find(sourceFiles, (src) => src.fileName === newFileName) ? tryChangeWithIgnoringPackageJson(oldFileName) : undefined; } function tryChangeWithIgnoringPackageJson(oldFileName) { return !endsWith(oldFileName, "/package.json") ? tryChange(oldFileName) : undefined; } function tryChange(oldFileName) { const newFileName = oldToNew(oldFileName); return newFileName && { newFileName, updated: true }; } } function updateImportsWorker(sourceFile, changeTracker, updateRef, updateImport) { for (const ref of sourceFile.referencedFiles || emptyArray) { const updated = updateRef(ref.fileName); if (updated !== undefined && updated !== sourceFile.text.slice(ref.pos, ref.end)) changeTracker.replaceRangeWithText(sourceFile, ref, updated); } for (const importStringLiteral of sourceFile.imports) { const updated = updateImport(importStringLiteral); if (updated !== undefined && updated !== importStringLiteral.text) changeTracker.replaceRangeWithText(sourceFile, createStringRange(importStringLiteral, sourceFile), updated); } } function createStringRange(node, sourceFile) { return createRange(node.getStart(sourceFile) + 1, node.end - 1); } function forEachProperty(objectLiteral, cb) { if (!isObjectLiteralExpression(objectLiteral)) return; for (const property of objectLiteral.properties) { if (isPropertyAssignment(property) && isStringLiteral(property.name)) { cb(property, property.name.text); } } } var PatternMatchKind = /* @__PURE__ */ ((PatternMatchKind2) => { PatternMatchKind2[PatternMatchKind2["exact"] = 0] = "exact"; PatternMatchKind2[PatternMatchKind2["prefix"] = 1] = "prefix"; PatternMatchKind2[PatternMatchKind2["substring"] = 2] = "substring"; PatternMatchKind2[PatternMatchKind2["camelCase"] = 3] = "camelCase"; return PatternMatchKind2; })(PatternMatchKind || {}); function createPatternMatch(kind, isCaseSensitive) { return { kind, isCaseSensitive }; } function createPatternMatcher(pattern) { const stringToWordSpans = /* @__PURE__ */ new Map; const dotSeparatedSegments = pattern.trim().split(".").map((p) => createSegment(p.trim())); if (dotSeparatedSegments.length === 1 && dotSeparatedSegments[0].totalTextChunk.text === "") { return { getMatchForLastSegmentOfPattern: () => createPatternMatch(2, true), getFullMatch: () => createPatternMatch(2, true), patternContainsDots: false }; } if (dotSeparatedSegments.some((segment) => !segment.subWordTextChunks.length)) return; return { getFullMatch: (containers, candidate) => getFullMatch(containers, candidate, dotSeparatedSegments, stringToWordSpans), getMatchForLastSegmentOfPattern: (candidate) => matchSegment(candidate, last(dotSeparatedSegments), stringToWordSpans), patternContainsDots: dotSeparatedSegments.length > 1 }; } function getFullMatch(candidateContainers, candidate, dotSeparatedSegments, stringToWordSpans) { const candidateMatch = matchSegment(candidate, last(dotSeparatedSegments), stringToWordSpans); if (!candidateMatch) { return; } if (dotSeparatedSegments.length - 1 > candidateContainers.length) { return; } let bestMatch; for (let i = dotSeparatedSegments.length - 2, j = candidateContainers.length - 1;i >= 0; i -= 1, j -= 1) { bestMatch = betterMatch(bestMatch, matchSegment(candidateContainers[j], dotSeparatedSegments[i], stringToWordSpans)); } return bestMatch; } function getWordSpans(word, stringToWordSpans) { let spans = stringToWordSpans.get(word); if (!spans) { stringToWordSpans.set(word, spans = breakIntoWordSpans(word)); } return spans; } function matchTextChunk(candidate, chunk, stringToWordSpans) { const index = indexOfIgnoringCase(candidate, chunk.textLowerCase); if (index === 0) { return createPatternMatch(chunk.text.length === candidate.length ? 0 : 1, startsWith(candidate, chunk.text)); } if (chunk.isLowerCase) { if (index === -1) return; const wordSpans = getWordSpans(candidate, stringToWordSpans); for (const span of wordSpans) { if (partStartsWith(candidate, span, chunk.text, true)) { return createPatternMatch(2, partStartsWith(candidate, span, chunk.text, false)); } } if (chunk.text.length < candidate.length && isUpperCaseLetter(candidate.charCodeAt(index))) { return createPatternMatch(2, false); } } else { if (candidate.indexOf(chunk.text) > 0) { return createPatternMatch(2, true); } if (chunk.characterSpans.length > 0) { const candidateParts = getWordSpans(candidate, stringToWordSpans); const isCaseSensitive = tryCamelCaseMatch(candidate, candidateParts, chunk, false) ? true : tryCamelCaseMatch(candidate, candidateParts, chunk, true) ? false : undefined; if (isCaseSensitive !== undefined) { return createPatternMatch(3, isCaseSensitive); } } } } function matchSegment(candidate, segment, stringToWordSpans) { if (every2(segment.totalTextChunk.text, (ch) => ch !== 32 && ch !== 42)) { const match = matchTextChunk(candidate, segment.totalTextChunk, stringToWordSpans); if (match) return match; } const subWordTextChunks = segment.subWordTextChunks; let bestMatch; for (const subWordTextChunk of subWordTextChunks) { bestMatch = betterMatch(bestMatch, matchTextChunk(candidate, subWordTextChunk, stringToWordSpans)); } return bestMatch; } function betterMatch(a, b) { return min([a, b], compareMatches); } function compareMatches(a, b) { return a === undefined ? 1 : b === undefined ? -1 : compareValues(a.kind, b.kind) || compareBooleans(!a.isCaseSensitive, !b.isCaseSensitive); } function partStartsWith(candidate, candidateSpan, pattern, ignoreCase, patternSpan = { start: 0, length: pattern.length }) { return patternSpan.length <= candidateSpan.length && everyInRange(0, patternSpan.length, (i) => equalChars(pattern.charCodeAt(patternSpan.start + i), candidate.charCodeAt(candidateSpan.start + i), ignoreCase)); } function equalChars(ch1, ch2, ignoreCase) { return ignoreCase ? toLowerCase2(ch1) === toLowerCase2(ch2) : ch1 === ch2; } function tryCamelCaseMatch(candidate, candidateParts, chunk, ignoreCase) { const chunkCharacterSpans = chunk.characterSpans; let currentCandidate = 0; let currentChunkSpan = 0; let firstMatch; let contiguous; while (true) { if (currentChunkSpan === chunkCharacterSpans.length) { return true; } else if (currentCandidate === candidateParts.length) { return false; } let candidatePart = candidateParts[currentCandidate]; let gotOneMatchThisCandidate = false; for (;currentChunkSpan < chunkCharacterSpans.length; currentChunkSpan++) { const chunkCharacterSpan = chunkCharacterSpans[currentChunkSpan]; if (gotOneMatchThisCandidate) { if (!isUpperCaseLetter(chunk.text.charCodeAt(chunkCharacterSpans[currentChunkSpan - 1].start)) || !isUpperCaseLetter(chunk.text.charCodeAt(chunkCharacterSpans[currentChunkSpan].start))) { break; } } if (!partStartsWith(candidate, candidatePart, chunk.text, ignoreCase, chunkCharacterSpan)) { break; } gotOneMatchThisCandidate = true; firstMatch = firstMatch === undefined ? currentCandidate : firstMatch; contiguous = contiguous === undefined ? true : contiguous; candidatePart = createTextSpan(candidatePart.start + chunkCharacterSpan.length, candidatePart.length - chunkCharacterSpan.length); } if (!gotOneMatchThisCandidate && contiguous !== undefined) { contiguous = false; } currentCandidate++; } } function createSegment(text) { return { totalTextChunk: createTextChunk(text), subWordTextChunks: breakPatternIntoTextChunks(text) }; } function isUpperCaseLetter(ch) { if (ch >= 65 && ch <= 90) { return true; } if (ch < 127 || !isUnicodeIdentifierStart(ch, 99)) { return false; } const str = String.fromCharCode(ch); return str === str.toUpperCase(); } function isLowerCaseLetter(ch) { if (ch >= 97 && ch <= 122) { return true; } if (ch < 127 || !isUnicodeIdentifierStart(ch, 99)) { return false; } const str = String.fromCharCode(ch); return str === str.toLowerCase(); } function indexOfIgnoringCase(str, value) { const n = str.length - value.length; for (let start = 0;start <= n; start++) { if (every2(value, (valueChar, i) => toLowerCase2(str.charCodeAt(i + start)) === valueChar)) { return start; } } return -1; } function toLowerCase2(ch) { if (ch >= 65 && ch <= 90) { return 97 + (ch - 65); } if (ch < 127) { return ch; } return String.fromCharCode(ch).toLowerCase().charCodeAt(0); } function isDigit2(ch) { return ch >= 48 && ch <= 57; } function isWordChar(ch) { return isUpperCaseLetter(ch) || isLowerCaseLetter(ch) || isDigit2(ch) || ch === 95 || ch === 36; } function breakPatternIntoTextChunks(pattern) { const result = []; let wordStart = 0; let wordLength = 0; for (let i = 0;i < pattern.length; i++) { const ch = pattern.charCodeAt(i); if (isWordChar(ch)) { if (wordLength === 0) { wordStart = i; } wordLength++; } else { if (wordLength > 0) { result.push(createTextChunk(pattern.substr(wordStart, wordLength))); wordLength = 0; } } } if (wordLength > 0) { result.push(createTextChunk(pattern.substr(wordStart, wordLength))); } return result; } function createTextChunk(text) { const textLowerCase = text.toLowerCase(); return { text, textLowerCase, isLowerCase: text === textLowerCase, characterSpans: breakIntoCharacterSpans(text) }; } function breakIntoCharacterSpans(identifier) { return breakIntoSpans(identifier, false); } function breakIntoWordSpans(identifier) { return breakIntoSpans(identifier, true); } function breakIntoSpans(identifier, word) { const result = []; let wordStart = 0; for (let i = 1;i < identifier.length; i++) { const lastIsDigit = isDigit2(identifier.charCodeAt(i - 1)); const currentIsDigit = isDigit2(identifier.charCodeAt(i)); const hasTransitionFromLowerToUpper = transitionFromLowerToUpper(identifier, word, i); const hasTransitionFromUpperToLower = word && transitionFromUpperToLower(identifier, i, wordStart); if (charIsPunctuation(identifier.charCodeAt(i - 1)) || charIsPunctuation(identifier.charCodeAt(i)) || lastIsDigit !== currentIsDigit || hasTransitionFromLowerToUpper || hasTransitionFromUpperToLower) { if (!isAllPunctuation(identifier, wordStart, i)) { result.push(createTextSpan(wordStart, i - wordStart)); } wordStart = i; } } if (!isAllPunctuation(identifier, wordStart, identifier.length)) { result.push(createTextSpan(wordStart, identifier.length - wordStart)); } return result; } function charIsPunctuation(ch) { switch (ch) { case 33: case 34: case 35: case 37: case 38: case 39: case 40: case 41: case 42: case 44: case 45: case 46: case 47: case 58: case 59: case 63: case 64: case 91: case 92: case 93: case 95: case 123: case 125: return true; } return false; } function isAllPunctuation(identifier, start, end) { return every2(identifier, (ch) => charIsPunctuation(ch) && ch !== 95, start, end); } function transitionFromUpperToLower(identifier, index, wordStart) { return index !== wordStart && index + 1 < identifier.length && isUpperCaseLetter(identifier.charCodeAt(index)) && isLowerCaseLetter(identifier.charCodeAt(index + 1)) && every2(identifier, isUpperCaseLetter, wordStart, index); } function transitionFromLowerToUpper(identifier, word, index) { const lastIsUpper = isUpperCaseLetter(identifier.charCodeAt(index - 1)); const currentIsUpper = isUpperCaseLetter(identifier.charCodeAt(index)); return currentIsUpper && (!word || !lastIsUpper); } function everyInRange(start, end, pred) { for (let i = start;i < end; i++) { if (!pred(i)) { return false; } } return true; } function every2(s, pred, start = 0, end = s.length) { return everyInRange(start, end, (i) => pred(s.charCodeAt(i), i)); } function preProcessFile(sourceText, readImportFiles = true, detectJavaScriptImports = false) { const pragmaContext = { languageVersion: 12, pragmas: undefined, checkJsDirective: undefined, referencedFiles: [], typeReferenceDirectives: [], libReferenceDirectives: [], amdDependencies: [], moduleName: undefined }; const importedFiles = []; let ambientExternalModules; let lastToken; let currentToken; let braceNesting = 0; let externalModule = false; function nextToken() { lastToken = currentToken; currentToken = scanner.scan(); if (currentToken === 19) { braceNesting++; } else if (currentToken === 20) { braceNesting--; } return currentToken; } function getFileReference() { const fileName = scanner.getTokenValue(); const pos = scanner.getTokenStart(); return { fileName, pos, end: pos + fileName.length }; } function recordAmbientExternalModule() { if (!ambientExternalModules) { ambientExternalModules = []; } ambientExternalModules.push({ ref: getFileReference(), depth: braceNesting }); } function recordModuleName() { importedFiles.push(getFileReference()); markAsExternalModuleIfTopLevel(); } function markAsExternalModuleIfTopLevel() { if (braceNesting === 0) { externalModule = true; } } function tryConsumeDeclare() { let token = scanner.getToken(); if (token === 138) { token = nextToken(); if (token === 144) { token = nextToken(); if (token === 11) { recordAmbientExternalModule(); } } return true; } return false; } function tryConsumeImport() { if (lastToken === 25) { return false; } let token = scanner.getToken(); if (token === 102) { token = nextToken(); if (token === 21) { token = nextToken(); if (token === 11 || token === 15) { recordModuleName(); return true; } } else if (token === 11) { recordModuleName(); return true; } else { if (token === 156) { const skipTypeKeyword = scanner.lookAhead(() => { const token2 = scanner.scan(); return token2 !== 161 && (token2 === 42 || token2 === 19 || token2 === 80 || isKeyword(token2)); }); if (skipTypeKeyword) { token = nextToken(); } } if (token === 80 || isKeyword(token)) { token = nextToken(); if (token === 161) { token = nextToken(); if (token === 11) { recordModuleName(); return true; } } else if (token === 64) { if (tryConsumeRequireCall(true)) { return true; } } else if (token === 28) { token = nextToken(); } else { return true; } } if (token === 19) { token = nextToken(); while (token !== 20 && token !== 1) { token = nextToken(); } if (token === 20) { token = nextToken(); if (token === 161) { token = nextToken(); if (token === 11) { recordModuleName(); } } } } else if (token === 42) { token = nextToken(); if (token === 130) { token = nextToken(); if (token === 80 || isKeyword(token)) { token = nextToken(); if (token === 161) { token = nextToken(); if (token === 11) { recordModuleName(); } } } } } } return true; } return false; } function tryConsumeExport() { let token = scanner.getToken(); if (token === 95) { markAsExternalModuleIfTopLevel(); token = nextToken(); if (token === 156) { const skipTypeKeyword = scanner.lookAhead(() => { const token2 = scanner.scan(); return token2 === 42 || token2 === 19; }); if (skipTypeKeyword) { token = nextToken(); } } if (token === 19) { token = nextToken(); while (token !== 20 && token !== 1) { token = nextToken(); } if (token === 20) { token = nextToken(); if (token === 161) { token = nextToken(); if (token === 11) { recordModuleName(); } } } } else if (token === 42) { token = nextToken(); if (token === 161) { token = nextToken(); if (token === 11) { recordModuleName(); } } } else if (token === 102) { token = nextToken(); if (token === 156) { const skipTypeKeyword = scanner.lookAhead(() => { const token2 = scanner.scan(); return token2 === 80 || isKeyword(token2); }); if (skipTypeKeyword) { token = nextToken(); } } if (token === 80 || isKeyword(token)) { token = nextToken(); if (token === 64) { if (tryConsumeRequireCall(true)) { return true; } } } } return true; } return false; } function tryConsumeRequireCall(skipCurrentToken, allowTemplateLiterals = false) { let token = skipCurrentToken ? nextToken() : scanner.getToken(); if (token === 149) { token = nextToken(); if (token === 21) { token = nextToken(); if (token === 11 || allowTemplateLiterals && token === 15) { recordModuleName(); } } return true; } return false; } function tryConsumeDefine() { let token = scanner.getToken(); if (token === 80 && scanner.getTokenValue() === "define") { token = nextToken(); if (token !== 21) { return true; } token = nextToken(); if (token === 11 || token === 15) { token = nextToken(); if (token === 28) { token = nextToken(); } else { return true; } } if (token !== 23) { return true; } token = nextToken(); while (token !== 24 && token !== 1) { if (token === 11 || token === 15) { recordModuleName(); } token = nextToken(); } return true; } return false; } function processImports() { scanner.setText(sourceText); nextToken(); while (true) { if (scanner.getToken() === 1) { break; } if (scanner.getToken() === 16) { const stack = [scanner.getToken()]; loop: while (length(stack)) { const token = scanner.scan(); switch (token) { case 1: break loop; case 102: tryConsumeImport(); break; case 16: stack.push(token); break; case 19: if (length(stack)) { stack.push(token); } break; case 20: if (length(stack)) { if (lastOrUndefined(stack) === 16) { if (scanner.reScanTemplateToken(false) === 18) { stack.pop(); } } else { stack.pop(); } } break; } } nextToken(); } if (tryConsumeDeclare() || tryConsumeImport() || tryConsumeExport() || detectJavaScriptImports && (tryConsumeRequireCall(false, true) || tryConsumeDefine())) { continue; } else { nextToken(); } } scanner.setText(undefined); } if (readImportFiles) { processImports(); } processCommentPragmas(pragmaContext, sourceText); processPragmasIntoFields(pragmaContext, noop); if (externalModule) { if (ambientExternalModules) { for (const decl of ambientExternalModules) { importedFiles.push(decl.ref); } } return { referencedFiles: pragmaContext.referencedFiles, typeReferenceDirectives: pragmaContext.typeReferenceDirectives, libReferenceDirectives: pragmaContext.libReferenceDirectives, importedFiles, isLibFile: false, ambientExternalModules: undefined }; } else { let ambientModuleNames; if (ambientExternalModules) { for (const decl of ambientExternalModules) { if (decl.depth === 0) { if (!ambientModuleNames) { ambientModuleNames = []; } ambientModuleNames.push(decl.ref.fileName); } else { importedFiles.push(decl.ref); } } } return { referencedFiles: pragmaContext.referencedFiles, typeReferenceDirectives: pragmaContext.typeReferenceDirectives, libReferenceDirectives: pragmaContext.libReferenceDirectives, importedFiles, isLibFile: false, ambientExternalModules: ambientModuleNames }; } } var base64UrlRegExp = /^data:(?:application\/json;charset=[uU][tT][fF]-8;base64,([A-Za-z0-9+/=]+)$)?/; function getSourceMapper(host) { const getCanonicalFileName = createGetCanonicalFileName(host.useCaseSensitiveFileNames()); const currentDirectory = host.getCurrentDirectory(); const sourceFileLike = /* @__PURE__ */ new Map; const documentPositionMappers = /* @__PURE__ */ new Map; return { tryGetSourcePosition, tryGetGeneratedPosition, toLineColumnOffset, clearCache, documentPositionMappers }; function toPath3(fileName) { return toPath(fileName, currentDirectory, getCanonicalFileName); } function getDocumentPositionMapper2(generatedFileName, sourceFileName) { const path = toPath3(generatedFileName); const value = documentPositionMappers.get(path); if (value) return value; let mapper; if (host.getDocumentPositionMapper) { mapper = host.getDocumentPositionMapper(generatedFileName, sourceFileName); } else if (host.readFile) { const file = getSourceFileLike(generatedFileName); mapper = file && getDocumentPositionMapper({ getSourceFileLike, getCanonicalFileName, log: (s) => host.log(s) }, generatedFileName, getLineInfo(file.text, getLineStarts(file)), (f) => !host.fileExists || host.fileExists(f) ? host.readFile(f) : undefined); } documentPositionMappers.set(path, mapper || identitySourceMapConsumer); return mapper || identitySourceMapConsumer; } function tryGetSourcePosition(info) { if (!isDeclarationFileName(info.fileName)) return; const file = getSourceFile(info.fileName); if (!file) return; const newLoc = getDocumentPositionMapper2(info.fileName).getSourcePosition(info); return !newLoc || newLoc === info ? undefined : tryGetSourcePosition(newLoc) || newLoc; } function tryGetGeneratedPosition(info) { if (isDeclarationFileName(info.fileName)) return; const sourceFile = getSourceFile(info.fileName); if (!sourceFile) return; const program = host.getProgram(); if (program.isSourceOfProjectReferenceRedirect(sourceFile.fileName)) { return; } const options = program.getCompilerOptions(); const outPath = options.outFile; const declarationPath = outPath ? removeFileExtension(outPath) + ".d.ts" : getDeclarationEmitOutputFilePathWorker(info.fileName, program.getCompilerOptions(), program); if (declarationPath === undefined) return; const newLoc = getDocumentPositionMapper2(declarationPath, info.fileName).getGeneratedPosition(info); return newLoc === info ? undefined : newLoc; } function getSourceFile(fileName) { const program = host.getProgram(); if (!program) return; const path = toPath3(fileName); const file = program.getSourceFileByPath(path); return file && file.resolvedPath === path ? file : undefined; } function getOrCreateSourceFileLike(fileName) { const path = toPath3(fileName); const fileFromCache = sourceFileLike.get(path); if (fileFromCache !== undefined) return fileFromCache ? fileFromCache : undefined; if (!host.readFile || host.fileExists && !host.fileExists(fileName)) { sourceFileLike.set(path, false); return; } const text = host.readFile(fileName); const file = text ? createSourceFileLike(text) : false; sourceFileLike.set(path, file); return file ? file : undefined; } function getSourceFileLike(fileName) { return !host.getSourceFileLike ? getSourceFile(fileName) || getOrCreateSourceFileLike(fileName) : host.getSourceFileLike(fileName); } function toLineColumnOffset(fileName, position) { const file = getSourceFileLike(fileName); return file.getLineAndCharacterOfPosition(position); } function clearCache() { sourceFileLike.clear(); documentPositionMappers.clear(); } } function getDocumentPositionMapper(host, generatedFileName, generatedFileLineInfo, readMapFile) { let mapFileName = tryGetSourceMappingURL(generatedFileLineInfo); if (mapFileName) { const match = base64UrlRegExp.exec(mapFileName); if (match) { if (match[1]) { const base64Object = match[1]; return convertDocumentToSourceMapper(host, base64decode(sys, base64Object), generatedFileName); } mapFileName = undefined; } } const possibleMapLocations = []; if (mapFileName) { possibleMapLocations.push(mapFileName); } possibleMapLocations.push(generatedFileName + ".map"); const originalMapFileName = mapFileName && getNormalizedAbsolutePath(mapFileName, getDirectoryPath(generatedFileName)); for (const location of possibleMapLocations) { const mapFileName2 = getNormalizedAbsolutePath(location, getDirectoryPath(generatedFileName)); const mapFileContents = readMapFile(mapFileName2, originalMapFileName); if (isString(mapFileContents)) { return convertDocumentToSourceMapper(host, mapFileContents, mapFileName2); } if (mapFileContents !== undefined) { return mapFileContents || undefined; } } return; } function convertDocumentToSourceMapper(host, contents, mapFileName) { const map2 = tryParseRawSourceMap(contents); if (!map2 || !map2.sources || !map2.file || !map2.mappings) { return; } if (map2.sourcesContent && map2.sourcesContent.some(isString)) return; return createDocumentPositionMapper(host, map2, mapFileName); } function createSourceFileLike(text, lineMap) { return { text, lineMap, getLineAndCharacterOfPosition(pos) { return computeLineAndCharacterOfPosition(getLineStarts(this), pos); } }; } var visitedNestedConvertibleFunctions = /* @__PURE__ */ new Map; function computeSuggestionDiagnostics(sourceFile, program, cancellationToken) { var _a; program.getSemanticDiagnostics(sourceFile, cancellationToken); const diags = []; const checker = program.getTypeChecker(); const isCommonJSFile = program.getImpliedNodeFormatForEmit(sourceFile) === 1 || fileExtensionIsOneOf(sourceFile.fileName, [".cts", ".cjs"]); if (!isCommonJSFile && sourceFile.commonJsModuleIndicator && (programContainsEsModules(program) || compilerOptionsIndicateEsModules(program.getCompilerOptions())) && containsTopLevelCommonjs(sourceFile)) { diags.push(createDiagnosticForNode(getErrorNodeFromCommonJsIndicator(sourceFile.commonJsModuleIndicator), Diagnostics.File_is_a_CommonJS_module_it_may_be_converted_to_an_ES_module)); } const isJsFile = isSourceFileJS(sourceFile); visitedNestedConvertibleFunctions.clear(); check(sourceFile); if (getAllowSyntheticDefaultImports(program.getCompilerOptions())) { for (const moduleSpecifier of sourceFile.imports) { const importNode = importFromModuleSpecifier(moduleSpecifier); if (isImportEqualsDeclaration(importNode) && hasSyntacticModifier(importNode, 32)) continue; const name = importNameForConvertToDefaultImport(importNode); if (!name) continue; const module22 = (_a = program.getResolvedModuleFromModuleSpecifier(moduleSpecifier, sourceFile)) == null ? undefined : _a.resolvedModule; const resolvedFile = module22 && program.getSourceFile(module22.resolvedFileName); if (resolvedFile && resolvedFile.externalModuleIndicator && resolvedFile.externalModuleIndicator !== true && isExportAssignment(resolvedFile.externalModuleIndicator) && resolvedFile.externalModuleIndicator.isExportEquals) { diags.push(createDiagnosticForNode(name, Diagnostics.Import_may_be_converted_to_a_default_import)); } } } addRange(diags, sourceFile.bindSuggestionDiagnostics); addRange(diags, program.getSuggestionDiagnostics(sourceFile, cancellationToken)); diags.sort((d1, d2) => d1.start - d2.start); return diags; function check(node) { if (isJsFile) { if (canBeConvertedToClass(node, checker)) { diags.push(createDiagnosticForNode(isVariableDeclaration(node.parent) ? node.parent.name : node, Diagnostics.This_constructor_function_may_be_converted_to_a_class_declaration)); } } else { if (isVariableStatement(node) && node.parent === sourceFile && node.declarationList.flags & 2 && node.declarationList.declarations.length === 1) { const init = node.declarationList.declarations[0].initializer; if (init && isRequireCall(init, true)) { diags.push(createDiagnosticForNode(init, Diagnostics.require_call_may_be_converted_to_an_import)); } } const jsdocTypedefNodes = ts_codefix_exports.getJSDocTypedefNodes(node); for (const jsdocTypedefNode of jsdocTypedefNodes) { diags.push(createDiagnosticForNode(jsdocTypedefNode, Diagnostics.JSDoc_typedef_may_be_converted_to_TypeScript_type)); } if (ts_codefix_exports.parameterShouldGetTypeFromJSDoc(node)) { diags.push(createDiagnosticForNode(node.name || node, Diagnostics.JSDoc_types_may_be_moved_to_TypeScript_types)); } } if (canBeConvertedToAsync(node)) { addConvertToAsyncFunctionDiagnostics(node, checker, diags); } node.forEachChild(check); } } function containsTopLevelCommonjs(sourceFile) { return sourceFile.statements.some((statement) => { switch (statement.kind) { case 244: return statement.declarationList.declarations.some((decl) => !!decl.initializer && isRequireCall(propertyAccessLeftHandSide(decl.initializer), true)); case 245: { const { expression } = statement; if (!isBinaryExpression(expression)) return isRequireCall(expression, true); const kind = getAssignmentDeclarationKind(expression); return kind === 1 || kind === 2; } default: return false; } }); } function propertyAccessLeftHandSide(node) { return isPropertyAccessExpression(node) ? propertyAccessLeftHandSide(node.expression) : node; } function importNameForConvertToDefaultImport(node) { switch (node.kind) { case 273: const { importClause, moduleSpecifier } = node; return importClause && !importClause.name && importClause.namedBindings && importClause.namedBindings.kind === 275 && isStringLiteral(moduleSpecifier) ? importClause.namedBindings.name : undefined; case 272: return node.name; default: return; } } function addConvertToAsyncFunctionDiagnostics(node, checker, diags) { if (isConvertibleFunction(node, checker) && !visitedNestedConvertibleFunctions.has(getKeyFromNode(node))) { diags.push(createDiagnosticForNode(!node.name && isVariableDeclaration(node.parent) && isIdentifier(node.parent.name) ? node.parent.name : node, Diagnostics.This_may_be_converted_to_an_async_function)); } } function isConvertibleFunction(node, checker) { return !isAsyncFunction(node) && node.body && isBlock(node.body) && hasReturnStatementWithPromiseHandler(node.body, checker) && returnsPromise(node, checker); } function returnsPromise(node, checker) { const signature = checker.getSignatureFromDeclaration(node); const returnType = signature ? checker.getReturnTypeOfSignature(signature) : undefined; return !!returnType && !!checker.getPromisedTypeOfPromise(returnType); } function getErrorNodeFromCommonJsIndicator(commonJsModuleIndicator) { return isBinaryExpression(commonJsModuleIndicator) ? commonJsModuleIndicator.left : commonJsModuleIndicator; } function hasReturnStatementWithPromiseHandler(body, checker) { return !!forEachReturnStatement(body, (statement) => isReturnStatementWithFixablePromiseHandler(statement, checker)); } function isReturnStatementWithFixablePromiseHandler(node, checker) { return isReturnStatement(node) && !!node.expression && isFixablePromiseHandler(node.expression, checker); } function isFixablePromiseHandler(node, checker) { if (!isPromiseHandler(node) || !hasSupportedNumberOfArguments(node) || !node.arguments.every((arg) => isFixablePromiseArgument(arg, checker))) { return false; } let currentNode = node.expression.expression; while (isPromiseHandler(currentNode) || isPropertyAccessExpression(currentNode)) { if (isCallExpression(currentNode)) { if (!hasSupportedNumberOfArguments(currentNode) || !currentNode.arguments.every((arg) => isFixablePromiseArgument(arg, checker))) { return false; } currentNode = currentNode.expression.expression; } else { currentNode = currentNode.expression; } } return true; } function isPromiseHandler(node) { return isCallExpression(node) && (hasPropertyAccessExpressionWithName(node, "then") || hasPropertyAccessExpressionWithName(node, "catch") || hasPropertyAccessExpressionWithName(node, "finally")); } function hasSupportedNumberOfArguments(node) { const name = node.expression.name.text; const maxArguments = name === "then" ? 2 : name === "catch" ? 1 : name === "finally" ? 1 : 0; if (node.arguments.length > maxArguments) return false; if (node.arguments.length < maxArguments) return true; return maxArguments === 1 || some(node.arguments, (arg) => { return arg.kind === 106 || isIdentifier(arg) && arg.text === "undefined"; }); } function isFixablePromiseArgument(arg, checker) { switch (arg.kind) { case 263: case 219: const functionFlags = getFunctionFlags(arg); if (functionFlags & 1) { return false; } case 220: visitedNestedConvertibleFunctions.set(getKeyFromNode(arg), true); case 106: return true; case 80: case 212: { const symbol = checker.getSymbolAtLocation(arg); if (!symbol) { return false; } return checker.isUndefinedSymbol(symbol) || some(skipAlias(symbol, checker).declarations, (d) => isFunctionLike(d) || hasInitializer(d) && !!d.initializer && isFunctionLike(d.initializer)); } default: return false; } } function getKeyFromNode(exp) { return `${exp.pos.toString()}:${exp.end.toString()}`; } function canBeConvertedToClass(node, checker) { var _a, _b, _c, _d; if (isFunctionExpression(node)) { if (isVariableDeclaration(node.parent) && ((_a = node.symbol.members) == null ? undefined : _a.size)) { return true; } const symbol = checker.getSymbolOfExpando(node, false); return !!(symbol && (((_b = symbol.exports) == null ? undefined : _b.size) || ((_c = symbol.members) == null ? undefined : _c.size))); } if (isFunctionDeclaration(node)) { return !!((_d = node.symbol.members) == null ? undefined : _d.size); } return false; } function canBeConvertedToAsync(node) { switch (node.kind) { case 263: case 175: case 219: case 220: return true; default: return false; } } var optionsRedundantWithVerbatimModuleSyntax = /* @__PURE__ */ new Set([ "isolatedModules" ]); function transpileModule(input, transpileOptions) { return transpileWorker(input, transpileOptions, false); } function transpileDeclaration(input, transpileOptions) { return transpileWorker(input, transpileOptions, true); } var barebonesLibContent = `interface Boolean {} interface Function {} interface CallableFunction {} interface NewableFunction {} interface IArguments {} interface Number {} interface Object {} interface RegExp {} interface String {} interface Array { length: number; [n: number]: T; } interface SymbolConstructor { (desc?: string | number): symbol; for(name: string): symbol; readonly toStringTag: symbol; } declare var Symbol: SymbolConstructor; interface Symbol { readonly [Symbol.toStringTag]: string; }`; var barebonesLibName = "lib.d.ts"; var barebonesLibSourceFile; function transpileWorker(input, transpileOptions, declaration) { barebonesLibSourceFile ?? (barebonesLibSourceFile = createSourceFile(barebonesLibName, barebonesLibContent, { languageVersion: 99 })); const diagnostics = []; const options = transpileOptions.compilerOptions ? fixupCompilerOptions(transpileOptions.compilerOptions, diagnostics) : {}; const defaultOptions = getDefaultCompilerOptions2(); for (const key in defaultOptions) { if (hasProperty(defaultOptions, key) && options[key] === undefined) { options[key] = defaultOptions[key]; } } for (const option of transpileOptionValueCompilerOptions) { if (options.verbatimModuleSyntax && optionsRedundantWithVerbatimModuleSyntax.has(option.name)) { continue; } options[option.name] = option.transpileOptionValue; } options.suppressOutputPathCheck = true; options.allowNonTsExtensions = true; if (declaration) { options.declaration = true; options.emitDeclarationOnly = true; options.isolatedDeclarations = true; } else { options.declaration = false; options.declarationMap = false; } options.noLib = !declaration; const newLine = getNewLineCharacter(options); const compilerHost = { getSourceFile: (fileName) => fileName === normalizePath(inputFileName) ? sourceFile : fileName === normalizePath(barebonesLibName) ? barebonesLibSourceFile : undefined, writeFile: (name, text) => { if (fileExtensionIs(name, ".map")) { Debug.assertEqual(sourceMapText, undefined, "Unexpected multiple source map outputs, file:", name); sourceMapText = text; } else { Debug.assertEqual(outputText, undefined, "Unexpected multiple outputs, file:", name); outputText = text; } }, getDefaultLibFileName: () => barebonesLibName, useCaseSensitiveFileNames: () => false, getCanonicalFileName: (fileName) => fileName, getCurrentDirectory: () => "", getNewLine: () => newLine, fileExists: (fileName) => fileName === inputFileName || !!declaration && fileName === barebonesLibName, readFile: () => "", directoryExists: () => true, getDirectories: () => [] }; const inputFileName = transpileOptions.fileName || (transpileOptions.compilerOptions && transpileOptions.compilerOptions.jsx ? "module.tsx" : "module.ts"); const sourceFile = createSourceFile(inputFileName, input, { languageVersion: getEmitScriptTarget(options), impliedNodeFormat: getImpliedNodeFormatForFile(toPath(inputFileName, "", compilerHost.getCanonicalFileName), undefined, compilerHost, options), setExternalModuleIndicator: getSetExternalModuleIndicator(options), jsDocParsingMode: transpileOptions.jsDocParsingMode ?? 0 }); if (transpileOptions.moduleName) { sourceFile.moduleName = transpileOptions.moduleName; } if (transpileOptions.renamedDependencies) { sourceFile.renamedDependencies = new Map(Object.entries(transpileOptions.renamedDependencies)); } let outputText; let sourceMapText; const program = createProgram([inputFileName], options, compilerHost); if (transpileOptions.reportDiagnostics) { addRange(diagnostics, program.getSyntacticDiagnostics(sourceFile)); addRange(diagnostics, program.getOptionsDiagnostics()); } const result = program.emit(undefined, undefined, undefined, declaration, transpileOptions.transformers, declaration); addRange(diagnostics, result.diagnostics); if (outputText === undefined) return Debug.fail("Output generation failed"); return { outputText, diagnostics, sourceMapText }; } function transpile(input, compilerOptions, fileName, diagnostics, moduleName) { const output = transpileModule(input, { compilerOptions, fileName, reportDiagnostics: !!diagnostics, moduleName }); addRange(diagnostics, output.diagnostics); return output.outputText; } var commandLineOptionsStringToEnum; function fixupCompilerOptions(options, diagnostics) { commandLineOptionsStringToEnum = commandLineOptionsStringToEnum || filter(optionDeclarations, (o) => typeof o.type === "object" && !forEachEntry(o.type, (v) => typeof v !== "number")); options = cloneCompilerOptions(options); for (const opt of commandLineOptionsStringToEnum) { if (!hasProperty(options, opt.name)) { continue; } const value = options[opt.name]; if (isString(value)) { options[opt.name] = parseCustomTypeOption(opt, value, diagnostics); } else { if (!forEachEntry(opt.type, (v) => v === value)) { diagnostics.push(createCompilerDiagnosticForInvalidCustomType(opt)); } } } return options; } var ts_NavigateTo_exports = {}; __export2(ts_NavigateTo_exports, { getNavigateToItems: () => getNavigateToItems }); function getNavigateToItems(sourceFiles, checker, cancellationToken, searchValue, maxResultCount, excludeDtsFiles, excludeLibFiles, program) { const patternMatcher = createPatternMatcher(searchValue); if (!patternMatcher) return emptyArray; const rawItems = []; const singleCurrentFile = sourceFiles.length === 1 ? sourceFiles[0] : undefined; for (const sourceFile of sourceFiles) { cancellationToken.throwIfCancellationRequested(); if (excludeDtsFiles && sourceFile.isDeclarationFile) { continue; } if (shouldExcludeFile(sourceFile, !!excludeLibFiles, singleCurrentFile, program)) { continue; } sourceFile.getNamedDeclarations().forEach((declarations, name) => { getItemsFromNamedDeclaration(patternMatcher, name, declarations, checker, sourceFile.fileName, !!excludeLibFiles, singleCurrentFile, rawItems, program); }); } rawItems.sort(compareNavigateToItems); return (maxResultCount === undefined ? rawItems : rawItems.slice(0, maxResultCount)).map(createNavigateToItem); } function shouldExcludeFile(file, excludeLibFiles, singleCurrentFile, program) { return file !== singleCurrentFile && excludeLibFiles && (isInsideNodeModules(file.path) || program.isSourceFileDefaultLibrary(file)); } function getItemsFromNamedDeclaration(patternMatcher, name, declarations, checker, fileName, excludeLibFiles, singleCurrentFile, rawItems, program) { const match = patternMatcher.getMatchForLastSegmentOfPattern(name); if (!match) { return; } for (const declaration of declarations) { if (!shouldKeepItem(declaration, checker, excludeLibFiles, singleCurrentFile, program)) continue; if (patternMatcher.patternContainsDots) { const fullMatch = patternMatcher.getFullMatch(getContainers(declaration), name); if (fullMatch) { rawItems.push({ name, fileName, matchKind: fullMatch.kind, isCaseSensitive: fullMatch.isCaseSensitive, declaration }); } } else { rawItems.push({ name, fileName, matchKind: match.kind, isCaseSensitive: match.isCaseSensitive, declaration }); } } } function shouldKeepItem(declaration, checker, excludeLibFiles, singleCurrentFile, program) { var _a; switch (declaration.kind) { case 274: case 277: case 272: const importer = checker.getSymbolAtLocation(declaration.name); const imported = checker.getAliasedSymbol(importer); return importer.escapedName !== imported.escapedName && !((_a = imported.declarations) == null ? undefined : _a.every((d) => shouldExcludeFile(d.getSourceFile(), excludeLibFiles, singleCurrentFile, program))); default: return true; } } function tryAddSingleDeclarationName(declaration, containers) { const name = getNameOfDeclaration(declaration); return !!name && (pushLiteral(name, containers) || name.kind === 168 && tryAddComputedPropertyName(name.expression, containers)); } function tryAddComputedPropertyName(expression, containers) { return pushLiteral(expression, containers) || isPropertyAccessExpression(expression) && (containers.push(expression.name.text), true) && tryAddComputedPropertyName(expression.expression, containers); } function pushLiteral(node, containers) { return isPropertyNameLiteral(node) && (containers.push(getTextOfIdentifierOrLiteral(node)), true); } function getContainers(declaration) { const containers = []; const name = getNameOfDeclaration(declaration); if (name && name.kind === 168 && !tryAddComputedPropertyName(name.expression, containers)) { return emptyArray; } containers.shift(); let container = getContainerNode(declaration); while (container) { if (!tryAddSingleDeclarationName(container, containers)) { return emptyArray; } container = getContainerNode(container); } containers.reverse(); return containers; } function compareNavigateToItems(i1, i2) { return compareValues(i1.matchKind, i2.matchKind) || compareStringsCaseSensitiveUI(i1.name, i2.name); } function createNavigateToItem(rawItem) { const declaration = rawItem.declaration; const container = getContainerNode(declaration); const containerName = container && getNameOfDeclaration(container); return { name: rawItem.name, kind: getNodeKind(declaration), kindModifiers: getNodeModifiers(declaration), matchKind: PatternMatchKind[rawItem.matchKind], isCaseSensitive: rawItem.isCaseSensitive, fileName: rawItem.fileName, textSpan: createTextSpanFromNode(declaration), containerName: containerName ? containerName.text : "", containerKind: containerName ? getNodeKind(container) : "" }; } var ts_NavigationBar_exports = {}; __export2(ts_NavigationBar_exports, { getNavigationBarItems: () => getNavigationBarItems, getNavigationTree: () => getNavigationTree }); var whiteSpaceRegex = /\s+/g; var maxLength = 150; var curCancellationToken; var curSourceFile; var parentsStack = []; var parent; var trackedEs5ClassesStack = []; var trackedEs5Classes; var emptyChildItemArray = []; function getNavigationBarItems(sourceFile, cancellationToken) { curCancellationToken = cancellationToken; curSourceFile = sourceFile; try { return map(primaryNavBarMenuItems(rootNavigationBarNode(sourceFile)), convertToPrimaryNavBarMenuItem); } finally { reset(); } } function getNavigationTree(sourceFile, cancellationToken) { curCancellationToken = cancellationToken; curSourceFile = sourceFile; try { return convertToTree(rootNavigationBarNode(sourceFile)); } finally { reset(); } } function reset() { curSourceFile = undefined; curCancellationToken = undefined; parentsStack = []; parent = undefined; emptyChildItemArray = []; } function nodeText(node) { return cleanText(node.getText(curSourceFile)); } function navigationBarNodeKind(n) { return n.node.kind; } function pushChild(parent2, child) { if (parent2.children) { parent2.children.push(child); } else { parent2.children = [child]; } } function rootNavigationBarNode(sourceFile) { Debug.assert(!parentsStack.length); const root = { node: sourceFile, name: undefined, additionalNodes: undefined, parent: undefined, children: undefined, indent: 0 }; parent = root; for (const statement of sourceFile.statements) { addChildrenRecursively(statement); } endNode(); Debug.assert(!parent && !parentsStack.length); return root; } function addLeafNode(node, name) { pushChild(parent, emptyNavigationBarNode(node, name)); } function emptyNavigationBarNode(node, name) { return { node, name: name || (isDeclaration(node) || isExpression(node) ? getNameOfDeclaration(node) : undefined), additionalNodes: undefined, parent, children: undefined, indent: parent.indent + 1 }; } function addTrackedEs5Class(name) { if (!trackedEs5Classes) { trackedEs5Classes = /* @__PURE__ */ new Map; } trackedEs5Classes.set(name, true); } function endNestedNodes(depth) { for (let i = 0;i < depth; i++) endNode(); } function startNestedNodes(targetNode, entityName) { const names = []; while (!isPropertyNameLiteral(entityName)) { const name = getNameOrArgument(entityName); const nameText = getElementOrPropertyAccessName(entityName); entityName = entityName.expression; if (nameText === "prototype" || isPrivateIdentifier(name)) continue; names.push(name); } names.push(entityName); for (let i = names.length - 1;i > 0; i--) { const name = names[i]; startNode(targetNode, name); } return [names.length - 1, names[0]]; } function startNode(node, name) { const navNode = emptyNavigationBarNode(node, name); pushChild(parent, navNode); parentsStack.push(parent); trackedEs5ClassesStack.push(trackedEs5Classes); trackedEs5Classes = undefined; parent = navNode; } function endNode() { if (parent.children) { mergeChildren(parent.children, parent); sortChildren(parent.children); } parent = parentsStack.pop(); trackedEs5Classes = trackedEs5ClassesStack.pop(); } function addNodeWithRecursiveChild(node, child, name) { startNode(node, name); addChildrenRecursively(child); endNode(); } function addNodeWithRecursiveInitializer(node) { if (node.initializer && isFunctionOrClassExpression(node.initializer)) { startNode(node); forEachChild(node.initializer, addChildrenRecursively); endNode(); } else { addNodeWithRecursiveChild(node, node.initializer); } } function hasNavigationBarName(node) { const name = getNameOfDeclaration(node); if (name === undefined) return false; if (isComputedPropertyName(name)) { const expression = name.expression; return isEntityNameExpression(expression) || isNumericLiteral(expression) || isStringOrNumericLiteralLike(expression); } return !!name; } function addChildrenRecursively(node) { curCancellationToken.throwIfCancellationRequested(); if (!node || isToken(node)) { return; } switch (node.kind) { case 177: const ctr = node; addNodeWithRecursiveChild(ctr, ctr.body); for (const param of ctr.parameters) { if (isParameterPropertyDeclaration(param, ctr)) { addLeafNode(param); } } break; case 175: case 178: case 179: case 174: if (hasNavigationBarName(node)) { addNodeWithRecursiveChild(node, node.body); } break; case 173: if (hasNavigationBarName(node)) { addNodeWithRecursiveInitializer(node); } break; case 172: if (hasNavigationBarName(node)) { addLeafNode(node); } break; case 274: const importClause = node; if (importClause.name) { addLeafNode(importClause.name); } const { namedBindings } = importClause; if (namedBindings) { if (namedBindings.kind === 275) { addLeafNode(namedBindings); } else { for (const element of namedBindings.elements) { addLeafNode(element); } } } break; case 305: addNodeWithRecursiveChild(node, node.name); break; case 306: const { expression } = node; isIdentifier(expression) ? addLeafNode(node, expression) : addLeafNode(node); break; case 209: case 304: case 261: { const child = node; if (isBindingPattern(child.name)) { addChildrenRecursively(child.name); } else { addNodeWithRecursiveInitializer(child); } break; } case 263: const nameNode = node.name; if (nameNode && isIdentifier(nameNode)) { addTrackedEs5Class(nameNode.text); } addNodeWithRecursiveChild(node, node.body); break; case 220: case 219: addNodeWithRecursiveChild(node, node.body); break; case 267: startNode(node); for (const member of node.members) { if (!isComputedProperty(member)) { addLeafNode(member); } } endNode(); break; case 264: case 232: case 265: startNode(node); for (const member of node.members) { addChildrenRecursively(member); } endNode(); break; case 268: addNodeWithRecursiveChild(node, getInteriorModule(node).body); break; case 278: { const expression2 = skipOuterExpressions(node.expression); const child = isObjectLiteralExpression(expression2) || isCallExpression(expression2) || isClassExpression(expression2) ? expression2 : isArrowFunction(expression2) || isFunctionExpression(expression2) ? expression2.body : undefined; if (child) { startNode(node); addChildrenRecursively(child); endNode(); } else { addLeafNode(node); } break; } case 282: case 272: case 182: case 180: case 181: case 266: addLeafNode(node); break; case 214: case 227: { const special = getAssignmentDeclarationKind(node); switch (special) { case 1: case 2: addNodeWithRecursiveChild(node, node.right); return; case 6: case 3: { const binaryExpression = node; const assignmentTarget = binaryExpression.left; const prototypeAccess = special === 3 ? assignmentTarget.expression : assignmentTarget; let depth = 0; let className; if (isIdentifier(prototypeAccess.expression)) { addTrackedEs5Class(prototypeAccess.expression.text); className = prototypeAccess.expression; } else { [depth, className] = startNestedNodes(binaryExpression, prototypeAccess.expression); } if (special === 6) { if (isObjectLiteralExpression(binaryExpression.right)) { if (binaryExpression.right.properties.length > 0) { startNode(binaryExpression, className); forEachChild(binaryExpression.right, addChildrenRecursively); endNode(); } } } else if (isFunctionExpression(binaryExpression.right) || isArrowFunction(binaryExpression.right)) { addNodeWithRecursiveChild(node, binaryExpression.right, className); } else { startNode(binaryExpression, className); addNodeWithRecursiveChild(node, binaryExpression.right, assignmentTarget.name); endNode(); } endNestedNodes(depth); return; } case 7: case 9: { const defineCall = node; const className = special === 7 ? defineCall.arguments[0] : defineCall.arguments[0].expression; const memberName = defineCall.arguments[1]; const [depth, classNameIdentifier] = startNestedNodes(node, className); startNode(node, classNameIdentifier); startNode(node, setTextRange(factory.createIdentifier(memberName.text), memberName)); addChildrenRecursively(node.arguments[2]); endNode(); endNode(); endNestedNodes(depth); return; } case 5: { const binaryExpression = node; const assignmentTarget = binaryExpression.left; const targetFunction = assignmentTarget.expression; if (isIdentifier(targetFunction) && getElementOrPropertyAccessName(assignmentTarget) !== "prototype" && trackedEs5Classes && trackedEs5Classes.has(targetFunction.text)) { if (isFunctionExpression(binaryExpression.right) || isArrowFunction(binaryExpression.right)) { addNodeWithRecursiveChild(node, binaryExpression.right, targetFunction); } else if (isBindableStaticAccessExpression(assignmentTarget)) { startNode(binaryExpression, targetFunction); addNodeWithRecursiveChild(binaryExpression.left, binaryExpression.right, getNameOrArgument(assignmentTarget)); endNode(); } return; } break; } case 4: case 0: case 8: break; default: Debug.assertNever(special); } } default: if (hasJSDocNodes(node)) { forEach(node.jsDoc, (jsDoc) => { forEach(jsDoc.tags, (tag) => { if (isJSDocTypeAlias(tag)) { addLeafNode(tag); } }); }); } forEachChild(node, addChildrenRecursively); } } function mergeChildren(children, node) { const nameToItems = /* @__PURE__ */ new Map; filterMutate(children, (child, index) => { const declName = child.name || getNameOfDeclaration(child.node); const name = declName && nodeText(declName); if (!name) { return true; } const itemsWithSameName = nameToItems.get(name); if (!itemsWithSameName) { nameToItems.set(name, child); return true; } if (itemsWithSameName instanceof Array) { for (const itemWithSameName of itemsWithSameName) { if (tryMerge(itemWithSameName, child, index, node)) { return false; } } itemsWithSameName.push(child); return true; } else { const itemWithSameName = itemsWithSameName; if (tryMerge(itemWithSameName, child, index, node)) { return false; } nameToItems.set(name, [itemWithSameName, child]); return true; } }); } var isEs5ClassMember = { [5]: true, [3]: true, [7]: true, [9]: true, [0]: false, [1]: false, [2]: false, [8]: false, [6]: true, [4]: false }; function tryMergeEs5Class(a, b, bIndex, parent2) { function isPossibleConstructor(node) { return isFunctionExpression(node) || isFunctionDeclaration(node) || isVariableDeclaration(node); } const bAssignmentDeclarationKind = isBinaryExpression(b.node) || isCallExpression(b.node) ? getAssignmentDeclarationKind(b.node) : 0; const aAssignmentDeclarationKind = isBinaryExpression(a.node) || isCallExpression(a.node) ? getAssignmentDeclarationKind(a.node) : 0; if (isEs5ClassMember[bAssignmentDeclarationKind] && isEs5ClassMember[aAssignmentDeclarationKind] || isPossibleConstructor(a.node) && isEs5ClassMember[bAssignmentDeclarationKind] || isPossibleConstructor(b.node) && isEs5ClassMember[aAssignmentDeclarationKind] || isClassDeclaration(a.node) && isSynthesized(a.node) && isEs5ClassMember[bAssignmentDeclarationKind] || isClassDeclaration(b.node) && isEs5ClassMember[aAssignmentDeclarationKind] || isClassDeclaration(a.node) && isSynthesized(a.node) && isPossibleConstructor(b.node) || isClassDeclaration(b.node) && isPossibleConstructor(a.node) && isSynthesized(a.node)) { let lastANode = a.additionalNodes && lastOrUndefined(a.additionalNodes) || a.node; if (!isClassDeclaration(a.node) && !isClassDeclaration(b.node) || isPossibleConstructor(a.node) || isPossibleConstructor(b.node)) { const ctorFunction = isPossibleConstructor(a.node) ? a.node : isPossibleConstructor(b.node) ? b.node : undefined; if (ctorFunction !== undefined) { const ctorNode = setTextRange(factory.createConstructorDeclaration(undefined, [], undefined), ctorFunction); const ctor = emptyNavigationBarNode(ctorNode); ctor.indent = a.indent + 1; ctor.children = a.node === ctorFunction ? a.children : b.children; a.children = a.node === ctorFunction ? concatenate([ctor], b.children || [b]) : concatenate(a.children || [{ ...a }], [ctor]); } else { if (a.children || b.children) { a.children = concatenate(a.children || [{ ...a }], b.children || [b]); if (a.children) { mergeChildren(a.children, a); sortChildren(a.children); } } } lastANode = a.node = setTextRange(factory.createClassDeclaration(undefined, a.name || factory.createIdentifier("__class__"), undefined, undefined, []), a.node); } else { a.children = concatenate(a.children, b.children); if (a.children) { mergeChildren(a.children, a); } } const bNode = b.node; if (parent2.children[bIndex - 1].node.end === lastANode.end) { setTextRange(lastANode, { pos: lastANode.pos, end: bNode.end }); } else { if (!a.additionalNodes) a.additionalNodes = []; a.additionalNodes.push(setTextRange(factory.createClassDeclaration(undefined, a.name || factory.createIdentifier("__class__"), undefined, undefined, []), b.node)); } return true; } return bAssignmentDeclarationKind === 0 ? false : true; } function tryMerge(a, b, bIndex, parent2) { if (tryMergeEs5Class(a, b, bIndex, parent2)) { return true; } if (shouldReallyMerge(a.node, b.node, parent2)) { merge(a, b); return true; } return false; } function shouldReallyMerge(a, b, parent2) { if (a.kind !== b.kind || a.parent !== b.parent && !(isOwnChild(a, parent2) && isOwnChild(b, parent2))) { return false; } switch (a.kind) { case 173: case 175: case 178: case 179: return isStatic(a) === isStatic(b); case 268: return areSameModule(a, b) && getFullyQualifiedModuleName(a) === getFullyQualifiedModuleName(b); default: return true; } } function isSynthesized(node) { return !!(node.flags & 16); } function isOwnChild(n, parent2) { if (n.parent === undefined) return false; const par = isModuleBlock(n.parent) ? n.parent.parent : n.parent; return par === parent2.node || contains(parent2.additionalNodes, par); } function areSameModule(a, b) { if (!a.body || !b.body) { return a.body === b.body; } return a.body.kind === b.body.kind && (a.body.kind !== 268 || areSameModule(a.body, b.body)); } function merge(target, source) { target.additionalNodes = target.additionalNodes || []; target.additionalNodes.push(source.node); if (source.additionalNodes) { target.additionalNodes.push(...source.additionalNodes); } target.children = concatenate(target.children, source.children); if (target.children) { mergeChildren(target.children, target); sortChildren(target.children); } } function sortChildren(children) { children.sort(compareChildren); } function compareChildren(child1, child2) { return compareStringsCaseSensitiveUI(tryGetName(child1.node), tryGetName(child2.node)) || compareValues(navigationBarNodeKind(child1), navigationBarNodeKind(child2)); } function tryGetName(node) { if (node.kind === 268) { return getModuleName(node); } const declName = getNameOfDeclaration(node); if (declName && isPropertyName(declName)) { const propertyName = getPropertyNameForPropertyNameNode(declName); return propertyName && unescapeLeadingUnderscores(propertyName); } switch (node.kind) { case 219: case 220: case 232: return getFunctionOrClassName(node); default: return; } } function getItemName(node, name) { if (node.kind === 268) { return cleanText(getModuleName(node)); } if (name) { const text = isIdentifier(name) ? name.text : isElementAccessExpression(name) ? `[${nodeText(name.argumentExpression)}]` : nodeText(name); if (text.length > 0) { return cleanText(text); } } switch (node.kind) { case 308: const sourceFile = node; return isExternalModule(sourceFile) ? `"${escapeString(getBaseFileName(removeFileExtension(normalizePath(sourceFile.fileName))))}"` : ""; case 278: return isExportAssignment(node) && node.isExportEquals ? "export=" : "default"; case 220: case 263: case 219: case 264: case 232: if (getSyntacticModifierFlags(node) & 2048) { return "default"; } return getFunctionOrClassName(node); case 177: return "constructor"; case 181: return "new()"; case 180: return "()"; case 182: return "[]"; default: return ""; } } function primaryNavBarMenuItems(root) { const primaryNavBarMenuItems2 = []; function recur(item) { if (shouldAppearInPrimaryNavBarMenu(item)) { primaryNavBarMenuItems2.push(item); if (item.children) { for (const child of item.children) { recur(child); } } } } recur(root); return primaryNavBarMenuItems2; function shouldAppearInPrimaryNavBarMenu(item) { if (item.children) { return true; } switch (navigationBarNodeKind(item)) { case 264: case 232: case 267: case 265: case 268: case 308: case 266: case 347: case 339: return true; case 220: case 263: case 219: return isTopLevelFunctionDeclaration(item); default: return false; } function isTopLevelFunctionDeclaration(item2) { if (!item2.node.body) { return false; } switch (navigationBarNodeKind(item2.parent)) { case 269: case 308: case 175: case 177: return true; default: return false; } } } } function convertToTree(n) { return { text: getItemName(n.node, n.name), kind: getNodeKind(n.node), kindModifiers: getModifiers2(n.node), spans: getSpans(n), nameSpan: n.name && getNodeSpan(n.name), childItems: map(n.children, convertToTree) }; } function convertToPrimaryNavBarMenuItem(n) { return { text: getItemName(n.node, n.name), kind: getNodeKind(n.node), kindModifiers: getModifiers2(n.node), spans: getSpans(n), childItems: map(n.children, convertToSecondaryNavBarMenuItem) || emptyChildItemArray, indent: n.indent, bolded: false, grayed: false }; function convertToSecondaryNavBarMenuItem(n2) { return { text: getItemName(n2.node, n2.name), kind: getNodeKind(n2.node), kindModifiers: getNodeModifiers(n2.node), spans: getSpans(n2), childItems: emptyChildItemArray, indent: 0, bolded: false, grayed: false }; } } function getSpans(n) { const spans = [getNodeSpan(n.node)]; if (n.additionalNodes) { for (const node of n.additionalNodes) { spans.push(getNodeSpan(node)); } } return spans; } function getModuleName(moduleDeclaration) { if (isAmbientModule(moduleDeclaration)) { return getTextOfNode(moduleDeclaration.name); } return getFullyQualifiedModuleName(moduleDeclaration); } function getFullyQualifiedModuleName(moduleDeclaration) { const result = [getTextOfIdentifierOrLiteral(moduleDeclaration.name)]; while (moduleDeclaration.body && moduleDeclaration.body.kind === 268) { moduleDeclaration = moduleDeclaration.body; result.push(getTextOfIdentifierOrLiteral(moduleDeclaration.name)); } return result.join("."); } function getInteriorModule(decl) { return decl.body && isModuleDeclaration(decl.body) ? getInteriorModule(decl.body) : decl; } function isComputedProperty(member) { return !member.name || member.name.kind === 168; } function getNodeSpan(node) { return node.kind === 308 ? createTextSpanFromRange(node) : createTextSpanFromNode(node, curSourceFile); } function getModifiers2(node) { if (node.parent && node.parent.kind === 261) { node = node.parent; } return getNodeModifiers(node); } function getFunctionOrClassName(node) { const { parent: parent2 } = node; if (node.name && getFullWidth(node.name) > 0) { return cleanText(declarationNameToString(node.name)); } else if (isVariableDeclaration(parent2)) { return cleanText(declarationNameToString(parent2.name)); } else if (isBinaryExpression(parent2) && parent2.operatorToken.kind === 64) { return nodeText(parent2.left).replace(whiteSpaceRegex, ""); } else if (isPropertyAssignment(parent2)) { return nodeText(parent2.name); } else if (getSyntacticModifierFlags(node) & 2048) { return "default"; } else if (isClassLike(node)) { return ""; } else if (isCallExpression(parent2)) { let name = getCalledExpressionName(parent2.expression); if (name !== undefined) { name = cleanText(name); if (name.length > maxLength) { return `${name} callback`; } const args = cleanText(mapDefined(parent2.arguments, (a) => isStringLiteralLike(a) || isTemplateLiteral(a) ? a.getText(curSourceFile) : undefined).join(", ")); return `${name}(${args}) callback`; } } return ""; } function getCalledExpressionName(expr) { if (isIdentifier(expr)) { return expr.text; } else if (isPropertyAccessExpression(expr)) { const left = getCalledExpressionName(expr.expression); const right = expr.name.text; return left === undefined ? right : `${left}.${right}`; } else { return; } } function isFunctionOrClassExpression(node) { switch (node.kind) { case 220: case 219: case 232: return true; default: return false; } } function cleanText(text) { text = text.length > maxLength ? text.substring(0, maxLength) + "..." : text; return text.replace(/\\?(?:\r?\n|[\r\u2028\u2029])/g, ""); } var ts_refactor_exports = {}; __export2(ts_refactor_exports, { addExportsInOldFile: () => addExportsInOldFile, addImportsForMovedSymbols: () => addImportsForMovedSymbols, addNewFileToTsconfig: () => addNewFileToTsconfig, addOrRemoveBracesToArrowFunction: () => ts_refactor_addOrRemoveBracesToArrowFunction_exports, addTargetFileImports: () => addTargetFileImports, containsJsx: () => containsJsx, convertArrowFunctionOrFunctionExpression: () => ts_refactor_convertArrowFunctionOrFunctionExpression_exports, convertParamsToDestructuredObject: () => ts_refactor_convertParamsToDestructuredObject_exports, convertStringOrTemplateLiteral: () => ts_refactor_convertStringOrTemplateLiteral_exports, convertToOptionalChainExpression: () => ts_refactor_convertToOptionalChainExpression_exports, createNewFileName: () => createNewFileName, doChangeNamedToNamespaceOrDefault: () => doChangeNamedToNamespaceOrDefault, extractSymbol: () => ts_refactor_extractSymbol_exports, generateGetAccessorAndSetAccessor: () => ts_refactor_generateGetAccessorAndSetAccessor_exports, getApplicableRefactors: () => getApplicableRefactors, getEditsForRefactor: () => getEditsForRefactor, getExistingLocals: () => getExistingLocals, getIdentifierForNode: () => getIdentifierForNode, getNewStatementsAndRemoveFromOldFile: () => getNewStatementsAndRemoveFromOldFile, getStatementsToMove: () => getStatementsToMove, getUsageInfo: () => getUsageInfo, inferFunctionReturnType: () => ts_refactor_inferFunctionReturnType_exports, isInImport: () => isInImport, isRefactorErrorInfo: () => isRefactorErrorInfo, refactorKindBeginsWith: () => refactorKindBeginsWith, registerRefactor: () => registerRefactor }); var refactors = /* @__PURE__ */ new Map; function registerRefactor(name, refactor2) { refactors.set(name, refactor2); } function getApplicableRefactors(context, includeInteractiveActions) { return arrayFrom(flatMapIterator(refactors.values(), (refactor2) => { var _a; return context.cancellationToken && context.cancellationToken.isCancellationRequested() || !((_a = refactor2.kinds) == null ? undefined : _a.some((kind) => refactorKindBeginsWith(kind, context.kind))) ? undefined : refactor2.getAvailableActions(context, includeInteractiveActions); })); } function getEditsForRefactor(context, refactorName14, actionName2, interactiveRefactorArguments) { const refactor2 = refactors.get(refactorName14); return refactor2 && refactor2.getEditsForAction(context, actionName2, interactiveRefactorArguments); } var refactorName = "Convert export"; var defaultToNamedAction = { name: "Convert default export to named export", description: getLocaleSpecificMessage(Diagnostics.Convert_default_export_to_named_export), kind: "refactor.rewrite.export.named" }; var namedToDefaultAction = { name: "Convert named export to default export", description: getLocaleSpecificMessage(Diagnostics.Convert_named_export_to_default_export), kind: "refactor.rewrite.export.default" }; registerRefactor(refactorName, { kinds: [ defaultToNamedAction.kind, namedToDefaultAction.kind ], getAvailableActions: function getRefactorActionsToConvertBetweenNamedAndDefaultExports(context) { const info = getInfo2(context, context.triggerReason === "invoked"); if (!info) return emptyArray; if (!isRefactorErrorInfo(info)) { const action = info.wasDefault ? defaultToNamedAction : namedToDefaultAction; return [{ name: refactorName, description: action.description, actions: [action] }]; } if (context.preferences.provideRefactorNotApplicableReason) { return [ { name: refactorName, description: getLocaleSpecificMessage(Diagnostics.Convert_default_export_to_named_export), actions: [ { ...defaultToNamedAction, notApplicableReason: info.error }, { ...namedToDefaultAction, notApplicableReason: info.error } ] } ]; } return emptyArray; }, getEditsForAction: function getRefactorEditsToConvertBetweenNamedAndDefaultExports(context, actionName2) { Debug.assert(actionName2 === defaultToNamedAction.name || actionName2 === namedToDefaultAction.name, "Unexpected action name"); const info = getInfo2(context); Debug.assert(info && !isRefactorErrorInfo(info), "Expected applicable refactor info"); const edits = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange(context.file, context.program, info, t, context.cancellationToken)); return { edits, renameFilename: undefined, renameLocation: undefined }; } }); function getInfo2(context, considerPartialSpans = true) { const { file, program } = context; const span = getRefactorContextSpan(context); const token = getTokenAtPosition(file, span.start); const exportNode = !!(token.parent && getSyntacticModifierFlags(token.parent) & 32) && considerPartialSpans ? token.parent : getParentNodeInSpan(token, file, span); if (!exportNode || !isSourceFile(exportNode.parent) && !(isModuleBlock(exportNode.parent) && isAmbientModule(exportNode.parent.parent))) { return { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_export_statement) }; } const checker = program.getTypeChecker(); const exportingModuleSymbol = getExportingModuleSymbol(exportNode.parent, checker); const flags = getSyntacticModifierFlags(exportNode) || (isExportAssignment(exportNode) && !exportNode.isExportEquals ? 2080 : 0); const wasDefault = !!(flags & 2048); if (!(flags & 32) || !wasDefault && exportingModuleSymbol.exports.has("default")) { return { error: getLocaleSpecificMessage(Diagnostics.This_file_already_has_a_default_export) }; } const noSymbolError = (id) => isIdentifier(id) && checker.getSymbolAtLocation(id) ? undefined : { error: getLocaleSpecificMessage(Diagnostics.Can_only_convert_named_export) }; switch (exportNode.kind) { case 263: case 264: case 265: case 267: case 266: case 268: { const node = exportNode; if (!node.name) return; return noSymbolError(node.name) || { exportNode: node, exportName: node.name, wasDefault, exportingModuleSymbol }; } case 244: { const vs = exportNode; if (!(vs.declarationList.flags & 2) || vs.declarationList.declarations.length !== 1) { return; } const decl = first(vs.declarationList.declarations); if (!decl.initializer) return; Debug.assert(!wasDefault, "Can't have a default flag here"); return noSymbolError(decl.name) || { exportNode: vs, exportName: decl.name, wasDefault, exportingModuleSymbol }; } case 278: { const node = exportNode; if (node.isExportEquals) return; return noSymbolError(node.expression) || { exportNode: node, exportName: node.expression, wasDefault, exportingModuleSymbol }; } default: return; } } function doChange(exportingSourceFile, program, info, changes, cancellationToken) { changeExport(exportingSourceFile, info, changes, program.getTypeChecker()); changeImports(program, info, changes, cancellationToken); } function changeExport(exportingSourceFile, { wasDefault, exportNode, exportName }, changes, checker) { if (wasDefault) { if (isExportAssignment(exportNode) && !exportNode.isExportEquals) { const exp = exportNode.expression; const spec3 = makeExportSpecifier(exp.text, exp.text); changes.replaceNode(exportingSourceFile, exportNode, factory.createExportDeclaration(undefined, false, factory.createNamedExports([spec3]))); } else { changes.delete(exportingSourceFile, Debug.checkDefined(findModifier(exportNode, 90), "Should find a default keyword in modifier list")); } } else { const exportKeyword = Debug.checkDefined(findModifier(exportNode, 95), "Should find an export keyword in modifier list"); switch (exportNode.kind) { case 263: case 264: case 265: changes.insertNodeAfter(exportingSourceFile, exportKeyword, factory.createToken(90)); break; case 244: const decl = first(exportNode.declarationList.declarations); if (!ts_FindAllReferences_exports.Core.isSymbolReferencedInFile(exportName, checker, exportingSourceFile) && !decl.type) { changes.replaceNode(exportingSourceFile, exportNode, factory.createExportDefault(Debug.checkDefined(decl.initializer, "Initializer was previously known to be present"))); break; } case 267: case 266: case 268: changes.deleteModifier(exportingSourceFile, exportKeyword); changes.insertNodeAfter(exportingSourceFile, exportNode, factory.createExportDefault(factory.createIdentifier(exportName.text))); break; default: Debug.fail(`Unexpected exportNode kind ${exportNode.kind}`); } } } function changeImports(program, { wasDefault, exportName, exportingModuleSymbol }, changes, cancellationToken) { const checker = program.getTypeChecker(); const exportSymbol = Debug.checkDefined(checker.getSymbolAtLocation(exportName), "Export name should resolve to a symbol"); ts_FindAllReferences_exports.Core.eachExportReference(program.getSourceFiles(), checker, cancellationToken, exportSymbol, exportingModuleSymbol, exportName.text, wasDefault, (ref) => { if (exportName === ref) return; const importingSourceFile = ref.getSourceFile(); if (wasDefault) { changeDefaultToNamedImport(importingSourceFile, ref, changes, exportName.text); } else { changeNamedToDefaultImport(importingSourceFile, ref, changes); } }); } function changeDefaultToNamedImport(importingSourceFile, ref, changes, exportName) { const { parent: parent2 } = ref; switch (parent2.kind) { case 212: changes.replaceNode(importingSourceFile, ref, factory.createIdentifier(exportName)); break; case 277: case 282: { const spec3 = parent2; changes.replaceNode(importingSourceFile, spec3, makeImportSpecifier(exportName, spec3.name.text)); break; } case 274: { const clause = parent2; Debug.assert(clause.name === ref, "Import clause name should match provided ref"); const spec3 = makeImportSpecifier(exportName, ref.text); const { namedBindings } = clause; if (!namedBindings) { changes.replaceNode(importingSourceFile, ref, factory.createNamedImports([spec3])); } else if (namedBindings.kind === 275) { changes.deleteRange(importingSourceFile, { pos: ref.getStart(importingSourceFile), end: namedBindings.getStart(importingSourceFile) }); const quotePreference = isStringLiteral(clause.parent.moduleSpecifier) ? quotePreferenceFromString(clause.parent.moduleSpecifier, importingSourceFile) : 1; const newImport = makeImport(undefined, [makeImportSpecifier(exportName, ref.text)], clause.parent.moduleSpecifier, quotePreference); changes.insertNodeAfter(importingSourceFile, clause.parent, newImport); } else { changes.delete(importingSourceFile, ref); changes.insertNodeAtEndOfList(importingSourceFile, namedBindings.elements, spec3); } break; } case 206: const importTypeNode = parent2; changes.replaceNode(importingSourceFile, parent2, factory.createImportTypeNode(importTypeNode.argument, importTypeNode.attributes, factory.createIdentifier(exportName), importTypeNode.typeArguments, importTypeNode.isTypeOf)); break; default: Debug.failBadSyntaxKind(parent2); } } function changeNamedToDefaultImport(importingSourceFile, ref, changes) { const parent2 = ref.parent; switch (parent2.kind) { case 212: changes.replaceNode(importingSourceFile, ref, factory.createIdentifier("default")); break; case 277: { const defaultImport = factory.createIdentifier(parent2.name.text); if (parent2.parent.elements.length === 1) { changes.replaceNode(importingSourceFile, parent2.parent, defaultImport); } else { changes.delete(importingSourceFile, parent2); changes.insertNodeBefore(importingSourceFile, parent2.parent, defaultImport); } break; } case 282: { changes.replaceNode(importingSourceFile, parent2, makeExportSpecifier("default", parent2.name.text)); break; } default: Debug.assertNever(parent2, `Unexpected parent kind ${parent2.kind}`); } } function makeImportSpecifier(propertyName, name) { return factory.createImportSpecifier(false, propertyName === name ? undefined : factory.createIdentifier(propertyName), factory.createIdentifier(name)); } function makeExportSpecifier(propertyName, name) { return factory.createExportSpecifier(false, propertyName === name ? undefined : factory.createIdentifier(propertyName), factory.createIdentifier(name)); } function getExportingModuleSymbol(parent2, checker) { if (isSourceFile(parent2)) { return parent2.symbol; } const symbol = parent2.parent.symbol; if (symbol.valueDeclaration && isExternalModuleAugmentation(symbol.valueDeclaration)) { return checker.getMergedSymbol(symbol); } return symbol; } var refactorName2 = "Convert import"; var actions = { [0]: { name: "Convert namespace import to named imports", description: getLocaleSpecificMessage(Diagnostics.Convert_namespace_import_to_named_imports), kind: "refactor.rewrite.import.named" }, [2]: { name: "Convert named imports to namespace import", description: getLocaleSpecificMessage(Diagnostics.Convert_named_imports_to_namespace_import), kind: "refactor.rewrite.import.namespace" }, [1]: { name: "Convert named imports to default import", description: getLocaleSpecificMessage(Diagnostics.Convert_named_imports_to_default_import), kind: "refactor.rewrite.import.default" } }; registerRefactor(refactorName2, { kinds: getOwnValues(actions).map((a) => a.kind), getAvailableActions: function getRefactorActionsToConvertBetweenNamedAndNamespacedImports(context) { const info = getImportConversionInfo(context, context.triggerReason === "invoked"); if (!info) return emptyArray; if (!isRefactorErrorInfo(info)) { const action = actions[info.convertTo]; return [{ name: refactorName2, description: action.description, actions: [action] }]; } if (context.preferences.provideRefactorNotApplicableReason) { return getOwnValues(actions).map((action) => ({ name: refactorName2, description: action.description, actions: [{ ...action, notApplicableReason: info.error }] })); } return emptyArray; }, getEditsForAction: function getRefactorEditsToConvertBetweenNamedAndNamespacedImports(context, actionName2) { Debug.assert(some(getOwnValues(actions), (action) => action.name === actionName2), "Unexpected action name"); const info = getImportConversionInfo(context); Debug.assert(info && !isRefactorErrorInfo(info), "Expected applicable refactor info"); const edits = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange2(context.file, context.program, t, info)); return { edits, renameFilename: undefined, renameLocation: undefined }; } }); function getImportConversionInfo(context, considerPartialSpans = true) { const { file } = context; const span = getRefactorContextSpan(context); const token = getTokenAtPosition(file, span.start); const importDecl = considerPartialSpans ? findAncestor(token, or(isImportDeclaration, isJSDocImportTag)) : getParentNodeInSpan(token, file, span); if (importDecl === undefined || !(isImportDeclaration(importDecl) || isJSDocImportTag(importDecl))) return { error: "Selection is not an import declaration." }; const end = span.start + span.length; const nextToken = findNextToken(importDecl, importDecl.parent, file); if (nextToken && end > nextToken.getStart()) return; const { importClause } = importDecl; if (!importClause) { return { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_import_clause) }; } if (!importClause.namedBindings) { return { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_namespace_import_or_named_imports) }; } if (importClause.namedBindings.kind === 275) { return { convertTo: 0, import: importClause.namedBindings }; } const shouldUseDefault = getShouldUseDefault(context.program, importClause); return shouldUseDefault ? { convertTo: 1, import: importClause.namedBindings } : { convertTo: 2, import: importClause.namedBindings }; } function getShouldUseDefault(program, importClause) { return getAllowSyntheticDefaultImports(program.getCompilerOptions()) && isExportEqualsModule(importClause.parent.moduleSpecifier, program.getTypeChecker()); } function doChange2(sourceFile, program, changes, info) { const checker = program.getTypeChecker(); if (info.convertTo === 0) { doChangeNamespaceToNamed(sourceFile, checker, changes, info.import, getAllowSyntheticDefaultImports(program.getCompilerOptions())); } else { doChangeNamedToNamespaceOrDefault(sourceFile, program, changes, info.import, info.convertTo === 1); } } function doChangeNamespaceToNamed(sourceFile, checker, changes, toConvert, allowSyntheticDefaultImports) { let usedAsNamespaceOrDefault = false; const nodesToReplace = []; const conflictingNames = /* @__PURE__ */ new Map; ts_FindAllReferences_exports.Core.eachSymbolReferenceInFile(toConvert.name, checker, sourceFile, (id) => { if (!isPropertyAccessOrQualifiedName(id.parent)) { usedAsNamespaceOrDefault = true; } else { const exportName = getRightOfPropertyAccessOrQualifiedName(id.parent).text; if (checker.resolveName(exportName, id, -1, true)) { conflictingNames.set(exportName, true); } Debug.assert(getLeftOfPropertyAccessOrQualifiedName(id.parent) === id, "Parent expression should match id"); nodesToReplace.push(id.parent); } }); const exportNameToImportName = /* @__PURE__ */ new Map; for (const propertyAccessOrQualifiedName of nodesToReplace) { const exportName = getRightOfPropertyAccessOrQualifiedName(propertyAccessOrQualifiedName).text; let importName = exportNameToImportName.get(exportName); if (importName === undefined) { exportNameToImportName.set(exportName, importName = conflictingNames.has(exportName) ? getUniqueName(exportName, sourceFile) : exportName); } changes.replaceNode(sourceFile, propertyAccessOrQualifiedName, factory.createIdentifier(importName)); } const importSpecifiers = []; exportNameToImportName.forEach((name, propertyName) => { importSpecifiers.push(factory.createImportSpecifier(false, name === propertyName ? undefined : factory.createIdentifier(propertyName), factory.createIdentifier(name))); }); const importDecl = toConvert.parent.parent; if (usedAsNamespaceOrDefault && !allowSyntheticDefaultImports && isImportDeclaration(importDecl)) { changes.insertNodeAfter(sourceFile, importDecl, createImport(importDecl, undefined, importSpecifiers)); } else { const defaultImportName = usedAsNamespaceOrDefault ? factory.createIdentifier(toConvert.name.text) : undefined; changes.replaceNode(sourceFile, toConvert.parent, createImportClause(defaultImportName, importSpecifiers)); } } function getRightOfPropertyAccessOrQualifiedName(propertyAccessOrQualifiedName) { return isPropertyAccessExpression(propertyAccessOrQualifiedName) ? propertyAccessOrQualifiedName.name : propertyAccessOrQualifiedName.right; } function getLeftOfPropertyAccessOrQualifiedName(propertyAccessOrQualifiedName) { return isPropertyAccessExpression(propertyAccessOrQualifiedName) ? propertyAccessOrQualifiedName.expression : propertyAccessOrQualifiedName.left; } function doChangeNamedToNamespaceOrDefault(sourceFile, program, changes, toConvert, shouldUseDefault = getShouldUseDefault(program, toConvert.parent)) { const checker = program.getTypeChecker(); const importDecl = toConvert.parent.parent; const { moduleSpecifier } = importDecl; const toConvertSymbols = /* @__PURE__ */ new Set; toConvert.elements.forEach((namedImport) => { const symbol = checker.getSymbolAtLocation(namedImport.name); if (symbol) { toConvertSymbols.add(symbol); } }); const preferredName = moduleSpecifier && isStringLiteral(moduleSpecifier) ? moduleSpecifierToValidIdentifier(moduleSpecifier.text, 99) : "module"; function hasNamespaceNameConflict(namedImport) { return !!ts_FindAllReferences_exports.Core.eachSymbolReferenceInFile(namedImport.name, checker, sourceFile, (id) => { const symbol = checker.resolveName(preferredName, id, -1, true); if (symbol) { if (toConvertSymbols.has(symbol)) { return isExportSpecifier(id.parent); } return true; } return false; }); } const namespaceNameConflicts = toConvert.elements.some(hasNamespaceNameConflict); const namespaceImportName = namespaceNameConflicts ? getUniqueName(preferredName, sourceFile) : preferredName; const neededNamedImports = /* @__PURE__ */ new Set; for (const element of toConvert.elements) { const propertyName = element.propertyName || element.name; ts_FindAllReferences_exports.Core.eachSymbolReferenceInFile(element.name, checker, sourceFile, (id) => { const access = propertyName.kind === 11 ? factory.createElementAccessExpression(factory.createIdentifier(namespaceImportName), factory.cloneNode(propertyName)) : factory.createPropertyAccessExpression(factory.createIdentifier(namespaceImportName), factory.cloneNode(propertyName)); if (isShorthandPropertyAssignment(id.parent)) { changes.replaceNode(sourceFile, id.parent, factory.createPropertyAssignment(id.text, access)); } else if (isExportSpecifier(id.parent)) { neededNamedImports.add(element); } else { changes.replaceNode(sourceFile, id, access); } }); } changes.replaceNode(sourceFile, toConvert, shouldUseDefault ? factory.createIdentifier(namespaceImportName) : factory.createNamespaceImport(factory.createIdentifier(namespaceImportName))); if (neededNamedImports.size && isImportDeclaration(importDecl)) { const newNamedImports = arrayFrom(neededNamedImports.values(), (element) => factory.createImportSpecifier(element.isTypeOnly, element.propertyName && factory.cloneNode(element.propertyName), factory.cloneNode(element.name))); changes.insertNodeAfter(sourceFile, toConvert.parent.parent, createImport(importDecl, undefined, newNamedImports)); } } function isExportEqualsModule(moduleSpecifier, checker) { const externalModule = checker.resolveExternalModuleName(moduleSpecifier); if (!externalModule) return false; const exportEquals = checker.resolveExternalModuleSymbol(externalModule); return externalModule !== exportEquals; } function createImport(node, defaultImportName, elements) { return factory.createImportDeclaration(undefined, createImportClause(defaultImportName, elements), node.moduleSpecifier, undefined); } function createImportClause(defaultImportName, elements) { return factory.createImportClause(undefined, defaultImportName, elements && elements.length ? factory.createNamedImports(elements) : undefined); } var refactorName3 = "Extract type"; var extractToTypeAliasAction = { name: "Extract to type alias", description: getLocaleSpecificMessage(Diagnostics.Extract_to_type_alias), kind: "refactor.extract.type" }; var extractToInterfaceAction = { name: "Extract to interface", description: getLocaleSpecificMessage(Diagnostics.Extract_to_interface), kind: "refactor.extract.interface" }; var extractToTypeDefAction = { name: "Extract to typedef", description: getLocaleSpecificMessage(Diagnostics.Extract_to_typedef), kind: "refactor.extract.typedef" }; registerRefactor(refactorName3, { kinds: [ extractToTypeAliasAction.kind, extractToInterfaceAction.kind, extractToTypeDefAction.kind ], getAvailableActions: function getRefactorActionsToExtractType(context) { const { info, affectedTextRange } = getRangeToExtract(context, context.triggerReason === "invoked"); if (!info) return emptyArray; if (!isRefactorErrorInfo(info)) { const refactorInfo = [{ name: refactorName3, description: getLocaleSpecificMessage(Diagnostics.Extract_type), actions: info.isJS ? [extractToTypeDefAction] : append([extractToTypeAliasAction], info.typeElements && extractToInterfaceAction) }]; return refactorInfo.map((info2) => ({ ...info2, actions: info2.actions.map((action) => ({ ...action, range: affectedTextRange ? { start: { line: getLineAndCharacterOfPosition(context.file, affectedTextRange.pos).line, offset: getLineAndCharacterOfPosition(context.file, affectedTextRange.pos).character }, end: { line: getLineAndCharacterOfPosition(context.file, affectedTextRange.end).line, offset: getLineAndCharacterOfPosition(context.file, affectedTextRange.end).character } } : undefined })) })); } if (context.preferences.provideRefactorNotApplicableReason) { return [{ name: refactorName3, description: getLocaleSpecificMessage(Diagnostics.Extract_type), actions: [ { ...extractToTypeDefAction, notApplicableReason: info.error }, { ...extractToTypeAliasAction, notApplicableReason: info.error }, { ...extractToInterfaceAction, notApplicableReason: info.error } ] }]; } return emptyArray; }, getEditsForAction: function getRefactorEditsToExtractType(context, actionName2) { const { file } = context; const { info } = getRangeToExtract(context); Debug.assert(info && !isRefactorErrorInfo(info), "Expected to find a range to extract"); const name = getUniqueName("NewType", file); const edits = ts_textChanges_exports.ChangeTracker.with(context, (changes) => { switch (actionName2) { case extractToTypeAliasAction.name: Debug.assert(!info.isJS, "Invalid actionName/JS combo"); return doTypeAliasChange(changes, file, name, info); case extractToTypeDefAction.name: Debug.assert(info.isJS, "Invalid actionName/JS combo"); return doTypedefChange(changes, context, file, name, info); case extractToInterfaceAction.name: Debug.assert(!info.isJS && !!info.typeElements, "Invalid actionName/JS combo"); return doInterfaceChange(changes, file, name, info); default: Debug.fail("Unexpected action name"); } }); const renameFilename = file.fileName; const renameLocation = getRenameLocation(edits, renameFilename, name, false); return { edits, renameFilename, renameLocation }; } }); function getRangeToExtract(context, considerEmptySpans = true) { const { file, startPosition } = context; const isJS = isSourceFileJS(file); const range = createTextRangeFromSpan(getRefactorContextSpan(context)); const isCursorRequest = range.pos === range.end && considerEmptySpans; const firstType = getFirstTypeAt(file, startPosition, range, isCursorRequest); if (!firstType || !isTypeNode(firstType)) return { info: { error: getLocaleSpecificMessage(Diagnostics.Selection_is_not_a_valid_type_node) }, affectedTextRange: undefined }; const checker = context.program.getTypeChecker(); const enclosingNode = getEnclosingNode(firstType, isJS); if (enclosingNode === undefined) return { info: { error: getLocaleSpecificMessage(Diagnostics.No_type_could_be_extracted_from_this_type_node) }, affectedTextRange: undefined }; const expandedFirstType = getExpandedSelectionNode(firstType, enclosingNode); if (!isTypeNode(expandedFirstType)) return { info: { error: getLocaleSpecificMessage(Diagnostics.Selection_is_not_a_valid_type_node) }, affectedTextRange: undefined }; const typeList = []; if ((isUnionTypeNode(expandedFirstType.parent) || isIntersectionTypeNode(expandedFirstType.parent)) && range.end > firstType.end) { addRange(typeList, expandedFirstType.parent.types.filter((type) => { return nodeOverlapsWithStartEnd(type, file, range.pos, range.end); })); } const selection = typeList.length > 1 ? typeList : expandedFirstType; const { typeParameters, affectedTextRange } = collectTypeParameters(checker, selection, enclosingNode, file); if (!typeParameters) return { info: { error: getLocaleSpecificMessage(Diagnostics.No_type_could_be_extracted_from_this_type_node) }, affectedTextRange: undefined }; const typeElements = flattenTypeLiteralNodeReference(checker, selection); return { info: { isJS, selection, enclosingNode, typeParameters, typeElements }, affectedTextRange }; } function getFirstTypeAt(file, startPosition, range, isCursorRequest) { const currentNodes = [ () => getTokenAtPosition(file, startPosition), () => getTouchingToken(file, startPosition, () => true) ]; for (const f of currentNodes) { const current = f(); const overlappingRange = nodeOverlapsWithStartEnd(current, file, range.pos, range.end); const firstType = findAncestor(current, (node) => node.parent && isTypeNode(node) && !rangeContainsSkipTrivia(range, node.parent, file) && (isCursorRequest || overlappingRange)); if (firstType) { return firstType; } } return; } function flattenTypeLiteralNodeReference(checker, selection) { if (!selection) return; if (isArray(selection)) { const result = []; for (const type of selection) { const flattenedTypeMembers = flattenTypeLiteralNodeReference(checker, type); if (!flattenedTypeMembers) return; addRange(result, flattenedTypeMembers); } return result; } if (isIntersectionTypeNode(selection)) { const result = []; const seen = /* @__PURE__ */ new Set; for (const type of selection.types) { const flattenedTypeMembers = flattenTypeLiteralNodeReference(checker, type); if (!flattenedTypeMembers || !flattenedTypeMembers.every((type2) => type2.name && addToSeen(seen, getNameFromPropertyName(type2.name)))) { return; } addRange(result, flattenedTypeMembers); } return result; } else if (isParenthesizedTypeNode(selection)) { return flattenTypeLiteralNodeReference(checker, selection.type); } else if (isTypeLiteralNode(selection)) { return selection.members; } return; } function rangeContainsSkipTrivia(r1, node, file) { return rangeContainsStartEnd(r1, skipTrivia2(file.text, node.pos), node.end); } function collectTypeParameters(checker, selection, enclosingNode, file) { const result = []; const selectionArray = toArray(selection); const selectionRange = { pos: selectionArray[0].getStart(file), end: selectionArray[selectionArray.length - 1].end }; for (const t of selectionArray) { if (visitor(t)) return { typeParameters: undefined, affectedTextRange: undefined }; } return { typeParameters: result, affectedTextRange: selectionRange }; function visitor(node) { if (isTypeReferenceNode(node)) { if (isIdentifier(node.typeName)) { const typeName = node.typeName; const symbol = checker.resolveName(typeName.text, typeName, 262144, true); for (const decl of (symbol == null ? undefined : symbol.declarations) || emptyArray) { if (isTypeParameterDeclaration(decl) && decl.getSourceFile() === file) { if (decl.name.escapedText === typeName.escapedText && rangeContainsSkipTrivia(decl, selectionRange, file)) { return true; } if (rangeContainsSkipTrivia(enclosingNode, decl, file) && !rangeContainsSkipTrivia(selectionRange, decl, file)) { pushIfUnique(result, decl); break; } } } } } else if (isInferTypeNode(node)) { const conditionalTypeNode = findAncestor(node, (n) => isConditionalTypeNode(n) && rangeContainsSkipTrivia(n.extendsType, node, file)); if (!conditionalTypeNode || !rangeContainsSkipTrivia(selectionRange, conditionalTypeNode, file)) { return true; } } else if (isTypePredicateNode(node) || isThisTypeNode(node)) { const functionLikeNode = findAncestor(node.parent, isFunctionLike); if (functionLikeNode && functionLikeNode.type && rangeContainsSkipTrivia(functionLikeNode.type, node, file) && !rangeContainsSkipTrivia(selectionRange, functionLikeNode, file)) { return true; } } else if (isTypeQueryNode(node)) { if (isIdentifier(node.exprName)) { const symbol = checker.resolveName(node.exprName.text, node.exprName, 111551, false); if ((symbol == null ? undefined : symbol.valueDeclaration) && rangeContainsSkipTrivia(enclosingNode, symbol.valueDeclaration, file) && !rangeContainsSkipTrivia(selectionRange, symbol.valueDeclaration, file)) { return true; } } else { if (isThisIdentifier(node.exprName.left) && !rangeContainsSkipTrivia(selectionRange, node.parent, file)) { return true; } } } if (file && isTupleTypeNode(node) && getLineAndCharacterOfPosition(file, node.pos).line === getLineAndCharacterOfPosition(file, node.end).line) { setEmitFlags(node, 1); } return forEachChild(node, visitor); } } function doTypeAliasChange(changes, file, name, info) { const { enclosingNode, typeParameters } = info; const { firstTypeNode, lastTypeNode, newTypeNode } = getNodesToEdit(info); const newTypeDeclaration = factory.createTypeAliasDeclaration(undefined, name, typeParameters.map((id) => factory.updateTypeParameterDeclaration(id, id.modifiers, id.name, id.constraint, undefined)), newTypeNode); changes.insertNodeBefore(file, enclosingNode, ignoreSourceNewlines(newTypeDeclaration), true); changes.replaceNodeRange(file, firstTypeNode, lastTypeNode, factory.createTypeReferenceNode(name, typeParameters.map((id) => factory.createTypeReferenceNode(id.name, undefined))), { leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.Exclude, trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.ExcludeWhitespace }); } function doInterfaceChange(changes, file, name, info) { var _a; const { enclosingNode, typeParameters, typeElements } = info; const newTypeNode = factory.createInterfaceDeclaration(undefined, name, typeParameters, undefined, typeElements); setTextRange(newTypeNode, (_a = typeElements[0]) == null ? undefined : _a.parent); changes.insertNodeBefore(file, enclosingNode, ignoreSourceNewlines(newTypeNode), true); const { firstTypeNode, lastTypeNode } = getNodesToEdit(info); changes.replaceNodeRange(file, firstTypeNode, lastTypeNode, factory.createTypeReferenceNode(name, typeParameters.map((id) => factory.createTypeReferenceNode(id.name, undefined))), { leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.Exclude, trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.ExcludeWhitespace }); } function doTypedefChange(changes, context, file, name, info) { var _a; toArray(info.selection).forEach((typeNode) => { setEmitFlags(typeNode, 3072 | 4096); }); const { enclosingNode, typeParameters } = info; const { firstTypeNode, lastTypeNode, newTypeNode } = getNodesToEdit(info); const node = factory.createJSDocTypedefTag(factory.createIdentifier("typedef"), factory.createJSDocTypeExpression(newTypeNode), factory.createIdentifier(name)); const templates = []; forEach(typeParameters, (typeParameter) => { const constraint = getEffectiveConstraintOfTypeParameter(typeParameter); const parameter = factory.createTypeParameterDeclaration(undefined, typeParameter.name); const template = factory.createJSDocTemplateTag(factory.createIdentifier("template"), constraint && cast(constraint, isJSDocTypeExpression), [parameter]); templates.push(template); }); const jsDoc = factory.createJSDocComment(undefined, factory.createNodeArray(concatenate(templates, [node]))); if (isJSDoc(enclosingNode)) { const pos = enclosingNode.getStart(file); const newLineCharacter = getNewLineOrDefaultFromHost(context.host, (_a = context.formatContext) == null ? undefined : _a.options); changes.insertNodeAt(file, enclosingNode.getStart(file), jsDoc, { suffix: newLineCharacter + newLineCharacter + file.text.slice(getPrecedingNonSpaceCharacterPosition(file.text, pos - 1), pos) }); } else { changes.insertNodeBefore(file, enclosingNode, jsDoc, true); } changes.replaceNodeRange(file, firstTypeNode, lastTypeNode, factory.createTypeReferenceNode(name, typeParameters.map((id) => factory.createTypeReferenceNode(id.name, undefined)))); } function getNodesToEdit(info) { if (isArray(info.selection)) { return { firstTypeNode: info.selection[0], lastTypeNode: info.selection[info.selection.length - 1], newTypeNode: isUnionTypeNode(info.selection[0].parent) ? factory.createUnionTypeNode(info.selection) : factory.createIntersectionTypeNode(info.selection) }; } return { firstTypeNode: info.selection, lastTypeNode: info.selection, newTypeNode: info.selection }; } function getEnclosingNode(node, isJS) { return findAncestor(node, isStatement) || (isJS ? findAncestor(node, isJSDoc) : undefined); } function getExpandedSelectionNode(firstType, enclosingNode) { return findAncestor(firstType, (node) => { if (node === enclosingNode) return "quit"; if (isUnionTypeNode(node.parent) || isIntersectionTypeNode(node.parent)) { return true; } return false; }) ?? firstType; } var refactorNameForMoveToFile = "Move to file"; var description = getLocaleSpecificMessage(Diagnostics.Move_to_file); var moveToFileAction = { name: "Move to file", description, kind: "refactor.move.file" }; registerRefactor(refactorNameForMoveToFile, { kinds: [moveToFileAction.kind], getAvailableActions: function getRefactorActionsToMoveToFile(context, interactiveRefactorArguments) { const file = context.file; const statements = getStatementsToMove(context); if (!interactiveRefactorArguments) { return emptyArray; } if (context.triggerReason === "implicit" && context.endPosition !== undefined) { const startNodeAncestor = findAncestor(getTokenAtPosition(file, context.startPosition), isBlockLike); const endNodeAncestor = findAncestor(getTokenAtPosition(file, context.endPosition), isBlockLike); if (startNodeAncestor && !isSourceFile(startNodeAncestor) && endNodeAncestor && !isSourceFile(endNodeAncestor)) { return emptyArray; } } if (context.preferences.allowTextChangesInNewFiles && statements) { const affectedTextRange = { start: { line: getLineAndCharacterOfPosition(file, statements.all[0].getStart(file)).line, offset: getLineAndCharacterOfPosition(file, statements.all[0].getStart(file)).character }, end: { line: getLineAndCharacterOfPosition(file, last(statements.all).end).line, offset: getLineAndCharacterOfPosition(file, last(statements.all).end).character } }; return [{ name: refactorNameForMoveToFile, description, actions: [{ ...moveToFileAction, range: affectedTextRange }] }]; } if (context.preferences.provideRefactorNotApplicableReason) { return [{ name: refactorNameForMoveToFile, description, actions: [{ ...moveToFileAction, notApplicableReason: getLocaleSpecificMessage(Diagnostics.Selection_is_not_a_valid_statement_or_statements) }] }]; } return emptyArray; }, getEditsForAction: function getRefactorEditsToMoveToFile(context, actionName2, interactiveRefactorArguments) { Debug.assert(actionName2 === refactorNameForMoveToFile, "Wrong refactor invoked"); const statements = Debug.checkDefined(getStatementsToMove(context)); const { host, program } = context; Debug.assert(interactiveRefactorArguments, "No interactive refactor arguments available"); const targetFile = interactiveRefactorArguments.targetFile; if (hasJSFileExtension(targetFile) || hasTSFileExtension(targetFile)) { if (host.fileExists(targetFile) && program.getSourceFile(targetFile) === undefined) { return error(getLocaleSpecificMessage(Diagnostics.Cannot_move_statements_to_the_selected_file)); } const edits = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange3(context, context.file, interactiveRefactorArguments.targetFile, context.program, statements, t, context.host, context.preferences)); return { edits, renameFilename: undefined, renameLocation: undefined }; } return error(getLocaleSpecificMessage(Diagnostics.Cannot_move_to_file_selected_file_is_invalid)); } }); function error(notApplicableReason) { return { edits: [], renameFilename: undefined, renameLocation: undefined, notApplicableReason }; } function doChange3(context, oldFile, targetFile, program, toMove, changes, host, preferences) { const checker = program.getTypeChecker(); const isForNewFile = !host.fileExists(targetFile); const targetSourceFile = isForNewFile ? createFutureSourceFile(targetFile, oldFile.externalModuleIndicator ? 99 : oldFile.commonJsModuleIndicator ? 1 : undefined, program, host) : Debug.checkDefined(program.getSourceFile(targetFile)); const importAdderForOldFile = ts_codefix_exports.createImportAdder(oldFile, context.program, context.preferences, context.host); const importAdderForNewFile = ts_codefix_exports.createImportAdder(targetSourceFile, context.program, context.preferences, context.host); getNewStatementsAndRemoveFromOldFile(oldFile, targetSourceFile, getUsageInfo(oldFile, toMove.all, checker, isForNewFile ? undefined : getExistingLocals(targetSourceFile, toMove.all, checker)), changes, toMove, program, host, preferences, importAdderForNewFile, importAdderForOldFile); if (isForNewFile) { addNewFileToTsconfig(program, changes, oldFile.fileName, targetFile, hostGetCanonicalFileName(host)); } } function getNewStatementsAndRemoveFromOldFile(oldFile, targetFile, usage, changes, toMove, program, host, preferences, importAdderForNewFile, importAdderForOldFile) { const checker = program.getTypeChecker(); const prologueDirectives = takeWhile(oldFile.statements, isPrologueDirective); const useEsModuleSyntax = !fileShouldUseJavaScriptRequire(targetFile.fileName, program, host, !!oldFile.commonJsModuleIndicator); const quotePreference = getQuotePreference(oldFile, preferences); addImportsForMovedSymbols(usage.oldFileImportsFromTargetFile, targetFile.fileName, importAdderForOldFile, program); deleteUnusedOldImports(oldFile, toMove.all, usage.unusedImportsFromOldFile, importAdderForOldFile); importAdderForOldFile.writeFixes(changes, quotePreference); deleteMovedStatements(oldFile, toMove.ranges, changes); updateImportsInOtherFiles(changes, program, host, oldFile, usage.movedSymbols, targetFile.fileName, quotePreference); addExportsInOldFile(oldFile, usage.targetFileImportsFromOldFile, changes, useEsModuleSyntax); addTargetFileImports(oldFile, usage.oldImportsNeededByTargetFile, usage.targetFileImportsFromOldFile, checker, program, importAdderForNewFile); if (!isFullSourceFile(targetFile) && prologueDirectives.length) { changes.insertStatementsInNewFile(targetFile.fileName, prologueDirectives, oldFile); } importAdderForNewFile.writeFixes(changes, quotePreference); const body = addExports(oldFile, toMove.all, arrayFrom(usage.oldFileImportsFromTargetFile.keys()), useEsModuleSyntax); if (isFullSourceFile(targetFile) && targetFile.statements.length > 0) { moveStatementsToTargetFile(changes, program, body, targetFile, toMove); } else if (isFullSourceFile(targetFile)) { changes.insertNodesAtEndOfFile(targetFile, body, false); } else { changes.insertStatementsInNewFile(targetFile.fileName, importAdderForNewFile.hasFixes() ? [4, ...body] : body, oldFile); } } function addNewFileToTsconfig(program, changes, oldFileName, newFileNameWithExtension, getCanonicalFileName) { const cfg = program.getCompilerOptions().configFile; if (!cfg) return; const newFileAbsolutePath = normalizePath(combinePaths(oldFileName, "..", newFileNameWithExtension)); const newFilePath = getRelativePathFromFile(cfg.fileName, newFileAbsolutePath, getCanonicalFileName); const cfgObject = cfg.statements[0] && tryCast(cfg.statements[0].expression, isObjectLiteralExpression); const filesProp = cfgObject && find(cfgObject.properties, (prop) => isPropertyAssignment(prop) && isStringLiteral(prop.name) && prop.name.text === "files"); if (filesProp && isArrayLiteralExpression(filesProp.initializer)) { changes.insertNodeInListAfter(cfg, last(filesProp.initializer.elements), factory.createStringLiteral(newFilePath), filesProp.initializer.elements); } } function deleteMovedStatements(sourceFile, moved, changes) { for (const { first: first2, afterLast } of moved) { changes.deleteNodeRangeExcludingEnd(sourceFile, first2, afterLast); } } function deleteUnusedOldImports(oldFile, toMove, toDelete, importAdder) { for (const statement of oldFile.statements) { if (contains(toMove, statement)) continue; forEachImportInStatement(statement, (i) => { forEachAliasDeclarationInImportOrRequire(i, (decl) => { if (toDelete.has(decl.symbol)) { importAdder.removeExistingImport(decl); } }); }); } } function addExportsInOldFile(oldFile, targetFileImportsFromOldFile, changes, useEsModuleSyntax) { const markSeenTop = nodeSeenTracker(); targetFileImportsFromOldFile.forEach((_, symbol) => { if (!symbol.declarations) { return; } for (const decl of symbol.declarations) { if (!isTopLevelDeclaration(decl)) continue; const name = nameOfTopLevelDeclaration(decl); if (!name) continue; const top = getTopLevelDeclarationStatement(decl); if (markSeenTop(top)) { addExportToChanges(oldFile, top, name, changes, useEsModuleSyntax); } } }); } function updateImportsInOtherFiles(changes, program, host, oldFile, movedSymbols, targetFileName, quotePreference) { const checker = program.getTypeChecker(); for (const sourceFile of program.getSourceFiles()) { if (sourceFile === oldFile) continue; for (const statement of sourceFile.statements) { forEachImportInStatement(statement, (importNode) => { if (checker.getSymbolAtLocation(moduleSpecifierFromImport(importNode)) !== oldFile.symbol) return; const shouldMove = (name) => { const symbol = isBindingElement(name.parent) ? getPropertySymbolFromBindingElement(checker, name.parent) : skipAlias(checker.getSymbolAtLocation(name), checker); return !!symbol && movedSymbols.has(symbol); }; deleteUnusedImports(sourceFile, importNode, changes, shouldMove); const pathToTargetFileWithExtension = resolvePath(getDirectoryPath(getNormalizedAbsolutePath(oldFile.fileName, program.getCurrentDirectory())), targetFileName); if (getStringComparer(!program.useCaseSensitiveFileNames())(pathToTargetFileWithExtension, sourceFile.fileName) === 0) return; const newModuleSpecifier = ts_moduleSpecifiers_exports.getModuleSpecifier(program.getCompilerOptions(), sourceFile, sourceFile.fileName, pathToTargetFileWithExtension, createModuleSpecifierResolutionHost(program, host)); const newImportDeclaration = filterImport(importNode, makeStringLiteral(newModuleSpecifier, quotePreference), shouldMove); if (newImportDeclaration) changes.insertNodeAfter(sourceFile, statement, newImportDeclaration); const ns = getNamespaceLikeImport(importNode); if (ns) updateNamespaceLikeImport(changes, sourceFile, checker, movedSymbols, newModuleSpecifier, ns, importNode, quotePreference); }); } } } function getNamespaceLikeImport(node) { switch (node.kind) { case 273: return node.importClause && node.importClause.namedBindings && node.importClause.namedBindings.kind === 275 ? node.importClause.namedBindings.name : undefined; case 272: return node.name; case 261: return tryCast(node.name, isIdentifier); default: return Debug.assertNever(node, `Unexpected node kind ${node.kind}`); } } function updateNamespaceLikeImport(changes, sourceFile, checker, movedSymbols, newModuleSpecifier, oldImportId, oldImportNode, quotePreference) { const preferredNewNamespaceName = moduleSpecifierToValidIdentifier(newModuleSpecifier, 99); let needUniqueName = false; const toChange = []; ts_FindAllReferences_exports.Core.eachSymbolReferenceInFile(oldImportId, checker, sourceFile, (ref) => { if (!isPropertyAccessExpression(ref.parent)) return; needUniqueName = needUniqueName || !!checker.resolveName(preferredNewNamespaceName, ref, -1, true); if (movedSymbols.has(checker.getSymbolAtLocation(ref.parent.name))) { toChange.push(ref); } }); if (toChange.length) { const newNamespaceName = needUniqueName ? getUniqueName(preferredNewNamespaceName, sourceFile) : preferredNewNamespaceName; for (const ref of toChange) { changes.replaceNode(sourceFile, ref, factory.createIdentifier(newNamespaceName)); } changes.insertNodeAfter(sourceFile, oldImportNode, updateNamespaceLikeImportNode(oldImportNode, preferredNewNamespaceName, newModuleSpecifier, quotePreference)); } } function updateNamespaceLikeImportNode(node, newNamespaceName, newModuleSpecifier, quotePreference) { const newNamespaceId = factory.createIdentifier(newNamespaceName); const newModuleString = makeStringLiteral(newModuleSpecifier, quotePreference); switch (node.kind) { case 273: return factory.createImportDeclaration(undefined, factory.createImportClause(undefined, undefined, factory.createNamespaceImport(newNamespaceId)), newModuleString, undefined); case 272: return factory.createImportEqualsDeclaration(undefined, false, newNamespaceId, factory.createExternalModuleReference(newModuleString)); case 261: return factory.createVariableDeclaration(newNamespaceId, undefined, undefined, createRequireCall(newModuleString)); default: return Debug.assertNever(node, `Unexpected node kind ${node.kind}`); } } function createRequireCall(moduleSpecifier) { return factory.createCallExpression(factory.createIdentifier("require"), undefined, [moduleSpecifier]); } function moduleSpecifierFromImport(i) { return i.kind === 273 ? i.moduleSpecifier : i.kind === 272 ? i.moduleReference.expression : i.initializer.arguments[0]; } function forEachImportInStatement(statement, cb) { if (isImportDeclaration(statement)) { if (isStringLiteral(statement.moduleSpecifier)) cb(statement); } else if (isImportEqualsDeclaration(statement)) { if (isExternalModuleReference(statement.moduleReference) && isStringLiteralLike(statement.moduleReference.expression)) { cb(statement); } } else if (isVariableStatement(statement)) { for (const decl of statement.declarationList.declarations) { if (decl.initializer && isRequireCall(decl.initializer, true)) { cb(decl); } } } } function forEachAliasDeclarationInImportOrRequire(importOrRequire, cb) { var _a, _b, _c, _d, _e; if (importOrRequire.kind === 273) { if ((_a = importOrRequire.importClause) == null ? undefined : _a.name) { cb(importOrRequire.importClause); } if (((_c = (_b = importOrRequire.importClause) == null ? undefined : _b.namedBindings) == null ? undefined : _c.kind) === 275) { cb(importOrRequire.importClause.namedBindings); } if (((_e = (_d = importOrRequire.importClause) == null ? undefined : _d.namedBindings) == null ? undefined : _e.kind) === 276) { for (const element of importOrRequire.importClause.namedBindings.elements) { cb(element); } } } else if (importOrRequire.kind === 272) { cb(importOrRequire); } else if (importOrRequire.kind === 261) { if (importOrRequire.name.kind === 80) { cb(importOrRequire); } else if (importOrRequire.name.kind === 207) { for (const element of importOrRequire.name.elements) { if (isIdentifier(element.name)) { cb(element); } } } } } function addImportsForMovedSymbols(symbols, targetFileName, importAdder, program) { for (const [symbol, isValidTypeOnlyUseSite] of symbols) { const symbolName2 = getNameForExportedSymbol(symbol, getEmitScriptTarget(program.getCompilerOptions())); const exportKind = symbol.name === "default" && symbol.parent ? 1 : 0; importAdder.addImportForNonExistentExport(symbolName2, targetFileName, exportKind, symbol.flags, isValidTypeOnlyUseSite); } } function makeVariableStatement(name, type, initializer, flags = 2) { return factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(name, undefined, type, initializer)], flags)); } function addExports(sourceFile, toMove, needExport, useEs6Exports) { return flatMap(toMove, (statement) => { if (isTopLevelDeclarationStatement(statement) && !isExported(sourceFile, statement, useEs6Exports) && forEachTopLevelDeclaration(statement, (d) => { var _a; return needExport.includes(Debug.checkDefined((_a = tryCast(d, canHaveSymbol)) == null ? undefined : _a.symbol)); })) { const exports22 = addExport(getSynthesizedDeepClone(statement), useEs6Exports); if (exports22) return exports22; } return getSynthesizedDeepClone(statement); }); } function isExported(sourceFile, decl, useEs6Exports, name) { var _a; if (useEs6Exports) { return !isExpressionStatement(decl) && hasSyntacticModifier(decl, 32) || !!(name && sourceFile.symbol && ((_a = sourceFile.symbol.exports) == null ? undefined : _a.has(name.escapedText))); } return !!sourceFile.symbol && !!sourceFile.symbol.exports && getNamesToExportInCommonJS(decl).some((name2) => sourceFile.symbol.exports.has(escapeLeadingUnderscores(name2))); } function deleteUnusedImports(sourceFile, importDecl, changes, isUnused) { if (importDecl.kind === 273 && importDecl.importClause) { const { name, namedBindings } = importDecl.importClause; if ((!name || isUnused(name)) && (!namedBindings || namedBindings.kind === 276 && namedBindings.elements.length !== 0 && namedBindings.elements.every((e) => isUnused(e.name)))) { return changes.delete(sourceFile, importDecl); } } forEachAliasDeclarationInImportOrRequire(importDecl, (i) => { if (i.name && isIdentifier(i.name) && isUnused(i.name)) { changes.delete(sourceFile, i); } }); } function isTopLevelDeclarationStatement(node) { Debug.assert(isSourceFile(node.parent), "Node parent should be a SourceFile"); return isNonVariableTopLevelDeclaration(node) || isVariableStatement(node); } function addExport(decl, useEs6Exports) { return useEs6Exports ? [addEs6Export(decl)] : addCommonjsExport(decl); } function addEs6Export(d) { const modifiers = canHaveModifiers(d) ? concatenate([factory.createModifier(95)], getModifiers(d)) : undefined; switch (d.kind) { case 263: return factory.updateFunctionDeclaration(d, modifiers, d.asteriskToken, d.name, d.typeParameters, d.parameters, d.type, d.body); case 264: const decorators = canHaveDecorators(d) ? getDecorators(d) : undefined; return factory.updateClassDeclaration(d, concatenate(decorators, modifiers), d.name, d.typeParameters, d.heritageClauses, d.members); case 244: return factory.updateVariableStatement(d, modifiers, d.declarationList); case 268: return factory.updateModuleDeclaration(d, modifiers, d.name, d.body); case 267: return factory.updateEnumDeclaration(d, modifiers, d.name, d.members); case 266: return factory.updateTypeAliasDeclaration(d, modifiers, d.name, d.typeParameters, d.type); case 265: return factory.updateInterfaceDeclaration(d, modifiers, d.name, d.typeParameters, d.heritageClauses, d.members); case 272: return factory.updateImportEqualsDeclaration(d, modifiers, d.isTypeOnly, d.name, d.moduleReference); case 245: return Debug.fail(); default: return Debug.assertNever(d, `Unexpected declaration kind ${d.kind}`); } } function addCommonjsExport(decl) { return [decl, ...getNamesToExportInCommonJS(decl).map(createExportAssignment)]; } function createExportAssignment(name) { return factory.createExpressionStatement(factory.createBinaryExpression(factory.createPropertyAccessExpression(factory.createIdentifier("exports"), factory.createIdentifier(name)), 64, factory.createIdentifier(name))); } function getNamesToExportInCommonJS(decl) { switch (decl.kind) { case 263: case 264: return [decl.name.text]; case 244: return mapDefined(decl.declarationList.declarations, (d) => isIdentifier(d.name) ? d.name.text : undefined); case 268: case 267: case 266: case 265: case 272: return emptyArray; case 245: return Debug.fail("Can't export an ExpressionStatement"); default: return Debug.assertNever(decl, `Unexpected decl kind ${decl.kind}`); } } function filterImport(i, moduleSpecifier, keep) { switch (i.kind) { case 273: { const clause = i.importClause; if (!clause) return; const defaultImport = clause.name && keep(clause.name) ? clause.name : undefined; const namedBindings = clause.namedBindings && filterNamedBindings(clause.namedBindings, keep); return defaultImport || namedBindings ? factory.createImportDeclaration(undefined, factory.createImportClause(clause.phaseModifier, defaultImport, namedBindings), getSynthesizedDeepClone(moduleSpecifier), undefined) : undefined; } case 272: return keep(i.name) ? i : undefined; case 261: { const name = filterBindingName(i.name, keep); return name ? makeVariableStatement(name, i.type, createRequireCall(moduleSpecifier), i.parent.flags) : undefined; } default: return Debug.assertNever(i, `Unexpected import kind ${i.kind}`); } } function filterNamedBindings(namedBindings, keep) { if (namedBindings.kind === 275) { return keep(namedBindings.name) ? namedBindings : undefined; } else { const newElements = namedBindings.elements.filter((e) => keep(e.name)); return newElements.length ? factory.createNamedImports(newElements) : undefined; } } function filterBindingName(name, keep) { switch (name.kind) { case 80: return keep(name) ? name : undefined; case 208: return name; case 207: { const newElements = name.elements.filter((prop) => prop.propertyName || !isIdentifier(prop.name) || keep(prop.name)); return newElements.length ? factory.createObjectBindingPattern(newElements) : undefined; } } } function nameOfTopLevelDeclaration(d) { return isExpressionStatement(d) ? tryCast(d.expression.left.name, isIdentifier) : tryCast(d.name, isIdentifier); } function getTopLevelDeclarationStatement(d) { switch (d.kind) { case 261: return d.parent.parent; case 209: return getTopLevelDeclarationStatement(cast(d.parent.parent, (p) => isVariableDeclaration(p) || isBindingElement(p))); default: return d; } } function addExportToChanges(sourceFile, decl, name, changes, useEs6Exports) { if (isExported(sourceFile, decl, useEs6Exports, name)) return; if (useEs6Exports) { if (!isExpressionStatement(decl)) changes.insertExportModifier(sourceFile, decl); } else { const names = getNamesToExportInCommonJS(decl); if (names.length !== 0) changes.insertNodesAfter(sourceFile, decl, names.map(createExportAssignment)); } } function createNewFileName(oldFile, program, host, toMove) { const checker = program.getTypeChecker(); if (toMove) { const usage = getUsageInfo(oldFile, toMove.all, checker); const currentDirectory = getDirectoryPath(oldFile.fileName); const extension = extensionFromPath(oldFile.fileName); const newFileName = combinePaths(currentDirectory, makeUniqueFilename(inferNewFileName(usage.oldFileImportsFromTargetFile, usage.movedSymbols), extension, currentDirectory, host)) + extension; return newFileName; } return ""; } function getRangeToMove(context) { const { file } = context; const range = createTextRangeFromSpan(getRefactorContextSpan(context)); const { statements } = file; let startNodeIndex = findIndex(statements, (s) => s.end > range.pos); if (startNodeIndex === -1) return; const startStatement = statements[startNodeIndex]; const overloadRangeToMove = getOverloadRangeToMove(file, startStatement); if (overloadRangeToMove) { startNodeIndex = overloadRangeToMove.start; } let endNodeIndex = findIndex(statements, (s) => s.end >= range.end, startNodeIndex); if (endNodeIndex !== -1 && range.end <= statements[endNodeIndex].getStart()) { endNodeIndex--; } const endingOverloadRangeToMove = getOverloadRangeToMove(file, statements[endNodeIndex]); if (endingOverloadRangeToMove) { endNodeIndex = endingOverloadRangeToMove.end; } return { toMove: statements.slice(startNodeIndex, endNodeIndex === -1 ? statements.length : endNodeIndex + 1), afterLast: endNodeIndex === -1 ? undefined : statements[endNodeIndex + 1] }; } function getStatementsToMove(context) { const rangeToMove = getRangeToMove(context); if (rangeToMove === undefined) return; const all = []; const ranges = []; const { toMove, afterLast } = rangeToMove; getRangesWhere(toMove, isAllowedStatementToMove, (start, afterEndIndex) => { for (let i = start;i < afterEndIndex; i++) all.push(toMove[i]); ranges.push({ first: toMove[start], afterLast }); }); return all.length === 0 ? undefined : { all, ranges }; } function containsJsx(statements) { return find(statements, (statement) => !!(statement.transformFlags & 2)); } function isAllowedStatementToMove(statement) { return !isPureImport(statement) && !isPrologueDirective(statement); } function isPureImport(node) { switch (node.kind) { case 273: return true; case 272: return !hasSyntacticModifier(node, 32); case 244: return node.declarationList.declarations.every((d) => !!d.initializer && isRequireCall(d.initializer, true)); default: return false; } } function getUsageInfo(oldFile, toMove, checker, existingTargetLocals = /* @__PURE__ */ new Set, enclosingRange) { var _a; const movedSymbols = /* @__PURE__ */ new Set; const oldImportsNeededByTargetFile = /* @__PURE__ */ new Map; const targetFileImportsFromOldFile = /* @__PURE__ */ new Map; const jsxNamespaceSymbol = getJsxNamespaceSymbol(containsJsx(toMove)); if (jsxNamespaceSymbol) { oldImportsNeededByTargetFile.set(jsxNamespaceSymbol, [false, tryCast((_a = jsxNamespaceSymbol.declarations) == null ? undefined : _a[0], (d) => isImportSpecifier(d) || isImportClause(d) || isNamespaceImport(d) || isImportEqualsDeclaration(d) || isBindingElement(d) || isVariableDeclaration(d))]); } for (const statement of toMove) { forEachTopLevelDeclaration(statement, (decl) => { movedSymbols.add(Debug.checkDefined(isExpressionStatement(decl) ? checker.getSymbolAtLocation(decl.expression.left) : decl.symbol, "Need a symbol here")); }); } const unusedImportsFromOldFile = /* @__PURE__ */ new Set; for (const statement of toMove) { forEachReference(statement, checker, enclosingRange, (symbol, isValidTypeOnlyUseSite) => { if (!some(symbol.declarations)) { return; } if (existingTargetLocals.has(skipAlias(symbol, checker))) { unusedImportsFromOldFile.add(symbol); return; } const importedDeclaration = find(symbol.declarations, isInImport); if (importedDeclaration) { const prevIsTypeOnly = oldImportsNeededByTargetFile.get(symbol); oldImportsNeededByTargetFile.set(symbol, [ prevIsTypeOnly === undefined ? isValidTypeOnlyUseSite : prevIsTypeOnly && isValidTypeOnlyUseSite, tryCast(importedDeclaration, (d) => isImportSpecifier(d) || isImportClause(d) || isNamespaceImport(d) || isImportEqualsDeclaration(d) || isBindingElement(d) || isVariableDeclaration(d)) ]); } else if (!movedSymbols.has(symbol) && every(symbol.declarations, (decl) => isTopLevelDeclaration(decl) && sourceFileOfTopLevelDeclaration(decl) === oldFile)) { targetFileImportsFromOldFile.set(symbol, isValidTypeOnlyUseSite); } }); } for (const unusedImport of oldImportsNeededByTargetFile.keys()) { unusedImportsFromOldFile.add(unusedImport); } const oldFileImportsFromTargetFile = /* @__PURE__ */ new Map; for (const statement of oldFile.statements) { if (contains(toMove, statement)) continue; if (jsxNamespaceSymbol && !!(statement.transformFlags & 2)) { unusedImportsFromOldFile.delete(jsxNamespaceSymbol); } forEachReference(statement, checker, enclosingRange, (symbol, isValidTypeOnlyUseSite) => { if (movedSymbols.has(symbol)) oldFileImportsFromTargetFile.set(symbol, isValidTypeOnlyUseSite); unusedImportsFromOldFile.delete(symbol); }); } return { movedSymbols, targetFileImportsFromOldFile, oldFileImportsFromTargetFile, oldImportsNeededByTargetFile, unusedImportsFromOldFile }; function getJsxNamespaceSymbol(containsJsx2) { if (containsJsx2 === undefined) { return; } const jsxNamespace = checker.getJsxNamespace(containsJsx2); const jsxNamespaceSymbol2 = checker.resolveName(jsxNamespace, containsJsx2, 1920, true); return !!jsxNamespaceSymbol2 && some(jsxNamespaceSymbol2.declarations, isInImport) ? jsxNamespaceSymbol2 : undefined; } } function makeUniqueFilename(proposedFilename, extension, inDirectory, host) { let newFilename = proposedFilename; for (let i = 1;; i++) { const name = combinePaths(inDirectory, newFilename + extension); if (!host.fileExists(name)) return newFilename; newFilename = `${proposedFilename}.${i}`; } } function inferNewFileName(importsFromNewFile, movedSymbols) { return forEachKey(importsFromNewFile, symbolNameNoDefault) || forEachKey(movedSymbols, symbolNameNoDefault) || "newFile"; } function forEachReference(node, checker, enclosingRange, onReference) { node.forEachChild(function cb(node2) { if (isIdentifier(node2) && !isDeclarationName(node2)) { if (enclosingRange && !rangeContainsRange(enclosingRange, node2)) { return; } const sym = checker.getSymbolAtLocation(node2); if (sym) onReference(sym, isValidTypeOnlyAliasUseSite(node2)); } else { node2.forEachChild(cb); } }); } function forEachTopLevelDeclaration(statement, cb) { switch (statement.kind) { case 263: case 264: case 268: case 267: case 266: case 265: case 272: return cb(statement); case 244: return firstDefined(statement.declarationList.declarations, (decl) => forEachTopLevelDeclarationInBindingName(decl.name, cb)); case 245: { const { expression } = statement; return isBinaryExpression(expression) && getAssignmentDeclarationKind(expression) === 1 ? cb(statement) : undefined; } } } function isInImport(decl) { switch (decl.kind) { case 272: case 277: case 274: case 275: return true; case 261: return isVariableDeclarationInImport(decl); case 209: return isVariableDeclaration(decl.parent.parent) && isVariableDeclarationInImport(decl.parent.parent); default: return false; } } function isVariableDeclarationInImport(decl) { return isSourceFile(decl.parent.parent.parent) && !!decl.initializer && isRequireCall(decl.initializer, true); } function isTopLevelDeclaration(node) { return isNonVariableTopLevelDeclaration(node) && isSourceFile(node.parent) || isVariableDeclaration(node) && isSourceFile(node.parent.parent.parent); } function sourceFileOfTopLevelDeclaration(node) { return isVariableDeclaration(node) ? node.parent.parent.parent : node.parent; } function forEachTopLevelDeclarationInBindingName(name, cb) { switch (name.kind) { case 80: return cb(cast(name.parent, (x) => isVariableDeclaration(x) || isBindingElement(x))); case 208: case 207: return firstDefined(name.elements, (em) => isOmittedExpression(em) ? undefined : forEachTopLevelDeclarationInBindingName(em.name, cb)); default: return Debug.assertNever(name, `Unexpected name kind ${name.kind}`); } } function isNonVariableTopLevelDeclaration(node) { switch (node.kind) { case 263: case 264: case 268: case 267: case 266: case 265: case 272: return true; default: return false; } } function moveStatementsToTargetFile(changes, program, statements, targetFile, toMove) { var _a; const removedExports = /* @__PURE__ */ new Set; const targetExports = (_a = targetFile.symbol) == null ? undefined : _a.exports; if (targetExports) { const checker = program.getTypeChecker(); const targetToSourceExports = /* @__PURE__ */ new Map; for (const node of toMove.all) { if (isTopLevelDeclarationStatement(node) && hasSyntacticModifier(node, 32)) { forEachTopLevelDeclaration(node, (declaration) => { var _a2; const targetDeclarations = canHaveSymbol(declaration) ? (_a2 = targetExports.get(declaration.symbol.escapedName)) == null ? undefined : _a2.declarations : undefined; const exportDeclaration = firstDefined(targetDeclarations, (d) => isExportDeclaration(d) ? d : isExportSpecifier(d) ? tryCast(d.parent.parent, isExportDeclaration) : undefined); if (exportDeclaration && exportDeclaration.moduleSpecifier) { targetToSourceExports.set(exportDeclaration, (targetToSourceExports.get(exportDeclaration) || /* @__PURE__ */ new Set).add(declaration)); } }); } } for (const [exportDeclaration, topLevelDeclarations] of arrayFrom(targetToSourceExports)) { if (exportDeclaration.exportClause && isNamedExports(exportDeclaration.exportClause) && length(exportDeclaration.exportClause.elements)) { const elements = exportDeclaration.exportClause.elements; const updatedElements = filter(elements, (elem) => find(skipAlias(elem.symbol, checker).declarations, (d) => isTopLevelDeclaration(d) && topLevelDeclarations.has(d)) === undefined); if (length(updatedElements) === 0) { changes.deleteNode(targetFile, exportDeclaration); removedExports.add(exportDeclaration); continue; } if (length(updatedElements) < length(elements)) { changes.replaceNode(targetFile, exportDeclaration, factory.updateExportDeclaration(exportDeclaration, exportDeclaration.modifiers, exportDeclaration.isTypeOnly, factory.updateNamedExports(exportDeclaration.exportClause, factory.createNodeArray(updatedElements, elements.hasTrailingComma)), exportDeclaration.moduleSpecifier, exportDeclaration.attributes)); } } } } const lastReExport = findLast(targetFile.statements, (n) => isExportDeclaration(n) && !!n.moduleSpecifier && !removedExports.has(n)); if (lastReExport) { changes.insertNodesBefore(targetFile, lastReExport, statements, true); } else { changes.insertNodesAfter(targetFile, targetFile.statements[targetFile.statements.length - 1], statements); } } function getOverloadRangeToMove(sourceFile, statement) { if (isFunctionLikeDeclaration(statement)) { const declarations = statement.symbol.declarations; if (declarations === undefined || length(declarations) <= 1 || !contains(declarations, statement)) { return; } const firstDecl = declarations[0]; const lastDecl = declarations[length(declarations) - 1]; const statementsToMove = mapDefined(declarations, (d) => getSourceFileOfNode(d) === sourceFile && isStatement(d) ? d : undefined); const end = findIndex(sourceFile.statements, (s) => s.end >= lastDecl.end); const start = findIndex(sourceFile.statements, (s) => s.end >= firstDecl.end); return { toMove: statementsToMove, start, end }; } return; } function getExistingLocals(sourceFile, statements, checker) { const existingLocals = /* @__PURE__ */ new Set; for (const moduleSpecifier of sourceFile.imports) { const declaration = importFromModuleSpecifier(moduleSpecifier); if (isImportDeclaration(declaration) && declaration.importClause && declaration.importClause.namedBindings && isNamedImports(declaration.importClause.namedBindings)) { for (const e of declaration.importClause.namedBindings.elements) { const symbol = checker.getSymbolAtLocation(e.propertyName || e.name); if (symbol) { existingLocals.add(skipAlias(symbol, checker)); } } } if (isVariableDeclarationInitializedToRequire(declaration.parent) && isObjectBindingPattern(declaration.parent.name)) { for (const e of declaration.parent.name.elements) { const symbol = checker.getSymbolAtLocation(e.propertyName || e.name); if (symbol) { existingLocals.add(skipAlias(symbol, checker)); } } } } for (const statement of statements) { forEachReference(statement, checker, undefined, (s) => { const symbol = skipAlias(s, checker); if (symbol.valueDeclaration && getSourceFileOfNode(symbol.valueDeclaration).path === sourceFile.path) { existingLocals.add(symbol); } }); } return existingLocals; } function isRefactorErrorInfo(info) { return info.error !== undefined; } function refactorKindBeginsWith(known, requested) { if (!requested) return true; return known.substr(0, requested.length) === requested; } function getIdentifierForNode(node, scope, checker, file) { return isPropertyAccessExpression(node) && !isClassLike(scope) && !checker.resolveName(node.name.text, node, 111551, false) && !isPrivateIdentifier(node.name) && !identifierToKeywordKind(node.name) ? node.name.text : getUniqueName(isClassLike(scope) ? "newProperty" : "newLocal", file); } function addTargetFileImports(oldFile, importsToCopy, targetFileImportsFromOldFile, checker, program, importAdder) { importsToCopy.forEach(([isValidTypeOnlyUseSite, declaration], symbol) => { var _a; const targetSymbol = skipAlias(symbol, checker); if (checker.isUnknownSymbol(targetSymbol)) { importAdder.addVerbatimImport(Debug.checkDefined(declaration ?? findAncestor((_a = symbol.declarations) == null ? undefined : _a[0], isAnyImportOrRequireStatement))); } else if (targetSymbol.parent === undefined) { Debug.assert(declaration !== undefined, "expected module symbol to have a declaration"); importAdder.addImportForModuleSymbol(symbol, isValidTypeOnlyUseSite, declaration); } else { importAdder.addImportFromExportedSymbol(targetSymbol, isValidTypeOnlyUseSite, declaration); } }); addImportsForMovedSymbols(targetFileImportsFromOldFile, oldFile.fileName, importAdder, program); } var refactorName4 = "Inline variable"; var refactorDescription = getLocaleSpecificMessage(Diagnostics.Inline_variable); var inlineVariableAction = { name: refactorName4, description: refactorDescription, kind: "refactor.inline.variable" }; registerRefactor(refactorName4, { kinds: [inlineVariableAction.kind], getAvailableActions(context) { const { file, program, preferences, startPosition, triggerReason } = context; const info = getInliningInfo(file, startPosition, triggerReason === "invoked", program); if (!info) { return emptyArray; } if (!ts_refactor_exports.isRefactorErrorInfo(info)) { return [{ name: refactorName4, description: refactorDescription, actions: [inlineVariableAction] }]; } if (preferences.provideRefactorNotApplicableReason) { return [{ name: refactorName4, description: refactorDescription, actions: [{ ...inlineVariableAction, notApplicableReason: info.error }] }]; } return emptyArray; }, getEditsForAction(context, actionName2) { Debug.assert(actionName2 === refactorName4, "Unexpected refactor invoked"); const { file, program, startPosition } = context; const info = getInliningInfo(file, startPosition, true, program); if (!info || ts_refactor_exports.isRefactorErrorInfo(info)) { return; } const { references, declaration, replacement } = info; const edits = ts_textChanges_exports.ChangeTracker.with(context, (tracker) => { for (const node of references) { const closestStringIdentifierParent = isStringLiteral(replacement) && isIdentifier(node) && walkUpParenthesizedExpressions(node.parent); if (closestStringIdentifierParent && isTemplateSpan(closestStringIdentifierParent) && !isTaggedTemplateExpression(closestStringIdentifierParent.parent.parent)) { replaceTemplateStringVariableWithLiteral(tracker, file, closestStringIdentifierParent, replacement); } else { tracker.replaceNode(file, node, getReplacementExpression(node, replacement)); } } tracker.delete(file, declaration); }); return { edits }; } }); function getInliningInfo(file, startPosition, tryWithReferenceToken, program) { var _a, _b; const checker = program.getTypeChecker(); const token = getTouchingPropertyName(file, startPosition); const parent2 = token.parent; if (!isIdentifier(token)) { return; } if (isInitializedVariable(parent2) && isVariableDeclarationInVariableStatement(parent2) && isIdentifier(parent2.name)) { if (((_a = checker.getMergedSymbol(parent2.symbol).declarations) == null ? undefined : _a.length) !== 1) { return { error: getLocaleSpecificMessage(Diagnostics.Variables_with_multiple_declarations_cannot_be_inlined) }; } if (isDeclarationExported(parent2)) { return; } const references = getReferenceNodes(parent2, checker, file); return references && { references, declaration: parent2, replacement: parent2.initializer }; } if (tryWithReferenceToken) { let definition = checker.resolveName(token.text, token, 111551, false); definition = definition && checker.getMergedSymbol(definition); if (((_b = definition == null ? undefined : definition.declarations) == null ? undefined : _b.length) !== 1) { return { error: getLocaleSpecificMessage(Diagnostics.Variables_with_multiple_declarations_cannot_be_inlined) }; } const declaration = definition.declarations[0]; if (!isInitializedVariable(declaration) || !isVariableDeclarationInVariableStatement(declaration) || !isIdentifier(declaration.name)) { return; } if (isDeclarationExported(declaration)) { return; } const references = getReferenceNodes(declaration, checker, file); return references && { references, declaration, replacement: declaration.initializer }; } return { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_variable_to_inline) }; } function isDeclarationExported(declaration) { const variableStatement = cast(declaration.parent.parent, isVariableStatement); return some(variableStatement.modifiers, isExportModifier); } function getReferenceNodes(declaration, checker, file) { const references = []; const cannotInline = ts_FindAllReferences_exports.Core.eachSymbolReferenceInFile(declaration.name, checker, file, (ref) => { if (ts_FindAllReferences_exports.isWriteAccessForReference(ref) && !isShorthandPropertyAssignment(ref.parent)) { return true; } if (isExportSpecifier(ref.parent) || isExportAssignment(ref.parent)) { return true; } if (isTypeQueryNode(ref.parent)) { return true; } if (textRangeContainsPositionInclusive(declaration, ref.pos)) { return true; } references.push(ref); }); return references.length === 0 || cannotInline ? undefined : references; } function getReplacementExpression(reference, replacement) { replacement = getSynthesizedDeepClone(replacement); const { parent: parent2 } = reference; if (isExpression(parent2) && (getExpressionPrecedence(replacement) < getExpressionPrecedence(parent2) || needsParentheses(parent2))) { return factory.createParenthesizedExpression(replacement); } if (isFunctionLike(replacement) && (isCallLikeExpression(parent2) || isPropertyAccessExpression(parent2))) { return factory.createParenthesizedExpression(replacement); } if (isPropertyAccessExpression(parent2) && (isNumericLiteral(replacement) || isObjectLiteralExpression(replacement))) { return factory.createParenthesizedExpression(replacement); } if (isIdentifier(reference) && isShorthandPropertyAssignment(parent2)) { return factory.createPropertyAssignment(reference, replacement); } return replacement; } function replaceTemplateStringVariableWithLiteral(tracker, sourceFile, reference, replacement) { const templateExpression = reference.parent; const index = templateExpression.templateSpans.indexOf(reference); const prevNode = index === 0 ? templateExpression.head : templateExpression.templateSpans[index - 1]; tracker.replaceRangeWithText(sourceFile, { pos: prevNode.getEnd() - 2, end: reference.literal.getStart() + 1 }, replacement.text.replace(/\\/g, "\\\\").replace(/`/g, "\\`")); } var refactorName5 = "Move to a new file"; var description2 = getLocaleSpecificMessage(Diagnostics.Move_to_a_new_file); var moveToNewFileAction = { name: refactorName5, description: description2, kind: "refactor.move.newFile" }; registerRefactor(refactorName5, { kinds: [moveToNewFileAction.kind], getAvailableActions: function getRefactorActionsToMoveToNewFile(context) { const statements = getStatementsToMove(context); const file = context.file; if (context.triggerReason === "implicit" && context.endPosition !== undefined) { const startNodeAncestor = findAncestor(getTokenAtPosition(file, context.startPosition), isBlockLike); const endNodeAncestor = findAncestor(getTokenAtPosition(file, context.endPosition), isBlockLike); if (startNodeAncestor && !isSourceFile(startNodeAncestor) && endNodeAncestor && !isSourceFile(endNodeAncestor)) { return emptyArray; } } if (context.preferences.allowTextChangesInNewFiles && statements) { const file2 = context.file; const affectedTextRange = { start: { line: getLineAndCharacterOfPosition(file2, statements.all[0].getStart(file2)).line, offset: getLineAndCharacterOfPosition(file2, statements.all[0].getStart(file2)).character }, end: { line: getLineAndCharacterOfPosition(file2, last(statements.all).end).line, offset: getLineAndCharacterOfPosition(file2, last(statements.all).end).character } }; return [{ name: refactorName5, description: description2, actions: [{ ...moveToNewFileAction, range: affectedTextRange }] }]; } if (context.preferences.provideRefactorNotApplicableReason) { return [{ name: refactorName5, description: description2, actions: [{ ...moveToNewFileAction, notApplicableReason: getLocaleSpecificMessage(Diagnostics.Selection_is_not_a_valid_statement_or_statements) }] }]; } return emptyArray; }, getEditsForAction: function getRefactorEditsToMoveToNewFile(context, actionName2) { Debug.assert(actionName2 === refactorName5, "Wrong refactor invoked"); const statements = Debug.checkDefined(getStatementsToMove(context)); const edits = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange4(context.file, context.program, statements, t, context.host, context, context.preferences)); return { edits, renameFilename: undefined, renameLocation: undefined }; } }); function doChange4(oldFile, program, toMove, changes, host, context, preferences) { const checker = program.getTypeChecker(); const usage = getUsageInfo(oldFile, toMove.all, checker); const newFilename = createNewFileName(oldFile, program, host, toMove); const newSourceFile = createFutureSourceFile(newFilename, oldFile.externalModuleIndicator ? 99 : oldFile.commonJsModuleIndicator ? 1 : undefined, program, host); const importAdderForOldFile = ts_codefix_exports.createImportAdder(oldFile, context.program, context.preferences, context.host); const importAdderForNewFile = ts_codefix_exports.createImportAdder(newSourceFile, context.program, context.preferences, context.host); getNewStatementsAndRemoveFromOldFile(oldFile, newSourceFile, usage, changes, toMove, program, host, preferences, importAdderForNewFile, importAdderForOldFile); addNewFileToTsconfig(program, changes, oldFile.fileName, newFilename, hostGetCanonicalFileName(host)); } var ts_refactor_addOrRemoveBracesToArrowFunction_exports = {}; var refactorName6 = "Convert overload list to single signature"; var refactorDescription2 = getLocaleSpecificMessage(Diagnostics.Convert_overload_list_to_single_signature); var functionOverloadAction = { name: refactorName6, description: refactorDescription2, kind: "refactor.rewrite.function.overloadList" }; registerRefactor(refactorName6, { kinds: [functionOverloadAction.kind], getEditsForAction: getRefactorEditsToConvertOverloadsToOneSignature, getAvailableActions: getRefactorActionsToConvertOverloadsToOneSignature }); function getRefactorActionsToConvertOverloadsToOneSignature(context) { const { file, startPosition, program } = context; const info = getConvertableOverloadListAtPosition(file, startPosition, program); if (!info) return emptyArray; return [{ name: refactorName6, description: refactorDescription2, actions: [functionOverloadAction] }]; } function getRefactorEditsToConvertOverloadsToOneSignature(context) { const { file, startPosition, program } = context; const signatureDecls = getConvertableOverloadListAtPosition(file, startPosition, program); if (!signatureDecls) return; const checker = program.getTypeChecker(); const lastDeclaration = signatureDecls[signatureDecls.length - 1]; let updated = lastDeclaration; switch (lastDeclaration.kind) { case 174: { updated = factory.updateMethodSignature(lastDeclaration, lastDeclaration.modifiers, lastDeclaration.name, lastDeclaration.questionToken, lastDeclaration.typeParameters, getNewParametersForCombinedSignature(signatureDecls), lastDeclaration.type); break; } case 175: { updated = factory.updateMethodDeclaration(lastDeclaration, lastDeclaration.modifiers, lastDeclaration.asteriskToken, lastDeclaration.name, lastDeclaration.questionToken, lastDeclaration.typeParameters, getNewParametersForCombinedSignature(signatureDecls), lastDeclaration.type, lastDeclaration.body); break; } case 180: { updated = factory.updateCallSignature(lastDeclaration, lastDeclaration.typeParameters, getNewParametersForCombinedSignature(signatureDecls), lastDeclaration.type); break; } case 177: { updated = factory.updateConstructorDeclaration(lastDeclaration, lastDeclaration.modifiers, getNewParametersForCombinedSignature(signatureDecls), lastDeclaration.body); break; } case 181: { updated = factory.updateConstructSignature(lastDeclaration, lastDeclaration.typeParameters, getNewParametersForCombinedSignature(signatureDecls), lastDeclaration.type); break; } case 263: { updated = factory.updateFunctionDeclaration(lastDeclaration, lastDeclaration.modifiers, lastDeclaration.asteriskToken, lastDeclaration.name, lastDeclaration.typeParameters, getNewParametersForCombinedSignature(signatureDecls), lastDeclaration.type, lastDeclaration.body); break; } default: return Debug.failBadSyntaxKind(lastDeclaration, "Unhandled signature kind in overload list conversion refactoring"); } if (updated === lastDeclaration) { return; } const edits = ts_textChanges_exports.ChangeTracker.with(context, (t) => { t.replaceNodeRange(file, signatureDecls[0], signatureDecls[signatureDecls.length - 1], updated); }); return { renameFilename: undefined, renameLocation: undefined, edits }; function getNewParametersForCombinedSignature(signatureDeclarations) { const lastSig = signatureDeclarations[signatureDeclarations.length - 1]; if (isFunctionLikeDeclaration(lastSig) && lastSig.body) { signatureDeclarations = signatureDeclarations.slice(0, signatureDeclarations.length - 1); } return factory.createNodeArray([ factory.createParameterDeclaration(undefined, factory.createToken(26), "args", undefined, factory.createUnionTypeNode(map(signatureDeclarations, convertSignatureParametersToTuple))) ]); } function convertSignatureParametersToTuple(decl) { const members = map(decl.parameters, convertParameterToNamedTupleMember); return setEmitFlags(factory.createTupleTypeNode(members), some(members, (m) => !!length(getSyntheticLeadingComments(m))) ? 0 : 1); } function convertParameterToNamedTupleMember(p) { Debug.assert(isIdentifier(p.name)); const result = setTextRange(factory.createNamedTupleMember(p.dotDotDotToken, p.name, p.questionToken, p.type || factory.createKeywordTypeNode(133)), p); const parameterDocComment = p.symbol && p.symbol.getDocumentationComment(checker); if (parameterDocComment) { const newComment = displayPartsToString(parameterDocComment); if (newComment.length) { setSyntheticLeadingComments(result, [{ text: `* ${newComment.split(` `).map((c) => ` * ${c}`).join(` `)} `, kind: 3, pos: -1, end: -1, hasTrailingNewLine: true, hasLeadingNewline: true }]); } } return result; } } function isConvertableSignatureDeclaration(d) { switch (d.kind) { case 174: case 175: case 180: case 177: case 181: case 263: return true; } return false; } function getConvertableOverloadListAtPosition(file, startPosition, program) { const node = getTokenAtPosition(file, startPosition); const containingDecl = findAncestor(node, isConvertableSignatureDeclaration); if (!containingDecl) { return; } if (isFunctionLikeDeclaration(containingDecl) && containingDecl.body && rangeContainsPosition(containingDecl.body, startPosition)) { return; } const checker = program.getTypeChecker(); const signatureSymbol = containingDecl.symbol; if (!signatureSymbol) { return; } const decls = signatureSymbol.declarations; if (length(decls) <= 1) { return; } if (!every(decls, (d) => getSourceFileOfNode(d) === file)) { return; } if (!isConvertableSignatureDeclaration(decls[0])) { return; } const kindOne = decls[0].kind; if (!every(decls, (d) => d.kind === kindOne)) { return; } const signatureDecls = decls; if (some(signatureDecls, (d) => !!d.typeParameters || some(d.parameters, (p) => !!p.modifiers || !isIdentifier(p.name)))) { return; } const signatures = mapDefined(signatureDecls, (d) => checker.getSignatureFromDeclaration(d)); if (length(signatures) !== length(decls)) { return; } const returnOne = checker.getReturnTypeOfSignature(signatures[0]); if (!every(signatures, (s) => checker.getReturnTypeOfSignature(s) === returnOne)) { return; } return signatureDecls; } var refactorName7 = "Add or remove braces in an arrow function"; var refactorDescription3 = getLocaleSpecificMessage(Diagnostics.Add_or_remove_braces_in_an_arrow_function); var addBracesAction = { name: "Add braces to arrow function", description: getLocaleSpecificMessage(Diagnostics.Add_braces_to_arrow_function), kind: "refactor.rewrite.arrow.braces.add" }; var removeBracesAction = { name: "Remove braces from arrow function", description: getLocaleSpecificMessage(Diagnostics.Remove_braces_from_arrow_function), kind: "refactor.rewrite.arrow.braces.remove" }; registerRefactor(refactorName7, { kinds: [removeBracesAction.kind], getEditsForAction: getRefactorEditsToRemoveFunctionBraces, getAvailableActions: getRefactorActionsToRemoveFunctionBraces }); function getRefactorActionsToRemoveFunctionBraces(context) { const { file, startPosition, triggerReason } = context; const info = getConvertibleArrowFunctionAtPosition(file, startPosition, triggerReason === "invoked"); if (!info) return emptyArray; if (!isRefactorErrorInfo(info)) { return [{ name: refactorName7, description: refactorDescription3, actions: [ info.addBraces ? addBracesAction : removeBracesAction ] }]; } if (context.preferences.provideRefactorNotApplicableReason) { return [{ name: refactorName7, description: refactorDescription3, actions: [ { ...addBracesAction, notApplicableReason: info.error }, { ...removeBracesAction, notApplicableReason: info.error } ] }]; } return emptyArray; } function getRefactorEditsToRemoveFunctionBraces(context, actionName2) { const { file, startPosition } = context; const info = getConvertibleArrowFunctionAtPosition(file, startPosition); Debug.assert(info && !isRefactorErrorInfo(info), "Expected applicable refactor info"); const { expression, returnStatement, func } = info; let body; if (actionName2 === addBracesAction.name) { const returnStatement2 = factory.createReturnStatement(expression); body = factory.createBlock([returnStatement2], true); copyLeadingComments(expression, returnStatement2, file, 3, true); } else if (actionName2 === removeBracesAction.name && returnStatement) { const actualExpression = expression || factory.createVoidZero(); body = needsParentheses(actualExpression) ? factory.createParenthesizedExpression(actualExpression) : actualExpression; copyTrailingAsLeadingComments(returnStatement, body, file, 3, false); copyLeadingComments(returnStatement, body, file, 3, false); copyTrailingComments(returnStatement, body, file, 3, false); } else { Debug.fail("invalid action"); } const edits = ts_textChanges_exports.ChangeTracker.with(context, (t) => { t.replaceNode(file, func.body, body); }); return { renameFilename: undefined, renameLocation: undefined, edits }; } function getConvertibleArrowFunctionAtPosition(file, startPosition, considerFunctionBodies = true, kind) { const node = getTokenAtPosition(file, startPosition); const func = getContainingFunction(node); if (!func) { return { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_a_containing_arrow_function) }; } if (!isArrowFunction(func)) { return { error: getLocaleSpecificMessage(Diagnostics.Containing_function_is_not_an_arrow_function) }; } if (!rangeContainsRange(func, node) || rangeContainsRange(func.body, node) && !considerFunctionBodies) { return; } if (refactorKindBeginsWith(addBracesAction.kind, kind) && isExpression(func.body)) { return { func, addBraces: true, expression: func.body }; } else if (refactorKindBeginsWith(removeBracesAction.kind, kind) && isBlock(func.body) && func.body.statements.length === 1) { const firstStatement = first(func.body.statements); if (isReturnStatement(firstStatement)) { const expression = firstStatement.expression && isObjectLiteralExpression(getLeftmostExpression(firstStatement.expression, false)) ? factory.createParenthesizedExpression(firstStatement.expression) : firstStatement.expression; return { func, addBraces: false, expression, returnStatement: firstStatement }; } } return; } var ts_refactor_convertArrowFunctionOrFunctionExpression_exports = {}; var refactorName8 = "Convert arrow function or function expression"; var refactorDescription4 = getLocaleSpecificMessage(Diagnostics.Convert_arrow_function_or_function_expression); var toAnonymousFunctionAction = { name: "Convert to anonymous function", description: getLocaleSpecificMessage(Diagnostics.Convert_to_anonymous_function), kind: "refactor.rewrite.function.anonymous" }; var toNamedFunctionAction = { name: "Convert to named function", description: getLocaleSpecificMessage(Diagnostics.Convert_to_named_function), kind: "refactor.rewrite.function.named" }; var toArrowFunctionAction = { name: "Convert to arrow function", description: getLocaleSpecificMessage(Diagnostics.Convert_to_arrow_function), kind: "refactor.rewrite.function.arrow" }; registerRefactor(refactorName8, { kinds: [ toAnonymousFunctionAction.kind, toNamedFunctionAction.kind, toArrowFunctionAction.kind ], getEditsForAction: getRefactorEditsToConvertFunctionExpressions, getAvailableActions: getRefactorActionsToConvertFunctionExpressions }); function getRefactorActionsToConvertFunctionExpressions(context) { const { file, startPosition, program, kind } = context; const info = getFunctionInfo(file, startPosition, program); if (!info) return emptyArray; const { selectedVariableDeclaration, func } = info; const possibleActions = []; const errors = []; if (refactorKindBeginsWith(toNamedFunctionAction.kind, kind)) { const error2 = selectedVariableDeclaration || isArrowFunction(func) && isVariableDeclaration(func.parent) ? undefined : getLocaleSpecificMessage(Diagnostics.Could_not_convert_to_named_function); if (error2) { errors.push({ ...toNamedFunctionAction, notApplicableReason: error2 }); } else { possibleActions.push(toNamedFunctionAction); } } if (refactorKindBeginsWith(toAnonymousFunctionAction.kind, kind)) { const error2 = !selectedVariableDeclaration && isArrowFunction(func) ? undefined : getLocaleSpecificMessage(Diagnostics.Could_not_convert_to_anonymous_function); if (error2) { errors.push({ ...toAnonymousFunctionAction, notApplicableReason: error2 }); } else { possibleActions.push(toAnonymousFunctionAction); } } if (refactorKindBeginsWith(toArrowFunctionAction.kind, kind)) { const error2 = isFunctionExpression(func) ? undefined : getLocaleSpecificMessage(Diagnostics.Could_not_convert_to_arrow_function); if (error2) { errors.push({ ...toArrowFunctionAction, notApplicableReason: error2 }); } else { possibleActions.push(toArrowFunctionAction); } } return [{ name: refactorName8, description: refactorDescription4, actions: possibleActions.length === 0 && context.preferences.provideRefactorNotApplicableReason ? errors : possibleActions }]; } function getRefactorEditsToConvertFunctionExpressions(context, actionName2) { const { file, startPosition, program } = context; const info = getFunctionInfo(file, startPosition, program); if (!info) return; const { func } = info; const edits = []; switch (actionName2) { case toAnonymousFunctionAction.name: edits.push(...getEditInfoForConvertToAnonymousFunction(context, func)); break; case toNamedFunctionAction.name: const variableInfo = getVariableInfo(func); if (!variableInfo) return; edits.push(...getEditInfoForConvertToNamedFunction(context, func, variableInfo)); break; case toArrowFunctionAction.name: if (!isFunctionExpression(func)) return; edits.push(...getEditInfoForConvertToArrowFunction(context, func)); break; default: return Debug.fail("invalid action"); } return { renameFilename: undefined, renameLocation: undefined, edits }; } function containingThis(node) { let containsThis = false; node.forEachChild(function checkThis(child) { if (isThis(child)) { containsThis = true; return; } if (!isClassLike(child) && !isFunctionDeclaration(child) && !isFunctionExpression(child)) { forEachChild(child, checkThis); } }); return containsThis; } function getFunctionInfo(file, startPosition, program) { const token = getTokenAtPosition(file, startPosition); const typeChecker = program.getTypeChecker(); const func = tryGetFunctionFromVariableDeclaration(file, typeChecker, token.parent); if (func && !containingThis(func.body) && !typeChecker.containsArgumentsReference(func)) { return { selectedVariableDeclaration: true, func }; } const maybeFunc = getContainingFunction(token); if (maybeFunc && (isFunctionExpression(maybeFunc) || isArrowFunction(maybeFunc)) && !rangeContainsRange(maybeFunc.body, token) && !containingThis(maybeFunc.body) && !typeChecker.containsArgumentsReference(maybeFunc)) { if (isFunctionExpression(maybeFunc) && isFunctionReferencedInFile(file, typeChecker, maybeFunc)) return; return { selectedVariableDeclaration: false, func: maybeFunc }; } return; } function isSingleVariableDeclaration(parent2) { return isVariableDeclaration(parent2) || isVariableDeclarationList(parent2) && parent2.declarations.length === 1; } function tryGetFunctionFromVariableDeclaration(sourceFile, typeChecker, parent2) { if (!isSingleVariableDeclaration(parent2)) { return; } const variableDeclaration = isVariableDeclaration(parent2) ? parent2 : first(parent2.declarations); const initializer = variableDeclaration.initializer; if (initializer && (isArrowFunction(initializer) || isFunctionExpression(initializer) && !isFunctionReferencedInFile(sourceFile, typeChecker, initializer))) { return initializer; } return; } function convertToBlock(body) { if (isExpression(body)) { const returnStatement = factory.createReturnStatement(body); const file = body.getSourceFile(); setTextRange(returnStatement, body); suppressLeadingAndTrailingTrivia(returnStatement); copyTrailingAsLeadingComments(body, returnStatement, file, undefined, true); return factory.createBlock([returnStatement], true); } else { return body; } } function getVariableInfo(func) { const variableDeclaration = func.parent; if (!isVariableDeclaration(variableDeclaration) || !isVariableDeclarationInVariableStatement(variableDeclaration)) return; const variableDeclarationList = variableDeclaration.parent; const statement = variableDeclarationList.parent; if (!isVariableDeclarationList(variableDeclarationList) || !isVariableStatement(statement) || !isIdentifier(variableDeclaration.name)) return; return { variableDeclaration, variableDeclarationList, statement, name: variableDeclaration.name }; } function getEditInfoForConvertToAnonymousFunction(context, func) { const { file } = context; const body = convertToBlock(func.body); const newNode = factory.createFunctionExpression(func.modifiers, func.asteriskToken, undefined, func.typeParameters, func.parameters, func.type, body); return ts_textChanges_exports.ChangeTracker.with(context, (t) => t.replaceNode(file, func, newNode)); } function getEditInfoForConvertToNamedFunction(context, func, variableInfo) { const { file } = context; const body = convertToBlock(func.body); const { variableDeclaration, variableDeclarationList, statement, name } = variableInfo; suppressLeadingTrivia(statement); const modifiersFlags = getCombinedModifierFlags(variableDeclaration) & 32 | getEffectiveModifierFlags(func); const modifiers = factory.createModifiersFromModifierFlags(modifiersFlags); const newNode = factory.createFunctionDeclaration(length(modifiers) ? modifiers : undefined, func.asteriskToken, name, func.typeParameters, func.parameters, func.type, body); if (variableDeclarationList.declarations.length === 1) { return ts_textChanges_exports.ChangeTracker.with(context, (t) => t.replaceNode(file, statement, newNode)); } else { return ts_textChanges_exports.ChangeTracker.with(context, (t) => { t.delete(file, variableDeclaration); t.insertNodeAfter(file, statement, newNode); }); } } function getEditInfoForConvertToArrowFunction(context, func) { const { file } = context; const statements = func.body.statements; const head = statements[0]; let body; if (canBeConvertedToExpression(func.body, head)) { body = head.expression; suppressLeadingAndTrailingTrivia(body); copyComments(head, body); } else { body = func.body; } const newNode = factory.createArrowFunction(func.modifiers, func.typeParameters, func.parameters, func.type, factory.createToken(39), body); return ts_textChanges_exports.ChangeTracker.with(context, (t) => t.replaceNode(file, func, newNode)); } function canBeConvertedToExpression(body, head) { return body.statements.length === 1 && (isReturnStatement(head) && !!head.expression); } function isFunctionReferencedInFile(sourceFile, typeChecker, node) { return !!node.name && ts_FindAllReferences_exports.Core.isSymbolReferencedInFile(node.name, typeChecker, sourceFile); } var ts_refactor_convertParamsToDestructuredObject_exports = {}; var refactorName9 = "Convert parameters to destructured object"; var minimumParameterLength = 1; var refactorDescription5 = getLocaleSpecificMessage(Diagnostics.Convert_parameters_to_destructured_object); var toDestructuredAction = { name: refactorName9, description: refactorDescription5, kind: "refactor.rewrite.parameters.toDestructured" }; registerRefactor(refactorName9, { kinds: [toDestructuredAction.kind], getEditsForAction: getRefactorEditsToConvertParametersToDestructuredObject, getAvailableActions: getRefactorActionsToConvertParametersToDestructuredObject }); function getRefactorActionsToConvertParametersToDestructuredObject(context) { const { file, startPosition } = context; const isJSFile = isSourceFileJS(file); if (isJSFile) return emptyArray; const functionDeclaration = getFunctionDeclarationAtPosition(file, startPosition, context.program.getTypeChecker()); if (!functionDeclaration) return emptyArray; return [{ name: refactorName9, description: refactorDescription5, actions: [toDestructuredAction] }]; } function getRefactorEditsToConvertParametersToDestructuredObject(context, actionName2) { Debug.assert(actionName2 === refactorName9, "Unexpected action name"); const { file, startPosition, program, cancellationToken, host } = context; const functionDeclaration = getFunctionDeclarationAtPosition(file, startPosition, program.getTypeChecker()); if (!functionDeclaration || !cancellationToken) return; const groupedReferences = getGroupedReferences(functionDeclaration, program, cancellationToken); if (groupedReferences.valid) { const edits = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange5(file, program, host, t, functionDeclaration, groupedReferences)); return { renameFilename: undefined, renameLocation: undefined, edits }; } return { edits: [] }; } function doChange5(sourceFile, program, host, changes, functionDeclaration, groupedReferences) { const signature = groupedReferences.signature; const newFunctionDeclarationParams = map(createNewParameters(functionDeclaration, program, host), (param) => getSynthesizedDeepClone(param)); if (signature) { const newSignatureParams = map(createNewParameters(signature, program, host), (param) => getSynthesizedDeepClone(param)); replaceParameters(signature, newSignatureParams); } replaceParameters(functionDeclaration, newFunctionDeclarationParams); const functionCalls = sortAndDeduplicate(groupedReferences.functionCalls, (a, b) => compareValues(a.pos, b.pos)); for (const call of functionCalls) { if (call.arguments && call.arguments.length) { const newArgument = getSynthesizedDeepClone(createNewArgument(functionDeclaration, call.arguments), true); changes.replaceNodeRange(getSourceFileOfNode(call), first(call.arguments), last(call.arguments), newArgument, { leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.IncludeAll, trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.Include }); } } function replaceParameters(declarationOrSignature, parameterDeclarations) { changes.replaceNodeRangeWithNodes(sourceFile, first(declarationOrSignature.parameters), last(declarationOrSignature.parameters), parameterDeclarations, { joiner: ", ", indentation: 0, leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.IncludeAll, trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.Include }); } } function getGroupedReferences(functionDeclaration, program, cancellationToken) { const functionNames = getFunctionNames(functionDeclaration); const classNames = isConstructorDeclaration(functionDeclaration) ? getClassNames(functionDeclaration) : []; const names = deduplicate([...functionNames, ...classNames], equateValues); const checker = program.getTypeChecker(); const references = flatMap(names, (name) => ts_FindAllReferences_exports.getReferenceEntriesForNode(-1, name, program, program.getSourceFiles(), cancellationToken)); const groupedReferences = groupReferences(references); if (!every(groupedReferences.declarations, (decl) => contains(names, decl))) { groupedReferences.valid = false; } return groupedReferences; function groupReferences(referenceEntries) { const classReferences = { accessExpressions: [], typeUsages: [] }; const groupedReferences2 = { functionCalls: [], declarations: [], classReferences, valid: true }; const functionSymbols = map(functionNames, getSymbolTargetAtLocation); const classSymbols = map(classNames, getSymbolTargetAtLocation); const isConstructor = isConstructorDeclaration(functionDeclaration); const contextualSymbols = map(functionNames, (name) => getSymbolForContextualType(name, checker)); for (const entry of referenceEntries) { if (entry.kind === ts_FindAllReferences_exports.EntryKind.Span) { groupedReferences2.valid = false; continue; } if (contains(contextualSymbols, getSymbolTargetAtLocation(entry.node))) { if (isValidMethodSignature(entry.node.parent)) { groupedReferences2.signature = entry.node.parent; continue; } const call = entryToFunctionCall(entry); if (call) { groupedReferences2.functionCalls.push(call); continue; } } const contextualSymbol = getSymbolForContextualType(entry.node, checker); if (contextualSymbol && contains(contextualSymbols, contextualSymbol)) { const decl = entryToDeclaration(entry); if (decl) { groupedReferences2.declarations.push(decl); continue; } } if (contains(functionSymbols, getSymbolTargetAtLocation(entry.node)) || isNewExpressionTarget(entry.node)) { const importOrExportReference = entryToImportOrExport(entry); if (importOrExportReference) { continue; } const decl = entryToDeclaration(entry); if (decl) { groupedReferences2.declarations.push(decl); continue; } const call = entryToFunctionCall(entry); if (call) { groupedReferences2.functionCalls.push(call); continue; } } if (isConstructor && contains(classSymbols, getSymbolTargetAtLocation(entry.node))) { const importOrExportReference = entryToImportOrExport(entry); if (importOrExportReference) { continue; } const decl = entryToDeclaration(entry); if (decl) { groupedReferences2.declarations.push(decl); continue; } const accessExpression = entryToAccessExpression(entry); if (accessExpression) { classReferences.accessExpressions.push(accessExpression); continue; } if (isClassDeclaration(functionDeclaration.parent)) { const type = entryToType(entry); if (type) { classReferences.typeUsages.push(type); continue; } } } groupedReferences2.valid = false; } return groupedReferences2; } function getSymbolTargetAtLocation(node) { const symbol = checker.getSymbolAtLocation(node); return symbol && getSymbolTarget(symbol, checker); } } function getSymbolForContextualType(node, checker) { const element = getContainingObjectLiteralElement(node); if (element) { const contextualType = checker.getContextualTypeForObjectLiteralElement(element); const symbol = contextualType == null ? undefined : contextualType.getSymbol(); if (symbol && !(getCheckFlags(symbol) & 6)) { return symbol; } } } function entryToImportOrExport(entry) { const node = entry.node; if (isImportSpecifier(node.parent) || isImportClause(node.parent) || isImportEqualsDeclaration(node.parent) || isNamespaceImport(node.parent)) { return node; } if (isExportSpecifier(node.parent) || isExportAssignment(node.parent)) { return node; } return; } function entryToDeclaration(entry) { if (isDeclaration(entry.node.parent)) { return entry.node; } return; } function entryToFunctionCall(entry) { if (entry.node.parent) { const functionReference = entry.node; const parent2 = functionReference.parent; switch (parent2.kind) { case 214: case 215: const callOrNewExpression = tryCast(parent2, isCallOrNewExpression); if (callOrNewExpression && callOrNewExpression.expression === functionReference) { return callOrNewExpression; } break; case 212: const propertyAccessExpression = tryCast(parent2, isPropertyAccessExpression); if (propertyAccessExpression && propertyAccessExpression.parent && propertyAccessExpression.name === functionReference) { const callOrNewExpression2 = tryCast(propertyAccessExpression.parent, isCallOrNewExpression); if (callOrNewExpression2 && callOrNewExpression2.expression === propertyAccessExpression) { return callOrNewExpression2; } } break; case 213: const elementAccessExpression = tryCast(parent2, isElementAccessExpression); if (elementAccessExpression && elementAccessExpression.parent && elementAccessExpression.argumentExpression === functionReference) { const callOrNewExpression2 = tryCast(elementAccessExpression.parent, isCallOrNewExpression); if (callOrNewExpression2 && callOrNewExpression2.expression === elementAccessExpression) { return callOrNewExpression2; } } break; } } return; } function entryToAccessExpression(entry) { if (entry.node.parent) { const reference = entry.node; const parent2 = reference.parent; switch (parent2.kind) { case 212: const propertyAccessExpression = tryCast(parent2, isPropertyAccessExpression); if (propertyAccessExpression && propertyAccessExpression.expression === reference) { return propertyAccessExpression; } break; case 213: const elementAccessExpression = tryCast(parent2, isElementAccessExpression); if (elementAccessExpression && elementAccessExpression.expression === reference) { return elementAccessExpression; } break; } } return; } function entryToType(entry) { const reference = entry.node; if (getMeaningFromLocation(reference) === 2 || isExpressionWithTypeArgumentsInClassExtendsClause(reference.parent)) { return reference; } return; } function getFunctionDeclarationAtPosition(file, startPosition, checker) { const node = getTouchingToken(file, startPosition); const functionDeclaration = getContainingFunctionDeclaration(node); if (isTopLevelJSDoc(node)) return; if (functionDeclaration && isValidFunctionDeclaration(functionDeclaration, checker) && rangeContainsRange(functionDeclaration, node) && !(functionDeclaration.body && rangeContainsRange(functionDeclaration.body, node))) return functionDeclaration; return; } function isTopLevelJSDoc(node) { const containingJSDoc = findAncestor(node, isJSDocNode); if (containingJSDoc) { const containingNonJSDoc = findAncestor(containingJSDoc, (n) => !isJSDocNode(n)); return !!containingNonJSDoc && isFunctionLikeDeclaration(containingNonJSDoc); } return false; } function isValidMethodSignature(node) { return isMethodSignature(node) && (isInterfaceDeclaration(node.parent) || isTypeLiteralNode(node.parent)); } function isValidFunctionDeclaration(functionDeclaration, checker) { var _a; if (!isValidParameterNodeArray(functionDeclaration.parameters, checker)) return false; switch (functionDeclaration.kind) { case 263: return hasNameOrDefault(functionDeclaration) && isSingleImplementation(functionDeclaration, checker); case 175: if (isObjectLiteralExpression(functionDeclaration.parent)) { const contextualSymbol = getSymbolForContextualType(functionDeclaration.name, checker); return ((_a = contextualSymbol == null ? undefined : contextualSymbol.declarations) == null ? undefined : _a.length) === 1 && isSingleImplementation(functionDeclaration, checker); } return isSingleImplementation(functionDeclaration, checker); case 177: if (isClassDeclaration(functionDeclaration.parent)) { return hasNameOrDefault(functionDeclaration.parent) && isSingleImplementation(functionDeclaration, checker); } else { return isValidVariableDeclaration(functionDeclaration.parent.parent) && isSingleImplementation(functionDeclaration, checker); } case 219: case 220: return isValidVariableDeclaration(functionDeclaration.parent); } return false; } function isSingleImplementation(functionDeclaration, checker) { return !!functionDeclaration.body && !checker.isImplementationOfOverload(functionDeclaration); } function hasNameOrDefault(functionOrClassDeclaration) { if (!functionOrClassDeclaration.name) { const defaultKeyword = findModifier(functionOrClassDeclaration, 90); return !!defaultKeyword; } return true; } function isValidParameterNodeArray(parameters, checker) { return getRefactorableParametersLength(parameters) >= minimumParameterLength && every(parameters, (paramDecl) => isValidParameterDeclaration(paramDecl, checker)); } function isValidParameterDeclaration(parameterDeclaration, checker) { if (isRestParameter(parameterDeclaration)) { const type = checker.getTypeAtLocation(parameterDeclaration); if (!checker.isArrayType(type) && !checker.isTupleType(type)) return false; } return !parameterDeclaration.modifiers && isIdentifier(parameterDeclaration.name); } function isValidVariableDeclaration(node) { return isVariableDeclaration(node) && isVarConst(node) && isIdentifier(node.name) && !node.type; } function hasThisParameter(parameters) { return parameters.length > 0 && isThis(parameters[0].name); } function getRefactorableParametersLength(parameters) { if (hasThisParameter(parameters)) { return parameters.length - 1; } return parameters.length; } function getRefactorableParameters(parameters) { if (hasThisParameter(parameters)) { parameters = factory.createNodeArray(parameters.slice(1), parameters.hasTrailingComma); } return parameters; } function createPropertyOrShorthandAssignment(name, initializer) { if (isIdentifier(initializer) && getTextOfIdentifierOrLiteral(initializer) === name) { return factory.createShorthandPropertyAssignment(name); } return factory.createPropertyAssignment(name, initializer); } function createNewArgument(functionDeclaration, functionArguments) { const parameters = getRefactorableParameters(functionDeclaration.parameters); const hasRestParameter2 = isRestParameter(last(parameters)); const nonRestArguments = hasRestParameter2 ? functionArguments.slice(0, parameters.length - 1) : functionArguments; const properties = map(nonRestArguments, (arg, i) => { const parameterName = getParameterName(parameters[i]); const property = createPropertyOrShorthandAssignment(parameterName, arg); suppressLeadingAndTrailingTrivia(property.name); if (isPropertyAssignment(property)) suppressLeadingAndTrailingTrivia(property.initializer); copyComments(arg, property); return property; }); if (hasRestParameter2 && functionArguments.length >= parameters.length) { const restArguments = functionArguments.slice(parameters.length - 1); const restProperty = factory.createPropertyAssignment(getParameterName(last(parameters)), factory.createArrayLiteralExpression(restArguments)); properties.push(restProperty); } const objectLiteral = factory.createObjectLiteralExpression(properties, false); return objectLiteral; } function createNewParameters(functionDeclaration, program, host) { const checker = program.getTypeChecker(); const refactorableParameters = getRefactorableParameters(functionDeclaration.parameters); const bindingElements = map(refactorableParameters, createBindingElementFromParameterDeclaration); const objectParameterName = factory.createObjectBindingPattern(bindingElements); const objectParameterType = createParameterTypeNode(refactorableParameters); let objectInitializer; if (every(refactorableParameters, isOptionalParameter)) { objectInitializer = factory.createObjectLiteralExpression(); } const objectParameter = factory.createParameterDeclaration(undefined, undefined, objectParameterName, undefined, objectParameterType, objectInitializer); if (hasThisParameter(functionDeclaration.parameters)) { const thisParameter = functionDeclaration.parameters[0]; const newThisParameter = factory.createParameterDeclaration(undefined, undefined, thisParameter.name, undefined, thisParameter.type); suppressLeadingAndTrailingTrivia(newThisParameter.name); copyComments(thisParameter.name, newThisParameter.name); if (thisParameter.type) { suppressLeadingAndTrailingTrivia(newThisParameter.type); copyComments(thisParameter.type, newThisParameter.type); } return factory.createNodeArray([newThisParameter, objectParameter]); } return factory.createNodeArray([objectParameter]); function createBindingElementFromParameterDeclaration(parameterDeclaration) { const element = factory.createBindingElement(undefined, undefined, getParameterName(parameterDeclaration), isRestParameter(parameterDeclaration) && isOptionalParameter(parameterDeclaration) ? factory.createArrayLiteralExpression() : parameterDeclaration.initializer); suppressLeadingAndTrailingTrivia(element); if (parameterDeclaration.initializer && element.initializer) { copyComments(parameterDeclaration.initializer, element.initializer); } return element; } function createParameterTypeNode(parameters) { const members = map(parameters, createPropertySignatureFromParameterDeclaration); const typeNode = addEmitFlags(factory.createTypeLiteralNode(members), 1); return typeNode; } function createPropertySignatureFromParameterDeclaration(parameterDeclaration) { let parameterType = parameterDeclaration.type; if (!parameterType && (parameterDeclaration.initializer || isRestParameter(parameterDeclaration))) { parameterType = getTypeNode3(parameterDeclaration); } const propertySignature = factory.createPropertySignature(undefined, getParameterName(parameterDeclaration), isOptionalParameter(parameterDeclaration) ? factory.createToken(58) : parameterDeclaration.questionToken, parameterType); suppressLeadingAndTrailingTrivia(propertySignature); copyComments(parameterDeclaration.name, propertySignature.name); if (parameterDeclaration.type && propertySignature.type) { copyComments(parameterDeclaration.type, propertySignature.type); } return propertySignature; } function getTypeNode3(node) { const type = checker.getTypeAtLocation(node); return getTypeNodeIfAccessible(type, node, program, host); } function isOptionalParameter(parameterDeclaration) { if (isRestParameter(parameterDeclaration)) { const type = checker.getTypeAtLocation(parameterDeclaration); return !checker.isTupleType(type); } return checker.isOptionalParameter(parameterDeclaration); } } function getParameterName(paramDeclaration) { return getTextOfIdentifierOrLiteral(paramDeclaration.name); } function getClassNames(constructorDeclaration) { switch (constructorDeclaration.parent.kind) { case 264: const classDeclaration = constructorDeclaration.parent; if (classDeclaration.name) return [classDeclaration.name]; const defaultModifier = Debug.checkDefined(findModifier(classDeclaration, 90), "Nameless class declaration should be a default export"); return [defaultModifier]; case 232: const classExpression = constructorDeclaration.parent; const variableDeclaration = constructorDeclaration.parent.parent; const className = classExpression.name; if (className) return [className, variableDeclaration.name]; return [variableDeclaration.name]; } } function getFunctionNames(functionDeclaration) { switch (functionDeclaration.kind) { case 263: if (functionDeclaration.name) return [functionDeclaration.name]; const defaultModifier = Debug.checkDefined(findModifier(functionDeclaration, 90), "Nameless function declaration should be a default export"); return [defaultModifier]; case 175: return [functionDeclaration.name]; case 177: const ctrKeyword = Debug.checkDefined(findChildOfKind(functionDeclaration, 137, functionDeclaration.getSourceFile()), "Constructor declaration should have constructor keyword"); if (functionDeclaration.parent.kind === 232) { const variableDeclaration = functionDeclaration.parent.parent; return [variableDeclaration.name, ctrKeyword]; } return [ctrKeyword]; case 220: return [functionDeclaration.parent.name]; case 219: if (functionDeclaration.name) return [functionDeclaration.name, functionDeclaration.parent.name]; return [functionDeclaration.parent.name]; default: return Debug.assertNever(functionDeclaration, `Unexpected function declaration kind ${functionDeclaration.kind}`); } } var ts_refactor_convertStringOrTemplateLiteral_exports = {}; var refactorName10 = "Convert to template string"; var refactorDescription6 = getLocaleSpecificMessage(Diagnostics.Convert_to_template_string); var convertStringAction = { name: refactorName10, description: refactorDescription6, kind: "refactor.rewrite.string" }; registerRefactor(refactorName10, { kinds: [convertStringAction.kind], getEditsForAction: getRefactorEditsToConvertToTemplateString, getAvailableActions: getRefactorActionsToConvertToTemplateString }); function getRefactorActionsToConvertToTemplateString(context) { const { file, startPosition } = context; const node = getNodeOrParentOfParentheses(file, startPosition); const maybeBinary = getParentBinaryExpression(node); const nodeIsStringLiteral = isStringLiteral(maybeBinary); const refactorInfo = { name: refactorName10, description: refactorDescription6, actions: [] }; if (nodeIsStringLiteral && context.triggerReason !== "invoked") { return emptyArray; } if (isExpressionNode(maybeBinary) && (nodeIsStringLiteral || isBinaryExpression(maybeBinary) && treeToArray(maybeBinary).isValidConcatenation)) { refactorInfo.actions.push(convertStringAction); return [refactorInfo]; } else if (context.preferences.provideRefactorNotApplicableReason) { refactorInfo.actions.push({ ...convertStringAction, notApplicableReason: getLocaleSpecificMessage(Diagnostics.Can_only_convert_string_concatenations_and_string_literals) }); return [refactorInfo]; } return emptyArray; } function getNodeOrParentOfParentheses(file, startPosition) { const node = getTokenAtPosition(file, startPosition); const nestedBinary = getParentBinaryExpression(node); const isNonStringBinary = !treeToArray(nestedBinary).isValidConcatenation; if (isNonStringBinary && isParenthesizedExpression(nestedBinary.parent) && isBinaryExpression(nestedBinary.parent.parent)) { return nestedBinary.parent.parent; } return node; } function getRefactorEditsToConvertToTemplateString(context, actionName2) { const { file, startPosition } = context; const node = getNodeOrParentOfParentheses(file, startPosition); switch (actionName2) { case refactorDescription6: return { edits: getEditsForToTemplateLiteral(context, node) }; default: return Debug.fail("invalid action"); } } function getEditsForToTemplateLiteral(context, node) { const maybeBinary = getParentBinaryExpression(node); const file = context.file; const templateLiteral = nodesToTemplate(treeToArray(maybeBinary), file); const trailingCommentRanges = getTrailingCommentRanges(file.text, maybeBinary.end); if (trailingCommentRanges) { const lastComment = trailingCommentRanges[trailingCommentRanges.length - 1]; const trailingRange = { pos: trailingCommentRanges[0].pos, end: lastComment.end }; return ts_textChanges_exports.ChangeTracker.with(context, (t) => { t.deleteRange(file, trailingRange); t.replaceNode(file, maybeBinary, templateLiteral); }); } else { return ts_textChanges_exports.ChangeTracker.with(context, (t) => t.replaceNode(file, maybeBinary, templateLiteral)); } } function isNotEqualsOperator(node) { return !(node.operatorToken.kind === 64 || node.operatorToken.kind === 65); } function getParentBinaryExpression(expr) { const container = findAncestor(expr.parent, (n) => { switch (n.kind) { case 212: case 213: return false; case 229: case 227: return !(isBinaryExpression(n.parent) && isNotEqualsOperator(n.parent)); default: return "quit"; } }); return container || expr; } function treeToArray(current) { const loop = (current2) => { if (!isBinaryExpression(current2)) { return { nodes: [current2], operators: [], validOperators: true, hasString: isStringLiteral(current2) || isNoSubstitutionTemplateLiteral(current2) }; } const { nodes: nodes2, operators: operators2, hasString: leftHasString, validOperators: leftOperatorValid } = loop(current2.left); if (!(leftHasString || isStringLiteral(current2.right) || isTemplateExpression(current2.right))) { return { nodes: [current2], operators: [], hasString: false, validOperators: true }; } const currentOperatorValid = current2.operatorToken.kind === 40; const validOperators2 = leftOperatorValid && currentOperatorValid; nodes2.push(current2.right); operators2.push(current2.operatorToken); return { nodes: nodes2, operators: operators2, hasString: true, validOperators: validOperators2 }; }; const { nodes, operators, validOperators, hasString } = loop(current); return { nodes, operators, isValidConcatenation: validOperators && hasString }; } var copyTrailingOperatorComments = (operators, file) => (index, targetNode) => { if (index < operators.length) { copyTrailingComments(operators[index], targetNode, file, 3, false); } }; var copyCommentFromMultiNode = (nodes, file, copyOperatorComments) => (indexes, targetNode) => { while (indexes.length > 0) { const index = indexes.shift(); copyTrailingComments(nodes[index], targetNode, file, 3, false); copyOperatorComments(index, targetNode); } }; function escapeRawStringForTemplate(s) { return s.replace(/\\.|[$`]/g, (m) => m[0] === "\\" ? m : "\\" + m); } function getRawTextOfTemplate(node) { const rightShaving = isTemplateHead(node) || isTemplateMiddle(node) ? -2 : -1; return getTextOfNode(node).slice(1, rightShaving); } function concatConsecutiveString(index, nodes) { const indexes = []; let text = "", rawText = ""; while (index < nodes.length) { const node = nodes[index]; if (isStringLiteralLike(node)) { text += node.text; rawText += escapeRawStringForTemplate(getTextOfNode(node).slice(1, -1)); indexes.push(index); index++; } else if (isTemplateExpression(node)) { text += node.head.text; rawText += getRawTextOfTemplate(node.head); break; } else { break; } } return [index, text, rawText, indexes]; } function nodesToTemplate({ nodes, operators }, file) { const copyOperatorComments = copyTrailingOperatorComments(operators, file); const copyCommentFromStringLiterals = copyCommentFromMultiNode(nodes, file, copyOperatorComments); const [begin, headText, rawHeadText, headIndexes] = concatConsecutiveString(0, nodes); if (begin === nodes.length) { const noSubstitutionTemplateLiteral = factory.createNoSubstitutionTemplateLiteral(headText, rawHeadText); copyCommentFromStringLiterals(headIndexes, noSubstitutionTemplateLiteral); return noSubstitutionTemplateLiteral; } const templateSpans = []; const templateHead = factory.createTemplateHead(headText, rawHeadText); copyCommentFromStringLiterals(headIndexes, templateHead); for (let i = begin;i < nodes.length; i++) { const currentNode = getExpressionFromParenthesesOrExpression(nodes[i]); copyOperatorComments(i, currentNode); const [newIndex, subsequentText, rawSubsequentText, stringIndexes] = concatConsecutiveString(i + 1, nodes); i = newIndex - 1; const isLast = i === nodes.length - 1; if (isTemplateExpression(currentNode)) { const spans = map(currentNode.templateSpans, (span, index) => { copyExpressionComments(span); const isLastSpan = index === currentNode.templateSpans.length - 1; const text = span.literal.text + (isLastSpan ? subsequentText : ""); const rawText = getRawTextOfTemplate(span.literal) + (isLastSpan ? rawSubsequentText : ""); return factory.createTemplateSpan(span.expression, isLast && isLastSpan ? factory.createTemplateTail(text, rawText) : factory.createTemplateMiddle(text, rawText)); }); templateSpans.push(...spans); } else { const templatePart = isLast ? factory.createTemplateTail(subsequentText, rawSubsequentText) : factory.createTemplateMiddle(subsequentText, rawSubsequentText); copyCommentFromStringLiterals(stringIndexes, templatePart); templateSpans.push(factory.createTemplateSpan(currentNode, templatePart)); } } return factory.createTemplateExpression(templateHead, templateSpans); } function copyExpressionComments(node) { const file = node.getSourceFile(); copyTrailingComments(node, node.expression, file, 3, false); copyTrailingAsLeadingComments(node.expression, node.expression, file, 3, false); } function getExpressionFromParenthesesOrExpression(node) { if (isParenthesizedExpression(node)) { copyExpressionComments(node); node = node.expression; } return node; } var ts_refactor_convertToOptionalChainExpression_exports = {}; var refactorName11 = "Convert to optional chain expression"; var convertToOptionalChainExpressionMessage = getLocaleSpecificMessage(Diagnostics.Convert_to_optional_chain_expression); var toOptionalChainAction = { name: refactorName11, description: convertToOptionalChainExpressionMessage, kind: "refactor.rewrite.expression.optionalChain" }; registerRefactor(refactorName11, { kinds: [toOptionalChainAction.kind], getEditsForAction: getRefactorEditsToConvertToOptionalChain, getAvailableActions: getRefactorActionsToConvertToOptionalChain }); function getRefactorActionsToConvertToOptionalChain(context) { const info = getInfo3(context, context.triggerReason === "invoked"); if (!info) return emptyArray; if (!isRefactorErrorInfo(info)) { return [{ name: refactorName11, description: convertToOptionalChainExpressionMessage, actions: [toOptionalChainAction] }]; } if (context.preferences.provideRefactorNotApplicableReason) { return [{ name: refactorName11, description: convertToOptionalChainExpressionMessage, actions: [{ ...toOptionalChainAction, notApplicableReason: info.error }] }]; } return emptyArray; } function getRefactorEditsToConvertToOptionalChain(context, actionName2) { const info = getInfo3(context); Debug.assert(info && !isRefactorErrorInfo(info), "Expected applicable refactor info"); const edits = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange6(context.file, context.program.getTypeChecker(), t, info, actionName2)); return { edits, renameFilename: undefined, renameLocation: undefined }; } function isValidExpression(node) { return isBinaryExpression(node) || isConditionalExpression(node); } function isValidStatement(node) { return isExpressionStatement(node) || isReturnStatement(node) || isVariableStatement(node); } function isValidExpressionOrStatement(node) { return isValidExpression(node) || isValidStatement(node); } function getInfo3(context, considerEmptySpans = true) { const { file, program } = context; const span = getRefactorContextSpan(context); const forEmptySpan = span.length === 0; if (forEmptySpan && !considerEmptySpans) return; const startToken = getTokenAtPosition(file, span.start); const endToken = findTokenOnLeftOfPosition(file, span.start + span.length); const adjustedSpan = createTextSpanFromBounds(startToken.pos, endToken && endToken.end >= startToken.pos ? endToken.getEnd() : startToken.getEnd()); const parent2 = forEmptySpan ? getValidParentNodeOfEmptySpan(startToken) : getValidParentNodeContainingSpan(startToken, adjustedSpan); const expression = parent2 && isValidExpressionOrStatement(parent2) ? getExpression(parent2) : undefined; if (!expression) return { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_convertible_access_expression) }; const checker = program.getTypeChecker(); return isConditionalExpression(expression) ? getConditionalInfo(expression, checker) : getBinaryInfo(expression); } function getConditionalInfo(expression, checker) { const condition = expression.condition; const finalExpression = getFinalExpressionInChain(expression.whenTrue); if (!finalExpression || checker.isNullableType(checker.getTypeAtLocation(finalExpression))) { return { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_convertible_access_expression) }; } if ((isPropertyAccessExpression(condition) || isIdentifier(condition)) && getMatchingStart(condition, finalExpression.expression)) { return { finalExpression, occurrences: [condition], expression }; } else if (isBinaryExpression(condition)) { const occurrences = getOccurrencesInExpression(finalExpression.expression, condition); return occurrences ? { finalExpression, occurrences, expression } : { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_matching_access_expressions) }; } } function getBinaryInfo(expression) { if (expression.operatorToken.kind !== 56) { return { error: getLocaleSpecificMessage(Diagnostics.Can_only_convert_logical_AND_access_chains) }; } const finalExpression = getFinalExpressionInChain(expression.right); if (!finalExpression) return { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_convertible_access_expression) }; const occurrences = getOccurrencesInExpression(finalExpression.expression, expression.left); return occurrences ? { finalExpression, occurrences, expression } : { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_matching_access_expressions) }; } function getOccurrencesInExpression(matchTo, expression) { const occurrences = []; while (isBinaryExpression(expression) && expression.operatorToken.kind === 56) { const match = getMatchingStart(skipParentheses(matchTo), skipParentheses(expression.right)); if (!match) { break; } occurrences.push(match); matchTo = match; expression = expression.left; } const finalMatch = getMatchingStart(matchTo, expression); if (finalMatch) { occurrences.push(finalMatch); } return occurrences.length > 0 ? occurrences : undefined; } function getMatchingStart(chain, subchain) { if (!isIdentifier(subchain) && !isPropertyAccessExpression(subchain) && !isElementAccessExpression(subchain)) { return; } return chainStartsWith(chain, subchain) ? subchain : undefined; } function chainStartsWith(chain, subchain) { while (isCallExpression(chain) || isPropertyAccessExpression(chain) || isElementAccessExpression(chain)) { if (getTextOfChainNode(chain) === getTextOfChainNode(subchain)) break; chain = chain.expression; } while (isPropertyAccessExpression(chain) && isPropertyAccessExpression(subchain) || isElementAccessExpression(chain) && isElementAccessExpression(subchain)) { if (getTextOfChainNode(chain) !== getTextOfChainNode(subchain)) return false; chain = chain.expression; subchain = subchain.expression; } return isIdentifier(chain) && isIdentifier(subchain) && chain.getText() === subchain.getText(); } function getTextOfChainNode(node) { if (isIdentifier(node) || isStringOrNumericLiteralLike(node)) { return node.getText(); } if (isPropertyAccessExpression(node)) { return getTextOfChainNode(node.name); } if (isElementAccessExpression(node)) { return getTextOfChainNode(node.argumentExpression); } return; } function getValidParentNodeContainingSpan(node, span) { while (node.parent) { if (isValidExpressionOrStatement(node) && span.length !== 0 && node.end >= span.start + span.length) { return node; } node = node.parent; } return; } function getValidParentNodeOfEmptySpan(node) { while (node.parent) { if (isValidExpressionOrStatement(node) && !isValidExpressionOrStatement(node.parent)) { return node; } node = node.parent; } return; } function getExpression(node) { if (isValidExpression(node)) { return node; } if (isVariableStatement(node)) { const variable = getSingleVariableOfVariableStatement(node); const initializer = variable == null ? undefined : variable.initializer; return initializer && isValidExpression(initializer) ? initializer : undefined; } return node.expression && isValidExpression(node.expression) ? node.expression : undefined; } function getFinalExpressionInChain(node) { node = skipParentheses(node); if (isBinaryExpression(node)) { return getFinalExpressionInChain(node.left); } else if ((isPropertyAccessExpression(node) || isElementAccessExpression(node) || isCallExpression(node)) && !isOptionalChain(node)) { return node; } return; } function convertOccurrences(checker, toConvert, occurrences) { if (isPropertyAccessExpression(toConvert) || isElementAccessExpression(toConvert) || isCallExpression(toConvert)) { const chain = convertOccurrences(checker, toConvert.expression, occurrences); const lastOccurrence = occurrences.length > 0 ? occurrences[occurrences.length - 1] : undefined; const isOccurrence = (lastOccurrence == null ? undefined : lastOccurrence.getText()) === toConvert.expression.getText(); if (isOccurrence) occurrences.pop(); if (isCallExpression(toConvert)) { return isOccurrence ? factory.createCallChain(chain, factory.createToken(29), toConvert.typeArguments, toConvert.arguments) : factory.createCallChain(chain, toConvert.questionDotToken, toConvert.typeArguments, toConvert.arguments); } else if (isPropertyAccessExpression(toConvert)) { return isOccurrence ? factory.createPropertyAccessChain(chain, factory.createToken(29), toConvert.name) : factory.createPropertyAccessChain(chain, toConvert.questionDotToken, toConvert.name); } else if (isElementAccessExpression(toConvert)) { return isOccurrence ? factory.createElementAccessChain(chain, factory.createToken(29), toConvert.argumentExpression) : factory.createElementAccessChain(chain, toConvert.questionDotToken, toConvert.argumentExpression); } } return toConvert; } function doChange6(sourceFile, checker, changes, info, _actionName) { const { finalExpression, occurrences, expression } = info; const firstOccurrence = occurrences[occurrences.length - 1]; const convertedChain = convertOccurrences(checker, finalExpression, occurrences); if (convertedChain && (isPropertyAccessExpression(convertedChain) || isElementAccessExpression(convertedChain) || isCallExpression(convertedChain))) { if (isBinaryExpression(expression)) { changes.replaceNodeRange(sourceFile, firstOccurrence, finalExpression, convertedChain); } else if (isConditionalExpression(expression)) { changes.replaceNode(sourceFile, expression, factory.createBinaryExpression(convertedChain, factory.createToken(61), expression.whenFalse)); } } } var ts_refactor_extractSymbol_exports = {}; __export2(ts_refactor_extractSymbol_exports, { Messages: () => Messages, RangeFacts: () => RangeFacts, getRangeToExtract: () => getRangeToExtract2, getRefactorActionsToExtractSymbol: () => getRefactorActionsToExtractSymbol, getRefactorEditsToExtractSymbol: () => getRefactorEditsToExtractSymbol }); var refactorName12 = "Extract Symbol"; var extractConstantAction = { name: "Extract Constant", description: getLocaleSpecificMessage(Diagnostics.Extract_constant), kind: "refactor.extract.constant" }; var extractFunctionAction = { name: "Extract Function", description: getLocaleSpecificMessage(Diagnostics.Extract_function), kind: "refactor.extract.function" }; registerRefactor(refactorName12, { kinds: [ extractConstantAction.kind, extractFunctionAction.kind ], getEditsForAction: getRefactorEditsToExtractSymbol, getAvailableActions: getRefactorActionsToExtractSymbol }); function getRefactorActionsToExtractSymbol(context) { const requestedRefactor = context.kind; const rangeToExtract = getRangeToExtract2(context.file, getRefactorContextSpan(context), context.triggerReason === "invoked"); const targetRange = rangeToExtract.targetRange; if (targetRange === undefined) { if (!rangeToExtract.errors || rangeToExtract.errors.length === 0 || !context.preferences.provideRefactorNotApplicableReason) { return emptyArray; } const errors = []; if (refactorKindBeginsWith(extractFunctionAction.kind, requestedRefactor)) { errors.push({ name: refactorName12, description: extractFunctionAction.description, actions: [{ ...extractFunctionAction, notApplicableReason: getStringError(rangeToExtract.errors) }] }); } if (refactorKindBeginsWith(extractConstantAction.kind, requestedRefactor)) { errors.push({ name: refactorName12, description: extractConstantAction.description, actions: [{ ...extractConstantAction, notApplicableReason: getStringError(rangeToExtract.errors) }] }); } return errors; } const { affectedTextRange, extractions } = getPossibleExtractions(targetRange, context); if (extractions === undefined) { return emptyArray; } const functionActions = []; const usedFunctionNames = /* @__PURE__ */ new Map; let innermostErrorFunctionAction; const constantActions = []; const usedConstantNames = /* @__PURE__ */ new Map; let innermostErrorConstantAction; let i = 0; for (const { functionExtraction, constantExtraction } of extractions) { if (refactorKindBeginsWith(extractFunctionAction.kind, requestedRefactor)) { const description3 = functionExtraction.description; if (functionExtraction.errors.length === 0) { if (!usedFunctionNames.has(description3)) { usedFunctionNames.set(description3, true); functionActions.push({ description: description3, name: `function_scope_${i}`, kind: extractFunctionAction.kind, range: { start: { line: getLineAndCharacterOfPosition(context.file, affectedTextRange.pos).line, offset: getLineAndCharacterOfPosition(context.file, affectedTextRange.pos).character }, end: { line: getLineAndCharacterOfPosition(context.file, affectedTextRange.end).line, offset: getLineAndCharacterOfPosition(context.file, affectedTextRange.end).character } } }); } } else if (!innermostErrorFunctionAction) { innermostErrorFunctionAction = { description: description3, name: `function_scope_${i}`, notApplicableReason: getStringError(functionExtraction.errors), kind: extractFunctionAction.kind }; } } if (refactorKindBeginsWith(extractConstantAction.kind, requestedRefactor)) { const description3 = constantExtraction.description; if (constantExtraction.errors.length === 0) { if (!usedConstantNames.has(description3)) { usedConstantNames.set(description3, true); constantActions.push({ description: description3, name: `constant_scope_${i}`, kind: extractConstantAction.kind, range: { start: { line: getLineAndCharacterOfPosition(context.file, affectedTextRange.pos).line, offset: getLineAndCharacterOfPosition(context.file, affectedTextRange.pos).character }, end: { line: getLineAndCharacterOfPosition(context.file, affectedTextRange.end).line, offset: getLineAndCharacterOfPosition(context.file, affectedTextRange.end).character } } }); } } else if (!innermostErrorConstantAction) { innermostErrorConstantAction = { description: description3, name: `constant_scope_${i}`, notApplicableReason: getStringError(constantExtraction.errors), kind: extractConstantAction.kind }; } } i++; } const infos = []; if (functionActions.length) { infos.push({ name: refactorName12, description: getLocaleSpecificMessage(Diagnostics.Extract_function), actions: functionActions }); } else if (context.preferences.provideRefactorNotApplicableReason && innermostErrorFunctionAction) { infos.push({ name: refactorName12, description: getLocaleSpecificMessage(Diagnostics.Extract_function), actions: [innermostErrorFunctionAction] }); } if (constantActions.length) { infos.push({ name: refactorName12, description: getLocaleSpecificMessage(Diagnostics.Extract_constant), actions: constantActions }); } else if (context.preferences.provideRefactorNotApplicableReason && innermostErrorConstantAction) { infos.push({ name: refactorName12, description: getLocaleSpecificMessage(Diagnostics.Extract_constant), actions: [innermostErrorConstantAction] }); } return infos.length ? infos : emptyArray; function getStringError(errors) { let error2 = errors[0].messageText; if (typeof error2 !== "string") { error2 = error2.messageText; } return error2; } } function getRefactorEditsToExtractSymbol(context, actionName2) { const rangeToExtract = getRangeToExtract2(context.file, getRefactorContextSpan(context)); const targetRange = rangeToExtract.targetRange; const parsedFunctionIndexMatch = /^function_scope_(\d+)$/.exec(actionName2); if (parsedFunctionIndexMatch) { const index = +parsedFunctionIndexMatch[1]; Debug.assert(isFinite(index), "Expected to parse a finite number from the function scope index"); return getFunctionExtractionAtIndex(targetRange, context, index); } const parsedConstantIndexMatch = /^constant_scope_(\d+)$/.exec(actionName2); if (parsedConstantIndexMatch) { const index = +parsedConstantIndexMatch[1]; Debug.assert(isFinite(index), "Expected to parse a finite number from the constant scope index"); return getConstantExtractionAtIndex(targetRange, context, index); } Debug.fail("Unrecognized action name"); } var Messages; ((Messages2) => { function createMessage(message) { return { message, code: 0, category: 3, key: message }; } Messages2.cannotExtractRange = createMessage("Cannot extract range."); Messages2.cannotExtractImport = createMessage("Cannot extract import statement."); Messages2.cannotExtractSuper = createMessage("Cannot extract super call."); Messages2.cannotExtractJSDoc = createMessage("Cannot extract JSDoc."); Messages2.cannotExtractEmpty = createMessage("Cannot extract empty range."); Messages2.expressionExpected = createMessage("expression expected."); Messages2.uselessConstantType = createMessage("No reason to extract constant of type."); Messages2.statementOrExpressionExpected = createMessage("Statement or expression expected."); Messages2.cannotExtractRangeContainingConditionalBreakOrContinueStatements = createMessage("Cannot extract range containing conditional break or continue statements."); Messages2.cannotExtractRangeContainingConditionalReturnStatement = createMessage("Cannot extract range containing conditional return statement."); Messages2.cannotExtractRangeContainingLabeledBreakOrContinueStatementWithTargetOutsideOfTheRange = createMessage("Cannot extract range containing labeled break or continue with target outside of the range."); Messages2.cannotExtractRangeThatContainsWritesToReferencesLocatedOutsideOfTheTargetRangeInGenerators = createMessage("Cannot extract range containing writes to references located outside of the target range in generators."); Messages2.typeWillNotBeVisibleInTheNewScope = createMessage("Type will not visible in the new scope."); Messages2.functionWillNotBeVisibleInTheNewScope = createMessage("Function will not visible in the new scope."); Messages2.cannotExtractIdentifier = createMessage("Select more than a single identifier."); Messages2.cannotExtractExportedEntity = createMessage("Cannot extract exported declaration"); Messages2.cannotWriteInExpression = createMessage("Cannot write back side-effects when extracting an expression"); Messages2.cannotExtractReadonlyPropertyInitializerOutsideConstructor = createMessage("Cannot move initialization of read-only class property outside of the constructor"); Messages2.cannotExtractAmbientBlock = createMessage("Cannot extract code from ambient contexts"); Messages2.cannotAccessVariablesFromNestedScopes = createMessage("Cannot access variables from nested scopes"); Messages2.cannotExtractToJSClass = createMessage("Cannot extract constant to a class scope in JS"); Messages2.cannotExtractToExpressionArrowFunction = createMessage("Cannot extract constant to an arrow function without a block"); Messages2.cannotExtractFunctionsContainingThisToMethod = createMessage("Cannot extract functions containing this to method"); })(Messages || (Messages = {})); var RangeFacts = /* @__PURE__ */ ((RangeFacts2) => { RangeFacts2[RangeFacts2["None"] = 0] = "None"; RangeFacts2[RangeFacts2["HasReturn"] = 1] = "HasReturn"; RangeFacts2[RangeFacts2["IsGenerator"] = 2] = "IsGenerator"; RangeFacts2[RangeFacts2["IsAsyncFunction"] = 4] = "IsAsyncFunction"; RangeFacts2[RangeFacts2["UsesThis"] = 8] = "UsesThis"; RangeFacts2[RangeFacts2["UsesThisInFunction"] = 16] = "UsesThisInFunction"; RangeFacts2[RangeFacts2["InStaticRegion"] = 32] = "InStaticRegion"; return RangeFacts2; })(RangeFacts || {}); function getRangeToExtract2(sourceFile, span, invoked = true) { const { length: length2 } = span; if (length2 === 0 && !invoked) { return { errors: [createFileDiagnostic(sourceFile, span.start, length2, Messages.cannotExtractEmpty)] }; } const cursorRequest = length2 === 0 && invoked; const startToken = findFirstNonJsxWhitespaceToken(sourceFile, span.start); const endToken = findTokenOnLeftOfPosition(sourceFile, textSpanEnd(span)); const adjustedSpan = startToken && endToken && invoked ? getAdjustedSpanFromNodes(startToken, endToken, sourceFile) : span; const start = cursorRequest ? getExtractableParent(startToken) : getParentNodeInSpan(startToken, sourceFile, adjustedSpan); const end = cursorRequest ? start : getParentNodeInSpan(endToken, sourceFile, adjustedSpan); let rangeFacts = 0; let thisNode; if (!start || !end) { return { errors: [createFileDiagnostic(sourceFile, span.start, length2, Messages.cannotExtractRange)] }; } if (start.flags & 16777216) { return { errors: [createFileDiagnostic(sourceFile, span.start, length2, Messages.cannotExtractJSDoc)] }; } if (start.parent !== end.parent) { return { errors: [createFileDiagnostic(sourceFile, span.start, length2, Messages.cannotExtractRange)] }; } if (start !== end) { if (!isBlockLike(start.parent)) { return { errors: [createFileDiagnostic(sourceFile, span.start, length2, Messages.cannotExtractRange)] }; } const statements = []; for (const statement of start.parent.statements) { if (statement === start || statements.length) { const errors2 = checkNode(statement); if (errors2) { return { errors: errors2 }; } statements.push(statement); } if (statement === end) { break; } } if (!statements.length) { return { errors: [createFileDiagnostic(sourceFile, span.start, length2, Messages.cannotExtractRange)] }; } return { targetRange: { range: statements, facts: rangeFacts, thisNode } }; } if (isReturnStatement(start) && !start.expression) { return { errors: [createFileDiagnostic(sourceFile, span.start, length2, Messages.cannotExtractRange)] }; } const node = refineNode(start); const errors = checkRootNode(node) || checkNode(node); if (errors) { return { errors }; } return { targetRange: { range: getStatementOrExpressionRange(node), facts: rangeFacts, thisNode } }; function refineNode(node2) { if (isReturnStatement(node2)) { if (node2.expression) { return node2.expression; } } else if (isVariableStatement(node2) || isVariableDeclarationList(node2)) { const declarations = isVariableStatement(node2) ? node2.declarationList.declarations : node2.declarations; let numInitializers = 0; let lastInitializer; for (const declaration of declarations) { if (declaration.initializer) { numInitializers++; lastInitializer = declaration.initializer; } } if (numInitializers === 1) { return lastInitializer; } } else if (isVariableDeclaration(node2)) { if (node2.initializer) { return node2.initializer; } } return node2; } function checkRootNode(node2) { if (isIdentifier(isExpressionStatement(node2) ? node2.expression : node2)) { return [createDiagnosticForNode(node2, Messages.cannotExtractIdentifier)]; } return; } function checkForStaticContext(nodeToCheck, containingClass) { let current = nodeToCheck; while (current !== containingClass) { if (current.kind === 173) { if (isStatic(current)) { rangeFacts |= 32; } break; } else if (current.kind === 170) { const ctorOrMethod = getContainingFunction(current); if (ctorOrMethod.kind === 177) { rangeFacts |= 32; } break; } else if (current.kind === 175) { if (isStatic(current)) { rangeFacts |= 32; } } current = current.parent; } } function checkNode(nodeToCheck) { let PermittedJumps; ((PermittedJumps2) => { PermittedJumps2[PermittedJumps2["None"] = 0] = "None"; PermittedJumps2[PermittedJumps2["Break"] = 1] = "Break"; PermittedJumps2[PermittedJumps2["Continue"] = 2] = "Continue"; PermittedJumps2[PermittedJumps2["Return"] = 4] = "Return"; })(PermittedJumps || (PermittedJumps = {})); Debug.assert(nodeToCheck.pos <= nodeToCheck.end, "This failure could trigger https://github.com/Microsoft/TypeScript/issues/20809 (1)"); Debug.assert(!positionIsSynthesized(nodeToCheck.pos), "This failure could trigger https://github.com/Microsoft/TypeScript/issues/20809 (2)"); if (!isStatement(nodeToCheck) && !(isExpressionNode(nodeToCheck) && isExtractableExpression(nodeToCheck)) && !isStringLiteralJsxAttribute(nodeToCheck)) { return [createDiagnosticForNode(nodeToCheck, Messages.statementOrExpressionExpected)]; } if (nodeToCheck.flags & 33554432) { return [createDiagnosticForNode(nodeToCheck, Messages.cannotExtractAmbientBlock)]; } const containingClass = getContainingClass(nodeToCheck); if (containingClass) { checkForStaticContext(nodeToCheck, containingClass); } let errors2; let permittedJumps = 4; let seenLabels; visit(nodeToCheck); if (rangeFacts & 8) { const container = getThisContainer(nodeToCheck, false, false); if (container.kind === 263 || container.kind === 175 && container.parent.kind === 211 || container.kind === 219) { rangeFacts |= 16; } } return errors2; function visit(node2) { if (errors2) { return true; } if (isDeclaration(node2)) { const declaringNode = node2.kind === 261 ? node2.parent.parent : node2; if (hasSyntacticModifier(declaringNode, 32)) { (errors2 || (errors2 = [])).push(createDiagnosticForNode(node2, Messages.cannotExtractExportedEntity)); return true; } } switch (node2.kind) { case 273: (errors2 || (errors2 = [])).push(createDiagnosticForNode(node2, Messages.cannotExtractImport)); return true; case 278: (errors2 || (errors2 = [])).push(createDiagnosticForNode(node2, Messages.cannotExtractExportedEntity)); return true; case 108: if (node2.parent.kind === 214) { const containingClass2 = getContainingClass(node2); if (containingClass2 === undefined || containingClass2.pos < span.start || containingClass2.end >= span.start + span.length) { (errors2 || (errors2 = [])).push(createDiagnosticForNode(node2, Messages.cannotExtractSuper)); return true; } } else { rangeFacts |= 8; thisNode = node2; } break; case 220: forEachChild(node2, function check(n) { if (isThis(n)) { rangeFacts |= 8; thisNode = node2; } else if (isClassLike(n) || isFunctionLike(n) && !isArrowFunction(n)) { return false; } else { forEachChild(n, check); } }); case 264: case 263: if (isSourceFile(node2.parent) && node2.parent.externalModuleIndicator === undefined) { (errors2 || (errors2 = [])).push(createDiagnosticForNode(node2, Messages.functionWillNotBeVisibleInTheNewScope)); } case 232: case 219: case 175: case 177: case 178: case 179: return false; } const savedPermittedJumps = permittedJumps; switch (node2.kind) { case 246: permittedJumps &= ~4; break; case 259: permittedJumps = 0; break; case 242: if (node2.parent && node2.parent.kind === 259 && node2.parent.finallyBlock === node2) { permittedJumps = 4; } break; case 298: case 297: permittedJumps |= 1; break; default: if (isIterationStatement(node2, false)) { permittedJumps |= 1 | 2; } break; } switch (node2.kind) { case 198: case 110: rangeFacts |= 8; thisNode = node2; break; case 257: { const label = node2.label; (seenLabels || (seenLabels = [])).push(label.escapedText); forEachChild(node2, visit); seenLabels.pop(); break; } case 253: case 252: { const label = node2.label; if (label) { if (!contains(seenLabels, label.escapedText)) { (errors2 || (errors2 = [])).push(createDiagnosticForNode(node2, Messages.cannotExtractRangeContainingLabeledBreakOrContinueStatementWithTargetOutsideOfTheRange)); } } else { if (!(permittedJumps & (node2.kind === 253 ? 1 : 2))) { (errors2 || (errors2 = [])).push(createDiagnosticForNode(node2, Messages.cannotExtractRangeContainingConditionalBreakOrContinueStatements)); } } break; } case 224: rangeFacts |= 4; break; case 230: rangeFacts |= 2; break; case 254: if (permittedJumps & 4) { rangeFacts |= 1; } else { (errors2 || (errors2 = [])).push(createDiagnosticForNode(node2, Messages.cannotExtractRangeContainingConditionalReturnStatement)); } break; default: forEachChild(node2, visit); break; } permittedJumps = savedPermittedJumps; } } } function getAdjustedSpanFromNodes(startNode2, endNode2, sourceFile) { const start = startNode2.getStart(sourceFile); let end = endNode2.getEnd(); if (sourceFile.text.charCodeAt(end) === 59) { end++; } return { start, length: end - start }; } function getStatementOrExpressionRange(node) { if (isStatement(node)) { return [node]; } if (isExpressionNode(node)) { return isExpressionStatement(node.parent) ? [node.parent] : node; } if (isStringLiteralJsxAttribute(node)) { return node; } return; } function isScope(node) { return isArrowFunction(node) ? isFunctionBody(node.body) : isFunctionLikeDeclaration(node) || isSourceFile(node) || isModuleBlock(node) || isClassLike(node); } function collectEnclosingScopes(range) { let current = isReadonlyArray(range.range) ? first(range.range) : range.range; if (range.facts & 8 && !(range.facts & 16)) { const containingClass = getContainingClass(current); if (containingClass) { const containingFunction = findAncestor(current, isFunctionLikeDeclaration); return containingFunction ? [containingFunction, containingClass] : [containingClass]; } } const scopes = []; while (true) { current = current.parent; if (current.kind === 170) { current = findAncestor(current, (parent2) => isFunctionLikeDeclaration(parent2)).parent; } if (isScope(current)) { scopes.push(current); if (current.kind === 308) { return scopes; } } } } function getFunctionExtractionAtIndex(targetRange, context, requestedChangesIndex) { const { scopes, readsAndWrites: { target, usagesPerScope, functionErrorsPerScope, exposedVariableDeclarations } } = getPossibleExtractionsWorker(targetRange, context); Debug.assert(!functionErrorsPerScope[requestedChangesIndex].length, "The extraction went missing? How?"); context.cancellationToken.throwIfCancellationRequested(); return extractFunctionInScope(target, scopes[requestedChangesIndex], usagesPerScope[requestedChangesIndex], exposedVariableDeclarations, targetRange, context); } function getConstantExtractionAtIndex(targetRange, context, requestedChangesIndex) { const { scopes, readsAndWrites: { target, usagesPerScope, constantErrorsPerScope, exposedVariableDeclarations } } = getPossibleExtractionsWorker(targetRange, context); Debug.assert(!constantErrorsPerScope[requestedChangesIndex].length, "The extraction went missing? How?"); Debug.assert(exposedVariableDeclarations.length === 0, "Extract constant accepted a range containing a variable declaration?"); context.cancellationToken.throwIfCancellationRequested(); const expression = isExpression(target) ? target : target.statements[0].expression; return extractConstantInScope(expression, scopes[requestedChangesIndex], usagesPerScope[requestedChangesIndex], targetRange.facts, context); } function getPossibleExtractions(targetRange, context) { const { scopes, affectedTextRange, readsAndWrites: { functionErrorsPerScope, constantErrorsPerScope } } = getPossibleExtractionsWorker(targetRange, context); const extractions = scopes.map((scope, i) => { const functionDescriptionPart = getDescriptionForFunctionInScope(scope); const constantDescriptionPart = getDescriptionForConstantInScope(scope); const scopeDescription = isFunctionLikeDeclaration(scope) ? getDescriptionForFunctionLikeDeclaration(scope) : isClassLike(scope) ? getDescriptionForClassLikeDeclaration(scope) : getDescriptionForModuleLikeDeclaration(scope); let functionDescription; let constantDescription; if (scopeDescription === 1) { functionDescription = formatStringFromArgs(getLocaleSpecificMessage(Diagnostics.Extract_to_0_in_1_scope), [functionDescriptionPart, "global"]); constantDescription = formatStringFromArgs(getLocaleSpecificMessage(Diagnostics.Extract_to_0_in_1_scope), [constantDescriptionPart, "global"]); } else if (scopeDescription === 0) { functionDescription = formatStringFromArgs(getLocaleSpecificMessage(Diagnostics.Extract_to_0_in_1_scope), [functionDescriptionPart, "module"]); constantDescription = formatStringFromArgs(getLocaleSpecificMessage(Diagnostics.Extract_to_0_in_1_scope), [constantDescriptionPart, "module"]); } else { functionDescription = formatStringFromArgs(getLocaleSpecificMessage(Diagnostics.Extract_to_0_in_1), [functionDescriptionPart, scopeDescription]); constantDescription = formatStringFromArgs(getLocaleSpecificMessage(Diagnostics.Extract_to_0_in_1), [constantDescriptionPart, scopeDescription]); } if (i === 0 && !isClassLike(scope)) { constantDescription = formatStringFromArgs(getLocaleSpecificMessage(Diagnostics.Extract_to_0_in_enclosing_scope), [constantDescriptionPart]); } return { functionExtraction: { description: functionDescription, errors: functionErrorsPerScope[i] }, constantExtraction: { description: constantDescription, errors: constantErrorsPerScope[i] } }; }); return { affectedTextRange, extractions }; } function getPossibleExtractionsWorker(targetRange, context) { const { file: sourceFile } = context; const scopes = collectEnclosingScopes(targetRange); const enclosingTextRange = getEnclosingTextRange(targetRange, sourceFile); const readsAndWrites = collectReadsAndWrites(targetRange, scopes, enclosingTextRange, sourceFile, context.program.getTypeChecker(), context.cancellationToken); return { scopes, affectedTextRange: enclosingTextRange, readsAndWrites }; } function getDescriptionForFunctionInScope(scope) { return isFunctionLikeDeclaration(scope) ? "inner function" : isClassLike(scope) ? "method" : "function"; } function getDescriptionForConstantInScope(scope) { return isClassLike(scope) ? "readonly field" : "constant"; } function getDescriptionForFunctionLikeDeclaration(scope) { switch (scope.kind) { case 177: return "constructor"; case 219: case 263: return scope.name ? `function '${scope.name.text}'` : ANONYMOUS; case 220: return "arrow function"; case 175: return `method '${scope.name.getText()}'`; case 178: return `'get ${scope.name.getText()}'`; case 179: return `'set ${scope.name.getText()}'`; default: Debug.assertNever(scope, `Unexpected scope kind ${scope.kind}`); } } function getDescriptionForClassLikeDeclaration(scope) { return scope.kind === 264 ? scope.name ? `class '${scope.name.text}'` : "anonymous class declaration" : scope.name ? `class expression '${scope.name.text}'` : "anonymous class expression"; } function getDescriptionForModuleLikeDeclaration(scope) { return scope.kind === 269 ? `namespace '${scope.parent.name.getText()}'` : scope.externalModuleIndicator ? 0 : 1; } function extractFunctionInScope(node, scope, { usages: usagesInScope, typeParameterUsages, substitutions }, exposedVariableDeclarations, range, context) { const checker = context.program.getTypeChecker(); const scriptTarget = getEmitScriptTarget(context.program.getCompilerOptions()); const importAdder = ts_codefix_exports.createImportAdder(context.file, context.program, context.preferences, context.host); const file = scope.getSourceFile(); const functionNameText = getUniqueName(isClassLike(scope) ? "newMethod" : "newFunction", file); const isJS = isInJSFile(scope); const functionName = factory.createIdentifier(functionNameText); let returnType; const parameters = []; const callArguments = []; let writes; usagesInScope.forEach((usage, name) => { let typeNode; if (!isJS) { let type = checker.getTypeOfSymbolAtLocation(usage.symbol, usage.node); type = checker.getBaseTypeOfLiteralType(type); typeNode = ts_codefix_exports.typeToAutoImportableTypeNode(checker, importAdder, type, scope, scriptTarget, 1, 8); } const paramDecl = factory.createParameterDeclaration(undefined, undefined, name, undefined, typeNode); parameters.push(paramDecl); if (usage.usage === 2) { (writes || (writes = [])).push(usage); } callArguments.push(factory.createIdentifier(name)); }); const typeParametersAndDeclarations = arrayFrom(typeParameterUsages.values(), (type) => ({ type, declaration: getFirstDeclarationBeforePosition(type, context.startPosition) })); typeParametersAndDeclarations.sort(compareTypesByDeclarationOrder); const typeParameters = typeParametersAndDeclarations.length === 0 ? undefined : mapDefined(typeParametersAndDeclarations, ({ declaration }) => declaration); const callTypeArguments = typeParameters !== undefined ? typeParameters.map((decl) => factory.createTypeReferenceNode(decl.name, undefined)) : undefined; if (isExpression(node) && !isJS) { const contextualType = checker.getContextualType(node); returnType = checker.typeToTypeNode(contextualType, scope, 1, 8); } const { body, returnValueProperty } = transformFunctionBody(node, exposedVariableDeclarations, writes, substitutions, !!(range.facts & 1)); suppressLeadingAndTrailingTrivia(body); let newFunction; const callThis = !!(range.facts & 16); if (isClassLike(scope)) { const modifiers = isJS ? [] : [factory.createModifier(123)]; if (range.facts & 32) { modifiers.push(factory.createModifier(126)); } if (range.facts & 4) { modifiers.push(factory.createModifier(134)); } newFunction = factory.createMethodDeclaration(modifiers.length ? modifiers : undefined, range.facts & 2 ? factory.createToken(42) : undefined, functionName, undefined, typeParameters, parameters, returnType, body); } else { if (callThis) { parameters.unshift(factory.createParameterDeclaration(undefined, undefined, "this", undefined, checker.typeToTypeNode(checker.getTypeAtLocation(range.thisNode), scope, 1, 8), undefined)); } newFunction = factory.createFunctionDeclaration(range.facts & 4 ? [factory.createToken(134)] : undefined, range.facts & 2 ? factory.createToken(42) : undefined, functionName, typeParameters, parameters, returnType, body); } const changeTracker = ts_textChanges_exports.ChangeTracker.fromContext(context); const minInsertionPos = (isReadonlyArray(range.range) ? last(range.range) : range.range).end; const nodeToInsertBefore = getNodeToInsertFunctionBefore(minInsertionPos, scope); if (nodeToInsertBefore) { changeTracker.insertNodeBefore(context.file, nodeToInsertBefore, newFunction, true); } else { changeTracker.insertNodeAtEndOfScope(context.file, scope, newFunction); } importAdder.writeFixes(changeTracker); const newNodes = []; const called = getCalledExpression(scope, range, functionNameText); if (callThis) { callArguments.unshift(factory.createIdentifier("this")); } let call = factory.createCallExpression(callThis ? factory.createPropertyAccessExpression(called, "call") : called, callTypeArguments, callArguments); if (range.facts & 2) { call = factory.createYieldExpression(factory.createToken(42), call); } if (range.facts & 4) { call = factory.createAwaitExpression(call); } if (isInJSXContent(node)) { call = factory.createJsxExpression(undefined, call); } if (exposedVariableDeclarations.length && !writes) { Debug.assert(!returnValueProperty, "Expected no returnValueProperty"); Debug.assert(!(range.facts & 1), "Expected RangeFacts.HasReturn flag to be unset"); if (exposedVariableDeclarations.length === 1) { const variableDeclaration = exposedVariableDeclarations[0]; newNodes.push(factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(getSynthesizedDeepClone(variableDeclaration.name), undefined, getSynthesizedDeepClone(variableDeclaration.type), call)], variableDeclaration.parent.flags))); } else { const bindingElements = []; const typeElements = []; let commonNodeFlags = exposedVariableDeclarations[0].parent.flags; let sawExplicitType = false; for (const variableDeclaration of exposedVariableDeclarations) { bindingElements.push(factory.createBindingElement(undefined, undefined, getSynthesizedDeepClone(variableDeclaration.name))); const variableType = checker.typeToTypeNode(checker.getBaseTypeOfLiteralType(checker.getTypeAtLocation(variableDeclaration)), scope, 1, 8); typeElements.push(factory.createPropertySignature(undefined, variableDeclaration.symbol.name, undefined, variableType)); sawExplicitType = sawExplicitType || variableDeclaration.type !== undefined; commonNodeFlags = commonNodeFlags & variableDeclaration.parent.flags; } const typeLiteral = sawExplicitType ? factory.createTypeLiteralNode(typeElements) : undefined; if (typeLiteral) { setEmitFlags(typeLiteral, 1); } newNodes.push(factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(factory.createObjectBindingPattern(bindingElements), undefined, typeLiteral, call)], commonNodeFlags))); } } else if (exposedVariableDeclarations.length || writes) { if (exposedVariableDeclarations.length) { for (const variableDeclaration of exposedVariableDeclarations) { let flags = variableDeclaration.parent.flags; if (flags & 2) { flags = flags & ~2 | 1; } newNodes.push(factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(variableDeclaration.symbol.name, undefined, getTypeDeepCloneUnionUndefined(variableDeclaration.type))], flags))); } } if (returnValueProperty) { newNodes.push(factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(returnValueProperty, undefined, getTypeDeepCloneUnionUndefined(returnType))], 1))); } const assignments = getPropertyAssignmentsForWritesAndVariableDeclarations(exposedVariableDeclarations, writes); if (returnValueProperty) { assignments.unshift(factory.createShorthandPropertyAssignment(returnValueProperty)); } if (assignments.length === 1) { Debug.assert(!returnValueProperty, "Shouldn't have returnValueProperty here"); newNodes.push(factory.createExpressionStatement(factory.createAssignment(assignments[0].name, call))); if (range.facts & 1) { newNodes.push(factory.createReturnStatement()); } } else { newNodes.push(factory.createExpressionStatement(factory.createAssignment(factory.createObjectLiteralExpression(assignments), call))); if (returnValueProperty) { newNodes.push(factory.createReturnStatement(factory.createIdentifier(returnValueProperty))); } } } else { if (range.facts & 1) { newNodes.push(factory.createReturnStatement(call)); } else if (isReadonlyArray(range.range)) { newNodes.push(factory.createExpressionStatement(call)); } else { newNodes.push(call); } } if (isReadonlyArray(range.range)) { changeTracker.replaceNodeRangeWithNodes(context.file, first(range.range), last(range.range), newNodes); } else { changeTracker.replaceNodeWithNodes(context.file, range.range, newNodes); } const edits = changeTracker.getChanges(); const renameRange = isReadonlyArray(range.range) ? first(range.range) : range.range; const renameFilename = renameRange.getSourceFile().fileName; const renameLocation = getRenameLocation(edits, renameFilename, functionNameText, false); return { renameFilename, renameLocation, edits }; function getTypeDeepCloneUnionUndefined(typeNode) { if (typeNode === undefined) { return; } const clone2 = getSynthesizedDeepClone(typeNode); let withoutParens = clone2; while (isParenthesizedTypeNode(withoutParens)) { withoutParens = withoutParens.type; } return isUnionTypeNode(withoutParens) && find(withoutParens.types, (t) => t.kind === 157) ? clone2 : factory.createUnionTypeNode([clone2, factory.createKeywordTypeNode(157)]); } } function extractConstantInScope(node, scope, { substitutions }, rangeFacts, context) { const checker = context.program.getTypeChecker(); const file = scope.getSourceFile(); const localNameText = getIdentifierForNode(node, scope, checker, file); const isJS = isInJSFile(scope); let variableType = isJS || !checker.isContextSensitive(node) ? undefined : checker.typeToTypeNode(checker.getContextualType(node), scope, 1, 8); let initializer = transformConstantInitializer(skipParentheses(node), substitutions); ({ variableType, initializer } = transformFunctionInitializerAndType(variableType, initializer)); suppressLeadingAndTrailingTrivia(initializer); const changeTracker = ts_textChanges_exports.ChangeTracker.fromContext(context); if (isClassLike(scope)) { Debug.assert(!isJS, "Cannot extract to a JS class"); const modifiers = []; modifiers.push(factory.createModifier(123)); if (rangeFacts & 32) { modifiers.push(factory.createModifier(126)); } modifiers.push(factory.createModifier(148)); const newVariable = factory.createPropertyDeclaration(modifiers, localNameText, undefined, variableType, initializer); let localReference = factory.createPropertyAccessExpression(rangeFacts & 32 ? factory.createIdentifier(scope.name.getText()) : factory.createThis(), factory.createIdentifier(localNameText)); if (isInJSXContent(node)) { localReference = factory.createJsxExpression(undefined, localReference); } const maxInsertionPos = node.pos; const nodeToInsertBefore = getNodeToInsertPropertyBefore(maxInsertionPos, scope); changeTracker.insertNodeBefore(context.file, nodeToInsertBefore, newVariable, true); changeTracker.replaceNode(context.file, node, localReference); } else { const newVariableDeclaration = factory.createVariableDeclaration(localNameText, undefined, variableType, initializer); const oldVariableDeclaration = getContainingVariableDeclarationIfInList(node, scope); if (oldVariableDeclaration) { changeTracker.insertNodeBefore(context.file, oldVariableDeclaration, newVariableDeclaration); const localReference = factory.createIdentifier(localNameText); changeTracker.replaceNode(context.file, node, localReference); } else if (node.parent.kind === 245 && scope === findAncestor(node, isScope)) { const newVariableStatement = factory.createVariableStatement(undefined, factory.createVariableDeclarationList([newVariableDeclaration], 2)); changeTracker.replaceNode(context.file, node.parent, newVariableStatement); } else { const newVariableStatement = factory.createVariableStatement(undefined, factory.createVariableDeclarationList([newVariableDeclaration], 2)); const nodeToInsertBefore = getNodeToInsertConstantBefore(node, scope); if (nodeToInsertBefore.pos === 0) { changeTracker.insertNodeAtTopOfFile(context.file, newVariableStatement, false); } else { changeTracker.insertNodeBefore(context.file, nodeToInsertBefore, newVariableStatement, false); } if (node.parent.kind === 245) { changeTracker.delete(context.file, node.parent); } else { let localReference = factory.createIdentifier(localNameText); if (isInJSXContent(node)) { localReference = factory.createJsxExpression(undefined, localReference); } changeTracker.replaceNode(context.file, node, localReference); } } } const edits = changeTracker.getChanges(); const renameFilename = node.getSourceFile().fileName; const renameLocation = getRenameLocation(edits, renameFilename, localNameText, true); return { renameFilename, renameLocation, edits }; function transformFunctionInitializerAndType(variableType2, initializer2) { if (variableType2 === undefined) return { variableType: variableType2, initializer: initializer2 }; if (!isFunctionExpression(initializer2) && !isArrowFunction(initializer2) || !!initializer2.typeParameters) return { variableType: variableType2, initializer: initializer2 }; const functionType = checker.getTypeAtLocation(node); const functionSignature = singleOrUndefined(checker.getSignaturesOfType(functionType, 0)); if (!functionSignature) return { variableType: variableType2, initializer: initializer2 }; if (!!functionSignature.getTypeParameters()) return { variableType: variableType2, initializer: initializer2 }; const parameters = []; let hasAny = false; for (const p of initializer2.parameters) { if (p.type) { parameters.push(p); } else { const paramType = checker.getTypeAtLocation(p); if (paramType === checker.getAnyType()) hasAny = true; parameters.push(factory.updateParameterDeclaration(p, p.modifiers, p.dotDotDotToken, p.name, p.questionToken, p.type || checker.typeToTypeNode(paramType, scope, 1, 8), p.initializer)); } } if (hasAny) return { variableType: variableType2, initializer: initializer2 }; variableType2 = undefined; if (isArrowFunction(initializer2)) { initializer2 = factory.updateArrowFunction(initializer2, canHaveModifiers(node) ? getModifiers(node) : undefined, initializer2.typeParameters, parameters, initializer2.type || checker.typeToTypeNode(functionSignature.getReturnType(), scope, 1, 8), initializer2.equalsGreaterThanToken, initializer2.body); } else { if (functionSignature && !!functionSignature.thisParameter) { const firstParameter = firstOrUndefined(parameters); if (!firstParameter || isIdentifier(firstParameter.name) && firstParameter.name.escapedText !== "this") { const thisType = checker.getTypeOfSymbolAtLocation(functionSignature.thisParameter, node); parameters.splice(0, 0, factory.createParameterDeclaration(undefined, undefined, "this", undefined, checker.typeToTypeNode(thisType, scope, 1, 8))); } } initializer2 = factory.updateFunctionExpression(initializer2, canHaveModifiers(node) ? getModifiers(node) : undefined, initializer2.asteriskToken, initializer2.name, initializer2.typeParameters, parameters, initializer2.type || checker.typeToTypeNode(functionSignature.getReturnType(), scope, 1), initializer2.body); } return { variableType: variableType2, initializer: initializer2 }; } } function getContainingVariableDeclarationIfInList(node, scope) { let prevNode; while (node !== undefined && node !== scope) { if (isVariableDeclaration(node) && node.initializer === prevNode && isVariableDeclarationList(node.parent) && node.parent.declarations.length > 1) { return node; } prevNode = node; node = node.parent; } } function getFirstDeclarationBeforePosition(type, position) { let firstDeclaration; const symbol = type.symbol; if (symbol && symbol.declarations) { for (const declaration of symbol.declarations) { if ((firstDeclaration === undefined || declaration.pos < firstDeclaration.pos) && declaration.pos < position) { firstDeclaration = declaration; } } } return firstDeclaration; } function compareTypesByDeclarationOrder({ type: type1, declaration: declaration1 }, { type: type2, declaration: declaration2 }) { return compareProperties(declaration1, declaration2, "pos", compareValues) || compareStringsCaseSensitive(type1.symbol ? type1.symbol.getName() : "", type2.symbol ? type2.symbol.getName() : "") || compareValues(type1.id, type2.id); } function getCalledExpression(scope, range, functionNameText) { const functionReference = factory.createIdentifier(functionNameText); if (isClassLike(scope)) { const lhs = range.facts & 32 ? factory.createIdentifier(scope.name.text) : factory.createThis(); return factory.createPropertyAccessExpression(lhs, functionReference); } else { return functionReference; } } function transformFunctionBody(body, exposedVariableDeclarations, writes, substitutions, hasReturn2) { const hasWritesOrVariableDeclarations = writes !== undefined || exposedVariableDeclarations.length > 0; if (isBlock(body) && !hasWritesOrVariableDeclarations && substitutions.size === 0) { return { body: factory.createBlock(body.statements, true), returnValueProperty: undefined }; } let returnValueProperty; let ignoreReturns = false; const statements = factory.createNodeArray(isBlock(body) ? body.statements.slice(0) : [isStatement(body) ? body : factory.createReturnStatement(skipParentheses(body))]); if (hasWritesOrVariableDeclarations || substitutions.size) { const rewrittenStatements = visitNodes2(statements, visitor, isStatement).slice(); if (hasWritesOrVariableDeclarations && !hasReturn2 && isStatement(body)) { const assignments = getPropertyAssignmentsForWritesAndVariableDeclarations(exposedVariableDeclarations, writes); if (assignments.length === 1) { rewrittenStatements.push(factory.createReturnStatement(assignments[0].name)); } else { rewrittenStatements.push(factory.createReturnStatement(factory.createObjectLiteralExpression(assignments))); } } return { body: factory.createBlock(rewrittenStatements, true), returnValueProperty }; } else { return { body: factory.createBlock(statements, true), returnValueProperty: undefined }; } function visitor(node) { if (!ignoreReturns && isReturnStatement(node) && hasWritesOrVariableDeclarations) { const assignments = getPropertyAssignmentsForWritesAndVariableDeclarations(exposedVariableDeclarations, writes); if (node.expression) { if (!returnValueProperty) { returnValueProperty = "__return"; } assignments.unshift(factory.createPropertyAssignment(returnValueProperty, visitNode(node.expression, visitor, isExpression))); } if (assignments.length === 1) { return factory.createReturnStatement(assignments[0].name); } else { return factory.createReturnStatement(factory.createObjectLiteralExpression(assignments)); } } else { const oldIgnoreReturns = ignoreReturns; ignoreReturns = ignoreReturns || isFunctionLikeDeclaration(node) || isClassLike(node); const substitution = substitutions.get(getNodeId(node).toString()); const result = substitution ? getSynthesizedDeepClone(substitution) : visitEachChild(node, visitor, undefined); ignoreReturns = oldIgnoreReturns; return result; } } } function transformConstantInitializer(initializer, substitutions) { return substitutions.size ? visitor(initializer) : initializer; function visitor(node) { const substitution = substitutions.get(getNodeId(node).toString()); return substitution ? getSynthesizedDeepClone(substitution) : visitEachChild(node, visitor, undefined); } } function getStatementsOrClassElements(scope) { if (isFunctionLikeDeclaration(scope)) { const body = scope.body; if (isBlock(body)) { return body.statements; } } else if (isModuleBlock(scope) || isSourceFile(scope)) { return scope.statements; } else if (isClassLike(scope)) { return scope.members; } else { assertType(scope); } return emptyArray; } function getNodeToInsertFunctionBefore(minPos, scope) { return find(getStatementsOrClassElements(scope), (child) => child.pos >= minPos && isFunctionLikeDeclaration(child) && !isConstructorDeclaration(child)); } function getNodeToInsertPropertyBefore(maxPos, scope) { const members = scope.members; Debug.assert(members.length > 0, "Found no members"); let prevMember; let allProperties = true; for (const member of members) { if (member.pos > maxPos) { return prevMember || members[0]; } if (allProperties && !isPropertyDeclaration(member)) { if (prevMember !== undefined) { return member; } allProperties = false; } prevMember = member; } if (prevMember === undefined) return Debug.fail(); return prevMember; } function getNodeToInsertConstantBefore(node, scope) { Debug.assert(!isClassLike(scope)); let prevScope; for (let curr = node;curr !== scope; curr = curr.parent) { if (isScope(curr)) { prevScope = curr; } } for (let curr = (prevScope || node).parent;; curr = curr.parent) { if (isBlockLike(curr)) { let prevStatement; for (const statement of curr.statements) { if (statement.pos > node.pos) { break; } prevStatement = statement; } if (!prevStatement && isCaseClause(curr)) { Debug.assert(isSwitchStatement(curr.parent.parent), "Grandparent isn't a switch statement"); return curr.parent.parent; } return Debug.checkDefined(prevStatement, "prevStatement failed to get set"); } Debug.assert(curr !== scope, "Didn't encounter a block-like before encountering scope"); } } function getPropertyAssignmentsForWritesAndVariableDeclarations(exposedVariableDeclarations, writes) { const variableAssignments = map(exposedVariableDeclarations, (v) => factory.createShorthandPropertyAssignment(v.symbol.name)); const writeAssignments = map(writes, (w) => factory.createShorthandPropertyAssignment(w.symbol.name)); return variableAssignments === undefined ? writeAssignments : writeAssignments === undefined ? variableAssignments : variableAssignments.concat(writeAssignments); } function isReadonlyArray(v) { return isArray(v); } function getEnclosingTextRange(targetRange, sourceFile) { return isReadonlyArray(targetRange.range) ? { pos: first(targetRange.range).getStart(sourceFile), end: last(targetRange.range).getEnd() } : targetRange.range; } function collectReadsAndWrites(targetRange, scopes, enclosingTextRange, sourceFile, checker, cancellationToken) { const allTypeParameterUsages = /* @__PURE__ */ new Map; const usagesPerScope = []; const substitutionsPerScope = []; const functionErrorsPerScope = []; const constantErrorsPerScope = []; const visibleDeclarationsInExtractedRange = []; const exposedVariableSymbolSet = /* @__PURE__ */ new Map; const exposedVariableDeclarations = []; let firstExposedNonVariableDeclaration; const expression = !isReadonlyArray(targetRange.range) ? targetRange.range : targetRange.range.length === 1 && isExpressionStatement(targetRange.range[0]) ? targetRange.range[0].expression : undefined; let expressionDiagnostic; if (expression === undefined) { const statements = targetRange.range; const start = first(statements).getStart(); const end = last(statements).end; expressionDiagnostic = createFileDiagnostic(sourceFile, start, end - start, Messages.expressionExpected); } else if (checker.getTypeAtLocation(expression).flags & (16 | 262144)) { expressionDiagnostic = createDiagnosticForNode(expression, Messages.uselessConstantType); } for (const scope of scopes) { usagesPerScope.push({ usages: /* @__PURE__ */ new Map, typeParameterUsages: /* @__PURE__ */ new Map, substitutions: /* @__PURE__ */ new Map }); substitutionsPerScope.push(/* @__PURE__ */ new Map); functionErrorsPerScope.push([]); const constantErrors = []; if (expressionDiagnostic) { constantErrors.push(expressionDiagnostic); } if (isClassLike(scope) && isInJSFile(scope)) { constantErrors.push(createDiagnosticForNode(scope, Messages.cannotExtractToJSClass)); } if (isArrowFunction(scope) && !isBlock(scope.body)) { constantErrors.push(createDiagnosticForNode(scope, Messages.cannotExtractToExpressionArrowFunction)); } constantErrorsPerScope.push(constantErrors); } const seenUsages = /* @__PURE__ */ new Map; const target = isReadonlyArray(targetRange.range) ? factory.createBlock(targetRange.range) : targetRange.range; const unmodifiedNode = isReadonlyArray(targetRange.range) ? first(targetRange.range) : targetRange.range; const inGenericContext = isInGenericContext(unmodifiedNode); collectUsages(target); if (inGenericContext && !isReadonlyArray(targetRange.range) && !isJsxAttribute(targetRange.range)) { const contextualType = checker.getContextualType(targetRange.range); recordTypeParameterUsages(contextualType); } if (allTypeParameterUsages.size > 0) { const seenTypeParameterUsages = /* @__PURE__ */ new Map; let i = 0; for (let curr = unmodifiedNode;curr !== undefined && i < scopes.length; curr = curr.parent) { if (curr === scopes[i]) { seenTypeParameterUsages.forEach((typeParameter, id) => { usagesPerScope[i].typeParameterUsages.set(id, typeParameter); }); i++; } if (isDeclarationWithTypeParameters(curr)) { for (const typeParameterDecl of getEffectiveTypeParameterDeclarations(curr)) { const typeParameter = checker.getTypeAtLocation(typeParameterDecl); if (allTypeParameterUsages.has(typeParameter.id.toString())) { seenTypeParameterUsages.set(typeParameter.id.toString(), typeParameter); } } } } Debug.assert(i === scopes.length, "Should have iterated all scopes"); } if (visibleDeclarationsInExtractedRange.length) { const containingLexicalScopeOfExtraction = isBlockScope(scopes[0], scopes[0].parent) ? scopes[0] : getEnclosingBlockScopeContainer(scopes[0]); forEachChild(containingLexicalScopeOfExtraction, checkForUsedDeclarations); } for (let i = 0;i < scopes.length; i++) { const scopeUsages = usagesPerScope[i]; if (i > 0 && (scopeUsages.usages.size > 0 || scopeUsages.typeParameterUsages.size > 0)) { const errorNode = isReadonlyArray(targetRange.range) ? targetRange.range[0] : targetRange.range; constantErrorsPerScope[i].push(createDiagnosticForNode(errorNode, Messages.cannotAccessVariablesFromNestedScopes)); } if (targetRange.facts & 16 && isClassLike(scopes[i])) { functionErrorsPerScope[i].push(createDiagnosticForNode(targetRange.thisNode, Messages.cannotExtractFunctionsContainingThisToMethod)); } let hasWrite = false; let readonlyClassPropertyWrite; usagesPerScope[i].usages.forEach((value) => { if (value.usage === 2) { hasWrite = true; if (value.symbol.flags & 106500 && value.symbol.valueDeclaration && hasEffectiveModifier(value.symbol.valueDeclaration, 8)) { readonlyClassPropertyWrite = value.symbol.valueDeclaration; } } }); Debug.assert(isReadonlyArray(targetRange.range) || exposedVariableDeclarations.length === 0, "No variable declarations expected if something was extracted"); if (hasWrite && !isReadonlyArray(targetRange.range)) { const diag2 = createDiagnosticForNode(targetRange.range, Messages.cannotWriteInExpression); functionErrorsPerScope[i].push(diag2); constantErrorsPerScope[i].push(diag2); } else if (readonlyClassPropertyWrite && i > 0) { const diag2 = createDiagnosticForNode(readonlyClassPropertyWrite, Messages.cannotExtractReadonlyPropertyInitializerOutsideConstructor); functionErrorsPerScope[i].push(diag2); constantErrorsPerScope[i].push(diag2); } else if (firstExposedNonVariableDeclaration) { const diag2 = createDiagnosticForNode(firstExposedNonVariableDeclaration, Messages.cannotExtractExportedEntity); functionErrorsPerScope[i].push(diag2); constantErrorsPerScope[i].push(diag2); } } return { target, usagesPerScope, functionErrorsPerScope, constantErrorsPerScope, exposedVariableDeclarations }; function isInGenericContext(node) { return !!findAncestor(node, (n) => isDeclarationWithTypeParameters(n) && getEffectiveTypeParameterDeclarations(n).length !== 0); } function recordTypeParameterUsages(type) { const symbolWalker = checker.getSymbolWalker(() => (cancellationToken.throwIfCancellationRequested(), true)); const { visitedTypes } = symbolWalker.walkType(type); for (const visitedType of visitedTypes) { if (visitedType.isTypeParameter()) { allTypeParameterUsages.set(visitedType.id.toString(), visitedType); } } } function collectUsages(node, valueUsage = 1) { if (inGenericContext) { const type = checker.getTypeAtLocation(node); recordTypeParameterUsages(type); } if (isDeclaration(node) && node.symbol) { visibleDeclarationsInExtractedRange.push(node); } if (isAssignmentExpression(node)) { collectUsages(node.left, 2); collectUsages(node.right); } else if (isUnaryExpressionWithWrite(node)) { collectUsages(node.operand, 2); } else if (isPropertyAccessExpression(node) || isElementAccessExpression(node)) { forEachChild(node, collectUsages); } else if (isIdentifier(node)) { if (!node.parent) { return; } if (isQualifiedName(node.parent) && node !== node.parent.left) { return; } if (isPropertyAccessExpression(node.parent) && node !== node.parent.expression) { return; } recordUsage(node, valueUsage, isPartOfTypeNode(node)); } else { forEachChild(node, collectUsages); } } function recordUsage(n, usage, isTypeNode2) { const symbolId = recordUsagebySymbol(n, usage, isTypeNode2); if (symbolId) { for (let i = 0;i < scopes.length; i++) { const substitution = substitutionsPerScope[i].get(symbolId); if (substitution) { usagesPerScope[i].substitutions.set(getNodeId(n).toString(), substitution); } } } } function recordUsagebySymbol(identifier, usage, isTypeName) { const symbol = getSymbolReferencedByIdentifier(identifier); if (!symbol) { return; } const symbolId = getSymbolId(symbol).toString(); const lastUsage = seenUsages.get(symbolId); if (lastUsage && lastUsage >= usage) { return symbolId; } seenUsages.set(symbolId, usage); if (lastUsage) { for (const perScope of usagesPerScope) { const prevEntry = perScope.usages.get(identifier.text); if (prevEntry) { perScope.usages.set(identifier.text, { usage, symbol, node: identifier }); } } return symbolId; } const decls = symbol.getDeclarations(); const declInFile = decls && find(decls, (d) => d.getSourceFile() === sourceFile); if (!declInFile) { return; } if (rangeContainsStartEnd(enclosingTextRange, declInFile.getStart(), declInFile.end)) { return; } if (targetRange.facts & 2 && usage === 2) { const diag2 = createDiagnosticForNode(identifier, Messages.cannotExtractRangeThatContainsWritesToReferencesLocatedOutsideOfTheTargetRangeInGenerators); for (const errors of functionErrorsPerScope) { errors.push(diag2); } for (const errors of constantErrorsPerScope) { errors.push(diag2); } } for (let i = 0;i < scopes.length; i++) { const scope = scopes[i]; const resolvedSymbol = checker.resolveName(symbol.name, scope, symbol.flags, false); if (resolvedSymbol === symbol) { continue; } if (!substitutionsPerScope[i].has(symbolId)) { const substitution = tryReplaceWithQualifiedNameOrPropertyAccess(symbol.exportSymbol || symbol, scope, isTypeName); if (substitution) { substitutionsPerScope[i].set(symbolId, substitution); } else if (isTypeName) { if (!(symbol.flags & 262144)) { const diag2 = createDiagnosticForNode(identifier, Messages.typeWillNotBeVisibleInTheNewScope); functionErrorsPerScope[i].push(diag2); constantErrorsPerScope[i].push(diag2); } } else { usagesPerScope[i].usages.set(identifier.text, { usage, symbol, node: identifier }); } } } return symbolId; } function checkForUsedDeclarations(node) { if (node === targetRange.range || isReadonlyArray(targetRange.range) && targetRange.range.includes(node)) { return; } const sym = isIdentifier(node) ? getSymbolReferencedByIdentifier(node) : checker.getSymbolAtLocation(node); if (sym) { const decl = find(visibleDeclarationsInExtractedRange, (d) => d.symbol === sym); if (decl) { if (isVariableDeclaration(decl)) { const idString = decl.symbol.id.toString(); if (!exposedVariableSymbolSet.has(idString)) { exposedVariableDeclarations.push(decl); exposedVariableSymbolSet.set(idString, true); } } else { firstExposedNonVariableDeclaration = firstExposedNonVariableDeclaration || decl; } } } forEachChild(node, checkForUsedDeclarations); } function getSymbolReferencedByIdentifier(identifier) { return identifier.parent && isShorthandPropertyAssignment(identifier.parent) && identifier.parent.name === identifier ? checker.getShorthandAssignmentValueSymbol(identifier.parent) : checker.getSymbolAtLocation(identifier); } function tryReplaceWithQualifiedNameOrPropertyAccess(symbol, scopeDecl, isTypeNode2) { if (!symbol) { return; } const decls = symbol.getDeclarations(); if (decls && decls.some((d) => d.parent === scopeDecl)) { return factory.createIdentifier(symbol.name); } const prefix = tryReplaceWithQualifiedNameOrPropertyAccess(symbol.parent, scopeDecl, isTypeNode2); if (prefix === undefined) { return; } return isTypeNode2 ? factory.createQualifiedName(prefix, factory.createIdentifier(symbol.name)) : factory.createPropertyAccessExpression(prefix, symbol.name); } } function getExtractableParent(node) { return findAncestor(node, (node2) => node2.parent && isExtractableExpression(node2) && !isBinaryExpression(node2.parent)); } function isExtractableExpression(node) { const { parent: parent2 } = node; switch (parent2.kind) { case 307: return false; } switch (node.kind) { case 11: return parent2.kind !== 273 && parent2.kind !== 277; case 231: case 207: case 209: return false; case 80: return parent2.kind !== 209 && parent2.kind !== 277 && parent2.kind !== 282; } return true; } function isInJSXContent(node) { return isStringLiteralJsxAttribute(node) || (isJsxElement(node) || isJsxSelfClosingElement(node) || isJsxFragment(node)) && (isJsxElement(node.parent) || isJsxFragment(node.parent)); } function isStringLiteralJsxAttribute(node) { return isStringLiteral(node) && node.parent && isJsxAttribute(node.parent); } var ts_refactor_generateGetAccessorAndSetAccessor_exports = {}; var actionName = "Generate 'get' and 'set' accessors"; var actionDescription = getLocaleSpecificMessage(Diagnostics.Generate_get_and_set_accessors); var generateGetSetAction = { name: actionName, description: actionDescription, kind: "refactor.rewrite.property.generateAccessors" }; registerRefactor(actionName, { kinds: [generateGetSetAction.kind], getEditsForAction: function getRefactorActionsToGenerateGetAndSetAccessors(context, actionName2) { if (!context.endPosition) return; const info = ts_codefix_exports.getAccessorConvertiblePropertyAtPosition(context.file, context.program, context.startPosition, context.endPosition); Debug.assert(info && !isRefactorErrorInfo(info), "Expected applicable refactor info"); const edits = ts_codefix_exports.generateAccessorFromProperty(context.file, context.program, context.startPosition, context.endPosition, context, actionName2); if (!edits) return; const renameFilename = context.file.fileName; const nameNeedRename = info.renameAccessor ? info.accessorName : info.fieldName; const renameLocationOffset = isIdentifier(nameNeedRename) ? 0 : -1; const renameLocation = renameLocationOffset + getRenameLocation(edits, renameFilename, nameNeedRename.text, isParameter(info.declaration)); return { renameFilename, renameLocation, edits }; }, getAvailableActions(context) { if (!context.endPosition) return emptyArray; const info = ts_codefix_exports.getAccessorConvertiblePropertyAtPosition(context.file, context.program, context.startPosition, context.endPosition, context.triggerReason === "invoked"); if (!info) return emptyArray; if (!isRefactorErrorInfo(info)) { return [{ name: actionName, description: actionDescription, actions: [generateGetSetAction] }]; } if (context.preferences.provideRefactorNotApplicableReason) { return [{ name: actionName, description: actionDescription, actions: [{ ...generateGetSetAction, notApplicableReason: info.error }] }]; } return emptyArray; } }); var ts_refactor_inferFunctionReturnType_exports = {}; var refactorName13 = "Infer function return type"; var refactorDescription7 = getLocaleSpecificMessage(Diagnostics.Infer_function_return_type); var inferReturnTypeAction = { name: refactorName13, description: refactorDescription7, kind: "refactor.rewrite.function.returnType" }; registerRefactor(refactorName13, { kinds: [inferReturnTypeAction.kind], getEditsForAction: getRefactorEditsToInferReturnType, getAvailableActions: getRefactorActionsToInferReturnType }); function getRefactorEditsToInferReturnType(context) { const info = getInfo4(context); if (info && !isRefactorErrorInfo(info)) { const edits = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange7(context.file, t, info.declaration, info.returnTypeNode)); return { renameFilename: undefined, renameLocation: undefined, edits }; } return; } function getRefactorActionsToInferReturnType(context) { const info = getInfo4(context); if (!info) return emptyArray; if (!isRefactorErrorInfo(info)) { return [{ name: refactorName13, description: refactorDescription7, actions: [inferReturnTypeAction] }]; } if (context.preferences.provideRefactorNotApplicableReason) { return [{ name: refactorName13, description: refactorDescription7, actions: [{ ...inferReturnTypeAction, notApplicableReason: info.error }] }]; } return emptyArray; } function doChange7(sourceFile, changes, declaration, typeNode) { const closeParen = findChildOfKind(declaration, 22, sourceFile); const needParens = isArrowFunction(declaration) && closeParen === undefined; const endNode2 = needParens ? first(declaration.parameters) : closeParen; if (endNode2) { if (needParens) { changes.insertNodeBefore(sourceFile, endNode2, factory.createToken(21)); changes.insertNodeAfter(sourceFile, endNode2, factory.createToken(22)); } changes.insertNodeAt(sourceFile, endNode2.end, typeNode, { prefix: ": " }); } } function getInfo4(context) { if (isInJSFile(context.file) || !refactorKindBeginsWith(inferReturnTypeAction.kind, context.kind)) return; const token = getTouchingPropertyName(context.file, context.startPosition); const declaration = findAncestor(token, (n) => isBlock(n) || n.parent && isArrowFunction(n.parent) && (n.kind === 39 || n.parent.body === n) ? "quit" : isConvertibleDeclaration(n)); if (!declaration || !declaration.body || declaration.type) { return { error: getLocaleSpecificMessage(Diagnostics.Return_type_must_be_inferred_from_a_function) }; } const typeChecker = context.program.getTypeChecker(); let returnType; if (typeChecker.isImplementationOfOverload(declaration)) { const signatures = typeChecker.getTypeAtLocation(declaration).getCallSignatures(); if (signatures.length > 1) { returnType = typeChecker.getUnionType(mapDefined(signatures, (s) => s.getReturnType())); } } if (!returnType) { const signature = typeChecker.getSignatureFromDeclaration(declaration); if (signature) { const typePredicate = typeChecker.getTypePredicateOfSignature(signature); if (typePredicate && typePredicate.type) { const typePredicateTypeNode = typeChecker.typePredicateToTypePredicateNode(typePredicate, declaration, 1, 8); if (typePredicateTypeNode) { return { declaration, returnTypeNode: typePredicateTypeNode }; } } else { returnType = typeChecker.getReturnTypeOfSignature(signature); } } } if (!returnType) { return { error: getLocaleSpecificMessage(Diagnostics.Could_not_determine_function_return_type) }; } const returnTypeNode = typeChecker.typeToTypeNode(returnType, declaration, 1, 8); if (returnTypeNode) { return { declaration, returnTypeNode }; } } function isConvertibleDeclaration(node) { switch (node.kind) { case 263: case 219: case 220: case 175: return true; default: return false; } } var TokenEncodingConsts = /* @__PURE__ */ ((TokenEncodingConsts2) => { TokenEncodingConsts2[TokenEncodingConsts2["typeOffset"] = 8] = "typeOffset"; TokenEncodingConsts2[TokenEncodingConsts2["modifierMask"] = 255] = "modifierMask"; return TokenEncodingConsts2; })(TokenEncodingConsts || {}); var TokenType = /* @__PURE__ */ ((TokenType2) => { TokenType2[TokenType2["class"] = 0] = "class"; TokenType2[TokenType2["enum"] = 1] = "enum"; TokenType2[TokenType2["interface"] = 2] = "interface"; TokenType2[TokenType2["namespace"] = 3] = "namespace"; TokenType2[TokenType2["typeParameter"] = 4] = "typeParameter"; TokenType2[TokenType2["type"] = 5] = "type"; TokenType2[TokenType2["parameter"] = 6] = "parameter"; TokenType2[TokenType2["variable"] = 7] = "variable"; TokenType2[TokenType2["enumMember"] = 8] = "enumMember"; TokenType2[TokenType2["property"] = 9] = "property"; TokenType2[TokenType2["function"] = 10] = "function"; TokenType2[TokenType2["member"] = 11] = "member"; return TokenType2; })(TokenType || {}); var TokenModifier = /* @__PURE__ */ ((TokenModifier2) => { TokenModifier2[TokenModifier2["declaration"] = 0] = "declaration"; TokenModifier2[TokenModifier2["static"] = 1] = "static"; TokenModifier2[TokenModifier2["async"] = 2] = "async"; TokenModifier2[TokenModifier2["readonly"] = 3] = "readonly"; TokenModifier2[TokenModifier2["defaultLibrary"] = 4] = "defaultLibrary"; TokenModifier2[TokenModifier2["local"] = 5] = "local"; return TokenModifier2; })(TokenModifier || {}); function getSemanticClassifications2(program, cancellationToken, sourceFile, span) { const classifications = getEncodedSemanticClassifications2(program, cancellationToken, sourceFile, span); Debug.assert(classifications.spans.length % 3 === 0); const dense = classifications.spans; const result = []; for (let i = 0;i < dense.length; i += 3) { result.push({ textSpan: createTextSpan(dense[i], dense[i + 1]), classificationType: dense[i + 2] }); } return result; } function getEncodedSemanticClassifications2(program, cancellationToken, sourceFile, span) { return { spans: getSemanticTokens(program, sourceFile, span, cancellationToken), endOfLineState: 0 }; } function getSemanticTokens(program, sourceFile, span, cancellationToken) { const resultTokens = []; const collector = (node, typeIdx, modifierSet) => { resultTokens.push(node.getStart(sourceFile), node.getWidth(sourceFile), (typeIdx + 1 << 8) + modifierSet); }; if (program && sourceFile) { collectTokens(program, sourceFile, span, collector, cancellationToken); } return resultTokens; } function collectTokens(program, sourceFile, span, collector, cancellationToken) { const typeChecker = program.getTypeChecker(); let inJSXElement = false; function visit(node) { switch (node.kind) { case 268: case 264: case 265: case 263: case 232: case 219: case 220: cancellationToken.throwIfCancellationRequested(); } if (!node || !textSpanIntersectsWith(span, node.pos, node.getFullWidth()) || node.getFullWidth() === 0) { return; } const prevInJSXElement = inJSXElement; if (isJsxElement(node) || isJsxSelfClosingElement(node)) { inJSXElement = true; } if (isJsxExpression(node)) { inJSXElement = false; } if (isIdentifier(node) && !inJSXElement && !inImportClause(node) && !isInfinityOrNaNString(node.escapedText)) { let symbol = typeChecker.getSymbolAtLocation(node); if (symbol) { if (symbol.flags & 2097152) { symbol = typeChecker.getAliasedSymbol(symbol); } let typeIdx = classifySymbol2(symbol, getMeaningFromLocation(node)); if (typeIdx !== undefined) { let modifierSet = 0; if (node.parent) { const parentIsDeclaration = isBindingElement(node.parent) || tokenFromDeclarationMapping.get(node.parent.kind) === typeIdx; if (parentIsDeclaration && node.parent.name === node) { modifierSet = 1 << 0; } } if (typeIdx === 6 && isRightSideOfQualifiedNameOrPropertyAccess2(node)) { typeIdx = 9; } typeIdx = reclassifyByType(typeChecker, node, typeIdx); const decl = symbol.valueDeclaration; if (decl) { const modifiers = getCombinedModifierFlags(decl); const nodeFlags = getCombinedNodeFlags(decl); if (modifiers & 256) { modifierSet |= 1 << 1; } if (modifiers & 1024) { modifierSet |= 1 << 2; } if (typeIdx !== 0 && typeIdx !== 2) { if (modifiers & 8 || nodeFlags & 2 || symbol.getFlags() & 8) { modifierSet |= 1 << 3; } } if ((typeIdx === 7 || typeIdx === 10) && isLocalDeclaration(decl, sourceFile)) { modifierSet |= 1 << 5; } if (program.isSourceFileDefaultLibrary(decl.getSourceFile())) { modifierSet |= 1 << 4; } } else if (symbol.declarations && symbol.declarations.some((d) => program.isSourceFileDefaultLibrary(d.getSourceFile()))) { modifierSet |= 1 << 4; } collector(node, typeIdx, modifierSet); } } } forEachChild(node, visit); inJSXElement = prevInJSXElement; } visit(sourceFile); } function classifySymbol2(symbol, meaning) { const flags = symbol.getFlags(); if (flags & 32) { return 0; } else if (flags & 384) { return 1; } else if (flags & 524288) { return 5; } else if (flags & 64) { if (meaning & 2) { return 2; } } else if (flags & 262144) { return 4; } let decl = symbol.valueDeclaration || symbol.declarations && symbol.declarations[0]; if (decl && isBindingElement(decl)) { decl = getDeclarationForBindingElement(decl); } return decl && tokenFromDeclarationMapping.get(decl.kind); } function reclassifyByType(typeChecker, node, typeIdx) { if (typeIdx === 7 || typeIdx === 9 || typeIdx === 6) { const type = typeChecker.getTypeAtLocation(node); if (type) { const test = (condition) => { return condition(type) || type.isUnion() && type.types.some(condition); }; if (typeIdx !== 6 && test((t) => t.getConstructSignatures().length > 0)) { return 0; } if (test((t) => t.getCallSignatures().length > 0) && !test((t) => t.getProperties().length > 0) || isExpressionInCallExpression(node)) { return typeIdx === 9 ? 11 : 10; } } } return typeIdx; } function isLocalDeclaration(decl, sourceFile) { if (isBindingElement(decl)) { decl = getDeclarationForBindingElement(decl); } if (isVariableDeclaration(decl)) { return (!isSourceFile(decl.parent.parent.parent) || isCatchClause(decl.parent)) && decl.getSourceFile() === sourceFile; } else if (isFunctionDeclaration(decl)) { return !isSourceFile(decl.parent) && decl.getSourceFile() === sourceFile; } return false; } function getDeclarationForBindingElement(element) { while (true) { if (isBindingElement(element.parent.parent)) { element = element.parent.parent; } else { return element.parent.parent; } } } function inImportClause(node) { const parent2 = node.parent; return parent2 && (isImportClause(parent2) || isImportSpecifier(parent2) || isNamespaceImport(parent2)); } function isExpressionInCallExpression(node) { while (isRightSideOfQualifiedNameOrPropertyAccess2(node)) { node = node.parent; } return isCallExpression(node.parent) && node.parent.expression === node; } function isRightSideOfQualifiedNameOrPropertyAccess2(node) { return isQualifiedName(node.parent) && node.parent.right === node || isPropertyAccessExpression(node.parent) && node.parent.name === node; } var tokenFromDeclarationMapping = /* @__PURE__ */ new Map([ [261, 7], [170, 6], [173, 9], [268, 3], [267, 1], [307, 8], [264, 0], [175, 11], [263, 10], [219, 10], [174, 11], [178, 9], [179, 9], [172, 9], [265, 2], [266, 5], [169, 4], [304, 9], [305, 9] ]); var servicesVersion = "0.8"; function createNode(kind, pos, end, parent2) { const node = isNodeKind(kind) ? new NodeObject(kind, pos, end) : kind === 80 ? new IdentifierObject(80, pos, end) : kind === 81 ? new PrivateIdentifierObject(81, pos, end) : new TokenObject(kind, pos, end); node.parent = parent2; node.flags = parent2.flags & 101441536; return node; } var NodeObject = class { constructor(kind, pos, end) { this.pos = pos; this.end = end; this.kind = kind; this.id = 0; this.flags = 0; this.modifierFlagsCache = 0; this.transformFlags = 0; this.parent = undefined; this.original = undefined; this.emitNode = undefined; } assertHasRealPosition(message) { Debug.assert(!positionIsSynthesized(this.pos) && !positionIsSynthesized(this.end), message || "Node must have a real position for this operation"); } getSourceFile() { return getSourceFileOfNode(this); } getStart(sourceFile, includeJsDocComment) { this.assertHasRealPosition(); return getTokenPosOfNode(this, sourceFile, includeJsDocComment); } getFullStart() { this.assertHasRealPosition(); return this.pos; } getEnd() { this.assertHasRealPosition(); return this.end; } getWidth(sourceFile) { this.assertHasRealPosition(); return this.getEnd() - this.getStart(sourceFile); } getFullWidth() { this.assertHasRealPosition(); return this.end - this.pos; } getLeadingTriviaWidth(sourceFile) { this.assertHasRealPosition(); return this.getStart(sourceFile) - this.pos; } getFullText(sourceFile) { this.assertHasRealPosition(); return (sourceFile || this.getSourceFile()).text.substring(this.pos, this.end); } getText(sourceFile) { this.assertHasRealPosition(); if (!sourceFile) { sourceFile = this.getSourceFile(); } return sourceFile.text.substring(this.getStart(sourceFile), this.getEnd()); } getChildCount(sourceFile) { return this.getChildren(sourceFile).length; } getChildAt(index, sourceFile) { return this.getChildren(sourceFile)[index]; } getChildren(sourceFile = getSourceFileOfNode(this)) { this.assertHasRealPosition("Node without a real position cannot be scanned and thus has no token nodes - use forEachChild and collect the result if that's fine"); return getNodeChildren(this, sourceFile) ?? setNodeChildren(this, sourceFile, createChildren(this, sourceFile)); } getFirstToken(sourceFile) { this.assertHasRealPosition(); const children = this.getChildren(sourceFile); if (!children.length) { return; } const child = find(children, (kid) => kid.kind < 310 || kid.kind > 352); return child.kind < 167 ? child : child.getFirstToken(sourceFile); } getLastToken(sourceFile) { this.assertHasRealPosition(); const children = this.getChildren(sourceFile); const child = lastOrUndefined(children); if (!child) { return; } return child.kind < 167 ? child : child.getLastToken(sourceFile); } forEachChild(cbNode, cbNodeArray) { return forEachChild(this, cbNode, cbNodeArray); } }; function createChildren(node, sourceFile) { const children = []; if (isJSDocCommentContainingNode(node)) { node.forEachChild((child) => { children.push(child); }); return children; } scanner.setText((sourceFile || node.getSourceFile()).text); let pos = node.pos; const processNode = (child) => { addSyntheticNodes(children, pos, child.pos, node); children.push(child); pos = child.end; }; const processNodes = (nodes) => { addSyntheticNodes(children, pos, nodes.pos, node); children.push(createSyntaxList(nodes, node)); pos = nodes.end; }; forEach(node.jsDoc, processNode); pos = node.pos; node.forEachChild(processNode, processNodes); addSyntheticNodes(children, pos, node.end, node); scanner.setText(undefined); return children; } function addSyntheticNodes(nodes, pos, end, parent2) { scanner.resetTokenState(pos); while (pos < end) { const token = scanner.scan(); const textPos = scanner.getTokenEnd(); if (textPos <= end) { if (token === 80) { if (hasTabstop(parent2)) { continue; } Debug.fail(`Did not expect ${Debug.formatSyntaxKind(parent2.kind)} to have an Identifier in its trivia`); } nodes.push(createNode(token, pos, textPos, parent2)); } pos = textPos; if (token === 1) { break; } } } function createSyntaxList(nodes, parent2) { const list = createNode(353, nodes.pos, nodes.end, parent2); const children = []; let pos = nodes.pos; for (const node of nodes) { addSyntheticNodes(children, pos, node.pos, parent2); children.push(node); pos = node.end; } addSyntheticNodes(children, pos, nodes.end, parent2); list._children = children; return list; } var TokenOrIdentifierObject = class { constructor(kind, pos, end) { this.pos = pos; this.end = end; this.kind = kind; this.id = 0; this.flags = 0; this.transformFlags = 0; this.parent = undefined; this.emitNode = undefined; } getSourceFile() { return getSourceFileOfNode(this); } getStart(sourceFile, includeJsDocComment) { return getTokenPosOfNode(this, sourceFile, includeJsDocComment); } getFullStart() { return this.pos; } getEnd() { return this.end; } getWidth(sourceFile) { return this.getEnd() - this.getStart(sourceFile); } getFullWidth() { return this.end - this.pos; } getLeadingTriviaWidth(sourceFile) { return this.getStart(sourceFile) - this.pos; } getFullText(sourceFile) { return (sourceFile || this.getSourceFile()).text.substring(this.pos, this.end); } getText(sourceFile) { if (!sourceFile) { sourceFile = this.getSourceFile(); } return sourceFile.text.substring(this.getStart(sourceFile), this.getEnd()); } getChildCount() { return this.getChildren().length; } getChildAt(index) { return this.getChildren()[index]; } getChildren() { return this.kind === 1 ? this.jsDoc || emptyArray : emptyArray; } getFirstToken() { return; } getLastToken() { return; } forEachChild() { return; } }; var SymbolObject = class { constructor(flags, name) { this.flags = flags; this.escapedName = name; this.declarations = undefined; this.valueDeclaration = undefined; this.id = 0; this.mergeId = 0; this.parent = undefined; this.members = undefined; this.exports = undefined; this.exportSymbol = undefined; this.constEnumOnlyModule = undefined; this.isReferenced = undefined; this.lastAssignmentPos = undefined; this.links = undefined; } getFlags() { return this.flags; } get name() { return symbolName(this); } getEscapedName() { return this.escapedName; } getName() { return this.name; } getDeclarations() { return this.declarations; } getDocumentationComment(checker) { if (!this.documentationComment) { this.documentationComment = emptyArray; if (!this.declarations && isTransientSymbol(this) && this.links.target && isTransientSymbol(this.links.target) && this.links.target.links.tupleLabelDeclaration) { const labelDecl = this.links.target.links.tupleLabelDeclaration; this.documentationComment = getDocumentationComment([labelDecl], checker); } else { this.documentationComment = getDocumentationComment(this.declarations, checker); } } return this.documentationComment; } getContextualDocumentationComment(context, checker) { if (context) { if (isGetAccessor(context)) { if (!this.contextualGetAccessorDocumentationComment) { this.contextualGetAccessorDocumentationComment = emptyArray; this.contextualGetAccessorDocumentationComment = getDocumentationComment(filter(this.declarations, isGetAccessor), checker); } if (length(this.contextualGetAccessorDocumentationComment)) { return this.contextualGetAccessorDocumentationComment; } } if (isSetAccessor(context)) { if (!this.contextualSetAccessorDocumentationComment) { this.contextualSetAccessorDocumentationComment = emptyArray; this.contextualSetAccessorDocumentationComment = getDocumentationComment(filter(this.declarations, isSetAccessor), checker); } if (length(this.contextualSetAccessorDocumentationComment)) { return this.contextualSetAccessorDocumentationComment; } } } return this.getDocumentationComment(checker); } getJsDocTags(checker) { if (this.tags === undefined) { this.tags = emptyArray; this.tags = getJsDocTagsOfDeclarations(this.declarations, checker); } return this.tags; } getContextualJsDocTags(context, checker) { if (context) { if (isGetAccessor(context)) { if (!this.contextualGetAccessorTags) { this.contextualGetAccessorTags = emptyArray; this.contextualGetAccessorTags = getJsDocTagsOfDeclarations(filter(this.declarations, isGetAccessor), checker); } if (length(this.contextualGetAccessorTags)) { return this.contextualGetAccessorTags; } } if (isSetAccessor(context)) { if (!this.contextualSetAccessorTags) { this.contextualSetAccessorTags = emptyArray; this.contextualSetAccessorTags = getJsDocTagsOfDeclarations(filter(this.declarations, isSetAccessor), checker); } if (length(this.contextualSetAccessorTags)) { return this.contextualSetAccessorTags; } } } return this.getJsDocTags(checker); } }; var TokenObject = class extends TokenOrIdentifierObject { constructor(kind, pos, end) { super(kind, pos, end); } }; var IdentifierObject = class extends TokenOrIdentifierObject { constructor(kind, pos, end) { super(kind, pos, end); } get text() { return idText(this); } }; var PrivateIdentifierObject = class extends TokenOrIdentifierObject { constructor(kind, pos, end) { super(kind, pos, end); } get text() { return idText(this); } }; var TypeObject = class { constructor(checker, flags) { this.flags = flags; this.checker = checker; } getFlags() { return this.flags; } getSymbol() { return this.symbol; } getProperties() { return this.checker.getPropertiesOfType(this); } getProperty(propertyName) { return this.checker.getPropertyOfType(this, propertyName); } getApparentProperties() { return this.checker.getAugmentedPropertiesOfType(this); } getCallSignatures() { return this.checker.getSignaturesOfType(this, 0); } getConstructSignatures() { return this.checker.getSignaturesOfType(this, 1); } getStringIndexType() { return this.checker.getIndexTypeOfType(this, 0); } getNumberIndexType() { return this.checker.getIndexTypeOfType(this, 1); } getBaseTypes() { return this.isClassOrInterface() ? this.checker.getBaseTypes(this) : undefined; } isNullableType() { return this.checker.isNullableType(this); } getNonNullableType() { return this.checker.getNonNullableType(this); } getNonOptionalType() { return this.checker.getNonOptionalType(this); } getConstraint() { return this.checker.getBaseConstraintOfType(this); } getDefault() { return this.checker.getDefaultFromTypeParameter(this); } isUnion() { return !!(this.flags & 134217728); } isIntersection() { return !!(this.flags & 268435456); } isUnionOrIntersection() { return !!(this.flags & 402653184); } isLiteral() { return !!(this.flags & (1024 | 2048 | 4096)); } isStringLiteral() { return !!(this.flags & 1024); } isNumberLiteral() { return !!(this.flags & 2048); } isTypeParameter() { return !!(this.flags & 524288); } isClassOrInterface() { return !!(getObjectFlags(this) & 3); } isClass() { return !!(getObjectFlags(this) & 1); } isIndexType() { return !!(this.flags & 2097152); } get typeArguments() { if (getObjectFlags(this) & 4) { return this.checker.getTypeArguments(this); } return; } }; var SignatureObject = class { constructor(checker, flags) { this.flags = flags; this.checker = checker; } getDeclaration() { return this.declaration; } getTypeParameters() { return this.typeParameters; } getParameters() { return this.parameters; } getReturnType() { return this.checker.getReturnTypeOfSignature(this); } getTypeParameterAtPosition(pos) { const type = this.checker.getParameterType(this, pos); if (type.isIndexType() && isThisTypeParameter(type.type)) { const constraint = type.type.getConstraint(); if (constraint) { return this.checker.getIndexType(constraint); } } return type; } getDocumentationComment() { return this.documentationComment || (this.documentationComment = getDocumentationComment(singleElementArray(this.declaration), this.checker)); } getJsDocTags() { return this.jsDocTags || (this.jsDocTags = getJsDocTagsOfDeclarations(singleElementArray(this.declaration), this.checker)); } }; function hasJSDocInheritDocTag(node) { return getJSDocTags(node).some((tag) => tag.tagName.text === "inheritDoc" || tag.tagName.text === "inheritdoc"); } function getJsDocTagsOfDeclarations(declarations, checker) { if (!declarations) return emptyArray; let tags = ts_JsDoc_exports.getJsDocTagsFromDeclarations(declarations, checker); if (checker && (tags.length === 0 || declarations.some(hasJSDocInheritDocTag))) { const seenSymbols = /* @__PURE__ */ new Set; for (const declaration of declarations) { const inheritedTags = findBaseOfDeclaration(checker, declaration, (symbol) => { var _a; if (!seenSymbols.has(symbol)) { seenSymbols.add(symbol); if (declaration.kind === 178 || declaration.kind === 179) { return symbol.getContextualJsDocTags(declaration, checker); } return ((_a = symbol.declarations) == null ? undefined : _a.length) === 1 ? symbol.getJsDocTags(checker) : undefined; } }); if (inheritedTags) { tags = [...inheritedTags, ...tags]; } } } return tags; } function getDocumentationComment(declarations, checker) { if (!declarations) return emptyArray; let doc = ts_JsDoc_exports.getJsDocCommentsFromDeclarations(declarations, checker); if (checker && (doc.length === 0 || declarations.some(hasJSDocInheritDocTag))) { const seenSymbols = /* @__PURE__ */ new Set; for (const declaration of declarations) { const inheritedDocs = findBaseOfDeclaration(checker, declaration, (symbol) => { if (!seenSymbols.has(symbol)) { seenSymbols.add(symbol); if (declaration.kind === 178 || declaration.kind === 179) { return symbol.getContextualDocumentationComment(declaration, checker); } return symbol.getDocumentationComment(checker); } }); if (inheritedDocs) doc = doc.length === 0 ? inheritedDocs.slice() : inheritedDocs.concat(lineBreakPart(), doc); } } return doc; } function findBaseOfDeclaration(checker, declaration, cb) { var _a; const classOrInterfaceDeclaration = ((_a = declaration.parent) == null ? undefined : _a.kind) === 177 ? declaration.parent.parent : declaration.parent; if (!classOrInterfaceDeclaration) return; const isStaticMember = hasStaticModifier(declaration); return firstDefined(getAllSuperTypeNodes(classOrInterfaceDeclaration), (superTypeNode) => { const baseType = checker.getTypeAtLocation(superTypeNode); const type = isStaticMember && baseType.symbol ? checker.getTypeOfSymbol(baseType.symbol) : baseType; const symbol = checker.getPropertyOfType(type, declaration.symbol.name); return symbol ? cb(symbol) : undefined; }); } var SourceFileObject = class extends NodeObject { constructor(kind, pos, end) { super(kind, pos, end); } update(newText, textChangeRange) { return updateSourceFile(this, newText, textChangeRange); } getLineAndCharacterOfPosition(position) { return getLineAndCharacterOfPosition(this, position); } getLineStarts() { return getLineStarts(this); } getPositionOfLineAndCharacter(line, character, allowEdits) { return computePositionOfLineAndCharacter(getLineStarts(this), line, character, this.text, allowEdits); } getLineEndOfPosition(pos) { const { line } = this.getLineAndCharacterOfPosition(pos); const lineStarts = this.getLineStarts(); let lastCharPos; if (line + 1 >= lineStarts.length) { lastCharPos = this.getEnd(); } if (!lastCharPos) { lastCharPos = lineStarts[line + 1] - 1; } const fullText = this.getFullText(); return fullText[lastCharPos] === ` ` && fullText[lastCharPos - 1] === "\r" ? lastCharPos - 1 : lastCharPos; } getNamedDeclarations() { if (!this.namedDeclarations) { this.namedDeclarations = this.computeNamedDeclarations(); } return this.namedDeclarations; } computeNamedDeclarations() { const result = createMultiMap(); this.forEachChild(visit); return result; function addDeclaration(declaration) { const name = getDeclarationName(declaration); if (name) { result.add(name, declaration); } } function getDeclarations(name) { let declarations = result.get(name); if (!declarations) { result.set(name, declarations = []); } return declarations; } function getDeclarationName(declaration) { const name = getNonAssignedNameOfDeclaration(declaration); return name && (isComputedPropertyName(name) && isPropertyAccessExpression(name.expression) ? name.expression.name.text : isPropertyName(name) ? getNameFromPropertyName(name) : undefined); } function visit(node) { switch (node.kind) { case 263: case 219: case 175: case 174: const functionDeclaration = node; const declarationName = getDeclarationName(functionDeclaration); if (declarationName) { const declarations = getDeclarations(declarationName); const lastDeclaration = lastOrUndefined(declarations); if (lastDeclaration && functionDeclaration.parent === lastDeclaration.parent && functionDeclaration.symbol === lastDeclaration.symbol) { if (functionDeclaration.body && !lastDeclaration.body) { declarations[declarations.length - 1] = functionDeclaration; } } else { declarations.push(functionDeclaration); } } forEachChild(node, visit); break; case 264: case 232: case 265: case 266: case 267: case 268: case 272: case 282: case 277: case 274: case 275: case 178: case 179: case 188: addDeclaration(node); forEachChild(node, visit); break; case 170: if (!hasSyntacticModifier(node, 31)) { break; } case 261: case 209: { const decl = node; if (isBindingPattern(decl.name)) { forEachChild(decl.name, visit); break; } if (decl.initializer) { visit(decl.initializer); } } case 307: case 173: case 172: addDeclaration(node); break; case 279: const exportDeclaration = node; if (exportDeclaration.exportClause) { if (isNamedExports(exportDeclaration.exportClause)) { forEach(exportDeclaration.exportClause.elements, visit); } else { visit(exportDeclaration.exportClause.name); } } break; case 273: const importClause = node.importClause; if (importClause) { if (importClause.name) { addDeclaration(importClause.name); } if (importClause.namedBindings) { if (importClause.namedBindings.kind === 275) { addDeclaration(importClause.namedBindings); } else { forEach(importClause.namedBindings.elements, visit); } } } break; case 227: if (getAssignmentDeclarationKind(node) !== 0) { addDeclaration(node); } default: forEachChild(node, visit); } } } }; var SourceMapSourceObject = class { constructor(fileName, text, skipTrivia22) { this.fileName = fileName; this.text = text; this.skipTrivia = skipTrivia22 || ((pos) => pos); } getLineAndCharacterOfPosition(pos) { return getLineAndCharacterOfPosition(this, pos); } }; function getServicesObjectAllocator() { return { getNodeConstructor: () => NodeObject, getTokenConstructor: () => TokenObject, getIdentifierConstructor: () => IdentifierObject, getPrivateIdentifierConstructor: () => PrivateIdentifierObject, getSourceFileConstructor: () => SourceFileObject, getSymbolConstructor: () => SymbolObject, getTypeConstructor: () => TypeObject, getSignatureConstructor: () => SignatureObject, getSourceMapSourceConstructor: () => SourceMapSourceObject }; } function toEditorSettings(optionsAsMap) { let allPropertiesAreCamelCased = true; for (const key in optionsAsMap) { if (hasProperty(optionsAsMap, key) && !isCamelCase(key)) { allPropertiesAreCamelCased = false; break; } } if (allPropertiesAreCamelCased) { return optionsAsMap; } const settings = {}; for (const key in optionsAsMap) { if (hasProperty(optionsAsMap, key)) { const newKey = isCamelCase(key) ? key : key.charAt(0).toLowerCase() + key.substr(1); settings[newKey] = optionsAsMap[key]; } } return settings; } function isCamelCase(s) { return !s.length || s.charAt(0) === s.charAt(0).toLowerCase(); } function displayPartsToString(displayParts) { if (displayParts) { return map(displayParts, (displayPart2) => displayPart2.text).join(""); } return ""; } function getDefaultCompilerOptions2() { return { target: 12, jsx: 1 }; } function getSupportedCodeFixes() { return ts_codefix_exports.getSupportedErrorCodes(); } var SyntaxTreeCache = class { constructor(host) { this.host = host; } getCurrentSourceFile(fileName) { var _a, _b, _c, _d, _e, _f, _g, _h; const scriptSnapshot = this.host.getScriptSnapshot(fileName); if (!scriptSnapshot) { throw new Error("Could not find file: '" + fileName + "'."); } const scriptKind = getScriptKind(fileName, this.host); const version2 = this.host.getScriptVersion(fileName); let sourceFile; if (this.currentFileName !== fileName) { const options = { languageVersion: 99, impliedNodeFormat: getImpliedNodeFormatForFile(toPath(fileName, this.host.getCurrentDirectory(), ((_c = (_b = (_a = this.host).getCompilerHost) == null ? undefined : _b.call(_a)) == null ? undefined : _c.getCanonicalFileName) || hostGetCanonicalFileName(this.host)), (_h = (_g = (_f = (_e = (_d = this.host).getCompilerHost) == null ? undefined : _e.call(_d)) == null ? undefined : _f.getModuleResolutionCache) == null ? undefined : _g.call(_f)) == null ? undefined : _h.getPackageJsonInfoCache(), this.host, this.host.getCompilationSettings()), setExternalModuleIndicator: getSetExternalModuleIndicator(this.host.getCompilationSettings()), jsDocParsingMode: 0 }; sourceFile = createLanguageServiceSourceFile(fileName, scriptSnapshot, options, version2, true, scriptKind); } else if (this.currentFileVersion !== version2) { const editRange = scriptSnapshot.getChangeRange(this.currentFileScriptSnapshot); sourceFile = updateLanguageServiceSourceFile(this.currentSourceFile, scriptSnapshot, version2, editRange); } if (sourceFile) { this.currentFileVersion = version2; this.currentFileName = fileName; this.currentFileScriptSnapshot = scriptSnapshot; this.currentSourceFile = sourceFile; } return this.currentSourceFile; } }; function setSourceFileFields(sourceFile, scriptSnapshot, version2) { sourceFile.version = version2; sourceFile.scriptSnapshot = scriptSnapshot; } function createLanguageServiceSourceFile(fileName, scriptSnapshot, scriptTargetOrOptions, version2, setNodeParents, scriptKind) { const sourceFile = createSourceFile(fileName, getSnapshotText(scriptSnapshot), scriptTargetOrOptions, setNodeParents, scriptKind); setSourceFileFields(sourceFile, scriptSnapshot, version2); return sourceFile; } function updateLanguageServiceSourceFile(sourceFile, scriptSnapshot, version2, textChangeRange, aggressiveChecks) { if (textChangeRange) { if (version2 !== sourceFile.version) { let newText; const prefix = textChangeRange.span.start !== 0 ? sourceFile.text.substr(0, textChangeRange.span.start) : ""; const suffix = textSpanEnd(textChangeRange.span) !== sourceFile.text.length ? sourceFile.text.substr(textSpanEnd(textChangeRange.span)) : ""; if (textChangeRange.newLength === 0) { newText = prefix && suffix ? prefix + suffix : prefix || suffix; } else { const changedText = scriptSnapshot.getText(textChangeRange.span.start, textChangeRange.span.start + textChangeRange.newLength); newText = prefix && suffix ? prefix + changedText + suffix : prefix ? prefix + changedText : changedText + suffix; } const newSourceFile = updateSourceFile(sourceFile, newText, textChangeRange, aggressiveChecks); setSourceFileFields(newSourceFile, scriptSnapshot, version2); newSourceFile.nameTable = undefined; if (sourceFile !== newSourceFile && sourceFile.scriptSnapshot) { if (sourceFile.scriptSnapshot.dispose) { sourceFile.scriptSnapshot.dispose(); } sourceFile.scriptSnapshot = undefined; } return newSourceFile; } } const options = { languageVersion: sourceFile.languageVersion, impliedNodeFormat: sourceFile.impliedNodeFormat, setExternalModuleIndicator: sourceFile.setExternalModuleIndicator, jsDocParsingMode: sourceFile.jsDocParsingMode }; return createLanguageServiceSourceFile(sourceFile.fileName, scriptSnapshot, options, version2, true, sourceFile.scriptKind); } var NoopCancellationToken = { isCancellationRequested: returnFalse, throwIfCancellationRequested: noop }; var CancellationTokenObject = class { constructor(cancellationToken) { this.cancellationToken = cancellationToken; } isCancellationRequested() { return this.cancellationToken.isCancellationRequested(); } throwIfCancellationRequested() { var _a; if (this.isCancellationRequested()) { (_a = tracing) == null || _a.instant(tracing.Phase.Session, "cancellationThrown", { kind: "CancellationTokenObject" }); throw new OperationCanceledException; } } }; var ThrottledCancellationToken = class { constructor(hostCancellationToken, throttleWaitMilliseconds = 20) { this.hostCancellationToken = hostCancellationToken; this.throttleWaitMilliseconds = throttleWaitMilliseconds; this.lastCancellationCheckTime = 0; } isCancellationRequested() { const time = timestamp(); const duration = Math.abs(time - this.lastCancellationCheckTime); if (duration >= this.throttleWaitMilliseconds) { this.lastCancellationCheckTime = time; return this.hostCancellationToken.isCancellationRequested(); } return false; } throwIfCancellationRequested() { var _a; if (this.isCancellationRequested()) { (_a = tracing) == null || _a.instant(tracing.Phase.Session, "cancellationThrown", { kind: "ThrottledCancellationToken" }); throw new OperationCanceledException; } } }; var invalidOperationsInPartialSemanticMode = [ "getSemanticDiagnostics", "getSuggestionDiagnostics", "getCompilerOptionsDiagnostics", "getSemanticClassifications", "getEncodedSemanticClassifications", "getCodeFixesAtPosition", "getCombinedCodeFix", "applyCodeActionCommand", "organizeImports", "getEditsForFileRename", "getEmitOutput", "getApplicableRefactors", "getEditsForRefactor", "prepareCallHierarchy", "provideCallHierarchyIncomingCalls", "provideCallHierarchyOutgoingCalls", "provideInlayHints", "getSupportedCodeFixes", "getPasteEdits" ]; var invalidOperationsInSyntacticMode = [ ...invalidOperationsInPartialSemanticMode, "getCompletionsAtPosition", "getCompletionEntryDetails", "getCompletionEntrySymbol", "getSignatureHelpItems", "getQuickInfoAtPosition", "getDefinitionAtPosition", "getDefinitionAndBoundSpan", "getImplementationAtPosition", "getTypeDefinitionAtPosition", "getReferencesAtPosition", "findReferences", "getDocumentHighlights", "getNavigateToItems", "getRenameInfo", "findRenameLocations", "getApplicableRefactors", "preparePasteEditsForFile" ]; function createLanguageService(host, documentRegistry = createDocumentRegistry(host.useCaseSensitiveFileNames && host.useCaseSensitiveFileNames(), host.getCurrentDirectory(), host.jsDocParsingMode), syntaxOnlyOrLanguageServiceMode) { var _a; let languageServiceMode; if (syntaxOnlyOrLanguageServiceMode === undefined) { languageServiceMode = 0; } else if (typeof syntaxOnlyOrLanguageServiceMode === "boolean") { languageServiceMode = syntaxOnlyOrLanguageServiceMode ? 2 : 0; } else { languageServiceMode = syntaxOnlyOrLanguageServiceMode; } const syntaxTreeCache = new SyntaxTreeCache(host); let program; let lastProjectVersion; let lastTypesRootVersion = 0; const cancellationToken = host.getCancellationToken ? new CancellationTokenObject(host.getCancellationToken()) : NoopCancellationToken; const currentDirectory = host.getCurrentDirectory(); maybeSetLocalizedDiagnosticMessages((_a = host.getLocalizedDiagnosticMessages) == null ? undefined : _a.bind(host)); function log(message) { if (host.log) { host.log(message); } } const useCaseSensitiveFileNames2 = hostUsesCaseSensitiveFileNames(host); const getCanonicalFileName = createGetCanonicalFileName(useCaseSensitiveFileNames2); const sourceMapper = getSourceMapper({ useCaseSensitiveFileNames: () => useCaseSensitiveFileNames2, getCurrentDirectory: () => currentDirectory, getProgram, fileExists: maybeBind(host, host.fileExists), readFile: maybeBind(host, host.readFile), getDocumentPositionMapper: maybeBind(host, host.getDocumentPositionMapper), getSourceFileLike: maybeBind(host, host.getSourceFileLike), log }); function getValidSourceFile(fileName) { const sourceFile = program.getSourceFile(fileName); if (!sourceFile) { const error2 = new Error(`Could not find source file: '${fileName}'.`); error2.ProgramFiles = program.getSourceFiles().map((f) => f.fileName); throw error2; } return sourceFile; } function synchronizeHostData() { if (host.updateFromProject && !host.updateFromProjectInProgress) { host.updateFromProject(); } else { synchronizeHostDataWorker(); } } function synchronizeHostDataWorker() { var _a2, _b, _c; Debug.assert(languageServiceMode !== 2); if (host.getProjectVersion) { const hostProjectVersion = host.getProjectVersion(); if (hostProjectVersion) { if (lastProjectVersion === hostProjectVersion && !((_a2 = host.hasChangedAutomaticTypeDirectiveNames) == null ? undefined : _a2.call(host))) { return; } lastProjectVersion = hostProjectVersion; } } const typeRootsVersion = host.getTypeRootsVersion ? host.getTypeRootsVersion() : 0; if (lastTypesRootVersion !== typeRootsVersion) { log("TypeRoots version has changed; provide new program"); program = undefined; lastTypesRootVersion = typeRootsVersion; } const rootFileNames = host.getScriptFileNames().slice(); const newSettings = host.getCompilationSettings() || getDefaultCompilerOptions2(); const hasInvalidatedResolutions = host.hasInvalidatedResolutions || returnFalse; const hasInvalidatedLibResolutions = maybeBind(host, host.hasInvalidatedLibResolutions) || returnFalse; const hasChangedAutomaticTypeDirectiveNames = maybeBind(host, host.hasChangedAutomaticTypeDirectiveNames); const projectReferences = (_b = host.getProjectReferences) == null ? undefined : _b.call(host); let parsedCommandLines; let compilerHost = { getSourceFile: getOrCreateSourceFile, getSourceFileByPath: getOrCreateSourceFileByPath, getCancellationToken: () => cancellationToken, getCanonicalFileName, useCaseSensitiveFileNames: () => useCaseSensitiveFileNames2, getNewLine: () => getNewLineCharacter(newSettings), getDefaultLibFileName: (options2) => host.getDefaultLibFileName(options2), writeFile: noop, getCurrentDirectory: () => currentDirectory, fileExists: (fileName) => host.fileExists(fileName), readFile: (fileName) => host.readFile && host.readFile(fileName), getSymlinkCache: maybeBind(host, host.getSymlinkCache), realpath: maybeBind(host, host.realpath), directoryExists: (directoryName) => { return directoryProbablyExists(directoryName, host); }, getDirectories: (path) => { return host.getDirectories ? host.getDirectories(path) : []; }, readDirectory: (path, extensions, exclude, include, depth) => { Debug.checkDefined(host.readDirectory, "'LanguageServiceHost.readDirectory' must be implemented to correctly process 'projectReferences'"); return host.readDirectory(path, extensions, exclude, include, depth); }, onReleaseOldSourceFile, onReleaseParsedCommandLine, hasInvalidatedResolutions, hasInvalidatedLibResolutions, hasChangedAutomaticTypeDirectiveNames, trace: maybeBind(host, host.trace), resolveModuleNames: maybeBind(host, host.resolveModuleNames), getModuleResolutionCache: maybeBind(host, host.getModuleResolutionCache), createHash: maybeBind(host, host.createHash), resolveTypeReferenceDirectives: maybeBind(host, host.resolveTypeReferenceDirectives), resolveModuleNameLiterals: maybeBind(host, host.resolveModuleNameLiterals), resolveTypeReferenceDirectiveReferences: maybeBind(host, host.resolveTypeReferenceDirectiveReferences), resolveLibrary: maybeBind(host, host.resolveLibrary), useSourceOfProjectReferenceRedirect: maybeBind(host, host.useSourceOfProjectReferenceRedirect), getParsedCommandLine, jsDocParsingMode: host.jsDocParsingMode, getGlobalTypingsCacheLocation: maybeBind(host, host.getGlobalTypingsCacheLocation) }; const originalGetSourceFile = compilerHost.getSourceFile; const { getSourceFileWithCache } = changeCompilerHostLikeToUseCache(compilerHost, (fileName) => toPath(fileName, currentDirectory, getCanonicalFileName), (...args) => originalGetSourceFile.call(compilerHost, ...args)); compilerHost.getSourceFile = getSourceFileWithCache; (_c = host.setCompilerHost) == null || _c.call(host, compilerHost); const parseConfigHost = { useCaseSensitiveFileNames: useCaseSensitiveFileNames2, fileExists: (fileName) => compilerHost.fileExists(fileName), readFile: (fileName) => compilerHost.readFile(fileName), directoryExists: (f) => compilerHost.directoryExists(f), getDirectories: (f) => compilerHost.getDirectories(f), realpath: compilerHost.realpath, readDirectory: (...args) => compilerHost.readDirectory(...args), trace: compilerHost.trace, getCurrentDirectory: compilerHost.getCurrentDirectory, onUnRecoverableConfigFileDiagnostic: noop }; const documentRegistryBucketKey = documentRegistry.getKeyForCompilationSettings(newSettings); let releasedScriptKinds = /* @__PURE__ */ new Set; if (isProgramUptoDate(program, rootFileNames, newSettings, (_path, fileName) => host.getScriptVersion(fileName), (fileName) => compilerHost.fileExists(fileName), hasInvalidatedResolutions, hasInvalidatedLibResolutions, hasChangedAutomaticTypeDirectiveNames, getParsedCommandLine, projectReferences)) { compilerHost = undefined; parsedCommandLines = undefined; releasedScriptKinds = undefined; return; } const options = { rootNames: rootFileNames, options: newSettings, host: compilerHost, oldProgram: program, projectReferences }; program = createProgram(options); compilerHost = undefined; parsedCommandLines = undefined; releasedScriptKinds = undefined; sourceMapper.clearCache(); program.getTypeChecker(); return; function getParsedCommandLine(fileName) { const path = toPath(fileName, currentDirectory, getCanonicalFileName); const existing = parsedCommandLines == null ? undefined : parsedCommandLines.get(path); if (existing !== undefined) return existing || undefined; const result = host.getParsedCommandLine ? host.getParsedCommandLine(fileName) : getParsedCommandLineOfConfigFileUsingSourceFile(fileName); (parsedCommandLines || (parsedCommandLines = /* @__PURE__ */ new Map)).set(path, result || false); return result; } function getParsedCommandLineOfConfigFileUsingSourceFile(configFileName) { const result = getOrCreateSourceFile(configFileName, 100); if (!result) return; result.path = toPath(configFileName, currentDirectory, getCanonicalFileName); result.resolvedPath = result.path; result.originalFileName = result.fileName; return parseJsonSourceFileConfigFileContent(result, parseConfigHost, getNormalizedAbsolutePath(getDirectoryPath(configFileName), currentDirectory), undefined, getNormalizedAbsolutePath(configFileName, currentDirectory)); } function onReleaseParsedCommandLine(configFileName, oldResolvedRef, oldOptions) { var _a3; if (host.getParsedCommandLine) { (_a3 = host.onReleaseParsedCommandLine) == null || _a3.call(host, configFileName, oldResolvedRef, oldOptions); } else if (oldResolvedRef) { releaseOldSourceFile(oldResolvedRef.sourceFile, oldOptions); } } function releaseOldSourceFile(oldSourceFile, oldOptions) { const oldSettingsKey = documentRegistry.getKeyForCompilationSettings(oldOptions); documentRegistry.releaseDocumentWithKey(oldSourceFile.resolvedPath, oldSettingsKey, oldSourceFile.scriptKind, oldSourceFile.impliedNodeFormat); } function onReleaseOldSourceFile(oldSourceFile, oldOptions, hasSourceFileByPath, newSourceFileByResolvedPath) { var _a3; releaseOldSourceFile(oldSourceFile, oldOptions); (_a3 = host.onReleaseOldSourceFile) == null || _a3.call(host, oldSourceFile, oldOptions, hasSourceFileByPath, newSourceFileByResolvedPath); } function getOrCreateSourceFile(fileName, languageVersionOrOptions, onError, shouldCreateNewSourceFile) { return getOrCreateSourceFileByPath(fileName, toPath(fileName, currentDirectory, getCanonicalFileName), languageVersionOrOptions, onError, shouldCreateNewSourceFile); } function getOrCreateSourceFileByPath(fileName, path, languageVersionOrOptions, _onError, shouldCreateNewSourceFile) { Debug.assert(compilerHost, "getOrCreateSourceFileByPath called after typical CompilerHost lifetime, check the callstack something with a reference to an old host."); const scriptSnapshot = host.getScriptSnapshot(fileName); if (!scriptSnapshot) { return; } const scriptKind = getScriptKind(fileName, host); const scriptVersion = host.getScriptVersion(fileName); if (!shouldCreateNewSourceFile) { const oldSourceFile = program && program.getSourceFileByPath(path); if (oldSourceFile) { if (scriptKind === oldSourceFile.scriptKind || releasedScriptKinds.has(oldSourceFile.resolvedPath)) { return documentRegistry.updateDocumentWithKey(fileName, path, host, documentRegistryBucketKey, scriptSnapshot, scriptVersion, scriptKind, languageVersionOrOptions); } else { documentRegistry.releaseDocumentWithKey(oldSourceFile.resolvedPath, documentRegistry.getKeyForCompilationSettings(program.getCompilerOptions()), oldSourceFile.scriptKind, oldSourceFile.impliedNodeFormat); releasedScriptKinds.add(oldSourceFile.resolvedPath); } } } return documentRegistry.acquireDocumentWithKey(fileName, path, host, documentRegistryBucketKey, scriptSnapshot, scriptVersion, scriptKind, languageVersionOrOptions); } } function getProgram() { if (languageServiceMode === 2) { Debug.assert(program === undefined); return; } synchronizeHostData(); return program; } function getAutoImportProvider() { var _a2; return (_a2 = host.getPackageJsonAutoImportProvider) == null ? undefined : _a2.call(host); } function updateIsDefinitionOfReferencedSymbols(referencedSymbols, knownSymbolSpans) { const checker = program.getTypeChecker(); const symbol = getSymbolForProgram(); if (!symbol) return false; for (const referencedSymbol of referencedSymbols) { for (const ref of referencedSymbol.references) { const refNode = getNodeForSpan(ref); Debug.assertIsDefined(refNode); if (knownSymbolSpans.has(ref) || ts_FindAllReferences_exports.isDeclarationOfSymbol(refNode, symbol)) { knownSymbolSpans.add(ref); ref.isDefinition = true; const mappedSpan = getMappedDocumentSpan(ref, sourceMapper, maybeBind(host, host.fileExists)); if (mappedSpan) { knownSymbolSpans.add(mappedSpan); } } else { ref.isDefinition = false; } } } return true; function getSymbolForProgram() { for (const referencedSymbol of referencedSymbols) { for (const ref of referencedSymbol.references) { if (knownSymbolSpans.has(ref)) { const refNode = getNodeForSpan(ref); Debug.assertIsDefined(refNode); return checker.getSymbolAtLocation(refNode); } const mappedSpan = getMappedDocumentSpan(ref, sourceMapper, maybeBind(host, host.fileExists)); if (mappedSpan && knownSymbolSpans.has(mappedSpan)) { const refNode = getNodeForSpan(mappedSpan); if (refNode) { return checker.getSymbolAtLocation(refNode); } } } } return; } function getNodeForSpan(docSpan) { const sourceFile = program.getSourceFile(docSpan.fileName); if (!sourceFile) return; const rawNode = getTouchingPropertyName(sourceFile, docSpan.textSpan.start); const adjustedNode = ts_FindAllReferences_exports.Core.getAdjustedNode(rawNode, { use: ts_FindAllReferences_exports.FindReferencesUse.References }); return adjustedNode; } } function cleanupSemanticCache() { if (program) { const key = documentRegistry.getKeyForCompilationSettings(program.getCompilerOptions()); forEach(program.getSourceFiles(), (f) => documentRegistry.releaseDocumentWithKey(f.resolvedPath, key, f.scriptKind, f.impliedNodeFormat)); program = undefined; } } function dispose() { cleanupSemanticCache(); host = undefined; } function getSyntacticDiagnostics(fileName) { synchronizeHostData(); return program.getSyntacticDiagnostics(getValidSourceFile(fileName), cancellationToken).slice(); } function getSemanticDiagnostics(fileName) { synchronizeHostData(); const targetSourceFile = getValidSourceFile(fileName); const semanticDiagnostics = program.getSemanticDiagnostics(targetSourceFile, cancellationToken); if (!getEmitDeclarations(program.getCompilerOptions())) { return semanticDiagnostics.slice(); } const declarationDiagnostics = program.getDeclarationDiagnostics(targetSourceFile, cancellationToken); return [...semanticDiagnostics, ...declarationDiagnostics]; } function getRegionSemanticDiagnostics(fileName, ranges) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); const options = program.getCompilerOptions(); if (skipTypeChecking(sourceFile, options, program) || !canIncludeBindAndCheckDiagnostics(sourceFile, options) || program.getCachedSemanticDiagnostics(sourceFile)) { return; } const nodes = getNodesForRanges(sourceFile, ranges); if (!nodes) { return; } const checkedSpans = normalizeSpans(nodes.map((node) => createTextSpanFromBounds(node.getFullStart(), node.getEnd()))); const semanticDiagnostics = program.getSemanticDiagnostics(sourceFile, cancellationToken, nodes); return { diagnostics: semanticDiagnostics.slice(), spans: checkedSpans }; } function getNodesForRanges(file, ranges) { const nodes = []; const spans = normalizeSpans(ranges.map((range) => createTextSpanFromRange(range))); for (const span of spans) { const nodesForSpan = getNodesForSpan(file, span); if (!nodesForSpan) { return; } nodes.push(...nodesForSpan); } if (!nodes.length) { return; } return nodes; } function getNodesForSpan(file, span) { if (textSpanContainsTextRange(span, file)) { return; } const endToken = findTokenOnLeftOfPosition(file, textSpanEnd(span)) || file; const enclosingNode = findAncestor(endToken, (node) => textRangeContainsTextSpan(node, span)); const nodes = []; chooseOverlappingNodes(span, enclosingNode, nodes); if (file.end === span.start + span.length) { nodes.push(file.endOfFileToken); } if (some(nodes, isSourceFile)) { return; } return nodes; } function chooseOverlappingNodes(span, node, result) { if (!nodeOverlapsWithSpan(node, span)) { return false; } if (textSpanContainsTextRange(span, node)) { addSourceElement(node, result); return true; } if (isBlockLike(node)) { return chooseOverlappingBlockLike(span, node, result); } if (isClassLike(node)) { return chooseOverlappingClassLike(span, node, result); } addSourceElement(node, result); return true; } function nodeOverlapsWithSpan(node, span) { const spanEnd = span.start + span.length; return node.pos < spanEnd && node.end > span.start; } function addSourceElement(node, result) { while (node.parent && !isSourceElement(node)) { node = node.parent; } result.push(node); } function chooseOverlappingBlockLike(span, node, result) { const childResult = []; const stmts = node.statements.filter((stmt) => chooseOverlappingNodes(span, stmt, childResult)); if (stmts.length === node.statements.length) { addSourceElement(node, result); return true; } result.push(...childResult); return false; } function chooseOverlappingClassLike(span, node, result) { var _a2, _b, _c; const overlaps = (n) => textRangeIntersectsWithTextSpan(n, span); if (((_a2 = node.modifiers) == null ? undefined : _a2.some(overlaps)) || node.name && overlaps(node.name) || ((_b = node.typeParameters) == null ? undefined : _b.some(overlaps)) || ((_c = node.heritageClauses) == null ? undefined : _c.some(overlaps))) { addSourceElement(node, result); return true; } const childResult = []; const members = node.members.filter((member) => chooseOverlappingNodes(span, member, childResult)); if (members.length === node.members.length) { addSourceElement(node, result); return true; } result.push(...childResult); return false; } function getSuggestionDiagnostics(fileName) { synchronizeHostData(); return computeSuggestionDiagnostics(getValidSourceFile(fileName), program, cancellationToken); } function getCompilerOptionsDiagnostics() { synchronizeHostData(); return [...program.getOptionsDiagnostics(cancellationToken), ...program.getGlobalDiagnostics(cancellationToken)]; } function getCompletionsAtPosition2(fileName, position, options = emptyOptions, formattingSettings) { const fullPreferences = { ...identity(options), includeCompletionsForModuleExports: options.includeCompletionsForModuleExports || options.includeExternalModuleExports, includeCompletionsWithInsertText: options.includeCompletionsWithInsertText || options.includeInsertTextCompletions }; synchronizeHostData(); return ts_Completions_exports.getCompletionsAtPosition(host, program, log, getValidSourceFile(fileName), position, fullPreferences, options.triggerCharacter, options.triggerKind, cancellationToken, formattingSettings && ts_formatting_exports.getFormatContext(formattingSettings, host), options.includeSymbol); } function getCompletionEntryDetails2(fileName, position, name, formattingOptions, source, preferences = emptyOptions, data) { synchronizeHostData(); return ts_Completions_exports.getCompletionEntryDetails(program, log, getValidSourceFile(fileName), position, { name, source, data }, host, formattingOptions && ts_formatting_exports.getFormatContext(formattingOptions, host), preferences, cancellationToken); } function getCompletionEntrySymbol2(fileName, position, name, source, preferences = emptyOptions) { synchronizeHostData(); return ts_Completions_exports.getCompletionEntrySymbol(program, log, getValidSourceFile(fileName), position, { name, source }, host, preferences); } function getQuickInfoAtPosition(fileName, position, maximumLength, verbosityLevel) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); const node = getTouchingPropertyName(sourceFile, position); if (node === sourceFile) { return; } const typeChecker = program.getTypeChecker(); const nodeForQuickInfo = getNodeForQuickInfo(node); const symbol = getSymbolAtLocationForQuickInfo(nodeForQuickInfo, typeChecker); if (!symbol || typeChecker.isUnknownSymbol(symbol)) { const type = shouldGetType(sourceFile, nodeForQuickInfo, position) ? typeChecker.getTypeAtLocation(nodeForQuickInfo) : undefined; return type && { kind: "", kindModifiers: "", textSpan: createTextSpanFromNode(nodeForQuickInfo, sourceFile), displayParts: typeChecker.runWithCancellationToken(cancellationToken, (typeChecker2) => typeToDisplayParts(typeChecker2, type, getContainerNode(nodeForQuickInfo), undefined, verbosityLevel)), documentation: type.symbol ? type.symbol.getDocumentationComment(typeChecker) : undefined, tags: type.symbol ? type.symbol.getJsDocTags(typeChecker) : undefined }; } const { symbolKind, displayParts, documentation, tags, canIncreaseVerbosityLevel } = typeChecker.runWithCancellationToken(cancellationToken, (typeChecker2) => ts_SymbolDisplay_exports.getSymbolDisplayPartsDocumentationAndSymbolKind(typeChecker2, symbol, sourceFile, getContainerNode(nodeForQuickInfo), nodeForQuickInfo, undefined, undefined, maximumLength ?? defaultHoverMaximumTruncationLength, verbosityLevel)); return { kind: symbolKind, kindModifiers: ts_SymbolDisplay_exports.getSymbolModifiers(typeChecker, symbol), textSpan: createTextSpanFromNode(nodeForQuickInfo, sourceFile), displayParts, documentation, tags, canIncreaseVerbosityLevel }; } function preparePasteEditsForFile(fileName, copiedTextRange) { synchronizeHostData(); return ts_preparePasteEdits_exports.preparePasteEdits(getValidSourceFile(fileName), copiedTextRange, program.getTypeChecker()); } function getPasteEdits(args, formatOptions) { synchronizeHostData(); return ts_PasteEdits_exports.pasteEditsProvider(getValidSourceFile(args.targetFile), args.pastedText, args.pasteLocations, args.copiedFrom ? { file: getValidSourceFile(args.copiedFrom.file), range: args.copiedFrom.range } : undefined, host, args.preferences, ts_formatting_exports.getFormatContext(formatOptions, host), cancellationToken); } function getNodeForQuickInfo(node) { if (isNewExpression(node.parent) && node.pos === node.parent.pos) { return node.parent.expression; } if (isNamedTupleMember(node.parent) && node.pos === node.parent.pos) { return node.parent; } if (isImportMeta(node.parent) && node.parent.name === node) { return node.parent; } if (isJsxNamespacedName(node.parent)) { return node.parent; } return node; } function shouldGetType(sourceFile, node, position) { switch (node.kind) { case 80: if (node.flags & 16777216 && !isInJSFile(node) && (node.parent.kind === 172 && node.parent.name === node || findAncestor(node, (n) => n.kind === 170))) { return false; } return !isLabelName(node) && !isTagName(node) && !isConstTypeReference(node.parent); case 212: case 167: return !isInComment(sourceFile, position); case 110: case 198: case 108: case 203: return true; case 237: return isImportMeta(node); default: return false; } } function getDefinitionAtPosition2(fileName, position, searchOtherFilesOnly, stopAtAlias) { synchronizeHostData(); return ts_GoToDefinition_exports.getDefinitionAtPosition(program, getValidSourceFile(fileName), position, searchOtherFilesOnly, stopAtAlias); } function getDefinitionAndBoundSpan2(fileName, position) { synchronizeHostData(); return ts_GoToDefinition_exports.getDefinitionAndBoundSpan(program, getValidSourceFile(fileName), position); } function getTypeDefinitionAtPosition2(fileName, position) { synchronizeHostData(); return ts_GoToDefinition_exports.getTypeDefinitionAtPosition(program.getTypeChecker(), getValidSourceFile(fileName), position); } function getImplementationAtPosition(fileName, position) { synchronizeHostData(); return ts_FindAllReferences_exports.getImplementationsAtPosition(program, cancellationToken, program.getSourceFiles(), getValidSourceFile(fileName), position); } function getDocumentHighlights(fileName, position, filesToSearch) { const normalizedFileName = normalizePath(fileName); Debug.assert(filesToSearch.some((f) => normalizePath(f) === normalizedFileName)); synchronizeHostData(); const sourceFilesToSearch = mapDefined(filesToSearch, (fileName2) => program.getSourceFile(fileName2)); const sourceFile = getValidSourceFile(fileName); return DocumentHighlights.getDocumentHighlights(program, cancellationToken, sourceFile, position, sourceFilesToSearch); } function findRenameLocations(fileName, position, findInStrings, findInComments, preferences) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); const node = getAdjustedRenameLocation(getTouchingPropertyName(sourceFile, position)); if (!ts_Rename_exports.nodeIsEligibleForRename(node)) return; if (isIdentifier(node) && (isJsxOpeningElement(node.parent) || isJsxClosingElement(node.parent)) && isIntrinsicJsxName(node.escapedText)) { const { openingElement, closingElement } = node.parent.parent; return [openingElement, closingElement].map((node2) => { const textSpan = createTextSpanFromNode(node2.tagName, sourceFile); return { fileName: sourceFile.fileName, textSpan, ...ts_FindAllReferences_exports.toContextSpan(textSpan, sourceFile, node2.parent) }; }); } else { const quotePreference = getQuotePreference(sourceFile, preferences ?? emptyOptions); const providePrefixAndSuffixTextForRename = typeof preferences === "boolean" ? preferences : preferences == null ? undefined : preferences.providePrefixAndSuffixTextForRename; return getReferencesWorker2(node, position, { findInStrings, findInComments, providePrefixAndSuffixTextForRename, use: ts_FindAllReferences_exports.FindReferencesUse.Rename }, (entry, originalNode, checker) => ts_FindAllReferences_exports.toRenameLocation(entry, originalNode, checker, providePrefixAndSuffixTextForRename || false, quotePreference)); } } function getReferencesAtPosition(fileName, position) { synchronizeHostData(); return getReferencesWorker2(getTouchingPropertyName(getValidSourceFile(fileName), position), position, { use: ts_FindAllReferences_exports.FindReferencesUse.References }, ts_FindAllReferences_exports.toReferenceEntry); } function getReferencesWorker2(node, position, options, cb) { synchronizeHostData(); const sourceFiles = options && options.use === ts_FindAllReferences_exports.FindReferencesUse.Rename ? program.getSourceFiles().filter((sourceFile) => !program.isSourceFileDefaultLibrary(sourceFile)) : program.getSourceFiles(); return ts_FindAllReferences_exports.findReferenceOrRenameEntries(program, cancellationToken, sourceFiles, node, position, options, cb); } function findReferences(fileName, position) { synchronizeHostData(); return ts_FindAllReferences_exports.findReferencedSymbols(program, cancellationToken, program.getSourceFiles(), getValidSourceFile(fileName), position); } function getFileReferences(fileName) { synchronizeHostData(); return ts_FindAllReferences_exports.Core.getReferencesForFileName(fileName, program, program.getSourceFiles()).map(ts_FindAllReferences_exports.toReferenceEntry); } function getNavigateToItems2(searchValue, maxResultCount, fileName, excludeDtsFiles = false, excludeLibFiles = false) { synchronizeHostData(); const sourceFiles = fileName ? [getValidSourceFile(fileName)] : program.getSourceFiles(); return getNavigateToItems(sourceFiles, program.getTypeChecker(), cancellationToken, searchValue, maxResultCount, excludeDtsFiles, excludeLibFiles, program); } function getEmitOutput(fileName, emitOnlyDtsFiles, forceDtsEmit) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); const customTransformers = host.getCustomTransformers && host.getCustomTransformers(); return getFileEmitOutput(program, sourceFile, !!emitOnlyDtsFiles, cancellationToken, customTransformers, forceDtsEmit); } function getSignatureHelpItems2(fileName, position, { triggerReason } = emptyOptions) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); return ts_SignatureHelp_exports.getSignatureHelpItems(program, sourceFile, position, triggerReason, cancellationToken); } function getNonBoundSourceFile(fileName) { return syntaxTreeCache.getCurrentSourceFile(fileName); } function getNameOrDottedNameSpan(fileName, startPos, _endPos) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); const node = getTouchingPropertyName(sourceFile, startPos); if (node === sourceFile) { return; } switch (node.kind) { case 212: case 167: case 11: case 97: case 112: case 106: case 108: case 110: case 198: case 80: break; default: return; } let nodeForStartPos = node; while (true) { if (isRightSideOfPropertyAccess(nodeForStartPos) || isRightSideOfQualifiedName(nodeForStartPos)) { nodeForStartPos = nodeForStartPos.parent; } else if (isNameOfModuleDeclaration(nodeForStartPos)) { if (nodeForStartPos.parent.parent.kind === 268 && nodeForStartPos.parent.parent.body === nodeForStartPos.parent) { nodeForStartPos = nodeForStartPos.parent.parent.name; } else { break; } } else { break; } } return createTextSpanFromBounds(nodeForStartPos.getStart(), node.getEnd()); } function getBreakpointStatementAtPosition(fileName, position) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); return ts_BreakpointResolver_exports.spanInSourceFileAtLocation(sourceFile, position); } function getNavigationBarItems2(fileName) { return getNavigationBarItems(syntaxTreeCache.getCurrentSourceFile(fileName), cancellationToken); } function getNavigationTree2(fileName) { return getNavigationTree(syntaxTreeCache.getCurrentSourceFile(fileName), cancellationToken); } function getSemanticClassifications3(fileName, span, format) { synchronizeHostData(); const responseFormat = format || "original"; if (responseFormat === "2020") { return getSemanticClassifications2(program, cancellationToken, getValidSourceFile(fileName), span); } else { return getSemanticClassifications(program.getTypeChecker(), cancellationToken, getValidSourceFile(fileName), program.getClassifiableNames(), span); } } function getEncodedSemanticClassifications3(fileName, span, format) { synchronizeHostData(); const responseFormat = format || "original"; if (responseFormat === "original") { return getEncodedSemanticClassifications(program.getTypeChecker(), cancellationToken, getValidSourceFile(fileName), program.getClassifiableNames(), span); } else { return getEncodedSemanticClassifications2(program, cancellationToken, getValidSourceFile(fileName), span); } } function getSyntacticClassifications2(fileName, span) { return getSyntacticClassifications(cancellationToken, syntaxTreeCache.getCurrentSourceFile(fileName), span); } function getEncodedSyntacticClassifications2(fileName, span) { return getEncodedSyntacticClassifications(cancellationToken, syntaxTreeCache.getCurrentSourceFile(fileName), span); } function getOutliningSpans(fileName) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); return ts_OutliningElementsCollector_exports.collectElements(sourceFile, cancellationToken); } const braceMatching = new Map(Object.entries({ [19]: 20, [21]: 22, [23]: 24, [32]: 30 })); braceMatching.forEach((value, key) => braceMatching.set(value.toString(), Number(key))); function getBraceMatchingAtPosition(fileName, position) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); const token = getTouchingToken(sourceFile, position); const matchKind = token.getStart(sourceFile) === position ? braceMatching.get(token.kind.toString()) : undefined; const match = matchKind && findChildOfKind(token.parent, matchKind, sourceFile); return match ? [createTextSpanFromNode(token, sourceFile), createTextSpanFromNode(match, sourceFile)].sort((a, b) => a.start - b.start) : emptyArray; } function getIndentationAtPosition(fileName, position, editorOptions) { let start = timestamp(); const settings = toEditorSettings(editorOptions); const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); log("getIndentationAtPosition: getCurrentSourceFile: " + (timestamp() - start)); start = timestamp(); const result = ts_formatting_exports.SmartIndenter.getIndentation(position, sourceFile, settings); log("getIndentationAtPosition: computeIndentation : " + (timestamp() - start)); return result; } function getFormattingEditsForRange(fileName, start, end, options) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); return ts_formatting_exports.formatSelection(start, end, sourceFile, ts_formatting_exports.getFormatContext(toEditorSettings(options), host)); } function getFormattingEditsForDocument(fileName, options) { return ts_formatting_exports.formatDocument(syntaxTreeCache.getCurrentSourceFile(fileName), ts_formatting_exports.getFormatContext(toEditorSettings(options), host)); } function getFormattingEditsAfterKeystroke(fileName, position, key, options) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); const formatContext = ts_formatting_exports.getFormatContext(toEditorSettings(options), host); if (!isInComment(sourceFile, position)) { switch (key) { case "{": return ts_formatting_exports.formatOnOpeningCurly(position, sourceFile, formatContext); case "}": return ts_formatting_exports.formatOnClosingCurly(position, sourceFile, formatContext); case ";": return ts_formatting_exports.formatOnSemicolon(position, sourceFile, formatContext); case ` `: return ts_formatting_exports.formatOnEnter(position, sourceFile, formatContext); } } return []; } function getCodeFixesAtPosition(fileName, start, end, errorCodes68, formatOptions, preferences = emptyOptions) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); const span = createTextSpanFromBounds(start, end); const formatContext = ts_formatting_exports.getFormatContext(formatOptions, host); return flatMap(deduplicate(errorCodes68, equateValues, compareValues), (errorCode) => { cancellationToken.throwIfCancellationRequested(); return ts_codefix_exports.getFixes({ errorCode, sourceFile, span, program, host, cancellationToken, formatContext, preferences }); }); } function getCombinedCodeFix(scope, fixId56, formatOptions, preferences = emptyOptions) { synchronizeHostData(); Debug.assert(scope.type === "file"); const sourceFile = getValidSourceFile(scope.fileName); const formatContext = ts_formatting_exports.getFormatContext(formatOptions, host); return ts_codefix_exports.getAllFixes({ fixId: fixId56, sourceFile, program, host, cancellationToken, formatContext, preferences }); } function organizeImports2(args, formatOptions, preferences = emptyOptions) { synchronizeHostData(); Debug.assert(args.type === "file"); const sourceFile = getValidSourceFile(args.fileName); if (containsParseError(sourceFile)) return emptyArray; const formatContext = ts_formatting_exports.getFormatContext(formatOptions, host); const mode = args.mode ?? (args.skipDestructiveCodeActions ? "SortAndCombine" : "All"); return ts_OrganizeImports_exports.organizeImports(sourceFile, formatContext, host, program, preferences, mode); } function getEditsForFileRename2(oldFilePath, newFilePath, formatOptions, preferences = emptyOptions) { return getEditsForFileRename(getProgram(), oldFilePath, newFilePath, host, ts_formatting_exports.getFormatContext(formatOptions, host), preferences, sourceMapper); } function applyCodeActionCommand(fileName, actionOrFormatSettingsOrUndefined) { const action = typeof fileName === "string" ? actionOrFormatSettingsOrUndefined : fileName; return isArray(action) ? Promise.all(action.map((a) => applySingleCodeActionCommand(a))) : applySingleCodeActionCommand(action); } function applySingleCodeActionCommand(action) { const getPath = (path) => toPath(path, currentDirectory, getCanonicalFileName); Debug.assertEqual(action.type, "install package"); return host.installPackage ? host.installPackage({ fileName: getPath(action.file), packageName: action.packageName }) : Promise.reject("Host does not implement `installPackage`"); } function getDocCommentTemplateAtPosition2(fileName, position, options, formatOptions) { const formatSettings = formatOptions ? ts_formatting_exports.getFormatContext(formatOptions, host).options : undefined; return ts_JsDoc_exports.getDocCommentTemplateAtPosition(getNewLineOrDefaultFromHost(host, formatSettings), syntaxTreeCache.getCurrentSourceFile(fileName), position, options); } function isValidBraceCompletionAtPosition(fileName, position, openingBrace) { if (openingBrace === 60) { return false; } const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); if (isInString(sourceFile, position)) { return false; } if (isInsideJsxElementOrAttribute(sourceFile, position)) { return openingBrace === 123; } if (isInTemplateString(sourceFile, position)) { return false; } switch (openingBrace) { case 39: case 34: case 96: return !isInComment(sourceFile, position); } return true; } function getJsxClosingTagAtPosition(fileName, position) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); const token = findPrecedingToken(position, sourceFile); if (!token) return; const element = token.kind === 32 && isJsxOpeningElement(token.parent) ? token.parent.parent : isJsxText(token) && isJsxElement(token.parent) ? token.parent : undefined; if (element && isUnclosedTag(element)) { return { newText: `` }; } const fragment = token.kind === 32 && isJsxOpeningFragment(token.parent) ? token.parent.parent : isJsxText(token) && isJsxFragment(token.parent) ? token.parent : undefined; if (fragment && isUnclosedFragment(fragment)) { return { newText: "" }; } } function getLinkedEditingRangeAtPosition(fileName, position) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); const token = findPrecedingToken(position, sourceFile); if (!token || token.parent.kind === 308) return; const jsxTagWordPattern = "[a-zA-Z0-9:\\-\\._$]*"; if (isJsxFragment(token.parent.parent)) { const openFragment = token.parent.parent.openingFragment; const closeFragment = token.parent.parent.closingFragment; if (containsParseError(openFragment) || containsParseError(closeFragment)) return; const openPos = openFragment.getStart(sourceFile) + 1; const closePos = closeFragment.getStart(sourceFile) + 2; if (position !== openPos && position !== closePos) return; return { ranges: [{ start: openPos, length: 0 }, { start: closePos, length: 0 }], wordPattern: jsxTagWordPattern }; } else { const tag = findAncestor(token.parent, (n) => { if (isJsxOpeningElement(n) || isJsxClosingElement(n)) { return true; } return false; }); if (!tag) return; Debug.assert(isJsxOpeningElement(tag) || isJsxClosingElement(tag), "tag should be opening or closing element"); const openTag = tag.parent.openingElement; const closeTag = tag.parent.closingElement; const openTagNameStart = openTag.tagName.getStart(sourceFile); const openTagNameEnd = openTag.tagName.end; const closeTagNameStart = closeTag.tagName.getStart(sourceFile); const closeTagNameEnd = closeTag.tagName.end; if (openTagNameStart === openTag.getStart(sourceFile) || closeTagNameStart === closeTag.getStart(sourceFile) || openTagNameEnd === openTag.getEnd() || closeTagNameEnd === closeTag.getEnd()) return; if (!(openTagNameStart <= position && position <= openTagNameEnd || closeTagNameStart <= position && position <= closeTagNameEnd)) return; const openingTagText = openTag.tagName.getText(sourceFile); if (openingTagText !== closeTag.tagName.getText(sourceFile)) return; return { ranges: [{ start: openTagNameStart, length: openTagNameEnd - openTagNameStart }, { start: closeTagNameStart, length: closeTagNameEnd - closeTagNameStart }], wordPattern: jsxTagWordPattern }; } } function getLinesForRange(sourceFile, textRange) { return { lineStarts: sourceFile.getLineStarts(), firstLine: sourceFile.getLineAndCharacterOfPosition(textRange.pos).line, lastLine: sourceFile.getLineAndCharacterOfPosition(textRange.end).line }; } function toggleLineComment(fileName, textRange, insertComment) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); const textChanges2 = []; const { lineStarts, firstLine, lastLine } = getLinesForRange(sourceFile, textRange); let isCommenting = insertComment || false; let leftMostPosition = Number.MAX_VALUE; const lineTextStarts = /* @__PURE__ */ new Map; const firstNonWhitespaceCharacterRegex = new RegExp(/\S/); const isJsx = isInsideJsxElement(sourceFile, lineStarts[firstLine]); const openComment = isJsx ? "{/*" : "//"; for (let i = firstLine;i <= lastLine; i++) { const lineText = sourceFile.text.substring(lineStarts[i], sourceFile.getLineEndOfPosition(lineStarts[i])); const regExec = firstNonWhitespaceCharacterRegex.exec(lineText); if (regExec) { leftMostPosition = Math.min(leftMostPosition, regExec.index); lineTextStarts.set(i.toString(), regExec.index); if (lineText.substr(regExec.index, openComment.length) !== openComment) { isCommenting = insertComment === undefined || insertComment; } } } for (let i = firstLine;i <= lastLine; i++) { if (firstLine !== lastLine && lineStarts[i] === textRange.end) { continue; } const lineTextStart = lineTextStarts.get(i.toString()); if (lineTextStart !== undefined) { if (isJsx) { textChanges2.push(...toggleMultilineComment(fileName, { pos: lineStarts[i] + leftMostPosition, end: sourceFile.getLineEndOfPosition(lineStarts[i]) }, isCommenting, isJsx)); } else if (isCommenting) { textChanges2.push({ newText: openComment, span: { length: 0, start: lineStarts[i] + leftMostPosition } }); } else if (sourceFile.text.substr(lineStarts[i] + lineTextStart, openComment.length) === openComment) { textChanges2.push({ newText: "", span: { length: openComment.length, start: lineStarts[i] + lineTextStart } }); } } } return textChanges2; } function toggleMultilineComment(fileName, textRange, insertComment, isInsideJsx) { var _a2; const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); const textChanges2 = []; const { text } = sourceFile; let hasComment = false; let isCommenting = insertComment || false; const positions = []; let { pos } = textRange; const isJsx = isInsideJsx !== undefined ? isInsideJsx : isInsideJsxElement(sourceFile, pos); const openMultiline = isJsx ? "{/*" : "/*"; const closeMultiline = isJsx ? "*/}" : "*/"; const openMultilineRegex = isJsx ? "\\{\\/\\*" : "\\/\\*"; const closeMultilineRegex = isJsx ? "\\*\\/\\}" : "\\*\\/"; while (pos <= textRange.end) { const offset = text.substr(pos, openMultiline.length) === openMultiline ? openMultiline.length : 0; const commentRange = isInComment(sourceFile, pos + offset); if (commentRange) { if (isJsx) { commentRange.pos--; commentRange.end++; } positions.push(commentRange.pos); if (commentRange.kind === 3) { positions.push(commentRange.end); } hasComment = true; pos = commentRange.end + 1; } else { const newPos = text.substring(pos, textRange.end).search(`(${openMultilineRegex})|(${closeMultilineRegex})`); isCommenting = insertComment !== undefined ? insertComment : isCommenting || !isTextWhiteSpaceLike(text, pos, newPos === -1 ? textRange.end : pos + newPos); pos = newPos === -1 ? textRange.end + 1 : pos + newPos + closeMultiline.length; } } if (isCommenting || !hasComment) { if (((_a2 = isInComment(sourceFile, textRange.pos)) == null ? undefined : _a2.kind) !== 2) { insertSorted(positions, textRange.pos, compareValues); } insertSorted(positions, textRange.end, compareValues); const firstPos = positions[0]; if (text.substr(firstPos, openMultiline.length) !== openMultiline) { textChanges2.push({ newText: openMultiline, span: { length: 0, start: firstPos } }); } for (let i = 1;i < positions.length - 1; i++) { if (text.substr(positions[i] - closeMultiline.length, closeMultiline.length) !== closeMultiline) { textChanges2.push({ newText: closeMultiline, span: { length: 0, start: positions[i] } }); } if (text.substr(positions[i], openMultiline.length) !== openMultiline) { textChanges2.push({ newText: openMultiline, span: { length: 0, start: positions[i] } }); } } if (textChanges2.length % 2 !== 0) { textChanges2.push({ newText: closeMultiline, span: { length: 0, start: positions[positions.length - 1] } }); } } else { for (const pos2 of positions) { const from = pos2 - closeMultiline.length > 0 ? pos2 - closeMultiline.length : 0; const offset = text.substr(from, closeMultiline.length) === closeMultiline ? closeMultiline.length : 0; textChanges2.push({ newText: "", span: { length: openMultiline.length, start: pos2 - offset } }); } } return textChanges2; } function commentSelection(fileName, textRange) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); const { firstLine, lastLine } = getLinesForRange(sourceFile, textRange); return firstLine === lastLine && textRange.pos !== textRange.end ? toggleMultilineComment(fileName, textRange, true) : toggleLineComment(fileName, textRange, true); } function uncommentSelection(fileName, textRange) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); const textChanges2 = []; const { pos } = textRange; let { end } = textRange; if (pos === end) { end += isInsideJsxElement(sourceFile, pos) ? 2 : 1; } for (let i = pos;i <= end; i++) { const commentRange = isInComment(sourceFile, i); if (commentRange) { switch (commentRange.kind) { case 2: textChanges2.push(...toggleLineComment(fileName, { end: commentRange.end, pos: commentRange.pos + 1 }, false)); break; case 3: textChanges2.push(...toggleMultilineComment(fileName, { end: commentRange.end, pos: commentRange.pos + 1 }, false)); } i = commentRange.end + 1; } } return textChanges2; } function isUnclosedTag({ openingElement, closingElement, parent: parent2 }) { return !tagNamesAreEquivalent(openingElement.tagName, closingElement.tagName) || isJsxElement(parent2) && tagNamesAreEquivalent(openingElement.tagName, parent2.openingElement.tagName) && isUnclosedTag(parent2); } function isUnclosedFragment({ closingFragment, parent: parent2 }) { return !!(closingFragment.flags & 262144) || isJsxFragment(parent2) && isUnclosedFragment(parent2); } function getSpanOfEnclosingComment(fileName, position, onlyMultiLine) { const sourceFile = syntaxTreeCache.getCurrentSourceFile(fileName); const range = ts_formatting_exports.getRangeOfEnclosingComment(sourceFile, position); return range && (!onlyMultiLine || range.kind === 3) ? createTextSpanFromRange(range) : undefined; } function getTodoComments(fileName, descriptors) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); cancellationToken.throwIfCancellationRequested(); const fileContents = sourceFile.text; const result = []; if (descriptors.length > 0 && !isNodeModulesFile(sourceFile.fileName)) { const regExp = getTodoCommentsRegExp(); let matchArray; while (matchArray = regExp.exec(fileContents)) { cancellationToken.throwIfCancellationRequested(); const firstDescriptorCaptureIndex = 3; Debug.assert(matchArray.length === descriptors.length + firstDescriptorCaptureIndex); const preamble = matchArray[1]; const matchPosition = matchArray.index + preamble.length; if (!isInComment(sourceFile, matchPosition)) { continue; } let descriptor; for (let i = 0;i < descriptors.length; i++) { if (matchArray[i + firstDescriptorCaptureIndex]) { descriptor = descriptors[i]; } } if (descriptor === undefined) return Debug.fail(); if (isLetterOrDigit(fileContents.charCodeAt(matchPosition + descriptor.text.length))) { continue; } const message = matchArray[2]; result.push({ descriptor, message, position: matchPosition }); } } return result; function escapeRegExp2(str) { return str.replace(/[-[\]/{}()*+?.\\^$|]/g, "\\$&"); } function getTodoCommentsRegExp() { const singleLineCommentStart = /(?:\/{2,}\s*)/.source; const multiLineCommentStart = /(?:\/\*+\s*)/.source; const anyNumberOfSpacesAndAsterisksAtStartOfLine = /(?:^(?:\s|\*)*)/.source; const preamble = "(" + anyNumberOfSpacesAndAsterisksAtStartOfLine + "|" + singleLineCommentStart + "|" + multiLineCommentStart + ")"; const literals = "(?:" + map(descriptors, (d) => "(" + escapeRegExp2(d.text) + ")").join("|") + ")"; const endOfLineOrEndOfComment = /(?:$|\*\/)/.source; const messageRemainder = /(?:.*?)/.source; const messagePortion = "(" + literals + messageRemainder + ")"; const regExpString = preamble + messagePortion + endOfLineOrEndOfComment; return new RegExp(regExpString, "gim"); } function isLetterOrDigit(char) { return char >= 97 && char <= 122 || char >= 65 && char <= 90 || char >= 48 && char <= 57; } function isNodeModulesFile(path) { return path.includes("/node_modules/"); } } function getRenameInfo2(fileName, position, preferences) { synchronizeHostData(); return ts_Rename_exports.getRenameInfo(program, getValidSourceFile(fileName), position, preferences || {}); } function getRefactorContext(file, positionOrRange, preferences, formatOptions, triggerReason, kind) { const [startPosition, endPosition] = typeof positionOrRange === "number" ? [positionOrRange, undefined] : [positionOrRange.pos, positionOrRange.end]; return { file, startPosition, endPosition, program: getProgram(), host, formatContext: ts_formatting_exports.getFormatContext(formatOptions, host), cancellationToken, preferences, triggerReason, kind }; } function getInlayHintsContext(file, span, preferences) { return { file, program: getProgram(), host, span, preferences, cancellationToken }; } function getSmartSelectionRange2(fileName, position) { return ts_SmartSelectionRange_exports.getSmartSelectionRange(position, syntaxTreeCache.getCurrentSourceFile(fileName)); } function getApplicableRefactors2(fileName, positionOrRange, preferences = emptyOptions, triggerReason, kind, includeInteractiveActions) { synchronizeHostData(); const file = getValidSourceFile(fileName); return ts_refactor_exports.getApplicableRefactors(getRefactorContext(file, positionOrRange, preferences, emptyOptions, triggerReason, kind), includeInteractiveActions); } function getMoveToRefactoringFileSuggestions(fileName, positionOrRange, preferences = emptyOptions) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); const allFiles = Debug.checkDefined(program.getSourceFiles()); const extension = extensionFromPath(fileName); const toMove = getStatementsToMove(getRefactorContext(sourceFile, positionOrRange, preferences, emptyOptions)); const toMoveContainsJsx = containsJsx(toMove == null ? undefined : toMove.all); const files = mapDefined(allFiles, (file) => { const fileNameExtension = extensionFromPath(file.fileName); const isValidSourceFile = !(program == null ? undefined : program.isSourceFileFromExternalLibrary(sourceFile)) && !(sourceFile === getValidSourceFile(file.fileName) || extension === ".ts" && fileNameExtension === ".d.ts" || extension === ".d.ts" && startsWith(getBaseFileName(file.fileName), "lib.") && fileNameExtension === ".d.ts"); return isValidSourceFile && (extension === fileNameExtension || (extension === ".tsx" && fileNameExtension === ".ts" || extension === ".jsx" && fileNameExtension === ".js") && !toMoveContainsJsx) ? file.fileName : undefined; }); return { newFileName: createNewFileName(sourceFile, program, host, toMove), files }; } function getEditsForRefactor2(fileName, formatOptions, positionOrRange, refactorName14, actionName2, preferences = emptyOptions, interactiveRefactorArguments) { synchronizeHostData(); const file = getValidSourceFile(fileName); return ts_refactor_exports.getEditsForRefactor(getRefactorContext(file, positionOrRange, preferences, formatOptions), refactorName14, actionName2, interactiveRefactorArguments); } function toLineColumnOffset(fileName, position) { if (position === 0) { return { line: 0, character: 0 }; } return sourceMapper.toLineColumnOffset(fileName, position); } function prepareCallHierarchy(fileName, position) { synchronizeHostData(); const declarations = ts_CallHierarchy_exports.resolveCallHierarchyDeclaration(program, getTouchingPropertyName(getValidSourceFile(fileName), position)); return declarations && mapOneOrMany(declarations, (declaration) => ts_CallHierarchy_exports.createCallHierarchyItem(program, declaration)); } function provideCallHierarchyIncomingCalls(fileName, position) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); const declaration = firstOrOnly(ts_CallHierarchy_exports.resolveCallHierarchyDeclaration(program, position === 0 ? sourceFile : getTouchingPropertyName(sourceFile, position))); return declaration ? ts_CallHierarchy_exports.getIncomingCalls(program, declaration, cancellationToken) : []; } function provideCallHierarchyOutgoingCalls(fileName, position) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); const declaration = firstOrOnly(ts_CallHierarchy_exports.resolveCallHierarchyDeclaration(program, position === 0 ? sourceFile : getTouchingPropertyName(sourceFile, position))); return declaration ? ts_CallHierarchy_exports.getOutgoingCalls(program, declaration) : []; } function provideInlayHints2(fileName, span, preferences = emptyOptions) { synchronizeHostData(); const sourceFile = getValidSourceFile(fileName); return ts_InlayHints_exports.provideInlayHints(getInlayHintsContext(sourceFile, span, preferences)); } function mapCode2(sourceFile, contents, focusLocations, formatOptions, preferences) { return ts_MapCode_exports.mapCode(syntaxTreeCache.getCurrentSourceFile(sourceFile), contents, focusLocations, host, ts_formatting_exports.getFormatContext(formatOptions, host), preferences); } const ls = { dispose, cleanupSemanticCache, getSyntacticDiagnostics, getSemanticDiagnostics, getRegionSemanticDiagnostics, getSuggestionDiagnostics, getCompilerOptionsDiagnostics, getSyntacticClassifications: getSyntacticClassifications2, getSemanticClassifications: getSemanticClassifications3, getEncodedSyntacticClassifications: getEncodedSyntacticClassifications2, getEncodedSemanticClassifications: getEncodedSemanticClassifications3, getCompletionsAtPosition: getCompletionsAtPosition2, getCompletionEntryDetails: getCompletionEntryDetails2, getCompletionEntrySymbol: getCompletionEntrySymbol2, getSignatureHelpItems: getSignatureHelpItems2, getQuickInfoAtPosition, getDefinitionAtPosition: getDefinitionAtPosition2, getDefinitionAndBoundSpan: getDefinitionAndBoundSpan2, getImplementationAtPosition, getTypeDefinitionAtPosition: getTypeDefinitionAtPosition2, getReferencesAtPosition, findReferences, getFileReferences, getDocumentHighlights, getNameOrDottedNameSpan, getBreakpointStatementAtPosition, getNavigateToItems: getNavigateToItems2, getRenameInfo: getRenameInfo2, getSmartSelectionRange: getSmartSelectionRange2, findRenameLocations, getNavigationBarItems: getNavigationBarItems2, getNavigationTree: getNavigationTree2, getOutliningSpans, getTodoComments, getBraceMatchingAtPosition, getIndentationAtPosition, getFormattingEditsForRange, getFormattingEditsForDocument, getFormattingEditsAfterKeystroke, getDocCommentTemplateAtPosition: getDocCommentTemplateAtPosition2, isValidBraceCompletionAtPosition, getJsxClosingTagAtPosition, getLinkedEditingRangeAtPosition, getSpanOfEnclosingComment, getCodeFixesAtPosition, getCombinedCodeFix, applyCodeActionCommand, organizeImports: organizeImports2, getEditsForFileRename: getEditsForFileRename2, getEmitOutput, getNonBoundSourceFile, getProgram, getCurrentProgram: () => program, getAutoImportProvider, updateIsDefinitionOfReferencedSymbols, getApplicableRefactors: getApplicableRefactors2, getEditsForRefactor: getEditsForRefactor2, getMoveToRefactoringFileSuggestions, toLineColumnOffset, getSourceMapper: () => sourceMapper, clearSourceMapperCache: () => sourceMapper.clearCache(), prepareCallHierarchy, provideCallHierarchyIncomingCalls, provideCallHierarchyOutgoingCalls, toggleLineComment, toggleMultilineComment, commentSelection, uncommentSelection, provideInlayHints: provideInlayHints2, getSupportedCodeFixes, preparePasteEditsForFile, getPasteEdits, mapCode: mapCode2 }; switch (languageServiceMode) { case 0: break; case 1: invalidOperationsInPartialSemanticMode.forEach((key) => ls[key] = () => { throw new Error(`LanguageService Operation: ${key} not allowed in LanguageServiceMode.PartialSemantic`); }); break; case 2: invalidOperationsInSyntacticMode.forEach((key) => ls[key] = () => { throw new Error(`LanguageService Operation: ${key} not allowed in LanguageServiceMode.Syntactic`); }); break; default: Debug.assertNever(languageServiceMode); } return ls; } function getNameTable(sourceFile) { if (!sourceFile.nameTable) { initializeNameTable(sourceFile); } return sourceFile.nameTable; } function initializeNameTable(sourceFile) { const nameTable = sourceFile.nameTable = /* @__PURE__ */ new Map; sourceFile.forEachChild(function walk2(node) { if (isIdentifier(node) && !isTagName(node) && node.escapedText || isStringOrNumericLiteralLike(node) && literalIsName(node)) { const text = getEscapedTextOfIdentifierOrLiteral(node); nameTable.set(text, nameTable.get(text) === undefined ? node.pos : -1); } else if (isPrivateIdentifier(node)) { const text = node.escapedText; nameTable.set(text, nameTable.get(text) === undefined ? node.pos : -1); } forEachChild(node, walk2); if (hasJSDocNodes(node)) { for (const jsDoc of node.jsDoc) { forEachChild(jsDoc, walk2); } } }); } function literalIsName(node) { return isDeclarationName(node) || node.parent.kind === 284 || isArgumentOfElementAccessExpression(node) || isLiteralComputedPropertyDeclarationName(node); } function getContainingObjectLiteralElement(node) { const element = getContainingObjectLiteralElementWorker(node); return element && (isObjectLiteralExpression(element.parent) || isJsxAttributes(element.parent)) ? element : undefined; } function getContainingObjectLiteralElementWorker(node) { switch (node.kind) { case 11: case 15: case 9: if (node.parent.kind === 168) { return isObjectLiteralElement(node.parent.parent) ? node.parent.parent : undefined; } case 80: case 296: return isObjectLiteralElement(node.parent) && (node.parent.parent.kind === 211 || node.parent.parent.kind === 293) && node.parent.name === node ? node.parent : undefined; } return; } function getSymbolAtLocationForQuickInfo(node, checker) { const object = getContainingObjectLiteralElement(node); if (object) { const contextualType = checker.getContextualType(object.parent); const properties = contextualType && getPropertySymbolsFromContextualType(object, checker, contextualType, false); if (properties && properties.length === 1) { return first(properties); } } return checker.getSymbolAtLocation(node); } function getPropertySymbolsFromContextualType(node, checker, contextualType, unionSymbolOk) { contextualType = contextualType.getNonNullableType(); const name = getNameFromPropertyName(node.name); if (!name) return emptyArray; if (!contextualType.isUnion()) { const symbol = contextualType.getProperty(name); return symbol ? [symbol] : emptyArray; } const filteredTypes = isObjectLiteralExpression(node.parent) || isJsxAttributes(node.parent) ? filter(contextualType.types, (t) => !checker.isTypeInvalidDueToUnionDiscriminant(t, node.parent)) : contextualType.types; const discriminatedPropertySymbols = mapDefined(filteredTypes, (t) => t.getProperty(name)); if (unionSymbolOk && (discriminatedPropertySymbols.length === 0 || discriminatedPropertySymbols.length === contextualType.types.length)) { const symbol = contextualType.getProperty(name); if (symbol) return [symbol]; } if (!filteredTypes.length && !discriminatedPropertySymbols.length) { return mapDefined(contextualType.types, (t) => t.getProperty(name)); } return deduplicate(discriminatedPropertySymbols, equateValues); } function isArgumentOfElementAccessExpression(node) { return node && node.parent && node.parent.kind === 213 && node.parent.argumentExpression === node; } function getDefaultLibFilePath(options) { if (sys) { return combinePaths(getDirectoryPath(normalizePath(sys.getExecutingFilePath())), getDefaultLibFileName(options)); } throw new Error("getDefaultLibFilePath is only supported when consumed as a node module. "); } setObjectAllocator(getServicesObjectAllocator()); function transform(source, transformers, compilerOptions) { const diagnostics = []; compilerOptions = fixupCompilerOptions(compilerOptions, diagnostics); const nodes = isArray(source) ? source : [source]; const result = transformNodes(undefined, undefined, factory, compilerOptions, nodes, transformers, true); result.diagnostics = concatenate(result.diagnostics, diagnostics); return result; } var ts_BreakpointResolver_exports = {}; __export2(ts_BreakpointResolver_exports, { spanInSourceFileAtLocation: () => spanInSourceFileAtLocation }); function spanInSourceFileAtLocation(sourceFile, position) { if (sourceFile.isDeclarationFile) { return; } let tokenAtLocation = getTokenAtPosition(sourceFile, position); const lineOfPosition = sourceFile.getLineAndCharacterOfPosition(position).line; if (sourceFile.getLineAndCharacterOfPosition(tokenAtLocation.getStart(sourceFile)).line > lineOfPosition) { const preceding = findPrecedingToken(tokenAtLocation.pos, sourceFile); if (!preceding || sourceFile.getLineAndCharacterOfPosition(preceding.getEnd()).line !== lineOfPosition) { return; } tokenAtLocation = preceding; } if (tokenAtLocation.flags & 33554432) { return; } return spanInNode(tokenAtLocation); function textSpan(startNode2, endNode2) { const lastDecorator = canHaveDecorators(startNode2) ? findLast(startNode2.modifiers, isDecorator) : undefined; const start = lastDecorator ? skipTrivia2(sourceFile.text, lastDecorator.end) : startNode2.getStart(sourceFile); return createTextSpanFromBounds(start, (endNode2 || startNode2).getEnd()); } function textSpanEndingAtNextToken(startNode2, previousTokenToFindNextEndToken) { return textSpan(startNode2, findNextToken(previousTokenToFindNextEndToken, previousTokenToFindNextEndToken.parent, sourceFile)); } function spanInNodeIfStartsOnSameLine(node, otherwiseOnNode) { if (node && lineOfPosition === sourceFile.getLineAndCharacterOfPosition(node.getStart(sourceFile)).line) { return spanInNode(node); } return spanInNode(otherwiseOnNode); } function spanInNodeArray(nodeArray, node, match) { if (nodeArray) { const index = nodeArray.indexOf(node); if (index >= 0) { let start = index; let end = index + 1; while (start > 0 && match(nodeArray[start - 1])) start--; while (end < nodeArray.length && match(nodeArray[end])) end++; return createTextSpanFromBounds(skipTrivia2(sourceFile.text, nodeArray[start].pos), nodeArray[end - 1].end); } } return textSpan(node); } function spanInPreviousNode(node) { return spanInNode(findPrecedingToken(node.pos, sourceFile)); } function spanInNextNode(node) { return spanInNode(findNextToken(node, node.parent, sourceFile)); } function spanInNode(node) { if (node) { const { parent: parent2 } = node; switch (node.kind) { case 244: return spanInVariableDeclaration(node.declarationList.declarations[0]); case 261: case 173: case 172: return spanInVariableDeclaration(node); case 170: return spanInParameterDeclaration(node); case 263: case 175: case 174: case 178: case 179: case 177: case 219: case 220: return spanInFunctionDeclaration(node); case 242: if (isFunctionBlock(node)) { return spanInFunctionBlock(node); } case 269: return spanInBlock(node); case 300: return spanInBlock(node.block); case 245: return textSpan(node.expression); case 254: return textSpan(node.getChildAt(0), node.expression); case 248: return textSpanEndingAtNextToken(node, node.expression); case 247: return spanInNode(node.statement); case 260: return textSpan(node.getChildAt(0)); case 246: return textSpanEndingAtNextToken(node, node.expression); case 257: return spanInNode(node.statement); case 253: case 252: return textSpan(node.getChildAt(0), node.label); case 249: return spanInForStatement(node); case 250: return textSpanEndingAtNextToken(node, node.expression); case 251: return spanInInitializerOfForLike(node); case 256: return textSpanEndingAtNextToken(node, node.expression); case 297: case 298: return spanInNode(node.statements[0]); case 259: return spanInBlock(node.tryBlock); case 258: return textSpan(node, node.expression); case 278: return textSpan(node, node.expression); case 272: return textSpan(node, node.moduleReference); case 273: return textSpan(node, node.moduleSpecifier); case 279: return textSpan(node, node.moduleSpecifier); case 268: if (getModuleInstanceState(node) !== 1) { return; } case 264: case 267: case 307: case 209: return textSpan(node); case 255: return spanInNode(node.statement); case 171: return spanInNodeArray(parent2.modifiers, node, isDecorator); case 207: case 208: return spanInBindingPattern(node); case 265: case 266: return; case 27: case 1: return spanInNodeIfStartsOnSameLine(findPrecedingToken(node.pos, sourceFile)); case 28: return spanInPreviousNode(node); case 19: return spanInOpenBraceToken(node); case 20: return spanInCloseBraceToken(node); case 24: return spanInCloseBracketToken(node); case 21: return spanInOpenParenToken(node); case 22: return spanInCloseParenToken(node); case 59: return spanInColonToken(node); case 32: case 30: return spanInGreaterThanOrLessThanToken(node); case 117: return spanInWhileKeyword(node); case 93: case 85: case 98: return spanInNextNode(node); case 165: return spanInOfKeyword(node); default: if (isArrayLiteralOrObjectLiteralDestructuringPattern(node)) { return spanInArrayLiteralOrObjectLiteralDestructuringPattern(node); } if ((node.kind === 80 || node.kind === 231 || node.kind === 304 || node.kind === 305) && isArrayLiteralOrObjectLiteralDestructuringPattern(parent2)) { return textSpan(node); } if (node.kind === 227) { const { left, operatorToken } = node; if (isArrayLiteralOrObjectLiteralDestructuringPattern(left)) { return spanInArrayLiteralOrObjectLiteralDestructuringPattern(left); } if (operatorToken.kind === 64 && isArrayLiteralOrObjectLiteralDestructuringPattern(node.parent)) { return textSpan(node); } if (operatorToken.kind === 28) { return spanInNode(left); } } if (isExpressionNode(node)) { switch (parent2.kind) { case 247: return spanInPreviousNode(node); case 171: return spanInNode(node.parent); case 249: case 251: return textSpan(node); case 227: if (node.parent.operatorToken.kind === 28) { return textSpan(node); } break; case 220: if (node.parent.body === node) { return textSpan(node); } break; } } switch (node.parent.kind) { case 304: if (node.parent.name === node && !isArrayLiteralOrObjectLiteralDestructuringPattern(node.parent.parent)) { return spanInNode(node.parent.initializer); } break; case 217: if (node.parent.type === node) { return spanInNextNode(node.parent.type); } break; case 261: case 170: { const { initializer, type } = node.parent; if (initializer === node || type === node || isAssignmentOperator(node.kind)) { return spanInPreviousNode(node); } break; } case 227: { const { left } = node.parent; if (isArrayLiteralOrObjectLiteralDestructuringPattern(left) && node !== left) { return spanInPreviousNode(node); } break; } default: if (isFunctionLike(node.parent) && node.parent.type === node) { return spanInPreviousNode(node); } } return spanInNode(node.parent); } } function textSpanFromVariableDeclaration(variableDeclaration) { if (isVariableDeclarationList(variableDeclaration.parent) && variableDeclaration.parent.declarations[0] === variableDeclaration) { return textSpan(findPrecedingToken(variableDeclaration.pos, sourceFile, variableDeclaration.parent), variableDeclaration); } else { return textSpan(variableDeclaration); } } function spanInVariableDeclaration(variableDeclaration) { if (variableDeclaration.parent.parent.kind === 250) { return spanInNode(variableDeclaration.parent.parent); } const parent2 = variableDeclaration.parent; if (isBindingPattern(variableDeclaration.name)) { return spanInBindingPattern(variableDeclaration.name); } if (hasOnlyExpressionInitializer(variableDeclaration) && variableDeclaration.initializer || hasSyntacticModifier(variableDeclaration, 32) || parent2.parent.kind === 251) { return textSpanFromVariableDeclaration(variableDeclaration); } if (isVariableDeclarationList(variableDeclaration.parent) && variableDeclaration.parent.declarations[0] !== variableDeclaration) { return spanInNode(findPrecedingToken(variableDeclaration.pos, sourceFile, variableDeclaration.parent)); } } function canHaveSpanInParameterDeclaration(parameter) { return !!parameter.initializer || parameter.dotDotDotToken !== undefined || hasSyntacticModifier(parameter, 1 | 2); } function spanInParameterDeclaration(parameter) { if (isBindingPattern(parameter.name)) { return spanInBindingPattern(parameter.name); } else if (canHaveSpanInParameterDeclaration(parameter)) { return textSpan(parameter); } else { const functionDeclaration = parameter.parent; const indexOfParameter = functionDeclaration.parameters.indexOf(parameter); Debug.assert(indexOfParameter !== -1); if (indexOfParameter !== 0) { return spanInParameterDeclaration(functionDeclaration.parameters[indexOfParameter - 1]); } else { return spanInNode(functionDeclaration.body); } } } function canFunctionHaveSpanInWholeDeclaration(functionDeclaration) { return hasSyntacticModifier(functionDeclaration, 32) || functionDeclaration.parent.kind === 264 && functionDeclaration.kind !== 177; } function spanInFunctionDeclaration(functionDeclaration) { if (!functionDeclaration.body) { return; } if (canFunctionHaveSpanInWholeDeclaration(functionDeclaration)) { return textSpan(functionDeclaration); } return spanInNode(functionDeclaration.body); } function spanInFunctionBlock(block) { const nodeForSpanInBlock = block.statements.length ? block.statements[0] : block.getLastToken(); if (canFunctionHaveSpanInWholeDeclaration(block.parent)) { return spanInNodeIfStartsOnSameLine(block.parent, nodeForSpanInBlock); } return spanInNode(nodeForSpanInBlock); } function spanInBlock(block) { switch (block.parent.kind) { case 268: if (getModuleInstanceState(block.parent) !== 1) { return; } case 248: case 246: case 250: return spanInNodeIfStartsOnSameLine(block.parent, block.statements[0]); case 249: case 251: return spanInNodeIfStartsOnSameLine(findPrecedingToken(block.pos, sourceFile, block.parent), block.statements[0]); } return spanInNode(block.statements[0]); } function spanInInitializerOfForLike(forLikeStatement) { if (forLikeStatement.initializer.kind === 262) { const variableDeclarationList = forLikeStatement.initializer; if (variableDeclarationList.declarations.length > 0) { return spanInNode(variableDeclarationList.declarations[0]); } } else { return spanInNode(forLikeStatement.initializer); } } function spanInForStatement(forStatement) { if (forStatement.initializer) { return spanInInitializerOfForLike(forStatement); } if (forStatement.condition) { return textSpan(forStatement.condition); } if (forStatement.incrementor) { return textSpan(forStatement.incrementor); } } function spanInBindingPattern(bindingPattern) { const firstBindingElement = forEach(bindingPattern.elements, (element) => element.kind !== 233 ? element : undefined); if (firstBindingElement) { return spanInNode(firstBindingElement); } if (bindingPattern.parent.kind === 209) { return textSpan(bindingPattern.parent); } return textSpanFromVariableDeclaration(bindingPattern.parent); } function spanInArrayLiteralOrObjectLiteralDestructuringPattern(node2) { Debug.assert(node2.kind !== 208 && node2.kind !== 207); const elements = node2.kind === 210 ? node2.elements : node2.properties; const firstBindingElement = forEach(elements, (element) => element.kind !== 233 ? element : undefined); if (firstBindingElement) { return spanInNode(firstBindingElement); } return textSpan(node2.parent.kind === 227 ? node2.parent : node2); } function spanInOpenBraceToken(node2) { switch (node2.parent.kind) { case 267: const enumDeclaration = node2.parent; return spanInNodeIfStartsOnSameLine(findPrecedingToken(node2.pos, sourceFile, node2.parent), enumDeclaration.members.length ? enumDeclaration.members[0] : enumDeclaration.getLastToken(sourceFile)); case 264: const classDeclaration = node2.parent; return spanInNodeIfStartsOnSameLine(findPrecedingToken(node2.pos, sourceFile, node2.parent), classDeclaration.members.length ? classDeclaration.members[0] : classDeclaration.getLastToken(sourceFile)); case 270: return spanInNodeIfStartsOnSameLine(node2.parent.parent, node2.parent.clauses[0]); } return spanInNode(node2.parent); } function spanInCloseBraceToken(node2) { switch (node2.parent.kind) { case 269: if (getModuleInstanceState(node2.parent.parent) !== 1) { return; } case 267: case 264: return textSpan(node2); case 242: if (isFunctionBlock(node2.parent)) { return textSpan(node2); } case 300: return spanInNode(lastOrUndefined(node2.parent.statements)); case 270: const caseBlock = node2.parent; const lastClause = lastOrUndefined(caseBlock.clauses); if (lastClause) { return spanInNode(lastOrUndefined(lastClause.statements)); } return; case 207: const bindingPattern = node2.parent; return spanInNode(lastOrUndefined(bindingPattern.elements) || bindingPattern); default: if (isArrayLiteralOrObjectLiteralDestructuringPattern(node2.parent)) { const objectLiteral = node2.parent; return textSpan(lastOrUndefined(objectLiteral.properties) || objectLiteral); } return spanInNode(node2.parent); } } function spanInCloseBracketToken(node2) { switch (node2.parent.kind) { case 208: const bindingPattern = node2.parent; return textSpan(lastOrUndefined(bindingPattern.elements) || bindingPattern); default: if (isArrayLiteralOrObjectLiteralDestructuringPattern(node2.parent)) { const arrayLiteral = node2.parent; return textSpan(lastOrUndefined(arrayLiteral.elements) || arrayLiteral); } return spanInNode(node2.parent); } } function spanInOpenParenToken(node2) { if (node2.parent.kind === 247 || node2.parent.kind === 214 || node2.parent.kind === 215) { return spanInPreviousNode(node2); } if (node2.parent.kind === 218) { return spanInNextNode(node2); } return spanInNode(node2.parent); } function spanInCloseParenToken(node2) { switch (node2.parent.kind) { case 219: case 263: case 220: case 175: case 174: case 178: case 179: case 177: case 248: case 247: case 249: case 251: case 214: case 215: case 218: return spanInPreviousNode(node2); default: return spanInNode(node2.parent); } } function spanInColonToken(node2) { if (isFunctionLike(node2.parent) || node2.parent.kind === 304 || node2.parent.kind === 170) { return spanInPreviousNode(node2); } return spanInNode(node2.parent); } function spanInGreaterThanOrLessThanToken(node2) { if (node2.parent.kind === 217) { return spanInNextNode(node2); } return spanInNode(node2.parent); } function spanInWhileKeyword(node2) { if (node2.parent.kind === 247) { return textSpanEndingAtNextToken(node2, node2.parent.expression); } return spanInNode(node2.parent); } function spanInOfKeyword(node2) { if (node2.parent.kind === 251) { return spanInNextNode(node2); } return spanInNode(node2.parent); } } } var ts_CallHierarchy_exports = {}; __export2(ts_CallHierarchy_exports, { createCallHierarchyItem: () => createCallHierarchyItem, getIncomingCalls: () => getIncomingCalls, getOutgoingCalls: () => getOutgoingCalls, resolveCallHierarchyDeclaration: () => resolveCallHierarchyDeclaration }); function isNamedExpression(node) { return (isFunctionExpression(node) || isClassExpression(node)) && isNamedDeclaration(node); } function isVariableLike2(node) { return isPropertyDeclaration(node) || isVariableDeclaration(node); } function isAssignedExpression(node) { return (isFunctionExpression(node) || isArrowFunction(node) || isClassExpression(node)) && isVariableLike2(node.parent) && node === node.parent.initializer && isIdentifier(node.parent.name) && (!!(getCombinedNodeFlags(node.parent) & 2) || isPropertyDeclaration(node.parent)); } function isPossibleCallHierarchyDeclaration(node) { return isSourceFile(node) || isModuleDeclaration(node) || isFunctionDeclaration(node) || isFunctionExpression(node) || isClassDeclaration(node) || isClassExpression(node) || isClassStaticBlockDeclaration(node) || isMethodDeclaration(node) || isMethodSignature(node) || isGetAccessorDeclaration(node) || isSetAccessorDeclaration(node); } function isValidCallHierarchyDeclaration(node) { return isSourceFile(node) || isModuleDeclaration(node) && isIdentifier(node.name) || isFunctionDeclaration(node) || isClassDeclaration(node) || isClassStaticBlockDeclaration(node) || isMethodDeclaration(node) || isMethodSignature(node) || isGetAccessorDeclaration(node) || isSetAccessorDeclaration(node) || isNamedExpression(node) || isAssignedExpression(node); } function getCallHierarchyDeclarationReferenceNode(node) { if (isSourceFile(node)) return node; if (isNamedDeclaration(node)) return node.name; if (isAssignedExpression(node)) return node.parent.name; return Debug.checkDefined(node.modifiers && find(node.modifiers, isDefaultModifier3)); } function isDefaultModifier3(node) { return node.kind === 90; } function getSymbolOfCallHierarchyDeclaration(typeChecker, node) { const location = getCallHierarchyDeclarationReferenceNode(node); return location && typeChecker.getSymbolAtLocation(location); } function getCallHierarchyItemName(program, node) { if (isSourceFile(node)) { return { text: node.fileName, pos: 0, end: 0 }; } if ((isFunctionDeclaration(node) || isClassDeclaration(node)) && !isNamedDeclaration(node)) { const defaultModifier = node.modifiers && find(node.modifiers, isDefaultModifier3); if (defaultModifier) { return { text: "default", pos: defaultModifier.getStart(), end: defaultModifier.getEnd() }; } } if (isClassStaticBlockDeclaration(node)) { const sourceFile = node.getSourceFile(); const pos = skipTrivia2(sourceFile.text, moveRangePastModifiers(node).pos); const end = pos + 6; const typeChecker = program.getTypeChecker(); const symbol = typeChecker.getSymbolAtLocation(node.parent); const prefix = symbol ? `${typeChecker.symbolToString(symbol, node.parent)} ` : ""; return { text: `${prefix}static {}`, pos, end }; } const declName = isAssignedExpression(node) ? node.parent.name : Debug.checkDefined(getNameOfDeclaration(node), "Expected call hierarchy item to have a name"); let text = isIdentifier(declName) ? idText(declName) : isStringOrNumericLiteralLike(declName) ? declName.text : isComputedPropertyName(declName) ? isStringOrNumericLiteralLike(declName.expression) ? declName.expression.text : undefined : undefined; if (text === undefined) { const typeChecker = program.getTypeChecker(); const symbol = typeChecker.getSymbolAtLocation(declName); if (symbol) { text = typeChecker.symbolToString(symbol, node); } } if (text === undefined) { const printer = createPrinterWithRemoveCommentsOmitTrailingSemicolon(); text = usingSingleLineStringWriter((writer) => printer.writeNode(4, node, node.getSourceFile(), writer)); } return { text, pos: declName.getStart(), end: declName.getEnd() }; } function getCallHierarchItemContainerName(node) { var _a, _b, _c, _d; if (isAssignedExpression(node)) { if (isPropertyDeclaration(node.parent) && isClassLike(node.parent.parent)) { return isClassExpression(node.parent.parent) ? (_a = getAssignedName(node.parent.parent)) == null ? undefined : _a.getText() : (_b = node.parent.parent.name) == null ? undefined : _b.getText(); } if (isModuleBlock(node.parent.parent.parent.parent) && isIdentifier(node.parent.parent.parent.parent.parent.name)) { return node.parent.parent.parent.parent.parent.name.getText(); } return; } switch (node.kind) { case 178: case 179: case 175: if (node.parent.kind === 211) { return (_c = getAssignedName(node.parent)) == null ? undefined : _c.getText(); } return (_d = getNameOfDeclaration(node.parent)) == null ? undefined : _d.getText(); case 263: case 264: case 268: if (isModuleBlock(node.parent) && isIdentifier(node.parent.parent.name)) { return node.parent.parent.name.getText(); } } } function findImplementation(typeChecker, node) { if (node.body) { return node; } if (isConstructorDeclaration(node)) { return getFirstConstructorWithBody(node.parent); } if (isFunctionDeclaration(node) || isMethodDeclaration(node)) { const symbol = getSymbolOfCallHierarchyDeclaration(typeChecker, node); if (symbol && symbol.valueDeclaration && isFunctionLikeDeclaration(symbol.valueDeclaration) && symbol.valueDeclaration.body) { return symbol.valueDeclaration; } return; } return node; } function findAllInitialDeclarations(typeChecker, node) { const symbol = getSymbolOfCallHierarchyDeclaration(typeChecker, node); let declarations; if (symbol && symbol.declarations) { const indices = indicesOf(symbol.declarations); const keys = map(symbol.declarations, (decl) => ({ file: decl.getSourceFile().fileName, pos: decl.pos })); indices.sort((a, b) => compareStringsCaseSensitive(keys[a].file, keys[b].file) || keys[a].pos - keys[b].pos); const sortedDeclarations = map(indices, (i) => symbol.declarations[i]); let lastDecl; for (const decl of sortedDeclarations) { if (isValidCallHierarchyDeclaration(decl)) { if (!lastDecl || lastDecl.parent !== decl.parent || lastDecl.end !== decl.pos) { declarations = append(declarations, decl); } lastDecl = decl; } } } return declarations; } function findImplementationOrAllInitialDeclarations(typeChecker, node) { if (isClassStaticBlockDeclaration(node)) { return node; } if (isFunctionLikeDeclaration(node)) { return findImplementation(typeChecker, node) ?? findAllInitialDeclarations(typeChecker, node) ?? node; } return findAllInitialDeclarations(typeChecker, node) ?? node; } function resolveCallHierarchyDeclaration(program, location) { const typeChecker = program.getTypeChecker(); let followingSymbol = false; while (true) { if (isValidCallHierarchyDeclaration(location)) { return findImplementationOrAllInitialDeclarations(typeChecker, location); } if (isPossibleCallHierarchyDeclaration(location)) { const ancestor = findAncestor(location, isValidCallHierarchyDeclaration); return ancestor && findImplementationOrAllInitialDeclarations(typeChecker, ancestor); } if (isDeclarationName(location)) { if (isValidCallHierarchyDeclaration(location.parent)) { return findImplementationOrAllInitialDeclarations(typeChecker, location.parent); } if (isPossibleCallHierarchyDeclaration(location.parent)) { const ancestor = findAncestor(location.parent, isValidCallHierarchyDeclaration); return ancestor && findImplementationOrAllInitialDeclarations(typeChecker, ancestor); } if (isVariableLike2(location.parent) && location.parent.initializer && isAssignedExpression(location.parent.initializer)) { return location.parent.initializer; } return; } if (isConstructorDeclaration(location)) { if (isValidCallHierarchyDeclaration(location.parent)) { return location.parent; } return; } if (location.kind === 126 && isClassStaticBlockDeclaration(location.parent)) { location = location.parent; continue; } if (isVariableDeclaration(location) && location.initializer && isAssignedExpression(location.initializer)) { return location.initializer; } if (!followingSymbol) { let symbol = typeChecker.getSymbolAtLocation(location); if (symbol) { if (symbol.flags & 2097152) { symbol = typeChecker.getAliasedSymbol(symbol); } if (symbol.valueDeclaration) { followingSymbol = true; location = symbol.valueDeclaration; continue; } } } return; } } function createCallHierarchyItem(program, node) { const sourceFile = node.getSourceFile(); const name = getCallHierarchyItemName(program, node); const containerName = getCallHierarchItemContainerName(node); const kind = getNodeKind(node); const kindModifiers = getNodeModifiers(node); const span = createTextSpanFromBounds(skipTrivia2(sourceFile.text, node.getFullStart(), false, true), node.getEnd()); const selectionSpan = createTextSpanFromBounds(name.pos, name.end); return { file: sourceFile.fileName, kind, kindModifiers, name: name.text, containerName, span, selectionSpan }; } function isDefined(x) { return x !== undefined; } function convertEntryToCallSite(entry) { if (entry.kind === ts_FindAllReferences_exports.EntryKind.Node) { const { node } = entry; if (isCallOrNewExpressionTarget(node, true, true) || isTaggedTemplateTag(node, true, true) || isDecoratorTarget(node, true, true) || isJsxOpeningLikeElementTagName(node, true, true) || isRightSideOfPropertyAccess(node) || isArgumentExpressionOfElementAccess(node)) { const sourceFile = node.getSourceFile(); const ancestor = findAncestor(node, isValidCallHierarchyDeclaration) || sourceFile; return { declaration: ancestor, range: createTextRangeFromNode(node, sourceFile) }; } } } function getCallSiteGroupKey(entry) { return getNodeId(entry.declaration); } function createCallHierarchyIncomingCall(from, fromSpans) { return { from, fromSpans }; } function convertCallSiteGroupToIncomingCall(program, entries) { return createCallHierarchyIncomingCall(createCallHierarchyItem(program, entries[0].declaration), map(entries, (entry) => createTextSpanFromRange(entry.range))); } function getIncomingCalls(program, declaration, cancellationToken) { if (isSourceFile(declaration) || isModuleDeclaration(declaration) || isClassStaticBlockDeclaration(declaration)) { return []; } const location = getCallHierarchyDeclarationReferenceNode(declaration); const calls = filter(ts_FindAllReferences_exports.findReferenceOrRenameEntries(program, cancellationToken, program.getSourceFiles(), location, 0, { use: ts_FindAllReferences_exports.FindReferencesUse.References }, convertEntryToCallSite), isDefined); return calls ? group(calls, getCallSiteGroupKey, (entries) => convertCallSiteGroupToIncomingCall(program, entries)) : []; } function createCallSiteCollector(program, callSites) { function recordCallSite(node) { const target = isTaggedTemplateExpression(node) ? node.tag : isJsxOpeningLikeElement(node) ? node.tagName : isAccessExpression(node) ? node : isClassStaticBlockDeclaration(node) ? node : node.expression; const declaration = resolveCallHierarchyDeclaration(program, target); if (declaration) { const range = createTextRangeFromNode(target, node.getSourceFile()); if (isArray(declaration)) { for (const decl of declaration) { callSites.push({ declaration: decl, range }); } } else { callSites.push({ declaration, range }); } } } function collect(node) { if (!node) return; if (node.flags & 33554432) { return; } if (isValidCallHierarchyDeclaration(node)) { if (isClassLike(node)) { for (const member of node.members) { if (member.name && isComputedPropertyName(member.name)) { collect(member.name.expression); } } } return; } switch (node.kind) { case 80: case 272: case 273: case 279: case 265: case 266: return; case 176: recordCallSite(node); return; case 217: case 235: collect(node.expression); return; case 261: case 170: collect(node.name); collect(node.initializer); return; case 214: recordCallSite(node); collect(node.expression); forEach(node.arguments, collect); return; case 215: recordCallSite(node); collect(node.expression); forEach(node.arguments, collect); return; case 216: recordCallSite(node); collect(node.tag); collect(node.template); return; case 287: case 286: recordCallSite(node); collect(node.tagName); collect(node.attributes); return; case 171: recordCallSite(node); collect(node.expression); return; case 212: case 213: recordCallSite(node); forEachChild(node, collect); break; case 239: collect(node.expression); return; } if (isPartOfTypeNode(node)) { return; } forEachChild(node, collect); } return collect; } function collectCallSitesOfSourceFile(node, collect) { forEach(node.statements, collect); } function collectCallSitesOfModuleDeclaration(node, collect) { if (!hasSyntacticModifier(node, 128) && node.body && isModuleBlock(node.body)) { forEach(node.body.statements, collect); } } function collectCallSitesOfFunctionLikeDeclaration(typeChecker, node, collect) { const implementation = findImplementation(typeChecker, node); if (implementation) { forEach(implementation.parameters, collect); collect(implementation.body); } } function collectCallSitesOfClassStaticBlockDeclaration(node, collect) { collect(node.body); } function collectCallSitesOfClassLikeDeclaration(node, collect) { forEach(node.modifiers, collect); const heritage = getClassExtendsHeritageElement(node); if (heritage) { collect(heritage.expression); } for (const member of node.members) { if (canHaveModifiers(member)) { forEach(member.modifiers, collect); } if (isPropertyDeclaration(member)) { collect(member.initializer); } else if (isConstructorDeclaration(member) && member.body) { forEach(member.parameters, collect); collect(member.body); } else if (isClassStaticBlockDeclaration(member)) { collect(member); } } } function collectCallSites(program, node) { const callSites = []; const collect = createCallSiteCollector(program, callSites); switch (node.kind) { case 308: collectCallSitesOfSourceFile(node, collect); break; case 268: collectCallSitesOfModuleDeclaration(node, collect); break; case 263: case 219: case 220: case 175: case 178: case 179: collectCallSitesOfFunctionLikeDeclaration(program.getTypeChecker(), node, collect); break; case 264: case 232: collectCallSitesOfClassLikeDeclaration(node, collect); break; case 176: collectCallSitesOfClassStaticBlockDeclaration(node, collect); break; default: Debug.assertNever(node); } return callSites; } function createCallHierarchyOutgoingCall(to, fromSpans) { return { to, fromSpans }; } function convertCallSiteGroupToOutgoingCall(program, entries) { return createCallHierarchyOutgoingCall(createCallHierarchyItem(program, entries[0].declaration), map(entries, (entry) => createTextSpanFromRange(entry.range))); } function getOutgoingCalls(program, declaration) { if (declaration.flags & 33554432 || isMethodSignature(declaration)) { return []; } return group(collectCallSites(program, declaration), getCallSiteGroupKey, (entries) => convertCallSiteGroupToOutgoingCall(program, entries)); } var ts_classifier_exports = {}; __export2(ts_classifier_exports, { v2020: () => ts_classifier_v2020_exports }); var ts_classifier_v2020_exports = {}; __export2(ts_classifier_v2020_exports, { TokenEncodingConsts: () => TokenEncodingConsts, TokenModifier: () => TokenModifier, TokenType: () => TokenType, getEncodedSemanticClassifications: () => getEncodedSemanticClassifications2, getSemanticClassifications: () => getSemanticClassifications2 }); var ts_codefix_exports = {}; __export2(ts_codefix_exports, { PreserveOptionalFlags: () => PreserveOptionalFlags, addNewNodeForMemberSymbol: () => addNewNodeForMemberSymbol, codeFixAll: () => codeFixAll, createCodeFixAction: () => createCodeFixAction, createCodeFixActionMaybeFixAll: () => createCodeFixActionMaybeFixAll, createCodeFixActionWithoutFixAll: () => createCodeFixActionWithoutFixAll, createCombinedCodeActions: () => createCombinedCodeActions, createFileTextChanges: () => createFileTextChanges, createImportAdder: () => createImportAdder, createImportSpecifierResolver: () => createImportSpecifierResolver, createMissingMemberNodes: () => createMissingMemberNodes, createSignatureDeclarationFromCallExpression: () => createSignatureDeclarationFromCallExpression, createSignatureDeclarationFromSignature: () => createSignatureDeclarationFromSignature, createStubbedBody: () => createStubbedBody, eachDiagnostic: () => eachDiagnostic, findAncestorMatchingSpan: () => findAncestorMatchingSpan, generateAccessorFromProperty: () => generateAccessorFromProperty, getAccessorConvertiblePropertyAtPosition: () => getAccessorConvertiblePropertyAtPosition, getAllFixes: () => getAllFixes, getFixes: () => getFixes, getImportCompletionAction: () => getImportCompletionAction, getImportKind: () => getImportKind, getJSDocTypedefNodes: () => getJSDocTypedefNodes, getNoopSymbolTrackerWithResolver: () => getNoopSymbolTrackerWithResolver, getPromoteTypeOnlyCompletionAction: () => getPromoteTypeOnlyCompletionAction, getSupportedErrorCodes: () => getSupportedErrorCodes, importFixName: () => importFixName, importSymbols: () => importSymbols, parameterShouldGetTypeFromJSDoc: () => parameterShouldGetTypeFromJSDoc, registerCodeFix: () => registerCodeFix, setJsonCompilerOptionValue: () => setJsonCompilerOptionValue, setJsonCompilerOptionValues: () => setJsonCompilerOptionValues, tryGetAutoImportableReferenceFromTypeNode: () => tryGetAutoImportableReferenceFromTypeNode, typeNodeToAutoImportableTypeNode: () => typeNodeToAutoImportableTypeNode, typePredicateToAutoImportableTypeNode: () => typePredicateToAutoImportableTypeNode, typeToAutoImportableTypeNode: () => typeToAutoImportableTypeNode, typeToMinimizedReferenceType: () => typeToMinimizedReferenceType }); var errorCodeToFixes = createMultiMap(); var fixIdToRegistration = /* @__PURE__ */ new Map; function createCodeFixActionWithoutFixAll(fixName8, changes, description3) { return createCodeFixActionWorker(fixName8, diagnosticToString(description3), changes, undefined, undefined); } function createCodeFixAction(fixName8, changes, description3, fixId56, fixAllDescription, command) { return createCodeFixActionWorker(fixName8, diagnosticToString(description3), changes, fixId56, diagnosticToString(fixAllDescription), command); } function createCodeFixActionMaybeFixAll(fixName8, changes, description3, fixId56, fixAllDescription, command) { return createCodeFixActionWorker(fixName8, diagnosticToString(description3), changes, fixId56, fixAllDescription && diagnosticToString(fixAllDescription), command); } function createCodeFixActionWorker(fixName8, description3, changes, fixId56, fixAllDescription, command) { return { fixName: fixName8, description: description3, changes, fixId: fixId56, fixAllDescription, commands: command ? [command] : undefined }; } function registerCodeFix(reg) { for (const error2 of reg.errorCodes) { errorCodeToFixesArray = undefined; errorCodeToFixes.add(String(error2), reg); } if (reg.fixIds) { for (const fixId56 of reg.fixIds) { Debug.assert(!fixIdToRegistration.has(fixId56)); fixIdToRegistration.set(fixId56, reg); } } } var errorCodeToFixesArray; function getSupportedErrorCodes() { return errorCodeToFixesArray ?? (errorCodeToFixesArray = arrayFrom(errorCodeToFixes.keys())); } function removeFixIdIfFixAllUnavailable(registration, diagnostics) { const { errorCodes: errorCodes68 } = registration; let maybeFixableDiagnostics = 0; for (const diag2 of diagnostics) { if (contains(errorCodes68, diag2.code)) maybeFixableDiagnostics++; if (maybeFixableDiagnostics > 1) break; } const fixAllUnavailable = maybeFixableDiagnostics < 2; return ({ fixId: fixId56, fixAllDescription, ...action }) => { return fixAllUnavailable ? action : { ...action, fixId: fixId56, fixAllDescription }; }; } function getFixes(context) { const diagnostics = getDiagnostics(context); const registrations = errorCodeToFixes.get(String(context.errorCode)); return flatMap(registrations, (f) => map(f.getCodeActions(context), removeFixIdIfFixAllUnavailable(f, diagnostics))); } function getAllFixes(context) { return fixIdToRegistration.get(cast(context.fixId, isString)).getAllCodeActions(context); } function createCombinedCodeActions(changes, commands) { return { changes, commands }; } function createFileTextChanges(fileName, textChanges2) { return { fileName, textChanges: textChanges2 }; } function codeFixAll(context, errorCodes68, use) { const commands = []; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => eachDiagnostic(context, errorCodes68, (diag2) => use(t, diag2, commands))); return createCombinedCodeActions(changes, commands.length === 0 ? undefined : commands); } function eachDiagnostic(context, errorCodes68, cb) { for (const diag2 of getDiagnostics(context)) { if (contains(errorCodes68, diag2.code)) { cb(diag2); } } } function getDiagnostics({ program, sourceFile, cancellationToken }) { const diagnostics = [ ...program.getSemanticDiagnostics(sourceFile, cancellationToken), ...program.getSyntacticDiagnostics(sourceFile, cancellationToken), ...computeSuggestionDiagnostics(sourceFile, program, cancellationToken) ]; if (getEmitDeclarations(program.getCompilerOptions())) { diagnostics.push(...program.getDeclarationDiagnostics(sourceFile, cancellationToken)); } return diagnostics; } var fixId = "addConvertToUnknownForNonOverlappingTypes"; var errorCodes = [Diagnostics.Conversion_of_type_0_to_type_1_may_be_a_mistake_because_neither_type_sufficiently_overlaps_with_the_other_If_this_was_intentional_convert_the_expression_to_unknown_first.code]; registerCodeFix({ errorCodes, getCodeActions: function getCodeActionsToAddConvertToUnknownForNonOverlappingTypes(context) { const assertion = getAssertion(context.sourceFile, context.span.start); if (assertion === undefined) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange(t, context.sourceFile, assertion)); return [createCodeFixAction(fixId, changes, Diagnostics.Add_unknown_conversion_for_non_overlapping_types, fixId, Diagnostics.Add_unknown_to_all_conversions_of_non_overlapping_types)]; }, fixIds: [fixId], getAllCodeActions: (context) => codeFixAll(context, errorCodes, (changes, diag2) => { const assertion = getAssertion(diag2.file, diag2.start); if (assertion) { makeChange(changes, diag2.file, assertion); } }) }); function makeChange(changeTracker, sourceFile, assertion) { const replacement = isAsExpression(assertion) ? factory.createAsExpression(assertion.expression, factory.createKeywordTypeNode(159)) : factory.createTypeAssertion(factory.createKeywordTypeNode(159), assertion.expression); changeTracker.replaceNode(sourceFile, assertion.expression, replacement); } function getAssertion(sourceFile, pos) { if (isInJSFile(sourceFile)) return; return findAncestor(getTokenAtPosition(sourceFile, pos), (n) => isAsExpression(n) || isTypeAssertionExpression(n)); } registerCodeFix({ errorCodes: [ Diagnostics.await_expressions_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_file_has_no_imports_or_exports_Consider_adding_an_empty_export_to_make_this_file_a_module.code, Diagnostics.await_using_statements_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_file_has_no_imports_or_exports_Consider_adding_an_empty_export_to_make_this_file_a_module.code, Diagnostics.for_await_loops_are_only_allowed_at_the_top_level_of_a_file_when_that_file_is_a_module_but_this_file_has_no_imports_or_exports_Consider_adding_an_empty_export_to_make_this_file_a_module.code ], getCodeActions: function getCodeActionsToAddEmptyExportDeclaration(context) { const { sourceFile } = context; const changes = ts_textChanges_exports.ChangeTracker.with(context, (changes2) => { const exportDeclaration = factory.createExportDeclaration(undefined, false, factory.createNamedExports([]), undefined); changes2.insertNodeAtEndOfScope(sourceFile, sourceFile, exportDeclaration); }); return [createCodeFixActionWithoutFixAll("addEmptyExportDeclaration", changes, Diagnostics.Add_export_to_make_this_file_into_a_module)]; } }); var fixId2 = "addMissingAsync"; var errorCodes2 = [ Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1.code, Diagnostics.Type_0_is_not_assignable_to_type_1.code, Diagnostics.Type_0_is_not_comparable_to_type_1.code ]; registerCodeFix({ fixIds: [fixId2], errorCodes: errorCodes2, getCodeActions: function getCodeActionsToAddMissingAsync(context) { const { sourceFile, errorCode, cancellationToken, program, span } = context; const diagnostic = find(program.getTypeChecker().getDiagnostics(sourceFile, cancellationToken), getIsMatchingAsyncError(span, errorCode)); const directSpan = diagnostic && diagnostic.relatedInformation && find(diagnostic.relatedInformation, (r) => r.code === Diagnostics.Did_you_mean_to_mark_this_function_as_async.code); const decl = getFixableErrorSpanDeclaration(sourceFile, directSpan); if (!decl) { return; } const trackChanges = (cb) => ts_textChanges_exports.ChangeTracker.with(context, cb); return [getFix(context, decl, trackChanges)]; }, getAllCodeActions: (context) => { const { sourceFile } = context; const fixedDeclarations = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes2, (t, diagnostic) => { const span = diagnostic.relatedInformation && find(diagnostic.relatedInformation, (r) => r.code === Diagnostics.Did_you_mean_to_mark_this_function_as_async.code); const decl = getFixableErrorSpanDeclaration(sourceFile, span); if (!decl) { return; } const trackChanges = (cb) => (cb(t), []); return getFix(context, decl, trackChanges, fixedDeclarations); }); } }); function getFix(context, decl, trackChanges, fixedDeclarations) { const changes = trackChanges((t) => makeChange2(t, context.sourceFile, decl, fixedDeclarations)); return createCodeFixAction(fixId2, changes, Diagnostics.Add_async_modifier_to_containing_function, fixId2, Diagnostics.Add_all_missing_async_modifiers); } function makeChange2(changeTracker, sourceFile, insertionSite, fixedDeclarations) { if (fixedDeclarations) { if (fixedDeclarations.has(getNodeId(insertionSite))) { return; } } fixedDeclarations == null || fixedDeclarations.add(getNodeId(insertionSite)); const cloneWithModifier = factory.replaceModifiers(getSynthesizedDeepClone(insertionSite, true), factory.createNodeArray(factory.createModifiersFromModifierFlags(getSyntacticModifierFlags(insertionSite) | 1024))); changeTracker.replaceNode(sourceFile, insertionSite, cloneWithModifier); } function getFixableErrorSpanDeclaration(sourceFile, span) { if (!span) return; const token = getTokenAtPosition(sourceFile, span.start); const decl = findAncestor(token, (node) => { if (node.getStart(sourceFile) < span.start || node.getEnd() > textSpanEnd(span)) { return "quit"; } return (isArrowFunction(node) || isMethodDeclaration(node) || isFunctionExpression(node) || isFunctionDeclaration(node)) && textSpansEqual(span, createTextSpanFromNode(node, sourceFile)); }); return decl; } function getIsMatchingAsyncError(span, errorCode) { return ({ start, length: length2, relatedInformation, code }) => isNumber(start) && isNumber(length2) && textSpansEqual({ start, length: length2 }, span) && code === errorCode && !!relatedInformation && some(relatedInformation, (related) => related.code === Diagnostics.Did_you_mean_to_mark_this_function_as_async.code); } var fixId3 = "addMissingAwait"; var propertyAccessCode = Diagnostics.Property_0_does_not_exist_on_type_1.code; var callableConstructableErrorCodes = [ Diagnostics.This_expression_is_not_callable.code, Diagnostics.This_expression_is_not_constructable.code ]; var errorCodes3 = [ Diagnostics.An_arithmetic_operand_must_be_of_type_any_number_bigint_or_an_enum_type.code, Diagnostics.The_left_hand_side_of_an_arithmetic_operation_must_be_of_type_any_number_bigint_or_an_enum_type.code, Diagnostics.The_right_hand_side_of_an_arithmetic_operation_must_be_of_type_any_number_bigint_or_an_enum_type.code, Diagnostics.Operator_0_cannot_be_applied_to_type_1.code, Diagnostics.Operator_0_cannot_be_applied_to_types_1_and_2.code, Diagnostics.This_comparison_appears_to_be_unintentional_because_the_types_0_and_1_have_no_overlap.code, Diagnostics.This_condition_will_always_return_true_since_this_0_is_always_defined.code, Diagnostics.Type_0_is_not_an_array_type.code, Diagnostics.Type_0_is_not_an_array_type_or_a_string_type.code, Diagnostics.Type_0_can_only_be_iterated_through_when_using_the_downlevelIteration_flag_or_with_a_target_of_es2015_or_higher.code, Diagnostics.Type_0_is_not_an_array_type_or_a_string_type_or_does_not_have_a_Symbol_iterator_method_that_returns_an_iterator.code, Diagnostics.Type_0_is_not_an_array_type_or_does_not_have_a_Symbol_iterator_method_that_returns_an_iterator.code, Diagnostics.Type_0_must_have_a_Symbol_iterator_method_that_returns_an_iterator.code, Diagnostics.Type_0_must_have_a_Symbol_asyncIterator_method_that_returns_an_async_iterator.code, Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1.code, propertyAccessCode, ...callableConstructableErrorCodes ]; registerCodeFix({ fixIds: [fixId3], errorCodes: errorCodes3, getCodeActions: function getCodeActionsToAddMissingAwait(context) { const { sourceFile, errorCode, span, cancellationToken, program } = context; const expression = getAwaitErrorSpanExpression(sourceFile, errorCode, span, cancellationToken, program); if (!expression) { return; } const checker = context.program.getTypeChecker(); const trackChanges = (cb) => ts_textChanges_exports.ChangeTracker.with(context, cb); return compact([ getDeclarationSiteFix(context, expression, errorCode, checker, trackChanges), getUseSiteFix(context, expression, errorCode, checker, trackChanges) ]); }, getAllCodeActions: (context) => { const { sourceFile, program, cancellationToken } = context; const checker = context.program.getTypeChecker(); const fixedDeclarations = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes3, (t, diagnostic) => { const expression = getAwaitErrorSpanExpression(sourceFile, diagnostic.code, diagnostic, cancellationToken, program); if (!expression) { return; } const trackChanges = (cb) => (cb(t), []); return getDeclarationSiteFix(context, expression, diagnostic.code, checker, trackChanges, fixedDeclarations) || getUseSiteFix(context, expression, diagnostic.code, checker, trackChanges, fixedDeclarations); }); } }); function getAwaitErrorSpanExpression(sourceFile, errorCode, span, cancellationToken, program) { const expression = getFixableErrorSpanExpression(sourceFile, span); return expression && isMissingAwaitError(sourceFile, errorCode, span, cancellationToken, program) && isInsideAwaitableBody(expression) ? expression : undefined; } function getDeclarationSiteFix(context, expression, errorCode, checker, trackChanges, fixedDeclarations) { const { sourceFile, program, cancellationToken } = context; const awaitableInitializers = findAwaitableInitializers(expression, sourceFile, cancellationToken, program, checker); if (awaitableInitializers) { const initializerChanges = trackChanges((t) => { forEach(awaitableInitializers.initializers, ({ expression: expression2 }) => makeChange3(t, errorCode, sourceFile, checker, expression2, fixedDeclarations)); if (fixedDeclarations && awaitableInitializers.needsSecondPassForFixAll) { makeChange3(t, errorCode, sourceFile, checker, expression, fixedDeclarations); } }); return createCodeFixActionWithoutFixAll("addMissingAwaitToInitializer", initializerChanges, awaitableInitializers.initializers.length === 1 ? [Diagnostics.Add_await_to_initializer_for_0, awaitableInitializers.initializers[0].declarationSymbol.name] : Diagnostics.Add_await_to_initializers); } } function getUseSiteFix(context, expression, errorCode, checker, trackChanges, fixedDeclarations) { const changes = trackChanges((t) => makeChange3(t, errorCode, context.sourceFile, checker, expression, fixedDeclarations)); return createCodeFixAction(fixId3, changes, Diagnostics.Add_await, fixId3, Diagnostics.Fix_all_expressions_possibly_missing_await); } function isMissingAwaitError(sourceFile, errorCode, span, cancellationToken, program) { const checker = program.getTypeChecker(); const diagnostics = checker.getDiagnostics(sourceFile, cancellationToken); return some(diagnostics, ({ start, length: length2, relatedInformation, code }) => isNumber(start) && isNumber(length2) && textSpansEqual({ start, length: length2 }, span) && code === errorCode && !!relatedInformation && some(relatedInformation, (related) => related.code === Diagnostics.Did_you_forget_to_use_await.code)); } function findAwaitableInitializers(expression, sourceFile, cancellationToken, program, checker) { const identifiers = getIdentifiersFromErrorSpanExpression(expression, checker); if (!identifiers) { return; } let isCompleteFix = identifiers.isCompleteFix; let initializers; for (const identifier of identifiers.identifiers) { const symbol = checker.getSymbolAtLocation(identifier); if (!symbol) { continue; } const declaration = tryCast(symbol.valueDeclaration, isVariableDeclaration); const variableName = declaration && tryCast(declaration.name, isIdentifier); const variableStatement = getAncestor(declaration, 244); if (!declaration || !variableStatement || declaration.type || !declaration.initializer || variableStatement.getSourceFile() !== sourceFile || hasSyntacticModifier(variableStatement, 32) || !variableName || !isInsideAwaitableBody(declaration.initializer)) { isCompleteFix = false; continue; } const diagnostics = program.getSemanticDiagnostics(sourceFile, cancellationToken); const isUsedElsewhere = ts_FindAllReferences_exports.Core.eachSymbolReferenceInFile(variableName, checker, sourceFile, (reference) => { return identifier !== reference && !symbolReferenceIsAlsoMissingAwait(reference, diagnostics, sourceFile, checker); }); if (isUsedElsewhere) { isCompleteFix = false; continue; } (initializers || (initializers = [])).push({ expression: declaration.initializer, declarationSymbol: symbol }); } return initializers && { initializers, needsSecondPassForFixAll: !isCompleteFix }; } function getIdentifiersFromErrorSpanExpression(expression, checker) { if (isPropertyAccessExpression(expression.parent) && isIdentifier(expression.parent.expression)) { return { identifiers: [expression.parent.expression], isCompleteFix: true }; } if (isIdentifier(expression)) { return { identifiers: [expression], isCompleteFix: true }; } if (isBinaryExpression(expression)) { let sides; let isCompleteFix = true; for (const side of [expression.left, expression.right]) { const type = checker.getTypeAtLocation(side); if (checker.getPromisedTypeOfPromise(type)) { if (!isIdentifier(side)) { isCompleteFix = false; continue; } (sides || (sides = [])).push(side); } } return sides && { identifiers: sides, isCompleteFix }; } } function symbolReferenceIsAlsoMissingAwait(reference, diagnostics, sourceFile, checker) { const errorNode = isPropertyAccessExpression(reference.parent) ? reference.parent.name : isBinaryExpression(reference.parent) ? reference.parent : reference; const diagnostic = find(diagnostics, (diagnostic2) => diagnostic2.start === errorNode.getStart(sourceFile) && diagnostic2.start + diagnostic2.length === errorNode.getEnd()); return diagnostic && contains(errorCodes3, diagnostic.code) || checker.getTypeAtLocation(errorNode).flags & 1; } function isInsideAwaitableBody(node) { return node.flags & 65536 || !!findAncestor(node, (ancestor) => ancestor.parent && isArrowFunction(ancestor.parent) && ancestor.parent.body === ancestor || isBlock(ancestor) && (ancestor.parent.kind === 263 || ancestor.parent.kind === 219 || ancestor.parent.kind === 220 || ancestor.parent.kind === 175)); } function makeChange3(changeTracker, errorCode, sourceFile, checker, insertionSite, fixedDeclarations) { if (isForOfStatement(insertionSite.parent) && !insertionSite.parent.awaitModifier) { const exprType = checker.getTypeAtLocation(insertionSite); const asyncIter = checker.getAnyAsyncIterableType(); if (asyncIter && checker.isTypeAssignableTo(exprType, asyncIter)) { const forOf = insertionSite.parent; changeTracker.replaceNode(sourceFile, forOf, factory.updateForOfStatement(forOf, factory.createToken(135), forOf.initializer, forOf.expression, forOf.statement)); return; } } if (isBinaryExpression(insertionSite)) { for (const side of [insertionSite.left, insertionSite.right]) { if (fixedDeclarations && isIdentifier(side)) { const symbol = checker.getSymbolAtLocation(side); if (symbol && fixedDeclarations.has(getSymbolId(symbol))) { continue; } } const type = checker.getTypeAtLocation(side); const newNode = checker.getPromisedTypeOfPromise(type) ? factory.createAwaitExpression(side) : side; changeTracker.replaceNode(sourceFile, side, newNode); } } else if (errorCode === propertyAccessCode && isPropertyAccessExpression(insertionSite.parent)) { if (fixedDeclarations && isIdentifier(insertionSite.parent.expression)) { const symbol = checker.getSymbolAtLocation(insertionSite.parent.expression); if (symbol && fixedDeclarations.has(getSymbolId(symbol))) { return; } } changeTracker.replaceNode(sourceFile, insertionSite.parent.expression, factory.createParenthesizedExpression(factory.createAwaitExpression(insertionSite.parent.expression))); insertLeadingSemicolonIfNeeded(changeTracker, insertionSite.parent.expression, sourceFile); } else if (contains(callableConstructableErrorCodes, errorCode) && isCallOrNewExpression(insertionSite.parent)) { if (fixedDeclarations && isIdentifier(insertionSite)) { const symbol = checker.getSymbolAtLocation(insertionSite); if (symbol && fixedDeclarations.has(getSymbolId(symbol))) { return; } } changeTracker.replaceNode(sourceFile, insertionSite, factory.createParenthesizedExpression(factory.createAwaitExpression(insertionSite))); insertLeadingSemicolonIfNeeded(changeTracker, insertionSite, sourceFile); } else { if (fixedDeclarations && isVariableDeclaration(insertionSite.parent) && isIdentifier(insertionSite.parent.name)) { const symbol = checker.getSymbolAtLocation(insertionSite.parent.name); if (symbol && !tryAddToSet(fixedDeclarations, getSymbolId(symbol))) { return; } } changeTracker.replaceNode(sourceFile, insertionSite, factory.createAwaitExpression(insertionSite)); } } function insertLeadingSemicolonIfNeeded(changeTracker, beforeNode, sourceFile) { const precedingToken = findPrecedingToken(beforeNode.pos, sourceFile); if (precedingToken && positionIsASICandidate(precedingToken.end, precedingToken.parent, sourceFile)) { changeTracker.insertText(sourceFile, beforeNode.getStart(sourceFile), ";"); } } var fixId4 = "addMissingConst"; var errorCodes4 = [ Diagnostics.Cannot_find_name_0.code, Diagnostics.No_value_exists_in_scope_for_the_shorthand_property_0_Either_declare_one_or_provide_an_initializer.code ]; registerCodeFix({ errorCodes: errorCodes4, getCodeActions: function getCodeActionsToAddMissingConst(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange4(t, context.sourceFile, context.span.start, context.program)); if (changes.length > 0) { return [createCodeFixAction(fixId4, changes, Diagnostics.Add_const_to_unresolved_variable, fixId4, Diagnostics.Add_const_to_all_unresolved_variables)]; } }, fixIds: [fixId4], getAllCodeActions: (context) => { const fixedNodes = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes4, (changes, diag2) => makeChange4(changes, diag2.file, diag2.start, context.program, fixedNodes)); } }); function makeChange4(changeTracker, sourceFile, pos, program, fixedNodes) { const token = getTokenAtPosition(sourceFile, pos); const forInitializer = findAncestor(token, (node) => isForInOrOfStatement(node.parent) ? node.parent.initializer === node : isPossiblyPartOfDestructuring(node) ? false : "quit"); if (forInitializer) return applyChange(changeTracker, forInitializer, sourceFile, fixedNodes); const parent2 = token.parent; if (isBinaryExpression(parent2) && parent2.operatorToken.kind === 64 && isExpressionStatement(parent2.parent)) { return applyChange(changeTracker, token, sourceFile, fixedNodes); } if (isArrayLiteralExpression(parent2)) { const checker = program.getTypeChecker(); if (!every(parent2.elements, (element) => arrayElementCouldBeVariableDeclaration(element, checker))) { return; } return applyChange(changeTracker, parent2, sourceFile, fixedNodes); } const commaExpression = findAncestor(token, (node) => isExpressionStatement(node.parent) ? true : isPossiblyPartOfCommaSeperatedInitializer(node) ? false : "quit"); if (commaExpression) { const checker = program.getTypeChecker(); if (!expressionCouldBeVariableDeclaration(commaExpression, checker)) { return; } return applyChange(changeTracker, commaExpression, sourceFile, fixedNodes); } } function applyChange(changeTracker, initializer, sourceFile, fixedNodes) { if (!fixedNodes || tryAddToSet(fixedNodes, initializer)) { changeTracker.insertModifierBefore(sourceFile, 87, initializer); } } function isPossiblyPartOfDestructuring(node) { switch (node.kind) { case 80: case 210: case 211: case 304: case 305: return true; default: return false; } } function arrayElementCouldBeVariableDeclaration(expression, checker) { const identifier = isIdentifier(expression) ? expression : isAssignmentExpression(expression, true) && isIdentifier(expression.left) ? expression.left : undefined; return !!identifier && !checker.getSymbolAtLocation(identifier); } function isPossiblyPartOfCommaSeperatedInitializer(node) { switch (node.kind) { case 80: case 227: case 28: return true; default: return false; } } function expressionCouldBeVariableDeclaration(expression, checker) { if (!isBinaryExpression(expression)) { return false; } if (expression.operatorToken.kind === 28) { return every([expression.left, expression.right], (expression2) => expressionCouldBeVariableDeclaration(expression2, checker)); } return expression.operatorToken.kind === 64 && isIdentifier(expression.left) && !checker.getSymbolAtLocation(expression.left); } var fixId5 = "addMissingDeclareProperty"; var errorCodes5 = [ Diagnostics.Property_0_will_overwrite_the_base_property_in_1_If_this_is_intentional_add_an_initializer_Otherwise_add_a_declare_modifier_or_remove_the_redundant_declaration.code ]; registerCodeFix({ errorCodes: errorCodes5, getCodeActions: function getCodeActionsToAddMissingDeclareOnProperty(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange5(t, context.sourceFile, context.span.start)); if (changes.length > 0) { return [createCodeFixAction(fixId5, changes, Diagnostics.Prefix_with_declare, fixId5, Diagnostics.Prefix_all_incorrect_property_declarations_with_declare)]; } }, fixIds: [fixId5], getAllCodeActions: (context) => { const fixedNodes = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes5, (changes, diag2) => makeChange5(changes, diag2.file, diag2.start, fixedNodes)); } }); function makeChange5(changeTracker, sourceFile, pos, fixedNodes) { const token = getTokenAtPosition(sourceFile, pos); if (!isIdentifier(token)) { return; } const declaration = token.parent; if (declaration.kind === 173 && (!fixedNodes || tryAddToSet(fixedNodes, declaration))) { changeTracker.insertModifierBefore(sourceFile, 138, declaration); } } var fixId6 = "addMissingInvocationForDecorator"; var errorCodes6 = [Diagnostics._0_accepts_too_few_arguments_to_be_used_as_a_decorator_here_Did_you_mean_to_call_it_first_and_write_0.code]; registerCodeFix({ errorCodes: errorCodes6, getCodeActions: function getCodeActionsToAddMissingInvocationForDecorator(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange6(t, context.sourceFile, context.span.start)); return [createCodeFixAction(fixId6, changes, Diagnostics.Call_decorator_expression, fixId6, Diagnostics.Add_to_all_uncalled_decorators)]; }, fixIds: [fixId6], getAllCodeActions: (context) => codeFixAll(context, errorCodes6, (changes, diag2) => makeChange6(changes, diag2.file, diag2.start)) }); function makeChange6(changeTracker, sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); const decorator = findAncestor(token, isDecorator); Debug.assert(!!decorator, "Expected position to be owned by a decorator."); const replacement = factory.createCallExpression(decorator.expression, undefined, undefined); changeTracker.replaceNode(sourceFile, decorator.expression, replacement); } var fixId7 = "addMissingResolutionModeImportAttribute"; var errorCodes7 = [ Diagnostics.Type_only_import_of_an_ECMAScript_module_from_a_CommonJS_module_must_have_a_resolution_mode_attribute.code, Diagnostics.Type_import_of_an_ECMAScript_module_from_a_CommonJS_module_must_have_a_resolution_mode_attribute.code ]; registerCodeFix({ errorCodes: errorCodes7, getCodeActions: function getCodeActionsToAddMissingResolutionModeImportAttribute(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange7(t, context.sourceFile, context.span.start, context.program, context.host, context.preferences)); return [createCodeFixAction(fixId7, changes, Diagnostics.Add_resolution_mode_import_attribute, fixId7, Diagnostics.Add_resolution_mode_import_attribute_to_all_type_only_imports_that_need_it)]; }, fixIds: [fixId7], getAllCodeActions: (context) => codeFixAll(context, errorCodes7, (changes, diag2) => makeChange7(changes, diag2.file, diag2.start, context.program, context.host, context.preferences)) }); function makeChange7(changeTracker, sourceFile, pos, program, host, preferences) { var _a, _b, _c; const token = getTokenAtPosition(sourceFile, pos); const importNode = findAncestor(token, or(isImportDeclaration, isImportTypeNode)); Debug.assert(!!importNode, "Expected position to be owned by an ImportDeclaration or ImportType."); const useSingleQuotes = getQuotePreference(sourceFile, preferences) === 0; const moduleSpecifier = tryGetModuleSpecifierFromDeclaration(importNode); const canUseImportMode = !moduleSpecifier || ((_a = resolveModuleName(moduleSpecifier.text, sourceFile.fileName, program.getCompilerOptions(), host, program.getModuleResolutionCache(), undefined, 99).resolvedModule) == null ? undefined : _a.resolvedFileName) === ((_c = (_b = program.getResolvedModuleFromModuleSpecifier(moduleSpecifier, sourceFile)) == null ? undefined : _b.resolvedModule) == null ? undefined : _c.resolvedFileName); const attributes = importNode.attributes ? factory.updateImportAttributes(importNode.attributes, factory.createNodeArray([ ...importNode.attributes.elements, factory.createImportAttribute(factory.createStringLiteral("resolution-mode", useSingleQuotes), factory.createStringLiteral(canUseImportMode ? "import" : "require", useSingleQuotes)) ], importNode.attributes.elements.hasTrailingComma), importNode.attributes.multiLine) : factory.createImportAttributes(factory.createNodeArray([ factory.createImportAttribute(factory.createStringLiteral("resolution-mode", useSingleQuotes), factory.createStringLiteral(canUseImportMode ? "import" : "require", useSingleQuotes)) ])); if (importNode.kind === 273) { changeTracker.replaceNode(sourceFile, importNode, factory.updateImportDeclaration(importNode, importNode.modifiers, importNode.importClause, importNode.moduleSpecifier, attributes)); } else { changeTracker.replaceNode(sourceFile, importNode, factory.updateImportTypeNode(importNode, importNode.argument, attributes, importNode.qualifier, importNode.typeArguments)); } } var fixId8 = "addNameToNamelessParameter"; var errorCodes8 = [Diagnostics.Parameter_has_a_name_but_no_type_Did_you_mean_0_Colon_1.code]; registerCodeFix({ errorCodes: errorCodes8, getCodeActions: function getCodeActionsToAddNameToNamelessParameter(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange8(t, context.sourceFile, context.span.start)); return [createCodeFixAction(fixId8, changes, Diagnostics.Add_parameter_name, fixId8, Diagnostics.Add_names_to_all_parameters_without_names)]; }, fixIds: [fixId8], getAllCodeActions: (context) => codeFixAll(context, errorCodes8, (changes, diag2) => makeChange8(changes, diag2.file, diag2.start)) }); function makeChange8(changeTracker, sourceFile, start) { const token = getTokenAtPosition(sourceFile, start); const param = token.parent; if (!isParameter(param)) { return Debug.fail("Tried to add a parameter name to a non-parameter: " + Debug.formatSyntaxKind(token.kind)); } const i = param.parent.parameters.indexOf(param); Debug.assert(!param.type, "Tried to add a parameter name to a parameter that already had one."); Debug.assert(i > -1, "Parameter not found in parent parameter list."); let end = param.name.getEnd(); let typeNode = factory.createTypeReferenceNode(param.name, undefined); let nextParam = tryGetNextParam(sourceFile, param); while (nextParam) { typeNode = factory.createArrayTypeNode(typeNode); end = nextParam.getEnd(); nextParam = tryGetNextParam(sourceFile, nextParam); } const replacement = factory.createParameterDeclaration(param.modifiers, param.dotDotDotToken, "arg" + i, param.questionToken, param.dotDotDotToken && !isArrayTypeNode(typeNode) ? factory.createArrayTypeNode(typeNode) : typeNode, param.initializer); changeTracker.replaceRange(sourceFile, createRange(param.getStart(sourceFile), end), replacement); } function tryGetNextParam(sourceFile, param) { const nextToken = findNextToken(param.name, param.parent, sourceFile); if (nextToken && nextToken.kind === 23 && isArrayBindingPattern(nextToken.parent) && isParameter(nextToken.parent.parent)) { return nextToken.parent.parent; } return; } var addOptionalPropertyUndefined = "addOptionalPropertyUndefined"; var errorCodes9 = [ Diagnostics.Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_type_of_the_target.code, Diagnostics.Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_types_of_the_target_s_properties.code, Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_types_of_the_target_s_properties.code ]; registerCodeFix({ errorCodes: errorCodes9, getCodeActions(context) { const typeChecker = context.program.getTypeChecker(); const toAdd = getPropertiesToAdd(context.sourceFile, context.span, typeChecker); if (!toAdd.length) { return; } const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addUndefinedToOptionalProperty(t, toAdd)); return [createCodeFixActionWithoutFixAll(addOptionalPropertyUndefined, changes, Diagnostics.Add_undefined_to_optional_property_type)]; }, fixIds: [addOptionalPropertyUndefined] }); function getPropertiesToAdd(file, span, checker) { var _a, _b; const sourceTarget = getSourceTarget(getFixableErrorSpanExpression(file, span), checker); if (!sourceTarget) { return emptyArray; } const { source: sourceNode, target: targetNode } = sourceTarget; const target = shouldUseParentTypeOfProperty(sourceNode, targetNode, checker) ? checker.getTypeAtLocation(targetNode.expression) : checker.getTypeAtLocation(targetNode); if ((_b = (_a = target.symbol) == null ? undefined : _a.declarations) == null ? undefined : _b.some((d) => getSourceFileOfNode(d).fileName.match(/\.d\.ts$/))) { return emptyArray; } return checker.getExactOptionalProperties(target); } function shouldUseParentTypeOfProperty(sourceNode, targetNode, checker) { return isPropertyAccessExpression(targetNode) && !!checker.getExactOptionalProperties(checker.getTypeAtLocation(targetNode.expression)).length && checker.getTypeAtLocation(sourceNode) === checker.getUndefinedType(); } function getSourceTarget(errorNode, checker) { var _a; if (!errorNode) { return; } else if (isBinaryExpression(errorNode.parent) && errorNode.parent.operatorToken.kind === 64) { return { source: errorNode.parent.right, target: errorNode.parent.left }; } else if (isVariableDeclaration(errorNode.parent) && errorNode.parent.initializer) { return { source: errorNode.parent.initializer, target: errorNode.parent.name }; } else if (isCallExpression(errorNode.parent)) { const n = checker.getSymbolAtLocation(errorNode.parent.expression); if (!(n == null ? undefined : n.valueDeclaration) || !isFunctionLikeKind(n.valueDeclaration.kind)) return; if (!isExpression(errorNode)) return; const i = errorNode.parent.arguments.indexOf(errorNode); if (i === -1) return; const name = n.valueDeclaration.parameters[i].name; if (isIdentifier(name)) return { source: errorNode, target: name }; } else if (isPropertyAssignment(errorNode.parent) && isIdentifier(errorNode.parent.name) || isShorthandPropertyAssignment(errorNode.parent)) { const parentTarget = getSourceTarget(errorNode.parent.parent, checker); if (!parentTarget) return; const prop = checker.getPropertyOfType(checker.getTypeAtLocation(parentTarget.target), errorNode.parent.name.text); const declaration = (_a = prop == null ? undefined : prop.declarations) == null ? undefined : _a[0]; if (!declaration) return; return { source: isPropertyAssignment(errorNode.parent) ? errorNode.parent.initializer : errorNode.parent.name, target: declaration }; } return; } function addUndefinedToOptionalProperty(changes, toAdd) { for (const add of toAdd) { const d = add.valueDeclaration; if (d && (isPropertySignature(d) || isPropertyDeclaration(d)) && d.type) { const t = factory.createUnionTypeNode([ ...d.type.kind === 193 ? d.type.types : [d.type], factory.createTypeReferenceNode("undefined") ]); changes.replaceNode(d.getSourceFile(), d.type, t); } } } var fixId9 = "annotateWithTypeFromJSDoc"; var errorCodes10 = [Diagnostics.JSDoc_types_may_be_moved_to_TypeScript_types.code]; registerCodeFix({ errorCodes: errorCodes10, getCodeActions(context) { const decl = getDeclaration(context.sourceFile, context.span.start); if (!decl) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange8(t, context.sourceFile, decl)); return [createCodeFixAction(fixId9, changes, Diagnostics.Annotate_with_type_from_JSDoc, fixId9, Diagnostics.Annotate_everything_with_types_from_JSDoc)]; }, fixIds: [fixId9], getAllCodeActions: (context) => codeFixAll(context, errorCodes10, (changes, diag2) => { const decl = getDeclaration(diag2.file, diag2.start); if (decl) doChange8(changes, diag2.file, decl); }) }); function getDeclaration(file, pos) { const name = getTokenAtPosition(file, pos); return tryCast(isParameter(name.parent) ? name.parent.parent : name.parent, parameterShouldGetTypeFromJSDoc); } function parameterShouldGetTypeFromJSDoc(node) { return isDeclarationWithType(node) && hasUsableJSDoc(node); } function hasUsableJSDoc(decl) { return isFunctionLikeDeclaration(decl) ? decl.parameters.some(hasUsableJSDoc) || !decl.type && !!getJSDocReturnType(decl) : !decl.type && !!getJSDocType(decl); } function doChange8(changes, sourceFile, decl) { if (isFunctionLikeDeclaration(decl) && (getJSDocReturnType(decl) || decl.parameters.some((p) => !!getJSDocType(p)))) { if (!decl.typeParameters) { const typeParameters = getJSDocTypeParameterDeclarations(decl); if (typeParameters.length) changes.insertTypeParameters(sourceFile, decl, typeParameters); } const needParens = isArrowFunction(decl) && !findChildOfKind(decl, 21, sourceFile); if (needParens) changes.insertNodeBefore(sourceFile, first(decl.parameters), factory.createToken(21)); for (const param of decl.parameters) { if (!param.type) { const paramType = getJSDocType(param); if (paramType) changes.tryInsertTypeAnnotation(sourceFile, param, visitNode(paramType, transformJSDocType, isTypeNode)); } } if (needParens) changes.insertNodeAfter(sourceFile, last(decl.parameters), factory.createToken(22)); if (!decl.type) { const returnType = getJSDocReturnType(decl); if (returnType) changes.tryInsertTypeAnnotation(sourceFile, decl, visitNode(returnType, transformJSDocType, isTypeNode)); } } else { const jsdocType = Debug.checkDefined(getJSDocType(decl), "A JSDocType for this declaration should exist"); Debug.assert(!decl.type, "The JSDocType decl should have a type"); changes.tryInsertTypeAnnotation(sourceFile, decl, visitNode(jsdocType, transformJSDocType, isTypeNode)); } } function isDeclarationWithType(node) { return isFunctionLikeDeclaration(node) || node.kind === 261 || node.kind === 172 || node.kind === 173; } function transformJSDocType(node) { switch (node.kind) { case 313: case 314: return factory.createTypeReferenceNode("any", emptyArray); case 317: return transformJSDocOptionalType(node); case 316: return transformJSDocType(node.type); case 315: return transformJSDocNullableType(node); case 319: return transformJSDocVariadicType(node); case 318: return transformJSDocFunctionType(node); case 184: return transformJSDocTypeReference(node); case 323: return transformJSDocTypeLiteral(node); default: const visited = visitEachChild(node, transformJSDocType, undefined); setEmitFlags(visited, 1); return visited; } } function transformJSDocTypeLiteral(node) { const typeNode = factory.createTypeLiteralNode(map(node.jsDocPropertyTags, (tag) => factory.createPropertySignature(undefined, isIdentifier(tag.name) ? tag.name : tag.name.right, isOptionalJSDocPropertyLikeTag(tag) ? factory.createToken(58) : undefined, tag.typeExpression && visitNode(tag.typeExpression.type, transformJSDocType, isTypeNode) || factory.createKeywordTypeNode(133)))); setEmitFlags(typeNode, 1); return typeNode; } function transformJSDocOptionalType(node) { return factory.createUnionTypeNode([visitNode(node.type, transformJSDocType, isTypeNode), factory.createTypeReferenceNode("undefined", emptyArray)]); } function transformJSDocNullableType(node) { return factory.createUnionTypeNode([visitNode(node.type, transformJSDocType, isTypeNode), factory.createTypeReferenceNode("null", emptyArray)]); } function transformJSDocVariadicType(node) { return factory.createArrayTypeNode(visitNode(node.type, transformJSDocType, isTypeNode)); } function transformJSDocFunctionType(node) { return factory.createFunctionTypeNode(emptyArray, node.parameters.map(transformJSDocParameter), node.type ?? factory.createKeywordTypeNode(133)); } function transformJSDocParameter(node) { const index = node.parent.parameters.indexOf(node); const isRest = node.type.kind === 319 && index === node.parent.parameters.length - 1; const name = node.name || (isRest ? "rest" : "arg" + index); const dotdotdot = isRest ? factory.createToken(26) : node.dotDotDotToken; return factory.createParameterDeclaration(node.modifiers, dotdotdot, name, node.questionToken, visitNode(node.type, transformJSDocType, isTypeNode), node.initializer); } function transformJSDocTypeReference(node) { let name = node.typeName; let args = node.typeArguments; if (isIdentifier(node.typeName)) { if (isJSDocIndexSignature(node)) { return transformJSDocIndexSignature(node); } let text = node.typeName.text; switch (node.typeName.text) { case "String": case "Boolean": case "Object": case "Number": text = text.toLowerCase(); break; case "array": case "date": case "promise": text = text[0].toUpperCase() + text.slice(1); break; } name = factory.createIdentifier(text); if ((text === "Array" || text === "Promise") && !node.typeArguments) { args = factory.createNodeArray([factory.createTypeReferenceNode("any", emptyArray)]); } else { args = visitNodes2(node.typeArguments, transformJSDocType, isTypeNode); } } return factory.createTypeReferenceNode(name, args); } function transformJSDocIndexSignature(node) { const index = factory.createParameterDeclaration(undefined, undefined, node.typeArguments[0].kind === 150 ? "n" : "s", undefined, factory.createTypeReferenceNode(node.typeArguments[0].kind === 150 ? "number" : "string", []), undefined); const indexSignature = factory.createTypeLiteralNode([factory.createIndexSignature(undefined, [index], node.typeArguments[1])]); setEmitFlags(indexSignature, 1); return indexSignature; } var fixId10 = "convertFunctionToEs6Class"; var errorCodes11 = [Diagnostics.This_constructor_function_may_be_converted_to_a_class_declaration.code]; registerCodeFix({ errorCodes: errorCodes11, getCodeActions(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange9(t, context.sourceFile, context.span.start, context.program.getTypeChecker(), context.preferences, context.program.getCompilerOptions())); return [createCodeFixAction(fixId10, changes, Diagnostics.Convert_function_to_an_ES2015_class, fixId10, Diagnostics.Convert_all_constructor_functions_to_classes)]; }, fixIds: [fixId10], getAllCodeActions: (context) => codeFixAll(context, errorCodes11, (changes, err) => doChange9(changes, err.file, err.start, context.program.getTypeChecker(), context.preferences, context.program.getCompilerOptions())) }); function doChange9(changes, sourceFile, position, checker, preferences, compilerOptions) { const ctorSymbol = checker.getSymbolAtLocation(getTokenAtPosition(sourceFile, position)); if (!ctorSymbol || !ctorSymbol.valueDeclaration || !(ctorSymbol.flags & (16 | 3))) { return; } const ctorDeclaration = ctorSymbol.valueDeclaration; if (isFunctionDeclaration(ctorDeclaration) || isFunctionExpression(ctorDeclaration)) { changes.replaceNode(sourceFile, ctorDeclaration, createClassFromFunction(ctorDeclaration)); } else if (isVariableDeclaration(ctorDeclaration)) { const classDeclaration = createClassFromVariableDeclaration(ctorDeclaration); if (!classDeclaration) { return; } const ancestor = ctorDeclaration.parent.parent; if (isVariableDeclarationList(ctorDeclaration.parent) && ctorDeclaration.parent.declarations.length > 1) { changes.delete(sourceFile, ctorDeclaration); changes.insertNodeAfter(sourceFile, ancestor, classDeclaration); } else { changes.replaceNode(sourceFile, ancestor, classDeclaration); } } function createClassElementsFromSymbol(symbol) { const memberElements = []; if (symbol.exports) { symbol.exports.forEach((member) => { if (member.name === "prototype" && member.declarations) { const firstDeclaration = member.declarations[0]; if (member.declarations.length === 1 && isPropertyAccessExpression(firstDeclaration) && isBinaryExpression(firstDeclaration.parent) && firstDeclaration.parent.operatorToken.kind === 64 && isObjectLiteralExpression(firstDeclaration.parent.right)) { const prototypes = firstDeclaration.parent.right; createClassElement(prototypes.symbol, undefined, memberElements); } } else { createClassElement(member, [factory.createToken(126)], memberElements); } }); } if (symbol.members) { symbol.members.forEach((member, key) => { var _a, _b, _c, _d; if (key === "constructor" && member.valueDeclaration) { const prototypeAssignment = (_d = (_c = (_b = (_a = symbol.exports) == null ? undefined : _a.get("prototype")) == null ? undefined : _b.declarations) == null ? undefined : _c[0]) == null ? undefined : _d.parent; if (prototypeAssignment && isBinaryExpression(prototypeAssignment) && isObjectLiteralExpression(prototypeAssignment.right) && some(prototypeAssignment.right.properties, isConstructorAssignment)) {} else { changes.delete(sourceFile, member.valueDeclaration.parent); } return; } createClassElement(member, undefined, memberElements); }); } return memberElements; function shouldConvertDeclaration(_target, source) { if (isAccessExpression(_target)) { if (isPropertyAccessExpression(_target) && isConstructorAssignment(_target)) return true; return isFunctionLike(source); } else { return every(_target.properties, (property) => { if (isMethodDeclaration(property) || isGetOrSetAccessorDeclaration(property)) return true; if (isPropertyAssignment(property) && isFunctionExpression(property.initializer) && !!property.name) return true; if (isConstructorAssignment(property)) return true; return false; }); } } function createClassElement(symbol2, modifiers, members) { if (!(symbol2.flags & 8192) && !(symbol2.flags & 4096)) { return; } const memberDeclaration = symbol2.valueDeclaration; const assignmentBinaryExpression = memberDeclaration.parent; const assignmentExpr = assignmentBinaryExpression.right; if (!shouldConvertDeclaration(memberDeclaration, assignmentExpr)) { return; } if (some(members, (m) => { const name = getNameOfDeclaration(m); if (name && isIdentifier(name) && idText(name) === symbolName(symbol2)) { return true; } return false; })) { return; } const nodeToDelete = assignmentBinaryExpression.parent && assignmentBinaryExpression.parent.kind === 245 ? assignmentBinaryExpression.parent : assignmentBinaryExpression; changes.delete(sourceFile, nodeToDelete); if (!assignmentExpr) { members.push(factory.createPropertyDeclaration(modifiers, symbol2.name, undefined, undefined, undefined)); return; } if (isAccessExpression(memberDeclaration) && (isFunctionExpression(assignmentExpr) || isArrowFunction(assignmentExpr))) { const quotePreference = getQuotePreference(sourceFile, preferences); const name = tryGetPropertyName(memberDeclaration, compilerOptions, quotePreference); if (name) { createFunctionLikeExpressionMember(members, assignmentExpr, name); } return; } else if (isObjectLiteralExpression(assignmentExpr)) { forEach(assignmentExpr.properties, (property) => { if (isMethodDeclaration(property) || isGetOrSetAccessorDeclaration(property)) { members.push(property); } if (isPropertyAssignment(property) && isFunctionExpression(property.initializer)) { createFunctionLikeExpressionMember(members, property.initializer, property.name); } if (isConstructorAssignment(property)) return; return; }); return; } else { if (isSourceFileJS(sourceFile)) return; if (!isPropertyAccessExpression(memberDeclaration)) return; const prop = factory.createPropertyDeclaration(modifiers, memberDeclaration.name, undefined, undefined, assignmentExpr); copyLeadingComments(assignmentBinaryExpression.parent, prop, sourceFile); members.push(prop); return; } function createFunctionLikeExpressionMember(members2, expression, name) { if (isFunctionExpression(expression)) return createFunctionExpressionMember(members2, expression, name); else return createArrowFunctionExpressionMember(members2, expression, name); } function createFunctionExpressionMember(members2, functionExpression, name) { const fullModifiers = concatenate(modifiers, getModifierKindFromSource(functionExpression, 134)); const method = factory.createMethodDeclaration(fullModifiers, undefined, name, undefined, undefined, functionExpression.parameters, undefined, functionExpression.body); copyLeadingComments(assignmentBinaryExpression, method, sourceFile); members2.push(method); return; } function createArrowFunctionExpressionMember(members2, arrowFunction, name) { const arrowFunctionBody = arrowFunction.body; let bodyBlock; if (arrowFunctionBody.kind === 242) { bodyBlock = arrowFunctionBody; } else { bodyBlock = factory.createBlock([factory.createReturnStatement(arrowFunctionBody)]); } const fullModifiers = concatenate(modifiers, getModifierKindFromSource(arrowFunction, 134)); const method = factory.createMethodDeclaration(fullModifiers, undefined, name, undefined, undefined, arrowFunction.parameters, undefined, bodyBlock); copyLeadingComments(assignmentBinaryExpression, method, sourceFile); members2.push(method); } } } function createClassFromVariableDeclaration(node) { const initializer = node.initializer; if (!initializer || !isFunctionExpression(initializer) || !isIdentifier(node.name)) { return; } const memberElements = createClassElementsFromSymbol(node.symbol); if (initializer.body) { memberElements.unshift(factory.createConstructorDeclaration(undefined, initializer.parameters, initializer.body)); } const modifiers = getModifierKindFromSource(node.parent.parent, 95); const cls = factory.createClassDeclaration(modifiers, node.name, undefined, undefined, memberElements); return cls; } function createClassFromFunction(node) { const memberElements = createClassElementsFromSymbol(ctorSymbol); if (node.body) { memberElements.unshift(factory.createConstructorDeclaration(undefined, node.parameters, node.body)); } const modifiers = getModifierKindFromSource(node, 95); const cls = factory.createClassDeclaration(modifiers, node.name, undefined, undefined, memberElements); return cls; } } function getModifierKindFromSource(source, kind) { return canHaveModifiers(source) ? filter(source.modifiers, (modifier) => modifier.kind === kind) : undefined; } function isConstructorAssignment(x) { if (!x.name) return false; if (isIdentifier(x.name) && x.name.text === "constructor") return true; return false; } function tryGetPropertyName(node, compilerOptions, quotePreference) { if (isPropertyAccessExpression(node)) { return node.name; } const propName = node.argumentExpression; if (isNumericLiteral(propName)) { return propName; } if (isStringLiteralLike(propName)) { return isIdentifierText(propName.text, getEmitScriptTarget(compilerOptions)) ? factory.createIdentifier(propName.text) : isNoSubstitutionTemplateLiteral(propName) ? factory.createStringLiteral(propName.text, quotePreference === 0) : propName; } return; } var fixId11 = "convertToAsyncFunction"; var errorCodes12 = [Diagnostics.This_may_be_converted_to_an_async_function.code]; var codeActionSucceeded = true; registerCodeFix({ errorCodes: errorCodes12, getCodeActions(context) { codeActionSucceeded = true; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => convertToAsyncFunction(t, context.sourceFile, context.span.start, context.program.getTypeChecker())); return codeActionSucceeded ? [createCodeFixAction(fixId11, changes, Diagnostics.Convert_to_async_function, fixId11, Diagnostics.Convert_all_to_async_functions)] : []; }, fixIds: [fixId11], getAllCodeActions: (context) => codeFixAll(context, errorCodes12, (changes, err) => convertToAsyncFunction(changes, err.file, err.start, context.program.getTypeChecker())) }); function convertToAsyncFunction(changes, sourceFile, position, checker) { const tokenAtPosition = getTokenAtPosition(sourceFile, position); let functionToConvert; if (isIdentifier(tokenAtPosition) && isVariableDeclaration(tokenAtPosition.parent) && tokenAtPosition.parent.initializer && isFunctionLikeDeclaration(tokenAtPosition.parent.initializer)) { functionToConvert = tokenAtPosition.parent.initializer; } else { functionToConvert = tryCast(getContainingFunction(getTokenAtPosition(sourceFile, position)), canBeConvertedToAsync); } if (!functionToConvert) { return; } const synthNamesMap = /* @__PURE__ */ new Map; const isInJavascript = isInJSFile(functionToConvert); const setOfExpressionsToReturn = getAllPromiseExpressionsToReturn(functionToConvert, checker); const functionToConvertRenamed = renameCollidingVarNames(functionToConvert, checker, synthNamesMap); if (!returnsPromise(functionToConvertRenamed, checker)) { return; } const returnStatements = functionToConvertRenamed.body && isBlock(functionToConvertRenamed.body) ? getReturnStatementsWithPromiseHandlers(functionToConvertRenamed.body, checker) : emptyArray; const transformer = { checker, synthNamesMap, setOfExpressionsToReturn, isInJSFile: isInJavascript }; if (!returnStatements.length) { return; } const pos = skipTrivia2(sourceFile.text, moveRangePastModifiers(functionToConvert).pos); changes.insertModifierAt(sourceFile, pos, 134, { suffix: " " }); for (const returnStatement of returnStatements) { forEachChild(returnStatement, function visit(node) { if (isCallExpression(node)) { const newNodes = transformExpression(node, node, transformer, false); if (hasFailed()) { return true; } changes.replaceNodeWithNodes(sourceFile, returnStatement, newNodes); } else if (!isFunctionLike(node)) { forEachChild(node, visit); if (hasFailed()) { return true; } } }); if (hasFailed()) { return; } } } function getReturnStatementsWithPromiseHandlers(body, checker) { const res = []; forEachReturnStatement(body, (ret) => { if (isReturnStatementWithFixablePromiseHandler(ret, checker)) res.push(ret); }); return res; } function getAllPromiseExpressionsToReturn(func, checker) { if (!func.body) { return /* @__PURE__ */ new Set; } const setOfExpressionsToReturn = /* @__PURE__ */ new Set; forEachChild(func.body, function visit(node) { if (isPromiseReturningCallExpression(node, checker, "then")) { setOfExpressionsToReturn.add(getNodeId(node)); forEach(node.arguments, visit); } else if (isPromiseReturningCallExpression(node, checker, "catch") || isPromiseReturningCallExpression(node, checker, "finally")) { setOfExpressionsToReturn.add(getNodeId(node)); forEachChild(node, visit); } else if (isPromiseTypedExpression(node, checker)) { setOfExpressionsToReturn.add(getNodeId(node)); } else { forEachChild(node, visit); } }); return setOfExpressionsToReturn; } function isPromiseReturningCallExpression(node, checker, name) { if (!isCallExpression(node)) return false; const isExpressionOfName = hasPropertyAccessExpressionWithName(node, name); const nodeType = isExpressionOfName && checker.getTypeAtLocation(node); return !!(nodeType && checker.getPromisedTypeOfPromise(nodeType)); } function isReferenceToType(type, target) { return (getObjectFlags(type) & 4) !== 0 && type.target === target; } function getExplicitPromisedTypeOfPromiseReturningCallExpression(node, callback, checker) { if (node.expression.name.escapedText === "finally") { return; } const promiseType = checker.getTypeAtLocation(node.expression.expression); if (isReferenceToType(promiseType, checker.getPromiseType()) || isReferenceToType(promiseType, checker.getPromiseLikeType())) { if (node.expression.name.escapedText === "then") { if (callback === elementAt(node.arguments, 0)) { return elementAt(node.typeArguments, 0); } else if (callback === elementAt(node.arguments, 1)) { return elementAt(node.typeArguments, 1); } } else { return elementAt(node.typeArguments, 0); } } } function isPromiseTypedExpression(node, checker) { if (!isExpression(node)) return false; return !!checker.getPromisedTypeOfPromise(checker.getTypeAtLocation(node)); } function renameCollidingVarNames(nodeToRename, checker, synthNamesMap) { const identsToRenameMap = /* @__PURE__ */ new Map; const collidingSymbolMap = createMultiMap(); forEachChild(nodeToRename, function visit(node) { if (!isIdentifier(node)) { forEachChild(node, visit); return; } const symbol = checker.getSymbolAtLocation(node); if (symbol) { const type = checker.getTypeAtLocation(node); const lastCallSignature = getLastCallSignature(type, checker); const symbolIdString = getSymbolId(symbol).toString(); if (lastCallSignature && !isParameter(node.parent) && !isFunctionLikeDeclaration(node.parent) && !synthNamesMap.has(symbolIdString)) { const firstParameter = firstOrUndefined(lastCallSignature.parameters); const ident = (firstParameter == null ? undefined : firstParameter.valueDeclaration) && isParameter(firstParameter.valueDeclaration) && tryCast(firstParameter.valueDeclaration.name, isIdentifier) || factory.createUniqueName("result", 16); const synthName = getNewNameIfConflict(ident, collidingSymbolMap); synthNamesMap.set(symbolIdString, synthName); collidingSymbolMap.add(ident.text, symbol); } else if (node.parent && (isParameter(node.parent) || isVariableDeclaration(node.parent) || isBindingElement(node.parent))) { const originalName = node.text; const collidingSymbols = collidingSymbolMap.get(originalName); if (collidingSymbols && collidingSymbols.some((prevSymbol) => prevSymbol !== symbol)) { const newName = getNewNameIfConflict(node, collidingSymbolMap); identsToRenameMap.set(symbolIdString, newName.identifier); synthNamesMap.set(symbolIdString, newName); collidingSymbolMap.add(originalName, symbol); } else { const identifier = getSynthesizedDeepClone(node); synthNamesMap.set(symbolIdString, createSynthIdentifier(identifier)); collidingSymbolMap.add(originalName, symbol); } } } }); return getSynthesizedDeepCloneWithReplacements(nodeToRename, true, (original) => { if (isBindingElement(original) && isIdentifier(original.name) && isObjectBindingPattern(original.parent)) { const symbol = checker.getSymbolAtLocation(original.name); const renameInfo = symbol && identsToRenameMap.get(String(getSymbolId(symbol))); if (renameInfo && renameInfo.text !== (original.name || original.propertyName).getText()) { return factory.createBindingElement(original.dotDotDotToken, original.propertyName || original.name, renameInfo, original.initializer); } } else if (isIdentifier(original)) { const symbol = checker.getSymbolAtLocation(original); const renameInfo = symbol && identsToRenameMap.get(String(getSymbolId(symbol))); if (renameInfo) { return factory.createIdentifier(renameInfo.text); } } }); } function getNewNameIfConflict(name, originalNames) { const numVarsSameName = (originalNames.get(name.text) || emptyArray).length; const identifier = numVarsSameName === 0 ? name : factory.createIdentifier(name.text + "_" + numVarsSameName); return createSynthIdentifier(identifier); } function hasFailed() { return !codeActionSucceeded; } function silentFail() { codeActionSucceeded = false; return emptyArray; } function transformExpression(returnContextNode, node, transformer, hasContinuation, continuationArgName) { if (isPromiseReturningCallExpression(node, transformer.checker, "then")) { return transformThen(node, elementAt(node.arguments, 0), elementAt(node.arguments, 1), transformer, hasContinuation, continuationArgName); } if (isPromiseReturningCallExpression(node, transformer.checker, "catch")) { return transformCatch(node, elementAt(node.arguments, 0), transformer, hasContinuation, continuationArgName); } if (isPromiseReturningCallExpression(node, transformer.checker, "finally")) { return transformFinally(node, elementAt(node.arguments, 0), transformer, hasContinuation, continuationArgName); } if (isPropertyAccessExpression(node)) { return transformExpression(returnContextNode, node.expression, transformer, hasContinuation, continuationArgName); } const nodeType = transformer.checker.getTypeAtLocation(node); if (nodeType && transformer.checker.getPromisedTypeOfPromise(nodeType)) { Debug.assertNode(getOriginalNode(node).parent, isPropertyAccessExpression); return transformPromiseExpressionOfPropertyAccess(returnContextNode, node, transformer, hasContinuation, continuationArgName); } return silentFail(); } function isNullOrUndefined2({ checker }, node) { if (node.kind === 106) return true; if (isIdentifier(node) && !isGeneratedIdentifier(node) && idText(node) === "undefined") { const symbol = checker.getSymbolAtLocation(node); return !symbol || checker.isUndefinedSymbol(symbol); } return false; } function createUniqueSynthName(prevArgName) { const renamedPrevArg = factory.createUniqueName(prevArgName.identifier.text, 16); return createSynthIdentifier(renamedPrevArg); } function getPossibleNameForVarDecl(node, transformer, continuationArgName) { let possibleNameForVarDecl; if (continuationArgName && !shouldReturn(node, transformer)) { if (isSynthIdentifier(continuationArgName)) { possibleNameForVarDecl = continuationArgName; transformer.synthNamesMap.forEach((val, key) => { if (val.identifier.text === continuationArgName.identifier.text) { const newSynthName = createUniqueSynthName(continuationArgName); transformer.synthNamesMap.set(key, newSynthName); } }); } else { possibleNameForVarDecl = createSynthIdentifier(factory.createUniqueName("result", 16), continuationArgName.types); } declareSynthIdentifier(possibleNameForVarDecl); } return possibleNameForVarDecl; } function finishCatchOrFinallyTransform(node, transformer, tryStatement, possibleNameForVarDecl, continuationArgName) { const statements = []; let varDeclIdentifier; if (possibleNameForVarDecl && !shouldReturn(node, transformer)) { varDeclIdentifier = getSynthesizedDeepClone(declareSynthIdentifier(possibleNameForVarDecl)); const typeArray = possibleNameForVarDecl.types; const unionType = transformer.checker.getUnionType(typeArray, 2); const unionTypeNode = transformer.isInJSFile ? undefined : transformer.checker.typeToTypeNode(unionType, undefined, undefined); const varDecl = [factory.createVariableDeclaration(varDeclIdentifier, undefined, unionTypeNode)]; const varDeclList = factory.createVariableStatement(undefined, factory.createVariableDeclarationList(varDecl, 1)); statements.push(varDeclList); } statements.push(tryStatement); if (continuationArgName && varDeclIdentifier && isSynthBindingPattern(continuationArgName)) { statements.push(factory.createVariableStatement(undefined, factory.createVariableDeclarationList([ factory.createVariableDeclaration(getSynthesizedDeepClone(declareSynthBindingPattern(continuationArgName)), undefined, undefined, varDeclIdentifier) ], 2))); } return statements; } function transformFinally(node, onFinally, transformer, hasContinuation, continuationArgName) { if (!onFinally || isNullOrUndefined2(transformer, onFinally)) { return transformExpression(node, node.expression.expression, transformer, hasContinuation, continuationArgName); } const possibleNameForVarDecl = getPossibleNameForVarDecl(node, transformer, continuationArgName); const inlinedLeftHandSide = transformExpression(node, node.expression.expression, transformer, true, possibleNameForVarDecl); if (hasFailed()) return silentFail(); const inlinedCallback = transformCallbackArgument(onFinally, hasContinuation, undefined, undefined, node, transformer); if (hasFailed()) return silentFail(); const tryBlock = factory.createBlock(inlinedLeftHandSide); const finallyBlock = factory.createBlock(inlinedCallback); const tryStatement = factory.createTryStatement(tryBlock, undefined, finallyBlock); return finishCatchOrFinallyTransform(node, transformer, tryStatement, possibleNameForVarDecl, continuationArgName); } function transformCatch(node, onRejected, transformer, hasContinuation, continuationArgName) { if (!onRejected || isNullOrUndefined2(transformer, onRejected)) { return transformExpression(node, node.expression.expression, transformer, hasContinuation, continuationArgName); } const inputArgName = getArgBindingName(onRejected, transformer); const possibleNameForVarDecl = getPossibleNameForVarDecl(node, transformer, continuationArgName); const inlinedLeftHandSide = transformExpression(node, node.expression.expression, transformer, true, possibleNameForVarDecl); if (hasFailed()) return silentFail(); const inlinedCallback = transformCallbackArgument(onRejected, hasContinuation, possibleNameForVarDecl, inputArgName, node, transformer); if (hasFailed()) return silentFail(); const tryBlock = factory.createBlock(inlinedLeftHandSide); const catchClause = factory.createCatchClause(inputArgName && getSynthesizedDeepClone(declareSynthBindingName(inputArgName)), factory.createBlock(inlinedCallback)); const tryStatement = factory.createTryStatement(tryBlock, catchClause, undefined); return finishCatchOrFinallyTransform(node, transformer, tryStatement, possibleNameForVarDecl, continuationArgName); } function transformThen(node, onFulfilled, onRejected, transformer, hasContinuation, continuationArgName) { if (!onFulfilled || isNullOrUndefined2(transformer, onFulfilled)) { return transformCatch(node, onRejected, transformer, hasContinuation, continuationArgName); } if (onRejected && !isNullOrUndefined2(transformer, onRejected)) { return silentFail(); } const inputArgName = getArgBindingName(onFulfilled, transformer); const inlinedLeftHandSide = transformExpression(node.expression.expression, node.expression.expression, transformer, true, inputArgName); if (hasFailed()) return silentFail(); const inlinedCallback = transformCallbackArgument(onFulfilled, hasContinuation, continuationArgName, inputArgName, node, transformer); if (hasFailed()) return silentFail(); return concatenate(inlinedLeftHandSide, inlinedCallback); } function transformPromiseExpressionOfPropertyAccess(returnContextNode, node, transformer, hasContinuation, continuationArgName) { if (shouldReturn(returnContextNode, transformer)) { let returnValue = getSynthesizedDeepClone(node); if (hasContinuation) { returnValue = factory.createAwaitExpression(returnValue); } return [factory.createReturnStatement(returnValue)]; } return createVariableOrAssignmentOrExpressionStatement(continuationArgName, factory.createAwaitExpression(node), undefined); } function createVariableOrAssignmentOrExpressionStatement(variableName, rightHandSide, typeAnnotation) { if (!variableName || isEmptyBindingName(variableName)) { return [factory.createExpressionStatement(rightHandSide)]; } if (isSynthIdentifier(variableName) && variableName.hasBeenDeclared) { return [factory.createExpressionStatement(factory.createAssignment(getSynthesizedDeepClone(referenceSynthIdentifier(variableName)), rightHandSide))]; } return [ factory.createVariableStatement(undefined, factory.createVariableDeclarationList([ factory.createVariableDeclaration(getSynthesizedDeepClone(declareSynthBindingName(variableName)), undefined, typeAnnotation, rightHandSide) ], 2)) ]; } function maybeAnnotateAndReturn(expressionToReturn, typeAnnotation) { if (typeAnnotation && expressionToReturn) { const name = factory.createUniqueName("result", 16); return [ ...createVariableOrAssignmentOrExpressionStatement(createSynthIdentifier(name), expressionToReturn, typeAnnotation), factory.createReturnStatement(name) ]; } return [factory.createReturnStatement(expressionToReturn)]; } function transformCallbackArgument(func, hasContinuation, continuationArgName, inputArgName, parent2, transformer) { var _a; switch (func.kind) { case 106: break; case 212: case 80: if (!inputArgName) { break; } const synthCall = factory.createCallExpression(getSynthesizedDeepClone(func), undefined, isSynthIdentifier(inputArgName) ? [referenceSynthIdentifier(inputArgName)] : []); if (shouldReturn(parent2, transformer)) { return maybeAnnotateAndReturn(synthCall, getExplicitPromisedTypeOfPromiseReturningCallExpression(parent2, func, transformer.checker)); } const type = transformer.checker.getTypeAtLocation(func); const callSignatures = transformer.checker.getSignaturesOfType(type, 0); if (!callSignatures.length) { return silentFail(); } const returnType = callSignatures[0].getReturnType(); const varDeclOrAssignment = createVariableOrAssignmentOrExpressionStatement(continuationArgName, factory.createAwaitExpression(synthCall), getExplicitPromisedTypeOfPromiseReturningCallExpression(parent2, func, transformer.checker)); if (continuationArgName) { continuationArgName.types.push(transformer.checker.getAwaitedType(returnType) || returnType); } return varDeclOrAssignment; case 219: case 220: { const funcBody = func.body; const returnType2 = (_a = getLastCallSignature(transformer.checker.getTypeAtLocation(func), transformer.checker)) == null ? undefined : _a.getReturnType(); if (isBlock(funcBody)) { let refactoredStmts = []; let seenReturnStatement = false; for (const statement of funcBody.statements) { if (isReturnStatement(statement)) { seenReturnStatement = true; if (isReturnStatementWithFixablePromiseHandler(statement, transformer.checker)) { refactoredStmts = refactoredStmts.concat(transformReturnStatementWithFixablePromiseHandler(transformer, statement, hasContinuation, continuationArgName)); } else { const possiblyAwaitedRightHandSide = returnType2 && statement.expression ? getPossiblyAwaitedRightHandSide(transformer.checker, returnType2, statement.expression) : statement.expression; refactoredStmts.push(...maybeAnnotateAndReturn(possiblyAwaitedRightHandSide, getExplicitPromisedTypeOfPromiseReturningCallExpression(parent2, func, transformer.checker))); } } else if (hasContinuation && forEachReturnStatement(statement, returnTrue)) { return silentFail(); } else { refactoredStmts.push(statement); } } return shouldReturn(parent2, transformer) ? refactoredStmts.map((s) => getSynthesizedDeepClone(s)) : removeReturns(refactoredStmts, continuationArgName, transformer, seenReturnStatement); } else { const inlinedStatements = isFixablePromiseHandler(funcBody, transformer.checker) ? transformReturnStatementWithFixablePromiseHandler(transformer, factory.createReturnStatement(funcBody), hasContinuation, continuationArgName) : emptyArray; if (inlinedStatements.length > 0) { return inlinedStatements; } if (returnType2) { const possiblyAwaitedRightHandSide = getPossiblyAwaitedRightHandSide(transformer.checker, returnType2, funcBody); if (!shouldReturn(parent2, transformer)) { const transformedStatement = createVariableOrAssignmentOrExpressionStatement(continuationArgName, possiblyAwaitedRightHandSide, undefined); if (continuationArgName) { continuationArgName.types.push(transformer.checker.getAwaitedType(returnType2) || returnType2); } return transformedStatement; } else { return maybeAnnotateAndReturn(possiblyAwaitedRightHandSide, getExplicitPromisedTypeOfPromiseReturningCallExpression(parent2, func, transformer.checker)); } } else { return silentFail(); } } } default: return silentFail(); } return emptyArray; } function getPossiblyAwaitedRightHandSide(checker, type, expr) { const rightHandSide = getSynthesizedDeepClone(expr); return checker.getPromisedTypeOfPromise(type) ? factory.createAwaitExpression(rightHandSide) : rightHandSide; } function getLastCallSignature(type, checker) { const callSignatures = checker.getSignaturesOfType(type, 0); return lastOrUndefined(callSignatures); } function removeReturns(stmts, prevArgName, transformer, seenReturnStatement) { const ret = []; for (const stmt of stmts) { if (isReturnStatement(stmt)) { if (stmt.expression) { const possiblyAwaitedExpression = isPromiseTypedExpression(stmt.expression, transformer.checker) ? factory.createAwaitExpression(stmt.expression) : stmt.expression; if (prevArgName === undefined) { ret.push(factory.createExpressionStatement(possiblyAwaitedExpression)); } else if (isSynthIdentifier(prevArgName) && prevArgName.hasBeenDeclared) { ret.push(factory.createExpressionStatement(factory.createAssignment(referenceSynthIdentifier(prevArgName), possiblyAwaitedExpression))); } else { ret.push(factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(declareSynthBindingName(prevArgName), undefined, undefined, possiblyAwaitedExpression)], 2))); } } } else { ret.push(getSynthesizedDeepClone(stmt)); } } if (!seenReturnStatement && prevArgName !== undefined) { ret.push(factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(declareSynthBindingName(prevArgName), undefined, undefined, factory.createIdentifier("undefined"))], 2))); } return ret; } function transformReturnStatementWithFixablePromiseHandler(transformer, innerRetStmt, hasContinuation, continuationArgName) { let innerCbBody = []; forEachChild(innerRetStmt, function visit(node) { if (isCallExpression(node)) { const temp = transformExpression(node, node, transformer, hasContinuation, continuationArgName); innerCbBody = innerCbBody.concat(temp); if (innerCbBody.length > 0) { return; } } else if (!isFunctionLike(node)) { forEachChild(node, visit); } }); return innerCbBody; } function getArgBindingName(funcNode, transformer) { const types = []; let name; if (isFunctionLikeDeclaration(funcNode)) { if (funcNode.parameters.length > 0) { const param = funcNode.parameters[0].name; name = getMappedBindingNameOrDefault(param); } } else if (isIdentifier(funcNode)) { name = getMapEntryOrDefault(funcNode); } else if (isPropertyAccessExpression(funcNode) && isIdentifier(funcNode.name)) { name = getMapEntryOrDefault(funcNode.name); } if (!name || "identifier" in name && name.identifier.text === "undefined") { return; } return name; function getMappedBindingNameOrDefault(bindingName) { if (isIdentifier(bindingName)) return getMapEntryOrDefault(bindingName); const elements = flatMap(bindingName.elements, (element) => { if (isOmittedExpression(element)) return []; return [getMappedBindingNameOrDefault(element.name)]; }); return createSynthBindingPattern(bindingName, elements); } function getMapEntryOrDefault(identifier) { const originalNode = getOriginalNode2(identifier); const symbol = getSymbol2(originalNode); if (!symbol) { return createSynthIdentifier(identifier, types); } const mapEntry = transformer.synthNamesMap.get(getSymbolId(symbol).toString()); return mapEntry || createSynthIdentifier(identifier, types); } function getSymbol2(node) { var _a; return ((_a = tryCast(node, canHaveSymbol)) == null ? undefined : _a.symbol) ?? transformer.checker.getSymbolAtLocation(node); } function getOriginalNode2(node) { return node.original ? node.original : node; } } function isEmptyBindingName(bindingName) { if (!bindingName) { return true; } if (isSynthIdentifier(bindingName)) { return !bindingName.identifier.text; } return every(bindingName.elements, isEmptyBindingName); } function createSynthIdentifier(identifier, types = []) { return { kind: 0, identifier, types, hasBeenDeclared: false, hasBeenReferenced: false }; } function createSynthBindingPattern(bindingPattern, elements = emptyArray, types = []) { return { kind: 1, bindingPattern, elements, types }; } function referenceSynthIdentifier(synthId) { synthId.hasBeenReferenced = true; return synthId.identifier; } function declareSynthBindingName(synthName) { return isSynthIdentifier(synthName) ? declareSynthIdentifier(synthName) : declareSynthBindingPattern(synthName); } function declareSynthBindingPattern(synthPattern) { for (const element of synthPattern.elements) { declareSynthBindingName(element); } return synthPattern.bindingPattern; } function declareSynthIdentifier(synthId) { synthId.hasBeenDeclared = true; return synthId.identifier; } function isSynthIdentifier(bindingName) { return bindingName.kind === 0; } function isSynthBindingPattern(bindingName) { return bindingName.kind === 1; } function shouldReturn(expression, transformer) { return !!expression.original && transformer.setOfExpressionsToReturn.has(getNodeId(expression.original)); } registerCodeFix({ errorCodes: [Diagnostics.File_is_a_CommonJS_module_it_may_be_converted_to_an_ES_module.code], getCodeActions(context) { const { sourceFile, program, preferences } = context; const changes = ts_textChanges_exports.ChangeTracker.with(context, (changes2) => { const moduleExportsChangedToDefault = convertFileToEsModule(sourceFile, program.getTypeChecker(), changes2, getEmitScriptTarget(program.getCompilerOptions()), getQuotePreference(sourceFile, preferences)); if (moduleExportsChangedToDefault) { for (const importingFile of program.getSourceFiles()) { fixImportOfModuleExports(importingFile, sourceFile, program, changes2, getQuotePreference(importingFile, preferences)); } } }); return [createCodeFixActionWithoutFixAll("convertToEsModule", changes, Diagnostics.Convert_to_ES_module)]; } }); function fixImportOfModuleExports(importingFile, exportingFile, program, changes, quotePreference) { var _a; for (const moduleSpecifier of importingFile.imports) { const imported = (_a = program.getResolvedModuleFromModuleSpecifier(moduleSpecifier, importingFile)) == null ? undefined : _a.resolvedModule; if (!imported || imported.resolvedFileName !== exportingFile.fileName) { continue; } const importNode = importFromModuleSpecifier(moduleSpecifier); switch (importNode.kind) { case 272: changes.replaceNode(importingFile, importNode, makeImport(importNode.name, undefined, moduleSpecifier, quotePreference)); break; case 214: if (isRequireCall(importNode, false)) { changes.replaceNode(importingFile, importNode, factory.createPropertyAccessExpression(getSynthesizedDeepClone(importNode), "default")); } break; } } } function convertFileToEsModule(sourceFile, checker, changes, target, quotePreference) { const identifiers = { original: collectFreeIdentifiers(sourceFile), additional: /* @__PURE__ */ new Set }; const exports22 = collectExportRenames(sourceFile, checker, identifiers); convertExportsAccesses(sourceFile, exports22, changes); let moduleExportsChangedToDefault = false; let useSitesToUnqualify; for (const statement of filter(sourceFile.statements, isVariableStatement)) { const newUseSites = convertVariableStatement(sourceFile, statement, changes, checker, identifiers, target, quotePreference); if (newUseSites) { copyEntries(newUseSites, useSitesToUnqualify ?? (useSitesToUnqualify = /* @__PURE__ */ new Map)); } } for (const statement of filter(sourceFile.statements, (s) => !isVariableStatement(s))) { const moduleExportsChanged = convertStatement(sourceFile, statement, checker, changes, identifiers, target, exports22, useSitesToUnqualify, quotePreference); moduleExportsChangedToDefault = moduleExportsChangedToDefault || moduleExportsChanged; } useSitesToUnqualify == null || useSitesToUnqualify.forEach((replacement, original) => { changes.replaceNode(sourceFile, original, replacement); }); return moduleExportsChangedToDefault; } function collectExportRenames(sourceFile, checker, identifiers) { const res = /* @__PURE__ */ new Map; forEachExportReference(sourceFile, (node) => { const { text } = node.name; if (!res.has(text) && (isIdentifierANonContextualKeyword(node.name) || checker.resolveName(text, node, 111551, true))) { res.set(text, makeUniqueName(`_${text}`, identifiers)); } }); return res; } function convertExportsAccesses(sourceFile, exports22, changes) { forEachExportReference(sourceFile, (node, isAssignmentLhs) => { if (isAssignmentLhs) { return; } const { text } = node.name; changes.replaceNode(sourceFile, node, factory.createIdentifier(exports22.get(text) || text)); }); } function forEachExportReference(sourceFile, cb) { sourceFile.forEachChild(function recur(node) { if (isPropertyAccessExpression(node) && isExportsOrModuleExportsOrAlias(sourceFile, node.expression) && isIdentifier(node.name)) { const { parent: parent2 } = node; cb(node, isBinaryExpression(parent2) && parent2.left === node && parent2.operatorToken.kind === 64); } node.forEachChild(recur); }); } function convertStatement(sourceFile, statement, checker, changes, identifiers, target, exports22, useSitesToUnqualify, quotePreference) { switch (statement.kind) { case 244: convertVariableStatement(sourceFile, statement, changes, checker, identifiers, target, quotePreference); return false; case 245: { const { expression } = statement; switch (expression.kind) { case 214: { if (isRequireCall(expression, true)) { changes.replaceNode(sourceFile, statement, makeImport(undefined, undefined, expression.arguments[0], quotePreference)); } return false; } case 227: { const { operatorToken } = expression; return operatorToken.kind === 64 && convertAssignment(sourceFile, checker, expression, changes, exports22, useSitesToUnqualify); } } } default: return false; } } function convertVariableStatement(sourceFile, statement, changes, checker, identifiers, target, quotePreference) { const { declarationList } = statement; let foundImport = false; const converted = map(declarationList.declarations, (decl) => { const { name, initializer } = decl; if (initializer) { if (isExportsOrModuleExportsOrAlias(sourceFile, initializer)) { foundImport = true; return convertedImports([]); } else if (isRequireCall(initializer, true)) { foundImport = true; return convertSingleImport(name, initializer.arguments[0], checker, identifiers, target, quotePreference); } else if (isPropertyAccessExpression(initializer) && isRequireCall(initializer.expression, true)) { foundImport = true; return convertPropertyAccessImport(name, initializer.name.text, initializer.expression.arguments[0], identifiers, quotePreference); } } return convertedImports([factory.createVariableStatement(undefined, factory.createVariableDeclarationList([decl], declarationList.flags))]); }); if (foundImport) { changes.replaceNodeWithNodes(sourceFile, statement, flatMap(converted, (c) => c.newImports)); let combinedUseSites; forEach(converted, (c) => { if (c.useSitesToUnqualify) { copyEntries(c.useSitesToUnqualify, combinedUseSites ?? (combinedUseSites = /* @__PURE__ */ new Map)); } }); return combinedUseSites; } } function convertPropertyAccessImport(name, propertyName, moduleSpecifier, identifiers, quotePreference) { switch (name.kind) { case 207: case 208: { const tmp = makeUniqueName(propertyName, identifiers); return convertedImports([ makeSingleImport(tmp, propertyName, moduleSpecifier, quotePreference), makeConst(undefined, name, factory.createIdentifier(tmp)) ]); } case 80: return convertedImports([makeSingleImport(name.text, propertyName, moduleSpecifier, quotePreference)]); default: return Debug.assertNever(name, `Convert to ES module got invalid syntax form ${name.kind}`); } } function convertAssignment(sourceFile, checker, assignment, changes, exports22, useSitesToUnqualify) { const { left, right } = assignment; if (!isPropertyAccessExpression(left)) { return false; } if (isExportsOrModuleExportsOrAlias(sourceFile, left)) { if (isExportsOrModuleExportsOrAlias(sourceFile, right)) { changes.delete(sourceFile, assignment.parent); } else { const replacement = isObjectLiteralExpression(right) ? tryChangeModuleExportsObject(right, useSitesToUnqualify) : isRequireCall(right, true) ? convertReExportAll(right.arguments[0], checker) : undefined; if (replacement) { changes.replaceNodeWithNodes(sourceFile, assignment.parent, replacement[0]); return replacement[1]; } else { changes.replaceRangeWithText(sourceFile, createRange(left.getStart(sourceFile), right.pos), "export default"); return true; } } } else if (isExportsOrModuleExportsOrAlias(sourceFile, left.expression)) { convertNamedExport(sourceFile, assignment, changes, exports22); } return false; } function tryChangeModuleExportsObject(object, useSitesToUnqualify) { const statements = mapAllOrFail(object.properties, (prop) => { switch (prop.kind) { case 178: case 179: case 305: case 306: return; case 304: return !isIdentifier(prop.name) ? undefined : convertExportsDotXEquals_replaceNode(prop.name.text, prop.initializer, useSitesToUnqualify); case 175: return !isIdentifier(prop.name) ? undefined : functionExpressionToDeclaration(prop.name.text, [factory.createToken(95)], prop, useSitesToUnqualify); default: Debug.assertNever(prop, `Convert to ES6 got invalid prop kind ${prop.kind}`); } }); return statements && [statements, false]; } function convertNamedExport(sourceFile, assignment, changes, exports22) { const { text } = assignment.left.name; const rename = exports22.get(text); if (rename !== undefined) { const newNodes = [ makeConst(undefined, rename, assignment.right), makeExportDeclaration([factory.createExportSpecifier(false, rename, text)]) ]; changes.replaceNodeWithNodes(sourceFile, assignment.parent, newNodes); } else { convertExportsPropertyAssignment(assignment, sourceFile, changes); } } function convertReExportAll(reExported, checker) { const moduleSpecifier = reExported.text; const moduleSymbol = checker.getSymbolAtLocation(reExported); const exports22 = moduleSymbol ? moduleSymbol.exports : emptyMap; return exports22.has("export=") ? [[reExportDefault(moduleSpecifier)], true] : !exports22.has("default") ? [[reExportStar(moduleSpecifier)], false] : exports22.size > 1 ? [[reExportStar(moduleSpecifier), reExportDefault(moduleSpecifier)], true] : [[reExportDefault(moduleSpecifier)], true]; } function reExportStar(moduleSpecifier) { return makeExportDeclaration(undefined, moduleSpecifier); } function reExportDefault(moduleSpecifier) { return makeExportDeclaration([factory.createExportSpecifier(false, undefined, "default")], moduleSpecifier); } function convertExportsPropertyAssignment({ left, right, parent: parent2 }, sourceFile, changes) { const name = left.name.text; if ((isFunctionExpression(right) || isArrowFunction(right) || isClassExpression(right)) && (!right.name || right.name.text === name)) { changes.replaceRange(sourceFile, { pos: left.getStart(sourceFile), end: right.getStart(sourceFile) }, factory.createToken(95), { suffix: " " }); if (!right.name) changes.insertName(sourceFile, right, name); const semi = findChildOfKind(parent2, 27, sourceFile); if (semi) changes.delete(sourceFile, semi); } else { changes.replaceNodeRangeWithNodes(sourceFile, left.expression, findChildOfKind(left, 25, sourceFile), [factory.createToken(95), factory.createToken(87)], { joiner: " ", suffix: " " }); } } function convertExportsDotXEquals_replaceNode(name, exported, useSitesToUnqualify) { const modifiers = [factory.createToken(95)]; switch (exported.kind) { case 219: { const { name: expressionName } = exported; if (expressionName && expressionName.text !== name) { return exportConst(); } } case 220: return functionExpressionToDeclaration(name, modifiers, exported, useSitesToUnqualify); case 232: return classExpressionToDeclaration(name, modifiers, exported, useSitesToUnqualify); default: return exportConst(); } function exportConst() { return makeConst(modifiers, factory.createIdentifier(name), replaceImportUseSites(exported, useSitesToUnqualify)); } } function replaceImportUseSites(nodeOrNodes, useSitesToUnqualify) { if (!useSitesToUnqualify || !some(arrayFrom(useSitesToUnqualify.keys()), (original) => rangeContainsRange(nodeOrNodes, original))) { return nodeOrNodes; } return isArray(nodeOrNodes) ? getSynthesizedDeepClonesWithReplacements(nodeOrNodes, true, replaceNode) : getSynthesizedDeepCloneWithReplacements(nodeOrNodes, true, replaceNode); function replaceNode(original) { if (original.kind === 212) { const replacement = useSitesToUnqualify.get(original); useSitesToUnqualify.delete(original); return replacement; } } } function convertSingleImport(name, moduleSpecifier, checker, identifiers, target, quotePreference) { switch (name.kind) { case 207: { const importSpecifiers = mapAllOrFail(name.elements, (e) => e.dotDotDotToken || e.initializer || e.propertyName && !isIdentifier(e.propertyName) || !isIdentifier(e.name) ? undefined : makeImportSpecifier2(e.propertyName && e.propertyName.text, e.name.text)); if (importSpecifiers) { return convertedImports([makeImport(undefined, importSpecifiers, moduleSpecifier, quotePreference)]); } } case 208: { const tmp = makeUniqueName(moduleSpecifierToValidIdentifier(moduleSpecifier.text, target), identifiers); return convertedImports([ makeImport(factory.createIdentifier(tmp), undefined, moduleSpecifier, quotePreference), makeConst(undefined, getSynthesizedDeepClone(name), factory.createIdentifier(tmp)) ]); } case 80: return convertSingleIdentifierImport(name, moduleSpecifier, checker, identifiers, quotePreference); default: return Debug.assertNever(name, `Convert to ES module got invalid name kind ${name.kind}`); } } function convertSingleIdentifierImport(name, moduleSpecifier, checker, identifiers, quotePreference) { const nameSymbol = checker.getSymbolAtLocation(name); const namedBindingsNames = /* @__PURE__ */ new Map; let needDefaultImport = false; let useSitesToUnqualify; for (const use of identifiers.original.get(name.text)) { if (checker.getSymbolAtLocation(use) !== nameSymbol || use === name) { continue; } const { parent: parent2 } = use; if (isPropertyAccessExpression(parent2)) { const { name: { text: propertyName } } = parent2; if (propertyName === "default") { needDefaultImport = true; const importDefaultName = use.getText(); (useSitesToUnqualify ?? (useSitesToUnqualify = /* @__PURE__ */ new Map)).set(parent2, factory.createIdentifier(importDefaultName)); } else { Debug.assert(parent2.expression === use, "Didn't expect expression === use"); let idName = namedBindingsNames.get(propertyName); if (idName === undefined) { idName = makeUniqueName(propertyName, identifiers); namedBindingsNames.set(propertyName, idName); } (useSitesToUnqualify ?? (useSitesToUnqualify = /* @__PURE__ */ new Map)).set(parent2, factory.createIdentifier(idName)); } } else { needDefaultImport = true; } } const namedBindings = namedBindingsNames.size === 0 ? undefined : arrayFrom(mapIterator(namedBindingsNames.entries(), ([propertyName, idName]) => factory.createImportSpecifier(false, propertyName === idName ? undefined : factory.createIdentifier(propertyName), factory.createIdentifier(idName)))); if (!namedBindings) { needDefaultImport = true; } return convertedImports([makeImport(needDefaultImport ? getSynthesizedDeepClone(name) : undefined, namedBindings, moduleSpecifier, quotePreference)], useSitesToUnqualify); } function makeUniqueName(name, identifiers) { while (identifiers.original.has(name) || identifiers.additional.has(name)) { name = `_${name}`; } identifiers.additional.add(name); return name; } function collectFreeIdentifiers(file) { const map2 = createMultiMap(); forEachFreeIdentifier(file, (id) => map2.add(id.text, id)); return map2; } function forEachFreeIdentifier(node, cb) { if (isIdentifier(node) && isFreeIdentifier(node)) cb(node); node.forEachChild((child) => forEachFreeIdentifier(child, cb)); } function isFreeIdentifier(node) { const { parent: parent2 } = node; switch (parent2.kind) { case 212: return parent2.name !== node; case 209: return parent2.propertyName !== node; case 277: return parent2.propertyName !== node; default: return true; } } function functionExpressionToDeclaration(name, additionalModifiers, fn, useSitesToUnqualify) { return factory.createFunctionDeclaration(concatenate(additionalModifiers, getSynthesizedDeepClones(fn.modifiers)), getSynthesizedDeepClone(fn.asteriskToken), name, getSynthesizedDeepClones(fn.typeParameters), getSynthesizedDeepClones(fn.parameters), getSynthesizedDeepClone(fn.type), factory.converters.convertToFunctionBlock(replaceImportUseSites(fn.body, useSitesToUnqualify))); } function classExpressionToDeclaration(name, additionalModifiers, cls, useSitesToUnqualify) { return factory.createClassDeclaration(concatenate(additionalModifiers, getSynthesizedDeepClones(cls.modifiers)), name, getSynthesizedDeepClones(cls.typeParameters), getSynthesizedDeepClones(cls.heritageClauses), replaceImportUseSites(cls.members, useSitesToUnqualify)); } function makeSingleImport(localName, propertyName, moduleSpecifier, quotePreference) { return propertyName === "default" ? makeImport(factory.createIdentifier(localName), undefined, moduleSpecifier, quotePreference) : makeImport(undefined, [makeImportSpecifier2(propertyName, localName)], moduleSpecifier, quotePreference); } function makeImportSpecifier2(propertyName, name) { return factory.createImportSpecifier(false, propertyName !== undefined && propertyName !== name ? factory.createIdentifier(propertyName) : undefined, factory.createIdentifier(name)); } function makeConst(modifiers, name, init) { return factory.createVariableStatement(modifiers, factory.createVariableDeclarationList([factory.createVariableDeclaration(name, undefined, undefined, init)], 2)); } function makeExportDeclaration(exportSpecifiers, moduleSpecifier) { return factory.createExportDeclaration(undefined, false, exportSpecifiers && factory.createNamedExports(exportSpecifiers), moduleSpecifier === undefined ? undefined : factory.createStringLiteral(moduleSpecifier)); } function convertedImports(newImports, useSitesToUnqualify) { return { newImports, useSitesToUnqualify }; } var fixId12 = "correctQualifiedNameToIndexedAccessType"; var errorCodes13 = [Diagnostics.Cannot_access_0_1_because_0_is_a_type_but_not_a_namespace_Did_you_mean_to_retrieve_the_type_of_the_property_1_in_0_with_0_1.code]; registerCodeFix({ errorCodes: errorCodes13, getCodeActions(context) { const qualifiedName = getQualifiedName(context.sourceFile, context.span.start); if (!qualifiedName) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange10(t, context.sourceFile, qualifiedName)); const newText = `${qualifiedName.left.text}["${qualifiedName.right.text}"]`; return [createCodeFixAction(fixId12, changes, [Diagnostics.Rewrite_as_the_indexed_access_type_0, newText], fixId12, Diagnostics.Rewrite_all_as_indexed_access_types)]; }, fixIds: [fixId12], getAllCodeActions: (context) => codeFixAll(context, errorCodes13, (changes, diag2) => { const q = getQualifiedName(diag2.file, diag2.start); if (q) { doChange10(changes, diag2.file, q); } }) }); function getQualifiedName(sourceFile, pos) { const qualifiedName = findAncestor(getTokenAtPosition(sourceFile, pos), isQualifiedName); Debug.assert(!!qualifiedName, "Expected position to be owned by a qualified name."); return isIdentifier(qualifiedName.left) ? qualifiedName : undefined; } function doChange10(changeTracker, sourceFile, qualifiedName) { const rightText = qualifiedName.right.text; const replacement = factory.createIndexedAccessTypeNode(factory.createTypeReferenceNode(qualifiedName.left, undefined), factory.createLiteralTypeNode(factory.createStringLiteral(rightText))); changeTracker.replaceNode(sourceFile, qualifiedName, replacement); } var errorCodes14 = [Diagnostics.Re_exporting_a_type_when_0_is_enabled_requires_using_export_type.code]; var fixId13 = "convertToTypeOnlyExport"; registerCodeFix({ errorCodes: errorCodes14, getCodeActions: function getCodeActionsToConvertToTypeOnlyExport(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => fixSingleExportDeclaration(t, getExportSpecifierForDiagnosticSpan(context.span, context.sourceFile), context)); if (changes.length) { return [createCodeFixAction(fixId13, changes, Diagnostics.Convert_to_type_only_export, fixId13, Diagnostics.Convert_all_re_exported_types_to_type_only_exports)]; } }, fixIds: [fixId13], getAllCodeActions: function getAllCodeActionsToConvertToTypeOnlyExport(context) { const fixedExportDeclarations = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes14, (changes, diag2) => { const exportSpecifier = getExportSpecifierForDiagnosticSpan(diag2, context.sourceFile); if (exportSpecifier && addToSeen(fixedExportDeclarations, getNodeId(exportSpecifier.parent.parent))) { fixSingleExportDeclaration(changes, exportSpecifier, context); } }); } }); function getExportSpecifierForDiagnosticSpan(span, sourceFile) { return tryCast(getTokenAtPosition(sourceFile, span.start).parent, isExportSpecifier); } function fixSingleExportDeclaration(changes, exportSpecifier, context) { if (!exportSpecifier) { return; } const exportClause = exportSpecifier.parent; const exportDeclaration = exportClause.parent; const typeExportSpecifiers = getTypeExportSpecifiers(exportSpecifier, context); if (typeExportSpecifiers.length === exportClause.elements.length) { changes.insertModifierBefore(context.sourceFile, 156, exportClause); } else { const valueExportDeclaration = factory.updateExportDeclaration(exportDeclaration, exportDeclaration.modifiers, false, factory.updateNamedExports(exportClause, filter(exportClause.elements, (e) => !contains(typeExportSpecifiers, e))), exportDeclaration.moduleSpecifier, undefined); const typeExportDeclaration = factory.createExportDeclaration(undefined, true, factory.createNamedExports(typeExportSpecifiers), exportDeclaration.moduleSpecifier, undefined); changes.replaceNode(context.sourceFile, exportDeclaration, valueExportDeclaration, { leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.IncludeAll, trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.Exclude }); changes.insertNodeAfter(context.sourceFile, exportDeclaration, typeExportDeclaration); } } function getTypeExportSpecifiers(originExportSpecifier, context) { const exportClause = originExportSpecifier.parent; if (exportClause.elements.length === 1) { return exportClause.elements; } const diagnostics = getDiagnosticsWithinSpan(createTextSpanFromNode(exportClause), context.program.getSemanticDiagnostics(context.sourceFile, context.cancellationToken)); return filter(exportClause.elements, (element) => { var _a; return element === originExportSpecifier || ((_a = findDiagnosticForNode(element, diagnostics)) == null ? undefined : _a.code) === errorCodes14[0]; }); } var errorCodes15 = [ Diagnostics._0_is_a_type_and_must_be_imported_using_a_type_only_import_when_verbatimModuleSyntax_is_enabled.code, Diagnostics._0_resolves_to_a_type_only_declaration_and_must_be_imported_using_a_type_only_import_when_verbatimModuleSyntax_is_enabled.code ]; var fixId14 = "convertToTypeOnlyImport"; registerCodeFix({ errorCodes: errorCodes15, getCodeActions: function getCodeActionsToConvertToTypeOnlyImport(context) { var _a; const declaration = getDeclaration2(context.sourceFile, context.span.start); if (declaration) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange11(t, context.sourceFile, declaration)); const importDeclarationChanges = declaration.kind === 277 && isImportDeclaration(declaration.parent.parent.parent) && canConvertImportDeclarationForSpecifier(declaration, context.sourceFile, context.program) ? ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange11(t, context.sourceFile, declaration.parent.parent.parent)) : undefined; const mainAction = createCodeFixAction(fixId14, changes, declaration.kind === 277 ? [Diagnostics.Use_type_0, ((_a = declaration.propertyName) == null ? undefined : _a.text) ?? declaration.name.text] : Diagnostics.Use_import_type, fixId14, Diagnostics.Fix_all_with_type_only_imports); if (some(importDeclarationChanges)) { return [ createCodeFixActionWithoutFixAll(fixId14, importDeclarationChanges, Diagnostics.Use_import_type), mainAction ]; } return [mainAction]; } return; }, fixIds: [fixId14], getAllCodeActions: function getAllCodeActionsToConvertToTypeOnlyImport(context) { const fixedImportDeclarations = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes15, (changes, diag2) => { const errorDeclaration = getDeclaration2(diag2.file, diag2.start); if ((errorDeclaration == null ? undefined : errorDeclaration.kind) === 273 && !fixedImportDeclarations.has(errorDeclaration)) { doChange11(changes, diag2.file, errorDeclaration); fixedImportDeclarations.add(errorDeclaration); } else if ((errorDeclaration == null ? undefined : errorDeclaration.kind) === 277 && isImportDeclaration(errorDeclaration.parent.parent.parent) && !fixedImportDeclarations.has(errorDeclaration.parent.parent.parent) && canConvertImportDeclarationForSpecifier(errorDeclaration, diag2.file, context.program)) { doChange11(changes, diag2.file, errorDeclaration.parent.parent.parent); fixedImportDeclarations.add(errorDeclaration.parent.parent.parent); } else if ((errorDeclaration == null ? undefined : errorDeclaration.kind) === 277) { doChange11(changes, diag2.file, errorDeclaration); } }); } }); function getDeclaration2(sourceFile, pos) { const { parent: parent2 } = getTokenAtPosition(sourceFile, pos); return isImportSpecifier(parent2) || isImportDeclaration(parent2) && parent2.importClause ? parent2 : undefined; } function canConvertImportDeclarationForSpecifier(specifier, sourceFile, program) { if (specifier.parent.parent.name) { return false; } const nonTypeOnlySpecifiers = specifier.parent.elements.filter((e) => !e.isTypeOnly); if (nonTypeOnlySpecifiers.length === 1) { return true; } const checker = program.getTypeChecker(); for (const specifier2 of nonTypeOnlySpecifiers) { const isUsedAsValue = ts_FindAllReferences_exports.Core.eachSymbolReferenceInFile(specifier2.name, checker, sourceFile, (usage) => { const symbol = checker.getSymbolAtLocation(usage); return !!symbol && checker.symbolIsValue(symbol) || !isValidTypeOnlyAliasUseSite(usage); }); if (isUsedAsValue) { return false; } } return true; } function doChange11(changes, sourceFile, declaration) { var _a; if (isImportSpecifier(declaration)) { changes.replaceNode(sourceFile, declaration, factory.updateImportSpecifier(declaration, true, declaration.propertyName, declaration.name)); } else { const importClause = declaration.importClause; if (importClause.name && importClause.namedBindings) { changes.replaceNodeWithNodes(sourceFile, declaration, [ factory.createImportDeclaration(getSynthesizedDeepClones(declaration.modifiers, true), factory.createImportClause(156, getSynthesizedDeepClone(importClause.name, true), undefined), getSynthesizedDeepClone(declaration.moduleSpecifier, true), getSynthesizedDeepClone(declaration.attributes, true)), factory.createImportDeclaration(getSynthesizedDeepClones(declaration.modifiers, true), factory.createImportClause(156, undefined, getSynthesizedDeepClone(importClause.namedBindings, true)), getSynthesizedDeepClone(declaration.moduleSpecifier, true), getSynthesizedDeepClone(declaration.attributes, true)) ]); } else { const newNamedBindings = ((_a = importClause.namedBindings) == null ? undefined : _a.kind) === 276 ? factory.updateNamedImports(importClause.namedBindings, sameMap(importClause.namedBindings.elements, (e) => factory.updateImportSpecifier(e, false, e.propertyName, e.name))) : importClause.namedBindings; const importDeclaration = factory.updateImportDeclaration(declaration, declaration.modifiers, factory.updateImportClause(importClause, 156, importClause.name, newNamedBindings), declaration.moduleSpecifier, declaration.attributes); changes.replaceNode(sourceFile, declaration, importDeclaration); } } } var fixId15 = "convertTypedefToType"; var errorCodes16 = [Diagnostics.JSDoc_typedef_may_be_converted_to_TypeScript_type.code]; registerCodeFix({ fixIds: [fixId15], errorCodes: errorCodes16, getCodeActions(context) { const newLineCharacter = getNewLineOrDefaultFromHost(context.host, context.formatContext.options); const node = getTokenAtPosition(context.sourceFile, context.span.start); if (!node) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange12(t, node, context.sourceFile, newLineCharacter)); if (changes.length > 0) { return [ createCodeFixAction(fixId15, changes, Diagnostics.Convert_typedef_to_TypeScript_type, fixId15, Diagnostics.Convert_all_typedef_to_TypeScript_types) ]; } }, getAllCodeActions: (context) => codeFixAll(context, errorCodes16, (changes, diag2) => { const newLineCharacter = getNewLineOrDefaultFromHost(context.host, context.formatContext.options); const node = getTokenAtPosition(diag2.file, diag2.start); const fixAll = true; if (node) doChange12(changes, node, diag2.file, newLineCharacter, fixAll); }) }); function doChange12(changes, node, sourceFile, newLine, fixAll = false) { if (!isJSDocTypedefTag(node)) return; const declaration = createDeclaration(node); if (!declaration) return; const commentNode = node.parent; const { leftSibling, rightSibling } = getLeftAndRightSiblings(node); let pos = commentNode.getStart(); let prefix = ""; if (!leftSibling && commentNode.comment) { pos = findEndOfTextBetween(commentNode, commentNode.getStart(), node.getStart()); prefix = `${newLine} */${newLine}`; } if (leftSibling) { if (fixAll && isJSDocTypedefTag(leftSibling)) { pos = node.getStart(); prefix = ""; } else { pos = findEndOfTextBetween(commentNode, leftSibling.getStart(), node.getStart()); prefix = `${newLine} */${newLine}`; } } let end = commentNode.getEnd(); let suffix = ""; if (rightSibling) { if (fixAll && isJSDocTypedefTag(rightSibling)) { end = rightSibling.getStart(); suffix = `${newLine}${newLine}`; } else { end = rightSibling.getStart(); suffix = `${newLine}/**${newLine} * `; } } changes.replaceRange(sourceFile, { pos, end }, declaration, { prefix, suffix }); } function getLeftAndRightSiblings(typedefNode) { const commentNode = typedefNode.parent; const maxChildIndex = commentNode.getChildCount() - 1; const currentNodeIndex = commentNode.getChildren().findIndex((n) => n.getStart() === typedefNode.getStart() && n.getEnd() === typedefNode.getEnd()); const leftSibling = currentNodeIndex > 0 ? commentNode.getChildAt(currentNodeIndex - 1) : undefined; const rightSibling = currentNodeIndex < maxChildIndex ? commentNode.getChildAt(currentNodeIndex + 1) : undefined; return { leftSibling, rightSibling }; } function findEndOfTextBetween(jsDocComment, from, to) { const comment = jsDocComment.getText().substring(from - jsDocComment.getStart(), to - jsDocComment.getStart()); for (let i = comment.length;i > 0; i--) { if (!/[*/\s]/.test(comment.substring(i - 1, i))) { return from + i; } } return to; } function createDeclaration(tag) { var _a; const { typeExpression } = tag; if (!typeExpression) return; const typeName = (_a = tag.name) == null ? undefined : _a.getText(); if (!typeName) return; if (typeExpression.kind === 323) { return createInterfaceForTypeLiteral(typeName, typeExpression); } if (typeExpression.kind === 310) { return createTypeAliasForTypeExpression(typeName, typeExpression); } } function createInterfaceForTypeLiteral(typeName, typeLiteral) { const propertySignatures = createSignatureFromTypeLiteral(typeLiteral); if (!some(propertySignatures)) return; return factory.createInterfaceDeclaration(undefined, typeName, undefined, undefined, propertySignatures); } function createTypeAliasForTypeExpression(typeName, typeExpression) { const typeReference = getSynthesizedDeepClone(typeExpression.type); if (!typeReference) return; return factory.createTypeAliasDeclaration(undefined, factory.createIdentifier(typeName), undefined, typeReference); } function createSignatureFromTypeLiteral(typeLiteral) { const propertyTags = typeLiteral.jsDocPropertyTags; if (!some(propertyTags)) return; const getSignature = (tag) => { var _a; const name = getPropertyName(tag); const type = (_a = tag.typeExpression) == null ? undefined : _a.type; const isOptional = tag.isBracketed; let typeReference; if (type && isJSDocTypeLiteral(type)) { const signatures = createSignatureFromTypeLiteral(type); typeReference = factory.createTypeLiteralNode(signatures); } else if (type) { typeReference = getSynthesizedDeepClone(type); } if (typeReference && name) { const questionToken = isOptional ? factory.createToken(58) : undefined; return factory.createPropertySignature(undefined, name, questionToken, typeReference); } }; return mapDefined(propertyTags, getSignature); } function getPropertyName(tag) { return tag.name.kind === 80 ? tag.name.text : tag.name.right.text; } function getJSDocTypedefNodes(node) { if (hasJSDocNodes(node)) { return flatMap(node.jsDoc, (doc) => { var _a; return (_a = doc.tags) == null ? undefined : _a.filter((tag) => isJSDocTypedefTag(tag)); }); } return []; } var fixId16 = "convertLiteralTypeToMappedType"; var errorCodes17 = [Diagnostics._0_only_refers_to_a_type_but_is_being_used_as_a_value_here_Did_you_mean_to_use_1_in_0.code]; registerCodeFix({ errorCodes: errorCodes17, getCodeActions: function getCodeActionsToConvertLiteralTypeToMappedType(context) { const { sourceFile, span } = context; const info = getInfo5(sourceFile, span.start); if (!info) { return; } const { name, constraint } = info; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange13(t, sourceFile, info)); return [createCodeFixAction(fixId16, changes, [Diagnostics.Convert_0_to_1_in_0, constraint, name], fixId16, Diagnostics.Convert_all_type_literals_to_mapped_type)]; }, fixIds: [fixId16], getAllCodeActions: (context) => codeFixAll(context, errorCodes17, (changes, diag2) => { const info = getInfo5(diag2.file, diag2.start); if (info) { doChange13(changes, diag2.file, info); } }) }); function getInfo5(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); if (isIdentifier(token)) { const propertySignature = cast(token.parent.parent, isPropertySignature); const propertyName = token.getText(sourceFile); return { container: cast(propertySignature.parent, isTypeLiteralNode), typeNode: propertySignature.type, constraint: propertyName, name: propertyName === "K" ? "P" : "K" }; } return; } function doChange13(changes, sourceFile, { container, typeNode, constraint, name }) { changes.replaceNode(sourceFile, container, factory.createMappedTypeNode(undefined, factory.createTypeParameterDeclaration(undefined, name, factory.createTypeReferenceNode(constraint)), undefined, undefined, typeNode, undefined)); } var errorCodes18 = [ Diagnostics.Class_0_incorrectly_implements_interface_1.code, Diagnostics.Class_0_incorrectly_implements_class_1_Did_you_mean_to_extend_1_and_inherit_its_members_as_a_subclass.code ]; var fixId17 = "fixClassIncorrectlyImplementsInterface"; registerCodeFix({ errorCodes: errorCodes18, getCodeActions(context) { const { sourceFile, span } = context; const classDeclaration = getClass(sourceFile, span.start); return mapDefined(getEffectiveImplementsTypeNodes(classDeclaration), (implementedTypeNode) => { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addMissingDeclarations(context, implementedTypeNode, sourceFile, classDeclaration, t, context.preferences)); return changes.length === 0 ? undefined : createCodeFixAction(fixId17, changes, [Diagnostics.Implement_interface_0, implementedTypeNode.getText(sourceFile)], fixId17, Diagnostics.Implement_all_unimplemented_interfaces); }); }, fixIds: [fixId17], getAllCodeActions(context) { const seenClassDeclarations = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes18, (changes, diag2) => { const classDeclaration = getClass(diag2.file, diag2.start); if (addToSeen(seenClassDeclarations, getNodeId(classDeclaration))) { for (const implementedTypeNode of getEffectiveImplementsTypeNodes(classDeclaration)) { addMissingDeclarations(context, implementedTypeNode, diag2.file, classDeclaration, changes, context.preferences); } } }); } }); function getClass(sourceFile, pos) { return Debug.checkDefined(getContainingClass(getTokenAtPosition(sourceFile, pos)), "There should be a containing class"); } function symbolPointsToNonPrivateMember(symbol) { return !symbol.valueDeclaration || !(getEffectiveModifierFlags(symbol.valueDeclaration) & 2); } function addMissingDeclarations(context, implementedTypeNode, sourceFile, classDeclaration, changeTracker, preferences) { const checker = context.program.getTypeChecker(); const maybeHeritageClauseSymbol = getHeritageClauseSymbolTable(classDeclaration, checker); const implementedType = checker.getTypeAtLocation(implementedTypeNode); const implementedTypeSymbols = checker.getPropertiesOfType(implementedType); const nonPrivateAndNotExistedInHeritageClauseMembers = implementedTypeSymbols.filter(and(symbolPointsToNonPrivateMember, (symbol) => !maybeHeritageClauseSymbol.has(symbol.escapedName))); const classType = checker.getTypeAtLocation(classDeclaration); const constructor = find(classDeclaration.members, (m) => isConstructorDeclaration(m)); if (!classType.getNumberIndexType()) { createMissingIndexSignatureDeclaration(implementedType, 1); } if (!classType.getStringIndexType()) { createMissingIndexSignatureDeclaration(implementedType, 0); } const importAdder = createImportAdder(sourceFile, context.program, preferences, context.host); createMissingMemberNodes(classDeclaration, nonPrivateAndNotExistedInHeritageClauseMembers, sourceFile, context, preferences, importAdder, (member) => insertInterfaceMemberNode(sourceFile, classDeclaration, member)); importAdder.writeFixes(changeTracker); function createMissingIndexSignatureDeclaration(type, kind) { const indexInfoOfKind = checker.getIndexInfoOfType(type, kind); if (indexInfoOfKind) { insertInterfaceMemberNode(sourceFile, classDeclaration, checker.indexInfoToIndexSignatureDeclaration(indexInfoOfKind, classDeclaration, undefined, undefined, getNoopSymbolTrackerWithResolver(context))); } } function insertInterfaceMemberNode(sourceFile2, cls, newElement) { if (constructor) { changeTracker.insertNodeAfter(sourceFile2, constructor, newElement); } else { changeTracker.insertMemberAtStart(sourceFile2, cls, newElement); } } } function getHeritageClauseSymbolTable(classDeclaration, checker) { const heritageClauseNode = getEffectiveBaseTypeNode(classDeclaration); if (!heritageClauseNode) return createSymbolTable(); const heritageClauseType = checker.getTypeAtLocation(heritageClauseNode); const heritageClauseTypeSymbols = checker.getPropertiesOfType(heritageClauseType); return createSymbolTable(heritageClauseTypeSymbols.filter(symbolPointsToNonPrivateMember)); } var importFixName = "import"; var importFixId = "fixMissingImport"; var errorCodes19 = [ Diagnostics.Cannot_find_name_0.code, Diagnostics.Cannot_find_name_0_Did_you_mean_1.code, Diagnostics.Cannot_find_name_0_Did_you_mean_the_instance_member_this_0.code, Diagnostics.Cannot_find_name_0_Did_you_mean_the_static_member_1_0.code, Diagnostics.Cannot_find_namespace_0.code, Diagnostics._0_refers_to_a_UMD_global_but_the_current_file_is_a_module_Consider_adding_an_import_instead.code, Diagnostics._0_only_refers_to_a_type_but_is_being_used_as_a_value_here.code, Diagnostics.No_value_exists_in_scope_for_the_shorthand_property_0_Either_declare_one_or_provide_an_initializer.code, Diagnostics._0_cannot_be_used_as_a_value_because_it_was_imported_using_import_type.code, Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_jQuery_Try_npm_i_save_dev_types_Slashjquery.code, Diagnostics.Cannot_find_name_0_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_1_or_later.code, Diagnostics.Cannot_find_name_0_Do_you_need_to_change_your_target_library_Try_changing_the_lib_compiler_option_to_include_dom.code, Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_a_test_runner_Try_npm_i_save_dev_types_Slashjest_or_npm_i_save_dev_types_Slashmocha_and_then_add_jest_or_mocha_to_the_types_field_in_your_tsconfig.code, Diagnostics.Cannot_find_name_0_Did_you_mean_to_write_this_in_an_async_function.code, Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_jQuery_Try_npm_i_save_dev_types_Slashjquery_and_then_add_jquery_to_the_types_field_in_your_tsconfig.code, Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_a_test_runner_Try_npm_i_save_dev_types_Slashjest_or_npm_i_save_dev_types_Slashmocha.code, Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashnode.code, Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashnode_and_then_add_node_to_the_types_field_in_your_tsconfig.code, Diagnostics.Cannot_find_namespace_0_Did_you_mean_1.code, Diagnostics.Cannot_extend_an_interface_0_Did_you_mean_implements.code, Diagnostics.This_JSX_tag_requires_0_to_be_in_scope_but_it_could_not_be_found.code ]; registerCodeFix({ errorCodes: errorCodes19, getCodeActions(context) { const { errorCode, preferences, sourceFile, span, program } = context; const info = getFixInfos(context, errorCode, span.start, true); if (!info) return; return info.map(({ fix, symbolName: symbolName2, errorIdentifierText }) => codeActionForFix(context, sourceFile, symbolName2, fix, symbolName2 !== errorIdentifierText, program, preferences)); }, fixIds: [importFixId], getAllCodeActions: (context) => { const { sourceFile, program, preferences, host, cancellationToken } = context; const importAdder = createImportAdderWorker(sourceFile, program, true, preferences, host, cancellationToken); eachDiagnostic(context, errorCodes19, (diag2) => importAdder.addImportFromDiagnostic(diag2, context)); return createCombinedCodeActions(ts_textChanges_exports.ChangeTracker.with(context, importAdder.writeFixes)); } }); function createImportAdder(sourceFile, program, preferences, host, cancellationToken) { return createImportAdderWorker(sourceFile, program, false, preferences, host, cancellationToken); } function createImportAdderWorker(sourceFile, program, useAutoImportProvider, preferences, host, cancellationToken) { const compilerOptions = program.getCompilerOptions(); const addToNamespace = []; const importType = []; const addToExisting = /* @__PURE__ */ new Map; const removeExisting = /* @__PURE__ */ new Set; const verbatimImports = /* @__PURE__ */ new Set; const newImports = /* @__PURE__ */ new Map; return { addImportFromDiagnostic, addImportFromExportedSymbol, addImportForModuleSymbol, writeFixes, hasFixes, addImportForUnresolvedIdentifier, addImportForNonExistentExport, removeExistingImport, addVerbatimImport }; function addVerbatimImport(declaration) { verbatimImports.add(declaration); } function addImportForUnresolvedIdentifier(context, symbolToken, useAutoImportProvider2) { const info = getFixInfosWithoutDiagnostic(context, symbolToken, useAutoImportProvider2); if (!info || !info.length) return; addImport(first(info)); } function addImportFromDiagnostic(diagnostic, context) { const info = getFixInfos(context, diagnostic.code, diagnostic.start, useAutoImportProvider); if (!info || !info.length) return; addImport(first(info)); } function addImportFromExportedSymbol(exportedSymbol, isValidTypeOnlyUseSite, referenceImport) { var _a, _b; const moduleSymbol = Debug.checkDefined(exportedSymbol.parent, "Expected exported symbol to have module symbol as parent"); const symbolName2 = getNameForExportedSymbol(exportedSymbol, getEmitScriptTarget(compilerOptions)); const checker = program.getTypeChecker(); const symbol = checker.getMergedSymbol(skipAlias(exportedSymbol, checker)); const exportInfo = getAllExportInfoForSymbol(sourceFile, symbol, symbolName2, moduleSymbol, false, program, host, preferences, cancellationToken); if (!exportInfo) { Debug.assert((_a = preferences.autoImportFileExcludePatterns) == null ? undefined : _a.length); return; } const useRequire = shouldUseRequire(sourceFile, program); let fix = getImportFixForSymbol(sourceFile, exportInfo, program, undefined, !!isValidTypeOnlyUseSite, useRequire, host, preferences); if (fix) { const localName = ((_b = tryCast(referenceImport == null ? undefined : referenceImport.name, isIdentifier)) == null ? undefined : _b.text) ?? symbolName2; let addAsTypeOnly; let propertyName; if (referenceImport && isTypeOnlyImportDeclaration(referenceImport) && (fix.kind === 3 || fix.kind === 2) && fix.addAsTypeOnly === 1) { addAsTypeOnly = 2; } if (exportedSymbol.name !== localName) { propertyName = exportedSymbol.name; } fix = { ...fix, ...addAsTypeOnly === undefined ? {} : { addAsTypeOnly }, ...propertyName === undefined ? {} : { propertyName } }; addImport({ fix, symbolName: localName ?? symbolName2, errorIdentifierText: undefined }); } } function addImportForModuleSymbol(symbolAlias, isValidTypeOnlyUseSite, referenceImport) { var _a, _b, _c; const checker = program.getTypeChecker(); const moduleSymbol = checker.getAliasedSymbol(symbolAlias); Debug.assert(moduleSymbol.flags & 1536, "Expected symbol to be a module"); const moduleSpecifierResolutionHost = createModuleSpecifierResolutionHost(program, host); const moduleSpecifierResult = ts_moduleSpecifiers_exports.getModuleSpecifiersWithCacheInfo(moduleSymbol, checker, compilerOptions, sourceFile, moduleSpecifierResolutionHost, preferences, undefined, true); const useRequire = shouldUseRequire(sourceFile, program); let addAsTypeOnly = getAddAsTypeOnly(isValidTypeOnlyUseSite, true, undefined, symbolAlias.flags, program.getTypeChecker(), compilerOptions); addAsTypeOnly = addAsTypeOnly === 1 && isTypeOnlyImportDeclaration(referenceImport) ? 2 : 1; const importKind = isImportDeclaration(referenceImport) ? isDefaultImport(referenceImport) ? 1 : 2 : isImportSpecifier(referenceImport) ? 0 : isImportClause(referenceImport) && !!referenceImport.name ? 1 : 2; const exportInfo = [{ symbol: symbolAlias, moduleSymbol, moduleFileName: (_c = (_b = (_a = moduleSymbol.declarations) == null ? undefined : _a[0]) == null ? undefined : _b.getSourceFile()) == null ? undefined : _c.fileName, exportKind: 4, targetFlags: symbolAlias.flags, isFromPackageJson: false }]; const existingFix = getImportFixForSymbol(sourceFile, exportInfo, program, undefined, !!isValidTypeOnlyUseSite, useRequire, host, preferences); let fix; if (existingFix && importKind !== 2 && existingFix.kind !== 0 && existingFix.kind !== 1) { fix = { ...existingFix, addAsTypeOnly, importKind }; } else { fix = { kind: 3, moduleSpecifierKind: existingFix !== undefined ? existingFix.moduleSpecifierKind : moduleSpecifierResult.kind, moduleSpecifier: existingFix !== undefined ? existingFix.moduleSpecifier : first(moduleSpecifierResult.moduleSpecifiers), importKind, addAsTypeOnly, useRequire }; } addImport({ fix, symbolName: symbolAlias.name, errorIdentifierText: undefined }); } function addImportForNonExistentExport(exportName, exportingFileName, exportKind, exportedMeanings, isImportUsageValidAsTypeOnly) { const exportingSourceFile = program.getSourceFile(exportingFileName); const useRequire = shouldUseRequire(sourceFile, program); if (exportingSourceFile && exportingSourceFile.symbol) { const { fixes } = getImportFixes([{ exportKind, isFromPackageJson: false, moduleFileName: exportingFileName, moduleSymbol: exportingSourceFile.symbol, targetFlags: exportedMeanings }], undefined, isImportUsageValidAsTypeOnly, useRequire, program, sourceFile, host, preferences); if (fixes.length) { addImport({ fix: fixes[0], symbolName: exportName, errorIdentifierText: exportName }); } } else { const futureExportingSourceFile = createFutureSourceFile(exportingFileName, 99, program, host); const moduleSpecifier = ts_moduleSpecifiers_exports.getLocalModuleSpecifierBetweenFileNames(sourceFile, exportingFileName, compilerOptions, createModuleSpecifierResolutionHost(program, host), preferences); const importKind = getImportKind(futureExportingSourceFile, exportKind, program); const addAsTypeOnly = getAddAsTypeOnly(isImportUsageValidAsTypeOnly, true, undefined, exportedMeanings, program.getTypeChecker(), compilerOptions); const fix = { kind: 3, moduleSpecifierKind: "relative", moduleSpecifier, importKind, addAsTypeOnly, useRequire }; addImport({ fix, symbolName: exportName, errorIdentifierText: exportName }); } } function removeExistingImport(declaration) { if (declaration.kind === 274) { Debug.assertIsDefined(declaration.name, "ImportClause should have a name if it's being removed"); } removeExisting.add(declaration); } function addImport(info) { var _a, _b, _c; const { fix, symbolName: symbolName2 } = info; switch (fix.kind) { case 0: addToNamespace.push(fix); break; case 1: importType.push(fix); break; case 2: { const { importClauseOrBindingPattern, importKind, addAsTypeOnly, propertyName } = fix; let entry = addToExisting.get(importClauseOrBindingPattern); if (!entry) { addToExisting.set(importClauseOrBindingPattern, entry = { importClauseOrBindingPattern, defaultImport: undefined, namedImports: /* @__PURE__ */ new Map }); } if (importKind === 0) { const prevTypeOnly = (_a = entry == null ? undefined : entry.namedImports.get(symbolName2)) == null ? undefined : _a.addAsTypeOnly; entry.namedImports.set(symbolName2, { addAsTypeOnly: reduceAddAsTypeOnlyValues(prevTypeOnly, addAsTypeOnly), propertyName }); } else { Debug.assert(entry.defaultImport === undefined || entry.defaultImport.name === symbolName2, "(Add to Existing) Default import should be missing or match symbolName"); entry.defaultImport = { name: symbolName2, addAsTypeOnly: reduceAddAsTypeOnlyValues((_b = entry.defaultImport) == null ? undefined : _b.addAsTypeOnly, addAsTypeOnly) }; } break; } case 3: { const { moduleSpecifier, importKind, useRequire, addAsTypeOnly, propertyName } = fix; const entry = getNewImportEntry(moduleSpecifier, importKind, useRequire, addAsTypeOnly); Debug.assert(entry.useRequire === useRequire, "(Add new) Tried to add an `import` and a `require` for the same module"); switch (importKind) { case 1: Debug.assert(entry.defaultImport === undefined || entry.defaultImport.name === symbolName2, "(Add new) Default import should be missing or match symbolName"); entry.defaultImport = { name: symbolName2, addAsTypeOnly: reduceAddAsTypeOnlyValues((_c = entry.defaultImport) == null ? undefined : _c.addAsTypeOnly, addAsTypeOnly) }; break; case 0: const prevValue = (entry.namedImports || (entry.namedImports = /* @__PURE__ */ new Map)).get(symbolName2); entry.namedImports.set(symbolName2, [reduceAddAsTypeOnlyValues(prevValue, addAsTypeOnly), propertyName]); break; case 3: if (compilerOptions.verbatimModuleSyntax) { const prevValue2 = (entry.namedImports || (entry.namedImports = /* @__PURE__ */ new Map)).get(symbolName2); entry.namedImports.set(symbolName2, [reduceAddAsTypeOnlyValues(prevValue2, addAsTypeOnly), propertyName]); } else { Debug.assert(entry.namespaceLikeImport === undefined || entry.namespaceLikeImport.name === symbolName2, "Namespacelike import shoudl be missing or match symbolName"); entry.namespaceLikeImport = { importKind, name: symbolName2, addAsTypeOnly }; } break; case 2: Debug.assert(entry.namespaceLikeImport === undefined || entry.namespaceLikeImport.name === symbolName2, "Namespacelike import shoudl be missing or match symbolName"); entry.namespaceLikeImport = { importKind, name: symbolName2, addAsTypeOnly }; break; } break; } case 4: break; default: Debug.assertNever(fix, `fix wasn't never - got kind ${fix.kind}`); } function reduceAddAsTypeOnlyValues(prevValue, newValue) { return Math.max(prevValue ?? 0, newValue); } function getNewImportEntry(moduleSpecifier, importKind, useRequire, addAsTypeOnly) { const typeOnlyKey = newImportsKey(moduleSpecifier, true); const nonTypeOnlyKey = newImportsKey(moduleSpecifier, false); const typeOnlyEntry = newImports.get(typeOnlyKey); const nonTypeOnlyEntry = newImports.get(nonTypeOnlyKey); const newEntry = { defaultImport: undefined, namedImports: undefined, namespaceLikeImport: undefined, useRequire }; if (importKind === 1 && addAsTypeOnly === 2) { if (typeOnlyEntry) return typeOnlyEntry; newImports.set(typeOnlyKey, newEntry); return newEntry; } if (addAsTypeOnly === 1 && (typeOnlyEntry || nonTypeOnlyEntry)) { return typeOnlyEntry || nonTypeOnlyEntry; } if (nonTypeOnlyEntry) { return nonTypeOnlyEntry; } newImports.set(nonTypeOnlyKey, newEntry); return newEntry; } function newImportsKey(moduleSpecifier, topLevelTypeOnly) { return `${topLevelTypeOnly ? 1 : 0}|${moduleSpecifier}`; } } function writeFixes(changeTracker, oldFileQuotePreference) { var _a, _b; let quotePreference; if (sourceFile.imports !== undefined && sourceFile.imports.length === 0 && oldFileQuotePreference !== undefined) { quotePreference = oldFileQuotePreference; } else { quotePreference = getQuotePreference(sourceFile, preferences); } for (const fix of addToNamespace) { addNamespaceQualifier(changeTracker, sourceFile, fix); } for (const fix of importType) { addImportType(changeTracker, sourceFile, fix, quotePreference); } let importSpecifiersToRemoveWhileAdding; if (removeExisting.size) { Debug.assert(isFullSourceFile(sourceFile), "Cannot remove imports from a future source file"); const importDeclarationsWithRemovals = new Set(mapDefined([...removeExisting], (d) => findAncestor(d, isImportDeclaration))); const variableDeclarationsWithRemovals = new Set(mapDefined([...removeExisting], (d) => findAncestor(d, isVariableDeclarationInitializedToRequire))); const emptyImportDeclarations = [...importDeclarationsWithRemovals].filter((d) => { var _a2, _b2, _c; return !addToExisting.has(d.importClause) && (!((_a2 = d.importClause) == null ? undefined : _a2.name) || removeExisting.has(d.importClause)) && (!tryCast((_b2 = d.importClause) == null ? undefined : _b2.namedBindings, isNamespaceImport) || removeExisting.has(d.importClause.namedBindings)) && (!tryCast((_c = d.importClause) == null ? undefined : _c.namedBindings, isNamedImports) || every(d.importClause.namedBindings.elements, (e) => removeExisting.has(e))); }); const emptyVariableDeclarations = [...variableDeclarationsWithRemovals].filter((d) => (d.name.kind !== 207 || !addToExisting.has(d.name)) && (d.name.kind !== 207 || every(d.name.elements, (e) => removeExisting.has(e)))); const namedBindingsToDelete = [...importDeclarationsWithRemovals].filter((d) => { var _a2, _b2; return ((_a2 = d.importClause) == null ? undefined : _a2.namedBindings) && emptyImportDeclarations.indexOf(d) === -1 && !((_b2 = addToExisting.get(d.importClause)) == null ? undefined : _b2.namedImports) && (d.importClause.namedBindings.kind === 275 || every(d.importClause.namedBindings.elements, (e) => removeExisting.has(e))); }); for (const declaration of [...emptyImportDeclarations, ...emptyVariableDeclarations]) { changeTracker.delete(sourceFile, declaration); } for (const declaration of namedBindingsToDelete) { changeTracker.replaceNode(sourceFile, declaration.importClause, factory.updateImportClause(declaration.importClause, declaration.importClause.phaseModifier, declaration.importClause.name, undefined)); } for (const declaration of removeExisting) { const importDeclaration = findAncestor(declaration, isImportDeclaration); if (importDeclaration && emptyImportDeclarations.indexOf(importDeclaration) === -1 && namedBindingsToDelete.indexOf(importDeclaration) === -1) { if (declaration.kind === 274) { changeTracker.delete(sourceFile, declaration.name); } else { Debug.assert(declaration.kind === 277, "NamespaceImport should have been handled earlier"); if ((_a = addToExisting.get(importDeclaration.importClause)) == null ? undefined : _a.namedImports) { (importSpecifiersToRemoveWhileAdding ?? (importSpecifiersToRemoveWhileAdding = /* @__PURE__ */ new Set)).add(declaration); } else { changeTracker.delete(sourceFile, declaration); } } } else if (declaration.kind === 209) { if ((_b = addToExisting.get(declaration.parent)) == null ? undefined : _b.namedImports) { (importSpecifiersToRemoveWhileAdding ?? (importSpecifiersToRemoveWhileAdding = /* @__PURE__ */ new Set)).add(declaration); } else { changeTracker.delete(sourceFile, declaration); } } else if (declaration.kind === 272) { changeTracker.delete(sourceFile, declaration); } } } addToExisting.forEach(({ importClauseOrBindingPattern, defaultImport, namedImports }) => { doAddExistingFix(changeTracker, sourceFile, importClauseOrBindingPattern, defaultImport, arrayFrom(namedImports.entries(), ([name, { addAsTypeOnly, propertyName }]) => ({ addAsTypeOnly, propertyName, name })), importSpecifiersToRemoveWhileAdding, preferences); }); let newDeclarations; newImports.forEach(({ useRequire, defaultImport, namedImports, namespaceLikeImport }, key) => { const moduleSpecifier = key.slice(2); const getDeclarations = useRequire ? getNewRequires : getNewImports; const declarations = getDeclarations(moduleSpecifier, quotePreference, defaultImport, namedImports && arrayFrom(namedImports.entries(), ([name, [addAsTypeOnly, propertyName]]) => ({ addAsTypeOnly, propertyName, name })), namespaceLikeImport, compilerOptions, preferences); newDeclarations = combine(newDeclarations, declarations); }); newDeclarations = combine(newDeclarations, getCombinedVerbatimImports()); if (newDeclarations) { insertImports(changeTracker, sourceFile, newDeclarations, true, preferences); } } function getCombinedVerbatimImports() { if (!verbatimImports.size) return; const importDeclarations = new Set(mapDefined([...verbatimImports], (d) => findAncestor(d, isImportDeclaration))); const requireStatements = new Set(mapDefined([...verbatimImports], (d) => findAncestor(d, isRequireVariableStatement))); return [ ...mapDefined([...verbatimImports], (d) => d.kind === 272 ? getSynthesizedDeepClone(d, true) : undefined), ...[...importDeclarations].map((d) => { var _a; if (verbatimImports.has(d)) { return getSynthesizedDeepClone(d, true); } return getSynthesizedDeepClone(factory.updateImportDeclaration(d, d.modifiers, d.importClause && factory.updateImportClause(d.importClause, d.importClause.phaseModifier, verbatimImports.has(d.importClause) ? d.importClause.name : undefined, verbatimImports.has(d.importClause.namedBindings) ? d.importClause.namedBindings : ((_a = tryCast(d.importClause.namedBindings, isNamedImports)) == null ? undefined : _a.elements.some((e) => verbatimImports.has(e))) ? factory.updateNamedImports(d.importClause.namedBindings, d.importClause.namedBindings.elements.filter((e) => verbatimImports.has(e))) : undefined), d.moduleSpecifier, d.attributes), true); }), ...[...requireStatements].map((s) => { if (verbatimImports.has(s)) { return getSynthesizedDeepClone(s, true); } return getSynthesizedDeepClone(factory.updateVariableStatement(s, s.modifiers, factory.updateVariableDeclarationList(s.declarationList, mapDefined(s.declarationList.declarations, (d) => { if (verbatimImports.has(d)) { return d; } return factory.updateVariableDeclaration(d, d.name.kind === 207 ? factory.updateObjectBindingPattern(d.name, d.name.elements.filter((e) => verbatimImports.has(e))) : d.name, d.exclamationToken, d.type, d.initializer); }))), true); }) ]; } function hasFixes() { return addToNamespace.length > 0 || importType.length > 0 || addToExisting.size > 0 || newImports.size > 0 || verbatimImports.size > 0 || removeExisting.size > 0; } } function createImportSpecifierResolver(importingFile, program, host, preferences) { const packageJsonImportFilter = createPackageJsonImportFilter(importingFile, preferences, host); const importMap = createExistingImportMap(importingFile, program); return { getModuleSpecifierForBestExportInfo }; function getModuleSpecifierForBestExportInfo(exportInfo, position, isValidTypeOnlyUseSite, fromCacheOnly) { const { fixes, computedWithoutCacheCount } = getImportFixes(exportInfo, position, isValidTypeOnlyUseSite, false, program, importingFile, host, preferences, importMap, fromCacheOnly); const result = getBestFix(fixes, importingFile, program, packageJsonImportFilter, host, preferences); return result && { ...result, computedWithoutCacheCount }; } } function getImportCompletionAction(targetSymbol, moduleSymbol, exportMapKey, sourceFile, symbolName2, isJsxTagName, host, program, formatContext, position, preferences, cancellationToken) { let exportInfos; if (exportMapKey) { exportInfos = getExportInfoMap(sourceFile, host, program, preferences, cancellationToken).get(sourceFile.path, exportMapKey); Debug.assertIsDefined(exportInfos, "Some exportInfo should match the specified exportMapKey"); } else { exportInfos = pathIsBareSpecifier(stripQuotes(moduleSymbol.name)) ? [getSingleExportInfoForSymbol(targetSymbol, symbolName2, moduleSymbol, program, host)] : getAllExportInfoForSymbol(sourceFile, targetSymbol, symbolName2, moduleSymbol, isJsxTagName, program, host, preferences, cancellationToken); Debug.assertIsDefined(exportInfos, "Some exportInfo should match the specified symbol / moduleSymbol"); } const useRequire = shouldUseRequire(sourceFile, program); const isValidTypeOnlyUseSite = isValidTypeOnlyAliasUseSite(getTokenAtPosition(sourceFile, position)); const fix = Debug.checkDefined(getImportFixForSymbol(sourceFile, exportInfos, program, position, isValidTypeOnlyUseSite, useRequire, host, preferences)); return { moduleSpecifier: fix.moduleSpecifier, codeAction: codeFixActionToCodeAction(codeActionForFix({ host, formatContext, preferences }, sourceFile, symbolName2, fix, false, program, preferences)) }; } function getPromoteTypeOnlyCompletionAction(sourceFile, symbolToken, program, host, formatContext, preferences) { const compilerOptions = program.getCompilerOptions(); const symbolName2 = single(getSymbolNamesToImport(sourceFile, program.getTypeChecker(), symbolToken, compilerOptions)); const fix = getTypeOnlyPromotionFix(sourceFile, symbolToken, symbolName2, program); const includeSymbolNameInDescription = symbolName2 !== symbolToken.text; return fix && codeFixActionToCodeAction(codeActionForFix({ host, formatContext, preferences }, sourceFile, symbolName2, fix, includeSymbolNameInDescription, program, preferences)); } function getImportFixForSymbol(sourceFile, exportInfos, program, position, isValidTypeOnlyUseSite, useRequire, host, preferences) { const packageJsonImportFilter = createPackageJsonImportFilter(sourceFile, preferences, host); return getBestFix(getImportFixes(exportInfos, position, isValidTypeOnlyUseSite, useRequire, program, sourceFile, host, preferences).fixes, sourceFile, program, packageJsonImportFilter, host, preferences); } function codeFixActionToCodeAction({ description: description3, changes, commands }) { return { description: description3, changes, commands }; } function getAllExportInfoForSymbol(importingFile, symbol, symbolName2, moduleSymbol, preferCapitalized, program, host, preferences, cancellationToken) { const getChecker = createGetChecker(program, host); const isFileExcluded = preferences.autoImportFileExcludePatterns && getIsFileExcluded(host, preferences); const mergedModuleSymbol = program.getTypeChecker().getMergedSymbol(moduleSymbol); const moduleSourceFile = isFileExcluded && mergedModuleSymbol.declarations && getDeclarationOfKind(mergedModuleSymbol, 308); const moduleSymbolExcluded = moduleSourceFile && isFileExcluded(moduleSourceFile); return getExportInfoMap(importingFile, host, program, preferences, cancellationToken).search(importingFile.path, preferCapitalized, (name) => name === symbolName2, (info) => { const checker = getChecker(info[0].isFromPackageJson); if (checker.getMergedSymbol(skipAlias(info[0].symbol, checker)) === symbol && (moduleSymbolExcluded || info.some((i) => checker.getMergedSymbol(i.moduleSymbol) === moduleSymbol || i.symbol.parent === moduleSymbol))) { return info; } }); } function getSingleExportInfoForSymbol(symbol, symbolName2, moduleSymbol, program, host) { var _a, _b; const mainProgramInfo = getInfoWithChecker(program.getTypeChecker(), false); if (mainProgramInfo) { return mainProgramInfo; } const autoImportProvider = (_b = (_a = host.getPackageJsonAutoImportProvider) == null ? undefined : _a.call(host)) == null ? undefined : _b.getTypeChecker(); return Debug.checkDefined(autoImportProvider && getInfoWithChecker(autoImportProvider, true), `Could not find symbol in specified module for code actions`); function getInfoWithChecker(checker, isFromPackageJson) { const defaultInfo = getDefaultLikeExportInfo(moduleSymbol, checker); if (defaultInfo && skipAlias(defaultInfo.symbol, checker) === symbol) { return { symbol: defaultInfo.symbol, moduleSymbol, moduleFileName: undefined, exportKind: defaultInfo.exportKind, targetFlags: skipAlias(symbol, checker).flags, isFromPackageJson }; } const named = checker.tryGetMemberInModuleExportsAndProperties(symbolName2, moduleSymbol); if (named && skipAlias(named, checker) === symbol) { return { symbol: named, moduleSymbol, moduleFileName: undefined, exportKind: 0, targetFlags: skipAlias(symbol, checker).flags, isFromPackageJson }; } } } function getImportFixes(exportInfos, usagePosition, isValidTypeOnlyUseSite, useRequire, program, sourceFile, host, preferences, importMap = isFullSourceFile(sourceFile) ? createExistingImportMap(sourceFile, program) : undefined, fromCacheOnly) { const checker = program.getTypeChecker(); const existingImports = importMap ? flatMap(exportInfos, importMap.getImportsForExportInfo) : emptyArray; const useNamespace = usagePosition !== undefined && tryUseExistingNamespaceImport(existingImports, usagePosition); const addToExisting = tryAddToExistingImport(existingImports, isValidTypeOnlyUseSite, checker, program.getCompilerOptions()); if (addToExisting) { return { computedWithoutCacheCount: 0, fixes: [...useNamespace ? [useNamespace] : emptyArray, addToExisting] }; } const { fixes, computedWithoutCacheCount = 0 } = getFixesForAddImport(exportInfos, existingImports, program, sourceFile, usagePosition, isValidTypeOnlyUseSite, useRequire, host, preferences, fromCacheOnly); return { computedWithoutCacheCount, fixes: [...useNamespace ? [useNamespace] : emptyArray, ...fixes] }; } function tryUseExistingNamespaceImport(existingImports, position) { return firstDefined(existingImports, ({ declaration, importKind }) => { var _a; if (importKind !== 0) return; const namespacePrefix = getNamespaceLikeImportText(declaration); const moduleSpecifier = namespacePrefix && ((_a = tryGetModuleSpecifierFromDeclaration(declaration)) == null ? undefined : _a.text); if (moduleSpecifier) { return { kind: 0, namespacePrefix, usagePosition: position, moduleSpecifierKind: undefined, moduleSpecifier }; } }); } function getNamespaceLikeImportText(declaration) { var _a, _b, _c; switch (declaration.kind) { case 261: return (_a = tryCast(declaration.name, isIdentifier)) == null ? undefined : _a.text; case 272: return declaration.name.text; case 352: case 273: return (_c = tryCast((_b = declaration.importClause) == null ? undefined : _b.namedBindings, isNamespaceImport)) == null ? undefined : _c.name.text; default: return Debug.assertNever(declaration); } } function getAddAsTypeOnly(isValidTypeOnlyUseSite, isForNewImportDeclaration, symbol, targetFlags, checker, compilerOptions) { if (!isValidTypeOnlyUseSite) { return 4; } if (symbol && compilerOptions.verbatimModuleSyntax && (!(targetFlags & 111551) || !!checker.getTypeOnlyAliasDeclaration(symbol))) { return 2; } return 1; } function tryAddToExistingImport(existingImports, isValidTypeOnlyUseSite, checker, compilerOptions) { let best; for (const existingImport of existingImports) { const fix = getAddToExistingImportFix(existingImport); if (!fix) continue; const isTypeOnly = isTypeOnlyImportDeclaration(fix.importClauseOrBindingPattern); if (fix.addAsTypeOnly !== 4 && isTypeOnly || fix.addAsTypeOnly === 4 && !isTypeOnly) { return fix; } best ?? (best = fix); } return best; function getAddToExistingImportFix({ declaration, importKind, symbol, targetFlags }) { if (importKind === 3 || importKind === 2 || declaration.kind === 272) { return; } if (declaration.kind === 261) { return (importKind === 0 || importKind === 1) && declaration.name.kind === 207 ? { kind: 2, importClauseOrBindingPattern: declaration.name, importKind, moduleSpecifierKind: undefined, moduleSpecifier: declaration.initializer.arguments[0].text, addAsTypeOnly: 4 } : undefined; } const { importClause } = declaration; if (!importClause || !isStringLiteralLike(declaration.moduleSpecifier)) { return; } const { name, namedBindings } = importClause; if (importClause.isTypeOnly && !(importKind === 0 && namedBindings)) { return; } const addAsTypeOnly = getAddAsTypeOnly(isValidTypeOnlyUseSite, false, symbol, targetFlags, checker, compilerOptions); if (importKind === 1 && (name || addAsTypeOnly === 2 && namedBindings)) { return; } if (importKind === 0 && (namedBindings == null ? undefined : namedBindings.kind) === 275) { return; } return { kind: 2, importClauseOrBindingPattern: importClause, importKind, moduleSpecifierKind: undefined, moduleSpecifier: declaration.moduleSpecifier.text, addAsTypeOnly }; } } function createExistingImportMap(importingFile, program) { const checker = program.getTypeChecker(); let importMap; for (const moduleSpecifier of importingFile.imports) { const i = importFromModuleSpecifier(moduleSpecifier); if (isVariableDeclarationInitializedToRequire(i.parent)) { const moduleSymbol = checker.resolveExternalModuleName(moduleSpecifier); if (moduleSymbol) { (importMap || (importMap = createMultiMap())).add(getSymbolId(moduleSymbol), i.parent); } } else if (i.kind === 273 || i.kind === 272 || i.kind === 352) { const moduleSymbol = checker.getSymbolAtLocation(moduleSpecifier); if (moduleSymbol) { (importMap || (importMap = createMultiMap())).add(getSymbolId(moduleSymbol), i); } } } return { getImportsForExportInfo: ({ moduleSymbol, exportKind, targetFlags, symbol }) => { const matchingDeclarations = importMap == null ? undefined : importMap.get(getSymbolId(moduleSymbol)); if (!matchingDeclarations) return emptyArray; if (isSourceFileJS(importingFile) && !(targetFlags & 111551) && !every(matchingDeclarations, isJSDocImportTag)) return emptyArray; const importKind = getImportKind(importingFile, exportKind, program); return matchingDeclarations.map((declaration) => ({ declaration, importKind, symbol, targetFlags })); } }; } function shouldUseRequire(sourceFile, program) { if (!hasJSFileExtension(sourceFile.fileName)) { return false; } if (sourceFile.commonJsModuleIndicator && !sourceFile.externalModuleIndicator) return true; if (sourceFile.externalModuleIndicator && !sourceFile.commonJsModuleIndicator) return false; const compilerOptions = program.getCompilerOptions(); if (compilerOptions.configFile) { return getEmitModuleKind(compilerOptions) < 5; } if (getImpliedNodeFormatForEmit(sourceFile, program) === 1) return true; if (getImpliedNodeFormatForEmit(sourceFile, program) === 99) return false; for (const otherFile of program.getSourceFiles()) { if (otherFile === sourceFile || !isSourceFileJS(otherFile) || program.isSourceFileFromExternalLibrary(otherFile)) continue; if (otherFile.commonJsModuleIndicator && !otherFile.externalModuleIndicator) return true; if (otherFile.externalModuleIndicator && !otherFile.commonJsModuleIndicator) return false; } return true; } function createGetChecker(program, host) { return memoizeOne((isFromPackageJson) => isFromPackageJson ? host.getPackageJsonAutoImportProvider().getTypeChecker() : program.getTypeChecker()); } function getNewImportFixes(program, sourceFile, usagePosition, isValidTypeOnlyUseSite, useRequire, exportInfo, host, preferences, fromCacheOnly) { const isJs = hasJSFileExtension(sourceFile.fileName); const compilerOptions = program.getCompilerOptions(); const moduleSpecifierResolutionHost = createModuleSpecifierResolutionHost(program, host); const getChecker = createGetChecker(program, host); const moduleResolution = getEmitModuleResolutionKind(compilerOptions); const rejectNodeModulesRelativePaths = moduleResolutionUsesNodeModules(moduleResolution); const getModuleSpecifiers2 = fromCacheOnly ? (exportInfo2) => ts_moduleSpecifiers_exports.tryGetModuleSpecifiersFromCache(exportInfo2.moduleSymbol, sourceFile, moduleSpecifierResolutionHost, preferences) : (exportInfo2, checker) => ts_moduleSpecifiers_exports.getModuleSpecifiersWithCacheInfo(exportInfo2.moduleSymbol, checker, compilerOptions, sourceFile, moduleSpecifierResolutionHost, preferences, undefined, true); let computedWithoutCacheCount = 0; const fixes = flatMap(exportInfo, (exportInfo2, i) => { const checker = getChecker(exportInfo2.isFromPackageJson); const { computedWithoutCache, moduleSpecifiers: moduleSpecifiers2, kind: moduleSpecifierKind } = getModuleSpecifiers2(exportInfo2, checker) ?? {}; const importedSymbolHasValueMeaning = !!(exportInfo2.targetFlags & 111551); const addAsTypeOnly = getAddAsTypeOnly(isValidTypeOnlyUseSite, true, exportInfo2.symbol, exportInfo2.targetFlags, checker, compilerOptions); computedWithoutCacheCount += computedWithoutCache ? 1 : 0; return mapDefined(moduleSpecifiers2, (moduleSpecifier) => { if (rejectNodeModulesRelativePaths && pathContainsNodeModules(moduleSpecifier)) { return; } if (!importedSymbolHasValueMeaning && isJs && usagePosition !== undefined) { return { kind: 1, moduleSpecifierKind, moduleSpecifier, usagePosition, exportInfo: exportInfo2, isReExport: i > 0 }; } const importKind = getImportKind(sourceFile, exportInfo2.exportKind, program); let qualification; if (usagePosition !== undefined && importKind === 3 && exportInfo2.exportKind === 0) { const exportEquals = checker.resolveExternalModuleSymbol(exportInfo2.moduleSymbol); let namespacePrefix; if (exportEquals !== exportInfo2.moduleSymbol) { namespacePrefix = forEachNameOfDefaultExport(exportEquals, checker, getEmitScriptTarget(compilerOptions), identity); } namespacePrefix || (namespacePrefix = moduleSymbolToValidIdentifier(exportInfo2.moduleSymbol, getEmitScriptTarget(compilerOptions), false)); qualification = { namespacePrefix, usagePosition }; } return { kind: 3, moduleSpecifierKind, moduleSpecifier, importKind, useRequire, addAsTypeOnly, exportInfo: exportInfo2, isReExport: i > 0, qualification }; }); }); return { computedWithoutCacheCount, fixes }; } function getFixesForAddImport(exportInfos, existingImports, program, sourceFile, usagePosition, isValidTypeOnlyUseSite, useRequire, host, preferences, fromCacheOnly) { const existingDeclaration = firstDefined(existingImports, (info) => newImportInfoFromExistingSpecifier(info, isValidTypeOnlyUseSite, useRequire, program.getTypeChecker(), program.getCompilerOptions())); return existingDeclaration ? { fixes: [existingDeclaration] } : getNewImportFixes(program, sourceFile, usagePosition, isValidTypeOnlyUseSite, useRequire, exportInfos, host, preferences, fromCacheOnly); } function newImportInfoFromExistingSpecifier({ declaration, importKind, symbol, targetFlags }, isValidTypeOnlyUseSite, useRequire, checker, compilerOptions) { var _a; const moduleSpecifier = (_a = tryGetModuleSpecifierFromDeclaration(declaration)) == null ? undefined : _a.text; if (moduleSpecifier) { const addAsTypeOnly = useRequire ? 4 : getAddAsTypeOnly(isValidTypeOnlyUseSite, true, symbol, targetFlags, checker, compilerOptions); return { kind: 3, moduleSpecifierKind: undefined, moduleSpecifier, importKind, addAsTypeOnly, useRequire }; } } function getFixInfos(context, errorCode, pos, useAutoImportProvider) { const symbolToken = getTokenAtPosition(context.sourceFile, pos); let info; if (errorCode === Diagnostics._0_refers_to_a_UMD_global_but_the_current_file_is_a_module_Consider_adding_an_import_instead.code) { info = getFixesInfoForUMDImport(context, symbolToken); } else if (!isIdentifier(symbolToken)) { return; } else if (errorCode === Diagnostics._0_cannot_be_used_as_a_value_because_it_was_imported_using_import_type.code) { const symbolName2 = single(getSymbolNamesToImport(context.sourceFile, context.program.getTypeChecker(), symbolToken, context.program.getCompilerOptions())); const fix = getTypeOnlyPromotionFix(context.sourceFile, symbolToken, symbolName2, context.program); return fix && [{ fix, symbolName: symbolName2, errorIdentifierText: symbolToken.text }]; } else { info = getFixesInfoForNonUMDImport(context, symbolToken, useAutoImportProvider); } const packageJsonImportFilter = createPackageJsonImportFilter(context.sourceFile, context.preferences, context.host); return info && sortFixInfo(info, context.sourceFile, context.program, packageJsonImportFilter, context.host, context.preferences); } function sortFixInfo(fixes, sourceFile, program, packageJsonImportFilter, host, preferences) { const _toPath = (fileName) => toPath(fileName, host.getCurrentDirectory(), hostGetCanonicalFileName(host)); return toSorted(fixes, (a, b) => compareBooleans(!!a.isJsxNamespaceFix, !!b.isJsxNamespaceFix) || compareValues(a.fix.kind, b.fix.kind) || compareModuleSpecifiers(a.fix, b.fix, sourceFile, program, preferences, packageJsonImportFilter.allowsImportingSpecifier, _toPath)); } function getFixInfosWithoutDiagnostic(context, symbolToken, useAutoImportProvider) { const info = getFixesInfoForNonUMDImport(context, symbolToken, useAutoImportProvider); const packageJsonImportFilter = createPackageJsonImportFilter(context.sourceFile, context.preferences, context.host); return info && sortFixInfo(info, context.sourceFile, context.program, packageJsonImportFilter, context.host, context.preferences); } function getBestFix(fixes, sourceFile, program, packageJsonImportFilter, host, preferences) { if (!some(fixes)) return; if (fixes[0].kind === 0 || fixes[0].kind === 2) { return fixes[0]; } return fixes.reduce((best, fix) => compareModuleSpecifiers(fix, best, sourceFile, program, preferences, packageJsonImportFilter.allowsImportingSpecifier, (fileName) => toPath(fileName, host.getCurrentDirectory(), hostGetCanonicalFileName(host))) === -1 ? fix : best); } function compareModuleSpecifiers(a, b, importingFile, program, preferences, allowsImportingSpecifier, toPath3) { if (a.kind !== 0 && b.kind !== 0) { return compareBooleans(b.moduleSpecifierKind !== "node_modules" || allowsImportingSpecifier(b.moduleSpecifier), a.moduleSpecifierKind !== "node_modules" || allowsImportingSpecifier(a.moduleSpecifier)) || compareModuleSpecifierRelativity(a, b, preferences) || compareNodeCoreModuleSpecifiers(a.moduleSpecifier, b.moduleSpecifier, importingFile, program) || compareBooleans(isFixPossiblyReExportingImportingFile(a, importingFile.path, toPath3), isFixPossiblyReExportingImportingFile(b, importingFile.path, toPath3)) || compareNumberOfDirectorySeparators(a.moduleSpecifier, b.moduleSpecifier); } return 0; } function compareModuleSpecifierRelativity(a, b, preferences) { if (preferences.importModuleSpecifierPreference === "non-relative" || preferences.importModuleSpecifierPreference === "project-relative") { return compareBooleans(a.moduleSpecifierKind === "relative", b.moduleSpecifierKind === "relative"); } return 0; } function isFixPossiblyReExportingImportingFile(fix, importingFilePath, toPath3) { var _a; if (fix.isReExport && ((_a = fix.exportInfo) == null ? undefined : _a.moduleFileName) && isIndexFileName(fix.exportInfo.moduleFileName)) { const reExportDir = toPath3(getDirectoryPath(fix.exportInfo.moduleFileName)); return startsWith(importingFilePath, reExportDir); } return false; } function isIndexFileName(fileName) { return getBaseFileName(fileName, [".js", ".jsx", ".d.ts", ".ts", ".tsx"], true) === "index"; } function compareNodeCoreModuleSpecifiers(a, b, importingFile, program) { if (startsWith(a, "node:") && !startsWith(b, "node:")) return shouldUseUriStyleNodeCoreModules(importingFile, program) ? -1 : 1; if (startsWith(b, "node:") && !startsWith(a, "node:")) return shouldUseUriStyleNodeCoreModules(importingFile, program) ? 1 : -1; return 0; } function getFixesInfoForUMDImport({ sourceFile, program, host, preferences }, token) { const checker = program.getTypeChecker(); const umdSymbol = getUmdSymbol(token, checker); if (!umdSymbol) return; const symbol = checker.getAliasedSymbol(umdSymbol); const symbolName2 = umdSymbol.name; const exportInfo = [{ symbol: umdSymbol, moduleSymbol: symbol, moduleFileName: undefined, exportKind: 3, targetFlags: symbol.flags, isFromPackageJson: false }]; const useRequire = shouldUseRequire(sourceFile, program); const fixes = getImportFixes(exportInfo, undefined, false, useRequire, program, sourceFile, host, preferences).fixes; return fixes.map((fix) => { var _a; return { fix, symbolName: symbolName2, errorIdentifierText: (_a = tryCast(token, isIdentifier)) == null ? undefined : _a.text }; }); } function getUmdSymbol(token, checker) { const umdSymbol = isIdentifier(token) ? checker.getSymbolAtLocation(token) : undefined; if (isUMDExportSymbol(umdSymbol)) return umdSymbol; const { parent: parent2 } = token; if (isJsxOpeningLikeElement(parent2) && parent2.tagName === token || isJsxOpeningFragment(parent2)) { const parentSymbol = checker.resolveName(checker.getJsxNamespace(parent2), isJsxOpeningLikeElement(parent2) ? token : parent2, 111551, false); if (isUMDExportSymbol(parentSymbol)) { return parentSymbol; } } return; } function getImportKind(importingFile, exportKind, program, forceImportKeyword) { if (program.getCompilerOptions().verbatimModuleSyntax && getEmitModuleFormatOfFile(importingFile, program) === 1) { return 3; } switch (exportKind) { case 0: return 0; case 1: return 1; case 2: return getExportEqualsImportKind(importingFile, program.getCompilerOptions(), !!forceImportKeyword); case 3: return getUmdImportKind(importingFile, program, !!forceImportKeyword); case 4: return 2; default: return Debug.assertNever(exportKind); } } function getUmdImportKind(importingFile, program, forceImportKeyword) { if (getAllowSyntheticDefaultImports(program.getCompilerOptions())) { return 1; } const moduleKind = getEmitModuleKind(program.getCompilerOptions()); switch (moduleKind) { case 2: case 1: case 3: if (hasJSFileExtension(importingFile.fileName)) { return importingFile.externalModuleIndicator || forceImportKeyword ? 2 : 3; } return 3; case 4: case 5: case 6: case 7: case 99: case 0: case 200: return 2; case 100: case 101: case 102: case 199: return getImpliedNodeFormatForEmit(importingFile, program) === 99 ? 2 : 3; default: return Debug.assertNever(moduleKind, `Unexpected moduleKind ${moduleKind}`); } } function getFixesInfoForNonUMDImport({ sourceFile, program, cancellationToken, host, preferences }, symbolToken, useAutoImportProvider) { const checker = program.getTypeChecker(); const compilerOptions = program.getCompilerOptions(); return flatMap(getSymbolNamesToImport(sourceFile, checker, symbolToken, compilerOptions), (symbolName2) => { if (symbolName2 === "default") { return; } const isValidTypeOnlyUseSite = isValidTypeOnlyAliasUseSite(symbolToken); const useRequire = shouldUseRequire(sourceFile, program); const exportInfo = getExportInfos(symbolName2, isJSXTagName(symbolToken), getMeaningFromLocation(symbolToken), cancellationToken, sourceFile, program, useAutoImportProvider, host, preferences); return arrayFrom(flatMapIterator(exportInfo.values(), (exportInfos) => getImportFixes(exportInfos, symbolToken.getStart(sourceFile), isValidTypeOnlyUseSite, useRequire, program, sourceFile, host, preferences).fixes), (fix) => ({ fix, symbolName: symbolName2, errorIdentifierText: symbolToken.text, isJsxNamespaceFix: symbolName2 !== symbolToken.text })); }); } function getTypeOnlyPromotionFix(sourceFile, symbolToken, symbolName2, program) { const checker = program.getTypeChecker(); const symbol = checker.resolveName(symbolName2, symbolToken, 111551, true); if (!symbol) return; const typeOnlyAliasDeclaration = checker.getTypeOnlyAliasDeclaration(symbol); if (!typeOnlyAliasDeclaration || getSourceFileOfNode(typeOnlyAliasDeclaration) !== sourceFile) return; return { kind: 4, typeOnlyAliasDeclaration }; } function getSymbolNamesToImport(sourceFile, checker, symbolToken, compilerOptions) { const parent2 = symbolToken.parent; if ((isJsxOpeningLikeElement(parent2) || isJsxClosingElement(parent2)) && parent2.tagName === symbolToken && jsxModeNeedsExplicitImport(compilerOptions.jsx)) { const jsxNamespace = checker.getJsxNamespace(sourceFile); if (needsJsxNamespaceFix(jsxNamespace, symbolToken, checker)) { const needsComponentNameFix = !isIntrinsicJsxName(symbolToken.text) && !checker.resolveName(symbolToken.text, symbolToken, 111551, false); return needsComponentNameFix ? [symbolToken.text, jsxNamespace] : [jsxNamespace]; } } return [symbolToken.text]; } function needsJsxNamespaceFix(jsxNamespace, symbolToken, checker) { if (isIntrinsicJsxName(symbolToken.text)) return true; const namespaceSymbol = checker.resolveName(jsxNamespace, symbolToken, 111551, true); return !namespaceSymbol || some(namespaceSymbol.declarations, isTypeOnlyImportOrExportDeclaration) && !(namespaceSymbol.flags & 111551); } function getExportInfos(symbolName2, isJsxTagName, currentTokenMeaning, cancellationToken, fromFile, program, useAutoImportProvider, host, preferences) { var _a; const originalSymbolToExportInfos = createMultiMap(); const packageJsonFilter = createPackageJsonImportFilter(fromFile, preferences, host); const moduleSpecifierCache = (_a = host.getModuleSpecifierCache) == null ? undefined : _a.call(host); const getModuleSpecifierResolutionHost = memoizeOne((isFromPackageJson) => { return createModuleSpecifierResolutionHost(isFromPackageJson ? host.getPackageJsonAutoImportProvider() : program, host); }); function addSymbol(moduleSymbol, toFile, exportedSymbol, exportKind, program2, isFromPackageJson) { const moduleSpecifierResolutionHost = getModuleSpecifierResolutionHost(isFromPackageJson); if (isImportable(program2, fromFile, toFile, moduleSymbol, preferences, packageJsonFilter, moduleSpecifierResolutionHost, moduleSpecifierCache)) { const checker = program2.getTypeChecker(); originalSymbolToExportInfos.add(getUniqueSymbolId(exportedSymbol, checker).toString(), { symbol: exportedSymbol, moduleSymbol, moduleFileName: toFile == null ? undefined : toFile.fileName, exportKind, targetFlags: skipAlias(exportedSymbol, checker).flags, isFromPackageJson }); } } forEachExternalModuleToImportFrom(program, host, preferences, useAutoImportProvider, (moduleSymbol, sourceFile, program2, isFromPackageJson) => { const checker = program2.getTypeChecker(); cancellationToken.throwIfCancellationRequested(); const compilerOptions = program2.getCompilerOptions(); const defaultInfo = getDefaultLikeExportInfo(moduleSymbol, checker); if (defaultInfo && symbolFlagsHaveMeaning(checker.getSymbolFlags(defaultInfo.symbol), currentTokenMeaning) && forEachNameOfDefaultExport(defaultInfo.symbol, checker, getEmitScriptTarget(compilerOptions), (name, capitalizedName) => (isJsxTagName ? capitalizedName ?? name : name) === symbolName2)) { addSymbol(moduleSymbol, sourceFile, defaultInfo.symbol, defaultInfo.exportKind, program2, isFromPackageJson); } const exportSymbolWithIdenticalName = checker.tryGetMemberInModuleExportsAndProperties(symbolName2, moduleSymbol); if (exportSymbolWithIdenticalName && symbolFlagsHaveMeaning(checker.getSymbolFlags(exportSymbolWithIdenticalName), currentTokenMeaning)) { addSymbol(moduleSymbol, sourceFile, exportSymbolWithIdenticalName, 0, program2, isFromPackageJson); } }); return originalSymbolToExportInfos; } function getExportEqualsImportKind(importingFile, compilerOptions, forceImportKeyword) { const allowSyntheticDefaults = getAllowSyntheticDefaultImports(compilerOptions); const isJS = hasJSFileExtension(importingFile.fileName); if (!isJS && getEmitModuleKind(compilerOptions) >= 5) { return allowSyntheticDefaults ? 1 : 2; } if (isJS) { return importingFile.externalModuleIndicator || forceImportKeyword ? allowSyntheticDefaults ? 1 : 2 : 3; } for (const statement of importingFile.statements ?? emptyArray) { if (isImportEqualsDeclaration(statement) && !nodeIsMissing(statement.moduleReference)) { return 3; } } return allowSyntheticDefaults ? 1 : 3; } function codeActionForFix(context, sourceFile, symbolName2, fix, includeSymbolNameInDescription, program, preferences) { let diag2; const changes = ts_textChanges_exports.ChangeTracker.with(context, (tracker) => { diag2 = codeActionForFixWorker(tracker, sourceFile, symbolName2, fix, includeSymbolNameInDescription, program, preferences); }); return createCodeFixAction(importFixName, changes, diag2, importFixId, Diagnostics.Add_all_missing_imports); } function codeActionForFixWorker(changes, sourceFile, symbolName2, fix, includeSymbolNameInDescription, program, preferences) { const quotePreference = getQuotePreference(sourceFile, preferences); switch (fix.kind) { case 0: addNamespaceQualifier(changes, sourceFile, fix); return [Diagnostics.Change_0_to_1, symbolName2, `${fix.namespacePrefix}.${symbolName2}`]; case 1: addImportType(changes, sourceFile, fix, quotePreference); return [Diagnostics.Change_0_to_1, symbolName2, getImportTypePrefix(fix.moduleSpecifier, quotePreference) + symbolName2]; case 2: { const { importClauseOrBindingPattern, importKind, addAsTypeOnly, moduleSpecifier } = fix; doAddExistingFix(changes, sourceFile, importClauseOrBindingPattern, importKind === 1 ? { name: symbolName2, addAsTypeOnly } : undefined, importKind === 0 ? [{ name: symbolName2, addAsTypeOnly }] : emptyArray, undefined, preferences); const moduleSpecifierWithoutQuotes = stripQuotes(moduleSpecifier); return includeSymbolNameInDescription ? [Diagnostics.Import_0_from_1, symbolName2, moduleSpecifierWithoutQuotes] : [Diagnostics.Update_import_from_0, moduleSpecifierWithoutQuotes]; } case 3: { const { importKind, moduleSpecifier, addAsTypeOnly, useRequire, qualification } = fix; const getDeclarations = useRequire ? getNewRequires : getNewImports; const defaultImport = importKind === 1 ? { name: symbolName2, addAsTypeOnly } : undefined; const namedImports = importKind === 0 ? [{ name: symbolName2, addAsTypeOnly }] : undefined; const namespaceLikeImport = importKind === 2 || importKind === 3 ? { importKind, name: (qualification == null ? undefined : qualification.namespacePrefix) || symbolName2, addAsTypeOnly } : undefined; insertImports(changes, sourceFile, getDeclarations(moduleSpecifier, quotePreference, defaultImport, namedImports, namespaceLikeImport, program.getCompilerOptions(), preferences), true, preferences); if (qualification) { addNamespaceQualifier(changes, sourceFile, qualification); } return includeSymbolNameInDescription ? [Diagnostics.Import_0_from_1, symbolName2, moduleSpecifier] : [Diagnostics.Add_import_from_0, moduleSpecifier]; } case 4: { const { typeOnlyAliasDeclaration } = fix; const promotedDeclaration = promoteFromTypeOnly(changes, typeOnlyAliasDeclaration, program, sourceFile, preferences); return promotedDeclaration.kind === 277 ? [Diagnostics.Remove_type_from_import_of_0_from_1, symbolName2, getModuleSpecifierText(promotedDeclaration.parent.parent)] : [Diagnostics.Remove_type_from_import_declaration_from_0, getModuleSpecifierText(promotedDeclaration)]; } default: return Debug.assertNever(fix, `Unexpected fix kind ${fix.kind}`); } } function getModuleSpecifierText(promotedDeclaration) { var _a, _b; return promotedDeclaration.kind === 272 ? ((_b = tryCast((_a = tryCast(promotedDeclaration.moduleReference, isExternalModuleReference)) == null ? undefined : _a.expression, isStringLiteralLike)) == null ? undefined : _b.text) || promotedDeclaration.moduleReference.getText() : cast(promotedDeclaration.parent.moduleSpecifier, isStringLiteral).text; } function promoteFromTypeOnly(changes, aliasDeclaration, program, sourceFile, preferences) { const compilerOptions = program.getCompilerOptions(); const convertExistingToTypeOnly = compilerOptions.verbatimModuleSyntax; switch (aliasDeclaration.kind) { case 277: if (aliasDeclaration.isTypeOnly) { if (aliasDeclaration.parent.elements.length > 1) { const newSpecifier = factory.updateImportSpecifier(aliasDeclaration, false, aliasDeclaration.propertyName, aliasDeclaration.name); const { specifierComparer } = ts_OrganizeImports_exports.getNamedImportSpecifierComparerWithDetection(aliasDeclaration.parent.parent.parent, preferences, sourceFile); const insertionIndex = ts_OrganizeImports_exports.getImportSpecifierInsertionIndex(aliasDeclaration.parent.elements, newSpecifier, specifierComparer); if (insertionIndex !== aliasDeclaration.parent.elements.indexOf(aliasDeclaration)) { changes.delete(sourceFile, aliasDeclaration); changes.insertImportSpecifierAtIndex(sourceFile, newSpecifier, aliasDeclaration.parent, insertionIndex); return aliasDeclaration; } } changes.deleteRange(sourceFile, { pos: getTokenPosOfNode(aliasDeclaration.getFirstToken()), end: getTokenPosOfNode(aliasDeclaration.propertyName ?? aliasDeclaration.name) }); return aliasDeclaration; } else { Debug.assert(aliasDeclaration.parent.parent.isTypeOnly); promoteImportClause(aliasDeclaration.parent.parent); return aliasDeclaration.parent.parent; } case 274: promoteImportClause(aliasDeclaration); return aliasDeclaration; case 275: promoteImportClause(aliasDeclaration.parent); return aliasDeclaration.parent; case 272: changes.deleteRange(sourceFile, aliasDeclaration.getChildAt(1)); return aliasDeclaration; default: Debug.failBadSyntaxKind(aliasDeclaration); } function promoteImportClause(importClause) { var _a; changes.delete(sourceFile, getTypeKeywordOfTypeOnlyImport(importClause, sourceFile)); if (!compilerOptions.allowImportingTsExtensions) { const moduleSpecifier = tryGetModuleSpecifierFromDeclaration(importClause.parent); const resolvedModule = moduleSpecifier && ((_a = program.getResolvedModuleFromModuleSpecifier(moduleSpecifier, sourceFile)) == null ? undefined : _a.resolvedModule); if (resolvedModule == null ? undefined : resolvedModule.resolvedUsingTsExtension) { const changedExtension = changeAnyExtension(moduleSpecifier.text, getOutputExtension(moduleSpecifier.text, compilerOptions)); changes.replaceNode(sourceFile, moduleSpecifier, factory.createStringLiteral(changedExtension)); } } if (convertExistingToTypeOnly) { const namedImports = tryCast(importClause.namedBindings, isNamedImports); if (namedImports && namedImports.elements.length > 1) { const sortState = ts_OrganizeImports_exports.getNamedImportSpecifierComparerWithDetection(importClause.parent, preferences, sourceFile); if (sortState.isSorted !== false && aliasDeclaration.kind === 277 && namedImports.elements.indexOf(aliasDeclaration) !== 0) { changes.delete(sourceFile, aliasDeclaration); changes.insertImportSpecifierAtIndex(sourceFile, aliasDeclaration, namedImports, 0); } for (const element of namedImports.elements) { if (element !== aliasDeclaration && !element.isTypeOnly) { changes.insertModifierBefore(sourceFile, 156, element); } } } } } } function doAddExistingFix(changes, sourceFile, clause, defaultImport, namedImports, removeExistingImportSpecifiers, preferences) { var _a; if (clause.kind === 207) { if (removeExistingImportSpecifiers && clause.elements.some((e) => removeExistingImportSpecifiers.has(e))) { changes.replaceNode(sourceFile, clause, factory.createObjectBindingPattern([ ...clause.elements.filter((e) => !removeExistingImportSpecifiers.has(e)), ...defaultImport ? [factory.createBindingElement(undefined, "default", defaultImport.name)] : emptyArray, ...namedImports.map((i) => factory.createBindingElement(undefined, i.propertyName, i.name)) ])); return; } if (defaultImport) { addElementToBindingPattern(clause, defaultImport.name, "default"); } for (const specifier of namedImports) { addElementToBindingPattern(clause, specifier.name, specifier.propertyName); } return; } const promoteFromTypeOnly2 = clause.isTypeOnly && some([defaultImport, ...namedImports], (i) => (i == null ? undefined : i.addAsTypeOnly) === 4); const existingSpecifiers = clause.namedBindings && ((_a = tryCast(clause.namedBindings, isNamedImports)) == null ? undefined : _a.elements); if (defaultImport) { Debug.assert(!clause.name, "Cannot add a default import to an import clause that already has one"); changes.insertNodeAt(sourceFile, clause.getStart(sourceFile), factory.createIdentifier(defaultImport.name), { suffix: ", " }); } if (namedImports.length) { const { specifierComparer, isSorted } = ts_OrganizeImports_exports.getNamedImportSpecifierComparerWithDetection(clause.parent, preferences, sourceFile); const newSpecifiers = toSorted(namedImports.map((namedImport) => factory.createImportSpecifier((!clause.isTypeOnly || promoteFromTypeOnly2) && shouldUseTypeOnly(namedImport, preferences), namedImport.propertyName === undefined ? undefined : factory.createIdentifier(namedImport.propertyName), factory.createIdentifier(namedImport.name))), specifierComparer); if (removeExistingImportSpecifiers) { changes.replaceNode(sourceFile, clause.namedBindings, factory.updateNamedImports(clause.namedBindings, toSorted([...existingSpecifiers.filter((s) => !removeExistingImportSpecifiers.has(s)), ...newSpecifiers], specifierComparer))); } else if ((existingSpecifiers == null ? undefined : existingSpecifiers.length) && isSorted !== false) { const transformedExistingSpecifiers = promoteFromTypeOnly2 && existingSpecifiers ? factory.updateNamedImports(clause.namedBindings, sameMap(existingSpecifiers, (e) => factory.updateImportSpecifier(e, true, e.propertyName, e.name))).elements : existingSpecifiers; for (const spec3 of newSpecifiers) { const insertionIndex = ts_OrganizeImports_exports.getImportSpecifierInsertionIndex(transformedExistingSpecifiers, spec3, specifierComparer); changes.insertImportSpecifierAtIndex(sourceFile, spec3, clause.namedBindings, insertionIndex); } } else if (existingSpecifiers == null ? undefined : existingSpecifiers.length) { for (const spec3 of newSpecifiers) { changes.insertNodeInListAfter(sourceFile, last(existingSpecifiers), spec3, existingSpecifiers); } } else { if (newSpecifiers.length) { const namedImports2 = factory.createNamedImports(newSpecifiers); if (clause.namedBindings) { changes.replaceNode(sourceFile, clause.namedBindings, namedImports2); } else { changes.insertNodeAfter(sourceFile, Debug.checkDefined(clause.name, "Import clause must have either named imports or a default import"), namedImports2); } } } } if (promoteFromTypeOnly2) { changes.delete(sourceFile, getTypeKeywordOfTypeOnlyImport(clause, sourceFile)); if (existingSpecifiers) { for (const specifier of existingSpecifiers) { changes.insertModifierBefore(sourceFile, 156, specifier); } } } function addElementToBindingPattern(bindingPattern, name, propertyName) { const element = factory.createBindingElement(undefined, propertyName, name); if (bindingPattern.elements.length) { changes.insertNodeInListAfter(sourceFile, last(bindingPattern.elements), element); } else { changes.replaceNode(sourceFile, bindingPattern, factory.createObjectBindingPattern([element])); } } } function addNamespaceQualifier(changes, sourceFile, { namespacePrefix, usagePosition }) { changes.insertText(sourceFile, usagePosition, namespacePrefix + "."); } function addImportType(changes, sourceFile, { moduleSpecifier, usagePosition: position }, quotePreference) { changes.insertText(sourceFile, position, getImportTypePrefix(moduleSpecifier, quotePreference)); } function getImportTypePrefix(moduleSpecifier, quotePreference) { const quote2 = getQuoteFromPreference(quotePreference); return `import(${quote2}${moduleSpecifier}${quote2}).`; } function needsTypeOnly({ addAsTypeOnly }) { return addAsTypeOnly === 2; } function shouldUseTypeOnly(info, preferences) { return needsTypeOnly(info) || !!preferences.preferTypeOnlyAutoImports && info.addAsTypeOnly !== 4; } function getNewImports(moduleSpecifier, quotePreference, defaultImport, namedImports, namespaceLikeImport, compilerOptions, preferences) { const quotedModuleSpecifier = makeStringLiteral(moduleSpecifier, quotePreference); let statements; if (defaultImport !== undefined || (namedImports == null ? undefined : namedImports.length)) { const topLevelTypeOnly = (!defaultImport || needsTypeOnly(defaultImport)) && every(namedImports, needsTypeOnly) || (compilerOptions.verbatimModuleSyntax || preferences.preferTypeOnlyAutoImports) && (defaultImport == null ? undefined : defaultImport.addAsTypeOnly) !== 4 && !some(namedImports, (i) => i.addAsTypeOnly === 4); statements = combine(statements, makeImport(defaultImport && factory.createIdentifier(defaultImport.name), namedImports == null ? undefined : namedImports.map((namedImport) => factory.createImportSpecifier(!topLevelTypeOnly && shouldUseTypeOnly(namedImport, preferences), namedImport.propertyName === undefined ? undefined : factory.createIdentifier(namedImport.propertyName), factory.createIdentifier(namedImport.name))), moduleSpecifier, quotePreference, topLevelTypeOnly)); } if (namespaceLikeImport) { const declaration = namespaceLikeImport.importKind === 3 ? factory.createImportEqualsDeclaration(undefined, shouldUseTypeOnly(namespaceLikeImport, preferences), factory.createIdentifier(namespaceLikeImport.name), factory.createExternalModuleReference(quotedModuleSpecifier)) : factory.createImportDeclaration(undefined, factory.createImportClause(shouldUseTypeOnly(namespaceLikeImport, preferences) ? 156 : undefined, undefined, factory.createNamespaceImport(factory.createIdentifier(namespaceLikeImport.name))), quotedModuleSpecifier, undefined); statements = combine(statements, declaration); } return Debug.checkDefined(statements); } function getNewRequires(moduleSpecifier, quotePreference, defaultImport, namedImports, namespaceLikeImport) { const quotedModuleSpecifier = makeStringLiteral(moduleSpecifier, quotePreference); let statements; if (defaultImport || (namedImports == null ? undefined : namedImports.length)) { const bindingElements = (namedImports == null ? undefined : namedImports.map(({ name, propertyName }) => factory.createBindingElement(undefined, propertyName, name))) || []; if (defaultImport) { bindingElements.unshift(factory.createBindingElement(undefined, "default", defaultImport.name)); } const declaration = createConstEqualsRequireDeclaration(factory.createObjectBindingPattern(bindingElements), quotedModuleSpecifier); statements = combine(statements, declaration); } if (namespaceLikeImport) { const declaration = createConstEqualsRequireDeclaration(namespaceLikeImport.name, quotedModuleSpecifier); statements = combine(statements, declaration); } return Debug.checkDefined(statements); } function createConstEqualsRequireDeclaration(name, quotedModuleSpecifier) { return factory.createVariableStatement(undefined, factory.createVariableDeclarationList([ factory.createVariableDeclaration(typeof name === "string" ? factory.createIdentifier(name) : name, undefined, undefined, factory.createCallExpression(factory.createIdentifier("require"), undefined, [quotedModuleSpecifier])) ], 2)); } function symbolFlagsHaveMeaning(flags, meaning) { return meaning === 7 ? true : meaning & 1 ? !!(flags & 111551) : meaning & 2 ? !!(flags & 788968) : meaning & 4 ? !!(flags & 1920) : false; } function getImpliedNodeFormatForEmit(file, program) { return isFullSourceFile(file) ? program.getImpliedNodeFormatForEmit(file) : getImpliedNodeFormatForEmitWorker(file, program.getCompilerOptions()); } function getEmitModuleFormatOfFile(file, program) { return isFullSourceFile(file) ? program.getEmitModuleFormatOfFile(file) : getEmitModuleFormatOfFileWorker(file, program.getCompilerOptions()); } var fixId18 = "addMissingConstraint"; var errorCodes20 = [ Diagnostics.Type_0_is_not_comparable_to_type_1.code, Diagnostics.Type_0_is_not_assignable_to_type_1_Two_different_types_with_this_name_exist_but_they_are_unrelated.code, Diagnostics.Type_0_is_not_assignable_to_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_types_of_the_target_s_properties.code, Diagnostics.Type_0_is_not_assignable_to_type_1.code, Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1_with_exactOptionalPropertyTypes_Colon_true_Consider_adding_undefined_to_the_types_of_the_target_s_properties.code, Diagnostics.Property_0_is_incompatible_with_index_signature.code, Diagnostics.Property_0_in_type_1_is_not_assignable_to_type_2.code, Diagnostics.Type_0_does_not_satisfy_the_constraint_1.code ]; registerCodeFix({ errorCodes: errorCodes20, getCodeActions(context) { const { sourceFile, span, program, preferences, host } = context; const info = getInfo6(program, sourceFile, span); if (info === undefined) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addMissingConstraint(t, program, preferences, host, sourceFile, info)); return [createCodeFixAction(fixId18, changes, Diagnostics.Add_extends_constraint, fixId18, Diagnostics.Add_extends_constraint_to_all_type_parameters)]; }, fixIds: [fixId18], getAllCodeActions: (context) => { const { program, preferences, host } = context; const seen = /* @__PURE__ */ new Set; return createCombinedCodeActions(ts_textChanges_exports.ChangeTracker.with(context, (changes) => { eachDiagnostic(context, errorCodes20, (diag2) => { const info = getInfo6(program, diag2.file, createTextSpan(diag2.start, diag2.length)); if (info) { if (addToSeen(seen, getNodeId(info.declaration))) { return addMissingConstraint(changes, program, preferences, host, diag2.file, info); } } return; }); })); } }); function getInfo6(program, sourceFile, span) { const diag2 = find(program.getSemanticDiagnostics(sourceFile), (diag3) => diag3.start === span.start && diag3.length === span.length); if (diag2 === undefined || diag2.relatedInformation === undefined) return; const related = find(diag2.relatedInformation, (related2) => related2.code === Diagnostics.This_type_parameter_might_need_an_extends_0_constraint.code); if (related === undefined || related.file === undefined || related.start === undefined || related.length === undefined) return; let declaration = findAncestorMatchingSpan(related.file, createTextSpan(related.start, related.length)); if (declaration === undefined) return; if (isIdentifier(declaration) && isTypeParameterDeclaration(declaration.parent)) { declaration = declaration.parent; } if (isTypeParameterDeclaration(declaration)) { if (isMappedTypeNode(declaration.parent)) return; const token = getTokenAtPosition(sourceFile, span.start); const checker = program.getTypeChecker(); const constraint = tryGetConstraintType(checker, token) || tryGetConstraintFromDiagnosticMessage(related.messageText); return { constraint, declaration, token }; } return; } function addMissingConstraint(changes, program, preferences, host, sourceFile, info) { const { declaration, constraint } = info; const checker = program.getTypeChecker(); if (isString(constraint)) { changes.insertText(sourceFile, declaration.name.end, ` extends ${constraint}`); } else { const scriptTarget = getEmitScriptTarget(program.getCompilerOptions()); const tracker = getNoopSymbolTrackerWithResolver({ program, host }); const importAdder = createImportAdder(sourceFile, program, preferences, host); const typeNode = typeToAutoImportableTypeNode(checker, importAdder, constraint, undefined, scriptTarget, undefined, undefined, tracker); if (typeNode) { changes.replaceNode(sourceFile, declaration, factory.updateTypeParameterDeclaration(declaration, undefined, declaration.name, typeNode, declaration.default)); importAdder.writeFixes(changes); } } } function tryGetConstraintFromDiagnosticMessage(messageText) { const [, constraint] = flattenDiagnosticMessageText(messageText, ` `, 0).match(/`extends (.*)`/) || []; return constraint; } function tryGetConstraintType(checker, node) { if (isTypeNode(node.parent)) { return checker.getTypeArgumentConstraint(node.parent); } const contextualType = isExpression(node) ? checker.getContextualType(node) : undefined; return contextualType || checker.getTypeAtLocation(node); } var fixName = "fixOverrideModifier"; var fixAddOverrideId = "fixAddOverrideModifier"; var fixRemoveOverrideId = "fixRemoveOverrideModifier"; var errorCodes21 = [ Diagnostics.This_member_cannot_have_an_override_modifier_because_it_is_not_declared_in_the_base_class_0.code, Diagnostics.This_member_cannot_have_an_override_modifier_because_its_containing_class_0_does_not_extend_another_class.code, Diagnostics.This_member_must_have_an_override_modifier_because_it_overrides_an_abstract_method_that_is_declared_in_the_base_class_0.code, Diagnostics.This_member_must_have_an_override_modifier_because_it_overrides_a_member_in_the_base_class_0.code, Diagnostics.This_parameter_property_must_have_an_override_modifier_because_it_overrides_a_member_in_base_class_0.code, Diagnostics.This_member_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_class_0.code, Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_its_containing_class_0_does_not_extend_another_class.code, Diagnostics.This_parameter_property_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_class_0.code, Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_it_is_not_declared_in_the_base_class_0.code ]; var errorCodeFixIdMap = { [Diagnostics.This_member_must_have_an_override_modifier_because_it_overrides_a_member_in_the_base_class_0.code]: { descriptions: Diagnostics.Add_override_modifier, fixId: fixAddOverrideId, fixAllDescriptions: Diagnostics.Add_all_missing_override_modifiers }, [Diagnostics.This_member_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_class_0.code]: { descriptions: Diagnostics.Add_override_modifier, fixId: fixAddOverrideId, fixAllDescriptions: Diagnostics.Add_all_missing_override_modifiers }, [Diagnostics.This_member_cannot_have_an_override_modifier_because_its_containing_class_0_does_not_extend_another_class.code]: { descriptions: Diagnostics.Remove_override_modifier, fixId: fixRemoveOverrideId, fixAllDescriptions: Diagnostics.Remove_all_unnecessary_override_modifiers }, [Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_its_containing_class_0_does_not_extend_another_class.code]: { descriptions: Diagnostics.Remove_override_modifier, fixId: fixRemoveOverrideId, fixAllDescriptions: Diagnostics.Remove_override_modifier }, [Diagnostics.This_parameter_property_must_have_an_override_modifier_because_it_overrides_a_member_in_base_class_0.code]: { descriptions: Diagnostics.Add_override_modifier, fixId: fixAddOverrideId, fixAllDescriptions: Diagnostics.Add_all_missing_override_modifiers }, [Diagnostics.This_parameter_property_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_class_0.code]: { descriptions: Diagnostics.Add_override_modifier, fixId: fixAddOverrideId, fixAllDescriptions: Diagnostics.Add_all_missing_override_modifiers }, [Diagnostics.This_member_must_have_an_override_modifier_because_it_overrides_an_abstract_method_that_is_declared_in_the_base_class_0.code]: { descriptions: Diagnostics.Add_override_modifier, fixId: fixAddOverrideId, fixAllDescriptions: Diagnostics.Remove_all_unnecessary_override_modifiers }, [Diagnostics.This_member_cannot_have_an_override_modifier_because_it_is_not_declared_in_the_base_class_0.code]: { descriptions: Diagnostics.Remove_override_modifier, fixId: fixRemoveOverrideId, fixAllDescriptions: Diagnostics.Remove_all_unnecessary_override_modifiers }, [Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_it_is_not_declared_in_the_base_class_0.code]: { descriptions: Diagnostics.Remove_override_modifier, fixId: fixRemoveOverrideId, fixAllDescriptions: Diagnostics.Remove_all_unnecessary_override_modifiers } }; registerCodeFix({ errorCodes: errorCodes21, getCodeActions: function getCodeActionsToFixOverrideModifierIssues(context) { const { errorCode, span } = context; const info = errorCodeFixIdMap[errorCode]; if (!info) return emptyArray; const { descriptions, fixId: fixId56, fixAllDescriptions } = info; const changes = ts_textChanges_exports.ChangeTracker.with(context, (changes2) => dispatchChanges(changes2, context, errorCode, span.start)); return [ createCodeFixActionMaybeFixAll(fixName, changes, descriptions, fixId56, fixAllDescriptions) ]; }, fixIds: [fixName, fixAddOverrideId, fixRemoveOverrideId], getAllCodeActions: (context) => codeFixAll(context, errorCodes21, (changes, diag2) => { const { code, start } = diag2; const info = errorCodeFixIdMap[code]; if (!info || info.fixId !== context.fixId) { return; } dispatchChanges(changes, context, code, start); }) }); function dispatchChanges(changeTracker, context, errorCode, pos) { switch (errorCode) { case Diagnostics.This_member_must_have_an_override_modifier_because_it_overrides_a_member_in_the_base_class_0.code: case Diagnostics.This_member_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_class_0.code: case Diagnostics.This_member_must_have_an_override_modifier_because_it_overrides_an_abstract_method_that_is_declared_in_the_base_class_0.code: case Diagnostics.This_parameter_property_must_have_an_override_modifier_because_it_overrides_a_member_in_base_class_0.code: case Diagnostics.This_parameter_property_must_have_a_JSDoc_comment_with_an_override_tag_because_it_overrides_a_member_in_the_base_class_0.code: return doAddOverrideModifierChange(changeTracker, context.sourceFile, pos); case Diagnostics.This_member_cannot_have_an_override_modifier_because_it_is_not_declared_in_the_base_class_0.code: case Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_it_is_not_declared_in_the_base_class_0.code: case Diagnostics.This_member_cannot_have_an_override_modifier_because_its_containing_class_0_does_not_extend_another_class.code: case Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_its_containing_class_0_does_not_extend_another_class.code: return doRemoveOverrideModifierChange(changeTracker, context.sourceFile, pos); default: Debug.fail("Unexpected error code: " + errorCode); } } function doAddOverrideModifierChange(changeTracker, sourceFile, pos) { const classElement = findContainerClassElementLike(sourceFile, pos); if (isSourceFileJS(sourceFile)) { changeTracker.addJSDocTags(sourceFile, classElement, [factory.createJSDocOverrideTag(factory.createIdentifier("override"))]); return; } const modifiers = classElement.modifiers || emptyArray; const staticModifier = find(modifiers, isStaticModifier); const abstractModifier = find(modifiers, isAbstractModifier); const accessibilityModifier = find(modifiers, (m) => isAccessibilityModifier(m.kind)); const lastDecorator = findLast(modifiers, isDecorator); const modifierPos = abstractModifier ? abstractModifier.end : staticModifier ? staticModifier.end : accessibilityModifier ? accessibilityModifier.end : lastDecorator ? skipTrivia2(sourceFile.text, lastDecorator.end) : classElement.getStart(sourceFile); const options = accessibilityModifier || staticModifier || abstractModifier ? { prefix: " " } : { suffix: " " }; changeTracker.insertModifierAt(sourceFile, modifierPos, 164, options); } function doRemoveOverrideModifierChange(changeTracker, sourceFile, pos) { const classElement = findContainerClassElementLike(sourceFile, pos); if (isSourceFileJS(sourceFile)) { changeTracker.filterJSDocTags(sourceFile, classElement, not(isJSDocOverrideTag)); return; } const overrideModifier = find(classElement.modifiers, isOverrideModifier); Debug.assertIsDefined(overrideModifier); changeTracker.deleteModifier(sourceFile, overrideModifier); } function isClassElementLikeHasJSDoc(node) { switch (node.kind) { case 177: case 173: case 175: case 178: case 179: return true; case 170: return isParameterPropertyDeclaration(node, node.parent); default: return false; } } function findContainerClassElementLike(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); const classElement = findAncestor(token, (node) => { if (isClassLike(node)) return "quit"; return isClassElementLikeHasJSDoc(node); }); Debug.assert(classElement && isClassElementLikeHasJSDoc(classElement)); return classElement; } var fixId19 = "fixNoPropertyAccessFromIndexSignature"; var errorCodes22 = [ Diagnostics.Property_0_comes_from_an_index_signature_so_it_must_be_accessed_with_0.code ]; registerCodeFix({ errorCodes: errorCodes22, fixIds: [fixId19], getCodeActions(context) { const { sourceFile, span, preferences } = context; const property = getPropertyAccessExpression(sourceFile, span.start); const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange14(t, context.sourceFile, property, preferences)); return [createCodeFixAction(fixId19, changes, [Diagnostics.Use_element_access_for_0, property.name.text], fixId19, Diagnostics.Use_element_access_for_all_undeclared_properties)]; }, getAllCodeActions: (context) => codeFixAll(context, errorCodes22, (changes, diag2) => doChange14(changes, diag2.file, getPropertyAccessExpression(diag2.file, diag2.start), context.preferences)) }); function doChange14(changes, sourceFile, node, preferences) { const quotePreference = getQuotePreference(sourceFile, preferences); const argumentsExpression = factory.createStringLiteral(node.name.text, quotePreference === 0); changes.replaceNode(sourceFile, node, isPropertyAccessChain(node) ? factory.createElementAccessChain(node.expression, node.questionDotToken, argumentsExpression) : factory.createElementAccessExpression(node.expression, argumentsExpression)); } function getPropertyAccessExpression(sourceFile, pos) { return cast(getTokenAtPosition(sourceFile, pos).parent, isPropertyAccessExpression); } var fixId20 = "fixImplicitThis"; var errorCodes23 = [Diagnostics.this_implicitly_has_type_any_because_it_does_not_have_a_type_annotation.code]; registerCodeFix({ errorCodes: errorCodes23, getCodeActions: function getCodeActionsToFixImplicitThis(context) { const { sourceFile, program, span } = context; let diagnostic; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => { diagnostic = doChange15(t, sourceFile, span.start, program.getTypeChecker()); }); return diagnostic ? [createCodeFixAction(fixId20, changes, diagnostic, fixId20, Diagnostics.Fix_all_implicit_this_errors)] : emptyArray; }, fixIds: [fixId20], getAllCodeActions: (context) => codeFixAll(context, errorCodes23, (changes, diag2) => { doChange15(changes, diag2.file, diag2.start, context.program.getTypeChecker()); }) }); function doChange15(changes, sourceFile, pos, checker) { const token = getTokenAtPosition(sourceFile, pos); if (!isThis(token)) return; const fn = getThisContainer(token, false, false); if (!isFunctionDeclaration(fn) && !isFunctionExpression(fn)) return; if (!isSourceFile(getThisContainer(fn, false, false))) { const fnKeyword = Debug.checkDefined(findChildOfKind(fn, 100, sourceFile)); const { name } = fn; const body = Debug.checkDefined(fn.body); if (isFunctionExpression(fn)) { if (name && ts_FindAllReferences_exports.Core.isSymbolReferencedInFile(name, checker, sourceFile, body)) { return; } changes.delete(sourceFile, fnKeyword); if (name) { changes.delete(sourceFile, name); } changes.insertText(sourceFile, body.pos, " =>"); return [Diagnostics.Convert_function_expression_0_to_arrow_function, name ? name.text : ANONYMOUS]; } else { changes.replaceNode(sourceFile, fnKeyword, factory.createToken(87)); changes.insertText(sourceFile, name.end, " = "); changes.insertText(sourceFile, body.pos, " =>"); return [Diagnostics.Convert_function_declaration_0_to_arrow_function, name.text]; } } } var fixId21 = "fixImportNonExportedMember"; var errorCodes24 = [ Diagnostics.Module_0_declares_1_locally_but_it_is_not_exported.code ]; registerCodeFix({ errorCodes: errorCodes24, fixIds: [fixId21], getCodeActions(context) { const { sourceFile, span, program } = context; const info = getInfo7(sourceFile, span.start, program); if (info === undefined) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange16(t, program, info)); return [createCodeFixAction(fixId21, changes, [Diagnostics.Export_0_from_module_1, info.exportName.node.text, info.moduleSpecifier], fixId21, Diagnostics.Export_all_referenced_locals)]; }, getAllCodeActions(context) { const { program } = context; return createCombinedCodeActions(ts_textChanges_exports.ChangeTracker.with(context, (changes) => { const exports22 = /* @__PURE__ */ new Map; eachDiagnostic(context, errorCodes24, (diag2) => { const info = getInfo7(diag2.file, diag2.start, program); if (info === undefined) return; const { exportName, node, moduleSourceFile } = info; if (tryGetExportDeclaration(moduleSourceFile, exportName.isTypeOnly) === undefined && canHaveExportModifier(node)) { changes.insertExportModifier(moduleSourceFile, node); } else { const moduleExports = exports22.get(moduleSourceFile) || { typeOnlyExports: [], exports: [] }; if (exportName.isTypeOnly) { moduleExports.typeOnlyExports.push(exportName); } else { moduleExports.exports.push(exportName); } exports22.set(moduleSourceFile, moduleExports); } }); exports22.forEach((moduleExports, moduleSourceFile) => { const exportDeclaration = tryGetExportDeclaration(moduleSourceFile, true); if (exportDeclaration && exportDeclaration.isTypeOnly) { doChanges(changes, program, moduleSourceFile, moduleExports.typeOnlyExports, exportDeclaration); doChanges(changes, program, moduleSourceFile, moduleExports.exports, tryGetExportDeclaration(moduleSourceFile, false)); } else { doChanges(changes, program, moduleSourceFile, [...moduleExports.exports, ...moduleExports.typeOnlyExports], exportDeclaration); } }); })); } }); function getInfo7(sourceFile, pos, program) { var _a, _b; const token = getTokenAtPosition(sourceFile, pos); if (isIdentifier(token)) { const importDeclaration = findAncestor(token, isImportDeclaration); if (importDeclaration === undefined) return; const moduleSpecifier = isStringLiteral(importDeclaration.moduleSpecifier) ? importDeclaration.moduleSpecifier : undefined; if (moduleSpecifier === undefined) return; const resolvedModule = (_a = program.getResolvedModuleFromModuleSpecifier(moduleSpecifier, sourceFile)) == null ? undefined : _a.resolvedModule; if (resolvedModule === undefined) return; const moduleSourceFile = program.getSourceFile(resolvedModule.resolvedFileName); if (moduleSourceFile === undefined || isSourceFileFromLibrary(program, moduleSourceFile)) return; const moduleSymbol = moduleSourceFile.symbol; const locals = (_b = tryCast(moduleSymbol.valueDeclaration, canHaveLocals)) == null ? undefined : _b.locals; if (locals === undefined) return; const localSymbol = locals.get(token.escapedText); if (localSymbol === undefined) return; const node = getNodeOfSymbol(localSymbol); if (node === undefined) return; const exportName = { node: token, isTypeOnly: isTypeDeclaration(node) }; return { exportName, node, moduleSourceFile, moduleSpecifier: moduleSpecifier.text }; } return; } function doChange16(changes, program, { exportName, node, moduleSourceFile }) { const exportDeclaration = tryGetExportDeclaration(moduleSourceFile, exportName.isTypeOnly); if (exportDeclaration) { updateExport(changes, program, moduleSourceFile, exportDeclaration, [exportName]); } else if (canHaveExportModifier(node)) { changes.insertExportModifier(moduleSourceFile, node); } else { createExport(changes, program, moduleSourceFile, [exportName]); } } function doChanges(changes, program, sourceFile, moduleExports, node) { if (length(moduleExports)) { if (node) { updateExport(changes, program, sourceFile, node, moduleExports); } else { createExport(changes, program, sourceFile, moduleExports); } } } function tryGetExportDeclaration(sourceFile, isTypeOnly) { const predicate = (node) => isExportDeclaration(node) && (isTypeOnly && node.isTypeOnly || !node.isTypeOnly); return findLast(sourceFile.statements, predicate); } function updateExport(changes, program, sourceFile, node, names) { const namedExports = node.exportClause && isNamedExports(node.exportClause) ? node.exportClause.elements : factory.createNodeArray([]); const allowTypeModifier = !node.isTypeOnly && !!(getIsolatedModules(program.getCompilerOptions()) || find(namedExports, (e) => e.isTypeOnly)); changes.replaceNode(sourceFile, node, factory.updateExportDeclaration(node, node.modifiers, node.isTypeOnly, factory.createNamedExports(factory.createNodeArray([...namedExports, ...createExportSpecifiers(names, allowTypeModifier)], namedExports.hasTrailingComma)), node.moduleSpecifier, node.attributes)); } function createExport(changes, program, sourceFile, names) { changes.insertNodeAtEndOfScope(sourceFile, sourceFile, factory.createExportDeclaration(undefined, false, factory.createNamedExports(createExportSpecifiers(names, getIsolatedModules(program.getCompilerOptions()))), undefined, undefined)); } function createExportSpecifiers(names, allowTypeModifier) { return factory.createNodeArray(map(names, (n) => factory.createExportSpecifier(allowTypeModifier && n.isTypeOnly, undefined, n.node))); } function getNodeOfSymbol(symbol) { if (symbol.valueDeclaration === undefined) { return firstOrUndefined(symbol.declarations); } const declaration = symbol.valueDeclaration; const variableStatement = isVariableDeclaration(declaration) ? tryCast(declaration.parent.parent, isVariableStatement) : undefined; return variableStatement && length(variableStatement.declarationList.declarations) === 1 ? variableStatement : declaration; } var fixId22 = "fixIncorrectNamedTupleSyntax"; var errorCodes25 = [ Diagnostics.A_labeled_tuple_element_is_declared_as_optional_with_a_question_mark_after_the_name_and_before_the_colon_rather_than_after_the_type.code, Diagnostics.A_labeled_tuple_element_is_declared_as_rest_with_a_before_the_name_rather_than_before_the_type.code ]; registerCodeFix({ errorCodes: errorCodes25, getCodeActions: function getCodeActionsToFixIncorrectNamedTupleSyntax(context) { const { sourceFile, span } = context; const namedTupleMember = getNamedTupleMember(sourceFile, span.start); const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange17(t, sourceFile, namedTupleMember)); return [createCodeFixAction(fixId22, changes, Diagnostics.Move_labeled_tuple_element_modifiers_to_labels, fixId22, Diagnostics.Move_labeled_tuple_element_modifiers_to_labels)]; }, fixIds: [fixId22] }); function getNamedTupleMember(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); return findAncestor(token, (t) => t.kind === 203); } function doChange17(changes, sourceFile, namedTupleMember) { if (!namedTupleMember) { return; } let unwrappedType = namedTupleMember.type; let sawOptional = false; let sawRest = false; while (unwrappedType.kind === 191 || unwrappedType.kind === 192 || unwrappedType.kind === 197) { if (unwrappedType.kind === 191) { sawOptional = true; } else if (unwrappedType.kind === 192) { sawRest = true; } unwrappedType = unwrappedType.type; } const updated = factory.updateNamedTupleMember(namedTupleMember, namedTupleMember.dotDotDotToken || (sawRest ? factory.createToken(26) : undefined), namedTupleMember.name, namedTupleMember.questionToken || (sawOptional ? factory.createToken(58) : undefined), unwrappedType); if (updated === namedTupleMember) { return; } changes.replaceNode(sourceFile, namedTupleMember, updated); } var fixId23 = "fixSpelling"; var errorCodes26 = [ Diagnostics.Property_0_does_not_exist_on_type_1_Did_you_mean_2.code, Diagnostics.Property_0_may_not_exist_on_type_1_Did_you_mean_2.code, Diagnostics.Cannot_find_name_0_Did_you_mean_1.code, Diagnostics.Could_not_find_name_0_Did_you_mean_1.code, Diagnostics.Cannot_find_namespace_0_Did_you_mean_1.code, Diagnostics.Cannot_find_name_0_Did_you_mean_the_instance_member_this_0.code, Diagnostics.Cannot_find_name_0_Did_you_mean_the_static_member_1_0.code, Diagnostics._0_has_no_exported_member_named_1_Did_you_mean_2.code, Diagnostics.This_member_cannot_have_an_override_modifier_because_it_is_not_declared_in_the_base_class_0_Did_you_mean_1.code, Diagnostics.This_member_cannot_have_a_JSDoc_comment_with_an_override_tag_because_it_is_not_declared_in_the_base_class_0_Did_you_mean_1.code, Diagnostics.No_overload_matches_this_call.code, Diagnostics.Type_0_is_not_assignable_to_type_1.code ]; registerCodeFix({ errorCodes: errorCodes26, getCodeActions(context) { const { sourceFile, errorCode } = context; const info = getInfo8(sourceFile, context.span.start, context, errorCode); if (!info) return; const { node, suggestedSymbol } = info; const target = getEmitScriptTarget(context.host.getCompilationSettings()); const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange18(t, sourceFile, node, suggestedSymbol, target)); return [createCodeFixAction("spelling", changes, [Diagnostics.Change_spelling_to_0, symbolName(suggestedSymbol)], fixId23, Diagnostics.Fix_all_detected_spelling_errors)]; }, fixIds: [fixId23], getAllCodeActions: (context) => codeFixAll(context, errorCodes26, (changes, diag2) => { const info = getInfo8(diag2.file, diag2.start, context, diag2.code); const target = getEmitScriptTarget(context.host.getCompilationSettings()); if (info) doChange18(changes, context.sourceFile, info.node, info.suggestedSymbol, target); }) }); function getInfo8(sourceFile, pos, context, errorCode) { const node = getTokenAtPosition(sourceFile, pos); const parent2 = node.parent; if ((errorCode === Diagnostics.No_overload_matches_this_call.code || errorCode === Diagnostics.Type_0_is_not_assignable_to_type_1.code) && !isJsxAttribute(parent2)) return; const checker = context.program.getTypeChecker(); let suggestedSymbol; if (isPropertyAccessExpression(parent2) && parent2.name === node) { Debug.assert(isMemberName(node), "Expected an identifier for spelling (property access)"); let containingType = checker.getTypeAtLocation(parent2.expression); if (parent2.flags & 64) { containingType = checker.getNonNullableType(containingType); } suggestedSymbol = checker.getSuggestedSymbolForNonexistentProperty(node, containingType); } else if (isBinaryExpression(parent2) && parent2.operatorToken.kind === 103 && parent2.left === node && isPrivateIdentifier(node)) { const receiverType = checker.getTypeAtLocation(parent2.right); suggestedSymbol = checker.getSuggestedSymbolForNonexistentProperty(node, receiverType); } else if (isQualifiedName(parent2) && parent2.right === node) { const symbol = checker.getSymbolAtLocation(parent2.left); if (symbol && symbol.flags & 1536) { suggestedSymbol = checker.getSuggestedSymbolForNonexistentModule(parent2.right, symbol); } } else if (isImportSpecifier(parent2) && parent2.name === node) { Debug.assertNode(node, isIdentifier, "Expected an identifier for spelling (import)"); const importDeclaration = findAncestor(node, isImportDeclaration); const resolvedSourceFile = getResolvedSourceFileFromImportDeclaration(context, importDeclaration, sourceFile); if (resolvedSourceFile && resolvedSourceFile.symbol) { suggestedSymbol = checker.getSuggestedSymbolForNonexistentModule(node, resolvedSourceFile.symbol); } } else if (isJsxAttribute(parent2) && parent2.name === node) { Debug.assertNode(node, isIdentifier, "Expected an identifier for JSX attribute"); const tag = findAncestor(node, isJsxOpeningLikeElement); const props = checker.getContextualTypeForArgumentAtIndex(tag, 0); suggestedSymbol = checker.getSuggestedSymbolForNonexistentJSXAttribute(node, props); } else if (hasOverrideModifier(parent2) && isClassElement(parent2) && parent2.name === node) { const baseDeclaration = findAncestor(node, isClassLike); const baseTypeNode = baseDeclaration ? getEffectiveBaseTypeNode(baseDeclaration) : undefined; const baseType = baseTypeNode ? checker.getTypeAtLocation(baseTypeNode) : undefined; if (baseType) { suggestedSymbol = checker.getSuggestedSymbolForNonexistentClassMember(getTextOfNode(node), baseType); } } else { const meaning = getMeaningFromLocation(node); const name = getTextOfNode(node); Debug.assert(name !== undefined, "name should be defined"); suggestedSymbol = checker.getSuggestedSymbolForNonexistentSymbol(node, name, convertSemanticMeaningToSymbolFlags(meaning)); } return suggestedSymbol === undefined ? undefined : { node, suggestedSymbol }; } function doChange18(changes, sourceFile, node, suggestedSymbol, target) { const suggestion = symbolName(suggestedSymbol); if (!isIdentifierText(suggestion, target) && isPropertyAccessExpression(node.parent)) { const valDecl = suggestedSymbol.valueDeclaration; if (valDecl && isNamedDeclaration(valDecl) && isPrivateIdentifier(valDecl.name)) { changes.replaceNode(sourceFile, node, factory.createIdentifier(suggestion)); } else { changes.replaceNode(sourceFile, node.parent, factory.createElementAccessExpression(node.parent.expression, factory.createStringLiteral(suggestion))); } } else { changes.replaceNode(sourceFile, node, factory.createIdentifier(suggestion)); } } function convertSemanticMeaningToSymbolFlags(meaning) { let flags = 0; if (meaning & 4) { flags |= 1920; } if (meaning & 2) { flags |= 788968; } if (meaning & 1) { flags |= 111551; } return flags; } function getResolvedSourceFileFromImportDeclaration(context, importDeclaration, importingFile) { var _a; if (!importDeclaration || !isStringLiteralLike(importDeclaration.moduleSpecifier)) return; const resolvedModule = (_a = context.program.getResolvedModuleFromModuleSpecifier(importDeclaration.moduleSpecifier, importingFile)) == null ? undefined : _a.resolvedModule; if (!resolvedModule) return; return context.program.getSourceFile(resolvedModule.resolvedFileName); } var fixId24 = "returnValueCorrect"; var fixIdAddReturnStatement = "fixAddReturnStatement"; var fixRemoveBracesFromArrowFunctionBody = "fixRemoveBracesFromArrowFunctionBody"; var fixIdWrapTheBlockWithParen = "fixWrapTheBlockWithParen"; var errorCodes27 = [ Diagnostics.A_function_whose_declared_type_is_neither_undefined_void_nor_any_must_return_a_value.code, Diagnostics.Type_0_is_not_assignable_to_type_1.code, Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1.code ]; registerCodeFix({ errorCodes: errorCodes27, fixIds: [fixIdAddReturnStatement, fixRemoveBracesFromArrowFunctionBody, fixIdWrapTheBlockWithParen], getCodeActions: function getCodeActionsToCorrectReturnValue(context) { const { program, sourceFile, span: { start }, errorCode } = context; const info = getInfo9(program.getTypeChecker(), sourceFile, start, errorCode); if (!info) return; if (info.kind === 0) { return append([getActionForfixAddReturnStatement(context, info.expression, info.statement)], isArrowFunction(info.declaration) ? getActionForFixRemoveBracesFromArrowFunctionBody(context, info.declaration, info.expression, info.commentSource) : undefined); } else { return [getActionForfixWrapTheBlockWithParen(context, info.declaration, info.expression)]; } }, getAllCodeActions: (context) => codeFixAll(context, errorCodes27, (changes, diag2) => { const info = getInfo9(context.program.getTypeChecker(), diag2.file, diag2.start, diag2.code); if (!info) return; switch (context.fixId) { case fixIdAddReturnStatement: addReturnStatement(changes, diag2.file, info.expression, info.statement); break; case fixRemoveBracesFromArrowFunctionBody: if (!isArrowFunction(info.declaration)) return; removeBlockBodyBrace(changes, diag2.file, info.declaration, info.expression, info.commentSource, false); break; case fixIdWrapTheBlockWithParen: if (!isArrowFunction(info.declaration)) return; wrapBlockWithParen(changes, diag2.file, info.declaration, info.expression); break; default: Debug.fail(JSON.stringify(context.fixId)); } }) }); function createObjectTypeFromLabeledExpression(checker, label, expression) { const member = checker.createSymbol(4, label.escapedText); member.links.type = checker.getTypeAtLocation(expression); const members = createSymbolTable([member]); return checker.createAnonymousType(undefined, members, [], [], []); } function getFixInfo(checker, declaration, expectType, isFunctionType) { if (!declaration.body || !isBlock(declaration.body) || length(declaration.body.statements) !== 1) return; const firstStatement = first(declaration.body.statements); if (isExpressionStatement(firstStatement) && checkFixedAssignableTo(checker, declaration, checker.getTypeAtLocation(firstStatement.expression), expectType, isFunctionType)) { return { declaration, kind: 0, expression: firstStatement.expression, statement: firstStatement, commentSource: firstStatement.expression }; } else if (isLabeledStatement(firstStatement) && isExpressionStatement(firstStatement.statement)) { const node = factory.createObjectLiteralExpression([factory.createPropertyAssignment(firstStatement.label, firstStatement.statement.expression)]); const nodeType = createObjectTypeFromLabeledExpression(checker, firstStatement.label, firstStatement.statement.expression); if (checkFixedAssignableTo(checker, declaration, nodeType, expectType, isFunctionType)) { return isArrowFunction(declaration) ? { declaration, kind: 1, expression: node, statement: firstStatement, commentSource: firstStatement.statement.expression } : { declaration, kind: 0, expression: node, statement: firstStatement, commentSource: firstStatement.statement.expression }; } } else if (isBlock(firstStatement) && length(firstStatement.statements) === 1) { const firstBlockStatement = first(firstStatement.statements); if (isLabeledStatement(firstBlockStatement) && isExpressionStatement(firstBlockStatement.statement)) { const node = factory.createObjectLiteralExpression([factory.createPropertyAssignment(firstBlockStatement.label, firstBlockStatement.statement.expression)]); const nodeType = createObjectTypeFromLabeledExpression(checker, firstBlockStatement.label, firstBlockStatement.statement.expression); if (checkFixedAssignableTo(checker, declaration, nodeType, expectType, isFunctionType)) { return { declaration, kind: 0, expression: node, statement: firstStatement, commentSource: firstBlockStatement }; } } } return; } function checkFixedAssignableTo(checker, declaration, exprType, type, isFunctionType) { if (isFunctionType) { const sig = checker.getSignatureFromDeclaration(declaration); if (sig) { if (hasSyntacticModifier(declaration, 1024)) { exprType = checker.createPromiseType(exprType); } const newSig = checker.createSignature(declaration, sig.typeParameters, sig.thisParameter, sig.parameters, exprType, undefined, sig.minArgumentCount, sig.flags); exprType = checker.createAnonymousType(undefined, createSymbolTable(), [newSig], [], []); } else { exprType = checker.getAnyType(); } } return checker.isTypeAssignableTo(exprType, type); } function getInfo9(checker, sourceFile, position, errorCode) { const node = getTokenAtPosition(sourceFile, position); if (!node.parent) return; const declaration = findAncestor(node.parent, isFunctionLikeDeclaration); switch (errorCode) { case Diagnostics.A_function_whose_declared_type_is_neither_undefined_void_nor_any_must_return_a_value.code: if (!declaration || !declaration.body || !declaration.type || !rangeContainsRange(declaration.type, node)) return; return getFixInfo(checker, declaration, checker.getTypeFromTypeNode(declaration.type), false); case Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1.code: if (!declaration || !isCallExpression(declaration.parent) || !declaration.body) return; const pos = declaration.parent.arguments.indexOf(declaration); if (pos === -1) return; const type = checker.getContextualTypeForArgumentAtIndex(declaration.parent, pos); if (!type) return; return getFixInfo(checker, declaration, type, true); case Diagnostics.Type_0_is_not_assignable_to_type_1.code: if (!isDeclarationName(node) || !isVariableLike(node.parent) && !isJsxAttribute(node.parent)) return; const initializer = getVariableLikeInitializer(node.parent); if (!initializer || !isFunctionLikeDeclaration(initializer) || !initializer.body) return; return getFixInfo(checker, initializer, checker.getTypeAtLocation(node.parent), true); } return; } function getVariableLikeInitializer(declaration) { switch (declaration.kind) { case 261: case 170: case 209: case 173: case 304: return declaration.initializer; case 292: return declaration.initializer && (isJsxExpression(declaration.initializer) ? declaration.initializer.expression : undefined); case 305: case 172: case 307: case 349: case 342: return; } } function addReturnStatement(changes, sourceFile, expression, statement) { suppressLeadingAndTrailingTrivia(expression); const probablyNeedSemi = probablyUsesSemicolons(sourceFile); changes.replaceNode(sourceFile, statement, factory.createReturnStatement(expression), { leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.Exclude, trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.Exclude, suffix: probablyNeedSemi ? ";" : undefined }); } function removeBlockBodyBrace(changes, sourceFile, declaration, expression, commentSource, withParen) { const newBody = withParen || needsParentheses(expression) ? factory.createParenthesizedExpression(expression) : expression; suppressLeadingAndTrailingTrivia(commentSource); copyComments(commentSource, newBody); changes.replaceNode(sourceFile, declaration.body, newBody); } function wrapBlockWithParen(changes, sourceFile, declaration, expression) { changes.replaceNode(sourceFile, declaration.body, factory.createParenthesizedExpression(expression)); } function getActionForfixAddReturnStatement(context, expression, statement) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addReturnStatement(t, context.sourceFile, expression, statement)); return createCodeFixAction(fixId24, changes, Diagnostics.Add_a_return_statement, fixIdAddReturnStatement, Diagnostics.Add_all_missing_return_statement); } function getActionForFixRemoveBracesFromArrowFunctionBody(context, declaration, expression, commentSource) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => removeBlockBodyBrace(t, context.sourceFile, declaration, expression, commentSource, false)); return createCodeFixAction(fixId24, changes, Diagnostics.Remove_braces_from_arrow_function_body, fixRemoveBracesFromArrowFunctionBody, Diagnostics.Remove_braces_from_all_arrow_function_bodies_with_relevant_issues); } function getActionForfixWrapTheBlockWithParen(context, declaration, expression) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => wrapBlockWithParen(t, context.sourceFile, declaration, expression)); return createCodeFixAction(fixId24, changes, Diagnostics.Wrap_the_following_body_with_parentheses_which_should_be_an_object_literal, fixIdWrapTheBlockWithParen, Diagnostics.Wrap_all_object_literal_with_parentheses); } var fixMissingMember = "fixMissingMember"; var fixMissingProperties = "fixMissingProperties"; var fixMissingAttributes = "fixMissingAttributes"; var fixMissingFunctionDeclaration = "fixMissingFunctionDeclaration"; var errorCodes28 = [ Diagnostics.Property_0_does_not_exist_on_type_1.code, Diagnostics.Property_0_does_not_exist_on_type_1_Did_you_mean_2.code, Diagnostics.Property_0_is_missing_in_type_1_but_required_in_type_2.code, Diagnostics.Type_0_is_missing_the_following_properties_from_type_1_Colon_2.code, Diagnostics.Type_0_is_missing_the_following_properties_from_type_1_Colon_2_and_3_more.code, Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1.code, Diagnostics.Cannot_find_name_0.code, Diagnostics.Type_0_does_not_satisfy_the_expected_type_1.code ]; registerCodeFix({ errorCodes: errorCodes28, getCodeActions(context) { const typeChecker = context.program.getTypeChecker(); const info = getInfo10(context.sourceFile, context.span.start, context.errorCode, typeChecker, context.program); if (!info) { return; } if (info.kind === 3) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addObjectLiteralProperties(t, context, info)); return [createCodeFixAction(fixMissingProperties, changes, Diagnostics.Add_missing_properties, fixMissingProperties, Diagnostics.Add_all_missing_properties)]; } if (info.kind === 4) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addJsxAttributes(t, context, info)); return [createCodeFixAction(fixMissingAttributes, changes, Diagnostics.Add_missing_attributes, fixMissingAttributes, Diagnostics.Add_all_missing_attributes)]; } if (info.kind === 2 || info.kind === 5) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addFunctionDeclaration(t, context, info)); return [createCodeFixAction(fixMissingFunctionDeclaration, changes, [Diagnostics.Add_missing_function_declaration_0, info.token.text], fixMissingFunctionDeclaration, Diagnostics.Add_all_missing_function_declarations)]; } if (info.kind === 1) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addEnumMemberDeclaration(t, context.program.getTypeChecker(), info)); return [createCodeFixAction(fixMissingMember, changes, [Diagnostics.Add_missing_enum_member_0, info.token.text], fixMissingMember, Diagnostics.Add_all_missing_members)]; } return concatenate(getActionsForMissingMethodDeclaration(context, info), getActionsForMissingMemberDeclaration(context, info)); }, fixIds: [fixMissingMember, fixMissingFunctionDeclaration, fixMissingProperties, fixMissingAttributes], getAllCodeActions: (context) => { const { program, fixId: fixId56 } = context; const checker = program.getTypeChecker(); const seen = /* @__PURE__ */ new Set; const typeDeclToMembers = /* @__PURE__ */ new Map; return createCombinedCodeActions(ts_textChanges_exports.ChangeTracker.with(context, (changes) => { eachDiagnostic(context, errorCodes28, (diag2) => { const info = getInfo10(diag2.file, diag2.start, diag2.code, checker, context.program); if (info === undefined) return; const nodeId = getNodeId(info.parentDeclaration) + "#" + (info.kind === 3 ? info.identifier || getNodeId(info.token) : info.token.text); if (!addToSeen(seen, nodeId)) return; if (fixId56 === fixMissingFunctionDeclaration && (info.kind === 2 || info.kind === 5)) { addFunctionDeclaration(changes, context, info); } else if (fixId56 === fixMissingProperties && info.kind === 3) { addObjectLiteralProperties(changes, context, info); } else if (fixId56 === fixMissingAttributes && info.kind === 4) { addJsxAttributes(changes, context, info); } else { if (info.kind === 1) { addEnumMemberDeclaration(changes, checker, info); } if (info.kind === 0) { const { parentDeclaration, token } = info; const infos = getOrUpdate(typeDeclToMembers, parentDeclaration, () => []); if (!infos.some((i) => i.token.text === token.text)) { infos.push(info); } } } }); typeDeclToMembers.forEach((infos, declaration) => { const supers = isTypeLiteralNode(declaration) ? undefined : getAllSupers(declaration, checker); for (const info of infos) { if (supers == null ? undefined : supers.some((superClassOrInterface) => { const superInfos = typeDeclToMembers.get(superClassOrInterface); return !!superInfos && superInfos.some(({ token: token2 }) => token2.text === info.token.text); })) continue; const { parentDeclaration, declSourceFile, modifierFlags, token, call, isJSFile } = info; if (call && !isPrivateIdentifier(token)) { addMethodDeclaration(context, changes, call, token, modifierFlags & 256, parentDeclaration, declSourceFile); } else { if (isJSFile && !isInterfaceDeclaration(parentDeclaration) && !isTypeLiteralNode(parentDeclaration)) { addMissingMemberInJs(changes, declSourceFile, parentDeclaration, token, !!(modifierFlags & 256)); } else { const typeNode = getTypeNode2(checker, parentDeclaration, token); addPropertyDeclaration(changes, declSourceFile, parentDeclaration, token.text, typeNode, modifierFlags & 256); } } } }); })); } }); function getInfo10(sourceFile, tokenPos, errorCode, checker, program) { var _a, _b; const token = getTokenAtPosition(sourceFile, tokenPos); const parent2 = token.parent; if (errorCode === Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1.code) { if (!(token.kind === 19 && isObjectLiteralExpression(parent2) && isCallExpression(parent2.parent))) return; const argIndex = findIndex(parent2.parent.arguments, (arg) => arg === parent2); if (argIndex < 0) return; const signature = checker.getResolvedSignature(parent2.parent); if (!(signature && signature.declaration && signature.parameters[argIndex])) return; const param = signature.parameters[argIndex].valueDeclaration; if (!(param && isParameter(param) && isIdentifier(param.name))) return; const properties = arrayFrom(checker.getUnmatchedProperties(checker.getTypeAtLocation(parent2), checker.getParameterType(signature, argIndex).getNonNullableType(), false, false)); if (!length(properties)) return; return { kind: 3, token: param.name, identifier: param.name.text, properties, parentDeclaration: parent2 }; } if (token.kind === 19 || isSatisfiesExpression(parent2) || isReturnStatement(parent2)) { const expression = (isSatisfiesExpression(parent2) || isReturnStatement(parent2)) && parent2.expression ? parent2.expression : parent2; if (isObjectLiteralExpression(expression)) { const targetType = isSatisfiesExpression(parent2) ? checker.getTypeFromTypeNode(parent2.type) : checker.getContextualType(expression) || checker.getTypeAtLocation(expression); const properties = arrayFrom(checker.getUnmatchedProperties(checker.getTypeAtLocation(parent2), targetType.getNonNullableType(), false, false)); if (!length(properties)) return; return { kind: 3, token: parent2, identifier: undefined, properties, parentDeclaration: expression, indentation: isReturnStatement(expression.parent) || isYieldExpression(expression.parent) ? 0 : undefined }; } } if (!isMemberName(token)) return; if (isIdentifier(token) && hasInitializer(parent2) && parent2.initializer && isObjectLiteralExpression(parent2.initializer)) { const targetType = (_a = checker.getContextualType(token) || checker.getTypeAtLocation(token)) == null ? undefined : _a.getNonNullableType(); const properties = arrayFrom(checker.getUnmatchedProperties(checker.getTypeAtLocation(parent2.initializer), targetType, false, false)); if (!length(properties)) return; return { kind: 3, token, identifier: token.text, properties, parentDeclaration: parent2.initializer }; } if (isIdentifier(token) && isJsxOpeningLikeElement(token.parent)) { const target = getEmitScriptTarget(program.getCompilerOptions()); const attributes = getUnmatchedAttributes(checker, target, token.parent); if (!length(attributes)) return; return { kind: 4, token, attributes, parentDeclaration: token.parent }; } if (isIdentifier(token)) { const type = (_b = checker.getContextualType(token)) == null ? undefined : _b.getNonNullableType(); if (type && getObjectFlags(type) & 16) { const signature = firstOrUndefined(checker.getSignaturesOfType(type, 0)); if (signature === undefined) return; return { kind: 5, token, signature, sourceFile, parentDeclaration: findScope(token) }; } if (isCallExpression(parent2) && parent2.expression === token) { return { kind: 2, token, call: parent2, sourceFile, modifierFlags: 0, parentDeclaration: findScope(token) }; } } if (!isPropertyAccessExpression(parent2)) return; const leftExpressionType = skipConstraint(checker.getTypeAtLocation(parent2.expression)); const symbol = leftExpressionType.symbol; if (!symbol || !symbol.declarations) return; if (isIdentifier(token) && isCallExpression(parent2.parent)) { const moduleDeclaration = find(symbol.declarations, isModuleDeclaration); const moduleDeclarationSourceFile = moduleDeclaration == null ? undefined : moduleDeclaration.getSourceFile(); if (moduleDeclaration && moduleDeclarationSourceFile && !isSourceFileFromLibrary(program, moduleDeclarationSourceFile)) { return { kind: 2, token, call: parent2.parent, sourceFile: moduleDeclarationSourceFile, modifierFlags: 32, parentDeclaration: moduleDeclaration }; } const moduleSourceFile = find(symbol.declarations, isSourceFile); if (sourceFile.commonJsModuleIndicator) return; if (moduleSourceFile && !isSourceFileFromLibrary(program, moduleSourceFile)) { return { kind: 2, token, call: parent2.parent, sourceFile: moduleSourceFile, modifierFlags: 32, parentDeclaration: moduleSourceFile }; } } const classDeclaration = find(symbol.declarations, isClassLike); if (!classDeclaration && isPrivateIdentifier(token)) return; const declaration = classDeclaration || find(symbol.declarations, (d) => isInterfaceDeclaration(d) || isTypeLiteralNode(d)); if (declaration && !isSourceFileFromLibrary(program, declaration.getSourceFile())) { const makeStatic = !isTypeLiteralNode(declaration) && (leftExpressionType.target || leftExpressionType) !== checker.getDeclaredTypeOfSymbol(symbol); if (makeStatic && (isPrivateIdentifier(token) || isInterfaceDeclaration(declaration))) return; const declSourceFile = declaration.getSourceFile(); const modifierFlags = isTypeLiteralNode(declaration) ? 0 : (makeStatic ? 256 : 0) | (startsWithUnderscore(token.text) ? 2 : 0); const isJSFile = isSourceFileJS(declSourceFile); const call = tryCast(parent2.parent, isCallExpression); return { kind: 0, token, call, modifierFlags, parentDeclaration: declaration, declSourceFile, isJSFile }; } const enumDeclaration = find(symbol.declarations, isEnumDeclaration); if (enumDeclaration && !(leftExpressionType.flags & 98304) && !isPrivateIdentifier(token) && !isSourceFileFromLibrary(program, enumDeclaration.getSourceFile())) { return { kind: 1, token, parentDeclaration: enumDeclaration }; } return; } function getActionsForMissingMemberDeclaration(context, info) { return info.isJSFile ? singleElementArray(createActionForAddMissingMemberInJavascriptFile(context, info)) : createActionsForAddMissingMemberInTypeScriptFile(context, info); } function createActionForAddMissingMemberInJavascriptFile(context, { parentDeclaration, declSourceFile, modifierFlags, token }) { if (isInterfaceDeclaration(parentDeclaration) || isTypeLiteralNode(parentDeclaration)) { return; } const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addMissingMemberInJs(t, declSourceFile, parentDeclaration, token, !!(modifierFlags & 256))); if (changes.length === 0) { return; } const diagnostic = modifierFlags & 256 ? Diagnostics.Initialize_static_property_0 : isPrivateIdentifier(token) ? Diagnostics.Declare_a_private_field_named_0 : Diagnostics.Initialize_property_0_in_the_constructor; return createCodeFixAction(fixMissingMember, changes, [diagnostic, token.text], fixMissingMember, Diagnostics.Add_all_missing_members); } function addMissingMemberInJs(changeTracker, sourceFile, classDeclaration, token, makeStatic) { const tokenName = token.text; if (makeStatic) { if (classDeclaration.kind === 232) { return; } const className = classDeclaration.name.getText(); const staticInitialization = initializePropertyToUndefined(factory.createIdentifier(className), tokenName); changeTracker.insertNodeAfter(sourceFile, classDeclaration, staticInitialization); } else if (isPrivateIdentifier(token)) { const property = factory.createPropertyDeclaration(undefined, tokenName, undefined, undefined, undefined); const lastProp = getNodeToInsertPropertyAfter(classDeclaration); if (lastProp) { changeTracker.insertNodeAfter(sourceFile, lastProp, property); } else { changeTracker.insertMemberAtStart(sourceFile, classDeclaration, property); } } else { const classConstructor = getFirstConstructorWithBody(classDeclaration); if (!classConstructor) { return; } const propertyInitialization = initializePropertyToUndefined(factory.createThis(), tokenName); changeTracker.insertNodeAtConstructorEnd(sourceFile, classConstructor, propertyInitialization); } } function initializePropertyToUndefined(obj, propertyName) { return factory.createExpressionStatement(factory.createAssignment(factory.createPropertyAccessExpression(obj, propertyName), createUndefined())); } function createActionsForAddMissingMemberInTypeScriptFile(context, { parentDeclaration, declSourceFile, modifierFlags, token }) { const memberName = token.text; const isStatic2 = modifierFlags & 256; const typeNode = getTypeNode2(context.program.getTypeChecker(), parentDeclaration, token); const addPropertyDeclarationChanges = (modifierFlags2) => ts_textChanges_exports.ChangeTracker.with(context, (t) => addPropertyDeclaration(t, declSourceFile, parentDeclaration, memberName, typeNode, modifierFlags2)); const actions2 = [createCodeFixAction(fixMissingMember, addPropertyDeclarationChanges(modifierFlags & 256), [isStatic2 ? Diagnostics.Declare_static_property_0 : Diagnostics.Declare_property_0, memberName], fixMissingMember, Diagnostics.Add_all_missing_members)]; if (isStatic2 || isPrivateIdentifier(token)) { return actions2; } if (modifierFlags & 2) { actions2.unshift(createCodeFixActionWithoutFixAll(fixMissingMember, addPropertyDeclarationChanges(2), [Diagnostics.Declare_private_property_0, memberName])); } actions2.push(createAddIndexSignatureAction(context, declSourceFile, parentDeclaration, token.text, typeNode)); return actions2; } function getTypeNode2(checker, node, token) { let typeNode; if (token.parent.parent.kind === 227) { const binaryExpression = token.parent.parent; const otherExpression = token.parent === binaryExpression.left ? binaryExpression.right : binaryExpression.left; const widenedType = checker.getWidenedType(checker.getBaseTypeOfLiteralType(checker.getTypeAtLocation(otherExpression))); typeNode = checker.typeToTypeNode(widenedType, node, 1, 8); } else { const contextualType = checker.getContextualType(token.parent); typeNode = contextualType ? checker.typeToTypeNode(contextualType, undefined, 1, 8) : undefined; } return typeNode || factory.createKeywordTypeNode(133); } function addPropertyDeclaration(changeTracker, sourceFile, node, tokenName, typeNode, modifierFlags) { const modifiers = modifierFlags ? factory.createNodeArray(factory.createModifiersFromModifierFlags(modifierFlags)) : undefined; const property = isClassLike(node) ? factory.createPropertyDeclaration(modifiers, tokenName, undefined, typeNode, undefined) : factory.createPropertySignature(undefined, tokenName, undefined, typeNode); const lastProp = getNodeToInsertPropertyAfter(node); if (lastProp) { changeTracker.insertNodeAfter(sourceFile, lastProp, property); } else { changeTracker.insertMemberAtStart(sourceFile, node, property); } } function getNodeToInsertPropertyAfter(node) { let res; for (const member of node.members) { if (!isPropertyDeclaration(member)) break; res = member; } return res; } function createAddIndexSignatureAction(context, sourceFile, node, tokenName, typeNode) { const stringTypeNode = factory.createKeywordTypeNode(154); const indexingParameter = factory.createParameterDeclaration(undefined, undefined, "x", undefined, stringTypeNode, undefined); const indexSignature = factory.createIndexSignature(undefined, [indexingParameter], typeNode); const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => t.insertMemberAtStart(sourceFile, node, indexSignature)); return createCodeFixActionWithoutFixAll(fixMissingMember, changes, [Diagnostics.Add_index_signature_for_property_0, tokenName]); } function getActionsForMissingMethodDeclaration(context, info) { const { parentDeclaration, declSourceFile, modifierFlags, token, call } = info; if (call === undefined) { return; } const methodName = token.text; const addMethodDeclarationChanges = (modifierFlags2) => ts_textChanges_exports.ChangeTracker.with(context, (t) => addMethodDeclaration(context, t, call, token, modifierFlags2, parentDeclaration, declSourceFile)); const actions2 = [createCodeFixAction(fixMissingMember, addMethodDeclarationChanges(modifierFlags & 256), [modifierFlags & 256 ? Diagnostics.Declare_static_method_0 : Diagnostics.Declare_method_0, methodName], fixMissingMember, Diagnostics.Add_all_missing_members)]; if (modifierFlags & 2) { actions2.unshift(createCodeFixActionWithoutFixAll(fixMissingMember, addMethodDeclarationChanges(2), [Diagnostics.Declare_private_method_0, methodName])); } return actions2; } function addMethodDeclaration(context, changes, callExpression, name, modifierFlags, parentDeclaration, sourceFile) { const importAdder = createImportAdder(sourceFile, context.program, context.preferences, context.host); const kind = isClassLike(parentDeclaration) ? 175 : 174; const signatureDeclaration = createSignatureDeclarationFromCallExpression(kind, context, importAdder, callExpression, name, modifierFlags, parentDeclaration); const containingMethodDeclaration = tryGetContainingMethodDeclaration(parentDeclaration, callExpression); if (containingMethodDeclaration) { changes.insertNodeAfter(sourceFile, containingMethodDeclaration, signatureDeclaration); } else { changes.insertMemberAtStart(sourceFile, parentDeclaration, signatureDeclaration); } importAdder.writeFixes(changes); } function addEnumMemberDeclaration(changes, checker, { token, parentDeclaration }) { const hasStringInitializer = some(parentDeclaration.members, (member) => { const type = checker.getTypeAtLocation(member); return !!(type && type.flags & 12583968); }); const sourceFile = parentDeclaration.getSourceFile(); const enumMember = factory.createEnumMember(token, hasStringInitializer ? factory.createStringLiteral(token.text) : undefined); const last2 = lastOrUndefined(parentDeclaration.members); if (last2) { changes.insertNodeInListAfter(sourceFile, last2, enumMember, parentDeclaration.members); } else { changes.insertMemberAtStart(sourceFile, parentDeclaration, enumMember); } } function addFunctionDeclaration(changes, context, info) { const quotePreference = getQuotePreference(context.sourceFile, context.preferences); const importAdder = createImportAdder(context.sourceFile, context.program, context.preferences, context.host); const functionDeclaration = info.kind === 2 ? createSignatureDeclarationFromCallExpression(263, context, importAdder, info.call, idText(info.token), info.modifierFlags, info.parentDeclaration) : createSignatureDeclarationFromSignature(263, context, quotePreference, info.signature, createStubbedBody(Diagnostics.Function_not_implemented.message, quotePreference), info.token, undefined, undefined, undefined, importAdder); if (functionDeclaration === undefined) { Debug.fail("fixMissingFunctionDeclaration codefix got unexpected error."); } isReturnStatement(info.parentDeclaration) ? changes.insertNodeBefore(info.sourceFile, info.parentDeclaration, functionDeclaration, true) : changes.insertNodeAtEndOfScope(info.sourceFile, info.parentDeclaration, functionDeclaration); importAdder.writeFixes(changes); } function addJsxAttributes(changes, context, info) { const importAdder = createImportAdder(context.sourceFile, context.program, context.preferences, context.host); const quotePreference = getQuotePreference(context.sourceFile, context.preferences); const checker = context.program.getTypeChecker(); const jsxAttributesNode = info.parentDeclaration.attributes; const hasSpreadAttribute = some(jsxAttributesNode.properties, isJsxSpreadAttribute); const attrs = map(info.attributes, (attr) => { const value = tryGetValueFromType(context, checker, importAdder, quotePreference, checker.getTypeOfSymbol(attr), info.parentDeclaration); const name = factory.createIdentifier(attr.name); const jsxAttribute = factory.createJsxAttribute(name, factory.createJsxExpression(undefined, value)); setParent(name, jsxAttribute); return jsxAttribute; }); const jsxAttributes = factory.createJsxAttributes(hasSpreadAttribute ? [...attrs, ...jsxAttributesNode.properties] : [...jsxAttributesNode.properties, ...attrs]); const options = { prefix: jsxAttributesNode.pos === jsxAttributesNode.end ? " " : undefined }; changes.replaceNode(context.sourceFile, jsxAttributesNode, jsxAttributes, options); importAdder.writeFixes(changes); } function addObjectLiteralProperties(changes, context, info) { const importAdder = createImportAdder(context.sourceFile, context.program, context.preferences, context.host); const quotePreference = getQuotePreference(context.sourceFile, context.preferences); const target = getEmitScriptTarget(context.program.getCompilerOptions()); const checker = context.program.getTypeChecker(); const props = map(info.properties, (prop) => { const initializer = tryGetValueFromType(context, checker, importAdder, quotePreference, checker.getTypeOfSymbol(prop), info.parentDeclaration); return factory.createPropertyAssignment(createPropertyNameFromSymbol(prop, target, quotePreference, checker), initializer); }); const options = { leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.Exclude, trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.Exclude, indentation: info.indentation }; changes.replaceNode(context.sourceFile, info.parentDeclaration, factory.createObjectLiteralExpression([...info.parentDeclaration.properties, ...props], true), options); importAdder.writeFixes(changes); } function tryGetValueFromType(context, checker, importAdder, quotePreference, type, enclosingDeclaration) { if (type.flags & 3) { return createUndefined(); } if (type.flags & (32 | 4194304)) { return factory.createStringLiteral("", quotePreference === 0); } if (type.flags & 64) { return factory.createNumericLiteral(0); } if (type.flags & 128) { return factory.createBigIntLiteral("0n"); } if (type.flags & 256) { return factory.createFalse(); } if (type.flags & 98304) { const enumMember = type.symbol.exports ? firstOrUndefinedIterator(type.symbol.exports.values()) : type.symbol; const symbol = type.symbol.parent && type.symbol.parent.flags & 256 ? type.symbol.parent : type.symbol; const name = checker.symbolToExpression(symbol, 111551, undefined, 64); return enumMember === undefined || name === undefined ? factory.createNumericLiteral(0) : factory.createPropertyAccessExpression(name, checker.symbolToString(enumMember)); } if (type.flags & 2048) { return factory.createNumericLiteral(type.value); } if (type.flags & 4096) { return factory.createBigIntLiteral(type.value); } if (type.flags & 1024) { return factory.createStringLiteral(type.value, quotePreference === 0); } if (type.flags & 8192) { return type === checker.getFalseType() || type === checker.getFalseType(true) ? factory.createFalse() : factory.createTrue(); } if (type.flags & 8) { return factory.createNull(); } if (type.flags & 134217728) { const expression = firstDefined(type.types, (t) => tryGetValueFromType(context, checker, importAdder, quotePreference, t, enclosingDeclaration)); return expression ?? createUndefined(); } if (checker.isArrayLikeType(type)) { return factory.createArrayLiteralExpression(); } if (isObjectLiteralType(type)) { const props = map(checker.getPropertiesOfType(type), (prop) => { const initializer = tryGetValueFromType(context, checker, importAdder, quotePreference, checker.getTypeOfSymbol(prop), enclosingDeclaration); return factory.createPropertyAssignment(prop.name, initializer); }); return factory.createObjectLiteralExpression(props, true); } if (getObjectFlags(type) & 16) { const decl = find(type.symbol.declarations || emptyArray, or(isFunctionTypeNode, isMethodSignature, isMethodDeclaration)); if (decl === undefined) return createUndefined(); const signature = checker.getSignaturesOfType(type, 0); if (signature === undefined) return createUndefined(); const func = createSignatureDeclarationFromSignature(219, context, quotePreference, signature[0], createStubbedBody(Diagnostics.Function_not_implemented.message, quotePreference), undefined, undefined, undefined, enclosingDeclaration, importAdder); return func ?? createUndefined(); } if (getObjectFlags(type) & 1) { const classDeclaration = getClassLikeDeclarationOfSymbol(type.symbol); if (classDeclaration === undefined || hasAbstractModifier(classDeclaration)) return createUndefined(); const constructorDeclaration = getFirstConstructorWithBody(classDeclaration); if (constructorDeclaration && length(constructorDeclaration.parameters)) return createUndefined(); return factory.createNewExpression(factory.createIdentifier(type.symbol.name), undefined, undefined); } return createUndefined(); } function createUndefined() { return factory.createIdentifier("undefined"); } function isObjectLiteralType(type) { return type.flags & 1048576 && (getObjectFlags(type) & 128 || type.symbol && tryCast(singleOrUndefined(type.symbol.declarations), isTypeLiteralNode)); } function getUnmatchedAttributes(checker, target, source) { const attrsType = checker.getContextualType(source.attributes); if (attrsType === undefined) return emptyArray; const targetProps = attrsType.getProperties(); if (!length(targetProps)) return emptyArray; const seenNames = /* @__PURE__ */ new Set; for (const sourceProp of source.attributes.properties) { if (isJsxAttribute(sourceProp)) { seenNames.add(getEscapedTextOfJsxAttributeName(sourceProp.name)); } if (isJsxSpreadAttribute(sourceProp)) { const type = checker.getTypeAtLocation(sourceProp.expression); for (const prop of type.getProperties()) { seenNames.add(prop.escapedName); } } } return filter(targetProps, (targetProp) => isIdentifierText(targetProp.name, target, 1) && !(targetProp.flags & 16777216 || getCheckFlags(targetProp) & 48 || seenNames.has(targetProp.escapedName))); } function tryGetContainingMethodDeclaration(node, callExpression) { if (isTypeLiteralNode(node)) { return; } const declaration = findAncestor(callExpression, (n) => isMethodDeclaration(n) || isConstructorDeclaration(n)); return declaration && declaration.parent === node ? declaration : undefined; } function createPropertyNameFromSymbol(symbol, target, quotePreference, checker) { if (isTransientSymbol(symbol)) { const prop = checker.symbolToNode(symbol, 111551, undefined, undefined, 1); if (prop && isComputedPropertyName(prop)) return prop; } return createPropertyNameNodeForIdentifierOrLiteral(symbol.name, target, quotePreference === 0, false, false); } function findScope(node) { if (findAncestor(node, isJsxExpression)) { const returnStatement = findAncestor(node.parent, isReturnStatement); if (returnStatement) return returnStatement; } return getSourceFileOfNode(node); } function getAllSupers(decl, checker) { const res = []; while (decl) { const superElement = getClassExtendsHeritageElement(decl); const superSymbol = superElement && checker.getSymbolAtLocation(superElement.expression); if (!superSymbol) break; const symbol = superSymbol.flags & 2097152 ? checker.getAliasedSymbol(superSymbol) : superSymbol; const superDecl = symbol.declarations && find(symbol.declarations, isClassLike); if (!superDecl) break; res.push(superDecl); decl = superDecl; } return res; } var fixId25 = "addMissingNewOperator"; var errorCodes29 = [Diagnostics.Value_of_type_0_is_not_callable_Did_you_mean_to_include_new.code]; registerCodeFix({ errorCodes: errorCodes29, getCodeActions(context) { const { sourceFile, span } = context; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addMissingNewOperator(t, sourceFile, span)); return [createCodeFixAction(fixId25, changes, Diagnostics.Add_missing_new_operator_to_call, fixId25, Diagnostics.Add_missing_new_operator_to_all_calls)]; }, fixIds: [fixId25], getAllCodeActions: (context) => codeFixAll(context, errorCodes29, (changes, diag2) => addMissingNewOperator(changes, context.sourceFile, diag2)) }); function addMissingNewOperator(changes, sourceFile, span) { const call = cast(findAncestorMatchingSpan2(sourceFile, span), isCallExpression); const newExpression = factory.createNewExpression(call.expression, call.typeArguments, call.arguments); changes.replaceNode(sourceFile, call, newExpression); } function findAncestorMatchingSpan2(sourceFile, span) { let token = getTokenAtPosition(sourceFile, span.start); const end = textSpanEnd(span); while (token.end < end) { token = token.parent; } return token; } var addMissingParamFixId = "addMissingParam"; var addOptionalParamFixId = "addOptionalParam"; var errorCodes30 = [Diagnostics.Expected_0_arguments_but_got_1.code]; registerCodeFix({ errorCodes: errorCodes30, fixIds: [addMissingParamFixId, addOptionalParamFixId], getCodeActions(context) { const info = getInfo11(context.sourceFile, context.program, context.span.start); if (info === undefined) return; const { name, declarations, newParameters, newOptionalParameters } = info; const actions2 = []; if (length(newParameters)) { append(actions2, createCodeFixAction(addMissingParamFixId, ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange19(t, context.program, context.preferences, context.host, declarations, newParameters)), [length(newParameters) > 1 ? Diagnostics.Add_missing_parameters_to_0 : Diagnostics.Add_missing_parameter_to_0, name], addMissingParamFixId, Diagnostics.Add_all_missing_parameters)); } if (length(newOptionalParameters)) { append(actions2, createCodeFixAction(addOptionalParamFixId, ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange19(t, context.program, context.preferences, context.host, declarations, newOptionalParameters)), [length(newOptionalParameters) > 1 ? Diagnostics.Add_optional_parameters_to_0 : Diagnostics.Add_optional_parameter_to_0, name], addOptionalParamFixId, Diagnostics.Add_all_optional_parameters)); } return actions2; }, getAllCodeActions: (context) => codeFixAll(context, errorCodes30, (changes, diag2) => { const info = getInfo11(context.sourceFile, context.program, diag2.start); if (info) { const { declarations, newParameters, newOptionalParameters } = info; if (context.fixId === addMissingParamFixId) { doChange19(changes, context.program, context.preferences, context.host, declarations, newParameters); } if (context.fixId === addOptionalParamFixId) { doChange19(changes, context.program, context.preferences, context.host, declarations, newOptionalParameters); } } }) }); function getInfo11(sourceFile, program, pos) { const token = getTokenAtPosition(sourceFile, pos); const callExpression = findAncestor(token, isCallExpression); if (callExpression === undefined || length(callExpression.arguments) === 0) { return; } const checker = program.getTypeChecker(); const type = checker.getTypeAtLocation(callExpression.expression); const convertibleSignatureDeclarations = filter(type.symbol.declarations, isConvertibleSignatureDeclaration); if (convertibleSignatureDeclarations === undefined) { return; } const nonOverloadDeclaration = lastOrUndefined(convertibleSignatureDeclarations); if (nonOverloadDeclaration === undefined || nonOverloadDeclaration.body === undefined || isSourceFileFromLibrary(program, nonOverloadDeclaration.getSourceFile())) { return; } const name = tryGetName2(nonOverloadDeclaration); if (name === undefined) { return; } const newParameters = []; const newOptionalParameters = []; const parametersLength = length(nonOverloadDeclaration.parameters); const argumentsLength = length(callExpression.arguments); if (parametersLength > argumentsLength) { return; } const declarations = [nonOverloadDeclaration, ...getOverloads(nonOverloadDeclaration, convertibleSignatureDeclarations)]; for (let i = 0, pos2 = 0, paramIndex = 0;i < argumentsLength; i++) { const arg = callExpression.arguments[i]; const expr = isAccessExpression(arg) ? getNameOfAccessExpression(arg) : arg; const type2 = checker.getWidenedType(checker.getBaseTypeOfLiteralType(checker.getTypeAtLocation(arg))); const parameter = pos2 < parametersLength ? nonOverloadDeclaration.parameters[pos2] : undefined; if (parameter && checker.isTypeAssignableTo(type2, checker.getTypeAtLocation(parameter))) { pos2++; continue; } const name2 = expr && isIdentifier(expr) ? expr.text : `p${paramIndex++}`; const typeNode = typeToTypeNode(checker, type2, nonOverloadDeclaration); append(newParameters, { pos: i, declaration: createParameter(name2, typeNode, undefined) }); if (isOptionalPos(declarations, pos2)) { continue; } append(newOptionalParameters, { pos: i, declaration: createParameter(name2, typeNode, factory.createToken(58)) }); } return { newParameters, newOptionalParameters, name: declarationNameToString(name), declarations }; } function tryGetName2(node) { const name = getNameOfDeclaration(node); if (name) { return name; } if (isVariableDeclaration(node.parent) && isIdentifier(node.parent.name) || isPropertyDeclaration(node.parent) || isParameter(node.parent)) { return node.parent.name; } } function typeToTypeNode(checker, type, enclosingDeclaration) { return checker.typeToTypeNode(checker.getWidenedType(type), enclosingDeclaration, 1, 8) ?? factory.createKeywordTypeNode(159); } function doChange19(changes, program, preferences, host, declarations, newParameters) { const scriptTarget = getEmitScriptTarget(program.getCompilerOptions()); forEach(declarations, (declaration) => { const sourceFile = getSourceFileOfNode(declaration); const importAdder = createImportAdder(sourceFile, program, preferences, host); if (length(declaration.parameters)) { changes.replaceNodeRangeWithNodes(sourceFile, first(declaration.parameters), last(declaration.parameters), updateParameters(importAdder, scriptTarget, declaration, newParameters), { joiner: ", ", indentation: 0, leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.IncludeAll, trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.Include }); } else { forEach(updateParameters(importAdder, scriptTarget, declaration, newParameters), (parameter, index) => { if (length(declaration.parameters) === 0 && index === 0) { changes.insertNodeAt(sourceFile, declaration.parameters.end, parameter); } else { changes.insertNodeAtEndOfList(sourceFile, declaration.parameters, parameter); } }); } importAdder.writeFixes(changes); }); } function isConvertibleSignatureDeclaration(node) { switch (node.kind) { case 263: case 219: case 175: case 220: return true; default: return false; } } function updateParameters(importAdder, scriptTarget, node, newParameters) { const parameters = map(node.parameters, (p) => factory.createParameterDeclaration(p.modifiers, p.dotDotDotToken, p.name, p.questionToken, p.type, p.initializer)); for (const { pos, declaration } of newParameters) { const prev = pos > 0 ? parameters[pos - 1] : undefined; parameters.splice(pos, 0, factory.updateParameterDeclaration(declaration, declaration.modifiers, declaration.dotDotDotToken, declaration.name, prev && prev.questionToken ? factory.createToken(58) : declaration.questionToken, getParameterType(importAdder, declaration.type, scriptTarget), declaration.initializer)); } return parameters; } function getOverloads(implementation, declarations) { const overloads = []; for (const declaration of declarations) { if (isOverload(declaration)) { if (length(declaration.parameters) === length(implementation.parameters)) { overloads.push(declaration); continue; } if (length(declaration.parameters) > length(implementation.parameters)) { return []; } } } return overloads; } function isOverload(declaration) { return isConvertibleSignatureDeclaration(declaration) && declaration.body === undefined; } function createParameter(name, type, questionToken) { return factory.createParameterDeclaration(undefined, undefined, name, questionToken, type, undefined); } function isOptionalPos(declarations, pos) { return length(declarations) && some(declarations, (d) => pos < length(d.parameters) && !!d.parameters[pos] && d.parameters[pos].questionToken === undefined); } function getParameterType(importAdder, typeNode, scriptTarget) { const importableReference = tryGetAutoImportableReferenceFromTypeNode(typeNode, scriptTarget); if (importableReference) { importSymbols(importAdder, importableReference.symbols); return importableReference.typeNode; } return typeNode; } var fixName2 = "fixCannotFindModule"; var fixIdInstallTypesPackage = "installTypesPackage"; var errorCodeCannotFindModule = Diagnostics.Cannot_find_module_0_or_its_corresponding_type_declarations.code; var errorCannotFindImplicitJsxImport = Diagnostics.This_JSX_tag_requires_the_module_path_0_to_exist_but_none_could_be_found_Make_sure_you_have_types_for_the_appropriate_package_installed.code; var errorCodes31 = [ errorCodeCannotFindModule, Diagnostics.Could_not_find_a_declaration_file_for_module_0_1_implicitly_has_an_any_type.code, Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashnode.code, Diagnostics.Cannot_find_name_0_Do_you_need_to_install_type_definitions_for_node_Try_npm_i_save_dev_types_Slashnode_and_then_add_node_to_the_types_field_in_your_tsconfig.code, errorCannotFindImplicitJsxImport ]; registerCodeFix({ errorCodes: errorCodes31, getCodeActions: function getCodeActionsToFixNotFoundModule(context) { const { host, sourceFile, span: { start }, errorCode } = context; const packageName = errorCode === errorCannotFindImplicitJsxImport ? getJSXImplicitImportBase(context.program.getCompilerOptions(), sourceFile) : tryGetImportedPackageName(sourceFile, start); if (packageName === undefined) return; const typesPackageName = getTypesPackageNameToInstall(packageName, host, errorCode); return typesPackageName === undefined ? [] : [createCodeFixAction(fixName2, [], [Diagnostics.Install_0, typesPackageName], fixIdInstallTypesPackage, Diagnostics.Install_all_missing_types_packages, getInstallCommand(sourceFile.fileName, typesPackageName))]; }, fixIds: [fixIdInstallTypesPackage], getAllCodeActions: (context) => { return codeFixAll(context, errorCodes31, (_changes, diag2, commands) => { const packageName = tryGetImportedPackageName(diag2.file, diag2.start); if (packageName === undefined) return; switch (context.fixId) { case fixIdInstallTypesPackage: { const pkg = getTypesPackageNameToInstall(packageName, context.host, diag2.code); if (pkg) { commands.push(getInstallCommand(diag2.file.fileName, pkg)); } break; } default: Debug.fail(`Bad fixId: ${context.fixId}`); } }); } }); function getInstallCommand(fileName, packageName) { return { type: "install package", file: fileName, packageName }; } function tryGetImportedPackageName(sourceFile, pos) { const moduleSpecifierText = tryCast(getTokenAtPosition(sourceFile, pos), isStringLiteral); if (!moduleSpecifierText) return; const moduleName = moduleSpecifierText.text; const { packageName } = parsePackageName(moduleName); return isExternalModuleNameRelative(packageName) ? undefined : packageName; } function getTypesPackageNameToInstall(packageName, host, diagCode) { var _a; if (nodeCoreModules.has(packageName)) { return "@types/node"; } if (diagCode !== errorCodeCannotFindModule) { return ((_a = host.isKnownTypesPackageName) == null ? undefined : _a.call(host, packageName)) ? getTypesPackageName(packageName) : undefined; } return; } var errorCodes32 = [ Diagnostics.Non_abstract_class_0_does_not_implement_inherited_abstract_member_1_from_class_2.code, Diagnostics.Non_abstract_class_0_is_missing_implementations_for_the_following_members_of_1_Colon_2.code, Diagnostics.Non_abstract_class_0_is_missing_implementations_for_the_following_members_of_1_Colon_2_and_3_more.code, Diagnostics.Non_abstract_class_expression_does_not_implement_inherited_abstract_member_0_from_class_1.code, Diagnostics.Non_abstract_class_expression_is_missing_implementations_for_the_following_members_of_0_Colon_1.code, Diagnostics.Non_abstract_class_expression_is_missing_implementations_for_the_following_members_of_0_Colon_1_and_2_more.code ]; var fixId26 = "fixClassDoesntImplementInheritedAbstractMember"; registerCodeFix({ errorCodes: errorCodes32, getCodeActions: function getCodeActionsToFixClassNotImplementingInheritedMembers(context) { const { sourceFile, span } = context; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addMissingMembers(getClass2(sourceFile, span.start), sourceFile, context, t, context.preferences)); return changes.length === 0 ? undefined : [createCodeFixAction(fixId26, changes, Diagnostics.Implement_inherited_abstract_class, fixId26, Diagnostics.Implement_all_inherited_abstract_classes)]; }, fixIds: [fixId26], getAllCodeActions: function getAllCodeActionsToFixClassDoesntImplementInheritedAbstractMember(context) { const seenClassDeclarations = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes32, (changes, diag2) => { const classDeclaration = getClass2(diag2.file, diag2.start); if (addToSeen(seenClassDeclarations, getNodeId(classDeclaration))) { addMissingMembers(classDeclaration, context.sourceFile, context, changes, context.preferences); } }); } }); function getClass2(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); return cast(token.parent, isClassLike); } function addMissingMembers(classDeclaration, sourceFile, context, changeTracker, preferences) { const extendsNode = getEffectiveBaseTypeNode(classDeclaration); const checker = context.program.getTypeChecker(); const instantiatedExtendsType = checker.getTypeAtLocation(extendsNode); const abstractAndNonPrivateExtendsSymbols = checker.getPropertiesOfType(instantiatedExtendsType).filter(symbolPointsToNonPrivateAndAbstractMember); const importAdder = createImportAdder(sourceFile, context.program, preferences, context.host); createMissingMemberNodes(classDeclaration, abstractAndNonPrivateExtendsSymbols, sourceFile, context, preferences, importAdder, (member) => changeTracker.insertMemberAtStart(sourceFile, classDeclaration, member)); importAdder.writeFixes(changeTracker); } function symbolPointsToNonPrivateAndAbstractMember(symbol) { const flags = getSyntacticModifierFlags(first(symbol.getDeclarations())); return !(flags & 2) && !!(flags & 64); } var fixId27 = "classSuperMustPrecedeThisAccess"; var errorCodes33 = [Diagnostics.super_must_be_called_before_accessing_this_in_the_constructor_of_a_derived_class.code]; registerCodeFix({ errorCodes: errorCodes33, getCodeActions(context) { const { sourceFile, span } = context; const nodes = getNodes(sourceFile, span.start); if (!nodes) return; const { constructor, superCall } = nodes; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange20(t, sourceFile, constructor, superCall)); return [createCodeFixAction(fixId27, changes, Diagnostics.Make_super_call_the_first_statement_in_the_constructor, fixId27, Diagnostics.Make_all_super_calls_the_first_statement_in_their_constructor)]; }, fixIds: [fixId27], getAllCodeActions(context) { const { sourceFile } = context; const seenClasses = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes33, (changes, diag2) => { const nodes = getNodes(diag2.file, diag2.start); if (!nodes) return; const { constructor, superCall } = nodes; if (addToSeen(seenClasses, getNodeId(constructor.parent))) { doChange20(changes, sourceFile, constructor, superCall); } }); } }); function doChange20(changes, sourceFile, constructor, superCall) { changes.insertNodeAtConstructorStart(sourceFile, constructor, superCall); changes.delete(sourceFile, superCall); } function getNodes(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); if (token.kind !== 110) return; const constructor = getContainingFunction(token); const superCall = findSuperCall(constructor.body); return superCall && !superCall.expression.arguments.some((arg) => isPropertyAccessExpression(arg) && arg.expression === token) ? { constructor, superCall } : undefined; } function findSuperCall(n) { return isExpressionStatement(n) && isSuperCall(n.expression) ? n : isFunctionLike(n) ? undefined : forEachChild(n, findSuperCall); } var fixId28 = "constructorForDerivedNeedSuperCall"; var errorCodes34 = [Diagnostics.Constructors_for_derived_classes_must_contain_a_super_call.code]; registerCodeFix({ errorCodes: errorCodes34, getCodeActions(context) { const { sourceFile, span } = context; const ctr = getNode(sourceFile, span.start); const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange21(t, sourceFile, ctr)); return [createCodeFixAction(fixId28, changes, Diagnostics.Add_missing_super_call, fixId28, Diagnostics.Add_all_missing_super_calls)]; }, fixIds: [fixId28], getAllCodeActions: (context) => codeFixAll(context, errorCodes34, (changes, diag2) => doChange21(changes, context.sourceFile, getNode(diag2.file, diag2.start))) }); function getNode(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); Debug.assert(isConstructorDeclaration(token.parent), "token should be at the constructor declaration"); return token.parent; } function doChange21(changes, sourceFile, ctr) { const superCall = factory.createExpressionStatement(factory.createCallExpression(factory.createSuper(), undefined, emptyArray)); changes.insertNodeAtConstructorStart(sourceFile, ctr, superCall); } var fixID = "fixEnableJsxFlag"; var errorCodes35 = [Diagnostics.Cannot_use_JSX_unless_the_jsx_flag_is_provided.code]; registerCodeFix({ errorCodes: errorCodes35, getCodeActions: function getCodeActionsToFixEnableJsxFlag(context) { const { configFile } = context.program.getCompilerOptions(); if (configFile === undefined) { return; } const changes = ts_textChanges_exports.ChangeTracker.with(context, (changeTracker) => doChange22(changeTracker, configFile)); return [ createCodeFixActionWithoutFixAll(fixID, changes, Diagnostics.Enable_the_jsx_flag_in_your_configuration_file) ]; }, fixIds: [fixID], getAllCodeActions: (context) => codeFixAll(context, errorCodes35, (changes) => { const { configFile } = context.program.getCompilerOptions(); if (configFile === undefined) { return; } doChange22(changes, configFile); }) }); function doChange22(changeTracker, configFile) { setJsonCompilerOptionValue(changeTracker, configFile, "jsx", factory.createStringLiteral("react")); } var fixId29 = "fixNaNEquality"; var errorCodes36 = [ Diagnostics.This_condition_will_always_return_0.code ]; registerCodeFix({ errorCodes: errorCodes36, getCodeActions(context) { const { sourceFile, span, program } = context; const info = getInfo12(program, sourceFile, span); if (info === undefined) return; const { suggestion, expression, arg } = info; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange23(t, sourceFile, arg, expression)); return [createCodeFixAction(fixId29, changes, [Diagnostics.Use_0, suggestion], fixId29, Diagnostics.Use_Number_isNaN_in_all_conditions)]; }, fixIds: [fixId29], getAllCodeActions: (context) => { return codeFixAll(context, errorCodes36, (changes, diag2) => { const info = getInfo12(context.program, diag2.file, createTextSpan(diag2.start, diag2.length)); if (info) { doChange23(changes, diag2.file, info.arg, info.expression); } }); } }); function getInfo12(program, sourceFile, span) { const diag2 = find(program.getSemanticDiagnostics(sourceFile), (diag3) => diag3.start === span.start && diag3.length === span.length); if (diag2 === undefined || diag2.relatedInformation === undefined) return; const related = find(diag2.relatedInformation, (related2) => related2.code === Diagnostics.Did_you_mean_0.code); if (related === undefined || related.file === undefined || related.start === undefined || related.length === undefined) return; const token = findAncestorMatchingSpan(related.file, createTextSpan(related.start, related.length)); if (token === undefined) return; if (isExpression(token) && isBinaryExpression(token.parent)) { return { suggestion: getSuggestion(related.messageText), expression: token.parent, arg: token }; } return; } function doChange23(changes, sourceFile, arg, expression) { const callExpression = factory.createCallExpression(factory.createPropertyAccessExpression(factory.createIdentifier("Number"), factory.createIdentifier("isNaN")), undefined, [arg]); const operator = expression.operatorToken.kind; changes.replaceNode(sourceFile, expression, operator === 38 || operator === 36 ? factory.createPrefixUnaryExpression(54, callExpression) : callExpression); } function getSuggestion(messageText) { const [, suggestion] = flattenDiagnosticMessageText(messageText, ` `, 0).match(/'(.*)'/) || []; return suggestion; } registerCodeFix({ errorCodes: [ Diagnostics.Top_level_await_expressions_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_node16_node18_node20_nodenext_or_preserve_and_the_target_option_is_set_to_es2017_or_higher.code, Diagnostics.Top_level_await_using_statements_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_node16_node18_node20_nodenext_or_preserve_and_the_target_option_is_set_to_es2017_or_higher.code, Diagnostics.Top_level_for_await_loops_are_only_allowed_when_the_module_option_is_set_to_es2022_esnext_system_node16_node18_node20_nodenext_or_preserve_and_the_target_option_is_set_to_es2017_or_higher.code ], getCodeActions: function getCodeActionsToFixModuleAndTarget(context) { const compilerOptions = context.program.getCompilerOptions(); const { configFile } = compilerOptions; if (configFile === undefined) { return; } const codeFixes = []; const moduleKind = getEmitModuleKind(compilerOptions); const moduleOutOfRange = moduleKind >= 5 && moduleKind < 99; if (moduleOutOfRange) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (changes2) => { setJsonCompilerOptionValue(changes2, configFile, "module", factory.createStringLiteral("esnext")); }); codeFixes.push(createCodeFixActionWithoutFixAll("fixModuleOption", changes, [Diagnostics.Set_the_module_option_in_your_configuration_file_to_0, "esnext"])); } const target = getEmitScriptTarget(compilerOptions); const targetOutOfRange = target < 4 || target > 99; if (targetOutOfRange) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (tracker) => { const configObject = getTsConfigObjectLiteralExpression(configFile); if (!configObject) return; const options = [["target", factory.createStringLiteral("es2017")]]; if (moduleKind === 1) { options.push(["module", factory.createStringLiteral("commonjs")]); } setJsonCompilerOptionValues(tracker, configFile, options); }); codeFixes.push(createCodeFixActionWithoutFixAll("fixTargetOption", changes, [Diagnostics.Set_the_target_option_in_your_configuration_file_to_0, "es2017"])); } return codeFixes.length ? codeFixes : undefined; } }); var fixId30 = "fixPropertyAssignment"; var errorCodes37 = [ Diagnostics.Did_you_mean_to_use_a_Colon_An_can_only_follow_a_property_name_when_the_containing_object_literal_is_part_of_a_destructuring_pattern.code ]; registerCodeFix({ errorCodes: errorCodes37, fixIds: [fixId30], getCodeActions(context) { const { sourceFile, span } = context; const property = getProperty2(sourceFile, span.start); const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange24(t, context.sourceFile, property)); return [createCodeFixAction(fixId30, changes, [Diagnostics.Change_0_to_1, "=", ":"], fixId30, [Diagnostics.Switch_each_misused_0_to_1, "=", ":"])]; }, getAllCodeActions: (context) => codeFixAll(context, errorCodes37, (changes, diag2) => doChange24(changes, diag2.file, getProperty2(diag2.file, diag2.start))) }); function doChange24(changes, sourceFile, node) { changes.replaceNode(sourceFile, node, factory.createPropertyAssignment(node.name, node.objectAssignmentInitializer)); } function getProperty2(sourceFile, pos) { return cast(getTokenAtPosition(sourceFile, pos).parent, isShorthandPropertyAssignment); } var fixId31 = "extendsInterfaceBecomesImplements"; var errorCodes38 = [Diagnostics.Cannot_extend_an_interface_0_Did_you_mean_implements.code]; registerCodeFix({ errorCodes: errorCodes38, getCodeActions(context) { const { sourceFile } = context; const nodes = getNodes2(sourceFile, context.span.start); if (!nodes) return; const { extendsToken, heritageClauses } = nodes; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChanges2(t, sourceFile, extendsToken, heritageClauses)); return [createCodeFixAction(fixId31, changes, Diagnostics.Change_extends_to_implements, fixId31, Diagnostics.Change_all_extended_interfaces_to_implements)]; }, fixIds: [fixId31], getAllCodeActions: (context) => codeFixAll(context, errorCodes38, (changes, diag2) => { const nodes = getNodes2(diag2.file, diag2.start); if (nodes) doChanges2(changes, diag2.file, nodes.extendsToken, nodes.heritageClauses); }) }); function getNodes2(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); const heritageClauses = getContainingClass(token).heritageClauses; const extendsToken = heritageClauses[0].getFirstToken(); return extendsToken.kind === 96 ? { extendsToken, heritageClauses } : undefined; } function doChanges2(changes, sourceFile, extendsToken, heritageClauses) { changes.replaceNode(sourceFile, extendsToken, factory.createToken(119)); if (heritageClauses.length === 2 && heritageClauses[0].token === 96 && heritageClauses[1].token === 119) { const implementsToken = heritageClauses[1].getFirstToken(); const implementsFullStart = implementsToken.getFullStart(); changes.replaceRange(sourceFile, { pos: implementsFullStart, end: implementsFullStart }, factory.createToken(28)); const text = sourceFile.text; let end = implementsToken.end; while (end < text.length && isWhiteSpaceSingleLine(text.charCodeAt(end))) { end++; } changes.deleteRange(sourceFile, { pos: implementsToken.getStart(), end }); } } var fixId32 = "forgottenThisPropertyAccess"; var didYouMeanStaticMemberCode = Diagnostics.Cannot_find_name_0_Did_you_mean_the_static_member_1_0.code; var errorCodes39 = [ Diagnostics.Cannot_find_name_0_Did_you_mean_the_instance_member_this_0.code, Diagnostics.Private_identifiers_are_only_allowed_in_class_bodies_and_may_only_be_used_as_part_of_a_class_member_declaration_property_access_or_on_the_left_hand_side_of_an_in_expression.code, didYouMeanStaticMemberCode ]; registerCodeFix({ errorCodes: errorCodes39, getCodeActions(context) { const { sourceFile } = context; const info = getInfo13(sourceFile, context.span.start, context.errorCode); if (!info) { return; } const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange25(t, sourceFile, info)); return [createCodeFixAction(fixId32, changes, [Diagnostics.Add_0_to_unresolved_variable, info.className || "this"], fixId32, Diagnostics.Add_qualifier_to_all_unresolved_variables_matching_a_member_name)]; }, fixIds: [fixId32], getAllCodeActions: (context) => codeFixAll(context, errorCodes39, (changes, diag2) => { const info = getInfo13(diag2.file, diag2.start, diag2.code); if (info) doChange25(changes, context.sourceFile, info); }) }); function getInfo13(sourceFile, pos, diagCode) { const node = getTokenAtPosition(sourceFile, pos); if (isIdentifier(node) || isPrivateIdentifier(node)) { return { node, className: diagCode === didYouMeanStaticMemberCode ? getContainingClass(node).name.text : undefined }; } } function doChange25(changes, sourceFile, { node, className }) { suppressLeadingAndTrailingTrivia(node); changes.replaceNode(sourceFile, node, factory.createPropertyAccessExpression(className ? factory.createIdentifier(className) : factory.createThis(), node)); } var fixIdExpression = "fixInvalidJsxCharacters_expression"; var fixIdHtmlEntity = "fixInvalidJsxCharacters_htmlEntity"; var errorCodes40 = [ Diagnostics.Unexpected_token_Did_you_mean_or_gt.code, Diagnostics.Unexpected_token_Did_you_mean_or_rbrace.code ]; registerCodeFix({ errorCodes: errorCodes40, fixIds: [fixIdExpression, fixIdHtmlEntity], getCodeActions(context) { const { sourceFile, preferences, span } = context; const changeToExpression = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange26(t, preferences, sourceFile, span.start, false)); const changeToHtmlEntity = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange26(t, preferences, sourceFile, span.start, true)); return [ createCodeFixAction(fixIdExpression, changeToExpression, Diagnostics.Wrap_invalid_character_in_an_expression_container, fixIdExpression, Diagnostics.Wrap_all_invalid_characters_in_an_expression_container), createCodeFixAction(fixIdHtmlEntity, changeToHtmlEntity, Diagnostics.Convert_invalid_character_to_its_html_entity_code, fixIdHtmlEntity, Diagnostics.Convert_all_invalid_characters_to_HTML_entity_code) ]; }, getAllCodeActions(context) { return codeFixAll(context, errorCodes40, (changes, diagnostic) => doChange26(changes, context.preferences, diagnostic.file, diagnostic.start, context.fixId === fixIdHtmlEntity)); } }); var htmlEntity = { ">": ">", "}": "}" }; function isValidCharacter(character) { return hasProperty(htmlEntity, character); } function doChange26(changes, preferences, sourceFile, start, useHtmlEntity) { const character = sourceFile.getText()[start]; if (!isValidCharacter(character)) { return; } const replacement = useHtmlEntity ? htmlEntity[character] : `{${quote(sourceFile, preferences, character)}}`; changes.replaceRangeWithText(sourceFile, { pos: start, end: start + 1 }, replacement); } var deleteUnmatchedParameter = "deleteUnmatchedParameter"; var renameUnmatchedParameter = "renameUnmatchedParameter"; var errorCodes41 = [ Diagnostics.JSDoc_param_tag_has_name_0_but_there_is_no_parameter_with_that_name.code ]; registerCodeFix({ fixIds: [deleteUnmatchedParameter, renameUnmatchedParameter], errorCodes: errorCodes41, getCodeActions: function getCodeActionsToFixUnmatchedParameter(context) { const { sourceFile, span } = context; const actions2 = []; const info = getInfo14(sourceFile, span.start); if (info) { append(actions2, getDeleteAction(context, info)); append(actions2, getRenameAction(context, info)); return actions2; } return; }, getAllCodeActions: function getAllCodeActionsToFixUnmatchedParameter(context) { const tagsToSignature = /* @__PURE__ */ new Map; return createCombinedCodeActions(ts_textChanges_exports.ChangeTracker.with(context, (changes) => { eachDiagnostic(context, errorCodes41, ({ file, start }) => { const info = getInfo14(file, start); if (info) { tagsToSignature.set(info.signature, append(tagsToSignature.get(info.signature), info.jsDocParameterTag)); } }); tagsToSignature.forEach((tags, signature) => { if (context.fixId === deleteUnmatchedParameter) { const tagsSet = new Set(tags); changes.filterJSDocTags(signature.getSourceFile(), signature, (t) => !tagsSet.has(t)); } }); })); } }); function getDeleteAction(context, { name, jsDocHost, jsDocParameterTag }) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (changeTracker) => changeTracker.filterJSDocTags(context.sourceFile, jsDocHost, (t) => t !== jsDocParameterTag)); return createCodeFixAction(deleteUnmatchedParameter, changes, [Diagnostics.Delete_unused_param_tag_0, name.getText(context.sourceFile)], deleteUnmatchedParameter, Diagnostics.Delete_all_unused_param_tags); } function getRenameAction(context, { name, jsDocHost, signature, jsDocParameterTag }) { if (!length(signature.parameters)) return; const sourceFile = context.sourceFile; const tags = getJSDocTags(signature); const names = /* @__PURE__ */ new Set; for (const tag of tags) { if (isJSDocParameterTag(tag) && isIdentifier(tag.name)) { names.add(tag.name.escapedText); } } const parameterName = firstDefined(signature.parameters, (p) => isIdentifier(p.name) && !names.has(p.name.escapedText) ? p.name.getText(sourceFile) : undefined); if (parameterName === undefined) return; const newJSDocParameterTag = factory.updateJSDocParameterTag(jsDocParameterTag, jsDocParameterTag.tagName, factory.createIdentifier(parameterName), jsDocParameterTag.isBracketed, jsDocParameterTag.typeExpression, jsDocParameterTag.isNameFirst, jsDocParameterTag.comment); const changes = ts_textChanges_exports.ChangeTracker.with(context, (changeTracker) => changeTracker.replaceJSDocComment(sourceFile, jsDocHost, map(tags, (t) => t === jsDocParameterTag ? newJSDocParameterTag : t))); return createCodeFixActionWithoutFixAll(renameUnmatchedParameter, changes, [Diagnostics.Rename_param_tag_name_0_to_1, name.getText(sourceFile), parameterName]); } function getInfo14(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); if (token.parent && isJSDocParameterTag(token.parent) && isIdentifier(token.parent.name)) { const jsDocParameterTag = token.parent; const jsDocHost = getJSDocHost(jsDocParameterTag); const signature = getHostSignatureFromJSDoc(jsDocParameterTag); if (jsDocHost && signature) { return { jsDocHost, signature, name: token.parent.name, jsDocParameterTag }; } } return; } var fixId33 = "fixUnreferenceableDecoratorMetadata"; var errorCodes42 = [Diagnostics.A_type_referenced_in_a_decorated_signature_must_be_imported_with_import_type_or_a_namespace_import_when_isolatedModules_and_emitDecoratorMetadata_are_enabled.code]; registerCodeFix({ errorCodes: errorCodes42, getCodeActions: (context) => { const importDeclaration = getImportDeclaration(context.sourceFile, context.program, context.span.start); if (!importDeclaration) return; const namespaceChanges = ts_textChanges_exports.ChangeTracker.with(context, (t) => importDeclaration.kind === 277 && doNamespaceImportChange(t, context.sourceFile, importDeclaration, context.program)); const typeOnlyChanges = ts_textChanges_exports.ChangeTracker.with(context, (t) => doTypeOnlyImportChange(t, context.sourceFile, importDeclaration, context.program)); let actions2; if (namespaceChanges.length) { actions2 = append(actions2, createCodeFixActionWithoutFixAll(fixId33, namespaceChanges, Diagnostics.Convert_named_imports_to_namespace_import)); } if (typeOnlyChanges.length) { actions2 = append(actions2, createCodeFixActionWithoutFixAll(fixId33, typeOnlyChanges, Diagnostics.Use_import_type)); } return actions2; }, fixIds: [fixId33] }); function getImportDeclaration(sourceFile, program, start) { const identifier = tryCast(getTokenAtPosition(sourceFile, start), isIdentifier); if (!identifier || identifier.parent.kind !== 184) return; const checker = program.getTypeChecker(); const symbol = checker.getSymbolAtLocation(identifier); return find((symbol == null ? undefined : symbol.declarations) || emptyArray, or(isImportClause, isImportSpecifier, isImportEqualsDeclaration)); } function doTypeOnlyImportChange(changes, sourceFile, importDeclaration, program) { if (importDeclaration.kind === 272) { changes.insertModifierBefore(sourceFile, 156, importDeclaration.name); return; } const importClause = importDeclaration.kind === 274 ? importDeclaration : importDeclaration.parent.parent; if (importClause.name && importClause.namedBindings) { return; } const checker = program.getTypeChecker(); const importsValue = !!forEachImportClauseDeclaration(importClause, (decl) => { if (skipAlias(decl.symbol, checker).flags & 111551) return true; }); if (importsValue) { return; } changes.insertModifierBefore(sourceFile, 156, importClause); } function doNamespaceImportChange(changes, sourceFile, importDeclaration, program) { ts_refactor_exports.doChangeNamedToNamespaceOrDefault(sourceFile, program, changes, importDeclaration.parent); } var fixName3 = "unusedIdentifier"; var fixIdPrefix = "unusedIdentifier_prefix"; var fixIdDelete = "unusedIdentifier_delete"; var fixIdDeleteImports = "unusedIdentifier_deleteImports"; var fixIdInfer = "unusedIdentifier_infer"; var errorCodes43 = [ Diagnostics._0_is_declared_but_its_value_is_never_read.code, Diagnostics._0_is_declared_but_never_used.code, Diagnostics.Property_0_is_declared_but_its_value_is_never_read.code, Diagnostics.All_imports_in_import_declaration_are_unused.code, Diagnostics.All_destructured_elements_are_unused.code, Diagnostics.All_variables_are_unused.code, Diagnostics.All_type_parameters_are_unused.code ]; registerCodeFix({ errorCodes: errorCodes43, getCodeActions(context) { const { errorCode, sourceFile, program, cancellationToken } = context; const checker = program.getTypeChecker(); const sourceFiles = program.getSourceFiles(); const token = getTokenAtPosition(sourceFile, context.span.start); if (isJSDocTemplateTag(token)) { return [createDeleteFix(ts_textChanges_exports.ChangeTracker.with(context, (t) => t.delete(sourceFile, token)), Diagnostics.Remove_template_tag)]; } if (token.kind === 30) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => deleteTypeParameters(t, sourceFile, token)); return [createDeleteFix(changes, Diagnostics.Remove_type_parameters)]; } const importDecl = tryGetFullImport(token); if (importDecl) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => t.delete(sourceFile, importDecl)); return [createCodeFixAction(fixName3, changes, [Diagnostics.Remove_import_from_0, showModuleSpecifier(importDecl)], fixIdDeleteImports, Diagnostics.Delete_all_unused_imports)]; } else if (isImport(token)) { const deletion = ts_textChanges_exports.ChangeTracker.with(context, (t) => tryDeleteDeclaration(sourceFile, token, t, checker, sourceFiles, program, cancellationToken, false)); if (deletion.length) { return [createCodeFixAction(fixName3, deletion, [Diagnostics.Remove_unused_declaration_for_Colon_0, token.getText(sourceFile)], fixIdDeleteImports, Diagnostics.Delete_all_unused_imports)]; } } if (isObjectBindingPattern(token.parent) || isArrayBindingPattern(token.parent)) { if (isParameter(token.parent.parent)) { const elements = token.parent.elements; const diagnostic = [ elements.length > 1 ? Diagnostics.Remove_unused_declarations_for_Colon_0 : Diagnostics.Remove_unused_declaration_for_Colon_0, map(elements, (e) => e.getText(sourceFile)).join(", ") ]; return [ createDeleteFix(ts_textChanges_exports.ChangeTracker.with(context, (t) => deleteDestructuringElements(t, sourceFile, token.parent)), diagnostic) ]; } return [ createDeleteFix(ts_textChanges_exports.ChangeTracker.with(context, (t) => deleteDestructuring(context, t, sourceFile, token.parent)), Diagnostics.Remove_unused_destructuring_declaration) ]; } if (canDeleteEntireVariableStatement(sourceFile, token)) { return [ createDeleteFix(ts_textChanges_exports.ChangeTracker.with(context, (t) => deleteEntireVariableStatement(t, sourceFile, token.parent)), Diagnostics.Remove_variable_statement) ]; } if (isIdentifier(token) && isFunctionDeclaration(token.parent)) { return [createDeleteFix(ts_textChanges_exports.ChangeTracker.with(context, (t) => deleteFunctionLikeDeclaration(t, sourceFile, token.parent)), [Diagnostics.Remove_unused_declaration_for_Colon_0, token.getText(sourceFile)])]; } const result = []; if (token.kind === 140) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => changeInferToUnknown(t, sourceFile, token)); const name = cast(token.parent, isInferTypeNode).typeParameter.name.text; result.push(createCodeFixAction(fixName3, changes, [Diagnostics.Replace_infer_0_with_unknown, name], fixIdInfer, Diagnostics.Replace_all_unused_infer_with_unknown)); } else { const deletion = ts_textChanges_exports.ChangeTracker.with(context, (t) => tryDeleteDeclaration(sourceFile, token, t, checker, sourceFiles, program, cancellationToken, false)); if (deletion.length) { const name = isComputedPropertyName(token.parent) ? token.parent : token; result.push(createDeleteFix(deletion, [Diagnostics.Remove_unused_declaration_for_Colon_0, name.getText(sourceFile)])); } } const prefix = ts_textChanges_exports.ChangeTracker.with(context, (t) => tryPrefixDeclaration(t, errorCode, sourceFile, token)); if (prefix.length) { result.push(createCodeFixAction(fixName3, prefix, [Diagnostics.Prefix_0_with_an_underscore, token.getText(sourceFile)], fixIdPrefix, Diagnostics.Prefix_all_unused_declarations_with_where_possible)); } return result; }, fixIds: [fixIdPrefix, fixIdDelete, fixIdDeleteImports, fixIdInfer], getAllCodeActions: (context) => { const { sourceFile, program, cancellationToken } = context; const checker = program.getTypeChecker(); const sourceFiles = program.getSourceFiles(); return codeFixAll(context, errorCodes43, (changes, diag2) => { const token = getTokenAtPosition(sourceFile, diag2.start); switch (context.fixId) { case fixIdPrefix: tryPrefixDeclaration(changes, diag2.code, sourceFile, token); break; case fixIdDeleteImports: { const importDecl = tryGetFullImport(token); if (importDecl) { changes.delete(sourceFile, importDecl); } else if (isImport(token)) { tryDeleteDeclaration(sourceFile, token, changes, checker, sourceFiles, program, cancellationToken, true); } break; } case fixIdDelete: { if (token.kind === 140 || isImport(token)) { break; } else if (isJSDocTemplateTag(token)) { changes.delete(sourceFile, token); } else if (token.kind === 30) { deleteTypeParameters(changes, sourceFile, token); } else if (isObjectBindingPattern(token.parent)) { if (token.parent.parent.initializer) { break; } else if (!isParameter(token.parent.parent) || isNotProvidedArguments(token.parent.parent, checker, sourceFiles)) { changes.delete(sourceFile, token.parent.parent); } } else if (isArrayBindingPattern(token.parent.parent) && token.parent.parent.parent.initializer) { break; } else if (canDeleteEntireVariableStatement(sourceFile, token)) { deleteEntireVariableStatement(changes, sourceFile, token.parent); } else if (isIdentifier(token) && isFunctionDeclaration(token.parent)) { deleteFunctionLikeDeclaration(changes, sourceFile, token.parent); } else { tryDeleteDeclaration(sourceFile, token, changes, checker, sourceFiles, program, cancellationToken, true); } break; } case fixIdInfer: if (token.kind === 140) { changeInferToUnknown(changes, sourceFile, token); } break; default: Debug.fail(JSON.stringify(context.fixId)); } }); } }); function changeInferToUnknown(changes, sourceFile, token) { changes.replaceNode(sourceFile, token.parent, factory.createKeywordTypeNode(159)); } function createDeleteFix(changes, diag2) { return createCodeFixAction(fixName3, changes, diag2, fixIdDelete, Diagnostics.Delete_all_unused_declarations); } function deleteTypeParameters(changes, sourceFile, token) { changes.delete(sourceFile, Debug.checkDefined(cast(token.parent, isDeclarationWithTypeParameterChildren).typeParameters, "The type parameter to delete should exist")); } function isImport(token) { return token.kind === 102 || token.kind === 80 && (token.parent.kind === 277 || token.parent.kind === 274); } function tryGetFullImport(token) { return token.kind === 102 ? tryCast(token.parent, isImportDeclaration) : undefined; } function canDeleteEntireVariableStatement(sourceFile, token) { return isVariableDeclarationList(token.parent) && first(token.parent.getChildren(sourceFile)) === token; } function deleteEntireVariableStatement(changes, sourceFile, node) { changes.delete(sourceFile, node.parent.kind === 244 ? node.parent : node); } function deleteDestructuringElements(changes, sourceFile, node) { forEach(node.elements, (n) => changes.delete(sourceFile, n)); } function deleteDestructuring(context, changes, sourceFile, { parent: parent2 }) { if (isVariableDeclaration(parent2) && parent2.initializer && isCallLikeExpression(parent2.initializer)) { if (isVariableDeclarationList(parent2.parent) && length(parent2.parent.declarations) > 1) { const varStatement = parent2.parent.parent; const pos = varStatement.getStart(sourceFile); const end = varStatement.end; changes.delete(sourceFile, parent2); changes.insertNodeAt(sourceFile, end, parent2.initializer, { prefix: getNewLineOrDefaultFromHost(context.host, context.formatContext.options) + sourceFile.text.slice(getPrecedingNonSpaceCharacterPosition(sourceFile.text, pos - 1), pos), suffix: probablyUsesSemicolons(sourceFile) ? ";" : "" }); } else { changes.replaceNode(sourceFile, parent2.parent, parent2.initializer); } } else { changes.delete(sourceFile, parent2); } } function tryPrefixDeclaration(changes, errorCode, sourceFile, token) { if (errorCode === Diagnostics.Property_0_is_declared_but_its_value_is_never_read.code) return; if (token.kind === 140) { token = cast(token.parent, isInferTypeNode).typeParameter.name; } if (isIdentifier(token) && canPrefix(token)) { changes.replaceNode(sourceFile, token, factory.createIdentifier(`_${token.text}`)); if (isParameter(token.parent)) { getJSDocParameterTags(token.parent).forEach((tag) => { if (isIdentifier(tag.name)) { changes.replaceNode(sourceFile, tag.name, factory.createIdentifier(`_${tag.name.text}`)); } }); } } } function canPrefix(token) { switch (token.parent.kind) { case 170: case 169: return true; case 261: { const varDecl = token.parent; switch (varDecl.parent.parent.kind) { case 251: case 250: return true; } } } return false; } function tryDeleteDeclaration(sourceFile, token, changes, checker, sourceFiles, program, cancellationToken, isFixAll) { tryDeleteDeclarationWorker(token, changes, sourceFile, checker, sourceFiles, program, cancellationToken, isFixAll); if (isIdentifier(token)) { ts_FindAllReferences_exports.Core.eachSymbolReferenceInFile(token, checker, sourceFile, (ref) => { if (isPropertyAccessExpression(ref.parent) && ref.parent.name === ref) ref = ref.parent; if (!isFixAll && mayDeleteExpression(ref)) { changes.delete(sourceFile, ref.parent.parent); } }); } } function tryDeleteDeclarationWorker(token, changes, sourceFile, checker, sourceFiles, program, cancellationToken, isFixAll) { const { parent: parent2 } = token; if (isParameter(parent2)) { tryDeleteParameter(changes, sourceFile, parent2, checker, sourceFiles, program, cancellationToken, isFixAll); } else if (!(isFixAll && isIdentifier(token) && ts_FindAllReferences_exports.Core.isSymbolReferencedInFile(token, checker, sourceFile))) { const node = isImportClause(parent2) ? token : isComputedPropertyName(parent2) ? parent2.parent : parent2; Debug.assert(node !== sourceFile, "should not delete whole source file"); changes.delete(sourceFile, node); } } function tryDeleteParameter(changes, sourceFile, parameter, checker, sourceFiles, program, cancellationToken, isFixAll = false) { if (mayDeleteParameter(checker, sourceFile, parameter, sourceFiles, program, cancellationToken, isFixAll)) { if (parameter.modifiers && parameter.modifiers.length > 0 && (!isIdentifier(parameter.name) || ts_FindAllReferences_exports.Core.isSymbolReferencedInFile(parameter.name, checker, sourceFile))) { for (const modifier of parameter.modifiers) { if (isModifier(modifier)) { changes.deleteModifier(sourceFile, modifier); } } } else if (!parameter.initializer && isNotProvidedArguments(parameter, checker, sourceFiles)) { changes.delete(sourceFile, parameter); } } } function isNotProvidedArguments(parameter, checker, sourceFiles) { const index = parameter.parent.parameters.indexOf(parameter); return !ts_FindAllReferences_exports.Core.someSignatureUsage(parameter.parent, sourceFiles, checker, (_, call) => !call || call.arguments.length > index); } function mayDeleteParameter(checker, sourceFile, parameter, sourceFiles, program, cancellationToken, isFixAll) { const { parent: parent2 } = parameter; switch (parent2.kind) { case 175: case 177: const index = parent2.parameters.indexOf(parameter); const referent = isMethodDeclaration(parent2) ? parent2.name : parent2; const entries = ts_FindAllReferences_exports.Core.getReferencedSymbolsForNode(parent2.pos, referent, program, sourceFiles, cancellationToken); if (entries) { for (const entry of entries) { for (const reference of entry.references) { if (reference.kind === ts_FindAllReferences_exports.EntryKind.Node) { const isSuperCall2 = isSuperKeyword(reference.node) && isCallExpression(reference.node.parent) && reference.node.parent.arguments.length > index; const isSuperMethodCall = isPropertyAccessExpression(reference.node.parent) && isSuperKeyword(reference.node.parent.expression) && isCallExpression(reference.node.parent.parent) && reference.node.parent.parent.arguments.length > index; const isOverriddenMethod = (isMethodDeclaration(reference.node.parent) || isMethodSignature(reference.node.parent)) && reference.node.parent !== parameter.parent && reference.node.parent.parameters.length > index; if (isSuperCall2 || isSuperMethodCall || isOverriddenMethod) return false; } } } } return true; case 263: { if (parent2.name && isCallbackLike(checker, sourceFile, parent2.name)) { return isLastParameter(parent2, parameter, isFixAll); } return true; } case 219: case 220: return isLastParameter(parent2, parameter, isFixAll); case 179: return false; case 178: return true; default: return Debug.failBadSyntaxKind(parent2); } } function isCallbackLike(checker, sourceFile, name) { return !!ts_FindAllReferences_exports.Core.eachSymbolReferenceInFile(name, checker, sourceFile, (reference) => isIdentifier(reference) && isCallExpression(reference.parent) && reference.parent.arguments.includes(reference)); } function isLastParameter(func, parameter, isFixAll) { const parameters = func.parameters; const index = parameters.indexOf(parameter); Debug.assert(index !== -1, "The parameter should already be in the list"); return isFixAll ? parameters.slice(index + 1).every((p) => isIdentifier(p.name) && !p.symbol.isReferenced) : index === parameters.length - 1; } function mayDeleteExpression(node) { return (isBinaryExpression(node.parent) && node.parent.left === node || (isPostfixUnaryExpression(node.parent) || isPrefixUnaryExpression(node.parent)) && node.parent.operand === node) && isExpressionStatement(node.parent.parent); } function deleteFunctionLikeDeclaration(changes, sourceFile, node) { const declarations = node.symbol.declarations; if (declarations) { for (const declaration of declarations) { changes.delete(sourceFile, declaration); } } } var fixId34 = "fixUnreachableCode"; var errorCodes44 = [Diagnostics.Unreachable_code_detected.code]; registerCodeFix({ errorCodes: errorCodes44, getCodeActions(context) { const syntacticDiagnostics = context.program.getSyntacticDiagnostics(context.sourceFile, context.cancellationToken); if (syntacticDiagnostics.length) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange27(t, context.sourceFile, context.span.start, context.span.length, context.errorCode)); return [createCodeFixAction(fixId34, changes, Diagnostics.Remove_unreachable_code, fixId34, Diagnostics.Remove_all_unreachable_code)]; }, fixIds: [fixId34], getAllCodeActions: (context) => codeFixAll(context, errorCodes44, (changes, diag2) => doChange27(changes, diag2.file, diag2.start, diag2.length, diag2.code)) }); function doChange27(changes, sourceFile, start, length2, errorCode) { const token = getTokenAtPosition(sourceFile, start); const statement = findAncestor(token, isStatement); if (statement.getStart(sourceFile) !== token.getStart(sourceFile)) { const logData = JSON.stringify({ statementKind: Debug.formatSyntaxKind(statement.kind), tokenKind: Debug.formatSyntaxKind(token.kind), errorCode, start, length: length2 }); Debug.fail("Token and statement should start at the same point. " + logData); } const container = (isBlock(statement.parent) ? statement.parent : statement).parent; if (!isBlock(statement.parent) || statement === first(statement.parent.statements)) { switch (container.kind) { case 246: if (container.elseStatement) { if (isBlock(statement.parent)) { break; } else { changes.replaceNode(sourceFile, statement, factory.createBlock(emptyArray)); } return; } case 248: case 249: changes.delete(sourceFile, container); return; } } if (isBlock(statement.parent)) { const end = start + length2; const lastStatement = Debug.checkDefined(lastWhere(sliceAfter(statement.parent.statements, statement), (s) => s.pos < end), "Some statement should be last"); changes.deleteNodeRange(sourceFile, statement, lastStatement); } else { changes.delete(sourceFile, statement); } } function lastWhere(a, pred) { let last2; for (const value of a) { if (!pred(value)) break; last2 = value; } return last2; } var fixId35 = "fixUnusedLabel"; var errorCodes45 = [Diagnostics.Unused_label.code]; registerCodeFix({ errorCodes: errorCodes45, getCodeActions(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange28(t, context.sourceFile, context.span.start)); return [createCodeFixAction(fixId35, changes, Diagnostics.Remove_unused_label, fixId35, Diagnostics.Remove_all_unused_labels)]; }, fixIds: [fixId35], getAllCodeActions: (context) => codeFixAll(context, errorCodes45, (changes, diag2) => doChange28(changes, diag2.file, diag2.start)) }); function doChange28(changes, sourceFile, start) { const token = getTokenAtPosition(sourceFile, start); const labeledStatement = cast(token.parent, isLabeledStatement); const pos = token.getStart(sourceFile); const statementPos = labeledStatement.statement.getStart(sourceFile); const end = positionsAreOnSameLine(pos, statementPos, sourceFile) ? statementPos : skipTrivia2(sourceFile.text, findChildOfKind(labeledStatement, 59, sourceFile).end, true); changes.deleteRange(sourceFile, { pos, end }); } var fixIdPlain = "fixJSDocTypes_plain"; var fixIdNullable = "fixJSDocTypes_nullable"; var errorCodes46 = [ Diagnostics.JSDoc_types_can_only_be_used_inside_documentation_comments.code, Diagnostics._0_at_the_end_of_a_type_is_not_valid_TypeScript_syntax_Did_you_mean_to_write_1.code, Diagnostics._0_at_the_start_of_a_type_is_not_valid_TypeScript_syntax_Did_you_mean_to_write_1.code ]; registerCodeFix({ errorCodes: errorCodes46, getCodeActions(context) { const { sourceFile } = context; const checker = context.program.getTypeChecker(); const info = getInfo15(sourceFile, context.span.start, checker); if (!info) return; const { typeNode, type } = info; const original = typeNode.getText(sourceFile); const actions2 = [fix(type, fixIdPlain, Diagnostics.Change_all_jsdoc_style_types_to_TypeScript)]; if (typeNode.kind === 315) { actions2.push(fix(type, fixIdNullable, Diagnostics.Change_all_jsdoc_style_types_to_TypeScript_and_add_undefined_to_nullable_types)); } return actions2; function fix(type2, fixId56, fixAllDescription) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange29(t, sourceFile, typeNode, type2, checker)); return createCodeFixAction("jdocTypes", changes, [Diagnostics.Change_0_to_1, original, checker.typeToString(type2)], fixId56, fixAllDescription); } }, fixIds: [fixIdPlain, fixIdNullable], getAllCodeActions(context) { const { fixId: fixId56, program, sourceFile } = context; const checker = program.getTypeChecker(); return codeFixAll(context, errorCodes46, (changes, err) => { const info = getInfo15(err.file, err.start, checker); if (!info) return; const { typeNode, type } = info; const fixedType = typeNode.kind === 315 && fixId56 === fixIdNullable ? checker.getNullableType(type, 4) : type; doChange29(changes, sourceFile, typeNode, fixedType, checker); }); } }); function doChange29(changes, sourceFile, oldTypeNode, newType, checker) { changes.replaceNode(sourceFile, oldTypeNode, checker.typeToTypeNode(newType, oldTypeNode, undefined)); } function getInfo15(sourceFile, pos, checker) { const decl = findAncestor(getTokenAtPosition(sourceFile, pos), isTypeContainer); const typeNode = decl && decl.type; return typeNode && { typeNode, type: getType(checker, typeNode) }; } function isTypeContainer(node) { switch (node.kind) { case 235: case 180: case 181: case 263: case 178: case 182: case 201: case 175: case 174: case 170: case 173: case 172: case 179: case 266: case 217: case 261: return true; default: return false; } } function getType(checker, node) { if (isJSDocNullableType(node)) { const type = checker.getTypeFromTypeNode(node.type); if (type === checker.getNeverType() || type === checker.getVoidType()) { return type; } return checker.getUnionType(append([type, checker.getUndefinedType()], node.postfix ? undefined : checker.getNullType())); } return checker.getTypeFromTypeNode(node); } var fixId36 = "fixMissingCallParentheses"; var errorCodes47 = [ Diagnostics.This_condition_will_always_return_true_since_this_function_is_always_defined_Did_you_mean_to_call_it_instead.code ]; registerCodeFix({ errorCodes: errorCodes47, fixIds: [fixId36], getCodeActions(context) { const { sourceFile, span } = context; const callName = getCallName(sourceFile, span.start); if (!callName) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange30(t, context.sourceFile, callName)); return [createCodeFixAction(fixId36, changes, Diagnostics.Add_missing_call_parentheses, fixId36, Diagnostics.Add_all_missing_call_parentheses)]; }, getAllCodeActions: (context) => codeFixAll(context, errorCodes47, (changes, diag2) => { const callName = getCallName(diag2.file, diag2.start); if (callName) doChange30(changes, diag2.file, callName); }) }); function doChange30(changes, sourceFile, name) { changes.replaceNodeWithText(sourceFile, name, `${name.text}()`); } function getCallName(sourceFile, start) { const token = getTokenAtPosition(sourceFile, start); if (isPropertyAccessExpression(token.parent)) { let current = token.parent; while (isPropertyAccessExpression(current.parent)) { current = current.parent; } return current.name; } if (isIdentifier(token)) { return token; } return; } var fixId37 = "fixMissingTypeAnnotationOnExports"; var addAnnotationFix = "add-annotation"; var addInlineTypeAssertion = "add-type-assertion"; var extractExpression = "extract-expression"; var errorCodes48 = [ Diagnostics.Function_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations.code, Diagnostics.Method_must_have_an_explicit_return_type_annotation_with_isolatedDeclarations.code, Diagnostics.At_least_one_accessor_must_have_an_explicit_type_annotation_with_isolatedDeclarations.code, Diagnostics.Variable_must_have_an_explicit_type_annotation_with_isolatedDeclarations.code, Diagnostics.Parameter_must_have_an_explicit_type_annotation_with_isolatedDeclarations.code, Diagnostics.Property_must_have_an_explicit_type_annotation_with_isolatedDeclarations.code, Diagnostics.Expression_type_can_t_be_inferred_with_isolatedDeclarations.code, Diagnostics.Binding_elements_can_t_be_exported_directly_with_isolatedDeclarations.code, Diagnostics.Computed_property_names_on_class_or_object_literals_cannot_be_inferred_with_isolatedDeclarations.code, Diagnostics.Computed_properties_must_be_number_or_string_literals_variables_or_dotted_expressions_with_isolatedDeclarations.code, Diagnostics.Enum_member_initializers_must_be_computable_without_references_to_external_symbols_with_isolatedDeclarations.code, Diagnostics.Extends_clause_can_t_contain_an_expression_with_isolatedDeclarations.code, Diagnostics.Objects_that_contain_shorthand_properties_can_t_be_inferred_with_isolatedDeclarations.code, Diagnostics.Objects_that_contain_spread_assignments_can_t_be_inferred_with_isolatedDeclarations.code, Diagnostics.Arrays_with_spread_elements_can_t_inferred_with_isolatedDeclarations.code, Diagnostics.Default_exports_can_t_be_inferred_with_isolatedDeclarations.code, Diagnostics.Only_const_arrays_can_be_inferred_with_isolatedDeclarations.code, Diagnostics.Assigning_properties_to_functions_without_declaring_them_is_not_supported_with_isolatedDeclarations_Add_an_explicit_declaration_for_the_properties_assigned_to_this_function.code, Diagnostics.Declaration_emit_for_this_parameter_requires_implicitly_adding_undefined_to_its_type_This_is_not_supported_with_isolatedDeclarations.code, Diagnostics.Type_containing_private_name_0_can_t_be_used_with_isolatedDeclarations.code, Diagnostics.Add_satisfies_and_a_type_assertion_to_this_expression_satisfies_T_as_T_to_make_the_type_explicit.code ]; var canHaveTypeAnnotation = /* @__PURE__ */ new Set([ 178, 175, 173, 263, 219, 220, 261, 170, 278, 264, 207, 208 ]); var declarationEmitNodeBuilderFlags2 = 1024 | 2048 | 4096 | 8 | 524288 | 4 | 1; var declarationEmitInternalNodeBuilderFlags2 = 1; registerCodeFix({ errorCodes: errorCodes48, fixIds: [fixId37], getCodeActions(context) { const fixes = []; addCodeAction(addAnnotationFix, fixes, context, 0, (f) => f.addTypeAnnotation(context.span)); addCodeAction(addAnnotationFix, fixes, context, 1, (f) => f.addTypeAnnotation(context.span)); addCodeAction(addAnnotationFix, fixes, context, 2, (f) => f.addTypeAnnotation(context.span)); addCodeAction(addInlineTypeAssertion, fixes, context, 0, (f) => f.addInlineAssertion(context.span)); addCodeAction(addInlineTypeAssertion, fixes, context, 1, (f) => f.addInlineAssertion(context.span)); addCodeAction(addInlineTypeAssertion, fixes, context, 2, (f) => f.addInlineAssertion(context.span)); addCodeAction(extractExpression, fixes, context, 0, (f) => f.extractAsVariable(context.span)); return fixes; }, getAllCodeActions: (context) => { const changes = withContext(context, 0, (f) => { eachDiagnostic(context, errorCodes48, (diag2) => { f.addTypeAnnotation(diag2); }); }); return createCombinedCodeActions(changes.textChanges); } }); function addCodeAction(fixName8, fixes, context, typePrintMode, cb) { const changes = withContext(context, typePrintMode, cb); if (changes.result && changes.textChanges.length) { fixes.push(createCodeFixAction(fixName8, changes.textChanges, changes.result, fixId37, Diagnostics.Add_all_missing_type_annotations)); } } function withContext(context, typePrintMode, cb) { const emptyInferenceResult = { typeNode: undefined, mutatedTarget: false }; const changeTracker = ts_textChanges_exports.ChangeTracker.fromContext(context); const sourceFile = context.sourceFile; const program = context.program; const typeChecker = program.getTypeChecker(); const scriptTarget = getEmitScriptTarget(program.getCompilerOptions()); const importAdder = createImportAdder(context.sourceFile, context.program, context.preferences, context.host); const fixedNodes = /* @__PURE__ */ new Set; const expandoPropertiesAdded = /* @__PURE__ */ new Set; const typePrinter = createPrinter({ preserveSourceNewlines: false }); const result = cb({ addTypeAnnotation, addInlineAssertion, extractAsVariable }); importAdder.writeFixes(changeTracker); return { result, textChanges: changeTracker.getChanges() }; function addTypeAnnotation(span) { context.cancellationToken.throwIfCancellationRequested(); const nodeWithDiag = getTokenAtPosition(sourceFile, span.start); const expandoFunction = findExpandoFunction(nodeWithDiag); if (expandoFunction) { if (isFunctionDeclaration(expandoFunction)) { return createNamespaceForExpandoProperties(expandoFunction); } return fixIsolatedDeclarationError(expandoFunction); } const nodeMissingType = findAncestorWithMissingType(nodeWithDiag); if (nodeMissingType) { return fixIsolatedDeclarationError(nodeMissingType); } return; } function createNamespaceForExpandoProperties(expandoFunc) { var _a; if (expandoPropertiesAdded == null ? undefined : expandoPropertiesAdded.has(expandoFunc)) return; expandoPropertiesAdded == null || expandoPropertiesAdded.add(expandoFunc); const type = typeChecker.getTypeAtLocation(expandoFunc); const elements = typeChecker.getPropertiesOfType(type); if (!expandoFunc.name || elements.length === 0) return; const newProperties = []; for (const symbol of elements) { if (!isIdentifierText(symbol.name, getEmitScriptTarget(program.getCompilerOptions()))) continue; if (symbol.valueDeclaration && isVariableDeclaration(symbol.valueDeclaration)) continue; newProperties.push(factory.createVariableStatement([factory.createModifier(95)], factory.createVariableDeclarationList([factory.createVariableDeclaration(symbol.name, undefined, typeToTypeNode2(typeChecker.getTypeOfSymbol(symbol), expandoFunc), undefined)]))); } if (newProperties.length === 0) return; const modifiers = []; if ((_a = expandoFunc.modifiers) == null ? undefined : _a.some((modifier) => modifier.kind === 95)) { modifiers.push(factory.createModifier(95)); } modifiers.push(factory.createModifier(138)); const namespace = factory.createModuleDeclaration(modifiers, expandoFunc.name, factory.createModuleBlock(newProperties), 32 | 128 | 33554432 | 101441536); changeTracker.insertNodeAfter(sourceFile, expandoFunc, namespace); return [Diagnostics.Annotate_types_of_properties_expando_function_in_a_namespace]; } function needsParenthesizedExpressionForAssertion(node) { return !isEntityNameExpression(node) && !isCallExpression(node) && !isObjectLiteralExpression(node) && !isArrayLiteralExpression(node); } function createAsExpression(node, type) { if (needsParenthesizedExpressionForAssertion(node)) { node = factory.createParenthesizedExpression(node); } return factory.createAsExpression(node, type); } function createSatisfiesAsExpression(node, type) { if (needsParenthesizedExpressionForAssertion(node)) { node = factory.createParenthesizedExpression(node); } return factory.createAsExpression(factory.createSatisfiesExpression(node, getSynthesizedDeepClone(type)), type); } function addInlineAssertion(span) { context.cancellationToken.throwIfCancellationRequested(); const nodeWithDiag = getTokenAtPosition(sourceFile, span.start); const expandoFunction = findExpandoFunction(nodeWithDiag); if (expandoFunction) return; const targetNode = findBestFittingNode(nodeWithDiag, span); if (!targetNode || isValueSignatureDeclaration(targetNode) || isValueSignatureDeclaration(targetNode.parent)) return; const isExpressionTarget = isExpression(targetNode); const isShorthandPropertyAssignmentTarget = isShorthandPropertyAssignment(targetNode); if (!isShorthandPropertyAssignmentTarget && isDeclaration(targetNode)) { return; } if (findAncestor(targetNode, isBindingPattern)) { return; } if (findAncestor(targetNode, isEnumMember)) { return; } if (isExpressionTarget && (findAncestor(targetNode, isHeritageClause) || findAncestor(targetNode, isTypeNode))) { return; } if (isSpreadElement(targetNode)) { return; } const variableDeclaration = findAncestor(targetNode, isVariableDeclaration); const type = variableDeclaration && typeChecker.getTypeAtLocation(variableDeclaration); if (type && type.flags & 16384) { return; } if (!(isExpressionTarget || isShorthandPropertyAssignmentTarget)) return; const { typeNode, mutatedTarget } = inferType(targetNode, type); if (!typeNode || mutatedTarget) return; if (isShorthandPropertyAssignmentTarget) { changeTracker.insertNodeAt(sourceFile, targetNode.end, createAsExpression(getSynthesizedDeepClone(targetNode.name), typeNode), { prefix: ": " }); } else if (isExpressionTarget) { changeTracker.replaceNode(sourceFile, targetNode, createSatisfiesAsExpression(getSynthesizedDeepClone(targetNode), typeNode)); } else { Debug.assertNever(targetNode); } return [Diagnostics.Add_satisfies_and_an_inline_type_assertion_with_0, typeToStringForDiag(typeNode)]; } function extractAsVariable(span) { context.cancellationToken.throwIfCancellationRequested(); const nodeWithDiag = getTokenAtPosition(sourceFile, span.start); const targetNode = findBestFittingNode(nodeWithDiag, span); if (!targetNode || isValueSignatureDeclaration(targetNode) || isValueSignatureDeclaration(targetNode.parent)) return; const isExpressionTarget = isExpression(targetNode); if (!isExpressionTarget) return; if (isArrayLiteralExpression(targetNode)) { changeTracker.replaceNode(sourceFile, targetNode, createAsExpression(targetNode, factory.createTypeReferenceNode("const"))); return [Diagnostics.Mark_array_literal_as_const]; } const parentPropertyAssignment = findAncestor(targetNode, isPropertyAssignment); if (parentPropertyAssignment) { if (parentPropertyAssignment === targetNode.parent && isEntityNameExpression(targetNode)) return; const tempName = factory.createUniqueName(getIdentifierForNode(targetNode, sourceFile, typeChecker, sourceFile), 16); let replacementTarget = targetNode; let initializationNode = targetNode; if (isSpreadElement(replacementTarget)) { replacementTarget = walkUpParenthesizedExpressions(replacementTarget.parent); if (isConstAssertion2(replacementTarget.parent)) { initializationNode = replacementTarget = replacementTarget.parent; } else { initializationNode = createAsExpression(replacementTarget, factory.createTypeReferenceNode("const")); } } if (isEntityNameExpression(replacementTarget)) return; const variableDefinition = factory.createVariableStatement(undefined, factory.createVariableDeclarationList([ factory.createVariableDeclaration(tempName, undefined, undefined, initializationNode) ], 2)); const statement = findAncestor(targetNode, isStatement); changeTracker.insertNodeBefore(sourceFile, statement, variableDefinition); changeTracker.replaceNode(sourceFile, replacementTarget, factory.createAsExpression(factory.cloneNode(tempName), factory.createTypeQueryNode(factory.cloneNode(tempName)))); return [Diagnostics.Extract_to_variable_and_replace_with_0_as_typeof_0, typeToStringForDiag(tempName)]; } } function findExpandoFunction(node) { const expandoDeclaration = findAncestor(node, (n) => isStatement(n) ? "quit" : isExpandoPropertyDeclaration(n)); if (expandoDeclaration && isExpandoPropertyDeclaration(expandoDeclaration)) { let assignmentTarget = expandoDeclaration; if (isBinaryExpression(assignmentTarget)) { assignmentTarget = assignmentTarget.left; if (!isExpandoPropertyDeclaration(assignmentTarget)) return; } const targetType = typeChecker.getTypeAtLocation(assignmentTarget.expression); if (!targetType) return; const properties = typeChecker.getPropertiesOfType(targetType); if (some(properties, (p) => p.valueDeclaration === expandoDeclaration || p.valueDeclaration === expandoDeclaration.parent)) { const fn = targetType.symbol.valueDeclaration; if (fn) { if (isFunctionExpressionOrArrowFunction(fn) && isVariableDeclaration(fn.parent)) { return fn.parent; } if (isFunctionDeclaration(fn)) { return fn; } } } } return; } function fixIsolatedDeclarationError(node) { if (fixedNodes == null ? undefined : fixedNodes.has(node)) return; fixedNodes == null || fixedNodes.add(node); switch (node.kind) { case 170: case 173: case 261: return addTypeToVariableLike(node); case 220: case 219: case 263: case 175: case 178: return addTypeToSignatureDeclaration(node, sourceFile); case 278: return transformExportAssignment(node); case 264: return transformExtendsClauseWithExpression(node); case 207: case 208: return transformDestructuringPatterns(node); default: throw new Error(`Cannot find a fix for the given node ${node.kind}`); } } function addTypeToSignatureDeclaration(func, sourceFile2) { if (func.type) { return; } const { typeNode } = inferType(func); if (typeNode) { changeTracker.tryInsertTypeAnnotation(sourceFile2, func, typeNode); return [Diagnostics.Add_return_type_0, typeToStringForDiag(typeNode)]; } } function transformExportAssignment(defaultExport) { if (defaultExport.isExportEquals) { return; } const { typeNode } = inferType(defaultExport.expression); if (!typeNode) return; const defaultIdentifier = factory.createUniqueName("_default"); changeTracker.replaceNodeWithNodes(sourceFile, defaultExport, [ factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(defaultIdentifier, undefined, typeNode, defaultExport.expression)], 2)), factory.updateExportAssignment(defaultExport, defaultExport == null ? undefined : defaultExport.modifiers, defaultIdentifier) ]); return [ Diagnostics.Extract_default_export_to_variable ]; } function transformExtendsClauseWithExpression(classDecl) { var _a, _b; const extendsClause = (_a = classDecl.heritageClauses) == null ? undefined : _a.find((p) => p.token === 96); const heritageExpression = extendsClause == null ? undefined : extendsClause.types[0]; if (!heritageExpression) { return; } const { typeNode: heritageTypeNode } = inferType(heritageExpression.expression); if (!heritageTypeNode) { return; } const baseClassName = factory.createUniqueName(classDecl.name ? classDecl.name.text + "Base" : "Anonymous", 16); const heritageVariable = factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(baseClassName, undefined, heritageTypeNode, heritageExpression.expression)], 2)); changeTracker.insertNodeBefore(sourceFile, classDecl, heritageVariable); const trailingComments = getTrailingCommentRanges(sourceFile.text, heritageExpression.end); const realEnd = ((_b = trailingComments == null ? undefined : trailingComments[trailingComments.length - 1]) == null ? undefined : _b.end) ?? heritageExpression.end; changeTracker.replaceRange(sourceFile, { pos: heritageExpression.getFullStart(), end: realEnd }, baseClassName, { prefix: " " }); return [Diagnostics.Extract_base_class_to_variable]; } let ExpressionType; ((ExpressionType2) => { ExpressionType2[ExpressionType2["Text"] = 0] = "Text"; ExpressionType2[ExpressionType2["Computed"] = 1] = "Computed"; ExpressionType2[ExpressionType2["ArrayAccess"] = 2] = "ArrayAccess"; ExpressionType2[ExpressionType2["Identifier"] = 3] = "Identifier"; })(ExpressionType || (ExpressionType = {})); function transformDestructuringPatterns(bindingPattern) { var _a; const enclosingVariableDeclaration = bindingPattern.parent; const enclosingVarStmt = bindingPattern.parent.parent.parent; if (!enclosingVariableDeclaration.initializer) return; let baseExpr; const newNodes = []; if (!isIdentifier(enclosingVariableDeclaration.initializer)) { const tempHolderForReturn = factory.createUniqueName("dest", 16); baseExpr = { expression: { kind: 3, identifier: tempHolderForReturn } }; newNodes.push(factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(tempHolderForReturn, undefined, undefined, enclosingVariableDeclaration.initializer)], 2))); } else { baseExpr = { expression: { kind: 3, identifier: enclosingVariableDeclaration.initializer } }; } const bindingElements = []; if (isArrayBindingPattern(bindingPattern)) { addArrayBindingPatterns(bindingPattern, bindingElements, baseExpr); } else { addObjectBindingPatterns(bindingPattern, bindingElements, baseExpr); } const expressionToVar = /* @__PURE__ */ new Map; for (const bindingElement of bindingElements) { if (bindingElement.element.propertyName && isComputedPropertyName(bindingElement.element.propertyName)) { const computedExpression = bindingElement.element.propertyName.expression; const identifierForComputedProperty = factory.getGeneratedNameForNode(computedExpression); const variableDecl = factory.createVariableDeclaration(identifierForComputedProperty, undefined, undefined, computedExpression); const variableList = factory.createVariableDeclarationList([variableDecl], 2); const variableStatement = factory.createVariableStatement(undefined, variableList); newNodes.push(variableStatement); expressionToVar.set(computedExpression, identifierForComputedProperty); } const name = bindingElement.element.name; if (isArrayBindingPattern(name)) { addArrayBindingPatterns(name, bindingElements, bindingElement); } else if (isObjectBindingPattern(name)) { addObjectBindingPatterns(name, bindingElements, bindingElement); } else { const { typeNode } = inferType(name); let variableInitializer = createChainedExpression(bindingElement, expressionToVar); if (bindingElement.element.initializer) { const propertyName = (_a = bindingElement.element) == null ? undefined : _a.propertyName; const tempName = factory.createUniqueName(propertyName && isIdentifier(propertyName) ? propertyName.text : "temp", 16); newNodes.push(factory.createVariableStatement(undefined, factory.createVariableDeclarationList([factory.createVariableDeclaration(tempName, undefined, undefined, variableInitializer)], 2))); variableInitializer = factory.createConditionalExpression(factory.createBinaryExpression(tempName, factory.createToken(37), factory.createIdentifier("undefined")), factory.createToken(58), bindingElement.element.initializer, factory.createToken(59), variableInitializer); } const exportModifier = hasSyntacticModifier(enclosingVarStmt, 32) ? [factory.createToken(95)] : undefined; newNodes.push(factory.createVariableStatement(exportModifier, factory.createVariableDeclarationList([factory.createVariableDeclaration(name, undefined, typeNode, variableInitializer)], 2))); } } if (enclosingVarStmt.declarationList.declarations.length > 1) { newNodes.push(factory.updateVariableStatement(enclosingVarStmt, enclosingVarStmt.modifiers, factory.updateVariableDeclarationList(enclosingVarStmt.declarationList, enclosingVarStmt.declarationList.declarations.filter((node) => node !== bindingPattern.parent)))); } changeTracker.replaceNodeWithNodes(sourceFile, enclosingVarStmt, newNodes); return [ Diagnostics.Extract_binding_expressions_to_variable ]; } function addArrayBindingPatterns(bindingPattern, bindingElements, parent2) { for (let i = 0;i < bindingPattern.elements.length; ++i) { const element = bindingPattern.elements[i]; if (isOmittedExpression(element)) { continue; } bindingElements.push({ element, parent: parent2, expression: { kind: 2, arrayIndex: i } }); } } function addObjectBindingPatterns(bindingPattern, bindingElements, parent2) { for (const bindingElement of bindingPattern.elements) { let name; if (bindingElement.propertyName) { if (isComputedPropertyName(bindingElement.propertyName)) { bindingElements.push({ element: bindingElement, parent: parent2, expression: { kind: 1, computed: bindingElement.propertyName.expression } }); continue; } else { name = bindingElement.propertyName.text; } } else { name = bindingElement.name.text; } bindingElements.push({ element: bindingElement, parent: parent2, expression: { kind: 0, text: name } }); } } function createChainedExpression(expression, expressionToVar) { const reverseTraverse = [expression]; while (expression.parent) { expression = expression.parent; reverseTraverse.push(expression); } let chainedExpression = reverseTraverse[reverseTraverse.length - 1].expression.identifier; for (let i = reverseTraverse.length - 2;i >= 0; --i) { const nextSubExpr = reverseTraverse[i].expression; if (nextSubExpr.kind === 0) { chainedExpression = factory.createPropertyAccessChain(chainedExpression, undefined, factory.createIdentifier(nextSubExpr.text)); } else if (nextSubExpr.kind === 1) { chainedExpression = factory.createElementAccessExpression(chainedExpression, expressionToVar.get(nextSubExpr.computed)); } else if (nextSubExpr.kind === 2) { chainedExpression = factory.createElementAccessExpression(chainedExpression, nextSubExpr.arrayIndex); } } return chainedExpression; } function inferType(node, variableType) { if (typePrintMode === 1) { return relativeType(node); } let type; if (isValueSignatureDeclaration(node)) { const signature = typeChecker.getSignatureFromDeclaration(node); if (signature) { const typePredicate = typeChecker.getTypePredicateOfSignature(signature); if (typePredicate) { if (!typePredicate.type) { return emptyInferenceResult; } return { typeNode: typePredicateToTypeNode(typePredicate, findAncestor(node, isDeclaration) ?? sourceFile, getFlags(typePredicate.type)), mutatedTarget: false }; } type = typeChecker.getReturnTypeOfSignature(signature); } } else { type = typeChecker.getTypeAtLocation(node); } if (!type) { return emptyInferenceResult; } if (typePrintMode === 2) { if (variableType) { type = variableType; } const widenedType = typeChecker.getWidenedLiteralType(type); if (typeChecker.isTypeAssignableTo(widenedType, type)) { return emptyInferenceResult; } type = widenedType; } const enclosingDeclaration = findAncestor(node, isDeclaration) ?? sourceFile; if (isParameter(node) && typeChecker.requiresAddingImplicitUndefined(node, enclosingDeclaration)) { type = typeChecker.getUnionType([typeChecker.getUndefinedType(), type], 0); } return { typeNode: typeToTypeNode2(type, enclosingDeclaration, getFlags(type)), mutatedTarget: false }; function getFlags(type2) { return (isVariableDeclaration(node) || isPropertyDeclaration(node) && hasSyntacticModifier(node, 256 | 8)) && type2.flags & 16384 ? 1048576 : 0; } } function createTypeOfFromEntityNameExpression(node) { return factory.createTypeQueryNode(getSynthesizedDeepClone(node)); } function typeFromArraySpreadElements(node, name = "temp") { const isConstContext = !!findAncestor(node, isConstAssertion2); if (!isConstContext) return emptyInferenceResult; return typeFromSpreads(node, name, isConstContext, (n) => n.elements, isSpreadElement, factory.createSpreadElement, (props) => factory.createArrayLiteralExpression(props, true), (types) => factory.createTupleTypeNode(types.map(factory.createRestTypeNode))); } function typeFromObjectSpreadAssignment(node, name = "temp") { const isConstContext = !!findAncestor(node, isConstAssertion2); return typeFromSpreads(node, name, isConstContext, (n) => n.properties, isSpreadAssignment, factory.createSpreadAssignment, (props) => factory.createObjectLiteralExpression(props, true), factory.createIntersectionTypeNode); } function typeFromSpreads(node, name, isConstContext, getChildren, isSpread, createSpread, makeNodeOfKind, finalType) { const intersectionTypes = []; const newSpreads = []; let currentVariableProperties; const statement = findAncestor(node, isStatement); for (const prop of getChildren(node)) { if (isSpread(prop)) { finalizesVariablePart(); if (isEntityNameExpression(prop.expression)) { intersectionTypes.push(createTypeOfFromEntityNameExpression(prop.expression)); newSpreads.push(prop); } else { makeVariable(prop.expression); } } else { (currentVariableProperties ?? (currentVariableProperties = [])).push(prop); } } if (newSpreads.length === 0) { return emptyInferenceResult; } finalizesVariablePart(); changeTracker.replaceNode(sourceFile, node, makeNodeOfKind(newSpreads)); return { typeNode: finalType(intersectionTypes), mutatedTarget: true }; function makeVariable(expression) { const tempName = factory.createUniqueName(name + "_Part" + (newSpreads.length + 1), 16); const initializer = !isConstContext ? expression : factory.createAsExpression(expression, factory.createTypeReferenceNode("const")); const variableDefinition = factory.createVariableStatement(undefined, factory.createVariableDeclarationList([ factory.createVariableDeclaration(tempName, undefined, undefined, initializer) ], 2)); changeTracker.insertNodeBefore(sourceFile, statement, variableDefinition); intersectionTypes.push(createTypeOfFromEntityNameExpression(tempName)); newSpreads.push(createSpread(tempName)); } function finalizesVariablePart() { if (currentVariableProperties) { makeVariable(makeNodeOfKind(currentVariableProperties)); currentVariableProperties = undefined; } } } function isConstAssertion2(location) { return isAssertionExpression(location) && isConstTypeReference(location.type); } function relativeType(node) { if (isParameter(node)) { return emptyInferenceResult; } if (isShorthandPropertyAssignment(node)) { return { typeNode: createTypeOfFromEntityNameExpression(node.name), mutatedTarget: false }; } if (isEntityNameExpression(node)) { return { typeNode: createTypeOfFromEntityNameExpression(node), mutatedTarget: false }; } if (isConstAssertion2(node)) { return relativeType(node.expression); } if (isArrayLiteralExpression(node)) { const variableDecl = findAncestor(node, isVariableDeclaration); const partName = variableDecl && isIdentifier(variableDecl.name) ? variableDecl.name.text : undefined; return typeFromArraySpreadElements(node, partName); } if (isObjectLiteralExpression(node)) { const variableDecl = findAncestor(node, isVariableDeclaration); const partName = variableDecl && isIdentifier(variableDecl.name) ? variableDecl.name.text : undefined; return typeFromObjectSpreadAssignment(node, partName); } if (isVariableDeclaration(node) && node.initializer) { return relativeType(node.initializer); } if (isConditionalExpression(node)) { const { typeNode: trueType, mutatedTarget: mTrue } = relativeType(node.whenTrue); if (!trueType) return emptyInferenceResult; const { typeNode: falseType, mutatedTarget: mFalse } = relativeType(node.whenFalse); if (!falseType) return emptyInferenceResult; return { typeNode: factory.createUnionTypeNode([trueType, falseType]), mutatedTarget: mTrue || mFalse }; } return emptyInferenceResult; } function typeToTypeNode2(type, enclosingDeclaration, flags = 0) { let isTruncated = false; const minimizedTypeNode = typeToMinimizedReferenceType(typeChecker, type, enclosingDeclaration, declarationEmitNodeBuilderFlags2 | flags, declarationEmitInternalNodeBuilderFlags2, { moduleResolverHost: program, trackSymbol() { return true; }, reportTruncationError() { isTruncated = true; } }); if (!minimizedTypeNode) { return; } const result2 = typeNodeToAutoImportableTypeNode(minimizedTypeNode, importAdder, scriptTarget); return isTruncated ? factory.createKeywordTypeNode(133) : result2; } function typePredicateToTypeNode(typePredicate, enclosingDeclaration, flags = 0) { let isTruncated = false; const result2 = typePredicateToAutoImportableTypeNode(typeChecker, importAdder, typePredicate, enclosingDeclaration, scriptTarget, declarationEmitNodeBuilderFlags2 | flags, declarationEmitInternalNodeBuilderFlags2, { moduleResolverHost: program, trackSymbol() { return true; }, reportTruncationError() { isTruncated = true; } }); return isTruncated ? factory.createKeywordTypeNode(133) : result2; } function addTypeToVariableLike(decl) { const { typeNode } = inferType(decl); if (typeNode) { if (decl.type) { changeTracker.replaceNode(getSourceFileOfNode(decl), decl.type, typeNode); } else { changeTracker.tryInsertTypeAnnotation(getSourceFileOfNode(decl), decl, typeNode); } return [Diagnostics.Add_annotation_of_type_0, typeToStringForDiag(typeNode)]; } } function typeToStringForDiag(node) { setEmitFlags(node, 1); const result2 = typePrinter.printNode(4, node, sourceFile); if (result2.length > defaultMaximumTruncationLength) { return result2.substring(0, defaultMaximumTruncationLength - "...".length) + "..."; } setEmitFlags(node, 0); return result2; } function findAncestorWithMissingType(node) { return findAncestor(node, (n) => { return canHaveTypeAnnotation.has(n.kind) && (!isObjectBindingPattern(n) && !isArrayBindingPattern(n) || isVariableDeclaration(n.parent)); }); } function findBestFittingNode(node, span) { while (node && node.end < span.start + span.length) { node = node.parent; } while (node.parent.pos === node.pos && node.parent.end === node.end) { node = node.parent; } if (isIdentifier(node) && hasInitializer(node.parent) && node.parent.initializer) { return node.parent.initializer; } return node; } } var fixId38 = "fixAwaitInSyncFunction"; var errorCodes49 = [ Diagnostics.await_expressions_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules.code, Diagnostics.await_using_statements_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules.code, Diagnostics.for_await_loops_are_only_allowed_within_async_functions_and_at_the_top_levels_of_modules.code, Diagnostics.Cannot_find_name_0_Did_you_mean_to_write_this_in_an_async_function.code ]; registerCodeFix({ errorCodes: errorCodes49, getCodeActions(context) { const { sourceFile, span } = context; const nodes = getNodes3(sourceFile, span.start); if (!nodes) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange31(t, sourceFile, nodes)); return [createCodeFixAction(fixId38, changes, Diagnostics.Add_async_modifier_to_containing_function, fixId38, Diagnostics.Add_all_missing_async_modifiers)]; }, fixIds: [fixId38], getAllCodeActions: function getAllCodeActionsToFixAwaitInSyncFunction(context) { const seen = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes49, (changes, diag2) => { const nodes = getNodes3(diag2.file, diag2.start); if (!nodes || !addToSeen(seen, getNodeId(nodes.insertBefore))) return; doChange31(changes, context.sourceFile, nodes); }); } }); function getReturnType(expr) { if (expr.type) { return expr.type; } if (isVariableDeclaration(expr.parent) && expr.parent.type && isFunctionTypeNode(expr.parent.type)) { return expr.parent.type.type; } } function getNodes3(sourceFile, start) { const token = getTokenAtPosition(sourceFile, start); const containingFunction = getContainingFunction(token); if (!containingFunction) { return; } let insertBefore; switch (containingFunction.kind) { case 175: insertBefore = containingFunction.name; break; case 263: case 219: insertBefore = findChildOfKind(containingFunction, 100, sourceFile); break; case 220: const kind = containingFunction.typeParameters ? 30 : 21; insertBefore = findChildOfKind(containingFunction, kind, sourceFile) || first(containingFunction.parameters); break; default: return; } return insertBefore && { insertBefore, returnType: getReturnType(containingFunction) }; } function doChange31(changes, sourceFile, { insertBefore, returnType }) { if (returnType) { const entityName = getEntityNameFromTypeNode(returnType); if (!entityName || entityName.kind !== 80 || entityName.text !== "Promise") { changes.replaceNode(sourceFile, returnType, factory.createTypeReferenceNode("Promise", factory.createNodeArray([returnType]))); } } changes.insertModifierBefore(sourceFile, 134, insertBefore); } var errorCodes50 = [ Diagnostics._0_is_defined_as_an_accessor_in_class_1_but_is_overridden_here_in_2_as_an_instance_property.code, Diagnostics._0_is_defined_as_a_property_in_class_1_but_is_overridden_here_in_2_as_an_accessor.code ]; var fixId39 = "fixPropertyOverrideAccessor"; registerCodeFix({ errorCodes: errorCodes50, getCodeActions(context) { const edits = doChange32(context.sourceFile, context.span.start, context.span.length, context.errorCode, context); if (edits) { return [createCodeFixAction(fixId39, edits, Diagnostics.Generate_get_and_set_accessors, fixId39, Diagnostics.Generate_get_and_set_accessors_for_all_overriding_properties)]; } }, fixIds: [fixId39], getAllCodeActions: (context) => codeFixAll(context, errorCodes50, (changes, diag2) => { const edits = doChange32(diag2.file, diag2.start, diag2.length, diag2.code, context); if (edits) { for (const edit of edits) { changes.pushRaw(context.sourceFile, edit); } } }) }); function doChange32(file, start, length2, code, context) { let startPosition; let endPosition; if (code === Diagnostics._0_is_defined_as_an_accessor_in_class_1_but_is_overridden_here_in_2_as_an_instance_property.code) { startPosition = start; endPosition = start + length2; } else if (code === Diagnostics._0_is_defined_as_a_property_in_class_1_but_is_overridden_here_in_2_as_an_accessor.code) { const checker = context.program.getTypeChecker(); const node = getTokenAtPosition(file, start).parent; if (isComputedPropertyName(node)) { return; } Debug.assert(isAccessor(node), "error span of fixPropertyOverrideAccessor should only be on an accessor"); const containingClass = node.parent; Debug.assert(isClassLike(containingClass), "erroneous accessors should only be inside classes"); const baseTypeNode = getEffectiveBaseTypeNode(containingClass); if (!baseTypeNode) return; const expression = skipParentheses(baseTypeNode.expression); const base = isClassExpression(expression) ? expression.symbol : checker.getSymbolAtLocation(expression); if (!base) return; const baseType = checker.getDeclaredTypeOfSymbol(base); const baseProp = checker.getPropertyOfType(baseType, unescapeLeadingUnderscores(getTextOfPropertyName(node.name))); if (!baseProp || !baseProp.valueDeclaration) return; startPosition = baseProp.valueDeclaration.pos; endPosition = baseProp.valueDeclaration.end; file = getSourceFileOfNode(baseProp.valueDeclaration); } else { Debug.fail("fixPropertyOverrideAccessor codefix got unexpected error code " + code); } return generateAccessorFromProperty(file, context.program, startPosition, endPosition, context, Diagnostics.Generate_get_and_set_accessors.message); } var fixId40 = "inferFromUsage"; var errorCodes51 = [ Diagnostics.Variable_0_implicitly_has_type_1_in_some_locations_where_its_type_cannot_be_determined.code, Diagnostics.Variable_0_implicitly_has_an_1_type.code, Diagnostics.Parameter_0_implicitly_has_an_1_type.code, Diagnostics.Rest_parameter_0_implicitly_has_an_any_type.code, Diagnostics.Property_0_implicitly_has_type_any_because_its_get_accessor_lacks_a_return_type_annotation.code, Diagnostics._0_which_lacks_return_type_annotation_implicitly_has_an_1_return_type.code, Diagnostics.Property_0_implicitly_has_type_any_because_its_set_accessor_lacks_a_parameter_type_annotation.code, Diagnostics.Member_0_implicitly_has_an_1_type.code, Diagnostics.Variable_0_implicitly_has_type_1_in_some_locations_but_a_better_type_may_be_inferred_from_usage.code, Diagnostics.Variable_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage.code, Diagnostics.Parameter_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage.code, Diagnostics.Rest_parameter_0_implicitly_has_an_any_type_but_a_better_type_may_be_inferred_from_usage.code, Diagnostics.Property_0_implicitly_has_type_any_but_a_better_type_for_its_get_accessor_may_be_inferred_from_usage.code, Diagnostics._0_implicitly_has_an_1_return_type_but_a_better_type_may_be_inferred_from_usage.code, Diagnostics.Property_0_implicitly_has_type_any_but_a_better_type_for_its_set_accessor_may_be_inferred_from_usage.code, Diagnostics.Member_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage.code, Diagnostics.this_implicitly_has_type_any_because_it_does_not_have_a_type_annotation.code ]; registerCodeFix({ errorCodes: errorCodes51, getCodeActions(context) { const { sourceFile, program, span: { start }, errorCode, cancellationToken, host, preferences } = context; const token = getTokenAtPosition(sourceFile, start); let declaration; const changes = ts_textChanges_exports.ChangeTracker.with(context, (changes2) => { declaration = doChange33(changes2, sourceFile, token, errorCode, program, cancellationToken, returnTrue, host, preferences); }); const name = declaration && getNameOfDeclaration(declaration); return !name || changes.length === 0 ? undefined : [createCodeFixAction(fixId40, changes, [getDiagnostic(errorCode, token), getTextOfNode(name)], fixId40, Diagnostics.Infer_all_types_from_usage)]; }, fixIds: [fixId40], getAllCodeActions(context) { const { sourceFile, program, cancellationToken, host, preferences } = context; const markSeen = nodeSeenTracker(); return codeFixAll(context, errorCodes51, (changes, err) => { doChange33(changes, sourceFile, getTokenAtPosition(err.file, err.start), err.code, program, cancellationToken, markSeen, host, preferences); }); } }); function getDiagnostic(errorCode, token) { switch (errorCode) { case Diagnostics.Parameter_0_implicitly_has_an_1_type.code: case Diagnostics.Parameter_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage.code: return isSetAccessorDeclaration(getContainingFunction(token)) ? Diagnostics.Infer_type_of_0_from_usage : Diagnostics.Infer_parameter_types_from_usage; case Diagnostics.Rest_parameter_0_implicitly_has_an_any_type.code: case Diagnostics.Rest_parameter_0_implicitly_has_an_any_type_but_a_better_type_may_be_inferred_from_usage.code: return Diagnostics.Infer_parameter_types_from_usage; case Diagnostics.this_implicitly_has_type_any_because_it_does_not_have_a_type_annotation.code: return Diagnostics.Infer_this_type_of_0_from_usage; default: return Diagnostics.Infer_type_of_0_from_usage; } } function mapSuggestionDiagnostic(errorCode) { switch (errorCode) { case Diagnostics.Variable_0_implicitly_has_type_1_in_some_locations_but_a_better_type_may_be_inferred_from_usage.code: return Diagnostics.Variable_0_implicitly_has_type_1_in_some_locations_where_its_type_cannot_be_determined.code; case Diagnostics.Variable_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage.code: return Diagnostics.Variable_0_implicitly_has_an_1_type.code; case Diagnostics.Parameter_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage.code: return Diagnostics.Parameter_0_implicitly_has_an_1_type.code; case Diagnostics.Rest_parameter_0_implicitly_has_an_any_type_but_a_better_type_may_be_inferred_from_usage.code: return Diagnostics.Rest_parameter_0_implicitly_has_an_any_type.code; case Diagnostics.Property_0_implicitly_has_type_any_but_a_better_type_for_its_get_accessor_may_be_inferred_from_usage.code: return Diagnostics.Property_0_implicitly_has_type_any_because_its_get_accessor_lacks_a_return_type_annotation.code; case Diagnostics._0_implicitly_has_an_1_return_type_but_a_better_type_may_be_inferred_from_usage.code: return Diagnostics._0_which_lacks_return_type_annotation_implicitly_has_an_1_return_type.code; case Diagnostics.Property_0_implicitly_has_type_any_but_a_better_type_for_its_set_accessor_may_be_inferred_from_usage.code: return Diagnostics.Property_0_implicitly_has_type_any_because_its_set_accessor_lacks_a_parameter_type_annotation.code; case Diagnostics.Member_0_implicitly_has_an_1_type_but_a_better_type_may_be_inferred_from_usage.code: return Diagnostics.Member_0_implicitly_has_an_1_type.code; } return errorCode; } function doChange33(changes, sourceFile, token, errorCode, program, cancellationToken, markSeen, host, preferences) { if (!isParameterPropertyModifier(token.kind) && token.kind !== 80 && token.kind !== 26 && token.kind !== 110) { return; } const { parent: parent2 } = token; const importAdder = createImportAdder(sourceFile, program, preferences, host); errorCode = mapSuggestionDiagnostic(errorCode); switch (errorCode) { case Diagnostics.Member_0_implicitly_has_an_1_type.code: case Diagnostics.Variable_0_implicitly_has_type_1_in_some_locations_where_its_type_cannot_be_determined.code: if (isVariableDeclaration(parent2) && markSeen(parent2) || isPropertyDeclaration(parent2) || isPropertySignature(parent2)) { annotateVariableDeclaration(changes, importAdder, sourceFile, parent2, program, host, cancellationToken); importAdder.writeFixes(changes); return parent2; } if (isPropertyAccessExpression(parent2)) { const type = inferTypeForVariableFromUsage(parent2.name, program, cancellationToken); const typeNode = getTypeNodeIfAccessible(type, parent2, program, host); if (typeNode) { const typeTag = factory.createJSDocTypeTag(undefined, factory.createJSDocTypeExpression(typeNode), undefined); changes.addJSDocTags(sourceFile, cast(parent2.parent.parent, isExpressionStatement), [typeTag]); } importAdder.writeFixes(changes); return parent2; } return; case Diagnostics.Variable_0_implicitly_has_an_1_type.code: { const symbol = program.getTypeChecker().getSymbolAtLocation(token); if (symbol && symbol.valueDeclaration && isVariableDeclaration(symbol.valueDeclaration) && markSeen(symbol.valueDeclaration)) { annotateVariableDeclaration(changes, importAdder, getSourceFileOfNode(symbol.valueDeclaration), symbol.valueDeclaration, program, host, cancellationToken); importAdder.writeFixes(changes); return symbol.valueDeclaration; } return; } } const containingFunction = getContainingFunction(token); if (containingFunction === undefined) { return; } let declaration; switch (errorCode) { case Diagnostics.Parameter_0_implicitly_has_an_1_type.code: if (isSetAccessorDeclaration(containingFunction)) { annotateSetAccessor(changes, importAdder, sourceFile, containingFunction, program, host, cancellationToken); declaration = containingFunction; break; } case Diagnostics.Rest_parameter_0_implicitly_has_an_any_type.code: if (markSeen(containingFunction)) { const param = cast(parent2, isParameter); annotateParameters(changes, importAdder, sourceFile, param, containingFunction, program, host, cancellationToken); declaration = param; } break; case Diagnostics.Property_0_implicitly_has_type_any_because_its_get_accessor_lacks_a_return_type_annotation.code: case Diagnostics._0_which_lacks_return_type_annotation_implicitly_has_an_1_return_type.code: if (isGetAccessorDeclaration(containingFunction) && isIdentifier(containingFunction.name)) { annotate(changes, importAdder, sourceFile, containingFunction, inferTypeForVariableFromUsage(containingFunction.name, program, cancellationToken), program, host); declaration = containingFunction; } break; case Diagnostics.Property_0_implicitly_has_type_any_because_its_set_accessor_lacks_a_parameter_type_annotation.code: if (isSetAccessorDeclaration(containingFunction)) { annotateSetAccessor(changes, importAdder, sourceFile, containingFunction, program, host, cancellationToken); declaration = containingFunction; } break; case Diagnostics.this_implicitly_has_type_any_because_it_does_not_have_a_type_annotation.code: if (ts_textChanges_exports.isThisTypeAnnotatable(containingFunction) && markSeen(containingFunction)) { annotateThis(changes, sourceFile, containingFunction, program, host, cancellationToken); declaration = containingFunction; } break; default: return Debug.fail(String(errorCode)); } importAdder.writeFixes(changes); return declaration; } function annotateVariableDeclaration(changes, importAdder, sourceFile, declaration, program, host, cancellationToken) { if (isIdentifier(declaration.name)) { annotate(changes, importAdder, sourceFile, declaration, inferTypeForVariableFromUsage(declaration.name, program, cancellationToken), program, host); } } function annotateParameters(changes, importAdder, sourceFile, parameterDeclaration, containingFunction, program, host, cancellationToken) { if (!isIdentifier(parameterDeclaration.name)) { return; } const parameterInferences = inferTypeForParametersFromUsage(containingFunction, sourceFile, program, cancellationToken); Debug.assert(containingFunction.parameters.length === parameterInferences.length, "Parameter count and inference count should match"); if (isInJSFile(containingFunction)) { annotateJSDocParameters(changes, sourceFile, parameterInferences, program, host); } else { const needParens = isArrowFunction(containingFunction) && !findChildOfKind(containingFunction, 21, sourceFile); if (needParens) changes.insertNodeBefore(sourceFile, first(containingFunction.parameters), factory.createToken(21)); for (const { declaration, type } of parameterInferences) { if (declaration && !declaration.type && !declaration.initializer) { annotate(changes, importAdder, sourceFile, declaration, type, program, host); } } if (needParens) changes.insertNodeAfter(sourceFile, last(containingFunction.parameters), factory.createToken(22)); } } function annotateThis(changes, sourceFile, containingFunction, program, host, cancellationToken) { const references = getFunctionReferences(containingFunction, sourceFile, program, cancellationToken); if (!references || !references.length) { return; } const thisInference = inferTypeFromReferences(program, references, cancellationToken).thisParameter(); const typeNode = getTypeNodeIfAccessible(thisInference, containingFunction, program, host); if (!typeNode) { return; } if (isInJSFile(containingFunction)) { annotateJSDocThis(changes, sourceFile, containingFunction, typeNode); } else { changes.tryInsertThisTypeAnnotation(sourceFile, containingFunction, typeNode); } } function annotateJSDocThis(changes, sourceFile, containingFunction, typeNode) { changes.addJSDocTags(sourceFile, containingFunction, [ factory.createJSDocThisTag(undefined, factory.createJSDocTypeExpression(typeNode)) ]); } function annotateSetAccessor(changes, importAdder, sourceFile, setAccessorDeclaration, program, host, cancellationToken) { const param = firstOrUndefined(setAccessorDeclaration.parameters); if (param && isIdentifier(setAccessorDeclaration.name) && isIdentifier(param.name)) { let type = inferTypeForVariableFromUsage(setAccessorDeclaration.name, program, cancellationToken); if (type === program.getTypeChecker().getAnyType()) { type = inferTypeForVariableFromUsage(param.name, program, cancellationToken); } if (isInJSFile(setAccessorDeclaration)) { annotateJSDocParameters(changes, sourceFile, [{ declaration: param, type }], program, host); } else { annotate(changes, importAdder, sourceFile, param, type, program, host); } } } function annotate(changes, importAdder, sourceFile, declaration, type, program, host) { const typeNode = getTypeNodeIfAccessible(type, declaration, program, host); if (typeNode) { if (isInJSFile(sourceFile) && declaration.kind !== 172) { const parent2 = isVariableDeclaration(declaration) ? tryCast(declaration.parent.parent, isVariableStatement) : declaration; if (!parent2) { return; } const typeExpression = factory.createJSDocTypeExpression(typeNode); const typeTag = isGetAccessorDeclaration(declaration) ? factory.createJSDocReturnTag(undefined, typeExpression, undefined) : factory.createJSDocTypeTag(undefined, typeExpression, undefined); changes.addJSDocTags(sourceFile, parent2, [typeTag]); } else if (!tryReplaceImportTypeNodeWithAutoImport(typeNode, declaration, sourceFile, changes, importAdder, getEmitScriptTarget(program.getCompilerOptions()))) { changes.tryInsertTypeAnnotation(sourceFile, declaration, typeNode); } } } function tryReplaceImportTypeNodeWithAutoImport(typeNode, declaration, sourceFile, changes, importAdder, scriptTarget) { const importableReference = tryGetAutoImportableReferenceFromTypeNode(typeNode, scriptTarget); if (importableReference && changes.tryInsertTypeAnnotation(sourceFile, declaration, importableReference.typeNode)) { forEach(importableReference.symbols, (s) => importAdder.addImportFromExportedSymbol(s, true)); return true; } return false; } function annotateJSDocParameters(changes, sourceFile, parameterInferences, program, host) { const signature = parameterInferences.length && parameterInferences[0].declaration.parent; if (!signature) { return; } const inferences = mapDefined(parameterInferences, (inference) => { const param = inference.declaration; if (param.initializer || getJSDocType(param) || !isIdentifier(param.name)) { return; } const typeNode = inference.type && getTypeNodeIfAccessible(inference.type, param, program, host); if (typeNode) { const name = factory.cloneNode(param.name); setEmitFlags(name, 3072 | 4096); return { name: factory.cloneNode(param.name), param, isOptional: !!inference.isOptional, typeNode }; } }); if (!inferences.length) { return; } if (isArrowFunction(signature) || isFunctionExpression(signature)) { const needParens = isArrowFunction(signature) && !findChildOfKind(signature, 21, sourceFile); if (needParens) { changes.insertNodeBefore(sourceFile, first(signature.parameters), factory.createToken(21)); } forEach(inferences, ({ typeNode, param }) => { const typeTag = factory.createJSDocTypeTag(undefined, factory.createJSDocTypeExpression(typeNode)); const jsDoc = factory.createJSDocComment(undefined, [typeTag]); changes.insertNodeAt(sourceFile, param.getStart(sourceFile), jsDoc, { suffix: " " }); }); if (needParens) { changes.insertNodeAfter(sourceFile, last(signature.parameters), factory.createToken(22)); } } else { const paramTags = map(inferences, ({ name, typeNode, isOptional }) => factory.createJSDocParameterTag(undefined, name, !!isOptional, factory.createJSDocTypeExpression(typeNode), false, undefined)); changes.addJSDocTags(sourceFile, signature, paramTags); } } function getReferences(token, program, cancellationToken) { return mapDefined(ts_FindAllReferences_exports.getReferenceEntriesForNode(-1, token, program, program.getSourceFiles(), cancellationToken), (entry) => entry.kind !== ts_FindAllReferences_exports.EntryKind.Span ? tryCast(entry.node, isIdentifier) : undefined); } function inferTypeForVariableFromUsage(token, program, cancellationToken) { const references = getReferences(token, program, cancellationToken); return inferTypeFromReferences(program, references, cancellationToken).single(); } function inferTypeForParametersFromUsage(func, sourceFile, program, cancellationToken) { const references = getFunctionReferences(func, sourceFile, program, cancellationToken); return references && inferTypeFromReferences(program, references, cancellationToken).parameters(func) || func.parameters.map((p) => ({ declaration: p, type: isIdentifier(p.name) ? inferTypeForVariableFromUsage(p.name, program, cancellationToken) : program.getTypeChecker().getAnyType() })); } function getFunctionReferences(containingFunction, sourceFile, program, cancellationToken) { let searchToken; switch (containingFunction.kind) { case 177: searchToken = findChildOfKind(containingFunction, 137, sourceFile); break; case 220: case 219: const parent2 = containingFunction.parent; searchToken = (isVariableDeclaration(parent2) || isPropertyDeclaration(parent2)) && isIdentifier(parent2.name) ? parent2.name : containingFunction.name; break; case 263: case 175: case 174: searchToken = containingFunction.name; break; } if (!searchToken) { return; } return getReferences(searchToken, program, cancellationToken); } function inferTypeFromReferences(program, references, cancellationToken) { const checker = program.getTypeChecker(); const builtinConstructors = { string: () => checker.getStringType(), number: () => checker.getNumberType(), Array: (t) => checker.createArrayType(t), Promise: (t) => checker.createPromiseType(t) }; const builtins = [ checker.getStringType(), checker.getNumberType(), checker.createArrayType(checker.getAnyType()), checker.createPromiseType(checker.getAnyType()) ]; return { single: single2, parameters, thisParameter }; function createEmptyUsage() { return { isNumber: undefined, isString: undefined, isNumberOrString: undefined, candidateTypes: undefined, properties: undefined, calls: undefined, constructs: undefined, numberIndex: undefined, stringIndex: undefined, candidateThisTypes: undefined, inferredTypes: undefined }; } function combineUsages(usages) { const combinedProperties = /* @__PURE__ */ new Map; for (const u of usages) { if (u.properties) { u.properties.forEach((p, name) => { if (!combinedProperties.has(name)) { combinedProperties.set(name, []); } combinedProperties.get(name).push(p); }); } } const properties = /* @__PURE__ */ new Map; combinedProperties.forEach((ps, name) => { properties.set(name, combineUsages(ps)); }); return { isNumber: usages.some((u) => u.isNumber), isString: usages.some((u) => u.isString), isNumberOrString: usages.some((u) => u.isNumberOrString), candidateTypes: flatMap(usages, (u) => u.candidateTypes), properties, calls: flatMap(usages, (u) => u.calls), constructs: flatMap(usages, (u) => u.constructs), numberIndex: forEach(usages, (u) => u.numberIndex), stringIndex: forEach(usages, (u) => u.stringIndex), candidateThisTypes: flatMap(usages, (u) => u.candidateThisTypes), inferredTypes: undefined }; } function single2() { return combineTypes(inferTypesFromReferencesSingle(references)); } function parameters(declaration) { if (references.length === 0 || !declaration.parameters) { return; } const usage = createEmptyUsage(); for (const reference of references) { cancellationToken.throwIfCancellationRequested(); calculateUsageOfNode(reference, usage); } const calls = [...usage.constructs || [], ...usage.calls || []]; return declaration.parameters.map((parameter, parameterIndex) => { const types = []; const isRest = isRestParameter(parameter); let isOptional = false; for (const call of calls) { if (call.argumentTypes.length <= parameterIndex) { isOptional = isInJSFile(declaration); types.push(checker.getUndefinedType()); } else if (isRest) { for (let i = parameterIndex;i < call.argumentTypes.length; i++) { types.push(checker.getBaseTypeOfLiteralType(call.argumentTypes[i])); } } else { types.push(checker.getBaseTypeOfLiteralType(call.argumentTypes[parameterIndex])); } } if (isIdentifier(parameter.name)) { const inferred = inferTypesFromReferencesSingle(getReferences(parameter.name, program, cancellationToken)); types.push(...isRest ? mapDefined(inferred, checker.getElementTypeOfArrayType) : inferred); } const type = combineTypes(types); return { type: isRest ? checker.createArrayType(type) : type, isOptional: isOptional && !isRest, declaration: parameter }; }); } function thisParameter() { const usage = createEmptyUsage(); for (const reference of references) { cancellationToken.throwIfCancellationRequested(); calculateUsageOfNode(reference, usage); } return combineTypes(usage.candidateThisTypes || emptyArray); } function inferTypesFromReferencesSingle(references2) { const usage = createEmptyUsage(); for (const reference of references2) { cancellationToken.throwIfCancellationRequested(); calculateUsageOfNode(reference, usage); } return inferTypes(usage); } function calculateUsageOfNode(node, usage) { while (isRightSideOfQualifiedNameOrPropertyAccess(node)) { node = node.parent; } switch (node.parent.kind) { case 245: inferTypeFromExpressionStatement(node, usage); break; case 226: usage.isNumber = true; break; case 225: inferTypeFromPrefixUnaryExpression(node.parent, usage); break; case 227: inferTypeFromBinaryExpression(node, node.parent, usage); break; case 297: case 298: inferTypeFromSwitchStatementLabel(node.parent, usage); break; case 214: case 215: if (node.parent.expression === node) { inferTypeFromCallExpression(node.parent, usage); } else { inferTypeFromContextualType(node, usage); } break; case 212: inferTypeFromPropertyAccessExpression(node.parent, usage); break; case 213: inferTypeFromPropertyElementExpression(node.parent, node, usage); break; case 304: case 305: inferTypeFromPropertyAssignment(node.parent, usage); break; case 173: inferTypeFromPropertyDeclaration(node.parent, usage); break; case 261: { const { name, initializer } = node.parent; if (node === name) { if (initializer) { addCandidateType(usage, checker.getTypeAtLocation(initializer)); } break; } } default: return inferTypeFromContextualType(node, usage); } } function inferTypeFromContextualType(node, usage) { if (isExpressionNode(node)) { addCandidateType(usage, checker.getContextualType(node)); } } function inferTypeFromExpressionStatement(node, usage) { addCandidateType(usage, isCallExpression(node) ? checker.getVoidType() : checker.getAnyType()); } function inferTypeFromPrefixUnaryExpression(node, usage) { switch (node.operator) { case 46: case 47: case 41: case 55: usage.isNumber = true; break; case 40: usage.isNumberOrString = true; break; } } function inferTypeFromBinaryExpression(node, parent2, usage) { switch (parent2.operatorToken.kind) { case 43: case 42: case 44: case 45: case 48: case 49: case 50: case 51: case 52: case 53: case 66: case 68: case 67: case 69: case 70: case 74: case 75: case 79: case 71: case 73: case 72: case 41: case 30: case 33: case 32: case 34: const operandType = checker.getTypeAtLocation(parent2.left === node ? parent2.right : parent2.left); if (operandType.flags & 98304) { addCandidateType(usage, operandType); } else { usage.isNumber = true; } break; case 65: case 40: const otherOperandType = checker.getTypeAtLocation(parent2.left === node ? parent2.right : parent2.left); if (otherOperandType.flags & 98304) { addCandidateType(usage, otherOperandType); } else if (otherOperandType.flags & 67648) { usage.isNumber = true; } else if (otherOperandType.flags & 12583968) { usage.isString = true; } else if (otherOperandType.flags & 1) {} else { usage.isNumberOrString = true; } break; case 64: case 35: case 37: case 38: case 36: case 77: case 78: case 76: addCandidateType(usage, checker.getTypeAtLocation(parent2.left === node ? parent2.right : parent2.left)); break; case 103: if (node === parent2.left) { usage.isString = true; } break; case 57: case 61: if (node === parent2.left && (node.parent.parent.kind === 261 || isAssignmentExpression(node.parent.parent, true))) { addCandidateType(usage, checker.getTypeAtLocation(parent2.right)); } break; case 56: case 28: case 104: break; } } function inferTypeFromSwitchStatementLabel(parent2, usage) { addCandidateType(usage, checker.getTypeAtLocation(parent2.parent.parent.expression)); } function inferTypeFromCallExpression(parent2, usage) { const call = { argumentTypes: [], return_: createEmptyUsage() }; if (parent2.arguments) { for (const argument of parent2.arguments) { call.argumentTypes.push(checker.getTypeAtLocation(argument)); } } calculateUsageOfNode(parent2, call.return_); if (parent2.kind === 214) { (usage.calls || (usage.calls = [])).push(call); } else { (usage.constructs || (usage.constructs = [])).push(call); } } function inferTypeFromPropertyAccessExpression(parent2, usage) { const name = escapeLeadingUnderscores(parent2.name.text); if (!usage.properties) { usage.properties = /* @__PURE__ */ new Map; } const propertyUsage = usage.properties.get(name) || createEmptyUsage(); calculateUsageOfNode(parent2, propertyUsage); usage.properties.set(name, propertyUsage); } function inferTypeFromPropertyElementExpression(parent2, node, usage) { if (node === parent2.argumentExpression) { usage.isNumberOrString = true; return; } else { const indexType = checker.getTypeAtLocation(parent2.argumentExpression); const indexUsage = createEmptyUsage(); calculateUsageOfNode(parent2, indexUsage); if (indexType.flags & 67648) { usage.numberIndex = indexUsage; } else { usage.stringIndex = indexUsage; } } } function inferTypeFromPropertyAssignment(assignment, usage) { const nodeWithRealType = isVariableDeclaration(assignment.parent.parent) ? assignment.parent.parent : assignment.parent; addCandidateThisType(usage, checker.getTypeAtLocation(nodeWithRealType)); } function inferTypeFromPropertyDeclaration(declaration, usage) { addCandidateThisType(usage, checker.getTypeAtLocation(declaration.parent)); } function removeLowPriorityInferences(inferences, priorities) { const toRemove = []; for (const i of inferences) { for (const { high, low } of priorities) { if (high(i)) { Debug.assert(!low(i), "Priority can't have both low and high"); toRemove.push(low); } } } return inferences.filter((i) => toRemove.every((f) => !f(i))); } function combineFromUsage(usage) { return combineTypes(inferTypes(usage)); } function combineTypes(inferences) { if (!inferences.length) return checker.getAnyType(); const stringNumber = checker.getUnionType([checker.getStringType(), checker.getNumberType()]); const priorities = [ { high: (t) => t === checker.getStringType() || t === checker.getNumberType(), low: (t) => t === stringNumber }, { high: (t) => !(t.flags & (1 | 16)), low: (t) => !!(t.flags & (1 | 16)) }, { high: (t) => !(t.flags & (12 | 1 | 16)) && !(getObjectFlags(t) & 16), low: (t) => !!(getObjectFlags(t) & 16) } ]; let good = removeLowPriorityInferences(inferences, priorities); const anons = good.filter((i) => getObjectFlags(i) & 16); if (anons.length) { good = good.filter((i) => !(getObjectFlags(i) & 16)); good.push(combineAnonymousTypes(anons)); } return checker.getWidenedType(checker.getUnionType(good.map(checker.getBaseTypeOfLiteralType), 2)); } function combineAnonymousTypes(anons) { if (anons.length === 1) { return anons[0]; } const calls = []; const constructs = []; const stringIndices = []; const numberIndices = []; let stringIndexReadonly = false; let numberIndexReadonly = false; const props = createMultiMap(); for (const anon2 of anons) { for (const p of checker.getPropertiesOfType(anon2)) { props.add(p.escapedName, p.valueDeclaration ? checker.getTypeOfSymbolAtLocation(p, p.valueDeclaration) : checker.getAnyType()); } calls.push(...checker.getSignaturesOfType(anon2, 0)); constructs.push(...checker.getSignaturesOfType(anon2, 1)); const stringIndexInfo = checker.getIndexInfoOfType(anon2, 0); if (stringIndexInfo) { stringIndices.push(stringIndexInfo.type); stringIndexReadonly = stringIndexReadonly || stringIndexInfo.isReadonly; } const numberIndexInfo = checker.getIndexInfoOfType(anon2, 1); if (numberIndexInfo) { numberIndices.push(numberIndexInfo.type); numberIndexReadonly = numberIndexReadonly || numberIndexInfo.isReadonly; } } const members = mapEntries(props, (name, types) => { const isOptional = types.length < anons.length ? 16777216 : 0; const s = checker.createSymbol(4 | isOptional, name); s.links.type = checker.getUnionType(types); return [name, s]; }); const indexInfos = []; if (stringIndices.length) indexInfos.push(checker.createIndexInfo(checker.getStringType(), checker.getUnionType(stringIndices), stringIndexReadonly)); if (numberIndices.length) indexInfos.push(checker.createIndexInfo(checker.getNumberType(), checker.getUnionType(numberIndices), numberIndexReadonly)); return checker.createAnonymousType(anons[0].symbol, members, calls, constructs, indexInfos); } function inferTypes(usage) { var _a, _b, _c; const types = []; if (usage.isNumber) { types.push(checker.getNumberType()); } if (usage.isString) { types.push(checker.getStringType()); } if (usage.isNumberOrString) { types.push(checker.getUnionType([checker.getStringType(), checker.getNumberType()])); } if (usage.numberIndex) { types.push(checker.createArrayType(combineFromUsage(usage.numberIndex))); } if (((_a = usage.properties) == null ? undefined : _a.size) || ((_b = usage.constructs) == null ? undefined : _b.length) || usage.stringIndex) { types.push(inferStructuralType(usage)); } const candidateTypes = (usage.candidateTypes || []).map((t) => checker.getBaseTypeOfLiteralType(t)); const callsType = ((_c = usage.calls) == null ? undefined : _c.length) ? inferStructuralType(usage) : undefined; if (callsType && candidateTypes) { types.push(checker.getUnionType([callsType, ...candidateTypes], 2)); } else { if (callsType) { types.push(callsType); } if (length(candidateTypes)) { types.push(...candidateTypes); } } types.push(...inferNamedTypesFromProperties(usage)); return types; } function inferStructuralType(usage) { const members = /* @__PURE__ */ new Map; if (usage.properties) { usage.properties.forEach((u, name) => { const symbol = checker.createSymbol(4, name); symbol.links.type = combineFromUsage(u); members.set(name, symbol); }); } const callSignatures = usage.calls ? [getSignatureFromCalls(usage.calls)] : []; const constructSignatures = usage.constructs ? [getSignatureFromCalls(usage.constructs)] : []; const indexInfos = usage.stringIndex ? [checker.createIndexInfo(checker.getStringType(), combineFromUsage(usage.stringIndex), false)] : []; return checker.createAnonymousType(undefined, members, callSignatures, constructSignatures, indexInfos); } function inferNamedTypesFromProperties(usage) { if (!usage.properties || !usage.properties.size) return []; const types = builtins.filter((t) => allPropertiesAreAssignableToUsage(t, usage)); if (0 < types.length && types.length < 3) { return types.map((t) => inferInstantiationFromUsage(t, usage)); } return []; } function allPropertiesAreAssignableToUsage(type, usage) { if (!usage.properties) return false; return !forEachEntry(usage.properties, (propUsage, name) => { const source = checker.getTypeOfPropertyOfType(type, name); if (!source) { return true; } if (propUsage.calls) { const sigs = checker.getSignaturesOfType(source, 0); return !sigs.length || !checker.isTypeAssignableTo(source, getFunctionFromCalls(propUsage.calls)); } else { return !checker.isTypeAssignableTo(source, combineFromUsage(propUsage)); } }); } function inferInstantiationFromUsage(type, usage) { if (!(getObjectFlags(type) & 4) || !usage.properties) { return type; } const generic = type.target; const singleTypeParameter = singleOrUndefined(generic.typeParameters); if (!singleTypeParameter) return type; const types = []; usage.properties.forEach((propUsage, name) => { const genericPropertyType = checker.getTypeOfPropertyOfType(generic, name); Debug.assert(!!genericPropertyType, "generic should have all the properties of its reference."); types.push(...inferTypeParameters(genericPropertyType, combineFromUsage(propUsage), singleTypeParameter)); }); return builtinConstructors[type.symbol.escapedName](combineTypes(types)); } function inferTypeParameters(genericType, usageType, typeParameter) { if (genericType === typeParameter) { return [usageType]; } else if (genericType.flags & 402653184) { return flatMap(genericType.types, (t) => inferTypeParameters(t, usageType, typeParameter)); } else if (getObjectFlags(genericType) & 4 && getObjectFlags(usageType) & 4) { const genericArgs = checker.getTypeArguments(genericType); const usageArgs = checker.getTypeArguments(usageType); const types = []; if (genericArgs && usageArgs) { for (let i = 0;i < genericArgs.length; i++) { if (usageArgs[i]) { types.push(...inferTypeParameters(genericArgs[i], usageArgs[i], typeParameter)); } } } return types; } const genericSigs = checker.getSignaturesOfType(genericType, 0); const usageSigs = checker.getSignaturesOfType(usageType, 0); if (genericSigs.length === 1 && usageSigs.length === 1) { return inferFromSignatures(genericSigs[0], usageSigs[0], typeParameter); } return []; } function inferFromSignatures(genericSig, usageSig, typeParameter) { var _a; const types = []; for (let i = 0;i < genericSig.parameters.length; i++) { const genericParam = genericSig.parameters[i]; const usageParam = usageSig.parameters[i]; const isRest = genericSig.declaration && isRestParameter(genericSig.declaration.parameters[i]); if (!usageParam) { break; } let genericParamType = genericParam.valueDeclaration ? checker.getTypeOfSymbolAtLocation(genericParam, genericParam.valueDeclaration) : checker.getAnyType(); const elementType = isRest && checker.getElementTypeOfArrayType(genericParamType); if (elementType) { genericParamType = elementType; } const targetType = ((_a = tryCast(usageParam, isTransientSymbol)) == null ? undefined : _a.links.type) || (usageParam.valueDeclaration ? checker.getTypeOfSymbolAtLocation(usageParam, usageParam.valueDeclaration) : checker.getAnyType()); types.push(...inferTypeParameters(genericParamType, targetType, typeParameter)); } const genericReturn = checker.getReturnTypeOfSignature(genericSig); const usageReturn = checker.getReturnTypeOfSignature(usageSig); types.push(...inferTypeParameters(genericReturn, usageReturn, typeParameter)); return types; } function getFunctionFromCalls(calls) { return checker.createAnonymousType(undefined, createSymbolTable(), [getSignatureFromCalls(calls)], emptyArray, emptyArray); } function getSignatureFromCalls(calls) { const parameters2 = []; const length2 = Math.max(...calls.map((c) => c.argumentTypes.length)); for (let i = 0;i < length2; i++) { const symbol = checker.createSymbol(1, escapeLeadingUnderscores(`arg${i}`)); symbol.links.type = combineTypes(calls.map((call) => call.argumentTypes[i] || checker.getUndefinedType())); if (calls.some((call) => call.argumentTypes[i] === undefined)) { symbol.flags |= 16777216; } parameters2.push(symbol); } const returnType = combineFromUsage(combineUsages(calls.map((call) => call.return_))); return checker.createSignature(undefined, undefined, undefined, parameters2, returnType, undefined, length2, 0); } function addCandidateType(usage, type) { if (type && !(type.flags & 1) && !(type.flags & 262144)) { (usage.candidateTypes || (usage.candidateTypes = [])).push(type); } } function addCandidateThisType(usage, type) { if (type && !(type.flags & 1) && !(type.flags & 262144)) { (usage.candidateThisTypes || (usage.candidateThisTypes = [])).push(type); } } } var fixId41 = "fixReturnTypeInAsyncFunction"; var errorCodes52 = [ Diagnostics.The_return_type_of_an_async_function_or_method_must_be_the_global_Promise_T_type_Did_you_mean_to_write_Promise_0.code ]; registerCodeFix({ errorCodes: errorCodes52, fixIds: [fixId41], getCodeActions: function getCodeActionsToFixReturnTypeInAsyncFunction(context) { const { sourceFile, program, span } = context; const checker = program.getTypeChecker(); const info = getInfo16(sourceFile, program.getTypeChecker(), span.start); if (!info) { return; } const { returnTypeNode, returnType, promisedTypeNode, promisedType } = info; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange34(t, sourceFile, returnTypeNode, promisedTypeNode)); return [createCodeFixAction(fixId41, changes, [Diagnostics.Replace_0_with_Promise_1, checker.typeToString(returnType), checker.typeToString(promisedType)], fixId41, Diagnostics.Fix_all_incorrect_return_type_of_an_async_functions)]; }, getAllCodeActions: (context) => codeFixAll(context, errorCodes52, (changes, diag2) => { const info = getInfo16(diag2.file, context.program.getTypeChecker(), diag2.start); if (info) { doChange34(changes, diag2.file, info.returnTypeNode, info.promisedTypeNode); } }) }); function getInfo16(sourceFile, checker, pos) { if (isInJSFile(sourceFile)) { return; } const token = getTokenAtPosition(sourceFile, pos); const func = findAncestor(token, isFunctionLikeDeclaration); const returnTypeNode = func == null ? undefined : func.type; if (!returnTypeNode) { return; } const returnType = checker.getTypeFromTypeNode(returnTypeNode); const promisedType = checker.getAwaitedType(returnType) || checker.getVoidType(); const promisedTypeNode = checker.typeToTypeNode(promisedType, returnTypeNode, undefined); if (promisedTypeNode) { return { returnTypeNode, returnType, promisedTypeNode, promisedType }; } } function doChange34(changes, sourceFile, returnTypeNode, promisedTypeNode) { changes.replaceNode(sourceFile, returnTypeNode, factory.createTypeReferenceNode("Promise", [promisedTypeNode])); } var fixName4 = "disableJsDiagnostics"; var fixId42 = "disableJsDiagnostics"; var errorCodes53 = mapDefined(Object.keys(Diagnostics), (key) => { const diag2 = Diagnostics[key]; return diag2.category === 1 ? diag2.code : undefined; }); registerCodeFix({ errorCodes: errorCodes53, getCodeActions: function getCodeActionsToDisableJsDiagnostics(context) { const { sourceFile, program, span, host, formatContext } = context; if (!isInJSFile(sourceFile) || !isCheckJsEnabledForFile(sourceFile, program.getCompilerOptions())) { return; } const newLineCharacter = sourceFile.checkJsDirective ? "" : getNewLineOrDefaultFromHost(host, formatContext.options); const fixes = [ createCodeFixActionWithoutFixAll(fixName4, [createFileTextChanges(sourceFile.fileName, [ createTextChange(sourceFile.checkJsDirective ? createTextSpanFromBounds(sourceFile.checkJsDirective.pos, sourceFile.checkJsDirective.end) : createTextSpan(0, 0), `// @ts-nocheck${newLineCharacter}`) ])], Diagnostics.Disable_checking_for_this_file) ]; if (ts_textChanges_exports.isValidLocationToAddComment(sourceFile, span.start)) { fixes.unshift(createCodeFixAction(fixName4, ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange9(t, sourceFile, span.start)), Diagnostics.Ignore_this_error_message, fixId42, Diagnostics.Add_ts_ignore_to_all_error_messages)); } return fixes; }, fixIds: [fixId42], getAllCodeActions: (context) => { const seenLines = /* @__PURE__ */ new Set; return codeFixAll(context, errorCodes53, (changes, diag2) => { if (ts_textChanges_exports.isValidLocationToAddComment(diag2.file, diag2.start)) { makeChange9(changes, diag2.file, diag2.start, seenLines); } }); } }); function makeChange9(changes, sourceFile, position, seenLines) { const { line: lineNumber } = getLineAndCharacterOfPosition(sourceFile, position); if (!seenLines || tryAddToSet(seenLines, lineNumber)) { changes.insertCommentBeforeLine(sourceFile, lineNumber, position, " @ts-ignore"); } } function createMissingMemberNodes(classDeclaration, possiblyMissingSymbols, sourceFile, context, preferences, importAdder, addClassElement) { const classMembers = classDeclaration.symbol.members; for (const symbol of possiblyMissingSymbols) { if (!classMembers.has(symbol.escapedName)) { addNewNodeForMemberSymbol(symbol, classDeclaration, sourceFile, context, preferences, importAdder, addClassElement, undefined); } } } function getNoopSymbolTrackerWithResolver(context) { return { trackSymbol: () => false, moduleResolverHost: getModuleSpecifierResolverHost(context.program, context.host) }; } var PreserveOptionalFlags = /* @__PURE__ */ ((PreserveOptionalFlags2) => { PreserveOptionalFlags2[PreserveOptionalFlags2["Method"] = 1] = "Method"; PreserveOptionalFlags2[PreserveOptionalFlags2["Property"] = 2] = "Property"; PreserveOptionalFlags2[PreserveOptionalFlags2["All"] = 3] = "All"; return PreserveOptionalFlags2; })(PreserveOptionalFlags || {}); function addNewNodeForMemberSymbol(symbol, enclosingDeclaration, sourceFile, context, preferences, importAdder, addClassElement, body, preserveOptional = 3, isAmbient = false) { const declarations = symbol.getDeclarations(); const declaration = firstOrUndefined(declarations); const checker = context.program.getTypeChecker(); const scriptTarget = getEmitScriptTarget(context.program.getCompilerOptions()); const kind = (declaration == null ? undefined : declaration.kind) ?? 172; const declarationName = createDeclarationName(symbol, declaration); const effectiveModifierFlags = declaration ? getEffectiveModifierFlags(declaration) : 0; let modifierFlags = effectiveModifierFlags & 256; modifierFlags |= effectiveModifierFlags & 1 ? 1 : effectiveModifierFlags & 4 ? 4 : 0; if (declaration && isAutoAccessorPropertyDeclaration(declaration)) { modifierFlags |= 512; } const modifiers = createModifiers(); const type = checker.getWidenedType(checker.getTypeOfSymbolAtLocation(symbol, enclosingDeclaration)); const optional = !!(symbol.flags & 16777216); const ambient = !!(enclosingDeclaration.flags & 33554432) || isAmbient; const quotePreference = getQuotePreference(sourceFile, preferences); const flags = 1 | (quotePreference === 0 ? 268435456 : 0); switch (kind) { case 172: case 173: let typeNode = checker.typeToTypeNode(type, enclosingDeclaration, flags, 8, getNoopSymbolTrackerWithResolver(context)); if (importAdder) { const importableReference = tryGetAutoImportableReferenceFromTypeNode(typeNode, scriptTarget); if (importableReference) { typeNode = importableReference.typeNode; importSymbols(importAdder, importableReference.symbols); } } addClassElement(factory.createPropertyDeclaration(modifiers, declaration ? createName(declarationName) : symbol.getName(), optional && preserveOptional & 2 ? factory.createToken(58) : undefined, typeNode, undefined)); break; case 178: case 179: { Debug.assertIsDefined(declarations); let typeNode2 = checker.typeToTypeNode(type, enclosingDeclaration, flags, undefined, getNoopSymbolTrackerWithResolver(context)); const allAccessors = getAllAccessorDeclarations(declarations, declaration); const orderedAccessors = allAccessors.secondAccessor ? [allAccessors.firstAccessor, allAccessors.secondAccessor] : [allAccessors.firstAccessor]; if (importAdder) { const importableReference = tryGetAutoImportableReferenceFromTypeNode(typeNode2, scriptTarget); if (importableReference) { typeNode2 = importableReference.typeNode; importSymbols(importAdder, importableReference.symbols); } } for (const accessor of orderedAccessors) { if (isGetAccessorDeclaration(accessor)) { addClassElement(factory.createGetAccessorDeclaration(modifiers, createName(declarationName), emptyArray, createTypeNode(typeNode2), createBody(body, quotePreference, ambient))); } else { Debug.assertNode(accessor, isSetAccessorDeclaration, "The counterpart to a getter should be a setter"); const parameter = getSetAccessorValueParameter(accessor); const parameterName = parameter && isIdentifier(parameter.name) ? idText(parameter.name) : undefined; addClassElement(factory.createSetAccessorDeclaration(modifiers, createName(declarationName), createDummyParameters(1, [parameterName], [createTypeNode(typeNode2)], 1, false), createBody(body, quotePreference, ambient))); } } break; } case 174: case 175: Debug.assertIsDefined(declarations); const signatures = type.isUnion() ? flatMap(type.types, (t) => t.getCallSignatures()) : type.getCallSignatures(); if (!some(signatures)) { break; } if (declarations.length === 1) { Debug.assert(signatures.length === 1, "One declaration implies one signature"); const signature = signatures[0]; outputMethod(quotePreference, signature, modifiers, createName(declarationName), createBody(body, quotePreference, ambient)); break; } for (const signature of signatures) { if (signature.declaration && signature.declaration.flags & 33554432) { continue; } outputMethod(quotePreference, signature, modifiers, createName(declarationName)); } if (!ambient) { if (declarations.length > signatures.length) { const signature = checker.getSignatureFromDeclaration(declarations[declarations.length - 1]); outputMethod(quotePreference, signature, modifiers, createName(declarationName), createBody(body, quotePreference)); } else { Debug.assert(declarations.length === signatures.length, "Declarations and signatures should match count"); addClassElement(createMethodImplementingSignatures(checker, context, enclosingDeclaration, signatures, createName(declarationName), optional && !!(preserveOptional & 1), modifiers, quotePreference, body)); } } break; } function outputMethod(quotePreference2, signature, modifiers2, name, body2) { const method = createSignatureDeclarationFromSignature(175, context, quotePreference2, signature, body2, name, modifiers2, optional && !!(preserveOptional & 1), enclosingDeclaration, importAdder); if (method) addClassElement(method); } function createModifiers() { let modifiers2; if (modifierFlags) { modifiers2 = combine(modifiers2, factory.createModifiersFromModifierFlags(modifierFlags)); } if (shouldAddOverrideKeyword()) { modifiers2 = append(modifiers2, factory.createToken(164)); } return modifiers2 && factory.createNodeArray(modifiers2); } function shouldAddOverrideKeyword() { return !!(context.program.getCompilerOptions().noImplicitOverride && declaration && hasAbstractModifier(declaration)); } function createName(node) { if (isIdentifier(node) && node.escapedText === "constructor") { return factory.createComputedPropertyName(factory.createStringLiteral(idText(node), quotePreference === 0)); } return getSynthesizedDeepClone(node, false); } function createBody(block, quotePreference2, ambient2) { return ambient2 ? undefined : getSynthesizedDeepClone(block, false) || createStubbedMethodBody(quotePreference2); } function createTypeNode(typeNode) { return getSynthesizedDeepClone(typeNode, false); } function createDeclarationName(symbol2, declaration2) { if (getCheckFlags(symbol2) & 262144) { const nameType = symbol2.links.nameType; if (nameType && isTypeUsableAsPropertyName(nameType)) { return factory.createIdentifier(unescapeLeadingUnderscores(getPropertyNameFromType(nameType))); } } return getSynthesizedDeepClone(getNameOfDeclaration(declaration2), false); } } function createSignatureDeclarationFromSignature(kind, context, quotePreference, signature, body, name, modifiers, optional, enclosingDeclaration, importAdder) { const program = context.program; const checker = program.getTypeChecker(); const scriptTarget = getEmitScriptTarget(program.getCompilerOptions()); const isJs = isInJSFile(enclosingDeclaration); const flags = 1 | 256 | 524288 | (quotePreference === 0 ? 268435456 : 0); const signatureDeclaration = checker.signatureToSignatureDeclaration(signature, kind, enclosingDeclaration, flags, 8, getNoopSymbolTrackerWithResolver(context)); if (!signatureDeclaration) { return; } let typeParameters = isJs ? undefined : signatureDeclaration.typeParameters; let parameters = signatureDeclaration.parameters; let type = isJs ? undefined : getSynthesizedDeepClone(signatureDeclaration.type); if (importAdder) { if (typeParameters) { const newTypeParameters = sameMap(typeParameters, (typeParameterDecl) => { let constraint = typeParameterDecl.constraint; let defaultType = typeParameterDecl.default; if (constraint) { const importableReference = tryGetAutoImportableReferenceFromTypeNode(constraint, scriptTarget); if (importableReference) { constraint = importableReference.typeNode; importSymbols(importAdder, importableReference.symbols); } } if (defaultType) { const importableReference = tryGetAutoImportableReferenceFromTypeNode(defaultType, scriptTarget); if (importableReference) { defaultType = importableReference.typeNode; importSymbols(importAdder, importableReference.symbols); } } return factory.updateTypeParameterDeclaration(typeParameterDecl, typeParameterDecl.modifiers, typeParameterDecl.name, constraint, defaultType); }); if (typeParameters !== newTypeParameters) { typeParameters = setTextRange(factory.createNodeArray(newTypeParameters, typeParameters.hasTrailingComma), typeParameters); } } const newParameters = sameMap(parameters, (parameterDecl) => { let type2 = isJs ? undefined : parameterDecl.type; if (type2) { const importableReference = tryGetAutoImportableReferenceFromTypeNode(type2, scriptTarget); if (importableReference) { type2 = importableReference.typeNode; importSymbols(importAdder, importableReference.symbols); } } return factory.updateParameterDeclaration(parameterDecl, parameterDecl.modifiers, parameterDecl.dotDotDotToken, parameterDecl.name, isJs ? undefined : parameterDecl.questionToken, type2, parameterDecl.initializer); }); if (parameters !== newParameters) { parameters = setTextRange(factory.createNodeArray(newParameters, parameters.hasTrailingComma), parameters); } if (type) { const importableReference = tryGetAutoImportableReferenceFromTypeNode(type, scriptTarget); if (importableReference) { type = importableReference.typeNode; importSymbols(importAdder, importableReference.symbols); } } } const questionToken = optional ? factory.createToken(58) : undefined; const asteriskToken = signatureDeclaration.asteriskToken; if (isFunctionExpression(signatureDeclaration)) { return factory.updateFunctionExpression(signatureDeclaration, modifiers, signatureDeclaration.asteriskToken, tryCast(name, isIdentifier), typeParameters, parameters, type, body ?? signatureDeclaration.body); } if (isArrowFunction(signatureDeclaration)) { return factory.updateArrowFunction(signatureDeclaration, modifiers, typeParameters, parameters, type, signatureDeclaration.equalsGreaterThanToken, body ?? signatureDeclaration.body); } if (isMethodDeclaration(signatureDeclaration)) { return factory.updateMethodDeclaration(signatureDeclaration, modifiers, asteriskToken, name ?? factory.createIdentifier(""), questionToken, typeParameters, parameters, type, body); } if (isFunctionDeclaration(signatureDeclaration)) { return factory.updateFunctionDeclaration(signatureDeclaration, modifiers, signatureDeclaration.asteriskToken, tryCast(name, isIdentifier), typeParameters, parameters, type, body ?? signatureDeclaration.body); } return; } function createSignatureDeclarationFromCallExpression(kind, context, importAdder, call, name, modifierFlags, contextNode) { const quotePreference = getQuotePreference(context.sourceFile, context.preferences); const scriptTarget = getEmitScriptTarget(context.program.getCompilerOptions()); const tracker = getNoopSymbolTrackerWithResolver(context); const checker = context.program.getTypeChecker(); const isJs = isInJSFile(contextNode); const { typeArguments, arguments: args, parent: parent2 } = call; const contextualType = isJs ? undefined : checker.getContextualType(call); const names = map(args, (arg) => isIdentifier(arg) ? arg.text : isPropertyAccessExpression(arg) && isIdentifier(arg.name) ? arg.name.text : undefined); const instanceTypes = isJs ? [] : map(args, (arg) => checker.getTypeAtLocation(arg)); const { argumentTypeNodes, argumentTypeParameters } = getArgumentTypesAndTypeParameters(checker, importAdder, instanceTypes, contextNode, scriptTarget, 1, 8, tracker); const modifiers = modifierFlags ? factory.createNodeArray(factory.createModifiersFromModifierFlags(modifierFlags)) : undefined; const asteriskToken = isYieldExpression(parent2) ? factory.createToken(42) : undefined; const typeParameters = isJs ? undefined : createTypeParametersForArguments(checker, argumentTypeParameters, typeArguments); const parameters = createDummyParameters(args.length, names, argumentTypeNodes, undefined, isJs); const type = isJs || contextualType === undefined ? undefined : checker.typeToTypeNode(contextualType, contextNode, undefined, undefined, tracker); switch (kind) { case 175: return factory.createMethodDeclaration(modifiers, asteriskToken, name, undefined, typeParameters, parameters, type, createStubbedMethodBody(quotePreference)); case 174: return factory.createMethodSignature(modifiers, name, undefined, typeParameters, parameters, type === undefined ? factory.createKeywordTypeNode(159) : type); case 263: Debug.assert(typeof name === "string" || isIdentifier(name), "Unexpected name"); return factory.createFunctionDeclaration(modifiers, asteriskToken, name, typeParameters, parameters, type, createStubbedBody(Diagnostics.Function_not_implemented.message, quotePreference)); default: Debug.fail("Unexpected kind"); } } function createTypeParametersForArguments(checker, argumentTypeParameters, typeArguments) { const usedNames = new Set(argumentTypeParameters.map((pair) => pair[0])); const constraintsByName = new Map(argumentTypeParameters); if (typeArguments) { const typeArgumentsWithNewTypes = typeArguments.filter((typeArgument) => !argumentTypeParameters.some((pair) => { var _a; return checker.getTypeAtLocation(typeArgument) === ((_a = pair[1]) == null ? undefined : _a.argumentType); })); const targetSize = usedNames.size + typeArgumentsWithNewTypes.length; for (let i = 0;usedNames.size < targetSize; i += 1) { usedNames.add(createTypeParameterName(i)); } } return arrayFrom(usedNames.values(), (usedName) => { var _a; return factory.createTypeParameterDeclaration(undefined, usedName, (_a = constraintsByName.get(usedName)) == null ? undefined : _a.constraint); }); } function createTypeParameterName(index) { return 84 + index <= 90 ? String.fromCharCode(84 + index) : `T${index}`; } function typeToAutoImportableTypeNode(checker, importAdder, type, contextNode, scriptTarget, flags, internalFlags, tracker) { const typeNode = checker.typeToTypeNode(type, contextNode, flags, internalFlags, tracker); if (!typeNode) { return; } return typeNodeToAutoImportableTypeNode(typeNode, importAdder, scriptTarget); } function typeNodeToAutoImportableTypeNode(typeNode, importAdder, scriptTarget) { const importableReference = tryGetAutoImportableReferenceFromTypeNode(typeNode, scriptTarget); if (importableReference) { importSymbols(importAdder, importableReference.symbols); typeNode = importableReference.typeNode; } return getSynthesizedDeepClone(typeNode); } function endOfRequiredTypeParameters(checker, type) { var _a; Debug.assert(type.typeArguments); const fullTypeArguments = type.typeArguments; const target = type.target; for (let cutoff = 0;cutoff < fullTypeArguments.length; cutoff++) { if (((_a = target.localTypeParameters) == null ? undefined : _a[cutoff].constraint) === undefined) { continue; } const typeArguments = fullTypeArguments.slice(0, cutoff); const filledIn = checker.fillMissingTypeArguments(typeArguments, target.typeParameters, cutoff, false); if (filledIn.every((fill, i) => fill === fullTypeArguments[i])) { return cutoff; } } return fullTypeArguments.length; } function typeToMinimizedReferenceType(checker, type, contextNode, flags, internalFlags, tracker) { let typeNode = checker.typeToTypeNode(type, contextNode, flags, internalFlags, tracker); if (!typeNode) { return; } if (isTypeReferenceNode(typeNode)) { const genericType = type; if (genericType.typeArguments && typeNode.typeArguments) { const cutoff = endOfRequiredTypeParameters(checker, genericType); if (cutoff < typeNode.typeArguments.length) { const newTypeArguments = factory.createNodeArray(typeNode.typeArguments.slice(0, cutoff)); typeNode = factory.updateTypeReferenceNode(typeNode, typeNode.typeName, newTypeArguments); } } } return typeNode; } function typePredicateToAutoImportableTypeNode(checker, importAdder, typePredicate, contextNode, scriptTarget, flags, internalFlags, tracker) { let typePredicateNode = checker.typePredicateToTypePredicateNode(typePredicate, contextNode, flags, internalFlags, tracker); if ((typePredicateNode == null ? undefined : typePredicateNode.type) && isImportTypeNode(typePredicateNode.type)) { const importableReference = tryGetAutoImportableReferenceFromTypeNode(typePredicateNode.type, scriptTarget); if (importableReference) { importSymbols(importAdder, importableReference.symbols); typePredicateNode = factory.updateTypePredicateNode(typePredicateNode, typePredicateNode.assertsModifier, typePredicateNode.parameterName, importableReference.typeNode); } } return getSynthesizedDeepClone(typePredicateNode); } function typeContainsTypeParameter(type) { if (type.isUnionOrIntersection()) { return type.types.some(typeContainsTypeParameter); } return type.flags & 524288; } function getArgumentTypesAndTypeParameters(checker, importAdder, instanceTypes, contextNode, scriptTarget, flags, internalFlags, tracker) { const argumentTypeNodes = []; const argumentTypeParameters = /* @__PURE__ */ new Map; for (let i = 0;i < instanceTypes.length; i += 1) { const instanceType = instanceTypes[i]; if (instanceType.isUnionOrIntersection() && instanceType.types.some(typeContainsTypeParameter)) { const synthesizedTypeParameterName = createTypeParameterName(i); argumentTypeNodes.push(factory.createTypeReferenceNode(synthesizedTypeParameterName)); argumentTypeParameters.set(synthesizedTypeParameterName, undefined); continue; } const widenedInstanceType = checker.getBaseTypeOfLiteralType(instanceType); const argumentTypeNode = typeToAutoImportableTypeNode(checker, importAdder, widenedInstanceType, contextNode, scriptTarget, flags, internalFlags, tracker); if (!argumentTypeNode) { continue; } argumentTypeNodes.push(argumentTypeNode); const argumentTypeParameter = getFirstTypeParameterName(instanceType); const instanceTypeConstraint = instanceType.isTypeParameter() && instanceType.constraint && !isAnonymousObjectConstraintType(instanceType.constraint) ? typeToAutoImportableTypeNode(checker, importAdder, instanceType.constraint, contextNode, scriptTarget, flags, internalFlags, tracker) : undefined; if (argumentTypeParameter) { argumentTypeParameters.set(argumentTypeParameter, { argumentType: instanceType, constraint: instanceTypeConstraint }); } } return { argumentTypeNodes, argumentTypeParameters: arrayFrom(argumentTypeParameters.entries()) }; } function isAnonymousObjectConstraintType(type) { return type.flags & 1048576 && type.objectFlags === 16; } function getFirstTypeParameterName(type) { var _a; if (type.flags & (134217728 | 268435456)) { for (const subType of type.types) { const subTypeName = getFirstTypeParameterName(subType); if (subTypeName) { return subTypeName; } } } return type.flags & 524288 ? (_a = type.getSymbol()) == null ? undefined : _a.getName() : undefined; } function createDummyParameters(argCount, names, types, minArgumentCount, inJs) { const parameters = []; const parameterNameCounts = /* @__PURE__ */ new Map; for (let i = 0;i < argCount; i++) { const parameterName = (names == null ? undefined : names[i]) || `arg${i}`; const parameterNameCount = parameterNameCounts.get(parameterName); parameterNameCounts.set(parameterName, (parameterNameCount || 0) + 1); const newParameter = factory.createParameterDeclaration(undefined, undefined, parameterName + (parameterNameCount || ""), minArgumentCount !== undefined && i >= minArgumentCount ? factory.createToken(58) : undefined, inJs ? undefined : (types == null ? undefined : types[i]) || factory.createKeywordTypeNode(159), undefined); parameters.push(newParameter); } return parameters; } function createMethodImplementingSignatures(checker, context, enclosingDeclaration, signatures, name, optional, modifiers, quotePreference, body) { let maxArgsSignature = signatures[0]; let minArgumentCount = signatures[0].minArgumentCount; let someSigHasRestParameter = false; for (const sig of signatures) { minArgumentCount = Math.min(sig.minArgumentCount, minArgumentCount); if (signatureHasRestParameter(sig)) { someSigHasRestParameter = true; } if (sig.parameters.length >= maxArgsSignature.parameters.length && (!signatureHasRestParameter(sig) || signatureHasRestParameter(maxArgsSignature))) { maxArgsSignature = sig; } } const maxNonRestArgs = maxArgsSignature.parameters.length - (signatureHasRestParameter(maxArgsSignature) ? 1 : 0); const maxArgsParameterSymbolNames = maxArgsSignature.parameters.map((symbol) => symbol.name); const parameters = createDummyParameters(maxNonRestArgs, maxArgsParameterSymbolNames, undefined, minArgumentCount, false); if (someSigHasRestParameter) { const restParameter = factory.createParameterDeclaration(undefined, factory.createToken(26), maxArgsParameterSymbolNames[maxNonRestArgs] || "rest", maxNonRestArgs >= minArgumentCount ? factory.createToken(58) : undefined, factory.createArrayTypeNode(factory.createKeywordTypeNode(159)), undefined); parameters.push(restParameter); } return createStubbedMethod(modifiers, name, optional, undefined, parameters, getReturnTypeFromSignatures(signatures, checker, context, enclosingDeclaration), quotePreference, body); } function getReturnTypeFromSignatures(signatures, checker, context, enclosingDeclaration) { if (length(signatures)) { const type = checker.getUnionType(map(signatures, checker.getReturnTypeOfSignature)); return checker.typeToTypeNode(type, enclosingDeclaration, 1, 8, getNoopSymbolTrackerWithResolver(context)); } } function createStubbedMethod(modifiers, name, optional, typeParameters, parameters, returnType, quotePreference, body) { return factory.createMethodDeclaration(modifiers, undefined, name, optional ? factory.createToken(58) : undefined, typeParameters, parameters, returnType, body || createStubbedMethodBody(quotePreference)); } function createStubbedMethodBody(quotePreference) { return createStubbedBody(Diagnostics.Method_not_implemented.message, quotePreference); } function createStubbedBody(text, quotePreference) { return factory.createBlock([factory.createThrowStatement(factory.createNewExpression(factory.createIdentifier("Error"), undefined, [factory.createStringLiteral(text, quotePreference === 0)]))], true); } function setJsonCompilerOptionValues(changeTracker, configFile, options) { const tsconfigObjectLiteral = getTsConfigObjectLiteralExpression(configFile); if (!tsconfigObjectLiteral) return; const compilerOptionsProperty = findJsonProperty(tsconfigObjectLiteral, "compilerOptions"); if (compilerOptionsProperty === undefined) { changeTracker.insertNodeAtObjectStart(configFile, tsconfigObjectLiteral, createJsonPropertyAssignment("compilerOptions", factory.createObjectLiteralExpression(options.map(([optionName, optionValue]) => createJsonPropertyAssignment(optionName, optionValue)), true))); return; } const compilerOptions = compilerOptionsProperty.initializer; if (!isObjectLiteralExpression(compilerOptions)) { return; } for (const [optionName, optionValue] of options) { const optionProperty = findJsonProperty(compilerOptions, optionName); if (optionProperty === undefined) { changeTracker.insertNodeAtObjectStart(configFile, compilerOptions, createJsonPropertyAssignment(optionName, optionValue)); } else { changeTracker.replaceNode(configFile, optionProperty.initializer, optionValue); } } } function setJsonCompilerOptionValue(changeTracker, configFile, optionName, optionValue) { setJsonCompilerOptionValues(changeTracker, configFile, [[optionName, optionValue]]); } function createJsonPropertyAssignment(name, initializer) { return factory.createPropertyAssignment(factory.createStringLiteral(name), initializer); } function findJsonProperty(obj, name) { return find(obj.properties, (p) => isPropertyAssignment(p) && !!p.name && isStringLiteral(p.name) && p.name.text === name); } function tryGetAutoImportableReferenceFromTypeNode(importTypeNode, scriptTarget) { let symbols; const typeNode = visitNode(importTypeNode, visit, isTypeNode); if (symbols && typeNode) { return { typeNode, symbols }; } function visit(node) { if (isLiteralImportTypeNode(node) && node.qualifier) { const firstIdentifier = getFirstIdentifier(node.qualifier); if (!firstIdentifier.symbol) { return visitEachChild(node, visit, undefined); } const name = getNameForExportedSymbol(firstIdentifier.symbol, scriptTarget); const qualifier = name !== firstIdentifier.text ? replaceFirstIdentifierOfEntityName(node.qualifier, factory.createIdentifier(name)) : node.qualifier; symbols = append(symbols, firstIdentifier.symbol); const typeArguments = visitNodes2(node.typeArguments, visit, isTypeNode); return factory.createTypeReferenceNode(qualifier, typeArguments); } return visitEachChild(node, visit, undefined); } } function replaceFirstIdentifierOfEntityName(name, newIdentifier) { if (name.kind === 80) { return newIdentifier; } return factory.createQualifiedName(replaceFirstIdentifierOfEntityName(name.left, newIdentifier), name.right); } function importSymbols(importAdder, symbols) { symbols.forEach((s) => importAdder.addImportFromExportedSymbol(s, true)); } function findAncestorMatchingSpan(sourceFile, span) { const end = textSpanEnd(span); let token = getTokenAtPosition(sourceFile, span.start); while (token.end < end) { token = token.parent; } return token; } function generateAccessorFromProperty(file, program, start, end, context, _actionName) { const fieldInfo = getAccessorConvertiblePropertyAtPosition(file, program, start, end); if (!fieldInfo || ts_refactor_exports.isRefactorErrorInfo(fieldInfo)) return; const changeTracker = ts_textChanges_exports.ChangeTracker.fromContext(context); const { isStatic: isStatic2, isReadonly, fieldName, accessorName, originalName, type, container, declaration } = fieldInfo; suppressLeadingAndTrailingTrivia(fieldName); suppressLeadingAndTrailingTrivia(accessorName); suppressLeadingAndTrailingTrivia(declaration); suppressLeadingAndTrailingTrivia(container); let accessorModifiers; let fieldModifiers; if (isClassLike(container)) { const modifierFlags = getEffectiveModifierFlags(declaration); if (isSourceFileJS(file)) { const modifiers = factory.createModifiersFromModifierFlags(modifierFlags); accessorModifiers = modifiers; fieldModifiers = modifiers; } else { accessorModifiers = factory.createModifiersFromModifierFlags(prepareModifierFlagsForAccessor(modifierFlags)); fieldModifiers = factory.createModifiersFromModifierFlags(prepareModifierFlagsForField(modifierFlags)); } if (canHaveDecorators(declaration)) { fieldModifiers = concatenate(getDecorators(declaration), fieldModifiers); } } updateFieldDeclaration(changeTracker, file, declaration, type, fieldName, fieldModifiers); const getAccessor = generateGetAccessor(fieldName, accessorName, type, accessorModifiers, isStatic2, container); suppressLeadingAndTrailingTrivia(getAccessor); insertAccessor(changeTracker, file, getAccessor, declaration, container); if (isReadonly) { const constructor = getFirstConstructorWithBody(container); if (constructor) { updateReadonlyPropertyInitializerStatementConstructor(changeTracker, file, constructor, fieldName.text, originalName); } } else { const setAccessor = generateSetAccessor(fieldName, accessorName, type, accessorModifiers, isStatic2, container); suppressLeadingAndTrailingTrivia(setAccessor); insertAccessor(changeTracker, file, setAccessor, declaration, container); } return changeTracker.getChanges(); } function isConvertibleName(name) { return isIdentifier(name) || isStringLiteral(name); } function isAcceptedDeclaration(node) { return isParameterPropertyDeclaration(node, node.parent) || isPropertyDeclaration(node) || isPropertyAssignment(node); } function createPropertyName(name, originalName) { return isIdentifier(originalName) ? factory.createIdentifier(name) : factory.createStringLiteral(name); } function createAccessorAccessExpression(fieldName, isStatic2, container) { const leftHead = isStatic2 ? container.name : factory.createThis(); return isIdentifier(fieldName) ? factory.createPropertyAccessExpression(leftHead, fieldName) : factory.createElementAccessExpression(leftHead, factory.createStringLiteralFromNode(fieldName)); } function prepareModifierFlagsForAccessor(modifierFlags) { modifierFlags &= ~8; modifierFlags &= ~2; if (!(modifierFlags & 4)) { modifierFlags |= 1; } return modifierFlags; } function prepareModifierFlagsForField(modifierFlags) { modifierFlags &= ~1; modifierFlags &= ~4; modifierFlags |= 2; return modifierFlags; } function getAccessorConvertiblePropertyAtPosition(file, program, start, end, considerEmptySpans = true) { const node = getTokenAtPosition(file, start); const cursorRequest = start === end && considerEmptySpans; const declaration = findAncestor(node.parent, isAcceptedDeclaration); const meaning = 7 | 256 | 8; if (!declaration || !(nodeOverlapsWithStartEnd(declaration.name, file, start, end) || cursorRequest)) { return { error: getLocaleSpecificMessage(Diagnostics.Could_not_find_property_for_which_to_generate_accessor) }; } if (!isConvertibleName(declaration.name)) { return { error: getLocaleSpecificMessage(Diagnostics.Name_is_not_valid) }; } if ((getEffectiveModifierFlags(declaration) & 98303 | meaning) !== meaning) { return { error: getLocaleSpecificMessage(Diagnostics.Can_only_convert_property_with_modifier) }; } const name = declaration.name.text; const startWithUnderscore = startsWithUnderscore(name); const fieldName = createPropertyName(startWithUnderscore ? name : getUniqueName(`_${name}`, file), declaration.name); const accessorName = createPropertyName(startWithUnderscore ? getUniqueName(name.substring(1), file) : name, declaration.name); return { isStatic: hasStaticModifier(declaration), isReadonly: hasEffectiveReadonlyModifier(declaration), type: getDeclarationType(declaration, program), container: declaration.kind === 170 ? declaration.parent.parent : declaration.parent, originalName: declaration.name.text, declaration, fieldName, accessorName, renameAccessor: startWithUnderscore }; } function generateGetAccessor(fieldName, accessorName, type, modifiers, isStatic2, container) { return factory.createGetAccessorDeclaration(modifiers, accessorName, [], type, factory.createBlock([ factory.createReturnStatement(createAccessorAccessExpression(fieldName, isStatic2, container)) ], true)); } function generateSetAccessor(fieldName, accessorName, type, modifiers, isStatic2, container) { return factory.createSetAccessorDeclaration(modifiers, accessorName, [factory.createParameterDeclaration(undefined, undefined, factory.createIdentifier("value"), undefined, type)], factory.createBlock([ factory.createExpressionStatement(factory.createAssignment(createAccessorAccessExpression(fieldName, isStatic2, container), factory.createIdentifier("value"))) ], true)); } function updatePropertyDeclaration(changeTracker, file, declaration, type, fieldName, modifiers) { const property = factory.updatePropertyDeclaration(declaration, modifiers, fieldName, declaration.questionToken || declaration.exclamationToken, type, declaration.initializer); changeTracker.replaceNode(file, declaration, property); } function updatePropertyAssignmentDeclaration(changeTracker, file, declaration, fieldName) { let assignment = factory.updatePropertyAssignment(declaration, fieldName, declaration.initializer); if (assignment.modifiers || assignment.questionToken || assignment.exclamationToken) { if (assignment === declaration) assignment = factory.cloneNode(assignment); assignment.modifiers = undefined; assignment.questionToken = undefined; assignment.exclamationToken = undefined; } changeTracker.replacePropertyAssignment(file, declaration, assignment); } function updateFieldDeclaration(changeTracker, file, declaration, type, fieldName, modifiers) { if (isPropertyDeclaration(declaration)) { updatePropertyDeclaration(changeTracker, file, declaration, type, fieldName, modifiers); } else if (isPropertyAssignment(declaration)) { updatePropertyAssignmentDeclaration(changeTracker, file, declaration, fieldName); } else { changeTracker.replaceNode(file, declaration, factory.updateParameterDeclaration(declaration, modifiers, declaration.dotDotDotToken, cast(fieldName, isIdentifier), declaration.questionToken, declaration.type, declaration.initializer)); } } function insertAccessor(changeTracker, file, accessor, declaration, container) { isParameterPropertyDeclaration(declaration, declaration.parent) ? changeTracker.insertMemberAtStart(file, container, accessor) : isPropertyAssignment(declaration) ? changeTracker.insertNodeAfterComma(file, declaration, accessor) : changeTracker.insertNodeAfter(file, declaration, accessor); } function updateReadonlyPropertyInitializerStatementConstructor(changeTracker, file, constructor, fieldName, originalName) { if (!constructor.body) return; constructor.body.forEachChild(function recur(node) { if (isElementAccessExpression(node) && node.expression.kind === 110 && isStringLiteral(node.argumentExpression) && node.argumentExpression.text === originalName && isWriteAccess(node)) { changeTracker.replaceNode(file, node.argumentExpression, factory.createStringLiteral(fieldName)); } if (isPropertyAccessExpression(node) && node.expression.kind === 110 && node.name.text === originalName && isWriteAccess(node)) { changeTracker.replaceNode(file, node.name, factory.createIdentifier(fieldName)); } if (!isFunctionLike(node) && !isClassLike(node)) { node.forEachChild(recur); } }); } function getDeclarationType(declaration, program) { const typeNode = getTypeAnnotationNode(declaration); if (isPropertyDeclaration(declaration) && typeNode && declaration.questionToken) { const typeChecker = program.getTypeChecker(); const type = typeChecker.getTypeFromTypeNode(typeNode); if (!typeChecker.isTypeAssignableTo(typeChecker.getUndefinedType(), type)) { const types = isUnionTypeNode(typeNode) ? typeNode.types : [typeNode]; return factory.createUnionTypeNode([...types, factory.createKeywordTypeNode(157)]); } } return typeNode; } var fixName5 = "invalidImportSyntax"; function getCodeFixesForImportDeclaration(context, node) { const sourceFile = getSourceFileOfNode(node); const namespace = getNamespaceDeclarationNode(node); const opts = context.program.getCompilerOptions(); const variations = []; variations.push(createAction(context, sourceFile, node, makeImport(namespace.name, undefined, node.moduleSpecifier, getQuotePreference(sourceFile, context.preferences)))); if (getEmitModuleKind(opts) === 1) { variations.push(createAction(context, sourceFile, node, factory.createImportEqualsDeclaration(undefined, false, namespace.name, factory.createExternalModuleReference(node.moduleSpecifier)))); } return variations; } function createAction(context, sourceFile, node, replacement) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => t.replaceNode(sourceFile, node, replacement)); return createCodeFixActionWithoutFixAll(fixName5, changes, [Diagnostics.Replace_import_with_0, changes[0].textChanges[0].newText]); } registerCodeFix({ errorCodes: [ Diagnostics.This_expression_is_not_callable.code, Diagnostics.This_expression_is_not_constructable.code ], getCodeActions: getActionsForUsageOfInvalidImport }); function getActionsForUsageOfInvalidImport(context) { const sourceFile = context.sourceFile; const targetKind = Diagnostics.This_expression_is_not_callable.code === context.errorCode ? 214 : 215; const node = findAncestor(getTokenAtPosition(sourceFile, context.span.start), (a) => a.kind === targetKind); if (!node) { return []; } const expr = node.expression; return getImportCodeFixesForExpression(context, expr); } registerCodeFix({ errorCodes: [ Diagnostics.Argument_of_type_0_is_not_assignable_to_parameter_of_type_1.code, Diagnostics.Type_0_does_not_satisfy_the_constraint_1.code, Diagnostics.Type_0_is_not_assignable_to_type_1.code, Diagnostics.Type_0_is_not_assignable_to_type_1_Two_different_types_with_this_name_exist_but_they_are_unrelated.code, Diagnostics.Type_predicate_0_is_not_assignable_to_1.code, Diagnostics.Property_0_of_type_1_is_not_assignable_to_2_index_type_3.code, Diagnostics._0_index_type_1_is_not_assignable_to_2_index_type_3.code, Diagnostics.Property_0_in_type_1_is_not_assignable_to_the_same_property_in_base_type_2.code, Diagnostics.Property_0_in_type_1_is_not_assignable_to_type_2.code, Diagnostics.Property_0_of_JSX_spread_attribute_is_not_assignable_to_target_property.code, Diagnostics.The_this_context_of_type_0_is_not_assignable_to_method_s_this_of_type_1.code ], getCodeActions: getActionsForInvalidImportLocation }); function getActionsForInvalidImportLocation(context) { const sourceFile = context.sourceFile; const node = findAncestor(getTokenAtPosition(sourceFile, context.span.start), (a) => a.getStart() === context.span.start && a.getEnd() === context.span.start + context.span.length); if (!node) { return []; } return getImportCodeFixesForExpression(context, node); } function getImportCodeFixesForExpression(context, expr) { const type = context.program.getTypeChecker().getTypeAtLocation(expr); if (!(type.symbol && isTransientSymbol(type.symbol) && type.symbol.links.originatingImport)) { return []; } const fixes = []; const relatedImport = type.symbol.links.originatingImport; if (!isImportCall(relatedImport)) { addRange(fixes, getCodeFixesForImportDeclaration(context, relatedImport)); } if (isExpression(expr) && !(isNamedDeclaration(expr.parent) && expr.parent.name === expr)) { const sourceFile = context.sourceFile; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => t.replaceNode(sourceFile, expr, factory.createPropertyAccessExpression(expr, "default"), {})); fixes.push(createCodeFixActionWithoutFixAll(fixName5, changes, Diagnostics.Use_synthetic_default_member)); } return fixes; } var fixName6 = "strictClassInitialization"; var fixIdAddDefiniteAssignmentAssertions = "addMissingPropertyDefiniteAssignmentAssertions"; var fixIdAddUndefinedType = "addMissingPropertyUndefinedType"; var fixIdAddInitializer = "addMissingPropertyInitializer"; var errorCodes54 = [Diagnostics.Property_0_has_no_initializer_and_is_not_definitely_assigned_in_the_constructor.code]; registerCodeFix({ errorCodes: errorCodes54, getCodeActions: function getCodeActionsForStrictClassInitializationErrors(context) { const info = getInfo17(context.sourceFile, context.span.start); if (!info) return; const result = []; append(result, getActionForAddMissingUndefinedType(context, info)); append(result, getActionForAddMissingDefiniteAssignmentAssertion(context, info)); append(result, getActionForAddMissingInitializer(context, info)); return result; }, fixIds: [fixIdAddDefiniteAssignmentAssertions, fixIdAddUndefinedType, fixIdAddInitializer], getAllCodeActions: (context) => { return codeFixAll(context, errorCodes54, (changes, diag2) => { const info = getInfo17(diag2.file, diag2.start); if (!info) return; switch (context.fixId) { case fixIdAddDefiniteAssignmentAssertions: addDefiniteAssignmentAssertion(changes, diag2.file, info.prop); break; case fixIdAddUndefinedType: addUndefinedType(changes, diag2.file, info); break; case fixIdAddInitializer: const checker = context.program.getTypeChecker(); const initializer = getInitializer(checker, info.prop); if (!initializer) return; addInitializer(changes, diag2.file, info.prop, initializer); break; default: Debug.fail(JSON.stringify(context.fixId)); } }); } }); function getInfo17(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); if (isIdentifier(token) && isPropertyDeclaration(token.parent)) { const type = getEffectiveTypeAnnotationNode(token.parent); if (type) { return { type, prop: token.parent, isJs: isInJSFile(token.parent) }; } } return; } function getActionForAddMissingDefiniteAssignmentAssertion(context, info) { if (info.isJs) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addDefiniteAssignmentAssertion(t, context.sourceFile, info.prop)); return createCodeFixAction(fixName6, changes, [Diagnostics.Add_definite_assignment_assertion_to_property_0, info.prop.getText()], fixIdAddDefiniteAssignmentAssertions, Diagnostics.Add_definite_assignment_assertions_to_all_uninitialized_properties); } function addDefiniteAssignmentAssertion(changeTracker, propertyDeclarationSourceFile, propertyDeclaration) { suppressLeadingAndTrailingTrivia(propertyDeclaration); const property = factory.updatePropertyDeclaration(propertyDeclaration, propertyDeclaration.modifiers, propertyDeclaration.name, factory.createToken(54), propertyDeclaration.type, propertyDeclaration.initializer); changeTracker.replaceNode(propertyDeclarationSourceFile, propertyDeclaration, property); } function getActionForAddMissingUndefinedType(context, info) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addUndefinedType(t, context.sourceFile, info)); return createCodeFixAction(fixName6, changes, [Diagnostics.Add_undefined_type_to_property_0, info.prop.name.getText()], fixIdAddUndefinedType, Diagnostics.Add_undefined_type_to_all_uninitialized_properties); } function addUndefinedType(changeTracker, sourceFile, info) { const undefinedTypeNode = factory.createKeywordTypeNode(157); const types = isUnionTypeNode(info.type) ? info.type.types.concat(undefinedTypeNode) : [info.type, undefinedTypeNode]; const unionTypeNode = factory.createUnionTypeNode(types); if (info.isJs) { changeTracker.addJSDocTags(sourceFile, info.prop, [factory.createJSDocTypeTag(undefined, factory.createJSDocTypeExpression(unionTypeNode))]); } else { changeTracker.replaceNode(sourceFile, info.type, unionTypeNode); } } function getActionForAddMissingInitializer(context, info) { if (info.isJs) return; const checker = context.program.getTypeChecker(); const initializer = getInitializer(checker, info.prop); if (!initializer) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => addInitializer(t, context.sourceFile, info.prop, initializer)); return createCodeFixAction(fixName6, changes, [Diagnostics.Add_initializer_to_property_0, info.prop.name.getText()], fixIdAddInitializer, Diagnostics.Add_initializers_to_all_uninitialized_properties); } function addInitializer(changeTracker, propertyDeclarationSourceFile, propertyDeclaration, initializer) { suppressLeadingAndTrailingTrivia(propertyDeclaration); const property = factory.updatePropertyDeclaration(propertyDeclaration, propertyDeclaration.modifiers, propertyDeclaration.name, propertyDeclaration.questionToken, propertyDeclaration.type, initializer); changeTracker.replaceNode(propertyDeclarationSourceFile, propertyDeclaration, property); } function getInitializer(checker, propertyDeclaration) { return getDefaultValueFromType(checker, checker.getTypeFromTypeNode(propertyDeclaration.type)); } function getDefaultValueFromType(checker, type) { if (type.flags & 8192) { return type === checker.getFalseType() || type === checker.getFalseType(true) ? factory.createFalse() : factory.createTrue(); } else if (type.isStringLiteral()) { return factory.createStringLiteral(type.value); } else if (type.isNumberLiteral()) { return factory.createNumericLiteral(type.value); } else if (type.flags & 4096) { return factory.createBigIntLiteral(type.value); } else if (type.isUnion()) { return firstDefined(type.types, (t) => getDefaultValueFromType(checker, t)); } else if (type.isClass()) { const classDeclaration = getClassLikeDeclarationOfSymbol(type.symbol); if (!classDeclaration || hasSyntacticModifier(classDeclaration, 64)) return; const constructorDeclaration = getFirstConstructorWithBody(classDeclaration); if (constructorDeclaration && constructorDeclaration.parameters.length) return; return factory.createNewExpression(factory.createIdentifier(type.symbol.name), undefined, undefined); } else if (checker.isArrayLikeType(type)) { return factory.createArrayLiteralExpression(); } return; } var fixId43 = "requireInTs"; var errorCodes55 = [Diagnostics.require_call_may_be_converted_to_an_import.code]; registerCodeFix({ errorCodes: errorCodes55, getCodeActions(context) { const info = getInfo18(context.sourceFile, context.program, context.span.start, context.preferences); if (!info) { return; } const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange35(t, context.sourceFile, info)); return [createCodeFixAction(fixId43, changes, Diagnostics.Convert_require_to_import, fixId43, Diagnostics.Convert_all_require_to_import)]; }, fixIds: [fixId43], getAllCodeActions: (context) => codeFixAll(context, errorCodes55, (changes, diag2) => { const info = getInfo18(diag2.file, context.program, diag2.start, context.preferences); if (info) { doChange35(changes, context.sourceFile, info); } }) }); function doChange35(changes, sourceFile, info) { const { allowSyntheticDefaults, defaultImportName, namedImports, statement, moduleSpecifier } = info; changes.replaceNode(sourceFile, statement, defaultImportName && !allowSyntheticDefaults ? factory.createImportEqualsDeclaration(undefined, false, defaultImportName, factory.createExternalModuleReference(moduleSpecifier)) : factory.createImportDeclaration(undefined, factory.createImportClause(undefined, defaultImportName, namedImports), moduleSpecifier, undefined)); } function getInfo18(sourceFile, program, pos, preferences) { const { parent: parent2 } = getTokenAtPosition(sourceFile, pos); if (!isRequireCall(parent2, true)) { Debug.failBadSyntaxKind(parent2); } const decl = cast(parent2.parent, isVariableDeclaration); const quotePreference = getQuotePreference(sourceFile, preferences); const defaultImportName = tryCast(decl.name, isIdentifier); const namedImports = isObjectBindingPattern(decl.name) ? tryCreateNamedImportsFromObjectBindingPattern(decl.name) : undefined; if (defaultImportName || namedImports) { const moduleSpecifier = first(parent2.arguments); return { allowSyntheticDefaults: getAllowSyntheticDefaultImports(program.getCompilerOptions()), defaultImportName, namedImports, statement: cast(decl.parent.parent, isVariableStatement), moduleSpecifier: isNoSubstitutionTemplateLiteral(moduleSpecifier) ? factory.createStringLiteral(moduleSpecifier.text, quotePreference === 0) : moduleSpecifier }; } } function tryCreateNamedImportsFromObjectBindingPattern(node) { const importSpecifiers = []; for (const element of node.elements) { if (!isIdentifier(element.name) || element.initializer) { return; } importSpecifiers.push(factory.createImportSpecifier(false, tryCast(element.propertyName, isIdentifier), element.name)); } if (importSpecifiers.length) { return factory.createNamedImports(importSpecifiers); } } var fixId44 = "useDefaultImport"; var errorCodes56 = [Diagnostics.Import_may_be_converted_to_a_default_import.code]; registerCodeFix({ errorCodes: errorCodes56, getCodeActions(context) { const { sourceFile, span: { start } } = context; const info = getInfo19(sourceFile, start); if (!info) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange36(t, sourceFile, info, context.preferences)); return [createCodeFixAction(fixId44, changes, Diagnostics.Convert_to_default_import, fixId44, Diagnostics.Convert_all_to_default_imports)]; }, fixIds: [fixId44], getAllCodeActions: (context) => codeFixAll(context, errorCodes56, (changes, diag2) => { const info = getInfo19(diag2.file, diag2.start); if (info) doChange36(changes, diag2.file, info, context.preferences); }) }); function getInfo19(sourceFile, pos) { const name = getTokenAtPosition(sourceFile, pos); if (!isIdentifier(name)) return; const { parent: parent2 } = name; if (isImportEqualsDeclaration(parent2) && isExternalModuleReference(parent2.moduleReference)) { return { importNode: parent2, name, moduleSpecifier: parent2.moduleReference.expression }; } else if (isNamespaceImport(parent2) && isImportDeclaration(parent2.parent.parent)) { const importNode = parent2.parent.parent; return { importNode, name, moduleSpecifier: importNode.moduleSpecifier }; } } function doChange36(changes, sourceFile, info, preferences) { changes.replaceNode(sourceFile, info.importNode, makeImport(info.name, undefined, info.moduleSpecifier, getQuotePreference(sourceFile, preferences))); } var fixId45 = "useBigintLiteral"; var errorCodes57 = [ Diagnostics.Numeric_literals_with_absolute_values_equal_to_2_53_or_greater_are_too_large_to_be_represented_accurately_as_integers.code ]; registerCodeFix({ errorCodes: errorCodes57, getCodeActions: function getCodeActionsToUseBigintLiteral(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange10(t, context.sourceFile, context.span)); if (changes.length > 0) { return [createCodeFixAction(fixId45, changes, Diagnostics.Convert_to_a_bigint_numeric_literal, fixId45, Diagnostics.Convert_all_to_bigint_numeric_literals)]; } }, fixIds: [fixId45], getAllCodeActions: (context) => { return codeFixAll(context, errorCodes57, (changes, diag2) => makeChange10(changes, diag2.file, diag2)); } }); function makeChange10(changeTracker, sourceFile, span) { const numericLiteral = tryCast(getTokenAtPosition(sourceFile, span.start), isNumericLiteral); if (!numericLiteral) { return; } const newText = numericLiteral.getText(sourceFile) + "n"; changeTracker.replaceNode(sourceFile, numericLiteral, factory.createBigIntLiteral(newText)); } var fixIdAddMissingTypeof = "fixAddModuleReferTypeMissingTypeof"; var fixId46 = fixIdAddMissingTypeof; var errorCodes58 = [Diagnostics.Module_0_does_not_refer_to_a_type_but_is_used_as_a_type_here_Did_you_mean_typeof_import_0.code]; registerCodeFix({ errorCodes: errorCodes58, getCodeActions: function getCodeActionsToAddMissingTypeof(context) { const { sourceFile, span } = context; const importType = getImportTypeNode(sourceFile, span.start); const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange37(t, sourceFile, importType)); return [createCodeFixAction(fixId46, changes, Diagnostics.Add_missing_typeof, fixId46, Diagnostics.Add_missing_typeof)]; }, fixIds: [fixId46], getAllCodeActions: (context) => codeFixAll(context, errorCodes58, (changes, diag2) => doChange37(changes, context.sourceFile, getImportTypeNode(diag2.file, diag2.start))) }); function getImportTypeNode(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); Debug.assert(token.kind === 102, "This token should be an ImportKeyword"); Debug.assert(token.parent.kind === 206, "Token parent should be an ImportType"); return token.parent; } function doChange37(changes, sourceFile, importType) { const newTypeNode = factory.updateImportTypeNode(importType, importType.argument, importType.attributes, importType.qualifier, importType.typeArguments, true); changes.replaceNode(sourceFile, importType, newTypeNode); } var fixID2 = "wrapJsxInFragment"; var errorCodes59 = [Diagnostics.JSX_expressions_must_have_one_parent_element.code]; registerCodeFix({ errorCodes: errorCodes59, getCodeActions: function getCodeActionsToWrapJsxInFragment(context) { const { sourceFile, span } = context; const node = findNodeToFix(sourceFile, span.start); if (!node) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange38(t, sourceFile, node)); return [createCodeFixAction(fixID2, changes, Diagnostics.Wrap_in_JSX_fragment, fixID2, Diagnostics.Wrap_all_unparented_JSX_in_JSX_fragment)]; }, fixIds: [fixID2], getAllCodeActions: (context) => codeFixAll(context, errorCodes59, (changes, diag2) => { const node = findNodeToFix(context.sourceFile, diag2.start); if (!node) return; doChange38(changes, context.sourceFile, node); }) }); function findNodeToFix(sourceFile, pos) { const lessThanToken = getTokenAtPosition(sourceFile, pos); const firstJsxElementOrOpenElement = lessThanToken.parent; let binaryExpr = firstJsxElementOrOpenElement.parent; if (!isBinaryExpression(binaryExpr)) { binaryExpr = binaryExpr.parent; if (!isBinaryExpression(binaryExpr)) return; } if (!nodeIsMissing(binaryExpr.operatorToken)) return; return binaryExpr; } function doChange38(changeTracker, sf, node) { const jsx = flattenInvalidBinaryExpr(node); if (jsx) changeTracker.replaceNode(sf, node, factory.createJsxFragment(factory.createJsxOpeningFragment(), jsx, factory.createJsxJsxClosingFragment())); } function flattenInvalidBinaryExpr(node) { const children = []; let current = node; while (true) { if (isBinaryExpression(current) && nodeIsMissing(current.operatorToken) && current.operatorToken.kind === 28) { children.push(current.left); if (isJsxChild(current.right)) { children.push(current.right); return children; } else if (isBinaryExpression(current.right)) { current = current.right; continue; } else return; } else return; } } var fixId47 = "wrapDecoratorInParentheses"; var errorCodes60 = [Diagnostics.Expression_must_be_enclosed_in_parentheses_to_be_used_as_a_decorator.code]; registerCodeFix({ errorCodes: errorCodes60, getCodeActions: function getCodeActionsToWrapDecoratorExpressionInParentheses(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange11(t, context.sourceFile, context.span.start)); return [createCodeFixAction(fixId47, changes, Diagnostics.Wrap_in_parentheses, fixId47, Diagnostics.Wrap_all_invalid_decorator_expressions_in_parentheses)]; }, fixIds: [fixId47], getAllCodeActions: (context) => codeFixAll(context, errorCodes60, (changes, diag2) => makeChange11(changes, diag2.file, diag2.start)) }); function makeChange11(changeTracker, sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); const decorator = findAncestor(token, isDecorator); Debug.assert(!!decorator, "Expected position to be owned by a decorator."); const replacement = factory.createParenthesizedExpression(decorator.expression); changeTracker.replaceNode(sourceFile, decorator.expression, replacement); } var fixId48 = "fixConvertToMappedObjectType"; var errorCodes61 = [Diagnostics.An_index_signature_parameter_type_cannot_be_a_literal_type_or_generic_type_Consider_using_a_mapped_object_type_instead.code]; registerCodeFix({ errorCodes: errorCodes61, getCodeActions: function getCodeActionsToConvertToMappedTypeObject(context) { const { sourceFile, span } = context; const info = getInfo20(sourceFile, span.start); if (!info) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange39(t, sourceFile, info)); const name = idText(info.container.name); return [createCodeFixAction(fixId48, changes, [Diagnostics.Convert_0_to_mapped_object_type, name], fixId48, [Diagnostics.Convert_0_to_mapped_object_type, name])]; }, fixIds: [fixId48], getAllCodeActions: (context) => codeFixAll(context, errorCodes61, (changes, diag2) => { const info = getInfo20(diag2.file, diag2.start); if (info) doChange39(changes, diag2.file, info); }) }); function getInfo20(sourceFile, pos) { const token = getTokenAtPosition(sourceFile, pos); const indexSignature = tryCast(token.parent.parent, isIndexSignatureDeclaration); if (!indexSignature) return; const container = isInterfaceDeclaration(indexSignature.parent) ? indexSignature.parent : tryCast(indexSignature.parent.parent, isTypeAliasDeclaration); if (!container) return; return { indexSignature, container }; } function createTypeAliasFromInterface(declaration, type) { return factory.createTypeAliasDeclaration(declaration.modifiers, declaration.name, declaration.typeParameters, type); } function doChange39(changes, sourceFile, { indexSignature, container }) { const members = isInterfaceDeclaration(container) ? container.members : container.type.members; const otherMembers = members.filter((member) => !isIndexSignatureDeclaration(member)); const parameter = first(indexSignature.parameters); const mappedTypeParameter = factory.createTypeParameterDeclaration(undefined, cast(parameter.name, isIdentifier), parameter.type); const mappedIntersectionType = factory.createMappedTypeNode(hasEffectiveReadonlyModifier(indexSignature) ? factory.createModifier(148) : undefined, mappedTypeParameter, undefined, indexSignature.questionToken, indexSignature.type, undefined); const intersectionType = factory.createIntersectionTypeNode([ ...getAllSuperTypeNodes(container), mappedIntersectionType, ...otherMembers.length ? [factory.createTypeLiteralNode(otherMembers)] : emptyArray ]); changes.replaceNode(sourceFile, container, createTypeAliasFromInterface(container, intersectionType)); } var fixId49 = "removeAccidentalCallParentheses"; var errorCodes62 = [ Diagnostics.This_expression_is_not_callable_because_it_is_a_get_accessor_Did_you_mean_to_use_it_without.code ]; registerCodeFix({ errorCodes: errorCodes62, getCodeActions(context) { const callExpression = findAncestor(getTokenAtPosition(context.sourceFile, context.span.start), isCallExpression); if (!callExpression) { return; } const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => { t.deleteRange(context.sourceFile, { pos: callExpression.expression.end, end: callExpression.end }); }); return [createCodeFixActionWithoutFixAll(fixId49, changes, Diagnostics.Remove_parentheses)]; }, fixIds: [fixId49] }); var fixId50 = "removeUnnecessaryAwait"; var errorCodes63 = [ Diagnostics.await_has_no_effect_on_the_type_of_this_expression.code ]; registerCodeFix({ errorCodes: errorCodes63, getCodeActions: function getCodeActionsToRemoveUnnecessaryAwait(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange12(t, context.sourceFile, context.span)); if (changes.length > 0) { return [createCodeFixAction(fixId50, changes, Diagnostics.Remove_unnecessary_await, fixId50, Diagnostics.Remove_all_unnecessary_uses_of_await)]; } }, fixIds: [fixId50], getAllCodeActions: (context) => { return codeFixAll(context, errorCodes63, (changes, diag2) => makeChange12(changes, diag2.file, diag2)); } }); function makeChange12(changeTracker, sourceFile, span) { const awaitKeyword = tryCast(getTokenAtPosition(sourceFile, span.start), (node) => node.kind === 135); const awaitExpression = awaitKeyword && tryCast(awaitKeyword.parent, isAwaitExpression); if (!awaitExpression) { return; } let expressionToReplace = awaitExpression; const hasSurroundingParens = isParenthesizedExpression(awaitExpression.parent); if (hasSurroundingParens) { const leftMostExpression = getLeftmostExpression(awaitExpression.expression, false); if (isIdentifier(leftMostExpression)) { const precedingToken = findPrecedingToken(awaitExpression.parent.pos, sourceFile); if (precedingToken && precedingToken.kind !== 105) { expressionToReplace = awaitExpression.parent; } } } changeTracker.replaceNode(sourceFile, expressionToReplace, awaitExpression.expression); } var errorCodes64 = [Diagnostics.A_type_only_import_can_specify_a_default_import_or_named_bindings_but_not_both.code]; var fixId51 = "splitTypeOnlyImport"; registerCodeFix({ errorCodes: errorCodes64, fixIds: [fixId51], getCodeActions: function getCodeActionsToSplitTypeOnlyImport(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => { return splitTypeOnlyImport(t, getImportDeclaration2(context.sourceFile, context.span), context); }); if (changes.length) { return [createCodeFixAction(fixId51, changes, Diagnostics.Split_into_two_separate_import_declarations, fixId51, Diagnostics.Split_all_invalid_type_only_imports)]; } }, getAllCodeActions: (context) => codeFixAll(context, errorCodes64, (changes, error2) => { splitTypeOnlyImport(changes, getImportDeclaration2(context.sourceFile, error2), context); }) }); function getImportDeclaration2(sourceFile, span) { return findAncestor(getTokenAtPosition(sourceFile, span.start), isImportDeclaration); } function splitTypeOnlyImport(changes, importDeclaration, context) { if (!importDeclaration) { return; } const importClause = Debug.checkDefined(importDeclaration.importClause); changes.replaceNode(context.sourceFile, importDeclaration, factory.updateImportDeclaration(importDeclaration, importDeclaration.modifiers, factory.updateImportClause(importClause, importClause.phaseModifier, importClause.name, undefined), importDeclaration.moduleSpecifier, importDeclaration.attributes)); changes.insertNodeAfter(context.sourceFile, importDeclaration, factory.createImportDeclaration(undefined, factory.updateImportClause(importClause, importClause.phaseModifier, undefined, importClause.namedBindings), importDeclaration.moduleSpecifier, importDeclaration.attributes)); } var fixId52 = "fixConvertConstToLet"; var errorCodes65 = [Diagnostics.Cannot_assign_to_0_because_it_is_a_constant.code]; registerCodeFix({ errorCodes: errorCodes65, getCodeActions: function getCodeActionsToConvertConstToLet(context) { const { sourceFile, span, program } = context; const info = getInfo21(sourceFile, span.start, program); if (info === undefined) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange40(t, sourceFile, info.token)); return [createCodeFixActionMaybeFixAll(fixId52, changes, Diagnostics.Convert_const_to_let, fixId52, Diagnostics.Convert_all_const_to_let)]; }, getAllCodeActions: (context) => { const { program } = context; const seen = /* @__PURE__ */ new Set; return createCombinedCodeActions(ts_textChanges_exports.ChangeTracker.with(context, (changes) => { eachDiagnostic(context, errorCodes65, (diag2) => { const info = getInfo21(diag2.file, diag2.start, program); if (info) { if (addToSeen(seen, getSymbolId(info.symbol))) { return doChange40(changes, diag2.file, info.token); } } return; }); })); }, fixIds: [fixId52] }); function getInfo21(sourceFile, pos, program) { var _a; const checker = program.getTypeChecker(); const symbol = checker.getSymbolAtLocation(getTokenAtPosition(sourceFile, pos)); if (symbol === undefined) return; const declaration = tryCast((_a = symbol == null ? undefined : symbol.valueDeclaration) == null ? undefined : _a.parent, isVariableDeclarationList); if (declaration === undefined) return; const constToken = findChildOfKind(declaration, 87, sourceFile); if (constToken === undefined) return; return { symbol, token: constToken }; } function doChange40(changes, sourceFile, token) { changes.replaceNode(sourceFile, token, factory.createToken(121)); } var fixId53 = "fixExpectedComma"; var expectedErrorCode = Diagnostics._0_expected.code; var errorCodes66 = [expectedErrorCode]; registerCodeFix({ errorCodes: errorCodes66, getCodeActions(context) { const { sourceFile } = context; const info = getInfo22(sourceFile, context.span.start, context.errorCode); if (!info) return; const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => doChange41(t, sourceFile, info)); return [createCodeFixAction(fixId53, changes, [Diagnostics.Change_0_to_1, ";", ","], fixId53, [Diagnostics.Change_0_to_1, ";", ","])]; }, fixIds: [fixId53], getAllCodeActions: (context) => codeFixAll(context, errorCodes66, (changes, diag2) => { const info = getInfo22(diag2.file, diag2.start, diag2.code); if (info) doChange41(changes, context.sourceFile, info); }) }); function getInfo22(sourceFile, pos, _) { const node = getTokenAtPosition(sourceFile, pos); return node.kind === 27 && node.parent && (isObjectLiteralExpression(node.parent) || isArrayLiteralExpression(node.parent)) ? { node } : undefined; } function doChange41(changes, sourceFile, { node }) { const newNode = factory.createToken(28); changes.replaceNode(sourceFile, node, newNode); } var fixName7 = "addVoidToPromise"; var fixId54 = "addVoidToPromise"; var errorCodes67 = [ Diagnostics.Expected_1_argument_but_got_0_new_Promise_needs_a_JSDoc_hint_to_produce_a_resolve_that_can_be_called_without_arguments.code, Diagnostics.Expected_0_arguments_but_got_1_Did_you_forget_to_include_void_in_your_type_argument_to_Promise.code ]; registerCodeFix({ errorCodes: errorCodes67, fixIds: [fixId54], getCodeActions(context) { const changes = ts_textChanges_exports.ChangeTracker.with(context, (t) => makeChange13(t, context.sourceFile, context.span, context.program)); if (changes.length > 0) { return [createCodeFixAction(fixName7, changes, Diagnostics.Add_void_to_Promise_resolved_without_a_value, fixId54, Diagnostics.Add_void_to_all_Promises_resolved_without_a_value)]; } }, getAllCodeActions(context) { return codeFixAll(context, errorCodes67, (changes, diag2) => makeChange13(changes, diag2.file, diag2, context.program, /* @__PURE__ */ new Set)); } }); function makeChange13(changes, sourceFile, span, program, seen) { const node = getTokenAtPosition(sourceFile, span.start); if (!isIdentifier(node) || !isCallExpression(node.parent) || node.parent.expression !== node || node.parent.arguments.length !== 0) return; const checker = program.getTypeChecker(); const symbol = checker.getSymbolAtLocation(node); const decl = symbol == null ? undefined : symbol.valueDeclaration; if (!decl || !isParameter(decl) || !isNewExpression(decl.parent.parent)) return; if (seen == null ? undefined : seen.has(decl)) return; seen == null || seen.add(decl); const typeArguments = getEffectiveTypeArguments(decl.parent.parent); if (some(typeArguments)) { const typeArgument = typeArguments[0]; const needsParens = !isUnionTypeNode(typeArgument) && !isParenthesizedTypeNode(typeArgument) && isParenthesizedTypeNode(factory.createUnionTypeNode([typeArgument, factory.createKeywordTypeNode(116)]).types[0]); if (needsParens) { changes.insertText(sourceFile, typeArgument.pos, "("); } changes.insertText(sourceFile, typeArgument.end, needsParens ? ") | void" : " | void"); } else { const signature = checker.getResolvedSignature(node.parent); const parameter = signature == null ? undefined : signature.parameters[0]; const parameterType = parameter && checker.getTypeOfSymbolAtLocation(parameter, decl.parent.parent); if (isInJSFile(decl)) { if (!parameterType || parameterType.flags & 3) { changes.insertText(sourceFile, decl.parent.parent.end, `)`); changes.insertText(sourceFile, skipTrivia2(sourceFile.text, decl.parent.parent.pos), `/** @type {Promise} */(`); } } else { if (!parameterType || parameterType.flags & 2) { changes.insertText(sourceFile, decl.parent.parent.expression.end, ""); } } } } function getEffectiveTypeArguments(node) { var _a; if (isInJSFile(node)) { if (isParenthesizedExpression(node.parent)) { const jsDocType = (_a = getJSDocTypeTag(node.parent)) == null ? undefined : _a.typeExpression.type; if (jsDocType && isTypeReferenceNode(jsDocType) && isIdentifier(jsDocType.typeName) && idText(jsDocType.typeName) === "Promise") { return jsDocType.typeArguments; } } } else { return node.typeArguments; } } var ts_Completions_exports = {}; __export2(ts_Completions_exports, { CompletionKind: () => CompletionKind, CompletionSource: () => CompletionSource, SortText: () => SortText, StringCompletions: () => ts_Completions_StringCompletions_exports, SymbolOriginInfoKind: () => SymbolOriginInfoKind, createCompletionDetails: () => createCompletionDetails, createCompletionDetailsForSymbol: () => createCompletionDetailsForSymbol, getCompletionEntriesFromSymbols: () => getCompletionEntriesFromSymbols, getCompletionEntryDetails: () => getCompletionEntryDetails, getCompletionEntrySymbol: () => getCompletionEntrySymbol, getCompletionsAtPosition: () => getCompletionsAtPosition, getConstraintOfTypeArgumentProperty: () => getConstraintOfTypeArgumentProperty, getDefaultCommitCharacters: () => getDefaultCommitCharacters, getPropertiesForObjectExpression: () => getPropertiesForObjectExpression, moduleSpecifierResolutionCacheAttemptLimit: () => moduleSpecifierResolutionCacheAttemptLimit, moduleSpecifierResolutionLimit: () => moduleSpecifierResolutionLimit }); var moduleSpecifierResolutionLimit = 100; var moduleSpecifierResolutionCacheAttemptLimit = 1000; var SortText = { LocalDeclarationPriority: "10", LocationPriority: "11", OptionalMember: "12", MemberDeclaredBySpreadAssignment: "13", SuggestedClassMembers: "14", GlobalsOrKeywords: "15", AutoImportSuggestions: "16", ClassMemberSnippets: "17", JavascriptIdentifiers: "18", Deprecated(sortText) { return "z" + sortText; }, ObjectLiteralProperty(presetSortText, symbolDisplayName) { return `${presetSortText}\x00${symbolDisplayName}\x00`; }, SortBelow(sortText) { return sortText + "1"; } }; var allCommitCharacters = [".", ",", ";"]; var noCommaCommitCharacters = [".", ";"]; var CompletionSource = /* @__PURE__ */ ((CompletionSource2) => { CompletionSource2["ThisProperty"] = "ThisProperty/"; CompletionSource2["ClassMemberSnippet"] = "ClassMemberSnippet/"; CompletionSource2["TypeOnlyAlias"] = "TypeOnlyAlias/"; CompletionSource2["ObjectLiteralMethodSnippet"] = "ObjectLiteralMethodSnippet/"; CompletionSource2["SwitchCases"] = "SwitchCases/"; CompletionSource2["ObjectLiteralMemberWithComma"] = "ObjectLiteralMemberWithComma/"; return CompletionSource2; })(CompletionSource || {}); var SymbolOriginInfoKind = /* @__PURE__ */ ((SymbolOriginInfoKind2) => { SymbolOriginInfoKind2[SymbolOriginInfoKind2["ThisType"] = 1] = "ThisType"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["SymbolMember"] = 2] = "SymbolMember"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["Export"] = 4] = "Export"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["Promise"] = 8] = "Promise"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["Nullable"] = 16] = "Nullable"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["ResolvedExport"] = 32] = "ResolvedExport"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["TypeOnlyAlias"] = 64] = "TypeOnlyAlias"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["ObjectLiteralMethod"] = 128] = "ObjectLiteralMethod"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["Ignore"] = 256] = "Ignore"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["ComputedPropertyName"] = 512] = "ComputedPropertyName"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["SymbolMemberNoExport"] = 2] = "SymbolMemberNoExport"; SymbolOriginInfoKind2[SymbolOriginInfoKind2["SymbolMemberExport"] = 34] = "SymbolMemberExport"; return SymbolOriginInfoKind2; })(SymbolOriginInfoKind || {}); function originIsThisType(origin) { return !!(origin.kind & 1); } function originIsSymbolMember(origin) { return !!(origin.kind & 2); } function originIsExport(origin) { return !!(origin && origin.kind & 4); } function originIsResolvedExport(origin) { return !!(origin && origin.kind & 32); } function originIncludesSymbolName(origin) { return originIsExport(origin) || originIsResolvedExport(origin) || originIsComputedPropertyName(origin); } function originIsPackageJsonImport(origin) { return (originIsExport(origin) || originIsResolvedExport(origin)) && !!origin.isFromPackageJson; } function originIsPromise(origin) { return !!(origin.kind & 8); } function originIsNullableMember(origin) { return !!(origin.kind & 16); } function originIsTypeOnlyAlias(origin) { return !!(origin && origin.kind & 64); } function originIsObjectLiteralMethod(origin) { return !!(origin && origin.kind & 128); } function originIsIgnore(origin) { return !!(origin && origin.kind & 256); } function originIsComputedPropertyName(origin) { return !!(origin && origin.kind & 512); } function resolvingModuleSpecifiers(logPrefix, host, resolver, program, position, preferences, isForImportStatementCompletion, isValidTypeOnlyUseSite, cb) { var _a, _b, _c, _d; const start = timestamp(); const needsFullResolution = isForImportStatementCompletion || getResolvePackageJsonExports(program.getCompilerOptions()) || ((_a = preferences.autoImportSpecifierExcludeRegexes) == null ? undefined : _a.length); let skippedAny = false; let ambientCount = 0; let resolvedCount = 0; let resolvedFromCacheCount = 0; let cacheAttemptCount = 0; const result = cb({ tryResolve, skippedAny: () => skippedAny, resolvedAny: () => resolvedCount > 0, resolvedBeyondLimit: () => resolvedCount > moduleSpecifierResolutionLimit }); const hitRateMessage = cacheAttemptCount ? ` (${(resolvedFromCacheCount / cacheAttemptCount * 100).toFixed(1)}% hit rate)` : ""; (_b = host.log) == null || _b.call(host, `${logPrefix}: resolved ${resolvedCount} module specifiers, plus ${ambientCount} ambient and ${resolvedFromCacheCount} from cache${hitRateMessage}`); (_c = host.log) == null || _c.call(host, `${logPrefix}: response is ${skippedAny ? "incomplete" : "complete"}`); (_d = host.log) == null || _d.call(host, `${logPrefix}: ${timestamp() - start}`); return result; function tryResolve(exportInfo, isFromAmbientModule) { if (isFromAmbientModule) { const result3 = resolver.getModuleSpecifierForBestExportInfo(exportInfo, position, isValidTypeOnlyUseSite); if (result3) { ambientCount++; } return result3 || "failed"; } const shouldResolveModuleSpecifier = needsFullResolution || preferences.allowIncompleteCompletions && resolvedCount < moduleSpecifierResolutionLimit; const shouldGetModuleSpecifierFromCache = !shouldResolveModuleSpecifier && preferences.allowIncompleteCompletions && cacheAttemptCount < moduleSpecifierResolutionCacheAttemptLimit; const result2 = shouldResolveModuleSpecifier || shouldGetModuleSpecifierFromCache ? resolver.getModuleSpecifierForBestExportInfo(exportInfo, position, isValidTypeOnlyUseSite, shouldGetModuleSpecifierFromCache) : undefined; if (!shouldResolveModuleSpecifier && !shouldGetModuleSpecifierFromCache || shouldGetModuleSpecifierFromCache && !result2) { skippedAny = true; } resolvedCount += (result2 == null ? undefined : result2.computedWithoutCacheCount) || 0; resolvedFromCacheCount += exportInfo.length - ((result2 == null ? undefined : result2.computedWithoutCacheCount) || 0); if (shouldGetModuleSpecifierFromCache) { cacheAttemptCount++; } return result2 || (needsFullResolution ? "failed" : "skipped"); } } function getDefaultCommitCharacters(isNewIdentifierLocation) { if (isNewIdentifierLocation) { return []; } return allCommitCharacters; } function getCompletionsAtPosition(host, program, log, sourceFile, position, preferences, triggerCharacter, completionKind, cancellationToken, formatContext, includeSymbol = false) { var _a; const { previousToken } = getRelevantTokens(position, sourceFile); if (triggerCharacter && !isInString(sourceFile, position, previousToken) && !isValidTrigger(sourceFile, triggerCharacter, previousToken, position)) { return; } if (triggerCharacter === " ") { if (preferences.includeCompletionsForImportStatements && preferences.includeCompletionsWithInsertText) { return { isGlobalCompletion: true, isMemberCompletion: false, isNewIdentifierLocation: true, isIncomplete: true, entries: [], defaultCommitCharacters: getDefaultCommitCharacters(true) }; } return; } const compilerOptions = program.getCompilerOptions(); const checker = program.getTypeChecker(); const incompleteCompletionsCache = preferences.allowIncompleteCompletions ? (_a = host.getIncompleteCompletionsCache) == null ? undefined : _a.call(host) : undefined; if (incompleteCompletionsCache && completionKind === 3 && previousToken && isIdentifier(previousToken)) { const incompleteContinuation = continuePreviousIncompleteResponse(incompleteCompletionsCache, sourceFile, previousToken, program, host, preferences, cancellationToken, position); if (incompleteContinuation) { return incompleteContinuation; } } else { incompleteCompletionsCache == null || incompleteCompletionsCache.clear(); } const stringCompletions = ts_Completions_StringCompletions_exports.getStringLiteralCompletions(sourceFile, position, previousToken, compilerOptions, host, program, log, preferences, includeSymbol); if (stringCompletions) { return stringCompletions; } if (previousToken && isBreakOrContinueStatement(previousToken.parent) && (previousToken.kind === 83 || previousToken.kind === 88 || previousToken.kind === 80)) { return getLabelCompletionAtPosition(previousToken.parent); } const completionData = getCompletionData(program, log, sourceFile, compilerOptions, position, preferences, undefined, host, formatContext, cancellationToken); if (!completionData) { return; } switch (completionData.kind) { case 0: const response = completionInfoFromData(sourceFile, host, program, compilerOptions, log, completionData, preferences, formatContext, position, includeSymbol); if (response == null ? undefined : response.isIncomplete) { incompleteCompletionsCache == null || incompleteCompletionsCache.set(response); } return response; case 1: return jsdocCompletionInfo([ ...ts_JsDoc_exports.getJSDocTagNameCompletions(), ...getJSDocParameterCompletions(sourceFile, position, checker, compilerOptions, preferences, true) ]); case 2: return jsdocCompletionInfo([ ...ts_JsDoc_exports.getJSDocTagCompletions(), ...getJSDocParameterCompletions(sourceFile, position, checker, compilerOptions, preferences, false) ]); case 3: return jsdocCompletionInfo(ts_JsDoc_exports.getJSDocParameterNameCompletions(completionData.tag)); case 4: return specificKeywordCompletionInfo(completionData.keywordCompletions, completionData.isNewIdentifierLocation); default: return Debug.assertNever(completionData); } } function compareCompletionEntries(entryInArray, entryToInsert) { var _a, _b; let result = compareStringsCaseSensitiveUI(entryInArray.sortText, entryToInsert.sortText); if (result === 0) { result = compareStringsCaseSensitiveUI(entryInArray.name, entryToInsert.name); } if (result === 0 && ((_a = entryInArray.data) == null ? undefined : _a.moduleSpecifier) && ((_b = entryToInsert.data) == null ? undefined : _b.moduleSpecifier)) { result = compareNumberOfDirectorySeparators(entryInArray.data.moduleSpecifier, entryToInsert.data.moduleSpecifier); } if (result === 0) { return -1; } return result; } function completionEntryDataIsResolved(data) { return !!(data == null ? undefined : data.moduleSpecifier); } function continuePreviousIncompleteResponse(cache, file, location, program, host, preferences, cancellationToken, position) { const previousResponse = cache.get(); if (!previousResponse) return; const touchNode = getTouchingPropertyName(file, position); const lowerCaseTokenText = location.text.toLowerCase(); const exportMap = getExportInfoMap(file, host, program, preferences, cancellationToken); const newEntries = resolvingModuleSpecifiers("continuePreviousIncompleteResponse", host, ts_codefix_exports.createImportSpecifierResolver(file, program, host, preferences), program, location.getStart(), preferences, false, isValidTypeOnlyAliasUseSite(location), (context) => { const entries = mapDefined(previousResponse.entries, (entry) => { var _a; if (!entry.hasAction || !entry.source || !entry.data || completionEntryDataIsResolved(entry.data)) { return entry; } if (!charactersFuzzyMatchInString(entry.name, lowerCaseTokenText)) { return; } const { origin } = Debug.checkDefined(getAutoImportSymbolFromCompletionEntryData(entry.name, entry.data, program, host)); const info = exportMap.get(file.path, entry.data.exportMapKey); const result = info && context.tryResolve(info, !isExternalModuleNameRelative(stripQuotes(origin.moduleSymbol.name))); if (result === "skipped") return entry; if (!result || result === "failed") { (_a = host.log) == null || _a.call(host, `Unexpected failure resolving auto import for '${entry.name}' from '${entry.source}'`); return; } const newOrigin = { ...origin, kind: 32, moduleSpecifier: result.moduleSpecifier }; entry.data = originToCompletionEntryData(newOrigin); entry.source = getSourceFromOrigin(newOrigin); entry.sourceDisplay = [textPart(newOrigin.moduleSpecifier)]; return entry; }); if (!context.skippedAny()) { previousResponse.isIncomplete = undefined; } return entries; }); previousResponse.entries = newEntries; previousResponse.flags = (previousResponse.flags || 0) | 4; previousResponse.optionalReplacementSpan = getOptionalReplacementSpan(touchNode); return previousResponse; } function jsdocCompletionInfo(entries) { return { isGlobalCompletion: false, isMemberCompletion: false, isNewIdentifierLocation: false, entries, defaultCommitCharacters: getDefaultCommitCharacters(false) }; } function getJSDocParameterCompletions(sourceFile, position, checker, options, preferences, tagNameOnly) { const currentToken = getTokenAtPosition(sourceFile, position); if (!isJSDocTag(currentToken) && !isJSDoc(currentToken)) { return []; } const jsDoc = isJSDoc(currentToken) ? currentToken : currentToken.parent; if (!isJSDoc(jsDoc)) { return []; } const func = jsDoc.parent; if (!isFunctionLike(func)) { return []; } const isJs = isSourceFileJS(sourceFile); const isSnippet = preferences.includeCompletionsWithSnippetText || undefined; const paramTagCount = countWhere(jsDoc.tags, (tag) => isJSDocParameterTag(tag) && tag.getEnd() <= position); return mapDefined(func.parameters, (param) => { if (getJSDocParameterTags(param).length) { return; } if (isIdentifier(param.name)) { const tabstopCounter = { tabstop: 1 }; const paramName = param.name.text; let displayText = getJSDocParamAnnotation(paramName, param.initializer, param.dotDotDotToken, isJs, false, false, checker, options, preferences); let snippetText = isSnippet ? getJSDocParamAnnotation(paramName, param.initializer, param.dotDotDotToken, isJs, false, true, checker, options, preferences, tabstopCounter) : undefined; if (tagNameOnly) { displayText = displayText.slice(1); if (snippetText) snippetText = snippetText.slice(1); } return { name: displayText, kind: "parameter", sortText: SortText.LocationPriority, insertText: isSnippet ? snippetText : undefined, isSnippet }; } else if (param.parent.parameters.indexOf(param) === paramTagCount) { const paramPath = `param${paramTagCount}`; const displayTextResult = generateJSDocParamTagsForDestructuring(paramPath, param.name, param.initializer, param.dotDotDotToken, isJs, false, checker, options, preferences); const snippetTextResult = isSnippet ? generateJSDocParamTagsForDestructuring(paramPath, param.name, param.initializer, param.dotDotDotToken, isJs, true, checker, options, preferences) : undefined; let displayText = displayTextResult.join(getNewLineCharacter(options) + "* "); let snippetText = snippetTextResult == null ? undefined : snippetTextResult.join(getNewLineCharacter(options) + "* "); if (tagNameOnly) { displayText = displayText.slice(1); if (snippetText) snippetText = snippetText.slice(1); } return { name: displayText, kind: "parameter", sortText: SortText.LocationPriority, insertText: isSnippet ? snippetText : undefined, isSnippet }; } }); } function generateJSDocParamTagsForDestructuring(path, pattern, initializer, dotDotDotToken, isJs, isSnippet, checker, options, preferences) { if (!isJs) { return [ getJSDocParamAnnotation(path, initializer, dotDotDotToken, isJs, false, isSnippet, checker, options, preferences, { tabstop: 1 }) ]; } return patternWorker(path, pattern, initializer, dotDotDotToken, { tabstop: 1 }); function patternWorker(path2, pattern2, initializer2, dotDotDotToken2, counter) { if (isObjectBindingPattern(pattern2) && !dotDotDotToken2) { const oldTabstop = counter.tabstop; const childCounter = { tabstop: oldTabstop }; const rootParam = getJSDocParamAnnotation(path2, initializer2, dotDotDotToken2, isJs, true, isSnippet, checker, options, preferences, childCounter); let childTags = []; for (const element of pattern2.elements) { const elementTags = elementWorker(path2, element, childCounter); if (!elementTags) { childTags = undefined; break; } else { childTags.push(...elementTags); } } if (childTags) { counter.tabstop = childCounter.tabstop; return [rootParam, ...childTags]; } } return [ getJSDocParamAnnotation(path2, initializer2, dotDotDotToken2, isJs, false, isSnippet, checker, options, preferences, counter) ]; } function elementWorker(path2, element, counter) { if (!element.propertyName && isIdentifier(element.name) || isIdentifier(element.name)) { const propertyName = element.propertyName ? tryGetTextOfPropertyName(element.propertyName) : element.name.text; if (!propertyName) { return; } const paramName = `${path2}.${propertyName}`; return [ getJSDocParamAnnotation(paramName, element.initializer, element.dotDotDotToken, isJs, false, isSnippet, checker, options, preferences, counter) ]; } else if (element.propertyName) { const propertyName = tryGetTextOfPropertyName(element.propertyName); return propertyName && patternWorker(`${path2}.${propertyName}`, element.name, element.initializer, element.dotDotDotToken, counter); } return; } } function getJSDocParamAnnotation(paramName, initializer, dotDotDotToken, isJs, isObject, isSnippet, checker, options, preferences, tabstopCounter) { if (isSnippet) { Debug.assertIsDefined(tabstopCounter); } if (initializer) { paramName = getJSDocParamNameWithInitializer(paramName, initializer); } if (isSnippet) { paramName = escapeSnippetText(paramName); } if (isJs) { let type = "*"; if (isObject) { Debug.assert(!dotDotDotToken, `Cannot annotate a rest parameter with type 'Object'.`); type = "Object"; } else { if (initializer) { const inferredType = checker.getTypeAtLocation(initializer.parent); if (!(inferredType.flags & (1 | 16))) { const sourceFile = initializer.getSourceFile(); const quotePreference = getQuotePreference(sourceFile, preferences); const builderFlags = quotePreference === 0 ? 268435456 : 0; const typeNode = checker.typeToTypeNode(inferredType, findAncestor(initializer, isFunctionLike), builderFlags); if (typeNode) { const printer = isSnippet ? createSnippetPrinter({ removeComments: true, module: options.module, moduleResolution: options.moduleResolution, target: options.target }) : createPrinter({ removeComments: true, module: options.module, moduleResolution: options.moduleResolution, target: options.target }); setEmitFlags(typeNode, 1); type = printer.printNode(4, typeNode, sourceFile); } } } if (isSnippet && type === "*") { type = `\${${tabstopCounter.tabstop++}:${type}}`; } } const dotDotDot = !isObject && dotDotDotToken ? "..." : ""; const description3 = isSnippet ? `\${${tabstopCounter.tabstop++}}` : ""; return `@param {${dotDotDot}${type}} ${paramName} ${description3}`; } else { const description3 = isSnippet ? `\${${tabstopCounter.tabstop++}}` : ""; return `@param ${paramName} ${description3}`; } } function getJSDocParamNameWithInitializer(paramName, initializer) { const initializerText = initializer.getText().trim(); if (initializerText.includes(` `) || initializerText.length > 80) { return `[${paramName}]`; } return `[${paramName}=${initializerText}]`; } function keywordToCompletionEntry(keyword) { return { name: tokenToString(keyword), kind: "keyword", kindModifiers: "", sortText: SortText.GlobalsOrKeywords }; } function specificKeywordCompletionInfo(entries, isNewIdentifierLocation) { return { isGlobalCompletion: false, isMemberCompletion: false, isNewIdentifierLocation, entries: entries.slice(), defaultCommitCharacters: getDefaultCommitCharacters(isNewIdentifierLocation) }; } function keywordCompletionData(keywordFilters, filterOutTsOnlyKeywords, isNewIdentifierLocation) { return { kind: 4, keywordCompletions: getKeywordCompletions(keywordFilters, filterOutTsOnlyKeywords), isNewIdentifierLocation }; } function keywordFiltersFromSyntaxKind(keywordCompletion) { switch (keywordCompletion) { case 156: return 8; default: Debug.fail("Unknown mapping from SyntaxKind to KeywordCompletionFilters"); } } function getOptionalReplacementSpan(location) { return (location == null ? undefined : location.kind) === 80 ? createTextSpanFromNode(location) : undefined; } function completionInfoFromData(sourceFile, host, program, compilerOptions, log, completionData, preferences, formatContext, position, includeSymbol) { const { symbols, contextToken, completionKind, isInSnippetScope, isNewIdentifierLocation, location, propertyAccessToConvert, keywordFilters, symbolToOriginInfoMap, recommendedCompletion, isJsxInitializer, isTypeOnlyLocation, isJsxIdentifierExpected, isRightOfOpenTag, isRightOfDotOrQuestionDot, importStatementCompletion, insideJsDocTagTypeExpression, symbolToSortTextMap, hasUnresolvedAutoImports, defaultCommitCharacters } = completionData; let literals = completionData.literals; const checker = program.getTypeChecker(); if (getLanguageVariant(sourceFile.scriptKind) === 1) { const completionInfo = getJsxClosingTagCompletion(location, sourceFile); if (completionInfo) { return completionInfo; } } const caseClause = findAncestor(contextToken, isCaseClause); if (caseClause && (isCaseKeyword(contextToken) || isNodeDescendantOf(contextToken, caseClause.expression))) { const tracker = newCaseClauseTracker(checker, caseClause.parent.clauses); literals = literals.filter((literal) => !tracker.hasValue(literal)); symbols.forEach((symbol, i) => { if (symbol.valueDeclaration && isEnumMember(symbol.valueDeclaration)) { const value = checker.getConstantValue(symbol.valueDeclaration); if (value !== undefined && tracker.hasValue(value)) { symbolToOriginInfoMap[i] = { kind: 256 }; } } }); } const entries = createSortedArray(); const isChecked = isCheckedFile(sourceFile, compilerOptions); if (isChecked && !isNewIdentifierLocation && (!symbols || symbols.length === 0) && keywordFilters === 0) { return; } const uniqueNames = getCompletionEntriesFromSymbols(symbols, entries, undefined, contextToken, location, position, sourceFile, host, program, getEmitScriptTarget(compilerOptions), log, completionKind, preferences, compilerOptions, formatContext, isTypeOnlyLocation, propertyAccessToConvert, isJsxIdentifierExpected, isJsxInitializer, importStatementCompletion, recommendedCompletion, symbolToOriginInfoMap, symbolToSortTextMap, isJsxIdentifierExpected, isRightOfOpenTag, includeSymbol); if (keywordFilters !== 0) { for (const keywordEntry of getKeywordCompletions(keywordFilters, !insideJsDocTagTypeExpression && isSourceFileJS(sourceFile))) { if (isTypeOnlyLocation && isTypeKeyword(stringToToken(keywordEntry.name)) || !isTypeOnlyLocation && isContextualKeywordInAutoImportableExpressionSpace(keywordEntry.name) || !uniqueNames.has(keywordEntry.name)) { uniqueNames.add(keywordEntry.name); insertSorted(entries, keywordEntry, compareCompletionEntries, undefined, true); } } } for (const keywordEntry of getContextualKeywords(contextToken, position)) { if (!uniqueNames.has(keywordEntry.name)) { uniqueNames.add(keywordEntry.name); insertSorted(entries, keywordEntry, compareCompletionEntries, undefined, true); } } for (const literal of literals) { const literalEntry = createCompletionEntryForLiteral(sourceFile, preferences, literal); uniqueNames.add(literalEntry.name); insertSorted(entries, literalEntry, compareCompletionEntries, undefined, true); } if (!isChecked) { getJSCompletionEntries(sourceFile, location.pos, uniqueNames, getEmitScriptTarget(compilerOptions), entries); } let caseBlock; if (preferences.includeCompletionsWithInsertText && contextToken && !isRightOfOpenTag && !isRightOfDotOrQuestionDot && (caseBlock = findAncestor(contextToken, isCaseBlock))) { const cases = getExhaustiveCaseSnippets(caseBlock, sourceFile, preferences, compilerOptions, host, program, formatContext); if (cases) { entries.push(cases.entry); } } return { flags: completionData.flags, isGlobalCompletion: isInSnippetScope, isIncomplete: preferences.allowIncompleteCompletions && hasUnresolvedAutoImports ? true : undefined, isMemberCompletion: isMemberCompletionKind(completionKind), isNewIdentifierLocation, optionalReplacementSpan: getOptionalReplacementSpan(location), entries, defaultCommitCharacters: defaultCommitCharacters ?? getDefaultCommitCharacters(isNewIdentifierLocation) }; } function isCheckedFile(sourceFile, compilerOptions) { return !isSourceFileJS(sourceFile) || !!isCheckJsEnabledForFile(sourceFile, compilerOptions); } function getExhaustiveCaseSnippets(caseBlock, sourceFile, preferences, options, host, program, formatContext) { const clauses = caseBlock.clauses; const checker = program.getTypeChecker(); const switchType = checker.getTypeAtLocation(caseBlock.parent.expression); if (switchType && switchType.isUnion() && every(switchType.types, (type) => type.isLiteral())) { const tracker = newCaseClauseTracker(checker, clauses); const target = getEmitScriptTarget(options); const quotePreference = getQuotePreference(sourceFile, preferences); const importAdder = ts_codefix_exports.createImportAdder(sourceFile, program, preferences, host); const elements = []; for (const type of switchType.types) { if (type.flags & 32768) { Debug.assert(type.symbol, "An enum member type should have a symbol"); Debug.assert(type.symbol.parent, "An enum member type should have a parent symbol (the enum symbol)"); const enumValue = type.symbol.valueDeclaration && checker.getConstantValue(type.symbol.valueDeclaration); if (enumValue !== undefined) { if (tracker.hasValue(enumValue)) { continue; } tracker.addValue(enumValue); } const typeNode = ts_codefix_exports.typeToAutoImportableTypeNode(checker, importAdder, type, caseBlock, target); if (!typeNode) { return; } const expr = typeNodeToExpression(typeNode, target, quotePreference); if (!expr) { return; } elements.push(expr); } else if (!tracker.hasValue(type.value)) { switch (typeof type.value) { case "object": elements.push(type.value.negative ? factory.createPrefixUnaryExpression(41, factory.createBigIntLiteral({ negative: false, base10Value: type.value.base10Value })) : factory.createBigIntLiteral(type.value)); break; case "number": elements.push(type.value < 0 ? factory.createPrefixUnaryExpression(41, factory.createNumericLiteral(-type.value)) : factory.createNumericLiteral(type.value)); break; case "string": elements.push(factory.createStringLiteral(type.value, quotePreference === 0)); break; } } } if (elements.length === 0) { return; } const newClauses = map(elements, (element) => factory.createCaseClause(element, [])); const newLineChar = getNewLineOrDefaultFromHost(host, formatContext == null ? undefined : formatContext.options); const printer = createSnippetPrinter({ removeComments: true, module: options.module, moduleResolution: options.moduleResolution, target: options.target, newLine: getNewLineKind(newLineChar) }); const printNode = formatContext ? (node) => printer.printAndFormatNode(4, node, sourceFile, formatContext) : (node) => printer.printNode(4, node, sourceFile); const insertText = map(newClauses, (clause, i) => { if (preferences.includeCompletionsWithSnippetText) { return `${printNode(clause)}$${i + 1}`; } return `${printNode(clause)}`; }).join(newLineChar); const firstClause = printer.printNode(4, newClauses[0], sourceFile); return { entry: { name: `${firstClause} ...`, kind: "", sortText: SortText.GlobalsOrKeywords, insertText, hasAction: importAdder.hasFixes() || undefined, source: "SwitchCases/", isSnippet: preferences.includeCompletionsWithSnippetText ? true : undefined }, importAdder }; } return; } function typeNodeToExpression(typeNode, languageVersion, quotePreference) { switch (typeNode.kind) { case 184: const typeName = typeNode.typeName; return entityNameToExpression(typeName, languageVersion, quotePreference); case 200: const objectExpression = typeNodeToExpression(typeNode.objectType, languageVersion, quotePreference); const indexExpression = typeNodeToExpression(typeNode.indexType, languageVersion, quotePreference); return objectExpression && indexExpression && factory.createElementAccessExpression(objectExpression, indexExpression); case 202: const literal = typeNode.literal; switch (literal.kind) { case 11: return factory.createStringLiteral(literal.text, quotePreference === 0); case 9: return factory.createNumericLiteral(literal.text, literal.numericLiteralFlags); } return; case 197: const exp = typeNodeToExpression(typeNode.type, languageVersion, quotePreference); return exp && (isIdentifier(exp) ? exp : factory.createParenthesizedExpression(exp)); case 187: return entityNameToExpression(typeNode.exprName, languageVersion, quotePreference); case 206: Debug.fail(`We should not get an import type after calling 'codefix.typeToAutoImportableTypeNode'.`); } return; } function entityNameToExpression(entityName, languageVersion, quotePreference) { if (isIdentifier(entityName)) { return entityName; } const unescapedName = unescapeLeadingUnderscores(entityName.right.escapedText); if (canUsePropertyAccess(unescapedName, languageVersion)) { return factory.createPropertyAccessExpression(entityNameToExpression(entityName.left, languageVersion, quotePreference), unescapedName); } else { return factory.createElementAccessExpression(entityNameToExpression(entityName.left, languageVersion, quotePreference), factory.createStringLiteral(unescapedName, quotePreference === 0)); } } function isMemberCompletionKind(kind) { switch (kind) { case 0: case 3: case 2: return true; default: return false; } } function getJsxClosingTagCompletion(location, sourceFile) { const jsxClosingElement = findAncestor(location, (node) => { switch (node.kind) { case 288: return true; case 44: case 32: case 80: case 212: return false; default: return "quit"; } }); if (jsxClosingElement) { const hasClosingAngleBracket = !!findChildOfKind(jsxClosingElement, 32, sourceFile); const tagName = jsxClosingElement.parent.openingElement.tagName; const closingTag = tagName.getText(sourceFile); const fullClosingTag = closingTag + (hasClosingAngleBracket ? "" : ">"); const replacementSpan = createTextSpanFromNode(jsxClosingElement.tagName); const entry = { name: fullClosingTag, kind: "class", kindModifiers: undefined, sortText: SortText.LocationPriority }; return { isGlobalCompletion: false, isMemberCompletion: true, isNewIdentifierLocation: false, optionalReplacementSpan: replacementSpan, entries: [entry], defaultCommitCharacters: getDefaultCommitCharacters(false) }; } return; } function getJSCompletionEntries(sourceFile, position, uniqueNames, target, entries) { getNameTable(sourceFile).forEach((pos, name) => { if (pos === position) { return; } const realName = unescapeLeadingUnderscores(name); if (!uniqueNames.has(realName) && isIdentifierText(realName, target)) { uniqueNames.add(realName); insertSorted(entries, { name: realName, kind: "warning", kindModifiers: "", sortText: SortText.JavascriptIdentifiers, isFromUncheckedFile: true, commitCharacters: [] }, compareCompletionEntries); } }); } function completionNameForLiteral(sourceFile, preferences, literal) { return typeof literal === "object" ? pseudoBigIntToString(literal) + "n" : isString(literal) ? quote(sourceFile, preferences, literal) : JSON.stringify(literal); } function createCompletionEntryForLiteral(sourceFile, preferences, literal) { return { name: completionNameForLiteral(sourceFile, preferences, literal), kind: "string", kindModifiers: "", sortText: SortText.LocationPriority, commitCharacters: [] }; } function createCompletionEntry(symbol, sortText, replacementToken, contextToken, location, position, sourceFile, host, program, name, needsConvertPropertyAccess, origin, recommendedCompletion, propertyAccessToConvert, isJsxInitializer, importStatementCompletion, useSemicolons, options, preferences, completionKind, formatContext, isJsxIdentifierExpected, isRightOfOpenTag, includeSymbol) { var _a, _b; let insertText; let filterText; let replacementSpan = getReplacementSpanForContextToken(replacementToken, position); let data; let isSnippet; let source = getSourceFromOrigin(origin); let sourceDisplay; let hasAction; let labelDetails; const typeChecker = program.getTypeChecker(); const insertQuestionDot = origin && originIsNullableMember(origin); const useBraces = origin && originIsSymbolMember(origin) || needsConvertPropertyAccess; if (origin && originIsThisType(origin)) { insertText = needsConvertPropertyAccess ? `this${insertQuestionDot ? "?." : ""}[${quotePropertyName(sourceFile, preferences, name)}]` : `this${insertQuestionDot ? "?." : "."}${name}`; } else if ((useBraces || insertQuestionDot) && propertyAccessToConvert) { insertText = useBraces ? needsConvertPropertyAccess ? `[${quotePropertyName(sourceFile, preferences, name)}]` : `[${name}]` : name; if (insertQuestionDot || propertyAccessToConvert.questionDotToken) { insertText = `?.${insertText}`; } const dot = findChildOfKind(propertyAccessToConvert, 25, sourceFile) || findChildOfKind(propertyAccessToConvert, 29, sourceFile); if (!dot) { return; } const end = startsWith(name, propertyAccessToConvert.name.text) ? propertyAccessToConvert.name.end : dot.end; replacementSpan = createTextSpanFromBounds(dot.getStart(sourceFile), end); } if (isJsxInitializer) { if (insertText === undefined) insertText = name; insertText = `{${insertText}}`; if (typeof isJsxInitializer !== "boolean") { replacementSpan = createTextSpanFromNode(isJsxInitializer, sourceFile); } } if (origin && originIsPromise(origin) && propertyAccessToConvert) { if (insertText === undefined) insertText = name; const precedingToken = findPrecedingToken(propertyAccessToConvert.pos, sourceFile); let awaitText = ""; if (precedingToken && positionIsASICandidate(precedingToken.end, precedingToken.parent, sourceFile)) { awaitText = ";"; } awaitText += `(await ${propertyAccessToConvert.expression.getText()})`; insertText = needsConvertPropertyAccess ? `${awaitText}${insertText}` : `${awaitText}${insertQuestionDot ? "?." : "."}${insertText}`; const isInAwaitExpression = tryCast(propertyAccessToConvert.parent, isAwaitExpression); const wrapNode = isInAwaitExpression ? propertyAccessToConvert.parent : propertyAccessToConvert.expression; replacementSpan = createTextSpanFromBounds(wrapNode.getStart(sourceFile), propertyAccessToConvert.end); } if (originIsResolvedExport(origin)) { sourceDisplay = [textPart(origin.moduleSpecifier)]; if (importStatementCompletion) { ({ insertText, replacementSpan } = getInsertTextAndReplacementSpanForImportCompletion(name, importStatementCompletion, origin, useSemicolons, sourceFile, program, preferences)); isSnippet = preferences.includeCompletionsWithSnippetText ? true : undefined; } } if ((origin == null ? undefined : origin.kind) === 64) { hasAction = true; } if (completionKind === 0 && contextToken && ((_a = findPrecedingToken(contextToken.pos, sourceFile, contextToken)) == null ? undefined : _a.kind) !== 28) { if (isMethodDeclaration(contextToken.parent.parent) || isGetAccessorDeclaration(contextToken.parent.parent) || isSetAccessorDeclaration(contextToken.parent.parent) || isSpreadAssignment(contextToken.parent) || ((_b = findAncestor(contextToken.parent, isPropertyAssignment)) == null ? undefined : _b.getLastToken(sourceFile)) === contextToken || isShorthandPropertyAssignment(contextToken.parent) && getLineAndCharacterOfPosition(sourceFile, contextToken.getEnd()).line !== getLineAndCharacterOfPosition(sourceFile, position).line) { source = "ObjectLiteralMemberWithComma/"; hasAction = true; } } if (preferences.includeCompletionsWithClassMemberSnippets && preferences.includeCompletionsWithInsertText && completionKind === 3 && isClassLikeMemberCompletion(symbol, location, sourceFile)) { let importAdder; const memberCompletionEntry = getEntryForMemberCompletion(host, program, options, preferences, name, symbol, location, position, contextToken, formatContext); if (memberCompletionEntry) { ({ insertText, filterText, isSnippet, importAdder } = memberCompletionEntry); if ((importAdder == null ? undefined : importAdder.hasFixes()) || memberCompletionEntry.eraseRange) { hasAction = true; source = "ClassMemberSnippet/"; } } else { return; } } if (origin && originIsObjectLiteralMethod(origin)) { ({ insertText, isSnippet, labelDetails } = origin); if (!preferences.useLabelDetailsInCompletionEntries) { name = name + labelDetails.detail; labelDetails = undefined; } source = "ObjectLiteralMethodSnippet/"; sortText = SortText.SortBelow(sortText); } if (isJsxIdentifierExpected && !isRightOfOpenTag && preferences.includeCompletionsWithSnippetText && preferences.jsxAttributeCompletionStyle && preferences.jsxAttributeCompletionStyle !== "none" && !(isJsxAttribute(location.parent) && location.parent.initializer)) { let useBraces2 = preferences.jsxAttributeCompletionStyle === "braces"; const type = typeChecker.getTypeOfSymbolAtLocation(symbol, location); if (preferences.jsxAttributeCompletionStyle === "auto" && !(type.flags & 8448) && !(type.flags & 134217728 && find(type.types, (type2) => !!(type2.flags & 8448)))) { if (type.flags & 12583968 || type.flags & 134217728 && every(type.types, (type2) => !!(type2.flags & (12583968 | 4) || isStringAndEmptyAnonymousObjectIntersection(type2)))) { insertText = `${escapeSnippetText(name)}=${quote(sourceFile, preferences, "$1")}`; isSnippet = true; } else { useBraces2 = true; } } if (useBraces2) { insertText = `${escapeSnippetText(name)}={$1}`; isSnippet = true; } } if (insertText !== undefined && !preferences.includeCompletionsWithInsertText) { return; } if (originIsExport(origin) || originIsResolvedExport(origin)) { data = originToCompletionEntryData(origin); hasAction = !importStatementCompletion; } const parentNamedImportOrExport = findAncestor(location, isNamedImportsOrExports); if (parentNamedImportOrExport) { const languageVersion = getEmitScriptTarget(host.getCompilationSettings()); if (!isIdentifierText(name, languageVersion)) { insertText = quotePropertyName(sourceFile, preferences, name); if (parentNamedImportOrExport.kind === 276) { scanner.setText(sourceFile.text); scanner.resetTokenState(position); if (!(scanner.scan() === 130 && scanner.scan() === 80)) { insertText += " as " + generateIdentifierForArbitraryString(name, languageVersion); } } } else if (parentNamedImportOrExport.kind === 276) { const possibleToken = stringToToken(name); if (possibleToken && (possibleToken === 135 || isNonContextualKeyword(possibleToken))) { insertText = `${name} as ${name}_`; } } } const kind = ts_SymbolDisplay_exports.getSymbolKind(typeChecker, symbol, location); const commitCharacters = kind === "warning" || kind === "string" ? [] : undefined; return { name, kind, kindModifiers: ts_SymbolDisplay_exports.getSymbolModifiers(typeChecker, symbol), sortText, source, hasAction: hasAction ? true : undefined, isRecommended: isRecommendedCompletionMatch(symbol, recommendedCompletion, typeChecker) || undefined, insertText, filterText, replacementSpan, sourceDisplay, labelDetails, isSnippet, isPackageJsonImport: originIsPackageJsonImport(origin) || undefined, isImportStatementCompletion: !!importStatementCompletion || undefined, data, commitCharacters, ...includeSymbol ? { symbol } : undefined }; } function generateIdentifierForArbitraryString(text, languageVersion) { let needsUnderscore = false; let identifier = ""; let ch; for (let i = 0;i < text.length; i += ch !== undefined && ch >= 65536 ? 2 : 1) { ch = text.codePointAt(i); if (ch !== undefined && (i === 0 ? isIdentifierStart(ch, languageVersion) : isIdentifierPart(ch, languageVersion))) { if (needsUnderscore) identifier += "_"; identifier += String.fromCodePoint(ch); needsUnderscore = false; } else { needsUnderscore = true; } } if (needsUnderscore) identifier += "_"; return identifier || "_"; } function isClassLikeMemberCompletion(symbol, location, sourceFile) { if (isInJSFile(location)) { return false; } const memberFlags = 106500 & 900095; return !!(symbol.flags & memberFlags) && (isClassLike(location) || location.parent && location.parent.parent && isClassElement(location.parent) && location === location.parent.name && location.parent.getLastToken(sourceFile) === location.parent.name && isClassLike(location.parent.parent) || location.parent && isSyntaxList(location) && isClassLike(location.parent)); } function getEntryForMemberCompletion(host, program, options, preferences, name, symbol, location, position, contextToken, formatContext) { const classLikeDeclaration = findAncestor(location, isClassLike); if (!classLikeDeclaration) { return; } let isSnippet; let insertText = name; const filterText = name; const checker = program.getTypeChecker(); const sourceFile = location.getSourceFile(); const printer = createSnippetPrinter({ removeComments: true, module: options.module, moduleResolution: options.moduleResolution, target: options.target, omitTrailingSemicolon: false, newLine: getNewLineKind(getNewLineOrDefaultFromHost(host, formatContext == null ? undefined : formatContext.options)) }); const importAdder = ts_codefix_exports.createImportAdder(sourceFile, program, preferences, host); let body; if (preferences.includeCompletionsWithSnippetText) { isSnippet = true; const emptyStmt = factory.createEmptyStatement(); body = factory.createBlock([emptyStmt], true); setSnippetElement(emptyStmt, { kind: 0, order: 0 }); } else { body = factory.createBlock([], true); } let modifiers = 0; const { modifiers: presentModifiers, range: eraseRange, decorators: presentDecorators } = getPresentModifiers(contextToken, sourceFile, position); const isAbstract = presentModifiers & 64 && classLikeDeclaration.modifierFlagsCache & 64; let completionNodes = []; ts_codefix_exports.addNewNodeForMemberSymbol(symbol, classLikeDeclaration, sourceFile, { program, host }, preferences, importAdder, (node) => { let requiredModifiers = 0; if (isAbstract) { requiredModifiers |= 64; } if (isClassElement(node) && checker.getMemberOverrideModifierStatus(classLikeDeclaration, node, symbol) === 1) { requiredModifiers |= 16; } if (!completionNodes.length) { modifiers = node.modifierFlagsCache | requiredModifiers; } node = factory.replaceModifiers(node, modifiers); completionNodes.push(node); }, body, ts_codefix_exports.PreserveOptionalFlags.Property, !!isAbstract); if (completionNodes.length) { const isMethod = symbol.flags & 8192; let allowedModifiers = modifiers | 16 | 1; if (!isMethod) { allowedModifiers |= 128 | 8; } else { allowedModifiers |= 1024; } const allowedAndPresent = presentModifiers & allowedModifiers; if (presentModifiers & ~allowedModifiers) { return; } if (modifiers & 4 && allowedAndPresent & 1) { modifiers &= ~4; } if (allowedAndPresent !== 0 && !(allowedAndPresent & 1)) { modifiers &= ~1; } modifiers |= allowedAndPresent; completionNodes = completionNodes.map((node) => factory.replaceModifiers(node, modifiers)); if (presentDecorators == null ? undefined : presentDecorators.length) { const lastNode = completionNodes[completionNodes.length - 1]; if (canHaveDecorators(lastNode)) { completionNodes[completionNodes.length - 1] = factory.replaceDecoratorsAndModifiers(lastNode, presentDecorators.concat(getModifiers(lastNode) || [])); } } const format = 1 | 131072; if (formatContext) { insertText = printer.printAndFormatSnippetList(format, factory.createNodeArray(completionNodes), sourceFile, formatContext); } else { insertText = printer.printSnippetList(format, factory.createNodeArray(completionNodes), sourceFile); } } return { insertText, filterText, isSnippet, importAdder, eraseRange }; } function getPresentModifiers(contextToken, sourceFile, position) { if (!contextToken || getLineAndCharacterOfPosition(sourceFile, position).line > getLineAndCharacterOfPosition(sourceFile, contextToken.getEnd()).line) { return { modifiers: 0 }; } let modifiers = 0; let decorators; let contextMod; const range = { pos: position, end: position }; if (isPropertyDeclaration(contextToken.parent) && (contextMod = isModifierLike2(contextToken))) { if (contextToken.parent.modifiers) { modifiers |= modifiersToFlags(contextToken.parent.modifiers) & 98303; decorators = contextToken.parent.modifiers.filter(isDecorator) || []; range.pos = Math.min(...contextToken.parent.modifiers.map((n) => n.getStart(sourceFile))); } const contextModifierFlag = modifierToFlag(contextMod); if (!(modifiers & contextModifierFlag)) { modifiers |= contextModifierFlag; range.pos = Math.min(range.pos, contextToken.getStart(sourceFile)); } if (contextToken.parent.name !== contextToken) { range.end = contextToken.parent.name.getStart(sourceFile); } } return { modifiers, decorators, range: range.pos < range.end ? range : undefined }; } function isModifierLike2(node) { if (isModifier(node)) { return node.kind; } if (isIdentifier(node)) { const originalKeywordKind = identifierToKeywordKind(node); if (originalKeywordKind && isModifierKind(originalKeywordKind)) { return originalKeywordKind; } } return; } function getEntryForObjectLiteralMethodCompletion(symbol, name, enclosingDeclaration, program, host, options, preferences, formatContext) { const isSnippet = preferences.includeCompletionsWithSnippetText || undefined; let insertText = name; const sourceFile = enclosingDeclaration.getSourceFile(); const method = createObjectLiteralMethod(symbol, enclosingDeclaration, sourceFile, program, host, preferences); if (!method) { return; } const printer = createSnippetPrinter({ removeComments: true, module: options.module, moduleResolution: options.moduleResolution, target: options.target, omitTrailingSemicolon: false, newLine: getNewLineKind(getNewLineOrDefaultFromHost(host, formatContext == null ? undefined : formatContext.options)) }); if (formatContext) { insertText = printer.printAndFormatSnippetList(16 | 64, factory.createNodeArray([method], true), sourceFile, formatContext); } else { insertText = printer.printSnippetList(16 | 64, factory.createNodeArray([method], true), sourceFile); } const signaturePrinter = createPrinter({ removeComments: true, module: options.module, moduleResolution: options.moduleResolution, target: options.target, omitTrailingSemicolon: true }); const methodSignature = factory.createMethodSignature(undefined, "", method.questionToken, method.typeParameters, method.parameters, method.type); const labelDetails = { detail: signaturePrinter.printNode(4, methodSignature, sourceFile) }; return { isSnippet, insertText, labelDetails }; } function createObjectLiteralMethod(symbol, enclosingDeclaration, sourceFile, program, host, preferences) { const declarations = symbol.getDeclarations(); if (!(declarations && declarations.length)) { return; } const checker = program.getTypeChecker(); const declaration = declarations[0]; const name = getSynthesizedDeepClone(getNameOfDeclaration(declaration), false); const type = checker.getWidenedType(checker.getTypeOfSymbolAtLocation(symbol, enclosingDeclaration)); const quotePreference = getQuotePreference(sourceFile, preferences); const builderFlags = 33554432 | (quotePreference === 0 ? 268435456 : 0); switch (declaration.kind) { case 172: case 173: case 174: case 175: { let effectiveType = type.flags & 134217728 && type.types.length < 10 ? checker.getUnionType(type.types, 2) : type; if (effectiveType.flags & 134217728) { const functionTypes = filter(effectiveType.types, (type2) => checker.getSignaturesOfType(type2, 0).length > 0); if (functionTypes.length === 1) { effectiveType = functionTypes[0]; } else { return; } } const signatures = checker.getSignaturesOfType(effectiveType, 0); if (signatures.length !== 1) { return; } const typeNode = checker.typeToTypeNode(effectiveType, enclosingDeclaration, builderFlags, undefined, ts_codefix_exports.getNoopSymbolTrackerWithResolver({ program, host })); if (!typeNode || !isFunctionTypeNode(typeNode)) { return; } let body; if (preferences.includeCompletionsWithSnippetText) { const emptyStmt = factory.createEmptyStatement(); body = factory.createBlock([emptyStmt], true); setSnippetElement(emptyStmt, { kind: 0, order: 0 }); } else { body = factory.createBlock([], true); } const parameters = typeNode.parameters.map((typedParam) => factory.createParameterDeclaration(undefined, typedParam.dotDotDotToken, typedParam.name, undefined, undefined, typedParam.initializer)); return factory.createMethodDeclaration(undefined, undefined, name, undefined, undefined, parameters, undefined, body); } default: return; } } function createSnippetPrinter(printerOptions) { let escapes; const baseWriter = ts_textChanges_exports.createWriter(getNewLineCharacter(printerOptions)); const printer = createPrinter(printerOptions, baseWriter); const writer = { ...baseWriter, write: (s) => escapingWrite(s, () => baseWriter.write(s)), nonEscapingWrite: baseWriter.write, writeLiteral: (s) => escapingWrite(s, () => baseWriter.writeLiteral(s)), writeStringLiteral: (s) => escapingWrite(s, () => baseWriter.writeStringLiteral(s)), writeSymbol: (s, symbol) => escapingWrite(s, () => baseWriter.writeSymbol(s, symbol)), writeParameter: (s) => escapingWrite(s, () => baseWriter.writeParameter(s)), writeComment: (s) => escapingWrite(s, () => baseWriter.writeComment(s)), writeProperty: (s) => escapingWrite(s, () => baseWriter.writeProperty(s)) }; return { printSnippetList, printAndFormatSnippetList, printNode, printAndFormatNode }; function escapingWrite(s, write) { const escaped = escapeSnippetText(s); if (escaped !== s) { const start = baseWriter.getTextPos(); write(); const end = baseWriter.getTextPos(); escapes = append(escapes || (escapes = []), { newText: escaped, span: { start, length: end - start } }); } else { write(); } } function printSnippetList(format, list, sourceFile) { const unescaped = printUnescapedSnippetList(format, list, sourceFile); return escapes ? ts_textChanges_exports.applyChanges(unescaped, escapes) : unescaped; } function printUnescapedSnippetList(format, list, sourceFile) { escapes = undefined; writer.clear(); printer.writeList(format, list, sourceFile, writer); return writer.getText(); } function printAndFormatSnippetList(format, list, sourceFile, formatContext) { const syntheticFile = { text: printUnescapedSnippetList(format, list, sourceFile), getLineAndCharacterOfPosition(pos) { return getLineAndCharacterOfPosition(this, pos); } }; const formatOptions = getFormatCodeSettingsForWriting(formatContext, sourceFile); const changes = flatMap(list, (node) => { const nodeWithPos = ts_textChanges_exports.assignPositionsToNode(node); return ts_formatting_exports.formatNodeGivenIndentation(nodeWithPos, syntheticFile, sourceFile.languageVariant, 0, 0, { ...formatContext, options: formatOptions }); }); const allChanges = escapes ? toSorted(concatenate(changes, escapes), (a, b) => compareTextSpans(a.span, b.span)) : changes; return ts_textChanges_exports.applyChanges(syntheticFile.text, allChanges); } function printNode(hint, node, sourceFile) { const unescaped = printUnescapedNode(hint, node, sourceFile); return escapes ? ts_textChanges_exports.applyChanges(unescaped, escapes) : unescaped; } function printUnescapedNode(hint, node, sourceFile) { escapes = undefined; writer.clear(); printer.writeNode(hint, node, sourceFile, writer); return writer.getText(); } function printAndFormatNode(hint, node, sourceFile, formatContext) { const syntheticFile = { text: printUnescapedNode(hint, node, sourceFile), getLineAndCharacterOfPosition(pos) { return getLineAndCharacterOfPosition(this, pos); } }; const formatOptions = getFormatCodeSettingsForWriting(formatContext, sourceFile); const nodeWithPos = ts_textChanges_exports.assignPositionsToNode(node); const changes = ts_formatting_exports.formatNodeGivenIndentation(nodeWithPos, syntheticFile, sourceFile.languageVariant, 0, 0, { ...formatContext, options: formatOptions }); const allChanges = escapes ? toSorted(concatenate(changes, escapes), (a, b) => compareTextSpans(a.span, b.span)) : changes; return ts_textChanges_exports.applyChanges(syntheticFile.text, allChanges); } } function originToCompletionEntryData(origin) { const ambientModuleName = origin.fileName ? undefined : stripQuotes(origin.moduleSymbol.name); const isPackageJsonImport = origin.isFromPackageJson ? true : undefined; if (originIsResolvedExport(origin)) { const resolvedData = { exportName: origin.exportName, exportMapKey: origin.exportMapKey, moduleSpecifier: origin.moduleSpecifier, ambientModuleName, fileName: origin.fileName, isPackageJsonImport }; return resolvedData; } const unresolvedData = { exportName: origin.exportName, exportMapKey: origin.exportMapKey, fileName: origin.fileName, ambientModuleName: origin.fileName ? undefined : stripQuotes(origin.moduleSymbol.name), isPackageJsonImport: origin.isFromPackageJson ? true : undefined }; return unresolvedData; } function completionEntryDataToSymbolOriginInfo(data, completionName, moduleSymbol) { const isDefaultExport = data.exportName === "default"; const isFromPackageJson = !!data.isPackageJsonImport; if (completionEntryDataIsResolved(data)) { const resolvedOrigin = { kind: 32, exportName: data.exportName, exportMapKey: data.exportMapKey, moduleSpecifier: data.moduleSpecifier, symbolName: completionName, fileName: data.fileName, moduleSymbol, isDefaultExport, isFromPackageJson }; return resolvedOrigin; } const unresolvedOrigin = { kind: 4, exportName: data.exportName, exportMapKey: data.exportMapKey, symbolName: completionName, fileName: data.fileName, moduleSymbol, isDefaultExport, isFromPackageJson }; return unresolvedOrigin; } function getInsertTextAndReplacementSpanForImportCompletion(name, importStatementCompletion, origin, useSemicolons, sourceFile, program, preferences) { const replacementSpan = importStatementCompletion.replacementSpan; const quotedModuleSpecifier = escapeSnippetText(quote(sourceFile, preferences, origin.moduleSpecifier)); const exportKind = origin.isDefaultExport ? 1 : origin.exportName === "export=" ? 2 : 0; const tabStop = preferences.includeCompletionsWithSnippetText ? "$1" : ""; const importKind = ts_codefix_exports.getImportKind(sourceFile, exportKind, program, true); const isImportSpecifierTypeOnly = importStatementCompletion.couldBeTypeOnlyImportSpecifier; const topLevelTypeOnlyText = importStatementCompletion.isTopLevelTypeOnly ? ` ${tokenToString(156)} ` : " "; const importSpecifierTypeOnlyText = isImportSpecifierTypeOnly ? `${tokenToString(156)} ` : ""; const suffix = useSemicolons ? ";" : ""; switch (importKind) { case 3: return { replacementSpan, insertText: `import${topLevelTypeOnlyText}${escapeSnippetText(name)}${tabStop} = require(${quotedModuleSpecifier})${suffix}` }; case 1: return { replacementSpan, insertText: `import${topLevelTypeOnlyText}${escapeSnippetText(name)}${tabStop} from ${quotedModuleSpecifier}${suffix}` }; case 2: return { replacementSpan, insertText: `import${topLevelTypeOnlyText}* as ${escapeSnippetText(name)} from ${quotedModuleSpecifier}${suffix}` }; case 0: return { replacementSpan, insertText: `import${topLevelTypeOnlyText}{ ${importSpecifierTypeOnlyText}${escapeSnippetText(name)}${tabStop} } from ${quotedModuleSpecifier}${suffix}` }; } } function quotePropertyName(sourceFile, preferences, name) { if (/^\d+$/.test(name)) { return name; } return quote(sourceFile, preferences, name); } function isRecommendedCompletionMatch(localSymbol, recommendedCompletion, checker) { return localSymbol === recommendedCompletion || !!(localSymbol.flags & 1048576) && checker.getExportSymbolOfSymbol(localSymbol) === recommendedCompletion; } function getSourceFromOrigin(origin) { if (originIsResolvedExport(origin)) { return origin.moduleSpecifier; } if (originIsExport(origin)) { return stripQuotes(origin.moduleSymbol.name); } if ((origin == null ? undefined : origin.kind) === 1) { return "ThisProperty/"; } if ((origin == null ? undefined : origin.kind) === 64) { return "TypeOnlyAlias/"; } } function getCompletionEntriesFromSymbols(symbols, entries, replacementToken, contextToken, location, position, sourceFile, host, program, target, log, kind, preferences, compilerOptions, formatContext, isTypeOnlyLocation, propertyAccessToConvert, jsxIdentifierExpected, isJsxInitializer, importStatementCompletion, recommendedCompletion, symbolToOriginInfoMap, symbolToSortTextMap, isJsxIdentifierExpected, isRightOfOpenTag, includeSymbol = false) { const start = timestamp(); const closestSymbolDeclaration = getClosestSymbolDeclaration(contextToken, location); const useSemicolons = probablyUsesSemicolons(sourceFile); const typeChecker = program.getTypeChecker(); const uniques = /* @__PURE__ */ new Map; for (let i = 0;i < symbols.length; i++) { const symbol = symbols[i]; const origin = symbolToOriginInfoMap == null ? undefined : symbolToOriginInfoMap[i]; const info = getCompletionEntryDisplayNameForSymbol(symbol, target, origin, kind, !!jsxIdentifierExpected); if (!info || uniques.get(info.name) && (!origin || !originIsObjectLiteralMethod(origin)) || kind === 1 && symbolToSortTextMap && !shouldIncludeSymbol(symbol, symbolToSortTextMap)) { continue; } if (!isTypeOnlyLocation && isInJSFile(sourceFile) && symbolAppearsToBeTypeOnly(symbol)) { continue; } const { name, needsConvertPropertyAccess } = info; const originalSortText = (symbolToSortTextMap == null ? undefined : symbolToSortTextMap[getSymbolId(symbol)]) ?? SortText.LocationPriority; const sortText = isDeprecated(symbol, typeChecker) ? SortText.Deprecated(originalSortText) : originalSortText; const entry = createCompletionEntry(symbol, sortText, replacementToken, contextToken, location, position, sourceFile, host, program, name, needsConvertPropertyAccess, origin, recommendedCompletion, propertyAccessToConvert, isJsxInitializer, importStatementCompletion, useSemicolons, compilerOptions, preferences, kind, formatContext, isJsxIdentifierExpected, isRightOfOpenTag, includeSymbol); if (!entry) { continue; } const shouldShadowLaterSymbols = (!origin || originIsTypeOnlyAlias(origin)) && !(symbol.parent === undefined && !some(symbol.declarations, (d) => d.getSourceFile() === location.getSourceFile())); uniques.set(name, shouldShadowLaterSymbols); insertSorted(entries, entry, compareCompletionEntries, undefined, true); } log("getCompletionsAtPosition: getCompletionEntriesFromSymbols: " + (timestamp() - start)); return { has: (name) => uniques.has(name), add: (name) => uniques.set(name, true) }; function shouldIncludeSymbol(symbol, symbolToSortTextMap2) { var _a; let allFlags = symbol.flags; if (location.parent && isExportAssignment(location.parent)) { return true; } if (closestSymbolDeclaration && tryCast(closestSymbolDeclaration, isVariableDeclaration)) { if (symbol.valueDeclaration === closestSymbolDeclaration) { return false; } if (isBindingPattern(closestSymbolDeclaration.name) && closestSymbolDeclaration.name.elements.some((e) => e === symbol.valueDeclaration)) { return false; } } const symbolDeclaration = symbol.valueDeclaration ?? ((_a = symbol.declarations) == null ? undefined : _a[0]); if (closestSymbolDeclaration && symbolDeclaration) { if (isParameter(closestSymbolDeclaration) && isParameter(symbolDeclaration)) { const parameters = closestSymbolDeclaration.parent.parameters; if (symbolDeclaration.pos >= closestSymbolDeclaration.pos && symbolDeclaration.pos < parameters.end) { return false; } } else if (isTypeParameterDeclaration(closestSymbolDeclaration) && isTypeParameterDeclaration(symbolDeclaration)) { if (closestSymbolDeclaration === symbolDeclaration && (contextToken == null ? undefined : contextToken.kind) === 96) { return false; } if (isInTypeParameterDefault(contextToken) && !isInferTypeNode(closestSymbolDeclaration.parent)) { const typeParameters = closestSymbolDeclaration.parent.typeParameters; if (typeParameters && symbolDeclaration.pos >= closestSymbolDeclaration.pos && symbolDeclaration.pos < typeParameters.end) { return false; } } } } const symbolOrigin = skipAlias(symbol, typeChecker); if (!!sourceFile.externalModuleIndicator && !compilerOptions.allowUmdGlobalAccess && symbolToSortTextMap2[getSymbolId(symbol)] === SortText.GlobalsOrKeywords && (symbolToSortTextMap2[getSymbolId(symbolOrigin)] === SortText.AutoImportSuggestions || symbolToSortTextMap2[getSymbolId(symbolOrigin)] === SortText.LocationPriority)) { return false; } allFlags |= getCombinedLocalAndExportSymbolFlags(symbolOrigin); if (isInRightSideOfInternalImportEqualsDeclaration(location)) { return !!(allFlags & 1920); } if (isTypeOnlyLocation) { return symbolCanBeReferencedAtTypeLocation(symbol, typeChecker); } return !!(allFlags & 111551); } function symbolAppearsToBeTypeOnly(symbol) { var _a; const flags = getCombinedLocalAndExportSymbolFlags(skipAlias(symbol, typeChecker)); return !(flags & 111551) && (!isInJSFile((_a = symbol.declarations) == null ? undefined : _a[0]) || !!(flags & 788968)); } } function getLabelCompletionAtPosition(node) { const entries = getLabelStatementCompletions(node); if (entries.length) { return { isGlobalCompletion: false, isMemberCompletion: false, isNewIdentifierLocation: false, entries, defaultCommitCharacters: getDefaultCommitCharacters(false) }; } } function getLabelStatementCompletions(node) { const entries = []; const uniques = /* @__PURE__ */ new Map; let current = node; while (current) { if (isFunctionLike(current)) { break; } if (isLabeledStatement(current)) { const name = current.label.text; if (!uniques.has(name)) { uniques.set(name, true); entries.push({ name, kindModifiers: "", kind: "label", sortText: SortText.LocationPriority }); } } current = current.parent; } return entries; } function getSymbolCompletionFromEntryId(program, log, sourceFile, position, entryId, host, preferences) { if (entryId.source === "SwitchCases/") { return { type: "cases" }; } if (entryId.data) { const autoImport = getAutoImportSymbolFromCompletionEntryData(entryId.name, entryId.data, program, host); if (autoImport) { const { contextToken: contextToken2, previousToken: previousToken2 } = getRelevantTokens(position, sourceFile); return { type: "symbol", symbol: autoImport.symbol, location: getTouchingPropertyName(sourceFile, position), previousToken: previousToken2, contextToken: contextToken2, isJsxInitializer: false, isTypeOnlyLocation: false, origin: autoImport.origin }; } } const compilerOptions = program.getCompilerOptions(); const completionData = getCompletionData(program, log, sourceFile, compilerOptions, position, { includeCompletionsForModuleExports: true, includeCompletionsWithInsertText: true }, entryId, host, undefined); if (!completionData) { return { type: "none" }; } if (completionData.kind !== 0) { return { type: "request", request: completionData }; } const { symbols, literals, location, completionKind, symbolToOriginInfoMap, contextToken, previousToken, isJsxInitializer, isTypeOnlyLocation } = completionData; const literal = find(literals, (l) => completionNameForLiteral(sourceFile, preferences, l) === entryId.name); if (literal !== undefined) return { type: "literal", literal }; return firstDefined(symbols, (symbol, index) => { const origin = symbolToOriginInfoMap[index]; const info = getCompletionEntryDisplayNameForSymbol(symbol, getEmitScriptTarget(compilerOptions), origin, completionKind, completionData.isJsxIdentifierExpected); return info && info.name === entryId.name && (entryId.source === "ClassMemberSnippet/" && symbol.flags & 106500 || entryId.source === "ObjectLiteralMethodSnippet/" && symbol.flags & (4 | 8192) || getSourceFromOrigin(origin) === entryId.source || entryId.source === "ObjectLiteralMemberWithComma/") ? { type: "symbol", symbol, location, origin, contextToken, previousToken, isJsxInitializer, isTypeOnlyLocation } : undefined; }) || { type: "none" }; } function getCompletionEntryDetails(program, log, sourceFile, position, entryId, host, formatContext, preferences, cancellationToken) { const typeChecker = program.getTypeChecker(); const compilerOptions = program.getCompilerOptions(); const { name, source, data } = entryId; const { previousToken, contextToken } = getRelevantTokens(position, sourceFile); if (isInString(sourceFile, position, previousToken)) { return ts_Completions_StringCompletions_exports.getStringLiteralCompletionDetails(name, sourceFile, position, previousToken, program, host, cancellationToken, preferences); } const symbolCompletion = getSymbolCompletionFromEntryId(program, log, sourceFile, position, entryId, host, preferences); switch (symbolCompletion.type) { case "request": { const { request } = symbolCompletion; switch (request.kind) { case 1: return ts_JsDoc_exports.getJSDocTagNameCompletionDetails(name); case 2: return ts_JsDoc_exports.getJSDocTagCompletionDetails(name); case 3: return ts_JsDoc_exports.getJSDocParameterNameCompletionDetails(name); case 4: return some(request.keywordCompletions, (c) => c.name === name) ? createSimpleDetails(name, "keyword", 5) : undefined; default: return Debug.assertNever(request); } } case "symbol": { const { symbol, location, contextToken: contextToken2, origin, previousToken: previousToken2 } = symbolCompletion; const { codeActions, sourceDisplay } = getCompletionEntryCodeActionsAndSourceDisplay(name, location, contextToken2, origin, symbol, program, host, compilerOptions, sourceFile, position, previousToken2, formatContext, preferences, data, source, cancellationToken); const symbolName2 = originIsComputedPropertyName(origin) ? origin.symbolName : symbol.name; return createCompletionDetailsForSymbol(symbol, symbolName2, typeChecker, sourceFile, location, cancellationToken, codeActions, sourceDisplay); } case "literal": { const { literal } = symbolCompletion; return createSimpleDetails(completionNameForLiteral(sourceFile, preferences, literal), "string", typeof literal === "string" ? 8 : 7); } case "cases": { const snippets = getExhaustiveCaseSnippets(contextToken.parent, sourceFile, preferences, program.getCompilerOptions(), host, program, undefined); if (snippets == null ? undefined : snippets.importAdder.hasFixes()) { const { entry, importAdder } = snippets; const changes = ts_textChanges_exports.ChangeTracker.with({ host, formatContext, preferences }, importAdder.writeFixes); return { name: entry.name, kind: "", kindModifiers: "", displayParts: [], sourceDisplay: undefined, codeActions: [{ changes, description: diagnosticToString([Diagnostics.Includes_imports_of_types_referenced_by_0, name]) }] }; } return { name, kind: "", kindModifiers: "", displayParts: [], sourceDisplay: undefined }; } case "none": return allKeywordsCompletions().some((c) => c.name === name) ? createSimpleDetails(name, "keyword", 5) : undefined; default: Debug.assertNever(symbolCompletion); } } function createSimpleDetails(name, kind, kind2) { return createCompletionDetails(name, "", kind, [displayPart(name, kind2)]); } function createCompletionDetailsForSymbol(symbol, name, checker, sourceFile, location, cancellationToken, codeActions, sourceDisplay) { const { displayParts, documentation, symbolKind, tags } = checker.runWithCancellationToken(cancellationToken, (checker2) => ts_SymbolDisplay_exports.getSymbolDisplayPartsDocumentationAndSymbolKind(checker2, symbol, sourceFile, location, location, 7)); return createCompletionDetails(name, ts_SymbolDisplay_exports.getSymbolModifiers(checker, symbol), symbolKind, displayParts, documentation, tags, codeActions, sourceDisplay); } function createCompletionDetails(name, kindModifiers, kind, displayParts, documentation, tags, codeActions, source) { return { name, kindModifiers, kind, displayParts, documentation, tags, codeActions, source, sourceDisplay: source }; } function getCompletionEntryCodeActionsAndSourceDisplay(name, location, contextToken, origin, symbol, program, host, compilerOptions, sourceFile, position, previousToken, formatContext, preferences, data, source, cancellationToken) { if (data == null ? undefined : data.moduleSpecifier) { if (previousToken && getImportStatementCompletionInfo(contextToken || previousToken, sourceFile).replacementSpan) { return { codeActions: undefined, sourceDisplay: [textPart(data.moduleSpecifier)] }; } } if (source === "ClassMemberSnippet/") { const { importAdder, eraseRange } = getEntryForMemberCompletion(host, program, compilerOptions, preferences, name, symbol, location, position, contextToken, formatContext); if ((importAdder == null ? undefined : importAdder.hasFixes()) || eraseRange) { const changes = ts_textChanges_exports.ChangeTracker.with({ host, formatContext, preferences }, (tracker) => { if (importAdder) { importAdder.writeFixes(tracker); } if (eraseRange) { tracker.deleteRange(sourceFile, eraseRange); } }); return { sourceDisplay: undefined, codeActions: [{ changes, description: (importAdder == null ? undefined : importAdder.hasFixes()) ? diagnosticToString([Diagnostics.Includes_imports_of_types_referenced_by_0, name]) : diagnosticToString([Diagnostics.Update_modifiers_of_0, name]) }] }; } } if (originIsTypeOnlyAlias(origin)) { const codeAction2 = ts_codefix_exports.getPromoteTypeOnlyCompletionAction(sourceFile, origin.declaration.name, program, host, formatContext, preferences); Debug.assertIsDefined(codeAction2, "Expected to have a code action for promoting type-only alias"); return { codeActions: [codeAction2], sourceDisplay: undefined }; } if (source === "ObjectLiteralMemberWithComma/" && contextToken) { const changes = ts_textChanges_exports.ChangeTracker.with({ host, formatContext, preferences }, (tracker) => tracker.insertText(sourceFile, contextToken.end, ",")); if (changes) { return { sourceDisplay: undefined, codeActions: [{ changes, description: diagnosticToString([Diagnostics.Add_missing_comma_for_object_member_completion_0, name]) }] }; } } if (!origin || !(originIsExport(origin) || originIsResolvedExport(origin))) { return { codeActions: undefined, sourceDisplay: undefined }; } const checker = origin.isFromPackageJson ? host.getPackageJsonAutoImportProvider().getTypeChecker() : program.getTypeChecker(); const { moduleSymbol } = origin; const targetSymbol = checker.getMergedSymbol(skipAlias(symbol.exportSymbol || symbol, checker)); const isJsxOpeningTagName = (contextToken == null ? undefined : contextToken.kind) === 30 && isJsxOpeningLikeElement(contextToken.parent); const { moduleSpecifier, codeAction } = ts_codefix_exports.getImportCompletionAction(targetSymbol, moduleSymbol, data == null ? undefined : data.exportMapKey, sourceFile, name, isJsxOpeningTagName, host, program, formatContext, previousToken && isIdentifier(previousToken) ? previousToken.getStart(sourceFile) : position, preferences, cancellationToken); Debug.assert(!(data == null ? undefined : data.moduleSpecifier) || moduleSpecifier === data.moduleSpecifier); return { sourceDisplay: [textPart(moduleSpecifier)], codeActions: [codeAction] }; } function getCompletionEntrySymbol(program, log, sourceFile, position, entryId, host, preferences) { const completion = getSymbolCompletionFromEntryId(program, log, sourceFile, position, entryId, host, preferences); return completion.type === "symbol" ? completion.symbol : undefined; } var CompletionKind = /* @__PURE__ */ ((CompletionKind2) => { CompletionKind2[CompletionKind2["ObjectPropertyDeclaration"] = 0] = "ObjectPropertyDeclaration"; CompletionKind2[CompletionKind2["Global"] = 1] = "Global"; CompletionKind2[CompletionKind2["PropertyAccess"] = 2] = "PropertyAccess"; CompletionKind2[CompletionKind2["MemberLike"] = 3] = "MemberLike"; CompletionKind2[CompletionKind2["String"] = 4] = "String"; CompletionKind2[CompletionKind2["None"] = 5] = "None"; return CompletionKind2; })(CompletionKind || {}); function getRecommendedCompletion(previousToken, contextualType, checker) { return firstDefined(contextualType && (contextualType.isUnion() ? contextualType.types : [contextualType]), (type) => { const symbol = type && type.symbol; return symbol && (symbol.flags & (8 | 384 | 32) && !isAbstractConstructorSymbol(symbol)) ? getFirstSymbolInChain(symbol, previousToken, checker) : undefined; }); } function getContextualType(previousToken, position, sourceFile, checker) { const { parent: parent2 } = previousToken; switch (previousToken.kind) { case 80: return getContextualTypeFromParent(previousToken, checker); case 64: switch (parent2.kind) { case 261: return checker.getContextualType(parent2.initializer); case 227: return checker.getTypeAtLocation(parent2.left); case 292: return checker.getContextualTypeForJsxAttribute(parent2); default: return; } case 105: return checker.getContextualType(parent2); case 84: const caseClause = tryCast(parent2, isCaseClause); return caseClause ? getSwitchedType(caseClause, checker) : undefined; case 19: return isJsxExpression(parent2) && !isJsxElement(parent2.parent) && !isJsxFragment(parent2.parent) ? checker.getContextualTypeForJsxAttribute(parent2.parent) : undefined; default: const argInfo = ts_SignatureHelp_exports.getArgumentInfoForCompletions(previousToken, position, sourceFile, checker); return argInfo ? checker.getContextualTypeForArgumentAtIndex(argInfo.invocation, argInfo.argumentIndex) : isEqualityOperatorKind(previousToken.kind) && isBinaryExpression(parent2) && isEqualityOperatorKind(parent2.operatorToken.kind) ? checker.getTypeAtLocation(parent2.left) : checker.getContextualType(previousToken, 4) || checker.getContextualType(previousToken); } } function getFirstSymbolInChain(symbol, enclosingDeclaration, checker) { const chain = checker.getAccessibleSymbolChain(symbol, enclosingDeclaration, -1, false); if (chain) return first(chain); return symbol.parent && (isModuleSymbol(symbol.parent) ? symbol : getFirstSymbolInChain(symbol.parent, enclosingDeclaration, checker)); } function isModuleSymbol(symbol) { var _a; return !!((_a = symbol.declarations) == null ? undefined : _a.some((d) => d.kind === 308)); } function getCompletionData(program, log, sourceFile, compilerOptions, position, preferences, detailsEntryId, host, formatContext, cancellationToken) { const typeChecker = program.getTypeChecker(); const inCheckedFile = isCheckedFile(sourceFile, compilerOptions); let start = timestamp(); let currentToken = getTokenAtPosition(sourceFile, position); log("getCompletionData: Get current token: " + (timestamp() - start)); start = timestamp(); const insideComment = isInComment(sourceFile, position, currentToken); log("getCompletionData: Is inside comment: " + (timestamp() - start)); let insideJsDocTagTypeExpression = false; let insideJsDocImportTag = false; let isInSnippetScope = false; if (insideComment) { if (hasDocComment(sourceFile, position)) { if (sourceFile.text.charCodeAt(position - 1) === 64) { return { kind: 1 }; } else { const lineStart = getLineStartPositionForPosition(position, sourceFile); if (!/[^*|\s(/)]/.test(sourceFile.text.substring(lineStart, position))) { return { kind: 2 }; } } } const tag = getJsDocTagAtPosition(currentToken, position); if (tag) { if (tag.tagName.pos <= position && position <= tag.tagName.end) { return { kind: 1 }; } if (isJSDocImportTag(tag)) { insideJsDocImportTag = true; } else { const typeExpression = tryGetTypeExpressionFromTag(tag); if (typeExpression) { currentToken = getTokenAtPosition(sourceFile, position); if (!currentToken || !isDeclarationName(currentToken) && (currentToken.parent.kind !== 349 || currentToken.parent.name !== currentToken)) { insideJsDocTagTypeExpression = isCurrentlyEditingNode(typeExpression); } } if (!insideJsDocTagTypeExpression && isJSDocParameterTag(tag) && (nodeIsMissing(tag.name) || tag.name.pos <= position && position <= tag.name.end)) { return { kind: 3, tag }; } } } if (!insideJsDocTagTypeExpression && !insideJsDocImportTag) { log("Returning an empty list because completion was inside a regular comment or plain text part of a JsDoc comment."); return; } } start = timestamp(); const isJsOnlyLocation = !insideJsDocTagTypeExpression && !insideJsDocImportTag && isSourceFileJS(sourceFile); const tokens = getRelevantTokens(position, sourceFile); const previousToken = tokens.previousToken; let contextToken = tokens.contextToken; log("getCompletionData: Get previous token: " + (timestamp() - start)); let node = currentToken; let propertyAccessToConvert; let isRightOfDot = false; let isRightOfQuestionDot = false; let isRightOfOpenTag = false; let isStartingCloseTag = false; let isJsxInitializer = false; let isJsxIdentifierExpected = false; let importStatementCompletion; let location = getTouchingPropertyName(sourceFile, position); let keywordFilters = 0; let isNewIdentifierLocation = false; let flags = 0; let defaultCommitCharacters; if (contextToken) { const importStatementCompletionInfo = getImportStatementCompletionInfo(contextToken, sourceFile); if (importStatementCompletionInfo.keywordCompletion) { if (importStatementCompletionInfo.isKeywordOnlyCompletion) { return { kind: 4, keywordCompletions: [keywordToCompletionEntry(importStatementCompletionInfo.keywordCompletion)], isNewIdentifierLocation: importStatementCompletionInfo.isNewIdentifierLocation }; } keywordFilters = keywordFiltersFromSyntaxKind(importStatementCompletionInfo.keywordCompletion); } if (importStatementCompletionInfo.replacementSpan && preferences.includeCompletionsForImportStatements && preferences.includeCompletionsWithInsertText) { flags |= 2; importStatementCompletion = importStatementCompletionInfo; isNewIdentifierLocation = importStatementCompletionInfo.isNewIdentifierLocation; } if (!importStatementCompletionInfo.replacementSpan && isCompletionListBlocker(contextToken)) { log("Returning an empty list because completion was requested in an invalid position."); return keywordFilters ? keywordCompletionData(keywordFilters, isJsOnlyLocation, computeCommitCharactersAndIsNewIdentifier().isNewIdentifierLocation) : undefined; } let parent2 = contextToken.parent; if (contextToken.kind === 25 || contextToken.kind === 29) { isRightOfDot = contextToken.kind === 25; isRightOfQuestionDot = contextToken.kind === 29; switch (parent2.kind) { case 212: propertyAccessToConvert = parent2; node = propertyAccessToConvert.expression; const leftmostAccessExpression = getLeftmostAccessExpression(propertyAccessToConvert); if (nodeIsMissing(leftmostAccessExpression) || (isCallExpression(node) || isFunctionLike(node)) && node.end === contextToken.pos && node.getChildCount(sourceFile) && last(node.getChildren(sourceFile)).kind !== 22) { return; } break; case 167: node = parent2.left; break; case 268: node = parent2.name; break; case 206: node = parent2; break; case 237: node = parent2.getFirstToken(sourceFile); Debug.assert(node.kind === 102 || node.kind === 105); break; default: return; } } else if (!importStatementCompletion) { if (parent2 && parent2.kind === 212) { contextToken = parent2; parent2 = parent2.parent; } if (currentToken.parent === location) { switch (currentToken.kind) { case 32: if (currentToken.parent.kind === 285 || currentToken.parent.kind === 287) { location = currentToken; } break; case 44: if (currentToken.parent.kind === 286) { location = currentToken; } break; } } switch (parent2.kind) { case 288: if (contextToken.kind === 44) { isStartingCloseTag = true; location = contextToken; } break; case 227: if (!binaryExpressionMayBeOpenTag(parent2)) { break; } case 286: case 285: case 287: isJsxIdentifierExpected = true; if (contextToken.kind === 30) { isRightOfOpenTag = true; location = contextToken; } break; case 295: case 294: if (previousToken.kind === 20 || previousToken.kind === 80 && previousToken.parent.kind === 292) { isJsxIdentifierExpected = true; } break; case 292: if (parent2.initializer === previousToken && previousToken.end < position) { isJsxIdentifierExpected = true; break; } switch (previousToken.kind) { case 64: isJsxInitializer = true; break; case 80: isJsxIdentifierExpected = true; if (parent2 !== previousToken.parent && !parent2.initializer && findChildOfKind(parent2, 64, sourceFile)) { isJsxInitializer = previousToken; } } break; } } } const semanticStart = timestamp(); let completionKind = 5; let hasUnresolvedAutoImports = false; let symbols = []; let importSpecifierResolver; const symbolToOriginInfoMap = []; const symbolToSortTextMap = []; const seenPropertySymbols = /* @__PURE__ */ new Set; const isTypeOnlyLocation = isTypeOnlyCompletion(); const getModuleSpecifierResolutionHost = memoizeOne((isFromPackageJson) => { return createModuleSpecifierResolutionHost(isFromPackageJson ? host.getPackageJsonAutoImportProvider() : program, host); }); if (isRightOfDot || isRightOfQuestionDot) { getTypeScriptMemberSymbols(); } else if (isRightOfOpenTag) { symbols = typeChecker.getJsxIntrinsicTagNamesAt(location); Debug.assertEachIsDefined(symbols, "getJsxIntrinsicTagNames() should all be defined"); tryGetGlobalSymbols(); completionKind = 1; keywordFilters = 0; } else if (isStartingCloseTag) { const tagName = contextToken.parent.parent.openingElement.tagName; const tagSymbol = typeChecker.getSymbolAtLocation(tagName); if (tagSymbol) { symbols = [tagSymbol]; } completionKind = 1; keywordFilters = 0; } else { if (!tryGetGlobalSymbols()) { return keywordFilters ? keywordCompletionData(keywordFilters, isJsOnlyLocation, isNewIdentifierLocation) : undefined; } } log("getCompletionData: Semantic work: " + (timestamp() - semanticStart)); const contextualTypeOrConstraint = previousToken && (getContextualType(previousToken, position, sourceFile, typeChecker) ?? getConstraintOfTypeArgumentProperty(previousToken, typeChecker)); const isLiteralExpected = !tryCast(previousToken, isStringLiteralLike) && !isJsxIdentifierExpected; const literals = !isLiteralExpected ? [] : mapDefined(contextualTypeOrConstraint && (contextualTypeOrConstraint.isUnion() ? contextualTypeOrConstraint.types : [contextualTypeOrConstraint]), (t) => t.isLiteral() && !(t.flags & 32768) ? t.value : undefined); const recommendedCompletion = previousToken && contextualTypeOrConstraint && getRecommendedCompletion(previousToken, contextualTypeOrConstraint, typeChecker); return { kind: 0, symbols, completionKind, isInSnippetScope, propertyAccessToConvert, isNewIdentifierLocation, location, keywordFilters, literals, symbolToOriginInfoMap, recommendedCompletion, previousToken, contextToken, isJsxInitializer, insideJsDocTagTypeExpression, symbolToSortTextMap, isTypeOnlyLocation, isJsxIdentifierExpected, isRightOfOpenTag, isRightOfDotOrQuestionDot: isRightOfDot || isRightOfQuestionDot, importStatementCompletion, hasUnresolvedAutoImports, flags, defaultCommitCharacters }; function isTagWithTypeExpression(tag) { switch (tag.kind) { case 342: case 349: case 343: case 345: case 347: case 350: case 351: return true; case 346: return !!tag.constraint; default: return false; } } function tryGetTypeExpressionFromTag(tag) { if (isTagWithTypeExpression(tag)) { const typeExpression = isJSDocTemplateTag(tag) ? tag.constraint : tag.typeExpression; return typeExpression && typeExpression.kind === 310 ? typeExpression : undefined; } if (isJSDocAugmentsTag(tag) || isJSDocImplementsTag(tag)) { return tag.class; } return; } function getTypeScriptMemberSymbols() { completionKind = 2; const isImportType = isLiteralImportTypeNode(node); const isTypeLocation = isImportType && !node.isTypeOf || isPartOfTypeNode(node.parent) || isPossiblyTypeArgumentPosition(contextToken, sourceFile, typeChecker); const isRhsOfImportDeclaration = isInRightSideOfInternalImportEqualsDeclaration(node); if (isEntityName(node) || isImportType || isPropertyAccessExpression(node)) { const isNamespaceName = isModuleDeclaration(node.parent); if (isNamespaceName) { isNewIdentifierLocation = true; defaultCommitCharacters = []; } let symbol = typeChecker.getSymbolAtLocation(node); if (symbol) { symbol = skipAlias(symbol, typeChecker); if (symbol.flags & (1536 | 384)) { const exportedSymbols = typeChecker.getExportsOfModule(symbol); Debug.assertEachIsDefined(exportedSymbols, "getExportsOfModule() should all be defined"); const isValidValueAccess = (symbol2) => typeChecker.isValidPropertyAccess(isImportType ? node : node.parent, symbol2.name); const isValidTypeAccess = (symbol2) => symbolCanBeReferencedAtTypeLocation(symbol2, typeChecker); const isValidAccess = isNamespaceName ? (symbol2) => { var _a; return !!(symbol2.flags & 1920) && !((_a = symbol2.declarations) == null ? undefined : _a.every((d) => d.parent === node.parent)); } : isRhsOfImportDeclaration ? (symbol2) => isValidTypeAccess(symbol2) || isValidValueAccess(symbol2) : isTypeLocation || insideJsDocTagTypeExpression ? isValidTypeAccess : isValidValueAccess; for (const exportedSymbol of exportedSymbols) { if (isValidAccess(exportedSymbol)) { symbols.push(exportedSymbol); } } if (!isTypeLocation && !insideJsDocTagTypeExpression && symbol.declarations && symbol.declarations.some((d) => d.kind !== 308 && d.kind !== 268 && d.kind !== 267)) { let type = typeChecker.getTypeOfSymbolAtLocation(symbol, node).getNonOptionalType(); let insertQuestionDot = false; if (type.isNullableType()) { const canCorrectToQuestionDot = isRightOfDot && !isRightOfQuestionDot && preferences.includeAutomaticOptionalChainCompletions !== false; if (canCorrectToQuestionDot || isRightOfQuestionDot) { type = type.getNonNullableType(); if (canCorrectToQuestionDot) { insertQuestionDot = true; } } } addTypeProperties(type, !!(node.flags & 65536), insertQuestionDot); } return; } } } if (!isTypeLocation || isInTypeQuery(node)) { typeChecker.tryGetThisTypeAt(node, false); let type = typeChecker.getTypeAtLocation(node).getNonOptionalType(); if (!isTypeLocation) { let insertQuestionDot = false; if (type.isNullableType()) { const canCorrectToQuestionDot = isRightOfDot && !isRightOfQuestionDot && preferences.includeAutomaticOptionalChainCompletions !== false; if (canCorrectToQuestionDot || isRightOfQuestionDot) { type = type.getNonNullableType(); if (canCorrectToQuestionDot) { insertQuestionDot = true; } } } addTypeProperties(type, !!(node.flags & 65536), insertQuestionDot); } else { addTypeProperties(type.getNonNullableType(), false, false); } } } function addTypeProperties(type, insertAwait, insertQuestionDot) { if (type.getStringIndexType()) { isNewIdentifierLocation = true; defaultCommitCharacters = []; } if (isRightOfQuestionDot && some(type.getCallSignatures())) { isNewIdentifierLocation = true; defaultCommitCharacters ?? (defaultCommitCharacters = allCommitCharacters); } const propertyAccess = node.kind === 206 ? node : node.parent; if (inCheckedFile) { for (const symbol of type.getApparentProperties()) { if (typeChecker.isValidPropertyAccessForCompletions(propertyAccess, type, symbol)) { addPropertySymbol(symbol, false, insertQuestionDot); } } } else { symbols.push(...filter(getPropertiesForCompletion(type, typeChecker), (s) => typeChecker.isValidPropertyAccessForCompletions(propertyAccess, type, s))); } if (insertAwait && preferences.includeCompletionsWithInsertText) { const promiseType = typeChecker.getPromisedTypeOfPromise(type); if (promiseType) { for (const symbol of promiseType.getApparentProperties()) { if (typeChecker.isValidPropertyAccessForCompletions(propertyAccess, promiseType, symbol)) { addPropertySymbol(symbol, true, insertQuestionDot); } } } } } function addPropertySymbol(symbol, insertAwait, insertQuestionDot) { var _a; const computedPropertyName = firstDefined(symbol.declarations, (decl) => tryCast(getNameOfDeclaration(decl), isComputedPropertyName)); if (computedPropertyName) { const leftMostName = getLeftMostName(computedPropertyName.expression); const nameSymbol = leftMostName && typeChecker.getSymbolAtLocation(leftMostName); const firstAccessibleSymbol = nameSymbol && getFirstSymbolInChain(nameSymbol, contextToken, typeChecker); const firstAccessibleSymbolId = firstAccessibleSymbol && getSymbolId(firstAccessibleSymbol); if (firstAccessibleSymbolId && addToSeen(seenPropertySymbols, firstAccessibleSymbolId)) { const index = symbols.length; symbols.push(firstAccessibleSymbol); symbolToSortTextMap[getSymbolId(firstAccessibleSymbol)] = SortText.GlobalsOrKeywords; const moduleSymbol = firstAccessibleSymbol.parent; if (!moduleSymbol || !isExternalModuleSymbol(moduleSymbol) || typeChecker.tryGetMemberInModuleExportsAndProperties(firstAccessibleSymbol.name, moduleSymbol) !== firstAccessibleSymbol) { symbolToOriginInfoMap[index] = { kind: getNullableSymbolOriginInfoKind(2) }; } else { const fileName = isExternalModuleNameRelative(stripQuotes(moduleSymbol.name)) ? (_a = getSourceFileOfModule(moduleSymbol)) == null ? undefined : _a.fileName : undefined; const { moduleSpecifier } = (importSpecifierResolver || (importSpecifierResolver = ts_codefix_exports.createImportSpecifierResolver(sourceFile, program, host, preferences))).getModuleSpecifierForBestExportInfo([{ exportKind: 0, moduleFileName: fileName, isFromPackageJson: false, moduleSymbol, symbol: firstAccessibleSymbol, targetFlags: skipAlias(firstAccessibleSymbol, typeChecker).flags }], position, isValidTypeOnlyAliasUseSite(location)) || {}; if (moduleSpecifier) { const origin = { kind: getNullableSymbolOriginInfoKind(34), moduleSymbol, isDefaultExport: false, symbolName: firstAccessibleSymbol.name, exportName: firstAccessibleSymbol.name, fileName, moduleSpecifier }; symbolToOriginInfoMap[index] = origin; } } } else if (preferences.includeCompletionsWithInsertText) { if (firstAccessibleSymbolId && seenPropertySymbols.has(firstAccessibleSymbolId)) { return; } addSymbolOriginInfo(symbol); addSymbolSortInfo(symbol); symbols.push(symbol); } } else { addSymbolOriginInfo(symbol); addSymbolSortInfo(symbol); symbols.push(symbol); } function addSymbolSortInfo(symbol2) { if (isStaticProperty(symbol2)) { symbolToSortTextMap[getSymbolId(symbol2)] = SortText.LocalDeclarationPriority; } } function addSymbolOriginInfo(symbol2) { if (preferences.includeCompletionsWithInsertText) { if (insertAwait && addToSeen(seenPropertySymbols, getSymbolId(symbol2))) { symbolToOriginInfoMap[symbols.length] = { kind: getNullableSymbolOriginInfoKind(8) }; } else if (insertQuestionDot) { symbolToOriginInfoMap[symbols.length] = { kind: 16 }; } } } function getNullableSymbolOriginInfoKind(kind) { return insertQuestionDot ? kind | 16 : kind; } } function getLeftMostName(e) { return isIdentifier(e) ? e : isPropertyAccessExpression(e) ? getLeftMostName(e.expression) : undefined; } function tryGetGlobalSymbols() { const result = tryGetObjectTypeLiteralInTypeArgumentCompletionSymbols() || tryGetObjectLikeCompletionSymbols() || tryGetImportCompletionSymbols() || tryGetImportOrExportClauseCompletionSymbols() || tryGetImportAttributesCompletionSymbols() || tryGetLocalNamedExportCompletionSymbols() || tryGetConstructorCompletion() || tryGetClassLikeCompletionSymbols() || tryGetJsxCompletionSymbols() || (getGlobalCompletions(), 1); return result === 1; } function tryGetConstructorCompletion() { if (!tryGetConstructorLikeCompletionContainer(contextToken)) return 0; completionKind = 5; isNewIdentifierLocation = true; keywordFilters = 4; return 1; } function tryGetJsxCompletionSymbols() { const jsxContainer = tryGetContainingJsxElement(contextToken); const attrsType = jsxContainer && typeChecker.getContextualType(jsxContainer.attributes); if (!attrsType) return 0; const completionsType = jsxContainer && typeChecker.getContextualType(jsxContainer.attributes, 4); symbols = concatenate(symbols, filterJsxAttributes(getPropertiesForObjectExpression(attrsType, completionsType, jsxContainer.attributes, typeChecker), jsxContainer.attributes.properties)); setSortTextToOptionalMember(); completionKind = 3; isNewIdentifierLocation = false; return 1; } function tryGetImportCompletionSymbols() { if (!importStatementCompletion) return 0; isNewIdentifierLocation = true; collectAutoImports(); return 1; } function getGlobalCompletions() { keywordFilters = tryGetFunctionLikeBodyCompletionContainer(contextToken) ? 5 : 1; completionKind = 1; ({ isNewIdentifierLocation, defaultCommitCharacters } = computeCommitCharactersAndIsNewIdentifier()); if (previousToken !== contextToken) { Debug.assert(!!previousToken, "Expected 'contextToken' to be defined when different from 'previousToken'."); } const adjustedPosition = previousToken !== contextToken ? previousToken.getStart() : position; const scopeNode = getScopeNode(contextToken, adjustedPosition, sourceFile) || sourceFile; isInSnippetScope = isSnippetScope(scopeNode); const symbolMeanings = (isTypeOnlyLocation ? 0 : 111551) | 788968 | 1920 | 2097152; const typeOnlyAliasNeedsPromotion = previousToken && !isValidTypeOnlyAliasUseSite(previousToken); symbols = concatenate(symbols, typeChecker.getSymbolsInScope(scopeNode, symbolMeanings)); Debug.assertEachIsDefined(symbols, "getSymbolsInScope() should all be defined"); for (let i = 0;i < symbols.length; i++) { const symbol = symbols[i]; if (!typeChecker.isArgumentsSymbol(symbol) && !some(symbol.declarations, (d) => d.getSourceFile() === sourceFile)) { symbolToSortTextMap[getSymbolId(symbol)] = SortText.GlobalsOrKeywords; } if (typeOnlyAliasNeedsPromotion && !(symbol.flags & 111551)) { const typeOnlyAliasDeclaration = symbol.declarations && find(symbol.declarations, isTypeOnlyImportDeclaration); if (typeOnlyAliasDeclaration) { const origin = { kind: 64, declaration: typeOnlyAliasDeclaration }; symbolToOriginInfoMap[i] = origin; } } } if (preferences.includeCompletionsWithInsertText && scopeNode.kind !== 308) { const thisType = typeChecker.tryGetThisTypeAt(scopeNode, false, isClassLike(scopeNode.parent) ? scopeNode : undefined); if (thisType && !isProbablyGlobalType(thisType, sourceFile, typeChecker)) { for (const symbol of getPropertiesForCompletion(thisType, typeChecker)) { symbolToOriginInfoMap[symbols.length] = { kind: 1 }; symbols.push(symbol); symbolToSortTextMap[getSymbolId(symbol)] = SortText.SuggestedClassMembers; } } } collectAutoImports(); if (isTypeOnlyLocation) { keywordFilters = contextToken && isAssertionExpression(contextToken.parent) ? 6 : 7; } } function shouldOfferImportCompletions() { var _a; if (importStatementCompletion) return true; if (!preferences.includeCompletionsForModuleExports) return false; if (sourceFile.externalModuleIndicator || sourceFile.commonJsModuleIndicator) return true; if (compilerOptionsIndicateEsModules(program.getCompilerOptions())) return true; return ((_a = program.getSymlinkCache) == null ? undefined : _a.call(program).hasAnySymlinks()) || !!program.getCompilerOptions().paths || programContainsModules(program); } function isSnippetScope(scopeNode) { switch (scopeNode.kind) { case 308: case 229: case 295: case 242: return true; default: return isStatement(scopeNode); } } function isTypeOnlyCompletion() { return insideJsDocTagTypeExpression || insideJsDocImportTag || !!importStatementCompletion && isTypeOnlyImportOrExportDeclaration(location.parent) || !isContextTokenValueLocation(contextToken) && (isPossiblyTypeArgumentPosition(contextToken, sourceFile, typeChecker) || isPartOfTypeNode(location) || isContextTokenTypeLocation(contextToken)); } function isContextTokenValueLocation(contextToken2) { return contextToken2 && (contextToken2.kind === 114 && (contextToken2.parent.kind === 187 || isTypeOfExpression(contextToken2.parent)) || contextToken2.kind === 131 && contextToken2.parent.kind === 183); } function isContextTokenTypeLocation(contextToken2) { if (contextToken2) { const parentKind = contextToken2.parent.kind; switch (contextToken2.kind) { case 59: return parentKind === 173 || parentKind === 172 || parentKind === 170 || parentKind === 261 || isFunctionLikeKind(parentKind); case 64: return parentKind === 266 || parentKind === 169; case 130: return parentKind === 235; case 30: return parentKind === 184 || parentKind === 217; case 96: return parentKind === 169; case 152: return parentKind === 239; } } return false; } function collectAutoImports() { var _a, _b; if (!shouldOfferImportCompletions()) return; Debug.assert(!(detailsEntryId == null ? undefined : detailsEntryId.data), "Should not run 'collectAutoImports' when faster path is available via `data`"); if (detailsEntryId && !detailsEntryId.source) { return; } flags |= 1; const isAfterTypeOnlyImportSpecifierModifier = previousToken === contextToken && importStatementCompletion; const lowerCaseTokenText = isAfterTypeOnlyImportSpecifierModifier ? "" : previousToken && isIdentifier(previousToken) ? previousToken.text.toLowerCase() : ""; const moduleSpecifierCache = (_a = host.getModuleSpecifierCache) == null ? undefined : _a.call(host); const exportInfo = getExportInfoMap(sourceFile, host, program, preferences, cancellationToken); const packageJsonAutoImportProvider = (_b = host.getPackageJsonAutoImportProvider) == null ? undefined : _b.call(host); const packageJsonFilter = detailsEntryId ? undefined : createPackageJsonImportFilter(sourceFile, preferences, host); resolvingModuleSpecifiers("collectAutoImports", host, importSpecifierResolver || (importSpecifierResolver = ts_codefix_exports.createImportSpecifierResolver(sourceFile, program, host, preferences)), program, position, preferences, !!importStatementCompletion, isValidTypeOnlyAliasUseSite(location), (context) => { exportInfo.search(sourceFile.path, isRightOfOpenTag, (symbolName2, targetFlags) => { if (!isIdentifierText(symbolName2, getEmitScriptTarget(host.getCompilationSettings()))) return false; if (!detailsEntryId && isStringANonContextualKeyword(symbolName2)) return false; if (!isTypeOnlyLocation && !importStatementCompletion && !(targetFlags & 111551)) return false; if (isTypeOnlyLocation && !(targetFlags & (1536 | 788968))) return false; const firstChar = symbolName2.charCodeAt(0); if (isRightOfOpenTag && (firstChar < 65 || firstChar > 90)) return false; if (detailsEntryId) return true; return charactersFuzzyMatchInString(symbolName2, lowerCaseTokenText); }, (info, symbolName2, isFromAmbientModule, exportMapKey) => { info = filter(info, isImportableExportInfo); if (!info.length) { return; } const result = context.tryResolve(info, isFromAmbientModule) || {}; if (result === "failed") return; let exportInfo2 = info[0], moduleSpecifier; if (result !== "skipped") { ({ exportInfo: exportInfo2 = info[0], moduleSpecifier } = result); } if (detailsEntryId && (detailsEntryId.source !== moduleSpecifier && !some(info, (i) => detailsEntryId.source === stripQuotes(i.moduleSymbol.name)))) { return; } const isDefaultExport = exportInfo2.exportKind === 1; const symbol = isDefaultExport && getLocalSymbolForExportDefault(Debug.checkDefined(exportInfo2.symbol)) || Debug.checkDefined(exportInfo2.symbol); pushAutoImportSymbol(symbol, { kind: moduleSpecifier ? 32 : 4, moduleSpecifier, symbolName: symbolName2, exportMapKey, exportName: exportInfo2.exportKind === 2 ? "export=" : Debug.checkDefined(exportInfo2.symbol).name, fileName: exportInfo2.moduleFileName, isDefaultExport, moduleSymbol: exportInfo2.moduleSymbol, isFromPackageJson: exportInfo2.isFromPackageJson }); }); hasUnresolvedAutoImports = context.skippedAny(); flags |= context.resolvedAny() ? 8 : 0; flags |= context.resolvedBeyondLimit() ? 16 : 0; }); function isImportableExportInfo(info) { return isImportable(info.isFromPackageJson ? packageJsonAutoImportProvider : program, sourceFile, tryCast(info.moduleSymbol.valueDeclaration, isSourceFile), info.moduleSymbol, preferences, packageJsonFilter, getModuleSpecifierResolutionHost(info.isFromPackageJson), moduleSpecifierCache); } } function pushAutoImportSymbol(symbol, origin) { const symbolId = getSymbolId(symbol); if (symbolToSortTextMap[symbolId] === SortText.GlobalsOrKeywords) { return; } symbolToOriginInfoMap[symbols.length] = origin; symbolToSortTextMap[symbolId] = importStatementCompletion ? SortText.LocationPriority : SortText.AutoImportSuggestions; symbols.push(symbol); } function collectObjectLiteralMethodSymbols(members, enclosingDeclaration) { if (isInJSFile(location)) { return; } members.forEach((member) => { if (!isObjectLiteralMethodSymbol(member)) { return; } const displayName = getCompletionEntryDisplayNameForSymbol(member, getEmitScriptTarget(compilerOptions), undefined, 0, false); if (!displayName) { return; } const { name } = displayName; const entryProps = getEntryForObjectLiteralMethodCompletion(member, name, enclosingDeclaration, program, host, compilerOptions, preferences, formatContext); if (!entryProps) { return; } const origin = { kind: 128, ...entryProps }; flags |= 32; symbolToOriginInfoMap[symbols.length] = origin; symbols.push(member); }); } function isObjectLiteralMethodSymbol(symbol) { if (!(symbol.flags & (4 | 8192))) { return false; } return true; } function getScopeNode(initialToken, position2, sourceFile2) { let scope = initialToken; while (scope && !positionBelongsToNode(scope, position2, sourceFile2)) { scope = scope.parent; } return scope; } function isCompletionListBlocker(contextToken2) { const start2 = timestamp(); const result = isInStringOrRegularExpressionOrTemplateLiteral(contextToken2) || isSolelyIdentifierDefinitionLocation(contextToken2) || isDotOfNumericLiteral(contextToken2) || isInJsxText(contextToken2) || isBigIntLiteral(contextToken2); log("getCompletionsAtPosition: isCompletionListBlocker: " + (timestamp() - start2)); return result; } function isInJsxText(contextToken2) { if (contextToken2.kind === 12) { return true; } if (contextToken2.kind === 32 && contextToken2.parent) { if (location === contextToken2.parent && (location.kind === 287 || location.kind === 286)) { return false; } if (contextToken2.parent.kind === 287) { return location.parent.kind !== 287; } if (contextToken2.parent.kind === 288 || contextToken2.parent.kind === 286) { return !!contextToken2.parent.parent && contextToken2.parent.parent.kind === 285; } } return false; } function computeCommitCharactersAndIsNewIdentifier() { if (contextToken) { const containingNodeKind = contextToken.parent.kind; const tokenKind = keywordForNode(contextToken); switch (tokenKind) { case 28: switch (containingNodeKind) { case 214: case 215: { const expression = contextToken.parent.expression; if (getLineAndCharacterOfPosition(sourceFile, expression.end).line !== getLineAndCharacterOfPosition(sourceFile, position).line) { return { defaultCommitCharacters: noCommaCommitCharacters, isNewIdentifierLocation: true }; } return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: true }; } case 227: return { defaultCommitCharacters: noCommaCommitCharacters, isNewIdentifierLocation: true }; case 177: case 185: case 211: return { defaultCommitCharacters: [], isNewIdentifierLocation: true }; case 210: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: true }; default: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: false }; } case 21: switch (containingNodeKind) { case 214: case 215: { const expression = contextToken.parent.expression; if (getLineAndCharacterOfPosition(sourceFile, expression.end).line !== getLineAndCharacterOfPosition(sourceFile, position).line) { return { defaultCommitCharacters: noCommaCommitCharacters, isNewIdentifierLocation: true }; } return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: true }; } case 218: return { defaultCommitCharacters: noCommaCommitCharacters, isNewIdentifierLocation: true }; case 177: case 197: return { defaultCommitCharacters: [], isNewIdentifierLocation: true }; default: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: false }; } case 23: switch (containingNodeKind) { case 210: case 182: case 190: case 168: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: true }; default: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: false }; } case 144: case 145: case 102: return { defaultCommitCharacters: [], isNewIdentifierLocation: true }; case 25: switch (containingNodeKind) { case 268: return { defaultCommitCharacters: [], isNewIdentifierLocation: true }; default: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: false }; } case 19: switch (containingNodeKind) { case 264: case 211: return { defaultCommitCharacters: [], isNewIdentifierLocation: true }; default: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: false }; } case 64: switch (containingNodeKind) { case 261: case 227: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: true }; default: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: false }; } case 16: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: containingNodeKind === 229 }; case 17: return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: containingNodeKind === 240 }; case 134: return containingNodeKind === 175 || containingNodeKind === 305 ? { defaultCommitCharacters: [], isNewIdentifierLocation: true } : { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: false }; case 42: return containingNodeKind === 175 ? { defaultCommitCharacters: [], isNewIdentifierLocation: true } : { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: false }; } if (isClassMemberCompletionKeyword(tokenKind)) { return { defaultCommitCharacters: [], isNewIdentifierLocation: true }; } } return { defaultCommitCharacters: allCommitCharacters, isNewIdentifierLocation: false }; } function isInStringOrRegularExpressionOrTemplateLiteral(contextToken2) { return (isRegularExpressionLiteral(contextToken2) || isStringTextContainingNode(contextToken2)) && (rangeContainsPositionExclusive(contextToken2, position) || position === contextToken2.end && (!!contextToken2.isUnterminated || isRegularExpressionLiteral(contextToken2))); } function tryGetObjectTypeLiteralInTypeArgumentCompletionSymbols() { const typeLiteralNode = tryGetTypeLiteralNode(contextToken); if (!typeLiteralNode) return 0; const intersectionTypeNode = isIntersectionTypeNode(typeLiteralNode.parent) ? typeLiteralNode.parent : undefined; const containerTypeNode = intersectionTypeNode || typeLiteralNode; const containerExpectedType = getConstraintOfTypeArgumentProperty(containerTypeNode, typeChecker); if (!containerExpectedType) return 0; const containerActualType = typeChecker.getTypeFromTypeNode(containerTypeNode); const members = getPropertiesForCompletion(containerExpectedType, typeChecker); const existingMembers = getPropertiesForCompletion(containerActualType, typeChecker); const existingMemberEscapedNames = /* @__PURE__ */ new Set; existingMembers.forEach((s) => existingMemberEscapedNames.add(s.escapedName)); symbols = concatenate(symbols, filter(members, (s) => !existingMemberEscapedNames.has(s.escapedName))); completionKind = 0; isNewIdentifierLocation = true; return 1; } function tryGetObjectLikeCompletionSymbols() { if ((contextToken == null ? undefined : contextToken.kind) === 26) return 0; const symbolsStartIndex = symbols.length; const objectLikeContainer = tryGetObjectLikeCompletionContainer(contextToken, position, sourceFile); if (!objectLikeContainer) return 0; completionKind = 0; let typeMembers; let existingMembers; if (objectLikeContainer.kind === 211) { const instantiatedType = tryGetObjectLiteralContextualType(objectLikeContainer, typeChecker); if (instantiatedType === undefined) { if (objectLikeContainer.flags & 67108864) { return 2; } return 0; } const completionsType = typeChecker.getContextualType(objectLikeContainer, 4); const hasStringIndexType = (completionsType || instantiatedType).getStringIndexType(); const hasNumberIndextype = (completionsType || instantiatedType).getNumberIndexType(); isNewIdentifierLocation = !!hasStringIndexType || !!hasNumberIndextype; typeMembers = getPropertiesForObjectExpression(instantiatedType, completionsType, objectLikeContainer, typeChecker); existingMembers = objectLikeContainer.properties; if (typeMembers.length === 0) { if (!hasNumberIndextype) { return 0; } } } else { Debug.assert(objectLikeContainer.kind === 207); isNewIdentifierLocation = false; const rootDeclaration = getRootDeclaration(objectLikeContainer.parent); if (!isVariableLike(rootDeclaration)) return Debug.fail("Root declaration is not variable-like."); let canGetType = hasInitializer(rootDeclaration) || !!getEffectiveTypeAnnotationNode(rootDeclaration) || rootDeclaration.parent.parent.kind === 251; if (!canGetType && rootDeclaration.kind === 170) { if (isExpression(rootDeclaration.parent)) { canGetType = !!typeChecker.getContextualType(rootDeclaration.parent); } else if (rootDeclaration.parent.kind === 175 || rootDeclaration.parent.kind === 179) { canGetType = isExpression(rootDeclaration.parent.parent) && !!typeChecker.getContextualType(rootDeclaration.parent.parent); } } if (canGetType) { const typeForObject = typeChecker.getTypeAtLocation(objectLikeContainer); if (!typeForObject) return 2; typeMembers = typeChecker.getPropertiesOfType(typeForObject).filter((propertySymbol) => { return typeChecker.isPropertyAccessible(objectLikeContainer, false, false, typeForObject, propertySymbol); }); existingMembers = objectLikeContainer.elements; } } if (typeMembers && typeMembers.length > 0) { const filteredMembers = filterObjectMembersList(typeMembers, Debug.checkDefined(existingMembers)); symbols = concatenate(symbols, filteredMembers); setSortTextToOptionalMember(); if (objectLikeContainer.kind === 211 && preferences.includeCompletionsWithObjectLiteralMethodSnippets && preferences.includeCompletionsWithInsertText) { transformObjectLiteralMembersSortText(symbolsStartIndex); collectObjectLiteralMethodSymbols(filteredMembers, objectLikeContainer); } } return 1; } function tryGetImportOrExportClauseCompletionSymbols() { if (!contextToken) return 0; const namedImportsOrExports = contextToken.kind === 19 || contextToken.kind === 28 ? tryCast(contextToken.parent, isNamedImportsOrExports) : isTypeKeywordTokenOrIdentifier(contextToken) ? tryCast(contextToken.parent.parent, isNamedImportsOrExports) : undefined; if (!namedImportsOrExports) return 0; if (!isTypeKeywordTokenOrIdentifier(contextToken)) { keywordFilters = 8; } const { moduleSpecifier } = namedImportsOrExports.kind === 276 ? namedImportsOrExports.parent.parent : namedImportsOrExports.parent; if (!moduleSpecifier) { isNewIdentifierLocation = true; return namedImportsOrExports.kind === 276 ? 2 : 0; } const moduleSpecifierSymbol = typeChecker.getSymbolAtLocation(moduleSpecifier); if (!moduleSpecifierSymbol) { isNewIdentifierLocation = true; return 2; } completionKind = 3; isNewIdentifierLocation = false; const exports22 = typeChecker.getExportsAndPropertiesOfModule(moduleSpecifierSymbol); const existing = new Set(namedImportsOrExports.elements.filter((n) => !isCurrentlyEditingNode(n)).map((n) => moduleExportNameTextEscaped(n.propertyName || n.name))); const uniques = exports22.filter((e) => e.escapedName !== "default" && !existing.has(e.escapedName)); symbols = concatenate(symbols, uniques); if (!uniques.length) { keywordFilters = 0; } return 1; } function tryGetImportAttributesCompletionSymbols() { if (contextToken === undefined) return 0; const importAttributes = contextToken.kind === 19 || contextToken.kind === 28 ? tryCast(contextToken.parent, isImportAttributes) : contextToken.kind === 59 ? tryCast(contextToken.parent.parent, isImportAttributes) : undefined; if (importAttributes === undefined) return 0; const existing = new Set(importAttributes.elements.map(getNameFromImportAttribute)); symbols = filter(typeChecker.getTypeAtLocation(importAttributes).getApparentProperties(), (attr) => !existing.has(attr.escapedName)); return 1; } function tryGetLocalNamedExportCompletionSymbols() { var _a; const namedExports = contextToken && (contextToken.kind === 19 || contextToken.kind === 28) ? tryCast(contextToken.parent, isNamedExports) : undefined; if (!namedExports) { return 0; } const localsContainer = findAncestor(namedExports, or(isSourceFile, isModuleDeclaration)); completionKind = 5; isNewIdentifierLocation = false; (_a = localsContainer.locals) == null || _a.forEach((symbol, name) => { var _a2, _b; symbols.push(symbol); if ((_b = (_a2 = localsContainer.symbol) == null ? undefined : _a2.exports) == null ? undefined : _b.has(name)) { symbolToSortTextMap[getSymbolId(symbol)] = SortText.OptionalMember; } }); return 1; } function tryGetClassLikeCompletionSymbols() { const decl = tryGetObjectTypeDeclarationCompletionContainer(sourceFile, contextToken, location, position); if (!decl) return 0; completionKind = 3; isNewIdentifierLocation = true; keywordFilters = contextToken.kind === 42 ? 0 : isClassLike(decl) ? 2 : 3; if (!isClassLike(decl)) return 1; const classElement = contextToken.kind === 27 ? contextToken.parent.parent : contextToken.parent; let classElementModifierFlags = isClassElement(classElement) ? getEffectiveModifierFlags(classElement) : 0; if (contextToken.kind === 80 && !isCurrentlyEditingNode(contextToken)) { switch (contextToken.getText()) { case "private": classElementModifierFlags = classElementModifierFlags | 2; break; case "static": classElementModifierFlags = classElementModifierFlags | 256; break; case "override": classElementModifierFlags = classElementModifierFlags | 16; break; } } if (isClassStaticBlockDeclaration(classElement)) { classElementModifierFlags |= 256; } if (!(classElementModifierFlags & 2)) { const baseTypeNodes = isClassLike(decl) && classElementModifierFlags & 16 ? singleElementArray(getEffectiveBaseTypeNode(decl)) : getAllSuperTypeNodes(decl); const baseSymbols = flatMap(baseTypeNodes, (baseTypeNode) => { const type = typeChecker.getTypeAtLocation(baseTypeNode); return classElementModifierFlags & 256 ? (type == null ? undefined : type.symbol) && typeChecker.getPropertiesOfType(typeChecker.getTypeOfSymbolAtLocation(type.symbol, decl)) : type && typeChecker.getPropertiesOfType(type); }); symbols = concatenate(symbols, filterClassMembersList(baseSymbols, decl.members, classElementModifierFlags)); forEach(symbols, (symbol, index) => { const declaration = symbol == null ? undefined : symbol.valueDeclaration; if (declaration && isClassElement(declaration) && declaration.name && isComputedPropertyName(declaration.name)) { const origin = { kind: 512, symbolName: typeChecker.symbolToString(symbol) }; symbolToOriginInfoMap[index] = origin; } }); } return 1; } function isConstructorParameterCompletion(node2) { return !!node2.parent && isParameter(node2.parent) && isConstructorDeclaration(node2.parent.parent) && (isParameterPropertyModifier(node2.kind) || isDeclarationName(node2)); } function tryGetConstructorLikeCompletionContainer(contextToken2) { if (contextToken2) { const parent2 = contextToken2.parent; switch (contextToken2.kind) { case 21: case 28: return isConstructorDeclaration(contextToken2.parent) ? contextToken2.parent : undefined; default: if (isConstructorParameterCompletion(contextToken2)) { return parent2.parent; } } } return; } function tryGetFunctionLikeBodyCompletionContainer(contextToken2) { if (contextToken2) { let prev; const container = findAncestor(contextToken2.parent, (node2) => { if (isClassLike(node2)) { return "quit"; } if (isFunctionLikeDeclaration(node2) && prev === node2.body) { return true; } prev = node2; return false; }); return container && container; } } function tryGetContainingJsxElement(contextToken2) { if (contextToken2) { const parent2 = contextToken2.parent; switch (contextToken2.kind) { case 32: case 31: case 44: case 80: case 212: case 293: case 292: case 294: if (parent2 && (parent2.kind === 286 || parent2.kind === 287)) { if (contextToken2.kind === 32) { const precedingToken = findPrecedingToken(contextToken2.pos, sourceFile, undefined); if (!parent2.typeArguments || precedingToken && precedingToken.kind === 44) break; } return parent2; } else if (parent2.kind === 292) { return parent2.parent.parent; } break; case 11: if (parent2 && (parent2.kind === 292 || parent2.kind === 294)) { return parent2.parent.parent; } break; case 20: if (parent2 && parent2.kind === 295 && parent2.parent && parent2.parent.kind === 292) { return parent2.parent.parent.parent; } if (parent2 && parent2.kind === 294) { return parent2.parent.parent; } break; } } return; } function isInDifferentLineThanContextToken(contextToken2, position2) { return sourceFile.getLineEndOfPosition(contextToken2.getEnd()) < position2; } function isSolelyIdentifierDefinitionLocation(contextToken2) { const parent2 = contextToken2.parent; const containingNodeKind = parent2.kind; switch (contextToken2.kind) { case 28: return containingNodeKind === 261 || isVariableDeclarationListButNotTypeArgument(contextToken2) || containingNodeKind === 244 || containingNodeKind === 267 || isFunctionLikeButNotConstructor(containingNodeKind) || containingNodeKind === 265 || containingNodeKind === 208 || containingNodeKind === 266 || isClassLike(parent2) && !!parent2.typeParameters && parent2.typeParameters.end >= contextToken2.pos; case 25: return containingNodeKind === 208; case 59: return containingNodeKind === 209; case 23: return containingNodeKind === 208; case 21: return containingNodeKind === 300 || isFunctionLikeButNotConstructor(containingNodeKind); case 19: return containingNodeKind === 267; case 30: return containingNodeKind === 264 || containingNodeKind === 232 || containingNodeKind === 265 || containingNodeKind === 266 || isFunctionLikeKind(containingNodeKind); case 126: return containingNodeKind === 173 && !isClassLike(parent2.parent); case 26: return containingNodeKind === 170 || !!parent2.parent && parent2.parent.kind === 208; case 125: case 123: case 124: return containingNodeKind === 170 && !isConstructorDeclaration(parent2.parent); case 130: return containingNodeKind === 277 || containingNodeKind === 282 || containingNodeKind === 275; case 139: case 153: return !isFromObjectTypeDeclaration(contextToken2); case 80: { if ((containingNodeKind === 277 || containingNodeKind === 282) && contextToken2 === parent2.name && contextToken2.text === "type") { return false; } const ancestorVariableDeclaration = findAncestor(contextToken2.parent, isVariableDeclaration); if (ancestorVariableDeclaration && isInDifferentLineThanContextToken(contextToken2, position)) { return false; } break; } case 86: case 94: case 120: case 100: case 115: case 102: case 121: case 87: case 140: return true; case 156: return containingNodeKind !== 277; case 42: return isFunctionLike(contextToken2.parent) && !isMethodDeclaration(contextToken2.parent); } if (isClassMemberCompletionKeyword(keywordForNode(contextToken2)) && isFromObjectTypeDeclaration(contextToken2)) { return false; } if (isConstructorParameterCompletion(contextToken2)) { if (!isIdentifier(contextToken2) || isParameterPropertyModifier(keywordForNode(contextToken2)) || isCurrentlyEditingNode(contextToken2)) { return false; } } switch (keywordForNode(contextToken2)) { case 128: case 86: case 87: case 138: case 94: case 100: case 120: case 121: case 123: case 124: case 125: case 126: case 115: return true; case 134: return isPropertyDeclaration(contextToken2.parent); } const ancestorClassLike = findAncestor(contextToken2.parent, isClassLike); if (ancestorClassLike && contextToken2 === previousToken && isPreviousPropertyDeclarationTerminated(contextToken2, position)) { return false; } const ancestorPropertyDeclaraion = getAncestor(contextToken2.parent, 173); if (ancestorPropertyDeclaraion && contextToken2 !== previousToken && isClassLike(previousToken.parent.parent) && position <= previousToken.end) { if (isPreviousPropertyDeclarationTerminated(contextToken2, previousToken.end)) { return false; } else if (contextToken2.kind !== 64 && (isInitializedProperty(ancestorPropertyDeclaraion) || hasType(ancestorPropertyDeclaraion))) { return true; } } return isDeclarationName(contextToken2) && !isShorthandPropertyAssignment(contextToken2.parent) && !isJsxAttribute(contextToken2.parent) && !((isClassLike(contextToken2.parent) || isInterfaceDeclaration(contextToken2.parent) || isTypeParameterDeclaration(contextToken2.parent)) && (contextToken2 !== previousToken || position > previousToken.end)); } function isPreviousPropertyDeclarationTerminated(contextToken2, position2) { return contextToken2.kind !== 64 && (contextToken2.kind === 27 || !positionsAreOnSameLine(contextToken2.end, position2, sourceFile)); } function isFunctionLikeButNotConstructor(kind) { return isFunctionLikeKind(kind) && kind !== 177; } function isDotOfNumericLiteral(contextToken2) { if (contextToken2.kind === 9) { const text = contextToken2.getFullText(); return text.charAt(text.length - 1) === "."; } return false; } function isVariableDeclarationListButNotTypeArgument(node2) { return node2.parent.kind === 262 && !isPossiblyTypeArgumentPosition(node2, sourceFile, typeChecker); } function filterObjectMembersList(contextualMemberSymbols, existingMembers) { if (existingMembers.length === 0) { return contextualMemberSymbols; } const membersDeclaredBySpreadAssignment = /* @__PURE__ */ new Set; const existingMemberNames = /* @__PURE__ */ new Set; for (const m of existingMembers) { if (m.kind !== 304 && m.kind !== 305 && m.kind !== 209 && m.kind !== 175 && m.kind !== 178 && m.kind !== 179 && m.kind !== 306) { continue; } if (isCurrentlyEditingNode(m)) { continue; } let existingName; if (isSpreadAssignment(m)) { setMembersDeclaredBySpreadAssignment(m, membersDeclaredBySpreadAssignment); } else if (isBindingElement(m) && m.propertyName) { if (m.propertyName.kind === 80) { existingName = m.propertyName.escapedText; } } else { const name = getNameOfDeclaration(m); existingName = name && isPropertyNameLiteral(name) ? getEscapedTextOfIdentifierOrLiteral(name) : undefined; } if (existingName !== undefined) { existingMemberNames.add(existingName); } } const filteredSymbols = contextualMemberSymbols.filter((m) => !existingMemberNames.has(m.escapedName)); setSortTextToMemberDeclaredBySpreadAssignment(membersDeclaredBySpreadAssignment, filteredSymbols); return filteredSymbols; } function setMembersDeclaredBySpreadAssignment(declaration, membersDeclaredBySpreadAssignment) { const expression = declaration.expression; const symbol = typeChecker.getSymbolAtLocation(expression); const type = symbol && typeChecker.getTypeOfSymbolAtLocation(symbol, expression); const properties = type && type.properties; if (properties) { properties.forEach((property) => { membersDeclaredBySpreadAssignment.add(property.name); }); } } function setSortTextToOptionalMember() { symbols.forEach((m) => { if (m.flags & 16777216) { const symbolId = getSymbolId(m); symbolToSortTextMap[symbolId] = symbolToSortTextMap[symbolId] ?? SortText.OptionalMember; } }); } function setSortTextToMemberDeclaredBySpreadAssignment(membersDeclaredBySpreadAssignment, contextualMemberSymbols) { if (membersDeclaredBySpreadAssignment.size === 0) { return; } for (const contextualMemberSymbol of contextualMemberSymbols) { if (membersDeclaredBySpreadAssignment.has(contextualMemberSymbol.name)) { symbolToSortTextMap[getSymbolId(contextualMemberSymbol)] = SortText.MemberDeclaredBySpreadAssignment; } } } function transformObjectLiteralMembersSortText(start2) { for (let i = start2;i < symbols.length; i++) { const symbol = symbols[i]; const symbolId = getSymbolId(symbol); const origin = symbolToOriginInfoMap == null ? undefined : symbolToOriginInfoMap[i]; const target = getEmitScriptTarget(compilerOptions); const displayName = getCompletionEntryDisplayNameForSymbol(symbol, target, origin, 0, false); if (displayName) { const originalSortText = symbolToSortTextMap[symbolId] ?? SortText.LocationPriority; const { name } = displayName; symbolToSortTextMap[symbolId] = SortText.ObjectLiteralProperty(originalSortText, name); } } } function filterClassMembersList(baseSymbols, existingMembers, currentClassElementModifierFlags) { const existingMemberNames = /* @__PURE__ */ new Set; for (const m of existingMembers) { if (m.kind !== 173 && m.kind !== 175 && m.kind !== 178 && m.kind !== 179) { continue; } if (isCurrentlyEditingNode(m)) { continue; } if (hasEffectiveModifier(m, 2)) { continue; } if (isStatic(m) !== !!(currentClassElementModifierFlags & 256)) { continue; } const existingName = getPropertyNameForPropertyNameNode(m.name); if (existingName) { existingMemberNames.add(existingName); } } return baseSymbols.filter((propertySymbol) => !existingMemberNames.has(propertySymbol.escapedName) && !!propertySymbol.declarations && !(getDeclarationModifierFlagsFromSymbol(propertySymbol) & 2) && !(propertySymbol.valueDeclaration && isPrivateIdentifierClassElementDeclaration(propertySymbol.valueDeclaration))); } function filterJsxAttributes(symbols2, attributes) { const seenNames = /* @__PURE__ */ new Set; const membersDeclaredBySpreadAssignment = /* @__PURE__ */ new Set; for (const attr of attributes) { if (isCurrentlyEditingNode(attr)) { continue; } if (attr.kind === 292) { seenNames.add(getEscapedTextOfJsxAttributeName(attr.name)); } else if (isJsxSpreadAttribute(attr)) { setMembersDeclaredBySpreadAssignment(attr, membersDeclaredBySpreadAssignment); } } const filteredSymbols = symbols2.filter((a) => !seenNames.has(a.escapedName)); setSortTextToMemberDeclaredBySpreadAssignment(membersDeclaredBySpreadAssignment, filteredSymbols); return filteredSymbols; } function isCurrentlyEditingNode(node2) { return node2.getStart(sourceFile) <= position && position <= node2.getEnd(); } } function tryGetObjectLikeCompletionContainer(contextToken, position, sourceFile) { var _a; if (contextToken) { const { parent: parent2 } = contextToken; switch (contextToken.kind) { case 19: case 28: if (isObjectLiteralExpression(parent2) || isObjectBindingPattern(parent2)) { return parent2; } break; case 42: return isMethodDeclaration(parent2) ? tryCast(parent2.parent, isObjectLiteralExpression) : undefined; case 134: return tryCast(parent2.parent, isObjectLiteralExpression); case 80: if (contextToken.text === "async" && isShorthandPropertyAssignment(contextToken.parent)) { return contextToken.parent.parent; } else { if (isObjectLiteralExpression(contextToken.parent.parent) && (isSpreadAssignment(contextToken.parent) || isShorthandPropertyAssignment(contextToken.parent) && getLineAndCharacterOfPosition(sourceFile, contextToken.getEnd()).line !== getLineAndCharacterOfPosition(sourceFile, position).line)) { return contextToken.parent.parent; } const ancestorNode2 = findAncestor(parent2, isPropertyAssignment); if ((ancestorNode2 == null ? undefined : ancestorNode2.getLastToken(sourceFile)) === contextToken && isObjectLiteralExpression(ancestorNode2.parent)) { return ancestorNode2.parent; } } break; default: if (((_a = parent2.parent) == null ? undefined : _a.parent) && (isMethodDeclaration(parent2.parent) || isGetAccessorDeclaration(parent2.parent) || isSetAccessorDeclaration(parent2.parent)) && isObjectLiteralExpression(parent2.parent.parent)) { return parent2.parent.parent; } if (isSpreadAssignment(parent2) && isObjectLiteralExpression(parent2.parent)) { return parent2.parent; } const ancestorNode = findAncestor(parent2, isPropertyAssignment); if (contextToken.kind !== 59 && (ancestorNode == null ? undefined : ancestorNode.getLastToken(sourceFile)) === contextToken && isObjectLiteralExpression(ancestorNode.parent)) { return ancestorNode.parent; } } } return; } function getRelevantTokens(position, sourceFile) { const previousToken = findPrecedingToken(position, sourceFile); if (previousToken && position <= previousToken.end && (isMemberName(previousToken) || isKeyword(previousToken.kind))) { const contextToken = findPrecedingToken(previousToken.getFullStart(), sourceFile, undefined); return { contextToken, previousToken }; } return { contextToken: previousToken, previousToken }; } function getAutoImportSymbolFromCompletionEntryData(name, data, program, host) { const containingProgram = data.isPackageJsonImport ? host.getPackageJsonAutoImportProvider() : program; const checker = containingProgram.getTypeChecker(); const moduleSymbol = data.ambientModuleName ? checker.tryFindAmbientModule(data.ambientModuleName) : data.fileName ? checker.getMergedSymbol(Debug.checkDefined(containingProgram.getSourceFile(data.fileName)).symbol) : undefined; if (!moduleSymbol) return; let symbol = data.exportName === "export=" ? checker.resolveExternalModuleSymbol(moduleSymbol) : checker.tryGetMemberInModuleExportsAndProperties(data.exportName, moduleSymbol); if (!symbol) return; const isDefaultExport = data.exportName === "default"; symbol = isDefaultExport && getLocalSymbolForExportDefault(symbol) || symbol; return { symbol, origin: completionEntryDataToSymbolOriginInfo(data, name, moduleSymbol) }; } function getCompletionEntryDisplayNameForSymbol(symbol, target, origin, kind, jsxIdentifierExpected) { if (originIsIgnore(origin)) { return; } const name = originIncludesSymbolName(origin) ? origin.symbolName : symbol.name; if (name === undefined || symbol.flags & 1536 && isSingleOrDoubleQuote(name.charCodeAt(0)) || isKnownSymbol(symbol)) { return; } const validNameResult = { name, needsConvertPropertyAccess: false }; if (isIdentifierText(name, target, jsxIdentifierExpected ? 1 : 0) || symbol.valueDeclaration && isPrivateIdentifierClassElementDeclaration(symbol.valueDeclaration)) { return validNameResult; } if (symbol.flags & 2097152) { return { name, needsConvertPropertyAccess: true }; } switch (kind) { case 3: return originIsComputedPropertyName(origin) ? { name: origin.symbolName, needsConvertPropertyAccess: false } : undefined; case 0: return { name: JSON.stringify(name), needsConvertPropertyAccess: false }; case 2: case 1: return name.charCodeAt(0) === 32 ? undefined : { name, needsConvertPropertyAccess: true }; case 5: case 4: return validNameResult; default: Debug.assertNever(kind); } } var _keywordCompletions = []; var allKeywordsCompletions = memoize(() => { const res = []; for (let i = 83;i <= 166; i++) { res.push({ name: tokenToString(i), kind: "keyword", kindModifiers: "", sortText: SortText.GlobalsOrKeywords }); } return res; }); function getKeywordCompletions(keywordFilter, filterOutTsOnlyKeywords) { if (!filterOutTsOnlyKeywords) return getTypescriptKeywordCompletions(keywordFilter); const index = keywordFilter + 8 + 1; return _keywordCompletions[index] || (_keywordCompletions[index] = getTypescriptKeywordCompletions(keywordFilter).filter((entry) => !isTypeScriptOnlyKeyword(stringToToken(entry.name)))); } function getTypescriptKeywordCompletions(keywordFilter) { return _keywordCompletions[keywordFilter] || (_keywordCompletions[keywordFilter] = allKeywordsCompletions().filter((entry) => { const kind = stringToToken(entry.name); switch (keywordFilter) { case 0: return false; case 1: return isFunctionLikeBodyKeyword(kind) || kind === 138 || kind === 144 || kind === 156 || kind === 145 || kind === 128 || isTypeKeyword(kind) && kind !== 157; case 5: return isFunctionLikeBodyKeyword(kind); case 2: return isClassMemberCompletionKeyword(kind); case 3: return isInterfaceOrTypeLiteralCompletionKeyword(kind); case 4: return isParameterPropertyModifier(kind); case 6: return isTypeKeyword(kind) || kind === 87; case 7: return isTypeKeyword(kind); case 8: return kind === 156; default: return Debug.assertNever(keywordFilter); } })); } function isTypeScriptOnlyKeyword(kind) { switch (kind) { case 128: case 133: case 163: case 136: case 138: case 94: case 162: case 119: case 140: case 120: case 142: case 143: case 144: case 145: case 146: case 150: case 151: case 164: case 123: case 124: case 125: case 148: case 154: case 155: case 156: case 158: case 159: return true; default: return false; } } function isInterfaceOrTypeLiteralCompletionKeyword(kind) { return kind === 148; } function isClassMemberCompletionKeyword(kind) { switch (kind) { case 128: case 129: case 137: case 139: case 153: case 134: case 138: case 164: return true; default: return isClassMemberModifier(kind); } } function isFunctionLikeBodyKeyword(kind) { return kind === 134 || kind === 135 || kind === 160 || kind === 130 || kind === 152 || kind === 156 || !isContextualKeyword(kind) && !isClassMemberCompletionKeyword(kind); } function keywordForNode(node) { return isIdentifier(node) ? identifierToKeywordKind(node) ?? 0 : node.kind; } function getContextualKeywords(contextToken, position) { const entries = []; if (contextToken) { const file = contextToken.getSourceFile(); const parent2 = contextToken.parent; const tokenLine = file.getLineAndCharacterOfPosition(contextToken.end).line; const currentLine = file.getLineAndCharacterOfPosition(position).line; if ((isImportDeclaration(parent2) || isExportDeclaration(parent2) && parent2.moduleSpecifier) && contextToken === parent2.moduleSpecifier && tokenLine === currentLine) { entries.push({ name: tokenToString(132), kind: "keyword", kindModifiers: "", sortText: SortText.GlobalsOrKeywords }); } } return entries; } function getJsDocTagAtPosition(node, position) { return findAncestor(node, (n) => isJSDocTag(n) && rangeContainsPosition(n, position) ? true : isJSDoc(n) ? "quit" : false); } function getPropertiesForObjectExpression(contextualType, completionsType, obj, checker) { const hasCompletionsType = completionsType && completionsType !== contextualType; const promiseFilteredContextualType = checker.getUnionType(filter(contextualType.flags & 134217728 ? contextualType.types : [contextualType], (t) => !checker.getPromisedTypeOfPromise(t))); const type = hasCompletionsType && !(completionsType.flags & 3) ? checker.getUnionType([promiseFilteredContextualType, completionsType]) : promiseFilteredContextualType; const properties = getApparentProperties(type, obj, checker); return type.isClass() && containsNonPublicProperties(properties) ? [] : hasCompletionsType ? filter(properties, hasDeclarationOtherThanSelf) : properties; function hasDeclarationOtherThanSelf(member) { if (!length(member.declarations)) return true; return some(member.declarations, (decl) => decl.parent !== obj); } } function getApparentProperties(type, node, checker) { if (!type.isUnion()) return type.getApparentProperties(); return checker.getAllPossiblePropertiesOfTypes(filter(type.types, (memberType) => !(memberType.flags & 12713980 || checker.isArrayLikeType(memberType) || checker.isTypeInvalidDueToUnionDiscriminant(memberType, node) || checker.typeHasCallOrConstructSignatures(memberType) || memberType.isClass() && containsNonPublicProperties(memberType.getApparentProperties())))); } function containsNonPublicProperties(props) { return some(props, (p) => !!(getDeclarationModifierFlagsFromSymbol(p) & 6)); } function getPropertiesForCompletion(type, checker) { return type.isUnion() ? Debug.checkEachDefined(checker.getAllPossiblePropertiesOfTypes(type.types), "getAllPossiblePropertiesOfTypes() should all be defined") : Debug.checkEachDefined(type.getApparentProperties(), "getApparentProperties() should all be defined"); } function tryGetObjectTypeDeclarationCompletionContainer(sourceFile, contextToken, location, position) { switch (location.kind) { case 353: return tryCast(location.parent, isObjectTypeDeclaration); case 1: const cls = tryCast(lastOrUndefined(cast(location.parent, isSourceFile).statements), isObjectTypeDeclaration); if (cls && !findChildOfKind(cls, 20, sourceFile)) { return cls; } break; case 81: if (tryCast(location.parent, isPropertyDeclaration)) { return findAncestor(location, isClassLike); } break; case 80: { const originalKeywordKind = identifierToKeywordKind(location); if (originalKeywordKind) { return; } if (isPropertyDeclaration(location.parent) && location.parent.initializer === location) { return; } if (isFromObjectTypeDeclaration(location)) { return findAncestor(location, isObjectTypeDeclaration); } } } if (!contextToken) return; if (location.kind === 137 || isIdentifier(contextToken) && isPropertyDeclaration(contextToken.parent) && isClassLike(location)) { return findAncestor(contextToken, isClassLike); } switch (contextToken.kind) { case 64: return; case 27: case 20: return isFromObjectTypeDeclaration(location) && location.parent.name === location ? location.parent.parent : tryCast(location, isObjectTypeDeclaration); case 19: case 28: return tryCast(contextToken.parent, isObjectTypeDeclaration); default: if (isObjectTypeDeclaration(location)) { if (getLineAndCharacterOfPosition(sourceFile, contextToken.getEnd()).line !== getLineAndCharacterOfPosition(sourceFile, position).line) { return location; } const isValidKeyword = isClassLike(contextToken.parent.parent) ? isClassMemberCompletionKeyword : isInterfaceOrTypeLiteralCompletionKeyword; return isValidKeyword(contextToken.kind) || contextToken.kind === 42 || isIdentifier(contextToken) && isValidKeyword(identifierToKeywordKind(contextToken) ?? 0) ? contextToken.parent.parent : undefined; } return; } } function tryGetTypeLiteralNode(node) { if (!node) return; const parent2 = node.parent; switch (node.kind) { case 19: if (isTypeLiteralNode(parent2)) { return parent2; } break; case 27: case 28: case 80: if (parent2.kind === 172 && isTypeLiteralNode(parent2.parent)) { return parent2.parent; } break; } return; } function getConstraintOfTypeArgumentProperty(node, checker) { if (!node) return; if (isTypeNode(node)) { const constraint = checker.getTypeArgumentConstraint(node); if (constraint) return constraint; } const t = getConstraintOfTypeArgumentProperty(node.parent, checker); if (!t) return; switch (node.kind) { case 172: return checker.getTypeOfPropertyOfContextualType(t, node.symbol.escapedName); case 59: if (node.parent.kind === 172) { return t; } break; case 194: case 188: case 193: return t; case 23: return checker.getElementTypeOfArrayType(t); } } function isFromObjectTypeDeclaration(node) { return node.parent && isClassOrTypeElement(node.parent) && isObjectTypeDeclaration(node.parent.parent); } function isValidTrigger(sourceFile, triggerCharacter, contextToken, position) { switch (triggerCharacter) { case ".": case "@": return true; case '"': case "'": case "`": return !!contextToken && isStringLiteralOrTemplate(contextToken) && position === contextToken.getStart(sourceFile) + 1; case "#": return !!contextToken && isPrivateIdentifier(contextToken) && !!getContainingClass(contextToken); case "<": return !!contextToken && contextToken.kind === 30 && (!isBinaryExpression(contextToken.parent) || binaryExpressionMayBeOpenTag(contextToken.parent)); case "/": return !!contextToken && (isStringLiteralLike(contextToken) ? !!tryGetImportFromModuleSpecifier(contextToken) : contextToken.kind === 44 && isJsxClosingElement(contextToken.parent)); case " ": return !!contextToken && isImportKeyword(contextToken) && contextToken.parent.kind === 308; default: return Debug.assertNever(triggerCharacter); } } function binaryExpressionMayBeOpenTag({ left }) { return nodeIsMissing(left); } function isProbablyGlobalType(type, sourceFile, checker) { const selfSymbol = checker.resolveName("self", undefined, 111551, false); if (selfSymbol && checker.getTypeOfSymbolAtLocation(selfSymbol, sourceFile) === type) { return true; } const globalSymbol = checker.resolveName("global", undefined, 111551, false); if (globalSymbol && checker.getTypeOfSymbolAtLocation(globalSymbol, sourceFile) === type) { return true; } const globalThisSymbol = checker.resolveName("globalThis", undefined, 111551, false); if (globalThisSymbol && checker.getTypeOfSymbolAtLocation(globalThisSymbol, sourceFile) === type) { return true; } return false; } function isStaticProperty(symbol) { return !!(symbol.valueDeclaration && getEffectiveModifierFlags(symbol.valueDeclaration) & 256 && isClassLike(symbol.valueDeclaration.parent)); } function tryGetObjectLiteralContextualType(node, typeChecker) { const type = typeChecker.getContextualType(node); if (type) { return type; } const parent2 = walkUpParenthesizedExpressions(node.parent); if (isBinaryExpression(parent2) && parent2.operatorToken.kind === 64 && node === parent2.left) { return typeChecker.getTypeAtLocation(parent2); } if (isExpression(parent2)) { return typeChecker.getContextualType(parent2); } return; } function getImportStatementCompletionInfo(contextToken, sourceFile) { var _a, _b, _c; let keywordCompletion; let isKeywordOnlyCompletion = false; const candidate = getCandidate(); return { isKeywordOnlyCompletion, keywordCompletion, isNewIdentifierLocation: !!(candidate || keywordCompletion === 156), isTopLevelTypeOnly: !!((_b = (_a = tryCast(candidate, isImportDeclaration)) == null ? undefined : _a.importClause) == null ? undefined : _b.isTypeOnly) || !!((_c = tryCast(candidate, isImportEqualsDeclaration)) == null ? undefined : _c.isTypeOnly), couldBeTypeOnlyImportSpecifier: !!candidate && couldBeTypeOnlyImportSpecifier(candidate, contextToken), replacementSpan: getSingleLineReplacementSpanForImportCompletionNode(candidate) }; function getCandidate() { const parent2 = contextToken.parent; if (isImportEqualsDeclaration(parent2)) { const lastToken = parent2.getLastToken(sourceFile); if (isIdentifier(contextToken) && lastToken !== contextToken) { keywordCompletion = 161; isKeywordOnlyCompletion = true; return; } keywordCompletion = contextToken.kind === 156 ? undefined : 156; return isModuleSpecifierMissingOrEmpty(parent2.moduleReference) ? parent2 : undefined; } if (couldBeTypeOnlyImportSpecifier(parent2, contextToken) && canCompleteFromNamedBindings(parent2.parent)) { return parent2; } if (isNamedImports(parent2) || isNamespaceImport(parent2)) { if (!parent2.parent.isTypeOnly && (contextToken.kind === 19 || contextToken.kind === 102 || contextToken.kind === 28)) { keywordCompletion = 156; } if (canCompleteFromNamedBindings(parent2)) { if (contextToken.kind === 20 || contextToken.kind === 80) { isKeywordOnlyCompletion = true; keywordCompletion = 161; } else { return parent2.parent.parent; } } return; } if (isExportDeclaration(parent2) && contextToken.kind === 42 || isNamedExports(parent2) && contextToken.kind === 20) { isKeywordOnlyCompletion = true; keywordCompletion = 161; return; } if (isImportKeyword(contextToken) && isSourceFile(parent2)) { keywordCompletion = 156; return contextToken; } if (isImportKeyword(contextToken) && isImportDeclaration(parent2)) { keywordCompletion = 156; return isModuleSpecifierMissingOrEmpty(parent2.moduleSpecifier) ? parent2 : undefined; } return; } } function getSingleLineReplacementSpanForImportCompletionNode(node) { var _a; if (!node) return; const top = findAncestor(node, or(isImportDeclaration, isImportEqualsDeclaration, isJSDocImportTag)) ?? node; const sourceFile = top.getSourceFile(); if (rangeIsOnSingleLine(top, sourceFile)) { return createTextSpanFromNode(top, sourceFile); } Debug.assert(top.kind !== 102 && top.kind !== 277); const potentialSplitPoint = top.kind === 273 || top.kind === 352 ? getPotentiallyInvalidImportSpecifier((_a = top.importClause) == null ? undefined : _a.namedBindings) ?? top.moduleSpecifier : top.moduleReference; const withoutModuleSpecifier = { pos: top.getFirstToken().getStart(), end: potentialSplitPoint.pos }; if (rangeIsOnSingleLine(withoutModuleSpecifier, sourceFile)) { return createTextSpanFromRange(withoutModuleSpecifier); } } function getPotentiallyInvalidImportSpecifier(namedBindings) { var _a; return find((_a = tryCast(namedBindings, isNamedImports)) == null ? undefined : _a.elements, (e) => { var _a2; return !e.propertyName && isStringANonContextualKeyword(e.name.text) && ((_a2 = findPrecedingToken(e.name.pos, namedBindings.getSourceFile(), namedBindings)) == null ? undefined : _a2.kind) !== 28; }); } function couldBeTypeOnlyImportSpecifier(importSpecifier, contextToken) { return isImportSpecifier(importSpecifier) && (importSpecifier.isTypeOnly || contextToken === importSpecifier.name && isTypeKeywordTokenOrIdentifier(contextToken)); } function canCompleteFromNamedBindings(namedBindings) { if (!isModuleSpecifierMissingOrEmpty(namedBindings.parent.parent.moduleSpecifier) || namedBindings.parent.name) { return false; } if (isNamedImports(namedBindings)) { const invalidNamedImport = getPotentiallyInvalidImportSpecifier(namedBindings); const validImports = invalidNamedImport ? namedBindings.elements.indexOf(invalidNamedImport) : namedBindings.elements.length; return validImports < 2; } return true; } function isModuleSpecifierMissingOrEmpty(specifier) { var _a; if (nodeIsMissing(specifier)) return true; return !((_a = tryCast(isExternalModuleReference(specifier) ? specifier.expression : specifier, isStringLiteralLike)) == null ? undefined : _a.text); } function getClosestSymbolDeclaration(contextToken, location) { if (!contextToken) return; let closestDeclaration = findAncestor(contextToken, (node) => isFunctionBlock(node) || isArrowFunctionBody(node) || isBindingPattern(node) ? "quit" : (isParameter(node) || isTypeParameterDeclaration(node)) && !isIndexSignatureDeclaration(node.parent)); if (!closestDeclaration) { closestDeclaration = findAncestor(location, (node) => isFunctionBlock(node) || isArrowFunctionBody(node) || isBindingPattern(node) ? "quit" : isVariableDeclaration(node)); } return closestDeclaration; } function isInTypeParameterDefault(contextToken) { if (!contextToken) { return false; } let node = contextToken; let parent2 = contextToken.parent; while (parent2) { if (isTypeParameterDeclaration(parent2)) { return parent2.default === node || node.kind === 64; } node = parent2; parent2 = parent2.parent; } return false; } function isArrowFunctionBody(node) { return node.parent && isArrowFunction(node.parent) && (node.parent.body === node || node.kind === 39); } function symbolCanBeReferencedAtTypeLocation(symbol, checker, seenModules = /* @__PURE__ */ new Set) { return nonAliasCanBeReferencedAtTypeLocation(symbol) || nonAliasCanBeReferencedAtTypeLocation(skipAlias(symbol.exportSymbol || symbol, checker)); function nonAliasCanBeReferencedAtTypeLocation(symbol2) { return !!(symbol2.flags & 788968) || checker.isUnknownSymbol(symbol2) || !!(symbol2.flags & 1536) && addToSeen(seenModules, symbol2) && checker.getExportsOfModule(symbol2).some((e) => symbolCanBeReferencedAtTypeLocation(e, checker, seenModules)); } } function isDeprecated(symbol, checker) { const declarations = skipAlias(symbol, checker).declarations; return !!length(declarations) && every(declarations, isDeprecatedDeclaration); } function charactersFuzzyMatchInString(identifierString, lowercaseCharacters) { if (lowercaseCharacters.length === 0) { return true; } let matchedFirstCharacter = false; let prevChar; let characterIndex = 0; const len = identifierString.length; for (let strIndex = 0;strIndex < len; strIndex++) { const strChar = identifierString.charCodeAt(strIndex); const testChar = lowercaseCharacters.charCodeAt(characterIndex); if (strChar === testChar || strChar === toUpperCharCode(testChar)) { matchedFirstCharacter || (matchedFirstCharacter = prevChar === undefined || 97 <= prevChar && prevChar <= 122 && 65 <= strChar && strChar <= 90 || prevChar === 95 && strChar !== 95); if (matchedFirstCharacter) { characterIndex++; } if (characterIndex === lowercaseCharacters.length) { return true; } } prevChar = strChar; } return false; } function toUpperCharCode(charCode) { if (97 <= charCode && charCode <= 122) { return charCode - 32; } return charCode; } function isContextualKeywordInAutoImportableExpressionSpace(keyword) { return keyword === "abstract" || keyword === "async" || keyword === "await" || keyword === "declare" || keyword === "module" || keyword === "namespace" || keyword === "type" || keyword === "satisfies" || keyword === "as"; } var ts_Completions_StringCompletions_exports = {}; __export2(ts_Completions_StringCompletions_exports, { getStringLiteralCompletionDetails: () => getStringLiteralCompletionDetails, getStringLiteralCompletions: () => getStringLiteralCompletions }); var kindPrecedence = { ["directory"]: 0, ["script"]: 1, ["external module name"]: 2 }; function createNameAndKindSet() { const map2 = /* @__PURE__ */ new Map; function add(value) { const existing = map2.get(value.name); if (!existing || kindPrecedence[existing.kind] < kindPrecedence[value.kind]) { map2.set(value.name, value); } } return { add, has: map2.has.bind(map2), values: map2.values.bind(map2) }; } function getStringLiteralCompletions(sourceFile, position, contextToken, options, host, program, log, preferences, includeSymbol) { if (isInReferenceComment(sourceFile, position)) { const entries = getTripleSlashReferenceCompletion(sourceFile, position, program, host, createModuleSpecifierResolutionHost(program, host)); return entries && convertPathCompletions(entries); } if (isInString(sourceFile, position, contextToken)) { if (!contextToken || !isStringLiteralLike(contextToken)) return; const entries = getStringLiteralCompletionEntries(sourceFile, contextToken, position, program, host, preferences); return convertStringLiteralCompletions(entries, contextToken, sourceFile, host, program, log, options, preferences, position, includeSymbol); } } function convertStringLiteralCompletions(completion, contextToken, sourceFile, host, program, log, options, preferences, position, includeSymbol) { if (completion === undefined) { return; } const optionalReplacementSpan = createTextSpanFromStringLiteralLikeContent(contextToken, position); switch (completion.kind) { case 0: return convertPathCompletions(completion.paths); case 1: { const entries = createSortedArray(); getCompletionEntriesFromSymbols(completion.symbols, entries, contextToken, contextToken, sourceFile, position, sourceFile, host, program, 99, log, 4, preferences, options, undefined, undefined, undefined, undefined, undefined, undefined, undefined, undefined, undefined, undefined, undefined, includeSymbol); return { isGlobalCompletion: false, isMemberCompletion: true, isNewIdentifierLocation: completion.hasIndexSignature, optionalReplacementSpan, entries, defaultCommitCharacters: getDefaultCommitCharacters(completion.hasIndexSignature) }; } case 2: { const quoteChar = contextToken.kind === 15 ? 96 : startsWith(getTextOfNode(contextToken), "'") ? 39 : 34; const entries = completion.types.map((type) => ({ name: escapeString(type.value, quoteChar), kindModifiers: "", kind: "string", sortText: SortText.LocationPriority, replacementSpan: getReplacementSpanForContextToken(contextToken, position), commitCharacters: [] })); return { isGlobalCompletion: false, isMemberCompletion: false, isNewIdentifierLocation: completion.isNewIdentifier, optionalReplacementSpan, entries, defaultCommitCharacters: getDefaultCommitCharacters(completion.isNewIdentifier) }; } default: return Debug.assertNever(completion); } } function getStringLiteralCompletionDetails(name, sourceFile, position, contextToken, program, host, cancellationToken, preferences) { if (!contextToken || !isStringLiteralLike(contextToken)) return; const completions = getStringLiteralCompletionEntries(sourceFile, contextToken, position, program, host, preferences); return completions && stringLiteralCompletionDetails(name, contextToken, completions, sourceFile, program.getTypeChecker(), cancellationToken); } function stringLiteralCompletionDetails(name, location, completion, sourceFile, checker, cancellationToken) { switch (completion.kind) { case 0: { const match = find(completion.paths, (p) => p.name === name); return match && createCompletionDetails(name, kindModifiersFromExtension(match.extension), match.kind, [textPart(name)]); } case 1: { const match = find(completion.symbols, (s) => s.name === name); return match && createCompletionDetailsForSymbol(match, match.name, checker, sourceFile, location, cancellationToken); } case 2: return find(completion.types, (t) => t.value === name) ? createCompletionDetails(name, "", "string", [textPart(name)]) : undefined; default: return Debug.assertNever(completion); } } function convertPathCompletions(pathCompletions) { const isGlobalCompletion = false; const isNewIdentifierLocation = true; const entries = pathCompletions.map(({ name, kind, span, extension }) => ({ name, kind, kindModifiers: kindModifiersFromExtension(extension), sortText: SortText.LocationPriority, replacementSpan: span })); return { isGlobalCompletion, isMemberCompletion: false, isNewIdentifierLocation, entries, defaultCommitCharacters: getDefaultCommitCharacters(isNewIdentifierLocation) }; } function kindModifiersFromExtension(extension) { switch (extension) { case ".d.ts": return ".d.ts"; case ".js": return ".js"; case ".json": return ".json"; case ".jsx": return ".jsx"; case ".ts": return ".ts"; case ".tsx": return ".tsx"; case ".d.mts": return ".d.mts"; case ".mjs": return ".mjs"; case ".mts": return ".mts"; case ".d.cts": return ".d.cts"; case ".cjs": return ".cjs"; case ".cts": return ".cts"; case ".tsbuildinfo": return Debug.fail(`Extension ${".tsbuildinfo"} is unsupported.`); case undefined: return ""; default: return Debug.assertNever(extension); } } function getStringLiteralCompletionEntries(sourceFile, node, position, program, host, preferences) { const typeChecker = program.getTypeChecker(); const parent2 = walkUpParentheses(node.parent); switch (parent2.kind) { case 202: { const grandParent = walkUpParentheses(parent2.parent); if (grandParent.kind === 206) { return { kind: 0, paths: getStringLiteralCompletionsFromModuleNames(sourceFile, node, program, host, preferences) }; } return fromUnionableLiteralType(grandParent); } case 304: if (isObjectLiteralExpression(parent2.parent) && parent2.name === node) { return stringLiteralCompletionsForObjectLiteral(typeChecker, parent2.parent); } if (findAncestor(parent2.parent, isCallLikeExpression)) { const uniques2 = /* @__PURE__ */ new Set; const stringLiteralTypes = concatenate(getStringLiteralTypes(typeChecker.getContextualType(node, 0), uniques2), getStringLiteralTypes(typeChecker.getContextualType(node, 4), uniques2)); return toStringLiteralCompletionsFromTypes(stringLiteralTypes); } return fromContextualType(0); case 213: { const { expression, argumentExpression } = parent2; if (node === skipParentheses(argumentExpression)) { return stringLiteralCompletionsFromProperties(typeChecker.getTypeAtLocation(expression)); } return; } case 214: case 215: case 292: if (!isRequireCallArgument(node) && !isImportCall(parent2)) { const argumentInfo = ts_SignatureHelp_exports.getArgumentInfoForCompletions(parent2.kind === 292 ? parent2.parent : node, position, sourceFile, typeChecker); return argumentInfo && getStringLiteralCompletionsFromSignature(argumentInfo.invocation, node, argumentInfo, typeChecker) || fromContextualType(0); } case 273: case 279: case 284: case 352: return { kind: 0, paths: getStringLiteralCompletionsFromModuleNames(sourceFile, node, program, host, preferences) }; case 297: const tracker = newCaseClauseTracker(typeChecker, parent2.parent.clauses); const contextualTypes = fromContextualType(); if (!contextualTypes) { return; } const literals = contextualTypes.types.filter((literal) => !tracker.hasValue(literal.value)); return { kind: 2, types: literals, isNewIdentifier: false }; case 277: case 282: const specifier = parent2; if (specifier.propertyName && node !== specifier.propertyName) { return; } const namedImportsOrExports = specifier.parent; const { moduleSpecifier } = namedImportsOrExports.kind === 276 ? namedImportsOrExports.parent.parent : namedImportsOrExports.parent; if (!moduleSpecifier) return; const moduleSpecifierSymbol = typeChecker.getSymbolAtLocation(moduleSpecifier); if (!moduleSpecifierSymbol) return; const exports22 = typeChecker.getExportsAndPropertiesOfModule(moduleSpecifierSymbol); const existing = new Set(namedImportsOrExports.elements.map((n) => moduleExportNameTextEscaped(n.propertyName || n.name))); const uniques = exports22.filter((e) => e.escapedName !== "default" && !existing.has(e.escapedName)); return { kind: 1, symbols: uniques, hasIndexSignature: false }; case 227: if (parent2.operatorToken.kind === 103) { const type = typeChecker.getTypeAtLocation(parent2.right); const properties = type.isUnion() ? typeChecker.getAllPossiblePropertiesOfTypes(type.types) : type.getApparentProperties(); return { kind: 1, symbols: properties.filter((prop) => !prop.valueDeclaration || !isPrivateIdentifierClassElementDeclaration(prop.valueDeclaration)), hasIndexSignature: false }; } return fromContextualType(0); default: return fromContextualType() || fromContextualType(0); } function fromUnionableLiteralType(grandParent) { switch (grandParent.kind) { case 214: case 234: case 287: case 286: case 215: case 216: case 184: { const typeArgument = findAncestor(parent2, (n) => n.parent === grandParent); if (typeArgument) { return { kind: 2, types: getStringLiteralTypes(typeChecker.getTypeArgumentConstraint(typeArgument)), isNewIdentifier: false }; } return; } case 200: const { indexType, objectType } = grandParent; if (!rangeContainsPosition(indexType, position)) { return; } return stringLiteralCompletionsFromProperties(typeChecker.getTypeFromTypeNode(objectType)); case 172: return { kind: 2, types: getStringLiteralTypes(getConstraintOfTypeArgumentProperty(grandParent, typeChecker)), isNewIdentifier: false }; case 193: { const result = fromUnionableLiteralType(walkUpParentheses(grandParent.parent)); if (!result) { return; } const alreadyUsedTypes = getAlreadyUsedTypesInStringLiteralUnion(grandParent, parent2); if (result.kind === 1) { return { kind: 1, symbols: result.symbols.filter((sym) => !contains(alreadyUsedTypes, sym.name)), hasIndexSignature: result.hasIndexSignature }; } return { kind: 2, types: result.types.filter((t) => !contains(alreadyUsedTypes, t.value)), isNewIdentifier: false }; } default: return; } } function fromContextualType(contextFlags = 4) { return toStringLiteralCompletionsFromTypes(getStringLiteralTypes(getContextualTypeFromParent(node, typeChecker, contextFlags))); } } function toStringLiteralCompletionsFromTypes(types) { return types.length ? { kind: 2, types, isNewIdentifier: false } : undefined; } function walkUpParentheses(node) { switch (node.kind) { case 197: return walkUpParenthesizedTypes(node); case 218: return walkUpParenthesizedExpressions(node); default: return node; } } function getAlreadyUsedTypesInStringLiteralUnion(union, current) { return mapDefined(union.types, (type) => type !== current && isLiteralTypeNode(type) && isStringLiteral(type.literal) ? type.literal.text : undefined); } function getStringLiteralCompletionsFromSignature(call, arg, argumentInfo, checker) { let isNewIdentifier = false; const uniques = /* @__PURE__ */ new Set; const editingArgument = isJsxOpeningLikeElement(call) ? Debug.checkDefined(findAncestor(arg.parent, isJsxAttribute)) : arg; const candidates = checker.getCandidateSignaturesForStringLiteralCompletions(call, editingArgument); const types = flatMap(candidates, (candidate) => { if (!signatureHasRestParameter(candidate) && argumentInfo.argumentCount > candidate.parameters.length) return; let type = candidate.getTypeParameterAtPosition(argumentInfo.argumentIndex); if (isJsxOpeningLikeElement(call)) { const propType = checker.getTypeOfPropertyOfType(type, getTextOfJsxAttributeName(editingArgument.name)); if (propType) { type = propType; } } isNewIdentifier = isNewIdentifier || !!(type.flags & 32); return getStringLiteralTypes(type, uniques); }); return length(types) ? { kind: 2, types, isNewIdentifier } : undefined; } function stringLiteralCompletionsFromProperties(type) { return type && { kind: 1, symbols: filter(type.getApparentProperties(), (prop) => !(prop.valueDeclaration && isPrivateIdentifierClassElementDeclaration(prop.valueDeclaration))), hasIndexSignature: hasIndexSignature(type) }; } function stringLiteralCompletionsForObjectLiteral(checker, objectLiteralExpression) { const contextualType = checker.getContextualType(objectLiteralExpression); if (!contextualType) return; const completionsType = checker.getContextualType(objectLiteralExpression, 4); const symbols = getPropertiesForObjectExpression(contextualType, completionsType, objectLiteralExpression, checker); return { kind: 1, symbols, hasIndexSignature: hasIndexSignature(contextualType) }; } function getStringLiteralTypes(type, uniques = /* @__PURE__ */ new Set) { if (!type) return emptyArray; type = skipConstraint(type); return type.isUnion() ? flatMap(type.types, (t) => getStringLiteralTypes(t, uniques)) : type.isStringLiteral() && !(type.flags & 32768) && addToSeen(uniques, type.value) ? [type] : emptyArray; } function nameAndKind(name, kind, extension) { return { name, kind, extension }; } function directoryResult(name) { return nameAndKind(name, "directory", undefined); } function addReplacementSpans(text, textStart, names) { const span = getDirectoryFragmentTextSpan(text, textStart); const wholeSpan = text.length === 0 ? undefined : createTextSpan(textStart, text.length); return names.map(({ name, kind, extension }) => name.includes(directorySeparator) || name.includes(altDirectorySeparator) ? { name, kind, extension, span: wholeSpan } : { name, kind, extension, span }); } function getStringLiteralCompletionsFromModuleNames(sourceFile, node, program, host, preferences) { return addReplacementSpans(node.text, node.getStart(sourceFile) + 1, getStringLiteralCompletionsFromModuleNamesWorker(sourceFile, node, program, host, preferences)); } function getStringLiteralCompletionsFromModuleNamesWorker(sourceFile, node, program, host, preferences) { const literalValue = normalizeSlashes(node.text); const mode = isStringLiteralLike(node) ? program.getModeForUsageLocation(sourceFile, node) : undefined; const scriptPath = sourceFile.path; const scriptDirectory = getDirectoryPath(scriptPath); const compilerOptions = program.getCompilerOptions(); const typeChecker = program.getTypeChecker(); const moduleSpecifierResolutionHost = createModuleSpecifierResolutionHost(program, host); const extensionOptions = getExtensionOptions(compilerOptions, 1, sourceFile, typeChecker, preferences, mode); return isPathRelativeToScript(literalValue) || !compilerOptions.baseUrl && !compilerOptions.paths && (isRootedDiskPath(literalValue) || isUrl(literalValue)) ? getCompletionEntriesForRelativeModules(literalValue, scriptDirectory, program, host, moduleSpecifierResolutionHost, scriptPath, extensionOptions) : getCompletionEntriesForNonRelativeModules(literalValue, scriptDirectory, mode, program, host, moduleSpecifierResolutionHost, extensionOptions); } function getExtensionOptions(compilerOptions, referenceKind, importingSourceFile, typeChecker, preferences, resolutionMode) { return { extensionsToSearch: flatten(getSupportedExtensionsForModuleResolution(compilerOptions, typeChecker)), referenceKind, importingSourceFile, endingPreference: preferences == null ? undefined : preferences.importModuleSpecifierEnding, resolutionMode }; } function getCompletionEntriesForRelativeModules(literalValue, scriptDirectory, program, host, moduleSpecifierResolutionHost, scriptPath, extensionOptions) { const compilerOptions = program.getCompilerOptions(); if (compilerOptions.rootDirs) { return getCompletionEntriesForDirectoryFragmentWithRootDirs(compilerOptions.rootDirs, literalValue, scriptDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, scriptPath); } else { return arrayFrom(getCompletionEntriesForDirectoryFragment(literalValue, scriptDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, true, scriptPath).values()); } } function getSupportedExtensionsForModuleResolution(compilerOptions, typeChecker) { const ambientModulesExtensions = !typeChecker ? [] : mapDefined(typeChecker.getAmbientModules(), (module22) => { const name = module22.name.slice(1, -1); if (!name.startsWith("*.") || name.includes("/")) return; return name.slice(1); }); const extensions = [...getSupportedExtensions(compilerOptions), ambientModulesExtensions]; const moduleResolution = getEmitModuleResolutionKind(compilerOptions); return moduleResolutionUsesNodeModules(moduleResolution) ? getSupportedExtensionsWithJsonIfResolveJsonModule(compilerOptions, extensions) : extensions; } function getBaseDirectoriesFromRootDirs(rootDirs, basePath, scriptDirectory, ignoreCase) { rootDirs = rootDirs.map((rootDirectory) => ensureTrailingDirectorySeparator(normalizePath(isRootedDiskPath(rootDirectory) ? rootDirectory : combinePaths(basePath, rootDirectory)))); const relativeDirectory = firstDefined(rootDirs, (rootDirectory) => containsPath(rootDirectory, scriptDirectory, basePath, ignoreCase) ? scriptDirectory.substr(rootDirectory.length) : undefined); return deduplicate([...rootDirs.map((rootDirectory) => combinePaths(rootDirectory, relativeDirectory)), scriptDirectory].map((baseDir) => removeTrailingDirectorySeparator(baseDir)), equateStringsCaseSensitive, compareStringsCaseSensitive); } function getCompletionEntriesForDirectoryFragmentWithRootDirs(rootDirs, fragment, scriptDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, exclude) { const compilerOptions = program.getCompilerOptions(); const basePath = compilerOptions.project || host.getCurrentDirectory(); const ignoreCase = !(host.useCaseSensitiveFileNames && host.useCaseSensitiveFileNames()); const baseDirectories = getBaseDirectoriesFromRootDirs(rootDirs, basePath, scriptDirectory, ignoreCase); return deduplicate(flatMap(baseDirectories, (baseDirectory) => arrayFrom(getCompletionEntriesForDirectoryFragment(fragment, baseDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, true, exclude).values())), (itemA, itemB) => itemA.name === itemB.name && itemA.kind === itemB.kind && itemA.extension === itemB.extension); } function getCompletionEntriesForDirectoryFragment(fragment, scriptDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, moduleSpecifierIsRelative, exclude, result = createNameAndKindSet()) { var _a; if (fragment === undefined) { fragment = ""; } fragment = normalizeSlashes(fragment); if (!hasTrailingDirectorySeparator(fragment)) { fragment = getDirectoryPath(fragment); } if (fragment === "") { fragment = "." + directorySeparator; } fragment = ensureTrailingDirectorySeparator(fragment); const absolutePath = resolvePath(scriptDirectory, fragment); const baseDirectory = hasTrailingDirectorySeparator(absolutePath) ? absolutePath : getDirectoryPath(absolutePath); if (!moduleSpecifierIsRelative) { const packageJsonPath = findPackageJson(baseDirectory, host); if (packageJsonPath) { const packageJson = readJson(packageJsonPath, host); const typesVersions = packageJson.typesVersions; if (typeof typesVersions === "object") { const versionPaths = (_a = getPackageJsonTypesVersionsPaths(typesVersions)) == null ? undefined : _a.paths; if (versionPaths) { const packageDirectory = getDirectoryPath(packageJsonPath); const pathInPackage = absolutePath.slice(ensureTrailingDirectorySeparator(packageDirectory).length); if (addCompletionEntriesFromPaths(result, pathInPackage, packageDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, versionPaths)) { return result; } } } } } const ignoreCase = !(host.useCaseSensitiveFileNames && host.useCaseSensitiveFileNames()); if (!tryDirectoryExists(host, baseDirectory)) return result; const files = tryReadDirectory(host, baseDirectory, extensionOptions.extensionsToSearch, undefined, ["./*"]); if (files) { for (let filePath of files) { filePath = normalizePath(filePath); if (exclude && comparePaths(filePath, exclude, scriptDirectory, ignoreCase) === 0) { continue; } const { name, extension } = getFilenameWithExtensionOption(getBaseFileName(filePath), program, extensionOptions, false); result.add(nameAndKind(name, "script", extension)); } } const directories = tryGetDirectories(host, baseDirectory); if (directories) { for (const directory of directories) { const directoryName = getBaseFileName(normalizePath(directory)); if (directoryName !== "@types") { result.add(directoryResult(directoryName)); } } } return result; } function getFilenameWithExtensionOption(name, program, extensionOptions, isExportsOrImportsWildcard) { const nonJsResult = ts_moduleSpecifiers_exports.tryGetRealFileNameForNonJsDeclarationFileName(name); if (nonJsResult) { return { name: nonJsResult, extension: tryGetExtensionFromPath2(nonJsResult) }; } if (extensionOptions.referenceKind === 0) { return { name, extension: tryGetExtensionFromPath2(name) }; } let allowedEndings = ts_moduleSpecifiers_exports.getModuleSpecifierPreferences({ importModuleSpecifierEnding: extensionOptions.endingPreference }, program, program.getCompilerOptions(), extensionOptions.importingSourceFile).getAllowedEndingsInPreferredOrder(extensionOptions.resolutionMode); if (isExportsOrImportsWildcard) { allowedEndings = allowedEndings.filter((e) => e !== 0 && e !== 1); } if (allowedEndings[0] === 3) { if (fileExtensionIsOneOf(name, supportedTSImplementationExtensions)) { return { name, extension: tryGetExtensionFromPath2(name) }; } const outputExtension2 = ts_moduleSpecifiers_exports.tryGetJSExtensionForFile(name, program.getCompilerOptions()); return outputExtension2 ? { name: changeExtension(name, outputExtension2), extension: outputExtension2 } : { name, extension: tryGetExtensionFromPath2(name) }; } if (!isExportsOrImportsWildcard && (allowedEndings[0] === 0 || allowedEndings[0] === 1) && fileExtensionIsOneOf(name, [".js", ".jsx", ".ts", ".tsx", ".d.ts"])) { return { name: removeFileExtension(name), extension: tryGetExtensionFromPath2(name) }; } const outputExtension = ts_moduleSpecifiers_exports.tryGetJSExtensionForFile(name, program.getCompilerOptions()); return outputExtension ? { name: changeExtension(name, outputExtension), extension: outputExtension } : { name, extension: tryGetExtensionFromPath2(name) }; } function addCompletionEntriesFromPaths(result, fragment, baseDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, paths) { const getPatternsForKey = (key) => paths[key]; const comparePaths2 = (a, b) => { const patternA = tryParsePattern(a); const patternB = tryParsePattern(b); const lengthA = typeof patternA === "object" ? patternA.prefix.length : a.length; const lengthB = typeof patternB === "object" ? patternB.prefix.length : b.length; return compareValues(lengthB, lengthA); }; return addCompletionEntriesFromPathsOrExportsOrImports(result, false, false, fragment, baseDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, getOwnKeys(paths), getPatternsForKey, comparePaths2); } function addCompletionEntriesFromPathsOrExportsOrImports(result, isExports, isImports, fragment, baseDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, keys, getPatternsForKey, comparePaths2) { let pathResults = []; let matchedPath; for (const key of keys) { if (key === ".") continue; const keyWithoutLeadingDotSlash = key.replace(/^\.\//, "") + ((isExports || isImports) && endsWith(key, "/") ? "*" : ""); const patterns = getPatternsForKey(key); if (patterns) { const pathPattern = tryParsePattern(keyWithoutLeadingDotSlash); if (!pathPattern) continue; const isMatch = typeof pathPattern === "object" && isPatternMatch(pathPattern, fragment); const isLongestMatch = isMatch && (matchedPath === undefined || comparePaths2(keyWithoutLeadingDotSlash, matchedPath) === -1); if (isLongestMatch) { matchedPath = keyWithoutLeadingDotSlash; pathResults = pathResults.filter((r) => !r.matchedPattern); } if (typeof pathPattern === "string" || matchedPath === undefined || comparePaths2(keyWithoutLeadingDotSlash, matchedPath) !== 1) { pathResults.push({ matchedPattern: isMatch, results: getCompletionsForPathMapping(keyWithoutLeadingDotSlash, patterns, fragment, baseDirectory, extensionOptions, isExports, isImports, program, host, moduleSpecifierResolutionHost).map(({ name, kind, extension }) => nameAndKind(name, kind, extension)) }); } } } pathResults.forEach((pathResult) => pathResult.results.forEach((r) => result.add(r))); return matchedPath !== undefined; } function getCompletionEntriesForNonRelativeModules(fragment, scriptPath, mode, program, host, moduleSpecifierResolutionHost, extensionOptions) { const typeChecker = program.getTypeChecker(); const compilerOptions = program.getCompilerOptions(); const { baseUrl, paths } = compilerOptions; const result = createNameAndKindSet(); const moduleResolution = getEmitModuleResolutionKind(compilerOptions); if (baseUrl) { const absolute = normalizePath(combinePaths(host.getCurrentDirectory(), baseUrl)); getCompletionEntriesForDirectoryFragment(fragment, absolute, extensionOptions, program, host, moduleSpecifierResolutionHost, false, undefined, result); } if (paths) { const absolute = getPathsBasePath(compilerOptions, host); addCompletionEntriesFromPaths(result, fragment, absolute, extensionOptions, program, host, moduleSpecifierResolutionHost, paths); } const fragmentDirectory = getFragmentDirectory(fragment); for (const ambientName of getAmbientModuleCompletions(fragment, fragmentDirectory, typeChecker)) { result.add(nameAndKind(ambientName, "external module name", undefined)); } getCompletionEntriesFromTypings(program, host, moduleSpecifierResolutionHost, scriptPath, fragmentDirectory, extensionOptions, result); if (moduleResolutionUsesNodeModules(moduleResolution)) { let foundGlobal = false; if (fragmentDirectory === undefined) { for (const moduleName of enumerateNodeModulesVisibleToScript(host, scriptPath)) { const moduleResult = nameAndKind(moduleName, "external module name", undefined); if (!result.has(moduleResult.name)) { foundGlobal = true; result.add(moduleResult); } } } if (!foundGlobal) { const resolvePackageJsonExports = getResolvePackageJsonExports(compilerOptions); const resolvePackageJsonImports = getResolvePackageJsonImports(compilerOptions); let seenPackageScope = false; const importsLookup = (directory) => { if (resolvePackageJsonImports && !seenPackageScope) { const packageFile = combinePaths(directory, "package.json"); if (seenPackageScope = tryFileExists(host, packageFile)) { const packageJson = readJson(packageFile, host); exportsOrImportsLookup(packageJson.imports, fragment, directory, false, true); } } }; let ancestorLookup = (ancestor) => { const nodeModules = combinePaths(ancestor, "node_modules"); if (tryDirectoryExists(host, nodeModules)) { getCompletionEntriesForDirectoryFragment(fragment, nodeModules, extensionOptions, program, host, moduleSpecifierResolutionHost, false, undefined, result); } importsLookup(ancestor); }; if (fragmentDirectory && resolvePackageJsonExports) { const nodeModulesDirectoryOrImportsLookup = ancestorLookup; ancestorLookup = (ancestor) => { const components = getPathComponents(fragment); components.shift(); let packagePath = components.shift(); if (!packagePath) { return nodeModulesDirectoryOrImportsLookup(ancestor); } if (startsWith(packagePath, "@")) { const subName = components.shift(); if (!subName) { return nodeModulesDirectoryOrImportsLookup(ancestor); } packagePath = combinePaths(packagePath, subName); } if (resolvePackageJsonImports && startsWith(packagePath, "#")) { return importsLookup(ancestor); } const packageDirectory = combinePaths(ancestor, "node_modules", packagePath); const packageFile = combinePaths(packageDirectory, "package.json"); if (tryFileExists(host, packageFile)) { const packageJson = readJson(packageFile, host); const fragmentSubpath = components.join("/") + (components.length && hasTrailingDirectorySeparator(fragment) ? "/" : ""); if (exportsOrImportsLookup(packageJson.exports, fragmentSubpath, packageDirectory, true, false)) { return; } } return nodeModulesDirectoryOrImportsLookup(ancestor); }; } forEachAncestorDirectoryStoppingAtGlobalCache(host, scriptPath, ancestorLookup); } } return arrayFrom(result.values()); function exportsOrImportsLookup(lookupTable, fragment2, baseDirectory, isExports, isImports) { if (typeof lookupTable !== "object" || lookupTable === null) { return lookupTable !== undefined; } const keys = getOwnKeys(lookupTable); const conditions = getConditions(compilerOptions, mode); addCompletionEntriesFromPathsOrExportsOrImports(result, isExports, isImports, fragment2, baseDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, keys, (key) => { const pattern = getPatternFromFirstMatchingCondition(lookupTable[key], conditions); if (pattern === undefined) { return; } return singleElementArray(endsWith(key, "/") && endsWith(pattern, "/") ? pattern + "*" : pattern); }, comparePatternKeys); return true; } } function getPatternFromFirstMatchingCondition(target, conditions) { if (typeof target === "string") { return target; } if (target && typeof target === "object" && !isArray(target)) { for (const condition in target) { if (condition === "default" || conditions.includes(condition) || isApplicableVersionedTypesKey(conditions, condition)) { const pattern = target[condition]; return getPatternFromFirstMatchingCondition(pattern, conditions); } } } } function getFragmentDirectory(fragment) { return containsSlash(fragment) ? hasTrailingDirectorySeparator(fragment) ? fragment : getDirectoryPath(fragment) : undefined; } function getCompletionsForPathMapping(path, patterns, fragment, packageDirectory, extensionOptions, isExports, isImports, program, host, moduleSpecifierResolutionHost) { const parsedPath = tryParsePattern(path); if (!parsedPath) { return emptyArray; } if (typeof parsedPath === "string") { return justPathMappingName(path, "script"); } const remainingFragment = tryRemovePrefix(fragment, parsedPath.prefix); if (remainingFragment === undefined) { const starIsFullPathComponent = endsWith(path, "/*"); return starIsFullPathComponent ? justPathMappingName(parsedPath.prefix, "directory") : flatMap(patterns, (pattern) => { var _a; return (_a = getModulesForPathsPattern("", packageDirectory, pattern, extensionOptions, isExports, isImports, program, host, moduleSpecifierResolutionHost)) == null ? undefined : _a.map(({ name, ...rest }) => ({ name: parsedPath.prefix + name + parsedPath.suffix, ...rest })); }); } return flatMap(patterns, (pattern) => getModulesForPathsPattern(remainingFragment, packageDirectory, pattern, extensionOptions, isExports, isImports, program, host, moduleSpecifierResolutionHost)); function justPathMappingName(name, kind) { return startsWith(name, fragment) ? [{ name: removeTrailingDirectorySeparator(name), kind, extension: undefined }] : emptyArray; } } function getModulesForPathsPattern(fragment, packageDirectory, pattern, extensionOptions, isExports, isImports, program, host, moduleSpecifierResolutionHost) { if (!host.readDirectory) { return; } const parsed = tryParsePattern(pattern); if (parsed === undefined || isString(parsed)) { return; } const normalizedPrefix = resolvePath(parsed.prefix); const normalizedPrefixDirectory = hasTrailingDirectorySeparator(parsed.prefix) ? normalizedPrefix : getDirectoryPath(normalizedPrefix); const normalizedPrefixBase = hasTrailingDirectorySeparator(parsed.prefix) ? "" : getBaseFileName(normalizedPrefix); const fragmentHasPath = containsSlash(fragment); const fragmentDirectory = fragmentHasPath ? hasTrailingDirectorySeparator(fragment) ? fragment : getDirectoryPath(fragment) : undefined; const getCommonSourceDirectory2 = () => moduleSpecifierResolutionHost.getCommonSourceDirectory(); const ignoreCase = !hostUsesCaseSensitiveFileNames(moduleSpecifierResolutionHost); const outDir = program.getCompilerOptions().outDir; const declarationDir = program.getCompilerOptions().declarationDir; const expandedPrefixDirectory = fragmentHasPath ? combinePaths(normalizedPrefixDirectory, normalizedPrefixBase + fragmentDirectory) : normalizedPrefixDirectory; const baseDirectory = normalizePath(combinePaths(packageDirectory, expandedPrefixDirectory)); const possibleInputBaseDirectoryForOutDir = isImports && outDir && getPossibleOriginalInputPathWithoutChangingExt(baseDirectory, ignoreCase, outDir, getCommonSourceDirectory2); const possibleInputBaseDirectoryForDeclarationDir = isImports && declarationDir && getPossibleOriginalInputPathWithoutChangingExt(baseDirectory, ignoreCase, declarationDir, getCommonSourceDirectory2); const normalizedSuffix = normalizePath(parsed.suffix); const declarationExtension = normalizedSuffix && getDeclarationEmitExtensionForPath("_" + normalizedSuffix); const inputExtension = normalizedSuffix ? getPossibleOriginalInputExtensionForExtension("_" + normalizedSuffix) : undefined; const matchingSuffixes = [ declarationExtension && changeExtension(normalizedSuffix, declarationExtension), ...inputExtension ? inputExtension.map((ext) => changeExtension(normalizedSuffix, ext)) : [], normalizedSuffix ].filter(isString); const includeGlobs = normalizedSuffix ? matchingSuffixes.map((suffix) => "**/*" + suffix) : ["./*"]; const isExportsOrImportsWildcard = (isExports || isImports) && endsWith(pattern, "/*"); let matches = getMatchesWithPrefix(baseDirectory); if (possibleInputBaseDirectoryForOutDir) { matches = concatenate(matches, getMatchesWithPrefix(possibleInputBaseDirectoryForOutDir)); } if (possibleInputBaseDirectoryForDeclarationDir) { matches = concatenate(matches, getMatchesWithPrefix(possibleInputBaseDirectoryForDeclarationDir)); } if (!normalizedSuffix) { matches = concatenate(matches, getDirectoryMatches(baseDirectory)); if (possibleInputBaseDirectoryForOutDir) { matches = concatenate(matches, getDirectoryMatches(possibleInputBaseDirectoryForOutDir)); } if (possibleInputBaseDirectoryForDeclarationDir) { matches = concatenate(matches, getDirectoryMatches(possibleInputBaseDirectoryForDeclarationDir)); } } return matches; function getMatchesWithPrefix(directory) { const completePrefix = fragmentHasPath ? directory : ensureTrailingDirectorySeparator(directory) + normalizedPrefixBase; return mapDefined(tryReadDirectory(host, directory, extensionOptions.extensionsToSearch, undefined, includeGlobs), (match) => { const trimmedWithPattern = trimPrefixAndSuffix(match, completePrefix); if (trimmedWithPattern) { if (containsSlash(trimmedWithPattern)) { return directoryResult(getPathComponents(removeLeadingDirectorySeparator(trimmedWithPattern))[1]); } const { name, extension } = getFilenameWithExtensionOption(trimmedWithPattern, program, extensionOptions, isExportsOrImportsWildcard); return nameAndKind(name, "script", extension); } }); } function getDirectoryMatches(directoryName) { return mapDefined(tryGetDirectories(host, directoryName), (dir) => dir === "node_modules" ? undefined : directoryResult(dir)); } function trimPrefixAndSuffix(path, prefix) { return firstDefined(matchingSuffixes, (suffix) => { const inner = withoutStartAndEnd(normalizePath(path), prefix, suffix); return inner === undefined ? undefined : removeLeadingDirectorySeparator(inner); }); } } function withoutStartAndEnd(s, start, end) { return startsWith(s, start) && endsWith(s, end) ? s.slice(start.length, s.length - end.length) : undefined; } function removeLeadingDirectorySeparator(path) { return path[0] === directorySeparator ? path.slice(1) : path; } function getAmbientModuleCompletions(fragment, fragmentDirectory, checker) { const ambientModules = checker.getAmbientModules().map((sym) => stripQuotes(sym.name)); const nonRelativeModuleNames = ambientModules.filter((moduleName) => startsWith(moduleName, fragment) && !moduleName.includes("*")); if (fragmentDirectory !== undefined) { const moduleNameWithSeparator = ensureTrailingDirectorySeparator(fragmentDirectory); return nonRelativeModuleNames.map((nonRelativeModuleName) => removePrefix(nonRelativeModuleName, moduleNameWithSeparator)); } return nonRelativeModuleNames; } function getTripleSlashReferenceCompletion(sourceFile, position, program, host, moduleSpecifierResolutionHost) { const compilerOptions = program.getCompilerOptions(); const token = getTokenAtPosition(sourceFile, position); const commentRanges = getLeadingCommentRanges(sourceFile.text, token.pos); const range = commentRanges && find(commentRanges, (commentRange) => position >= commentRange.pos && position <= commentRange.end); if (!range) { return; } const text = sourceFile.text.slice(range.pos, position); const match = tripleSlashDirectiveFragmentRegex.exec(text); if (!match) { return; } const [, prefix, kind, toComplete] = match; const scriptPath = getDirectoryPath(sourceFile.path); const names = kind === "path" ? getCompletionEntriesForDirectoryFragment(toComplete, scriptPath, getExtensionOptions(compilerOptions, 0, sourceFile), program, host, moduleSpecifierResolutionHost, true, sourceFile.path) : kind === "types" ? getCompletionEntriesFromTypings(program, host, moduleSpecifierResolutionHost, scriptPath, getFragmentDirectory(toComplete), getExtensionOptions(compilerOptions, 1, sourceFile)) : Debug.fail(); return addReplacementSpans(toComplete, range.pos + prefix.length, arrayFrom(names.values())); } function getCompletionEntriesFromTypings(program, host, moduleSpecifierResolutionHost, scriptPath, fragmentDirectory, extensionOptions, result = createNameAndKindSet()) { const options = program.getCompilerOptions(); const seen = /* @__PURE__ */ new Map; const typeRoots = tryAndIgnoreErrors(() => getEffectiveTypeRoots(options, host)) || emptyArray; for (const root of typeRoots) { getCompletionEntriesFromDirectories(root); } for (const packageJson of findPackageJsons(scriptPath, host)) { const typesDir = combinePaths(getDirectoryPath(packageJson), "node_modules/@types"); getCompletionEntriesFromDirectories(typesDir); } return result; function getCompletionEntriesFromDirectories(directory) { if (!tryDirectoryExists(host, directory)) return; for (const typeDirectoryName of tryGetDirectories(host, directory)) { const packageName = unmangleScopedPackageName(typeDirectoryName); if (options.types && !contains(options.types, packageName)) continue; if (fragmentDirectory === undefined) { if (!seen.has(packageName)) { result.add(nameAndKind(packageName, "external module name", undefined)); seen.set(packageName, true); } } else { const baseDirectory = combinePaths(directory, typeDirectoryName); const remainingFragment = tryRemoveDirectoryPrefix(fragmentDirectory, packageName, hostGetCanonicalFileName(host)); if (remainingFragment !== undefined) { getCompletionEntriesForDirectoryFragment(remainingFragment, baseDirectory, extensionOptions, program, host, moduleSpecifierResolutionHost, false, undefined, result); } } } } } function enumerateNodeModulesVisibleToScript(host, scriptPath) { if (!host.readFile || !host.fileExists) return emptyArray; const result = []; for (const packageJson of findPackageJsons(scriptPath, host)) { const contents = readJson(packageJson, host); for (const key of nodeModulesDependencyKeys) { const dependencies = contents[key]; if (!dependencies) continue; for (const dep in dependencies) { if (hasProperty(dependencies, dep) && !startsWith(dep, "@types/")) { result.push(dep); } } } } return result; } function getDirectoryFragmentTextSpan(text, textStart) { const index = Math.max(text.lastIndexOf(directorySeparator), text.lastIndexOf(altDirectorySeparator)); const offset = index !== -1 ? index + 1 : 0; const length2 = text.length - offset; return length2 === 0 || isIdentifierText(text.substr(offset, length2), 99) ? undefined : createTextSpan(textStart + offset, length2); } function isPathRelativeToScript(path) { if (path && path.length >= 2 && path.charCodeAt(0) === 46) { const slashIndex = path.length >= 3 && path.charCodeAt(1) === 46 ? 2 : 1; const slashCharCode = path.charCodeAt(slashIndex); return slashCharCode === 47 || slashCharCode === 92; } return false; } var tripleSlashDirectiveFragmentRegex = /^(\/\/\/\s* Core, DefinitionKind: () => DefinitionKind, EntryKind: () => EntryKind, ExportKind: () => ExportKind2, FindReferencesUse: () => FindReferencesUse, ImportExport: () => ImportExport, createImportTracker: () => createImportTracker, findModuleReferences: () => findModuleReferences, findReferenceOrRenameEntries: () => findReferenceOrRenameEntries, findReferencedSymbols: () => findReferencedSymbols, getContextNode: () => getContextNode, getExportInfo: () => getExportInfo, getImplementationsAtPosition: () => getImplementationsAtPosition, getImportOrExportSymbol: () => getImportOrExportSymbol, getReferenceEntriesForNode: () => getReferenceEntriesForNode, isContextWithStartAndEndNode: () => isContextWithStartAndEndNode, isDeclarationOfSymbol: () => isDeclarationOfSymbol, isWriteAccessForReference: () => isWriteAccessForReference, toContextSpan: () => toContextSpan, toHighlightSpan: () => toHighlightSpan, toReferenceEntry: () => toReferenceEntry, toRenameLocation: () => toRenameLocation }); function createImportTracker(sourceFiles, sourceFilesSet, checker, cancellationToken) { const allDirectImports = getDirectImportsMap(sourceFiles, checker, cancellationToken); return (exportSymbol, exportInfo, isForRename) => { const { directImports, indirectUsers } = getImportersForExport(sourceFiles, sourceFilesSet, allDirectImports, exportInfo, checker, cancellationToken); return { indirectUsers, ...getSearchesFromDirectImports(directImports, exportSymbol, exportInfo.exportKind, checker, isForRename) }; }; } var ExportKind2 = /* @__PURE__ */ ((ExportKind3) => { ExportKind3[ExportKind3["Named"] = 0] = "Named"; ExportKind3[ExportKind3["Default"] = 1] = "Default"; ExportKind3[ExportKind3["ExportEquals"] = 2] = "ExportEquals"; return ExportKind3; })(ExportKind2 || {}); var ImportExport = /* @__PURE__ */ ((ImportExport2) => { ImportExport2[ImportExport2["Import"] = 0] = "Import"; ImportExport2[ImportExport2["Export"] = 1] = "Export"; return ImportExport2; })(ImportExport || {}); function getImportersForExport(sourceFiles, sourceFilesSet, allDirectImports, { exportingModuleSymbol, exportKind }, checker, cancellationToken) { const markSeenDirectImport = nodeSeenTracker(); const markSeenIndirectUser = nodeSeenTracker(); const directImports = []; const isAvailableThroughGlobal = !!exportingModuleSymbol.globalExports; const indirectUserDeclarations = isAvailableThroughGlobal ? undefined : []; handleDirectImports(exportingModuleSymbol); return { directImports, indirectUsers: getIndirectUsers() }; function getIndirectUsers() { if (isAvailableThroughGlobal) { return sourceFiles; } if (exportingModuleSymbol.declarations) { for (const decl of exportingModuleSymbol.declarations) { if (isExternalModuleAugmentation(decl) && sourceFilesSet.has(decl.getSourceFile().fileName)) { addIndirectUser(decl); } } } return indirectUserDeclarations.map(getSourceFileOfNode); } function handleDirectImports(exportingModuleSymbol2) { const theseDirectImports = getDirectImports(exportingModuleSymbol2); if (theseDirectImports) { for (const direct of theseDirectImports) { if (!markSeenDirectImport(direct)) { continue; } if (cancellationToken) cancellationToken.throwIfCancellationRequested(); switch (direct.kind) { case 214: if (isImportCall(direct)) { handleImportCall(direct); break; } if (!isAvailableThroughGlobal) { const parent2 = direct.parent; if (exportKind === 2 && parent2.kind === 261) { const { name } = parent2; if (name.kind === 80) { directImports.push(name); break; } } } break; case 80: break; case 272: handleNamespaceImport(direct, direct.name, hasSyntacticModifier(direct, 32), false); break; case 273: case 352: directImports.push(direct); const namedBindings = direct.importClause && direct.importClause.namedBindings; if (namedBindings && namedBindings.kind === 275) { handleNamespaceImport(direct, namedBindings.name, false, true); } else if (!isAvailableThroughGlobal && isDefaultImport(direct)) { addIndirectUser(getSourceFileLikeForImportDeclaration(direct)); } break; case 279: if (!direct.exportClause) { handleDirectImports(getContainingModuleSymbol(direct, checker)); } else if (direct.exportClause.kind === 281) { addIndirectUser(getSourceFileLikeForImportDeclaration(direct), true); } else { directImports.push(direct); } break; case 206: if (!isAvailableThroughGlobal && direct.isTypeOf && !direct.qualifier && isExported2(direct)) { addIndirectUser(direct.getSourceFile(), true); } directImports.push(direct); break; default: Debug.failBadSyntaxKind(direct, "Unexpected import kind."); } } } } function handleImportCall(importCall) { const top = findAncestor(importCall, isAmbientModuleDeclaration) || importCall.getSourceFile(); addIndirectUser(top, !!isExported2(importCall, true)); } function isExported2(node, stopAtAmbientModule = false) { return findAncestor(node, (node2) => { if (stopAtAmbientModule && isAmbientModuleDeclaration(node2)) return "quit"; return canHaveModifiers(node2) && some(node2.modifiers, isExportModifier); }); } function handleNamespaceImport(importDeclaration, name, isReExport, alreadyAddedDirect) { if (exportKind === 2) { if (!alreadyAddedDirect) directImports.push(importDeclaration); } else if (!isAvailableThroughGlobal) { const sourceFileLike = getSourceFileLikeForImportDeclaration(importDeclaration); Debug.assert(sourceFileLike.kind === 308 || sourceFileLike.kind === 268); if (isReExport || findNamespaceReExports(sourceFileLike, name, checker)) { addIndirectUser(sourceFileLike, true); } else { addIndirectUser(sourceFileLike); } } } function addIndirectUser(sourceFileLike, addTransitiveDependencies = false) { Debug.assert(!isAvailableThroughGlobal); const isNew = markSeenIndirectUser(sourceFileLike); if (!isNew) return; indirectUserDeclarations.push(sourceFileLike); if (!addTransitiveDependencies) return; const moduleSymbol = checker.getMergedSymbol(sourceFileLike.symbol); if (!moduleSymbol) return; Debug.assert(!!(moduleSymbol.flags & 1536)); const directImports2 = getDirectImports(moduleSymbol); if (directImports2) { for (const directImport of directImports2) { if (!isImportTypeNode(directImport)) { addIndirectUser(getSourceFileLikeForImportDeclaration(directImport), true); } } } } function getDirectImports(moduleSymbol) { return allDirectImports.get(getSymbolId(moduleSymbol).toString()); } } function getSearchesFromDirectImports(directImports, exportSymbol, exportKind, checker, isForRename) { const importSearches = []; const singleReferences = []; function addSearch(location, symbol) { importSearches.push([location, symbol]); } if (directImports) { for (const decl of directImports) { handleImport(decl); } } return { importSearches, singleReferences }; function handleImport(decl) { if (decl.kind === 272) { if (isExternalModuleImportEquals(decl)) { handleNamespaceImportLike(decl.name); } return; } if (decl.kind === 80) { handleNamespaceImportLike(decl); return; } if (decl.kind === 206) { if (decl.qualifier) { const firstIdentifier = getFirstIdentifier(decl.qualifier); if (firstIdentifier.escapedText === symbolName(exportSymbol)) { singleReferences.push(firstIdentifier); } } else if (exportKind === 2) { singleReferences.push(decl.argument.literal); } return; } if (decl.moduleSpecifier.kind !== 11) { return; } if (decl.kind === 279) { if (decl.exportClause && isNamedExports(decl.exportClause)) { searchForNamedImport(decl.exportClause); } return; } const { name, namedBindings } = decl.importClause || { name: undefined, namedBindings: undefined }; if (namedBindings) { switch (namedBindings.kind) { case 275: handleNamespaceImportLike(namedBindings.name); break; case 276: if (exportKind === 0 || exportKind === 1) { searchForNamedImport(namedBindings); } break; default: Debug.assertNever(namedBindings); } } if (name && (exportKind === 1 || exportKind === 2) && (!isForRename || name.escapedText === symbolEscapedNameNoDefault(exportSymbol))) { const defaultImportAlias = checker.getSymbolAtLocation(name); addSearch(name, defaultImportAlias); } } function handleNamespaceImportLike(importName) { if (exportKind === 2 && (!isForRename || isNameMatch(importName.escapedText))) { addSearch(importName, checker.getSymbolAtLocation(importName)); } } function searchForNamedImport(namedBindings) { if (!namedBindings) { return; } for (const element of namedBindings.elements) { const { name, propertyName } = element; if (!isNameMatch(moduleExportNameTextEscaped(propertyName || name))) { continue; } if (propertyName) { singleReferences.push(propertyName); if (!isForRename || moduleExportNameTextEscaped(name) === exportSymbol.escapedName) { addSearch(name, checker.getSymbolAtLocation(name)); } } else { const localSymbol = element.kind === 282 && element.propertyName ? checker.getExportSpecifierLocalTargetSymbol(element) : checker.getSymbolAtLocation(name); addSearch(name, localSymbol); } } } function isNameMatch(name) { return name === exportSymbol.escapedName || exportKind !== 0 && name === "default"; } } function findNamespaceReExports(sourceFileLike, name, checker) { const namespaceImportSymbol = checker.getSymbolAtLocation(name); return !!forEachPossibleImportOrExportStatement(sourceFileLike, (statement) => { if (!isExportDeclaration(statement)) return; const { exportClause, moduleSpecifier } = statement; return !moduleSpecifier && exportClause && isNamedExports(exportClause) && exportClause.elements.some((element) => checker.getExportSpecifierLocalTargetSymbol(element) === namespaceImportSymbol); }); } function findModuleReferences(program, sourceFiles, searchModuleSymbol) { var _a; const refs = []; const checker = program.getTypeChecker(); for (const referencingFile of sourceFiles) { const searchSourceFile = searchModuleSymbol.valueDeclaration; if ((searchSourceFile == null ? undefined : searchSourceFile.kind) === 308) { for (const ref of referencingFile.referencedFiles) { if (program.getSourceFileFromReference(referencingFile, ref) === searchSourceFile) { refs.push({ kind: "reference", referencingFile, ref }); } } for (const ref of referencingFile.typeReferenceDirectives) { const referenced = (_a = program.getResolvedTypeReferenceDirectiveFromTypeReferenceDirective(ref, referencingFile)) == null ? undefined : _a.resolvedTypeReferenceDirective; if (referenced !== undefined && referenced.resolvedFileName === searchSourceFile.fileName) { refs.push({ kind: "reference", referencingFile, ref }); } } } forEachImport(referencingFile, (importDecl, moduleSpecifier) => { const moduleSymbol = checker.getSymbolAtLocation(moduleSpecifier); if (moduleSymbol === searchModuleSymbol) { refs.push(nodeIsSynthesized(importDecl) ? { kind: "implicit", literal: moduleSpecifier, referencingFile } : { kind: "import", literal: moduleSpecifier }); } }); } return refs; } function getDirectImportsMap(sourceFiles, checker, cancellationToken) { const map2 = /* @__PURE__ */ new Map; for (const sourceFile of sourceFiles) { if (cancellationToken) cancellationToken.throwIfCancellationRequested(); forEachImport(sourceFile, (importDecl, moduleSpecifier) => { const moduleSymbol = checker.getSymbolAtLocation(moduleSpecifier); if (moduleSymbol) { const id = getSymbolId(moduleSymbol).toString(); let imports = map2.get(id); if (!imports) { map2.set(id, imports = []); } imports.push(importDecl); } }); } return map2; } function forEachPossibleImportOrExportStatement(sourceFileLike, action) { return forEach(sourceFileLike.kind === 308 ? sourceFileLike.statements : sourceFileLike.body.statements, (statement) => action(statement) || isAmbientModuleDeclaration(statement) && forEach(statement.body && statement.body.statements, action)); } function forEachImport(sourceFile, action) { if (sourceFile.externalModuleIndicator || sourceFile.imports !== undefined) { for (const i of sourceFile.imports) { action(importFromModuleSpecifier(i), i); } } else { forEachPossibleImportOrExportStatement(sourceFile, (statement) => { switch (statement.kind) { case 279: case 273: { const decl = statement; if (decl.moduleSpecifier && isStringLiteral(decl.moduleSpecifier)) { action(decl, decl.moduleSpecifier); } break; } case 272: { const decl = statement; if (isExternalModuleImportEquals(decl)) { action(decl, decl.moduleReference.expression); } break; } } }); } } function getImportOrExportSymbol(node, symbol, checker, comingFromExport) { return comingFromExport ? getExport() : getExport() || getImport(); function getExport() { var _a; const { parent: parent2 } = node; const grandparent = parent2.parent; if (symbol.exportSymbol) { if (parent2.kind === 212) { return ((_a = symbol.declarations) == null ? undefined : _a.some((d) => d === parent2)) && isBinaryExpression(grandparent) ? getSpecialPropertyExport(grandparent, false) : undefined; } else { return exportInfo(symbol.exportSymbol, getExportKindForDeclaration(parent2)); } } else { const exportNode = getExportNode(parent2, node); if (exportNode && hasSyntacticModifier(exportNode, 32)) { if (isImportEqualsDeclaration(exportNode) && exportNode.moduleReference === node) { if (comingFromExport) { return; } const lhsSymbol = checker.getSymbolAtLocation(exportNode.name); return { kind: 0, symbol: lhsSymbol }; } else { return exportInfo(symbol, getExportKindForDeclaration(exportNode)); } } else if (isNamespaceExport(parent2)) { return exportInfo(symbol, 0); } else if (isExportAssignment(parent2)) { return getExportAssignmentExport(parent2); } else if (isExportAssignment(grandparent)) { return getExportAssignmentExport(grandparent); } else if (isBinaryExpression(parent2)) { return getSpecialPropertyExport(parent2, true); } else if (isBinaryExpression(grandparent)) { return getSpecialPropertyExport(grandparent, true); } else if (isJSDocTypedefTag(parent2) || isJSDocCallbackTag(parent2)) { return exportInfo(symbol, 0); } } function getExportAssignmentExport(ex) { if (!ex.symbol.parent) return; const exportKind = ex.isExportEquals ? 2 : 1; return { kind: 1, symbol, exportInfo: { exportingModuleSymbol: ex.symbol.parent, exportKind } }; } function getSpecialPropertyExport(node2, useLhsSymbol) { let kind; switch (getAssignmentDeclarationKind(node2)) { case 1: kind = 0; break; case 2: kind = 2; break; default: return; } const sym = useLhsSymbol ? checker.getSymbolAtLocation(getNameOfAccessExpression(cast(node2.left, isAccessExpression))) : symbol; return sym && exportInfo(sym, kind); } } function getImport() { const isImport3 = isNodeImport(node); if (!isImport3) return; let importedSymbol = checker.getImmediateAliasedSymbol(symbol); if (!importedSymbol) return; importedSymbol = skipExportSpecifierSymbol(importedSymbol, checker); if (importedSymbol.escapedName === "export=") { importedSymbol = getExportEqualsLocalSymbol(importedSymbol, checker); if (importedSymbol === undefined) return; } const importedName = symbolEscapedNameNoDefault(importedSymbol); if (importedName === undefined || importedName === "default" || importedName === symbol.escapedName) { return { kind: 0, symbol: importedSymbol }; } } function exportInfo(symbol2, kind) { const exportInfo2 = getExportInfo(symbol2, kind, checker); return exportInfo2 && { kind: 1, symbol: symbol2, exportInfo: exportInfo2 }; } function getExportKindForDeclaration(node2) { return hasSyntacticModifier(node2, 2048) ? 1 : 0; } } function getExportEqualsLocalSymbol(importedSymbol, checker) { var _a, _b; if (importedSymbol.flags & 2097152) { return checker.getImmediateAliasedSymbol(importedSymbol); } const decl = Debug.checkDefined(importedSymbol.valueDeclaration); if (isExportAssignment(decl)) { return (_a = tryCast(decl.expression, canHaveSymbol)) == null ? undefined : _a.symbol; } else if (isBinaryExpression(decl)) { return (_b = tryCast(decl.right, canHaveSymbol)) == null ? undefined : _b.symbol; } else if (isSourceFile(decl)) { return decl.symbol; } return; } function getExportNode(parent2, node) { const declaration = isVariableDeclaration(parent2) ? parent2 : isBindingElement(parent2) ? walkUpBindingElementsAndPatterns(parent2) : undefined; if (declaration) { return parent2.name !== node ? undefined : isCatchClause(declaration.parent) ? undefined : isVariableStatement(declaration.parent.parent) ? declaration.parent.parent : undefined; } else { return parent2; } } function isNodeImport(node) { const { parent: parent2 } = node; switch (parent2.kind) { case 272: return parent2.name === node && isExternalModuleImportEquals(parent2); case 277: return !parent2.propertyName; case 274: case 275: Debug.assert(parent2.name === node); return true; case 209: return isInJSFile(node) && isVariableDeclarationInitializedToBareOrAccessedRequire(parent2.parent.parent); default: return false; } } function getExportInfo(exportSymbol, exportKind, checker) { const moduleSymbol = exportSymbol.parent; if (!moduleSymbol) return; const exportingModuleSymbol = checker.getMergedSymbol(moduleSymbol); return isExternalModuleSymbol(exportingModuleSymbol) ? { exportingModuleSymbol, exportKind } : undefined; } function skipExportSpecifierSymbol(symbol, checker) { if (symbol.declarations) { for (const declaration of symbol.declarations) { if (isExportSpecifier(declaration) && !declaration.propertyName && !declaration.parent.parent.moduleSpecifier) { return checker.getExportSpecifierLocalTargetSymbol(declaration) || symbol; } else if (isPropertyAccessExpression(declaration) && isModuleExportsAccessExpression(declaration.expression) && !isPrivateIdentifier(declaration.name)) { return checker.getSymbolAtLocation(declaration); } else if (isShorthandPropertyAssignment(declaration) && isBinaryExpression(declaration.parent.parent) && getAssignmentDeclarationKind(declaration.parent.parent) === 2) { return checker.getExportSpecifierLocalTargetSymbol(declaration.name); } } } return symbol; } function getContainingModuleSymbol(importer, checker) { return checker.getMergedSymbol(getSourceFileLikeForImportDeclaration(importer).symbol); } function getSourceFileLikeForImportDeclaration(node) { if (node.kind === 214 || node.kind === 352) { return node.getSourceFile(); } const { parent: parent2 } = node; if (parent2.kind === 308) { return parent2; } Debug.assert(parent2.kind === 269); return cast(parent2.parent, isAmbientModuleDeclaration); } function isAmbientModuleDeclaration(node) { return node.kind === 268 && node.name.kind === 11; } function isExternalModuleImportEquals(eq) { return eq.moduleReference.kind === 284 && eq.moduleReference.expression.kind === 11; } var DefinitionKind = /* @__PURE__ */ ((DefinitionKind2) => { DefinitionKind2[DefinitionKind2["Symbol"] = 0] = "Symbol"; DefinitionKind2[DefinitionKind2["Label"] = 1] = "Label"; DefinitionKind2[DefinitionKind2["Keyword"] = 2] = "Keyword"; DefinitionKind2[DefinitionKind2["This"] = 3] = "This"; DefinitionKind2[DefinitionKind2["String"] = 4] = "String"; DefinitionKind2[DefinitionKind2["TripleSlashReference"] = 5] = "TripleSlashReference"; return DefinitionKind2; })(DefinitionKind || {}); var EntryKind = /* @__PURE__ */ ((EntryKind2) => { EntryKind2[EntryKind2["Span"] = 0] = "Span"; EntryKind2[EntryKind2["Node"] = 1] = "Node"; EntryKind2[EntryKind2["StringLiteral"] = 2] = "StringLiteral"; EntryKind2[EntryKind2["SearchedLocalFoundProperty"] = 3] = "SearchedLocalFoundProperty"; EntryKind2[EntryKind2["SearchedPropertyFoundLocal"] = 4] = "SearchedPropertyFoundLocal"; return EntryKind2; })(EntryKind || {}); function nodeEntry(node, kind = 1) { return { kind, node: node.name || node, context: getContextNodeForNodeEntry(node) }; } function isContextWithStartAndEndNode(node) { return node && node.kind === undefined; } function getContextNodeForNodeEntry(node) { if (isDeclaration(node)) { return getContextNode(node); } if (!node.parent) return; if (!isDeclaration(node.parent) && !isExportAssignment(node.parent)) { if (isInJSFile(node)) { const binaryExpression = isBinaryExpression(node.parent) ? node.parent : isAccessExpression(node.parent) && isBinaryExpression(node.parent.parent) && node.parent.parent.left === node.parent ? node.parent.parent : undefined; if (binaryExpression && getAssignmentDeclarationKind(binaryExpression) !== 0) { return getContextNode(binaryExpression); } } if (isJsxOpeningElement(node.parent) || isJsxClosingElement(node.parent)) { return node.parent.parent; } else if (isJsxSelfClosingElement(node.parent) || isLabeledStatement(node.parent) || isBreakOrContinueStatement(node.parent)) { return node.parent; } else if (isStringLiteralLike(node)) { const validImport = tryGetImportFromModuleSpecifier(node); if (validImport) { const declOrStatement = findAncestor(validImport, (node2) => isDeclaration(node2) || isStatement(node2) || isJSDocTag(node2)); return isDeclaration(declOrStatement) ? getContextNode(declOrStatement) : declOrStatement; } } const propertyName = findAncestor(node, isComputedPropertyName); return propertyName ? getContextNode(propertyName.parent) : undefined; } if (node.parent.name === node || isConstructorDeclaration(node.parent) || isExportAssignment(node.parent) || (isImportOrExportSpecifier(node.parent) || isBindingElement(node.parent)) && node.parent.propertyName === node || node.kind === 90 && hasSyntacticModifier(node.parent, 2080)) { return getContextNode(node.parent); } return; } function getContextNode(node) { if (!node) return; switch (node.kind) { case 261: return !isVariableDeclarationList(node.parent) || node.parent.declarations.length !== 1 ? node : isVariableStatement(node.parent.parent) ? node.parent.parent : isForInOrOfStatement(node.parent.parent) ? getContextNode(node.parent.parent) : node.parent; case 209: return getContextNode(node.parent.parent); case 277: return node.parent.parent.parent; case 282: case 275: return node.parent.parent; case 274: case 281: return node.parent; case 227: return isExpressionStatement(node.parent) ? node.parent : node; case 251: case 250: return { start: node.initializer, end: node.expression }; case 304: case 305: return isArrayLiteralOrObjectLiteralDestructuringPattern(node.parent) ? getContextNode(findAncestor(node.parent, (node2) => isBinaryExpression(node2) || isForInOrOfStatement(node2))) : node; case 256: return { start: find(node.getChildren(node.getSourceFile()), (node2) => node2.kind === 109), end: node.caseBlock }; default: return node; } } function toContextSpan(textSpan, sourceFile, context) { if (!context) return; const contextSpan = isContextWithStartAndEndNode(context) ? getTextSpan(context.start, sourceFile, context.end) : getTextSpan(context, sourceFile); return contextSpan.start !== textSpan.start || contextSpan.length !== textSpan.length ? { contextSpan } : undefined; } var FindReferencesUse = /* @__PURE__ */ ((FindReferencesUse2) => { FindReferencesUse2[FindReferencesUse2["Other"] = 0] = "Other"; FindReferencesUse2[FindReferencesUse2["References"] = 1] = "References"; FindReferencesUse2[FindReferencesUse2["Rename"] = 2] = "Rename"; return FindReferencesUse2; })(FindReferencesUse || {}); function findReferencedSymbols(program, cancellationToken, sourceFiles, sourceFile, position) { const node = getTouchingPropertyName(sourceFile, position); const options = { use: 1 }; const referencedSymbols = Core.getReferencedSymbolsForNode(position, node, program, sourceFiles, cancellationToken, options); const checker = program.getTypeChecker(); const adjustedNode = Core.getAdjustedNode(node, options); const symbol = isDefinitionForReference(adjustedNode) ? checker.getSymbolAtLocation(adjustedNode) : undefined; return !referencedSymbols || !referencedSymbols.length ? undefined : mapDefined(referencedSymbols, ({ definition, references }) => definition && { definition: checker.runWithCancellationToken(cancellationToken, (checker2) => definitionToReferencedSymbolDefinitionInfo(definition, checker2, node)), references: references.map((r) => toReferencedSymbolEntry(r, symbol)) }); } function isDefinitionForReference(node) { return node.kind === 90 || !!getDeclarationFromName(node) || isLiteralComputedPropertyDeclarationName(node) || node.kind === 137 && isConstructorDeclaration(node.parent); } function getImplementationsAtPosition(program, cancellationToken, sourceFiles, sourceFile, position) { const node = getTouchingPropertyName(sourceFile, position); let referenceEntries; const entries = getImplementationReferenceEntries(program, cancellationToken, sourceFiles, node, position); if (node.parent.kind === 212 || node.parent.kind === 209 || node.parent.kind === 213 || node.kind === 108) { referenceEntries = entries && [...entries]; } else if (entries) { const queue = createQueue(entries); const seenNodes = /* @__PURE__ */ new Set; while (!queue.isEmpty()) { const entry = queue.dequeue(); if (!addToSeen(seenNodes, getNodeId(entry.node))) { continue; } referenceEntries = append(referenceEntries, entry); const entries2 = getImplementationReferenceEntries(program, cancellationToken, sourceFiles, entry.node, entry.node.pos); if (entries2) { queue.enqueue(...entries2); } } } const checker = program.getTypeChecker(); return map(referenceEntries, (entry) => toImplementationLocation(entry, checker)); } function getImplementationReferenceEntries(program, cancellationToken, sourceFiles, node, position) { if (node.kind === 308) { return; } const checker = program.getTypeChecker(); if (node.parent.kind === 305) { const result = []; Core.getReferenceEntriesForShorthandPropertyAssignment(node, checker, (node2) => result.push(nodeEntry(node2))); return result; } else if (node.kind === 108 || isSuperProperty(node.parent)) { const symbol = checker.getSymbolAtLocation(node); return symbol.valueDeclaration && [nodeEntry(symbol.valueDeclaration)]; } else { return getReferenceEntriesForNode(position, node, program, sourceFiles, cancellationToken, { implementations: true, use: 1 }); } } function findReferenceOrRenameEntries(program, cancellationToken, sourceFiles, node, position, options, convertEntry) { return map(flattenEntries(Core.getReferencedSymbolsForNode(position, node, program, sourceFiles, cancellationToken, options)), (entry) => convertEntry(entry, node, program.getTypeChecker())); } function getReferenceEntriesForNode(position, node, program, sourceFiles, cancellationToken, options = {}, sourceFilesSet = new Set(sourceFiles.map((f) => f.fileName))) { return flattenEntries(Core.getReferencedSymbolsForNode(position, node, program, sourceFiles, cancellationToken, options, sourceFilesSet)); } function flattenEntries(referenceSymbols) { return referenceSymbols && flatMap(referenceSymbols, (r) => r.references); } function definitionToReferencedSymbolDefinitionInfo(def, checker, originalNode) { const info = (() => { switch (def.type) { case 0: { const { symbol } = def; const { displayParts: displayParts2, kind: kind2 } = getDefinitionKindAndDisplayParts(symbol, checker, originalNode); const name2 = displayParts2.map((p) => p.text).join(""); const declaration = symbol.declarations && firstOrUndefined(symbol.declarations); const node = declaration ? getNameOfDeclaration(declaration) || declaration : originalNode; return { ...getFileAndTextSpanFromNode(node), name: name2, kind: kind2, displayParts: displayParts2, context: getContextNode(declaration) }; } case 1: { const { node } = def; return { ...getFileAndTextSpanFromNode(node), name: node.text, kind: "label", displayParts: [displayPart(node.text, 17)] }; } case 2: { const { node } = def; const name2 = tokenToString(node.kind); return { ...getFileAndTextSpanFromNode(node), name: name2, kind: "keyword", displayParts: [{ text: name2, kind: "keyword" }] }; } case 3: { const { node } = def; const symbol = checker.getSymbolAtLocation(node); const displayParts2 = symbol && ts_SymbolDisplay_exports.getSymbolDisplayPartsDocumentationAndSymbolKind(checker, symbol, node.getSourceFile(), getContainerNode(node), node).displayParts || [textPart("this")]; return { ...getFileAndTextSpanFromNode(node), name: "this", kind: "var", displayParts: displayParts2 }; } case 4: { const { node } = def; return { ...getFileAndTextSpanFromNode(node), name: node.text, kind: "var", displayParts: [displayPart(getTextOfNode(node), 8)] }; } case 5: { return { textSpan: createTextSpanFromRange(def.reference), sourceFile: def.file, name: def.reference.fileName, kind: "string", displayParts: [displayPart(`"${def.reference.fileName}"`, 8)] }; } default: return Debug.assertNever(def); } })(); const { sourceFile, textSpan, name, kind, displayParts, context } = info; return { containerKind: "", containerName: "", fileName: sourceFile.fileName, kind, name, textSpan, displayParts, ...toContextSpan(textSpan, sourceFile, context) }; } function getFileAndTextSpanFromNode(node) { const sourceFile = node.getSourceFile(); return { sourceFile, textSpan: getTextSpan(isComputedPropertyName(node) ? node.expression : node, sourceFile) }; } function getDefinitionKindAndDisplayParts(symbol, checker, node) { const meaning = Core.getIntersectingMeaningFromDeclarations(node, symbol); const enclosingDeclaration = symbol.declarations && firstOrUndefined(symbol.declarations) || node; const { displayParts, symbolKind } = ts_SymbolDisplay_exports.getSymbolDisplayPartsDocumentationAndSymbolKind(checker, symbol, enclosingDeclaration.getSourceFile(), enclosingDeclaration, enclosingDeclaration, meaning); return { displayParts, kind: symbolKind }; } function toRenameLocation(entry, originalNode, checker, providePrefixAndSuffixText, quotePreference) { return { ...entryToDocumentSpan(entry), ...providePrefixAndSuffixText && getPrefixAndSuffixText(entry, originalNode, checker, quotePreference) }; } function toReferencedSymbolEntry(entry, symbol) { const referenceEntry = toReferenceEntry(entry); if (!symbol) return referenceEntry; return { ...referenceEntry, isDefinition: entry.kind !== 0 && isDeclarationOfSymbol(entry.node, symbol) }; } function toReferenceEntry(entry) { const documentSpan = entryToDocumentSpan(entry); if (entry.kind === 0) { return { ...documentSpan, isWriteAccess: false }; } const { kind, node } = entry; return { ...documentSpan, isWriteAccess: isWriteAccessForReference(node), isInString: kind === 2 ? true : undefined }; } function entryToDocumentSpan(entry) { if (entry.kind === 0) { return { textSpan: entry.textSpan, fileName: entry.fileName }; } else { const sourceFile = entry.node.getSourceFile(); const textSpan = getTextSpan(entry.node, sourceFile); return { textSpan, fileName: sourceFile.fileName, ...toContextSpan(textSpan, sourceFile, entry.context) }; } } function getPrefixAndSuffixText(entry, originalNode, checker, quotePreference) { if (entry.kind !== 0 && (isIdentifier(originalNode) || isStringLiteralLike(originalNode))) { const { node, kind } = entry; const parent2 = node.parent; const name = originalNode.text; const isShorthandAssignment = isShorthandPropertyAssignment(parent2); if (isShorthandAssignment || isObjectBindingElementWithoutPropertyName(parent2) && parent2.name === node && parent2.dotDotDotToken === undefined) { const prefixColon = { prefixText: name + ": " }; const suffixColon = { suffixText: ": " + name }; if (kind === 3) { return prefixColon; } if (kind === 4) { return suffixColon; } if (isShorthandAssignment) { const grandParent = parent2.parent; if (isObjectLiteralExpression(grandParent) && isBinaryExpression(grandParent.parent) && isModuleExportsAccessExpression(grandParent.parent.left)) { return prefixColon; } return suffixColon; } else { return prefixColon; } } else if (isImportSpecifier(parent2) && !parent2.propertyName) { const originalSymbol = isExportSpecifier(originalNode.parent) ? checker.getExportSpecifierLocalTargetSymbol(originalNode.parent) : checker.getSymbolAtLocation(originalNode); return contains(originalSymbol.declarations, parent2) ? { prefixText: name + " as " } : emptyOptions; } else if (isExportSpecifier(parent2) && !parent2.propertyName) { return originalNode === entry.node || checker.getSymbolAtLocation(originalNode) === checker.getSymbolAtLocation(entry.node) ? { prefixText: name + " as " } : { suffixText: " as " + name }; } } if (entry.kind !== 0 && isNumericLiteral(entry.node) && isAccessExpression(entry.node.parent)) { const quote2 = getQuoteFromPreference(quotePreference); return { prefixText: quote2, suffixText: quote2 }; } return emptyOptions; } function toImplementationLocation(entry, checker) { const documentSpan = entryToDocumentSpan(entry); if (entry.kind !== 0) { const { node } = entry; return { ...documentSpan, ...implementationKindDisplayParts(node, checker) }; } else { return { ...documentSpan, kind: "", displayParts: [] }; } } function implementationKindDisplayParts(node, checker) { const symbol = checker.getSymbolAtLocation(isDeclaration(node) && node.name ? node.name : node); if (symbol) { return getDefinitionKindAndDisplayParts(symbol, checker, node); } else if (node.kind === 211) { return { kind: "interface", displayParts: [punctuationPart(21), textPart("object literal"), punctuationPart(22)] }; } else if (node.kind === 232) { return { kind: "local class", displayParts: [punctuationPart(21), textPart("anonymous local class"), punctuationPart(22)] }; } else { return { kind: getNodeKind(node), displayParts: [] }; } } function toHighlightSpan(entry) { const documentSpan = entryToDocumentSpan(entry); if (entry.kind === 0) { return { fileName: documentSpan.fileName, span: { textSpan: documentSpan.textSpan, kind: "reference" } }; } const writeAccess = isWriteAccessForReference(entry.node); const span = { textSpan: documentSpan.textSpan, kind: writeAccess ? "writtenReference" : "reference", isInString: entry.kind === 2 ? true : undefined, ...documentSpan.contextSpan && { contextSpan: documentSpan.contextSpan } }; return { fileName: documentSpan.fileName, span }; } function getTextSpan(node, sourceFile, endNode2) { let start = node.getStart(sourceFile); let end = (endNode2 || node).getEnd(); if (isStringLiteralLike(node) && end - start > 2) { Debug.assert(endNode2 === undefined); start += 1; end -= 1; } if ((endNode2 == null ? undefined : endNode2.kind) === 270) { end = endNode2.getFullStart(); } return createTextSpanFromBounds(start, end); } function getTextSpanOfEntry(entry) { return entry.kind === 0 ? entry.textSpan : getTextSpan(entry.node, entry.node.getSourceFile()); } function isWriteAccessForReference(node) { const decl = getDeclarationFromName(node); return !!decl && declarationIsWriteAccess(decl) || node.kind === 90 || isWriteAccess(node); } function isDeclarationOfSymbol(node, target) { var _a; if (!target) return false; const source = getDeclarationFromName(node) || (node.kind === 90 ? node.parent : isLiteralComputedPropertyDeclarationName(node) ? node.parent.parent : node.kind === 137 && isConstructorDeclaration(node.parent) ? node.parent.parent : undefined); const commonjsSource = source && isBinaryExpression(source) ? source.left : undefined; return !!(source && ((_a = target.declarations) == null ? undefined : _a.some((d) => d === source || d === commonjsSource))); } function declarationIsWriteAccess(decl) { if (!!(decl.flags & 33554432)) return true; switch (decl.kind) { case 227: case 209: case 264: case 232: case 90: case 267: case 307: case 282: case 274: case 272: case 277: case 265: case 339: case 347: case 292: case 268: case 271: case 275: case 281: case 170: case 305: case 266: case 169: return true; case 304: return !isArrayLiteralOrObjectLiteralDestructuringPattern(decl.parent); case 263: case 219: case 177: case 175: case 178: case 179: return !!decl.body; case 261: case 173: return !!decl.initializer || isCatchClause(decl.parent); case 174: case 172: case 349: case 342: return false; default: return Debug.failBadSyntaxKind(decl); } } var Core; ((Core2) => { function getReferencedSymbolsForNode(position, node, program, sourceFiles, cancellationToken, options = {}, sourceFilesSet = new Set(sourceFiles.map((f) => f.fileName))) { var _a, _b; node = getAdjustedNode2(node, options); if (isSourceFile(node)) { const resolvedRef = ts_GoToDefinition_exports.getReferenceAtPosition(node, position, program); if (!(resolvedRef == null ? undefined : resolvedRef.file)) { return; } const moduleSymbol = program.getTypeChecker().getMergedSymbol(resolvedRef.file.symbol); if (moduleSymbol) { return getReferencedSymbolsForModule(program, moduleSymbol, false, sourceFiles, sourceFilesSet); } const fileIncludeReasons = program.getFileIncludeReasons(); if (!fileIncludeReasons) { return; } return [{ definition: { type: 5, reference: resolvedRef.reference, file: node }, references: getReferencesForNonModule(resolvedRef.file, fileIncludeReasons, program) || emptyArray }]; } if (!options.implementations) { const special = getReferencedSymbolsSpecial(node, sourceFiles, cancellationToken); if (special) { return special; } } const checker = program.getTypeChecker(); const symbol = checker.getSymbolAtLocation(isConstructorDeclaration(node) && node.parent.name || node); if (!symbol) { if (!options.implementations && isStringLiteralLike(node)) { if (isModuleSpecifierLike(node)) { const fileIncludeReasons = program.getFileIncludeReasons(); const referencedFileName = (_b = (_a = program.getResolvedModuleFromModuleSpecifier(node)) == null ? undefined : _a.resolvedModule) == null ? undefined : _b.resolvedFileName; const referencedFile = referencedFileName ? program.getSourceFile(referencedFileName) : undefined; if (referencedFile) { return [{ definition: { type: 4, node }, references: getReferencesForNonModule(referencedFile, fileIncludeReasons, program) || emptyArray }]; } } return getReferencesForStringLiteral(node, sourceFiles, checker, cancellationToken); } return; } if (symbol.escapedName === "export=") { return getReferencedSymbolsForModule(program, symbol.parent, false, sourceFiles, sourceFilesSet); } const moduleReferences = getReferencedSymbolsForModuleIfDeclaredBySourceFile(symbol, program, sourceFiles, cancellationToken, options, sourceFilesSet); if (moduleReferences && !(symbol.flags & 33554432)) { return moduleReferences; } const aliasedSymbol = getMergedAliasedSymbolOfNamespaceExportDeclaration(node, symbol, checker); const moduleReferencesOfExportTarget = aliasedSymbol && getReferencedSymbolsForModuleIfDeclaredBySourceFile(aliasedSymbol, program, sourceFiles, cancellationToken, options, sourceFilesSet); const references = getReferencedSymbolsForSymbol(symbol, node, sourceFiles, sourceFilesSet, checker, cancellationToken, options); return mergeReferences(program, moduleReferences, references, moduleReferencesOfExportTarget); } Core2.getReferencedSymbolsForNode = getReferencedSymbolsForNode; function getAdjustedNode2(node, options) { if (options.use === 1) { node = getAdjustedReferenceLocation(node); } else if (options.use === 2) { node = getAdjustedRenameLocation(node); } return node; } Core2.getAdjustedNode = getAdjustedNode2; function getReferencesForFileName(fileName, program, sourceFiles, sourceFilesSet = new Set(sourceFiles.map((f) => f.fileName))) { var _a, _b; const moduleSymbol = (_a = program.getSourceFile(fileName)) == null ? undefined : _a.symbol; if (moduleSymbol) { return ((_b = getReferencedSymbolsForModule(program, moduleSymbol, false, sourceFiles, sourceFilesSet)[0]) == null ? undefined : _b.references) || emptyArray; } const fileIncludeReasons = program.getFileIncludeReasons(); const referencedFile = program.getSourceFile(fileName); return referencedFile && fileIncludeReasons && getReferencesForNonModule(referencedFile, fileIncludeReasons, program) || emptyArray; } Core2.getReferencesForFileName = getReferencesForFileName; function getReferencesForNonModule(referencedFile, refFileMap, program) { let entries; const references = refFileMap.get(referencedFile.path) || emptyArray; for (const ref of references) { if (isReferencedFile(ref)) { const referencingFile = program.getSourceFileByPath(ref.file); const location = getReferencedFileLocation(program, ref); if (isReferenceFileLocation(location)) { entries = append(entries, { kind: 0, fileName: referencingFile.fileName, textSpan: createTextSpanFromRange(location) }); } } } return entries; } function getMergedAliasedSymbolOfNamespaceExportDeclaration(node, symbol, checker) { if (node.parent && isNamespaceExportDeclaration(node.parent)) { const aliasedSymbol = checker.getAliasedSymbol(symbol); const targetSymbol = checker.getMergedSymbol(aliasedSymbol); if (aliasedSymbol !== targetSymbol) { return targetSymbol; } } return; } function getReferencedSymbolsForModuleIfDeclaredBySourceFile(symbol, program, sourceFiles, cancellationToken, options, sourceFilesSet) { const moduleSourceFile = symbol.flags & 1536 && symbol.declarations && find(symbol.declarations, isSourceFile); if (!moduleSourceFile) return; const exportEquals = symbol.exports.get("export="); const moduleReferences = getReferencedSymbolsForModule(program, symbol, !!exportEquals, sourceFiles, sourceFilesSet); if (!exportEquals || !sourceFilesSet.has(moduleSourceFile.fileName)) return moduleReferences; const checker = program.getTypeChecker(); symbol = skipAlias(exportEquals, checker); return mergeReferences(program, moduleReferences, getReferencedSymbolsForSymbol(symbol, undefined, sourceFiles, sourceFilesSet, checker, cancellationToken, options)); } function mergeReferences(program, ...referencesToMerge) { let result; for (const references of referencesToMerge) { if (!references || !references.length) continue; if (!result) { result = references; continue; } for (const entry of references) { if (!entry.definition || entry.definition.type !== 0) { result.push(entry); continue; } const symbol = entry.definition.symbol; const refIndex = findIndex(result, (ref) => !!ref.definition && ref.definition.type === 0 && ref.definition.symbol === symbol); if (refIndex === -1) { result.push(entry); continue; } const reference = result[refIndex]; result[refIndex] = { definition: reference.definition, references: reference.references.concat(entry.references).sort((entry1, entry2) => { const entry1File = getSourceFileIndexOfEntry(program, entry1); const entry2File = getSourceFileIndexOfEntry(program, entry2); if (entry1File !== entry2File) { return compareValues(entry1File, entry2File); } const entry1Span = getTextSpanOfEntry(entry1); const entry2Span = getTextSpanOfEntry(entry2); return entry1Span.start !== entry2Span.start ? compareValues(entry1Span.start, entry2Span.start) : compareValues(entry1Span.length, entry2Span.length); }) }; } } return result; } function getSourceFileIndexOfEntry(program, entry) { const sourceFile = entry.kind === 0 ? program.getSourceFile(entry.fileName) : entry.node.getSourceFile(); return program.getSourceFiles().indexOf(sourceFile); } function getReferencedSymbolsForModule(program, symbol, excludeImportTypeOfExportEquals, sourceFiles, sourceFilesSet) { Debug.assert(!!symbol.valueDeclaration); const references = mapDefined(findModuleReferences(program, sourceFiles, symbol), (reference) => { if (reference.kind === "import") { const parent2 = reference.literal.parent; if (isLiteralTypeNode(parent2)) { const importType = cast(parent2.parent, isImportTypeNode); if (excludeImportTypeOfExportEquals && !importType.qualifier) { return; } } return nodeEntry(reference.literal); } else if (reference.kind === "implicit") { const range = reference.literal.text !== externalHelpersModuleNameText && forEachChildRecursively(reference.referencingFile, (n) => !(n.transformFlags & 2) ? "skip" : isJsxElement(n) || isJsxSelfClosingElement(n) || isJsxFragment(n) ? n : undefined) || reference.referencingFile.statements[0] || reference.referencingFile; return nodeEntry(range); } else { return { kind: 0, fileName: reference.referencingFile.fileName, textSpan: createTextSpanFromRange(reference.ref) }; } }); if (symbol.declarations) { for (const decl of symbol.declarations) { switch (decl.kind) { case 308: break; case 268: if (sourceFilesSet.has(decl.getSourceFile().fileName)) { references.push(nodeEntry(decl.name)); } break; default: Debug.assert(!!(symbol.flags & 33554432), "Expected a module symbol to be declared by a SourceFile or ModuleDeclaration."); } } } const exported = symbol.exports.get("export="); if (exported == null ? undefined : exported.declarations) { for (const decl of exported.declarations) { const sourceFile = decl.getSourceFile(); if (sourceFilesSet.has(sourceFile.fileName)) { const node = isBinaryExpression(decl) && isPropertyAccessExpression(decl.left) ? decl.left.expression : isExportAssignment(decl) ? Debug.checkDefined(findChildOfKind(decl, 95, sourceFile)) : getNameOfDeclaration(decl) || decl; references.push(nodeEntry(node)); } } } return references.length ? [{ definition: { type: 0, symbol }, references }] : emptyArray; } function isReadonlyTypeOperator(node) { return node.kind === 148 && isTypeOperatorNode(node.parent) && node.parent.operator === 148; } function getReferencedSymbolsSpecial(node, sourceFiles, cancellationToken) { if (isTypeKeyword(node.kind)) { if (node.kind === 116 && isVoidExpression(node.parent)) { return; } if (node.kind === 148 && !isReadonlyTypeOperator(node)) { return; } return getAllReferencesForKeyword(sourceFiles, node.kind, cancellationToken, node.kind === 148 ? isReadonlyTypeOperator : undefined); } if (isImportMeta(node.parent) && node.parent.name === node) { return getAllReferencesForImportMeta(sourceFiles, cancellationToken); } if (isStaticModifier(node) && isClassStaticBlockDeclaration(node.parent)) { return [{ definition: { type: 2, node }, references: [nodeEntry(node)] }]; } if (isJumpStatementTarget(node)) { const labelDefinition = getTargetLabel(node.parent, node.text); return labelDefinition && getLabelReferencesInNode(labelDefinition.parent, labelDefinition); } else if (isLabelOfLabeledStatement(node)) { return getLabelReferencesInNode(node.parent, node); } if (isThis(node)) { return getReferencesForThisKeyword(node, sourceFiles, cancellationToken); } if (node.kind === 108) { return getReferencesForSuperKeyword(node); } return; } function getReferencedSymbolsForSymbol(originalSymbol, node, sourceFiles, sourceFilesSet, checker, cancellationToken, options) { const symbol = node && skipPastExportOrImportSpecifierOrUnion(originalSymbol, node, checker, !isForRenameWithPrefixAndSuffixText(options)) || originalSymbol; const searchMeaning = node && options.use !== 2 ? getIntersectingMeaningFromDeclarations(node, symbol) : 7; const result = []; const state = new State(sourceFiles, sourceFilesSet, node ? getSpecialSearchKind(node) : 0, checker, cancellationToken, searchMeaning, options, result); const exportSpecifier = !isForRenameWithPrefixAndSuffixText(options) || !symbol.declarations ? undefined : find(symbol.declarations, isExportSpecifier); if (exportSpecifier) { getReferencesAtExportSpecifier(exportSpecifier.name, symbol, exportSpecifier, state.createSearch(node, originalSymbol, undefined), state, true, true); } else if (node && node.kind === 90 && symbol.escapedName === "default" && symbol.parent) { addReference(node, symbol, state); searchForImportsOfExport(node, symbol, { exportingModuleSymbol: symbol.parent, exportKind: 1 }, state); } else { const search = state.createSearch(node, symbol, undefined, { allSearchSymbols: node ? populateSearchSymbolSet(symbol, node, checker, options.use === 2, !!options.providePrefixAndSuffixTextForRename, !!options.implementations) : [symbol] }); getReferencesInContainerOrFiles(symbol, state, search); } return result; } function getReferencesInContainerOrFiles(symbol, state, search) { const scope = getSymbolScope(symbol); if (scope) { getReferencesInContainer(scope, scope.getSourceFile(), search, state, !(isSourceFile(scope) && !contains(state.sourceFiles, scope))); } else { for (const sourceFile of state.sourceFiles) { state.cancellationToken.throwIfCancellationRequested(); searchForName(sourceFile, search, state); } } } function getSpecialSearchKind(node) { switch (node.kind) { case 177: case 137: return 1; case 80: if (isClassLike(node.parent)) { Debug.assert(node.parent.name === node); return 2; } default: return 0; } } function skipPastExportOrImportSpecifierOrUnion(symbol, node, checker, useLocalSymbolForExportSpecifier) { const { parent: parent2 } = node; if (isExportSpecifier(parent2) && useLocalSymbolForExportSpecifier) { return getLocalSymbolForExportSpecifier(node, symbol, parent2, checker); } return firstDefined(symbol.declarations, (decl) => { if (!decl.parent) { if (symbol.flags & 33554432) return; Debug.fail(`Unexpected symbol at ${Debug.formatSyntaxKind(node.kind)}: ${Debug.formatSymbol(symbol)}`); } return isTypeLiteralNode(decl.parent) && isUnionTypeNode(decl.parent.parent) ? checker.getPropertyOfType(checker.getTypeFromTypeNode(decl.parent.parent), symbol.name) : undefined; }); } let SpecialSearchKind; ((SpecialSearchKind2) => { SpecialSearchKind2[SpecialSearchKind2["None"] = 0] = "None"; SpecialSearchKind2[SpecialSearchKind2["Constructor"] = 1] = "Constructor"; SpecialSearchKind2[SpecialSearchKind2["Class"] = 2] = "Class"; })(SpecialSearchKind || (SpecialSearchKind = {})); function getNonModuleSymbolOfMergedModuleSymbol(symbol) { if (!(symbol.flags & (1536 | 33554432))) return; const decl = symbol.declarations && find(symbol.declarations, (d) => !isSourceFile(d) && !isModuleDeclaration(d)); return decl && decl.symbol; } class State { constructor(sourceFiles, sourceFilesSet, specialSearchKind, checker, cancellationToken, searchMeaning, options, result) { this.sourceFiles = sourceFiles; this.sourceFilesSet = sourceFilesSet; this.specialSearchKind = specialSearchKind; this.checker = checker; this.cancellationToken = cancellationToken; this.searchMeaning = searchMeaning; this.options = options; this.result = result; this.inheritsFromCache = /* @__PURE__ */ new Map; this.markSeenContainingTypeReference = nodeSeenTracker(); this.markSeenReExportRHS = nodeSeenTracker(); this.symbolIdToReferences = []; this.sourceFileToSeenSymbols = []; } includesSourceFile(sourceFile) { return this.sourceFilesSet.has(sourceFile.fileName); } getImportSearches(exportSymbol, exportInfo) { if (!this.importTracker) this.importTracker = createImportTracker(this.sourceFiles, this.sourceFilesSet, this.checker, this.cancellationToken); return this.importTracker(exportSymbol, exportInfo, this.options.use === 2); } createSearch(location, symbol, comingFrom, searchOptions = {}) { const { text = stripQuotes(symbolName(getLocalSymbolForExportDefault(symbol) || getNonModuleSymbolOfMergedModuleSymbol(symbol) || symbol)), allSearchSymbols = [symbol] } = searchOptions; const escapedText = escapeLeadingUnderscores(text); const parents = this.options.implementations && location ? getParentSymbolsOfPropertyAccess(location, symbol, this.checker) : undefined; return { symbol, comingFrom, text, escapedText, parents, allSearchSymbols, includes: (sym) => contains(allSearchSymbols, sym) }; } referenceAdder(searchSymbol) { const symbolId = getSymbolId(searchSymbol); let references = this.symbolIdToReferences[symbolId]; if (!references) { references = this.symbolIdToReferences[symbolId] = []; this.result.push({ definition: { type: 0, symbol: searchSymbol }, references }); } return (node, kind) => references.push(nodeEntry(node, kind)); } addStringOrCommentReference(fileName, textSpan) { this.result.push({ definition: undefined, references: [{ kind: 0, fileName, textSpan }] }); } markSearchedSymbols(sourceFile, symbols) { const sourceId = getNodeId(sourceFile); const seenSymbols = this.sourceFileToSeenSymbols[sourceId] || (this.sourceFileToSeenSymbols[sourceId] = /* @__PURE__ */ new Set); let anyNewSymbols = false; for (const sym of symbols) { anyNewSymbols = tryAddToSet(seenSymbols, getSymbolId(sym)) || anyNewSymbols; } return anyNewSymbols; } } function searchForImportsOfExport(exportLocation, exportSymbol, exportInfo, state) { const { importSearches, singleReferences, indirectUsers } = state.getImportSearches(exportSymbol, exportInfo); if (singleReferences.length) { const addRef = state.referenceAdder(exportSymbol); for (const singleRef of singleReferences) { if (shouldAddSingleReference(singleRef, state)) addRef(singleRef); } } for (const [importLocation, importSymbol] of importSearches) { getReferencesInSourceFile(importLocation.getSourceFile(), state.createSearch(importLocation, importSymbol, 1), state); } if (indirectUsers.length) { let indirectSearch; switch (exportInfo.exportKind) { case 0: indirectSearch = state.createSearch(exportLocation, exportSymbol, 1); break; case 1: indirectSearch = state.options.use === 2 ? undefined : state.createSearch(exportLocation, exportSymbol, 1, { text: "default" }); break; case 2: break; } if (indirectSearch) { for (const indirectUser of indirectUsers) { searchForName(indirectUser, indirectSearch, state); } } } } function eachExportReference(sourceFiles, checker, cancellationToken, exportSymbol, exportingModuleSymbol, exportName, isDefaultExport, cb) { const importTracker = createImportTracker(sourceFiles, new Set(sourceFiles.map((f) => f.fileName)), checker, cancellationToken); const { importSearches, indirectUsers, singleReferences } = importTracker(exportSymbol, { exportKind: isDefaultExport ? 1 : 0, exportingModuleSymbol }, false); for (const [importLocation] of importSearches) { cb(importLocation); } for (const singleReference of singleReferences) { if (isIdentifier(singleReference) && isImportTypeNode(singleReference.parent)) { cb(singleReference); } } for (const indirectUser of indirectUsers) { for (const node of getPossibleSymbolReferenceNodes(indirectUser, isDefaultExport ? "default" : exportName)) { const symbol = checker.getSymbolAtLocation(node); const hasExportAssignmentDeclaration = some(symbol == null ? undefined : symbol.declarations, (d) => tryCast(d, isExportAssignment) ? true : false); if (isIdentifier(node) && !isImportOrExportSpecifier(node.parent) && (symbol === exportSymbol || hasExportAssignmentDeclaration)) { cb(node); } } } } Core2.eachExportReference = eachExportReference; function shouldAddSingleReference(singleRef, state) { if (!hasMatchingMeaning(singleRef, state)) return false; if (state.options.use !== 2) return true; if (!isIdentifier(singleRef) && !isImportOrExportSpecifier(singleRef.parent)) return false; return !(isImportOrExportSpecifier(singleRef.parent) && moduleExportNameIsDefault(singleRef)); } function searchForImportedSymbol(symbol, state) { if (!symbol.declarations) return; for (const declaration of symbol.declarations) { const exportingFile = declaration.getSourceFile(); getReferencesInSourceFile(exportingFile, state.createSearch(declaration, symbol, 0), state, state.includesSourceFile(exportingFile)); } } function searchForName(sourceFile, search, state) { if (getNameTable(sourceFile).get(search.escapedText) !== undefined) { getReferencesInSourceFile(sourceFile, search, state); } } function getPropertySymbolOfDestructuringAssignment(location, checker) { return isArrayLiteralOrObjectLiteralDestructuringPattern(location.parent.parent) ? checker.getPropertySymbolOfDestructuringAssignment(location) : undefined; } function getSymbolScope(symbol) { const { declarations, flags, parent: parent2, valueDeclaration } = symbol; if (valueDeclaration && (valueDeclaration.kind === 219 || valueDeclaration.kind === 232)) { return valueDeclaration; } if (!declarations) { return; } if (flags & (4 | 8192)) { const privateDeclaration = find(declarations, (d) => hasEffectiveModifier(d, 2) || isPrivateIdentifierClassElementDeclaration(d)); if (privateDeclaration) { return getAncestor(privateDeclaration, 264); } return; } if (declarations.some(isObjectBindingElementWithoutPropertyName)) { return; } const exposedByParent = parent2 && !(symbol.flags & 262144); if (exposedByParent && !(isExternalModuleSymbol(parent2) && !parent2.globalExports)) { return; } let scope; for (const declaration of declarations) { const container = getContainerNode(declaration); if (scope && scope !== container) { return; } if (!container || container.kind === 308 && !isExternalOrCommonJsModule(container)) { return; } scope = container; if (isFunctionExpression(scope)) { let next; while (next = getNextJSDocCommentLocation(scope)) { scope = next; } } } return exposedByParent ? scope.getSourceFile() : scope; } function isSymbolReferencedInFile(definition, checker, sourceFile, searchContainer = sourceFile) { return eachSymbolReferenceInFile(definition, checker, sourceFile, () => true, searchContainer) || false; } Core2.isSymbolReferencedInFile = isSymbolReferencedInFile; function eachSymbolReferenceInFile(definition, checker, sourceFile, cb, searchContainer = sourceFile) { const symbol = isParameterPropertyDeclaration(definition.parent, definition.parent.parent) ? first(checker.getSymbolsOfParameterPropertyDeclaration(definition.parent, definition.text)) : checker.getSymbolAtLocation(definition); if (!symbol) return; for (const token of getPossibleSymbolReferenceNodes(sourceFile, symbol.name, searchContainer)) { if (!isIdentifier(token) || token === definition || token.escapedText !== definition.escapedText) continue; const referenceSymbol = checker.getSymbolAtLocation(token); if (referenceSymbol === symbol || checker.getShorthandAssignmentValueSymbol(token.parent) === symbol || isExportSpecifier(token.parent) && getLocalSymbolForExportSpecifier(token, referenceSymbol, token.parent, checker) === symbol) { const res = cb(token); if (res) return res; } } } Core2.eachSymbolReferenceInFile = eachSymbolReferenceInFile; function getTopMostDeclarationNamesInFile(declarationName, sourceFile) { const candidates = filter(getPossibleSymbolReferenceNodes(sourceFile, declarationName), (name) => !!getDeclarationFromName(name)); return candidates.reduce((topMost, decl) => { const depth = getDepth(decl); if (!some(topMost.declarationNames) || depth === topMost.depth) { topMost.declarationNames.push(decl); topMost.depth = depth; } else if (depth < topMost.depth) { topMost.declarationNames = [decl]; topMost.depth = depth; } return topMost; }, { depth: Infinity, declarationNames: [] }).declarationNames; function getDepth(declaration) { let depth = 0; while (declaration) { declaration = getContainerNode(declaration); depth++; } return depth; } } Core2.getTopMostDeclarationNamesInFile = getTopMostDeclarationNamesInFile; function someSignatureUsage(signature, sourceFiles, checker, cb) { if (!signature.name || !isIdentifier(signature.name)) return false; const symbol = Debug.checkDefined(checker.getSymbolAtLocation(signature.name)); for (const sourceFile of sourceFiles) { for (const name of getPossibleSymbolReferenceNodes(sourceFile, symbol.name)) { if (!isIdentifier(name) || name === signature.name || name.escapedText !== signature.name.escapedText) continue; const called = climbPastPropertyAccess(name); const call = isCallExpression(called.parent) && called.parent.expression === called ? called.parent : undefined; const referenceSymbol = checker.getSymbolAtLocation(name); if (referenceSymbol && checker.getRootSymbols(referenceSymbol).some((s) => s === symbol)) { if (cb(name, call)) { return true; } } } } return false; } Core2.someSignatureUsage = someSignatureUsage; function getPossibleSymbolReferenceNodes(sourceFile, symbolName2, container = sourceFile) { return mapDefined(getPossibleSymbolReferencePositions(sourceFile, symbolName2, container), (pos) => { const referenceLocation = getTouchingPropertyName(sourceFile, pos); return referenceLocation === sourceFile ? undefined : referenceLocation; }); } function getPossibleSymbolReferencePositions(sourceFile, symbolName2, container = sourceFile) { const positions = []; if (!symbolName2 || !symbolName2.length) { return positions; } const text = sourceFile.text; const sourceLength = text.length; const symbolNameLength = symbolName2.length; let position = text.indexOf(symbolName2, container.pos); while (position >= 0) { if (position > container.end) break; const endPosition = position + symbolNameLength; if ((position === 0 || !isIdentifierPart(text.charCodeAt(position - 1), 99)) && (endPosition === sourceLength || !isIdentifierPart(text.charCodeAt(endPosition), 99))) { positions.push(position); } position = text.indexOf(symbolName2, position + symbolNameLength + 1); } return positions; } function getLabelReferencesInNode(container, targetLabel) { const sourceFile = container.getSourceFile(); const labelName = targetLabel.text; const references = mapDefined(getPossibleSymbolReferenceNodes(sourceFile, labelName, container), (node) => node === targetLabel || isJumpStatementTarget(node) && getTargetLabel(node, labelName) === targetLabel ? nodeEntry(node) : undefined); return [{ definition: { type: 1, node: targetLabel }, references }]; } function isValidReferencePosition(node, searchSymbolName) { switch (node.kind) { case 81: if (isJSDocMemberName(node.parent)) { return true; } case 80: return node.text.length === searchSymbolName.length; case 15: case 11: { const str = node; return str.text.length === searchSymbolName.length && (isLiteralNameOfPropertyDeclarationOrIndexAccess(str) || isNameOfModuleDeclaration(node) || isExpressionOfExternalModuleImportEqualsDeclaration(node) || isCallExpression(node.parent) && isBindableObjectDefinePropertyCall(node.parent) && node.parent.arguments[1] === node || isImportOrExportSpecifier(node.parent)); } case 9: return isLiteralNameOfPropertyDeclarationOrIndexAccess(node) && node.text.length === searchSymbolName.length; case 90: return "default".length === searchSymbolName.length; default: return false; } } function getAllReferencesForImportMeta(sourceFiles, cancellationToken) { const references = flatMap(sourceFiles, (sourceFile) => { cancellationToken.throwIfCancellationRequested(); return mapDefined(getPossibleSymbolReferenceNodes(sourceFile, "meta", sourceFile), (node) => { const parent2 = node.parent; if (isImportMeta(parent2)) { return nodeEntry(parent2); } }); }); return references.length ? [{ definition: { type: 2, node: references[0].node }, references }] : undefined; } function getAllReferencesForKeyword(sourceFiles, keywordKind, cancellationToken, filter2) { const references = flatMap(sourceFiles, (sourceFile) => { cancellationToken.throwIfCancellationRequested(); return mapDefined(getPossibleSymbolReferenceNodes(sourceFile, tokenToString(keywordKind), sourceFile), (referenceLocation) => { if (referenceLocation.kind === keywordKind && (!filter2 || filter2(referenceLocation))) { return nodeEntry(referenceLocation); } }); }); return references.length ? [{ definition: { type: 2, node: references[0].node }, references }] : undefined; } function getReferencesInSourceFile(sourceFile, search, state, addReferencesHere = true) { state.cancellationToken.throwIfCancellationRequested(); return getReferencesInContainer(sourceFile, sourceFile, search, state, addReferencesHere); } function getReferencesInContainer(container, sourceFile, search, state, addReferencesHere) { if (!state.markSearchedSymbols(sourceFile, search.allSearchSymbols)) { return; } for (const position of getPossibleSymbolReferencePositions(sourceFile, search.text, container)) { getReferencesAtLocation(sourceFile, position, search, state, addReferencesHere); } } function hasMatchingMeaning(referenceLocation, state) { return !!(getMeaningFromLocation(referenceLocation) & state.searchMeaning); } function getReferencesAtLocation(sourceFile, position, search, state, addReferencesHere) { const referenceLocation = getTouchingPropertyName(sourceFile, position); if (!isValidReferencePosition(referenceLocation, search.text)) { if (!state.options.implementations && (state.options.findInStrings && isInString(sourceFile, position) || state.options.findInComments && isInNonReferenceComment(sourceFile, position))) { state.addStringOrCommentReference(sourceFile.fileName, createTextSpan(position, search.text.length)); } return; } if (!hasMatchingMeaning(referenceLocation, state)) return; let referenceSymbol = state.checker.getSymbolAtLocation(referenceLocation); if (!referenceSymbol) { return; } const parent2 = referenceLocation.parent; if (isImportSpecifier(parent2) && parent2.propertyName === referenceLocation) { return; } if (isExportSpecifier(parent2)) { Debug.assert(referenceLocation.kind === 80 || referenceLocation.kind === 11); getReferencesAtExportSpecifier(referenceLocation, referenceSymbol, parent2, search, state, addReferencesHere); return; } if (isJSDocPropertyLikeTag(parent2) && parent2.isNameFirst && parent2.typeExpression && isJSDocTypeLiteral(parent2.typeExpression.type) && parent2.typeExpression.type.jsDocPropertyTags && length(parent2.typeExpression.type.jsDocPropertyTags)) { getReferencesAtJSDocTypeLiteral(parent2.typeExpression.type.jsDocPropertyTags, referenceLocation, search, state); return; } const relatedSymbol = getRelatedSymbol(search, referenceSymbol, referenceLocation, state); if (!relatedSymbol) { getReferenceForShorthandProperty(referenceSymbol, search, state); return; } switch (state.specialSearchKind) { case 0: if (addReferencesHere) addReference(referenceLocation, relatedSymbol, state); break; case 1: addConstructorReferences(referenceLocation, sourceFile, search, state); break; case 2: addClassStaticThisReferences(referenceLocation, search, state); break; default: Debug.assertNever(state.specialSearchKind); } if (isInJSFile(referenceLocation) && isBindingElement(referenceLocation.parent) && isVariableDeclarationInitializedToBareOrAccessedRequire(referenceLocation.parent.parent.parent)) { referenceSymbol = referenceLocation.parent.symbol; if (!referenceSymbol) return; } getImportOrExportReferences(referenceLocation, referenceSymbol, search, state); } function getReferencesAtJSDocTypeLiteral(jsDocPropertyTags, referenceLocation, search, state) { const addRef = state.referenceAdder(search.symbol); addReference(referenceLocation, search.symbol, state); forEach(jsDocPropertyTags, (propTag) => { if (isQualifiedName(propTag.name)) { addRef(propTag.name.left); } }); } function getReferencesAtExportSpecifier(referenceLocation, referenceSymbol, exportSpecifier, search, state, addReferencesHere, alwaysGetReferences) { Debug.assert(!alwaysGetReferences || !!state.options.providePrefixAndSuffixTextForRename, "If alwaysGetReferences is true, then prefix/suffix text must be enabled"); const { parent: parent2, propertyName, name } = exportSpecifier; const exportDeclaration = parent2.parent; const localSymbol = getLocalSymbolForExportSpecifier(referenceLocation, referenceSymbol, exportSpecifier, state.checker); if (!alwaysGetReferences && !search.includes(localSymbol)) { return; } if (!propertyName) { if (!(state.options.use === 2 && moduleExportNameIsDefault(name))) { addRef(); } } else if (referenceLocation === propertyName) { if (!exportDeclaration.moduleSpecifier) { addRef(); } if (addReferencesHere && state.options.use !== 2 && state.markSeenReExportRHS(name)) { addReference(name, Debug.checkDefined(exportSpecifier.symbol), state); } } else { if (state.markSeenReExportRHS(referenceLocation)) { addRef(); } } if (!isForRenameWithPrefixAndSuffixText(state.options) || alwaysGetReferences) { const isDefaultExport = moduleExportNameIsDefault(referenceLocation) || moduleExportNameIsDefault(exportSpecifier.name); const exportKind = isDefaultExport ? 1 : 0; const exportSymbol = Debug.checkDefined(exportSpecifier.symbol); const exportInfo = getExportInfo(exportSymbol, exportKind, state.checker); if (exportInfo) { searchForImportsOfExport(referenceLocation, exportSymbol, exportInfo, state); } } if (search.comingFrom !== 1 && exportDeclaration.moduleSpecifier && !propertyName && !isForRenameWithPrefixAndSuffixText(state.options)) { const imported = state.checker.getExportSpecifierLocalTargetSymbol(exportSpecifier); if (imported) searchForImportedSymbol(imported, state); } function addRef() { if (addReferencesHere) addReference(referenceLocation, localSymbol, state); } } function getLocalSymbolForExportSpecifier(referenceLocation, referenceSymbol, exportSpecifier, checker) { return isExportSpecifierAlias(referenceLocation, exportSpecifier) && checker.getExportSpecifierLocalTargetSymbol(exportSpecifier) || referenceSymbol; } function isExportSpecifierAlias(referenceLocation, exportSpecifier) { const { parent: parent2, propertyName, name } = exportSpecifier; Debug.assert(propertyName === referenceLocation || name === referenceLocation); if (propertyName) { return propertyName === referenceLocation; } else { return !parent2.parent.moduleSpecifier; } } function getImportOrExportReferences(referenceLocation, referenceSymbol, search, state) { const importOrExport = getImportOrExportSymbol(referenceLocation, referenceSymbol, state.checker, search.comingFrom === 1); if (!importOrExport) return; const { symbol } = importOrExport; if (importOrExport.kind === 0) { if (!isForRenameWithPrefixAndSuffixText(state.options)) { searchForImportedSymbol(symbol, state); } } else { searchForImportsOfExport(referenceLocation, symbol, importOrExport.exportInfo, state); } } function getReferenceForShorthandProperty({ flags, valueDeclaration }, search, state) { const shorthandValueSymbol = state.checker.getShorthandAssignmentValueSymbol(valueDeclaration); const name = valueDeclaration && getNameOfDeclaration(valueDeclaration); if (!(flags & 33554432) && name && search.includes(shorthandValueSymbol)) { addReference(name, shorthandValueSymbol, state); } } function addReference(referenceLocation, relatedSymbol, state) { const { kind, symbol } = "kind" in relatedSymbol ? relatedSymbol : { kind: undefined, symbol: relatedSymbol }; if (state.options.use === 2 && referenceLocation.kind === 90) { return; } const addRef = state.referenceAdder(symbol); if (state.options.implementations) { addImplementationReferences(referenceLocation, addRef, state); } else { addRef(referenceLocation, kind); } } function addConstructorReferences(referenceLocation, sourceFile, search, state) { if (isNewExpressionTarget(referenceLocation)) { addReference(referenceLocation, search.symbol, state); } const pusher = () => state.referenceAdder(search.symbol); if (isClassLike(referenceLocation.parent)) { Debug.assert(referenceLocation.kind === 90 || referenceLocation.parent.name === referenceLocation); findOwnConstructorReferences(search.symbol, sourceFile, pusher()); } else { const classExtending = tryGetClassByExtendingIdentifier(referenceLocation); if (classExtending) { findSuperConstructorAccesses(classExtending, pusher()); findInheritedConstructorReferences(classExtending, state); } } } function addClassStaticThisReferences(referenceLocation, search, state) { addReference(referenceLocation, search.symbol, state); const classLike = referenceLocation.parent; if (state.options.use === 2 || !isClassLike(classLike)) return; Debug.assert(classLike.name === referenceLocation); const addRef = state.referenceAdder(search.symbol); for (const member of classLike.members) { if (!(isMethodOrAccessor(member) && isStatic(member))) { continue; } if (member.body) { member.body.forEachChild(function cb(node) { if (node.kind === 110) { addRef(node); } else if (!isFunctionLike(node) && !isClassLike(node)) { node.forEachChild(cb); } }); } } } function findOwnConstructorReferences(classSymbol, sourceFile, addNode) { const constructorSymbol = getClassConstructorSymbol(classSymbol); if (constructorSymbol && constructorSymbol.declarations) { for (const decl of constructorSymbol.declarations) { const ctrKeyword = findChildOfKind(decl, 137, sourceFile); Debug.assert(decl.kind === 177 && !!ctrKeyword); addNode(ctrKeyword); } } if (classSymbol.exports) { classSymbol.exports.forEach((member) => { const decl = member.valueDeclaration; if (decl && decl.kind === 175) { const body = decl.body; if (body) { forEachDescendantOfKind(body, 110, (thisKeyword) => { if (isNewExpressionTarget(thisKeyword)) { addNode(thisKeyword); } }); } } }); } } function getClassConstructorSymbol(classSymbol) { return classSymbol.members && classSymbol.members.get("__constructor"); } function findSuperConstructorAccesses(classDeclaration, addNode) { const constructor = getClassConstructorSymbol(classDeclaration.symbol); if (!(constructor && constructor.declarations)) { return; } for (const decl of constructor.declarations) { Debug.assert(decl.kind === 177); const body = decl.body; if (body) { forEachDescendantOfKind(body, 108, (node) => { if (isCallExpressionTarget(node)) { addNode(node); } }); } } } function hasOwnConstructor(classDeclaration) { return !!getClassConstructorSymbol(classDeclaration.symbol); } function findInheritedConstructorReferences(classDeclaration, state) { if (hasOwnConstructor(classDeclaration)) return; const classSymbol = classDeclaration.symbol; const search = state.createSearch(undefined, classSymbol, undefined); getReferencesInContainerOrFiles(classSymbol, state, search); } function addImplementationReferences(refNode, addReference2, state) { if (isDeclarationName(refNode) && isImplementation(refNode.parent)) { addReference2(refNode); return; } if (refNode.kind !== 80) { return; } if (refNode.parent.kind === 305) { getReferenceEntriesForShorthandPropertyAssignment(refNode, state.checker, addReference2); } const containingNode = getContainingNodeIfInHeritageClause(refNode); if (containingNode) { addReference2(containingNode); return; } const typeNode = findAncestor(refNode, (a) => !isQualifiedName(a.parent) && !isTypeNode(a.parent) && !isTypeElement(a.parent)); const typeHavingNode = typeNode.parent; if (hasType(typeHavingNode) && typeHavingNode.type === typeNode && state.markSeenContainingTypeReference(typeHavingNode)) { if (hasInitializer(typeHavingNode)) { addIfImplementation(typeHavingNode.initializer); } else if (isFunctionLike(typeHavingNode) && typeHavingNode.body) { const body = typeHavingNode.body; if (body.kind === 242) { forEachReturnStatement(body, (returnStatement) => { if (returnStatement.expression) addIfImplementation(returnStatement.expression); }); } else { addIfImplementation(body); } } else if (isAssertionExpression(typeHavingNode) || isSatisfiesExpression(typeHavingNode)) { addIfImplementation(typeHavingNode.expression); } } function addIfImplementation(e) { if (isImplementationExpression(e)) addReference2(e); } } function getContainingNodeIfInHeritageClause(node) { return isIdentifier(node) || isPropertyAccessExpression(node) ? getContainingNodeIfInHeritageClause(node.parent) : isExpressionWithTypeArguments(node) ? tryCast(node.parent.parent, or(isClassLike, isInterfaceDeclaration)) : undefined; } function isImplementationExpression(node) { switch (node.kind) { case 218: return isImplementationExpression(node.expression); case 220: case 219: case 211: case 232: case 210: return true; default: return false; } } function explicitlyInheritsFrom(symbol, parent2, cachedResults, checker) { if (symbol === parent2) { return true; } const key = getSymbolId(symbol) + "," + getSymbolId(parent2); const cached = cachedResults.get(key); if (cached !== undefined) { return cached; } cachedResults.set(key, false); const inherits = !!symbol.declarations && symbol.declarations.some((declaration) => getAllSuperTypeNodes(declaration).some((typeReference) => { const type = checker.getTypeAtLocation(typeReference); return !!type && !!type.symbol && explicitlyInheritsFrom(type.symbol, parent2, cachedResults, checker); })); cachedResults.set(key, inherits); return inherits; } function getReferencesForSuperKeyword(superKeyword) { let searchSpaceNode = getSuperContainer(superKeyword, false); if (!searchSpaceNode) { return; } let staticFlag = 256; switch (searchSpaceNode.kind) { case 173: case 172: case 175: case 174: case 177: case 178: case 179: staticFlag &= getSyntacticModifierFlags(searchSpaceNode); searchSpaceNode = searchSpaceNode.parent; break; default: return; } const sourceFile = searchSpaceNode.getSourceFile(); const references = mapDefined(getPossibleSymbolReferenceNodes(sourceFile, "super", searchSpaceNode), (node) => { if (node.kind !== 108) { return; } const container = getSuperContainer(node, false); return container && isStatic(container) === !!staticFlag && container.parent.symbol === searchSpaceNode.symbol ? nodeEntry(node) : undefined; }); return [{ definition: { type: 0, symbol: searchSpaceNode.symbol }, references }]; } function isParameterName(node) { return node.kind === 80 && node.parent.kind === 170 && node.parent.name === node; } function getReferencesForThisKeyword(thisOrSuperKeyword, sourceFiles, cancellationToken) { let searchSpaceNode = getThisContainer(thisOrSuperKeyword, false, false); let staticFlag = 256; switch (searchSpaceNode.kind) { case 175: case 174: if (isObjectLiteralMethod(searchSpaceNode)) { staticFlag &= getSyntacticModifierFlags(searchSpaceNode); searchSpaceNode = searchSpaceNode.parent; break; } case 173: case 172: case 177: case 178: case 179: staticFlag &= getSyntacticModifierFlags(searchSpaceNode); searchSpaceNode = searchSpaceNode.parent; break; case 308: if (isExternalModule(searchSpaceNode) || isParameterName(thisOrSuperKeyword)) { return; } case 263: case 219: break; default: return; } const references = flatMap(searchSpaceNode.kind === 308 ? sourceFiles : [searchSpaceNode.getSourceFile()], (sourceFile) => { cancellationToken.throwIfCancellationRequested(); return getPossibleSymbolReferenceNodes(sourceFile, "this", isSourceFile(searchSpaceNode) ? sourceFile : searchSpaceNode).filter((node) => { if (!isThis(node)) { return false; } const container = getThisContainer(node, false, false); if (!canHaveSymbol(container)) return false; switch (searchSpaceNode.kind) { case 219: case 263: return searchSpaceNode.symbol === container.symbol; case 175: case 174: return isObjectLiteralMethod(searchSpaceNode) && searchSpaceNode.symbol === container.symbol; case 232: case 264: case 211: return container.parent && canHaveSymbol(container.parent) && searchSpaceNode.symbol === container.parent.symbol && isStatic(container) === !!staticFlag; case 308: return container.kind === 308 && !isExternalModule(container) && !isParameterName(node); } }); }).map((n) => nodeEntry(n)); const thisParameter = firstDefined(references, (r) => isParameter(r.node.parent) ? r.node : undefined); return [{ definition: { type: 3, node: thisParameter || thisOrSuperKeyword }, references }]; } function getReferencesForStringLiteral(node, sourceFiles, checker, cancellationToken) { const type = getContextualTypeFromParentOrAncestorTypeNode(node, checker); const references = flatMap(sourceFiles, (sourceFile) => { cancellationToken.throwIfCancellationRequested(); return mapDefined(getPossibleSymbolReferenceNodes(sourceFile, node.text), (ref) => { if (isStringLiteralLike(ref) && ref.text === node.text) { if (type) { const refType = getContextualTypeFromParentOrAncestorTypeNode(ref, checker); if (type !== checker.getStringType() && (type === refType || isStringLiteralPropertyReference(ref, checker))) { return nodeEntry(ref, 2); } } else { return isNoSubstitutionTemplateLiteral(ref) && !rangeIsOnSingleLine(ref, sourceFile) ? undefined : nodeEntry(ref, 2); } } }); }); return [{ definition: { type: 4, node }, references }]; } function isStringLiteralPropertyReference(node, checker) { if (isPropertySignature(node.parent)) { return checker.getPropertyOfType(checker.getTypeAtLocation(node.parent.parent), node.text); } } function populateSearchSymbolSet(symbol, location, checker, isForRename, providePrefixAndSuffixText, implementations) { const result = []; forEachRelatedSymbol(symbol, location, checker, isForRename, !(isForRename && providePrefixAndSuffixText), (sym, root, base) => { if (base) { if (isStaticSymbol(symbol) !== isStaticSymbol(base)) { base = undefined; } } result.push(base || root || sym); }, () => !implementations); return result; } function forEachRelatedSymbol(symbol, location, checker, isForRenamePopulateSearchSymbolSet, onlyIncludeBindingElementAtReferenceLocation, cbSymbol, allowBaseTypes) { const containingObjectLiteralElement = getContainingObjectLiteralElement(location); if (containingObjectLiteralElement) { const shorthandValueSymbol = checker.getShorthandAssignmentValueSymbol(location.parent); if (shorthandValueSymbol && isForRenamePopulateSearchSymbolSet) { return cbSymbol(shorthandValueSymbol, undefined, undefined, 3); } const contextualType = checker.getContextualType(containingObjectLiteralElement.parent); const res2 = contextualType && firstDefined(getPropertySymbolsFromContextualType(containingObjectLiteralElement, checker, contextualType, true), (sym) => fromRoot(sym, 4)); if (res2) return res2; const propertySymbol = getPropertySymbolOfDestructuringAssignment(location, checker); const res1 = propertySymbol && cbSymbol(propertySymbol, undefined, undefined, 4); if (res1) return res1; const res22 = shorthandValueSymbol && cbSymbol(shorthandValueSymbol, undefined, undefined, 3); if (res22) return res22; } const aliasedSymbol = getMergedAliasedSymbolOfNamespaceExportDeclaration(location, symbol, checker); if (aliasedSymbol) { const res2 = cbSymbol(aliasedSymbol, undefined, undefined, 1); if (res2) return res2; } const res = fromRoot(symbol); if (res) return res; if (symbol.valueDeclaration && isParameterPropertyDeclaration(symbol.valueDeclaration, symbol.valueDeclaration.parent)) { const paramProps = checker.getSymbolsOfParameterPropertyDeclaration(cast(symbol.valueDeclaration, isParameter), symbol.name); Debug.assert(paramProps.length === 2 && !!(paramProps[0].flags & 1) && !!(paramProps[1].flags & 4)); return fromRoot(symbol.flags & 1 ? paramProps[1] : paramProps[0]); } const exportSpecifier = getDeclarationOfKind(symbol, 282); if (!isForRenamePopulateSearchSymbolSet || exportSpecifier && !exportSpecifier.propertyName) { const localSymbol = exportSpecifier && checker.getExportSpecifierLocalTargetSymbol(exportSpecifier); if (localSymbol) { const res2 = cbSymbol(localSymbol, undefined, undefined, 1); if (res2) return res2; } } if (!isForRenamePopulateSearchSymbolSet) { let bindingElementPropertySymbol; if (onlyIncludeBindingElementAtReferenceLocation) { bindingElementPropertySymbol = isObjectBindingElementWithoutPropertyName(location.parent) ? getPropertySymbolFromBindingElement(checker, location.parent) : undefined; } else { bindingElementPropertySymbol = getPropertySymbolOfObjectBindingPatternWithoutPropertyName(symbol, checker); } return bindingElementPropertySymbol && fromRoot(bindingElementPropertySymbol, 4); } Debug.assert(isForRenamePopulateSearchSymbolSet); const includeOriginalSymbolOfBindingElement = onlyIncludeBindingElementAtReferenceLocation; if (includeOriginalSymbolOfBindingElement) { const bindingElementPropertySymbol = getPropertySymbolOfObjectBindingPatternWithoutPropertyName(symbol, checker); return bindingElementPropertySymbol && fromRoot(bindingElementPropertySymbol, 4); } function fromRoot(sym, kind) { return firstDefined(checker.getRootSymbols(sym), (rootSymbol) => cbSymbol(sym, rootSymbol, undefined, kind) || (rootSymbol.parent && rootSymbol.parent.flags & (32 | 64) && allowBaseTypes(rootSymbol) ? getPropertySymbolsFromBaseTypes(rootSymbol.parent, rootSymbol.name, checker, (base) => cbSymbol(sym, rootSymbol, base, kind)) : undefined)); } function getPropertySymbolOfObjectBindingPatternWithoutPropertyName(symbol2, checker2) { const bindingElement = getDeclarationOfKind(symbol2, 209); if (bindingElement && isObjectBindingElementWithoutPropertyName(bindingElement)) { return getPropertySymbolFromBindingElement(checker2, bindingElement); } } } function getPropertySymbolsFromBaseTypes(symbol, propertyName, checker, cb) { const seen = /* @__PURE__ */ new Set; return recur(symbol); function recur(symbol2) { if (!(symbol2.flags & (32 | 64)) || !addToSeen(seen, symbol2)) return; return firstDefined(symbol2.declarations, (declaration) => firstDefined(getAllSuperTypeNodes(declaration), (typeReference) => { const type = checker.getTypeAtLocation(typeReference); const propertySymbol = type.symbol && checker.getPropertyOfType(type, propertyName); return propertySymbol && firstDefined(checker.getRootSymbols(propertySymbol), cb) || type.symbol && recur(type.symbol); })); } } function isStaticSymbol(symbol) { if (!symbol.valueDeclaration) return false; const modifierFlags = getEffectiveModifierFlags(symbol.valueDeclaration); return !!(modifierFlags & 256); } function getRelatedSymbol(search, referenceSymbol, referenceLocation, state) { const { checker } = state; return forEachRelatedSymbol(referenceSymbol, referenceLocation, checker, false, state.options.use !== 2 || !!state.options.providePrefixAndSuffixTextForRename, (sym, rootSymbol, baseSymbol, kind) => { if (baseSymbol) { if (isStaticSymbol(referenceSymbol) !== isStaticSymbol(baseSymbol)) { baseSymbol = undefined; } } return search.includes(baseSymbol || rootSymbol || sym) ? { symbol: rootSymbol && !(getCheckFlags(sym) & 6) ? rootSymbol : sym, kind } : undefined; }, (rootSymbol) => !(search.parents && !search.parents.some((parent2) => explicitlyInheritsFrom(rootSymbol.parent, parent2, state.inheritsFromCache, checker)))); } function getIntersectingMeaningFromDeclarations(node, symbol) { let meaning = getMeaningFromLocation(node); const { declarations } = symbol; if (declarations) { let lastIterationMeaning; do { lastIterationMeaning = meaning; for (const declaration of declarations) { const declarationMeaning = getMeaningFromDeclaration(declaration); if (declarationMeaning & meaning) { meaning |= declarationMeaning; } } } while (meaning !== lastIterationMeaning); } return meaning; } Core2.getIntersectingMeaningFromDeclarations = getIntersectingMeaningFromDeclarations; function isImplementation(node) { return node.flags & 33554432 ? !(isInterfaceDeclaration(node) || isTypeAliasDeclaration(node)) : isVariableLike(node) ? hasInitializer(node) : isFunctionLikeDeclaration(node) ? !!node.body : isClassLike(node) || isModuleOrEnumDeclaration(node); } function getReferenceEntriesForShorthandPropertyAssignment(node, checker, addReference2) { const refSymbol = checker.getSymbolAtLocation(node); const shorthandSymbol = checker.getShorthandAssignmentValueSymbol(refSymbol.valueDeclaration); if (shorthandSymbol) { for (const declaration of shorthandSymbol.getDeclarations()) { if (getMeaningFromDeclaration(declaration) & 1) { addReference2(declaration); } } } } Core2.getReferenceEntriesForShorthandPropertyAssignment = getReferenceEntriesForShorthandPropertyAssignment; function forEachDescendantOfKind(node, kind, action) { forEachChild(node, (child) => { if (child.kind === kind) { action(child); } forEachDescendantOfKind(child, kind, action); }); } function tryGetClassByExtendingIdentifier(node) { return tryGetClassExtendingExpressionWithTypeArguments(climbPastPropertyAccess(node).parent); } function getParentSymbolsOfPropertyAccess(location, symbol, checker) { const propertyAccessExpression = isRightSideOfPropertyAccess(location) ? location.parent : undefined; const lhsType = propertyAccessExpression && checker.getTypeAtLocation(propertyAccessExpression.expression); const res = mapDefined(lhsType && (lhsType.isUnionOrIntersection() ? lhsType.types : lhsType.symbol === symbol.parent ? undefined : [lhsType]), (t) => t.symbol && t.symbol.flags & (32 | 64) ? t.symbol : undefined); return res.length === 0 ? undefined : res; } function isForRenameWithPrefixAndSuffixText(options) { return options.use === 2 && options.providePrefixAndSuffixTextForRename; } })(Core || (Core = {})); var ts_GoToDefinition_exports = {}; __export2(ts_GoToDefinition_exports, { createDefinitionInfo: () => createDefinitionInfo, getDefinitionAndBoundSpan: () => getDefinitionAndBoundSpan, getDefinitionAtPosition: () => getDefinitionAtPosition, getReferenceAtPosition: () => getReferenceAtPosition, getTypeDefinitionAtPosition: () => getTypeDefinitionAtPosition }); function getDefinitionAtPosition(program, sourceFile, position, searchOtherFilesOnly, stopAtAlias) { var _a; const resolvedRef = getReferenceAtPosition(sourceFile, position, program); const fileReferenceDefinition = resolvedRef && [getDefinitionInfoForFileReference(resolvedRef.reference.fileName, resolvedRef.fileName, resolvedRef.unverified)] || emptyArray; if (resolvedRef == null ? undefined : resolvedRef.file) { return fileReferenceDefinition; } const node = getTouchingPropertyName(sourceFile, position); if (node === sourceFile) { return; } const { parent: parent2 } = node; const typeChecker = program.getTypeChecker(); if (node.kind === 164 || isIdentifier(node) && isJSDocOverrideTag(parent2) && parent2.tagName === node) { const def = getDefinitionFromOverriddenMember(typeChecker, node); if (def !== undefined || node.kind !== 164) { return def || emptyArray; } } if (isJumpStatementTarget(node)) { const label = getTargetLabel(node.parent, node.text); return label ? [createDefinitionInfoFromName(typeChecker, label, "label", node.text, undefined)] : undefined; } switch (node.kind) { case 90: if (!isDefaultClause(node.parent)) { break; } case 84: const switchStatement = findAncestor(node.parent, isSwitchStatement); if (switchStatement) { return [createDefinitionInfoFromSwitch(switchStatement, sourceFile)]; } break; } let findFunctionDecl; switch (node.kind) { case 107: case 135: case 127: findFunctionDecl = isFunctionLikeDeclaration; const functionDeclaration = findAncestor(node, findFunctionDecl); return functionDeclaration ? [createDefinitionFromSignatureDeclaration(typeChecker, functionDeclaration)] : undefined; } if (isStaticModifier(node) && isClassStaticBlockDeclaration(node.parent)) { const classDecl = node.parent.parent; const { symbol: symbol2, failedAliasResolution: failedAliasResolution2 } = getSymbol(classDecl, typeChecker, stopAtAlias); const staticBlocks = filter(classDecl.members, isClassStaticBlockDeclaration); const containerName = symbol2 ? typeChecker.symbolToString(symbol2, classDecl) : ""; const sourceFile2 = node.getSourceFile(); return map(staticBlocks, (staticBlock) => { let { pos } = moveRangePastModifiers(staticBlock); pos = skipTrivia2(sourceFile2.text, pos); return createDefinitionInfoFromName(typeChecker, staticBlock, "constructor", "static {}", containerName, false, failedAliasResolution2, { start: pos, length: "static".length }); }); } let { symbol, failedAliasResolution } = getSymbol(node, typeChecker, stopAtAlias); let fallbackNode = node; if (searchOtherFilesOnly && failedAliasResolution) { const importDeclaration = forEach([node, ...(symbol == null ? undefined : symbol.declarations) || emptyArray], (n) => findAncestor(n, isAnyImportOrBareOrAccessedRequire)); const moduleSpecifier = importDeclaration && tryGetModuleSpecifierFromDeclaration(importDeclaration); if (moduleSpecifier) { ({ symbol, failedAliasResolution } = getSymbol(moduleSpecifier, typeChecker, stopAtAlias)); fallbackNode = moduleSpecifier; } } if (!symbol && isModuleSpecifierLike(fallbackNode)) { const ref = (_a = program.getResolvedModuleFromModuleSpecifier(fallbackNode, sourceFile)) == null ? undefined : _a.resolvedModule; if (ref) { return [{ name: fallbackNode.text, fileName: ref.resolvedFileName, containerName: undefined, containerKind: undefined, kind: "script", textSpan: createTextSpan(0, 0), failedAliasResolution, isAmbient: isDeclarationFileName(ref.resolvedFileName), unverified: fallbackNode !== node }]; } } if (isModifier(node) && (isClassElement(parent2) || isNamedDeclaration(parent2))) { symbol = parent2.symbol; } if (!symbol) { return concatenate(fileReferenceDefinition, getDefinitionInfoForIndexSignatures(node, typeChecker)); } if (searchOtherFilesOnly && every(symbol.declarations, (d) => d.getSourceFile().fileName === sourceFile.fileName)) return; const calledDeclaration = tryGetSignatureDeclaration(typeChecker, node); if (calledDeclaration && !(isJsxOpeningLikeElement(node.parent) && isJsxConstructorLike(calledDeclaration))) { const sigInfo = createDefinitionFromSignatureDeclaration(typeChecker, calledDeclaration, failedAliasResolution); let declarationFilter = (d) => d !== calledDeclaration; if (typeChecker.getRootSymbols(symbol).some((s) => symbolMatchesSignature(s, calledDeclaration))) { if (!isConstructorDeclaration(calledDeclaration)) return [sigInfo]; declarationFilter = (d) => d !== calledDeclaration && (isClassDeclaration(d) || isClassExpression(d)); } const defs = getDefinitionFromSymbol(typeChecker, symbol, node, failedAliasResolution, declarationFilter) || emptyArray; return node.kind === 108 ? [sigInfo, ...defs] : [...defs, sigInfo]; } if (node.parent.kind === 305) { const shorthandSymbol = typeChecker.getShorthandAssignmentValueSymbol(symbol.valueDeclaration); const definitions = (shorthandSymbol == null ? undefined : shorthandSymbol.declarations) ? shorthandSymbol.declarations.map((decl) => createDefinitionInfo(decl, typeChecker, shorthandSymbol, node, false, failedAliasResolution)) : emptyArray; return concatenate(definitions, getDefinitionFromObjectLiteralElement(typeChecker, node)); } if (isPropertyName(node) && isBindingElement(parent2) && isObjectBindingPattern(parent2.parent) && node === (parent2.propertyName || parent2.name)) { const name = getNameFromPropertyName(node); const type = typeChecker.getTypeAtLocation(parent2.parent); return name === undefined ? emptyArray : flatMap(type.isUnion() ? type.types : [type], (t) => { const prop = t.getProperty(name); return prop && getDefinitionFromSymbol(typeChecker, prop, node); }); } const objectLiteralElementDefinition = getDefinitionFromObjectLiteralElement(typeChecker, node); return concatenate(fileReferenceDefinition, objectLiteralElementDefinition.length ? objectLiteralElementDefinition : getDefinitionFromSymbol(typeChecker, symbol, node, failedAliasResolution)); } function symbolMatchesSignature(s, calledDeclaration) { var _a; return s === calledDeclaration.symbol || s === calledDeclaration.symbol.parent || isAssignmentExpression(calledDeclaration.parent) || !isCallLikeExpression(calledDeclaration.parent) && s === ((_a = tryCast(calledDeclaration.parent, canHaveSymbol)) == null ? undefined : _a.symbol); } function getDefinitionFromObjectLiteralElement(typeChecker, node) { const element = getContainingObjectLiteralElement(node); if (element) { const contextualType = element && typeChecker.getContextualType(element.parent); if (contextualType) { let properties = getPropertySymbolsFromContextualType(element, typeChecker, contextualType, false); if (some(properties, (p) => !!(p.valueDeclaration && isObjectLiteralExpression(p.valueDeclaration.parent) && isObjectLiteralElementLike(p.valueDeclaration) && p.valueDeclaration.name === node))) { const withoutNodeInferencesType = typeChecker.getContextualType(element.parent, 4); if (withoutNodeInferencesType) { const withoutNodeInferencesProperties = getPropertySymbolsFromContextualType(element, typeChecker, withoutNodeInferencesType, false); if (withoutNodeInferencesProperties.length) { properties = withoutNodeInferencesProperties; } } } return flatMap(properties, (propertySymbol) => getDefinitionFromSymbol(typeChecker, propertySymbol, node)); } } return emptyArray; } function getDefinitionFromOverriddenMember(typeChecker, node) { const classElement = findAncestor(node, isClassElement); if (!(classElement && classElement.name)) return; const baseDeclaration = findAncestor(classElement, isClassLike); if (!baseDeclaration) return; const baseTypeNode = getEffectiveBaseTypeNode(baseDeclaration); if (!baseTypeNode) return; const expression = skipParentheses(baseTypeNode.expression); const base = isClassExpression(expression) ? expression.symbol : typeChecker.getSymbolAtLocation(expression); if (!base) return; const baseType = hasStaticModifier(classElement) ? typeChecker.getTypeOfSymbol(base) : typeChecker.getDeclaredTypeOfSymbol(base); let baseProp; if (isComputedPropertyName(classElement.name)) { const prop = typeChecker.getSymbolAtLocation(classElement.name); if (!prop) { return; } if (isKnownSymbol(prop)) { baseProp = find(typeChecker.getPropertiesOfType(baseType), (s) => s.escapedName === prop.escapedName); } else { baseProp = typeChecker.getPropertyOfType(baseType, unescapeLeadingUnderscores(prop.escapedName)); } } else { baseProp = typeChecker.getPropertyOfType(baseType, unescapeLeadingUnderscores(getTextOfPropertyName(classElement.name))); } if (!baseProp) return; return getDefinitionFromSymbol(typeChecker, baseProp, node); } function getReferenceAtPosition(sourceFile, position, program) { var _a, _b; const referencePath = findReferenceInPosition(sourceFile.referencedFiles, position); if (referencePath) { const file = program.getSourceFileFromReference(sourceFile, referencePath); return file && { reference: referencePath, fileName: file.fileName, file, unverified: false }; } const typeReferenceDirective = findReferenceInPosition(sourceFile.typeReferenceDirectives, position); if (typeReferenceDirective) { const reference = (_a = program.getResolvedTypeReferenceDirectiveFromTypeReferenceDirective(typeReferenceDirective, sourceFile)) == null ? undefined : _a.resolvedTypeReferenceDirective; const file = reference && program.getSourceFile(reference.resolvedFileName); return file && { reference: typeReferenceDirective, fileName: file.fileName, file, unverified: false }; } const libReferenceDirective = findReferenceInPosition(sourceFile.libReferenceDirectives, position); if (libReferenceDirective) { const file = program.getLibFileFromReference(libReferenceDirective); return file && { reference: libReferenceDirective, fileName: file.fileName, file, unverified: false }; } if (sourceFile.imports.length || sourceFile.moduleAugmentations.length) { const node = getTouchingToken(sourceFile, position); let resolution; if (isModuleSpecifierLike(node) && isExternalModuleNameRelative(node.text) && (resolution = program.getResolvedModuleFromModuleSpecifier(node, sourceFile))) { const verifiedFileName = (_b = resolution.resolvedModule) == null ? undefined : _b.resolvedFileName; const fileName = verifiedFileName || resolvePath(getDirectoryPath(sourceFile.fileName), node.text); return { file: program.getSourceFile(fileName), fileName, reference: { pos: node.getStart(), end: node.getEnd(), fileName: node.text }, unverified: !verifiedFileName }; } } return; } var typesWithUnwrappedTypeArguments = /* @__PURE__ */ new Set([ "Array", "ArrayLike", "ReadonlyArray", "Promise", "PromiseLike", "Iterable", "IterableIterator", "AsyncIterable", "Set", "WeakSet", "ReadonlySet", "Map", "WeakMap", "ReadonlyMap", "Partial", "Required", "Readonly", "Pick", "Omit" ]); function shouldUnwrapFirstTypeArgumentTypeDefinitionFromTypeReference(typeChecker, type) { const referenceName = type.symbol.name; if (!typesWithUnwrappedTypeArguments.has(referenceName)) { return false; } const globalType = typeChecker.resolveName(referenceName, undefined, 788968, false); return !!globalType && globalType === type.target.symbol; } function shouldUnwrapFirstTypeArgumentTypeDefinitionFromAlias(typeChecker, type) { if (!type.aliasSymbol) { return false; } const referenceName = type.aliasSymbol.name; if (!typesWithUnwrappedTypeArguments.has(referenceName)) { return false; } const globalType = typeChecker.resolveName(referenceName, undefined, 788968, false); return !!globalType && globalType === type.aliasSymbol; } function getFirstTypeArgumentDefinitions(typeChecker, type, node, failedAliasResolution) { var _a, _b; if (!!(getObjectFlags(type) & 4) && shouldUnwrapFirstTypeArgumentTypeDefinitionFromTypeReference(typeChecker, type)) { return definitionFromType(typeChecker.getTypeArguments(type)[0], typeChecker, node, failedAliasResolution); } if (shouldUnwrapFirstTypeArgumentTypeDefinitionFromAlias(typeChecker, type) && type.aliasTypeArguments) { return definitionFromType(type.aliasTypeArguments[0], typeChecker, node, failedAliasResolution); } if (getObjectFlags(type) & 32 && type.target && shouldUnwrapFirstTypeArgumentTypeDefinitionFromAlias(typeChecker, type.target)) { const declaration = (_b = (_a = type.aliasSymbol) == null ? undefined : _a.declarations) == null ? undefined : _b[0]; if (declaration && isTypeAliasDeclaration(declaration) && isTypeReferenceNode(declaration.type) && declaration.type.typeArguments) { return definitionFromType(typeChecker.getTypeAtLocation(declaration.type.typeArguments[0]), typeChecker, node, failedAliasResolution); } } return []; } function getTypeDefinitionAtPosition(typeChecker, sourceFile, position) { const node = getTouchingPropertyName(sourceFile, position); if (node === sourceFile) { return; } if (isImportMeta(node.parent) && node.parent.name === node) { return definitionFromType(typeChecker.getTypeAtLocation(node.parent), typeChecker, node.parent, false); } let { symbol, failedAliasResolution } = getSymbol(node, typeChecker, false); if (isModifier(node) && (isClassElement(node.parent) || isNamedDeclaration(node.parent))) { symbol = node.parent.symbol; failedAliasResolution = false; } if (!symbol) return; const typeAtLocation = typeChecker.getTypeOfSymbolAtLocation(symbol, node); const returnType = tryGetReturnTypeOfFunction(symbol, typeAtLocation, typeChecker); const fromReturnType = returnType && definitionFromType(returnType, typeChecker, node, failedAliasResolution); const [resolvedType, typeDefinitions] = fromReturnType && fromReturnType.length !== 0 ? [returnType, fromReturnType] : [typeAtLocation, definitionFromType(typeAtLocation, typeChecker, node, failedAliasResolution)]; return typeDefinitions.length ? [...getFirstTypeArgumentDefinitions(typeChecker, resolvedType, node, failedAliasResolution), ...typeDefinitions] : !(symbol.flags & 111551) && symbol.flags & 788968 ? getDefinitionFromSymbol(typeChecker, skipAlias(symbol, typeChecker), node, failedAliasResolution) : undefined; } function definitionFromType(type, checker, node, failedAliasResolution) { return flatMap(type.isUnion() && !(type.flags & 65536) ? type.types : [type], (t) => t.symbol && getDefinitionFromSymbol(checker, t.symbol, node, failedAliasResolution)); } function tryGetReturnTypeOfFunction(symbol, type, checker) { if (type.symbol === symbol || symbol.valueDeclaration && type.symbol && isVariableDeclaration(symbol.valueDeclaration) && symbol.valueDeclaration.initializer === type.symbol.valueDeclaration) { const sigs = type.getCallSignatures(); if (sigs.length === 1) return checker.getReturnTypeOfSignature(first(sigs)); } return; } function getDefinitionAndBoundSpan(program, sourceFile, position) { const definitions = getDefinitionAtPosition(program, sourceFile, position); if (!definitions || definitions.length === 0) { return; } const comment = findReferenceInPosition(sourceFile.referencedFiles, position) || findReferenceInPosition(sourceFile.typeReferenceDirectives, position) || findReferenceInPosition(sourceFile.libReferenceDirectives, position); if (comment) { return { definitions, textSpan: createTextSpanFromRange(comment) }; } const node = getTouchingPropertyName(sourceFile, position); const textSpan = createTextSpan(node.getStart(), node.getWidth()); return { definitions, textSpan }; } function getDefinitionInfoForIndexSignatures(node, checker) { return mapDefined(checker.getIndexInfosAtLocation(node), (info) => info.declaration && createDefinitionFromSignatureDeclaration(checker, info.declaration)); } function getSymbol(node, checker, stopAtAlias) { const symbol = checker.getSymbolAtLocation(node); let failedAliasResolution = false; if ((symbol == null ? undefined : symbol.declarations) && symbol.flags & 2097152 && !stopAtAlias && shouldSkipAlias(node, symbol.declarations[0])) { const aliased = checker.getAliasedSymbol(symbol); if (aliased.declarations) { return { symbol: aliased }; } else { failedAliasResolution = true; } } return { symbol, failedAliasResolution }; } function shouldSkipAlias(node, declaration) { if (node.kind !== 80 && (node.kind !== 11 || !isImportOrExportSpecifier(node.parent))) { return false; } if (node.parent === declaration) { return true; } if (declaration.kind === 275) { return false; } return true; } function isExpandoDeclaration(node) { if (!isAssignmentDeclaration(node)) return false; const containingAssignment = findAncestor(node, (p) => { if (isAssignmentExpression(p)) return true; if (!isAssignmentDeclaration(p)) return "quit"; return false; }); return !!containingAssignment && getAssignmentDeclarationKind(containingAssignment) === 5; } function getDefinitionFromSymbol(typeChecker, symbol, node, failedAliasResolution, declarationFilter) { const filteredDeclarations = declarationFilter !== undefined ? filter(symbol.declarations, declarationFilter) : symbol.declarations; const signatureDefinition = !declarationFilter && (getConstructSignatureDefinition() || getCallSignatureDefinition()); if (signatureDefinition) { return signatureDefinition; } const withoutExpandos = filter(filteredDeclarations, (d) => !isExpandoDeclaration(d)); const results = some(withoutExpandos) ? withoutExpandos : filteredDeclarations; return map(results, (declaration) => createDefinitionInfo(declaration, typeChecker, symbol, node, false, failedAliasResolution)); function getConstructSignatureDefinition() { if (symbol.flags & 32 && !(symbol.flags & (16 | 3)) && (isNewExpressionTarget(node) || node.kind === 137)) { const cls = find(filteredDeclarations, isClassLike); return cls && getSignatureDefinition(cls.members, true); } } function getCallSignatureDefinition() { return isCallOrNewExpressionTarget(node) || isNameOfFunctionDeclaration(node) ? getSignatureDefinition(filteredDeclarations, false) : undefined; } function getSignatureDefinition(signatureDeclarations, selectConstructors) { if (!signatureDeclarations) { return; } const declarations = signatureDeclarations.filter(selectConstructors ? isConstructorDeclaration : isFunctionLike); const declarationsWithBody = declarations.filter((d) => !!d.body); return declarations.length ? declarationsWithBody.length !== 0 ? declarationsWithBody.map((x) => createDefinitionInfo(x, typeChecker, symbol, node)) : [createDefinitionInfo(last(declarations), typeChecker, symbol, node, false, failedAliasResolution)] : undefined; } } function createDefinitionInfo(declaration, checker, symbol, node, unverified, failedAliasResolution) { const symbolName2 = checker.symbolToString(symbol); const symbolKind = ts_SymbolDisplay_exports.getSymbolKind(checker, symbol, node); const containerName = symbol.parent ? checker.symbolToString(symbol.parent, node) : ""; return createDefinitionInfoFromName(checker, declaration, symbolKind, symbolName2, containerName, unverified, failedAliasResolution); } function createDefinitionInfoFromName(checker, declaration, symbolKind, symbolName2, containerName, unverified, failedAliasResolution, textSpan) { const sourceFile = declaration.getSourceFile(); if (!textSpan) { const name = getNameOfDeclaration(declaration) || declaration; textSpan = createTextSpanFromNode(name, sourceFile); } return { fileName: sourceFile.fileName, textSpan, kind: symbolKind, name: symbolName2, containerKind: undefined, containerName, ...ts_FindAllReferences_exports.toContextSpan(textSpan, sourceFile, ts_FindAllReferences_exports.getContextNode(declaration)), isLocal: !isDefinitionVisible(checker, declaration), isAmbient: !!(declaration.flags & 33554432), unverified, failedAliasResolution }; } function createDefinitionInfoFromSwitch(statement, sourceFile) { const keyword = ts_FindAllReferences_exports.getContextNode(statement); const textSpan = createTextSpanFromNode(isContextWithStartAndEndNode(keyword) ? keyword.start : keyword, sourceFile); return { fileName: sourceFile.fileName, textSpan, kind: "keyword", name: "switch", containerKind: undefined, containerName: "", ...ts_FindAllReferences_exports.toContextSpan(textSpan, sourceFile, keyword), isLocal: true, isAmbient: false, unverified: false, failedAliasResolution: undefined }; } function isDefinitionVisible(checker, declaration) { if (checker.isDeclarationVisible(declaration)) return true; if (!declaration.parent) return false; if (hasInitializer(declaration.parent) && declaration.parent.initializer === declaration) return isDefinitionVisible(checker, declaration.parent); switch (declaration.kind) { case 173: case 178: case 179: case 175: if (hasEffectiveModifier(declaration, 2)) return false; case 177: case 304: case 305: case 211: case 232: case 220: case 219: return isDefinitionVisible(checker, declaration.parent); default: return false; } } function createDefinitionFromSignatureDeclaration(typeChecker, decl, failedAliasResolution) { return createDefinitionInfo(decl, typeChecker, decl.symbol, decl, false, failedAliasResolution); } function findReferenceInPosition(refs, pos) { return find(refs, (ref) => textRangeContainsPositionInclusive(ref, pos)); } function getDefinitionInfoForFileReference(name, targetFileName, unverified) { return { fileName: targetFileName, textSpan: createTextSpanFromBounds(0, 0), kind: "script", name, containerName: undefined, containerKind: undefined, unverified }; } function getAncestorCallLikeExpression(node) { const target = findAncestor(node, (n) => !isRightSideOfPropertyAccess(n)); const callLike = target == null ? undefined : target.parent; return callLike && isCallLikeExpression(callLike) && getInvokedExpression(callLike) === target ? callLike : undefined; } function tryGetSignatureDeclaration(typeChecker, node) { const callLike = getAncestorCallLikeExpression(node); const signature = callLike && typeChecker.getResolvedSignature(callLike); return tryCast(signature && signature.declaration, (d) => isFunctionLike(d) && !isFunctionTypeNode(d)); } function isJsxConstructorLike(node) { switch (node.kind) { case 177: case 186: case 180: case 181: return true; default: return false; } } var ts_InlayHints_exports = {}; __export2(ts_InlayHints_exports, { provideInlayHints: () => provideInlayHints }); var leadingParameterNameCommentRegexFactory = (name) => { return new RegExp(`^\\s?/\\*\\*?\\s?${name}\\s?\\*\\/\\s?$`); }; function shouldShowParameterNameHints(preferences) { return preferences.includeInlayParameterNameHints === "literals" || preferences.includeInlayParameterNameHints === "all"; } function shouldShowLiteralParameterNameHintsOnly(preferences) { return preferences.includeInlayParameterNameHints === "literals"; } function shouldUseInteractiveInlayHints(preferences) { return preferences.interactiveInlayHints === true; } function provideInlayHints(context) { const { file, program, span, cancellationToken, preferences } = context; const sourceFileText = file.text; const compilerOptions = program.getCompilerOptions(); const quotePreference = getQuotePreference(file, preferences); const checker = program.getTypeChecker(); const result = []; visitor(file); return result; function visitor(node) { if (!node || node.getFullWidth() === 0) { return; } switch (node.kind) { case 268: case 264: case 265: case 263: case 232: case 219: case 175: case 220: cancellationToken.throwIfCancellationRequested(); } if (!textSpanIntersectsWith(span, node.pos, node.getFullWidth())) { return; } if (isTypeNode(node) && !isExpressionWithTypeArguments(node)) { return; } if (preferences.includeInlayVariableTypeHints && isVariableDeclaration(node)) { visitVariableLikeDeclaration(node); } else if (preferences.includeInlayPropertyDeclarationTypeHints && isPropertyDeclaration(node)) { visitVariableLikeDeclaration(node); } else if (preferences.includeInlayEnumMemberValueHints && isEnumMember(node)) { visitEnumMember(node); } else if (shouldShowParameterNameHints(preferences) && (isCallExpression(node) || isNewExpression(node))) { visitCallOrNewExpression(node); } else { if (preferences.includeInlayFunctionParameterTypeHints && isFunctionLikeDeclaration(node) && hasContextSensitiveParameters(node)) { visitFunctionLikeForParameterType(node); } if (preferences.includeInlayFunctionLikeReturnTypeHints && isSignatureSupportingReturnAnnotation(node)) { visitFunctionDeclarationLikeForReturnType(node); } } return forEachChild(node, visitor); } function isSignatureSupportingReturnAnnotation(node) { return isArrowFunction(node) || isFunctionExpression(node) || isFunctionDeclaration(node) || isMethodDeclaration(node) || isGetAccessorDeclaration(node); } function addParameterHints(text, parameter, position, isFirstVariadicArgument) { let hintText = `${isFirstVariadicArgument ? "..." : ""}${text}`; let displayParts; if (shouldUseInteractiveInlayHints(preferences)) { displayParts = [getNodeDisplayPart(hintText, parameter), { text: ":" }]; hintText = ""; } else { hintText += ":"; } result.push({ text: hintText, position, kind: "Parameter", whitespaceAfter: true, displayParts }); } function addTypeHints(hintText, position) { result.push({ text: typeof hintText === "string" ? `: ${hintText}` : "", displayParts: typeof hintText === "string" ? undefined : [{ text: ": " }, ...hintText], position, kind: "Type", whitespaceBefore: true }); } function addEnumMemberValueHints(text, position) { result.push({ text: `= ${text}`, position, kind: "Enum", whitespaceBefore: true }); } function visitEnumMember(member) { if (member.initializer) { return; } const enumValue = checker.getConstantValue(member); if (enumValue !== undefined) { addEnumMemberValueHints(enumValue.toString(), member.end); } } function isModuleReferenceType(type) { return type.symbol && type.symbol.flags & 1536; } function visitVariableLikeDeclaration(decl) { if (decl.initializer === undefined && !(isPropertyDeclaration(decl) && !(checker.getTypeAtLocation(decl).flags & 1)) || isBindingPattern(decl.name) || isVariableDeclaration(decl) && !isHintableDeclaration(decl)) { return; } const effectiveTypeAnnotation = getEffectiveTypeAnnotationNode(decl); if (effectiveTypeAnnotation) { return; } const declarationType = checker.getTypeAtLocation(decl); if (isModuleReferenceType(declarationType)) { return; } const hintParts = typeToInlayHintParts(declarationType); if (hintParts) { const hintText = typeof hintParts === "string" ? hintParts : hintParts.map((part) => part.text).join(""); const isVariableNameMatchesType = preferences.includeInlayVariableTypeHintsWhenTypeMatchesName === false && equateStringsCaseInsensitive(decl.name.getText(), hintText); if (isVariableNameMatchesType) { return; } addTypeHints(hintParts, decl.name.end); } } function visitCallOrNewExpression(expr) { const args = expr.arguments; if (!args || !args.length) { return; } const signature = checker.getResolvedSignature(expr); if (signature === undefined) return; let signatureParamPos = 0; for (const originalArg of args) { const arg = skipParentheses(originalArg); if (shouldShowLiteralParameterNameHintsOnly(preferences) && !isHintableLiteral(arg)) { signatureParamPos++; continue; } let spreadArgs = 0; if (isSpreadElement(arg)) { const spreadType = checker.getTypeAtLocation(arg.expression); if (checker.isTupleType(spreadType)) { const { elementFlags, fixedLength } = spreadType.target; if (fixedLength === 0) { continue; } const firstOptionalIndex = findIndex(elementFlags, (f) => !(f & 1)); const requiredArgs = firstOptionalIndex < 0 ? fixedLength : firstOptionalIndex; if (requiredArgs > 0) { spreadArgs = firstOptionalIndex < 0 ? fixedLength : firstOptionalIndex; } } } const identifierInfo = checker.getParameterIdentifierInfoAtPosition(signature, signatureParamPos); signatureParamPos = signatureParamPos + (spreadArgs || 1); if (identifierInfo) { const { parameter, parameterName, isRestParameter: isFirstVariadicArgument } = identifierInfo; const isParameterNameNotSameAsArgument = preferences.includeInlayParameterNameHintsWhenArgumentMatchesName || !identifierOrAccessExpressionPostfixMatchesParameterName(arg, parameterName); if (!isParameterNameNotSameAsArgument && !isFirstVariadicArgument) { continue; } const name = unescapeLeadingUnderscores(parameterName); if (leadingCommentsContainsParameterName(arg, name)) { continue; } addParameterHints(name, parameter, originalArg.getStart(), isFirstVariadicArgument); } } } function identifierOrAccessExpressionPostfixMatchesParameterName(expr, parameterName) { if (isIdentifier(expr)) { return expr.text === parameterName; } if (isPropertyAccessExpression(expr)) { return expr.name.text === parameterName; } return false; } function leadingCommentsContainsParameterName(node, name) { if (!isIdentifierText(name, getEmitScriptTarget(compilerOptions), getLanguageVariant(file.scriptKind))) { return false; } const ranges = getLeadingCommentRanges(sourceFileText, node.pos); if (!(ranges == null ? undefined : ranges.length)) { return false; } const regex = leadingParameterNameCommentRegexFactory(name); return some(ranges, (range) => regex.test(sourceFileText.substring(range.pos, range.end))); } function isHintableLiteral(node) { switch (node.kind) { case 225: { const operand = node.operand; return isLiteralExpression(operand) || isIdentifier(operand) && isInfinityOrNaNString(operand.escapedText); } case 112: case 97: case 106: case 15: case 229: return true; case 80: { const name = node.escapedText; return isUndefined(name) || isInfinityOrNaNString(name); } } return isLiteralExpression(node); } function visitFunctionDeclarationLikeForReturnType(decl) { if (isArrowFunction(decl)) { if (!findChildOfKind(decl, 21, file)) { return; } } const effectiveTypeAnnotation = getEffectiveReturnTypeNode(decl); if (effectiveTypeAnnotation || !decl.body) { return; } const signature = checker.getSignatureFromDeclaration(decl); if (!signature) { return; } const typePredicate = checker.getTypePredicateOfSignature(signature); if (typePredicate == null ? undefined : typePredicate.type) { const hintParts2 = typePredicateToInlayHintParts(typePredicate); if (hintParts2) { addTypeHints(hintParts2, getTypeAnnotationPosition(decl)); return; } } const returnType = checker.getReturnTypeOfSignature(signature); if (isModuleReferenceType(returnType)) { return; } const hintParts = typeToInlayHintParts(returnType); if (hintParts) { addTypeHints(hintParts, getTypeAnnotationPosition(decl)); } } function getTypeAnnotationPosition(decl) { const closeParenToken = findChildOfKind(decl, 22, file); if (closeParenToken) { return closeParenToken.end; } return decl.parameters.end; } function visitFunctionLikeForParameterType(node) { const signature = checker.getSignatureFromDeclaration(node); if (!signature) { return; } let pos = 0; for (const param of node.parameters) { if (isHintableDeclaration(param)) { addParameterTypeHint(param, parameterIsThisKeyword(param) ? signature.thisParameter : signature.parameters[pos]); } if (parameterIsThisKeyword(param)) { continue; } pos++; } } function addParameterTypeHint(node, symbol) { const effectiveTypeAnnotation = getEffectiveTypeAnnotationNode(node); if (effectiveTypeAnnotation || symbol === undefined) return; const typeHints = getParameterDeclarationTypeHints(symbol); if (typeHints === undefined) return; addTypeHints(typeHints, node.questionToken ? node.questionToken.end : node.name.end); } function getParameterDeclarationTypeHints(symbol) { const valueDeclaration = symbol.valueDeclaration; if (!valueDeclaration || !isParameter(valueDeclaration)) { return; } const signatureParamType = checker.getTypeOfSymbolAtLocation(symbol, valueDeclaration); if (isModuleReferenceType(signatureParamType)) { return; } return typeToInlayHintParts(signatureParamType); } function printTypeInSingleLine(type) { const flags = 70221824 | 1048576 | 16384; const printer = createPrinterWithRemoveComments(); return usingSingleLineStringWriter((writer) => { const typeNode = checker.typeToTypeNode(type, undefined, flags); Debug.assertIsDefined(typeNode, "should always get typenode"); printer.writeNode(4, typeNode, file, writer); }); } function printTypePredicateInSingleLine(typePredicate) { const flags = 70221824 | 1048576 | 16384; const printer = createPrinterWithRemoveComments(); return usingSingleLineStringWriter((writer) => { const typePredicateNode = checker.typePredicateToTypePredicateNode(typePredicate, undefined, flags); Debug.assertIsDefined(typePredicateNode, "should always get typePredicateNode"); printer.writeNode(4, typePredicateNode, file, writer); }); } function typeToInlayHintParts(type) { if (!shouldUseInteractiveInlayHints(preferences)) { return printTypeInSingleLine(type); } const flags = 70221824 | 1048576 | 16384; const typeNode = checker.typeToTypeNode(type, undefined, flags); Debug.assertIsDefined(typeNode, "should always get typeNode"); return getInlayHintDisplayParts(typeNode); } function typePredicateToInlayHintParts(typePredicate) { if (!shouldUseInteractiveInlayHints(preferences)) { return printTypePredicateInSingleLine(typePredicate); } const flags = 70221824 | 1048576 | 16384; const typeNode = checker.typePredicateToTypePredicateNode(typePredicate, undefined, flags); Debug.assertIsDefined(typeNode, "should always get typenode"); return getInlayHintDisplayParts(typeNode); } function getInlayHintDisplayParts(node) { const parts = []; visitForDisplayParts(node); return parts; function visitForDisplayParts(node2) { var _a, _b; if (!node2) { return; } const tokenString = tokenToString(node2.kind); if (tokenString) { parts.push({ text: tokenString }); return; } if (isLiteralExpression(node2)) { parts.push({ text: getLiteralText2(node2) }); return; } switch (node2.kind) { case 80: Debug.assertNode(node2, isIdentifier); const identifierText = idText(node2); const name = node2.symbol && node2.symbol.declarations && node2.symbol.declarations.length && getNameOfDeclaration(node2.symbol.declarations[0]); if (name) { parts.push(getNodeDisplayPart(identifierText, name)); } else { parts.push({ text: identifierText }); } break; case 167: Debug.assertNode(node2, isQualifiedName); visitForDisplayParts(node2.left); parts.push({ text: "." }); visitForDisplayParts(node2.right); break; case 183: Debug.assertNode(node2, isTypePredicateNode); if (node2.assertsModifier) { parts.push({ text: "asserts " }); } visitForDisplayParts(node2.parameterName); if (node2.type) { parts.push({ text: " is " }); visitForDisplayParts(node2.type); } break; case 184: Debug.assertNode(node2, isTypeReferenceNode); visitForDisplayParts(node2.typeName); if (node2.typeArguments) { parts.push({ text: "<" }); visitDisplayPartList(node2.typeArguments, ", "); parts.push({ text: ">" }); } break; case 169: Debug.assertNode(node2, isTypeParameterDeclaration); if (node2.modifiers) { visitDisplayPartList(node2.modifiers, " "); parts.push({ text: " " }); } visitForDisplayParts(node2.name); if (node2.constraint) { parts.push({ text: " extends " }); visitForDisplayParts(node2.constraint); } if (node2.default) { parts.push({ text: " = " }); visitForDisplayParts(node2.default); } break; case 170: Debug.assertNode(node2, isParameter); if (node2.modifiers) { visitDisplayPartList(node2.modifiers, " "); parts.push({ text: " " }); } if (node2.dotDotDotToken) { parts.push({ text: "..." }); } visitForDisplayParts(node2.name); if (node2.questionToken) { parts.push({ text: "?" }); } if (node2.type) { parts.push({ text: ": " }); visitForDisplayParts(node2.type); } break; case 186: Debug.assertNode(node2, isConstructorTypeNode); parts.push({ text: "new " }); visitParametersAndTypeParameters(node2); parts.push({ text: " => " }); visitForDisplayParts(node2.type); break; case 187: Debug.assertNode(node2, isTypeQueryNode); parts.push({ text: "typeof " }); visitForDisplayParts(node2.exprName); if (node2.typeArguments) { parts.push({ text: "<" }); visitDisplayPartList(node2.typeArguments, ", "); parts.push({ text: ">" }); } break; case 188: Debug.assertNode(node2, isTypeLiteralNode); parts.push({ text: "{" }); if (node2.members.length) { parts.push({ text: " " }); visitDisplayPartList(node2.members, "; "); parts.push({ text: " " }); } parts.push({ text: "}" }); break; case 189: Debug.assertNode(node2, isArrayTypeNode); visitForDisplayParts(node2.elementType); parts.push({ text: "[]" }); break; case 190: Debug.assertNode(node2, isTupleTypeNode); parts.push({ text: "[" }); visitDisplayPartList(node2.elements, ", "); parts.push({ text: "]" }); break; case 203: Debug.assertNode(node2, isNamedTupleMember); if (node2.dotDotDotToken) { parts.push({ text: "..." }); } visitForDisplayParts(node2.name); if (node2.questionToken) { parts.push({ text: "?" }); } parts.push({ text: ": " }); visitForDisplayParts(node2.type); break; case 191: Debug.assertNode(node2, isOptionalTypeNode); visitForDisplayParts(node2.type); parts.push({ text: "?" }); break; case 192: Debug.assertNode(node2, isRestTypeNode); parts.push({ text: "..." }); visitForDisplayParts(node2.type); break; case 193: Debug.assertNode(node2, isUnionTypeNode); visitDisplayPartList(node2.types, " | "); break; case 194: Debug.assertNode(node2, isIntersectionTypeNode); visitDisplayPartList(node2.types, " & "); break; case 195: Debug.assertNode(node2, isConditionalTypeNode); visitForDisplayParts(node2.checkType); parts.push({ text: " extends " }); visitForDisplayParts(node2.extendsType); parts.push({ text: " ? " }); visitForDisplayParts(node2.trueType); parts.push({ text: " : " }); visitForDisplayParts(node2.falseType); break; case 196: Debug.assertNode(node2, isInferTypeNode); parts.push({ text: "infer " }); visitForDisplayParts(node2.typeParameter); break; case 197: Debug.assertNode(node2, isParenthesizedTypeNode); parts.push({ text: "(" }); visitForDisplayParts(node2.type); parts.push({ text: ")" }); break; case 199: Debug.assertNode(node2, isTypeOperatorNode); parts.push({ text: `${tokenToString(node2.operator)} ` }); visitForDisplayParts(node2.type); break; case 200: Debug.assertNode(node2, isIndexedAccessTypeNode); visitForDisplayParts(node2.objectType); parts.push({ text: "[" }); visitForDisplayParts(node2.indexType); parts.push({ text: "]" }); break; case 201: Debug.assertNode(node2, isMappedTypeNode); parts.push({ text: "{ " }); if (node2.readonlyToken) { if (node2.readonlyToken.kind === 40) { parts.push({ text: "+" }); } else if (node2.readonlyToken.kind === 41) { parts.push({ text: "-" }); } parts.push({ text: "readonly " }); } parts.push({ text: "[" }); visitForDisplayParts(node2.typeParameter); if (node2.nameType) { parts.push({ text: " as " }); visitForDisplayParts(node2.nameType); } parts.push({ text: "]" }); if (node2.questionToken) { if (node2.questionToken.kind === 40) { parts.push({ text: "+" }); } else if (node2.questionToken.kind === 41) { parts.push({ text: "-" }); } parts.push({ text: "?" }); } parts.push({ text: ": " }); if (node2.type) { visitForDisplayParts(node2.type); } parts.push({ text: "; }" }); break; case 202: Debug.assertNode(node2, isLiteralTypeNode); visitForDisplayParts(node2.literal); break; case 185: Debug.assertNode(node2, isFunctionTypeNode); visitParametersAndTypeParameters(node2); parts.push({ text: " => " }); visitForDisplayParts(node2.type); break; case 206: Debug.assertNode(node2, isImportTypeNode); if (node2.isTypeOf) { parts.push({ text: "typeof " }); } parts.push({ text: "import(" }); visitForDisplayParts(node2.argument); if (node2.assertions) { parts.push({ text: ", { assert: " }); visitDisplayPartList(node2.assertions.assertClause.elements, ", "); parts.push({ text: " }" }); } parts.push({ text: ")" }); if (node2.qualifier) { parts.push({ text: "." }); visitForDisplayParts(node2.qualifier); } if (node2.typeArguments) { parts.push({ text: "<" }); visitDisplayPartList(node2.typeArguments, ", "); parts.push({ text: ">" }); } break; case 172: Debug.assertNode(node2, isPropertySignature); if ((_a = node2.modifiers) == null ? undefined : _a.length) { visitDisplayPartList(node2.modifiers, " "); parts.push({ text: " " }); } visitForDisplayParts(node2.name); if (node2.questionToken) { parts.push({ text: "?" }); } if (node2.type) { parts.push({ text: ": " }); visitForDisplayParts(node2.type); } break; case 182: Debug.assertNode(node2, isIndexSignatureDeclaration); parts.push({ text: "[" }); visitDisplayPartList(node2.parameters, ", "); parts.push({ text: "]" }); if (node2.type) { parts.push({ text: ": " }); visitForDisplayParts(node2.type); } break; case 174: Debug.assertNode(node2, isMethodSignature); if ((_b = node2.modifiers) == null ? undefined : _b.length) { visitDisplayPartList(node2.modifiers, " "); parts.push({ text: " " }); } visitForDisplayParts(node2.name); if (node2.questionToken) { parts.push({ text: "?" }); } visitParametersAndTypeParameters(node2); if (node2.type) { parts.push({ text: ": " }); visitForDisplayParts(node2.type); } break; case 180: Debug.assertNode(node2, isCallSignatureDeclaration); visitParametersAndTypeParameters(node2); if (node2.type) { parts.push({ text: ": " }); visitForDisplayParts(node2.type); } break; case 181: Debug.assertNode(node2, isConstructSignatureDeclaration); parts.push({ text: "new " }); visitParametersAndTypeParameters(node2); if (node2.type) { parts.push({ text: ": " }); visitForDisplayParts(node2.type); } break; case 208: Debug.assertNode(node2, isArrayBindingPattern); parts.push({ text: "[" }); visitDisplayPartList(node2.elements, ", "); parts.push({ text: "]" }); break; case 207: Debug.assertNode(node2, isObjectBindingPattern); parts.push({ text: "{" }); if (node2.elements.length) { parts.push({ text: " " }); visitDisplayPartList(node2.elements, ", "); parts.push({ text: " " }); } parts.push({ text: "}" }); break; case 209: Debug.assertNode(node2, isBindingElement); visitForDisplayParts(node2.name); break; case 225: Debug.assertNode(node2, isPrefixUnaryExpression); parts.push({ text: tokenToString(node2.operator) }); visitForDisplayParts(node2.operand); break; case 204: Debug.assertNode(node2, isTemplateLiteralTypeNode); visitForDisplayParts(node2.head); node2.templateSpans.forEach(visitForDisplayParts); break; case 16: Debug.assertNode(node2, isTemplateHead); parts.push({ text: getLiteralText2(node2) }); break; case 205: Debug.assertNode(node2, isTemplateLiteralTypeSpan); visitForDisplayParts(node2.type); visitForDisplayParts(node2.literal); break; case 17: Debug.assertNode(node2, isTemplateMiddle); parts.push({ text: getLiteralText2(node2) }); break; case 18: Debug.assertNode(node2, isTemplateTail); parts.push({ text: getLiteralText2(node2) }); break; case 198: Debug.assertNode(node2, isThisTypeNode); parts.push({ text: "this" }); break; case 168: Debug.assertNode(node2, isComputedPropertyName); parts.push({ text: "[" }); visitForDisplayParts(node2.expression); parts.push({ text: "]" }); break; default: Debug.failBadSyntaxKind(node2); } } function visitParametersAndTypeParameters(signatureDeclaration) { if (signatureDeclaration.typeParameters) { parts.push({ text: "<" }); visitDisplayPartList(signatureDeclaration.typeParameters, ", "); parts.push({ text: ">" }); } parts.push({ text: "(" }); visitDisplayPartList(signatureDeclaration.parameters, ", "); parts.push({ text: ")" }); } function visitDisplayPartList(nodes, separator) { nodes.forEach((node2, index) => { if (index > 0) { parts.push({ text: separator }); } visitForDisplayParts(node2); }); } function getLiteralText2(node2) { switch (node2.kind) { case 11: return quotePreference === 0 ? `'${escapeString(node2.text, 39)}'` : `"${escapeString(node2.text, 34)}"`; case 16: case 17: case 18: { const rawText = node2.rawText ?? escapeTemplateSubstitution(escapeString(node2.text, 96)); switch (node2.kind) { case 16: return "`" + rawText + "${"; case 17: return "}" + rawText + "${"; case 18: return "}" + rawText + "`"; } } } return node2.text; } } function isUndefined(name) { return name === "undefined"; } function isHintableDeclaration(node) { if ((isPartOfParameterDeclaration(node) || isVariableDeclaration(node) && isVarConst(node)) && node.initializer) { const initializer = skipParentheses(node.initializer); return !(isHintableLiteral(initializer) || isNewExpression(initializer) || isObjectLiteralExpression(initializer) || isAssertionExpression(initializer)); } return true; } function getNodeDisplayPart(text, node) { const sourceFile = node.getSourceFile(); return { text, span: createTextSpanFromNode(node, sourceFile), file: sourceFile.fileName }; } } var ts_JsDoc_exports = {}; __export2(ts_JsDoc_exports, { getDocCommentTemplateAtPosition: () => getDocCommentTemplateAtPosition, getJSDocParameterNameCompletionDetails: () => getJSDocParameterNameCompletionDetails, getJSDocParameterNameCompletions: () => getJSDocParameterNameCompletions, getJSDocTagCompletionDetails: () => getJSDocTagCompletionDetails, getJSDocTagCompletions: () => getJSDocTagCompletions, getJSDocTagNameCompletionDetails: () => getJSDocTagNameCompletionDetails, getJSDocTagNameCompletions: () => getJSDocTagNameCompletions, getJsDocCommentsFromDeclarations: () => getJsDocCommentsFromDeclarations, getJsDocTagsFromDeclarations: () => getJsDocTagsFromDeclarations }); var jsDocTagNames = [ "abstract", "access", "alias", "argument", "async", "augments", "author", "borrows", "callback", "class", "classdesc", "constant", "constructor", "constructs", "copyright", "default", "deprecated", "description", "emits", "enum", "event", "example", "exports", "extends", "external", "field", "file", "fileoverview", "fires", "function", "generator", "global", "hideconstructor", "host", "ignore", "implements", "import", "inheritdoc", "inner", "instance", "interface", "kind", "lends", "license", "link", "linkcode", "linkplain", "listens", "member", "memberof", "method", "mixes", "module", "name", "namespace", "overload", "override", "package", "param", "private", "prop", "property", "protected", "public", "readonly", "requires", "returns", "satisfies", "see", "since", "static", "summary", "template", "this", "throws", "todo", "tutorial", "type", "typedef", "var", "variation", "version", "virtual", "yields" ]; var jsDocTagNameCompletionEntries; var jsDocTagCompletionEntries; function getJsDocCommentsFromDeclarations(declarations, checker) { const parts = []; forEachUnique(declarations, (declaration) => { for (const jsdoc of getCommentHavingNodes(declaration)) { const inheritDoc = isJSDoc(jsdoc) && jsdoc.tags && find(jsdoc.tags, (t) => t.kind === 328 && (t.tagName.escapedText === "inheritDoc" || t.tagName.escapedText === "inheritdoc")); if (jsdoc.comment === undefined && !inheritDoc || isJSDoc(jsdoc) && declaration.kind !== 347 && declaration.kind !== 339 && jsdoc.tags && jsdoc.tags.some((t) => t.kind === 347 || t.kind === 339) && !jsdoc.tags.some((t) => t.kind === 342 || t.kind === 343)) { continue; } let newparts = jsdoc.comment ? getDisplayPartsFromComment(jsdoc.comment, checker) : []; if (inheritDoc && inheritDoc.comment) { newparts = newparts.concat(getDisplayPartsFromComment(inheritDoc.comment, checker)); } if (!contains(parts, newparts, isIdenticalListOfDisplayParts)) { parts.push(newparts); } } }); return flatten(intersperse(parts, [lineBreakPart()])); } function isIdenticalListOfDisplayParts(parts1, parts2) { return arrayIsEqualTo(parts1, parts2, (p1, p2) => p1.kind === p2.kind && p1.text === p2.text); } function getCommentHavingNodes(declaration) { switch (declaration.kind) { case 342: case 349: return [declaration]; case 339: case 347: return [declaration, declaration.parent]; case 324: if (isJSDocOverloadTag(declaration.parent)) { return [declaration.parent.parent]; } default: return getJSDocCommentsAndTags(declaration); } } function getJsDocTagsFromDeclarations(declarations, checker) { const infos = []; forEachUnique(declarations, (declaration) => { const tags = getJSDocTags(declaration); if (tags.some((t) => t.kind === 347 || t.kind === 339) && !tags.some((t) => t.kind === 342 || t.kind === 343)) { return; } for (const tag of tags) { infos.push({ name: tag.tagName.text, text: getCommentDisplayParts(tag, checker) }); infos.push(...getJSDocPropertyTagsInfo(tryGetJSDocPropertyTags(tag), checker)); } }); return infos; } function getJSDocPropertyTagsInfo(nodes, checker) { return flatMap(nodes, (propTag) => concatenate([{ name: propTag.tagName.text, text: getCommentDisplayParts(propTag, checker) }], getJSDocPropertyTagsInfo(tryGetJSDocPropertyTags(propTag), checker))); } function tryGetJSDocPropertyTags(node) { return isJSDocPropertyLikeTag(node) && node.isNameFirst && node.typeExpression && isJSDocTypeLiteral(node.typeExpression.type) ? node.typeExpression.type.jsDocPropertyTags : undefined; } function getDisplayPartsFromComment(comment, checker) { if (typeof comment === "string") { return [textPart(comment)]; } return flatMap(comment, (node) => node.kind === 322 ? [textPart(node.text)] : buildLinkParts(node, checker)); } function getCommentDisplayParts(tag, checker) { const { comment, kind } = tag; const namePart = getTagNameDisplayPart(kind); switch (kind) { case 350: const typeExpression = tag.typeExpression; return typeExpression ? withNode(typeExpression) : comment === undefined ? undefined : getDisplayPartsFromComment(comment, checker); case 330: return withNode(tag.class); case 329: return withNode(tag.class); case 346: const templateTag = tag; const displayParts = []; if (templateTag.constraint) { displayParts.push(textPart(templateTag.constraint.getText())); } if (length(templateTag.typeParameters)) { if (length(displayParts)) { displayParts.push(spacePart()); } const lastTypeParameter = templateTag.typeParameters[templateTag.typeParameters.length - 1]; forEach(templateTag.typeParameters, (tp) => { displayParts.push(namePart(tp.getText())); if (lastTypeParameter !== tp) { displayParts.push(...[punctuationPart(28), spacePart()]); } }); } if (comment) { displayParts.push(...[spacePart(), ...getDisplayPartsFromComment(comment, checker)]); } return displayParts; case 345: case 351: return withNode(tag.typeExpression); case 347: case 339: case 349: case 342: case 348: const { name } = tag; return name ? withNode(name) : comment === undefined ? undefined : getDisplayPartsFromComment(comment, checker); default: return comment === undefined ? undefined : getDisplayPartsFromComment(comment, checker); } function withNode(node) { return addComment(node.getText()); } function addComment(s) { if (comment) { if (s.match(/^https?$/)) { return [textPart(s), ...getDisplayPartsFromComment(comment, checker)]; } else { return [namePart(s), spacePart(), ...getDisplayPartsFromComment(comment, checker)]; } } else { return [textPart(s)]; } } } function getTagNameDisplayPart(kind) { switch (kind) { case 342: return parameterNamePart; case 349: return propertyNamePart; case 346: return typeParameterNamePart; case 347: case 339: return typeAliasNamePart; default: return textPart; } } function getJSDocTagNameCompletions() { return jsDocTagNameCompletionEntries || (jsDocTagNameCompletionEntries = map(jsDocTagNames, (tagName) => { return { name: tagName, kind: "keyword", kindModifiers: "", sortText: ts_Completions_exports.SortText.LocationPriority }; })); } var getJSDocTagNameCompletionDetails = getJSDocTagCompletionDetails; function getJSDocTagCompletions() { return jsDocTagCompletionEntries || (jsDocTagCompletionEntries = map(jsDocTagNames, (tagName) => { return { name: `@${tagName}`, kind: "keyword", kindModifiers: "", sortText: ts_Completions_exports.SortText.LocationPriority }; })); } function getJSDocTagCompletionDetails(name) { return { name, kind: "", kindModifiers: "", displayParts: [textPart(name)], documentation: emptyArray, tags: undefined, codeActions: undefined }; } function getJSDocParameterNameCompletions(tag) { if (!isIdentifier(tag.name)) { return emptyArray; } const nameThusFar = tag.name.text; const jsdoc = tag.parent; const fn = jsdoc.parent; if (!isFunctionLike(fn)) return []; return mapDefined(fn.parameters, (param) => { if (!isIdentifier(param.name)) return; const name = param.name.text; if (jsdoc.tags.some((t) => t !== tag && isJSDocParameterTag(t) && isIdentifier(t.name) && t.name.escapedText === name) || nameThusFar !== undefined && !startsWith(name, nameThusFar)) { return; } return { name, kind: "parameter", kindModifiers: "", sortText: ts_Completions_exports.SortText.LocationPriority }; }); } function getJSDocParameterNameCompletionDetails(name) { return { name, kind: "parameter", kindModifiers: "", displayParts: [textPart(name)], documentation: emptyArray, tags: undefined, codeActions: undefined }; } function getDocCommentTemplateAtPosition(newLine, sourceFile, position, options) { const tokenAtPos = getTokenAtPosition(sourceFile, position); const existingDocComment = findAncestor(tokenAtPos, isJSDoc); if (existingDocComment && (existingDocComment.comment !== undefined || length(existingDocComment.tags))) { return; } const tokenStart = tokenAtPos.getStart(sourceFile); if (!existingDocComment && tokenStart < position) { return; } const commentOwnerInfo = getCommentOwnerInfo(tokenAtPos, options); if (!commentOwnerInfo) { return; } const { commentOwner, parameters, hasReturn: hasReturn2 } = commentOwnerInfo; const commentOwnerJsDoc = hasJSDocNodes(commentOwner) && commentOwner.jsDoc ? commentOwner.jsDoc : undefined; const lastJsDoc = lastOrUndefined(commentOwnerJsDoc); if (commentOwner.getStart(sourceFile) < position || lastJsDoc && existingDocComment && lastJsDoc !== existingDocComment) { return; } const indentationStr = getIndentationStringAtPosition(sourceFile, position); const isJavaScriptFile = hasJSFileExtension(sourceFile.fileName); const tags = (parameters ? parameterDocComments(parameters || [], isJavaScriptFile, indentationStr, newLine) : "") + (hasReturn2 ? returnsDocComment(indentationStr, newLine) : ""); const openComment = "/**"; const closeComment = " */"; const hasTag = length(getJSDocTags(commentOwner)) > 0; if (tags && !hasTag) { const preamble = openComment + newLine + indentationStr + " * "; const endLine = tokenStart === position ? newLine + indentationStr : ""; const result = preamble + newLine + tags + indentationStr + closeComment + endLine; return { newText: result, caretOffset: preamble.length }; } return { newText: openComment + closeComment, caretOffset: 3 }; } function getIndentationStringAtPosition(sourceFile, position) { const { text } = sourceFile; const lineStart = getLineStartPositionForPosition(position, sourceFile); let pos = lineStart; for (;pos <= position && isWhiteSpaceSingleLine(text.charCodeAt(pos)); pos++) ; return text.slice(lineStart, pos); } function parameterDocComments(parameters, isJavaScriptFile, indentationStr, newLine) { return parameters.map(({ name, dotDotDotToken }, i) => { const paramName = name.kind === 80 ? name.text : "param" + i; const type = isJavaScriptFile ? dotDotDotToken ? "{...any} " : "{any} " : ""; return `${indentationStr} * @param ${type}${paramName}${newLine}`; }).join(""); } function returnsDocComment(indentationStr, newLine) { return `${indentationStr} * @returns${newLine}`; } function getCommentOwnerInfo(tokenAtPos, options) { return forEachAncestor(tokenAtPos, (n) => getCommentOwnerInfoWorker(n, options)); } function getCommentOwnerInfoWorker(commentOwner, options) { switch (commentOwner.kind) { case 263: case 219: case 175: case 177: case 174: case 220: const host = commentOwner; return { commentOwner, parameters: host.parameters, hasReturn: hasReturn(host, options) }; case 304: return getCommentOwnerInfoWorker(commentOwner.initializer, options); case 264: case 265: case 267: case 307: case 266: return { commentOwner }; case 172: { const host2 = commentOwner; return host2.type && isFunctionTypeNode(host2.type) ? { commentOwner, parameters: host2.type.parameters, hasReturn: hasReturn(host2.type, options) } : { commentOwner }; } case 244: { const varStatement = commentOwner; const varDeclarations = varStatement.declarationList.declarations; const host2 = varDeclarations.length === 1 && varDeclarations[0].initializer ? getRightHandSideOfAssignment(varDeclarations[0].initializer) : undefined; return host2 ? { commentOwner, parameters: host2.parameters, hasReturn: hasReturn(host2, options) } : { commentOwner }; } case 308: return "quit"; case 268: return commentOwner.parent.kind === 268 ? undefined : { commentOwner }; case 245: return getCommentOwnerInfoWorker(commentOwner.expression, options); case 227: { const be = commentOwner; if (getAssignmentDeclarationKind(be) === 0) { return "quit"; } return isFunctionLike(be.right) ? { commentOwner, parameters: be.right.parameters, hasReturn: hasReturn(be.right, options) } : { commentOwner }; } case 173: const init = commentOwner.initializer; if (init && (isFunctionExpression(init) || isArrowFunction(init))) { return { commentOwner, parameters: init.parameters, hasReturn: hasReturn(init, options) }; } } } function hasReturn(node, options) { return !!(options == null ? undefined : options.generateReturnInDocTemplate) && (isFunctionTypeNode(node) || isArrowFunction(node) && isExpression(node.body) || isFunctionLikeDeclaration(node) && node.body && isBlock(node.body) && !!forEachReturnStatement(node.body, (n) => n)); } function getRightHandSideOfAssignment(rightHandSide) { while (rightHandSide.kind === 218) { rightHandSide = rightHandSide.expression; } switch (rightHandSide.kind) { case 219: case 220: return rightHandSide; case 232: return find(rightHandSide.members, isConstructorDeclaration); } } var ts_MapCode_exports = {}; __export2(ts_MapCode_exports, { mapCode: () => mapCode }); function mapCode(sourceFile, contents, focusLocations, host, formatContext, preferences) { return ts_textChanges_exports.ChangeTracker.with({ host, formatContext, preferences }, (changeTracker) => { const parsed = contents.map((c) => parse2(sourceFile, c)); const flattenedLocations = focusLocations && flatten(focusLocations); for (const nodes of parsed) { placeNodeGroup(sourceFile, changeTracker, nodes, flattenedLocations); } }); } function parse2(sourceFile, content) { const nodeKinds = [ { parse: () => createSourceFile("__mapcode_content_nodes.ts", content, sourceFile.languageVersion, true, sourceFile.scriptKind), body: (sf) => sf.statements }, { parse: () => createSourceFile("__mapcode_class_content_nodes.ts", `class __class { ${content} }`, sourceFile.languageVersion, true, sourceFile.scriptKind), body: (cw) => cw.statements[0].members } ]; const parsedNodes = []; for (const { parse: parse22, body: body2 } of nodeKinds) { const sourceFile2 = parse22(); const bod = body2(sourceFile2); if (bod.length && sourceFile2.parseDiagnostics.length === 0) { return bod; } else if (bod.length) { parsedNodes.push({ sourceFile: sourceFile2, body: bod }); } } parsedNodes.sort((a, b) => a.sourceFile.parseDiagnostics.length - b.sourceFile.parseDiagnostics.length); const { body } = parsedNodes[0]; return body; } function placeNodeGroup(originalFile, changeTracker, changes, focusLocations) { if (isClassElement(changes[0]) || isTypeElement(changes[0])) { placeClassNodeGroup(originalFile, changeTracker, changes, focusLocations); } else { placeStatements(originalFile, changeTracker, changes, focusLocations); } } function placeClassNodeGroup(originalFile, changeTracker, changes, focusLocations) { let classOrInterface; if (!focusLocations || !focusLocations.length) { classOrInterface = find(originalFile.statements, or(isClassLike, isInterfaceDeclaration)); } else { classOrInterface = forEach(focusLocations, (location) => findAncestor(getTokenAtPosition(originalFile, location.start), or(isClassLike, isInterfaceDeclaration))); } if (!classOrInterface) { return; } const firstMatch = classOrInterface.members.find((member) => changes.some((change) => matchNode(change, member))); if (firstMatch) { const lastMatch = findLast(classOrInterface.members, (member) => changes.some((change) => matchNode(change, member))); forEach(changes, wipeNode); changeTracker.replaceNodeRangeWithNodes(originalFile, firstMatch, lastMatch, changes); return; } forEach(changes, wipeNode); changeTracker.insertNodesAfter(originalFile, classOrInterface.members[classOrInterface.members.length - 1], changes); } function placeStatements(originalFile, changeTracker, changes, focusLocations) { if (!(focusLocations == null ? undefined : focusLocations.length)) { changeTracker.insertNodesAtEndOfFile(originalFile, changes, false); return; } for (const location of focusLocations) { const scope = findAncestor(getTokenAtPosition(originalFile, location.start), (block) => or(isBlock, isSourceFile)(block) && some(block.statements, (origStmt) => changes.some((newStmt) => matchNode(newStmt, origStmt)))); if (scope) { const start = scope.statements.find((stmt) => changes.some((node) => matchNode(node, stmt))); if (start) { const end = findLast(scope.statements, (stmt) => changes.some((node) => matchNode(node, stmt))); forEach(changes, wipeNode); changeTracker.replaceNodeRangeWithNodes(originalFile, start, end, changes); return; } } } let scopeStatements = originalFile.statements; for (const location of focusLocations) { const block = findAncestor(getTokenAtPosition(originalFile, location.start), isBlock); if (block) { scopeStatements = block.statements; break; } } forEach(changes, wipeNode); changeTracker.insertNodesAfter(originalFile, scopeStatements[scopeStatements.length - 1], changes); } function matchNode(a, b) { var _a, _b, _c, _d, _e, _f; if (a.kind !== b.kind) { return false; } if (a.kind === 177) { return a.kind === b.kind; } if (isNamedDeclaration(a) && isNamedDeclaration(b)) { return a.name.getText() === b.name.getText(); } if (isIfStatement(a) && isIfStatement(b)) { return a.expression.getText() === b.expression.getText(); } if (isWhileStatement(a) && isWhileStatement(b)) { return a.expression.getText() === b.expression.getText(); } if (isForStatement(a) && isForStatement(b)) { return ((_a = a.initializer) == null ? undefined : _a.getText()) === ((_b = b.initializer) == null ? undefined : _b.getText()) && ((_c = a.incrementor) == null ? undefined : _c.getText()) === ((_d = b.incrementor) == null ? undefined : _d.getText()) && ((_e = a.condition) == null ? undefined : _e.getText()) === ((_f = b.condition) == null ? undefined : _f.getText()); } if (isForInOrOfStatement(a) && isForInOrOfStatement(b)) { return a.expression.getText() === b.expression.getText() && a.initializer.getText() === b.initializer.getText(); } if (isLabeledStatement(a) && isLabeledStatement(b)) { return a.label.getText() === b.label.getText(); } if (a.getText() === b.getText()) { return true; } return false; } function wipeNode(node) { resetNodePositions(node); node.parent = undefined; } function resetNodePositions(node) { node.pos = -1; node.end = -1; node.forEachChild(resetNodePositions); } var ts_OrganizeImports_exports = {}; __export2(ts_OrganizeImports_exports, { compareImportsOrRequireStatements: () => compareImportsOrRequireStatements, compareModuleSpecifiers: () => compareModuleSpecifiers2, getImportDeclarationInsertionIndex: () => getImportDeclarationInsertionIndex, getImportSpecifierInsertionIndex: () => getImportSpecifierInsertionIndex, getNamedImportSpecifierComparerWithDetection: () => getNamedImportSpecifierComparerWithDetection, getOrganizeImportsStringComparerWithDetection: () => getOrganizeImportsStringComparerWithDetection, organizeImports: () => organizeImports, testCoalesceExports: () => testCoalesceExports, testCoalesceImports: () => testCoalesceImports }); function organizeImports(sourceFile, formatContext, host, program, preferences, mode) { const changeTracker = ts_textChanges_exports.ChangeTracker.fromContext({ host, formatContext, preferences }); const shouldSort = mode === "SortAndCombine" || mode === "All"; const shouldCombine = shouldSort; const shouldRemove = mode === "RemoveUnused" || mode === "All"; const topLevelImportDecls = sourceFile.statements.filter(isImportDeclaration); const topLevelImportGroupDecls = groupByNewlineContiguous(sourceFile, topLevelImportDecls); const { comparersToTest, typeOrdersToTest } = getDetectionLists(preferences); const defaultComparer = comparersToTest[0]; const comparer = { moduleSpecifierComparer: typeof preferences.organizeImportsIgnoreCase === "boolean" ? defaultComparer : undefined, namedImportComparer: typeof preferences.organizeImportsIgnoreCase === "boolean" ? defaultComparer : undefined, typeOrder: preferences.organizeImportsTypeOrder }; if (typeof preferences.organizeImportsIgnoreCase !== "boolean") { ({ comparer: comparer.moduleSpecifierComparer } = detectModuleSpecifierCaseBySort(topLevelImportGroupDecls, comparersToTest)); } if (!comparer.typeOrder || typeof preferences.organizeImportsIgnoreCase !== "boolean") { const namedImportSort = detectNamedImportOrganizationBySort(topLevelImportDecls, comparersToTest, typeOrdersToTest); if (namedImportSort) { const { namedImportComparer, typeOrder } = namedImportSort; comparer.namedImportComparer = comparer.namedImportComparer ?? namedImportComparer; comparer.typeOrder = comparer.typeOrder ?? typeOrder; } } topLevelImportGroupDecls.forEach((importGroupDecl) => organizeImportsWorker(importGroupDecl, comparer)); if (mode !== "RemoveUnused") { getTopLevelExportGroups(sourceFile).forEach((exportGroupDecl) => organizeExportsWorker(exportGroupDecl, comparer.namedImportComparer)); } for (const ambientModule of sourceFile.statements.filter(isAmbientModule)) { if (!ambientModule.body) continue; const ambientModuleImportGroupDecls = groupByNewlineContiguous(sourceFile, ambientModule.body.statements.filter(isImportDeclaration)); ambientModuleImportGroupDecls.forEach((importGroupDecl) => organizeImportsWorker(importGroupDecl, comparer)); if (mode !== "RemoveUnused") { const ambientModuleExportDecls = ambientModule.body.statements.filter(isExportDeclaration); organizeExportsWorker(ambientModuleExportDecls, comparer.namedImportComparer); } } return changeTracker.getChanges(); function organizeDeclsWorker(oldImportDecls, coalesce) { if (length(oldImportDecls) === 0) { return; } setEmitFlags(oldImportDecls[0], 1024); const oldImportGroups = shouldCombine ? group(oldImportDecls, (importDecl) => getExternalModuleName2(importDecl.moduleSpecifier)) : [oldImportDecls]; const sortedImportGroups = shouldSort ? toSorted(oldImportGroups, (group1, group2) => compareModuleSpecifiersWorker(group1[0].moduleSpecifier, group2[0].moduleSpecifier, comparer.moduleSpecifierComparer ?? defaultComparer)) : oldImportGroups; const newImportDecls = flatMap(sortedImportGroups, (importGroup) => getExternalModuleName2(importGroup[0].moduleSpecifier) || importGroup[0].moduleSpecifier === undefined ? coalesce(importGroup) : importGroup); if (newImportDecls.length === 0) { changeTracker.deleteNodes(sourceFile, oldImportDecls, { leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.Exclude, trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.Include }, true); } else { const replaceOptions = { leadingTriviaOption: ts_textChanges_exports.LeadingTriviaOption.Exclude, trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.Include, suffix: getNewLineOrDefaultFromHost(host, formatContext.options) }; changeTracker.replaceNodeWithNodes(sourceFile, oldImportDecls[0], newImportDecls, replaceOptions); const hasTrailingComment = changeTracker.nodeHasTrailingComment(sourceFile, oldImportDecls[0], replaceOptions); changeTracker.deleteNodes(sourceFile, oldImportDecls.slice(1), { trailingTriviaOption: ts_textChanges_exports.TrailingTriviaOption.Include }, hasTrailingComment); } } function organizeImportsWorker(oldImportDecls, comparer2) { const detectedModuleCaseComparer = comparer2.moduleSpecifierComparer ?? defaultComparer; const detectedNamedImportCaseComparer = comparer2.namedImportComparer ?? defaultComparer; const detectedTypeOrder = comparer2.typeOrder ?? "last"; const specifierComparer = getNamedImportSpecifierComparer({ organizeImportsTypeOrder: detectedTypeOrder }, detectedNamedImportCaseComparer); const processImportsOfSameModuleSpecifier = (importGroup) => { if (shouldRemove) importGroup = removeUnusedImports(importGroup, sourceFile, program); if (shouldCombine) importGroup = coalesceImportsWorker(importGroup, detectedModuleCaseComparer, specifierComparer, sourceFile); if (shouldSort) importGroup = toSorted(importGroup, (s1, s2) => compareImportsOrRequireStatements(s1, s2, detectedModuleCaseComparer)); return importGroup; }; organizeDeclsWorker(oldImportDecls, processImportsOfSameModuleSpecifier); } function organizeExportsWorker(oldExportDecls, specifierCaseComparer) { const useComparer = getNamedImportSpecifierComparer(preferences, specifierCaseComparer); organizeDeclsWorker(oldExportDecls, (group2) => coalesceExportsWorker(group2, useComparer)); } } function getDetectionLists(preferences) { return { comparersToTest: typeof preferences.organizeImportsIgnoreCase === "boolean" ? [getOrganizeImportsStringComparer(preferences, preferences.organizeImportsIgnoreCase)] : [getOrganizeImportsStringComparer(preferences, true), getOrganizeImportsStringComparer(preferences, false)], typeOrdersToTest: preferences.organizeImportsTypeOrder ? [preferences.organizeImportsTypeOrder] : ["last", "inline", "first"] }; } function groupByNewlineContiguous(sourceFile, decls) { const scanner2 = createScanner(sourceFile.languageVersion, false, sourceFile.languageVariant); const group2 = []; let groupIndex = 0; for (const decl of decls) { if (group2[groupIndex] && isNewGroup(sourceFile, decl, scanner2)) { groupIndex++; } if (!group2[groupIndex]) { group2[groupIndex] = []; } group2[groupIndex].push(decl); } return group2; } function isNewGroup(sourceFile, decl, scanner2) { const startPos = decl.getFullStart(); const endPos = decl.getStart(); scanner2.setText(sourceFile.text, startPos, endPos - startPos); let numberOfNewLines = 0; while (scanner2.getTokenStart() < endPos) { const tokenKind = scanner2.scan(); if (tokenKind === 4) { numberOfNewLines++; if (numberOfNewLines >= 2) { return true; } } } return false; } function getTopLevelExportGroups(sourceFile) { const topLevelExportGroups = []; const statements = sourceFile.statements; const len = length(statements); let i = 0; let groupIndex = 0; while (i < len) { if (isExportDeclaration(statements[i])) { if (topLevelExportGroups[groupIndex] === undefined) { topLevelExportGroups[groupIndex] = []; } const exportDecl = statements[i]; if (exportDecl.moduleSpecifier) { topLevelExportGroups[groupIndex].push(exportDecl); i++; } else { while (i < len && isExportDeclaration(statements[i])) { topLevelExportGroups[groupIndex].push(statements[i++]); } groupIndex++; } } else { i++; } } return flatMap(topLevelExportGroups, (exportGroupDecls) => groupByNewlineContiguous(sourceFile, exportGroupDecls)); } function removeUnusedImports(oldImports, sourceFile, program) { const typeChecker = program.getTypeChecker(); const compilerOptions = program.getCompilerOptions(); const jsxNamespace = typeChecker.getJsxNamespace(sourceFile); const jsxFragmentFactory = typeChecker.getJsxFragmentFactory(sourceFile); const jsxElementsPresent = !!(sourceFile.transformFlags & 2); const usedImports = []; for (const importDecl of oldImports) { const { importClause, moduleSpecifier } = importDecl; if (!importClause) { usedImports.push(importDecl); continue; } let { name, namedBindings } = importClause; if (name && !isDeclarationUsed(name)) { name = undefined; } if (namedBindings) { if (isNamespaceImport(namedBindings)) { if (!isDeclarationUsed(namedBindings.name)) { namedBindings = undefined; } } else { const newElements = namedBindings.elements.filter((e) => isDeclarationUsed(e.name)); if (newElements.length < namedBindings.elements.length) { namedBindings = newElements.length ? factory.updateNamedImports(namedBindings, newElements) : undefined; } } } if (name || namedBindings) { usedImports.push(updateImportDeclarationAndClause(importDecl, name, namedBindings)); } else if (hasModuleDeclarationMatchingSpecifier(sourceFile, moduleSpecifier)) { if (sourceFile.isDeclarationFile) { usedImports.push(factory.createImportDeclaration(importDecl.modifiers, undefined, moduleSpecifier, undefined)); } else { usedImports.push(importDecl); } } } return usedImports; function isDeclarationUsed(identifier) { return jsxElementsPresent && (identifier.text === jsxNamespace || jsxFragmentFactory && identifier.text === jsxFragmentFactory) && jsxModeNeedsExplicitImport(compilerOptions.jsx) || ts_FindAllReferences_exports.Core.isSymbolReferencedInFile(identifier, typeChecker, sourceFile); } } function getExternalModuleName2(specifier) { return specifier !== undefined && isStringLiteralLike(specifier) ? specifier.text : undefined; } function getCategorizedImports(importGroup) { let importWithoutClause; const typeOnlyImports = { defaultImports: [], namespaceImports: [], namedImports: [] }; const regularImports = { defaultImports: [], namespaceImports: [], namedImports: [] }; for (const importDeclaration of importGroup) { if (importDeclaration.importClause === undefined) { importWithoutClause = importWithoutClause || importDeclaration; continue; } const group2 = importDeclaration.importClause.isTypeOnly ? typeOnlyImports : regularImports; const { name, namedBindings } = importDeclaration.importClause; if (name) { group2.defaultImports.push(importDeclaration); } if (namedBindings) { if (isNamespaceImport(namedBindings)) { group2.namespaceImports.push(importDeclaration); } else { group2.namedImports.push(importDeclaration); } } } return { importWithoutClause, typeOnlyImports, regularImports }; } function coalesceImportsWorker(importGroup, comparer, specifierComparer, sourceFile) { if (importGroup.length === 0) { return importGroup; } const importGroupsByAttributes = groupBy(importGroup, (decl) => { if (decl.attributes) { let attrs = decl.attributes.token + " "; for (const x of toSorted(decl.attributes.elements, (x2, y) => compareStringsCaseSensitive(x2.name.text, y.name.text))) { attrs += x.name.text + ":"; attrs += isStringLiteralLike(x.value) ? `"${x.value.text}"` : x.value.getText() + " "; } return attrs; } return ""; }); const coalescedImports = []; for (const attribute in importGroupsByAttributes) { const importGroupSameAttrs = importGroupsByAttributes[attribute]; const { importWithoutClause, typeOnlyImports, regularImports } = getCategorizedImports(importGroupSameAttrs); if (importWithoutClause) { coalescedImports.push(importWithoutClause); } for (const group2 of [regularImports, typeOnlyImports]) { const isTypeOnly = group2 === typeOnlyImports; const { defaultImports, namespaceImports, namedImports } = group2; if (!isTypeOnly && defaultImports.length === 1 && namespaceImports.length === 1 && namedImports.length === 0) { const defaultImport = defaultImports[0]; coalescedImports.push(updateImportDeclarationAndClause(defaultImport, defaultImport.importClause.name, namespaceImports[0].importClause.namedBindings)); continue; } const sortedNamespaceImports = toSorted(namespaceImports, (i1, i2) => comparer(i1.importClause.namedBindings.name.text, i2.importClause.namedBindings.name.text)); for (const namespaceImport of sortedNamespaceImports) { coalescedImports.push(updateImportDeclarationAndClause(namespaceImport, undefined, namespaceImport.importClause.namedBindings)); } const firstDefaultImport = firstOrUndefined(defaultImports); const firstNamedImport = firstOrUndefined(namedImports); const importDecl = firstDefaultImport ?? firstNamedImport; if (!importDecl) { continue; } let newDefaultImport; const newImportSpecifiers = []; if (defaultImports.length === 1) { newDefaultImport = defaultImports[0].importClause.name; } else { for (const defaultImport of defaultImports) { newImportSpecifiers.push(factory.createImportSpecifier(false, factory.createIdentifier("default"), defaultImport.importClause.name)); } } newImportSpecifiers.push(...getNewImportSpecifiers(namedImports)); const sortedImportSpecifiers = factory.createNodeArray(toSorted(newImportSpecifiers, specifierComparer), firstNamedImport == null ? undefined : firstNamedImport.importClause.namedBindings.elements.hasTrailingComma); const newNamedImports = sortedImportSpecifiers.length === 0 ? newDefaultImport ? undefined : factory.createNamedImports(emptyArray) : firstNamedImport ? factory.updateNamedImports(firstNamedImport.importClause.namedBindings, sortedImportSpecifiers) : factory.createNamedImports(sortedImportSpecifiers); if (sourceFile && newNamedImports && (firstNamedImport == null ? undefined : firstNamedImport.importClause.namedBindings) && !rangeIsOnSingleLine(firstNamedImport.importClause.namedBindings, sourceFile)) { setEmitFlags(newNamedImports, 2); } if (isTypeOnly && newDefaultImport && newNamedImports) { coalescedImports.push(updateImportDeclarationAndClause(importDecl, newDefaultImport, undefined)); coalescedImports.push(updateImportDeclarationAndClause(firstNamedImport ?? importDecl, undefined, newNamedImports)); } else { coalescedImports.push(updateImportDeclarationAndClause(importDecl, newDefaultImport, newNamedImports)); } } } return coalescedImports; } function coalesceExportsWorker(exportGroup, specifierComparer) { if (exportGroup.length === 0) { return exportGroup; } const { exportWithoutClause, namedExports, typeOnlyExports } = getCategorizedExports(exportGroup); const coalescedExports = []; if (exportWithoutClause) { coalescedExports.push(exportWithoutClause); } for (const exportGroup2 of [namedExports, typeOnlyExports]) { if (exportGroup2.length === 0) { continue; } const newExportSpecifiers = []; newExportSpecifiers.push(...flatMap(exportGroup2, (i) => i.exportClause && isNamedExports(i.exportClause) ? i.exportClause.elements : emptyArray)); const sortedExportSpecifiers = toSorted(newExportSpecifiers, specifierComparer); const exportDecl = exportGroup2[0]; coalescedExports.push(factory.updateExportDeclaration(exportDecl, exportDecl.modifiers, exportDecl.isTypeOnly, exportDecl.exportClause && (isNamedExports(exportDecl.exportClause) ? factory.updateNamedExports(exportDecl.exportClause, sortedExportSpecifiers) : factory.updateNamespaceExport(exportDecl.exportClause, exportDecl.exportClause.name)), exportDecl.moduleSpecifier, exportDecl.attributes)); } return coalescedExports; function getCategorizedExports(exportGroup2) { let exportWithoutClause2; const namedExports2 = []; const typeOnlyExports2 = []; for (const exportDeclaration of exportGroup2) { if (exportDeclaration.exportClause === undefined) { exportWithoutClause2 = exportWithoutClause2 || exportDeclaration; } else if (exportDeclaration.isTypeOnly) { typeOnlyExports2.push(exportDeclaration); } else { namedExports2.push(exportDeclaration); } } return { exportWithoutClause: exportWithoutClause2, namedExports: namedExports2, typeOnlyExports: typeOnlyExports2 }; } } function updateImportDeclarationAndClause(importDeclaration, name, namedBindings) { return factory.updateImportDeclaration(importDeclaration, importDeclaration.modifiers, factory.updateImportClause(importDeclaration.importClause, importDeclaration.importClause.phaseModifier, name, namedBindings), importDeclaration.moduleSpecifier, importDeclaration.attributes); } function compareImportOrExportSpecifiers(s1, s2, comparer, preferences) { switch (preferences == null ? undefined : preferences.organizeImportsTypeOrder) { case "first": return compareBooleans(s2.isTypeOnly, s1.isTypeOnly) || comparer(s1.name.text, s2.name.text); case "inline": return comparer(s1.name.text, s2.name.text); default: return compareBooleans(s1.isTypeOnly, s2.isTypeOnly) || comparer(s1.name.text, s2.name.text); } } function compareModuleSpecifiersWorker(m1, m2, comparer) { const name1 = m1 === undefined ? undefined : getExternalModuleName2(m1); const name2 = m2 === undefined ? undefined : getExternalModuleName2(m2); return compareBooleans(name1 === undefined, name2 === undefined) || compareBooleans(isExternalModuleNameRelative(name1), isExternalModuleNameRelative(name2)) || comparer(name1, name2); } function getModuleNamesFromDecls(decls) { return decls.map((s) => getExternalModuleName2(getModuleSpecifierExpression(s)) || ""); } function getModuleSpecifierExpression(declaration) { var _a; switch (declaration.kind) { case 272: return (_a = tryCast(declaration.moduleReference, isExternalModuleReference)) == null ? undefined : _a.expression; case 273: return declaration.moduleSpecifier; case 244: return declaration.declarationList.declarations[0].initializer.arguments[0]; } } function hasModuleDeclarationMatchingSpecifier(sourceFile, moduleSpecifier) { const moduleSpecifierText = isStringLiteral(moduleSpecifier) && moduleSpecifier.text; return isString(moduleSpecifierText) && some(sourceFile.moduleAugmentations, (moduleName) => isStringLiteral(moduleName) && moduleName.text === moduleSpecifierText); } function getNewImportSpecifiers(namedImports) { return flatMap(namedImports, (namedImport) => map(tryGetNamedBindingElements(namedImport), (importSpecifier) => importSpecifier.name && importSpecifier.propertyName && moduleExportNameTextEscaped(importSpecifier.name) === moduleExportNameTextEscaped(importSpecifier.propertyName) ? factory.updateImportSpecifier(importSpecifier, importSpecifier.isTypeOnly, undefined, importSpecifier.name) : importSpecifier)); } function tryGetNamedBindingElements(namedImport) { var _a; return ((_a = namedImport.importClause) == null ? undefined : _a.namedBindings) && isNamedImports(namedImport.importClause.namedBindings) ? namedImport.importClause.namedBindings.elements : undefined; } function detectModuleSpecifierCaseBySort(importDeclsByGroup, comparersToTest) { const moduleSpecifiersByGroup = []; importDeclsByGroup.forEach((importGroup) => { moduleSpecifiersByGroup.push(getModuleNamesFromDecls(importGroup)); }); return detectCaseSensitivityBySort(moduleSpecifiersByGroup, comparersToTest); } function detectNamedImportOrganizationBySort(originalGroups, comparersToTest, typesToTest) { let bothNamedImports = false; const importDeclsWithNamed = originalGroups.filter((i) => { var _a, _b; const namedImports = (_b = tryCast((_a = i.importClause) == null ? undefined : _a.namedBindings, isNamedImports)) == null ? undefined : _b.elements; if (!(namedImports == null ? undefined : namedImports.length)) return false; if (!bothNamedImports && namedImports.some((n) => n.isTypeOnly) && namedImports.some((n) => !n.isTypeOnly)) { bothNamedImports = true; } return true; }); if (importDeclsWithNamed.length === 0) return; const namedImportsByDecl = importDeclsWithNamed.map((importDecl) => { var _a, _b; return (_b = tryCast((_a = importDecl.importClause) == null ? undefined : _a.namedBindings, isNamedImports)) == null ? undefined : _b.elements; }).filter((elements) => elements !== undefined); if (!bothNamedImports || typesToTest.length === 0) { const sortState = detectCaseSensitivityBySort(namedImportsByDecl.map((i) => i.map((n) => n.name.text)), comparersToTest); return { namedImportComparer: sortState.comparer, typeOrder: typesToTest.length === 1 ? typesToTest[0] : undefined, isSorted: sortState.isSorted }; } const bestDiff = { first: Infinity, last: Infinity, inline: Infinity }; const bestComparer = { first: comparersToTest[0], last: comparersToTest[0], inline: comparersToTest[0] }; for (const curComparer of comparersToTest) { const currDiff = { first: 0, last: 0, inline: 0 }; for (const importDecl of namedImportsByDecl) { for (const typeOrder of typesToTest) { currDiff[typeOrder] = (currDiff[typeOrder] ?? 0) + measureSortedness(importDecl, (n1, n2) => compareImportOrExportSpecifiers(n1, n2, curComparer, { organizeImportsTypeOrder: typeOrder })); } } for (const key of typesToTest) { const typeOrder = key; if (currDiff[typeOrder] < bestDiff[typeOrder]) { bestDiff[typeOrder] = currDiff[typeOrder]; bestComparer[typeOrder] = curComparer; } } } outer: for (const bestKey of typesToTest) { const bestTypeOrder = bestKey; for (const testKey of typesToTest) { const testTypeOrder = testKey; if (bestDiff[testTypeOrder] < bestDiff[bestTypeOrder]) continue outer; } return { namedImportComparer: bestComparer[bestTypeOrder], typeOrder: bestTypeOrder, isSorted: bestDiff[bestTypeOrder] === 0 }; } return { namedImportComparer: bestComparer.last, typeOrder: "last", isSorted: bestDiff.last === 0 }; } function measureSortedness(arr, comparer) { let i = 0; for (let j = 0;j < arr.length - 1; j++) { if (comparer(arr[j], arr[j + 1]) > 0) { i++; } } return i; } function detectCaseSensitivityBySort(originalGroups, comparersToTest) { let bestComparer; let bestDiff = Infinity; for (const curComparer of comparersToTest) { let diffOfCurrentComparer = 0; for (const listToSort of originalGroups) { if (listToSort.length <= 1) continue; const diff = measureSortedness(listToSort, curComparer); diffOfCurrentComparer += diff; } if (diffOfCurrentComparer < bestDiff) { bestDiff = diffOfCurrentComparer; bestComparer = curComparer; } } return { comparer: bestComparer ?? comparersToTest[0], isSorted: bestDiff === 0 }; } function compareImportKind(s1, s2) { return compareValues(getImportKindOrder(s1), getImportKindOrder(s2)); } function getImportKindOrder(s1) { var _a; switch (s1.kind) { case 273: if (!s1.importClause) return 0; if (s1.importClause.isTypeOnly) return 1; if (((_a = s1.importClause.namedBindings) == null ? undefined : _a.kind) === 275) return 2; if (s1.importClause.name) return 3; return 4; case 272: return 5; case 244: return 6; } } function getOrganizeImportsOrdinalStringComparer(ignoreCase) { return ignoreCase ? compareStringsCaseInsensitiveEslintCompatible : compareStringsCaseSensitive; } function getOrganizeImportsUnicodeStringComparer(ignoreCase, preferences) { const resolvedLocale = getOrganizeImportsLocale(preferences); const caseFirst = preferences.organizeImportsCaseFirst ?? false; const numeric = preferences.organizeImportsNumericCollation ?? false; const accents = preferences.organizeImportsAccentCollation ?? true; const sensitivity = ignoreCase ? accents ? "accent" : "base" : accents ? "variant" : "case"; const collator = new Intl.Collator(resolvedLocale, { usage: "sort", caseFirst: caseFirst || "false", sensitivity, numeric }); return collator.compare; } function getOrganizeImportsLocale(preferences) { let locale = preferences.organizeImportsLocale; if (locale === "auto") locale = getUILocale(); if (locale === undefined) locale = "en"; const supportedLocales = Intl.Collator.supportedLocalesOf(locale); const resolvedLocale = supportedLocales.length ? supportedLocales[0] : "en"; return resolvedLocale; } function getOrganizeImportsStringComparer(preferences, ignoreCase) { const collation = preferences.organizeImportsCollation ?? "ordinal"; return collation === "unicode" ? getOrganizeImportsUnicodeStringComparer(ignoreCase, preferences) : getOrganizeImportsOrdinalStringComparer(ignoreCase); } function getOrganizeImportsStringComparerWithDetection(originalImportDecls, preferences) { return detectModuleSpecifierCaseBySort([originalImportDecls], getDetectionLists(preferences).comparersToTest); } function getNamedImportSpecifierComparer(preferences, comparer) { const stringComparer = comparer ?? getOrganizeImportsOrdinalStringComparer(!!preferences.organizeImportsIgnoreCase); return (s1, s2) => compareImportOrExportSpecifiers(s1, s2, stringComparer, preferences); } function getNamedImportSpecifierComparerWithDetection(importDecl, preferences, sourceFile) { const { comparersToTest, typeOrdersToTest } = getDetectionLists(preferences); const detectFromDecl = detectNamedImportOrganizationBySort([importDecl], comparersToTest, typeOrdersToTest); let specifierComparer = getNamedImportSpecifierComparer(preferences, comparersToTest[0]); let isSorted; if (typeof preferences.organizeImportsIgnoreCase !== "boolean" || !preferences.organizeImportsTypeOrder) { if (detectFromDecl) { const { namedImportComparer, typeOrder, isSorted: isDetectedSorted } = detectFromDecl; isSorted = isDetectedSorted; specifierComparer = getNamedImportSpecifierComparer({ organizeImportsTypeOrder: typeOrder }, namedImportComparer); } else if (sourceFile) { const detectFromFile = detectNamedImportOrganizationBySort(sourceFile.statements.filter(isImportDeclaration), comparersToTest, typeOrdersToTest); if (detectFromFile) { const { namedImportComparer, typeOrder, isSorted: isDetectedSorted } = detectFromFile; isSorted = isDetectedSorted; specifierComparer = getNamedImportSpecifierComparer({ organizeImportsTypeOrder: typeOrder }, namedImportComparer); } } } return { specifierComparer, isSorted }; } function getImportDeclarationInsertionIndex(sortedImports, newImport, comparer) { const index = binarySearch(sortedImports, newImport, identity, (a, b) => compareImportsOrRequireStatements(a, b, comparer)); return index < 0 ? ~index : index; } function getImportSpecifierInsertionIndex(sortedImports, newImport, comparer) { const index = binarySearch(sortedImports, newImport, identity, comparer); return index < 0 ? ~index : index; } function compareImportsOrRequireStatements(s1, s2, comparer) { return compareModuleSpecifiersWorker(getModuleSpecifierExpression(s1), getModuleSpecifierExpression(s2), comparer) || compareImportKind(s1, s2); } function testCoalesceImports(importGroup, ignoreCase, sourceFile, preferences) { const comparer = getOrganizeImportsOrdinalStringComparer(ignoreCase); const specifierComparer = getNamedImportSpecifierComparer({ organizeImportsTypeOrder: preferences == null ? undefined : preferences.organizeImportsTypeOrder }, comparer); return coalesceImportsWorker(importGroup, comparer, specifierComparer, sourceFile); } function testCoalesceExports(exportGroup, ignoreCase, preferences) { const comparer = (s1, s2) => compareImportOrExportSpecifiers(s1, s2, getOrganizeImportsOrdinalStringComparer(ignoreCase), { organizeImportsTypeOrder: (preferences == null ? undefined : preferences.organizeImportsTypeOrder) ?? "last" }); return coalesceExportsWorker(exportGroup, comparer); } function compareModuleSpecifiers2(m1, m2, ignoreCase) { const comparer = getOrganizeImportsOrdinalStringComparer(!!ignoreCase); return compareModuleSpecifiersWorker(m1, m2, comparer); } var ts_OutliningElementsCollector_exports = {}; __export2(ts_OutliningElementsCollector_exports, { collectElements: () => collectElements }); function collectElements(sourceFile, cancellationToken) { const res = []; addNodeOutliningSpans(sourceFile, cancellationToken, res); addRegionOutliningSpans(sourceFile, res); res.sort((span1, span2) => span1.textSpan.start - span2.textSpan.start); return res; } function addNodeOutliningSpans(sourceFile, cancellationToken, out) { let depthRemaining = 40; let current = 0; const statements = sourceFile.statements; const n = statements.length; while (current < n) { while (current < n && !isAnyImportSyntax(statements[current])) { visitNode3(statements[current]); current++; } if (current === n) break; const firstImport = current; while (current < n && isAnyImportSyntax(statements[current])) { visitNode3(statements[current]); current++; } const lastImport = current - 1; if (lastImport !== firstImport) { out.push(createOutliningSpanFromBounds(findChildOfKind(statements[firstImport], 102, sourceFile).getStart(sourceFile), statements[lastImport].getEnd(), "imports")); } } visitNode3(sourceFile.endOfFileToken); function visitNode3(n2) { var _a; if (depthRemaining === 0) return; cancellationToken.throwIfCancellationRequested(); if (isDeclaration(n2) || isVariableStatement(n2) || isReturnStatement(n2) || isCallOrNewExpression(n2) || n2.kind === 1) { addOutliningForLeadingCommentsForNode(n2, sourceFile, cancellationToken, out); } if (isFunctionLike(n2) && isBinaryExpression(n2.parent) && isPropertyAccessExpression(n2.parent.left)) { addOutliningForLeadingCommentsForNode(n2.parent.left, sourceFile, cancellationToken, out); } if (isBlock(n2) || isModuleBlock(n2)) { addOutliningForLeadingCommentsForPos(n2.statements.end, sourceFile, cancellationToken, out); } if (isClassLike(n2) || isInterfaceDeclaration(n2)) { addOutliningForLeadingCommentsForPos(n2.members.end, sourceFile, cancellationToken, out); } const span = getOutliningSpanForNode(n2, sourceFile); if (span) out.push(span); depthRemaining--; if (isCallExpression(n2)) { depthRemaining++; visitNode3(n2.expression); depthRemaining--; n2.arguments.forEach(visitNode3); (_a = n2.typeArguments) == null || _a.forEach(visitNode3); } else if (isIfStatement(n2) && n2.elseStatement && isIfStatement(n2.elseStatement)) { visitNode3(n2.expression); visitNode3(n2.thenStatement); depthRemaining++; visitNode3(n2.elseStatement); depthRemaining--; } else { n2.forEachChild(visitNode3); } depthRemaining++; } } function addRegionOutliningSpans(sourceFile, out) { const regions = []; const lineStarts = sourceFile.getLineStarts(); for (const currentLineStart of lineStarts) { const lineEnd = sourceFile.getLineEndOfPosition(currentLineStart); const lineText = sourceFile.text.substring(currentLineStart, lineEnd); const result = parseRegionDelimiter(lineText); if (!result || isInComment(sourceFile, currentLineStart)) { continue; } if (result.isStart) { const span = createTextSpanFromBounds(sourceFile.text.indexOf("//", currentLineStart), lineEnd); regions.push(createOutliningSpan(span, "region", span, false, result.name || "#region")); } else { const region = regions.pop(); if (region) { region.textSpan.length = lineEnd - region.textSpan.start; region.hintSpan.length = lineEnd - region.textSpan.start; out.push(region); } } } } var regionDelimiterRegExp = /^#(end)?region(.*)\r?$/; function parseRegionDelimiter(lineText) { lineText = lineText.trimStart(); if (!startsWith(lineText, "//")) { return null; } lineText = lineText.slice(2).trim(); const result = regionDelimiterRegExp.exec(lineText); if (result) { return { isStart: !result[1], name: result[2].trim() }; } return; } function addOutliningForLeadingCommentsForPos(pos, sourceFile, cancellationToken, out) { const comments = getLeadingCommentRanges(sourceFile.text, pos); if (!comments) return; let firstSingleLineCommentStart = -1; let lastSingleLineCommentEnd = -1; let singleLineCommentCount = 0; const sourceText = sourceFile.getFullText(); for (const { kind, pos: pos2, end } of comments) { cancellationToken.throwIfCancellationRequested(); switch (kind) { case 2: const commentText = sourceText.slice(pos2, end); if (parseRegionDelimiter(commentText)) { combineAndAddMultipleSingleLineComments(); singleLineCommentCount = 0; break; } if (singleLineCommentCount === 0) { firstSingleLineCommentStart = pos2; } lastSingleLineCommentEnd = end; singleLineCommentCount++; break; case 3: combineAndAddMultipleSingleLineComments(); out.push(createOutliningSpanFromBounds(pos2, end, "comment")); singleLineCommentCount = 0; break; default: Debug.assertNever(kind); } } combineAndAddMultipleSingleLineComments(); function combineAndAddMultipleSingleLineComments() { if (singleLineCommentCount > 1) { out.push(createOutliningSpanFromBounds(firstSingleLineCommentStart, lastSingleLineCommentEnd, "comment")); } } } function addOutliningForLeadingCommentsForNode(n, sourceFile, cancellationToken, out) { if (isJsxText(n)) return; addOutliningForLeadingCommentsForPos(n.pos, sourceFile, cancellationToken, out); } function createOutliningSpanFromBounds(pos, end, kind) { return createOutliningSpan(createTextSpanFromBounds(pos, end), kind); } function getOutliningSpanForNode(n, sourceFile) { switch (n.kind) { case 242: if (isFunctionLike(n.parent)) { return functionSpan(n.parent, n, sourceFile); } switch (n.parent.kind) { case 247: case 250: case 251: case 249: case 246: case 248: case 255: case 300: return spanForNode(n.parent); case 259: const tryStatement = n.parent; if (tryStatement.tryBlock === n) { return spanForNode(n.parent); } else if (tryStatement.finallyBlock === n) { const node = findChildOfKind(tryStatement, 98, sourceFile); if (node) return spanForNode(node); } default: return createOutliningSpan(createTextSpanFromNode(n, sourceFile), "code"); } case 269: return spanForNode(n.parent); case 264: case 232: case 265: case 267: case 270: case 188: case 207: return spanForNode(n); case 190: return spanForNode(n, false, !isTupleTypeNode(n.parent), 23); case 297: case 298: return spanForNodeArray(n.statements); case 211: return spanForObjectOrArrayLiteral(n); case 210: return spanForObjectOrArrayLiteral(n, 23); case 285: return spanForJSXElement(n); case 289: return spanForJSXFragment(n); case 286: case 287: return spanForJSXAttributes(n.attributes); case 229: case 15: return spanForTemplateLiteral(n); case 208: return spanForNode(n, false, !isBindingElement(n.parent), 23); case 220: return spanForArrowFunction(n); case 214: return spanForCallExpression(n); case 218: return spanForParenthesizedExpression(n); case 276: case 280: case 301: return spanForImportExportElements(n); } function spanForImportExportElements(node) { if (!node.elements.length) { return; } const openToken = findChildOfKind(node, 19, sourceFile); const closeToken = findChildOfKind(node, 20, sourceFile); if (!openToken || !closeToken || positionsAreOnSameLine(openToken.pos, closeToken.pos, sourceFile)) { return; } return spanBetweenTokens(openToken, closeToken, node, sourceFile, false, false); } function spanForCallExpression(node) { if (!node.arguments.length) { return; } const openToken = findChildOfKind(node, 21, sourceFile); const closeToken = findChildOfKind(node, 22, sourceFile); if (!openToken || !closeToken || positionsAreOnSameLine(openToken.pos, closeToken.pos, sourceFile)) { return; } return spanBetweenTokens(openToken, closeToken, node, sourceFile, false, true); } function spanForArrowFunction(node) { if (isBlock(node.body) || isParenthesizedExpression(node.body) || positionsAreOnSameLine(node.body.getFullStart(), node.body.getEnd(), sourceFile)) { return; } const textSpan = createTextSpanFromBounds(node.body.getFullStart(), node.body.getEnd()); return createOutliningSpan(textSpan, "code", createTextSpanFromNode(node)); } function spanForJSXElement(node) { const textSpan = createTextSpanFromBounds(node.openingElement.getStart(sourceFile), node.closingElement.getEnd()); const tagName = node.openingElement.tagName.getText(sourceFile); const bannerText = "<" + tagName + ">..."; return createOutliningSpan(textSpan, "code", textSpan, false, bannerText); } function spanForJSXFragment(node) { const textSpan = createTextSpanFromBounds(node.openingFragment.getStart(sourceFile), node.closingFragment.getEnd()); const bannerText = "<>..."; return createOutliningSpan(textSpan, "code", textSpan, false, bannerText); } function spanForJSXAttributes(node) { if (node.properties.length === 0) { return; } return createOutliningSpanFromBounds(node.getStart(sourceFile), node.getEnd(), "code"); } function spanForTemplateLiteral(node) { if (node.kind === 15 && node.text.length === 0) { return; } return createOutliningSpanFromBounds(node.getStart(sourceFile), node.getEnd(), "code"); } function spanForObjectOrArrayLiteral(node, open = 19) { return spanForNode(node, false, !isArrayLiteralExpression(node.parent) && !isCallExpression(node.parent), open); } function spanForNode(hintSpanNode, autoCollapse = false, useFullStart = true, open = 19, close = open === 19 ? 20 : 24) { const openToken = findChildOfKind(n, open, sourceFile); const closeToken = findChildOfKind(n, close, sourceFile); return openToken && closeToken && spanBetweenTokens(openToken, closeToken, hintSpanNode, sourceFile, autoCollapse, useFullStart); } function spanForNodeArray(nodeArray) { return nodeArray.length ? createOutliningSpan(createTextSpanFromRange(nodeArray), "code") : undefined; } function spanForParenthesizedExpression(node) { if (positionsAreOnSameLine(node.getStart(), node.getEnd(), sourceFile)) return; const textSpan = createTextSpanFromBounds(node.getStart(), node.getEnd()); return createOutliningSpan(textSpan, "code", createTextSpanFromNode(node)); } } function functionSpan(node, body, sourceFile) { const openToken = tryGetFunctionOpenToken(node, body, sourceFile); const closeToken = findChildOfKind(body, 20, sourceFile); return openToken && closeToken && spanBetweenTokens(openToken, closeToken, node, sourceFile, node.kind !== 220); } function spanBetweenTokens(openToken, closeToken, hintSpanNode, sourceFile, autoCollapse = false, useFullStart = true) { const textSpan = createTextSpanFromBounds(useFullStart ? openToken.getFullStart() : openToken.getStart(sourceFile), closeToken.getEnd()); return createOutliningSpan(textSpan, "code", createTextSpanFromNode(hintSpanNode, sourceFile), autoCollapse); } function createOutliningSpan(textSpan, kind, hintSpan = textSpan, autoCollapse = false, bannerText = "...") { return { textSpan, kind, hintSpan, bannerText, autoCollapse }; } function tryGetFunctionOpenToken(node, body, sourceFile) { if (isNodeArrayMultiLine(node.parameters, sourceFile)) { const openParenToken = findChildOfKind(node, 21, sourceFile); if (openParenToken) { return openParenToken; } } return findChildOfKind(body, 19, sourceFile); } var ts_Rename_exports = {}; __export2(ts_Rename_exports, { getRenameInfo: () => getRenameInfo, nodeIsEligibleForRename: () => nodeIsEligibleForRename }); function getRenameInfo(program, sourceFile, position, preferences) { const node = getAdjustedRenameLocation(getTouchingPropertyName(sourceFile, position)); if (nodeIsEligibleForRename(node)) { const renameInfo = getRenameInfoForNode(node, program.getTypeChecker(), sourceFile, program, preferences); if (renameInfo) { return renameInfo; } } return getRenameInfoError(Diagnostics.You_cannot_rename_this_element); } function getRenameInfoForNode(node, typeChecker, sourceFile, program, preferences) { const symbol = typeChecker.getSymbolAtLocation(node); if (!symbol) { if (isStringLiteralLike(node)) { const type = getContextualTypeFromParentOrAncestorTypeNode(node, typeChecker); if (type && (type.flags & 1024 || type.flags & 134217728 && every(type.types, (type2) => !!(type2.flags & 1024)))) { return getRenameInfoSuccess(node.text, node.text, "string", "", node, sourceFile); } } else if (isLabelName(node)) { const name = getTextOfNode(node); return getRenameInfoSuccess(name, name, "label", "", node, sourceFile); } return; } const { declarations } = symbol; if (!declarations || declarations.length === 0) return; if (declarations.some((declaration) => isDefinedInLibraryFile(program, declaration))) { return getRenameInfoError(Diagnostics.You_cannot_rename_elements_that_are_defined_in_the_standard_TypeScript_library); } if (isIdentifier(node) && node.escapedText === "default" && symbol.parent && symbol.parent.flags & 1536) { return; } if (isStringLiteralLike(node) && tryGetImportFromModuleSpecifier(node)) { return preferences.allowRenameOfImportPath ? getRenameInfoForModule(node, sourceFile, symbol) : undefined; } const wouldRenameNodeModules = wouldRenameInOtherNodeModules(sourceFile, symbol, typeChecker, preferences); if (wouldRenameNodeModules) { return getRenameInfoError(wouldRenameNodeModules); } const kind = ts_SymbolDisplay_exports.getSymbolKind(typeChecker, symbol, node); const specifierName = isImportOrExportSpecifierName(node) || isStringOrNumericLiteralLike(node) && node.parent.kind === 168 ? stripQuotes(getTextOfIdentifierOrLiteral(node)) : undefined; const displayName = specifierName || typeChecker.symbolToString(symbol); const fullDisplayName = specifierName || typeChecker.getFullyQualifiedName(symbol); return getRenameInfoSuccess(displayName, fullDisplayName, kind, ts_SymbolDisplay_exports.getSymbolModifiers(typeChecker, symbol), node, sourceFile); } function isDefinedInLibraryFile(program, declaration) { const sourceFile = declaration.getSourceFile(); return program.isSourceFileDefaultLibrary(sourceFile) && fileExtensionIs(sourceFile.fileName, ".d.ts"); } function wouldRenameInOtherNodeModules(originalFile, symbol, checker, preferences) { if (!preferences.providePrefixAndSuffixTextForRename && symbol.flags & 2097152) { const importSpecifier = symbol.declarations && find(symbol.declarations, (decl) => isImportSpecifier(decl)); if (importSpecifier && !importSpecifier.propertyName) { symbol = checker.getAliasedSymbol(symbol); } } const { declarations } = symbol; if (!declarations) { return; } const originalPackage = getPackagePathComponents(originalFile.path); if (originalPackage === undefined) { if (some(declarations, (declaration) => isInsideNodeModules(declaration.getSourceFile().path))) { return Diagnostics.You_cannot_rename_elements_that_are_defined_in_a_node_modules_folder; } else { return; } } for (const declaration of declarations) { const declPackage = getPackagePathComponents(declaration.getSourceFile().path); if (declPackage) { const length2 = Math.min(originalPackage.length, declPackage.length); for (let i = 0;i <= length2; i++) { if (compareStringsCaseSensitive(originalPackage[i], declPackage[i]) !== 0) { return Diagnostics.You_cannot_rename_elements_that_are_defined_in_another_node_modules_folder; } } } } return; } function getPackagePathComponents(filePath) { const components = getPathComponents(filePath); const nodeModulesIdx = components.lastIndexOf("node_modules"); if (nodeModulesIdx === -1) { return; } return components.slice(0, nodeModulesIdx + 2); } function getRenameInfoForModule(node, sourceFile, moduleSymbol) { if (!isExternalModuleNameRelative(node.text)) { return getRenameInfoError(Diagnostics.You_cannot_rename_a_module_via_a_global_import); } const moduleSourceFile = moduleSymbol.declarations && find(moduleSymbol.declarations, isSourceFile); if (!moduleSourceFile) return; const withoutIndex = endsWith(node.text, "/index") || endsWith(node.text, "/index.js") ? undefined : tryRemoveSuffix(removeFileExtension(moduleSourceFile.fileName), "/index"); const fileName = withoutIndex === undefined ? moduleSourceFile.fileName : withoutIndex; const kind = withoutIndex === undefined ? "module" : "directory"; const indexAfterLastSlash = node.text.lastIndexOf("/") + 1; const triggerSpan = createTextSpan(node.getStart(sourceFile) + 1 + indexAfterLastSlash, node.text.length - indexAfterLastSlash); return { canRename: true, fileToRename: fileName, kind, displayName: fileName, fullDisplayName: node.text, kindModifiers: "", triggerSpan }; } function getRenameInfoSuccess(displayName, fullDisplayName, kind, kindModifiers, node, sourceFile) { return { canRename: true, fileToRename: undefined, kind, displayName, fullDisplayName, kindModifiers, triggerSpan: createTriggerSpanForNode(node, sourceFile) }; } function getRenameInfoError(diagnostic) { return { canRename: false, localizedErrorMessage: getLocaleSpecificMessage(diagnostic) }; } function createTriggerSpanForNode(node, sourceFile) { let start = node.getStart(sourceFile); let width = node.getWidth(sourceFile); if (isStringLiteralLike(node)) { start += 1; width -= 2; } return createTextSpan(start, width); } function nodeIsEligibleForRename(node) { switch (node.kind) { case 80: case 81: case 11: case 15: case 110: return true; case 9: return isLiteralNameOfPropertyDeclarationOrIndexAccess(node); default: return false; } } var ts_SignatureHelp_exports = {}; __export2(ts_SignatureHelp_exports, { getArgumentInfoForCompletions: () => getArgumentInfoForCompletions, getSignatureHelpItems: () => getSignatureHelpItems }); function getSignatureHelpItems(program, sourceFile, position, triggerReason, cancellationToken) { const typeChecker = program.getTypeChecker(); const startingToken = findTokenOnLeftOfPosition(sourceFile, position); if (!startingToken) { return; } const onlyUseSyntacticOwners = !!triggerReason && triggerReason.kind === "characterTyped"; if (onlyUseSyntacticOwners && (isInString(sourceFile, position, startingToken) || isInComment(sourceFile, position))) { return; } const isManuallyInvoked = !!triggerReason && triggerReason.kind === "invoked"; const argumentInfo = getContainingArgumentInfo(startingToken, position, sourceFile, typeChecker, isManuallyInvoked); if (!argumentInfo) return; cancellationToken.throwIfCancellationRequested(); const candidateInfo = getCandidateOrTypeInfo(argumentInfo, typeChecker, sourceFile, startingToken, onlyUseSyntacticOwners); cancellationToken.throwIfCancellationRequested(); if (!candidateInfo) { return isSourceFileJS(sourceFile) ? createJSSignatureHelpItems(argumentInfo, program, cancellationToken) : undefined; } return typeChecker.runWithCancellationToken(cancellationToken, (typeChecker2) => candidateInfo.kind === 0 ? createSignatureHelpItems(candidateInfo.candidates, candidateInfo.resolvedSignature, argumentInfo, sourceFile, typeChecker2) : createTypeHelpItems(candidateInfo.symbol, argumentInfo, sourceFile, typeChecker2)); } function getCandidateOrTypeInfo({ invocation, argumentCount }, checker, sourceFile, startingToken, onlyUseSyntacticOwners) { switch (invocation.kind) { case 0: { if (onlyUseSyntacticOwners && !isSyntacticOwner(startingToken, invocation.node, sourceFile)) { return; } const candidates = []; const resolvedSignature = checker.getResolvedSignatureForSignatureHelp(invocation.node, candidates, argumentCount); return candidates.length === 0 ? undefined : { kind: 0, candidates, resolvedSignature }; } case 1: { const { called } = invocation; if (onlyUseSyntacticOwners && !containsPrecedingToken(startingToken, sourceFile, isIdentifier(called) ? called.parent : called)) { return; } const candidates = getPossibleGenericSignatures(called, argumentCount, checker); if (candidates.length !== 0) return { kind: 0, candidates, resolvedSignature: first(candidates) }; const symbol = checker.getSymbolAtLocation(called); return symbol && { kind: 1, symbol }; } case 2: return { kind: 0, candidates: [invocation.signature], resolvedSignature: invocation.signature }; default: return Debug.assertNever(invocation); } } function isSyntacticOwner(startingToken, node, sourceFile) { if (!isCallOrNewExpression(node)) return false; const invocationChildren = node.getChildren(sourceFile); switch (startingToken.kind) { case 21: return contains(invocationChildren, startingToken); case 28: { const containingList = findContainingList(startingToken); return !!containingList && contains(invocationChildren, containingList); } case 30: return containsPrecedingToken(startingToken, sourceFile, node.expression); default: return false; } } function createJSSignatureHelpItems(argumentInfo, program, cancellationToken) { if (argumentInfo.invocation.kind === 2) return; const expression = getExpressionFromInvocation(argumentInfo.invocation); const name = isPropertyAccessExpression(expression) ? expression.name.text : undefined; const typeChecker = program.getTypeChecker(); return name === undefined ? undefined : firstDefined(program.getSourceFiles(), (sourceFile) => firstDefined(sourceFile.getNamedDeclarations().get(name), (declaration) => { const type = declaration.symbol && typeChecker.getTypeOfSymbolAtLocation(declaration.symbol, declaration); const callSignatures = type && type.getCallSignatures(); if (callSignatures && callSignatures.length) { return typeChecker.runWithCancellationToken(cancellationToken, (typeChecker2) => createSignatureHelpItems(callSignatures, callSignatures[0], argumentInfo, sourceFile, typeChecker2, true)); } })); } function containsPrecedingToken(startingToken, sourceFile, container) { const pos = startingToken.getFullStart(); let currentParent = startingToken.parent; while (currentParent) { const precedingToken = findPrecedingToken(pos, sourceFile, currentParent, true); if (precedingToken) { return rangeContainsRange(container, precedingToken); } currentParent = currentParent.parent; } return Debug.fail("Could not find preceding token"); } function getArgumentInfoForCompletions(node, position, sourceFile, checker) { const info = getImmediatelyContainingArgumentInfo(node, position, sourceFile, checker); return !info || info.isTypeParameterList || info.invocation.kind !== 0 ? undefined : { invocation: info.invocation.node, argumentCount: info.argumentCount, argumentIndex: info.argumentIndex }; } function getArgumentOrParameterListInfo(node, position, sourceFile, checker) { const info = getArgumentOrParameterListAndIndex(node, sourceFile, checker); if (!info) return; const { list, argumentIndex } = info; const argumentCount = getArgumentCount(checker, list); const argumentsSpan = getApplicableSpanForArguments(list, sourceFile); return { list, argumentIndex, argumentCount, argumentsSpan }; } function getArgumentOrParameterListAndIndex(node, sourceFile, checker) { if (node.kind === 30 || node.kind === 21) { return { list: getChildListThatStartsWithOpenerToken(node.parent, node, sourceFile), argumentIndex: 0 }; } else { const list = findContainingList(node); return list && { list, argumentIndex: getArgumentIndex(checker, list, node) }; } } function getImmediatelyContainingArgumentInfo(node, position, sourceFile, checker) { const { parent: parent2 } = node; if (isCallOrNewExpression(parent2)) { const invocation = parent2; const info = getArgumentOrParameterListInfo(node, position, sourceFile, checker); if (!info) return; const { list, argumentIndex, argumentCount, argumentsSpan } = info; const isTypeParameterList = !!parent2.typeArguments && parent2.typeArguments.pos === list.pos; return { isTypeParameterList, invocation: { kind: 0, node: invocation }, argumentsSpan, argumentIndex, argumentCount }; } else if (isNoSubstitutionTemplateLiteral(node) && isTaggedTemplateExpression(parent2)) { if (isInsideTemplateLiteral(node, position, sourceFile)) { return getArgumentListInfoForTemplate(parent2, 0, sourceFile); } return; } else if (isTemplateHead(node) && parent2.parent.kind === 216) { const templateExpression = parent2; const tagExpression = templateExpression.parent; Debug.assert(templateExpression.kind === 229); const argumentIndex = isInsideTemplateLiteral(node, position, sourceFile) ? 0 : 1; return getArgumentListInfoForTemplate(tagExpression, argumentIndex, sourceFile); } else if (isTemplateSpan(parent2) && isTaggedTemplateExpression(parent2.parent.parent)) { const templateSpan = parent2; const tagExpression = parent2.parent.parent; if (isTemplateTail(node) && !isInsideTemplateLiteral(node, position, sourceFile)) { return; } const spanIndex = templateSpan.parent.templateSpans.indexOf(templateSpan); const argumentIndex = getArgumentIndexForTemplatePiece(spanIndex, node, position, sourceFile); return getArgumentListInfoForTemplate(tagExpression, argumentIndex, sourceFile); } else if (isJsxOpeningLikeElement(parent2)) { const attributeSpanStart = parent2.attributes.pos; const attributeSpanEnd = skipTrivia2(sourceFile.text, parent2.attributes.end, false); return { isTypeParameterList: false, invocation: { kind: 0, node: parent2 }, argumentsSpan: createTextSpan(attributeSpanStart, attributeSpanEnd - attributeSpanStart), argumentIndex: 0, argumentCount: 1 }; } else { const typeArgInfo = getPossibleTypeArgumentsInfo(node, sourceFile); if (typeArgInfo) { const { called, nTypeArguments } = typeArgInfo; const invocation = { kind: 1, called }; const argumentsSpan = createTextSpanFromBounds(called.getStart(sourceFile), node.end); return { isTypeParameterList: true, invocation, argumentsSpan, argumentIndex: nTypeArguments, argumentCount: nTypeArguments + 1 }; } return; } } function getImmediatelyContainingArgumentOrContextualParameterInfo(node, position, sourceFile, checker) { return tryGetParameterInfo(node, position, sourceFile, checker) || getImmediatelyContainingArgumentInfo(node, position, sourceFile, checker); } function getHighestBinary(b) { return isBinaryExpression(b.parent) ? getHighestBinary(b.parent) : b; } function countBinaryExpressionParameters(b) { return isBinaryExpression(b.left) ? countBinaryExpressionParameters(b.left) + 1 : 2; } function tryGetParameterInfo(startingToken, position, sourceFile, checker) { const node = getAdjustedNode(startingToken); if (node === undefined) return; const info = getContextualSignatureLocationInfo(node, sourceFile, position, checker); if (info === undefined) return; const { contextualType, argumentIndex, argumentCount, argumentsSpan } = info; const nonNullableContextualType = contextualType.getNonNullableType(); const symbol = nonNullableContextualType.symbol; if (symbol === undefined) return; const signature = lastOrUndefined(nonNullableContextualType.getCallSignatures()); if (signature === undefined) return; const invocation = { kind: 2, signature, node: startingToken, symbol: chooseBetterSymbol(symbol) }; return { isTypeParameterList: false, invocation, argumentsSpan, argumentIndex, argumentCount }; } function getAdjustedNode(node) { switch (node.kind) { case 21: case 28: return node; default: return findAncestor(node.parent, (n) => isParameter(n) ? true : isBindingElement(n) || isObjectBindingPattern(n) || isArrayBindingPattern(n) ? false : "quit"); } } function getContextualSignatureLocationInfo(node, sourceFile, position, checker) { const { parent: parent2 } = node; switch (parent2.kind) { case 218: case 175: case 219: case 220: const info = getArgumentOrParameterListInfo(node, position, sourceFile, checker); if (!info) return; const { argumentIndex, argumentCount, argumentsSpan } = info; const contextualType = isMethodDeclaration(parent2) ? checker.getContextualTypeForObjectLiteralElement(parent2) : checker.getContextualType(parent2); return contextualType && { contextualType, argumentIndex, argumentCount, argumentsSpan }; case 227: { const highestBinary = getHighestBinary(parent2); const contextualType2 = checker.getContextualType(highestBinary); const argumentIndex2 = node.kind === 21 ? 0 : countBinaryExpressionParameters(parent2) - 1; const argumentCount2 = countBinaryExpressionParameters(highestBinary); return contextualType2 && { contextualType: contextualType2, argumentIndex: argumentIndex2, argumentCount: argumentCount2, argumentsSpan: createTextSpanFromNode(parent2) }; } default: return; } } function chooseBetterSymbol(s) { return s.name === "__type" ? firstDefined(s.declarations, (d) => { var _a; return isFunctionTypeNode(d) ? (_a = tryCast(d.parent, canHaveSymbol)) == null ? undefined : _a.symbol : undefined; }) || s : s; } function getSpreadElementCount(node, checker) { const spreadType = checker.getTypeAtLocation(node.expression); if (checker.isTupleType(spreadType)) { const { elementFlags, fixedLength } = spreadType.target; if (fixedLength === 0) { return 0; } const firstOptionalIndex = findIndex(elementFlags, (f) => !(f & 1)); return firstOptionalIndex < 0 ? fixedLength : firstOptionalIndex; } return 0; } function getArgumentIndex(checker, argumentsList, node) { return getArgumentIndexOrCount(checker, argumentsList, node); } function getArgumentCount(checker, argumentsList) { return getArgumentIndexOrCount(checker, argumentsList, undefined); } function getArgumentIndexOrCount(checker, argumentsList, node) { const args = argumentsList.getChildren(); let argumentIndex = 0; let skipComma = false; for (const child of args) { if (node && child === node) { if (!skipComma && child.kind === 28) { argumentIndex++; } return argumentIndex; } if (isSpreadElement(child)) { argumentIndex += getSpreadElementCount(child, checker); skipComma = true; continue; } if (child.kind !== 28) { argumentIndex++; skipComma = true; continue; } if (skipComma) { skipComma = false; continue; } argumentIndex++; } if (node) { return argumentIndex; } return args.length && last(args).kind === 28 ? argumentIndex + 1 : argumentIndex; } function getArgumentIndexForTemplatePiece(spanIndex, node, position, sourceFile) { Debug.assert(position >= node.getStart(), "Assumed 'position' could not occur before node."); if (isTemplateLiteralToken(node)) { if (isInsideTemplateLiteral(node, position, sourceFile)) { return 0; } return spanIndex + 2; } return spanIndex + 1; } function getArgumentListInfoForTemplate(tagExpression, argumentIndex, sourceFile) { const argumentCount = isNoSubstitutionTemplateLiteral(tagExpression.template) ? 1 : tagExpression.template.templateSpans.length + 1; if (argumentIndex !== 0) { Debug.assertLessThan(argumentIndex, argumentCount); } return { isTypeParameterList: false, invocation: { kind: 0, node: tagExpression }, argumentsSpan: getApplicableSpanForTaggedTemplate(tagExpression, sourceFile), argumentIndex, argumentCount }; } function getApplicableSpanForArguments(argumentsList, sourceFile) { const applicableSpanStart = argumentsList.getFullStart(); const applicableSpanEnd = skipTrivia2(sourceFile.text, argumentsList.getEnd(), false); return createTextSpan(applicableSpanStart, applicableSpanEnd - applicableSpanStart); } function getApplicableSpanForTaggedTemplate(taggedTemplate, sourceFile) { const template = taggedTemplate.template; const applicableSpanStart = template.getStart(); let applicableSpanEnd = template.getEnd(); if (template.kind === 229) { const lastSpan = last(template.templateSpans); if (lastSpan.literal.getFullWidth() === 0) { applicableSpanEnd = skipTrivia2(sourceFile.text, applicableSpanEnd, false); } } return createTextSpan(applicableSpanStart, applicableSpanEnd - applicableSpanStart); } function getContainingArgumentInfo(node, position, sourceFile, checker, isManuallyInvoked) { for (let n = node;!isSourceFile(n) && (isManuallyInvoked || !isBlock(n)); n = n.parent) { Debug.assert(rangeContainsRange(n.parent, n), "Not a subspan", () => `Child: ${Debug.formatSyntaxKind(n.kind)}, parent: ${Debug.formatSyntaxKind(n.parent.kind)}`); const argumentInfo = getImmediatelyContainingArgumentOrContextualParameterInfo(n, position, sourceFile, checker); if (argumentInfo) { return argumentInfo; } } return; } function getChildListThatStartsWithOpenerToken(parent2, openerToken, sourceFile) { const children = parent2.getChildren(sourceFile); const indexOfOpenerToken = children.indexOf(openerToken); Debug.assert(indexOfOpenerToken >= 0 && children.length > indexOfOpenerToken + 1); return children[indexOfOpenerToken + 1]; } function getExpressionFromInvocation(invocation) { return invocation.kind === 0 ? getInvokedExpression(invocation.node) : invocation.called; } function getEnclosingDeclarationFromInvocation(invocation) { return invocation.kind === 0 ? invocation.node : invocation.kind === 1 ? invocation.called : invocation.node; } var signatureHelpNodeBuilderFlags = 8192 | 70221824 | 16384; function createSignatureHelpItems(candidates, resolvedSignature, { isTypeParameterList, argumentCount, argumentsSpan: applicableSpan, invocation, argumentIndex }, sourceFile, typeChecker, useFullPrefix) { var _a; const enclosingDeclaration = getEnclosingDeclarationFromInvocation(invocation); const callTargetSymbol = invocation.kind === 2 ? invocation.symbol : typeChecker.getSymbolAtLocation(getExpressionFromInvocation(invocation)) || useFullPrefix && ((_a = resolvedSignature.declaration) == null ? undefined : _a.symbol); const callTargetDisplayParts = callTargetSymbol ? symbolToDisplayParts(typeChecker, callTargetSymbol, useFullPrefix ? sourceFile : undefined, undefined) : emptyArray; const items = map(candidates, (candidateSignature) => getSignatureHelpItem(candidateSignature, callTargetDisplayParts, isTypeParameterList, typeChecker, enclosingDeclaration, sourceFile)); let selectedItemIndex = 0; let itemsSeen = 0; for (let i = 0;i < items.length; i++) { const item = items[i]; if (candidates[i] === resolvedSignature) { selectedItemIndex = itemsSeen; if (item.length > 1) { let count = 0; for (const i2 of item) { if (i2.isVariadic || i2.parameters.length >= argumentCount) { selectedItemIndex = itemsSeen + count; break; } count++; } } } itemsSeen += item.length; } Debug.assert(selectedItemIndex !== -1); const help = { items: flatMapToMutable(items, identity), applicableSpan, selectedItemIndex, argumentIndex, argumentCount }; const selected = help.items[selectedItemIndex]; if (selected.isVariadic) { const firstRest = findIndex(selected.parameters, (p) => !!p.isRest); if (-1 < firstRest && firstRest < selected.parameters.length - 1) { help.argumentIndex = selected.parameters.length; } else { help.argumentIndex = Math.min(help.argumentIndex, selected.parameters.length - 1); } } return help; } function createTypeHelpItems(symbol, { argumentCount, argumentsSpan: applicableSpan, invocation, argumentIndex }, sourceFile, checker) { const typeParameters = checker.getLocalTypeParametersOfClassOrInterfaceOrTypeAlias(symbol); if (!typeParameters) return; const items = [getTypeHelpItem(symbol, typeParameters, checker, getEnclosingDeclarationFromInvocation(invocation), sourceFile)]; return { items, applicableSpan, selectedItemIndex: 0, argumentIndex, argumentCount }; } function getTypeHelpItem(symbol, typeParameters, checker, enclosingDeclaration, sourceFile) { const typeSymbolDisplay = symbolToDisplayParts(checker, symbol); const printer = createPrinterWithRemoveComments(); const parameters = typeParameters.map((t) => createSignatureHelpParameterForTypeParameter(t, checker, enclosingDeclaration, sourceFile, printer)); const documentation = symbol.getDocumentationComment(checker); const tags = symbol.getJsDocTags(checker); const prefixDisplayParts = [...typeSymbolDisplay, punctuationPart(30)]; return { isVariadic: false, prefixDisplayParts, suffixDisplayParts: [punctuationPart(32)], separatorDisplayParts, parameters, documentation, tags }; } var separatorDisplayParts = [punctuationPart(28), spacePart()]; function getSignatureHelpItem(candidateSignature, callTargetDisplayParts, isTypeParameterList, checker, enclosingDeclaration, sourceFile) { const infos = (isTypeParameterList ? itemInfoForTypeParameters : itemInfoForParameters)(candidateSignature, checker, enclosingDeclaration, sourceFile); return map(infos, ({ isVariadic, parameters, prefix, suffix }) => { const prefixDisplayParts = [...callTargetDisplayParts, ...prefix]; const suffixDisplayParts = [...suffix, ...returnTypeToDisplayParts(candidateSignature, enclosingDeclaration, checker)]; const documentation = candidateSignature.getDocumentationComment(checker); const tags = candidateSignature.getJsDocTags(); return { isVariadic, prefixDisplayParts, suffixDisplayParts, separatorDisplayParts, parameters, documentation, tags }; }); } function returnTypeToDisplayParts(candidateSignature, enclosingDeclaration, checker) { return mapToDisplayParts((writer) => { writer.writePunctuation(":"); writer.writeSpace(" "); const predicate = checker.getTypePredicateOfSignature(candidateSignature); if (predicate) { checker.writeTypePredicate(predicate, enclosingDeclaration, undefined, writer); } else { checker.writeType(checker.getReturnTypeOfSignature(candidateSignature), enclosingDeclaration, undefined, writer); } }); } function itemInfoForTypeParameters(candidateSignature, checker, enclosingDeclaration, sourceFile) { const typeParameters = (candidateSignature.target || candidateSignature).typeParameters; const printer = createPrinterWithRemoveComments(); const parameters = (typeParameters || emptyArray).map((t) => createSignatureHelpParameterForTypeParameter(t, checker, enclosingDeclaration, sourceFile, printer)); const thisParameter = candidateSignature.thisParameter ? [checker.symbolToParameterDeclaration(candidateSignature.thisParameter, enclosingDeclaration, signatureHelpNodeBuilderFlags)] : []; return checker.getExpandedParameters(candidateSignature).map((paramList) => { const params = factory.createNodeArray([...thisParameter, ...map(paramList, (param) => checker.symbolToParameterDeclaration(param, enclosingDeclaration, signatureHelpNodeBuilderFlags))]); const parameterParts = mapToDisplayParts((writer) => { printer.writeList(2576, params, sourceFile, writer); }); return { isVariadic: false, parameters, prefix: [punctuationPart(30)], suffix: [punctuationPart(32), ...parameterParts] }; }); } function itemInfoForParameters(candidateSignature, checker, enclosingDeclaration, sourceFile) { const printer = createPrinterWithRemoveComments(); const typeParameterParts = mapToDisplayParts((writer) => { if (candidateSignature.typeParameters && candidateSignature.typeParameters.length) { const args = factory.createNodeArray(candidateSignature.typeParameters.map((p) => checker.typeParameterToDeclaration(p, enclosingDeclaration, signatureHelpNodeBuilderFlags))); printer.writeList(53776, args, sourceFile, writer); } }); const lists = checker.getExpandedParameters(candidateSignature); const isVariadic = !checker.hasEffectiveRestParameter(candidateSignature) ? (_) => false : lists.length === 1 ? (_) => true : (pList) => { var _a; return !!(pList.length && ((_a = tryCast(pList[pList.length - 1], isTransientSymbol)) == null ? undefined : _a.links.checkFlags) & 32768); }; return lists.map((parameterList) => ({ isVariadic: isVariadic(parameterList), parameters: parameterList.map((p) => createSignatureHelpParameterForParameter(p, checker, enclosingDeclaration, sourceFile, printer)), prefix: [...typeParameterParts, punctuationPart(21)], suffix: [punctuationPart(22)] })); } function createSignatureHelpParameterForParameter(parameter, checker, enclosingDeclaration, sourceFile, printer) { const displayParts = mapToDisplayParts((writer) => { const param = checker.symbolToParameterDeclaration(parameter, enclosingDeclaration, signatureHelpNodeBuilderFlags); printer.writeNode(4, param, sourceFile, writer); }); const isOptional = checker.isOptionalParameter(parameter.valueDeclaration); const isRest = isTransientSymbol(parameter) && !!(parameter.links.checkFlags & 32768); return { name: parameter.name, documentation: parameter.getDocumentationComment(checker), displayParts, isOptional, isRest }; } function createSignatureHelpParameterForTypeParameter(typeParameter, checker, enclosingDeclaration, sourceFile, printer) { const displayParts = mapToDisplayParts((writer) => { const param = checker.typeParameterToDeclaration(typeParameter, enclosingDeclaration, signatureHelpNodeBuilderFlags); printer.writeNode(4, param, sourceFile, writer); }); return { name: typeParameter.symbol.name, documentation: typeParameter.symbol.getDocumentationComment(checker), displayParts, isOptional: false, isRest: false }; } var ts_SmartSelectionRange_exports = {}; __export2(ts_SmartSelectionRange_exports, { getSmartSelectionRange: () => getSmartSelectionRange }); function getSmartSelectionRange(pos, sourceFile) { var _a, _b; let selectionRange = { textSpan: createTextSpanFromBounds(sourceFile.getFullStart(), sourceFile.getEnd()) }; let parentNode = sourceFile; outer: while (true) { const children = getSelectionChildren(parentNode); if (!children.length) break; for (let i = 0;i < children.length; i++) { const prevNode = children[i - 1]; const node = children[i]; const nextNode = children[i + 1]; if (getTokenPosOfNode(node, sourceFile, true) > pos) { break outer; } const comment = singleOrUndefined(getTrailingCommentRanges(sourceFile.text, node.end)); if (comment && comment.kind === 2) { pushSelectionCommentRange(comment.pos, comment.end); } if (positionShouldSnapToNode(sourceFile, pos, node)) { if (isFunctionBody(node) && isFunctionLikeDeclaration(parentNode) && !positionsAreOnSameLine(node.getStart(sourceFile), node.getEnd(), sourceFile)) { pushSelectionRange(node.getStart(sourceFile), node.getEnd()); } if (isBlock(node) || isTemplateSpan(node) || isTemplateHead(node) || isTemplateTail(node) || prevNode && isTemplateHead(prevNode) || isVariableDeclarationList(node) && isVariableStatement(parentNode) || isSyntaxList(node) && isVariableDeclarationList(parentNode) || isVariableDeclaration(node) && isSyntaxList(parentNode) && children.length === 1 || isJSDocTypeExpression(node) || isJSDocSignature(node) || isJSDocTypeLiteral(node)) { parentNode = node; break; } if (isTemplateSpan(parentNode) && nextNode && isTemplateMiddleOrTemplateTail(nextNode)) { const start2 = node.getFullStart() - "${".length; const end2 = nextNode.getStart() + "}".length; pushSelectionRange(start2, end2); } const isBetweenMultiLineBookends = isSyntaxList(node) && isListOpener(prevNode) && isListCloser(nextNode) && !positionsAreOnSameLine(prevNode.getStart(), nextNode.getStart(), sourceFile); let start = isBetweenMultiLineBookends ? prevNode.getEnd() : node.getStart(); const end = isBetweenMultiLineBookends ? nextNode.getStart() : getEndPos(sourceFile, node); if (hasJSDocNodes(node) && ((_a = node.jsDoc) == null ? undefined : _a.length)) { pushSelectionRange(first(node.jsDoc).getStart(), end); } if (isSyntaxList(node)) { const firstChild = node.getChildren()[0]; if (firstChild && hasJSDocNodes(firstChild) && ((_b = firstChild.jsDoc) == null ? undefined : _b.length) && firstChild.getStart() !== node.pos) { start = Math.min(start, first(firstChild.jsDoc).getStart()); } } pushSelectionRange(start, end); if (isStringLiteral(node) || isTemplateLiteral(node)) { pushSelectionRange(start + 1, end - 1); } parentNode = node; break; } if (i === children.length - 1) { break outer; } } } return selectionRange; function pushSelectionRange(start, end) { if (start !== end) { const textSpan = createTextSpanFromBounds(start, end); if (!selectionRange || !textSpansEqual(textSpan, selectionRange.textSpan) && textSpanIntersectsWithPosition(textSpan, pos)) { selectionRange = { textSpan, ...selectionRange && { parent: selectionRange } }; } } } function pushSelectionCommentRange(start, end) { pushSelectionRange(start, end); let pos2 = start; while (sourceFile.text.charCodeAt(pos2) === 47) { pos2++; } pushSelectionRange(pos2, end); } } function positionShouldSnapToNode(sourceFile, pos, node) { Debug.assert(node.pos <= pos); if (pos < node.end) { return true; } const nodeEnd = node.getEnd(); if (nodeEnd === pos) { return getTouchingPropertyName(sourceFile, pos).pos < node.end; } return false; } var isImport2 = or(isImportDeclaration, isImportEqualsDeclaration); function getSelectionChildren(node) { var _a; if (isSourceFile(node)) { return groupChildren(node.getChildAt(0).getChildren(), isImport2); } if (isMappedTypeNode(node)) { const [openBraceToken, ...children] = node.getChildren(); const closeBraceToken = Debug.checkDefined(children.pop()); Debug.assertEqual(openBraceToken.kind, 19); Debug.assertEqual(closeBraceToken.kind, 20); const groupedWithPlusMinusTokens = groupChildren(children, (child) => child === node.readonlyToken || child.kind === 148 || child === node.questionToken || child.kind === 58); const groupedWithBrackets = groupChildren(groupedWithPlusMinusTokens, ({ kind }) => kind === 23 || kind === 169 || kind === 24); return [ openBraceToken, createSyntaxList2(splitChildren(groupedWithBrackets, ({ kind }) => kind === 59)), closeBraceToken ]; } if (isPropertySignature(node)) { const children = groupChildren(node.getChildren(), (child) => child === node.name || contains(node.modifiers, child)); const firstJSDocChild = ((_a = children[0]) == null ? undefined : _a.kind) === 321 ? children[0] : undefined; const withJSDocSeparated = firstJSDocChild ? children.slice(1) : children; const splittedChildren = splitChildren(withJSDocSeparated, ({ kind }) => kind === 59); return firstJSDocChild ? [firstJSDocChild, createSyntaxList2(splittedChildren)] : splittedChildren; } if (isParameter(node)) { const groupedDotDotDotAndName = groupChildren(node.getChildren(), (child) => child === node.dotDotDotToken || child === node.name); const groupedWithQuestionToken = groupChildren(groupedDotDotDotAndName, (child) => child === groupedDotDotDotAndName[0] || child === node.questionToken); return splitChildren(groupedWithQuestionToken, ({ kind }) => kind === 64); } if (isBindingElement(node)) { return splitChildren(node.getChildren(), ({ kind }) => kind === 64); } return node.getChildren(); } function groupChildren(children, groupOn) { const result = []; let group2; for (const child of children) { if (groupOn(child)) { group2 = group2 || []; group2.push(child); } else { if (group2) { result.push(createSyntaxList2(group2)); group2 = undefined; } result.push(child); } } if (group2) { result.push(createSyntaxList2(group2)); } return result; } function splitChildren(children, pivotOn, separateTrailingSemicolon = true) { if (children.length < 2) { return children; } const splitTokenIndex = findIndex(children, pivotOn); if (splitTokenIndex === -1) { return children; } const leftChildren = children.slice(0, splitTokenIndex); const splitToken = children[splitTokenIndex]; const lastToken = last(children); const separateLastToken = separateTrailingSemicolon && lastToken.kind === 27; const rightChildren = children.slice(splitTokenIndex + 1, separateLastToken ? children.length - 1 : undefined); const result = compact([ leftChildren.length ? createSyntaxList2(leftChildren) : undefined, splitToken, rightChildren.length ? createSyntaxList2(rightChildren) : undefined ]); return separateLastToken ? result.concat(lastToken) : result; } function createSyntaxList2(children) { Debug.assertGreaterThanOrEqual(children.length, 1); return setTextRangePosEnd(parseNodeFactory.createSyntaxList(children), children[0].pos, last(children).end); } function isListOpener(token) { const kind = token && token.kind; return kind === 19 || kind === 23 || kind === 21 || kind === 287; } function isListCloser(token) { const kind = token && token.kind; return kind === 20 || kind === 24 || kind === 22 || kind === 288; } function getEndPos(sourceFile, node) { switch (node.kind) { case 342: case 339: case 349: case 347: case 344: return sourceFile.getLineEndOfPosition(node.getStart()); default: return node.getEnd(); } } var ts_SymbolDisplay_exports = {}; __export2(ts_SymbolDisplay_exports, { getSymbolDisplayPartsDocumentationAndSymbolKind: () => getSymbolDisplayPartsDocumentationAndSymbolKind, getSymbolKind: () => getSymbolKind, getSymbolModifiers: () => getSymbolModifiers }); var symbolDisplayNodeBuilderFlags = 8192 | 70221824 | 16384; function getSymbolKind(typeChecker, symbol, location) { const result = getSymbolKindOfConstructorPropertyMethodAccessorFunctionOrVar(typeChecker, symbol, location); if (result !== "") { return result; } const flags = getCombinedLocalAndExportSymbolFlags(symbol); if (flags & 32) { return getDeclarationOfKind(symbol, 232) ? "local class" : "class"; } if (flags & 384) return "enum"; if (flags & 524288) return "type"; if (flags & 64) return "interface"; if (flags & 262144) return "type parameter"; if (flags & 8) return "enum member"; if (flags & 2097152) return "alias"; if (flags & 1536) return "module"; return result; } function getSymbolKindOfConstructorPropertyMethodAccessorFunctionOrVar(typeChecker, symbol, location) { const roots = typeChecker.getRootSymbols(symbol); if (roots.length === 1 && first(roots).flags & 8192 && typeChecker.getTypeOfSymbolAtLocation(symbol, location).getNonNullableType().getCallSignatures().length !== 0) { return "method"; } if (typeChecker.isUndefinedSymbol(symbol)) { return "var"; } if (typeChecker.isArgumentsSymbol(symbol)) { return "local var"; } if (location.kind === 110 && isExpression(location) || isThisInTypeQuery(location)) { return "parameter"; } const flags = getCombinedLocalAndExportSymbolFlags(symbol); if (flags & 3) { if (isFirstDeclarationOfSymbolParameter(symbol)) { return "parameter"; } else if (symbol.valueDeclaration && isVarConst(symbol.valueDeclaration)) { return "const"; } else if (symbol.valueDeclaration && isVarUsing(symbol.valueDeclaration)) { return "using"; } else if (symbol.valueDeclaration && isVarAwaitUsing(symbol.valueDeclaration)) { return "await using"; } else if (forEach(symbol.declarations, isLet)) { return "let"; } return isLocalVariableOrFunction(symbol) ? "local var" : "var"; } if (flags & 16) return isLocalVariableOrFunction(symbol) ? "local function" : "function"; if (flags & 32768) return "getter"; if (flags & 65536) return "setter"; if (flags & 8192) return "method"; if (flags & 16384) return "constructor"; if (flags & 131072) return "index"; if (flags & 4) { if (flags & 33554432 && symbol.links.checkFlags & 6) { const unionPropertyKind = forEach(typeChecker.getRootSymbols(symbol), (rootSymbol) => { const rootSymbolFlags = rootSymbol.getFlags(); if (rootSymbolFlags & (98308 | 3)) { return "property"; } }); if (!unionPropertyKind) { const typeOfUnionProperty = typeChecker.getTypeOfSymbolAtLocation(symbol, location); if (typeOfUnionProperty.getCallSignatures().length) { return "method"; } return "property"; } return unionPropertyKind; } return "property"; } return ""; } function getNormalizedSymbolModifiers(symbol) { if (symbol.declarations && symbol.declarations.length) { const [declaration, ...declarations] = symbol.declarations; const excludeFlags = length(declarations) && isDeprecatedDeclaration(declaration) && some(declarations, (d) => !isDeprecatedDeclaration(d)) ? 65536 : 0; const modifiers = getNodeModifiers(declaration, excludeFlags); if (modifiers) { return modifiers.split(","); } } return []; } function getSymbolModifiers(typeChecker, symbol) { if (!symbol) { return ""; } const modifiers = new Set(getNormalizedSymbolModifiers(symbol)); if (symbol.flags & 2097152) { const resolvedSymbol = typeChecker.getAliasedSymbol(symbol); if (resolvedSymbol !== symbol) { forEach(getNormalizedSymbolModifiers(resolvedSymbol), (modifier) => { modifiers.add(modifier); }); } } if (symbol.flags & 16777216) { modifiers.add("optional"); } return modifiers.size > 0 ? arrayFrom(modifiers.values()).join(",") : ""; } function getSymbolDisplayPartsDocumentationAndSymbolKindWorker(typeChecker, symbol, sourceFile, enclosingDeclaration, location, type, semanticMeaning, alias, maximumLength, verbosityLevel) { var _a; const displayParts = []; let documentation = []; let tags = []; const symbolFlags = getCombinedLocalAndExportSymbolFlags(symbol); let symbolKind = semanticMeaning & 1 ? getSymbolKindOfConstructorPropertyMethodAccessorFunctionOrVar(typeChecker, symbol, location) : ""; let hasAddedSymbolInfo = false; const isThisExpression = location.kind === 110 && isInExpressionContext(location) || isThisInTypeQuery(location); let documentationFromAlias; let tagsFromAlias; let hasMultipleSignatures = false; const typeWriterOut = { canIncreaseExpansionDepth: false, truncated: false }; let symbolWasExpanded = false; if (location.kind === 110 && !isThisExpression) { return { displayParts: [keywordPart(110)], documentation: [], symbolKind: "primitive type", tags: undefined }; } if (symbolKind !== "" || symbolFlags & 32 || symbolFlags & 2097152) { if (symbolKind === "getter" || symbolKind === "setter") { const declaration = find(symbol.declarations, (declaration2) => declaration2.name === location && declaration2.kind !== 212); if (declaration) { switch (declaration.kind) { case 178: symbolKind = "getter"; break; case 179: symbolKind = "setter"; break; case 173: symbolKind = "accessor"; break; default: Debug.assertNever(declaration); } } else { symbolKind = "property"; } } let signature; type ?? (type = isThisExpression ? typeChecker.getTypeAtLocation(location) : typeChecker.getTypeOfSymbolAtLocation(symbol, location)); if (location.parent && location.parent.kind === 212) { const right = location.parent.name; if (right === location || right && right.getFullWidth() === 0) { location = location.parent; } } let callExpressionLike; if (isCallOrNewExpression(location)) { callExpressionLike = location; } else if (isCallExpressionTarget(location) || isNewExpressionTarget(location)) { callExpressionLike = location.parent; } else if (location.parent && (isJsxOpeningLikeElement(location.parent) || isTaggedTemplateExpression(location.parent)) && isFunctionLike(symbol.valueDeclaration)) { callExpressionLike = location.parent; } if (callExpressionLike) { signature = typeChecker.getResolvedSignature(callExpressionLike); const useConstructSignatures = callExpressionLike.kind === 215 || isCallExpression(callExpressionLike) && callExpressionLike.expression.kind === 108; const allSignatures = useConstructSignatures ? type.getConstructSignatures() : type.getCallSignatures(); if (signature && !contains(allSignatures, signature.target) && !contains(allSignatures, signature)) { signature = allSignatures.length ? allSignatures[0] : undefined; } if (signature) { if (useConstructSignatures && symbolFlags & 32) { symbolKind = "constructor"; addPrefixForAnyFunctionOrVar(type.symbol, symbolKind); } else if (symbolFlags & 2097152) { symbolKind = "alias"; pushSymbolKind(symbolKind); displayParts.push(spacePart()); if (useConstructSignatures) { if (signature.flags & 4) { displayParts.push(keywordPart(128)); displayParts.push(spacePart()); } displayParts.push(keywordPart(105)); displayParts.push(spacePart()); } addFullSymbolName(symbol); } else { addPrefixForAnyFunctionOrVar(symbol, symbolKind); } switch (symbolKind) { case "JSX attribute": case "property": case "var": case "const": case "let": case "parameter": case "local var": displayParts.push(punctuationPart(59)); displayParts.push(spacePart()); if (!(getObjectFlags(type) & 16) && type.symbol) { addRange(displayParts, symbolToDisplayParts(typeChecker, type.symbol, enclosingDeclaration, undefined, 4 | 1)); displayParts.push(lineBreakPart()); } if (useConstructSignatures) { if (signature.flags & 4) { displayParts.push(keywordPart(128)); displayParts.push(spacePart()); } displayParts.push(keywordPart(105)); displayParts.push(spacePart()); } addSignatureDisplayParts(signature, allSignatures, 262144); break; default: addSignatureDisplayParts(signature, allSignatures); } hasAddedSymbolInfo = true; hasMultipleSignatures = allSignatures.length > 1; } } else if (isNameOfFunctionDeclaration(location) && !(symbolFlags & 98304) || location.kind === 137 && location.parent.kind === 177) { const functionDeclaration = location.parent; const locationIsSymbolDeclaration = symbol.declarations && find(symbol.declarations, (declaration) => declaration === (location.kind === 137 ? functionDeclaration.parent : functionDeclaration)); if (locationIsSymbolDeclaration) { const allSignatures = functionDeclaration.kind === 177 ? type.getNonNullableType().getConstructSignatures() : type.getNonNullableType().getCallSignatures(); if (!typeChecker.isImplementationOfOverload(functionDeclaration)) { signature = typeChecker.getSignatureFromDeclaration(functionDeclaration); } else { signature = allSignatures[0]; } if (functionDeclaration.kind === 177) { symbolKind = "constructor"; addPrefixForAnyFunctionOrVar(type.symbol, symbolKind); } else { addPrefixForAnyFunctionOrVar(functionDeclaration.kind === 180 && !(type.symbol.flags & 2048 || type.symbol.flags & 4096) ? type.symbol : symbol, symbolKind); } if (signature) { addSignatureDisplayParts(signature, allSignatures); } hasAddedSymbolInfo = true; hasMultipleSignatures = allSignatures.length > 1; } } } if (symbolFlags & 32 && !hasAddedSymbolInfo && !isThisExpression) { addAliasPrefixIfNecessary(); const classExpression = getDeclarationOfKind(symbol, 232); if (classExpression) { pushSymbolKind("local class"); displayParts.push(spacePart()); } if (!tryExpandSymbol(symbol, semanticMeaning)) { if (!classExpression) { displayParts.push(keywordPart(86)); displayParts.push(spacePart()); } addFullSymbolName(symbol); writeTypeParametersOfSymbol(symbol, sourceFile); } } if (symbolFlags & 64 && semanticMeaning & 2) { prefixNextMeaning(); if (!tryExpandSymbol(symbol, semanticMeaning)) { displayParts.push(keywordPart(120)); displayParts.push(spacePart()); addFullSymbolName(symbol); writeTypeParametersOfSymbol(symbol, sourceFile); } } if (symbolFlags & 524288 && semanticMeaning & 2) { prefixNextMeaning(); displayParts.push(keywordPart(156)); displayParts.push(spacePart()); addFullSymbolName(symbol); writeTypeParametersOfSymbol(symbol, sourceFile); displayParts.push(spacePart()); displayParts.push(operatorPart(64)); displayParts.push(spacePart()); addRange(displayParts, typeToDisplayParts(typeChecker, location.parent && isConstTypeReference(location.parent) ? typeChecker.getTypeAtLocation(location.parent) : typeChecker.getDeclaredTypeOfSymbol(symbol), enclosingDeclaration, 8388608, maximumLength, verbosityLevel, typeWriterOut)); } if (symbolFlags & 384) { prefixNextMeaning(); if (!tryExpandSymbol(symbol, semanticMeaning)) { if (some(symbol.declarations, (d) => isEnumDeclaration(d) && isEnumConst(d))) { displayParts.push(keywordPart(87)); displayParts.push(spacePart()); } displayParts.push(keywordPart(94)); displayParts.push(spacePart()); addFullSymbolName(symbol, undefined); } } if (symbolFlags & 1536 && !isThisExpression) { prefixNextMeaning(); if (!tryExpandSymbol(symbol, semanticMeaning)) { const declaration = getDeclarationOfKind(symbol, 268); const isNamespace = declaration && declaration.name && declaration.name.kind === 80; displayParts.push(keywordPart(isNamespace ? 145 : 144)); displayParts.push(spacePart()); addFullSymbolName(symbol); } } if (symbolFlags & 262144 && semanticMeaning & 2) { prefixNextMeaning(); displayParts.push(punctuationPart(21)); displayParts.push(textPart("type parameter")); displayParts.push(punctuationPart(22)); displayParts.push(spacePart()); addFullSymbolName(symbol); if (symbol.parent) { addInPrefix(); addFullSymbolName(symbol.parent, enclosingDeclaration); writeTypeParametersOfSymbol(symbol.parent, enclosingDeclaration); } else { const decl = getDeclarationOfKind(symbol, 169); if (decl === undefined) return Debug.fail(); const declaration = decl.parent; if (declaration) { if (isFunctionLike(declaration)) { addInPrefix(); const signature = typeChecker.getSignatureFromDeclaration(declaration); if (declaration.kind === 181) { displayParts.push(keywordPart(105)); displayParts.push(spacePart()); } else if (declaration.kind !== 180 && declaration.name) { addFullSymbolName(declaration.symbol); } addRange(displayParts, signatureToDisplayParts(typeChecker, signature, sourceFile, 32)); } else if (isTypeAliasDeclaration(declaration)) { addInPrefix(); displayParts.push(keywordPart(156)); displayParts.push(spacePart()); addFullSymbolName(declaration.symbol); writeTypeParametersOfSymbol(declaration.symbol, sourceFile); } } } } if (symbolFlags & 8) { symbolKind = "enum member"; addPrefixForAnyFunctionOrVar(symbol, "enum member"); const declaration = (_a = symbol.declarations) == null ? undefined : _a[0]; if ((declaration == null ? undefined : declaration.kind) === 307) { const constantValue = typeChecker.getConstantValue(declaration); if (constantValue !== undefined) { displayParts.push(spacePart()); displayParts.push(operatorPart(64)); displayParts.push(spacePart()); displayParts.push(displayPart(getTextOfConstantValue(constantValue), typeof constantValue === "number" ? 7 : 8)); } } } if (symbol.flags & 2097152) { prefixNextMeaning(); if (!hasAddedSymbolInfo || documentation.length === 0 && tags.length === 0) { const resolvedSymbol = typeChecker.getAliasedSymbol(symbol); if (resolvedSymbol !== symbol && resolvedSymbol.declarations && resolvedSymbol.declarations.length > 0) { const resolvedNode = resolvedSymbol.declarations[0]; const declarationName = getNameOfDeclaration(resolvedNode); if (declarationName && !hasAddedSymbolInfo) { const isExternalModuleDeclaration = isModuleWithStringLiteralName(resolvedNode) && hasSyntacticModifier(resolvedNode, 128); const shouldUseAliasName = symbol.name !== "default" && !isExternalModuleDeclaration; const resolvedInfo = getSymbolDisplayPartsDocumentationAndSymbolKindWorker(typeChecker, resolvedSymbol, getSourceFileOfNode(resolvedNode), enclosingDeclaration, declarationName, type, semanticMeaning, shouldUseAliasName ? symbol : resolvedSymbol, maximumLength, verbosityLevel); displayParts.push(...resolvedInfo.displayParts); displayParts.push(lineBreakPart()); documentationFromAlias = resolvedInfo.documentation; tagsFromAlias = resolvedInfo.tags; if (typeWriterOut && resolvedInfo.canIncreaseVerbosityLevel) { typeWriterOut.canIncreaseExpansionDepth = true; } } else { documentationFromAlias = resolvedSymbol.getContextualDocumentationComment(resolvedNode, typeChecker); tagsFromAlias = resolvedSymbol.getJsDocTags(typeChecker); } } } if (symbol.declarations) { switch (symbol.declarations[0].kind) { case 271: displayParts.push(keywordPart(95)); displayParts.push(spacePart()); displayParts.push(keywordPart(145)); break; case 278: displayParts.push(keywordPart(95)); displayParts.push(spacePart()); displayParts.push(keywordPart(symbol.declarations[0].isExportEquals ? 64 : 90)); break; case 282: displayParts.push(keywordPart(95)); break; default: displayParts.push(keywordPart(102)); } } displayParts.push(spacePart()); addFullSymbolName(symbol); forEach(symbol.declarations, (declaration) => { if (declaration.kind === 272) { const importEqualsDeclaration = declaration; if (isExternalModuleImportEqualsDeclaration(importEqualsDeclaration)) { displayParts.push(spacePart()); displayParts.push(operatorPart(64)); displayParts.push(spacePart()); displayParts.push(keywordPart(149)); displayParts.push(punctuationPart(21)); displayParts.push(displayPart(getTextOfNode(getExternalModuleImportEqualsDeclarationExpression(importEqualsDeclaration)), 8)); displayParts.push(punctuationPart(22)); } else { const internalAliasSymbol = typeChecker.getSymbolAtLocation(importEqualsDeclaration.moduleReference); if (internalAliasSymbol) { displayParts.push(spacePart()); displayParts.push(operatorPart(64)); displayParts.push(spacePart()); addFullSymbolName(internalAliasSymbol, enclosingDeclaration); } } return true; } }); } if (!hasAddedSymbolInfo) { if (symbolKind !== "") { if (type) { if (isThisExpression) { prefixNextMeaning(); displayParts.push(keywordPart(110)); } else { addPrefixForAnyFunctionOrVar(symbol, symbolKind); } if (symbolKind === "property" || symbolKind === "accessor" || symbolKind === "getter" || symbolKind === "setter" || symbolKind === "JSX attribute" || symbolFlags & 3 || symbolKind === "local var" || symbolKind === "index" || symbolKind === "using" || symbolKind === "await using" || isThisExpression) { displayParts.push(punctuationPart(59)); displayParts.push(spacePart()); if (type.symbol && type.symbol.flags & 262144 && symbolKind !== "index") { const typeParameterParts = mapToDisplayParts((writer) => { const param = typeChecker.typeParameterToDeclaration(type, enclosingDeclaration, symbolDisplayNodeBuilderFlags, undefined, undefined, maximumLength, verbosityLevel, typeWriterOut); getPrinter().writeNode(4, param, getSourceFileOfNode(getParseTreeNode(enclosingDeclaration)), writer); }, maximumLength); addRange(displayParts, typeParameterParts); } else { addRange(displayParts, typeToDisplayParts(typeChecker, type, enclosingDeclaration, undefined, maximumLength, verbosityLevel, typeWriterOut)); } if (isTransientSymbol(symbol) && symbol.links.target && isTransientSymbol(symbol.links.target) && symbol.links.target.links.tupleLabelDeclaration) { const labelDecl = symbol.links.target.links.tupleLabelDeclaration; Debug.assertNode(labelDecl.name, isIdentifier); displayParts.push(spacePart()); displayParts.push(punctuationPart(21)); displayParts.push(textPart(idText(labelDecl.name))); displayParts.push(punctuationPart(22)); } } else if (symbolFlags & 16 || symbolFlags & 8192 || symbolFlags & 16384 || symbolFlags & 131072 || symbolFlags & 98304 || symbolKind === "method") { const allSignatures = type.getNonNullableType().getCallSignatures(); if (allSignatures.length) { addSignatureDisplayParts(allSignatures[0], allSignatures); hasMultipleSignatures = allSignatures.length > 1; } } } } else { symbolKind = getSymbolKind(typeChecker, symbol, location); } } if (documentation.length === 0 && !hasMultipleSignatures) { documentation = symbol.getContextualDocumentationComment(enclosingDeclaration, typeChecker); } if (documentation.length === 0 && symbolFlags & 4) { if (symbol.parent && symbol.declarations && forEach(symbol.parent.declarations, (declaration) => declaration.kind === 308)) { for (const declaration of symbol.declarations) { if (!declaration.parent || declaration.parent.kind !== 227) { continue; } const rhsSymbol = typeChecker.getSymbolAtLocation(declaration.parent.right); if (!rhsSymbol) { continue; } documentation = rhsSymbol.getDocumentationComment(typeChecker); tags = rhsSymbol.getJsDocTags(typeChecker); if (documentation.length > 0) { break; } } } } if (documentation.length === 0 && isIdentifier(location) && symbol.valueDeclaration && isBindingElement(symbol.valueDeclaration)) { const declaration = symbol.valueDeclaration; const parent2 = declaration.parent; const name = declaration.propertyName || declaration.name; if (isIdentifier(name) && isObjectBindingPattern(parent2)) { const propertyName = getTextOfIdentifierOrLiteral(name); const objectType = typeChecker.getTypeAtLocation(parent2); documentation = firstDefined(objectType.isUnion() ? objectType.types : [objectType], (t) => { const prop = t.getProperty(propertyName); return prop ? prop.getDocumentationComment(typeChecker) : undefined; }) || emptyArray; } } if (tags.length === 0 && !hasMultipleSignatures && !isInJSDoc(location)) { tags = symbol.getContextualJsDocTags(enclosingDeclaration, typeChecker); } if (documentation.length === 0 && documentationFromAlias) { documentation = documentationFromAlias; } if (tags.length === 0 && tagsFromAlias) { tags = tagsFromAlias; } const canIncreaseVerbosityLevel = !typeWriterOut.truncated && typeWriterOut.canIncreaseExpansionDepth; return { displayParts, documentation, symbolKind, tags: tags.length === 0 ? undefined : tags, canIncreaseVerbosityLevel: verbosityLevel !== undefined ? canIncreaseVerbosityLevel : undefined }; function getPrinter() { return createPrinterWithRemoveComments(); } function prefixNextMeaning() { if (displayParts.length) { displayParts.push(lineBreakPart()); } addAliasPrefixIfNecessary(); } function addAliasPrefixIfNecessary() { if (alias) { pushSymbolKind("alias"); displayParts.push(spacePart()); } } function addInPrefix() { displayParts.push(spacePart()); displayParts.push(keywordPart(103)); displayParts.push(spacePart()); } function canExpandSymbol(symbol2, out) { if (verbosityLevel === undefined) { return false; } const type2 = symbol2.flags & (32 | 64) ? typeChecker.getDeclaredTypeOfSymbol(symbol2) : typeChecker.getTypeOfSymbolAtLocation(symbol2, location); if (!type2 || typeChecker.isLibType(type2)) { return false; } if (0 < verbosityLevel) { return true; } if (out) { out.canIncreaseExpansionDepth = true; } return false; } function semanticToSymbolMeaning(meaning) { let symbolMeaning = 0; if (meaning & 1) { symbolMeaning |= 111551; } if (meaning & 2) { symbolMeaning |= 788968; } if (meaning & 4) { symbolMeaning |= 1920; } return symbolMeaning; } function tryExpandSymbol(symbol2, meaning) { if (symbolWasExpanded) { return true; } if (canExpandSymbol(symbol2, typeWriterOut)) { const symbolMeaning = semanticToSymbolMeaning(meaning); const expandedDisplayParts = mapToDisplayParts((writer) => { const nodes = typeChecker.getEmitResolver().symbolToDeclarations(symbol2, symbolMeaning, 1024 | 16384, maximumLength, verbosityLevel !== undefined ? verbosityLevel - 1 : undefined, typeWriterOut); const printer = getPrinter(); const sourceFile2 = symbol2.valueDeclaration && getSourceFileOfNode(symbol2.valueDeclaration); nodes.forEach((node, i) => { if (i > 0) writer.writeLine(); printer.writeNode(4, node, sourceFile2, writer); }); }, maximumLength); addRange(displayParts, expandedDisplayParts); symbolWasExpanded = true; return true; } return false; } function addFullSymbolName(symbolToDisplay, enclosingDeclaration2) { let indexInfos; if (alias && symbolToDisplay === symbol) { symbolToDisplay = alias; } if (symbolKind === "index") { indexInfos = typeChecker.getIndexInfosOfIndexSymbol(symbolToDisplay); } let fullSymbolDisplayParts = []; if (symbolToDisplay.flags & 131072 && indexInfos) { if (symbolToDisplay.parent) { fullSymbolDisplayParts = symbolToDisplayParts(typeChecker, symbolToDisplay.parent); } fullSymbolDisplayParts.push(punctuationPart(23)); indexInfos.forEach((info, i) => { fullSymbolDisplayParts.push(...typeToDisplayParts(typeChecker, info.keyType)); if (i !== indexInfos.length - 1) { fullSymbolDisplayParts.push(spacePart()); fullSymbolDisplayParts.push(punctuationPart(52)); fullSymbolDisplayParts.push(spacePart()); } }); fullSymbolDisplayParts.push(punctuationPart(24)); } else { fullSymbolDisplayParts = symbolToDisplayParts(typeChecker, symbolToDisplay, enclosingDeclaration2 || sourceFile, undefined, 1 | 2 | 4); } addRange(displayParts, fullSymbolDisplayParts); if (symbol.flags & 16777216) { displayParts.push(punctuationPart(58)); } } function addPrefixForAnyFunctionOrVar(symbol2, symbolKind2) { prefixNextMeaning(); if (symbolKind2) { pushSymbolKind(symbolKind2); if (symbol2 && !some(symbol2.declarations, (d) => isArrowFunction(d) || (isFunctionExpression(d) || isClassExpression(d)) && !d.name)) { displayParts.push(spacePart()); addFullSymbolName(symbol2); } } } function pushSymbolKind(symbolKind2) { switch (symbolKind2) { case "var": case "function": case "let": case "const": case "constructor": case "using": case "await using": displayParts.push(textOrKeywordPart(symbolKind2)); return; default: displayParts.push(punctuationPart(21)); displayParts.push(textOrKeywordPart(symbolKind2)); displayParts.push(punctuationPart(22)); return; } } function addSignatureDisplayParts(signature, allSignatures, flags = 0) { addRange(displayParts, signatureToDisplayParts(typeChecker, signature, enclosingDeclaration, flags | 32, maximumLength, verbosityLevel, typeWriterOut)); if (allSignatures.length > 1) { displayParts.push(spacePart()); displayParts.push(punctuationPart(21)); displayParts.push(operatorPart(40)); displayParts.push(displayPart((allSignatures.length - 1).toString(), 7)); displayParts.push(spacePart()); displayParts.push(textPart(allSignatures.length === 2 ? "overload" : "overloads")); displayParts.push(punctuationPart(22)); } documentation = signature.getDocumentationComment(typeChecker); tags = signature.getJsDocTags(); if (allSignatures.length > 1 && documentation.length === 0 && tags.length === 0) { documentation = allSignatures[0].getDocumentationComment(typeChecker); tags = allSignatures[0].getJsDocTags().filter((tag) => tag.name !== "deprecated"); } } function writeTypeParametersOfSymbol(symbol2, enclosingDeclaration2) { const typeParameterParts = mapToDisplayParts((writer) => { const params = typeChecker.symbolToTypeParameterDeclarations(symbol2, enclosingDeclaration2, symbolDisplayNodeBuilderFlags); getPrinter().writeList(53776, params, getSourceFileOfNode(getParseTreeNode(enclosingDeclaration2)), writer); }); addRange(displayParts, typeParameterParts); } } function getSymbolDisplayPartsDocumentationAndSymbolKind(typeChecker, symbol, sourceFile, enclosingDeclaration, location, semanticMeaning = getMeaningFromLocation(location), alias, maximumLength, verbosityLevel) { return getSymbolDisplayPartsDocumentationAndSymbolKindWorker(typeChecker, symbol, sourceFile, enclosingDeclaration, location, undefined, semanticMeaning, alias, maximumLength, verbosityLevel); } function isLocalVariableOrFunction(symbol) { if (symbol.parent) { return false; } return forEach(symbol.declarations, (declaration) => { if (declaration.kind === 219) { return true; } if (declaration.kind !== 261 && declaration.kind !== 263) { return false; } for (let parent2 = declaration.parent;!isFunctionBlock(parent2); parent2 = parent2.parent) { if (parent2.kind === 308 || parent2.kind === 269) { return false; } } return true; }); } var ts_textChanges_exports = {}; __export2(ts_textChanges_exports, { ChangeTracker: () => ChangeTracker, LeadingTriviaOption: () => LeadingTriviaOption, TrailingTriviaOption: () => TrailingTriviaOption, applyChanges: () => applyChanges, assignPositionsToNode: () => assignPositionsToNode, createWriter: () => createWriter, deleteNode: () => deleteNode, getAdjustedEndPosition: () => getAdjustedEndPosition, isThisTypeAnnotatable: () => isThisTypeAnnotatable, isValidLocationToAddComment: () => isValidLocationToAddComment }); function getPos2(n) { const result = n.__pos; Debug.assert(typeof result === "number"); return result; } function setPos(n, pos) { Debug.assert(typeof pos === "number"); n.__pos = pos; } function getEnd(n) { const result = n.__end; Debug.assert(typeof result === "number"); return result; } function setEnd(n, end) { Debug.assert(typeof end === "number"); n.__end = end; } var LeadingTriviaOption = /* @__PURE__ */ ((LeadingTriviaOption2) => { LeadingTriviaOption2[LeadingTriviaOption2["Exclude"] = 0] = "Exclude"; LeadingTriviaOption2[LeadingTriviaOption2["IncludeAll"] = 1] = "IncludeAll"; LeadingTriviaOption2[LeadingTriviaOption2["JSDoc"] = 2] = "JSDoc"; LeadingTriviaOption2[LeadingTriviaOption2["StartLine"] = 3] = "StartLine"; return LeadingTriviaOption2; })(LeadingTriviaOption || {}); var TrailingTriviaOption = /* @__PURE__ */ ((TrailingTriviaOption2) => { TrailingTriviaOption2[TrailingTriviaOption2["Exclude"] = 0] = "Exclude"; TrailingTriviaOption2[TrailingTriviaOption2["ExcludeWhitespace"] = 1] = "ExcludeWhitespace"; TrailingTriviaOption2[TrailingTriviaOption2["Include"] = 2] = "Include"; return TrailingTriviaOption2; })(TrailingTriviaOption || {}); function skipWhitespacesAndLineBreaks(text, start) { return skipTrivia2(text, start, false, true); } function hasCommentsBeforeLineBreak(text, start) { let i = start; while (i < text.length) { const ch = text.charCodeAt(i); if (isWhiteSpaceSingleLine(ch)) { i++; continue; } return ch === 47; } return false; } var useNonAdjustedPositions = { leadingTriviaOption: 0, trailingTriviaOption: 0 }; function getAdjustedRange(sourceFile, startNode2, endNode2, options) { return { pos: getAdjustedStartPosition(sourceFile, startNode2, options), end: getAdjustedEndPosition(sourceFile, endNode2, options) }; } function getAdjustedStartPosition(sourceFile, node, options, hasTrailingComment = false) { var _a, _b; const { leadingTriviaOption } = options; if (leadingTriviaOption === 0) { return node.getStart(sourceFile); } if (leadingTriviaOption === 3) { const startPos = node.getStart(sourceFile); const pos = getLineStartPositionForPosition(startPos, sourceFile); return rangeContainsPosition(node, pos) ? pos : startPos; } if (leadingTriviaOption === 2) { const JSDocComments = getJSDocCommentRanges(node, sourceFile.text); if (JSDocComments == null ? undefined : JSDocComments.length) { return getLineStartPositionForPosition(JSDocComments[0].pos, sourceFile); } } const fullStart = node.getFullStart(); const start = node.getStart(sourceFile); if (fullStart === start) { return start; } const fullStartLine = getLineStartPositionForPosition(fullStart, sourceFile); const startLine = getLineStartPositionForPosition(start, sourceFile); if (startLine === fullStartLine) { return leadingTriviaOption === 1 ? fullStart : start; } if (hasTrailingComment) { const comment = ((_a = getLeadingCommentRanges(sourceFile.text, fullStart)) == null ? undefined : _a[0]) || ((_b = getTrailingCommentRanges(sourceFile.text, fullStart)) == null ? undefined : _b[0]); if (comment) { return skipTrivia2(sourceFile.text, comment.end, true, true); } } const nextLineStart = fullStart > 0 ? 1 : 0; let adjustedStartPosition = getStartPositionOfLine(getLineOfLocalPosition(sourceFile, fullStartLine) + nextLineStart, sourceFile); adjustedStartPosition = skipWhitespacesAndLineBreaks(sourceFile.text, adjustedStartPosition); return getStartPositionOfLine(getLineOfLocalPosition(sourceFile, adjustedStartPosition), sourceFile); } function getEndPositionOfMultilineTrailingComment(sourceFile, node, options) { const { end } = node; const { trailingTriviaOption } = options; if (trailingTriviaOption === 2) { const comments = getTrailingCommentRanges(sourceFile.text, end); if (comments) { const nodeEndLine = getLineOfLocalPosition(sourceFile, node.end); for (const comment of comments) { if (comment.kind === 2 || getLineOfLocalPosition(sourceFile, comment.pos) > nodeEndLine) { break; } const commentEndLine = getLineOfLocalPosition(sourceFile, comment.end); if (commentEndLine > nodeEndLine) { return skipTrivia2(sourceFile.text, comment.end, true, true); } } } } return; } function getAdjustedEndPosition(sourceFile, node, options) { var _a; const { end } = node; const { trailingTriviaOption } = options; if (trailingTriviaOption === 0) { return end; } if (trailingTriviaOption === 1) { const comments = concatenate(getTrailingCommentRanges(sourceFile.text, end), getLeadingCommentRanges(sourceFile.text, end)); const realEnd = (_a = comments == null ? undefined : comments[comments.length - 1]) == null ? undefined : _a.end; if (realEnd) { return realEnd; } return end; } const multilineEndPosition = getEndPositionOfMultilineTrailingComment(sourceFile, node, options); if (multilineEndPosition) { return multilineEndPosition; } const newEnd = skipTrivia2(sourceFile.text, end, true); return newEnd !== end && (trailingTriviaOption === 2 || isLineBreak(sourceFile.text.charCodeAt(newEnd - 1))) ? newEnd : end; } function isSeparator(node, candidate) { return !!candidate && !!node.parent && (candidate.kind === 28 || candidate.kind === 27 && node.parent.kind === 211); } function isThisTypeAnnotatable(containingFunction) { return isFunctionExpression(containingFunction) || isFunctionDeclaration(containingFunction); } var ChangeTracker = class _ChangeTracker { constructor(newLineCharacter, formatContext) { this.newLineCharacter = newLineCharacter; this.formatContext = formatContext; this.changes = []; this.classesWithNodesInsertedAtStart = /* @__PURE__ */ new Map; this.deletedNodes = []; } static fromContext(context) { return new _ChangeTracker(getNewLineOrDefaultFromHost(context.host, context.formatContext.options), context.formatContext); } static with(context, cb) { const tracker = _ChangeTracker.fromContext(context); cb(tracker); return tracker.getChanges(); } pushRaw(sourceFile, change) { Debug.assertEqual(sourceFile.fileName, change.fileName); for (const c of change.textChanges) { this.changes.push({ kind: 3, sourceFile, text: c.newText, range: createTextRangeFromSpan(c.span) }); } } deleteRange(sourceFile, range) { this.changes.push({ kind: 0, sourceFile, range }); } delete(sourceFile, node) { this.deletedNodes.push({ sourceFile, node }); } deleteNode(sourceFile, node, options = { leadingTriviaOption: 1 }) { this.deleteRange(sourceFile, getAdjustedRange(sourceFile, node, node, options)); } deleteNodes(sourceFile, nodes, options = { leadingTriviaOption: 1 }, hasTrailingComment) { for (const node of nodes) { const pos = getAdjustedStartPosition(sourceFile, node, options, hasTrailingComment); const end = getAdjustedEndPosition(sourceFile, node, options); this.deleteRange(sourceFile, { pos, end }); hasTrailingComment = !!getEndPositionOfMultilineTrailingComment(sourceFile, node, options); } } deleteModifier(sourceFile, modifier) { this.deleteRange(sourceFile, { pos: modifier.getStart(sourceFile), end: skipTrivia2(sourceFile.text, modifier.end, true) }); } deleteNodeRange(sourceFile, startNode2, endNode2, options = { leadingTriviaOption: 1 }) { const startPosition = getAdjustedStartPosition(sourceFile, startNode2, options); const endPosition = getAdjustedEndPosition(sourceFile, endNode2, options); this.deleteRange(sourceFile, { pos: startPosition, end: endPosition }); } deleteNodeRangeExcludingEnd(sourceFile, startNode2, afterEndNode, options = { leadingTriviaOption: 1 }) { const startPosition = getAdjustedStartPosition(sourceFile, startNode2, options); const endPosition = afterEndNode === undefined ? sourceFile.text.length : getAdjustedStartPosition(sourceFile, afterEndNode, options); this.deleteRange(sourceFile, { pos: startPosition, end: endPosition }); } replaceRange(sourceFile, range, newNode, options = {}) { this.changes.push({ kind: 1, sourceFile, range, options, node: newNode }); } replaceNode(sourceFile, oldNode, newNode, options = useNonAdjustedPositions) { this.replaceRange(sourceFile, getAdjustedRange(sourceFile, oldNode, oldNode, options), newNode, options); } replaceNodeRange(sourceFile, startNode2, endNode2, newNode, options = useNonAdjustedPositions) { this.replaceRange(sourceFile, getAdjustedRange(sourceFile, startNode2, endNode2, options), newNode, options); } replaceRangeWithNodes(sourceFile, range, newNodes, options = {}) { this.changes.push({ kind: 2, sourceFile, range, options, nodes: newNodes }); } replaceNodeWithNodes(sourceFile, oldNode, newNodes, options = useNonAdjustedPositions) { this.replaceRangeWithNodes(sourceFile, getAdjustedRange(sourceFile, oldNode, oldNode, options), newNodes, options); } replaceNodeWithText(sourceFile, oldNode, text) { this.replaceRangeWithText(sourceFile, getAdjustedRange(sourceFile, oldNode, oldNode, useNonAdjustedPositions), text); } replaceNodeRangeWithNodes(sourceFile, startNode2, endNode2, newNodes, options = useNonAdjustedPositions) { this.replaceRangeWithNodes(sourceFile, getAdjustedRange(sourceFile, startNode2, endNode2, options), newNodes, options); } nodeHasTrailingComment(sourceFile, oldNode, configurableEnd = useNonAdjustedPositions) { return !!getEndPositionOfMultilineTrailingComment(sourceFile, oldNode, configurableEnd); } nextCommaToken(sourceFile, node) { const next = findNextToken(node, node.parent, sourceFile); return next && next.kind === 28 ? next : undefined; } replacePropertyAssignment(sourceFile, oldNode, newNode) { const suffix = this.nextCommaToken(sourceFile, oldNode) ? "" : "," + this.newLineCharacter; this.replaceNode(sourceFile, oldNode, newNode, { suffix }); } insertNodeAt(sourceFile, pos, newNode, options = {}) { this.replaceRange(sourceFile, createRange(pos), newNode, options); } insertNodesAt(sourceFile, pos, newNodes, options = {}) { this.replaceRangeWithNodes(sourceFile, createRange(pos), newNodes, options); } insertNodeAtTopOfFile(sourceFile, newNode, blankLineBetween) { this.insertAtTopOfFile(sourceFile, newNode, blankLineBetween); } insertNodesAtTopOfFile(sourceFile, newNodes, blankLineBetween) { this.insertAtTopOfFile(sourceFile, newNodes, blankLineBetween); } insertAtTopOfFile(sourceFile, insert, blankLineBetween) { const pos = getInsertionPositionAtSourceFileTop(sourceFile); const options = { prefix: pos === 0 ? undefined : this.newLineCharacter, suffix: (isLineBreak(sourceFile.text.charCodeAt(pos)) ? "" : this.newLineCharacter) + (blankLineBetween ? this.newLineCharacter : "") }; if (isArray(insert)) { this.insertNodesAt(sourceFile, pos, insert, options); } else { this.insertNodeAt(sourceFile, pos, insert, options); } } insertNodesAtEndOfFile(sourceFile, newNodes, blankLineBetween) { this.insertAtEndOfFile(sourceFile, newNodes, blankLineBetween); } insertAtEndOfFile(sourceFile, insert, blankLineBetween) { const pos = sourceFile.end + 1; const options = { prefix: this.newLineCharacter, suffix: this.newLineCharacter + (blankLineBetween ? this.newLineCharacter : "") }; this.insertNodesAt(sourceFile, pos, insert, options); } insertStatementsInNewFile(fileName, statements, oldFile) { if (!this.newFileChanges) { this.newFileChanges = createMultiMap(); } this.newFileChanges.add(fileName, { oldFile, statements }); } insertFirstParameter(sourceFile, parameters, newParam) { const p0 = firstOrUndefined(parameters); if (p0) { this.insertNodeBefore(sourceFile, p0, newParam); } else { this.insertNodeAt(sourceFile, parameters.pos, newParam); } } insertNodeBefore(sourceFile, before, newNode, blankLineBetween = false, options = {}) { this.insertNodeAt(sourceFile, getAdjustedStartPosition(sourceFile, before, options), newNode, this.getOptionsForInsertNodeBefore(before, newNode, blankLineBetween)); } insertNodesBefore(sourceFile, before, newNodes, blankLineBetween = false, options = {}) { this.insertNodesAt(sourceFile, getAdjustedStartPosition(sourceFile, before, options), newNodes, this.getOptionsForInsertNodeBefore(before, first(newNodes), blankLineBetween)); } insertModifierAt(sourceFile, pos, modifier, options = {}) { this.insertNodeAt(sourceFile, pos, factory.createToken(modifier), options); } insertModifierBefore(sourceFile, modifier, before) { return this.insertModifierAt(sourceFile, before.getStart(sourceFile), modifier, { suffix: " " }); } insertCommentBeforeLine(sourceFile, lineNumber, position, commentText) { const lineStartPosition = getStartPositionOfLine(lineNumber, sourceFile); const startPosition = getFirstNonSpaceCharacterPosition(sourceFile.text, lineStartPosition); const insertAtLineStart = isValidLocationToAddComment(sourceFile, startPosition); const token = getTouchingToken(sourceFile, insertAtLineStart ? startPosition : position); const indent3 = sourceFile.text.slice(lineStartPosition, startPosition); const text = `${insertAtLineStart ? "" : this.newLineCharacter}//${commentText}${this.newLineCharacter}${indent3}`; this.insertText(sourceFile, token.getStart(sourceFile), text); } insertJsdocCommentBefore(sourceFile, node, tag) { const fnStart = node.getStart(sourceFile); if (node.jsDoc) { for (const jsdoc of node.jsDoc) { this.deleteRange(sourceFile, { pos: getLineStartPositionForPosition(jsdoc.getStart(sourceFile), sourceFile), end: getAdjustedEndPosition(sourceFile, jsdoc, {}) }); } } const startPosition = getPrecedingNonSpaceCharacterPosition(sourceFile.text, fnStart - 1); const indent3 = sourceFile.text.slice(startPosition, fnStart); this.insertNodeAt(sourceFile, fnStart, tag, { suffix: this.newLineCharacter + indent3 }); } createJSDocText(sourceFile, node) { const comments = flatMap(node.jsDoc, (jsDoc2) => isString(jsDoc2.comment) ? factory.createJSDocText(jsDoc2.comment) : jsDoc2.comment); const jsDoc = singleOrUndefined(node.jsDoc); return jsDoc && positionsAreOnSameLine(jsDoc.pos, jsDoc.end, sourceFile) && length(comments) === 0 ? undefined : factory.createNodeArray(intersperse(comments, factory.createJSDocText(` `))); } replaceJSDocComment(sourceFile, node, tags) { this.insertJsdocCommentBefore(sourceFile, updateJSDocHost(node), factory.createJSDocComment(this.createJSDocText(sourceFile, node), factory.createNodeArray(tags))); } addJSDocTags(sourceFile, parent2, newTags) { const oldTags = flatMapToMutable(parent2.jsDoc, (j) => j.tags); const unmergedNewTags = newTags.filter((newTag) => !oldTags.some((tag, i) => { const merged = tryMergeJsdocTags(tag, newTag); if (merged) oldTags[i] = merged; return !!merged; })); this.replaceJSDocComment(sourceFile, parent2, [...oldTags, ...unmergedNewTags]); } filterJSDocTags(sourceFile, parent2, predicate) { this.replaceJSDocComment(sourceFile, parent2, filter(flatMapToMutable(parent2.jsDoc, (j) => j.tags), predicate)); } replaceRangeWithText(sourceFile, range, text) { this.changes.push({ kind: 3, sourceFile, range, text }); } insertText(sourceFile, pos, text) { this.replaceRangeWithText(sourceFile, createRange(pos), text); } tryInsertTypeAnnotation(sourceFile, node, type) { let endNode2; if (isFunctionLike(node)) { endNode2 = findChildOfKind(node, 22, sourceFile); if (!endNode2) { if (!isArrowFunction(node)) return false; endNode2 = first(node.parameters); } } else { endNode2 = (node.kind === 261 ? node.exclamationToken : node.questionToken) ?? node.name; } this.insertNodeAt(sourceFile, endNode2.end, type, { prefix: ": " }); return true; } tryInsertThisTypeAnnotation(sourceFile, node, type) { const start = findChildOfKind(node, 21, sourceFile).getStart(sourceFile) + 1; const suffix = node.parameters.length ? ", " : ""; this.insertNodeAt(sourceFile, start, type, { prefix: "this: ", suffix }); } insertTypeParameters(sourceFile, node, typeParameters) { const start = (findChildOfKind(node, 21, sourceFile) || first(node.parameters)).getStart(sourceFile); this.insertNodesAt(sourceFile, start, typeParameters, { prefix: "<", suffix: ">", joiner: ", " }); } getOptionsForInsertNodeBefore(before, inserted, blankLineBetween) { if (isStatement(before) || isClassElement(before)) { return { suffix: blankLineBetween ? this.newLineCharacter + this.newLineCharacter : this.newLineCharacter }; } else if (isVariableDeclaration(before)) { return { suffix: ", " }; } else if (isParameter(before)) { return isParameter(inserted) ? { suffix: ", " } : {}; } else if (isStringLiteral(before) && isImportDeclaration(before.parent) || isNamedImports(before)) { return { suffix: ", " }; } else if (isImportSpecifier(before)) { return { suffix: "," + (blankLineBetween ? this.newLineCharacter : " ") }; } return Debug.failBadSyntaxKind(before); } insertNodeAtConstructorStart(sourceFile, ctr, newStatement) { const firstStatement = firstOrUndefined(ctr.body.statements); if (!firstStatement || !ctr.body.multiLine) { this.replaceConstructorBody(sourceFile, ctr, [newStatement, ...ctr.body.statements]); } else { this.insertNodeBefore(sourceFile, firstStatement, newStatement); } } insertNodeAtConstructorStartAfterSuperCall(sourceFile, ctr, newStatement) { const superCallStatement = find(ctr.body.statements, (stmt) => isExpressionStatement(stmt) && isSuperCall(stmt.expression)); if (!superCallStatement || !ctr.body.multiLine) { this.replaceConstructorBody(sourceFile, ctr, [...ctr.body.statements, newStatement]); } else { this.insertNodeAfter(sourceFile, superCallStatement, newStatement); } } insertNodeAtConstructorEnd(sourceFile, ctr, newStatement) { const lastStatement = lastOrUndefined(ctr.body.statements); if (!lastStatement || !ctr.body.multiLine) { this.replaceConstructorBody(sourceFile, ctr, [...ctr.body.statements, newStatement]); } else { this.insertNodeAfter(sourceFile, lastStatement, newStatement); } } replaceConstructorBody(sourceFile, ctr, statements) { this.replaceNode(sourceFile, ctr.body, factory.createBlock(statements, true)); } insertNodeAtEndOfScope(sourceFile, scope, newNode) { const pos = getAdjustedStartPosition(sourceFile, scope.getLastToken(), {}); this.insertNodeAt(sourceFile, pos, newNode, { prefix: isLineBreak(sourceFile.text.charCodeAt(scope.getLastToken().pos)) ? this.newLineCharacter : this.newLineCharacter + this.newLineCharacter, suffix: this.newLineCharacter }); } insertMemberAtStart(sourceFile, node, newElement) { this.insertNodeAtStartWorker(sourceFile, node, newElement); } insertNodeAtObjectStart(sourceFile, obj, newElement) { this.insertNodeAtStartWorker(sourceFile, obj, newElement); } insertNodeAtStartWorker(sourceFile, node, newElement) { const indentation = this.guessIndentationFromExistingMembers(sourceFile, node) ?? this.computeIndentationForNewMember(sourceFile, node); this.insertNodeAt(sourceFile, getMembersOrProperties(node).pos, newElement, this.getInsertNodeAtStartInsertOptions(sourceFile, node, indentation)); } guessIndentationFromExistingMembers(sourceFile, node) { let indentation; let lastRange = node; for (const member of getMembersOrProperties(node)) { if (rangeStartPositionsAreOnSameLine(lastRange, member, sourceFile)) { return; } const memberStart = member.getStart(sourceFile); const memberIndentation = ts_formatting_exports.SmartIndenter.findFirstNonWhitespaceColumn(getLineStartPositionForPosition(memberStart, sourceFile), memberStart, sourceFile, this.formatContext.options); if (indentation === undefined) { indentation = memberIndentation; } else if (memberIndentation !== indentation) { return; } lastRange = member; } return indentation; } computeIndentationForNewMember(sourceFile, node) { const nodeStart = node.getStart(sourceFile); return ts_formatting_exports.SmartIndenter.findFirstNonWhitespaceColumn(getLineStartPositionForPosition(nodeStart, sourceFile), nodeStart, sourceFile, this.formatContext.options) + (this.formatContext.options.indentSize ?? 4); } getInsertNodeAtStartInsertOptions(sourceFile, node, indentation) { const members = getMembersOrProperties(node); const isEmpty = members.length === 0; const isFirstInsertion = !this.classesWithNodesInsertedAtStart.has(getNodeId(node)); if (isFirstInsertion) { this.classesWithNodesInsertedAtStart.set(getNodeId(node), { node, sourceFile }); } const insertTrailingComma = isObjectLiteralExpression(node) && (!isJsonSourceFile(sourceFile) || !isEmpty); const insertLeadingComma = isObjectLiteralExpression(node) && isJsonSourceFile(sourceFile) && isEmpty && !isFirstInsertion; return { indentation, prefix: (insertLeadingComma ? "," : "") + this.newLineCharacter, suffix: insertTrailingComma ? "," : isInterfaceDeclaration(node) && isEmpty ? ";" : "" }; } insertNodeAfterComma(sourceFile, after, newNode) { const endPosition = this.insertNodeAfterWorker(sourceFile, this.nextCommaToken(sourceFile, after) || after, newNode); this.insertNodeAt(sourceFile, endPosition, newNode, this.getInsertNodeAfterOptions(sourceFile, after)); } insertNodeAfter(sourceFile, after, newNode) { const endPosition = this.insertNodeAfterWorker(sourceFile, after, newNode); this.insertNodeAt(sourceFile, endPosition, newNode, this.getInsertNodeAfterOptions(sourceFile, after)); } insertNodeAtEndOfList(sourceFile, list, newNode) { this.insertNodeAt(sourceFile, list.end, newNode, { prefix: ", " }); } insertNodesAfter(sourceFile, after, newNodes) { const endPosition = this.insertNodeAfterWorker(sourceFile, after, first(newNodes)); this.insertNodesAt(sourceFile, endPosition, newNodes, this.getInsertNodeAfterOptions(sourceFile, after)); } insertNodeAfterWorker(sourceFile, after, newNode) { if (needSemicolonBetween(after, newNode)) { if (sourceFile.text.charCodeAt(after.end - 1) !== 59) { this.replaceRange(sourceFile, createRange(after.end), factory.createToken(27)); } } const endPosition = getAdjustedEndPosition(sourceFile, after, {}); return endPosition; } getInsertNodeAfterOptions(sourceFile, after) { const options = this.getInsertNodeAfterOptionsWorker(after); return { ...options, prefix: after.end === sourceFile.end && isStatement(after) ? options.prefix ? ` ${options.prefix}` : ` ` : options.prefix }; } getInsertNodeAfterOptionsWorker(node) { switch (node.kind) { case 264: case 268: return { prefix: this.newLineCharacter, suffix: this.newLineCharacter }; case 261: case 11: case 80: return { prefix: ", " }; case 304: return { suffix: "," + this.newLineCharacter }; case 95: return { prefix: " " }; case 170: return {}; default: Debug.assert(isStatement(node) || isClassOrTypeElement(node)); return { suffix: this.newLineCharacter }; } } insertName(sourceFile, node, name) { Debug.assert(!node.name); if (node.kind === 220) { const arrow = findChildOfKind(node, 39, sourceFile); const lparen = findChildOfKind(node, 21, sourceFile); if (lparen) { this.insertNodesAt(sourceFile, lparen.getStart(sourceFile), [factory.createToken(100), factory.createIdentifier(name)], { joiner: " " }); deleteNode(this, sourceFile, arrow); } else { this.insertText(sourceFile, first(node.parameters).getStart(sourceFile), `function ${name}(`); this.replaceRange(sourceFile, arrow, factory.createToken(22)); } if (node.body.kind !== 242) { this.insertNodesAt(sourceFile, node.body.getStart(sourceFile), [factory.createToken(19), factory.createToken(107)], { joiner: " ", suffix: " " }); this.insertNodesAt(sourceFile, node.body.end, [factory.createToken(27), factory.createToken(20)], { joiner: " " }); } } else { const pos = findChildOfKind(node, node.kind === 219 ? 100 : 86, sourceFile).end; this.insertNodeAt(sourceFile, pos, factory.createIdentifier(name), { prefix: " " }); } } insertExportModifier(sourceFile, node) { this.insertText(sourceFile, node.getStart(sourceFile), "export "); } insertImportSpecifierAtIndex(sourceFile, importSpecifier, namedImports, index) { const prevSpecifier = namedImports.elements[index - 1]; if (prevSpecifier) { this.insertNodeInListAfter(sourceFile, prevSpecifier, importSpecifier); } else { this.insertNodeBefore(sourceFile, namedImports.elements[0], importSpecifier, !positionsAreOnSameLine(namedImports.elements[0].getStart(), namedImports.parent.parent.getStart(), sourceFile)); } } insertNodeInListAfter(sourceFile, after, newNode, containingList = ts_formatting_exports.SmartIndenter.getContainingList(after, sourceFile)) { if (!containingList) { Debug.fail("node is not a list element"); return; } const index = indexOfNode(containingList, after); if (index < 0) { return; } const end = after.getEnd(); if (index !== containingList.length - 1) { const nextToken = getTokenAtPosition(sourceFile, after.end); if (nextToken && isSeparator(after, nextToken)) { const nextNode = containingList[index + 1]; const startPos = skipWhitespacesAndLineBreaks(sourceFile.text, nextNode.getFullStart()); const suffix = `${tokenToString(nextToken.kind)}${sourceFile.text.substring(nextToken.end, startPos)}`; this.insertNodesAt(sourceFile, startPos, [newNode], { suffix }); } } else { const afterStart = after.getStart(sourceFile); const afterStartLinePosition = getLineStartPositionForPosition(afterStart, sourceFile); let separator; let multilineList = false; if (containingList.length === 1) { separator = 28; } else { const tokenBeforeInsertPosition = findPrecedingToken(after.pos, sourceFile); separator = isSeparator(after, tokenBeforeInsertPosition) ? tokenBeforeInsertPosition.kind : 28; const afterMinusOneStartLinePosition = getLineStartPositionForPosition(containingList[index - 1].getStart(sourceFile), sourceFile); multilineList = afterMinusOneStartLinePosition !== afterStartLinePosition; } if (hasCommentsBeforeLineBreak(sourceFile.text, after.end) || !positionsAreOnSameLine(containingList.pos, containingList.end, sourceFile)) { multilineList = true; } if (multilineList) { this.replaceRange(sourceFile, createRange(end), factory.createToken(separator)); const indentation = ts_formatting_exports.SmartIndenter.findFirstNonWhitespaceColumn(afterStartLinePosition, afterStart, sourceFile, this.formatContext.options); let insertPos = skipTrivia2(sourceFile.text, end, true, false); while (insertPos !== end && isLineBreak(sourceFile.text.charCodeAt(insertPos - 1))) { insertPos--; } this.replaceRange(sourceFile, createRange(insertPos), newNode, { indentation, prefix: this.newLineCharacter }); } else { this.replaceRange(sourceFile, createRange(end), newNode, { prefix: `${tokenToString(separator)} ` }); } } } parenthesizeExpression(sourceFile, expression) { this.replaceRange(sourceFile, rangeOfNode(expression), factory.createParenthesizedExpression(expression)); } finishClassesWithNodesInsertedAtStart() { this.classesWithNodesInsertedAtStart.forEach(({ node, sourceFile }) => { const [openBraceEnd, closeBraceEnd] = getClassOrObjectBraceEnds(node, sourceFile); if (openBraceEnd !== undefined && closeBraceEnd !== undefined) { const isEmpty = getMembersOrProperties(node).length === 0; const isSingleLine = positionsAreOnSameLine(openBraceEnd, closeBraceEnd, sourceFile); if (isEmpty && isSingleLine && openBraceEnd !== closeBraceEnd - 1) { this.deleteRange(sourceFile, createRange(openBraceEnd, closeBraceEnd - 1)); } if (isSingleLine) { this.insertText(sourceFile, closeBraceEnd - 1, this.newLineCharacter); } } }); } finishDeleteDeclarations() { const deletedNodesInLists = /* @__PURE__ */ new Set; for (const { sourceFile, node } of this.deletedNodes) { if (!this.deletedNodes.some((d) => d.sourceFile === sourceFile && rangeContainsRangeExclusive(d.node, node))) { if (isArray(node)) { this.deleteRange(sourceFile, rangeOfTypeParameters(sourceFile, node)); } else { deleteDeclaration.deleteDeclaration(this, deletedNodesInLists, sourceFile, node); } } } deletedNodesInLists.forEach((node) => { const sourceFile = node.getSourceFile(); const list = ts_formatting_exports.SmartIndenter.getContainingList(node, sourceFile); if (node !== last(list)) return; const lastNonDeletedIndex = findLastIndex(list, (n) => !deletedNodesInLists.has(n), list.length - 2); if (lastNonDeletedIndex !== -1) { this.deleteRange(sourceFile, { pos: list[lastNonDeletedIndex].end, end: startPositionToDeleteNodeInList(sourceFile, list[lastNonDeletedIndex + 1]) }); } }); } getChanges(validate) { this.finishDeleteDeclarations(); this.finishClassesWithNodesInsertedAtStart(); const changes = changesToText.getTextChangesFromChanges(this.changes, this.newLineCharacter, this.formatContext, validate); if (this.newFileChanges) { this.newFileChanges.forEach((insertions, fileName) => { changes.push(changesToText.newFileChanges(fileName, insertions, this.newLineCharacter, this.formatContext)); }); } return changes; } createNewFile(oldFile, fileName, statements) { this.insertStatementsInNewFile(fileName, statements, oldFile); } }; function updateJSDocHost(parent2) { if (parent2.kind !== 220) { return parent2; } const jsDocNode = parent2.parent.kind === 173 ? parent2.parent : parent2.parent.parent; jsDocNode.jsDoc = parent2.jsDoc; return jsDocNode; } function tryMergeJsdocTags(oldTag, newTag) { if (oldTag.kind !== newTag.kind) { return; } switch (oldTag.kind) { case 342: { const oldParam = oldTag; const newParam = newTag; return isIdentifier(oldParam.name) && isIdentifier(newParam.name) && oldParam.name.escapedText === newParam.name.escapedText ? factory.createJSDocParameterTag(undefined, newParam.name, false, newParam.typeExpression, newParam.isNameFirst, oldParam.comment) : undefined; } case 343: return factory.createJSDocReturnTag(undefined, newTag.typeExpression, oldTag.comment); case 345: return factory.createJSDocTypeTag(undefined, newTag.typeExpression, oldTag.comment); } } function startPositionToDeleteNodeInList(sourceFile, node) { return skipTrivia2(sourceFile.text, getAdjustedStartPosition(sourceFile, node, { leadingTriviaOption: 1 }), false, true); } function endPositionToDeleteNodeInList(sourceFile, node, prevNode, nextNode) { const end = startPositionToDeleteNodeInList(sourceFile, nextNode); if (prevNode === undefined || positionsAreOnSameLine(getAdjustedEndPosition(sourceFile, node, {}), end, sourceFile)) { return end; } const token = findPrecedingToken(nextNode.getStart(sourceFile), sourceFile); if (isSeparator(node, token)) { const prevToken = findPrecedingToken(node.getStart(sourceFile), sourceFile); if (isSeparator(prevNode, prevToken)) { const pos = skipTrivia2(sourceFile.text, token.getEnd(), true, true); if (positionsAreOnSameLine(prevToken.getStart(sourceFile), token.getStart(sourceFile), sourceFile)) { return isLineBreak(sourceFile.text.charCodeAt(pos - 1)) ? pos - 1 : pos; } if (isLineBreak(sourceFile.text.charCodeAt(pos))) { return pos; } } } return end; } function getClassOrObjectBraceEnds(cls, sourceFile) { const open = findChildOfKind(cls, 19, sourceFile); const close = findChildOfKind(cls, 20, sourceFile); return [open == null ? undefined : open.end, close == null ? undefined : close.end]; } function getMembersOrProperties(node) { return isObjectLiteralExpression(node) ? node.properties : node.members; } var changesToText; ((changesToText2) => { function getTextChangesFromChanges(changes, newLineCharacter, formatContext, validate) { return mapDefined(group(changes, (c) => c.sourceFile.path), (changesInFile) => { const sourceFile = changesInFile[0].sourceFile; const normalized = toSorted(changesInFile, (a, b) => a.range.pos - b.range.pos || a.range.end - b.range.end); for (let i = 0;i < normalized.length - 1; i++) { Debug.assert(normalized[i].range.end <= normalized[i + 1].range.pos, "Changes overlap", () => `${JSON.stringify(normalized[i].range)} and ${JSON.stringify(normalized[i + 1].range)}`); } const textChanges2 = mapDefined(normalized, (c) => { const span = createTextSpanFromRange(c.range); const targetSourceFile = c.kind === 1 ? getSourceFileOfNode(getOriginalNode(c.node)) ?? c.sourceFile : c.kind === 2 ? getSourceFileOfNode(getOriginalNode(c.nodes[0])) ?? c.sourceFile : c.sourceFile; const newText = computeNewText(c, targetSourceFile, sourceFile, newLineCharacter, formatContext, validate); if (span.length === newText.length && stringContainsAt(targetSourceFile.text, newText, span.start)) { return; } return createTextChange(span, newText); }); return textChanges2.length > 0 ? { fileName: sourceFile.fileName, textChanges: textChanges2 } : undefined; }); } changesToText2.getTextChangesFromChanges = getTextChangesFromChanges; function newFileChanges(fileName, insertions, newLineCharacter, formatContext) { const text = newFileChangesWorker(getScriptKindFromFileName(fileName), insertions, newLineCharacter, formatContext); return { fileName, textChanges: [createTextChange(createTextSpan(0, 0), text)], isNewFile: true }; } changesToText2.newFileChanges = newFileChanges; function newFileChangesWorker(scriptKind, insertions, newLineCharacter, formatContext) { const nonFormattedText = flatMap(insertions, (insertion) => insertion.statements.map((s) => s === 4 ? "" : getNonformattedText(s, insertion.oldFile, newLineCharacter).text)).join(newLineCharacter); const sourceFile = createSourceFile("any file name", nonFormattedText, { languageVersion: 99, jsDocParsingMode: 1 }, true, scriptKind); const changes = ts_formatting_exports.formatDocument(sourceFile, formatContext); return applyChanges(nonFormattedText, changes) + newLineCharacter; } changesToText2.newFileChangesWorker = newFileChangesWorker; function computeNewText(change, targetSourceFile, sourceFile, newLineCharacter, formatContext, validate) { var _a; if (change.kind === 0) { return ""; } if (change.kind === 3) { return change.text; } const { options = {}, range: { pos } } = change; const format = (n) => getFormattedTextOfNode(n, targetSourceFile, sourceFile, pos, options, newLineCharacter, formatContext, validate); const text = change.kind === 2 ? change.nodes.map((n) => removeSuffix(format(n), newLineCharacter)).join(((_a = change.options) == null ? undefined : _a.joiner) || newLineCharacter) : format(change.node); const noIndent = options.indentation !== undefined || getLineStartPositionForPosition(pos, targetSourceFile) === pos ? text : text.replace(/^\s+/, ""); return (options.prefix || "") + noIndent + (!options.suffix || endsWith(noIndent, options.suffix) ? "" : options.suffix); } function getFormattedTextOfNode(nodeIn, targetSourceFile, sourceFile, pos, { indentation, prefix, delta }, newLineCharacter, formatContext, validate) { const { node, text } = getNonformattedText(nodeIn, targetSourceFile, newLineCharacter); if (validate) validate(node, text); const formatOptions = getFormatCodeSettingsForWriting(formatContext, targetSourceFile); const initialIndentation = indentation !== undefined ? indentation : ts_formatting_exports.SmartIndenter.getIndentation(pos, sourceFile, formatOptions, prefix === newLineCharacter || getLineStartPositionForPosition(pos, targetSourceFile) === pos); if (delta === undefined) { delta = ts_formatting_exports.SmartIndenter.shouldIndentChildNode(formatOptions, nodeIn) ? formatOptions.indentSize || 0 : 0; } const file = { text, getLineAndCharacterOfPosition(pos2) { return getLineAndCharacterOfPosition(this, pos2); } }; const changes = ts_formatting_exports.formatNodeGivenIndentation(node, file, targetSourceFile.languageVariant, initialIndentation, delta, { ...formatContext, options: formatOptions }); return applyChanges(text, changes); } function getNonformattedText(node, sourceFile, newLineCharacter) { const writer = createWriter(newLineCharacter); const newLine = getNewLineKind(newLineCharacter); createPrinter({ newLine, neverAsciiEscape: true, preserveSourceNewlines: true, terminateUnterminatedLiterals: true }, writer).writeNode(4, node, sourceFile, writer); return { text: writer.getText(), node: assignPositionsToNode(node) }; } changesToText2.getNonformattedText = getNonformattedText; })(changesToText || (changesToText = {})); function applyChanges(text, changes) { for (let i = changes.length - 1;i >= 0; i--) { const { span, newText } = changes[i]; text = `${text.substring(0, span.start)}${newText}${text.substring(textSpanEnd(span))}`; } return text; } function isTrivia2(s) { return skipTrivia2(s, 0) === s.length; } var textChangesTransformationContext = { ...nullTransformationContext, factory: createNodeFactory(nullTransformationContext.factory.flags | 1, nullTransformationContext.factory.baseFactory) }; function assignPositionsToNode(node) { const visited = visitEachChild(node, assignPositionsToNode, textChangesTransformationContext, assignPositionsToNodeArray, assignPositionsToNode); const newNode = nodeIsSynthesized(visited) ? visited : Object.create(visited); setTextRangePosEnd(newNode, getPos2(node), getEnd(node)); return newNode; } function assignPositionsToNodeArray(nodes, visitor, test, start, count) { const visited = visitNodes2(nodes, visitor, test, start, count); if (!visited) { return visited; } Debug.assert(nodes); const nodeArray = visited === nodes ? factory.createNodeArray(visited.slice(0)) : visited; setTextRangePosEnd(nodeArray, getPos2(nodes), getEnd(nodes)); return nodeArray; } function createWriter(newLine) { let lastNonTriviaPosition = 0; const writer = createTextWriter(newLine); const onBeforeEmitNode = (node) => { if (node) { setPos(node, lastNonTriviaPosition); } }; const onAfterEmitNode = (node) => { if (node) { setEnd(node, lastNonTriviaPosition); } }; const onBeforeEmitNodeArray = (nodes) => { if (nodes) { setPos(nodes, lastNonTriviaPosition); } }; const onAfterEmitNodeArray = (nodes) => { if (nodes) { setEnd(nodes, lastNonTriviaPosition); } }; const onBeforeEmitToken = (node) => { if (node) { setPos(node, lastNonTriviaPosition); } }; const onAfterEmitToken = (node) => { if (node) { setEnd(node, lastNonTriviaPosition); } }; function setLastNonTriviaPosition(s, force) { if (force || !isTrivia2(s)) { lastNonTriviaPosition = writer.getTextPos(); let i = 0; while (isWhiteSpaceLike(s.charCodeAt(s.length - i - 1))) { i++; } lastNonTriviaPosition -= i; } } function write(s) { writer.write(s); setLastNonTriviaPosition(s, false); } function writeComment(s) { writer.writeComment(s); } function writeKeyword(s) { writer.writeKeyword(s); setLastNonTriviaPosition(s, false); } function writeOperator(s) { writer.writeOperator(s); setLastNonTriviaPosition(s, false); } function writePunctuation(s) { writer.writePunctuation(s); setLastNonTriviaPosition(s, false); } function writeTrailingSemicolon(s) { writer.writeTrailingSemicolon(s); setLastNonTriviaPosition(s, false); } function writeParameter(s) { writer.writeParameter(s); setLastNonTriviaPosition(s, false); } function writeProperty(s) { writer.writeProperty(s); setLastNonTriviaPosition(s, false); } function writeSpace(s) { writer.writeSpace(s); setLastNonTriviaPosition(s, false); } function writeStringLiteral(s) { writer.writeStringLiteral(s); setLastNonTriviaPosition(s, false); } function writeSymbol(s, sym) { writer.writeSymbol(s, sym); setLastNonTriviaPosition(s, false); } function writeLine(force) { writer.writeLine(force); } function increaseIndent() { writer.increaseIndent(); } function decreaseIndent() { writer.decreaseIndent(); } function getText() { return writer.getText(); } function rawWrite(s) { writer.rawWrite(s); setLastNonTriviaPosition(s, false); } function writeLiteral(s) { writer.writeLiteral(s); setLastNonTriviaPosition(s, true); } function getTextPos() { return writer.getTextPos(); } function getLine() { return writer.getLine(); } function getColumn() { return writer.getColumn(); } function getIndent() { return writer.getIndent(); } function isAtStartOfLine() { return writer.isAtStartOfLine(); } function clear2() { writer.clear(); lastNonTriviaPosition = 0; } return { onBeforeEmitNode, onAfterEmitNode, onBeforeEmitNodeArray, onAfterEmitNodeArray, onBeforeEmitToken, onAfterEmitToken, write, writeComment, writeKeyword, writeOperator, writePunctuation, writeTrailingSemicolon, writeParameter, writeProperty, writeSpace, writeStringLiteral, writeSymbol, writeLine, increaseIndent, decreaseIndent, getText, rawWrite, writeLiteral, getTextPos, getLine, getColumn, getIndent, isAtStartOfLine, hasTrailingComment: () => writer.hasTrailingComment(), hasTrailingWhitespace: () => writer.hasTrailingWhitespace(), clear: clear2 }; } function getInsertionPositionAtSourceFileTop(sourceFile) { let lastPrologue; for (const node of sourceFile.statements) { if (isPrologueDirective(node)) { lastPrologue = node; } else { break; } } let position = 0; const text = sourceFile.text; if (lastPrologue) { position = lastPrologue.end; advancePastLineBreak(); return position; } const shebang = getShebang(text); if (shebang !== undefined) { position = shebang.length; advancePastLineBreak(); } const ranges = getLeadingCommentRanges(text, position); if (!ranges) return position; let lastComment; let firstNodeLine; for (const range of ranges) { if (range.kind === 3) { if (isPinnedComment(text, range.pos)) { lastComment = { range, pinnedOrTripleSlash: true }; continue; } } else if (isRecognizedTripleSlashComment(text, range.pos, range.end)) { lastComment = { range, pinnedOrTripleSlash: true }; continue; } if (lastComment) { if (lastComment.pinnedOrTripleSlash) break; const commentLine = sourceFile.getLineAndCharacterOfPosition(range.pos).line; const lastCommentEndLine = sourceFile.getLineAndCharacterOfPosition(lastComment.range.end).line; if (commentLine >= lastCommentEndLine + 2) break; } if (sourceFile.statements.length) { if (firstNodeLine === undefined) firstNodeLine = sourceFile.getLineAndCharacterOfPosition(sourceFile.statements[0].getStart()).line; const commentEndLine = sourceFile.getLineAndCharacterOfPosition(range.end).line; if (firstNodeLine < commentEndLine + 2) break; } lastComment = { range, pinnedOrTripleSlash: false }; } if (lastComment) { position = lastComment.range.end; advancePastLineBreak(); } return position; function advancePastLineBreak() { if (position < text.length) { const charCode = text.charCodeAt(position); if (isLineBreak(charCode)) { position++; if (position < text.length && charCode === 13 && text.charCodeAt(position) === 10) { position++; } } } } } function isValidLocationToAddComment(sourceFile, position) { return !isInComment(sourceFile, position) && !isInString(sourceFile, position) && !isInTemplateString(sourceFile, position) && !isInJSXText(sourceFile, position); } function needSemicolonBetween(a, b) { return (isPropertySignature(a) || isPropertyDeclaration(a)) && isClassOrTypeElement(b) && b.name.kind === 168 || isStatementButNotDeclaration(a) && isStatementButNotDeclaration(b); } var deleteDeclaration; ((_deleteDeclaration) => { function deleteDeclaration2(changes, deletedNodesInLists, sourceFile, node) { switch (node.kind) { case 170: { const oldFunction = node.parent; if (isArrowFunction(oldFunction) && oldFunction.parameters.length === 1 && !findChildOfKind(oldFunction, 21, sourceFile)) { changes.replaceNodeWithText(sourceFile, node, "()"); } else { deleteNodeInList(changes, deletedNodesInLists, sourceFile, node); } break; } case 273: case 272: const isFirstImport = sourceFile.imports.length && node === first(sourceFile.imports).parent || node === find(sourceFile.statements, isAnyImportSyntax); deleteNode(changes, sourceFile, node, { leadingTriviaOption: isFirstImport ? 0 : hasJSDocNodes(node) ? 2 : 3 }); break; case 209: const pattern = node.parent; const preserveComma = pattern.kind === 208 && node !== last(pattern.elements); if (preserveComma) { deleteNode(changes, sourceFile, node); } else { deleteNodeInList(changes, deletedNodesInLists, sourceFile, node); } break; case 261: deleteVariableDeclaration(changes, deletedNodesInLists, sourceFile, node); break; case 169: deleteNodeInList(changes, deletedNodesInLists, sourceFile, node); break; case 277: const namedImports = node.parent; if (namedImports.elements.length === 1) { deleteImportBinding(changes, sourceFile, namedImports); } else { deleteNodeInList(changes, deletedNodesInLists, sourceFile, node); } break; case 275: deleteImportBinding(changes, sourceFile, node); break; case 27: deleteNode(changes, sourceFile, node, { trailingTriviaOption: 0 }); break; case 100: deleteNode(changes, sourceFile, node, { leadingTriviaOption: 0 }); break; case 264: case 263: deleteNode(changes, sourceFile, node, { leadingTriviaOption: hasJSDocNodes(node) ? 2 : 3 }); break; default: if (!node.parent) { deleteNode(changes, sourceFile, node); } else if (isImportClause(node.parent) && node.parent.name === node) { deleteDefaultImport(changes, sourceFile, node.parent); } else if (isCallExpression(node.parent) && contains(node.parent.arguments, node)) { deleteNodeInList(changes, deletedNodesInLists, sourceFile, node); } else { deleteNode(changes, sourceFile, node); } } } _deleteDeclaration.deleteDeclaration = deleteDeclaration2; function deleteDefaultImport(changes, sourceFile, importClause) { if (!importClause.namedBindings) { deleteNode(changes, sourceFile, importClause.parent); } else { const start = importClause.name.getStart(sourceFile); const nextToken = getTokenAtPosition(sourceFile, importClause.name.end); if (nextToken && nextToken.kind === 28) { const end = skipTrivia2(sourceFile.text, nextToken.end, false, true); changes.deleteRange(sourceFile, { pos: start, end }); } else { deleteNode(changes, sourceFile, importClause.name); } } } function deleteImportBinding(changes, sourceFile, node) { if (node.parent.name) { const previousToken = Debug.checkDefined(getTokenAtPosition(sourceFile, node.pos - 1)); changes.deleteRange(sourceFile, { pos: previousToken.getStart(sourceFile), end: node.end }); } else { const importDecl = getAncestor(node, 273); deleteNode(changes, sourceFile, importDecl); } } function deleteVariableDeclaration(changes, deletedNodesInLists, sourceFile, node) { const { parent: parent2 } = node; if (parent2.kind === 300) { changes.deleteNodeRange(sourceFile, findChildOfKind(parent2, 21, sourceFile), findChildOfKind(parent2, 22, sourceFile)); return; } if (parent2.declarations.length !== 1) { deleteNodeInList(changes, deletedNodesInLists, sourceFile, node); return; } const gp = parent2.parent; switch (gp.kind) { case 251: case 250: changes.replaceNode(sourceFile, node, factory.createObjectLiteralExpression()); break; case 249: deleteNode(changes, sourceFile, parent2); break; case 244: deleteNode(changes, sourceFile, gp, { leadingTriviaOption: hasJSDocNodes(gp) ? 2 : 3 }); break; default: Debug.assertNever(gp); } } })(deleteDeclaration || (deleteDeclaration = {})); function deleteNode(changes, sourceFile, node, options = { leadingTriviaOption: 1 }) { const startPosition = getAdjustedStartPosition(sourceFile, node, options); const endPosition = getAdjustedEndPosition(sourceFile, node, options); changes.deleteRange(sourceFile, { pos: startPosition, end: endPosition }); } function deleteNodeInList(changes, deletedNodesInLists, sourceFile, node) { const containingList = Debug.checkDefined(ts_formatting_exports.SmartIndenter.getContainingList(node, sourceFile)); const index = indexOfNode(containingList, node); Debug.assert(index !== -1); if (containingList.length === 1) { deleteNode(changes, sourceFile, node); return; } Debug.assert(!deletedNodesInLists.has(node), "Deleting a node twice"); deletedNodesInLists.add(node); changes.deleteRange(sourceFile, { pos: startPositionToDeleteNodeInList(sourceFile, node), end: index === containingList.length - 1 ? getAdjustedEndPosition(sourceFile, node, {}) : endPositionToDeleteNodeInList(sourceFile, node, containingList[index - 1], containingList[index + 1]) }); } var ts_formatting_exports = {}; __export2(ts_formatting_exports, { FormattingContext: () => FormattingContext, FormattingRequestKind: () => FormattingRequestKind, RuleAction: () => RuleAction, RuleFlags: () => RuleFlags, SmartIndenter: () => SmartIndenter, anyContext: () => anyContext, createTextRangeWithKind: () => createTextRangeWithKind, formatDocument: () => formatDocument, formatNodeGivenIndentation: () => formatNodeGivenIndentation, formatOnClosingCurly: () => formatOnClosingCurly, formatOnEnter: () => formatOnEnter, formatOnOpeningCurly: () => formatOnOpeningCurly, formatOnSemicolon: () => formatOnSemicolon, formatSelection: () => formatSelection, getAllRules: () => getAllRules, getFormatContext: () => getFormatContext, getFormattingScanner: () => getFormattingScanner, getIndentationString: () => getIndentationString, getRangeOfEnclosingComment: () => getRangeOfEnclosingComment }); var FormattingRequestKind = /* @__PURE__ */ ((FormattingRequestKind2) => { FormattingRequestKind2[FormattingRequestKind2["FormatDocument"] = 0] = "FormatDocument"; FormattingRequestKind2[FormattingRequestKind2["FormatSelection"] = 1] = "FormatSelection"; FormattingRequestKind2[FormattingRequestKind2["FormatOnEnter"] = 2] = "FormatOnEnter"; FormattingRequestKind2[FormattingRequestKind2["FormatOnSemicolon"] = 3] = "FormatOnSemicolon"; FormattingRequestKind2[FormattingRequestKind2["FormatOnOpeningCurlyBrace"] = 4] = "FormatOnOpeningCurlyBrace"; FormattingRequestKind2[FormattingRequestKind2["FormatOnClosingCurlyBrace"] = 5] = "FormatOnClosingCurlyBrace"; return FormattingRequestKind2; })(FormattingRequestKind || {}); var FormattingContext = class { constructor(sourceFile, formattingRequestKind, options) { this.sourceFile = sourceFile; this.formattingRequestKind = formattingRequestKind; this.options = options; } updateContext(currentRange, currentTokenParent, nextRange, nextTokenParent, commonParent) { this.currentTokenSpan = Debug.checkDefined(currentRange); this.currentTokenParent = Debug.checkDefined(currentTokenParent); this.nextTokenSpan = Debug.checkDefined(nextRange); this.nextTokenParent = Debug.checkDefined(nextTokenParent); this.contextNode = Debug.checkDefined(commonParent); this.contextNodeAllOnSameLine = undefined; this.nextNodeAllOnSameLine = undefined; this.tokensAreOnSameLine = undefined; this.contextNodeBlockIsOnOneLine = undefined; this.nextNodeBlockIsOnOneLine = undefined; } ContextNodeAllOnSameLine() { if (this.contextNodeAllOnSameLine === undefined) { this.contextNodeAllOnSameLine = this.NodeIsOnOneLine(this.contextNode); } return this.contextNodeAllOnSameLine; } NextNodeAllOnSameLine() { if (this.nextNodeAllOnSameLine === undefined) { this.nextNodeAllOnSameLine = this.NodeIsOnOneLine(this.nextTokenParent); } return this.nextNodeAllOnSameLine; } TokensAreOnSameLine() { if (this.tokensAreOnSameLine === undefined) { const startLine = this.sourceFile.getLineAndCharacterOfPosition(this.currentTokenSpan.pos).line; const endLine = this.sourceFile.getLineAndCharacterOfPosition(this.nextTokenSpan.pos).line; this.tokensAreOnSameLine = startLine === endLine; } return this.tokensAreOnSameLine; } ContextNodeBlockIsOnOneLine() { if (this.contextNodeBlockIsOnOneLine === undefined) { this.contextNodeBlockIsOnOneLine = this.BlockIsOnOneLine(this.contextNode); } return this.contextNodeBlockIsOnOneLine; } NextNodeBlockIsOnOneLine() { if (this.nextNodeBlockIsOnOneLine === undefined) { this.nextNodeBlockIsOnOneLine = this.BlockIsOnOneLine(this.nextTokenParent); } return this.nextNodeBlockIsOnOneLine; } NodeIsOnOneLine(node) { const startLine = this.sourceFile.getLineAndCharacterOfPosition(node.getStart(this.sourceFile)).line; const endLine = this.sourceFile.getLineAndCharacterOfPosition(node.getEnd()).line; return startLine === endLine; } BlockIsOnOneLine(node) { const openBrace = findChildOfKind(node, 19, this.sourceFile); const closeBrace = findChildOfKind(node, 20, this.sourceFile); if (openBrace && closeBrace) { const startLine = this.sourceFile.getLineAndCharacterOfPosition(openBrace.getEnd()).line; const endLine = this.sourceFile.getLineAndCharacterOfPosition(closeBrace.getStart(this.sourceFile)).line; return startLine === endLine; } return false; } }; var standardScanner = createScanner(99, false, 0); var jsxScanner = createScanner(99, false, 1); function getFormattingScanner(text, languageVariant, startPos, endPos, cb) { const scanner2 = languageVariant === 1 ? jsxScanner : standardScanner; scanner2.setText(text); scanner2.resetTokenState(startPos); let wasNewLine = true; let leadingTrivia; let trailingTrivia; let savedPos; let lastScanAction; let lastTokenInfo; const res = cb({ advance, readTokenInfo, readEOFTokenRange, isOnToken, isOnEOF, getCurrentLeadingTrivia: () => leadingTrivia, lastTrailingTriviaWasNewLine: () => wasNewLine, skipToEndOf, skipToStartOf, getTokenFullStart: () => (lastTokenInfo == null ? undefined : lastTokenInfo.token.pos) ?? scanner2.getTokenStart(), getStartPos: () => (lastTokenInfo == null ? undefined : lastTokenInfo.token.pos) ?? scanner2.getTokenStart() }); lastTokenInfo = undefined; scanner2.setText(undefined); return res; function advance() { lastTokenInfo = undefined; const isStarted = scanner2.getTokenFullStart() !== startPos; if (isStarted) { wasNewLine = !!trailingTrivia && last(trailingTrivia).kind === 4; } else { scanner2.scan(); } leadingTrivia = undefined; trailingTrivia = undefined; let pos = scanner2.getTokenFullStart(); while (pos < endPos) { const t = scanner2.getToken(); if (!isTrivia(t)) { break; } scanner2.scan(); const item = { pos, end: scanner2.getTokenFullStart(), kind: t }; pos = scanner2.getTokenFullStart(); leadingTrivia = append(leadingTrivia, item); } savedPos = scanner2.getTokenFullStart(); } function shouldRescanGreaterThanToken(node) { switch (node.kind) { case 34: case 72: case 73: case 50: case 49: return true; } return false; } function shouldRescanJsxIdentifier(node) { if (node.parent) { switch (node.parent.kind) { case 292: case 287: case 288: case 286: return isKeyword(node.kind) || node.kind === 80; } } return false; } function shouldRescanJsxText(node) { return isJsxText(node) || isJsxElement(node) && (lastTokenInfo == null ? undefined : lastTokenInfo.token.kind) === 12; } function shouldRescanSlashToken(container) { return container.kind === 14; } function shouldRescanTemplateToken(container) { return container.kind === 17 || container.kind === 18; } function shouldRescanJsxAttributeValue(node) { return node.parent && isJsxAttribute(node.parent) && node.parent.initializer === node; } function startsWithSlashToken(t) { return t === 44 || t === 69; } function readTokenInfo(n) { Debug.assert(isOnToken()); const expectedScanAction = shouldRescanGreaterThanToken(n) ? 1 : shouldRescanSlashToken(n) ? 2 : shouldRescanTemplateToken(n) ? 3 : shouldRescanJsxIdentifier(n) ? 4 : shouldRescanJsxText(n) ? 5 : shouldRescanJsxAttributeValue(n) ? 6 : 0; if (lastTokenInfo && expectedScanAction === lastScanAction) { return fixTokenKind(lastTokenInfo, n); } if (scanner2.getTokenFullStart() !== savedPos) { Debug.assert(lastTokenInfo !== undefined); scanner2.resetTokenState(savedPos); scanner2.scan(); } let currentToken = getNextToken(n, expectedScanAction); const token = createTextRangeWithKind(scanner2.getTokenFullStart(), scanner2.getTokenEnd(), currentToken); if (trailingTrivia) { trailingTrivia = undefined; } while (scanner2.getTokenFullStart() < endPos) { currentToken = scanner2.scan(); if (!isTrivia(currentToken)) { break; } const trivia = createTextRangeWithKind(scanner2.getTokenFullStart(), scanner2.getTokenEnd(), currentToken); if (!trailingTrivia) { trailingTrivia = []; } trailingTrivia.push(trivia); if (currentToken === 4) { scanner2.scan(); break; } } lastTokenInfo = { leadingTrivia, trailingTrivia, token }; return fixTokenKind(lastTokenInfo, n); } function getNextToken(n, expectedScanAction) { const token = scanner2.getToken(); lastScanAction = 0; switch (expectedScanAction) { case 1: if (token === 32) { lastScanAction = 1; const newToken = scanner2.reScanGreaterToken(); Debug.assert(n.kind === newToken); return newToken; } break; case 2: if (startsWithSlashToken(token)) { lastScanAction = 2; const newToken = scanner2.reScanSlashToken(); Debug.assert(n.kind === newToken); return newToken; } break; case 3: if (token === 20) { lastScanAction = 3; return scanner2.reScanTemplateToken(false); } break; case 4: lastScanAction = 4; return scanner2.scanJsxIdentifier(); case 5: lastScanAction = 5; return scanner2.reScanJsxToken(false); case 6: lastScanAction = 6; return scanner2.reScanJsxAttributeValue(); case 0: break; default: Debug.assertNever(expectedScanAction); } return token; } function readEOFTokenRange() { Debug.assert(isOnEOF()); return createTextRangeWithKind(scanner2.getTokenFullStart(), scanner2.getTokenEnd(), 1); } function isOnToken() { const current = lastTokenInfo ? lastTokenInfo.token.kind : scanner2.getToken(); return current !== 1 && !isTrivia(current); } function isOnEOF() { const current = lastTokenInfo ? lastTokenInfo.token.kind : scanner2.getToken(); return current === 1; } function fixTokenKind(tokenInfo, container) { if (isToken(container) && tokenInfo.token.kind !== container.kind) { tokenInfo.token.kind = container.kind; } return tokenInfo; } function skipToEndOf(node) { scanner2.resetTokenState(node.end); savedPos = scanner2.getTokenFullStart(); lastScanAction = undefined; lastTokenInfo = undefined; wasNewLine = false; leadingTrivia = undefined; trailingTrivia = undefined; } function skipToStartOf(node) { scanner2.resetTokenState(node.pos); savedPos = scanner2.getTokenFullStart(); lastScanAction = undefined; lastTokenInfo = undefined; wasNewLine = false; leadingTrivia = undefined; trailingTrivia = undefined; } } var anyContext = emptyArray; var RuleAction = /* @__PURE__ */ ((RuleAction2) => { RuleAction2[RuleAction2["None"] = 0] = "None"; RuleAction2[RuleAction2["StopProcessingSpaceActions"] = 1] = "StopProcessingSpaceActions"; RuleAction2[RuleAction2["StopProcessingTokenActions"] = 2] = "StopProcessingTokenActions"; RuleAction2[RuleAction2["InsertSpace"] = 4] = "InsertSpace"; RuleAction2[RuleAction2["InsertNewLine"] = 8] = "InsertNewLine"; RuleAction2[RuleAction2["DeleteSpace"] = 16] = "DeleteSpace"; RuleAction2[RuleAction2["DeleteToken"] = 32] = "DeleteToken"; RuleAction2[RuleAction2["InsertTrailingSemicolon"] = 64] = "InsertTrailingSemicolon"; RuleAction2[RuleAction2["StopAction"] = 3] = "StopAction"; RuleAction2[RuleAction2["ModifySpaceAction"] = 28] = "ModifySpaceAction"; RuleAction2[RuleAction2["ModifyTokenAction"] = 96] = "ModifyTokenAction"; return RuleAction2; })(RuleAction || {}); var RuleFlags = /* @__PURE__ */ ((RuleFlags2) => { RuleFlags2[RuleFlags2["None"] = 0] = "None"; RuleFlags2[RuleFlags2["CanDeleteNewLines"] = 1] = "CanDeleteNewLines"; return RuleFlags2; })(RuleFlags || {}); function getAllRules() { const allTokens = []; for (let token = 0;token <= 166; token++) { if (token !== 1) { allTokens.push(token); } } function anyTokenExcept(...tokens) { return { tokens: allTokens.filter((t) => !tokens.some((t2) => t2 === t)), isSpecific: false }; } const anyToken = { tokens: allTokens, isSpecific: false }; const anyTokenIncludingMultilineComments = tokenRangeFrom([...allTokens, 3]); const anyTokenIncludingEOF = tokenRangeFrom([...allTokens, 1]); const keywords = tokenRangeFromRange(83, 166); const binaryOperators = tokenRangeFromRange(30, 79); const binaryKeywordOperators = [ 103, 104, 165, 130, 142, 152 ]; const unaryPrefixOperators = [46, 47, 55, 54]; const unaryPrefixExpressions = [ 9, 10, 80, 21, 23, 19, 110, 105 ]; const unaryPreincrementExpressions = [80, 21, 110, 105]; const unaryPostincrementExpressions = [80, 22, 24, 105]; const unaryPredecrementExpressions = [80, 21, 110, 105]; const unaryPostdecrementExpressions = [80, 22, 24, 105]; const comments = [2, 3]; const typeNames = [80, ...typeKeywords]; const functionOpenBraceLeftTokenRange = anyTokenIncludingMultilineComments; const typeScriptOpenBraceLeftTokenRange = tokenRangeFrom([80, 32, 3, 86, 95, 102]); const controlOpenBraceLeftTokenRange = tokenRangeFrom([22, 3, 92, 113, 98, 93, 85]); const highPriorityCommonRules = [ rule("IgnoreBeforeComment", anyToken, comments, anyContext, 1), rule("IgnoreAfterLineComment", 2, anyToken, anyContext, 1), rule("NotSpaceBeforeColon", anyToken, 59, [isNonJsxSameLineTokenContext, isNotBinaryOpContext, isNotTypeAnnotationContext], 16), rule("SpaceAfterColon", 59, anyToken, [isNonJsxSameLineTokenContext, isNotBinaryOpContext, isNextTokenParentNotJsxNamespacedName], 4), rule("NoSpaceBeforeQuestionMark", anyToken, 58, [isNonJsxSameLineTokenContext, isNotBinaryOpContext, isNotTypeAnnotationContext], 16), rule("SpaceAfterQuestionMarkInConditionalOperator", 58, anyToken, [isNonJsxSameLineTokenContext, isConditionalOperatorContext], 4), rule("NoSpaceAfterQuestionMark", 58, anyToken, [isNonJsxSameLineTokenContext, isNonOptionalPropertyContext], 16), rule("NoSpaceBeforeDot", anyToken, [25, 29], [isNonJsxSameLineTokenContext, isNotPropertyAccessOnIntegerLiteral], 16), rule("NoSpaceAfterDot", [25, 29], anyToken, [isNonJsxSameLineTokenContext], 16), rule("NoSpaceBetweenImportParenInImportType", 102, 21, [isNonJsxSameLineTokenContext, isImportTypeContext], 16), rule("NoSpaceAfterUnaryPrefixOperator", unaryPrefixOperators, unaryPrefixExpressions, [isNonJsxSameLineTokenContext, isNotBinaryOpContext], 16), rule("NoSpaceAfterUnaryPreincrementOperator", 46, unaryPreincrementExpressions, [isNonJsxSameLineTokenContext], 16), rule("NoSpaceAfterUnaryPredecrementOperator", 47, unaryPredecrementExpressions, [isNonJsxSameLineTokenContext], 16), rule("NoSpaceBeforeUnaryPostincrementOperator", unaryPostincrementExpressions, 46, [isNonJsxSameLineTokenContext, isNotStatementConditionContext], 16), rule("NoSpaceBeforeUnaryPostdecrementOperator", unaryPostdecrementExpressions, 47, [isNonJsxSameLineTokenContext, isNotStatementConditionContext], 16), rule("SpaceAfterPostincrementWhenFollowedByAdd", 46, 40, [isNonJsxSameLineTokenContext, isBinaryOpContext], 4), rule("SpaceAfterAddWhenFollowedByUnaryPlus", 40, 40, [isNonJsxSameLineTokenContext, isBinaryOpContext], 4), rule("SpaceAfterAddWhenFollowedByPreincrement", 40, 46, [isNonJsxSameLineTokenContext, isBinaryOpContext], 4), rule("SpaceAfterPostdecrementWhenFollowedBySubtract", 47, 41, [isNonJsxSameLineTokenContext, isBinaryOpContext], 4), rule("SpaceAfterSubtractWhenFollowedByUnaryMinus", 41, 41, [isNonJsxSameLineTokenContext, isBinaryOpContext], 4), rule("SpaceAfterSubtractWhenFollowedByPredecrement", 41, 47, [isNonJsxSameLineTokenContext, isBinaryOpContext], 4), rule("NoSpaceAfterCloseBrace", 20, [28, 27], [isNonJsxSameLineTokenContext], 16), rule("NewLineBeforeCloseBraceInBlockContext", anyTokenIncludingMultilineComments, 20, [isMultilineBlockContext], 8), rule("SpaceAfterCloseBrace", 20, anyTokenExcept(22), [isNonJsxSameLineTokenContext, isAfterCodeBlockContext], 4), rule("SpaceBetweenCloseBraceAndElse", 20, 93, [isNonJsxSameLineTokenContext], 4), rule("SpaceBetweenCloseBraceAndWhile", 20, 117, [isNonJsxSameLineTokenContext], 4), rule("NoSpaceBetweenEmptyBraceBrackets", 19, 20, [isNonJsxSameLineTokenContext, isObjectContext], 16), rule("SpaceAfterConditionalClosingParen", 22, 23, [isControlDeclContext], 4), rule("NoSpaceBetweenFunctionKeywordAndStar", 100, 42, [isFunctionDeclarationOrFunctionExpressionContext], 16), rule("SpaceAfterStarInGeneratorDeclaration", 42, 80, [isFunctionDeclarationOrFunctionExpressionContext], 4), rule("SpaceAfterFunctionInFuncDecl", 100, anyToken, [isFunctionDeclContext], 4), rule("NewLineAfterOpenBraceInBlockContext", 19, anyToken, [isMultilineBlockContext], 8), rule("SpaceAfterGetSetInMember", [139, 153], 80, [isFunctionDeclContext], 4), rule("NoSpaceBetweenYieldKeywordAndStar", 127, 42, [isNonJsxSameLineTokenContext, isYieldOrYieldStarWithOperand], 16), rule("SpaceBetweenYieldOrYieldStarAndOperand", [127, 42], anyToken, [isNonJsxSameLineTokenContext, isYieldOrYieldStarWithOperand], 4), rule("NoSpaceBetweenReturnAndSemicolon", 107, 27, [isNonJsxSameLineTokenContext], 16), rule("SpaceAfterCertainKeywords", [115, 111, 105, 91, 107, 114, 135], anyToken, [isNonJsxSameLineTokenContext], 4), rule("SpaceAfterLetConstInVariableDeclaration", [121, 87], anyToken, [isNonJsxSameLineTokenContext, isStartOfVariableDeclarationList], 4), rule("NoSpaceBeforeOpenParenInFuncCall", anyToken, 21, [isNonJsxSameLineTokenContext, isFunctionCallOrNewContext, isPreviousTokenNotComma], 16), rule("SpaceBeforeBinaryKeywordOperator", anyToken, binaryKeywordOperators, [isNonJsxSameLineTokenContext, isBinaryOpContext], 4), rule("SpaceAfterBinaryKeywordOperator", binaryKeywordOperators, anyToken, [isNonJsxSameLineTokenContext, isBinaryOpContext], 4), rule("SpaceAfterVoidOperator", 116, anyToken, [isNonJsxSameLineTokenContext, isVoidOpContext], 4), rule("SpaceBetweenAsyncAndOpenParen", 134, 21, [isArrowFunctionContext, isNonJsxSameLineTokenContext], 4), rule("SpaceBetweenAsyncAndFunctionKeyword", 134, [100, 80], [isNonJsxSameLineTokenContext], 4), rule("NoSpaceBetweenTagAndTemplateString", [80, 22], [15, 16], [isNonJsxSameLineTokenContext], 16), rule("SpaceBeforeJsxAttribute", anyToken, 80, [isNextTokenParentJsxAttribute, isNonJsxSameLineTokenContext], 4), rule("SpaceBeforeSlashInJsxOpeningElement", anyToken, 44, [isJsxSelfClosingElementContext, isNonJsxSameLineTokenContext], 4), rule("NoSpaceBeforeGreaterThanTokenInJsxOpeningElement", 44, 32, [isJsxSelfClosingElementContext, isNonJsxSameLineTokenContext], 16), rule("NoSpaceBeforeEqualInJsxAttribute", anyToken, 64, [isJsxAttributeContext, isNonJsxSameLineTokenContext], 16), rule("NoSpaceAfterEqualInJsxAttribute", 64, anyToken, [isJsxAttributeContext, isNonJsxSameLineTokenContext], 16), rule("NoSpaceBeforeJsxNamespaceColon", 80, 59, [isNextTokenParentJsxNamespacedName], 16), rule("NoSpaceAfterJsxNamespaceColon", 59, 80, [isNextTokenParentJsxNamespacedName], 16), rule("NoSpaceAfterModuleImport", [144, 149], 21, [isNonJsxSameLineTokenContext], 16), rule("SpaceAfterCertainTypeScriptKeywords", [ 128, 129, 86, 138, 90, 94, 95, 96, 139, 119, 102, 120, 144, 145, 123, 125, 124, 148, 153, 126, 156, 161, 143, 140 ], anyToken, [isNonJsxSameLineTokenContext], 4), rule("SpaceBeforeCertainTypeScriptKeywords", anyToken, [96, 119, 161], [isNonJsxSameLineTokenContext], 4), rule("SpaceAfterModuleName", 11, 19, [isModuleDeclContext], 4), rule("SpaceBeforeArrow", anyToken, 39, [isNonJsxSameLineTokenContext], 4), rule("SpaceAfterArrow", 39, anyToken, [isNonJsxSameLineTokenContext], 4), rule("NoSpaceAfterEllipsis", 26, 80, [isNonJsxSameLineTokenContext], 16), rule("NoSpaceAfterOptionalParameters", 58, [22, 28], [isNonJsxSameLineTokenContext, isNotBinaryOpContext], 16), rule("NoSpaceBetweenEmptyInterfaceBraceBrackets", 19, 20, [isNonJsxSameLineTokenContext, isObjectTypeContext], 16), rule("NoSpaceBeforeOpenAngularBracket", typeNames, 30, [isNonJsxSameLineTokenContext, isTypeArgumentOrParameterOrAssertionContext], 16), rule("NoSpaceBetweenCloseParenAndAngularBracket", 22, 30, [isNonJsxSameLineTokenContext, isTypeArgumentOrParameterOrAssertionContext], 16), rule("NoSpaceAfterOpenAngularBracket", 30, anyToken, [isNonJsxSameLineTokenContext, isTypeArgumentOrParameterOrAssertionContext], 16), rule("NoSpaceBeforeCloseAngularBracket", anyToken, 32, [isNonJsxSameLineTokenContext, isTypeArgumentOrParameterOrAssertionContext], 16), rule("NoSpaceAfterCloseAngularBracket", 32, [21, 23, 32, 28], [ isNonJsxSameLineTokenContext, isTypeArgumentOrParameterOrAssertionContext, isNotFunctionDeclContext, isNonTypeAssertionContext ], 16), rule("SpaceBeforeAt", [22, 80], 60, [isNonJsxSameLineTokenContext], 4), rule("NoSpaceAfterAt", 60, anyToken, [isNonJsxSameLineTokenContext], 16), rule("SpaceAfterDecorator", anyToken, [ 128, 80, 95, 90, 86, 126, 125, 123, 124, 139, 153, 23, 42 ], [isEndOfDecoratorContextOnSameLine], 4), rule("NoSpaceBeforeNonNullAssertionOperator", anyToken, 54, [isNonJsxSameLineTokenContext, isNonNullAssertionContext], 16), rule("NoSpaceAfterNewKeywordOnConstructorSignature", 105, 21, [isNonJsxSameLineTokenContext, isConstructorSignatureContext], 16), rule("SpaceLessThanAndNonJSXTypeAnnotation", 30, 30, [isNonJsxSameLineTokenContext], 4) ]; const userConfigurableRules = [ rule("SpaceAfterConstructor", 137, 21, [isOptionEnabled("insertSpaceAfterConstructor"), isNonJsxSameLineTokenContext], 4), rule("NoSpaceAfterConstructor", 137, 21, [isOptionDisabledOrUndefined("insertSpaceAfterConstructor"), isNonJsxSameLineTokenContext], 16), rule("SpaceAfterComma", 28, anyToken, [isOptionEnabled("insertSpaceAfterCommaDelimiter"), isNonJsxSameLineTokenContext, isNonJsxElementOrFragmentContext, isNextTokenNotCloseBracket, isNextTokenNotCloseParen], 4), rule("NoSpaceAfterComma", 28, anyToken, [isOptionDisabledOrUndefined("insertSpaceAfterCommaDelimiter"), isNonJsxSameLineTokenContext, isNonJsxElementOrFragmentContext], 16), rule("SpaceAfterAnonymousFunctionKeyword", [100, 42], 21, [isOptionEnabled("insertSpaceAfterFunctionKeywordForAnonymousFunctions"), isFunctionDeclContext], 4), rule("NoSpaceAfterAnonymousFunctionKeyword", [100, 42], 21, [isOptionDisabledOrUndefined("insertSpaceAfterFunctionKeywordForAnonymousFunctions"), isFunctionDeclContext], 16), rule("SpaceAfterKeywordInControl", keywords, 21, [isOptionEnabled("insertSpaceAfterKeywordsInControlFlowStatements"), isControlDeclContext], 4), rule("NoSpaceAfterKeywordInControl", keywords, 21, [isOptionDisabledOrUndefined("insertSpaceAfterKeywordsInControlFlowStatements"), isControlDeclContext], 16), rule("SpaceAfterOpenParen", 21, anyToken, [isOptionEnabled("insertSpaceAfterOpeningAndBeforeClosingNonemptyParenthesis"), isNonJsxSameLineTokenContext], 4), rule("SpaceBeforeCloseParen", anyToken, 22, [isOptionEnabled("insertSpaceAfterOpeningAndBeforeClosingNonemptyParenthesis"), isNonJsxSameLineTokenContext], 4), rule("SpaceBetweenOpenParens", 21, 21, [isOptionEnabled("insertSpaceAfterOpeningAndBeforeClosingNonemptyParenthesis"), isNonJsxSameLineTokenContext], 4), rule("NoSpaceBetweenParens", 21, 22, [isNonJsxSameLineTokenContext], 16), rule("NoSpaceAfterOpenParen", 21, anyToken, [isOptionDisabledOrUndefined("insertSpaceAfterOpeningAndBeforeClosingNonemptyParenthesis"), isNonJsxSameLineTokenContext], 16), rule("NoSpaceBeforeCloseParen", anyToken, 22, [isOptionDisabledOrUndefined("insertSpaceAfterOpeningAndBeforeClosingNonemptyParenthesis"), isNonJsxSameLineTokenContext], 16), rule("SpaceAfterOpenBracket", 23, anyToken, [isOptionEnabled("insertSpaceAfterOpeningAndBeforeClosingNonemptyBrackets"), isNonJsxSameLineTokenContext], 4), rule("SpaceBeforeCloseBracket", anyToken, 24, [isOptionEnabled("insertSpaceAfterOpeningAndBeforeClosingNonemptyBrackets"), isNonJsxSameLineTokenContext], 4), rule("NoSpaceBetweenBrackets", 23, 24, [isNonJsxSameLineTokenContext], 16), rule("NoSpaceAfterOpenBracket", 23, anyToken, [isOptionDisabledOrUndefined("insertSpaceAfterOpeningAndBeforeClosingNonemptyBrackets"), isNonJsxSameLineTokenContext], 16), rule("NoSpaceBeforeCloseBracket", anyToken, 24, [isOptionDisabledOrUndefined("insertSpaceAfterOpeningAndBeforeClosingNonemptyBrackets"), isNonJsxSameLineTokenContext], 16), rule("SpaceAfterOpenBrace", 19, anyToken, [isOptionEnabledOrUndefined("insertSpaceAfterOpeningAndBeforeClosingNonemptyBraces"), isBraceWrappedContext], 4), rule("SpaceBeforeCloseBrace", anyToken, 20, [isOptionEnabledOrUndefined("insertSpaceAfterOpeningAndBeforeClosingNonemptyBraces"), isBraceWrappedContext], 4), rule("NoSpaceBetweenEmptyBraceBrackets", 19, 20, [isNonJsxSameLineTokenContext, isObjectContext], 16), rule("NoSpaceAfterOpenBrace", 19, anyToken, [isOptionDisabled("insertSpaceAfterOpeningAndBeforeClosingNonemptyBraces"), isNonJsxSameLineTokenContext], 16), rule("NoSpaceBeforeCloseBrace", anyToken, 20, [isOptionDisabled("insertSpaceAfterOpeningAndBeforeClosingNonemptyBraces"), isNonJsxSameLineTokenContext], 16), rule("SpaceBetweenEmptyBraceBrackets", 19, 20, [isOptionEnabled("insertSpaceAfterOpeningAndBeforeClosingEmptyBraces")], 4), rule("NoSpaceBetweenEmptyBraceBrackets", 19, 20, [isOptionDisabled("insertSpaceAfterOpeningAndBeforeClosingEmptyBraces"), isNonJsxSameLineTokenContext], 16), rule("SpaceAfterTemplateHeadAndMiddle", [16, 17], anyToken, [isOptionEnabled("insertSpaceAfterOpeningAndBeforeClosingTemplateStringBraces"), isNonJsxTextContext], 4, 1), rule("SpaceBeforeTemplateMiddleAndTail", anyToken, [17, 18], [isOptionEnabled("insertSpaceAfterOpeningAndBeforeClosingTemplateStringBraces"), isNonJsxSameLineTokenContext], 4), rule("NoSpaceAfterTemplateHeadAndMiddle", [16, 17], anyToken, [isOptionDisabledOrUndefined("insertSpaceAfterOpeningAndBeforeClosingTemplateStringBraces"), isNonJsxTextContext], 16, 1), rule("NoSpaceBeforeTemplateMiddleAndTail", anyToken, [17, 18], [isOptionDisabledOrUndefined("insertSpaceAfterOpeningAndBeforeClosingTemplateStringBraces"), isNonJsxSameLineTokenContext], 16), rule("SpaceAfterOpenBraceInJsxExpression", 19, anyToken, [isOptionEnabled("insertSpaceAfterOpeningAndBeforeClosingJsxExpressionBraces"), isNonJsxSameLineTokenContext, isJsxExpressionContext], 4), rule("SpaceBeforeCloseBraceInJsxExpression", anyToken, 20, [isOptionEnabled("insertSpaceAfterOpeningAndBeforeClosingJsxExpressionBraces"), isNonJsxSameLineTokenContext, isJsxExpressionContext], 4), rule("NoSpaceAfterOpenBraceInJsxExpression", 19, anyToken, [isOptionDisabledOrUndefined("insertSpaceAfterOpeningAndBeforeClosingJsxExpressionBraces"), isNonJsxSameLineTokenContext, isJsxExpressionContext], 16), rule("NoSpaceBeforeCloseBraceInJsxExpression", anyToken, 20, [isOptionDisabledOrUndefined("insertSpaceAfterOpeningAndBeforeClosingJsxExpressionBraces"), isNonJsxSameLineTokenContext, isJsxExpressionContext], 16), rule("SpaceAfterSemicolonInFor", 27, anyToken, [isOptionEnabled("insertSpaceAfterSemicolonInForStatements"), isNonJsxSameLineTokenContext, isForContext], 4), rule("NoSpaceAfterSemicolonInFor", 27, anyToken, [isOptionDisabledOrUndefined("insertSpaceAfterSemicolonInForStatements"), isNonJsxSameLineTokenContext, isForContext], 16), rule("SpaceBeforeBinaryOperator", anyToken, binaryOperators, [isOptionEnabled("insertSpaceBeforeAndAfterBinaryOperators"), isNonJsxSameLineTokenContext, isBinaryOpContext], 4), rule("SpaceAfterBinaryOperator", binaryOperators, anyToken, [isOptionEnabled("insertSpaceBeforeAndAfterBinaryOperators"), isNonJsxSameLineTokenContext, isBinaryOpContext], 4), rule("NoSpaceBeforeBinaryOperator", anyToken, binaryOperators, [isOptionDisabledOrUndefined("insertSpaceBeforeAndAfterBinaryOperators"), isNonJsxSameLineTokenContext, isBinaryOpContext], 16), rule("NoSpaceAfterBinaryOperator", binaryOperators, anyToken, [isOptionDisabledOrUndefined("insertSpaceBeforeAndAfterBinaryOperators"), isNonJsxSameLineTokenContext, isBinaryOpContext], 16), rule("SpaceBeforeOpenParenInFuncDecl", anyToken, 21, [isOptionEnabled("insertSpaceBeforeFunctionParenthesis"), isNonJsxSameLineTokenContext, isFunctionDeclContext], 4), rule("NoSpaceBeforeOpenParenInFuncDecl", anyToken, 21, [isOptionDisabledOrUndefined("insertSpaceBeforeFunctionParenthesis"), isNonJsxSameLineTokenContext, isFunctionDeclContext], 16), rule("NewLineBeforeOpenBraceInControl", controlOpenBraceLeftTokenRange, 19, [isOptionEnabled("placeOpenBraceOnNewLineForControlBlocks"), isControlDeclContext, isBeforeMultilineBlockContext], 8, 1), rule("NewLineBeforeOpenBraceInFunction", functionOpenBraceLeftTokenRange, 19, [isOptionEnabled("placeOpenBraceOnNewLineForFunctions"), isFunctionDeclContext, isBeforeMultilineBlockContext], 8, 1), rule("NewLineBeforeOpenBraceInTypeScriptDeclWithBlock", typeScriptOpenBraceLeftTokenRange, 19, [isOptionEnabled("placeOpenBraceOnNewLineForFunctions"), isTypeScriptDeclWithBlockContext, isBeforeMultilineBlockContext], 8, 1), rule("SpaceAfterTypeAssertion", 32, anyToken, [isOptionEnabled("insertSpaceAfterTypeAssertion"), isNonJsxSameLineTokenContext, isTypeAssertionContext], 4), rule("NoSpaceAfterTypeAssertion", 32, anyToken, [isOptionDisabledOrUndefined("insertSpaceAfterTypeAssertion"), isNonJsxSameLineTokenContext, isTypeAssertionContext], 16), rule("SpaceBeforeTypeAnnotation", anyToken, [58, 59], [isOptionEnabled("insertSpaceBeforeTypeAnnotation"), isNonJsxSameLineTokenContext, isTypeAnnotationContext], 4), rule("NoSpaceBeforeTypeAnnotation", anyToken, [58, 59], [isOptionDisabledOrUndefined("insertSpaceBeforeTypeAnnotation"), isNonJsxSameLineTokenContext, isTypeAnnotationContext], 16), rule("NoOptionalSemicolon", 27, anyTokenIncludingEOF, [optionEquals("semicolons", "remove"), isSemicolonDeletionContext], 32), rule("OptionalSemicolon", anyToken, anyTokenIncludingEOF, [optionEquals("semicolons", "insert"), isSemicolonInsertionContext], 64) ]; const lowPriorityCommonRules = [ rule("NoSpaceBeforeSemicolon", anyToken, 27, [isNonJsxSameLineTokenContext], 16), rule("SpaceBeforeOpenBraceInControl", controlOpenBraceLeftTokenRange, 19, [isOptionDisabledOrUndefinedOrTokensOnSameLine("placeOpenBraceOnNewLineForControlBlocks"), isControlDeclContext, isNotFormatOnEnter, isSameLineTokenOrBeforeBlockContext], 4, 1), rule("SpaceBeforeOpenBraceInFunction", functionOpenBraceLeftTokenRange, 19, [isOptionDisabledOrUndefinedOrTokensOnSameLine("placeOpenBraceOnNewLineForFunctions"), isFunctionDeclContext, isBeforeBlockContext, isNotFormatOnEnter, isSameLineTokenOrBeforeBlockContext], 4, 1), rule("SpaceBeforeOpenBraceInTypeScriptDeclWithBlock", typeScriptOpenBraceLeftTokenRange, 19, [isOptionDisabledOrUndefinedOrTokensOnSameLine("placeOpenBraceOnNewLineForFunctions"), isTypeScriptDeclWithBlockContext, isNotFormatOnEnter, isSameLineTokenOrBeforeBlockContext], 4, 1), rule("NoSpaceBeforeComma", anyToken, 28, [isNonJsxSameLineTokenContext], 16), rule("NoSpaceBeforeOpenBracket", anyTokenExcept(134, 84), 23, [isNonJsxSameLineTokenContext], 16), rule("NoSpaceAfterCloseBracket", 24, anyToken, [isNonJsxSameLineTokenContext, isNotBeforeBlockInFunctionDeclarationContext], 16), rule("SpaceAfterSemicolon", 27, anyToken, [isNonJsxSameLineTokenContext], 4), rule("SpaceBetweenForAndAwaitKeyword", 99, 135, [isNonJsxSameLineTokenContext], 4), rule("SpaceBetweenDotDotDotAndTypeName", 26, typeNames, [isNonJsxSameLineTokenContext], 16), rule("SpaceBetweenStatements", [22, 92, 93, 84], anyToken, [isNonJsxSameLineTokenContext, isNonJsxElementOrFragmentContext, isNotForContext], 4), rule("SpaceAfterTryCatchFinally", [113, 85, 98], 19, [isNonJsxSameLineTokenContext], 4) ]; return [ ...highPriorityCommonRules, ...userConfigurableRules, ...lowPriorityCommonRules ]; } function rule(debugName, left, right, context, action, flags = 0) { return { leftTokenRange: toTokenRange(left), rightTokenRange: toTokenRange(right), rule: { debugName, context, action, flags } }; } function tokenRangeFrom(tokens) { return { tokens, isSpecific: true }; } function toTokenRange(arg) { return typeof arg === "number" ? tokenRangeFrom([arg]) : isArray(arg) ? tokenRangeFrom(arg) : arg; } function tokenRangeFromRange(from, to, except = []) { const tokens = []; for (let token = from;token <= to; token++) { if (!contains(except, token)) { tokens.push(token); } } return tokenRangeFrom(tokens); } function optionEquals(optionName, optionValue) { return (context) => context.options && context.options[optionName] === optionValue; } function isOptionEnabled(optionName) { return (context) => context.options && hasProperty(context.options, optionName) && !!context.options[optionName]; } function isOptionDisabled(optionName) { return (context) => context.options && hasProperty(context.options, optionName) && !context.options[optionName]; } function isOptionDisabledOrUndefined(optionName) { return (context) => !context.options || !hasProperty(context.options, optionName) || !context.options[optionName]; } function isOptionDisabledOrUndefinedOrTokensOnSameLine(optionName) { return (context) => !context.options || !hasProperty(context.options, optionName) || !context.options[optionName] || context.TokensAreOnSameLine(); } function isOptionEnabledOrUndefined(optionName) { return (context) => !context.options || !hasProperty(context.options, optionName) || !!context.options[optionName]; } function isForContext(context) { return context.contextNode.kind === 249; } function isNotForContext(context) { return !isForContext(context); } function isBinaryOpContext(context) { switch (context.contextNode.kind) { case 227: return context.contextNode.operatorToken.kind !== 28; case 228: case 195: case 235: case 282: case 277: case 183: case 193: case 194: case 239: return true; case 209: case 266: case 272: case 278: case 261: case 170: case 307: case 173: case 172: return context.currentTokenSpan.kind === 64 || context.nextTokenSpan.kind === 64; case 250: case 169: return context.currentTokenSpan.kind === 103 || context.nextTokenSpan.kind === 103 || context.currentTokenSpan.kind === 64 || context.nextTokenSpan.kind === 64; case 251: return context.currentTokenSpan.kind === 165 || context.nextTokenSpan.kind === 165; } return false; } function isNotBinaryOpContext(context) { return !isBinaryOpContext(context); } function isNotTypeAnnotationContext(context) { return !isTypeAnnotationContext(context); } function isTypeAnnotationContext(context) { const contextKind = context.contextNode.kind; return contextKind === 173 || contextKind === 172 || contextKind === 170 || contextKind === 261 || isFunctionLikeKind(contextKind); } function isOptionalPropertyContext(context) { return isPropertyDeclaration(context.contextNode) && context.contextNode.questionToken; } function isNonOptionalPropertyContext(context) { return !isOptionalPropertyContext(context); } function isConditionalOperatorContext(context) { return context.contextNode.kind === 228 || context.contextNode.kind === 195; } function isSameLineTokenOrBeforeBlockContext(context) { return context.TokensAreOnSameLine() || isBeforeBlockContext(context); } function isBraceWrappedContext(context) { return context.contextNode.kind === 207 || context.contextNode.kind === 201 || isSingleLineBlockContext(context); } function isBeforeMultilineBlockContext(context) { return isBeforeBlockContext(context) && !(context.NextNodeAllOnSameLine() || context.NextNodeBlockIsOnOneLine()); } function isMultilineBlockContext(context) { return isBlockContext(context) && !(context.ContextNodeAllOnSameLine() || context.ContextNodeBlockIsOnOneLine()); } function isSingleLineBlockContext(context) { return isBlockContext(context) && (context.ContextNodeAllOnSameLine() || context.ContextNodeBlockIsOnOneLine()); } function isBlockContext(context) { return nodeIsBlockContext(context.contextNode); } function isBeforeBlockContext(context) { return nodeIsBlockContext(context.nextTokenParent); } function nodeIsBlockContext(node) { if (nodeIsTypeScriptDeclWithBlockContext(node)) { return true; } switch (node.kind) { case 242: case 270: case 211: case 269: return true; } return false; } function isFunctionDeclContext(context) { switch (context.contextNode.kind) { case 263: case 175: case 174: case 178: case 179: case 180: case 219: case 177: case 220: case 265: return true; } return false; } function isNotFunctionDeclContext(context) { return !isFunctionDeclContext(context); } function isFunctionDeclarationOrFunctionExpressionContext(context) { return context.contextNode.kind === 263 || context.contextNode.kind === 219; } function isTypeScriptDeclWithBlockContext(context) { return nodeIsTypeScriptDeclWithBlockContext(context.contextNode); } function nodeIsTypeScriptDeclWithBlockContext(node) { switch (node.kind) { case 264: case 232: case 265: case 267: case 188: case 268: case 279: case 280: case 273: case 276: return true; } return false; } function isAfterCodeBlockContext(context) { switch (context.currentTokenParent.kind) { case 264: case 268: case 267: case 300: case 269: case 256: return true; case 242: { const blockParent = context.currentTokenParent.parent; if (!blockParent || blockParent.kind !== 220 && blockParent.kind !== 219) { return true; } } } return false; } function isControlDeclContext(context) { switch (context.contextNode.kind) { case 246: case 256: case 249: case 250: case 251: case 248: case 259: case 247: case 255: case 300: return true; default: return false; } } function isObjectContext(context) { return context.contextNode.kind === 211; } function isFunctionCallContext(context) { return context.contextNode.kind === 214; } function isNewContext(context) { return context.contextNode.kind === 215; } function isFunctionCallOrNewContext(context) { return isFunctionCallContext(context) || isNewContext(context); } function isPreviousTokenNotComma(context) { return context.currentTokenSpan.kind !== 28; } function isNextTokenNotCloseBracket(context) { return context.nextTokenSpan.kind !== 24; } function isNextTokenNotCloseParen(context) { return context.nextTokenSpan.kind !== 22; } function isArrowFunctionContext(context) { return context.contextNode.kind === 220; } function isImportTypeContext(context) { return context.contextNode.kind === 206; } function isNonJsxSameLineTokenContext(context) { return context.TokensAreOnSameLine() && context.contextNode.kind !== 12; } function isNonJsxTextContext(context) { return context.contextNode.kind !== 12; } function isNonJsxElementOrFragmentContext(context) { return context.contextNode.kind !== 285 && context.contextNode.kind !== 289; } function isJsxExpressionContext(context) { return context.contextNode.kind === 295 || context.contextNode.kind === 294; } function isNextTokenParentJsxAttribute(context) { return context.nextTokenParent.kind === 292 || context.nextTokenParent.kind === 296 && context.nextTokenParent.parent.kind === 292; } function isJsxAttributeContext(context) { return context.contextNode.kind === 292; } function isNextTokenParentNotJsxNamespacedName(context) { return context.nextTokenParent.kind !== 296; } function isNextTokenParentJsxNamespacedName(context) { return context.nextTokenParent.kind === 296; } function isJsxSelfClosingElementContext(context) { return context.contextNode.kind === 286; } function isNotBeforeBlockInFunctionDeclarationContext(context) { return !isFunctionDeclContext(context) && !isBeforeBlockContext(context); } function isEndOfDecoratorContextOnSameLine(context) { return context.TokensAreOnSameLine() && hasDecorators(context.contextNode) && nodeIsInDecoratorContext(context.currentTokenParent) && !nodeIsInDecoratorContext(context.nextTokenParent); } function nodeIsInDecoratorContext(node) { while (node && isExpression(node)) { node = node.parent; } return node && node.kind === 171; } function isStartOfVariableDeclarationList(context) { return context.currentTokenParent.kind === 262 && context.currentTokenParent.getStart(context.sourceFile) === context.currentTokenSpan.pos; } function isNotFormatOnEnter(context) { return context.formattingRequestKind !== 2; } function isModuleDeclContext(context) { return context.contextNode.kind === 268; } function isObjectTypeContext(context) { return context.contextNode.kind === 188; } function isConstructorSignatureContext(context) { return context.contextNode.kind === 181; } function isTypeArgumentOrParameterOrAssertion(token, parent2) { if (token.kind !== 30 && token.kind !== 32) { return false; } switch (parent2.kind) { case 184: case 217: case 266: case 264: case 232: case 265: case 263: case 219: case 220: case 175: case 174: case 180: case 181: case 214: case 215: case 234: return true; default: return false; } } function isTypeArgumentOrParameterOrAssertionContext(context) { return isTypeArgumentOrParameterOrAssertion(context.currentTokenSpan, context.currentTokenParent) || isTypeArgumentOrParameterOrAssertion(context.nextTokenSpan, context.nextTokenParent); } function isTypeAssertionContext(context) { return context.contextNode.kind === 217; } function isNonTypeAssertionContext(context) { return !isTypeAssertionContext(context); } function isVoidOpContext(context) { return context.currentTokenSpan.kind === 116 && context.currentTokenParent.kind === 223; } function isYieldOrYieldStarWithOperand(context) { return context.contextNode.kind === 230 && context.contextNode.expression !== undefined; } function isNonNullAssertionContext(context) { return context.contextNode.kind === 236; } function isNotStatementConditionContext(context) { return !isStatementConditionContext(context); } function isStatementConditionContext(context) { switch (context.contextNode.kind) { case 246: case 249: case 250: case 251: case 247: case 248: return true; default: return false; } } function isSemicolonDeletionContext(context) { let nextTokenKind = context.nextTokenSpan.kind; let nextTokenStart = context.nextTokenSpan.pos; if (isTrivia(nextTokenKind)) { const nextRealToken = context.nextTokenParent === context.currentTokenParent ? findNextToken(context.currentTokenParent, findAncestor(context.currentTokenParent, (a) => !a.parent), context.sourceFile) : context.nextTokenParent.getFirstToken(context.sourceFile); if (!nextRealToken) { return true; } nextTokenKind = nextRealToken.kind; nextTokenStart = nextRealToken.getStart(context.sourceFile); } const startLine = context.sourceFile.getLineAndCharacterOfPosition(context.currentTokenSpan.pos).line; const endLine = context.sourceFile.getLineAndCharacterOfPosition(nextTokenStart).line; if (startLine === endLine) { return nextTokenKind === 20 || nextTokenKind === 1; } if (nextTokenKind === 27 && context.currentTokenSpan.kind === 27) { return true; } if (nextTokenKind === 241 || nextTokenKind === 27) { return false; } if (context.contextNode.kind === 265 || context.contextNode.kind === 266) { return !isPropertySignature(context.currentTokenParent) || !!context.currentTokenParent.type || nextTokenKind !== 21; } if (isPropertyDeclaration(context.currentTokenParent)) { return !context.currentTokenParent.initializer; } return context.currentTokenParent.kind !== 249 && context.currentTokenParent.kind !== 243 && context.currentTokenParent.kind !== 241 && nextTokenKind !== 23 && nextTokenKind !== 21 && nextTokenKind !== 40 && nextTokenKind !== 41 && nextTokenKind !== 44 && nextTokenKind !== 14 && nextTokenKind !== 28 && nextTokenKind !== 229 && nextTokenKind !== 16 && nextTokenKind !== 15 && nextTokenKind !== 25; } function isSemicolonInsertionContext(context) { return positionIsASICandidate(context.currentTokenSpan.end, context.currentTokenParent, context.sourceFile); } function isNotPropertyAccessOnIntegerLiteral(context) { return !isPropertyAccessExpression(context.contextNode) || !isNumericLiteral(context.contextNode.expression) || context.contextNode.expression.getText().includes("."); } function getFormatContext(options, host) { return { options, getRules: getRulesMap(), host }; } var rulesMapCache; function getRulesMap() { if (rulesMapCache === undefined) { rulesMapCache = createRulesMap(getAllRules()); } return rulesMapCache; } function getRuleActionExclusion(ruleAction) { let mask2 = 0; if (ruleAction & 1) { mask2 |= 28; } if (ruleAction & 2) { mask2 |= 96; } if (ruleAction & 28) { mask2 |= 28; } if (ruleAction & 96) { mask2 |= 96; } return mask2; } function createRulesMap(rules) { const map2 = buildMap(rules); return (context) => { const bucket = map2[getRuleBucketIndex(context.currentTokenSpan.kind, context.nextTokenSpan.kind)]; if (bucket) { const rules2 = []; let ruleActionMask = 0; for (const rule2 of bucket) { const acceptRuleActions = ~getRuleActionExclusion(ruleActionMask); if (rule2.action & acceptRuleActions && every(rule2.context, (c) => c(context))) { rules2.push(rule2); ruleActionMask |= rule2.action; } } if (rules2.length) { return rules2; } } }; } function buildMap(rules) { const map2 = new Array(mapRowLength * mapRowLength); const rulesBucketConstructionStateList = new Array(map2.length); for (const rule2 of rules) { const specificRule = rule2.leftTokenRange.isSpecific && rule2.rightTokenRange.isSpecific; for (const left of rule2.leftTokenRange.tokens) { for (const right of rule2.rightTokenRange.tokens) { const index = getRuleBucketIndex(left, right); let rulesBucket = map2[index]; if (rulesBucket === undefined) { rulesBucket = map2[index] = []; } addRule(rulesBucket, rule2.rule, specificRule, rulesBucketConstructionStateList, index); } } } return map2; } function getRuleBucketIndex(row, column) { Debug.assert(row <= 166 && column <= 166, "Must compute formatting context from tokens"); return row * mapRowLength + column; } var maskBitSize = 5; var mask = 31; var mapRowLength = 166 + 1; var RulesPosition = ((RulesPosition2) => { RulesPosition2[RulesPosition2["StopRulesSpecific"] = 0] = "StopRulesSpecific"; RulesPosition2[RulesPosition2["StopRulesAny"] = maskBitSize * 1] = "StopRulesAny"; RulesPosition2[RulesPosition2["ContextRulesSpecific"] = maskBitSize * 2] = "ContextRulesSpecific"; RulesPosition2[RulesPosition2["ContextRulesAny"] = maskBitSize * 3] = "ContextRulesAny"; RulesPosition2[RulesPosition2["NoContextRulesSpecific"] = maskBitSize * 4] = "NoContextRulesSpecific"; RulesPosition2[RulesPosition2["NoContextRulesAny"] = maskBitSize * 5] = "NoContextRulesAny"; return RulesPosition2; })(RulesPosition || {}); function addRule(rules, rule2, specificTokens, constructionState, rulesBucketIndex) { const position = rule2.action & 3 ? specificTokens ? 0 : RulesPosition.StopRulesAny : rule2.context !== anyContext ? specificTokens ? RulesPosition.ContextRulesSpecific : RulesPosition.ContextRulesAny : specificTokens ? RulesPosition.NoContextRulesSpecific : RulesPosition.NoContextRulesAny; const state = constructionState[rulesBucketIndex] || 0; rules.splice(getInsertionIndex(state, position), 0, rule2); constructionState[rulesBucketIndex] = increaseInsertionIndex(state, position); } function getInsertionIndex(indexBitmap, maskPosition) { let index = 0; for (let pos = 0;pos <= maskPosition; pos += maskBitSize) { index += indexBitmap & mask; indexBitmap >>= maskBitSize; } return index; } function increaseInsertionIndex(indexBitmap, maskPosition) { const value = (indexBitmap >> maskPosition & mask) + 1; Debug.assert((value & mask) === value, "Adding more rules into the sub-bucket than allowed. Maximum allowed is 32 rules."); return indexBitmap & ~(mask << maskPosition) | value << maskPosition; } function createTextRangeWithKind(pos, end, kind) { const textRangeWithKind = { pos, end, kind }; if (Debug.isDebugging) { Object.defineProperty(textRangeWithKind, "__debugKind", { get: () => Debug.formatSyntaxKind(kind) }); } return textRangeWithKind; } function formatOnEnter(position, sourceFile, formatContext) { const line = sourceFile.getLineAndCharacterOfPosition(position).line; if (line === 0) { return []; } let endOfFormatSpan = getEndLinePosition(line, sourceFile); while (isWhiteSpaceSingleLine(sourceFile.text.charCodeAt(endOfFormatSpan))) { endOfFormatSpan--; } if (isLineBreak(sourceFile.text.charCodeAt(endOfFormatSpan))) { endOfFormatSpan--; } const span = { pos: getStartPositionOfLine(line - 1, sourceFile), end: endOfFormatSpan + 1 }; return formatSpan(span, sourceFile, formatContext, 2); } function formatOnSemicolon(position, sourceFile, formatContext) { const semicolon = findImmediatelyPrecedingTokenOfKind(position, 27, sourceFile); return formatNodeLines(findOutermostNodeWithinListLevel(semicolon), sourceFile, formatContext, 3); } function formatOnOpeningCurly(position, sourceFile, formatContext) { const openingCurly = findImmediatelyPrecedingTokenOfKind(position, 19, sourceFile); if (!openingCurly) { return []; } const curlyBraceRange = openingCurly.parent; const outermostNode = findOutermostNodeWithinListLevel(curlyBraceRange); const textRange = { pos: getLineStartPositionForPosition(outermostNode.getStart(sourceFile), sourceFile), end: position }; return formatSpan(textRange, sourceFile, formatContext, 4); } function formatOnClosingCurly(position, sourceFile, formatContext) { const precedingToken = findImmediatelyPrecedingTokenOfKind(position, 20, sourceFile); return formatNodeLines(findOutermostNodeWithinListLevel(precedingToken), sourceFile, formatContext, 5); } function formatDocument(sourceFile, formatContext) { const span = { pos: 0, end: sourceFile.text.length }; return formatSpan(span, sourceFile, formatContext, 0); } function formatSelection(start, end, sourceFile, formatContext) { const span = { pos: getLineStartPositionForPosition(start, sourceFile), end }; return formatSpan(span, sourceFile, formatContext, 1); } function findImmediatelyPrecedingTokenOfKind(end, expectedTokenKind, sourceFile) { const precedingToken = findPrecedingToken(end, sourceFile); return precedingToken && precedingToken.kind === expectedTokenKind && end === precedingToken.getEnd() ? precedingToken : undefined; } function findOutermostNodeWithinListLevel(node) { let current = node; while (current && current.parent && current.parent.end === node.end && !isListElement(current.parent, current)) { current = current.parent; } return current; } function isListElement(parent2, node) { switch (parent2.kind) { case 264: case 265: return rangeContainsRange(parent2.members, node); case 268: const body = parent2.body; return !!body && body.kind === 269 && rangeContainsRange(body.statements, node); case 308: case 242: case 269: return rangeContainsRange(parent2.statements, node); case 300: return rangeContainsRange(parent2.block.statements, node); } return false; } function findEnclosingNode(range, sourceFile) { return find2(sourceFile); function find2(n) { const candidate = forEachChild(n, (c) => startEndContainsRange(c.getStart(sourceFile), c.end, range) && c); if (candidate) { const result = find2(candidate); if (result) { return result; } } return n; } } function prepareRangeContainsErrorFunction(errors, originalRange) { if (!errors.length) { return rangeHasNoErrors; } const sorted = errors.filter((d) => rangeOverlapsWithStartEnd(originalRange, d.start, d.start + d.length)).sort((e1, e2) => e1.start - e2.start); if (!sorted.length) { return rangeHasNoErrors; } let index = 0; return (r) => { while (true) { if (index >= sorted.length) { return false; } const error2 = sorted[index]; if (r.end <= error2.start) { return false; } if (startEndOverlapsWithStartEnd(r.pos, r.end, error2.start, error2.start + error2.length)) { return true; } index++; } }; function rangeHasNoErrors() { return false; } } function getScanStartPosition(enclosingNode, originalRange, sourceFile) { const start = enclosingNode.getStart(sourceFile); if (start === originalRange.pos && enclosingNode.end === originalRange.end) { return start; } const precedingToken = findPrecedingToken(originalRange.pos, sourceFile); if (!precedingToken) { return enclosingNode.pos; } if (precedingToken.end >= originalRange.pos) { return enclosingNode.pos; } return precedingToken.end; } function getOwnOrInheritedDelta(n, options, sourceFile) { let previousLine = -1; let child; while (n) { const line = sourceFile.getLineAndCharacterOfPosition(n.getStart(sourceFile)).line; if (previousLine !== -1 && line !== previousLine) { break; } if (SmartIndenter.shouldIndentChildNode(options, n, child, sourceFile)) { return options.indentSize; } previousLine = line; child = n; n = n.parent; } return 0; } function formatNodeGivenIndentation(node, sourceFileLike, languageVariant, initialIndentation, delta, formatContext) { const range = { pos: node.pos, end: node.end }; return getFormattingScanner(sourceFileLike.text, languageVariant, range.pos, range.end, (scanner2) => formatSpanWorker(range, node, initialIndentation, delta, scanner2, formatContext, 1, (_) => false, sourceFileLike)); } function formatNodeLines(node, sourceFile, formatContext, requestKind) { if (!node) { return []; } const span = { pos: getLineStartPositionForPosition(node.getStart(sourceFile), sourceFile), end: node.end }; return formatSpan(span, sourceFile, formatContext, requestKind); } function formatSpan(originalRange, sourceFile, formatContext, requestKind) { const enclosingNode = findEnclosingNode(originalRange, sourceFile); return getFormattingScanner(sourceFile.text, sourceFile.languageVariant, getScanStartPosition(enclosingNode, originalRange, sourceFile), originalRange.end, (scanner2) => formatSpanWorker(originalRange, enclosingNode, SmartIndenter.getIndentationForNode(enclosingNode, originalRange, sourceFile, formatContext.options), getOwnOrInheritedDelta(enclosingNode, formatContext.options, sourceFile), scanner2, formatContext, requestKind, prepareRangeContainsErrorFunction(sourceFile.parseDiagnostics, originalRange), sourceFile)); } function formatSpanWorker(originalRange, enclosingNode, initialIndentation, delta, formattingScanner, { options, getRules, host }, requestKind, rangeContainsError, sourceFile) { var _a; const formattingContext = new FormattingContext(sourceFile, requestKind, options); let previousRangeTriviaEnd; let previousRange; let previousParent; let previousRangeStartLine; let lastIndentedLine; let indentationOnLastIndentedLine = -1; const edits = []; formattingScanner.advance(); if (formattingScanner.isOnToken()) { const startLine = sourceFile.getLineAndCharacterOfPosition(enclosingNode.getStart(sourceFile)).line; let undecoratedStartLine = startLine; if (hasDecorators(enclosingNode)) { undecoratedStartLine = sourceFile.getLineAndCharacterOfPosition(getNonDecoratorTokenPosOfNode(enclosingNode, sourceFile)).line; } processNode(enclosingNode, enclosingNode, startLine, undecoratedStartLine, initialIndentation, delta); } const remainingTrivia = formattingScanner.getCurrentLeadingTrivia(); if (remainingTrivia) { const indentation = SmartIndenter.nodeWillIndentChild(options, enclosingNode, undefined, sourceFile, false) ? initialIndentation + options.indentSize : initialIndentation; indentTriviaItems(remainingTrivia, indentation, true, (item) => { processRange(item, sourceFile.getLineAndCharacterOfPosition(item.pos), enclosingNode, enclosingNode, undefined); insertIndentation(item.pos, indentation, false); }); if (options.trimTrailingWhitespace !== false) { trimTrailingWhitespacesForRemainingRange(remainingTrivia); } } if (previousRange && formattingScanner.getTokenFullStart() >= originalRange.end) { const tokenInfo = formattingScanner.isOnEOF() ? formattingScanner.readEOFTokenRange() : formattingScanner.isOnToken() ? formattingScanner.readTokenInfo(enclosingNode).token : undefined; if (tokenInfo && tokenInfo.pos === previousRangeTriviaEnd) { const parent2 = ((_a = findPrecedingToken(tokenInfo.end, sourceFile, enclosingNode)) == null ? undefined : _a.parent) || previousParent; processPair(tokenInfo, sourceFile.getLineAndCharacterOfPosition(tokenInfo.pos).line, parent2, previousRange, previousRangeStartLine, previousParent, parent2, undefined); } } return edits; function tryComputeIndentationForListItem(startPos, endPos, parentStartLine, range, inheritedIndentation) { if (rangeOverlapsWithStartEnd(range, startPos, endPos) || rangeContainsStartEnd(range, startPos, endPos)) { if (inheritedIndentation !== -1) { return inheritedIndentation; } } else { const startLine = sourceFile.getLineAndCharacterOfPosition(startPos).line; const startLinePosition = getLineStartPositionForPosition(startPos, sourceFile); const column = SmartIndenter.findFirstNonWhitespaceColumn(startLinePosition, startPos, sourceFile, options); if (startLine !== parentStartLine || startPos === column) { const baseIndentSize = SmartIndenter.getBaseIndentation(options); return baseIndentSize > column ? baseIndentSize : column; } } return -1; } function computeIndentation(node, startLine, inheritedIndentation, parent2, parentDynamicIndentation, effectiveParentStartLine) { const delta2 = SmartIndenter.shouldIndentChildNode(options, node) ? options.indentSize : 0; if (effectiveParentStartLine === startLine) { return { indentation: startLine === lastIndentedLine ? indentationOnLastIndentedLine : parentDynamicIndentation.getIndentation(), delta: Math.min(options.indentSize, parentDynamicIndentation.getDelta(node) + delta2) }; } else if (inheritedIndentation === -1) { if (node.kind === 21 && startLine === lastIndentedLine) { return { indentation: indentationOnLastIndentedLine, delta: parentDynamicIndentation.getDelta(node) }; } else if (SmartIndenter.childStartsOnTheSameLineWithElseInIfStatement(parent2, node, startLine, sourceFile) || SmartIndenter.childIsUnindentedBranchOfConditionalExpression(parent2, node, startLine, sourceFile) || SmartIndenter.argumentStartsOnSameLineAsPreviousArgument(parent2, node, startLine, sourceFile)) { return { indentation: parentDynamicIndentation.getIndentation(), delta: delta2 }; } else { return { indentation: parentDynamicIndentation.getIndentation() + parentDynamicIndentation.getDelta(node), delta: delta2 }; } } else { return { indentation: inheritedIndentation, delta: delta2 }; } } function getFirstNonDecoratorTokenOfNode(node) { if (canHaveModifiers(node)) { const modifier = find(node.modifiers, isModifier, findIndex(node.modifiers, isDecorator)); if (modifier) return modifier.kind; } switch (node.kind) { case 264: return 86; case 265: return 120; case 263: return 100; case 267: return 267; case 178: return 139; case 179: return 153; case 175: if (node.asteriskToken) { return 42; } case 173: case 170: const name = getNameOfDeclaration(node); if (name) { return name.kind; } } } function getDynamicIndentation(node, nodeStartLine, indentation, delta2) { return { getIndentationForComment: (kind, tokenIndentation, container) => { switch (kind) { case 20: case 24: case 22: return indentation + getDelta(container); } return tokenIndentation !== -1 ? tokenIndentation : indentation; }, getIndentationForToken: (line, kind, container, suppressDelta) => !suppressDelta && shouldAddDelta(line, kind, container) ? indentation + getDelta(container) : indentation, getIndentation: () => indentation, getDelta, recomputeIndentation: (lineAdded, parent2) => { if (SmartIndenter.shouldIndentChildNode(options, parent2, node, sourceFile)) { indentation += lineAdded ? options.indentSize : -options.indentSize; delta2 = SmartIndenter.shouldIndentChildNode(options, node) ? options.indentSize : 0; } } }; function shouldAddDelta(line, kind, container) { switch (kind) { case 19: case 20: case 22: case 93: case 117: case 60: return false; case 44: case 32: switch (container.kind) { case 287: case 288: case 286: return false; } break; case 23: case 24: if (container.kind !== 201) { return false; } break; } return nodeStartLine !== line && !(hasDecorators(node) && kind === getFirstNonDecoratorTokenOfNode(node)); } function getDelta(child) { return SmartIndenter.nodeWillIndentChild(options, node, child, sourceFile, true) ? delta2 : 0; } } function processNode(node, contextNode, nodeStartLine, undecoratedNodeStartLine, indentation, delta2) { if (!rangeOverlapsWithStartEnd(originalRange, node.getStart(sourceFile), node.getEnd())) { return; } const nodeDynamicIndentation = getDynamicIndentation(node, nodeStartLine, indentation, delta2); let childContextNode = contextNode; forEachChild(node, (child) => { processChildNode(child, -1, node, nodeDynamicIndentation, nodeStartLine, undecoratedNodeStartLine, false); }, (nodes) => { processChildNodes(nodes, node, nodeStartLine, nodeDynamicIndentation); }); while (formattingScanner.isOnToken() && formattingScanner.getTokenFullStart() < originalRange.end) { const tokenInfo = formattingScanner.readTokenInfo(node); if (tokenInfo.token.end > Math.min(node.end, originalRange.end)) { break; } consumeTokenAndAdvanceScanner(tokenInfo, node, nodeDynamicIndentation, node); } function processChildNode(child, inheritedIndentation, parent2, parentDynamicIndentation, parentStartLine, undecoratedParentStartLine, isListItem, isFirstListItem) { Debug.assert(!nodeIsSynthesized(child)); if (nodeIsMissing(child) || isGrammarError(parent2, child)) { return inheritedIndentation; } const childStartPos = child.getStart(sourceFile); const childStartLine = sourceFile.getLineAndCharacterOfPosition(childStartPos).line; let undecoratedChildStartLine = childStartLine; if (hasDecorators(child)) { undecoratedChildStartLine = sourceFile.getLineAndCharacterOfPosition(getNonDecoratorTokenPosOfNode(child, sourceFile)).line; } let childIndentationAmount = -1; if (isListItem && rangeContainsRange(originalRange, parent2)) { childIndentationAmount = tryComputeIndentationForListItem(childStartPos, child.end, parentStartLine, originalRange, inheritedIndentation); if (childIndentationAmount !== -1) { inheritedIndentation = childIndentationAmount; } } if (!rangeOverlapsWithStartEnd(originalRange, child.pos, child.end)) { if (child.end < originalRange.pos) { formattingScanner.skipToEndOf(child); } return inheritedIndentation; } if (child.getFullWidth() === 0) { return inheritedIndentation; } while (formattingScanner.isOnToken() && formattingScanner.getTokenFullStart() < originalRange.end) { const tokenInfo = formattingScanner.readTokenInfo(node); if (tokenInfo.token.end > originalRange.end) { return inheritedIndentation; } if (tokenInfo.token.end > childStartPos) { if (tokenInfo.token.pos > childStartPos) { formattingScanner.skipToStartOf(child); } break; } consumeTokenAndAdvanceScanner(tokenInfo, node, parentDynamicIndentation, node); } if (!formattingScanner.isOnToken() || formattingScanner.getTokenFullStart() >= originalRange.end) { return inheritedIndentation; } if (isToken(child)) { const tokenInfo = formattingScanner.readTokenInfo(child); if (child.kind !== 12) { Debug.assert(tokenInfo.token.end === child.end, "Token end is child end"); consumeTokenAndAdvanceScanner(tokenInfo, node, parentDynamicIndentation, child); return inheritedIndentation; } } const effectiveParentStartLine = child.kind === 171 ? childStartLine : undecoratedParentStartLine; const childIndentation = computeIndentation(child, childStartLine, childIndentationAmount, node, parentDynamicIndentation, effectiveParentStartLine); processNode(child, childContextNode, childStartLine, undecoratedChildStartLine, childIndentation.indentation, childIndentation.delta); childContextNode = node; if (isFirstListItem && parent2.kind === 210 && inheritedIndentation === -1) { inheritedIndentation = childIndentation.indentation; } return inheritedIndentation; } function processChildNodes(nodes, parent2, parentStartLine, parentDynamicIndentation) { Debug.assert(isNodeArray(nodes)); Debug.assert(!nodeIsSynthesized(nodes)); const listStartToken = getOpenTokenForList(parent2, nodes); let listDynamicIndentation = parentDynamicIndentation; let startLine = parentStartLine; if (!rangeOverlapsWithStartEnd(originalRange, nodes.pos, nodes.end)) { if (nodes.end < originalRange.pos) { formattingScanner.skipToEndOf(nodes); } return; } if (listStartToken !== 0) { while (formattingScanner.isOnToken() && formattingScanner.getTokenFullStart() < originalRange.end) { const tokenInfo = formattingScanner.readTokenInfo(parent2); if (tokenInfo.token.end > nodes.pos) { break; } else if (tokenInfo.token.kind === listStartToken) { startLine = sourceFile.getLineAndCharacterOfPosition(tokenInfo.token.pos).line; consumeTokenAndAdvanceScanner(tokenInfo, parent2, parentDynamicIndentation, parent2); let indentationOnListStartToken; if (indentationOnLastIndentedLine !== -1) { indentationOnListStartToken = indentationOnLastIndentedLine; } else { const startLinePosition = getLineStartPositionForPosition(tokenInfo.token.pos, sourceFile); indentationOnListStartToken = SmartIndenter.findFirstNonWhitespaceColumn(startLinePosition, tokenInfo.token.pos, sourceFile, options); } listDynamicIndentation = getDynamicIndentation(parent2, parentStartLine, indentationOnListStartToken, options.indentSize); } else { consumeTokenAndAdvanceScanner(tokenInfo, parent2, parentDynamicIndentation, parent2); } } } let inheritedIndentation = -1; for (let i = 0;i < nodes.length; i++) { const child = nodes[i]; inheritedIndentation = processChildNode(child, inheritedIndentation, node, listDynamicIndentation, startLine, startLine, true, i === 0); } const listEndToken = getCloseTokenForOpenToken(listStartToken); if (listEndToken !== 0 && formattingScanner.isOnToken() && formattingScanner.getTokenFullStart() < originalRange.end) { let tokenInfo = formattingScanner.readTokenInfo(parent2); if (tokenInfo.token.kind === 28) { consumeTokenAndAdvanceScanner(tokenInfo, parent2, listDynamicIndentation, parent2); tokenInfo = formattingScanner.isOnToken() ? formattingScanner.readTokenInfo(parent2) : undefined; } if (tokenInfo && tokenInfo.token.kind === listEndToken && rangeContainsRange(parent2, tokenInfo.token)) { consumeTokenAndAdvanceScanner(tokenInfo, parent2, listDynamicIndentation, parent2, true); } } } function consumeTokenAndAdvanceScanner(currentTokenInfo, parent2, dynamicIndentation, container, isListEndToken) { Debug.assert(rangeContainsRange(parent2, currentTokenInfo.token)); const lastTriviaWasNewLine = formattingScanner.lastTrailingTriviaWasNewLine(); let indentToken = false; if (currentTokenInfo.leadingTrivia) { processTrivia(currentTokenInfo.leadingTrivia, parent2, childContextNode, dynamicIndentation); } let lineAction = 0; const isTokenInRange = rangeContainsRange(originalRange, currentTokenInfo.token); const tokenStart = sourceFile.getLineAndCharacterOfPosition(currentTokenInfo.token.pos); if (isTokenInRange) { const rangeHasError = rangeContainsError(currentTokenInfo.token); const savePreviousRange = previousRange; lineAction = processRange(currentTokenInfo.token, tokenStart, parent2, childContextNode, dynamicIndentation); if (!rangeHasError) { if (lineAction === 0) { const prevEndLine = savePreviousRange && sourceFile.getLineAndCharacterOfPosition(savePreviousRange.end).line; indentToken = lastTriviaWasNewLine && tokenStart.line !== prevEndLine; } else { indentToken = lineAction === 1; } } } if (currentTokenInfo.trailingTrivia) { previousRangeTriviaEnd = last(currentTokenInfo.trailingTrivia).end; processTrivia(currentTokenInfo.trailingTrivia, parent2, childContextNode, dynamicIndentation); } if (indentToken) { const tokenIndentation = isTokenInRange && !rangeContainsError(currentTokenInfo.token) ? dynamicIndentation.getIndentationForToken(tokenStart.line, currentTokenInfo.token.kind, container, !!isListEndToken) : -1; let indentNextTokenOrTrivia = true; if (currentTokenInfo.leadingTrivia) { const commentIndentation = dynamicIndentation.getIndentationForComment(currentTokenInfo.token.kind, tokenIndentation, container); indentNextTokenOrTrivia = indentTriviaItems(currentTokenInfo.leadingTrivia, commentIndentation, indentNextTokenOrTrivia, (item) => insertIndentation(item.pos, commentIndentation, false)); } if (tokenIndentation !== -1 && indentNextTokenOrTrivia) { insertIndentation(currentTokenInfo.token.pos, tokenIndentation, lineAction === 1); lastIndentedLine = tokenStart.line; indentationOnLastIndentedLine = tokenIndentation; } } formattingScanner.advance(); childContextNode = parent2; } } function indentTriviaItems(trivia, commentIndentation, indentNextTokenOrTrivia, indentSingleLine) { for (const triviaItem of trivia) { const triviaInRange = rangeContainsRange(originalRange, triviaItem); switch (triviaItem.kind) { case 3: if (triviaInRange) { indentMultilineComment(triviaItem, commentIndentation, !indentNextTokenOrTrivia); } indentNextTokenOrTrivia = false; break; case 2: if (indentNextTokenOrTrivia && triviaInRange) { indentSingleLine(triviaItem); } indentNextTokenOrTrivia = false; break; case 4: indentNextTokenOrTrivia = true; break; } } return indentNextTokenOrTrivia; } function processTrivia(trivia, parent2, contextNode, dynamicIndentation) { for (const triviaItem of trivia) { if (isComment(triviaItem.kind) && rangeContainsRange(originalRange, triviaItem)) { const triviaItemStart = sourceFile.getLineAndCharacterOfPosition(triviaItem.pos); processRange(triviaItem, triviaItemStart, parent2, contextNode, dynamicIndentation); } } } function processRange(range, rangeStart, parent2, contextNode, dynamicIndentation) { const rangeHasError = rangeContainsError(range); let lineAction = 0; if (!rangeHasError) { if (!previousRange) { const originalStart = sourceFile.getLineAndCharacterOfPosition(originalRange.pos); trimTrailingWhitespacesForLines(originalStart.line, rangeStart.line); } else { lineAction = processPair(range, rangeStart.line, parent2, previousRange, previousRangeStartLine, previousParent, contextNode, dynamicIndentation); } } previousRange = range; previousRangeTriviaEnd = range.end; previousParent = parent2; previousRangeStartLine = rangeStart.line; return lineAction; } function processPair(currentItem, currentStartLine, currentParent, previousItem, previousStartLine, previousParent2, contextNode, dynamicIndentation) { formattingContext.updateContext(previousItem, previousParent2, currentItem, currentParent, contextNode); const rules = getRules(formattingContext); let trimTrailingWhitespaces = formattingContext.options.trimTrailingWhitespace !== false; let lineAction = 0; if (rules) { forEachRight(rules, (rule2) => { lineAction = applyRuleEdits(rule2, previousItem, previousStartLine, currentItem, currentStartLine); if (dynamicIndentation) { switch (lineAction) { case 2: if (currentParent.getStart(sourceFile) === currentItem.pos) { dynamicIndentation.recomputeIndentation(false, contextNode); } break; case 1: if (currentParent.getStart(sourceFile) === currentItem.pos) { dynamicIndentation.recomputeIndentation(true, contextNode); } break; default: Debug.assert(lineAction === 0); } } trimTrailingWhitespaces = trimTrailingWhitespaces && !(rule2.action & 16) && rule2.flags !== 1; }); } else { trimTrailingWhitespaces = trimTrailingWhitespaces && currentItem.kind !== 1; } if (currentStartLine !== previousStartLine && trimTrailingWhitespaces) { trimTrailingWhitespacesForLines(previousStartLine, currentStartLine, previousItem); } return lineAction; } function insertIndentation(pos, indentation, lineAdded) { const indentationString = getIndentationString(indentation, options); if (lineAdded) { recordReplace(pos, 0, indentationString); } else { const tokenStart = sourceFile.getLineAndCharacterOfPosition(pos); const startLinePosition = getStartPositionOfLine(tokenStart.line, sourceFile); if (indentation !== characterToColumn(startLinePosition, tokenStart.character) || indentationIsDifferent(indentationString, startLinePosition)) { recordReplace(startLinePosition, tokenStart.character, indentationString); } } } function characterToColumn(startLinePosition, characterInLine) { let column = 0; for (let i = 0;i < characterInLine; i++) { if (sourceFile.text.charCodeAt(startLinePosition + i) === 9) { column += options.tabSize - column % options.tabSize; } else { column++; } } return column; } function indentationIsDifferent(indentationString, startLinePosition) { return indentationString !== sourceFile.text.substr(startLinePosition, indentationString.length); } function indentMultilineComment(commentRange, indentation, firstLineIsIndented, indentFinalLine = true) { let startLine = sourceFile.getLineAndCharacterOfPosition(commentRange.pos).line; const endLine = sourceFile.getLineAndCharacterOfPosition(commentRange.end).line; if (startLine === endLine) { if (!firstLineIsIndented) { insertIndentation(commentRange.pos, indentation, false); } return; } const parts = []; let startPos = commentRange.pos; for (let line = startLine;line < endLine; line++) { const endOfLine = getEndLinePosition(line, sourceFile); parts.push({ pos: startPos, end: endOfLine }); startPos = getStartPositionOfLine(line + 1, sourceFile); } if (indentFinalLine) { parts.push({ pos: startPos, end: commentRange.end }); } if (parts.length === 0) return; const startLinePos = getStartPositionOfLine(startLine, sourceFile); const nonWhitespaceColumnInFirstPart = SmartIndenter.findFirstNonWhitespaceCharacterAndColumn(startLinePos, parts[0].pos, sourceFile, options); let startIndex = 0; if (firstLineIsIndented) { startIndex = 1; startLine++; } const delta2 = indentation - nonWhitespaceColumnInFirstPart.column; for (let i = startIndex;i < parts.length; i++, startLine++) { const startLinePos2 = getStartPositionOfLine(startLine, sourceFile); const nonWhitespaceCharacterAndColumn = i === 0 ? nonWhitespaceColumnInFirstPart : SmartIndenter.findFirstNonWhitespaceCharacterAndColumn(parts[i].pos, parts[i].end, sourceFile, options); const newIndentation = nonWhitespaceCharacterAndColumn.column + delta2; if (newIndentation > 0) { const indentationString = getIndentationString(newIndentation, options); recordReplace(startLinePos2, nonWhitespaceCharacterAndColumn.character, indentationString); } else { recordDelete(startLinePos2, nonWhitespaceCharacterAndColumn.character); } } } function trimTrailingWhitespacesForLines(line1, line2, range) { for (let line = line1;line < line2; line++) { const lineStartPosition = getStartPositionOfLine(line, sourceFile); const lineEndPosition = getEndLinePosition(line, sourceFile); if (range && (isComment(range.kind) || isStringOrRegularExpressionOrTemplateLiteral(range.kind)) && range.pos <= lineEndPosition && range.end > lineEndPosition) { continue; } const whitespaceStart = getTrailingWhitespaceStartPosition(lineStartPosition, lineEndPosition); if (whitespaceStart !== -1) { Debug.assert(whitespaceStart === lineStartPosition || !isWhiteSpaceSingleLine(sourceFile.text.charCodeAt(whitespaceStart - 1))); recordDelete(whitespaceStart, lineEndPosition + 1 - whitespaceStart); } } } function getTrailingWhitespaceStartPosition(start, end) { let pos = end; while (pos >= start && isWhiteSpaceSingleLine(sourceFile.text.charCodeAt(pos))) { pos--; } if (pos !== end) { return pos + 1; } return -1; } function trimTrailingWhitespacesForRemainingRange(trivias) { let startPos = previousRange ? previousRange.end : originalRange.pos; for (const trivia of trivias) { if (isComment(trivia.kind)) { if (startPos < trivia.pos) { trimTrailingWitespacesForPositions(startPos, trivia.pos - 1, previousRange); } startPos = trivia.end + 1; } } if (startPos < originalRange.end) { trimTrailingWitespacesForPositions(startPos, originalRange.end, previousRange); } } function trimTrailingWitespacesForPositions(startPos, endPos, previousRange2) { const startLine = sourceFile.getLineAndCharacterOfPosition(startPos).line; const endLine = sourceFile.getLineAndCharacterOfPosition(endPos).line; trimTrailingWhitespacesForLines(startLine, endLine + 1, previousRange2); } function recordDelete(start, len) { if (len) { edits.push(createTextChangeFromStartLength(start, len, "")); } } function recordReplace(start, len, newText) { if (len || newText) { edits.push(createTextChangeFromStartLength(start, len, newText)); } } function recordInsert(start, text) { if (text) { edits.push(createTextChangeFromStartLength(start, 0, text)); } } function applyRuleEdits(rule2, previousRange2, previousStartLine, currentRange, currentStartLine) { const onLaterLine = currentStartLine !== previousStartLine; switch (rule2.action) { case 1: return 0; case 16: if (previousRange2.end !== currentRange.pos) { recordDelete(previousRange2.end, currentRange.pos - previousRange2.end); return onLaterLine ? 2 : 0; } break; case 32: recordDelete(previousRange2.pos, previousRange2.end - previousRange2.pos); break; case 8: if (rule2.flags !== 1 && previousStartLine !== currentStartLine) { return 0; } const lineDelta = currentStartLine - previousStartLine; if (lineDelta !== 1) { recordReplace(previousRange2.end, currentRange.pos - previousRange2.end, getNewLineOrDefaultFromHost(host, options)); return onLaterLine ? 0 : 1; } break; case 4: if (rule2.flags !== 1 && previousStartLine !== currentStartLine) { return 0; } const posDelta = currentRange.pos - previousRange2.end; if (posDelta !== 1 || sourceFile.text.charCodeAt(previousRange2.end) !== 32) { recordReplace(previousRange2.end, currentRange.pos - previousRange2.end, " "); return onLaterLine ? 2 : 0; } break; case 64: recordInsert(previousRange2.end, ";"); } return 0; } } function getRangeOfEnclosingComment(sourceFile, position, precedingToken, tokenAtPosition = getTokenAtPosition(sourceFile, position)) { const jsdoc = findAncestor(tokenAtPosition, isJSDoc); if (jsdoc) tokenAtPosition = jsdoc.parent; const tokenStart = tokenAtPosition.getStart(sourceFile); if (tokenStart <= position && position < tokenAtPosition.getEnd()) { return; } precedingToken = precedingToken === null ? undefined : precedingToken === undefined ? findPrecedingToken(position, sourceFile) : precedingToken; const trailingRangesOfPreviousToken = precedingToken && getTrailingCommentRanges(sourceFile.text, precedingToken.end); const leadingCommentRangesOfNextToken = getLeadingCommentRangesOfNode(tokenAtPosition, sourceFile); const commentRanges = concatenate(trailingRangesOfPreviousToken, leadingCommentRangesOfNextToken); return commentRanges && find(commentRanges, (range) => rangeContainsPositionExclusive(range, position) || position === range.end && (range.kind === 2 || position === sourceFile.getFullWidth())); } function getOpenTokenForList(node, list) { switch (node.kind) { case 177: case 263: case 219: case 175: case 174: case 220: case 180: case 181: case 185: case 186: case 178: case 179: if (node.typeParameters === list) { return 30; } else if (node.parameters === list) { return 21; } break; case 214: case 215: if (node.typeArguments === list) { return 30; } else if (node.arguments === list) { return 21; } break; case 264: case 232: case 265: case 266: if (node.typeParameters === list) { return 30; } break; case 184: case 216: case 187: case 234: case 206: if (node.typeArguments === list) { return 30; } break; case 188: return 19; } return 0; } function getCloseTokenForOpenToken(kind) { switch (kind) { case 21: return 22; case 30: return 32; case 19: return 20; } return 0; } var internedSizes; var internedTabsIndentation; var internedSpacesIndentation; function getIndentationString(indentation, options) { const resetInternedStrings = !internedSizes || (internedSizes.tabSize !== options.tabSize || internedSizes.indentSize !== options.indentSize); if (resetInternedStrings) { internedSizes = { tabSize: options.tabSize, indentSize: options.indentSize }; internedTabsIndentation = internedSpacesIndentation = undefined; } if (!options.convertTabsToSpaces) { const tabs = Math.floor(indentation / options.tabSize); const spaces = indentation - tabs * options.tabSize; let tabString; if (!internedTabsIndentation) { internedTabsIndentation = []; } if (internedTabsIndentation[tabs] === undefined) { internedTabsIndentation[tabs] = tabString = repeatString("\t", tabs); } else { tabString = internedTabsIndentation[tabs]; } return spaces ? tabString + repeatString(" ", spaces) : tabString; } else { let spacesString; const quotient = Math.floor(indentation / options.indentSize); const remainder = indentation % options.indentSize; if (!internedSpacesIndentation) { internedSpacesIndentation = []; } if (internedSpacesIndentation[quotient] === undefined) { spacesString = repeatString(" ", options.indentSize * quotient); internedSpacesIndentation[quotient] = spacesString; } else { spacesString = internedSpacesIndentation[quotient]; } return remainder ? spacesString + repeatString(" ", remainder) : spacesString; } } var SmartIndenter; ((SmartIndenter2) => { let Value; ((Value2) => { Value2[Value2["Unknown"] = -1] = "Unknown"; })(Value || (Value = {})); function getIndentation(position, sourceFile, options, assumeNewLineBeforeCloseBrace = false) { if (position > sourceFile.text.length) { return getBaseIndentation(options); } if (options.indentStyle === 0) { return 0; } const precedingToken = findPrecedingToken(position, sourceFile, undefined, true); const enclosingCommentRange = getRangeOfEnclosingComment(sourceFile, position, precedingToken || null); if (enclosingCommentRange && enclosingCommentRange.kind === 3) { return getCommentIndent(sourceFile, position, options, enclosingCommentRange); } if (!precedingToken) { return getBaseIndentation(options); } const precedingTokenIsLiteral = isStringOrRegularExpressionOrTemplateLiteral(precedingToken.kind); if (precedingTokenIsLiteral && precedingToken.getStart(sourceFile) <= position && position < precedingToken.end) { return 0; } const lineAtPosition = sourceFile.getLineAndCharacterOfPosition(position).line; const currentToken = getTokenAtPosition(sourceFile, position); const isObjectLiteral = currentToken.kind === 19 && currentToken.parent.kind === 211; if (options.indentStyle === 1 || isObjectLiteral) { return getBlockIndent(sourceFile, position, options); } if (precedingToken.kind === 28 && precedingToken.parent.kind !== 227) { const actualIndentation = getActualIndentationForListItemBeforeComma(precedingToken, sourceFile, options); if (actualIndentation !== -1) { return actualIndentation; } } const containerList = getListByPosition(position, precedingToken.parent, sourceFile); if (containerList && !rangeContainsRange(containerList, precedingToken)) { const useTheSameBaseIndentation = [219, 220].includes(currentToken.parent.kind); const indentSize = useTheSameBaseIndentation ? 0 : options.indentSize; return getActualIndentationForListStartLine(containerList, sourceFile, options) + indentSize; } return getSmartIndent(sourceFile, position, precedingToken, lineAtPosition, assumeNewLineBeforeCloseBrace, options); } SmartIndenter2.getIndentation = getIndentation; function getCommentIndent(sourceFile, position, options, enclosingCommentRange) { const previousLine = getLineAndCharacterOfPosition(sourceFile, position).line - 1; const commentStartLine = getLineAndCharacterOfPosition(sourceFile, enclosingCommentRange.pos).line; Debug.assert(commentStartLine >= 0); if (previousLine <= commentStartLine) { return findFirstNonWhitespaceColumn(getStartPositionOfLine(commentStartLine, sourceFile), position, sourceFile, options); } const startPositionOfLine = getStartPositionOfLine(previousLine, sourceFile); const { column, character } = findFirstNonWhitespaceCharacterAndColumn(startPositionOfLine, position, sourceFile, options); if (column === 0) { return column; } const firstNonWhitespaceCharacterCode = sourceFile.text.charCodeAt(startPositionOfLine + character); return firstNonWhitespaceCharacterCode === 42 ? column - 1 : column; } function getBlockIndent(sourceFile, position, options) { let current = position; while (current > 0) { const char = sourceFile.text.charCodeAt(current); if (!isWhiteSpaceLike(char)) { break; } current--; } const lineStart = getLineStartPositionForPosition(current, sourceFile); return findFirstNonWhitespaceColumn(lineStart, current, sourceFile, options); } function getSmartIndent(sourceFile, position, precedingToken, lineAtPosition, assumeNewLineBeforeCloseBrace, options) { let previous; let current = precedingToken; while (current) { if (positionBelongsToNode(current, position, sourceFile) && shouldIndentChildNode(options, current, previous, sourceFile, true)) { const currentStart = getStartLineAndCharacterForNode(current, sourceFile); const nextTokenKind = nextTokenIsCurlyBraceOnSameLineAsCursor(precedingToken, current, lineAtPosition, sourceFile); const indentationDelta = nextTokenKind !== 0 ? assumeNewLineBeforeCloseBrace && nextTokenKind === 2 ? options.indentSize : 0 : lineAtPosition !== currentStart.line ? options.indentSize : 0; return getIndentationForNodeWorker(current, currentStart, undefined, indentationDelta, sourceFile, true, options); } const actualIndentation = getActualIndentationForListItem(current, sourceFile, options, true); if (actualIndentation !== -1) { return actualIndentation; } previous = current; current = current.parent; } return getBaseIndentation(options); } function getIndentationForNode(n, ignoreActualIndentationRange, sourceFile, options) { const start = sourceFile.getLineAndCharacterOfPosition(n.getStart(sourceFile)); return getIndentationForNodeWorker(n, start, ignoreActualIndentationRange, 0, sourceFile, false, options); } SmartIndenter2.getIndentationForNode = getIndentationForNode; function getBaseIndentation(options) { return options.baseIndentSize || 0; } SmartIndenter2.getBaseIndentation = getBaseIndentation; function getIndentationForNodeWorker(current, currentStart, ignoreActualIndentationRange, indentationDelta, sourceFile, isNextChild, options) { var _a; let parent2 = current.parent; while (parent2) { let useActualIndentation = true; if (ignoreActualIndentationRange) { const start = current.getStart(sourceFile); useActualIndentation = start < ignoreActualIndentationRange.pos || start > ignoreActualIndentationRange.end; } const containingListOrParentStart = getContainingListOrParentStart(parent2, current, sourceFile); const parentAndChildShareLine = containingListOrParentStart.line === currentStart.line || childStartsOnTheSameLineWithElseInIfStatement(parent2, current, currentStart.line, sourceFile); if (useActualIndentation) { const firstListChild = (_a = getContainingList(current, sourceFile)) == null ? undefined : _a[0]; const listIndentsChild = !!firstListChild && getStartLineAndCharacterForNode(firstListChild, sourceFile).line > containingListOrParentStart.line; let actualIndentation = getActualIndentationForListItem(current, sourceFile, options, listIndentsChild); if (actualIndentation !== -1) { return actualIndentation + indentationDelta; } actualIndentation = getActualIndentationForNode(current, parent2, currentStart, parentAndChildShareLine, sourceFile, options); if (actualIndentation !== -1) { return actualIndentation + indentationDelta; } } if (shouldIndentChildNode(options, parent2, current, sourceFile, isNextChild) && !parentAndChildShareLine) { indentationDelta += options.indentSize; } const useTrueStart = isArgumentAndStartLineOverlapsExpressionBeingCalled(parent2, current, currentStart.line, sourceFile); current = parent2; parent2 = current.parent; currentStart = useTrueStart ? sourceFile.getLineAndCharacterOfPosition(current.getStart(sourceFile)) : containingListOrParentStart; } return indentationDelta + getBaseIndentation(options); } function getContainingListOrParentStart(parent2, child, sourceFile) { const containingList = getContainingList(child, sourceFile); const startPos = containingList ? containingList.pos : parent2.getStart(sourceFile); return sourceFile.getLineAndCharacterOfPosition(startPos); } function getActualIndentationForListItemBeforeComma(commaToken, sourceFile, options) { const commaItemInfo = findListItemInfo(commaToken); if (commaItemInfo && commaItemInfo.listItemIndex > 0) { return deriveActualIndentationFromList(commaItemInfo.list.getChildren(), commaItemInfo.listItemIndex - 1, sourceFile, options); } else { return -1; } } function getActualIndentationForNode(current, parent2, currentLineAndChar, parentAndChildShareLine, sourceFile, options) { const useActualIndentation = (isDeclaration(current) || isStatementButNotDeclaration(current)) && (parent2.kind === 308 || !parentAndChildShareLine); if (!useActualIndentation) { return -1; } return findColumnForFirstNonWhitespaceCharacterInLine(currentLineAndChar, sourceFile, options); } let NextTokenKind; ((NextTokenKind2) => { NextTokenKind2[NextTokenKind2["Unknown"] = 0] = "Unknown"; NextTokenKind2[NextTokenKind2["OpenBrace"] = 1] = "OpenBrace"; NextTokenKind2[NextTokenKind2["CloseBrace"] = 2] = "CloseBrace"; })(NextTokenKind || (NextTokenKind = {})); function nextTokenIsCurlyBraceOnSameLineAsCursor(precedingToken, current, lineAtPosition, sourceFile) { const nextToken = findNextToken(precedingToken, current, sourceFile); if (!nextToken) { return 0; } if (nextToken.kind === 19) { return 1; } else if (nextToken.kind === 20) { const nextTokenStartLine = getStartLineAndCharacterForNode(nextToken, sourceFile).line; return lineAtPosition === nextTokenStartLine ? 2 : 0; } return 0; } function getStartLineAndCharacterForNode(n, sourceFile) { return sourceFile.getLineAndCharacterOfPosition(n.getStart(sourceFile)); } function isArgumentAndStartLineOverlapsExpressionBeingCalled(parent2, child, childStartLine, sourceFile) { if (!(isCallExpression(parent2) && contains(parent2.arguments, child))) { return false; } const expressionOfCallExpressionEnd = parent2.expression.getEnd(); const expressionOfCallExpressionEndLine = getLineAndCharacterOfPosition(sourceFile, expressionOfCallExpressionEnd).line; return expressionOfCallExpressionEndLine === childStartLine; } SmartIndenter2.isArgumentAndStartLineOverlapsExpressionBeingCalled = isArgumentAndStartLineOverlapsExpressionBeingCalled; function childStartsOnTheSameLineWithElseInIfStatement(parent2, child, childStartLine, sourceFile) { if (parent2.kind === 246 && parent2.elseStatement === child) { const elseKeyword = findChildOfKind(parent2, 93, sourceFile); Debug.assert(elseKeyword !== undefined); const elseKeywordStartLine = getStartLineAndCharacterForNode(elseKeyword, sourceFile).line; return elseKeywordStartLine === childStartLine; } return false; } SmartIndenter2.childStartsOnTheSameLineWithElseInIfStatement = childStartsOnTheSameLineWithElseInIfStatement; function childIsUnindentedBranchOfConditionalExpression(parent2, child, childStartLine, sourceFile) { if (isConditionalExpression(parent2) && (child === parent2.whenTrue || child === parent2.whenFalse)) { const conditionEndLine = getLineAndCharacterOfPosition(sourceFile, parent2.condition.end).line; if (child === parent2.whenTrue) { return childStartLine === conditionEndLine; } else { const trueStartLine = getStartLineAndCharacterForNode(parent2.whenTrue, sourceFile).line; const trueEndLine = getLineAndCharacterOfPosition(sourceFile, parent2.whenTrue.end).line; return conditionEndLine === trueStartLine && trueEndLine === childStartLine; } } return false; } SmartIndenter2.childIsUnindentedBranchOfConditionalExpression = childIsUnindentedBranchOfConditionalExpression; function argumentStartsOnSameLineAsPreviousArgument(parent2, child, childStartLine, sourceFile) { if (isCallOrNewExpression(parent2)) { if (!parent2.arguments) return false; const currentNode = find(parent2.arguments, (arg) => arg.pos === child.pos); if (!currentNode) return false; const currentIndex = parent2.arguments.indexOf(currentNode); if (currentIndex === 0) return false; const previousNode = parent2.arguments[currentIndex - 1]; const lineOfPreviousNode = getLineAndCharacterOfPosition(sourceFile, previousNode.getEnd()).line; if (childStartLine === lineOfPreviousNode) { return true; } } return false; } SmartIndenter2.argumentStartsOnSameLineAsPreviousArgument = argumentStartsOnSameLineAsPreviousArgument; function getContainingList(node, sourceFile) { return node.parent && getListByRange(node.getStart(sourceFile), node.getEnd(), node.parent, sourceFile); } SmartIndenter2.getContainingList = getContainingList; function getListByPosition(pos, node, sourceFile) { return node && getListByRange(pos, pos, node, sourceFile); } function getListByRange(start, end, node, sourceFile) { switch (node.kind) { case 184: return getList(node.typeArguments); case 211: return getList(node.properties); case 210: return getList(node.elements); case 188: return getList(node.members); case 263: case 219: case 220: case 175: case 174: case 180: case 177: case 186: case 181: return getList(node.typeParameters) || getList(node.parameters); case 178: return getList(node.parameters); case 264: case 232: case 265: case 266: case 346: return getList(node.typeParameters); case 215: case 214: return getList(node.typeArguments) || getList(node.arguments); case 262: return getList(node.declarations); case 276: case 280: return getList(node.elements); case 207: case 208: return getList(node.elements); } function getList(list) { return list && rangeContainsStartEnd(getVisualListRange(node, list, sourceFile), start, end) ? list : undefined; } } function getVisualListRange(node, list, sourceFile) { const children = node.getChildren(sourceFile); for (let i = 1;i < children.length - 1; i++) { if (children[i].pos === list.pos && children[i].end === list.end) { return { pos: children[i - 1].end, end: children[i + 1].getStart(sourceFile) }; } } return list; } function getActualIndentationForListStartLine(list, sourceFile, options) { if (!list) { return -1; } return findColumnForFirstNonWhitespaceCharacterInLine(sourceFile.getLineAndCharacterOfPosition(list.pos), sourceFile, options); } function getActualIndentationForListItem(node, sourceFile, options, listIndentsChild) { if (node.parent && node.parent.kind === 262) { return -1; } const containingList = getContainingList(node, sourceFile); if (containingList) { const index = containingList.indexOf(node); if (index !== -1) { const result = deriveActualIndentationFromList(containingList, index, sourceFile, options); if (result !== -1) { return result; } } return getActualIndentationForListStartLine(containingList, sourceFile, options) + (listIndentsChild ? options.indentSize : 0); } return -1; } function deriveActualIndentationFromList(list, index, sourceFile, options) { Debug.assert(index >= 0 && index < list.length); const node = list[index]; let lineAndCharacter = getStartLineAndCharacterForNode(node, sourceFile); for (let i = index - 1;i >= 0; i--) { if (list[i].kind === 28) { continue; } const prevEndLine = sourceFile.getLineAndCharacterOfPosition(list[i].end).line; if (prevEndLine !== lineAndCharacter.line) { return findColumnForFirstNonWhitespaceCharacterInLine(lineAndCharacter, sourceFile, options); } lineAndCharacter = getStartLineAndCharacterForNode(list[i], sourceFile); } return -1; } function findColumnForFirstNonWhitespaceCharacterInLine(lineAndCharacter, sourceFile, options) { const lineStart = sourceFile.getPositionOfLineAndCharacter(lineAndCharacter.line, 0); return findFirstNonWhitespaceColumn(lineStart, lineStart + lineAndCharacter.character, sourceFile, options); } function findFirstNonWhitespaceCharacterAndColumn(startPos, endPos, sourceFile, options) { let character = 0; let column = 0; for (let pos = startPos;pos < endPos; pos++) { const ch = sourceFile.text.charCodeAt(pos); if (!isWhiteSpaceSingleLine(ch)) { break; } if (ch === 9) { column += options.tabSize + column % options.tabSize; } else { column++; } character++; } return { column, character }; } SmartIndenter2.findFirstNonWhitespaceCharacterAndColumn = findFirstNonWhitespaceCharacterAndColumn; function findFirstNonWhitespaceColumn(startPos, endPos, sourceFile, options) { return findFirstNonWhitespaceCharacterAndColumn(startPos, endPos, sourceFile, options).column; } SmartIndenter2.findFirstNonWhitespaceColumn = findFirstNonWhitespaceColumn; function nodeWillIndentChild(settings, parent2, child, sourceFile, indentByDefault) { const childKind = child ? child.kind : 0; switch (parent2.kind) { case 245: case 264: case 232: case 265: case 267: case 266: case 210: case 242: case 269: case 211: case 188: case 201: case 190: case 218: case 212: case 214: case 215: case 244: case 278: case 254: case 228: case 208: case 207: case 287: case 290: case 286: case 295: case 174: case 180: case 181: case 170: case 185: case 186: case 197: case 216: case 224: case 280: case 276: case 282: case 277: case 173: case 297: case 298: return true; case 270: return settings.indentSwitchCase ?? true; case 261: case 304: case 227: if (!settings.indentMultiLineObjectLiteralBeginningOnBlankLine && sourceFile && childKind === 211) { return rangeIsOnOneLine(sourceFile, child); } if (parent2.kind === 227 && sourceFile && child && childKind === 285) { const parentStartLine = sourceFile.getLineAndCharacterOfPosition(skipTrivia2(sourceFile.text, parent2.pos)).line; const childStartLine = sourceFile.getLineAndCharacterOfPosition(skipTrivia2(sourceFile.text, child.pos)).line; return parentStartLine !== childStartLine; } if (parent2.kind !== 227) { return true; } break; case 247: case 248: case 250: case 251: case 249: case 246: case 263: case 219: case 175: case 177: case 178: case 179: return childKind !== 242; case 220: if (sourceFile && childKind === 218) { return rangeIsOnOneLine(sourceFile, child); } return childKind !== 242; case 279: return childKind !== 280; case 273: return childKind !== 274 || !!child.namedBindings && child.namedBindings.kind !== 276; case 285: return childKind !== 288; case 289: return childKind !== 291; case 194: case 193: case 239: if (childKind === 188 || childKind === 190 || childKind === 201) { return false; } break; case 259: if (childKind === 242) { return false; } break; } return indentByDefault; } SmartIndenter2.nodeWillIndentChild = nodeWillIndentChild; function isControlFlowEndingStatement(kind, parent2) { switch (kind) { case 254: case 258: case 252: case 253: return parent2.kind !== 242; default: return false; } } function shouldIndentChildNode(settings, parent2, child, sourceFile, isNextChild = false) { return nodeWillIndentChild(settings, parent2, child, sourceFile, false) && !(isNextChild && child && isControlFlowEndingStatement(child.kind, parent2)); } SmartIndenter2.shouldIndentChildNode = shouldIndentChildNode; function rangeIsOnOneLine(sourceFile, range) { const rangeStart = skipTrivia2(sourceFile.text, range.pos); const startLine = sourceFile.getLineAndCharacterOfPosition(rangeStart).line; const endLine = sourceFile.getLineAndCharacterOfPosition(range.end).line; return startLine === endLine; } })(SmartIndenter || (SmartIndenter = {})); var ts_preparePasteEdits_exports = {}; __export2(ts_preparePasteEdits_exports, { preparePasteEdits: () => preparePasteEdits }); function preparePasteEdits(sourceFile, copiedFromRange, checker) { let shouldProvidePasteEdits = false; copiedFromRange.forEach((range) => { const enclosingNode = findAncestor(getTokenAtPosition(sourceFile, range.pos), (ancestorNode) => rangeContainsRange(ancestorNode, range)); if (!enclosingNode) return; forEachChild(enclosingNode, function checkNameResolution(node) { var _a; if (shouldProvidePasteEdits) return; if (isIdentifier(node) && rangeContainsPosition(range, node.getStart(sourceFile))) { const resolvedSymbol = checker.resolveName(node.text, node, -1, false); if (resolvedSymbol && resolvedSymbol.declarations) { for (const decl of resolvedSymbol.declarations) { if (isInImport(decl) || !!(node.text && sourceFile.symbol && ((_a = sourceFile.symbol.exports) == null ? undefined : _a.has(node.escapedText)))) { shouldProvidePasteEdits = true; return; } } } } node.forEachChild(checkNameResolution); }); if (shouldProvidePasteEdits) return; }); return shouldProvidePasteEdits; } var ts_PasteEdits_exports = {}; __export2(ts_PasteEdits_exports, { pasteEditsProvider: () => pasteEditsProvider }); var fixId55 = "providePostPasteEdits"; function pasteEditsProvider(targetFile, pastedText, pasteLocations, copiedFrom, host, preferences, formatContext, cancellationToken) { const changes = ts_textChanges_exports.ChangeTracker.with({ host, formatContext, preferences }, (changeTracker) => pasteEdits(targetFile, pastedText, pasteLocations, copiedFrom, host, preferences, formatContext, cancellationToken, changeTracker)); return { edits: changes, fixId: fixId55 }; } function pasteEdits(targetFile, pastedText, pasteLocations, copiedFrom, host, preferences, formatContext, cancellationToken, changes) { let actualPastedText; if (pastedText.length !== pasteLocations.length) { actualPastedText = pastedText.length === 1 ? pastedText[0] : pastedText.join(getNewLineOrDefaultFromHost(formatContext.host, formatContext.options)); } const statements = []; let newText = targetFile.text; for (let i = pasteLocations.length - 1;i >= 0; i--) { const { pos, end } = pasteLocations[i]; newText = actualPastedText ? newText.slice(0, pos) + actualPastedText + newText.slice(end) : newText.slice(0, pos) + pastedText[i] + newText.slice(end); } let importAdder; Debug.checkDefined(host.runWithTemporaryFileUpdate).call(host, targetFile.fileName, newText, (updatedProgram, originalProgram, updatedFile) => { importAdder = ts_codefix_exports.createImportAdder(updatedFile, updatedProgram, preferences, host); if (copiedFrom == null ? undefined : copiedFrom.range) { Debug.assert(copiedFrom.range.length === pastedText.length); copiedFrom.range.forEach((copy) => { const statementsInSourceFile = copiedFrom.file.statements; const startNodeIndex = findIndex(statementsInSourceFile, (s) => s.end > copy.pos); if (startNodeIndex === -1) return; let endNodeIndex = findIndex(statementsInSourceFile, (s) => s.end >= copy.end, startNodeIndex); if (endNodeIndex !== -1 && copy.end <= statementsInSourceFile[endNodeIndex].getStart()) { endNodeIndex--; } statements.push(...statementsInSourceFile.slice(startNodeIndex, endNodeIndex === -1 ? statementsInSourceFile.length : endNodeIndex + 1)); }); Debug.assertIsDefined(originalProgram, "no original program found"); const originalProgramTypeChecker = originalProgram.getTypeChecker(); const usageInfoRange = getUsageInfoRangeForPasteEdits(copiedFrom); const usage = getUsageInfo(copiedFrom.file, statements, originalProgramTypeChecker, getExistingLocals(updatedFile, statements, originalProgramTypeChecker), usageInfoRange); const useEsModuleSyntax = !fileShouldUseJavaScriptRequire(targetFile.fileName, originalProgram, host, !!copiedFrom.file.commonJsModuleIndicator); addExportsInOldFile(copiedFrom.file, usage.targetFileImportsFromOldFile, changes, useEsModuleSyntax); addTargetFileImports(copiedFrom.file, usage.oldImportsNeededByTargetFile, usage.targetFileImportsFromOldFile, originalProgramTypeChecker, updatedProgram, importAdder); } else { const context = { sourceFile: updatedFile, program: originalProgram, cancellationToken, host, preferences, formatContext }; let offset = 0; pasteLocations.forEach((location, i) => { const oldTextLength = location.end - location.pos; const textToBePasted = actualPastedText ?? pastedText[i]; const startPos = location.pos + offset; const endPos = startPos + textToBePasted.length; const range = { pos: startPos, end: endPos }; offset += textToBePasted.length - oldTextLength; const enclosingNode = findAncestor(getTokenAtPosition(context.sourceFile, range.pos), (ancestorNode) => rangeContainsRange(ancestorNode, range)); if (!enclosingNode) return; forEachChild(enclosingNode, function importUnresolvedIdentifiers(node) { const isImportCandidate = isIdentifier(node) && rangeContainsPosition(range, node.getStart(updatedFile)) && !(updatedProgram == null ? undefined : updatedProgram.getTypeChecker().resolveName(node.text, node, -1, false)); if (isImportCandidate) { return importAdder.addImportForUnresolvedIdentifier(context, node, true); } node.forEachChild(importUnresolvedIdentifiers); }); }); } importAdder.writeFixes(changes, getQuotePreference(copiedFrom ? copiedFrom.file : targetFile, preferences)); }); if (!importAdder.hasFixes()) { return; } pasteLocations.forEach((paste, i) => { changes.replaceRangeWithText(targetFile, { pos: paste.pos, end: paste.end }, actualPastedText ?? pastedText[i]); }); } function getUsageInfoRangeForPasteEdits({ file: sourceFile, range }) { const pos = range[0].pos; const end = range[range.length - 1].end; const startToken = getTokenAtPosition(sourceFile, pos); const endToken = findTokenOnLeftOfPosition(sourceFile, pos) ?? getTokenAtPosition(sourceFile, end); return { pos: isIdentifier(startToken) && pos <= startToken.getStart(sourceFile) ? startToken.getFullStart() : pos, end: isIdentifier(endToken) && end === endToken.getEnd() ? ts_textChanges_exports.getAdjustedEndPosition(sourceFile, endToken, {}) : end }; } var ts_exports2 = {}; __export2(ts_exports2, { ANONYMOUS: () => ANONYMOUS, AccessFlags: () => AccessFlags, AssertionLevel: () => AssertionLevel, AssignmentDeclarationKind: () => AssignmentDeclarationKind, AssignmentKind: () => AssignmentKind, Associativity: () => Associativity, BreakpointResolver: () => ts_BreakpointResolver_exports, BuilderFileEmit: () => BuilderFileEmit, BuilderProgramKind: () => BuilderProgramKind, BuilderState: () => BuilderState, CallHierarchy: () => ts_CallHierarchy_exports, CharacterCodes: () => CharacterCodes, CheckFlags: () => CheckFlags, CheckMode: () => CheckMode, ClassificationType: () => ClassificationType, ClassificationTypeNames: () => ClassificationTypeNames, CommentDirectiveType: () => CommentDirectiveType, Comparison: () => Comparison, CompletionInfoFlags: () => CompletionInfoFlags, CompletionTriggerKind: () => CompletionTriggerKind, Completions: () => ts_Completions_exports, ContainerFlags: () => ContainerFlags, ContextFlags: () => ContextFlags, Debug: () => Debug, DiagnosticCategory: () => DiagnosticCategory, Diagnostics: () => Diagnostics, DocumentHighlights: () => DocumentHighlights, ElementFlags: () => ElementFlags, EmitFlags: () => EmitFlags, EmitHint: () => EmitHint, EmitOnly: () => EmitOnly, EndOfLineState: () => EndOfLineState, ExitStatus: () => ExitStatus, ExportKind: () => ExportKind, Extension: () => Extension, ExternalEmitHelpers: () => ExternalEmitHelpers, FileIncludeKind: () => FileIncludeKind, FilePreprocessingDiagnosticsKind: () => FilePreprocessingDiagnosticsKind, FileSystemEntryKind: () => FileSystemEntryKind, FileWatcherEventKind: () => FileWatcherEventKind, FindAllReferences: () => ts_FindAllReferences_exports, FlattenLevel: () => FlattenLevel, FlowFlags: () => FlowFlags, ForegroundColorEscapeSequences: () => ForegroundColorEscapeSequences, FunctionFlags: () => FunctionFlags, GeneratedIdentifierFlags: () => GeneratedIdentifierFlags, GetLiteralTextFlags: () => GetLiteralTextFlags, GoToDefinition: () => ts_GoToDefinition_exports, HighlightSpanKind: () => HighlightSpanKind, IdentifierNameMap: () => IdentifierNameMap, ImportKind: () => ImportKind, ImportsNotUsedAsValues: () => ImportsNotUsedAsValues, IndentStyle: () => IndentStyle, IndexFlags: () => IndexFlags, IndexKind: () => IndexKind, InferenceFlags: () => InferenceFlags, InferencePriority: () => InferencePriority, InlayHintKind: () => InlayHintKind2, InlayHints: () => ts_InlayHints_exports, InternalEmitFlags: () => InternalEmitFlags, InternalNodeBuilderFlags: () => InternalNodeBuilderFlags, InternalSymbolName: () => InternalSymbolName, IntersectionFlags: () => IntersectionFlags, InvalidatedProjectKind: () => InvalidatedProjectKind, JSDocParsingMode: () => JSDocParsingMode, JsDoc: () => ts_JsDoc_exports, JsTyping: () => ts_JsTyping_exports, JsxEmit: () => JsxEmit, JsxFlags: () => JsxFlags, JsxReferenceKind: () => JsxReferenceKind, LanguageFeatureMinimumTarget: () => LanguageFeatureMinimumTarget, LanguageServiceMode: () => LanguageServiceMode, LanguageVariant: () => LanguageVariant, LexicalEnvironmentFlags: () => LexicalEnvironmentFlags, ListFormat: () => ListFormat, LogLevel: () => LogLevel, MapCode: () => ts_MapCode_exports, MemberOverrideStatus: () => MemberOverrideStatus, ModifierFlags: () => ModifierFlags, ModuleDetectionKind: () => ModuleDetectionKind, ModuleInstanceState: () => ModuleInstanceState, ModuleKind: () => ModuleKind, ModuleResolutionKind: () => ModuleResolutionKind, ModuleSpecifierEnding: () => ModuleSpecifierEnding, NavigateTo: () => ts_NavigateTo_exports, NavigationBar: () => ts_NavigationBar_exports, NewLineKind: () => NewLineKind, NodeBuilderFlags: () => NodeBuilderFlags, NodeCheckFlags: () => NodeCheckFlags, NodeFactoryFlags: () => NodeFactoryFlags, NodeFlags: () => NodeFlags, NodeResolutionFeatures: () => NodeResolutionFeatures, ObjectFlags: () => ObjectFlags, OperationCanceledException: () => OperationCanceledException, OperatorPrecedence: () => OperatorPrecedence, OrganizeImports: () => ts_OrganizeImports_exports, OrganizeImportsMode: () => OrganizeImportsMode, OuterExpressionKinds: () => OuterExpressionKinds, OutliningElementsCollector: () => ts_OutliningElementsCollector_exports, OutliningSpanKind: () => OutliningSpanKind, OutputFileType: () => OutputFileType, PackageJsonAutoImportPreference: () => PackageJsonAutoImportPreference, PackageJsonDependencyGroup: () => PackageJsonDependencyGroup, PatternMatchKind: () => PatternMatchKind, PollingInterval: () => PollingInterval, PollingWatchKind: () => PollingWatchKind, PragmaKindFlags: () => PragmaKindFlags, PredicateSemantics: () => PredicateSemantics, PreparePasteEdits: () => ts_preparePasteEdits_exports, PrivateIdentifierKind: () => PrivateIdentifierKind, ProcessLevel: () => ProcessLevel, ProgramUpdateLevel: () => ProgramUpdateLevel, QuotePreference: () => QuotePreference, RegularExpressionFlags: () => RegularExpressionFlags, RelationComparisonResult: () => RelationComparisonResult, Rename: () => ts_Rename_exports, ScriptElementKind: () => ScriptElementKind, ScriptElementKindModifier: () => ScriptElementKindModifier, ScriptKind: () => ScriptKind, ScriptSnapshot: () => ScriptSnapshot, ScriptTarget: () => ScriptTarget, SemanticClassificationFormat: () => SemanticClassificationFormat, SemanticMeaning: () => SemanticMeaning, SemicolonPreference: () => SemicolonPreference, SignatureCheckMode: () => SignatureCheckMode, SignatureFlags: () => SignatureFlags, SignatureHelp: () => ts_SignatureHelp_exports, SignatureInfo: () => SignatureInfo, SignatureKind: () => SignatureKind, SmartSelectionRange: () => ts_SmartSelectionRange_exports, SnippetKind: () => SnippetKind, StatisticType: () => StatisticType, StructureIsReused: () => StructureIsReused, SymbolAccessibility: () => SymbolAccessibility, SymbolDisplay: () => ts_SymbolDisplay_exports, SymbolDisplayPartKind: () => SymbolDisplayPartKind, SymbolFlags: () => SymbolFlags, SymbolFormatFlags: () => SymbolFormatFlags, SyntaxKind: () => SyntaxKind, Ternary: () => Ternary, ThrottledCancellationToken: () => ThrottledCancellationToken, TokenClass: () => TokenClass, TokenFlags: () => TokenFlags, TransformFlags: () => TransformFlags, TypeFacts: () => TypeFacts, TypeFlags: () => TypeFlags, TypeFormatFlags: () => TypeFormatFlags, TypeMapKind: () => TypeMapKind, TypePredicateKind: () => TypePredicateKind, TypeReferenceSerializationKind: () => TypeReferenceSerializationKind, UnionReduction: () => UnionReduction, UpToDateStatusType: () => UpToDateStatusType, VarianceFlags: () => VarianceFlags, Version: () => Version, VersionRange: () => VersionRange, WatchDirectoryFlags: () => WatchDirectoryFlags, WatchDirectoryKind: () => WatchDirectoryKind, WatchFileKind: () => WatchFileKind, WatchLogLevel: () => WatchLogLevel, WatchType: () => WatchType, accessPrivateIdentifier: () => accessPrivateIdentifier, addEmitFlags: () => addEmitFlags, addEmitHelper: () => addEmitHelper, addEmitHelpers: () => addEmitHelpers, addInternalEmitFlags: () => addInternalEmitFlags, addNodeFactoryPatcher: () => addNodeFactoryPatcher, addObjectAllocatorPatcher: () => addObjectAllocatorPatcher, addRange: () => addRange, addRelatedInfo: () => addRelatedInfo, addSyntheticLeadingComment: () => addSyntheticLeadingComment, addSyntheticTrailingComment: () => addSyntheticTrailingComment, addToSeen: () => addToSeen, advancedAsyncSuperHelper: () => advancedAsyncSuperHelper, affectsDeclarationPathOptionDeclarations: () => affectsDeclarationPathOptionDeclarations, affectsEmitOptionDeclarations: () => affectsEmitOptionDeclarations, allKeysStartWithDot: () => allKeysStartWithDot, altDirectorySeparator: () => altDirectorySeparator, and: () => and, append: () => append, appendIfUnique: () => appendIfUnique, arrayFrom: () => arrayFrom, arrayIsEqualTo: () => arrayIsEqualTo, arrayIsHomogeneous: () => arrayIsHomogeneous, arrayOf: () => arrayOf, arrayReverseIterator: () => arrayReverseIterator, arrayToMap: () => arrayToMap, arrayToMultiMap: () => arrayToMultiMap, arrayToNumericMap: () => arrayToNumericMap, assertType: () => assertType, assign: () => assign, asyncSuperHelper: () => asyncSuperHelper, attachFileToDiagnostics: () => attachFileToDiagnostics, base64decode: () => base64decode, base64encode: () => base64encode, binarySearch: () => binarySearch, binarySearchKey: () => binarySearchKey, bindSourceFile: () => bindSourceFile, breakIntoCharacterSpans: () => breakIntoCharacterSpans, breakIntoWordSpans: () => breakIntoWordSpans, buildLinkParts: () => buildLinkParts, buildOpts: () => buildOpts, buildOverload: () => buildOverload, bundlerModuleNameResolver: () => bundlerModuleNameResolver, canBeConvertedToAsync: () => canBeConvertedToAsync, canHaveDecorators: () => canHaveDecorators, canHaveExportModifier: () => canHaveExportModifier, canHaveFlowNode: () => canHaveFlowNode, canHaveIllegalDecorators: () => canHaveIllegalDecorators, canHaveIllegalModifiers: () => canHaveIllegalModifiers, canHaveIllegalType: () => canHaveIllegalType, canHaveIllegalTypeParameters: () => canHaveIllegalTypeParameters, canHaveJSDoc: () => canHaveJSDoc, canHaveLocals: () => canHaveLocals, canHaveModifiers: () => canHaveModifiers, canHaveModuleSpecifier: () => canHaveModuleSpecifier, canHaveStatements: () => canHaveStatements, canHaveSymbol: () => canHaveSymbol, canIncludeBindAndCheckDiagnostics: () => canIncludeBindAndCheckDiagnostics, canJsonReportNoInputFiles: () => canJsonReportNoInputFiles, canProduceDiagnostics: () => canProduceDiagnostics, canUsePropertyAccess: () => canUsePropertyAccess, canWatchAffectingLocation: () => canWatchAffectingLocation, canWatchAtTypes: () => canWatchAtTypes, canWatchDirectoryOrFile: () => canWatchDirectoryOrFile, canWatchDirectoryOrFilePath: () => canWatchDirectoryOrFilePath, cartesianProduct: () => cartesianProduct, cast: () => cast, chainBundle: () => chainBundle, chainDiagnosticMessages: () => chainDiagnosticMessages, changeAnyExtension: () => changeAnyExtension, changeCompilerHostLikeToUseCache: () => changeCompilerHostLikeToUseCache, changeExtension: () => changeExtension, changeFullExtension: () => changeFullExtension, changesAffectModuleResolution: () => changesAffectModuleResolution, changesAffectingProgramStructure: () => changesAffectingProgramStructure, characterCodeToRegularExpressionFlag: () => characterCodeToRegularExpressionFlag, childIsDecorated: () => childIsDecorated, classElementOrClassElementParameterIsDecorated: () => classElementOrClassElementParameterIsDecorated, classHasClassThisAssignment: () => classHasClassThisAssignment, classHasDeclaredOrExplicitlyAssignedName: () => classHasDeclaredOrExplicitlyAssignedName, classHasExplicitlyAssignedName: () => classHasExplicitlyAssignedName, classOrConstructorParameterIsDecorated: () => classOrConstructorParameterIsDecorated, classicNameResolver: () => classicNameResolver, classifier: () => ts_classifier_exports, cleanExtendedConfigCache: () => cleanExtendedConfigCache, clear: () => clear, clearMap: () => clearMap, clearSharedExtendedConfigFileWatcher: () => clearSharedExtendedConfigFileWatcher, climbPastPropertyAccess: () => climbPastPropertyAccess, clone: () => clone, cloneCompilerOptions: () => cloneCompilerOptions, closeFileWatcher: () => closeFileWatcher, closeFileWatcherOf: () => closeFileWatcherOf, codefix: () => ts_codefix_exports, collapseTextChangeRangesAcrossMultipleVersions: () => collapseTextChangeRangesAcrossMultipleVersions, collectExternalModuleInfo: () => collectExternalModuleInfo, combine: () => combine, combinePaths: () => combinePaths, commandLineOptionOfCustomType: () => commandLineOptionOfCustomType, commentPragmas: () => commentPragmas, commonOptionsWithBuild: () => commonOptionsWithBuild, compact: () => compact, compareBooleans: () => compareBooleans, compareComparableValues: () => compareComparableValues, compareDataObjects: () => compareDataObjects, compareDiagnostics: () => compareDiagnostics, compareEmitHelpers: () => compareEmitHelpers, compareNumberOfDirectorySeparators: () => compareNumberOfDirectorySeparators, comparePaths: () => comparePaths, comparePathsCaseInsensitive: () => comparePathsCaseInsensitive, comparePathsCaseSensitive: () => comparePathsCaseSensitive, comparePatternKeys: () => comparePatternKeys, compareProperties: () => compareProperties, compareStringsCaseInsensitive: () => compareStringsCaseInsensitive, compareStringsCaseInsensitiveEslintCompatible: () => compareStringsCaseInsensitiveEslintCompatible, compareStringsCaseSensitive: () => compareStringsCaseSensitive, compareStringsCaseSensitiveUI: () => compareStringsCaseSensitiveUI, compareTextSpans: () => compareTextSpans, compareValues: () => compareValues, compilerOptionsAffectDeclarationPath: () => compilerOptionsAffectDeclarationPath, compilerOptionsAffectEmit: () => compilerOptionsAffectEmit, compilerOptionsAffectSemanticDiagnostics: () => compilerOptionsAffectSemanticDiagnostics, compilerOptionsDidYouMeanDiagnostics: () => compilerOptionsDidYouMeanDiagnostics, compilerOptionsIndicateEsModules: () => compilerOptionsIndicateEsModules, computeCommonSourceDirectoryOfFilenames: () => computeCommonSourceDirectoryOfFilenames, computeLineAndCharacterOfPosition: () => computeLineAndCharacterOfPosition, computeLineOfPosition: () => computeLineOfPosition, computeLineStarts: () => computeLineStarts, computePositionOfLineAndCharacter: () => computePositionOfLineAndCharacter, computeSignatureWithDiagnostics: () => computeSignatureWithDiagnostics, computeSuggestionDiagnostics: () => computeSuggestionDiagnostics, computedOptions: () => computedOptions, concatenate: () => concatenate, concatenateDiagnosticMessageChains: () => concatenateDiagnosticMessageChains, consumesNodeCoreModules: () => consumesNodeCoreModules, contains: () => contains, containsIgnoredPath: () => containsIgnoredPath, containsObjectRestOrSpread: () => containsObjectRestOrSpread, containsParseError: () => containsParseError, containsPath: () => containsPath, convertCompilerOptionsForTelemetry: () => convertCompilerOptionsForTelemetry, convertCompilerOptionsFromJson: () => convertCompilerOptionsFromJson, convertJsonOption: () => convertJsonOption, convertToBase64: () => convertToBase64, convertToJson: () => convertToJson, convertToObject: () => convertToObject, convertToOptionsWithAbsolutePaths: () => convertToOptionsWithAbsolutePaths, convertToRelativePath: () => convertToRelativePath, convertToTSConfig: () => convertToTSConfig, convertTypeAcquisitionFromJson: () => convertTypeAcquisitionFromJson, copyComments: () => copyComments, copyEntries: () => copyEntries, copyLeadingComments: () => copyLeadingComments, copyProperties: () => copyProperties, copyTrailingAsLeadingComments: () => copyTrailingAsLeadingComments, copyTrailingComments: () => copyTrailingComments, couldStartTrivia: () => couldStartTrivia, countWhere: () => countWhere, createAbstractBuilder: () => createAbstractBuilder, createAccessorPropertyBackingField: () => createAccessorPropertyBackingField, createAccessorPropertyGetRedirector: () => createAccessorPropertyGetRedirector, createAccessorPropertySetRedirector: () => createAccessorPropertySetRedirector, createBaseNodeFactory: () => createBaseNodeFactory, createBinaryExpressionTrampoline: () => createBinaryExpressionTrampoline, createBuilderProgram: () => createBuilderProgram, createBuilderProgramUsingIncrementalBuildInfo: () => createBuilderProgramUsingIncrementalBuildInfo, createBuilderStatusReporter: () => createBuilderStatusReporter, createCacheableExportInfoMap: () => createCacheableExportInfoMap, createCachedDirectoryStructureHost: () => createCachedDirectoryStructureHost, createClassifier: () => createClassifier, createCommentDirectivesMap: () => createCommentDirectivesMap, createCompilerDiagnostic: () => createCompilerDiagnostic, createCompilerDiagnosticForInvalidCustomType: () => createCompilerDiagnosticForInvalidCustomType, createCompilerDiagnosticFromMessageChain: () => createCompilerDiagnosticFromMessageChain, createCompilerHost: () => createCompilerHost, createCompilerHostFromProgramHost: () => createCompilerHostFromProgramHost, createCompilerHostWorker: () => createCompilerHostWorker, createDetachedDiagnostic: () => createDetachedDiagnostic, createDiagnosticCollection: () => createDiagnosticCollection, createDiagnosticForFileFromMessageChain: () => createDiagnosticForFileFromMessageChain, createDiagnosticForNode: () => createDiagnosticForNode, createDiagnosticForNodeArray: () => createDiagnosticForNodeArray, createDiagnosticForNodeArrayFromMessageChain: () => createDiagnosticForNodeArrayFromMessageChain, createDiagnosticForNodeFromMessageChain: () => createDiagnosticForNodeFromMessageChain, createDiagnosticForNodeInSourceFile: () => createDiagnosticForNodeInSourceFile, createDiagnosticForRange: () => createDiagnosticForRange, createDiagnosticMessageChainFromDiagnostic: () => createDiagnosticMessageChainFromDiagnostic, createDiagnosticReporter: () => createDiagnosticReporter, createDocumentPositionMapper: () => createDocumentPositionMapper, createDocumentRegistry: () => createDocumentRegistry, createDocumentRegistryInternal: () => createDocumentRegistryInternal, createEmitAndSemanticDiagnosticsBuilderProgram: () => createEmitAndSemanticDiagnosticsBuilderProgram, createEmitHelperFactory: () => createEmitHelperFactory, createEmptyExports: () => createEmptyExports, createEvaluator: () => createEvaluator, createExpressionForJsxElement: () => createExpressionForJsxElement, createExpressionForJsxFragment: () => createExpressionForJsxFragment, createExpressionForObjectLiteralElementLike: () => createExpressionForObjectLiteralElementLike, createExpressionForPropertyName: () => createExpressionForPropertyName, createExpressionFromEntityName: () => createExpressionFromEntityName, createExternalHelpersImportDeclarationIfNeeded: () => createExternalHelpersImportDeclarationIfNeeded, createFileDiagnostic: () => createFileDiagnostic, createFileDiagnosticFromMessageChain: () => createFileDiagnosticFromMessageChain, createFlowNode: () => createFlowNode, createForOfBindingStatement: () => createForOfBindingStatement, createFutureSourceFile: () => createFutureSourceFile, createGetCanonicalFileName: () => createGetCanonicalFileName, createGetIsolatedDeclarationErrors: () => createGetIsolatedDeclarationErrors, createGetSourceFile: () => createGetSourceFile, createGetSymbolAccessibilityDiagnosticForNode: () => createGetSymbolAccessibilityDiagnosticForNode, createGetSymbolAccessibilityDiagnosticForNodeName: () => createGetSymbolAccessibilityDiagnosticForNodeName, createGetSymbolWalker: () => createGetSymbolWalker, createIncrementalCompilerHost: () => createIncrementalCompilerHost, createIncrementalProgram: () => createIncrementalProgram, createJsxFactoryExpression: () => createJsxFactoryExpression, createLanguageService: () => createLanguageService, createLanguageServiceSourceFile: () => createLanguageServiceSourceFile, createMemberAccessForPropertyName: () => createMemberAccessForPropertyName, createModeAwareCache: () => createModeAwareCache, createModeAwareCacheKey: () => createModeAwareCacheKey, createModeMismatchDetails: () => createModeMismatchDetails, createModuleNotFoundChain: () => createModuleNotFoundChain, createModuleResolutionCache: () => createModuleResolutionCache, createModuleResolutionLoader: () => createModuleResolutionLoader, createModuleResolutionLoaderUsingGlobalCache: () => createModuleResolutionLoaderUsingGlobalCache, createModuleSpecifierResolutionHost: () => createModuleSpecifierResolutionHost, createMultiMap: () => createMultiMap, createNameResolver: () => createNameResolver, createNodeConverters: () => createNodeConverters, createNodeFactory: () => createNodeFactory, createOptionNameMap: () => createOptionNameMap, createOverload: () => createOverload, createPackageJsonImportFilter: () => createPackageJsonImportFilter, createPackageJsonInfo: () => createPackageJsonInfo, createParenthesizerRules: () => createParenthesizerRules, createPatternMatcher: () => createPatternMatcher, createPrinter: () => createPrinter, createPrinterWithDefaults: () => createPrinterWithDefaults, createPrinterWithRemoveComments: () => createPrinterWithRemoveComments, createPrinterWithRemoveCommentsNeverAsciiEscape: () => createPrinterWithRemoveCommentsNeverAsciiEscape, createPrinterWithRemoveCommentsOmitTrailingSemicolon: () => createPrinterWithRemoveCommentsOmitTrailingSemicolon, createProgram: () => createProgram, createProgramDiagnostics: () => createProgramDiagnostics, createProgramHost: () => createProgramHost, createPropertyNameNodeForIdentifierOrLiteral: () => createPropertyNameNodeForIdentifierOrLiteral, createQueue: () => createQueue, createRange: () => createRange, createRedirectedBuilderProgram: () => createRedirectedBuilderProgram, createResolutionCache: () => createResolutionCache, createRuntimeTypeSerializer: () => createRuntimeTypeSerializer, createScanner: () => createScanner, createSemanticDiagnosticsBuilderProgram: () => createSemanticDiagnosticsBuilderProgram, createSet: () => createSet, createSolutionBuilder: () => createSolutionBuilder, createSolutionBuilderHost: () => createSolutionBuilderHost, createSolutionBuilderWithWatch: () => createSolutionBuilderWithWatch, createSolutionBuilderWithWatchHost: () => createSolutionBuilderWithWatchHost, createSortedArray: () => createSortedArray, createSourceFile: () => createSourceFile, createSourceMapGenerator: () => createSourceMapGenerator, createSourceMapSource: () => createSourceMapSource, createSuperAccessVariableStatement: () => createSuperAccessVariableStatement, createSymbolTable: () => createSymbolTable, createSymlinkCache: () => createSymlinkCache, createSyntacticTypeNodeBuilder: () => createSyntacticTypeNodeBuilder, createSystemWatchFunctions: () => createSystemWatchFunctions, createTextChange: () => createTextChange, createTextChangeFromStartLength: () => createTextChangeFromStartLength, createTextChangeRange: () => createTextChangeRange, createTextRangeFromNode: () => createTextRangeFromNode, createTextRangeFromSpan: () => createTextRangeFromSpan, createTextSpan: () => createTextSpan, createTextSpanFromBounds: () => createTextSpanFromBounds, createTextSpanFromNode: () => createTextSpanFromNode, createTextSpanFromRange: () => createTextSpanFromRange, createTextSpanFromStringLiteralLikeContent: () => createTextSpanFromStringLiteralLikeContent, createTextWriter: () => createTextWriter, createTokenRange: () => createTokenRange, createTypeChecker: () => createTypeChecker, createTypeReferenceDirectiveResolutionCache: () => createTypeReferenceDirectiveResolutionCache, createTypeReferenceResolutionLoader: () => createTypeReferenceResolutionLoader, createWatchCompilerHost: () => createWatchCompilerHost2, createWatchCompilerHostOfConfigFile: () => createWatchCompilerHostOfConfigFile, createWatchCompilerHostOfFilesAndCompilerOptions: () => createWatchCompilerHostOfFilesAndCompilerOptions, createWatchFactory: () => createWatchFactory, createWatchHost: () => createWatchHost, createWatchProgram: () => createWatchProgram, createWatchStatusReporter: () => createWatchStatusReporter, createWriteFileMeasuringIO: () => createWriteFileMeasuringIO, declarationNameToString: () => declarationNameToString, decodeMappings: () => decodeMappings, decodedTextSpanIntersectsWith: () => decodedTextSpanIntersectsWith, deduplicate: () => deduplicate, defaultHoverMaximumTruncationLength: () => defaultHoverMaximumTruncationLength, defaultInitCompilerOptions: () => defaultInitCompilerOptions, defaultMaximumTruncationLength: () => defaultMaximumTruncationLength, diagnosticCategoryName: () => diagnosticCategoryName, diagnosticToString: () => diagnosticToString, diagnosticsEqualityComparer: () => diagnosticsEqualityComparer, directoryProbablyExists: () => directoryProbablyExists, directorySeparator: () => directorySeparator, displayPart: () => displayPart, displayPartsToString: () => displayPartsToString, disposeEmitNodes: () => disposeEmitNodes, documentSpansEqual: () => documentSpansEqual, dumpTracingLegend: () => dumpTracingLegend, elementAt: () => elementAt, elideNodes: () => elideNodes, emitDetachedComments: () => emitDetachedComments, emitFiles: () => emitFiles, emitFilesAndReportErrors: () => emitFilesAndReportErrors, emitFilesAndReportErrorsAndGetExitStatus: () => emitFilesAndReportErrorsAndGetExitStatus, emitModuleKindIsNonNodeESM: () => emitModuleKindIsNonNodeESM, emitNewLineBeforeLeadingCommentOfPosition: () => emitNewLineBeforeLeadingCommentOfPosition, emitResolverSkipsTypeChecking: () => emitResolverSkipsTypeChecking, emitSkippedWithNoDiagnostics: () => emitSkippedWithNoDiagnostics, emptyArray: () => emptyArray, emptyFileSystemEntries: () => emptyFileSystemEntries, emptyMap: () => emptyMap, emptyOptions: () => emptyOptions, endsWith: () => endsWith, ensurePathIsNonModuleName: () => ensurePathIsNonModuleName, ensureScriptKind: () => ensureScriptKind, ensureTrailingDirectorySeparator: () => ensureTrailingDirectorySeparator, entityNameToString: () => entityNameToString, enumerateInsertsAndDeletes: () => enumerateInsertsAndDeletes, equalOwnProperties: () => equalOwnProperties, equateStringsCaseInsensitive: () => equateStringsCaseInsensitive, equateStringsCaseSensitive: () => equateStringsCaseSensitive, equateValues: () => equateValues, escapeJsxAttributeString: () => escapeJsxAttributeString, escapeLeadingUnderscores: () => escapeLeadingUnderscores, escapeNonAsciiString: () => escapeNonAsciiString, escapeSnippetText: () => escapeSnippetText, escapeString: () => escapeString, escapeTemplateSubstitution: () => escapeTemplateSubstitution, evaluatorResult: () => evaluatorResult, every: () => every, exclusivelyPrefixedNodeCoreModules: () => exclusivelyPrefixedNodeCoreModules, executeCommandLine: () => executeCommandLine, expandPreOrPostfixIncrementOrDecrementExpression: () => expandPreOrPostfixIncrementOrDecrementExpression, explainFiles: () => explainFiles, explainIfFileIsRedirectAndImpliedFormat: () => explainIfFileIsRedirectAndImpliedFormat, exportAssignmentIsAlias: () => exportAssignmentIsAlias, expressionResultIsUnused: () => expressionResultIsUnused, extend: () => extend, extensionFromPath: () => extensionFromPath, extensionIsTS: () => extensionIsTS, extensionsNotSupportingExtensionlessResolution: () => extensionsNotSupportingExtensionlessResolution, externalHelpersModuleNameText: () => externalHelpersModuleNameText, factory: () => factory, fileExtensionIs: () => fileExtensionIs, fileExtensionIsOneOf: () => fileExtensionIsOneOf, fileIncludeReasonToDiagnostics: () => fileIncludeReasonToDiagnostics, fileShouldUseJavaScriptRequire: () => fileShouldUseJavaScriptRequire, filter: () => filter, filterMutate: () => filterMutate, filterSemanticDiagnostics: () => filterSemanticDiagnostics, find: () => find, findAncestor: () => findAncestor, findBestPatternMatch: () => findBestPatternMatch, findChildOfKind: () => findChildOfKind, findComputedPropertyNameCacheAssignment: () => findComputedPropertyNameCacheAssignment, findConfigFile: () => findConfigFile, findConstructorDeclaration: () => findConstructorDeclaration, findContainingList: () => findContainingList, findDiagnosticForNode: () => findDiagnosticForNode, findFirstNonJsxWhitespaceToken: () => findFirstNonJsxWhitespaceToken, findIndex: () => findIndex, findLast: () => findLast, findLastIndex: () => findLastIndex, findListItemInfo: () => findListItemInfo, findModifier: () => findModifier, findNextToken: () => findNextToken, findPackageJson: () => findPackageJson, findPackageJsons: () => findPackageJsons, findPrecedingMatchingToken: () => findPrecedingMatchingToken, findPrecedingToken: () => findPrecedingToken, findSuperStatementIndexPath: () => findSuperStatementIndexPath, findTokenOnLeftOfPosition: () => findTokenOnLeftOfPosition, findUseStrictPrologue: () => findUseStrictPrologue, first: () => first, firstDefined: () => firstDefined, firstDefinedIterator: () => firstDefinedIterator, firstIterator: () => firstIterator, firstOrOnly: () => firstOrOnly, firstOrUndefined: () => firstOrUndefined, firstOrUndefinedIterator: () => firstOrUndefinedIterator, fixupCompilerOptions: () => fixupCompilerOptions, flatMap: () => flatMap, flatMapIterator: () => flatMapIterator, flatMapToMutable: () => flatMapToMutable, flatten: () => flatten, flattenCommaList: () => flattenCommaList, flattenDestructuringAssignment: () => flattenDestructuringAssignment, flattenDestructuringBinding: () => flattenDestructuringBinding, flattenDiagnosticMessageText: () => flattenDiagnosticMessageText, forEach: () => forEach, forEachAncestor: () => forEachAncestor, forEachAncestorDirectory: () => forEachAncestorDirectory, forEachAncestorDirectoryStoppingAtGlobalCache: () => forEachAncestorDirectoryStoppingAtGlobalCache, forEachChild: () => forEachChild, forEachChildRecursively: () => forEachChildRecursively, forEachDynamicImportOrRequireCall: () => forEachDynamicImportOrRequireCall, forEachEmittedFile: () => forEachEmittedFile, forEachEnclosingBlockScopeContainer: () => forEachEnclosingBlockScopeContainer, forEachEntry: () => forEachEntry, forEachExternalModuleToImportFrom: () => forEachExternalModuleToImportFrom, forEachImportClauseDeclaration: () => forEachImportClauseDeclaration, forEachKey: () => forEachKey, forEachLeadingCommentRange: () => forEachLeadingCommentRange, forEachNameInAccessChainWalkingLeft: () => forEachNameInAccessChainWalkingLeft, forEachNameOfDefaultExport: () => forEachNameOfDefaultExport, forEachOptionsSyntaxByName: () => forEachOptionsSyntaxByName, forEachProjectReference: () => forEachProjectReference, forEachPropertyAssignment: () => forEachPropertyAssignment, forEachResolvedProjectReference: () => forEachResolvedProjectReference, forEachReturnStatement: () => forEachReturnStatement, forEachRight: () => forEachRight, forEachTrailingCommentRange: () => forEachTrailingCommentRange, forEachTsConfigPropArray: () => forEachTsConfigPropArray, forEachUnique: () => forEachUnique, forEachYieldExpression: () => forEachYieldExpression, formatColorAndReset: () => formatColorAndReset, formatDiagnostic: () => formatDiagnostic2, formatDiagnostics: () => formatDiagnostics, formatDiagnosticsWithColorAndContext: () => formatDiagnosticsWithColorAndContext, formatGeneratedName: () => formatGeneratedName, formatGeneratedNamePart: () => formatGeneratedNamePart, formatLocation: () => formatLocation, formatMessage: () => formatMessage, formatStringFromArgs: () => formatStringFromArgs, formatting: () => ts_formatting_exports, generateDjb2Hash: () => generateDjb2Hash, generateTSConfig: () => generateTSConfig, getAdjustedReferenceLocation: () => getAdjustedReferenceLocation, getAdjustedRenameLocation: () => getAdjustedRenameLocation, getAliasDeclarationFromName: () => getAliasDeclarationFromName, getAllAccessorDeclarations: () => getAllAccessorDeclarations, getAllDecoratorsOfClass: () => getAllDecoratorsOfClass, getAllDecoratorsOfClassElement: () => getAllDecoratorsOfClassElement, getAllJSDocTags: () => getAllJSDocTags, getAllJSDocTagsOfKind: () => getAllJSDocTagsOfKind, getAllKeys: () => getAllKeys, getAllProjectOutputs: () => getAllProjectOutputs, getAllSuperTypeNodes: () => getAllSuperTypeNodes, getAllowImportingTsExtensions: () => getAllowImportingTsExtensions, getAllowJSCompilerOption: () => getAllowJSCompilerOption, getAllowSyntheticDefaultImports: () => getAllowSyntheticDefaultImports, getAlwaysStrict: () => getAlwaysStrict, getAncestor: () => getAncestor, getAnyExtensionFromPath: () => getAnyExtensionFromPath, getAreDeclarationMapsEnabled: () => getAreDeclarationMapsEnabled, getAssignedExpandoInitializer: () => getAssignedExpandoInitializer, getAssignedName: () => getAssignedName, getAssignmentDeclarationKind: () => getAssignmentDeclarationKind, getAssignmentDeclarationPropertyAccessKind: () => getAssignmentDeclarationPropertyAccessKind, getAssignmentTargetKind: () => getAssignmentTargetKind, getAutomaticTypeDirectiveNames: () => getAutomaticTypeDirectiveNames, getBaseFileName: () => getBaseFileName, getBinaryOperatorPrecedence: () => getBinaryOperatorPrecedence, getBuildInfo: () => getBuildInfo, getBuildInfoFileVersionMap: () => getBuildInfoFileVersionMap, getBuildInfoText: () => getBuildInfoText, getBuildOrderFromAnyBuildOrder: () => getBuildOrderFromAnyBuildOrder, getBuilderCreationParameters: () => getBuilderCreationParameters, getBuilderFileEmit: () => getBuilderFileEmit, getCanonicalDiagnostic: () => getCanonicalDiagnostic, getCheckFlags: () => getCheckFlags, getClassExtendsHeritageElement: () => getClassExtendsHeritageElement, getClassLikeDeclarationOfSymbol: () => getClassLikeDeclarationOfSymbol, getCombinedLocalAndExportSymbolFlags: () => getCombinedLocalAndExportSymbolFlags, getCombinedModifierFlags: () => getCombinedModifierFlags, getCombinedNodeFlags: () => getCombinedNodeFlags, getCombinedNodeFlagsAlwaysIncludeJSDoc: () => getCombinedNodeFlagsAlwaysIncludeJSDoc, getCommentRange: () => getCommentRange, getCommonSourceDirectory: () => getCommonSourceDirectory, getCommonSourceDirectoryOfConfig: () => getCommonSourceDirectoryOfConfig, getCompilerOptionValue: () => getCompilerOptionValue, getComputedCommonSourceDirectory: () => getComputedCommonSourceDirectory, getConditions: () => getConditions, getConfigFileParsingDiagnostics: () => getConfigFileParsingDiagnostics, getConstantValue: () => getConstantValue, getContainerFlags: () => getContainerFlags, getContainerNode: () => getContainerNode, getContainingClass: () => getContainingClass, getContainingClassExcludingClassDecorators: () => getContainingClassExcludingClassDecorators, getContainingClassStaticBlock: () => getContainingClassStaticBlock, getContainingFunction: () => getContainingFunction, getContainingFunctionDeclaration: () => getContainingFunctionDeclaration, getContainingFunctionOrClassStaticBlock: () => getContainingFunctionOrClassStaticBlock, getContainingNodeArray: () => getContainingNodeArray, getContainingObjectLiteralElement: () => getContainingObjectLiteralElement, getContextualTypeFromParent: () => getContextualTypeFromParent, getContextualTypeFromParentOrAncestorTypeNode: () => getContextualTypeFromParentOrAncestorTypeNode, getDeclarationDiagnostics: () => getDeclarationDiagnostics, getDeclarationEmitExtensionForPath: () => getDeclarationEmitExtensionForPath, getDeclarationEmitOutputFilePath: () => getDeclarationEmitOutputFilePath, getDeclarationEmitOutputFilePathWorker: () => getDeclarationEmitOutputFilePathWorker, getDeclarationFileExtension: () => getDeclarationFileExtension, getDeclarationFromName: () => getDeclarationFromName, getDeclarationModifierFlagsFromSymbol: () => getDeclarationModifierFlagsFromSymbol, getDeclarationOfKind: () => getDeclarationOfKind, getDeclarationsOfKind: () => getDeclarationsOfKind, getDeclaredExpandoInitializer: () => getDeclaredExpandoInitializer, getDecorators: () => getDecorators, getDefaultCompilerOptions: () => getDefaultCompilerOptions2, getDefaultFormatCodeSettings: () => getDefaultFormatCodeSettings, getDefaultLibFileName: () => getDefaultLibFileName, getDefaultLibFilePath: () => getDefaultLibFilePath, getDefaultLikeExportInfo: () => getDefaultLikeExportInfo, getDefaultLikeExportNameFromDeclaration: () => getDefaultLikeExportNameFromDeclaration, getDefaultResolutionModeForFileWorker: () => getDefaultResolutionModeForFileWorker, getDiagnosticText: () => getDiagnosticText, getDiagnosticsWithinSpan: () => getDiagnosticsWithinSpan, getDirectoryPath: () => getDirectoryPath, getDirectoryToWatchFailedLookupLocation: () => getDirectoryToWatchFailedLookupLocation, getDirectoryToWatchFailedLookupLocationFromTypeRoot: () => getDirectoryToWatchFailedLookupLocationFromTypeRoot, getDocumentPositionMapper: () => getDocumentPositionMapper, getDocumentSpansEqualityComparer: () => getDocumentSpansEqualityComparer, getESModuleInterop: () => getESModuleInterop, getEditsForFileRename: () => getEditsForFileRename, getEffectiveBaseTypeNode: () => getEffectiveBaseTypeNode, getEffectiveConstraintOfTypeParameter: () => getEffectiveConstraintOfTypeParameter, getEffectiveContainerForJSDocTemplateTag: () => getEffectiveContainerForJSDocTemplateTag, getEffectiveImplementsTypeNodes: () => getEffectiveImplementsTypeNodes, getEffectiveInitializer: () => getEffectiveInitializer, getEffectiveJSDocHost: () => getEffectiveJSDocHost, getEffectiveModifierFlags: () => getEffectiveModifierFlags, getEffectiveModifierFlagsAlwaysIncludeJSDoc: () => getEffectiveModifierFlagsAlwaysIncludeJSDoc, getEffectiveModifierFlagsNoCache: () => getEffectiveModifierFlagsNoCache, getEffectiveReturnTypeNode: () => getEffectiveReturnTypeNode, getEffectiveSetAccessorTypeAnnotationNode: () => getEffectiveSetAccessorTypeAnnotationNode, getEffectiveTypeAnnotationNode: () => getEffectiveTypeAnnotationNode, getEffectiveTypeParameterDeclarations: () => getEffectiveTypeParameterDeclarations, getEffectiveTypeRoots: () => getEffectiveTypeRoots, getElementOrPropertyAccessArgumentExpressionOrName: () => getElementOrPropertyAccessArgumentExpressionOrName, getElementOrPropertyAccessName: () => getElementOrPropertyAccessName, getElementsOfBindingOrAssignmentPattern: () => getElementsOfBindingOrAssignmentPattern, getEmitDeclarations: () => getEmitDeclarations, getEmitFlags: () => getEmitFlags, getEmitHelpers: () => getEmitHelpers, getEmitModuleDetectionKind: () => getEmitModuleDetectionKind, getEmitModuleFormatOfFileWorker: () => getEmitModuleFormatOfFileWorker, getEmitModuleKind: () => getEmitModuleKind, getEmitModuleResolutionKind: () => getEmitModuleResolutionKind, getEmitScriptTarget: () => getEmitScriptTarget, getEmitStandardClassFields: () => getEmitStandardClassFields, getEnclosingBlockScopeContainer: () => getEnclosingBlockScopeContainer, getEnclosingContainer: () => getEnclosingContainer, getEncodedSemanticClassifications: () => getEncodedSemanticClassifications, getEncodedSyntacticClassifications: () => getEncodedSyntacticClassifications, getEndLinePosition: () => getEndLinePosition, getEntityNameFromTypeNode: () => getEntityNameFromTypeNode, getEntrypointsFromPackageJsonInfo: () => getEntrypointsFromPackageJsonInfo, getErrorCountForSummary: () => getErrorCountForSummary, getErrorSpanForNode: () => getErrorSpanForNode, getErrorSummaryText: () => getErrorSummaryText, getEscapedTextOfIdentifierOrLiteral: () => getEscapedTextOfIdentifierOrLiteral, getEscapedTextOfJsxAttributeName: () => getEscapedTextOfJsxAttributeName, getEscapedTextOfJsxNamespacedName: () => getEscapedTextOfJsxNamespacedName, getExpandoInitializer: () => getExpandoInitializer, getExportAssignmentExpression: () => getExportAssignmentExpression, getExportInfoMap: () => getExportInfoMap, getExportNeedsImportStarHelper: () => getExportNeedsImportStarHelper, getExpressionAssociativity: () => getExpressionAssociativity, getExpressionPrecedence: () => getExpressionPrecedence, getExternalHelpersModuleName: () => getExternalHelpersModuleName, getExternalModuleImportEqualsDeclarationExpression: () => getExternalModuleImportEqualsDeclarationExpression, getExternalModuleName: () => getExternalModuleName, getExternalModuleNameFromDeclaration: () => getExternalModuleNameFromDeclaration, getExternalModuleNameFromPath: () => getExternalModuleNameFromPath, getExternalModuleNameLiteral: () => getExternalModuleNameLiteral, getExternalModuleRequireArgument: () => getExternalModuleRequireArgument, getFallbackOptions: () => getFallbackOptions, getFileEmitOutput: () => getFileEmitOutput, getFileMatcherPatterns: () => getFileMatcherPatterns, getFileNamesFromConfigSpecs: () => getFileNamesFromConfigSpecs, getFileWatcherEventKind: () => getFileWatcherEventKind, getFilesInErrorForSummary: () => getFilesInErrorForSummary, getFirstConstructorWithBody: () => getFirstConstructorWithBody, getFirstIdentifier: () => getFirstIdentifier, getFirstNonSpaceCharacterPosition: () => getFirstNonSpaceCharacterPosition, getFirstProjectOutput: () => getFirstProjectOutput, getFixableErrorSpanExpression: () => getFixableErrorSpanExpression, getFormatCodeSettingsForWriting: () => getFormatCodeSettingsForWriting, getFullWidth: () => getFullWidth, getFunctionFlags: () => getFunctionFlags, getHeritageClause: () => getHeritageClause, getHostSignatureFromJSDoc: () => getHostSignatureFromJSDoc, getIdentifierAutoGenerate: () => getIdentifierAutoGenerate, getIdentifierGeneratedImportReference: () => getIdentifierGeneratedImportReference, getIdentifierTypeArguments: () => getIdentifierTypeArguments, getImmediatelyInvokedFunctionExpression: () => getImmediatelyInvokedFunctionExpression, getImpliedNodeFormatForEmitWorker: () => getImpliedNodeFormatForEmitWorker, getImpliedNodeFormatForFile: () => getImpliedNodeFormatForFile, getImpliedNodeFormatForFileWorker: () => getImpliedNodeFormatForFileWorker, getImportNeedsImportDefaultHelper: () => getImportNeedsImportDefaultHelper, getImportNeedsImportStarHelper: () => getImportNeedsImportStarHelper, getIndentString: () => getIndentString, getInferredLibraryNameResolveFrom: () => getInferredLibraryNameResolveFrom, getInitializedVariables: () => getInitializedVariables, getInitializerOfBinaryExpression: () => getInitializerOfBinaryExpression, getInitializerOfBindingOrAssignmentElement: () => getInitializerOfBindingOrAssignmentElement, getInterfaceBaseTypeNodes: () => getInterfaceBaseTypeNodes, getInternalEmitFlags: () => getInternalEmitFlags, getInvokedExpression: () => getInvokedExpression, getIsFileExcluded: () => getIsFileExcluded, getIsolatedModules: () => getIsolatedModules, getJSDocAugmentsTag: () => getJSDocAugmentsTag, getJSDocClassTag: () => getJSDocClassTag, getJSDocCommentRanges: () => getJSDocCommentRanges, getJSDocCommentsAndTags: () => getJSDocCommentsAndTags, getJSDocDeprecatedTag: () => getJSDocDeprecatedTag, getJSDocDeprecatedTagNoCache: () => getJSDocDeprecatedTagNoCache, getJSDocEnumTag: () => getJSDocEnumTag, getJSDocHost: () => getJSDocHost, getJSDocImplementsTags: () => getJSDocImplementsTags, getJSDocOverloadTags: () => getJSDocOverloadTags, getJSDocOverrideTagNoCache: () => getJSDocOverrideTagNoCache, getJSDocParameterTags: () => getJSDocParameterTags, getJSDocParameterTagsNoCache: () => getJSDocParameterTagsNoCache, getJSDocPrivateTag: () => getJSDocPrivateTag, getJSDocPrivateTagNoCache: () => getJSDocPrivateTagNoCache, getJSDocProtectedTag: () => getJSDocProtectedTag, getJSDocProtectedTagNoCache: () => getJSDocProtectedTagNoCache, getJSDocPublicTag: () => getJSDocPublicTag, getJSDocPublicTagNoCache: () => getJSDocPublicTagNoCache, getJSDocReadonlyTag: () => getJSDocReadonlyTag, getJSDocReadonlyTagNoCache: () => getJSDocReadonlyTagNoCache, getJSDocReturnTag: () => getJSDocReturnTag, getJSDocReturnType: () => getJSDocReturnType, getJSDocRoot: () => getJSDocRoot, getJSDocSatisfiesExpressionType: () => getJSDocSatisfiesExpressionType, getJSDocSatisfiesTag: () => getJSDocSatisfiesTag, getJSDocTags: () => getJSDocTags, getJSDocTemplateTag: () => getJSDocTemplateTag, getJSDocThisTag: () => getJSDocThisTag, getJSDocType: () => getJSDocType, getJSDocTypeAliasName: () => getJSDocTypeAliasName, getJSDocTypeAssertionType: () => getJSDocTypeAssertionType, getJSDocTypeParameterDeclarations: () => getJSDocTypeParameterDeclarations, getJSDocTypeParameterTags: () => getJSDocTypeParameterTags, getJSDocTypeParameterTagsNoCache: () => getJSDocTypeParameterTagsNoCache, getJSDocTypeTag: () => getJSDocTypeTag, getJSXImplicitImportBase: () => getJSXImplicitImportBase, getJSXRuntimeImport: () => getJSXRuntimeImport, getJSXTransformEnabled: () => getJSXTransformEnabled, getKeyForCompilerOptions: () => getKeyForCompilerOptions, getLanguageVariant: () => getLanguageVariant, getLastChild: () => getLastChild, getLeadingCommentRanges: () => getLeadingCommentRanges, getLeadingCommentRangesOfNode: () => getLeadingCommentRangesOfNode, getLeftmostAccessExpression: () => getLeftmostAccessExpression, getLeftmostExpression: () => getLeftmostExpression, getLibFileNameFromLibReference: () => getLibFileNameFromLibReference, getLibNameFromLibReference: () => getLibNameFromLibReference, getLibraryNameFromLibFileName: () => getLibraryNameFromLibFileName, getLineAndCharacterOfPosition: () => getLineAndCharacterOfPosition, getLineInfo: () => getLineInfo, getLineOfLocalPosition: () => getLineOfLocalPosition, getLineStartPositionForPosition: () => getLineStartPositionForPosition, getLineStarts: () => getLineStarts, getLinesBetweenPositionAndNextNonWhitespaceCharacter: () => getLinesBetweenPositionAndNextNonWhitespaceCharacter, getLinesBetweenPositionAndPrecedingNonWhitespaceCharacter: () => getLinesBetweenPositionAndPrecedingNonWhitespaceCharacter, getLinesBetweenPositions: () => getLinesBetweenPositions, getLinesBetweenRangeEndAndRangeStart: () => getLinesBetweenRangeEndAndRangeStart, getLinesBetweenRangeEndPositions: () => getLinesBetweenRangeEndPositions, getLiteralText: () => getLiteralText, getLocalNameForExternalImport: () => getLocalNameForExternalImport, getLocalSymbolForExportDefault: () => getLocalSymbolForExportDefault, getLocaleSpecificMessage: () => getLocaleSpecificMessage, getLocaleTimeString: () => getLocaleTimeString, getMappedContextSpan: () => getMappedContextSpan, getMappedDocumentSpan: () => getMappedDocumentSpan, getMappedLocation: () => getMappedLocation, getMatchedFileSpec: () => getMatchedFileSpec, getMatchedIncludeSpec: () => getMatchedIncludeSpec, getMeaningFromDeclaration: () => getMeaningFromDeclaration, getMeaningFromLocation: () => getMeaningFromLocation, getMembersOfDeclaration: () => getMembersOfDeclaration, getModeForFileReference: () => getModeForFileReference, getModeForResolutionAtIndex: () => getModeForResolutionAtIndex, getModeForUsageLocation: () => getModeForUsageLocation, getModifiedTime: () => getModifiedTime, getModifiers: () => getModifiers, getModuleInstanceState: () => getModuleInstanceState, getModuleNameStringLiteralAt: () => getModuleNameStringLiteralAt, getModuleSpecifierEndingPreference: () => getModuleSpecifierEndingPreference, getModuleSpecifierOfBareOrAccessedRequire: () => getModuleSpecifierOfBareOrAccessedRequire, getModuleSpecifierResolverHost: () => getModuleSpecifierResolverHost, getNameForExportedSymbol: () => getNameForExportedSymbol, getNameFromImportAttribute: () => getNameFromImportAttribute, getNameFromIndexInfo: () => getNameFromIndexInfo, getNameFromPropertyName: () => getNameFromPropertyName, getNameOfAccessExpression: () => getNameOfAccessExpression, getNameOfCompilerOptionValue: () => getNameOfCompilerOptionValue, getNameOfDeclaration: () => getNameOfDeclaration, getNameOfExpando: () => getNameOfExpando, getNameOfJSDocTypedef: () => getNameOfJSDocTypedef, getNameOfScriptTarget: () => getNameOfScriptTarget, getNameOrArgument: () => getNameOrArgument, getNameTable: () => getNameTable, getNamespaceDeclarationNode: () => getNamespaceDeclarationNode, getNewLineCharacter: () => getNewLineCharacter, getNewLineKind: () => getNewLineKind, getNewLineOrDefaultFromHost: () => getNewLineOrDefaultFromHost, getNewTargetContainer: () => getNewTargetContainer, getNextJSDocCommentLocation: () => getNextJSDocCommentLocation, getNodeChildren: () => getNodeChildren, getNodeForGeneratedName: () => getNodeForGeneratedName, getNodeId: () => getNodeId, getNodeKind: () => getNodeKind, getNodeModifiers: () => getNodeModifiers, getNodeModulePathParts: () => getNodeModulePathParts, getNonAssignedNameOfDeclaration: () => getNonAssignedNameOfDeclaration, getNonAssignmentOperatorForCompoundAssignment: () => getNonAssignmentOperatorForCompoundAssignment, getNonAugmentationDeclaration: () => getNonAugmentationDeclaration, getNonDecoratorTokenPosOfNode: () => getNonDecoratorTokenPosOfNode, getNonIncrementalBuildInfoRoots: () => getNonIncrementalBuildInfoRoots, getNormalizedAbsolutePath: () => getNormalizedAbsolutePath, getNormalizedAbsolutePathWithoutRoot: () => getNormalizedAbsolutePathWithoutRoot, getNormalizedPathComponents: () => getNormalizedPathComponents, getObjectFlags: () => getObjectFlags, getOperatorAssociativity: () => getOperatorAssociativity, getOperatorPrecedence: () => getOperatorPrecedence, getOptionFromName: () => getOptionFromName, getOptionsForLibraryResolution: () => getOptionsForLibraryResolution, getOptionsNameMap: () => getOptionsNameMap, getOptionsSyntaxByArrayElementValue: () => getOptionsSyntaxByArrayElementValue, getOptionsSyntaxByValue: () => getOptionsSyntaxByValue, getOrCreateEmitNode: () => getOrCreateEmitNode, getOrUpdate: () => getOrUpdate, getOriginalNode: () => getOriginalNode, getOriginalNodeId: () => getOriginalNodeId, getOutputDeclarationFileName: () => getOutputDeclarationFileName, getOutputDeclarationFileNameWorker: () => getOutputDeclarationFileNameWorker, getOutputExtension: () => getOutputExtension, getOutputFileNames: () => getOutputFileNames, getOutputJSFileNameWorker: () => getOutputJSFileNameWorker, getOutputPathsFor: () => getOutputPathsFor, getOwnEmitOutputFilePath: () => getOwnEmitOutputFilePath, getOwnKeys: () => getOwnKeys, getOwnValues: () => getOwnValues, getPackageJsonTypesVersionsPaths: () => getPackageJsonTypesVersionsPaths, getPackageNameFromTypesPackageName: () => getPackageNameFromTypesPackageName, getPackageScopeForPath: () => getPackageScopeForPath, getParameterSymbolFromJSDoc: () => getParameterSymbolFromJSDoc, getParentNodeInSpan: () => getParentNodeInSpan, getParseTreeNode: () => getParseTreeNode, getParsedCommandLineOfConfigFile: () => getParsedCommandLineOfConfigFile, getPathComponents: () => getPathComponents, getPathFromPathComponents: () => getPathFromPathComponents, getPathUpdater: () => getPathUpdater, getPathsBasePath: () => getPathsBasePath, getPatternFromSpec: () => getPatternFromSpec, getPendingEmitKindWithSeen: () => getPendingEmitKindWithSeen, getPositionOfLineAndCharacter: () => getPositionOfLineAndCharacter, getPossibleGenericSignatures: () => getPossibleGenericSignatures, getPossibleOriginalInputExtensionForExtension: () => getPossibleOriginalInputExtensionForExtension, getPossibleOriginalInputPathWithoutChangingExt: () => getPossibleOriginalInputPathWithoutChangingExt, getPossibleTypeArgumentsInfo: () => getPossibleTypeArgumentsInfo, getPreEmitDiagnostics: () => getPreEmitDiagnostics, getPrecedingNonSpaceCharacterPosition: () => getPrecedingNonSpaceCharacterPosition, getPrivateIdentifier: () => getPrivateIdentifier, getProperties: () => getProperties, getProperty: () => getProperty, getPropertyAssignmentAliasLikeExpression: () => getPropertyAssignmentAliasLikeExpression, getPropertyNameForPropertyNameNode: () => getPropertyNameForPropertyNameNode, getPropertyNameFromType: () => getPropertyNameFromType, getPropertyNameOfBindingOrAssignmentElement: () => getPropertyNameOfBindingOrAssignmentElement, getPropertySymbolFromBindingElement: () => getPropertySymbolFromBindingElement, getPropertySymbolsFromContextualType: () => getPropertySymbolsFromContextualType, getQuoteFromPreference: () => getQuoteFromPreference, getQuotePreference: () => getQuotePreference, getRangesWhere: () => getRangesWhere, getRefactorContextSpan: () => getRefactorContextSpan, getReferencedFileLocation: () => getReferencedFileLocation, getRegexFromPattern: () => getRegexFromPattern, getRegularExpressionForWildcard: () => getRegularExpressionForWildcard, getRegularExpressionsForWildcards: () => getRegularExpressionsForWildcards, getRelativePathFromDirectory: () => getRelativePathFromDirectory, getRelativePathFromFile: () => getRelativePathFromFile, getRelativePathToDirectoryOrUrl: () => getRelativePathToDirectoryOrUrl, getRenameLocation: () => getRenameLocation, getReplacementSpanForContextToken: () => getReplacementSpanForContextToken, getResolutionDiagnostic: () => getResolutionDiagnostic, getResolutionModeOverride: () => getResolutionModeOverride, getResolveJsonModule: () => getResolveJsonModule, getResolvePackageJsonExports: () => getResolvePackageJsonExports, getResolvePackageJsonImports: () => getResolvePackageJsonImports, getResolvedExternalModuleName: () => getResolvedExternalModuleName, getResolvedModuleFromResolution: () => getResolvedModuleFromResolution, getResolvedTypeReferenceDirectiveFromResolution: () => getResolvedTypeReferenceDirectiveFromResolution, getRestIndicatorOfBindingOrAssignmentElement: () => getRestIndicatorOfBindingOrAssignmentElement, getRestParameterElementType: () => getRestParameterElementType, getRightMostAssignedExpression: () => getRightMostAssignedExpression, getRootDeclaration: () => getRootDeclaration, getRootDirectoryOfResolutionCache: () => getRootDirectoryOfResolutionCache, getRootLength: () => getRootLength, getScriptKind: () => getScriptKind, getScriptKindFromFileName: () => getScriptKindFromFileName, getScriptTargetFeatures: () => getScriptTargetFeatures, getSelectedEffectiveModifierFlags: () => getSelectedEffectiveModifierFlags, getSelectedSyntacticModifierFlags: () => getSelectedSyntacticModifierFlags, getSemanticClassifications: () => getSemanticClassifications, getSemanticJsxChildren: () => getSemanticJsxChildren, getSetAccessorTypeAnnotationNode: () => getSetAccessorTypeAnnotationNode, getSetAccessorValueParameter: () => getSetAccessorValueParameter, getSetExternalModuleIndicator: () => getSetExternalModuleIndicator, getShebang: () => getShebang, getSingleVariableOfVariableStatement: () => getSingleVariableOfVariableStatement, getSnapshotText: () => getSnapshotText, getSnippetElement: () => getSnippetElement, getSourceFileOfModule: () => getSourceFileOfModule, getSourceFileOfNode: () => getSourceFileOfNode, getSourceFilePathInNewDir: () => getSourceFilePathInNewDir, getSourceFileVersionAsHashFromText: () => getSourceFileVersionAsHashFromText, getSourceFilesToEmit: () => getSourceFilesToEmit, getSourceMapRange: () => getSourceMapRange, getSourceMapper: () => getSourceMapper, getSourceTextOfNodeFromSourceFile: () => getSourceTextOfNodeFromSourceFile, getSpanOfTokenAtPosition: () => getSpanOfTokenAtPosition, getSpellingSuggestion: () => getSpellingSuggestion, getStartPositionOfLine: () => getStartPositionOfLine, getStartPositionOfRange: () => getStartPositionOfRange, getStartsOnNewLine: () => getStartsOnNewLine, getStaticPropertiesAndClassStaticBlock: () => getStaticPropertiesAndClassStaticBlock, getStrictOptionValue: () => getStrictOptionValue, getStringComparer: () => getStringComparer, getSubPatternFromSpec: () => getSubPatternFromSpec, getSuperCallFromStatement: () => getSuperCallFromStatement, getSuperContainer: () => getSuperContainer, getSupportedCodeFixes: () => getSupportedCodeFixes, getSupportedExtensions: () => getSupportedExtensions, getSupportedExtensionsWithJsonIfResolveJsonModule: () => getSupportedExtensionsWithJsonIfResolveJsonModule, getSwitchedType: () => getSwitchedType, getSymbolId: () => getSymbolId, getSymbolNameForPrivateIdentifier: () => getSymbolNameForPrivateIdentifier, getSymbolTarget: () => getSymbolTarget, getSyntacticClassifications: () => getSyntacticClassifications, getSyntacticModifierFlags: () => getSyntacticModifierFlags, getSyntacticModifierFlagsNoCache: () => getSyntacticModifierFlagsNoCache, getSynthesizedDeepClone: () => getSynthesizedDeepClone, getSynthesizedDeepCloneWithReplacements: () => getSynthesizedDeepCloneWithReplacements, getSynthesizedDeepClones: () => getSynthesizedDeepClones, getSynthesizedDeepClonesWithReplacements: () => getSynthesizedDeepClonesWithReplacements, getSyntheticLeadingComments: () => getSyntheticLeadingComments, getSyntheticTrailingComments: () => getSyntheticTrailingComments, getTargetLabel: () => getTargetLabel, getTargetOfBindingOrAssignmentElement: () => getTargetOfBindingOrAssignmentElement, getTemporaryModuleResolutionState: () => getTemporaryModuleResolutionState, getTextOfConstantValue: () => getTextOfConstantValue, getTextOfIdentifierOrLiteral: () => getTextOfIdentifierOrLiteral, getTextOfJSDocComment: () => getTextOfJSDocComment, getTextOfJsxAttributeName: () => getTextOfJsxAttributeName, getTextOfJsxNamespacedName: () => getTextOfJsxNamespacedName, getTextOfNode: () => getTextOfNode, getTextOfNodeFromSourceText: () => getTextOfNodeFromSourceText, getTextOfPropertyName: () => getTextOfPropertyName, getThisContainer: () => getThisContainer, getThisParameter: () => getThisParameter, getTokenAtPosition: () => getTokenAtPosition, getTokenPosOfNode: () => getTokenPosOfNode, getTokenSourceMapRange: () => getTokenSourceMapRange, getTouchingPropertyName: () => getTouchingPropertyName, getTouchingToken: () => getTouchingToken, getTrailingCommentRanges: () => getTrailingCommentRanges, getTrailingSemicolonDeferringWriter: () => getTrailingSemicolonDeferringWriter, getTransformers: () => getTransformers, getTsBuildInfoEmitOutputFilePath: () => getTsBuildInfoEmitOutputFilePath, getTsConfigObjectLiteralExpression: () => getTsConfigObjectLiteralExpression, getTsConfigPropArrayElementValue: () => getTsConfigPropArrayElementValue, getTypeAnnotationNode: () => getTypeAnnotationNode, getTypeArgumentOrTypeParameterList: () => getTypeArgumentOrTypeParameterList, getTypeKeywordOfTypeOnlyImport: () => getTypeKeywordOfTypeOnlyImport, getTypeNode: () => getTypeNode, getTypeNodeIfAccessible: () => getTypeNodeIfAccessible, getTypeParameterFromJsDoc: () => getTypeParameterFromJsDoc, getTypeParameterOwner: () => getTypeParameterOwner, getTypesPackageName: () => getTypesPackageName, getUILocale: () => getUILocale, getUniqueName: () => getUniqueName, getUniqueSymbolId: () => getUniqueSymbolId, getUseDefineForClassFields: () => getUseDefineForClassFields, getWatchErrorSummaryDiagnosticMessage: () => getWatchErrorSummaryDiagnosticMessage, getWatchFactory: () => getWatchFactory, group: () => group, groupBy: () => groupBy, guessIndentation: () => guessIndentation, handleNoEmitOptions: () => handleNoEmitOptions, handleWatchOptionsConfigDirTemplateSubstitution: () => handleWatchOptionsConfigDirTemplateSubstitution, hasAbstractModifier: () => hasAbstractModifier, hasAccessorModifier: () => hasAccessorModifier, hasAmbientModifier: () => hasAmbientModifier, hasChangesInResolutions: () => hasChangesInResolutions, hasContextSensitiveParameters: () => hasContextSensitiveParameters, hasDecorators: () => hasDecorators, hasDocComment: () => hasDocComment, hasDynamicName: () => hasDynamicName, hasEffectiveModifier: () => hasEffectiveModifier, hasEffectiveModifiers: () => hasEffectiveModifiers, hasEffectiveReadonlyModifier: () => hasEffectiveReadonlyModifier, hasExtension: () => hasExtension, hasImplementationTSFileExtension: () => hasImplementationTSFileExtension, hasIndexSignature: () => hasIndexSignature, hasInferredType: () => hasInferredType, hasInitializer: () => hasInitializer, hasInvalidEscape: () => hasInvalidEscape, hasJSDocNodes: () => hasJSDocNodes, hasJSDocParameterTags: () => hasJSDocParameterTags, hasJSFileExtension: () => hasJSFileExtension, hasJsonModuleEmitEnabled: () => hasJsonModuleEmitEnabled, hasOnlyExpressionInitializer: () => hasOnlyExpressionInitializer, hasOverrideModifier: () => hasOverrideModifier, hasPossibleExternalModuleReference: () => hasPossibleExternalModuleReference, hasProperty: () => hasProperty, hasPropertyAccessExpressionWithName: () => hasPropertyAccessExpressionWithName, hasQuestionToken: () => hasQuestionToken, hasRecordedExternalHelpers: () => hasRecordedExternalHelpers, hasResolutionModeOverride: () => hasResolutionModeOverride, hasRestParameter: () => hasRestParameter, hasScopeMarker: () => hasScopeMarker, hasStaticModifier: () => hasStaticModifier, hasSyntacticModifier: () => hasSyntacticModifier, hasSyntacticModifiers: () => hasSyntacticModifiers, hasTSFileExtension: () => hasTSFileExtension, hasTabstop: () => hasTabstop, hasTrailingDirectorySeparator: () => hasTrailingDirectorySeparator, hasType: () => hasType, hasTypeArguments: () => hasTypeArguments, hasZeroOrOneAsteriskCharacter: () => hasZeroOrOneAsteriskCharacter, hostGetCanonicalFileName: () => hostGetCanonicalFileName, hostUsesCaseSensitiveFileNames: () => hostUsesCaseSensitiveFileNames, idText: () => idText, identifierIsThisKeyword: () => identifierIsThisKeyword, identifierToKeywordKind: () => identifierToKeywordKind, identity: () => identity, identitySourceMapConsumer: () => identitySourceMapConsumer, ignoreSourceNewlines: () => ignoreSourceNewlines, ignoredPaths: () => ignoredPaths, importFromModuleSpecifier: () => importFromModuleSpecifier, importSyntaxAffectsModuleResolution: () => importSyntaxAffectsModuleResolution, indexOfAnyCharCode: () => indexOfAnyCharCode, indexOfNode: () => indexOfNode, indicesOf: () => indicesOf, inferredTypesContainingFile: () => inferredTypesContainingFile, injectClassNamedEvaluationHelperBlockIfMissing: () => injectClassNamedEvaluationHelperBlockIfMissing, injectClassThisAssignmentIfMissing: () => injectClassThisAssignmentIfMissing, insertImports: () => insertImports, insertSorted: () => insertSorted, insertStatementAfterCustomPrologue: () => insertStatementAfterCustomPrologue, insertStatementAfterStandardPrologue: () => insertStatementAfterStandardPrologue, insertStatementsAfterCustomPrologue: () => insertStatementsAfterCustomPrologue, insertStatementsAfterStandardPrologue: () => insertStatementsAfterStandardPrologue, intersperse: () => intersperse, intrinsicTagNameToString: () => intrinsicTagNameToString, introducesArgumentsExoticObject: () => introducesArgumentsExoticObject, inverseJsxOptionMap: () => inverseJsxOptionMap, isAbstractConstructorSymbol: () => isAbstractConstructorSymbol, isAbstractModifier: () => isAbstractModifier, isAccessExpression: () => isAccessExpression, isAccessibilityModifier: () => isAccessibilityModifier, isAccessor: () => isAccessor, isAccessorModifier: () => isAccessorModifier, isAliasableExpression: () => isAliasableExpression, isAmbientModule: () => isAmbientModule, isAmbientPropertyDeclaration: () => isAmbientPropertyDeclaration, isAnyDirectorySeparator: () => isAnyDirectorySeparator, isAnyImportOrBareOrAccessedRequire: () => isAnyImportOrBareOrAccessedRequire, isAnyImportOrReExport: () => isAnyImportOrReExport, isAnyImportOrRequireStatement: () => isAnyImportOrRequireStatement, isAnyImportSyntax: () => isAnyImportSyntax, isAnySupportedFileExtension: () => isAnySupportedFileExtension, isApplicableVersionedTypesKey: () => isApplicableVersionedTypesKey, isArgumentExpressionOfElementAccess: () => isArgumentExpressionOfElementAccess, isArray: () => isArray, isArrayBindingElement: () => isArrayBindingElement, isArrayBindingOrAssignmentElement: () => isArrayBindingOrAssignmentElement, isArrayBindingOrAssignmentPattern: () => isArrayBindingOrAssignmentPattern, isArrayBindingPattern: () => isArrayBindingPattern, isArrayLiteralExpression: () => isArrayLiteralExpression, isArrayLiteralOrObjectLiteralDestructuringPattern: () => isArrayLiteralOrObjectLiteralDestructuringPattern, isArrayTypeNode: () => isArrayTypeNode, isArrowFunction: () => isArrowFunction, isAsExpression: () => isAsExpression, isAssertClause: () => isAssertClause, isAssertEntry: () => isAssertEntry, isAssertionExpression: () => isAssertionExpression, isAssertsKeyword: () => isAssertsKeyword, isAssignmentDeclaration: () => isAssignmentDeclaration, isAssignmentExpression: () => isAssignmentExpression, isAssignmentOperator: () => isAssignmentOperator, isAssignmentPattern: () => isAssignmentPattern, isAssignmentTarget: () => isAssignmentTarget, isAsteriskToken: () => isAsteriskToken, isAsyncFunction: () => isAsyncFunction, isAsyncModifier: () => isAsyncModifier, isAutoAccessorPropertyDeclaration: () => isAutoAccessorPropertyDeclaration, isAwaitExpression: () => isAwaitExpression, isAwaitKeyword: () => isAwaitKeyword, isBigIntLiteral: () => isBigIntLiteral, isBinaryExpression: () => isBinaryExpression, isBinaryLogicalOperator: () => isBinaryLogicalOperator, isBinaryOperatorToken: () => isBinaryOperatorToken, isBindableObjectDefinePropertyCall: () => isBindableObjectDefinePropertyCall, isBindableStaticAccessExpression: () => isBindableStaticAccessExpression, isBindableStaticElementAccessExpression: () => isBindableStaticElementAccessExpression, isBindableStaticNameExpression: () => isBindableStaticNameExpression, isBindingElement: () => isBindingElement, isBindingElementOfBareOrAccessedRequire: () => isBindingElementOfBareOrAccessedRequire, isBindingName: () => isBindingName, isBindingOrAssignmentElement: () => isBindingOrAssignmentElement, isBindingOrAssignmentPattern: () => isBindingOrAssignmentPattern, isBindingPattern: () => isBindingPattern, isBlock: () => isBlock, isBlockLike: () => isBlockLike, isBlockOrCatchScoped: () => isBlockOrCatchScoped, isBlockScope: () => isBlockScope, isBlockScopedContainerTopLevel: () => isBlockScopedContainerTopLevel, isBooleanLiteral: () => isBooleanLiteral, isBreakOrContinueStatement: () => isBreakOrContinueStatement, isBreakStatement: () => isBreakStatement, isBuildCommand: () => isBuildCommand, isBuildInfoFile: () => isBuildInfoFile, isBuilderProgram: () => isBuilderProgram, isBundle: () => isBundle, isCallChain: () => isCallChain, isCallExpression: () => isCallExpression, isCallExpressionTarget: () => isCallExpressionTarget, isCallLikeExpression: () => isCallLikeExpression, isCallLikeOrFunctionLikeExpression: () => isCallLikeOrFunctionLikeExpression, isCallOrNewExpression: () => isCallOrNewExpression, isCallOrNewExpressionTarget: () => isCallOrNewExpressionTarget, isCallSignatureDeclaration: () => isCallSignatureDeclaration, isCallToHelper: () => isCallToHelper, isCaseBlock: () => isCaseBlock, isCaseClause: () => isCaseClause, isCaseKeyword: () => isCaseKeyword, isCaseOrDefaultClause: () => isCaseOrDefaultClause, isCatchClause: () => isCatchClause, isCatchClauseVariableDeclaration: () => isCatchClauseVariableDeclaration, isCatchClauseVariableDeclarationOrBindingElement: () => isCatchClauseVariableDeclarationOrBindingElement, isCheckJsEnabledForFile: () => isCheckJsEnabledForFile, isCircularBuildOrder: () => isCircularBuildOrder, isClassDeclaration: () => isClassDeclaration, isClassElement: () => isClassElement, isClassExpression: () => isClassExpression, isClassInstanceProperty: () => isClassInstanceProperty, isClassLike: () => isClassLike, isClassMemberModifier: () => isClassMemberModifier, isClassNamedEvaluationHelperBlock: () => isClassNamedEvaluationHelperBlock, isClassOrTypeElement: () => isClassOrTypeElement, isClassStaticBlockDeclaration: () => isClassStaticBlockDeclaration, isClassThisAssignmentBlock: () => isClassThisAssignmentBlock, isColonToken: () => isColonToken, isCommaExpression: () => isCommaExpression, isCommaListExpression: () => isCommaListExpression, isCommaSequence: () => isCommaSequence, isCommaToken: () => isCommaToken, isComment: () => isComment, isCommonJsExportPropertyAssignment: () => isCommonJsExportPropertyAssignment, isCommonJsExportedExpression: () => isCommonJsExportedExpression, isCompoundAssignment: () => isCompoundAssignment, isComputedNonLiteralName: () => isComputedNonLiteralName, isComputedPropertyName: () => isComputedPropertyName, isConciseBody: () => isConciseBody, isConditionalExpression: () => isConditionalExpression, isConditionalTypeNode: () => isConditionalTypeNode, isConstAssertion: () => isConstAssertion, isConstTypeReference: () => isConstTypeReference, isConstructSignatureDeclaration: () => isConstructSignatureDeclaration, isConstructorDeclaration: () => isConstructorDeclaration, isConstructorTypeNode: () => isConstructorTypeNode, isContextualKeyword: () => isContextualKeyword, isContinueStatement: () => isContinueStatement, isCustomPrologue: () => isCustomPrologue, isDebuggerStatement: () => isDebuggerStatement, isDeclaration: () => isDeclaration, isDeclarationBindingElement: () => isDeclarationBindingElement, isDeclarationFileName: () => isDeclarationFileName, isDeclarationName: () => isDeclarationName, isDeclarationNameOfEnumOrNamespace: () => isDeclarationNameOfEnumOrNamespace, isDeclarationReadonly: () => isDeclarationReadonly, isDeclarationStatement: () => isDeclarationStatement, isDeclarationWithTypeParameterChildren: () => isDeclarationWithTypeParameterChildren, isDeclarationWithTypeParameters: () => isDeclarationWithTypeParameters, isDecorator: () => isDecorator, isDecoratorTarget: () => isDecoratorTarget, isDefaultClause: () => isDefaultClause, isDefaultImport: () => isDefaultImport, isDefaultModifier: () => isDefaultModifier, isDefaultedExpandoInitializer: () => isDefaultedExpandoInitializer, isDeleteExpression: () => isDeleteExpression, isDeleteTarget: () => isDeleteTarget, isDeprecatedDeclaration: () => isDeprecatedDeclaration, isDestructuringAssignment: () => isDestructuringAssignment, isDiskPathRoot: () => isDiskPathRoot, isDoStatement: () => isDoStatement, isDocumentRegistryEntry: () => isDocumentRegistryEntry, isDotDotDotToken: () => isDotDotDotToken, isDottedName: () => isDottedName, isDynamicName: () => isDynamicName, isEffectiveExternalModule: () => isEffectiveExternalModule, isEffectiveStrictModeSourceFile: () => isEffectiveStrictModeSourceFile, isElementAccessChain: () => isElementAccessChain, isElementAccessExpression: () => isElementAccessExpression, isEmittedFileOfProgram: () => isEmittedFileOfProgram, isEmptyArrayLiteral: () => isEmptyArrayLiteral, isEmptyBindingElement: () => isEmptyBindingElement, isEmptyBindingPattern: () => isEmptyBindingPattern, isEmptyObjectLiteral: () => isEmptyObjectLiteral, isEmptyStatement: () => isEmptyStatement, isEmptyStringLiteral: () => isEmptyStringLiteral, isEntityName: () => isEntityName, isEntityNameExpression: () => isEntityNameExpression, isEnumConst: () => isEnumConst, isEnumDeclaration: () => isEnumDeclaration, isEnumMember: () => isEnumMember, isEqualityOperatorKind: () => isEqualityOperatorKind, isEqualsGreaterThanToken: () => isEqualsGreaterThanToken, isExclamationToken: () => isExclamationToken, isExcludedFile: () => isExcludedFile, isExclusivelyTypeOnlyImportOrExport: () => isExclusivelyTypeOnlyImportOrExport, isExpandoPropertyDeclaration: () => isExpandoPropertyDeclaration, isExportAssignment: () => isExportAssignment, isExportDeclaration: () => isExportDeclaration, isExportModifier: () => isExportModifier, isExportName: () => isExportName, isExportNamespaceAsDefaultDeclaration: () => isExportNamespaceAsDefaultDeclaration, isExportOrDefaultModifier: () => isExportOrDefaultModifier, isExportSpecifier: () => isExportSpecifier, isExportsIdentifier: () => isExportsIdentifier, isExportsOrModuleExportsOrAlias: () => isExportsOrModuleExportsOrAlias, isExpression: () => isExpression, isExpressionNode: () => isExpressionNode, isExpressionOfExternalModuleImportEqualsDeclaration: () => isExpressionOfExternalModuleImportEqualsDeclaration, isExpressionOfOptionalChainRoot: () => isExpressionOfOptionalChainRoot, isExpressionStatement: () => isExpressionStatement, isExpressionWithTypeArguments: () => isExpressionWithTypeArguments, isExpressionWithTypeArgumentsInClassExtendsClause: () => isExpressionWithTypeArgumentsInClassExtendsClause, isExternalModule: () => isExternalModule, isExternalModuleAugmentation: () => isExternalModuleAugmentation, isExternalModuleImportEqualsDeclaration: () => isExternalModuleImportEqualsDeclaration, isExternalModuleIndicator: () => isExternalModuleIndicator, isExternalModuleNameRelative: () => isExternalModuleNameRelative, isExternalModuleReference: () => isExternalModuleReference, isExternalModuleSymbol: () => isExternalModuleSymbol, isExternalOrCommonJsModule: () => isExternalOrCommonJsModule, isFileLevelReservedGeneratedIdentifier: () => isFileLevelReservedGeneratedIdentifier, isFileLevelUniqueName: () => isFileLevelUniqueName, isFileProbablyExternalModule: () => isFileProbablyExternalModule, isFirstDeclarationOfSymbolParameter: () => isFirstDeclarationOfSymbolParameter, isFixablePromiseHandler: () => isFixablePromiseHandler, isForInOrOfStatement: () => isForInOrOfStatement, isForInStatement: () => isForInStatement, isForInitializer: () => isForInitializer, isForOfStatement: () => isForOfStatement, isForStatement: () => isForStatement, isFullSourceFile: () => isFullSourceFile, isFunctionBlock: () => isFunctionBlock, isFunctionBody: () => isFunctionBody, isFunctionDeclaration: () => isFunctionDeclaration, isFunctionExpression: () => isFunctionExpression, isFunctionExpressionOrArrowFunction: () => isFunctionExpressionOrArrowFunction, isFunctionLike: () => isFunctionLike, isFunctionLikeDeclaration: () => isFunctionLikeDeclaration, isFunctionLikeKind: () => isFunctionLikeKind, isFunctionLikeOrClassStaticBlockDeclaration: () => isFunctionLikeOrClassStaticBlockDeclaration, isFunctionOrConstructorTypeNode: () => isFunctionOrConstructorTypeNode, isFunctionOrModuleBlock: () => isFunctionOrModuleBlock, isFunctionSymbol: () => isFunctionSymbol, isFunctionTypeNode: () => isFunctionTypeNode, isGeneratedIdentifier: () => isGeneratedIdentifier, isGeneratedPrivateIdentifier: () => isGeneratedPrivateIdentifier, isGetAccessor: () => isGetAccessor, isGetAccessorDeclaration: () => isGetAccessorDeclaration, isGetOrSetAccessorDeclaration: () => isGetOrSetAccessorDeclaration, isGlobalScopeAugmentation: () => isGlobalScopeAugmentation, isGlobalSourceFile: () => isGlobalSourceFile, isGrammarError: () => isGrammarError, isHeritageClause: () => isHeritageClause, isHoistedFunction: () => isHoistedFunction, isHoistedVariableStatement: () => isHoistedVariableStatement, isIdentifier: () => isIdentifier, isIdentifierANonContextualKeyword: () => isIdentifierANonContextualKeyword, isIdentifierName: () => isIdentifierName, isIdentifierOrThisTypeNode: () => isIdentifierOrThisTypeNode, isIdentifierPart: () => isIdentifierPart, isIdentifierStart: () => isIdentifierStart, isIdentifierText: () => isIdentifierText, isIdentifierTypePredicate: () => isIdentifierTypePredicate, isIdentifierTypeReference: () => isIdentifierTypeReference, isIfStatement: () => isIfStatement, isIgnoredFileFromWildCardWatching: () => isIgnoredFileFromWildCardWatching, isImplicitGlob: () => isImplicitGlob, isImportAttribute: () => isImportAttribute, isImportAttributeName: () => isImportAttributeName, isImportAttributes: () => isImportAttributes, isImportCall: () => isImportCall, isImportClause: () => isImportClause, isImportDeclaration: () => isImportDeclaration, isImportEqualsDeclaration: () => isImportEqualsDeclaration, isImportKeyword: () => isImportKeyword, isImportMeta: () => isImportMeta, isImportOrExportSpecifier: () => isImportOrExportSpecifier, isImportOrExportSpecifierName: () => isImportOrExportSpecifierName, isImportSpecifier: () => isImportSpecifier, isImportTypeAssertionContainer: () => isImportTypeAssertionContainer, isImportTypeNode: () => isImportTypeNode, isImportable: () => isImportable, isInComment: () => isInComment, isInCompoundLikeAssignment: () => isInCompoundLikeAssignment, isInExpressionContext: () => isInExpressionContext, isInJSDoc: () => isInJSDoc, isInJSFile: () => isInJSFile, isInJSXText: () => isInJSXText, isInJsonFile: () => isInJsonFile, isInNonReferenceComment: () => isInNonReferenceComment, isInReferenceComment: () => isInReferenceComment, isInRightSideOfInternalImportEqualsDeclaration: () => isInRightSideOfInternalImportEqualsDeclaration, isInString: () => isInString, isInTemplateString: () => isInTemplateString, isInTopLevelContext: () => isInTopLevelContext, isInTypeQuery: () => isInTypeQuery, isIncrementalBuildInfo: () => isIncrementalBuildInfo, isIncrementalBundleEmitBuildInfo: () => isIncrementalBundleEmitBuildInfo, isIncrementalCompilation: () => isIncrementalCompilation, isIndexSignatureDeclaration: () => isIndexSignatureDeclaration, isIndexedAccessTypeNode: () => isIndexedAccessTypeNode, isInferTypeNode: () => isInferTypeNode, isInfinityOrNaNString: () => isInfinityOrNaNString, isInitializedProperty: () => isInitializedProperty, isInitializedVariable: () => isInitializedVariable, isInsideJsxElement: () => isInsideJsxElement, isInsideJsxElementOrAttribute: () => isInsideJsxElementOrAttribute, isInsideNodeModules: () => isInsideNodeModules, isInsideTemplateLiteral: () => isInsideTemplateLiteral, isInstanceOfExpression: () => isInstanceOfExpression, isInstantiatedModule: () => isInstantiatedModule, isInterfaceDeclaration: () => isInterfaceDeclaration, isInternalDeclaration: () => isInternalDeclaration, isInternalModuleImportEqualsDeclaration: () => isInternalModuleImportEqualsDeclaration, isInternalName: () => isInternalName, isIntersectionTypeNode: () => isIntersectionTypeNode, isIntrinsicJsxName: () => isIntrinsicJsxName, isIterationStatement: () => isIterationStatement, isJSDoc: () => isJSDoc, isJSDocAllType: () => isJSDocAllType, isJSDocAugmentsTag: () => isJSDocAugmentsTag, isJSDocAuthorTag: () => isJSDocAuthorTag, isJSDocCallbackTag: () => isJSDocCallbackTag, isJSDocClassTag: () => isJSDocClassTag, isJSDocCommentContainingNode: () => isJSDocCommentContainingNode, isJSDocConstructSignature: () => isJSDocConstructSignature, isJSDocDeprecatedTag: () => isJSDocDeprecatedTag, isJSDocEnumTag: () => isJSDocEnumTag, isJSDocFunctionType: () => isJSDocFunctionType, isJSDocImplementsTag: () => isJSDocImplementsTag, isJSDocImportTag: () => isJSDocImportTag, isJSDocIndexSignature: () => isJSDocIndexSignature, isJSDocLikeText: () => isJSDocLikeText, isJSDocLink: () => isJSDocLink, isJSDocLinkCode: () => isJSDocLinkCode, isJSDocLinkLike: () => isJSDocLinkLike, isJSDocLinkPlain: () => isJSDocLinkPlain, isJSDocMemberName: () => isJSDocMemberName, isJSDocNameReference: () => isJSDocNameReference, isJSDocNamepathType: () => isJSDocNamepathType, isJSDocNamespaceBody: () => isJSDocNamespaceBody, isJSDocNode: () => isJSDocNode, isJSDocNonNullableType: () => isJSDocNonNullableType, isJSDocNullableType: () => isJSDocNullableType, isJSDocOptionalParameter: () => isJSDocOptionalParameter, isJSDocOptionalType: () => isJSDocOptionalType, isJSDocOverloadTag: () => isJSDocOverloadTag, isJSDocOverrideTag: () => isJSDocOverrideTag, isJSDocParameterTag: () => isJSDocParameterTag, isJSDocPrivateTag: () => isJSDocPrivateTag, isJSDocPropertyLikeTag: () => isJSDocPropertyLikeTag, isJSDocPropertyTag: () => isJSDocPropertyTag, isJSDocProtectedTag: () => isJSDocProtectedTag, isJSDocPublicTag: () => isJSDocPublicTag, isJSDocReadonlyTag: () => isJSDocReadonlyTag, isJSDocReturnTag: () => isJSDocReturnTag, isJSDocSatisfiesExpression: () => isJSDocSatisfiesExpression, isJSDocSatisfiesTag: () => isJSDocSatisfiesTag, isJSDocSeeTag: () => isJSDocSeeTag, isJSDocSignature: () => isJSDocSignature, isJSDocTag: () => isJSDocTag, isJSDocTemplateTag: () => isJSDocTemplateTag, isJSDocThisTag: () => isJSDocThisTag, isJSDocThrowsTag: () => isJSDocThrowsTag, isJSDocTypeAlias: () => isJSDocTypeAlias, isJSDocTypeAssertion: () => isJSDocTypeAssertion, isJSDocTypeExpression: () => isJSDocTypeExpression, isJSDocTypeLiteral: () => isJSDocTypeLiteral, isJSDocTypeTag: () => isJSDocTypeTag, isJSDocTypedefTag: () => isJSDocTypedefTag, isJSDocUnknownTag: () => isJSDocUnknownTag, isJSDocUnknownType: () => isJSDocUnknownType, isJSDocVariadicType: () => isJSDocVariadicType, isJSXTagName: () => isJSXTagName, isJsonEqual: () => isJsonEqual, isJsonSourceFile: () => isJsonSourceFile, isJsxAttribute: () => isJsxAttribute, isJsxAttributeLike: () => isJsxAttributeLike, isJsxAttributeName: () => isJsxAttributeName, isJsxAttributes: () => isJsxAttributes, isJsxCallLike: () => isJsxCallLike, isJsxChild: () => isJsxChild, isJsxClosingElement: () => isJsxClosingElement, isJsxClosingFragment: () => isJsxClosingFragment, isJsxElement: () => isJsxElement, isJsxExpression: () => isJsxExpression, isJsxFragment: () => isJsxFragment, isJsxNamespacedName: () => isJsxNamespacedName, isJsxOpeningElement: () => isJsxOpeningElement, isJsxOpeningFragment: () => isJsxOpeningFragment, isJsxOpeningLikeElement: () => isJsxOpeningLikeElement, isJsxOpeningLikeElementTagName: () => isJsxOpeningLikeElementTagName, isJsxSelfClosingElement: () => isJsxSelfClosingElement, isJsxSpreadAttribute: () => isJsxSpreadAttribute, isJsxTagNameExpression: () => isJsxTagNameExpression, isJsxText: () => isJsxText, isJumpStatementTarget: () => isJumpStatementTarget, isKeyword: () => isKeyword, isKeywordOrPunctuation: () => isKeywordOrPunctuation, isKnownSymbol: () => isKnownSymbol, isLabelName: () => isLabelName, isLabelOfLabeledStatement: () => isLabelOfLabeledStatement, isLabeledStatement: () => isLabeledStatement, isLateVisibilityPaintedStatement: () => isLateVisibilityPaintedStatement, isLeftHandSideExpression: () => isLeftHandSideExpression, isLet: () => isLet, isLineBreak: () => isLineBreak, isLiteralComputedPropertyDeclarationName: () => isLiteralComputedPropertyDeclarationName, isLiteralExpression: () => isLiteralExpression, isLiteralExpressionOfObject: () => isLiteralExpressionOfObject, isLiteralImportTypeNode: () => isLiteralImportTypeNode, isLiteralKind: () => isLiteralKind, isLiteralNameOfPropertyDeclarationOrIndexAccess: () => isLiteralNameOfPropertyDeclarationOrIndexAccess, isLiteralTypeLiteral: () => isLiteralTypeLiteral, isLiteralTypeNode: () => isLiteralTypeNode, isLocalName: () => isLocalName, isLogicalOperator: () => isLogicalOperator, isLogicalOrCoalescingAssignmentExpression: () => isLogicalOrCoalescingAssignmentExpression, isLogicalOrCoalescingAssignmentOperator: () => isLogicalOrCoalescingAssignmentOperator, isLogicalOrCoalescingBinaryExpression: () => isLogicalOrCoalescingBinaryExpression, isLogicalOrCoalescingBinaryOperator: () => isLogicalOrCoalescingBinaryOperator, isMappedTypeNode: () => isMappedTypeNode, isMemberName: () => isMemberName, isMetaProperty: () => isMetaProperty, isMethodDeclaration: () => isMethodDeclaration, isMethodOrAccessor: () => isMethodOrAccessor, isMethodSignature: () => isMethodSignature, isMinusToken: () => isMinusToken, isMissingDeclaration: () => isMissingDeclaration, isMissingPackageJsonInfo: () => isMissingPackageJsonInfo, isModifier: () => isModifier, isModifierKind: () => isModifierKind, isModifierLike: () => isModifierLike, isModuleAugmentationExternal: () => isModuleAugmentationExternal, isModuleBlock: () => isModuleBlock, isModuleBody: () => isModuleBody, isModuleDeclaration: () => isModuleDeclaration, isModuleExportName: () => isModuleExportName, isModuleExportsAccessExpression: () => isModuleExportsAccessExpression, isModuleIdentifier: () => isModuleIdentifier, isModuleName: () => isModuleName, isModuleOrEnumDeclaration: () => isModuleOrEnumDeclaration, isModuleReference: () => isModuleReference, isModuleSpecifierLike: () => isModuleSpecifierLike, isModuleWithStringLiteralName: () => isModuleWithStringLiteralName, isNameOfFunctionDeclaration: () => isNameOfFunctionDeclaration, isNameOfModuleDeclaration: () => isNameOfModuleDeclaration, isNamedDeclaration: () => isNamedDeclaration, isNamedEvaluation: () => isNamedEvaluation, isNamedEvaluationSource: () => isNamedEvaluationSource, isNamedExportBindings: () => isNamedExportBindings, isNamedExports: () => isNamedExports, isNamedImportBindings: () => isNamedImportBindings, isNamedImports: () => isNamedImports, isNamedImportsOrExports: () => isNamedImportsOrExports, isNamedTupleMember: () => isNamedTupleMember, isNamespaceBody: () => isNamespaceBody, isNamespaceExport: () => isNamespaceExport, isNamespaceExportDeclaration: () => isNamespaceExportDeclaration, isNamespaceImport: () => isNamespaceImport, isNamespaceReexportDeclaration: () => isNamespaceReexportDeclaration, isNewExpression: () => isNewExpression, isNewExpressionTarget: () => isNewExpressionTarget, isNewScopeNode: () => isNewScopeNode, isNoSubstitutionTemplateLiteral: () => isNoSubstitutionTemplateLiteral, isNodeArray: () => isNodeArray, isNodeArrayMultiLine: () => isNodeArrayMultiLine, isNodeDescendantOf: () => isNodeDescendantOf, isNodeKind: () => isNodeKind, isNodeLikeSystem: () => isNodeLikeSystem, isNodeModulesDirectory: () => isNodeModulesDirectory, isNodeWithPossibleHoistedDeclaration: () => isNodeWithPossibleHoistedDeclaration, isNonContextualKeyword: () => isNonContextualKeyword, isNonGlobalAmbientModule: () => isNonGlobalAmbientModule, isNonNullAccess: () => isNonNullAccess, isNonNullChain: () => isNonNullChain, isNonNullExpression: () => isNonNullExpression, isNonStaticMethodOrAccessorWithPrivateName: () => isNonStaticMethodOrAccessorWithPrivateName, isNotEmittedStatement: () => isNotEmittedStatement, isNullishCoalesce: () => isNullishCoalesce, isNumber: () => isNumber, isNumericLiteral: () => isNumericLiteral, isNumericLiteralName: () => isNumericLiteralName, isObjectBindingElementWithoutPropertyName: () => isObjectBindingElementWithoutPropertyName, isObjectBindingOrAssignmentElement: () => isObjectBindingOrAssignmentElement, isObjectBindingOrAssignmentPattern: () => isObjectBindingOrAssignmentPattern, isObjectBindingPattern: () => isObjectBindingPattern, isObjectLiteralElement: () => isObjectLiteralElement, isObjectLiteralElementLike: () => isObjectLiteralElementLike, isObjectLiteralExpression: () => isObjectLiteralExpression, isObjectLiteralMethod: () => isObjectLiteralMethod, isObjectLiteralOrClassExpressionMethodOrAccessor: () => isObjectLiteralOrClassExpressionMethodOrAccessor, isObjectTypeDeclaration: () => isObjectTypeDeclaration, isOmittedExpression: () => isOmittedExpression, isOptionalChain: () => isOptionalChain, isOptionalChainRoot: () => isOptionalChainRoot, isOptionalDeclaration: () => isOptionalDeclaration, isOptionalJSDocPropertyLikeTag: () => isOptionalJSDocPropertyLikeTag, isOptionalTypeNode: () => isOptionalTypeNode, isOuterExpression: () => isOuterExpression, isOutermostOptionalChain: () => isOutermostOptionalChain, isOverrideModifier: () => isOverrideModifier, isPackageJsonInfo: () => isPackageJsonInfo, isPackedArrayLiteral: () => isPackedArrayLiteral, isParameter: () => isParameter, isParameterPropertyDeclaration: () => isParameterPropertyDeclaration, isParameterPropertyModifier: () => isParameterPropertyModifier, isParenthesizedExpression: () => isParenthesizedExpression, isParenthesizedTypeNode: () => isParenthesizedTypeNode, isParseTreeNode: () => isParseTreeNode, isPartOfParameterDeclaration: () => isPartOfParameterDeclaration, isPartOfTypeNode: () => isPartOfTypeNode, isPartOfTypeOnlyImportOrExportDeclaration: () => isPartOfTypeOnlyImportOrExportDeclaration, isPartOfTypeQuery: () => isPartOfTypeQuery, isPartiallyEmittedExpression: () => isPartiallyEmittedExpression, isPatternMatch: () => isPatternMatch, isPinnedComment: () => isPinnedComment, isPlainJsFile: () => isPlainJsFile, isPlusToken: () => isPlusToken, isPossiblyTypeArgumentPosition: () => isPossiblyTypeArgumentPosition, isPostfixUnaryExpression: () => isPostfixUnaryExpression, isPotentiallyExecutableNode: () => isPotentiallyExecutableNode, isPrefixUnaryExpression: () => isPrefixUnaryExpression, isPrimitiveLiteralValue: () => isPrimitiveLiteralValue, isPrivateIdentifier: () => isPrivateIdentifier, isPrivateIdentifierClassElementDeclaration: () => isPrivateIdentifierClassElementDeclaration, isPrivateIdentifierPropertyAccessExpression: () => isPrivateIdentifierPropertyAccessExpression, isPrivateIdentifierSymbol: () => isPrivateIdentifierSymbol, isProgramUptoDate: () => isProgramUptoDate, isPrologueDirective: () => isPrologueDirective, isPropertyAccessChain: () => isPropertyAccessChain, isPropertyAccessEntityNameExpression: () => isPropertyAccessEntityNameExpression, isPropertyAccessExpression: () => isPropertyAccessExpression, isPropertyAccessOrQualifiedName: () => isPropertyAccessOrQualifiedName, isPropertyAccessOrQualifiedNameOrImportTypeNode: () => isPropertyAccessOrQualifiedNameOrImportTypeNode, isPropertyAssignment: () => isPropertyAssignment, isPropertyDeclaration: () => isPropertyDeclaration, isPropertyName: () => isPropertyName, isPropertyNameLiteral: () => isPropertyNameLiteral, isPropertySignature: () => isPropertySignature, isPrototypeAccess: () => isPrototypeAccess, isPrototypePropertyAssignment: () => isPrototypePropertyAssignment, isPunctuation: () => isPunctuation, isPushOrUnshiftIdentifier: () => isPushOrUnshiftIdentifier, isQualifiedName: () => isQualifiedName, isQuestionDotToken: () => isQuestionDotToken, isQuestionOrExclamationToken: () => isQuestionOrExclamationToken, isQuestionOrPlusOrMinusToken: () => isQuestionOrPlusOrMinusToken, isQuestionToken: () => isQuestionToken, isReadonlyKeyword: () => isReadonlyKeyword, isReadonlyKeywordOrPlusOrMinusToken: () => isReadonlyKeywordOrPlusOrMinusToken, isRecognizedTripleSlashComment: () => isRecognizedTripleSlashComment, isReferenceFileLocation: () => isReferenceFileLocation, isReferencedFile: () => isReferencedFile, isRegularExpressionLiteral: () => isRegularExpressionLiteral, isRequireCall: () => isRequireCall, isRequireVariableStatement: () => isRequireVariableStatement, isRestParameter: () => isRestParameter, isRestTypeNode: () => isRestTypeNode, isReturnStatement: () => isReturnStatement, isReturnStatementWithFixablePromiseHandler: () => isReturnStatementWithFixablePromiseHandler, isRightSideOfAccessExpression: () => isRightSideOfAccessExpression, isRightSideOfInstanceofExpression: () => isRightSideOfInstanceofExpression, isRightSideOfPropertyAccess: () => isRightSideOfPropertyAccess, isRightSideOfQualifiedName: () => isRightSideOfQualifiedName, isRightSideOfQualifiedNameOrPropertyAccess: () => isRightSideOfQualifiedNameOrPropertyAccess, isRightSideOfQualifiedNameOrPropertyAccessOrJSDocMemberName: () => isRightSideOfQualifiedNameOrPropertyAccessOrJSDocMemberName, isRootedDiskPath: () => isRootedDiskPath, isSameEntityName: () => isSameEntityName, isSatisfiesExpression: () => isSatisfiesExpression, isSemicolonClassElement: () => isSemicolonClassElement, isSetAccessor: () => isSetAccessor, isSetAccessorDeclaration: () => isSetAccessorDeclaration, isShiftOperatorOrHigher: () => isShiftOperatorOrHigher, isShorthandAmbientModuleSymbol: () => isShorthandAmbientModuleSymbol, isShorthandPropertyAssignment: () => isShorthandPropertyAssignment, isSideEffectImport: () => isSideEffectImport, isSignedNumericLiteral: () => isSignedNumericLiteral, isSimpleCopiableExpression: () => isSimpleCopiableExpression, isSimpleInlineableExpression: () => isSimpleInlineableExpression, isSimpleParameterList: () => isSimpleParameterList, isSingleOrDoubleQuote: () => isSingleOrDoubleQuote, isSolutionConfig: () => isSolutionConfig, isSourceElement: () => isSourceElement, isSourceFile: () => isSourceFile, isSourceFileFromLibrary: () => isSourceFileFromLibrary, isSourceFileJS: () => isSourceFileJS, isSourceFileNotJson: () => isSourceFileNotJson, isSourceMapping: () => isSourceMapping, isSpecialPropertyDeclaration: () => isSpecialPropertyDeclaration, isSpreadAssignment: () => isSpreadAssignment, isSpreadElement: () => isSpreadElement, isStatement: () => isStatement, isStatementButNotDeclaration: () => isStatementButNotDeclaration, isStatementOrBlock: () => isStatementOrBlock, isStatementWithLocals: () => isStatementWithLocals, isStatic: () => isStatic, isStaticModifier: () => isStaticModifier, isString: () => isString, isStringANonContextualKeyword: () => isStringANonContextualKeyword, isStringAndEmptyAnonymousObjectIntersection: () => isStringAndEmptyAnonymousObjectIntersection, isStringDoubleQuoted: () => isStringDoubleQuoted, isStringLiteral: () => isStringLiteral, isStringLiteralLike: () => isStringLiteralLike, isStringLiteralOrJsxExpression: () => isStringLiteralOrJsxExpression, isStringLiteralOrTemplate: () => isStringLiteralOrTemplate, isStringOrNumericLiteralLike: () => isStringOrNumericLiteralLike, isStringOrRegularExpressionOrTemplateLiteral: () => isStringOrRegularExpressionOrTemplateLiteral, isStringTextContainingNode: () => isStringTextContainingNode, isSuperCall: () => isSuperCall, isSuperKeyword: () => isSuperKeyword, isSuperProperty: () => isSuperProperty, isSupportedSourceFileName: () => isSupportedSourceFileName, isSwitchStatement: () => isSwitchStatement, isSyntaxList: () => isSyntaxList, isSyntheticExpression: () => isSyntheticExpression, isSyntheticReference: () => isSyntheticReference, isTagName: () => isTagName, isTaggedTemplateExpression: () => isTaggedTemplateExpression, isTaggedTemplateTag: () => isTaggedTemplateTag, isTemplateExpression: () => isTemplateExpression, isTemplateHead: () => isTemplateHead, isTemplateLiteral: () => isTemplateLiteral, isTemplateLiteralKind: () => isTemplateLiteralKind, isTemplateLiteralToken: () => isTemplateLiteralToken, isTemplateLiteralTypeNode: () => isTemplateLiteralTypeNode, isTemplateLiteralTypeSpan: () => isTemplateLiteralTypeSpan, isTemplateMiddle: () => isTemplateMiddle, isTemplateMiddleOrTemplateTail: () => isTemplateMiddleOrTemplateTail, isTemplateSpan: () => isTemplateSpan, isTemplateTail: () => isTemplateTail, isTextWhiteSpaceLike: () => isTextWhiteSpaceLike, isThis: () => isThis, isThisContainerOrFunctionBlock: () => isThisContainerOrFunctionBlock, isThisIdentifier: () => isThisIdentifier, isThisInTypeQuery: () => isThisInTypeQuery, isThisInitializedDeclaration: () => isThisInitializedDeclaration, isThisInitializedObjectBindingExpression: () => isThisInitializedObjectBindingExpression, isThisProperty: () => isThisProperty, isThisTypeNode: () => isThisTypeNode, isThisTypeParameter: () => isThisTypeParameter, isThisTypePredicate: () => isThisTypePredicate, isThrowStatement: () => isThrowStatement, isToken: () => isToken, isTokenKind: () => isTokenKind, isTraceEnabled: () => isTraceEnabled, isTransientSymbol: () => isTransientSymbol, isTrivia: () => isTrivia, isTryStatement: () => isTryStatement, isTupleTypeNode: () => isTupleTypeNode, isTypeAlias: () => isTypeAlias, isTypeAliasDeclaration: () => isTypeAliasDeclaration, isTypeAssertionExpression: () => isTypeAssertionExpression, isTypeDeclaration: () => isTypeDeclaration, isTypeElement: () => isTypeElement, isTypeKeyword: () => isTypeKeyword, isTypeKeywordTokenOrIdentifier: () => isTypeKeywordTokenOrIdentifier, isTypeLiteralNode: () => isTypeLiteralNode, isTypeNode: () => isTypeNode, isTypeNodeKind: () => isTypeNodeKind, isTypeOfExpression: () => isTypeOfExpression, isTypeOnlyExportDeclaration: () => isTypeOnlyExportDeclaration, isTypeOnlyImportDeclaration: () => isTypeOnlyImportDeclaration, isTypeOnlyImportOrExportDeclaration: () => isTypeOnlyImportOrExportDeclaration, isTypeOperatorNode: () => isTypeOperatorNode, isTypeParameterDeclaration: () => isTypeParameterDeclaration, isTypePredicateNode: () => isTypePredicateNode, isTypeQueryNode: () => isTypeQueryNode, isTypeReferenceNode: () => isTypeReferenceNode, isTypeReferenceType: () => isTypeReferenceType, isTypeUsableAsPropertyName: () => isTypeUsableAsPropertyName, isUMDExportSymbol: () => isUMDExportSymbol, isUnaryExpression: () => isUnaryExpression, isUnaryExpressionWithWrite: () => isUnaryExpressionWithWrite, isUnicodeIdentifierStart: () => isUnicodeIdentifierStart, isUnionTypeNode: () => isUnionTypeNode, isUrl: () => isUrl, isValidBigIntString: () => isValidBigIntString, isValidESSymbolDeclaration: () => isValidESSymbolDeclaration, isValidTypeOnlyAliasUseSite: () => isValidTypeOnlyAliasUseSite, isValueSignatureDeclaration: () => isValueSignatureDeclaration, isVarAwaitUsing: () => isVarAwaitUsing, isVarConst: () => isVarConst, isVarConstLike: () => isVarConstLike, isVarUsing: () => isVarUsing, isVariableDeclaration: () => isVariableDeclaration, isVariableDeclarationInVariableStatement: () => isVariableDeclarationInVariableStatement, isVariableDeclarationInitializedToBareOrAccessedRequire: () => isVariableDeclarationInitializedToBareOrAccessedRequire, isVariableDeclarationInitializedToRequire: () => isVariableDeclarationInitializedToRequire, isVariableDeclarationList: () => isVariableDeclarationList, isVariableLike: () => isVariableLike, isVariableStatement: () => isVariableStatement, isVoidExpression: () => isVoidExpression, isWatchSet: () => isWatchSet, isWhileStatement: () => isWhileStatement, isWhiteSpaceLike: () => isWhiteSpaceLike, isWhiteSpaceSingleLine: () => isWhiteSpaceSingleLine, isWithStatement: () => isWithStatement, isWriteAccess: () => isWriteAccess, isWriteOnlyAccess: () => isWriteOnlyAccess, isYieldExpression: () => isYieldExpression, jsxModeNeedsExplicitImport: () => jsxModeNeedsExplicitImport, keywordPart: () => keywordPart, last: () => last, lastOrUndefined: () => lastOrUndefined, length: () => length, libMap: () => libMap, libs: () => libs, lineBreakPart: () => lineBreakPart, loadModuleFromGlobalCache: () => loadModuleFromGlobalCache, loadWithModeAwareCache: () => loadWithModeAwareCache, makeIdentifierFromModuleName: () => makeIdentifierFromModuleName, makeImport: () => makeImport, makeStringLiteral: () => makeStringLiteral, mangleScopedPackageName: () => mangleScopedPackageName, map: () => map, mapAllOrFail: () => mapAllOrFail, mapDefined: () => mapDefined, mapDefinedIterator: () => mapDefinedIterator, mapEntries: () => mapEntries, mapIterator: () => mapIterator, mapOneOrMany: () => mapOneOrMany, mapToDisplayParts: () => mapToDisplayParts, matchFiles: () => matchFiles, matchPatternOrExact: () => matchPatternOrExact, matchedText: () => matchedText, matchesExclude: () => matchesExclude, matchesExcludeWorker: () => matchesExcludeWorker, maxBy: () => maxBy, maybeBind: () => maybeBind, maybeSetLocalizedDiagnosticMessages: () => maybeSetLocalizedDiagnosticMessages, memoize: () => memoize, memoizeOne: () => memoizeOne, min: () => min, minAndMax: () => minAndMax, missingFileModifiedTime: () => missingFileModifiedTime, modifierToFlag: () => modifierToFlag, modifiersToFlags: () => modifiersToFlags, moduleExportNameIsDefault: () => moduleExportNameIsDefault, moduleExportNameTextEscaped: () => moduleExportNameTextEscaped, moduleExportNameTextUnescaped: () => moduleExportNameTextUnescaped, moduleOptionDeclaration: () => moduleOptionDeclaration, moduleResolutionIsEqualTo: () => moduleResolutionIsEqualTo, moduleResolutionNameAndModeGetter: () => moduleResolutionNameAndModeGetter, moduleResolutionOptionDeclarations: () => moduleResolutionOptionDeclarations, moduleResolutionSupportsPackageJsonExportsAndImports: () => moduleResolutionSupportsPackageJsonExportsAndImports, moduleResolutionUsesNodeModules: () => moduleResolutionUsesNodeModules, moduleSpecifierToValidIdentifier: () => moduleSpecifierToValidIdentifier, moduleSpecifiers: () => ts_moduleSpecifiers_exports, moduleSupportsImportAttributes: () => moduleSupportsImportAttributes, moduleSymbolToValidIdentifier: () => moduleSymbolToValidIdentifier, moveEmitHelpers: () => moveEmitHelpers, moveRangeEnd: () => moveRangeEnd, moveRangePastDecorators: () => moveRangePastDecorators, moveRangePastModifiers: () => moveRangePastModifiers, moveRangePos: () => moveRangePos, moveSyntheticComments: () => moveSyntheticComments, mutateMap: () => mutateMap, mutateMapSkippingNewValues: () => mutateMapSkippingNewValues, needsParentheses: () => needsParentheses, needsScopeMarker: () => needsScopeMarker, newCaseClauseTracker: () => newCaseClauseTracker, newPrivateEnvironment: () => newPrivateEnvironment, noEmitNotification: () => noEmitNotification, noEmitSubstitution: () => noEmitSubstitution, noTransformers: () => noTransformers, noTruncationMaximumTruncationLength: () => noTruncationMaximumTruncationLength, nodeCanBeDecorated: () => nodeCanBeDecorated, nodeCoreModules: () => nodeCoreModules, nodeHasName: () => nodeHasName, nodeIsDecorated: () => nodeIsDecorated, nodeIsMissing: () => nodeIsMissing, nodeIsPresent: () => nodeIsPresent, nodeIsSynthesized: () => nodeIsSynthesized, nodeModuleNameResolver: () => nodeModuleNameResolver, nodeModulesPathPart: () => nodeModulesPathPart, nodeNextJsonConfigResolver: () => nodeNextJsonConfigResolver, nodeOrChildIsDecorated: () => nodeOrChildIsDecorated, nodeOverlapsWithStartEnd: () => nodeOverlapsWithStartEnd, nodePosToString: () => nodePosToString, nodeSeenTracker: () => nodeSeenTracker, nodeStartsNewLexicalEnvironment: () => nodeStartsNewLexicalEnvironment, noop: () => noop, noopFileWatcher: () => noopFileWatcher, normalizePath: () => normalizePath, normalizeSlashes: () => normalizeSlashes, normalizeSpans: () => normalizeSpans, not: () => not, notImplemented: () => notImplemented, notImplementedResolver: () => notImplementedResolver, nullNodeConverters: () => nullNodeConverters, nullParenthesizerRules: () => nullParenthesizerRules, nullTransformationContext: () => nullTransformationContext, objectAllocator: () => objectAllocator, operatorPart: () => operatorPart, optionDeclarations: () => optionDeclarations, optionMapToObject: () => optionMapToObject, optionsAffectingProgramStructure: () => optionsAffectingProgramStructure, optionsForBuild: () => optionsForBuild, optionsForWatch: () => optionsForWatch, optionsHaveChanges: () => optionsHaveChanges, or: () => or, orderedRemoveItem: () => orderedRemoveItem, orderedRemoveItemAt: () => orderedRemoveItemAt, packageIdToPackageName: () => packageIdToPackageName, packageIdToString: () => packageIdToString, parameterIsThisKeyword: () => parameterIsThisKeyword, parameterNamePart: () => parameterNamePart, parseBaseNodeFactory: () => parseBaseNodeFactory, parseBigInt: () => parseBigInt, parseBuildCommand: () => parseBuildCommand, parseCommandLine: () => parseCommandLine, parseCommandLineWorker: () => parseCommandLineWorker, parseConfigFileTextToJson: () => parseConfigFileTextToJson, parseConfigFileWithSystem: () => parseConfigFileWithSystem, parseConfigHostFromCompilerHostLike: () => parseConfigHostFromCompilerHostLike, parseCustomTypeOption: () => parseCustomTypeOption, parseIsolatedEntityName: () => parseIsolatedEntityName, parseIsolatedJSDocComment: () => parseIsolatedJSDocComment, parseJSDocTypeExpressionForTests: () => parseJSDocTypeExpressionForTests, parseJsonConfigFileContent: () => parseJsonConfigFileContent, parseJsonSourceFileConfigFileContent: () => parseJsonSourceFileConfigFileContent, parseJsonText: () => parseJsonText, parseListTypeOption: () => parseListTypeOption, parseNodeFactory: () => parseNodeFactory, parseNodeModuleFromPath: () => parseNodeModuleFromPath, parsePackageName: () => parsePackageName, parsePseudoBigInt: () => parsePseudoBigInt, parseValidBigInt: () => parseValidBigInt, pasteEdits: () => ts_PasteEdits_exports, patchWriteFileEnsuringDirectory: () => patchWriteFileEnsuringDirectory, pathContainsNodeModules: () => pathContainsNodeModules, pathIsAbsolute: () => pathIsAbsolute, pathIsBareSpecifier: () => pathIsBareSpecifier, pathIsRelative: () => pathIsRelative, patternText: () => patternText, performIncrementalCompilation: () => performIncrementalCompilation, performance: () => ts_performance_exports, positionBelongsToNode: () => positionBelongsToNode, positionIsASICandidate: () => positionIsASICandidate, positionIsSynthesized: () => positionIsSynthesized, positionsAreOnSameLine: () => positionsAreOnSameLine, preProcessFile: () => preProcessFile, probablyUsesSemicolons: () => probablyUsesSemicolons, processCommentPragmas: () => processCommentPragmas, processPragmasIntoFields: () => processPragmasIntoFields, processTaggedTemplateExpression: () => processTaggedTemplateExpression, programContainsEsModules: () => programContainsEsModules, programContainsModules: () => programContainsModules, projectReferenceIsEqualTo: () => projectReferenceIsEqualTo, propertyNamePart: () => propertyNamePart, pseudoBigIntToString: () => pseudoBigIntToString, punctuationPart: () => punctuationPart, pushIfUnique: () => pushIfUnique, quote: () => quote, quotePreferenceFromString: () => quotePreferenceFromString, rangeContainsPosition: () => rangeContainsPosition, rangeContainsPositionExclusive: () => rangeContainsPositionExclusive, rangeContainsRange: () => rangeContainsRange, rangeContainsRangeExclusive: () => rangeContainsRangeExclusive, rangeContainsStartEnd: () => rangeContainsStartEnd, rangeEndIsOnSameLineAsRangeStart: () => rangeEndIsOnSameLineAsRangeStart, rangeEndPositionsAreOnSameLine: () => rangeEndPositionsAreOnSameLine, rangeEquals: () => rangeEquals, rangeIsOnSingleLine: () => rangeIsOnSingleLine, rangeOfNode: () => rangeOfNode, rangeOfTypeParameters: () => rangeOfTypeParameters, rangeOverlapsWithStartEnd: () => rangeOverlapsWithStartEnd, rangeStartIsOnSameLineAsRangeEnd: () => rangeStartIsOnSameLineAsRangeEnd, rangeStartPositionsAreOnSameLine: () => rangeStartPositionsAreOnSameLine, readBuilderProgram: () => readBuilderProgram, readConfigFile: () => readConfigFile, readJson: () => readJson, readJsonConfigFile: () => readJsonConfigFile, readJsonOrUndefined: () => readJsonOrUndefined, reduceEachLeadingCommentRange: () => reduceEachLeadingCommentRange, reduceEachTrailingCommentRange: () => reduceEachTrailingCommentRange, reduceLeft: () => reduceLeft, reduceLeftIterator: () => reduceLeftIterator, reducePathComponents: () => reducePathComponents, refactor: () => ts_refactor_exports, regExpEscape: () => regExpEscape, regularExpressionFlagToCharacterCode: () => regularExpressionFlagToCharacterCode, relativeComplement: () => relativeComplement, removeAllComments: () => removeAllComments, removeEmitHelper: () => removeEmitHelper, removeExtension: () => removeExtension, removeFileExtension: () => removeFileExtension, removeIgnoredPath: () => removeIgnoredPath, removeMinAndVersionNumbers: () => removeMinAndVersionNumbers, removePrefix: () => removePrefix, removeSuffix: () => removeSuffix, removeTrailingDirectorySeparator: () => removeTrailingDirectorySeparator, repeatString: () => repeatString, replaceElement: () => replaceElement, replaceFirstStar: () => replaceFirstStar, resolutionExtensionIsTSOrJson: () => resolutionExtensionIsTSOrJson, resolveConfigFileProjectName: () => resolveConfigFileProjectName, resolveJSModule: () => resolveJSModule, resolveLibrary: () => resolveLibrary, resolveModuleName: () => resolveModuleName, resolveModuleNameFromCache: () => resolveModuleNameFromCache, resolvePackageNameToPackageJson: () => resolvePackageNameToPackageJson, resolvePath: () => resolvePath, resolveProjectReferencePath: () => resolveProjectReferencePath, resolveTripleslashReference: () => resolveTripleslashReference, resolveTypeReferenceDirective: () => resolveTypeReferenceDirective, resolvingEmptyArray: () => resolvingEmptyArray, returnFalse: () => returnFalse, returnNoopFileWatcher: () => returnNoopFileWatcher, returnTrue: () => returnTrue, returnUndefined: () => returnUndefined, returnsPromise: () => returnsPromise, rewriteModuleSpecifier: () => rewriteModuleSpecifier, sameFlatMap: () => sameFlatMap, sameMap: () => sameMap, sameMapping: () => sameMapping, scanTokenAtPosition: () => scanTokenAtPosition, scanner: () => scanner, semanticDiagnosticsOptionDeclarations: () => semanticDiagnosticsOptionDeclarations, serializeCompilerOptions: () => serializeCompilerOptions, server: () => ts_server_exports3, servicesVersion: () => servicesVersion, setCommentRange: () => setCommentRange, setConfigFileInOptions: () => setConfigFileInOptions, setConstantValue: () => setConstantValue, setEmitFlags: () => setEmitFlags, setGetSourceFileAsHashVersioned: () => setGetSourceFileAsHashVersioned, setIdentifierAutoGenerate: () => setIdentifierAutoGenerate, setIdentifierGeneratedImportReference: () => setIdentifierGeneratedImportReference, setIdentifierTypeArguments: () => setIdentifierTypeArguments, setInternalEmitFlags: () => setInternalEmitFlags, setLocalizedDiagnosticMessages: () => setLocalizedDiagnosticMessages, setNodeChildren: () => setNodeChildren, setNodeFlags: () => setNodeFlags, setObjectAllocator: () => setObjectAllocator, setOriginalNode: () => setOriginalNode, setParent: () => setParent, setParentRecursive: () => setParentRecursive, setPrivateIdentifier: () => setPrivateIdentifier, setSnippetElement: () => setSnippetElement, setSourceMapRange: () => setSourceMapRange, setStackTraceLimit: () => setStackTraceLimit, setStartsOnNewLine: () => setStartsOnNewLine, setSyntheticLeadingComments: () => setSyntheticLeadingComments, setSyntheticTrailingComments: () => setSyntheticTrailingComments, setSys: () => setSys, setSysLog: () => setSysLog, setTextRange: () => setTextRange, setTextRangeEnd: () => setTextRangeEnd, setTextRangePos: () => setTextRangePos, setTextRangePosEnd: () => setTextRangePosEnd, setTextRangePosWidth: () => setTextRangePosWidth, setTokenSourceMapRange: () => setTokenSourceMapRange, setTypeNode: () => setTypeNode, setUILocale: () => setUILocale, setValueDeclaration: () => setValueDeclaration, shouldAllowImportingTsExtension: () => shouldAllowImportingTsExtension, shouldPreserveConstEnums: () => shouldPreserveConstEnums, shouldRewriteModuleSpecifier: () => shouldRewriteModuleSpecifier, shouldUseUriStyleNodeCoreModules: () => shouldUseUriStyleNodeCoreModules, showModuleSpecifier: () => showModuleSpecifier, signatureHasRestParameter: () => signatureHasRestParameter, signatureToDisplayParts: () => signatureToDisplayParts, single: () => single, singleElementArray: () => singleElementArray, singleIterator: () => singleIterator, singleOrMany: () => singleOrMany, singleOrUndefined: () => singleOrUndefined, skipAlias: () => skipAlias, skipConstraint: () => skipConstraint, skipOuterExpressions: () => skipOuterExpressions, skipParentheses: () => skipParentheses, skipPartiallyEmittedExpressions: () => skipPartiallyEmittedExpressions, skipTrivia: () => skipTrivia2, skipTypeChecking: () => skipTypeChecking, skipTypeCheckingIgnoringNoCheck: () => skipTypeCheckingIgnoringNoCheck, skipTypeParentheses: () => skipTypeParentheses, skipWhile: () => skipWhile, sliceAfter: () => sliceAfter, some: () => some, sortAndDeduplicate: () => sortAndDeduplicate, sortAndDeduplicateDiagnostics: () => sortAndDeduplicateDiagnostics, sourceFileAffectingCompilerOptions: () => sourceFileAffectingCompilerOptions, sourceFileMayBeEmitted: () => sourceFileMayBeEmitted, sourceMapCommentRegExp: () => sourceMapCommentRegExp, sourceMapCommentRegExpDontCareLineStart: () => sourceMapCommentRegExpDontCareLineStart, spacePart: () => spacePart, spanMap: () => spanMap, startEndContainsRange: () => startEndContainsRange, startEndOverlapsWithStartEnd: () => startEndOverlapsWithStartEnd, startOnNewLine: () => startOnNewLine, startTracing: () => startTracing, startsWith: () => startsWith, startsWithDirectory: () => startsWithDirectory, startsWithUnderscore: () => startsWithUnderscore, startsWithUseStrict: () => startsWithUseStrict, stringContainsAt: () => stringContainsAt, stringToToken: () => stringToToken, stripQuotes: () => stripQuotes, supportedDeclarationExtensions: () => supportedDeclarationExtensions, supportedJSExtensionsFlat: () => supportedJSExtensionsFlat, supportedLocaleDirectories: () => supportedLocaleDirectories, supportedTSExtensionsFlat: () => supportedTSExtensionsFlat, supportedTSImplementationExtensions: () => supportedTSImplementationExtensions, suppressLeadingAndTrailingTrivia: () => suppressLeadingAndTrailingTrivia, suppressLeadingTrivia: () => suppressLeadingTrivia, suppressTrailingTrivia: () => suppressTrailingTrivia, symbolEscapedNameNoDefault: () => symbolEscapedNameNoDefault, symbolName: () => symbolName, symbolNameNoDefault: () => symbolNameNoDefault, symbolToDisplayParts: () => symbolToDisplayParts, sys: () => sys, sysLog: () => sysLog, tagNamesAreEquivalent: () => tagNamesAreEquivalent, takeWhile: () => takeWhile, targetOptionDeclaration: () => targetOptionDeclaration, targetToLibMap: () => targetToLibMap, testFormatSettings: () => testFormatSettings, textChangeRangeIsUnchanged: () => textChangeRangeIsUnchanged, textChangeRangeNewSpan: () => textChangeRangeNewSpan, textChanges: () => ts_textChanges_exports, textOrKeywordPart: () => textOrKeywordPart, textPart: () => textPart, textRangeContainsPositionInclusive: () => textRangeContainsPositionInclusive, textRangeContainsTextSpan: () => textRangeContainsTextSpan, textRangeIntersectsWithTextSpan: () => textRangeIntersectsWithTextSpan, textSpanContainsPosition: () => textSpanContainsPosition, textSpanContainsTextRange: () => textSpanContainsTextRange, textSpanContainsTextSpan: () => textSpanContainsTextSpan, textSpanEnd: () => textSpanEnd, textSpanIntersection: () => textSpanIntersection, textSpanIntersectsWith: () => textSpanIntersectsWith, textSpanIntersectsWithPosition: () => textSpanIntersectsWithPosition, textSpanIntersectsWithTextSpan: () => textSpanIntersectsWithTextSpan, textSpanIsEmpty: () => textSpanIsEmpty, textSpanOverlap: () => textSpanOverlap, textSpanOverlapsWith: () => textSpanOverlapsWith, textSpansEqual: () => textSpansEqual, textToKeywordObj: () => textToKeywordObj, timestamp: () => timestamp, toArray: () => toArray, toBuilderFileEmit: () => toBuilderFileEmit, toBuilderStateFileInfoForMultiEmit: () => toBuilderStateFileInfoForMultiEmit, toEditorSettings: () => toEditorSettings, toFileNameLowerCase: () => toFileNameLowerCase, toPath: () => toPath, toProgramEmitPending: () => toProgramEmitPending, toSorted: () => toSorted, tokenIsIdentifierOrKeyword: () => tokenIsIdentifierOrKeyword, tokenIsIdentifierOrKeywordOrGreaterThan: () => tokenIsIdentifierOrKeywordOrGreaterThan, tokenToString: () => tokenToString, trace: () => trace, tracing: () => tracing, tracingEnabled: () => tracingEnabled, transferSourceFileChildren: () => transferSourceFileChildren, transform: () => transform, transformClassFields: () => transformClassFields, transformDeclarations: () => transformDeclarations, transformECMAScriptModule: () => transformECMAScriptModule, transformES2015: () => transformES2015, transformES2016: () => transformES2016, transformES2017: () => transformES2017, transformES2018: () => transformES2018, transformES2019: () => transformES2019, transformES2020: () => transformES2020, transformES2021: () => transformES2021, transformESDecorators: () => transformESDecorators, transformESNext: () => transformESNext, transformGenerators: () => transformGenerators, transformImpliedNodeFormatDependentModule: () => transformImpliedNodeFormatDependentModule, transformJsx: () => transformJsx, transformLegacyDecorators: () => transformLegacyDecorators, transformModule: () => transformModule, transformNamedEvaluation: () => transformNamedEvaluation, transformNodes: () => transformNodes, transformSystemModule: () => transformSystemModule, transformTypeScript: () => transformTypeScript, transpile: () => transpile, transpileDeclaration: () => transpileDeclaration, transpileModule: () => transpileModule, transpileOptionValueCompilerOptions: () => transpileOptionValueCompilerOptions, tryAddToSet: () => tryAddToSet, tryAndIgnoreErrors: () => tryAndIgnoreErrors, tryCast: () => tryCast, tryDirectoryExists: () => tryDirectoryExists, tryExtractTSExtension: () => tryExtractTSExtension, tryFileExists: () => tryFileExists, tryGetClassExtendingExpressionWithTypeArguments: () => tryGetClassExtendingExpressionWithTypeArguments, tryGetClassImplementingOrExtendingExpressionWithTypeArguments: () => tryGetClassImplementingOrExtendingExpressionWithTypeArguments, tryGetDirectories: () => tryGetDirectories, tryGetExtensionFromPath: () => tryGetExtensionFromPath2, tryGetImportFromModuleSpecifier: () => tryGetImportFromModuleSpecifier, tryGetJSDocSatisfiesTypeNode: () => tryGetJSDocSatisfiesTypeNode, tryGetModuleNameFromFile: () => tryGetModuleNameFromFile, tryGetModuleSpecifierFromDeclaration: () => tryGetModuleSpecifierFromDeclaration, tryGetNativePerformanceHooks: () => tryGetNativePerformanceHooks, tryGetPropertyAccessOrIdentifierToString: () => tryGetPropertyAccessOrIdentifierToString, tryGetPropertyNameOfBindingOrAssignmentElement: () => tryGetPropertyNameOfBindingOrAssignmentElement, tryGetSourceMappingURL: () => tryGetSourceMappingURL, tryGetTextOfPropertyName: () => tryGetTextOfPropertyName, tryParseJson: () => tryParseJson, tryParsePattern: () => tryParsePattern, tryParsePatterns: () => tryParsePatterns, tryParseRawSourceMap: () => tryParseRawSourceMap, tryReadDirectory: () => tryReadDirectory, tryReadFile: () => tryReadFile, tryRemoveDirectoryPrefix: () => tryRemoveDirectoryPrefix, tryRemoveExtension: () => tryRemoveExtension, tryRemovePrefix: () => tryRemovePrefix, tryRemoveSuffix: () => tryRemoveSuffix, tscBuildOption: () => tscBuildOption, typeAcquisitionDeclarations: () => typeAcquisitionDeclarations, typeAliasNamePart: () => typeAliasNamePart, typeDirectiveIsEqualTo: () => typeDirectiveIsEqualTo, typeKeywords: () => typeKeywords, typeParameterNamePart: () => typeParameterNamePart, typeToDisplayParts: () => typeToDisplayParts, unchangedPollThresholds: () => unchangedPollThresholds, unchangedTextChangeRange: () => unchangedTextChangeRange, unescapeLeadingUnderscores: () => unescapeLeadingUnderscores, unmangleScopedPackageName: () => unmangleScopedPackageName, unorderedRemoveItem: () => unorderedRemoveItem, unprefixedNodeCoreModules: () => unprefixedNodeCoreModules, unsetNodeChildren: () => unsetNodeChildren, unwrapInnermostStatementOfLabel: () => unwrapInnermostStatementOfLabel, unwrapParenthesizedExpression: () => unwrapParenthesizedExpression, updateErrorForNoInputFiles: () => updateErrorForNoInputFiles, updateLanguageServiceSourceFile: () => updateLanguageServiceSourceFile, updateMissingFilePathsWatch: () => updateMissingFilePathsWatch, updateResolutionField: () => updateResolutionField, updateSharedExtendedConfigFileWatcher: () => updateSharedExtendedConfigFileWatcher, updateSourceFile: () => updateSourceFile, updateWatchingWildcardDirectories: () => updateWatchingWildcardDirectories, usesWildcardTypes: () => usesWildcardTypes, usingSingleLineStringWriter: () => usingSingleLineStringWriter, utf16EncodeAsString: () => utf16EncodeAsString, validateLocaleAndSetLanguage: () => validateLocaleAndSetLanguage, version: () => version, versionMajorMinor: () => versionMajorMinor, visitArray: () => visitArray, visitCommaListElements: () => visitCommaListElements, visitEachChild: () => visitEachChild, visitFunctionBody: () => visitFunctionBody, visitIterationBody: () => visitIterationBody, visitLexicalEnvironment: () => visitLexicalEnvironment, visitNode: () => visitNode, visitNodes: () => visitNodes2, visitParameterList: () => visitParameterList, walkUpBindingElementsAndPatterns: () => walkUpBindingElementsAndPatterns, walkUpOuterExpressions: () => walkUpOuterExpressions, walkUpParenthesizedExpressions: () => walkUpParenthesizedExpressions, walkUpParenthesizedTypes: () => walkUpParenthesizedTypes, walkUpParenthesizedTypesAndGetParentAndChild: () => walkUpParenthesizedTypesAndGetParentAndChild, whitespaceOrMapCommentRegExp: () => whitespaceOrMapCommentRegExp, writeCommentRange: () => writeCommentRange, writeFile: () => writeFile, writeFileEnsuringDirectories: () => writeFileEnsuringDirectories, zipWith: () => zipWith }); var enableDeprecationWarnings = true; var typeScriptVersion2; function getTypeScriptVersion() { return typeScriptVersion2 ?? (typeScriptVersion2 = new Version(version)); } function formatDeprecationMessage(name, error2, errorAfter, since, message) { let deprecationMessage = error2 ? "DeprecationError: " : "DeprecationWarning: "; deprecationMessage += `'${name}' `; deprecationMessage += since ? `has been deprecated since v${since}` : "is deprecated"; deprecationMessage += error2 ? " and can no longer be used." : errorAfter ? ` and will no longer be usable after v${errorAfter}.` : "."; deprecationMessage += message ? ` ${formatStringFromArgs(message, [name])}` : ""; return deprecationMessage; } function createErrorDeprecation(name, errorAfter, since, message) { const deprecationMessage = formatDeprecationMessage(name, true, errorAfter, since, message); return () => { throw new TypeError(deprecationMessage); }; } function createWarningDeprecation(name, errorAfter, since, message) { let hasWrittenDeprecation = false; return () => { if (enableDeprecationWarnings && !hasWrittenDeprecation) { Debug.log.warn(formatDeprecationMessage(name, false, errorAfter, since, message)); hasWrittenDeprecation = true; } }; } function createDeprecation(name, options = {}) { const version2 = typeof options.typeScriptVersion === "string" ? new Version(options.typeScriptVersion) : options.typeScriptVersion ?? getTypeScriptVersion(); const errorAfter = typeof options.errorAfter === "string" ? new Version(options.errorAfter) : options.errorAfter; const warnAfter = typeof options.warnAfter === "string" ? new Version(options.warnAfter) : options.warnAfter; const since = typeof options.since === "string" ? new Version(options.since) : options.since ?? warnAfter; const error2 = options.error || errorAfter && version2.compareTo(errorAfter) >= 0; const warn = !warnAfter || version2.compareTo(warnAfter) >= 0; return error2 ? createErrorDeprecation(name, errorAfter, since, options.message) : warn ? createWarningDeprecation(name, errorAfter, since, options.message) : noop; } function wrapFunction(deprecation, func) { return function() { deprecation(); return func.apply(this, arguments); }; } function deprecate(func, options) { const deprecation = createDeprecation((options == null ? undefined : options.name) ?? Debug.getFunctionName(func), options); return wrapFunction(deprecation, func); } function createOverload(name, overloads, binder2, deprecations) { Object.defineProperty(call, "name", { ...Object.getOwnPropertyDescriptor(call, "name"), value: name }); if (deprecations) { for (const key of Object.keys(deprecations)) { const index = +key; if (!isNaN(index) && hasProperty(overloads, `${index}`)) { overloads[index] = deprecate(overloads[index], { ...deprecations[index], name }); } } } const bind = createBinder2(overloads, binder2); return call; function call(...args) { const index = bind(args); const fn = index !== undefined ? overloads[index] : undefined; if (typeof fn === "function") { return fn(...args); } throw new TypeError("Invalid arguments"); } } function createBinder2(overloads, binder2) { return (args) => { for (let i = 0;hasProperty(overloads, `${i}`) && hasProperty(binder2, `${i}`); i++) { const fn = binder2[i]; if (fn(args)) { return i; } } }; } function buildOverload(name) { return { overload: (overloads) => ({ bind: (binder2) => ({ finish: () => createOverload(name, overloads, binder2), deprecate: (deprecations) => ({ finish: () => createOverload(name, overloads, binder2, deprecations) }) }) }) }; } var ts_server_exports3 = {}; __export2(ts_server_exports3, { ActionInvalidate: () => ActionInvalidate, ActionPackageInstalled: () => ActionPackageInstalled, ActionSet: () => ActionSet, ActionWatchTypingLocations: () => ActionWatchTypingLocations, Arguments: () => Arguments, AutoImportProviderProject: () => AutoImportProviderProject, AuxiliaryProject: () => AuxiliaryProject, CharRangeSection: () => CharRangeSection, CloseFileWatcherEvent: () => CloseFileWatcherEvent, CommandNames: () => CommandNames, ConfigFileDiagEvent: () => ConfigFileDiagEvent, ConfiguredProject: () => ConfiguredProject2, ConfiguredProjectLoadKind: () => ConfiguredProjectLoadKind, CreateDirectoryWatcherEvent: () => CreateDirectoryWatcherEvent, CreateFileWatcherEvent: () => CreateFileWatcherEvent, Errors: () => Errors, EventBeginInstallTypes: () => EventBeginInstallTypes, EventEndInstallTypes: () => EventEndInstallTypes, EventInitializationFailed: () => EventInitializationFailed, EventTypesRegistry: () => EventTypesRegistry, ExternalProject: () => ExternalProject, GcTimer: () => GcTimer, InferredProject: () => InferredProject2, LargeFileReferencedEvent: () => LargeFileReferencedEvent, LineIndex: () => LineIndex, LineLeaf: () => LineLeaf, LineNode: () => LineNode, LogLevel: () => LogLevel2, Msg: () => Msg, OpenFileInfoTelemetryEvent: () => OpenFileInfoTelemetryEvent, Project: () => Project2, ProjectInfoTelemetryEvent: () => ProjectInfoTelemetryEvent, ProjectKind: () => ProjectKind, ProjectLanguageServiceStateEvent: () => ProjectLanguageServiceStateEvent, ProjectLoadingFinishEvent: () => ProjectLoadingFinishEvent, ProjectLoadingStartEvent: () => ProjectLoadingStartEvent, ProjectService: () => ProjectService2, ProjectsUpdatedInBackgroundEvent: () => ProjectsUpdatedInBackgroundEvent, ScriptInfo: () => ScriptInfo, ScriptVersionCache: () => ScriptVersionCache, Session: () => Session3, TextStorage: () => TextStorage, ThrottledOperations: () => ThrottledOperations, TypingsInstallerAdapter: () => TypingsInstallerAdapter, allFilesAreJsOrDts: () => allFilesAreJsOrDts, allRootFilesAreJsOrDts: () => allRootFilesAreJsOrDts, asNormalizedPath: () => asNormalizedPath, convertCompilerOptions: () => convertCompilerOptions, convertFormatOptions: () => convertFormatOptions, convertScriptKindName: () => convertScriptKindName, convertTypeAcquisition: () => convertTypeAcquisition, convertUserPreferences: () => convertUserPreferences, convertWatchOptions: () => convertWatchOptions, countEachFileTypes: () => countEachFileTypes, createInstallTypingsRequest: () => createInstallTypingsRequest, createModuleSpecifierCache: () => createModuleSpecifierCache, createNormalizedPathMap: () => createNormalizedPathMap, createPackageJsonCache: () => createPackageJsonCache, createSortedArray: () => createSortedArray2, emptyArray: () => emptyArray2, findArgument: () => findArgument, formatDiagnosticToProtocol: () => formatDiagnosticToProtocol, formatMessage: () => formatMessage2, getBaseConfigFileName: () => getBaseConfigFileName, getDetailWatchInfo: () => getDetailWatchInfo, getLocationInNewDocument: () => getLocationInNewDocument, hasArgument: () => hasArgument, hasNoTypeScriptSource: () => hasNoTypeScriptSource, indent: () => indent2, isBackgroundProject: () => isBackgroundProject, isConfigFile: () => isConfigFile, isConfiguredProject: () => isConfiguredProject, isDynamicFileName: () => isDynamicFileName, isExternalProject: () => isExternalProject, isInferredProject: () => isInferredProject, isInferredProjectName: () => isInferredProjectName, isProjectDeferredClose: () => isProjectDeferredClose, makeAutoImportProviderProjectName: () => makeAutoImportProviderProjectName, makeAuxiliaryProjectName: () => makeAuxiliaryProjectName, makeInferredProjectName: () => makeInferredProjectName, maxFileSize: () => maxFileSize, maxProgramSizeForNonTsFiles: () => maxProgramSizeForNonTsFiles, normalizedPathToPath: () => normalizedPathToPath, nowString: () => nowString, nullCancellationToken: () => nullCancellationToken, nullTypingsInstaller: () => nullTypingsInstaller, protocol: () => ts_server_protocol_exports, scriptInfoIsContainedByBackgroundProject: () => scriptInfoIsContainedByBackgroundProject, scriptInfoIsContainedByDeferredClosedProject: () => scriptInfoIsContainedByDeferredClosedProject, stringifyIndented: () => stringifyIndented, toEvent: () => toEvent, toNormalizedPath: () => toNormalizedPath, tryConvertScriptKindName: () => tryConvertScriptKindName, typingsInstaller: () => ts_server_typingsInstaller_exports, updateProjectIfDirty: () => updateProjectIfDirty }); var ts_server_typingsInstaller_exports = {}; __export2(ts_server_typingsInstaller_exports, { TypingsInstaller: () => TypingsInstaller, getNpmCommandForInstallation: () => getNpmCommandForInstallation, installNpmPackages: () => installNpmPackages, typingsName: () => typingsName }); var nullLog = { isEnabled: () => false, writeLine: noop }; function typingToFileName(cachePath, packageName, installTypingHost, log) { try { const result = resolveModuleName(packageName, combinePaths(cachePath, "index.d.ts"), { moduleResolution: 2 }, installTypingHost); return result.resolvedModule && result.resolvedModule.resolvedFileName; } catch (e) { if (log.isEnabled()) { log.writeLine(`Failed to resolve ${packageName} in folder '${cachePath}': ${e.message}`); } return; } } function installNpmPackages(npmPath, tsVersion, packageNames, install) { let hasError = false; for (let remaining = packageNames.length;remaining > 0; ) { const result = getNpmCommandForInstallation(npmPath, tsVersion, packageNames, remaining); remaining = result.remaining; hasError = install(result.command) || hasError; } return hasError; } function getNpmCommandForInstallation(npmPath, tsVersion, packageNames, remaining) { const sliceStart = packageNames.length - remaining; let command, toSlice = remaining; while (true) { command = `${npmPath} install --ignore-scripts ${(toSlice === packageNames.length ? packageNames : packageNames.slice(sliceStart, sliceStart + toSlice)).join(" ")} --save-dev --user-agent="typesInstaller/${tsVersion}"`; if (command.length < 8000) { break; } toSlice = toSlice - Math.floor(toSlice / 2); } return { command, remaining: remaining - toSlice }; } var TypingsInstaller = class { constructor(installTypingHost, globalCachePath, safeListPath, typesMapLocation, throttleLimit, log = nullLog) { this.installTypingHost = installTypingHost; this.globalCachePath = globalCachePath; this.safeListPath = safeListPath; this.typesMapLocation = typesMapLocation; this.throttleLimit = throttleLimit; this.log = log; this.packageNameToTypingLocation = /* @__PURE__ */ new Map; this.missingTypingsSet = /* @__PURE__ */ new Set; this.knownCachesSet = /* @__PURE__ */ new Set; this.projectWatchers = /* @__PURE__ */ new Map; this.pendingRunRequests = []; this.installRunCount = 1; this.inFlightRequestCount = 0; this.latestDistTag = "latest"; const isLoggingEnabled = this.log.isEnabled(); if (isLoggingEnabled) { this.log.writeLine(`Global cache location '${globalCachePath}', safe file path '${safeListPath}', types map path ${typesMapLocation}`); } this.processCacheLocation(this.globalCachePath); } handleRequest(req) { switch (req.kind) { case "discover": this.install(req); break; case "closeProject": this.closeProject(req); break; case "typesRegistry": { const typesRegistry = {}; this.typesRegistry.forEach((value, key) => { typesRegistry[key] = value; }); const response = { kind: EventTypesRegistry, typesRegistry }; this.sendResponse(response); break; } case "installPackage": { this.installPackage(req); break; } default: Debug.assertNever(req); } } closeProject(req) { this.closeWatchers(req.projectName); } closeWatchers(projectName) { if (this.log.isEnabled()) { this.log.writeLine(`Closing file watchers for project '${projectName}'`); } const watchers = this.projectWatchers.get(projectName); if (!watchers) { if (this.log.isEnabled()) { this.log.writeLine(`No watchers are registered for project '${projectName}'`); } return; } this.projectWatchers.delete(projectName); this.sendResponse({ kind: ActionWatchTypingLocations, projectName, files: [] }); if (this.log.isEnabled()) { this.log.writeLine(`Closing file watchers for project '${projectName}' - done.`); } } install(req) { if (this.log.isEnabled()) { this.log.writeLine(`Got install request${stringifyIndented(req)}`); } if (req.cachePath) { if (this.log.isEnabled()) { this.log.writeLine(`Request specifies cache path '${req.cachePath}', loading cached information...`); } this.processCacheLocation(req.cachePath); } if (this.safeList === undefined) { this.initializeSafeList(); } const discoverTypingsResult = ts_JsTyping_exports.discoverTypings(this.installTypingHost, this.log.isEnabled() ? (s) => this.log.writeLine(s) : undefined, req.fileNames, req.projectRootPath, this.safeList, this.packageNameToTypingLocation, req.typeAcquisition, req.unresolvedImports, this.typesRegistry, req.compilerOptions); this.watchFiles(req.projectName, discoverTypingsResult.filesToWatch); if (discoverTypingsResult.newTypingNames.length) { this.installTypings(req, req.cachePath || this.globalCachePath, discoverTypingsResult.cachedTypingPaths, discoverTypingsResult.newTypingNames); } else { this.sendResponse(this.createSetTypings(req, discoverTypingsResult.cachedTypingPaths)); if (this.log.isEnabled()) { this.log.writeLine(`No new typings were requested as a result of typings discovery`); } } } installPackage(req) { const { fileName, packageName, projectName, projectRootPath, id } = req; const validationResult = ts_JsTyping_exports.validatePackageName(packageName); if (validationResult !== ts_JsTyping_exports.NameValidationResult.Ok) { const message = ts_JsTyping_exports.renderPackageNameValidationFailure(validationResult, packageName); if (this.log.isEnabled()) { this.log.writeLine(message); } const response = { kind: ActionPackageInstalled, projectName, id, success: false, message }; this.sendResponse(response); return; } const cwd = forEachAncestorDirectory(getDirectoryPath(fileName), (directory) => { if (this.installTypingHost.fileExists(combinePaths(directory, "package.json"))) { return directory; } }) || projectRootPath; if (cwd) { this.installWorker(-1, [packageName], cwd, (success) => { const message = success ? `Package ${packageName} installed.` : `There was an error installing ${packageName}.`; const response = { kind: ActionPackageInstalled, projectName, id, success, message }; this.sendResponse(response); }); } else { const response = { kind: ActionPackageInstalled, projectName, id, success: false, message: "Could not determine a project root path." }; this.sendResponse(response); } } initializeSafeList() { if (this.typesMapLocation) { const safeListFromMap = ts_JsTyping_exports.loadTypesMap(this.installTypingHost, this.typesMapLocation); if (safeListFromMap) { this.log.writeLine(`Loaded safelist from types map file '${this.typesMapLocation}'`); this.safeList = safeListFromMap; return; } this.log.writeLine(`Failed to load safelist from types map file '${this.typesMapLocation}'`); } this.safeList = ts_JsTyping_exports.loadSafeList(this.installTypingHost, this.safeListPath); } processCacheLocation(cacheLocation) { if (this.log.isEnabled()) { this.log.writeLine(`Processing cache location '${cacheLocation}'`); } if (this.knownCachesSet.has(cacheLocation)) { if (this.log.isEnabled()) { this.log.writeLine(`Cache location was already processed...`); } return; } const packageJson = combinePaths(cacheLocation, "package.json"); const packageLockJson = combinePaths(cacheLocation, "package-lock.json"); if (this.log.isEnabled()) { this.log.writeLine(`Trying to find '${packageJson}'...`); } if (this.installTypingHost.fileExists(packageJson) && this.installTypingHost.fileExists(packageLockJson)) { const npmConfig = JSON.parse(this.installTypingHost.readFile(packageJson)); const npmLock = JSON.parse(this.installTypingHost.readFile(packageLockJson)); if (this.log.isEnabled()) { this.log.writeLine(`Loaded content of '${packageJson}':${stringifyIndented(npmConfig)}`); this.log.writeLine(`Loaded content of '${packageLockJson}':${stringifyIndented(npmLock)}`); } if (npmConfig.devDependencies && (npmLock.packages || npmLock.dependencies)) { for (const key in npmConfig.devDependencies) { if (npmLock.packages && !hasProperty(npmLock.packages, `node_modules/${key}`) || npmLock.dependencies && !hasProperty(npmLock.dependencies, key)) { continue; } const packageName = getBaseFileName(key); if (!packageName) { continue; } const typingFile = typingToFileName(cacheLocation, packageName, this.installTypingHost, this.log); if (!typingFile) { this.missingTypingsSet.add(packageName); continue; } const existingTypingFile = this.packageNameToTypingLocation.get(packageName); if (existingTypingFile) { if (existingTypingFile.typingLocation === typingFile) { continue; } if (this.log.isEnabled()) { this.log.writeLine(`New typing for package ${packageName} from '${typingFile}' conflicts with existing typing file '${existingTypingFile}'`); } } if (this.log.isEnabled()) { this.log.writeLine(`Adding entry into typings cache: '${packageName}' => '${typingFile}'`); } const info = npmLock.packages && getProperty(npmLock.packages, `node_modules/${key}`) || getProperty(npmLock.dependencies, key); const version2 = info && info.version; if (!version2) { continue; } const newTyping = { typingLocation: typingFile, version: new Version(version2) }; this.packageNameToTypingLocation.set(packageName, newTyping); } } } if (this.log.isEnabled()) { this.log.writeLine(`Finished processing cache location '${cacheLocation}'`); } this.knownCachesSet.add(cacheLocation); } filterTypings(typingsToInstall) { return mapDefined(typingsToInstall, (typing) => { const typingKey = mangleScopedPackageName(typing); if (this.missingTypingsSet.has(typingKey)) { if (this.log.isEnabled()) this.log.writeLine(`'${typing}':: '${typingKey}' is in missingTypingsSet - skipping...`); return; } const validationResult = ts_JsTyping_exports.validatePackageName(typing); if (validationResult !== ts_JsTyping_exports.NameValidationResult.Ok) { this.missingTypingsSet.add(typingKey); if (this.log.isEnabled()) this.log.writeLine(ts_JsTyping_exports.renderPackageNameValidationFailure(validationResult, typing)); return; } if (!this.typesRegistry.has(typingKey)) { if (this.log.isEnabled()) this.log.writeLine(`'${typing}':: Entry for package '${typingKey}' does not exist in local types registry - skipping...`); return; } if (this.packageNameToTypingLocation.get(typingKey) && ts_JsTyping_exports.isTypingUpToDate(this.packageNameToTypingLocation.get(typingKey), this.typesRegistry.get(typingKey))) { if (this.log.isEnabled()) this.log.writeLine(`'${typing}':: '${typingKey}' already has an up-to-date typing - skipping...`); return; } return typingKey; }); } ensurePackageDirectoryExists(directory) { const npmConfigPath = combinePaths(directory, "package.json"); if (this.log.isEnabled()) { this.log.writeLine(`Npm config file: ${npmConfigPath}`); } if (!this.installTypingHost.fileExists(npmConfigPath)) { if (this.log.isEnabled()) { this.log.writeLine(`Npm config file: '${npmConfigPath}' is missing, creating new one...`); } this.ensureDirectoryExists(directory, this.installTypingHost); this.installTypingHost.writeFile(npmConfigPath, '{ "private": true }'); } } installTypings(req, cachePath, currentlyCachedTypings, typingsToInstall) { if (this.log.isEnabled()) { this.log.writeLine(`Installing typings ${JSON.stringify(typingsToInstall)}`); } const filteredTypings = this.filterTypings(typingsToInstall); if (filteredTypings.length === 0) { if (this.log.isEnabled()) { this.log.writeLine(`All typings are known to be missing or invalid - no need to install more typings`); } this.sendResponse(this.createSetTypings(req, currentlyCachedTypings)); return; } this.ensurePackageDirectoryExists(cachePath); const requestId = this.installRunCount; this.installRunCount++; this.sendResponse({ kind: EventBeginInstallTypes, eventId: requestId, typingsInstallerVersion: version, projectName: req.projectName }); const scopedTypings = filteredTypings.map(typingsName); this.installTypingsAsync(requestId, scopedTypings, cachePath, (ok) => { try { if (!ok) { if (this.log.isEnabled()) { this.log.writeLine(`install request failed, marking packages as missing to prevent repeated requests: ${JSON.stringify(filteredTypings)}`); } for (const typing of filteredTypings) { this.missingTypingsSet.add(typing); } return; } if (this.log.isEnabled()) { this.log.writeLine(`Installed typings ${JSON.stringify(scopedTypings)}`); } const installedTypingFiles = []; for (const packageName of filteredTypings) { const typingFile = typingToFileName(cachePath, packageName, this.installTypingHost, this.log); if (!typingFile) { this.missingTypingsSet.add(packageName); continue; } const distTags = this.typesRegistry.get(packageName); const newVersion = new Version(distTags[`ts${versionMajorMinor}`] || distTags[this.latestDistTag]); const newTyping = { typingLocation: typingFile, version: newVersion }; this.packageNameToTypingLocation.set(packageName, newTyping); installedTypingFiles.push(typingFile); } if (this.log.isEnabled()) { this.log.writeLine(`Installed typing files ${JSON.stringify(installedTypingFiles)}`); } this.sendResponse(this.createSetTypings(req, currentlyCachedTypings.concat(installedTypingFiles))); } finally { const response = { kind: EventEndInstallTypes, eventId: requestId, projectName: req.projectName, packagesToInstall: scopedTypings, installSuccess: ok, typingsInstallerVersion: version }; this.sendResponse(response); } }); } ensureDirectoryExists(directory, host) { const directoryName = getDirectoryPath(directory); if (!host.directoryExists(directoryName)) { this.ensureDirectoryExists(directoryName, host); } if (!host.directoryExists(directory)) { host.createDirectory(directory); } } watchFiles(projectName, files) { if (!files.length) { this.closeWatchers(projectName); return; } const existing = this.projectWatchers.get(projectName); const newSet = new Set(files); if (!existing || forEachKey(newSet, (s) => !existing.has(s)) || forEachKey(existing, (s) => !newSet.has(s))) { this.projectWatchers.set(projectName, newSet); this.sendResponse({ kind: ActionWatchTypingLocations, projectName, files }); } else { this.sendResponse({ kind: ActionWatchTypingLocations, projectName, files: undefined }); } } createSetTypings(request, typings) { return { projectName: request.projectName, typeAcquisition: request.typeAcquisition, compilerOptions: request.compilerOptions, typings, unresolvedImports: request.unresolvedImports, kind: ActionSet }; } installTypingsAsync(requestId, packageNames, cwd, onRequestCompleted) { this.pendingRunRequests.unshift({ requestId, packageNames, cwd, onRequestCompleted }); this.executeWithThrottling(); } executeWithThrottling() { while (this.inFlightRequestCount < this.throttleLimit && this.pendingRunRequests.length) { this.inFlightRequestCount++; const request = this.pendingRunRequests.pop(); this.installWorker(request.requestId, request.packageNames, request.cwd, (ok) => { this.inFlightRequestCount--; request.onRequestCompleted(ok); this.executeWithThrottling(); }); } } }; function typingsName(packageName) { return `@types/${packageName}@ts${versionMajorMinor}`; } var LogLevel2 = /* @__PURE__ */ ((LogLevel3) => { LogLevel3[LogLevel3["terse"] = 0] = "terse"; LogLevel3[LogLevel3["normal"] = 1] = "normal"; LogLevel3[LogLevel3["requestTime"] = 2] = "requestTime"; LogLevel3[LogLevel3["verbose"] = 3] = "verbose"; return LogLevel3; })(LogLevel2 || {}); var emptyArray2 = createSortedArray2(); var Msg = /* @__PURE__ */ ((Msg2) => { Msg2["Err"] = "Err"; Msg2["Info"] = "Info"; Msg2["Perf"] = "Perf"; return Msg2; })(Msg || {}); function createInstallTypingsRequest(project, typeAcquisition, unresolvedImports, cachePath) { return { projectName: project.getProjectName(), fileNames: project.getFileNames(true, true).concat(project.getExcludedFiles()), compilerOptions: project.getCompilationSettings(), typeAcquisition, unresolvedImports, projectRootPath: project.getCurrentDirectory(), cachePath, kind: "discover" }; } var Errors; ((Errors2) => { function ThrowNoProject() { throw new Error("No Project."); } Errors2.ThrowNoProject = ThrowNoProject; function ThrowProjectLanguageServiceDisabled() { throw new Error("The project's language service is disabled."); } Errors2.ThrowProjectLanguageServiceDisabled = ThrowProjectLanguageServiceDisabled; function ThrowProjectDoesNotContainDocument(fileName, project) { throw new Error(`Project '${project.getProjectName()}' does not contain document '${fileName}'`); } Errors2.ThrowProjectDoesNotContainDocument = ThrowProjectDoesNotContainDocument; })(Errors || (Errors = {})); function toNormalizedPath(fileName) { return normalizePath(fileName); } function normalizedPathToPath(normalizedPath, currentDirectory, getCanonicalFileName) { const f = isRootedDiskPath(normalizedPath) ? normalizedPath : getNormalizedAbsolutePath(normalizedPath, currentDirectory); return getCanonicalFileName(f); } function asNormalizedPath(fileName) { return fileName; } function createNormalizedPathMap() { const map2 = /* @__PURE__ */ new Map; return { get(path) { return map2.get(path); }, set(path, value) { map2.set(path, value); }, contains(path) { return map2.has(path); }, remove(path) { map2.delete(path); } }; } function isInferredProjectName(name) { return /dev\/null\/inferredProject\d+\*/.test(name); } function makeInferredProjectName(counter) { return `/dev/null/inferredProject${counter}*`; } function makeAutoImportProviderProjectName(counter) { return `/dev/null/autoImportProviderProject${counter}*`; } function makeAuxiliaryProjectName(counter) { return `/dev/null/auxiliaryProject${counter}*`; } function createSortedArray2() { return []; } var ThrottledOperations = class _ThrottledOperations { constructor(host, logger) { this.host = host; this.pendingTimeouts = /* @__PURE__ */ new Map; this.logger = logger.hasLevel(3) ? logger : undefined; } schedule(operationId, delay, cb) { const pendingTimeout = this.pendingTimeouts.get(operationId); if (pendingTimeout) { this.host.clearTimeout(pendingTimeout); } this.pendingTimeouts.set(operationId, this.host.setTimeout(_ThrottledOperations.run, delay, operationId, this, cb)); if (this.logger) { this.logger.info(`Scheduled: ${operationId}${pendingTimeout ? ", Cancelled earlier one" : ""}`); } } cancel(operationId) { const pendingTimeout = this.pendingTimeouts.get(operationId); if (!pendingTimeout) return false; this.host.clearTimeout(pendingTimeout); return this.pendingTimeouts.delete(operationId); } static run(operationId, self, cb) { self.pendingTimeouts.delete(operationId); if (self.logger) { self.logger.info(`Running: ${operationId}`); } cb(); } }; var GcTimer = class _GcTimer { constructor(host, delay, logger) { this.host = host; this.delay = delay; this.logger = logger; } scheduleCollect() { if (!this.host.gc || this.timerId !== undefined) { return; } this.timerId = this.host.setTimeout(_GcTimer.run, this.delay, this); } static run(self) { self.timerId = undefined; const log = self.logger.hasLevel(2); const before = log && self.host.getMemoryUsage(); self.host.gc(); if (log) { const after = self.host.getMemoryUsage(); self.logger.perftrc(`GC::before ${before}, after ${after}`); } } }; function getBaseConfigFileName(configFilePath) { const base = getBaseFileName(configFilePath); return base === "tsconfig.json" || base === "jsconfig.json" ? base : undefined; } var ts_server_protocol_exports = {}; __export2(ts_server_protocol_exports, { ClassificationType: () => ClassificationType, CommandTypes: () => CommandTypes, CompletionTriggerKind: () => CompletionTriggerKind, IndentStyle: () => IndentStyle2, JsxEmit: () => JsxEmit2, ModuleKind: () => ModuleKind2, ModuleResolutionKind: () => ModuleResolutionKind2, NewLineKind: () => NewLineKind2, OrganizeImportsMode: () => OrganizeImportsMode, PollingWatchKind: () => PollingWatchKind2, ScriptTarget: () => ScriptTarget11, SemicolonPreference: () => SemicolonPreference, WatchDirectoryKind: () => WatchDirectoryKind2, WatchFileKind: () => WatchFileKind2 }); var CommandTypes = /* @__PURE__ */ ((CommandTypes2) => { CommandTypes2["JsxClosingTag"] = "jsxClosingTag"; CommandTypes2["LinkedEditingRange"] = "linkedEditingRange"; CommandTypes2["Brace"] = "brace"; CommandTypes2["BraceFull"] = "brace-full"; CommandTypes2["BraceCompletion"] = "braceCompletion"; CommandTypes2["GetSpanOfEnclosingComment"] = "getSpanOfEnclosingComment"; CommandTypes2["Change"] = "change"; CommandTypes2["Close"] = "close"; CommandTypes2["Completions"] = "completions"; CommandTypes2["CompletionInfo"] = "completionInfo"; CommandTypes2["CompletionsFull"] = "completions-full"; CommandTypes2["CompletionDetails"] = "completionEntryDetails"; CommandTypes2["CompletionDetailsFull"] = "completionEntryDetails-full"; CommandTypes2["CompileOnSaveAffectedFileList"] = "compileOnSaveAffectedFileList"; CommandTypes2["CompileOnSaveEmitFile"] = "compileOnSaveEmitFile"; CommandTypes2["Configure"] = "configure"; CommandTypes2["Definition"] = "definition"; CommandTypes2["DefinitionFull"] = "definition-full"; CommandTypes2["DefinitionAndBoundSpan"] = "definitionAndBoundSpan"; CommandTypes2["DefinitionAndBoundSpanFull"] = "definitionAndBoundSpan-full"; CommandTypes2["Implementation"] = "implementation"; CommandTypes2["ImplementationFull"] = "implementation-full"; CommandTypes2["EmitOutput"] = "emit-output"; CommandTypes2["Exit"] = "exit"; CommandTypes2["FileReferences"] = "fileReferences"; CommandTypes2["FileReferencesFull"] = "fileReferences-full"; CommandTypes2["Format"] = "format"; CommandTypes2["Formatonkey"] = "formatonkey"; CommandTypes2["FormatFull"] = "format-full"; CommandTypes2["FormatonkeyFull"] = "formatonkey-full"; CommandTypes2["FormatRangeFull"] = "formatRange-full"; CommandTypes2["Geterr"] = "geterr"; CommandTypes2["GeterrForProject"] = "geterrForProject"; CommandTypes2["SemanticDiagnosticsSync"] = "semanticDiagnosticsSync"; CommandTypes2["SyntacticDiagnosticsSync"] = "syntacticDiagnosticsSync"; CommandTypes2["SuggestionDiagnosticsSync"] = "suggestionDiagnosticsSync"; CommandTypes2["NavBar"] = "navbar"; CommandTypes2["NavBarFull"] = "navbar-full"; CommandTypes2["Navto"] = "navto"; CommandTypes2["NavtoFull"] = "navto-full"; CommandTypes2["NavTree"] = "navtree"; CommandTypes2["NavTreeFull"] = "navtree-full"; CommandTypes2["DocumentHighlights"] = "documentHighlights"; CommandTypes2["DocumentHighlightsFull"] = "documentHighlights-full"; CommandTypes2["Open"] = "open"; CommandTypes2["Quickinfo"] = "quickinfo"; CommandTypes2["QuickinfoFull"] = "quickinfo-full"; CommandTypes2["References"] = "references"; CommandTypes2["ReferencesFull"] = "references-full"; CommandTypes2["Reload"] = "reload"; CommandTypes2["Rename"] = "rename"; CommandTypes2["RenameInfoFull"] = "rename-full"; CommandTypes2["RenameLocationsFull"] = "renameLocations-full"; CommandTypes2["Saveto"] = "saveto"; CommandTypes2["SignatureHelp"] = "signatureHelp"; CommandTypes2["SignatureHelpFull"] = "signatureHelp-full"; CommandTypes2["FindSourceDefinition"] = "findSourceDefinition"; CommandTypes2["Status"] = "status"; CommandTypes2["TypeDefinition"] = "typeDefinition"; CommandTypes2["ProjectInfo"] = "projectInfo"; CommandTypes2["ReloadProjects"] = "reloadProjects"; CommandTypes2["Unknown"] = "unknown"; CommandTypes2["OpenExternalProject"] = "openExternalProject"; CommandTypes2["OpenExternalProjects"] = "openExternalProjects"; CommandTypes2["CloseExternalProject"] = "closeExternalProject"; CommandTypes2["SynchronizeProjectList"] = "synchronizeProjectList"; CommandTypes2["ApplyChangedToOpenFiles"] = "applyChangedToOpenFiles"; CommandTypes2["UpdateOpen"] = "updateOpen"; CommandTypes2["EncodedSyntacticClassificationsFull"] = "encodedSyntacticClassifications-full"; CommandTypes2["EncodedSemanticClassificationsFull"] = "encodedSemanticClassifications-full"; CommandTypes2["Cleanup"] = "cleanup"; CommandTypes2["GetOutliningSpans"] = "getOutliningSpans"; CommandTypes2["GetOutliningSpansFull"] = "outliningSpans"; CommandTypes2["TodoComments"] = "todoComments"; CommandTypes2["Indentation"] = "indentation"; CommandTypes2["DocCommentTemplate"] = "docCommentTemplate"; CommandTypes2["CompilerOptionsDiagnosticsFull"] = "compilerOptionsDiagnostics-full"; CommandTypes2["NameOrDottedNameSpan"] = "nameOrDottedNameSpan"; CommandTypes2["BreakpointStatement"] = "breakpointStatement"; CommandTypes2["CompilerOptionsForInferredProjects"] = "compilerOptionsForInferredProjects"; CommandTypes2["GetCodeFixes"] = "getCodeFixes"; CommandTypes2["GetCodeFixesFull"] = "getCodeFixes-full"; CommandTypes2["GetCombinedCodeFix"] = "getCombinedCodeFix"; CommandTypes2["GetCombinedCodeFixFull"] = "getCombinedCodeFix-full"; CommandTypes2["ApplyCodeActionCommand"] = "applyCodeActionCommand"; CommandTypes2["GetSupportedCodeFixes"] = "getSupportedCodeFixes"; CommandTypes2["GetApplicableRefactors"] = "getApplicableRefactors"; CommandTypes2["GetEditsForRefactor"] = "getEditsForRefactor"; CommandTypes2["GetMoveToRefactoringFileSuggestions"] = "getMoveToRefactoringFileSuggestions"; CommandTypes2["PreparePasteEdits"] = "preparePasteEdits"; CommandTypes2["GetPasteEdits"] = "getPasteEdits"; CommandTypes2["GetEditsForRefactorFull"] = "getEditsForRefactor-full"; CommandTypes2["OrganizeImports"] = "organizeImports"; CommandTypes2["OrganizeImportsFull"] = "organizeImports-full"; CommandTypes2["GetEditsForFileRename"] = "getEditsForFileRename"; CommandTypes2["GetEditsForFileRenameFull"] = "getEditsForFileRename-full"; CommandTypes2["ConfigurePlugin"] = "configurePlugin"; CommandTypes2["SelectionRange"] = "selectionRange"; CommandTypes2["SelectionRangeFull"] = "selectionRange-full"; CommandTypes2["ToggleLineComment"] = "toggleLineComment"; CommandTypes2["ToggleLineCommentFull"] = "toggleLineComment-full"; CommandTypes2["ToggleMultilineComment"] = "toggleMultilineComment"; CommandTypes2["ToggleMultilineCommentFull"] = "toggleMultilineComment-full"; CommandTypes2["CommentSelection"] = "commentSelection"; CommandTypes2["CommentSelectionFull"] = "commentSelection-full"; CommandTypes2["UncommentSelection"] = "uncommentSelection"; CommandTypes2["UncommentSelectionFull"] = "uncommentSelection-full"; CommandTypes2["PrepareCallHierarchy"] = "prepareCallHierarchy"; CommandTypes2["ProvideCallHierarchyIncomingCalls"] = "provideCallHierarchyIncomingCalls"; CommandTypes2["ProvideCallHierarchyOutgoingCalls"] = "provideCallHierarchyOutgoingCalls"; CommandTypes2["ProvideInlayHints"] = "provideInlayHints"; CommandTypes2["WatchChange"] = "watchChange"; CommandTypes2["MapCode"] = "mapCode"; CommandTypes2["CopilotRelated"] = "copilotRelated"; return CommandTypes2; })(CommandTypes || {}); var WatchFileKind2 = /* @__PURE__ */ ((WatchFileKind3) => { WatchFileKind3["FixedPollingInterval"] = "FixedPollingInterval"; WatchFileKind3["PriorityPollingInterval"] = "PriorityPollingInterval"; WatchFileKind3["DynamicPriorityPolling"] = "DynamicPriorityPolling"; WatchFileKind3["FixedChunkSizePolling"] = "FixedChunkSizePolling"; WatchFileKind3["UseFsEvents"] = "UseFsEvents"; WatchFileKind3["UseFsEventsOnParentDirectory"] = "UseFsEventsOnParentDirectory"; return WatchFileKind3; })(WatchFileKind2 || {}); var WatchDirectoryKind2 = /* @__PURE__ */ ((WatchDirectoryKind3) => { WatchDirectoryKind3["UseFsEvents"] = "UseFsEvents"; WatchDirectoryKind3["FixedPollingInterval"] = "FixedPollingInterval"; WatchDirectoryKind3["DynamicPriorityPolling"] = "DynamicPriorityPolling"; WatchDirectoryKind3["FixedChunkSizePolling"] = "FixedChunkSizePolling"; return WatchDirectoryKind3; })(WatchDirectoryKind2 || {}); var PollingWatchKind2 = /* @__PURE__ */ ((PollingWatchKind3) => { PollingWatchKind3["FixedInterval"] = "FixedInterval"; PollingWatchKind3["PriorityInterval"] = "PriorityInterval"; PollingWatchKind3["DynamicPriority"] = "DynamicPriority"; PollingWatchKind3["FixedChunkSize"] = "FixedChunkSize"; return PollingWatchKind3; })(PollingWatchKind2 || {}); var IndentStyle2 = /* @__PURE__ */ ((IndentStyle3) => { IndentStyle3["None"] = "None"; IndentStyle3["Block"] = "Block"; IndentStyle3["Smart"] = "Smart"; return IndentStyle3; })(IndentStyle2 || {}); var JsxEmit2 = /* @__PURE__ */ ((JsxEmit3) => { JsxEmit3["None"] = "none"; JsxEmit3["Preserve"] = "preserve"; JsxEmit3["ReactNative"] = "react-native"; JsxEmit3["React"] = "react"; JsxEmit3["ReactJSX"] = "react-jsx"; JsxEmit3["ReactJSXDev"] = "react-jsxdev"; return JsxEmit3; })(JsxEmit2 || {}); var ModuleKind2 = /* @__PURE__ */ ((ModuleKind3) => { ModuleKind3["None"] = "none"; ModuleKind3["CommonJS"] = "commonjs"; ModuleKind3["AMD"] = "amd"; ModuleKind3["UMD"] = "umd"; ModuleKind3["System"] = "system"; ModuleKind3["ES6"] = "es6"; ModuleKind3["ES2015"] = "es2015"; ModuleKind3["ES2020"] = "es2020"; ModuleKind3["ES2022"] = "es2022"; ModuleKind3["ESNext"] = "esnext"; ModuleKind3["Node16"] = "node16"; ModuleKind3["Node18"] = "node18"; ModuleKind3["Node20"] = "node20"; ModuleKind3["NodeNext"] = "nodenext"; ModuleKind3["Preserve"] = "preserve"; return ModuleKind3; })(ModuleKind2 || {}); var ModuleResolutionKind2 = /* @__PURE__ */ ((ModuleResolutionKind3) => { ModuleResolutionKind3["Classic"] = "classic"; ModuleResolutionKind3["Node"] = "node"; ModuleResolutionKind3["NodeJs"] = "node"; ModuleResolutionKind3["Node10"] = "node10"; ModuleResolutionKind3["Node16"] = "node16"; ModuleResolutionKind3["NodeNext"] = "nodenext"; ModuleResolutionKind3["Bundler"] = "bundler"; return ModuleResolutionKind3; })(ModuleResolutionKind2 || {}); var NewLineKind2 = /* @__PURE__ */ ((NewLineKind3) => { NewLineKind3["Crlf"] = "Crlf"; NewLineKind3["Lf"] = "Lf"; return NewLineKind3; })(NewLineKind2 || {}); var ScriptTarget11 = /* @__PURE__ */ ((ScriptTarget12) => { ScriptTarget12["ES3"] = "es3"; ScriptTarget12["ES5"] = "es5"; ScriptTarget12["ES6"] = "es6"; ScriptTarget12["ES2015"] = "es2015"; ScriptTarget12["ES2016"] = "es2016"; ScriptTarget12["ES2017"] = "es2017"; ScriptTarget12["ES2018"] = "es2018"; ScriptTarget12["ES2019"] = "es2019"; ScriptTarget12["ES2020"] = "es2020"; ScriptTarget12["ES2021"] = "es2021"; ScriptTarget12["ES2022"] = "es2022"; ScriptTarget12["ES2023"] = "es2023"; ScriptTarget12["ES2024"] = "es2024"; ScriptTarget12["ES2025"] = "es2025"; ScriptTarget12["ESNext"] = "esnext"; ScriptTarget12["JSON"] = "json"; ScriptTarget12["Latest"] = "esnext"; ScriptTarget12["LatestStandard"] = "es2025"; return ScriptTarget12; })(ScriptTarget11 || {}); {} var TextStorage = class { constructor(host, info, initialVersion) { this.host = host; this.info = info; this.isOpen = false; this.ownFileText = false; this.pendingReloadFromDisk = false; this.version = initialVersion || 0; } getVersion() { return this.svc ? `SVC-${this.version}-${this.svc.getSnapshotVersion()}` : `Text-${this.version}`; } hasScriptVersionCache_TestOnly() { return this.svc !== undefined; } resetSourceMapInfo() { this.info.sourceFileLike = undefined; this.info.closeSourceMapFileWatcher(); this.info.sourceMapFilePath = undefined; this.info.declarationInfoPath = undefined; this.info.sourceInfos = undefined; this.info.documentPositionMapper = undefined; } useText(newText) { this.svc = undefined; this.text = newText; this.textSnapshot = undefined; this.lineMap = undefined; this.fileSize = undefined; this.resetSourceMapInfo(); this.version++; } edit(start, end, newText) { this.switchToScriptVersionCache().edit(start, end - start, newText); this.ownFileText = false; this.text = undefined; this.textSnapshot = undefined; this.lineMap = undefined; this.fileSize = undefined; this.resetSourceMapInfo(); } reload(newText) { Debug.assert(newText !== undefined); this.pendingReloadFromDisk = false; if (!this.text && this.svc) { this.text = getSnapshotText(this.svc.getSnapshot()); } if (this.text !== newText) { this.useText(newText); this.ownFileText = false; return true; } return false; } reloadWithFileText(tempFileName) { const { text: newText, fileSize } = tempFileName || !this.info.isDynamicOrHasMixedContent() ? this.getFileTextAndSize(tempFileName) : { text: "", fileSize: undefined }; const reloaded = this.reload(newText); this.fileSize = fileSize; this.ownFileText = !tempFileName || tempFileName === this.info.fileName; if (this.ownFileText && this.info.mTime === missingFileModifiedTime.getTime()) { this.info.mTime = (this.host.getModifiedTime(this.info.fileName) || missingFileModifiedTime).getTime(); } return reloaded; } scheduleReloadIfNeeded() { return !this.pendingReloadFromDisk && !this.ownFileText ? this.pendingReloadFromDisk = true : false; } delayReloadFromFileIntoText() { this.pendingReloadFromDisk = true; } getTelemetryFileSize() { return this.fileSize ? this.fileSize : this.text ? this.text.length : this.svc ? this.svc.getSnapshot().getLength() : this.getSnapshot().getLength(); } getSnapshot() { var _a; return ((_a = this.tryUseScriptVersionCache()) == null ? undefined : _a.getSnapshot()) || (this.textSnapshot ?? (this.textSnapshot = ScriptSnapshot.fromString(Debug.checkDefined(this.text)))); } getAbsolutePositionAndLineText(oneBasedLine) { const svc = this.tryUseScriptVersionCache(); if (svc) return svc.getAbsolutePositionAndLineText(oneBasedLine); const lineMap = this.getLineMap(); return oneBasedLine <= lineMap.length ? { absolutePosition: lineMap[oneBasedLine - 1], lineText: this.text.substring(lineMap[oneBasedLine - 1], lineMap[oneBasedLine]) } : { absolutePosition: this.text.length, lineText: undefined }; } lineToTextSpan(line) { const svc = this.tryUseScriptVersionCache(); if (svc) return svc.lineToTextSpan(line); const lineMap = this.getLineMap(); const start = lineMap[line]; const end = line + 1 < lineMap.length ? lineMap[line + 1] : this.text.length; return createTextSpanFromBounds(start, end); } lineOffsetToPosition(line, offset, allowEdits) { const svc = this.tryUseScriptVersionCache(); return svc ? svc.lineOffsetToPosition(line, offset) : computePositionOfLineAndCharacter(this.getLineMap(), line - 1, offset - 1, this.text, allowEdits); } positionToLineOffset(position) { const svc = this.tryUseScriptVersionCache(); if (svc) return svc.positionToLineOffset(position); const { line, character } = computeLineAndCharacterOfPosition(this.getLineMap(), position); return { line: line + 1, offset: character + 1 }; } getFileTextAndSize(tempFileName) { let text; const fileName = tempFileName || this.info.fileName; const getText = () => text === undefined ? text = this.host.readFile(fileName) || "" : text; if (!hasTSFileExtension(this.info.fileName)) { const fileSize = this.host.getFileSize ? this.host.getFileSize(fileName) : getText().length; if (fileSize > maxFileSize) { Debug.assert(!!this.info.containingProjects.length); const service = this.info.containingProjects[0].projectService; service.logger.info(`Skipped loading contents of large file ${fileName} for info ${this.info.fileName}: fileSize: ${fileSize}`); this.info.containingProjects[0].projectService.sendLargeFileReferencedEvent(fileName, fileSize); return { text: "", fileSize }; } } return { text: getText() }; } switchToScriptVersionCache() { if (!this.svc || this.pendingReloadFromDisk) { this.svc = ScriptVersionCache.fromString(this.getOrLoadText()); this.textSnapshot = undefined; this.version++; } return this.svc; } tryUseScriptVersionCache() { if (!this.svc || this.pendingReloadFromDisk) { this.getOrLoadText(); } if (this.isOpen) { if (!this.svc && !this.textSnapshot) { this.svc = ScriptVersionCache.fromString(Debug.checkDefined(this.text)); this.textSnapshot = undefined; } return this.svc; } return this.svc; } getOrLoadText() { if (this.text === undefined || this.pendingReloadFromDisk) { Debug.assert(!this.svc || this.pendingReloadFromDisk, "ScriptVersionCache should not be set when reloading from disk"); this.reloadWithFileText(); } return this.text; } getLineMap() { Debug.assert(!this.svc, "ScriptVersionCache should not be set"); return this.lineMap || (this.lineMap = computeLineStarts(Debug.checkDefined(this.text))); } getLineInfo() { const svc = this.tryUseScriptVersionCache(); if (svc) { return { getLineCount: () => svc.getLineCount(), getLineText: (line) => svc.getAbsolutePositionAndLineText(line + 1).lineText }; } const lineMap = this.getLineMap(); return getLineInfo(this.text, lineMap); } }; function isDynamicFileName(fileName) { return fileName[0] === "^" || (fileName.includes("walkThroughSnippet:/") || fileName.includes("untitled:/")) && getBaseFileName(fileName)[0] === "^" || fileName.includes(":^") && !fileName.includes(directorySeparator); } var ScriptInfo = class { constructor(host, fileName, scriptKind, hasMixedContent, path, initialVersion) { this.host = host; this.fileName = fileName; this.scriptKind = scriptKind; this.hasMixedContent = hasMixedContent; this.path = path; this.containingProjects = []; this.isDynamic = isDynamicFileName(fileName); this.textStorage = new TextStorage(host, this, initialVersion); if (hasMixedContent || this.isDynamic) { this.realpath = this.path; } this.scriptKind = scriptKind ? scriptKind : getScriptKindFromFileName(fileName); } isDynamicOrHasMixedContent() { return this.hasMixedContent || this.isDynamic; } isScriptOpen() { return this.textStorage.isOpen; } open(newText) { this.textStorage.isOpen = true; if (newText !== undefined && this.textStorage.reload(newText)) { this.markContainingProjectsAsDirty(); } } close(fileExists = true) { this.textStorage.isOpen = false; if (fileExists && this.textStorage.scheduleReloadIfNeeded()) { this.markContainingProjectsAsDirty(); } } getSnapshot() { return this.textStorage.getSnapshot(); } ensureRealPath() { if (this.realpath === undefined) { this.realpath = this.path; if (this.host.realpath) { Debug.assert(!!this.containingProjects.length); const project = this.containingProjects[0]; const realpath = this.host.realpath(this.path); if (realpath) { this.realpath = project.toPath(realpath); if (this.realpath !== this.path) { project.projectService.realpathToScriptInfos.add(this.realpath, this); } } } } } getRealpathIfDifferent() { return this.realpath && this.realpath !== this.path ? this.realpath : undefined; } isSymlink() { return this.realpath && this.realpath !== this.path; } getFormatCodeSettings() { return this.formatSettings; } getPreferences() { return this.preferences; } attachToProject(project) { const isNew = !this.isAttached(project); if (isNew) { this.containingProjects.push(project); if (!project.getCompilerOptions().preserveSymlinks) { this.ensureRealPath(); } project.onFileAddedOrRemoved(this.isSymlink()); } return isNew; } isAttached(project) { switch (this.containingProjects.length) { case 0: return false; case 1: return this.containingProjects[0] === project; case 2: return this.containingProjects[0] === project || this.containingProjects[1] === project; default: return contains(this.containingProjects, project); } } detachFromProject(project) { switch (this.containingProjects.length) { case 0: return; case 1: if (this.containingProjects[0] === project) { project.onFileAddedOrRemoved(this.isSymlink()); this.containingProjects.pop(); } break; case 2: if (this.containingProjects[0] === project) { project.onFileAddedOrRemoved(this.isSymlink()); this.containingProjects[0] = this.containingProjects.pop(); } else if (this.containingProjects[1] === project) { project.onFileAddedOrRemoved(this.isSymlink()); this.containingProjects.pop(); } break; default: if (orderedRemoveItem(this.containingProjects, project)) { project.onFileAddedOrRemoved(this.isSymlink()); } break; } } detachAllProjects() { for (const p of this.containingProjects) { if (isConfiguredProject(p)) { p.getCachedDirectoryStructureHost().addOrDeleteFile(this.fileName, this.path, 2); } const existingRoot = p.getRootFilesMap().get(this.path); p.removeFile(this, false, false); p.onFileAddedOrRemoved(this.isSymlink()); if (existingRoot && !isInferredProject(p)) { p.addMissingFileRoot(existingRoot.fileName); } } clear(this.containingProjects); } getDefaultProject() { switch (this.containingProjects.length) { case 0: return Errors.ThrowNoProject(); case 1: return isProjectDeferredClose(this.containingProjects[0]) || isBackgroundProject(this.containingProjects[0]) ? Errors.ThrowNoProject() : this.containingProjects[0]; default: let firstConfiguredProject; let firstInferredProject; let firstNonSourceOfProjectReferenceRedirect; let defaultConfiguredProject; for (let index = 0;index < this.containingProjects.length; index++) { const project = this.containingProjects[index]; if (isConfiguredProject(project)) { if (project.deferredClose) continue; if (!project.isSourceOfProjectReferenceRedirect(this.fileName)) { if (defaultConfiguredProject === undefined && index !== this.containingProjects.length - 1) { defaultConfiguredProject = project.projectService.findDefaultConfiguredProject(this) || false; } if (defaultConfiguredProject === project) return project; if (!firstNonSourceOfProjectReferenceRedirect) firstNonSourceOfProjectReferenceRedirect = project; } if (!firstConfiguredProject) firstConfiguredProject = project; } else if (isExternalProject(project)) { return project; } else if (!firstInferredProject && isInferredProject(project)) { firstInferredProject = project; } } return (defaultConfiguredProject || firstNonSourceOfProjectReferenceRedirect || firstConfiguredProject || firstInferredProject) ?? Errors.ThrowNoProject(); } } registerFileUpdate() { for (const p of this.containingProjects) { p.registerFileUpdate(this.path); } } setOptions(formatSettings, preferences) { if (formatSettings) { if (!this.formatSettings) { this.formatSettings = getDefaultFormatCodeSettings(this.host.newLine); assign(this.formatSettings, formatSettings); } else { this.formatSettings = { ...this.formatSettings, ...formatSettings }; } } if (preferences) { if (!this.preferences) { this.preferences = emptyOptions; } this.preferences = { ...this.preferences, ...preferences }; } } getLatestVersion() { this.textStorage.getSnapshot(); return this.textStorage.getVersion(); } saveTo(fileName) { this.host.writeFile(fileName, getSnapshotText(this.textStorage.getSnapshot())); } delayReloadNonMixedContentFile() { Debug.assert(!this.isDynamicOrHasMixedContent()); this.textStorage.delayReloadFromFileIntoText(); this.markContainingProjectsAsDirty(); } reloadFromFile(tempFileName) { if (this.textStorage.reloadWithFileText(tempFileName)) { this.markContainingProjectsAsDirty(); return true; } return false; } editContent(start, end, newText) { this.textStorage.edit(start, end, newText); this.markContainingProjectsAsDirty(); } markContainingProjectsAsDirty() { for (const p of this.containingProjects) { p.markFileAsDirty(this.path); } } isOrphan() { return this.deferredDelete || !forEach(this.containingProjects, (p) => !p.isOrphan()); } lineToTextSpan(line) { return this.textStorage.lineToTextSpan(line); } lineOffsetToPosition(line, offset, allowEdits) { return this.textStorage.lineOffsetToPosition(line, offset, allowEdits); } positionToLineOffset(position) { failIfInvalidPosition(position); const location = this.textStorage.positionToLineOffset(position); failIfInvalidLocation(location); return location; } isJavaScript() { return this.scriptKind === 1 || this.scriptKind === 2; } closeSourceMapFileWatcher() { if (this.sourceMapFilePath && !isString(this.sourceMapFilePath)) { closeFileWatcherOf(this.sourceMapFilePath); this.sourceMapFilePath = undefined; } } }; function failIfInvalidPosition(position) { Debug.assert(typeof position === "number", `Expected position ${position} to be a number.`); Debug.assert(position >= 0, `Expected position to be non-negative.`); } function failIfInvalidLocation(location) { Debug.assert(typeof location.line === "number", `Expected line ${location.line} to be a number.`); Debug.assert(typeof location.offset === "number", `Expected offset ${location.offset} to be a number.`); Debug.assert(location.line > 0, `Expected line to be non-${location.line === 0 ? "zero" : "negative"}`); Debug.assert(location.offset > 0, `Expected offset to be non-${location.offset === 0 ? "zero" : "negative"}`); } function scriptInfoIsContainedByBackgroundProject(info) { return some(info.containingProjects, isBackgroundProject); } function scriptInfoIsContainedByDeferredClosedProject(info) { return some(info.containingProjects, isProjectDeferredClose); } var ProjectKind = /* @__PURE__ */ ((ProjectKind2) => { ProjectKind2[ProjectKind2["Inferred"] = 0] = "Inferred"; ProjectKind2[ProjectKind2["Configured"] = 1] = "Configured"; ProjectKind2[ProjectKind2["External"] = 2] = "External"; ProjectKind2[ProjectKind2["AutoImportProvider"] = 3] = "AutoImportProvider"; ProjectKind2[ProjectKind2["Auxiliary"] = 4] = "Auxiliary"; return ProjectKind2; })(ProjectKind || {}); function countEachFileTypes(infos, includeSizes = false) { const result = { js: 0, jsSize: 0, jsx: 0, jsxSize: 0, ts: 0, tsSize: 0, tsx: 0, tsxSize: 0, dts: 0, dtsSize: 0, deferred: 0, deferredSize: 0 }; for (const info of infos) { const fileSize = includeSizes ? info.textStorage.getTelemetryFileSize() : 0; switch (info.scriptKind) { case 1: result.js += 1; result.jsSize += fileSize; break; case 2: result.jsx += 1; result.jsxSize += fileSize; break; case 3: if (isDeclarationFileName(info.fileName)) { result.dts += 1; result.dtsSize += fileSize; } else { result.ts += 1; result.tsSize += fileSize; } break; case 4: result.tsx += 1; result.tsxSize += fileSize; break; case 7: result.deferred += 1; result.deferredSize += fileSize; break; } } return result; } function hasOneOrMoreJsAndNoTsFiles(project) { const counts2 = countEachFileTypes(project.getScriptInfos()); return counts2.js > 0 && counts2.ts === 0 && counts2.tsx === 0; } function allRootFilesAreJsOrDts(project) { const counts2 = countEachFileTypes(project.getRootScriptInfos()); return counts2.ts === 0 && counts2.tsx === 0; } function allFilesAreJsOrDts(project) { const counts2 = countEachFileTypes(project.getScriptInfos()); return counts2.ts === 0 && counts2.tsx === 0; } function hasNoTypeScriptSource(fileNames) { return !fileNames.some((fileName) => fileExtensionIs(fileName, ".ts") && !isDeclarationFileName(fileName) || fileExtensionIs(fileName, ".tsx")); } function isGeneratedFileWatcher(watch) { return watch.generatedFilePath !== undefined; } function setIsEqualTo(arr1, arr2) { if (arr1 === arr2) { return true; } if ((arr1 || emptyArray2).length === 0 && (arr2 || emptyArray2).length === 0) { return true; } const set = /* @__PURE__ */ new Map; let unique = 0; for (const v of arr1) { if (set.get(v) !== true) { set.set(v, true); unique++; } } for (const v of arr2) { const isSet = set.get(v); if (isSet === undefined) { return false; } if (isSet === true) { set.set(v, false); unique--; } } return unique === 0; } function typeAcquisitionChanged(opt1, opt2) { return opt1.enable !== opt2.enable || !setIsEqualTo(opt1.include, opt2.include) || !setIsEqualTo(opt1.exclude, opt2.exclude); } function compilerOptionsChanged(opt1, opt2) { return getAllowJSCompilerOption(opt1) !== getAllowJSCompilerOption(opt2); } function unresolvedImportsChanged(imports1, imports2) { if (imports1 === imports2) { return false; } return !arrayIsEqualTo(imports1, imports2); } var Project2 = class _Project { constructor(projectName, projectKind, projectService, hasExplicitListOfFiles, lastFileExceededProgramSize, compilerOptions, compileOnSaveEnabled, watchOptions, directoryStructureHost, currentDirectory) { this.projectKind = projectKind; this.projectService = projectService; this.compilerOptions = compilerOptions; this.compileOnSaveEnabled = compileOnSaveEnabled; this.watchOptions = watchOptions; this.rootFilesMap = /* @__PURE__ */ new Map; this.plugins = []; this.cachedUnresolvedImportsPerFile = /* @__PURE__ */ new Map; this.hasAddedorRemovedFiles = false; this.hasAddedOrRemovedSymlinks = false; this.lastReportedVersion = 0; this.projectProgramVersion = 0; this.projectStateVersion = 0; this.initialLoadPending = false; this.dirty = false; this.typingFiles = emptyArray2; this.moduleSpecifierCache = createModuleSpecifierCache(this); this.createHash = maybeBind(this.projectService.host, this.projectService.host.createHash); this.globalCacheResolutionModuleName = ts_JsTyping_exports.nonRelativeModuleNameForTypingCache; this.updateFromProjectInProgress = false; projectService.logger.info(`Creating ${ProjectKind[projectKind]}Project: ${projectName}, currentDirectory: ${currentDirectory}`); this.projectName = projectName; this.directoryStructureHost = directoryStructureHost; this.currentDirectory = this.projectService.getNormalizedAbsolutePath(currentDirectory); this.getCanonicalFileName = this.projectService.toCanonicalFileName; this.jsDocParsingMode = this.projectService.jsDocParsingMode; this.cancellationToken = new ThrottledCancellationToken(this.projectService.cancellationToken, this.projectService.throttleWaitMilliseconds); if (!this.compilerOptions) { this.compilerOptions = getDefaultCompilerOptions2(); this.compilerOptions.allowNonTsExtensions = true; this.compilerOptions.allowJs = true; } else if (hasExplicitListOfFiles || getAllowJSCompilerOption(this.compilerOptions) || this.projectService.hasDeferredExtension()) { this.compilerOptions.allowNonTsExtensions = true; } switch (projectService.serverMode) { case 0: this.languageServiceEnabled = true; break; case 1: this.languageServiceEnabled = true; this.compilerOptions.noResolve = true; this.compilerOptions.types = []; break; case 2: this.languageServiceEnabled = false; this.compilerOptions.noResolve = true; this.compilerOptions.types = []; break; default: Debug.assertNever(projectService.serverMode); } this.setInternalCompilerOptionsForEmittingJsFiles(); const host = this.projectService.host; if (this.projectService.logger.loggingEnabled()) { this.trace = (s) => this.writeLog(s); } else if (host.trace) { this.trace = (s) => host.trace(s); } this.realpath = maybeBind(host, host.realpath); this.preferNonRecursiveWatch = this.projectService.canUseWatchEvents || host.preferNonRecursiveWatch; this.resolutionCache = createResolutionCache(this, this.currentDirectory, true); this.languageService = createLanguageService(this, this.projectService.documentRegistry, this.projectService.serverMode); if (lastFileExceededProgramSize) { this.disableLanguageService(lastFileExceededProgramSize); } this.markAsDirty(); if (!isBackgroundProject(this)) { this.projectService.pendingEnsureProjectForOpenFiles = true; } this.projectService.onProjectCreation(this); } getRedirectFromSourceFile(_fileName) { return; } isNonTsProject() { updateProjectIfDirty(this); return allFilesAreJsOrDts(this); } isJsOnlyProject() { updateProjectIfDirty(this); return hasOneOrMoreJsAndNoTsFiles(this); } static resolveModule(moduleName, initialDir, host, log) { return _Project.importServicePluginSync({ name: moduleName }, [initialDir], host, log).resolvedModule; } static importServicePluginSync(pluginConfigEntry, searchPaths, host, log) { Debug.assertIsDefined(host.require); let errorLogs; let resolvedModule; for (const initialDir of searchPaths) { const resolvedPath = normalizeSlashes(host.resolvePath(combinePaths(initialDir, "node_modules"))); log(`Loading ${pluginConfigEntry.name} from ${initialDir} (resolved to ${resolvedPath})`); const result = host.require(resolvedPath, pluginConfigEntry.name); if (!result.error) { resolvedModule = result.module; break; } const err = result.error.stack || result.error.message || JSON.stringify(result.error); (errorLogs ?? (errorLogs = [])).push(`Failed to load module '${pluginConfigEntry.name}' from ${resolvedPath}: ${err}`); } return { pluginConfigEntry, resolvedModule, errorLogs }; } static async importServicePluginAsync(pluginConfigEntry, searchPaths, host, log) { Debug.assertIsDefined(host.importPlugin); let errorLogs; let resolvedModule; for (const initialDir of searchPaths) { const resolvedPath = combinePaths(initialDir, "node_modules"); log(`Dynamically importing ${pluginConfigEntry.name} from ${initialDir} (resolved to ${resolvedPath})`); let result; try { result = await host.importPlugin(resolvedPath, pluginConfigEntry.name); } catch (e) { result = { module: undefined, error: e }; } if (!result.error) { resolvedModule = result.module; break; } const err = result.error.stack || result.error.message || JSON.stringify(result.error); (errorLogs ?? (errorLogs = [])).push(`Failed to dynamically import module '${pluginConfigEntry.name}' from ${resolvedPath}: ${err}`); } return { pluginConfigEntry, resolvedModule, errorLogs }; } isKnownTypesPackageName(name) { return this.projectService.typingsInstaller.isKnownTypesPackageName(name); } installPackage(options) { return this.projectService.typingsInstaller.installPackage({ ...options, projectName: this.projectName, projectRootPath: this.toPath(this.currentDirectory) }); } getGlobalTypingsCacheLocation() { return this.getTypeAcquisition().enable ? this.projectService.typingsInstaller.globalTypingsCacheLocation : undefined; } getSymlinkCache() { if (!this.symlinks) { this.symlinks = createSymlinkCache(this.getCurrentDirectory(), this.getCanonicalFileName); } if (this.program && !this.symlinks.hasProcessedResolutions()) { this.symlinks.setSymlinksFromResolutions(this.program.forEachResolvedModule, this.program.forEachResolvedTypeReferenceDirective, this.program.getAutomaticTypeDirectiveResolutions()); } return this.symlinks; } getCompilationSettings() { return this.compilerOptions; } getCompilerOptions() { return this.getCompilationSettings(); } getNewLine() { return this.projectService.host.newLine; } getProjectVersion() { return this.projectStateVersion.toString(); } getProjectReferences() { return; } getScriptFileNames() { if (!this.rootFilesMap.size) { return emptyArray; } let result; this.rootFilesMap.forEach((value) => { if (this.languageServiceEnabled || value.info && value.info.isScriptOpen()) { (result || (result = [])).push(value.fileName); } }); return addRange(result, this.typingFiles) || emptyArray; } getOrCreateScriptInfoAndAttachToProject(fileName) { const scriptInfo = this.projectService.getOrCreateScriptInfoNotOpenedByClient(fileName, this.currentDirectory, this.directoryStructureHost, false); if (scriptInfo) { const existingValue = this.rootFilesMap.get(scriptInfo.path); if (existingValue && existingValue.info !== scriptInfo) { existingValue.info = scriptInfo; } scriptInfo.attachToProject(this); } return scriptInfo; } getScriptKind(fileName) { const info = this.projectService.getScriptInfoForPath(this.toPath(fileName)); return info && info.scriptKind; } getScriptVersion(filename) { const info = this.projectService.getOrCreateScriptInfoNotOpenedByClient(filename, this.currentDirectory, this.directoryStructureHost, false); return info && info.getLatestVersion(); } getScriptSnapshot(filename) { const scriptInfo = this.getOrCreateScriptInfoAndAttachToProject(filename); if (scriptInfo) { return scriptInfo.getSnapshot(); } } getCancellationToken() { return this.cancellationToken; } getCurrentDirectory() { return this.currentDirectory; } getDefaultLibFileName() { const nodeModuleBinDir = getDirectoryPath(normalizePath(this.projectService.getExecutingFilePath())); return combinePaths(nodeModuleBinDir, getDefaultLibFileName(this.compilerOptions)); } useCaseSensitiveFileNames() { return this.projectService.host.useCaseSensitiveFileNames; } readDirectory(path, extensions, exclude, include, depth) { return this.directoryStructureHost.readDirectory(path, extensions, exclude, include, depth); } readFile(fileName) { return this.projectService.host.readFile(fileName); } writeFile(fileName, content) { return this.projectService.host.writeFile(fileName, content); } fileExists(file) { const path = this.toPath(file); return !!this.projectService.getScriptInfoForPath(path) || !this.isWatchedMissingFile(path) && this.directoryStructureHost.fileExists(file); } resolveModuleNameLiterals(moduleLiterals, containingFile, redirectedReference, options, containingSourceFile, reusedNames) { return this.resolutionCache.resolveModuleNameLiterals(moduleLiterals, containingFile, redirectedReference, options, containingSourceFile, reusedNames); } getModuleResolutionCache() { return this.resolutionCache.getModuleResolutionCache(); } resolveTypeReferenceDirectiveReferences(typeDirectiveReferences, containingFile, redirectedReference, options, containingSourceFile, reusedNames) { return this.resolutionCache.resolveTypeReferenceDirectiveReferences(typeDirectiveReferences, containingFile, redirectedReference, options, containingSourceFile, reusedNames); } resolveLibrary(libraryName, resolveFrom, options, libFileName) { return this.resolutionCache.resolveLibrary(libraryName, resolveFrom, options, libFileName); } directoryExists(path) { return this.directoryStructureHost.directoryExists(path); } getDirectories(path) { return this.directoryStructureHost.getDirectories(path); } getCachedDirectoryStructureHost() { return; } toPath(fileName) { return toPath(fileName, this.currentDirectory, this.projectService.toCanonicalFileName); } watchDirectoryOfFailedLookupLocation(directory, cb, flags) { return this.projectService.watchFactory.watchDirectory(directory, cb, flags, this.projectService.getWatchOptions(this), WatchType.FailedLookupLocations, this); } watchAffectingFileLocation(file, cb) { return this.projectService.watchFactory.watchFile(file, cb, 2000, this.projectService.getWatchOptions(this), WatchType.AffectingFileLocation, this); } clearInvalidateResolutionOfFailedLookupTimer() { return this.projectService.throttledOperations.cancel(`${this.getProjectName()}FailedLookupInvalidation`); } scheduleInvalidateResolutionsOfFailedLookupLocations() { this.projectService.throttledOperations.schedule(`${this.getProjectName()}FailedLookupInvalidation`, 1000, () => { if (this.resolutionCache.invalidateResolutionsOfFailedLookupLocations()) { this.projectService.delayUpdateProjectGraphAndEnsureProjectStructureForOpenFiles(this); } }); } invalidateResolutionsOfFailedLookupLocations() { if (this.clearInvalidateResolutionOfFailedLookupTimer() && this.resolutionCache.invalidateResolutionsOfFailedLookupLocations()) { this.markAsDirty(); this.projectService.delayEnsureProjectForOpenFiles(); } } onInvalidatedResolution() { this.projectService.delayUpdateProjectGraphAndEnsureProjectStructureForOpenFiles(this); } watchTypeRootsDirectory(directory, cb, flags) { return this.projectService.watchFactory.watchDirectory(directory, cb, flags, this.projectService.getWatchOptions(this), WatchType.TypeRoots, this); } hasChangedAutomaticTypeDirectiveNames() { return this.resolutionCache.hasChangedAutomaticTypeDirectiveNames(); } onChangedAutomaticTypeDirectiveNames() { this.projectService.delayUpdateProjectGraphAndEnsureProjectStructureForOpenFiles(this); } fileIsOpen(filePath) { return this.projectService.openFiles.has(filePath); } writeLog(s) { this.projectService.logger.info(s); } log(s) { this.writeLog(s); } error(s) { this.projectService.logger.msg(s, "Err"); } setInternalCompilerOptionsForEmittingJsFiles() { if (this.projectKind === 0 || this.projectKind === 2) { this.compilerOptions.noEmitForJsFiles = true; } } getGlobalProjectErrors() { return filter(this.projectErrors, (diagnostic) => !diagnostic.file) || emptyArray2; } getAllProjectErrors() { return this.projectErrors || emptyArray2; } setProjectErrors(projectErrors) { this.projectErrors = projectErrors; } getLanguageService(ensureSynchronized = true) { if (ensureSynchronized) { updateProjectIfDirty(this); } return this.languageService; } getSourceMapper() { return this.getLanguageService().getSourceMapper(); } clearSourceMapperCache() { this.languageService.clearSourceMapperCache(); } getDocumentPositionMapper(generatedFileName, sourceFileName) { return this.projectService.getDocumentPositionMapper(this, generatedFileName, sourceFileName); } getSourceFileLike(fileName) { return this.projectService.getSourceFileLike(fileName, this); } shouldEmitFile(scriptInfo) { return scriptInfo && !scriptInfo.isDynamicOrHasMixedContent() && !this.program.isSourceOfProjectReferenceRedirect(scriptInfo.path); } getCompileOnSaveAffectedFileList(scriptInfo) { if (!this.languageServiceEnabled) { return []; } updateProjectIfDirty(this); this.builderState = BuilderState.create(this.program, this.builderState, true); return mapDefined(BuilderState.getFilesAffectedBy(this.builderState, this.program, scriptInfo.path, this.cancellationToken, this.projectService.host), (sourceFile) => this.shouldEmitFile(this.projectService.getScriptInfoForPath(sourceFile.path)) ? sourceFile.fileName : undefined); } emitFile(scriptInfo, writeFile2) { if (!this.languageServiceEnabled || !this.shouldEmitFile(scriptInfo)) { return { emitSkipped: true, diagnostics: emptyArray2 }; } const { emitSkipped, diagnostics, outputFiles } = this.getLanguageService().getEmitOutput(scriptInfo.fileName); if (!emitSkipped) { for (const outputFile of outputFiles) { const outputFileAbsoluteFileName = getNormalizedAbsolutePath(outputFile.name, this.currentDirectory); writeFile2(outputFileAbsoluteFileName, outputFile.text, outputFile.writeByteOrderMark); } if (this.builderState && getEmitDeclarations(this.compilerOptions)) { const dtsFiles = outputFiles.filter((f) => isDeclarationFileName(f.name)); if (dtsFiles.length === 1) { const sourceFile = this.program.getSourceFile(scriptInfo.fileName); const signature = this.projectService.host.createHash ? this.projectService.host.createHash(dtsFiles[0].text) : generateDjb2Hash(dtsFiles[0].text); BuilderState.updateSignatureOfFile(this.builderState, signature, sourceFile.resolvedPath); } } } return { emitSkipped, diagnostics }; } enableLanguageService() { if (this.languageServiceEnabled || this.projectService.serverMode === 2) { return; } this.languageServiceEnabled = true; this.lastFileExceededProgramSize = undefined; this.projectService.onUpdateLanguageServiceStateForProject(this, true); } cleanupProgram() { if (this.program) { for (const f of this.program.getSourceFiles()) { this.detachScriptInfoIfNotRoot(f.fileName); } this.program.forEachResolvedProjectReference((ref) => this.detachScriptInfoFromProject(ref.sourceFile.fileName)); this.program = undefined; } } disableLanguageService(lastFileExceededProgramSize) { if (!this.languageServiceEnabled) { return; } Debug.assert(this.projectService.serverMode !== 2); this.languageService.cleanupSemanticCache(); this.languageServiceEnabled = false; this.cleanupProgram(); this.lastFileExceededProgramSize = lastFileExceededProgramSize; this.builderState = undefined; if (this.autoImportProviderHost) { this.autoImportProviderHost.close(); } this.autoImportProviderHost = undefined; this.resolutionCache.closeTypeRootsWatch(); this.clearGeneratedFileWatch(); this.projectService.verifyDocumentRegistry(); this.projectService.onUpdateLanguageServiceStateForProject(this, false); } getProjectName() { return this.projectName; } removeLocalTypingsFromTypeAcquisition(newTypeAcquisition) { if (!newTypeAcquisition.enable || !newTypeAcquisition.include) { return newTypeAcquisition; } return { ...newTypeAcquisition, include: this.removeExistingTypings(newTypeAcquisition.include) }; } getExternalFiles(updateLevel) { return toSorted(flatMap(this.plugins, (plugin) => { if (typeof plugin.module.getExternalFiles !== "function") return; try { return plugin.module.getExternalFiles(this, updateLevel || 0); } catch (e) { this.projectService.logger.info(`A plugin threw an exception in getExternalFiles: ${e}`); if (e.stack) { this.projectService.logger.info(e.stack); } } })); } getSourceFile(path) { if (!this.program) { return; } return this.program.getSourceFileByPath(path); } getSourceFileOrConfigFile(path) { const options = this.program.getCompilerOptions(); return path === options.configFilePath ? options.configFile : this.getSourceFile(path); } close() { var _a; if (this.typingsCache) this.projectService.typingsInstaller.onProjectClosed(this); this.typingsCache = undefined; this.closeWatchingTypingLocations(); this.cleanupProgram(); forEach(this.externalFiles, (externalFile) => this.detachScriptInfoIfNotRoot(externalFile)); this.rootFilesMap.forEach((root) => { var _a2; return (_a2 = root.info) == null ? undefined : _a2.detachFromProject(this); }); this.projectService.pendingEnsureProjectForOpenFiles = true; this.rootFilesMap = undefined; this.externalFiles = undefined; this.program = undefined; this.builderState = undefined; this.resolutionCache.clear(); this.resolutionCache = undefined; this.cachedUnresolvedImportsPerFile = undefined; (_a = this.packageJsonWatches) == null || _a.forEach((watcher) => { watcher.projects.delete(this); watcher.close(); }); this.packageJsonWatches = undefined; this.moduleSpecifierCache.clear(); this.moduleSpecifierCache = undefined; this.directoryStructureHost = undefined; this.exportMapCache = undefined; this.projectErrors = undefined; this.plugins.length = 0; if (this.missingFilesMap) { clearMap(this.missingFilesMap, closeFileWatcher); this.missingFilesMap = undefined; } this.clearGeneratedFileWatch(); this.clearInvalidateResolutionOfFailedLookupTimer(); if (this.autoImportProviderHost) { this.autoImportProviderHost.close(); } this.autoImportProviderHost = undefined; if (this.noDtsResolutionProject) { this.noDtsResolutionProject.close(); } this.noDtsResolutionProject = undefined; this.languageService.dispose(); this.languageService = undefined; } detachScriptInfoIfNotRoot(uncheckedFilename) { const info = this.projectService.getScriptInfo(uncheckedFilename); if (info && !this.isRoot(info)) { info.detachFromProject(this); } } isClosed() { return this.rootFilesMap === undefined; } hasRoots() { var _a; return !!((_a = this.rootFilesMap) == null ? undefined : _a.size); } isOrphan() { return false; } getRootFiles() { return this.rootFilesMap && arrayFrom(mapDefinedIterator(this.rootFilesMap.values(), (value) => { var _a; return (_a = value.info) == null ? undefined : _a.fileName; })); } getRootFilesMap() { return this.rootFilesMap; } getRootScriptInfos() { return arrayFrom(mapDefinedIterator(this.rootFilesMap.values(), (value) => value.info)); } getScriptInfos() { if (!this.languageServiceEnabled) { return this.getRootScriptInfos(); } return map(this.program.getSourceFiles(), (sourceFile) => { const scriptInfo = this.projectService.getScriptInfoForPath(sourceFile.resolvedPath); Debug.assert(!!scriptInfo, "getScriptInfo", () => `scriptInfo for a file '${sourceFile.fileName}' Path: '${sourceFile.path}' / '${sourceFile.resolvedPath}' is missing.`); return scriptInfo; }); } getExcludedFiles() { return emptyArray2; } getFileNames(excludeFilesFromExternalLibraries, excludeConfigFiles) { if (!this.program) { return []; } if (!this.languageServiceEnabled) { let rootFiles = this.getRootFiles(); if (this.compilerOptions) { const defaultLibrary = getDefaultLibFilePath(this.compilerOptions); if (defaultLibrary) { (rootFiles || (rootFiles = [])).push(asNormalizedPath(defaultLibrary)); } } return rootFiles; } const result = []; for (const f of this.program.getSourceFiles()) { if (excludeFilesFromExternalLibraries && this.program.isSourceFileFromExternalLibrary(f)) { continue; } result.push(asNormalizedPath(f.fileName)); } if (!excludeConfigFiles) { const configFile = this.program.getCompilerOptions().configFile; if (configFile) { result.push(asNormalizedPath(configFile.fileName)); if (configFile.extendedSourceFiles) { for (const f of configFile.extendedSourceFiles) { result.push(asNormalizedPath(f)); } } } } return result; } getFileNamesWithRedirectInfo(includeProjectReferenceRedirectInfo) { return this.getFileNames().map((fileName) => ({ fileName, isSourceOfProjectReferenceRedirect: includeProjectReferenceRedirectInfo && this.isSourceOfProjectReferenceRedirect(fileName) })); } hasConfigFile(configFilePath) { if (this.program && this.languageServiceEnabled) { const configFile = this.program.getCompilerOptions().configFile; if (configFile) { if (configFilePath === asNormalizedPath(configFile.fileName)) { return true; } if (configFile.extendedSourceFiles) { for (const f of configFile.extendedSourceFiles) { if (configFilePath === asNormalizedPath(f)) { return true; } } } } } return false; } containsScriptInfo(info) { if (this.isRoot(info)) return true; if (!this.program) return false; const file = this.program.getSourceFileByPath(info.path); return !!file && file.resolvedPath === info.path; } containsFile(filename, requireOpen) { const info = this.projectService.getScriptInfoForNormalizedPath(filename); if (info && (info.isScriptOpen() || !requireOpen)) { return this.containsScriptInfo(info); } return false; } isRoot(info) { var _a, _b; return ((_b = (_a = this.rootFilesMap) == null ? undefined : _a.get(info.path)) == null ? undefined : _b.info) === info; } addRoot(info, fileName) { Debug.assert(!this.isRoot(info)); this.rootFilesMap.set(info.path, { fileName: fileName || info.fileName, info }); info.attachToProject(this); this.markAsDirty(); } addMissingFileRoot(fileName) { const path = this.projectService.toPath(fileName); this.rootFilesMap.set(path, { fileName }); this.markAsDirty(); } removeFile(info, fileExists, detachFromProject) { if (this.isRoot(info)) { this.removeRoot(info); } if (fileExists) { this.resolutionCache.removeResolutionsOfFile(info.path); } else { this.resolutionCache.invalidateResolutionOfFile(info.path); } this.cachedUnresolvedImportsPerFile.delete(info.path); if (detachFromProject) { info.detachFromProject(this); } this.markAsDirty(); } registerFileUpdate(fileName) { (this.updatedFileNames || (this.updatedFileNames = /* @__PURE__ */ new Set)).add(fileName); } markFileAsDirty(changedFile) { this.markAsDirty(); if (this.exportMapCache && !this.exportMapCache.isEmpty()) { (this.changedFilesForExportMapCache || (this.changedFilesForExportMapCache = /* @__PURE__ */ new Set)).add(changedFile); } } markAsDirty() { if (!this.dirty) { this.projectStateVersion++; this.dirty = true; } } markAutoImportProviderAsDirty() { var _a; if (!this.autoImportProviderHost) this.autoImportProviderHost = undefined; (_a = this.autoImportProviderHost) == null || _a.markAsDirty(); } onAutoImportProviderSettingsChanged() { this.markAutoImportProviderAsDirty(); } onPackageJsonChange() { this.moduleSpecifierCache.clear(); this.markAutoImportProviderAsDirty(); } onFileAddedOrRemoved(isSymlink) { this.hasAddedorRemovedFiles = true; if (isSymlink) { this.hasAddedOrRemovedSymlinks = true; } } onDiscoveredSymlink() { this.hasAddedOrRemovedSymlinks = true; } onReleaseOldSourceFile(oldSourceFile, _oldOptions, hasSourceFileByPath, newSourceFileByResolvedPath) { if (!newSourceFileByResolvedPath || oldSourceFile.resolvedPath === oldSourceFile.path && newSourceFileByResolvedPath.resolvedPath !== oldSourceFile.path) { this.detachScriptInfoFromProject(oldSourceFile.fileName, hasSourceFileByPath); } } updateFromProject() { updateProjectIfDirty(this); } updateGraph() { var _a, _b; (_a = tracing) == null || _a.push(tracing.Phase.Session, "updateGraph", { name: this.projectName, kind: ProjectKind[this.projectKind] }); this.resolutionCache.startRecordingFilesWithChangedResolutions(); const hasNewProgram = this.updateGraphWorker(); const hasAddedorRemovedFiles = this.hasAddedorRemovedFiles; this.hasAddedorRemovedFiles = false; this.hasAddedOrRemovedSymlinks = false; const changedFiles = this.resolutionCache.finishRecordingFilesWithChangedResolutions() || emptyArray2; for (const file of changedFiles) { this.cachedUnresolvedImportsPerFile.delete(file); } if (this.languageServiceEnabled && this.projectService.serverMode === 0 && !this.isOrphan()) { if (hasNewProgram || changedFiles.length) { this.lastCachedUnresolvedImportsList = getUnresolvedImports(this.program, this.cachedUnresolvedImportsPerFile); } this.enqueueInstallTypingsForProject(hasAddedorRemovedFiles); } else { this.lastCachedUnresolvedImportsList = undefined; } const isFirstProgramLoad = this.projectProgramVersion === 0 && hasNewProgram; if (hasNewProgram) { this.projectProgramVersion++; } if (hasAddedorRemovedFiles) { this.markAutoImportProviderAsDirty(); } if (isFirstProgramLoad) { this.getPackageJsonAutoImportProvider(); } (_b = tracing) == null || _b.pop(); return !hasNewProgram; } enqueueInstallTypingsForProject(forceRefresh) { const typeAcquisition = this.getTypeAcquisition(); if (!typeAcquisition || !typeAcquisition.enable || this.projectService.typingsInstaller === nullTypingsInstaller) { return; } const entry = this.typingsCache; if (forceRefresh || !entry || typeAcquisitionChanged(typeAcquisition, entry.typeAcquisition) || compilerOptionsChanged(this.getCompilationSettings(), entry.compilerOptions) || unresolvedImportsChanged(this.lastCachedUnresolvedImportsList, entry.unresolvedImports)) { this.typingsCache = { compilerOptions: this.getCompilationSettings(), typeAcquisition, unresolvedImports: this.lastCachedUnresolvedImportsList }; this.projectService.typingsInstaller.enqueueInstallTypingsRequest(this, typeAcquisition, this.lastCachedUnresolvedImportsList); } } updateTypingFiles(compilerOptions, typeAcquisition, unresolvedImports, newTypings) { this.typingsCache = { compilerOptions, typeAcquisition, unresolvedImports }; const typingFiles = !typeAcquisition || !typeAcquisition.enable ? emptyArray2 : toSorted(newTypings); if (enumerateInsertsAndDeletes(typingFiles, this.typingFiles, getStringComparer(!this.useCaseSensitiveFileNames()), noop, (removed) => this.detachScriptInfoFromProject(removed))) { this.typingFiles = typingFiles; this.resolutionCache.setFilesWithInvalidatedNonRelativeUnresolvedImports(this.cachedUnresolvedImportsPerFile); this.projectService.delayUpdateProjectGraphAndEnsureProjectStructureForOpenFiles(this); } } closeWatchingTypingLocations() { if (this.typingWatchers) clearMap(this.typingWatchers, closeFileWatcher); this.typingWatchers = undefined; } onTypingInstallerWatchInvoke() { this.typingWatchers.isInvoked = true; this.projectService.updateTypingsForProject({ projectName: this.getProjectName(), kind: ActionInvalidate }); } watchTypingLocations(files) { if (this.currentDirectory === this.projectService.currentDirectory || !canWatchDirectoryOrFilePath(this.toPath(this.currentDirectory))) { return; } if (!files) { this.typingWatchers.isInvoked = false; return; } if (!files.length) { this.closeWatchingTypingLocations(); return; } const toRemove = new Map(this.typingWatchers); if (!this.typingWatchers) this.typingWatchers = /* @__PURE__ */ new Map; this.typingWatchers.isInvoked = false; const createProjectWatcher = (path, typingsWatcherType) => { const canonicalPath = this.toPath(path); toRemove.delete(canonicalPath); if (!this.typingWatchers.has(canonicalPath)) { const watchType = typingsWatcherType === "FileWatcher" ? WatchType.TypingInstallerLocationFile : WatchType.TypingInstallerLocationDirectory; this.typingWatchers.set(canonicalPath, canWatchDirectoryOrFilePath(canonicalPath) ? typingsWatcherType === "FileWatcher" ? this.projectService.watchFactory.watchFile(path, () => !this.typingWatchers.isInvoked ? this.onTypingInstallerWatchInvoke() : this.writeLog(`TypingWatchers already invoked`), 2000, this.projectService.getWatchOptions(this), watchType, this) : this.projectService.watchFactory.watchDirectory(path, (f) => { if (this.typingWatchers.isInvoked) return this.writeLog(`TypingWatchers already invoked`); if (!fileExtensionIs(f, ".json")) return this.writeLog(`Ignoring files that are not *.json`); if (comparePaths(f, combinePaths(this.projectService.typingsInstaller.globalTypingsCacheLocation, "package.json"), !this.useCaseSensitiveFileNames())) return this.writeLog(`Ignoring package.json change at global typings location`); this.onTypingInstallerWatchInvoke(); }, 1, this.projectService.getWatchOptions(this), watchType, this) : (this.writeLog(`Skipping watcher creation at ${path}:: ${getDetailWatchInfo(watchType, this)}`), noopFileWatcher)); } }; for (const file of files) { const basename = getBaseFileName(file); if (basename === "package.json" || basename === "bower.json") { createProjectWatcher(file, "FileWatcher"); continue; } if (containsPath(this.currentDirectory, file, this.currentDirectory, !this.useCaseSensitiveFileNames())) { const subDirectory = file.indexOf(directorySeparator, this.currentDirectory.length + 1); if (subDirectory !== -1) { createProjectWatcher(file.substr(0, subDirectory), "DirectoryWatcher"); } else { createProjectWatcher(file, "DirectoryWatcher"); } continue; } if (containsPath(this.projectService.typingsInstaller.globalTypingsCacheLocation, file, this.currentDirectory, !this.useCaseSensitiveFileNames())) { createProjectWatcher(this.projectService.typingsInstaller.globalTypingsCacheLocation, "DirectoryWatcher"); continue; } createProjectWatcher(file, "DirectoryWatcher"); } toRemove.forEach((watch, path) => { watch.close(); this.typingWatchers.delete(path); }); } skipWatchingFailedLookups(path) { const info = this.projectService.getScriptInfoForPath(path); return info == null ? undefined : info.isDynamic; } skipWatchingTypeRoots() { return isInferredProject(this) && this.currentDirectory === this.projectService.currentDirectory; } getCurrentProgram() { return this.program; } removeExistingTypings(include) { if (!include.length) return include; const existing = getAutomaticTypeDirectiveNames(this.getCompilerOptions(), this); return filter(include, (i) => !existing.includes(i)); } updateGraphWorker() { var _a, _b; const oldProgram = this.languageService.getCurrentProgram(); Debug.assert(oldProgram === this.program); Debug.assert(!this.isClosed(), "Called update graph worker of closed project"); this.writeLog(`Starting updateGraphWorker: Project: ${this.getProjectName()}`); const start = timestamp(); const { hasInvalidatedResolutions, hasInvalidatedLibResolutions } = this.resolutionCache.createHasInvalidatedResolutions(returnFalse, returnFalse); this.hasInvalidatedResolutions = hasInvalidatedResolutions; this.hasInvalidatedLibResolutions = hasInvalidatedLibResolutions; this.resolutionCache.startCachingPerDirectoryResolution(); this.dirty = false; this.updateFromProjectInProgress = true; this.program = this.languageService.getProgram(); this.updateFromProjectInProgress = false; (_a = tracing) == null || _a.push(tracing.Phase.Session, "finishCachingPerDirectoryResolution"); this.resolutionCache.finishCachingPerDirectoryResolution(this.program, oldProgram); (_b = tracing) == null || _b.pop(); Debug.assert(oldProgram === undefined || this.program !== undefined); let hasNewProgram = false; if (this.program && (!oldProgram || this.program !== oldProgram && this.program.structureIsReused !== 2)) { hasNewProgram = true; this.rootFilesMap.forEach((value, path) => { var _a2; const file = this.program.getSourceFileByPath(path); const info = value.info; if (!file || ((_a2 = value.info) == null ? undefined : _a2.path) === file.resolvedPath) return; value.info = this.projectService.getScriptInfo(file.fileName); Debug.assert(value.info.isAttached(this)); info == null || info.detachFromProject(this); }); updateMissingFilePathsWatch(this.program, this.missingFilesMap || (this.missingFilesMap = /* @__PURE__ */ new Map), (missingFilePath, missingFileName) => this.addMissingFileWatcher(missingFilePath, missingFileName)); if (this.generatedFilesMap) { const outPath = this.compilerOptions.outFile; if (isGeneratedFileWatcher(this.generatedFilesMap)) { if (!outPath || !this.isValidGeneratedFileWatcher(removeFileExtension(outPath) + ".d.ts", this.generatedFilesMap)) { this.clearGeneratedFileWatch(); } } else { if (outPath) { this.clearGeneratedFileWatch(); } else { this.generatedFilesMap.forEach((watcher, source) => { const sourceFile = this.program.getSourceFileByPath(source); if (!sourceFile || sourceFile.resolvedPath !== source || !this.isValidGeneratedFileWatcher(getDeclarationEmitOutputFilePathWorker(sourceFile.fileName, this.compilerOptions, this.program), watcher)) { closeFileWatcherOf(watcher); this.generatedFilesMap.delete(source); } }); } } } if (this.languageServiceEnabled && this.projectService.serverMode === 0) { this.resolutionCache.updateTypeRootsWatch(); } } this.projectService.verifyProgram(this); if (this.exportMapCache && !this.exportMapCache.isEmpty()) { this.exportMapCache.releaseSymbols(); if (this.hasAddedorRemovedFiles || oldProgram && !this.program.structureIsReused) { this.exportMapCache.clear(); } else if (this.changedFilesForExportMapCache && oldProgram && this.program) { forEachKey(this.changedFilesForExportMapCache, (fileName) => { const oldSourceFile = oldProgram.getSourceFileByPath(fileName); const sourceFile = this.program.getSourceFileByPath(fileName); if (!oldSourceFile || !sourceFile) { this.exportMapCache.clear(); return true; } return this.exportMapCache.onFileChanged(oldSourceFile, sourceFile, !!this.getTypeAcquisition().enable); }); } } if (this.changedFilesForExportMapCache) { this.changedFilesForExportMapCache.clear(); } if (this.hasAddedOrRemovedSymlinks || this.program && !this.program.structureIsReused && this.getCompilerOptions().preserveSymlinks) { this.symlinks = undefined; this.moduleSpecifierCache.clear(); } const oldExternalFiles = this.externalFiles || emptyArray2; this.externalFiles = this.getExternalFiles(); enumerateInsertsAndDeletes(this.externalFiles, oldExternalFiles, getStringComparer(!this.useCaseSensitiveFileNames()), (inserted) => { const scriptInfo = this.projectService.getOrCreateScriptInfoNotOpenedByClient(inserted, this.currentDirectory, this.directoryStructureHost, false); scriptInfo == null || scriptInfo.attachToProject(this); }, (removed) => this.detachScriptInfoFromProject(removed)); const elapsed = timestamp() - start; this.sendPerformanceEvent("UpdateGraph", elapsed); this.writeLog(`Finishing updateGraphWorker: Project: ${this.getProjectName()} projectStateVersion: ${this.projectStateVersion} projectProgramVersion: ${this.projectProgramVersion} structureChanged: ${hasNewProgram}${this.program ? ` structureIsReused:: ${StructureIsReused[this.program.structureIsReused]}` : ""} Elapsed: ${elapsed}ms`); if (this.projectService.logger.isTestLogger) { if (this.program !== oldProgram) { this.print(true, this.hasAddedorRemovedFiles, true); } else { this.writeLog(`Same program as before`); } } else if (this.hasAddedorRemovedFiles) { this.print(true, true, false); } else if (this.program !== oldProgram) { this.writeLog(`Different program with same set of files`); } this.projectService.verifyDocumentRegistry(); return hasNewProgram; } sendPerformanceEvent(kind, durationMs) { this.projectService.sendPerformanceEvent(kind, durationMs); } detachScriptInfoFromProject(uncheckedFileName, noRemoveResolution) { const scriptInfoToDetach = this.projectService.getScriptInfo(uncheckedFileName); if (scriptInfoToDetach) { scriptInfoToDetach.detachFromProject(this); if (!noRemoveResolution) { this.resolutionCache.removeResolutionsOfFile(scriptInfoToDetach.path); } } } addMissingFileWatcher(missingFilePath, missingFileName) { var _a; if (isConfiguredProject(this)) { const configFileExistenceInfo = this.projectService.configFileExistenceInfoCache.get(missingFilePath); if ((_a = configFileExistenceInfo == null ? undefined : configFileExistenceInfo.config) == null ? undefined : _a.projects.has(this.canonicalConfigFilePath)) return noopFileWatcher; } const fileWatcher = this.projectService.watchFactory.watchFile(getNormalizedAbsolutePath(missingFileName, this.currentDirectory), (fileName, eventKind) => { if (isConfiguredProject(this)) { this.getCachedDirectoryStructureHost().addOrDeleteFile(fileName, missingFilePath, eventKind); } if (eventKind === 0 && this.missingFilesMap.has(missingFilePath)) { this.missingFilesMap.delete(missingFilePath); fileWatcher.close(); this.projectService.delayUpdateProjectGraphAndEnsureProjectStructureForOpenFiles(this); } }, 500, this.projectService.getWatchOptions(this), WatchType.MissingFile, this); return fileWatcher; } isWatchedMissingFile(path) { return !!this.missingFilesMap && this.missingFilesMap.has(path); } addGeneratedFileWatch(generatedFile, sourceFile) { if (this.compilerOptions.outFile) { if (!this.generatedFilesMap) { this.generatedFilesMap = this.createGeneratedFileWatcher(generatedFile); } } else { const path = this.toPath(sourceFile); if (this.generatedFilesMap) { if (isGeneratedFileWatcher(this.generatedFilesMap)) { Debug.fail(`${this.projectName} Expected to not have --out watcher for generated file with options: ${JSON.stringify(this.compilerOptions)}`); return; } if (this.generatedFilesMap.has(path)) return; } else { this.generatedFilesMap = /* @__PURE__ */ new Map; } this.generatedFilesMap.set(path, this.createGeneratedFileWatcher(generatedFile)); } } createGeneratedFileWatcher(generatedFile) { return { generatedFilePath: this.toPath(generatedFile), watcher: this.projectService.watchFactory.watchFile(generatedFile, () => { this.clearSourceMapperCache(); this.projectService.delayUpdateProjectGraphAndEnsureProjectStructureForOpenFiles(this); }, 2000, this.projectService.getWatchOptions(this), WatchType.MissingGeneratedFile, this) }; } isValidGeneratedFileWatcher(generateFile, watcher) { return this.toPath(generateFile) === watcher.generatedFilePath; } clearGeneratedFileWatch() { if (this.generatedFilesMap) { if (isGeneratedFileWatcher(this.generatedFilesMap)) { closeFileWatcherOf(this.generatedFilesMap); } else { clearMap(this.generatedFilesMap, closeFileWatcherOf); } this.generatedFilesMap = undefined; } } getScriptInfoForNormalizedPath(fileName) { const scriptInfo = this.projectService.getScriptInfoForPath(this.toPath(fileName)); if (scriptInfo && !scriptInfo.isAttached(this)) { return Errors.ThrowProjectDoesNotContainDocument(fileName, this); } return scriptInfo; } getScriptInfo(uncheckedFileName) { return this.projectService.getScriptInfo(uncheckedFileName); } filesToString(writeProjectFileNames) { return this.filesToStringWorker(writeProjectFileNames, true, false); } filesToStringWorker(writeProjectFileNames, writeFileExplaination, writeFileVersionAndText) { if (this.initialLoadPending) return ` Files (0) InitialLoadPending `; if (!this.program) return ` Files (0) NoProgram `; const sourceFiles = this.program.getSourceFiles(); let strBuilder = ` Files (${sourceFiles.length}) `; if (writeProjectFileNames) { for (const file of sourceFiles) { strBuilder += ` ${file.fileName}${writeFileVersionAndText ? ` ${file.version} ${JSON.stringify(file.text)}` : ""} `; } if (writeFileExplaination) { strBuilder += ` `; explainFiles(this.program, (s) => strBuilder += ` ${s} `); } } return strBuilder; } print(writeProjectFileNames, writeFileExplaination, writeFileVersionAndText) { var _a; this.writeLog(`Project '${this.projectName}' (${ProjectKind[this.projectKind]})`); this.writeLog(this.filesToStringWorker(writeProjectFileNames && this.projectService.logger.hasLevel(3), writeFileExplaination && this.projectService.logger.hasLevel(3), writeFileVersionAndText && this.projectService.logger.hasLevel(3))); this.writeLog("-----------------------------------------------"); if (this.autoImportProviderHost) { this.autoImportProviderHost.print(false, false, false); } (_a = this.noDtsResolutionProject) == null || _a.print(false, false, false); } setCompilerOptions(compilerOptions) { var _a; if (compilerOptions) { compilerOptions.allowNonTsExtensions = true; const oldOptions = this.compilerOptions; this.compilerOptions = compilerOptions; this.setInternalCompilerOptionsForEmittingJsFiles(); (_a = this.noDtsResolutionProject) == null || _a.setCompilerOptions(this.getCompilerOptionsForNoDtsResolutionProject()); if (changesAffectModuleResolution(oldOptions, compilerOptions)) { this.cachedUnresolvedImportsPerFile.clear(); this.lastCachedUnresolvedImportsList = undefined; this.resolutionCache.onChangesAffectModuleResolution(); this.moduleSpecifierCache.clear(); } this.markAsDirty(); } } setWatchOptions(watchOptions) { this.watchOptions = watchOptions; } getWatchOptions() { return this.watchOptions; } setTypeAcquisition(newTypeAcquisition) { if (newTypeAcquisition) { this.typeAcquisition = this.removeLocalTypingsFromTypeAcquisition(newTypeAcquisition); } } getTypeAcquisition() { return this.typeAcquisition || {}; } getChangesSinceVersion(lastKnownVersion, includeProjectReferenceRedirectInfo) { var _a, _b; const includeProjectReferenceRedirectInfoIfRequested = includeProjectReferenceRedirectInfo ? (files) => arrayFrom(files.entries(), ([fileName, isSourceOfProjectReferenceRedirect]) => ({ fileName, isSourceOfProjectReferenceRedirect })) : (files) => arrayFrom(files.keys()); if (!this.initialLoadPending) { updateProjectIfDirty(this); } const info = { projectName: this.getProjectName(), version: this.projectProgramVersion, isInferred: isInferredProject(this), options: this.getCompilationSettings(), languageServiceDisabled: !this.languageServiceEnabled, lastFileExceededProgramSize: this.lastFileExceededProgramSize }; const updatedFileNames = this.updatedFileNames; this.updatedFileNames = undefined; if (this.lastReportedFileNames && lastKnownVersion === this.lastReportedVersion) { if (this.projectProgramVersion === this.lastReportedVersion && !updatedFileNames) { return { info, projectErrors: this.getGlobalProjectErrors() }; } const lastReportedFileNames = this.lastReportedFileNames; const externalFiles = ((_a = this.externalFiles) == null ? undefined : _a.map((f) => ({ fileName: toNormalizedPath(f), isSourceOfProjectReferenceRedirect: false }))) || emptyArray2; const currentFiles = arrayToMap(this.getFileNamesWithRedirectInfo(!!includeProjectReferenceRedirectInfo).concat(externalFiles), (info2) => info2.fileName, (info2) => info2.isSourceOfProjectReferenceRedirect); const added = /* @__PURE__ */ new Map; const removed = /* @__PURE__ */ new Map; const updated = updatedFileNames ? arrayFrom(updatedFileNames.keys()) : []; const updatedRedirects = []; forEachEntry(currentFiles, (isSourceOfProjectReferenceRedirect, fileName) => { if (!lastReportedFileNames.has(fileName)) { added.set(fileName, isSourceOfProjectReferenceRedirect); } else if (includeProjectReferenceRedirectInfo && isSourceOfProjectReferenceRedirect !== lastReportedFileNames.get(fileName)) { updatedRedirects.push({ fileName, isSourceOfProjectReferenceRedirect }); } }); forEachEntry(lastReportedFileNames, (isSourceOfProjectReferenceRedirect, fileName) => { if (!currentFiles.has(fileName)) { removed.set(fileName, isSourceOfProjectReferenceRedirect); } }); this.lastReportedFileNames = currentFiles; this.lastReportedVersion = this.projectProgramVersion; return { info, changes: { added: includeProjectReferenceRedirectInfoIfRequested(added), removed: includeProjectReferenceRedirectInfoIfRequested(removed), updated: includeProjectReferenceRedirectInfo ? updated.map((fileName) => ({ fileName, isSourceOfProjectReferenceRedirect: this.isSourceOfProjectReferenceRedirect(fileName) })) : updated, updatedRedirects: includeProjectReferenceRedirectInfo ? updatedRedirects : undefined }, projectErrors: this.getGlobalProjectErrors() }; } else { const projectFileNames = this.getFileNamesWithRedirectInfo(!!includeProjectReferenceRedirectInfo); const externalFiles = ((_b = this.externalFiles) == null ? undefined : _b.map((f) => ({ fileName: toNormalizedPath(f), isSourceOfProjectReferenceRedirect: false }))) || emptyArray2; const allFiles = projectFileNames.concat(externalFiles); this.lastReportedFileNames = arrayToMap(allFiles, (info2) => info2.fileName, (info2) => info2.isSourceOfProjectReferenceRedirect); this.lastReportedVersion = this.projectProgramVersion; return { info, files: includeProjectReferenceRedirectInfo ? allFiles : allFiles.map((f) => f.fileName), projectErrors: this.getGlobalProjectErrors() }; } } removeRoot(info) { this.rootFilesMap.delete(info.path); } isSourceOfProjectReferenceRedirect(fileName) { return !!this.program && this.program.isSourceOfProjectReferenceRedirect(fileName); } getGlobalPluginSearchPaths() { return [ ...this.projectService.pluginProbeLocations, combinePaths(this.projectService.getExecutingFilePath(), "../../..") ]; } enableGlobalPlugins(options) { if (!this.projectService.globalPlugins.length) return; const host = this.projectService.host; if (!host.require && !host.importPlugin) { this.projectService.logger.info("Plugins were requested but not running in environment that supports 'require'. Nothing will be loaded"); return; } const searchPaths = this.getGlobalPluginSearchPaths(); for (const globalPluginName of this.projectService.globalPlugins) { if (!globalPluginName) continue; if (options.plugins && options.plugins.some((p) => p.name === globalPluginName)) continue; this.projectService.logger.info(`Loading global plugin ${globalPluginName}`); this.enablePlugin({ name: globalPluginName, global: true }, searchPaths); } } enablePlugin(pluginConfigEntry, searchPaths) { this.projectService.requestEnablePlugin(this, pluginConfigEntry, searchPaths); } enableProxy(pluginModuleFactory, configEntry) { try { if (typeof pluginModuleFactory !== "function") { this.projectService.logger.info(`Skipped loading plugin ${configEntry.name} because it did not expose a proper factory function`); return; } const info = { config: configEntry, project: this, languageService: this.languageService, languageServiceHost: this, serverHost: this.projectService.host, session: this.projectService.session }; const pluginModule = pluginModuleFactory({ typescript: ts_exports2 }); const newLS = pluginModule.create(info); for (const k of Object.keys(this.languageService)) { if (!(k in newLS)) { this.projectService.logger.info(`Plugin activation warning: Missing proxied method ${k} in created LS. Patching.`); newLS[k] = this.languageService[k]; } } this.projectService.logger.info(`Plugin validation succeeded`); this.languageService = newLS; this.plugins.push({ name: configEntry.name, module: pluginModule }); } catch (e) { this.projectService.logger.info(`Plugin activation failed: ${e}`); } } onPluginConfigurationChanged(pluginName, configuration) { this.plugins.filter((plugin) => plugin.name === pluginName).forEach((plugin) => { if (plugin.module.onConfigurationChanged) { plugin.module.onConfigurationChanged(configuration); } }); } refreshDiagnostics() { this.projectService.sendProjectsUpdatedInBackgroundEvent(); } getPackageJsonsVisibleToFile(fileName, rootDir) { if (this.projectService.serverMode !== 0) return emptyArray2; return this.projectService.getPackageJsonsVisibleToFile(fileName, this, rootDir); } getNearestAncestorDirectoryWithPackageJson(fileName) { return this.projectService.getNearestAncestorDirectoryWithPackageJson(fileName, this); } getPackageJsonsForAutoImport(rootDir) { return this.getPackageJsonsVisibleToFile(combinePaths(this.currentDirectory, inferredTypesContainingFile), rootDir); } getPackageJsonCache() { return this.projectService.packageJsonCache; } getCachedExportInfoMap() { return this.exportMapCache || (this.exportMapCache = createCacheableExportInfoMap(this)); } clearCachedExportInfoMap() { var _a; (_a = this.exportMapCache) == null || _a.clear(); } getModuleSpecifierCache() { return this.moduleSpecifierCache; } includePackageJsonAutoImports() { if (this.projectService.includePackageJsonAutoImports() === 0 || !this.languageServiceEnabled || isInsideNodeModules(this.currentDirectory) || !this.isDefaultProjectForOpenFiles()) { return 0; } return this.projectService.includePackageJsonAutoImports(); } getHostForAutoImportProvider() { var _a, _b; if (this.program) { return { fileExists: this.program.fileExists, directoryExists: this.program.directoryExists, realpath: this.program.realpath || ((_a = this.projectService.host.realpath) == null ? undefined : _a.bind(this.projectService.host)), getCurrentDirectory: this.getCurrentDirectory.bind(this), readFile: this.projectService.host.readFile.bind(this.projectService.host), getDirectories: this.projectService.host.getDirectories.bind(this.projectService.host), trace: (_b = this.projectService.host.trace) == null ? undefined : _b.bind(this.projectService.host), useCaseSensitiveFileNames: this.program.useCaseSensitiveFileNames(), readDirectory: this.projectService.host.readDirectory.bind(this.projectService.host) }; } return this.projectService.host; } getPackageJsonAutoImportProvider() { var _a, _b, _c; if (this.autoImportProviderHost === false) { return; } if (this.projectService.serverMode !== 0) { this.autoImportProviderHost = false; return; } if (this.autoImportProviderHost) { updateProjectIfDirty(this.autoImportProviderHost); if (this.autoImportProviderHost.isEmpty()) { this.autoImportProviderHost.close(); this.autoImportProviderHost = undefined; return; } return this.autoImportProviderHost.getCurrentProgram(); } const dependencySelection = this.includePackageJsonAutoImports(); if (dependencySelection) { (_a = tracing) == null || _a.push(tracing.Phase.Session, "getPackageJsonAutoImportProvider"); const start = timestamp(); this.autoImportProviderHost = AutoImportProviderProject.create(dependencySelection, this, this.getHostForAutoImportProvider()) ?? false; if (this.autoImportProviderHost) { updateProjectIfDirty(this.autoImportProviderHost); this.sendPerformanceEvent("CreatePackageJsonAutoImportProvider", timestamp() - start); (_b = tracing) == null || _b.pop(); return this.autoImportProviderHost.getCurrentProgram(); } (_c = tracing) == null || _c.pop(); } } isDefaultProjectForOpenFiles() { return !!forEachEntry(this.projectService.openFiles, (_projectRootPath, path) => this.projectService.tryGetDefaultProjectForFile(this.projectService.getScriptInfoForPath(path)) === this); } watchNodeModulesForPackageJsonChanges(directoryPath) { return this.projectService.watchPackageJsonsInNodeModules(directoryPath, this); } getIncompleteCompletionsCache() { return this.projectService.getIncompleteCompletionsCache(); } getNoDtsResolutionProject(rootFile) { Debug.assert(this.projectService.serverMode === 0); this.noDtsResolutionProject ?? (this.noDtsResolutionProject = new AuxiliaryProject(this)); if (this.noDtsResolutionProject.rootFile !== rootFile) { this.projectService.setFileNamesOfAutoImportProviderOrAuxillaryProject(this.noDtsResolutionProject, [rootFile]); this.noDtsResolutionProject.rootFile = rootFile; } return this.noDtsResolutionProject; } runWithTemporaryFileUpdate(rootFile, updatedText, cb) { var _a, _b, _c, _d; const originalProgram = this.program; const rootSourceFile = Debug.checkDefined((_a = this.program) == null ? undefined : _a.getSourceFile(rootFile), "Expected file to be part of program"); const originalText = Debug.checkDefined(rootSourceFile.getFullText()); (_b = this.getScriptInfo(rootFile)) == null || _b.editContent(0, originalText.length, updatedText); this.updateGraph(); try { cb(this.program, originalProgram, (_c = this.program) == null ? undefined : _c.getSourceFile(rootFile)); } finally { (_d = this.getScriptInfo(rootFile)) == null || _d.editContent(0, updatedText.length, originalText); } } getCompilerOptionsForNoDtsResolutionProject() { return { ...this.getCompilerOptions(), noDtsResolution: true, allowJs: true, maxNodeModuleJsDepth: 3, diagnostics: false, skipLibCheck: true, sourceMap: false, types: emptyArray, lib: emptyArray, noLib: true }; } }; function getUnresolvedImports(program, cachedUnresolvedImportsPerFile) { var _a, _b; const sourceFiles = program.getSourceFiles(); (_a = tracing) == null || _a.push(tracing.Phase.Session, "getUnresolvedImports", { count: sourceFiles.length }); const ambientModules = program.getTypeChecker().getAmbientModules().map((mod) => stripQuotes(mod.getName())); const result = sortAndDeduplicate(flatMap(sourceFiles, (sourceFile) => extractUnresolvedImportsFromSourceFile(program, sourceFile, ambientModules, cachedUnresolvedImportsPerFile))); (_b = tracing) == null || _b.pop(); return result; } function extractUnresolvedImportsFromSourceFile(program, file, ambientModules, cachedUnresolvedImportsPerFile) { return getOrUpdate(cachedUnresolvedImportsPerFile, file.path, () => { let unresolvedImports; program.forEachResolvedModule(({ resolvedModule }, name) => { if ((!resolvedModule || !resolutionExtensionIsTSOrJson(resolvedModule.extension)) && !isExternalModuleNameRelative(name) && !ambientModules.some((m) => m === name)) { unresolvedImports = append(unresolvedImports, parsePackageName(name).packageName); } }, file); return unresolvedImports || emptyArray2; }); } var InferredProject2 = class extends Project2 { constructor(projectService, compilerOptions, watchOptions, projectRootPath, currentDirectory, typeAcquisition) { super(projectService.newInferredProjectName(), 0, projectService, false, undefined, compilerOptions, false, watchOptions, projectService.host, currentDirectory); this._isJsInferredProject = false; this.typeAcquisition = typeAcquisition; this.projectRootPath = projectRootPath && projectService.toCanonicalFileName(projectRootPath); if (!projectRootPath && !projectService.useSingleInferredProject) { this.canonicalCurrentDirectory = projectService.toCanonicalFileName(this.currentDirectory); } this.enableGlobalPlugins(this.getCompilerOptions()); } toggleJsInferredProject(isJsInferredProject) { if (isJsInferredProject !== this._isJsInferredProject) { this._isJsInferredProject = isJsInferredProject; this.setCompilerOptions(); } } setCompilerOptions(options) { if (!options && !this.getCompilationSettings()) { return; } const newOptions = cloneCompilerOptions(options || this.getCompilationSettings()); if (this._isJsInferredProject && typeof newOptions.maxNodeModuleJsDepth !== "number") { newOptions.maxNodeModuleJsDepth = 2; } else if (!this._isJsInferredProject) { newOptions.maxNodeModuleJsDepth = undefined; } newOptions.allowJs = true; super.setCompilerOptions(newOptions); } addRoot(info) { Debug.assert(info.isScriptOpen()); this.projectService.startWatchingConfigFilesForInferredProjectRoot(info); if (!this._isJsInferredProject && info.isJavaScript()) { this.toggleJsInferredProject(true); } else if (this.isOrphan() && this._isJsInferredProject && !info.isJavaScript()) { this.toggleJsInferredProject(false); } super.addRoot(info); } removeRoot(info) { this.projectService.stopWatchingConfigFilesForScriptInfo(info); super.removeRoot(info); if (!this.isOrphan() && this._isJsInferredProject && info.isJavaScript()) { if (every(this.getRootScriptInfos(), (rootInfo) => !rootInfo.isJavaScript())) { this.toggleJsInferredProject(false); } } } isOrphan() { return !this.hasRoots(); } isProjectWithSingleRoot() { return !this.projectRootPath && !this.projectService.useSingleInferredProject || this.getRootScriptInfos().length === 1; } close() { forEach(this.getRootScriptInfos(), (info) => this.projectService.stopWatchingConfigFilesForScriptInfo(info)); super.close(); } getTypeAcquisition() { return this.typeAcquisition || { enable: allRootFilesAreJsOrDts(this), include: emptyArray, exclude: emptyArray }; } }; var AuxiliaryProject = class extends Project2 { constructor(hostProject) { super(hostProject.projectService.newAuxiliaryProjectName(), 4, hostProject.projectService, false, undefined, hostProject.getCompilerOptionsForNoDtsResolutionProject(), false, undefined, hostProject.projectService.host, hostProject.currentDirectory); } isOrphan() { return true; } scheduleInvalidateResolutionsOfFailedLookupLocations() { return; } }; var _AutoImportProviderProject = class _AutoImportProviderProject2 extends Project2 { constructor(hostProject, initialRootNames, compilerOptions) { super(hostProject.projectService.newAutoImportProviderProjectName(), 3, hostProject.projectService, false, undefined, compilerOptions, false, hostProject.getWatchOptions(), hostProject.projectService.host, hostProject.currentDirectory); this.hostProject = hostProject; this.rootFileNames = initialRootNames; this.useSourceOfProjectReferenceRedirect = maybeBind(this.hostProject, this.hostProject.useSourceOfProjectReferenceRedirect); this.getParsedCommandLine = maybeBind(this.hostProject, this.hostProject.getParsedCommandLine); } static getRootFileNames(dependencySelection, hostProject, host, compilerOptions) { var _a, _b; if (!dependencySelection) { return emptyArray; } const program = hostProject.getCurrentProgram(); if (!program) { return emptyArray; } const start = timestamp(); let dependencyNames; let rootNames; const rootFileName = combinePaths(hostProject.currentDirectory, inferredTypesContainingFile); const packageJsons = hostProject.getPackageJsonsForAutoImport(combinePaths(hostProject.currentDirectory, rootFileName)); for (const packageJson of packageJsons) { (_a = packageJson.dependencies) == null || _a.forEach((_, dependenyName) => addDependency(dependenyName)); (_b = packageJson.peerDependencies) == null || _b.forEach((_, dependencyName) => addDependency(dependencyName)); } let dependenciesAdded = 0; if (dependencyNames) { const symlinkCache = hostProject.getSymlinkCache(); for (const name of arrayFrom(dependencyNames.keys())) { if (dependencySelection === 2 && dependenciesAdded >= this.maxDependencies) { hostProject.log(`AutoImportProviderProject: attempted to add more than ${this.maxDependencies} dependencies. Aborting.`); return emptyArray; } const packageJson = resolvePackageNameToPackageJson(name, hostProject.currentDirectory, compilerOptions, host, program.getModuleResolutionCache()); if (packageJson) { const entrypoints = getRootNamesFromPackageJson(packageJson, program, symlinkCache); if (entrypoints) { dependenciesAdded += addRootNames(entrypoints); continue; } } const done = forEach([hostProject.currentDirectory, hostProject.getGlobalTypingsCacheLocation()], (directory) => { if (directory) { const typesPackageJson = resolvePackageNameToPackageJson(`@types/${name}`, directory, compilerOptions, host, program.getModuleResolutionCache()); if (typesPackageJson) { const entrypoints = getRootNamesFromPackageJson(typesPackageJson, program, symlinkCache); dependenciesAdded += addRootNames(entrypoints); return true; } } }); if (done) continue; if (packageJson && compilerOptions.allowJs && compilerOptions.maxNodeModuleJsDepth) { const entrypoints = getRootNamesFromPackageJson(packageJson, program, symlinkCache, true); dependenciesAdded += addRootNames(entrypoints); } } } const references = program.getResolvedProjectReferences(); let referencesAddded = 0; if ((references == null ? undefined : references.length) && hostProject.projectService.getHostPreferences().includeCompletionsForModuleExports) { references.forEach((ref) => { if (ref == null ? undefined : ref.commandLine.options.outFile) { referencesAddded += addRootNames(filterEntrypoints([ changeExtension(ref.commandLine.options.outFile, ".d.ts") ])); } else if (ref) { const getCommonSourceDirectory2 = memoize(() => getCommonSourceDirectoryOfConfig(ref.commandLine, !hostProject.useCaseSensitiveFileNames())); referencesAddded += addRootNames(filterEntrypoints(mapDefined(ref.commandLine.fileNames, (fileName) => !isDeclarationFileName(fileName) && !fileExtensionIs(fileName, ".json") && !program.getSourceFile(fileName) ? getOutputDeclarationFileName(fileName, ref.commandLine, !hostProject.useCaseSensitiveFileNames(), getCommonSourceDirectory2) : undefined))); } }); } if (rootNames == null ? undefined : rootNames.size) { hostProject.log(`AutoImportProviderProject: found ${rootNames.size} root files in ${dependenciesAdded} dependencies ${referencesAddded} referenced projects in ${timestamp() - start} ms`); } return rootNames ? arrayFrom(rootNames.values()) : emptyArray; function addRootNames(entrypoints) { if (!(entrypoints == null ? undefined : entrypoints.length)) return 0; rootNames ?? (rootNames = /* @__PURE__ */ new Set); entrypoints.forEach((entry) => rootNames.add(entry)); return 1; } function addDependency(dependency) { if (!startsWith(dependency, "@types/")) { (dependencyNames || (dependencyNames = /* @__PURE__ */ new Set)).add(dependency); } } function getRootNamesFromPackageJson(packageJson, program2, symlinkCache, resolveJs) { var _a2; const entrypoints = getEntrypointsFromPackageJsonInfo(packageJson, compilerOptions, host, program2.getModuleResolutionCache(), resolveJs); if (entrypoints) { const real = (_a2 = host.realpath) == null ? undefined : _a2.call(host, packageJson.packageDirectory); const realPath2 = real ? hostProject.toPath(real) : undefined; const isSymlink = realPath2 && realPath2 !== hostProject.toPath(packageJson.packageDirectory); if (isSymlink) { symlinkCache.setSymlinkedDirectory(packageJson.packageDirectory, { real: ensureTrailingDirectorySeparator(real), realPath: ensureTrailingDirectorySeparator(realPath2) }); } return filterEntrypoints(entrypoints, isSymlink ? (entrypoint) => entrypoint.replace(packageJson.packageDirectory, real) : undefined); } } function filterEntrypoints(entrypoints, symlinkName) { return mapDefined(entrypoints, (entrypoint) => { const resolvedFileName = symlinkName ? symlinkName(entrypoint) : entrypoint; if (!program.getSourceFile(resolvedFileName) && !(symlinkName && program.getSourceFile(entrypoint))) { return resolvedFileName; } }); } } static create(dependencySelection, hostProject, host) { if (dependencySelection === 0) { return; } const compilerOptions = { ...hostProject.getCompilerOptions(), ...this.compilerOptionsOverrides }; const rootNames = this.getRootFileNames(dependencySelection, hostProject, host, compilerOptions); if (!rootNames.length) { return; } return new _AutoImportProviderProject2(hostProject, rootNames, compilerOptions); } isEmpty() { return !some(this.rootFileNames); } isOrphan() { return true; } updateGraph() { let rootFileNames = this.rootFileNames; if (!rootFileNames) { rootFileNames = _AutoImportProviderProject2.getRootFileNames(this.hostProject.includePackageJsonAutoImports(), this.hostProject, this.hostProject.getHostForAutoImportProvider(), this.getCompilationSettings()); } this.projectService.setFileNamesOfAutoImportProviderOrAuxillaryProject(this, rootFileNames); this.rootFileNames = rootFileNames; const oldProgram = this.getCurrentProgram(); const hasSameSetOfFiles = super.updateGraph(); if (oldProgram && oldProgram !== this.getCurrentProgram()) { this.hostProject.clearCachedExportInfoMap(); } return hasSameSetOfFiles; } scheduleInvalidateResolutionsOfFailedLookupLocations() { return; } hasRoots() { var _a; return !!((_a = this.rootFileNames) == null ? undefined : _a.length); } markAsDirty() { this.rootFileNames = undefined; super.markAsDirty(); } getScriptFileNames() { return this.rootFileNames || emptyArray; } getLanguageService() { throw new Error("AutoImportProviderProject language service should never be used. To get the program, use `project.getCurrentProgram()`."); } onAutoImportProviderSettingsChanged() { throw new Error("AutoImportProviderProject is an auto import provider; use `markAsDirty()` instead."); } onPackageJsonChange() { throw new Error("package.json changes should be notified on an AutoImportProvider's host project"); } getHostForAutoImportProvider() { throw new Error("AutoImportProviderProject cannot provide its own host; use `hostProject.getModuleResolutionHostForAutomImportProvider()` instead."); } getProjectReferences() { return this.hostProject.getProjectReferences(); } includePackageJsonAutoImports() { return 0; } getSymlinkCache() { return this.hostProject.getSymlinkCache(); } getModuleResolutionCache() { var _a; return (_a = this.hostProject.getCurrentProgram()) == null ? undefined : _a.getModuleResolutionCache(); } }; _AutoImportProviderProject.maxDependencies = 10; _AutoImportProviderProject.compilerOptionsOverrides = { diagnostics: false, skipLibCheck: true, sourceMap: false, types: emptyArray, lib: emptyArray, noLib: true }; var AutoImportProviderProject = _AutoImportProviderProject; var ConfiguredProject2 = class extends Project2 { constructor(configFileName, canonicalConfigFilePath, projectService, cachedDirectoryStructureHost, pendingUpdateReason) { super(configFileName, 1, projectService, false, undefined, {}, false, undefined, cachedDirectoryStructureHost, getDirectoryPath(configFileName)); this.canonicalConfigFilePath = canonicalConfigFilePath; this.openFileWatchTriggered = /* @__PURE__ */ new Map; this.initialLoadPending = true; this.sendLoadingProjectFinish = false; this.pendingUpdateLevel = 2; this.pendingUpdateReason = pendingUpdateReason; } setCompilerHost(host) { this.compilerHost = host; } getCompilerHost() { return this.compilerHost; } useSourceOfProjectReferenceRedirect() { return this.languageServiceEnabled; } getParsedCommandLine(fileName) { const configFileName = toNormalizedPath(fileName); const canonicalConfigFilePath = asNormalizedPath(this.projectService.toCanonicalFileName(configFileName)); let configFileExistenceInfo = this.projectService.configFileExistenceInfoCache.get(canonicalConfigFilePath); if (!configFileExistenceInfo) { this.projectService.configFileExistenceInfoCache.set(canonicalConfigFilePath, configFileExistenceInfo = { exists: this.projectService.host.fileExists(configFileName) }); } this.projectService.ensureParsedConfigUptoDate(configFileName, canonicalConfigFilePath, configFileExistenceInfo, this); if (this.languageServiceEnabled && this.projectService.serverMode === 0) { this.projectService.watchWildcards(configFileName, configFileExistenceInfo, this); } return configFileExistenceInfo.exists ? configFileExistenceInfo.config.parsedCommandLine : undefined; } onReleaseParsedCommandLine(fileName) { this.releaseParsedConfig(asNormalizedPath(this.projectService.toCanonicalFileName(toNormalizedPath(fileName)))); } releaseParsedConfig(canonicalConfigFilePath) { this.projectService.stopWatchingWildCards(canonicalConfigFilePath, this); this.projectService.releaseParsedConfig(canonicalConfigFilePath, this); } updateGraph() { if (this.deferredClose) return false; const isDirty = this.dirty; this.initialLoadPending = false; const updateLevel = this.pendingUpdateLevel; this.pendingUpdateLevel = 0; let result; switch (updateLevel) { case 1: this.openFileWatchTriggered.clear(); result = this.projectService.reloadFileNamesOfConfiguredProject(this); break; case 2: this.openFileWatchTriggered.clear(); const reason = Debug.checkDefined(this.pendingUpdateReason); this.projectService.reloadConfiguredProject(this, reason); result = true; break; default: result = super.updateGraph(); } this.compilerHost = undefined; this.projectService.sendProjectLoadingFinishEvent(this); this.projectService.sendProjectTelemetry(this); if (updateLevel === 2 || result && (!isDirty || !this.triggerFileForConfigFileDiag || this.getCurrentProgram().structureIsReused === 2)) { this.triggerFileForConfigFileDiag = undefined; } else if (!this.triggerFileForConfigFileDiag) { this.projectService.sendConfigFileDiagEvent(this, undefined, false); } return result; } getCachedDirectoryStructureHost() { return this.directoryStructureHost; } getConfigFilePath() { return asNormalizedPath(this.getProjectName()); } getProjectReferences() { return this.projectReferences; } updateReferences(refs) { this.projectReferences = refs; this.potentialProjectReferences = undefined; } setPotentialProjectReference(canonicalConfigPath) { Debug.assert(this.initialLoadPending); (this.potentialProjectReferences || (this.potentialProjectReferences = /* @__PURE__ */ new Set)).add(canonicalConfigPath); } getRedirectFromSourceFile(fileName) { const program = this.getCurrentProgram(); return program && program.getRedirectFromSourceFile(fileName); } forEachResolvedProjectReference(cb) { var _a; return (_a = this.getCurrentProgram()) == null ? undefined : _a.forEachResolvedProjectReference(cb); } enablePluginsWithOptions(options) { var _a; this.plugins.length = 0; if (!((_a = options.plugins) == null ? undefined : _a.length) && !this.projectService.globalPlugins.length) return; const host = this.projectService.host; if (!host.require && !host.importPlugin) { this.projectService.logger.info("Plugins were requested but not running in environment that supports 'require'. Nothing will be loaded"); return; } const searchPaths = this.getGlobalPluginSearchPaths(); if (this.projectService.allowLocalPluginLoads) { const local = getDirectoryPath(this.canonicalConfigFilePath); this.projectService.logger.info(`Local plugin loading enabled; adding ${local} to search paths`); searchPaths.unshift(local); } if (options.plugins) { for (const pluginConfigEntry of options.plugins) { this.enablePlugin(pluginConfigEntry, searchPaths); } } return this.enableGlobalPlugins(options); } getGlobalProjectErrors() { return filter(this.projectErrors, (diagnostic) => !diagnostic.file) || emptyArray2; } getAllProjectErrors() { return this.projectErrors || emptyArray2; } setProjectErrors(projectErrors) { this.projectErrors = projectErrors; } close() { this.projectService.configFileExistenceInfoCache.forEach((_configFileExistenceInfo, canonicalConfigFilePath) => this.releaseParsedConfig(canonicalConfigFilePath)); this.projectErrors = undefined; this.openFileWatchTriggered.clear(); this.compilerHost = undefined; super.close(); } markAsDirty() { if (this.deferredClose) return; super.markAsDirty(); } isOrphan() { return !!this.deferredClose; } getEffectiveTypeRoots() { return getEffectiveTypeRoots(this.getCompilationSettings(), this) || []; } updateErrorOnNoInputFiles(parsedCommandLine) { this.parsedCommandLine = parsedCommandLine; updateErrorForNoInputFiles(parsedCommandLine.fileNames, this.getConfigFilePath(), this.getCompilerOptions().configFile.configFileSpecs, this.projectErrors, canJsonReportNoInputFiles(parsedCommandLine.raw)); } }; var ExternalProject = class extends Project2 { constructor(externalProjectName, projectService, compilerOptions, lastFileExceededProgramSize, compileOnSaveEnabled, projectFilePath, watchOptions) { super(externalProjectName, 2, projectService, true, lastFileExceededProgramSize, compilerOptions, compileOnSaveEnabled, watchOptions, projectService.host, getDirectoryPath(projectFilePath || normalizeSlashes(externalProjectName))); this.externalProjectName = externalProjectName; this.compileOnSaveEnabled = compileOnSaveEnabled; this.excludedFiles = []; this.enableGlobalPlugins(this.getCompilerOptions()); } updateGraph() { const result = super.updateGraph(); this.projectService.sendProjectTelemetry(this); return result; } getExcludedFiles() { return this.excludedFiles; } }; function isInferredProject(project) { return project.projectKind === 0; } function isConfiguredProject(project) { return project.projectKind === 1; } function isExternalProject(project) { return project.projectKind === 2; } function isBackgroundProject(project) { return project.projectKind === 3 || project.projectKind === 4; } function isProjectDeferredClose(project) { return isConfiguredProject(project) && !!project.deferredClose; } var maxProgramSizeForNonTsFiles = 20 * 1024 * 1024; var maxFileSize = 4 * 1024 * 1024; var ProjectsUpdatedInBackgroundEvent = "projectsUpdatedInBackground"; var ProjectLoadingStartEvent = "projectLoadingStart"; var ProjectLoadingFinishEvent = "projectLoadingFinish"; var LargeFileReferencedEvent = "largeFileReferenced"; var ConfigFileDiagEvent = "configFileDiag"; var ProjectLanguageServiceStateEvent = "projectLanguageServiceState"; var ProjectInfoTelemetryEvent = "projectInfo"; var OpenFileInfoTelemetryEvent = "openFileInfo"; var CreateFileWatcherEvent = "createFileWatcher"; var CreateDirectoryWatcherEvent = "createDirectoryWatcher"; var CloseFileWatcherEvent = "closeFileWatcher"; var ensureProjectForOpenFileSchedule = "*ensureProjectForOpenFiles*"; function prepareConvertersForEnumLikeCompilerOptions(commandLineOptions) { const map2 = /* @__PURE__ */ new Map; for (const option of commandLineOptions) { if (typeof option.type === "object") { const optionMap = option.type; optionMap.forEach((value) => { Debug.assert(typeof value === "number"); }); map2.set(option.name, optionMap); } } return map2; } var compilerOptionConverters = prepareConvertersForEnumLikeCompilerOptions(optionDeclarations); var watchOptionsConverters = prepareConvertersForEnumLikeCompilerOptions(optionsForWatch); var indentStyle = new Map(Object.entries({ none: 0, block: 1, smart: 2 })); var defaultTypeSafeList = { jquery: { match: /jquery(-[\d.]+)?(\.intellisense)?(\.min)?\.js$/i, types: ["jquery"] }, WinJS: { match: /^(.*\/winjs-[.\d]+)\/js\/base\.js$/i, exclude: [["^", 1, "/.*"]], types: ["winjs"] }, Kendo: { match: /^(.*\/kendo(-ui)?)\/kendo\.all(\.min)?\.js$/i, exclude: [["^", 1, "/.*"]], types: ["kendo-ui"] }, "Office Nuget": { match: /^(.*\/office\/1)\/excel-\d+\.debug\.js$/i, exclude: [["^", 1, "/.*"]], types: ["office"] }, References: { match: /^(.*\/_references\.js)$/i, exclude: [["^", 1, "$"]] } }; function convertFormatOptions(protocolOptions) { if (isString(protocolOptions.indentStyle)) { protocolOptions.indentStyle = indentStyle.get(protocolOptions.indentStyle.toLowerCase()); Debug.assert(protocolOptions.indentStyle !== undefined); } return protocolOptions; } function convertCompilerOptions(protocolOptions) { compilerOptionConverters.forEach((mappedValues, id) => { const propertyValue = protocolOptions[id]; if (isString(propertyValue)) { protocolOptions[id] = mappedValues.get(propertyValue.toLowerCase()); } }); if (isArray(protocolOptions.lib)) { protocolOptions.lib = protocolOptions.lib.map((libName) => libMap.get(libName) ?? libName); } return protocolOptions; } function convertWatchOptions(protocolOptions, currentDirectory) { let watchOptions; let errors; optionsForWatch.forEach((option) => { const propertyValue = protocolOptions[option.name]; if (propertyValue === undefined) return; const mappedValues = watchOptionsConverters.get(option.name); (watchOptions || (watchOptions = {}))[option.name] = mappedValues ? isString(propertyValue) ? mappedValues.get(propertyValue.toLowerCase()) : propertyValue : convertJsonOption(option, propertyValue, currentDirectory || "", errors || (errors = [])); }); return watchOptions && { watchOptions, errors }; } function convertTypeAcquisition(protocolOptions) { let result; typeAcquisitionDeclarations.forEach((option) => { const propertyValue = protocolOptions[option.name]; if (propertyValue === undefined) return; (result || (result = {}))[option.name] = propertyValue; }); return result; } function tryConvertScriptKindName(scriptKindName) { return isString(scriptKindName) ? convertScriptKindName(scriptKindName) : scriptKindName; } function convertScriptKindName(scriptKindName) { switch (scriptKindName) { case "JS": return 1; case "JSX": return 2; case "TS": return 3; case "TSX": return 4; default: return 0; } } function convertUserPreferences(preferences) { const { lazyConfiguredProjectsFromExternalProject: _, ...userPreferences } = preferences; return userPreferences; } var fileNamePropertyReader = { getFileName: (x) => x, getScriptKind: (fileName, extraFileExtensions) => { let result; if (extraFileExtensions) { const fileExtension = getAnyExtensionFromPath(fileName); if (fileExtension) { some(extraFileExtensions, (info) => { if (info.extension === fileExtension) { result = info.scriptKind; return true; } return false; }); } } return result; }, hasMixedContent: (fileName, extraFileExtensions) => some(extraFileExtensions, (ext) => ext.isMixedContent && fileExtensionIs(fileName, ext.extension)) }; var externalFilePropertyReader = { getFileName: (x) => x.fileName, getScriptKind: (x) => tryConvertScriptKindName(x.scriptKind), hasMixedContent: (x) => !!x.hasMixedContent }; function findProjectByName(projectName, projects) { for (const proj of projects) { if (proj.getProjectName() === projectName) { return proj; } } } var nullTypingsInstaller = { isKnownTypesPackageName: returnFalse, installPackage: notImplemented, enqueueInstallTypingsRequest: noop, attach: noop, onProjectClosed: noop, globalTypingsCacheLocation: undefined }; var noopConfigFileWatcher = { close: noop }; function getConfigFileNameFromCache(info, cache) { if (!cache) return; const configFileForOpenFile = cache.get(info.path); if (configFileForOpenFile === undefined) return; if (!isAncestorConfigFileInfo(info)) { return isString(configFileForOpenFile) || !configFileForOpenFile ? configFileForOpenFile : configFileForOpenFile.get(false); } else { return configFileForOpenFile && !isString(configFileForOpenFile) ? configFileForOpenFile.get(info.fileName) : undefined; } } function isOpenScriptInfo(infoOrFileNameOrConfig) { return !!infoOrFileNameOrConfig.containingProjects; } function isAncestorConfigFileInfo(infoOrFileNameOrConfig) { return !!infoOrFileNameOrConfig.configFileInfo; } var ConfiguredProjectLoadKind = /* @__PURE__ */ ((ConfiguredProjectLoadKind2) => { ConfiguredProjectLoadKind2[ConfiguredProjectLoadKind2["FindOptimized"] = 0] = "FindOptimized"; ConfiguredProjectLoadKind2[ConfiguredProjectLoadKind2["Find"] = 1] = "Find"; ConfiguredProjectLoadKind2[ConfiguredProjectLoadKind2["CreateReplayOptimized"] = 2] = "CreateReplayOptimized"; ConfiguredProjectLoadKind2[ConfiguredProjectLoadKind2["CreateReplay"] = 3] = "CreateReplay"; ConfiguredProjectLoadKind2[ConfiguredProjectLoadKind2["CreateOptimized"] = 4] = "CreateOptimized"; ConfiguredProjectLoadKind2[ConfiguredProjectLoadKind2["Create"] = 5] = "Create"; ConfiguredProjectLoadKind2[ConfiguredProjectLoadKind2["ReloadOptimized"] = 6] = "ReloadOptimized"; ConfiguredProjectLoadKind2[ConfiguredProjectLoadKind2["Reload"] = 7] = "Reload"; return ConfiguredProjectLoadKind2; })(ConfiguredProjectLoadKind || {}); function toConfiguredProjectLoadOptimized(kind) { return kind - 1; } function forEachAncestorProjectLoad(info, project, cb, kind, reason, allowDeferredClosed, reloadedProjects, searchOnlyPotentialSolution, delayReloadedConfiguredProjects) { var _a; while (true) { if (project.parsedCommandLine && (searchOnlyPotentialSolution && !project.parsedCommandLine.options.composite || project.parsedCommandLine.options.disableSolutionSearching)) return; const configFileName = project.projectService.getConfigFileNameForFile({ fileName: project.getConfigFilePath(), path: info.path, configFileInfo: true, isForDefaultProject: !searchOnlyPotentialSolution }, kind <= 3); if (!configFileName) return; const ancestor = project.projectService.findCreateOrReloadConfiguredProject(configFileName, kind, reason, allowDeferredClosed, !searchOnlyPotentialSolution ? info.fileName : undefined, reloadedProjects, searchOnlyPotentialSolution, delayReloadedConfiguredProjects); if (!ancestor) return; if (!ancestor.project.parsedCommandLine && ((_a = project.parsedCommandLine) == null ? undefined : _a.options.composite)) { ancestor.project.setPotentialProjectReference(project.canonicalConfigFilePath); } const result = cb(ancestor); if (result) return result; project = ancestor.project; } } function forEachResolvedProjectReferenceProjectLoad(project, parentConfig, cb, kind, reason, allowDeferredClosed, reloadedProjects, seenResolvedRefs) { const loadKind = parentConfig.options.disableReferencedProjectLoad ? 0 : kind; let children; return forEach(parentConfig.projectReferences, (ref) => { var _a; const childConfigName = toNormalizedPath(resolveProjectReferencePath(ref)); const childCanonicalConfigPath = asNormalizedPath(project.projectService.toCanonicalFileName(childConfigName)); const seenValue = seenResolvedRefs == null ? undefined : seenResolvedRefs.get(childCanonicalConfigPath); if (seenValue !== undefined && seenValue >= loadKind) return; const configFileExistenceInfo = project.projectService.configFileExistenceInfoCache.get(childCanonicalConfigPath); let childConfig = loadKind === 0 ? (configFileExistenceInfo == null ? undefined : configFileExistenceInfo.exists) || ((_a = project.resolvedChildConfigs) == null ? undefined : _a.has(childCanonicalConfigPath)) ? configFileExistenceInfo.config.parsedCommandLine : undefined : project.getParsedCommandLine(childConfigName); if (childConfig && loadKind !== kind && loadKind > 2) { childConfig = project.getParsedCommandLine(childConfigName); } if (!childConfig) return; const childProject = project.projectService.findConfiguredProjectByProjectName(childConfigName, allowDeferredClosed); if (loadKind === 2 && !configFileExistenceInfo && !childProject) return; switch (loadKind) { case 6: if (childProject) childProject.projectService.reloadConfiguredProjectOptimized(childProject, reason, reloadedProjects); case 4: (project.resolvedChildConfigs ?? (project.resolvedChildConfigs = /* @__PURE__ */ new Set)).add(childCanonicalConfigPath); case 2: case 0: if (childProject || loadKind !== 0) { const result = cb(configFileExistenceInfo ?? project.projectService.configFileExistenceInfoCache.get(childCanonicalConfigPath), childProject, childConfigName, reason, project, childCanonicalConfigPath); if (result) return result; } break; default: Debug.assertNever(loadKind); } (seenResolvedRefs ?? (seenResolvedRefs = /* @__PURE__ */ new Map)).set(childCanonicalConfigPath, loadKind); (children ?? (children = [])).push(childConfig); }) || forEach(children, (childConfig) => childConfig.projectReferences && forEachResolvedProjectReferenceProjectLoad(project, childConfig, cb, loadKind, reason, allowDeferredClosed, reloadedProjects, seenResolvedRefs)); } function updateProjectFoundUsingFind(project, kind, triggerFile, reason, reloadedProjects) { let sentConfigFileDiag = false; let configFileExistenceInfo; switch (kind) { case 2: case 3: if (useConfigFileExistenceInfoForOptimizedLoading(project)) { configFileExistenceInfo = project.projectService.configFileExistenceInfoCache.get(project.canonicalConfigFilePath); } break; case 4: configFileExistenceInfo = configFileExistenceInfoForOptimizedLoading(project); if (configFileExistenceInfo) break; case 5: sentConfigFileDiag = updateConfiguredProject(project, triggerFile); break; case 6: project.projectService.reloadConfiguredProjectOptimized(project, reason, reloadedProjects); configFileExistenceInfo = configFileExistenceInfoForOptimizedLoading(project); if (configFileExistenceInfo) break; case 7: sentConfigFileDiag = project.projectService.reloadConfiguredProjectClearingSemanticCache(project, reason, reloadedProjects); break; case 0: case 1: break; default: Debug.assertNever(kind); } return { project, sentConfigFileDiag, configFileExistenceInfo, reason }; } function forEachPotentialProjectReference(project, cb) { return project.initialLoadPending ? (project.potentialProjectReferences && forEachKey(project.potentialProjectReferences, cb)) ?? (project.resolvedChildConfigs && forEachKey(project.resolvedChildConfigs, cb)) : undefined; } function forEachAnyProjectReferenceKind(project, cb, cbProjectRef, cbPotentialProjectRef) { return project.getCurrentProgram() ? project.forEachResolvedProjectReference(cb) : project.initialLoadPending ? forEachPotentialProjectReference(project, cbPotentialProjectRef) : forEach(project.getProjectReferences(), cbProjectRef); } function callbackRefProject(project, cb, refPath) { const refProject = refPath && project.projectService.configuredProjects.get(refPath); return refProject && cb(refProject); } function forEachReferencedProject(project, cb) { return forEachAnyProjectReferenceKind(project, (resolvedRef) => callbackRefProject(project, cb, resolvedRef.sourceFile.path), (projectRef) => callbackRefProject(project, cb, project.toPath(resolveProjectReferencePath(projectRef))), (potentialProjectRef) => callbackRefProject(project, cb, potentialProjectRef)); } function getDetailWatchInfo(watchType, project) { return `${isString(project) ? `Config: ${project} ` : project ? `Project: ${project.getProjectName()} ` : ""}WatchType: ${watchType}`; } function isScriptInfoWatchedFromNodeModules(info) { return !info.isScriptOpen() && info.mTime !== undefined; } function updateProjectIfDirty(project) { project.invalidateResolutionsOfFailedLookupLocations(); return project.dirty && !project.updateGraph(); } function updateWithTriggerFile(project, triggerFile, isReload) { if (!isReload) { project.invalidateResolutionsOfFailedLookupLocations(); if (!project.dirty) return false; } project.triggerFileForConfigFileDiag = triggerFile; const updateLevel = project.pendingUpdateLevel; project.updateGraph(); if (!project.triggerFileForConfigFileDiag && !isReload) return updateLevel === 2; const sent = project.projectService.sendConfigFileDiagEvent(project, triggerFile, isReload); project.triggerFileForConfigFileDiag = undefined; return sent; } function updateConfiguredProject(project, triggerFile) { if (triggerFile) { if (updateWithTriggerFile(project, triggerFile, false)) return true; } else { updateProjectIfDirty(project); } return false; } function configFileExistenceInfoForOptimizedLoading(project) { const configFileName = toNormalizedPath(project.getConfigFilePath()); const configFileExistenceInfo = project.projectService.ensureParsedConfigUptoDate(configFileName, project.canonicalConfigFilePath, project.projectService.configFileExistenceInfoCache.get(project.canonicalConfigFilePath), project); const parsedCommandLine = configFileExistenceInfo.config.parsedCommandLine; project.parsedCommandLine = parsedCommandLine; project.resolvedChildConfigs = undefined; project.updateReferences(parsedCommandLine.projectReferences); if (useConfigFileExistenceInfoForOptimizedLoading(project)) return configFileExistenceInfo; } function useConfigFileExistenceInfoForOptimizedLoading(project) { return !!project.parsedCommandLine && (!!project.parsedCommandLine.options.composite || !!isSolutionConfig(project.parsedCommandLine)); } function configFileExistenceInfoForOptimizedReplay(project) { return useConfigFileExistenceInfoForOptimizedLoading(project) ? project.projectService.configFileExistenceInfoCache.get(project.canonicalConfigFilePath) : undefined; } function fileOpenReason(info) { return `Creating possible configured project for ${info.fileName} to open`; } function reloadReason(reason) { return `User requested reload projects: ${reason}`; } function setProjectOptionsUsed(project) { if (isConfiguredProject(project)) { project.projectOptions = true; } } function createProjectNameFactoryWithCounter(nameFactory) { let nextId = 1; return () => nameFactory(nextId++); } function getHostWatcherMap() { return { idToCallbacks: /* @__PURE__ */ new Map, pathToId: /* @__PURE__ */ new Map }; } function getCanUseWatchEvents(service, canUseWatchEvents) { return !!canUseWatchEvents && !!service.eventHandler && !!service.session; } function createWatchFactoryHostUsingWatchEvents(service, canUseWatchEvents) { if (!getCanUseWatchEvents(service, canUseWatchEvents)) return; const watchedFiles = getHostWatcherMap(); const watchedDirectories = getHostWatcherMap(); const watchedDirectoriesRecursive = getHostWatcherMap(); let ids = 1; service.session.addProtocolHandler("watchChange", (req) => { onWatchChange(req.arguments); return { responseRequired: false }; }); return { watchFile: watchFile2, watchDirectory, getCurrentDirectory: () => service.host.getCurrentDirectory(), useCaseSensitiveFileNames: service.host.useCaseSensitiveFileNames }; function watchFile2(path, callback) { return getOrCreateFileWatcher(watchedFiles, path, callback, (id) => ({ eventName: CreateFileWatcherEvent, data: { id, path } })); } function watchDirectory(path, callback, recursive) { return getOrCreateFileWatcher(recursive ? watchedDirectoriesRecursive : watchedDirectories, path, callback, (id) => ({ eventName: CreateDirectoryWatcherEvent, data: { id, path, recursive: !!recursive, ignoreUpdate: !path.endsWith("/node_modules") ? true : undefined } })); } function getOrCreateFileWatcher({ pathToId, idToCallbacks }, path, callback, event) { const key = service.toPath(path); let id = pathToId.get(key); if (!id) pathToId.set(key, id = ids++); let callbacks = idToCallbacks.get(id); if (!callbacks) { idToCallbacks.set(id, callbacks = /* @__PURE__ */ new Set); service.eventHandler(event(id)); } callbacks.add(callback); return { close() { const callbacks2 = idToCallbacks.get(id); if (!(callbacks2 == null ? undefined : callbacks2.delete(callback))) return; if (callbacks2.size) return; idToCallbacks.delete(id); pathToId.delete(key); service.eventHandler({ eventName: CloseFileWatcherEvent, data: { id } }); } }; } function onWatchChange(args) { if (isArray(args)) args.forEach(onWatchChangeRequestArgs); else onWatchChangeRequestArgs(args); } function onWatchChangeRequestArgs({ id, created, deleted, updated }) { onWatchEventType(id, created, 0); onWatchEventType(id, deleted, 2); onWatchEventType(id, updated, 1); } function onWatchEventType(id, paths, eventKind) { if (!(paths == null ? undefined : paths.length)) return; forEachCallback(watchedFiles, id, paths, (callback, eventPath) => callback(eventPath, eventKind)); forEachCallback(watchedDirectories, id, paths, (callback, eventPath) => callback(eventPath)); forEachCallback(watchedDirectoriesRecursive, id, paths, (callback, eventPath) => callback(eventPath)); } function forEachCallback(hostWatcherMap, id, eventPaths, cb) { var _a; (_a = hostWatcherMap.idToCallbacks.get(id)) == null || _a.forEach((callback) => { eventPaths.forEach((eventPath) => cb(callback, normalizeSlashes(eventPath))); }); } } var _ProjectService = class _ProjectService2 { constructor(opts) { this.filenameToScriptInfo = /* @__PURE__ */ new Map; this.nodeModulesWatchers = /* @__PURE__ */ new Map; this.filenameToScriptInfoVersion = /* @__PURE__ */ new Map; this.allJsFilesForOpenFileTelemetry = /* @__PURE__ */ new Set; this.externalProjectToConfiguredProjectMap = /* @__PURE__ */ new Map; this.externalProjects = []; this.inferredProjects = []; this.configuredProjects = /* @__PURE__ */ new Map; this.newInferredProjectName = createProjectNameFactoryWithCounter(makeInferredProjectName); this.newAutoImportProviderProjectName = createProjectNameFactoryWithCounter(makeAutoImportProviderProjectName); this.newAuxiliaryProjectName = createProjectNameFactoryWithCounter(makeAuxiliaryProjectName); this.openFiles = /* @__PURE__ */ new Map; this.configFileForOpenFiles = /* @__PURE__ */ new Map; this.rootOfInferredProjects = /* @__PURE__ */ new Set; this.openFilesWithNonRootedDiskPath = /* @__PURE__ */ new Map; this.compilerOptionsForInferredProjectsPerProjectRoot = /* @__PURE__ */ new Map; this.watchOptionsForInferredProjectsPerProjectRoot = /* @__PURE__ */ new Map; this.typeAcquisitionForInferredProjectsPerProjectRoot = /* @__PURE__ */ new Map; this.projectToSizeMap = /* @__PURE__ */ new Map; this.configFileExistenceInfoCache = /* @__PURE__ */ new Map; this.safelist = defaultTypeSafeList; this.legacySafelist = /* @__PURE__ */ new Map; this.pendingProjectUpdates = /* @__PURE__ */ new Map; this.pendingEnsureProjectForOpenFiles = false; this.seenProjects = /* @__PURE__ */ new Map; this.sharedExtendedConfigFileWatchers = /* @__PURE__ */ new Map; this.extendedConfigCache = /* @__PURE__ */ new Map; this.baseline = noop; this.verifyDocumentRegistry = noop; this.verifyProgram = noop; this.onProjectCreation = noop; var _a; this.host = opts.host; this.logger = opts.logger; this.cancellationToken = opts.cancellationToken; this.useSingleInferredProject = opts.useSingleInferredProject; this.useInferredProjectPerProjectRoot = opts.useInferredProjectPerProjectRoot; this.typingsInstaller = opts.typingsInstaller || nullTypingsInstaller; this.throttleWaitMilliseconds = opts.throttleWaitMilliseconds; this.eventHandler = opts.eventHandler; this.suppressDiagnosticEvents = opts.suppressDiagnosticEvents; this.globalPlugins = opts.globalPlugins || emptyArray2; this.pluginProbeLocations = opts.pluginProbeLocations || emptyArray2; this.allowLocalPluginLoads = !!opts.allowLocalPluginLoads; this.typesMapLocation = opts.typesMapLocation === undefined ? combinePaths(getDirectoryPath(this.getExecutingFilePath()), "typesMap.json") : opts.typesMapLocation; this.session = opts.session; this.jsDocParsingMode = opts.jsDocParsingMode; if (opts.serverMode !== undefined) { this.serverMode = opts.serverMode; } else { this.serverMode = 0; } if (this.host.realpath) { this.realpathToScriptInfos = createMultiMap(); } this.currentDirectory = toNormalizedPath(this.host.getCurrentDirectory()); this.toCanonicalFileName = createGetCanonicalFileName(this.host.useCaseSensitiveFileNames); this.globalCacheLocationDirectoryPath = this.typingsInstaller.globalTypingsCacheLocation ? ensureTrailingDirectorySeparator(this.toPath(this.typingsInstaller.globalTypingsCacheLocation)) : undefined; this.throttledOperations = new ThrottledOperations(this.host, this.logger); this.logger.info(`currentDirectory:: ${this.host.getCurrentDirectory()} useCaseSensitiveFileNames:: ${this.host.useCaseSensitiveFileNames}`); this.logger.info(`libs Location:: ${getDirectoryPath(this.host.getExecutingFilePath())}`); this.logger.info(`globalTypingsCacheLocation:: ${this.typingsInstaller.globalTypingsCacheLocation}`); if (this.typesMapLocation) { this.loadTypesMap(); } else { this.logger.info("No types map provided; using the default"); } this.typingsInstaller.attach(this); this.hostConfiguration = { formatCodeOptions: getDefaultFormatCodeSettings(this.host.newLine), preferences: emptyOptions, hostInfo: "Unknown host", extraFileExtensions: [] }; this.documentRegistry = createDocumentRegistryInternal(this.host.useCaseSensitiveFileNames, this.currentDirectory, this.jsDocParsingMode, this); const watchLogLevel = this.logger.hasLevel(3) ? 2 : this.logger.loggingEnabled() ? 1 : 0; const log = watchLogLevel !== 0 ? (s) => this.logger.info(s) : noop; this.packageJsonCache = createPackageJsonCache(this); this.watchFactory = this.serverMode !== 0 ? { watchFile: returnNoopFileWatcher, watchDirectory: returnNoopFileWatcher } : getWatchFactory(createWatchFactoryHostUsingWatchEvents(this, opts.canUseWatchEvents) || this.host, watchLogLevel, log, getDetailWatchInfo); this.canUseWatchEvents = getCanUseWatchEvents(this, opts.canUseWatchEvents); (_a = opts.incrementalVerifier) == null || _a.call(opts, this); } toPath(fileName) { return toPath(fileName, this.currentDirectory, this.toCanonicalFileName); } getExecutingFilePath() { return this.getNormalizedAbsolutePath(this.host.getExecutingFilePath()); } getNormalizedAbsolutePath(fileName) { return getNormalizedAbsolutePath(fileName, this.host.getCurrentDirectory()); } setDocument(key, path, sourceFile) { const info = Debug.checkDefined(this.getScriptInfoForPath(path)); info.cacheSourceFile = { key, sourceFile }; } getDocument(key, path) { const info = this.getScriptInfoForPath(path); return info && info.cacheSourceFile && info.cacheSourceFile.key === key ? info.cacheSourceFile.sourceFile : undefined; } ensureInferredProjectsUpToDate_TestOnly() { this.ensureProjectStructuresUptoDate(); } getCompilerOptionsForInferredProjects() { return this.compilerOptionsForInferredProjects; } onUpdateLanguageServiceStateForProject(project, languageServiceEnabled) { if (!this.eventHandler) { return; } const event = { eventName: ProjectLanguageServiceStateEvent, data: { project, languageServiceEnabled } }; this.eventHandler(event); } loadTypesMap() { try { const fileContent = this.host.readFile(this.typesMapLocation); if (fileContent === undefined) { this.logger.info(`Provided types map file "${this.typesMapLocation}" doesn't exist`); return; } const raw = JSON.parse(fileContent); for (const k of Object.keys(raw.typesMap)) { raw.typesMap[k].match = new RegExp(raw.typesMap[k].match, "i"); } this.safelist = raw.typesMap; for (const key in raw.simpleMap) { if (hasProperty(raw.simpleMap, key)) { this.legacySafelist.set(key, raw.simpleMap[key].toLowerCase()); } } } catch (e) { this.logger.info(`Error loading types map: ${e}`); this.safelist = defaultTypeSafeList; this.legacySafelist.clear(); } } updateTypingsForProject(response) { const project = this.findProject(response.projectName); if (!project) { return; } switch (response.kind) { case ActionSet: project.updateTypingFiles(response.compilerOptions, response.typeAcquisition, response.unresolvedImports, response.typings); return; case ActionInvalidate: project.enqueueInstallTypingsForProject(true); return; } } watchTypingLocations(response) { var _a; (_a = this.findProject(response.projectName)) == null || _a.watchTypingLocations(response.files); } delayEnsureProjectForOpenFiles() { if (!this.openFiles.size) return; this.pendingEnsureProjectForOpenFiles = true; this.throttledOperations.schedule(ensureProjectForOpenFileSchedule, 2500, () => { if (this.pendingProjectUpdates.size !== 0) { this.delayEnsureProjectForOpenFiles(); } else { if (this.pendingEnsureProjectForOpenFiles) { this.ensureProjectForOpenFiles(); this.sendProjectsUpdatedInBackgroundEvent(); } } }); } delayUpdateProjectGraph(project) { if (isProjectDeferredClose(project)) return; project.markAsDirty(); if (isBackgroundProject(project)) return; const projectName = project.getProjectName(); this.pendingProjectUpdates.set(projectName, project); this.throttledOperations.schedule(projectName, 250, () => { if (this.pendingProjectUpdates.delete(projectName)) { updateProjectIfDirty(project); } }); } hasPendingProjectUpdate(project) { return this.pendingProjectUpdates.has(project.getProjectName()); } sendProjectsUpdatedInBackgroundEvent() { if (!this.eventHandler) { return; } const event = { eventName: ProjectsUpdatedInBackgroundEvent, data: { openFiles: arrayFrom(this.openFiles.keys(), (path) => this.getScriptInfoForPath(path).fileName) } }; this.eventHandler(event); } sendLargeFileReferencedEvent(file, fileSize) { if (!this.eventHandler) { return; } const event = { eventName: LargeFileReferencedEvent, data: { file, fileSize, maxFileSize } }; this.eventHandler(event); } sendProjectLoadingStartEvent(project, reason) { if (!this.eventHandler) { return; } project.sendLoadingProjectFinish = true; const event = { eventName: ProjectLoadingStartEvent, data: { project, reason } }; this.eventHandler(event); } sendProjectLoadingFinishEvent(project) { if (!this.eventHandler || !project.sendLoadingProjectFinish) { return; } project.sendLoadingProjectFinish = false; const event = { eventName: ProjectLoadingFinishEvent, data: { project } }; this.eventHandler(event); } sendPerformanceEvent(kind, durationMs) { if (this.performanceEventHandler) { this.performanceEventHandler({ kind, durationMs }); } } delayUpdateProjectGraphAndEnsureProjectStructureForOpenFiles(project) { this.delayUpdateProjectGraph(project); this.delayEnsureProjectForOpenFiles(); } delayUpdateProjectGraphs(projects, clearSourceMapperCache) { if (projects.length) { for (const project of projects) { if (clearSourceMapperCache) project.clearSourceMapperCache(); this.delayUpdateProjectGraph(project); } this.delayEnsureProjectForOpenFiles(); } } setCompilerOptionsForInferredProjects(projectCompilerOptions, projectRootPath) { Debug.assert(projectRootPath === undefined || this.useInferredProjectPerProjectRoot, "Setting compiler options per project root path is only supported when useInferredProjectPerProjectRoot is enabled"); const compilerOptions = convertCompilerOptions(projectCompilerOptions); const watchOptions = convertWatchOptions(projectCompilerOptions, projectRootPath); const typeAcquisition = convertTypeAcquisition(projectCompilerOptions); compilerOptions.allowNonTsExtensions = true; const canonicalProjectRootPath = projectRootPath && this.toCanonicalFileName(projectRootPath); if (canonicalProjectRootPath) { this.compilerOptionsForInferredProjectsPerProjectRoot.set(canonicalProjectRootPath, compilerOptions); this.watchOptionsForInferredProjectsPerProjectRoot.set(canonicalProjectRootPath, watchOptions || false); this.typeAcquisitionForInferredProjectsPerProjectRoot.set(canonicalProjectRootPath, typeAcquisition); } else { this.compilerOptionsForInferredProjects = compilerOptions; this.watchOptionsForInferredProjects = watchOptions; this.typeAcquisitionForInferredProjects = typeAcquisition; } for (const project of this.inferredProjects) { if (canonicalProjectRootPath ? project.projectRootPath === canonicalProjectRootPath : !project.projectRootPath || !this.compilerOptionsForInferredProjectsPerProjectRoot.has(project.projectRootPath)) { project.setCompilerOptions(compilerOptions); project.setTypeAcquisition(typeAcquisition); project.setWatchOptions(watchOptions == null ? undefined : watchOptions.watchOptions); project.setProjectErrors(watchOptions == null ? undefined : watchOptions.errors); project.compileOnSaveEnabled = compilerOptions.compileOnSave; project.markAsDirty(); this.delayUpdateProjectGraph(project); } } this.delayEnsureProjectForOpenFiles(); } findProject(projectName) { if (projectName === undefined) { return; } if (isInferredProjectName(projectName)) { return findProjectByName(projectName, this.inferredProjects); } return this.findExternalProjectByProjectName(projectName) || this.findConfiguredProjectByProjectName(toNormalizedPath(projectName)); } forEachProject(cb) { this.externalProjects.forEach(cb); this.configuredProjects.forEach(cb); this.inferredProjects.forEach(cb); } forEachEnabledProject(cb) { this.forEachProject((project) => { if (!project.isOrphan() && project.languageServiceEnabled) { cb(project); } }); } getDefaultProjectForFile(fileName, ensureProject) { return ensureProject ? this.ensureDefaultProjectForFile(fileName) : this.tryGetDefaultProjectForFile(fileName); } tryGetDefaultProjectForFile(fileNameOrScriptInfo) { const scriptInfo = isString(fileNameOrScriptInfo) ? this.getScriptInfoForNormalizedPath(fileNameOrScriptInfo) : fileNameOrScriptInfo; return scriptInfo && !scriptInfo.isOrphan() ? scriptInfo.getDefaultProject() : undefined; } tryGetDefaultProjectForEnsuringConfiguredProjectForFile(fileNameOrScriptInfo) { var _a; const scriptInfo = isString(fileNameOrScriptInfo) ? this.getScriptInfoForNormalizedPath(fileNameOrScriptInfo) : fileNameOrScriptInfo; if (!scriptInfo) return; if ((_a = this.pendingOpenFileProjectUpdates) == null ? undefined : _a.delete(scriptInfo.path)) { this.tryFindDefaultConfiguredProjectAndLoadAncestorsForOpenScriptInfo(scriptInfo, 5); if (scriptInfo.isOrphan()) { this.assignOrphanScriptInfoToInferredProject(scriptInfo, this.openFiles.get(scriptInfo.path)); } } return this.tryGetDefaultProjectForFile(scriptInfo); } ensureDefaultProjectForFile(fileNameOrScriptInfo) { return this.tryGetDefaultProjectForEnsuringConfiguredProjectForFile(fileNameOrScriptInfo) || this.doEnsureDefaultProjectForFile(fileNameOrScriptInfo); } doEnsureDefaultProjectForFile(fileNameOrScriptInfo) { this.ensureProjectStructuresUptoDate(); const scriptInfo = isString(fileNameOrScriptInfo) ? this.getScriptInfoForNormalizedPath(fileNameOrScriptInfo) : fileNameOrScriptInfo; return scriptInfo ? scriptInfo.getDefaultProject() : (this.logErrorForScriptInfoNotFound(isString(fileNameOrScriptInfo) ? fileNameOrScriptInfo : fileNameOrScriptInfo.fileName), Errors.ThrowNoProject()); } getScriptInfoEnsuringProjectsUptoDate(uncheckedFileName) { this.ensureProjectStructuresUptoDate(); return this.getScriptInfo(uncheckedFileName); } ensureProjectStructuresUptoDate() { let hasChanges = this.pendingEnsureProjectForOpenFiles; this.pendingProjectUpdates.clear(); const updateGraph = (project) => { hasChanges = updateProjectIfDirty(project) || hasChanges; }; this.externalProjects.forEach(updateGraph); this.configuredProjects.forEach(updateGraph); this.inferredProjects.forEach(updateGraph); if (hasChanges) { this.ensureProjectForOpenFiles(); } } getFormatCodeOptions(file) { const info = this.getScriptInfoForNormalizedPath(file); return info && info.getFormatCodeSettings() || this.hostConfiguration.formatCodeOptions; } getPreferences(file) { const info = this.getScriptInfoForNormalizedPath(file); return { ...this.hostConfiguration.preferences, ...info && info.getPreferences() }; } getHostFormatCodeOptions() { return this.hostConfiguration.formatCodeOptions; } getHostPreferences() { return this.hostConfiguration.preferences; } onSourceFileChanged(info, eventKind) { Debug.assert(!info.isScriptOpen()); if (eventKind === 2) { this.handleDeletedFile(info, true); } else { if (info.deferredDelete) info.deferredDelete = undefined; info.delayReloadNonMixedContentFile(); this.delayUpdateProjectGraphs(info.containingProjects, false); this.handleSourceMapProjects(info); } } handleSourceMapProjects(info) { if (info.sourceMapFilePath) { if (isString(info.sourceMapFilePath)) { const sourceMapFileInfo = this.getScriptInfoForPath(info.sourceMapFilePath); this.delayUpdateSourceInfoProjects(sourceMapFileInfo == null ? undefined : sourceMapFileInfo.sourceInfos); } else { this.delayUpdateSourceInfoProjects(info.sourceMapFilePath.sourceInfos); } } this.delayUpdateSourceInfoProjects(info.sourceInfos); if (info.declarationInfoPath) { this.delayUpdateProjectsOfScriptInfoPath(info.declarationInfoPath); } } delayUpdateSourceInfoProjects(sourceInfos) { if (sourceInfos) { sourceInfos.forEach((_value, path) => this.delayUpdateProjectsOfScriptInfoPath(path)); } } delayUpdateProjectsOfScriptInfoPath(path) { const info = this.getScriptInfoForPath(path); if (info) { this.delayUpdateProjectGraphs(info.containingProjects, true); } } handleDeletedFile(info, deferredDelete) { Debug.assert(!info.isScriptOpen()); this.delayUpdateProjectGraphs(info.containingProjects, false); this.handleSourceMapProjects(info); info.detachAllProjects(); if (deferredDelete) { info.delayReloadNonMixedContentFile(); info.deferredDelete = true; } else { this.deleteScriptInfo(info); } } watchWildcardDirectory(directory, flags, configFileName, config) { let watcher = this.watchFactory.watchDirectory(directory, (fileOrDirectory) => this.onWildCardDirectoryWatcherInvoke(directory, configFileName, config, result, fileOrDirectory), flags, this.getWatchOptionsFromProjectWatchOptions(config.parsedCommandLine.watchOptions, getDirectoryPath(configFileName)), WatchType.WildcardDirectory, configFileName); const result = { packageJsonWatches: undefined, close() { var _a; if (watcher) { watcher.close(); watcher = undefined; (_a = result.packageJsonWatches) == null || _a.forEach((watcher2) => { watcher2.projects.delete(result); watcher2.close(); }); result.packageJsonWatches = undefined; } } }; return result; } onWildCardDirectoryWatcherInvoke(directory, configFileName, config, wildCardWatcher, fileOrDirectory) { const fileOrDirectoryPath = this.toPath(fileOrDirectory); const fsResult = config.cachedDirectoryStructureHost.addOrDeleteFileOrDirectory(fileOrDirectory, fileOrDirectoryPath); if (getBaseFileName(fileOrDirectoryPath) === "package.json" && !isInsideNodeModules(fileOrDirectoryPath) && (fsResult && fsResult.fileExists || !fsResult && this.host.fileExists(fileOrDirectory))) { const file = this.getNormalizedAbsolutePath(fileOrDirectory); this.logger.info(`Config: ${configFileName} Detected new package.json: ${file}`); this.packageJsonCache.addOrUpdate(file, fileOrDirectoryPath); this.watchPackageJsonFile(file, fileOrDirectoryPath, wildCardWatcher); } if (!(fsResult == null ? undefined : fsResult.fileExists)) { this.sendSourceFileChange(fileOrDirectoryPath); } const configuredProjectForConfig = this.findConfiguredProjectByProjectName(configFileName); if (isIgnoredFileFromWildCardWatching({ watchedDirPath: this.toPath(directory), fileOrDirectory, fileOrDirectoryPath, configFileName, extraFileExtensions: this.hostConfiguration.extraFileExtensions, currentDirectory: this.currentDirectory, options: config.parsedCommandLine.options, program: (configuredProjectForConfig == null ? undefined : configuredProjectForConfig.getCurrentProgram()) || config.parsedCommandLine.fileNames, useCaseSensitiveFileNames: this.host.useCaseSensitiveFileNames, writeLog: (s) => this.logger.info(s), toPath: (s) => this.toPath(s), getScriptKind: configuredProjectForConfig ? (fileName) => configuredProjectForConfig.getScriptKind(fileName) : undefined })) return; if (config.updateLevel !== 2) config.updateLevel = 1; config.projects.forEach((watchWildcardDirectories, projectCanonicalPath) => { var _a; if (!watchWildcardDirectories) return; const project = this.getConfiguredProjectByCanonicalConfigFilePath(projectCanonicalPath); if (!project) return; if (configuredProjectForConfig !== project && this.getHostPreferences().includeCompletionsForModuleExports) { const path = this.toPath(configFileName); if (find((_a = project.getCurrentProgram()) == null ? undefined : _a.getResolvedProjectReferences(), (ref) => (ref == null ? undefined : ref.sourceFile.path) === path)) { project.markAutoImportProviderAsDirty(); } } const updateLevel = configuredProjectForConfig === project ? 1 : 0; if (project.pendingUpdateLevel > updateLevel) return; if (this.openFiles.has(fileOrDirectoryPath)) { const info = Debug.checkDefined(this.getScriptInfoForPath(fileOrDirectoryPath)); if (info.isAttached(project)) { const loadLevelToSet = Math.max(updateLevel, project.openFileWatchTriggered.get(fileOrDirectoryPath) || 0); project.openFileWatchTriggered.set(fileOrDirectoryPath, loadLevelToSet); } else { project.pendingUpdateLevel = updateLevel; this.delayUpdateProjectGraphAndEnsureProjectStructureForOpenFiles(project); } } else { project.pendingUpdateLevel = updateLevel; this.delayUpdateProjectGraphAndEnsureProjectStructureForOpenFiles(project); } }); } delayUpdateProjectsFromParsedConfigOnConfigFileChange(canonicalConfigFilePath, loadReason) { const configFileExistenceInfo = this.configFileExistenceInfoCache.get(canonicalConfigFilePath); if (!(configFileExistenceInfo == null ? undefined : configFileExistenceInfo.config)) return false; let scheduledAnyProjectUpdate = false; configFileExistenceInfo.config.updateLevel = 2; configFileExistenceInfo.config.cachedDirectoryStructureHost.clearCache(); configFileExistenceInfo.config.projects.forEach((_watchWildcardDirectories, projectCanonicalPath) => { var _a, _b, _c; const project = this.getConfiguredProjectByCanonicalConfigFilePath(projectCanonicalPath); if (!project) return; scheduledAnyProjectUpdate = true; if (projectCanonicalPath === canonicalConfigFilePath) { if (project.initialLoadPending) return; project.pendingUpdateLevel = 2; project.pendingUpdateReason = loadReason; this.delayUpdateProjectGraph(project); project.markAutoImportProviderAsDirty(); } else { if (project.initialLoadPending) { (_b = (_a = this.configFileExistenceInfoCache.get(projectCanonicalPath)) == null ? undefined : _a.openFilesImpactedByConfigFile) == null || _b.forEach((path2) => { var _a2; if (!((_a2 = this.pendingOpenFileProjectUpdates) == null ? undefined : _a2.has(path2))) { (this.pendingOpenFileProjectUpdates ?? (this.pendingOpenFileProjectUpdates = /* @__PURE__ */ new Map)).set(path2, this.configFileForOpenFiles.get(path2)); } }); return; } const path = this.toPath(canonicalConfigFilePath); project.resolutionCache.removeResolutionsFromProjectReferenceRedirects(path); this.delayUpdateProjectGraph(project); if (this.getHostPreferences().includeCompletionsForModuleExports && find((_c = project.getCurrentProgram()) == null ? undefined : _c.getResolvedProjectReferences(), (ref) => (ref == null ? undefined : ref.sourceFile.path) === path)) { project.markAutoImportProviderAsDirty(); } } }); return scheduledAnyProjectUpdate; } onConfigFileChanged(configFileName, canonicalConfigFilePath, eventKind) { const configFileExistenceInfo = this.configFileExistenceInfoCache.get(canonicalConfigFilePath); const project = this.getConfiguredProjectByCanonicalConfigFilePath(canonicalConfigFilePath); const wasDefferedClose = project == null ? undefined : project.deferredClose; if (eventKind === 2) { configFileExistenceInfo.exists = false; if (project) project.deferredClose = true; } else { configFileExistenceInfo.exists = true; if (wasDefferedClose) { project.deferredClose = undefined; project.markAsDirty(); } } this.delayUpdateProjectsFromParsedConfigOnConfigFileChange(canonicalConfigFilePath, "Change in config file detected"); this.openFiles.forEach((_projectRootPath, path) => { var _a, _b; const configFileForOpenFile = this.configFileForOpenFiles.get(path); if (!((_a = configFileExistenceInfo.openFilesImpactedByConfigFile) == null ? undefined : _a.has(path))) return; this.configFileForOpenFiles.delete(path); const info = this.getScriptInfoForPath(path); const newConfigFileNameForInfo = this.getConfigFileNameForFile(info, false); if (!newConfigFileNameForInfo) return; if (!((_b = this.pendingOpenFileProjectUpdates) == null ? undefined : _b.has(path))) { (this.pendingOpenFileProjectUpdates ?? (this.pendingOpenFileProjectUpdates = /* @__PURE__ */ new Map)).set(path, configFileForOpenFile); } }); this.delayEnsureProjectForOpenFiles(); } removeProject(project) { this.logger.info("`remove Project::"); project.print(true, true, false); project.close(); if (Debug.shouldAssert(1)) { this.filenameToScriptInfo.forEach((info) => Debug.assert(!info.isAttached(project), "Found script Info still attached to project", () => `${project.projectName}: ScriptInfos still attached: ${JSON.stringify(arrayFrom(mapDefinedIterator(this.filenameToScriptInfo.values(), (info2) => info2.isAttached(project) ? { fileName: info2.fileName, projects: info2.containingProjects.map((p) => p.projectName), hasMixedContent: info2.hasMixedContent } : undefined)), undefined, " ")}`)); } this.pendingProjectUpdates.delete(project.getProjectName()); switch (project.projectKind) { case 2: unorderedRemoveItem(this.externalProjects, project); this.projectToSizeMap.delete(project.getProjectName()); break; case 1: this.configuredProjects.delete(project.canonicalConfigFilePath); this.projectToSizeMap.delete(project.canonicalConfigFilePath); break; case 0: unorderedRemoveItem(this.inferredProjects, project); break; } } assignOrphanScriptInfoToInferredProject(info, projectRootPath) { Debug.assert(info.isOrphan()); const project = this.getOrCreateInferredProjectForProjectRootPathIfEnabled(info, projectRootPath) || this.getOrCreateSingleInferredProjectIfEnabled() || this.getOrCreateSingleInferredWithoutProjectRoot(info.isDynamic ? projectRootPath || this.currentDirectory : getDirectoryPath(isRootedDiskPath(info.fileName) ? info.fileName : getNormalizedAbsolutePath(info.fileName, projectRootPath ? this.getNormalizedAbsolutePath(projectRootPath) : this.currentDirectory))); project.addRoot(info); if (info.containingProjects[0] !== project) { orderedRemoveItem(info.containingProjects, project); info.containingProjects.unshift(project); } project.updateGraph(); if (!this.useSingleInferredProject && !project.projectRootPath) { for (const inferredProject of this.inferredProjects) { if (inferredProject === project || inferredProject.isOrphan()) { continue; } const roots = inferredProject.getRootScriptInfos(); Debug.assert(roots.length === 1 || !!inferredProject.projectRootPath); if (roots.length === 1 && forEach(roots[0].containingProjects, (p) => p !== roots[0].containingProjects[0] && !p.isOrphan())) { inferredProject.removeFile(roots[0], true, true); } } } return project; } assignOrphanScriptInfosToInferredProject() { this.openFiles.forEach((projectRootPath, path) => { const info = this.getScriptInfoForPath(path); if (info.isOrphan()) { this.assignOrphanScriptInfoToInferredProject(info, projectRootPath); } }); } closeOpenFile(info, skipAssignOrphanScriptInfosToInferredProject) { var _a; const fileExists = info.isDynamic ? false : this.host.fileExists(info.fileName); info.close(fileExists); this.stopWatchingConfigFilesForScriptInfo(info); const canonicalFileName = this.toCanonicalFileName(info.fileName); if (this.openFilesWithNonRootedDiskPath.get(canonicalFileName) === info) { this.openFilesWithNonRootedDiskPath.delete(canonicalFileName); } let ensureProjectsForOpenFiles = false; for (const p of info.containingProjects) { if (isConfiguredProject(p)) { if (info.hasMixedContent) { info.registerFileUpdate(); } const updateLevel = p.openFileWatchTriggered.get(info.path); if (updateLevel !== undefined) { p.openFileWatchTriggered.delete(info.path); if (p.pendingUpdateLevel < updateLevel) { p.pendingUpdateLevel = updateLevel; p.markFileAsDirty(info.path); } } } else if (isInferredProject(p) && p.isRoot(info)) { if (p.isProjectWithSingleRoot()) { ensureProjectsForOpenFiles = true; } p.removeFile(info, fileExists, true); } if (!p.languageServiceEnabled) { p.markAsDirty(); } } this.openFiles.delete(info.path); this.configFileForOpenFiles.delete(info.path); (_a = this.pendingOpenFileProjectUpdates) == null || _a.delete(info.path); Debug.assert(!this.rootOfInferredProjects.has(info)); if (!skipAssignOrphanScriptInfosToInferredProject && ensureProjectsForOpenFiles) { this.assignOrphanScriptInfosToInferredProject(); } if (fileExists) { this.watchClosedScriptInfo(info); } else { this.handleDeletedFile(info, false); } return ensureProjectsForOpenFiles; } deleteScriptInfo(info) { Debug.assert(!info.isScriptOpen()); this.filenameToScriptInfo.delete(info.path); this.filenameToScriptInfoVersion.set(info.path, info.textStorage.version); this.stopWatchingScriptInfo(info); const realpath = info.getRealpathIfDifferent(); if (realpath) { this.realpathToScriptInfos.remove(realpath, info); } info.closeSourceMapFileWatcher(); } configFileExists(configFileName, canonicalConfigFilePath, info) { const configFileExistenceInfo = this.configFileExistenceInfoCache.get(canonicalConfigFilePath); let openFilesImpactedByConfigFile; if (this.openFiles.has(info.path) && (!isAncestorConfigFileInfo(info) || info.isForDefaultProject)) { if (configFileExistenceInfo) (configFileExistenceInfo.openFilesImpactedByConfigFile ?? (configFileExistenceInfo.openFilesImpactedByConfigFile = /* @__PURE__ */ new Set)).add(info.path); else (openFilesImpactedByConfigFile = /* @__PURE__ */ new Set).add(info.path); } if (configFileExistenceInfo) return configFileExistenceInfo.exists; const exists = this.host.fileExists(configFileName); this.configFileExistenceInfoCache.set(canonicalConfigFilePath, { exists, openFilesImpactedByConfigFile }); return exists; } createConfigFileWatcherForParsedConfig(configFileName, canonicalConfigFilePath, forProject) { var _a, _b; const configFileExistenceInfo = this.configFileExistenceInfoCache.get(canonicalConfigFilePath); if (!configFileExistenceInfo.watcher || configFileExistenceInfo.watcher === noopConfigFileWatcher) { configFileExistenceInfo.watcher = this.watchFactory.watchFile(configFileName, (_fileName, eventKind) => this.onConfigFileChanged(configFileName, canonicalConfigFilePath, eventKind), 2000, this.getWatchOptionsFromProjectWatchOptions((_b = (_a = configFileExistenceInfo == null ? undefined : configFileExistenceInfo.config) == null ? undefined : _a.parsedCommandLine) == null ? undefined : _b.watchOptions, getDirectoryPath(configFileName)), WatchType.ConfigFile, forProject); } this.ensureConfigFileWatcherForProject(configFileExistenceInfo, forProject); } ensureConfigFileWatcherForProject(configFileExistenceInfo, forProject) { const projects = configFileExistenceInfo.config.projects; projects.set(forProject.canonicalConfigFilePath, projects.get(forProject.canonicalConfigFilePath) || false); } releaseParsedConfig(canonicalConfigFilePath, forProject) { var _a, _b, _c; const configFileExistenceInfo = this.configFileExistenceInfoCache.get(canonicalConfigFilePath); if (!((_a = configFileExistenceInfo.config) == null ? undefined : _a.projects.delete(forProject.canonicalConfigFilePath))) return; if ((_b = configFileExistenceInfo.config) == null ? undefined : _b.projects.size) return; configFileExistenceInfo.config = undefined; clearSharedExtendedConfigFileWatcher(canonicalConfigFilePath, this.sharedExtendedConfigFileWatchers); Debug.checkDefined(configFileExistenceInfo.watcher); if ((_c = configFileExistenceInfo.openFilesImpactedByConfigFile) == null ? undefined : _c.size) { if (configFileExistenceInfo.inferredProjectRoots) { if (!canWatchDirectoryOrFilePath(getDirectoryPath(canonicalConfigFilePath))) { configFileExistenceInfo.watcher.close(); configFileExistenceInfo.watcher = noopConfigFileWatcher; } } else { configFileExistenceInfo.watcher.close(); configFileExistenceInfo.watcher = undefined; } } else { configFileExistenceInfo.watcher.close(); this.configFileExistenceInfoCache.delete(canonicalConfigFilePath); } } stopWatchingConfigFilesForScriptInfo(info) { if (this.serverMode !== 0) return; const isRootOfInferredProject = this.rootOfInferredProjects.delete(info); const isOpen = info.isScriptOpen(); if (isOpen && !isRootOfInferredProject) return; this.forEachConfigFileLocation(info, (canonicalConfigFilePath) => { var _a, _b, _c; const configFileExistenceInfo = this.configFileExistenceInfoCache.get(canonicalConfigFilePath); if (!configFileExistenceInfo) return; if (isOpen) { if (!((_a = configFileExistenceInfo == null ? undefined : configFileExistenceInfo.openFilesImpactedByConfigFile) == null ? undefined : _a.has(info.path))) return; } else { if (!((_b = configFileExistenceInfo.openFilesImpactedByConfigFile) == null ? undefined : _b.delete(info.path))) return; } if (isRootOfInferredProject) { configFileExistenceInfo.inferredProjectRoots--; if (configFileExistenceInfo.watcher && !configFileExistenceInfo.config && !configFileExistenceInfo.inferredProjectRoots) { configFileExistenceInfo.watcher.close(); configFileExistenceInfo.watcher = undefined; } } if (!((_c = configFileExistenceInfo.openFilesImpactedByConfigFile) == null ? undefined : _c.size) && !configFileExistenceInfo.config) { Debug.assert(!configFileExistenceInfo.watcher); this.configFileExistenceInfoCache.delete(canonicalConfigFilePath); } }); } startWatchingConfigFilesForInferredProjectRoot(info) { if (this.serverMode !== 0) return; Debug.assert(info.isScriptOpen()); this.rootOfInferredProjects.add(info); this.forEachConfigFileLocation(info, (canonicalConfigFilePath, configFileName) => { let configFileExistenceInfo = this.configFileExistenceInfoCache.get(canonicalConfigFilePath); if (!configFileExistenceInfo) { configFileExistenceInfo = { exists: this.host.fileExists(configFileName), inferredProjectRoots: 1 }; this.configFileExistenceInfoCache.set(canonicalConfigFilePath, configFileExistenceInfo); } else { configFileExistenceInfo.inferredProjectRoots = (configFileExistenceInfo.inferredProjectRoots ?? 0) + 1; } (configFileExistenceInfo.openFilesImpactedByConfigFile ?? (configFileExistenceInfo.openFilesImpactedByConfigFile = /* @__PURE__ */ new Set)).add(info.path); configFileExistenceInfo.watcher || (configFileExistenceInfo.watcher = canWatchDirectoryOrFilePath(getDirectoryPath(canonicalConfigFilePath)) ? this.watchFactory.watchFile(configFileName, (_filename, eventKind) => this.onConfigFileChanged(configFileName, canonicalConfigFilePath, eventKind), 2000, this.hostConfiguration.watchOptions, WatchType.ConfigFileForInferredRoot) : noopConfigFileWatcher); }); } forEachConfigFileLocation(info, action) { if (this.serverMode !== 0) { return; } Debug.assert(!isOpenScriptInfo(info) || this.openFiles.has(info.path)); const projectRootPath = this.openFiles.get(info.path); const scriptInfo = Debug.checkDefined(this.getScriptInfo(info.path)); if (scriptInfo.isDynamic) return; let searchPath = asNormalizedPath(getDirectoryPath(info.fileName)); const isSearchPathInProjectRoot = () => containsPath(projectRootPath, searchPath, this.currentDirectory, !this.host.useCaseSensitiveFileNames); const anySearchPathOk = !projectRootPath || !isSearchPathInProjectRoot(); let searchTsconfig = true; let searchJsconfig = true; if (isAncestorConfigFileInfo(info)) { if (endsWith(info.fileName, "tsconfig.json")) searchTsconfig = false; else searchTsconfig = searchJsconfig = false; } do { const canonicalSearchPath = normalizedPathToPath(searchPath, this.currentDirectory, this.toCanonicalFileName); if (searchTsconfig) { const tsconfigFileName = asNormalizedPath(combinePaths(searchPath, "tsconfig.json")); const result = action(combinePaths(canonicalSearchPath, "tsconfig.json"), tsconfigFileName); if (result) return tsconfigFileName; } if (searchJsconfig) { const jsconfigFileName = asNormalizedPath(combinePaths(searchPath, "jsconfig.json")); const result = action(combinePaths(canonicalSearchPath, "jsconfig.json"), jsconfigFileName); if (result) return jsconfigFileName; } if (isNodeModulesDirectory(canonicalSearchPath)) { break; } const parentPath = asNormalizedPath(getDirectoryPath(searchPath)); if (parentPath === searchPath) break; searchPath = parentPath; searchTsconfig = searchJsconfig = true; } while (anySearchPathOk || isSearchPathInProjectRoot()); return; } findDefaultConfiguredProject(info) { var _a; return (_a = this.findDefaultConfiguredProjectWorker(info, 1)) == null ? undefined : _a.defaultProject; } findDefaultConfiguredProjectWorker(info, kind) { return info.isScriptOpen() ? this.tryFindDefaultConfiguredProjectForOpenScriptInfo(info, kind) : undefined; } getConfigFileNameForFileFromCache(info, lookInPendingFilesForValue) { if (lookInPendingFilesForValue) { const result = getConfigFileNameFromCache(info, this.pendingOpenFileProjectUpdates); if (result !== undefined) return result; } return getConfigFileNameFromCache(info, this.configFileForOpenFiles); } setConfigFileNameForFileInCache(info, configFileName) { if (!this.openFiles.has(info.path)) return; const config = configFileName || false; if (!isAncestorConfigFileInfo(info)) { this.configFileForOpenFiles.set(info.path, config); } else { let configFileForOpenFile = this.configFileForOpenFiles.get(info.path); if (!configFileForOpenFile || isString(configFileForOpenFile)) { this.configFileForOpenFiles.set(info.path, configFileForOpenFile = (/* @__PURE__ */ new Map()).set(false, configFileForOpenFile)); } configFileForOpenFile.set(info.fileName, config); } } getConfigFileNameForFile(info, findFromCacheOnly) { const fromCache = this.getConfigFileNameForFileFromCache(info, findFromCacheOnly); if (fromCache !== undefined) return fromCache || undefined; if (findFromCacheOnly) return; const configFileName = this.forEachConfigFileLocation(info, (canonicalConfigFilePath, configFileName2) => this.configFileExists(configFileName2, canonicalConfigFilePath, info)); this.logger.info(`getConfigFileNameForFile:: File: ${info.fileName} ProjectRootPath: ${this.openFiles.get(info.path)}:: Result: ${configFileName}`); this.setConfigFileNameForFileInCache(info, configFileName); return configFileName; } printProjects() { if (!this.logger.hasLevel(1)) { return; } this.logger.startGroup(); this.externalProjects.forEach(printProjectWithoutFileNames); this.configuredProjects.forEach(printProjectWithoutFileNames); this.inferredProjects.forEach(printProjectWithoutFileNames); this.logger.info("Open files: "); this.openFiles.forEach((projectRootPath, path) => { const info = this.getScriptInfoForPath(path); this.logger.info(` FileName: ${info.fileName} ProjectRootPath: ${projectRootPath}`); this.logger.info(` Projects: ${info.containingProjects.map((p) => p.getProjectName())}`); }); this.logger.endGroup(); } findConfiguredProjectByProjectName(configFileName, allowDeferredClosed) { const canonicalConfigFilePath = asNormalizedPath(this.toCanonicalFileName(configFileName)); const result = this.getConfiguredProjectByCanonicalConfigFilePath(canonicalConfigFilePath); return allowDeferredClosed ? result : !(result == null ? undefined : result.deferredClose) ? result : undefined; } getConfiguredProjectByCanonicalConfigFilePath(canonicalConfigFilePath) { return this.configuredProjects.get(canonicalConfigFilePath); } findExternalProjectByProjectName(projectFileName) { return findProjectByName(projectFileName, this.externalProjects); } getFilenameForExceededTotalSizeLimitForNonTsFiles(name, options, fileNames, propertyReader) { if (options && options.disableSizeLimit || !this.host.getFileSize) { return; } let availableSpace = maxProgramSizeForNonTsFiles; this.projectToSizeMap.set(name, 0); this.projectToSizeMap.forEach((val) => availableSpace -= val || 0); let totalNonTsFileSize = 0; for (const f of fileNames) { const fileName = propertyReader.getFileName(f); if (hasTSFileExtension(fileName)) { continue; } totalNonTsFileSize += this.host.getFileSize(fileName); if (totalNonTsFileSize > maxProgramSizeForNonTsFiles || totalNonTsFileSize > availableSpace) { const top5LargestFiles = fileNames.map((f2) => propertyReader.getFileName(f2)).filter((name2) => !hasTSFileExtension(name2)).map((name2) => ({ name: name2, size: this.host.getFileSize(name2) })).sort((a, b) => b.size - a.size).slice(0, 5); this.logger.info(`Non TS file size exceeded limit (${totalNonTsFileSize}). Largest files: ${top5LargestFiles.map((file) => `${file.name}:${file.size}`).join(", ")}`); return fileName; } } this.projectToSizeMap.set(name, totalNonTsFileSize); } createExternalProject(projectFileName, files, options, typeAcquisition, excludedFiles) { const compilerOptions = convertCompilerOptions(options); const watchOptionsAndErrors = convertWatchOptions(options, getDirectoryPath(normalizeSlashes(projectFileName))); const project = new ExternalProject(projectFileName, this, compilerOptions, this.getFilenameForExceededTotalSizeLimitForNonTsFiles(projectFileName, compilerOptions, files, externalFilePropertyReader), options.compileOnSave === undefined ? true : options.compileOnSave, undefined, watchOptionsAndErrors == null ? undefined : watchOptionsAndErrors.watchOptions); project.setProjectErrors(watchOptionsAndErrors == null ? undefined : watchOptionsAndErrors.errors); project.excludedFiles = excludedFiles; this.addFilesToNonInferredProject(project, files, externalFilePropertyReader, typeAcquisition); this.externalProjects.push(project); return project; } sendProjectTelemetry(project) { if (this.seenProjects.has(project.projectName)) { setProjectOptionsUsed(project); return; } this.seenProjects.set(project.projectName, true); if (!this.eventHandler || !this.host.createSHA256Hash) { setProjectOptionsUsed(project); return; } const projectOptions = isConfiguredProject(project) ? project.projectOptions : undefined; setProjectOptionsUsed(project); const data = { projectId: this.host.createSHA256Hash(project.projectName), fileStats: countEachFileTypes(project.getScriptInfos(), true), compilerOptions: convertCompilerOptionsForTelemetry(project.getCompilationSettings()), typeAcquisition: convertTypeAcquisition2(project.getTypeAcquisition()), extends: projectOptions && projectOptions.configHasExtendsProperty, files: projectOptions && projectOptions.configHasFilesProperty, include: projectOptions && projectOptions.configHasIncludeProperty, exclude: projectOptions && projectOptions.configHasExcludeProperty, compileOnSave: project.compileOnSaveEnabled, configFileName: configFileName(), projectType: project instanceof ExternalProject ? "external" : "configured", languageServiceEnabled: project.languageServiceEnabled, version }; this.eventHandler({ eventName: ProjectInfoTelemetryEvent, data }); function configFileName() { if (!isConfiguredProject(project)) { return "other"; } return getBaseConfigFileName(project.getConfigFilePath()) || "other"; } function convertTypeAcquisition2({ enable: enable2, include, exclude }) { return { enable: enable2, include: include !== undefined && include.length !== 0, exclude: exclude !== undefined && exclude.length !== 0 }; } } addFilesToNonInferredProject(project, files, propertyReader, typeAcquisition) { this.updateNonInferredProjectFiles(project, files, propertyReader); project.setTypeAcquisition(typeAcquisition); project.markAsDirty(); } createConfiguredProject(configFileName, reason) { var _a; (_a = tracing) == null || _a.instant(tracing.Phase.Session, "createConfiguredProject", { configFilePath: configFileName }); const canonicalConfigFilePath = asNormalizedPath(this.toCanonicalFileName(configFileName)); let configFileExistenceInfo = this.configFileExistenceInfoCache.get(canonicalConfigFilePath); if (!configFileExistenceInfo) { this.configFileExistenceInfoCache.set(canonicalConfigFilePath, configFileExistenceInfo = { exists: true }); } else { configFileExistenceInfo.exists = true; } if (!configFileExistenceInfo.config) { configFileExistenceInfo.config = { cachedDirectoryStructureHost: createCachedDirectoryStructureHost(this.host, this.host.getCurrentDirectory(), this.host.useCaseSensitiveFileNames), projects: /* @__PURE__ */ new Map, updateLevel: 2 }; } const project = new ConfiguredProject2(configFileName, canonicalConfigFilePath, this, configFileExistenceInfo.config.cachedDirectoryStructureHost, reason); Debug.assert(!this.configuredProjects.has(canonicalConfigFilePath)); this.configuredProjects.set(canonicalConfigFilePath, project); this.createConfigFileWatcherForParsedConfig(configFileName, canonicalConfigFilePath, project); return project; } loadConfiguredProject(project, reason) { var _a, _b; (_a = tracing) == null || _a.push(tracing.Phase.Session, "loadConfiguredProject", { configFilePath: project.canonicalConfigFilePath }); this.sendProjectLoadingStartEvent(project, reason); const configFilename = toNormalizedPath(project.getConfigFilePath()); const configFileExistenceInfo = this.ensureParsedConfigUptoDate(configFilename, project.canonicalConfigFilePath, this.configFileExistenceInfoCache.get(project.canonicalConfigFilePath), project); const parsedCommandLine = configFileExistenceInfo.config.parsedCommandLine; Debug.assert(!!parsedCommandLine.fileNames); const compilerOptions = parsedCommandLine.options; if (!project.projectOptions) { project.projectOptions = { configHasExtendsProperty: parsedCommandLine.raw.extends !== undefined, configHasFilesProperty: parsedCommandLine.raw.files !== undefined, configHasIncludeProperty: parsedCommandLine.raw.include !== undefined, configHasExcludeProperty: parsedCommandLine.raw.exclude !== undefined }; } project.parsedCommandLine = parsedCommandLine; project.setProjectErrors(parsedCommandLine.options.configFile.parseDiagnostics); project.updateReferences(parsedCommandLine.projectReferences); const lastFileExceededProgramSize = this.getFilenameForExceededTotalSizeLimitForNonTsFiles(project.canonicalConfigFilePath, compilerOptions, parsedCommandLine.fileNames, fileNamePropertyReader); if (lastFileExceededProgramSize) { project.disableLanguageService(lastFileExceededProgramSize); this.configFileExistenceInfoCache.forEach((_configFileExistenceInfo, canonicalConfigFilePath) => this.stopWatchingWildCards(canonicalConfigFilePath, project)); } else { project.setCompilerOptions(compilerOptions); project.setWatchOptions(parsedCommandLine.watchOptions); project.enableLanguageService(); this.watchWildcards(configFilename, configFileExistenceInfo, project); } project.enablePluginsWithOptions(compilerOptions); const filesToAdd = parsedCommandLine.fileNames.concat(project.getExternalFiles(2)); this.updateRootAndOptionsOfNonInferredProject(project, filesToAdd, fileNamePropertyReader, compilerOptions, parsedCommandLine.typeAcquisition, parsedCommandLine.compileOnSave, parsedCommandLine.watchOptions); (_b = tracing) == null || _b.pop(); } ensureParsedConfigUptoDate(configFilename, canonicalConfigFilePath, configFileExistenceInfo, forProject) { var _a, _b, _c; if (configFileExistenceInfo.config) { if (configFileExistenceInfo.config.updateLevel === 1) { this.reloadFileNamesOfParsedConfig(configFilename, configFileExistenceInfo.config); } if (!configFileExistenceInfo.config.updateLevel) { this.ensureConfigFileWatcherForProject(configFileExistenceInfo, forProject); return configFileExistenceInfo; } } if (!configFileExistenceInfo.exists && configFileExistenceInfo.config) { configFileExistenceInfo.config.updateLevel = undefined; this.ensureConfigFileWatcherForProject(configFileExistenceInfo, forProject); return configFileExistenceInfo; } const cachedDirectoryStructureHost = ((_a = configFileExistenceInfo.config) == null ? undefined : _a.cachedDirectoryStructureHost) || createCachedDirectoryStructureHost(this.host, this.host.getCurrentDirectory(), this.host.useCaseSensitiveFileNames); const configFileContent = tryReadFile(configFilename, (fileName) => this.host.readFile(fileName)); const configFile = parseJsonText(configFilename, isString(configFileContent) ? configFileContent : ""); const configFileErrors = configFile.parseDiagnostics; if (!isString(configFileContent)) configFileErrors.push(configFileContent); const configDir = getDirectoryPath(configFilename); const parsedCommandLine = parseJsonSourceFileConfigFileContent(configFile, cachedDirectoryStructureHost, configDir, undefined, configFilename, undefined, this.hostConfiguration.extraFileExtensions, this.extendedConfigCache); if (parsedCommandLine.errors.length) { configFileErrors.push(...parsedCommandLine.errors); } this.logger.info(`Config: ${configFilename} : ${JSON.stringify({ rootNames: parsedCommandLine.fileNames, options: parsedCommandLine.options, watchOptions: parsedCommandLine.watchOptions, projectReferences: parsedCommandLine.projectReferences }, undefined, " ")}`); const oldCommandLine = (_b = configFileExistenceInfo.config) == null ? undefined : _b.parsedCommandLine; if (!configFileExistenceInfo.config) { configFileExistenceInfo.config = { parsedCommandLine, cachedDirectoryStructureHost, projects: /* @__PURE__ */ new Map }; } else { configFileExistenceInfo.config.parsedCommandLine = parsedCommandLine; configFileExistenceInfo.config.watchedDirectoriesStale = true; configFileExistenceInfo.config.updateLevel = undefined; } if (!oldCommandLine && !isJsonEqual(this.getWatchOptionsFromProjectWatchOptions(undefined, configDir), this.getWatchOptionsFromProjectWatchOptions(parsedCommandLine.watchOptions, configDir))) { (_c = configFileExistenceInfo.watcher) == null || _c.close(); configFileExistenceInfo.watcher = undefined; } this.createConfigFileWatcherForParsedConfig(configFilename, canonicalConfigFilePath, forProject); updateSharedExtendedConfigFileWatcher(canonicalConfigFilePath, parsedCommandLine.options, this.sharedExtendedConfigFileWatchers, (extendedConfigFileName, extendedConfigFilePath) => this.watchFactory.watchFile(extendedConfigFileName, () => { var _a2; cleanExtendedConfigCache(this.extendedConfigCache, extendedConfigFilePath, (fileName) => this.toPath(fileName)); let ensureProjectsForOpenFiles = false; (_a2 = this.sharedExtendedConfigFileWatchers.get(extendedConfigFilePath)) == null || _a2.projects.forEach((canonicalPath) => { ensureProjectsForOpenFiles = this.delayUpdateProjectsFromParsedConfigOnConfigFileChange(canonicalPath, `Change in extended config file ${extendedConfigFileName} detected`) || ensureProjectsForOpenFiles; }); if (ensureProjectsForOpenFiles) this.delayEnsureProjectForOpenFiles(); }, 2000, this.hostConfiguration.watchOptions, WatchType.ExtendedConfigFile, configFilename), (fileName) => this.toPath(fileName)); return configFileExistenceInfo; } watchWildcards(configFileName, { exists, config }, forProject) { config.projects.set(forProject.canonicalConfigFilePath, true); if (exists) { if (config.watchedDirectories && !config.watchedDirectoriesStale) return; config.watchedDirectoriesStale = false; updateWatchingWildcardDirectories(config.watchedDirectories || (config.watchedDirectories = /* @__PURE__ */ new Map), config.parsedCommandLine.wildcardDirectories, (directory, flags) => this.watchWildcardDirectory(directory, flags, configFileName, config)); } else { config.watchedDirectoriesStale = false; if (!config.watchedDirectories) return; clearMap(config.watchedDirectories, closeFileWatcherOf); config.watchedDirectories = undefined; } } stopWatchingWildCards(canonicalConfigFilePath, forProject) { const configFileExistenceInfo = this.configFileExistenceInfoCache.get(canonicalConfigFilePath); if (!configFileExistenceInfo.config || !configFileExistenceInfo.config.projects.get(forProject.canonicalConfigFilePath)) { return; } configFileExistenceInfo.config.projects.set(forProject.canonicalConfigFilePath, false); if (forEachEntry(configFileExistenceInfo.config.projects, identity)) return; if (configFileExistenceInfo.config.watchedDirectories) { clearMap(configFileExistenceInfo.config.watchedDirectories, closeFileWatcherOf); configFileExistenceInfo.config.watchedDirectories = undefined; } configFileExistenceInfo.config.watchedDirectoriesStale = undefined; } updateNonInferredProjectFiles(project, files, propertyReader) { var _a; const projectRootFilesMap = project.getRootFilesMap(); const newRootScriptInfoMap = /* @__PURE__ */ new Map; for (const f of files) { const newRootFile = propertyReader.getFileName(f); const fileName = toNormalizedPath(newRootFile); const isDynamic = isDynamicFileName(fileName); let path; if (!isDynamic && !project.fileExists(newRootFile)) { path = normalizedPathToPath(fileName, this.currentDirectory, this.toCanonicalFileName); const existingValue = projectRootFilesMap.get(path); if (existingValue) { if (((_a = existingValue.info) == null ? undefined : _a.path) === path) { project.removeFile(existingValue.info, false, true); existingValue.info = undefined; } existingValue.fileName = fileName; } else { projectRootFilesMap.set(path, { fileName }); } } else { const scriptKind = propertyReader.getScriptKind(f, this.hostConfiguration.extraFileExtensions); const hasMixedContent = propertyReader.hasMixedContent(f, this.hostConfiguration.extraFileExtensions); const scriptInfo = Debug.checkDefined(this.getOrCreateScriptInfoNotOpenedByClientForNormalizedPath(fileName, project.currentDirectory, scriptKind, hasMixedContent, project.directoryStructureHost, false)); path = scriptInfo.path; const existingValue = projectRootFilesMap.get(path); if (!existingValue || existingValue.info !== scriptInfo) { project.addRoot(scriptInfo, fileName); if (scriptInfo.isScriptOpen()) { this.removeRootOfInferredProjectIfNowPartOfOtherProject(scriptInfo); } } else { existingValue.fileName = fileName; } } newRootScriptInfoMap.set(path, true); } if (projectRootFilesMap.size > newRootScriptInfoMap.size) { projectRootFilesMap.forEach((value, path) => { if (!newRootScriptInfoMap.has(path)) { if (value.info) { project.removeFile(value.info, project.fileExists(value.info.fileName), true); } else { projectRootFilesMap.delete(path); } } }); } } updateRootAndOptionsOfNonInferredProject(project, newUncheckedFiles, propertyReader, newOptions, newTypeAcquisition, compileOnSave, watchOptions) { project.setCompilerOptions(newOptions); project.setWatchOptions(watchOptions); if (compileOnSave !== undefined) { project.compileOnSaveEnabled = compileOnSave; } this.addFilesToNonInferredProject(project, newUncheckedFiles, propertyReader, newTypeAcquisition); } reloadFileNamesOfConfiguredProject(project) { const config = this.reloadFileNamesOfParsedConfig(project.getConfigFilePath(), this.configFileExistenceInfoCache.get(project.canonicalConfigFilePath).config); project.updateErrorOnNoInputFiles(config); this.updateNonInferredProjectFiles(project, config.fileNames.concat(project.getExternalFiles(1)), fileNamePropertyReader); project.markAsDirty(); return project.updateGraph(); } reloadFileNamesOfParsedConfig(configFileName, config) { if (config.updateLevel === undefined) return config.parsedCommandLine; Debug.assert(config.updateLevel === 1); const configFileSpecs = config.parsedCommandLine.options.configFile.configFileSpecs; const fileNames = getFileNamesFromConfigSpecs(configFileSpecs, getDirectoryPath(configFileName), config.parsedCommandLine.options, config.cachedDirectoryStructureHost, this.hostConfiguration.extraFileExtensions); config.parsedCommandLine = { ...config.parsedCommandLine, fileNames }; config.updateLevel = undefined; return config.parsedCommandLine; } setFileNamesOfAutoImportProviderOrAuxillaryProject(project, fileNames) { this.updateNonInferredProjectFiles(project, fileNames, fileNamePropertyReader); } reloadConfiguredProjectOptimized(project, reason, reloadedProjects) { if (reloadedProjects.has(project)) return; reloadedProjects.set(project, 6); if (!project.initialLoadPending) { this.setProjectForReload(project, 2, reason); } } reloadConfiguredProjectClearingSemanticCache(project, reason, reloadedProjects) { if (reloadedProjects.get(project) === 7) return false; reloadedProjects.set(project, 7); this.clearSemanticCache(project); this.reloadConfiguredProject(project, reloadReason(reason)); return true; } setProjectForReload(project, updateLevel, reason) { if (updateLevel === 2) this.clearSemanticCache(project); project.pendingUpdateReason = reason && reloadReason(reason); project.pendingUpdateLevel = updateLevel; } reloadConfiguredProject(project, reason) { project.initialLoadPending = false; this.setProjectForReload(project, 0); this.loadConfiguredProject(project, reason); updateWithTriggerFile(project, project.triggerFileForConfigFileDiag ?? project.getConfigFilePath(), true); } clearSemanticCache(project) { project.originalConfiguredProjects = undefined; project.resolutionCache.clear(); project.getLanguageService(false).cleanupSemanticCache(); project.cleanupProgram(); project.markAsDirty(); } sendConfigFileDiagEvent(project, triggerFile, force) { if (!this.eventHandler || this.suppressDiagnosticEvents) return false; const diagnostics = project.getLanguageService().getCompilerOptionsDiagnostics(); diagnostics.push(...project.getAllProjectErrors()); if (!force && diagnostics.length === (project.configDiagDiagnosticsReported ?? 0)) return false; project.configDiagDiagnosticsReported = diagnostics.length; this.eventHandler({ eventName: ConfigFileDiagEvent, data: { configFileName: project.getConfigFilePath(), diagnostics, triggerFile: triggerFile ?? project.getConfigFilePath() } }); return true; } getOrCreateInferredProjectForProjectRootPathIfEnabled(info, projectRootPath) { if (!this.useInferredProjectPerProjectRoot || info.isDynamic && projectRootPath === undefined) { return; } if (projectRootPath) { const canonicalProjectRootPath = this.toCanonicalFileName(projectRootPath); for (const project of this.inferredProjects) { if (project.projectRootPath === canonicalProjectRootPath) { return project; } } return this.createInferredProject(projectRootPath, false, projectRootPath); } let bestMatch; for (const project of this.inferredProjects) { if (!project.projectRootPath) continue; if (!containsPath(project.projectRootPath, info.path, this.host.getCurrentDirectory(), !this.host.useCaseSensitiveFileNames)) continue; if (bestMatch && bestMatch.projectRootPath.length > project.projectRootPath.length) continue; bestMatch = project; } return bestMatch; } getOrCreateSingleInferredProjectIfEnabled() { if (!this.useSingleInferredProject) { return; } if (this.inferredProjects.length > 0 && this.inferredProjects[0].projectRootPath === undefined) { return this.inferredProjects[0]; } return this.createInferredProject(this.currentDirectory, true, undefined); } getOrCreateSingleInferredWithoutProjectRoot(currentDirectory) { Debug.assert(!this.useSingleInferredProject); const expectedCurrentDirectory = this.toCanonicalFileName(this.getNormalizedAbsolutePath(currentDirectory)); for (const inferredProject of this.inferredProjects) { if (!inferredProject.projectRootPath && inferredProject.isOrphan() && inferredProject.canonicalCurrentDirectory === expectedCurrentDirectory) { return inferredProject; } } return this.createInferredProject(currentDirectory, false, undefined); } createInferredProject(currentDirectory, isSingleInferredProject, projectRootPath) { const compilerOptions = projectRootPath && this.compilerOptionsForInferredProjectsPerProjectRoot.get(projectRootPath) || this.compilerOptionsForInferredProjects; let watchOptionsAndErrors; let typeAcquisition; if (projectRootPath) { watchOptionsAndErrors = this.watchOptionsForInferredProjectsPerProjectRoot.get(projectRootPath); typeAcquisition = this.typeAcquisitionForInferredProjectsPerProjectRoot.get(projectRootPath); } if (watchOptionsAndErrors === undefined) { watchOptionsAndErrors = this.watchOptionsForInferredProjects; } if (typeAcquisition === undefined) { typeAcquisition = this.typeAcquisitionForInferredProjects; } watchOptionsAndErrors = watchOptionsAndErrors || undefined; const project = new InferredProject2(this, compilerOptions, watchOptionsAndErrors == null ? undefined : watchOptionsAndErrors.watchOptions, projectRootPath, currentDirectory, typeAcquisition); project.setProjectErrors(watchOptionsAndErrors == null ? undefined : watchOptionsAndErrors.errors); if (isSingleInferredProject) { this.inferredProjects.unshift(project); } else { this.inferredProjects.push(project); } return project; } getOrCreateScriptInfoNotOpenedByClient(uncheckedFileName, currentDirectory, hostToQueryFileExistsOn, deferredDeleteOk) { return this.getOrCreateScriptInfoNotOpenedByClientForNormalizedPath(toNormalizedPath(uncheckedFileName), currentDirectory, undefined, undefined, hostToQueryFileExistsOn, deferredDeleteOk); } getScriptInfo(uncheckedFileName) { return this.getScriptInfoForNormalizedPath(toNormalizedPath(uncheckedFileName)); } getScriptInfoOrConfig(uncheckedFileName) { const path = toNormalizedPath(uncheckedFileName); const info = this.getScriptInfoForNormalizedPath(path); if (info) return info; const configProject = this.configuredProjects.get(this.toPath(uncheckedFileName)); return configProject && configProject.getCompilerOptions().configFile; } logErrorForScriptInfoNotFound(fileName) { const names = arrayFrom(mapDefinedIterator(this.filenameToScriptInfo.entries(), (entry) => entry[1].deferredDelete ? undefined : entry), ([path, scriptInfo]) => ({ path, fileName: scriptInfo.fileName })); this.logger.msg(`Could not find file ${JSON.stringify(fileName)}. All files are: ${JSON.stringify(names)}`, "Err"); } getSymlinkedProjects(info) { let projects; if (this.realpathToScriptInfos) { const realpath = info.getRealpathIfDifferent(); if (realpath) { forEach(this.realpathToScriptInfos.get(realpath), combineProjects); } forEach(this.realpathToScriptInfos.get(info.path), combineProjects); } return projects; function combineProjects(toAddInfo) { if (toAddInfo !== info) { for (const project of toAddInfo.containingProjects) { if (project.languageServiceEnabled && !project.isOrphan() && !project.getCompilerOptions().preserveSymlinks && !info.isAttached(project)) { if (!projects) { projects = createMultiMap(); projects.add(toAddInfo.path, project); } else if (!forEachEntry(projects, (projs, path) => path === toAddInfo.path ? false : contains(projs, project))) { projects.add(toAddInfo.path, project); } } } } } } watchClosedScriptInfo(info) { Debug.assert(!info.fileWatcher); if (!info.isDynamicOrHasMixedContent() && (!this.globalCacheLocationDirectoryPath || !startsWith(info.path, this.globalCacheLocationDirectoryPath))) { const indexOfNodeModules = info.fileName.indexOf("/node_modules/"); if (!this.host.getModifiedTime || indexOfNodeModules === -1) { info.fileWatcher = this.watchFactory.watchFile(info.fileName, (_fileName, eventKind) => this.onSourceFileChanged(info, eventKind), 500, this.hostConfiguration.watchOptions, WatchType.ClosedScriptInfo); } else { info.mTime = this.getModifiedTime(info); info.fileWatcher = this.watchClosedScriptInfoInNodeModules(info.fileName.substring(0, indexOfNodeModules)); } } } createNodeModulesWatcher(dir, dirPath) { let watcher = this.watchFactory.watchDirectory(dir, (fileOrDirectory) => { var _a; const fileOrDirectoryPath = removeIgnoredPath(this.toPath(fileOrDirectory)); if (!fileOrDirectoryPath) return; const basename = getBaseFileName(fileOrDirectoryPath); if (((_a = result.affectedModuleSpecifierCacheProjects) == null ? undefined : _a.size) && (basename === "package.json" || basename === "node_modules")) { result.affectedModuleSpecifierCacheProjects.forEach((project) => { var _a2; (_a2 = project.getModuleSpecifierCache()) == null || _a2.clear(); }); } if (result.refreshScriptInfoRefCount) { if (dirPath === fileOrDirectoryPath) { this.refreshScriptInfosInDirectory(dirPath); } else { const info = this.filenameToScriptInfo.get(fileOrDirectoryPath); if (info) { if (isScriptInfoWatchedFromNodeModules(info)) { this.refreshScriptInfo(info); } } else if (!hasExtension(fileOrDirectoryPath)) { this.refreshScriptInfosInDirectory(fileOrDirectoryPath); } } } }, 1, this.hostConfiguration.watchOptions, WatchType.NodeModules); const result = { refreshScriptInfoRefCount: 0, affectedModuleSpecifierCacheProjects: undefined, close: () => { var _a; if (watcher && !result.refreshScriptInfoRefCount && !((_a = result.affectedModuleSpecifierCacheProjects) == null ? undefined : _a.size)) { watcher.close(); watcher = undefined; this.nodeModulesWatchers.delete(dirPath); } } }; this.nodeModulesWatchers.set(dirPath, result); return result; } watchPackageJsonsInNodeModules(dir, project) { var _a; const dirPath = this.toPath(dir); const watcher = this.nodeModulesWatchers.get(dirPath) || this.createNodeModulesWatcher(dir, dirPath); Debug.assert(!((_a = watcher.affectedModuleSpecifierCacheProjects) == null ? undefined : _a.has(project))); (watcher.affectedModuleSpecifierCacheProjects || (watcher.affectedModuleSpecifierCacheProjects = /* @__PURE__ */ new Set)).add(project); return { close: () => { var _a2; (_a2 = watcher.affectedModuleSpecifierCacheProjects) == null || _a2.delete(project); watcher.close(); } }; } watchClosedScriptInfoInNodeModules(dir) { const watchDir = dir + "/node_modules"; const watchDirPath = this.toPath(watchDir); const watcher = this.nodeModulesWatchers.get(watchDirPath) || this.createNodeModulesWatcher(watchDir, watchDirPath); watcher.refreshScriptInfoRefCount++; return { close: () => { watcher.refreshScriptInfoRefCount--; watcher.close(); } }; } getModifiedTime(info) { return (this.host.getModifiedTime(info.fileName) || missingFileModifiedTime).getTime(); } refreshScriptInfo(info) { const mTime = this.getModifiedTime(info); if (mTime !== info.mTime) { const eventKind = getFileWatcherEventKind(info.mTime, mTime); info.mTime = mTime; this.onSourceFileChanged(info, eventKind); } } refreshScriptInfosInDirectory(dir) { dir = dir + directorySeparator; this.filenameToScriptInfo.forEach((info) => { if (isScriptInfoWatchedFromNodeModules(info) && startsWith(info.path, dir)) { this.refreshScriptInfo(info); } }); } stopWatchingScriptInfo(info) { if (info.fileWatcher) { info.fileWatcher.close(); info.fileWatcher = undefined; } } getOrCreateScriptInfoNotOpenedByClientForNormalizedPath(fileName, currentDirectory, scriptKind, hasMixedContent, hostToQueryFileExistsOn, deferredDeleteOk) { if (isRootedDiskPath(fileName) || isDynamicFileName(fileName)) { return this.getOrCreateScriptInfoWorker(fileName, currentDirectory, false, undefined, scriptKind, !!hasMixedContent, hostToQueryFileExistsOn, deferredDeleteOk); } const info = this.openFilesWithNonRootedDiskPath.get(this.toCanonicalFileName(fileName)); if (info) { return info; } return; } getOrCreateScriptInfoForNormalizedPath(fileName, openedByClient, fileContent, scriptKind, hasMixedContent, hostToQueryFileExistsOn) { return this.getOrCreateScriptInfoWorker(fileName, this.currentDirectory, openedByClient, fileContent, scriptKind, !!hasMixedContent, hostToQueryFileExistsOn, false); } getOrCreateScriptInfoWorker(fileName, currentDirectory, openedByClient, fileContent, scriptKind, hasMixedContent, hostToQueryFileExistsOn, deferredDeleteOk) { Debug.assert(fileContent === undefined || openedByClient, "ScriptInfo needs to be opened by client to be able to set its user defined content"); const path = normalizedPathToPath(fileName, currentDirectory, this.toCanonicalFileName); let info = this.filenameToScriptInfo.get(path); if (!info) { const isDynamic = isDynamicFileName(fileName); Debug.assert(isRootedDiskPath(fileName) || isDynamic || openedByClient, "", () => `${JSON.stringify({ fileName, currentDirectory, hostCurrentDirectory: this.currentDirectory, openKeys: arrayFrom(this.openFilesWithNonRootedDiskPath.keys()) })} Script info with non-dynamic relative file name can only be open script info or in context of host currentDirectory`); Debug.assert(!isRootedDiskPath(fileName) || this.currentDirectory === currentDirectory || !this.openFilesWithNonRootedDiskPath.has(this.toCanonicalFileName(fileName)), "", () => `${JSON.stringify({ fileName, currentDirectory, hostCurrentDirectory: this.currentDirectory, openKeys: arrayFrom(this.openFilesWithNonRootedDiskPath.keys()) })} Open script files with non rooted disk path opened with current directory context cannot have same canonical names`); Debug.assert(!isDynamic || this.currentDirectory === currentDirectory || this.useInferredProjectPerProjectRoot, "", () => `${JSON.stringify({ fileName, currentDirectory, hostCurrentDirectory: this.currentDirectory, openKeys: arrayFrom(this.openFilesWithNonRootedDiskPath.keys()) })} Dynamic files must always be opened with service's current directory or service should support inferred project per projectRootPath.`); if (!openedByClient && !isDynamic && !(hostToQueryFileExistsOn || this.host).fileExists(fileName)) { return; } info = new ScriptInfo(this.host, fileName, scriptKind, hasMixedContent, path, this.filenameToScriptInfoVersion.get(path)); this.filenameToScriptInfo.set(info.path, info); this.filenameToScriptInfoVersion.delete(info.path); if (!openedByClient) { this.watchClosedScriptInfo(info); } else if (!isRootedDiskPath(fileName) && (!isDynamic || this.currentDirectory !== currentDirectory)) { this.openFilesWithNonRootedDiskPath.set(this.toCanonicalFileName(fileName), info); } } else if (info.deferredDelete) { Debug.assert(!info.isDynamic); if (!openedByClient && !(hostToQueryFileExistsOn || this.host).fileExists(fileName)) { return deferredDeleteOk ? info : undefined; } info.deferredDelete = undefined; } if (openedByClient) { this.stopWatchingScriptInfo(info); info.open(fileContent); if (hasMixedContent) { info.registerFileUpdate(); } } return info; } getScriptInfoForNormalizedPath(fileName) { return !isRootedDiskPath(fileName) && this.openFilesWithNonRootedDiskPath.get(this.toCanonicalFileName(fileName)) || this.getScriptInfoForPath(normalizedPathToPath(fileName, this.currentDirectory, this.toCanonicalFileName)); } getScriptInfoForPath(fileName) { const info = this.filenameToScriptInfo.get(fileName); return !info || !info.deferredDelete ? info : undefined; } getDocumentPositionMapper(project, generatedFileName, sourceFileName) { const declarationInfo = this.getOrCreateScriptInfoNotOpenedByClient(generatedFileName, project.currentDirectory, this.host, false); if (!declarationInfo) { if (sourceFileName) { project.addGeneratedFileWatch(generatedFileName, sourceFileName); } return; } declarationInfo.getSnapshot(); if (isString(declarationInfo.sourceMapFilePath)) { const sourceMapFileInfo2 = this.getScriptInfoForPath(declarationInfo.sourceMapFilePath); if (sourceMapFileInfo2) { sourceMapFileInfo2.getSnapshot(); if (sourceMapFileInfo2.documentPositionMapper !== undefined) { sourceMapFileInfo2.sourceInfos = this.addSourceInfoToSourceMap(sourceFileName, project, sourceMapFileInfo2.sourceInfos); return sourceMapFileInfo2.documentPositionMapper ? sourceMapFileInfo2.documentPositionMapper : undefined; } } declarationInfo.sourceMapFilePath = undefined; } else if (declarationInfo.sourceMapFilePath) { declarationInfo.sourceMapFilePath.sourceInfos = this.addSourceInfoToSourceMap(sourceFileName, project, declarationInfo.sourceMapFilePath.sourceInfos); return; } else if (declarationInfo.sourceMapFilePath !== undefined) { return; } let sourceMapFileInfo; let readMapFile = (mapFileName, mapFileNameFromDts) => { const mapInfo = this.getOrCreateScriptInfoNotOpenedByClient(mapFileName, project.currentDirectory, this.host, true); sourceMapFileInfo = mapInfo || mapFileNameFromDts; if (!mapInfo || mapInfo.deferredDelete) return; const snap = mapInfo.getSnapshot(); if (mapInfo.documentPositionMapper !== undefined) return mapInfo.documentPositionMapper; return getSnapshotText(snap); }; const projectName = project.projectName; const documentPositionMapper = getDocumentPositionMapper({ getCanonicalFileName: this.toCanonicalFileName, log: (s) => this.logger.info(s), getSourceFileLike: (f) => this.getSourceFileLike(f, projectName, declarationInfo) }, declarationInfo.fileName, declarationInfo.textStorage.getLineInfo(), readMapFile); readMapFile = undefined; if (sourceMapFileInfo) { if (!isString(sourceMapFileInfo)) { declarationInfo.sourceMapFilePath = sourceMapFileInfo.path; sourceMapFileInfo.declarationInfoPath = declarationInfo.path; if (!sourceMapFileInfo.deferredDelete) sourceMapFileInfo.documentPositionMapper = documentPositionMapper || false; sourceMapFileInfo.sourceInfos = this.addSourceInfoToSourceMap(sourceFileName, project, sourceMapFileInfo.sourceInfos); } else { declarationInfo.sourceMapFilePath = { watcher: this.addMissingSourceMapFile(project.currentDirectory === this.currentDirectory ? sourceMapFileInfo : getNormalizedAbsolutePath(sourceMapFileInfo, project.currentDirectory), declarationInfo.path), sourceInfos: this.addSourceInfoToSourceMap(sourceFileName, project) }; } } else { declarationInfo.sourceMapFilePath = false; } return documentPositionMapper; } addSourceInfoToSourceMap(sourceFileName, project, sourceInfos) { if (sourceFileName) { const sourceInfo = this.getOrCreateScriptInfoNotOpenedByClient(sourceFileName, project.currentDirectory, project.directoryStructureHost, false); (sourceInfos || (sourceInfos = /* @__PURE__ */ new Set)).add(sourceInfo.path); } return sourceInfos; } addMissingSourceMapFile(mapFileName, declarationInfoPath) { const fileWatcher = this.watchFactory.watchFile(mapFileName, () => { const declarationInfo = this.getScriptInfoForPath(declarationInfoPath); if (declarationInfo && declarationInfo.sourceMapFilePath && !isString(declarationInfo.sourceMapFilePath)) { this.delayUpdateProjectGraphs(declarationInfo.containingProjects, true); this.delayUpdateSourceInfoProjects(declarationInfo.sourceMapFilePath.sourceInfos); declarationInfo.closeSourceMapFileWatcher(); } }, 2000, this.hostConfiguration.watchOptions, WatchType.MissingSourceMapFile); return fileWatcher; } getSourceFileLike(fileName, projectNameOrProject, declarationInfo) { const project = projectNameOrProject.projectName ? projectNameOrProject : this.findProject(projectNameOrProject); if (project) { const path = project.toPath(fileName); const sourceFile = project.getSourceFile(path); if (sourceFile && sourceFile.resolvedPath === path) return sourceFile; } const info = this.getOrCreateScriptInfoNotOpenedByClient(fileName, (project || this).currentDirectory, project ? project.directoryStructureHost : this.host, false); if (!info) return; if (declarationInfo && isString(declarationInfo.sourceMapFilePath) && info !== declarationInfo) { const sourceMapInfo = this.getScriptInfoForPath(declarationInfo.sourceMapFilePath); if (sourceMapInfo) { (sourceMapInfo.sourceInfos ?? (sourceMapInfo.sourceInfos = /* @__PURE__ */ new Set)).add(info.path); } } if (info.cacheSourceFile) return info.cacheSourceFile.sourceFile; if (!info.sourceFileLike) { info.sourceFileLike = { get text() { Debug.fail("shouldnt need text"); return ""; }, getLineAndCharacterOfPosition: (pos) => { const lineOffset = info.positionToLineOffset(pos); return { line: lineOffset.line - 1, character: lineOffset.offset - 1 }; }, getPositionOfLineAndCharacter: (line, character, allowEdits) => info.lineOffsetToPosition(line + 1, character + 1, allowEdits) }; } return info.sourceFileLike; } setPerformanceEventHandler(performanceEventHandler) { this.performanceEventHandler = performanceEventHandler; } setHostConfiguration(args) { var _a; if (args.file) { const info = this.getScriptInfoForNormalizedPath(toNormalizedPath(args.file)); if (info) { info.setOptions(convertFormatOptions(args.formatOptions), args.preferences); this.logger.info(`Host configuration update for file ${args.file}`); } } else { if (args.hostInfo !== undefined) { this.hostConfiguration.hostInfo = args.hostInfo; this.logger.info(`Host information ${args.hostInfo}`); } if (args.formatOptions) { this.hostConfiguration.formatCodeOptions = { ...this.hostConfiguration.formatCodeOptions, ...convertFormatOptions(args.formatOptions) }; this.logger.info("Format host information updated"); } if (args.preferences) { const { lazyConfiguredProjectsFromExternalProject, includePackageJsonAutoImports, includeCompletionsForModuleExports } = this.hostConfiguration.preferences; this.hostConfiguration.preferences = { ...this.hostConfiguration.preferences, ...args.preferences }; if (lazyConfiguredProjectsFromExternalProject && !this.hostConfiguration.preferences.lazyConfiguredProjectsFromExternalProject) { this.externalProjectToConfiguredProjectMap.forEach((projects) => projects.forEach((project) => { if (!project.deferredClose && !project.isClosed() && project.pendingUpdateLevel === 2 && !this.hasPendingProjectUpdate(project)) { project.updateGraph(); } })); } if (includePackageJsonAutoImports !== args.preferences.includePackageJsonAutoImports || !!includeCompletionsForModuleExports !== !!args.preferences.includeCompletionsForModuleExports) { this.forEachProject((project) => { project.onAutoImportProviderSettingsChanged(); }); } } if (args.extraFileExtensions) { this.hostConfiguration.extraFileExtensions = args.extraFileExtensions; this.reloadProjects(); this.logger.info("Host file extension mappings updated"); } if (args.watchOptions) { const watchOptions = (_a = convertWatchOptions(args.watchOptions)) == null ? undefined : _a.watchOptions; const substitution = handleWatchOptionsConfigDirTemplateSubstitution(watchOptions, this.currentDirectory); this.hostConfiguration.watchOptions = substitution; this.hostConfiguration.beforeSubstitution = substitution === watchOptions ? undefined : watchOptions; this.logger.info(`Host watch options changed to ${JSON.stringify(this.hostConfiguration.watchOptions)}, it will be take effect for next watches.`); } } } getWatchOptions(project) { return this.getWatchOptionsFromProjectWatchOptions(project.getWatchOptions(), project.getCurrentDirectory()); } getWatchOptionsFromProjectWatchOptions(projectOptions, basePath) { const hostWatchOptions = !this.hostConfiguration.beforeSubstitution ? this.hostConfiguration.watchOptions : handleWatchOptionsConfigDirTemplateSubstitution(this.hostConfiguration.beforeSubstitution, basePath); return projectOptions && hostWatchOptions ? { ...hostWatchOptions, ...projectOptions } : projectOptions || hostWatchOptions; } closeLog() { this.logger.close(); } sendSourceFileChange(inPath) { this.filenameToScriptInfo.forEach((info) => { if (this.openFiles.has(info.path)) return; if (!info.fileWatcher) return; const eventKind = memoize(() => this.host.fileExists(info.fileName) ? info.deferredDelete ? 0 : 1 : 2); if (inPath) { if (isScriptInfoWatchedFromNodeModules(info) || !info.path.startsWith(inPath)) return; if (eventKind() === 2 && info.deferredDelete) return; this.logger.info(`Invoking sourceFileChange on ${info.fileName}:: ${eventKind()}`); } this.onSourceFileChanged(info, eventKind()); }); } reloadProjects() { this.logger.info("reload projects."); this.sendSourceFileChange(undefined); this.pendingProjectUpdates.forEach((_project, projectName) => { this.throttledOperations.cancel(projectName); this.pendingProjectUpdates.delete(projectName); }); this.throttledOperations.cancel(ensureProjectForOpenFileSchedule); this.pendingOpenFileProjectUpdates = undefined; this.pendingEnsureProjectForOpenFiles = false; this.configFileExistenceInfoCache.forEach((info) => { if (info.config) { info.config.updateLevel = 2; info.config.cachedDirectoryStructureHost.clearCache(); } }); this.configFileForOpenFiles.clear(); this.externalProjects.forEach((project) => { this.clearSemanticCache(project); project.updateGraph(); }); const reloadedConfiguredProjects = /* @__PURE__ */ new Map; const delayReloadedConfiguredProjects = /* @__PURE__ */ new Set; this.externalProjectToConfiguredProjectMap.forEach((projects, externalProjectName) => { const reason = `Reloading configured project in external project: ${externalProjectName}`; projects.forEach((project) => { if (this.getHostPreferences().lazyConfiguredProjectsFromExternalProject) { this.reloadConfiguredProjectOptimized(project, reason, reloadedConfiguredProjects); } else { this.reloadConfiguredProjectClearingSemanticCache(project, reason, reloadedConfiguredProjects); } }); }); this.openFiles.forEach((_projectRootPath, path) => { const info = this.getScriptInfoForPath(path); if (find(info.containingProjects, isExternalProject)) return; this.tryFindDefaultConfiguredProjectAndLoadAncestorsForOpenScriptInfo(info, 7, reloadedConfiguredProjects, delayReloadedConfiguredProjects); }); delayReloadedConfiguredProjects.forEach((p) => reloadedConfiguredProjects.set(p, 7)); this.inferredProjects.forEach((project) => this.clearSemanticCache(project)); this.ensureProjectForOpenFiles(); this.cleanupProjectsAndScriptInfos(reloadedConfiguredProjects, new Set(this.openFiles.keys()), new Set(this.externalProjectToConfiguredProjectMap.keys())); this.logger.info("After reloading projects.."); this.printProjects(); } removeRootOfInferredProjectIfNowPartOfOtherProject(info) { Debug.assert(info.containingProjects.length > 0); const firstProject = info.containingProjects[0]; if (!firstProject.isOrphan() && isInferredProject(firstProject) && firstProject.isRoot(info) && forEach(info.containingProjects, (p) => p !== firstProject && !p.isOrphan())) { firstProject.removeFile(info, true, true); } } ensureProjectForOpenFiles() { this.logger.info("Before ensureProjectForOpenFiles:"); this.printProjects(); const pendingOpenFileProjectUpdates = this.pendingOpenFileProjectUpdates; this.pendingOpenFileProjectUpdates = undefined; pendingOpenFileProjectUpdates == null || pendingOpenFileProjectUpdates.forEach((_config, path) => this.tryFindDefaultConfiguredProjectAndLoadAncestorsForOpenScriptInfo(this.getScriptInfoForPath(path), 5)); this.openFiles.forEach((projectRootPath, path) => { const info = this.getScriptInfoForPath(path); if (info.isOrphan()) { this.assignOrphanScriptInfoToInferredProject(info, projectRootPath); } else { this.removeRootOfInferredProjectIfNowPartOfOtherProject(info); } }); this.pendingEnsureProjectForOpenFiles = false; this.inferredProjects.forEach(updateProjectIfDirty); this.logger.info("After ensureProjectForOpenFiles:"); this.printProjects(); } openClientFile(fileName, fileContent, scriptKind, projectRootPath) { return this.openClientFileWithNormalizedPath(toNormalizedPath(fileName), fileContent, scriptKind, false, projectRootPath ? toNormalizedPath(projectRootPath) : undefined); } getOriginalLocationEnsuringConfiguredProject(project, location) { const isSourceOfProjectReferenceRedirect = project.isSourceOfProjectReferenceRedirect(location.fileName); const originalLocation = isSourceOfProjectReferenceRedirect ? location : project.getSourceMapper().tryGetSourcePosition(location); if (!originalLocation) return; const { fileName } = originalLocation; const scriptInfo = this.getScriptInfo(fileName); if (!scriptInfo && !this.host.fileExists(fileName)) return; const originalFileInfo = { fileName: toNormalizedPath(fileName), path: this.toPath(fileName) }; const configFileName = this.getConfigFileNameForFile(originalFileInfo, false); if (!configFileName) return; let configuredProject = this.findConfiguredProjectByProjectName(configFileName); if (!configuredProject) { if (project.getCompilerOptions().disableReferencedProjectLoad) { if (isSourceOfProjectReferenceRedirect) { return location; } return (scriptInfo == null ? undefined : scriptInfo.containingProjects.length) ? originalLocation : location; } configuredProject = this.createConfiguredProject(configFileName, `Creating project for original file: ${originalFileInfo.fileName}${location !== originalLocation ? " for location: " + location.fileName : ""}`); } const result = this.tryFindDefaultConfiguredProjectForOpenScriptInfoOrClosedFileInfo(originalFileInfo, 5, updateProjectFoundUsingFind(configuredProject, 4), (project2) => `Creating project referenced in solution ${project2.projectName} to find possible configured project for original file: ${originalFileInfo.fileName}${location !== originalLocation ? " for location: " + location.fileName : ""}`); if (!result.defaultProject) return; if (result.defaultProject === project) return originalLocation; addOriginalConfiguredProject(result.defaultProject); const originalScriptInfo = this.getScriptInfo(fileName); if (!originalScriptInfo || !originalScriptInfo.containingProjects.length) return; originalScriptInfo.containingProjects.forEach((project2) => { if (isConfiguredProject(project2)) { addOriginalConfiguredProject(project2); } }); return originalLocation; function addOriginalConfiguredProject(originalProject) { (project.originalConfiguredProjects ?? (project.originalConfiguredProjects = /* @__PURE__ */ new Set)).add(originalProject.canonicalConfigFilePath); } } fileExists(fileName) { return !!this.getScriptInfoForNormalizedPath(fileName) || this.host.fileExists(fileName); } findExternalProjectContainingOpenScriptInfo(info) { return find(this.externalProjects, (proj) => { updateProjectIfDirty(proj); return proj.containsScriptInfo(info); }); } getOrCreateOpenScriptInfo(fileName, fileContent, scriptKind, hasMixedContent, projectRootPath) { const info = this.getOrCreateScriptInfoWorker(fileName, projectRootPath ? this.getNormalizedAbsolutePath(projectRootPath) : this.currentDirectory, true, fileContent, scriptKind, !!hasMixedContent, undefined, true); this.openFiles.set(info.path, projectRootPath); return info; } assignProjectToOpenedScriptInfo(info) { let configFileName; let configFileErrors; const project = this.findExternalProjectContainingOpenScriptInfo(info); let retainProjects; let sentConfigDiag; if (!project && this.serverMode === 0) { const result = this.tryFindDefaultConfiguredProjectAndLoadAncestorsForOpenScriptInfo(info, 5); if (result) { retainProjects = result.seenProjects; sentConfigDiag = result.sentConfigDiag; if (result.defaultProject) { configFileName = result.defaultProject.getConfigFilePath(); configFileErrors = result.defaultProject.getAllProjectErrors(); } } } info.containingProjects.forEach(updateProjectIfDirty); if (info.isOrphan()) { retainProjects == null || retainProjects.forEach((kind, project2) => { if (kind !== 4 && !sentConfigDiag.has(project2)) this.sendConfigFileDiagEvent(project2, info.fileName, true); }); Debug.assert(this.openFiles.has(info.path)); this.assignOrphanScriptInfoToInferredProject(info, this.openFiles.get(info.path)); } Debug.assert(!info.isOrphan()); return { configFileName, configFileErrors, retainProjects }; } findCreateOrReloadConfiguredProject(configFileName, kind, reason, allowDeferredClosed, triggerFile, reloadedProjects, delayLoad, delayReloadedConfiguredProjects, projectForConfigFile) { let project = projectForConfigFile ?? this.findConfiguredProjectByProjectName(configFileName, allowDeferredClosed); let sentConfigFileDiag = false; let configFileExistenceInfo; switch (kind) { case 0: case 1: case 3: if (!project) return; break; case 2: if (!project) return; configFileExistenceInfo = configFileExistenceInfoForOptimizedReplay(project); break; case 4: case 5: project ?? (project = this.createConfiguredProject(configFileName, reason)); if (!delayLoad) { ({ sentConfigFileDiag, configFileExistenceInfo } = updateProjectFoundUsingFind(project, kind, triggerFile)); } break; case 6: project ?? (project = this.createConfiguredProject(configFileName, reloadReason(reason))); project.projectService.reloadConfiguredProjectOptimized(project, reason, reloadedProjects); configFileExistenceInfo = configFileExistenceInfoForOptimizedLoading(project); if (configFileExistenceInfo) break; case 7: project ?? (project = this.createConfiguredProject(configFileName, reloadReason(reason))); sentConfigFileDiag = !delayReloadedConfiguredProjects && this.reloadConfiguredProjectClearingSemanticCache(project, reason, reloadedProjects); if (delayReloadedConfiguredProjects && !delayReloadedConfiguredProjects.has(project) && !reloadedProjects.has(project)) { this.setProjectForReload(project, 2, reason); delayReloadedConfiguredProjects.add(project); } break; default: Debug.assertNever(kind); } return { project, sentConfigFileDiag, configFileExistenceInfo, reason }; } tryFindDefaultConfiguredProjectForOpenScriptInfo(info, kind, allowDeferredClosed, reloadedProjects) { const configFileName = this.getConfigFileNameForFile(info, kind <= 3); if (!configFileName) return; const optimizedKind = toConfiguredProjectLoadOptimized(kind); const result = this.findCreateOrReloadConfiguredProject(configFileName, optimizedKind, fileOpenReason(info), allowDeferredClosed, info.fileName, reloadedProjects); return result && this.tryFindDefaultConfiguredProjectForOpenScriptInfoOrClosedFileInfo(info, kind, result, (project) => `Creating project referenced in solution ${project.projectName} to find possible configured project for ${info.fileName} to open`, allowDeferredClosed, reloadedProjects); } isMatchedByConfig(configFileName, config, info) { if (config.fileNames.some((rootName) => this.toPath(rootName) === info.path)) return true; if (isSupportedSourceFileName(info.fileName, config.options, this.hostConfiguration.extraFileExtensions)) return false; const { validatedFilesSpec, validatedIncludeSpecs, validatedExcludeSpecs } = config.options.configFile.configFileSpecs; const basePath = toNormalizedPath(getNormalizedAbsolutePath(getDirectoryPath(configFileName), this.currentDirectory)); if (validatedFilesSpec == null ? undefined : validatedFilesSpec.some((fileSpec) => this.toPath(getNormalizedAbsolutePath(fileSpec, basePath)) === info.path)) return true; if (!(validatedIncludeSpecs == null ? undefined : validatedIncludeSpecs.length)) return false; if (matchesExcludeWorker(info.fileName, validatedExcludeSpecs, this.host.useCaseSensitiveFileNames, this.currentDirectory, basePath)) return false; return validatedIncludeSpecs == null ? undefined : validatedIncludeSpecs.some((includeSpec) => { const pattern = getPatternFromSpec(includeSpec, basePath, "files"); return !!pattern && getRegexFromPattern(`(${pattern})$`, this.host.useCaseSensitiveFileNames).test(info.fileName); }); } tryFindDefaultConfiguredProjectForOpenScriptInfoOrClosedFileInfo(info, kind, initialConfigResult, referencedProjectReason, allowDeferredClosed, reloadedProjects) { const infoIsOpenScriptInfo = isOpenScriptInfo(info); const optimizedKind = toConfiguredProjectLoadOptimized(kind); const seenProjects = /* @__PURE__ */ new Map; let seenConfigs; const sentConfigDiag = /* @__PURE__ */ new Set; let defaultProject; let possiblyDefault; let tsconfigOfDefault; let tsconfigOfPossiblyDefault; tryFindDefaultConfiguredProject(initialConfigResult); return { defaultProject: defaultProject ?? possiblyDefault, tsconfigProject: tsconfigOfDefault ?? tsconfigOfPossiblyDefault, sentConfigDiag, seenProjects, seenConfigs }; function tryFindDefaultConfiguredProject(result) { return isDefaultProjectOptimized(result, result.project) ?? tryFindDefaultConfiguredProjectFromReferences(result.project) ?? tryFindDefaultConfiguredProjectFromAncestor(result.project); } function isDefaultConfigFileExistenceInfo(configFileExistenceInfo, project, childConfigName, reason, tsconfigProject, canonicalConfigFilePath) { if (project) { if (seenProjects.has(project)) return; seenProjects.set(project, optimizedKind); } else { if (seenConfigs == null ? undefined : seenConfigs.has(canonicalConfigFilePath)) return; (seenConfigs ?? (seenConfigs = /* @__PURE__ */ new Set)).add(canonicalConfigFilePath); } if (!tsconfigProject.projectService.isMatchedByConfig(childConfigName, configFileExistenceInfo.config.parsedCommandLine, info)) { if (tsconfigProject.languageServiceEnabled) { tsconfigProject.projectService.watchWildcards(childConfigName, configFileExistenceInfo, tsconfigProject); } return; } const result = project ? updateProjectFoundUsingFind(project, kind, info.fileName, reason, reloadedProjects) : tsconfigProject.projectService.findCreateOrReloadConfiguredProject(childConfigName, kind, reason, allowDeferredClosed, info.fileName, reloadedProjects); if (!result) { Debug.assert(kind === 3); return; } seenProjects.set(result.project, optimizedKind); if (result.sentConfigFileDiag) sentConfigDiag.add(result.project); return isDefaultProject(result.project, tsconfigProject); } function isDefaultProject(project, tsconfigProject) { if (seenProjects.get(project) === kind) return; seenProjects.set(project, kind); const scriptInfo = infoIsOpenScriptInfo ? info : project.projectService.getScriptInfo(info.fileName); const projectWithInfo = scriptInfo && project.containsScriptInfo(scriptInfo); if (projectWithInfo && !project.isSourceOfProjectReferenceRedirect(scriptInfo.path)) { tsconfigOfDefault = tsconfigProject; return defaultProject = project; } if (!possiblyDefault && infoIsOpenScriptInfo && projectWithInfo) { tsconfigOfPossiblyDefault = tsconfigProject; possiblyDefault = project; } } function isDefaultProjectOptimized(result, tsconfigProject) { if (result.sentConfigFileDiag) sentConfigDiag.add(result.project); return result.configFileExistenceInfo ? isDefaultConfigFileExistenceInfo(result.configFileExistenceInfo, result.project, toNormalizedPath(result.project.getConfigFilePath()), result.reason, result.project, result.project.canonicalConfigFilePath) : isDefaultProject(result.project, tsconfigProject); } function tryFindDefaultConfiguredProjectFromReferences(project) { return project.parsedCommandLine && forEachResolvedProjectReferenceProjectLoad(project, project.parsedCommandLine, isDefaultConfigFileExistenceInfo, optimizedKind, referencedProjectReason(project), allowDeferredClosed, reloadedProjects); } function tryFindDefaultConfiguredProjectFromAncestor(project) { return infoIsOpenScriptInfo ? forEachAncestorProjectLoad(info, project, tryFindDefaultConfiguredProject, optimizedKind, `Creating possible configured project for ${info.fileName} to open`, allowDeferredClosed, reloadedProjects, false) : undefined; } } tryFindDefaultConfiguredProjectAndLoadAncestorsForOpenScriptInfo(info, kind, reloadedProjects, delayReloadedConfiguredProjects) { const allowDeferredClosed = kind === 1; const result = this.tryFindDefaultConfiguredProjectForOpenScriptInfo(info, kind, allowDeferredClosed, reloadedProjects); if (!result) return; const { defaultProject, tsconfigProject, seenProjects } = result; if (defaultProject) { forEachAncestorProjectLoad(info, tsconfigProject, (ancestor) => { seenProjects.set(ancestor.project, kind); }, kind, `Creating project possibly referencing default composite project ${defaultProject.getProjectName()} of open file ${info.fileName}`, allowDeferredClosed, reloadedProjects, true, delayReloadedConfiguredProjects); } return result; } loadAncestorProjectTree(forProjects) { forProjects ?? (forProjects = new Set(mapDefinedIterator(this.configuredProjects.entries(), ([key, project]) => !project.initialLoadPending ? key : undefined))); const seenProjects = /* @__PURE__ */ new Set; const currentConfiguredProjects = arrayFrom(this.configuredProjects.values()); for (const project of currentConfiguredProjects) { if (forEachPotentialProjectReference(project, (potentialRefPath) => forProjects.has(potentialRefPath))) { updateProjectIfDirty(project); } this.ensureProjectChildren(project, forProjects, seenProjects); } } ensureProjectChildren(project, forProjects, seenProjects) { var _a; if (!tryAddToSet(seenProjects, project.canonicalConfigFilePath)) return; if (project.getCompilerOptions().disableReferencedProjectLoad) return; const children = (_a = project.getCurrentProgram()) == null ? undefined : _a.getResolvedProjectReferences(); if (!children) return; for (const child of children) { if (!child) continue; const referencedProject = forEachResolvedProjectReference(child.references, (ref) => forProjects.has(ref.sourceFile.path) ? ref : undefined); if (!referencedProject) continue; const configFileName = toNormalizedPath(child.sourceFile.fileName); const childProject = this.findConfiguredProjectByProjectName(configFileName) ?? this.createConfiguredProject(configFileName, `Creating project referenced by : ${project.projectName} as it references project ${referencedProject.sourceFile.fileName}`); updateProjectIfDirty(childProject); this.ensureProjectChildren(childProject, forProjects, seenProjects); } } cleanupConfiguredProjects(toRetainConfiguredProjects, externalProjectsRetainingConfiguredProjects, openFilesWithRetainedConfiguredProject) { this.getOrphanConfiguredProjects(toRetainConfiguredProjects, openFilesWithRetainedConfiguredProject, externalProjectsRetainingConfiguredProjects).forEach((project) => this.removeProject(project)); } cleanupProjectsAndScriptInfos(toRetainConfiguredProjects, openFilesWithRetainedConfiguredProject, externalProjectsRetainingConfiguredProjects) { this.cleanupConfiguredProjects(toRetainConfiguredProjects, externalProjectsRetainingConfiguredProjects, openFilesWithRetainedConfiguredProject); for (const inferredProject of this.inferredProjects.slice()) { if (inferredProject.isOrphan()) { this.removeProject(inferredProject); } } this.removeOrphanScriptInfos(); } tryInvokeWildCardDirectories(info) { this.configFileExistenceInfoCache.forEach((configFileExistenceInfo, config) => { var _a, _b; if (!((_a = configFileExistenceInfo.config) == null ? undefined : _a.parsedCommandLine) || contains(configFileExistenceInfo.config.parsedCommandLine.fileNames, info.fileName, !this.host.useCaseSensitiveFileNames ? equateStringsCaseInsensitive : equateStringsCaseSensitive)) { return; } (_b = configFileExistenceInfo.config.watchedDirectories) == null || _b.forEach((watcher, directory) => { if (containsPath(directory, info.fileName, !this.host.useCaseSensitiveFileNames)) { this.logger.info(`Invoking ${config}:: wildcard for open scriptInfo:: ${info.fileName}`); this.onWildCardDirectoryWatcherInvoke(directory, config, configFileExistenceInfo.config, watcher.watcher, info.fileName); } }); }); } openClientFileWithNormalizedPath(fileName, fileContent, scriptKind, hasMixedContent, projectRootPath) { const existing = this.getScriptInfoForPath(normalizedPathToPath(fileName, projectRootPath ? this.getNormalizedAbsolutePath(projectRootPath) : this.currentDirectory, this.toCanonicalFileName)); const info = this.getOrCreateOpenScriptInfo(fileName, fileContent, scriptKind, hasMixedContent, projectRootPath); if (!existing && info && !info.isDynamic) this.tryInvokeWildCardDirectories(info); const { retainProjects, ...result } = this.assignProjectToOpenedScriptInfo(info); this.cleanupProjectsAndScriptInfos(retainProjects, /* @__PURE__ */ new Set([info.path]), undefined); this.telemetryOnOpenFile(info); this.printProjects(); return result; } getOrphanConfiguredProjects(toRetainConfiguredProjects, openFilesWithRetainedConfiguredProject, externalProjectsRetainingConfiguredProjects) { const toRemoveConfiguredProjects = new Set(this.configuredProjects.values()); const markOriginalProjectsAsUsed = (project) => { if (project.originalConfiguredProjects && (isConfiguredProject(project) || !project.isOrphan())) { project.originalConfiguredProjects.forEach((_value, configuredProjectPath) => { const project2 = this.getConfiguredProjectByCanonicalConfigFilePath(configuredProjectPath); return project2 && retainConfiguredProject(project2); }); } }; toRetainConfiguredProjects == null || toRetainConfiguredProjects.forEach((_, project) => retainConfiguredProject(project)); if (!toRemoveConfiguredProjects.size) return toRemoveConfiguredProjects; this.inferredProjects.forEach(markOriginalProjectsAsUsed); this.externalProjects.forEach(markOriginalProjectsAsUsed); this.externalProjectToConfiguredProjectMap.forEach((projects, externalProjectName) => { if (!(externalProjectsRetainingConfiguredProjects == null ? undefined : externalProjectsRetainingConfiguredProjects.has(externalProjectName))) { projects.forEach(retainConfiguredProject); } }); if (!toRemoveConfiguredProjects.size) return toRemoveConfiguredProjects; forEachEntry(this.openFiles, (_projectRootPath, path) => { if (openFilesWithRetainedConfiguredProject == null ? undefined : openFilesWithRetainedConfiguredProject.has(path)) return; const info = this.getScriptInfoForPath(path); if (find(info.containingProjects, isExternalProject)) return; const result = this.tryFindDefaultConfiguredProjectAndLoadAncestorsForOpenScriptInfo(info, 1); if (result == null ? undefined : result.defaultProject) { result == null || result.seenProjects.forEach((_, project) => retainConfiguredProject(project)); if (!toRemoveConfiguredProjects.size) return toRemoveConfiguredProjects; } }); if (!toRemoveConfiguredProjects.size) return toRemoveConfiguredProjects; forEachEntry(this.configuredProjects, (project) => { if (toRemoveConfiguredProjects.has(project)) { if (isPendingUpdate(project) || forEachReferencedProject(project, isRetained)) { retainConfiguredProject(project); if (!toRemoveConfiguredProjects.size) return toRemoveConfiguredProjects; } } }); return toRemoveConfiguredProjects; function isRetained(project) { return !toRemoveConfiguredProjects.has(project) || isPendingUpdate(project); } function isPendingUpdate(project) { var _a, _b; return (project.deferredClose || project.projectService.hasPendingProjectUpdate(project)) && !!((_b = (_a = project.projectService.configFileExistenceInfoCache.get(project.canonicalConfigFilePath)) == null ? undefined : _a.openFilesImpactedByConfigFile) == null ? undefined : _b.size); } function retainConfiguredProject(project) { if (!toRemoveConfiguredProjects.delete(project)) return; markOriginalProjectsAsUsed(project); forEachReferencedProject(project, retainConfiguredProject); } } removeOrphanScriptInfos() { const toRemoveScriptInfos = new Map(this.filenameToScriptInfo); this.filenameToScriptInfo.forEach((info) => { if (info.deferredDelete) return; if (!info.isScriptOpen() && info.isOrphan() && !scriptInfoIsContainedByDeferredClosedProject(info) && !scriptInfoIsContainedByBackgroundProject(info)) { if (!info.sourceMapFilePath) return; let sourceInfos; if (isString(info.sourceMapFilePath)) { const sourceMapInfo = this.filenameToScriptInfo.get(info.sourceMapFilePath); sourceInfos = sourceMapInfo == null ? undefined : sourceMapInfo.sourceInfos; } else { sourceInfos = info.sourceMapFilePath.sourceInfos; } if (!sourceInfos) return; if (!forEachKey(sourceInfos, (path) => { const info2 = this.getScriptInfoForPath(path); return !!info2 && (info2.isScriptOpen() || !info2.isOrphan()); })) { return; } } toRemoveScriptInfos.delete(info.path); if (info.sourceMapFilePath) { let sourceInfos; if (isString(info.sourceMapFilePath)) { const sourceMapInfo = this.filenameToScriptInfo.get(info.sourceMapFilePath); if (sourceMapInfo == null ? undefined : sourceMapInfo.deferredDelete) { info.sourceMapFilePath = { watcher: this.addMissingSourceMapFile(sourceMapInfo.fileName, info.path), sourceInfos: sourceMapInfo.sourceInfos }; } else { toRemoveScriptInfos.delete(info.sourceMapFilePath); } sourceInfos = sourceMapInfo == null ? undefined : sourceMapInfo.sourceInfos; } else { sourceInfos = info.sourceMapFilePath.sourceInfos; } if (sourceInfos) { sourceInfos.forEach((_value, path) => toRemoveScriptInfos.delete(path)); } } }); toRemoveScriptInfos.forEach((info) => this.deleteScriptInfo(info)); } telemetryOnOpenFile(scriptInfo) { if (this.serverMode !== 0 || !this.eventHandler || !scriptInfo.isJavaScript() || !addToSeen(this.allJsFilesForOpenFileTelemetry, scriptInfo.path)) { return; } const project = this.ensureDefaultProjectForFile(scriptInfo); if (!project.languageServiceEnabled) { return; } const sourceFile = project.getSourceFile(scriptInfo.path); const checkJs = !!sourceFile && !!sourceFile.checkJsDirective; this.eventHandler({ eventName: OpenFileInfoTelemetryEvent, data: { info: { checkJs } } }); } closeClientFile(uncheckedFileName, skipAssignOrphanScriptInfosToInferredProject) { const info = this.getScriptInfoForNormalizedPath(toNormalizedPath(uncheckedFileName)); const result = info ? this.closeOpenFile(info, skipAssignOrphanScriptInfosToInferredProject) : false; if (!skipAssignOrphanScriptInfosToInferredProject) { this.printProjects(); } return result; } collectChanges(lastKnownProjectVersions, currentProjects, includeProjectReferenceRedirectInfo, result) { for (const proj of currentProjects) { const knownProject = find(lastKnownProjectVersions, (p) => p.projectName === proj.getProjectName()); result.push(proj.getChangesSinceVersion(knownProject && knownProject.version, includeProjectReferenceRedirectInfo)); } } synchronizeProjectList(knownProjects, includeProjectReferenceRedirectInfo) { const files = []; this.collectChanges(knownProjects, this.externalProjects, includeProjectReferenceRedirectInfo, files); this.collectChanges(knownProjects, mapDefinedIterator(this.configuredProjects.values(), (p) => p.deferredClose ? undefined : p), includeProjectReferenceRedirectInfo, files); this.collectChanges(knownProjects, this.inferredProjects, includeProjectReferenceRedirectInfo, files); return files; } applyChangesInOpenFiles(openFiles, changedFiles, closedFiles) { let existingOpenScriptInfos; let openScriptInfos; let assignOrphanScriptInfosToInferredProject = false; if (openFiles) { for (const file of openFiles) { (existingOpenScriptInfos ?? (existingOpenScriptInfos = [])).push(this.getScriptInfoForPath(normalizedPathToPath(toNormalizedPath(file.fileName), file.projectRootPath ? this.getNormalizedAbsolutePath(file.projectRootPath) : this.currentDirectory, this.toCanonicalFileName))); const info = this.getOrCreateOpenScriptInfo(toNormalizedPath(file.fileName), file.content, tryConvertScriptKindName(file.scriptKind), file.hasMixedContent, file.projectRootPath ? toNormalizedPath(file.projectRootPath) : undefined); (openScriptInfos || (openScriptInfos = [])).push(info); } } if (changedFiles) { for (const file of changedFiles) { const scriptInfo = this.getScriptInfo(file.fileName); Debug.assert(!!scriptInfo); this.applyChangesToFile(scriptInfo, file.changes); } } if (closedFiles) { for (const file of closedFiles) { assignOrphanScriptInfosToInferredProject = this.closeClientFile(file, true) || assignOrphanScriptInfosToInferredProject; } } let retainProjects; forEach(existingOpenScriptInfos, (existing, index) => !existing && openScriptInfos[index] && !openScriptInfos[index].isDynamic ? this.tryInvokeWildCardDirectories(openScriptInfos[index]) : undefined); openScriptInfos == null || openScriptInfos.forEach((info) => { var _a; return (_a = this.assignProjectToOpenedScriptInfo(info).retainProjects) == null ? undefined : _a.forEach((kind, p) => (retainProjects ?? (retainProjects = /* @__PURE__ */ new Map)).set(p, kind)); }); if (assignOrphanScriptInfosToInferredProject) { this.assignOrphanScriptInfosToInferredProject(); } if (openScriptInfos) { this.cleanupProjectsAndScriptInfos(retainProjects, new Set(openScriptInfos.map((info) => info.path)), undefined); openScriptInfos.forEach((info) => this.telemetryOnOpenFile(info)); this.printProjects(); } else if (length(closedFiles)) { this.printProjects(); } } applyChangesToFile(scriptInfo, changes) { for (const change of changes) { scriptInfo.editContent(change.span.start, change.span.start + change.span.length, change.newText); } } closeExternalProject(uncheckedFileName, cleanupAfter) { const fileName = toNormalizedPath(uncheckedFileName); const projects = this.externalProjectToConfiguredProjectMap.get(fileName); if (projects) { this.externalProjectToConfiguredProjectMap.delete(fileName); } else { const externalProject = this.findExternalProjectByProjectName(uncheckedFileName); if (externalProject) { this.removeProject(externalProject); } } if (cleanupAfter) { this.cleanupConfiguredProjects(); this.printProjects(); } } openExternalProjects(projects) { const projectsToClose = new Set(this.externalProjects.map((p) => p.getProjectName())); this.externalProjectToConfiguredProjectMap.forEach((_, externalProjectName) => projectsToClose.add(externalProjectName)); for (const externalProject of projects) { this.openExternalProject(externalProject, false); projectsToClose.delete(externalProject.projectFileName); } projectsToClose.forEach((externalProjectName) => this.closeExternalProject(externalProjectName, false)); this.cleanupConfiguredProjects(); this.printProjects(); } static escapeFilenameForRegex(filename) { return filename.replace(this.filenameEscapeRegexp, "\\$&"); } resetSafeList() { this.safelist = defaultTypeSafeList; } applySafeList(proj) { const typeAcquisition = proj.typeAcquisition; Debug.assert(!!typeAcquisition, "proj.typeAcquisition should be set by now"); const result = this.applySafeListWorker(proj, proj.rootFiles, typeAcquisition); return (result == null ? undefined : result.excludedFiles) ?? []; } applySafeListWorker(proj, rootFiles, typeAcquisition) { if (typeAcquisition.enable === false || typeAcquisition.disableFilenameBasedTypeAcquisition) { return; } const typeAcqInclude = typeAcquisition.include || (typeAcquisition.include = []); const excludeRules = []; const normalizedNames = rootFiles.map((f) => normalizeSlashes(f.fileName)); for (const name of Object.keys(this.safelist)) { const rule2 = this.safelist[name]; for (const root of normalizedNames) { if (rule2.match.test(root)) { this.logger.info(`Excluding files based on rule ${name} matching file '${root}'`); if (rule2.types) { for (const type of rule2.types) { if (!typeAcqInclude.includes(type)) { typeAcqInclude.push(type); } } } if (rule2.exclude) { for (const exclude of rule2.exclude) { const processedRule = root.replace(rule2.match, (...groups) => { return exclude.map((groupNumberOrString) => { if (typeof groupNumberOrString === "number") { if (!isString(groups[groupNumberOrString])) { this.logger.info(`Incorrect RegExp specification in safelist rule ${name} - not enough groups`); return "\\*"; } return _ProjectService2.escapeFilenameForRegex(groups[groupNumberOrString]); } return groupNumberOrString; }).join(""); }); if (!excludeRules.includes(processedRule)) { excludeRules.push(processedRule); } } } else { const escaped = _ProjectService2.escapeFilenameForRegex(root); if (!excludeRules.includes(escaped)) { excludeRules.push(escaped); } } } } } const excludeRegexes = excludeRules.map((e) => new RegExp(e, "i")); let filesToKeep; let excludedFiles; for (let i = 0;i < rootFiles.length; i++) { if (excludeRegexes.some((re) => re.test(normalizedNames[i]))) { addExcludedFile(i); } else { if (typeAcquisition.enable) { const baseName = getBaseFileName(toFileNameLowerCase(normalizedNames[i])); if (fileExtensionIs(baseName, "js")) { const inferredTypingName = removeFileExtension(baseName); const cleanedTypingName = removeMinAndVersionNumbers(inferredTypingName); const typeName = this.legacySafelist.get(cleanedTypingName); if (typeName !== undefined) { this.logger.info(`Excluded '${normalizedNames[i]}' because it matched ${cleanedTypingName} from the legacy safelist`); addExcludedFile(i); if (!typeAcqInclude.includes(typeName)) { typeAcqInclude.push(typeName); } continue; } } } if (/^.+[.-]min\.js$/.test(normalizedNames[i])) { addExcludedFile(i); } else { filesToKeep == null || filesToKeep.push(rootFiles[i]); } } } return excludedFiles ? { rootFiles: filesToKeep, excludedFiles } : undefined; function addExcludedFile(index) { if (!excludedFiles) { Debug.assert(!filesToKeep); filesToKeep = rootFiles.slice(0, index); excludedFiles = []; } excludedFiles.push(normalizedNames[index]); } } openExternalProject(proj, cleanupAfter) { const existingExternalProject = this.findExternalProjectByProjectName(proj.projectFileName); let configuredProjects; let rootFiles = []; for (const file of proj.rootFiles) { const normalized = toNormalizedPath(file.fileName); if (getBaseConfigFileName(normalized)) { if (this.serverMode === 0 && this.host.fileExists(normalized)) { let project = this.findConfiguredProjectByProjectName(normalized); if (!project) { project = this.createConfiguredProject(normalized, `Creating configured project in external project: ${proj.projectFileName}`); if (!this.getHostPreferences().lazyConfiguredProjectsFromExternalProject) project.updateGraph(); } (configuredProjects ?? (configuredProjects = /* @__PURE__ */ new Set)).add(project); Debug.assert(!project.isClosed()); } } else { rootFiles.push(file); } } if (configuredProjects) { this.externalProjectToConfiguredProjectMap.set(proj.projectFileName, configuredProjects); if (existingExternalProject) this.removeProject(existingExternalProject); } else { this.externalProjectToConfiguredProjectMap.delete(proj.projectFileName); const typeAcquisition = proj.typeAcquisition || {}; typeAcquisition.include = typeAcquisition.include || []; typeAcquisition.exclude = typeAcquisition.exclude || []; if (typeAcquisition.enable === undefined) { typeAcquisition.enable = hasNoTypeScriptSource(rootFiles.map((f) => f.fileName)); } const excludeResult = this.applySafeListWorker(proj, rootFiles, typeAcquisition); const excludedFiles = (excludeResult == null ? undefined : excludeResult.excludedFiles) ?? []; rootFiles = (excludeResult == null ? undefined : excludeResult.rootFiles) ?? rootFiles; if (existingExternalProject) { existingExternalProject.excludedFiles = excludedFiles; const compilerOptions = convertCompilerOptions(proj.options); const watchOptionsAndErrors = convertWatchOptions(proj.options, existingExternalProject.getCurrentDirectory()); const lastFileExceededProgramSize = this.getFilenameForExceededTotalSizeLimitForNonTsFiles(proj.projectFileName, compilerOptions, rootFiles, externalFilePropertyReader); if (lastFileExceededProgramSize) { existingExternalProject.disableLanguageService(lastFileExceededProgramSize); } else { existingExternalProject.enableLanguageService(); } existingExternalProject.setProjectErrors(watchOptionsAndErrors == null ? undefined : watchOptionsAndErrors.errors); this.updateRootAndOptionsOfNonInferredProject(existingExternalProject, rootFiles, externalFilePropertyReader, compilerOptions, typeAcquisition, proj.options.compileOnSave, watchOptionsAndErrors == null ? undefined : watchOptionsAndErrors.watchOptions); existingExternalProject.updateGraph(); } else { const project = this.createExternalProject(proj.projectFileName, rootFiles, proj.options, typeAcquisition, excludedFiles); project.updateGraph(); } } if (cleanupAfter) { this.cleanupConfiguredProjects(configuredProjects, /* @__PURE__ */ new Set([proj.projectFileName])); this.printProjects(); } } hasDeferredExtension() { for (const extension of this.hostConfiguration.extraFileExtensions) { if (extension.scriptKind === 7) { return true; } } return false; } requestEnablePlugin(project, pluginConfigEntry, searchPaths) { if (!this.host.importPlugin && !this.host.require) { this.logger.info("Plugins were requested but not running in environment that supports 'require'. Nothing will be loaded"); return; } this.logger.info(`Enabling plugin ${pluginConfigEntry.name} from candidate paths: ${searchPaths.join(",")}`); if (!pluginConfigEntry.name || isExternalModuleNameRelative(pluginConfigEntry.name) || /[\\/]\.\.?(?:$|[\\/])/.test(pluginConfigEntry.name)) { this.logger.info(`Skipped loading plugin ${pluginConfigEntry.name || JSON.stringify(pluginConfigEntry)} because only package name is allowed plugin name`); return; } if (this.host.importPlugin) { const importPromise = Project2.importServicePluginAsync(pluginConfigEntry, searchPaths, this.host, (s) => this.logger.info(s)); this.pendingPluginEnablements ?? (this.pendingPluginEnablements = /* @__PURE__ */ new Map); let promises = this.pendingPluginEnablements.get(project); if (!promises) this.pendingPluginEnablements.set(project, promises = []); promises.push(importPromise); return; } this.endEnablePlugin(project, Project2.importServicePluginSync(pluginConfigEntry, searchPaths, this.host, (s) => this.logger.info(s))); } endEnablePlugin(project, { pluginConfigEntry, resolvedModule, errorLogs }) { var _a; if (resolvedModule) { const configurationOverride = (_a = this.currentPluginConfigOverrides) == null ? undefined : _a.get(pluginConfigEntry.name); if (configurationOverride) { const pluginName = pluginConfigEntry.name; pluginConfigEntry = configurationOverride; pluginConfigEntry.name = pluginName; } project.enableProxy(resolvedModule, pluginConfigEntry); } else { forEach(errorLogs, (message) => this.logger.info(message)); this.logger.info(`Couldn't find ${pluginConfigEntry.name}`); } } hasNewPluginEnablementRequests() { return !!this.pendingPluginEnablements; } hasPendingPluginEnablements() { return !!this.currentPluginEnablementPromise; } async waitForPendingPlugins() { while (this.currentPluginEnablementPromise) { await this.currentPluginEnablementPromise; } } enableRequestedPlugins() { if (this.pendingPluginEnablements) { this.enableRequestedPluginsAsync(); } } async enableRequestedPluginsAsync() { if (this.currentPluginEnablementPromise) { await this.waitForPendingPlugins(); } if (!this.pendingPluginEnablements) { return; } const entries = arrayFrom(this.pendingPluginEnablements.entries()); this.pendingPluginEnablements = undefined; this.currentPluginEnablementPromise = this.enableRequestedPluginsWorker(entries); await this.currentPluginEnablementPromise; } async enableRequestedPluginsWorker(pendingPlugins) { Debug.assert(this.currentPluginEnablementPromise === undefined); let sendProjectsUpdatedInBackgroundEvent = false; await Promise.all(map(pendingPlugins, async ([project, promises]) => { const results = await Promise.all(promises); if (project.isClosed() || isProjectDeferredClose(project)) { this.logger.info(`Cancelling plugin enabling for ${project.getProjectName()} as it is ${project.isClosed() ? "closed" : "deferred close"}`); return; } sendProjectsUpdatedInBackgroundEvent = true; for (const result of results) { this.endEnablePlugin(project, result); } this.delayUpdateProjectGraph(project); })); this.currentPluginEnablementPromise = undefined; if (sendProjectsUpdatedInBackgroundEvent) this.sendProjectsUpdatedInBackgroundEvent(); } configurePlugin(args) { this.forEachEnabledProject((project) => project.onPluginConfigurationChanged(args.pluginName, args.configuration)); this.currentPluginConfigOverrides = this.currentPluginConfigOverrides || /* @__PURE__ */ new Map; this.currentPluginConfigOverrides.set(args.pluginName, args.configuration); } getPackageJsonsVisibleToFile(fileName, project, rootDir) { const packageJsonCache = this.packageJsonCache; const rootPath = rootDir && this.toPath(rootDir); const result = []; const processDirectory = (directory) => { switch (packageJsonCache.directoryHasPackageJson(directory)) { case 3: packageJsonCache.searchDirectoryAndAncestors(directory, project); return processDirectory(directory); case -1: const packageJsonFileName = combinePaths(directory, "package.json"); this.watchPackageJsonFile(packageJsonFileName, this.toPath(packageJsonFileName), project); const info = packageJsonCache.getInDirectory(directory); if (info) result.push(info); } if (rootPath && rootPath === directory) { return true; } }; forEachAncestorDirectoryStoppingAtGlobalCache(project, getDirectoryPath(fileName), processDirectory); return result; } getNearestAncestorDirectoryWithPackageJson(fileName, project) { return forEachAncestorDirectoryStoppingAtGlobalCache(project, fileName, (directory) => { switch (this.packageJsonCache.directoryHasPackageJson(directory)) { case -1: return directory; case 0: return; case 3: return this.host.fileExists(combinePaths(directory, "package.json")) ? directory : undefined; } }); } watchPackageJsonFile(file, path, project) { Debug.assert(project !== undefined); let result = (this.packageJsonFilesMap ?? (this.packageJsonFilesMap = /* @__PURE__ */ new Map)).get(path); if (!result) { let watcher = this.watchFactory.watchFile(file, (fileName, eventKind) => { switch (eventKind) { case 0: case 1: this.packageJsonCache.addOrUpdate(fileName, path); this.onPackageJsonChange(result); break; case 2: this.packageJsonCache.delete(path); this.onPackageJsonChange(result); result.projects.clear(); result.close(); } }, 250, this.hostConfiguration.watchOptions, WatchType.PackageJson); result = { projects: /* @__PURE__ */ new Set, close: () => { var _a; if (result.projects.size || !watcher) return; watcher.close(); watcher = undefined; (_a = this.packageJsonFilesMap) == null || _a.delete(path); this.packageJsonCache.invalidate(path); } }; this.packageJsonFilesMap.set(path, result); } result.projects.add(project); (project.packageJsonWatches ?? (project.packageJsonWatches = /* @__PURE__ */ new Set)).add(result); } onPackageJsonChange(result) { result.projects.forEach((project) => { var _a; return (_a = project.onPackageJsonChange) == null ? undefined : _a.call(project); }); } includePackageJsonAutoImports() { switch (this.hostConfiguration.preferences.includePackageJsonAutoImports) { case "on": return 1; case "off": return 0; default: return 2; } } getIncompleteCompletionsCache() { return this.incompleteCompletionsCache || (this.incompleteCompletionsCache = createIncompleteCompletionsCache()); } }; _ProjectService.filenameEscapeRegexp = /[-/\\^$*+?.()|[\]{}]/g; var ProjectService2 = _ProjectService; function createIncompleteCompletionsCache() { let info; return { get() { return info; }, set(newInfo) { info = newInfo; }, clear() { info = undefined; } }; } function isConfigFile(config) { return config.kind !== undefined; } function printProjectWithoutFileNames(project) { project.print(false, false, false); } function createModuleSpecifierCache(host) { let containedNodeModulesWatchers; let cache; let currentKey; const result = { get(fromFileName, toFileName2, preferences, options) { if (!cache || currentKey !== key(fromFileName, preferences, options)) return; return cache.get(toFileName2); }, set(fromFileName, toFileName2, preferences, options, kind, modulePaths, moduleSpecifiers2) { ensureCache(fromFileName, preferences, options).set(toFileName2, createInfo(kind, modulePaths, moduleSpecifiers2, undefined, false)); if (moduleSpecifiers2) { for (const p of modulePaths) { if (p.isInNodeModules) { const nodeModulesPath = p.path.substring(0, p.path.indexOf(nodeModulesPathPart) + nodeModulesPathPart.length - 1); const key2 = host.toPath(nodeModulesPath); if (!(containedNodeModulesWatchers == null ? undefined : containedNodeModulesWatchers.has(key2))) { (containedNodeModulesWatchers || (containedNodeModulesWatchers = /* @__PURE__ */ new Map)).set(key2, host.watchNodeModulesForPackageJsonChanges(nodeModulesPath)); } } } } }, setModulePaths(fromFileName, toFileName2, preferences, options, modulePaths) { const cache2 = ensureCache(fromFileName, preferences, options); const info = cache2.get(toFileName2); if (info) { info.modulePaths = modulePaths; } else { cache2.set(toFileName2, createInfo(undefined, modulePaths, undefined, undefined, undefined)); } }, setBlockedByPackageJsonDependencies(fromFileName, toFileName2, preferences, options, packageName, isBlockedByPackageJsonDependencies) { const cache2 = ensureCache(fromFileName, preferences, options); const info = cache2.get(toFileName2); if (info) { info.isBlockedByPackageJsonDependencies = isBlockedByPackageJsonDependencies; info.packageName = packageName; } else { cache2.set(toFileName2, createInfo(undefined, undefined, undefined, packageName, isBlockedByPackageJsonDependencies)); } }, clear() { containedNodeModulesWatchers == null || containedNodeModulesWatchers.forEach(closeFileWatcher); cache == null || cache.clear(); containedNodeModulesWatchers == null || containedNodeModulesWatchers.clear(); currentKey = undefined; }, count() { return cache ? cache.size : 0; } }; if (Debug.isDebugging) { Object.defineProperty(result, "__cache", { get: () => cache }); } return result; function ensureCache(fromFileName, preferences, options) { const newKey = key(fromFileName, preferences, options); if (cache && currentKey !== newKey) { result.clear(); } currentKey = newKey; return cache || (cache = /* @__PURE__ */ new Map); } function key(fromFileName, preferences, options) { return `${fromFileName},${preferences.importModuleSpecifierEnding},${preferences.importModuleSpecifierPreference},${options.overrideImportMode}`; } function createInfo(kind, modulePaths, moduleSpecifiers2, packageName, isBlockedByPackageJsonDependencies) { return { kind, modulePaths, moduleSpecifiers: moduleSpecifiers2, packageName, isBlockedByPackageJsonDependencies }; } } function createPackageJsonCache(host) { const packageJsons = /* @__PURE__ */ new Map; const directoriesWithoutPackageJson = /* @__PURE__ */ new Map; return { addOrUpdate, invalidate, delete: (fileName) => { packageJsons.delete(fileName); directoriesWithoutPackageJson.set(getDirectoryPath(fileName), true); }, getInDirectory: (directory) => { return packageJsons.get(host.toPath(combinePaths(directory, "package.json"))) || undefined; }, directoryHasPackageJson: (directory) => directoryHasPackageJson(host.toPath(directory)), searchDirectoryAndAncestors: (directory, project) => { forEachAncestorDirectoryStoppingAtGlobalCache(project, directory, (ancestor) => { const ancestorPath = host.toPath(ancestor); if (directoryHasPackageJson(ancestorPath) !== 3) { return true; } const packageJsonFileName = combinePaths(ancestor, "package.json"); if (tryFileExists(host, packageJsonFileName)) { addOrUpdate(packageJsonFileName, combinePaths(ancestorPath, "package.json")); } else { directoriesWithoutPackageJson.set(ancestorPath, true); } }); } }; function addOrUpdate(fileName, path) { const packageJsonInfo = Debug.checkDefined(createPackageJsonInfo(fileName, host.host)); packageJsons.set(path, packageJsonInfo); directoriesWithoutPackageJson.delete(getDirectoryPath(path)); } function invalidate(path) { packageJsons.delete(path); directoriesWithoutPackageJson.delete(getDirectoryPath(path)); } function directoryHasPackageJson(directory) { return packageJsons.has(combinePaths(directory, "package.json")) ? -1 : directoriesWithoutPackageJson.has(directory) ? 0 : 3; } } var nullCancellationToken = { isCancellationRequested: () => false, setRequest: () => { return; }, resetRequest: () => { return; } }; function hrTimeToMilliseconds(time) { const seconds = time[0]; const nanoseconds = time[1]; return (1e9 * seconds + nanoseconds) / 1e6; } function isDeclarationFileInJSOnlyNonConfiguredProject(project, file) { if ((isInferredProject(project) || isExternalProject(project)) && project.isJsOnlyProject()) { const scriptInfo = project.getScriptInfoForNormalizedPath(file); return scriptInfo && !scriptInfo.isJavaScript(); } return false; } function dtsChangeCanAffectEmit(compilationSettings) { return getEmitDeclarations(compilationSettings) || !!compilationSettings.emitDecoratorMetadata; } function formatDiag(fileName, project, diag2) { const scriptInfo = project.getScriptInfoForNormalizedPath(fileName); return { start: scriptInfo.positionToLineOffset(diag2.start), end: scriptInfo.positionToLineOffset(diag2.start + diag2.length), text: flattenDiagnosticMessageText(diag2.messageText, ` `), code: diag2.code, category: diagnosticCategoryName(diag2), reportsUnnecessary: diag2.reportsUnnecessary, reportsDeprecated: diag2.reportsDeprecated, source: diag2.source, relatedInformation: map(diag2.relatedInformation, formatRelatedInformation) }; } function formatRelatedInformation(info) { if (!info.file) { return { message: flattenDiagnosticMessageText(info.messageText, ` `), category: diagnosticCategoryName(info), code: info.code }; } return { span: { start: convertToLocation(getLineAndCharacterOfPosition(info.file, info.start)), end: convertToLocation(getLineAndCharacterOfPosition(info.file, info.start + info.length)), file: info.file.fileName }, message: flattenDiagnosticMessageText(info.messageText, ` `), category: diagnosticCategoryName(info), code: info.code }; } function convertToLocation(lineAndCharacter) { return { line: lineAndCharacter.line + 1, offset: lineAndCharacter.character + 1 }; } function formatDiagnosticToProtocol(diag2, includeFileName) { const start = diag2.file && convertToLocation(getLineAndCharacterOfPosition(diag2.file, diag2.start)); const end = diag2.file && convertToLocation(getLineAndCharacterOfPosition(diag2.file, diag2.start + diag2.length)); const text = flattenDiagnosticMessageText(diag2.messageText, ` `); const { code, source } = diag2; const category = diagnosticCategoryName(diag2); const common = { start, end, text, code, category, reportsUnnecessary: diag2.reportsUnnecessary, reportsDeprecated: diag2.reportsDeprecated, source, relatedInformation: map(diag2.relatedInformation, formatRelatedInformation) }; return includeFileName ? { ...common, fileName: diag2.file && diag2.file.fileName } : common; } function allEditsBeforePos(edits, pos) { return edits.every((edit) => textSpanEnd(edit.span) < pos); } var CommandNames = CommandTypes; function formatMessage2(msg, logger, byteLength, newLine) { const verboseLogging = logger.hasLevel(3); const json = JSON.stringify(msg); if (verboseLogging) { logger.info(`${msg.type}:${stringifyIndented(msg)}`); } const len = byteLength(json, "utf8"); return `Content-Length: ${1 + len}\r \r ${json}${newLine}`; } var MultistepOperation = class { constructor(operationHost) { this.operationHost = operationHost; } startNew(action) { this.complete(); this.requestId = this.operationHost.getCurrentRequestId(); this.executeAction(action); } complete() { if (this.requestId !== undefined) { this.operationHost.sendRequestCompletedEvent(this.requestId, this.performanceData); this.requestId = undefined; } this.setTimerHandle(undefined); this.setImmediateId(undefined); this.performanceData = undefined; } immediate(actionType, action) { const requestId = this.requestId; Debug.assert(requestId === this.operationHost.getCurrentRequestId(), "immediate: incorrect request id"); this.setImmediateId(this.operationHost.getServerHost().setImmediate(() => { this.immediateId = undefined; this.operationHost.executeWithRequestId(requestId, () => this.executeAction(action), this.performanceData); }, actionType)); } delay(actionType, ms, action) { const requestId = this.requestId; Debug.assert(requestId === this.operationHost.getCurrentRequestId(), "delay: incorrect request id"); this.setTimerHandle(this.operationHost.getServerHost().setTimeout(() => { this.timerHandle = undefined; this.operationHost.executeWithRequestId(requestId, () => this.executeAction(action), this.performanceData); }, ms, actionType)); } executeAction(action) { var _a, _b, _c, _d, _e, _f; let stop = false; try { if (this.operationHost.isCancellationRequested()) { stop = true; (_a = tracing) == null || _a.instant(tracing.Phase.Session, "stepCanceled", { seq: this.requestId, early: true }); } else { (_b = tracing) == null || _b.push(tracing.Phase.Session, "stepAction", { seq: this.requestId }); action(this); (_c = tracing) == null || _c.pop(); } } catch (e) { (_d = tracing) == null || _d.popAll(); stop = true; if (e instanceof OperationCanceledException) { (_e = tracing) == null || _e.instant(tracing.Phase.Session, "stepCanceled", { seq: this.requestId }); } else { (_f = tracing) == null || _f.instant(tracing.Phase.Session, "stepError", { seq: this.requestId, message: e.message }); this.operationHost.logError(e, `delayed processing of request ${this.requestId}`); } } this.performanceData = this.operationHost.getPerformanceData(); if (stop || !this.hasPendingWork()) { this.complete(); } } setTimerHandle(timerHandle) { if (this.timerHandle !== undefined) { this.operationHost.getServerHost().clearTimeout(this.timerHandle); } this.timerHandle = timerHandle; } setImmediateId(immediateId) { if (this.immediateId !== undefined) { this.operationHost.getServerHost().clearImmediate(this.immediateId); } this.immediateId = immediateId; } hasPendingWork() { return !!this.timerHandle || !!this.immediateId; } }; function toEvent(eventName, body) { return { seq: 0, type: "event", event: eventName, body }; } function combineProjectOutput(defaultValue, getValue, projects, action) { const outputs = flatMapToMutable(isArray(projects) ? projects : projects.projects, (project) => action(project, defaultValue)); if (!isArray(projects) && projects.symLinkedProjects) { projects.symLinkedProjects.forEach((projects2, path) => { const value = getValue(path); outputs.push(...flatMap(projects2, (project) => action(project, value))); }); } return deduplicate(outputs, equateValues); } function createDocumentSpanSet(useCaseSensitiveFileNames2) { return createSet(({ textSpan }) => textSpan.start + 100003 * textSpan.length, getDocumentSpansEqualityComparer(useCaseSensitiveFileNames2)); } function getRenameLocationsWorker(projects, defaultProject, initialLocation, findInStrings, findInComments, preferences, useCaseSensitiveFileNames2) { const perProjectResults = getPerProjectReferences(projects, defaultProject, initialLocation, getDefinitionLocation(defaultProject, initialLocation, true), mapDefinitionInProject, (project, position) => project.getLanguageService().findRenameLocations(position.fileName, position.pos, findInStrings, findInComments, preferences), (renameLocation, cb) => cb(documentSpanLocation(renameLocation))); if (isArray(perProjectResults)) { return perProjectResults; } const results = []; const seen = createDocumentSpanSet(useCaseSensitiveFileNames2); perProjectResults.forEach((projectResults, project) => { for (const result of projectResults) { if (!seen.has(result) && !getMappedLocationForProject(documentSpanLocation(result), project)) { results.push(result); seen.add(result); } } }); return results; } function getDefinitionLocation(defaultProject, initialLocation, isForRename) { const infos = defaultProject.getLanguageService().getDefinitionAtPosition(initialLocation.fileName, initialLocation.pos, false, isForRename); const info = infos && firstOrUndefined(infos); return info && !info.isLocal ? { fileName: info.fileName, pos: info.textSpan.start } : undefined; } function getReferencesWorker(projects, defaultProject, initialLocation, useCaseSensitiveFileNames2, logger) { var _a, _b; const perProjectResults = getPerProjectReferences(projects, defaultProject, initialLocation, getDefinitionLocation(defaultProject, initialLocation, false), mapDefinitionInProject, (project, position) => { logger.info(`Finding references to ${position.fileName} position ${position.pos} in project ${project.getProjectName()}`); return project.getLanguageService().findReferences(position.fileName, position.pos); }, (referencedSymbol, cb) => { cb(documentSpanLocation(referencedSymbol.definition)); for (const ref of referencedSymbol.references) { cb(documentSpanLocation(ref)); } }); if (isArray(perProjectResults)) { return perProjectResults; } const defaultProjectResults = perProjectResults.get(defaultProject); if (((_b = (_a = defaultProjectResults == null ? undefined : defaultProjectResults[0]) == null ? undefined : _a.references[0]) == null ? undefined : _b.isDefinition) === undefined) { perProjectResults.forEach((projectResults) => { for (const referencedSymbol of projectResults) { for (const ref of referencedSymbol.references) { delete ref.isDefinition; } } }); } else { const knownSymbolSpans = createDocumentSpanSet(useCaseSensitiveFileNames2); for (const referencedSymbol of defaultProjectResults) { for (const ref of referencedSymbol.references) { if (ref.isDefinition) { knownSymbolSpans.add(ref); break; } } } const updatedProjects = /* @__PURE__ */ new Set; while (true) { let progress = false; perProjectResults.forEach((referencedSymbols, project) => { if (updatedProjects.has(project)) return; const updated = project.getLanguageService().updateIsDefinitionOfReferencedSymbols(referencedSymbols, knownSymbolSpans); if (updated) { updatedProjects.add(project); progress = true; } }); if (!progress) break; } perProjectResults.forEach((referencedSymbols, project) => { if (updatedProjects.has(project)) return; for (const referencedSymbol of referencedSymbols) { for (const ref of referencedSymbol.references) { ref.isDefinition = false; } } }); } const results = []; const seenRefs = createDocumentSpanSet(useCaseSensitiveFileNames2); perProjectResults.forEach((projectResults, project) => { for (const referencedSymbol of projectResults) { const mappedDefinitionFile = getMappedLocationForProject(documentSpanLocation(referencedSymbol.definition), project); const definition = mappedDefinitionFile === undefined ? referencedSymbol.definition : { ...referencedSymbol.definition, textSpan: createTextSpan(mappedDefinitionFile.pos, referencedSymbol.definition.textSpan.length), fileName: mappedDefinitionFile.fileName, contextSpan: getMappedContextSpanForProject(referencedSymbol.definition, project) }; let symbolToAddTo = find(results, (o) => documentSpansEqual(o.definition, definition, useCaseSensitiveFileNames2)); if (!symbolToAddTo) { symbolToAddTo = { definition, references: [] }; results.push(symbolToAddTo); } for (const ref of referencedSymbol.references) { if (!seenRefs.has(ref) && !getMappedLocationForProject(documentSpanLocation(ref), project)) { seenRefs.add(ref); symbolToAddTo.references.push(ref); } } } }); return results.filter((o) => o.references.length !== 0); } function forEachProjectInProjects(projects, path, cb) { for (const project of isArray(projects) ? projects : projects.projects) { cb(project, path); } if (!isArray(projects) && projects.symLinkedProjects) { projects.symLinkedProjects.forEach((symlinkedProjects, symlinkedPath) => { for (const project of symlinkedProjects) { cb(project, symlinkedPath); } }); } } function getPerProjectReferences(projects, defaultProject, initialLocation, defaultDefinition, mapDefinitionInProject2, getResultsForPosition, forPositionInResult) { const resultsMap = /* @__PURE__ */ new Map; const queue = createQueue(); queue.enqueue({ project: defaultProject, location: initialLocation }); forEachProjectInProjects(projects, initialLocation.fileName, (project, path) => { const location = { fileName: path, pos: initialLocation.pos }; queue.enqueue({ project, location }); }); const projectService = defaultProject.projectService; const cancellationToken = defaultProject.getCancellationToken(); const getGeneratedDefinition = memoize(() => defaultProject.isSourceOfProjectReferenceRedirect(defaultDefinition.fileName) ? defaultDefinition : defaultProject.getLanguageService().getSourceMapper().tryGetGeneratedPosition(defaultDefinition)); const getSourceDefinition = memoize(() => defaultProject.isSourceOfProjectReferenceRedirect(defaultDefinition.fileName) ? defaultDefinition : defaultProject.getLanguageService().getSourceMapper().tryGetSourcePosition(defaultDefinition)); const searchedProjectKeys = /* @__PURE__ */ new Set; onCancellation: while (!queue.isEmpty()) { while (!queue.isEmpty()) { if (cancellationToken.isCancellationRequested()) break onCancellation; const { project, location } = queue.dequeue(); if (resultsMap.has(project)) continue; if (isLocationProjectReferenceRedirect(project, location)) continue; updateProjectIfDirty(project); if (!project.containsFile(toNormalizedPath(location.fileName))) { continue; } const projectResults = searchPosition(project, location); resultsMap.set(project, projectResults ?? emptyArray2); searchedProjectKeys.add(getProjectKey(project)); } if (defaultDefinition) { projectService.loadAncestorProjectTree(searchedProjectKeys); projectService.forEachEnabledProject((project) => { if (cancellationToken.isCancellationRequested()) return; if (resultsMap.has(project)) return; const location = mapDefinitionInProject2(defaultDefinition, project, getGeneratedDefinition, getSourceDefinition); if (location) { queue.enqueue({ project, location }); } }); } } if (resultsMap.size === 1) { return firstIterator(resultsMap.values()); } return resultsMap; function searchPosition(project, location) { const projectResults = getResultsForPosition(project, location); if (!projectResults || !forPositionInResult) return projectResults; for (const result of projectResults) { forPositionInResult(result, (position) => { const originalLocation = projectService.getOriginalLocationEnsuringConfiguredProject(project, position); if (!originalLocation) return; const originalScriptInfo = projectService.getScriptInfo(originalLocation.fileName); for (const project2 of originalScriptInfo.containingProjects) { if (!project2.isOrphan() && !resultsMap.has(project2)) { queue.enqueue({ project: project2, location: originalLocation }); } } const symlinkedProjectsMap = projectService.getSymlinkedProjects(originalScriptInfo); if (symlinkedProjectsMap) { symlinkedProjectsMap.forEach((symlinkedProjects, symlinkedPath) => { for (const symlinkedProject of symlinkedProjects) { if (!symlinkedProject.isOrphan() && !resultsMap.has(symlinkedProject)) { queue.enqueue({ project: symlinkedProject, location: { fileName: symlinkedPath, pos: originalLocation.pos } }); } } }); } }); } return projectResults; } } function mapDefinitionInProjectIfFileInProject(definition, project) { if (project.containsFile(toNormalizedPath(definition.fileName)) && !isLocationProjectReferenceRedirect(project, definition)) { return definition; } } function mapDefinitionInProject(definition, project, getGeneratedDefinition, getSourceDefinition) { const result = mapDefinitionInProjectIfFileInProject(definition, project); if (result) return result; const generatedDefinition = getGeneratedDefinition(); if (generatedDefinition && project.containsFile(toNormalizedPath(generatedDefinition.fileName))) return generatedDefinition; const sourceDefinition = getSourceDefinition(); return sourceDefinition && project.containsFile(toNormalizedPath(sourceDefinition.fileName)) ? sourceDefinition : undefined; } function isLocationProjectReferenceRedirect(project, location) { if (!location) return false; const program = project.getLanguageService().getProgram(); if (!program) return false; const sourceFile = program.getSourceFile(location.fileName); return !!sourceFile && sourceFile.resolvedPath !== sourceFile.path && sourceFile.resolvedPath !== project.toPath(location.fileName); } function getProjectKey(project) { return isConfiguredProject(project) ? project.canonicalConfigFilePath : project.getProjectName(); } function documentSpanLocation({ fileName, textSpan }) { return { fileName, pos: textSpan.start }; } function getMappedLocationForProject(location, project) { return getMappedLocation(location, project.getSourceMapper(), (p) => project.projectService.fileExists(p)); } function getMappedDocumentSpanForProject(documentSpan, project) { return getMappedDocumentSpan(documentSpan, project.getSourceMapper(), (p) => project.projectService.fileExists(p)); } function getMappedContextSpanForProject(documentSpan, project) { return getMappedContextSpan(documentSpan, project.getSourceMapper(), (p) => project.projectService.fileExists(p)); } var invalidPartialSemanticModeCommands = [ "openExternalProject", "openExternalProjects", "closeExternalProject", "synchronizeProjectList", "emit-output", "compileOnSaveAffectedFileList", "compileOnSaveEmitFile", "compilerOptionsDiagnostics-full", "encodedSemanticClassifications-full", "semanticDiagnosticsSync", "suggestionDiagnosticsSync", "geterrForProject", "reload", "reloadProjects", "getCodeFixes", "getCodeFixes-full", "getCombinedCodeFix", "getCombinedCodeFix-full", "applyCodeActionCommand", "getSupportedCodeFixes", "getApplicableRefactors", "getMoveToRefactoringFileSuggestions", "getEditsForRefactor", "getEditsForRefactor-full", "organizeImports", "organizeImports-full", "getEditsForFileRename", "getEditsForFileRename-full", "prepareCallHierarchy", "provideCallHierarchyIncomingCalls", "provideCallHierarchyOutgoingCalls", "getPasteEdits", "copilotRelated" ]; var invalidSyntacticModeCommands = [ ...invalidPartialSemanticModeCommands, "definition", "definition-full", "definitionAndBoundSpan", "definitionAndBoundSpan-full", "typeDefinition", "implementation", "implementation-full", "references", "references-full", "rename", "renameLocations-full", "rename-full", "quickinfo", "quickinfo-full", "completionInfo", "completions", "completions-full", "completionEntryDetails", "completionEntryDetails-full", "signatureHelp", "signatureHelp-full", "navto", "navto-full", "documentHighlights", "documentHighlights-full", "preparePasteEdits" ]; var Session3 = class _Session { constructor(opts) { this.changeSeq = 0; this.regionDiagLineCountThreshold = 500; this.handlers = new Map(Object.entries({ ["status"]: () => { const response = { version }; return this.requiredResponse(response); }, ["openExternalProject"]: (request) => { this.projectService.openExternalProject(request.arguments, true); return this.requiredResponse(true); }, ["openExternalProjects"]: (request) => { this.projectService.openExternalProjects(request.arguments.projects); return this.requiredResponse(true); }, ["closeExternalProject"]: (request) => { this.projectService.closeExternalProject(request.arguments.projectFileName, true); return this.requiredResponse(true); }, ["synchronizeProjectList"]: (request) => { const result = this.projectService.synchronizeProjectList(request.arguments.knownProjects, request.arguments.includeProjectReferenceRedirectInfo); if (!result.some((p) => p.projectErrors && p.projectErrors.length !== 0)) { return this.requiredResponse(result); } const converted = map(result, (p) => { if (!p.projectErrors || p.projectErrors.length === 0) { return p; } return { info: p.info, changes: p.changes, files: p.files, projectErrors: this.convertToDiagnosticsWithLinePosition(p.projectErrors, undefined) }; }); return this.requiredResponse(converted); }, ["updateOpen"]: (request) => { this.changeSeq++; this.projectService.applyChangesInOpenFiles(request.arguments.openFiles && mapIterator(request.arguments.openFiles, (file) => ({ fileName: file.file, content: file.fileContent, scriptKind: file.scriptKindName, projectRootPath: file.projectRootPath })), request.arguments.changedFiles && mapIterator(request.arguments.changedFiles, (file) => ({ fileName: file.fileName, changes: mapDefinedIterator(arrayReverseIterator(file.textChanges), (change) => { const scriptInfo = Debug.checkDefined(this.projectService.getScriptInfo(file.fileName)); const start = scriptInfo.lineOffsetToPosition(change.start.line, change.start.offset); const end = scriptInfo.lineOffsetToPosition(change.end.line, change.end.offset); return start >= 0 ? { span: { start, length: end - start }, newText: change.newText } : undefined; }) })), request.arguments.closedFiles); return this.requiredResponse(true); }, ["applyChangedToOpenFiles"]: (request) => { this.changeSeq++; this.projectService.applyChangesInOpenFiles(request.arguments.openFiles, request.arguments.changedFiles && mapIterator(request.arguments.changedFiles, (file) => ({ fileName: file.fileName, changes: arrayReverseIterator(file.changes) })), request.arguments.closedFiles); return this.requiredResponse(true); }, ["exit"]: () => { this.exit(); return this.notRequired(undefined); }, ["definition"]: (request) => { return this.requiredResponse(this.getDefinition(request.arguments, true)); }, ["definition-full"]: (request) => { return this.requiredResponse(this.getDefinition(request.arguments, false)); }, ["definitionAndBoundSpan"]: (request) => { return this.requiredResponse(this.getDefinitionAndBoundSpan(request.arguments, true)); }, ["definitionAndBoundSpan-full"]: (request) => { return this.requiredResponse(this.getDefinitionAndBoundSpan(request.arguments, false)); }, ["findSourceDefinition"]: (request) => { return this.requiredResponse(this.findSourceDefinition(request.arguments)); }, ["emit-output"]: (request) => { return this.requiredResponse(this.getEmitOutput(request.arguments)); }, ["typeDefinition"]: (request) => { return this.requiredResponse(this.getTypeDefinition(request.arguments)); }, ["implementation"]: (request) => { return this.requiredResponse(this.getImplementation(request.arguments, true)); }, ["implementation-full"]: (request) => { return this.requiredResponse(this.getImplementation(request.arguments, false)); }, ["references"]: (request) => { return this.requiredResponse(this.getReferences(request.arguments, true)); }, ["references-full"]: (request) => { return this.requiredResponse(this.getReferences(request.arguments, false)); }, ["rename"]: (request) => { return this.requiredResponse(this.getRenameLocations(request.arguments, true)); }, ["renameLocations-full"]: (request) => { return this.requiredResponse(this.getRenameLocations(request.arguments, false)); }, ["rename-full"]: (request) => { return this.requiredResponse(this.getRenameInfo(request.arguments)); }, ["open"]: (request) => { this.openClientFile(toNormalizedPath(request.arguments.file), request.arguments.fileContent, convertScriptKindName(request.arguments.scriptKindName), request.arguments.projectRootPath ? toNormalizedPath(request.arguments.projectRootPath) : undefined); return this.notRequired(request); }, ["quickinfo"]: (request) => { return this.requiredResponse(this.getQuickInfoWorker(request.arguments, true)); }, ["quickinfo-full"]: (request) => { return this.requiredResponse(this.getQuickInfoWorker(request.arguments, false)); }, ["getOutliningSpans"]: (request) => { return this.requiredResponse(this.getOutliningSpans(request.arguments, true)); }, ["outliningSpans"]: (request) => { return this.requiredResponse(this.getOutliningSpans(request.arguments, false)); }, ["todoComments"]: (request) => { return this.requiredResponse(this.getTodoComments(request.arguments)); }, ["indentation"]: (request) => { return this.requiredResponse(this.getIndentation(request.arguments)); }, ["nameOrDottedNameSpan"]: (request) => { return this.requiredResponse(this.getNameOrDottedNameSpan(request.arguments)); }, ["breakpointStatement"]: (request) => { return this.requiredResponse(this.getBreakpointStatement(request.arguments)); }, ["braceCompletion"]: (request) => { return this.requiredResponse(this.isValidBraceCompletion(request.arguments)); }, ["docCommentTemplate"]: (request) => { return this.requiredResponse(this.getDocCommentTemplate(request.arguments)); }, ["getSpanOfEnclosingComment"]: (request) => { return this.requiredResponse(this.getSpanOfEnclosingComment(request.arguments)); }, ["fileReferences"]: (request) => { return this.requiredResponse(this.getFileReferences(request.arguments, true)); }, ["fileReferences-full"]: (request) => { return this.requiredResponse(this.getFileReferences(request.arguments, false)); }, ["format"]: (request) => { return this.requiredResponse(this.getFormattingEditsForRange(request.arguments)); }, ["formatonkey"]: (request) => { return this.requiredResponse(this.getFormattingEditsAfterKeystroke(request.arguments)); }, ["format-full"]: (request) => { return this.requiredResponse(this.getFormattingEditsForDocumentFull(request.arguments)); }, ["formatonkey-full"]: (request) => { return this.requiredResponse(this.getFormattingEditsAfterKeystrokeFull(request.arguments)); }, ["formatRange-full"]: (request) => { return this.requiredResponse(this.getFormattingEditsForRangeFull(request.arguments)); }, ["completionInfo"]: (request) => { return this.requiredResponse(this.getCompletions(request.arguments, "completionInfo")); }, ["completions"]: (request) => { return this.requiredResponse(this.getCompletions(request.arguments, "completions")); }, ["completions-full"]: (request) => { return this.requiredResponse(this.getCompletions(request.arguments, "completions-full")); }, ["completionEntryDetails"]: (request) => { return this.requiredResponse(this.getCompletionEntryDetails(request.arguments, false)); }, ["completionEntryDetails-full"]: (request) => { return this.requiredResponse(this.getCompletionEntryDetails(request.arguments, true)); }, ["compileOnSaveAffectedFileList"]: (request) => { return this.requiredResponse(this.getCompileOnSaveAffectedFileList(request.arguments)); }, ["compileOnSaveEmitFile"]: (request) => { return this.requiredResponse(this.emitFile(request.arguments)); }, ["signatureHelp"]: (request) => { return this.requiredResponse(this.getSignatureHelpItems(request.arguments, true)); }, ["signatureHelp-full"]: (request) => { return this.requiredResponse(this.getSignatureHelpItems(request.arguments, false)); }, ["compilerOptionsDiagnostics-full"]: (request) => { return this.requiredResponse(this.getCompilerOptionsDiagnostics(request.arguments)); }, ["encodedSyntacticClassifications-full"]: (request) => { return this.requiredResponse(this.getEncodedSyntacticClassifications(request.arguments)); }, ["encodedSemanticClassifications-full"]: (request) => { return this.requiredResponse(this.getEncodedSemanticClassifications(request.arguments)); }, ["cleanup"]: () => { this.cleanup(); return this.requiredResponse(true); }, ["semanticDiagnosticsSync"]: (request) => { return this.requiredResponse(this.getSemanticDiagnosticsSync(request.arguments)); }, ["syntacticDiagnosticsSync"]: (request) => { return this.requiredResponse(this.getSyntacticDiagnosticsSync(request.arguments)); }, ["suggestionDiagnosticsSync"]: (request) => { return this.requiredResponse(this.getSuggestionDiagnosticsSync(request.arguments)); }, ["geterr"]: (request) => { this.errorCheck.startNew((next) => this.getDiagnostics(next, request.arguments.delay, request.arguments.files)); return this.notRequired(undefined); }, ["geterrForProject"]: (request) => { this.errorCheck.startNew((next) => this.getDiagnosticsForProject(next, request.arguments.delay, request.arguments.file)); return this.notRequired(undefined); }, ["change"]: (request) => { this.change(request.arguments); return this.notRequired(request); }, ["configure"]: (request) => { this.projectService.setHostConfiguration(request.arguments); return this.notRequired(request); }, ["reload"]: (request) => { this.reload(request.arguments); return this.requiredResponse({ reloadFinished: true }); }, ["saveto"]: (request) => { const savetoArgs = request.arguments; this.saveToTmp(savetoArgs.file, savetoArgs.tmpfile); return this.notRequired(request); }, ["close"]: (request) => { const closeArgs = request.arguments; this.closeClientFile(closeArgs.file); return this.notRequired(request); }, ["navto"]: (request) => { return this.requiredResponse(this.getNavigateToItems(request.arguments, true)); }, ["navto-full"]: (request) => { return this.requiredResponse(this.getNavigateToItems(request.arguments, false)); }, ["brace"]: (request) => { return this.requiredResponse(this.getBraceMatching(request.arguments, true)); }, ["brace-full"]: (request) => { return this.requiredResponse(this.getBraceMatching(request.arguments, false)); }, ["navbar"]: (request) => { return this.requiredResponse(this.getNavigationBarItems(request.arguments, true)); }, ["navbar-full"]: (request) => { return this.requiredResponse(this.getNavigationBarItems(request.arguments, false)); }, ["navtree"]: (request) => { return this.requiredResponse(this.getNavigationTree(request.arguments, true)); }, ["navtree-full"]: (request) => { return this.requiredResponse(this.getNavigationTree(request.arguments, false)); }, ["documentHighlights"]: (request) => { return this.requiredResponse(this.getDocumentHighlights(request.arguments, true)); }, ["documentHighlights-full"]: (request) => { return this.requiredResponse(this.getDocumentHighlights(request.arguments, false)); }, ["compilerOptionsForInferredProjects"]: (request) => { this.setCompilerOptionsForInferredProjects(request.arguments); return this.requiredResponse(true); }, ["projectInfo"]: (request) => { return this.requiredResponse(this.getProjectInfo(request.arguments)); }, ["reloadProjects"]: (request) => { this.projectService.reloadProjects(); return this.notRequired(request); }, ["jsxClosingTag"]: (request) => { return this.requiredResponse(this.getJsxClosingTag(request.arguments)); }, ["linkedEditingRange"]: (request) => { return this.requiredResponse(this.getLinkedEditingRange(request.arguments)); }, ["getCodeFixes"]: (request) => { return this.requiredResponse(this.getCodeFixes(request.arguments, true)); }, ["getCodeFixes-full"]: (request) => { return this.requiredResponse(this.getCodeFixes(request.arguments, false)); }, ["getCombinedCodeFix"]: (request) => { return this.requiredResponse(this.getCombinedCodeFix(request.arguments, true)); }, ["getCombinedCodeFix-full"]: (request) => { return this.requiredResponse(this.getCombinedCodeFix(request.arguments, false)); }, ["applyCodeActionCommand"]: (request) => { return this.requiredResponse(this.applyCodeActionCommand(request.arguments)); }, ["getSupportedCodeFixes"]: (request) => { return this.requiredResponse(this.getSupportedCodeFixes(request.arguments)); }, ["getApplicableRefactors"]: (request) => { return this.requiredResponse(this.getApplicableRefactors(request.arguments)); }, ["getEditsForRefactor"]: (request) => { return this.requiredResponse(this.getEditsForRefactor(request.arguments, true)); }, ["getMoveToRefactoringFileSuggestions"]: (request) => { return this.requiredResponse(this.getMoveToRefactoringFileSuggestions(request.arguments)); }, ["preparePasteEdits"]: (request) => { return this.requiredResponse(this.preparePasteEdits(request.arguments)); }, ["getPasteEdits"]: (request) => { return this.requiredResponse(this.getPasteEdits(request.arguments)); }, ["getEditsForRefactor-full"]: (request) => { return this.requiredResponse(this.getEditsForRefactor(request.arguments, false)); }, ["organizeImports"]: (request) => { return this.requiredResponse(this.organizeImports(request.arguments, true)); }, ["organizeImports-full"]: (request) => { return this.requiredResponse(this.organizeImports(request.arguments, false)); }, ["getEditsForFileRename"]: (request) => { return this.requiredResponse(this.getEditsForFileRename(request.arguments, true)); }, ["getEditsForFileRename-full"]: (request) => { return this.requiredResponse(this.getEditsForFileRename(request.arguments, false)); }, ["configurePlugin"]: (request) => { this.configurePlugin(request.arguments); return this.notRequired(request); }, ["selectionRange"]: (request) => { return this.requiredResponse(this.getSmartSelectionRange(request.arguments, true)); }, ["selectionRange-full"]: (request) => { return this.requiredResponse(this.getSmartSelectionRange(request.arguments, false)); }, ["prepareCallHierarchy"]: (request) => { return this.requiredResponse(this.prepareCallHierarchy(request.arguments)); }, ["provideCallHierarchyIncomingCalls"]: (request) => { return this.requiredResponse(this.provideCallHierarchyIncomingCalls(request.arguments)); }, ["provideCallHierarchyOutgoingCalls"]: (request) => { return this.requiredResponse(this.provideCallHierarchyOutgoingCalls(request.arguments)); }, ["toggleLineComment"]: (request) => { return this.requiredResponse(this.toggleLineComment(request.arguments, true)); }, ["toggleLineComment-full"]: (request) => { return this.requiredResponse(this.toggleLineComment(request.arguments, false)); }, ["toggleMultilineComment"]: (request) => { return this.requiredResponse(this.toggleMultilineComment(request.arguments, true)); }, ["toggleMultilineComment-full"]: (request) => { return this.requiredResponse(this.toggleMultilineComment(request.arguments, false)); }, ["commentSelection"]: (request) => { return this.requiredResponse(this.commentSelection(request.arguments, true)); }, ["commentSelection-full"]: (request) => { return this.requiredResponse(this.commentSelection(request.arguments, false)); }, ["uncommentSelection"]: (request) => { return this.requiredResponse(this.uncommentSelection(request.arguments, true)); }, ["uncommentSelection-full"]: (request) => { return this.requiredResponse(this.uncommentSelection(request.arguments, false)); }, ["provideInlayHints"]: (request) => { return this.requiredResponse(this.provideInlayHints(request.arguments)); }, ["mapCode"]: (request) => { return this.requiredResponse(this.mapCode(request.arguments)); }, ["copilotRelated"]: () => { return this.requiredResponse(this.getCopilotRelatedInfo()); } })); this.host = opts.host; this.cancellationToken = opts.cancellationToken; this.typingsInstaller = opts.typingsInstaller || nullTypingsInstaller; this.byteLength = opts.byteLength; this.hrtime = opts.hrtime; this.logger = opts.logger; this.canUseEvents = opts.canUseEvents; this.suppressDiagnosticEvents = opts.suppressDiagnosticEvents; this.noGetErrOnBackgroundUpdate = opts.noGetErrOnBackgroundUpdate; const { throttleWaitMilliseconds } = opts; this.eventHandler = this.canUseEvents ? opts.eventHandler || ((event) => this.defaultEventHandler(event)) : undefined; const multistepOperationHost = { executeWithRequestId: (requestId, action, performanceData) => this.executeWithRequestId(requestId, action, performanceData), getCurrentRequestId: () => this.currentRequestId, getPerformanceData: () => this.performanceData, getServerHost: () => this.host, logError: (err, cmd) => this.logError(err, cmd), sendRequestCompletedEvent: (requestId, performanceData) => this.sendRequestCompletedEvent(requestId, performanceData), isCancellationRequested: () => this.cancellationToken.isCancellationRequested() }; this.errorCheck = new MultistepOperation(multistepOperationHost); const settings = { host: this.host, logger: this.logger, cancellationToken: this.cancellationToken, useSingleInferredProject: opts.useSingleInferredProject, useInferredProjectPerProjectRoot: opts.useInferredProjectPerProjectRoot, typingsInstaller: this.typingsInstaller, throttleWaitMilliseconds, eventHandler: this.eventHandler, suppressDiagnosticEvents: this.suppressDiagnosticEvents, globalPlugins: opts.globalPlugins, pluginProbeLocations: opts.pluginProbeLocations, allowLocalPluginLoads: opts.allowLocalPluginLoads, typesMapLocation: opts.typesMapLocation, serverMode: opts.serverMode, session: this, canUseWatchEvents: opts.canUseWatchEvents, incrementalVerifier: opts.incrementalVerifier }; this.projectService = new ProjectService2(settings); this.projectService.setPerformanceEventHandler(this.performanceEventHandler.bind(this)); this.gcTimer = new GcTimer(this.host, 7000, this.logger); switch (this.projectService.serverMode) { case 0: break; case 1: invalidPartialSemanticModeCommands.forEach((commandName) => this.handlers.set(commandName, (request) => { throw new Error(`Request: ${request.command} not allowed in LanguageServiceMode.PartialSemantic`); })); break; case 2: invalidSyntacticModeCommands.forEach((commandName) => this.handlers.set(commandName, (request) => { throw new Error(`Request: ${request.command} not allowed in LanguageServiceMode.Syntactic`); })); break; default: Debug.assertNever(this.projectService.serverMode); } } sendRequestCompletedEvent(requestId, performanceData) { this.event({ request_seq: requestId, performanceData: performanceData && toProtocolPerformanceData(performanceData) }, "requestCompleted"); } addPerformanceData(key, value) { if (!this.performanceData) { this.performanceData = {}; } this.performanceData[key] = (this.performanceData[key] ?? 0) + value; } addDiagnosticsPerformanceData(file, kind, duration) { var _a, _b; if (!this.performanceData) { this.performanceData = {}; } let fileDiagnosticDuration = (_a = this.performanceData.diagnosticsDuration) == null ? undefined : _a.get(file); if (!fileDiagnosticDuration) ((_b = this.performanceData).diagnosticsDuration ?? (_b.diagnosticsDuration = /* @__PURE__ */ new Map)).set(file, fileDiagnosticDuration = {}); fileDiagnosticDuration[kind] = duration; } performanceEventHandler(event) { switch (event.kind) { case "UpdateGraph": this.addPerformanceData("updateGraphDurationMs", event.durationMs); break; case "CreatePackageJsonAutoImportProvider": this.addPerformanceData("createAutoImportProviderProgramDurationMs", event.durationMs); break; } } defaultEventHandler(event) { switch (event.eventName) { case ProjectsUpdatedInBackgroundEvent: this.projectsUpdatedInBackgroundEvent(event.data.openFiles); break; case ProjectLoadingStartEvent: this.event({ projectName: event.data.project.getProjectName(), reason: event.data.reason }, event.eventName); break; case ProjectLoadingFinishEvent: this.event({ projectName: event.data.project.getProjectName() }, event.eventName); break; case LargeFileReferencedEvent: case CreateFileWatcherEvent: case CreateDirectoryWatcherEvent: case CloseFileWatcherEvent: this.event(event.data, event.eventName); break; case ConfigFileDiagEvent: this.event({ triggerFile: event.data.triggerFile, configFile: event.data.configFileName, diagnostics: map(event.data.diagnostics, (diagnostic) => formatDiagnosticToProtocol(diagnostic, true)) }, event.eventName); break; case ProjectLanguageServiceStateEvent: { this.event({ projectName: event.data.project.getProjectName(), languageServiceEnabled: event.data.languageServiceEnabled }, event.eventName); break; } case ProjectInfoTelemetryEvent: { const eventName = "telemetry"; this.event({ telemetryEventName: event.eventName, payload: event.data }, eventName); break; } } } projectsUpdatedInBackgroundEvent(openFiles) { this.projectService.logger.info(`got projects updated in background ${openFiles}`); if (openFiles.length) { if (!this.suppressDiagnosticEvents && !this.noGetErrOnBackgroundUpdate) { this.projectService.logger.info(`Queueing diagnostics update for ${openFiles}`); this.errorCheck.startNew((next) => this.updateErrorCheck(next, openFiles, 100, true)); } this.event({ openFiles }, ProjectsUpdatedInBackgroundEvent); } } logError(err, cmd) { this.logErrorWorker(err, cmd); } logErrorWorker(err, cmd, fileRequest) { let msg = "Exception on executing command " + cmd; if (err.message) { msg += `: ` + indent2(err.message); if (err.stack) { msg += ` ` + indent2(err.stack); } } if (this.logger.hasLevel(3)) { if (fileRequest) { try { const { file, project } = this.getFileAndProject(fileRequest); const scriptInfo = project.getScriptInfoForNormalizedPath(file); if (scriptInfo) { const text = getSnapshotText(scriptInfo.getSnapshot()); msg += ` File text of ${fileRequest.file}:${indent2(text)} `; } } catch {} } if (err.ProgramFiles) { msg += ` Program files: ${JSON.stringify(err.ProgramFiles)} `; msg += ` Projects:: `; let counter = 0; const addProjectInfo = (project) => { msg += ` Project '${project.projectName}' (${ProjectKind[project.projectKind]}) ${counter} `; msg += project.filesToString(true); msg += ` ----------------------------------------------- `; counter++; }; this.projectService.externalProjects.forEach(addProjectInfo); this.projectService.configuredProjects.forEach(addProjectInfo); this.projectService.inferredProjects.forEach(addProjectInfo); } } this.logger.msg(msg, "Err"); } send(msg) { if (msg.type === "event" && !this.canUseEvents) { if (this.logger.hasLevel(3)) { this.logger.info(`Session does not support events: ignored event: ${stringifyIndented(msg)}`); } return; } this.writeMessage(msg); } writeMessage(msg) { const msgText = formatMessage2(msg, this.logger, this.byteLength, this.host.newLine); this.host.write(msgText); } event(body, eventName) { this.send(toEvent(eventName, body)); } doOutput(info, cmdName, reqSeq, success, performanceData, message) { const res = { seq: 0, type: "response", command: cmdName, request_seq: reqSeq, success, performanceData: performanceData && toProtocolPerformanceData(performanceData) }; if (success) { let metadata; if (isArray(info)) { res.body = info; metadata = info.metadata; delete info.metadata; } else if (typeof info === "object") { if (info.metadata) { const { metadata: infoMetadata, ...body } = info; res.body = body; metadata = infoMetadata; } else { res.body = info; } } else { res.body = info; } if (metadata) res.metadata = metadata; } else { Debug.assert(info === undefined); } if (message) { res.message = message; } this.send(res); } semanticCheck(file, project) { var _a, _b; const diagnosticsStartTime = timestamp(); (_a = tracing) == null || _a.push(tracing.Phase.Session, "semanticCheck", { file, configFilePath: project.canonicalConfigFilePath }); const diags = isDeclarationFileInJSOnlyNonConfiguredProject(project, file) ? emptyArray2 : project.getLanguageService().getSemanticDiagnostics(file).filter((d) => !!d.file); this.sendDiagnosticsEvent(file, project, diags, "semanticDiag", diagnosticsStartTime); (_b = tracing) == null || _b.pop(); } syntacticCheck(file, project) { var _a, _b; const diagnosticsStartTime = timestamp(); (_a = tracing) == null || _a.push(tracing.Phase.Session, "syntacticCheck", { file, configFilePath: project.canonicalConfigFilePath }); this.sendDiagnosticsEvent(file, project, project.getLanguageService().getSyntacticDiagnostics(file), "syntaxDiag", diagnosticsStartTime); (_b = tracing) == null || _b.pop(); } suggestionCheck(file, project) { var _a, _b; const diagnosticsStartTime = timestamp(); (_a = tracing) == null || _a.push(tracing.Phase.Session, "suggestionCheck", { file, configFilePath: project.canonicalConfigFilePath }); this.sendDiagnosticsEvent(file, project, project.getLanguageService().getSuggestionDiagnostics(file), "suggestionDiag", diagnosticsStartTime); (_b = tracing) == null || _b.pop(); } regionSemanticCheck(file, project, ranges) { var _a, _b, _c; const diagnosticsStartTime = timestamp(); (_a = tracing) == null || _a.push(tracing.Phase.Session, "regionSemanticCheck", { file, configFilePath: project.canonicalConfigFilePath }); let diagnosticsResult; if (!this.shouldDoRegionCheck(file) || !(diagnosticsResult = project.getLanguageService().getRegionSemanticDiagnostics(file, ranges))) { (_b = tracing) == null || _b.pop(); return; } this.sendDiagnosticsEvent(file, project, diagnosticsResult.diagnostics, "regionSemanticDiag", diagnosticsStartTime, diagnosticsResult.spans); (_c = tracing) == null || _c.pop(); return; } shouldDoRegionCheck(file) { var _a; const lineCount = (_a = this.projectService.getScriptInfoForNormalizedPath(file)) == null ? undefined : _a.textStorage.getLineInfo().getLineCount(); return !!(lineCount && lineCount >= this.regionDiagLineCountThreshold); } sendDiagnosticsEvent(file, project, diagnostics, kind, diagnosticsStartTime, spans) { try { const scriptInfo = Debug.checkDefined(project.getScriptInfo(file)); const duration = timestamp() - diagnosticsStartTime; const body = { file, diagnostics: diagnostics.map((diag2) => formatDiag(file, project, diag2)), spans: spans == null ? undefined : spans.map((span) => toProtocolTextSpan(span, scriptInfo)) }; this.event(body, kind); this.addDiagnosticsPerformanceData(file, kind, duration); } catch (err) { this.logError(err, kind); } } updateErrorCheck(next, checkList, ms, requireOpen = true) { if (checkList.length === 0) { return; } Debug.assert(!this.suppressDiagnosticEvents); const seq = this.changeSeq; const followMs = Math.min(ms, 200); let index = 0; const goNext = () => { index++; if (checkList.length > index) { return next.delay("checkOne", followMs, checkOne); } }; const doSemanticCheck = (fileName, project) => { this.semanticCheck(fileName, project); if (this.changeSeq !== seq) { return; } if (this.getPreferences(fileName).disableSuggestions) { return goNext(); } next.immediate("suggestionCheck", () => { this.suggestionCheck(fileName, project); goNext(); }); }; const checkOne = () => { if (this.changeSeq !== seq) { return; } let ranges; let item = checkList[index]; if (isString(item)) { item = this.toPendingErrorCheck(item); } else if ("ranges" in item) { ranges = item.ranges; item = this.toPendingErrorCheck(item.file); } if (!item) { return goNext(); } const { fileName, project } = item; updateProjectIfDirty(project); if (!project.containsFile(fileName, requireOpen)) { return; } this.syntacticCheck(fileName, project); if (this.changeSeq !== seq) { return; } if (project.projectService.serverMode !== 0) { return goNext(); } if (ranges) { return next.immediate("regionSemanticCheck", () => { const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(fileName); if (scriptInfo) { this.regionSemanticCheck(fileName, project, ranges.map((range) => this.getRange({ file: fileName, ...range }, scriptInfo))); } if (this.changeSeq !== seq) { return; } next.immediate("semanticCheck", () => doSemanticCheck(fileName, project)); }); } next.immediate("semanticCheck", () => doSemanticCheck(fileName, project)); }; if (checkList.length > index && this.changeSeq === seq) { next.delay("checkOne", ms, checkOne); } } cleanProjects(caption, projects) { if (!projects) { return; } this.logger.info(`cleaning ${caption}`); for (const p of projects) { p.getLanguageService(false).cleanupSemanticCache(); p.cleanupProgram(); } } cleanup() { this.cleanProjects("inferred projects", this.projectService.inferredProjects); this.cleanProjects("configured projects", arrayFrom(this.projectService.configuredProjects.values())); this.cleanProjects("external projects", this.projectService.externalProjects); if (this.host.gc) { this.logger.info(`host.gc()`); this.host.gc(); } } getEncodedSyntacticClassifications(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); return languageService.getEncodedSyntacticClassifications(file, args); } getEncodedSemanticClassifications(args) { const { file, project } = this.getFileAndProject(args); const format = args.format === "2020" ? "2020" : "original"; return project.getLanguageService().getEncodedSemanticClassifications(file, args, format); } getProject(projectFileName) { return projectFileName === undefined ? undefined : this.projectService.findProject(projectFileName); } getConfigFileAndProject(args) { const project = this.getProject(args.projectFileName); const file = toNormalizedPath(args.file); return { configFile: project && project.hasConfigFile(file) ? file : undefined, project }; } getConfigFileDiagnostics(configFile, project, includeLinePosition) { const projectErrors = project.getAllProjectErrors(); const optionsErrors = project.getLanguageService().getCompilerOptionsDiagnostics(); const diagnosticsForConfigFile = filter(concatenate(projectErrors, optionsErrors), (diagnostic) => !!diagnostic.file && diagnostic.file.fileName === configFile); return includeLinePosition ? this.convertToDiagnosticsWithLinePositionFromDiagnosticFile(diagnosticsForConfigFile) : map(diagnosticsForConfigFile, (diagnostic) => formatDiagnosticToProtocol(diagnostic, false)); } convertToDiagnosticsWithLinePositionFromDiagnosticFile(diagnostics) { return diagnostics.map((d) => ({ message: flattenDiagnosticMessageText(d.messageText, this.host.newLine), start: d.start, length: d.length, category: diagnosticCategoryName(d), code: d.code, source: d.source, startLocation: d.file && convertToLocation(getLineAndCharacterOfPosition(d.file, d.start)), endLocation: d.file && convertToLocation(getLineAndCharacterOfPosition(d.file, d.start + d.length)), reportsUnnecessary: d.reportsUnnecessary, reportsDeprecated: d.reportsDeprecated, relatedInformation: map(d.relatedInformation, formatRelatedInformation) })); } getCompilerOptionsDiagnostics(args) { const project = this.getProject(args.projectFileName); return this.convertToDiagnosticsWithLinePosition(filter(project.getLanguageService().getCompilerOptionsDiagnostics(), (diagnostic) => !diagnostic.file), undefined); } convertToDiagnosticsWithLinePosition(diagnostics, scriptInfo) { return diagnostics.map((d) => ({ message: flattenDiagnosticMessageText(d.messageText, this.host.newLine), start: d.start, length: d.length, category: diagnosticCategoryName(d), code: d.code, source: d.source, startLocation: scriptInfo && scriptInfo.positionToLineOffset(d.start), endLocation: scriptInfo && scriptInfo.positionToLineOffset(d.start + d.length), reportsUnnecessary: d.reportsUnnecessary, reportsDeprecated: d.reportsDeprecated, relatedInformation: map(d.relatedInformation, formatRelatedInformation) })); } getDiagnosticsWorker(args, isSemantic, selector, includeLinePosition) { const { project, file } = this.getFileAndProject(args); if (isSemantic && isDeclarationFileInJSOnlyNonConfiguredProject(project, file)) { return emptyArray2; } const scriptInfo = project.getScriptInfoForNormalizedPath(file); const diagnostics = selector(project, file); return includeLinePosition ? this.convertToDiagnosticsWithLinePosition(diagnostics, scriptInfo) : diagnostics.map((d) => formatDiag(file, project, d)); } getDefinition(args, simplifiedResult) { const { file, project } = this.getFileAndProject(args); const position = this.getPositionInFile(args, file); const definitions = this.mapDefinitionInfoLocations(project.getLanguageService().getDefinitionAtPosition(file, position) || emptyArray2, project); return simplifiedResult ? this.mapDefinitionInfo(definitions, project) : definitions.map(_Session.mapToOriginalLocation); } mapDefinitionInfoLocations(definitions, project) { return definitions.map((info) => { const newDocumentSpan = getMappedDocumentSpanForProject(info, project); return !newDocumentSpan ? info : { ...newDocumentSpan, containerKind: info.containerKind, containerName: info.containerName, kind: info.kind, name: info.name, failedAliasResolution: info.failedAliasResolution, ...info.unverified && { unverified: info.unverified } }; }); } getDefinitionAndBoundSpan(args, simplifiedResult) { const { file, project } = this.getFileAndProject(args); const position = this.getPositionInFile(args, file); const scriptInfo = Debug.checkDefined(project.getScriptInfo(file)); const unmappedDefinitionAndBoundSpan = project.getLanguageService().getDefinitionAndBoundSpan(file, position); if (!unmappedDefinitionAndBoundSpan || !unmappedDefinitionAndBoundSpan.definitions) { return { definitions: emptyArray2, textSpan: undefined }; } const definitions = this.mapDefinitionInfoLocations(unmappedDefinitionAndBoundSpan.definitions, project); const { textSpan } = unmappedDefinitionAndBoundSpan; if (simplifiedResult) { return { definitions: this.mapDefinitionInfo(definitions, project), textSpan: toProtocolTextSpan(textSpan, scriptInfo) }; } return { definitions: definitions.map(_Session.mapToOriginalLocation), textSpan }; } findSourceDefinition(args) { var _a; const { file, project } = this.getFileAndProject(args); const position = this.getPositionInFile(args, file); const unmappedDefinitions = project.getLanguageService().getDefinitionAtPosition(file, position); let definitions = this.mapDefinitionInfoLocations(unmappedDefinitions || emptyArray2, project).slice(); const needsJsResolution = this.projectService.serverMode === 0 && (!some(definitions, (d) => toNormalizedPath(d.fileName) !== file && !d.isAmbient) || some(definitions, (d) => !!d.failedAliasResolution)); if (needsJsResolution) { const definitionSet = createSet((d) => d.textSpan.start, getDocumentSpansEqualityComparer(this.host.useCaseSensitiveFileNames)); definitions == null || definitions.forEach((d) => definitionSet.add(d)); const noDtsProject = project.getNoDtsResolutionProject(file); const ls = noDtsProject.getLanguageService(); const jsDefinitions = (_a = ls.getDefinitionAtPosition(file, position, true, false)) == null ? undefined : _a.filter((d) => toNormalizedPath(d.fileName) !== file); if (some(jsDefinitions)) { for (const jsDefinition of jsDefinitions) { if (jsDefinition.unverified) { const refined = tryRefineDefinition(jsDefinition, project.getLanguageService().getProgram(), ls.getProgram()); if (some(refined)) { for (const def of refined) { definitionSet.add(def); } continue; } } definitionSet.add(jsDefinition); } } else { const ambientCandidates = definitions.filter((d) => toNormalizedPath(d.fileName) !== file && d.isAmbient); for (const candidate of some(ambientCandidates) ? ambientCandidates : getAmbientCandidatesByClimbingAccessChain()) { const fileNameToSearch = findImplementationFileFromDtsFileName(candidate.fileName, file, noDtsProject); if (!fileNameToSearch) continue; const info = this.projectService.getOrCreateScriptInfoNotOpenedByClient(fileNameToSearch, noDtsProject.currentDirectory, noDtsProject.directoryStructureHost, false); if (!info) continue; if (!noDtsProject.containsScriptInfo(info)) { noDtsProject.addRoot(info); noDtsProject.updateGraph(); } const noDtsProgram = ls.getProgram(); const fileToSearch = Debug.checkDefined(noDtsProgram.getSourceFile(fileNameToSearch)); for (const match of searchForDeclaration(candidate.name, fileToSearch, noDtsProgram)) { definitionSet.add(match); } } } definitions = arrayFrom(definitionSet.values()); } definitions = definitions.filter((d) => !d.isAmbient && !d.failedAliasResolution); return this.mapDefinitionInfo(definitions, project); function findImplementationFileFromDtsFileName(fileName, resolveFromFile, auxiliaryProject) { var _a2, _b, _c; const nodeModulesPathParts = getNodeModulePathParts(fileName); if (nodeModulesPathParts && fileName.lastIndexOf(nodeModulesPathPart) === nodeModulesPathParts.topLevelNodeModulesIndex) { const packageDirectory = fileName.substring(0, nodeModulesPathParts.packageRootIndex); const packageJsonCache = (_a2 = project.getModuleResolutionCache()) == null ? undefined : _a2.getPackageJsonInfoCache(); const compilerOptions = project.getCompilationSettings(); const packageJson = getPackageScopeForPath(getNormalizedAbsolutePath(packageDirectory, project.getCurrentDirectory()), getTemporaryModuleResolutionState(packageJsonCache, project, compilerOptions)); if (!packageJson) return; const entrypoints = getEntrypointsFromPackageJsonInfo(packageJson, { moduleResolution: 2 }, project, project.getModuleResolutionCache()); const packageNamePathPart = fileName.substring(nodeModulesPathParts.topLevelPackageNameIndex + 1, nodeModulesPathParts.packageRootIndex); const packageName = getPackageNameFromTypesPackageName(unmangleScopedPackageName(packageNamePathPart)); const path = project.toPath(fileName); if (entrypoints && some(entrypoints, (e) => project.toPath(e) === path)) { return (_b = auxiliaryProject.resolutionCache.resolveSingleModuleNameWithoutWatching(packageName, resolveFromFile).resolvedModule) == null ? undefined : _b.resolvedFileName; } else { const pathToFileInPackage = fileName.substring(nodeModulesPathParts.packageRootIndex + 1); const specifier = `${packageName}/${removeFileExtension(pathToFileInPackage)}`; return (_c = auxiliaryProject.resolutionCache.resolveSingleModuleNameWithoutWatching(specifier, resolveFromFile).resolvedModule) == null ? undefined : _c.resolvedFileName; } } return; } function getAmbientCandidatesByClimbingAccessChain() { const ls = project.getLanguageService(); const program = ls.getProgram(); const initialNode = getTouchingPropertyName(program.getSourceFile(file), position); if ((isStringLiteralLike(initialNode) || isIdentifier(initialNode)) && isAccessExpression(initialNode.parent)) { return forEachNameInAccessChainWalkingLeft(initialNode, (nameInChain) => { var _a2; if (nameInChain === initialNode) return; const candidates = (_a2 = ls.getDefinitionAtPosition(file, nameInChain.getStart(), true, false)) == null ? undefined : _a2.filter((d) => toNormalizedPath(d.fileName) !== file && d.isAmbient).map((d) => ({ fileName: d.fileName, name: getTextOfIdentifierOrLiteral(initialNode) })); if (some(candidates)) { return candidates; } }) || emptyArray2; } return emptyArray2; } function tryRefineDefinition(definition, program, noDtsProgram) { var _a2; const fileToSearch = noDtsProgram.getSourceFile(definition.fileName); if (!fileToSearch) { return; } const initialNode = getTouchingPropertyName(program.getSourceFile(file), position); const symbol = program.getTypeChecker().getSymbolAtLocation(initialNode); const importSpecifier = symbol && getDeclarationOfKind(symbol, 277); if (!importSpecifier) return; const nameToSearch = ((_a2 = importSpecifier.propertyName) == null ? undefined : _a2.text) || importSpecifier.name.text; return searchForDeclaration(nameToSearch, fileToSearch, noDtsProgram); } function searchForDeclaration(declarationName, fileToSearch, noDtsProgram) { const matches = ts_FindAllReferences_exports.Core.getTopMostDeclarationNamesInFile(declarationName, fileToSearch); return mapDefined(matches, (match) => { const symbol = noDtsProgram.getTypeChecker().getSymbolAtLocation(match); const decl = getDeclarationFromName(match); if (symbol && decl) { return ts_GoToDefinition_exports.createDefinitionInfo(decl, noDtsProgram.getTypeChecker(), symbol, decl, true); } }); } } getEmitOutput(args) { const { file, project } = this.getFileAndProject(args); if (!project.shouldEmitFile(project.getScriptInfo(file))) { return { emitSkipped: true, outputFiles: [], diagnostics: [] }; } const result = project.getLanguageService().getEmitOutput(file); return args.richResponse ? { ...result, diagnostics: args.includeLinePosition ? this.convertToDiagnosticsWithLinePositionFromDiagnosticFile(result.diagnostics) : result.diagnostics.map((d) => formatDiagnosticToProtocol(d, true)) } : result; } mapJSDocTagInfo(tags, project, richResponse) { return tags ? tags.map((tag) => { var _a; return { ...tag, text: richResponse ? this.mapDisplayParts(tag.text, project) : (_a = tag.text) == null ? undefined : _a.map((part) => part.text).join("") }; }) : []; } mapDisplayParts(parts, project) { if (!parts) { return []; } return parts.map((part) => part.kind !== "linkName" ? part : { ...part, target: this.toFileSpan(part.target.fileName, part.target.textSpan, project) }); } mapSignatureHelpItems(items, project, richResponse) { return items.map((item) => ({ ...item, documentation: this.mapDisplayParts(item.documentation, project), parameters: item.parameters.map((p) => ({ ...p, documentation: this.mapDisplayParts(p.documentation, project) })), tags: this.mapJSDocTagInfo(item.tags, project, richResponse) })); } mapDefinitionInfo(definitions, project) { return definitions.map((def) => ({ ...this.toFileSpanWithContext(def.fileName, def.textSpan, def.contextSpan, project), ...def.unverified && { unverified: def.unverified } })); } static mapToOriginalLocation(def) { if (def.originalFileName) { Debug.assert(def.originalTextSpan !== undefined, "originalTextSpan should be present if originalFileName is"); return { ...def, fileName: def.originalFileName, textSpan: def.originalTextSpan, targetFileName: def.fileName, targetTextSpan: def.textSpan, contextSpan: def.originalContextSpan, targetContextSpan: def.contextSpan }; } return def; } toFileSpan(fileName, textSpan, project) { const ls = project.getLanguageService(); const start = ls.toLineColumnOffset(fileName, textSpan.start); const end = ls.toLineColumnOffset(fileName, textSpanEnd(textSpan)); return { file: fileName, start: { line: start.line + 1, offset: start.character + 1 }, end: { line: end.line + 1, offset: end.character + 1 } }; } toFileSpanWithContext(fileName, textSpan, contextSpan, project) { const fileSpan = this.toFileSpan(fileName, textSpan, project); const context = contextSpan && this.toFileSpan(fileName, contextSpan, project); return context ? { ...fileSpan, contextStart: context.start, contextEnd: context.end } : fileSpan; } getTypeDefinition(args) { const { file, project } = this.getFileAndProject(args); const position = this.getPositionInFile(args, file); const definitions = this.mapDefinitionInfoLocations(project.getLanguageService().getTypeDefinitionAtPosition(file, position) || emptyArray2, project); return this.mapDefinitionInfo(definitions, project); } mapImplementationLocations(implementations, project) { return implementations.map((info) => { const newDocumentSpan = getMappedDocumentSpanForProject(info, project); return !newDocumentSpan ? info : { ...newDocumentSpan, kind: info.kind, displayParts: info.displayParts }; }); } getImplementation(args, simplifiedResult) { const { file, project } = this.getFileAndProject(args); const position = this.getPositionInFile(args, file); const implementations = this.mapImplementationLocations(project.getLanguageService().getImplementationAtPosition(file, position) || emptyArray2, project); return simplifiedResult ? implementations.map(({ fileName, textSpan, contextSpan }) => this.toFileSpanWithContext(fileName, textSpan, contextSpan, project)) : implementations.map(_Session.mapToOriginalLocation); } getSyntacticDiagnosticsSync(args) { const { configFile } = this.getConfigFileAndProject(args); if (configFile) { return emptyArray2; } return this.getDiagnosticsWorker(args, false, (project, file) => project.getLanguageService().getSyntacticDiagnostics(file), !!args.includeLinePosition); } getSemanticDiagnosticsSync(args) { const { configFile, project } = this.getConfigFileAndProject(args); if (configFile) { return this.getConfigFileDiagnostics(configFile, project, !!args.includeLinePosition); } return this.getDiagnosticsWorker(args, true, (project2, file) => project2.getLanguageService().getSemanticDiagnostics(file).filter((d) => !!d.file), !!args.includeLinePosition); } getSuggestionDiagnosticsSync(args) { const { configFile } = this.getConfigFileAndProject(args); if (configFile) { return emptyArray2; } return this.getDiagnosticsWorker(args, true, (project, file) => project.getLanguageService().getSuggestionDiagnostics(file), !!args.includeLinePosition); } getJsxClosingTag(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const position = this.getPositionInFile(args, file); const tag = languageService.getJsxClosingTagAtPosition(file, position); return tag === undefined ? undefined : { newText: tag.newText, caretOffset: 0 }; } getLinkedEditingRange(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const position = this.getPositionInFile(args, file); const linkedEditInfo = languageService.getLinkedEditingRangeAtPosition(file, position); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); if (scriptInfo === undefined || linkedEditInfo === undefined) return; return convertLinkedEditInfoToRanges(linkedEditInfo, scriptInfo); } getDocumentHighlights(args, simplifiedResult) { const { file, project } = this.getFileAndProject(args); const position = this.getPositionInFile(args, file); const documentHighlights = project.getLanguageService().getDocumentHighlights(file, position, args.filesToSearch); if (!documentHighlights) return emptyArray2; if (!simplifiedResult) return documentHighlights; return documentHighlights.map(({ fileName, highlightSpans }) => { const scriptInfo = project.getScriptInfo(fileName); return { file: fileName, highlightSpans: highlightSpans.map(({ textSpan, kind, contextSpan }) => ({ ...toProtocolTextSpanWithContext(textSpan, contextSpan, scriptInfo), kind })) }; }); } provideInlayHints(args) { const { file, project } = this.getFileAndProject(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const hints = project.getLanguageService().provideInlayHints(file, args, this.getPreferences(file)); return hints.map((hint) => { const { position, displayParts } = hint; return { ...hint, position: scriptInfo.positionToLineOffset(position), displayParts: displayParts == null ? undefined : displayParts.map(({ text, span, file: file2 }) => { if (span) { Debug.assertIsDefined(file2, "Target file should be defined together with its span."); const scriptInfo2 = this.projectService.getScriptInfo(file2); return { text, span: { start: scriptInfo2.positionToLineOffset(span.start), end: scriptInfo2.positionToLineOffset(span.start + span.length), file: file2 } }; } else { return { text }; } }) }; }); } mapCode(args) { var _a; const formatOptions = this.getHostFormatOptions(); const preferences = this.getHostPreferences(); const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const focusLocations = (_a = args.mapping.focusLocations) == null ? undefined : _a.map((spans) => { return spans.map((loc) => { const start = scriptInfo.lineOffsetToPosition(loc.start.line, loc.start.offset); const end = scriptInfo.lineOffsetToPosition(loc.end.line, loc.end.offset); return { start, length: end - start }; }); }); const changes = languageService.mapCode(file, args.mapping.contents, focusLocations, formatOptions, preferences); return this.mapTextChangesToCodeEdits(changes); } getCopilotRelatedInfo() { return { relatedFiles: [] }; } setCompilerOptionsForInferredProjects(args) { this.projectService.setCompilerOptionsForInferredProjects(args.options, args.projectRootPath); } getProjectInfo(args) { return this.getProjectInfoWorker(args.file, args.projectFileName, args.needFileNameList, args.needDefaultConfiguredProjectInfo, false); } getProjectInfoWorker(uncheckedFileName, projectFileName, needFileNameList, needDefaultConfiguredProjectInfo, excludeConfigFiles) { const { project } = this.getFileAndProjectWorker(uncheckedFileName, projectFileName); updateProjectIfDirty(project); const projectInfo = { configFileName: project.getProjectName(), languageServiceDisabled: !project.languageServiceEnabled, fileNames: needFileNameList ? project.getFileNames(false, excludeConfigFiles) : undefined, configuredProjectInfo: needDefaultConfiguredProjectInfo ? this.getDefaultConfiguredProjectInfo(uncheckedFileName) : undefined }; return projectInfo; } getDefaultConfiguredProjectInfo(uncheckedFileName) { var _a; const info = this.projectService.getScriptInfo(uncheckedFileName); if (!info) return; const result = this.projectService.findDefaultConfiguredProjectWorker(info, 3); if (!result) return; let notMatchedByConfig; let notInProject; result.seenProjects.forEach((kind, project) => { if (project !== result.defaultProject) { if (kind !== 3) { (notMatchedByConfig ?? (notMatchedByConfig = [])).push(toNormalizedPath(project.getConfigFilePath())); } else { (notInProject ?? (notInProject = [])).push(toNormalizedPath(project.getConfigFilePath())); } } }); (_a = result.seenConfigs) == null || _a.forEach((config) => (notMatchedByConfig ?? (notMatchedByConfig = [])).push(config)); return { notMatchedByConfig, notInProject, defaultProject: result.defaultProject && toNormalizedPath(result.defaultProject.getConfigFilePath()) }; } getRenameInfo(args) { const { file, project } = this.getFileAndProject(args); const position = this.getPositionInFile(args, file); const preferences = this.getPreferences(file); return project.getLanguageService().getRenameInfo(file, position, preferences); } getProjects(args, getScriptInfoEnsuringProjectsUptoDate, ignoreNoProjectError) { let projects; let symLinkedProjects; if (args.projectFileName) { const project = this.getProject(args.projectFileName); if (project) { projects = [project]; } } else { const scriptInfo = getScriptInfoEnsuringProjectsUptoDate ? this.projectService.getScriptInfoEnsuringProjectsUptoDate(args.file) : this.projectService.getScriptInfo(args.file); if (!scriptInfo) { if (ignoreNoProjectError) return emptyArray2; this.projectService.logErrorForScriptInfoNotFound(args.file); return Errors.ThrowNoProject(); } else if (!getScriptInfoEnsuringProjectsUptoDate) { this.projectService.ensureDefaultProjectForFile(scriptInfo); } projects = scriptInfo.containingProjects; symLinkedProjects = this.projectService.getSymlinkedProjects(scriptInfo); } projects = filter(projects, (p) => p.languageServiceEnabled && !p.isOrphan()); if (!ignoreNoProjectError && (!projects || !projects.length) && !symLinkedProjects) { this.projectService.logErrorForScriptInfoNotFound(args.file ?? args.projectFileName); return Errors.ThrowNoProject(); } return symLinkedProjects ? { projects, symLinkedProjects } : projects; } getDefaultProject(args) { if (args.projectFileName) { const project = this.getProject(args.projectFileName); if (project) { return project; } if (!args.file) { return Errors.ThrowNoProject(); } } const info = this.projectService.getScriptInfo(args.file); return info.getDefaultProject(); } getRenameLocations(args, simplifiedResult) { const file = toNormalizedPath(args.file); const position = this.getPositionInFile(args, file); const projects = this.getProjects(args); const defaultProject = this.getDefaultProject(args); const preferences = this.getPreferences(file); const renameInfo = this.mapRenameInfo(defaultProject.getLanguageService().getRenameInfo(file, position, preferences), Debug.checkDefined(this.projectService.getScriptInfo(file))); if (!renameInfo.canRename) return simplifiedResult ? { info: renameInfo, locs: [] } : []; const locations = getRenameLocationsWorker(projects, defaultProject, { fileName: args.file, pos: position }, !!args.findInStrings, !!args.findInComments, preferences, this.host.useCaseSensitiveFileNames); if (!simplifiedResult) return locations; return { info: renameInfo, locs: this.toSpanGroups(locations) }; } mapRenameInfo(info, scriptInfo) { if (info.canRename) { const { canRename, fileToRename, displayName, fullDisplayName, kind, kindModifiers, triggerSpan } = info; return identity({ canRename, fileToRename, displayName, fullDisplayName, kind, kindModifiers, triggerSpan: toProtocolTextSpan(triggerSpan, scriptInfo) }); } else { return info; } } toSpanGroups(locations) { const map2 = /* @__PURE__ */ new Map; for (const { fileName, textSpan, contextSpan, originalContextSpan: _2, originalTextSpan: _, originalFileName: _1, ...prefixSuffixText } of locations) { let group2 = map2.get(fileName); if (!group2) map2.set(fileName, group2 = { file: fileName, locs: [] }); const scriptInfo = Debug.checkDefined(this.projectService.getScriptInfo(fileName)); group2.locs.push({ ...toProtocolTextSpanWithContext(textSpan, contextSpan, scriptInfo), ...prefixSuffixText }); } return arrayFrom(map2.values()); } getReferences(args, simplifiedResult) { const file = toNormalizedPath(args.file); const projects = this.getProjects(args); const position = this.getPositionInFile(args, file); const references = getReferencesWorker(projects, this.getDefaultProject(args), { fileName: args.file, pos: position }, this.host.useCaseSensitiveFileNames, this.logger); if (!simplifiedResult) return references; const preferences = this.getPreferences(file); const defaultProject = this.getDefaultProject(args); const scriptInfo = defaultProject.getScriptInfoForNormalizedPath(file); const nameInfo = defaultProject.getLanguageService().getQuickInfoAtPosition(file, position); const symbolDisplayString = nameInfo ? displayPartsToString(nameInfo.displayParts) : ""; const nameSpan = nameInfo && nameInfo.textSpan; const symbolStartOffset = nameSpan ? scriptInfo.positionToLineOffset(nameSpan.start).offset : 0; const symbolName2 = nameSpan ? scriptInfo.getSnapshot().getText(nameSpan.start, textSpanEnd(nameSpan)) : ""; const refs = flatMap(references, (referencedSymbol) => { return referencedSymbol.references.map((entry) => referenceEntryToReferencesResponseItem(this.projectService, entry, preferences)); }); return { refs, symbolName: symbolName2, symbolStartOffset, symbolDisplayString }; } getFileReferences(args, simplifiedResult) { const projects = this.getProjects(args); const fileName = toNormalizedPath(args.file); const preferences = this.getPreferences(fileName); const initialLocation = { fileName, pos: 0 }; const perProjectResults = getPerProjectReferences(projects, this.getDefaultProject(args), initialLocation, initialLocation, mapDefinitionInProjectIfFileInProject, (project) => { this.logger.info(`Finding references to file ${fileName} in project ${project.getProjectName()}`); return project.getLanguageService().getFileReferences(fileName); }); let references; if (isArray(perProjectResults)) { references = perProjectResults; } else { references = []; const seen = createDocumentSpanSet(this.host.useCaseSensitiveFileNames); perProjectResults.forEach((projectOutputs) => { for (const referenceEntry of projectOutputs) { if (!seen.has(referenceEntry)) { references.push(referenceEntry); seen.add(referenceEntry); } } }); } if (!simplifiedResult) return references; const refs = references.map((entry) => referenceEntryToReferencesResponseItem(this.projectService, entry, preferences)); return { refs, symbolName: `"${args.file}"` }; } openClientFile(fileName, fileContent, scriptKind, projectRootPath) { this.projectService.openClientFileWithNormalizedPath(fileName, fileContent, scriptKind, false, projectRootPath); } getPosition(args, scriptInfo) { return args.position !== undefined ? args.position : scriptInfo.lineOffsetToPosition(args.line, args.offset); } getPositionInFile(args, file) { const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); return this.getPosition(args, scriptInfo); } getFileAndProject(args) { return this.getFileAndProjectWorker(args.file, args.projectFileName); } getFileAndLanguageServiceForSyntacticOperation(args) { const { file, project } = this.getFileAndProject(args); return { file, languageService: project.getLanguageService(false) }; } getFileAndProjectWorker(uncheckedFileName, projectFileName) { const file = toNormalizedPath(uncheckedFileName); const project = this.getProject(projectFileName) || this.projectService.ensureDefaultProjectForFile(file); return { file, project }; } getOutliningSpans(args, simplifiedResult) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const spans = languageService.getOutliningSpans(file); if (simplifiedResult) { const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); return spans.map((s) => ({ textSpan: toProtocolTextSpan(s.textSpan, scriptInfo), hintSpan: toProtocolTextSpan(s.hintSpan, scriptInfo), bannerText: s.bannerText, autoCollapse: s.autoCollapse, kind: s.kind })); } else { return spans; } } getTodoComments(args) { const { file, project } = this.getFileAndProject(args); return project.getLanguageService().getTodoComments(file, args.descriptors); } getDocCommentTemplate(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const position = this.getPositionInFile(args, file); return languageService.getDocCommentTemplateAtPosition(file, position, this.getPreferences(file), this.getFormatOptions(file)); } getSpanOfEnclosingComment(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const onlyMultiLine = args.onlyMultiLine; const position = this.getPositionInFile(args, file); return languageService.getSpanOfEnclosingComment(file, position, onlyMultiLine); } getIndentation(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const position = this.getPositionInFile(args, file); const options = args.options ? convertFormatOptions(args.options) : this.getFormatOptions(file); const indentation = languageService.getIndentationAtPosition(file, position, options); return { position, indentation }; } getBreakpointStatement(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const position = this.getPositionInFile(args, file); return languageService.getBreakpointStatementAtPosition(file, position); } getNameOrDottedNameSpan(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const position = this.getPositionInFile(args, file); return languageService.getNameOrDottedNameSpan(file, position, position); } isValidBraceCompletion(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const position = this.getPositionInFile(args, file); return languageService.isValidBraceCompletionAtPosition(file, position, args.openingBrace.charCodeAt(0)); } getQuickInfoWorker(args, simplifiedResult) { const { file, project } = this.getFileAndProject(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const userPreferences = this.getPreferences(file); const quickInfo = project.getLanguageService().getQuickInfoAtPosition(file, this.getPosition(args, scriptInfo), userPreferences.maximumHoverLength, args.verbosityLevel); if (!quickInfo) { return; } const useDisplayParts = !!userPreferences.displayPartsForJSDoc; if (simplifiedResult) { const displayString = displayPartsToString(quickInfo.displayParts); return { kind: quickInfo.kind, kindModifiers: quickInfo.kindModifiers, start: scriptInfo.positionToLineOffset(quickInfo.textSpan.start), end: scriptInfo.positionToLineOffset(textSpanEnd(quickInfo.textSpan)), displayString, documentation: useDisplayParts ? this.mapDisplayParts(quickInfo.documentation, project) : displayPartsToString(quickInfo.documentation), tags: this.mapJSDocTagInfo(quickInfo.tags, project, useDisplayParts), canIncreaseVerbosityLevel: quickInfo.canIncreaseVerbosityLevel }; } else { return useDisplayParts ? quickInfo : { ...quickInfo, tags: this.mapJSDocTagInfo(quickInfo.tags, project, false) }; } } getFormattingEditsForRange(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const startPosition = scriptInfo.lineOffsetToPosition(args.line, args.offset); const endPosition = scriptInfo.lineOffsetToPosition(args.endLine, args.endOffset); const edits = languageService.getFormattingEditsForRange(file, startPosition, endPosition, this.getFormatOptions(file)); if (!edits) { return; } return edits.map((edit) => this.convertTextChangeToCodeEdit(edit, scriptInfo)); } getFormattingEditsForRangeFull(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const options = args.options ? convertFormatOptions(args.options) : this.getFormatOptions(file); return languageService.getFormattingEditsForRange(file, args.position, args.endPosition, options); } getFormattingEditsForDocumentFull(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const options = args.options ? convertFormatOptions(args.options) : this.getFormatOptions(file); return languageService.getFormattingEditsForDocument(file, options); } getFormattingEditsAfterKeystrokeFull(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const options = args.options ? convertFormatOptions(args.options) : this.getFormatOptions(file); return languageService.getFormattingEditsAfterKeystroke(file, args.position, args.key, options); } getFormattingEditsAfterKeystroke(args) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const position = scriptInfo.lineOffsetToPosition(args.line, args.offset); const formatOptions = this.getFormatOptions(file); const edits = languageService.getFormattingEditsAfterKeystroke(file, position, args.key, formatOptions); if (args.key === ` ` && (!edits || edits.length === 0 || allEditsBeforePos(edits, position))) { const { lineText, absolutePosition } = scriptInfo.textStorage.getAbsolutePositionAndLineText(args.line); if (lineText && lineText.search("\\S") < 0) { const preferredIndent = languageService.getIndentationAtPosition(file, position, formatOptions); let hasIndent = 0; let i, len; for (i = 0, len = lineText.length;i < len; i++) { if (lineText.charAt(i) === " ") { hasIndent++; } else if (lineText.charAt(i) === "\t") { hasIndent += formatOptions.tabSize; } else { break; } } if (preferredIndent !== hasIndent) { const firstNoWhiteSpacePosition = absolutePosition + i; edits.push({ span: createTextSpanFromBounds(absolutePosition, firstNoWhiteSpacePosition), newText: ts_formatting_exports.getIndentationString(preferredIndent, formatOptions) }); } } } if (!edits) { return; } return edits.map((edit) => { return { start: scriptInfo.positionToLineOffset(edit.span.start), end: scriptInfo.positionToLineOffset(textSpanEnd(edit.span)), newText: edit.newText ? edit.newText : "" }; }); } getCompletions(args, kind) { const { file, project } = this.getFileAndProject(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const position = this.getPosition(args, scriptInfo); const completions = project.getLanguageService().getCompletionsAtPosition(file, position, { ...convertUserPreferences(this.getPreferences(file)), triggerCharacter: args.triggerCharacter, triggerKind: args.triggerKind, includeExternalModuleExports: args.includeExternalModuleExports, includeInsertTextCompletions: args.includeInsertTextCompletions }, project.projectService.getFormatCodeOptions(file)); if (completions === undefined) return; if (kind === "completions-full") return completions; const prefix = args.prefix || ""; const entries = mapDefined(completions.entries, (entry) => { if (completions.isMemberCompletion || startsWith(entry.name.toLowerCase(), prefix.toLowerCase())) { const convertedSpan = entry.replacementSpan ? toProtocolTextSpan(entry.replacementSpan, scriptInfo) : undefined; return { ...entry, replacementSpan: convertedSpan, hasAction: entry.hasAction || undefined, symbol: undefined }; } }); if (kind === "completions") { if (completions.metadata) entries.metadata = completions.metadata; return entries; } const res = { ...completions, optionalReplacementSpan: completions.optionalReplacementSpan && toProtocolTextSpan(completions.optionalReplacementSpan, scriptInfo), entries }; return res; } getCompletionEntryDetails(args, fullResult) { const { file, project } = this.getFileAndProject(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const position = this.getPosition(args, scriptInfo); const formattingOptions = project.projectService.getFormatCodeOptions(file); const useDisplayParts = !!this.getPreferences(file).displayPartsForJSDoc; const result = mapDefined(args.entryNames, (entryName) => { const { name, source, data } = typeof entryName === "string" ? { name: entryName, source: undefined, data: undefined } : entryName; return project.getLanguageService().getCompletionEntryDetails(file, position, name, formattingOptions, source, this.getPreferences(file), data ? cast(data, isCompletionEntryData) : undefined); }); return fullResult ? useDisplayParts ? result : result.map((details) => ({ ...details, tags: this.mapJSDocTagInfo(details.tags, project, false) })) : result.map((details) => ({ ...details, codeActions: map(details.codeActions, (action) => this.mapCodeAction(action)), documentation: this.mapDisplayParts(details.documentation, project), tags: this.mapJSDocTagInfo(details.tags, project, useDisplayParts) })); } getCompileOnSaveAffectedFileList(args) { const projects = this.getProjects(args, true, true); const info = this.projectService.getScriptInfo(args.file); if (!info) { return emptyArray2; } return combineProjectOutput(info, (path) => this.projectService.getScriptInfoForPath(path), projects, (project, info2) => { if (!project.compileOnSaveEnabled || !project.languageServiceEnabled || project.isOrphan()) { return; } const compilationSettings = project.getCompilationSettings(); if (!!compilationSettings.noEmit || isDeclarationFileName(info2.fileName) && !dtsChangeCanAffectEmit(compilationSettings)) { return; } return { projectFileName: project.getProjectName(), fileNames: project.getCompileOnSaveAffectedFileList(info2), projectUsesOutFile: !!compilationSettings.outFile }; }); } emitFile(args) { const { file, project } = this.getFileAndProject(args); if (!project) { Errors.ThrowNoProject(); } if (!project.languageServiceEnabled) { return args.richResponse ? { emitSkipped: true, diagnostics: [] } : false; } const scriptInfo = project.getScriptInfo(file); const { emitSkipped, diagnostics } = project.emitFile(scriptInfo, (path, data, writeByteOrderMark) => this.host.writeFile(path, data, writeByteOrderMark)); return args.richResponse ? { emitSkipped, diagnostics: args.includeLinePosition ? this.convertToDiagnosticsWithLinePositionFromDiagnosticFile(diagnostics) : diagnostics.map((d) => formatDiagnosticToProtocol(d, true)) } : !emitSkipped; } getSignatureHelpItems(args, simplifiedResult) { const { file, project } = this.getFileAndProject(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const position = this.getPosition(args, scriptInfo); const helpItems = project.getLanguageService().getSignatureHelpItems(file, position, args); const useDisplayParts = !!this.getPreferences(file).displayPartsForJSDoc; if (helpItems && simplifiedResult) { const span = helpItems.applicableSpan; return { ...helpItems, applicableSpan: { start: scriptInfo.positionToLineOffset(span.start), end: scriptInfo.positionToLineOffset(span.start + span.length) }, items: this.mapSignatureHelpItems(helpItems.items, project, useDisplayParts) }; } else if (useDisplayParts || !helpItems) { return helpItems; } else { return { ...helpItems, items: helpItems.items.map((item) => ({ ...item, tags: this.mapJSDocTagInfo(item.tags, project, false) })) }; } } toPendingErrorCheck(uncheckedFileName) { const fileName = toNormalizedPath(uncheckedFileName); const project = this.projectService.tryGetDefaultProjectForFile(fileName); return project && { fileName, project }; } getDiagnostics(next, delay, fileArgs) { if (this.suppressDiagnosticEvents) { return; } if (fileArgs.length > 0) { this.updateErrorCheck(next, fileArgs, delay); } } change(args) { const scriptInfo = this.projectService.getScriptInfo(args.file); Debug.assert(!!scriptInfo); scriptInfo.textStorage.switchToScriptVersionCache(); const start = scriptInfo.lineOffsetToPosition(args.line, args.offset); const end = scriptInfo.lineOffsetToPosition(args.endLine, args.endOffset); if (start >= 0) { this.changeSeq++; this.projectService.applyChangesToFile(scriptInfo, singleIterator({ span: { start, length: end - start }, newText: args.insertString })); } } reload(args) { const file = toNormalizedPath(args.file); const tempFileName = args.tmpfile === undefined ? undefined : toNormalizedPath(args.tmpfile); const info = this.projectService.getScriptInfoForNormalizedPath(file); if (info) { this.changeSeq++; info.reloadFromFile(tempFileName); } } saveToTmp(fileName, tempFileName) { const scriptInfo = this.projectService.getScriptInfo(fileName); if (scriptInfo) { scriptInfo.saveTo(tempFileName); } } closeClientFile(fileName) { if (!fileName) { return; } const file = normalizePath(fileName); this.projectService.closeClientFile(file); } mapLocationNavigationBarItems(items, scriptInfo) { return map(items, (item) => ({ text: item.text, kind: item.kind, kindModifiers: item.kindModifiers, spans: item.spans.map((span) => toProtocolTextSpan(span, scriptInfo)), childItems: this.mapLocationNavigationBarItems(item.childItems, scriptInfo), indent: item.indent })); } getNavigationBarItems(args, simplifiedResult) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const items = languageService.getNavigationBarItems(file); return !items ? undefined : simplifiedResult ? this.mapLocationNavigationBarItems(items, this.projectService.getScriptInfoForNormalizedPath(file)) : items; } toLocationNavigationTree(tree, scriptInfo) { return { text: tree.text, kind: tree.kind, kindModifiers: tree.kindModifiers, spans: tree.spans.map((span) => toProtocolTextSpan(span, scriptInfo)), nameSpan: tree.nameSpan && toProtocolTextSpan(tree.nameSpan, scriptInfo), childItems: map(tree.childItems, (item) => this.toLocationNavigationTree(item, scriptInfo)) }; } getNavigationTree(args, simplifiedResult) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const tree = languageService.getNavigationTree(file); return !tree ? undefined : simplifiedResult ? this.toLocationNavigationTree(tree, this.projectService.getScriptInfoForNormalizedPath(file)) : tree; } getNavigateToItems(args, simplifiedResult) { const full = this.getFullNavigateToItems(args); return !simplifiedResult ? flatMap(full, ({ navigateToItems }) => navigateToItems) : flatMap(full, ({ project, navigateToItems }) => navigateToItems.map((navItem) => { const scriptInfo = project.getScriptInfo(navItem.fileName); const bakedItem = { name: navItem.name, kind: navItem.kind, kindModifiers: navItem.kindModifiers, isCaseSensitive: navItem.isCaseSensitive, matchKind: navItem.matchKind, file: navItem.fileName, start: scriptInfo.positionToLineOffset(navItem.textSpan.start), end: scriptInfo.positionToLineOffset(textSpanEnd(navItem.textSpan)) }; if (navItem.kindModifiers && navItem.kindModifiers !== "") { bakedItem.kindModifiers = navItem.kindModifiers; } if (navItem.containerName && navItem.containerName.length > 0) { bakedItem.containerName = navItem.containerName; } if (navItem.containerKind && navItem.containerKind.length > 0) { bakedItem.containerKind = navItem.containerKind; } return bakedItem; })); } getFullNavigateToItems(args) { const { currentFileOnly, searchValue, maxResultCount, projectFileName } = args; if (currentFileOnly) { Debug.assertIsDefined(args.file); const { file, project } = this.getFileAndProject(args); return [{ project, navigateToItems: project.getLanguageService().getNavigateToItems(searchValue, maxResultCount, file) }]; } const preferences = this.getHostPreferences(); const outputs = []; const seenItems = /* @__PURE__ */ new Map; if (!args.file && !projectFileName) { this.projectService.loadAncestorProjectTree(); this.projectService.forEachEnabledProject((project) => addItemsForProject(project)); } else { const projects = this.getProjects(args); forEachProjectInProjects(projects, undefined, (project) => addItemsForProject(project)); } return outputs; function addItemsForProject(project) { const projectItems = project.getLanguageService().getNavigateToItems(searchValue, maxResultCount, undefined, project.isNonTsProject(), preferences.excludeLibrarySymbolsInNavTo); const unseenItems = filter(projectItems, (item) => tryAddSeenItem(item) && !getMappedLocationForProject(documentSpanLocation(item), project)); if (unseenItems.length) { outputs.push({ project, navigateToItems: unseenItems }); } } function tryAddSeenItem(item) { const name = item.name; if (!seenItems.has(name)) { seenItems.set(name, [item]); return true; } const seen = seenItems.get(name); for (const seenItem of seen) { if (navigateToItemIsEqualTo(seenItem, item)) { return false; } } seen.push(item); return true; } function navigateToItemIsEqualTo(a, b) { if (a === b) { return true; } if (!a || !b) { return false; } return a.containerKind === b.containerKind && a.containerName === b.containerName && a.fileName === b.fileName && a.isCaseSensitive === b.isCaseSensitive && a.kind === b.kind && a.kindModifiers === b.kindModifiers && a.matchKind === b.matchKind && a.name === b.name && a.textSpan.start === b.textSpan.start && a.textSpan.length === b.textSpan.length; } } getSupportedCodeFixes(args) { if (!args) return getSupportedCodeFixes(); if (args.file) { const { file, project: project2 } = this.getFileAndProject(args); return project2.getLanguageService().getSupportedCodeFixes(file); } const project = this.getProject(args.projectFileName); if (!project) Errors.ThrowNoProject(); return project.getLanguageService().getSupportedCodeFixes(); } isLocation(locationOrSpan) { return locationOrSpan.line !== undefined; } extractPositionOrRange(args, scriptInfo) { let position; let textRange; if (this.isLocation(args)) { position = getPosition(args); } else { textRange = this.getRange(args, scriptInfo); } return Debug.checkDefined(position === undefined ? textRange : position); function getPosition(loc) { return loc.position !== undefined ? loc.position : scriptInfo.lineOffsetToPosition(loc.line, loc.offset); } } getRange(args, scriptInfo) { const { startPosition, endPosition } = this.getStartAndEndPosition(args, scriptInfo); return { pos: startPosition, end: endPosition }; } getApplicableRefactors(args) { const { file, project } = this.getFileAndProject(args); const scriptInfo = project.getScriptInfoForNormalizedPath(file); const result = project.getLanguageService().getApplicableRefactors(file, this.extractPositionOrRange(args, scriptInfo), this.getPreferences(file), args.triggerReason, args.kind, args.includeInteractiveActions); return result.map((result2) => ({ ...result2, actions: result2.actions.map((action) => ({ ...action, range: action.range ? { start: convertToLocation({ line: action.range.start.line, character: action.range.start.offset }), end: convertToLocation({ line: action.range.end.line, character: action.range.end.offset }) } : undefined })) })); } getEditsForRefactor(args, simplifiedResult) { const { file, project } = this.getFileAndProject(args); const scriptInfo = project.getScriptInfoForNormalizedPath(file); const result = project.getLanguageService().getEditsForRefactor(file, this.getFormatOptions(file), this.extractPositionOrRange(args, scriptInfo), args.refactor, args.action, this.getPreferences(file), args.interactiveRefactorArguments); if (result === undefined) { return { edits: [] }; } if (simplifiedResult) { const { renameFilename, renameLocation, edits } = result; let mappedRenameLocation; if (renameFilename !== undefined && renameLocation !== undefined) { const renameScriptInfo = project.getScriptInfoForNormalizedPath(toNormalizedPath(renameFilename)); mappedRenameLocation = getLocationInNewDocument(getSnapshotText(renameScriptInfo.getSnapshot()), renameFilename, renameLocation, edits); } return { renameLocation: mappedRenameLocation, renameFilename, edits: this.mapTextChangesToCodeEdits(edits), notApplicableReason: result.notApplicableReason }; } return result; } getMoveToRefactoringFileSuggestions(args) { const { file, project } = this.getFileAndProject(args); const scriptInfo = project.getScriptInfoForNormalizedPath(file); return project.getLanguageService().getMoveToRefactoringFileSuggestions(file, this.extractPositionOrRange(args, scriptInfo), this.getPreferences(file)); } preparePasteEdits(args) { const { file, project } = this.getFileAndProject(args); return project.getLanguageService().preparePasteEditsForFile(file, args.copiedTextSpan.map((copies) => this.getRange({ file, startLine: copies.start.line, startOffset: copies.start.offset, endLine: copies.end.line, endOffset: copies.end.offset }, this.projectService.getScriptInfoForNormalizedPath(file)))); } getPasteEdits(args) { const { file, project } = this.getFileAndProject(args); if (isDynamicFileName(file)) return; const copiedFrom = args.copiedFrom ? { file: args.copiedFrom.file, range: args.copiedFrom.spans.map((copies) => this.getRange({ file: args.copiedFrom.file, startLine: copies.start.line, startOffset: copies.start.offset, endLine: copies.end.line, endOffset: copies.end.offset }, project.getScriptInfoForNormalizedPath(toNormalizedPath(args.copiedFrom.file)))) } : undefined; const result = project.getLanguageService().getPasteEdits({ targetFile: file, pastedText: args.pastedText, pasteLocations: args.pasteLocations.map((paste) => this.getRange({ file, startLine: paste.start.line, startOffset: paste.start.offset, endLine: paste.end.line, endOffset: paste.end.offset }, project.getScriptInfoForNormalizedPath(file))), copiedFrom, preferences: this.getPreferences(file) }, this.getFormatOptions(file)); return result && this.mapPasteEditsAction(result); } organizeImports(args, simplifiedResult) { Debug.assert(args.scope.type === "file"); const { file, project } = this.getFileAndProject(args.scope.args); const changes = project.getLanguageService().organizeImports({ fileName: file, mode: args.mode ?? (args.skipDestructiveCodeActions ? "SortAndCombine" : undefined), type: "file" }, this.getFormatOptions(file), this.getPreferences(file)); if (simplifiedResult) { return this.mapTextChangesToCodeEdits(changes); } else { return changes; } } getEditsForFileRename(args, simplifiedResult) { const oldPath = toNormalizedPath(args.oldFilePath); const newPath = toNormalizedPath(args.newFilePath); const formatOptions = this.getHostFormatOptions(); const preferences = this.getHostPreferences(); const seenFiles = /* @__PURE__ */ new Set; const textChanges2 = []; this.projectService.loadAncestorProjectTree(); this.projectService.forEachEnabledProject((project) => { const projectTextChanges = project.getLanguageService().getEditsForFileRename(oldPath, newPath, formatOptions, preferences); const projectFiles = []; for (const textChange of projectTextChanges) { if (!seenFiles.has(textChange.fileName)) { textChanges2.push(textChange); projectFiles.push(textChange.fileName); } } for (const file of projectFiles) { seenFiles.add(file); } }); return simplifiedResult ? textChanges2.map((c) => this.mapTextChangeToCodeEdit(c)) : textChanges2; } getCodeFixes(args, simplifiedResult) { const { file, project } = this.getFileAndProject(args); const scriptInfo = project.getScriptInfoForNormalizedPath(file); const { startPosition, endPosition } = this.getStartAndEndPosition(args, scriptInfo); let codeActions; try { codeActions = project.getLanguageService().getCodeFixesAtPosition(file, startPosition, endPosition, args.errorCodes, this.getFormatOptions(file), this.getPreferences(file)); } catch (e) { const error2 = e instanceof Error ? e : new Error(e); const ls = project.getLanguageService(); const existingDiagCodes = [ ...ls.getSyntacticDiagnostics(file), ...ls.getSemanticDiagnostics(file), ...ls.getSuggestionDiagnostics(file) ].filter((d) => decodedTextSpanIntersectsWith(startPosition, endPosition - startPosition, d.start, d.length)).map((d) => d.code); const badCode = args.errorCodes.find((c) => !existingDiagCodes.includes(c)); if (badCode !== undefined) { error2.message += ` Additional information: BADCLIENT: Bad error code, ${badCode} not found in range ${startPosition}..${endPosition} (found: ${existingDiagCodes.join(", ")})`; } throw error2; } return simplifiedResult ? codeActions.map((codeAction) => this.mapCodeFixAction(codeAction)) : codeActions; } getCombinedCodeFix({ scope, fixId: fixId56 }, simplifiedResult) { Debug.assert(scope.type === "file"); const { file, project } = this.getFileAndProject(scope.args); const res = project.getLanguageService().getCombinedCodeFix({ type: "file", fileName: file }, fixId56, this.getFormatOptions(file), this.getPreferences(file)); if (simplifiedResult) { return { changes: this.mapTextChangesToCodeEdits(res.changes), commands: res.commands }; } else { return res; } } applyCodeActionCommand(args) { const commands = args.command; for (const command of toArray(commands)) { const { file, project } = this.getFileAndProject(command); project.getLanguageService().applyCodeActionCommand(command, this.getFormatOptions(file)).then((_result) => {}, (_error) => {}); } return {}; } getStartAndEndPosition(args, scriptInfo) { let startPosition, endPosition; if (args.startPosition !== undefined) { startPosition = args.startPosition; } else { startPosition = scriptInfo.lineOffsetToPosition(args.startLine, args.startOffset); args.startPosition = startPosition; } if (args.endPosition !== undefined) { endPosition = args.endPosition; } else { endPosition = scriptInfo.lineOffsetToPosition(args.endLine, args.endOffset); args.endPosition = endPosition; } return { startPosition, endPosition }; } mapCodeAction({ description: description3, changes, commands }) { return { description: description3, changes: this.mapTextChangesToCodeEdits(changes), commands }; } mapCodeFixAction({ fixName: fixName8, description: description3, changes, commands, fixId: fixId56, fixAllDescription }) { return { fixName: fixName8, description: description3, changes: this.mapTextChangesToCodeEdits(changes), commands, fixId: fixId56, fixAllDescription }; } mapPasteEditsAction({ edits, fixId: fixId56 }) { return { edits: this.mapTextChangesToCodeEdits(edits), fixId: fixId56 }; } mapTextChangesToCodeEdits(textChanges2) { return textChanges2.map((change) => this.mapTextChangeToCodeEdit(change)); } mapTextChangeToCodeEdit(textChanges2) { const scriptInfo = this.projectService.getScriptInfoOrConfig(textChanges2.fileName); if (!!textChanges2.isNewFile === !!scriptInfo) { if (!scriptInfo) { this.projectService.logErrorForScriptInfoNotFound(textChanges2.fileName); } Debug.fail("Expected isNewFile for (only) new files. " + JSON.stringify({ isNewFile: !!textChanges2.isNewFile, hasScriptInfo: !!scriptInfo })); } return scriptInfo ? { fileName: textChanges2.fileName, textChanges: textChanges2.textChanges.map((textChange) => convertTextChangeToCodeEdit(textChange, scriptInfo)) } : convertNewFileTextChangeToCodeEdit(textChanges2); } convertTextChangeToCodeEdit(change, scriptInfo) { return { start: scriptInfo.positionToLineOffset(change.span.start), end: scriptInfo.positionToLineOffset(change.span.start + change.span.length), newText: change.newText ? change.newText : "" }; } getBraceMatching(args, simplifiedResult) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const position = this.getPosition(args, scriptInfo); const spans = languageService.getBraceMatchingAtPosition(file, position); return !spans ? undefined : simplifiedResult ? spans.map((span) => toProtocolTextSpan(span, scriptInfo)) : spans; } getDiagnosticsForProject(next, delay, fileName) { if (this.suppressDiagnosticEvents) { return; } const { fileNames, languageServiceDisabled } = this.getProjectInfoWorker(fileName, undefined, true, undefined, true); if (languageServiceDisabled) return; const fileNamesInProject = fileNames.filter((value) => !value.includes("lib.d.ts")); if (fileNamesInProject.length === 0) return; const highPriorityFiles = []; const mediumPriorityFiles = []; const lowPriorityFiles = []; const veryLowPriorityFiles = []; const normalizedFileName = toNormalizedPath(fileName); const project = this.projectService.ensureDefaultProjectForFile(normalizedFileName); for (const fileNameInProject of fileNamesInProject) { if (this.getCanonicalFileName(fileNameInProject) === this.getCanonicalFileName(fileName)) { highPriorityFiles.push(fileNameInProject); } else { const info = this.projectService.getScriptInfo(fileNameInProject); if (!info.isScriptOpen()) { if (isDeclarationFileName(fileNameInProject)) { veryLowPriorityFiles.push(fileNameInProject); } else { lowPriorityFiles.push(fileNameInProject); } } else { mediumPriorityFiles.push(fileNameInProject); } } } const sortedFiles = [...highPriorityFiles, ...mediumPriorityFiles, ...lowPriorityFiles, ...veryLowPriorityFiles]; const checkList = sortedFiles.map((fileName2) => ({ fileName: fileName2, project })); this.updateErrorCheck(next, checkList, delay, false); } configurePlugin(args) { this.projectService.configurePlugin(args); } getSmartSelectionRange(args, simplifiedResult) { const { locations } = args; const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const scriptInfo = Debug.checkDefined(this.projectService.getScriptInfo(file)); return map(locations, (location) => { const pos = this.getPosition(location, scriptInfo); const selectionRange = languageService.getSmartSelectionRange(file, pos); return simplifiedResult ? this.mapSelectionRange(selectionRange, scriptInfo) : selectionRange; }); } toggleLineComment(args, simplifiedResult) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const scriptInfo = this.projectService.getScriptInfo(file); const textRange = this.getRange(args, scriptInfo); const textChanges2 = languageService.toggleLineComment(file, textRange); if (simplifiedResult) { const scriptInfo2 = this.projectService.getScriptInfoForNormalizedPath(file); return textChanges2.map((textChange) => this.convertTextChangeToCodeEdit(textChange, scriptInfo2)); } return textChanges2; } toggleMultilineComment(args, simplifiedResult) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const textRange = this.getRange(args, scriptInfo); const textChanges2 = languageService.toggleMultilineComment(file, textRange); if (simplifiedResult) { const scriptInfo2 = this.projectService.getScriptInfoForNormalizedPath(file); return textChanges2.map((textChange) => this.convertTextChangeToCodeEdit(textChange, scriptInfo2)); } return textChanges2; } commentSelection(args, simplifiedResult) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const textRange = this.getRange(args, scriptInfo); const textChanges2 = languageService.commentSelection(file, textRange); if (simplifiedResult) { const scriptInfo2 = this.projectService.getScriptInfoForNormalizedPath(file); return textChanges2.map((textChange) => this.convertTextChangeToCodeEdit(textChange, scriptInfo2)); } return textChanges2; } uncommentSelection(args, simplifiedResult) { const { file, languageService } = this.getFileAndLanguageServiceForSyntacticOperation(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); const textRange = this.getRange(args, scriptInfo); const textChanges2 = languageService.uncommentSelection(file, textRange); if (simplifiedResult) { const scriptInfo2 = this.projectService.getScriptInfoForNormalizedPath(file); return textChanges2.map((textChange) => this.convertTextChangeToCodeEdit(textChange, scriptInfo2)); } return textChanges2; } mapSelectionRange(selectionRange, scriptInfo) { const result = { textSpan: toProtocolTextSpan(selectionRange.textSpan, scriptInfo) }; if (selectionRange.parent) { result.parent = this.mapSelectionRange(selectionRange.parent, scriptInfo); } return result; } getScriptInfoFromProjectService(file) { const normalizedFile = toNormalizedPath(file); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(normalizedFile); if (!scriptInfo) { this.projectService.logErrorForScriptInfoNotFound(normalizedFile); return Errors.ThrowNoProject(); } return scriptInfo; } toProtocolCallHierarchyItem(item) { const scriptInfo = this.getScriptInfoFromProjectService(item.file); return { name: item.name, kind: item.kind, kindModifiers: item.kindModifiers, file: item.file, containerName: item.containerName, span: toProtocolTextSpan(item.span, scriptInfo), selectionSpan: toProtocolTextSpan(item.selectionSpan, scriptInfo) }; } toProtocolCallHierarchyIncomingCall(incomingCall) { const scriptInfo = this.getScriptInfoFromProjectService(incomingCall.from.file); return { from: this.toProtocolCallHierarchyItem(incomingCall.from), fromSpans: incomingCall.fromSpans.map((fromSpan) => toProtocolTextSpan(fromSpan, scriptInfo)) }; } toProtocolCallHierarchyOutgoingCall(outgoingCall, scriptInfo) { return { to: this.toProtocolCallHierarchyItem(outgoingCall.to), fromSpans: outgoingCall.fromSpans.map((fromSpan) => toProtocolTextSpan(fromSpan, scriptInfo)) }; } prepareCallHierarchy(args) { const { file, project } = this.getFileAndProject(args); const scriptInfo = this.projectService.getScriptInfoForNormalizedPath(file); if (scriptInfo) { const position = this.getPosition(args, scriptInfo); const result = project.getLanguageService().prepareCallHierarchy(file, position); return result && mapOneOrMany(result, (item) => this.toProtocolCallHierarchyItem(item)); } return; } provideCallHierarchyIncomingCalls(args) { const { file, project } = this.getFileAndProject(args); const scriptInfo = this.getScriptInfoFromProjectService(file); const incomingCalls = project.getLanguageService().provideCallHierarchyIncomingCalls(file, this.getPosition(args, scriptInfo)); return incomingCalls.map((call) => this.toProtocolCallHierarchyIncomingCall(call)); } provideCallHierarchyOutgoingCalls(args) { const { file, project } = this.getFileAndProject(args); const scriptInfo = this.getScriptInfoFromProjectService(file); const outgoingCalls = project.getLanguageService().provideCallHierarchyOutgoingCalls(file, this.getPosition(args, scriptInfo)); return outgoingCalls.map((call) => this.toProtocolCallHierarchyOutgoingCall(call, scriptInfo)); } getCanonicalFileName(fileName) { const name = this.host.useCaseSensitiveFileNames ? fileName : toFileNameLowerCase(fileName); return normalizePath(name); } exit() {} notRequired(request) { if (request) this.doOutput(undefined, request.command, request.seq, true, this.performanceData); return { responseRequired: false, performanceData: this.performanceData }; } requiredResponse(response) { return { response, responseRequired: true, performanceData: this.performanceData }; } addProtocolHandler(command, handler) { if (this.handlers.has(command)) { throw new Error(`Protocol handler already exists for command "${command}"`); } this.handlers.set(command, handler); } setCurrentRequest(requestId) { Debug.assert(this.currentRequestId === undefined); this.currentRequestId = requestId; this.cancellationToken.setRequest(requestId); } resetCurrentRequest(requestId) { Debug.assert(this.currentRequestId === requestId); this.currentRequestId = undefined; this.cancellationToken.resetRequest(requestId); } executeWithRequestId(requestId, f, perfomanceData) { const currentPerformanceData = this.performanceData; try { this.performanceData = perfomanceData; this.setCurrentRequest(requestId); return f(); } finally { this.resetCurrentRequest(requestId); this.performanceData = currentPerformanceData; } } executeCommand(request) { const handler = this.handlers.get(request.command); if (handler) { const response = this.executeWithRequestId(request.seq, () => handler(request), undefined); this.projectService.enableRequestedPlugins(); return response; } else { this.logger.msg(`Unrecognized JSON command:${stringifyIndented(request)}`, "Err"); this.doOutput(undefined, "unknown", request.seq, false, undefined, `Unrecognized JSON command: ${request.command}`); return { responseRequired: false }; } } onMessage(message) { var _a, _b, _c, _d, _e, _f, _g; this.gcTimer.scheduleCollect(); let start; const currentPerformanceData = this.performanceData; if (this.logger.hasLevel(2)) { start = this.hrtime(); if (this.logger.hasLevel(3)) { this.logger.info(`request:${indent2(this.toStringMessage(message))}`); } } let request; let relevantFile; try { request = this.parseMessage(message); relevantFile = request.arguments && request.arguments.file ? request.arguments : undefined; (_a = tracing) == null || _a.instant(tracing.Phase.Session, "request", { seq: request.seq, command: request.command }); (_b = tracing) == null || _b.push(tracing.Phase.Session, "executeCommand", { seq: request.seq, command: request.command }, true); const { response, responseRequired, performanceData } = this.executeCommand(request); (_c = tracing) == null || _c.pop(); if (this.logger.hasLevel(2)) { const elapsedTime = hrTimeToMilliseconds(this.hrtime(start)).toFixed(4); if (responseRequired) { this.logger.perftrc(`${request.seq}::${request.command}: elapsed time (in milliseconds) ${elapsedTime}`); } else { this.logger.perftrc(`${request.seq}::${request.command}: async elapsed time (in milliseconds) ${elapsedTime}`); } } (_d = tracing) == null || _d.instant(tracing.Phase.Session, "response", { seq: request.seq, command: request.command, success: !!response }); if (response) { this.doOutput(response, request.command, request.seq, true, performanceData); } else if (responseRequired) { this.doOutput(undefined, request.command, request.seq, false, performanceData, "No content available."); } } catch (err) { (_e = tracing) == null || _e.popAll(); if (err instanceof OperationCanceledException) { (_f = tracing) == null || _f.instant(tracing.Phase.Session, "commandCanceled", { seq: request == null ? undefined : request.seq, command: request == null ? undefined : request.command }); this.doOutput({ canceled: true }, request.command, request.seq, true, this.performanceData); return; } this.logErrorWorker(err, this.toStringMessage(message), relevantFile); (_g = tracing) == null || _g.instant(tracing.Phase.Session, "commandError", { seq: request == null ? undefined : request.seq, command: request == null ? undefined : request.command, message: err.message }); this.doOutput(undefined, request ? request.command : "unknown", request ? request.seq : 0, false, this.performanceData, "Error processing request. " + err.message + ` ` + err.stack); } finally { this.performanceData = currentPerformanceData; } } parseMessage(message) { return JSON.parse(message); } toStringMessage(message) { return message; } getFormatOptions(file) { return this.projectService.getFormatCodeOptions(file); } getPreferences(file) { return this.projectService.getPreferences(file); } getHostFormatOptions() { return this.projectService.getHostFormatCodeOptions(); } getHostPreferences() { return this.projectService.getHostPreferences(); } }; function toProtocolPerformanceData(performanceData) { const diagnosticsDuration = performanceData.diagnosticsDuration && arrayFrom(performanceData.diagnosticsDuration, ([file, data]) => ({ ...data, file })); return { ...performanceData, diagnosticsDuration }; } function toProtocolTextSpan(textSpan, scriptInfo) { return { start: scriptInfo.positionToLineOffset(textSpan.start), end: scriptInfo.positionToLineOffset(textSpanEnd(textSpan)) }; } function toProtocolTextSpanWithContext(span, contextSpan, scriptInfo) { const textSpan = toProtocolTextSpan(span, scriptInfo); const contextTextSpan = contextSpan && toProtocolTextSpan(contextSpan, scriptInfo); return contextTextSpan ? { ...textSpan, contextStart: contextTextSpan.start, contextEnd: contextTextSpan.end } : textSpan; } function convertTextChangeToCodeEdit(change, scriptInfo) { return { start: positionToLineOffset(scriptInfo, change.span.start), end: positionToLineOffset(scriptInfo, textSpanEnd(change.span)), newText: change.newText }; } function positionToLineOffset(info, position) { return isConfigFile(info) ? locationFromLineAndCharacter(info.getLineAndCharacterOfPosition(position)) : info.positionToLineOffset(position); } function convertLinkedEditInfoToRanges(linkedEdit, scriptInfo) { const ranges = linkedEdit.ranges.map((r) => { return { start: scriptInfo.positionToLineOffset(r.start), end: scriptInfo.positionToLineOffset(r.start + r.length) }; }); if (!linkedEdit.wordPattern) return { ranges }; return { ranges, wordPattern: linkedEdit.wordPattern }; } function locationFromLineAndCharacter(lc) { return { line: lc.line + 1, offset: lc.character + 1 }; } function convertNewFileTextChangeToCodeEdit(textChanges2) { Debug.assert(textChanges2.textChanges.length === 1); const change = first(textChanges2.textChanges); Debug.assert(change.span.start === 0 && change.span.length === 0); return { fileName: textChanges2.fileName, textChanges: [{ start: { line: 0, offset: 0 }, end: { line: 0, offset: 0 }, newText: change.newText }] }; } function getLocationInNewDocument(oldText, renameFilename, renameLocation, edits) { const newText = applyEdits(oldText, renameFilename, edits); const { line, character } = computeLineAndCharacterOfPosition(computeLineStarts(newText), renameLocation); return { line: line + 1, offset: character + 1 }; } function applyEdits(text, textFilename, edits) { for (const { fileName, textChanges: textChanges2 } of edits) { if (fileName !== textFilename) { continue; } for (let i = textChanges2.length - 1;i >= 0; i--) { const { newText, span: { start, length: length2 } } = textChanges2[i]; text = text.slice(0, start) + newText + text.slice(start + length2); } } return text; } function referenceEntryToReferencesResponseItem(projectService, { fileName, textSpan, contextSpan, isWriteAccess: isWriteAccess2, isDefinition }, { disableLineTextInReferences }) { const scriptInfo = Debug.checkDefined(projectService.getScriptInfo(fileName)); const span = toProtocolTextSpanWithContext(textSpan, contextSpan, scriptInfo); const lineText = disableLineTextInReferences ? undefined : getLineText(scriptInfo, span); return { file: fileName, ...span, lineText, isWriteAccess: isWriteAccess2, isDefinition }; } function getLineText(scriptInfo, span) { const lineSpan = scriptInfo.lineToTextSpan(span.start.line - 1); return scriptInfo.getSnapshot().getText(lineSpan.start, textSpanEnd(lineSpan)).replace(/\r|\n/g, ""); } function isCompletionEntryData(data) { return data === undefined || data && typeof data === "object" && typeof data.exportName === "string" && (data.fileName === undefined || typeof data.fileName === "string") && (data.ambientModuleName === undefined || typeof data.ambientModuleName === "string" && (data.isPackageJsonImport === undefined || typeof data.isPackageJsonImport === "boolean")); } var lineCollectionCapacity = 4; var CharRangeSection = /* @__PURE__ */ ((CharRangeSection2) => { CharRangeSection2[CharRangeSection2["PreStart"] = 0] = "PreStart"; CharRangeSection2[CharRangeSection2["Start"] = 1] = "Start"; CharRangeSection2[CharRangeSection2["Entire"] = 2] = "Entire"; CharRangeSection2[CharRangeSection2["Mid"] = 3] = "Mid"; CharRangeSection2[CharRangeSection2["End"] = 4] = "End"; CharRangeSection2[CharRangeSection2["PostEnd"] = 5] = "PostEnd"; return CharRangeSection2; })(CharRangeSection || {}); var EditWalker = class { constructor() { this.goSubtree = true; this.lineIndex = new LineIndex; this.endBranch = []; this.state = 2; this.initialText = ""; this.trailingText = ""; this.lineIndex.root = new LineNode; this.startPath = [this.lineIndex.root]; this.stack = [this.lineIndex.root]; } get done() { return false; } insertLines(insertedText, suppressTrailingText) { if (suppressTrailingText) { this.trailingText = ""; } if (insertedText) { insertedText = this.initialText + insertedText + this.trailingText; } else { insertedText = this.initialText + this.trailingText; } const lm = LineIndex.linesFromText(insertedText); const lines = lm.lines; if (lines.length > 1 && lines[lines.length - 1] === "") { lines.pop(); } let branchParent; let lastZeroCount; for (let k = this.endBranch.length - 1;k >= 0; k--) { this.endBranch[k].updateCounts(); if (this.endBranch[k].charCount() === 0) { lastZeroCount = this.endBranch[k]; if (k > 0) { branchParent = this.endBranch[k - 1]; } else { branchParent = this.branchNode; } } } if (lastZeroCount) { branchParent.remove(lastZeroCount); } const leafNode = this.startPath[this.startPath.length - 1]; if (lines.length > 0) { leafNode.text = lines[0]; if (lines.length > 1) { let insertedNodes = new Array(lines.length - 1); let startNode2 = leafNode; for (let i = 1;i < lines.length; i++) { insertedNodes[i - 1] = new LineLeaf(lines[i]); } let pathIndex = this.startPath.length - 2; while (pathIndex >= 0) { const insertionNode = this.startPath[pathIndex]; insertedNodes = insertionNode.insertAt(startNode2, insertedNodes); pathIndex--; startNode2 = insertionNode; } let insertedNodesLen = insertedNodes.length; while (insertedNodesLen > 0) { const newRoot = new LineNode; newRoot.add(this.lineIndex.root); insertedNodes = newRoot.insertAt(this.lineIndex.root, insertedNodes); insertedNodesLen = insertedNodes.length; this.lineIndex.root = newRoot; } this.lineIndex.root.updateCounts(); } else { for (let j = this.startPath.length - 2;j >= 0; j--) { this.startPath[j].updateCounts(); } } } else { const insertionNode = this.startPath[this.startPath.length - 2]; insertionNode.remove(leafNode); for (let j = this.startPath.length - 2;j >= 0; j--) { this.startPath[j].updateCounts(); } } return this.lineIndex; } post(_relativeStart, _relativeLength, lineCollection) { if (lineCollection === this.lineCollectionAtBranch) { this.state = 4; } this.stack.pop(); } pre(_relativeStart, _relativeLength, lineCollection, _parent, nodeType) { const currentNode = this.stack[this.stack.length - 1]; if (this.state === 2 && nodeType === 1) { this.state = 1; this.branchNode = currentNode; this.lineCollectionAtBranch = lineCollection; } let child; function fresh(node) { if (node.isLeaf()) { return new LineLeaf(""); } else return new LineNode; } switch (nodeType) { case 0: this.goSubtree = false; if (this.state !== 4) { currentNode.add(lineCollection); } break; case 1: if (this.state === 4) { this.goSubtree = false; } else { child = fresh(lineCollection); currentNode.add(child); this.startPath.push(child); } break; case 2: if (this.state !== 4) { child = fresh(lineCollection); currentNode.add(child); this.startPath.push(child); } else { if (!lineCollection.isLeaf()) { child = fresh(lineCollection); currentNode.add(child); this.endBranch.push(child); } } break; case 3: this.goSubtree = false; break; case 4: if (this.state !== 4) { this.goSubtree = false; } else { if (!lineCollection.isLeaf()) { child = fresh(lineCollection); currentNode.add(child); this.endBranch.push(child); } } break; case 5: this.goSubtree = false; if (this.state !== 1) { currentNode.add(lineCollection); } break; } if (this.goSubtree) { this.stack.push(child); } } leaf(relativeStart, relativeLength, ll) { if (this.state === 1) { this.initialText = ll.text.substring(0, relativeStart); } else if (this.state === 2) { this.initialText = ll.text.substring(0, relativeStart); this.trailingText = ll.text.substring(relativeStart + relativeLength); } else { this.trailingText = ll.text.substring(relativeStart + relativeLength); } } }; var TextChange9 = class { constructor(pos, deleteLen, insertedText) { this.pos = pos; this.deleteLen = deleteLen; this.insertedText = insertedText; } getTextChangeRange() { return createTextChangeRange(createTextSpan(this.pos, this.deleteLen), this.insertedText ? this.insertedText.length : 0); } }; var _ScriptVersionCache = class _ScriptVersionCache2 { constructor() { this.changes = []; this.versions = new Array(_ScriptVersionCache2.maxVersions); this.minVersion = 0; this.currentVersion = 0; } versionToIndex(version2) { if (version2 < this.minVersion || version2 > this.currentVersion) { return; } return version2 % _ScriptVersionCache2.maxVersions; } currentVersionToIndex() { return this.currentVersion % _ScriptVersionCache2.maxVersions; } edit(pos, deleteLen, insertedText) { this.changes.push(new TextChange9(pos, deleteLen, insertedText)); if (this.changes.length > _ScriptVersionCache2.changeNumberThreshold || deleteLen > _ScriptVersionCache2.changeLengthThreshold || insertedText && insertedText.length > _ScriptVersionCache2.changeLengthThreshold) { this.getSnapshot(); } } getSnapshot() { return this._getSnapshot(); } _getSnapshot() { let snap = this.versions[this.currentVersionToIndex()]; if (this.changes.length > 0) { let snapIndex = snap.index; for (const change of this.changes) { snapIndex = snapIndex.edit(change.pos, change.deleteLen, change.insertedText); } snap = new LineIndexSnapshot(this.currentVersion + 1, this, snapIndex, this.changes); this.currentVersion = snap.version; this.versions[this.currentVersionToIndex()] = snap; this.changes = []; if (this.currentVersion - this.minVersion >= _ScriptVersionCache2.maxVersions) { this.minVersion = this.currentVersion - _ScriptVersionCache2.maxVersions + 1; } } return snap; } getSnapshotVersion() { return this._getSnapshot().version; } getAbsolutePositionAndLineText(oneBasedLine) { return this._getSnapshot().index.lineNumberToInfo(oneBasedLine); } lineOffsetToPosition(line, column) { return this._getSnapshot().index.absolutePositionOfStartOfLine(line) + (column - 1); } positionToLineOffset(position) { return this._getSnapshot().index.positionToLineOffset(position); } lineToTextSpan(line) { const index = this._getSnapshot().index; const { lineText, absolutePosition } = index.lineNumberToInfo(line + 1); const len = lineText !== undefined ? lineText.length : index.absolutePositionOfStartOfLine(line + 2) - absolutePosition; return createTextSpan(absolutePosition, len); } getTextChangesBetweenVersions(oldVersion, newVersion) { if (oldVersion < newVersion) { if (oldVersion >= this.minVersion) { const textChangeRanges = []; for (let i = oldVersion + 1;i <= newVersion; i++) { const snap = this.versions[this.versionToIndex(i)]; for (const textChange of snap.changesSincePreviousVersion) { textChangeRanges.push(textChange.getTextChangeRange()); } } return collapseTextChangeRangesAcrossMultipleVersions(textChangeRanges); } else { return; } } else { return unchangedTextChangeRange; } } getLineCount() { return this._getSnapshot().index.getLineCount(); } static fromString(script) { const svc = new _ScriptVersionCache2; const snap = new LineIndexSnapshot(0, svc, new LineIndex); svc.versions[svc.currentVersion] = snap; const lm = LineIndex.linesFromText(script); snap.index.load(lm.lines); return svc; } }; _ScriptVersionCache.changeNumberThreshold = 8; _ScriptVersionCache.changeLengthThreshold = 256; _ScriptVersionCache.maxVersions = 8; var ScriptVersionCache = _ScriptVersionCache; var LineIndexSnapshot = class _LineIndexSnapshot { constructor(version2, cache, index, changesSincePreviousVersion = emptyArray2) { this.version = version2; this.cache = cache; this.index = index; this.changesSincePreviousVersion = changesSincePreviousVersion; } getText(rangeStart, rangeEnd) { return this.index.getText(rangeStart, rangeEnd - rangeStart); } getLength() { return this.index.getLength(); } getChangeRange(oldSnapshot) { if (oldSnapshot instanceof _LineIndexSnapshot && this.cache === oldSnapshot.cache) { if (this.version <= oldSnapshot.version) { return unchangedTextChangeRange; } else { return this.cache.getTextChangesBetweenVersions(oldSnapshot.version, this.version); } } } }; var LineIndex = class _LineIndex { constructor() { this.checkEdits = false; } absolutePositionOfStartOfLine(oneBasedLine) { return this.lineNumberToInfo(oneBasedLine).absolutePosition; } positionToLineOffset(position) { const { oneBasedLine, zeroBasedColumn } = this.root.charOffsetToLineInfo(1, position); return { line: oneBasedLine, offset: zeroBasedColumn + 1 }; } positionToColumnAndLineText(position) { return this.root.charOffsetToLineInfo(1, position); } getLineCount() { return this.root.lineCount(); } lineNumberToInfo(oneBasedLine) { const lineCount = this.getLineCount(); if (oneBasedLine <= lineCount) { const { position, leaf } = this.root.lineNumberToInfo(oneBasedLine, 0); return { absolutePosition: position, lineText: leaf && leaf.text }; } else { return { absolutePosition: this.root.charCount(), lineText: undefined }; } } load(lines) { if (lines.length > 0) { const leaves = []; for (let i = 0;i < lines.length; i++) { leaves[i] = new LineLeaf(lines[i]); } this.root = _LineIndex.buildTreeFromBottom(leaves); } else { this.root = new LineNode; } } walk(rangeStart, rangeLength, walkFns) { this.root.walk(rangeStart, rangeLength, walkFns); } getText(rangeStart, rangeLength) { let accum = ""; if (rangeLength > 0 && rangeStart < this.root.charCount()) { this.walk(rangeStart, rangeLength, { goSubtree: true, done: false, leaf: (relativeStart, relativeLength, ll) => { accum = accum.concat(ll.text.substring(relativeStart, relativeStart + relativeLength)); } }); } return accum; } getLength() { return this.root.charCount(); } every(f, rangeStart, rangeEnd) { if (!rangeEnd) { rangeEnd = this.root.charCount(); } const walkFns = { goSubtree: true, done: false, leaf(relativeStart, relativeLength, ll) { if (!f(ll, relativeStart, relativeLength)) { this.done = true; } } }; this.walk(rangeStart, rangeEnd - rangeStart, walkFns); return !walkFns.done; } edit(pos, deleteLength, newText) { if (this.root.charCount() === 0) { Debug.assert(deleteLength === 0); if (newText !== undefined) { this.load(_LineIndex.linesFromText(newText).lines); return this; } return; } else { let checkText; if (this.checkEdits) { const source = this.getText(0, this.root.charCount()); checkText = source.slice(0, pos) + newText + source.slice(pos + deleteLength); } const walker = new EditWalker; let suppressTrailingText = false; if (pos >= this.root.charCount()) { pos = this.root.charCount() - 1; const endString = this.getText(pos, 1); if (newText) { newText = endString + newText; } else { newText = endString; } deleteLength = 0; suppressTrailingText = true; } else if (deleteLength > 0) { const e = pos + deleteLength; const { zeroBasedColumn, lineText } = this.positionToColumnAndLineText(e); if (zeroBasedColumn === 0) { deleteLength += lineText.length; newText = newText ? newText + lineText : lineText; } } this.root.walk(pos, deleteLength, walker); walker.insertLines(newText, suppressTrailingText); if (this.checkEdits) { const updatedText = walker.lineIndex.getText(0, walker.lineIndex.getLength()); Debug.assert(checkText === updatedText, "buffer edit mismatch"); } return walker.lineIndex; } } static buildTreeFromBottom(nodes) { if (nodes.length < lineCollectionCapacity) { return new LineNode(nodes); } const interiorNodes = new Array(Math.ceil(nodes.length / lineCollectionCapacity)); let nodeIndex = 0; for (let i = 0;i < interiorNodes.length; i++) { const end = Math.min(nodeIndex + lineCollectionCapacity, nodes.length); interiorNodes[i] = new LineNode(nodes.slice(nodeIndex, end)); nodeIndex = end; } return this.buildTreeFromBottom(interiorNodes); } static linesFromText(text) { const lineMap = computeLineStarts(text); if (lineMap.length === 0) { return { lines: [], lineMap }; } const lines = new Array(lineMap.length); const lc = lineMap.length - 1; for (let lmi = 0;lmi < lc; lmi++) { lines[lmi] = text.substring(lineMap[lmi], lineMap[lmi + 1]); } const endText = text.substring(lineMap[lc]); if (endText.length > 0) { lines[lc] = endText; } else { lines.pop(); } return { lines, lineMap }; } }; var LineNode = class _LineNode { constructor(children = []) { this.children = children; this.totalChars = 0; this.totalLines = 0; if (children.length) this.updateCounts(); } isLeaf() { return false; } updateCounts() { this.totalChars = 0; this.totalLines = 0; for (const child of this.children) { this.totalChars += child.charCount(); this.totalLines += child.lineCount(); } } execWalk(rangeStart, rangeLength, walkFns, childIndex, nodeType) { if (walkFns.pre) { walkFns.pre(rangeStart, rangeLength, this.children[childIndex], this, nodeType); } if (walkFns.goSubtree) { this.children[childIndex].walk(rangeStart, rangeLength, walkFns); if (walkFns.post) { walkFns.post(rangeStart, rangeLength, this.children[childIndex], this, nodeType); } } else { walkFns.goSubtree = true; } return walkFns.done; } skipChild(relativeStart, relativeLength, childIndex, walkFns, nodeType) { if (walkFns.pre && !walkFns.done) { walkFns.pre(relativeStart, relativeLength, this.children[childIndex], this, nodeType); walkFns.goSubtree = true; } } walk(rangeStart, rangeLength, walkFns) { if (this.children.length === 0) return; let childIndex = 0; let childCharCount = this.children[childIndex].charCount(); let adjustedStart = rangeStart; while (adjustedStart >= childCharCount) { this.skipChild(adjustedStart, rangeLength, childIndex, walkFns, 0); adjustedStart -= childCharCount; childIndex++; childCharCount = this.children[childIndex].charCount(); } if (adjustedStart + rangeLength <= childCharCount) { if (this.execWalk(adjustedStart, rangeLength, walkFns, childIndex, 2)) { return; } } else { if (this.execWalk(adjustedStart, childCharCount - adjustedStart, walkFns, childIndex, 1)) { return; } let adjustedLength = rangeLength - (childCharCount - adjustedStart); childIndex++; const child = this.children[childIndex]; childCharCount = child.charCount(); while (adjustedLength > childCharCount) { if (this.execWalk(0, childCharCount, walkFns, childIndex, 3)) { return; } adjustedLength -= childCharCount; childIndex++; childCharCount = this.children[childIndex].charCount(); } if (adjustedLength > 0) { if (this.execWalk(0, adjustedLength, walkFns, childIndex, 4)) { return; } } } if (walkFns.pre) { const clen = this.children.length; if (childIndex < clen - 1) { for (let ej = childIndex + 1;ej < clen; ej++) { this.skipChild(0, 0, ej, walkFns, 5); } } } } charOffsetToLineInfo(lineNumberAccumulator, relativePosition) { if (this.children.length === 0) { return { oneBasedLine: lineNumberAccumulator, zeroBasedColumn: relativePosition, lineText: undefined }; } for (const child of this.children) { if (child.charCount() > relativePosition) { if (child.isLeaf()) { return { oneBasedLine: lineNumberAccumulator, zeroBasedColumn: relativePosition, lineText: child.text }; } else { return child.charOffsetToLineInfo(lineNumberAccumulator, relativePosition); } } else { relativePosition -= child.charCount(); lineNumberAccumulator += child.lineCount(); } } const lineCount = this.lineCount(); if (lineCount === 0) { return { oneBasedLine: 1, zeroBasedColumn: 0, lineText: undefined }; } const leaf = Debug.checkDefined(this.lineNumberToInfo(lineCount, 0).leaf); return { oneBasedLine: lineCount, zeroBasedColumn: leaf.charCount(), lineText: undefined }; } lineNumberToInfo(relativeOneBasedLine, positionAccumulator) { for (const child of this.children) { const childLineCount = child.lineCount(); if (childLineCount >= relativeOneBasedLine) { return child.isLeaf() ? { position: positionAccumulator, leaf: child } : child.lineNumberToInfo(relativeOneBasedLine, positionAccumulator); } else { relativeOneBasedLine -= childLineCount; positionAccumulator += child.charCount(); } } return { position: positionAccumulator, leaf: undefined }; } splitAfter(childIndex) { let splitNode; const clen = this.children.length; childIndex++; const endLength = childIndex; if (childIndex < clen) { splitNode = new _LineNode; while (childIndex < clen) { splitNode.add(this.children[childIndex]); childIndex++; } splitNode.updateCounts(); } this.children.length = endLength; return splitNode; } remove(child) { const childIndex = this.findChildIndex(child); const clen = this.children.length; if (childIndex < clen - 1) { for (let i = childIndex;i < clen - 1; i++) { this.children[i] = this.children[i + 1]; } } this.children.pop(); } findChildIndex(child) { const childIndex = this.children.indexOf(child); Debug.assert(childIndex !== -1); return childIndex; } insertAt(child, nodes) { let childIndex = this.findChildIndex(child); const clen = this.children.length; const nodeCount = nodes.length; if (clen < lineCollectionCapacity && childIndex === clen - 1 && nodeCount === 1) { this.add(nodes[0]); this.updateCounts(); return []; } else { const shiftNode = this.splitAfter(childIndex); let nodeIndex = 0; childIndex++; while (childIndex < lineCollectionCapacity && nodeIndex < nodeCount) { this.children[childIndex] = nodes[nodeIndex]; childIndex++; nodeIndex++; } let splitNodes = []; let splitNodeCount = 0; if (nodeIndex < nodeCount) { splitNodeCount = Math.ceil((nodeCount - nodeIndex) / lineCollectionCapacity); splitNodes = new Array(splitNodeCount); let splitNodeIndex = 0; for (let i = 0;i < splitNodeCount; i++) { splitNodes[i] = new _LineNode; } let splitNode = splitNodes[0]; while (nodeIndex < nodeCount) { splitNode.add(nodes[nodeIndex]); nodeIndex++; if (splitNode.children.length === lineCollectionCapacity) { splitNodeIndex++; splitNode = splitNodes[splitNodeIndex]; } } for (let i = splitNodes.length - 1;i >= 0; i--) { if (splitNodes[i].children.length === 0) { splitNodes.pop(); } } } if (shiftNode) { splitNodes.push(shiftNode); } this.updateCounts(); for (let i = 0;i < splitNodeCount; i++) { splitNodes[i].updateCounts(); } return splitNodes; } } add(collection) { this.children.push(collection); Debug.assert(this.children.length <= lineCollectionCapacity); } charCount() { return this.totalChars; } lineCount() { return this.totalLines; } }; var LineLeaf = class { constructor(text) { this.text = text; } isLeaf() { return true; } walk(rangeStart, rangeLength, walkFns) { walkFns.leaf(rangeStart, rangeLength, this); } charCount() { return this.text.length; } lineCount() { return 1; } }; var _TypingsInstallerAdapter = class _TypingsInstallerAdapter2 { constructor(telemetryEnabled, logger, host, globalTypingsCacheLocation, event, maxActiveRequestCount) { this.telemetryEnabled = telemetryEnabled; this.logger = logger; this.host = host; this.globalTypingsCacheLocation = globalTypingsCacheLocation; this.event = event; this.maxActiveRequestCount = maxActiveRequestCount; this.activeRequestCount = 0; this.requestQueue = createQueue(); this.requestMap = /* @__PURE__ */ new Map; this.requestedRegistry = false; this.packageInstallId = 0; } isKnownTypesPackageName(name) { var _a; const validationResult = ts_JsTyping_exports.validatePackageName(name); if (validationResult !== ts_JsTyping_exports.NameValidationResult.Ok) { return false; } if (!this.requestedRegistry) { this.requestedRegistry = true; this.installer.send({ kind: "typesRegistry" }); } return !!((_a = this.typesRegistryCache) == null ? undefined : _a.has(name)); } installPackage(options) { this.packageInstallId++; const request = { kind: "installPackage", ...options, id: this.packageInstallId }; const promise = new Promise((resolve, reject) => { (this.packageInstalledPromise ?? (this.packageInstalledPromise = /* @__PURE__ */ new Map)).set(this.packageInstallId, { resolve, reject }); }); this.installer.send(request); return promise; } attach(projectService) { this.projectService = projectService; this.installer = this.createInstallerProcess(); } onProjectClosed(p) { this.installer.send({ projectName: p.getProjectName(), kind: "closeProject" }); } enqueueInstallTypingsRequest(project, typeAcquisition, unresolvedImports) { const request = createInstallTypingsRequest(project, typeAcquisition, unresolvedImports); if (this.logger.hasLevel(3)) { this.logger.info(`TIAdapter:: Scheduling throttled operation:${stringifyIndented(request)}`); } if (this.activeRequestCount < this.maxActiveRequestCount) { this.scheduleRequest(request); } else { if (this.logger.hasLevel(3)) { this.logger.info(`TIAdapter:: Deferring request for: ${request.projectName}`); } this.requestQueue.enqueue(request); this.requestMap.set(request.projectName, request); } } handleMessage(response) { var _a, _b; if (this.logger.hasLevel(3)) { this.logger.info(`TIAdapter:: Received response:${stringifyIndented(response)}`); } switch (response.kind) { case EventTypesRegistry: this.typesRegistryCache = new Map(Object.entries(response.typesRegistry)); break; case ActionPackageInstalled: { const promise = (_a = this.packageInstalledPromise) == null ? undefined : _a.get(response.id); Debug.assertIsDefined(promise, "Should find the promise for package install"); (_b = this.packageInstalledPromise) == null || _b.delete(response.id); if (response.success) { promise.resolve({ successMessage: response.message }); } else { promise.reject(response.message); } this.projectService.updateTypingsForProject(response); this.event(response, "setTypings"); break; } case EventInitializationFailed: { const body = { message: response.message }; const eventName = "typesInstallerInitializationFailed"; this.event(body, eventName); break; } case EventBeginInstallTypes: { const body = { eventId: response.eventId, packages: response.packagesToInstall }; const eventName = "beginInstallTypes"; this.event(body, eventName); break; } case EventEndInstallTypes: { if (this.telemetryEnabled) { const body2 = { telemetryEventName: "typingsInstalled", payload: { installedPackages: response.packagesToInstall.join(","), installSuccess: response.installSuccess, typingsInstallerVersion: response.typingsInstallerVersion } }; const eventName2 = "telemetry"; this.event(body2, eventName2); } const body = { eventId: response.eventId, packages: response.packagesToInstall, success: response.installSuccess }; const eventName = "endInstallTypes"; this.event(body, eventName); break; } case ActionInvalidate: { this.projectService.updateTypingsForProject(response); break; } case ActionSet: { if (this.activeRequestCount > 0) { this.activeRequestCount--; } else { Debug.fail("TIAdapter:: Received too many responses"); } while (!this.requestQueue.isEmpty()) { const queuedRequest = this.requestQueue.dequeue(); if (this.requestMap.get(queuedRequest.projectName) === queuedRequest) { this.requestMap.delete(queuedRequest.projectName); this.scheduleRequest(queuedRequest); break; } if (this.logger.hasLevel(3)) { this.logger.info(`TIAdapter:: Skipping defunct request for: ${queuedRequest.projectName}`); } } this.projectService.updateTypingsForProject(response); this.event(response, "setTypings"); break; } case ActionWatchTypingLocations: this.projectService.watchTypingLocations(response); break; default: assertType(response); } } scheduleRequest(request) { if (this.logger.hasLevel(3)) { this.logger.info(`TIAdapter:: Scheduling request for: ${request.projectName}`); } this.activeRequestCount++; this.host.setTimeout(() => { if (this.logger.hasLevel(3)) { this.logger.info(`TIAdapter:: Sending request:${stringifyIndented(request)}`); } this.installer.send(request); }, _TypingsInstallerAdapter2.requestDelayMillis, `${request.projectName}::${request.kind}`); } }; _TypingsInstallerAdapter.requestDelayMillis = 100; var TypingsInstallerAdapter = _TypingsInstallerAdapter; var ts_server_exports4 = {}; __export2(ts_server_exports4, { ActionInvalidate: () => ActionInvalidate, ActionPackageInstalled: () => ActionPackageInstalled, ActionSet: () => ActionSet, ActionWatchTypingLocations: () => ActionWatchTypingLocations, Arguments: () => Arguments, AutoImportProviderProject: () => AutoImportProviderProject, AuxiliaryProject: () => AuxiliaryProject, CharRangeSection: () => CharRangeSection, CloseFileWatcherEvent: () => CloseFileWatcherEvent, CommandNames: () => CommandNames, ConfigFileDiagEvent: () => ConfigFileDiagEvent, ConfiguredProject: () => ConfiguredProject2, ConfiguredProjectLoadKind: () => ConfiguredProjectLoadKind, CreateDirectoryWatcherEvent: () => CreateDirectoryWatcherEvent, CreateFileWatcherEvent: () => CreateFileWatcherEvent, Errors: () => Errors, EventBeginInstallTypes: () => EventBeginInstallTypes, EventEndInstallTypes: () => EventEndInstallTypes, EventInitializationFailed: () => EventInitializationFailed, EventTypesRegistry: () => EventTypesRegistry, ExternalProject: () => ExternalProject, GcTimer: () => GcTimer, InferredProject: () => InferredProject2, LargeFileReferencedEvent: () => LargeFileReferencedEvent, LineIndex: () => LineIndex, LineLeaf: () => LineLeaf, LineNode: () => LineNode, LogLevel: () => LogLevel2, Msg: () => Msg, OpenFileInfoTelemetryEvent: () => OpenFileInfoTelemetryEvent, Project: () => Project2, ProjectInfoTelemetryEvent: () => ProjectInfoTelemetryEvent, ProjectKind: () => ProjectKind, ProjectLanguageServiceStateEvent: () => ProjectLanguageServiceStateEvent, ProjectLoadingFinishEvent: () => ProjectLoadingFinishEvent, ProjectLoadingStartEvent: () => ProjectLoadingStartEvent, ProjectService: () => ProjectService2, ProjectsUpdatedInBackgroundEvent: () => ProjectsUpdatedInBackgroundEvent, ScriptInfo: () => ScriptInfo, ScriptVersionCache: () => ScriptVersionCache, Session: () => Session3, TextStorage: () => TextStorage, ThrottledOperations: () => ThrottledOperations, TypingsInstallerAdapter: () => TypingsInstallerAdapter, allFilesAreJsOrDts: () => allFilesAreJsOrDts, allRootFilesAreJsOrDts: () => allRootFilesAreJsOrDts, asNormalizedPath: () => asNormalizedPath, convertCompilerOptions: () => convertCompilerOptions, convertFormatOptions: () => convertFormatOptions, convertScriptKindName: () => convertScriptKindName, convertTypeAcquisition: () => convertTypeAcquisition, convertUserPreferences: () => convertUserPreferences, convertWatchOptions: () => convertWatchOptions, countEachFileTypes: () => countEachFileTypes, createInstallTypingsRequest: () => createInstallTypingsRequest, createModuleSpecifierCache: () => createModuleSpecifierCache, createNormalizedPathMap: () => createNormalizedPathMap, createPackageJsonCache: () => createPackageJsonCache, createSortedArray: () => createSortedArray2, emptyArray: () => emptyArray2, findArgument: () => findArgument, formatDiagnosticToProtocol: () => formatDiagnosticToProtocol, formatMessage: () => formatMessage2, getBaseConfigFileName: () => getBaseConfigFileName, getDetailWatchInfo: () => getDetailWatchInfo, getLocationInNewDocument: () => getLocationInNewDocument, hasArgument: () => hasArgument, hasNoTypeScriptSource: () => hasNoTypeScriptSource, indent: () => indent2, isBackgroundProject: () => isBackgroundProject, isConfigFile: () => isConfigFile, isConfiguredProject: () => isConfiguredProject, isDynamicFileName: () => isDynamicFileName, isExternalProject: () => isExternalProject, isInferredProject: () => isInferredProject, isInferredProjectName: () => isInferredProjectName, isProjectDeferredClose: () => isProjectDeferredClose, makeAutoImportProviderProjectName: () => makeAutoImportProviderProjectName, makeAuxiliaryProjectName: () => makeAuxiliaryProjectName, makeInferredProjectName: () => makeInferredProjectName, maxFileSize: () => maxFileSize, maxProgramSizeForNonTsFiles: () => maxProgramSizeForNonTsFiles, normalizedPathToPath: () => normalizedPathToPath, nowString: () => nowString, nullCancellationToken: () => nullCancellationToken, nullTypingsInstaller: () => nullTypingsInstaller, protocol: () => ts_server_protocol_exports, scriptInfoIsContainedByBackgroundProject: () => scriptInfoIsContainedByBackgroundProject, scriptInfoIsContainedByDeferredClosedProject: () => scriptInfoIsContainedByDeferredClosedProject, stringifyIndented: () => stringifyIndented, toEvent: () => toEvent, toNormalizedPath: () => toNormalizedPath, tryConvertScriptKindName: () => tryConvertScriptKindName, typingsInstaller: () => ts_server_typingsInstaller_exports, updateProjectIfDirty: () => updateProjectIfDirty }); if (typeof console !== "undefined") { Debug.loggingHost = { log(level, s) { switch (level) { case 1: return console.error(s); case 2: return console.warn(s); case 3: return console.log(s); case 4: return console.log(s); } } }; } })({ get exports() { return ts; }, set exports(v) { ts = v; if (typeof module2 !== "undefined" && module2.exports) { module2.exports = v; } } }); }); // node_modules/.bun/@vscode+l10n@0.0.18/node_modules/@vscode/l10n/dist/main.js var require_main = __commonJS(function(exports2, module2) { var __defProp2 = Object.defineProperty; var __getOwnPropDesc2 = Object.getOwnPropertyDescriptor; var __getOwnPropNames2 = Object.getOwnPropertyNames; var __hasOwnProp2 = Object.prototype.hasOwnProperty; var __export2 = (target, all) => { for (var name in all) __defProp2(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames2(from)) if (!__hasOwnProp2.call(to, key) && key !== except) __defProp2(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc2(from, key)) || desc.enumerable }); } return to; }; var __toCommonJS2 = (mod) => __copyProps(__defProp2({}, "__esModule", { value: true }), mod); var main_exports = {}; __export2(main_exports, { config: () => config, t: () => t }); module2.exports = __toCommonJS2(main_exports); var import_fs = require("fs"); var import_promises = require("fs/promises"); async function readFileFromUri(uri) { if (uri.protocol === "file:") { return await (0, import_promises.readFile)(uri, "utf8"); } if (uri.protocol === "http:" || uri.protocol === "https:") { const res = await fetch(uri.toString(), { headers: { "Accept-Encoding": "gzip, deflate", Accept: "application/json" }, redirect: "follow" }); if (!res.ok) { let error = `Unexpected ${res.status} response while trying to read ${uri}`; try { error += `: ${await res.text()}`; } catch {} throw new Error(error); } const decoded = await res.text(); return decoded; } throw new Error("Unsupported protocol"); } function readFileFromFsPath(fsPath) { return (0, import_fs.readFileSync)(fsPath, "utf8"); } var bundle; function config(config2) { if ("contents" in config2) { if (typeof config2.contents === "string") { bundle = JSON.parse(config2.contents); } else { bundle = config2.contents; } return; } if ("fsPath" in config2) { const fileContent = readFileFromFsPath(config2.fsPath); const content = JSON.parse(fileContent); bundle = isBuiltinExtension(content) ? content.contents.bundle : content; return; } if (config2.uri) { let uri = config2.uri; if (typeof config2.uri === "string") { uri = new URL(config2.uri); } return new Promise((resolve4, reject) => { readFileFromUri(uri).then((uriContent) => { try { const content = JSON.parse(uriContent); bundle = isBuiltinExtension(content) ? content.contents.bundle : content; resolve4(); } catch (err) { reject(err); } }).catch((err) => { reject(err); }); }); } } function t(...args) { const firstArg = args[0]; let key; let message; let formatArgs; if (typeof firstArg === "string") { key = firstArg; message = firstArg; args.splice(0, 1); formatArgs = !args || typeof args[0] !== "object" ? args : args[0]; } else if (firstArg instanceof Array) { const replacements = args.slice(1); if (firstArg.length !== replacements.length + 1) { throw new Error("expected a string as the first argument to l10n.t"); } let str = firstArg[0]; for (let i = 1;i < firstArg.length; i++) { str += `{${i - 1}}` + firstArg[i]; } return t(str, ...replacements); } else { message = firstArg.message; key = message; if (firstArg.comment && firstArg.comment.length > 0) { key += `/${Array.isArray(firstArg.comment) ? firstArg.comment.join("") : firstArg.comment}`; } formatArgs = firstArg.args ?? {}; } const messageFromBundle = bundle?.[key]; if (!messageFromBundle) { return format(message, formatArgs); } if (typeof messageFromBundle === "string") { return format(messageFromBundle, formatArgs); } if (messageFromBundle.comment) { return format(messageFromBundle.message, formatArgs); } return format(message, formatArgs); } var _format2Regexp = /{([^}]+)}/g; function format(template, values) { if (Object.keys(values).length === 0) { return template; } return template.replace(_format2Regexp, (match, group) => values[group] ?? match); } function isBuiltinExtension(json) { return !!(typeof json?.contents?.bundle === "object" && typeof json?.version === "string"); } }); // packages/language-server/src/server.ts var exports_server = {}; __export(exports_server, { apiCallCompletions: () => apiCallCompletions, apiCallHover: () => apiCallHover, isApiReferenceAt: () => isApiReferenceAt }); module.exports = __toCommonJS(exports_server); // packages/syntax/src/tokenizer.ts class LexError extends Error { } var isWs = (c) => c === " " || c === "\t" || c === ` ` || c === "\r"; var isIdentStart = (c) => /[A-Za-z_]/.test(c); var isIdentPart = (c) => /[A-Za-z0-9_]/.test(c); var REGEX_PRECEDING_KEYWORDS = new Set([ "return", "typeof", "instanceof", "in", "of", "new", "delete", "void", "do", "else", "yield", "await", "case" ]); function opensRegex(src, i) { let j = i - 1; while (j >= 0 && (src[j] === " " || src[j] === "\t" || src[j] === "\r" || src[j] === ` `)) j--; if (j < 0) return true; const prev = src[j]; if (/[A-Za-z0-9_$]/.test(prev)) { let k = j; while (k >= 0 && /[A-Za-z0-9_$]/.test(src[k])) k--; return REGEX_PRECEDING_KEYWORDS.has(src.slice(k + 1, j + 1)); } return prev !== ")" && prev !== "]" && prev !== "." && prev !== '"' && prev !== "'" && prev !== "`"; } function skipRegex(src, i) { let j = i + 1; let inClass = false; while (j < src.length) { const c = src[j]; if (c === ` `) return null; if (c === "\\") { j += 2; continue; } if (inClass) { if (c === "]") inClass = false; } else if (c === "[") { inClass = true; } else if (c === "/") { j++; while (j < src.length && /[a-z]/.test(src[j])) j++; return j; } j++; } return null; } function skipLiteralOrComment(src, i, atLineStart) { const c = src[i]; if (c === "/" && src[i + 1] === "*") { const close = src.indexOf("*/", i + 2); return close === -1 ? src.length : close + 2; } if (atLineStart && c === "/" && src[i + 1] === "/") { const newline = src.indexOf(` `, i + 2); return newline === -1 ? src.length : newline; } if (c === '"' || c === "'" || c === "`") { let j = i + 1; while (j < src.length) { if (src[j] === "\\") { j += 2; continue; } if (src[j] === c) return j + 1; j++; } return src.length; } if (c === "/" && opensRegex(src, i)) { return skipRegex(src, i); } return null; } class Lexer { src; pos = 0; constructor(src) { this.src = src; } skipWhitespaceAndLineComments() { const { src } = this; while (this.pos < src.length) { const c = src[this.pos]; if (isWs(c)) { this.pos++; continue; } if (c === "/" && src[this.pos + 1] === "/") { while (this.pos < src.length && src[this.pos] !== ` `) this.pos++; continue; } break; } } skipTrivia() { const { src } = this; while (this.pos < src.length) { this.skipWhitespaceAndLineComments(); if (src[this.pos] === "/" && src[this.pos + 1] === "*") { const close = src.indexOf("*/", this.pos + 2); this.pos = close === -1 ? src.length : close + 2; continue; } break; } } startsWithBlockComment() { this.skipWhitespaceAndLineComments(); return this.src[this.pos] === "/" && this.src[this.pos + 1] === "*"; } next() { this.skipTrivia(); const { src } = this; const pos = this.pos; if (pos >= src.length) return { type: "eof", value: "", pos }; const c = src[pos]; switch (c) { case "{": this.pos++; return { type: "lbrace", value: c, pos }; case "}": this.pos++; return { type: "rbrace", value: c, pos }; case "(": this.pos++; return { type: "lparen", value: c, pos }; case ")": this.pos++; return { type: "rparen", value: c, pos }; case "@": this.pos++; return { type: "at", value: c, pos }; case "=": this.pos++; return { type: "eq", value: c, pos }; case ":": this.pos++; return { type: "colon", value: c, pos }; case ",": this.pos++; return { type: "comma", value: c, pos }; case "?": this.pos++; return { type: "question", value: c, pos }; case '"': case "'": return this.readString(c, pos); } if (isIdentStart(c)) { let v = ""; while (this.pos < src.length && isIdentPart(src[this.pos])) v += src[this.pos++]; return { type: "ident", value: v, pos }; } throw new LexError(`Unexpected character '${c}' at offset ${pos} (line ${this.lineAt(pos)})`); } peek() { const save = this.pos; const t = this.next(); this.pos = save; return t; } readString(quote, pos) { const { src } = this; let v = ""; this.pos++; while (this.pos < src.length) { const c = src[this.pos++]; if (c === "\\") { const n = src[this.pos++]; v += n === "n" ? ` ` : n === "t" ? "\t" : n; continue; } if (c === quote) return { type: "string", value: v, pos }; v += c; } throw new LexError(`Unterminated string at offset ${pos}`); } readPath() { this.skipTrivia(); const { src } = this; let v = ""; while (this.pos < src.length && !isWs(src[this.pos]) && src[this.pos] !== "{") { v += src[this.pos++]; } if (!v) throw new LexError(`Expected a path at offset ${this.pos}`); return v; } readPropInitializer() { const { src } = this; while (this.pos < src.length && (src[this.pos] === " " || src[this.pos] === "\t")) { this.pos++; } const start = this.pos; let square = 0; let brace = 0; let paren = 0; let angle = 0; let quote = null; const atTopLevel = () => square === 0 && brace === 0 && paren === 0 && angle === 0; while (this.pos < src.length) { const c = src[this.pos]; if (quote) { this.pos++; if (c === "\\" && this.pos < src.length) { this.pos++; } else if (c === quote) { quote = null; } continue; } if (c === '"' || c === "'" || c === "`") { quote = c; this.pos++; continue; } if (atTopLevel()) { if (c === ` ` || c === "\r" || c === "}") break; if (c === " " || c === "\t") { let look = this.pos; while (look < src.length && (src[look] === " " || src[look] === "\t")) look++; const rest = src.slice(look); if (/^[A-Za-z_][A-Za-z0-9_]*(?:\s*:[^=\r\n{}]+)?\s*=/.test(rest)) break; } } if (c === "[") square++; else if (c === "]" && square > 0) square--; else if (c === "{") brace++; else if (c === "}" && brace > 0) brace--; else if (c === "(") paren++; else if (c === ")" && paren > 0) paren--; else if (c === "<") angle++; else if (c === ">" && angle > 0) angle--; this.pos++; } const value = src.slice(start, this.pos).trim(); if (!value) throw new LexError(`Expected a prop initializer at offset ${start}`); return value; } readToLineEnd() { const { src } = this; let v = ""; while (this.pos < src.length && src[this.pos] !== ` `) v += src[this.pos++]; return v.trim(); } readTypeAnnotation() { const { src } = this; let value = ""; let angle = 0; let square = 0; let brace = 0; let paren = 0; let quote = null; while (this.pos < src.length) { const c = src[this.pos]; if (quote) { value += c; this.pos++; if (c === "\\" && this.pos < src.length) value += src[this.pos++]; else if (c === quote) quote = null; continue; } if (c === '"' || c === "'" || c === "`") { quote = c; value += c; this.pos++; continue; } if (c === "}" && angle === 0 && square === 0 && brace === 0 && paren === 0) break; if (c === "<") angle++; else if (c === ">" && angle > 0) angle--; else if (c === "[") square++; else if (c === "]" && square > 0) square--; else if (c === "{") brace++; else if (c === "}" && brace > 0) brace--; else if (c === "(") paren++; else if (c === ")" && paren > 0) paren--; if (angle === 0 && square === 0 && brace === 0 && paren === 0) { if (c === " " || c === "\t") { let look = this.pos; while (look < src.length && (src[look] === " " || src[look] === "\t")) look++; if (/^[A-Za-z_][A-Za-z0-9_]*\??\s*:/.test(src.slice(look))) break; } if (c === "=") { this.pos++; const type2 = value.trim(); if (!type2) throw new LexError(`Expected a type annotation at offset ${this.pos}`); return { type: type2, hasDefault: true }; } if (c === ` ` || c === "\r") break; } value += c; this.pos++; } const type = value.trim(); if (!type) throw new LexError(`Expected a type annotation at offset ${this.pos}`); return { type, hasDefault: false }; } readBalancedBraces() { this.skipTrivia(); const { src } = this; if (src[this.pos] !== "{") { throw new LexError(`Expected '{' at offset ${this.pos}`); } const start = this.pos + 1; let depth = 0; let i = this.pos; let atLineStart = false; while (i < src.length) { const c = src[i]; if (c === ` `) { atLineStart = true; i++; continue; } const skipped = skipLiteralOrComment(src, i, atLineStart); if (skipped !== null) { i = skipped; atLineStart = false; continue; } if (c !== " " && c !== "\t" && c !== "\r") atLineStart = false; if (c === "{") depth++; else if (c === "}") { depth--; if (depth === 0) { this.pos = i + 1; return src.slice(start, i); } } i++; } throw new LexError(`Unbalanced braces starting at offset ${this.pos}`); } lineAt(pos) { let line = 1; for (let i = 0;i < pos && i < this.src.length; i++) { if (this.src[i] === ` `) line++; } return line; } } // packages/syntax/src/formatter.ts var VOID_ELEMENTS = new Set([ "area", "base", "br", "col", "embed", "hr", "img", "input", "link", "meta", "param", "source", "track", "wbr" ]); function splitPropDeclarations(value) { const declarations = []; let start = 0; let index = 0; let quote = null; let escaped = false; let square = 0; let brace = 0; let paren = 0; let segmentHasColon = false; let segmentHasEquals = false; const isIdentifierStart = (character) => /[A-Za-z_]/.test(character || ""); const isIdentifierPart = (character) => /[A-Za-z0-9_]/.test(character || ""); const beginsDeclaration = (position) => { let cursor = position; while (cursor < value.length && /[ \t]/.test(value[cursor])) cursor += 1; if (value.slice(cursor).startsWith("@event")) { cursor += "@event".length; if (!/\s/.test(value[cursor] || "")) return false; while (cursor < value.length && /\s/.test(value[cursor])) cursor += 1; if (!isIdentifierStart(value[cursor])) return false; cursor += 1; while (cursor < value.length && isIdentifierPart(value[cursor])) cursor += 1; while (cursor < value.length && /[ \t]/.test(value[cursor])) cursor += 1; return value[cursor] === "=" ? "=" : null; } if (!isIdentifierStart(value[cursor])) return false; cursor += 1; while (cursor < value.length && isIdentifierPart(value[cursor])) cursor += 1; if (value[cursor] === "?") cursor += 1; while (cursor < value.length && /[ \t]/.test(value[cursor])) cursor += 1; return value[cursor] === "=" || value[cursor] === ":" ? value[cursor] : null; }; while (index < value.length) { const character = value[index]; if (quote !== null) { if (escaped) escaped = false; else if (character === "\\") escaped = true; else if (character === quote) quote = null; index += 1; continue; } if (character === '"' || character === "'" || character === "`") { quote = character; index += 1; continue; } if (character === "[") square += 1; else if (character === "]" && square > 0) square -= 1; else if (character === "{") brace += 1; else if (character === "}" && brace > 0) brace -= 1; else if (character === "(") paren += 1; else if (character === ")" && paren > 0) paren -= 1; const topLevel = square === 0 && brace === 0 && paren === 0; if (topLevel && character === ":") segmentHasColon = true; if (topLevel && character === "=") segmentHasEquals = true; const candidateDelimiter = topLevel && /\s/.test(character) ? beginsDeclaration(index) : null; const beginsNext = candidateDelimiter === ":" || candidateDelimiter === "=" && (segmentHasEquals || !segmentHasColon); if (topLevel && /\s/.test(character) && value.slice(start, index).trim() !== "@event" && beginsNext) { const declaration2 = value.slice(start, index).trim(); if (declaration2) declarations.push(declaration2); while (index < value.length && /\s/.test(value[index])) index += 1; start = index; segmentHasColon = false; segmentHasEquals = false; continue; } index += 1; } const declaration = value.slice(start).trim(); if (declaration) declarations.push(declaration); return declarations; } function splitOutputDeclarations(value) { const declarations = []; let start = 0; let paren = 0; let angle = 0; let square = 0; let quote = null; let escaped = false; const startsOutput = (position) => { let cursor = position; while (cursor < value.length && /\s/.test(value[cursor])) cursor += 1; if (!/[A-Za-z_$]/.test(value[cursor] || "")) return false; cursor += 1; while (cursor < value.length && /[A-Za-z0-9_$]/.test(value[cursor] || "")) cursor += 1; while (cursor < value.length && /\s/.test(value[cursor])) cursor += 1; return value[cursor] === "("; }; for (let index = 0;index < value.length; index += 1) { const character = value[index]; if (quote !== null) { if (escaped) escaped = false; else if (character === "\\") escaped = true; else if (character === quote) quote = null; continue; } if (character === '"' || character === "'" || character === "`") { quote = character; continue; } if (character === "(") paren += 1; else if (character === ")" && paren > 0) paren -= 1; else if (character === "[") square += 1; else if (character === "]" && square > 0) square -= 1; else if (character === "<") angle += 1; else if (character === ">" && angle > 0) angle -= 1; if (paren === 0 && square === 0 && angle === 0 && /\s/.test(character) && startsOutput(index)) { const declaration = value.slice(start, index).trim(); if (declaration) declarations.push(declaration); while (index < value.length && /\s/.test(value[index])) index += 1; start = index; index -= 1; } } const finalDeclaration = value.slice(start).trim(); if (finalDeclaration) declarations.push(finalDeclaration); return declarations; } function formatInlineDeclarationBlock(value, unit, depth) { const match = /^(props|state|computed|outputs)\s*\{([\s\S]*)\}$/.exec(value.trim()); if (!match) return null; const declarations = match[1] === "outputs" ? splitOutputDeclarations(match[2].trim()) : splitPropDeclarations(match[2].trim()); return [ `${unit.repeat(depth)}${match[1]} {`, ...declarations.map((declaration) => `${unit.repeat(depth + 1)}${declaration}`), `${unit.repeat(depth)}}` ]; } function formatInlinePropsBlock(value, unit, depth) { const match = /^props\s*\{([\s\S]*)\}$/.exec(value.trim()); if (!match) return null; const declarations = splitPropDeclarations(match[1].trim()); if (declarations.length === 0) { return [`${unit.repeat(depth)}props {`, `${unit.repeat(depth)}}`]; } return [ `${unit.repeat(depth)}props {`, ...declarations.map((declaration) => `${unit.repeat(depth + 1)}${declaration}`), `${unit.repeat(depth)}}` ]; } function findOpeningTagEnd(value) { let quote = null; let escaped = false; for (let index = 0;index < value.length; index += 1) { const character = value[index]; if (quote !== null) { if (escaped) { escaped = false; continue; } if (character === "\\") { escaped = true; continue; } if (character === quote) { quote = null; } continue; } if (character === '"' || character === "'") { quote = character; continue; } if (character === ">") { return index; } } return -1; } function parseAttributes(value) { const attributes = []; let index = 0; while (index < value.length) { while (index < value.length && /\s/.test(value[index])) index += 1; if (index >= value.length) break; const start = index; while (index < value.length && !/[\s=]/.test(value[index])) index += 1; while (index < value.length && /\s/.test(value[index])) index += 1; if (value[index] === "=") { index += 1; while (index < value.length && /\s/.test(value[index])) index += 1; const quote = value[index]; if (quote === '"' || quote === "'") { index += 1; let escaped = false; while (index < value.length) { const character = value[index++]; if (escaped) escaped = false; else if (character === "\\") escaped = true; else if (character === quote) break; } } else if (value[index] === "{") { let depth = 0; let expressionQuote = null; let escaped = false; while (index < value.length) { const character = value[index++]; if (expressionQuote !== null) { if (escaped) escaped = false; else if (character === "\\") escaped = true; else if (character === expressionQuote) expressionQuote = null; continue; } if (character === '"' || character === "'" || character === "`") { expressionQuote = character; } else if (character === "{") { depth += 1; } else if (character === "}" && --depth === 0) { break; } } } else { while (index < value.length && !/\s/.test(value[index])) index += 1; } } const attribute = value.slice(start, index).trim(); if (attribute) attributes.push(attribute); } return attributes; } function parseStructuredAttribute(attribute) { const match = /^([^\s=]+)\s*=\s*\{([\s\S]*)\}$/.exec(attribute); if (!match) return null; const expression = match[2].trim(); if (!expression.startsWith("[") && !expression.startsWith("{")) return null; try { return { name: match[1], value: JSON.parse(expression) }; } catch { return null; } } function formatAttribute(attribute, indentation, unit) { const structured = parseStructuredAttribute(attribute); if (!structured) return [`${indentation}${attribute}`]; const jsonLines = JSON.stringify(structured.value, null, unit).split(` `); if (jsonLines.length === 1) { return [`${indentation}${structured.name}={${jsonLines[0]}}`]; } return [ `${indentation}${structured.name}={${jsonLines[0]}`, ...jsonLines.slice(1, -1).map((line) => `${indentation}${line}`), `${indentation}${jsonLines.at(-1)}}` ]; } function escapeRegExp(value) { return value.replace(/[.*+?^${}()|[\]\\]/g, "\\$&"); } function parseOpeningTag(value) { const endIndex = findOpeningTagEnd(value); if (endIndex === -1) { return null; } const openingPart = value.slice(0, endIndex + 1); const remainder = value.slice(endIndex + 1).trim(); const match = /^<([A-Za-z][\w$:.-]*)([\s\S]*?)(\/?)>$/.exec(openingPart); if (!match) { return null; } const tagName = match[1]; const attributes = parseAttributes(match[2].trim()); const selfClosing = match[3] === "/"; const escapedTagName = escapeRegExp(tagName); const immediateClosing = new RegExp(`^<\\/${escapedTagName}\\s*>`, "i").test(remainder); const trailingClosingMatch = new RegExp(`^([\\s\\S]*?)<\\/${escapedTagName}\\s*>$`, "i").exec(remainder); const trailingClosing = trailingClosingMatch !== null; const inlineContent = trailingClosing ? trailingClosingMatch[1].trim() : ""; const inlineClosing = trailingClosing && inlineContent.length === 0; const closesInRemainder = immediateClosing || trailingClosing; return { tagName, attributes, selfClosing, inlineClosing, immediateClosing, trailingClosing, inlineContent, closesInRemainder, remainder }; } function formatOpeningTag(value, unit, depth, printWidth = 100, multilineAttributes = true) { const parsed = parseOpeningTag(value); if (!parsed) { return { lines: [`${unit.repeat(depth)}${value.trim()}`], opensElement: false }; } const baseIndent = unit.repeat(depth); const childIndent = unit.repeat(depth + 1); const normalizedOpening = `<${parsed.tagName}` + `${parsed.attributes.length ? ` ${parsed.attributes.join(" ")}` : ""}` + `${parsed.selfClosing ? " /" : ""}>`; const normalizedSingleLine = `${normalizedOpening}${parsed.remainder}`; const shouldBreak = value.includes(` `) || multilineAttributes && parsed.attributes.length > 0 || baseIndent.length + normalizedSingleLine.length > printWidth; const opensElement = !parsed.selfClosing && !parsed.closesInRemainder && !VOID_ELEMENTS.has(parsed.tagName.toLowerCase()); if (!shouldBreak) { return { lines: [`${baseIndent}${normalizedSingleLine}`], opensElement }; } if (parsed.attributes.length === 0 && !parsed.selfClosing) { const lines2 = [`${baseIndent}<${parsed.tagName}>`]; if (parsed.trailingClosing) { if (parsed.inlineContent) lines2.push(`${childIndent}${parsed.inlineContent}`); lines2.push(`${baseIndent}`); } else if (parsed.remainder) { lines2.push(`${childIndent}${parsed.remainder}`); } return { lines: lines2, opensElement }; } const lines = [ `${baseIndent}<${parsed.tagName}`, ...parsed.attributes.flatMap((attribute) => formatAttribute(attribute, childIndent, unit)) ]; if (parsed.selfClosing) { lines.push(`${baseIndent}/>`); return { lines, opensElement }; } lines.push(`${baseIndent}>`); if (parsed.trailingClosing) { if (parsed.inlineContent) { lines.push(`${childIndent}${parsed.inlineContent}`); } lines.push(`${baseIndent}`); } else if (parsed.remainder) { lines.push(`${parsed.immediateClosing ? baseIndent : childIndent}${parsed.remainder}`); } return { lines, opensElement }; } function isMultilineOpeningTagStart(value) { if (!value.startsWith("<")) { return false; } if (value.startsWith("/.test(value); } function isBalancedInlineHtmlFragment(value) { if (!value.startsWith("<") || value.startsWith("", tagStart + 4); if (commentEnd === -1) return false; index = commentEnd + 3; continue; } const relativeEnd = findOpeningTagEnd(value.slice(tagStart)); if (relativeEnd === -1) return false; const tag = value.slice(tagStart, tagStart + relativeEnd + 1); const match = /^<\/?([A-Za-z][\w$:.-]*)[\s\S]*?>$/.exec(tag); if (!match) { index = tagStart + 1; continue; } tagCount += 1; const tagName = match[1]; const normalizedName = /^[a-z]/.test(tagName) ? tagName.toLowerCase() : tagName; const closing = tag.startsWith("$/.test(tag); const voidElement = VOID_ELEMENTS.has(tagName.toLowerCase()); if (closing) { if (stack.at(-1) !== normalizedName) return false; stack.pop(); } else { if (stack.length === 0) rootCount += 1; else hasNestedElement = true; if (!selfClosing && !voidElement) stack.push(normalizedName); } index = tagStart + relativeEnd + 1; } return tagCount >= 2 && stack.length === 0 && (rootCount > 1 || hasNestedElement || hasOutsideText); } function isControlBlockOpen(value) { return /^\{#(?:if|each)\b[\s\S]*\}$/.test(value); } function isControlBlockMiddle(value) { return /^\{:(?:else(?:\s+if\b[\s\S]*)?|empty)\}$/.test(value); } function isControlBlockClose(value) { return /^\{\/(?:if|each)\}$/.test(value); } function countLeadingClosingBraces(value) { let index = 0; let count = 0; while (index < value.length) { while (index < value.length && /\s/.test(value[index])) { index += 1; } if (value[index] !== "}" && value[index] !== "]") { break; } count += 1; index += 1; } return count; } function countStructuralBraces(value) { let openings = 0; let closings = 0; let quote = null; let escaped = false; let htmlComment = false; for (let index = 0;index < value.length; index += 1) { if (!quote && !htmlComment && value.startsWith("", index)) { htmlComment = false; index += 2; continue; } if (htmlComment) { continue; } const character = value[index]; if (quote !== null) { if (escaped) { escaped = false; continue; } if (character === "\\") { escaped = true; continue; } if (character === quote) { quote = null; } continue; } if (character === '"' || character === "'" || character === "`") { quote = character; continue; } if (character === "{") { openings += 1; } else if (character === "}") { closings += 1; } else if (character === "[") { openings += 1; } else if (character === "]") { closings += 1; } } return { openings, closings }; } function collectOpeningTag(inputLines, startIndex) { const collected = [inputLines[startIndex].trim()]; let index = startIndex; while (index + 1 < inputLines.length) { const joined = collected.join(" "); if (findOpeningTagEnd(joined) !== -1) { break; } index += 1; collected.push(inputLines[index].trim()); } return { value: collected.join(` `), endIndex: index }; } function isPreservedRawBlockStart(value) { return /)/i.test(value) && !/<\/pre\s*>/i.test(value.slice(0, value.search(/)/i))); } function hasPreservedRawBlockEnd(value) { return /<\/pre\s*>/i.test(value); } function transformOutsidePreservedRawBlocks(lines, transformLine) { const output = []; let preserving = false; for (const line of lines) { if (preserving) { output.push(line); if (hasPreservedRawBlockEnd(line)) preserving = false; continue; } if (isPreservedRawBlockStart(line)) { output.push(line); preserving = !hasPreservedRawBlockEnd(line); continue; } output.push(...transformLine(line)); } return output; } function collectPreservedRawBlock(lines, startIndex) { const collected = [lines[startIndex]]; let index = startIndex; while (!hasPreservedRawBlockEnd(collected.at(-1) || "") && index + 1 < lines.length) { index += 1; collected.push(lines[index]); } return { lines: collected, endIndex: index }; } function expandInlineControlBlocks(lines) { const marker = /(\{#(?:if|each)\b[^}]*\}|\{:(?:else(?:\s+if\b[^}]*)?|empty)\}|\{\/(?:if|each)\})/g; return transformOutsidePreservedRawBlocks(lines, (line) => { if (!marker.test(line)) return [line]; marker.lastIndex = 0; const indentation = line.match(/^\s*/)?.[0] ?? ""; const segments = line.split(marker).map((segment) => segment.trim()).filter(Boolean); return segments.map((segment) => `${indentation}${segment}`); }); } function expandStructuredStateDeclarations(lines, unit) { return transformOutsidePreservedRawBlocks(lines, (line) => { const match = /^(\s*state\s+[A-Za-z_$][\w$]*\s*=\s*)([\\[{][\s\S]*)$/.exec(line); if (!match) return [line]; try { const parsed = JSON.parse(match[2].trim()); const jsonLines = JSON.stringify(parsed, null, unit).split(` `); if (jsonLines.length === 1) return [`${match[1]}${jsonLines[0]}`]; const leading = match[1].match(/^\s*/)?.[0] ?? ""; return [ `${match[1]}${jsonLines[0]}`, ...jsonLines.slice(1).map((jsonLine) => `${leading}${jsonLine}`) ]; } catch { return [line]; } }); } function formatStructuredPropDeclaration(value, unit, depth, printWidth) { const match = /^([A-Za-z_$][\w$]*\??\s*(?::\s*[^=]+?)?\s*=\s*)([\[{][\s\S]*)$/.exec(value); if (!match) return null; try { const parsed = JSON.parse(match[2].trim()); const compact = JSON.stringify(parsed); const indentation = unit.repeat(depth); if (indentation.length + match[1].length + compact.length <= printWidth) return null; const jsonLines = JSON.stringify(parsed, null, unit).split(` `); return [ `${indentation}${match[1]}${jsonLines[0]}`, ...jsonLines.slice(1).map((jsonLine) => `${indentation}${jsonLine}`) ]; } catch { return null; } } function formatWrnPass(source, options = {}) { const unit = options.insertSpaces === false ? "\t" : " ".repeat(options.tabSize ?? 4); const printWidth = options.printWidth ?? 100; const multilineAttributes = options.multilineAttributes !== false; let codeDepth = 0; let htmlDepth = 0; let controlDepth = 0; let index = 0; const sourceLines = source.replace(/\r\n/g, ` `).split(` `); const inputLines = expandInlineControlBlocks(expandStructuredStateDeclarations(sourceLines, unit)); const output = []; let previousWasBlank = false; while (index < inputLines.length) { const originalLine = inputLines[index]; let value = originalLine.trim(); if (value === "") { if (!previousWasBlank && output.length > 0) { output.push(""); } previousWasBlank = true; index += 1; continue; } previousWasBlank = false; if (/^import\b/.test(value)) { const importLines = [value]; while (!/(?:\bfrom\s+)?["'][^"']+["']\s*;?$/.test(importLines[importLines.length - 1]) && index + 1 < inputLines.length) { index += 1; importLines.push(inputLines[index].trim()); } output.push(importLines[0], ...importLines.slice(1).map((line) => `${unit}${line}`)); index += 1; continue; } if (isPreservedRawBlockStart(value)) { const collected = collectPreservedRawBlock(inputLines, index); const depth2 = codeDepth + htmlDepth + controlDepth; output.push(`${unit.repeat(depth2)}${collected.lines[0].trimStart()}`); output.push(...collected.lines.slice(1)); index = collected.endIndex + 1; continue; } if (isMultilineOpeningTagStart(value)) { const collected = collectOpeningTag(inputLines, index); value = collected.value; index = collected.endIndex; } const inlineDeclaration = formatInlineDeclarationBlock(value, unit, codeDepth + htmlDepth); const inlineProps = inlineDeclaration ?? formatInlinePropsBlock(value, unit, codeDepth + htmlDepth); if (inlineProps) { output.push(...inlineProps); index += 1; continue; } const structuredProp = formatStructuredPropDeclaration(value, unit, codeDepth + htmlDepth + controlDepth, printWidth); if (structuredProp) { output.push(...structuredProp); index += 1; continue; } const leadingClosingBraces = countLeadingClosingBraces(value); const closesControlBlock = isControlBlockClose(value); const continuesControlBlock = isControlBlockMiddle(value); const lineControlDepth = closesControlBlock || continuesControlBlock ? Math.max(0, controlDepth - 1) : controlDepth; const lineCodeDepth = Math.max(0, codeDepth - leadingClosingBraces); let lineHtmlDepth = htmlDepth; if (isClosingTag(value)) { lineHtmlDepth = Math.max(0, htmlDepth - 1); } const depth = lineCodeDepth + lineHtmlDepth + lineControlDepth; const inlineFragmentFits = unit.repeat(depth).length + value.length <= printWidth; if (isBalancedInlineHtmlFragment(value) && inlineFragmentFits) { output.push(`${unit.repeat(depth)}${value}`); } else if (value.startsWith("<") && !value.startsWith(" 0 && output[output.length - 1] === "") { output.pop(); } return `${output.join(` `)} `; } function formatWrn(source, options = {}) { let current = source; const seen = new Set; for (let pass = 0;pass < 8; pass++) { const formatted = formatWrnPass(current, options); if (formatted === current) return formatted; if (seen.has(formatted)) return [...seen, formatted].sort()[0]; seen.add(current); current = formatted; } return current; } // packages/syntax/src/spec.ts var WRN_HYDRATION_STRATEGIES = ["load", "idle", "visible", "interaction", "none"]; var WRN_RUNTIME_TARGETS = [ "server", "client", "universal", "edge", "worker", "service-worker" ]; var WRN_DIAGNOSTIC_CODES = { parse: "WRN-PARSE-001", root: "WRN-PARSE-ROOT", member: "WRN-PARSE-MEMBER", propInitializer: "WRN-PROP-INITIALIZER", stateInitializer: "WRN-STATE-INITIALIZER", watchUndeclared: "WRN-WATCH-UNDECLARED", duplicateSymbol: "WRN-SYMBOL-DUPLICATE", invalidHydration: "WRN-HYDRATE-STRATEGY", invalidRuntime: "WRN-RUNTIME-TARGET", serverInteractive: "WRN-RUNTIME-SERVER-INTERACTIVE", accessibility: "WRN-A11Y-001", import: "WRN-IMPORT-001", function: "WRN-FUNCTION-001", client: "WRN-CLIENT-001", server: "WRN-SERVER-001", output: "WRN-OUTPUT-001", type: "WRN-TYPE-001", state: "WRN-STATE-001", component: "WRN-COMPONENT-001", template: "WRN-TEMPLATE-001", store: "WRN-STORE-001", persist: "WRN-PERSIST-001", rpc: "WRN-RPC-001", hydration: "WRN-HYDRATION-001", migration: "WRN-MIGRATION-001" }; // packages/syntax/src/api-sections.ts var SECTION_NAMES = ["request", "response", "error"]; var REQUEST_SUBSECTION_NAMES = ["parameters", "body"]; function scanTopLevelBlocks(source, names) { const found = new Map; const lx = new Lexer(source); let depth = 0; let i = 0; let atLineStart = true; while (i < source.length) { const c = source[i]; if (c === ` `) { atLineStart = true; i++; continue; } const skipped = skipLiteralOrComment(source, i, atLineStart); if (skipped !== null) { i = skipped; atLineStart = false; continue; } if (c !== " " && c !== "\t" && c !== "\r") atLineStart = false; if (depth === 0 && isIdentStart(c)) { let j = i + 1; while (j < source.length && isIdentPart(source[j])) j++; const word = source.slice(i, j); let k = j; let lineStartAtK = false; while (k < source.length) { const kc = source[k]; if (kc === " " || kc === "\t" || kc === "\r") { k++; continue; } if (kc === ` `) { lineStartAtK = true; k++; continue; } const kSkipped = skipLiteralOrComment(source, k, lineStartAtK); if (kSkipped !== null) { k = kSkipped; lineStartAtK = false; continue; } break; } if (names.includes(word) && source[k] === "{") { lx.pos = k; const start = k + 1; const text = lx.readBalancedBraces(); if (!found.has(word)) found.set(word, { text, start }); i = lx.pos; continue; } i = j; continue; } if (c === "{") depth++; else if (c === "}") depth = Math.max(0, depth - 1); i++; } return found; } function absolutize(span, outer) { if (!span) return; return outer ? { text: span.text, start: outer.start + span.start } : span; } function parseFields(span) { if (!span) return []; const fields = []; let cursor = 0; for (const rawLine of span.text.split(` `)) { const lineOffset = span.start + cursor; cursor += rawLine.length + 1; const line = rawLine.trim().replace(/,$/, ""); if (!line || line.startsWith("//")) continue; const match = /^([A-Za-z_$][A-Za-z0-9_$]*)(\?)?\s*:\s*(.+)$/.exec(line); if (!match) { throw new LexError(`Expected "name: type" in an api request section, got "${line}" at offset ${lineOffset}`); } fields.push({ name: match[1], optional: match[2] === "?", type: match[3].trim() }); } return fields; } function parseApiSections(source) { const top = scanTopLevelBlocks(source, SECTION_NAMES); if (top.size === 0) return null; const request = top.get("request"); const sub = request ? scanTopLevelBlocks(request.text, REQUEST_SUBSECTION_NAMES) : new Map; return { parameters: parseFields(absolutize(sub.get("parameters"), request)), body: parseFields(absolutize(sub.get("body"), request)), response: top.get("response")?.text ?? "", error: top.get("error")?.text ?? "" }; } function parseApiEntries(source) { const entries = []; const lx = new Lexer(source); while (lx.peek().type !== "eof") { const nameToken = lx.next(); if (nameToken.type !== "ident") { throw new LexError(`Expected an api entry name at offset ${nameToken.pos}`); } const methodToken = lx.next(); if (methodToken.type !== "ident") { throw new LexError(`Expected an HTTP method after "${nameToken.value}"`); } const path = lx.readPath(); const entryBody = lx.readBalancedBraces(); const sections = parseApiSections(entryBody); if (sections === null) { throw new LexError(`Api entry "${nameToken.value}" has a bare body; declare a "response { }" section instead`); } entries.push({ mode: "any", name: nameToken.value, method: methodToken.value.toUpperCase(), path, body: "", sections }); } return entries; } // packages/syntax/src/types.ts function runtimeTypeOf(annotation) { if (!annotation) return "unknown"; const type = annotation.trim().replace(/^readonly\s+/, ""); const unionParts = type.split("|").map((part) => part.trim()); const concreteParts = unionParts.filter((part) => !/^(?:null|undefined)$/.test(part)); if (/^(?:string|String)(?:\s*\|\s*(?:null|undefined))*$/.test(type) || concreteParts.length > 0 && concreteParts.every((part) => /^(?:"[^"]*"|'[^']*')$/.test(part))) return "string"; if (/^(?:number|Number)(?:\s*\|\s*(?:null|undefined))*$/.test(type) || concreteParts.length > 0 && concreteParts.every((part) => /^-?(?:\d+\.?\d*|\.\d+)$/.test(part))) return "number"; if (/^(?:boolean|Boolean)(?:\s*\|\s*(?:null|undefined))*$/.test(type) || concreteParts.length > 0 && concreteParts.every((part) => /^(?:true|false)$/.test(part))) return "boolean"; if (/^bigint(?:\s*\|\s*(?:null|undefined))*$/.test(type)) return "bigint"; if (/^(?:Array\s*<|ReadonlyArray\s*<|.+\[\])/.test(type) || /^\[/.test(type)) return "array"; if (/^(?:Record\s*<|object\b|\{)/.test(type)) return "object"; if (/=>|^(?:Function|\([^)]*\)\s*=>)/.test(type)) return "function"; return "unknown"; } function inferredRuntimeType(expression) { const value = expression.trim(); if (/^["'`]/.test(value)) return "string"; if (/^-?(?:\d+\.?\d*|\.\d+)(?:e[+-]?\d+)?$/i.test(value)) return "number"; if (/^(?:true|false)$/.test(value)) return "boolean"; if (/^-?\d+n$/.test(value)) return "bigint"; if (value.startsWith("[")) return "array"; if (value.startsWith("{") || /^new\s+(?:Map|Set|Date)\b/.test(value)) return "object"; if (/^(?:async\s+)?(?:function\b|\([^)]*\)\s*=>|[A-Za-z_$][\w$]*\s*=>)/.test(value)) { return "function"; } return "unknown"; } function validateTypedInitializer(name, annotation, expression) { if (!annotation || expression.trim() === "undefined" || expression.trim() === "null") return null; const expected = runtimeTypeOf(annotation); const actual = inferredRuntimeType(expression); if (expected === "unknown" || actual === "unknown" || expected === actual) return null; return `${name} is declared as ${annotation}, but its initializer is ${actual}`; } // packages/syntax/src/v060.ts function splitTopLevel(input, separator = ",") { const parts = []; let start = 0; let quote = null; let angle = 0; let square = 0; let brace = 0; let paren = 0; for (let i = 0;i < input.length; i++) { const c = input[i]; if (quote) { if (c === "\\") i++; else if (c === quote) quote = null; continue; } if (c === '"' || c === "'" || c === "`") { quote = c; continue; } if (c === "<") angle++; else if (c === ">" && angle > 0) angle--; else if (c === "[") square++; else if (c === "]" && square > 0) square--; else if (c === "{") brace++; else if (c === "}" && brace > 0) brace--; else if (c === "(") paren++; else if (c === ")" && paren > 0) paren--; else if (c === separator && angle === 0 && square === 0 && brace === 0 && paren === 0) { parts.push(input.slice(start, i).trim()); start = i + 1; } } const tail = input.slice(start).trim(); if (tail) parts.push(tail); return parts; } function findTopLevelChar(input, wanted) { let quote = null; let angle = 0; let square = 0; let brace = 0; let paren = 0; for (let i = 0;i < input.length; i++) { const c = input[i]; if (quote) { if (c === "\\") i++; else if (c === quote) quote = null; continue; } if (c === '"' || c === "'" || c === "`") { quote = c; continue; } if (c === "<") angle++; else if (c === ">" && angle > 0) angle--; else if (c === "[") square++; else if (c === "]" && square > 0) square--; else if (c === "{") brace++; else if (c === "}" && brace > 0) brace--; else if (c === "(") paren++; else if (c === ")" && paren > 0) paren--; if (c === wanted && angle === 0 && square === 0 && brace === 0 && paren === 0) return i; } return -1; } function parseParameters(source) { return splitTopLevel(source).filter(Boolean).map((entry) => { const eq = findTopLevelChar(entry, "="); const declaration = (eq >= 0 ? entry.slice(0, eq) : entry).trim(); const defaultValue = eq >= 0 ? entry.slice(eq + 1).trim() : undefined; const colon = findTopLevelChar(declaration, ":"); const rawName = (colon >= 0 ? declaration.slice(0, colon) : declaration).trim(); const optional = rawName.endsWith("?"); const name = optional ? rawName.slice(0, -1).trim() : rawName; const valueType = colon >= 0 ? declaration.slice(colon + 1).trim() : undefined; return { name, optional, ...valueType ? { valueType } : {}, ...defaultValue ? { default: defaultValue } : {} }; }); } function skipTrivia(source, start) { let i = start; while (i < source.length) { if (/\s/.test(source[i])) { i++; continue; } if (source.startsWith("//", i)) { const end = source.indexOf(` `, i + 2); i = end < 0 ? source.length : end + 1; continue; } if (source.startsWith("/*", i)) { const end = source.indexOf("*/", i + 2); i = end < 0 ? source.length : end + 2; continue; } break; } return i; } function readWord(source, start) { const match = /^[A-Za-z_$][\w$]*/.exec(source.slice(start)); return match ? { word: match[0], end: start + match[0].length } : null; } function readBalanced(source, start, open, close) { if (source[start] !== open) throw new Error(`Expected '${open}' at offset ${start}`); let depth = 0; let quote = null; for (let i = start;i < source.length; i++) { const c = source[i]; if (quote) { if (c === "\\") i++; else if (c === quote) quote = null; continue; } if (c === '"' || c === "'" || c === "`") { quote = c; continue; } if (c === open) depth++; else if (c === close && --depth === 0) return { inner: source.slice(start + 1, i), end: i + 1 }; } throw new Error(`Unbalanced '${open}${close}' starting at offset ${start}`); } function parseRuntimeFunctions(source) { const declarations = []; let i = 0; while (i < source.length) { i = skipTrivia(source, i); const start = i; let token = readWord(source, i); if (!token) { i++; continue; } let runtime = "shared"; if (["client", "server", "shared"].includes(token.word)) { runtime = token.word; i = skipTrivia(source, token.end); token = readWord(source, i); if (!token) continue; } let isAsync = false; if (token.word === "async") { isAsync = true; i = skipTrivia(source, token.end); token = readWord(source, i); if (!token) continue; } if (token.word !== "function") { i = token.end; continue; } i = skipTrivia(source, token.end); const nameToken = readWord(source, i); if (!nameToken) throw new Error(`Expected function name at offset ${i}`); const name = nameToken.word; i = skipTrivia(source, nameToken.end); const params = readBalanced(source, i, "(", ")"); i = skipTrivia(source, params.end); let returnType; if (source[i] === ":") { i++; const typeStart = i; let quote = null; let angle = 0; let square = 0; let paren = 0; while (i < source.length) { const c = source[i]; if (quote) { if (c === "\\") i++; else if (c === quote) quote = null; i++; continue; } if (c === '"' || c === "'" || c === "`") quote = c; else if (c === "<") angle++; else if (c === ">" && angle > 0) angle--; else if (c === "[") square++; else if (c === "]" && square > 0) square--; else if (c === "(") paren++; else if (c === ")" && paren > 0) paren--; else if (c === "{" && angle === 0 && square === 0 && paren === 0) break; i++; } returnType = source.slice(typeStart, i).trim(); } i = skipTrivia(source, i); const body = readBalanced(source, i, "{", "}"); i = body.end; declarations.push({ name, runtime, async: isAsync, parameters: parseParameters(params.inner), ...returnType ? { returnType } : {}, body: body.inner, source: source.slice(start, body.end).trim() }); } return declarations; } function parseOutputs(source) { const out = []; let i = 0; while (i < source.length) { i = skipTrivia(source, i); if (i >= source.length) break; const nameToken = readWord(source, i); if (!nameToken) throw new Error(`Expected output name at offset ${i}`); i = skipTrivia(source, nameToken.end); const args = readBalanced(source, i, "(", ")"); i = args.end; const parameters = parseParameters(args.inner); if (parameters.length > 1) throw new Error(`Output '${nameToken.word}' accepts zero or one payload`); const payload = parameters[0]; if (payload && !payload.valueType) throw new Error(`Output '${nameToken.word}' payload requires a type`); out.push({ name: nameToken.word, ...payload ? { payload: { name: payload.name, valueType: payload.valueType, optional: payload.optional } } : {} }); } return out; } function parseStructuredImports(imports) { return imports.map((raw) => { const sourceMatch = /\sfrom\s+["']([^"']+)["']|^import\s+["']([^"']+)["']/.exec(raw); const source = sourceMatch?.[1] ?? sourceMatch?.[2] ?? ""; const typeOnly = /^import\s+type\b/.test(raw); const clause = raw.replace(/^import\s+(?:type\s+)?/, "").replace(/\s+from\s+["'][^"']+["']\s*;?$/, "").trim(); const declaration = { source, typeOnly, namedImports: [], raw }; if (!clause || clause.startsWith('"') || clause.startsWith("'")) return declaration; if (clause.startsWith("*")) { declaration.namespaceImport = /\*\s+as\s+([A-Za-z_$][\w$]*)/.exec(clause)?.[1]; return declaration; } let rest = clause; if (!rest.startsWith("{")) { const comma = findTopLevelChar(rest, ","); declaration.defaultImport = (comma < 0 ? rest : rest.slice(0, comma)).trim(); rest = comma < 0 ? "" : rest.slice(comma + 1).trim(); } const named = /^\{([\s\S]*)\}$/.exec(rest)?.[1]; if (named !== undefined) { declaration.namedImports = splitTopLevel(named).map((item) => { const localTypeOnly = /^type\s+/.test(item); const cleaned = item.replace(/^type\s+/, "").trim(); const [imported, local] = cleaned.split(/\s+as\s+/); return { imported: imported.trim(), local: (local ?? imported).trim(), typeOnly: typeOnly || localTypeOnly }; }); } return declaration; }); } function parseStateDeclarations(source, runtime) { const lx = new Lexer(source); const out = []; while (lx.peek().type !== "eof") { const nameToken = lx.next(); if (nameToken.type !== "ident") throw new LexError(`Expected a state name at offset ${nameToken.pos}`); let valueType; if (lx.peek().type === "colon") { lx.next(); const annotation = lx.readTypeAnnotation(); valueType = annotation.type; if (!annotation.hasDefault) throw new LexError(`State '${nameToken.value}' requires an initializer`); } else { const eq = lx.next(); if (eq.type !== "eq") throw new LexError(`Expected '=' after state '${nameToken.value}' at offset ${eq.pos}`); } out.push({ name: nameToken.value, ...valueType ? { valueType } : {}, expr: lx.readPropInitializer(), runtime }); } return out; } function parseComputedDeclarations(source) { const lx = new Lexer(source); const out = []; while (lx.peek().type !== "eof") { const nameToken = lx.next(); if (nameToken.type !== "ident") throw new LexError(`Expected a computed name at offset ${nameToken.pos}`); let valueType; if (lx.peek().type === "colon") { lx.next(); const annotation = lx.readTypeAnnotation(); valueType = annotation.type; if (!annotation.hasDefault) throw new LexError(`Computed '${nameToken.value}' requires an expression`); } else { const eq = lx.next(); if (eq.type !== "eq") throw new LexError(`Expected '=' after computed '${nameToken.value}' at offset ${eq.pos}`); } out.push({ name: nameToken.value, ...valueType ? { valueType } : {}, expr: lx.readPropInitializer() }); } return out; } function nestedBlock(source, name) { const match = new RegExp(`\\b${name}\\s*\\{`).exec(source); if (!match) return; const brace = source.indexOf("{", match.index); return readBalanced(source, brace, "{", "}").inner.trim() || undefined; } function parsePersist(source) { const storage = /\bstorage\s*=\s*["'](memory|session|local)["']/.exec(source)?.[1]; const includeRaw = /\binclude\s*=\s*\[([\s\S]*?)\]/.exec(source)?.[1] ?? ""; const include = Array.from(includeRaw.matchAll(/["']([^"']+)["']/g), (match) => match[1]); const version = Number(/\bversion\s*=\s*(\d+)/.exec(source)?.[1] ?? "1"); const migrations = nestedBlock(source, "migrations"); const validation = nestedBlock(source, "validate"); return { storage: storage ?? "memory", include, version, ...migrations ? { migrations } : {}, ...validation ? { validation } : {} }; } function parseStoreLifecycle(source) { const out = {}; for (const hook of ["serverInit", "clientInit", "hydrate", "dispose"]) { const start = new RegExp(`\\b${hook}\\s*\\{`).exec(source); if (!start) continue; const brace = source.indexOf("{", start.index); out[hook] = readBalanced(source, brace, "{", "}").inner; } return out; } // packages/syntax/src/parser.ts var VOID_ELEMENTS2 = new Set([ "area", "base", "br", "col", "embed", "hr", "img", "input", "link", "meta", "param", "source", "track", "wbr" ]); class ParseError extends Error { code; offset; constructor(message, code = "WRN-PARSE-001") { super(message); this.name = "ParseError"; this.code = code; const match = /offset\s+(\d+)/i.exec(message); this.offset = match ? Number(match[1]) : undefined; } } function parseSeoBlock(body) { const out = {}; const pair = /([A-Za-z][A-Za-z0-9_-]*)\s*=\s*(?:"((?:\\.|[^"\\])*)"|'((?:\\.|[^'\\])*)'|([^\n;]+))/g; for (const match of body.matchAll(pair)) { const key = match[1]; const rawValue = match[2] ?? match[3] ?? match[4] ?? ""; out[key] = unescapeSeoValue(rawValue.trim()); } return out; } function unescapeSeoValue(value) { return value.replace(/\\(["'\\nrt])/g, (_match, ch) => { if (ch === "n") return ` `; if (ch === "r") return "\r"; if (ch === "t") return "\t"; return ch; }); } function parse(source) { const lx = new Lexer(source); const imports = []; const importPattern = /import\s+(?:type\s+)?(?:[\s\S]*?\s+from\s+)?["'][^"'\r\n]+["']\s*;?/y; while (true) { while (/\s/u.test(source[lx.pos] ?? "")) lx.pos++; if (source.startsWith("//", lx.pos)) { while (lx.pos < source.length && source[lx.pos] !== ` `) lx.pos++; continue; } importPattern.lastIndex = lx.pos; const statement = importPattern.exec(source); if (!statement) break; imports.push(statement[0].trim()); lx.pos = importPattern.lastIndex; } const expect = (type) => { const t = lx.next(); if (t.type !== type) { throw new ParseError(`Expected ${type} but got '${t.value || t.type}' at offset ${t.pos}`); } return t; }; const expectKeyword = (kw) => { const t = lx.next(); if (t.type !== "ident" || t.value !== kw) { throw new ParseError(`Expected '${kw}' but got '${t.value || t.type}' at offset ${t.pos}`); } }; try { const opener = lx.next(); if (opener.type !== "ident" || !["page", "component", "layout", "global"].includes(opener.value)) { throw new ParseError(`Expected 'page', 'component', 'layout', 'global store', or 'page store' but got '${opener.value || opener.type}' at offset ${opener.pos}`); } let kind; let storeKind; let name; if (opener.value === "global") { expectKeyword("store"); kind = "global-store"; storeKind = "global"; name = expect("ident").value; } else if (opener.value === "page" && lx.peek().type === "ident" && lx.peek().value === "store") { lx.next(); kind = "page-store"; storeKind = "page"; name = expect("ident").value; } else { kind = opener.value; name = expect("ident").value; } expect("lbrace"); let layout; let layoutIsSymbol = false; let runtime; let renderMode; let hydrate; const props = []; const events = []; const outputs = []; const types = []; const states = []; const computed = []; const effects = []; const loads = []; const actions = []; const security = {}; const cache = {}; const navigation = {}; const seo = {}; const view = []; const styles = []; const functions = []; const runtimeFunctions = []; const dataApis = []; const modeFunctions = []; const lifecycle = {}; let storeLifecycle = {}; let persist; const watches = []; const apis = []; const realtimes = []; while (lx.peek().type !== "rbrace") { const kw = lx.peek(); if (kw.type === "eof") throw new ParseError(`Unexpected end of input inside ${kind}`); if (kw.type !== "ident") { throw new ParseError(`Expected a ${kind} member keyword at offset ${kw.pos}`); } switch (kw.value) { case "auth": { lx.next(); expect("eq"); const value = lx.next(); if (value.type !== "ident" || !["true", "false"].includes(value.value)) { throw new ParseError(`Expected auth = true or false at offset ${value.pos}`); } security.auth = value.value === "true" ? "required" : "false"; break; } case "permission": { lx.next(); expect("eq"); const value = expect("string").value.trim(); if (!value) throw new ParseError(`Page permission cannot be empty at offset ${kw.pos}`); security.permission = value; break; } case "layout": { lx.next(); expect("eq"); const layoutToken = lx.next(); if (layoutToken.type !== "string" && layoutToken.type !== "ident") { throw new ParseError(`Expected a layout string or imported symbol at offset ${layoutToken.pos}`); } layout = layoutToken.value; layoutIsSymbol = layoutToken.type === "ident"; break; } case "runtime": { lx.next(); expect("eq"); const value = expect("string").value; if (!WRN_RUNTIME_TARGETS.includes(value)) { throw new ParseError(`Unknown runtime target '${value}' at offset ${kw.pos}`, "WRN-RUNTIME-TARGET"); } runtime = value; break; } case "render": { lx.next(); expect("eq"); const value = expect("string").value; if (!["static", "server", "hybrid", "client", "partial-static"].includes(value)) throw new ParseError(`Unknown render mode '${value}' at offset ${kw.pos}`, "WRN-RENDER-MODE"); renderMode = value; break; } case "hydrate": { lx.next(); expect("eq"); const value = expect("string").value; hydrate = value === "never" ? "none" : value; break; } case "props": { lx.next(); expect("lbrace"); while (true) { if (lx.startsWithBlockComment()) { throw new ParseError("Block comments are not allowed inside props {}; use // line comments instead", "WRN-PROPS-BLOCK-COMMENT"); } if (lx.peek().type === "rbrace") break; const t = lx.peek(); if (t.type === "eof") throw new ParseError("Unexpected end of input inside props"); if (t.type === "at") { lx.next(); const declarationKind = expect("ident"); if (declarationKind.value !== "event") { throw new ParseError(`Expected '@event' but got '@${declarationKind.value}' at offset ${declarationKind.pos}`); } const eventName = expect("ident").value; expect("eq"); const marker = lx.readPropInitializer(); if (marker !== "function") { throw new ParseError(`Event '${eventName}' must be declared as '@event ${eventName} = function'`); } events.push({ name: eventName }); continue; } if (t.type !== "ident") { throw new ParseError(`Expected a prop name at offset ${t.pos}`); } const pName = expect("ident").value; const optional = lx.peek().type === "question" ? (lx.next(), true) : false; let valueType; let hasDefault = false; if (lx.peek().type === "colon") { lx.next(); const annotation = lx.readTypeAnnotation(); valueType = annotation.type; hasDefault = annotation.hasDefault; } else { expect("eq"); hasDefault = true; } const defaultValue = hasDefault ? lx.readPropInitializer() : "undefined"; props.push({ name: pName, valueType, required: !hasDefault && !optional, default: defaultValue }); } expect("rbrace"); break; } case "state": { lx.next(); if (lx.peek().type === "lbrace") { const grouped = parseStateDeclarations(lx.readBalancedBraces(), "shared"); states.push(...grouped); break; } const sName = expect("ident").value; let valueType; if (lx.peek().type === "colon") { lx.next(); const annotation = lx.readTypeAnnotation(); valueType = annotation.type; if (!annotation.hasDefault) throw new ParseError(`State '${sName}' requires an initializer`); } else { expect("eq"); } states.push({ name: sName, valueType, expr: lx.readPropInitializer(), runtime: "shared" }); break; } case "computed": { lx.next(); if (lx.peek().type === "lbrace") { computed.push(...parseComputedDeclarations(lx.readBalancedBraces())); } else { const cName = expect("ident").value; let valueType; if (lx.peek().type === "colon") { lx.next(); const annotation = lx.readTypeAnnotation(); valueType = annotation.type; if (!annotation.hasDefault) throw new ParseError(`Computed '${cName}' requires an expression`); } else expect("eq"); computed.push({ name: cName, valueType, expr: lx.readPropInitializer() }); } break; } case "outputs": { lx.next(); try { outputs.push(...parseOutputs(lx.readBalancedBraces())); } catch (error) { throw new ParseError(error instanceof Error ? error.message : String(error), "WRN-OUTPUT-DECLARATION"); } break; } case "effect": { lx.next(); effects.push({ body: lx.readBalancedBraces() }); break; } case "types": { lx.next(); types.push(lx.readBalancedBraces()); break; } case "view": { lx.next(); expect("lbrace"); const { nodes, endPos } = parseHtmlView(lx.src, lx.pos); view.push(...nodes); lx.pos = endPos; expect("rbrace"); break; } case "seo": { lx.next(); Object.assign(seo, parseSeoBlock(lx.readBalancedBraces())); break; } case "security": { lx.next(); Object.assign(security, parseSeoBlock(lx.readBalancedBraces())); break; } case "navigation": { lx.next(); Object.assign(navigation, parseSeoBlock(lx.readBalancedBraces())); break; } case "cache": { lx.next(); Object.assign(cache, parseSeoBlock(lx.readBalancedBraces())); break; } case "load": { lx.next(); const first = expect("ident"); const mode = first.value === "client" ? "client" : "server"; const name2 = first.value === "server" || first.value === "client" ? lx.peek().type === "ident" ? expect("ident").value : undefined : first.value; const dependsOn = []; let deferred = false; while (lx.peek().type === "ident") { if (lx.peek().value === "defer") { lx.next(); deferred = true; continue; } if (lx.peek().value !== "after") break; lx.next(); dependsOn.push(expect("ident").value); while (lx.peek().type === "comma") { lx.next(); dependsOn.push(expect("ident").value); } } loads.push({ mode, name: name2, ...dependsOn.length ? { dependsOn } : {}, ...deferred ? { deferred: true } : {}, body: lx.readBalancedBraces() }); break; } case "action": { lx.next(); const actionName = expect("ident").value; const args = []; if (lx.peek().type === "lparen") { lx.next(); while (lx.peek().type !== "rparen") { args.push(expect("ident").value); if (lx.peek().type === "comma") lx.next(); } expect("rparen"); } let schema; if (lx.peek().type === "ident" && lx.peek().value === "using") { lx.next(); schema = expect("ident").value; } actions.push({ name: actionName, args, schema, body: lx.readBalancedBraces() }); break; } case "api": { lx.next(); const method = expect("ident").value.toUpperCase(); const path = lx.readPath(); const body = lx.readBalancedBraces(); apis.push({ method, path, body }); break; } case "ssr": case "client": case "server": { const rawMode = kw.value; lx.next(); if ((rawMode === "client" || rawMode === "server") && lx.peek().type === "ident" && lx.peek().value === "state") { lx.next(); if (lx.peek().type !== "lbrace") throw new ParseError(`Expected a grouped ${rawMode} state block`); states.push(...parseStateDeclarations(lx.readBalancedBraces(), rawMode)); break; } if (rawMode === "client" && lx.peek().type === "eq") { lx.next(); hydrate = expect("string").value; break; } if (lx.peek().type === "lbrace") { throw new ParseError(`"${rawMode} { … }" data blocks were removed. Declare API calls in a page-level "apis { }" block, and move mode-scoped helpers into "functions { shared function … }" (at offset ${kw.pos}).`); } throw new ParseError(`Expected a ${rawMode} state block or hydrate assignment`); } case "shared": { lx.next(); const member = expect("ident"); if (member.value !== "state") throw new ParseError(`Expected 'state' after shared at offset ${member.pos}`); states.push(...parseStateDeclarations(lx.readBalancedBraces(), "shared")); break; } case "realtime": { lx.next(); const rName = expect("ident").value; expect("lbrace"); const handlers = []; while (lx.peek().type !== "rbrace") { expectKeyword("on"); const event = expect("ident").value; expect("lparen"); const args = []; while (lx.peek().type !== "rparen") { args.push(expect("ident").value); if (lx.peek().type === "comma") lx.next(); } expect("rparen"); handlers.push({ event, args, body: lx.readBalancedBraces() }); } expect("rbrace"); realtimes.push({ name: rName, handlers }); break; } case "style": { lx.next(); styles.push(lx.readBalancedBraces()); break; } case "lifecycle": { lx.next(); const body = lx.readBalancedBraces(); if (kind === "global-store" || kind === "page-store") { storeLifecycle = parseStoreLifecycle(body); const allowedStoreHooks = new Set(["serverInit", "clientInit", "hydrate", "dispose"]); const hookLexer = new Lexer(body); while (hookLexer.peek().type !== "eof") { const token = hookLexer.next(); if (token.type !== "ident") { throw new ParseError(`Expected a lifecycle hook at offset ${token.pos}`); } if (!allowedStoreHooks.has(token.value)) { throw new ParseError(`Unknown store lifecycle hook '${token.value}'`); } hookLexer.readBalancedBraces(); } } else { const allowedComponentHooks = new Set([ "mount", "update", "unmount", "clientInit", "dispose" ]); const hookLexer = new Lexer(body); while (hookLexer.peek().type !== "eof") { const token = hookLexer.next(); if (token.type !== "ident") { throw new ParseError(`Expected a lifecycle hook at offset ${token.pos}`); } if (!allowedComponentHooks.has(token.value)) { throw new ParseError(`Unknown lifecycle hook '${token.value}'`); } const hookBody = hookLexer.readBalancedBraces(); const hook = token.value === "clientInit" ? "mount" : token.value === "dispose" ? "unmount" : token.value; if (lifecycle[hook] !== undefined) { throw new ParseError(`Duplicate lifecycle hook '${hook}'`); } lifecycle[hook] = hookBody; } } break; } case "watch": { lx.next(); const stateName = expect("ident").value; const body = lx.readBalancedBraces(); watches.push({ state: stateName, body }); break; } case "functions": { lx.next(); const body = lx.readBalancedBraces(); functions.push(body); try { runtimeFunctions.push(...parseRuntimeFunctions(body)); } catch (error) { throw new ParseError(error instanceof Error ? error.message : String(error), "WRN-FUNCTION-DECLARATION"); } break; } case "persist": { lx.next(); persist = parsePersist(lx.readBalancedBraces()); break; } case "apis": { lx.next(); const body = lx.readBalancedBraces(); dataApis.push(...parseApiEntries(body)); break; } default: throw new ParseError(`Unknown page member '${kw.value}' at offset ${kw.pos}`); } } expect("rbrace"); const declaredStates = new Set(states.map((state) => state.name)); if (declaredStates.has("page")) { throw new ParseError("State name 'page' collides with the WRN 'page' keyword; choose another state name", "WRN-STATE-RESERVED-NAME"); } for (const watcher of watches) { if (!declaredStates.has(watcher.state)) { throw new ParseError(`Cannot watch undeclared state '${watcher.state}'`); } } for (const prop of props) { const problem = validateTypedInitializer(`Prop '${prop.name}'`, prop.valueType, prop.default); if (problem) throw new ParseError(problem); } for (const state of states) { const problem = validateTypedInitializer(`State '${state.name}'`, state.valueType, state.expr); if (problem) throw new ParseError(problem); } const symbols = new Set; for (const declaration of [...props, ...states, ...computed]) { if (symbols.has(declaration.name)) { throw new ParseError(`Duplicate symbol '${declaration.name}'`, "WRN-SYMBOL-DUPLICATE"); } symbols.add(declaration.name); } const outputNames = new Set; for (const output of outputs) { if (outputNames.has(output.name)) throw new ParseError(`Duplicate output '${output.name}'`, "WRN-OUTPUT-DUPLICATE"); outputNames.add(output.name); } const functionKeys = new Set; for (const fn of runtimeFunctions) { const key = `${fn.runtime}:${fn.name}`; if (functionKeys.has(key)) throw new ParseError(`Duplicate ${fn.runtime} function '${fn.name}'`, "WRN-FUNCTION-DUPLICATE"); functionKeys.add(key); } const namedLoads = new Map(loads.filter((load) => load.name).map((load) => [load.name, load])); for (const load of namedLoads.values()) { for (const dependency of load.dependsOn ?? []) { const dependencyLoad = namedLoads.get(dependency); if (!dependencyLoad) throw new ParseError(`Load '${load.name}' depends on unknown load '${dependency}'`, "WRN-LOAD-DEPENDENCY"); if (load.mode === "server" && !load.deferred && (dependencyLoad.mode !== "server" || dependencyLoad.deferred)) throw new ParseError(`Server load '${load.name}' cannot depend on deferred/client load '${dependency}'`, "WRN-LOAD-PHASE"); } } const visiting = new Set; const visited = new Set; const visitLoad = (name2) => { if (visiting.has(name2)) throw new ParseError(`Load dependency cycle includes '${name2}'`, "WRN-LOAD-CYCLE"); if (visited.has(name2)) return; visiting.add(name2); for (const dependency of namedLoads.get(name2)?.dependsOn ?? []) visitLoad(dependency); visiting.delete(name2); visited.add(name2); }; for (const name2 of namedLoads.keys()) visitLoad(name2); const seenApiNames = new Set; for (const block of dataApis) { if (seenApiNames.has(block.name)) { throw new ParseError(`Duplicate api entry "${block.name}"`, "WRN-API-DUPLICATE"); } seenApiNames.add(block.name); } return { type: "page", imports, structuredImports: parseStructuredImports(imports), kind, storeKind, name, layout, layoutIsSymbol, runtime, renderMode, hydrate, cache, props, events, outputs, types, states, computed, effects, loads, actions, security, navigation, seo, view, styles, functions, runtimeFunctions, dataApis, modeFunctions, lifecycle, storeLifecycle, persist, watches, apis, realtimes }; } catch (err) { if (err instanceof LexError) throw new ParseError(err.message); throw err; } } function parseHtmlView(src, pos) { let i = pos; const isNameStart = (c) => /[A-Za-z_]/.test(c); const isTagNamePart = (c) => /[A-Za-z0-9_$:.-]/.test(c); const isWs2 = (c) => c === " " || c === "\t" || c === ` ` || c === "\r"; const fail = (msg) => { throw new ParseError(`${msg} at offset ${i}`); }; const skipWs = () => { while (i < src.length && isWs2(src[i])) i++; }; const readInterpolation = () => { const start = i; let depth = 0; let quote = null; for (;i < src.length; i++) { const char = src[i]; if (quote) { if (char === "\\" && i + 1 < src.length) { i++; continue; } if (char === quote) quote = null; continue; } if (char === '"' || char === "'" || char === "`") { quote = char; continue; } if (char === "{") depth++; else if (char === "}" && --depth === 0) { i++; return src.slice(start, i); } } return fail("Unterminated `{` interpolation in view"); }; const readQuoted = () => { const quote = src[i]; if (quote !== '"' && quote !== "'") return fail("Expected a quoted attribute value"); i++; let value = ""; while (i < src.length && src[i] !== quote) { if (src[i] === "\\" && (src[i + 1] === quote || src[i + 1] === "\\")) { value += src[i + 1]; i += 2; continue; } value += src[i]; i++; } if (i >= src.length) return fail("Unterminated attribute value"); i++; return value; }; const readTagName = () => { if (i >= src.length || !isNameStart(src[i])) { return fail("Expected a tag name"); } const start = i++; while (i < src.length && isTagNamePart(src[i])) { i++; } return src.slice(start, i); }; const readAttributeName = () => { if (i >= src.length) { return fail("Expected an attribute name"); } const start = i; while (i < src.length) { const char = src[i]; const next = src[i + 1]; if (char === "=" || char === ">" || char === '"' || char === "'" || char === " " || char === "\t" || char === ` ` || char === "\r" || char === "/" && next === ">") { break; } i++; } if (i === start) { return fail("Expected an attribute name"); } return src.slice(start, i); }; const parseTag = () => { i++; const tag = readTagName(); const attrs = []; for (;; ) { skipWs(); const c = src[i]; if (c === undefined) return fail(`Unterminated <${tag}> tag`); if (c === ">") { i++; break; } if (c === "/" && src[i + 1] === ">") { i += 2; return { type: "element", tag, attrs, children: [] }; } if (c === "@") { i++; const name2 = readAttributeName(); skipWs(); if (src[i] !== "=") return fail(`Expected '=' after @${name2}`); i++; skipWs(); attrs.push({ name: name2, value: readQuoted(), event: true }); continue; } const name = readAttributeName(); skipWs(); if (src[i] === "=") { i++; skipWs(); const value = src[i] === '"' || src[i] === "'" ? readQuoted() : src[i] === "{" ? readInterpolation() : fail(`Expected a quoted value or {...} expression after '${name}='`); attrs.push({ name, value, event: false }); } else { attrs.push({ name, value: "", event: false, boolean: true }); } } if (VOID_ELEMENTS2.has(tag.toLowerCase())) { return { type: "element", tag, attrs, children: [] }; } const children = parseNodeList("element"); if (src[i] !== "<" || src[i + 1] !== "/") return fail(`Expected `); i += 2; skipWs(); const close = readTagName(); if (close !== tag) return fail(`Mismatched , expected `); skipWs(); if (src[i] !== ">") return fail(`Expected '>' to close `); i++; return { type: "element", tag, attrs, children }; }; const EACH_HEADER = /^\{#each\s+([\s\S]+?)\s+as\s+([A-Za-z_$][\w$]*)\s*(?:,\s*([A-Za-z_$][\w$]*))?(?:\s+key\s+([\s\S]+?))?\s*\}$/; function parseEach() { const header = readInterpolation(); const m = EACH_HEADER.exec(header); if (!m) return fail(`Invalid {#each …} header: ${header}`); const list = m[1].trim(); const item = m[2]; const index = m[3]; const key = m[4]?.trim(); const body = parseNodeList("each"); let empty = []; if (src.startsWith("{:empty}", i)) { i += "{:empty}".length; empty = parseNodeList("each"); } if (!src.startsWith("{/each}", i)) return fail("Expected `{/each}` to close `{#each}`"); i += "{/each}".length; return { type: "each", list, item, index, key, body, empty }; } function parseIf() { const header = readInterpolation(); const m = /^\{#if\s+([\s\S]+?)\s*\}$/.exec(header); if (!m) return fail(`Invalid {#if …} header: ${header}`); const branches = [ { cond: m[1].trim(), body: parseNodeList("if") } ]; for (;; ) { if (src.startsWith("{:else if", i)) { const h = readInterpolation(); const mm = /^\{:else if\s+([\s\S]+?)\s*\}$/.exec(h); if (!mm) return fail(`Invalid {:else if …}: ${h}`); branches.push({ cond: mm[1].trim(), body: parseNodeList("if") }); continue; } if (src.startsWith("{:else}", i)) { i += "{:else}".length; branches.push({ cond: null, body: parseNodeList("if") }); continue; } break; } if (!src.startsWith("{/if}", i)) return fail("Expected `{/if}` to close `{#if}`"); i += "{/if}".length; return { type: "if", branches }; } function parseNodeList(mode) { const nodes2 = []; let text = ""; const flush = () => { if (text.length > 0) { nodes2.push({ type: "text", value: text }); text = ""; } }; for (;; ) { if (i >= src.length) { return mode === "root" ? fail("Unexpected end of view (missing `}`)") : fail("Unclosed block"); } const c = src[i]; if (c === "<") { const next = src[i + 1]; if (next === "/") { flush(); break; } if (src.startsWith("", i + 4); i = end === -1 ? src.length : end + 3; continue; } if (next !== undefined && (isNameStart(next) || next === "!")) { flush(); nodes2.push(parseTag()); continue; } text += c; i++; continue; } if (c === "{") { if (src.startsWith("{#each", i)) { flush(); nodes2.push(parseEach()); continue; } if (src.startsWith("{#if", i)) { flush(); nodes2.push(parseIf()); continue; } if (mode === "each" && (src.startsWith("{:empty}", i) || src.startsWith("{/each}", i))) { flush(); break; } if (mode === "if" && (src.startsWith("{:else", i) || src.startsWith("{/if}", i))) { flush(); break; } text += readInterpolation(); continue; } if (c === "}" && mode === "root") { flush(); break; } text += c; i++; } return nodes2; } const nodes = parseNodeList("root"); return { nodes, endPos: i }; } // packages/syntax/src/interpolation.ts function extractInterpolations(value) { const segments = []; let index = 0; while (index < value.length) { if (value[index] !== "{") { index++; continue; } const start = index++; let depth = 1; let quote = null; while (index < value.length && depth > 0) { const char = value[index]; if (quote) { if (char === "\\" && index + 1 < value.length) index += 2; else { if (char === quote) quote = null; index++; } continue; } if (char === '"' || char === "'" || char === "`") quote = char; else if (char === "{") depth++; else if (char === "}") depth--; index++; } if (depth === 0) { segments.push({ expression: value.slice(start + 1, index - 1).trim(), start, end: index }); } } return segments; } // packages/syntax/src/diagnostics.ts function stripAsciiControlAndSpace(value) { let result = ""; for (const character of value) { if (character.charCodeAt(0) > 32) result += character; } return result; } function maskJavaScriptTrivia(source) { let result = ""; let index = 0; let quote = null; let lineComment = false; let blockComment = false; while (index < source.length) { const char = source[index]; const next = source[index + 1]; if (lineComment) { if (char === ` `) { lineComment = false; result += ` `; } else result += " "; index++; continue; } if (blockComment) { if (char === "*" && next === "/") { result += " "; index += 2; blockComment = false; } else { result += char === ` ` ? ` ` : " "; index++; } continue; } if (quote) { if (char === "\\") { result += " "; index += Math.min(2, source.length - index); } else if (char === quote) { result += " "; index++; quote = null; } else { result += char === ` ` ? ` ` : " "; index++; } continue; } if (char === "/" && next === "/") { result += " "; index += 2; lineComment = true; continue; } if (char === "/" && next === "*") { result += " "; index += 2; blockComment = true; continue; } if (char === "'" || char === '"' || char === "`") { quote = char; result += " "; index++; continue; } result += char; index++; } return result; } function containsReadonlyPropMutation(body, propName, parameterNames) { const code = maskJavaScriptTrivia(body); const escaped = propName.replace(/[.*+?^${}()|[\]\\]/g, "\\$&"); const operator = String.raw`(?:\+\+|--|(?:\*\*|&&|\|\||\?\?|[+\-*/%&|^])?=(?!=|>))`; if (new RegExp(String.raw`\bprops\.${escaped}\s*${operator}`).test(code)) return true; if (parameterNames.has(propName)) return false; if (new RegExp(String.raw`\b(?:const|let|var)\s+${escaped}\b`).test(code)) return false; return new RegExp(String.raw`(?:^|[^\w$.])${escaped}\s*${operator}`, "m").test(code); } function positionAt(source, offset) { const safe = Math.max(0, Math.min(offset, source.length)); const before = source.slice(0, safe); const lines = before.split(/\r?\n/); return { offset: safe, line: lines.length, column: (lines.at(-1)?.length ?? 0) + 1 }; } function offsetFromMessage(message) { const match = /offset\s+(\d+)/i.exec(message); return match ? Number(match[1]) : undefined; } function classifyParseError(message) { if (/Expected 'page', 'component', or 'layout'/.test(message)) return WRN_DIAGNOSTIC_CODES.root; if (/Unknown (?:page|component|layout|ssr|client) member/.test(message)) { return WRN_DIAGNOSTIC_CODES.member; } if (/prop initializer|Expected eq/.test(message)) return WRN_DIAGNOSTIC_CODES.propInitializer; if (/State '.+' requires an initializer/.test(message)) { return WRN_DIAGNOSTIC_CODES.stateInitializer; } if (/Cannot watch undeclared state/.test(message)) return WRN_DIAGNOSTIC_CODES.watchUndeclared; return WRN_DIAGNOSTIC_CODES.parse; } function diagnosticFromError(source, error, options = {}) { const message = error instanceof Error ? error.message : String(error); const offset = error instanceof ParseError && error.offset !== undefined ? error.offset : offsetFromMessage(message); return { code: error instanceof ParseError ? error.code : classifyParseError(message), severity: "error", message, file: options.file, ...offset === undefined ? {} : { position: positionAt(source, offset) } }; } function walk(nodes, visit) { for (const node of nodes) { visit(node); if (node.type === "element") walk(node.children, visit); else if (node.type === "each") { walk(node.body, visit); walk(node.empty, visit); } else if (node.type === "if") { for (const branch of node.branches) walk(branch.body, visit); } } } function astDiagnostics(ast, options) { const diagnostics = []; const seen = new Map; for (const [kind, declarations] of [ ["prop", ast.props], ["state", ast.states], ["computed", ast.computed] ]) { for (const declaration of declarations) { const previous = seen.get(declaration.name); if (previous) { diagnostics.push({ code: WRN_DIAGNOSTIC_CODES.duplicateSymbol, severity: "error", message: `Duplicate symbol '${declaration.name}' (${previous} and ${kind}).`, hint: "Rename one declaration so every prop, state, and computed value is unique.", file: options.file }); } else { seen.set(declaration.name, kind); } } } if (ast.hydrate && !isHydrationStrategy(ast.hydrate)) { diagnostics.push({ code: WRN_DIAGNOSTIC_CODES.invalidHydration, severity: "error", message: `Unknown hydration strategy '${ast.hydrate}'.`, hint: "Use load, idle, visible, interaction, none, or media:.", file: options.file }); } if (ast.runtime && !isRuntimeTarget(ast.runtime)) { diagnostics.push({ code: WRN_DIAGNOSTIC_CODES.invalidRuntime, severity: "error", message: `Unknown runtime target '${ast.runtime}'.`, hint: "Use server, client, or universal.", file: options.file }); } let interactive = ast.states.length > 0 || ast.effects.length > 0 || ast.watches.length > 0; const urlAttributes = new Set([ "href", "src", "action", "formaction", "poster", "cite", "background", "xlink:href" ]); walk(ast.view, (node) => { if (node.type !== "element") return; if (node.attrs.some((attribute) => attribute.event)) interactive = true; const tag = node.tag.toLowerCase(); for (const attribute of node.attrs) { if (attribute.event && (attribute.name === "for" || attribute.name === "key")) { diagnostics.push({ code: "WRN-TEMPLATE-LOOP-DIRECTIVE", severity: "error", message: `@${attribute.name} is an event binding, not a loop directive.`, hint: attribute.name === "for" ? 'Use data-for="item in items".' : 'Use data-key="item.id" alongside data-for.', file: options.file }); } if (attribute.event || attribute.boolean || !urlAttributes.has(attribute.name.toLowerCase())) continue; if (attribute.value.includes("{")) continue; const value = stripAsciiControlAndSpace(attribute.value.trim()).toLowerCase(); if (/^(?:javascript|vbscript|file):/.test(value) || /^data:(?!image\/(?:png|gif|jpeg|webp|avif);)/.test(value)) { diagnostics.push({ code: "WRN-SEC-UNSAFE-URL", severity: "error", message: `Unsafe URL protocol in ${attribute.name} on <${node.tag}>.`, hint: "Use a relative URL, https:, mailto:, tel:, or a framework-validated URL helper.", file: options.file }); } } if (tag === "a") { const target = node.attrs.find((attribute) => attribute.name === "target")?.value; const rel = node.attrs.find((attribute) => attribute.name === "rel")?.value ?? ""; if (target === "_blank" && !/\bnoopener\b/i.test(rel)) { diagnostics.push({ code: "WRN-SEC-BLANK-REL", severity: "warning", message: "A target=_blank link should include rel=noopener.", hint: 'Add rel="noopener noreferrer".', file: options.file }); } } if (!options.accessibility) return; if (tag === "img") { if (!node.attrs.some((attribute) => attribute.name === "alt")) { diagnostics.push({ code: WRN_DIAGNOSTIC_CODES.accessibility, severity: "warning", message: "Image is missing an alt attribute.", hint: 'Add alt text, or alt="" for a decorative image.', file: options.file }); } const hasWidth = node.attrs.some((attribute) => attribute.name === "width"); const hasHeight = node.attrs.some((attribute) => attribute.name === "height"); if (!hasWidth || !hasHeight) { diagnostics.push({ code: "WRN-PERF-IMAGE-DIMENSIONS", severity: "warning", message: "Image width and height are required to prevent layout shifts.", hint: "Declare intrinsic width and height, or use @wrnexus/image.", file: options.file }); } } }); if (ast.runtime === "server" && interactive) { diagnostics.push({ code: WRN_DIAGNOSTIC_CODES.serverInteractive, severity: "error", message: "A server-only WRN root cannot contain client state, effects, watches, or event handlers.", hint: 'Use runtime = "universal" or remove interactive behavior.', file: options.file }); } const outputs = new Set(ast.outputs.map((output) => output.name)); for (const fn of ast.runtimeFunctions) { for (const call of fn.body.matchAll(/\boutput\.([A-Za-z_$][\w$]*)\s*\(/g)) { const outputName = call[1]; if (fn.runtime === "server") { diagnostics.push({ code: "WRN-OUTPUT-SERVER-CALL", severity: "error", message: `Server function '${fn.name}' cannot call output.${outputName}().`, hint: "Return a typed value to the browser and call the output from a client function.", file: options.file }); } else if (!outputs.has(outputName)) { diagnostics.push({ code: "WRN-OUTPUT-UNKNOWN", severity: "error", message: `Unknown output '${outputName}' called from '${fn.name}'.`, hint: `Declare ${outputName}(payload) inside outputs { ... }.`, file: options.file }); } } if (fn.runtime === "client" && /\b(?:process|Bun|Deno|__dirname|require)\b/.test(fn.body)) { diagnostics.push({ code: "WRN-CLIENT-SERVER-API", severity: "error", message: `Client function '${fn.name}' references a server-only API.`, hint: "Move that operation into a server function and call it through server.name(...).", file: options.file }); } if (fn.runtime === "server" && /\b(?:window|document|localStorage|sessionStorage|navigator)\b/.test(fn.body)) { diagnostics.push({ code: "WRN-SERVER-BROWSER-API", severity: "error", message: `Server function '${fn.name}' references a browser-only API.`, hint: "Move that code into a client function.", file: options.file }); } if (fn.runtime !== "server" && /\b(?:eval\s*\(|new\s+Function\s*\(|document\.write\s*\(|\.innerHTML\s*=|\.outerHTML\s*=|insertAdjacentHTML\s*\()/.test(fn.body)) { diagnostics.push({ code: "WRN-SEC-DOM-SINK", severity: "error", message: `Client function '${fn.name}' uses an unsafe dynamic-code or HTML sink.`, hint: "Use compiled templates, textContent, typed outputs, or a reviewed TrustedHTML sanitizer.", file: options.file }); } if (fn.runtime !== "server" && /\b(?:setTimeout|setInterval)\s*\(\s*["'`]/.test(fn.body)) { diagnostics.push({ code: "WRN-SEC-STRING-TIMER", severity: "error", message: `Client function '${fn.name}' passes a string to a timer.`, hint: "Pass a function instead of executable text.", file: options.file }); } const parameterNames = new Set(fn.parameters.map((parameter) => parameter.name)); for (const prop of ast.props) { if (containsReadonlyPropMutation(fn.body, prop.name, parameterNames)) { diagnostics.push({ code: "WRN-PROP-READONLY", severity: "error", message: `Function '${fn.name}' attempts to mutate readonly prop '${prop.name}'.`, hint: "Copy the prop into state before mutating it.", file: options.file }); } } } for (const state of ast.states) { if (state.runtime === "shared" && /^(?:new\s+(?:Map|Set|WeakMap|WeakSet)|(?:async\s+)?function\b|.*=>)/.test(state.expr.trim())) { diagnostics.push({ code: "WRN-STATE-NON-SERIALIZABLE", severity: "error", message: `Shared state '${state.name}' is not safely serializable.`, hint: "Use JSON-compatible data or move the value into client/server state.", file: options.file }); } if (state.runtime !== "server" && /\b(?:process\.env|Bun\.env|Deno\.env|ctx\.env|import\.meta\.env)\b/.test(state.expr)) { diagnostics.push({ code: "WRN-SEC-SERVER-SECRET-SOURCE", severity: "error", message: `Browser-visible state '${state.name}' reads from a server environment source.`, hint: "Move environment-backed values into server state and return only an explicitly safe result.", file: options.file }); } } if (ast.persist) { const stateNames = new Set(ast.states.filter((state) => state.runtime !== "server").map((state) => state.name)); for (const name of ast.persist.include) if (!stateNames.has(name)) diagnostics.push({ code: "WRN-PERSIST-UNKNOWN-FIELD", severity: "error", message: `Persist include references unknown or server-only state '${name}'.`, hint: "Persist only declared shared/client state fields.", file: options.file }); for (const name of ast.persist.include) if (/token|password|secret|otp|api.?key/i.test(name)) diagnostics.push({ code: "WRN-PERSIST-SENSITIVE", severity: "error", message: `Sensitive field '${name}' cannot be persisted.`, hint: "Remove secrets, tokens, passwords, OTPs, and API keys from persistence.", file: options.file }); } return diagnostics; } function diagnose(source, options = {}) { try { return astDiagnostics(parse(source), options); } catch (error) { return [diagnosticFromError(source, error, options)]; } } function isHydrationStrategy(value) { return WRN_HYDRATION_STRATEGIES.includes(value) || value.startsWith("media:") && value.length > "media:".length; } function isRuntimeTarget(value) { return WRN_RUNTIME_TARGETS.includes(value); } // packages/syntax/src/versioning.ts var WRN_SYNTAX_FEATURES = Object.freeze({ "typed-declarations": true, layouts: true, "server-client-blocks": true, effects: true, watch: true, lifecycle: true, "embedded-api": true, realtime: true, "runtime-markers": true }); // packages/typecheck/src/index.ts var import_node_fs2 = require("node:fs"); var import_node_path2 = require("node:path"); var import_typescript = __toESM(require_typescript(), 1); // packages/typecheck/src/contracts.ts function safe(name) { return /^[A-Za-z_$][\w$]*$/.test(name) ? name : JSON.stringify(name); } function componentContract(ast) { const typeSource = ast.types.map((entry) => entry.trim()).filter(Boolean).join(` `); const props = ast.props.map((prop) => ` readonly ${safe(prop.name)}${prop.required ? "" : "?"}: ${prop.valueType ?? "unknown"};`).join(` `); const outputs = ast.outputs.map((output) => ` ${safe(output.name)}(${output.payload ? `${output.payload.name}${output.payload.optional ? "?" : ""}: ${output.payload.valueType}` : ""}): void;`).join(` `); const callable = ast.runtimeFunctions.map((fn) => ` ${safe(fn.name)}(${fn.parameters.map((param) => `${param.name}${param.optional ? "?" : ""}: ${param.valueType ?? "unknown"}`).join(", ")}): ${fn.returnType ?? (fn.async ? "Promise" : "unknown")};`).join(` `); return `${typeSource ? `${typeSource} ` : ""}export interface ${ast.name}Props { ${props} } export interface ${ast.name}Outputs { ${outputs} } export interface ${ast.name}Functions { ${callable} } export interface ${ast.name}Contract { props: ${ast.name}Props; outputs: ${ast.name}Outputs; functions: ${ast.name}Functions; } `; } function storeContract(ast) { const state = ast.states.filter((entry) => entry.runtime !== "server").map((entry) => ` readonly ${safe(entry.name)}: ${entry.valueType ?? "unknown"};`).join(` `); const computed = ast.computed.map((entry) => ` readonly ${safe(entry.name)}: ${entry.valueType ?? "unknown"};`).join(` `); const actions = ast.runtimeFunctions.filter((fn) => fn.runtime !== "server").map((fn) => ` ${safe(fn.name)}(${fn.parameters.map((param) => `${param.name}${param.optional ? "?" : ""}: ${param.valueType ?? "unknown"}`).join(", ")}): ${fn.returnType ?? (fn.async ? "Promise" : "unknown")};`).join(` `); return `export interface ${ast.name}State { ${state} } export interface ${ast.name}Computed { ${computed} } export interface ${ast.name}Actions { ${actions} } export interface ${ast.name}Instance extends ${ast.name}State, ${ast.name}Computed, ${ast.name}Actions { reset(): void; snapshot(): Readonly<${ast.name}State>; } `; } // packages/typecheck/src/project.ts var import_node_fs = require("node:fs"); var import_node_path = require("node:path"); function walk2(dir, out) { if (!import_node_fs.existsSync(dir)) return; for (const name of import_node_fs.readdirSync(dir)) { const path = import_node_path.join(dir, name); const stat = import_node_fs.statSync(path); if (stat.isDirectory()) walk2(path, out); else if (/\.(?:ts|d\.ts)$/.test(name)) out.push(path); } } function findAppRoot(filePath) { let current = import_node_path.resolve(import_node_path.dirname(filePath)); while (true) { if (import_node_fs.existsSync(import_node_path.join(current, "app"))) return current; const parent = import_node_path.dirname(current); if (parent === current) return import_node_path.resolve(import_node_path.dirname(filePath)); current = parent; } } function loadApplicationTypes(appRoot) { const typesRoot = import_node_path.join(appRoot, "app", "types"); const paths = []; walk2(typesRoot, paths); const files = new Map(paths.map((path) => [path, import_node_fs.readFileSync(path, "utf8")])); const globalFile = import_node_path.join(typesRoot, "global.d.ts"); return { root: typesRoot, ...files.has(globalFile) ? { globalFile } : {}, files }; } // packages/typecheck/src/index.ts function resolveImportedWrn(source, filePath, appRoot) { if (source.startsWith("@/")) return import_node_path2.resolve(appRoot, "app", source.slice(2)); if (source.startsWith(".")) return import_node_path2.resolve(import_node_path2.dirname(filePath), source); return null; } function workspacePackagePaths(appRoot) { let current = import_node_path2.resolve(appRoot); while (true) { const manifestPath = import_node_path2.join(current, "package.json"); if (import_node_fs2.existsSync(manifestPath)) { try { const manifest = JSON.parse(import_node_fs2.readFileSync(manifestPath, "utf8")); if (Array.isArray(manifest.workspaces) && import_node_fs2.existsSync(import_node_path2.join(current, "packages"))) { const paths = {}; for (const entry of import_node_fs2.readdirSync(import_node_path2.join(current, "packages"), { withFileTypes: true })) { if (!entry.isDirectory()) continue; const packageRoot = import_node_path2.join(current, "packages", entry.name); const packageManifestPath = import_node_path2.join(packageRoot, "package.json"); if (!import_node_fs2.existsSync(packageManifestPath)) continue; const packageManifest = JSON.parse(import_node_fs2.readFileSync(packageManifestPath, "utf8")); if (typeof packageManifest.name !== "string") continue; const main = typeof packageManifest.main === "string" ? packageManifest.main : "src/index.ts"; paths[packageManifest.name] = [import_node_path2.join(packageRoot, main)]; paths[`${packageManifest.name}/*`] = [import_node_path2.join(packageRoot, "src", "*.ts")]; } return paths; } } catch {} } const parent = import_node_path2.dirname(current); if (parent === current) return {}; current = parent; } } function importedWrnDeclarations(ast, filePath, appRoot) { const declarations = []; for (const entry of ast.structuredImports) { if (entry.typeOnly || !entry.source.endsWith(".wrn")) continue; const importedPath = resolveImportedWrn(entry.source, filePath, appRoot); if (!importedPath || !import_node_fs2.existsSync(importedPath)) continue; try { const importedAst = parse(import_node_fs2.readFileSync(importedPath, "utf8")); const isStore = importedAst.kind === "global-store" || importedAst.kind === "page-store"; declarations.push(isStore ? storeContract(importedAst) : componentContract(importedAst)); const typeName = isStore ? `${importedAst.name}Instance` : `${importedAst.name}Contract`; if (entry.defaultImport) declarations.push(`declare const ${entry.defaultImport}: ${typeName};`); if (entry.namespaceImport) declarations.push(`declare const ${entry.namespaceImport}: Record;`); for (const item of entry.namedImports) { declarations.push(`declare const ${item.local}: ${item.imported === importedAst.name ? typeName : "unknown"};`); } } catch {} } return declarations.join(` `); } function lineAt(source, needle, occurrence = 0) { let index = -1; let from = 0; for (let count = 0;count <= occurrence; count++) { index = source.indexOf(needle, from); if (index < 0) return { line: 1, column: 1 }; from = index + Math.max(needle.length, 1); } const before = source.slice(0, index); const parts = before.split(/\r?\n/); return { line: parts.length, column: (parts.at(-1)?.length ?? 0) + 1 }; } function runtimeNamespace(runtime) { return `__wrn_${runtime}`; } function functionDeclaration(fn) { const params = fn.parameters.map((param) => `${param.name}${param.optional ? "?" : ""}${param.valueType ? `: ${param.valueType}` : param.name === "event" ? ": Event & { target: HTMLElement }" : ": any"}${param.default ? ` = ${param.default}` : ""}`).join(", "); return `export ${fn.async ? "async " : ""}function ${fn.name}(${params})${fn.returnType ? `: ${fn.returnType}` : ""} {${fn.body}}`; } function retainedImports(ast) { return ast.structuredImports.filter((entry) => { if (entry.source.endsWith(".wrn")) return false; if (!entry.typeOnly && entry.source === "@wrnexus/ui") return false; if (entry.typeOnly) return true; return !entry.source.startsWith("@/components/") && !entry.source.startsWith("@/layouts/") && !entry.source.startsWith("@/stores/"); }).map((entry) => entry.raw).join(` `); } var RESERVED_BINDING_NAMES = new Set([ "await", "break", "case", "catch", "class", "const", "continue", "debugger", "default", "delete", "do", "else", "enum", "export", "extends", "false", "finally", "for", "function", "if", "import", "in", "instanceof", "let", "new", "null", "return", "static", "super", "switch", "this", "throw", "true", "try", "typeof", "var", "void", "while", "with", "yield" ]); function safeBindingName(name) { return /^[A-Za-z_$][\w$]*$/.test(name) && !RESERVED_BINDING_NAMES.has(name); } function safeViewExpression(expression, reservedProps) { if (!reservedProps.size) return expression; const scanner = import_typescript.default.createScanner(import_typescript.default.ScriptTarget.Latest, false, import_typescript.default.LanguageVariant.Standard, expression); let result = ""; let copied = 0; for (let token = scanner.scan();token !== import_typescript.default.SyntaxKind.EndOfFileToken; token = scanner.scan()) { const start = scanner.getTokenPos(); const end = scanner.getTextPos(); const text = scanner.getTokenText(); if (!reservedProps.has(text)) continue; const previous = expression.slice(0, start).trimEnd().at(-1); const following = expression.slice(end).trimStart().at(0); if (previous === "." || following === ":") continue; result += expression.slice(copied, start) + `props.${text}`; copied = end; } return result + expression.slice(copied); } function virtualTypeScriptModule(source, filePath = "component.wrn", appRoot = findAppRoot(filePath)) { const ast = parse(source); const chunks = []; const mappings = []; let virtualLine = 1; const append = (code, sourceNeedle, occurrence = 0) => { if (!code) return; const lineCount = code.split(/\r?\n/).length; if (sourceNeedle) { const sourcePosition = lineAt(source, sourceNeedle, occurrence); mappings.push({ virtualStartLine: virtualLine, virtualEndLine: virtualLine + lineCount - 1, sourceStartLine: sourcePosition.line, sourceStartColumn: sourcePosition.column }); } chunks.push(code); virtualLine += lineCount; }; append(retainedImports(ast), ast.imports[0]); append(ast.types.join(` `), ast.types[0]?.trim()); append('declare const ctx: import("@wrnexus/core").Context;'); for (const prop of ast.props) { if (!safeBindingName(prop.name)) continue; append(`declare const ${prop.name}: Readonly<${prop.valueType ?? "unknown"}>;`, prop.name); } for (const state of ast.states) { append(`let ${state.name}${state.valueType ? `: ${state.valueType}` : ""} = (${state.expr});`, state.name); } for (const computed of ast.computed) { append(`const ${computed.name}${computed.valueType ? `: ${computed.valueType}` : ""} = (${computed.expr});`, computed.name); } const outputType = ast.outputs.map((output) => `${output.name}: (${output.payload ? `${output.payload.name}${output.payload.optional ? "?" : ""}: ${output.payload.valueType}` : ""}) => void`).join("; "); const serverFunctions = ast.runtimeFunctions.filter((fn) => fn.runtime === "server"); const serverType = serverFunctions.map((fn) => `${fn.name}: (${fn.parameters.map((param) => `${param.name}${param.optional ? "?" : ""}: ${param.valueType ?? "unknown"}`).join(", ")}) => ${fn.returnType ?? (fn.async ? "Promise" : "unknown")}`).join("; "); const apiType = ast.dataApis.map((block) => { const fields = block.sections ? [...block.sections.parameters, ...block.sections.body] : []; const inputType = fields.length ? `{ ${fields.map((f) => `${f.name}${f.optional ? "?" : ""}: ${f.type}`).join("; ")} }` : "Record"; return `${block.name}: (input${fields.length ? "" : "?"}: ${inputType}) => Promise`; }).join("; "); append(`declare const output: { [name: string]: (...args: any[]) => void; ${outputType} };`); for (const output of ast.outputs) append(`declare const ${output.name}: (${output.payload ? `${output.payload.name}${output.payload.optional ? "?" : ""}: ${output.payload.valueType}` : ""}) => void;`); for (const match of source.matchAll(/@event\s+([A-Za-z_$][\w$]*)\s*=\s*function/g)) append(`declare const ${match[1]}: ((...args: unknown[]) => void) | undefined;`); append(`declare const server: { ${serverType} };`); if (ast.dataApis.length) append(`declare const api: { ${apiType} };`); append(`declare const props: Readonly<${ast.name}Props>;`); append("declare const refs: Record;"); append("declare const toast: ((message: string, options?: Record) => unknown) & { success(message: string, options?: Record): unknown; error(message: string, options?: Record): unknown; danger(message: string, options?: Record): unknown; warning(message: string, options?: Record): unknown; info(message: string, options?: Record): unknown; dismiss(id: string | number): void; clear(): void };"); append("declare function useFetch(path: string, method?: string | { method?: string; query?: unknown; params?: unknown; body?: unknown; data?: unknown }, input?: unknown): Promise;"); append(ast.kind === "global-store" || ast.kind === "page-store" ? storeContract(ast) : componentContract(ast)); append(importedWrnDeclarations(ast, filePath, appRoot)); const sharedNames = new Set(ast.runtimeFunctions.filter((fn) => fn.runtime === "shared").map((fn) => fn.name)); for (const runtime of ["shared", "client", "server"]) { const functions = ast.runtimeFunctions.filter((fn) => fn.runtime === runtime); if (!functions.length) continue; const localNames = new Set(functions.map((fn) => fn.name)); const sharedAliases = runtime !== "shared" ? [...sharedNames].filter((name) => !localNames.has(name)).map((name) => `const ${name} = ${runtimeNamespace("shared")}.${name};`).join(` `) : ""; append(`namespace ${runtimeNamespace(runtime)} { ${sharedAliases}`); for (const fn of functions) append(functionDeclaration(fn), fn.source); append("}"); } const viewFunctions = new Map; for (const fn of ast.runtimeFunctions) { if (fn.runtime !== "server") viewFunctions.set(fn.name, fn.runtime); } for (const [name, runtime] of viewFunctions) { append(`declare const ${name}: typeof ${runtimeNamespace(runtime)}.${name};`); } let bindingIndex = 0; const reservedProps = new Set(ast.props.map((prop) => prop.name).filter((name) => !safeBindingName(name))); const appendViewBindings = (nodes, locals) => { for (const node of nodes) { if (node.type === "element") { for (const attr of node.attrs) { const expressions = attr.event ? [attr.value] : extractInterpolations(attr.value).map((segment) => segment.expression); for (const expression of expressions) { if (!expression.trim()) continue; const declarations = [ ...[...locals].map((name) => `declare const ${name}: any;`), ...attr.event ? [ "declare const payload: any;", "declare const event: Event & { target: HTMLElement };" ] : [] ].join(" "); append(`namespace __wrn_view_${bindingIndex++} { ${declarations} void (${safeViewExpression(expression, reservedProps)}); }`, attr.value); } } appendViewBindings(node.children, locals); } else if (node.type === "if") { for (const branch of node.branches) { if (branch.cond) append(`namespace __wrn_view_${bindingIndex++} { void (${safeViewExpression(branch.cond, reservedProps)}); }`, branch.cond); appendViewBindings(branch.body, locals); } } else if (node.type === "each") { append(`namespace __wrn_view_${bindingIndex++} { void (${safeViewExpression(node.list, reservedProps)}); }`, node.list); const nested = new Set(locals); nested.add(node.item); if (node.index) nested.add(node.index); appendViewBindings(node.body, nested); appendViewBindings(node.empty, locals); } } }; appendViewBindings(ast.view, new Set); return { ast, fileName: filePath.replace(/\.wrn$/i, ".wrn.ts"), code: chunks.join(` `) + ` `, mappings }; } function shapeFromAst(ast) { return { name: ast.name, props: ast.props.map((prop) => ({ name: prop.name, type: prop.valueType ?? "unknown", required: prop.required, options: /^\s*(?:"[^"]+"\s*\|\s*)+"[^"]+"\s*$/.test(prop.valueType ?? "") ? (prop.valueType ?? "").split("|").map((part) => part.trim().replace(/^"|"$/g, "")) : undefined })), outputs: ast.outputs.map((output) => ({ name: output.name, payloadType: output.payload?.valueType })) }; } function loadUiShapes(appRoot) { const candidates = [ import_node_path2.join(appRoot, "node_modules", "@wrnexus", "ui", "component-reference.json"), import_node_path2.resolve(process.cwd(), "packages", "ui", "component-reference.json") ]; for (const candidate of candidates) { if (!import_node_fs2.existsSync(candidate)) continue; try { const parsed = JSON.parse(import_node_fs2.readFileSync(candidate, "utf8")); return new Map((parsed.components ?? []).map((component) => [ component.name, { name: component.name, props: (component.props ?? []).map((prop) => ({ name: prop.name, type: prop.type ?? "unknown", required: Boolean(prop.required), options: prop.options })), outputs: component.outputs ?? [] } ])); } catch {} } return new Map; } function importedComponentShapes(ast, filePath, appRoot) { const shapes = new Map; const ui = loadUiShapes(appRoot); for (const entry of ast.structuredImports) { if (entry.typeOnly) continue; if (entry.source === "@wrnexus/ui") { for (const item of entry.namedImports) { const shape = ui.get(item.imported); if (shape) shapes.set(item.local, shape); } continue; } if (!entry.source.endsWith(".wrn")) continue; const importedPath = resolveImportedWrn(entry.source, filePath, appRoot); if (!importedPath || !import_node_fs2.existsSync(importedPath)) continue; try { const importedAst = parse(import_node_fs2.readFileSync(importedPath, "utf8")); if (importedAst.kind !== "component") continue; const shape = shapeFromAst(importedAst); if (entry.defaultImport) shapes.set(entry.defaultImport, shape); for (const item of entry.namedImports) if (item.imported === importedAst.name) shapes.set(item.local, shape); } catch {} } return shapes; } function walkView(nodes, visit) { for (const node of nodes) { if (node.type === "element") { visit(node); walkView(node.children, visit); } else if (node.type === "each") { walkView(node.body, visit); walkView(node.empty, visit); } else if (node.type === "if") { for (const branch of node.branches) walkView(branch.body, visit); } } } function componentUsageDiagnostics(source, ast, filePath, appRoot) { const shapes = importedComponentShapes(ast, filePath, appRoot); const diagnostics = []; walkView(ast.view, (node) => { const shape = shapes.get(node.tag); if (!shape) return; const attributes = new Map(node.attrs.filter((attr) => !attr.event).map((attr) => [attr.name.startsWith("bind:") ? attr.name.slice(5) : attr.name, attr])); const outputNames = new Set(shape.outputs.map((output) => output.name)); const position = lineAt(source, `<${node.tag}`); for (const prop of shape.props) { if (prop.required && !attributes.has(prop.name)) { diagnostics.push({ code: "WRN-COMPONENT-MISSING-PROP", category: "error", message: `<${node.tag}> is missing required prop '${prop.name}'.`, file: filePath, line: position.line, column: position.column, length: node.tag.length + 1, expected: prop.type, hint: `Add ${prop.name} with a value assignable to ${prop.type}.` }); } } const known = new Map(shape.props.map((prop) => [prop.name, prop])); for (const attr of node.attrs) { if (attr.event) { if (!outputNames.has(attr.name)) { diagnostics.push({ code: "WRN-OUTPUT-UNKNOWN-HANDLER", category: "error", message: `<${node.tag}> does not declare output '${attr.name}'.`, file: filePath, line: position.line, column: position.column, length: attr.name.length, hint: "Use an output declared by the component contract." }); } continue; } if (/^(?:class|id|style|slot|data-|aria-)/.test(attr.name) || attr.name === "attrs") continue; const propName = attr.name.startsWith("bind:") ? attr.name.slice(5) : attr.name; const prop = known.get(propName); if (!prop) { diagnostics.push({ code: "WRN-COMPONENT-UNKNOWN-PROP", category: "error", message: `<${node.tag}> has unknown prop '${attr.name}'.`, file: filePath, line: position.line, column: position.column, length: attr.name.length, hint: "Remove the prop or add it to the component declaration." }); continue; } if (attr.value.startsWith("{") && attr.value.endsWith("}")) continue; const received = attr.boolean ? "boolean" : inferredRuntimeType(JSON.stringify(attr.value)); const expected = runtimeTypeOf(prop.type); const compatibleLiteral = expected === "boolean" && /^(?:true|false|1|0|yes|no|on|off)?$/i.test(attr.value) || expected === "number" && attr.value.trim() !== "" && Number.isFinite(Number(attr.value)); if (expected !== "unknown" && received !== "unknown" && expected !== received && !compatibleLiteral) { diagnostics.push({ code: "WRN-COMPONENT-PROP-TYPE", category: "error", message: `Prop '${attr.name}' on <${node.tag}> expects ${prop.type}, received ${received}.`, file: filePath, line: position.line, column: position.column, length: attr.name.length, expected: prop.type, received }); } if (prop.options?.length && !prop.options.includes(attr.value)) { diagnostics.push({ code: "WRN-COMPONENT-PROP-LITERAL", category: "error", message: `Prop '${attr.name}' on <${node.tag}> must be one of ${prop.options.map((value) => JSON.stringify(value)).join(", ")}.`, file: filePath, line: position.line, column: position.column, length: attr.name.length, expected: prop.type, received: JSON.stringify(attr.value) }); } } }); return diagnostics; } function category(value) { return value === import_typescript.default.DiagnosticCategory.Error ? "error" : value === import_typescript.default.DiagnosticCategory.Warning ? "warning" : "info"; } function hostWithVirtualFiles(files, options, standardLibraryDirectory) { const host = import_typescript.default.createCompilerHost(options, true); if (standardLibraryDirectory) { host.getDefaultLibFileName = (compilerOptions) => import_node_path2.join(standardLibraryDirectory, import_typescript.default.getDefaultLibFileName(compilerOptions)); host.getDefaultLibLocation = () => standardLibraryDirectory; } const originalGet = host.getSourceFile.bind(host); host.fileExists = (fileName) => files.has(import_node_path2.normalize(fileName)) || import_typescript.default.sys.fileExists(fileName); host.readFile = (fileName) => files.get(import_node_path2.normalize(fileName)) ?? import_typescript.default.sys.readFile(fileName); host.getSourceFile = (fileName, languageVersion, onError, shouldCreateNewSourceFile) => { const text = files.get(import_node_path2.normalize(fileName)); return text === undefined ? originalGet(fileName, languageVersion, onError, shouldCreateNewSourceFile) : import_typescript.default.createSourceFile(fileName, text, languageVersion, true, import_typescript.default.ScriptKind.TS); }; return host; } function resolveStandardLibraryDirectory(appRoot, options) { const candidates = [ import_node_path2.dirname(import_typescript.default.getDefaultLibFilePath(options)), import_node_path2.join(appRoot, "node_modules", "typescript", "lib"), import_node_path2.join(process.cwd(), "node_modules", "typescript", "lib") ]; for (const candidate of candidates) { if ((options.lib ?? []).every((name) => import_typescript.default.sys.fileExists(import_node_path2.join(candidate, name)))) { return candidate; } } return null; } function mappedPosition(virtual, line, column) { const mapping = virtual.mappings.find((entry) => line >= entry.virtualStartLine && line <= entry.virtualEndLine); if (!mapping) return null; const offset = line - mapping.virtualStartLine; return { line: mapping.sourceStartLine + offset, column: offset === 0 ? mapping.sourceStartColumn + Math.max(column - 1, 0) : column }; } function runtimeDiagnostics(source, ast, filePath) { const diagnostics = []; const duplicateKeys = new Map; for (const fn of ast.runtimeFunctions) { const key = `${fn.runtime}:${fn.name}`; const previous = duplicateKeys.get(key); if (previous) { const position2 = lineAt(source, fn.source); const related = lineAt(source, previous.source); diagnostics.push({ code: "WRN-FUNCTION-DUPLICATE", category: "error", message: `Duplicate ${fn.runtime} implementation for '${fn.name}'.`, file: filePath, line: position2.line, column: position2.column, length: fn.name.length, hint: "Keep only one implementation for each function name and runtime.", related: { file: filePath, line: related.line, column: related.column, message: "First implementation is here." } }); } else duplicateKeys.set(key, fn); const position = lineAt(source, fn.source); const parameterNames = new Set(fn.parameters.map((parameter) => parameter.name)); for (const prop of ast.props) { if (containsReadonlyPropMutation(fn.body, prop.name, parameterNames)) { diagnostics.push({ code: "WRN-PROP-READONLY", category: "error", message: `Function '${fn.name}' attempts to mutate readonly prop '${prop.name}'.`, file: filePath, line: position.line, column: position.column, length: fn.name.length, hint: "Copy the prop into state or call a component output instead." }); } } if (fn.runtime === "server" && /\boutput\s*\./.test(fn.body)) { diagnostics.push({ code: "WRN-OUTPUT-SERVER-CALL", category: "error", message: `Server function '${fn.name}' cannot call a component output.`, file: filePath, line: position.line, column: position.column, length: fn.name.length, hint: "Return a typed value to the client function and call output.name(payload) there." }); } if (fn.runtime === "client" && /\b(?:Bun|process|Deno|ctx\.(?:db|request|req))\b/.test(fn.body)) { diagnostics.push({ code: "WRN-CLIENT-SERVER-API", category: "error", message: `Client function '${fn.name}' references a server-only API.`, file: filePath, line: position.line, column: position.column, length: fn.name.length, hint: "Move server work to a server function and call it through server.name(...)." }); } if (fn.runtime === "server" && /\b(?:window|document|localStorage|sessionStorage|navigator)\b/.test(fn.body)) { diagnostics.push({ code: "WRN-SERVER-BROWSER-API", category: "error", message: `Server function '${fn.name}' references a browser-only API.`, file: filePath, line: position.line, column: position.column, length: fn.name.length, hint: "Move browser work to a client function." }); } } return diagnostics; } function checkWrnSource(source, options = {}) { const filePath = import_node_path2.resolve(options.filePath ?? "component.wrn"); const appRoot = options.appRoot ?? findAppRoot(filePath); let virtual; try { virtual = virtualTypeScriptModule(source, filePath, appRoot); } catch (error) { return [ { code: "WRN-TYPE-PARSE", category: "error", message: error instanceof Error ? error.message : String(error), file: filePath, line: 1, column: 1, length: 1 } ]; } const appTypes = loadApplicationTypes(appRoot); const files = new Map; files.set(import_node_path2.normalize(virtual.fileName), virtual.code); for (const [name, text] of appTypes.files) files.set(import_node_path2.normalize(name), text); const compilerOptions = { target: import_typescript.default.ScriptTarget.ESNext, module: import_typescript.default.ModuleKind.ESNext, moduleResolution: import_typescript.default.ModuleResolutionKind.Bundler, strict: options.strict ?? true, noImplicitAny: options.noImplicitAny ?? true, strictNullChecks: options.strictNullChecks ?? true, skipLibCheck: true, allowImportingTsExtensions: true, allowArbitraryExtensions: true, noEmit: true, baseUrl: appRoot, paths: { "@/*": ["app/*"], ...workspacePackagePaths(appRoot) }, lib: ["lib.esnext.d.ts", "lib.dom.d.ts", "lib.dom.iterable.d.ts"] }; const rootNames = [virtual.fileName, ...appTypes.files.keys()]; const standardLibraryDirectory = resolveStandardLibraryDirectory(appRoot, compilerOptions); const tsDiagnostics = []; if (standardLibraryDirectory) { const program = import_typescript.default.createProgram(rootNames, compilerOptions, hostWithVirtualFiles(files, compilerOptions, standardLibraryDirectory)); for (const diagnostic of import_typescript.default.getPreEmitDiagnostics(program)) { const file = diagnostic.file; if (!file) continue; const normalizedFile = import_node_path2.normalize(file.fileName); const isVirtual = normalizedFile === import_node_path2.normalize(virtual.fileName); const isApplicationType = files.has(normalizedFile); if (!isVirtual && !isApplicationType) continue; const start = diagnostic.start ?? 0; const virtualPosition = file.getLineAndCharacterOfPosition(start); const sourcePosition = isVirtual ? mappedPosition(virtual, virtualPosition.line + 1, virtualPosition.character + 1) : { line: virtualPosition.line + 1, column: virtualPosition.character + 1 }; if (!sourcePosition) continue; tsDiagnostics.push({ code: `WRN-TYPE-${diagnostic.code}`, category: category(diagnostic.category), message: import_typescript.default.flattenDiagnosticMessageText(diagnostic.messageText, ` `), file: isVirtual ? filePath : file.fileName, line: sourcePosition.line, column: sourcePosition.column, length: diagnostic.length ?? 1, hint: "Fix the TypeScript contract or expression in the related .wrn declaration." }); } } return [ ...options.checkRuntimeBoundaries === false ? [] : runtimeDiagnostics(source, virtual.ast, filePath), ...componentUsageDiagnostics(source, virtual.ast, filePath, appRoot), ...tsDiagnostics ]; } // packages/language-server/src/workspace.ts var import_node_fs3 = require("node:fs"); var import_node_path3 = require("node:path"); var SKIPPED_DIRECTORIES = new Set([ ".git", ".wrnexus", ".wrnfw", "build", "coverage", "dist", "node_modules", "out" ]); var MAX_INDEX_FILES = 5000; var MAX_SOURCE_BYTES = 1048576; var INDEX_TTL_MS = 5 * 60000; var MAX_CACHED_ROOTS = 8; var workspaceIndexCache = new Map; function walk3(root, test) { if (!import_node_fs3.existsSync(root)) return []; const files = []; const pending = [root]; while (pending.length > 0 && files.length < MAX_INDEX_FILES) { const directory = pending.pop(); let entries; try { entries = import_node_fs3.readdirSync(directory, { withFileTypes: true }); } catch { continue; } for (const entry of entries) { if (files.length >= MAX_INDEX_FILES) break; const file = import_node_path3.join(directory, entry.name); if (entry.isDirectory()) { if (!SKIPPED_DIRECTORIES.has(entry.name)) pending.push(file); } else if (entry.isFile() && test(file)) { try { if (import_node_fs3.statSync(file).size <= MAX_SOURCE_BYTES) files.push(file); } catch {} } } } return files; } function flatten(value, prefix = "") { if (!value || typeof value !== "object" || Array.isArray(value)) return prefix ? [prefix] : []; return Object.entries(value).flatMap(([key, child]) => flatten(child, prefix ? `${prefix}.${key}` : key)); } function routeFor(root, file) { let value = import_node_path3.relative(import_node_path3.join(root, "app", "pages"), file).replace(/\\/g, "/").replace(/\.wrn$/, ""); value = value.replace(/(?:^|\/)index$/, "").replace(/\[\.\.\.([^\]]+)\]/g, "*$1").replace(/\[([^\]]+)\]/g, ":$1"); return `/${value}`.replace(/\/$/, "") || "/"; } function buildWorkspaceCompletionItems(root) { const app = import_node_path3.join(root, "app"); const items = []; for (const file of walk3(import_node_path3.join(app, "components"), (path) => import_node_path3.extname(path) === ".wrn")) { try { const source = import_node_fs3.readFileSync(file, "utf8"); const ast = parse(source); const slots = [...source.matchAll(/ match[1] ?? "default"); items.push({ label: ast.name, kind: 7, detail: `Component · ${import_node_path3.relative(root, file)}`, insertText: `<${ast.name} />`, data: { file, props: ast.props, outputs: ast.outputs, slots } }); for (const prop of ast.props) items.push({ label: prop.name, kind: 10, detail: `${ast.name} prop · ${prop.valueType}` }); for (const output of ast.outputs) items.push({ label: `@${output.name}`, kind: 10, detail: `${ast.name} event` }); for (const slot of slots) items.push({ label: `slot:${slot}`, kind: 10, detail: `${ast.name} slot` }); } catch {} } for (const file of walk3(import_node_path3.join(app, "pages"), (path) => import_node_path3.extname(path) === ".wrn")) { const route = routeFor(root, file); items.push({ label: route, kind: 12, detail: `Application route · ${import_node_path3.relative(root, file)}`, data: { file } }); } for (const file of walk3(import_node_path3.join(app, "locales"), (path) => import_node_path3.extname(path) === ".json")) { try { for (const key of flatten(JSON.parse(import_node_fs3.readFileSync(file, "utf8")))) items.push({ label: key, kind: 12, detail: `Translation key · ${import_node_path3.basename(file, ".json")}` }); } catch {} } const sourceFiles = walk3(app, (path) => /\.(?:ts|js|wrn)$/.test(path)); for (const file of sourceFiles) { const source = import_node_fs3.readFileSync(file, "utf8"); for (const match of source.matchAll(/\b(?:schema|model)\s+([A-Za-z_$][\w$]*)|\bexport\s+const\s+([A-Za-z_$][\w$]*Schema)\b/g)) { const name = match[1] ?? match[2]; if (name) items.push({ label: name, kind: 7, detail: `Database/validation schema · ${import_node_path3.relative(root, file)}`, data: { file } }); } for (const match of source.matchAll(/(?:class|className)\s*=\s*["']([^"']+)["']/g)) { for (const name of match[1].split(/\s+/)) if (name) items.push({ label: name, kind: 12, detail: "Workspace CSS/Tailwind class" }); } } const unique = new Map(items.map((item) => [`${item.label}:${item.detail}`, item])); return [...unique.values()].slice(0, 2000); } function workspaceCompletionItems(root) { const normalizedRoot = import_node_path3.resolve(root); const now = Date.now(); const cached = workspaceIndexCache.get(normalizedRoot); if (cached && cached.expiresAt > now) return cached.items; const items = buildWorkspaceCompletionItems(normalizedRoot); workspaceIndexCache.delete(normalizedRoot); workspaceIndexCache.set(normalizedRoot, { expiresAt: now + INDEX_TTL_MS, items }); while (workspaceIndexCache.size > MAX_CACHED_ROOTS) { const oldest = workspaceIndexCache.keys().next().value; if (typeof oldest !== "string") break; workspaceIndexCache.delete(oldest); } return items; } function clearWorkspaceIndexCache(root) { if (root) workspaceIndexCache.delete(import_node_path3.resolve(root)); else workspaceIndexCache.clear(); } function workspaceSymbolLocations(root, name, limit = 1000) { if (!/^[A-Za-z_$][\w$]*$/.test(name)) return []; const escaped = name.replace(/[.*+?^${}()|[\]\\]/g, "\\$&"); const pattern = new RegExp(`(? import_node_path3.extname(path) === ".wrn").slice(0, limit)) { let source; try { source = import_node_fs3.readFileSync(file, "utf8"); } catch { continue; } for (const match of source.matchAll(pattern)) { const before = source.slice(0, match.index).split(/\r?\n/); const start = { line: before.length - 1, character: before.at(-1)?.length ?? 0 }; locations.push({ uri: `file:///${file.replace(/\\/g, "/")}`, range: { start, end: { line: start.line, character: start.character + name.length } } }); } } return locations; } function extractComponentRefactor(document, range, name) { if (!/^[A-Z][A-Za-z0-9_$]*$/.test(name)) throw new Error("Component name must use PascalCase"); const lines = document.text.split(/\r?\n/); const start = lines.slice(0, range.start.line).reduce((n, line) => n + line.length + 1, 0) + range.start.character; const end = lines.slice(0, range.end.line).reduce((n, line) => n + line.length + 1, 0) + range.end.character; const selected = document.text.slice(start, end); if (!selected.trim().startsWith("<")) throw new Error("Select WRN markup to extract"); const sourcePath = decodeURIComponent(document.uri.replace(/^file:\/\//, "")).replace(/^\/([A-Za-z]:)/, "$1"); const root = sourcePath.includes(`${import_node_path3.join("app", "pages")}`) ? sourcePath.slice(0, sourcePath.indexOf(`${import_node_path3.join("app", "pages")}`)) : import_node_path3.resolve("."); const target = import_node_path3.join(root, "app", "components", `${name}.wrn`); return { documentChanges: [ { kind: "create", uri: `file:///${target.replace(/\\/g, "/")}` }, { textDocument: { uri: `file:///${target.replace(/\\/g, "/")}`, version: null }, edits: [ { range: { start: { line: 0, character: 0 }, end: { line: 0, character: 0 } }, newText: `component ${name} { view { ${selected.trim()} } } ` } ] }, { textDocument: { uri: document.uri, version: document.version ?? null }, edits: [{ range, newText: `<${name} />` }] } ] }; } function htmlToWrn(html, name = "ImportedPage") { if (!/^[A-Z][A-Za-z0-9_$]*$/.test(name)) throw new Error("WRN name must use PascalCase"); const converted = html.replace(/\sclass=/g, " class=").replace(/\son([a-z]+)=/gi, (_all, event) => ` @${String(event).toLowerCase()}=`).replace(//g, "{/*$1*/}"); return `page ${name} { view { ${converted.trim()} } } `; } // packages/language-server/src/index.ts var WRN_KEYWORDS = [ "page", "component", "layout", "props", "outputs", "state", "computed", "effect", "watch", "lifecycle", "load", "action", "api", "apis", "realtime", "view", "style", "runtime", "hydrate" ]; function offsetAt(text, position) { const lines = text.split(/\r?\n/); let offset = 0; for (let line = 0;line < Math.min(position.line, lines.length); line++) offset += (lines[line]?.length ?? 0) + 1; return Math.min(text.length, offset + Math.max(0, position.character)); } function positionAt2(text, requestedOffset) { const offset = Math.max(0, Math.min(text.length, requestedOffset)); const prefix = text.slice(0, offset); const lines = prefix.split(/\r?\n/); return { line: lines.length - 1, character: lines.at(-1)?.length ?? 0 }; } function wordAt(text, position) { const offset = offsetAt(text, position); const left = text.slice(0, offset).match(/[A-Za-z_$][\w$]*$/)?.[0] ?? ""; const right = text.slice(offset).match(/^[\w$]*/)?.[0] ?? ""; const word = left + right; if (!word) return null; const start = offset - left.length; return { word, range: { start: positionAt2(text, start), end: positionAt2(text, start + word.length) } }; } function diagnosticRange(diagnostic) { const start = diagnostic.position ?? { line: 1, column: 1, offset: 0 }; return { start: { line: Math.max(0, start.line - 1), character: Math.max(0, start.column - 1) }, end: { line: Math.max(0, start.line - 1), character: Math.max(1, start.column - 1 + Math.max(1, diagnostic.received?.length ?? 1)) } }; } function documentDiagnostics(document, options = {}) { if (Buffer.byteLength(document.text, "utf8") > 1048576) { return [ { range: { start: { line: 0, character: 0 }, end: { line: 0, character: 1 } }, severity: 2, code: "WRN-LSP-FILE-SIZE", source: "wrnexus", message: "Type analysis is disabled because this WRN document exceeds 1 MiB." } ]; } const syntax = diagnose(document.text, { file: document.uri, accessibility: true }).map((diagnostic) => ({ range: diagnosticRange(diagnostic), severity: diagnostic.severity === "error" ? 1 : diagnostic.severity === "warning" ? 2 : 3, code: diagnostic.code, source: "wrnexus", message: diagnostic.message })); if (syntax.some((diagnostic) => diagnostic.severity === 1) || options.includeTypes === false) return syntax; const types = checkWrnSource(document.text, { filePath: documentPath(document.uri) }).map((diagnostic) => ({ range: { start: { line: Math.max(0, diagnostic.line - 1), character: Math.max(0, diagnostic.column - 1) }, end: { line: Math.max(0, diagnostic.line - 1), character: Math.max(1, diagnostic.column - 1 + Math.max(1, diagnostic.length)) } }, severity: diagnostic.category === "error" ? 1 : diagnostic.category === "warning" ? 2 : 3, code: diagnostic.code, source: "wrnexus-types", message: diagnostic.message })); const seen = new Set(syntax.map((item) => `${item.code}:${item.range.start.line}:${item.range.start.character}`)); return [ ...syntax, ...types.filter((item) => !seen.has(`${item.code}:${item.range.start.line}:${item.range.start.character}`)) ]; } function documentPath(uri) { if (!uri.startsWith("file://")) return uri; const value = decodeURIComponent(uri.slice("file://".length)); return /^\/[A-Za-z]:\//.test(value) ? value.slice(1) : value; } function virtualTypeScriptDocument(document) { const virtual = virtualTypeScriptModule(document.text, documentPath(document.uri)); return { uri: `${document.uri}.ts`, languageId: "typescript", text: virtual.code, mappings: virtual.mappings }; } function formatDocument(document, tabSize = 4, insertSpaces = true) { const formatted = formatWrn(document.text, { tabSize, insertSpaces }); if (formatted === document.text) return []; return [ { range: { start: { line: 0, character: 0 }, end: positionAt2(document.text, document.text.length) }, newText: formatted } ]; } function documentSymbols(document) { const pattern = /\b(page|component|layout|state|computed|watch|effect|load|action|api)\s+([A-Za-z_$][\w$]*)/g; return [...document.text.matchAll(pattern)].map((match) => { const name = match[2]; const start = match.index + match[0].lastIndexOf(name); const range = { start: positionAt2(document.text, start), end: positionAt2(document.text, start + name.length) }; return { name, kind: ["page", "component", "layout"].includes(match[1]) ? 5 : 13, range, selectionRange: range }; }); } function definitionLocation(document, position) { const selected = wordAt(document.text, position); if (!selected) return null; const declaration = new RegExp(`\\b(?:state|computed|page|component|layout)\\s+${selected.word}\\b|\\b${selected.word}\\s*(?=[:?])`).exec(document.text); if (!declaration) return null; const start = declaration.index + declaration[0].lastIndexOf(selected.word); return { uri: document.uri, range: { start: positionAt2(document.text, start), end: positionAt2(document.text, start + selected.word.length) } }; } function hover(document, position) { const selected = wordAt(document.text, position); if (!selected) return null; const declaration = new RegExp(`\\b(state|computed|prop|page|component|layout)\\s+${selected.word}\\b`).exec(document.text); if (!declaration) return null; return { contents: { kind: "markdown", value: `\`\`\`wrn ${declaration[0]} \`\`\`` }, range: selected.range }; } function completionItems() { return WRN_KEYWORDS.map((label) => ({ label, kind: 14, detail: "WRNexus language keyword" })); } var semanticTokenTypes = ["variable"]; var semanticTokenModifiers = ["declaration", "modification"]; var semanticTokensLegend = { tokenTypes: [...semanticTokenTypes], tokenModifiers: [...semanticTokenModifiers] }; function semanticTokens(document) { const declarations = new Map; for (const match of document.text.matchAll(/\bstate\s+([A-Za-z_$][A-Za-z0-9_$]*)\s*(?==|;|\r?$)/gm)) { const name = match[1]; const offset = match.index + match[0].lastIndexOf(name); const offsets = declarations.get(name) ?? new Set; offsets.add(offset); declarations.set(name, offsets); } const comments = [...document.text.matchAll(/\/\/[^\n]*|\/\*[\s\S]*?\*\//g)].map((match) => ({ start: match.index, end: match.index + match[0].length })); const tokens = []; for (const [name, offsets] of declarations) { const escaped = name.replace(/[.*+?^${}()|[\]\\]/g, "\\$&"); for (const match of document.text.matchAll(new RegExp(`(? offset >= range.start && offset < range.end)) continue; const position = positionAt2(document.text, offset); const after = document.text.slice(offset + name.length).match(/^\s*(?:=|\+=|-=|\*=|\/=|%=|\+\+|--)/); const before = document.text.slice(Math.max(0, offset - 8), offset).match(/(?:\+\+|--)\s*$/); tokens.push({ ...position, length: name.length, modifiers: offsets.has(offset) ? 1 : after || before ? 2 : 0 }); } } tokens.sort((a, b) => a.line - b.line || a.character - b.character); const data = []; let previousLine = 0; let previousCharacter = 0; for (const token of tokens) { const deltaLine = token.line - previousLine; const deltaCharacter = deltaLine === 0 ? token.character - previousCharacter : token.character; data.push(deltaLine, deltaCharacter, token.length, 0, token.modifiers); previousLine = token.line; previousCharacter = token.character; } return { data }; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/parser/htmlScanner.js var l10n = __toESM(require_main(), 1); // node_modules/.bun/vscode-languageserver-types@3.18.0/node_modules/vscode-languageserver-types/lib/esm/main.js var DocumentUri; (function(DocumentUri2) { function is(value) { return typeof value === "string"; } DocumentUri2.is = is; })(DocumentUri || (DocumentUri = {})); var URI; (function(URI2) { function is(value) { return typeof value === "string"; } URI2.is = is; })(URI || (URI = {})); var integer; (function(integer2) { integer2.MIN_VALUE = -2147483648; integer2.MAX_VALUE = 2147483647; function is(value) { return typeof value === "number" && integer2.MIN_VALUE <= value && value <= integer2.MAX_VALUE; } integer2.is = is; })(integer || (integer = {})); var uinteger; (function(uinteger2) { uinteger2.MIN_VALUE = 0; uinteger2.MAX_VALUE = 2147483647; function is(value) { return typeof value === "number" && uinteger2.MIN_VALUE <= value && value <= uinteger2.MAX_VALUE; } uinteger2.is = is; })(uinteger || (uinteger = {})); var Position; (function(Position2) { function create(line, character) { if (line === Number.MAX_VALUE) { line = uinteger.MAX_VALUE; } if (character === Number.MAX_VALUE) { character = uinteger.MAX_VALUE; } return { line, character }; } Position2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Is.uinteger(candidate.line) && Is.uinteger(candidate.character); } Position2.is = is; })(Position || (Position = {})); var Range; (function(Range2) { function create(one, two, three, four) { if (Is.uinteger(one) && Is.uinteger(two) && Is.uinteger(three) && Is.uinteger(four)) { return { start: Position.create(one, two), end: Position.create(three, four) }; } else if (Position.is(one) && Position.is(two)) { return { start: one, end: two }; } else { throw new Error(`Range#create called with invalid arguments[${one}, ${two}, ${three}, ${four}]`); } } Range2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Position.is(candidate.start) && Position.is(candidate.end); } Range2.is = is; })(Range || (Range = {})); var Location; (function(Location2) { function create(uri, range) { return { uri, range }; } Location2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Range.is(candidate.range) && (Is.string(candidate.uri) || Is.undefined(candidate.uri)); } Location2.is = is; })(Location || (Location = {})); var LocationLink; (function(LocationLink2) { function create(targetUri, targetRange, targetSelectionRange, originSelectionRange) { return { targetUri, targetRange, targetSelectionRange, originSelectionRange }; } LocationLink2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Range.is(candidate.targetRange) && Is.string(candidate.targetUri) && Range.is(candidate.targetSelectionRange) && (Range.is(candidate.originSelectionRange) || Is.undefined(candidate.originSelectionRange)); } LocationLink2.is = is; })(LocationLink || (LocationLink = {})); var Color; (function(Color2) { function create(red, green, blue, alpha) { return { red, green, blue, alpha }; } Color2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Is.numberRange(candidate.red, 0, 1) && Is.numberRange(candidate.green, 0, 1) && Is.numberRange(candidate.blue, 0, 1) && Is.numberRange(candidate.alpha, 0, 1); } Color2.is = is; })(Color || (Color = {})); var ColorInformation; (function(ColorInformation2) { function create(range, color) { return { range, color }; } ColorInformation2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Range.is(candidate.range) && Color.is(candidate.color); } ColorInformation2.is = is; })(ColorInformation || (ColorInformation = {})); var ColorPresentation; (function(ColorPresentation2) { function create(label, textEdit, additionalTextEdits) { return { label, textEdit, additionalTextEdits }; } ColorPresentation2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Is.string(candidate.label) && (Is.undefined(candidate.textEdit) || TextEdit.is(candidate)) && (Is.undefined(candidate.additionalTextEdits) || Is.typedArray(candidate.additionalTextEdits, TextEdit.is)); } ColorPresentation2.is = is; })(ColorPresentation || (ColorPresentation = {})); var FoldingRangeKind; (function(FoldingRangeKind2) { FoldingRangeKind2.Comment = "comment"; FoldingRangeKind2.Imports = "imports"; FoldingRangeKind2.Region = "region"; })(FoldingRangeKind || (FoldingRangeKind = {})); var FoldingRange; (function(FoldingRange2) { function create(startLine, endLine, startCharacter, endCharacter, kind, collapsedText) { const result = { startLine, endLine }; if (Is.defined(startCharacter)) { result.startCharacter = startCharacter; } if (Is.defined(endCharacter)) { result.endCharacter = endCharacter; } if (Is.defined(kind)) { result.kind = kind; } if (Is.defined(collapsedText)) { result.collapsedText = collapsedText; } return result; } FoldingRange2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Is.uinteger(candidate.startLine) && Is.uinteger(candidate.startLine) && (Is.undefined(candidate.startCharacter) || Is.uinteger(candidate.startCharacter)) && (Is.undefined(candidate.endCharacter) || Is.uinteger(candidate.endCharacter)) && (Is.undefined(candidate.kind) || Is.string(candidate.kind)); } FoldingRange2.is = is; })(FoldingRange || (FoldingRange = {})); var DiagnosticRelatedInformation; (function(DiagnosticRelatedInformation2) { function create(location, message) { return { location, message }; } DiagnosticRelatedInformation2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Location.is(candidate.location) && Is.string(candidate.message); } DiagnosticRelatedInformation2.is = is; })(DiagnosticRelatedInformation || (DiagnosticRelatedInformation = {})); var DiagnosticSeverity; (function(DiagnosticSeverity2) { DiagnosticSeverity2.Error = 1; DiagnosticSeverity2.Warning = 2; DiagnosticSeverity2.Information = 3; DiagnosticSeverity2.Hint = 4; })(DiagnosticSeverity || (DiagnosticSeverity = {})); var DiagnosticTag; (function(DiagnosticTag2) { DiagnosticTag2.Unnecessary = 1; DiagnosticTag2.Deprecated = 2; })(DiagnosticTag || (DiagnosticTag = {})); var CodeDescription; (function(CodeDescription2) { function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Is.string(candidate.href); } CodeDescription2.is = is; })(CodeDescription || (CodeDescription = {})); var Diagnostic; (function(Diagnostic2) { function create(range, message, severity, code, source, relatedInformation) { const result = { range, message }; if (Is.defined(severity)) { result.severity = severity; } if (Is.defined(code)) { result.code = code; } if (Is.defined(source)) { result.source = source; } if (Is.defined(relatedInformation)) { result.relatedInformation = relatedInformation; } return result; } Diagnostic2.create = create; function is(value) { var _a; const candidate = value; return Is.defined(candidate) && Range.is(candidate.range) && (Is.string(candidate.message) || MarkupContent.is(candidate.message)) && (Is.number(candidate.severity) || Is.undefined(candidate.severity)) && (Is.integer(candidate.code) || Is.string(candidate.code) || Is.undefined(candidate.code)) && (Is.undefined(candidate.codeDescription) || Is.string((_a = candidate.codeDescription) === null || _a === undefined ? undefined : _a.href)) && (Is.string(candidate.source) || Is.undefined(candidate.source)) && (Is.undefined(candidate.relatedInformation) || Is.typedArray(candidate.relatedInformation, DiagnosticRelatedInformation.is)); } Diagnostic2.is = is; function is3_17(value) { return Is.string(value.message); } Diagnostic2.is3_17 = is3_17; function getMessageString(diagnostic) { if (Is.string(diagnostic.message)) { return diagnostic.message; } else if (MarkupContent.is(diagnostic.message)) { return diagnostic.message.value; } else { throw new Error(`Unknown message type ${typeof diagnostic.message}`); } } Diagnostic2.getMessageString = getMessageString; })(Diagnostic || (Diagnostic = {})); var Command; (function(Command2) { function create(title, command, ...args) { const result = { title, command }; if (Is.defined(args) && args.length > 0) { result.arguments = args; } return result; } Command2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Is.string(candidate.title) && (candidate.tooltip === undefined || Is.string(candidate.tooltip)) && Is.string(candidate.command); } Command2.is = is; })(Command || (Command = {})); var TextEdit; (function(TextEdit2) { function replace(range, newText) { return { range, newText }; } TextEdit2.replace = replace; function insert(position, newText) { return { range: { start: position, end: position }, newText }; } TextEdit2.insert = insert; function del(range) { return { range, newText: "" }; } TextEdit2.del = del; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Is.string(candidate.newText) && Range.is(candidate.range); } TextEdit2.is = is; })(TextEdit || (TextEdit = {})); var ChangeAnnotation; (function(ChangeAnnotation2) { function create(label, needsConfirmation, description) { const result = { label }; if (needsConfirmation !== undefined) { result.needsConfirmation = needsConfirmation; } if (description !== undefined) { result.description = description; } return result; } ChangeAnnotation2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Is.string(candidate.label) && (Is.boolean(candidate.needsConfirmation) || candidate.needsConfirmation === undefined) && (Is.string(candidate.description) || candidate.description === undefined); } ChangeAnnotation2.is = is; })(ChangeAnnotation || (ChangeAnnotation = {})); var ChangeAnnotationIdentifier; (function(ChangeAnnotationIdentifier2) { function is(value) { const candidate = value; return Is.string(candidate); } ChangeAnnotationIdentifier2.is = is; })(ChangeAnnotationIdentifier || (ChangeAnnotationIdentifier = {})); var AnnotatedTextEdit; (function(AnnotatedTextEdit2) { function replace(range, newText, annotation) { return { range, newText, annotationId: annotation }; } AnnotatedTextEdit2.replace = replace; function insert(position, newText, annotation) { return { range: { start: position, end: position }, newText, annotationId: annotation }; } AnnotatedTextEdit2.insert = insert; function del(range, annotation) { return { range, newText: "", annotationId: annotation }; } AnnotatedTextEdit2.del = del; function is(value) { const candidate = value; return TextEdit.is(candidate) && (ChangeAnnotation.is(candidate.annotationId) || ChangeAnnotationIdentifier.is(candidate.annotationId)); } AnnotatedTextEdit2.is = is; })(AnnotatedTextEdit || (AnnotatedTextEdit = {})); var TextDocumentEdit; (function(TextDocumentEdit2) { function create(textDocument, edits) { return { textDocument, edits }; } TextDocumentEdit2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && OptionalVersionedTextDocumentIdentifier.is(candidate.textDocument) && Array.isArray(candidate.edits); } TextDocumentEdit2.is = is; })(TextDocumentEdit || (TextDocumentEdit = {})); var CreateFile; (function(CreateFile2) { function create(uri, options, annotation) { const result = { kind: "create", uri }; if (options !== undefined && (options.overwrite !== undefined || options.ignoreIfExists !== undefined)) { result.options = options; } if (annotation !== undefined) { result.annotationId = annotation; } return result; } CreateFile2.create = create; function is(value) { const candidate = value; return candidate && candidate.kind === "create" && Is.string(candidate.uri) && (candidate.options === undefined || (candidate.options.overwrite === undefined || Is.boolean(candidate.options.overwrite)) && (candidate.options.ignoreIfExists === undefined || Is.boolean(candidate.options.ignoreIfExists))) && (candidate.annotationId === undefined || ChangeAnnotationIdentifier.is(candidate.annotationId)); } CreateFile2.is = is; })(CreateFile || (CreateFile = {})); var RenameFile; (function(RenameFile2) { function create(oldUri, newUri, options, annotation) { const result = { kind: "rename", oldUri, newUri }; if (options !== undefined && (options.overwrite !== undefined || options.ignoreIfExists !== undefined)) { result.options = options; } if (annotation !== undefined) { result.annotationId = annotation; } return result; } RenameFile2.create = create; function is(value) { const candidate = value; return candidate && candidate.kind === "rename" && Is.string(candidate.oldUri) && Is.string(candidate.newUri) && (candidate.options === undefined || (candidate.options.overwrite === undefined || Is.boolean(candidate.options.overwrite)) && (candidate.options.ignoreIfExists === undefined || Is.boolean(candidate.options.ignoreIfExists))) && (candidate.annotationId === undefined || ChangeAnnotationIdentifier.is(candidate.annotationId)); } RenameFile2.is = is; })(RenameFile || (RenameFile = {})); var DeleteFile; (function(DeleteFile2) { function create(uri, options, annotation) { const result = { kind: "delete", uri }; if (options !== undefined && (options.recursive !== undefined || options.ignoreIfNotExists !== undefined)) { result.options = options; } if (annotation !== undefined) { result.annotationId = annotation; } return result; } DeleteFile2.create = create; function is(value) { const candidate = value; return candidate && candidate.kind === "delete" && Is.string(candidate.uri) && (candidate.options === undefined || (candidate.options.recursive === undefined || Is.boolean(candidate.options.recursive)) && (candidate.options.ignoreIfNotExists === undefined || Is.boolean(candidate.options.ignoreIfNotExists))) && (candidate.annotationId === undefined || ChangeAnnotationIdentifier.is(candidate.annotationId)); } DeleteFile2.is = is; })(DeleteFile || (DeleteFile = {})); var WorkspaceEdit; (function(WorkspaceEdit2) { function is(value) { const candidate = value; return candidate && (candidate.changes !== undefined || candidate.documentChanges !== undefined) && (candidate.documentChanges === undefined || candidate.documentChanges.every((change) => { if (Is.string(change.kind)) { return CreateFile.is(change) || RenameFile.is(change) || DeleteFile.is(change); } else { return TextDocumentEdit.is(change); } })); } WorkspaceEdit2.is = is; })(WorkspaceEdit || (WorkspaceEdit = {})); var SnippetTextEdit; (function(SnippetTextEdit2) { function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Range.is(candidate.range) && StringValue.isSnippet(candidate.snippet) && (candidate.annotationId === undefined || (ChangeAnnotation.is(candidate.annotationId) || ChangeAnnotationIdentifier.is(candidate.annotationId))); } SnippetTextEdit2.is = is; })(SnippetTextEdit || (SnippetTextEdit = {})); var TextDocumentIdentifier; (function(TextDocumentIdentifier2) { function create(uri) { return { uri }; } TextDocumentIdentifier2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Is.string(candidate.uri); } TextDocumentIdentifier2.is = is; })(TextDocumentIdentifier || (TextDocumentIdentifier = {})); var VersionedTextDocumentIdentifier; (function(VersionedTextDocumentIdentifier2) { function create(uri, version) { return { uri, version }; } VersionedTextDocumentIdentifier2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Is.string(candidate.uri) && Is.integer(candidate.version); } VersionedTextDocumentIdentifier2.is = is; })(VersionedTextDocumentIdentifier || (VersionedTextDocumentIdentifier = {})); var OptionalVersionedTextDocumentIdentifier; (function(OptionalVersionedTextDocumentIdentifier2) { function create(uri, version) { return { uri, version }; } OptionalVersionedTextDocumentIdentifier2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Is.string(candidate.uri) && (candidate.version === null || Is.integer(candidate.version)); } OptionalVersionedTextDocumentIdentifier2.is = is; })(OptionalVersionedTextDocumentIdentifier || (OptionalVersionedTextDocumentIdentifier = {})); var LanguageKind; (function(LanguageKind2) { LanguageKind2.ABAP = "abap"; LanguageKind2.WindowsBat = "bat"; LanguageKind2.BibTeX = "bibtex"; LanguageKind2.Clojure = "clojure"; LanguageKind2.Coffeescript = "coffeescript"; LanguageKind2.C = "c"; LanguageKind2.CPP = "cpp"; LanguageKind2.CSharp = "csharp"; LanguageKind2.CSS = "css"; LanguageKind2.D = "d"; LanguageKind2.Delphi = "pascal"; LanguageKind2.Diff = "diff"; LanguageKind2.Dart = "dart"; LanguageKind2.Dockerfile = "dockerfile"; LanguageKind2.Elixir = "elixir"; LanguageKind2.Erlang = "erlang"; LanguageKind2.FSharp = "fsharp"; LanguageKind2.GitCommit = "git-commit"; LanguageKind2.GitRebase = "git-rebase"; LanguageKind2.Go = "go"; LanguageKind2.Groovy = "groovy"; LanguageKind2.Handlebars = "handlebars"; LanguageKind2.Haskell = "haskell"; LanguageKind2.HTML = "html"; LanguageKind2.Ini = "ini"; LanguageKind2.Java = "java"; LanguageKind2.JavaScript = "javascript"; LanguageKind2.JavaScriptReact = "javascriptreact"; LanguageKind2.JSON = "json"; LanguageKind2.LaTeX = "latex"; LanguageKind2.Less = "less"; LanguageKind2.Lua = "lua"; LanguageKind2.Makefile = "makefile"; LanguageKind2.Markdown = "markdown"; LanguageKind2.ObjectiveC = "objective-c"; LanguageKind2.ObjectiveCPP = "objective-cpp"; LanguageKind2.Pascal = "pascal"; LanguageKind2.Perl = "perl"; LanguageKind2.Perl6 = "perl6"; LanguageKind2.PHP = "php"; LanguageKind2.Plaintext = "plaintext"; LanguageKind2.Powershell = "powershell"; LanguageKind2.Pug = "jade"; LanguageKind2.Python = "python"; LanguageKind2.R = "r"; LanguageKind2.Razor = "razor"; LanguageKind2.Ruby = "ruby"; LanguageKind2.Rust = "rust"; LanguageKind2.SCSS = "scss"; LanguageKind2.SASS = "sass"; LanguageKind2.Scala = "scala"; LanguageKind2.ShaderLab = "shaderlab"; LanguageKind2.ShellScript = "shellscript"; LanguageKind2.SQL = "sql"; LanguageKind2.Swift = "swift"; LanguageKind2.TypeScript = "typescript"; LanguageKind2.TypeScriptReact = "typescriptreact"; LanguageKind2.TeX = "tex"; LanguageKind2.VisualBasic = "vb"; LanguageKind2.XML = "xml"; LanguageKind2.XSL = "xsl"; LanguageKind2.YAML = "yaml"; })(LanguageKind || (LanguageKind = {})); var TextDocumentItem; (function(TextDocumentItem2) { function create(uri, languageId, version, text) { return { uri, languageId, version, text }; } TextDocumentItem2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Is.string(candidate.uri) && Is.string(candidate.languageId) && Is.integer(candidate.version) && Is.string(candidate.text); } TextDocumentItem2.is = is; })(TextDocumentItem || (TextDocumentItem = {})); var MarkupKind; (function(MarkupKind2) { MarkupKind2.PlainText = "plaintext"; MarkupKind2.Markdown = "markdown"; function is(value) { const candidate = value; return candidate === MarkupKind2.PlainText || candidate === MarkupKind2.Markdown; } MarkupKind2.is = is; })(MarkupKind || (MarkupKind = {})); var MarkupContent; (function(MarkupContent2) { function is(value) { const candidate = value; return Is.objectLiteral(value) && MarkupKind.is(candidate.kind) && Is.string(candidate.value); } MarkupContent2.is = is; })(MarkupContent || (MarkupContent = {})); var CompletionItemKind; (function(CompletionItemKind2) { CompletionItemKind2.Text = 1; CompletionItemKind2.Method = 2; CompletionItemKind2.Function = 3; CompletionItemKind2.Constructor = 4; CompletionItemKind2.Field = 5; CompletionItemKind2.Variable = 6; CompletionItemKind2.Class = 7; CompletionItemKind2.Interface = 8; CompletionItemKind2.Module = 9; CompletionItemKind2.Property = 10; CompletionItemKind2.Unit = 11; CompletionItemKind2.Value = 12; CompletionItemKind2.Enum = 13; CompletionItemKind2.Keyword = 14; CompletionItemKind2.Snippet = 15; CompletionItemKind2.Color = 16; CompletionItemKind2.File = 17; CompletionItemKind2.Reference = 18; CompletionItemKind2.Folder = 19; CompletionItemKind2.EnumMember = 20; CompletionItemKind2.Constant = 21; CompletionItemKind2.Struct = 22; CompletionItemKind2.Event = 23; CompletionItemKind2.Operator = 24; CompletionItemKind2.TypeParameter = 25; })(CompletionItemKind || (CompletionItemKind = {})); var InsertTextFormat; (function(InsertTextFormat2) { InsertTextFormat2.PlainText = 1; InsertTextFormat2.Snippet = 2; })(InsertTextFormat || (InsertTextFormat = {})); var CompletionItemTag; (function(CompletionItemTag2) { CompletionItemTag2.Deprecated = 1; })(CompletionItemTag || (CompletionItemTag = {})); var InsertReplaceEdit; (function(InsertReplaceEdit2) { function create(newText, insert, replace) { return { newText, insert, replace }; } InsertReplaceEdit2.create = create; function is(value) { const candidate = value; return candidate && Is.string(candidate.newText) && Range.is(candidate.insert) && Range.is(candidate.replace); } InsertReplaceEdit2.is = is; })(InsertReplaceEdit || (InsertReplaceEdit = {})); var InsertTextMode; (function(InsertTextMode2) { InsertTextMode2.asIs = 1; InsertTextMode2.adjustIndentation = 2; })(InsertTextMode || (InsertTextMode = {})); var ApplyKind; (function(ApplyKind2) { ApplyKind2.Replace = 1; ApplyKind2.Merge = 2; })(ApplyKind || (ApplyKind = {})); var CompletionItemLabelDetails; (function(CompletionItemLabelDetails2) { function is(value) { const candidate = value; return candidate && (Is.string(candidate.detail) || candidate.detail === undefined) && (Is.string(candidate.description) || candidate.description === undefined); } CompletionItemLabelDetails2.is = is; })(CompletionItemLabelDetails || (CompletionItemLabelDetails = {})); var CompletionItem; (function(CompletionItem2) { function create(label) { return { label }; } CompletionItem2.create = create; })(CompletionItem || (CompletionItem = {})); var CompletionList; (function(CompletionList2) { function create(items, isIncomplete) { return { items: items ? items : [], isIncomplete: !!isIncomplete }; } CompletionList2.create = create; })(CompletionList || (CompletionList = {})); var MarkedString; (function(MarkedString2) { function fromPlainText(plainText) { return plainText.replace(/[\\`*_{}[\]()#+\-.!]/g, "\\$&"); } MarkedString2.fromPlainText = fromPlainText; function is(value) { const candidate = value; return Is.string(candidate) || Is.objectLiteral(candidate) && Is.string(candidate.language) && Is.string(candidate.value); } MarkedString2.is = is; })(MarkedString || (MarkedString = {})); var Hover; (function(Hover2) { function is(value) { const candidate = value; return !!candidate && Is.objectLiteral(candidate) && (MarkupContent.is(candidate.contents) || MarkedString.is(candidate.contents) || Is.typedArray(candidate.contents, MarkedString.is)) && (value.range === undefined || Range.is(value.range)); } Hover2.is = is; })(Hover || (Hover = {})); var ParameterInformation; (function(ParameterInformation2) { function create(label, documentation) { return documentation ? { label, documentation } : { label }; } ParameterInformation2.create = create; })(ParameterInformation || (ParameterInformation = {})); var SignatureInformation; (function(SignatureInformation2) { function create(label, documentation, ...parameters) { const result = { label }; if (Is.defined(documentation)) { result.documentation = documentation; } if (Is.defined(parameters)) { result.parameters = parameters; } else { result.parameters = []; } return result; } SignatureInformation2.create = create; })(SignatureInformation || (SignatureInformation = {})); var DocumentHighlightKind; (function(DocumentHighlightKind2) { DocumentHighlightKind2.Text = 1; DocumentHighlightKind2.Read = 2; DocumentHighlightKind2.Write = 3; })(DocumentHighlightKind || (DocumentHighlightKind = {})); var DocumentHighlight; (function(DocumentHighlight2) { function create(range, kind) { const result = { range }; if (Is.number(kind)) { result.kind = kind; } return result; } DocumentHighlight2.create = create; })(DocumentHighlight || (DocumentHighlight = {})); var SymbolKind; (function(SymbolKind2) { SymbolKind2.File = 1; SymbolKind2.Module = 2; SymbolKind2.Namespace = 3; SymbolKind2.Package = 4; SymbolKind2.Class = 5; SymbolKind2.Method = 6; SymbolKind2.Property = 7; SymbolKind2.Field = 8; SymbolKind2.Constructor = 9; SymbolKind2.Enum = 10; SymbolKind2.Interface = 11; SymbolKind2.Function = 12; SymbolKind2.Variable = 13; SymbolKind2.Constant = 14; SymbolKind2.String = 15; SymbolKind2.Number = 16; SymbolKind2.Boolean = 17; SymbolKind2.Array = 18; SymbolKind2.Object = 19; SymbolKind2.Key = 20; SymbolKind2.Null = 21; SymbolKind2.EnumMember = 22; SymbolKind2.Struct = 23; SymbolKind2.Event = 24; SymbolKind2.Operator = 25; SymbolKind2.TypeParameter = 26; })(SymbolKind || (SymbolKind = {})); var SymbolTag; (function(SymbolTag2) { SymbolTag2.Deprecated = 1; })(SymbolTag || (SymbolTag = {})); var SymbolInformation; (function(SymbolInformation2) { function create(name, kind, range, uri, containerName) { const result = { name, kind, location: { uri, range } }; if (containerName) { result.containerName = containerName; } return result; } SymbolInformation2.create = create; })(SymbolInformation || (SymbolInformation = {})); var WorkspaceSymbol; (function(WorkspaceSymbol2) { function create(name, kind, uri, range) { return range !== undefined ? { name, kind, location: { uri, range } } : { name, kind, location: { uri } }; } WorkspaceSymbol2.create = create; })(WorkspaceSymbol || (WorkspaceSymbol = {})); var DocumentSymbol; (function(DocumentSymbol2) { function create(name, detail, kind, range, selectionRange, children) { const result = { name, detail, kind, range, selectionRange }; if (children !== undefined) { result.children = children; } return result; } DocumentSymbol2.create = create; function is(value) { const candidate = value; return candidate && Is.string(candidate.name) && Is.number(candidate.kind) && Range.is(candidate.range) && Range.is(candidate.selectionRange) && (candidate.detail === undefined || Is.string(candidate.detail)) && (candidate.deprecated === undefined || Is.boolean(candidate.deprecated)) && (candidate.children === undefined || Array.isArray(candidate.children)) && (candidate.tags === undefined || Array.isArray(candidate.tags)); } DocumentSymbol2.is = is; })(DocumentSymbol || (DocumentSymbol = {})); var CodeActionKind; (function(CodeActionKind2) { CodeActionKind2.Empty = ""; CodeActionKind2.QuickFix = "quickfix"; CodeActionKind2.Refactor = "refactor"; CodeActionKind2.RefactorExtract = "refactor.extract"; CodeActionKind2.RefactorInline = "refactor.inline"; CodeActionKind2.RefactorMove = "refactor.move"; CodeActionKind2.RefactorRewrite = "refactor.rewrite"; CodeActionKind2.Source = "source"; CodeActionKind2.SourceOrganizeImports = "source.organizeImports"; CodeActionKind2.SourceFixAll = "source.fixAll"; CodeActionKind2.Notebook = "notebook"; })(CodeActionKind || (CodeActionKind = {})); var CodeActionTriggerKind; (function(CodeActionTriggerKind2) { CodeActionTriggerKind2.Invoked = 1; CodeActionTriggerKind2.Automatic = 2; })(CodeActionTriggerKind || (CodeActionTriggerKind = {})); var CodeActionContext; (function(CodeActionContext2) { function create(diagnostics, only, triggerKind) { const result = { diagnostics }; if (only !== undefined && only !== null) { result.only = only; } if (triggerKind !== undefined && triggerKind !== null) { result.triggerKind = triggerKind; } return result; } CodeActionContext2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Is.typedArray(candidate.diagnostics, Diagnostic.is) && (candidate.only === undefined || Is.typedArray(candidate.only, Is.string)) && (candidate.triggerKind === undefined || candidate.triggerKind === CodeActionTriggerKind.Invoked || candidate.triggerKind === CodeActionTriggerKind.Automatic); } CodeActionContext2.is = is; })(CodeActionContext || (CodeActionContext = {})); var CodeActionTag; (function(CodeActionTag2) { CodeActionTag2.LLMGenerated = 1; function is(value) { return Is.defined(value) && value === CodeActionTag2.LLMGenerated; } CodeActionTag2.is = is; })(CodeActionTag || (CodeActionTag = {})); var CodeAction; (function(CodeAction2) { function create(title, kindOrCommandOrEdit, kind) { const result = { title }; let checkKind = true; if (typeof kindOrCommandOrEdit === "string") { checkKind = false; result.kind = kindOrCommandOrEdit; } else if (Command.is(kindOrCommandOrEdit)) { result.command = kindOrCommandOrEdit; } else { result.edit = kindOrCommandOrEdit; } if (checkKind && kind !== undefined) { result.kind = kind; } return result; } CodeAction2.create = create; function is(value) { const candidate = value; return candidate && Is.string(candidate.title) && (candidate.diagnostics === undefined || Is.typedArray(candidate.diagnostics, Diagnostic.is)) && (candidate.kind === undefined || Is.string(candidate.kind)) && (candidate.edit !== undefined || candidate.command !== undefined) && (candidate.command === undefined || Command.is(candidate.command)) && (candidate.isPreferred === undefined || Is.boolean(candidate.isPreferred)) && (candidate.edit === undefined || WorkspaceEdit.is(candidate.edit)) && (candidate.tags === undefined || Is.typedArray(candidate.tags, CodeActionTag.is)); } CodeAction2.is = is; })(CodeAction || (CodeAction = {})); var CodeLens; (function(CodeLens2) { function create(range, data) { const result = { range }; if (Is.defined(data)) { result.data = data; } return result; } CodeLens2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Range.is(candidate.range) && (Is.undefined(candidate.command) || Command.is(candidate.command)); } CodeLens2.is = is; })(CodeLens || (CodeLens = {})); var FormattingOptions; (function(FormattingOptions2) { function create(tabSize, insertSpaces) { return { tabSize, insertSpaces }; } FormattingOptions2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Is.uinteger(candidate.tabSize) && Is.boolean(candidate.insertSpaces); } FormattingOptions2.is = is; })(FormattingOptions || (FormattingOptions = {})); var DocumentLink; (function(DocumentLink2) { function create(range, target, data) { return { range, target, data }; } DocumentLink2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Range.is(candidate.range) && (Is.undefined(candidate.target) || Is.string(candidate.target)); } DocumentLink2.is = is; })(DocumentLink || (DocumentLink = {})); var SelectionRange; (function(SelectionRange2) { function create(range, parent) { return { range, parent }; } SelectionRange2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Range.is(candidate.range) && (candidate.parent === undefined || SelectionRange2.is(candidate.parent)); } SelectionRange2.is = is; })(SelectionRange || (SelectionRange = {})); var SemanticTokenTypes; (function(SemanticTokenTypes2) { SemanticTokenTypes2["namespace"] = "namespace"; SemanticTokenTypes2["type"] = "type"; SemanticTokenTypes2["class"] = "class"; SemanticTokenTypes2["enum"] = "enum"; SemanticTokenTypes2["interface"] = "interface"; SemanticTokenTypes2["struct"] = "struct"; SemanticTokenTypes2["typeParameter"] = "typeParameter"; SemanticTokenTypes2["parameter"] = "parameter"; SemanticTokenTypes2["variable"] = "variable"; SemanticTokenTypes2["property"] = "property"; SemanticTokenTypes2["enumMember"] = "enumMember"; SemanticTokenTypes2["event"] = "event"; SemanticTokenTypes2["function"] = "function"; SemanticTokenTypes2["method"] = "method"; SemanticTokenTypes2["macro"] = "macro"; SemanticTokenTypes2["keyword"] = "keyword"; SemanticTokenTypes2["modifier"] = "modifier"; SemanticTokenTypes2["comment"] = "comment"; SemanticTokenTypes2["string"] = "string"; SemanticTokenTypes2["number"] = "number"; SemanticTokenTypes2["regexp"] = "regexp"; SemanticTokenTypes2["operator"] = "operator"; SemanticTokenTypes2["decorator"] = "decorator"; SemanticTokenTypes2["label"] = "label"; })(SemanticTokenTypes || (SemanticTokenTypes = {})); var SemanticTokenModifiers; (function(SemanticTokenModifiers2) { SemanticTokenModifiers2["declaration"] = "declaration"; SemanticTokenModifiers2["definition"] = "definition"; SemanticTokenModifiers2["readonly"] = "readonly"; SemanticTokenModifiers2["static"] = "static"; SemanticTokenModifiers2["deprecated"] = "deprecated"; SemanticTokenModifiers2["abstract"] = "abstract"; SemanticTokenModifiers2["async"] = "async"; SemanticTokenModifiers2["modification"] = "modification"; SemanticTokenModifiers2["documentation"] = "documentation"; SemanticTokenModifiers2["defaultLibrary"] = "defaultLibrary"; })(SemanticTokenModifiers || (SemanticTokenModifiers = {})); var SemanticTokens; (function(SemanticTokens2) { function is(value) { const candidate = value; return Is.objectLiteral(candidate) && (candidate.resultId === undefined || typeof candidate.resultId === "string") && Array.isArray(candidate.data) && (candidate.data.length === 0 || typeof candidate.data[0] === "number"); } SemanticTokens2.is = is; })(SemanticTokens || (SemanticTokens = {})); var InlineValueText; (function(InlineValueText2) { function create(range, text) { return { range, text }; } InlineValueText2.create = create; function is(value) { const candidate = value; return candidate !== undefined && candidate !== null && Range.is(candidate.range) && Is.string(candidate.text); } InlineValueText2.is = is; })(InlineValueText || (InlineValueText = {})); var InlineValueVariableLookup; (function(InlineValueVariableLookup2) { function create(range, variableName, caseSensitiveLookup) { return { range, variableName, caseSensitiveLookup }; } InlineValueVariableLookup2.create = create; function is(value) { const candidate = value; return candidate !== undefined && candidate !== null && Range.is(candidate.range) && Is.boolean(candidate.caseSensitiveLookup) && (Is.string(candidate.variableName) || candidate.variableName === undefined); } InlineValueVariableLookup2.is = is; })(InlineValueVariableLookup || (InlineValueVariableLookup = {})); var InlineValueEvaluatableExpression; (function(InlineValueEvaluatableExpression2) { function create(range, expression) { return { range, expression }; } InlineValueEvaluatableExpression2.create = create; function is(value) { const candidate = value; return candidate !== undefined && candidate !== null && Range.is(candidate.range) && (Is.string(candidate.expression) || candidate.expression === undefined); } InlineValueEvaluatableExpression2.is = is; })(InlineValueEvaluatableExpression || (InlineValueEvaluatableExpression = {})); var InlineValueContext; (function(InlineValueContext2) { function create(frameId, stoppedLocation) { return { frameId, stoppedLocation }; } InlineValueContext2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Range.is(value.stoppedLocation); } InlineValueContext2.is = is; })(InlineValueContext || (InlineValueContext = {})); var InlayHintKind2; (function(InlayHintKind3) { InlayHintKind3.Type = 1; InlayHintKind3.Parameter = 2; function is(value) { return value === 1 || value === 2; } InlayHintKind3.is = is; })(InlayHintKind2 || (InlayHintKind2 = {})); var InlayHintLabelPart; (function(InlayHintLabelPart2) { function create(value) { return { value }; } InlayHintLabelPart2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && (candidate.tooltip === undefined || Is.string(candidate.tooltip) || MarkupContent.is(candidate.tooltip)) && (candidate.location === undefined || Location.is(candidate.location)) && (candidate.command === undefined || Command.is(candidate.command)); } InlayHintLabelPart2.is = is; })(InlayHintLabelPart || (InlayHintLabelPart = {})); var InlayHint; (function(InlayHint2) { function create(position, label, kind) { const result = { position, label }; if (kind !== undefined) { result.kind = kind; } return result; } InlayHint2.create = create; function is(value) { const candidate = value; return Is.objectLiteral(candidate) && Position.is(candidate.position) && (Is.string(candidate.label) || Is.typedArray(candidate.label, InlayHintLabelPart.is)) && (candidate.kind === undefined || InlayHintKind2.is(candidate.kind)) && candidate.textEdits === undefined || Is.typedArray(candidate.textEdits, TextEdit.is) && (candidate.tooltip === undefined || Is.string(candidate.tooltip) || MarkupContent.is(candidate.tooltip)) && (candidate.paddingLeft === undefined || Is.boolean(candidate.paddingLeft)) && (candidate.paddingRight === undefined || Is.boolean(candidate.paddingRight)); } InlayHint2.is = is; })(InlayHint || (InlayHint = {})); var StringValue; (function(StringValue2) { function createSnippet(value) { return { kind: "snippet", value }; } StringValue2.createSnippet = createSnippet; function isSnippet(value) { const candidate = value; return Is.objectLiteral(candidate) && candidate.kind === "snippet" && Is.string(candidate.value); } StringValue2.isSnippet = isSnippet; })(StringValue || (StringValue = {})); var InlineCompletionItem; (function(InlineCompletionItem2) { function create(insertText, filterText, range, command) { return { insertText, filterText, range, command }; } InlineCompletionItem2.create = create; })(InlineCompletionItem || (InlineCompletionItem = {})); var InlineCompletionList; (function(InlineCompletionList2) { function create(items) { return { items }; } InlineCompletionList2.create = create; })(InlineCompletionList || (InlineCompletionList = {})); var InlineCompletionTriggerKind; (function(InlineCompletionTriggerKind2) { InlineCompletionTriggerKind2.Invoked = 1; InlineCompletionTriggerKind2.Automatic = 2; })(InlineCompletionTriggerKind || (InlineCompletionTriggerKind = {})); var SelectedCompletionInfo; (function(SelectedCompletionInfo2) { function create(range, text) { return { range, text }; } SelectedCompletionInfo2.create = create; })(SelectedCompletionInfo || (SelectedCompletionInfo = {})); var InlineCompletionContext; (function(InlineCompletionContext2) { function create(triggerKind, selectedCompletionInfo) { return { triggerKind, selectedCompletionInfo }; } InlineCompletionContext2.create = create; })(InlineCompletionContext || (InlineCompletionContext = {})); var WorkspaceFolder; (function(WorkspaceFolder2) { function is(value) { const candidate = value; return Is.objectLiteral(candidate) && URI.is(candidate.uri) && Is.string(candidate.name); } WorkspaceFolder2.is = is; })(WorkspaceFolder || (WorkspaceFolder = {})); var TextDocument; (function(TextDocument2) { function create(uri, languageId, version, content) { return new FullTextDocument(uri, languageId, version, content); } TextDocument2.create = create; function is(value) { const candidate = value; return Is.defined(candidate) && Is.string(candidate.uri) && (Is.undefined(candidate.languageId) || Is.string(candidate.languageId)) && Is.uinteger(candidate.lineCount) && Is.func(candidate.getText) && Is.func(candidate.positionAt) && Is.func(candidate.offsetAt) ? true : false; } TextDocument2.is = is; function applyEdits(document, edits) { let text = document.getText(); const sortedEdits = mergeSort(edits, (a, b) => { const diff = a.range.start.line - b.range.start.line; if (diff === 0) { return a.range.start.character - b.range.start.character; } return diff; }); let lastModifiedOffset = text.length; for (let i = sortedEdits.length - 1;i >= 0; i--) { const e = sortedEdits[i]; const startOffset = document.offsetAt(e.range.start); const endOffset = document.offsetAt(e.range.end); if (endOffset <= lastModifiedOffset) { text = text.substring(0, startOffset) + e.newText + text.substring(endOffset, text.length); } else { throw new Error("Overlapping edit"); } lastModifiedOffset = startOffset; } return text; } TextDocument2.applyEdits = applyEdits; function mergeSort(data, compare) { if (data.length <= 1) { return data; } const p = data.length / 2 | 0; const left = data.slice(0, p); const right = data.slice(p); mergeSort(left, compare); mergeSort(right, compare); let leftIdx = 0; let rightIdx = 0; let i = 0; while (leftIdx < left.length && rightIdx < right.length) { const ret = compare(left[leftIdx], right[rightIdx]); if (ret <= 0) { data[i++] = left[leftIdx++]; } else { data[i++] = right[rightIdx++]; } } while (leftIdx < left.length) { data[i++] = left[leftIdx++]; } while (rightIdx < right.length) { data[i++] = right[rightIdx++]; } return data; } })(TextDocument || (TextDocument = {})); class FullTextDocument { constructor(uri, languageId, version, content) { this._uri = uri; this._languageId = languageId; this._version = version; this._content = content; this._lineOffsets = undefined; } get uri() { return this._uri; } get languageId() { return this._languageId; } get version() { return this._version; } getText(range) { if (range) { const start = this.offsetAt(range.start); const end = this.offsetAt(range.end); return this._content.substring(start, end); } return this._content; } update(event, version) { this._content = event.text; this._version = version; this._lineOffsets = undefined; } getLineOffsets() { if (this._lineOffsets === undefined) { const lineOffsets = []; const text = this._content; let isLineStart = true; for (let i = 0;i < text.length; i++) { if (isLineStart) { lineOffsets.push(i); isLineStart = false; } const ch = text.charAt(i); isLineStart = ch === "\r" || ch === ` `; if (ch === "\r" && i + 1 < text.length && text.charAt(i + 1) === ` `) { i++; } } if (isLineStart && text.length > 0) { lineOffsets.push(text.length); } this._lineOffsets = lineOffsets; } return this._lineOffsets; } positionAt(offset) { offset = Math.max(Math.min(offset, this._content.length), 0); const lineOffsets = this.getLineOffsets(); let low = 0, high = lineOffsets.length; if (high === 0) { return Position.create(0, offset); } while (low < high) { const mid = Math.floor((low + high) / 2); if (lineOffsets[mid] > offset) { high = mid; } else { low = mid + 1; } } const line = low - 1; return Position.create(line, offset - lineOffsets[line]); } offsetAt(position) { const lineOffsets = this.getLineOffsets(); if (position.line >= lineOffsets.length) { return this._content.length; } else if (position.line < 0) { return 0; } const lineOffset = lineOffsets[position.line]; const nextLineOffset = position.line + 1 < lineOffsets.length ? lineOffsets[position.line + 1] : this._content.length; return Math.max(Math.min(lineOffset + position.character, nextLineOffset), lineOffset); } get lineCount() { return this.getLineOffsets().length; } } var Is; (function(Is2) { const toString = Object.prototype.toString; function defined(value) { return typeof value !== "undefined"; } Is2.defined = defined; function undefined2(value) { return typeof value === "undefined"; } Is2.undefined = undefined2; function boolean(value) { return value === true || value === false; } Is2.boolean = boolean; function string(value) { return toString.call(value) === "[object String]"; } Is2.string = string; function number(value) { return toString.call(value) === "[object Number]"; } Is2.number = number; function numberRange(value, min, max) { return toString.call(value) === "[object Number]" && min <= value && value <= max; } Is2.numberRange = numberRange; function integer2(value) { return toString.call(value) === "[object Number]" && -2147483648 <= value && value <= 2147483647; } Is2.integer = integer2; function uinteger2(value) { return toString.call(value) === "[object Number]" && 0 <= value && value <= 2147483647; } Is2.uinteger = uinteger2; function func(value) { return toString.call(value) === "[object Function]"; } Is2.func = func; function objectLiteral(value) { return value !== null && typeof value === "object"; } Is2.objectLiteral = objectLiteral; function typedArray(value, check) { return Array.isArray(value) && value.every(check); } Is2.typedArray = typedArray; })(Is || (Is = {})); // node_modules/.bun/vscode-languageserver-textdocument@1.0.12/node_modules/vscode-languageserver-textdocument/lib/esm/main.js class FullTextDocument2 { constructor(uri, languageId, version, content) { this._uri = uri; this._languageId = languageId; this._version = version; this._content = content; this._lineOffsets = undefined; } get uri() { return this._uri; } get languageId() { return this._languageId; } get version() { return this._version; } getText(range) { if (range) { const start = this.offsetAt(range.start); const end = this.offsetAt(range.end); return this._content.substring(start, end); } return this._content; } update(changes, version) { for (const change of changes) { if (FullTextDocument2.isIncremental(change)) { const range = getWellformedRange(change.range); const startOffset = this.offsetAt(range.start); const endOffset = this.offsetAt(range.end); this._content = this._content.substring(0, startOffset) + change.text + this._content.substring(endOffset, this._content.length); const startLine = Math.max(range.start.line, 0); const endLine = Math.max(range.end.line, 0); let lineOffsets = this._lineOffsets; const addedLineOffsets = computeLineOffsets(change.text, false, startOffset); if (endLine - startLine === addedLineOffsets.length) { for (let i = 0, len = addedLineOffsets.length;i < len; i++) { lineOffsets[i + startLine + 1] = addedLineOffsets[i]; } } else { if (addedLineOffsets.length < 1e4) { lineOffsets.splice(startLine + 1, endLine - startLine, ...addedLineOffsets); } else { this._lineOffsets = lineOffsets = lineOffsets.slice(0, startLine + 1).concat(addedLineOffsets, lineOffsets.slice(endLine + 1)); } } const diff = change.text.length - (endOffset - startOffset); if (diff !== 0) { for (let i = startLine + 1 + addedLineOffsets.length, len = lineOffsets.length;i < len; i++) { lineOffsets[i] = lineOffsets[i] + diff; } } } else if (FullTextDocument2.isFull(change)) { this._content = change.text; this._lineOffsets = undefined; } else { throw new Error("Unknown change event received"); } } this._version = version; } getLineOffsets() { if (this._lineOffsets === undefined) { this._lineOffsets = computeLineOffsets(this._content, true); } return this._lineOffsets; } positionAt(offset) { offset = Math.max(Math.min(offset, this._content.length), 0); const lineOffsets = this.getLineOffsets(); let low = 0, high = lineOffsets.length; if (high === 0) { return { line: 0, character: offset }; } while (low < high) { const mid = Math.floor((low + high) / 2); if (lineOffsets[mid] > offset) { high = mid; } else { low = mid + 1; } } const line = low - 1; offset = this.ensureBeforeEOL(offset, lineOffsets[line]); return { line, character: offset - lineOffsets[line] }; } offsetAt(position) { const lineOffsets = this.getLineOffsets(); if (position.line >= lineOffsets.length) { return this._content.length; } else if (position.line < 0) { return 0; } const lineOffset = lineOffsets[position.line]; if (position.character <= 0) { return lineOffset; } const nextLineOffset = position.line + 1 < lineOffsets.length ? lineOffsets[position.line + 1] : this._content.length; const offset = Math.min(lineOffset + position.character, nextLineOffset); return this.ensureBeforeEOL(offset, lineOffset); } ensureBeforeEOL(offset, lineOffset) { while (offset > lineOffset && isEOL(this._content.charCodeAt(offset - 1))) { offset--; } return offset; } get lineCount() { return this.getLineOffsets().length; } static isIncremental(event) { const candidate = event; return candidate !== undefined && candidate !== null && typeof candidate.text === "string" && candidate.range !== undefined && (candidate.rangeLength === undefined || typeof candidate.rangeLength === "number"); } static isFull(event) { const candidate = event; return candidate !== undefined && candidate !== null && typeof candidate.text === "string" && candidate.range === undefined && candidate.rangeLength === undefined; } } var TextDocument2; (function(TextDocument3) { function create(uri, languageId, version, content) { return new FullTextDocument2(uri, languageId, version, content); } TextDocument3.create = create; function update(document, changes, version) { if (document instanceof FullTextDocument2) { document.update(changes, version); return document; } else { throw new Error("TextDocument.update: document must be created by TextDocument.create"); } } TextDocument3.update = update; function applyEdits(document, edits) { const text = document.getText(); const sortedEdits = mergeSort(edits.map(getWellformedEdit), (a, b) => { const diff = a.range.start.line - b.range.start.line; if (diff === 0) { return a.range.start.character - b.range.start.character; } return diff; }); let lastModifiedOffset = 0; const spans = []; for (const e of sortedEdits) { const startOffset = document.offsetAt(e.range.start); if (startOffset < lastModifiedOffset) { throw new Error("Overlapping edit"); } else if (startOffset > lastModifiedOffset) { spans.push(text.substring(lastModifiedOffset, startOffset)); } if (e.newText.length) { spans.push(e.newText); } lastModifiedOffset = document.offsetAt(e.range.end); } spans.push(text.substr(lastModifiedOffset)); return spans.join(""); } TextDocument3.applyEdits = applyEdits; })(TextDocument2 || (TextDocument2 = {})); function mergeSort(data, compare) { if (data.length <= 1) { return data; } const p = data.length / 2 | 0; const left = data.slice(0, p); const right = data.slice(p); mergeSort(left, compare); mergeSort(right, compare); let leftIdx = 0; let rightIdx = 0; let i = 0; while (leftIdx < left.length && rightIdx < right.length) { const ret = compare(left[leftIdx], right[rightIdx]); if (ret <= 0) { data[i++] = left[leftIdx++]; } else { data[i++] = right[rightIdx++]; } } while (leftIdx < left.length) { data[i++] = left[leftIdx++]; } while (rightIdx < right.length) { data[i++] = right[rightIdx++]; } return data; } function computeLineOffsets(text, isAtLineStart, textOffset = 0) { const result = isAtLineStart ? [textOffset] : []; for (let i = 0;i < text.length; i++) { const ch = text.charCodeAt(i); if (isEOL(ch)) { if (ch === 13 && i + 1 < text.length && text.charCodeAt(i + 1) === 10) { i++; } result.push(textOffset + i + 1); } } return result; } function isEOL(char) { return char === 13 || char === 10; } function getWellformedRange(range) { const start = range.start; const end = range.end; if (start.line > end.line || start.line === end.line && start.character > end.character) { return { start: end, end: start }; } return range; } function getWellformedEdit(textEdit) { const range = getWellformedRange(textEdit.range); if (range !== textEdit.range) { return { newText: textEdit.newText, range }; } return textEdit; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/htmlLanguageTypes.js var TokenType; (function(TokenType2) { TokenType2[TokenType2["StartCommentTag"] = 0] = "StartCommentTag"; TokenType2[TokenType2["Comment"] = 1] = "Comment"; TokenType2[TokenType2["EndCommentTag"] = 2] = "EndCommentTag"; TokenType2[TokenType2["StartTagOpen"] = 3] = "StartTagOpen"; TokenType2[TokenType2["StartTagClose"] = 4] = "StartTagClose"; TokenType2[TokenType2["StartTagSelfClose"] = 5] = "StartTagSelfClose"; TokenType2[TokenType2["StartTag"] = 6] = "StartTag"; TokenType2[TokenType2["EndTagOpen"] = 7] = "EndTagOpen"; TokenType2[TokenType2["EndTagClose"] = 8] = "EndTagClose"; TokenType2[TokenType2["EndTag"] = 9] = "EndTag"; TokenType2[TokenType2["DelimiterAssign"] = 10] = "DelimiterAssign"; TokenType2[TokenType2["AttributeName"] = 11] = "AttributeName"; TokenType2[TokenType2["AttributeValue"] = 12] = "AttributeValue"; TokenType2[TokenType2["StartDoctypeTag"] = 13] = "StartDoctypeTag"; TokenType2[TokenType2["Doctype"] = 14] = "Doctype"; TokenType2[TokenType2["EndDoctypeTag"] = 15] = "EndDoctypeTag"; TokenType2[TokenType2["Content"] = 16] = "Content"; TokenType2[TokenType2["Whitespace"] = 17] = "Whitespace"; TokenType2[TokenType2["Unknown"] = 18] = "Unknown"; TokenType2[TokenType2["Script"] = 19] = "Script"; TokenType2[TokenType2["Styles"] = 20] = "Styles"; TokenType2[TokenType2["EOS"] = 21] = "EOS"; })(TokenType || (TokenType = {})); var ScannerState; (function(ScannerState2) { ScannerState2[ScannerState2["WithinContent"] = 0] = "WithinContent"; ScannerState2[ScannerState2["AfterOpeningStartTag"] = 1] = "AfterOpeningStartTag"; ScannerState2[ScannerState2["AfterOpeningEndTag"] = 2] = "AfterOpeningEndTag"; ScannerState2[ScannerState2["WithinDoctype"] = 3] = "WithinDoctype"; ScannerState2[ScannerState2["WithinTag"] = 4] = "WithinTag"; ScannerState2[ScannerState2["WithinEndTag"] = 5] = "WithinEndTag"; ScannerState2[ScannerState2["WithinComment"] = 6] = "WithinComment"; ScannerState2[ScannerState2["WithinScriptContent"] = 7] = "WithinScriptContent"; ScannerState2[ScannerState2["WithinStyleContent"] = 8] = "WithinStyleContent"; ScannerState2[ScannerState2["AfterAttributeName"] = 9] = "AfterAttributeName"; ScannerState2[ScannerState2["BeforeAttributeValue"] = 10] = "BeforeAttributeValue"; })(ScannerState || (ScannerState = {})); var ClientCapabilities; (function(ClientCapabilities2) { ClientCapabilities2.LATEST = { textDocument: { completion: { completionItem: { documentationFormat: [MarkupKind.Markdown, MarkupKind.PlainText] } }, hover: { contentFormat: [MarkupKind.Markdown, MarkupKind.PlainText] } } }; })(ClientCapabilities || (ClientCapabilities = {})); var FileType; (function(FileType2) { FileType2[FileType2["Unknown"] = 0] = "Unknown"; FileType2[FileType2["File"] = 1] = "File"; FileType2[FileType2["Directory"] = 2] = "Directory"; FileType2[FileType2["SymbolicLink"] = 64] = "SymbolicLink"; })(FileType || (FileType = {})); // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/parser/htmlScanner.js class MultiLineStream { constructor(source, position) { this.source = source; this.len = source.length; this.position = position; } eos() { return this.len <= this.position; } getSource() { return this.source; } pos() { return this.position; } goBackTo(pos) { this.position = pos; } goBack(n) { this.position -= n; } advance(n) { this.position += n; } goToEnd() { this.position = this.source.length; } nextChar() { return this.source.charCodeAt(this.position++) || 0; } peekChar(n = 0) { return this.source.charCodeAt(this.position + n) || 0; } advanceIfChar(ch) { if (ch === this.source.charCodeAt(this.position)) { this.position++; return true; } return false; } advanceIfChars(ch) { let i; if (this.position + ch.length > this.source.length) { return false; } for (i = 0;i < ch.length; i++) { if (this.source.charCodeAt(this.position + i) !== ch[i]) { return false; } } this.advance(i); return true; } advanceIfRegExp(regex) { const str = this.source.substr(this.position); const match = str.match(regex); if (match) { this.position = this.position + match.index + match[0].length; return match[0]; } return ""; } advanceUntilRegExp(regex) { const str = this.source.substr(this.position); const match = str.match(regex); if (match) { this.position = this.position + match.index; return match[0]; } else { this.goToEnd(); } return ""; } advanceUntilChar(ch) { while (this.position < this.source.length) { if (this.source.charCodeAt(this.position) === ch) { return true; } this.advance(1); } return false; } advanceUntilChars(ch) { while (this.position + ch.length <= this.source.length) { let i = 0; for (;i < ch.length && this.source.charCodeAt(this.position + i) === ch[i]; i++) {} if (i === ch.length) { return true; } this.advance(1); } this.goToEnd(); return false; } skipWhitespace() { const n = this.advanceWhileChar((ch) => { return ch === _WSP || ch === _TAB || ch === _NWL || ch === _LFD || ch === _CAR; }); return n > 0; } advanceWhileChar(condition) { const posNow = this.position; while (this.position < this.len && condition(this.source.charCodeAt(this.position))) { this.position++; } return this.position - posNow; } } var _BNG = 33; var _MIN = 45; var _LAN = 60; var _RAN = 62; var _FSL = 47; var _EQS = 61; var _DQO = 34; var _SQO = 39; var _NWL = 10; var _CAR = 13; var _LFD = 12; var _WSP = 32; var _TAB = 9; var htmlScriptContents = { "text/x-handlebars-template": true, "text/html": true }; function createScanner(input, initialOffset = 0, initialState = ScannerState.WithinContent, emitPseudoCloseTags = false) { const stream = new MultiLineStream(input, initialOffset); let state = initialState; let tokenOffset = 0; let tokenType = TokenType.Unknown; let tokenError; let hasSpaceAfterTag; let lastTag; let lastAttributeName; let lastTypeValue; function nextElementName() { return stream.advanceIfRegExp(/^[_:\w][_:\w-.\d]*/).toLowerCase(); } function nextAttributeName() { return stream.advanceIfRegExp(/^[^\s"'> 0) { state = ScannerState.WithinEndTag; return finishToken(offset, TokenType.EndTag); } if (stream.skipWhitespace()) { return finishToken(offset, TokenType.Whitespace, l10n.t("Tag name must directly follow the open bracket.")); } state = ScannerState.WithinEndTag; stream.advanceUntilChar(_RAN); if (offset < stream.pos()) { return finishToken(offset, TokenType.Unknown, l10n.t("End tag name expected.")); } return internalScan(); case ScannerState.WithinEndTag: if (stream.skipWhitespace()) { return finishToken(offset, TokenType.Whitespace); } if (stream.advanceIfChar(_RAN)) { state = ScannerState.WithinContent; return finishToken(offset, TokenType.EndTagClose); } if (emitPseudoCloseTags && stream.peekChar() === _LAN) { state = ScannerState.WithinContent; return finishToken(offset, TokenType.EndTagClose, l10n.t("Closing bracket missing.")); } errorMessage = l10n.t("Closing bracket expected."); break; case ScannerState.AfterOpeningStartTag: lastTag = nextElementName(); lastTypeValue = undefined; lastAttributeName = undefined; if (lastTag.length > 0) { hasSpaceAfterTag = false; state = ScannerState.WithinTag; return finishToken(offset, TokenType.StartTag); } if (stream.skipWhitespace()) { return finishToken(offset, TokenType.Whitespace, l10n.t("Tag name must directly follow the open bracket.")); } state = ScannerState.WithinTag; stream.advanceUntilChar(_RAN); if (offset < stream.pos()) { return finishToken(offset, TokenType.Unknown, l10n.t("Start tag name expected.")); } return internalScan(); case ScannerState.WithinTag: if (stream.skipWhitespace()) { hasSpaceAfterTag = true; return finishToken(offset, TokenType.Whitespace); } if (hasSpaceAfterTag) { lastAttributeName = nextAttributeName(); if (lastAttributeName.length > 0) { state = ScannerState.AfterAttributeName; hasSpaceAfterTag = false; return finishToken(offset, TokenType.AttributeName); } } if (stream.advanceIfChars([_FSL, _RAN])) { state = ScannerState.WithinContent; return finishToken(offset, TokenType.StartTagSelfClose); } if (stream.advanceIfChar(_RAN)) { if (lastTag === "script") { if (lastTypeValue && htmlScriptContents[lastTypeValue]) { state = ScannerState.WithinContent; } else { state = ScannerState.WithinScriptContent; } } else if (lastTag === "style") { state = ScannerState.WithinStyleContent; } else { state = ScannerState.WithinContent; } return finishToken(offset, TokenType.StartTagClose); } if (emitPseudoCloseTags && stream.peekChar() === _LAN) { state = ScannerState.WithinContent; return finishToken(offset, TokenType.StartTagClose, l10n.t("Closing bracket missing.")); } stream.advance(1); return finishToken(offset, TokenType.Unknown, l10n.t("Unexpected character in tag.")); case ScannerState.AfterAttributeName: if (stream.skipWhitespace()) { hasSpaceAfterTag = true; return finishToken(offset, TokenType.Whitespace); } if (stream.advanceIfChar(_EQS)) { state = ScannerState.BeforeAttributeValue; return finishToken(offset, TokenType.DelimiterAssign); } state = ScannerState.WithinTag; return internalScan(); case ScannerState.BeforeAttributeValue: if (stream.skipWhitespace()) { return finishToken(offset, TokenType.Whitespace); } let attributeValue = stream.advanceIfRegExp(/^[^\s"'`=<>]+/); if (attributeValue.length > 0) { if (stream.peekChar() === _RAN && stream.peekChar(-1) === _FSL) { stream.goBack(1); attributeValue = attributeValue.substring(0, attributeValue.length - 1); } if (lastAttributeName === "type") { lastTypeValue = attributeValue; } if (attributeValue.length > 0) { state = ScannerState.WithinTag; hasSpaceAfterTag = false; return finishToken(offset, TokenType.AttributeValue); } } const ch = stream.peekChar(); if (ch === _SQO || ch === _DQO) { stream.advance(1); if (stream.advanceUntilChar(ch)) { stream.advance(1); } if (lastAttributeName === "type") { lastTypeValue = stream.getSource().substring(offset + 1, stream.pos() - 1); } state = ScannerState.WithinTag; hasSpaceAfterTag = false; return finishToken(offset, TokenType.AttributeValue); } state = ScannerState.WithinTag; hasSpaceAfterTag = false; return internalScan(); case ScannerState.WithinScriptContent: let sciptState = 1; while (!stream.eos()) { const match = stream.advanceIfRegExp(/|<\/?script\s*\/?>?/i); if (match.length === 0) { stream.goToEnd(); return finishToken(offset, TokenType.Script); } else if (match === "") { sciptState = 1; } else if (match[1] !== "/") { if (sciptState === 2) { sciptState = 3; } } else { if (sciptState === 3) { sciptState = 2; } else { stream.goBack(match.length); break; } } } state = ScannerState.WithinContent; if (offset < stream.pos()) { return finishToken(offset, TokenType.Script); } return internalScan(); case ScannerState.WithinStyleContent: stream.advanceUntilRegExp(/<\/style/i); state = ScannerState.WithinContent; if (offset < stream.pos()) { return finishToken(offset, TokenType.Styles); } return internalScan(); } stream.advance(1); state = ScannerState.WithinContent; return finishToken(offset, TokenType.Unknown, errorMessage); } return { scan, getTokenType: () => tokenType, getTokenOffset: () => tokenOffset, getTokenLength: () => stream.pos() - tokenOffset, getTokenEnd: () => stream.pos(), getTokenText: () => stream.getSource().substring(tokenOffset, stream.pos()), getScannerState: () => state, getTokenError: () => tokenError }; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/utils/arrays.js function findFirst(array, p) { let low = 0, high = array.length; if (high === 0) { return 0; } while (low < high) { let mid = Math.floor((low + high) / 2); if (p(array[mid])) { high = mid; } else { low = mid + 1; } } return low; } function binarySearch(array, key, comparator) { let low = 0, high = array.length - 1; while (low <= high) { const mid = (low + high) / 2 | 0; const comp = comparator(array[mid], key); if (comp < 0) { low = mid + 1; } else if (comp > 0) { high = mid - 1; } else { return mid; } } return -(low + 1); } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/parser/htmlParser.js class Node { get attributeNames() { return this.attributes ? Object.keys(this.attributes) : []; } constructor(start, end, children, parent) { this.start = start; this.end = end; this.children = children; this.parent = parent; this.closed = false; } isSameTag(tagInLowerCase) { if (this.tag === undefined) { return tagInLowerCase === undefined; } else { return tagInLowerCase !== undefined && this.tag.length === tagInLowerCase.length && this.tag.toLowerCase() === tagInLowerCase; } } get firstChild() { return this.children[0]; } get lastChild() { return this.children.length ? this.children[this.children.length - 1] : undefined; } findNodeBefore(offset) { const idx = findFirst(this.children, (c) => offset <= c.start) - 1; if (idx >= 0) { const child = this.children[idx]; if (offset > child.start) { if (offset < child.end) { return child.findNodeBefore(offset); } const lastChild = child.lastChild; if (lastChild && lastChild.end === child.end) { return child.findNodeBefore(offset); } return child; } } return this; } findNodeAt(offset) { const idx = findFirst(this.children, (c) => offset <= c.start) - 1; if (idx >= 0) { const child = this.children[idx]; if (offset > child.start && offset <= child.end) { return child.findNodeAt(offset); } } return this; } } class HTMLParser { constructor(dataManager) { this.dataManager = dataManager; } parseDocument(document) { return this.parse(document.getText(), this.dataManager.getVoidElements(document.languageId)); } parse(text, voidElements) { const scanner = createScanner(text, undefined, undefined, true); const htmlDocument = new Node(0, text.length, [], undefined); let curr = htmlDocument; let endTagStart = -1; let endTagName = undefined; let pendingAttribute = null; let token = scanner.scan(); while (token !== TokenType.EOS) { switch (token) { case TokenType.StartTagOpen: const child = new Node(scanner.getTokenOffset(), text.length, [], curr); curr.children.push(child); curr = child; break; case TokenType.StartTag: curr.tag = scanner.getTokenText(); break; case TokenType.StartTagClose: if (curr.parent) { curr.end = scanner.getTokenEnd(); if (scanner.getTokenLength()) { curr.startTagEnd = scanner.getTokenEnd(); if (curr.tag && this.dataManager.isVoidElement(curr.tag, voidElements)) { curr.closed = true; curr = curr.parent; } } else { curr = curr.parent; } } break; case TokenType.StartTagSelfClose: if (curr.parent) { curr.closed = true; curr.end = scanner.getTokenEnd(); curr.startTagEnd = scanner.getTokenEnd(); curr = curr.parent; } break; case TokenType.EndTagOpen: endTagStart = scanner.getTokenOffset(); endTagName = undefined; break; case TokenType.EndTag: endTagName = scanner.getTokenText().toLowerCase(); break; case TokenType.EndTagClose: let node = curr; while (!node.isSameTag(endTagName) && node.parent) { node = node.parent; } if (node.parent) { while (curr !== node) { curr.end = endTagStart; curr.closed = false; curr = curr.parent; } curr.closed = true; curr.endTagStart = endTagStart; curr.end = scanner.getTokenEnd(); curr = curr.parent; } break; case TokenType.AttributeName: { pendingAttribute = scanner.getTokenText(); let attributes = curr.attributes; if (!attributes) { curr.attributes = attributes = {}; } attributes[pendingAttribute] = null; break; } case TokenType.AttributeValue: { const value = scanner.getTokenText(); const attributes = curr.attributes; if (attributes && pendingAttribute) { attributes[pendingAttribute] = value; pendingAttribute = null; } break; } } token = scanner.scan(); } while (curr.parent) { curr.end = text.length; curr.closed = false; curr = curr.parent; } return { roots: htmlDocument.children, findNodeBefore: htmlDocument.findNodeBefore.bind(htmlDocument), findNodeAt: htmlDocument.findNodeAt.bind(htmlDocument) }; } } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/parser/htmlEntities.js var entities = { "Aacute;": "Á", Aacute: "Á", "aacute;": "á", aacute: "á", "Abreve;": "Ă", "abreve;": "ă", "ac;": "∾", "acd;": "∿", "acE;": "∾̳", "Acirc;": "Â", Acirc: "Â", "acirc;": "â", acirc: "â", "acute;": "´", acute: "´", "Acy;": "А", "acy;": "а", "AElig;": "Æ", AElig: "Æ", "aelig;": "æ", aelig: "æ", "af;": "⁡", "Afr;": "\uD835\uDD04", "afr;": "\uD835\uDD1E", "Agrave;": "À", Agrave: "À", "agrave;": "à", agrave: "à", "alefsym;": "ℵ", "aleph;": "ℵ", "Alpha;": "Α", "alpha;": "α", "Amacr;": "Ā", "amacr;": "ā", "amalg;": "⨿", "AMP;": "&", AMP: "&", "amp;": "&", amp: "&", "And;": "⩓", "and;": "∧", "andand;": "⩕", "andd;": "⩜", "andslope;": "⩘", "andv;": "⩚", "ang;": "∠", "ange;": "⦤", "angle;": "∠", "angmsd;": "∡", "angmsdaa;": "⦨", "angmsdab;": "⦩", "angmsdac;": "⦪", "angmsdad;": "⦫", "angmsdae;": "⦬", "angmsdaf;": "⦭", "angmsdag;": "⦮", "angmsdah;": "⦯", "angrt;": "∟", "angrtvb;": "⊾", "angrtvbd;": "⦝", "angsph;": "∢", "angst;": "Å", "angzarr;": "⍼", "Aogon;": "Ą", "aogon;": "ą", "Aopf;": "\uD835\uDD38", "aopf;": "\uD835\uDD52", "ap;": "≈", "apacir;": "⩯", "apE;": "⩰", "ape;": "≊", "apid;": "≋", "apos;": "'", "ApplyFunction;": "⁡", "approx;": "≈", "approxeq;": "≊", "Aring;": "Å", Aring: "Å", "aring;": "å", aring: "å", "Ascr;": "\uD835\uDC9C", "ascr;": "\uD835\uDCB6", "Assign;": "≔", "ast;": "*", "asymp;": "≈", "asympeq;": "≍", "Atilde;": "Ã", Atilde: "Ã", "atilde;": "ã", atilde: "ã", "Auml;": "Ä", Auml: "Ä", "auml;": "ä", auml: "ä", "awconint;": "∳", "awint;": "⨑", "backcong;": "≌", "backepsilon;": "϶", "backprime;": "‵", "backsim;": "∽", "backsimeq;": "⋍", "Backslash;": "∖", "Barv;": "⫧", "barvee;": "⊽", "Barwed;": "⌆", "barwed;": "⌅", "barwedge;": "⌅", "bbrk;": "⎵", "bbrktbrk;": "⎶", "bcong;": "≌", "Bcy;": "Б", "bcy;": "б", "bdquo;": "„", "becaus;": "∵", "Because;": "∵", "because;": "∵", "bemptyv;": "⦰", "bepsi;": "϶", "bernou;": "ℬ", "Bernoullis;": "ℬ", "Beta;": "Β", "beta;": "β", "beth;": "ℶ", "between;": "≬", "Bfr;": "\uD835\uDD05", "bfr;": "\uD835\uDD1F", "bigcap;": "⋂", "bigcirc;": "◯", "bigcup;": "⋃", "bigodot;": "⨀", "bigoplus;": "⨁", "bigotimes;": "⨂", "bigsqcup;": "⨆", "bigstar;": "★", "bigtriangledown;": "▽", "bigtriangleup;": "△", "biguplus;": "⨄", "bigvee;": "⋁", "bigwedge;": "⋀", "bkarow;": "⤍", "blacklozenge;": "⧫", "blacksquare;": "▪", "blacktriangle;": "▴", "blacktriangledown;": "▾", "blacktriangleleft;": "◂", "blacktriangleright;": "▸", "blank;": "␣", "blk12;": "▒", "blk14;": "░", "blk34;": "▓", "block;": "█", "bne;": "=⃥", "bnequiv;": "≡⃥", "bNot;": "⫭", "bnot;": "⌐", "Bopf;": "\uD835\uDD39", "bopf;": "\uD835\uDD53", "bot;": "⊥", "bottom;": "⊥", "bowtie;": "⋈", "boxbox;": "⧉", "boxDL;": "╗", "boxDl;": "╖", "boxdL;": "╕", "boxdl;": "┐", "boxDR;": "╔", "boxDr;": "╓", "boxdR;": "╒", "boxdr;": "┌", "boxH;": "═", "boxh;": "─", "boxHD;": "╦", "boxHd;": "╤", "boxhD;": "╥", "boxhd;": "┬", "boxHU;": "╩", "boxHu;": "╧", "boxhU;": "╨", "boxhu;": "┴", "boxminus;": "⊟", "boxplus;": "⊞", "boxtimes;": "⊠", "boxUL;": "╝", "boxUl;": "╜", "boxuL;": "╛", "boxul;": "┘", "boxUR;": "╚", "boxUr;": "╙", "boxuR;": "╘", "boxur;": "└", "boxV;": "║", "boxv;": "│", "boxVH;": "╬", "boxVh;": "╫", "boxvH;": "╪", "boxvh;": "┼", "boxVL;": "╣", "boxVl;": "╢", "boxvL;": "╡", "boxvl;": "┤", "boxVR;": "╠", "boxVr;": "╟", "boxvR;": "╞", "boxvr;": "├", "bprime;": "‵", "Breve;": "˘", "breve;": "˘", "brvbar;": "¦", brvbar: "¦", "Bscr;": "ℬ", "bscr;": "\uD835\uDCB7", "bsemi;": "⁏", "bsim;": "∽", "bsime;": "⋍", "bsol;": "\\", "bsolb;": "⧅", "bsolhsub;": "⟈", "bull;": "•", "bullet;": "•", "bump;": "≎", "bumpE;": "⪮", "bumpe;": "≏", "Bumpeq;": "≎", "bumpeq;": "≏", "Cacute;": "Ć", "cacute;": "ć", "Cap;": "⋒", "cap;": "∩", "capand;": "⩄", "capbrcup;": "⩉", "capcap;": "⩋", "capcup;": "⩇", "capdot;": "⩀", "CapitalDifferentialD;": "ⅅ", "caps;": "∩︀", "caret;": "⁁", "caron;": "ˇ", "Cayleys;": "ℭ", "ccaps;": "⩍", "Ccaron;": "Č", "ccaron;": "č", "Ccedil;": "Ç", Ccedil: "Ç", "ccedil;": "ç", ccedil: "ç", "Ccirc;": "Ĉ", "ccirc;": "ĉ", "Cconint;": "∰", "ccups;": "⩌", "ccupssm;": "⩐", "Cdot;": "Ċ", "cdot;": "ċ", "cedil;": "¸", cedil: "¸", "Cedilla;": "¸", "cemptyv;": "⦲", "cent;": "¢", cent: "¢", "CenterDot;": "·", "centerdot;": "·", "Cfr;": "ℭ", "cfr;": "\uD835\uDD20", "CHcy;": "Ч", "chcy;": "ч", "check;": "✓", "checkmark;": "✓", "Chi;": "Χ", "chi;": "χ", "cir;": "○", "circ;": "ˆ", "circeq;": "≗", "circlearrowleft;": "↺", "circlearrowright;": "↻", "circledast;": "⊛", "circledcirc;": "⊚", "circleddash;": "⊝", "CircleDot;": "⊙", "circledR;": "®", "circledS;": "Ⓢ", "CircleMinus;": "⊖", "CirclePlus;": "⊕", "CircleTimes;": "⊗", "cirE;": "⧃", "cire;": "≗", "cirfnint;": "⨐", "cirmid;": "⫯", "cirscir;": "⧂", "ClockwiseContourIntegral;": "∲", "CloseCurlyDoubleQuote;": "”", "CloseCurlyQuote;": "’", "clubs;": "♣", "clubsuit;": "♣", "Colon;": "∷", "colon;": ":", "Colone;": "⩴", "colone;": "≔", "coloneq;": "≔", "comma;": ",", "commat;": "@", "comp;": "∁", "compfn;": "∘", "complement;": "∁", "complexes;": "ℂ", "cong;": "≅", "congdot;": "⩭", "Congruent;": "≡", "Conint;": "∯", "conint;": "∮", "ContourIntegral;": "∮", "Copf;": "ℂ", "copf;": "\uD835\uDD54", "coprod;": "∐", "Coproduct;": "∐", "COPY;": "©", COPY: "©", "copy;": "©", copy: "©", "copysr;": "℗", "CounterClockwiseContourIntegral;": "∳", "crarr;": "↵", "Cross;": "⨯", "cross;": "✗", "Cscr;": "\uD835\uDC9E", "cscr;": "\uD835\uDCB8", "csub;": "⫏", "csube;": "⫑", "csup;": "⫐", "csupe;": "⫒", "ctdot;": "⋯", "cudarrl;": "⤸", "cudarrr;": "⤵", "cuepr;": "⋞", "cuesc;": "⋟", "cularr;": "↶", "cularrp;": "⤽", "Cup;": "⋓", "cup;": "∪", "cupbrcap;": "⩈", "CupCap;": "≍", "cupcap;": "⩆", "cupcup;": "⩊", "cupdot;": "⊍", "cupor;": "⩅", "cups;": "∪︀", "curarr;": "↷", "curarrm;": "⤼", "curlyeqprec;": "⋞", "curlyeqsucc;": "⋟", "curlyvee;": "⋎", "curlywedge;": "⋏", "curren;": "¤", curren: "¤", "curvearrowleft;": "↶", "curvearrowright;": "↷", "cuvee;": "⋎", "cuwed;": "⋏", "cwconint;": "∲", "cwint;": "∱", "cylcty;": "⌭", "Dagger;": "‡", "dagger;": "†", "daleth;": "ℸ", "Darr;": "↡", "dArr;": "⇓", "darr;": "↓", "dash;": "‐", "Dashv;": "⫤", "dashv;": "⊣", "dbkarow;": "⤏", "dblac;": "˝", "Dcaron;": "Ď", "dcaron;": "ď", "Dcy;": "Д", "dcy;": "д", "DD;": "ⅅ", "dd;": "ⅆ", "ddagger;": "‡", "ddarr;": "⇊", "DDotrahd;": "⤑", "ddotseq;": "⩷", "deg;": "°", deg: "°", "Del;": "∇", "Delta;": "Δ", "delta;": "δ", "demptyv;": "⦱", "dfisht;": "⥿", "Dfr;": "\uD835\uDD07", "dfr;": "\uD835\uDD21", "dHar;": "⥥", "dharl;": "⇃", "dharr;": "⇂", "DiacriticalAcute;": "´", "DiacriticalDot;": "˙", "DiacriticalDoubleAcute;": "˝", "DiacriticalGrave;": "`", "DiacriticalTilde;": "˜", "diam;": "⋄", "Diamond;": "⋄", "diamond;": "⋄", "diamondsuit;": "♦", "diams;": "♦", "die;": "¨", "DifferentialD;": "ⅆ", "digamma;": "ϝ", "disin;": "⋲", "div;": "÷", "divide;": "÷", divide: "÷", "divideontimes;": "⋇", "divonx;": "⋇", "DJcy;": "Ђ", "djcy;": "ђ", "dlcorn;": "⌞", "dlcrop;": "⌍", "dollar;": "$", "Dopf;": "\uD835\uDD3B", "dopf;": "\uD835\uDD55", "Dot;": "¨", "dot;": "˙", "DotDot;": "⃜", "doteq;": "≐", "doteqdot;": "≑", "DotEqual;": "≐", "dotminus;": "∸", "dotplus;": "∔", "dotsquare;": "⊡", "doublebarwedge;": "⌆", "DoubleContourIntegral;": "∯", "DoubleDot;": "¨", "DoubleDownArrow;": "⇓", "DoubleLeftArrow;": "⇐", "DoubleLeftRightArrow;": "⇔", "DoubleLeftTee;": "⫤", "DoubleLongLeftArrow;": "⟸", "DoubleLongLeftRightArrow;": "⟺", "DoubleLongRightArrow;": "⟹", "DoubleRightArrow;": "⇒", "DoubleRightTee;": "⊨", "DoubleUpArrow;": "⇑", "DoubleUpDownArrow;": "⇕", "DoubleVerticalBar;": "∥", "DownArrow;": "↓", "Downarrow;": "⇓", "downarrow;": "↓", "DownArrowBar;": "⤓", "DownArrowUpArrow;": "⇵", "DownBreve;": "̑", "downdownarrows;": "⇊", "downharpoonleft;": "⇃", "downharpoonright;": "⇂", "DownLeftRightVector;": "⥐", "DownLeftTeeVector;": "⥞", "DownLeftVector;": "↽", "DownLeftVectorBar;": "⥖", "DownRightTeeVector;": "⥟", "DownRightVector;": "⇁", "DownRightVectorBar;": "⥗", "DownTee;": "⊤", "DownTeeArrow;": "↧", "drbkarow;": "⤐", "drcorn;": "⌟", "drcrop;": "⌌", "Dscr;": "\uD835\uDC9F", "dscr;": "\uD835\uDCB9", "DScy;": "Ѕ", "dscy;": "ѕ", "dsol;": "⧶", "Dstrok;": "Đ", "dstrok;": "đ", "dtdot;": "⋱", "dtri;": "▿", "dtrif;": "▾", "duarr;": "⇵", "duhar;": "⥯", "dwangle;": "⦦", "DZcy;": "Џ", "dzcy;": "џ", "dzigrarr;": "⟿", "Eacute;": "É", Eacute: "É", "eacute;": "é", eacute: "é", "easter;": "⩮", "Ecaron;": "Ě", "ecaron;": "ě", "ecir;": "≖", "Ecirc;": "Ê", Ecirc: "Ê", "ecirc;": "ê", ecirc: "ê", "ecolon;": "≕", "Ecy;": "Э", "ecy;": "э", "eDDot;": "⩷", "Edot;": "Ė", "eDot;": "≑", "edot;": "ė", "ee;": "ⅇ", "efDot;": "≒", "Efr;": "\uD835\uDD08", "efr;": "\uD835\uDD22", "eg;": "⪚", "Egrave;": "È", Egrave: "È", "egrave;": "è", egrave: "è", "egs;": "⪖", "egsdot;": "⪘", "el;": "⪙", "Element;": "∈", "elinters;": "⏧", "ell;": "ℓ", "els;": "⪕", "elsdot;": "⪗", "Emacr;": "Ē", "emacr;": "ē", "empty;": "∅", "emptyset;": "∅", "EmptySmallSquare;": "◻", "emptyv;": "∅", "EmptyVerySmallSquare;": "▫", "emsp;": " ", "emsp13;": " ", "emsp14;": " ", "ENG;": "Ŋ", "eng;": "ŋ", "ensp;": " ", "Eogon;": "Ę", "eogon;": "ę", "Eopf;": "\uD835\uDD3C", "eopf;": "\uD835\uDD56", "epar;": "⋕", "eparsl;": "⧣", "eplus;": "⩱", "epsi;": "ε", "Epsilon;": "Ε", "epsilon;": "ε", "epsiv;": "ϵ", "eqcirc;": "≖", "eqcolon;": "≕", "eqsim;": "≂", "eqslantgtr;": "⪖", "eqslantless;": "⪕", "Equal;": "⩵", "equals;": "=", "EqualTilde;": "≂", "equest;": "≟", "Equilibrium;": "⇌", "equiv;": "≡", "equivDD;": "⩸", "eqvparsl;": "⧥", "erarr;": "⥱", "erDot;": "≓", "Escr;": "ℰ", "escr;": "ℯ", "esdot;": "≐", "Esim;": "⩳", "esim;": "≂", "Eta;": "Η", "eta;": "η", "ETH;": "Ð", ETH: "Ð", "eth;": "ð", eth: "ð", "Euml;": "Ë", Euml: "Ë", "euml;": "ë", euml: "ë", "euro;": "€", "excl;": "!", "exist;": "∃", "Exists;": "∃", "expectation;": "ℰ", "ExponentialE;": "ⅇ", "exponentiale;": "ⅇ", "fallingdotseq;": "≒", "Fcy;": "Ф", "fcy;": "ф", "female;": "♀", "ffilig;": "ffi", "fflig;": "ff", "ffllig;": "ffl", "Ffr;": "\uD835\uDD09", "ffr;": "\uD835\uDD23", "filig;": "fi", "FilledSmallSquare;": "◼", "FilledVerySmallSquare;": "▪", "fjlig;": "fj", "flat;": "♭", "fllig;": "fl", "fltns;": "▱", "fnof;": "ƒ", "Fopf;": "\uD835\uDD3D", "fopf;": "\uD835\uDD57", "ForAll;": "∀", "forall;": "∀", "fork;": "⋔", "forkv;": "⫙", "Fouriertrf;": "ℱ", "fpartint;": "⨍", "frac12;": "½", frac12: "½", "frac13;": "⅓", "frac14;": "¼", frac14: "¼", "frac15;": "⅕", "frac16;": "⅙", "frac18;": "⅛", "frac23;": "⅔", "frac25;": "⅖", "frac34;": "¾", frac34: "¾", "frac35;": "⅗", "frac38;": "⅜", "frac45;": "⅘", "frac56;": "⅚", "frac58;": "⅝", "frac78;": "⅞", "frasl;": "⁄", "frown;": "⌢", "Fscr;": "ℱ", "fscr;": "\uD835\uDCBB", "gacute;": "ǵ", "Gamma;": "Γ", "gamma;": "γ", "Gammad;": "Ϝ", "gammad;": "ϝ", "gap;": "⪆", "Gbreve;": "Ğ", "gbreve;": "ğ", "Gcedil;": "Ģ", "Gcirc;": "Ĝ", "gcirc;": "ĝ", "Gcy;": "Г", "gcy;": "г", "Gdot;": "Ġ", "gdot;": "ġ", "gE;": "≧", "ge;": "≥", "gEl;": "⪌", "gel;": "⋛", "geq;": "≥", "geqq;": "≧", "geqslant;": "⩾", "ges;": "⩾", "gescc;": "⪩", "gesdot;": "⪀", "gesdoto;": "⪂", "gesdotol;": "⪄", "gesl;": "⋛︀", "gesles;": "⪔", "Gfr;": "\uD835\uDD0A", "gfr;": "\uD835\uDD24", "Gg;": "⋙", "gg;": "≫", "ggg;": "⋙", "gimel;": "ℷ", "GJcy;": "Ѓ", "gjcy;": "ѓ", "gl;": "≷", "gla;": "⪥", "glE;": "⪒", "glj;": "⪤", "gnap;": "⪊", "gnapprox;": "⪊", "gnE;": "≩", "gne;": "⪈", "gneq;": "⪈", "gneqq;": "≩", "gnsim;": "⋧", "Gopf;": "\uD835\uDD3E", "gopf;": "\uD835\uDD58", "grave;": "`", "GreaterEqual;": "≥", "GreaterEqualLess;": "⋛", "GreaterFullEqual;": "≧", "GreaterGreater;": "⪢", "GreaterLess;": "≷", "GreaterSlantEqual;": "⩾", "GreaterTilde;": "≳", "Gscr;": "\uD835\uDCA2", "gscr;": "ℊ", "gsim;": "≳", "gsime;": "⪎", "gsiml;": "⪐", "GT;": ">", GT: ">", "Gt;": "≫", "gt;": ">", gt: ">", "gtcc;": "⪧", "gtcir;": "⩺", "gtdot;": "⋗", "gtlPar;": "⦕", "gtquest;": "⩼", "gtrapprox;": "⪆", "gtrarr;": "⥸", "gtrdot;": "⋗", "gtreqless;": "⋛", "gtreqqless;": "⪌", "gtrless;": "≷", "gtrsim;": "≳", "gvertneqq;": "≩︀", "gvnE;": "≩︀", "Hacek;": "ˇ", "hairsp;": " ", "half;": "½", "hamilt;": "ℋ", "HARDcy;": "Ъ", "hardcy;": "ъ", "hArr;": "⇔", "harr;": "↔", "harrcir;": "⥈", "harrw;": "↭", "Hat;": "^", "hbar;": "ℏ", "Hcirc;": "Ĥ", "hcirc;": "ĥ", "hearts;": "♥", "heartsuit;": "♥", "hellip;": "…", "hercon;": "⊹", "Hfr;": "ℌ", "hfr;": "\uD835\uDD25", "HilbertSpace;": "ℋ", "hksearow;": "⤥", "hkswarow;": "⤦", "hoarr;": "⇿", "homtht;": "∻", "hookleftarrow;": "↩", "hookrightarrow;": "↪", "Hopf;": "ℍ", "hopf;": "\uD835\uDD59", "horbar;": "―", "HorizontalLine;": "─", "Hscr;": "ℋ", "hscr;": "\uD835\uDCBD", "hslash;": "ℏ", "Hstrok;": "Ħ", "hstrok;": "ħ", "HumpDownHump;": "≎", "HumpEqual;": "≏", "hybull;": "⁃", "hyphen;": "‐", "Iacute;": "Í", Iacute: "Í", "iacute;": "í", iacute: "í", "ic;": "⁣", "Icirc;": "Î", Icirc: "Î", "icirc;": "î", icirc: "î", "Icy;": "И", "icy;": "и", "Idot;": "İ", "IEcy;": "Е", "iecy;": "е", "iexcl;": "¡", iexcl: "¡", "iff;": "⇔", "Ifr;": "ℑ", "ifr;": "\uD835\uDD26", "Igrave;": "Ì", Igrave: "Ì", "igrave;": "ì", igrave: "ì", "ii;": "ⅈ", "iiiint;": "⨌", "iiint;": "∭", "iinfin;": "⧜", "iiota;": "℩", "IJlig;": "IJ", "ijlig;": "ij", "Im;": "ℑ", "Imacr;": "Ī", "imacr;": "ī", "image;": "ℑ", "ImaginaryI;": "ⅈ", "imagline;": "ℐ", "imagpart;": "ℑ", "imath;": "ı", "imof;": "⊷", "imped;": "Ƶ", "Implies;": "⇒", "in;": "∈", "incare;": "℅", "infin;": "∞", "infintie;": "⧝", "inodot;": "ı", "Int;": "∬", "int;": "∫", "intcal;": "⊺", "integers;": "ℤ", "Integral;": "∫", "intercal;": "⊺", "Intersection;": "⋂", "intlarhk;": "⨗", "intprod;": "⨼", "InvisibleComma;": "⁣", "InvisibleTimes;": "⁢", "IOcy;": "Ё", "iocy;": "ё", "Iogon;": "Į", "iogon;": "į", "Iopf;": "\uD835\uDD40", "iopf;": "\uD835\uDD5A", "Iota;": "Ι", "iota;": "ι", "iprod;": "⨼", "iquest;": "¿", iquest: "¿", "Iscr;": "ℐ", "iscr;": "\uD835\uDCBE", "isin;": "∈", "isindot;": "⋵", "isinE;": "⋹", "isins;": "⋴", "isinsv;": "⋳", "isinv;": "∈", "it;": "⁢", "Itilde;": "Ĩ", "itilde;": "ĩ", "Iukcy;": "І", "iukcy;": "і", "Iuml;": "Ï", Iuml: "Ï", "iuml;": "ï", iuml: "ï", "Jcirc;": "Ĵ", "jcirc;": "ĵ", "Jcy;": "Й", "jcy;": "й", "Jfr;": "\uD835\uDD0D", "jfr;": "\uD835\uDD27", "jmath;": "ȷ", "Jopf;": "\uD835\uDD41", "jopf;": "\uD835\uDD5B", "Jscr;": "\uD835\uDCA5", "jscr;": "\uD835\uDCBF", "Jsercy;": "Ј", "jsercy;": "ј", "Jukcy;": "Є", "jukcy;": "є", "Kappa;": "Κ", "kappa;": "κ", "kappav;": "ϰ", "Kcedil;": "Ķ", "kcedil;": "ķ", "Kcy;": "К", "kcy;": "к", "Kfr;": "\uD835\uDD0E", "kfr;": "\uD835\uDD28", "kgreen;": "ĸ", "KHcy;": "Х", "khcy;": "х", "KJcy;": "Ќ", "kjcy;": "ќ", "Kopf;": "\uD835\uDD42", "kopf;": "\uD835\uDD5C", "Kscr;": "\uD835\uDCA6", "kscr;": "\uD835\uDCC0", "lAarr;": "⇚", "Lacute;": "Ĺ", "lacute;": "ĺ", "laemptyv;": "⦴", "lagran;": "ℒ", "Lambda;": "Λ", "lambda;": "λ", "Lang;": "⟪", "lang;": "⟨", "langd;": "⦑", "langle;": "⟨", "lap;": "⪅", "Laplacetrf;": "ℒ", "laquo;": "«", laquo: "«", "Larr;": "↞", "lArr;": "⇐", "larr;": "←", "larrb;": "⇤", "larrbfs;": "⤟", "larrfs;": "⤝", "larrhk;": "↩", "larrlp;": "↫", "larrpl;": "⤹", "larrsim;": "⥳", "larrtl;": "↢", "lat;": "⪫", "lAtail;": "⤛", "latail;": "⤙", "late;": "⪭", "lates;": "⪭︀", "lBarr;": "⤎", "lbarr;": "⤌", "lbbrk;": "❲", "lbrace;": "{", "lbrack;": "[", "lbrke;": "⦋", "lbrksld;": "⦏", "lbrkslu;": "⦍", "Lcaron;": "Ľ", "lcaron;": "ľ", "Lcedil;": "Ļ", "lcedil;": "ļ", "lceil;": "⌈", "lcub;": "{", "Lcy;": "Л", "lcy;": "л", "ldca;": "⤶", "ldquo;": "“", "ldquor;": "„", "ldrdhar;": "⥧", "ldrushar;": "⥋", "ldsh;": "↲", "lE;": "≦", "le;": "≤", "LeftAngleBracket;": "⟨", "LeftArrow;": "←", "Leftarrow;": "⇐", "leftarrow;": "←", "LeftArrowBar;": "⇤", "LeftArrowRightArrow;": "⇆", "leftarrowtail;": "↢", "LeftCeiling;": "⌈", "LeftDoubleBracket;": "⟦", "LeftDownTeeVector;": "⥡", "LeftDownVector;": "⇃", "LeftDownVectorBar;": "⥙", "LeftFloor;": "⌊", "leftharpoondown;": "↽", "leftharpoonup;": "↼", "leftleftarrows;": "⇇", "LeftRightArrow;": "↔", "Leftrightarrow;": "⇔", "leftrightarrow;": "↔", "leftrightarrows;": "⇆", "leftrightharpoons;": "⇋", "leftrightsquigarrow;": "↭", "LeftRightVector;": "⥎", "LeftTee;": "⊣", "LeftTeeArrow;": "↤", "LeftTeeVector;": "⥚", "leftthreetimes;": "⋋", "LeftTriangle;": "⊲", "LeftTriangleBar;": "⧏", "LeftTriangleEqual;": "⊴", "LeftUpDownVector;": "⥑", "LeftUpTeeVector;": "⥠", "LeftUpVector;": "↿", "LeftUpVectorBar;": "⥘", "LeftVector;": "↼", "LeftVectorBar;": "⥒", "lEg;": "⪋", "leg;": "⋚", "leq;": "≤", "leqq;": "≦", "leqslant;": "⩽", "les;": "⩽", "lescc;": "⪨", "lesdot;": "⩿", "lesdoto;": "⪁", "lesdotor;": "⪃", "lesg;": "⋚︀", "lesges;": "⪓", "lessapprox;": "⪅", "lessdot;": "⋖", "lesseqgtr;": "⋚", "lesseqqgtr;": "⪋", "LessEqualGreater;": "⋚", "LessFullEqual;": "≦", "LessGreater;": "≶", "lessgtr;": "≶", "LessLess;": "⪡", "lesssim;": "≲", "LessSlantEqual;": "⩽", "LessTilde;": "≲", "lfisht;": "⥼", "lfloor;": "⌊", "Lfr;": "\uD835\uDD0F", "lfr;": "\uD835\uDD29", "lg;": "≶", "lgE;": "⪑", "lHar;": "⥢", "lhard;": "↽", "lharu;": "↼", "lharul;": "⥪", "lhblk;": "▄", "LJcy;": "Љ", "ljcy;": "љ", "Ll;": "⋘", "ll;": "≪", "llarr;": "⇇", "llcorner;": "⌞", "Lleftarrow;": "⇚", "llhard;": "⥫", "lltri;": "◺", "Lmidot;": "Ŀ", "lmidot;": "ŀ", "lmoust;": "⎰", "lmoustache;": "⎰", "lnap;": "⪉", "lnapprox;": "⪉", "lnE;": "≨", "lne;": "⪇", "lneq;": "⪇", "lneqq;": "≨", "lnsim;": "⋦", "loang;": "⟬", "loarr;": "⇽", "lobrk;": "⟦", "LongLeftArrow;": "⟵", "Longleftarrow;": "⟸", "longleftarrow;": "⟵", "LongLeftRightArrow;": "⟷", "Longleftrightarrow;": "⟺", "longleftrightarrow;": "⟷", "longmapsto;": "⟼", "LongRightArrow;": "⟶", "Longrightarrow;": "⟹", "longrightarrow;": "⟶", "looparrowleft;": "↫", "looparrowright;": "↬", "lopar;": "⦅", "Lopf;": "\uD835\uDD43", "lopf;": "\uD835\uDD5D", "loplus;": "⨭", "lotimes;": "⨴", "lowast;": "∗", "lowbar;": "_", "LowerLeftArrow;": "↙", "LowerRightArrow;": "↘", "loz;": "◊", "lozenge;": "◊", "lozf;": "⧫", "lpar;": "(", "lparlt;": "⦓", "lrarr;": "⇆", "lrcorner;": "⌟", "lrhar;": "⇋", "lrhard;": "⥭", "lrm;": "‎", "lrtri;": "⊿", "lsaquo;": "‹", "Lscr;": "ℒ", "lscr;": "\uD835\uDCC1", "Lsh;": "↰", "lsh;": "↰", "lsim;": "≲", "lsime;": "⪍", "lsimg;": "⪏", "lsqb;": "[", "lsquo;": "‘", "lsquor;": "‚", "Lstrok;": "Ł", "lstrok;": "ł", "LT;": "<", LT: "<", "Lt;": "≪", "lt;": "<", lt: "<", "ltcc;": "⪦", "ltcir;": "⩹", "ltdot;": "⋖", "lthree;": "⋋", "ltimes;": "⋉", "ltlarr;": "⥶", "ltquest;": "⩻", "ltri;": "◃", "ltrie;": "⊴", "ltrif;": "◂", "ltrPar;": "⦖", "lurdshar;": "⥊", "luruhar;": "⥦", "lvertneqq;": "≨︀", "lvnE;": "≨︀", "macr;": "¯", macr: "¯", "male;": "♂", "malt;": "✠", "maltese;": "✠", "Map;": "⤅", "map;": "↦", "mapsto;": "↦", "mapstodown;": "↧", "mapstoleft;": "↤", "mapstoup;": "↥", "marker;": "▮", "mcomma;": "⨩", "Mcy;": "М", "mcy;": "м", "mdash;": "—", "mDDot;": "∺", "measuredangle;": "∡", "MediumSpace;": " ", "Mellintrf;": "ℳ", "Mfr;": "\uD835\uDD10", "mfr;": "\uD835\uDD2A", "mho;": "℧", "micro;": "µ", micro: "µ", "mid;": "∣", "midast;": "*", "midcir;": "⫰", "middot;": "·", middot: "·", "minus;": "−", "minusb;": "⊟", "minusd;": "∸", "minusdu;": "⨪", "MinusPlus;": "∓", "mlcp;": "⫛", "mldr;": "…", "mnplus;": "∓", "models;": "⊧", "Mopf;": "\uD835\uDD44", "mopf;": "\uD835\uDD5E", "mp;": "∓", "Mscr;": "ℳ", "mscr;": "\uD835\uDCC2", "mstpos;": "∾", "Mu;": "Μ", "mu;": "μ", "multimap;": "⊸", "mumap;": "⊸", "nabla;": "∇", "Nacute;": "Ń", "nacute;": "ń", "nang;": "∠⃒", "nap;": "≉", "napE;": "⩰̸", "napid;": "≋̸", "napos;": "ʼn", "napprox;": "≉", "natur;": "♮", "natural;": "♮", "naturals;": "ℕ", "nbsp;": " ", nbsp: " ", "nbump;": "≎̸", "nbumpe;": "≏̸", "ncap;": "⩃", "Ncaron;": "Ň", "ncaron;": "ň", "Ncedil;": "Ņ", "ncedil;": "ņ", "ncong;": "≇", "ncongdot;": "⩭̸", "ncup;": "⩂", "Ncy;": "Н", "ncy;": "н", "ndash;": "–", "ne;": "≠", "nearhk;": "⤤", "neArr;": "⇗", "nearr;": "↗", "nearrow;": "↗", "nedot;": "≐̸", "NegativeMediumSpace;": "​", "NegativeThickSpace;": "​", "NegativeThinSpace;": "​", "NegativeVeryThinSpace;": "​", "nequiv;": "≢", "nesear;": "⤨", "nesim;": "≂̸", "NestedGreaterGreater;": "≫", "NestedLessLess;": "≪", "NewLine;": ` `, "nexist;": "∄", "nexists;": "∄", "Nfr;": "\uD835\uDD11", "nfr;": "\uD835\uDD2B", "ngE;": "≧̸", "nge;": "≱", "ngeq;": "≱", "ngeqq;": "≧̸", "ngeqslant;": "⩾̸", "nges;": "⩾̸", "nGg;": "⋙̸", "ngsim;": "≵", "nGt;": "≫⃒", "ngt;": "≯", "ngtr;": "≯", "nGtv;": "≫̸", "nhArr;": "⇎", "nharr;": "↮", "nhpar;": "⫲", "ni;": "∋", "nis;": "⋼", "nisd;": "⋺", "niv;": "∋", "NJcy;": "Њ", "njcy;": "њ", "nlArr;": "⇍", "nlarr;": "↚", "nldr;": "‥", "nlE;": "≦̸", "nle;": "≰", "nLeftarrow;": "⇍", "nleftarrow;": "↚", "nLeftrightarrow;": "⇎", "nleftrightarrow;": "↮", "nleq;": "≰", "nleqq;": "≦̸", "nleqslant;": "⩽̸", "nles;": "⩽̸", "nless;": "≮", "nLl;": "⋘̸", "nlsim;": "≴", "nLt;": "≪⃒", "nlt;": "≮", "nltri;": "⋪", "nltrie;": "⋬", "nLtv;": "≪̸", "nmid;": "∤", "NoBreak;": "⁠", "NonBreakingSpace;": " ", "Nopf;": "ℕ", "nopf;": "\uD835\uDD5F", "Not;": "⫬", "not;": "¬", not: "¬", "NotCongruent;": "≢", "NotCupCap;": "≭", "NotDoubleVerticalBar;": "∦", "NotElement;": "∉", "NotEqual;": "≠", "NotEqualTilde;": "≂̸", "NotExists;": "∄", "NotGreater;": "≯", "NotGreaterEqual;": "≱", "NotGreaterFullEqual;": "≧̸", "NotGreaterGreater;": "≫̸", "NotGreaterLess;": "≹", "NotGreaterSlantEqual;": "⩾̸", "NotGreaterTilde;": "≵", "NotHumpDownHump;": "≎̸", "NotHumpEqual;": "≏̸", "notin;": "∉", "notindot;": "⋵̸", "notinE;": "⋹̸", "notinva;": "∉", "notinvb;": "⋷", "notinvc;": "⋶", "NotLeftTriangle;": "⋪", "NotLeftTriangleBar;": "⧏̸", "NotLeftTriangleEqual;": "⋬", "NotLess;": "≮", "NotLessEqual;": "≰", "NotLessGreater;": "≸", "NotLessLess;": "≪̸", "NotLessSlantEqual;": "⩽̸", "NotLessTilde;": "≴", "NotNestedGreaterGreater;": "⪢̸", "NotNestedLessLess;": "⪡̸", "notni;": "∌", "notniva;": "∌", "notnivb;": "⋾", "notnivc;": "⋽", "NotPrecedes;": "⊀", "NotPrecedesEqual;": "⪯̸", "NotPrecedesSlantEqual;": "⋠", "NotReverseElement;": "∌", "NotRightTriangle;": "⋫", "NotRightTriangleBar;": "⧐̸", "NotRightTriangleEqual;": "⋭", "NotSquareSubset;": "⊏̸", "NotSquareSubsetEqual;": "⋢", "NotSquareSuperset;": "⊐̸", "NotSquareSupersetEqual;": "⋣", "NotSubset;": "⊂⃒", "NotSubsetEqual;": "⊈", "NotSucceeds;": "⊁", "NotSucceedsEqual;": "⪰̸", "NotSucceedsSlantEqual;": "⋡", "NotSucceedsTilde;": "≿̸", "NotSuperset;": "⊃⃒", "NotSupersetEqual;": "⊉", "NotTilde;": "≁", "NotTildeEqual;": "≄", "NotTildeFullEqual;": "≇", "NotTildeTilde;": "≉", "NotVerticalBar;": "∤", "npar;": "∦", "nparallel;": "∦", "nparsl;": "⫽⃥", "npart;": "∂̸", "npolint;": "⨔", "npr;": "⊀", "nprcue;": "⋠", "npre;": "⪯̸", "nprec;": "⊀", "npreceq;": "⪯̸", "nrArr;": "⇏", "nrarr;": "↛", "nrarrc;": "⤳̸", "nrarrw;": "↝̸", "nRightarrow;": "⇏", "nrightarrow;": "↛", "nrtri;": "⋫", "nrtrie;": "⋭", "nsc;": "⊁", "nsccue;": "⋡", "nsce;": "⪰̸", "Nscr;": "\uD835\uDCA9", "nscr;": "\uD835\uDCC3", "nshortmid;": "∤", "nshortparallel;": "∦", "nsim;": "≁", "nsime;": "≄", "nsimeq;": "≄", "nsmid;": "∤", "nspar;": "∦", "nsqsube;": "⋢", "nsqsupe;": "⋣", "nsub;": "⊄", "nsubE;": "⫅̸", "nsube;": "⊈", "nsubset;": "⊂⃒", "nsubseteq;": "⊈", "nsubseteqq;": "⫅̸", "nsucc;": "⊁", "nsucceq;": "⪰̸", "nsup;": "⊅", "nsupE;": "⫆̸", "nsupe;": "⊉", "nsupset;": "⊃⃒", "nsupseteq;": "⊉", "nsupseteqq;": "⫆̸", "ntgl;": "≹", "Ntilde;": "Ñ", Ntilde: "Ñ", "ntilde;": "ñ", ntilde: "ñ", "ntlg;": "≸", "ntriangleleft;": "⋪", "ntrianglelefteq;": "⋬", "ntriangleright;": "⋫", "ntrianglerighteq;": "⋭", "Nu;": "Ν", "nu;": "ν", "num;": "#", "numero;": "№", "numsp;": " ", "nvap;": "≍⃒", "nVDash;": "⊯", "nVdash;": "⊮", "nvDash;": "⊭", "nvdash;": "⊬", "nvge;": "≥⃒", "nvgt;": ">⃒", "nvHarr;": "⤄", "nvinfin;": "⧞", "nvlArr;": "⤂", "nvle;": "≤⃒", "nvlt;": "<⃒", "nvltrie;": "⊴⃒", "nvrArr;": "⤃", "nvrtrie;": "⊵⃒", "nvsim;": "∼⃒", "nwarhk;": "⤣", "nwArr;": "⇖", "nwarr;": "↖", "nwarrow;": "↖", "nwnear;": "⤧", "Oacute;": "Ó", Oacute: "Ó", "oacute;": "ó", oacute: "ó", "oast;": "⊛", "ocir;": "⊚", "Ocirc;": "Ô", Ocirc: "Ô", "ocirc;": "ô", ocirc: "ô", "Ocy;": "О", "ocy;": "о", "odash;": "⊝", "Odblac;": "Ő", "odblac;": "ő", "odiv;": "⨸", "odot;": "⊙", "odsold;": "⦼", "OElig;": "Œ", "oelig;": "œ", "ofcir;": "⦿", "Ofr;": "\uD835\uDD12", "ofr;": "\uD835\uDD2C", "ogon;": "˛", "Ograve;": "Ò", Ograve: "Ò", "ograve;": "ò", ograve: "ò", "ogt;": "⧁", "ohbar;": "⦵", "ohm;": "Ω", "oint;": "∮", "olarr;": "↺", "olcir;": "⦾", "olcross;": "⦻", "oline;": "‾", "olt;": "⧀", "Omacr;": "Ō", "omacr;": "ō", "Omega;": "Ω", "omega;": "ω", "Omicron;": "Ο", "omicron;": "ο", "omid;": "⦶", "ominus;": "⊖", "Oopf;": "\uD835\uDD46", "oopf;": "\uD835\uDD60", "opar;": "⦷", "OpenCurlyDoubleQuote;": "“", "OpenCurlyQuote;": "‘", "operp;": "⦹", "oplus;": "⊕", "Or;": "⩔", "or;": "∨", "orarr;": "↻", "ord;": "⩝", "order;": "ℴ", "orderof;": "ℴ", "ordf;": "ª", ordf: "ª", "ordm;": "º", ordm: "º", "origof;": "⊶", "oror;": "⩖", "orslope;": "⩗", "orv;": "⩛", "oS;": "Ⓢ", "Oscr;": "\uD835\uDCAA", "oscr;": "ℴ", "Oslash;": "Ø", Oslash: "Ø", "oslash;": "ø", oslash: "ø", "osol;": "⊘", "Otilde;": "Õ", Otilde: "Õ", "otilde;": "õ", otilde: "õ", "Otimes;": "⨷", "otimes;": "⊗", "otimesas;": "⨶", "Ouml;": "Ö", Ouml: "Ö", "ouml;": "ö", ouml: "ö", "ovbar;": "⌽", "OverBar;": "‾", "OverBrace;": "⏞", "OverBracket;": "⎴", "OverParenthesis;": "⏜", "par;": "∥", "para;": "¶", para: "¶", "parallel;": "∥", "parsim;": "⫳", "parsl;": "⫽", "part;": "∂", "PartialD;": "∂", "Pcy;": "П", "pcy;": "п", "percnt;": "%", "period;": ".", "permil;": "‰", "perp;": "⊥", "pertenk;": "‱", "Pfr;": "\uD835\uDD13", "pfr;": "\uD835\uDD2D", "Phi;": "Φ", "phi;": "φ", "phiv;": "ϕ", "phmmat;": "ℳ", "phone;": "☎", "Pi;": "Π", "pi;": "π", "pitchfork;": "⋔", "piv;": "ϖ", "planck;": "ℏ", "planckh;": "ℎ", "plankv;": "ℏ", "plus;": "+", "plusacir;": "⨣", "plusb;": "⊞", "pluscir;": "⨢", "plusdo;": "∔", "plusdu;": "⨥", "pluse;": "⩲", "PlusMinus;": "±", "plusmn;": "±", plusmn: "±", "plussim;": "⨦", "plustwo;": "⨧", "pm;": "±", "Poincareplane;": "ℌ", "pointint;": "⨕", "Popf;": "ℙ", "popf;": "\uD835\uDD61", "pound;": "£", pound: "£", "Pr;": "⪻", "pr;": "≺", "prap;": "⪷", "prcue;": "≼", "prE;": "⪳", "pre;": "⪯", "prec;": "≺", "precapprox;": "⪷", "preccurlyeq;": "≼", "Precedes;": "≺", "PrecedesEqual;": "⪯", "PrecedesSlantEqual;": "≼", "PrecedesTilde;": "≾", "preceq;": "⪯", "precnapprox;": "⪹", "precneqq;": "⪵", "precnsim;": "⋨", "precsim;": "≾", "Prime;": "″", "prime;": "′", "primes;": "ℙ", "prnap;": "⪹", "prnE;": "⪵", "prnsim;": "⋨", "prod;": "∏", "Product;": "∏", "profalar;": "⌮", "profline;": "⌒", "profsurf;": "⌓", "prop;": "∝", "Proportion;": "∷", "Proportional;": "∝", "propto;": "∝", "prsim;": "≾", "prurel;": "⊰", "Pscr;": "\uD835\uDCAB", "pscr;": "\uD835\uDCC5", "Psi;": "Ψ", "psi;": "ψ", "puncsp;": " ", "Qfr;": "\uD835\uDD14", "qfr;": "\uD835\uDD2E", "qint;": "⨌", "Qopf;": "ℚ", "qopf;": "\uD835\uDD62", "qprime;": "⁗", "Qscr;": "\uD835\uDCAC", "qscr;": "\uD835\uDCC6", "quaternions;": "ℍ", "quatint;": "⨖", "quest;": "?", "questeq;": "≟", "QUOT;": '"', QUOT: '"', "quot;": '"', quot: '"', "rAarr;": "⇛", "race;": "∽̱", "Racute;": "Ŕ", "racute;": "ŕ", "radic;": "√", "raemptyv;": "⦳", "Rang;": "⟫", "rang;": "⟩", "rangd;": "⦒", "range;": "⦥", "rangle;": "⟩", "raquo;": "»", raquo: "»", "Rarr;": "↠", "rArr;": "⇒", "rarr;": "→", "rarrap;": "⥵", "rarrb;": "⇥", "rarrbfs;": "⤠", "rarrc;": "⤳", "rarrfs;": "⤞", "rarrhk;": "↪", "rarrlp;": "↬", "rarrpl;": "⥅", "rarrsim;": "⥴", "Rarrtl;": "⤖", "rarrtl;": "↣", "rarrw;": "↝", "rAtail;": "⤜", "ratail;": "⤚", "ratio;": "∶", "rationals;": "ℚ", "RBarr;": "⤐", "rBarr;": "⤏", "rbarr;": "⤍", "rbbrk;": "❳", "rbrace;": "}", "rbrack;": "]", "rbrke;": "⦌", "rbrksld;": "⦎", "rbrkslu;": "⦐", "Rcaron;": "Ř", "rcaron;": "ř", "Rcedil;": "Ŗ", "rcedil;": "ŗ", "rceil;": "⌉", "rcub;": "}", "Rcy;": "Р", "rcy;": "р", "rdca;": "⤷", "rdldhar;": "⥩", "rdquo;": "”", "rdquor;": "”", "rdsh;": "↳", "Re;": "ℜ", "real;": "ℜ", "realine;": "ℛ", "realpart;": "ℜ", "reals;": "ℝ", "rect;": "▭", "REG;": "®", REG: "®", "reg;": "®", reg: "®", "ReverseElement;": "∋", "ReverseEquilibrium;": "⇋", "ReverseUpEquilibrium;": "⥯", "rfisht;": "⥽", "rfloor;": "⌋", "Rfr;": "ℜ", "rfr;": "\uD835\uDD2F", "rHar;": "⥤", "rhard;": "⇁", "rharu;": "⇀", "rharul;": "⥬", "Rho;": "Ρ", "rho;": "ρ", "rhov;": "ϱ", "RightAngleBracket;": "⟩", "RightArrow;": "→", "Rightarrow;": "⇒", "rightarrow;": "→", "RightArrowBar;": "⇥", "RightArrowLeftArrow;": "⇄", "rightarrowtail;": "↣", "RightCeiling;": "⌉", "RightDoubleBracket;": "⟧", "RightDownTeeVector;": "⥝", "RightDownVector;": "⇂", "RightDownVectorBar;": "⥕", "RightFloor;": "⌋", "rightharpoondown;": "⇁", "rightharpoonup;": "⇀", "rightleftarrows;": "⇄", "rightleftharpoons;": "⇌", "rightrightarrows;": "⇉", "rightsquigarrow;": "↝", "RightTee;": "⊢", "RightTeeArrow;": "↦", "RightTeeVector;": "⥛", "rightthreetimes;": "⋌", "RightTriangle;": "⊳", "RightTriangleBar;": "⧐", "RightTriangleEqual;": "⊵", "RightUpDownVector;": "⥏", "RightUpTeeVector;": "⥜", "RightUpVector;": "↾", "RightUpVectorBar;": "⥔", "RightVector;": "⇀", "RightVectorBar;": "⥓", "ring;": "˚", "risingdotseq;": "≓", "rlarr;": "⇄", "rlhar;": "⇌", "rlm;": "‏", "rmoust;": "⎱", "rmoustache;": "⎱", "rnmid;": "⫮", "roang;": "⟭", "roarr;": "⇾", "robrk;": "⟧", "ropar;": "⦆", "Ropf;": "ℝ", "ropf;": "\uD835\uDD63", "roplus;": "⨮", "rotimes;": "⨵", "RoundImplies;": "⥰", "rpar;": ")", "rpargt;": "⦔", "rppolint;": "⨒", "rrarr;": "⇉", "Rrightarrow;": "⇛", "rsaquo;": "›", "Rscr;": "ℛ", "rscr;": "\uD835\uDCC7", "Rsh;": "↱", "rsh;": "↱", "rsqb;": "]", "rsquo;": "’", "rsquor;": "’", "rthree;": "⋌", "rtimes;": "⋊", "rtri;": "▹", "rtrie;": "⊵", "rtrif;": "▸", "rtriltri;": "⧎", "RuleDelayed;": "⧴", "ruluhar;": "⥨", "rx;": "℞", "Sacute;": "Ś", "sacute;": "ś", "sbquo;": "‚", "Sc;": "⪼", "sc;": "≻", "scap;": "⪸", "Scaron;": "Š", "scaron;": "š", "sccue;": "≽", "scE;": "⪴", "sce;": "⪰", "Scedil;": "Ş", "scedil;": "ş", "Scirc;": "Ŝ", "scirc;": "ŝ", "scnap;": "⪺", "scnE;": "⪶", "scnsim;": "⋩", "scpolint;": "⨓", "scsim;": "≿", "Scy;": "С", "scy;": "с", "sdot;": "⋅", "sdotb;": "⊡", "sdote;": "⩦", "searhk;": "⤥", "seArr;": "⇘", "searr;": "↘", "searrow;": "↘", "sect;": "§", sect: "§", "semi;": ";", "seswar;": "⤩", "setminus;": "∖", "setmn;": "∖", "sext;": "✶", "Sfr;": "\uD835\uDD16", "sfr;": "\uD835\uDD30", "sfrown;": "⌢", "sharp;": "♯", "SHCHcy;": "Щ", "shchcy;": "щ", "SHcy;": "Ш", "shcy;": "ш", "ShortDownArrow;": "↓", "ShortLeftArrow;": "←", "shortmid;": "∣", "shortparallel;": "∥", "ShortRightArrow;": "→", "ShortUpArrow;": "↑", "shy;": "­", shy: "­", "Sigma;": "Σ", "sigma;": "σ", "sigmaf;": "ς", "sigmav;": "ς", "sim;": "∼", "simdot;": "⩪", "sime;": "≃", "simeq;": "≃", "simg;": "⪞", "simgE;": "⪠", "siml;": "⪝", "simlE;": "⪟", "simne;": "≆", "simplus;": "⨤", "simrarr;": "⥲", "slarr;": "←", "SmallCircle;": "∘", "smallsetminus;": "∖", "smashp;": "⨳", "smeparsl;": "⧤", "smid;": "∣", "smile;": "⌣", "smt;": "⪪", "smte;": "⪬", "smtes;": "⪬︀", "SOFTcy;": "Ь", "softcy;": "ь", "sol;": "/", "solb;": "⧄", "solbar;": "⌿", "Sopf;": "\uD835\uDD4A", "sopf;": "\uD835\uDD64", "spades;": "♠", "spadesuit;": "♠", "spar;": "∥", "sqcap;": "⊓", "sqcaps;": "⊓︀", "sqcup;": "⊔", "sqcups;": "⊔︀", "Sqrt;": "√", "sqsub;": "⊏", "sqsube;": "⊑", "sqsubset;": "⊏", "sqsubseteq;": "⊑", "sqsup;": "⊐", "sqsupe;": "⊒", "sqsupset;": "⊐", "sqsupseteq;": "⊒", "squ;": "□", "Square;": "□", "square;": "□", "SquareIntersection;": "⊓", "SquareSubset;": "⊏", "SquareSubsetEqual;": "⊑", "SquareSuperset;": "⊐", "SquareSupersetEqual;": "⊒", "SquareUnion;": "⊔", "squarf;": "▪", "squf;": "▪", "srarr;": "→", "Sscr;": "\uD835\uDCAE", "sscr;": "\uD835\uDCC8", "ssetmn;": "∖", "ssmile;": "⌣", "sstarf;": "⋆", "Star;": "⋆", "star;": "☆", "starf;": "★", "straightepsilon;": "ϵ", "straightphi;": "ϕ", "strns;": "¯", "Sub;": "⋐", "sub;": "⊂", "subdot;": "⪽", "subE;": "⫅", "sube;": "⊆", "subedot;": "⫃", "submult;": "⫁", "subnE;": "⫋", "subne;": "⊊", "subplus;": "⪿", "subrarr;": "⥹", "Subset;": "⋐", "subset;": "⊂", "subseteq;": "⊆", "subseteqq;": "⫅", "SubsetEqual;": "⊆", "subsetneq;": "⊊", "subsetneqq;": "⫋", "subsim;": "⫇", "subsub;": "⫕", "subsup;": "⫓", "succ;": "≻", "succapprox;": "⪸", "succcurlyeq;": "≽", "Succeeds;": "≻", "SucceedsEqual;": "⪰", "SucceedsSlantEqual;": "≽", "SucceedsTilde;": "≿", "succeq;": "⪰", "succnapprox;": "⪺", "succneqq;": "⪶", "succnsim;": "⋩", "succsim;": "≿", "SuchThat;": "∋", "Sum;": "∑", "sum;": "∑", "sung;": "♪", "Sup;": "⋑", "sup;": "⊃", "sup1;": "¹", sup1: "¹", "sup2;": "²", sup2: "²", "sup3;": "³", sup3: "³", "supdot;": "⪾", "supdsub;": "⫘", "supE;": "⫆", "supe;": "⊇", "supedot;": "⫄", "Superset;": "⊃", "SupersetEqual;": "⊇", "suphsol;": "⟉", "suphsub;": "⫗", "suplarr;": "⥻", "supmult;": "⫂", "supnE;": "⫌", "supne;": "⊋", "supplus;": "⫀", "Supset;": "⋑", "supset;": "⊃", "supseteq;": "⊇", "supseteqq;": "⫆", "supsetneq;": "⊋", "supsetneqq;": "⫌", "supsim;": "⫈", "supsub;": "⫔", "supsup;": "⫖", "swarhk;": "⤦", "swArr;": "⇙", "swarr;": "↙", "swarrow;": "↙", "swnwar;": "⤪", "szlig;": "ß", szlig: "ß", "Tab;": "\t", "target;": "⌖", "Tau;": "Τ", "tau;": "τ", "tbrk;": "⎴", "Tcaron;": "Ť", "tcaron;": "ť", "Tcedil;": "Ţ", "tcedil;": "ţ", "Tcy;": "Т", "tcy;": "т", "tdot;": "⃛", "telrec;": "⌕", "Tfr;": "\uD835\uDD17", "tfr;": "\uD835\uDD31", "there4;": "∴", "Therefore;": "∴", "therefore;": "∴", "Theta;": "Θ", "theta;": "θ", "thetasym;": "ϑ", "thetav;": "ϑ", "thickapprox;": "≈", "thicksim;": "∼", "ThickSpace;": "  ", "thinsp;": " ", "ThinSpace;": " ", "thkap;": "≈", "thksim;": "∼", "THORN;": "Þ", THORN: "Þ", "thorn;": "þ", thorn: "þ", "Tilde;": "∼", "tilde;": "˜", "TildeEqual;": "≃", "TildeFullEqual;": "≅", "TildeTilde;": "≈", "times;": "×", times: "×", "timesb;": "⊠", "timesbar;": "⨱", "timesd;": "⨰", "tint;": "∭", "toea;": "⤨", "top;": "⊤", "topbot;": "⌶", "topcir;": "⫱", "Topf;": "\uD835\uDD4B", "topf;": "\uD835\uDD65", "topfork;": "⫚", "tosa;": "⤩", "tprime;": "‴", "TRADE;": "™", "trade;": "™", "triangle;": "▵", "triangledown;": "▿", "triangleleft;": "◃", "trianglelefteq;": "⊴", "triangleq;": "≜", "triangleright;": "▹", "trianglerighteq;": "⊵", "tridot;": "◬", "trie;": "≜", "triminus;": "⨺", "TripleDot;": "⃛", "triplus;": "⨹", "trisb;": "⧍", "tritime;": "⨻", "trpezium;": "⏢", "Tscr;": "\uD835\uDCAF", "tscr;": "\uD835\uDCC9", "TScy;": "Ц", "tscy;": "ц", "TSHcy;": "Ћ", "tshcy;": "ћ", "Tstrok;": "Ŧ", "tstrok;": "ŧ", "twixt;": "≬", "twoheadleftarrow;": "↞", "twoheadrightarrow;": "↠", "Uacute;": "Ú", Uacute: "Ú", "uacute;": "ú", uacute: "ú", "Uarr;": "↟", "uArr;": "⇑", "uarr;": "↑", "Uarrocir;": "⥉", "Ubrcy;": "Ў", "ubrcy;": "ў", "Ubreve;": "Ŭ", "ubreve;": "ŭ", "Ucirc;": "Û", Ucirc: "Û", "ucirc;": "û", ucirc: "û", "Ucy;": "У", "ucy;": "у", "udarr;": "⇅", "Udblac;": "Ű", "udblac;": "ű", "udhar;": "⥮", "ufisht;": "⥾", "Ufr;": "\uD835\uDD18", "ufr;": "\uD835\uDD32", "Ugrave;": "Ù", Ugrave: "Ù", "ugrave;": "ù", ugrave: "ù", "uHar;": "⥣", "uharl;": "↿", "uharr;": "↾", "uhblk;": "▀", "ulcorn;": "⌜", "ulcorner;": "⌜", "ulcrop;": "⌏", "ultri;": "◸", "Umacr;": "Ū", "umacr;": "ū", "uml;": "¨", uml: "¨", "UnderBar;": "_", "UnderBrace;": "⏟", "UnderBracket;": "⎵", "UnderParenthesis;": "⏝", "Union;": "⋃", "UnionPlus;": "⊎", "Uogon;": "Ų", "uogon;": "ų", "Uopf;": "\uD835\uDD4C", "uopf;": "\uD835\uDD66", "UpArrow;": "↑", "Uparrow;": "⇑", "uparrow;": "↑", "UpArrowBar;": "⤒", "UpArrowDownArrow;": "⇅", "UpDownArrow;": "↕", "Updownarrow;": "⇕", "updownarrow;": "↕", "UpEquilibrium;": "⥮", "upharpoonleft;": "↿", "upharpoonright;": "↾", "uplus;": "⊎", "UpperLeftArrow;": "↖", "UpperRightArrow;": "↗", "Upsi;": "ϒ", "upsi;": "υ", "upsih;": "ϒ", "Upsilon;": "Υ", "upsilon;": "υ", "UpTee;": "⊥", "UpTeeArrow;": "↥", "upuparrows;": "⇈", "urcorn;": "⌝", "urcorner;": "⌝", "urcrop;": "⌎", "Uring;": "Ů", "uring;": "ů", "urtri;": "◹", "Uscr;": "\uD835\uDCB0", "uscr;": "\uD835\uDCCA", "utdot;": "⋰", "Utilde;": "Ũ", "utilde;": "ũ", "utri;": "▵", "utrif;": "▴", "uuarr;": "⇈", "Uuml;": "Ü", Uuml: "Ü", "uuml;": "ü", uuml: "ü", "uwangle;": "⦧", "vangrt;": "⦜", "varepsilon;": "ϵ", "varkappa;": "ϰ", "varnothing;": "∅", "varphi;": "ϕ", "varpi;": "ϖ", "varpropto;": "∝", "vArr;": "⇕", "varr;": "↕", "varrho;": "ϱ", "varsigma;": "ς", "varsubsetneq;": "⊊︀", "varsubsetneqq;": "⫋︀", "varsupsetneq;": "⊋︀", "varsupsetneqq;": "⫌︀", "vartheta;": "ϑ", "vartriangleleft;": "⊲", "vartriangleright;": "⊳", "Vbar;": "⫫", "vBar;": "⫨", "vBarv;": "⫩", "Vcy;": "В", "vcy;": "в", "VDash;": "⊫", "Vdash;": "⊩", "vDash;": "⊨", "vdash;": "⊢", "Vdashl;": "⫦", "Vee;": "⋁", "vee;": "∨", "veebar;": "⊻", "veeeq;": "≚", "vellip;": "⋮", "Verbar;": "‖", "verbar;": "|", "Vert;": "‖", "vert;": "|", "VerticalBar;": "∣", "VerticalLine;": "|", "VerticalSeparator;": "❘", "VerticalTilde;": "≀", "VeryThinSpace;": " ", "Vfr;": "\uD835\uDD19", "vfr;": "\uD835\uDD33", "vltri;": "⊲", "vnsub;": "⊂⃒", "vnsup;": "⊃⃒", "Vopf;": "\uD835\uDD4D", "vopf;": "\uD835\uDD67", "vprop;": "∝", "vrtri;": "⊳", "Vscr;": "\uD835\uDCB1", "vscr;": "\uD835\uDCCB", "vsubnE;": "⫋︀", "vsubne;": "⊊︀", "vsupnE;": "⫌︀", "vsupne;": "⊋︀", "Vvdash;": "⊪", "vzigzag;": "⦚", "Wcirc;": "Ŵ", "wcirc;": "ŵ", "wedbar;": "⩟", "Wedge;": "⋀", "wedge;": "∧", "wedgeq;": "≙", "weierp;": "℘", "Wfr;": "\uD835\uDD1A", "wfr;": "\uD835\uDD34", "Wopf;": "\uD835\uDD4E", "wopf;": "\uD835\uDD68", "wp;": "℘", "wr;": "≀", "wreath;": "≀", "Wscr;": "\uD835\uDCB2", "wscr;": "\uD835\uDCCC", "xcap;": "⋂", "xcirc;": "◯", "xcup;": "⋃", "xdtri;": "▽", "Xfr;": "\uD835\uDD1B", "xfr;": "\uD835\uDD35", "xhArr;": "⟺", "xharr;": "⟷", "Xi;": "Ξ", "xi;": "ξ", "xlArr;": "⟸", "xlarr;": "⟵", "xmap;": "⟼", "xnis;": "⋻", "xodot;": "⨀", "Xopf;": "\uD835\uDD4F", "xopf;": "\uD835\uDD69", "xoplus;": "⨁", "xotime;": "⨂", "xrArr;": "⟹", "xrarr;": "⟶", "Xscr;": "\uD835\uDCB3", "xscr;": "\uD835\uDCCD", "xsqcup;": "⨆", "xuplus;": "⨄", "xutri;": "△", "xvee;": "⋁", "xwedge;": "⋀", "Yacute;": "Ý", Yacute: "Ý", "yacute;": "ý", yacute: "ý", "YAcy;": "Я", "yacy;": "я", "Ycirc;": "Ŷ", "ycirc;": "ŷ", "Ycy;": "Ы", "ycy;": "ы", "yen;": "¥", yen: "¥", "Yfr;": "\uD835\uDD1C", "yfr;": "\uD835\uDD36", "YIcy;": "Ї", "yicy;": "ї", "Yopf;": "\uD835\uDD50", "yopf;": "\uD835\uDD6A", "Yscr;": "\uD835\uDCB4", "yscr;": "\uD835\uDCCE", "YUcy;": "Ю", "yucy;": "ю", "Yuml;": "Ÿ", "yuml;": "ÿ", yuml: "ÿ", "Zacute;": "Ź", "zacute;": "ź", "Zcaron;": "Ž", "zcaron;": "ž", "Zcy;": "З", "zcy;": "з", "Zdot;": "Ż", "zdot;": "ż", "zeetrf;": "ℨ", "ZeroWidthSpace;": "​", "Zeta;": "Ζ", "zeta;": "ζ", "Zfr;": "ℨ", "zfr;": "\uD835\uDD37", "ZHcy;": "Ж", "zhcy;": "ж", "zigrarr;": "⇝", "Zopf;": "ℤ", "zopf;": "\uD835\uDD6B", "Zscr;": "\uD835\uDCB5", "zscr;": "\uD835\uDCCF", "zwj;": "‍", "zwnj;": "‌" }; // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/services/htmlCompletion.js var l10n2 = __toESM(require_main(), 1); // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/utils/strings.js function startsWith(haystack, needle) { if (haystack.length < needle.length) { return false; } for (let i = 0;i < needle.length; i++) { if (haystack[i] !== needle[i]) { return false; } } return true; } function endsWith(haystack, needle) { const diff = haystack.length - needle.length; if (diff > 0) { return haystack.lastIndexOf(needle) === diff; } else if (diff === 0) { return haystack === needle; } else { return false; } } function repeat(value, count) { let s = ""; while (count > 0) { if ((count & 1) === 1) { s += value; } value += value; count = count >>> 1; } return s; } var _a = 97; var _z = 122; var _A = 65; var _Z = 90; var _0 = 48; var _9 = 57; function isLetterOrDigit(text, index) { const c = text.charCodeAt(index); return _a <= c && c <= _z || _A <= c && c <= _Z || _0 <= c && c <= _9; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/utils/object.js function isDefined(obj) { return typeof obj !== "undefined"; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/utils/markup.js function normalizeMarkupContent(input) { if (!input) { return; } if (typeof input === "string") { return { kind: "markdown", value: input }; } return { kind: "markdown", value: input.value }; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/languageFacts/dataProvider.js var BaselineImages = { BASELINE_LIMITED: "data:image/svg+xml;base64,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", BASELINE_LOW: "data:image/svg+xml;base64,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", BASELINE_HIGH: "data:image/svg+xml;base64,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" }; function getEntryBaselineImage(status) { if (!status) { return ""; } let baselineImg; switch (status?.baseline) { case "low": baselineImg = BaselineImages.BASELINE_LOW; break; case "high": baselineImg = BaselineImages.BASELINE_HIGH; break; default: baselineImg = BaselineImages.BASELINE_LIMITED; } return `![Baseline icon](${baselineImg})`; } function getEntryBaselineStatus(status, browsers) { if (!status) { return ""; } if (status.baseline === false) { const missingBrowsers = getMissingBaselineBrowsers(browsers); let status2 = `Limited availability across major browsers`; if (missingBrowsers) { status2 += ` (Not fully implemented in ${missingBrowsers})`; } return status2; } const baselineYear = status.baseline_low_date?.split("-")[0]; return `${status.baseline === "low" ? "Newly" : "Widely"} available across major browsers (Baseline since ${baselineYear})`; } var browserNames = { C: { name: "Chrome", platform: "desktop" }, CA: { name: "Chrome", platform: "Android" }, E: { name: "Edge", platform: "desktop" }, FF: { name: "Firefox", platform: "desktop" }, FFA: { name: "Firefox", platform: "Android" }, S: { name: "Safari", platform: "macOS" }, SM: { name: "Safari", platform: "iOS" } }; var shortCompatPattern = /(E|FFA|FF|SM|S|CA|C|IE|O)([\d|\.]+)?/; var missingBaselineBrowserFormatter = new Intl.ListFormat("en", { style: "long", type: "disjunction" }); function getMissingBaselineBrowsers(browsers) { if (!browsers) { return ""; } const missingBrowsers = new Map(Object.entries(browserNames)); for (const shortCompatString of browsers) { const match = shortCompatPattern.exec(shortCompatString); if (!match) { continue; } const browser = match[1]; missingBrowsers.delete(browser); } return missingBaselineBrowserFormatter.format(Object.values(Array.from(missingBrowsers.entries()).reduce((browsers2, [browserId, browser]) => { if (browser.name in browsers2 || browserId === "E") { browsers2[browser.name] = browser.name; return browsers2; } browsers2[browser.name] = `${browser.name} on ${browser.platform}`; return browsers2; }, {}))); } class HTMLDataProvider { isApplicable() { return true; } constructor(id, customData) { this.id = id; this._tags = []; this._tagMap = {}; this._valueSetMap = {}; this._tags = customData.tags || []; this._globalAttributes = customData.globalAttributes || []; this._tags.forEach((t2) => { this._tagMap[t2.name.toLowerCase()] = t2; }); if (customData.valueSets) { customData.valueSets.forEach((vs) => { this._valueSetMap[vs.name] = vs.values; }); } } getId() { return this.id; } provideTags() { return this._tags; } provideAttributes(tag) { const attributes = []; const processAttribute = (a) => { attributes.push(a); }; const tagEntry = this._tagMap[tag.toLowerCase()]; if (tagEntry) { tagEntry.attributes.forEach(processAttribute); } this._globalAttributes.forEach(processAttribute); return attributes; } provideValues(tag, attribute) { const values = []; attribute = attribute.toLowerCase(); const processAttributes = (attributes) => { attributes.forEach((a) => { if (a.name.toLowerCase() === attribute) { if (a.values) { a.values.forEach((v) => { values.push(v); }); } if (a.valueSet) { if (this._valueSetMap[a.valueSet]) { this._valueSetMap[a.valueSet].forEach((v) => { values.push(v); }); } } } }); }; const tagEntry = this._tagMap[tag.toLowerCase()]; if (tagEntry) { processAttributes(tagEntry.attributes); } processAttributes(this._globalAttributes); return values; } } function generateDocumentation(item, settings = {}, doesSupportMarkdown) { const result = { kind: doesSupportMarkdown ? "markdown" : "plaintext", value: "" }; if (item.description && settings.documentation !== false) { const normalizedDescription = normalizeMarkupContent(item.description); if (normalizedDescription) { result.value += normalizedDescription.value; } } if (item.status && settings.documentation !== false) { if (result.value.length) { result.value += ` `; } const baselineStatus = getEntryBaselineStatus(item.status, item.browsers); if (doesSupportMarkdown) { result.value += `${getEntryBaselineImage(item.status)} _${baselineStatus}_`; } else { result.value += baselineStatus; } } if (item.references && item.references.length > 0 && settings.references !== false) { if (result.value.length) { result.value += ` `; } if (doesSupportMarkdown) { result.value += item.references.map((r) => { return `[${r.name}](${r.url})`; }).join(" | "); } else { result.value += item.references.map((r) => { return `${r.name}: ${r.url}`; }).join(` `); } } if (result.value === "") { return; } return result; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/services/pathCompletion.js class PathCompletionParticipant { constructor(dataManager, readDirectory) { this.dataManager = dataManager; this.readDirectory = readDirectory; this.atributeCompletions = []; } onHtmlAttributeValue(context) { if (this.dataManager.isPathAttribute(context.tag, context.attribute)) { this.atributeCompletions.push(context); } } async computeCompletions(document, documentContext) { const result = { items: [], isIncomplete: false }; for (const attributeCompletion of this.atributeCompletions) { const fullValue = stripQuotes(document.getText(attributeCompletion.range)); if (isCompletablePath(fullValue)) { if (fullValue === "." || fullValue === "..") { result.isIncomplete = true; } else { const replaceRange = pathToReplaceRange(attributeCompletion.value, fullValue, attributeCompletion.range); const suggestions = await this.providePathSuggestions(attributeCompletion.value, replaceRange, document, documentContext, attributeCompletion); for (const item of suggestions) { result.items.push(item); } } } } return result; } async providePathSuggestions(valueBeforeCursor, replaceRange, document, documentContext, context) { const valueBeforeLastSlash = valueBeforeCursor.substring(0, valueBeforeCursor.lastIndexOf("/") + 1); let parentDir = documentContext.resolveReference(valueBeforeLastSlash || ".", document.uri); if (parentDir) { try { const result = []; const infos = await this.readDirectory(parentDir); const extensionFilter = this.getExtensionFilter(context); for (const [name, type] of infos) { if (name.charCodeAt(0) !== CharCode_dot) { const item = createCompletionItem(name, type === FileType.Directory, replaceRange); if (extensionFilter) { if (type === FileType.Directory) { result.push(item); } else { const matchesFilter = extensionFilter.extensions.some((ext) => name.toLowerCase().endsWith(ext)); if (matchesFilter) { item.sortText = "0_" + name; result.push(item); } else if (!extensionFilter.exclusive) { item.sortText = "1_" + name; result.push(item); } } } else { result.push(item); } } } return result; } catch (e) {} } return []; } getExtensionFilter(context) { if (!context) { return; } if (context.tag === "link" && context.attribute === "href" && context.attributes) { const rel = context.attributes["rel"]; if (rel === "stylesheet" || rel === '"stylesheet"' || rel === "'stylesheet'") { return { extensions: [".css", ".scss", ".sass", ".less"], exclusive: false }; } if (rel === "icon" || rel === '"icon"' || rel === "'icon'" || rel === "apple-touch-icon" || rel === '"apple-touch-icon"' || rel === "'apple-touch-icon'") { return { extensions: [".ico", ".png", ".svg", ".jpg", ".jpeg", ".gif", ".webp"], exclusive: false }; } } if (context.tag === "script" && context.attribute === "src") { return { extensions: [".js", ".mjs", ".cjs", ".ts", ".tsx", ".jsx"], exclusive: false }; } if (context.tag === "img" && context.attribute === "src") { return { extensions: [".png", ".jpg", ".jpeg", ".gif", ".svg", ".webp", ".bmp", ".ico"], exclusive: false }; } if (context.tag === "video" && context.attribute === "src") { return { extensions: [".mp4", ".webm", ".ogg", ".mov", ".avi"], exclusive: false }; } if (context.tag === "audio" && context.attribute === "src") { return { extensions: [".mp3", ".wav", ".ogg", ".m4a", ".aac", ".flac"], exclusive: false }; } return; } } var CharCode_dot = 46; function stripQuotes(fullValue) { if (startsWith(fullValue, `'`) || startsWith(fullValue, `"`)) { return fullValue.slice(1, -1); } else { return fullValue; } } function isCompletablePath(value) { if (startsWith(value, "http") || startsWith(value, "https") || startsWith(value, "//")) { return false; } return true; } function pathToReplaceRange(valueBeforeCursor, fullValue, range) { let replaceRange; const lastIndexOfSlash = valueBeforeCursor.lastIndexOf("/"); if (lastIndexOfSlash === -1) { replaceRange = shiftRange(range, 1, -1); } else { const valueAfterLastSlash = fullValue.slice(lastIndexOfSlash + 1); const startPos = shiftPosition(range.end, -1 - valueAfterLastSlash.length); const whitespaceIndex = valueAfterLastSlash.indexOf(" "); let endPos; if (whitespaceIndex !== -1) { endPos = shiftPosition(startPos, whitespaceIndex); } else { endPos = shiftPosition(range.end, -1); } replaceRange = Range.create(startPos, endPos); } return replaceRange; } function createCompletionItem(p, isDir, replaceRange) { if (isDir) { p = p + "/"; return { label: p, kind: CompletionItemKind.Folder, textEdit: TextEdit.replace(replaceRange, p), command: { title: "Suggest", command: "editor.action.triggerSuggest" } }; } else { return { label: p, kind: CompletionItemKind.File, textEdit: TextEdit.replace(replaceRange, p) }; } } function shiftPosition(pos, offset) { return Position.create(pos.line, pos.character + offset); } function shiftRange(range, startOffset, endOffset) { const start = shiftPosition(range.start, startOffset); const end = shiftPosition(range.end, endOffset); return Range.create(start, end); } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/services/htmlCompletion.js class HTMLCompletion { constructor(lsOptions, dataManager) { this.lsOptions = lsOptions; this.dataManager = dataManager; this.completionParticipants = []; } setCompletionParticipants(registeredCompletionParticipants) { this.completionParticipants = registeredCompletionParticipants || []; } async doComplete2(document, position, htmlDocument, documentContext, settings) { if (!this.lsOptions.fileSystemProvider || !this.lsOptions.fileSystemProvider.readDirectory) { return this.doComplete(document, position, htmlDocument, settings); } const participant = new PathCompletionParticipant(this.dataManager, this.lsOptions.fileSystemProvider.readDirectory); const contributedParticipants = this.completionParticipants; this.completionParticipants = [participant].concat(contributedParticipants); const result = this.doComplete(document, position, htmlDocument, settings); try { const pathCompletionResult = await participant.computeCompletions(document, documentContext); return { isIncomplete: result.isIncomplete || pathCompletionResult.isIncomplete, items: pathCompletionResult.items.concat(result.items) }; } finally { this.completionParticipants = contributedParticipants; } } doComplete(document, position, htmlDocument, settings) { const result = this._doComplete(document, position, htmlDocument, settings); return this.convertCompletionList(result); } _doComplete(document, position, htmlDocument, settings) { const result = { isIncomplete: false, items: [] }; const completionParticipants = this.completionParticipants; const dataProviders = this.dataManager.getDataProviders().filter((p) => p.isApplicable(document.languageId) && (!settings || settings[p.getId()] !== false)); const doesSupportMarkdown = this.doesSupportMarkdown(); const text = document.getText(); const offset = document.offsetAt(position); const node = htmlDocument.findNodeBefore(offset); if (!node) { return result; } const scanner = createScanner(text, node.start); let currentTag = ""; let currentAttributeName; let voidElements; function getReplaceRange(replaceStart, replaceEnd = offset) { if (replaceStart > offset) { replaceStart = offset; } return { start: document.positionAt(replaceStart), end: document.positionAt(replaceEnd) }; } function collectOpenTagSuggestions(afterOpenBracket, tagNameEnd) { const range = getReplaceRange(afterOpenBracket, tagNameEnd); dataProviders.forEach((provider) => { provider.provideTags().forEach((tag) => { result.items.push({ label: tag.name, kind: CompletionItemKind.Property, documentation: generateDocumentation(tag, undefined, doesSupportMarkdown), textEdit: TextEdit.replace(range, tag.name), insertTextFormat: InsertTextFormat.PlainText }); }); }); return result; } function getLineIndent(offset2) { let start = offset2; while (start > 0) { const ch = text.charAt(start - 1); if (` \r`.indexOf(ch) >= 0) { return text.substring(start, offset2); } if (!isWhiteSpace(ch)) { return null; } start--; } return text.substring(0, offset2); } function collectCloseTagSuggestions(afterOpenBracket, inOpenTag, tagNameEnd = offset) { if (settings && settings.hideEndTagSuggestions) { return result; } const range = getReplaceRange(afterOpenBracket, tagNameEnd); const closeTag = isFollowedBy(text, tagNameEnd, ScannerState.WithinEndTag, TokenType.EndTagClose) ? "" : ">"; let curr = node; if (inOpenTag) { curr = curr.parent; } while (curr) { const tag = curr.tag; if (tag && (!curr.closed || curr.endTagStart && curr.endTagStart > offset)) { const item = { label: "/" + tag, kind: CompletionItemKind.Property, filterText: "/" + tag, textEdit: TextEdit.replace(range, "/" + tag + closeTag), insertTextFormat: InsertTextFormat.PlainText }; const startIndent = getLineIndent(curr.start); const endIndent = getLineIndent(afterOpenBracket - 1); if (startIndent !== null && endIndent !== null && startIndent !== endIndent) { const insertText = startIndent + " { provider.provideTags().forEach((tag) => { result.items.push({ label: "/" + tag.name, kind: CompletionItemKind.Property, documentation: generateDocumentation(tag, undefined, doesSupportMarkdown), filterText: "/" + tag.name + closeTag, textEdit: TextEdit.replace(range, "/" + tag.name + closeTag), insertTextFormat: InsertTextFormat.PlainText }); }); }); return result; } const collectAutoCloseTagSuggestion = (tagCloseEnd, tag) => { if (settings && settings.hideAutoCompleteProposals) { return result; } voidElements ?? (voidElements = this.dataManager.getVoidElements(dataProviders)); if (!this.dataManager.isVoidElement(tag, voidElements)) { const pos = document.positionAt(tagCloseEnd); result.items.push({ label: "", kind: CompletionItemKind.Property, filterText: "", textEdit: TextEdit.insert(pos, "$0"), insertTextFormat: InsertTextFormat.Snippet }); } return result; }; function collectTagSuggestions(tagStart, tagEnd) { collectOpenTagSuggestions(tagStart, tagEnd); collectCloseTagSuggestions(tagStart, true, tagEnd); return result; } function getExistingAttributes() { const existingAttributes = Object.create(null); node.attributeNames.forEach((attribute) => { existingAttributes[attribute] = true; }); return existingAttributes; } function collectAttributeNameSuggestions(nameStart, nameEnd = offset) { let replaceEnd = offset; while (replaceEnd < nameEnd && text[replaceEnd] !== "<") { replaceEnd++; } const currentAttribute = text.substring(nameStart, nameEnd); const range = getReplaceRange(nameStart, replaceEnd); let value = ""; if (!isFollowedBy(text, nameEnd, ScannerState.AfterAttributeName, TokenType.DelimiterAssign)) { const defaultValue = settings?.attributeDefaultValue ?? "doublequotes"; if (defaultValue === "empty") { value = "=$1"; } else if (defaultValue === "singlequotes") { value = "='$1'"; } else { value = '="$1"'; } } const seenAttributes = getExistingAttributes(); seenAttributes[currentAttribute] = false; dataProviders.forEach((provider) => { provider.provideAttributes(currentTag).forEach((attr) => { if (seenAttributes[attr.name]) { return; } seenAttributes[attr.name] = true; let codeSnippet = attr.name; let command; if (attr.valueSet !== "v" && value.length) { codeSnippet = codeSnippet + value; if (attr.valueSet || attr.name === "style") { command = { title: "Suggest", command: "editor.action.triggerSuggest" }; } } result.items.push({ label: attr.name, kind: attr.valueSet === "handler" ? CompletionItemKind.Function : CompletionItemKind.Value, documentation: generateDocumentation(attr, undefined, doesSupportMarkdown), textEdit: TextEdit.replace(range, codeSnippet), insertTextFormat: InsertTextFormat.Snippet, command }); }); }); collectDataAttributesSuggestions(range, seenAttributes); return result; } function collectDataAttributesSuggestions(range, seenAttributes) { const dataAttr = "data-"; const dataAttributes = {}; dataAttributes[dataAttr] = `${dataAttr}$1="$2"`; function addNodeDataAttributes(node2) { node2.attributeNames.forEach((attr) => { if (startsWith(attr, dataAttr) && !dataAttributes[attr] && !seenAttributes[attr]) { dataAttributes[attr] = attr + '="$1"'; } }); node2.children.forEach((child) => addNodeDataAttributes(child)); } if (htmlDocument) { htmlDocument.roots.forEach((root) => addNodeDataAttributes(root)); } Object.keys(dataAttributes).forEach((attr) => result.items.push({ label: attr, kind: CompletionItemKind.Value, textEdit: TextEdit.replace(range, dataAttributes[attr]), insertTextFormat: InsertTextFormat.Snippet })); } function collectAttributeValueSuggestions(valueStart, valueEnd = offset) { let range; let addQuotes; let valuePrefix; if (offset > valueStart && offset <= valueEnd && isQuote(text[valueStart])) { const valueContentStart = valueStart + 1; let valueContentEnd = valueEnd; if (valueEnd > valueStart && text[valueEnd - 1] === text[valueStart]) { valueContentEnd--; } const wsBefore = getWordStart(text, offset, valueContentStart); const wsAfter = getWordEnd(text, offset, valueContentEnd); range = getReplaceRange(wsBefore, wsAfter); valuePrefix = offset >= valueContentStart && offset <= valueContentEnd ? text.substring(valueContentStart, offset) : ""; addQuotes = false; } else { range = getReplaceRange(valueStart, valueEnd); valuePrefix = text.substring(valueStart, offset); addQuotes = true; } if (completionParticipants.length > 0) { const tag = currentTag.toLowerCase(); const attribute = currentAttributeName.toLowerCase(); const fullRange = getReplaceRange(valueStart, valueEnd); for (const participant of completionParticipants) { if (participant.onHtmlAttributeValue) { participant.onHtmlAttributeValue({ document, position, tag, attribute, value: valuePrefix, range: fullRange, attributes: node.attributes }); } } } dataProviders.forEach((provider) => { provider.provideValues(currentTag, currentAttributeName).forEach((value) => { const insertText = addQuotes ? '"' + value.name + '"' : value.name; result.items.push({ label: value.name, filterText: insertText, kind: CompletionItemKind.Unit, documentation: generateDocumentation(value, undefined, doesSupportMarkdown), textEdit: TextEdit.replace(range, insertText), insertTextFormat: InsertTextFormat.PlainText }); }); }); collectCharacterEntityProposals(); return result; } function scanNextForEndPos(nextToken) { if (offset === scanner.getTokenEnd()) { token = scanner.scan(); if (token === nextToken && scanner.getTokenOffset() === offset) { return scanner.getTokenEnd(); } } return offset; } function collectInsideContent() { for (const participant of completionParticipants) { if (participant.onHtmlContent) { participant.onHtmlContent({ document, position }); } } return collectCharacterEntityProposals(); } function collectCharacterEntityProposals() { let k = offset - 1; let characterStart = position.character; while (k >= 0 && isLetterOrDigit(text, k)) { k--; characterStart--; } if (k >= 0 && text[k] === "&") { const range = Range.create(Position.create(position.line, characterStart - 1), position); for (const entity in entities) { if (endsWith(entity, ";")) { const label = "&" + entity; result.items.push({ label, kind: CompletionItemKind.Keyword, documentation: l10n2.t("Character entity representing '{0}'", entities[entity]), textEdit: TextEdit.replace(range, label), insertTextFormat: InsertTextFormat.PlainText }); } } } return result; } function suggestDoctype(replaceStart, replaceEnd) { const range = getReplaceRange(replaceStart, replaceEnd); result.items.push({ label: "!DOCTYPE", kind: CompletionItemKind.Property, documentation: "A preamble for an HTML document.", textEdit: TextEdit.replace(range, "!DOCTYPE html>"), insertTextFormat: InsertTextFormat.PlainText }); } let token = scanner.scan(); while (token !== TokenType.EOS && scanner.getTokenOffset() <= offset) { switch (token) { case TokenType.StartTagOpen: if (scanner.getTokenEnd() === offset) { const endPos = scanNextForEndPos(TokenType.StartTag); if (position.line === 0) { suggestDoctype(offset, endPos); } return collectTagSuggestions(offset, endPos); } break; case TokenType.StartTag: if (scanner.getTokenOffset() <= offset && offset <= scanner.getTokenEnd()) { return collectOpenTagSuggestions(scanner.getTokenOffset(), scanner.getTokenEnd()); } currentTag = scanner.getTokenText(); break; case TokenType.AttributeName: if (scanner.getTokenOffset() <= offset && offset <= scanner.getTokenEnd()) { return collectAttributeNameSuggestions(scanner.getTokenOffset(), scanner.getTokenEnd()); } currentAttributeName = scanner.getTokenText(); break; case TokenType.DelimiterAssign: if (scanner.getTokenEnd() === offset) { const endPos = scanNextForEndPos(TokenType.AttributeValue); return collectAttributeValueSuggestions(offset, endPos); } break; case TokenType.AttributeValue: if (scanner.getTokenOffset() <= offset && offset <= scanner.getTokenEnd()) { return collectAttributeValueSuggestions(scanner.getTokenOffset(), scanner.getTokenEnd()); } break; case TokenType.Whitespace: if (offset <= scanner.getTokenEnd()) { switch (scanner.getScannerState()) { case ScannerState.AfterOpeningStartTag: const startPos = scanner.getTokenOffset(); const endTagPos = scanNextForEndPos(TokenType.StartTag); return collectTagSuggestions(startPos, endTagPos); case ScannerState.WithinTag: case ScannerState.AfterAttributeName: return collectAttributeNameSuggestions(scanner.getTokenEnd()); case ScannerState.BeforeAttributeValue: return collectAttributeValueSuggestions(scanner.getTokenEnd()); case ScannerState.AfterOpeningEndTag: return collectCloseTagSuggestions(scanner.getTokenOffset() - 1, false); case ScannerState.WithinContent: return collectInsideContent(); } } break; case TokenType.EndTagOpen: if (offset <= scanner.getTokenEnd()) { const afterOpenBracket = scanner.getTokenOffset() + 1; const endOffset = scanNextForEndPos(TokenType.EndTag); return collectCloseTagSuggestions(afterOpenBracket, false, endOffset); } break; case TokenType.EndTag: if (offset <= scanner.getTokenEnd()) { let start = scanner.getTokenOffset() - 1; while (start >= 0) { const ch = text.charAt(start); if (ch === "/") { return collectCloseTagSuggestions(start, false, scanner.getTokenEnd()); } else if (!isWhiteSpace(ch)) { break; } start--; } } break; case TokenType.StartTagClose: if (offset <= scanner.getTokenEnd()) { if (currentTag) { return collectAutoCloseTagSuggestion(scanner.getTokenEnd(), currentTag); } } break; case TokenType.Content: if (offset <= scanner.getTokenEnd()) { return collectInsideContent(); } break; default: if (offset <= scanner.getTokenEnd()) { return result; } break; } token = scanner.scan(); } return result; } doQuoteComplete(document, position, htmlDocument, settings) { const offset = document.offsetAt(position); if (offset <= 0) { return null; } const defaultValue = settings?.attributeDefaultValue ?? "doublequotes"; if (defaultValue === "empty") { return null; } const char = document.getText().charAt(offset - 1); if (char !== "=") { return null; } const value = defaultValue === "doublequotes" ? '"$1"' : "'$1'"; const node = htmlDocument.findNodeBefore(offset); if (node && node.attributes && node.start < offset && (!node.endTagStart || node.endTagStart > offset)) { const scanner = createScanner(document.getText(), node.start); let token = scanner.scan(); while (token !== TokenType.EOS && scanner.getTokenEnd() <= offset) { if (token === TokenType.AttributeName && scanner.getTokenEnd() === offset - 1) { token = scanner.scan(); if (token !== TokenType.DelimiterAssign) { return null; } token = scanner.scan(); if (token === TokenType.Unknown || token === TokenType.AttributeValue) { return null; } return value; } token = scanner.scan(); } } return null; } doTagComplete(document, position, htmlDocument) { const offset = document.offsetAt(position); if (offset <= 0) { return null; } const char = document.getText().charAt(offset - 1); if (char === ">") { const node = htmlDocument.findNodeBefore(offset); if (node && node.tag && node.start < offset && (!node.endTagStart || node.endTagStart > offset)) { const voidElements = this.dataManager.getVoidElements(document.languageId); if (!this.dataManager.isVoidElement(node.tag, voidElements)) { const scanner = createScanner(document.getText(), node.start); let token = scanner.scan(); while (token !== TokenType.EOS && scanner.getTokenEnd() <= offset) { if (token === TokenType.StartTagClose && scanner.getTokenEnd() === offset) { return `$0`; } token = scanner.scan(); } } } } else if (char === "/") { let node = htmlDocument.findNodeBefore(offset); while (node && node.closed && !(node.endTagStart && node.endTagStart > offset)) { node = node.parent; } if (node && node.tag) { const scanner = createScanner(document.getText(), node.start); let token = scanner.scan(); while (token !== TokenType.EOS && scanner.getTokenEnd() <= offset) { if (token === TokenType.EndTagOpen && scanner.getTokenEnd() === offset) { if (document.getText().charAt(offset) !== ">") { return `${node.tag}>`; } else { return node.tag; } } token = scanner.scan(); } } } return null; } convertCompletionList(list) { if (!this.doesSupportMarkdown()) { list.items.forEach((item) => { if (item.documentation && typeof item.documentation !== "string") { item.documentation = { kind: "plaintext", value: item.documentation.value }; } }); } return list; } doesSupportMarkdown() { if (!isDefined(this.supportsMarkdown)) { if (!isDefined(this.lsOptions.clientCapabilities)) { this.supportsMarkdown = true; return this.supportsMarkdown; } const documentationFormat = this.lsOptions.clientCapabilities.textDocument?.completion?.completionItem?.documentationFormat; this.supportsMarkdown = Array.isArray(documentationFormat) && documentationFormat.indexOf(MarkupKind.Markdown) !== -1; } return this.supportsMarkdown; } } function isQuote(s) { return /^["']*$/.test(s); } function isWhiteSpace(s) { return /^\s*$/.test(s); } function isFollowedBy(s, offset, intialState, expectedToken) { const scanner = createScanner(s, offset, intialState); let token = scanner.scan(); while (token === TokenType.Whitespace) { token = scanner.scan(); } return token === expectedToken; } function getWordStart(s, offset, limit) { while (offset > limit && !isWhiteSpace(s[offset - 1])) { offset--; } return offset; } function getWordEnd(s, offset, limit) { while (offset < limit && !isWhiteSpace(s[offset])) { offset++; } return offset; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/services/htmlHover.js var l10n3 = __toESM(require_main(), 1); class HTMLHover { constructor(lsOptions, dataManager) { this.lsOptions = lsOptions; this.dataManager = dataManager; } doHover(document, position, htmlDocument, options) { const convertContents = this.convertContents.bind(this); const doesSupportMarkdown = this.doesSupportMarkdown(); const offset = document.offsetAt(position); const node = htmlDocument.findNodeAt(offset); const text = document.getText(); if (!node || !node.tag) { return null; } const dataProviders = this.dataManager.getDataProviders().filter((p) => p.isApplicable(document.languageId)); function getTagHover(currTag, range, open) { for (const provider of dataProviders) { let hover2 = null; provider.provideTags().forEach((tag) => { if (tag.name.toLowerCase() === currTag.toLowerCase()) { let markupContent = generateDocumentation(tag, options, doesSupportMarkdown); if (!markupContent) { markupContent = { kind: doesSupportMarkdown ? "markdown" : "plaintext", value: "" }; } hover2 = { contents: markupContent, range }; } }); if (hover2) { hover2.contents = convertContents(hover2.contents); return hover2; } } return null; } function getAttrHover(currTag, currAttr, range) { for (const provider of dataProviders) { let hover2 = null; provider.provideAttributes(currTag).forEach((attr) => { if (currAttr === attr.name && attr.description) { const contentsDoc = generateDocumentation(attr, options, doesSupportMarkdown); if (contentsDoc) { hover2 = { contents: contentsDoc, range }; } else { hover2 = null; } } }); if (hover2) { hover2.contents = convertContents(hover2.contents); return hover2; } } return null; } function getAttrValueHover(currTag, currAttr, currAttrValue, range) { for (const provider of dataProviders) { let hover2 = null; provider.provideValues(currTag, currAttr).forEach((attrValue) => { if (currAttrValue === attrValue.name && attrValue.description) { const contentsDoc = generateDocumentation(attrValue, options, doesSupportMarkdown); if (contentsDoc) { hover2 = { contents: contentsDoc, range }; } else { hover2 = null; } } }); if (hover2) { hover2.contents = convertContents(hover2.contents); return hover2; } } return null; } function getEntityHover(text2, range) { let currEntity = filterEntity(text2); for (const entity in entities) { let hover2 = null; const label = "&" + entity; if (currEntity === label) { let code = entities[entity].charCodeAt(0).toString(16).toUpperCase(); let hex = "U+"; if (code.length < 4) { const zeroes = 4 - code.length; let k = 0; while (k < zeroes) { hex += "0"; k += 1; } } hex += code; const contentsDoc = l10n3.t("Character entity representing '{0}', unicode equivalent '{1}'", entities[entity], hex); if (contentsDoc) { hover2 = { contents: contentsDoc, range }; } else { hover2 = null; } } if (hover2) { hover2.contents = convertContents(hover2.contents); return hover2; } } return null; } function getTagNameRange(tokenType, startOffset) { const scanner = createScanner(document.getText(), startOffset); let token = scanner.scan(); while (token !== TokenType.EOS && (scanner.getTokenEnd() < offset || scanner.getTokenEnd() === offset && token !== tokenType)) { token = scanner.scan(); } if (token === tokenType && offset <= scanner.getTokenEnd()) { return { start: document.positionAt(scanner.getTokenOffset()), end: document.positionAt(scanner.getTokenEnd()) }; } return null; } function getEntityRange() { let k = offset - 1; let characterStart = position.character; while (k >= 0 && isLetterOrDigit(text, k)) { k--; characterStart--; } let n = k + 1; let characterEnd = characterStart; while (isLetterOrDigit(text, n)) { n++; characterEnd++; } if (k >= 0 && text[k] === "&") { let range = null; if (text[n] === ";") { range = Range.create(Position.create(position.line, characterStart), Position.create(position.line, characterEnd + 1)); } else { range = Range.create(Position.create(position.line, characterStart), Position.create(position.line, characterEnd)); } return range; } return null; } function filterEntity(text2) { let k = offset - 1; let newText = "&"; while (k >= 0 && isLetterOrDigit(text2, k)) { k--; } k = k + 1; while (isLetterOrDigit(text2, k)) { newText += text2[k]; k += 1; } newText += ";"; return newText; } if (node.endTagStart && offset >= node.endTagStart) { const tagRange2 = getTagNameRange(TokenType.EndTag, node.endTagStart); if (tagRange2) { return getTagHover(node.tag, tagRange2, false); } return null; } const tagRange = getTagNameRange(TokenType.StartTag, node.start); if (tagRange) { return getTagHover(node.tag, tagRange, true); } const attrRange = getTagNameRange(TokenType.AttributeName, node.start); if (attrRange) { const tag = node.tag; const attr = document.getText(attrRange); return getAttrHover(tag, attr, attrRange); } const entityRange = getEntityRange(); if (entityRange) { return getEntityHover(text, entityRange); } function scanAttrAndAttrValue(nodeStart, attrValueStart) { const scanner = createScanner(document.getText(), nodeStart); let token = scanner.scan(); let prevAttr = undefined; while (token !== TokenType.EOS && scanner.getTokenEnd() <= attrValueStart) { token = scanner.scan(); if (token === TokenType.AttributeName) { prevAttr = scanner.getTokenText(); } } return prevAttr; } const attrValueRange = getTagNameRange(TokenType.AttributeValue, node.start); if (attrValueRange) { const tag = node.tag; const attrValue = trimQuotes(document.getText(attrValueRange)); const matchAttr = scanAttrAndAttrValue(node.start, document.offsetAt(attrValueRange.start)); if (matchAttr) { return getAttrValueHover(tag, matchAttr, attrValue, attrValueRange); } } return null; } convertContents(contents) { if (!this.doesSupportMarkdown()) { if (typeof contents === "string") { return contents; } else if ("kind" in contents) { return { kind: "plaintext", value: contents.value }; } else if (Array.isArray(contents)) { contents.map((c) => { return typeof c === "string" ? c : c.value; }); } else { return contents.value; } } return contents; } doesSupportMarkdown() { if (!isDefined(this.supportsMarkdown)) { if (!isDefined(this.lsOptions.clientCapabilities)) { this.supportsMarkdown = true; return this.supportsMarkdown; } const contentFormat = this.lsOptions.clientCapabilities?.textDocument?.hover?.contentFormat; this.supportsMarkdown = Array.isArray(contentFormat) && contentFormat.indexOf(MarkupKind.Markdown) !== -1; } return this.supportsMarkdown; } } function trimQuotes(s) { if (s.length <= 1) { return s.replace(/['"]/, ""); } if (s[0] === `'` || s[0] === `"`) { s = s.slice(1); } if (s[s.length - 1] === `'` || s[s.length - 1] === `"`) { s = s.slice(0, -1); } return s; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/beautify/beautify.js function js_beautify(js_source_text, options) { return js_source_text; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/beautify/beautify-css.js var legacy_beautify_css; (function() { var __webpack_modules__ = [ , , function(module2) { function OutputLine(parent) { this.__parent = parent; this.__character_count = 0; this.__indent_count = -1; this.__alignment_count = 0; this.__wrap_point_index = 0; this.__wrap_point_character_count = 0; this.__wrap_point_indent_count = -1; this.__wrap_point_alignment_count = 0; this.__items = []; } OutputLine.prototype.clone_empty = function() { var line = new OutputLine(this.__parent); line.set_indent(this.__indent_count, this.__alignment_count); return line; }; OutputLine.prototype.item = function(index) { if (index < 0) { return this.__items[this.__items.length + index]; } else { return this.__items[index]; } }; OutputLine.prototype.has_match = function(pattern) { for (var lastCheckedOutput = this.__items.length - 1;lastCheckedOutput >= 0; lastCheckedOutput--) { if (this.__items[lastCheckedOutput].match(pattern)) { return true; } } return false; }; OutputLine.prototype.set_indent = function(indent, alignment) { if (this.is_empty()) { this.__indent_count = indent || 0; this.__alignment_count = alignment || 0; this.__character_count = this.__parent.get_indent_size(this.__indent_count, this.__alignment_count); } }; OutputLine.prototype._set_wrap_point = function() { if (this.__parent.wrap_line_length) { this.__wrap_point_index = this.__items.length; this.__wrap_point_character_count = this.__character_count; this.__wrap_point_indent_count = this.__parent.next_line.__indent_count; this.__wrap_point_alignment_count = this.__parent.next_line.__alignment_count; } }; OutputLine.prototype._should_wrap = function() { return this.__wrap_point_index && this.__character_count > this.__parent.wrap_line_length && this.__wrap_point_character_count > this.__parent.next_line.__character_count; }; OutputLine.prototype._allow_wrap = function() { if (this._should_wrap()) { this.__parent.add_new_line(); var next = this.__parent.current_line; next.set_indent(this.__wrap_point_indent_count, this.__wrap_point_alignment_count); next.__items = this.__items.slice(this.__wrap_point_index); this.__items = this.__items.slice(0, this.__wrap_point_index); next.__character_count += this.__character_count - this.__wrap_point_character_count; this.__character_count = this.__wrap_point_character_count; if (next.__items[0] === " ") { next.__items.splice(0, 1); next.__character_count -= 1; } return true; } return false; }; OutputLine.prototype.is_empty = function() { return this.__items.length === 0; }; OutputLine.prototype.last = function() { if (!this.is_empty()) { return this.__items[this.__items.length - 1]; } else { return null; } }; OutputLine.prototype.push = function(item) { this.__items.push(item); var last_newline_index = item.lastIndexOf(` `); if (last_newline_index !== -1) { this.__character_count = item.length - last_newline_index; } else { this.__character_count += item.length; } }; OutputLine.prototype.pop = function() { var item = null; if (!this.is_empty()) { item = this.__items.pop(); this.__character_count -= item.length; } return item; }; OutputLine.prototype._remove_indent = function() { if (this.__indent_count > 0) { this.__indent_count -= 1; this.__character_count -= this.__parent.indent_size; } }; OutputLine.prototype._remove_wrap_indent = function() { if (this.__wrap_point_indent_count > 0) { this.__wrap_point_indent_count -= 1; } }; OutputLine.prototype.trim = function() { while (this.last() === " ") { this.__items.pop(); this.__character_count -= 1; } }; OutputLine.prototype.toString = function() { var result = ""; if (this.is_empty()) { if (this.__parent.indent_empty_lines) { result = this.__parent.get_indent_string(this.__indent_count); } } else { result = this.__parent.get_indent_string(this.__indent_count, this.__alignment_count); result += this.__items.join(""); } return result; }; function IndentStringCache(options, baseIndentString) { this.__cache = [""]; this.__indent_size = options.indent_size; this.__indent_string = options.indent_char; if (!options.indent_with_tabs) { this.__indent_string = new Array(options.indent_size + 1).join(options.indent_char); } baseIndentString = baseIndentString || ""; if (options.indent_level > 0) { baseIndentString = new Array(options.indent_level + 1).join(this.__indent_string); } this.__base_string = baseIndentString; this.__base_string_length = baseIndentString.length; } IndentStringCache.prototype.get_indent_size = function(indent, column) { var result = this.__base_string_length; column = column || 0; if (indent < 0) { result = 0; } result += indent * this.__indent_size; result += column; return result; }; IndentStringCache.prototype.get_indent_string = function(indent_level, column) { var result = this.__base_string; column = column || 0; if (indent_level < 0) { indent_level = 0; result = ""; } column += indent_level * this.__indent_size; this.__ensure_cache(column); result += this.__cache[column]; return result; }; IndentStringCache.prototype.__ensure_cache = function(column) { while (column >= this.__cache.length) { this.__add_column(); } }; IndentStringCache.prototype.__add_column = function() { var column = this.__cache.length; var indent = 0; var result = ""; if (this.__indent_size && column >= this.__indent_size) { indent = Math.floor(column / this.__indent_size); column -= indent * this.__indent_size; result = new Array(indent + 1).join(this.__indent_string); } if (column) { result += new Array(column + 1).join(" "); } this.__cache.push(result); }; function Output(options, baseIndentString) { this.__indent_cache = new IndentStringCache(options, baseIndentString); this.raw = false; this._end_with_newline = options.end_with_newline; this.indent_size = options.indent_size; this.wrap_line_length = options.wrap_line_length; this.indent_empty_lines = options.indent_empty_lines; this.__lines = []; this.previous_line = null; this.current_line = null; this.next_line = new OutputLine(this); this.space_before_token = false; this.non_breaking_space = false; this.previous_token_wrapped = false; this.__add_outputline(); } Output.prototype.__add_outputline = function() { this.previous_line = this.current_line; this.current_line = this.next_line.clone_empty(); this.__lines.push(this.current_line); }; Output.prototype.get_line_number = function() { return this.__lines.length; }; Output.prototype.get_indent_string = function(indent, column) { return this.__indent_cache.get_indent_string(indent, column); }; Output.prototype.get_indent_size = function(indent, column) { return this.__indent_cache.get_indent_size(indent, column); }; Output.prototype.is_empty = function() { return !this.previous_line && this.current_line.is_empty(); }; Output.prototype.add_new_line = function(force_newline) { if (this.is_empty() || !force_newline && this.just_added_newline()) { return false; } if (!this.raw) { this.__add_outputline(); } return true; }; Output.prototype.get_code = function(eol) { this.trim(true); var last_item = this.current_line.pop(); if (last_item) { if (last_item[last_item.length - 1] === ` `) { last_item = last_item.replace(/\n+$/g, ""); } this.current_line.push(last_item); } if (this._end_with_newline) { this.__add_outputline(); } var sweet_code = this.__lines.join(` `); if (eol !== ` `) { sweet_code = sweet_code.replace(/[\n]/g, eol); } return sweet_code; }; Output.prototype.set_wrap_point = function() { this.current_line._set_wrap_point(); }; Output.prototype.set_indent = function(indent, alignment) { indent = indent || 0; alignment = alignment || 0; this.next_line.set_indent(indent, alignment); if (this.__lines.length > 1) { this.current_line.set_indent(indent, alignment); return true; } this.current_line.set_indent(); return false; }; Output.prototype.add_raw_token = function(token) { for (var x = 0;x < token.newlines; x++) { this.__add_outputline(); } this.current_line.set_indent(-1); this.current_line.push(token.whitespace_before); this.current_line.push(token.text); this.space_before_token = false; this.non_breaking_space = false; this.previous_token_wrapped = false; }; Output.prototype.add_token = function(printable_token) { this.__add_space_before_token(); this.current_line.push(printable_token); this.space_before_token = false; this.non_breaking_space = false; this.previous_token_wrapped = this.current_line._allow_wrap(); }; Output.prototype.__add_space_before_token = function() { if (this.space_before_token && !this.just_added_newline()) { if (!this.non_breaking_space) { this.set_wrap_point(); } this.current_line.push(" "); } }; Output.prototype.remove_indent = function(index) { var output_length = this.__lines.length; while (index < output_length) { this.__lines[index]._remove_indent(); index++; } this.current_line._remove_wrap_indent(); }; Output.prototype.trim = function(eat_newlines) { eat_newlines = eat_newlines === undefined ? false : eat_newlines; this.current_line.trim(); while (eat_newlines && this.__lines.length > 1 && this.current_line.is_empty()) { this.__lines.pop(); this.current_line = this.__lines[this.__lines.length - 1]; this.current_line.trim(); } this.previous_line = this.__lines.length > 1 ? this.__lines[this.__lines.length - 2] : null; }; Output.prototype.just_added_newline = function() { return this.current_line.is_empty(); }; Output.prototype.just_added_blankline = function() { return this.is_empty() || this.current_line.is_empty() && this.previous_line.is_empty(); }; Output.prototype.ensure_empty_line_above = function(starts_with, ends_with) { var index = this.__lines.length - 2; while (index >= 0) { var potentialEmptyLine = this.__lines[index]; if (potentialEmptyLine.is_empty()) { break; } else if (potentialEmptyLine.item(0).indexOf(starts_with) !== 0 && potentialEmptyLine.item(-1) !== ends_with) { this.__lines.splice(index + 1, 0, new OutputLine(this)); this.previous_line = this.__lines[this.__lines.length - 2]; break; } index--; } }; module2.exports.Output = Output; }, , , , function(module2) { function Options(options, merge_child_field) { this.raw_options = _mergeOpts(options, merge_child_field); this.disabled = this._get_boolean("disabled"); this.eol = this._get_characters("eol", "auto"); this.end_with_newline = this._get_boolean("end_with_newline"); this.indent_size = this._get_number("indent_size", 4); this.indent_char = this._get_characters("indent_char", " "); this.indent_level = this._get_number("indent_level"); this.preserve_newlines = this._get_boolean("preserve_newlines", true); this.max_preserve_newlines = this._get_number("max_preserve_newlines", 32786); if (!this.preserve_newlines) { this.max_preserve_newlines = 0; } this.indent_with_tabs = this._get_boolean("indent_with_tabs", this.indent_char === "\t"); if (this.indent_with_tabs) { this.indent_char = "\t"; if (this.indent_size === 1) { this.indent_size = 4; } } this.wrap_line_length = this._get_number("wrap_line_length", this._get_number("max_char")); this.indent_empty_lines = this._get_boolean("indent_empty_lines"); this.templating = this._get_selection_list("templating", ["auto", "none", "angular", "django", "erb", "handlebars", "php", "smarty"], ["auto"]); } Options.prototype._get_array = function(name, default_value) { var option_value = this.raw_options[name]; var result = default_value || []; if (typeof option_value === "object") { if (option_value !== null && typeof option_value.concat === "function") { result = option_value.concat(); } } else if (typeof option_value === "string") { result = option_value.split(/[^a-zA-Z0-9_\/\-]+/); } return result; }; Options.prototype._get_boolean = function(name, default_value) { var option_value = this.raw_options[name]; var result = option_value === undefined ? !!default_value : !!option_value; return result; }; Options.prototype._get_characters = function(name, default_value) { var option_value = this.raw_options[name]; var result = default_value || ""; if (typeof option_value === "string") { result = option_value.replace(/\\r/, "\r").replace(/\\n/, ` `).replace(/\\t/, "\t"); } return result; }; Options.prototype._get_number = function(name, default_value) { var option_value = this.raw_options[name]; default_value = parseInt(default_value, 10); if (isNaN(default_value)) { default_value = 0; } var result = parseInt(option_value, 10); if (isNaN(result)) { result = default_value; } return result; }; Options.prototype._get_selection = function(name, selection_list, default_value) { var result = this._get_selection_list(name, selection_list, default_value); if (result.length !== 1) { throw new Error("Invalid Option Value: The option '" + name + `' can only be one of the following values: ` + selection_list + ` You passed in: '` + this.raw_options[name] + "'"); } return result[0]; }; Options.prototype._get_selection_list = function(name, selection_list, default_value) { if (!selection_list || selection_list.length === 0) { throw new Error("Selection list cannot be empty."); } default_value = default_value || [selection_list[0]]; if (!this._is_valid_selection(default_value, selection_list)) { throw new Error("Invalid Default Value!"); } var result = this._get_array(name, default_value); if (!this._is_valid_selection(result, selection_list)) { throw new Error("Invalid Option Value: The option '" + name + `' can contain only the following values: ` + selection_list + ` You passed in: '` + this.raw_options[name] + "'"); } return result; }; Options.prototype._is_valid_selection = function(result, selection_list) { return result.length && selection_list.length && !result.some(function(item) { return selection_list.indexOf(item) === -1; }); }; function _mergeOpts(allOptions, childFieldName) { var finalOpts = {}; allOptions = _normalizeOpts(allOptions); var name; for (name in allOptions) { if (name !== childFieldName) { finalOpts[name] = allOptions[name]; } } if (childFieldName && allOptions[childFieldName]) { for (name in allOptions[childFieldName]) { finalOpts[name] = allOptions[childFieldName][name]; } } return finalOpts; } function _normalizeOpts(options) { var convertedOpts = {}; var key; for (key in options) { var newKey = key.replace(/-/g, "_"); convertedOpts[newKey] = options[key]; } return convertedOpts; } module2.exports.Options = Options; module2.exports.normalizeOpts = _normalizeOpts; module2.exports.mergeOpts = _mergeOpts; }, , function(module2) { var regexp_has_sticky = RegExp.prototype.hasOwnProperty("sticky"); function InputScanner(input_string) { this.__input = input_string || ""; this.__input_length = this.__input.length; this.__position = 0; } InputScanner.prototype.restart = function() { this.__position = 0; }; InputScanner.prototype.back = function() { if (this.__position > 0) { this.__position -= 1; } }; InputScanner.prototype.hasNext = function() { return this.__position < this.__input_length; }; InputScanner.prototype.next = function() { var val = null; if (this.hasNext()) { val = this.__input.charAt(this.__position); this.__position += 1; } return val; }; InputScanner.prototype.peek = function(index) { var val = null; index = index || 0; index += this.__position; if (index >= 0 && index < this.__input_length) { val = this.__input.charAt(index); } return val; }; InputScanner.prototype.__match = function(pattern, index) { pattern.lastIndex = index; var pattern_match = pattern.exec(this.__input); if (pattern_match && !(regexp_has_sticky && pattern.sticky)) { if (pattern_match.index !== index) { pattern_match = null; } } return pattern_match; }; InputScanner.prototype.test = function(pattern, index) { index = index || 0; index += this.__position; if (index >= 0 && index < this.__input_length) { return !!this.__match(pattern, index); } else { return false; } }; InputScanner.prototype.testChar = function(pattern, index) { var val = this.peek(index); pattern.lastIndex = 0; return val !== null && pattern.test(val); }; InputScanner.prototype.match = function(pattern) { var pattern_match = this.__match(pattern, this.__position); if (pattern_match) { this.__position += pattern_match[0].length; } else { pattern_match = null; } return pattern_match; }; InputScanner.prototype.read = function(starting_pattern, until_pattern, until_after) { var val = ""; var match; if (starting_pattern) { match = this.match(starting_pattern); if (match) { val += match[0]; } } if (until_pattern && (match || !starting_pattern)) { val += this.readUntil(until_pattern, until_after); } return val; }; InputScanner.prototype.readUntil = function(pattern, until_after) { var val = ""; var match_index = this.__position; pattern.lastIndex = this.__position; var pattern_match = pattern.exec(this.__input); if (pattern_match) { match_index = pattern_match.index; if (until_after) { match_index += pattern_match[0].length; } } else { match_index = this.__input_length; } val = this.__input.substring(this.__position, match_index); this.__position = match_index; return val; }; InputScanner.prototype.readUntilAfter = function(pattern) { return this.readUntil(pattern, true); }; InputScanner.prototype.get_regexp = function(pattern, match_from) { var result = null; var flags = "g"; if (match_from && regexp_has_sticky) { flags = "y"; } if (typeof pattern === "string" && pattern !== "") { result = new RegExp(pattern, flags); } else if (pattern) { result = new RegExp(pattern.source, flags); } return result; }; InputScanner.prototype.get_literal_regexp = function(literal_string) { return RegExp(literal_string.replace(/[-\/\\^$*+?.()|[\]{}]/g, "\\$&")); }; InputScanner.prototype.peekUntilAfter = function(pattern) { var start = this.__position; var val = this.readUntilAfter(pattern); this.__position = start; return val; }; InputScanner.prototype.lookBack = function(testVal) { var start = this.__position - 1; return start >= testVal.length && this.__input.substring(start - testVal.length, start).toLowerCase() === testVal; }; module2.exports.InputScanner = InputScanner; }, , , , , function(module2) { function Directives(start_block_pattern, end_block_pattern) { start_block_pattern = typeof start_block_pattern === "string" ? start_block_pattern : start_block_pattern.source; end_block_pattern = typeof end_block_pattern === "string" ? end_block_pattern : end_block_pattern.source; this.__directives_block_pattern = new RegExp(start_block_pattern + / beautify( \w+[:]\w+)+ /.source + end_block_pattern, "g"); this.__directive_pattern = / (\w+)[:](\w+)/g; this.__directives_end_ignore_pattern = new RegExp(start_block_pattern + /\sbeautify\signore:end\s/.source + end_block_pattern, "g"); } Directives.prototype.get_directives = function(text) { if (!text.match(this.__directives_block_pattern)) { return null; } var directives = {}; this.__directive_pattern.lastIndex = 0; var directive_match = this.__directive_pattern.exec(text); while (directive_match) { directives[directive_match[1]] = directive_match[2]; directive_match = this.__directive_pattern.exec(text); } return directives; }; Directives.prototype.readIgnored = function(input) { return input.readUntilAfter(this.__directives_end_ignore_pattern); }; module2.exports.Directives = Directives; }, , function(module2, __unused_webpack_exports, __webpack_require__2) { var Beautifier = __webpack_require__2(16).Beautifier, Options = __webpack_require__2(17).Options; function css_beautify(source_text, options) { var beautifier = new Beautifier(source_text, options); return beautifier.beautify(); } module2.exports = css_beautify; module2.exports.defaultOptions = function() { return new Options; }; }, function(module2, __unused_webpack_exports, __webpack_require__2) { var Options = __webpack_require__2(17).Options; var Output = __webpack_require__2(2).Output; var InputScanner = __webpack_require__2(8).InputScanner; var Directives = __webpack_require__2(13).Directives; var directives_core = new Directives(/\/\*/, /\*\//); var lineBreak = /\r\n|[\r\n]/; var allLineBreaks = /\r\n|[\r\n]/g; var whitespaceChar = /\s/; var whitespacePattern = /(?:\s|\n)+/g; var block_comment_pattern = /\/\*(?:[\s\S]*?)((?:\*\/)|$)/g; var comment_pattern = /\/\/(?:[^\n\r\u2028\u2029]*)/g; function Beautifier(source_text, options) { this._source_text = source_text || ""; this._options = new Options(options); this._ch = null; this._input = null; this.NESTED_AT_RULE = { page: true, "font-face": true, keyframes: true, media: true, supports: true, document: true }; this.CONDITIONAL_GROUP_RULE = { media: true, supports: true, document: true }; this.NON_SEMICOLON_NEWLINE_PROPERTY = [ "grid-template-areas", "grid-template" ]; } Beautifier.prototype.eatString = function(endChars) { var result = ""; this._ch = this._input.next(); while (this._ch) { result += this._ch; if (this._ch === "\\") { result += this._input.next(); } else if (endChars.indexOf(this._ch) !== -1 || this._ch === ` `) { break; } this._ch = this._input.next(); } return result; }; Beautifier.prototype.eatWhitespace = function(allowAtLeastOneNewLine) { var result = whitespaceChar.test(this._input.peek()); var newline_count = 0; while (whitespaceChar.test(this._input.peek())) { this._ch = this._input.next(); if (allowAtLeastOneNewLine && this._ch === ` `) { if (newline_count === 0 || newline_count < this._options.max_preserve_newlines) { newline_count++; this._output.add_new_line(true); } } } return result; }; Beautifier.prototype.foundNestedPseudoClass = function() { var openParen = 0; var i = 1; var ch = this._input.peek(i); while (ch) { if (ch === "{") { return true; } else if (ch === "(") { openParen += 1; } else if (ch === ")") { if (openParen === 0) { return false; } openParen -= 1; } else if (ch === ";" || ch === "}") { return false; } i++; ch = this._input.peek(i); } return false; }; Beautifier.prototype.print_string = function(output_string) { this._output.set_indent(this._indentLevel); this._output.non_breaking_space = true; this._output.add_token(output_string); }; Beautifier.prototype.preserveSingleSpace = function(isAfterSpace) { if (isAfterSpace) { this._output.space_before_token = true; } }; Beautifier.prototype.indent = function() { this._indentLevel++; }; Beautifier.prototype.outdent = function() { if (this._indentLevel > 0) { this._indentLevel--; } }; Beautifier.prototype.beautify = function() { if (this._options.disabled) { return this._source_text; } var source_text = this._source_text; var eol = this._options.eol; if (eol === "auto") { eol = ` `; if (source_text && lineBreak.test(source_text || "")) { eol = source_text.match(lineBreak)[0]; } } source_text = source_text.replace(allLineBreaks, ` `); var baseIndentString = source_text.match(/^[\t ]*/)[0]; this._output = new Output(this._options, baseIndentString); this._input = new InputScanner(source_text); this._indentLevel = 0; this._nestedLevel = 0; this._ch = null; var parenLevel = 0; var insideRule = false; var insidePropertyValue = false; var enteringConditionalGroup = false; var insideNonNestedAtRule = false; var insideScssMap = false; var topCharacter = this._ch; var insideNonSemiColonValues = false; var whitespace; var isAfterSpace; var previous_ch; while (true) { whitespace = this._input.read(whitespacePattern); isAfterSpace = whitespace !== ""; previous_ch = topCharacter; this._ch = this._input.next(); if (this._ch === "\\" && this._input.hasNext()) { this._ch += this._input.next(); } topCharacter = this._ch; if (!this._ch) { break; } else if (this._ch === "/" && this._input.peek() === "*") { this._output.add_new_line(); this._input.back(); var comment = this._input.read(block_comment_pattern); var directives = directives_core.get_directives(comment); if (directives && directives.ignore === "start") { comment += directives_core.readIgnored(this._input); } this.print_string(comment); this.eatWhitespace(true); this._output.add_new_line(); } else if (this._ch === "/" && this._input.peek() === "/") { this._output.space_before_token = true; this._input.back(); this.print_string(this._input.read(comment_pattern)); this.eatWhitespace(true); } else if (this._ch === "$") { this.preserveSingleSpace(isAfterSpace); this.print_string(this._ch); var variable = this._input.peekUntilAfter(/[: ,;{}()[\]\/='"]/g); if (variable.match(/[ :]$/)) { variable = this.eatString(": ").replace(/\s+$/, ""); this.print_string(variable); this._output.space_before_token = true; } if (parenLevel === 0 && variable.indexOf(":") !== -1) { insidePropertyValue = true; this.indent(); } } else if (this._ch === "@") { this.preserveSingleSpace(isAfterSpace); if (this._input.peek() === "{") { this.print_string(this._ch + this.eatString("}")); } else { this.print_string(this._ch); var variableOrRule = this._input.peekUntilAfter(/[: ,;{}()[\]\/='"]/g); if (variableOrRule.match(/[ :]$/)) { variableOrRule = this.eatString(": ").replace(/\s+$/, ""); this.print_string(variableOrRule); this._output.space_before_token = true; } if (parenLevel === 0 && variableOrRule.indexOf(":") !== -1) { insidePropertyValue = true; this.indent(); } else if (variableOrRule in this.NESTED_AT_RULE) { this._nestedLevel += 1; if (variableOrRule in this.CONDITIONAL_GROUP_RULE) { enteringConditionalGroup = true; } } else if (parenLevel === 0 && !insidePropertyValue) { insideNonNestedAtRule = true; } } } else if (this._ch === "#" && this._input.peek() === "{") { this.preserveSingleSpace(isAfterSpace); this.print_string(this._ch + this.eatString("}")); } else if (this._ch === "{") { if (insidePropertyValue) { insidePropertyValue = false; this.outdent(); } insideNonNestedAtRule = false; if (enteringConditionalGroup) { enteringConditionalGroup = false; insideRule = this._indentLevel >= this._nestedLevel; } else { insideRule = this._indentLevel >= this._nestedLevel - 1; } if (this._options.newline_between_rules && insideRule) { if (this._output.previous_line && this._output.previous_line.item(-1) !== "{") { this._output.ensure_empty_line_above("/", ","); } } this._output.space_before_token = true; if (this._options.brace_style === "expand") { this._output.add_new_line(); this.print_string(this._ch); this.indent(); this._output.set_indent(this._indentLevel); } else { if (previous_ch === "(") { this._output.space_before_token = false; } else if (previous_ch !== ",") { this.indent(); } this.print_string(this._ch); } this.eatWhitespace(true); this._output.add_new_line(); } else if (this._ch === "}") { this.outdent(); this._output.add_new_line(); if (previous_ch === "{") { this._output.trim(true); } if (insidePropertyValue) { this.outdent(); insidePropertyValue = false; } this.print_string(this._ch); insideRule = false; if (this._nestedLevel) { this._nestedLevel--; } this.eatWhitespace(true); this._output.add_new_line(); if (this._options.newline_between_rules && !this._output.just_added_blankline()) { if (this._input.peek() !== "}") { this._output.add_new_line(true); } } if (this._input.peek() === ")") { this._output.trim(true); if (this._options.brace_style === "expand") { this._output.add_new_line(true); } } } else if (this._ch === ":") { for (var i = 0;i < this.NON_SEMICOLON_NEWLINE_PROPERTY.length; i++) { if (this._input.lookBack(this.NON_SEMICOLON_NEWLINE_PROPERTY[i])) { insideNonSemiColonValues = true; break; } } if ((insideRule || enteringConditionalGroup) && !(this._input.lookBack("&") || this.foundNestedPseudoClass()) && !this._input.lookBack("(") && !insideNonNestedAtRule && parenLevel === 0) { this.print_string(":"); if (!insidePropertyValue) { insidePropertyValue = true; this._output.space_before_token = true; this.eatWhitespace(true); this.indent(); } } else { if (this._input.lookBack(" ")) { this._output.space_before_token = true; } if (this._input.peek() === ":") { this._ch = this._input.next(); this.print_string("::"); } else { this.print_string(":"); } } } else if (this._ch === '"' || this._ch === "'") { var preserveQuoteSpace = previous_ch === '"' || previous_ch === "'"; this.preserveSingleSpace(preserveQuoteSpace || isAfterSpace); this.print_string(this._ch + this.eatString(this._ch)); this.eatWhitespace(true); } else if (this._ch === ";") { insideNonSemiColonValues = false; if (parenLevel === 0) { if (insidePropertyValue) { this.outdent(); insidePropertyValue = false; } insideNonNestedAtRule = false; this.print_string(this._ch); this.eatWhitespace(true); if (this._input.peek() !== "/") { this._output.add_new_line(); } } else { this.print_string(this._ch); this.eatWhitespace(true); this._output.space_before_token = true; } } else if (this._ch === "(") { if (this._input.lookBack("url")) { this.print_string(this._ch); this.eatWhitespace(); parenLevel++; this.indent(); this._ch = this._input.next(); if (this._ch === ")" || this._ch === '"' || this._ch === "'") { this._input.back(); } else if (this._ch) { this.print_string(this._ch + this.eatString(")")); if (parenLevel) { parenLevel--; this.outdent(); } } } else { var space_needed = false; if (this._input.lookBack("with")) { space_needed = true; } this.preserveSingleSpace(isAfterSpace || space_needed); this.print_string(this._ch); if (insidePropertyValue && previous_ch === "$" && this._options.selector_separator_newline) { this._output.add_new_line(); insideScssMap = true; } else { this.eatWhitespace(); parenLevel++; this.indent(); } } } else if (this._ch === ")") { if (parenLevel) { parenLevel--; this.outdent(); } if (insideScssMap && this._input.peek() === ";" && this._options.selector_separator_newline) { insideScssMap = false; this.outdent(); this._output.add_new_line(); } this.print_string(this._ch); } else if (this._ch === ",") { this.print_string(this._ch); this.eatWhitespace(true); if (this._options.selector_separator_newline && (!insidePropertyValue || insideScssMap) && parenLevel === 0 && !insideNonNestedAtRule) { this._output.add_new_line(); } else { this._output.space_before_token = true; } } else if ((this._ch === ">" || this._ch === "+" || this._ch === "~") && !insidePropertyValue && parenLevel === 0) { if (this._options.space_around_combinator) { this._output.space_before_token = true; this.print_string(this._ch); this._output.space_before_token = true; } else { this.print_string(this._ch); this.eatWhitespace(); if (this._ch && whitespaceChar.test(this._ch)) { this._ch = ""; } } } else if (this._ch === "]") { this.print_string(this._ch); } else if (this._ch === "[") { this.preserveSingleSpace(isAfterSpace); this.print_string(this._ch); } else if (this._ch === "=") { this.eatWhitespace(); this.print_string("="); if (whitespaceChar.test(this._ch)) { this._ch = ""; } } else if (this._ch === "!" && !this._input.lookBack("\\")) { this._output.space_before_token = true; this.print_string(this._ch); } else { var preserveAfterSpace = previous_ch === '"' || previous_ch === "'"; this.preserveSingleSpace(preserveAfterSpace || isAfterSpace); this.print_string(this._ch); if (!this._output.just_added_newline() && this._input.peek() === ` ` && insideNonSemiColonValues) { this._output.add_new_line(); } } } var sweetCode = this._output.get_code(eol); return sweetCode; }; module2.exports.Beautifier = Beautifier; }, function(module2, __unused_webpack_exports, __webpack_require__2) { var BaseOptions = __webpack_require__2(6).Options; function Options(options) { BaseOptions.call(this, options, "css"); this.selector_separator_newline = this._get_boolean("selector_separator_newline", true); this.newline_between_rules = this._get_boolean("newline_between_rules", true); var space_around_selector_separator = this._get_boolean("space_around_selector_separator"); this.space_around_combinator = this._get_boolean("space_around_combinator") || space_around_selector_separator; var brace_style_split = this._get_selection_list("brace_style", ["collapse", "expand", "end-expand", "none", "preserve-inline"]); this.brace_style = "collapse"; for (var bs = 0;bs < brace_style_split.length; bs++) { if (brace_style_split[bs] !== "expand") { this.brace_style = "collapse"; } else { this.brace_style = brace_style_split[bs]; } } } Options.prototype = new BaseOptions; module2.exports.Options = Options; } ]; var __webpack_module_cache__ = {}; function __webpack_require__(moduleId) { var cachedModule = __webpack_module_cache__[moduleId]; if (cachedModule !== undefined) { return cachedModule.exports; } var module2 = __webpack_module_cache__[moduleId] = { exports: {} }; __webpack_modules__[moduleId](module2, module2.exports, __webpack_require__); return module2.exports; } var __webpack_exports__ = __webpack_require__(15); legacy_beautify_css = __webpack_exports__; })(); var css_beautify = legacy_beautify_css; // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/beautify/beautify-html.js var legacy_beautify_html; (function() { var __webpack_modules__ = [ , , function(module2) { function OutputLine(parent) { this.__parent = parent; this.__character_count = 0; this.__indent_count = -1; this.__alignment_count = 0; this.__wrap_point_index = 0; this.__wrap_point_character_count = 0; this.__wrap_point_indent_count = -1; this.__wrap_point_alignment_count = 0; this.__items = []; } OutputLine.prototype.clone_empty = function() { var line = new OutputLine(this.__parent); line.set_indent(this.__indent_count, this.__alignment_count); return line; }; OutputLine.prototype.item = function(index) { if (index < 0) { return this.__items[this.__items.length + index]; } else { return this.__items[index]; } }; OutputLine.prototype.has_match = function(pattern) { for (var lastCheckedOutput = this.__items.length - 1;lastCheckedOutput >= 0; lastCheckedOutput--) { if (this.__items[lastCheckedOutput].match(pattern)) { return true; } } return false; }; OutputLine.prototype.set_indent = function(indent, alignment) { if (this.is_empty()) { this.__indent_count = indent || 0; this.__alignment_count = alignment || 0; this.__character_count = this.__parent.get_indent_size(this.__indent_count, this.__alignment_count); } }; OutputLine.prototype._set_wrap_point = function() { if (this.__parent.wrap_line_length) { this.__wrap_point_index = this.__items.length; this.__wrap_point_character_count = this.__character_count; this.__wrap_point_indent_count = this.__parent.next_line.__indent_count; this.__wrap_point_alignment_count = this.__parent.next_line.__alignment_count; } }; OutputLine.prototype._should_wrap = function() { return this.__wrap_point_index && this.__character_count > this.__parent.wrap_line_length && this.__wrap_point_character_count > this.__parent.next_line.__character_count; }; OutputLine.prototype._allow_wrap = function() { if (this._should_wrap()) { this.__parent.add_new_line(); var next = this.__parent.current_line; next.set_indent(this.__wrap_point_indent_count, this.__wrap_point_alignment_count); next.__items = this.__items.slice(this.__wrap_point_index); this.__items = this.__items.slice(0, this.__wrap_point_index); next.__character_count += this.__character_count - this.__wrap_point_character_count; this.__character_count = this.__wrap_point_character_count; if (next.__items[0] === " ") { next.__items.splice(0, 1); next.__character_count -= 1; } return true; } return false; }; OutputLine.prototype.is_empty = function() { return this.__items.length === 0; }; OutputLine.prototype.last = function() { if (!this.is_empty()) { return this.__items[this.__items.length - 1]; } else { return null; } }; OutputLine.prototype.push = function(item) { this.__items.push(item); var last_newline_index = item.lastIndexOf(` `); if (last_newline_index !== -1) { this.__character_count = item.length - last_newline_index; } else { this.__character_count += item.length; } }; OutputLine.prototype.pop = function() { var item = null; if (!this.is_empty()) { item = this.__items.pop(); this.__character_count -= item.length; } return item; }; OutputLine.prototype._remove_indent = function() { if (this.__indent_count > 0) { this.__indent_count -= 1; this.__character_count -= this.__parent.indent_size; } }; OutputLine.prototype._remove_wrap_indent = function() { if (this.__wrap_point_indent_count > 0) { this.__wrap_point_indent_count -= 1; } }; OutputLine.prototype.trim = function() { while (this.last() === " ") { this.__items.pop(); this.__character_count -= 1; } }; OutputLine.prototype.toString = function() { var result = ""; if (this.is_empty()) { if (this.__parent.indent_empty_lines) { result = this.__parent.get_indent_string(this.__indent_count); } } else { result = this.__parent.get_indent_string(this.__indent_count, this.__alignment_count); result += this.__items.join(""); } return result; }; function IndentStringCache(options, baseIndentString) { this.__cache = [""]; this.__indent_size = options.indent_size; this.__indent_string = options.indent_char; if (!options.indent_with_tabs) { this.__indent_string = new Array(options.indent_size + 1).join(options.indent_char); } baseIndentString = baseIndentString || ""; if (options.indent_level > 0) { baseIndentString = new Array(options.indent_level + 1).join(this.__indent_string); } this.__base_string = baseIndentString; this.__base_string_length = baseIndentString.length; } IndentStringCache.prototype.get_indent_size = function(indent, column) { var result = this.__base_string_length; column = column || 0; if (indent < 0) { result = 0; } result += indent * this.__indent_size; result += column; return result; }; IndentStringCache.prototype.get_indent_string = function(indent_level, column) { var result = this.__base_string; column = column || 0; if (indent_level < 0) { indent_level = 0; result = ""; } column += indent_level * this.__indent_size; this.__ensure_cache(column); result += this.__cache[column]; return result; }; IndentStringCache.prototype.__ensure_cache = function(column) { while (column >= this.__cache.length) { this.__add_column(); } }; IndentStringCache.prototype.__add_column = function() { var column = this.__cache.length; var indent = 0; var result = ""; if (this.__indent_size && column >= this.__indent_size) { indent = Math.floor(column / this.__indent_size); column -= indent * this.__indent_size; result = new Array(indent + 1).join(this.__indent_string); } if (column) { result += new Array(column + 1).join(" "); } this.__cache.push(result); }; function Output(options, baseIndentString) { this.__indent_cache = new IndentStringCache(options, baseIndentString); this.raw = false; this._end_with_newline = options.end_with_newline; this.indent_size = options.indent_size; this.wrap_line_length = options.wrap_line_length; this.indent_empty_lines = options.indent_empty_lines; this.__lines = []; this.previous_line = null; this.current_line = null; this.next_line = new OutputLine(this); this.space_before_token = false; this.non_breaking_space = false; this.previous_token_wrapped = false; this.__add_outputline(); } Output.prototype.__add_outputline = function() { this.previous_line = this.current_line; this.current_line = this.next_line.clone_empty(); this.__lines.push(this.current_line); }; Output.prototype.get_line_number = function() { return this.__lines.length; }; Output.prototype.get_indent_string = function(indent, column) { return this.__indent_cache.get_indent_string(indent, column); }; Output.prototype.get_indent_size = function(indent, column) { return this.__indent_cache.get_indent_size(indent, column); }; Output.prototype.is_empty = function() { return !this.previous_line && this.current_line.is_empty(); }; Output.prototype.add_new_line = function(force_newline) { if (this.is_empty() || !force_newline && this.just_added_newline()) { return false; } if (!this.raw) { this.__add_outputline(); } return true; }; Output.prototype.get_code = function(eol) { this.trim(true); var last_item = this.current_line.pop(); if (last_item) { if (last_item[last_item.length - 1] === ` `) { last_item = last_item.replace(/\n+$/g, ""); } this.current_line.push(last_item); } if (this._end_with_newline) { this.__add_outputline(); } var sweet_code = this.__lines.join(` `); if (eol !== ` `) { sweet_code = sweet_code.replace(/[\n]/g, eol); } return sweet_code; }; Output.prototype.set_wrap_point = function() { this.current_line._set_wrap_point(); }; Output.prototype.set_indent = function(indent, alignment) { indent = indent || 0; alignment = alignment || 0; this.next_line.set_indent(indent, alignment); if (this.__lines.length > 1) { this.current_line.set_indent(indent, alignment); return true; } this.current_line.set_indent(); return false; }; Output.prototype.add_raw_token = function(token) { for (var x = 0;x < token.newlines; x++) { this.__add_outputline(); } this.current_line.set_indent(-1); this.current_line.push(token.whitespace_before); this.current_line.push(token.text); this.space_before_token = false; this.non_breaking_space = false; this.previous_token_wrapped = false; }; Output.prototype.add_token = function(printable_token) { this.__add_space_before_token(); this.current_line.push(printable_token); this.space_before_token = false; this.non_breaking_space = false; this.previous_token_wrapped = this.current_line._allow_wrap(); }; Output.prototype.__add_space_before_token = function() { if (this.space_before_token && !this.just_added_newline()) { if (!this.non_breaking_space) { this.set_wrap_point(); } this.current_line.push(" "); } }; Output.prototype.remove_indent = function(index) { var output_length = this.__lines.length; while (index < output_length) { this.__lines[index]._remove_indent(); index++; } this.current_line._remove_wrap_indent(); }; Output.prototype.trim = function(eat_newlines) { eat_newlines = eat_newlines === undefined ? false : eat_newlines; this.current_line.trim(); while (eat_newlines && this.__lines.length > 1 && this.current_line.is_empty()) { this.__lines.pop(); this.current_line = this.__lines[this.__lines.length - 1]; this.current_line.trim(); } this.previous_line = this.__lines.length > 1 ? this.__lines[this.__lines.length - 2] : null; }; Output.prototype.just_added_newline = function() { return this.current_line.is_empty(); }; Output.prototype.just_added_blankline = function() { return this.is_empty() || this.current_line.is_empty() && this.previous_line.is_empty(); }; Output.prototype.ensure_empty_line_above = function(starts_with, ends_with) { var index = this.__lines.length - 2; while (index >= 0) { var potentialEmptyLine = this.__lines[index]; if (potentialEmptyLine.is_empty()) { break; } else if (potentialEmptyLine.item(0).indexOf(starts_with) !== 0 && potentialEmptyLine.item(-1) !== ends_with) { this.__lines.splice(index + 1, 0, new OutputLine(this)); this.previous_line = this.__lines[this.__lines.length - 2]; break; } index--; } }; module2.exports.Output = Output; }, function(module2) { function Token(type, text, newlines, whitespace_before) { this.type = type; this.text = text; this.comments_before = null; this.newlines = newlines || 0; this.whitespace_before = whitespace_before || ""; this.parent = null; this.next = null; this.previous = null; this.opened = null; this.closed = null; this.directives = null; } module2.exports.Token = Token; }, , , function(module2) { function Options(options, merge_child_field) { this.raw_options = _mergeOpts(options, merge_child_field); this.disabled = this._get_boolean("disabled"); this.eol = this._get_characters("eol", "auto"); this.end_with_newline = this._get_boolean("end_with_newline"); this.indent_size = this._get_number("indent_size", 4); this.indent_char = this._get_characters("indent_char", " "); this.indent_level = this._get_number("indent_level"); this.preserve_newlines = this._get_boolean("preserve_newlines", true); this.max_preserve_newlines = this._get_number("max_preserve_newlines", 32786); if (!this.preserve_newlines) { this.max_preserve_newlines = 0; } this.indent_with_tabs = this._get_boolean("indent_with_tabs", this.indent_char === "\t"); if (this.indent_with_tabs) { this.indent_char = "\t"; if (this.indent_size === 1) { this.indent_size = 4; } } this.wrap_line_length = this._get_number("wrap_line_length", this._get_number("max_char")); this.indent_empty_lines = this._get_boolean("indent_empty_lines"); this.templating = this._get_selection_list("templating", ["auto", "none", "angular", "django", "erb", "handlebars", "php", "smarty"], ["auto"]); } Options.prototype._get_array = function(name, default_value) { var option_value = this.raw_options[name]; var result = default_value || []; if (typeof option_value === "object") { if (option_value !== null && typeof option_value.concat === "function") { result = option_value.concat(); } } else if (typeof option_value === "string") { result = option_value.split(/[^a-zA-Z0-9_\/\-]+/); } return result; }; Options.prototype._get_boolean = function(name, default_value) { var option_value = this.raw_options[name]; var result = option_value === undefined ? !!default_value : !!option_value; return result; }; Options.prototype._get_characters = function(name, default_value) { var option_value = this.raw_options[name]; var result = default_value || ""; if (typeof option_value === "string") { result = option_value.replace(/\\r/, "\r").replace(/\\n/, ` `).replace(/\\t/, "\t"); } return result; }; Options.prototype._get_number = function(name, default_value) { var option_value = this.raw_options[name]; default_value = parseInt(default_value, 10); if (isNaN(default_value)) { default_value = 0; } var result = parseInt(option_value, 10); if (isNaN(result)) { result = default_value; } return result; }; Options.prototype._get_selection = function(name, selection_list, default_value) { var result = this._get_selection_list(name, selection_list, default_value); if (result.length !== 1) { throw new Error("Invalid Option Value: The option '" + name + `' can only be one of the following values: ` + selection_list + ` You passed in: '` + this.raw_options[name] + "'"); } return result[0]; }; Options.prototype._get_selection_list = function(name, selection_list, default_value) { if (!selection_list || selection_list.length === 0) { throw new Error("Selection list cannot be empty."); } default_value = default_value || [selection_list[0]]; if (!this._is_valid_selection(default_value, selection_list)) { throw new Error("Invalid Default Value!"); } var result = this._get_array(name, default_value); if (!this._is_valid_selection(result, selection_list)) { throw new Error("Invalid Option Value: The option '" + name + `' can contain only the following values: ` + selection_list + ` You passed in: '` + this.raw_options[name] + "'"); } return result; }; Options.prototype._is_valid_selection = function(result, selection_list) { return result.length && selection_list.length && !result.some(function(item) { return selection_list.indexOf(item) === -1; }); }; function _mergeOpts(allOptions, childFieldName) { var finalOpts = {}; allOptions = _normalizeOpts(allOptions); var name; for (name in allOptions) { if (name !== childFieldName) { finalOpts[name] = allOptions[name]; } } if (childFieldName && allOptions[childFieldName]) { for (name in allOptions[childFieldName]) { finalOpts[name] = allOptions[childFieldName][name]; } } return finalOpts; } function _normalizeOpts(options) { var convertedOpts = {}; var key; for (key in options) { var newKey = key.replace(/-/g, "_"); convertedOpts[newKey] = options[key]; } return convertedOpts; } module2.exports.Options = Options; module2.exports.normalizeOpts = _normalizeOpts; module2.exports.mergeOpts = _mergeOpts; }, , function(module2) { var regexp_has_sticky = RegExp.prototype.hasOwnProperty("sticky"); function InputScanner(input_string) { this.__input = input_string || ""; this.__input_length = this.__input.length; this.__position = 0; } InputScanner.prototype.restart = function() { this.__position = 0; }; InputScanner.prototype.back = function() { if (this.__position > 0) { this.__position -= 1; } }; InputScanner.prototype.hasNext = function() { return this.__position < this.__input_length; }; InputScanner.prototype.next = function() { var val = null; if (this.hasNext()) { val = this.__input.charAt(this.__position); this.__position += 1; } return val; }; InputScanner.prototype.peek = function(index) { var val = null; index = index || 0; index += this.__position; if (index >= 0 && index < this.__input_length) { val = this.__input.charAt(index); } return val; }; InputScanner.prototype.__match = function(pattern, index) { pattern.lastIndex = index; var pattern_match = pattern.exec(this.__input); if (pattern_match && !(regexp_has_sticky && pattern.sticky)) { if (pattern_match.index !== index) { pattern_match = null; } } return pattern_match; }; InputScanner.prototype.test = function(pattern, index) { index = index || 0; index += this.__position; if (index >= 0 && index < this.__input_length) { return !!this.__match(pattern, index); } else { return false; } }; InputScanner.prototype.testChar = function(pattern, index) { var val = this.peek(index); pattern.lastIndex = 0; return val !== null && pattern.test(val); }; InputScanner.prototype.match = function(pattern) { var pattern_match = this.__match(pattern, this.__position); if (pattern_match) { this.__position += pattern_match[0].length; } else { pattern_match = null; } return pattern_match; }; InputScanner.prototype.read = function(starting_pattern, until_pattern, until_after) { var val = ""; var match; if (starting_pattern) { match = this.match(starting_pattern); if (match) { val += match[0]; } } if (until_pattern && (match || !starting_pattern)) { val += this.readUntil(until_pattern, until_after); } return val; }; InputScanner.prototype.readUntil = function(pattern, until_after) { var val = ""; var match_index = this.__position; pattern.lastIndex = this.__position; var pattern_match = pattern.exec(this.__input); if (pattern_match) { match_index = pattern_match.index; if (until_after) { match_index += pattern_match[0].length; } } else { match_index = this.__input_length; } val = this.__input.substring(this.__position, match_index); this.__position = match_index; return val; }; InputScanner.prototype.readUntilAfter = function(pattern) { return this.readUntil(pattern, true); }; InputScanner.prototype.get_regexp = function(pattern, match_from) { var result = null; var flags = "g"; if (match_from && regexp_has_sticky) { flags = "y"; } if (typeof pattern === "string" && pattern !== "") { result = new RegExp(pattern, flags); } else if (pattern) { result = new RegExp(pattern.source, flags); } return result; }; InputScanner.prototype.get_literal_regexp = function(literal_string) { return RegExp(literal_string.replace(/[-\/\\^$*+?.()|[\]{}]/g, "\\$&")); }; InputScanner.prototype.peekUntilAfter = function(pattern) { var start = this.__position; var val = this.readUntilAfter(pattern); this.__position = start; return val; }; InputScanner.prototype.lookBack = function(testVal) { var start = this.__position - 1; return start >= testVal.length && this.__input.substring(start - testVal.length, start).toLowerCase() === testVal; }; module2.exports.InputScanner = InputScanner; }, function(module2, __unused_webpack_exports, __webpack_require__2) { var InputScanner = __webpack_require__2(8).InputScanner; var Token = __webpack_require__2(3).Token; var TokenStream = __webpack_require__2(10).TokenStream; var WhitespacePattern = __webpack_require__2(11).WhitespacePattern; var TOKEN = { START: "TK_START", RAW: "TK_RAW", EOF: "TK_EOF" }; var Tokenizer = function(input_string, options) { this._input = new InputScanner(input_string); this._options = options || {}; this.__tokens = null; this._patterns = {}; this._patterns.whitespace = new WhitespacePattern(this._input); }; Tokenizer.prototype.tokenize = function() { this._input.restart(); this.__tokens = new TokenStream; this._reset(); var current; var previous = new Token(TOKEN.START, ""); var open_token = null; var open_stack = []; var comments = new TokenStream; while (previous.type !== TOKEN.EOF) { current = this._get_next_token(previous, open_token); while (this._is_comment(current)) { comments.add(current); current = this._get_next_token(previous, open_token); } if (!comments.isEmpty()) { current.comments_before = comments; comments = new TokenStream; } current.parent = open_token; if (this._is_opening(current)) { open_stack.push(open_token); open_token = current; } else if (open_token && this._is_closing(current, open_token)) { current.opened = open_token; open_token.closed = current; open_token = open_stack.pop(); current.parent = open_token; } current.previous = previous; previous.next = current; this.__tokens.add(current); previous = current; } return this.__tokens; }; Tokenizer.prototype._is_first_token = function() { return this.__tokens.isEmpty(); }; Tokenizer.prototype._reset = function() {}; Tokenizer.prototype._get_next_token = function(previous_token, open_token) { this._readWhitespace(); var resulting_string = this._input.read(/.+/g); if (resulting_string) { return this._create_token(TOKEN.RAW, resulting_string); } else { return this._create_token(TOKEN.EOF, ""); } }; Tokenizer.prototype._is_comment = function(current_token) { return false; }; Tokenizer.prototype._is_opening = function(current_token) { return false; }; Tokenizer.prototype._is_closing = function(current_token, open_token) { return false; }; Tokenizer.prototype._create_token = function(type, text) { var token = new Token(type, text, this._patterns.whitespace.newline_count, this._patterns.whitespace.whitespace_before_token); return token; }; Tokenizer.prototype._readWhitespace = function() { return this._patterns.whitespace.read(); }; module2.exports.Tokenizer = Tokenizer; module2.exports.TOKEN = TOKEN; }, function(module2) { function TokenStream(parent_token) { this.__tokens = []; this.__tokens_length = this.__tokens.length; this.__position = 0; this.__parent_token = parent_token; } TokenStream.prototype.restart = function() { this.__position = 0; }; TokenStream.prototype.isEmpty = function() { return this.__tokens_length === 0; }; TokenStream.prototype.hasNext = function() { return this.__position < this.__tokens_length; }; TokenStream.prototype.next = function() { var val = null; if (this.hasNext()) { val = this.__tokens[this.__position]; this.__position += 1; } return val; }; TokenStream.prototype.peek = function(index) { var val = null; index = index || 0; index += this.__position; if (index >= 0 && index < this.__tokens_length) { val = this.__tokens[index]; } return val; }; TokenStream.prototype.add = function(token) { if (this.__parent_token) { token.parent = this.__parent_token; } this.__tokens.push(token); this.__tokens_length += 1; }; module2.exports.TokenStream = TokenStream; }, function(module2, __unused_webpack_exports, __webpack_require__2) { var Pattern = __webpack_require__2(12).Pattern; function WhitespacePattern(input_scanner, parent) { Pattern.call(this, input_scanner, parent); if (parent) { this._line_regexp = this._input.get_regexp(parent._line_regexp); } else { this.__set_whitespace_patterns("", ""); } this.newline_count = 0; this.whitespace_before_token = ""; } WhitespacePattern.prototype = new Pattern; WhitespacePattern.prototype.__set_whitespace_patterns = function(whitespace_chars, newline_chars) { whitespace_chars += "\\t "; newline_chars += "\\n\\r"; this._match_pattern = this._input.get_regexp("[" + whitespace_chars + newline_chars + "]+", true); this._newline_regexp = this._input.get_regexp("\\r\\n|[" + newline_chars + "]"); }; WhitespacePattern.prototype.read = function() { this.newline_count = 0; this.whitespace_before_token = ""; var resulting_string = this._input.read(this._match_pattern); if (resulting_string === " ") { this.whitespace_before_token = " "; } else if (resulting_string) { var matches = this.__split(this._newline_regexp, resulting_string); this.newline_count = matches.length - 1; this.whitespace_before_token = matches[this.newline_count]; } return resulting_string; }; WhitespacePattern.prototype.matching = function(whitespace_chars, newline_chars) { var result = this._create(); result.__set_whitespace_patterns(whitespace_chars, newline_chars); result._update(); return result; }; WhitespacePattern.prototype._create = function() { return new WhitespacePattern(this._input, this); }; WhitespacePattern.prototype.__split = function(regexp, input_string) { regexp.lastIndex = 0; var start_index = 0; var result = []; var next_match = regexp.exec(input_string); while (next_match) { result.push(input_string.substring(start_index, next_match.index)); start_index = next_match.index + next_match[0].length; next_match = regexp.exec(input_string); } if (start_index < input_string.length) { result.push(input_string.substring(start_index, input_string.length)); } else { result.push(""); } return result; }; module2.exports.WhitespacePattern = WhitespacePattern; }, function(module2) { function Pattern(input_scanner, parent) { this._input = input_scanner; this._starting_pattern = null; this._match_pattern = null; this._until_pattern = null; this._until_after = false; if (parent) { this._starting_pattern = this._input.get_regexp(parent._starting_pattern, true); this._match_pattern = this._input.get_regexp(parent._match_pattern, true); this._until_pattern = this._input.get_regexp(parent._until_pattern); this._until_after = parent._until_after; } } Pattern.prototype.read = function() { var result = this._input.read(this._starting_pattern); if (!this._starting_pattern || result) { result += this._input.read(this._match_pattern, this._until_pattern, this._until_after); } return result; }; Pattern.prototype.read_match = function() { return this._input.match(this._match_pattern); }; Pattern.prototype.until_after = function(pattern) { var result = this._create(); result._until_after = true; result._until_pattern = this._input.get_regexp(pattern); result._update(); return result; }; Pattern.prototype.until = function(pattern) { var result = this._create(); result._until_after = false; result._until_pattern = this._input.get_regexp(pattern); result._update(); return result; }; Pattern.prototype.starting_with = function(pattern) { var result = this._create(); result._starting_pattern = this._input.get_regexp(pattern, true); result._update(); return result; }; Pattern.prototype.matching = function(pattern) { var result = this._create(); result._match_pattern = this._input.get_regexp(pattern, true); result._update(); return result; }; Pattern.prototype._create = function() { return new Pattern(this._input, this); }; Pattern.prototype._update = function() {}; module2.exports.Pattern = Pattern; }, function(module2) { function Directives(start_block_pattern, end_block_pattern) { start_block_pattern = typeof start_block_pattern === "string" ? start_block_pattern : start_block_pattern.source; end_block_pattern = typeof end_block_pattern === "string" ? end_block_pattern : end_block_pattern.source; this.__directives_block_pattern = new RegExp(start_block_pattern + / beautify( \w+[:]\w+)+ /.source + end_block_pattern, "g"); this.__directive_pattern = / (\w+)[:](\w+)/g; this.__directives_end_ignore_pattern = new RegExp(start_block_pattern + /\sbeautify\signore:end\s/.source + end_block_pattern, "g"); } Directives.prototype.get_directives = function(text) { if (!text.match(this.__directives_block_pattern)) { return null; } var directives = {}; this.__directive_pattern.lastIndex = 0; var directive_match = this.__directive_pattern.exec(text); while (directive_match) { directives[directive_match[1]] = directive_match[2]; directive_match = this.__directive_pattern.exec(text); } return directives; }; Directives.prototype.readIgnored = function(input) { return input.readUntilAfter(this.__directives_end_ignore_pattern); }; module2.exports.Directives = Directives; }, function(module2, __unused_webpack_exports, __webpack_require__2) { var Pattern = __webpack_require__2(12).Pattern; var template_names = { django: false, erb: false, handlebars: false, php: false, smarty: false, angular: false }; function TemplatablePattern(input_scanner, parent) { Pattern.call(this, input_scanner, parent); this.__template_pattern = null; this._disabled = Object.assign({}, template_names); this._excluded = Object.assign({}, template_names); if (parent) { this.__template_pattern = this._input.get_regexp(parent.__template_pattern); this._excluded = Object.assign(this._excluded, parent._excluded); this._disabled = Object.assign(this._disabled, parent._disabled); } var pattern = new Pattern(input_scanner); this.__patterns = { handlebars_comment: pattern.starting_with(/{{!--/).until_after(/--}}/), handlebars_unescaped: pattern.starting_with(/{{{/).until_after(/}}}/), handlebars: pattern.starting_with(/{{/).until_after(/}}/), php: pattern.starting_with(/<\?(?:[= ]|php)/).until_after(/\?>/), erb: pattern.starting_with(/<%[^%]/).until_after(/[^%]%>/), django: pattern.starting_with(/{%/).until_after(/%}/), django_value: pattern.starting_with(/{{/).until_after(/}}/), django_comment: pattern.starting_with(/{#/).until_after(/#}/), smarty: pattern.starting_with(/{(?=[^}{\s\n])/).until_after(/[^\s\n]}/), smarty_comment: pattern.starting_with(/{\*/).until_after(/\*}/), smarty_literal: pattern.starting_with(/{literal}/).until_after(/{\/literal}/) }; } TemplatablePattern.prototype = new Pattern; TemplatablePattern.prototype._create = function() { return new TemplatablePattern(this._input, this); }; TemplatablePattern.prototype._update = function() { this.__set_templated_pattern(); }; TemplatablePattern.prototype.disable = function(language) { var result = this._create(); result._disabled[language] = true; result._update(); return result; }; TemplatablePattern.prototype.read_options = function(options) { var result = this._create(); for (var language in template_names) { result._disabled[language] = options.templating.indexOf(language) === -1; } result._update(); return result; }; TemplatablePattern.prototype.exclude = function(language) { var result = this._create(); result._excluded[language] = true; result._update(); return result; }; TemplatablePattern.prototype.read = function() { var result = ""; if (this._match_pattern) { result = this._input.read(this._starting_pattern); } else { result = this._input.read(this._starting_pattern, this.__template_pattern); } var next = this._read_template(); while (next) { if (this._match_pattern) { next += this._input.read(this._match_pattern); } else { next += this._input.readUntil(this.__template_pattern); } result += next; next = this._read_template(); } if (this._until_after) { result += this._input.readUntilAfter(this._until_pattern); } return result; }; TemplatablePattern.prototype.__set_templated_pattern = function() { var items = []; if (!this._disabled.php) { items.push(this.__patterns.php._starting_pattern.source); } if (!this._disabled.handlebars) { items.push(this.__patterns.handlebars._starting_pattern.source); } if (!this._disabled.angular) { items.push(this.__patterns.handlebars._starting_pattern.source); } if (!this._disabled.erb) { items.push(this.__patterns.erb._starting_pattern.source); } if (!this._disabled.django) { items.push(this.__patterns.django._starting_pattern.source); items.push(this.__patterns.django_value._starting_pattern.source); items.push(this.__patterns.django_comment._starting_pattern.source); } if (!this._disabled.smarty) { items.push(this.__patterns.smarty._starting_pattern.source); } if (this._until_pattern) { items.push(this._until_pattern.source); } this.__template_pattern = this._input.get_regexp("(?:" + items.join("|") + ")"); }; TemplatablePattern.prototype._read_template = function() { var resulting_string = ""; var c = this._input.peek(); if (c === "<") { var peek1 = this._input.peek(1); if (!this._disabled.php && !this._excluded.php && peek1 === "?") { resulting_string = resulting_string || this.__patterns.php.read(); } if (!this._disabled.erb && !this._excluded.erb && peek1 === "%") { resulting_string = resulting_string || this.__patterns.erb.read(); } } else if (c === "{") { if (!this._disabled.handlebars && !this._excluded.handlebars) { resulting_string = resulting_string || this.__patterns.handlebars_comment.read(); resulting_string = resulting_string || this.__patterns.handlebars_unescaped.read(); resulting_string = resulting_string || this.__patterns.handlebars.read(); } if (!this._disabled.django) { if (!this._excluded.django && !this._excluded.handlebars) { resulting_string = resulting_string || this.__patterns.django_value.read(); } if (!this._excluded.django) { resulting_string = resulting_string || this.__patterns.django_comment.read(); resulting_string = resulting_string || this.__patterns.django.read(); } } if (!this._disabled.smarty) { if (this._disabled.django && this._disabled.handlebars) { resulting_string = resulting_string || this.__patterns.smarty_comment.read(); resulting_string = resulting_string || this.__patterns.smarty_literal.read(); resulting_string = resulting_string || this.__patterns.smarty.read(); } } } return resulting_string; }; module2.exports.TemplatablePattern = TemplatablePattern; }, , , , function(module2, __unused_webpack_exports, __webpack_require__2) { var Beautifier = __webpack_require__2(19).Beautifier, Options = __webpack_require__2(20).Options; function style_html(html_source, options, js_beautify2, css_beautify2) { var beautifier = new Beautifier(html_source, options, js_beautify2, css_beautify2); return beautifier.beautify(); } module2.exports = style_html; module2.exports.defaultOptions = function() { return new Options; }; }, function(module2, __unused_webpack_exports, __webpack_require__2) { var Options = __webpack_require__2(20).Options; var Output = __webpack_require__2(2).Output; var Tokenizer = __webpack_require__2(21).Tokenizer; var TOKEN = __webpack_require__2(21).TOKEN; var lineBreak = /\r\n|[\r\n]/; var allLineBreaks = /\r\n|[\r\n]/g; var Printer = function(options, base_indent_string) { this.indent_level = 0; this.alignment_size = 0; this.max_preserve_newlines = options.max_preserve_newlines; this.preserve_newlines = options.preserve_newlines; this._output = new Output(options, base_indent_string); }; Printer.prototype.current_line_has_match = function(pattern) { return this._output.current_line.has_match(pattern); }; Printer.prototype.set_space_before_token = function(value, non_breaking) { this._output.space_before_token = value; this._output.non_breaking_space = non_breaking; }; Printer.prototype.set_wrap_point = function() { this._output.set_indent(this.indent_level, this.alignment_size); this._output.set_wrap_point(); }; Printer.prototype.add_raw_token = function(token) { this._output.add_raw_token(token); }; Printer.prototype.print_preserved_newlines = function(raw_token) { var newlines = 0; if (raw_token.type !== TOKEN.TEXT && raw_token.previous.type !== TOKEN.TEXT) { newlines = raw_token.newlines ? 1 : 0; } if (this.preserve_newlines) { newlines = raw_token.newlines < this.max_preserve_newlines + 1 ? raw_token.newlines : this.max_preserve_newlines + 1; } for (var n = 0;n < newlines; n++) { this.print_newline(n > 0); } return newlines !== 0; }; Printer.prototype.traverse_whitespace = function(raw_token) { if (raw_token.whitespace_before || raw_token.newlines) { if (!this.print_preserved_newlines(raw_token)) { this._output.space_before_token = true; } return true; } return false; }; Printer.prototype.previous_token_wrapped = function() { return this._output.previous_token_wrapped; }; Printer.prototype.print_newline = function(force) { this._output.add_new_line(force); }; Printer.prototype.print_token = function(token) { if (token.text) { this._output.set_indent(this.indent_level, this.alignment_size); this._output.add_token(token.text); } }; Printer.prototype.indent = function() { this.indent_level++; }; Printer.prototype.deindent = function() { if (this.indent_level > 0) { this.indent_level--; this._output.set_indent(this.indent_level, this.alignment_size); } }; Printer.prototype.get_full_indent = function(level) { level = this.indent_level + (level || 0); if (level < 1) { return ""; } return this._output.get_indent_string(level); }; var get_type_attribute = function(start_token) { var result = null; var raw_token = start_token.next; while (raw_token.type !== TOKEN.EOF && start_token.closed !== raw_token) { if (raw_token.type === TOKEN.ATTRIBUTE && raw_token.text === "type") { if (raw_token.next && raw_token.next.type === TOKEN.EQUALS && raw_token.next.next && raw_token.next.next.type === TOKEN.VALUE) { result = raw_token.next.next.text; } break; } raw_token = raw_token.next; } return result; }; var get_custom_beautifier_name = function(tag_check, raw_token) { var typeAttribute = null; var result = null; if (!raw_token.closed) { return null; } if (tag_check === "script") { typeAttribute = "text/javascript"; } else if (tag_check === "style") { typeAttribute = "text/css"; } typeAttribute = get_type_attribute(raw_token) || typeAttribute; if (typeAttribute.search("text/css") > -1) { result = "css"; } else if (typeAttribute.search(/module|((text|application|dojo)\/(x-)?(javascript|ecmascript|jscript|livescript|(ld\+)?json|method|aspect))/) > -1) { result = "javascript"; } else if (typeAttribute.search(/(text|application|dojo)\/(x-)?(html)/) > -1) { result = "html"; } else if (typeAttribute.search(/test\/null/) > -1) { result = "null"; } return result; }; function in_array(what, arr) { return arr.indexOf(what) !== -1; } function TagFrame(parent, parser_token, indent_level) { this.parent = parent || null; this.tag = parser_token ? parser_token.tag_name : ""; this.indent_level = indent_level || 0; this.parser_token = parser_token || null; } function TagStack(printer) { this._printer = printer; this._current_frame = null; } TagStack.prototype.get_parser_token = function() { return this._current_frame ? this._current_frame.parser_token : null; }; TagStack.prototype.record_tag = function(parser_token) { var new_frame = new TagFrame(this._current_frame, parser_token, this._printer.indent_level); this._current_frame = new_frame; }; TagStack.prototype._try_pop_frame = function(frame) { var parser_token = null; if (frame) { parser_token = frame.parser_token; this._printer.indent_level = frame.indent_level; this._current_frame = frame.parent; } return parser_token; }; TagStack.prototype._get_frame = function(tag_list, stop_list) { var frame = this._current_frame; while (frame) { if (tag_list.indexOf(frame.tag) !== -1) { break; } else if (stop_list && stop_list.indexOf(frame.tag) !== -1) { frame = null; break; } frame = frame.parent; } return frame; }; TagStack.prototype.try_pop = function(tag, stop_list) { var frame = this._get_frame([tag], stop_list); return this._try_pop_frame(frame); }; TagStack.prototype.indent_to_tag = function(tag_list) { var frame = this._get_frame(tag_list); if (frame) { this._printer.indent_level = frame.indent_level; } }; function Beautifier(source_text, options, js_beautify2, css_beautify2) { this._source_text = source_text || ""; options = options || {}; this._js_beautify = js_beautify2; this._css_beautify = css_beautify2; this._tag_stack = null; var optionHtml = new Options(options, "html"); this._options = optionHtml; this._is_wrap_attributes_force = this._options.wrap_attributes.substr(0, "force".length) === "force"; this._is_wrap_attributes_force_expand_multiline = this._options.wrap_attributes === "force-expand-multiline"; this._is_wrap_attributes_force_aligned = this._options.wrap_attributes === "force-aligned"; this._is_wrap_attributes_aligned_multiple = this._options.wrap_attributes === "aligned-multiple"; this._is_wrap_attributes_preserve = this._options.wrap_attributes.substr(0, "preserve".length) === "preserve"; this._is_wrap_attributes_preserve_aligned = this._options.wrap_attributes === "preserve-aligned"; } Beautifier.prototype.beautify = function() { if (this._options.disabled) { return this._source_text; } var source_text = this._source_text; var eol = this._options.eol; if (this._options.eol === "auto") { eol = ` `; if (source_text && lineBreak.test(source_text)) { eol = source_text.match(lineBreak)[0]; } } source_text = source_text.replace(allLineBreaks, ` `); var baseIndentString = source_text.match(/^[\t ]*/)[0]; var last_token = { text: "", type: "" }; var last_tag_token = new TagOpenParserToken(this._options); var printer = new Printer(this._options, baseIndentString); var tokens = new Tokenizer(source_text, this._options).tokenize(); this._tag_stack = new TagStack(printer); var parser_token = null; var raw_token = tokens.next(); while (raw_token.type !== TOKEN.EOF) { if (raw_token.type === TOKEN.TAG_OPEN || raw_token.type === TOKEN.COMMENT) { parser_token = this._handle_tag_open(printer, raw_token, last_tag_token, last_token, tokens); last_tag_token = parser_token; } else if (raw_token.type === TOKEN.ATTRIBUTE || raw_token.type === TOKEN.EQUALS || raw_token.type === TOKEN.VALUE || raw_token.type === TOKEN.TEXT && !last_tag_token.tag_complete) { parser_token = this._handle_inside_tag(printer, raw_token, last_tag_token, last_token); } else if (raw_token.type === TOKEN.TAG_CLOSE) { parser_token = this._handle_tag_close(printer, raw_token, last_tag_token); } else if (raw_token.type === TOKEN.TEXT) { parser_token = this._handle_text(printer, raw_token, last_tag_token); } else if (raw_token.type === TOKEN.CONTROL_FLOW_OPEN) { parser_token = this._handle_control_flow_open(printer, raw_token); } else if (raw_token.type === TOKEN.CONTROL_FLOW_CLOSE) { parser_token = this._handle_control_flow_close(printer, raw_token); } else { printer.add_raw_token(raw_token); } last_token = parser_token; raw_token = tokens.next(); } var sweet_code = printer._output.get_code(eol); return sweet_code; }; Beautifier.prototype._handle_control_flow_open = function(printer, raw_token) { var parser_token = { text: raw_token.text, type: raw_token.type }; printer.set_space_before_token(raw_token.newlines || raw_token.whitespace_before !== "", true); if (raw_token.newlines) { printer.print_preserved_newlines(raw_token); } else { printer.set_space_before_token(raw_token.newlines || raw_token.whitespace_before !== "", true); } printer.print_token(raw_token); printer.indent(); return parser_token; }; Beautifier.prototype._handle_control_flow_close = function(printer, raw_token) { var parser_token = { text: raw_token.text, type: raw_token.type }; printer.deindent(); if (raw_token.newlines) { printer.print_preserved_newlines(raw_token); } else { printer.set_space_before_token(raw_token.newlines || raw_token.whitespace_before !== "", true); } printer.print_token(raw_token); return parser_token; }; Beautifier.prototype._handle_tag_close = function(printer, raw_token, last_tag_token) { var parser_token = { text: raw_token.text, type: raw_token.type }; printer.alignment_size = 0; last_tag_token.tag_complete = true; printer.set_space_before_token(raw_token.newlines || raw_token.whitespace_before !== "", true); if (last_tag_token.is_unformatted) { printer.add_raw_token(raw_token); } else { if (last_tag_token.tag_start_char === "<") { printer.set_space_before_token(raw_token.text[0] === "/", true); if (this._is_wrap_attributes_force_expand_multiline && last_tag_token.has_wrapped_attrs) { printer.print_newline(false); } } printer.print_token(raw_token); } if (last_tag_token.indent_content && !(last_tag_token.is_unformatted || last_tag_token.is_content_unformatted)) { printer.indent(); last_tag_token.indent_content = false; } if (!last_tag_token.is_inline_element && !(last_tag_token.is_unformatted || last_tag_token.is_content_unformatted)) { printer.set_wrap_point(); } return parser_token; }; Beautifier.prototype._handle_inside_tag = function(printer, raw_token, last_tag_token, last_token) { var wrapped = last_tag_token.has_wrapped_attrs; var parser_token = { text: raw_token.text, type: raw_token.type }; printer.set_space_before_token(raw_token.newlines || raw_token.whitespace_before !== "", true); if (last_tag_token.is_unformatted) { printer.add_raw_token(raw_token); } else if (last_tag_token.tag_start_char === "{" && raw_token.type === TOKEN.TEXT) { if (printer.print_preserved_newlines(raw_token)) { raw_token.newlines = 0; printer.add_raw_token(raw_token); } else { printer.print_token(raw_token); } } else { if (raw_token.type === TOKEN.ATTRIBUTE) { printer.set_space_before_token(true); } else if (raw_token.type === TOKEN.EQUALS) { printer.set_space_before_token(false); } else if (raw_token.type === TOKEN.VALUE && raw_token.previous.type === TOKEN.EQUALS) { printer.set_space_before_token(false); } if (raw_token.type === TOKEN.ATTRIBUTE && last_tag_token.tag_start_char === "<") { if (this._is_wrap_attributes_preserve || this._is_wrap_attributes_preserve_aligned) { printer.traverse_whitespace(raw_token); wrapped = wrapped || raw_token.newlines !== 0; } if (this._is_wrap_attributes_force && last_tag_token.attr_count >= this._options.wrap_attributes_min_attrs && (last_token.type !== TOKEN.TAG_OPEN || this._is_wrap_attributes_force_expand_multiline)) { printer.print_newline(false); wrapped = true; } } printer.print_token(raw_token); wrapped = wrapped || printer.previous_token_wrapped(); last_tag_token.has_wrapped_attrs = wrapped; } return parser_token; }; Beautifier.prototype._handle_text = function(printer, raw_token, last_tag_token) { var parser_token = { text: raw_token.text, type: "TK_CONTENT" }; if (last_tag_token.custom_beautifier_name) { this._print_custom_beatifier_text(printer, raw_token, last_tag_token); } else if (last_tag_token.is_unformatted || last_tag_token.is_content_unformatted) { printer.add_raw_token(raw_token); } else { printer.traverse_whitespace(raw_token); printer.print_token(raw_token); } return parser_token; }; Beautifier.prototype._print_custom_beatifier_text = function(printer, raw_token, last_tag_token) { var local = this; if (raw_token.text !== "") { var text = raw_token.text, _beautifier, script_indent_level = 1, pre = "", post = ""; if (last_tag_token.custom_beautifier_name === "javascript" && typeof this._js_beautify === "function") { _beautifier = this._js_beautify; } else if (last_tag_token.custom_beautifier_name === "css" && typeof this._css_beautify === "function") { _beautifier = this._css_beautify; } else if (last_tag_token.custom_beautifier_name === "html") { _beautifier = function(html_source, options) { var beautifier = new Beautifier(html_source, options, local._js_beautify, local._css_beautify); return beautifier.beautify(); }; } if (this._options.indent_scripts === "keep") { script_indent_level = 0; } else if (this._options.indent_scripts === "separate") { script_indent_level = -printer.indent_level; } var indentation = printer.get_full_indent(script_indent_level); text = text.replace(/\n[ \t]*$/, ""); if (last_tag_token.custom_beautifier_name !== "html" && text[0] === "<" && text.match(/^(|]]>)$/.exec(text); if (!matched) { printer.add_raw_token(raw_token); return; } pre = indentation + matched[1] + ` `; text = matched[4]; if (matched[5]) { post = indentation + matched[5]; } text = text.replace(/\n[ \t]*$/, ""); if (matched[2] || matched[3].indexOf(` `) !== -1) { matched = matched[3].match(/[ \t]+$/); if (matched) { raw_token.whitespace_before = matched[0]; } } } if (text) { if (_beautifier) { var Child_options = function() { this.eol = ` `; }; Child_options.prototype = this._options.raw_options; var child_options = new Child_options; text = _beautifier(indentation + text, child_options); } else { var white = raw_token.whitespace_before; if (white) { text = text.replace(new RegExp(` (` + white + ")?", "g"), ` `); } text = indentation + text.replace(/\n/g, ` ` + indentation); } } if (pre) { if (!text) { text = pre + post; } else { text = pre + text + ` ` + post; } } printer.print_newline(false); if (text) { raw_token.text = text; raw_token.whitespace_before = ""; raw_token.newlines = 0; printer.add_raw_token(raw_token); printer.print_newline(true); } } }; Beautifier.prototype._handle_tag_open = function(printer, raw_token, last_tag_token, last_token, tokens) { var parser_token = this._get_tag_open_token(raw_token); if ((last_tag_token.is_unformatted || last_tag_token.is_content_unformatted) && !last_tag_token.is_empty_element && raw_token.type === TOKEN.TAG_OPEN && !parser_token.is_start_tag) { printer.add_raw_token(raw_token); parser_token.start_tag_token = this._tag_stack.try_pop(parser_token.tag_name); } else { printer.traverse_whitespace(raw_token); this._set_tag_position(printer, raw_token, parser_token, last_tag_token, last_token); if (!parser_token.is_inline_element) { printer.set_wrap_point(); } printer.print_token(raw_token); } if (parser_token.is_start_tag && this._is_wrap_attributes_force) { var peek_index = 0; var peek_token; do { peek_token = tokens.peek(peek_index); if (peek_token.type === TOKEN.ATTRIBUTE) { parser_token.attr_count += 1; } peek_index += 1; } while (peek_token.type !== TOKEN.EOF && peek_token.type !== TOKEN.TAG_CLOSE); } if (this._is_wrap_attributes_force_aligned || this._is_wrap_attributes_aligned_multiple || this._is_wrap_attributes_preserve_aligned) { parser_token.alignment_size = raw_token.text.length + 1; } if (!parser_token.tag_complete && !parser_token.is_unformatted) { printer.alignment_size = parser_token.alignment_size; } return parser_token; }; var TagOpenParserToken = function(options, parent, raw_token) { this.parent = parent || null; this.text = ""; this.type = "TK_TAG_OPEN"; this.tag_name = ""; this.is_inline_element = false; this.is_unformatted = false; this.is_content_unformatted = false; this.is_empty_element = false; this.is_start_tag = false; this.is_end_tag = false; this.indent_content = false; this.multiline_content = false; this.custom_beautifier_name = null; this.start_tag_token = null; this.attr_count = 0; this.has_wrapped_attrs = false; this.alignment_size = 0; this.tag_complete = false; this.tag_start_char = ""; this.tag_check = ""; if (!raw_token) { this.tag_complete = true; } else { var tag_check_match; this.tag_start_char = raw_token.text[0]; this.text = raw_token.text; if (this.tag_start_char === "<") { tag_check_match = raw_token.text.match(/^<([^\s>]*)/); this.tag_check = tag_check_match ? tag_check_match[1] : ""; } else { tag_check_match = raw_token.text.match(/^{{~?(?:[\^]|#\*?)?([^\s}]+)/); this.tag_check = tag_check_match ? tag_check_match[1] : ""; if ((raw_token.text.startsWith("{{#>") || raw_token.text.startsWith("{{~#>")) && this.tag_check[0] === ">") { if (this.tag_check === ">" && raw_token.next !== null) { this.tag_check = raw_token.next.text.split(" ")[0]; } else { this.tag_check = raw_token.text.split(">")[1]; } } } this.tag_check = this.tag_check.toLowerCase(); if (raw_token.type === TOKEN.COMMENT) { this.tag_complete = true; } this.is_start_tag = this.tag_check.charAt(0) !== "/"; this.tag_name = !this.is_start_tag ? this.tag_check.substr(1) : this.tag_check; this.is_end_tag = !this.is_start_tag || raw_token.closed && raw_token.closed.text === "/>"; var handlebar_starts = 2; if (this.tag_start_char === "{" && this.text.length >= 3) { if (this.text.charAt(2) === "~") { handlebar_starts = 3; } } this.is_end_tag = this.is_end_tag || this.tag_start_char === "{" && (!options.indent_handlebars || this.text.length < 3 || /[^#\^]/.test(this.text.charAt(handlebar_starts))); } }; Beautifier.prototype._get_tag_open_token = function(raw_token) { var parser_token = new TagOpenParserToken(this._options, this._tag_stack.get_parser_token(), raw_token); parser_token.alignment_size = this._options.wrap_attributes_indent_size; parser_token.is_end_tag = parser_token.is_end_tag || in_array(parser_token.tag_check, this._options.void_elements); parser_token.is_empty_element = parser_token.tag_complete || parser_token.is_start_tag && parser_token.is_end_tag; parser_token.is_unformatted = !parser_token.tag_complete && in_array(parser_token.tag_check, this._options.unformatted); parser_token.is_content_unformatted = !parser_token.is_empty_element && in_array(parser_token.tag_check, this._options.content_unformatted); parser_token.is_inline_element = in_array(parser_token.tag_name, this._options.inline) || this._options.inline_custom_elements && parser_token.tag_name.includes("-") || parser_token.tag_start_char === "{"; return parser_token; }; Beautifier.prototype._set_tag_position = function(printer, raw_token, parser_token, last_tag_token, last_token) { if (!parser_token.is_empty_element) { if (parser_token.is_end_tag) { parser_token.start_tag_token = this._tag_stack.try_pop(parser_token.tag_name); } else { if (this._do_optional_end_element(parser_token)) { if (!parser_token.is_inline_element) { printer.print_newline(false); } } this._tag_stack.record_tag(parser_token); if ((parser_token.tag_name === "script" || parser_token.tag_name === "style") && !(parser_token.is_unformatted || parser_token.is_content_unformatted)) { parser_token.custom_beautifier_name = get_custom_beautifier_name(parser_token.tag_check, raw_token); } } } if (in_array(parser_token.tag_check, this._options.extra_liners)) { printer.print_newline(false); if (!printer._output.just_added_blankline()) { printer.print_newline(true); } } if (parser_token.is_empty_element) { if (parser_token.tag_start_char === "{" && parser_token.tag_check === "else") { this._tag_stack.indent_to_tag(["if", "unless", "each"]); parser_token.indent_content = true; var foundIfOnCurrentLine = printer.current_line_has_match(/{{#if/); if (!foundIfOnCurrentLine) { printer.print_newline(false); } } if (parser_token.tag_name === "!--" && last_token.type === TOKEN.TAG_CLOSE && last_tag_token.is_end_tag && parser_token.text.indexOf(` `) === -1) {} else { if (!(parser_token.is_inline_element || parser_token.is_unformatted)) { printer.print_newline(false); } this._calcluate_parent_multiline(printer, parser_token); } } else if (parser_token.is_end_tag) { var do_end_expand = false; do_end_expand = parser_token.start_tag_token && parser_token.start_tag_token.multiline_content; do_end_expand = do_end_expand || !parser_token.is_inline_element && !(last_tag_token.is_inline_element || last_tag_token.is_unformatted) && !(last_token.type === TOKEN.TAG_CLOSE && parser_token.start_tag_token === last_tag_token) && last_token.type !== "TK_CONTENT"; if (parser_token.is_content_unformatted || parser_token.is_unformatted) { do_end_expand = false; } if (do_end_expand) { printer.print_newline(false); } } else { parser_token.indent_content = !parser_token.custom_beautifier_name; if (parser_token.tag_start_char === "<") { if (parser_token.tag_name === "html") { parser_token.indent_content = this._options.indent_inner_html; } else if (parser_token.tag_name === "head") { parser_token.indent_content = this._options.indent_head_inner_html; } else if (parser_token.tag_name === "body") { parser_token.indent_content = this._options.indent_body_inner_html; } } if (!(parser_token.is_inline_element || parser_token.is_unformatted) && (last_token.type !== "TK_CONTENT" || parser_token.is_content_unformatted)) { printer.print_newline(false); } this._calcluate_parent_multiline(printer, parser_token); } }; Beautifier.prototype._calcluate_parent_multiline = function(printer, parser_token) { if (parser_token.parent && printer._output.just_added_newline() && !((parser_token.is_inline_element || parser_token.is_unformatted) && parser_token.parent.is_inline_element)) { parser_token.parent.multiline_content = true; } }; var p_closers = ["address", "article", "aside", "blockquote", "details", "div", "dl", "fieldset", "figcaption", "figure", "footer", "form", "h1", "h2", "h3", "h4", "h5", "h6", "header", "hr", "main", "menu", "nav", "ol", "p", "pre", "section", "table", "ul"]; var p_parent_excludes = ["a", "audio", "del", "ins", "map", "noscript", "video"]; Beautifier.prototype._do_optional_end_element = function(parser_token) { var result = null; if (parser_token.is_empty_element || !parser_token.is_start_tag || !parser_token.parent) { return; } if (parser_token.tag_name === "body") { result = result || this._tag_stack.try_pop("head"); } else if (parser_token.tag_name === "li") { result = result || this._tag_stack.try_pop("li", ["ol", "ul", "menu"]); } else if (parser_token.tag_name === "dd" || parser_token.tag_name === "dt") { result = result || this._tag_stack.try_pop("dt", ["dl"]); result = result || this._tag_stack.try_pop("dd", ["dl"]); } else if (parser_token.parent.tag_name === "p" && p_closers.indexOf(parser_token.tag_name) !== -1) { var p_parent = parser_token.parent.parent; if (!p_parent || p_parent_excludes.indexOf(p_parent.tag_name) === -1) { result = result || this._tag_stack.try_pop("p"); } } else if (parser_token.tag_name === "rp" || parser_token.tag_name === "rt") { result = result || this._tag_stack.try_pop("rt", ["ruby", "rtc"]); result = result || this._tag_stack.try_pop("rp", ["ruby", "rtc"]); } else if (parser_token.tag_name === "optgroup") { result = result || this._tag_stack.try_pop("optgroup", ["select"]); } else if (parser_token.tag_name === "option") { result = result || this._tag_stack.try_pop("option", ["select", "datalist", "optgroup"]); } else if (parser_token.tag_name === "colgroup") { result = result || this._tag_stack.try_pop("caption", ["table"]); } else if (parser_token.tag_name === "thead") { result = result || this._tag_stack.try_pop("caption", ["table"]); result = result || this._tag_stack.try_pop("colgroup", ["table"]); } else if (parser_token.tag_name === "tbody" || parser_token.tag_name === "tfoot") { result = result || this._tag_stack.try_pop("caption", ["table"]); result = result || this._tag_stack.try_pop("colgroup", ["table"]); result = result || this._tag_stack.try_pop("thead", ["table"]); result = result || this._tag_stack.try_pop("tbody", ["table"]); } else if (parser_token.tag_name === "tr") { result = result || this._tag_stack.try_pop("caption", ["table"]); result = result || this._tag_stack.try_pop("colgroup", ["table"]); result = result || this._tag_stack.try_pop("tr", ["table", "thead", "tbody", "tfoot"]); } else if (parser_token.tag_name === "th" || parser_token.tag_name === "td") { result = result || this._tag_stack.try_pop("td", ["table", "thead", "tbody", "tfoot", "tr"]); result = result || this._tag_stack.try_pop("th", ["table", "thead", "tbody", "tfoot", "tr"]); } parser_token.parent = this._tag_stack.get_parser_token(); return result; }; module2.exports.Beautifier = Beautifier; }, function(module2, __unused_webpack_exports, __webpack_require__2) { var BaseOptions = __webpack_require__2(6).Options; function Options(options) { BaseOptions.call(this, options, "html"); if (this.templating.length === 1 && this.templating[0] === "auto") { this.templating = ["django", "erb", "handlebars", "php"]; } this.indent_inner_html = this._get_boolean("indent_inner_html"); this.indent_body_inner_html = this._get_boolean("indent_body_inner_html", true); this.indent_head_inner_html = this._get_boolean("indent_head_inner_html", true); this.indent_handlebars = this._get_boolean("indent_handlebars", true); this.wrap_attributes = this._get_selection("wrap_attributes", ["auto", "force", "force-aligned", "force-expand-multiline", "aligned-multiple", "preserve", "preserve-aligned"]); this.wrap_attributes_min_attrs = this._get_number("wrap_attributes_min_attrs", 2); this.wrap_attributes_indent_size = this._get_number("wrap_attributes_indent_size", this.indent_size); this.extra_liners = this._get_array("extra_liners", ["head", "body", "/html"]); this.inline = this._get_array("inline", [ "a", "abbr", "area", "audio", "b", "bdi", "bdo", "br", "button", "canvas", "cite", "code", "data", "datalist", "del", "dfn", "em", "embed", "i", "iframe", "img", "input", "ins", "kbd", "keygen", "label", "map", "mark", "math", "meter", "noscript", "object", "output", "progress", "q", "ruby", "s", "samp", "select", "small", "span", "strong", "sub", "sup", "svg", "template", "textarea", "time", "u", "var", "video", "wbr", "text", "acronym", "big", "strike", "tt" ]); this.inline_custom_elements = this._get_boolean("inline_custom_elements", true); this.void_elements = this._get_array("void_elements", [ "area", "base", "br", "col", "embed", "hr", "img", "input", "keygen", "link", "menuitem", "meta", "param", "source", "track", "wbr", "!doctype", "?xml", "basefont", "isindex" ]); this.unformatted = this._get_array("unformatted", []); this.content_unformatted = this._get_array("content_unformatted", [ "pre", "textarea" ]); this.unformatted_content_delimiter = this._get_characters("unformatted_content_delimiter"); this.indent_scripts = this._get_selection("indent_scripts", ["normal", "keep", "separate"]); } Options.prototype = new BaseOptions; module2.exports.Options = Options; }, function(module2, __unused_webpack_exports, __webpack_require__2) { var BaseTokenizer = __webpack_require__2(9).Tokenizer; var BASETOKEN = __webpack_require__2(9).TOKEN; var Directives = __webpack_require__2(13).Directives; var TemplatablePattern = __webpack_require__2(14).TemplatablePattern; var Pattern = __webpack_require__2(12).Pattern; var TOKEN = { TAG_OPEN: "TK_TAG_OPEN", TAG_CLOSE: "TK_TAG_CLOSE", CONTROL_FLOW_OPEN: "TK_CONTROL_FLOW_OPEN", CONTROL_FLOW_CLOSE: "TK_CONTROL_FLOW_CLOSE", ATTRIBUTE: "TK_ATTRIBUTE", EQUALS: "TK_EQUALS", VALUE: "TK_VALUE", COMMENT: "TK_COMMENT", TEXT: "TK_TEXT", UNKNOWN: "TK_UNKNOWN", START: BASETOKEN.START, RAW: BASETOKEN.RAW, EOF: BASETOKEN.EOF }; var directives_core = new Directives(/<\!--/, /-->/); var Tokenizer = function(input_string, options) { BaseTokenizer.call(this, input_string, options); this._current_tag_name = ""; var templatable_reader = new TemplatablePattern(this._input).read_options(this._options); var pattern_reader = new Pattern(this._input); this.__patterns = { word: templatable_reader.until(/[\n\r\t <]/), word_control_flow_close_excluded: templatable_reader.until(/[\n\r\t <}]/), single_quote: templatable_reader.until_after(/'/), double_quote: templatable_reader.until_after(/"/), attribute: templatable_reader.until(/[\n\r\t =>]|\/>/), element_name: templatable_reader.until(/[\n\r\t >\/]/), angular_control_flow_start: pattern_reader.matching(/\@[a-zA-Z]+[^({]*[({]/), handlebars_comment: pattern_reader.starting_with(/{{!--/).until_after(/--}}/), handlebars: pattern_reader.starting_with(/{{/).until_after(/}}/), handlebars_open: pattern_reader.until(/[\n\r\t }]/), handlebars_raw_close: pattern_reader.until(/}}/), comment: pattern_reader.starting_with(//), cdata: pattern_reader.starting_with(//), conditional_comment: pattern_reader.starting_with(//), processing: pattern_reader.starting_with(/<\?/).until_after(/\?>/) }; if (this._options.indent_handlebars) { this.__patterns.word = this.__patterns.word.exclude("handlebars"); this.__patterns.word_control_flow_close_excluded = this.__patterns.word_control_flow_close_excluded.exclude("handlebars"); } this._unformatted_content_delimiter = null; if (this._options.unformatted_content_delimiter) { var literal_regexp = this._input.get_literal_regexp(this._options.unformatted_content_delimiter); this.__patterns.unformatted_content_delimiter = pattern_reader.matching(literal_regexp).until_after(literal_regexp); } }; Tokenizer.prototype = new BaseTokenizer; Tokenizer.prototype._is_comment = function(current_token) { return false; }; Tokenizer.prototype._is_opening = function(current_token) { return current_token.type === TOKEN.TAG_OPEN || current_token.type === TOKEN.CONTROL_FLOW_OPEN; }; Tokenizer.prototype._is_closing = function(current_token, open_token) { return current_token.type === TOKEN.TAG_CLOSE && (open_token && ((current_token.text === ">" || current_token.text === "/>") && open_token.text[0] === "<" || current_token.text === "}}" && open_token.text[0] === "{" && open_token.text[1] === "{")) || current_token.type === TOKEN.CONTROL_FLOW_CLOSE && (current_token.text === "}" && open_token.text.endsWith("{")); }; Tokenizer.prototype._reset = function() { this._current_tag_name = ""; }; Tokenizer.prototype._get_next_token = function(previous_token, open_token) { var token = null; this._readWhitespace(); var c = this._input.peek(); if (c === null) { return this._create_token(TOKEN.EOF, ""); } token = token || this._read_open_handlebars(c, open_token); token = token || this._read_attribute(c, previous_token, open_token); token = token || this._read_close(c, open_token); token = token || this._read_script_and_style(c, previous_token); token = token || this._read_control_flows(c, open_token); token = token || this._read_raw_content(c, previous_token, open_token); token = token || this._read_content_word(c, open_token); token = token || this._read_comment_or_cdata(c); token = token || this._read_processing(c); token = token || this._read_open(c, open_token); token = token || this._create_token(TOKEN.UNKNOWN, this._input.next()); return token; }; Tokenizer.prototype._read_comment_or_cdata = function(c) { var token = null; var resulting_string = null; var directives = null; if (c === "<") { var peek1 = this._input.peek(1); if (peek1 === "!") { resulting_string = this.__patterns.comment.read(); if (resulting_string) { directives = directives_core.get_directives(resulting_string); if (directives && directives.ignore === "start") { resulting_string += directives_core.readIgnored(this._input); } } else { resulting_string = this.__patterns.cdata.read(); } } if (resulting_string) { token = this._create_token(TOKEN.COMMENT, resulting_string); token.directives = directives; } } return token; }; Tokenizer.prototype._read_processing = function(c) { var token = null; var resulting_string = null; var directives = null; if (c === "<") { var peek1 = this._input.peek(1); if (peek1 === "!" || peek1 === "?") { resulting_string = this.__patterns.conditional_comment.read(); resulting_string = resulting_string || this.__patterns.processing.read(); } if (resulting_string) { token = this._create_token(TOKEN.COMMENT, resulting_string); token.directives = directives; } } return token; }; Tokenizer.prototype._read_open = function(c, open_token) { var resulting_string = null; var token = null; if (!open_token || open_token.type === TOKEN.CONTROL_FLOW_OPEN) { if (c === "<") { resulting_string = this._input.next(); if (this._input.peek() === "/") { resulting_string += this._input.next(); } resulting_string += this.__patterns.element_name.read(); token = this._create_token(TOKEN.TAG_OPEN, resulting_string); } } return token; }; Tokenizer.prototype._read_open_handlebars = function(c, open_token) { var resulting_string = null; var token = null; if (!open_token || open_token.type === TOKEN.CONTROL_FLOW_OPEN) { if ((this._options.templating.includes("angular") || this._options.indent_handlebars) && c === "{" && this._input.peek(1) === "{") { if (this._options.indent_handlebars && this._input.peek(2) === "!") { resulting_string = this.__patterns.handlebars_comment.read(); resulting_string = resulting_string || this.__patterns.handlebars.read(); token = this._create_token(TOKEN.COMMENT, resulting_string); } else { resulting_string = this.__patterns.handlebars_open.read(); token = this._create_token(TOKEN.TAG_OPEN, resulting_string); } } } return token; }; Tokenizer.prototype._read_control_flows = function(c, open_token) { var resulting_string = ""; var token = null; if (!this._options.templating.includes("angular")) { return token; } if (c === "@") { resulting_string = this.__patterns.angular_control_flow_start.read(); if (resulting_string === "") { return token; } var opening_parentheses_count = resulting_string.endsWith("(") ? 1 : 0; var closing_parentheses_count = 0; while (!(resulting_string.endsWith("{") && opening_parentheses_count === closing_parentheses_count)) { var next_char = this._input.next(); if (next_char === null) { break; } else if (next_char === "(") { opening_parentheses_count++; } else if (next_char === ")") { closing_parentheses_count++; } resulting_string += next_char; } token = this._create_token(TOKEN.CONTROL_FLOW_OPEN, resulting_string); } else if (c === "}" && open_token && open_token.type === TOKEN.CONTROL_FLOW_OPEN) { resulting_string = this._input.next(); token = this._create_token(TOKEN.CONTROL_FLOW_CLOSE, resulting_string); } return token; }; Tokenizer.prototype._read_close = function(c, open_token) { var resulting_string = null; var token = null; if (open_token && open_token.type === TOKEN.TAG_OPEN) { if (open_token.text[0] === "<" && (c === ">" || c === "/" && this._input.peek(1) === ">")) { resulting_string = this._input.next(); if (c === "/") { resulting_string += this._input.next(); } token = this._create_token(TOKEN.TAG_CLOSE, resulting_string); } else if (open_token.text[0] === "{" && c === "}" && this._input.peek(1) === "}") { this._input.next(); this._input.next(); token = this._create_token(TOKEN.TAG_CLOSE, "}}"); } } return token; }; Tokenizer.prototype._read_attribute = function(c, previous_token, open_token) { var token = null; var resulting_string = ""; if (open_token && open_token.text[0] === "<") { if (c === "=") { token = this._create_token(TOKEN.EQUALS, this._input.next()); } else if (c === '"' || c === "'") { var content = this._input.next(); if (c === '"') { content += this.__patterns.double_quote.read(); } else { content += this.__patterns.single_quote.read(); } token = this._create_token(TOKEN.VALUE, content); } else { resulting_string = this.__patterns.attribute.read(); if (resulting_string) { if (previous_token.type === TOKEN.EQUALS) { token = this._create_token(TOKEN.VALUE, resulting_string); } else { token = this._create_token(TOKEN.ATTRIBUTE, resulting_string); } } } } return token; }; Tokenizer.prototype._is_content_unformatted = function(tag_name) { return this._options.void_elements.indexOf(tag_name) === -1 && (this._options.content_unformatted.indexOf(tag_name) !== -1 || this._options.unformatted.indexOf(tag_name) !== -1); }; Tokenizer.prototype._read_raw_content = function(c, previous_token, open_token) { var resulting_string = ""; if (open_token && open_token.text[0] === "{") { resulting_string = this.__patterns.handlebars_raw_close.read(); } else if (previous_token.type === TOKEN.TAG_CLOSE && previous_token.opened.text[0] === "<" && previous_token.text[0] !== "/") { var tag_name = previous_token.opened.text.substr(1).toLowerCase(); if (this._is_content_unformatted(tag_name)) { resulting_string = this._input.readUntil(new RegExp("", "ig")); } } if (resulting_string) { return this._create_token(TOKEN.TEXT, resulting_string); } return null; }; Tokenizer.prototype._read_script_and_style = function(c, previous_token) { if (previous_token.type === TOKEN.TAG_CLOSE && previous_token.opened.text[0] === "<" && previous_token.text[0] !== "/") { var tag_name = previous_token.opened.text.substr(1).toLowerCase(); if (tag_name === "script" || tag_name === "style") { var token = this._read_comment_or_cdata(c); if (token) { token.type = TOKEN.TEXT; return token; } var resulting_string = this._input.readUntil(new RegExp("", "ig")); if (resulting_string) { return this._create_token(TOKEN.TEXT, resulting_string); } } } return null; }; Tokenizer.prototype._read_content_word = function(c, open_token) { var resulting_string = ""; if (this._options.unformatted_content_delimiter) { if (c === this._options.unformatted_content_delimiter[0]) { resulting_string = this.__patterns.unformatted_content_delimiter.read(); } } if (!resulting_string) { resulting_string = open_token && open_token.type === TOKEN.CONTROL_FLOW_OPEN ? this.__patterns.word_control_flow_close_excluded.read() : this.__patterns.word.read(); } if (resulting_string) { return this._create_token(TOKEN.TEXT, resulting_string); } return null; }; module2.exports.Tokenizer = Tokenizer; module2.exports.TOKEN = TOKEN; } ]; var __webpack_module_cache__ = {}; function __webpack_require__(moduleId) { var cachedModule = __webpack_module_cache__[moduleId]; if (cachedModule !== undefined) { return cachedModule.exports; } var module2 = __webpack_module_cache__[moduleId] = { exports: {} }; __webpack_modules__[moduleId](module2, module2.exports, __webpack_require__); return module2.exports; } var __webpack_exports__ = __webpack_require__(18); legacy_beautify_html = __webpack_exports__; })(); function html_beautify(html_source, options) { return legacy_beautify_html(html_source, options, js_beautify, css_beautify); } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/services/htmlFormatter.js function format(document, range, options) { let value = document.getText(); let includesEnd = true; let initialIndentLevel = 0; const tabSize = options.tabSize || 4; if (range) { let startOffset = document.offsetAt(range.start); let extendedStart = startOffset; while (extendedStart > 0 && isWhitespace(value, extendedStart - 1)) { extendedStart--; } if (extendedStart === 0 || isEOL2(value, extendedStart - 1)) { startOffset = extendedStart; } else { if (extendedStart < startOffset) { startOffset = extendedStart + 1; } } let endOffset = document.offsetAt(range.end); let extendedEnd = endOffset; while (extendedEnd < value.length && isWhitespace(value, extendedEnd)) { extendedEnd++; } if (extendedEnd === value.length || isEOL2(value, extendedEnd)) { endOffset = extendedEnd; } range = Range.create(document.positionAt(startOffset), document.positionAt(endOffset)); const firstHalf = value.substring(0, startOffset); if (new RegExp(/.*[<][^>]*$/).test(firstHalf)) { value = value.substring(startOffset, endOffset); return [{ range, newText: value }]; } includesEnd = endOffset === value.length; value = value.substring(startOffset, endOffset); if (startOffset !== 0) { const startOfLineOffset = document.offsetAt(Position.create(range.start.line, 0)); initialIndentLevel = computeIndentLevel(document.getText(), startOfLineOffset, options); } } else { range = Range.create(Position.create(0, 0), document.positionAt(value.length)); } const htmlOptions = { indent_size: tabSize, indent_char: options.insertSpaces ? " " : "\t", indent_empty_lines: getFormatOption(options, "indentEmptyLines", false), wrap_line_length: getFormatOption(options, "wrapLineLength", 120), unformatted: getTagsFormatOption(options, "unformatted", undefined), content_unformatted: getTagsFormatOption(options, "contentUnformatted", undefined), indent_inner_html: getFormatOption(options, "indentInnerHtml", false), preserve_newlines: getFormatOption(options, "preserveNewLines", true), max_preserve_newlines: getFormatOption(options, "maxPreserveNewLines", 32786), indent_handlebars: getFormatOption(options, "indentHandlebars", false), end_with_newline: includesEnd && getFormatOption(options, "endWithNewline", false), extra_liners: getTagsFormatOption(options, "extraLiners", undefined), wrap_attributes: getFormatOption(options, "wrapAttributes", "auto"), wrap_attributes_indent_size: getFormatOption(options, "wrapAttributesIndentSize", undefined), eol: ` `, indent_scripts: getFormatOption(options, "indentScripts", "normal"), templating: getTemplatingFormatOption(options, "all"), unformatted_content_delimiter: getFormatOption(options, "unformattedContentDelimiter", "") }; let result = html_beautify(trimLeft(value), htmlOptions); if (initialIndentLevel > 0) { const indent = options.insertSpaces ? repeat(" ", tabSize * initialIndentLevel) : repeat("\t", initialIndentLevel); result = result.split(` `).join(` ` + indent); if (range.start.character === 0) { result = indent + result; } } return [{ range, newText: result }]; } function trimLeft(str) { return str.replace(/^\s+/, ""); } function getFormatOption(options, key, dflt) { if (options && options.hasOwnProperty(key)) { const value = options[key]; if (value !== null) { return value; } } return dflt; } function getTagsFormatOption(options, key, dflt) { const list = getFormatOption(options, key, null); if (typeof list === "string") { if (list.length > 0) { return list.split(",").map((t4) => t4.trim().toLowerCase()); } return []; } return dflt; } function getTemplatingFormatOption(options, dflt) { const value = getFormatOption(options, "templating", dflt); if (value === true) { return ["auto"]; } if (value === false || value === dflt || Array.isArray(value) === false) { return ["none"]; } return value; } function computeIndentLevel(content, offset, options) { let i = offset; let nChars = 0; const tabSize = options.tabSize || 4; while (i < content.length) { const ch = content.charAt(i); if (ch === " ") { nChars++; } else if (ch === "\t") { nChars += tabSize; } else { break; } i++; } return Math.floor(nChars / tabSize); } function isEOL2(text, offset) { return `\r `.indexOf(text.charAt(offset)) !== -1; } function isWhitespace(text, offset) { return " \t".indexOf(text.charAt(offset)) !== -1; } // node_modules/.bun/vscode-uri@3.1.0/node_modules/vscode-uri/lib/esm/index.mjs var LIB; (() => { var t4 = { 975: (t5) => { function e2(t6) { if (typeof t6 != "string") throw new TypeError("Path must be a string. Received " + JSON.stringify(t6)); } function r2(t6, e3) { for (var r3, n3 = "", i2 = 0, o2 = -1, s2 = 0, h2 = 0;h2 <= t6.length; ++h2) { if (h2 < t6.length) r3 = t6.charCodeAt(h2); else { if (r3 === 47) break; r3 = 47; } if (r3 === 47) { if (o2 === h2 - 1 || s2 === 1) ; else if (o2 !== h2 - 1 && s2 === 2) { if (n3.length < 2 || i2 !== 2 || n3.charCodeAt(n3.length - 1) !== 46 || n3.charCodeAt(n3.length - 2) !== 46) { if (n3.length > 2) { var a2 = n3.lastIndexOf("/"); if (a2 !== n3.length - 1) { a2 === -1 ? (n3 = "", i2 = 0) : i2 = (n3 = n3.slice(0, a2)).length - 1 - n3.lastIndexOf("/"), o2 = h2, s2 = 0; continue; } } else if (n3.length === 2 || n3.length === 1) { n3 = "", i2 = 0, o2 = h2, s2 = 0; continue; } } e3 && (n3.length > 0 ? n3 += "/.." : n3 = "..", i2 = 2); } else n3.length > 0 ? n3 += "/" + t6.slice(o2 + 1, h2) : n3 = t6.slice(o2 + 1, h2), i2 = h2 - o2 - 1; o2 = h2, s2 = 0; } else r3 === 46 && s2 !== -1 ? ++s2 : s2 = -1; } return n3; } var n2 = { resolve: function() { for (var t6, n3 = "", i2 = false, o2 = arguments.length - 1;o2 >= -1 && !i2; o2--) { var s2; o2 >= 0 ? s2 = arguments[o2] : (t6 === undefined && (t6 = process.cwd()), s2 = t6), e2(s2), s2.length !== 0 && (n3 = s2 + "/" + n3, i2 = s2.charCodeAt(0) === 47); } return n3 = r2(n3, !i2), i2 ? n3.length > 0 ? "/" + n3 : "/" : n3.length > 0 ? n3 : "."; }, normalize: function(t6) { if (e2(t6), t6.length === 0) return "."; var n3 = t6.charCodeAt(0) === 47, i2 = t6.charCodeAt(t6.length - 1) === 47; return (t6 = r2(t6, !n3)).length !== 0 || n3 || (t6 = "."), t6.length > 0 && i2 && (t6 += "/"), n3 ? "/" + t6 : t6; }, isAbsolute: function(t6) { return e2(t6), t6.length > 0 && t6.charCodeAt(0) === 47; }, join: function() { if (arguments.length === 0) return "."; for (var t6, r3 = 0;r3 < arguments.length; ++r3) { var i2 = arguments[r3]; e2(i2), i2.length > 0 && (t6 === undefined ? t6 = i2 : t6 += "/" + i2); } return t6 === undefined ? "." : n2.normalize(t6); }, relative: function(t6, r3) { if (e2(t6), e2(r3), t6 === r3) return ""; if ((t6 = n2.resolve(t6)) === (r3 = n2.resolve(r3))) return ""; for (var i2 = 1;i2 < t6.length && t6.charCodeAt(i2) === 47; ++i2) ; for (var o2 = t6.length, s2 = o2 - i2, h2 = 1;h2 < r3.length && r3.charCodeAt(h2) === 47; ++h2) ; for (var a2 = r3.length - h2, c2 = s2 < a2 ? s2 : a2, f2 = -1, u2 = 0;u2 <= c2; ++u2) { if (u2 === c2) { if (a2 > c2) { if (r3.charCodeAt(h2 + u2) === 47) return r3.slice(h2 + u2 + 1); if (u2 === 0) return r3.slice(h2 + u2); } else s2 > c2 && (t6.charCodeAt(i2 + u2) === 47 ? f2 = u2 : u2 === 0 && (f2 = 0)); break; } var l2 = t6.charCodeAt(i2 + u2); if (l2 !== r3.charCodeAt(h2 + u2)) break; l2 === 47 && (f2 = u2); } var g2 = ""; for (u2 = i2 + f2 + 1;u2 <= o2; ++u2) u2 !== o2 && t6.charCodeAt(u2) !== 47 || (g2.length === 0 ? g2 += ".." : g2 += "/.."); return g2.length > 0 ? g2 + r3.slice(h2 + f2) : (h2 += f2, r3.charCodeAt(h2) === 47 && ++h2, r3.slice(h2)); }, _makeLong: function(t6) { return t6; }, dirname: function(t6) { if (e2(t6), t6.length === 0) return "."; for (var r3 = t6.charCodeAt(0), n3 = r3 === 47, i2 = -1, o2 = true, s2 = t6.length - 1;s2 >= 1; --s2) if ((r3 = t6.charCodeAt(s2)) === 47) { if (!o2) { i2 = s2; break; } } else o2 = false; return i2 === -1 ? n3 ? "/" : "." : n3 && i2 === 1 ? "//" : t6.slice(0, i2); }, basename: function(t6, r3) { if (r3 !== undefined && typeof r3 != "string") throw new TypeError('"ext" argument must be a string'); e2(t6); var n3, i2 = 0, o2 = -1, s2 = true; if (r3 !== undefined && r3.length > 0 && r3.length <= t6.length) { if (r3.length === t6.length && r3 === t6) return ""; var h2 = r3.length - 1, a2 = -1; for (n3 = t6.length - 1;n3 >= 0; --n3) { var c2 = t6.charCodeAt(n3); if (c2 === 47) { if (!s2) { i2 = n3 + 1; break; } } else a2 === -1 && (s2 = false, a2 = n3 + 1), h2 >= 0 && (c2 === r3.charCodeAt(h2) ? --h2 == -1 && (o2 = n3) : (h2 = -1, o2 = a2)); } return i2 === o2 ? o2 = a2 : o2 === -1 && (o2 = t6.length), t6.slice(i2, o2); } for (n3 = t6.length - 1;n3 >= 0; --n3) if (t6.charCodeAt(n3) === 47) { if (!s2) { i2 = n3 + 1; break; } } else o2 === -1 && (s2 = false, o2 = n3 + 1); return o2 === -1 ? "" : t6.slice(i2, o2); }, extname: function(t6) { e2(t6); for (var r3 = -1, n3 = 0, i2 = -1, o2 = true, s2 = 0, h2 = t6.length - 1;h2 >= 0; --h2) { var a2 = t6.charCodeAt(h2); if (a2 !== 47) i2 === -1 && (o2 = false, i2 = h2 + 1), a2 === 46 ? r3 === -1 ? r3 = h2 : s2 !== 1 && (s2 = 1) : r3 !== -1 && (s2 = -1); else if (!o2) { n3 = h2 + 1; break; } } return r3 === -1 || i2 === -1 || s2 === 0 || s2 === 1 && r3 === i2 - 1 && r3 === n3 + 1 ? "" : t6.slice(r3, i2); }, format: function(t6) { if (t6 === null || typeof t6 != "object") throw new TypeError('The "pathObject" argument must be of type Object. Received type ' + typeof t6); return function(t7, e3) { var r3 = e3.dir || e3.root, n3 = e3.base || (e3.name || "") + (e3.ext || ""); return r3 ? r3 === e3.root ? r3 + n3 : r3 + "/" + n3 : n3; }(0, t6); }, parse: function(t6) { e2(t6); var r3 = { root: "", dir: "", base: "", ext: "", name: "" }; if (t6.length === 0) return r3; var n3, i2 = t6.charCodeAt(0), o2 = i2 === 47; o2 ? (r3.root = "/", n3 = 1) : n3 = 0; for (var s2 = -1, h2 = 0, a2 = -1, c2 = true, f2 = t6.length - 1, u2 = 0;f2 >= n3; --f2) if ((i2 = t6.charCodeAt(f2)) !== 47) a2 === -1 && (c2 = false, a2 = f2 + 1), i2 === 46 ? s2 === -1 ? s2 = f2 : u2 !== 1 && (u2 = 1) : s2 !== -1 && (u2 = -1); else if (!c2) { h2 = f2 + 1; break; } return s2 === -1 || a2 === -1 || u2 === 0 || u2 === 1 && s2 === a2 - 1 && s2 === h2 + 1 ? a2 !== -1 && (r3.base = r3.name = h2 === 0 && o2 ? t6.slice(1, a2) : t6.slice(h2, a2)) : (h2 === 0 && o2 ? (r3.name = t6.slice(1, s2), r3.base = t6.slice(1, a2)) : (r3.name = t6.slice(h2, s2), r3.base = t6.slice(h2, a2)), r3.ext = t6.slice(s2, a2)), h2 > 0 ? r3.dir = t6.slice(0, h2 - 1) : o2 && (r3.dir = "/"), r3; }, sep: "/", delimiter: ":", win32: null, posix: null }; n2.posix = n2, t5.exports = n2; } }, e = {}; function r(n2) { var i2 = e[n2]; if (i2 !== undefined) return i2.exports; var o2 = e[n2] = { exports: {} }; return t4[n2](o2, o2.exports, r), o2.exports; } r.d = (t5, e2) => { for (var n2 in e2) r.o(e2, n2) && !r.o(t5, n2) && Object.defineProperty(t5, n2, { enumerable: true, get: e2[n2] }); }, r.o = (t5, e2) => Object.prototype.hasOwnProperty.call(t5, e2), r.r = (t5) => { typeof Symbol != "undefined" && Symbol.toStringTag && Object.defineProperty(t5, Symbol.toStringTag, { value: "Module" }), Object.defineProperty(t5, "__esModule", { value: true }); }; var n = {}; let i; if (r.r(n), r.d(n, { URI: () => l, Utils: () => I }), typeof process == "object") i = process.platform === "win32"; else if (typeof navigator == "object") { let t5 = navigator.userAgent; i = t5.indexOf("Windows") >= 0; } const o = /^\w[\w\d+.-]*$/, s = /^\//, h = /^\/\//; function a(t5, e2) { if (!t5.scheme && e2) throw new Error(`[UriError]: Scheme is missing: {scheme: "", authority: "${t5.authority}", path: "${t5.path}", query: "${t5.query}", fragment: "${t5.fragment}"}`); if (t5.scheme && !o.test(t5.scheme)) throw new Error("[UriError]: Scheme contains illegal characters."); if (t5.path) { if (t5.authority) { if (!s.test(t5.path)) throw new Error('[UriError]: If a URI contains an authority component, then the path component must either be empty or begin with a slash ("/") character'); } else if (h.test(t5.path)) throw new Error('[UriError]: If a URI does not contain an authority component, then the path cannot begin with two slash characters ("//")'); } } const c = "", f = "/", u = /^(([^:/?#]+?):)?(\/\/([^/?#]*))?([^?#]*)(\?([^#]*))?(#(.*))?/; class l { static isUri(t5) { return t5 instanceof l || !!t5 && typeof t5.authority == "string" && typeof t5.fragment == "string" && typeof t5.path == "string" && typeof t5.query == "string" && typeof t5.scheme == "string" && typeof t5.fsPath == "string" && typeof t5.with == "function" && typeof t5.toString == "function"; } scheme; authority; path; query; fragment; constructor(t5, e2, r2, n2, i2, o2 = false) { typeof t5 == "object" ? (this.scheme = t5.scheme || c, this.authority = t5.authority || c, this.path = t5.path || c, this.query = t5.query || c, this.fragment = t5.fragment || c) : (this.scheme = function(t6, e3) { return t6 || e3 ? t6 : "file"; }(t5, o2), this.authority = e2 || c, this.path = function(t6, e3) { switch (t6) { case "https": case "http": case "file": e3 ? e3[0] !== f && (e3 = f + e3) : e3 = f; } return e3; }(this.scheme, r2 || c), this.query = n2 || c, this.fragment = i2 || c, a(this, o2)); } get fsPath() { return v(this, false); } with(t5) { if (!t5) return this; let { scheme: e2, authority: r2, path: n2, query: i2, fragment: o2 } = t5; return e2 === undefined ? e2 = this.scheme : e2 === null && (e2 = c), r2 === undefined ? r2 = this.authority : r2 === null && (r2 = c), n2 === undefined ? n2 = this.path : n2 === null && (n2 = c), i2 === undefined ? i2 = this.query : i2 === null && (i2 = c), o2 === undefined ? o2 = this.fragment : o2 === null && (o2 = c), e2 === this.scheme && r2 === this.authority && n2 === this.path && i2 === this.query && o2 === this.fragment ? this : new d(e2, r2, n2, i2, o2); } static parse(t5, e2 = false) { const r2 = u.exec(t5); return r2 ? new d(r2[2] || c, w(r2[4] || c), w(r2[5] || c), w(r2[7] || c), w(r2[9] || c), e2) : new d(c, c, c, c, c); } static file(t5) { let e2 = c; if (i && (t5 = t5.replace(/\\/g, f)), t5[0] === f && t5[1] === f) { const r2 = t5.indexOf(f, 2); r2 === -1 ? (e2 = t5.substring(2), t5 = f) : (e2 = t5.substring(2, r2), t5 = t5.substring(r2) || f); } return new d("file", e2, t5, c, c); } static from(t5) { const e2 = new d(t5.scheme, t5.authority, t5.path, t5.query, t5.fragment); return a(e2, true), e2; } toString(t5 = false) { return b(this, t5); } toJSON() { return this; } static revive(t5) { if (t5) { if (t5 instanceof l) return t5; { const e2 = new d(t5); return e2._formatted = t5.external, e2._fsPath = t5._sep === g ? t5.fsPath : null, e2; } } return t5; } } const g = i ? 1 : undefined; class d extends l { _formatted = null; _fsPath = null; get fsPath() { return this._fsPath || (this._fsPath = v(this, false)), this._fsPath; } toString(t5 = false) { return t5 ? b(this, true) : (this._formatted || (this._formatted = b(this, false)), this._formatted); } toJSON() { const t5 = { $mid: 1 }; return this._fsPath && (t5.fsPath = this._fsPath, t5._sep = g), this._formatted && (t5.external = this._formatted), this.path && (t5.path = this.path), this.scheme && (t5.scheme = this.scheme), this.authority && (t5.authority = this.authority), this.query && (t5.query = this.query), this.fragment && (t5.fragment = this.fragment), t5; } } const p = { 58: "%3A", 47: "%2F", 63: "%3F", 35: "%23", 91: "%5B", 93: "%5D", 64: "%40", 33: "%21", 36: "%24", 38: "%26", 39: "%27", 40: "%28", 41: "%29", 42: "%2A", 43: "%2B", 44: "%2C", 59: "%3B", 61: "%3D", 32: "%20" }; function m(t5, e2, r2) { let n2, i2 = -1; for (let o2 = 0;o2 < t5.length; o2++) { const s2 = t5.charCodeAt(o2); if (s2 >= 97 && s2 <= 122 || s2 >= 65 && s2 <= 90 || s2 >= 48 && s2 <= 57 || s2 === 45 || s2 === 46 || s2 === 95 || s2 === 126 || e2 && s2 === 47 || r2 && s2 === 91 || r2 && s2 === 93 || r2 && s2 === 58) i2 !== -1 && (n2 += encodeURIComponent(t5.substring(i2, o2)), i2 = -1), n2 !== undefined && (n2 += t5.charAt(o2)); else { n2 === undefined && (n2 = t5.substr(0, o2)); const e3 = p[s2]; e3 !== undefined ? (i2 !== -1 && (n2 += encodeURIComponent(t5.substring(i2, o2)), i2 = -1), n2 += e3) : i2 === -1 && (i2 = o2); } } return i2 !== -1 && (n2 += encodeURIComponent(t5.substring(i2))), n2 !== undefined ? n2 : t5; } function y(t5) { let e2; for (let r2 = 0;r2 < t5.length; r2++) { const n2 = t5.charCodeAt(r2); n2 === 35 || n2 === 63 ? (e2 === undefined && (e2 = t5.substr(0, r2)), e2 += p[n2]) : e2 !== undefined && (e2 += t5[r2]); } return e2 !== undefined ? e2 : t5; } function v(t5, e2) { let r2; return r2 = t5.authority && t5.path.length > 1 && t5.scheme === "file" ? `//${t5.authority}${t5.path}` : t5.path.charCodeAt(0) === 47 && (t5.path.charCodeAt(1) >= 65 && t5.path.charCodeAt(1) <= 90 || t5.path.charCodeAt(1) >= 97 && t5.path.charCodeAt(1) <= 122) && t5.path.charCodeAt(2) === 58 ? e2 ? t5.path.substr(1) : t5.path[1].toLowerCase() + t5.path.substr(2) : t5.path, i && (r2 = r2.replace(/\//g, "\\")), r2; } function b(t5, e2) { const r2 = e2 ? y : m; let n2 = "", { scheme: i2, authority: o2, path: s2, query: h2, fragment: a2 } = t5; if (i2 && (n2 += i2, n2 += ":"), (o2 || i2 === "file") && (n2 += f, n2 += f), o2) { let t6 = o2.indexOf("@"); if (t6 !== -1) { const e3 = o2.substr(0, t6); o2 = o2.substr(t6 + 1), t6 = e3.lastIndexOf(":"), t6 === -1 ? n2 += r2(e3, false, false) : (n2 += r2(e3.substr(0, t6), false, false), n2 += ":", n2 += r2(e3.substr(t6 + 1), false, true)), n2 += "@"; } o2 = o2.toLowerCase(), t6 = o2.lastIndexOf(":"), t6 === -1 ? n2 += r2(o2, false, true) : (n2 += r2(o2.substr(0, t6), false, true), n2 += o2.substr(t6)); } if (s2) { if (s2.length >= 3 && s2.charCodeAt(0) === 47 && s2.charCodeAt(2) === 58) { const t6 = s2.charCodeAt(1); t6 >= 65 && t6 <= 90 && (s2 = `/${String.fromCharCode(t6 + 32)}:${s2.substr(3)}`); } else if (s2.length >= 2 && s2.charCodeAt(1) === 58) { const t6 = s2.charCodeAt(0); t6 >= 65 && t6 <= 90 && (s2 = `${String.fromCharCode(t6 + 32)}:${s2.substr(2)}`); } n2 += r2(s2, true, false); } return h2 && (n2 += "?", n2 += r2(h2, false, false)), a2 && (n2 += "#", n2 += e2 ? a2 : m(a2, false, false)), n2; } function C(t5) { try { return decodeURIComponent(t5); } catch { return t5.length > 3 ? t5.substr(0, 3) + C(t5.substr(3)) : t5; } } const A = /(%[0-9A-Za-z][0-9A-Za-z])+/g; function w(t5) { return t5.match(A) ? t5.replace(A, (t6) => C(t6)) : t5; } var x = r(975); const P = x.posix || x, _ = "/"; var I; (function(t5) { t5.joinPath = function(t6, ...e2) { return t6.with({ path: P.join(t6.path, ...e2) }); }, t5.resolvePath = function(t6, ...e2) { let r2 = t6.path, n2 = false; r2[0] !== _ && (r2 = _ + r2, n2 = true); let i2 = P.resolve(r2, ...e2); return n2 && i2[0] === _ && !t6.authority && (i2 = i2.substring(1)), t6.with({ path: i2 }); }, t5.dirname = function(t6) { if (t6.path.length === 0 || t6.path === _) return t6; let e2 = P.dirname(t6.path); return e2.length === 1 && e2.charCodeAt(0) === 46 && (e2 = ""), t6.with({ path: e2 }); }, t5.basename = function(t6) { return P.basename(t6.path); }, t5.extname = function(t6) { return P.extname(t6.path); }; })(I || (I = {})), LIB = n; })(); var { URI: URI2, Utils } = LIB; // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/services/htmlLinks.js function normalizeRef(url) { const first = url[0]; const last = url[url.length - 1]; if (first === last && (first === "'" || first === '"')) { url = url.substring(1, url.length - 1); } return url; } function validateRef(url, languageId) { if (!url.length) { return false; } if (languageId === "handlebars" && /{{|}}/.test(url)) { return false; } return /\b(w[\w\d+.-]*:\/\/)?[^\s()<>]+(?:\([\w\d]+\)|([^[:punct:]\s]|\/?))/.test(url); } function getWorkspaceUrl(documentUri, tokenContent, documentContext, base) { if (/^\s*javascript\:/i.test(tokenContent) || /[\n\r]/.test(tokenContent)) { return; } tokenContent = tokenContent.replace(/^\s*/g, ""); const match = tokenContent.match(/^(\w[\w\d+.-]*):/); if (match) { const schema = match[1].toLowerCase(); if (schema === "http" || schema === "https" || schema === "file") { return tokenContent; } return; } if (/^\#/i.test(tokenContent)) { return documentUri + tokenContent; } if (/^\/\//i.test(tokenContent)) { const pickedScheme = startsWith(documentUri, "https://") ? "https" : "http"; return pickedScheme + ":" + tokenContent.replace(/^\s*/g, ""); } if (documentContext) { return documentContext.resolveReference(tokenContent, base || documentUri); } return tokenContent; } function createLink(document, documentContext, attributeValue, startOffset, endOffset, base) { const tokenContent = normalizeRef(attributeValue); if (!validateRef(tokenContent, document.languageId)) { return; } if (tokenContent.length < attributeValue.length) { startOffset++; endOffset--; } const workspaceUrl = getWorkspaceUrl(document.uri, tokenContent, documentContext, base); if (!workspaceUrl) { return; } const target = validateAndCleanURI(workspaceUrl, document); return { range: Range.create(document.positionAt(startOffset), document.positionAt(endOffset)), target }; } var _hash = 35; function validateAndCleanURI(uriStr, document) { try { let uri = URI2.parse(uriStr); if (uri.scheme === "file" && uri.query) { uri = uri.with({ query: null }); uriStr = uri.toString(true); } if (uri.scheme === "file" && uri.fragment && !(uriStr.startsWith(document.uri) && uriStr.charCodeAt(document.uri.length) === _hash)) { return uri.with({ fragment: null }).toString(true); } return uriStr; } catch (e) { return; } } class HTMLDocumentLinks { constructor(dataManager) { this.dataManager = dataManager; } findDocumentLinks(document, documentContext) { const newLinks = []; const scanner = createScanner(document.getText(), 0); let token = scanner.scan(); let lastAttributeName = undefined; let lastTagName = undefined; let afterBase = false; let base = undefined; const idLocations = {}; while (token !== TokenType.EOS) { switch (token) { case TokenType.StartTag: lastTagName = scanner.getTokenText().toLowerCase(); if (!base) { afterBase = lastTagName === "base"; } break; case TokenType.AttributeName: lastAttributeName = scanner.getTokenText().toLowerCase(); break; case TokenType.AttributeValue: if (lastTagName && lastAttributeName && this.dataManager.isPathAttribute(lastTagName, lastAttributeName)) { const attributeValue = scanner.getTokenText(); if (!afterBase) { const link = createLink(document, documentContext, attributeValue, scanner.getTokenOffset(), scanner.getTokenEnd(), base); if (link) { newLinks.push(link); } } if (afterBase && typeof base === "undefined") { base = normalizeRef(attributeValue); if (base && documentContext) { base = documentContext.resolveReference(base, document.uri); } } afterBase = false; lastAttributeName = undefined; } else if (lastAttributeName === "id") { const id = normalizeRef(scanner.getTokenText()); idLocations[id] = scanner.getTokenOffset(); } break; } token = scanner.scan(); } for (const link of newLinks) { const localWithHash = document.uri + "#"; if (link.target && startsWith(link.target, localWithHash)) { const target = link.target.substring(localWithHash.length); const offset = idLocations[target]; if (offset !== undefined) { const pos = document.positionAt(offset); link.target = `${localWithHash}${pos.line + 1},${pos.character + 1}`; } else { link.target = document.uri; } } } return newLinks; } } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/services/htmlHighlighting.js function findDocumentHighlights(document, position, htmlDocument) { const offset = document.offsetAt(position); const node = htmlDocument.findNodeAt(offset); if (!node.tag) { return []; } const result = []; const startTagRange = getTagNameRange(TokenType.StartTag, document, node.start); const endTagRange = typeof node.endTagStart === "number" && getTagNameRange(TokenType.EndTag, document, node.endTagStart); if (startTagRange && covers(startTagRange, position) || endTagRange && covers(endTagRange, position)) { if (startTagRange) { result.push({ kind: DocumentHighlightKind.Read, range: startTagRange }); } if (endTagRange) { result.push({ kind: DocumentHighlightKind.Read, range: endTagRange }); } } return result; } function isBeforeOrEqual(pos1, pos2) { return pos1.line < pos2.line || pos1.line === pos2.line && pos1.character <= pos2.character; } function covers(range, position) { return isBeforeOrEqual(range.start, position) && isBeforeOrEqual(position, range.end); } function getTagNameRange(tokenType, document, startOffset) { const scanner = createScanner(document.getText(), startOffset); let token = scanner.scan(); while (token !== TokenType.EOS && token !== tokenType) { token = scanner.scan(); } if (token !== TokenType.EOS) { return { start: document.positionAt(scanner.getTokenOffset()), end: document.positionAt(scanner.getTokenEnd()) }; } return null; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/services/htmlSymbolsProvider.js function findDocumentSymbols(document, htmlDocument) { const symbols = []; const symbols2 = findDocumentSymbols2(document, htmlDocument); for (const symbol of symbols2) { walk4(symbol, undefined); } return symbols; function walk4(node, parent) { const symbol = SymbolInformation.create(node.name, node.kind, node.range, document.uri, parent?.name); symbol.containerName ?? (symbol.containerName = ""); symbols.push(symbol); if (node.children) { for (const child of node.children) { walk4(child, node); } } } } function findDocumentSymbols2(document, htmlDocument) { const symbols = []; htmlDocument.roots.forEach((node) => { provideFileSymbolsInternal(document, node, symbols); }); return symbols; } function provideFileSymbolsInternal(document, node, symbols) { const name = nodeToName(node); const range = Range.create(document.positionAt(node.start), document.positionAt(node.end)); const symbol = DocumentSymbol.create(name, undefined, SymbolKind.Field, range, range); symbols.push(symbol); node.children.forEach((child) => { symbol.children ?? (symbol.children = []); provideFileSymbolsInternal(document, child, symbol.children); }); } function nodeToName(node) { let name = node.tag; if (node.attributes) { const id = node.attributes["id"]; const classes = node.attributes["class"]; if (id) { name += `#${id.replace(/[\"\']/g, "")}`; } if (classes) { name += classes.replace(/[\"\']/g, "").split(/\s+/).map((className) => `.${className}`).join(""); } } return name || "?"; } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/services/htmlRename.js function doRename(document, position, newName, htmlDocument) { const offset = document.offsetAt(position); const node = htmlDocument.findNodeAt(offset); if (!node.tag) { return null; } if (!isWithinTagRange(node, offset, node.tag)) { return null; } const edits = []; const startTagRange = { start: document.positionAt(node.start + "<".length), end: document.positionAt(node.start + "<".length + node.tag.length) }; edits.push({ range: startTagRange, newText: newName }); if (node.endTagStart) { const endTagRange = { start: document.positionAt(node.endTagStart + " { let diff = r1.startLine - r2.startLine; if (diff === 0) { diff = r1.endLine - r2.endLine; } return diff; }); let top = undefined; const previous = []; const nestingLevels = []; const nestingLevelCounts = []; const setNestingLevel = (index, level) => { nestingLevels[index] = level; if (level < 30) { nestingLevelCounts[level] = (nestingLevelCounts[level] || 0) + 1; } }; for (let i = 0;i < ranges.length; i++) { const entry = ranges[i]; if (!top) { top = entry; setNestingLevel(i, 0); } else { if (entry.startLine > top.startLine) { if (entry.endLine <= top.endLine) { previous.push(top); top = entry; setNestingLevel(i, previous.length); } else if (entry.startLine > top.endLine) { do { top = previous.pop(); } while (top && entry.startLine > top.endLine); if (top) { previous.push(top); } top = entry; setNestingLevel(i, previous.length); } } } } let entries = 0; let maxLevel = 0; for (let i = 0;i < nestingLevelCounts.length; i++) { const n = nestingLevelCounts[i]; if (n) { if (n + entries > rangeLimit) { maxLevel = i; break; } entries += n; } } const result = []; for (let i = 0;i < ranges.length; i++) { const level = nestingLevels[i]; if (typeof level === "number") { if (level < maxLevel || level === maxLevel && entries++ < rangeLimit) { result.push(ranges[i]); } } } return result; } getFoldingRanges(document, context) { const scanner = createScanner(document.getText()); let token = scanner.scan(); const ranges = []; const stack = []; let lastTagName = null; let prevStart = -1; let voidElements; function addRange(range) { ranges.push(range); prevStart = range.startLine; } while (token !== TokenType.EOS) { switch (token) { case TokenType.StartTag: { const tagName = scanner.getTokenText(); const startLine = document.positionAt(scanner.getTokenOffset()).line; stack.push({ startLine, tagName }); lastTagName = tagName; break; } case TokenType.EndTag: { lastTagName = scanner.getTokenText(); break; } case TokenType.StartTagClose: if (!lastTagName) { break; } voidElements ?? (voidElements = this.dataManager.getVoidElements(document.languageId)); if (!this.dataManager.isVoidElement(lastTagName, voidElements)) { break; } case TokenType.EndTagClose: case TokenType.StartTagSelfClose: { let i = stack.length - 1; while (i >= 0 && stack[i].tagName !== lastTagName) { i--; } if (i >= 0) { const stackElement = stack[i]; stack.length = i; const line = document.positionAt(scanner.getTokenOffset()).line; const startLine = stackElement.startLine; const endLine = line - 1; if (endLine > startLine && prevStart !== startLine) { addRange({ startLine, endLine }); } } break; } case TokenType.Comment: { let startLine = document.positionAt(scanner.getTokenOffset()).line; const text = scanner.getTokenText(); const m = text.match(/^\s*#(region\b)|(endregion\b)/); if (m) { if (m[1]) { stack.push({ startLine, tagName: "" }); } else { let i = stack.length - 1; while (i >= 0 && stack[i].tagName.length) { i--; } if (i >= 0) { const stackElement = stack[i]; stack.length = i; const endLine = startLine; startLine = stackElement.startLine; if (endLine > startLine && prevStart !== startLine) { addRange({ startLine, endLine, kind: FoldingRangeKind.Region }); } } } } else { const endLine = document.positionAt(scanner.getTokenOffset() + scanner.getTokenLength()).line; if (startLine < endLine) { addRange({ startLine, endLine, kind: FoldingRangeKind.Comment }); } } break; } } token = scanner.scan(); } const rangeLimit = context && context.rangeLimit || Number.MAX_VALUE; if (ranges.length > rangeLimit) { return this.limitRanges(ranges, rangeLimit); } return ranges; } } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/services/htmlSelectionRange.js class HTMLSelectionRange { constructor(htmlParser) { this.htmlParser = htmlParser; } getSelectionRanges(document, positions) { const htmlDocument = this.htmlParser.parseDocument(document); return positions.map((p) => this.getSelectionRange(p, document, htmlDocument)); } getSelectionRange(position, document, htmlDocument) { const applicableRanges = this.getApplicableRanges(document, position, htmlDocument); let prev = undefined; let current = undefined; for (let index = applicableRanges.length - 1;index >= 0; index--) { const range = applicableRanges[index]; if (!prev || range[0] !== prev[0] || range[1] !== prev[1]) { current = SelectionRange.create(Range.create(document.positionAt(applicableRanges[index][0]), document.positionAt(applicableRanges[index][1])), current); } prev = range; } if (!current) { current = SelectionRange.create(Range.create(position, position)); } return current; } getApplicableRanges(document, position, htmlDoc) { const currOffset = document.offsetAt(position); const currNode = htmlDoc.findNodeAt(currOffset); let result = this.getAllParentTagRanges(currNode); if (currNode.startTagEnd && !currNode.endTagStart) { if (currNode.startTagEnd !== currNode.end) { return [[currNode.start, currNode.end]]; } const closeRange = Range.create(document.positionAt(currNode.startTagEnd - 2), document.positionAt(currNode.startTagEnd)); const closeText = document.getText(closeRange); if (closeText === "/>") { result.unshift([currNode.start + 1, currNode.startTagEnd - 2]); } else { result.unshift([currNode.start + 1, currNode.startTagEnd - 1]); } const attributeLevelRanges = this.getAttributeLevelRanges(document, currNode, currOffset); result = attributeLevelRanges.concat(result); return result; } if (!currNode.startTagEnd || !currNode.endTagStart) { return result; } result.unshift([currNode.start, currNode.end]); if (currNode.start < currOffset && currOffset < currNode.startTagEnd) { result.unshift([currNode.start + 1, currNode.startTagEnd - 1]); const attributeLevelRanges = this.getAttributeLevelRanges(document, currNode, currOffset); result = attributeLevelRanges.concat(result); return result; } else if (currNode.startTagEnd <= currOffset && currOffset <= currNode.endTagStart) { result.unshift([currNode.startTagEnd, currNode.endTagStart]); return result; } else { if (currOffset >= currNode.endTagStart + 2) { result.unshift([currNode.endTagStart + 2, currNode.end - 1]); } return result; } } getAllParentTagRanges(initialNode) { let currNode = initialNode; const result = []; while (currNode.parent) { currNode = currNode.parent; this.getNodeRanges(currNode).forEach((r) => result.push(r)); } return result; } getNodeRanges(n) { if (n.startTagEnd && n.endTagStart && n.startTagEnd < n.endTagStart) { return [ [n.startTagEnd, n.endTagStart], [n.start, n.end] ]; } return [ [n.start, n.end] ]; } getAttributeLevelRanges(document, currNode, currOffset) { const currNodeRange = Range.create(document.positionAt(currNode.start), document.positionAt(currNode.end)); const currNodeText = document.getText(currNodeRange); const relativeOffset = currOffset - currNode.start; const scanner = createScanner(currNodeText); let token = scanner.scan(); const positionOffset = currNode.start; const result = []; let isInsideAttribute = false; let attrStart = -1; while (token !== TokenType.EOS) { switch (token) { case TokenType.AttributeName: { if (relativeOffset < scanner.getTokenOffset()) { isInsideAttribute = false; break; } if (relativeOffset <= scanner.getTokenEnd()) { result.unshift([scanner.getTokenOffset(), scanner.getTokenEnd()]); } isInsideAttribute = true; attrStart = scanner.getTokenOffset(); break; } case TokenType.AttributeValue: { if (!isInsideAttribute) { break; } const valueText = scanner.getTokenText(); if (relativeOffset < scanner.getTokenOffset()) { result.push([attrStart, scanner.getTokenEnd()]); break; } if (relativeOffset >= scanner.getTokenOffset() && relativeOffset <= scanner.getTokenEnd()) { result.unshift([scanner.getTokenOffset(), scanner.getTokenEnd()]); if (valueText[0] === `"` && valueText[valueText.length - 1] === `"` || valueText[0] === `'` && valueText[valueText.length - 1] === `'`) { if (relativeOffset >= scanner.getTokenOffset() + 1 && relativeOffset <= scanner.getTokenEnd() - 1) { result.unshift([scanner.getTokenOffset() + 1, scanner.getTokenEnd() - 1]); } } result.push([attrStart, scanner.getTokenEnd()]); } break; } } token = scanner.scan(); } return result.map((pair) => { return [pair[0] + positionOffset, pair[1] + positionOffset]; }); } } // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/languageFacts/data/webCustomData.js var htmlData = { version: 1.1, tags: [ { name: "html", description: { kind: "markdown", value: "The html element represents the root of an HTML document." }, attributes: [ { name: "manifest", description: { kind: "markdown", value: "Specifies the URI of a resource manifest indicating resources that should be cached locally. See [Using the application cache](https://developer.mozilla.org/en-US/docs/Web/HTML/Using_the_application_cache) for details." } }, { name: "version", description: 'Specifies the version of the HTML [Document Type Definition](https://developer.mozilla.org/en-US/docs/Glossary/DTD "Document Type Definition: In HTML, the doctype is the required "" preamble found at the top of all documents. Its sole purpose is to prevent a browser from switching into so-called “quirks mode” when rendering a document; that is, the "" doctype ensures that the browser makes a best-effort attempt at following the relevant specifications, rather than using a different rendering mode that is incompatible with some specifications.") that governs the current document. This attribute is not needed, because it is redundant with the version information in the document type declaration.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: false } }, { name: "xmlns", description: 'Specifies the XML Namespace of the document. Default value is `"http://www.w3.org/1999/xhtml"`. This is required in documents parsed with XML parsers, and optional in text/html documents.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/html" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "head", description: { kind: "markdown", value: "The head element represents a collection of metadata for the Document." }, attributes: [ { name: "profile", description: "The URIs of one or more metadata profiles, separated by white space." } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/head" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "title", description: { kind: "markdown", value: "The title element represents the document's title or name. Authors should use titles that identify their documents even when they are used out of context, for example in a user's history or bookmarks, or in search results. The document's title is often different from its first heading, since the first heading does not have to stand alone when taken out of context." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/title" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "base", description: { kind: "markdown", value: "The base element allows authors to specify the document base URL for the purposes of resolving relative URLs, and the name of the default browsing context for the purposes of following hyperlinks. The element does not represent any content beyond this information." }, void: true, attributes: [ { name: "href", description: { kind: "markdown", value: "The base URL to be used throughout the document for relative URL addresses. If this attribute is specified, this element must come before any other elements with attributes whose values are URLs. Absolute and relative URLs are allowed." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "target", valueSet: "target", description: { kind: "markdown", value: "A name or keyword indicating the default location to display the result when hyperlinks or forms cause navigation, for elements that do not have an explicit target reference. It is a name of, or keyword for, a _browsing context_ (for example: tab, window, or inline frame). The following keywords have special meanings:\n\n* `_self`: Load the result into the same browsing context as the current one. This value is the default if the attribute is not specified.\n* `_blank`: Load the result into a new unnamed browsing context.\n* `_parent`: Load the result into the parent browsing context of the current one. If there is no parent, this option behaves the same way as `_self`.\n* `_top`: Load the result into the top-level browsing context (that is, the browsing context that is an ancestor of the current one, and has no parent). If there is no parent, this option behaves the same way as `_self`.\n\nIf this attribute is specified, this element must come before any other elements with attributes whose values are URLs." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/base" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "link", description: { kind: "markdown", value: "The link element allows authors to link their document to other resources." }, void: true, attributes: [ { name: "href", description: { kind: "markdown", value: 'This attribute specifies the [URL](https://developer.mozilla.org/en-US/docs/Glossary/URL "URL: Uniform Resource Locator (URL) is a text string specifying where a resource can be found on the Internet.") of the linked resource. A URL can be absolute or relative.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "crossorigin", valueSet: "xo", description: { kind: "markdown", value: 'This enumerated attribute indicates whether [CORS](https://developer.mozilla.org/en-US/docs/Glossary/CORS "CORS: CORS (Cross-Origin Resource Sharing) is a system, consisting of transmitting HTTP headers, that determines whether browsers block frontend JavaScript code from accessing responses for cross-origin requests.") must be used when fetching the resource. [CORS-enabled images](https://developer.mozilla.org/en-US/docs/Web/HTML/CORS_Enabled_Image) can be reused in the [``](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/canvas "Use the HTML element with either the canvas scripting API or the WebGL API to draw graphics and animations.") element without being _tainted_. The allowed values are:\n\n`anonymous`\n\nA cross-origin request (i.e. with an [`Origin`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Origin "The Origin request header indicates where a fetch originates from. It doesn\'t include any path information, but only the server name. It is sent with CORS requests, as well as with POST requests. It is similar to the Referer header, but, unlike this header, it doesn\'t disclose the whole path.") HTTP header) is performed, but no credential is sent (i.e. no cookie, X.509 certificate, or HTTP Basic authentication). If the server does not give credentials to the origin site (by not setting the [`Access-Control-Allow-Origin`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Access-Control-Allow-Origin "The Access-Control-Allow-Origin response header indicates whether the response can be shared with requesting code from the given origin.") HTTP header) the image will be tainted and its usage restricted.\n\n`use-credentials`\n\nA cross-origin request (i.e. with an `Origin` HTTP header) is performed along with a credential sent (i.e. a cookie, certificate, and/or HTTP Basic authentication is performed). If the server does not give credentials to the origin site (through [`Access-Control-Allow-Credentials`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Access-Control-Allow-Credentials "The Access-Control-Allow-Credentials response header tells browsers whether to expose the response to frontend JavaScript code when the request\'s credentials mode (Request.credentials) is "include".") HTTP header), the resource will be _tainted_ and its usage restricted.\n\nIf the attribute is not present, the resource is fetched without a [CORS](https://developer.mozilla.org/en-US/docs/Glossary/CORS "CORS: CORS (Cross-Origin Resource Sharing) is a system, consisting of transmitting HTTP headers, that determines whether browsers block frontend JavaScript code from accessing responses for cross-origin requests.") request (i.e. without sending the `Origin` HTTP header), preventing its non-tainted usage. If invalid, it is handled as if the enumerated keyword **anonymous** was used. See [CORS settings attributes](https://developer.mozilla.org/en-US/docs/Web/HTML/CORS_settings_attributes) for additional information.' }, browsers: [ "C34", "CA34", "E17", "FF18", "FFA18", "S10", "SM10" ], status: { baseline: "high", baseline_low_date: "2018-04-30", baseline_high_date: "2020-10-30" } }, { name: "rel", description: { kind: "markdown", value: "This attribute names a relationship of the linked document to the current document. The attribute must be a space-separated list of the [link types values](https://developer.mozilla.org/en-US/docs/Web/HTML/Link_types)." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "media", description: { kind: "markdown", value: "This attribute specifies the media that the linked resource applies to. Its value must be a media type / [media query](https://developer.mozilla.org/en-US/docs/Web/CSS/Media_queries). This attribute is mainly useful when linking to external stylesheets — it allows the user agent to pick the best adapted one for the device it runs on.\n\n**Notes:**\n\n* In HTML 4, this can only be a simple white-space-separated list of media description literals, i.e., [media types and groups](https://developer.mozilla.org/en-US/docs/Web/CSS/@media), where defined and allowed as values for this attribute, such as `print`, `screen`, `aural`, `braille`. HTML5 extended this to any kind of [media queries](https://developer.mozilla.org/en-US/docs/Web/CSS/Media_queries), which are a superset of the allowed values of HTML 4.\n* Browsers not supporting [CSS3 Media Queries](https://developer.mozilla.org/en-US/docs/Web/CSS/Media_queries) won't necessarily recognize the adequate link; do not forget to set fallback links, the restricted set of media queries defined in HTML 4." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "hreflang", description: { kind: "markdown", value: "This attribute indicates the language of the linked resource. It is purely advisory. Allowed values are determined by [BCP47](https://www.ietf.org/rfc/bcp/bcp47.txt). Use this attribute only if the [`href`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/a#attr-href) attribute is present." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "type", description: { kind: "markdown", value: 'This attribute is used to define the type of the content linked to. The value of the attribute should be a MIME type such as **text/html**, **text/css**, and so on. The common use of this attribute is to define the type of stylesheet being referenced (such as **text/css**), but given that CSS is the only stylesheet language used on the web, not only is it possible to omit the `type` attribute, but is actually now recommended practice. It is also used on `rel="preload"` link types, to make sure the browser only downloads file types that it supports.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "sizes", description: { kind: "markdown", value: "This attribute defines the sizes of the icons for visual media contained in the resource. It must be present only if the [`rel`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/link#attr-rel) contains a value of `icon` or a non-standard type such as Apple's `apple-touch-icon`. It may have the following values:\n\n* `any`, meaning that the icon can be scaled to any size as it is in a vector format, like `image/svg+xml`.\n* a white-space separated list of sizes, each in the format `__x__` or `__X__`. Each of these sizes must be contained in the resource.\n\n**Note:** Most icon formats are only able to store one single icon; therefore most of the time the [`sizes`](https://developer.mozilla.org/en-US/docs/Web/HTML/Global_attributes#attr-sizes) contains only one entry. MS's ICO format does, as well as Apple's ICNS. ICO is more ubiquitous; you should definitely use it." }, browsers: [ "C15", "CA18", "E79", "FF31", "FFA31", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "as", description: 'This attribute is only used when `rel="preload"` or `rel="prefetch"` has been set on the `` element. It specifies the type of content being loaded by the ``, which is necessary for content prioritization, request matching, application of correct [content security policy](https://developer.mozilla.org/en-US/docs/Web/HTTP/CSP), and setting of correct [`Accept`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Accept "The Accept request HTTP header advertises which content types, expressed as MIME types, the client is able to understand. Using content negotiation, the server then selects one of the proposals, uses it and informs the client of its choice with the Content-Type response header. Browsers set adequate values for this header depending on the context where the request is done: when fetching a CSS stylesheet a different value is set for the request than when fetching an image, video or a script.") request header.', browsers: [ "C50", "CA50", "E17", "FF56", "FFA56", "S10", "SM10" ], status: { baseline: "high", baseline_low_date: "2018-04-30", baseline_high_date: "2020-10-30" } }, { name: "importance", description: "Indicates the relative importance of the resource. Priority hints are delegated using the values:" }, { name: "importance", description: '**`auto`**: Indicates **no preference**. The browser may use its own heuristics to decide the priority of the resource.\n\n**`high`**: Indicates to the browser that the resource is of **high** priority.\n\n**`low`**: Indicates to the browser that the resource is of **low** priority.\n\n**Note:** The `importance` attribute may only be used for the `` element if `rel="preload"` or `rel="prefetch"` is present.' }, { name: "integrity", description: "Contains inline metadata — a base64-encoded cryptographic hash of the resource (file) you’re telling the browser to fetch. The browser can use this to verify that the fetched resource has been delivered free of unexpected manipulation. See [Subresource Integrity](https://developer.mozilla.org/en-US/docs/Web/Security/Subresource_Integrity).", browsers: [ "C45", "CA45", "E17", "FF43", "FFA43", "S11.1", "SM11.3" ], status: { baseline: "high", baseline_low_date: "2018-04-30", baseline_high_date: "2020-10-30" } }, { name: "referrerpolicy", description: 'A string indicating which referrer to use when fetching the resource:\n\n* `no-referrer` means that the [`Referer`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Referer "The Referer request header contains the address of the previous web page from which a link to the currently requested page was followed. The Referer header allows servers to identify where people are visiting them from and may use that data for analytics, logging, or optimized caching, for example.") header will not be sent.\n* `no-referrer-when-downgrade` means that no [`Referer`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Referer "The Referer request header contains the address of the previous web page from which a link to the currently requested page was followed. The Referer header allows servers to identify where people are visiting them from and may use that data for analytics, logging, or optimized caching, for example.") header will be sent when navigating to an origin without TLS (HTTPS). This is a user agent’s default behavior, if no policy is otherwise specified.\n* `origin` means that the referrer will be the origin of the page, which is roughly the scheme, the host, and the port.\n* `origin-when-cross-origin` means that navigating to other origins will be limited to the scheme, the host, and the port, while navigating on the same origin will include the referrer\'s path.\n* `unsafe-url` means that the referrer will include the origin and the path (but not the fragment, password, or username). This case is unsafe because it can leak origins and paths from TLS-protected resources to insecure origins.', browsers: [ "C51", "CA51", "E79", "FF50", "FFA50", "S14", "SM14" ], status: { baseline: "high", baseline_low_date: "2020-09-16", baseline_high_date: "2023-03-16" } }, { name: "title", description: 'The `title` attribute has special semantics on the `` element. When used on a `` it defines a [preferred or an alternate stylesheet](https://developer.mozilla.org/en-US/docs/Web/CSS/Alternative_style_sheets). Incorrectly using it may [cause the stylesheet to be ignored](https://developer.mozilla.org/en-US/docs/Correctly_Using_Titles_With_External_Stylesheets).' } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/link" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "meta", description: { kind: "markdown", value: "The meta element represents various kinds of metadata that cannot be expressed using the title, base, link, style, and script elements." }, void: true, attributes: [ { name: "name", description: { kind: "markdown", value: "This attribute defines the name of a piece of document-level metadata. It should not be set if one of the attributes [`itemprop`](https://developer.mozilla.org/en-US/docs/Web/HTML/Global_attributes#attr-itemprop), [`http-equiv`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta#attr-http-equiv) or [`charset`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta#attr-charset) is also set.\n\nThis metadata name is associated with the value contained by the [`content`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta#attr-content) attribute. The possible values for the name attribute are:\n\n* `application-name` which defines the name of the application running in the web page.\n \n **Note:**\n \n * Browsers may use this to identify the application. It is different from the [``](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/title \"The HTML Title element (<title>) defines the document's title that is shown in a browser's title bar or a page's tab.\") element, which usually contain the application name, but may also contain information like the document name or a status.\n * Simple web pages shouldn't define an application-name.\n \n* `author` which defines the name of the document's author.\n* `description` which contains a short and accurate summary of the content of the page. Several browsers, like Firefox and Opera, use this as the default description of bookmarked pages.\n* `generator` which contains the identifier of the software that generated the page.\n* `keywords` which contains words relevant to the page's content separated by commas.\n* `referrer` which controls the [`Referer` HTTP header](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Referer) attached to requests sent from the document:\n \n Values for the `content` attribute of `<meta name=\"referrer\">`\n \n `no-referrer`\n \n Do not send a HTTP `Referrer` header.\n \n `origin`\n \n Send the [origin](https://developer.mozilla.org/en-US/docs/Glossary/Origin) of the document.\n \n `no-referrer-when-downgrade`\n \n Send the [origin](https://developer.mozilla.org/en-US/docs/Glossary/Origin) as a referrer to URLs as secure as the current page, (https→https), but does not send a referrer to less secure URLs (https→http). This is the default behaviour.\n \n `origin-when-cross-origin`\n \n Send the full URL (stripped of parameters) for same-origin requests, but only send the [origin](https://developer.mozilla.org/en-US/docs/Glossary/Origin) for other cases.\n \n `same-origin`\n \n A referrer will be sent for [same-site origins](https://developer.mozilla.org/en-US/docs/Web/Security/Same-origin_policy), but cross-origin requests will contain no referrer information.\n \n `strict-origin`\n \n Only send the origin of the document as the referrer to a-priori as-much-secure destination (HTTPS->HTTPS), but don't send it to a less secure destination (HTTPS->HTTP).\n \n `strict-origin-when-cross-origin`\n \n Send a full URL when performing a same-origin request, only send the origin of the document to a-priori as-much-secure destination (HTTPS->HTTPS), and send no header to a less secure destination (HTTPS->HTTP).\n \n `unsafe-URL`\n \n Send the full URL (stripped of parameters) for same-origin or cross-origin requests.\n \n **Notes:**\n \n * Some browsers support the deprecated values of `always`, `default`, and `never` for referrer.\n * Dynamically inserting `<meta name=\"referrer\">` (with [`document.write`](https://developer.mozilla.org/en-US/docs/Web/API/Document/write) or [`appendChild`](https://developer.mozilla.org/en-US/docs/Web/API/Node/appendChild)) makes the referrer behaviour unpredictable.\n * When several conflicting policies are defined, the no-referrer policy is applied.\n \n\nThis attribute may also have a value taken from the extended list defined on [WHATWG Wiki MetaExtensions page](https://wiki.whatwg.org/wiki/MetaExtensions). Although none have been formally accepted yet, a few commonly used names are:\n\n* `creator` which defines the name of the creator of the document, such as an organization or institution. If there are more than one, several [`<meta>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta \"The HTML <meta> element represents metadata that cannot be represented by other HTML meta-related elements, like <base>, <link>, <script>, <style> or <title>.\") elements should be used.\n* `googlebot`, a synonym of `robots`, is only followed by Googlebot (the indexing crawler for Google).\n* `publisher` which defines the name of the document's publisher.\n* `robots` which defines the behaviour that cooperative crawlers, or \"robots\", should use with the page. It is a comma-separated list of the values below:\n \n Values for the content of `<meta name=\"robots\">`\n \n Value\n \n Description\n \n Used by\n \n `index`\n \n Allows the robot to index the page (default).\n \n All\n \n `noindex`\n \n Requests the robot to not index the page.\n \n All\n \n `follow`\n \n Allows the robot to follow the links on the page (default).\n \n All\n \n `nofollow`\n \n Requests the robot to not follow the links on the page.\n \n All\n \n `none`\n \n Equivalent to `noindex, nofollow`\n \n [Google](https://support.google.com/webmasters/answer/79812)\n \n `noodp`\n \n Prevents using the [Open Directory Project](https://www.dmoz.org/) description, if any, as the page description in search engine results.\n \n [Google](https://support.google.com/webmasters/answer/35624#nodmoz), [Yahoo](https://help.yahoo.com/kb/search-for-desktop/meta-tags-robotstxt-yahoo-search-sln2213.html#cont5), [Bing](https://www.bing.com/webmaster/help/which-robots-metatags-does-bing-support-5198d240)\n \n `noarchive`\n \n Requests the search engine not to cache the page content.\n \n [Google](https://developers.google.com/webmasters/control-crawl-index/docs/robots_meta_tag#valid-indexing--serving-directives), [Yahoo](https://help.yahoo.com/kb/search-for-desktop/SLN2213.html), [Bing](https://www.bing.com/webmaster/help/which-robots-metatags-does-bing-support-5198d240)\n \n `nosnippet`\n \n Prevents displaying any description of the page in search engine results.\n \n [Google](https://developers.google.com/webmasters/control-crawl-index/docs/robots_meta_tag#valid-indexing--serving-directives), [Bing](https://www.bing.com/webmaster/help/which-robots-metatags-does-bing-support-5198d240)\n \n `noimageindex`\n \n Requests this page not to appear as the referring page of an indexed image.\n \n [Google](https://developers.google.com/webmasters/control-crawl-index/docs/robots_meta_tag#valid-indexing--serving-directives)\n \n `nocache`\n \n Synonym of `noarchive`.\n \n [Bing](https://www.bing.com/webmaster/help/which-robots-metatags-does-bing-support-5198d240)\n \n **Notes:**\n \n * Only cooperative robots follow these rules. Do not expect to prevent e-mail harvesters with them.\n * The robot still needs to access the page in order to read these rules. To prevent bandwidth consumption, use a _[robots.txt](https://developer.mozilla.org/en-US/docs/Glossary/robots.txt \"robots.txt: Robots.txt is a file which is usually placed in the root of any website. It decides whether crawlers are permitted or forbidden access to the web site.\")_ file.\n * If you want to remove a page, `noindex` will work, but only after the robot visits the page again. Ensure that the `robots.txt` file is not preventing revisits.\n * Some values are mutually exclusive, like `index` and `noindex`, or `follow` and `nofollow`. In these cases the robot's behaviour is undefined and may vary between them.\n * Some crawler robots, like Google, Yahoo and Bing, support the same values for the HTTP header `X-Robots-Tag`; this allows non-HTML documents like images to use these rules.\n \n* `slurp`, is a synonym of `robots`, but only for Slurp - the crawler for Yahoo Search.\n* `viewport`, which gives hints about the size of the initial size of the [viewport](https://developer.mozilla.org/en-US/docs/Glossary/viewport \"viewport: A viewport represents a polygonal (normally rectangular) area in computer graphics that is currently being viewed. In web browser terms, it refers to the part of the document you're viewing which is currently visible in its window (or the screen, if the document is being viewed in full screen mode). Content outside the viewport is not visible onscreen until scrolled into view.\"). Used by mobile devices only.\n \n Values for the content of `<meta name=\"viewport\">`\n \n Value\n \n Possible subvalues\n \n Description\n \n `width`\n \n A positive integer number, or the text `device-width`\n \n Defines the pixel width of the viewport that you want the web site to be rendered at.\n \n `height`\n \n A positive integer, or the text `device-height`\n \n Defines the height of the viewport. Not used by any browser.\n \n `initial-scale`\n \n A positive number between `0.0` and `10.0`\n \n Defines the ratio between the device width (`device-width` in portrait mode or `device-height` in landscape mode) and the viewport size.\n \n `maximum-scale`\n \n A positive number between `0.0` and `10.0`\n \n Defines the maximum amount to zoom in. It must be greater or equal to the `minimum-scale` or the behaviour is undefined. Browser settings can ignore this rule and iOS10+ ignores it by default.\n \n `minimum-scale`\n \n A positive number between `0.0` and `10.0`\n \n Defines the minimum zoom level. It must be smaller or equal to the `maximum-scale` or the behaviour is undefined. Browser settings can ignore this rule and iOS10+ ignores it by default.\n \n `user-scalable`\n \n `yes` or `no`\n \n If set to `no`, the user is not able to zoom in the webpage. The default is `yes`. Browser settings can ignore this rule, and iOS10+ ignores it by default.\n \n Specification\n \n Status\n \n Comment\n \n [CSS Device Adaptation \n The definition of '<meta name=\"viewport\">' in that specification.](https://drafts.csswg.org/css-device-adapt/#viewport-meta)\n \n Working Draft\n \n Non-normatively describes the Viewport META element\n \n See also: [`@viewport`](https://developer.mozilla.org/en-US/docs/Web/CSS/@viewport \"The @viewport CSS at-rule lets you configure the viewport through which the document is viewed. It's primarily used for mobile devices, but is also used by desktop browsers that support features like \"snap to edge\" (such as Microsoft Edge).\")\n \n **Notes:**\n \n * Though unstandardized, this declaration is respected by most mobile browsers due to de-facto dominance.\n * The default values may vary between devices and browsers.\n * To learn about this declaration in Firefox for Mobile, see [this article](https://developer.mozilla.org/en-US/docs/Mobile/Viewport_meta_tag \"Mobile/Viewport meta tag\")." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "http-equiv", description: { kind: "markdown", value: 'Defines a pragma directive. The attribute is named `**http-equiv**(alent)` because all the allowed values are names of particular HTTP headers:\n\n* `"content-language"` \n Defines the default language of the page. It can be overridden by the [lang](https://developer.mozilla.org/en-US/docs/Web/HTML/Global_attributes/lang) attribute on any element.\n \n **Warning:** Do not use this value, as it is obsolete. Prefer the `lang` attribute on the [`<html>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/html "The HTML <html> element represents the root (top-level element) of an HTML document, so it is also referred to as the root element. All other elements must be descendants of this element.") element.\n \n* `"content-security-policy"` \n Allows page authors to define a [content policy](https://developer.mozilla.org/en-US/docs/Web/Security/CSP/CSP_policy_directives) for the current page. Content policies mostly specify allowed server origins and script endpoints which help guard against cross-site scripting attacks.\n* `"content-type"` \n Defines the [MIME type](https://developer.mozilla.org/en-US/docs/Glossary/MIME_type) of the document, followed by its character encoding. It follows the same syntax as the HTTP `content-type` entity-header field, but as it is inside a HTML page, most values other than `text/html` are impossible. Therefore the valid syntax for its `content` is the string \'`text/html`\' followed by a character set with the following syntax: \'`; charset=_IANAcharset_`\', where `IANAcharset` is the _preferred MIME name_ for a character set as [defined by the IANA.](https://www.iana.org/assignments/character-sets)\n \n **Warning:** Do not use this value, as it is obsolete. Use the [`charset`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta#attr-charset) attribute on the [`<meta>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta "The HTML <meta> element represents metadata that cannot be represented by other HTML meta-related elements, like <base>, <link>, <script>, <style> or <title>.") element.\n \n **Note:** As [`<meta>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta "The HTML <meta> element represents metadata that cannot be represented by other HTML meta-related elements, like <base>, <link>, <script>, <style> or <title>.") can\'t change documents\' types in XHTML or HTML5\'s XHTML serialization, never set the MIME type to an XHTML MIME type with `<meta>`.\n \n* `"refresh"` \n This instruction specifies:\n * The number of seconds until the page should be reloaded - only if the [`content`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta#attr-content) attribute contains a positive integer.\n * The number of seconds until the page should redirect to another - only if the [`content`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta#attr-content) attribute contains a positive integer followed by the string \'`;url=`\', and a valid URL.\n* `"set-cookie"` \n Defines a [cookie](https://developer.mozilla.org/en-US/docs/cookie) for the page. Its content must follow the syntax defined in the [IETF HTTP Cookie Specification](https://tools.ietf.org/html/draft-ietf-httpstate-cookie-14).\n \n **Warning:** Do not use this instruction, as it is obsolete. Use the HTTP header [`Set-Cookie`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Set-Cookie) instead.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "content", description: { kind: "markdown", value: "This attribute contains the value for the [`http-equiv`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta#attr-http-equiv) or [`name`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta#attr-name) attribute, depending on which is used." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "charset", description: { kind: "markdown", value: "This attribute declares the page's character encoding. It must contain a [standard IANA MIME name for character encodings](https://www.iana.org/assignments/character-sets). Although the standard doesn't request a specific encoding, it suggests:\n\n* Authors are encouraged to use [`UTF-8`](https://developer.mozilla.org/en-US/docs/Glossary/UTF-8).\n* Authors should not use ASCII-incompatible encodings to avoid security risk: browsers not supporting them may interpret harmful content as HTML. This happens with the `JIS_C6226-1983`, `JIS_X0212-1990`, `HZ-GB-2312`, `JOHAB`, the ISO-2022 family and the EBCDIC family.\n\n**Note:** ASCII-incompatible encodings are those that don't map the 8-bit code points `0x20` to `0x7E` to the `0x0020` to `0x007E` Unicode code points)\n\n* Authors **must not** use `CESU-8`, `UTF-7`, `BOCU-1` and/or `SCSU` as [cross-site scripting](https://developer.mozilla.org/en-US/docs/Glossary/Cross-site_scripting) attacks with these encodings have been demonstrated.\n* Authors should not use `UTF-32` because not all HTML5 encoding algorithms can distinguish it from `UTF-16`.\n\n**Notes:**\n\n* The declared character encoding must match the one the page was saved with to avoid garbled characters and security holes.\n* The [`<meta>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta \"The HTML <meta> element represents metadata that cannot be represented by other HTML meta-related elements, like <base>, <link>, <script>, <style> or <title>.\") element declaring the encoding must be inside the [`<head>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/head \"The HTML <head> element provides general information (metadata) about the document, including its title and links to its scripts and style sheets.\") element and **within the first 1024 bytes** of the HTML as some browsers only look at those bytes before choosing an encoding.\n* This [`<meta>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta \"The HTML <meta> element represents metadata that cannot be represented by other HTML meta-related elements, like <base>, <link>, <script>, <style> or <title>.\") element is only one part of the [algorithm to determine a page's character set](https://www.whatwg.org/specs/web-apps/current-work/multipage/parsing.html#encoding-sniffing-algorithm \"Algorithm charset page\"). The [`Content-Type` header](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Content-Type) and any [Byte-Order Marks](https://developer.mozilla.org/en-US/docs/Glossary/Byte-Order_Mark \"The definition of that term (Byte-Order Marks) has not been written yet; please consider contributing it!\") override this element.\n* It is strongly recommended to define the character encoding. If a page's encoding is undefined, cross-scripting techniques are possible, such as the [`UTF-7` fallback cross-scripting technique](https://code.google.com/p/doctype-mirror/wiki/ArticleUtf7).\n* The [`<meta>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta \"The HTML <meta> element represents metadata that cannot be represented by other HTML meta-related elements, like <base>, <link>, <script>, <style> or <title>.\") element with a `charset` attribute is a synonym for the pre-HTML5 `<meta http-equiv=\"Content-Type\" content=\"text/html; charset=_IANAcharset_\">`, where _`IANAcharset`_ contains the value of the equivalent [`charset`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta#attr-charset) attribute. This syntax is still allowed, although no longer recommended." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "scheme", description: "This attribute defines the scheme in which metadata is described. A scheme is a context leading to the correct interpretations of the [`content`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/meta#attr-content) value, like a format.\n\n**Warning:** Do not use this value, as it is obsolete. There is no replacement as there was no real usage for it.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/meta" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "style", description: { kind: "markdown", value: "The style element allows authors to embed style information in their documents. The style element is one of several inputs to the styling processing model. The element does not represent content for the user." }, attributes: [ { name: "media", description: { kind: "markdown", value: "This attribute defines which media the style should be applied to. Its value is a [media query](https://developer.mozilla.org/en-US/docs/Web/Guide/CSS/Media_queries), which defaults to `all` if the attribute is missing." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "nonce", description: { kind: "markdown", value: "A cryptographic nonce (number used once) used to allow inline styles in a [style-src Content-Security-Policy](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Content-Security-Policy/style-src). The server must generate a unique nonce value each time it transmits a policy. It is critical to provide a nonce that cannot be guessed as bypassing a resource’s policy is otherwise trivial." } }, { name: "type", description: { kind: "markdown", value: "This attribute defines the styling language as a MIME type (charset should not be specified). This attribute is optional and defaults to `text/css` if it is not specified — there is very little reason to include this in modern web documents." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: false } }, { name: "scoped", valueSet: "v" }, { name: "title", description: "This attribute specifies [alternative style sheet](https://developer.mozilla.org/en-US/docs/Web/CSS/Alternative_style_sheets) sets." } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/style" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "body", description: { kind: "markdown", value: "The body element represents the content of the document." }, attributes: [ { name: "onafterprint", description: { kind: "markdown", value: "Function to call after the user has printed the document." } }, { name: "onbeforeprint", description: { kind: "markdown", value: "Function to call when the user requests printing of the document." } }, { name: "onbeforeunload", description: { kind: "markdown", value: "Function to call when the document is about to be unloaded." } }, { name: "onhashchange", description: { kind: "markdown", value: "Function to call when the fragment identifier part (starting with the hash (`'#'`) character) of the document's current address has changed." } }, { name: "onlanguagechange", description: { kind: "markdown", value: "Function to call when the preferred languages changed." } }, { name: "onmessage", description: { kind: "markdown", value: "Function to call when the document has received a message." } }, { name: "onoffline", description: { kind: "markdown", value: "Function to call when network communication has failed." } }, { name: "ononline", description: { kind: "markdown", value: "Function to call when network communication has been restored." } }, { name: "onpagehide" }, { name: "onpageshow" }, { name: "onpopstate", description: { kind: "markdown", value: "Function to call when the user has navigated session history." } }, { name: "onstorage", description: { kind: "markdown", value: "Function to call when the storage area has changed." } }, { name: "onunload", description: { kind: "markdown", value: "Function to call when the document is going away." } }, { name: "alink", description: 'Color of text for hyperlinks when selected. _This method is non-conforming, use CSS [`color`](https://developer.mozilla.org/en-US/docs/Web/CSS/color "The color CSS property sets the foreground color value of an element\'s text and text decorations, and sets the currentcolor value.") property in conjunction with the [`:active`](https://developer.mozilla.org/en-US/docs/Web/CSS/:active "The :active CSS pseudo-class represents an element (such as a button) that is being activated by the user.") pseudo-class instead._', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } }, { name: "background", description: 'URI of a image to use as a background. _This method is non-conforming, use CSS [`background`](https://developer.mozilla.org/en-US/docs/Web/CSS/background "The background shorthand CSS property sets all background style properties at once, such as color, image, origin and size, or repeat method.") property on the element instead._', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } }, { name: "bgcolor", description: 'Background color for the document. _This method is non-conforming, use CSS [`background-color`](https://developer.mozilla.org/en-US/docs/Web/CSS/background-color "The background-color CSS property sets the background color of an element.") property on the element instead._', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } }, { name: "bottommargin", description: 'The margin of the bottom of the body. _This method is non-conforming, use CSS [`margin-bottom`](https://developer.mozilla.org/en-US/docs/Web/CSS/margin-bottom "The margin-bottom CSS property sets the margin area on the bottom of an element. A positive value places it farther from its neighbors, while a negative value places it closer.") property on the element instead._', browsers: [ "C1", "CA18", "E79", "FF35", "FFA35", "S4", "SM3.2" ], status: { baseline: false } }, { name: "leftmargin", description: 'The margin of the left of the body. _This method is non-conforming, use CSS [`margin-left`](https://developer.mozilla.org/en-US/docs/Web/CSS/margin-left "The margin-left CSS property sets the margin area on the left side of an element. A positive value places it farther from its neighbors, while a negative value places it closer.") property on the element instead._', browsers: [ "C1", "CA18", "E79", "FF35", "FFA35", "S4", "SM3.2" ], status: { baseline: false } }, { name: "link", description: 'Color of text for unvisited hypertext links. _This method is non-conforming, use CSS [`color`](https://developer.mozilla.org/en-US/docs/Web/CSS/color "The color CSS property sets the foreground color value of an element\'s text and text decorations, and sets the currentcolor value.") property in conjunction with the [`:link`](https://developer.mozilla.org/en-US/docs/Web/CSS/:link "The :link CSS pseudo-class represents an element that has not yet been visited. It matches every unvisited <a>, <area>, or <link> element that has an href attribute.") pseudo-class instead._', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } }, { name: "onblur", description: "Function to call when the document loses focus." }, { name: "onerror", description: "Function to call when the document fails to load properly." }, { name: "onfocus", description: "Function to call when the document receives focus." }, { name: "onload", description: "Function to call when the document has finished loading." }, { name: "onredo", description: "Function to call when the user has moved forward in undo transaction history." }, { name: "onresize", description: "Function to call when the document has been resized." }, { name: "onundo", description: "Function to call when the user has moved backward in undo transaction history." }, { name: "rightmargin", description: 'The margin of the right of the body. _This method is non-conforming, use CSS [`margin-right`](https://developer.mozilla.org/en-US/docs/Web/CSS/margin-right "The margin-right CSS property sets the margin area on the right side of an element. A positive value places it farther from its neighbors, while a negative value places it closer.") property on the element instead._', browsers: [ "C1", "CA18", "E79", "FF35", "FFA35", "S4", "SM3.2" ], status: { baseline: false } }, { name: "text", description: 'Foreground color of text. _This method is non-conforming, use CSS [`color`](https://developer.mozilla.org/en-US/docs/Web/CSS/color "The color CSS property sets the foreground color value of an element\'s text and text decorations, and sets the currentcolor value.") property on the element instead._', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } }, { name: "topmargin", description: 'The margin of the top of the body. _This method is non-conforming, use CSS [`margin-top`](https://developer.mozilla.org/en-US/docs/Web/CSS/margin-top "The margin-top CSS property sets the margin area on the top of an element. A positive value places it farther from its neighbors, while a negative value places it closer.") property on the element instead._', browsers: [ "C1", "CA18", "E79", "FF35", "FFA35", "S4", "SM3.2" ], status: { baseline: false } }, { name: "vlink", description: 'Color of text for visited hypertext links. _This method is non-conforming, use CSS [`color`](https://developer.mozilla.org/en-US/docs/Web/CSS/color "The color CSS property sets the foreground color value of an element\'s text and text decorations, and sets the currentcolor value.") property in conjunction with the [`:visited`](https://developer.mozilla.org/en-US/docs/Web/CSS/:visited "The :visited CSS pseudo-class represents links that the user has already visited. For privacy reasons, the styles that can be modified using this selector are very limited.") pseudo-class instead._', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/body" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "article", description: { kind: "markdown", value: "The article element represents a complete, or self-contained, composition in a document, page, application, or site and that is, in principle, independently distributable or reusable, e.g. in syndication. This could be a forum post, a magazine or newspaper article, a blog entry, a user-submitted comment, an interactive widget or gadget, or any other independent item of content. Each article should be identified, typically by including a heading (h1–h6 element) as a child of the article element." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/article" } ], browsers: [ "C5", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "section", description: { kind: "markdown", value: "The section element represents a generic section of a document or application. A section, in this context, is a thematic grouping of content. Each section should be identified, typically by including a heading ( h1- h6 element) as a child of the section element." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/section" } ], browsers: [ "C5", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "nav", description: { kind: "markdown", value: "The nav element represents a section of a page that links to other pages or to parts within the page: a section with navigation links." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/nav" } ], browsers: [ "C5", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "aside", description: { kind: "markdown", value: "The aside element represents a section of a page that consists of content that is tangentially related to the content around the aside element, and which could be considered separate from that content. Such sections are often represented as sidebars in printed typography." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/aside" } ], browsers: [ "C5", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "h1", description: { kind: "markdown", value: "The h1 element represents a section heading." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/Heading_Elements" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "h2", description: { kind: "markdown", value: "The h2 element represents a section heading." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/Heading_Elements" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "h3", description: { kind: "markdown", value: "The h3 element represents a section heading." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/Heading_Elements" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "h4", description: { kind: "markdown", value: "The h4 element represents a section heading." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/Heading_Elements" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "h5", description: { kind: "markdown", value: "The h5 element represents a section heading." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/Heading_Elements" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "h6", description: { kind: "markdown", value: "The h6 element represents a section heading." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/Heading_Elements" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "header", description: { kind: "markdown", value: "The header element represents introductory content for its nearest ancestor sectioning content or sectioning root element. A header typically contains a group of introductory or navigational aids. When the nearest ancestor sectioning content or sectioning root element is the body element, then it applies to the whole page." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/header" } ], browsers: [ "C5", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "footer", description: { kind: "markdown", value: "The footer element represents a footer for its nearest ancestor sectioning content or sectioning root element. A footer typically contains information about its section such as who wrote it, links to related documents, copyright data, and the like." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/footer" } ], browsers: [ "C5", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "address", description: { kind: "markdown", value: "The address element represents the contact information for its nearest article or body element ancestor. If that is the body element, then the contact information applies to the document as a whole." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/address" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "p", description: { kind: "markdown", value: "The p element represents a paragraph." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/p" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "hr", description: { kind: "markdown", value: "The hr element represents a paragraph-level thematic break, e.g. a scene change in a story, or a transition to another topic within a section of a reference book." }, void: true, attributes: [ { name: "align", description: "Sets the alignment of the rule on the page. If no value is specified, the default value is `left`.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } }, { name: "color", description: "Sets the color of the rule through color name or hexadecimal value.", browsers: [ "C33", "CA33", "E12", "FF1", "FFA4", "S10.1", "SM10.3" ], status: { baseline: false } }, { name: "noshade", description: "Sets the rule to have no shading.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } }, { name: "size", description: "Sets the height, in pixels, of the rule.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } }, { name: "width", description: "Sets the length of the rule on the page through a pixel or percentage value.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/hr" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "pre", description: { kind: "markdown", value: "The pre element represents a block of preformatted text, in which structure is represented by typographic conventions rather than by elements." }, attributes: [ { name: "cols", description: 'Contains the _preferred_ count of characters that a line should have. It was a non-standard synonym of [`width`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/pre#attr-width). To achieve such an effect, use CSS [`width`](https://developer.mozilla.org/en-US/docs/Web/CSS/width "The width CSS property sets an element\'s width. By default it sets the width of the content area, but if box-sizing is set to border-box, it sets the width of the border area.") instead.' }, { name: "width", description: 'Contains the _preferred_ count of characters that a line should have. Though technically still implemented, this attribute has no visual effect; to achieve such an effect, use CSS [`width`](https://developer.mozilla.org/en-US/docs/Web/CSS/width "The width CSS property sets an element\'s width. By default it sets the width of the content area, but if box-sizing is set to border-box, it sets the width of the border area.") instead.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } }, { name: "wrap", description: 'Is a _hint_ indicating how the overflow must happen. In modern browser this hint is ignored and no visual effect results in its present; to achieve such an effect, use CSS [`white-space`](https://developer.mozilla.org/en-US/docs/Web/CSS/white-space "The white-space CSS property sets how white space inside an element is handled.") instead.' } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/pre" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "blockquote", description: { kind: "markdown", value: "The blockquote element represents content that is quoted from another source, optionally with a citation which must be within a footer or cite element, and optionally with in-line changes such as annotations and abbreviations." }, attributes: [ { name: "cite", description: { kind: "markdown", value: "A URL that designates a source document or message for the information quoted. This attribute is intended to point to information explaining the context or the reference for the quote." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/blockquote" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "ol", description: { kind: "markdown", value: "The ol element represents a list of items, where the items have been intentionally ordered, such that changing the order would change the meaning of the document." }, attributes: [ { name: "reversed", valueSet: "v", description: { kind: "markdown", value: "This Boolean attribute specifies that the items of the list are specified in reversed order." }, browsers: [ "C18", "CA18", "E79", "FF18", "FFA18", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "start", description: { kind: "markdown", value: 'This integer attribute specifies the start value for numbering the individual list items. Although the ordering type of list elements might be Roman numerals, such as XXXI, or letters, the value of start is always represented as a number. To start numbering elements from the letter "C", use `<ol start="3">`.\n\n**Note**: This attribute was deprecated in HTML4, but reintroduced in HTML5.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "type", valueSet: "lt", description: { kind: "markdown", value: "Indicates the numbering type:\n\n* `'a'` indicates lowercase letters,\n* `'A'` indicates uppercase letters,\n* `'i'` indicates lowercase Roman numerals,\n* `'I'` indicates uppercase Roman numerals,\n* and `'1'` indicates numbers (default).\n\nThe type set is used for the entire list unless a different [`type`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/li#attr-type) attribute is used within an enclosed [`<li>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/li \"The HTML <li> element is used to represent an item in a list. It must be contained in a parent element: an ordered list (<ol>), an unordered list (<ul>), or a menu (<menu>). In menus and unordered lists, list items are usually displayed using bullet points. In ordered lists, they are usually displayed with an ascending counter on the left, such as a number or letter.\") element.\n\n**Note:** This attribute was deprecated in HTML4, but reintroduced in HTML5.\n\nUnless the value of the list number matters (e.g. in legal or technical documents where items are to be referenced by their number/letter), the CSS [`list-style-type`](https://developer.mozilla.org/en-US/docs/Web/CSS/list-style-type \"The list-style-type CSS property sets the marker (such as a disc, character, or custom counter style) of a list item element.\") property should be used instead." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "compact", description: 'This Boolean attribute hints that the list should be rendered in a compact style. The interpretation of this attribute depends on the user agent and it doesn\'t work in all browsers.\n\n**Warning:** Do not use this attribute, as it has been deprecated: the [`<ol>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/ol "The HTML <ol> element represents an ordered list of items, typically rendered as a numbered list.") element should be styled using [CSS](https://developer.mozilla.org/en-US/docs/CSS). To give an effect similar to the `compact` attribute, the [CSS](https://developer.mozilla.org/en-US/docs/CSS) property [`line-height`](https://developer.mozilla.org/en-US/docs/Web/CSS/line-height "The line-height CSS property sets the amount of space used for lines, such as in text. On block-level elements, it specifies the minimum height of line boxes within the element. On non-replaced inline elements, it specifies the height that is used to calculate line box height.") can be used with a value of `80%`.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/ol" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "ul", description: { kind: "markdown", value: "The ul element represents a list of items, where the order of the items is not important — that is, where changing the order would not materially change the meaning of the document." }, attributes: [ { name: "compact", description: 'This Boolean attribute hints that the list should be rendered in a compact style. The interpretation of this attribute depends on the user agent and it doesn\'t work in all browsers.\n\n**Usage note: **Do not use this attribute, as it has been deprecated: the [`<ul>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/ul "The HTML <ul> element represents an unordered list of items, typically rendered as a bulleted list.") element should be styled using [CSS](https://developer.mozilla.org/en-US/docs/CSS). To give a similar effect as the `compact` attribute, the [CSS](https://developer.mozilla.org/en-US/docs/CSS) property [line-height](https://developer.mozilla.org/en-US/docs/CSS/line-height) can be used with a value of `80%`.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/ul" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "li", description: { kind: "markdown", value: "The li element represents a list item. If its parent element is an ol, ul, or menu element, then the element is an item of the parent element's list, as defined for those elements. Otherwise, the list item has no defined list-related relationship to any other li element." }, attributes: [ { name: "value", description: { kind: "markdown", value: 'This integer attribute indicates the current ordinal value of the list item as defined by the [`<ol>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/ol "The HTML <ol> element represents an ordered list of items, typically rendered as a numbered list.") element. The only allowed value for this attribute is a number, even if the list is displayed with Roman numerals or letters. List items that follow this one continue numbering from the value set. The **value** attribute has no meaning for unordered lists ([`<ul>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/ul "The HTML <ul> element represents an unordered list of items, typically rendered as a bulleted list.")) or for menus ([`<menu>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/menu "The HTML <menu> element represents a group of commands that a user can perform or activate. This includes both list menus, which might appear across the top of a screen, as well as context menus, such as those that might appear underneath a button after it has been clicked.")).\n\n**Note**: This attribute was deprecated in HTML4, but reintroduced in HTML5.\n\n**Note:** Prior to Gecko 9.0, negative values were incorrectly converted to 0. Starting in Gecko 9.0 all integer values are correctly parsed.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "type", description: 'This character attribute indicates the numbering type:\n\n* `a`: lowercase letters\n* `A`: uppercase letters\n* `i`: lowercase Roman numerals\n* `I`: uppercase Roman numerals\n* `1`: numbers\n\nThis type overrides the one used by its parent [`<ol>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/ol "The HTML <ol> element represents an ordered list of items, typically rendered as a numbered list.") element, if any.\n\n**Usage note:** This attribute has been deprecated: use the CSS [`list-style-type`](https://developer.mozilla.org/en-US/docs/Web/CSS/list-style-type "The list-style-type CSS property sets the marker (such as a disc, character, or custom counter style) of a list item element.") property instead.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/li" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "dl", description: { kind: "markdown", value: "The dl element represents an association list consisting of zero or more name-value groups (a description list). A name-value group consists of one or more names (dt elements) followed by one or more values (dd elements), ignoring any nodes other than dt and dd elements. Within a single dl element, there should not be more than one dt element for each name." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/dl" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "dt", description: { kind: "markdown", value: "The dt element represents the term, or name, part of a term-description group in a description list (dl element)." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/dt" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "dd", description: { kind: "markdown", value: "The dd element represents the description, definition, or value, part of a term-description group in a description list (dl element)." }, attributes: [ { name: "nowrap", description: "If the value of this attribute is set to `yes`, the definition text will not wrap. The default value is `no`." } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/dd" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "figure", description: { kind: "markdown", value: "The figure element represents some flow content, optionally with a caption, that is self-contained (like a complete sentence) and is typically referenced as a single unit from the main flow of the document." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/figure" } ], browsers: [ "C8", "CA18", "E12", "FF4", "FFA4", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "figcaption", description: { kind: "markdown", value: "The figcaption element represents a caption or legend for the rest of the contents of the figcaption element's parent figure element, if any." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/figcaption" } ], browsers: [ "C8", "CA18", "E12", "FF4", "FFA4", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "main", description: { kind: "markdown", value: "The main element represents the main content of the body of a document or application. The main content area consists of content that is directly related to or expands upon the central topic of a document or central functionality of an application." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/main" } ], browsers: [ "C26", "CA26", "E12", "FF21", "FFA21", "S7", "SM7" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "div", description: { kind: "markdown", value: "The div element has no special meaning at all. It represents its children. It can be used with the class, lang, and title attributes to mark up semantics common to a group of consecutive elements." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/div" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "a", description: { kind: "markdown", value: "If the a element has an href attribute, then it represents a hyperlink (a hypertext anchor) labeled by its contents." }, attributes: [ { name: "href", description: { kind: "markdown", value: 'Contains a URL or a URL fragment that the hyperlink points to.\nA URL fragment is a name preceded by a hash mark (`#`), which specifies an internal target location (an [`id`](https://developer.mozilla.org/en-US/docs/Web/HTML/Global_attributes#attr-id) of an HTML element) within the current document. URLs are not restricted to Web (HTTP)-based documents, but can use any protocol supported by the browser. For example, [`file:`](https://en.wikipedia.org/wiki/File_URI_scheme), `ftp:`, and `mailto:` work in most browsers.\n\n**Note:** You can use `href="#top"` or the empty fragment `href="#"` to link to the top of the current page. [This behavior is specified by HTML5](https://www.w3.org/TR/html5/single-page.html#scroll-to-fragid).' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "target", valueSet: "target", description: { kind: "markdown", value: 'Specifies where to display the linked URL. It is a name of, or keyword for, a _browsing context_: a tab, window, or `<iframe>`. The following keywords have special meanings:\n\n* `_self`: Load the URL into the same browsing context as the current one. This is the default behavior.\n* `_blank`: Load the URL into a new browsing context. This is usually a tab, but users can configure browsers to use new windows instead.\n* `_parent`: Load the URL into the parent browsing context of the current one. If there is no parent, this behaves the same way as `_self`.\n* `_top`: Load the URL into the top-level browsing context (that is, the "highest" browsing context that is an ancestor of the current one, and has no parent). If there is no parent, this behaves the same way as `_self`.\n\n**Note:** When using `target`, consider adding `rel="noreferrer"` to avoid exploitation of the `window.opener` API.\n\n**Note:** Linking to another page using `target="_blank"` will run the new page on the same process as your page. If the new page is executing expensive JS, your page\'s performance may suffer. To avoid this use `rel="noopener"`.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "download", description: { kind: "markdown", value: "This attribute instructs browsers to download a URL instead of navigating to it, so the user will be prompted to save it as a local file. If the attribute has a value, it is used as the pre-filled file name in the Save prompt (the user can still change the file name if they want). There are no restrictions on allowed values, though `/` and `\\` are converted to underscores. Most file systems limit some punctuation in file names, and browsers will adjust the suggested name accordingly.\n\n**Notes:**\n\n* This attribute only works for [same-origin URLs](https://developer.mozilla.org/en-US/docs/Web/Security/Same-origin_policy).\n* Although HTTP(s) URLs need to be in the same-origin, [`blob:` URLs](https://developer.mozilla.org/en-US/docs/Web/API/URL.createObjectURL) and [`data:` URLs](https://developer.mozilla.org/en-US/docs/Web/HTTP/Basics_of_HTTP/Data_URIs) are allowed so that content generated by JavaScript, such as pictures created in an image-editor Web app, can be downloaded.\n* If the HTTP header [`Content-Disposition:`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Content-Disposition) gives a different filename than this attribute, the HTTP header takes priority over this attribute.\n* If `Content-Disposition:` is set to `inline`, Firefox prioritizes `Content-Disposition`, like the filename case, while Chrome prioritizes the `download` attribute." }, browsers: [ "C14", "CA18", "E18", "FF20", "FFA20", "S10.1", "SM13" ], status: { baseline: "high", baseline_low_date: "2019-09-19", baseline_high_date: "2022-03-19" } }, { name: "ping", description: { kind: "markdown", value: 'Contains a space-separated list of URLs to which, when the hyperlink is followed, [`POST`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Methods/POST "The HTTP POST method sends data to the server. The type of the body of the request is indicated by the Content-Type header.") requests with the body `PING` will be sent by the browser (in the background). Typically used for tracking.' }, browsers: [ "C12", "CA18", "E17", "S6", "SM6" ], status: { baseline: false } }, { name: "rel", description: { kind: "markdown", value: "Specifies the relationship of the target object to the link object. The value is a space-separated list of [link types](https://developer.mozilla.org/en-US/docs/Web/HTML/Link_types)." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "hreflang", description: { kind: "markdown", value: 'This attribute indicates the human language of the linked resource. It is purely advisory, with no built-in functionality. Allowed values are determined by [BCP47](https://www.ietf.org/rfc/bcp/bcp47.txt "Tags for Identifying Languages").' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "type", description: { kind: "markdown", value: 'Specifies the media type in the form of a [MIME type](https://developer.mozilla.org/en-US/docs/Glossary/MIME_type "MIME type: A MIME type (now properly called "media type", but also sometimes "content type") is a string sent along with a file indicating the type of the file (describing the content format, for example, a sound file might be labeled audio/ogg, or an image file image/png).") for the linked URL. It is purely advisory, with no built-in functionality.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "referrerpolicy", description: "Indicates which [referrer](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Referer) to send when fetching the URL:\n\n* `'no-referrer'` means the `Referer:` header will not be sent.\n* `'no-referrer-when-downgrade'` means no `Referer:` header will be sent when navigating to an origin without HTTPS. This is the default behavior.\n* `'origin'` means the referrer will be the [origin](https://developer.mozilla.org/en-US/docs/Glossary/Origin) of the page, not including information after the domain.\n* `'origin-when-cross-origin'` meaning that navigations to other origins will be limited to the scheme, the host and the port, while navigations on the same origin will include the referrer's path.\n* `'strict-origin-when-cross-origin'`\n* `'unsafe-url'` means the referrer will include the origin and path, but not the fragment, password, or username. This is unsafe because it can leak data from secure URLs to insecure ones.", browsers: [ "C51", "CA51", "E79", "FF50", "FFA50", "S14", "SM14" ], status: { baseline: "high", baseline_low_date: "2020-09-16", baseline_high_date: "2023-03-16" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/a" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "em", description: { kind: "markdown", value: "The em element represents stress emphasis of its contents." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/em" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "strong", description: { kind: "markdown", value: "The strong element represents strong importance, seriousness, or urgency for its contents." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/strong" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "small", description: { kind: "markdown", value: "The small element represents side comments such as small print." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/small" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "s", description: { kind: "markdown", value: "The s element represents contents that are no longer accurate or no longer relevant." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/s" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "cite", description: { kind: "markdown", value: "The cite element represents a reference to a creative work. It must include the title of the work or the name of the author(person, people or organization) or an URL reference, or a reference in abbreviated form as per the conventions used for the addition of citation metadata." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/cite" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "q", description: { kind: "markdown", value: "The q element represents some phrasing content quoted from another source." }, attributes: [ { name: "cite", description: { kind: "markdown", value: "The value of this attribute is a URL that designates a source document or message for the information quoted. This attribute is intended to point to information explaining the context or the reference for the quote." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/q" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "dfn", description: { kind: "markdown", value: "The dfn element represents the defining instance of a term. The paragraph, description list group, or section that is the nearest ancestor of the dfn element must also contain the definition(s) for the term given by the dfn element." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/dfn" } ], browsers: [ "C15", "CA18", "E12", "FF1", "FFA4", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "abbr", description: { kind: "markdown", value: "The abbr element represents an abbreviation or acronym, optionally with its expansion. The title attribute may be used to provide an expansion of the abbreviation. The attribute, if specified, must contain an expansion of the abbreviation, and nothing else." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/abbr" } ], browsers: [ "C2", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "ruby", description: { kind: "markdown", value: "The ruby element allows one or more spans of phrasing content to be marked with ruby annotations. Ruby annotations are short runs of text presented alongside base text, primarily used in East Asian typography as a guide for pronunciation or to include other annotations. In Japanese, this form of typography is also known as furigana. Ruby text can appear on either side, and sometimes both sides, of the base text, and it is possible to control its position using CSS. A more complete introduction to ruby can be found in the Use Cases & Exploratory Approaches for Ruby Markup document as well as in CSS Ruby Module Level 1. [RUBY-UC] [CSSRUBY]" }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/ruby" } ], browsers: [ "C5", "CA18", "E12", "FF38", "FFA38", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "rb", description: { kind: "markdown", value: "The rb element marks the base text component of a ruby annotation. When it is the child of a ruby element, it doesn't represent anything itself, but its parent ruby element uses it as part of determining what it represents." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/rb" } ] }, { name: "rt", description: { kind: "markdown", value: "The rt element marks the ruby text component of a ruby annotation. When it is the child of a ruby element or of an rtc element that is itself the child of a ruby element, it doesn't represent anything itself, but its ancestor ruby element uses it as part of determining what it represents." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/rt" } ], browsers: [ "C5", "CA18", "E12", "FF38", "FFA38", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "rp", description: { kind: "markdown", value: "The rp element is used to provide fallback text to be shown by user agents that don't support ruby annotations. One widespread convention is to provide parentheses around the ruby text component of a ruby annotation." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/rp" } ], browsers: [ "C5", "CA18", "E12", "FF38", "FFA38", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "time", description: { kind: "markdown", value: "The time element represents its contents, along with a machine-readable form of those contents in the datetime attribute. The kind of content is limited to various kinds of dates, times, time-zone offsets, and durations, as described below." }, attributes: [ { name: "datetime", description: { kind: "markdown", value: "This attribute indicates the time and/or date of the element and must be in one of the formats described below." }, browsers: [ "C62", "CA62", "E14", "FF22", "FFA22", "S7", "SM4" ], status: { baseline: "high", baseline_low_date: "2017-10-24", baseline_high_date: "2020-04-24" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/time" } ], browsers: [ "C62", "CA62", "E14", "FF22", "FFA22", "S7", "SM4" ], status: { baseline: "high", baseline_low_date: "2017-10-24", baseline_high_date: "2020-04-24" } }, { name: "code", description: { kind: "markdown", value: "The code element represents a fragment of computer code. This could be an XML element name, a file name, a computer program, or any other string that a computer would recognize." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/code" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "var", description: { kind: "markdown", value: "The var element represents a variable. This could be an actual variable in a mathematical expression or programming context, an identifier representing a constant, a symbol identifying a physical quantity, a function parameter, or just be a term used as a placeholder in prose." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/var" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "samp", description: { kind: "markdown", value: "The samp element represents sample or quoted output from another program or computing system." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/samp" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "kbd", description: { kind: "markdown", value: "The kbd element represents user input (typically keyboard input, although it may also be used to represent other input, such as voice commands)." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/kbd" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "sub", description: { kind: "markdown", value: "The sub element represents a subscript." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/sub" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "sup", description: { kind: "markdown", value: "The sup element represents a superscript." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/sup" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "i", description: { kind: "markdown", value: "The i element represents a span of text in an alternate voice or mood, or otherwise offset from the normal prose in a manner indicating a different quality of text, such as a taxonomic designation, a technical term, an idiomatic phrase from another language, transliteration, a thought, or a ship name in Western texts." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/i" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "b", description: { kind: "markdown", value: "The b element represents a span of text to which attention is being drawn for utilitarian purposes without conveying any extra importance and with no implication of an alternate voice or mood, such as key words in a document abstract, product names in a review, actionable words in interactive text-driven software, or an article lede." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/b" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "u", description: { kind: "markdown", value: "The u element represents a span of text with an unarticulated, though explicitly rendered, non-textual annotation, such as labeling the text as being a proper name in Chinese text (a Chinese proper name mark), or labeling the text as being misspelt." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/u" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "mark", description: { kind: "markdown", value: "The mark element represents a run of text in one document marked or highlighted for reference purposes, due to its relevance in another context. When used in a quotation or other block of text referred to from the prose, it indicates a highlight that was not originally present but which has been added to bring the reader's attention to a part of the text that might not have been considered important by the original author when the block was originally written, but which is now under previously unexpected scrutiny. When used in the main prose of a document, it indicates a part of the document that has been highlighted due to its likely relevance to the user's current activity." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/mark" } ], browsers: [ "C7", "CA18", "E12", "FF4", "FFA4", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "bdi", description: { kind: "markdown", value: "The bdi element represents a span of text that is to be isolated from its surroundings for the purposes of bidirectional text formatting. [BIDI]" }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/bdi" } ], browsers: [ "C16", "CA18", "E79", "FF10", "FFA10", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "bdo", description: { kind: "markdown", value: "The bdo element represents explicit text directionality formatting control for its children. It allows authors to override the Unicode bidirectional algorithm by explicitly specifying a direction override. [BIDI]" }, attributes: [ { name: "dir", description: "The direction in which text should be rendered in this element's contents. Possible values are:\n\n* `ltr`: Indicates that the text should go in a left-to-right direction.\n* `rtl`: Indicates that the text should go in a right-to-left direction." } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/bdo" } ], browsers: [ "C15", "CA18", "E12", "FF10", "FFA10", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "span", description: { kind: "markdown", value: "The span element doesn't mean anything on its own, but can be useful when used together with the global attributes, e.g. class, lang, or dir. It represents its children." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/span" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "br", description: { kind: "markdown", value: "The br element represents a line break." }, void: true, attributes: [ { name: "clear", description: "Indicates where to begin the next line after the break.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/br" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "wbr", description: { kind: "markdown", value: "The wbr element represents a line break opportunity." }, void: true, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/wbr" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "ins", description: { kind: "markdown", value: "The ins element represents an addition to the document." }, attributes: [ { name: "cite", description: "This attribute defines the URI of a resource that explains the change, such as a link to meeting minutes or a ticket in a troubleshooting system.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "datetime", description: 'This attribute indicates the time and date of the change and must be a valid date with an optional time string. If the value cannot be parsed as a date with an optional time string, the element does not have an associated time stamp. For the format of the string without a time, see [Format of a valid date string](https://developer.mozilla.org/en-US/docs/Web/HTML/Date_and_time_formats#Format_of_a_valid_date_string "Certain HTML elements use date and/or time values. The formats of the strings that specify these are described in this article.") in [Date and time formats used in HTML](https://developer.mozilla.org/en-US/docs/Web/HTML/Date_and_time_formats "Certain HTML elements use date and/or time values. The formats of the strings that specify these are described in this article."). The format of the string if it includes both date and time is covered in [Format of a valid local date and time string](https://developer.mozilla.org/en-US/docs/Web/HTML/Date_and_time_formats#Format_of_a_valid_local_date_and_time_string "Certain HTML elements use date and/or time values. The formats of the strings that specify these are described in this article.") in [Date and time formats used in HTML](https://developer.mozilla.org/en-US/docs/Web/HTML/Date_and_time_formats "Certain HTML elements use date and/or time values. The formats of the strings that specify these are described in this article.").', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/ins" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "del", description: { kind: "markdown", value: "The del element represents a removal from the document." }, attributes: [ { name: "cite", description: { kind: "markdown", value: "A URI for a resource that explains the change (for example, meeting minutes)." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "datetime", description: { kind: "markdown", value: 'This attribute indicates the time and date of the change and must be a valid date string with an optional time. If the value cannot be parsed as a date with an optional time string, the element does not have an associated time stamp. For the format of the string without a time, see [Format of a valid date string](https://developer.mozilla.org/en-US/docs/Web/HTML/Date_and_time_formats#Format_of_a_valid_date_string "Certain HTML elements use date and/or time values. The formats of the strings that specify these are described in this article.") in [Date and time formats used in HTML](https://developer.mozilla.org/en-US/docs/Web/HTML/Date_and_time_formats "Certain HTML elements use date and/or time values. The formats of the strings that specify these are described in this article."). The format of the string if it includes both date and time is covered in [Format of a valid local date and time string](https://developer.mozilla.org/en-US/docs/Web/HTML/Date_and_time_formats#Format_of_a_valid_local_date_and_time_string "Certain HTML elements use date and/or time values. The formats of the strings that specify these are described in this article.") in [Date and time formats used in HTML](https://developer.mozilla.org/en-US/docs/Web/HTML/Date_and_time_formats "Certain HTML elements use date and/or time values. The formats of the strings that specify these are described in this article.").' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/del" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "picture", description: { kind: "markdown", value: "The picture element is a container which provides multiple sources to its contained img element to allow authors to declaratively control or give hints to the user agent about which image resource to use, based on the screen pixel density, viewport size, image format, and other factors. It represents its children." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/picture" } ], browsers: [ "C38", "CA38", "E13", "FF38", "FFA38", "S9.1", "SM9.3" ], status: { baseline: "high", baseline_low_date: "2016-03-21", baseline_high_date: "2018-09-21" } }, { name: "img", description: { kind: "markdown", value: "An img element represents an image." }, void: true, attributes: [ { name: "alt", description: { kind: "markdown", value: 'This attribute defines an alternative text description of the image.\n\n**Note:** Browsers do not always display the image referenced by the element. This is the case for non-graphical browsers (including those used by people with visual impairments), if the user chooses not to display images, or if the browser cannot display the image because it is invalid or an [unsupported type](#Supported_image_formats). In these cases, the browser may replace the image with the text defined in this element\'s `alt` attribute. You should, for these reasons and others, provide a useful value for `alt` whenever possible.\n\n**Note:** Omitting this attribute altogether indicates that the image is a key part of the content, and no textual equivalent is available. Setting this attribute to an empty string (`alt=""`) indicates that this image is _not_ a key part of the content (decorative), and that non-visual browsers may omit it from rendering.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "src", description: { kind: "markdown", value: "The image URL. This attribute is mandatory for the `<img>` element. On browsers supporting `srcset`, `src` is treated like a candidate image with a pixel density descriptor `1x` unless an image with this pixel density descriptor is already defined in `srcset,` or unless `srcset` contains '`w`' descriptors." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "srcset", description: { kind: "markdown", value: "A list of one or more strings separated by commas indicating a set of possible image sources for the user agent to use. Each string is composed of:\n\n1. a URL to an image,\n2. optionally, whitespace followed by one of:\n * A width descriptor, or a positive integer directly followed by '`w`'. The width descriptor is divided by the source size given in the `sizes` attribute to calculate the effective pixel density.\n * A pixel density descriptor, which is a positive floating point number directly followed by '`x`'.\n\nIf no descriptor is specified, the source is assigned the default descriptor: `1x`.\n\nIt is incorrect to mix width descriptors and pixel density descriptors in the same `srcset` attribute. Duplicate descriptors (for instance, two sources in the same `srcset` which are both described with '`2x`') are also invalid.\n\nThe user agent selects any one of the available sources at its discretion. This provides them with significant leeway to tailor their selection based on things like user preferences or bandwidth conditions. See our [Responsive images](https://developer.mozilla.org/en-US/docs/Learn/HTML/Multimedia_and_embedding/Responsive_images) tutorial for an example." }, browsers: [ "C34", "CA34", "E12", "FF38", "FFA38", "S8", "SM8" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "crossorigin", valueSet: "xo", description: { kind: "markdown", value: 'This enumerated attribute indicates if the fetching of the related image must be done using CORS or not. [CORS-enabled images](https://developer.mozilla.org/en-US/docs/CORS_Enabled_Image) can be reused in the [`<canvas>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/canvas "Use the HTML <canvas> element with either the canvas scripting API or the WebGL API to draw graphics and animations.") element without being "[tainted](https://developer.mozilla.org/en-US/docs/Web/HTML/CORS_enabled_image#What_is_a_tainted_canvas)." The allowed values are:\n`anonymous`\n\nA cross-origin request (i.e., with `Origin:` HTTP header) is performed, but no credential is sent (i.e., no cookie, X.509 certificate, or HTTP Basic authentication). If the server does not give credentials to the origin site (by not setting the [`Access-Control-Allow-Origin`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Access-Control-Allow-Origin "The Access-Control-Allow-Origin response header indicates whether the response can be shared with requesting code from the given origin.") HTTP header), the image will be tainted and its usage restricted.\n\n`use-credentials`\n\nA cross-origin request (i.e., with the [`Origin`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Origin "The Origin request header indicates where a fetch originates from. It doesn\'t include any path information, but only the server name. It is sent with CORS requests, as well as with POST requests. It is similar to the Referer header, but, unlike this header, it doesn\'t disclose the whole path.") HTTP header) performed along with credentials sent (i.e., a cookie, certificate, or HTTP Basic authentication). If the server does not give credentials to the origin site (through the `Access-Control-Allow-Credentials` HTTP header), the image will be tainted and its usage restricted.\n\nIf the attribute is not present, the resource is fetched without a CORS request (i.e., without sending the `Origin` HTTP header), preventing its non-tainted usage in [`<canvas>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/canvas "Use the HTML <canvas> element with either the canvas scripting API or the WebGL API to draw graphics and animations.") elements. If invalid, it is handled as if the `anonymous` value was used. See [CORS settings attributes](https://developer.mozilla.org/en-US/docs/HTML/CORS_settings_attributes) for additional information.' }, browsers: [ "C13", "CA18", "E12", "FF8", "FFA8", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "usemap", description: { kind: "markdown", value: 'The partial URL (starting with \'#\') of an [image map](https://developer.mozilla.org/en-US/docs/HTML/Element/map) associated with the element.\n\n**Note:** You cannot use this attribute if the `<img>` element is a descendant of an [`<a>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/a "The HTML <a> element (or anchor element) creates a hyperlink to other web pages, files, locations within the same page, email addresses, or any other URL.") or [`<button>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button "The HTML <button> element represents a clickable button, which can be used in forms or anywhere in a document that needs simple, standard button functionality.") element.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "ismap", valueSet: "v", description: { kind: "markdown", value: 'This Boolean attribute indicates that the image is part of a server-side map. If so, the precise coordinates of a click are sent to the server.\n\n**Note:** This attribute is allowed only if the `<img>` element is a descendant of an [`<a>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/a "The HTML <a> element (or anchor element) creates a hyperlink to other web pages, files, locations within the same page, email addresses, or any other URL.") element with a valid [`href`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/a#attr-href) attribute.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "width", description: { kind: "markdown", value: "The intrinsic width of the image in pixels." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "height", description: { kind: "markdown", value: "The intrinsic height of the image in pixels." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "decoding", valueSet: "decoding", description: { kind: "markdown", value: `Provides an image decoding hint to the browser. The allowed values are: \`sync\` Decode the image synchronously for atomic presentation with other content. \`async\` Decode the image asynchronously to reduce delay in presenting other content. \`auto\` Default mode, which indicates no preference for the decoding mode. The browser decides what is best for the user.` }, browsers: [ "C65", "CA65", "E79", "FF63", "FFA63", "S11.1", "SM11.3" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "loading", valueSet: "loading", description: { kind: "markdown", value: "Indicates how the browser should load the image." }, browsers: [ "C77", "CA77", "E79", "FF75", "FFA79", "S15.4", "SM15.4" ], status: { baseline: "high", baseline_low_date: "2022-03-14", baseline_high_date: "2024-09-14" } }, { name: "fetchpriority", valueSet: "fetchpriority", description: { kind: "markdown", value: "Provides a hint of the relative priority to use when fetching the image." }, browsers: [ "C101", "CA101", "E101", "FF132", "FFA132", "S17.2", "SM17.2" ], status: { baseline: "low", baseline_low_date: "2024-10-29" } }, { name: "referrerpolicy", valueSet: "referrerpolicy", description: { kind: "markdown", value: "A string indicating which referrer to use when fetching the resource:\n\n* `no-referrer:` The [`Referer`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Referer \"The Referer request header contains the address of the previous web page from which a link to the currently requested page was followed. The Referer header allows servers to identify where people are visiting them from and may use that data for analytics, logging, or optimized caching, for example.\") header will not be sent.\n* `no-referrer-when-downgrade:` No `Referer` header will be sent when navigating to an origin without TLS (HTTPS). This is a user agent’s default behavior if no policy is otherwise specified.\n* `origin:` The `Referer` header will include the page of origin's scheme, the host, and the port.\n* `origin-when-cross-origin:` Navigating to other origins will limit the included referral data to the scheme, the host and the port, while navigating from the same origin will include the referrer's full path.\n* `unsafe-url:` The `Referer` header will include the origin and the path, but not the fragment, password, or username. This case is unsafe because it can leak origins and paths from TLS-protected resources to insecure origins." }, browsers: [ "C51", "CA51", "E79", "FF50", "FFA50", "S14", "SM14" ], status: { baseline: "high", baseline_low_date: "2020-09-16", baseline_high_date: "2023-03-16" } }, { name: "sizes", description: { kind: "markdown", value: "A list of one or more strings separated by commas indicating a set of source sizes. Each source size consists of:\n\n1. a media condition. This must be omitted for the last item.\n2. a source size value.\n\nSource size values specify the intended display size of the image. User agents use the current source size to select one of the sources supplied by the `srcset` attribute, when those sources are described using width ('`w`') descriptors. The selected source size affects the intrinsic size of the image (the image’s display size if no CSS styling is applied). If the `srcset` attribute is absent, or contains no values with a width (`w`) descriptor, then the `sizes` attribute has no effect." }, browsers: [ "C38", "CA38", "E12", "FF38", "FFA38", "S9.1", "SM9.3" ], status: { baseline: "high", baseline_low_date: "2016-03-21", baseline_high_date: "2018-09-21" } }, { name: "importance", description: "Indicates the relative importance of the resource. Priority hints are delegated using the values:" }, { name: "importance", description: "`auto`: Indicates **no preference**. The browser may use its own heuristics to decide the priority of the image.\n\n`high`: Indicates to the browser that the image is of **high** priority.\n\n`low`: Indicates to the browser that the image is of **low** priority." }, { name: "intrinsicsize", description: "This attribute tells the browser to ignore the actual intrinsic size of the image and pretend it’s the size specified in the attribute. Specifically, the image would raster at these dimensions and `naturalWidth`/`naturalHeight` on images would return the values specified in this attribute. [Explainer](https://github.com/ojanvafai/intrinsicsize-attribute), [examples](https://googlechrome.github.io/samples/intrinsic-size/index.html)" } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/img" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "iframe", description: { kind: "markdown", value: "The iframe element represents a nested browsing context." }, attributes: [ { name: "src", description: { kind: "markdown", value: 'The URL of the page to embed. Use a value of `about:blank` to embed an empty page that conforms to the [same-origin policy](https://developer.mozilla.org/en-US/docs/Web/Security/Same-origin_policy#Inherited_origins). Also note that programatically removing an `<iframe>`\'s src attribute (e.g. via [`Element.removeAttribute()`](https://developer.mozilla.org/en-US/docs/Web/API/Element/removeAttribute "The Element method removeAttribute() removes the attribute with the specified name from the element.")) causes `about:blank` to be loaded in the frame in Firefox (from version 65), Chromium-based browsers, and Safari/iOS.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "srcdoc", description: { kind: "markdown", value: "Inline HTML to embed, overriding the `src` attribute. If a browser does not support the `srcdoc` attribute, it will fall back to the URL in the `src` attribute." }, browsers: [ "C20", "CA25", "E79", "FF25", "FFA25", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "name", description: { kind: "markdown", value: 'A targetable name for the embedded browsing context. This can be used in the `target` attribute of the [`<a>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/a "The HTML <a> element (or anchor element) creates a hyperlink to other web pages, files, locations within the same page, email addresses, or any other URL."), [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server."), or [`<base>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/base "The HTML <base> element specifies the base URL to use for all relative URLs contained within a document. There can be only one <base> element in a document.") elements; the `formtarget` attribute of the [`<input>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input "The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.") or [`<button>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button "The HTML <button> element represents a clickable button, which can be used in forms or anywhere in a document that needs simple, standard button functionality.") elements; or the `windowName` parameter in the [`window.open()`](https://developer.mozilla.org/en-US/docs/Web/API/Window/open "The Window interface\'s open() method loads the specified resource into the browsing context (window, <iframe> or tab) with the specified name. If the name doesn\'t exist, then a new window is opened and the specified resource is loaded into its browsing context.") method.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "sandbox", valueSet: "sb", description: { kind: "markdown", value: 'Applies extra restrictions to the content in the frame. The value of the attribute can either be empty to apply all restrictions, or space-separated tokens to lift particular restrictions:\n\n* `allow-forms`: Allows the resource to submit forms. If this keyword is not used, form submission is blocked.\n* `allow-modals`: Lets the resource [open modal windows](https://html.spec.whatwg.org/multipage/origin.html#sandboxed-modals-flag).\n* `allow-orientation-lock`: Lets the resource [lock the screen orientation](https://developer.mozilla.org/en-US/docs/Web/API/Screen/lockOrientation).\n* `allow-pointer-lock`: Lets the resource use the [Pointer Lock API](https://developer.mozilla.org/en-US/docs/WebAPI/Pointer_Lock).\n* `allow-popups`: Allows popups (such as `window.open()`, `target="_blank"`, or `showModalDialog()`). If this keyword is not used, the popup will silently fail to open.\n* `allow-popups-to-escape-sandbox`: Lets the sandboxed document open new windows without those windows inheriting the sandboxing. For example, this can safely sandbox an advertisement without forcing the same restrictions upon the page the ad links to.\n* `allow-presentation`: Lets the resource start a [presentation session](https://developer.mozilla.org/en-US/docs/Web/API/PresentationRequest).\n* `allow-same-origin`: If this token is not used, the resource is treated as being from a special origin that always fails the [same-origin policy](https://developer.mozilla.org/en-US/docs/Glossary/same-origin_policy "same-origin policy: The same-origin policy is a critical security mechanism that restricts how a document or script loaded from one origin can interact with a resource from another origin.").\n* `allow-scripts`: Lets the resource run scripts (but not create popup windows).\n* `allow-storage-access-by-user-activation` : Lets the resource request access to the parent\'s storage capabilities with the [Storage Access API](https://developer.mozilla.org/en-US/docs/Web/API/Storage_Access_API).\n* `allow-top-navigation`: Lets the resource navigate the top-level browsing context (the one named `_top`).\n* `allow-top-navigation-by-user-activation`: Lets the resource navigate the top-level browsing context, but only if initiated by a user gesture.\n\n**Notes about sandboxing:**\n\n* When the embedded document has the same origin as the embedding page, it is **strongly discouraged** to use both `allow-scripts` and `allow-same-origin`, as that lets the embedded document remove the `sandbox` attribute — making it no more secure than not using the `sandbox` attribute at all.\n* Sandboxing is useless if the attacker can display content outside a sandboxed `iframe` — such as if the viewer opens the frame in a new tab. Such content should be also served from a _separate origin_ to limit potential damage.\n* The `sandbox` attribute is unsupported in Internet Explorer 9 and earlier.' }, browsers: [ "C5", "CA18", "E12", "FF17", "FFA17", "S5", "SM4" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "seamless", valueSet: "v" }, { name: "allowfullscreen", valueSet: "v", description: { kind: "markdown", value: 'Set to `true` if the `<iframe>` can activate fullscreen mode by calling the [`requestFullscreen()`](https://developer.mozilla.org/en-US/docs/Web/API/Element/requestFullscreen "The Element.requestFullscreen() method issues an asynchronous request to make the element be displayed in full-screen mode.") method.\nThis attribute is considered a legacy attribute and redefined as `allow="fullscreen"`.' }, browsers: [ "C38", "CA38", "E12", "FF18", "FFA18", "S10.1" ], status: { baseline: false } }, { name: "width", description: { kind: "markdown", value: "The width of the frame in CSS pixels. Default is `300`." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "height", description: { kind: "markdown", value: "The height of the frame in CSS pixels. Default is `150`." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "allow", description: "Specifies a [feature policy](https://developer.mozilla.org/en-US/docs/Web/HTTP/Feature_Policy) for the `<iframe>`.", browsers: [ "C60", "CA60", "E79", "FF74", "FFA79", "S11.1", "SM11.3" ], status: { baseline: "high", baseline_low_date: "2020-07-28", baseline_high_date: "2023-01-28" } }, { name: "allowpaymentrequest", description: "Set to `true` if a cross-origin `<iframe>` should be allowed to invoke the [Payment Request API](https://developer.mozilla.org/en-US/docs/Web/API/Payment_Request_API).", browsers: [ "C60", "CA60", "E79" ], status: { baseline: false } }, { name: "allowpaymentrequest", description: 'This attribute is considered a legacy attribute and redefined as `allow="payment"`.', browsers: [ "C60", "CA60", "E79" ], status: { baseline: false } }, { name: "csp", description: 'A [Content Security Policy](https://developer.mozilla.org/en-US/docs/Web/HTTP/CSP) enforced for the embedded resource. See [`HTMLIFrameElement.csp`](https://developer.mozilla.org/en-US/docs/Web/API/HTMLIFrameElement/csp "The csp property of the HTMLIFrameElement interface specifies the Content Security Policy that an embedded document must agree to enforce upon itself.") for details.', browsers: [ "C61", "CA61", "E79" ], status: { baseline: false } }, { name: "importance", description: `The download priority of the resource in the \`<iframe>\`'s \`src\` attribute. Allowed values: \`auto\` (default) No preference. The browser uses its own heuristics to decide the priority of the resource. \`high\` The resource should be downloaded before other lower-priority page resources. \`low\` The resource should be downloaded after other higher-priority page resources.` }, { name: "referrerpolicy", description: 'Indicates which [referrer](https://developer.mozilla.org/en-US/docs/Web/API/Document/referrer) to send when fetching the frame\'s resource:\n\n* `no-referrer`: The [`Referer`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Referer "The Referer request header contains the address of the previous web page from which a link to the currently requested page was followed. The Referer header allows servers to identify where people are visiting them from and may use that data for analytics, logging, or optimized caching, for example.") header will not be sent.\n* `no-referrer-when-downgrade` (default): The [`Referer`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Referer "The Referer request header contains the address of the previous web page from which a link to the currently requested page was followed. The Referer header allows servers to identify where people are visiting them from and may use that data for analytics, logging, or optimized caching, for example.") header will not be sent to [origin](https://developer.mozilla.org/en-US/docs/Glossary/origin "origin: Web content\'s origin is defined by the scheme (protocol), host (domain), and port of the URL used to access it. Two objects have the same origin only when the scheme, host, and port all match.")s without [TLS](https://developer.mozilla.org/en-US/docs/Glossary/TLS "TLS: Transport Layer Security (TLS), previously known as Secure Sockets Layer (SSL), is a protocol used by applications to communicate securely across a network, preventing tampering with and eavesdropping on email, web browsing, messaging, and other protocols.") ([HTTPS](https://developer.mozilla.org/en-US/docs/Glossary/HTTPS "HTTPS: HTTPS (HTTP Secure) is an encrypted version of the HTTP protocol. It usually uses SSL or TLS to encrypt all communication between a client and a server. This secure connection allows clients to safely exchange sensitive data with a server, for example for banking activities or online shopping.")).\n* `origin`: The sent referrer will be limited to the origin of the referring page: its [scheme](https://developer.mozilla.org/en-US/docs/Archive/Mozilla/URIScheme), [host](https://developer.mozilla.org/en-US/docs/Glossary/host "host: A host is a device connected to the Internet (or a local network). Some hosts called servers offer additional services like serving webpages or storing files and emails."), and [port](https://developer.mozilla.org/en-US/docs/Glossary/port "port: For a computer connected to a network with an IP address, a port is a communication endpoint. Ports are designated by numbers, and below 1024 each port is associated by default with a specific protocol.").\n* `origin-when-cross-origin`: The referrer sent to other origins will be limited to the scheme, the host, and the port. Navigations on the same origin will still include the path.\n* `same-origin`: A referrer will be sent for [same origin](https://developer.mozilla.org/en-US/docs/Glossary/Same-origin_policy "same origin: The same-origin policy is a critical security mechanism that restricts how a document or script loaded from one origin can interact with a resource from another origin."), but cross-origin requests will contain no referrer information.\n* `strict-origin`: Only send the origin of the document as the referrer when the protocol security level stays the same (HTTPS→HTTPS), but don\'t send it to a less secure destination (HTTPS→HTTP).\n* `strict-origin-when-cross-origin`: Send a full URL when performing a same-origin request, only send the origin when the protocol security level stays the same (HTTPS→HTTPS), and send no header to a less secure destination (HTTPS→HTTP).\n* `unsafe-url`: The referrer will include the origin _and_ the path (but not the [fragment](https://developer.mozilla.org/en-US/docs/Web/API/HTMLHyperlinkElementUtils/hash), [password](https://developer.mozilla.org/en-US/docs/Web/API/HTMLHyperlinkElementUtils/password), or [username](https://developer.mozilla.org/en-US/docs/Web/API/HTMLHyperlinkElementUtils/username)). **This value is unsafe**, because it leaks origins and paths from TLS-protected resources to insecure origins.', browsers: [ "C51", "CA51", "E79", "FF50", "FFA50", "S14", "SM14" ], status: { baseline: "high", baseline_low_date: "2020-09-16", baseline_high_date: "2023-03-16" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/iframe" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "embed", description: { kind: "markdown", value: "The embed element provides an integration point for an external (typically non-HTML) application or interactive content." }, void: true, attributes: [ { name: "src", description: { kind: "markdown", value: "The URL of the resource being embedded." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "type", description: { kind: "markdown", value: "The MIME type to use to select the plug-in to instantiate." }, browsers: [ "C1", "CA18", "E79", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "width", description: { kind: "markdown", value: "The displayed width of the resource, in [CSS pixels](https://drafts.csswg.org/css-values/#px). This must be an absolute value; percentages are _not_ allowed." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "height", description: { kind: "markdown", value: "The displayed height of the resource, in [CSS pixels](https://drafts.csswg.org/css-values/#px). This must be an absolute value; percentages are _not_ allowed." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/embed" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "object", description: { kind: "markdown", value: "The object element can represent an external resource, which, depending on the type of the resource, will either be treated as an image, as a nested browsing context, or as an external resource to be processed by a plugin." }, attributes: [ { name: "data", description: { kind: "markdown", value: "The address of the resource as a valid URL. At least one of **data** and **type** must be defined." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "type", description: { kind: "markdown", value: "The [content type](https://developer.mozilla.org/en-US/docs/Glossary/Content_type) of the resource specified by **data**. At least one of **data** and **type** must be defined." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "typemustmatch", valueSet: "v", description: { kind: "markdown", value: "This Boolean attribute indicates if the **type** attribute and the actual [content type](https://developer.mozilla.org/en-US/docs/Glossary/Content_type) of the resource must match to be used." } }, { name: "name", description: { kind: "markdown", value: "The name of valid browsing context (HTML5), or the name of the control (HTML 4)." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "usemap", description: { kind: "markdown", value: "A hash-name reference to a [`<map>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/map \"The HTML <map> element is used with <area> elements to define an image map (a clickable link area).\") element; that is a '#' followed by the value of a [`name`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/map#attr-name) of a map element." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } }, { name: "form", description: { kind: "markdown", value: 'The form element, if any, that the object element is associated with (its _form owner_). The value of the attribute must be an ID of a [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server.") element in the same document.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "width", description: { kind: "markdown", value: "The width of the display resource, in [CSS pixels](https://drafts.csswg.org/css-values/#px). -- (Absolute values only. [NO percentages](https://html.spec.whatwg.org/multipage/embedded-content.html#dimension-attributes))" }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "height", description: { kind: "markdown", value: "The height of the displayed resource, in [CSS pixels](https://drafts.csswg.org/css-values/#px). -- (Absolute values only. [NO percentages](https://html.spec.whatwg.org/multipage/embedded-content.html#dimension-attributes))" }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "archive", description: "A space-separated list of URIs for archives of resources for the object.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } }, { name: "border", description: "The width of a border around the control, in pixels.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } }, { name: "classid", description: "The URI of the object's implementation. It can be used together with, or in place of, the **data** attribute.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } }, { name: "codebase", description: "The base path used to resolve relative URIs specified by **classid**, **data**, or **archive**. If not specified, the default is the base URI of the current document.", browsers: [], status: { baseline: false } }, { name: "codetype", description: "The content type of the data specified by **classid**.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } }, { name: "declare", description: "The presence of this Boolean attribute makes this element a declaration only. The object must be instantiated by a subsequent `<object>` element. In HTML5, repeat the <object> element completely each that that the resource is reused.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } }, { name: "standby", description: "A message that the browser can show while loading the object's implementation and data.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } }, { name: "tabindex", description: "The position of the element in the tabbing navigation order for the current document." } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/object" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "param", description: { kind: "markdown", value: "The param element defines parameters for plugins invoked by object elements. It does not represent anything on its own." }, void: true, attributes: [ { name: "name", description: { kind: "markdown", value: "Name of the parameter." } }, { name: "value", description: { kind: "markdown", value: "Specifies the value of the parameter." } }, { name: "type", description: 'Only used if the `valuetype` is set to "ref". Specifies the MIME type of values found at the URI specified by value.' }, { name: "valuetype", description: `Specifies the type of the \`value\` attribute. Possible values are: * data: Default value. The value is passed to the object's implementation as a string. * ref: The value is a URI to a resource where run-time values are stored. * object: An ID of another [\`<object>\`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/object "The HTML <object> element represents an external resource, which can be treated as an image, a nested browsing context, or a resource to be handled by a plugin.") in the same document.` } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/param" } ] }, { name: "video", description: { kind: "markdown", value: "A video element is used for playing videos or movies, and audio files with captions." }, attributes: [ { name: "src", browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "crossorigin", valueSet: "xo", browsers: [ "C33", "CA33", "E18", "FF74", "FFA79", "S10", "SM10" ], status: { baseline: "high", baseline_low_date: "2020-07-28", baseline_high_date: "2023-01-28" } }, { name: "poster", browsers: [ "C3", "CA18", "E12", "FF3.6", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "preload", valueSet: "pl", browsers: [ "C3", "CA18", "E12", "FF4", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "autoplay", valueSet: "v", description: { kind: "markdown", value: 'A Boolean attribute; if specified, the video automatically begins to play back as soon as it can do so without stopping to finish loading the data.\n**Note**: Sites that automatically play audio (or video with an audio track) can be an unpleasant experience for users, so it should be avoided when possible. If you must offer autoplay functionality, you should make it opt-in (requiring a user to specifically enable it). However, this can be useful when creating media elements whose source will be set at a later time, under user control.\n\nTo disable video autoplay, `autoplay="false"` will not work; the video will autoplay if the attribute is there in the `<video>` tag at all. To remove autoplay the attribute needs to be removed altogether.\n\nIn some browsers (e.g. Chrome 70.0) autoplay is not working if no `muted` attribute is present.' }, browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM10" ], status: { baseline: "high", baseline_low_date: "2016-09-13", baseline_high_date: "2019-03-13" } }, { name: "mediagroup" }, { name: "loop", valueSet: "v", browsers: [ "C3", "CA18", "E12", "FF11", "FFA14", "S3.1", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "muted", valueSet: "v", browsers: [ "C30", "CA30", "E12", "FF11", "FFA14", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "controls", valueSet: "v", browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "width", browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "height", browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/video" } ], browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "audio", description: { kind: "markdown", value: "An audio element represents a sound or audio stream." }, attributes: [ { name: "src", description: { kind: "markdown", value: 'The URL of the audio to embed. This is subject to [HTTP access controls](https://developer.mozilla.org/en-US/docs/HTTP_access_control). This is optional; you may instead use the [`<source>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/source "The HTML <source> element specifies multiple media resources for the <picture>, the <audio> element, or the <video> element.") element within the audio block to specify the audio to embed.' }, browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "crossorigin", valueSet: "xo", description: { kind: "markdown", value: 'This enumerated attribute indicates whether to use CORS to fetch the related image. [CORS-enabled resources](https://developer.mozilla.org/en-US/docs/CORS_Enabled_Image) can be reused in the [`<canvas>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/canvas "Use the HTML <canvas> element with either the canvas scripting API or the WebGL API to draw graphics and animations.") element without being _tainted_. The allowed values are:\n\nanonymous\n\nSends a cross-origin request without a credential. In other words, it sends the `Origin:` HTTP header without a cookie, X.509 certificate, or performing HTTP Basic authentication. If the server does not give credentials to the origin site (by not setting the `Access-Control-Allow-Origin:` HTTP header), the image will be _tainted_, and its usage restricted.\n\nuse-credentials\n\nSends a cross-origin request with a credential. In other words, it sends the `Origin:` HTTP header with a cookie, a certificate, or performing HTTP Basic authentication. If the server does not give credentials to the origin site (through `Access-Control-Allow-Credentials:` HTTP header), the image will be _tainted_ and its usage restricted.\n\nWhen not present, the resource is fetched without a CORS request (i.e. without sending the `Origin:` HTTP header), preventing its non-tainted used in [`<canvas>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/canvas "Use the HTML <canvas> element with either the canvas scripting API or the WebGL API to draw graphics and animations.") elements. If invalid, it is handled as if the enumerated keyword **anonymous** was used. See [CORS settings attributes](https://developer.mozilla.org/en-US/docs/HTML/CORS_settings_attributes) for additional information.' }, browsers: [ "C33", "CA33", "E18", "FF74", "FFA79", "S10", "SM10" ], status: { baseline: "high", baseline_low_date: "2020-07-28", baseline_high_date: "2023-01-28" } }, { name: "preload", valueSet: "pl", description: { kind: "markdown", value: "This enumerated attribute is intended to provide a hint to the browser about what the author thinks will lead to the best user experience. It may have one of the following values:\n\n* `none`: Indicates that the audio should not be preloaded.\n* `metadata`: Indicates that only audio metadata (e.g. length) is fetched.\n* `auto`: Indicates that the whole audio file can be downloaded, even if the user is not expected to use it.\n* _empty string_: A synonym of the `auto` value.\n\nIf not set, `preload`'s default value is browser-defined (i.e. each browser may have its own default value). The spec advises it to be set to `metadata`.\n\n**Usage notes:**\n\n* The `autoplay` attribute has precedence over `preload`. If `autoplay` is specified, the browser would obviously need to start downloading the audio for playback.\n* The browser is not forced by the specification to follow the value of this attribute; it is a mere hint." }, browsers: [ "C3", "CA18", "E12", "FF4", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "autoplay", valueSet: "v", description: { kind: "markdown", value: `A Boolean attribute: if specified, the audio will automatically begin playback as soon as it can do so, without waiting for the entire audio file to finish downloading. **Note**: Sites that automatically play audio (or videos with an audio track) can be an unpleasant experience for users, so should be avoided when possible. If you must offer autoplay functionality, you should make it opt-in (requiring a user to specifically enable it). However, this can be useful when creating media elements whose source will be set at a later time, under user control.` } }, { name: "mediagroup" }, { name: "loop", valueSet: "v", description: { kind: "markdown", value: "A Boolean attribute: if specified, the audio player will automatically seek back to the start upon reaching the end of the audio." }, browsers: [ "C3", "CA18", "E12", "FF11", "FFA14", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "muted", valueSet: "v", description: { kind: "markdown", value: "A Boolean attribute that indicates whether the audio will be initially silenced. Its default value is `false`." }, browsers: [ "C15", "CA18", "E18", "FF11", "FFA14", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "≤2018-10-02", baseline_high_date: "≤2021-04-02" } }, { name: "controls", valueSet: "v", description: { kind: "markdown", value: "If this attribute is present, the browser will offer controls to allow the user to control audio playback, including volume, seeking, and pause/resume playback." }, browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/audio" } ], browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "source", description: { kind: "markdown", value: "The source element allows authors to specify multiple alternative media resources for media elements. It does not represent anything on its own." }, void: true, attributes: [ { name: "src", description: { kind: "markdown", value: 'Required for [`<audio>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/audio "The HTML <audio> element is used to embed sound content in documents. It may contain one or more audio sources, represented using the src attribute or the <source> element: the browser will choose the most suitable one. It can also be the destination for streamed media, using a MediaStream.") and [`<video>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/video "The HTML Video element (<video>) embeds a media player which supports video playback into the document."), address of the media resource. The value of this attribute is ignored when the `<source>` element is placed inside a [`<picture>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/picture "The HTML <picture> element contains zero or more <source> elements and one <img> element to provide versions of an image for different display/device scenarios.") element.' }, browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "type", description: { kind: "markdown", value: "The MIME-type of the resource, optionally with a `codecs` parameter. See [RFC 4281](https://tools.ietf.org/html/rfc4281) for information about how to specify codecs." }, browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "sizes", description: 'Is a list of source sizes that describes the final rendered width of the image represented by the source. Each source size consists of a comma-separated list of media condition-length pairs. This information is used by the browser to determine, before laying the page out, which image defined in [`srcset`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/source#attr-srcset) to use. \nThe `sizes` attribute has an effect only when the [`<source>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/source "The HTML <source> element specifies multiple media resources for the <picture>, the <audio> element, or the <video> element.") element is the direct child of a [`<picture>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/picture "The HTML <picture> element contains zero or more <source> elements and one <img> element to provide versions of an image for different display/device scenarios.") element.', browsers: [ "C34", "CA34", "E13", "FF38", "FFA38", "S9.1", "SM9.3" ], status: { baseline: "high", baseline_low_date: "2016-03-21", baseline_high_date: "2018-09-21" } }, { name: "srcset", description: "A list of one or more strings separated by commas indicating a set of possible images represented by the source for the browser to use. Each string is composed of:\n\n1. one URL to an image,\n2. a width descriptor, that is a positive integer directly followed by `'w'`. The default value, if missing, is the infinity.\n3. a pixel density descriptor, that is a positive floating number directly followed by `'x'`. The default value, if missing, is `1x`.\n\nEach string in the list must have at least a width descriptor or a pixel density descriptor to be valid. Among the list, there must be only one string containing the same tuple of width descriptor and pixel density descriptor. \nThe browser chooses the most adequate image to display at a given point of time. \nThe `srcset` attribute has an effect only when the [`<source>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/source \"The HTML <source> element specifies multiple media resources for the <picture>, the <audio> element, or the <video> element.\") element is the direct child of a [`<picture>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/picture \"The HTML <picture> element contains zero or more <source> elements and one <img> element to provide versions of an image for different display/device scenarios.\") element.", browsers: [ "C34", "CA34", "E13", "FF38", "FFA38", "S9.1", "SM9.3" ], status: { baseline: "high", baseline_low_date: "2016-03-21", baseline_high_date: "2018-09-21" } }, { name: "media", description: '[Media query](https://developer.mozilla.org/en-US/docs/CSS/Media_queries) of the resource\'s intended media; this should be used only in a [`<picture>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/picture "The HTML <picture> element contains zero or more <source> elements and one <img> element to provide versions of an image for different display/device scenarios.") element.', browsers: [ "C3", "CA18", "E12", "FF15", "FFA15", "S3.1", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/source" } ], browsers: [ "C3", "CA18", "E12", "FF3.5", "FFA4", "S3.1", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "track", description: { kind: "markdown", value: "The track element allows authors to specify explicit external timed text tracks for media elements. It does not represent anything on its own." }, void: true, attributes: [ { name: "default", valueSet: "v", description: { kind: "markdown", value: "This attribute indicates that the track should be enabled unless the user's preferences indicate that another track is more appropriate. This may only be used on one `track` element per media element." }, browsers: [ "C23", "CA25", "E12", "FF31", "FFA31", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "kind", valueSet: "tk", description: { kind: "markdown", value: "How the text track is meant to be used. If omitted the default kind is `subtitles`. If the attribute is not present, it will use the `subtitles`. If the attribute contains an invalid value, it will use `metadata`. (Versions of Chrome earlier than 52 treated an invalid value as `subtitles`.) The following keywords are allowed:\n\n* `subtitles`\n * Subtitles provide translation of content that cannot be understood by the viewer. For example dialogue or text that is not English in an English language film.\n * Subtitles may contain additional content, usually extra background information. For example the text at the beginning of the Star Wars films, or the date, time, and location of a scene.\n* `captions`\n * Closed captions provide a transcription and possibly a translation of audio.\n * It may include important non-verbal information such as music cues or sound effects. It may indicate the cue's source (e.g. music, text, character).\n * Suitable for users who are deaf or when the sound is muted.\n* `descriptions`\n * Textual description of the video content.\n * Suitable for users who are blind or where the video cannot be seen.\n* `chapters`\n * Chapter titles are intended to be used when the user is navigating the media resource.\n* `metadata`\n * Tracks used by scripts. Not visible to the user." }, browsers: [ "C23", "CA25", "E12", "FF31", "FFA31", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "label", description: { kind: "markdown", value: "A user-readable title of the text track which is used by the browser when listing available text tracks." }, browsers: [ "C23", "CA25", "E12", "FF31", "FFA31", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "src", description: { kind: "markdown", value: 'Address of the track (`.vtt` file). Must be a valid URL. This attribute must be specified and its URL value must have the same origin as the document — unless the [`<audio>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/audio "The HTML <audio> element is used to embed sound content in documents. It may contain one or more audio sources, represented using the src attribute or the <source> element: the browser will choose the most suitable one. It can also be the destination for streamed media, using a MediaStream.") or [`<video>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/video "The HTML Video element (<video>) embeds a media player which supports video playback into the document.") parent element of the `track` element has a [`crossorigin`](https://developer.mozilla.org/en-US/docs/Web/HTML/CORS_settings_attributes) attribute.' }, browsers: [ "C23", "CA25", "E12", "FF50", "FFA50", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2016-11-15", baseline_high_date: "2019-05-15" } }, { name: "srclang", description: { kind: "markdown", value: "Language of the track text data. It must be a valid [BCP 47](https://r12a.github.io/app-subtags/) language tag. If the `kind` attribute is set to `subtitles,` then `srclang` must be defined." }, browsers: [ "C23", "CA25", "E12", "FF31", "FFA31", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/track" } ], browsers: [ "C23", "CA25", "E12", "FF31", "FFA31", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "map", description: { kind: "markdown", value: "The map element, in conjunction with an img element and any area element descendants, defines an image map. The element represents its children." }, attributes: [ { name: "name", description: { kind: "markdown", value: "The name attribute gives the map a name so that it can be referenced. The attribute must be present and must have a non-empty value with no space characters. The value of the name attribute must not be a compatibility-caseless match for the value of the name attribute of another map element in the same document. If the id attribute is also specified, both attributes must have the same value." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/map" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "area", description: { kind: "markdown", value: "The area element represents either a hyperlink with some text and a corresponding area on an image map, or a dead area on an image map." }, void: true, attributes: [ { name: "alt", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "coords", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "shape", valueSet: "sh", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "href", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "target", valueSet: "target", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "download", browsers: [ "C54", "CA54", "E12", "FF20", "FFA20", "S10.1", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2017-03-27", baseline_high_date: "2019-09-27" } }, { name: "ping", browsers: [ "C12", "CA18", "E17", "S6", "SM6" ], status: { baseline: false } }, { name: "rel", browsers: [ "C16", "CA18", "E12", "FF30", "FFA30", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "hreflang" }, { name: "type" }, { name: "accesskey", description: "Specifies a keyboard navigation accelerator for the element. Pressing ALT or a similar key in association with the specified character selects the form control correlated with that key sequence. Page designers are forewarned to avoid key sequences already bound to browsers. This attribute is global since HTML5." } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/area" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "table", description: { kind: "markdown", value: "The table element represents data with more than one dimension, in the form of a table." }, attributes: [ { name: "border", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: false } }, { name: "align", description: `This enumerated attribute indicates how the table must be aligned inside the containing document. It may have the following values: * left: the table is displayed on the left side of the document; * center: the table is displayed in the center of the document; * right: the table is displayed on the right side of the document. **Usage Note** * **Do not use this attribute**, as it has been deprecated. The [\`<table>\`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/table "The HTML <table> element represents tabular data — that is, information presented in a two-dimensional table comprised of rows and columns of cells containing data.") element should be styled using [CSS](https://developer.mozilla.org/en-US/docs/CSS). Set [\`margin-left\`](https://developer.mozilla.org/en-US/docs/Web/CSS/margin-left "The margin-left CSS property sets the margin area on the left side of an element. A positive value places it farther from its neighbors, while a negative value places it closer.") and [\`margin-right\`](https://developer.mozilla.org/en-US/docs/Web/CSS/margin-right "The margin-right CSS property sets the margin area on the right side of an element. A positive value places it farther from its neighbors, while a negative value places it closer.") to \`auto\` or [\`margin\`](https://developer.mozilla.org/en-US/docs/Web/CSS/margin "The margin CSS property sets the margin area on all four sides of an element. It is a shorthand for margin-top, margin-right, margin-bottom, and margin-left.") to \`0 auto\` to achieve an effect that is similar to the align attribute. * Prior to Firefox 4, Firefox also supported the \`middle\`, \`absmiddle\`, and \`abscenter\` values as synonyms of \`center\`, in quirks mode only.`, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/table" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "caption", description: { kind: "markdown", value: "The caption element represents the title of the table that is its parent, if it has a parent and that is a table element." }, attributes: [ { name: "align", description: `This enumerated attribute indicates how the caption must be aligned with respect to the table. It may have one of the following values: \`left\` The caption is displayed to the left of the table. \`top\` The caption is displayed above the table. \`right\` The caption is displayed to the right of the table. \`bottom\` The caption is displayed below the table. **Usage note:** Do not use this attribute, as it has been deprecated. The [\`<caption>\`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/caption "The HTML Table Caption element (<caption>) specifies the caption (or title) of a table, and if used is always the first child of a <table>.") element should be styled using the [CSS](https://developer.mozilla.org/en-US/docs/CSS) properties [\`caption-side\`](https://developer.mozilla.org/en-US/docs/Web/CSS/caption-side "The caption-side CSS property puts the content of a table's <caption> on the specified side. The values are relative to the writing-mode of the table.") and [\`text-align\`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.").`, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/caption" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "colgroup", description: { kind: "markdown", value: "The colgroup element represents a group of one or more columns in the table that is its parent, if it has a parent and that is a table element." }, attributes: [ { name: "span", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "align", description: 'This enumerated attribute specifies how horizontal alignment of each column cell content will be handled. Possible values are:\n\n* `left`, aligning the content to the left of the cell\n* `center`, centering the content in the cell\n* `right`, aligning the content to the right of the cell\n* `justify`, inserting spaces into the textual content so that the content is justified in the cell\n* `char`, aligning the textual content on a special character with a minimal offset, defined by the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/col#attr-char) and [`charoff`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/col#attr-charoff) attributes Unimplemented (see [bug 2212](https://bugzilla.mozilla.org/show_bug.cgi?id=2212 "character alignment not implemented (align=char, charoff=, text-align:<string>)")).\n\nIf this attribute is not set, the `left` value is assumed. The descendant [`<col>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/col "The HTML <col> element defines a column within a table and is used for defining common semantics on all common cells. It is generally found within a <colgroup> element.") elements may override this value using their own [`align`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/col#attr-align) attribute.\n\n**Note:** Do not use this attribute as it is obsolete (not supported) in the latest standard.\n\n* To achieve the same effect as the `left`, `center`, `right` or `justify` values:\n * Do not try to set the [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property on a selector giving a [`<colgroup>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/colgroup "The HTML <colgroup> element defines a group of columns within a table.") element. Because [`<td>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/td "The HTML <td> element defines a cell of a table that contains data. It participates in the table model.") elements are not descendant of the [`<colgroup>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/colgroup "The HTML <colgroup> element defines a group of columns within a table.") element, they won\'t inherit it.\n * If the table doesn\'t use a [`colspan`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/td#attr-colspan) attribute, use one `td:nth-child(an+b)` CSS selector per column, where a is the total number of the columns in the table and b is the ordinal position of this column in the table. Only after this selector the [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property can be used.\n * If the table does use a [`colspan`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/td#attr-colspan) attribute, the effect can be achieved by combining adequate CSS attribute selectors like `[colspan=n]`, though this is not trivial.\n* To achieve the same effect as the `char` value, in CSS3, you can use the value of the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/colgroup#attr-char) as the value of the [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property Unimplemented.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/colgroup" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "col", description: { kind: "markdown", value: "If a col element has a parent and that is a colgroup element that itself has a parent that is a table element, then the col element represents one or more columns in the column group represented by that colgroup." }, void: true, attributes: [ { name: "span", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "align", description: 'This enumerated attribute specifies how horizontal alignment of each column cell content will be handled. Possible values are:\n\n* `left`, aligning the content to the left of the cell\n* `center`, centering the content in the cell\n* `right`, aligning the content to the right of the cell\n* `justify`, inserting spaces into the textual content so that the content is justified in the cell\n* `char`, aligning the textual content on a special character with a minimal offset, defined by the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/col#attr-char) and [`charoff`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/col#attr-charoff) attributes Unimplemented (see [bug 2212](https://bugzilla.mozilla.org/show_bug.cgi?id=2212 "character alignment not implemented (align=char, charoff=, text-align:<string>)")).\n\nIf this attribute is not set, its value is inherited from the [`align`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/colgroup#attr-align) of the [`<colgroup>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/colgroup "The HTML <colgroup> element defines a group of columns within a table.") element this `<col>` element belongs too. If there are none, the `left` value is assumed.\n\n**Note:** Do not use this attribute as it is obsolete (not supported) in the latest standard.\n\n* To achieve the same effect as the `left`, `center`, `right` or `justify` values:\n * Do not try to set the [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property on a selector giving a [`<col>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/col "The HTML <col> element defines a column within a table and is used for defining common semantics on all common cells. It is generally found within a <colgroup> element.") element. Because [`<td>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/td "The HTML <td> element defines a cell of a table that contains data. It participates in the table model.") elements are not descendant of the [`<col>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/col "The HTML <col> element defines a column within a table and is used for defining common semantics on all common cells. It is generally found within a <colgroup> element.") element, they won\'t inherit it.\n * If the table doesn\'t use a [`colspan`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/td#attr-colspan) attribute, use the `td:nth-child(an+b)` CSS selector. Set `a` to zero and `b` to the position of the column in the table, e.g. `td:nth-child(2) { text-align: right; }` to right-align the second column.\n * If the table does use a [`colspan`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/td#attr-colspan) attribute, the effect can be achieved by combining adequate CSS attribute selectors like `[colspan=n]`, though this is not trivial.\n* To achieve the same effect as the `char` value, in CSS3, you can use the value of the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/col#attr-char) as the value of the [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property Unimplemented.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/col" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "tbody", description: { kind: "markdown", value: "The tbody element represents a block of rows that consist of a body of data for the parent table element, if the tbody element has a parent and it is a table." }, attributes: [ { name: "align", description: 'This enumerated attribute specifies how horizontal alignment of each cell content will be handled. Possible values are:\n\n* `left`, aligning the content to the left of the cell\n* `center`, centering the content in the cell\n* `right`, aligning the content to the right of the cell\n* `justify`, inserting spaces into the textual content so that the content is justified in the cell\n* `char`, aligning the textual content on a special character with a minimal offset, defined by the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/tbody#attr-char) and [`charoff`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/tbody#attr-charoff) attributes.\n\nIf this attribute is not set, the `left` value is assumed.\n\n**Note:** Do not use this attribute as it is obsolete (not supported) in the latest standard.\n\n* To achieve the same effect as the `left`, `center`, `right` or `justify` values, use the CSS [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property on it.\n* To achieve the same effect as the `char` value, in CSS3, you can use the value of the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/tbody#attr-char) as the value of the [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property Unimplemented.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/tbody" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "thead", description: { kind: "markdown", value: "The thead element represents the block of rows that consist of the column labels (headers) for the parent table element, if the thead element has a parent and it is a table." }, attributes: [ { name: "align", description: 'This enumerated attribute specifies how horizontal alignment of each cell content will be handled. Possible values are:\n\n* `left`, aligning the content to the left of the cell\n* `center`, centering the content in the cell\n* `right`, aligning the content to the right of the cell\n* `justify`, inserting spaces into the textual content so that the content is justified in the cell\n* `char`, aligning the textual content on a special character with a minimal offset, defined by the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/thead#attr-char) and [`charoff`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/thead#attr-charoff) attributes Unimplemented (see [bug 2212](https://bugzilla.mozilla.org/show_bug.cgi?id=2212 "character alignment not implemented (align=char, charoff=, text-align:<string>)")).\n\nIf this attribute is not set, the `left` value is assumed.\n\n**Note:** Do not use this attribute as it is obsolete (not supported) in the latest standard.\n\n* To achieve the same effect as the `left`, `center`, `right` or `justify` values, use the CSS [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property on it.\n* To achieve the same effect as the `char` value, in CSS3, you can use the value of the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/thead#attr-char) as the value of the [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property Unimplemented.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/thead" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "tfoot", description: { kind: "markdown", value: "The tfoot element represents the block of rows that consist of the column summaries (footers) for the parent table element, if the tfoot element has a parent and it is a table." }, attributes: [ { name: "align", description: 'This enumerated attribute specifies how horizontal alignment of each cell content will be handled. Possible values are:\n\n* `left`, aligning the content to the left of the cell\n* `center`, centering the content in the cell\n* `right`, aligning the content to the right of the cell\n* `justify`, inserting spaces into the textual content so that the content is justified in the cell\n* `char`, aligning the textual content on a special character with a minimal offset, defined by the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/tbody#attr-char) and [`charoff`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/tbody#attr-charoff) attributes Unimplemented (see [bug 2212](https://bugzilla.mozilla.org/show_bug.cgi?id=2212 "character alignment not implemented (align=char, charoff=, text-align:<string>)")).\n\nIf this attribute is not set, the `left` value is assumed.\n\n**Note:** Do not use this attribute as it is obsolete (not supported) in the latest standard.\n\n* To achieve the same effect as the `left`, `center`, `right` or `justify` values, use the CSS [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property on it.\n* To achieve the same effect as the `char` value, in CSS3, you can use the value of the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/tfoot#attr-char) as the value of the [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property Unimplemented.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/tfoot" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "tr", description: { kind: "markdown", value: "The tr element represents a row of cells in a table." }, attributes: [ { name: "align", description: `A [\`DOMString\`](https://developer.mozilla.org/en-US/docs/Web/API/DOMString "DOMString is a UTF-16 String. As JavaScript already uses such strings, DOMString is mapped directly to a String.") which specifies how the cell's context should be aligned horizontally within the cells in the row; this is shorthand for using \`align\` on every cell in the row individually. Possible values are: \`left\` Align the content of each cell at its left edge. \`center\` Center the contents of each cell between their left and right edges. \`right\` Align the content of each cell at its right edge. \`justify\` Widen whitespaces within the text of each cell so that the text fills the full width of each cell (full justification). \`char\` Align each cell in the row on a specific character (such that each row in the column that is configured this way will horizontally align its cells on that character). This uses the [\`char\`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/tr#attr-char) and [\`charoff\`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/tr#attr-charoff) to establish the alignment character (typically "." or "," when aligning numerical data) and the number of characters that should follow the alignment character. This alignment type was never widely supported. If no value is expressly set for \`align\`, the parent node's value is inherited. Instead of using the obsolete \`align\` attribute, you should instead use the CSS [\`text-align\`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property to establish \`left\`, \`center\`, \`right\`, or \`justify\` alignment for the row's cells. To apply character-based alignment, set the CSS [\`text-align\`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property to the alignment character (such as \`"."\` or \`","\`).`, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/tr" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "td", description: { kind: "markdown", value: "The td element represents a data cell in a table." }, attributes: [ { name: "colspan", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "rowspan", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "headers", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "abbr", description: `This attribute contains a short abbreviated description of the cell's content. Some user-agents, such as speech readers, may present this description before the content itself. **Note:** Do not use this attribute as it is obsolete in the latest standard. Alternatively, you can put the abbreviated description inside the cell and place the long content in the **title** attribute.`, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: false } }, { name: "align", description: 'This enumerated attribute specifies how the cell content\'s horizontal alignment will be handled. Possible values are:\n\n* `left`: The content is aligned to the left of the cell.\n* `center`: The content is centered in the cell.\n* `right`: The content is aligned to the right of the cell.\n* `justify` (with text only): The content is stretched out inside the cell so that it covers its entire width.\n* `char` (with text only): The content is aligned to a character inside the `<th>` element with minimal offset. This character is defined by the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/td#attr-char) and [`charoff`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/td#attr-charoff) attributes Unimplemented (see [bug 2212](https://bugzilla.mozilla.org/show_bug.cgi?id=2212 "character alignment not implemented (align=char, charoff=, text-align:<string>)")).\n\nThe default value when this attribute is not specified is `left`.\n\n**Note:** Do not use this attribute as it is obsolete in the latest standard.\n\n* To achieve the same effect as the `left`, `center`, `right` or `justify` values, apply the CSS [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property to the element.\n* To achieve the same effect as the `char` value, give the [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align "The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.") property the same value you would use for the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/td#attr-char). Unimplemented in CSS3.', browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } }, { name: "axis", description: "This attribute contains a list of space-separated strings. Each string is the `id` of a group of cells that this header applies to.\n\n**Note:** Do not use this attribute as it is obsolete in the latest standard.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: false } }, { name: "bgcolor", description: `This attribute defines the background color of each cell in a column. It consists of a 6-digit hexadecimal code as defined in [sRGB](https://www.w3.org/Graphics/Color/sRGB) and is prefixed by '#'. This attribute may be used with one of sixteen predefined color strings:   \`black\` = "#000000"   \`green\` = "#008000"   \`silver\` = "#C0C0C0"   \`lime\` = "#00FF00"   \`gray\` = "#808080"   \`olive\` = "#808000"   \`white\` = "#FFFFFF"   \`yellow\` = "#FFFF00"   \`maroon\` = "#800000"   \`navy\` = "#000080"   \`red\` = "#FF0000"   \`blue\` = "#0000FF"   \`purple\` = "#800080"   \`teal\` = "#008080"   \`fuchsia\` = "#FF00FF"   \`aqua\` = "#00FFFF" **Note:** Do not use this attribute, as it is non-standard and only implemented in some versions of Microsoft Internet Explorer: The [\`<td>\`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/td "The HTML <td> element defines a cell of a table that contains data. It participates in the table model.") element should be styled using [CSS](https://developer.mozilla.org/en-US/docs/CSS). To create a similar effect use the [\`background-color\`](https://developer.mozilla.org/en-US/docs/Web/CSS/background-color "The background-color CSS property sets the background color of an element.") property in [CSS](https://developer.mozilla.org/en-US/docs/CSS) instead.`, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/td" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "th", description: { kind: "markdown", value: "The th element represents a header cell in a table." }, attributes: [ { name: "colspan", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "rowspan", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "headers", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "scope", valueSet: "s", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "sorted" }, { name: "abbr", description: { kind: "markdown", value: "This attribute contains a short abbreviated description of the cell's content. Some user-agents, such as speech readers, may present this description before the content itself." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "align", description: "This enumerated attribute specifies how the cell content's horizontal alignment will be handled. Possible values are:\n\n* `left`: The content is aligned to the left of the cell.\n* `center`: The content is centered in the cell.\n* `right`: The content is aligned to the right of the cell.\n* `justify` (with text only): The content is stretched out inside the cell so that it covers its entire width.\n* `char` (with text only): The content is aligned to a character inside the `<th>` element with minimal offset. This character is defined by the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/th#attr-char) and [`charoff`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/th#attr-charoff) attributes.\n\nThe default value when this attribute is not specified is `left`.\n\n**Note:** Do not use this attribute as it is obsolete in the latest standard.\n\n* To achieve the same effect as the `left`, `center`, `right` or `justify` values, apply the CSS [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align \"The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.\") property to the element.\n* To achieve the same effect as the `char` value, give the [`text-align`](https://developer.mozilla.org/en-US/docs/Web/CSS/text-align \"The text-align CSS property sets the horizontal alignment of an inline or table-cell box. This means it works like vertical-align but in the horizontal direction.\") property the same value you would use for the [`char`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/th#attr-char). Unimplemented in CSS3.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: false } }, { name: "axis", description: "This attribute contains a list of space-separated strings. Each string is the `id` of a group of cells that this header applies to.\n\n**Note:** Do not use this attribute as it is obsolete in the latest standard: use the [`scope`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/th#attr-scope) attribute instead.", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: false } }, { name: "bgcolor", description: `This attribute defines the background color of each cell in a column. It consists of a 6-digit hexadecimal code as defined in [sRGB](https://www.w3.org/Graphics/Color/sRGB) and is prefixed by '#'. This attribute may be used with one of sixteen predefined color strings:   \`black\` = "#000000"   \`green\` = "#008000"   \`silver\` = "#C0C0C0"   \`lime\` = "#00FF00"   \`gray\` = "#808080"   \`olive\` = "#808000"   \`white\` = "#FFFFFF"   \`yellow\` = "#FFFF00"   \`maroon\` = "#800000"   \`navy\` = "#000080"   \`red\` = "#FF0000"   \`blue\` = "#0000FF"   \`purple\` = "#800080"   \`teal\` = "#008080"   \`fuchsia\` = "#FF00FF"   \`aqua\` = "#00FFFF" **Note:** Do not use this attribute, as it is non-standard and only implemented in some versions of Microsoft Internet Explorer: The [\`<th>\`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/th "The HTML <th> element defines a cell as header of a group of table cells. The exact nature of this group is defined by the scope and headers attributes.") element should be styled using [CSS](https://developer.mozilla.org/en-US/docs/Web/CSS). To create a similar effect use the [\`background-color\`](https://developer.mozilla.org/en-US/docs/Web/CSS/background-color "The background-color CSS property sets the background color of an element.") property in [CSS](https://developer.mozilla.org/en-US/docs/Web/CSS) instead.`, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/th" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "form", description: { kind: "markdown", value: "The form element represents a collection of form-associated elements, some of which can represent editable values that can be submitted to a server for processing." }, attributes: [ { name: "accept-charset", description: { kind: "markdown", value: 'A space- or comma-delimited list of character encodings that the server accepts. The browser uses them in the order in which they are listed. The default value, the reserved string `"UNKNOWN"`, indicates the same encoding as that of the document containing the form element. \nIn previous versions of HTML, the different character encodings could be delimited by spaces or commas. In HTML5, only spaces are allowed as delimiters.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "action", description: { kind: "markdown", value: 'The URI of a program that processes the form information. This value can be overridden by a [`formaction`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button#attr-formaction) attribute on a [`<button>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button "The HTML <button> element represents a clickable button, which can be used in forms or anywhere in a document that needs simple, standard button functionality.") or [`<input>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input "The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.") element.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "autocomplete", valueSet: "o", description: { kind: "markdown", value: "Indicates whether input elements can by default have their values automatically completed by the browser. This setting can be overridden by an `autocomplete` attribute on an element belonging to the form. Possible values are:\n\n* `off`: The user must explicitly enter a value into each field for every use, or the document provides its own auto-completion method; the browser does not automatically complete entries.\n* `on`: The browser can automatically complete values based on values that the user has previously entered in the form.\n\nFor most modern browsers (including Firefox 38+, Google Chrome 34+, IE 11+) setting the autocomplete attribute will not prevent a browser's password manager from asking the user if they want to store login fields (username and password), if the user permits the storage the browser will autofill the login the next time the user visits the page. See [The autocomplete attribute and login fields](https://developer.mozilla.org/en-US/docs/Web/Security/Securing_your_site/Turning_off_form_autocompletion#The_autocomplete_attribute_and_login_fields).\n**Note:** If you set `autocomplete` to `off` in a form because the document provides its own auto-completion, then you should also set `autocomplete` to `off` for each of the form's `input` elements that the document can auto-complete. For details, see the note regarding Google Chrome in the [Browser Compatibility chart](#compatChart)." }, browsers: [ "C14", "CA18", "E12", "FF4", "FFA4", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "enctype", valueSet: "et", description: { kind: "markdown", value: 'When the value of the `method` attribute is `post`, enctype is the [MIME type](https://en.wikipedia.org/wiki/Mime_type) of content that is used to submit the form to the server. Possible values are:\n\n* `application/x-www-form-urlencoded`: The default value if the attribute is not specified.\n* `multipart/form-data`: The value used for an [`<input>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input "The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.") element with the `type` attribute set to "file".\n* `text/plain`: (HTML5)\n\nThis value can be overridden by a [`formenctype`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button#attr-formenctype) attribute on a [`<button>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button "The HTML <button> element represents a clickable button, which can be used in forms or anywhere in a document that needs simple, standard button functionality.") or [`<input>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input "The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.") element.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "method", valueSet: "m", description: { kind: "markdown", value: "The [HTTP](https://developer.mozilla.org/en-US/docs/Web/HTTP) method that the browser uses to submit the form. Possible values are:\n\n* `post`: Corresponds to the HTTP [POST method](https://www.w3.org/Protocols/rfc2616/rfc2616-sec9.html#sec9.5) ; form data are included in the body of the form and sent to the server.\n* `get`: Corresponds to the HTTP [GET method](https://www.w3.org/Protocols/rfc2616/rfc2616-sec9.html#sec9.3); form data are appended to the `action` attribute URI with a '?' as separator, and the resulting URI is sent to the server. Use this method when the form has no side-effects and contains only ASCII characters.\n* `dialog`: Use when the form is inside a [`<dialog>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/dialog \"The HTML <dialog> element represents a dialog box or other interactive component, such as an inspector or window.\") element to close the dialog when submitted.\n\nThis value can be overridden by a [`formmethod`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button#attr-formmethod) attribute on a [`<button>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button \"The HTML <button> element represents a clickable button, which can be used in forms or anywhere in a document that needs simple, standard button functionality.\") or [`<input>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input \"The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.\") element." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "name", description: { kind: "markdown", value: "The name of the form. In HTML 4, its use is deprecated (`id` should be used instead). It must be unique among the forms in a document and not just an empty string in HTML 5." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "novalidate", valueSet: "v", description: { kind: "markdown", value: 'This Boolean attribute indicates that the form is not to be validated when submitted. If this attribute is not specified (and therefore the form is validated), this default setting can be overridden by a [`formnovalidate`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button#attr-formnovalidate) attribute on a [`<button>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button "The HTML <button> element represents a clickable button, which can be used in forms or anywhere in a document that needs simple, standard button functionality.") or [`<input>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input "The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.") element belonging to the form.' }, browsers: [ "C10", "CA18", "E12", "FF4", "FFA4", "S10.1", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2017-03-27", baseline_high_date: "2019-09-27" } }, { name: "target", valueSet: "target", description: { kind: "markdown", value: "A name or keyword indicating where to display the response that is received after submitting the form. In HTML 4, this is the name/keyword for a frame. In HTML5, it is a name/keyword for a _browsing context_ (for example, tab, window, or inline frame). The following keywords have special meanings:\n\n* `_self`: Load the response into the same HTML 4 frame (or HTML5 browsing context) as the current one. This value is the default if the attribute is not specified.\n* `_blank`: Load the response into a new unnamed HTML 4 window or HTML5 browsing context.\n* `_parent`: Load the response into the HTML 4 frameset parent of the current frame, or HTML5 parent browsing context of the current one. If there is no parent, this option behaves the same way as `_self`.\n* `_top`: HTML 4: Load the response into the full original window, and cancel all other frames. HTML5: Load the response into the top-level browsing context (i.e., the browsing context that is an ancestor of the current one, and has no parent). If there is no parent, this option behaves the same way as `_self`.\n* _iframename_: The response is displayed in a named [`<iframe>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/iframe \"The HTML Inline Frame element (<iframe>) represents a nested browsing context, embedding another HTML page into the current one.\").\n\nHTML5: This value can be overridden by a [`formtarget`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button#attr-formtarget) attribute on a [`<button>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button \"The HTML <button> element represents a clickable button, which can be used in forms or anywhere in a document that needs simple, standard button functionality.\") or [`<input>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input \"The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.\") element." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "accept", description: 'A comma-separated list of content types that the server accepts.\n\n**Usage note:** This attribute has been removed in HTML5 and should no longer be used. Instead, use the [`accept`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input#attr-accept) attribute of the specific [`<input>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input "The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.") element.' }, { name: "autocapitalize", description: "This is a nonstandard attribute used by iOS Safari Mobile which controls whether and how the text value for textual form control descendants should be automatically capitalized as it is entered/edited by the user. If the `autocapitalize` attribute is specified on an individual form control descendant, it trumps the form-wide `autocapitalize` setting. The non-deprecated values are available in iOS 5 and later. The default value is `sentences`. Possible values are:\n\n* `none`: Completely disables automatic capitalization\n* `sentences`: Automatically capitalize the first letter of sentences.\n* `words`: Automatically capitalize the first letter of words.\n* `characters`: Automatically capitalize all characters.\n* `on`: Deprecated since iOS 5.\n* `off`: Deprecated since iOS 5." } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/form" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "label", description: { kind: "markdown", value: "The label element represents a caption in a user interface. The caption can be associated with a specific form control, known as the label element's labeled control, either using the for attribute, or by putting the form control inside the label element itself." }, attributes: [ { name: "form", description: { kind: "markdown", value: 'The [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server.") element with which the label is associated (its _form owner_). If specified, the value of the attribute is the `id` of a [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server.") element in the same document. This lets you place label elements anywhere within a document, not just as descendants of their form elements.' } }, { name: "for", description: { kind: "markdown", value: "The [`id`](https://developer.mozilla.org/en-US/docs/Web/HTML/Global_attributes#attr-id) of a [labelable](https://developer.mozilla.org/en-US/docs/Web/Guide/HTML/Content_categories#Form_labelable) form-related element in the same document as the `<label>` element. The first element in the document with an `id` matching the value of the `for` attribute is the _labeled control_ for this label element, if it is a labelable element. If it is not labelable then the `for` attribute has no effect. If there are other elements which also match the `id` value, later in the document, they are not considered.\n\n**Note**: A `<label>` element can have both a `for` attribute and a contained control element, as long as the `for` attribute points to the contained control element." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/label" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "input", description: { kind: "markdown", value: "The input element represents a typed data field, usually with a form control to allow the user to edit the data." }, void: true, attributes: [ { name: "accept", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "alt", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "autocomplete", valueSet: "inputautocomplete", browsers: [ "C14", "CA18", "E12", "FF4", "FFA4", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "autofocus", valueSet: "v" }, { name: "checked", valueSet: "v", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "dirname", browsers: [ "C17", "CA18", "E79", "FF116", "FFA116", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2023-08-01", baseline_high_date: "2026-02-01" } }, { name: "disabled", valueSet: "v", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "form", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "formaction", browsers: [ "C9", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "formenctype", valueSet: "et", browsers: [ "C9", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "formmethod", valueSet: "fm", browsers: [ "C9", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "formnovalidate", valueSet: "v", browsers: [ "C4", "CA18", "E12", "FF4", "FFA4", "S5", "SM4" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "formtarget", browsers: [ "C9", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "height" }, { name: "inputmode", valueSet: "im" }, { name: "list" }, { name: "max", browsers: [ "C4", "CA18", "E12", "FF16", "FFA16", "S5", "SM4" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "maxlength", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "min", browsers: [ "C4", "CA18", "E12", "FF16", "FFA16", "S5", "SM4" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "minlength", browsers: [ "C40", "CA40", "E17", "FF51", "FFA51", "S10.1", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2018-04-30", baseline_high_date: "2020-10-30" } }, { name: "multiple", valueSet: "v", browsers: [ "C2", "CA18", "E12", "FF3.6", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "name", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "pattern", browsers: [ "C4", "CA18", "E12", "FF4", "FFA4", "S5", "SM4" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "placeholder", browsers: [ "C3", "CA18", "E12", "FF4", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "popovertarget", browsers: [ "C114", "CA114", "E114", "FF125", "FFA125", "S17", "SM17" ], status: { baseline: "low", baseline_low_date: "2024-04-16" } }, { name: "popovertargetaction", browsers: [ "C114", "CA114", "E114", "FF125", "FFA125", "S17", "SM17" ], status: { baseline: "low", baseline_low_date: "2024-04-16" } }, { name: "readonly", valueSet: "v", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "required", valueSet: "v", browsers: [ "C4", "CA18", "E12", "FF4", "FFA4", "S5", "SM4" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "size", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "src", browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "step", browsers: [ "C5", "CA18", "E12", "FF16", "FFA16", "S5", "SM4" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "type", valueSet: "t" }, { name: "value" }, { name: "width" } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/input" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "button", description: { kind: "markdown", value: "The button element represents a button labeled by its contents." }, attributes: [ { name: "autofocus", valueSet: "v", description: { kind: "markdown", value: "This Boolean attribute lets you specify that the button should have input focus when the page loads, unless the user overrides it, for example by typing in a different control. Only one form-associated element in a document can have this attribute specified." } }, { name: "disabled", valueSet: "v", description: { kind: "markdown", value: 'This Boolean attribute indicates that the user cannot interact with the button. If this attribute is not specified, the button inherits its setting from the containing element, for example [`<fieldset>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/fieldset "The HTML <fieldset> element is used to group several controls as well as labels (<label>) within a web form."); if there is no containing element with the **disabled** attribute set, then the button is enabled.\n\nFirefox will, unlike other browsers, by default, [persist the dynamic disabled state](https://stackoverflow.com/questions/5985839/bug-with-firefox-disabled-attribute-of-input-not-resetting-when-refreshing) of a [`<button>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button "The HTML <button> element represents a clickable button, which can be used in forms or anywhere in a document that needs simple, standard button functionality.") across page loads. Use the [`autocomplete`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button#attr-autocomplete) attribute to control this feature.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "form", description: { kind: "markdown", value: 'The form element that the button is associated with (its _form owner_). The value of the attribute must be the **id** attribute of a [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server.") element in the same document. If this attribute is not specified, the `<button>` element will be associated to an ancestor [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server.") element, if one exists. This attribute enables you to associate `<button>` elements to [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server.") elements anywhere within a document, not just as descendants of [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server.") elements.' }, browsers: [ "C9", "CA18", "E16", "FF4", "FFA4", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2017-10-17", baseline_high_date: "2020-04-17" } }, { name: "formaction", description: { kind: "markdown", value: "The URI of a program that processes the information submitted by the button. If specified, it overrides the [`action`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form#attr-action) attribute of the button's form owner." }, browsers: [ "C9", "CA18", "E12", "FF4", "FFA4", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "formenctype", valueSet: "et", description: { kind: "markdown", value: 'If the button is a submit button, this attribute specifies the type of content that is used to submit the form to the server. Possible values are:\n\n* `application/x-www-form-urlencoded`: The default value if the attribute is not specified.\n* `multipart/form-data`: Use this value if you are using an [`<input>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input "The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.") element with the [`type`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input#attr-type) attribute set to `file`.\n* `text/plain`\n\nIf this attribute is specified, it overrides the [`enctype`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form#attr-enctype) attribute of the button\'s form owner.' }, browsers: [ "C9", "CA18", "E12", "FF4", "FFA4", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "formmethod", valueSet: "fm", description: { kind: "markdown", value: "If the button is a submit button, this attribute specifies the HTTP method that the browser uses to submit the form. Possible values are:\n\n* `post`: The data from the form are included in the body of the form and sent to the server.\n* `get`: The data from the form are appended to the **form** attribute URI, with a '?' as a separator, and the resulting URI is sent to the server. Use this method when the form has no side-effects and contains only ASCII characters.\n\nIf specified, this attribute overrides the [`method`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form#attr-method) attribute of the button's form owner." }, browsers: [ "C9", "CA18", "E12", "FF4", "FFA4", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "formnovalidate", valueSet: "v", description: { kind: "markdown", value: "If the button is a submit button, this Boolean attribute specifies that the form is not to be validated when it is submitted. If this attribute is specified, it overrides the [`novalidate`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form#attr-novalidate) attribute of the button's form owner." }, browsers: [ "C9", "CA18", "E12", "FF4", "FFA4", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "formtarget", description: { kind: "markdown", value: "If the button is a submit button, this attribute is a name or keyword indicating where to display the response that is received after submitting the form. This is a name of, or keyword for, a _browsing context_ (for example, tab, window, or inline frame). If this attribute is specified, it overrides the [`target`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form#attr-target) attribute of the button's form owner. The following keywords have special meanings:\n\n* `_self`: Load the response into the same browsing context as the current one. This value is the default if the attribute is not specified.\n* `_blank`: Load the response into a new unnamed browsing context.\n* `_parent`: Load the response into the parent browsing context of the current one. If there is no parent, this option behaves the same way as `_self`.\n* `_top`: Load the response into the top-level browsing context (that is, the browsing context that is an ancestor of the current one, and has no parent). If there is no parent, this option behaves the same way as `_self`." }, browsers: [ "C9", "CA18", "E12", "FF4", "FFA4", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "name", description: { kind: "markdown", value: "The name of the button, which is submitted with the form data." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "popovertarget", description: { kind: "markdown", value: "Turns the button into a popover control button; takes the ID of the popover element to control as its value." }, browsers: [ "C114", "CA114", "E114", "FF125", "FFA125", "S17", "SM17" ], status: { baseline: "low", baseline_low_date: "2024-04-16" } }, { name: "popovertargetaction", description: { kind: "markdown", value: "Specifies the action to be performed on a popover element being controlled by the button." }, browsers: [ "C114", "CA114", "E114", "FF125", "FFA125", "S17", "SM17" ], status: { baseline: "low", baseline_low_date: "2024-04-16" } }, { name: "type", valueSet: "bt", description: { kind: "markdown", value: "The type of the button. Possible values are:\n\n* `submit`: The button submits the form data to the server. This is the default if the attribute is not specified, or if the attribute is dynamically changed to an empty or invalid value.\n* `reset`: The button resets all the controls to their initial values.\n* `button`: The button has no default behavior. It can have client-side scripts associated with the element's events, which are triggered when the events occur." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "value", description: { kind: "markdown", value: "The initial value of the button. It defines the value associated with the button which is submitted with the form data. This value is passed to the server in params when the form is submitted." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "autocomplete", description: 'The use of this attribute on a [`<button>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button "The HTML <button> element represents a clickable button, which can be used in forms or anywhere in a document that needs simple, standard button functionality.") is nonstandard and Firefox-specific. By default, unlike other browsers, [Firefox persists the dynamic disabled state](https://stackoverflow.com/questions/5985839/bug-with-firefox-disabled-attribute-of-input-not-resetting-when-refreshing) of a [`<button>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/button "The HTML <button> element represents a clickable button, which can be used in forms or anywhere in a document that needs simple, standard button functionality.") across page loads. Setting the value of this attribute to `off` (i.e. `autocomplete="off"`) disables this feature. See [bug 654072](https://bugzilla.mozilla.org/show_bug.cgi?id=654072 "if disabled state is changed with javascript, the normal state doesn\'t return after refreshing the page").' } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/button" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "select", description: { kind: "markdown", value: "The select element represents a control for selecting amongst a set of options." }, attributes: [ { name: "autocomplete", valueSet: "inputautocomplete", description: { kind: "markdown", value: 'A [`DOMString`](https://developer.mozilla.org/en-US/docs/Web/API/DOMString "DOMString is a UTF-16 String. As JavaScript already uses such strings, DOMString is mapped directly to a String.") providing a hint for a [user agent\'s](https://developer.mozilla.org/en-US/docs/Glossary/user_agent "user agent\'s: A user agent is a computer program representing a person, for example, a browser in a Web context.") autocomplete feature. See [The HTML autocomplete attribute](https://developer.mozilla.org/en-US/docs/Web/HTML/Attributes/autocomplete) for a complete list of values and details on how to use autocomplete.' }, browsers: [ "C66", "CA66", "E79", "FF59", "FFA59", "S9.1", "SM9.3" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "autofocus", valueSet: "v", description: { kind: "markdown", value: "This Boolean attribute lets you specify that a form control should have input focus when the page loads. Only one form element in a document can have the `autofocus` attribute." } }, { name: "disabled", valueSet: "v", description: { kind: "markdown", value: "This Boolean attribute indicates that the user cannot interact with the control. If this attribute is not specified, the control inherits its setting from the containing element, for example `fieldset`; if there is no containing element with the `disabled` attribute set, then the control is enabled." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "form", description: { kind: "markdown", value: 'This attribute lets you specify the form element to which the select element is associated (that is, its "form owner"). If this attribute is specified, its value must be the same as the `id` of a form element in the same document. This enables you to place select elements anywhere within a document, not just as descendants of their form elements.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "multiple", valueSet: "v", description: { kind: "markdown", value: "This Boolean attribute indicates that multiple options can be selected in the list. If it is not specified, then only one option can be selected at a time. When `multiple` is specified, most browsers will show a scrolling list box instead of a single line dropdown." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "name", description: { kind: "markdown", value: "This attribute is used to specify the name of the control." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "required", valueSet: "v", description: { kind: "markdown", value: "A Boolean attribute indicating that an option with a non-empty string value must be selected." }, browsers: [ "C10", "CA18", "E12", "FF4", "FFA4", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "size", description: { kind: "markdown", value: "If the control is presented as a scrolling list box (e.g. when `multiple` is specified), this attribute represents the number of rows in the list that should be visible at one time. Browsers are not required to present a select element as a scrolled list box. The default value is 0.\n\n**Note:** According to the HTML5 specification, the default value for size should be 1; however, in practice, this has been found to break some web sites, and no other browser currently does that, so Mozilla has opted to continue to return 0 for the time being with Firefox." }, browsers: [ "C1", "E12", "FF1", "FFA4", "S3" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/select" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "datalist", description: { kind: "markdown", value: "The datalist element represents a set of option elements that represent predefined options for other controls. In the rendering, the datalist element represents nothing and it, along with its children, should be hidden." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/datalist" } ], browsers: [ "C20", "CA33", "E12", "FF4", "S12.1", "SM12.2" ], status: { baseline: false } }, { name: "optgroup", description: { kind: "markdown", value: "The optgroup element represents a group of option elements with a common label." }, attributes: [ { name: "disabled", valueSet: "v", description: { kind: "markdown", value: "If this Boolean attribute is set, none of the items in this option group is selectable. Often browsers grey out such control and it won't receive any browsing events, like mouse clicks or focus-related ones." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S7" ], status: { baseline: false } }, { name: "label", description: { kind: "markdown", value: "The name of the group of options, which the browser can use when labeling the options in the user interface. This attribute is mandatory if this element is used." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/optgroup" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "option", description: { kind: "markdown", value: "The option element represents an option in a select element or as part of a list of suggestions in a datalist element." }, attributes: [ { name: "disabled", valueSet: "v", description: { kind: "markdown", value: 'If this Boolean attribute is set, this option is not checkable. Often browsers grey out such control and it won\'t receive any browsing event, like mouse clicks or focus-related ones. If this attribute is not set, the element can still be disabled if one of its ancestors is a disabled [`<optgroup>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/optgroup "The HTML <optgroup> element creates a grouping of options within a <select> element.") element.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "label", description: { kind: "markdown", value: "This attribute is text for the label indicating the meaning of the option. If the `label` attribute isn't defined, its value is that of the element text content." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "selected", valueSet: "v", description: { kind: "markdown", value: 'If present, this Boolean attribute indicates that the option is initially selected. If the `<option>` element is the descendant of a [`<select>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/select "The HTML <select> element represents a control that provides a menu of options") element whose [`multiple`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/select#attr-multiple) attribute is not set, only one single `<option>` of this [`<select>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/select "The HTML <select> element represents a control that provides a menu of options") element may have the `selected` attribute.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "value", description: { kind: "markdown", value: "The content of this attribute represents the value to be submitted with the form, should this option be selected. If this attribute is omitted, the value is taken from the text content of the option element." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/option" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "textarea", description: { kind: "markdown", value: "The textarea element represents a multiline plain text edit control for the element's raw value. The contents of the control represent the control's default value." }, attributes: [ { name: "autocomplete", valueSet: "inputautocomplete", description: { kind: "markdown", value: 'This attribute indicates whether the value of the control can be automatically completed by the browser. Possible values are:\n\n* `off`: The user must explicitly enter a value into this field for every use, or the document provides its own auto-completion method; the browser does not automatically complete the entry.\n* `on`: The browser can automatically complete the value based on values that the user has entered during previous uses.\n\nIf the `autocomplete` attribute is not specified on a `<textarea>` element, then the browser uses the `autocomplete` attribute value of the `<textarea>` element\'s form owner. The form owner is either the [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server.") element that this `<textarea>` element is a descendant of or the form element whose `id` is specified by the `form` attribute of the input element. For more information, see the [`autocomplete`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form#attr-autocomplete) attribute in [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server.").' }, browsers: [ "C66", "CA66", "E79", "FF59", "FFA59", "S9.1", "SM9.3" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "autofocus", valueSet: "v", description: { kind: "markdown", value: "This Boolean attribute lets you specify that a form control should have input focus when the page loads. Only one form-associated element in a document can have this attribute specified." } }, { name: "cols", description: { kind: "markdown", value: "The visible width of the text control, in average character widths. If it is specified, it must be a positive integer. If it is not specified, the default value is `20`." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "dirname", browsers: [ "C17", "CA18", "E79", "FF116", "FFA116", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2023-08-01", baseline_high_date: "2026-02-01" } }, { name: "disabled", valueSet: "v", description: { kind: "markdown", value: 'This Boolean attribute indicates that the user cannot interact with the control. If this attribute is not specified, the control inherits its setting from the containing element, for example [`<fieldset>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/fieldset "The HTML <fieldset> element is used to group several controls as well as labels (<label>) within a web form."); if there is no containing element when the `disabled` attribute is set, the control is enabled.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "form", description: { kind: "markdown", value: 'The form element that the `<textarea>` element is associated with (its "form owner"). The value of the attribute must be the `id` of a form element in the same document. If this attribute is not specified, the `<textarea>` element must be a descendant of a form element. This attribute enables you to place `<textarea>` elements anywhere within a document, not just as descendants of form elements.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "inputmode", valueSet: "im" }, { name: "maxlength", description: { kind: "markdown", value: "The maximum number of characters (unicode code points) that the user can enter. If this value isn't specified, the user can enter an unlimited number of characters." }, browsers: [ "C4", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "minlength", description: { kind: "markdown", value: "The minimum number of characters (unicode code points) required that the user should enter." }, browsers: [ "C40", "CA40", "E17", "FF51", "FFA51", "S10.1", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2018-04-30", baseline_high_date: "2020-10-30" } }, { name: "name", description: { kind: "markdown", value: "The name of the control." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "placeholder", description: { kind: "markdown", value: 'A hint to the user of what can be entered in the control. Carriage returns or line-feeds within the placeholder text must be treated as line breaks when rendering the hint.\n\n**Note:** Placeholders should only be used to show an example of the type of data that should be entered into a form; they are _not_ a substitute for a proper [`<label>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/label "The HTML <label> element represents a caption for an item in a user interface.") element tied to the input. See [Labels and placeholders](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input#Labels_and_placeholders "The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.") in [<input>: The Input (Form Input) element](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/input "The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.") for a full explanation.' }, browsers: [ "C4", "CA18", "E12", "FF4", "FFA4", "S5", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "readonly", valueSet: "v", description: { kind: "markdown", value: "This Boolean attribute indicates that the user cannot modify the value of the control. Unlike the `disabled` attribute, the `readonly` attribute does not prevent the user from clicking or selecting in the control. The value of a read-only control is still submitted with the form." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "required", valueSet: "v", description: { kind: "markdown", value: "This attribute specifies that the user must fill in a value before submitting a form." }, browsers: [ "C4", "CA18", "E12", "FF4", "FFA4", "S5", "SM5" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "rows", description: { kind: "markdown", value: "The number of visible text lines for the control." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "wrap", valueSet: "w", description: { kind: "markdown", value: "Indicates how the control wraps text. Possible values are:\n\n* `hard`: The browser automatically inserts line breaks (CR+LF) so that each line has no more than the width of the control; the `cols` attribute must also be specified for this to take effect.\n* `soft`: The browser ensures that all line breaks in the value consist of a CR+LF pair, but does not insert any additional line breaks.\n* `off` : Like `soft` but changes appearance to `white-space: pre` so line segments exceeding `cols` are not wrapped and the `<textarea>` becomes horizontally scrollable.\n\nIf this attribute is not specified, `soft` is its default value." }, browsers: [ "C16", "CA18", "E12", "FF4", "FFA4", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "autocapitalize", description: "This is a non-standard attribute supported by WebKit on iOS (therefore nearly all browsers running on iOS, including Safari, Firefox, and Chrome), which controls whether and how the text value should be automatically capitalized as it is entered/edited by the user. The non-deprecated values are available in iOS 5 and later. Possible values are:\n\n* `none`: Completely disables automatic capitalization.\n* `sentences`: Automatically capitalize the first letter of sentences.\n* `words`: Automatically capitalize the first letter of words.\n* `characters`: Automatically capitalize all characters.\n* `on`: Deprecated since iOS 5.\n* `off`: Deprecated since iOS 5." }, { name: "spellcheck", description: "Specifies whether the `<textarea>` is subject to spell checking by the underlying browser/OS. the value can be:\n\n* `true`: Indicates that the element needs to have its spelling and grammar checked.\n* `default` : Indicates that the element is to act according to a default behavior, possibly based on the parent element's own `spellcheck` value.\n* `false` : Indicates that the element should not be spell checked." } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/textarea" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "output", description: { kind: "markdown", value: "The output element represents the result of a calculation performed by the application, or the result of a user action." }, attributes: [ { name: "for", description: { kind: "markdown", value: "A space-separated list of other elements’ [`id`](https://developer.mozilla.org/en-US/docs/Web/HTML/Global_attributes/id)s, indicating that those elements contributed input values to (or otherwise affected) the calculation." }, browsers: [ "C10", "CA18", "E18", "FF4", "FFA4", "S7", "SM7" ], status: { baseline: "high", baseline_low_date: "≤2018-10-02", baseline_high_date: "≤2021-04-02" } }, { name: "form", description: { kind: "markdown", value: 'The [form element](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form) that this element is associated with (its "form owner"). The value of the attribute must be an `id` of a form element in the same document. If this attribute is not specified, the output element must be a descendant of a form element. This attribute enables you to place output elements anywhere within a document, not just as descendants of their form elements.' }, browsers: [ "C10", "CA18", "E18", "FF4", "FFA4", "S7", "SM7" ], status: { baseline: "high", baseline_low_date: "≤2018-10-02", baseline_high_date: "≤2021-04-02" } }, { name: "name", description: { kind: "markdown", value: 'The name of the element, exposed in the [`HTMLFormElement`](https://developer.mozilla.org/en-US/docs/Web/API/HTMLFormElement "The HTMLFormElement interface represents a <form> element in the DOM; it allows access to and in some cases modification of aspects of the form, as well as access to its component elements.") API.' }, browsers: [ "C10", "CA18", "E18", "FF4", "FFA4", "S7", "SM7" ], status: { baseline: "high", baseline_low_date: "≤2018-10-02", baseline_high_date: "≤2021-04-02" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/output" } ], browsers: [ "C10", "CA18", "E18", "FF4", "FFA4", "S7", "SM7" ], status: { baseline: "high", baseline_low_date: "≤2018-10-02", baseline_high_date: "≤2021-04-02" } }, { name: "progress", description: { kind: "markdown", value: "The progress element represents the completion progress of a task. The progress is either indeterminate, indicating that progress is being made but that it is not clear how much more work remains to be done before the task is complete (e.g. because the task is waiting for a remote host to respond), or the progress is a number in the range zero to a maximum, giving the fraction of work that has so far been completed." }, attributes: [ { name: "value", description: { kind: "markdown", value: "This attribute specifies how much of the task that has been completed. It must be a valid floating point number between 0 and `max`, or between 0 and 1 if `max` is omitted. If there is no `value` attribute, the progress bar is indeterminate; this indicates that an activity is ongoing with no indication of how long it is expected to take." }, browsers: [ "C6", "CA18", "E12", "FF6", "FFA6", "S6", "SM7" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "max", description: { kind: "markdown", value: "This attribute describes how much work the task indicated by the `progress` element requires. The `max` attribute, if present, must have a value greater than zero and be a valid floating point number. The default value is 1." }, browsers: [ "C6", "CA18", "E12", "FF6", "FFA6", "S6", "SM7" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/progress" } ], browsers: [ "C6", "CA18", "E12", "FF6", "FFA6", "S6", "SM7" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "meter", description: { kind: "markdown", value: "The meter element represents a scalar measurement within a known range, or a fractional value; for example disk usage, the relevance of a query result, or the fraction of a voting population to have selected a particular candidate." }, attributes: [ { name: "value", description: { kind: "markdown", value: "The current numeric value. This must be between the minimum and maximum values (`min` attribute and `max` attribute) if they are specified. If unspecified or malformed, the value is 0. If specified, but not within the range given by the `min` attribute and `max` attribute, the value is equal to the nearest end of the range.\n\n**Usage note:** Unless the `value` attribute is between `0` and `1` (inclusive), the `min` and `max` attributes should define the range so that the `value` attribute's value is within it." }, browsers: [ "C6", "CA18", "E13", "FF16", "FFA16", "S6", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2017-03-27", baseline_high_date: "2019-09-27" } }, { name: "min", description: { kind: "markdown", value: "The lower numeric bound of the measured range. This must be less than the maximum value (`max` attribute), if specified. If unspecified, the minimum value is 0." }, browsers: [ "C6", "CA18", "E13", "FF16", "FFA16", "S6", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2017-03-27", baseline_high_date: "2019-09-27" } }, { name: "max", description: { kind: "markdown", value: "The upper numeric bound of the measured range. This must be greater than the minimum value (`min` attribute), if specified. If unspecified, the maximum value is 1." }, browsers: [ "C6", "CA18", "E13", "FF16", "FFA16", "S6", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2017-03-27", baseline_high_date: "2019-09-27" } }, { name: "low", description: { kind: "markdown", value: "The upper numeric bound of the low end of the measured range. This must be greater than the minimum value (`min` attribute), and it also must be less than the high value and maximum value (`high` attribute and `max` attribute, respectively), if any are specified. If unspecified, or if less than the minimum value, the `low` value is equal to the minimum value." }, browsers: [ "C6", "CA18", "E13", "FF16", "FFA16", "S6", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2017-03-27", baseline_high_date: "2019-09-27" } }, { name: "high", description: { kind: "markdown", value: "The lower numeric bound of the high end of the measured range. This must be less than the maximum value (`max` attribute), and it also must be greater than the low value and minimum value (`low` attribute and **min** attribute, respectively), if any are specified. If unspecified, or if greater than the maximum value, the `high` value is equal to the maximum value." }, browsers: [ "C6", "CA18", "E13", "FF16", "FFA16", "S6", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2017-03-27", baseline_high_date: "2019-09-27" } }, { name: "optimum", description: { kind: "markdown", value: "This attribute indicates the optimal numeric value. It must be within the range (as defined by the `min` attribute and `max` attribute). When used with the `low` attribute and `high` attribute, it gives an indication where along the range is considered preferable. For example, if it is between the `min` attribute and the `low` attribute, then the lower range is considered preferred." }, browsers: [ "C6", "CA18", "E13", "FF16", "FFA16", "S6", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2017-03-27", baseline_high_date: "2019-09-27" } }, { name: "form", description: "This attribute associates the element with a `form` element that has ownership of the `meter` element. For example, a `meter` might be displaying a range corresponding to an `input` element of `type` _number_. This attribute is only used if the `meter` element is being used as a form-associated element; even then, it may be omitted if the element appears as a descendant of a `form` element." } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/meter" } ], browsers: [ "C6", "CA18", "E13", "FF16", "FFA16", "S6", "SM10.3" ], status: { baseline: "high", baseline_low_date: "2017-03-27", baseline_high_date: "2019-09-27" } }, { name: "fieldset", description: { kind: "markdown", value: "The fieldset element represents a set of form controls optionally grouped under a common name." }, attributes: [ { name: "disabled", valueSet: "v", description: { kind: "markdown", value: "If this Boolean attribute is set, all form controls that are descendants of the `<fieldset>`, are disabled, meaning they are not editable and won't be submitted along with the `<form>`. They won't receive any browsing events, like mouse clicks or focus-related events. By default browsers display such controls grayed out. Note that form elements inside the [`<legend>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/legend \"The HTML <legend> element represents a caption for the content of its parent <fieldset>.\") element won't be disabled." }, browsers: [ "C20", "CA25", "E79", "FF4", "FFA4", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "form", description: { kind: "markdown", value: 'This attribute takes the value of the `id` attribute of a [`<form>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/form "The HTML <form> element represents a document section that contains interactive controls for submitting information to a web server.") element you want the `<fieldset>` to be part of, even if it is not inside the form.' }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "name", description: { kind: "markdown", value: 'The name associated with the group.\n\n**Note**: The caption for the fieldset is given by the first [`<legend>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/legend "The HTML <legend> element represents a caption for the content of its parent <fieldset>.") element nested inside it.' }, browsers: [ "C19", "CA25", "E12", "FF4", "FFA4", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/fieldset" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "legend", description: { kind: "markdown", value: "The legend element represents a caption for the rest of the contents of the legend element's parent fieldset element, if any." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/legend" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "details", description: { kind: "markdown", value: "The details element represents a disclosure widget from which the user can obtain additional information or controls." }, attributes: [ { name: "open", valueSet: "v", description: { kind: "markdown", value: "This Boolean attribute indicates whether or not the details — that is, the contents of the `<details>` element — are currently visible. The default, `false`, means the details are not visible." }, browsers: [ "C12", "CA18", "E79", "FF49", "FFA49", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "name", description: { kind: "markdown", value: "This attribute enables multiple `<details>` elements to be connected, with only one open at a time. This allows developers to easily create UI features such as accordions without scripting.\n\nThe `name` attribute specifies a group name — give multiple `<details>` elements the same `name` value to group them. Only one of the grouped `<details>` elements can be open at a time — opening one will cause another to close. If multiple grouped `<details>` elements are given the `open` attribute, only the first one in the source order will be rendered open.\n\n**Note**: `<details>` elements don't have to be adjacent to one another in the source to be part of the same group." }, browsers: [ "C120", "CA120", "E120", "FF130", "FFA130", "S17.2", "SM17.2" ], status: { baseline: "low", baseline_low_date: "2024-09-03" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/details" } ], browsers: [ "C12", "CA18", "E79", "FF49", "FFA49", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "summary", description: { kind: "markdown", value: "The summary element represents a summary, caption, or legend for the rest of the contents of the summary element's parent details element, if any." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/summary" } ], browsers: [ "C12", "CA18", "E79", "FF49", "FFA49", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "dialog", description: { kind: "markdown", value: "The dialog element represents a part of an application that a user interacts with to perform a task, for example a dialog box, inspector, or window." }, attributes: [ { name: "open", description: "Indicates that the dialog is active and available for interaction. When the `open` attribute is not set, the dialog shouldn't be shown to the user.", browsers: [ "C37", "CA37", "E79", "FF98", "FFA98", "S15.4", "SM15.4" ], status: { baseline: "high", baseline_low_date: "2022-03-14", baseline_high_date: "2024-09-14" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/dialog" } ], browsers: [ "C37", "CA37", "E79", "FF98", "FFA98", "S15.4", "SM15.4" ], status: { baseline: "high", baseline_low_date: "2022-03-14", baseline_high_date: "2024-09-14" } }, { name: "script", description: { kind: "markdown", value: "The script element allows authors to include dynamic script and data blocks in their documents. The element does not represent content for the user." }, attributes: [ { name: "src", description: { kind: "markdown", value: "This attribute specifies the URI of an external script; this can be used as an alternative to embedding a script directly within a document.\n\nIf a `script` element has a `src` attribute specified, it should not have a script embedded inside its tags." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "type", description: { kind: "markdown", value: "This attribute indicates the type of script represented. The value of this attribute will be in one of the following categories:\n\n* **Omitted or a JavaScript MIME type:** For HTML5-compliant browsers this indicates the script is JavaScript. HTML5 specification urges authors to omit the attribute rather than provide a redundant MIME type. In earlier browsers, this identified the scripting language of the embedded or imported (via the `src` attribute) code. JavaScript MIME types are [listed in the specification](https://developer.mozilla.org/en-US/docs/Web/HTTP/Basics_of_HTTP/MIME_types#JavaScript_types).\n* **`module`:** For HTML5-compliant browsers the code is treated as a JavaScript module. The processing of the script contents is not affected by the `charset` and `defer` attributes. For information on using `module`, see [ES6 in Depth: Modules](https://hacks.mozilla.org/2015/08/es6-in-depth-modules/). Code may behave differently when the `module` keyword is used.\n* **Any other value:** The embedded content is treated as a data block which won't be processed by the browser. Developers must use a valid MIME type that is not a JavaScript MIME type to denote data blocks. The `src` attribute will be ignored.\n\n**Note:** in Firefox you could specify the version of JavaScript contained in a `<script>` element by including a non-standard `version` parameter inside the `type` attribute — for example `type=\"text/javascript;version=1.8\"`. This has been removed in Firefox 59 (see [bug 1428745](https://bugzilla.mozilla.org/show_bug.cgi?id=1428745 \"FIXED: Remove support for version parameter from script loader\"))." }, browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "charset" }, { name: "async", valueSet: "v", description: { kind: "markdown", value: `This is a Boolean attribute indicating that the browser should, if possible, load the script asynchronously. This attribute must not be used if the \`src\` attribute is absent (i.e. for inline scripts). If it is included in this case it will have no effect. Browsers usually assume the worst case scenario and load scripts synchronously, (i.e. \`async="false"\`) during HTML parsing. Dynamically inserted scripts (using [\`document.createElement()\`](https://developer.mozilla.org/en-US/docs/Web/API/Document/createElement "In an HTML document, the document.createElement() method creates the HTML element specified by tagName, or an HTMLUnknownElement if tagName isn't recognized.")) load asynchronously by default, so to turn on synchronous loading (i.e. scripts load in the order they were inserted) set \`async="false"\`. See [Browser compatibility](#Browser_compatibility) for notes on browser support. See also [Async scripts for asm.js](https://developer.mozilla.org/en-US/docs/Games/Techniques/Async_scripts).` }, browsers: [ "C1", "CA18", "E12", "FF3.6", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "defer", valueSet: "v", description: { kind: "markdown", value: 'This Boolean attribute is set to indicate to a browser that the script is meant to be executed after the document has been parsed, but before firing [`DOMContentLoaded`](https://developer.mozilla.org/en-US/docs/Web/Events/DOMContentLoaded "/en-US/docs/Web/Events/DOMContentLoaded").\n\nScripts with the `defer` attribute will prevent the `DOMContentLoaded` event from firing until the script has loaded and finished evaluating.\n\nThis attribute must not be used if the `src` attribute is absent (i.e. for inline scripts), in this case it would have no effect.\n\nTo achieve a similar effect for dynamically inserted scripts use `async="false"` instead. Scripts with the `defer` attribute will execute in the order in which they appear in the document.' }, browsers: [ "C1", "CA18", "E12", "FF3.5", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "crossorigin", valueSet: "xo", description: { kind: "markdown", value: 'Normal `script` elements pass minimal information to the [`window.onerror`](https://developer.mozilla.org/en-US/docs/Web/API/GlobalEventHandlers/onerror "The onerror property of the GlobalEventHandlers mixin is an EventHandler that processes error events.") for scripts which do not pass the standard [CORS](https://developer.mozilla.org/en-US/docs/Glossary/CORS "CORS: CORS (Cross-Origin Resource Sharing) is a system, consisting of transmitting HTTP headers, that determines whether browsers block frontend JavaScript code from accessing responses for cross-origin requests.") checks. To allow error logging for sites which use a separate domain for static media, use this attribute. See [CORS settings attributes](https://developer.mozilla.org/en-US/docs/Web/HTML/CORS_settings_attributes) for a more descriptive explanation of its valid arguments.' }, browsers: [ "C19", "CA25", "E14", "FF14", "FFA14", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2016-08-02", baseline_high_date: "2019-02-02" } }, { name: "nonce", description: { kind: "markdown", value: "A cryptographic nonce (number used once) to list the allowed inline scripts in a [script-src Content-Security-Policy](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Content-Security-Policy/script-src). The server must generate a unique nonce value each time it transmits a policy. It is critical to provide a nonce that cannot be guessed as bypassing a resource's policy is otherwise trivial." } }, { name: "integrity", description: "This attribute contains inline metadata that a user agent can use to verify that a fetched resource has been delivered free of unexpected manipulation. See [Subresource Integrity](https://developer.mozilla.org/en-US/docs/Web/Security/Subresource_Integrity).", browsers: [ "C45", "CA45", "E17", "FF43", "FFA43", "S11.1", "SM11.3" ], status: { baseline: "high", baseline_low_date: "2018-04-30", baseline_high_date: "2020-10-30" } }, { name: "nomodule", description: "This Boolean attribute is set to indicate that the script should not be executed in browsers that support [ES2015 modules](https://hacks.mozilla.org/2015/08/es6-in-depth-modules/) — in effect, this can be used to serve fallback scripts to older browsers that do not support modular JavaScript code.", browsers: [ "C61", "CA61", "E16", "FF60", "FFA60", "S11", "SM11" ], status: { baseline: "high", baseline_low_date: "2018-05-09", baseline_high_date: "2020-11-09" } }, { name: "referrerpolicy", description: 'Indicates which [referrer](https://developer.mozilla.org/en-US/docs/Web/API/Document/referrer) to send when fetching the script, or resources fetched by the script:\n\n* `no-referrer`: The [`Referer`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Referer "The Referer request header contains the address of the previous web page from which a link to the currently requested page was followed. The Referer header allows servers to identify where people are visiting them from and may use that data for analytics, logging, or optimized caching, for example.") header will not be sent.\n* `no-referrer-when-downgrade` (default): The [`Referer`](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Referer "The Referer request header contains the address of the previous web page from which a link to the currently requested page was followed. The Referer header allows servers to identify where people are visiting them from and may use that data for analytics, logging, or optimized caching, for example.") header will not be sent to [origin](https://developer.mozilla.org/en-US/docs/Glossary/origin "origin: Web content\'s origin is defined by the scheme (protocol), host (domain), and port of the URL used to access it. Two objects have the same origin only when the scheme, host, and port all match.")s without [TLS](https://developer.mozilla.org/en-US/docs/Glossary/TLS "TLS: Transport Layer Security (TLS), previously known as Secure Sockets Layer (SSL), is a protocol used by applications to communicate securely across a network, preventing tampering with and eavesdropping on email, web browsing, messaging, and other protocols.") ([HTTPS](https://developer.mozilla.org/en-US/docs/Glossary/HTTPS "HTTPS: HTTPS (HTTP Secure) is an encrypted version of the HTTP protocol. It usually uses SSL or TLS to encrypt all communication between a client and a server. This secure connection allows clients to safely exchange sensitive data with a server, for example for banking activities or online shopping.")).\n* `origin`: The sent referrer will be limited to the origin of the referring page: its [scheme](https://developer.mozilla.org/en-US/docs/Archive/Mozilla/URIScheme), [host](https://developer.mozilla.org/en-US/docs/Glossary/host "host: A host is a device connected to the Internet (or a local network). Some hosts called servers offer additional services like serving webpages or storing files and emails."), and [port](https://developer.mozilla.org/en-US/docs/Glossary/port "port: For a computer connected to a network with an IP address, a port is a communication endpoint. Ports are designated by numbers, and below 1024 each port is associated by default with a specific protocol.").\n* `origin-when-cross-origin`: The referrer sent to other origins will be limited to the scheme, the host, and the port. Navigations on the same origin will still include the path.\n* `same-origin`: A referrer will be sent for [same origin](https://developer.mozilla.org/en-US/docs/Glossary/Same-origin_policy "same origin: The same-origin policy is a critical security mechanism that restricts how a document or script loaded from one origin can interact with a resource from another origin."), but cross-origin requests will contain no referrer information.\n* `strict-origin`: Only send the origin of the document as the referrer when the protocol security level stays the same (e.g. HTTPS→HTTPS), but don\'t send it to a less secure destination (e.g. HTTPS→HTTP).\n* `strict-origin-when-cross-origin`: Send a full URL when performing a same-origin request, but only send the origin when the protocol security level stays the same (e.g.HTTPS→HTTPS), and send no header to a less secure destination (e.g. HTTPS→HTTP).\n* `unsafe-url`: The referrer will include the origin _and_ the path (but not the [fragment](https://developer.mozilla.org/en-US/docs/Web/API/HTMLHyperlinkElementUtils/hash), [password](https://developer.mozilla.org/en-US/docs/Web/API/HTMLHyperlinkElementUtils/password), or [username](https://developer.mozilla.org/en-US/docs/Web/API/HTMLHyperlinkElementUtils/username)). **This value is unsafe**, because it leaks origins and paths from TLS-protected resources to insecure origins.\n\n**Note**: An empty string value (`""`) is both the default value, and a fallback value if `referrerpolicy` is not supported. If `referrerpolicy` is not explicitly specified on the `<script>` element, it will adopt a higher-level referrer policy, i.e. one set on the whole document or domain. If a higher-level policy is not available, the empty string is treated as being equivalent to `no-referrer-when-downgrade`.', browsers: [ "C70", "CA70", "E79", "FF65", "FFA65", "S14", "SM14" ], status: { baseline: "high", baseline_low_date: "2020-09-16", baseline_high_date: "2023-03-16" } }, { name: "text", description: "Like the `textContent` attribute, this attribute sets the text content of the element. Unlike the `textContent` attribute, however, this attribute is evaluated as executable code after the node is inserted into the DOM." } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/script" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "noscript", description: { kind: "markdown", value: "The noscript element represents nothing if scripting is enabled, and represents its children if scripting is disabled. It is used to present different markup to user agents that support scripting and those that don't support scripting, by affecting how the document is parsed." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/noscript" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "template", description: { kind: "markdown", value: "The template element is used to declare fragments of HTML that can be cloned and inserted in the document by script." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/template" } ], browsers: [ "C26", "CA26", "E13", "FF22", "FFA22", "S8", "SM8" ], status: { baseline: "high", baseline_low_date: "2015-11-12", baseline_high_date: "2018-05-12" } }, { name: "canvas", description: { kind: "markdown", value: "The canvas element provides scripts with a resolution-dependent bitmap canvas, which can be used for rendering graphs, game graphics, art, or other visual images on the fly." }, attributes: [ { name: "width", description: { kind: "markdown", value: "The width of the coordinate space in CSS pixels. Defaults to 300." }, browsers: [ "C1", "CA18", "E12", "FF1.5", "FFA4", "S2", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "height", description: { kind: "markdown", value: "The height of the coordinate space in CSS pixels. Defaults to 150." }, browsers: [ "C1", "CA18", "E12", "FF1.5", "FFA4", "S2", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "moz-opaque", description: "Lets the canvas know whether or not translucency will be a factor. If the canvas knows there's no translucency, painting performance can be optimized. This is only supported by Mozilla-based browsers; use the standardized [`canvas.getContext('2d', { alpha: false })`](https://developer.mozilla.org/en-US/docs/Web/API/HTMLCanvasElement/getContext \"The HTMLCanvasElement.getContext() method returns a drawing context on the canvas, or null if the context identifier is not supported.\") instead.", browsers: [ "FF3.5", "FFA4" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/canvas" } ], browsers: [ "C1", "CA18", "E12", "FF1.5", "FFA4", "S2", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "slot", description: { kind: "markdown", value: "The slot element is a placeholder inside a web component that you can fill with your own markup, which lets you create separate DOM trees and present them together." }, attributes: [ { name: "name", description: { kind: "markdown", value: "The slot's name.\nA **named slot** is a `<slot>` element with a `name` attribute." }, browsers: [ "C53", "CA53", "E79", "FF63", "FFA63", "S10", "SM10" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/slot" } ], browsers: [ "C53", "CA53", "E79", "FF63", "FFA63", "S10", "SM10" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "data", description: { kind: "markdown", value: "The data element links a given piece of content with a machine-readable translation." }, attributes: [ { name: "value", description: { kind: "markdown", value: "This attribute specifies the machine-readable translation of the content of the element." }, browsers: [ "C62", "CA62", "E14", "FF22", "FFA22", "S10", "SM10" ], status: { baseline: "high", baseline_low_date: "2017-10-24", baseline_high_date: "2020-04-24" } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/data" } ], browsers: [ "C62", "CA62", "E14", "FF22", "FFA22", "S10", "SM10" ], status: { baseline: "high", baseline_low_date: "2017-10-24", baseline_high_date: "2020-04-24" } }, { name: "hgroup", description: { kind: "markdown", value: "The hgroup element represents a heading and related content. It groups a single h1–h6 element with one or more p." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/hgroup" } ], browsers: [ "C5", "CA18", "E12", "FF4", "FFA4", "S5", "SM4.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "menu", description: { kind: "markdown", value: "The menu element represents an unordered list of interactive items." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/menu" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S3", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "search", description: { kind: "markdown", value: "The search element represents the parts of the document or application with form controls or other content related to performing a search or filtering operation." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/search" } ], browsers: [ "C118", "CA118", "E118", "FF118", "FFA118", "S17", "SM17" ], status: { baseline: "low", baseline_low_date: "2023-10-13" } }, { name: "fencedframe", description: { kind: "markdown", value: "The fencedframe element represents a nested browsing context, embedding another HTML page into the current one." }, attributes: [ { name: "allow", browsers: [ "C126", "CA126", "E126" ], status: { baseline: false } }, { name: "height", browsers: [ "C126", "CA126", "E126" ], status: { baseline: false } }, { name: "width", browsers: [ "C126", "CA126", "E126" ], status: { baseline: false } } ], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/fencedframe" } ], browsers: [ "C126", "CA126", "E126" ], status: { baseline: false } }, { name: "selectedcontent", description: { kind: "markdown", value: "The selectedcontent element can be used to display the content of the currently selected option element inside of a closed select element." }, attributes: [], references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Elements/selectedcontent" } ], browsers: [ "C135", "CA135", "E135" ], status: { baseline: false } } ], globalAttributes: [ { name: "accesskey", description: { kind: "markdown", value: "Provides a hint for generating a keyboard shortcut for the current element. This attribute consists of a space-separated list of characters. The browser should use the first one that exists on the computer keyboard layout." }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/accesskey" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "autocapitalize", description: { kind: "markdown", value: "Controls whether and how text input is automatically capitalized as it is entered/edited by the user. It can have the following values:\n\n* `off` or `none`, no autocapitalization is applied (all letters default to lowercase)\n* `on` or `sentences`, the first letter of each sentence defaults to a capital letter; all other letters default to lowercase\n* `words`, the first letter of each word defaults to a capital letter; all other letters default to lowercase\n* `characters`, all letters should default to uppercase" }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/autocapitalize" } ], browsers: [ "C43", "CA43", "E79", "FF111", "FFA111", "SM5" ], status: { baseline: false } }, { name: "autocorrect", description: { kind: "markdown", value: "Controls whether autocorrection of editable text is enabled for spelling and/or punctuation errors." }, valueSet: "o", references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/autocorrect" } ], browsers: [ "FF136", "FFA136", "S14.1", "SM14.5" ], status: { baseline: false } }, { name: "autofocus", description: { kind: "markdown", value: "Indicates that an element should be focused on page load, or when the [`<dialog>`](https://developer.mozilla.org/docs/Web/HTML/Element/dialog) that it is part of is displayed." }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/autofocus" } ], browsers: [ "C79", "CA79", "E79", "FF110", "FFA110", "S15.4", "SM16.4" ], status: { baseline: "high", baseline_low_date: "2023-03-27", baseline_high_date: "2025-09-27" } }, { name: "class", description: { kind: "markdown", value: 'A space-separated list of the classes of the element. Classes allows CSS and JavaScript to select and access specific elements via the [class selectors](https://developer.mozilla.org/docs/Web/CSS/Class_selectors) or functions like the method [`Document.getElementsByClassName()`](https://developer.mozilla.org/docs/Web/API/Document/getElementsByClassName "returns an array-like object of all child elements which have all of the given class names.").' }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/class" } ] }, { name: "contenteditable", description: { kind: "markdown", value: "An enumerated attribute indicating if the element should be editable by the user. If so, the browser modifies its widget to allow editing. The attribute must take one of the following values:\n\n* `true` or the _empty string_, which indicates that the element must be editable;\n* `false`, which indicates that the element must not be editable." }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/contenteditable" } ], browsers: [ "C1", "CA18", "E12", "FF3", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "contextmenu", description: { kind: "markdown", value: 'The `[**id**](#attr-id)` of a [`<menu>`](https://developer.mozilla.org/docs/Web/HTML/Element/menu "The HTML <menu> element represents a group of commands that a user can perform or activate. This includes both list menus, which might appear across the top of a screen, as well as context menus, such as those that might appear underneath a button after it has been clicked.") to use as the contextual menu for this element.' } }, { name: "dir", description: { kind: "markdown", value: "An enumerated attribute indicating the directionality of the element's text. It can have the following values:\n\n* `ltr`, which means _left to right_ and is to be used for languages that are written from the left to the right (like English);\n* `rtl`, which means _right to left_ and is to be used for languages that are written from the right to the left (like Arabic);\n* `auto`, which lets the user agent decide. It uses a basic algorithm as it parses the characters inside the element until it finds a character with a strong directionality, then it applies that directionality to the whole element." }, valueSet: "d", references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/dir" } ] }, { name: "draggable", description: { kind: "markdown", value: "An enumerated attribute indicating whether the element can be dragged, using the [Drag and Drop API](https://developer.mozilla.org/docs/DragDrop/Drag_and_Drop). It can have the following values:\n\n* `true`, which indicates that the element may be dragged\n* `false`, which indicates that the element may not be dragged." }, valueSet: "b", references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/draggable" } ] }, { name: "dropzone", description: { kind: "markdown", value: "An enumerated attribute indicating what types of content can be dropped on an element, using the [Drag and Drop API](https://developer.mozilla.org/docs/DragDrop/Drag_and_Drop). It can have the following values:\n\n* `copy`, which indicates that dropping will create a copy of the element that was dragged\n* `move`, which indicates that the element that was dragged will be moved to this new location.\n* `link`, will create a link to the dragged data." } }, { name: "enterkeyhint", description: { kind: "markdown", value: "An enumerated attribute defining what action label (or icon) to present for the enter key on virtual keyboards." }, valueSet: "enterkeyhint", references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/enterkeyhint" } ], browsers: [ "C77", "CA77", "E79", "FF94", "FFA94", "S13.1", "SM13.4" ], status: { baseline: "high", baseline_low_date: "2021-11-02", baseline_high_date: "2024-05-02" } }, { name: "exportparts", description: { kind: "markdown", value: "Used to transitively export shadow parts from a nested shadow tree into a containing light tree." }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/exportparts" } ], browsers: [ "C73", "CA73", "E79", "FF72", "FFA79", "S13.1", "SM13.4" ], status: { baseline: "high", baseline_low_date: "2020-07-28", baseline_high_date: "2023-01-28" } }, { name: "hidden", description: { kind: "markdown", value: "A Boolean attribute indicates that the element is not yet, or is no longer, _relevant_. For example, it can be used to hide elements of the page that can't be used until the login process has been completed. The browser won't render such elements. This attribute must not be used to hide content that could legitimately be shown." }, valueSet: "v", references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/hidden" } ] }, { name: "id", description: { kind: "markdown", value: "Defines a unique identifier (ID) which must be unique in the whole document. Its purpose is to identify the element when linking (using a fragment identifier), scripting, or styling (with CSS)." }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/id" } ] }, { name: "inert", description: { kind: "markdown", value: "Indicates that the element and all of its flat tree descendants become _inert_. Modal `<dialog>`s generated with [`showModal()`](https://developer.mozilla.org/docs/Web/API/HTMLDialogElement/showModal) escape inertness, meaning that they don't inherit inertness from their ancestors, but can only be made inert by having the `inert` attribute explicitly set on themselves." }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/inert" } ], browsers: [ "C102", "CA102", "E102", "FF112", "FFA112", "S15.5", "SM15.5" ], status: { baseline: "high", baseline_low_date: "2023-04-11", baseline_high_date: "2025-10-11" } }, { name: "inputmode", description: { kind: "markdown", value: 'Provides a hint to browsers as to the type of virtual keyboard configuration to use when editing this element or its contents. Used primarily on [`<input>`](https://developer.mozilla.org/docs/Web/HTML/Element/input "The HTML <input> element is used to create interactive controls for web-based forms in order to accept data from the user; a wide variety of types of input data and control widgets are available, depending on the device and user agent.") elements, but is usable on any element while in `[contenteditable](https://developer.mozilla.org/docs/Web/HTML/Global_attributes#attr-contenteditable)` mode.' }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/inputmode" } ], browsers: [ "C66", "CA66", "E79", "FF95", "FFA79", "S12.1", "SM12.2" ], status: { baseline: "high", baseline_low_date: "2021-12-07", baseline_high_date: "2024-06-07" } }, { name: "is", description: { kind: "markdown", value: "Allows you to specify that a standard HTML element should behave like a registered custom built-in element (see [Using custom elements](https://developer.mozilla.org/docs/Web/Web_Components/Using_custom_elements) for more details)." }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/is" } ], browsers: [ "C67", "CA67", "E79", "FF63", "FFA63" ], status: { baseline: false } }, { name: "itemid", description: { kind: "markdown", value: "The unique, global identifier of an item." } }, { name: "itemprop", description: { kind: "markdown", value: "Used to add properties to an item. Every HTML element may have an `itemprop` attribute specified, where an `itemprop` consists of a name and value pair." } }, { name: "itemref", description: { kind: "markdown", value: "Properties that are not descendants of an element with the `itemscope` attribute can be associated with the item using an `itemref`. It provides a list of element ids (not `itemid`s) with additional properties elsewhere in the document." } }, { name: "itemscope", description: { kind: "markdown", value: "`itemscope` (usually) works along with `[itemtype](https://developer.mozilla.org/docs/Web/HTML/Global_attributes#attr-itemtype)` to specify that the HTML contained in a block is about a particular item. `itemscope` creates the Item and defines the scope of the `itemtype` associated with it. `itemtype` is a valid URL of a vocabulary (such as [schema.org](https://schema.org/)) that describes the item and its properties context." }, valueSet: "v" }, { name: "itemtype", description: { kind: "markdown", value: "Specifies the URL of the vocabulary that will be used to define `itemprop`s (item properties) in the data structure. `[itemscope](https://developer.mozilla.org/docs/Web/HTML/Global_attributes#attr-itemscope)` is used to set the scope of where in the data structure the vocabulary set by `itemtype` will be active." } }, { name: "lang", description: { kind: "markdown", value: "Helps define the language of an element: the language that non-editable elements are in, or the language that editable elements should be written in by the user. The attribute contains one “language tag” (made of hyphen-separated “language subtags”) in the format defined in [_Tags for Identifying Languages (BCP47)_](https://www.ietf.org/rfc/bcp/bcp47.txt). [**xml:lang**](#attr-xml:lang) has priority over it." }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/lang" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "nonce", description: { kind: "markdown", value: 'Defines a cryptographic nonce ("number used once") which can be used by [Content Security Policy](https://developer.mozilla.org/docs/Web/HTTP/Guides/CSP) to determine whether or not a given fetch will be allowed to proceed for a given element.' }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/nonce" } ], browsers: [ "C61", "CA61", "E79", "FF75", "FFA79", "S15.5", "SM15.5" ], status: { baseline: "high", baseline_low_date: "2022-05-16", baseline_high_date: "2024-11-16" } }, { name: "part", description: { kind: "markdown", value: 'A space-separated list of the part names of the element. Part names allows CSS to select and style specific elements in a shadow tree via the [`::part`](https://developer.mozilla.org/docs/Web/CSS/::part "The ::part CSS pseudo-element represents any element within a shadow tree that has a matching part attribute.") pseudo-element.' }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/part" } ], browsers: [ "C73", "CA73", "E79", "FF72", "FFA79", "S13.1", "SM13.4" ], status: { baseline: "high", baseline_low_date: "2020-07-28", baseline_high_date: "2023-01-28" } }, { name: "popover", description: { kind: "markdown", value: "Designates an element as a popover element." }, valueSet: "popover", references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/popover" } ], browsers: [ "C114", "CA114", "E114", "FF125", "FFA125", "S17", "SM17" ], status: { baseline: "low", baseline_low_date: "2024-04-16" } }, { name: "role", valueSet: "roles" }, { name: "slot", description: { kind: "markdown", value: "Assigns a slot in a [shadow DOM](https://developer.mozilla.org/docs/Web/Web_Components/Shadow_DOM) shadow tree to an element: An element with a `slot` attribute is assigned to the slot created by the [`<slot>`](https://developer.mozilla.org/docs/Web/HTML/Element/slot \"The HTML <slot> element—part of the Web Components technology suite—is a placeholder inside a web component that you can fill with your own markup, which lets you create separate DOM trees and present them together.\") element whose `[name](https://developer.mozilla.org/docs/Web/HTML/Element/slot#attr-name)` attribute's value matches that `slot` attribute's value." }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/slot" } ], browsers: [ "C53", "CA53", "E79", "FF63", "FFA63", "S10", "SM10" ], status: { baseline: "high", baseline_low_date: "2020-01-15", baseline_high_date: "2022-07-15" } }, { name: "spellcheck", description: { kind: "markdown", value: "An enumerated attribute defines whether the element may be checked for spelling errors. It may have the following values:\n\n* `true`, which indicates that the element should be, if possible, checked for spelling errors;\n* `false`, which indicates that the element should not be checked for spelling errors." }, valueSet: "b", references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/spellcheck" } ], browsers: [ "C9", "CA47", "E12", "FF2", "FFA57", "S5.1", "SM5" ], status: { baseline: "high", baseline_low_date: "2017-11-28", baseline_high_date: "2020-05-28" } }, { name: "style", description: { kind: "markdown", value: 'Contains [CSS](https://developer.mozilla.org/docs/Web/CSS) styling declarations to be applied to the element. Note that it is recommended for styles to be defined in a separate file or files. This attribute and the [`<style>`](https://developer.mozilla.org/docs/Web/HTML/Element/style "The HTML <style> element contains style information for a document, or part of a document.") element have mainly the purpose of allowing for quick styling, for example for testing purposes.' }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/style" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S1", "SM1" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "tabindex", description: { kind: "markdown", value: `An integer attribute indicating if the element can take input focus (is _focusable_), if it should participate to sequential keyboard navigation, and if so, at what position. It can take several values: * a _negative value_ means that the element should be focusable, but should not be reachable via sequential keyboard navigation; * \`0\` means that the element should be focusable and reachable via sequential keyboard navigation, but its relative order is defined by the platform convention; * a _positive value_ means that the element should be focusable and reachable via sequential keyboard navigation; the order in which the elements are focused is the increasing value of the [**tabindex**](#attr-tabindex). If several elements share the same tabindex, their relative order follows their relative positions in the document.` }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/tabindex" } ], browsers: [ "C1", "CA18", "E12", "FF1.5", "FFA4", "S3.1", "SM2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "title", description: { kind: "markdown", value: "Contains a text representing advisory information related to the element it belongs to. Such information can typically, but not necessarily, be presented to the user as a tooltip." }, references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/title" } ], browsers: [ "C1", "CA18", "E12", "FF1", "FFA4", "S4", "SM3.2" ], status: { baseline: "high", baseline_low_date: "2015-07-29", baseline_high_date: "2018-01-29" } }, { name: "translate", description: { kind: "markdown", value: "An enumerated attribute that is used to specify whether an element's attribute values and the values of its [`Text`](https://developer.mozilla.org/docs/Web/API/Text \"The Text interface represents the textual content of Element or Attr. If an element has no markup within its content, it has a single child implementing Text that contains the element's text. However, if the element contains markup, it is parsed into information items and Text nodes that form its children.\") node children are to be translated when the page is localized, or whether to leave them unchanged. It can have the following values:\n\n* empty string and `yes`, which indicates that the element will be translated.\n* `no`, which indicates that the element will not be translated." }, valueSet: "y", references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/translate" } ], browsers: [ "C19", "CA25", "E79", "FF111", "FFA111", "S6", "SM6" ], status: { baseline: "high", baseline_low_date: "2023-03-14", baseline_high_date: "2025-09-14" } }, { name: "virtualkeyboardpolicy", description: { kind: "markdown", value: "When specified on an element that the element's content is editable (for example, it is an `<input>` or `<textarea>` element, or an element with the `contenteditable` attribute set), it controls the on-screen virtual keyboard behavior on devices such as tablets, mobile phones, or other devices where a hardware keyboard may not be available." }, valueSet: "b", references: [ { name: "MDN Reference", url: "https://developer.mozilla.org/docs/Web/HTML/Reference/Global_attributes/virtualkeyboardpolicy" } ], browsers: [ "C94", "CA94", "E94" ], status: { baseline: false } }, { name: "onabort", description: { kind: "markdown", value: "The loading of a resource has been aborted." } }, { name: "onblur", description: { kind: "markdown", value: "An element has lost focus (does not bubble)." } }, { name: "oncanplay", description: { kind: "markdown", value: "The user agent can play the media, but estimates that not enough data has been loaded to play the media up to its end without having to stop for further buffering of content." } }, { name: "oncanplaythrough", description: { kind: "markdown", value: "The user agent can play the media up to its end without having to stop for further buffering of content." } }, { name: "onchange", description: { kind: "markdown", value: "The change event is fired for <input>, <select>, and <textarea> elements when a change to the element's value is committed by the user." } }, { name: "onclick", description: { kind: "markdown", value: "A pointing device button has been pressed and released on an element." } }, { name: "oncontextmenu", description: { kind: "markdown", value: "The right button of the mouse is clicked (before the context menu is displayed)." } }, { name: "ondblclick", description: { kind: "markdown", value: "A pointing device button is clicked twice on an element." } }, { name: "ondrag", description: { kind: "markdown", value: "An element or text selection is being dragged (every 350ms)." } }, { name: "ondragend", description: { kind: "markdown", value: "A drag operation is being ended (by releasing a mouse button or hitting the escape key)." } }, { name: "ondragenter", description: { kind: "markdown", value: "A dragged element or text selection enters a valid drop target." } }, { name: "ondragleave", description: { kind: "markdown", value: "A dragged element or text selection leaves a valid drop target." } }, { name: "ondragover", description: { kind: "markdown", value: "An element or text selection is being dragged over a valid drop target (every 350ms)." } }, { name: "ondragstart", description: { kind: "markdown", value: "The user starts dragging an element or text selection." } }, { name: "ondrop", description: { kind: "markdown", value: "An element is dropped on a valid drop target." } }, { name: "ondurationchange", description: { kind: "markdown", value: "The duration attribute has been updated." } }, { name: "onemptied", description: { kind: "markdown", value: "The media has become empty; for example, this event is sent if the media has already been loaded (or partially loaded), and the load() method is called to reload it." } }, { name: "onended", description: { kind: "markdown", value: "Playback has stopped because the end of the media was reached." } }, { name: "onerror", description: { kind: "markdown", value: "A resource failed to load." } }, { name: "onfocus", description: { kind: "markdown", value: "An element has received focus (does not bubble)." } }, { name: "onformchange" }, { name: "onforminput" }, { name: "oninput", description: { kind: "markdown", value: "The value of an element changes or the content of an element with the attribute contenteditable is modified." } }, { name: "oninvalid", description: { kind: "markdown", value: "A submittable element has been checked and doesn't satisfy its constraints." } }, { name: "onkeydown", description: { kind: "markdown", value: "A key is pressed down." } }, { name: "onkeypress", description: { kind: "markdown", value: "A key is pressed down and that key normally produces a character value (use input instead)." } }, { name: "onkeyup", description: { kind: "markdown", value: "A key is released." } }, { name: "onload", description: { kind: "markdown", value: "A resource and its dependent resources have finished loading." } }, { name: "onloadeddata", description: { kind: "markdown", value: "The first frame of the media has finished loading." } }, { name: "onloadedmetadata", description: { kind: "markdown", value: "The metadata has been loaded." } }, { name: "onloadstart", description: { kind: "markdown", value: "Progress has begun." } }, { name: "onmousedown", description: { kind: "markdown", value: "A pointing device button (usually a mouse) is pressed on an element." } }, { name: "onmousemove", description: { kind: "markdown", value: "A pointing device is moved over an element." } }, { name: "onmouseout", description: { kind: "markdown", value: "A pointing device is moved off the element that has the listener attached or off one of its children." } }, { name: "onmouseover", description: { kind: "markdown", value: "A pointing device is moved onto the element that has the listener attached or onto one of its children." } }, { name: "onmouseup", description: { kind: "markdown", value: "A pointing device button is released over an element." } }, { name: "onmousewheel" }, { name: "onmouseenter", description: { kind: "markdown", value: "A pointing device is moved onto the element that has the listener attached." } }, { name: "onmouseleave", description: { kind: "markdown", value: "A pointing device is moved off the element that has the listener attached." } }, { name: "onpause", description: { kind: "markdown", value: "Playback has been paused." } }, { name: "onplay", description: { kind: "markdown", value: "Playback has begun." } }, { name: "onplaying", description: { kind: "markdown", value: "Playback is ready to start after having been paused or delayed due to lack of data." } }, { name: "onprogress", description: { kind: "markdown", value: "In progress." } }, { name: "onratechange", description: { kind: "markdown", value: "The playback rate has changed." } }, { name: "onreset", description: { kind: "markdown", value: "A form is reset." } }, { name: "onresize", description: { kind: "markdown", value: "The document view has been resized." } }, { name: "onreadystatechange", description: { kind: "markdown", value: "The readyState attribute of a document has changed." } }, { name: "onscroll", description: { kind: "markdown", value: "The document view or an element has been scrolled." } }, { name: "onseeked", description: { kind: "markdown", value: "A seek operation completed." } }, { name: "onseeking", description: { kind: "markdown", value: "A seek operation began." } }, { name: "onselect", description: { kind: "markdown", value: "Some text is being selected." } }, { name: "onshow", description: { kind: "markdown", value: "A contextmenu event was fired on/bubbled to an element that has a contextmenu attribute" } }, { name: "onstalled", description: { kind: "markdown", value: "The user agent is trying to fetch media data, but data is unexpectedly not forthcoming." } }, { name: "onsubmit", description: { kind: "markdown", value: "A form is submitted." } }, { name: "onsuspend", description: { kind: "markdown", value: "Media data loading has been suspended." } }, { name: "ontimeupdate", description: { kind: "markdown", value: "The time indicated by the currentTime attribute has been updated." } }, { name: "onvolumechange", description: { kind: "markdown", value: "The volume has changed." } }, { name: "onwaiting", description: { kind: "markdown", value: "Playback has stopped because of a temporary lack of data." } }, { name: "onpointercancel", description: { kind: "markdown", value: "The pointer is unlikely to produce any more events." } }, { name: "onpointerdown", description: { kind: "markdown", value: "The pointer enters the active buttons state." } }, { name: "onpointerenter", description: { kind: "markdown", value: "Pointing device is moved inside the hit-testing boundary." } }, { name: "onpointerleave", description: { kind: "markdown", value: "Pointing device is moved out of the hit-testing boundary." } }, { name: "onpointerlockchange", description: { kind: "markdown", value: "The pointer was locked or released." } }, { name: "onpointerlockerror", description: { kind: "markdown", value: "It was impossible to lock the pointer for technical reasons or because the permission was denied." } }, { name: "onpointermove", description: { kind: "markdown", value: "The pointer changed coordinates." } }, { name: "onpointerout", description: { kind: "markdown", value: "The pointing device moved out of hit-testing boundary or leaves detectable hover range." } }, { name: "onpointerover", description: { kind: "markdown", value: "The pointing device is moved into the hit-testing boundary." } }, { name: "onpointerup", description: { kind: "markdown", value: "The pointer leaves the active buttons state." } }, { name: "aria-activedescendant", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-activedescendant" } ], description: { kind: "markdown", value: "Identifies the currently active element when DOM focus is on a [`composite`](https://www.w3.org/TR/wai-aria-1.1/#composite) widget, [`textbox`](https://www.w3.org/TR/wai-aria-1.1/#textbox), [`group`](https://www.w3.org/TR/wai-aria-1.1/#group), or [`application`](https://www.w3.org/TR/wai-aria-1.1/#application)." } }, { name: "aria-atomic", valueSet: "b", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-atomic" } ], description: { kind: "markdown", value: "Indicates whether [assistive technologies](https://www.w3.org/TR/wai-aria-1.1/#dfn-assistive-technology) will present all, or only parts of, the changed region based on the change notifications defined by the [`aria-relevant`](https://www.w3.org/TR/wai-aria-1.1/#aria-relevant) attribute." } }, { name: "aria-autocomplete", valueSet: "autocomplete", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-autocomplete" } ], description: { kind: "markdown", value: "Indicates whether inputting text could trigger display of one or more predictions of the user's intended value for an input and specifies how predictions would be presented if they are made." } }, { name: "aria-busy", valueSet: "b", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-busy" } ], description: { kind: "markdown", value: "Indicates an element is being modified and that assistive technologies _MAY_ want to wait until the modifications are complete before exposing them to the user." } }, { name: "aria-checked", valueSet: "tristate", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-checked" } ], description: { kind: "markdown", value: 'Indicates the current "checked" [state](https://www.w3.org/TR/wai-aria-1.1/#dfn-state) of checkboxes, radio buttons, and other [widgets](https://www.w3.org/TR/wai-aria-1.1/#dfn-widget). See related [`aria-pressed`](https://www.w3.org/TR/wai-aria-1.1/#aria-pressed) and [`aria-selected`](https://www.w3.org/TR/wai-aria-1.1/#aria-selected).' } }, { name: "aria-colcount", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-colcount" } ], description: { kind: "markdown", value: "Defines the total number of columns in a [`table`](https://www.w3.org/TR/wai-aria-1.1/#table), [`grid`](https://www.w3.org/TR/wai-aria-1.1/#grid), or [`treegrid`](https://www.w3.org/TR/wai-aria-1.1/#treegrid). See related [`aria-colindex`](https://www.w3.org/TR/wai-aria-1.1/#aria-colindex)." } }, { name: "aria-colindex", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-colindex" } ], description: { kind: "markdown", value: "Defines an [element's](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) column index or position with respect to the total number of columns within a [`table`](https://www.w3.org/TR/wai-aria-1.1/#table), [`grid`](https://www.w3.org/TR/wai-aria-1.1/#grid), or [`treegrid`](https://www.w3.org/TR/wai-aria-1.1/#treegrid). See related [`aria-colcount`](https://www.w3.org/TR/wai-aria-1.1/#aria-colcount) and [`aria-colspan`](https://www.w3.org/TR/wai-aria-1.1/#aria-colspan)." } }, { name: "aria-colspan", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-colspan" } ], description: { kind: "markdown", value: "Defines the number of columns spanned by a cell or gridcell within a [`table`](https://www.w3.org/TR/wai-aria-1.1/#table), [`grid`](https://www.w3.org/TR/wai-aria-1.1/#grid), or [`treegrid`](https://www.w3.org/TR/wai-aria-1.1/#treegrid). See related [`aria-colindex`](https://www.w3.org/TR/wai-aria-1.1/#aria-colindex) and [`aria-rowspan`](https://www.w3.org/TR/wai-aria-1.1/#aria-rowspan)." } }, { name: "aria-controls", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-controls" } ], description: { kind: "markdown", value: "Identifies the [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) (or elements) whose contents or presence are controlled by the current element. See related [`aria-owns`](https://www.w3.org/TR/wai-aria-1.1/#aria-owns)." } }, { name: "aria-current", valueSet: "current", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-current" } ], description: { kind: "markdown", value: "Indicates the [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) that represents the current item within a container or set of related elements." } }, { name: "aria-describedby", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-describedby" } ], description: { kind: "markdown", value: "Identifies the [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) (or elements) that describes the [object](https://www.w3.org/TR/wai-aria-1.1/#dfn-object). See related [`aria-labelledby`](https://www.w3.org/TR/wai-aria-1.1/#aria-labelledby)." } }, { name: "aria-disabled", valueSet: "b", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-disabled" } ], description: { kind: "markdown", value: "Indicates that the [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) is [perceivable](https://www.w3.org/TR/wai-aria-1.1/#dfn-perceivable) but disabled, so it is not editable or otherwise [operable](https://www.w3.org/TR/wai-aria-1.1/#dfn-operable). See related [`aria-hidden`](https://www.w3.org/TR/wai-aria-1.1/#aria-hidden) and [`aria-readonly`](https://www.w3.org/TR/wai-aria-1.1/#aria-readonly)." } }, { name: "aria-dropeffect", valueSet: "dropeffect", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-dropeffect" } ], description: { kind: "markdown", value: "\\[Deprecated in ARIA 1.1\\] Indicates what functions can be performed when a dragged object is released on the drop target." } }, { name: "aria-errormessage", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-errormessage" } ], description: { kind: "markdown", value: "Identifies the [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) that provides an error message for the [object](https://www.w3.org/TR/wai-aria-1.1/#dfn-object). See related [`aria-invalid`](https://www.w3.org/TR/wai-aria-1.1/#aria-invalid) and [`aria-describedby`](https://www.w3.org/TR/wai-aria-1.1/#aria-describedby)." } }, { name: "aria-expanded", valueSet: "u", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-expanded" } ], description: { kind: "markdown", value: "Indicates whether the element, or another grouping element it controls, is currently expanded or collapsed." } }, { name: "aria-flowto", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-flowto" } ], description: { kind: "markdown", value: "Identifies the next [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) (or elements) in an alternate reading order of content which, at the user's discretion, allows assistive technology to override the general default of reading in document source order." } }, { name: "aria-grabbed", valueSet: "u", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-grabbed" } ], description: { kind: "markdown", value: `\\[Deprecated in ARIA 1.1\\] Indicates an element's "grabbed" [state](https://www.w3.org/TR/wai-aria-1.1/#dfn-state) in a drag-and-drop operation.` } }, { name: "aria-haspopup", valueSet: "haspopup", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-haspopup" } ], description: { kind: "markdown", value: "Indicates the availability and type of interactive popup element, such as menu or dialog, that can be triggered by an [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element)." } }, { name: "aria-hidden", valueSet: "b", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-hidden" } ], description: { kind: "markdown", value: "Indicates whether the [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) is exposed to an accessibility API. See related [`aria-disabled`](https://www.w3.org/TR/wai-aria-1.1/#aria-disabled)." } }, { name: "aria-invalid", valueSet: "invalid", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-invalid" } ], description: { kind: "markdown", value: "Indicates the entered value does not conform to the format expected by the application. See related [`aria-errormessage`](https://www.w3.org/TR/wai-aria-1.1/#aria-errormessage)." } }, { name: "aria-label", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-label" } ], description: { kind: "markdown", value: "Defines a string value that labels the current element. See related [`aria-labelledby`](https://www.w3.org/TR/wai-aria-1.1/#aria-labelledby)." } }, { name: "aria-labelledby", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-labelledby" } ], description: { kind: "markdown", value: "Identifies the [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) (or elements) that labels the current element. See related [`aria-describedby`](https://www.w3.org/TR/wai-aria-1.1/#aria-describedby)." } }, { name: "aria-level", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-level" } ], description: { kind: "markdown", value: "Defines the hierarchical level of an [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) within a structure." } }, { name: "aria-live", valueSet: "live", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-live" } ], description: { kind: "markdown", value: "Indicates that an [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) will be updated, and describes the types of updates the [user agents](https://www.w3.org/TR/wai-aria-1.1/#dfn-user-agent), [assistive technologies](https://www.w3.org/TR/wai-aria-1.1/#dfn-assistive-technology), and user can expect from the [live region](https://www.w3.org/TR/wai-aria-1.1/#dfn-live-region)." } }, { name: "aria-modal", valueSet: "b", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-modal" } ], description: { kind: "markdown", value: "Indicates whether an [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) is modal when displayed." } }, { name: "aria-multiline", valueSet: "b", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-multiline" } ], description: { kind: "markdown", value: "Indicates whether a text box accepts multiple lines of input or only a single line." } }, { name: "aria-multiselectable", valueSet: "b", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-multiselectable" } ], description: { kind: "markdown", value: "Indicates that the user may select more than one item from the current selectable descendants." } }, { name: "aria-orientation", valueSet: "orientation", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-orientation" } ], description: { kind: "markdown", value: "Indicates whether the element's orientation is horizontal, vertical, or unknown/ambiguous." } }, { name: "aria-owns", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-owns" } ], description: { kind: "markdown", value: "Identifies an [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) (or elements) in order to define a visual, functional, or contextual parent/child [relationship](https://www.w3.org/TR/wai-aria-1.1/#dfn-relationship) between DOM elements where the DOM hierarchy cannot be used to represent the relationship. See related [`aria-controls`](https://www.w3.org/TR/wai-aria-1.1/#aria-controls)." } }, { name: "aria-placeholder", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-placeholder" } ], description: { kind: "markdown", value: "Defines a short hint (a word or short phrase) intended to aid the user with data entry when the control has no value. A hint could be a sample value or a brief description of the expected format." } }, { name: "aria-posinset", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-posinset" } ], description: { kind: "markdown", value: "Defines an [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element)'s number or position in the current set of listitems or treeitems. Not required if all elements in the set are present in the DOM. See related [`aria-setsize`](https://www.w3.org/TR/wai-aria-1.1/#aria-setsize)." } }, { name: "aria-pressed", valueSet: "tristate", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-pressed" } ], description: { kind: "markdown", value: 'Indicates the current "pressed" [state](https://www.w3.org/TR/wai-aria-1.1/#dfn-state) of toggle buttons. See related [`aria-checked`](https://www.w3.org/TR/wai-aria-1.1/#aria-checked) and [`aria-selected`](https://www.w3.org/TR/wai-aria-1.1/#aria-selected).' } }, { name: "aria-readonly", valueSet: "b", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-readonly" } ], description: { kind: "markdown", value: "Indicates that the [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) is not editable, but is otherwise [operable](https://www.w3.org/TR/wai-aria-1.1/#dfn-operable). See related [`aria-disabled`](https://www.w3.org/TR/wai-aria-1.1/#aria-disabled)." } }, { name: "aria-relevant", valueSet: "relevant", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-relevant" } ], description: { kind: "markdown", value: "Indicates what notifications the user agent will trigger when the accessibility tree within a live region is modified. See related [`aria-atomic`](https://www.w3.org/TR/wai-aria-1.1/#aria-atomic)." } }, { name: "aria-required", valueSet: "b", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-required" } ], description: { kind: "markdown", value: "Indicates that user input is required on the [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) before a form may be submitted." } }, { name: "aria-roledescription", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-roledescription" } ], description: { kind: "markdown", value: "Defines a human-readable, author-localized description for the [role](https://www.w3.org/TR/wai-aria-1.1/#dfn-role) of an [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element)." } }, { name: "aria-rowcount", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-rowcount" } ], description: { kind: "markdown", value: "Defines the total number of rows in a [`table`](https://www.w3.org/TR/wai-aria-1.1/#table), [`grid`](https://www.w3.org/TR/wai-aria-1.1/#grid), or [`treegrid`](https://www.w3.org/TR/wai-aria-1.1/#treegrid). See related [`aria-rowindex`](https://www.w3.org/TR/wai-aria-1.1/#aria-rowindex)." } }, { name: "aria-rowindex", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-rowindex" } ], description: { kind: "markdown", value: "Defines an [element's](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) row index or position with respect to the total number of rows within a [`table`](https://www.w3.org/TR/wai-aria-1.1/#table), [`grid`](https://www.w3.org/TR/wai-aria-1.1/#grid), or [`treegrid`](https://www.w3.org/TR/wai-aria-1.1/#treegrid). See related [`aria-rowcount`](https://www.w3.org/TR/wai-aria-1.1/#aria-rowcount) and [`aria-rowspan`](https://www.w3.org/TR/wai-aria-1.1/#aria-rowspan)." } }, { name: "aria-rowspan", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-rowspan" } ], description: { kind: "markdown", value: "Defines the number of rows spanned by a cell or gridcell within a [`table`](https://www.w3.org/TR/wai-aria-1.1/#table), [`grid`](https://www.w3.org/TR/wai-aria-1.1/#grid), or [`treegrid`](https://www.w3.org/TR/wai-aria-1.1/#treegrid). See related [`aria-rowindex`](https://www.w3.org/TR/wai-aria-1.1/#aria-rowindex) and [`aria-colspan`](https://www.w3.org/TR/wai-aria-1.1/#aria-colspan)." } }, { name: "aria-selected", valueSet: "u", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-selected" } ], description: { kind: "markdown", value: 'Indicates the current "selected" [state](https://www.w3.org/TR/wai-aria-1.1/#dfn-state) of various [widgets](https://www.w3.org/TR/wai-aria-1.1/#dfn-widget). See related [`aria-checked`](https://www.w3.org/TR/wai-aria-1.1/#aria-checked) and [`aria-pressed`](https://www.w3.org/TR/wai-aria-1.1/#aria-pressed).' } }, { name: "aria-setsize", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-setsize" } ], description: { kind: "markdown", value: "Defines the number of items in the current set of listitems or treeitems. Not required if all elements in the set are present in the DOM. See related [`aria-posinset`](https://www.w3.org/TR/wai-aria-1.1/#aria-posinset)." } }, { name: "aria-sort", valueSet: "sort", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-sort" } ], description: { kind: "markdown", value: "Indicates if items in a table or grid are sorted in ascending or descending order." } }, { name: "aria-valuemax", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-valuemax" } ], description: { kind: "markdown", value: "Defines the maximum allowed value for a range [widget](https://www.w3.org/TR/wai-aria-1.1/#dfn-widget)." } }, { name: "aria-valuemin", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-valuemin" } ], description: { kind: "markdown", value: "Defines the minimum allowed value for a range [widget](https://www.w3.org/TR/wai-aria-1.1/#dfn-widget)." } }, { name: "aria-valuenow", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-valuenow" } ], description: { kind: "markdown", value: "Defines the current value for a range [widget](https://www.w3.org/TR/wai-aria-1.1/#dfn-widget). See related [`aria-valuetext`](https://www.w3.org/TR/wai-aria-1.1/#aria-valuetext)." } }, { name: "aria-valuetext", references: [ { name: "WAI-ARIA Reference", url: "https://www.w3.org/TR/wai-aria-1.1/#aria-valuetext" } ], description: { kind: "markdown", value: "Defines the human readable text alternative of [`aria-valuenow`](https://www.w3.org/TR/wai-aria-1.1/#aria-valuenow) for a range [widget](https://www.w3.org/TR/wai-aria-1.1/#dfn-widget)." } }, { name: "aria-details", description: { kind: "markdown", value: "Identifies the [element](https://www.w3.org/TR/wai-aria-1.1/#dfn-element) that provides a detailed, extended description for the [object](https://www.w3.org/TR/wai-aria-1.1/#dfn-object). See related [`aria-describedby`](https://www.w3.org/TR/wai-aria-1.1/#aria-describedby)." } }, { name: "aria-keyshortcuts", description: { kind: "markdown", value: "Indicates keyboard shortcuts that an author has implemented to activate or give focus to an element." } } ], valueSets: [ { name: "b", values: [ { name: "true" }, { name: "false" } ] }, { name: "u", values: [ { name: "true" }, { name: "false" }, { name: "undefined" } ] }, { name: "o", values: [ { name: "on" }, { name: "off" } ] }, { name: "y", values: [ { name: "yes" }, { name: "no" } ] }, { name: "w", values: [ { name: "soft" }, { name: "hard" } ] }, { name: "d", values: [ { name: "ltr" }, { name: "rtl" }, { name: "auto" } ] }, { name: "m", values: [ { name: "get", description: { kind: "markdown", value: "Corresponds to the HTTP [GET method](https://www.w3.org/Protocols/rfc2616/rfc2616-sec9.html#sec9.3); form data are appended to the `action` attribute URI with a '?' as separator, and the resulting URI is sent to the server. Use this method when the form has no side-effects and contains only ASCII characters." } }, { name: "post", description: { kind: "markdown", value: "Corresponds to the HTTP [POST method](https://www.w3.org/Protocols/rfc2616/rfc2616-sec9.html#sec9.5); form data are included in the body of the form and sent to the server." } }, { name: "dialog", description: { kind: "markdown", value: "Use when the form is inside a [`<dialog>`](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/dialog) element to close the dialog when submitted." } } ] }, { name: "fm", values: [ { name: "get" }, { name: "post" } ] }, { name: "s", values: [ { name: "row" }, { name: "col" }, { name: "rowgroup" }, { name: "colgroup" } ] }, { name: "t", values: [ { name: "hidden" }, { name: "text" }, { name: "search" }, { name: "tel" }, { name: "url" }, { name: "email" }, { name: "password" }, { name: "datetime" }, { name: "date" }, { name: "month" }, { name: "week" }, { name: "time" }, { name: "datetime-local" }, { name: "number" }, { name: "range" }, { name: "color" }, { name: "checkbox" }, { name: "radio" }, { name: "file" }, { name: "submit" }, { name: "image" }, { name: "reset" }, { name: "button" } ] }, { name: "im", values: [ { name: "verbatim" }, { name: "latin" }, { name: "latin-name" }, { name: "latin-prose" }, { name: "full-width-latin" }, { name: "kana" }, { name: "kana-name" }, { name: "katakana" }, { name: "numeric" }, { name: "tel" }, { name: "email" }, { name: "url" } ] }, { name: "bt", values: [ { name: "button" }, { name: "submit" }, { name: "reset" } ] }, { name: "lt", values: [ { name: "1" }, { name: "a" }, { name: "A" }, { name: "i" }, { name: "I" } ] }, { name: "mt", values: [ { name: "context" }, { name: "toolbar" } ] }, { name: "mit", values: [ { name: "command" }, { name: "checkbox" }, { name: "radio" } ] }, { name: "et", values: [ { name: "application/x-www-form-urlencoded" }, { name: "multipart/form-data" }, { name: "text/plain" } ] }, { name: "tk", values: [ { name: "subtitles" }, { name: "captions" }, { name: "descriptions" }, { name: "chapters" }, { name: "metadata" } ] }, { name: "pl", values: [ { name: "none" }, { name: "metadata" }, { name: "auto" } ] }, { name: "sh", values: [ { name: "circle" }, { name: "default" }, { name: "poly" }, { name: "rect" } ] }, { name: "xo", values: [ { name: "anonymous" }, { name: "use-credentials" } ] }, { name: "target", values: [ { name: "_self" }, { name: "_blank" }, { name: "_parent" }, { name: "_top" } ] }, { name: "sb", values: [ { name: "allow-forms" }, { name: "allow-modals" }, { name: "allow-pointer-lock" }, { name: "allow-popups" }, { name: "allow-popups-to-escape-sandbox" }, { name: "allow-same-origin" }, { name: "allow-scripts" }, { name: "allow-top-navigation" } ] }, { name: "tristate", values: [ { name: "true" }, { name: "false" }, { name: "mixed" }, { name: "undefined" } ] }, { name: "inputautocomplete", values: [ { name: "additional-name" }, { name: "address-level1" }, { name: "address-level2" }, { name: "address-level3" }, { name: "address-level4" }, { name: "address-line1" }, { name: "address-line2" }, { name: "address-line3" }, { name: "bday" }, { name: "bday-year" }, { name: "bday-day" }, { name: "bday-month" }, { name: "billing" }, { name: "cc-additional-name" }, { name: "cc-csc" }, { name: "cc-exp" }, { name: "cc-exp-month" }, { name: "cc-exp-year" }, { name: "cc-family-name" }, { name: "cc-given-name" }, { name: "cc-name" }, { name: "cc-number" }, { name: "cc-type" }, { name: "country" }, { name: "country-name" }, { name: "current-password" }, { name: "email" }, { name: "family-name" }, { name: "fax" }, { name: "given-name" }, { name: "home" }, { name: "honorific-prefix" }, { name: "honorific-suffix" }, { name: "impp" }, { name: "language" }, { name: "mobile" }, { name: "name" }, { name: "new-password" }, { name: "nickname" }, { name: "off" }, { name: "on" }, { name: "organization" }, { name: "organization-title" }, { name: "pager" }, { name: "photo" }, { name: "postal-code" }, { name: "sex" }, { name: "shipping" }, { name: "street-address" }, { name: "tel-area-code" }, { name: "tel" }, { name: "tel-country-code" }, { name: "tel-extension" }, { name: "tel-local" }, { name: "tel-local-prefix" }, { name: "tel-local-suffix" }, { name: "tel-national" }, { name: "transaction-amount" }, { name: "transaction-currency" }, { name: "url" }, { name: "username" }, { name: "work" } ] }, { name: "autocomplete", values: [ { name: "inline" }, { name: "list" }, { name: "both" }, { name: "none" } ] }, { name: "current", values: [ { name: "page" }, { name: "step" }, { name: "location" }, { name: "date" }, { name: "time" }, { name: "true" }, { name: "false" } ] }, { name: "dropeffect", values: [ { name: "copy" }, { name: "move" }, { name: "link" }, { name: "execute" }, { name: "popup" }, { name: "none" } ] }, { name: "invalid", values: [ { name: "grammar" }, { name: "false" }, { name: "spelling" }, { name: "true" } ] }, { name: "live", values: [ { name: "off" }, { name: "polite" }, { name: "assertive" } ] }, { name: "orientation", values: [ { name: "vertical" }, { name: "horizontal" }, { name: "undefined" } ] }, { name: "relevant", values: [ { name: "additions" }, { name: "removals" }, { name: "text" }, { name: "all" }, { name: "additions text" } ] }, { name: "sort", values: [ { name: "ascending" }, { name: "descending" }, { name: "none" }, { name: "other" } ] }, { name: "roles", values: [ { name: "alert" }, { name: "alertdialog" }, { name: "button" }, { name: "checkbox" }, { name: "dialog" }, { name: "gridcell" }, { name: "link" }, { name: "log" }, { name: "marquee" }, { name: "menuitem" }, { name: "menuitemcheckbox" }, { name: "menuitemradio" }, { name: "option" }, { name: "progressbar" }, { name: "radio" }, { name: "scrollbar" }, { name: "searchbox" }, { name: "slider" }, { name: "spinbutton" }, { name: "status" }, { name: "switch" }, { name: "tab" }, { name: "tabpanel" }, { name: "textbox" }, { name: "timer" }, { name: "tooltip" }, { name: "treeitem" }, { name: "combobox" }, { name: "grid" }, { name: "listbox" }, { name: "menu" }, { name: "menubar" }, { name: "radiogroup" }, { name: "tablist" }, { name: "tree" }, { name: "treegrid" }, { name: "application" }, { name: "article" }, { name: "cell" }, { name: "columnheader" }, { name: "definition" }, { name: "directory" }, { name: "document" }, { name: "feed" }, { name: "figure" }, { name: "group" }, { name: "heading" }, { name: "img" }, { name: "list" }, { name: "listitem" }, { name: "math" }, { name: "none" }, { name: "note" }, { name: "presentation" }, { name: "region" }, { name: "row" }, { name: "rowgroup" }, { name: "rowheader" }, { name: "separator" }, { name: "table" }, { name: "term" }, { name: "text" }, { name: "toolbar" }, { name: "banner" }, { name: "complementary" }, { name: "contentinfo" }, { name: "form" }, { name: "main" }, { name: "navigation" }, { name: "region" }, { name: "search" }, { name: "doc-abstract" }, { name: "doc-acknowledgments" }, { name: "doc-afterword" }, { name: "doc-appendix" }, { name: "doc-backlink" }, { name: "doc-biblioentry" }, { name: "doc-bibliography" }, { name: "doc-biblioref" }, { name: "doc-chapter" }, { name: "doc-colophon" }, { name: "doc-conclusion" }, { name: "doc-cover" }, { name: "doc-credit" }, { name: "doc-credits" }, { name: "doc-dedication" }, { name: "doc-endnote" }, { name: "doc-endnotes" }, { name: "doc-epigraph" }, { name: "doc-epilogue" }, { name: "doc-errata" }, { name: "doc-example" }, { name: "doc-footnote" }, { name: "doc-foreword" }, { name: "doc-glossary" }, { name: "doc-glossref" }, { name: "doc-index" }, { name: "doc-introduction" }, { name: "doc-noteref" }, { name: "doc-notice" }, { name: "doc-pagebreak" }, { name: "doc-pagelist" }, { name: "doc-part" }, { name: "doc-preface" }, { name: "doc-prologue" }, { name: "doc-pullquote" }, { name: "doc-qna" }, { name: "doc-subtitle" }, { name: "doc-tip" }, { name: "doc-toc" } ] }, { name: "metanames", values: [ { name: "application-name" }, { name: "author" }, { name: "description" }, { name: "format-detection" }, { name: "generator" }, { name: "keywords" }, { name: "publisher" }, { name: "referrer" }, { name: "robots" }, { name: "theme-color" }, { name: "viewport" } ] }, { name: "haspopup", values: [ { name: "false", description: { kind: "markdown", value: "(default) Indicates the element does not have a popup." } }, { name: "true", description: { kind: "markdown", value: "Indicates the popup is a menu." } }, { name: "menu", description: { kind: "markdown", value: "Indicates the popup is a menu." } }, { name: "listbox", description: { kind: "markdown", value: "Indicates the popup is a listbox." } }, { name: "tree", description: { kind: "markdown", value: "Indicates the popup is a tree." } }, { name: "grid", description: { kind: "markdown", value: "Indicates the popup is a grid." } }, { name: "dialog", description: { kind: "markdown", value: "Indicates the popup is a dialog." } } ] }, { name: "decoding", values: [ { name: "sync" }, { name: "async" }, { name: "auto" } ] }, { name: "loading", values: [ { name: "eager", description: { kind: "markdown", value: "Loads the image immediately, regardless of whether or not the image is currently within the visible viewport (this is the default value)." } }, { name: "lazy", description: { kind: "markdown", value: "Defers loading the image until it reaches a calculated distance from the viewport, as defined by the browser. The intent is to avoid the network and storage bandwidth needed to handle the image until it's reasonably certain that it will be needed. This generally improves the performance of the content in most typical use cases." } } ] }, { name: "referrerpolicy", values: [ { name: "no-referrer" }, { name: "no-referrer-when-downgrade" }, { name: "origin" }, { name: "origin-when-cross-origin" }, { name: "same-origin" }, { name: "strict-origin" }, { name: "strict-origin-when-cross-origin" }, { name: "unsafe-url" } ] }, { name: "enterkeyhint", values: [ { name: "enter" }, { name: "done" }, { name: "go" }, { name: "next" }, { name: "previous" }, { name: "search" }, { name: "send" } ] }, { name: "popover", values: [ { name: "auto" }, { name: "hint" }, { name: "manual" } ] }, { name: "fetchpriority", values: [ { name: "high" }, { name: "low" }, { name: "auto" } ] } ] }; // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/languageFacts/dataManager.js class HTMLDataManager { constructor(options) { this.dataProviders = []; this.setDataProviders(options.useDefaultDataProvider !== false, options.customDataProviders || []); } setDataProviders(builtIn, providers) { this.dataProviders = []; if (builtIn) { this.dataProviders.push(new HTMLDataProvider("html5", htmlData)); } this.dataProviders.push(...providers); } getDataProviders() { return this.dataProviders; } isVoidElement(e, voidElements) { return !!e && binarySearch(voidElements, e.toLowerCase(), (s1, s2) => s1.localeCompare(s2)) >= 0; } getVoidElements(languageOrProviders) { const dataProviders = Array.isArray(languageOrProviders) ? languageOrProviders : this.getDataProviders().filter((p) => p.isApplicable(languageOrProviders)); const voidTags = []; dataProviders.forEach((provider) => { provider.provideTags().filter((tag) => tag.void).forEach((tag) => voidTags.push(tag.name)); }); return voidTags.sort(); } isPathAttribute(tag, attr) { if (attr === "src" || attr === "href") { return true; } const a = PATH_TAG_AND_ATTR[tag]; if (a) { if (typeof a === "string") { return a === attr; } else { return a.indexOf(attr) !== -1; } } return false; } } var PATH_TAG_AND_ATTR = { a: "href", area: "href", body: "background", blockquote: "cite", del: "cite", form: "action", frame: ["src", "longdesc"], img: ["src", "longdesc"], ins: "cite", link: "href", object: "data", q: "cite", script: "src", audio: "src", button: "formaction", command: "icon", embed: "src", html: "manifest", input: ["src", "formaction"], source: "src", track: "src", video: ["src", "poster"] }; // node_modules/.bun/vscode-html-languageservice@5.6.2/node_modules/vscode-html-languageservice/lib/esm/htmlLanguageService.js var defaultLanguageServiceOptions = {}; function getLanguageService(options = defaultLanguageServiceOptions) { const dataManager = new HTMLDataManager(options); const htmlHover = new HTMLHover(options, dataManager); const htmlCompletion = new HTMLCompletion(options, dataManager); const htmlParser = new HTMLParser(dataManager); const htmlSelectionRange = new HTMLSelectionRange(htmlParser); const htmlFolding = new HTMLFolding(dataManager); const htmlDocumentLinks = new HTMLDocumentLinks(dataManager); return { setDataProviders: dataManager.setDataProviders.bind(dataManager), createScanner, parseHTMLDocument: htmlParser.parseDocument.bind(htmlParser), doComplete: htmlCompletion.doComplete.bind(htmlCompletion), doComplete2: htmlCompletion.doComplete2.bind(htmlCompletion), setCompletionParticipants: htmlCompletion.setCompletionParticipants.bind(htmlCompletion), doHover: htmlHover.doHover.bind(htmlHover), format, findDocumentHighlights, findDocumentLinks: htmlDocumentLinks.findDocumentLinks.bind(htmlDocumentLinks), findDocumentSymbols, findDocumentSymbols2, getFoldingRanges: htmlFolding.getFoldingRanges.bind(htmlFolding), getSelectionRanges: htmlSelectionRange.getSelectionRanges.bind(htmlSelectionRange), doQuoteComplete: htmlCompletion.doQuoteComplete.bind(htmlCompletion), doTagComplete: htmlCompletion.doTagComplete.bind(htmlCompletion), doRename, findMatchingTagPosition, findOnTypeRenameRanges: findLinkedEditingRanges, findLinkedEditingRanges }; } function newHTMLDataProvider(id, customData) { return new HTMLDataProvider(id, customData); } // packages/language-server/src/html-regions.ts function viewRegions(text) { const regions = []; const pattern = /\bview\s*\{/g; let match; while (match = pattern.exec(text)) { const bodyStart = match.index + match[0].length; const end = matchingBrace(text, bodyStart); regions.push({ start: bodyStart, end }); pattern.lastIndex = end; } return regions; } function matchingBrace(text, from) { let depth = 1; let inTag = false; let quote = null; for (let index = from;index < text.length; index += 1) { const char = text[index]; if (quote) { if (char === quote) quote = null; continue; } if (inTag && (char === '"' || char === "'")) { quote = char; continue; } if (char === "<") inTag = true; else if (char === ">") inTag = false; else if (char === "{") depth += 1; else if (char === "}") { depth -= 1; if (depth === 0) return index; } } return text.length; } function virtualHtmlDocument(document) { const source = document.text; const keep = new Array(source.length).fill(false); for (const region of viewRegions(source)) { for (let index = region.start;index < region.end; index += 1) keep[index] = true; } let text = ""; for (let index = 0;index < source.length; index += 1) { const char = source[index]; text += keep[index] || char === ` ` ? char : char === "\r" ? "\r" : " "; } return { uri: `${document.uri}.html`, languageId: "html", text }; } function isInsideHtml(document, offset) { return regionsFor(document).some((region) => offset >= region.start && offset <= region.end); } var regionCache = new Map; function regionsFor(document) { if (document.version === undefined) { return viewRegions(document.text); } const cached = regionCache.get(document.uri); if (cached && cached.version === document.version) return cached.regions; const regions = viewRegions(document.text); regionCache.set(document.uri, { version: document.version, regions }); return regions; } // packages/language-server/src/index.ts function offsetAt2(text, position) { const lines = text.split(/\r?\n/); let offset = 0; for (let line = 0;line < Math.min(position.line, lines.length); line++) offset += (lines[line]?.length ?? 0) + 1; return Math.min(text.length, offset + Math.max(0, position.character)); } var semanticTokenTypes2 = ["variable"]; var semanticTokenModifiers2 = ["declaration", "modification"]; var semanticTokensLegend2 = { tokenTypes: [...semanticTokenTypes2], tokenModifiers: [...semanticTokenModifiers2] }; // packages/language-server/src/html-service.ts var wrnexusDataProvider = newHTMLDataProvider("wrnexus", { version: 1, globalAttributes: [ { name: "api", description: "Binds this element to a declared `apis { }` entry." } ] }); var service = getLanguageService({ customDataProviders: [wrnexusDataProvider] }); function htmlDocument(document) { const virtual = virtualHtmlDocument(document); return TextDocument2.create(virtual.uri, "html", document.version ?? 1, virtual.text); } function markdown(value) { if (typeof value === "string") return value || undefined; if (value && typeof value === "object" && "value" in value) { return String(value.value) || undefined; } return; } function isApiAttributeValuePosition(document, position) { const offset = offsetAt2(document.text, position); if (!isInsideHtml(document, offset)) return false; const before = document.text.slice(0, offset); return /\bapi\s*=\s*(["'])(?:(?!\1)[^\n])*$/.test(before); } function htmlCompletions(document, position) { if (!isInsideHtml(document, offsetAt2(document.text, position))) return []; if (isApiAttributeValuePosition(document, position)) return []; const virtual = htmlDocument(document); const parsed = service.parseHTMLDocument(virtual); const list = service.doComplete(virtual, position, parsed); return list.items.map((item) => ({ label: item.label, kind: typeof item.kind === "number" ? item.kind : 1, detail: item.detail, documentation: markdown(item.documentation), sortText: `1${item.sortText ?? item.label}`, insertText: item.textEdit && "newText" in item.textEdit ? item.textEdit.newText : undefined })); } function htmlHover(document, position) { if (!isInsideHtml(document, offsetAt2(document.text, position))) return null; const virtual = htmlDocument(document); const result = service.doHover(virtual, position, service.parseHTMLDocument(virtual)); if (!result) return null; const contents = markdown(result.contents); return contents ? { contents } : null; } function htmlFoldingRanges(document) { return service.getFoldingRanges(htmlDocument(document)).map((range) => ({ startLine: range.startLine, endLine: range.endLine })); } function htmlLinkedEditingRanges(document, position) { if (!isInsideHtml(document, offsetAt2(document.text, position))) return null; const virtual = htmlDocument(document); const ranges = service.findLinkedEditingRanges(virtual, position, service.parseHTMLDocument(virtual)); return ranges && ranges.length ? ranges : null; } function selfClosingTagCompletion(text, offset) { if (text.charAt(offset - 1) !== "/") return null; if (text.charAt(offset) === ">") return null; const tagStart = text.lastIndexOf("<", offset - 1); if (tagStart < 0) return null; if (!/^<[A-Za-z][\w-]*/.test(text.slice(tagStart))) return null; let quote = null; for (let i = tagStart + 1;i < offset - 1; i++) { const ch = text[i]; if (quote) { if (ch === quote) quote = null; continue; } if (ch === '"' || ch === "'") { quote = ch; continue; } if (ch === "<" || ch === ">") return null; } if (quote) return null; return ">"; } function htmlTagComplete(document, position) { const offset = offsetAt2(document.text, position); if (!isInsideHtml(document, offset)) return null; const virtual = htmlDocument(document); const result = service.doTagComplete(virtual, position, service.parseHTMLDocument(virtual)); if (result) return result; return selfClosingTagCompletion(document.text, offset); } function mergeCompletions(wrnexus, html) { const taken = new Set(wrnexus.map((item) => item.label)); return [ ...wrnexus.map((item) => ({ ...item, sortText: `0${item.sortText ?? item.label}` })), ...html.filter((item) => !taken.has(item.label)) ]; } // packages/language-server/src/html-regions.ts var regionCache2 = new Map; function clearHtmlRegionCache(uri) { if (uri) regionCache2.delete(uri); else regionCache2.clear(); } // packages/language-server/src/server.ts function dataApisOf(source) { try { return parse(source).dataApis; } catch { return []; } } function apiDetail(block) { return `${block.method} ${block.path}`; } function apiCallCompletions(source) { return dataApisOf(source).map((block) => ({ label: block.name, kind: 2, detail: apiDetail(block), documentation: block.sections ? [ block.sections.body.length ? `body: ${block.sections.body.map((field) => `${field.name}${field.optional ? "?" : ""}: ${field.type}`).join(", ")}` : undefined ].filter(Boolean).join(` `) : undefined })); } function apiCallHover(source, name) { const block = dataApisOf(source).find((entry) => entry.name === name); if (!block) return; const lines = [`**${block.name}** \`${block.method} ${block.path}\``]; if (block.sections?.body.length) { lines.push(`request body: ${block.sections.body.map((field) => `${field.name}${field.optional ? "?" : ""}: ${field.type}`).join(", ")}`); } if (block.sections?.parameters.length) { lines.push(`parameters: ${block.sections.parameters.map((field) => `${field.name}${field.optional ? "?" : ""}: ${field.type}`).join(", ")}`); } return lines.join(` `); } function isApiCallPosition(text, offset) { const before = text.slice(0, offset); return /\bapi\.\w*$/.test(before); } function isApiReferenceAt(text, offset) { let start = offset; while (start > 0 && /\w/.test(text[start - 1])) start--; return /\bapi\.$/.test(text.slice(0, start)); } var documents = new Map; var diagnosticTimers = new Map; var MAX_OPEN_DOCUMENTS = 256; var DIAGNOSTIC_DEBOUNCE_MS = 300; var buffer = Buffer.alloc(0); var workspaceRoot = process.cwd(); function rootFromUri(uri) { if (!uri?.startsWith("file://")) return workspaceRoot; return decodeURIComponent(uri.slice(7)).replace(/^\/([A-Za-z]:)/, "$1"); } function send(value) { const body = Buffer.from(JSON.stringify(value)); process.stdout.write(`Content-Length: ${body.length}\r \r `); process.stdout.write(body); } function result(id, value) { send({ jsonrpc: "2.0", id, result: value }); } function internalDiagnostic(document, error) { const message = error instanceof Error ? error.message : String(error); return { range: { start: { line: 0, character: 0 }, end: { line: 0, character: 1 } }, severity: 1, code: "WRN-LSP-INTERNAL", source: "wrnexus", message: `WRNexus language analysis failed safely: ${message}` }; } function safeDocumentDiagnostics(document, includeTypes = true) { try { return documentDiagnostics(document, { includeTypes }); } catch (error) { process.stderr.write(`[wrnexus-lsp] diagnostics failed for ${document.uri}: ${error instanceof Error ? error.stack ?? error.message : String(error)} `); return [internalDiagnostic(document, error)]; } } function publish(document, includeTypes = true) { send({ jsonrpc: "2.0", method: "textDocument/publishDiagnostics", params: { uri: document.uri, diagnostics: safeDocumentDiagnostics(document, includeTypes) } }); } function clearDiagnosticTimer(uri) { const timer = diagnosticTimers.get(uri); if (timer) clearTimeout(timer); diagnosticTimers.delete(uri); } function schedulePublish(document) { clearDiagnosticTimer(document.uri); const expectedVersion = document.version; diagnosticTimers.set(document.uri, setTimeout(() => { diagnosticTimers.delete(document.uri); const current = documents.get(document.uri); if (current && current.version === expectedVersion) publish(current, false); }, DIAGNOSTIC_DEBOUNCE_MS)); } function rememberDocument(document) { documents.delete(document.uri); documents.set(document.uri, document); while (documents.size > MAX_OPEN_DOCUMENTS) { const oldest = documents.keys().next().value; if (typeof oldest !== "string") break; documents.delete(oldest); clearDiagnosticTimer(oldest); } } async function handle(message) { const params = message.params ?? {}; switch (message.method) { case "initialize": workspaceRoot = params.rootPath ?? rootFromUri(params.rootUri); result(message.id, { serverInfo: { name: "WRNexus Language Server", version: "0.8.3" }, capabilities: { textDocumentSync: { openClose: true, change: 1, save: true }, documentFormattingProvider: true, completionProvider: { triggerCharacters: ["<", "@", ":", ".", " ", "=", '"', "/"] }, hoverProvider: true, foldingRangeProvider: true, linkedEditingRangeProvider: true, definitionProvider: true, referencesProvider: true, renameProvider: { prepareProvider: true }, documentSymbolProvider: true, semanticTokensProvider: { legend: semanticTokensLegend, full: true }, codeActionProvider: { codeActionKinds: [ "quickfix", "refactor.extract", "refactor.rewrite", "source.organizeImports" ] }, experimental: { wrnexusVirtualTypeScript: true } } }); break; case "initialized": break; case "shutdown": for (const timer of diagnosticTimers.values()) clearTimeout(timer); diagnosticTimers.clear(); result(message.id, null); break; case "exit": for (const timer of diagnosticTimers.values()) clearTimeout(timer); diagnosticTimers.clear(); documents.clear(); process.exit(0); break; case "textDocument/didOpen": { const item = params.textDocument; const document = { uri: item.uri, text: item.text, version: item.version }; rememberDocument(document); publish(document); break; } case "textDocument/didChange": { const existing = documents.get(params.textDocument.uri); const text = params.contentChanges?.at(-1)?.text; if (existing && typeof text === "string") { existing.text = text; existing.version = params.textDocument.version; schedulePublish(existing); } break; } case "textDocument/didSave": { const document = documents.get(params.textDocument.uri); if (document) { clearDiagnosticTimer(document.uri); clearWorkspaceIndexCache(workspaceRoot); publish(document, true); } break; } case "textDocument/didClose": clearDiagnosticTimer(params.textDocument.uri); documents.delete(params.textDocument.uri); clearHtmlRegionCache(params.textDocument.uri); send({ jsonrpc: "2.0", method: "textDocument/publishDiagnostics", params: { uri: params.textDocument.uri, diagnostics: [] } }); break; case "wrnexus/serverStatus": result(message.id, { openDocuments: documents.size, pendingDiagnostics: diagnosticTimers.size, memory: process.memoryUsage() }); break; case "textDocument/formatting": { const document = documents.get(params.textDocument.uri); result(message.id, document ? formatDocument(document, params.options?.tabSize, params.options?.insertSpaces) : []); break; } case "textDocument/completion": { const document = documents.get(params.textDocument.uri); if (document && isApiCallPosition(document.text, offsetAt(document.text, params.position))) { result(message.id, apiCallCompletions(document.text)); break; } if (document && isApiAttributeValuePosition(document, params.position)) { result(message.id, apiCallCompletions(document.text)); break; } const wrnexus = [...completionItems(), ...workspaceCompletionItems(workspaceRoot)]; const html = document ? htmlCompletions(document, params.position) : []; result(message.id, html.length ? mergeCompletions(wrnexus, html) : wrnexus); break; } case "textDocument/documentSymbol": { const document = documents.get(params.textDocument.uri); result(message.id, document ? documentSymbols(document) : []); break; } case "textDocument/semanticTokens/full": { const document = documents.get(params.textDocument.uri); result(message.id, document ? semanticTokens(document) : { data: [] }); break; } case "textDocument/hover": { const document = documents.get(params.textDocument.uri); const word = document ? wordAt(document.text, params.position)?.word : undefined; const apiHover = word && isApiReferenceAt(document.text, offsetAt(document.text, params.position)) ? apiCallHover(document.text, word) : undefined; if (apiHover) { result(message.id, { contents: apiHover }); break; } const html = document ? htmlHover(document, params.position) : null; result(message.id, html ?? (document ? hover(document, params.position) : null)); break; } case "textDocument/foldingRange": { const document = documents.get(params.textDocument.uri); result(message.id, document ? htmlFoldingRanges(document) : []); break; } case "textDocument/linkedEditingRange": { const document = documents.get(params.textDocument.uri); const ranges = document ? htmlLinkedEditingRanges(document, params.position) : null; result(message.id, ranges ? { ranges } : null); break; } case "wrn/tagComplete": { const document = documents.get(params.textDocument.uri); result(message.id, document ? htmlTagComplete(document, params.position) : null); break; } case "textDocument/definition": { const document = documents.get(params.textDocument.uri); result(message.id, document ? definitionLocation(document, params.position) : null); break; } case "textDocument/references": { const document = documents.get(params.textDocument.uri); const selected = document ? wordAt(document.text, params.position) : null; result(message.id, selected ? workspaceSymbolLocations(workspaceRoot, selected.word) : []); break; } case "textDocument/prepareRename": { const document = documents.get(params.textDocument.uri); result(message.id, document ? wordAt(document.text, params.position)?.range ?? null : null); break; } case "textDocument/rename": { const document = documents.get(params.textDocument.uri); const selected = document ? wordAt(document.text, params.position) : null; if (!selected || !/^[A-Za-z_$][\w$]*$/.test(params.newName)) { result(message.id, null); break; } const changes = {}; for (const location of workspaceSymbolLocations(workspaceRoot, selected.word)) { (changes[location.uri] ??= []).push({ range: location.range, newText: params.newName }); } result(message.id, { changes }); break; } case "textDocument/codeAction": { const document = documents.get(params.textDocument.uri); if (!document) { result(message.id, []); break; } const actions = safeDocumentDiagnostics(document).filter((item) => item.code === "WRNA11Y001").map((item) => ({ title: "Add empty alt attribute", kind: "quickfix", diagnostics: [item], edit: { changes: { [document.uri]: [ { range: { start: item.range.end, end: item.range.end }, newText: ' alt=""' } ] } } })); const imports = [ ...document.text.matchAll(/^import(?:\s+type)?[\s\S]*?(?:;\s*|\n(?=import|\s*(?:page|component|layout|global\s+store|page\s+store)\b))/gm) ].map((match) => ({ start: match.index, end: match.index + match[0].length, text: match[0].trim() })); if (imports.length > 1) { const ordered = [...imports].sort((a, b) => { const aType = /^import\s+type\b/.test(a.text) ? 0 : 1; const bType = /^import\s+type\b/.test(b.text) ? 0 : 1; return aType - bType || a.text.localeCompare(b.text); }); const replacement = ordered.map((entry) => entry.text.replace(/;$/, "")).join(` `) + ` `; const start = imports[0].start; const end = imports.at(-1).end; if (document.text.slice(start, end) !== replacement) { actions.push({ title: "Organize WRN imports", kind: "source.organizeImports", edit: { changes: { [document.uri]: [ { range: { start: positionAt2(document.text, start), end: positionAt2(document.text, end) }, newText: replacement } ] } } }); } } for (const diagnostic of params.context?.diagnostics ?? []) { if (diagnostic.code !== "WRN-OUTPUT-LEGACY-EMIT") continue; const start = offsetAt(document.text, diagnostic.range.start); const end = offsetAt(document.text, diagnostic.range.end); const source = document.text.slice(start, end); const match = /\$emit\(\s*["']([A-Za-z_$][\w$]*)["']\s*,?/.exec(source); if (!match) continue; actions.push({ title: `Convert $emit to output.${match[1]}`, kind: "quickfix", diagnostics: [diagnostic], isPreferred: true, edit: { changes: { [document.uri]: [ { range: diagnostic.range, newText: source.replace(/\$emit\(\s*["'][A-Za-z_$][\w$]*["']\s*,?\s*/, `output.${match[1]}(`) } ] } } }); } const selected = document.text.slice(document.text.split(/\r?\n/).slice(0, params.range.start.line).reduce((n, line) => n + line.length + 1, 0) + params.range.start.character, document.text.split(/\r?\n/).slice(0, params.range.end.line).reduce((n, line) => n + line.length + 1, 0) + params.range.end.character); if (selected.trim().startsWith("<")) { try { actions.push({ title: "Extract selection to WRN component", kind: "refactor.extract", edit: extractComponentRefactor(document, params.range, "ExtractedComponent") }); actions.push({ title: "Convert selected HTML to WRN page", kind: "refactor.rewrite", edit: { changes: { [document.uri]: [ { range: params.range, newText: htmlToWrn(selected, "ImportedPage") } ] } } }); } catch {} } result(message.id, actions); break; } case "wrnexus/virtualDocument": { const document = documents.get(params.textDocument?.uri ?? params.uri); result(message.id, document ? virtualTypeScriptDocument(document) : null); break; } default: if (message.id !== undefined) result(message.id, null); } } function consume() { while (true) { const end = buffer.indexOf(`\r \r `); if (end < 0) return; const header = buffer.subarray(0, end).toString(); const length = Number(/Content-Length:\s*(\d+)/i.exec(header)?.[1]); if (!Number.isFinite(length)) { buffer = Buffer.alloc(0); return; } const bodyStart = end + 4; if (buffer.length < bodyStart + length) return; const body = buffer.subarray(bodyStart, bodyStart + length).toString(); buffer = buffer.subarray(bodyStart + length); let message; try { message = JSON.parse(body); } catch (error) { process.stderr.write(`[wrnexus-lsp] invalid JSON-RPC payload: ${error instanceof Error ? error.message : String(error)} `); continue; } handle(message).catch((error) => { const detail = error instanceof Error ? error.stack ?? error.message : String(error); process.stderr.write(`[wrnexus-lsp] request failed: ${detail} `); if (message.id !== undefined) { send({ jsonrpc: "2.0", id: message.id, error: { code: -32603, message: "WRNexus language server request failed", data: detail } }); } }); } } process.stdin.on("data", (chunk) => { try { buffer = Buffer.concat([buffer, Buffer.from(chunk)]); consume(); } catch (error) { process.stderr.write(`[wrnexus-lsp] input processing failed: ${error instanceof Error ? error.stack ?? error.message : String(error)} `); } }); process.stdin.resume(); })(exports, require, module, __filename, __dirname);